Turn HARD_REGNO_NREGS into a target hook
[gcc.git] / gcc / targhooks.c
1 /* Default target hook functions.
2 Copyright (C) 2003-2017 Free Software Foundation, Inc.
3
4 This file is part of GCC.
5
6 GCC is free software; you can redistribute it and/or modify it under
7 the terms of the GNU General Public License as published by the Free
8 Software Foundation; either version 3, or (at your option) any later
9 version.
10
11 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
12 WARRANTY; without even the implied warranty of MERCHANTABILITY or
13 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
14 for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with GCC; see the file COPYING3. If not see
18 <http://www.gnu.org/licenses/>. */
19
20 /* The migration of target macros to target hooks works as follows:
21
22 1. Create a target hook that uses the existing target macros to
23 implement the same functionality.
24
25 2. Convert all the MI files to use the hook instead of the macro.
26
27 3. Repeat for a majority of the remaining target macros. This will
28 take some time.
29
30 4. Tell target maintainers to start migrating.
31
32 5. Eventually convert the backends to override the hook instead of
33 defining the macros. This will take some time too.
34
35 6. TBD when, poison the macros. Unmigrated targets will break at
36 this point.
37
38 Note that we expect steps 1-3 to be done by the people that
39 understand what the MI does with each macro, and step 5 to be done
40 by the target maintainers for their respective targets.
41
42 Note that steps 1 and 2 don't have to be done together, but no
43 target can override the new hook until step 2 is complete for it.
44
45 Once the macros are poisoned, we will revert to the old migration
46 rules - migrate the macro, callers, and targets all at once. This
47 comment can thus be removed at that point. */
48
49 #include "config.h"
50 #include "system.h"
51 #include "coretypes.h"
52 #include "target.h"
53 #include "function.h"
54 #include "rtl.h"
55 #include "tree.h"
56 #include "tree-ssa-alias.h"
57 #include "gimple-expr.h"
58 #include "memmodel.h"
59 #include "tm_p.h"
60 #include "stringpool.h"
61 #include "tree-vrp.h"
62 #include "tree-ssanames.h"
63 #include "profile-count.h"
64 #include "optabs.h"
65 #include "regs.h"
66 #include "recog.h"
67 #include "diagnostic-core.h"
68 #include "fold-const.h"
69 #include "stor-layout.h"
70 #include "varasm.h"
71 #include "flags.h"
72 #include "explow.h"
73 #include "calls.h"
74 #include "expr.h"
75 #include "output.h"
76 #include "common/common-target.h"
77 #include "reload.h"
78 #include "intl.h"
79 #include "opts.h"
80 #include "gimplify.h"
81 #include "predict.h"
82 #include "params.h"
83 #include "real.h"
84
85
86 bool
87 default_legitimate_address_p (machine_mode mode ATTRIBUTE_UNUSED,
88 rtx addr ATTRIBUTE_UNUSED,
89 bool strict ATTRIBUTE_UNUSED)
90 {
91 #ifdef GO_IF_LEGITIMATE_ADDRESS
92 /* Defer to the old implementation using a goto. */
93 if (strict)
94 return strict_memory_address_p (mode, addr);
95 else
96 return memory_address_p (mode, addr);
97 #else
98 gcc_unreachable ();
99 #endif
100 }
101
102 void
103 default_external_libcall (rtx fun ATTRIBUTE_UNUSED)
104 {
105 #ifdef ASM_OUTPUT_EXTERNAL_LIBCALL
106 ASM_OUTPUT_EXTERNAL_LIBCALL (asm_out_file, fun);
107 #endif
108 }
109
110 int
111 default_unspec_may_trap_p (const_rtx x, unsigned flags)
112 {
113 int i;
114
115 /* Any floating arithmetic may trap. */
116 if ((SCALAR_FLOAT_MODE_P (GET_MODE (x)) && flag_trapping_math))
117 return 1;
118
119 for (i = 0; i < XVECLEN (x, 0); ++i)
120 {
121 if (may_trap_p_1 (XVECEXP (x, 0, i), flags))
122 return 1;
123 }
124
125 return 0;
126 }
127
128 machine_mode
129 default_promote_function_mode (const_tree type ATTRIBUTE_UNUSED,
130 machine_mode mode,
131 int *punsignedp ATTRIBUTE_UNUSED,
132 const_tree funtype ATTRIBUTE_UNUSED,
133 int for_return ATTRIBUTE_UNUSED)
134 {
135 if (type != NULL_TREE && for_return == 2)
136 return promote_mode (type, mode, punsignedp);
137 return mode;
138 }
139
140 machine_mode
141 default_promote_function_mode_always_promote (const_tree type,
142 machine_mode mode,
143 int *punsignedp,
144 const_tree funtype ATTRIBUTE_UNUSED,
145 int for_return ATTRIBUTE_UNUSED)
146 {
147 return promote_mode (type, mode, punsignedp);
148 }
149
150 machine_mode
151 default_cc_modes_compatible (machine_mode m1, machine_mode m2)
152 {
153 if (m1 == m2)
154 return m1;
155 return VOIDmode;
156 }
157
158 bool
159 default_return_in_memory (const_tree type,
160 const_tree fntype ATTRIBUTE_UNUSED)
161 {
162 return (TYPE_MODE (type) == BLKmode);
163 }
164
165 rtx
166 default_legitimize_address (rtx x, rtx orig_x ATTRIBUTE_UNUSED,
167 machine_mode mode ATTRIBUTE_UNUSED)
168 {
169 return x;
170 }
171
172 bool
173 default_legitimize_address_displacement (rtx *disp ATTRIBUTE_UNUSED,
174 rtx *offset ATTRIBUTE_UNUSED,
175 machine_mode mode ATTRIBUTE_UNUSED)
176 {
177 return false;
178 }
179
180 rtx
181 default_expand_builtin_saveregs (void)
182 {
183 error ("__builtin_saveregs not supported by this target");
184 return const0_rtx;
185 }
186
187 void
188 default_setup_incoming_varargs (cumulative_args_t ca ATTRIBUTE_UNUSED,
189 machine_mode mode ATTRIBUTE_UNUSED,
190 tree type ATTRIBUTE_UNUSED,
191 int *pretend_arg_size ATTRIBUTE_UNUSED,
192 int second_time ATTRIBUTE_UNUSED)
193 {
194 }
195
196 /* The default implementation of TARGET_BUILTIN_SETJMP_FRAME_VALUE. */
197
198 rtx
199 default_builtin_setjmp_frame_value (void)
200 {
201 return virtual_stack_vars_rtx;
202 }
203
204 /* Generic hook that takes a CUMULATIVE_ARGS pointer and returns false. */
205
206 bool
207 hook_bool_CUMULATIVE_ARGS_false (cumulative_args_t ca ATTRIBUTE_UNUSED)
208 {
209 return false;
210 }
211
212 bool
213 default_pretend_outgoing_varargs_named (cumulative_args_t ca ATTRIBUTE_UNUSED)
214 {
215 return (targetm.calls.setup_incoming_varargs
216 != default_setup_incoming_varargs);
217 }
218
219 scalar_int_mode
220 default_eh_return_filter_mode (void)
221 {
222 return targetm.unwind_word_mode ();
223 }
224
225 scalar_int_mode
226 default_libgcc_cmp_return_mode (void)
227 {
228 return word_mode;
229 }
230
231 scalar_int_mode
232 default_libgcc_shift_count_mode (void)
233 {
234 return word_mode;
235 }
236
237 scalar_int_mode
238 default_unwind_word_mode (void)
239 {
240 return word_mode;
241 }
242
243 /* The default implementation of TARGET_SHIFT_TRUNCATION_MASK. */
244
245 unsigned HOST_WIDE_INT
246 default_shift_truncation_mask (machine_mode mode)
247 {
248 return SHIFT_COUNT_TRUNCATED ? GET_MODE_BITSIZE (mode) - 1 : 0;
249 }
250
251 /* The default implementation of TARGET_MIN_DIVISIONS_FOR_RECIP_MUL. */
252
253 unsigned int
254 default_min_divisions_for_recip_mul (machine_mode mode ATTRIBUTE_UNUSED)
255 {
256 return have_insn_for (DIV, mode) ? 3 : 2;
257 }
258
259 /* The default implementation of TARGET_MODE_REP_EXTENDED. */
260
261 int
262 default_mode_rep_extended (scalar_int_mode, scalar_int_mode)
263 {
264 return UNKNOWN;
265 }
266
267 /* Generic hook that takes a CUMULATIVE_ARGS pointer and returns true. */
268
269 bool
270 hook_bool_CUMULATIVE_ARGS_true (cumulative_args_t a ATTRIBUTE_UNUSED)
271 {
272 return true;
273 }
274
275 /* Return machine mode for non-standard suffix
276 or VOIDmode if non-standard suffixes are unsupported. */
277 machine_mode
278 default_mode_for_suffix (char suffix ATTRIBUTE_UNUSED)
279 {
280 return VOIDmode;
281 }
282
283 /* The generic C++ ABI specifies this is a 64-bit value. */
284 tree
285 default_cxx_guard_type (void)
286 {
287 return long_long_integer_type_node;
288 }
289
290 /* Returns the size of the cookie to use when allocating an array
291 whose elements have the indicated TYPE. Assumes that it is already
