forked from OSS/graphql
216 lines
6.5 KiB
Haskell
216 lines
6.5 KiB
Haskell
{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE QuasiQuotes #-}
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module Test.FragmentSpec
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( spec
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) where
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import Data.Aeson (Value(..), object, (.=))
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import qualified Data.HashMap.Strict as HashMap
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import Data.List.NonEmpty (NonEmpty(..))
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import Data.Text (Text)
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import Language.GraphQL
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import qualified Language.GraphQL.Schema as Schema
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import Test.Hspec ( Spec
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, describe
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, it
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, shouldBe
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, shouldSatisfy
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, shouldNotSatisfy
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)
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import Text.RawString.QQ (r)
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size :: Schema.Resolver IO
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size = Schema.scalar "size" $ return ("L" :: Text)
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circumference :: Schema.Resolver IO
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circumference = Schema.scalar "circumference" $ return (60 :: Int)
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garment :: Text -> Schema.Resolver IO
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garment typeName = Schema.object "garment" $ return
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[ if typeName == "Hat" then circumference else size
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, Schema.scalar "__typename" $ return typeName
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]
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inlineQuery :: Text
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inlineQuery = [r|{
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garment {
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... on Hat {
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circumference
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}
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... on Shirt {
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size
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}
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}
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}|]
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hasErrors :: Value -> Bool
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hasErrors (Object object') = HashMap.member "errors" object'
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hasErrors _ = True
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spec :: Spec
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spec = do
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describe "Inline fragment executor" $ do
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it "chooses the first selection if the type matches" $ do
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actual <- graphql (HashMap.singleton "Query" $ garment "Hat" :| []) inlineQuery
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let expected = object
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[ "data" .= object
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[ "garment" .= object
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[ "circumference" .= (60 :: Int)
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]
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]
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]
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in actual `shouldBe` expected
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it "chooses the last selection if the type matches" $ do
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actual <- graphql (HashMap.singleton "Query" $ garment "Shirt" :| []) inlineQuery
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let expected = object
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[ "data" .= object
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[ "garment" .= object
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[ "size" .= ("L" :: Text)
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]
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]
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]
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in actual `shouldBe` expected
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it "embeds inline fragments without type" $ do
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let query = [r|{
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garment {
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circumference
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... {
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size
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}
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}
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}|]
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resolvers = Schema.object "garment" $ return [circumference, size]
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actual <- graphql (HashMap.singleton "Query" $ resolvers :| []) query
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let expected = object
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[ "data" .= object
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[ "garment" .= object
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[ "circumference" .= (60 :: Int)
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, "size" .= ("L" :: Text)
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]
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]
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]
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in actual `shouldBe` expected
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it "evaluates fragments on Query" $ do
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let query = [r|{
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... {
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size
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}
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}|]
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actual <- graphql (HashMap.singleton "Query" $ size :| []) query
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actual `shouldNotSatisfy` hasErrors
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describe "Fragment spread executor" $ do
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it "evaluates fragment spreads" $ do
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let query = [r|
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{
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...circumferenceFragment
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}
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fragment circumferenceFragment on Hat {
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circumference
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}
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|]
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actual <- graphql (HashMap.singleton "Query" $ circumference :| []) query
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let expected = object
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[ "data" .= object
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[ "circumference" .= (60 :: Int)
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]
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]
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in actual `shouldBe` expected
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it "evaluates nested fragments" $ do
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let query = [r|
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{
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garment {
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...circumferenceFragment
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}
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}
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fragment circumferenceFragment on Hat {
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...hatFragment
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}
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fragment hatFragment on Hat {
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circumference
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}
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|]
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actual <- graphql (HashMap.singleton "Query" $ garment "Hat" :| []) query
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let expected = object
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[ "data" .= object
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[ "garment" .= object
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[ "circumference" .= (60 :: Int)
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]
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]
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]
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in actual `shouldBe` expected
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it "rejects recursive fragments" $ do
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let query = [r|
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{
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...circumferenceFragment
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}
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fragment circumferenceFragment on Hat {
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...circumferenceFragment
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}
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|]
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actual <- graphql (HashMap.singleton "Query" $ circumference :| []) query
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actual `shouldSatisfy` hasErrors
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it "considers type condition" $ do
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let query = [r|
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{
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garment {
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...circumferenceFragment
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...sizeFragment
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}
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}
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fragment circumferenceFragment on Hat {
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circumference
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}
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fragment sizeFragment on Shirt {
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size
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}
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|]
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expected = object
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[ "data" .= object
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[ "garment" .= object
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[ "circumference" .= (60 :: Int)
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]
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]
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]
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actual <- graphql (HashMap.singleton "Query" $ garment "Hat" :| []) query
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actual `shouldBe` expected
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it "test1" $ do
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let query = [r|
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{
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garment {
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circumference
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}
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}
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|]
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expected = object
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[ "data" .= object
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[ "garment" .= object
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[ "circumference" .= (60 :: Int)
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]
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]
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]
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actual <- graphql schema query
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actual `shouldBe` expected
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where
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schema = HashMap.singleton "Query" $ garment' :| []
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garment' = Schema.object "garment" $ return
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[ circumference'
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]
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circumference' = Schema.scalar "circumference" $ pure (60 :: Int)
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