Errors nog steeds niet goede token :(
[cc1516.git] / src / parse.icl
1 implementation module parse
2
3 import StdString
4 import StdTuple
5 import StdList
6 from StdFunc import const, o
7 import Data.Either
8 import Data.Functor
9 import Data.Maybe
10 import Control.Monad
11 import Control.Applicative
12 import Data.Func
13 from Data.List import intercalate, replicate, instance Functor []
14 from Text import class Text(concat), instance Text String
15 import GenPrint
16
17 import yard
18 import lex
19
20 parser :: LexerOutput -> ParserOutput
21 parser (Left e) = Left $ toString $ LexError e
22 parser (Right r) = case runParser parseProgram r of
23 (Right p, _) = Right p
24 (Left e, _) = Left $ toString e
25
26 parseProgram :: Parser Token AST
27 parseProgram = liftM2 AST (many parseVarDecl) (some parseFunDecl)
28
29 parseFunDecl :: Parser Token FunDecl
30 parseFunDecl = liftM5 FunDecl
31 (parseIdent <* satTok BraceOpenToken)
32 (parseSepList CommaToken parseIdent <* satTok BraceCloseToken)
33 (parseFunType <* satTok CBraceOpenToken)
34 (many parseVarDecl)
35 (many parseStmt <* satTok CBraceCloseToken)
36
37 parseStmt :: Parser Token Stmt
38 parseStmt = parseIfStmt <|> parseWhileStmt <|>
39 parseSColon parseAssStmt <|> parseSColon parseReturnStmt <|>
40 (liftM FunStmt (parseSColon parseFunCall))
41 where
42 parseSColon :: (Parser Token a) -> Parser Token a
43 parseSColon p = p <* satTok SColonToken
44
45 parseReturnStmt :: Parser Token Stmt
46 parseReturnStmt =
47 satTok ReturnToken *> liftM ReturnStmt (optional parseExpr)
48
49 parseAssStmt :: Parser Token Stmt
50 parseAssStmt =
51 liftM2 AssStmt (parseVarDef <* satTok AssignmentToken) parseExpr
52
53 parseIfStmt :: Parser Token Stmt
54 parseIfStmt = liftM3 IfStmt
55 (satTok IfToken *> parseBBraces parseExpr)
56 (parseBlock <|> parseOneLine)
57 (liftM (fromMaybe [])
58 (optional (satTok ElseToken *> (parseBlock<|> parseOneLine))))
59
60
61 parseWhileStmt :: Parser Token Stmt
62 parseWhileStmt = satTok WhileToken *>
63 liftM2 WhileStmt (parseBBraces parseExpr) parseBlock
64
65 parseBlock :: Parser Token [Stmt]
66 parseBlock = parseBCBraces (many parseStmt)
67
68 parseOneLine :: Parser Token [Stmt]
69 //first pure makes singleton list from the statement
70 parseOneLine = liftM pure parseStmt
71
72 parseFunType :: Parser Token FunType
73 parseFunType = satTok DoubleColonToken *>
74 (parseInOutType <|> (liftM (FunType []) parseVoidOrType))
75 where
76 parseInOutType :: Parser Token FunType
77 parseInOutType = liftM2 FunType
78 (some parseType <* satTok ArrowToken) parseVoidOrType
79
80 parseVoidOrType :: Parser Token (Maybe Type)
81 parseVoidOrType = (satTok VoidToken *> pure Nothing) <|>
82 (liftM Just parseType)
83
84 parseVarDecl :: Parser Token VarDecl
85 parseVarDecl = liftM3 VarDecl
86 (parseType <|> trans1 VarToken VarType )
87 (parseIdent <* satTok AssignmentToken)
88 (parseExpr <* satTok SColonToken)
89
90 parseType :: Parser Token Type
91 parseType =
92 trans1 IntTypeToken IntType <|>
93 trans1 CharTypeToken CharType <|>
94 trans1 BoolTypeToken BoolType <|>
95 (liftM ListType (parseBSqBraces parseType)) <|>
96 (liftM TupleType (parseTuple parseType)) <|>
97 (liftM IdType parseIdent)
98
99 parseExpr :: Parser Token Expr
100 parseExpr = //Operators in order of binding strength
101 parseOpR (trans1 ColonToken BiCons) $
102 parseOpR (trans1 PipesToken BiOr) $
103 parseOpR (trans1 AmpersandsToken BiAnd) $
104 parseOpR (trans1 EqualsToken BiEquals <|>
