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c3e23647 | 1 | /* Output the generated parsing program for bison, |
5bb18f9a | 2 | Copyright (C) 1984, 1986, 1989, 1992, 2000, 2001, 2002 |
255ef638 | 3 | Free Software Foundation, Inc. |
c3e23647 | 4 | |
9ee3c97b | 5 | This file is part of Bison, the GNU Compiler Compiler. |
c3e23647 | 6 | |
9ee3c97b AD |
7 | Bison is free software; you can redistribute it and/or modify it |
8 | under the terms of the GNU General Public License as published by | |
9 | the Free Software Foundation; either version 2, or (at your option) | |
10 | any later version. | |
c3e23647 | 11 | |
9ee3c97b AD |
12 | Bison is distributed in the hope that it will be useful, but |
13 | WITHOUT ANY WARRANTY; without even the implied warranty of | |
14 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU | |
15 | General Public License for more details. | |
c3e23647 | 16 | |
9ee3c97b AD |
17 | You should have received a copy of the GNU General Public License |
18 | along with Bison; see the file COPYING. If not, write to the Free | |
19 | Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA | |
20 | 02111-1307, USA. */ | |
c3e23647 RS |
21 | |
22 | ||
255ef638 AD |
23 | /* The parser tables consist of these tables. Marked ones needed only |
24 | for the semantic parser. Double marked are output only if switches | |
25 | are set. | |
c3e23647 | 26 | |
255ef638 AD |
27 | YYTRANSLATE = vector mapping yylex's token numbers into bison's |
28 | token numbers. | |
c3e23647 | 29 | |
255ef638 | 30 | ++ YYTNAME = vector of string-names indexed by bison token number. |
c3e23647 | 31 | |
255ef638 AD |
32 | ++ YYTOKNUM = vector of yylex token numbers corresponding to |
33 | entries in YYTNAME. | |
c3e23647 | 34 | |
255ef638 AD |
35 | YYRLINE = vector of line-numbers of all rules. For yydebug |
36 | printouts. | |
c3e23647 | 37 | |
255ef638 AD |
38 | YYRHS = vector of items of all rules. This is exactly what RITEMS |
39 | contains. For yydebug and for semantic parser. | |
c3e23647 | 40 | |
255ef638 | 41 | YYPRHS[R] = index in YYRHS of first item for rule R. |
c3e23647 | 42 | |
255ef638 | 43 | YYR1[R] = symbol number of symbol that rule R derives. |
c3e23647 | 44 | |
255ef638 | 45 | YYR2[R] = number of symbols composing right hand side of rule R. |
c3e23647 | 46 | |
255ef638 AD |
47 | + YYSTOS[S] = the symbol number of the symbol that leads to state |
48 | S. | |
e372befa | 49 | |
255ef638 AD |
50 | YYDEFACT[S] = default rule to reduce with in state s, when YYTABLE |
51 | doesn't specify something else to do. Zero means the default is an | |
52 | error. | |
c3e23647 | 53 | |
255ef638 AD |
54 | YYDEFGOTO[I] = default state to go to after a reduction of a rule |
55 | that generates variable NTOKENS + I, except when YYTABLE specifies | |
56 | something else to do. | |
c3e23647 | 57 | |
255ef638 AD |
58 | YYPACT[S] = index in YYTABLE of the portion describing state S. |
59 | The lookahead token's type is used to index that portion to find | |
60 | out what to do. | |
c3e23647 | 61 | |
255ef638 AD |
62 | If the value in YYTABLE is positive, we shift the token and go to |
63 | that state. | |
c3e23647 | 64 | |
6c89f1c1 | 65 | If the value is negative, it is minus a rule number to reduce by. |
c3e23647 | 66 | |
255ef638 AD |
67 | If the value is zero, the default action from YYDEFACT[S] is used. |
68 | ||
69 | YYPGOTO[I] = the index in YYTABLE of the portion describing what to | |
70 | do after reducing a rule that derives variable I + NTOKENS. This | |
71 | portion is indexed by the parser state number, S, as of before the | |
72 | text for this nonterminal was read. The value from YYTABLE is the | |
73 | state to go to if the corresponding value in YYCHECK is S. | |
74 | ||
75 | YYTABLE = a vector filled with portions for different uses, found | |
76 | via YYPACT and YYPGOTO. | |
77 | ||
78 | YYCHECK = a vector indexed in parallel with YYTABLE. It indicates, | |
79 | in a roundabout way, the bounds of the portion you are trying to | |
80 | examine. | |
81 | ||
82 | Suppose that the portion of yytable starts at index P and the index | |
83 | to be examined within the portion is I. Then if YYCHECK[P+I] != I, | |
84 | I is outside the bounds of what is actually allocated, and the | |
85 | default (from YYDEFACT or YYDEFGOTO) should be used. Otherwise, | |
86 | YYTABLE[P+I] should be used. | |
87 | ||
88 | YYFINAL = the state number of the termination state. YYFLAG = most | |
89 | negative short int. Used to flag ?? */ | |
c3e23647 | 90 | |
c3e23647 | 91 | #include "system.h" |
914feea9 | 92 | #include "bitsetv.h" |
14d3eb9b | 93 | #include "quotearg.h" |
be2a1a68 | 94 | #include "error.h" |
ceed8467 | 95 | #include "getargs.h" |
c3e23647 RS |
96 | #include "files.h" |
97 | #include "gram.h" | |
b2ca4022 | 98 | #include "LR0.h" |
a0f6b076 | 99 | #include "complain.h" |
6c89f1c1 | 100 | #include "output.h" |
720d742f | 101 | #include "lalr.h" |
a70083a3 | 102 | #include "reader.h" |
ad949da9 | 103 | #include "symtab.h" |
0619caf0 | 104 | #include "conflicts.h" |
11d82f03 | 105 | #include "muscle_tab.h" |
be2a1a68 AD |
106 | |
107 | /* From lib/readpipe.h. */ | |
108 | FILE *readpipe PARAMS ((const char *, ...)); | |
