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Prefixes on data constructors are generally an antipattern in Haskell: if you're concerned about name collisions, have clients use qualified imports for whatever modules they need. As such, this removes the T- prefixes from the `Token` and `Context` types. This also renames Context to Scope, which is a more exact and readable name.
67 lines
2.4 KiB
Haskell
67 lines
2.4 KiB
Haskell
{-# LANGUAGE OverloadedLists, TypeOperators #-}
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module Reprinting.Spec where
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import SpecHelpers hiding (inject, project)
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import Data.Foldable
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import Data.Functor.Foldable (cata, embed)
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import qualified Data.Machine as Machine
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import Data.Algebra
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import Data.Blob
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import qualified Data.Language as Language
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import Data.Reprinting.Token
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import Data.Reprinting.Scope
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import Data.Sum
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import qualified Data.Syntax.Literal as Literal
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import Language.JSON.PrettyPrint
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import Language.Python.PrettyPrint
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import Language.Ruby.PrettyPrint
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import Reprinting.Pipeline
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import Reprinting.Tokenize
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import Semantic.IO
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import Semantic.Util.Rewriting hiding (parseFile)
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spec :: Spec
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spec = describe "reprinting" $ do
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context "JSON" $ do
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let path = "test/fixtures/javascript/reprinting/map.json"
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(src, tree) <- runIO $ do
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src <- blobSource <$> readBlobFromPath (File path Language.JSON)
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tree <- parseFile jsonParser path
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pure (src, tree)
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describe "tokenization" $ do
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it "should pass over a pristine tree" $ do
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let tagged = mark Unmodified tree
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let toks = Machine.run $ tokenizing src tagged
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toks `shouldSatisfy` not . null
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head toks `shouldSatisfy` isControl
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last toks `shouldSatisfy` isChunk
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it "should emit control tokens but only 1 chunk for a wholly-modified tree" $ do
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let toks = Machine.run $ tokenizing src (mark Refactored tree)
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for_ @[] [List, Hash] $ \t -> do
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toks `shouldSatisfy` elem (Control (Enter t))
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toks `shouldSatisfy` elem (Control (Exit t))
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describe "pipeline" $ do
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it "should roundtrip exactly over a pristine tree" $ do
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let tagged = mark Unmodified tree
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let printed = runReprinter src defaultJSONPipeline tagged
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printed `shouldBe` Right src
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it "should roundtrip exactly over a wholly-modified tree" $ do
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let tagged = mark Refactored tree
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let printed = runReprinter src defaultJSONPipeline tagged
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printed `shouldBe` Right src
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it "should be able to parse the output of a refactor" $ do
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let tagged = increaseNumbers (mark Refactored tree)
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let (Right printed) = runReprinter src defaultJSONPipeline tagged
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tree' <- runTask (parse jsonParser (Blob printed path Language.JSON))
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length tree' `shouldSatisfy` (/= 0)
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