1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
|
module CC.Parser(runPass, parseProgram) where
import Control.Monad
import qualified Data.Set as Set
import Text.Parsec hiding (SourcePos, getPosition, token)
import qualified Text.Parsec
import CC.AST.Source
import CC.Context
import CC.Pretty
type Parser a = Parsec String () a
runPass :: Context -> RawString -> Either (PrettyShow ParseError) Program
runPass (Context path (Builtins _ prelude)) (RawString src) = do
prog1 <- fmapLeft PrettyShow (parseProgram "<prelude>" prelude)
prog2 <- fmapLeft PrettyShow (parseProgram path src)
return (prog1 <> prog2)
where fmapLeft f (Left x) = Left (f x)
fmapLeft _ (Right x) = Right x
parseProgram :: FilePath -> String -> Either ParseError Program
parseProgram fname src = parse pProgram fname src
pProgram :: Parser Program
pProgram = do
prog <- Program <$> many pDecl
emptyLines
eof
return prog
pDecl :: Parser Decl
pDecl = choice
[ DeclType <$> pDeclType
, DeclAlias <$> pDeclAlias
, DeclFunc <$> pDeclFunc ]
pDeclFunc :: Parser FuncDef
pDeclFunc = do
func <- try $ do
emptyLines
name <- pName0 LowerCase <?> "declaration head name"
return name
mtyp <- optionMaybe $ do
symbol "::"
typ <- pType
whitespace >> void newline
emptyLines
(func', _) <- pName0 LowerCase
guard (fst func == func')
return typ
args <- many (pName LowerCase)
symbol "="
expr <- pExpr
return (FuncDef mtyp func args expr)
pDeclType :: Parser TypeDef
pDeclType = (\(n, a, t) -> TypeDef n a t) <$> pTypedefLike "type"
pDeclAlias :: Parser AliasDef
pDeclAlias = (\(n, a, t) -> AliasDef n a t) <$> pTypedefLike "alias"
pTypedefLike :: String -> Parser ((Name, SourceRange), [(Name, SourceRange)], Type)
pTypedefLike keyword = do
try (emptyLines >> string keyword >> whitespace1)
name <- pName0 UpperCase
args <- many (pName LowerCase)
symbol "="
ty <- pType
return (name, args, ty)
pType :: Parser Type
pType = chainr1 pTypeTerm (symbol "->" >> return TFun)
pTypeTerm :: Parser Type
pTypeTerm = pTypeAtom <|> pTypeCall
pTypeAtom :: Parser Type
pTypeAtom = choice
[ wordToken "Int" >> return TInt
, TyVar . fst <$> pName LowerCase
, pParenType
, pUnionType ]
pTypeCall :: Parser Type
pTypeCall = do
(constr, _) <- pName UpperCase
args <- many pTypeAtom
return (TNamed constr args)
pParenType :: Parser Type
pParenType = do
token "("
tys <- pType `sepBy` token ","
token ")"
case tys of
[ty] -> return ty
_ -> return (TTup tys)
pUnionType :: Parser Type
pUnionType = do
token "{"
tys <- pType `sepBy` token "|"
token "}"
case tys of
[] -> unexpected "empty union type"
[ty] -> return ty
_ -> let tyset = Set.fromList tys
in if Set.size tyset == length tys
then return (TUnion tyset)
else unexpected "duplicate types in union"
pExpr :: Parser Expr
pExpr = label (pLam <|> pLet <|> pCall) "expression"
where
pCall = do
atoms <- many1 pExprAtom
annot <- optionMaybe (do symbol "::"
p1 <- getPosition
ty <- pType
p2 <- getPosition
return (ty, SourceRange p1 p2))
let call = foldl1 (\a b -> Call (mergeRange (range a) (range b)) a b) atoms
case annot of
Just (ty, sr) -> return (Annot (mergeRange (range call) sr) call ty)
Nothing -> return call
pLam = do
p1 <- try $ do
whitespace
p <- getPosition
void (char '\\')
return p
names <- many1 (pName LowerCase)
symbol "->"
body <- pExpr
p2 <- getPosition
return (Lam (SourceRange p1 p2) names body)
pLet = do
p1 <- try $ do
whitespace
p <- getPosition
void (string "let")
return p
afterKeyword p1
where
afterKeyword p1 = do
whitespace1
lhs <- pName0 LowerCase
symbol "="
rhs <- pExpr
let fullRange rest = mergeRange (SourceRange p1 p1) (range rest)
choice [ do p1' <- try $ do
whitespace
p1' <- getPosition
void (string "let")
return p1'
rest <- afterKeyword p1'
return (Let (fullRange rest) lhs rhs rest)
, do symbol "in"
body <- pExpr
return (Let (fullRange body) lhs rhs body) ]
pExprAtom :: Parser Expr
pExprAtom =
choice [ uncurry (flip Int) <$> pInt
, uncurry (flip Var) <$> pName LowerCase
, uncurry (flip Constr) <$> pName UpperCase
, pParenExpr ]
pParenExpr :: Parser Expr
pParenExpr = do
p1 <- getPosition
token "("
exprs <- pExpr `sepBy` token ","
token ")"
p2 <- getPosition
case exprs of
[expr] -> return expr
_ -> return (Tup (SourceRange p1 p2) exprs)
pInt :: Parser (Int, SourceRange)
pInt = try (whitespace >> pInt0)
where
pInt0 = do
p1 <- getPosition
num <- read <$> many1 digit
p2 <- getPosition
return (num, SourceRange p1 p2)
data Case = LowerCase | UpperCase
pName0 :: Case -> Parser (Name, SourceRange)
pName0 vcase = do
p1 <- getPosition
s <- try $ do
c <- pWordFirstChar vcase
cs <- many pWordMidChar
let s = c : cs
guard (s `notElem` ["let", "in"])
return s
p2 <- getPosition
notFollowedBy pWordMidChar
return (s, SourceRange p1 p2)
pWordFirstChar :: Case -> Parser Char
pWordFirstChar LowerCase = lower <|> oneOf wordSymbols
pWordFirstChar UpperCase = upper <|> oneOf wordSymbols
pWordMidChar :: Parser Char
pWordMidChar = alphaNum <|> oneOf wordSymbols
wordSymbols :: [Char]
wordSymbols = "_$#!"
pName :: Case -> Parser (Name, SourceRange)
pName vcase = try (whitespace >> pName0 vcase)
symbol :: String -> Parser ()
symbol s = token s >> (eof <|> void space <|> void (oneOf "(){}[]"))
wordToken :: String -> Parser ()
wordToken s = token s >> notFollowedBy pWordMidChar
token :: String -> Parser ()
token s = try (whitespace >> void (string s))
emptyLines :: Parser ()
emptyLines = (try (whitespace >> newline) >> emptyLines) <|> try (whitespace >> eof) <|> return ()
whitespace, whitespace1 :: Parser ()
whitespace = void (many (void (char ' ') <|> void (try (string "\n "))))
whitespace1 = void (many1 (void (char ' ') <|> void (try (string "\n "))))
getPosition :: Parser SourcePos
getPosition = do
pos <- Text.Parsec.getPosition
return (SourcePos (sourceLine pos - 1) (sourceColumn pos - 1))
|