109 | ||
110 | /* From src/scan-skel.l. */ | |
111 | int skel_lex PARAMS ((void)); | |
112 | extern FILE *skel_in; | |
d019d655 | 113 | |
c3e23647 RS |
114 | static int nvectors; |
115 | static int nentries; | |
342b8b6e AD |
116 | static short **froms = NULL; |
117 | static short **tos = NULL; | |
118 | static short *tally = NULL; | |
119 | static short *width = NULL; | |
120 | static short *actrow = NULL; | |
121 | static short *state_count = NULL; | |
122 | static short *order = NULL; | |
123 | static short *base = NULL; | |
124 | static short *pos = NULL; | |
133c20e2 AD |
125 | |
126 | /* TABLE_SIZE is the allocated size of both TABLE and CHECK. | |
127 | We start with the original hard-coded value: SHRT_MAX | |
128 | (yes, not USHRT_MAX). */ | |
129 | static size_t table_size = SHRT_MAX; | |
342b8b6e AD |
130 | static short *table = NULL; |
131 | static short *check = NULL; | |
c3e23647 RS |
132 | static int lowzero; |
133 | static int high; | |
134 | ||
11d82f03 | 135 | struct obstack muscle_obstack; |
f87685c3 | 136 | static struct obstack format_obstack; |
c3e23647 | 137 | |
c7925b99 MA |
138 | int error_verbose = 0; |
139 | ||
f0440388 | 140 | |
133c20e2 AD |
141 | /*----------------------------------------------------------------. |
142 | | If TABLE (and CHECK) appear to be small to be addressed at | | |
143 | | DESIRED, grow them. Note that TABLE[DESIRED] is to be used, so | | |
144 | | the desired size is at least DESIRED + 1. | | |
145 | `----------------------------------------------------------------*/ | |
146 | ||
147 | static void | |
148 | table_grow (size_t desired) | |
149 | { | |
150 | size_t old_size = table_size; | |
151 | ||
152 | while (table_size <= desired) | |
153 | table_size *= 2; | |
154 | ||
155 | if (trace_flag) | |
156 | fprintf (stderr, "growing table and check from: %d to %d\n", | |
157 | old_size, table_size); | |
158 | ||
159 | table = XREALLOC (table, short, table_size); | |
160 | check = XREALLOC (check, short, table_size); | |
161 | ||
162 | for (/* Nothing. */; old_size < table_size; ++old_size) | |
163 | { | |
164 | table[old_size] = 0; | |
165 | check[old_size] = -1; | |
166 | } | |
167 | } | |
168 | ||
169 | ||
5fbb0954 AD |
170 | /*------------------------------------------------------------------. |
171 | | Create a function NAME which Format the FIRST and then | | |
172 | | TABLE_DATA[BEGIN..END[ (of TYPE) into OOUT, and return the number | | |
173 | | of bits needed for its longuest value. | | |
174 | `------------------------------------------------------------------*/ | |
62a3e4f0 | 175 | |
62a3e4f0 | 176 | |
5fbb0954 AD |
177 | #define GENERATE_OUTPUT_TABLE(Name, Type) \ |
178 | \ | |
179 | static inline long int \ | |
180 | Name (struct obstack *oout, \ | |
181 | Type *table_data, \ | |
182 | Type first, \ | |
183 | int begin, \ | |
184 | int end) \ | |
185 | { \ | |
186 | long int max = first; \ | |
187 | int i; \ | |
188 | int j = 1; \ | |
189 | \ | |
190 | obstack_fgrow1 (oout, "%6d", first); \ | |
191 | for (i = begin; i < end; ++i) \ | |
192 | { \ | |
193 | obstack_1grow (oout, ','); \ | |
194 | if (j >= 10) \ | |
195 | { \ | |
196 | obstack_sgrow (oout, "\n "); \ | |
197 | j = 1; \ | |
198 | } \ | |
199 | else \ | |
200 | ++j; \ | |
201 | obstack_fgrow1 (oout, "%6d", table_data[i]); \ | |
202 | if (table_data[i] > max) \ | |
203 | max = table_data[i]; \ | |
204 | } \ | |
205 | obstack_1grow (oout, 0); \ | |
206 | \ | |
207 | return max; \ | |
62a3e4f0 AD |
208 | } |
209 | ||
5fbb0954 AD |
210 | GENERATE_OUTPUT_TABLE(output_int_table, int) |
211 | GENERATE_OUTPUT_TABLE(output_short_table, short) | |
212 | GENERATE_OUTPUT_TABLE(output_token_number_table, token_number_t) | |
213 | GENERATE_OUTPUT_TABLE(output_item_number_table, item_number_t) | |
c3e23647 RS |
214 | |
215 | ||
b0940840 AD |
216 | /*-----------------------------------------------------------------. |
217 | | Prepare the muscles related to the tokens: translate, tname, and | | |
218 | | toknum. | | |
219 | `-----------------------------------------------------------------*/ | |
220 | ||
4a120d45 | 221 | static void |
b0940840 | 222 | prepare_tokens (void) |
c3e23647 | 223 | { |
5fbb0954 AD |
224 | long int max = output_token_number_table (&format_obstack, |
225 | token_translations, | |
226 | 0, 1, max_user_token_number + 1); | |
f87685c3 | 227 | muscle_insert ("translate", obstack_finish (&format_obstack)); |
680e8701 | 228 | MUSCLE_INSERT_LONG_INT ("token_number_max", max); |
342b8b6e | 229 | XFREE (token_translations); |
c3e23647 | 230 | |
b0940840 AD |
231 | { |
232 | int i; | |
233 | int j = 0; | |
234 | for (i = 0; i < nsyms; i++) | |
235 | { | |
236 | /* Be sure not to use twice the same quotearg slot. */ | |
237 | const char *cp = | |
238 | quotearg_n_style (1, c_quoting_style, | |
239 | quotearg_style (escape_quoting_style, | |
240 | symbols[i]->tag)); | |
241 | /* Width of the next token, including the two quotes, the coma | |
242 | and the space. */ | |
243 | int strsize = strlen (cp) + 2; | |
244 | ||
245 | if (j + strsize > 75) | |
246 | { | |
247 | obstack_sgrow (&format_obstack, "\n "); | |
248 | j = 2; | |
249 | } | |
250 | ||
251 | obstack_sgrow (&format_obstack, cp); | |
