Don't warn when alignment of global common data exceeds maximum alignment.
[official-gcc.git] / gcc / varasm.c
blob53cf6dea3f367bdd182bc9eb40970991cfd9b668
1 /* Output variables, constants and external declarations, for GNU compiler.
2 Copyright (C) 1987-2021 Free Software Foundation, Inc.
4 This file is part of GCC.
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.
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.
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/>. */
21 /* This file handles generation of all the assembler code
22 *except* the instructions of a function.
23 This includes declarations of variables and their initial values.
25 We also output the assembler code for constants stored in memory
26 and are responsible for combining constants with the same value. */
28 #include "config.h"
29 #include "system.h"
30 #include "coretypes.h"
31 #include "backend.h"
32 #include "target.h"
33 #include "rtl.h"
34 #include "tree.h"
35 #include "predict.h"
36 #include "memmodel.h"
37 #include "tm_p.h"
38 #include "stringpool.h"
39 #include "regs.h"
40 #include "emit-rtl.h"
41 #include "cgraph.h"
42 #include "diagnostic-core.h"
43 #include "fold-const.h"
44 #include "stor-layout.h"
45 #include "varasm.h"
46 #include "version.h"
47 #include "flags.h"
48 #include "stmt.h"
49 #include "expr.h"
50 #include "expmed.h"
51 #include "optabs.h"
52 #include "output.h"
53 #include "langhooks.h"
54 #include "debug.h"
55 #include "common/common-target.h"
56 #include "stringpool.h"
57 #include "attribs.h"
58 #include "asan.h"
59 #include "rtl-iter.h"
60 #include "file-prefix-map.h" /* remap_debug_filename() */
61 #include "alloc-pool.h"
62 #include "toplev.h"
63 #include "opts.h"
65 #ifdef XCOFF_DEBUGGING_INFO
66 #include "xcoffout.h" /* Needed for external data declarations. */
67 #endif
69 /* The (assembler) name of the first globally-visible object output. */
70 extern GTY(()) const char *first_global_object_name;
71 extern GTY(()) const char *weak_global_object_name;
73 const char *first_global_object_name;
74 const char *weak_global_object_name;
76 class addr_const;
77 class constant_descriptor_rtx;
78 struct rtx_constant_pool;
80 #define n_deferred_constants (crtl->varasm.deferred_constants)
82 /* Number for making the label on the next
83 constant that is stored in memory. */
85 static GTY(()) int const_labelno;
87 /* Carry information from ASM_DECLARE_OBJECT_NAME
88 to ASM_FINISH_DECLARE_OBJECT. */
90 int size_directive_output;
92 /* The last decl for which assemble_variable was called,
93 if it did ASM_DECLARE_OBJECT_NAME.
94 If the last call to assemble_variable didn't do that,
95 this holds 0. */
97 tree last_assemble_variable_decl;
99 /* The following global variable indicates if the first basic block
100 in a function belongs to the cold partition or not. */
102 bool first_function_block_is_cold;
104 /* Whether we saw any functions with no_split_stack. */
106 static bool saw_no_split_stack;
108 static const char *strip_reg_name (const char *);
109 static int contains_pointers_p (tree);
110 #ifdef ASM_OUTPUT_EXTERNAL
111 static bool incorporeal_function_p (tree);
112 #endif
113 static void decode_addr_const (tree, class addr_const *);
114 static hashval_t const_hash_1 (const tree);
115 static int compare_constant (const tree, const tree);
116 static void output_constant_def_contents (rtx);
117 static void output_addressed_constants (tree, int);
118 static unsigned HOST_WIDE_INT output_constant (tree, unsigned HOST_WIDE_INT,
119 unsigned int, bool, bool);
120 static void globalize_decl (tree);
121 static bool decl_readonly_section_1 (enum section_category);
122 #ifdef BSS_SECTION_ASM_OP
123 #ifdef ASM_OUTPUT_ALIGNED_BSS
124 static void asm_output_aligned_bss (FILE *, tree, const char *,
125 unsigned HOST_WIDE_INT, int)
126 ATTRIBUTE_UNUSED;
127 #endif
128 #endif /* BSS_SECTION_ASM_OP */
129 static void mark_weak (tree);
130 static void output_constant_pool (const char *, tree);
131 static void handle_vtv_comdat_section (section *, const_tree);
133 /* Well-known sections, each one associated with some sort of *_ASM_OP. */
134 section *text_section;
135 section *data_section;
136 section *readonly_data_section;
137 section *sdata_section;
138 section *ctors_section;
139 section *dtors_section;
140 section *bss_section;
141 section *sbss_section;
143 /* Various forms of common section. All are guaranteed to be nonnull. */
144 section *tls_comm_section;
145 section *comm_section;
146 section *lcomm_section;
148 /* A SECTION_NOSWITCH section used for declaring global BSS variables.
149 May be null. */
150 section *bss_noswitch_section;
152 /* The section that holds the main exception table, when known. The section
153 is set either by the target's init_sections hook or by the first call to
154 switch_to_exception_section. */
155 section *exception_section;
157 /* The section that holds the DWARF2 frame unwind information, when known.
158 The section is set either by the target's init_sections hook or by the
159 first call to switch_to_eh_frame_section. */
160 section *eh_frame_section;
162 /* asm_out_file's current section. This is NULL if no section has yet
163 been selected or if we lose track of what the current section is. */
164 section *in_section;
166 /* True if code for the current function is currently being directed
167 at the cold section. */
168 bool in_cold_section_p;
170 /* The following global holds the "function name" for the code in the
171 cold section of a function, if hot/cold function splitting is enabled
172 and there was actually code that went into the cold section. A
173 pseudo function name is needed for the cold section of code for some
174 debugging tools that perform symbolization. */
175 tree cold_function_name = NULL_TREE;
177 /* A linked list of all the unnamed sections. */
178 static GTY(()) section *unnamed_sections;
180 /* Return a nonzero value if DECL has a section attribute. */
181 #define IN_NAMED_SECTION(DECL) \
182 (VAR_OR_FUNCTION_DECL_P (DECL) && DECL_SECTION_NAME (DECL) != NULL)
184 struct section_hasher : ggc_ptr_hash<section>
186 typedef const char *compare_type;
188 static hashval_t hash (section *);
189 static bool equal (section *, const char *);
192 /* Hash table of named sections. */
193 static GTY(()) hash_table<section_hasher> *section_htab;
195 struct object_block_hasher : ggc_ptr_hash<object_block>
197 typedef const section *compare_type;
199 static hashval_t hash (object_block *);
200 static bool equal (object_block *, const section *);
203 /* A table of object_blocks, indexed by section. */
204 static GTY(()) hash_table<object_block_hasher> *object_block_htab;
206 /* The next number to use for internal anchor labels. */
207 static GTY(()) int anchor_labelno;
209 /* A pool of constants that can be shared between functions. */
210 static GTY(()) struct rtx_constant_pool *shared_constant_pool;
212 /* Helper routines for maintaining section_htab. */
214 bool
215 section_hasher::equal (section *old, const char *new_name)
217 return strcmp (old->named.name, new_name) == 0;
220 hashval_t
221 section_hasher::hash (section *old)
223 return htab_hash_string (old->named.name);
226 /* Return a hash value for section SECT. */
228 static hashval_t
229 hash_section (section *sect)
231 if (sect->common.flags & SECTION_NAMED)
232 return htab_hash_string (sect->named.name);
233 return sect->common.flags & ~SECTION_DECLARED;
236 /* Helper routines for maintaining object_block_htab. */
238 inline bool
239 object_block_hasher::equal (object_block *old, const section *new_section)
241 return old->sect == new_section;
244 hashval_t
245 object_block_hasher::hash (object_block *old)
247 return hash_section (old->sect);
250 /* Return a new unnamed section with the given fields. */
252 section *
253 get_unnamed_section (unsigned int flags, void (*callback) (const void *),
254 const void *data)
256 section *sect;
258 sect = ggc_alloc<section> ();
259 sect->unnamed.common.flags = flags | SECTION_UNNAMED;
260 sect->unnamed.callback = callback;
261 sect->unnamed.data = data;
262 sect->unnamed.next = unnamed_sections;
264 unnamed_sections = sect;
265 return sect;
268 /* Return a SECTION_NOSWITCH section with the given fields. */
270 static section *
271 get_noswitch_section (unsigned int flags, noswitch_section_callback callback)
273 section *sect;
275 sect = ggc_alloc<section> ();
276 sect->noswitch.common.flags = flags | SECTION_NOSWITCH;
277 sect->noswitch.callback = callback;
279 return sect;
282 /* Return the named section structure associated with NAME. Create
283 a new section with the given fields if no such structure exists.
284 When NOT_EXISTING, then fail if the section already exists. Return
285 the existing section if the SECTION_RETAIN bit doesn't match. Set
286 the SECTION_WRITE | SECTION_RELRO bits on the the existing section
287 if one of the section flags is SECTION_WRITE | SECTION_RELRO and the
288 other has none of these flags in named sections and either the section
289 hasn't been declared yet or has been declared as writable. */
291 section *
292 get_section (const char *name, unsigned int flags, tree decl,
293 bool not_existing)
295 section *sect, **slot;
297 slot = section_htab->find_slot_with_hash (name, htab_hash_string (name),
298 INSERT);
299 flags |= SECTION_NAMED;
300 if (decl != nullptr
301 && DECL_P (decl)
302 && lookup_attribute ("retain", DECL_ATTRIBUTES (decl)))
303 flags |= SECTION_RETAIN;
304 if (*slot == NULL)
306 sect = ggc_alloc<section> ();
307 sect->named.common.flags = flags;
308 sect->named.name = ggc_strdup (name);
309 sect->named.decl = decl;
310 *slot = sect;
312 else
314 if (not_existing)
315 internal_error ("Section already exists: %qs", name);
317 sect = *slot;
318 /* It is fine if one of the sections has SECTION_NOTYPE as long as
319 the other has none of the contrary flags (see the logic at the end
320 of default_section_type_flags, below). */
321 if (((sect->common.flags ^ flags) & SECTION_NOTYPE)
322 && !((sect->common.flags | flags)
323 & (SECTION_CODE | SECTION_BSS | SECTION_TLS | SECTION_ENTSIZE
324 | (HAVE_COMDAT_GROUP ? SECTION_LINKONCE : 0))))
326 sect->common.flags |= SECTION_NOTYPE;
327 flags |= SECTION_NOTYPE;
329 if ((sect->common.flags & ~SECTION_DECLARED) != flags
330 && ((sect->common.flags | flags) & SECTION_OVERRIDE) == 0)
332 /* It is fine if one of the section flags is
333 SECTION_WRITE | SECTION_RELRO and the other has none of these
334 flags (i.e. read-only) in named sections and either the
335 section hasn't been declared yet or has been declared as writable.
336 In that case just make sure the resulting flags are
337 SECTION_WRITE | SECTION_RELRO, ie. writable only because of
338 relocations. */
339 if (((sect->common.flags ^ flags) & (SECTION_WRITE | SECTION_RELRO))
340 == (SECTION_WRITE | SECTION_RELRO)
341 && (sect->common.flags
342 & ~(SECTION_DECLARED | SECTION_WRITE | SECTION_RELRO))
343 == (flags & ~(SECTION_WRITE | SECTION_RELRO))
344 && ((sect->common.flags & SECTION_DECLARED) == 0
345 || (sect->common.flags & SECTION_WRITE)))
347 sect->common.flags |= (SECTION_WRITE | SECTION_RELRO);
348 return sect;
350 /* If the SECTION_RETAIN bit doesn't match, return and switch
351 to a new section later. */
352 if ((sect->common.flags & SECTION_RETAIN)
353 != (flags & SECTION_RETAIN))
354 return sect;
355 /* Sanity check user variables for flag changes. */
356 if (sect->named.decl != NULL
357 && DECL_P (sect->named.decl)
358 && decl != sect->named.decl)
360 if (decl != NULL && DECL_P (decl))
361 error ("%+qD causes a section type conflict with %qD",
362 decl, sect->named.decl);
363 else
364 error ("section type conflict with %qD", sect->named.decl);
365 inform (DECL_SOURCE_LOCATION (sect->named.decl),
366 "%qD was declared here", sect->named.decl);
368 else if (decl != NULL && DECL_P (decl))
369 error ("%+qD causes a section type conflict", decl);
370 else
371 error ("section type conflict");
372 /* Make sure we don't error about one section multiple times. */
373 sect->common.flags |= SECTION_OVERRIDE;
376 return sect;
379 /* Return true if the current compilation mode benefits from having
380 objects grouped into blocks. */
382 static bool
383 use_object_blocks_p (void)
385 return flag_section_anchors;
388 /* Return the object_block structure for section SECT. Create a new
389 structure if we haven't created one already. Return null if SECT
390 itself is null. Return also null for mergeable sections since
391 section anchors can't be used in mergeable sections anyway,
392 because the linker might move objects around, and using the
393 object blocks infrastructure in that case is both a waste and a
394 maintenance burden. */
396 static struct object_block *
397 get_block_for_section (section *sect)
399 struct object_block *block;
401 if (sect == NULL)
402 return NULL;
404 if (sect->common.flags & SECTION_MERGE)
405 return NULL;
407 object_block **slot
408 = object_block_htab->find_slot_with_hash (sect, hash_section (sect),
409 INSERT);
410 block = *slot;
411 if (block == NULL)
413 block = ggc_cleared_alloc<object_block> ();
414 block->sect = sect;
415 *slot = block;
417 return block;
420 /* Create a symbol with label LABEL and place it at byte offset
421 OFFSET in BLOCK. OFFSET can be negative if the symbol's offset
422 is not yet known. LABEL must be a garbage-collected string. */
424 static rtx
425 create_block_symbol (const char *label, struct object_block *block,
426 HOST_WIDE_INT offset)
428 rtx symbol;
429 unsigned int size;
431 /* Create the extended SYMBOL_REF. */
432 size = RTX_HDR_SIZE + sizeof (struct block_symbol);
433 symbol = (rtx) ggc_internal_alloc (size);
435 /* Initialize the normal SYMBOL_REF fields. */
436 memset (symbol, 0, size);
437 PUT_CODE (symbol, SYMBOL_REF);
438 PUT_MODE (symbol, Pmode);
439 XSTR (symbol, 0) = label;
440 SYMBOL_REF_FLAGS (symbol) = SYMBOL_FLAG_HAS_BLOCK_INFO;
442 /* Initialize the block_symbol stuff. */
443 SYMBOL_REF_BLOCK (symbol) = block;
444 SYMBOL_REF_BLOCK_OFFSET (symbol) = offset;
446 return symbol;
449 /* Return a section with a particular name and with whatever SECTION_*
450 flags section_type_flags deems appropriate. The name of the section
451 is taken from NAME if nonnull, otherwise it is taken from DECL's
452 DECL_SECTION_NAME. DECL is the decl associated with the section
453 (see the section comment for details) and RELOC is as for
454 section_type_flags. */
456 section *
457 get_named_section (tree decl, const char *name, int reloc)
459 unsigned int flags;
461 if (name == NULL)
463 gcc_assert (decl && DECL_P (decl) && DECL_SECTION_NAME (decl));
464 name = DECL_SECTION_NAME (decl);
467 flags = targetm.section_type_flags (decl, name, reloc);
468 return get_section (name, flags, decl);
471 /* Worker for resolve_unique_section. */
473 static bool
474 set_implicit_section (struct symtab_node *n, void *data ATTRIBUTE_UNUSED)
476 n->implicit_section = true;
477 return false;
480 /* If required, set DECL_SECTION_NAME to a unique name. */
482 void
483 resolve_unique_section (tree decl, int reloc ATTRIBUTE_UNUSED,
484 int flag_function_or_data_sections)
486 if (DECL_SECTION_NAME (decl) == NULL
487 && targetm_common.have_named_sections
488 && (flag_function_or_data_sections
489 || lookup_attribute ("retain", DECL_ATTRIBUTES (decl))
490 || DECL_COMDAT_GROUP (decl)))
492 targetm.asm_out.unique_section (decl, reloc);
493 if (DECL_SECTION_NAME (decl))
494 symtab_node::get (decl)->call_for_symbol_and_aliases
495 (set_implicit_section, NULL, true);
