Change copyright header to refer to version 3 of the GNU General Public License and...
[gcc.git] / gcc / genemit.c
1 /* Generate code from machine description to emit insns as rtl.
2 Copyright (C) 1987, 1988, 1991, 1994, 1995, 1997, 1998, 1999, 2000, 2001,
3 2003, 2004, 2005, 2007 Free Software Foundation, Inc.
4
5 This file is part of GCC.
6
7 GCC is free software; you can redistribute it and/or modify it under
8 the terms of the GNU General Public License as published by the Free
9 Software Foundation; either version 3, or (at your option) any later
10 version.
11
12 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
13 WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
15 for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
20
21
22 #include "bconfig.h"
23 #include "system.h"
24 #include "coretypes.h"
25 #include "tm.h"
26 #include "rtl.h"
27 #include "errors.h"
28 #include "gensupport.h"
29
30
31 static int max_opno;
32 static int max_dup_opno;
33 static int max_scratch_opno;
34 static int insn_code_number;
35 static int insn_index_number;
36
37 /* Data structure for recording the patterns of insns that have CLOBBERs.
38 We use this to output a function that adds these CLOBBERs to a
39 previously-allocated PARALLEL expression. */
40
41 struct clobber_pat
42 {
43 struct clobber_ent *insns;
44 rtx pattern;
45 int first_clobber;
46 struct clobber_pat *next;
47 int has_hard_reg;
48 } *clobber_list;
49
50 /* Records one insn that uses the clobber list. */
51
52 struct clobber_ent
53 {
54 int code_number; /* Counts only insns. */
55 struct clobber_ent *next;
56 };
57
58 static void max_operand_1 (rtx);
59 static int max_operand_vec (rtx, int);
60 static void print_code (RTX_CODE);
61 static void gen_exp (rtx, enum rtx_code, char *);
62 static void gen_insn (rtx, int);
63 static void gen_expand (rtx);
64 static void gen_split (rtx);
65 static void output_add_clobbers (void);
66 static void output_added_clobbers_hard_reg_p (void);
67 static void gen_rtx_scratch (rtx, enum rtx_code);
68 static void output_peephole2_scratches (rtx);
69
70 \f
71 static void
72 max_operand_1 (rtx x)
73 {
74 RTX_CODE code;
75 int i;
76 int len;
77 const char *fmt;
78
79 if (x == 0)
80 return;
81
82 code = GET_CODE (x);
83
84 if (code == MATCH_OPERAND || code == MATCH_OPERATOR
85 || code == MATCH_PARALLEL)
86 max_opno = MAX (max_opno, XINT (x, 0));
87 if (code == MATCH_DUP || code == MATCH_OP_DUP || code == MATCH_PAR_DUP)
88 max_dup_opno = MAX (max_dup_opno, XINT (x, 0));
89 if (code == MATCH_SCRATCH)
90 max_scratch_opno = MAX (max_scratch_opno, XINT (x, 0));
91
92 fmt = GET_RTX_FORMAT (code);
93 len = GET_RTX_LENGTH (code);
94 for (i = 0; i < len; i++)
95 {
96 if (fmt[i] == 'e' || fmt[i] == 'u')
97 max_operand_1 (XEXP (x, i));
98 else if (fmt[i] == 'E')
99 {
100 int j;
101 for (j = 0; j < XVECLEN (x, i); j++)
102 max_operand_1 (XVECEXP (x, i, j));
103 }
104 }
105 }
106
107 static int
108 max_operand_vec (rtx insn, int arg)
109 {
110 int len = XVECLEN (insn, arg);
111 int i;
112
113 max_opno = -1;
114 max_dup_opno = -1;
115 max_scratch_opno = -1;
116
117 for (i = 0; i < len; i++)
118 max_operand_1 (XVECEXP (insn, arg, i));