252 | obstack_sgrow (&format_obstack, ", "); | |
253 | j += strsize; | |
254 | } | |
255 | /* Add a NULL entry to list of tokens (well, 0, as NULL might not be | |
256 | defined). */ | |
257 | obstack_sgrow (&format_obstack, "0"); | |
c3e23647 | 258 | |
b0940840 AD |
259 | /* Finish table and store. */ |
260 | obstack_1grow (&format_obstack, 0); | |
261 | muscle_insert ("tname", obstack_finish (&format_obstack)); | |
262 | } | |
263 | ||
264 | /* Output YYTOKNUM. */ | |
b2ed6e58 AD |
265 | { |
266 | int i; | |
b0940840 AD |
267 | short *values = XCALLOC (short, ntokens + 1); |
268 | for (i = 0; i < ntokens + 1; ++i) | |
269 | values[i] = symbols[i]->user_token_number; | |
62a3e4f0 | 270 | output_short_table (&format_obstack, values, |
b0940840 AD |
271 | 0, 1, ntokens + 1); |
272 | muscle_insert ("toknum", obstack_finish (&format_obstack)); | |
273 | free (values); | |
b2ed6e58 | 274 | } |
b0940840 | 275 | } |
b2ed6e58 | 276 | |
b0940840 AD |
277 | |
278 | /*-------------------------------------------------------------. | |
279 | | Prepare the muscles related to the rules: rhs, prhs, r1, r2, | | |
280 | | rline. | | |
281 | `-------------------------------------------------------------*/ | |
282 | ||
283 | static void | |
284 | prepare_rules (void) | |
285 | { | |
62a3e4f0 AD |
286 | long int max; |
287 | item_number_t *rhsp; | |
b0940840 AD |
288 | int r; |
289 | int i = 0; | |
62a3e4f0 | 290 | item_number_t *rhs = XMALLOC (item_number_t, nritems); |
b0940840 | 291 | short *prhs = XMALLOC (short, nrules + 1); |
5fbb0954 | 292 | token_number_t *r1 = XMALLOC (token_number_t, nrules + 1); |
b0940840 AD |
293 | short *r2 = XMALLOC (short, nrules + 1); |
294 | short *rline = XMALLOC (short, nrules + 1); | |
295 | ||
296 | for (r = 1; r < nrules + 1; ++r) | |
297 | { | |
298 | /* Index of rule R in RHS. */ | |
299 | prhs[r] = i; | |
300 | /* RHS of the rule R. */ | |
301 | for (rhsp = rules[r].rhs; *rhsp >= 0; ++rhsp) | |
302 | rhs[i++] = *rhsp; | |
303 | /* LHS of the rule R. */ | |
304 | r1[r] = rules[r].lhs->number; | |
305 | /* Length of rule R's RHS. */ | |
306 | r2[r] = i - prhs[r]; | |
307 | /* Separator in RHS. */ | |
308 | rhs[i++] = -1; | |
309 | /* Line where rule was defined. */ | |
310 | rline[r] = rules[r].line; | |
311 | } | |
312 | assert (i == nritems); | |
313 | ||
62a3e4f0 | 314 | max = output_int_table (&format_obstack, rhs, ritem[0], 1, nritems); |
b0940840 | 315 | muscle_insert ("rhs", obstack_finish (&format_obstack)); |
62a3e4f0 | 316 | MUSCLE_INSERT_LONG_INT ("rhs_number_max", max); |
b0940840 | 317 | |
62a3e4f0 | 318 | output_short_table (&format_obstack, prhs, 0, 1, nrules + 1); |
f87685c3 | 319 | muscle_insert ("prhs", obstack_finish (&format_obstack)); |
342b8b6e | 320 | |
62a3e4f0 | 321 | output_short_table (&format_obstack, rline, 0, 1, nrules + 1); |
b0940840 | 322 | muscle_insert ("rline", obstack_finish (&format_obstack)); |
b4c4ccc2 | 323 | |
5fbb0954 | 324 | output_token_number_table (&format_obstack, r1, 0, 1, nrules + 1); |
b0940840 | 325 | muscle_insert ("r1", obstack_finish (&format_obstack)); |
26f609ff | 326 | |
62a3e4f0 | 327 | output_short_table (&format_obstack, r2, 0, 1, nrules + 1); |
b0940840 | 328 | muscle_insert ("r2", obstack_finish (&format_obstack)); |
796d61fb | 329 | |
b0940840 AD |
330 | free (rhs); |
331 | free (prhs); | |
332 | free (r2); | |
c3e23647 RS |
333 | } |
334 | ||
b0940840 AD |
335 | /*--------------------------------------------. |
336 | | Prepare the muscles related to the states. | | |
337 | `--------------------------------------------*/ | |
c3e23647 | 338 | |
4a120d45 | 339 | static void |
b0940840 | 340 | prepare_states (void) |
c3e23647 | 341 | { |
602bbf31 | 342 | size_t i; |
5fbb0954 AD |
343 | token_number_t *values = |
344 | (token_number_t *) alloca (sizeof (token_number_t) * nstates); | |
9703cc49 | 345 | for (i = 0; i < nstates; ++i) |
29e88316 | 346 | values[i] = states[i]->accessing_symbol; |
5fbb0954 AD |
347 | output_token_number_table (&format_obstack, values, |
348 | 0, 1, nstates); | |
f87685c3 | 349 | muscle_insert ("stos", obstack_finish (&format_obstack)); |
c3e23647 RS |
350 | } |
351 | ||
352 | ||
6c89f1c1 AD |
353 | /*------------------------------------------------------------------. |
354 | | Decide what to do for each type of token if seen as the lookahead | | |
355 | | token in specified state. The value returned is used as the | | |
356 | | default action (yydefact) for the state. In addition, actrow is | | |
357 | | filled with what to do for each kind of token, index by symbol | | |
358 | | number, with zero meaning do the default action. The value | | |
62a3e4f0 | 359 | | SHRT_MIN, a very negative number, means this situation is an | |
6c89f1c1 AD |
360 | | error. The parser recognizes this value specially. | |
361 | | | | |
362 | | This is where conflicts are resolved. The loop over lookahead | | |
363 | | rules considered lower-numbered rules last, and the last rule | | |
364 | | considered that likes a token gets to handle it. | | |
365 | `------------------------------------------------------------------*/ | |
c3e23647 | 366 | |
4a120d45 | 367 | static int |
f9507c28 | 368 | action_row (state_t *state) |