499 #ifdef BSS_SECTION_ASM_OP
501 #ifdef ASM_OUTPUT_ALIGNED_BSS
503 /* Utility function for targets to use in implementing
504 ASM_OUTPUT_ALIGNED_BSS.
505 ??? It is believed that this function will work in most cases so such
506 support is localized here. */
508 static void
509 asm_output_aligned_bss (FILE *file, tree decl ATTRIBUTE_UNUSED,
510 const char *name, unsigned HOST_WIDE_INT size,
511 int align)
513 switch_to_section (bss_section);
514 ASM_OUTPUT_ALIGN (file, floor_log2 (align / BITS_PER_UNIT));
515 #ifdef ASM_DECLARE_OBJECT_NAME
516 last_assemble_variable_decl = decl;
517 ASM_DECLARE_OBJECT_NAME (file, name, decl);
518 #else
519 /* Standard thing is just output label for the object. */
520 ASM_OUTPUT_LABEL (file, name);
521 #endif /* ASM_DECLARE_OBJECT_NAME */
522 ASM_OUTPUT_SKIP (file, size ? size : 1);
525 #endif
527 #endif /* BSS_SECTION_ASM_OP */
529 #ifndef USE_SELECT_SECTION_FOR_FUNCTIONS
530 /* Return the hot section for function DECL. Return text_section for
531 null DECLs. */
533 static section *
534 hot_function_section (tree decl)
536 if (decl != NULL_TREE
537 && DECL_SECTION_NAME (decl) != NULL
538 && targetm_common.have_named_sections)
539 return get_named_section (decl, NULL, 0);
540 else
541 return text_section;
543 #endif
545 /* Return section for TEXT_SECTION_NAME if DECL or DECL_SECTION_NAME (DECL)
546 is NULL.
548 When DECL_SECTION_NAME is non-NULL and it is implicit section and
549 NAMED_SECTION_SUFFIX is non-NULL, then produce section called
550 concatenate the name with NAMED_SECTION_SUFFIX.
551 Otherwise produce "TEXT_SECTION_NAME.IMPLICIT_NAME". */
553 section *
554 get_named_text_section (tree decl,
555 const char *text_section_name,
556 const char *named_section_suffix)
558 if (decl && DECL_SECTION_NAME (decl))
560 if (named_section_suffix)
562 const char *dsn = DECL_SECTION_NAME (decl);
563 const char *stripped_name;
564 char *name, *buffer;
566 name = (char *) alloca (strlen (dsn) + 1);
567 memcpy (name, dsn,
568 strlen (dsn) + 1);
570 stripped_name = targetm.strip_name_encoding (name);
572 buffer = ACONCAT ((stripped_name, named_section_suffix, NULL));
573 return get_named_section (decl, buffer, 0);
575 else if (symtab_node::get (decl)->implicit_section)
577 const char *name;
579 /* Do not try to split gnu_linkonce functions. This gets somewhat
580 slipperly. */
581 if (DECL_COMDAT_GROUP (decl) && !HAVE_COMDAT_GROUP)
582 return NULL;
583 name = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl));
584 name = targetm.strip_name_encoding (name);
585 return get_named_section (decl, ACONCAT ((text_section_name, ".",
586 name, NULL)), 0);
588 else
589 return NULL;
591 return get_named_section (decl, text_section_name, 0);
594 /* Choose named function section based on its frequency. */
596 section *
597 default_function_section (tree decl, enum node_frequency freq,
598 bool startup, bool exit)
600 #if defined HAVE_LD_EH_GC_SECTIONS && defined HAVE_LD_EH_GC_SECTIONS_BUG
601 /* Old GNU linkers have buggy --gc-section support, which sometimes
602 results in .gcc_except_table* sections being garbage collected. */
603 if (decl
604 && symtab_node::get (decl)->implicit_section)
605 return NULL;
606 #endif
608 if (!flag_reorder_functions
609 || !targetm_common.have_named_sections)
610 return NULL;
611 /* Startup code should go to startup subsection unless it is
612 unlikely executed (this happens especially with function splitting
613 where we can split away unnecessary parts of static constructors. */
614 if (startup && freq != NODE_FREQUENCY_UNLIKELY_EXECUTED)
616 /* During LTO the tp_first_run profiling will naturally place all
617 initialization code first. Using separate section is counter-productive
618 because startup only code may call functions which are no longer
619 startup only. */
620 if (!in_lto_p
621 || !cgraph_node::get (decl)->tp_first_run
622 || !opt_for_fn (decl, flag_profile_reorder_functions))
623 return get_named_text_section (decl, ".text.startup", NULL);
624 else
625 return NULL;
628 /* Similarly for exit. */
629 if (exit && freq != NODE_FREQUENCY_UNLIKELY_EXECUTED)
630 return get_named_text_section (decl, ".text.exit", NULL);
632 /* Group cold functions together, similarly for hot code. */
633 switch (freq)
635 case NODE_FREQUENCY_UNLIKELY_EXECUTED:
636 return get_named_text_section (decl, ".text.unlikely", NULL);
637 case NODE_FREQUENCY_HOT:
638 return get_named_text_section (decl, ".text.hot", NULL);
639 /* FALLTHRU */
640 default:
641 return NULL;
645 /* Return the section for function DECL.
647 If DECL is NULL_TREE, return the text section. We can be passed
648 NULL_TREE under some circumstances by dbxout.c at least.
650 If FORCE_COLD is true, return cold function section ignoring
651 the frequency info of cgraph_node. */
653 static section *
654 function_section_1 (tree decl, bool force_cold)
656 section *section = NULL;
657 enum node_frequency freq = NODE_FREQUENCY_NORMAL;
658 bool startup = false, exit = false;
660 if (decl)
662 struct cgraph_node *node = cgraph_node::get (decl);
664 if (node)
666 freq = node->frequency;
667 startup = node->only_called_at_startup;
668 exit = node->only_called_at_exit;
671 if (force_cold)
672 freq = NODE_FREQUENCY_UNLIKELY_EXECUTED;
674 #ifdef USE_SELECT_SECTION_FOR_FUNCTIONS
675 if (decl != NULL_TREE
676 && DECL_SECTION_NAME (decl) != NULL)
678 if (targetm.asm_out.function_section)
679 section = targetm.asm_out.function_section (decl, freq,
680 startup, exit);
681 if (section)
682 return section;
683 return get_named_section (decl, NULL, 0);
685 else
686 return targetm.asm_out.select_section
687 (decl, freq == NODE_FREQUENCY_UNLIKELY_EXECUTED,
688 symtab_node::get (decl)->definition_alignment ());
689 #else
690 if (targetm.asm_out.function_section)
691 section = targetm.asm_out.function_section (decl, freq, startup, exit);
692 if (section)
693 return section;
694 return hot_function_section (decl);
695 #endif
698 /* Return the section for function DECL.
700 If DECL is NULL_TREE, return the text section. We can be passed
701 NULL_TREE under some circumstances by dbxout.c at least. */
703 section *
704 function_section (tree decl)
706 /* Handle cases where function splitting code decides
707 to put function entry point into unlikely executed section
708 despite the fact that the function itself is not cold
709 (i.e. it is called rarely but contains a hot loop that is
710 better to live in hot subsection for the code locality). */
711 return function_section_1 (decl,
712 first_function_block_is_cold);
715 /* Return the section for the current function, take IN_COLD_SECTION_P
716 into account. */
718 section *
719 current_function_section (void)
721 return function_section_1 (current_function_decl, in_cold_section_p);
724 /* Tell assembler to switch to unlikely-to-be-executed text section. */
726 section *
727 unlikely_text_section (void)
729 return function_section_1 (current_function_decl, true);
732 /* When called within a function context, return true if the function
733 has been assigned a cold text section and if SECT is that section.
734 When called outside a function context, return true if SECT is the
735 default cold section. */
737 bool
738 unlikely_text_section_p (section *sect)
740 return sect == function_section_1 (current_function_decl, true);
743 /* Switch to the other function partition (if inside of hot section
744 into cold section, otherwise into the hot section). */
746 void
747 switch_to_other_text_partition (void)
749 in_cold_section_p = !in_cold_section_p;
750 switch_to_section (current_function_section ());
753 /* Return the read-only or relocated read-only data section
754 associated with function DECL. */
756 section *
757 default_function_rodata_section (tree decl, bool relocatable)
759 const char* sname;
760 unsigned int flags;
762 flags = 0;
764 if (relocatable)
766 sname = ".data.rel.ro.local";
767 flags = (SECTION_WRITE | SECTION_RELRO);
769 else
770 sname = ".rodata";
772 if (decl && DECL_SECTION_NAME (decl))
774 const char *name = DECL_SECTION_NAME (decl);
776 if (DECL_COMDAT_GROUP (decl) && HAVE_COMDAT_GROUP)
778 const char *dot;
779 size_t len;
780 char* rname;
782 dot = strchr (name + 1, '.');
783 if (!dot)
784 dot = name;
785 len = strlen (dot) + strlen (sname) + 1;
786 rname = (char *) alloca (len);
788 strcpy (rname, sname);
789 strcat (rname, dot);
790 return get_section (rname, (SECTION_LINKONCE | flags), decl);
792 /* For .gnu.linkonce.t.foo we want to use .gnu.linkonce.r.foo or
793 .gnu.linkonce.d.rel.ro.local.foo if the jump table is relocatable. */
794 else if (DECL_COMDAT_GROUP (decl)
795 && startswith (name, ".gnu.linkonce.t."))
797 size_t len;
798 char *rname;
800 if (relocatable)
802 len = strlen (name) + strlen (".rel.ro.local") + 1;
803 rname = (char *) alloca (len);
805 strcpy (rname, ".gnu.linkonce.d.rel.ro.local");
806 strcat (rname, name + 15);
808 else
810 len = strlen (name) + 1;
811 rname = (char *) alloca (len);
813 memcpy (rname, name, len);
814 rname[14] = 'r';
816 return get_section (rname, (SECTION_LINKONCE | flags), decl);
818 /* For .text.foo we want to use .rodata.foo. */
819 else if (flag_function_sections && flag_data_sections
820 && startswith (name, ".text."))
