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116 lines
4.0 KiB
Haskell
116 lines
4.0 KiB
Haskell
{-# LANGUAGE TypeApplications, ScopedTypeVariables #-}
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module Proto3.Roundtrip (spec) where
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import SpecHelpers
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import Data.Blob
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import Data.Span
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import qualified Data.ByteString.Lazy as L
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import Data.Source
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import Data.Functor.Foldable
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import Proto3.Suite
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import qualified Proto3.Wire.Encode as E
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import qualified Data.Syntax.Literal as Literal
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import qualified Data.Syntax.Statement as Statement
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import qualified Data.Syntax.Declaration as Declaration
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import Data.Term (Term)
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import Data.Diff (Diff)
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import Data.Sum
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import Language.Ruby.Assignment (Syntax)
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import qualified Language.Ruby.Assignment as Ruby
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import qualified Language.Python.Syntax as Python
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import Data.Functor.Classes
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import qualified Data.Syntax.Expression as Expression
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shouldRoundtrip :: (Eq a, Show a, Message a) => a -> Expectation
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shouldRoundtrip a = go a `shouldBe` Right a
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where go = fromByteString . L.toStrict . toLazyByteString
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shouldRoundtrip1 :: forall f a. (Show (f a), Eq (f a), Show1 f, Eq1 f, Eq a, Show a, Message1 f, Message a) => f a -> Expectation
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shouldRoundtrip1 a = go a `shouldBe` Right a
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where go = fromByteString1 . L.toStrict . toLazyByteString1
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instance Named1 (Sum '[Literal.Null]) where nameOf1 _ = "NullSyntax"
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spec :: Spec
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spec = parallel $ do
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describe "blobs" $
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prop "roundtrips" $
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\sp -> shouldRoundtrip @Blob sp
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describe "blob pairs" $
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prop "roundtrips" $
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\sp -> shouldRoundtrip @BlobPair sp
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describe "spans" $
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prop "roundtrips" $
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\x -> shouldRoundtrip @Span x
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describe "pos" $
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prop "roundtrips" $
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\x -> shouldRoundtrip @Pos x
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describe "nulls" $
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prop "roundtrips" $
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\sp -> shouldRoundtrip1 @Literal.Null @(Term (Sum Syntax) ()) (unListableF sp)
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describe "text elements" $
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prop "roundtrips" $
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\sp -> shouldRoundtrip1 @Literal.TextElement @(Term (Sum Syntax) ()) (unListableF sp)
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describe "floats" $
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prop "roundtrips" $
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\sp -> shouldRoundtrip1 @Literal.Float @(Term (Sum Syntax) ()) (unListableF sp)
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describe "negate" $
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prop "roundtrips" $
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\sp -> shouldRoundtrip1 @Expression.Negate @(Term (Sum '[Literal.Null]) ()) (unListableF sp)
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describe "booleans" $
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prop "roundtrips" $
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\sp -> shouldRoundtrip1 @Literal.Boolean @(Term (Sum Syntax) ()) (unListableF sp)
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describe "terms of syntax" $
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prop "roundtrips" $
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\sp -> shouldRoundtrip @(Term (Sum Syntax) ()) (unListableF sp)
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-- describe "diffs of syntax" $
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-- prop "roundtrips" $
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-- \sp -> do
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-- shouldRoundtrip @(Diff (Sum Syntax) () ()) (unListableF2 sp)
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describe "arrays" $
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prop "roundtrips" $
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\sp -> shouldRoundtrip1 @Literal.Array @(Term (Sum Syntax) ()) (unListableF sp)
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describe "key values" $
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prop "roundtrips" $
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\sp -> shouldRoundtrip1 @Literal.KeyValue @(Term (Sum Syntax) ()) (unListableF sp)
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describe "statements" $
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prop "roundtrips" $
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\sp -> shouldRoundtrip @(Term (Sum Syntax) ()) (unListableF sp)
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describe "statements1" $
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prop "roundtrips" $
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\sp -> shouldRoundtrip1 @Statement.Statements @(Term (Sum Syntax) ()) (unListableF sp)
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describe "methods" $
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prop "roundtrips" $
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\sp -> shouldRoundtrip1 @Declaration.Method @(Term (Sum Syntax) ()) (unListableF sp)
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describe "blobs" $ do
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it "should roundtrip given a Message instance" $ do
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let bl = Blob (fromUTF8 "puts 'hi'") "example.rb" Ruby
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shouldRoundtrip bl
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describe "languages" $ do
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-- If this test broke, it means you've probably added another 'Language'.
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-- Add it to the list of languages below and everything should be good,
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-- as long as you added it in a way that doesn't break prior Enum encodings.
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it "should match up with Enum declarations" $ do
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let go :: (Primitive f, MessageField f) => [f] -> [L.ByteString]
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go x = E.toLazyByteString . encodePrimitive (fieldNumber 0) <$> x
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let ints = [0..fromEnum (maxBound @Language)]
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let langs = [Unknown, Go, Haskell, Java, JavaScript, JSON,
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JSX, Markdown, Python, Ruby, TypeScript, PHP]
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go ints `shouldBe` go langs
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