292 known that a cookie is needed. */
293
294 tree
295 default_cxx_get_cookie_size (tree type)
296 {
297 tree cookie_size;
298
299 /* We need to allocate an additional max (sizeof (size_t), alignof
300 (true_type)) bytes. */
301 tree sizetype_size;
302 tree type_align;
303
304 sizetype_size = size_in_bytes (sizetype);
305 type_align = size_int (TYPE_ALIGN_UNIT (type));
306 if (tree_int_cst_lt (type_align, sizetype_size))
307 cookie_size = sizetype_size;
308 else
309 cookie_size = type_align;
310
311 return cookie_size;
312 }
313
314 /* Return true if a parameter must be passed by reference. This version
315 of the TARGET_PASS_BY_REFERENCE hook uses just MUST_PASS_IN_STACK. */
316
317 bool
318 hook_pass_by_reference_must_pass_in_stack (cumulative_args_t c ATTRIBUTE_UNUSED,
319 machine_mode mode ATTRIBUTE_UNUSED, const_tree type ATTRIBUTE_UNUSED,
320 bool named_arg ATTRIBUTE_UNUSED)
321 {
322 return targetm.calls.must_pass_in_stack (mode, type);
323 }
324
325 /* Return true if a parameter follows callee copies conventions. This
326 version of the hook is true for all named arguments. */
327
328 bool
329 hook_callee_copies_named (cumulative_args_t ca ATTRIBUTE_UNUSED,
330 machine_mode mode ATTRIBUTE_UNUSED,
331 const_tree type ATTRIBUTE_UNUSED, bool named)
332 {
333 return named;
334 }
335
336 /* Emit to STREAM the assembler syntax for insn operand X. */
337
338 void
339 default_print_operand (FILE *stream ATTRIBUTE_UNUSED, rtx x ATTRIBUTE_UNUSED,
340 int code ATTRIBUTE_UNUSED)
341 {
342 #ifdef PRINT_OPERAND
343 PRINT_OPERAND (stream, x, code);
344 #else
345 gcc_unreachable ();
346 #endif
347 }
348
349 /* Emit to STREAM the assembler syntax for an insn operand whose memory
350 address is X. */
351
352 void
353 default_print_operand_address (FILE *stream ATTRIBUTE_UNUSED,
354 machine_mode /*mode*/,
355 rtx x ATTRIBUTE_UNUSED)
356 {
357 #ifdef PRINT_OPERAND_ADDRESS
358 PRINT_OPERAND_ADDRESS (stream, x);
359 #else
360 gcc_unreachable ();
361 #endif
362 }
363
364 /* Return true if CODE is a valid punctuation character for the
365 `print_operand' hook. */
366
367 bool
368 default_print_operand_punct_valid_p (unsigned char code ATTRIBUTE_UNUSED)
369 {
370 #ifdef PRINT_OPERAND_PUNCT_VALID_P
371 return PRINT_OPERAND_PUNCT_VALID_P (code);
372 #else
373 return false;
374 #endif
375 }
376
377 /* The default implementation of TARGET_MANGLE_ASSEMBLER_NAME. */
378 tree
379 default_mangle_assembler_name (const char *name ATTRIBUTE_UNUSED)
380 {
381 const char *skipped = name + (*name == '*' ? 1 : 0);
382 const char *stripped = targetm.strip_name_encoding (skipped);
383 if (*name != '*' && user_label_prefix[0])
384 stripped = ACONCAT ((user_label_prefix, stripped, NULL));
385 return get_identifier (stripped);
386 }
387
388 /* True if MODE is valid for the target. By "valid", we mean able to
389 be manipulated in non-trivial ways. In particular, this means all
390 the arithmetic is supported.
391
392 By default we guess this means that any C type is supported. If
393 we can't map the mode back to a type that would be available in C,
394 then reject it. Special case, here, is the double-word arithmetic
395 supported by optabs.c. */
396
397 bool
398 default_scalar_mode_supported_p (scalar_mode mode)
399 {
400 int precision = GET_MODE_PRECISION (mode);
401
402 switch (GET_MODE_CLASS (mode))
403 {
404 case MODE_PARTIAL_INT:
405 case MODE_INT:
406 if (precision == CHAR_TYPE_SIZE)
407 return true;
408 if (precision == SHORT_TYPE_SIZE)
409 return true;
410 if (precision == INT_TYPE_SIZE)
411 return true;
412 if (precision == LONG_TYPE_SIZE)
413 return true;
414 if (precision == LONG_LONG_TYPE_SIZE)
415 return true;
416 if (precision == 2 * BITS_PER_WORD)
417 return true;
418 return false;
419
420 case MODE_FLOAT:
421 if (precision == FLOAT_TYPE_SIZE)
422 return true;
423 if (precision == DOUBLE_TYPE_SIZE)
424 return true;
425 if (precision == LONG_DOUBLE_TYPE_SIZE)
426 return true;
427 return false;
428
429 case MODE_DECIMAL_FLOAT:
430 case MODE_FRACT:
431 case MODE_UFRACT:
432 case MODE_ACCUM:
433 case MODE_UACCUM:
434 return false;
435
436 default:
437 gcc_unreachable ();
438 }
439 }
440
441 /* Return true if libgcc supports floating-point mode MODE (known to
442 be supported as a scalar mode). */
443
444 bool
445 default_libgcc_floating_mode_supported_p (scalar_float_mode mode)
446 {
447 switch (mode)
448 {
449 #ifdef HAVE_SFmode
450 case E_SFmode:
451 #endif
452 #ifdef HAVE_DFmode
453 case E_DFmode:
454 #endif
455 #ifdef HAVE_XFmode
456 case E_XFmode:
457 #endif
458 #ifdef HAVE_TFmode
459 case E_TFmode:
460 #endif
461 return true;
462
463 default:
464 return false;
465 }
466 }
467
468 /* Return the machine mode to use for the type _FloatN, if EXTENDED is
469 false, or _FloatNx, if EXTENDED is true, or VOIDmode if not
470 supported. */
471 opt_scalar_float_mode
472 default_floatn_mode (int n, bool extended)
473 {
474 if (extended)
475 {
476 opt_scalar_float_mode cand1, cand2;
477 scalar_float_mode mode;
478 switch (n)
479 {
480 case 32:
481 #ifdef HAVE_DFmode
482 cand1 = DFmode;
483 #endif
484 break;
485
486 case 64:
487 #ifdef HAVE_XFmode
488 cand1 = XFmode;
489 #endif
490 #ifdef HAVE_TFmode
491 cand2 = TFmode;
492 #endif
493 break;
494
495 case 128:
496 break;
497
498 default:
499 /* Those are the only valid _FloatNx types. */
500 gcc_unreachable ();
501 }
502 if (cand1.exists (&mode)
503 && REAL_MODE_FORMAT (mode)->ieee_bits > n
504 && targetm.scalar_mode_supported_p (mode)
505 && targetm.libgcc_floating_mode_supported_p (mode))
506 return cand1;
507 if (cand2.exists (&mode)
508 && REAL_MODE_FORMAT (mode)->ieee_bits > n
509 && targetm.scalar_mode_supported_p (mode)
510 && targetm.libgcc_floating_mode_supported_p (mode))
511 return cand2;
512 }
513 else
514 {
515 opt_scalar_float_mode cand;
516 scalar_float_mode mode;
517 switch (n)
518 {
519 case 16:
520 /* Always enable _Float16 if we have basic support for the mode.
521 Targets can control the range and precision of operations on
522 the _Float16 type using TARGET_C_EXCESS_PRECISION. */
523 #ifdef HAVE_HFmode
524 cand = HFmode;
525 #endif
526 break;
527
528 case 32:
529 #ifdef HAVE_SFmode
530 cand = SFmode;
531 #endif
532 break;
533
534 case 64:
535 #ifdef HAVE_DFmode
536 cand = DFmode;
537 #endif
538 break;
539
540 case 128:
541 #ifdef HAVE_TFmode
542 cand = TFmode;
543 #endif
544 break;
545
546 default:
547 break;
548 }
549 if (cand.exists (&mode)
550 && REAL_MODE_FORMAT (mode)->ieee_bits == n
551 && targetm.scalar_mode_supported_p (mode)
552 && targetm.libgcc_floating_mode_supported_p (mode))
553 return cand;
554 }
555 return opt_scalar_float_mode ();
556 }
557
558 /* Make some target macros useable by target-independent code. */
559 bool
560 targhook_words_big_endian (void)
561 {
562 return !!WORDS_BIG_ENDIAN;
563 }
564
565 bool
566 targhook_float_words_big_endian (void)
567 {
568 return !!FLOAT_WORDS_BIG_ENDIAN;
569 }
570
571 /* True if the target supports floating-point exceptions and rounding
572 modes. */
573
574 bool
575 default_float_exceptions_rounding_supported_p (void)
576 {
577 #ifdef HAVE_adddf3
578 return HAVE_adddf3;
579 #else
580 return false;
581 #endif
582 }
583
584 /* True if the target supports decimal floating point. */
585
586 bool
587 default_decimal_float_supported_p (void)
588 {
589 return ENABLE_DECIMAL_FLOAT;
590 }
591
592 /* True if the target supports fixed-point arithmetic. */
593
594 bool
595 default_fixed_point_supported_p (void)
596 {
597 return ENABLE_FIXED_POINT;
598 }
599
600 /* True if the target supports GNU indirect functions. */
601
602 bool
603 default_has_ifunc_p (void)
604 {
605 return HAVE_GNU_INDIRECT_FUNCTION;
606 }
607
608 /* NULL if INSN insn is valid within a low-overhead loop, otherwise returns
609 an error message.