822 size_t len = strlen (name) + 1;
823 char *rname = (char *) alloca (len + strlen (sname) - 5);
825 memcpy (rname, sname, strlen (sname));
826 memcpy (rname + strlen (sname), name + 5, len - 5);
827 return get_section (rname, flags, decl);
831 if (relocatable)
832 return get_section (sname, flags, decl);
833 else
834 return readonly_data_section;
837 /* Return the read-only data section associated with function DECL
838 for targets where that section should be always the single
839 readonly data section. */
841 section *
842 default_no_function_rodata_section (tree, bool)
844 return readonly_data_section;
847 /* A subroutine of mergeable_string_section and mergeable_constant_section. */
849 static const char *
850 function_mergeable_rodata_prefix (void)
852 section *s = targetm.asm_out.function_rodata_section (current_function_decl,
853 false);
854 if (SECTION_STYLE (s) == SECTION_NAMED)
855 return s->named.name;
856 else
857 return targetm.asm_out.mergeable_rodata_prefix;
860 /* Return the section to use for string merging. */
862 static section *
863 mergeable_string_section (tree decl ATTRIBUTE_UNUSED,
864 unsigned HOST_WIDE_INT align ATTRIBUTE_UNUSED,
865 unsigned int flags ATTRIBUTE_UNUSED)
867 HOST_WIDE_INT len;
869 if (HAVE_GAS_SHF_MERGE && flag_merge_constants
870 && TREE_CODE (decl) == STRING_CST
871 && TREE_CODE (TREE_TYPE (decl)) == ARRAY_TYPE
872 && align <= 256
873 && (len = int_size_in_bytes (TREE_TYPE (decl))) > 0
874 && TREE_STRING_LENGTH (decl) == len)
876 scalar_int_mode mode;
877 unsigned int modesize;
878 const char *str;
879 HOST_WIDE_INT i;
880 int j, unit;
881 const char *prefix = function_mergeable_rodata_prefix ();
882 char *name = (char *) alloca (strlen (prefix) + 30);
884 mode = SCALAR_INT_TYPE_MODE (TREE_TYPE (TREE_TYPE (decl)));
885 modesize = GET_MODE_BITSIZE (mode);
886 if (modesize >= 8 && modesize <= 256
887 && (modesize & (modesize - 1)) == 0)
889 if (align < modesize)
890 align = modesize;
892 if (!HAVE_LD_ALIGNED_SHF_MERGE && align > 8)
893 return readonly_data_section;
895 str = TREE_STRING_POINTER (decl);
896 unit = GET_MODE_SIZE (mode);
898 /* Check for embedded NUL characters. */
899 for (i = 0; i < len; i += unit)
901 for (j = 0; j < unit; j++)
902 if (str[i + j] != '\0')
903 break;
904 if (j == unit)
905 break;
907 if (i == len - unit || (unit == 1 && i == len))
909 sprintf (name, "%s.str%d.%d", prefix,
910 modesize / 8, (int) (align / 8));
911 flags |= (modesize / 8) | SECTION_MERGE | SECTION_STRINGS;
912 return get_section (name, flags, NULL);
917 return readonly_data_section;
920 /* Return the section to use for constant merging. */
922 section *
923 mergeable_constant_section (machine_mode mode ATTRIBUTE_UNUSED,
924 unsigned HOST_WIDE_INT align ATTRIBUTE_UNUSED,
925 unsigned int flags ATTRIBUTE_UNUSED)
927 if (HAVE_GAS_SHF_MERGE && flag_merge_constants
928 && mode != VOIDmode
929 && mode != BLKmode
930 && known_le (GET_MODE_BITSIZE (mode), align)
931 && align >= 8
932 && align <= 256
933 && (align & (align - 1)) == 0
934 && (HAVE_LD_ALIGNED_SHF_MERGE ? 1 : align == 8))
936 const char *prefix = function_mergeable_rodata_prefix ();
937 char *name = (char *) alloca (strlen (prefix) + 30);
939 sprintf (name, "%s.cst%d", prefix, (int) (align / 8));
940 flags |= (align / 8) | SECTION_MERGE;
941 return get_section (name, flags, NULL);
943 return readonly_data_section;
946 /* Given NAME, a putative register name, discard any customary prefixes. */
948 static const char *
949 strip_reg_name (const char *name)
951 #ifdef REGISTER_PREFIX
952 if (!strncmp (name, REGISTER_PREFIX, strlen (REGISTER_PREFIX)))
953 name += strlen (REGISTER_PREFIX);
954 #endif
955 if (name[0] == '%' || name[0] == '#')
956 name++;
957 return name;
960 /* The user has asked for a DECL to have a particular name. Set (or
961 change) it in such a way that we don't prefix an underscore to
962 it. */
963 void
964 set_user_assembler_name (tree decl, const char *name)
966 char *starred = (char *) alloca (strlen (name) + 2);
967 starred[0] = '*';
968 strcpy (starred + 1, name);
969 symtab->change_decl_assembler_name (decl, get_identifier (starred));
970 SET_DECL_RTL (decl, NULL_RTX);
973 /* Decode an `asm' spec for a declaration as a register name.
974 Return the register number, or -1 if nothing specified,
975 or -2 if the ASMSPEC is not `cc' or `memory' and is not recognized,
976 or -3 if ASMSPEC is `cc' and is not recognized,
977 or -4 if ASMSPEC is `memory' and is not recognized.
978 Accept an exact spelling or a decimal number.
979 Prefixes such as % are optional. */
982 decode_reg_name_and_count (const char *asmspec, int *pnregs)
984 /* Presume just one register is clobbered. */
985 *pnregs = 1;
987 if (asmspec != 0)
989 int i;
991 /* Get rid of confusing prefixes. */
992 asmspec = strip_reg_name (asmspec);
994 /* Allow a decimal number as a "register name". */
995 for (i = strlen (asmspec) - 1; i >= 0; i--)
996 if (! ISDIGIT (asmspec[i]))
997 break;
998 if (asmspec[0] != 0 && i < 0)
1000 i = atoi (asmspec);
1001 if (i < FIRST_PSEUDO_REGISTER && i >= 0 && reg_names[i][0])
1002 return i;
1003 else
1004 return -2;
1007 for (i = 0; i < FIRST_PSEUDO_REGISTER; i++)
1008 if (reg_names[i][0]
1009 && ! strcmp (asmspec, strip_reg_name (reg_names[i])))
1010 return i;
1012 #ifdef OVERLAPPING_REGISTER_NAMES
1014 static const struct
1016 const char *const name;
1017 const int number;
1018 const int nregs;
1019 } table[] = OVERLAPPING_REGISTER_NAMES;
1021 for (i = 0; i < (int) ARRAY_SIZE (table); i++)
1022 if (table[i].name[0]
1023 && ! strcmp (asmspec, table[i].name))
1025 *pnregs = table[i].nregs;
1026 return table[i].number;
1029 #endif /* OVERLAPPING_REGISTER_NAMES */
1031 #ifdef ADDITIONAL_REGISTER_NAMES
1033 static const struct { const char *const name; const int number; } table[]
1034 = ADDITIONAL_REGISTER_NAMES;
1036 for (i = 0; i < (int) ARRAY_SIZE (table); i++)
1037 if (table[i].name[0]
1038 && ! strcmp (asmspec, table[i].name)
1039 && reg_names[table[i].number][0])
1040 return table[i].number;
1042 #endif /* ADDITIONAL_REGISTER_NAMES */
1044 if (!strcmp (asmspec, "memory"))
1045 return -4;
1047 if (!strcmp (asmspec, "cc"))
1048 return -3;
1050 return -2;
1053 return -1;
1057 decode_reg_name (const char *name)
1059 int count;
1060 return decode_reg_name_and_count (name, &count);
1064 /* Return true if DECL's initializer is suitable for a BSS section. */
1066 bool
1067 bss_initializer_p (const_tree decl, bool named)
1069 /* Do not put non-common constants into the .bss section, they belong in
1070 a readonly section, except when NAMED is true. */
1071 return ((!TREE_READONLY (decl) || DECL_COMMON (decl) || named)
1072 && (DECL_INITIAL (decl) == NULL
1073 /* In LTO we have no errors in program; error_mark_node is used
1074 to mark offlined constructors. */
1075 || (DECL_INITIAL (decl) == error_mark_node
1076 && !in_lto_p)
1077 || (flag_zero_initialized_in_bss
1078 && initializer_zerop (DECL_INITIAL (decl))
1079 /* A decl with the "persistent" attribute applied and
1080 explicitly initialized to 0 should not be treated as a BSS
1081 variable. */
1082 && !DECL_PERSISTENT_P (decl))));
1085 /* Compute the alignment of variable specified by DECL.
1086 DONT_OUTPUT_DATA is from assemble_variable. */
1088 void
1089 align_variable (tree decl, bool dont_output_data)
1091 unsigned int align = DECL_ALIGN (decl);
1093 /* In the case for initialing an array whose length isn't specified,
1094 where we have not yet been able to do the layout,
1095 figure out the proper alignment now. */
1096 if (dont_output_data && DECL_SIZE (decl) == 0
1097 && TREE_CODE (TREE_TYPE (decl)) == ARRAY_TYPE)
1098 align = MAX (align, TYPE_ALIGN (TREE_TYPE (TREE_TYPE (decl))));
1100 /* Some object file formats have a maximum alignment which they support.
1101 In particular, a.out format supports a maximum alignment of 4. */
1102 if (align > MAX_OFILE_ALIGNMENT)
1104 error ("alignment of %q+D is greater than maximum object "
1105 "file alignment %d", decl,
1106 MAX_OFILE_ALIGNMENT/BITS_PER_UNIT);
1107 align = MAX_OFILE_ALIGNMENT;
1110 if (! DECL_USER_ALIGN (decl))
1112 #ifdef DATA_ABI_ALIGNMENT
1113 unsigned int data_abi_align
1114 = DATA_ABI_ALIGNMENT (TREE_TYPE (decl), align);
1115 /* For backwards compatibility, don't assume the ABI alignment for
1116 TLS variables. */
1117 if (! DECL_THREAD_LOCAL_P (decl) || data_abi_align <= BITS_PER_WORD)
1118 align = data_abi_align;
1119 #endif
1121 /* On some machines, it is good to increase alignment sometimes.
1122 But as DECL_ALIGN is used both for actually emitting the variable
1123 and for code accessing the variable as guaranteed alignment, we
1124 can only increase the alignment if it is a performance optimization
1125 if the references to it must bind to the current definition. */
1126 if (decl_binds_to_current_def_p (decl)
1127 && !DECL_VIRTUAL_P (decl))
1129 #ifdef DATA_ALIGNMENT
1130 unsigned int data_align = DATA_ALIGNMENT (TREE_TYPE (decl), align);
1131 /* Don't increase alignment too much for TLS variables - TLS space
1132 is too precious. */
1133 if (! DECL_THREAD_LOCAL_P (decl) || data_align <= BITS_PER_WORD)
1134 align = data_align;
1135 #endif
1136 if (DECL_INITIAL (decl) != 0
1137 /* In LTO we have no errors in program; error_mark_node is used
1138 to mark offlined constructors. */
1139 && (in_lto_p || DECL_INITIAL (decl) != error_mark_node))
1141 unsigned int const_align
1142 = targetm.constant_alignment (DECL_INITIAL (decl), align);
1143 /* Don't increase alignment too much for TLS variables - TLS
1144 space is too precious. */
1145 if (! DECL_THREAD_LOCAL_P (decl) || const_align <= BITS_PER_WORD)
1146 align = const_align;
1151 /* Reset the alignment in case we have made it tighter, so we can benefit
1152 from it in get_pointer_alignment. */
1153 SET_DECL_ALIGN (decl, align);
1156 /* Return DECL_ALIGN (decl), possibly increased for optimization purposes
1157 beyond what align_variable returned. */
1159 static unsigned int
1160 get_variable_align (tree decl)
1162 unsigned int align = DECL_ALIGN (decl);
1164 /* For user aligned vars or static vars align_variable already did
1165 everything. */
1166 if (DECL_USER_ALIGN (decl) || !TREE_PUBLIC (decl))
1167 return align;
1169 #ifdef DATA_ABI_ALIGNMENT
1170 if (DECL_THREAD_LOCAL_P (decl))
1171 align = DATA_ABI_ALIGNMENT (TREE_TYPE (decl), align);
1172 #endif
1174 /* For decls that bind to the current definition, align_variable
1175 did also everything, except for not assuming ABI required alignment
1176 of TLS variables. For other vars, increase the alignment here
1177 as an optimization. */
1178 if (!decl_binds_to_current_def_p (decl))
1180 /* On some machines, it is good to increase alignment sometimes. */
1181 #ifdef DATA_ALIGNMENT
1182 unsigned int data_align = DATA_ALIGNMENT (TREE_TYPE (decl), align);
1183 /* Don't increase alignment too much for TLS variables - TLS space
1184 is too precious. */
1185 if (! DECL_THREAD_LOCAL_P (decl) || data_align <= BITS_PER_WORD)
1186 align = data_align;
1187 #endif
1188 if (DECL_INITIAL (decl) != 0
1189 /* In LTO we have no errors in program; error_mark_node is used
1190 to mark offlined constructors. */
1191 && (in_lto_p || DECL_INITIAL (decl) != error_mark_node))
1193 unsigned int const_align
1194 = targetm.constant_alignment (DECL_INITIAL (decl), align);
1195 /* Don't increase alignment too much for TLS variables - TLS space
1196 is too precious. */
1197 if (! DECL_THREAD_LOCAL_P (decl) || const_align <= BITS_PER_WORD)
1198 align = const_align;
1202 return align;
1205 /* Compute reloc for get_variable_section. The return value
1206 is a mask for which bit 1 indicates a global relocation, and bit 0
1207 indicates a local relocation. */
1210 compute_reloc_for_var (tree decl)
1212 int reloc;
1214 if (DECL_INITIAL (decl) == error_mark_node)
1215 reloc = contains_pointers_p (TREE_TYPE (decl)) ? 3 : 0;
1216 else if (DECL_INITIAL (decl))
1217 reloc = compute_reloc_for_constant (DECL_INITIAL (decl));
1218 else
1219 reloc = 0;
1221 return reloc;
1224 /* Return the section into which the given VAR_DECL or CONST_DECL
