28e70931cca1831cff1af7d51923cc33a1883005
[bpt/coccinelle.git] / parsing_cocci / .#lexer_cocci.mll.1.84
1 (*
2 * Copyright 2005-2009, Ecole des Mines de Nantes, University of Copenhagen
3 * Yoann Padioleau, Julia Lawall, Rene Rydhof Hansen, Henrik Stuart, Gilles Muller
4 * This file is part of Coccinelle.
5 *
6 * Coccinelle is free software: you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation, according to version 2 of the License.
9 *
10 * Coccinelle is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with Coccinelle. If not, see <http://www.gnu.org/licenses/>.
17 *
18 * The authors reserve the right to distribute this or future versions of
19 * Coccinelle under other licenses.
20 *)
21
22
23 {
24 open Parser_cocci_menhir
25 module D = Data
26 module Ast = Ast_cocci
27 module Ast0 = Ast0_cocci
28 module P = Parse_aux
29 exception Lexical of string
30 let tok = Lexing.lexeme
31
32 let line = ref 1
33 let logical_line = ref 0
34
35 (* ---------------------------------------------------------------------- *)
36 (* control codes *)
37
38 (* Defined in data.ml
39 type line_type = MINUS | OPTMINUS | UNIQUEMINUS | PLUS | CONTEXT | UNIQUE | OPT
40 *)
41
42 let current_line_type = ref (D.CONTEXT,!line,!logical_line)
43
44 let prev_plus = ref false
45 let line_start = ref 0 (* offset of the beginning of the line *)
46 let get_current_line_type lexbuf =
47 let (c,l,ll) = !current_line_type in
48 let lex_start = Lexing.lexeme_start lexbuf in
49 let preceeding_spaces =
50 if !line_start < 0 then 0 else lex_start - !line_start in
51 line_start := -1;
52 prev_plus := (c = D.PLUS);
53 (c,l,ll,lex_start,preceeding_spaces,[],[],Ast0.NoMetaPos)
54 let current_line_started = ref false
55 let col_zero = ref true
56
57 let reset_line lexbuf =
58 line := !line + 1;
59 current_line_type := (D.CONTEXT,!line,!logical_line);
60 current_line_started := false;
61 col_zero := true;
62 line_start := Lexing.lexeme_start lexbuf + 1
63
64 let started_line = ref (-1)
65
66 let start_line seen_char =
67 current_line_started := true;
68 col_zero := false;
69 (if seen_char && not(!line = !started_line)
70 then
71 begin
72 started_line := !line;
73 logical_line := !logical_line + 1
74 end)
75
76 let pass_zero _ = col_zero := false
77
78 let lexerr s1 s2 = raise (Lexical (Printf.sprintf "%s%s" s1 s2))
79
80 let add_current_line_type x =
81 match (x,!current_line_type) with
82 (D.MINUS,(D.CONTEXT,ln,lln)) ->
83 current_line_type := (D.MINUS,ln,lln)
84 | (D.MINUS,(D.UNIQUE,ln,lln)) ->
85 current_line_type := (D.UNIQUEMINUS,ln,lln)
86 | (D.MINUS,(D.OPT,ln,lln)) ->
87 current_line_type := (D.OPTMINUS,ln,lln)
88 | (D.PLUS,(D.CONTEXT,ln,lln)) ->
89 current_line_type := (D.PLUS,ln,lln)
90 | (D.UNIQUE,(D.CONTEXT,ln,lln)) ->
91 current_line_type := (D.UNIQUE,ln,lln)
92 | (D.OPT,(D.CONTEXT,ln,lln)) ->
93 current_line_type := (D.OPT,ln,lln)
94 | _ -> lexerr "invalid control character combination" ""
95
96 let check_minus_context_linetype s =
97 match !current_line_type with
98 (D.PLUS,_,_) -> lexerr "invalid in a + context: " s
99 | _ -> ()
100
101 let check_context_linetype s =
102 match !current_line_type with
103 (D.CONTEXT,_,_) -> ()
