forked from OSS/graphql
103 lines
4.0 KiB
Haskell
103 lines
4.0 KiB
Haskell
{-# LANGUAGE ExplicitForAll #-}
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{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE QuasiQuotes #-}
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module Language.GraphQL.LexerTest
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( implementation
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, reference
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) where
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import Language.GraphQL.Lexer
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import qualified Data.Text as T
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import Data.Void (Void)
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import Test.Tasty ( TestTree
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, testGroup
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)
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import Test.Tasty.HUnit ( testCase
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, (@?=)
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)
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import Text.Megaparsec ( ParseErrorBundle
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, parse
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)
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import Text.RawString.QQ (r)
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reference :: TestTree
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reference = testGroup "Lexer"
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[ testCase "lexes strings" $ do
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runParser string [r|"simple"|] @?= Right "simple"
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runParser string [r|" white space "|] @?= Right " white space "
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runParser string [r|"quote \""|] @?= Right [r|quote "|]
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runParser string [r|"escaped \n"|] @?= Right "escaped \n"
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runParser string [r|"slashes \\ \/"|] @?= Right [r|slashes \ /|]
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runParser string [r|"unicode \u1234\u5678\u90AB\uCDEF"|]
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@?= Right "unicode ሴ噸邫췯"
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, testCase "lexes block string" $ do
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runParser blockString [r|"""simple"""|] @?= Right "simple"
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runParser blockString [r|""" white space """|]
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@?= Right " white space "
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runParser blockString [r|"""contains " quote"""|]
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@?= Right [r|contains " quote|]
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runParser blockString [r|"""contains \""" triplequote"""|]
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@?= Right [r|contains """ triplequote|]
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runParser blockString "\"\"\"multi\nline\"\"\"" @?= Right "multi\nline"
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runParser blockString "\"\"\"multi\rline\r\nnormalized\"\"\""
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@?= Right "multi\nline\nnormalized"
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runParser blockString "\"\"\"multi\rline\r\nnormalized\"\"\""
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@?= Right "multi\nline\nnormalized"
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runParser blockString [r|"""unescaped \n\r\b\t\f\u1234"""|]
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@?= Right [r|unescaped \n\r\b\t\f\u1234|]
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runParser blockString [r|"""slashes \\ \/"""|]
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@?= Right [r|slashes \\ \/|]
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runParser blockString [r|"""
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spans
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multiple
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lines
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"""|] @?= Right "spans\n multiple\n lines"
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, testCase "lexes numbers" $ do
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runParser integer "4" @?= Right (4 :: Int)
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runParser float "4.123" @?= Right 4.123
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runParser integer "-4" @?= Right (-4 :: Int)
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runParser integer "9" @?= Right (9 :: Int)
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runParser integer "0" @?= Right (0 :: Int)
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runParser float "-4.123" @?= Right (-4.123)
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runParser float "0.123" @?= Right 0.123
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runParser float "123e4" @?= Right 123e4
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runParser float "123E4" @?= Right 123E4
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runParser float "123e-4" @?= Right 123e-4
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runParser float "123e+4" @?= Right 123e+4
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runParser float "-1.123e4" @?= Right (-1.123e4)
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runParser float "-1.123E4" @?= Right (-1.123E4)
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runParser float "-1.123e-4" @?= Right (-1.123e-4)
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runParser float "-1.123e+4" @?= Right (-1.123e+4)
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runParser float "-1.123e4567" @?= Right (-1.123e4567)
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, testCase "lexes punctuation" $ do
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runParser bang "!" @?= Right '!'
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runParser dollar "$" @?= Right '$'
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runBetween parens "()" @?= Right ()
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runParser spread "..." @?= Right "..."
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runParser colon ":" @?= Right ":"
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runParser equals "=" @?= Right "="
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runParser at "@" @?= Right '@'
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runBetween brackets "[]" @?= Right ()
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runBetween braces "{}" @?= Right ()
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runParser pipe "|" @?= Right "|"
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]
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implementation :: TestTree
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implementation = testGroup "Lexer"
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[ testCase "lexes empty block strings" $
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runParser blockString [r|""""""|] @?= Right ""
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, testCase "lexes ampersand" $
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runParser amp "&" @?= Right "&"
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]
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runParser :: forall a. Parser a -> T.Text -> Either (ParseErrorBundle T.Text Void) a
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runParser = flip parse ""
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runBetween :: (Parser () -> Parser ()) -> T.Text -> Either (ParseErrorBundle T.Text Void) ()
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runBetween parser = parse (parser $ pure ()) ""
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