119
120 return max_opno + 1;
121 }
122 \f
123 static void
124 print_code (RTX_CODE code)
125 {
126 const char *p1;
127 for (p1 = GET_RTX_NAME (code); *p1; p1++)
128 putchar (TOUPPER(*p1));
129 }
130
131 static void
132 gen_rtx_scratch (rtx x, enum rtx_code subroutine_type)
133 {
134 if (subroutine_type == DEFINE_PEEPHOLE2)
135 {
136 printf ("operand%d", XINT (x, 0));
137 }
138 else
139 {
140 printf ("gen_rtx_SCRATCH (%smode)", GET_MODE_NAME (GET_MODE (x)));
141 }
142 }
143
144 /* Print a C expression to construct an RTX just like X,
145 substituting any operand references appearing within. */
146
147 static void
148 gen_exp (rtx x, enum rtx_code subroutine_type, char *used)
149 {
150 RTX_CODE code;
151 int i;
152 int len;
153 const char *fmt;
154
155 if (x == 0)
156 {
157 printf ("NULL_RTX");
158 return;
159 }
160
161 code = GET_CODE (x);
162
163 switch (code)
164 {
165 case MATCH_OPERAND:
166 case MATCH_DUP:
167 if (used)
168 {
169 if (used[XINT (x, 0)])
170 {
171 printf ("copy_rtx (operand%d)", XINT (x, 0));
172 return;
173 }
174 used[XINT (x, 0)] = 1;
175 }
176 printf ("operand%d", XINT (x, 0));
177 return;
178
179 case MATCH_OP_DUP:
180 printf ("gen_rtx_fmt_");
181 for (i = 0; i < XVECLEN (x, 1); i++)
182 printf ("e");
183 printf (" (GET_CODE (operand%d), ", XINT (x, 0));
184 if (GET_MODE (x) == VOIDmode)
185 printf ("GET_MODE (operand%d)", XINT (x, 0));
186 else
187 printf ("%smode", GET_MODE_NAME (GET_MODE (x)));
188 for (i = 0; i < XVECLEN (x, 1); i++)
189 {
190 printf (",\n\t\t");
191 gen_exp (XVECEXP (x, 1, i), subroutine_type, used);
192 }
193 printf (")");
194 return;
195
196 case MATCH_OPERATOR:
197 printf ("gen_rtx_fmt_");
198 for (i = 0; i < XVECLEN (x, 2); i++)
199 printf ("e");
200 printf (" (GET_CODE (operand%d)", XINT (x, 0));
201 printf (", %smode", GET_MODE_NAME (GET_MODE (x)));
202 for (i = 0; i < XVECLEN (x, 2); i++)
203 {
204 printf (",\n\t\t");
205 gen_exp (XVECEXP (x, 2, i), subroutine_type, used);
206 }
207 printf (")");
208 return;
209
210 case MATCH_PARALLEL:
211 case MATCH_PAR_DUP:
212 printf ("operand%d", XINT (x, 0));
213 return;
214
215 case MATCH_SCRATCH:
216 gen_rtx_scratch (x, subroutine_type);
217 return;
218
219 case ADDRESS:
220 fatal ("ADDRESS expression code used in named instruction pattern");
221
222 case PC:
223 printf ("pc_rtx");
224 return;
225 case CLOBBER:
226 if (REG_P (XEXP (x, 0)))
227 {
228 printf ("gen_hard_reg_clobber (%smode, %i)", GET_MODE_NAME (GET_MODE (XEXP (x, 0))),
229 REGNO (XEXP (x, 0)));
230 return;
231 }
232 break;
233
234 case CC0:
235 printf ("cc0_rtx");
236 return;
237
238 case CONST_INT:
239 if (INTVAL (x) == 0)
240 printf ("const0_rtx");
241 else if (INTVAL (x) == 1)
242 printf ("const1_rtx");
243 else if (INTVAL (x) == -1)
244 printf ("constm1_rtx");
245 else if (-MAX_SAVED_CONST_INT <= INTVAL (x)
246 && INTVAL (x) <= MAX_SAVED_CONST_INT)
247 printf ("const_int_rtx[MAX_SAVED_CONST_INT + (%d)]",
248 (int) INTVAL (x));
249 else if (INTVAL (x) == STORE_FLAG_VALUE)
250 printf ("const_true_rtx");
251 else
252 {
253 printf ("GEN_INT (");
254 printf (HOST_WIDE_INT_PRINT_DEC_C, INTVAL (x));
255 printf (")");
256 }