104 | _ -> lexerr "invalid in a nonempty context: " s
105
106 let check_plus_linetype s =
107 match !current_line_type with
108 (D.PLUS,_,_) -> ()
109 | _ -> lexerr "invalid in a non + context: " s
110
111 let check_arity_context_linetype s =
112 match !current_line_type with
113 (D.CONTEXT,_,_) | (D.PLUS,_,_) | (D.UNIQUE,_,_) | (D.OPT,_,_) -> ()
114 | _ -> lexerr "invalid in a nonempty context: " s
115
116 let process_include start finish str =
117 (match !current_line_type with
118 (D.PLUS,_,_) ->
119 (try
120 let _ = Str.search_forward (Str.regexp "\\.\\.\\.") str start in
121 lexerr "... not allowed in + include" ""
122 with Not_found -> ())
123 | _ -> ());
124 String.sub str (start + 1) (finish - start - 1)
125
126 (* ---------------------------------------------------------------------- *)
127 type pm = PATCH | MATCH | UNKNOWN
128
129 let pm = ref UNKNOWN
130
131 let patch_or_match = function
132 PATCH ->
133 (match !pm with
134 MATCH -> lexerr "- or + not allowed in the first column for a match" ""
135 | PATCH -> ()
136 | UNKNOWN -> Flag.sgrep_mode2 := false; pm := PATCH)
137 | MATCH ->
138 (match !pm with
139 PATCH -> lexerr "* not allowed in the first column for a patch" ""
140 | MATCH -> ()
141 | UNKNOWN -> Flag.sgrep_mode2 := true; pm := MATCH)
142 | _ -> failwith "unexpected argument"
143
144 (* ---------------------------------------------------------------------- *)
145 (* identifiers, including metavariables *)
146
147 let metavariables = (Hashtbl.create(100) : (string, D.clt -> token) Hashtbl.t)
148
149 let all_metavariables =
150 (Hashtbl.create(100) : (string,(string * (D.clt -> token)) list) Hashtbl.t)
151
152 let type_names = (Hashtbl.create(100) : (string, D.clt -> token) Hashtbl.t)
153
154 let declarer_names = (Hashtbl.create(100) : (string, D.clt -> token) Hashtbl.t)
155
156 let iterator_names = (Hashtbl.create(100) : (string, D.clt -> token) Hashtbl.t)
157
158 let rule_names = (Hashtbl.create(100) : (string, unit) Hashtbl.t)
159
160 let check_var s linetype =
161 let fail _ =
162 if (!Data.in_prolog || !Data.in_rule_name) &&
163 Str.string_match (Str.regexp "<.*>") s 0
164 then TPathIsoFile s
165 else
166 try (Hashtbl.find metavariables s) linetype
167 with Not_found ->
168 (try (Hashtbl.find type_names s) linetype
169 with Not_found ->
170 (try (Hashtbl.find declarer_names s) linetype
171 with Not_found ->
172 (try (Hashtbl.find iterator_names s) linetype
173 with Not_found -> TIdent (s,linetype)))) in
174 if !Data.in_meta or !Data.in_rule_name
175 then (try Hashtbl.find rule_names s; TRuleName s with Not_found -> fail())
176 else fail()
177
178 let id_tokens lexbuf =
179 let s = tok lexbuf in
180 let linetype = get_current_line_type lexbuf in
181 let in_rule_name = !Data.in_rule_name in
182 let in_meta = !Data.in_meta in
183 let in_iso = !Data.in_iso in
184 let in_prolog = !Data.in_prolog in
185 match s with
186 "identifier" when in_meta -> check_arity_context_linetype s; TIdentifier
187 | "type" when in_meta -> check_arity_context_linetype s; TType
188 | "parameter" when in_meta -> check_arity_context_linetype s; TParameter