1225 should be placed. PREFER_NOSWITCH_P is true if a noswitch
1226 section should be used wherever possible. */
1228 section *
1229 get_variable_section (tree decl, bool prefer_noswitch_p)
1231 addr_space_t as = ADDR_SPACE_GENERIC;
1232 int reloc;
1233 varpool_node *vnode = varpool_node::get (decl);
1234 if (vnode)
1236 vnode = vnode->ultimate_alias_target ();
1237 decl = vnode->decl;
1240 if (TREE_TYPE (decl) != error_mark_node)
1241 as = TYPE_ADDR_SPACE (TREE_TYPE (decl));
1243 /* We need the constructor to figure out reloc flag. */
1244 if (vnode)
1245 vnode->get_constructor ();
1247 if (DECL_COMMON (decl)
1248 && !lookup_attribute ("retain", DECL_ATTRIBUTES (decl)))
1250 /* If the decl has been given an explicit section name, or it resides
1251 in a non-generic address space, then it isn't common, and shouldn't
1252 be handled as such. */
1253 gcc_assert (DECL_SECTION_NAME (decl) == NULL
1254 && ADDR_SPACE_GENERIC_P (as));
1255 if (DECL_THREAD_LOCAL_P (decl))
1256 return tls_comm_section;
1257 else if (TREE_PUBLIC (decl) && bss_initializer_p (decl))
1258 return comm_section;
1261 reloc = compute_reloc_for_var (decl);
1263 resolve_unique_section (decl, reloc, flag_data_sections);
1264 if (IN_NAMED_SECTION (decl))
1266 section *sect = get_named_section (decl, NULL, reloc);
1268 if ((sect->common.flags & SECTION_BSS)
1269 && !bss_initializer_p (decl, true))
1271 error_at (DECL_SOURCE_LOCATION (decl),
1272 "only zero initializers are allowed in section %qs",
1273 sect->named.name);
1274 DECL_INITIAL (decl) = error_mark_node;
1276 return sect;
1279 if (ADDR_SPACE_GENERIC_P (as)
1280 && !DECL_THREAD_LOCAL_P (decl)
1281 && !DECL_NOINIT_P (decl)
1282 && !(prefer_noswitch_p && targetm.have_switchable_bss_sections)
1283 && bss_initializer_p (decl))
1285 if (!TREE_PUBLIC (decl)
1286 && !((flag_sanitize & SANITIZE_ADDRESS)
1287 && asan_protect_global (decl)))
1288 return lcomm_section;
1289 if (bss_noswitch_section)
1290 return bss_noswitch_section;
1293 return targetm.asm_out.select_section (decl, reloc,
1294 get_variable_align (decl));
1297 /* Return the block into which object_block DECL should be placed. */
1299 static struct object_block *
1300 get_block_for_decl (tree decl)
1302 section *sect;
1304 if (VAR_P (decl))
1306 /* The object must be defined in this translation unit. */
1307 if (DECL_EXTERNAL (decl))
1308 return NULL;
1310 /* There's no point using object blocks for something that is
1311 isolated by definition. */
1312 if (DECL_COMDAT_GROUP (decl))
1313 return NULL;
1316 /* We can only calculate block offsets if the decl has a known
1317 constant size. */
1318 if (DECL_SIZE_UNIT (decl) == NULL)
1319 return NULL;
1320 if (!tree_fits_uhwi_p (DECL_SIZE_UNIT (decl)))
1321 return NULL;
1323 /* Find out which section should contain DECL. We cannot put it into
1324 an object block if it requires a standalone definition. */
1325 if (VAR_P (decl))
1326 align_variable (decl, 0);
1327 sect = get_variable_section (decl, true);
1328 if (SECTION_STYLE (sect) == SECTION_NOSWITCH)
1329 return NULL;
1331 if (bool (lookup_attribute ("retain", DECL_ATTRIBUTES (decl)))
1332 != bool (sect->common.flags & SECTION_RETAIN))
1333 return NULL;
1335 return get_block_for_section (sect);
1338 /* Make sure block symbol SYMBOL is in block BLOCK. */
1340 static void
1341 change_symbol_block (rtx symbol, struct object_block *block)
1343 if (block != SYMBOL_REF_BLOCK (symbol))
1345 gcc_assert (SYMBOL_REF_BLOCK_OFFSET (symbol) < 0);
1346 SYMBOL_REF_BLOCK (symbol) = block;
1350 /* Return true if it is possible to put DECL in an object_block. */
1352 static bool
1353 use_blocks_for_decl_p (tree decl)
1355 struct symtab_node *snode;
1357 /* Don't create object blocks if each DECL is placed into a separate
1358 section because that will uselessly create a section anchor for
1359 each DECL. */
1360 if (flag_data_sections)
1361 return false;
1363 /* Only data DECLs can be placed into object blocks. */
1364 if (!VAR_P (decl) && TREE_CODE (decl) != CONST_DECL)
1365 return false;
1367 /* DECL_INITIAL (decl) set to decl is a hack used for some decls that
1368 are never used from code directly and we never want object block handling
1369 for those. */
1370 if (DECL_INITIAL (decl) == decl)
1371 return false;
1373 /* If this decl is an alias, then we don't want to emit a
1374 definition. */
1375 if (VAR_P (decl)
1376 && (snode = symtab_node::get (decl)) != NULL
1377 && snode->alias)
1378 return false;
1380 return targetm.use_blocks_for_decl_p (decl);
1383 /* Follow the IDENTIFIER_TRANSPARENT_ALIAS chain starting at *ALIAS
1384 until we find an identifier that is not itself a transparent alias.
1385 Modify the alias passed to it by reference (and all aliases on the
1386 way to the ultimate target), such that they do not have to be
1387 followed again, and return the ultimate target of the alias
1388 chain. */
1390 static inline tree
1391 ultimate_transparent_alias_target (tree *alias)
1393 tree target = *alias;
1395 if (IDENTIFIER_TRANSPARENT_ALIAS (target))
1397 gcc_assert (TREE_CHAIN (target));
1398 target = ultimate_transparent_alias_target (&TREE_CHAIN (target));
1399 gcc_assert (! IDENTIFIER_TRANSPARENT_ALIAS (target)
1400 && ! TREE_CHAIN (target));
1401 *alias = target;
1404 return target;
1407 /* Return true if REGNUM is mentioned in ELIMINABLE_REGS as a from
1408 register number. */
1410 static bool
1411 eliminable_regno_p (int regnum)
1413 static const struct
1415 const int from;
1416 const int to;
1417 } eliminables[] = ELIMINABLE_REGS;
1418 for (size_t i = 0; i < ARRAY_SIZE (eliminables); i++)
1419 if (regnum == eliminables[i].from)
1420 return true;
1421 return false;
1424 /* Create the DECL_RTL for a VAR_DECL or FUNCTION_DECL. DECL should
1425 have static storage duration. In other words, it should not be an
1426 automatic variable, including PARM_DECLs.
1428 There is, however, one exception: this function handles variables
1429 explicitly placed in a particular register by the user.
1431 This is never called for PARM_DECL nodes. */
1433 void
1434 make_decl_rtl (tree decl)
1436 const char *name = 0;
1437 int reg_number;
1438 tree id;
1439 rtx x;
1441 /* Check that we are not being given an automatic variable. */
1442 gcc_assert (TREE_CODE (decl) != PARM_DECL
1443 && TREE_CODE (decl) != RESULT_DECL);
1445 /* A weak alias has TREE_PUBLIC set but not the other bits. */
1446 gcc_assert (!VAR_P (decl)
1447 || TREE_STATIC (decl)
1448 || TREE_PUBLIC (decl)
1449 || DECL_EXTERNAL (decl)
1450 || DECL_REGISTER (decl));
1452 /* And that we were not given a type or a label. */
1453 gcc_assert (TREE_CODE (decl) != TYPE_DECL
1454 && TREE_CODE (decl) != LABEL_DECL);
1456 /* For a duplicate declaration, we can be called twice on the
1457 same DECL node. Don't discard the RTL already made. */
1458 if (DECL_RTL_SET_P (decl))
1460 /* If the old RTL had the wrong mode, fix the mode. */
1461 x = DECL_RTL (decl);
1462 if (GET_MODE (x) != DECL_MODE (decl))
1463 SET_DECL_RTL (decl, adjust_address_nv (x, DECL_MODE (decl), 0));
1465 if (TREE_CODE (decl) != FUNCTION_DECL && DECL_REGISTER (decl))
1466 return;
1468 /* ??? Another way to do this would be to maintain a hashed
1469 table of such critters. Instead of adding stuff to a DECL
1470 to give certain attributes to it, we could use an external
1471 hash map from DECL to set of attributes. */
1473 /* Let the target reassign the RTL if it wants.
1474 This is necessary, for example, when one machine specific
1475 decl attribute overrides another. */
1476 targetm.encode_section_info (decl, DECL_RTL (decl), false);
1478 /* If the symbol has a SYMBOL_REF_BLOCK field, update it based
1479 on the new decl information. */
1480 if (MEM_P (x)
1481 && GET_CODE (XEXP (x, 0)) == SYMBOL_REF
1482 && SYMBOL_REF_HAS_BLOCK_INFO_P (XEXP (x, 0)))
1483 change_symbol_block (XEXP (x, 0), get_block_for_decl (decl));
1485 return;
1488 /* If this variable belongs to the global constant pool, retrieve the
1489 pre-computed RTL or recompute it in LTO mode. */
1490 if (VAR_P (decl) && DECL_IN_CONSTANT_POOL (decl))
1492 SET_DECL_RTL (decl, output_constant_def (DECL_INITIAL (decl), 1));
1493 return;
1496 id = DECL_ASSEMBLER_NAME (decl);
1497 name = IDENTIFIER_POINTER (id);
1499 if (name[0] != '*' && TREE_CODE (decl) != FUNCTION_DECL
1500 && DECL_REGISTER (decl))
1502 error ("register name not specified for %q+D", decl);
1504 else if (TREE_CODE (decl) != FUNCTION_DECL && DECL_REGISTER (decl))
1506 const char *asmspec = name+1;
1507 machine_mode mode = DECL_MODE (decl);
1508 reg_number = decode_reg_name (asmspec);
1509 /* First detect errors in declaring global registers. */
1510 if (reg_number == -1)
1511 error ("register name not specified for %q+D", decl);
1512 else if (reg_number < 0)
1513 error ("invalid register name for %q+D", decl);
1514 else if (mode == BLKmode)
1515 error ("data type of %q+D isn%'t suitable for a register",
1516 decl);
1517 else if (!in_hard_reg_set_p (accessible_reg_set, mode, reg_number))
1518 error ("the register specified for %q+D cannot be accessed"
1519 " by the current target", decl);
1520 else if (!in_hard_reg_set_p (operand_reg_set, mode, reg_number))
1521 error ("the register specified for %q+D is not general enough"
1522 " to be used as a register variable", decl);
1523 else if (!targetm.hard_regno_mode_ok (reg_number, mode))
1524 error ("register specified for %q+D isn%'t suitable for data type",
1525 decl);
1526 else if (reg_number != HARD_FRAME_POINTER_REGNUM
1527 && (reg_number == FRAME_POINTER_REGNUM
1528 #ifdef RETURN_ADDRESS_POINTER_REGNUM
1529 || reg_number == RETURN_ADDRESS_POINTER_REGNUM
1530 #endif
1531 || reg_number == ARG_POINTER_REGNUM)
1532 && eliminable_regno_p (reg_number))
1533 error ("register specified for %q+D is an internal GCC "
1534 "implementation detail", decl);
1535 /* Now handle properly declared static register variables. */
1536 else
1538 int nregs;
1540 if (DECL_INITIAL (decl) != 0 && TREE_STATIC (decl))
1542 DECL_INITIAL (decl) = 0;
1543 error ("global register variable has initial value");
1545 if (TREE_THIS_VOLATILE (decl))
1546 warning (OPT_Wvolatile_register_var,
1547 "optimization may eliminate reads and/or "
1548 "writes to register variables");
1550 /* If the user specified one of the eliminables registers here,
1551 e.g., FRAME_POINTER_REGNUM, we don't want to get this variable
1552 confused with that register and be eliminated. This usage is
1553 somewhat suspect... */
1555 SET_DECL_RTL (decl, gen_raw_REG (mode, reg_number));
1556 ORIGINAL_REGNO (DECL_RTL (decl)) = reg_number;
1557 REG_USERVAR_P (DECL_RTL (decl)) = 1;
1559 if (TREE_STATIC (decl))
1561 /* Make this register global, so not usable for anything
1562 else. */
1563 #ifdef ASM_DECLARE_REGISTER_GLOBAL
1564 name = IDENTIFIER_POINTER (DECL_NAME (decl));
1565 ASM_DECLARE_REGISTER_GLOBAL (asm_out_file, decl, reg_number, name);
1566 #endif
1567 nregs = hard_regno_nregs (reg_number, mode);
1568 while (nregs > 0)
1569 globalize_reg (decl, reg_number + --nregs);
1572 /* As a register variable, it has no section. */
1573 return;
1575 /* Avoid internal errors from invalid register
1576 specifications. */
1577 SET_DECL_ASSEMBLER_NAME (decl, NULL_TREE);
1578 DECL_HARD_REGISTER (decl) = 0;
1579 /* Also avoid SSA inconsistencies by pretending this is an external
1580 decl now. */
1581 DECL_EXTERNAL (decl) = 1;
1582 return;
1584 /* Now handle ordinary static variables and functions (in memory).
1585 Also handle vars declared register invalidly. */
1586 else if (name[0] == '*')
1588 #ifdef REGISTER_PREFIX
1589 if (strlen (REGISTER_PREFIX) != 0)
1591 reg_number = decode_reg_name (name);
1592 if (reg_number >= 0 || reg_number == -3)
1593 error ("register name given for non-register variable %q+D", decl);
1595 #endif
1598 /* Specifying a section attribute on a variable forces it into a
1599 non-.bss section, and thus it cannot be common. */
1600 /* FIXME: In general this code should not be necessary because
1601 visibility pass is doing the same work. But notice_global_symbol
1602 is called early and it needs to make DECL_RTL to get the name.