105 trans1 LesserToken BiLesser <|>
106 trans1 BiggerToken BiGreater <|>
107 trans1 LesserEqToken BiLesserEq <|>
108 trans1 GreaterEqToken BiGreaterEq <|>
109 trans1 NotEqualToken BiUnEqual) $
110 parseOpL (trans1 PlusToken BiPlus <|>
111 trans1 DashToken BiMinus) $
112 parseOpL (trans1 StarToken BiTimes <|>
113 trans1 SlashToken BiDivide <|>
114 trans1 PercentToken BiMod) $ parseBasicExpr
115 where
116 parseOpR :: (Parser Token Op2) (Parser Token Expr) -> Parser Token Expr
117 parseOpR ops prev = prev >>= \e1->optional (
118 ops >>= \op->parseOpR ops prev >>= \e->pure (op, e)
119 ) >>= \moe->pure $ maybe e1 (\(op,e2)->Op2Expr e1 op e2) moe
120
121 parseOpL :: (Parser Token Op2) (Parser Token Expr) -> Parser Token Expr
122 parseOpL ops prev = prev >>= \e1->many (
123 ops >>= \op->prev >>= \e->pure (op, e)
124 ) >>= \moe->foldM (\e->(\(op,e2)->pure $ Op2Expr e op e2)) e1 moe
125
126 parseBasicExpr :: Parser Token Expr
127 parseBasicExpr =
128 (liftM TupleExpr (parseTuple parseExpr)) <|>
129 (liftM FunExpr parseFunCall) <|>
130 parseBBraces parseExpr <|>
131 trans1 EmptyListToken EmptyListExpr <|>
132 trans1 TrueToken (BoolExpr True) <|>
133 trans1 FalseToken (BoolExpr False) <|>
134 trans2 (NumberToken zero) (\(NumberToken i)->IntExpr i) <|>
135 trans2 (CharToken zero) (\(CharToken c)->CharExpr c) <|>
136 (liftM2 Op1Expr parseOp1 parseExpr) <|>
137 (liftM VarExpr parseVarDef)
138
139 parseFunCall :: Parser Token FunCall
140 parseFunCall = liftM2 FunCall
141 parseIdent (parseBBraces $ parseSepList CommaToken parseExpr)
142
143 parseVarDef :: Parser Token VarDef
144 parseVarDef = liftM2 VarDef
145 parseIdent
146 (many (satTok DotToken *> (
147 (parseIdent >>= (\i.if (i == "hd") (pure FieldHd) empty)) <|>
148 (parseIdent >>= \i.if (i == "tl") (pure FieldTl) empty) <|>
149 (parseIdent >>= \i.if (i == "fst") (pure FieldFst) empty) <|>
150 (parseIdent >>= \i.if (i == "snd") (pure FieldSnd) empty))))
151
152 parseOp1 :: Parser Token Op1
153 parseOp1 = trans1 DashToken UnMinus <|>
154 trans1 ExclamationToken UnNegation
155
156 parseBBraces :: (Parser Token a) -> Parser Token a
157 parseBBraces p = satTok BraceOpenToken *> p <* satTok BraceCloseToken
158
159 parseBCBraces :: (Parser Token a) -> Parser Token a
160 parseBCBraces p = satTok CBraceOpenToken *> p <* satTok CBraceCloseToken
161
162 parseBSqBraces :: (Parser Token a) -> Parser Token a
163 parseBSqBraces p = satTok SquareOpenToken *> p <* satTok SquareCloseToken
164
165 parseTuple :: (Parser Token a) -> Parser Token (a, a)
166 parseTuple p = satTok BraceOpenToken *>
167 (liftM2 (\a->(\b->(a,b))) (p <* satTok CommaToken) p)
168 <* satTok BraceCloseToken
169
170 trans2 :: TokenValue (TokenValue -> a) -> Parser Token a
171 trans2 t f = satTok t >>= \(_, r).pure (f r)
172
173 trans1 :: TokenValue a -> Parser Token a
174 trans1 t r = trans2 t $ const r
175
176 derive gPrint TokenValue
177 derive gEq TokenValue
178 satTok :: TokenValue -> Parser Token Token
179 satTok t = top >>= \tok=:(pos, tv) -> if (eq t tok)
180 (return tok)
181 (fail <?> (printToString tv+++printToString t, pos))
182 where
183 eq (IdentToken _) (_, IdentToken _) = True
184 eq (NumberToken _) (_, NumberToken _) = True
185 eq (CharToken _) (_, CharToken _) = True
186 eq x (_, y) = gEq {|*|} x y
187
188 parseSepList :: TokenValue (Parser Token a) -> Parser Token [a]
189 parseSepList sep p =
190 (liftM2 (\es->(\e->reverse [e:es])) (some (p <* satTok sep)) p) <|>
191 (liftM pure p) <|> pure empty