c3e23647 | 369 | { |
6c89f1c1 | 370 | int i; |
837491d8 | 371 | int default_rule = 0; |
f9507c28 | 372 | reductions *redp = state->reductions; |
f9507c28 AD |
373 | shifts *shiftp = state->shifts; |
374 | errs *errp = state->errs; | |
837491d8 AD |
375 | /* set nonzero to inhibit having any default reduction */ |
376 | int nodefault = 0; | |
c3e23647 RS |
377 | |
378 | for (i = 0; i < ntokens; i++) | |
379 | actrow[i] = 0; | |
380 | ||
80dac38c | 381 | if (redp->nreds >= 1) |
c3e23647 | 382 | { |
837491d8 AD |
383 | int j; |
384 | /* loop over all the rules available here which require | |
385 | lookahead */ | |
f9507c28 | 386 | for (i = state->nlookaheads - 1; i >= 0; --i) |
837491d8 AD |
387 | /* and find each token which the rule finds acceptable |
388 | to come next */ | |
389 | for (j = 0; j < ntokens; j++) | |
390 | /* and record this rule as the rule to use if that | |
391 | token follows. */ | |
602bbf31 | 392 | if (bitset_test (LA[state->lookaheadsp + i], j)) |
b0299a2e | 393 | actrow[j] = -LArule[state->lookaheadsp + i]->number; |
c3e23647 RS |
394 | } |
395 | ||
36281465 AD |
396 | /* Now see which tokens are allowed for shifts in this state. For |
397 | them, record the shift as the thing to do. So shift is preferred | |
398 | to reduce. */ | |
d954473d | 399 | for (i = 0; i < shiftp->nshifts; i++) |
c3e23647 | 400 | { |
5fbb0954 | 401 | token_number_t symbol; |
837491d8 | 402 | int shift_state = shiftp->shifts[i]; |
d954473d AD |
403 | if (!shift_state) |
404 | continue; | |
c3e23647 | 405 | |
29e88316 | 406 | symbol = states[shift_state]->accessing_symbol; |
c3e23647 | 407 | |
d954473d AD |
408 | if (ISVAR (symbol)) |
409 | break; | |
c3e23647 | 410 | |
d954473d | 411 | actrow[symbol] = shift_state; |
c3e23647 | 412 | |
d954473d AD |
413 | /* Do not use any default reduction if there is a shift for |
414 | error */ | |
007a50a4 | 415 | if (symbol == errtoken->number) |
d954473d | 416 | nodefault = 1; |
c3e23647 RS |
417 | } |
418 | ||
36281465 | 419 | /* See which tokens are an explicit error in this state (due to |
62a3e4f0 | 420 | %nonassoc). For them, record SHRT_MIN as the action. */ |
2cec70b9 AD |
421 | for (i = 0; i < errp->nerrs; i++) |
422 | { | |
423 | int symbol = errp->errs[i]; | |
62a3e4f0 | 424 | actrow[symbol] = SHRT_MIN; |
2cec70b9 | 425 | } |
c3e23647 | 426 | |
36281465 AD |
427 | /* Now find the most common reduction and make it the default action |
428 | for this state. */ | |
c3e23647 | 429 | |
80dac38c | 430 | if (redp->nreds >= 1 && !nodefault) |
c3e23647 | 431 | { |
f9507c28 | 432 | if (state->consistent) |
c3e23647 RS |
433 | default_rule = redp->rules[0]; |
434 | else | |
435 | { | |
7a5350ba | 436 | int max = 0; |
f9507c28 | 437 | for (i = 0; i < state->nlookaheads; i++) |
c3e23647 | 438 | { |
7a5350ba | 439 | int count = 0; |
b0299a2e | 440 | int rule = -LArule[state->lookaheadsp + i]->number; |
837491d8 | 441 | int j; |
9ee3c97b | 442 | |
c3e23647 | 443 | for (j = 0; j < ntokens; j++) |
837491d8 AD |
444 | if (actrow[j] == rule) |
445 | count++; | |
9ee3c97b | 446 | |
c3e23647 RS |
447 | if (count > max) |
448 | { | |
449 | max = count; | |
450 | default_rule = rule; | |
451 | } | |
452 | } | |
9ee3c97b | 453 | |
c3e23647 RS |
454 | /* actions which match the default are replaced with zero, |
455 | which means "use the default" */ | |
9ee3c97b | 456 | |
c3e23647 RS |
457 | if (max > 0) |
458 | { | |
837491d8 | 459 | int j; |
c3e23647 | 460 | for (j = 0; j < ntokens; j++) |
837491d8 AD |
461 | if (actrow[j] == default_rule) |
462 | actrow[j] = 0; | |
9ee3c97b | 463 | |
ceed8467 | 464 | default_rule = -default_rule; |
c3e23647 RS |
465 | } |
466 | } | |
467 | } | |
468 | ||
469 | /* If have no default rule, the default is an error. | |
470 | So replace any action which says "error" with "use default". */ | |
471 | ||
472 | if (default_rule == 0) | |
837491d8 | 473 | for (i = 0; i < ntokens; i++) |
62a3e4f0 | 474 | if (actrow[i] == SHRT_MIN) |
837491d8 | 475 | actrow[i] = 0; |
c3e23647 | 476 | |
36281465 | 477 | return default_rule; |
c3e23647 RS |
478 | } |
479 | ||
480 | ||
4a120d45 | 481 | static void |
d2729d44 | 482 | save_row (int state) |
c3e23647 | 483 | { |
6c89f1c1 AD |
484 | int i; |
485 | int count; | |
486 | short *sp; | |
487 | short *sp1; | |
488 | short *sp2; | |
c3e23647 RS |
489 | |
490 | count = 0; | |
491 | for (i = 0; i < ntokens; i++) | |
796d61fb AD |
492 | if (actrow[i] != 0) |
493 | count++; | |
c3e23647 RS |
494 | |
495 | if (count == 0) | |
496 | return; | |
497 | ||
d7913476 AD |
498 | froms[state] = sp1 = sp = XCALLOC (short, count); |
499 | tos[state] = sp2 = XCALLOC (short, count); | |
c3e23647 RS |
500 | |
501 | for (i = 0; i < ntokens; i++) | |
796d61fb AD |
502 | if (actrow[i] != 0) |
503 | { | |
504 | *sp1++ = i; | |
505 | *sp2++ = actrow[i]; | |
506 | } | |
c3e23647 RS |
507 | |
508 | tally[state] = count; | |
509 | width[state] = sp1[-1] - sp[0] + 1; | |
510 | } | |
511 | ||
512 | ||
6c89f1c1 AD |
513 | /*------------------------------------------------------------------. |
514 | | Figure out the actions for the specified state, indexed by | | |
515 | | lookahead token type. | | |
516 | | | | |
f2acea59 AD |