189 | "constant" when in_meta -> check_arity_context_linetype s; TConstant
190 | "generated" when in_rule_name && not (!Flag.make_hrule = None) ->
191 check_arity_context_linetype s; TGenerated
192 | "expression" when in_meta || in_rule_name ->
193 check_arity_context_linetype s; TExpression
194 | "idexpression" when in_meta ->
195 check_arity_context_linetype s; TIdExpression
196 | "statement" when in_meta -> check_arity_context_linetype s; TStatement
197 | "function" when in_meta -> check_arity_context_linetype s; TFunction
198 | "local" when in_meta -> check_arity_context_linetype s; TLocal
199 | "list" when in_meta -> check_arity_context_linetype s; Tlist
200 | "fresh" when in_meta -> check_arity_context_linetype s; TFresh
201 | "typedef" when in_meta -> check_arity_context_linetype s; TTypedef
202 | "declarer" when in_meta -> check_arity_context_linetype s; TDeclarer
203 | "iterator" when in_meta -> check_arity_context_linetype s; TIterator
204 | "name" when in_meta -> check_arity_context_linetype s; TName
205 | "position" when in_meta -> check_arity_context_linetype s; TPosition
206 | "any" when in_meta -> check_arity_context_linetype s; TPosAny
207 | "pure" when in_meta && in_iso ->
208 check_arity_context_linetype s; TPure
209 | "context" when in_meta && in_iso ->
210 check_arity_context_linetype s; TContext
211 | "error" when in_meta -> check_arity_context_linetype s; TError
212 | "words" when in_meta -> check_context_linetype s; TWords
213
214 | "using" when in_rule_name || in_prolog -> check_context_linetype s; TUsing
215 | "disable" when in_rule_name -> check_context_linetype s; TDisable
216 | "extends" when in_rule_name -> check_context_linetype s; TExtends
217 | "depends" when in_rule_name -> check_context_linetype s; TDepends
218 | "on" when in_rule_name -> check_context_linetype s; TOn
219 | "ever" when in_rule_name -> check_context_linetype s; TEver
220 | "never" when in_rule_name -> check_context_linetype s; TNever
221 | "exists" when in_rule_name -> check_context_linetype s; TExists
222 | "forall" when in_rule_name -> check_context_linetype s; TForall
223 | "reverse" when in_rule_name -> check_context_linetype s; TReverse
224 | "script" when in_rule_name -> check_context_linetype s; TScript
225
226 | "char" -> Tchar linetype
227 | "short" -> Tshort linetype
228 | "int" -> Tint linetype
229 | "double" -> Tdouble linetype
230 | "float" -> Tfloat linetype
231 | "long" -> Tlong linetype
232 | "void" -> Tvoid linetype
233 | "struct" -> Tstruct linetype
234 | "union" -> Tunion linetype
235 | "enum" -> Tenum linetype
236 | "unsigned" -> Tunsigned linetype
237 | "signed" -> Tsigned linetype
238
239 | "auto" -> Tauto linetype
240 | "register" -> Tregister linetype
241 | "extern" -> Textern linetype
242 | "static" -> Tstatic linetype
243 | "inline" -> Tinline linetype
244 | "typedef" -> Ttypedef linetype
245
246 | "const" -> Tconst linetype
247 | "volatile" -> Tvolatile linetype
248
249 | "if" -> TIf linetype
250 | "else" -> TElse linetype
251 | "while" -> TWhile linetype
252 | "do" -> TDo linetype
253 | "for" -> TFor linetype
254 | "switch" -> TSwitch linetype
255 | "case" -> TCase linetype