610
611 This function checks whether a given INSN is valid within a low-overhead
612 loop. If INSN is invalid it returns the reason for that, otherwise it
613 returns NULL. A called function may clobber any special registers required
614 for low-overhead looping. Additionally, some targets (eg, PPC) use the count
615 register for branch on table instructions. We reject the doloop pattern in
616 these cases. */
617
618 const char *
619 default_invalid_within_doloop (const rtx_insn *insn)
620 {
621 if (CALL_P (insn))
622 return "Function call in loop.";
623
624 if (tablejump_p (insn, NULL, NULL) || computed_jump_p (insn))
625 return "Computed branch in the loop.";
626
627 return NULL;
628 }
629
630 /* Mapping of builtin functions to vectorized variants. */
631
632 tree
633 default_builtin_vectorized_function (unsigned int, tree, tree)
634 {
635 return NULL_TREE;
636 }
637
638 /* Mapping of target builtin functions to vectorized variants. */
639
640 tree
641 default_builtin_md_vectorized_function (tree, tree, tree)
642 {
643 return NULL_TREE;
644 }
645
646 /* Vectorized conversion. */
647
648 tree
649 default_builtin_vectorized_conversion (unsigned int code ATTRIBUTE_UNUSED,
650 tree dest_type ATTRIBUTE_UNUSED,
651 tree src_type ATTRIBUTE_UNUSED)
652 {
653 return NULL_TREE;
654 }
655
656 /* Default vectorizer cost model values. */
657
658 int
659 default_builtin_vectorization_cost (enum vect_cost_for_stmt type_of_cost,
660 tree vectype,
661 int misalign ATTRIBUTE_UNUSED)
662 {
663 switch (type_of_cost)
664 {
665 case scalar_stmt:
666 case scalar_load:
667 case scalar_store:
668 case vector_stmt:
669 case vector_load:
670 case vector_store:
671 case vec_to_scalar:
672 case scalar_to_vec:
673 case cond_branch_not_taken:
674 case vec_perm:
675 case vec_promote_demote:
676 return 1;
677
678 case unaligned_load:
679 case unaligned_store:
680 return 2;
681
682 case cond_branch_taken:
683 return 3;
684
685 case vec_construct:
686 return TYPE_VECTOR_SUBPARTS (vectype) - 1;
687
688 default:
689 gcc_unreachable ();
690 }
691 }
692
693 /* Reciprocal. */
694
695 tree
696 default_builtin_reciprocal (tree)
697 {
698 return NULL_TREE;
699 }
700
701 bool
702 hook_bool_CUMULATIVE_ARGS_mode_tree_bool_false (
703 cumulative_args_t ca ATTRIBUTE_UNUSED,
704 machine_mode mode ATTRIBUTE_UNUSED,
705 const_tree type ATTRIBUTE_UNUSED, bool named ATTRIBUTE_UNUSED)
706 {
707 return false;
708 }
709
710 bool
711 hook_bool_CUMULATIVE_ARGS_mode_tree_bool_true (
712 cumulative_args_t ca ATTRIBUTE_UNUSED,
713 machine_mode mode ATTRIBUTE_UNUSED,
714 const_tree type ATTRIBUTE_UNUSED, bool named ATTRIBUTE_UNUSED)
715 {
716 return true;
717 }
718
719 int
720 hook_int_CUMULATIVE_ARGS_mode_tree_bool_0 (
721 cumulative_args_t ca ATTRIBUTE_UNUSED,
722 machine_mode mode ATTRIBUTE_UNUSED,
723 tree type ATTRIBUTE_UNUSED, bool named ATTRIBUTE_UNUSED)
724 {
725 return 0;
726 }
727
728 void
729 default_function_arg_advance (cumulative_args_t ca ATTRIBUTE_UNUSED,
730 machine_mode mode ATTRIBUTE_UNUSED,
731 const_tree type ATTRIBUTE_UNUSED,
732 bool named ATTRIBUTE_UNUSED)
733 {
734 gcc_unreachable ();
735 }
736
737 /* Default implementation of TARGET_FUNCTION_ARG_PADDING: usually pad
738 upward, but pad short args downward on big-endian machines. */
739
740 pad_direction
741 default_function_arg_padding (machine_mode mode, const_tree type)
742 {
743 if (!BYTES_BIG_ENDIAN)
744 return PAD_UPWARD;
745
746 unsigned HOST_WIDE_INT size;
747 if (mode == BLKmode)
748 {
749 if (!type || TREE_CODE (TYPE_SIZE (type)) != INTEGER_CST)
750 return PAD_UPWARD;
751 size = int_size_in_bytes (type);
752 }
753 else
754 size = GET_MODE_SIZE (mode);
755
756 if (size < (PARM_BOUNDARY / BITS_PER_UNIT))
757 return PAD_DOWNWARD;
758
759 return PAD_UPWARD;
760 }
761
762 rtx
763 default_function_arg (cumulative_args_t ca ATTRIBUTE_UNUSED,
764 machine_mode mode ATTRIBUTE_UNUSED,
765 const_tree type ATTRIBUTE_UNUSED,
766 bool named ATTRIBUTE_UNUSED)
767 {
768 gcc_unreachable ();
769 }
770
771 rtx
772 default_function_incoming_arg (cumulative_args_t ca ATTRIBUTE_UNUSED,
773 machine_mode mode ATTRIBUTE_UNUSED,
774 const_tree type ATTRIBUTE_UNUSED,
775 bool named ATTRIBUTE_UNUSED)
776 {
777 gcc_unreachable ();
778 }
779
780 unsigned int
781 default_function_arg_boundary (machine_mode mode ATTRIBUTE_UNUSED,
782 const_tree type ATTRIBUTE_UNUSED)
783 {
784 return PARM_BOUNDARY;
785 }
786
787 unsigned int
788 default_function_arg_round_boundary (machine_mode mode ATTRIBUTE_UNUSED,
789 const_tree type ATTRIBUTE_UNUSED)
790 {
791 return PARM_BOUNDARY;
792 }
793
794 void
795 hook_void_bitmap (bitmap regs ATTRIBUTE_UNUSED)
796 {
797 }
798
799 const char *
800 hook_invalid_arg_for_unprototyped_fn (
801 const_tree typelist ATTRIBUTE_UNUSED,
802 const_tree funcdecl ATTRIBUTE_UNUSED,
803 const_tree val ATTRIBUTE_UNUSED)
804 {
805 return NULL;
806 }
807
808 /* Initialize the stack protection decls. */
809
810 /* Stack protection related decls living in libgcc. */
811 static GTY(()) tree stack_chk_guard_decl;
812
813 tree
814 default_stack_protect_guard (void)
815 {
816 tree t = stack_chk_guard_decl;
817
818 if (t == NULL)
819 {
820 rtx x;
821
822 t = build_decl (UNKNOWN_LOCATION,
823 VAR_DECL, get_identifier ("__stack_chk_guard"),
824 ptr_type_node);
825 TREE_STATIC (t) = 1;
826 TREE_PUBLIC (t) = 1;
827 DECL_EXTERNAL (t) = 1;
828 TREE_USED (t) = 1;
829 TREE_THIS_VOLATILE (t) = 1;
830 DECL_ARTIFICIAL (t) = 1;
831 DECL_IGNORED_P (t) = 1;
832
833 /* Do not share RTL as the declaration is visible outside of
834 current function. */
835 x = DECL_RTL (t);
836 RTX_FLAG (x, used) = 1;
837
838 stack_chk_guard_decl = t;
839 }
840
841 return t;
842 }
843
844 static GTY(()) tree stack_chk_fail_decl;
845
846 tree
847 default_external_stack_protect_fail (void)
848 {
849 tree t = stack_chk_fail_decl;
850
851 if (t == NULL_TREE)
852 {
853 t = build_function_type_list (void_type_node, NULL_TREE);
854 t = build_decl (UNKNOWN_LOCATION,
855 FUNCTION_DECL, get_identifier ("__stack_chk_fail"), t);
856 TREE_STATIC (t) = 1;
857 TREE_PUBLIC (t) = 1;
858 DECL_EXTERNAL (t) = 1;
859 TREE_USED (t) = 1;
860 TREE_THIS_VOLATILE (t) = 1;
861 TREE_NOTHROW (t) = 1;
862 DECL_ARTIFICIAL (t) = 1;
863 DECL_IGNORED_P (t) = 1;
864 DECL_VISIBILITY (t) = VISIBILITY_DEFAULT;
865 DECL_VISIBILITY_SPECIFIED (t) = 1;
866
867 stack_chk_fail_decl = t;
868 }
869
870 return build_call_expr (t, 0);
871 }
872
873 tree
874 default_hidden_stack_protect_fail (void)
875 {
876 #ifndef HAVE_GAS_HIDDEN
877 return default_external_stack_protect_fail ();
878 #else
879 tree t = stack_chk_fail_decl;
880
881 if (!flag_pic)
882 return default_external_stack_protect_fail ();
883
884 if (t == NULL_TREE)
885 {
886 t = build_function_type_list (void_type_node, NULL_TREE);
887 t = build_decl (UNKNOWN_LOCATION, FUNCTION_DECL,
888 get_identifier ("__stack_chk_fail_local"), t);
889 TREE_STATIC (t) = 1;
890 TREE_PUBLIC (t) = 1;
891 DECL_EXTERNAL (t) = 1;
892 TREE_USED (t) = 1;
893 TREE_THIS_VOLATILE (t) = 1;
894 TREE_NOTHROW (t) = 1;
895 DECL_ARTIFICIAL (t) = 1;
896 DECL_IGNORED_P (t) = 1;
897 DECL_VISIBILITY_SPECIFIED (t) = 1;
898 DECL_VISIBILITY (t) = VISIBILITY_HIDDEN;
899
900 stack_chk_fail_decl = t;