1603 we take care of recomputing the DECL_RTL after visibility is changed. */
1604 if (VAR_P (decl)
1605 && (TREE_STATIC (decl) || DECL_EXTERNAL (decl))
1606 && DECL_SECTION_NAME (decl) != NULL
1607 && DECL_INITIAL (decl) == NULL_TREE
1608 && DECL_COMMON (decl))
1609 DECL_COMMON (decl) = 0;
1611 /* Variables can't be both common and weak. */
1612 if (VAR_P (decl) && DECL_WEAK (decl))
1613 DECL_COMMON (decl) = 0;
1615 if (use_object_blocks_p () && use_blocks_for_decl_p (decl))
1616 x = create_block_symbol (name, get_block_for_decl (decl), -1);
1617 else
1619 machine_mode address_mode = Pmode;
1620 if (TREE_TYPE (decl) != error_mark_node)
1622 addr_space_t as = TYPE_ADDR_SPACE (TREE_TYPE (decl));
1623 address_mode = targetm.addr_space.address_mode (as);
1625 x = gen_rtx_SYMBOL_REF (address_mode, name);
1627 SYMBOL_REF_WEAK (x) = DECL_WEAK (decl);
1628 SET_SYMBOL_REF_DECL (x, decl);
1630 x = gen_rtx_MEM (DECL_MODE (decl), x);
1631 if (TREE_CODE (decl) != FUNCTION_DECL)
1632 set_mem_attributes (x, decl, 1);
1633 SET_DECL_RTL (decl, x);
1635 /* Optionally set flags or add text to the name to record information
1636 such as that it is a function name.
1637 If the name is changed, the macro ASM_OUTPUT_LABELREF
1638 will have to know how to strip this information. */
1639 targetm.encode_section_info (decl, DECL_RTL (decl), true);
1642 /* Like make_decl_rtl, but inhibit creation of new alias sets when
1643 calling make_decl_rtl. Also, reset DECL_RTL before returning the
1644 rtl. */
1647 make_decl_rtl_for_debug (tree decl)
1649 unsigned int save_aliasing_flag;
1650 rtx rtl;
1652 if (DECL_RTL_SET_P (decl))
1653 return DECL_RTL (decl);
1655 /* Kludge alert! Somewhere down the call chain, make_decl_rtl will
1656 call new_alias_set. If running with -fcompare-debug, sometimes
1657 we do not want to create alias sets that will throw the alias
1658 numbers off in the comparison dumps. So... clearing
1659 flag_strict_aliasing will keep new_alias_set() from creating a
1660 new set. */
1661 save_aliasing_flag = flag_strict_aliasing;
1662 flag_strict_aliasing = 0;
1664 rtl = DECL_RTL (decl);
1665 /* Reset DECL_RTL back, as various parts of the compiler expects
1666 DECL_RTL set meaning it is actually going to be output. */
1667 SET_DECL_RTL (decl, NULL);
1669 flag_strict_aliasing = save_aliasing_flag;
1670 return rtl;
1673 /* Output a string of literal assembler code
1674 for an `asm' keyword used between functions. */
1676 void
1677 assemble_asm (tree string)
1679 const char *p;
1680 app_enable ();
1682 if (TREE_CODE (string) == ADDR_EXPR)
1683 string = TREE_OPERAND (string, 0);
1685 p = TREE_STRING_POINTER (string);
1686 fprintf (asm_out_file, "%s%s\n", p[0] == '\t' ? "" : "\t", p);
1689 /* Write the address of the entity given by SYMBOL to SEC. */
1690 void
1691 assemble_addr_to_section (rtx symbol, section *sec)
1693 switch_to_section (sec);
1694 assemble_align (POINTER_SIZE);
1695 assemble_integer (symbol, POINTER_SIZE_UNITS, POINTER_SIZE, 1);
1698 /* Return the numbered .ctors.N (if CONSTRUCTOR_P) or .dtors.N (if
1699 not) section for PRIORITY. */
1700 section *
1701 get_cdtor_priority_section (int priority, bool constructor_p)
1703 /* Buffer conservatively large enough for the full range of a 32-bit
1704 int plus the text below. */
1705 char buf[18];
1707 /* ??? This only works reliably with the GNU linker. */
1708 sprintf (buf, "%s.%.5u",
1709 constructor_p ? ".ctors" : ".dtors",
1710 /* Invert the numbering so the linker puts us in the proper
1711 order; constructors are run from right to left, and the
1712 linker sorts in increasing order. */
1713 MAX_INIT_PRIORITY - priority);
1714 return get_section (buf, SECTION_WRITE, NULL);
1717 void
1718 default_named_section_asm_out_destructor (rtx symbol, int priority)
1720 section *sec;
1722 if (priority != DEFAULT_INIT_PRIORITY)
1723 sec = get_cdtor_priority_section (priority,
1724 /*constructor_p=*/false);
1725 else
1726 sec = get_section (".dtors", SECTION_WRITE, NULL);
1728 assemble_addr_to_section (symbol, sec);
1731 #ifdef DTORS_SECTION_ASM_OP
1732 void
1733 default_dtor_section_asm_out_destructor (rtx symbol,
1734 int priority ATTRIBUTE_UNUSED)
1736 assemble_addr_to_section (symbol, dtors_section);
1738 #endif
1740 void
1741 default_named_section_asm_out_constructor (rtx symbol, int priority)
1743 section *sec;
1745 if (priority != DEFAULT_INIT_PRIORITY)
1746 sec = get_cdtor_priority_section (priority,
1747 /*constructor_p=*/true);
1748 else
1749 sec = get_section (".ctors", SECTION_WRITE, NULL);
1751 assemble_addr_to_section (symbol, sec);
1754 #ifdef CTORS_SECTION_ASM_OP
1755 void
1756 default_ctor_section_asm_out_constructor (rtx symbol,
1757 int priority ATTRIBUTE_UNUSED)
1759 assemble_addr_to_section (symbol, ctors_section);
1761 #endif
1763 /* CONSTANT_POOL_BEFORE_FUNCTION may be defined as an expression with
1764 a nonzero value if the constant pool should be output before the
1765 start of the function, or a zero value if the pool should output
1766 after the end of the function. The default is to put it before the
1767 start. */
1769 #ifndef CONSTANT_POOL_BEFORE_FUNCTION
1770 #define CONSTANT_POOL_BEFORE_FUNCTION 1
1771 #endif
1773 /* DECL is an object (either VAR_DECL or FUNCTION_DECL) which is going
1774 to be output to assembler.
1775 Set first_global_object_name and weak_global_object_name as appropriate. */
1777 void
1778 notice_global_symbol (tree decl)
1780 const char **t = &first_global_object_name;
1782 if (first_global_object_name
1783 || !TREE_PUBLIC (decl)
1784 || DECL_EXTERNAL (decl)
1785 || !DECL_NAME (decl)
1786 || (VAR_P (decl) && DECL_HARD_REGISTER (decl))
1787 || (TREE_CODE (decl) != FUNCTION_DECL
1788 && (!VAR_P (decl)
1789 || (DECL_COMMON (decl)
1790 && (DECL_INITIAL (decl) == 0
1791 || DECL_INITIAL (decl) == error_mark_node)))))
1792 return;
1794 /* We win when global object is found, but it is useful to know about weak
1795 symbol as well so we can produce nicer unique names. */
1796 if (DECL_WEAK (decl) || DECL_ONE_ONLY (decl) || flag_shlib)
1797 t = &weak_global_object_name;
1799 if (!*t)
1801 tree id = DECL_ASSEMBLER_NAME (decl);
1802 ultimate_transparent_alias_target (&id);
1803 *t = ggc_strdup (targetm.strip_name_encoding (IDENTIFIER_POINTER (id)));
1807 /* If not using flag_reorder_blocks_and_partition, decide early whether the
1808 current function goes into the cold section, so that targets can use
1809 current_function_section during RTL expansion. DECL describes the
1810 function. */
1812 void
1813 decide_function_section (tree decl)
1815 first_function_block_is_cold = false;
1817 if (DECL_SECTION_NAME (decl))
1819 struct cgraph_node *node = cgraph_node::get (current_function_decl);
1820 /* Calls to function_section rely on first_function_block_is_cold
1821 being accurate. */
1822 first_function_block_is_cold = (node
1823 && node->frequency
1824 == NODE_FREQUENCY_UNLIKELY_EXECUTED);
1827 in_cold_section_p = first_function_block_is_cold;
1830 /* Get the function's name, as described by its RTL. This may be
1831 different from the DECL_NAME name used in the source file. */
1832 const char *
1833 get_fnname_from_decl (tree decl)
1835 rtx x = DECL_RTL (decl);
1836 gcc_assert (MEM_P (x));
1837 x = XEXP (x, 0);
1838 gcc_assert (GET_CODE (x) == SYMBOL_REF);
1839 return XSTR (x, 0);
1842 /* Output assembler code for the constant pool of a function and associated
1843 with defining the name of the function. DECL describes the function.
1844 NAME is the function's name. For the constant pool, we use the current
1845 constant pool data. */
1847 void
1848 assemble_start_function (tree decl, const char *fnname)
1850 int align;
1851 char tmp_label[100];
1852 bool hot_label_written = false;
1854 if (crtl->has_bb_partition)
1856 ASM_GENERATE_INTERNAL_LABEL (tmp_label, "LHOTB", const_labelno);
1857 crtl->subsections.hot_section_label = ggc_strdup (tmp_label);
1858 ASM_GENERATE_INTERNAL_LABEL (tmp_label, "LCOLDB", const_labelno);
1859 crtl->subsections.cold_section_label = ggc_strdup (tmp_label);
1860 ASM_GENERATE_INTERNAL_LABEL (tmp_label, "LHOTE", const_labelno);
1861 crtl->subsections.hot_section_end_label = ggc_strdup (tmp_label);
1862 ASM_GENERATE_INTERNAL_LABEL (tmp_label, "LCOLDE", const_labelno);
1863 crtl->subsections.cold_section_end_label = ggc_strdup (tmp_label);
1864 const_labelno++;
1865 cold_function_name = NULL_TREE;
1867 else
1869 crtl->subsections.hot_section_label = NULL;
1870 crtl->subsections.cold_section_label = NULL;
1871 crtl->subsections.hot_section_end_label = NULL;
1872 crtl->subsections.cold_section_end_label = NULL;
1875 /* The following code does not need preprocessing in the assembler. */
1877 app_disable ();
1879 if (CONSTANT_POOL_BEFORE_FUNCTION)
1880 output_constant_pool (fnname, decl);
1882 align = symtab_node::get (decl)->definition_alignment ();
1884 /* Make sure the not and cold text (code) sections are properly
1885 aligned. This is necessary here in the case where the function
1886 has both hot and cold sections, because we don't want to re-set
1887 the alignment when the section switch happens mid-function. */
1889 if (crtl->has_bb_partition)
1891 first_function_block_is_cold = false;
1893 switch_to_section (unlikely_text_section ());
1894 assemble_align (align);
1895 ASM_OUTPUT_LABEL (asm_out_file, crtl->subsections.cold_section_label);
1897 /* When the function starts with a cold section, we need to explicitly
1898 align the hot section and write out the hot section label.
1899 But if the current function is a thunk, we do not have a CFG. */
1900 if (!cfun->is_thunk
1901 && BB_PARTITION (ENTRY_BLOCK_PTR_FOR_FN (cfun)->next_bb) == BB_COLD_PARTITION)
1903 switch_to_section (text_section);
1904 assemble_align (align);
1905 ASM_OUTPUT_LABEL (asm_out_file, crtl->subsections.hot_section_label);
1906 hot_label_written = true;
1907 first_function_block_is_cold = true;
1909 in_cold_section_p = first_function_block_is_cold;
1913 /* Switch to the correct text section for the start of the function. */
1915 switch_to_section (function_section (decl), decl);
1916 if (crtl->has_bb_partition && !hot_label_written)
1917 ASM_OUTPUT_LABEL (asm_out_file, crtl->subsections.hot_section_label);
1919 /* Tell assembler to move to target machine's alignment for functions. */
1920 align = floor_log2 (align / BITS_PER_UNIT);
1921 if (align > 0)
1923 ASM_OUTPUT_ALIGN (asm_out_file, align);
1926 /* Handle a user-specified function alignment.
