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[haskell/symantic.git] / symantic-document / test / HUnit.hs
1 {-# LANGUAGE OverloadedLists #-}
2 {-# LANGUAGE TypeApplications #-}
3 module HUnit where
4
5 import Test.Tasty
6 import Test.Tasty.HUnit
7
8 import Data.Foldable (Foldable(..))
9 import Data.Function (($), (.))
10 import Data.Functor ((<$>))
11 import Data.Int (Int)
12 import Data.Maybe (Maybe(..))
13 import Data.Ord (Ord(..))
14 import Data.Semigroup (Semigroup(..))
15 import Data.String (String)
16 import Text.Show (Show(..))
17 import qualified Data.List as List
18 import qualified Data.Text.Lazy as TL
19
20 import qualified Language.Symantic.Document.Term as Doc
21 import Language.Symantic.Document.Term ((<+>))
22
23 -- * Tests
24 hunits :: TestTree
25 hunits = testGroup "HUnit" $
26 [ hunitsTerm
27 ]
28
29 infix 0 ==>
30 (==>) :: Doc.Term -> TL.Text -> Assertion
31 p ==> expected = got @?= expected
32 where got = Doc.textTerm p
33
34 testList :: String -> [Assertion] -> TestTree
35 testList n as = testGroup n $ List.zipWith testCase (show <$> [1::Int ..]) as
36
37 testMessage :: TL.Text -> String
38 testMessage msg =
39 foldMap esc $ TL.unpack $
40 if 42 < TL.length msg then excerpt else msg
41 where
42 excerpt = TL.take 42 msg <> "…"
43 esc = \case
44 '\n' -> "\\n"
45 c -> [c]
46
47 hunitsTerm :: TestTree
48 hunitsTerm = testGroup "Term"
49 [ testList "Textable"
50 [ Doc.newline ==> "\n"
51 , Doc.stringH "hello" ==> "hello"
52 , "hello" ==> "hello"
53 , Doc.catV @_ @[] ["hello", "world"] ==> "hello\nworld"
54 ]
55 , testList "Indentable"
56 [ "hello\nworld" ==> "hello\nworld"
57 , " "<> "hello\nworld\n!" ==> " hello\nworld\n!"
58 , "__"<>Doc.align "hello\nworld\n!" ==> "__hello\n world\n !"
59 , Doc.hang 2 "hello\nworld\n!" ==> "hello\n world\n !"
60 , Doc.hang 2 "hello\nworld\n!"<>"\nhello\n!" ==> "hello\n world\n !\nhello\n!"
61 , "let " <> Doc.align (Doc.catV $
62 (\(name, typ) -> Doc.fill 6 (Doc.stringH name) <+> "::" <+> Doc.stringH typ)
63 `List.map` [ ("abcdef","Doc")
64 , ("abcde","Int -> Doc -> Doc")
65 , ("abcdefghi","Doc") ])
66 ==> "let abcdef :: Doc\n abcde :: Int -> Doc -> Doc\n abcdefghi :: Doc"
67 , "let " <> Doc.align (Doc.catV $
68 (\(name, typ) -> Doc.breakableFill 6 (Doc.stringH name) <> " ::" <+> Doc.stringH typ)
69 `List.map` [ ("abcdef","Doc")
70 , ("abcde","Int -> Doc -> Doc")
71 , ("abcdefghi","Doc") ])
72 ==> "let abcdef :: Doc\n abcde :: Int -> Doc -> Doc\n abcdefghi\n :: Doc"
73 , "let " <> Doc.align (Doc.catV $
74 (\(name, typ) -> Doc.breakableFill 6 (Doc.stringH name) <> " ::" <+> typ)
75 `List.map` [("abcdefghi","Doc ->\nDoc")])
76 ==> "let abcdefghi\n :: Doc ->\n Doc"
77 , "let " <> Doc.align (Doc.catV $
78 (\(name, typ) -> Doc.breakableFill 6 (Doc.stringH name) <> Doc.align (" ::" <+> typ))
79 `List.map` [("abcdefghi","Doc ->\nDoc")])
80 ==> "let abcdefghi\n :: Doc ->\n Doc"
81 ]
82 , testList "Breakable"
83 [ 10`wc` be ["hello", "world"] ==> "helloworld"
84 , 9`wc` be ["hello", "world"] ==> "hello\nworld"
85 , 6`wc` be ["he", "ll", "o!"] ==> "hello!"