901 }
902
903 return build_call_expr (t, 0);
904 #endif
905 }
906
907 bool
908 hook_bool_const_rtx_commutative_p (const_rtx x,
909 int outer_code ATTRIBUTE_UNUSED)
910 {
911 return COMMUTATIVE_P (x);
912 }
913
914 rtx
915 default_function_value (const_tree ret_type ATTRIBUTE_UNUSED,
916 const_tree fn_decl_or_type,
917 bool outgoing ATTRIBUTE_UNUSED)
918 {
919 /* The old interface doesn't handle receiving the function type. */
920 if (fn_decl_or_type
921 && !DECL_P (fn_decl_or_type))
922 fn_decl_or_type = NULL;
923
924 #ifdef FUNCTION_VALUE
925 return FUNCTION_VALUE (ret_type, fn_decl_or_type);
926 #else
927 gcc_unreachable ();
928 #endif
929 }
930
931 rtx
932 default_libcall_value (machine_mode mode ATTRIBUTE_UNUSED,
933 const_rtx fun ATTRIBUTE_UNUSED)
934 {
935 #ifdef LIBCALL_VALUE
936 return LIBCALL_VALUE (mode);
937 #else
938 gcc_unreachable ();
939 #endif
940 }
941
942 /* The default hook for TARGET_FUNCTION_VALUE_REGNO_P. */
943
944 bool
945 default_function_value_regno_p (const unsigned int regno ATTRIBUTE_UNUSED)
946 {
947 #ifdef FUNCTION_VALUE_REGNO_P
948 return FUNCTION_VALUE_REGNO_P (regno);
949 #else
950 gcc_unreachable ();
951 #endif
952 }
953
954 rtx
955 default_internal_arg_pointer (void)
956 {
957 /* If the reg that the virtual arg pointer will be translated into is
958 not a fixed reg or is the stack pointer, make a copy of the virtual
959 arg pointer, and address parms via the copy. The frame pointer is
960 considered fixed even though it is not marked as such. */
961 if ((ARG_POINTER_REGNUM == STACK_POINTER_REGNUM
962 || ! (fixed_regs[ARG_POINTER_REGNUM]
963 || ARG_POINTER_REGNUM == FRAME_POINTER_REGNUM)))
964 return copy_to_reg (virtual_incoming_args_rtx);
965 else
966 return virtual_incoming_args_rtx;
967 }
968
969 rtx
970 default_static_chain (const_tree ARG_UNUSED (fndecl_or_type), bool incoming_p)
971 {
972 if (incoming_p)
973 {
974 #ifdef STATIC_CHAIN_INCOMING_REGNUM
975 return gen_rtx_REG (Pmode, STATIC_CHAIN_INCOMING_REGNUM);
976 #endif
977 }
978
979 #ifdef STATIC_CHAIN_REGNUM
980 return gen_rtx_REG (Pmode, STATIC_CHAIN_REGNUM);
981 #endif
982
983 {
984 static bool issued_error;
985 if (!issued_error)
986 {
987 issued_error = true;
988 sorry ("nested functions not supported on this target");
989 }
990
991 /* It really doesn't matter what we return here, so long at it
992 doesn't cause the rest of the compiler to crash. */
993 return gen_rtx_MEM (Pmode, stack_pointer_rtx);
994 }
995 }
996
997 void
998 default_trampoline_init (rtx ARG_UNUSED (m_tramp), tree ARG_UNUSED (t_func),
999 rtx ARG_UNUSED (r_chain))
1000 {
1001 sorry ("nested function trampolines not supported on this target");
1002 }
1003
1004 int
1005 default_return_pops_args (tree fundecl ATTRIBUTE_UNUSED,
1006 tree funtype ATTRIBUTE_UNUSED,
1007 int size ATTRIBUTE_UNUSED)
1008 {
1009 return 0;
1010 }
1011
1012 reg_class_t
1013 default_branch_target_register_class (void)
1014 {
1015 return NO_REGS;
1016 }
1017
1018 reg_class_t
1019 default_ira_change_pseudo_allocno_class (int regno ATTRIBUTE_UNUSED,
1020 reg_class_t cl,
1021 reg_class_t best_cl ATTRIBUTE_UNUSED)
1022 {
1023 return cl;
1024 }
1025
1026 extern bool
1027 default_lra_p (void)
1028 {
1029 return true;
1030 }
1031
1032 int
1033 default_register_priority (int hard_regno ATTRIBUTE_UNUSED)
1034 {
1035 return 0;
1036 }
1037
1038 extern bool
1039 default_register_usage_leveling_p (void)
1040 {
1041 return false;
1042 }
1043
1044 extern bool
1045 default_different_addr_displacement_p (void)
1046 {
1047 return false;
1048 }
1049
1050 reg_class_t
1051 default_secondary_reload (bool in_p ATTRIBUTE_UNUSED, rtx x ATTRIBUTE_UNUSED,
1052 reg_class_t reload_class_i ATTRIBUTE_UNUSED,
1053 machine_mode reload_mode ATTRIBUTE_UNUSED,
1054 secondary_reload_info *sri)
1055 {
1056 enum reg_class rclass = NO_REGS;
1057 enum reg_class reload_class = (enum reg_class) reload_class_i;
1058
1059 if (sri->prev_sri && sri->prev_sri->t_icode != CODE_FOR_nothing)
1060 {
1061 sri->icode = sri->prev_sri->t_icode;
1062 return NO_REGS;
1063 }
1064 #ifdef SECONDARY_INPUT_RELOAD_CLASS
1065 if (in_p)
1066 rclass = SECONDARY_INPUT_RELOAD_CLASS (reload_class, reload_mode, x);
1067 #endif
1068 #ifdef SECONDARY_OUTPUT_RELOAD_CLASS
1069 if (! in_p)
1070 rclass = SECONDARY_OUTPUT_RELOAD_CLASS (reload_class, reload_mode, x);
1071 #endif
1072 if (rclass != NO_REGS)
1073 {
1074 enum insn_code icode
1075 = direct_optab_handler (in_p ? reload_in_optab : reload_out_optab,
1076 reload_mode);
1077
1078 if (icode != CODE_FOR_nothing
1079 && !insn_operand_matches (icode, in_p, x))
1080 icode = CODE_FOR_nothing;
1081 else if (icode != CODE_FOR_nothing)
1082 {
1083 const char *insn_constraint, *scratch_constraint;
1084 enum reg_class insn_class, scratch_class;
1085
1086 gcc_assert (insn_data[(int) icode].n_operands == 3);
1087 insn_constraint = insn_data[(int) icode].operand[!in_p].constraint;
1088 if (!*insn_constraint)
1089 insn_class = ALL_REGS;
1090 else
1091 {
1092 if (in_p)
1093 {
1094 gcc_assert (*insn_constraint == '=');
1095 insn_constraint++;
1096 }
1097 insn_class = (reg_class_for_constraint
1098 (lookup_constraint (insn_constraint)));
1099 gcc_assert (insn_class != NO_REGS);
1100 }
1101
1102 scratch_constraint = insn_data[(int) icode].operand[2].constraint;
1103 /* The scratch register's constraint must start with "=&",
1104 except for an input reload, where only "=" is necessary,
1105 and where it might be beneficial to re-use registers from
1106 the input. */
1107 gcc_assert (scratch_constraint[0] == '='
1108 && (in_p || scratch_constraint[1] == '&'));
1109 scratch_constraint++;
1110 if (*scratch_constraint == '&')
1111 scratch_constraint++;
1112 scratch_class = (reg_class_for_constraint
1113 (lookup_constraint (scratch_constraint)));
1114
1115 if (reg_class_subset_p (reload_class, insn_class))
1116 {
1117 gcc_assert (scratch_class == rclass);
1118 rclass = NO_REGS;
1119 }
1120 else
1121 rclass = insn_class;
1122
1123 }
1124 if (rclass == NO_REGS)
1125 sri->icode = icode;
1126 else
1127 sri->t_icode = icode;
1128 }
1129 return rclass;
1130 }
1131
1132 /* By default, if flag_pic is true, then neither local nor global relocs
1133 should be placed in readonly memory. */
1134
1135 int
1136 default_reloc_rw_mask (void)
1137 {
1138 return flag_pic ? 3 : 0;
1139 }
1140
1141 /* By default, do no modification. */
1142 tree default_mangle_decl_assembler_name (tree decl ATTRIBUTE_UNUSED,
1143 tree id)
1144 {
1145 return id;
1146 }
1147
1148 /* Default to natural alignment for vector types. */
1149 HOST_WIDE_INT
1150 default_vector_alignment (const_tree type)
1151 {
1152 HOST_WIDE_INT align = tree_to_shwi (TYPE_SIZE (type));
1153 if (align > MAX_OFILE_ALIGNMENT)
1154 align = MAX_OFILE_ALIGNMENT;
1155 return align;
1156 }
1157
1158 /* By default assume vectors of element TYPE require a multiple of the natural
1159 alignment of TYPE. TYPE is naturally aligned if IS_PACKED is false. */
1160 bool
1161 default_builtin_vector_alignment_reachable (const_tree /*type*/, bool is_packed)
1162 {
1163 return ! is_packed;
1164 }
1165
1166 /* By default, assume that a target supports any factor of misalignment
1167 memory access if it supports movmisalign patten.