256 | "default" -> TDefault linetype
257 | "return" -> TReturn linetype
258 | "break" -> TBreak linetype
259 | "continue" -> TContinue linetype
260 | "goto" -> TGoto linetype
261
262 | "sizeof" -> TSizeof linetype
263
264 | "Expression" -> TIsoExpression
265 | "ArgExpression" -> TIsoArgExpression
266 | "TestExpression" -> TIsoTestExpression
267 | "Statement" -> TIsoStatement
268 | "Declaration" -> TIsoDeclaration
269 | "Type" -> TIsoType
270 | "TopLevel" -> TIsoTopLevel
271
272 | s -> check_var s linetype
273
274 let mkassign op lexbuf =
275 TAssign (Ast.OpAssign op, (get_current_line_type lexbuf))
276
277 let init _ =
278 line := 1;
279 logical_line := 0;
280 prev_plus := false;
281 line_start := 0;
282 current_line_started := false;
283 col_zero := true;
284 pm := UNKNOWN;
285 Data.in_rule_name := false;
286 Data.in_meta := false;
287 Data.in_prolog := false;
288 Data.inheritable_positions := [];
289 Hashtbl.clear all_metavariables;
290 Hashtbl.clear Data.all_metadecls;
291 Hashtbl.clear metavariables;
292 Hashtbl.clear type_names;
293 Hashtbl.clear rule_names;
294 let get_name (_,x) = x in
295 Data.add_id_meta :=
296 (fun name constraints pure ->
297 let fn clt = TMetaId(name,constraints,pure,clt) in
298 Hashtbl.replace metavariables (get_name name) fn);
299 Data.add_type_meta :=
300 (fun name pure ->
301 let fn clt = TMetaType(name,pure,clt) in
302 Hashtbl.replace metavariables (get_name name) fn);
303 Data.add_param_meta :=
304 (function name -> function pure ->
305 let fn clt = TMetaParam(name,pure,clt) in
306 Hashtbl.replace metavariables (get_name name) fn);
307 Data.add_paramlist_meta :=
308 (function name -> function lenname -> function pure ->
309 let fn clt = TMetaParamList(name,lenname,pure,clt) in
310 Hashtbl.replace metavariables (get_name name) fn);
311 Data.add_const_meta :=
312 (fun tyopt name constraints pure ->
313 let fn clt = TMetaConst(name,constraints,pure,tyopt,clt) in
314 Hashtbl.replace metavariables (get_name name) fn);
315 Data.add_err_meta :=
316 (fun name constraints pure ->
317 let fn clt = TMetaErr(name,constraints,pure,clt) in
318 Hashtbl.replace metavariables (get_name name) fn);
319 Data.add_exp_meta :=
320 (fun tyopt name constraints pure ->
321 let fn clt = TMetaExp(name,constraints,pure,tyopt,clt) in
322 Hashtbl.replace metavariables (get_name name) fn);
323 Data.add_idexp_meta :=
324 (fun tyopt name constraints pure ->
325 let fn clt = TMetaIdExp(name,constraints,pure,tyopt,clt) in
326 Hashtbl.replace metavariables (get_name name) fn);
327 Data.add_local_idexp_meta :=
328 (fun tyopt name constraints pure ->
329 let fn clt = TMetaLocalIdExp(name,constraints,pure,tyopt,clt) in
330 Hashtbl.replace metavariables (get_name name) fn);
331 Data.add_explist_meta :=
332 (function name -> function lenname -> function pure ->
333 let fn clt = TMetaExpList(name,lenname,pure,clt) in
334 Hashtbl.replace metavariables (get_name name) fn);
335 Data.add_stm_meta :=
336 (function name -> function pure ->
337 let fn clt = TMetaStm(name,pure,clt) in
338 Hashtbl.replace metavariables (get_name name) fn);
339 Data.add_stmlist_meta :=
340 (function name -> function pure ->
