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8cc63a85a5
* First try. * first version that compiles. * Added range function. * fixed tests. * Fixed order of funcions in the code. * fix * Simplify semantic version module * Change qualified import name for SV Co-authored-by: Filip Sodić <filip.sodic@fer.hr>
113 lines
3.7 KiB
Haskell
113 lines
3.7 KiB
Haskell
module SemanticVersionTest where
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import Numeric.Natural
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import Test.Tasty.Hspec
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import Wasp.SemanticVersion
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spec_SemanticVersion :: Spec
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spec_SemanticVersion = do
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-- TODO: Add more tests to cover everything.
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describe "`show` produces valid semver strings" $ do
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it "show Version" $ do
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show (Version 0 0 0) `shouldBe` "0.0.0"
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show (Version 0 19 0) `shouldBe` "0.19.0"
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show (Version 1 2 314) `shouldBe` "1.2.314"
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it "show empty Range" $ do
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show (mempty :: Range) `shouldBe` ""
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it "show complex Range" $ do
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show
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( Range [lte (Version 1 3 6) <> backwardsCompatibleWith (Version 1 2 0)]
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<> Range [eq (Version 1 2 3)]
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)
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`shouldBe` "<=1.3.6 ^1.2.0 || =1.2.3"
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it "Concatenating version ranges produces union of their comparator sets" $ do
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let v1 = Version 1 0 0
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let v2 = Version 2 0 0
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let r1 = Range [gt v1, lt v2]
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let r2 = Range [lt v2]
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r1 <> r2 `shouldBe` r1
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describe "isVersionInRange" $ do
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it "No version is in empty range" $
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testRange
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mempty
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[ ((0, 5, 5), False),
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((1, 0, 0), False),
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((1, 2, 3), False),
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((1, 2, 4), False),
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((1, 3, 0), False),
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((2, 0, 0), False)
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]
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it "Recognizes only version v to be in range '=v'" $
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testRange
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(Range [eq (Version 1 2 3)])
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[ ((0, 5, 5), False),
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((1, 0, 0), False),
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((1, 2, 3), True),
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((1, 2, 4), False),
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((1, 3, 0), False),
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((2, 0, 0), False)
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]
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it "Recognizes only versions lesser or equal to v to be in range '<=v'" $
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testRange
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(Range [lte (Version 1 2 3)])
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[ ((0, 5, 5), True),
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((1, 0, 0), True),
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((1, 2, 3), True),
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((1, 2, 4), False),
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((1, 3, 0), False),
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((2, 0, 0), False)
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]
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describe "Recognizes only versions >=v but smaller than next breaking change to be in range '^v'" $ do
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it "when v is of shape x.y.z where x != 0." $
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testRange
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(Range [backwardsCompatibleWith (Version 1 2 3)])
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[ ((0, 5, 5), False),
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((1, 0, 0), False),
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((1, 2, 3), True),
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((1, 2, 4), True),
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((1, 3, 0), True),
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((2, 0, 0), False)
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]
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it "when v is of shape 0.y.z where y != 0." $
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testRange
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(Range [backwardsCompatibleWith (Version 0 2 3)])
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[ ((0, 0, 0), False),
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((0, 1, 3), False),
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((0, 2, 0), False),
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((0, 2, 2), False),
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((0, 2, 3), True),
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((0, 2, 4), True),
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((0, 3, 0), False),
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((1, 0, 0), False)
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]
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it "when v is of shape 0.0.z." $
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testRange
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(Range [backwardsCompatibleWith (Version 0 0 2)])
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[ ((0, 0, 1), False),
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((0, 0, 2), True),
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((0, 0, 3), False),
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((0, 1, 0), False),
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((1, 0, 0), False)
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]
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it "Correctly works for complex version range." $
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testRange
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(Range [lte (Version 1 2 3) <> backwardsCompatibleWith (Version 1 1 0), eq (Version 0 5 6)])
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[ ((0, 5, 5), False),
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((0, 5, 6), True),
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((0, 5, 7), False),
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((1, 0, 9), False),
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((1, 1, 0), True),
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((1, 1, 9), True),
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((1, 2, 3), True),
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((1, 2, 4), False),
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((1, 3, 0), False),
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((2, 0, 0), False)
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]
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where
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testRange :: Range -> [((Natural, Natural, Natural), Bool)] -> Expectation
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testRange range versionsWithResults =
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( (`isVersionInRange` range) . (\(x, y, z) -> Version x y z)
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<$> map fst versionsWithResults
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)
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`shouldBe` map snd versionsWithResults
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