1168 is_packed is true if the memory access is defined in a packed struct. */
1169 bool
1170 default_builtin_support_vector_misalignment (machine_mode mode,
1171 const_tree type
1172 ATTRIBUTE_UNUSED,
1173 int misalignment
1174 ATTRIBUTE_UNUSED,
1175 bool is_packed
1176 ATTRIBUTE_UNUSED)
1177 {
1178 if (optab_handler (movmisalign_optab, mode) != CODE_FOR_nothing)
1179 return true;
1180 return false;
1181 }
1182
1183 /* By default, only attempt to parallelize bitwise operations, and
1184 possibly adds/subtracts using bit-twiddling. */
1185
1186 machine_mode
1187 default_preferred_simd_mode (scalar_mode)
1188 {
1189 return word_mode;
1190 }
1191
1192 /* By default only the size derived from the preferred vector mode
1193 is tried. */
1194
1195 unsigned int
1196 default_autovectorize_vector_sizes (void)
1197 {
1198 return 0;
1199 }
1200
1201 /* By defaults a vector of integers is used as a mask. */
1202
1203 opt_machine_mode
1204 default_get_mask_mode (unsigned nunits, unsigned vector_size)
1205 {
1206 unsigned elem_size = vector_size / nunits;
1207 scalar_int_mode elem_mode
1208 = smallest_int_mode_for_size (elem_size * BITS_PER_UNIT);
1209 machine_mode vector_mode;
1210
1211 gcc_assert (elem_size * nunits == vector_size);
1212
1213 if (mode_for_vector (elem_mode, nunits).exists (&vector_mode)
1214 && VECTOR_MODE_P (vector_mode)
1215 && targetm.vector_mode_supported_p (vector_mode))
1216 return vector_mode;
1217
1218 return opt_machine_mode ();
1219 }
1220
1221 /* By default, the cost model accumulates three separate costs (prologue,
1222 loop body, and epilogue) for a vectorized loop or block. So allocate an
1223 array of three unsigned ints, set it to zero, and return its address. */
1224
1225 void *
1226 default_init_cost (struct loop *loop_info ATTRIBUTE_UNUSED)
1227 {
1228 unsigned *cost = XNEWVEC (unsigned, 3);
1229 cost[vect_prologue] = cost[vect_body] = cost[vect_epilogue] = 0;
1230 return cost;
1231 }
1232
1233 /* By default, the cost model looks up the cost of the given statement
1234 kind and mode, multiplies it by the occurrence count, accumulates
1235 it into the cost specified by WHERE, and returns the cost added. */
1236
1237 unsigned
1238 default_add_stmt_cost (void *data, int count, enum vect_cost_for_stmt kind,
1239 struct _stmt_vec_info *stmt_info, int misalign,
1240 enum vect_cost_model_location where)
1241 {
1242 unsigned *cost = (unsigned *) data;
1243 unsigned retval = 0;
1244
1245 tree vectype = stmt_info ? stmt_vectype (stmt_info) : NULL_TREE;
1246 int stmt_cost = targetm.vectorize.builtin_vectorization_cost (kind, vectype,
1247 misalign);
1248 /* Statements in an inner loop relative to the loop being
1249 vectorized are weighted more heavily. The value here is
1250 arbitrary and could potentially be improved with analysis. */
1251 if (where == vect_body && stmt_info && stmt_in_inner_loop_p (stmt_info))
1252 count *= 50; /* FIXME. */
1253
1254 retval = (unsigned) (count * stmt_cost);
1255 cost[where] += retval;
1256
1257 return retval;
1258 }
1259
1260 /* By default, the cost model just returns the accumulated costs. */
1261
1262 void
1263 default_finish_cost (void *data, unsigned *prologue_cost,
1264 unsigned *body_cost, unsigned *epilogue_cost)
1265 {
1266 unsigned *cost = (unsigned *) data;
1267 *prologue_cost = cost[vect_prologue];
1268 *body_cost = cost[vect_body];
1269 *epilogue_cost = cost[vect_epilogue];
1270 }
1271
1272 /* Free the cost data. */
1273
1274 void
1275 default_destroy_cost_data (void *data)
1276 {
1277 free (data);
1278 }
1279
1280 /* Determine whether or not a pointer mode is valid. Assume defaults
1281 of ptr_mode or Pmode - can be overridden. */
1282 bool
1283 default_valid_pointer_mode (scalar_int_mode mode)
1284 {
1285 return (mode == ptr_mode || mode == Pmode);
1286 }
1287
1288 /* Determine whether the memory reference specified by REF may alias
1289 the C libraries errno location. */
1290 bool
1291 default_ref_may_alias_errno (ao_ref *ref)
1292 {
1293 tree base = ao_ref_base (ref);
1294 /* The default implementation assumes the errno location is
1295 a declaration of type int or is always accessed via a
1296 pointer to int. We assume that accesses to errno are
1297 not deliberately obfuscated (even in conforming ways). */
1298 if (TYPE_UNSIGNED (TREE_TYPE (base))
1299 || TYPE_MODE (TREE_TYPE (base)) != TYPE_MODE (integer_type_node))
1300 return false;
1301 /* The default implementation assumes an errno location
1302 declaration is never defined in the current compilation unit. */
1303 if (DECL_P (base)
1304 && !TREE_STATIC (base))
1305 return true;
1306 else if (TREE_CODE (base) == MEM_REF
1307 && TREE_CODE (TREE_OPERAND (base, 0)) == SSA_NAME)
1308 {
1309 struct ptr_info_def *pi = SSA_NAME_PTR_INFO (TREE_OPERAND (base, 0));
1310 return !pi || pi->pt.anything || pi->pt.nonlocal;
1311 }
1312 return false;
1313 }
1314
1315 /* Return the mode for a pointer to a given ADDRSPACE,
1316 defaulting to ptr_mode for all address spaces. */
1317
1318 scalar_int_mode
1319 default_addr_space_pointer_mode (addr_space_t addrspace ATTRIBUTE_UNUSED)
1320 {
1321 return ptr_mode;
1322 }
1323
1324 /* Return the mode for an address in a given ADDRSPACE,
1325 defaulting to Pmode for all address spaces. */
1326
1327 scalar_int_mode
1328 default_addr_space_address_mode (addr_space_t addrspace ATTRIBUTE_UNUSED)
1329 {
1330 return Pmode;
1331 }
1332
1333 /* Named address space version of valid_pointer_mode.
1334 To match the above, the same modes apply to all address spaces. */
1335
1336 bool
1337 default_addr_space_valid_pointer_mode (scalar_int_mode mode,
1338 addr_space_t as ATTRIBUTE_UNUSED)
1339 {
1340 return targetm.valid_pointer_mode (mode);
1341 }
1342
1343 /* Some places still assume that all pointer or address modes are the
1344 standard Pmode and ptr_mode. These optimizations become invalid if
1345 the target actually supports multiple different modes. For now,
1346 we disable such optimizations on such targets, using this function. */
1347
1348 bool
1349 target_default_pointer_address_modes_p (void)
1350 {
1351 if (targetm.addr_space.address_mode != default_addr_space_address_mode)
1352 return false;
1353 if (targetm.addr_space.pointer_mode != default_addr_space_pointer_mode)
1354 return false;
1355
1356 return true;
1357 }
1358
1359 /* Named address space version of legitimate_address_p.
1360 By default, all address spaces have the same form. */
1361
1362 bool
1363 default_addr_space_legitimate_address_p (machine_mode mode, rtx mem,
1364 bool strict,
1365 addr_space_t as ATTRIBUTE_UNUSED)
1366 {
1367 return targetm.legitimate_address_p (mode, mem, strict);
1368 }
1369
1370 /* Named address space version of LEGITIMIZE_ADDRESS.
1371 By default, all address spaces have the same form. */
1372
1373 rtx
1374 default_addr_space_legitimize_address (rtx x, rtx oldx, machine_mode mode,
1375 addr_space_t as ATTRIBUTE_UNUSED)
1376 {
1377 return targetm.legitimize_address (x, oldx, mode);
1378 }
1379
1380 /* The default hook for determining if one named address space is a subset of
1381 another and to return which address space to use as the common address
1382 space. */
1383
1384 bool
1385 default_addr_space_subset_p (addr_space_t subset, addr_space_t superset)
1386 {
1387 return (subset == superset);
1388 }
1389
1390 /* The default hook for determining if 0 within a named address
1391 space is a valid address. */
1392
1393 bool
1394 default_addr_space_zero_address_valid (addr_space_t as ATTRIBUTE_UNUSED)
1395 {
1396 return false;
1397 }
1398
1399 /* The default hook for debugging the address space is to return the
1400 address space number to indicate DW_AT_address_class. */
1401 int
1402 default_addr_space_debug (addr_space_t as)
1403 {
1404 return as;
1405 }
1406
1407 /* The default hook implementation for TARGET_ADDR_SPACE_DIAGNOSE_USAGE.