341 let fn clt = TMetaStmList(name,pure,clt) in
342 Hashtbl.replace metavariables (get_name name) fn);
343 Data.add_func_meta :=
344 (fun name constraints pure ->
345 let fn clt = TMetaFunc(name,constraints,pure,clt) in
346 Hashtbl.replace metavariables (get_name name) fn);
347 Data.add_local_func_meta :=
348 (fun name constraints pure ->
349 let fn clt = TMetaLocalFunc(name,constraints,pure,clt) in
350 Hashtbl.replace metavariables (get_name name) fn);
351 Data.add_iterator_meta :=
352 (fun name constraints pure ->
353 let fn clt = TMetaIterator(name,constraints,pure,clt) in
354 Hashtbl.replace metavariables (get_name name) fn);
355 Data.add_declarer_meta :=
356 (fun name constraints pure ->
357 let fn clt = TMetaDeclarer(name,constraints,pure,clt) in
358 Hashtbl.replace metavariables (get_name name) fn);
359 Data.add_pos_meta :=
360 (fun name constraints any ->
361 let fn ((d,ln,_,_,_,_,_,_) as clt) =
362 (if d = Data.PLUS
363 then
364 failwith
365 (Printf.sprintf "%d: positions only allowed in minus code" ln));
366 TMetaPos(name,constraints,any,clt) in
367 Hashtbl.replace metavariables (get_name name) fn);
368 Data.add_type_name :=
369 (function name ->
370 let fn clt = TTypeId(name,clt) in
371 Hashtbl.replace type_names name fn);
372 Data.add_declarer_name :=
373 (function name ->
374 let fn clt = TDeclarerId(name,clt) in
375 Hashtbl.replace declarer_names name fn);
376 Data.add_iterator_name :=
377 (function name ->
378 let fn clt = TIteratorId(name,clt) in
379 Hashtbl.replace iterator_names name fn);
380 Data.init_rule := (function _ -> Hashtbl.clear metavariables);
381 Data.install_bindings :=
382 (function parent ->
383 List.iter (function (name,fn) -> Hashtbl.add metavariables name fn)
384 (Hashtbl.find all_metavariables parent))
385
386 let drop_spaces s =
387 let len = String.length s in
388 let rec loop n =
389 if n = len
390 then n
391 else
392 if List.mem (String.get s n) [' ';'\t']
393 then loop (n+1)
394 else n in
395 let start = loop 0 in
396 String.sub s start (len - start)
397 }
398
399 (* ---------------------------------------------------------------------- *)
400 (* tokens *)
401
402 let letter = ['A'-'Z' 'a'-'z' '_']
403 let digit = ['0'-'9']
404
405 let dec = ['0'-'9']
406 let oct = ['0'-'7']
407 let hex = ['0'-'9' 'a'-'f' 'A'-'F']
408
409 let decimal = ('0' | (['1'-'9'] dec*))
410 let octal = ['0'] oct+
411 let hexa = ("0x" |"0X") hex+
412
413 let pent = dec+
414 let pfract = dec+
415 let sign = ['-' '+']
416 let exp = ['e''E'] sign? dec+
417 let real = pent exp | ((pent? '.' pfract | pent '.' pfract? ) exp?)
418
419
420 rule token = parse
421 | [' ' '\t' ]+ { start_line false; token lexbuf }
422 | ['\n' '\r' '\011' '\012'] { reset_line lexbuf; token lexbuf }
423
424 | "//" [^ '\n']* { start_line false; token lexbuf }
425
426 | "@@" { start_line true; TArobArob }
427 | "@" { pass_zero();
428 if !Data.in_rule_name or not !current_line_started
429 then (start_line true; TArob)
430 else (check_minus_context_linetype "@"; TPArob) }
431
432 | "WHEN" | "when"
433 { start_line true; check_minus_context_linetype (tok lexbuf);
434 TWhen (get_current_line_type lexbuf) }
435
436 | "..."
