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1/* Input parser for Bison
2
3 Copyright (C) 1984, 1986, 1989, 1992, 1998, 2000, 2001, 2002, 2003,
4 2005 Free Software Foundation, Inc.
5
6 This file is part of Bison, the GNU Compiler Compiler.
7
8 Bison is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 2, or (at your option)
11 any later version.
12
13 Bison is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with Bison; see the file COPYING. If not, write to
20 the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
21 Boston, MA 02110-1301, USA. */
22
23#include "system.h"
24
25#include <quotearg.h>
26
27#include "complain.h"
28#include "conflicts.h"
29#include "files.h"
30#include "getargs.h"
31#include "gram.h"
32#include "muscle_tab.h"
33#include "output.h"
34#include "reader.h"
35#include "symlist.h"
36#include "symtab.h"
37
38static symbol_list *grammar = NULL;
39static bool start_flag = false;
40merger_list *merge_functions;
41
42/* Has %union been seen? */
43bool typed = false;
44
45/* Should rules have a default precedence? */
46bool default_prec = true;
47\f
48/*-----------------------.
49| Set the start symbol. |
50`-----------------------*/
51
52void
53grammar_start_symbol_set (symbol *sym, location loc)
54{
55 if (start_flag)
56 complain_at (loc, _("multiple %s declarations"), "%start");
57 else
58 {
59 start_flag = true;
60 startsymbol = sym;
61 startsymbol_location = loc;
62 }
63}
64
65
66/*----------------------------------------------------------------.
67| There are two prologues: one before %union, one after. Augment |
68| the current one. |
69`----------------------------------------------------------------*/
70
71void
72prologue_augment (const char *prologue, location loc)
73{
74 struct obstack *oout =
75 !typed ? &pre_prologue_obstack : &post_prologue_obstack;
76
77 obstack_fgrow1 (oout, "]b4_syncline(%d, [[", loc.start.line);
78 MUSCLE_OBSTACK_SGROW (oout,
79 quotearg_style (c_quoting_style, loc.start.file));
80 obstack_sgrow (oout, "]])[\n");
81 obstack_sgrow (oout, prologue);
82}
83
84\f
85
86/*-------------------------------------------------------------------.
87| Return the merger index for a merging function named NAME, whose |
88| arguments have type TYPE. Records the function, if new, in |
89| MERGER_LIST. |
90`-------------------------------------------------------------------*/
91
92static int
93get_merge_function (uniqstr name, uniqstr type, location loc)
94{
95 merger_list *syms;
96 merger_list head;
97 int n;
98
99 if (! glr_parser)
100 return 0;
101
102 if (type == NULL)
103 type = uniqstr_new ("");
104
105 head.next = merge_functions;
106 for (syms = &head, n = 1; syms->next != NULL; syms = syms->next, n += 1)
107 if (UNIQSTR_EQ (name, syms->next->name))
108 break;
109 if (syms->next == NULL)
110 {
111 syms->next = xmalloc (sizeof syms->next[0]);
112 syms->next->name = uniqstr_new (name);
113 syms->next->type = uniqstr_new (type);
114 syms->next->next = NULL;
115 merge_functions = head.next;
116 }
117 else if (!UNIQSTR_EQ (type, syms->next->type))
118 warn_at (loc, _("result type clash on merge function %s: <%s> != <%s>"),
119 name, type, syms->next->type);
120 return n;
121}
122
123/*--------------------------------------.
124| Free all merge-function definitions. |
125`--------------------------------------*/
126
127void
128free_merger_functions (void)
129{
130 merger_list *L0;
131 if (! glr_parser)
132 return;
133 L0 = merge_functions;
134 while (L0 != NULL)
135 {
136 merger_list *L1 = L0->next;
137 free (L0);
138 L0 = L1;
139 }
140}
141
142\f
143/*-------------------------------------------------------------------.