1927 Note that we still need to align to DECL_ALIGN, as above,
1928 because ASM_OUTPUT_MAX_SKIP_ALIGN might not do any alignment at all. */
1929 if (! DECL_USER_ALIGN (decl)
1930 && align_functions.levels[0].log > align
1931 && optimize_function_for_speed_p (cfun))
1933 #ifdef ASM_OUTPUT_MAX_SKIP_ALIGN
1934 int align_log = align_functions.levels[0].log;
1935 #endif
1936 int max_skip = align_functions.levels[0].maxskip;
1937 if (flag_limit_function_alignment && crtl->max_insn_address > 0
1938 && max_skip >= crtl->max_insn_address)
1939 max_skip = crtl->max_insn_address - 1;
1941 #ifdef ASM_OUTPUT_MAX_SKIP_ALIGN
1942 ASM_OUTPUT_MAX_SKIP_ALIGN (asm_out_file, align_log, max_skip);
1943 if (max_skip == align_functions.levels[0].maxskip)
1944 ASM_OUTPUT_MAX_SKIP_ALIGN (asm_out_file,
1945 align_functions.levels[1].log,
1946 align_functions.levels[1].maxskip);
1947 #else
1948 ASM_OUTPUT_ALIGN (asm_out_file, align_functions.levels[0].log);
1949 #endif
1952 #ifdef ASM_OUTPUT_FUNCTION_PREFIX
1953 ASM_OUTPUT_FUNCTION_PREFIX (asm_out_file, fnname);
1954 #endif
1956 if (!DECL_IGNORED_P (decl))
1957 (*debug_hooks->begin_function) (decl);
1959 /* Make function name accessible from other files, if appropriate. */
1961 if (TREE_PUBLIC (decl))
1963 notice_global_symbol (decl);
1965 globalize_decl (decl);
1967 maybe_assemble_visibility (decl);
1970 if (DECL_PRESERVE_P (decl))
1971 targetm.asm_out.mark_decl_preserved (fnname);
1973 unsigned short patch_area_size = crtl->patch_area_size;
1974 unsigned short patch_area_entry = crtl->patch_area_entry;
1976 /* Emit the patching area before the entry label, if any. */
1977 if (patch_area_entry > 0)
1978 targetm.asm_out.print_patchable_function_entry (asm_out_file,
1979 patch_area_entry, true);
1981 /* Do any machine/system dependent processing of the function name. */
1982 #ifdef ASM_DECLARE_FUNCTION_NAME
1983 ASM_DECLARE_FUNCTION_NAME (asm_out_file, fnname, current_function_decl);
1984 #else
1985 /* Standard thing is just output label for the function. */
1986 ASM_OUTPUT_FUNCTION_LABEL (asm_out_file, fnname, current_function_decl);
1987 #endif /* ASM_DECLARE_FUNCTION_NAME */
1989 /* And the area after the label. Record it if we haven't done so yet. */
1990 if (patch_area_size > patch_area_entry)
1991 targetm.asm_out.print_patchable_function_entry (asm_out_file,
1992 patch_area_size
1993 - patch_area_entry,
1994 patch_area_entry == 0);
1996 if (lookup_attribute ("no_split_stack", DECL_ATTRIBUTES (decl)))
1997 saw_no_split_stack = true;
2000 /* Output assembler code associated with defining the size of the
2001 function. DECL describes the function. NAME is the function's name. */
2003 void
2004 assemble_end_function (tree decl, const char *fnname ATTRIBUTE_UNUSED)
2006 #ifdef ASM_DECLARE_FUNCTION_SIZE
2007 /* We could have switched section in the middle of the function. */
2008 if (crtl->has_bb_partition)
2009 switch_to_section (function_section (decl));
2010 ASM_DECLARE_FUNCTION_SIZE (asm_out_file, fnname, decl);
2011 #endif
2012 if (! CONSTANT_POOL_BEFORE_FUNCTION)
2014 output_constant_pool (fnname, decl);
2015 switch_to_section (function_section (decl)); /* need to switch back */
2017 /* Output labels for end of hot/cold text sections (to be used by
2018 debug info.) */
2019 if (crtl->has_bb_partition)
2021 section *save_text_section;
2023 save_text_section = in_section;
2024 switch_to_section (unlikely_text_section ());
2025 #ifdef ASM_DECLARE_COLD_FUNCTION_SIZE
2026 if (cold_function_name != NULL_TREE)
2027 ASM_DECLARE_COLD_FUNCTION_SIZE (asm_out_file,
2028 IDENTIFIER_POINTER (cold_function_name),
2029 decl);
2030 #endif
2031 ASM_OUTPUT_LABEL (asm_out_file, crtl->subsections.cold_section_end_label);
2032 if (first_function_block_is_cold)
2033 switch_to_section (text_section);
2034 else
2035 switch_to_section (function_section (decl));
2036 ASM_OUTPUT_LABEL (asm_out_file, crtl->subsections.hot_section_end_label);
2037 switch_to_section (save_text_section);
2041 /* Assemble code to leave SIZE bytes of zeros. */
2043 void
2044 assemble_zeros (unsigned HOST_WIDE_INT size)
2046 /* Do no output if -fsyntax-only. */
2047 if (flag_syntax_only)
2048 return;
2050 #ifdef ASM_NO_SKIP_IN_TEXT
2051 /* The `space' pseudo in the text section outputs nop insns rather than 0s,
2052 so we must output 0s explicitly in the text section. */
2053 if (ASM_NO_SKIP_IN_TEXT && (in_section->common.flags & SECTION_CODE) != 0)
2055 unsigned HOST_WIDE_INT i;
2056 for (i = 0; i < size; i++)
2057 assemble_integer (const0_rtx, 1, BITS_PER_UNIT, 1);
2059 else
2060 #endif
2061 if (size > 0)
2062 ASM_OUTPUT_SKIP (asm_out_file, size);
2065 /* Assemble an alignment pseudo op for an ALIGN-bit boundary. */
2067 void
2068 assemble_align (unsigned int align)
2070 if (align > BITS_PER_UNIT)
2072 ASM_OUTPUT_ALIGN (asm_out_file, floor_log2 (align / BITS_PER_UNIT));
2076 /* Assemble a string constant with the specified C string as contents. */
2078 void
2079 assemble_string (const char *p, int size)
2081 int pos = 0;
2082 int maximum = 2000;
2084 /* If the string is very long, split it up. */
2086 while (pos < size)
2088 int thissize = size - pos;
2089 if (thissize > maximum)
2090 thissize = maximum;
2092 ASM_OUTPUT_ASCII (asm_out_file, p, thissize);
2094 pos += thissize;
2095 p += thissize;
2100 /* A noswitch_section_callback for lcomm_section. */
2102 static bool
2103 emit_local (tree decl ATTRIBUTE_UNUSED,
2104 const char *name ATTRIBUTE_UNUSED,
2105 unsigned HOST_WIDE_INT size ATTRIBUTE_UNUSED,
2106 unsigned HOST_WIDE_INT rounded ATTRIBUTE_UNUSED)
2108 #if defined ASM_OUTPUT_ALIGNED_DECL_LOCAL
2109 unsigned int align = symtab_node::get (decl)->definition_alignment ();
2110 ASM_OUTPUT_ALIGNED_DECL_LOCAL (asm_out_file, decl, name,
2111 size, align);
2112 return true;
2113 #elif defined ASM_OUTPUT_ALIGNED_LOCAL
2114 unsigned int align = symtab_node::get (decl)->definition_alignment ();
2115 ASM_OUTPUT_ALIGNED_LOCAL (asm_out_file, name, size, align);
2116 return true;
2117 #else
2118 ASM_OUTPUT_LOCAL (asm_out_file, name, size, rounded);
2119 return false;
2120 #endif
2123 /* A noswitch_section_callback for bss_noswitch_section. */
2125 #if defined ASM_OUTPUT_ALIGNED_BSS
2126 static bool
2127 emit_bss (tree decl ATTRIBUTE_UNUSED,
2128 const char *name ATTRIBUTE_UNUSED,
2129 unsigned HOST_WIDE_INT size ATTRIBUTE_UNUSED,
2130 unsigned HOST_WIDE_INT rounded ATTRIBUTE_UNUSED)
2132 ASM_OUTPUT_ALIGNED_BSS (asm_out_file, decl, name, size,
2133 get_variable_align (decl));
2134 return true;
2136 #endif
2138 /* A noswitch_section_callback for comm_section. */
2140 static bool
2141 emit_common (tree decl ATTRIBUTE_UNUSED,
2142 const char *name ATTRIBUTE_UNUSED,
2143 unsigned HOST_WIDE_INT size ATTRIBUTE_UNUSED,
2144 unsigned HOST_WIDE_INT rounded ATTRIBUTE_UNUSED)
2146 #if defined ASM_OUTPUT_ALIGNED_DECL_COMMON
2147 ASM_OUTPUT_ALIGNED_DECL_COMMON (asm_out_file, decl, name,
2148 size, get_variable_align (decl));
2149 return true;
2150 #elif defined ASM_OUTPUT_ALIGNED_COMMON
2151 ASM_OUTPUT_ALIGNED_COMMON (asm_out_file, name, size,
2152 get_variable_align (decl));
2153 return true;
2154 #else
2155 ASM_OUTPUT_COMMON (asm_out_file, name, size, rounded);
2156 return false;
2157 #endif
2160 /* A noswitch_section_callback for tls_comm_section. */
2162 static bool
2163 emit_tls_common (tree decl ATTRIBUTE_UNUSED,
2164 const char *name ATTRIBUTE_UNUSED,
2165 unsigned HOST_WIDE_INT size ATTRIBUTE_UNUSED,
2166 unsigned HOST_WIDE_INT rounded ATTRIBUTE_UNUSED)
2168 #ifdef ASM_OUTPUT_TLS_COMMON
2169 ASM_OUTPUT_TLS_COMMON (asm_out_file, decl, name, size);
2170 return true;
2171 #else
2172 sorry ("thread-local COMMON data not implemented");
2173 return true;
2174 #endif
2177 /* Assemble DECL given that it belongs in SECTION_NOSWITCH section SECT.
2178 NAME is the name of DECL's SYMBOL_REF. */
2180 static void
2181 assemble_noswitch_variable (tree decl, const char *name, section *sect,
2182 unsigned int align)
2184 unsigned HOST_WIDE_INT size, rounded;
2186 size = tree_to_uhwi (DECL_SIZE_UNIT (decl));
2187 rounded = size;
2189 if ((flag_sanitize & SANITIZE_ADDRESS) && asan_protect_global (decl))
2190 size += asan_red_zone_size (size);
2192 /* Don't allocate zero bytes of common,
2193 since that means "undefined external" in the linker. */
2194 if (size == 0)
2195 rounded = 1;
2197 /* Round size up to multiple of BIGGEST_ALIGNMENT bits
2198 so that each uninitialized object starts on such a boundary. */
2199 rounded += (BIGGEST_ALIGNMENT / BITS_PER_UNIT) - 1;
2200 rounded = (rounded / (BIGGEST_ALIGNMENT / BITS_PER_UNIT)
2201 * (BIGGEST_ALIGNMENT / BITS_PER_UNIT));
2203 if (!sect->noswitch.callback (decl, name, size, rounded)
2204 && (unsigned HOST_WIDE_INT) (align / BITS_PER_UNIT) > rounded)
2205 error ("requested alignment for %q+D is greater than "
2206 "implemented alignment of %wu", decl, rounded);
2209 /* A subroutine of assemble_variable. Output the label and contents of
2210 DECL, whose address is a SYMBOL_REF with name NAME. DONT_OUTPUT_DATA
2211 is as for assemble_variable. */
2213 static void
2214 assemble_variable_contents (tree decl, const char *name,
2215 bool dont_output_data, bool merge_strings)
2217 /* Do any machine/system dependent processing of the object. */
2218 #ifdef ASM_DECLARE_OBJECT_NAME
2219 last_assemble_variable_decl = decl;
2220 ASM_DECLARE_OBJECT_NAME (asm_out_file, name, decl);
2221 #else
2222 /* Standard thing is just output label for the object. */
2223 ASM_OUTPUT_LABEL (asm_out_file, name);
2224 #endif /* ASM_DECLARE_OBJECT_NAME */
2226 if (!dont_output_data)
2228 /* Caller is supposed to use varpool_get_constructor when it wants
2229 to output the body. */
2230 gcc_assert (!in_lto_p || DECL_INITIAL (decl) != error_mark_node);
2231 if (DECL_INITIAL (decl)
2232 && DECL_INITIAL (decl) != error_mark_node
2233 && !initializer_zerop (DECL_INITIAL (decl)))
2234 /* Output the actual data. */
2235 output_constant (DECL_INITIAL (decl),
2236 tree_to_uhwi (DECL_SIZE_UNIT (decl)),
2237 get_variable_align (decl),
2238 false, merge_strings);
2239 else
2240 /* Leave space for it. */
2241 assemble_zeros (tree_to_uhwi (DECL_SIZE_UNIT (decl)));
2242 targetm.asm_out.decl_end ();
2246 /* Write out assembly for the variable DECL, which is not defined in
2247 the current translation unit. */
2248 void
2249 assemble_undefined_decl (tree decl)
2251 const char *name = XSTR (XEXP (DECL_RTL (decl), 0), 0);
2252 targetm.asm_out.assemble_undefined_decl (asm_out_file, name, decl);
2255 /* Assemble everything that is needed for a variable or function declaration.
2256 Not used for automatic variables, and not used for function definitions.
2257 Should not be called for variables of incomplete structure type.
2259 TOP_LEVEL is nonzero if this variable has file scope.
2260 AT_END is nonzero if this is the special handling, at end of compilation,
2261 to define things that have had only tentative definitions.