517 | | The YYDEFACT table is output now. The detailed info is saved for | |
518 | | putting into YYTABLE later. | | |
6c89f1c1 | 519 | `------------------------------------------------------------------*/ |
c3e23647 | 520 | |
4a120d45 | 521 | static void |
6c89f1c1 | 522 | token_actions (void) |
c3e23647 | 523 | { |
602bbf31 | 524 | size_t i; |
d7913476 | 525 | short *yydefact = XCALLOC (short, nstates); |
c3e23647 | 526 | |
d7913476 | 527 | actrow = XCALLOC (short, ntokens); |
f2acea59 | 528 | for (i = 0; i < nstates; ++i) |
c3e23647 | 529 | { |
29e88316 | 530 | yydefact[i] = action_row (states[i]); |
6c89f1c1 | 531 | save_row (i); |
c3e23647 | 532 | } |
bbb5bcc6 | 533 | |
62a3e4f0 | 534 | output_short_table (&format_obstack, yydefact, |
26f609ff | 535 | yydefact[0], 1, nstates); |
f87685c3 | 536 | muscle_insert ("defact", obstack_finish (&format_obstack)); |
342b8b6e | 537 | |
26f609ff | 538 | XFREE (actrow); |
d7913476 | 539 | XFREE (yydefact); |
c3e23647 RS |
540 | } |
541 | ||
542 | ||
3f96f4dc AD |
543 | /*-----------------------------. |
544 | | Output the actions to OOUT. | | |
545 | `-----------------------------*/ | |
546 | ||
9b3add5b | 547 | void |
be2a1a68 | 548 | actions_output (FILE *out) |
3f96f4dc AD |
549 | { |
550 | int rule; | |
551 | for (rule = 1; rule < nrules + 1; ++rule) | |
1a2b5d37 | 552 | if (rules[rule].action) |
3f96f4dc | 553 | { |
ea52d706 | 554 | fprintf (out, " case %d:\n", rule); |
3f96f4dc AD |
555 | |
556 | if (!no_lines_flag) | |
ea52d706 | 557 | fprintf (out, muscle_find ("linef"), |
1a2b5d37 | 558 | rules[rule].action_line, |
ea52d706 AD |
559 | quotearg_style (c_quoting_style, |
560 | muscle_find ("filename"))); | |
3f96f4dc AD |
561 | /* As a Bison extension, add the ending semicolon. Since some |
562 | Yacc don't do that, help people using bison as a Yacc | |
563 | finding their missing semicolons. */ | |
ea52d706 | 564 | fprintf (out, "{ %s%s }\n break;\n\n", |
1a2b5d37 | 565 | rules[rule].action, |
ea52d706 | 566 | yacc_flag ? ";" : ""); |
3f96f4dc AD |
567 | } |
568 | } | |
569 | ||
570 | ||
091e20bb AD |
571 | /*---------------------------------------. |
572 | | Output the tokens definition to OOUT. | | |
573 | `---------------------------------------*/ | |
574 | ||
9b3add5b | 575 | void |
be2a1a68 | 576 | token_definitions_output (FILE *out) |
091e20bb AD |
577 | { |
578 | int i; | |
0d8bed56 | 579 | int first = 1; |
091e20bb AD |
580 | for (i = 0; i < ntokens; ++i) |
581 | { | |
db8837cb | 582 | symbol_t *symbol = symbols[i]; |
091e20bb AD |
583 | int number = symbol->user_token_number; |
584 | ||
b87f8b21 AD |
585 | /* At this stage, if there are literal aliases, they are part of |
586 | SYMBOLS, so we should not find symbols which are the aliases | |
587 | here. */ | |
588 | assert (number != USER_NUMBER_ALIAS); | |
589 | ||
091e20bb | 590 | /* Skip error token. */ |
007a50a4 | 591 | if (symbol == errtoken) |
091e20bb | 592 | continue; |
b87f8b21 AD |
593 | |
594 | /* If this string has an alias, then it is necessarily the alias | |
595 | which is to be output. */ | |
596 | if (symbol->alias) | |
597 | symbol = symbol->alias; | |
598 | ||
599 | /* Don't output literal chars or strings (when defined only as a | |
600 | string). Note that must be done after the alias resolution: | |
601 | think about `%token 'f' "f"'. */ | |
602 | if (symbol->tag[0] == '\'' || symbol->tag[0] == '\"') | |
603 | continue; | |
091e20bb AD |
604 | |
605 | /* Don't #define nonliteral tokens whose names contain periods | |
606 | or '$' (as does the default value of the EOF token). */ | |
607 | if (strchr (symbol->tag, '.') || strchr (symbol->tag, '$')) | |
608 | continue; | |
609 | ||
83ccf991 | 610 | fprintf (out, "%s[[[%s]], [%d]]", |
0d8bed56 | 611 | first ? "" : ",\n", symbol->tag, number); |
b87f8b21 | 612 | |
0d8bed56 | 613 | first = 0; |
091e20bb AD |
614 | } |
615 | } | |
616 | ||
617 | ||
4a120d45 | 618 | static void |
d2729d44 | 619 | save_column (int symbol, int default_state) |
c3e23647 | 620 | { |
6c89f1c1 | 621 | int i; |
6c89f1c1 AD |
622 | short *sp; |
623 | short *sp1; | |
624 | short *sp2; | |
625 | int count; | |
837491d8 | 626 | int symno = symbol - ntokens + nstates; |
c3e23647 | 627 | |
43591cec AD |
628 | short begin = goto_map[symbol]; |
629 | short end = goto_map[symbol + 1]; | |
c3e23647 RS |
630 | |
631 | count = 0; | |
43591cec | 632 | for (i = begin; i < end; i++) |
796d61fb AD |
633 | if (to_state[i] != default_state) |
634 | count++; | |
c3e23647 RS |
635 | |
636 | if (count == 0) | |
637 | return; | |
638 | ||
d7913476 AD |
639 | froms[symno] = sp1 = sp = XCALLOC (short, count); |
640 | tos[symno] = sp2 = XCALLOC (short, count); | |
c3e23647 | 641 | |
43591cec | 642 | for (i = begin; i < end; i++) |
796d61fb AD |
643 | if (to_state[i] != default_state) |
644 | { | |
645 | *sp1++ = from_state[i]; | |
646 | *sp2++ = to_state[i]; | |
647 | } | |
c3e23647 RS |
648 | |
649 | tally[symno] = count; | |
650 | width[symno] = sp1[-1] - sp[0] + 1; | |
651 | } | |
652 | ||
6c89f1c1 AD |
653 | static int |
654 | default_goto (int symbol) | |
655 | { | |
602bbf31 AD |
656 | size_t i; |
657 | size_t m = goto_map[symbol]; | |
658 | size_t n = goto_map[symbol + 1]; | |
