2017-03-01 02:35:43 +03:00
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module SourceSpec where
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2016-09-13 18:35:10 +03:00
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2017-07-28 21:37:02 +03:00
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import Data.Char (chr)
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2017-09-09 16:51:37 +03:00
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import Data.Functor.Listable
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2017-06-24 16:46:28 +03:00
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import Data.Range
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2017-07-28 21:37:02 +03:00
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import Data.Semigroup
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2017-06-24 16:59:41 +03:00
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import Data.Source
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2017-06-24 16:46:28 +03:00
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import Data.Span
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2017-02-13 19:58:30 +03:00
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import qualified Data.Text as Text
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2016-09-13 18:35:10 +03:00
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import Test.Hspec
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2017-02-13 18:55:57 +03:00
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import Test.Hspec.LeanCheck
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2017-02-14 23:42:14 +03:00
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import Test.LeanCheck
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2016-09-13 18:35:10 +03:00
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spec :: Spec
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2016-09-13 18:39:27 +03:00
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spec = parallel $ do
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2017-06-24 18:13:22 +03:00
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describe "sourceLineRanges" $ do
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prop "produces 1 more range than there are newlines" $
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\ source -> length (sourceLineRanges source) `shouldBe` succ (Text.count "\n" (toText source))
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2016-09-13 18:56:43 +03:00
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prop "produces exhaustive ranges" $
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\ source -> foldMap (`slice` source) (sourceLineRanges source) `shouldBe` source
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2016-09-13 18:59:46 +03:00
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2017-06-24 16:30:34 +03:00
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describe "spanToRange" $ do
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prop "computes single-line ranges" $
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\ s -> let source = fromBytes s
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spans = zipWith (\ i Range {..} -> Span (Pos i 1) (Pos i (succ (end - start)))) [1..] ranges
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ranges = sourceLineRanges source in
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spanToRange source <$> spans `shouldBe` ranges
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2016-09-13 21:27:05 +03:00
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2017-05-19 17:59:33 +03:00
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prop "computes multi-line ranges" $
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\ source ->
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spanToRange source (totalSpan source) `shouldBe` totalRange source
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2016-09-13 21:27:52 +03:00
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2017-05-19 17:59:33 +03:00
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prop "computes sub-line ranges" $
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\ s -> let source = "*" <> s <> "*" in
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2017-06-24 16:30:34 +03:00
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spanToRange source (insetSpan (totalSpan source)) `shouldBe` insetRange (totalRange source)
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2016-09-13 22:04:17 +03:00
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2017-06-24 16:30:34 +03:00
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prop "inverse of rangeToSpan" $
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\ a b -> let s = a <> "\n" <> b in spanToRange s (totalSpan s) `shouldBe` totalRange s
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2017-05-19 17:52:12 +03:00
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2017-06-24 16:30:34 +03:00
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describe "rangeToSpan" $ do
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prop "inverse of spanToRange" $
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\ a b -> let s = a <> "\n" <> b in rangeToSpan s (totalRange s) `shouldBe` totalSpan s
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2017-05-19 17:52:12 +03:00
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2016-09-13 21:27:29 +03:00
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describe "totalSpan" $ do
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prop "covers single lines" $
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\ n -> totalSpan (fromText (Text.replicate n "*")) `shouldBe` Span (Pos 1 1) (Pos 1 (max 1 (succ n)))
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2016-09-13 21:27:36 +03:00
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prop "covers multiple lines" $
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\ n -> totalSpan (fromText (Text.intersperse '\n' (Text.replicate n "*"))) `shouldBe` Span (Pos 1 1) (Pos (max 1 n) (if n > 0 then 2 else 1))
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2016-09-13 21:27:36 +03:00
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2017-11-17 19:29:38 +03:00
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describe "newlineIndices" $ do
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it "finds \\n" $
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let source = "a\nb" in
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newlineIndices source `shouldBe` [1]
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it "finds \\r" $
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let source = "a\rb" in
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newlineIndices source `shouldBe` [1]
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it "finds \\r\\n" $
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let source = "a\r\nb" in
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newlineIndices source `shouldBe` [2]
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it "finds intermixed line endings" $
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let source = "hi\r}\r}\n xxx \r a" in
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newlineIndices source `shouldBe` [2, 4, 6, 12]
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2017-02-16 19:27:50 +03:00
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prop "preserves characters" . forAll (toTiers (list +| [chr 0xa0..chr 0x24f])) $
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\ c -> Text.unpack (toText (fromText (Text.singleton c))) `shouldBe` [c]
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2017-02-16 19:53:49 +03:00
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prop "preserves strings" $
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\ s -> fromText (toText s) `shouldBe` s
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2016-09-14 09:41:28 +03:00
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2017-06-24 16:30:34 +03:00
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insetSpan :: Span -> Span
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insetSpan sourceSpan = sourceSpan { spanStart = (spanStart sourceSpan) { posColumn = succ (posColumn (spanStart sourceSpan)) }
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, spanEnd = (spanEnd sourceSpan) { posColumn = pred (posColumn (spanEnd sourceSpan)) } }
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insetRange :: Range -> Range
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insetRange Range {..} = Range (succ start) (pred end)
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