86 , 6`wc` be ["he", "ll", "o!", "wo", "rl", "d!"] ==> "hello!\nworld!"
87 , 5`wc` be ["hello", "world"] ==> "hello\nworld"
88 , 5`wc` be ["he", "llo", "world"] ==> "hello\nworld"
89 , 5`wc` be ["he", "ll", "o!"] ==> "hell\no!"
90 , 4`wc` be ["hello", "world"] ==> "hello\nworld"
91 , 4`wc` be ["he", "ll", "o!"] ==> "hell\no!"
92 , 4`wc` be ["he", "llo", "world"] ==> "he\nllo\nworld"
93 , 4`wc` be ["he", "llo", "w", "orld"] ==> "he\nllow\norld"
94 , 4`wc` be ["he", "ll", "o!", "wo", "rl", "d!"] ==> "hell\no!wo\nrld!"
95 , 3`wc` be ["hello", "world"] ==> "hello\nworld"
96 , 3`wc` be ["he", "ll"] ==> "he\nll"
97 , 3`wc` be ["he", "ll", "o!"] ==> "he\nll\no!"
98 , 1`wc` be ["he", "ll", "o!"] ==> "he\nll\no!"
99 , 4`wc` ["__", Doc.align $ be ["he", "ll", "o!", "wo", "rl", "d!"]] ==> "__he\n ll\n o!\n wo\n rl\n d!"
100 , 6`wc` ["__", Doc.align $ be ["he", "ll", "o!", "wo", "rl", "d!"]] ==> "__hell\n o!wo\n rld!"
101 , 16`wc` ["__", listHorV ["hello", "world"]] ==> "__[hello, world]"
102 , 4`wc` ["__", listHorV ["hello", "world"]] ==> "__[ hello\n , world\n ]"
103 , 11`wc` bs ["hello", "world"] ==> "hello world"
104 , 10`wc` bs ["hello", "world"] ==> "hello\nworld"
105 , 5`wc` bs ["hello", "world"] ==> "hello\nworld"
106 , 19`wc` fun (fun $ fun $ fun $ fun $ listHorV ["abcdefg", "abcdefg"])
107 ==> "function(function(\n function(\n function(\n function(\n [ abcdefg\n , abcdefg\n ]\n )\n )\n )\n ))"
108 , 19`wc` fun (fun $ fun $ fun $ fun $ listHorV ["abcdefgh", "abcdefgh"])
109 ==> "function(\n function(\n function(\n function(\n function(\n [ abcdefgh\n , abcdefgh\n ]\n )\n )\n )\n )\n )"
110 ]
111 ]
112
113 be :: Doc.Breakable d => [d] -> d
114 be = Doc.foldWith Doc.breakableEmpty
115 bs :: Doc.Breakable d => [d] -> d
116 bs = Doc.foldWith Doc.breakableSpace
117 wc :: Doc.Breakable d => Doc.Column -> d -> d
118 wc = Doc.withBreakable . Just
119
120 fun :: (Doc.Indentable d, Doc.Breakable d) => d -> d
121 fun x = "function(" <> Doc.incrIndent 2 (Doc.ifBreak (Doc.newline<>x<>Doc.newline) x) <> ")"
122
123 listHorV :: (Doc.Indentable d, Doc.Breakable d) => [d] -> d
124 listHorV [] = "[]"
125 listHorV [x] = "["<>x<>"]"
126 listHorV xs =
127 Doc.ifBreak
128 (Doc.align $ "[ " <> foldr1 (\a acc -> a <> Doc.newline <> ", " <> acc) xs <> Doc.newline <> "]")
129 ("[" <> Doc.intercalate ", " xs <> "]")