837491d8 AD |
659 | int default_state = -1; |
660 | int max = 0; | |
6c89f1c1 AD |
661 | |
662 | if (m == n) | |
663 | return -1; | |
664 | ||
665 | for (i = 0; i < nstates; i++) | |
666 | state_count[i] = 0; | |
667 | ||
668 | for (i = m; i < n; i++) | |
669 | state_count[to_state[i]]++; | |
670 | ||
6c89f1c1 | 671 | for (i = 0; i < nstates; i++) |
796d61fb AD |
672 | if (state_count[i] > max) |
673 | { | |
674 | max = state_count[i]; | |
675 | default_state = i; | |
676 | } | |
6c89f1c1 AD |
677 | |
678 | return default_state; | |
679 | } | |
680 | ||
681 | ||
682 | /*-------------------------------------------------------------------. | |
683 | | Figure out what to do after reducing with each rule, depending on | | |
684 | | the saved state from before the beginning of parsing the data that | | |
685 | | matched this rule. | | |
686 | | | | |
687 | | The YYDEFGOTO table is output now. The detailed info is saved for | | |
688 | | putting into YYTABLE later. | | |
689 | `-------------------------------------------------------------------*/ | |
690 | ||
691 | static void | |
692 | goto_actions (void) | |
693 | { | |
43591cec | 694 | int i; |
bbb5bcc6 | 695 | short *yydefgoto = XMALLOC (short, nsyms - ntokens); |
bbb5bcc6 | 696 | |
26f609ff | 697 | state_count = XCALLOC (short, nstates); |
43591cec | 698 | for (i = ntokens; i < nsyms; ++i) |
6c89f1c1 | 699 | { |
43591cec AD |
700 | int default_state = default_goto (i); |
701 | save_column (i, default_state); | |
702 | yydefgoto[i - ntokens] = default_state; | |
6c89f1c1 AD |
703 | } |
704 | ||
62a3e4f0 | 705 | output_short_table (&format_obstack, yydefgoto, |
26f609ff | 706 | yydefgoto[0], 1, nsyms - ntokens); |
f87685c3 | 707 | muscle_insert ("defgoto", obstack_finish (&format_obstack)); |
43591cec | 708 | |
d7913476 | 709 | XFREE (state_count); |
43591cec | 710 | XFREE (yydefgoto); |
6c89f1c1 | 711 | } |
c3e23647 RS |
712 | |
713 | ||
9ee3c97b AD |
714 | /* The next few functions decide how to pack the actions and gotos |
715 | information into yytable. */ | |
c3e23647 | 716 | |
4a120d45 | 717 | static void |
d2729d44 | 718 | sort_actions (void) |
c3e23647 | 719 | { |
6c89f1c1 | 720 | int i; |
c3e23647 | 721 | |
d7913476 | 722 | order = XCALLOC (short, nvectors); |
c3e23647 RS |
723 | nentries = 0; |
724 | ||
725 | for (i = 0; i < nvectors; i++) | |
796d61fb AD |
726 | if (tally[i] > 0) |
727 | { | |
837491d8 AD |
728 | int k; |
729 | int t = tally[i]; | |
730 | int w = width[i]; | |
731 | int j = nentries - 1; | |
c3e23647 | 732 | |
796d61fb AD |
733 | while (j >= 0 && (width[order[j]] < w)) |
734 | j--; | |
c3e23647 | 735 | |
796d61fb AD |
736 | while (j >= 0 && (width[order[j]] == w) && (tally[order[j]] < t)) |
737 | j--; | |
c3e23647 | 738 | |
796d61fb AD |
739 | for (k = nentries - 1; k > j; k--) |
740 | order[k + 1] = order[k]; | |
c3e23647 | 741 | |
796d61fb AD |
742 | order[j + 1] = i; |
743 | nentries++; | |
744 | } | |
c3e23647 RS |
745 | } |
746 | ||
747 | ||
4a120d45 | 748 | static int |
d2729d44 | 749 | matching_state (int vector) |
c3e23647 | 750 | { |
837491d8 | 751 | int i = order[vector]; |
6c89f1c1 AD |
752 | int t; |
753 | int w; | |
6c89f1c1 | 754 | int prev; |
c3e23647 | 755 | |
602bbf31 | 756 | if (i >= (int) nstates) |
36281465 | 757 | return -1; |
c3e23647 RS |
758 | |
759 | t = tally[i]; | |
760 | w = width[i]; | |
761 | ||
762 | for (prev = vector - 1; prev >= 0; prev--) | |
763 | { | |
837491d8 AD |
764 | int j = order[prev]; |
765 | int k; | |
766 | int match = 1; | |
767 | ||
c3e23647 | 768 | if (width[j] != w || tally[j] != t) |
36281465 | 769 | return -1; |
c3e23647 | 770 | |
c3e23647 | 771 | for (k = 0; match && k < t; k++) |
796d61fb AD |
772 | if (tos[j][k] != tos[i][k] || froms[j][k] != froms[i][k]) |
773 | match = 0; | |
c3e23647 RS |
774 | |
775 | if (match) | |
36281465 | 776 | return j; |
c3e23647 RS |
777 | } |
778 | ||
36281465 | 779 | return -1; |
c3e23647 RS |
780 | } |
781 | ||
782 | ||
4a120d45 | 783 | static int |
d2729d44 | 784 | pack_vector (int vector) |
c3e23647 | 785 | { |
837491d8 | 786 | int i = order[vector]; |
6c89f1c1 | 787 | int j; |
837491d8 | 788 | int t = tally[i]; |
6c89f1c1 | 789 | int loc = 0; |
837491d8 AD |
790 | short *from = froms[i]; |
791 | short *to = tos[i]; | |
c3e23647 | 792 | |
340ef489 | 793 | assert (t); |
c3e23647 | 794 | |
133c20e2 | 795 | for (j = lowzero - from[0]; j < (int) table_size; j++) |
c3e23647 | 796 | { |
837491d8 AD |
797 | int k; |
798 | int ok = 1; | |
c3e23647 RS |
799 | |
800 | for (k = 0; ok && k < t; k++) | |
801 | { | |
802 | loc = j + from[k]; | |
133c20e2 AD |
803 | if (loc > (int) table_size) |
804 | table_grow (loc); | |
c3e23647 RS |
805 | |
806 | if (table[loc] != 0) | |
807 | ok = 0; | |
808 | } | |
809 | ||
810 | for (k = 0; ok && k < vector; k++) | |
796d61fb AD |
811 | if (pos[k] == j) |
812 | ok = 0; | |
c3e23647 RS |
813 | |
814 | if (ok) | |
815 | { | |
816 | for (k = 0; k < t; k++) | |
817 | { | |
818 | loc = j + from[k]; | |
819 | table[loc] = to[k]; | |
820 | check[loc] = from[k]; | |
821 | } | |
822 | ||
823 | while (table[lowzero] != 0) | |
824 | lowzero++; | |
825 | ||
826 | if (loc > high) | |
827 | high = loc; | |
828 | ||