437 { start_line true; check_minus_context_linetype (tok lexbuf);
438 TEllipsis (get_current_line_type lexbuf) }
439 (*
440 | "ooo"
441 { start_line true; check_minus_context_linetype (tok lexbuf);
442 TCircles (get_current_line_type lexbuf) }
443
444 | "***"
445 { start_line true; check_minus_context_linetype (tok lexbuf);
446 TStars (get_current_line_type lexbuf) }
447 *)
448 | "<..." { start_line true; check_context_linetype (tok lexbuf);
449 TOEllipsis (get_current_line_type lexbuf) }
450 | "...>" { start_line true; check_context_linetype (tok lexbuf);
451 TCEllipsis (get_current_line_type lexbuf) }
452 | "<+..." { start_line true; check_context_linetype (tok lexbuf);
453 TPOEllipsis (get_current_line_type lexbuf) }
454 | "...+>" { start_line true; check_context_linetype (tok lexbuf);
455 TPCEllipsis (get_current_line_type lexbuf) }
456 (*
457 | "<ooo" { start_line true; check_context_linetype (tok lexbuf);
458 TOCircles (get_current_line_type lexbuf) }
459 | "ooo>" { start_line true; check_context_linetype (tok lexbuf);
460 TCCircles (get_current_line_type lexbuf) }
461
462 | "<***" { start_line true; check_context_linetype (tok lexbuf);
463 TOStars (get_current_line_type lexbuf) }
464 | "***>" { start_line true; check_context_linetype (tok lexbuf);
465 TCStars (get_current_line_type lexbuf) }
466 *)
467 | "-" { pass_zero();
468 if !current_line_started
469 then (start_line true; TMinus (get_current_line_type lexbuf))
470 else (patch_or_match PATCH;
471 add_current_line_type D.MINUS; token lexbuf) }
472 | "+" { pass_zero();
473 if !current_line_started
474 then (start_line true; TPlus (get_current_line_type lexbuf))
475 else if !Data.in_meta
476 then TPlus0
477 else (patch_or_match PATCH;
478 add_current_line_type D.PLUS; token lexbuf) }
479 | "?" { pass_zero();
480 if !current_line_started
481 then (start_line true; TWhy (get_current_line_type lexbuf))
482 else if !Data.in_meta
483 then TWhy0
484 else (add_current_line_type D.OPT; token lexbuf) }
485 | "!" { pass_zero();
486 if !current_line_started
487 then (start_line true; TBang (get_current_line_type lexbuf))
488 else if !Data.in_meta
489 then TBang0
490 else (add_current_line_type D.UNIQUE; token lexbuf) }
491 | "(" { if not !col_zero
492 then (start_line true; TOPar (get_current_line_type lexbuf))
493 else
494 (start_line true; check_context_linetype (tok lexbuf);
495 TOPar0 (get_current_line_type lexbuf))}
496 | "\\(" { start_line true; TOPar0 (get_current_line_type lexbuf) }
497 | "|" { if not (!col_zero)
498 then (start_line true; TOr(get_current_line_type lexbuf))
499 else (start_line true;
500 check_context_linetype (tok lexbuf);
501 TMid0 (get_current_line_type lexbuf))}
502 | "\\|" { start_line true; TMid0 (get_current_line_type lexbuf) }
503 | ")" { if not !col_zero
504 then (start_line true; TCPar (get_current_line_type lexbuf))
505 else
506 (start_line true; check_context_linetype (tok lexbuf);
507 TCPar0 (get_current_line_type lexbuf))}
508 | "\\)" { start_line true; TCPar0 (get_current_line_type lexbuf) }
509
510 | '[' { start_line true; TOCro (get_current_line_type lexbuf) }
511 | ']' { start_line true; TCCro (get_current_line_type lexbuf) }
512 | '{' { start_line true; TOBrace (get_current_line_type lexbuf) }
513 | '}' { start_line true; TCBrace (get_current_line_type lexbuf) }
514
515 | "->" { start_line true; TPtrOp (get_current_line_type lexbuf) }