257 return;
258
259 case CONST_DOUBLE:
260 /* These shouldn't be written in MD files. Instead, the appropriate
261 routines in varasm.c should be called. */
262 gcc_unreachable ();
263
264 default:
265 break;
266 }
267
268 printf ("gen_rtx_");
269 print_code (code);
270 printf (" (%smode", GET_MODE_NAME (GET_MODE (x)));
271
272 fmt = GET_RTX_FORMAT (code);
273 len = GET_RTX_LENGTH (code);
274 for (i = 0; i < len; i++)
275 {
276 if (fmt[i] == '0')
277 break;
278 printf (",\n\t");
279 switch (fmt[i])
280 {
281 case 'e': case 'u':
282 gen_exp (XEXP (x, i), subroutine_type, used);
283 break;
284
285 case 'i':
286 printf ("%u", XINT (x, i));
287 break;
288
289 case 's':
290 printf ("\"%s\"", XSTR (x, i));
291 break;
292
293 case 'E':
294 {
295 int j;
296 printf ("gen_rtvec (%d", XVECLEN (x, i));
297 for (j = 0; j < XVECLEN (x, i); j++)
298 {
299 printf (",\n\t\t");
300 gen_exp (XVECEXP (x, i, j), subroutine_type, used);
301 }
302 printf (")");
303 break;
304 }
305
306 default:
307 gcc_unreachable ();
308 }
309 }
310 printf (")");
311 }
312 \f
313 /* Generate the `gen_...' function for a DEFINE_INSN. */
314
315 static void
316 gen_insn (rtx insn, int lineno)
317 {
318 int operands;
319 int i;
320
321 /* See if the pattern for this insn ends with a group of CLOBBERs of (hard)
322 registers or MATCH_SCRATCHes. If so, store away the information for
323 later. */
324
325 if (XVEC (insn, 1))
326 {
327 int has_hard_reg = 0;
328
329 for (i = XVECLEN (insn, 1) - 1; i > 0; i--)
330 {
331 if (GET_CODE (XVECEXP (insn, 1, i)) != CLOBBER)
332 break;
333
334 if (REG_P (XEXP (XVECEXP (insn, 1, i), 0)))
335 has_hard_reg = 1;
336 else if (GET_CODE (XEXP (XVECEXP (insn, 1, i), 0)) != MATCH_SCRATCH)
337 break;
338 }
339
340 if (i != XVECLEN (insn, 1) - 1)
341 {
342 struct clobber_pat *p;
343 struct clobber_ent *link = XNEW (struct clobber_ent);
344 int j;
345
346 link->code_number = insn_code_number;
347
348 /* See if any previous CLOBBER_LIST entry is the same as this
349 one. */
350
351 for (p = clobber_list; p; p = p->next)
352 {
353 if (p->first_clobber != i + 1
354 || XVECLEN (p->pattern, 1) != XVECLEN (insn, 1))
355 continue;
356
357 for (j = i + 1; j < XVECLEN (insn, 1); j++)
358 {
359 rtx old = XEXP (XVECEXP (p->pattern, 1, j), 0);
360 rtx new = XEXP (XVECEXP (insn, 1, j), 0);
361
362 /* OLD and NEW are the same if both are to be a SCRATCH
363 of the same mode,
364 or if both are registers of the same mode and number. */
365 if (! (GET_MODE (old) == GET_MODE (new)
366 && ((GET_CODE (old) == MATCH_SCRATCH
367 && GET_CODE (new) == MATCH_SCRATCH)
368 || (REG_P (old) && REG_P (new)
369 && REGNO (old) == REGNO (new)))))
370 break;
371 }
372
373 if (j == XVECLEN (insn, 1))
374 break;
375 }
376
377 if (p == 0)
378 {
379 p = XNEW (struct clobber_pat);
380
381 p->insns = 0;
382 p->pattern = insn;
383 p->first_clobber = i + 1;
384 p->next = clobber_list;
385 p->has_hard_reg = has_hard_reg;
386 clobber_list = p;
387 }
388
389 link->next = p->insns;
390 p->insns = link;
391 }
392 }
393
394 /* Don't mention instructions whose names are the null string
395 or begin with '*'. They are in the machine description just