36281465 | 829 | return j; |
c3e23647 RS |
830 | } |
831 | } | |
275fc3ad AD |
832 | #define pack_vector_succeeded 0 |
833 | assert (pack_vector_succeeded); | |
3843c413 | 834 | return 0; |
c3e23647 RS |
835 | } |
836 | ||
837 | ||
6c89f1c1 AD |
838 | static void |
839 | pack_table (void) | |
840 | { | |
841 | int i; | |
842 | int place; | |
843 | int state; | |
844 | ||
d7913476 AD |
845 | base = XCALLOC (short, nvectors); |
846 | pos = XCALLOC (short, nentries); | |
133c20e2 AD |
847 | table = XCALLOC (short, table_size); |
848 | check = XCALLOC (short, table_size); | |
6c89f1c1 AD |
849 | |
850 | lowzero = 0; | |
851 | high = 0; | |
852 | ||
853 | for (i = 0; i < nvectors; i++) | |
62a3e4f0 | 854 | base[i] = SHRT_MIN; |
6c89f1c1 | 855 | |
133c20e2 | 856 | for (i = 0; i < (int) table_size; i++) |
6c89f1c1 AD |
857 | check[i] = -1; |
858 | ||
859 | for (i = 0; i < nentries; i++) | |
860 | { | |
861 | state = matching_state (i); | |
862 | ||
863 | if (state < 0) | |
864 | place = pack_vector (i); | |
865 | else | |
866 | place = base[state]; | |
867 | ||
868 | pos[i] = place; | |
869 | base[order[i]] = place; | |
870 | } | |
871 | ||
872 | for (i = 0; i < nvectors; i++) | |
873 | { | |
796d61fb AD |
874 | XFREE (froms[i]); |
875 | XFREE (tos[i]); | |
6c89f1c1 AD |
876 | } |
877 | ||
d7913476 AD |
878 | XFREE (froms); |
879 | XFREE (tos); | |
880 | XFREE (pos); | |
6c89f1c1 | 881 | } |
c3e23647 RS |
882 | |
883 | /* the following functions output yytable, yycheck | |
884 | and the vectors whose elements index the portion starts */ | |
885 | ||
4a120d45 | 886 | static void |
d2729d44 | 887 | output_base (void) |
c3e23647 | 888 | { |
26f609ff | 889 | /* Output pact. */ |
62a3e4f0 | 890 | output_short_table (&format_obstack, base, |
26f609ff | 891 | base[0], 1, nstates); |
f87685c3 | 892 | muscle_insert ("pact", obstack_finish (&format_obstack)); |
c3e23647 | 893 | |
26f609ff | 894 | /* Output pgoto. */ |
62a3e4f0 | 895 | output_short_table (&format_obstack, base, |
26f609ff | 896 | base[nstates], nstates + 1, nvectors); |
f87685c3 | 897 | muscle_insert ("pgoto", obstack_finish (&format_obstack)); |
c3e23647 | 898 | |
d7913476 | 899 | XFREE (base); |
c3e23647 RS |
900 | } |
901 | ||
902 | ||
4a120d45 | 903 | static void |
d2729d44 | 904 | output_table (void) |
c3e23647 | 905 | { |
62a3e4f0 | 906 | output_short_table (&format_obstack, table, |
26f609ff | 907 | table[0], 1, high + 1); |
f87685c3 | 908 | muscle_insert ("table", obstack_finish (&format_obstack)); |
d7913476 | 909 | XFREE (table); |
c3e23647 RS |
910 | } |
911 | ||
912 | ||
4a120d45 | 913 | static void |
d2729d44 | 914 | output_check (void) |
c3e23647 | 915 | { |
62a3e4f0 | 916 | output_short_table (&format_obstack, check, |
26f609ff | 917 | check[0], 1, high + 1); |
f87685c3 | 918 | muscle_insert ("check", obstack_finish (&format_obstack)); |
d7913476 | 919 | XFREE (check); |
c3e23647 RS |
920 | } |
921 | ||
b0940840 AD |
922 | /*-----------------------------------------------------------------. |
923 | | Compute and output yydefact, yydefgoto, yypact, yypgoto, yytable | | |
924 | | and yycheck. | | |
925 | `-----------------------------------------------------------------*/ | |
6c89f1c1 AD |
926 | |
927 | static void | |
928 | output_actions (void) | |
929 | { | |
602bbf31 | 930 | size_t i; |
6c89f1c1 | 931 | nvectors = nstates + nvars; |
c3e23647 | 932 | |
d7913476 AD |
933 | froms = XCALLOC (short *, nvectors); |
934 | tos = XCALLOC (short *, nvectors); | |
935 | tally = XCALLOC (short, nvectors); | |
936 | width = XCALLOC (short, nvectors); | |
6c89f1c1 AD |
937 | |
938 | token_actions (); | |
914feea9 | 939 | bitsetv_free (LA); |
b0299a2e | 940 | free (LArule); |
6c89f1c1 AD |
941 | |
942 | goto_actions (); | |
d7913476 AD |
943 | XFREE (goto_map + ntokens); |
944 | XFREE (from_state); | |
945 | XFREE (to_state); | |
6c89f1c1 AD |
946 | |
947 | sort_actions (); | |
948 | pack_table (); | |
4e5caae2 | 949 | |
6c89f1c1 AD |
950 | output_base (); |
951 | output_table (); | |
4e5caae2 | 952 | |
6c89f1c1 | 953 | output_check (); |
49701457 AD |
954 | |
955 | for (i = 0; i < nstates; ++i) | |
956 | { | |
29e88316 AD |
957 | free (states[i]->shifts); |
958 | XFREE (states[i]->reductions); | |
959 | free (states[i]->errs); | |
960 | free (states[i]); | |
49701457 | 961 | } |
29e88316 | 962 | XFREE (states); |
6c89f1c1 | 963 | } |
c3e23647 | 964 | |
652def80 | 965 | \f |
1239777d AD |
966 | /*---------------------------. |
967 | | Call the skeleton parser. | | |
968 | `---------------------------*/ | |
c3e23647 | 969 | |
4a120d45 | 970 | static void |
1239777d | 971 | output_skeleton (void) |
9b3add5b | 972 | { |
be2a1a68 | 973 | /* Store the definition of all the muscles. */ |
d0039cbc | 974 | const char *tempdir = getenv ("TMPDIR"); |
381fb12e AD |
975 | char *tempfile = NULL; |
976 | FILE *out = NULL; | |
381fb12e AD |
977 | int fd; |
978 | ||
979 | if (tempdir == NULL) | |
980 | tempdir = DEFAULT_TMPDIR; | |
981 | tempfile = xmalloc (strlen (tempdir) + 11); | |
982 | sprintf (tempfile, "%s/bsnXXXXXX", tempdir); | |
983 | fd = mkstemp (tempfile); | |
984 | if (fd == -1) | |
985 | error (EXIT_FAILURE, errno, "%s", tempfile); | |
986 | ||
987 | out = fdopen (fd, "w"); | |