1408 Don't complain about any address space. */
1409
1410 void
1411 default_addr_space_diagnose_usage (addr_space_t, location_t)
1412 {
1413 }
1414
1415
1416 /* The default hook for TARGET_ADDR_SPACE_CONVERT. This hook should never be
1417 called for targets with only a generic address space. */
1418
1419 rtx
1420 default_addr_space_convert (rtx op ATTRIBUTE_UNUSED,
1421 tree from_type ATTRIBUTE_UNUSED,
1422 tree to_type ATTRIBUTE_UNUSED)
1423 {
1424 gcc_unreachable ();
1425 }
1426
1427 /* The defualt implementation of TARGET_HARD_REGNO_NREGS. */
1428
1429 unsigned int
1430 default_hard_regno_nregs (unsigned int, machine_mode mode)
1431 {
1432 return CEIL (GET_MODE_SIZE (mode), UNITS_PER_WORD);
1433 }
1434
1435 bool
1436 default_hard_regno_scratch_ok (unsigned int regno ATTRIBUTE_UNUSED)
1437 {
1438 return true;
1439 }
1440
1441 /* The default implementation of TARGET_MODE_DEPENDENT_ADDRESS_P. */
1442
1443 bool
1444 default_mode_dependent_address_p (const_rtx addr ATTRIBUTE_UNUSED,
1445 addr_space_t addrspace ATTRIBUTE_UNUSED)
1446 {
1447 return false;
1448 }
1449
1450 bool
1451 default_target_option_valid_attribute_p (tree ARG_UNUSED (fndecl),
1452 tree ARG_UNUSED (name),
1453 tree ARG_UNUSED (args),
1454 int ARG_UNUSED (flags))
1455 {
1456 warning (OPT_Wattributes,
1457 "target attribute is not supported on this machine");
1458
1459 return false;
1460 }
1461
1462 bool
1463 default_target_option_pragma_parse (tree ARG_UNUSED (args),
1464 tree ARG_UNUSED (pop_target))
1465 {
1466 /* If args is NULL the caller is handle_pragma_pop_options (). In that case,
1467 emit no warning because "#pragma GCC pop_target" is valid on targets that
1468 do not have the "target" pragma. */
1469 if (args)
1470 warning (OPT_Wpragmas,
1471 "#pragma GCC target is not supported for this machine");
1472
1473 return false;
1474 }
1475
1476 bool
1477 default_target_can_inline_p (tree caller, tree callee)
1478 {
1479 tree callee_opts = DECL_FUNCTION_SPECIFIC_TARGET (callee);
1480 tree caller_opts = DECL_FUNCTION_SPECIFIC_TARGET (caller);
1481 if (! callee_opts)
1482 callee_opts = target_option_default_node;
1483 if (! caller_opts)
1484 caller_opts = target_option_default_node;
1485
1486 /* If both caller and callee have attributes, assume that if the
1487 pointer is different, the two functions have different target
1488 options since build_target_option_node uses a hash table for the
1489 options. */
1490 return callee_opts == caller_opts;
1491 }
1492
1493 /* If the machine does not have a case insn that compares the bounds,
1494 this means extra overhead for dispatch tables, which raises the
1495 threshold for using them. */
1496
1497 unsigned int
1498 default_case_values_threshold (void)
1499 {
1500 return (targetm.have_casesi () ? 4 : 5);
1501 }
1502
1503 bool
1504 default_have_conditional_execution (void)
1505 {
1506 return HAVE_conditional_execution;
1507 }
1508
1509 /* By default we assume that c99 functions are present at the runtime,
1510 but sincos is not. */
1511 bool
1512 default_libc_has_function (enum function_class fn_class)
1513 {
1514 if (fn_class == function_c94
1515 || fn_class == function_c99_misc
1516 || fn_class == function_c99_math_complex)
1517 return true;
1518
1519 return false;
1520 }
1521
1522 bool
1523 gnu_libc_has_function (enum function_class fn_class ATTRIBUTE_UNUSED)
1524 {
1525 return true;
1526 }
1527
1528 bool
1529 no_c99_libc_has_function (enum function_class fn_class ATTRIBUTE_UNUSED)
1530 {
1531 return false;
1532 }
1533
1534 tree
1535 default_builtin_tm_load_store (tree ARG_UNUSED (type))
1536 {
1537 return NULL_TREE;
1538 }
1539
1540 /* Compute cost of moving registers to/from memory. */
1541
1542 int
1543 default_memory_move_cost (machine_mode mode ATTRIBUTE_UNUSED,
1544 reg_class_t rclass ATTRIBUTE_UNUSED,
1545 bool in ATTRIBUTE_UNUSED)
1546 {
1547 #ifndef MEMORY_MOVE_COST
1548 return (4 + memory_move_secondary_cost (mode, (enum reg_class) rclass, in));
1549 #else
1550 return MEMORY_MOVE_COST (mode, (enum reg_class) rclass, in);
1551 #endif
1552 }
1553
1554 /* Compute cost of moving data from a register of class FROM to one of
1555 TO, using MODE. */
1556
1557 int
1558 default_register_move_cost (machine_mode mode ATTRIBUTE_UNUSED,
1559 reg_class_t from ATTRIBUTE_UNUSED,
1560 reg_class_t to ATTRIBUTE_UNUSED)
1561 {
1562 #ifndef REGISTER_MOVE_COST
1563 return 2;
1564 #else
1565 return REGISTER_MOVE_COST (mode, (enum reg_class) from, (enum reg_class) to);
1566 #endif
1567 }
1568
1569 /* The default implementation of TARGET_SLOW_UNALIGNED_ACCESS. */
1570
1571 bool
1572 default_slow_unaligned_access (machine_mode, unsigned int)
1573 {
1574 return STRICT_ALIGNMENT;
1575 }
1576
1577 /* For hooks which use the MOVE_RATIO macro, this gives the legacy default
1578 behavior. SPEED_P is true if we are compiling for speed. */
1579
1580 unsigned int
1581 get_move_ratio (bool speed_p ATTRIBUTE_UNUSED)
1582 {
1583 unsigned int move_ratio;
1584 #ifdef MOVE_RATIO
1585 move_ratio = (unsigned int) MOVE_RATIO (speed_p);
1586 #else
1587 #if defined (HAVE_movmemqi) || defined (HAVE_movmemhi) || defined (HAVE_movmemsi) || defined (HAVE_movmemdi) || defined (HAVE_movmemti)
1588 move_ratio = 2;
1589 #else /* No movmem patterns, pick a default. */
1590 move_ratio = ((speed_p) ? 15 : 3);
1591 #endif
1592 #endif
1593 return move_ratio;
1594 }
1595
1596 /* Return TRUE if the move_by_pieces/set_by_pieces infrastructure should be
1597 used; return FALSE if the movmem/setmem optab should be expanded, or
1598 a call to memcpy emitted. */
1599
1600 bool
1601 default_use_by_pieces_infrastructure_p (unsigned HOST_WIDE_INT size,
1602 unsigned int alignment,
1603 enum by_pieces_operation op,
1604 bool speed_p)
1605 {
1606 unsigned int max_size = 0;
1607 unsigned int ratio = 0;
1608
1609 switch (op)
1610 {
1611 case CLEAR_BY_PIECES:
1612 max_size = STORE_MAX_PIECES;
1613 ratio = CLEAR_RATIO (speed_p);
1614 break;
1615 case MOVE_BY_PIECES:
1616 max_size = MOVE_MAX_PIECES;
1617 ratio = get_move_ratio (speed_p);
1618 break;
1619 case SET_BY_PIECES:
1620 max_size = STORE_MAX_PIECES;
1621 ratio = SET_RATIO (speed_p);
1622 break;
1623 case STORE_BY_PIECES:
1624 max_size = STORE_MAX_PIECES;
1625 ratio = get_move_ratio (speed_p);
1626 break;
1627 case COMPARE_BY_PIECES:
1628 max_size = COMPARE_MAX_PIECES;
1629 /* Pick a likely default, just as in get_move_ratio. */
1630 ratio = speed_p ? 15 : 3;
1631 break;
1632 }
1633
1634 return by_pieces_ninsns (size, alignment, max_size + 1, op) < ratio;
1635 }
1636
1637 /* This hook controls code generation for expanding a memcmp operation by
1638 pieces. Return 1 for the normal pattern of compare/jump after each pair
1639 of loads, or a higher number to reduce the number of branches. */
1640
1641 int
1642 default_compare_by_pieces_branch_ratio (machine_mode)
1643 {
1644 return 1;
1645 }
1646
1647 /* Write PATCH_AREA_SIZE NOPs into the asm outfile FILE around a function
1648 entry. If RECORD_P is true and the target supports named sections,
1649 the location of the NOPs will be recorded in a special object section
1650 called "__patchable_function_entries". This routine may be called
1651 twice per function to put NOPs before and after the function
1652 entry. */
1653
1654 void
1655 default_print_patchable_function_entry (FILE *file,
1656 unsigned HOST_WIDE_INT patch_area_size,
1657 bool record_p)
1658 {
1659 const char *nop_templ = 0;
1660 int code_num;
1661 rtx_insn *my_nop = make_insn_raw (gen_nop ());
1662
1663 /* We use the template alone, relying on the (currently sane) assumption
1664 that the NOP template does not have variable operands. */
1665 code_num = recog_memoized (my_nop);
1666 nop_templ = get_insn_template (code_num, my_nop);
1667
1668 if (record_p && targetm_common.have_named_sections)
1669 {
1670 char buf[256];
1671 static int patch_area_number;
1672 section *previous_section = in_section;
1673
1674 patch_area_number++;
1675 ASM_GENERATE_INTERNAL_LABEL (buf, "LPFE", patch_area_number);
1676
1677 switch_to_section (get_section ("__patchable_function_entries",
1678 0, NULL));
1679 fputs (integer_asm_op (POINTER_SIZE_UNITS, false), file);
1680 assemble_name_raw (file, buf);
1681 fputc ('\n', file);
1682
1683 switch_to_section (previous_section);
1684 ASM_OUTPUT_LABEL (file, buf);
1685 }
1686
1687 unsigned i;
1688 for (i = 0; i < patch_area_size; ++i)
1689 fprintf (file, "\t%s\n", nop_templ);