396 to be recognized. */
397 if (XSTR (insn, 0)[0] == 0 || XSTR (insn, 0)[0] == '*')
398 return;
399
400 printf ("/* %s:%d */\n", read_rtx_filename, lineno);
401
402 /* Find out how many operands this function has. */
403 operands = max_operand_vec (insn, 1);
404 if (max_dup_opno >= operands)
405 fatal ("match_dup operand number has no match_operand");
406
407 /* Output the function name and argument declarations. */
408 printf ("rtx\ngen_%s (", XSTR (insn, 0));
409 if (operands)
410 for (i = 0; i < operands; i++)
411 if (i)
412 printf (",\n\trtx operand%d ATTRIBUTE_UNUSED", i);
413 else
414 printf ("rtx operand%d ATTRIBUTE_UNUSED", i);
415 else
416 printf ("void");
417 printf (")\n");
418 printf ("{\n");
419
420 /* Output code to construct and return the rtl for the instruction body. */
421
422 if (XVECLEN (insn, 1) == 1)
423 {
424 printf (" return ");
425 gen_exp (XVECEXP (insn, 1, 0), DEFINE_INSN, NULL);
426 printf (";\n}\n\n");
427 }
428 else
429 {
430 char *used = XCNEWVEC (char, operands);
431
432 printf (" return gen_rtx_PARALLEL (VOIDmode, gen_rtvec (%d",
433 XVECLEN (insn, 1));
434
435 for (i = 0; i < XVECLEN (insn, 1); i++)
436 {
437 printf (",\n\t\t");
438 gen_exp (XVECEXP (insn, 1, i), DEFINE_INSN, used);
439 }
440 printf ("));\n}\n\n");
441 XDELETEVEC (used);
442 }
443 }
444 \f
445 /* Generate the `gen_...' function for a DEFINE_EXPAND. */
446
447 static void
448 gen_expand (rtx expand)
449 {
450 int operands;
451 int i;
452 char *used;
453
454 if (strlen (XSTR (expand, 0)) == 0)
455 fatal ("define_expand lacks a name");
456 if (XVEC (expand, 1) == 0)
457 fatal ("define_expand for %s lacks a pattern", XSTR (expand, 0));
458
459 /* Find out how many operands this function has. */
460 operands = max_operand_vec (expand, 1);
461
462 /* Output the function name and argument declarations. */
463 printf ("rtx\ngen_%s (", XSTR (expand, 0));
464 if (operands)
465 for (i = 0; i < operands; i++)
466 if (i)
467 printf (",\n\trtx operand%d", i);
468 else
469 printf ("rtx operand%d", i);
470 else
471 printf ("void");
472 printf (")\n");
473 printf ("{\n");
474
475 /* If we don't have any C code to write, only one insn is being written,
476 and no MATCH_DUPs are present, we can just return the desired insn
477 like we do for a DEFINE_INSN. This saves memory. */
478 if ((XSTR (expand, 3) == 0 || *XSTR (expand, 3) == '\0')
479 && operands > max_dup_opno
480 && XVECLEN (expand, 1) == 1)
481 {
482 printf (" return ");
483 gen_exp (XVECEXP (expand, 1, 0), DEFINE_EXPAND, NULL);
484 printf (";\n}\n\n");
485 return;
486 }
487
488 /* For each operand referred to only with MATCH_DUPs,
489 make a local variable. */
490 for (i = operands; i <= max_dup_opno; i++)
491 printf (" rtx operand%d;\n", i);
492 for (; i <= max_scratch_opno; i++)
493 printf (" rtx operand%d ATTRIBUTE_UNUSED;\n", i);
494 printf (" rtx _val = 0;\n");
495 printf (" start_sequence ();\n");
496
497 /* The fourth operand of DEFINE_EXPAND is some code to be executed
498 before the actual construction.
499 This code expects to refer to `operands'
500 just as the output-code in a DEFINE_INSN does,
501 but here `operands' is an automatic array.