516 | '.' { start_line true; TDot (get_current_line_type lexbuf) }
517 | ',' { start_line true; TComma (get_current_line_type lexbuf) }
518 | ";" { start_line true;
519 if !Data.in_meta
520 then TMPtVirg (* works better with tokens_all *)
521 else TPtVirg (get_current_line_type lexbuf) }
522
523
524 | '*' { pass_zero();
525 if !current_line_started
526 then
527 (start_line true; TMul (get_current_line_type lexbuf))
528 else
529 (patch_or_match MATCH;
530 add_current_line_type D.MINUS; token lexbuf) }
531 | '/' { start_line true;
532 TDmOp (Ast.Div,get_current_line_type lexbuf) }
533 | '%' { start_line true;
534 TDmOp (Ast.Mod,get_current_line_type lexbuf) }
535 | '~' { start_line true; TTilde (get_current_line_type lexbuf) }
536
537 | "++" { start_line true; TInc (get_current_line_type lexbuf) }
538 | "--" { start_line true; TDec (get_current_line_type lexbuf) }
539
540 | "=" { start_line true; TEq (get_current_line_type lexbuf) }
541
542 | "-=" { start_line true; mkassign Ast.Minus lexbuf }
543 | "+=" { start_line true; mkassign Ast.Plus lexbuf }
544
545 | "*=" { start_line true; mkassign Ast.Mul lexbuf }
546 | "/=" { start_line true; mkassign Ast.Div lexbuf }
547 | "%=" { start_line true; mkassign Ast.Mod lexbuf }
548
549 | "&=" { start_line true; mkassign Ast.And lexbuf }
550 | "|=" { start_line true; mkassign Ast.Or lexbuf }
551 | "^=" { start_line true; mkassign Ast.Xor lexbuf }
552
553 | "<<=" { start_line true; mkassign Ast.DecLeft lexbuf }
554 | ">>=" { start_line true; mkassign Ast.DecRight lexbuf }
555
556 | ":" { start_line true; TDotDot (get_current_line_type lexbuf) }
557
558 | "==" { start_line true; TEqEq (get_current_line_type lexbuf) }
559 | "!=" { start_line true; TNotEq (get_current_line_type lexbuf) }
560 | ">=" { start_line true;
561 TLogOp(Ast.SupEq,get_current_line_type lexbuf) }
562 | "<=" { start_line true;
563 TLogOp(Ast.InfEq,get_current_line_type lexbuf) }
564 | "<" { start_line true;
565 TLogOp(Ast.Inf,get_current_line_type lexbuf) }
566 | ">" { start_line true;
567 TLogOp(Ast.Sup,get_current_line_type lexbuf) }
568
569 | "&&" { start_line true; TAndLog (get_current_line_type lexbuf) }
570 | "||" { start_line true; TOrLog (get_current_line_type lexbuf) }
571
572 | ">>" { start_line true;
573 TShOp(Ast.DecRight,get_current_line_type lexbuf) }
574 | "<<" { start_line true;
575 TShOp(Ast.DecLeft,get_current_line_type lexbuf) }
576
577 | "&" { start_line true; TAnd (get_current_line_type lexbuf) }
578 | "^" { start_line true; TXor(get_current_line_type lexbuf) }
579
580 | ( ("#" [' ' '\t']* "define" [' ' '\t']+))
581 ( (letter (letter |digit)*) as ident)
582 { start_line true;
583 let (arity,line,lline,offset,col,strbef,straft,pos) as lt =
584 get_current_line_type lexbuf in
585 let off = String.length "#define " in
586 (* -1 in the code below because the ident is not at the line start *)
587 TDefine
588 (lt,
589 check_var ident
590 (arity,line,lline,offset+off,(-1),[],[],Ast0.NoMetaPos)) }
591 | ( ("#" [' ' '\t']* "define" [' ' '\t']+))
592 ( (letter (letter | digit)*) as ident)
593 '('
594 { start_line true;
595 let (arity,line,lline,offset,col,strbef,straft,pos) as lt =
596 get_current_line_type lexbuf in
597 let off = String.length "#define " in
598 TDefineParam
599 (lt,
600 check_var ident
601 (* why pos here but not above? *)
602 (arity,line,lline,offset+off,(-1),strbef,straft,pos),