192
193 parseIdent :: Parser Token String
194 parseIdent = trans2 (IdentToken []) (\(IdentToken e).toString e)
195
196 instance toString AST where
197 toString (AST v f) = concat (
198 ["\n":printersperse "\n" v] ++
199 ["\n":printersperse "\n" f])
200
201 class print a :: a -> [String]
202
203 printersperse :: String [a] -> [String] | print a
204 printersperse i j = intercalate [i] (map print j)
205
206 instance print FunDecl where
207 print (FunDecl i as t vs ss) =
208 ["\n", i, " (":printersperse "," as] ++
209 [") :: ":print t] ++
210 ["{\n\t":printersperse "\n\t" vs] ++
211 ["\n":printStatements ss 1] ++ ["}\n"]
212
213 printStatements :: [Stmt] Int -> [String]
214 printStatements [] i = []
215 printStatements [s:ss] i = (case s of
216 (IfStmt b thens elses) = indent i ["if (":print b] ++ [")"] ++
217 printCodeBlock thens i ++
218 indent i ["else ":printCodeBlock elses i] ++ ["\n"]
219 (WhileStmt b dos) = indent i ["while (":print b] ++
220 [")":printCodeBlock dos i]
221 (AssStmt vardef val) =
222 indent i $ print vardef ++ ["=":print val] ++ [";\n"]
223 (FunStmt fc) = indent i $ print fc ++ [";\n"]
224 (ReturnStmt me) = indent i ["return ":maybe [""] print me] ++ [";\n"]
225 ) ++ printStatements ss i
226 where
227 printCodeBlock :: [Stmt] Int -> [String]
228 printCodeBlock [] _ = ["{}\n"]
229 printCodeBlock [x] i = ["\n":printStatements [x] (i+1)]
230 printCodeBlock x i =
231 ["{\n":printStatements x (i+1)] ++ indent i ["}\n"]
232
233 indent :: Int [String] -> [String]
234 indent i rest = replicate i "\t" ++ rest
235
236 instance print FunType where
237 print (FunType at rt) = printersperse " " at ++
238 [if (isEmpty at) "" "->":maybe ["Void"] print rt]
239
240 instance print VarDecl where
241 print (VarDecl t i e) = print t ++ [" ":i:"=":print e] ++ [";"]
242
243 instance print Type where
244 print (TupleType (t1, t2)) = ["(":print t1] ++ [",":print t2] ++ [")"]
245 print (ListType t) = ["[":print t] ++ ["]"]
246 print (IdType s) = print s
247 print IntType = print "Int"
248 print BoolType = print "Bool"
249 print CharType = print "Char"
250 print VarType = print "var"
251
252 instance print String where
253 print s = [s]
254
255 instance print FieldSelector where
256 print FieldHd = print "hd"
257 print FieldTl = print "tl"
258 print FieldSnd = print "snd"
259 print FieldFst = print "fst"
260
261 instance print VarDef where
262 print (VarDef i fs) = printersperse "." [i:flatten $ map print fs]
263
264 instance print FunCall where
265 print (FunCall i args) = [i,"(":printersperse "," args] ++ [")"]
266
267 instance print Expr where
268 print (VarExpr vd) = print vd
269 print (Op2Expr e1 o e2) = ["(":print e1] ++ [" ",case o of
270 BiPlus = "+"; BiMinus = "-"; BiTimes = "*"; BiDivide = "/"
271 BiMod = "%"; BiEquals = "="; BiLesser = "<"; BiGreater = ">"
272 BiLesserEq = "<="; BiGreaterEq = ">="; BiUnEqual = "!=";
273 BiAnd = "&&"; BiOr = "||"; BiCons = ":"
274 ," ":print e2] ++ [")"]
275 print (Op1Expr o e) = ["(",case o of
276 UnNegation = "!"; UnMinus = "-"
277 :print e] ++ [")"]
278 print (IntExpr i) = [toString i]
279 print (CharExpr c) = ["\'", case c of
280 '\b' = "\\b"; '\f' = "\\f"; '\n' = "\\n"
281 '\r' = "\\r"; '\t' = "\\t"; '\v' = "\\v"
282 c = if (c == toChar 7) "\\a" (toString c)
283 ,"\'"]
284 print (BoolExpr b) = [toString b]
285 print (FunExpr fc) = print fc
286 print EmptyListExpr = ["[]"]
287 print (TupleExpr (e1, e2)) = ["(":print e1] ++ [",":print e2] ++ [")"]