502 So copy the operand values there before executing it. */
503 if (XSTR (expand, 3) && *XSTR (expand, 3))
504 {
505 printf (" {\n");
506 if (operands > 0 || max_dup_opno >= 0 || max_scratch_opno >= 0)
507 printf (" rtx operands[%d];\n",
508 MAX (operands, MAX (max_scratch_opno, max_dup_opno) + 1));
509 /* Output code to copy the arguments into `operands'. */
510 for (i = 0; i < operands; i++)
511 printf (" operands[%d] = operand%d;\n", i, i);
512
513 /* Output the special code to be executed before the sequence
514 is generated. */
515 print_rtx_ptr_loc (XSTR (expand, 3));
516 printf ("%s\n", XSTR (expand, 3));
517
518 /* Output code to copy the arguments back out of `operands'
519 (unless we aren't going to use them at all). */
520 if (XVEC (expand, 1) != 0)
521 {
522 for (i = 0; i < operands; i++)
523 printf (" operand%d = operands[%d];\n", i, i);
524 for (; i <= max_dup_opno; i++)
525 printf (" operand%d = operands[%d];\n", i, i);
526 for (; i <= max_scratch_opno; i++)
527 printf (" operand%d = operands[%d];\n", i, i);
528 }
529 printf (" }\n");
530 }
531
532 /* Output code to construct the rtl for the instruction bodies.
533 Use emit_insn to add them to the sequence being accumulated.
534 But don't do this if the user's code has set `no_more' nonzero. */
535
536 used = XCNEWVEC (char,
537 MAX (operands, MAX (max_scratch_opno, max_dup_opno) + 1));
538
539 for (i = 0; i < XVECLEN (expand, 1); i++)
540 {
541 rtx next = XVECEXP (expand, 1, i);
542 if ((GET_CODE (next) == SET && GET_CODE (SET_DEST (next)) == PC)
543 || (GET_CODE (next) == PARALLEL
544 && ((GET_CODE (XVECEXP (next, 0, 0)) == SET
545 && GET_CODE (SET_DEST (XVECEXP (next, 0, 0))) == PC)
546 || GET_CODE (XVECEXP (next, 0, 0)) == RETURN))
547 || GET_CODE (next) == RETURN)
548 printf (" emit_jump_insn (");
549 else if ((GET_CODE (next) == SET && GET_CODE (SET_SRC (next)) == CALL)
550 || GET_CODE (next) == CALL
551 || (GET_CODE (next) == PARALLEL
552 && GET_CODE (XVECEXP (next, 0, 0)) == SET
553 && GET_CODE (SET_SRC (XVECEXP (next, 0, 0))) == CALL)
554 || (GET_CODE (next) == PARALLEL
555 && GET_CODE (XVECEXP (next, 0, 0)) == CALL))
556 printf (" emit_call_insn (");
557 else if (LABEL_P (next))
558 printf (" emit_label (");
559 else if (GET_CODE (next) == MATCH_OPERAND
560 || GET_CODE (next) == MATCH_DUP
561 || GET_CODE (next) == MATCH_OPERATOR
562 || GET_CODE (next) == MATCH_OP_DUP
563 || GET_CODE (next) == MATCH_PARALLEL
564 || GET_CODE (next) == MATCH_PAR_DUP
565 || GET_CODE (next) == PARALLEL)
566 printf (" emit (");
567 else
568 printf (" emit_insn (");
569 gen_exp (next, DEFINE_EXPAND, used);
570 printf (");\n");
571 if (GET_CODE (next) == SET && GET_CODE (SET_DEST (next)) == PC
572 && GET_CODE (SET_SRC (next)) == LABEL_REF)
573 printf (" emit_barrier ();");
574 }
575
576 XDELETEVEC (used);
577
578 /* Call `get_insns' to extract the list of all the
579 insns emitted within this gen_... function. */
580
581 printf (" _val = get_insns ();\n");
582 printf (" end_sequence ();\n");
583 printf (" return _val;\n}\n\n");
584 }
585
586 /* Like gen_expand, but generates insns resulting from splitting SPLIT. */
587
588 static void
589 gen_split (rtx split)
590 {
591 int i;
592 int operands;