988 | if (out == NULL) | |
989 | error (EXIT_FAILURE, errno, "%s", tempfile); | |
990 | ||
991 | /* There are no comments, especially not `#': we do want M4 expansion | |
992 | after `#': think of CPP macros! */ | |
993 | fputs ("m4_changecom()\n", out); | |
994 | fputs ("m4_init()\n", out); | |
995 | ||
996 | fputs ("m4_define([b4_actions], \n[[", out); | |
997 | actions_output (out); | |
998 | fputs ("]])\n\n", out); | |
999 | ||
0d8bed56 | 1000 | fputs ("m4_define([b4_tokens], \n[", out); |
381fb12e | 1001 | token_definitions_output (out); |
0d8bed56 | 1002 | fputs ("])\n\n", out); |
be2a1a68 | 1003 | |
381fb12e | 1004 | muscles_m4_output (out); |
be2a1a68 | 1005 | |
381fb12e AD |
1006 | fputs ("m4_wrap([m4_divert_pop(0)])\n", out); |
1007 | fputs ("m4_divert_push(0)dnl\n", out); | |
1008 | xfclose (out); | |
be2a1a68 AD |
1009 | |
1010 | /* Invoke m4 on the definition of the muscles, and the skeleton. */ | |
1011 | { | |
1012 | const char *bison_pkgdatadir = getenv ("BISON_PKGDATADIR"); | |
abe017f6 AD |
1013 | const char *m4 = getenv ("M4"); |
1014 | if (!m4) | |
1015 | m4 = M4; | |
be2a1a68 AD |
1016 | if (!bison_pkgdatadir) |
1017 | bison_pkgdatadir = PKGDATADIR; | |
381fb12e AD |
1018 | if (trace_flag) |
1019 | fprintf (stderr, | |
abe017f6 AD |
1020 | "running: %s -I %s m4sugar/m4sugar.m4 %s %s\n", |
1021 | m4, bison_pkgdatadir, tempfile, skeleton); | |
1022 | skel_in = readpipe (m4, | |
1023 | "-I", bison_pkgdatadir, | |
be2a1a68 | 1024 | "m4sugar/m4sugar.m4", |
381fb12e | 1025 | tempfile, |
be2a1a68 AD |
1026 | skeleton, |
1027 | NULL); | |
1028 | if (!skel_in) | |
1029 | error (EXIT_FAILURE, errno, "cannot run m4"); | |
1030 | skel_lex (); | |
381fb12e AD |
1031 | |
1032 | /* If `debugging', keep this file alive. */ | |
1033 | if (!trace_flag) | |
1034 | unlink (tempfile); | |
be2a1a68 | 1035 | } |
26f609ff RA |
1036 | } |
1037 | ||
1038 | static void | |
1039 | prepare (void) | |
1040 | { | |
11d82f03 | 1041 | MUSCLE_INSERT_INT ("last", high); |
62a3e4f0 | 1042 | MUSCLE_INSERT_INT ("flag", SHRT_MIN); |
11d82f03 MA |
1043 | MUSCLE_INSERT_INT ("pure", pure_parser); |
1044 | MUSCLE_INSERT_INT ("nsym", nsyms); | |
1045 | MUSCLE_INSERT_INT ("debug", debug_flag); | |
1046 | MUSCLE_INSERT_INT ("final", final_state); | |
007a50a4 AD |
1047 | MUSCLE_INSERT_INT ("undef_token_number", undeftoken->number); |
1048 | MUSCLE_INSERT_INT ("user_token_number_max", max_user_token_number); | |
be2a1a68 | 1049 | MUSCLE_INSERT_INT ("error_verbose", error_verbose); |
b5b61c61 | 1050 | MUSCLE_INSERT_STRING ("prefix", spec_name_prefix ? spec_name_prefix : "yy"); |
11d82f03 | 1051 | |
b85810ae AD |
1052 | /* FIXME: This is wrong: the muscles should decide whether they hold |
1053 | a copy or not, but the situation is too obscure currently. */ | |
be2a1a68 AD |
1054 | MUSCLE_INSERT_STRING ("output_infix", output_infix ? output_infix : ""); |
1055 | MUSCLE_INSERT_STRING ("output_prefix", short_base_name); | |
1056 | MUSCLE_INSERT_STRING ("output_parser_name", parser_file_name); | |
1057 | MUSCLE_INSERT_STRING ("output_header_name", spec_defines_file); | |
b85810ae | 1058 | |
11d82f03 MA |
1059 | MUSCLE_INSERT_INT ("nnts", nvars); |
1060 | MUSCLE_INSERT_INT ("nrules", nrules); | |
1061 | MUSCLE_INSERT_INT ("nstates", nstates); | |
1062 | MUSCLE_INSERT_INT ("ntokens", ntokens); | |
1063 | ||
be2a1a68 AD |
1064 | MUSCLE_INSERT_INT ("locations_flag", locations_flag); |
1065 | MUSCLE_INSERT_INT ("defines_flag", defines_flag); | |
381fb12e AD |
1066 | |
1067 | /* Copy definitions in directive. */ | |
0dd1580a RA |
1068 | obstack_1grow (&pre_prologue_obstack, 0); |
1069 | obstack_1grow (&post_prologue_obstack, 0); | |
1070 | muscle_insert ("pre_prologue", obstack_finish (&pre_prologue_obstack)); | |
1071 | muscle_insert ("post_prologue", obstack_finish (&post_prologue_obstack)); | |
381fb12e AD |
1072 | |
1073 | /* Find the right skeleton file. */ | |
1074 | if (!skeleton) | |
fdbcd8e2 | 1075 | skeleton = "bison.simple"; |
381fb12e AD |
1076 | |
1077 | /* Parse the skeleton file and output the needed parsers. */ | |
1078 | muscle_insert ("skeleton", skeleton); | |
26f609ff | 1079 | } |
c3e23647 | 1080 | |
93ede233 | 1081 | |
6c89f1c1 AD |
1082 | /*----------------------------------------------------------. |
1083 | | Output the parsing tables and the parser code to ftable. | | |
1084 | `----------------------------------------------------------*/ | |
c3e23647 | 1085 | |
6c89f1c1 AD |
1086 | void |
1087 | output (void) | |
1088 | { | |
f87685c3 | 1089 | obstack_init (&format_obstack); |
dd60faec | 1090 | |
b0940840 AD |
1091 | prepare_tokens (); |
1092 | prepare_rules (); | |
1093 | prepare_states (); | |
6c89f1c1 | 1094 | output_actions (); |
342b8b6e | 1095 | |
26f609ff | 1096 | prepare (); |
652def80 | 1097 | |
9b3add5b RA |
1098 | /* Process the selected skeleton file. */ |
1099 | output_skeleton (); | |
1100 | ||
f499b062 AD |
1101 | obstack_free (&muscle_obstack, NULL); |
1102 | obstack_free (&format_obstack, NULL); | |
1103 | obstack_free (&action_obstack, NULL); | |
0dd1580a RA |
1104 | obstack_free (&pre_prologue_obstack, NULL); |
1105 | obstack_free (&post_prologue_obstack, NULL); | |
c3e23647 | 1106 | } |