603 offset + off + (String.length ident)) }
604 | "#" [' ' '\t']* "include" [' ' '\t']* '"' [^ '"']+ '"'
605 { TIncludeL
606 (let str = tok lexbuf in
607 let start = String.index str '"' in
608 let finish = String.rindex str '"' in
609 start_line true;
610 (process_include start finish str,get_current_line_type lexbuf)) }
611 | "#" [' ' '\t']* "include" [' ' '\t']* '<' [^ '>']+ '>'
612 { TIncludeNL
613 (let str = tok lexbuf in
614 let start = String.index str '<' in
615 let finish = String.rindex str '>' in
616 start_line true;
617 (process_include start finish str,get_current_line_type lexbuf)) }
618 | "#" [' ' '\t']* "if" [^'\n']*
619 | "#" [' ' '\t']* "ifdef" [^'\n']*
620 | "#" [' ' '\t']* "ifndef" [^'\n']*
621 | "#" [' ' '\t']* "else" [^'\n']*
622 | "#" [' ' '\t']* "elif" [^'\n']*
623 | "#" [' ' '\t']* "endif" [^'\n']*
624 | "#" [' ' '\t']* "error" [^'\n']*
625 { start_line true; check_plus_linetype (tok lexbuf);
626 TPragma (tok lexbuf) }
627 | "---" [^'\n']*
628 { (if !current_line_started
629 then lexerr "--- must be at the beginning of the line" "");
630 start_line true;
631 TMinusFile
632 (let str = tok lexbuf in
633 (drop_spaces(String.sub str 3 (String.length str - 3)),
634 (get_current_line_type lexbuf))) }
635 | "+++" [^'\n']*
636 { (if !current_line_started
637 then lexerr "+++ must be at the beginning of the line" "");
638 start_line true;
639 TPlusFile
640 (let str = tok lexbuf in
641 (drop_spaces(String.sub str 3 (String.length str - 3)),
642 (get_current_line_type lexbuf))) }
643
644 | letter (letter | digit)*
645 { start_line true; id_tokens lexbuf }
646
647 | "'" { start_line true;
648 TChar(char lexbuf,get_current_line_type lexbuf) }
649 | '"' { start_line true;
650 TString(string lexbuf,(get_current_line_type lexbuf)) }
651 | (real as x) { start_line true;
652 TFloat(x,(get_current_line_type lexbuf)) }
653 | ((( decimal | hexa | octal)
654 ( ['u' 'U']
655 | ['l' 'L']
656 | (['l' 'L'] ['u' 'U'])
657 | (['u' 'U'] ['l' 'L'])
658 | (['u' 'U'] ['l' 'L'] ['l' 'L'])
659 | (['l' 'L'] ['l' 'L'])
660 )?
661 ) as x) { start_line true; TInt(x,(get_current_line_type lexbuf)) }
662
663 | "<=>" { TIso }
664 | "=>" { TRightIso }
665
666 | eof { EOF }
667
668 | _ { lexerr "unrecognised symbol, in token rule: " (tok lexbuf) }
669
670
671 and char = parse
672 | (_ as x) "'" { String.make 1 x }
673 | (("\\" (oct | oct oct | oct oct oct)) as x "'") { x }
674 | (("\\x" (hex | hex hex)) as x "'") { x }
675 | (("\\" (_ as v)) as x "'")
676 { (match v with
677 | 'n' -> () | 't' -> () | 'v' -> () | 'b' -> ()
678 | 'r' -> () | 'f' -> () | 'a' -> ()
679 | '\\' -> () | '?' -> () | '\'' -> () | '"' -> ()
680 | 'e' -> ()
681 | _ -> lexerr "unrecognised symbol: " (tok lexbuf)
682 );
683 x
684 }
685 | _ { lexerr "unrecognised symbol: " (tok lexbuf) }
686
687 and string = parse
688 | '"' { "" }
689 | (_ as x) { Common.string_of_char x ^ string lexbuf }
690 | ("\\" (oct | oct oct | oct oct oct)) as x { x ^ string lexbuf }
691 | ("\\x" (hex | hex hex)) as x { x ^ string lexbuf }
692 | ("\\" (_ as v)) as x
693 {
694 (match v with
695 | 'n' -> () | 't' -> () | 'v' -> () | 'b' -> () | 'r' -> ()
696 | 'f' -> () | 'a' -> ()
697 | '\\' -> () | '?' -> () | '\'' -> () | '"' -> ()
698 | 'e' -> ()
699 | '\n' -> ()
700 | _ -> lexerr "unrecognised symbol:" (tok lexbuf)
701 );
702 x ^ string lexbuf
703 }
704 | _ { lexerr "unrecognised symbol: " (tok lexbuf) }