593 const char *const name =
594 ((GET_CODE (split) == DEFINE_PEEPHOLE2) ? "peephole2" : "split");
595 const char *unused;
596 char *used;
597
598 if (XVEC (split, 0) == 0)
599 fatal ("define_%s (definition %d) lacks a pattern", name,
600 insn_index_number);
601 else if (XVEC (split, 2) == 0)
602 fatal ("define_%s (definition %d) lacks a replacement pattern", name,
603 insn_index_number);
604
605 /* Find out how many operands this function has. */
606
607 max_operand_vec (split, 2);
608 operands = MAX (max_opno, MAX (max_dup_opno, max_scratch_opno)) + 1;
609 unused = (operands == 0 ? " ATTRIBUTE_UNUSED" : "");
610 used = XCNEWVEC (char, operands);
611
612 /* Output the prototype, function name and argument declarations. */
613 if (GET_CODE (split) == DEFINE_PEEPHOLE2)
614 {
615 printf ("extern rtx gen_%s_%d (rtx, rtx *);\n",
616 name, insn_code_number);
617 printf ("rtx\ngen_%s_%d (rtx curr_insn ATTRIBUTE_UNUSED, rtx *operands%s)\n",
618 name, insn_code_number, unused);
619 }
620 else
621 {
622 printf ("extern rtx gen_split_%d (rtx, rtx *);\n", insn_code_number);
623 printf ("rtx\ngen_split_%d (rtx curr_insn ATTRIBUTE_UNUSED, rtx *operands%s)\n",
624 insn_code_number, unused);
625 }
626 printf ("{\n");
627
628 /* Declare all local variables. */
629 for (i = 0; i < operands; i++)
630 printf (" rtx operand%d;\n", i);
631 printf (" rtx _val = 0;\n");
632
633 if (GET_CODE (split) == DEFINE_PEEPHOLE2)
634 output_peephole2_scratches (split);
635
636 printf (" start_sequence ();\n");
637
638 /* The fourth operand of DEFINE_SPLIT is some code to be executed
639 before the actual construction. */
640
641 if (XSTR (split, 3))
642 {
643 print_rtx_ptr_loc (XSTR (split, 3));
644 printf ("%s\n", XSTR (split, 3));
645 }
646
647 /* Output code to copy the arguments back out of `operands' */
648 for (i = 0; i < operands; i++)
649 printf (" operand%d = operands[%d];\n", i, i);
650
651 /* Output code to construct the rtl for the instruction bodies.
652 Use emit_insn to add them to the sequence being accumulated.
653 But don't do this if the user's code has set `no_more' nonzero. */
654
655 for (i = 0; i < XVECLEN (split, 2); i++)
656 {
657 rtx next = XVECEXP (split, 2, i);
658 if ((GET_CODE (next) == SET && GET_CODE (SET_DEST (next)) == PC)
659 || (GET_CODE (next) == PARALLEL
660 && GET_CODE (XVECEXP (next, 0, 0)) == SET
661 && GET_CODE (SET_DEST (XVECEXP (next, 0, 0))) == PC)
662 || GET_CODE (next) == RETURN)
663 printf (" emit_jump_insn (");
664 else if ((GET_CODE (next) == SET && GET_CODE (SET_SRC (next)) == CALL)
665 || GET_CODE (next) == CALL
666 || (GET_CODE (next) == PARALLEL
667 && GET_CODE (XVECEXP (next, 0, 0)) == SET
668 && GET_CODE (SET_SRC (XVECEXP (next, 0, 0))) == CALL)
669 || (GET_CODE (next) == PARALLEL
670 && GET_CODE (XVECEXP (next, 0, 0)) == CALL))
671 printf (" emit_call_insn (");
672 else if (LABEL_P (next))
673 printf (" emit_label (");
674 else if (GET_CODE (next) == MATCH_OPERAND
675 || GET_CODE (next) == MATCH_OPERATOR
676 || GET_CODE (next) == MATCH_PARALLEL
677 || GET_CODE (next) == MATCH_OP_DUP
678 || GET_CODE (next) == MATCH_DUP
679 || GET_CODE (next) == PARALLEL)
680 printf (" emit (");
681 else
682 printf (" emit_insn (");