1690 }
1691
1692 bool
1693 default_profile_before_prologue (void)
1694 {
1695 #ifdef PROFILE_BEFORE_PROLOGUE
1696 return true;
1697 #else
1698 return false;
1699 #endif
1700 }
1701
1702 /* The default implementation of TARGET_PREFERRED_RELOAD_CLASS. */
1703
1704 reg_class_t
1705 default_preferred_reload_class (rtx x ATTRIBUTE_UNUSED,
1706 reg_class_t rclass)
1707 {
1708 #ifdef PREFERRED_RELOAD_CLASS
1709 return (reg_class_t) PREFERRED_RELOAD_CLASS (x, (enum reg_class) rclass);
1710 #else
1711 return rclass;
1712 #endif
1713 }
1714
1715 /* The default implementation of TARGET_OUTPUT_PREFERRED_RELOAD_CLASS. */
1716
1717 reg_class_t
1718 default_preferred_output_reload_class (rtx x ATTRIBUTE_UNUSED,
1719 reg_class_t rclass)
1720 {
1721 return rclass;
1722 }
1723
1724 /* The default implementation of TARGET_PREFERRED_RENAME_CLASS. */
1725 reg_class_t
1726 default_preferred_rename_class (reg_class_t rclass ATTRIBUTE_UNUSED)
1727 {
1728 return NO_REGS;
1729 }
1730
1731 /* The default implementation of TARGET_CLASS_LIKELY_SPILLED_P. */
1732
1733 bool
1734 default_class_likely_spilled_p (reg_class_t rclass)
1735 {
1736 return (reg_class_size[(int) rclass] == 1);
1737 }
1738
1739 /* The default implementation of TARGET_CLASS_MAX_NREGS. */
1740
1741 unsigned char
1742 default_class_max_nregs (reg_class_t rclass ATTRIBUTE_UNUSED,
1743 machine_mode mode ATTRIBUTE_UNUSED)
1744 {
1745 #ifdef CLASS_MAX_NREGS
1746 return (unsigned char) CLASS_MAX_NREGS ((enum reg_class) rclass, mode);
1747 #else
1748 return ((GET_MODE_SIZE (mode) + UNITS_PER_WORD - 1) / UNITS_PER_WORD);
1749 #endif
1750 }
1751
1752 /* Determine the debugging unwind mechanism for the target. */
1753
1754 enum unwind_info_type
1755 default_debug_unwind_info (void)
1756 {
1757 /* If the target wants to force the use of dwarf2 unwind info, let it. */
1758 /* ??? Change all users to the hook, then poison this. */
1759 #ifdef DWARF2_FRAME_INFO
1760 if (DWARF2_FRAME_INFO)
1761 return UI_DWARF2;
1762 #endif
1763
1764 /* Otherwise, only turn it on if dwarf2 debugging is enabled. */
1765 #ifdef DWARF2_DEBUGGING_INFO
1766 if (write_symbols == DWARF2_DEBUG || write_symbols == VMS_AND_DWARF2_DEBUG)
1767 return UI_DWARF2;
1768 #endif
1769
1770 return UI_NONE;
1771 }
1772
1773 /* Determine the correct mode for a Dwarf frame register that represents
1774 register REGNO. */
1775
1776 machine_mode
1777 default_dwarf_frame_reg_mode (int regno)
1778 {
1779 machine_mode save_mode = reg_raw_mode[regno];
1780
1781 if (targetm.hard_regno_call_part_clobbered (regno, save_mode))
1782 save_mode = choose_hard_reg_mode (regno, 1, true);
1783 return save_mode;
1784 }
1785
1786 /* To be used by targets where reg_raw_mode doesn't return the right
1787 mode for registers used in apply_builtin_return and apply_builtin_arg. */
1788
1789 machine_mode
1790 default_get_reg_raw_mode (int regno)
1791 {
1792 return reg_raw_mode[regno];
1793 }
1794
1795 /* Return true if a leaf function should stay leaf even with profiling
1796 enabled. */
1797
1798 bool
1799 default_keep_leaf_when_profiled ()
1800 {
1801 return false;
1802 }
1803
1804 /* Return true if the state of option OPTION should be stored in PCH files
1805 and checked by default_pch_valid_p. Store the option's current state
1806 in STATE if so. */
1807
1808 static inline bool
1809 option_affects_pch_p (int option, struct cl_option_state *state)
1810 {
1811 if ((cl_options[option].flags & CL_TARGET) == 0)
1812 return false;
1813 if ((cl_options[option].flags & CL_PCH_IGNORE) != 0)
1814 return false;
1815 if (option_flag_var (option, &global_options) == &target_flags)
1816 if (targetm.check_pch_target_flags)
1817 return false;
1818 return get_option_state (&global_options, option, state);
1819 }
1820
1821 /* Default version of get_pch_validity.
1822 By default, every flag difference is fatal; that will be mostly right for
1823 most targets, but completely right for very few. */
1824
1825 void *
1826 default_get_pch_validity (size_t *sz)
1827 {
1828 struct cl_option_state state;
1829 size_t i;
1830 char *result, *r;
1831
1832 *sz = 2;
1833 if (targetm.check_pch_target_flags)
1834 *sz += sizeof (target_flags);
1835 for (i = 0; i < cl_options_count; i++)
1836 if (option_affects_pch_p (i, &state))
1837 *sz += state.size;
1838
1839 result = r = XNEWVEC (char, *sz);
1840 r[0] = flag_pic;
1841 r[1] = flag_pie;
1842 r += 2;
1843 if (targetm.check_pch_target_flags)
1844 {
1845 memcpy (r, &target_flags, sizeof (target_flags));
1846 r += sizeof (target_flags);
1847 }
1848
1849 for (i = 0; i < cl_options_count; i++)
1850 if (option_affects_pch_p (i, &state))
1851 {
1852 memcpy (r, state.data, state.size);
1853 r += state.size;
1854 }
1855
1856 return result;
1857 }
1858
1859 /* Return a message which says that a PCH file was created with a different
1860 setting of OPTION. */
1861
1862 static const char *
1863 pch_option_mismatch (const char *option)
1864 {
1865 return xasprintf (_("created and used with differing settings of '%s'"),
1866 option);
1867 }
1868
1869 /* Default version of pch_valid_p. */
1870
1871 const char *
1872 default_pch_valid_p (const void *data_p, size_t len)
1873 {
1874 struct cl_option_state state;
1875 const char *data = (const char *)data_p;
1876 size_t i;
1877
1878 /* -fpic and -fpie also usually make a PCH invalid. */
1879 if (data[0] != flag_pic)
1880 return _("created and used with different settings of -fpic");
1881 if (data[1] != flag_pie)
1882 return _("created and used with different settings of -fpie");
1883 data += 2;
1884
1885 /* Check target_flags. */
1886 if (targetm.check_pch_target_flags)
1887 {
1888 int tf;
1889 const char *r;
1890
1891 memcpy (&tf, data, sizeof (target_flags));
1892 data += sizeof (target_flags);
1893 len -= sizeof (target_flags);
1894 r = targetm.check_pch_target_flags (tf);
1895 if (r != NULL)
1896 return r;
1897 }
1898
1899 for (i = 0; i < cl_options_count; i++)
1900 if (option_affects_pch_p (i, &state))
1901 {
1902 if (memcmp (data, state.data, state.size) != 0)
1903 return pch_option_mismatch (cl_options[i].opt_text);
1904 data += state.size;
1905 len -= state.size;
1906 }
1907
1908 return NULL;
1909 }
1910
1911 /* Default version of cstore_mode. */
1912
1913 scalar_int_mode
1914 default_cstore_mode (enum insn_code icode)
1915 {
1916 return as_a <scalar_int_mode> (insn_data[(int) icode].operand[0].mode);
1917 }
1918
1919 /* Default version of member_type_forces_blk. */
1920
1921 bool
1922 default_member_type_forces_blk (const_tree, machine_mode)
1923 {
1924 return false;
1925 }
1926
1927 rtx
1928 default_load_bounds_for_arg (rtx addr ATTRIBUTE_UNUSED,
1929 rtx ptr ATTRIBUTE_UNUSED,
1930 rtx bnd ATTRIBUTE_UNUSED)
1931 {
1932 gcc_unreachable ();
1933 }
1934
1935 void
1936 default_store_bounds_for_arg (rtx val ATTRIBUTE_UNUSED,
1937 rtx addr ATTRIBUTE_UNUSED,
1938 rtx bounds ATTRIBUTE_UNUSED,
1939 rtx to ATTRIBUTE_UNUSED)
1940 {
1941 gcc_unreachable ();
1942 }
1943
1944 rtx
1945 default_load_returned_bounds (rtx slot ATTRIBUTE_UNUSED)
1946 {
1947 gcc_unreachable ();
1948 }
1949
1950 void
1951 default_store_returned_bounds (rtx slot ATTRIBUTE_UNUSED,
1952 rtx bounds ATTRIBUTE_UNUSED)
1953 {
1954 gcc_unreachable ();
1955 }
1956
1957 /* Default version of canonicalize_comparison. */
1958
1959 void
1960 default_canonicalize_comparison (int *, rtx *, rtx *, bool)
1961 {
1962 }
1963
1964 /* Default implementation of TARGET_ATOMIC_ASSIGN_EXPAND_FENV. */
1965
1966 void
1967 default_atomic_assign_expand_fenv (tree *, tree *, tree *)
1968 {
1969 }
1970
1971 #ifndef PAD_VARARGS_DOWN
1972 #define PAD_VARARGS_DOWN BYTES_BIG_ENDIAN
1973 #endif
1974
1975 /* Build an indirect-ref expression over the given TREE, which represents a
1976 piece of a va_arg() expansion. */
1977 tree
1978 build_va_arg_indirect_ref (tree addr)
1979 {
1980 addr = build_simple_mem_ref_loc (EXPR_LOCATION (addr), addr);
1981 return addr;
1982 }
1983
1984 /* The "standard" implementation of va_arg: read the value from the
1985 current (padded) address and increment by the (padded) size. */
1986
1987 tree
1988 std_gimplify_va_arg_expr (tree valist, tree type, gimple_seq *pre_p,
1989 gimple_seq *post_p)
1990 {
1991 tree addr, t, type_size, rounded_size, valist_tmp;
1992 unsigned HOST_WIDE_INT align, boundary;
1993 bool indirect;
1994
1995 /* All of the alignment and movement below is for args-grow-up machines.