2262 DONT_OUTPUT_DATA if nonzero means don't actually output the
2263 initial value (that will be done by the caller). */
2265 void
2266 assemble_variable (tree decl, int top_level ATTRIBUTE_UNUSED,
2267 int at_end ATTRIBUTE_UNUSED, int dont_output_data)
2269 const char *name;
2270 rtx decl_rtl, symbol;
2271 section *sect;
2272 unsigned int align;
2273 bool asan_protected = false;
2275 /* This function is supposed to handle VARIABLES. Ensure we have one. */
2276 gcc_assert (VAR_P (decl));
2278 /* Emulated TLS had better not get this far. */
2279 gcc_checking_assert (targetm.have_tls || !DECL_THREAD_LOCAL_P (decl));
2281 last_assemble_variable_decl = 0;
2283 /* Normally no need to say anything here for external references,
2284 since assemble_external is called by the language-specific code
2285 when a declaration is first seen. */
2287 if (DECL_EXTERNAL (decl))
2288 return;
2290 /* Do nothing for global register variables. */
2291 if (DECL_RTL_SET_P (decl) && REG_P (DECL_RTL (decl)))
2293 TREE_ASM_WRITTEN (decl) = 1;
2294 return;
2297 /* If type was incomplete when the variable was declared,
2298 see if it is complete now. */
2300 if (DECL_SIZE (decl) == 0)
2301 layout_decl (decl, 0);
2303 /* Still incomplete => don't allocate it; treat the tentative defn
2304 (which is what it must have been) as an `extern' reference. */
2306 if (!dont_output_data && DECL_SIZE (decl) == 0)
2308 error ("storage size of %q+D isn%'t known", decl);
2309 TREE_ASM_WRITTEN (decl) = 1;
2310 return;
2313 /* The first declaration of a variable that comes through this function
2314 decides whether it is global (in C, has external linkage)
2315 or local (in C, has internal linkage). So do nothing more
2316 if this function has already run. */
2318 if (TREE_ASM_WRITTEN (decl))
2319 return;
2321 /* Make sure targetm.encode_section_info is invoked before we set
2322 ASM_WRITTEN. */
2323 decl_rtl = DECL_RTL (decl);
2325 TREE_ASM_WRITTEN (decl) = 1;
2327 /* Do no output if -fsyntax-only. */
2328 if (flag_syntax_only)
2329 return;
2331 if (! dont_output_data
2332 && ! valid_constant_size_p (DECL_SIZE_UNIT (decl)))
2334 error ("size of variable %q+D is too large", decl);
2335 return;
2338 gcc_assert (MEM_P (decl_rtl));
2339 gcc_assert (GET_CODE (XEXP (decl_rtl, 0)) == SYMBOL_REF);
2340 symbol = XEXP (decl_rtl, 0);
2342 /* If this symbol belongs to the tree constant pool, output the constant
2343 if it hasn't already been written. */
2344 if (TREE_CONSTANT_POOL_ADDRESS_P (symbol))
2346 tree decl = SYMBOL_REF_DECL (symbol);
2347 if (!TREE_ASM_WRITTEN (DECL_INITIAL (decl)))
2348 output_constant_def_contents (symbol);
2349 return;
2352 app_disable ();
2354 name = XSTR (symbol, 0);
2355 if (TREE_PUBLIC (decl) && DECL_NAME (decl))
2356 notice_global_symbol (decl);
2358 /* Compute the alignment of this data. */
2360 align_variable (decl, dont_output_data);
2362 if ((flag_sanitize & SANITIZE_ADDRESS)
2363 && asan_protect_global (decl))
2365 asan_protected = true;
2366 SET_DECL_ALIGN (decl, MAX (DECL_ALIGN (decl),
2367 ASAN_RED_ZONE_SIZE * BITS_PER_UNIT));
2370 set_mem_align (decl_rtl, DECL_ALIGN (decl));
2372 align = get_variable_align (decl);
2374 if (TREE_PUBLIC (decl))
2375 maybe_assemble_visibility (decl);
2377 if (DECL_PRESERVE_P (decl))
2378 targetm.asm_out.mark_decl_preserved (name);
2380 /* First make the assembler name(s) global if appropriate. */
2381 sect = get_variable_section (decl, false);
2382 if (TREE_PUBLIC (decl)
2383 && (sect->common.flags & SECTION_COMMON) == 0)
2384 globalize_decl (decl);
2386 /* Output any data that we will need to use the address of. */
2387 if (DECL_INITIAL (decl) && DECL_INITIAL (decl) != error_mark_node)
2388 output_addressed_constants (DECL_INITIAL (decl), 0);
2390 /* dbxout.c needs to know this. */
2391 if (sect && (sect->common.flags & SECTION_CODE) != 0)
2392 DECL_IN_TEXT_SECTION (decl) = 1;
2394 /* If the decl is part of an object_block, make sure that the decl
2395 has been positioned within its block, but do not write out its
2396 definition yet. output_object_blocks will do that later. */
2397 if (SYMBOL_REF_HAS_BLOCK_INFO_P (symbol) && SYMBOL_REF_BLOCK (symbol))
2399 gcc_assert (!dont_output_data);
2400 place_block_symbol (symbol);
2402 else if (SECTION_STYLE (sect) == SECTION_NOSWITCH)
2403 assemble_noswitch_variable (decl, name, sect, align);
2404 else
2406 /* Special-case handling of vtv comdat sections. */
2407 if (sect->named.name
2408 && (strcmp (sect->named.name, ".vtable_map_vars") == 0))
2409 handle_vtv_comdat_section (sect, decl);
2410 else
2411 switch_to_section (sect, decl);
2412 if (align > BITS_PER_UNIT)
2413 ASM_OUTPUT_ALIGN (asm_out_file, floor_log2 (align / BITS_PER_UNIT));
2414 assemble_variable_contents (decl, name, dont_output_data,
2415 (sect->common.flags & SECTION_MERGE)
2416 && (sect->common.flags & SECTION_STRINGS));
2417 if (asan_protected)
2419 unsigned HOST_WIDE_INT int size
2420 = tree_to_uhwi (DECL_SIZE_UNIT (decl));
2421 assemble_zeros (asan_red_zone_size (size));
2427 /* Given a function declaration (FN_DECL), this function assembles the
2428 function into the .preinit_array section. */
2430 void
2431 assemble_vtv_preinit_initializer (tree fn_decl)
2433 section *sect;
2434 unsigned flags = SECTION_WRITE;
2435 rtx symbol = XEXP (DECL_RTL (fn_decl), 0);
2437 flags |= SECTION_NOTYPE;
2438 sect = get_section (".preinit_array", flags, fn_decl);
2439 switch_to_section (sect);
2440 assemble_addr_to_section (symbol, sect);
2443 /* Return 1 if type TYPE contains any pointers. */
2445 static int
2446 contains_pointers_p (tree type)
2448 switch (TREE_CODE (type))
2450 case POINTER_TYPE:
2451 case REFERENCE_TYPE:
2452 /* I'm not sure whether OFFSET_TYPE needs this treatment,
2453 so I'll play safe and return 1. */
2454 case OFFSET_TYPE:
2455 return 1;
2457 case RECORD_TYPE:
2458 case UNION_TYPE:
2459 case QUAL_UNION_TYPE:
2461 tree fields;
2462 /* For a type that has fields, see if the fields have pointers. */
2463 for (fields = TYPE_FIELDS (type); fields; fields = DECL_CHAIN (fields))
2464 if (TREE_CODE (fields) == FIELD_DECL
2465 && contains_pointers_p (TREE_TYPE (fields)))
2466 return 1;
2467 return 0;
2470 case ARRAY_TYPE:
2471 /* An array type contains pointers if its element type does. */
2472 return contains_pointers_p (TREE_TYPE (type));
2474 default:
2475 return 0;
2479 /* We delay assemble_external processing until
2480 the compilation unit is finalized. This is the best we can do for
2481 right now (i.e. stage 3 of GCC 4.0) - the right thing is to delay
2482 it all the way to final. See PR 17982 for further discussion. */
2483 static GTY(()) tree pending_assemble_externals;
2485 #ifdef ASM_OUTPUT_EXTERNAL
2486 /* Some targets delay some output to final using TARGET_ASM_FILE_END.
2487 As a result, assemble_external can be called after the list of externals
2488 is processed and the pointer set destroyed. */
2489 static bool pending_assemble_externals_processed;
2491 /* Avoid O(external_decls**2) lookups in the pending_assemble_externals
2492 TREE_LIST in assemble_external. */
2493 static hash_set<tree> *pending_assemble_externals_set;
2495 /* True if DECL is a function decl for which no out-of-line copy exists.
2496 It is assumed that DECL's assembler name has been set. */
2498 static bool
2499 incorporeal_function_p (tree decl)
2501 if (TREE_CODE (decl) == FUNCTION_DECL && fndecl_built_in_p (decl))
2503 const char *name;
2505 if (DECL_BUILT_IN_CLASS (decl) == BUILT_IN_NORMAL
2506 && ALLOCA_FUNCTION_CODE_P (DECL_FUNCTION_CODE (decl)))
2507 return true;
2509 name = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl));
2510 /* Atomic or sync builtins which have survived this far will be
2511 resolved externally and therefore are not incorporeal. */
2512 if (startswith (name, "__builtin_"))
2513 return true;
2515 return false;
2518 /* Actually do the tests to determine if this is necessary, and invoke
2519 ASM_OUTPUT_EXTERNAL. */
2520 static void
2521 assemble_external_real (tree decl)
2523 rtx rtl = DECL_RTL (decl);
2525 if (MEM_P (rtl) && GET_CODE (XEXP (rtl, 0)) == SYMBOL_REF
2526 && !SYMBOL_REF_USED (XEXP (rtl, 0))
2527 && !incorporeal_function_p (decl))
2529 /* Some systems do require some output. */
2530 SYMBOL_REF_USED (XEXP (rtl, 0)) = 1;
2531 ASM_OUTPUT_EXTERNAL (asm_out_file, decl, XSTR (XEXP (rtl, 0), 0));
2534 #endif
2536 void
2537 process_pending_assemble_externals (void)
2539 #ifdef ASM_OUTPUT_EXTERNAL
2540 tree list;
2541 for (list = pending_assemble_externals; list; list = TREE_CHAIN (list))
2542 assemble_external_real (TREE_VALUE (list));
2544 pending_assemble_externals = 0;
2545 pending_assemble_externals_processed = true;
2546 delete pending_assemble_externals_set;
2547 #endif
2550 /* This TREE_LIST contains any weak symbol declarations waiting
2551 to be emitted. */
2552 static GTY(()) tree weak_decls;
2554 /* Output something to declare an external symbol to the assembler,
2555 and qualifiers such as weakness. (Most assemblers don't need
2556 extern declaration, so we normally output nothing.) Do nothing if
2557 DECL is not external. */
2559 void
2560 assemble_external (tree decl ATTRIBUTE_UNUSED)
2562 /* Make sure that the ASM_OUT_FILE is open.
2563 If it's not, we should not be calling this function. */
2564 gcc_assert (asm_out_file);
2566 /* In a perfect world, the following condition would be true.
2567 Sadly, the Go front end emit assembly *from the front end*,
2568 bypassing the call graph. See PR52739. Fix before GCC 4.8. */
2569 #if 0
2570 /* This function should only be called if we are expanding, or have
2571 expanded, to RTL.
2572 Ideally, only final.c would be calling this function, but it is
2573 not clear whether that would break things somehow. See PR 17982
2574 for further discussion. */
2575 gcc_assert (state == EXPANSION
2576 || state == FINISHED);
2577 #endif
2579 if (!DECL_P (decl) || !DECL_EXTERNAL (decl) || !TREE_PUBLIC (decl))
2580 return;
2582 /* We want to output annotation for weak and external symbols at
2583 very last to check if they are references or not. */
2585 if (TARGET_SUPPORTS_WEAK
2586 && DECL_WEAK (decl)
2587 /* TREE_STATIC is a weird and abused creature which is not
2588 generally the right test for whether an entity has been
2589 locally emitted, inlined or otherwise not-really-extern, but
2590 for declarations that can be weak, it happens to be
2591 match. */
2592 && !TREE_STATIC (decl)
2593 && lookup_attribute ("weak", DECL_ATTRIBUTES (decl))
2594 && value_member (decl, weak_decls) == NULL_TREE)
2595 weak_decls = tree_cons (NULL, decl, weak_decls);
2597 #ifdef ASM_OUTPUT_EXTERNAL
2598 if (pending_assemble_externals_processed)
2600 assemble_external_real (decl);
2601 return;
2604 if (! pending_assemble_externals_set->add (decl))
2605 pending_assemble_externals = tree_cons (NULL, decl,
2606 pending_assemble_externals);
2607 #endif
2610 /* Similar, for calling a library function FUN. */
2612 void
2613 assemble_external_libcall (rtx fun)
2615 /* Declare library function name external when first used, if nec. */
2616 if (! SYMBOL_REF_USED (fun))
2618 SYMBOL_REF_USED (fun) = 1;
2619 targetm.asm_out.external_libcall (fun);
2623 /* Assemble a label named NAME. */
2625 void
2626 assemble_label (FILE *file, const char *name)
2628 ASM_OUTPUT_LABEL (file, name);
2631 /* Set the symbol_referenced flag for ID. */
2632 void
2633 mark_referenced (tree id)
2635 TREE_SYMBOL_REFERENCED (id) = 1;
2638 /* Set the symbol_referenced flag for DECL and notify callgraph. */
2639 void
2640 mark_decl_referenced (tree decl)
2642 if (TREE_CODE (decl) == FUNCTION_DECL)
2644 /* Extern inline functions don't become needed when referenced.
2645 If we know a method will be emitted in other TU and no new
2646 functions can be marked reachable, just use the external
2647 definition. */
2648 struct cgraph_node *node = cgraph_node::get_create (decl);
2649 if (!DECL_EXTERNAL (decl)
2650 && !node->definition)
2651 node->mark_force_output ();
2653 else if (VAR_P (decl))
2655 varpool_node *node = varpool_node::get_create (decl);
2656 /* C++ frontend use mark_decl_references to force COMDAT variables
2657 to be output that might appear dead otherwise. */
2658 node->force_output = true;
2660 /* else do nothing - we can get various sorts of CST nodes here,
2661 which do not need to be marked. */
2665 /* Output to FILE (an assembly file) a reference to NAME. If NAME
2666 starts with a *, the rest of NAME is output verbatim. Otherwise
2667 NAME is transformed in a target-specific way (usually by the
2668 addition of an underscore). */
2670 void
2671 assemble_name_raw (FILE *file, const char *name)
2673 if (name[0] == '*')
2674 fputs (&name[1], file);
2675 else
2676 ASM_OUTPUT_LABELREF (file, name);
2679 /* Return NAME that should actually be emitted, looking through
2680 transparent aliases. If NAME refers to an entity that is also
2681 represented as a tree (like a function or variable), mark the entity
2682 as referenced. */
2683 const char *
2684 assemble_name_resolve (const char *name)
2686 const char *real_name = targetm.strip_name_encoding (name);
2687 tree id = maybe_get_identifier (real_name);
2689 if (id)
2691 tree id_orig = id;
2693 mark_referenced (id);
2694 ultimate_transparent_alias_target (&id);
2695 if (id != id_orig)
2696 name = IDENTIFIER_POINTER (id);
2697 gcc_assert (! TREE_CHAIN (id));
2700 return name;
2703 /* Like assemble_name_raw, but should be used when NAME might refer to
2704 an entity that is also represented as a tree (like a function or
2705 variable). If NAME does refer to such an entity, that entity will
2706 be marked as referenced. */
2708 void
2709 assemble_name (FILE *file, const char *name)
2711 assemble_name_raw (file, assemble_name_resolve (name));
2714 /* Allocate SIZE bytes writable static space with a gensym name
2715 and return an RTX to refer to its address. */
2718 assemble_static_space (unsigned HOST_WIDE_INT size)
2720 char name[17];
2721 const char *namestring;
2722 rtx x;
2724 ASM_GENERATE_INTERNAL_LABEL (name, "LF", const_labelno);
2725 ++const_labelno;
2726 namestring = ggc_strdup (name);
2728 x = gen_rtx_SYMBOL_REF (Pmode, namestring);
2729 SYMBOL_REF_FLAGS (x) = SYMBOL_FLAG_LOCAL;
2731 #ifdef ASM_OUTPUT_ALIGNED_DECL_LOCAL
2732 ASM_OUTPUT_ALIGNED_DECL_LOCAL (asm_out_file, NULL_TREE, name, size,
2733 BIGGEST_ALIGNMENT);
2734 #else
2735 #ifdef ASM_OUTPUT_ALIGNED_LOCAL
2736 ASM_OUTPUT_ALIGNED_LOCAL (asm_out_file, name, size, BIGGEST_ALIGNMENT);
2737 #else
2739 /* Round size up to multiple of BIGGEST_ALIGNMENT bits
2740 so that each uninitialized object starts on such a boundary. */
2741 /* Variable `rounded' might or might not be used in ASM_OUTPUT_LOCAL. */
2742 unsigned HOST_WIDE_INT rounded ATTRIBUTE_UNUSED
2743 = ((size + (BIGGEST_ALIGNMENT / BITS_PER_UNIT) - 1)
2744 / (BIGGEST_ALIGNMENT / BITS_PER_UNIT)
2745 * (BIGGEST_ALIGNMENT / BITS_PER_UNIT));
2746 ASM_OUTPUT_LOCAL (asm_out_file, name, size, rounded);
2748 #endif
2749 #endif
2750 return x;
2753 /* Assemble the static constant template for function entry trampolines.