683 gen_exp (next, GET_CODE (split), used);
684 printf (");\n");
685 if (GET_CODE (next) == SET && GET_CODE (SET_DEST (next)) == PC
686 && GET_CODE (SET_SRC (next)) == LABEL_REF)
687 printf (" emit_barrier ();");
688 }
689
690 /* Call `get_insns' to make a list of all the
691 insns emitted within this gen_... function. */
692
693 printf (" _val = get_insns ();\n");
694 printf (" end_sequence ();\n");
695 printf (" return _val;\n}\n\n");
696
697 free (used);
698 }
699 \f
700 /* Write a function, `add_clobbers', that is given a PARALLEL of sufficient
701 size for the insn and an INSN_CODE, and inserts the required CLOBBERs at
702 the end of the vector. */
703
704 static void
705 output_add_clobbers (void)
706 {
707 struct clobber_pat *clobber;
708 struct clobber_ent *ent;
709 int i;
710
711 printf ("\n\nvoid\nadd_clobbers (rtx pattern ATTRIBUTE_UNUSED, int insn_code_number)\n");
712 printf ("{\n");
713 printf (" switch (insn_code_number)\n");
714 printf (" {\n");
715
716 for (clobber = clobber_list; clobber; clobber = clobber->next)
717 {
718 for (ent = clobber->insns; ent; ent = ent->next)
719 printf (" case %d:\n", ent->code_number);
720
721 for (i = clobber->first_clobber; i < XVECLEN (clobber->pattern, 1); i++)
722 {
723 printf (" XVECEXP (pattern, 0, %d) = ", i);
724 gen_exp (XVECEXP (clobber->pattern, 1, i),
725 GET_CODE (clobber->pattern), NULL);
726 printf (";\n");
727 }
728
729 printf (" break;\n\n");
730 }
731
732 printf (" default:\n");
733 printf (" gcc_unreachable ();\n");
734 printf (" }\n");
735 printf ("}\n");
736 }
737 \f
738 /* Write a function, `added_clobbers_hard_reg_p' that is given an insn_code
739 number that will have clobbers added (as indicated by `recog') and returns
740 1 if those include a clobber of a hard reg or 0 if all of them just clobber
741 SCRATCH. */
742
743 static void
744 output_added_clobbers_hard_reg_p (void)
745 {
746 struct clobber_pat *clobber;
747 struct clobber_ent *ent;
748 int clobber_p, used;
749
750 printf ("\n\nint\nadded_clobbers_hard_reg_p (int insn_code_number)\n");
751 printf ("{\n");
752 printf (" switch (insn_code_number)\n");
753 printf (" {\n");
754
755 for (clobber_p = 0; clobber_p <= 1; clobber_p++)
756 {
757 used = 0;
758 for (clobber = clobber_list; clobber; clobber = clobber->next)
759 if (clobber->has_hard_reg == clobber_p)
760 for (ent = clobber->insns; ent; ent = ent->next)
761 {
762 printf (" case %d:\n", ent->code_number);
763 used++;
764 }
765
766 if (used)
767 printf (" return %d;\n\n", clobber_p);
768 }
769
770 printf (" default:\n");
771 printf (" gcc_unreachable ();\n");
772 printf (" }\n");
773 printf ("}\n");
774 }
775 \f
776 /* Generate code to invoke find_free_register () as needed for the
777 scratch registers used by the peephole2 pattern in SPLIT. */
778
779 static void
780 output_peephole2_scratches (rtx split)
781 {
782 int i;
783 int insn_nr = 0;
784
785 printf (" HARD_REG_SET _regs_allocated;\n");
786 printf (" CLEAR_HARD_REG_SET (_regs_allocated);\n");
787
788 for (i = 0; i < XVECLEN (split, 0); i++)
789 {
790 rtx elt = XVECEXP (split, 0, i);
791 if (GET_CODE (elt) == MATCH_SCRATCH)
792 {
793 int last_insn_nr = insn_nr;
794 int cur_insn_nr = insn_nr;
795 int j;