144| Parse the input grammar into a one symbol_list structure. Each |
145| rule is represented by a sequence of symbols: the left hand side |
146| followed by the contents of the right hand side, followed by a |
147| null pointer instead of a symbol to terminate the rule. The next |
148| symbol is the lhs of the following rule. |
149| |
150| All actions are copied out, labelled by the rule number they apply |
151| to. |
152| |
153| Bison used to allow some %directives in the rules sections, but |
154| this is no longer consider appropriate: (i) the documented grammar |
155| doesn't claim it, (ii), it would promote bad style, (iii), error |
156| recovery for %directives consists in skipping the junk until a `%' |
157| is seen and helrp synchronizing. This scheme is definitely wrong |
158| in the rules section. |
159`-------------------------------------------------------------------*/
160
161/* The (currently) last symbol of GRAMMAR. */
162symbol_list *grammar_end = NULL;
163
164/* Append SYM to the grammar. */
165void
166grammar_symbol_append (symbol *sym, location loc)
167{
168 symbol_list *p = symbol_list_new (sym, loc);
169
170 if (grammar_end)
171 grammar_end->next = p;
172 else
173 grammar = p;
174
175 grammar_end = p;
176}
177
178/* The rule currently being defined, and the previous rule.
179 CURRENT_RULE points to the first LHS of the current rule, while
180 PREVIOUS_RULE_END points to the *end* of the previous rule (NULL). */
181symbol_list *current_rule = NULL;
182symbol_list *previous_rule_end = NULL;
183
184
185/*----------------------------------------------.
186| Create a new rule for LHS in to the GRAMMAR. |
187`----------------------------------------------*/
188
189void
190grammar_rule_begin (symbol *lhs, location loc)
191{
192 if (!start_flag)
193 {
194 startsymbol = lhs;
195 startsymbol_location = loc;
196 start_flag = true;
197 }
198
199 /* Start a new rule and record its lhs. */
200 ++nrules;
201 ++nritems;
202
203 previous_rule_end = grammar_end;
204 grammar_symbol_append (lhs, loc);
205 current_rule = grammar_end;
206
207 /* Mark the rule's lhs as a nonterminal if not already so. */
208
209 if (lhs->class == unknown_sym)
210 {
211 lhs->class = nterm_sym;
212 lhs->number = nvars;
213 ++nvars;
214 }
215 else if (lhs->class == token_sym)
216 complain_at (loc, _("rule given for %s, which is a token"), lhs->tag);
217}
218
219/* Check that the last rule (CURRENT_RULE) is properly defined. For
220 instance, there should be no type clash on the default action. */
221
222static void
223grammar_current_rule_check (void)
224{
225 symbol *lhs = current_rule->sym;
226 char const *lhs_type = lhs->type_name;
227 symbol *first_rhs = current_rule->next->sym;
228
229 /* If there is an action, then there is nothing we can do: the user
230 is allowed to shoot herself in the foot. */
231 if (current_rule->action)
232 return;
233
234 /* Don't worry about the default action if $$ is untyped, since $$'s
235 value can't be used. */
236 if (! lhs_type)
237 return;
238
239 /* If $$ is being set in default way, report if any type mismatch. */
240 if (first_rhs)
241 {
242 const char *rhs_type = first_rhs->type_name ? first_rhs->type_name : "";
243 if (!UNIQSTR_EQ (lhs_type, rhs_type))
244 warn_at (current_rule->location,
245 _("type clash on default action: <%s> != <%s>"),
246 lhs_type, rhs_type);
247 }
248 /* Warn if there is no default for $$ but we need one. */
249 else
250 warn_at (current_rule->location,
251 _("empty rule for typed nonterminal, and no action"));
252}
253
254
255/*-------------------------------------.
256| End the currently being grown rule. |
257`-------------------------------------*/
258
259void
260grammar_rule_end (location loc)
261{
262 /* Put an empty link in the list to mark the end of this rule */
263 grammar_symbol_append (NULL, grammar_end->location);
264 current_rule->location = loc;
265 grammar_current_rule_check ();
266}
267
268
269/*-------------------------------------------------------------------.