1996 As of 2004, there are only 3 ARGS_GROW_DOWNWARD targets, and they all
1997 implement their own specialized gimplify_va_arg_expr routines. */
1998 if (ARGS_GROW_DOWNWARD)
1999 gcc_unreachable ();
2000
2001 indirect = pass_by_reference (NULL, TYPE_MODE (type), type, false);
2002 if (indirect)
2003 type = build_pointer_type (type);
2004
2005 align = PARM_BOUNDARY / BITS_PER_UNIT;
2006 boundary = targetm.calls.function_arg_boundary (TYPE_MODE (type), type);
2007
2008 /* When we align parameter on stack for caller, if the parameter
2009 alignment is beyond MAX_SUPPORTED_STACK_ALIGNMENT, it will be
2010 aligned at MAX_SUPPORTED_STACK_ALIGNMENT. We will match callee
2011 here with caller. */
2012 if (boundary > MAX_SUPPORTED_STACK_ALIGNMENT)
2013 boundary = MAX_SUPPORTED_STACK_ALIGNMENT;
2014
2015 boundary /= BITS_PER_UNIT;
2016
2017 /* Hoist the valist value into a temporary for the moment. */
2018 valist_tmp = get_initialized_tmp_var (valist, pre_p, NULL);
2019
2020 /* va_list pointer is aligned to PARM_BOUNDARY. If argument actually
2021 requires greater alignment, we must perform dynamic alignment. */
2022 if (boundary > align
2023 && !integer_zerop (TYPE_SIZE (type)))
2024 {
2025 t = build2 (MODIFY_EXPR, TREE_TYPE (valist), valist_tmp,
2026 fold_build_pointer_plus_hwi (valist_tmp, boundary - 1));
2027 gimplify_and_add (t, pre_p);
2028
2029 t = build2 (MODIFY_EXPR, TREE_TYPE (valist), valist_tmp,
2030 fold_build2 (BIT_AND_EXPR, TREE_TYPE (valist),
2031 valist_tmp,
2032 build_int_cst (TREE_TYPE (valist), -boundary)));
2033 gimplify_and_add (t, pre_p);
2034 }
2035 else
2036 boundary = align;
2037
2038 /* If the actual alignment is less than the alignment of the type,
2039 adjust the type accordingly so that we don't assume strict alignment
2040 when dereferencing the pointer. */
2041 boundary *= BITS_PER_UNIT;
2042 if (boundary < TYPE_ALIGN (type))
2043 {
2044 type = build_variant_type_copy (type);
2045 SET_TYPE_ALIGN (type, boundary);
2046 }
2047
2048 /* Compute the rounded size of the type. */
2049 type_size = size_in_bytes (type);
2050 rounded_size = round_up (type_size, align);
2051
2052 /* Reduce rounded_size so it's sharable with the postqueue. */
2053 gimplify_expr (&rounded_size, pre_p, post_p, is_gimple_val, fb_rvalue);
2054
2055 /* Get AP. */
2056 addr = valist_tmp;
2057 if (PAD_VARARGS_DOWN && !integer_zerop (rounded_size))
2058 {
2059 /* Small args are padded downward. */
2060 t = fold_build2_loc (input_location, GT_EXPR, sizetype,
2061 rounded_size, size_int (align));
2062 t = fold_build3 (COND_EXPR, sizetype, t, size_zero_node,
2063 size_binop (MINUS_EXPR, rounded_size, type_size));
2064 addr = fold_build_pointer_plus (addr, t);
2065 }
2066
2067 /* Compute new value for AP. */
2068 t = fold_build_pointer_plus (valist_tmp, rounded_size);
2069 t = build2 (MODIFY_EXPR, TREE_TYPE (valist), valist, t);
2070 gimplify_and_add (t, pre_p);
2071
2072 addr = fold_convert (build_pointer_type (type), addr);
2073
2074 if (indirect)
2075 addr = build_va_arg_indirect_ref (addr);
2076
2077 return build_va_arg_indirect_ref (addr);
2078 }
2079
2080 tree
2081 default_chkp_bound_type (void)
2082 {
2083 tree res = make_node (POINTER_BOUNDS_TYPE);
2084 TYPE_PRECISION (res) = TYPE_PRECISION (size_type_node) * 2;
2085 TYPE_NAME (res) = get_identifier ("__bounds_type");
2086 SET_TYPE_MODE (res, targetm.chkp_bound_mode ());
2087 layout_type (res);
2088 return res;
2089 }
2090
2091 machine_mode
2092 default_chkp_bound_mode (void)
2093 {
2094 return VOIDmode;
2095 }
2096
2097 tree
2098 default_builtin_chkp_function (unsigned int fcode ATTRIBUTE_UNUSED)
2099 {
2100 return NULL_TREE;
2101 }
2102
2103 rtx
2104 default_chkp_function_value_bounds (const_tree ret_type ATTRIBUTE_UNUSED,
2105 const_tree fn_decl_or_type ATTRIBUTE_UNUSED,
2106 bool outgoing ATTRIBUTE_UNUSED)
2107 {
2108 gcc_unreachable ();
2109 }
2110
2111 tree
2112 default_chkp_make_bounds_constant (HOST_WIDE_INT lb ATTRIBUTE_UNUSED,
2113 HOST_WIDE_INT ub ATTRIBUTE_UNUSED)
2114 {
2115 return NULL_TREE;
2116 }
2117
2118 int
2119 default_chkp_initialize_bounds (tree var ATTRIBUTE_UNUSED,
2120 tree lb ATTRIBUTE_UNUSED,
2121 tree ub ATTRIBUTE_UNUSED,
2122 tree *stmts ATTRIBUTE_UNUSED)
2123 {
2124 return 0;
2125 }
2126
2127 void
2128 default_setup_incoming_vararg_bounds (cumulative_args_t ca ATTRIBUTE_UNUSED,
2129 machine_mode mode ATTRIBUTE_UNUSED,
2130 tree type ATTRIBUTE_UNUSED,
2131 int *pretend_arg_size ATTRIBUTE_UNUSED,
2132 int second_time ATTRIBUTE_UNUSED)
2133 {
2134 }
2135
2136 /* An implementation of TARGET_CAN_USE_DOLOOP_P for targets that do
2137 not support nested low-overhead loops. */
2138
2139 bool
2140 can_use_doloop_if_innermost (const widest_int &, const widest_int &,
2141 unsigned int loop_depth, bool)
2142 {
2143 return loop_depth == 1;
2144 }
2145
2146 /* Default implementation of TARGET_OPTAB_SUPPORTED_P. */
2147
2148 bool
2149 default_optab_supported_p (int, machine_mode, machine_mode, optimization_type)
2150 {
2151 return true;
2152 }
2153
2154 /* Default implementation of TARGET_MAX_NOCE_IFCVT_SEQ_COST. */
2155
2156 unsigned int
2157 default_max_noce_ifcvt_seq_cost (edge e)
2158 {
2159 bool predictable_p = predictable_edge_p (e);
2160
2161 enum compiler_param param
2162 = (predictable_p
2163 ? PARAM_MAX_RTL_IF_CONVERSION_PREDICTABLE_COST
2164 : PARAM_MAX_RTL_IF_CONVERSION_UNPREDICTABLE_COST);
2165
2166 /* If we have a parameter set, use that, otherwise take a guess using
2167 BRANCH_COST. */
2168 if (global_options_set.x_param_values[param])
2169 return PARAM_VALUE (param);
2170 else
2171 return BRANCH_COST (true, predictable_p) * COSTS_N_INSNS (3);
2172 }
2173
2174 /* Default implementation of TARGET_MIN_ARITHMETIC_PRECISION. */
2175
2176 unsigned int
2177 default_min_arithmetic_precision (void)
2178 {
2179 return WORD_REGISTER_OPERATIONS ? BITS_PER_WORD : BITS_PER_UNIT;
2180 }
2181
2182 /* Default implementation of TARGET_C_EXCESS_PRECISION. */
2183
2184 enum flt_eval_method
2185 default_excess_precision (enum excess_precision_type ATTRIBUTE_UNUSED)
2186 {
2187 return FLT_EVAL_METHOD_PROMOTE_TO_FLOAT;
2188 }
2189
2190 #include "gt-targhooks.h"