796 for (j = i + 1; j < XVECLEN (split, 0); j++)
797 if (GET_CODE (XVECEXP (split, 0, j)) == MATCH_DUP)
798 {
799 if (XINT (XVECEXP (split, 0, j), 0) == XINT (elt, 0))
800 last_insn_nr = cur_insn_nr;
801 }
802 else if (GET_CODE (XVECEXP (split, 0, j)) != MATCH_SCRATCH)
803 cur_insn_nr++;
804
805 printf (" if ((operands[%d] = peep2_find_free_register (%d, %d, \"%s\", %smode, &_regs_allocated)) == NULL_RTX)\n\
806 return NULL;\n",
807 XINT (elt, 0),
808 insn_nr, last_insn_nr,
809 XSTR (elt, 1),
810 GET_MODE_NAME (GET_MODE (elt)));
811
812 }
813 else if (GET_CODE (elt) != MATCH_DUP)
814 insn_nr++;
815 }
816 }
817
818 int
819 main (int argc, char **argv)
820 {
821 rtx desc;
822
823 progname = "genemit";
824
825 if (init_md_reader_args (argc, argv) != SUCCESS_EXIT_CODE)
826 return (FATAL_EXIT_CODE);
827
828 /* Assign sequential codes to all entries in the machine description
829 in parallel with the tables in insn-output.c. */
830
831 insn_code_number = 0;
832 insn_index_number = 0;
833
834 printf ("/* Generated automatically by the program `genemit'\n\
835 from the machine description file `md'. */\n\n");
836
837 printf ("#include \"config.h\"\n");
838 printf ("#include \"system.h\"\n");
839 printf ("#include \"coretypes.h\"\n");
840 printf ("#include \"tm.h\"\n");
841 printf ("#include \"rtl.h\"\n");
842 printf ("#include \"tm_p.h\"\n");
843 printf ("#include \"function.h\"\n");
844 printf ("#include \"expr.h\"\n");
845 printf ("#include \"optabs.h\"\n");
846 printf ("#include \"real.h\"\n");
847 printf ("#include \"dfp.h\"\n");
848 printf ("#include \"flags.h\"\n");
849 printf ("#include \"output.h\"\n");
850 printf ("#include \"insn-config.h\"\n");
851 printf ("#include \"hard-reg-set.h\"\n");
852 printf ("#include \"recog.h\"\n");
853 printf ("#include \"resource.h\"\n");
854 printf ("#include \"reload.h\"\n");
855 printf ("#include \"toplev.h\"\n");
856 printf ("#include \"regs.h\"\n");
857 printf ("#include \"tm-constrs.h\"\n");
858 printf ("#include \"ggc.h\"\n");
859 printf ("#include \"basic-block.h\"\n");
860 printf ("#include \"integrate.h\"\n\n");
861 printf ("#define FAIL return (end_sequence (), _val)\n");
862 printf ("#define DONE return (_val = get_insns (), end_sequence (), _val)\n\n");
863
864 /* Read the machine description. */
865
866 while (1)
867 {
868 int line_no;
869
870 desc = read_md_rtx (&line_no, &insn_code_number);
871 if (desc == NULL)
872 break;
873
874 switch (GET_CODE (desc))
875 {
876 case DEFINE_INSN:
877 gen_insn (desc, line_no);
878 break;
879
880 case DEFINE_EXPAND:
881 printf ("/* %s:%d */\n", read_rtx_filename, line_no);
882 gen_expand (desc);
883 break;
884
885 case DEFINE_SPLIT:
886 printf ("/* %s:%d */\n", read_rtx_filename, line_no);
887 gen_split (desc);
888 break;
889
890 case DEFINE_PEEPHOLE2:
891 printf ("/* %s:%d */\n", read_rtx_filename, line_no);
892 gen_split (desc);
893 break;
894
895 default:
896 break;
897 }
898 ++insn_index_number;
899 }
900
901 /* Write out the routines to add CLOBBERs to a pattern and say whether they
902 clobber a hard reg. */
903 output_add_clobbers ();
904 output_added_clobbers_hard_reg_p ();
905
906 fflush (stdout);
907 return (ferror (stdout) != 0 ? FATAL_EXIT_CODE : SUCCESS_EXIT_CODE);
908 }