270| The previous action turns out the be a mid-rule action. Attach it |
271| to the current rule, i.e., create a dummy symbol, attach it this |
272| mid-rule action, and append this dummy nonterminal to the current |
273| rule. |
274`-------------------------------------------------------------------*/
275
276void
277grammar_midrule_action (void)
278{
279 /* Since the action was written out with this rule's number, we must
280 give the new rule this number by inserting the new rule before
281 it. */
282
283 /* Make a DUMMY nonterminal, whose location is that of the midrule
284 action. Create the MIDRULE. */
285 location dummy_location = current_rule->action_location;
286 symbol *dummy = dummy_symbol_get (dummy_location);
287 symbol_list *midrule = symbol_list_new (dummy, dummy_location);
288
289 /* Make a new rule, whose body is empty, before the current one, so
290 that the action just read can belong to it. */
291 ++nrules;
292 ++nritems;
293 /* Attach its location and actions to that of the DUMMY. */
294 midrule->location = dummy_location;
295 midrule->action = current_rule->action;
296 midrule->action_location = dummy_location;
297 current_rule->action = NULL;
298
299 if (previous_rule_end)
300 previous_rule_end->next = midrule;
301 else
302 grammar = midrule;
303
304 /* End the dummy's rule. */
305 previous_rule_end = symbol_list_new (NULL, dummy_location);
306 previous_rule_end->next = current_rule;
307
308 midrule->next = previous_rule_end;
309
310 /* Insert the dummy nonterminal replacing the midrule action into
311 the current rule. */
312 grammar_current_rule_symbol_append (dummy, dummy_location);
313}
314
315/* Set the precedence symbol of the current rule to PRECSYM. */
316
317void
318grammar_current_rule_prec_set (symbol *precsym, location loc)
319{
320 if (current_rule->ruleprec)
321 complain_at (loc, _("only one %s allowed per rule"), "%prec");
322 current_rule->ruleprec = precsym;
323}
324
325/* Attach dynamic precedence DPREC to the current rule. */
326
327void
328grammar_current_rule_dprec_set (int dprec, location loc)
329{
330 if (! glr_parser)
331 warn_at (loc, _("%s affects only GLR parsers"), "%dprec");
332 if (dprec <= 0)
333 complain_at (loc, _("%s must be followed by positive number"), "%dprec");
334 else if (current_rule->dprec != 0)
335 complain_at (loc, _("only one %s allowed per rule"), "%dprec");
336 current_rule->dprec = dprec;
337}
338
339/* Attach a merge function NAME with argument type TYPE to current
340 rule. */
341
342void
343grammar_current_rule_merge_set (uniqstr name, location loc)
344{
345 if (! glr_parser)
346 warn_at (loc, _("%s affects only GLR parsers"), "%merge");
347 if (current_rule->merger != 0)
348 complain_at (loc, _("only one %s allowed per rule"), "%merge");
349 current_rule->merger =
350 get_merge_function (name, current_rule->sym->type_name, loc);
351}
352
353/* Attach SYM to the current rule. If needed, move the previous
354 action as a mid-rule action. */
355
356void
357grammar_current_rule_symbol_append (symbol *sym, location loc)
358{
359 if (current_rule->action)
360 grammar_midrule_action ();
361 ++nritems;
362 grammar_symbol_append (sym, loc);
363}
364
365/* Attach an ACTION to the current rule. If needed, move the previous
366 action as a mid-rule action. */
367
368void
369grammar_current_rule_action_append (const char *action, location loc)
370{
371 if (current_rule->action)
372 grammar_midrule_action ();
373 current_rule->action = action;
374 current_rule->action_location = loc;
375}
376
377\f
378/*---------------------------------------------------------------.
379| Convert the rules into the representation using RRHS, RLHS and |
380| RITEM. |
381`---------------------------------------------------------------*/
382
383static void
384packgram (void)
385{
386 unsigned int itemno = 0;
387 rule_number ruleno = 0;
388 symbol_list *p = grammar;
389
390 ritem = xnmalloc (nritems, sizeof *ritem);
391 rules = xnmalloc (nrules, sizeof *rules);
392
393 while (p)
394 {
395 symbol *ruleprec = p->ruleprec;
396 rules[ruleno].user_number = ruleno;
397 rules[ruleno].number = ruleno;
398 rules[ruleno].lhs = p->sym;
399 rules[ruleno].rhs = ritem + itemno;
400 rules[ruleno].prec = NULL;
401 rules[ruleno].dprec = p->dprec;
402 rules[ruleno].merger = p->merger;
403 rules[ruleno].precsym = NULL;
404 rules[ruleno].location = p->location;
405 rules[ruleno].useful = true;
406 rules[ruleno].action = p->action;
407 rules[ruleno].action_location = p->action_location;
408
409 p = p->next;
410 while (p && p->sym)
411 {
412 /* item_number = symbol_number.
413 But the former needs to contain more: negative rule numbers. */
414 ritem[itemno++] = symbol_number_as_item_number (p->sym->number);
415 /* A rule gets by default the precedence and associativity
416 of the last token in it. */
417 if (p->sym->class == token_sym && default_prec)
418 rules[ruleno].prec = p->sym;
419 if (p)
420 p = p->next;
421 }
422
423 /* If this rule has a %prec,
424 the specified symbol's precedence replaces the default. */
425 if (ruleprec)
426 {
427 rules[ruleno].precsym = ruleprec;
428 rules[ruleno].prec = ruleprec;
429 }
430 ritem[itemno++] = rule_number_as_item_number (ruleno);
431 ++ruleno;
432
433 if (p)
434 p = p->next;
435 }
436
437 if (itemno != nritems)
438 abort ();
439
440 if (trace_flag & trace_sets)
441 ritem_print (stderr);
442}
443\f
444/*------------------------------------------------------------------.
445| Read in the grammar specification and record it in the format |
446| described in gram.h. All actions are copied into ACTION_OBSTACK, |
447| in each case forming the body of a C function (YYACTION) which |
448| contains a switch statement to decide which action to execute. |
449`------------------------------------------------------------------*/
450
451void
452reader (void)
453{
454 /* Initialize the symbol table. */
455 symbols_new ();
456
457 /* Construct the accept symbol. */
458 accept = symbol_get ("$accept", empty_location);
459 accept->class = nterm_sym;
460 accept->number = nvars++;
461
462 /* Construct the error token */
463 errtoken = symbol_get ("error", empty_location);
464 errtoken->class = token_sym;
465 errtoken->number = ntokens++;
466
467 /* Construct a token that represents all undefined literal tokens.
468 It is always token number 2. */
469 undeftoken = symbol_get ("$undefined", empty_location);
470 undeftoken->class = token_sym;
471 undeftoken->number = ntokens++;
472
473 /* Initialize the obstacks. */
474 obstack_init (&pre_prologue_obstack);
475 obstack_init (&post_prologue_obstack);
476
477 finput = xfopen (grammar_file, "r");
478 gram_in = finput;
479
480 gram__flex_debug = trace_flag & trace_scan;
481 gram_debug = trace_flag & trace_parse;
482 scanner_initialize ();
483 gram_parse ();
484
485 /* If something went wrong during the parsing, don't try to
486 continue. */
487 if (complaint_issued)
488 return;
489
490 /* Grammar has been read. Do some checking */
491 if (nrules == 0)
492 fatal (_("no rules in the input grammar"));
493
494 /* Report any undefined symbols and consider them nonterminals. */
495 symbols_check_defined ();
496
497 /* If the user did not define her ENDTOKEN, do it now. */
498 if (!endtoken)
499 {
500 endtoken = symbol_get ("$end", empty_location);
501 endtoken->class = token_sym;
502 endtoken->number = 0;
503 /* Value specified by POSIX. */
504 endtoken->user_token_number = 0;
505 }
506
507 /* Insert the initial rule, which line is that of the first rule
508 (not that of the start symbol):
509
510 accept: %start EOF. */
511 {
512 symbol_list *p = symbol_list_new (accept, empty_location);
513 p->location = grammar->location;
514 p->next = symbol_list_new (startsymbol, empty_location);
515 p->next->next = symbol_list_new (endtoken, empty_location);
516 p->next->next->next = symbol_list_new (NULL, empty_location);
517 p->next->next->next->next = grammar;
518 nrules += 1;
519 nritems += 3;
520 grammar = p;
521 }
522
523 if (! (nsyms <= SYMBOL_NUMBER_MAXIMUM && nsyms == ntokens + nvars))
524 abort ();
525
526 xfclose (finput);
527
528 /* Assign the symbols their symbol numbers. Write #defines for the
529 token symbols into FDEFINES if requested. */
530 symbols_pack ();
531
532 /* Convert the grammar into the format described in gram.h. */
533 packgram ();
534
535 /* The grammar as a symbol_list is no longer needed. */
536 LIST_FREE (symbol_list, grammar);
537}