2754 This is done at most once per compilation.
2755 Returns an RTX for the address of the template. */
2757 static GTY(()) rtx initial_trampoline;
2760 assemble_trampoline_template (void)
2762 char label[256];
2763 const char *name;
2764 int align;
2765 rtx symbol;
2767 gcc_assert (targetm.asm_out.trampoline_template != NULL);
2769 if (initial_trampoline)
2770 return initial_trampoline;
2772 /* By default, put trampoline templates in read-only data section. */
2774 #ifdef TRAMPOLINE_SECTION
2775 switch_to_section (TRAMPOLINE_SECTION);
2776 #else
2777 switch_to_section (readonly_data_section);
2778 #endif
2780 /* Write the assembler code to define one. */
2781 align = floor_log2 (TRAMPOLINE_ALIGNMENT / BITS_PER_UNIT);
2782 if (align > 0)
2783 ASM_OUTPUT_ALIGN (asm_out_file, align);
2785 targetm.asm_out.internal_label (asm_out_file, "LTRAMP", 0);
2786 targetm.asm_out.trampoline_template (asm_out_file);
2788 /* Record the rtl to refer to it. */
2789 ASM_GENERATE_INTERNAL_LABEL (label, "LTRAMP", 0);
2790 name = ggc_strdup (label);
2791 symbol = gen_rtx_SYMBOL_REF (Pmode, name);
2792 SYMBOL_REF_FLAGS (symbol) = SYMBOL_FLAG_LOCAL;
2794 initial_trampoline = gen_const_mem (BLKmode, symbol);
2795 set_mem_align (initial_trampoline, TRAMPOLINE_ALIGNMENT);
2796 set_mem_size (initial_trampoline, TRAMPOLINE_SIZE);
2798 return initial_trampoline;
2801 /* A and B are either alignments or offsets. Return the minimum alignment
2802 that may be assumed after adding the two together. */
2804 static inline unsigned
2805 min_align (unsigned int a, unsigned int b)
2807 return least_bit_hwi (a | b);
2810 /* Return the assembler directive for creating a given kind of integer
2811 object. SIZE is the number of bytes in the object and ALIGNED_P
2812 indicates whether it is known to be aligned. Return NULL if the
2813 assembly dialect has no such directive.
2815 The returned string should be printed at the start of a new line and
2816 be followed immediately by the object's initial value. */
2818 const char *
2819 integer_asm_op (int size, int aligned_p)
2821 struct asm_int_op *ops;
2823 if (aligned_p)
2824 ops = &targetm.asm_out.aligned_op;
2825 else
2826 ops = &targetm.asm_out.unaligned_op;
2828 switch (size)
2830 case 1:
2831 return targetm.asm_out.byte_op;
2832 case 2:
2833 return ops->hi;
2834 case 3:
2835 return ops->psi;
2836 case 4:
2837 return ops->si;
2838 case 5:
2839 case 6:
2840 case 7:
2841 return ops->pdi;
2842 case 8:
2843 return ops->di;
2844 case 9:
2845 case 10:
2846 case 11:
2847 case 12:
2848 case 13:
2849 case 14:
2850 case 15:
2851 return ops->pti;
2852 case 16:
2853 return ops->ti;
2854 default:
2855 return NULL;
2859 /* Use directive OP to assemble an integer object X. Print OP at the
2860 start of the line, followed immediately by the value of X. */
2862 void
2863 assemble_integer_with_op (const char *op, rtx x)
2865 fputs (op, asm_out_file);
2866 output_addr_const (asm_out_file, x);
2867 fputc ('\n', asm_out_file);
2870 /* The default implementation of the asm_out.integer target hook. */
2872 bool
2873 default_assemble_integer (rtx x ATTRIBUTE_UNUSED,
2874 unsigned int size ATTRIBUTE_UNUSED,
2875 int aligned_p ATTRIBUTE_UNUSED)
2877 const char *op = integer_asm_op (size, aligned_p);
2878 /* Avoid GAS bugs for large values. Specifically negative values whose
2879 absolute value fits in a bfd_vma, but not in a bfd_signed_vma. */
2880 if (size > UNITS_PER_WORD && size > POINTER_SIZE_UNITS)
2881 return false;
2882 return op && (assemble_integer_with_op (op, x), true);
2885 /* Assemble the integer constant X into an object of SIZE bytes. ALIGN is
2886 the alignment of the integer in bits. Return 1 if we were able to output
2887 the constant, otherwise 0. We must be able to output the constant,
2888 if FORCE is nonzero. */
2890 bool
2891 assemble_integer (rtx x, unsigned int size, unsigned int align, int force)
2893 int aligned_p;
2895 aligned_p = (align >= MIN (size * BITS_PER_UNIT, BIGGEST_ALIGNMENT));
2897 /* See if the target hook can handle this kind of object. */
2898 if (targetm.asm_out.integer (x, size, aligned_p))
2899 return true;
2901 /* If the object is a multi-byte one, try splitting it up. Split
2902 it into words it if is multi-word, otherwise split it into bytes. */
2903 if (size > 1)
2905 machine_mode omode, imode;
2906 unsigned int subalign;
2907 unsigned int subsize, i;
2908 enum mode_class mclass;
2910 subsize = size > UNITS_PER_WORD? UNITS_PER_WORD : 1;
2911 subalign = MIN (align, subsize * BITS_PER_UNIT);
2912 if (GET_CODE (x) == CONST_FIXED)
2913 mclass = GET_MODE_CLASS (GET_MODE (x));
2914 else
2915 mclass = MODE_INT;
2917 omode = mode_for_size (subsize * BITS_PER_UNIT, mclass, 0).require ();
2918 imode = mode_for_size (size * BITS_PER_UNIT, mclass, 0).require ();
2920 for (i = 0; i < size; i += subsize)
2922 rtx partial = simplify_subreg (omode, x, imode, i);
2923 if (!partial || !assemble_integer (partial, subsize, subalign, 0))
2924 break;
2926 if (i == size)
2927 return true;
2929 /* If we've printed some of it, but not all of it, there's no going
2930 back now. */
2931 gcc_assert (!i);
2934 gcc_assert (!force);
2936 return false;
2939 /* Assemble the floating-point constant D into an object of size MODE. ALIGN
2940 is the alignment of the constant in bits. If REVERSE is true, D is output
2941 in reverse storage order. */
2943 void
2944 assemble_real (REAL_VALUE_TYPE d, scalar_float_mode mode, unsigned int align,
2945 bool reverse)
2947 long data[4] = {0, 0, 0, 0};
2948 int bitsize, nelts, nunits, units_per;
2949 rtx elt;
2951 /* This is hairy. We have a quantity of known size. real_to_target
2952 will put it into an array of *host* longs, 32 bits per element
2953 (even if long is more than 32 bits). We need to determine the
2954 number of array elements that are occupied (nelts) and the number
2955 of *target* min-addressable units that will be occupied in the
2956 object file (nunits). We cannot assume that 32 divides the
2957 mode's bitsize (size * BITS_PER_UNIT) evenly.
2959 size * BITS_PER_UNIT is used here to make sure that padding bits
2960 (which might appear at either end of the value; real_to_target
2961 will include the padding bits in its output array) are included. */
2963 nunits = GET_MODE_SIZE (mode);
2964 bitsize = nunits * BITS_PER_UNIT;
2965 nelts = CEIL (bitsize, 32);
2966 units_per = 32 / BITS_PER_UNIT;
2968 real_to_target (data, &d, mode);
2970 /* Put out the first word with the specified alignment. */
2971 unsigned int chunk_nunits = MIN (nunits, units_per);
2972 if (reverse)
2973 elt = flip_storage_order (SImode, gen_int_mode (data[nelts - 1], SImode));
2974 else
2975 elt = GEN_INT (sext_hwi (data[0], chunk_nunits * BITS_PER_UNIT));
2976 assemble_integer (elt, chunk_nunits, align, 1);
2977 nunits -= chunk_nunits;
2979 /* Subsequent words need only 32-bit alignment. */
2980 align = min_align (align, 32);
2982 for (int i = 1; i < nelts; i++)
2984 chunk_nunits = MIN (nunits, units_per);
2985 if (reverse)
2986 elt = flip_storage_order (SImode,
2987 gen_int_mode (data[nelts - 1 - i], SImode));
2988 else
2989 elt = GEN_INT (sext_hwi (data[i], chunk_nunits * BITS_PER_UNIT));
2990 assemble_integer (elt, chunk_nunits, align, 1);
2991 nunits -= chunk_nunits;
2995 /* Given an expression EXP with a constant value,
2996 reduce it to the sum of an assembler symbol and an integer.
2997 Store them both in the structure *VALUE.
2998 EXP must be reducible. */
3000 class addr_const {
3001 public:
3002 rtx base;
3003 poly_int64 offset;
3006 static void
3007 decode_addr_const (tree exp, class addr_const *value)
3009 tree target = TREE_OPERAND (exp, 0);
3010 poly_int64 offset = 0;
3011 rtx x;
3013 while (1)
3015 poly_int64 bytepos;
3016 if (TREE_CODE (target) == COMPONENT_REF
3017 && poly_int_tree_p (byte_position (TREE_OPERAND (target, 1)),
3018 &bytepos))
3020 offset += bytepos;
3021 target = TREE_OPERAND (target, 0);
3023 else if (TREE_CODE (target) == ARRAY_REF
3024 || TREE_CODE (target) == ARRAY_RANGE_REF)
3026 /* Truncate big offset. */
3027 offset
3028 += (TREE_INT_CST_LOW (TYPE_SIZE_UNIT (TREE_TYPE (target)))
3029 * wi::to_poly_widest (TREE_OPERAND (target, 1)).force_shwi ());
3030 target = TREE_OPERAND (target, 0);
3032 else if (TREE_CODE (target) == MEM_REF
3033 && TREE_CODE (TREE_OPERAND (target, 0)) == ADDR_EXPR)
3035 offset += mem_ref_offset (target).force_shwi ();
3036 target = TREE_OPERAND (TREE_OPERAND (target, 0), 0);
3038 else if (TREE_CODE (target) == INDIRECT_REF
3039 && TREE_CODE (TREE_OPERAND (target, 0)) == NOP_EXPR
3040 && TREE_CODE (TREE_OPERAND (TREE_OPERAND (target, 0), 0))
3041 == ADDR_EXPR)
3042 target = TREE_OPERAND (TREE_OPERAND (TREE_OPERAND (target, 0), 0), 0);
3043 else
3044 break;
3047 switch (TREE_CODE (target))
3049 case VAR_DECL:
3050 case FUNCTION_DECL:
3051 x = DECL_RTL (target);
3052 break;
3054 case LABEL_DECL:
3055 x = gen_rtx_MEM (FUNCTION_MODE,
3056 gen_rtx_LABEL_REF (Pmode, force_label_rtx (target)));
3057 break;
3059 case REAL_CST:
3060 case FIXED_CST:
3061 case STRING_CST:
3062 case COMPLEX_CST:
3063 case CONSTRUCTOR:
3064 case INTEGER_CST:
3065 x = lookup_constant_def (target);
3066 /* Should have been added by output_addressed_constants. */
3067 gcc_assert (x);
3068 break;
3070 case INDIRECT_REF:
3071 /* This deals with absolute addresses. */
3072 offset += tree_to_shwi (TREE_OPERAND (target, 0));
3073 x = gen_rtx_MEM (QImode,
3074 gen_rtx_SYMBOL_REF (Pmode, "origin of addresses"));
3075 break;
3077 case COMPOUND_LITERAL_EXPR:
3078 gcc_assert (COMPOUND_LITERAL_EXPR_DECL (target));
3079 x = DECL_RTL (COMPOUND_LITERAL_EXPR_DECL (target));
3080 break;
3082 default:
3083 gcc_unreachable ();
3086 gcc_assert (MEM_P (x));
3087 x = XEXP (x, 0);
3089 value->base = x;
3090 value->offset = offset;
3093 static GTY(()) hash_table<tree_descriptor_hasher> *const_desc_htab;
3095 static void maybe_output_constant_def_contents (struct constant_descriptor_tree *, int);
3097 /* Constant pool accessor function. */
3099 hash_table<tree_descriptor_hasher> *
3100 constant_pool_htab (void)
3102 return const_desc_htab;
3105 /* Compute a hash code for a constant expression. */
3107 hashval_t
3108 tree_descriptor_hasher::hash (constant_descriptor_tree *ptr)
3110 return ptr->hash;
3113 static hashval_t
3114 const_hash_1 (const tree exp)
3116 const char *p;
3117 hashval_t hi;
3118 int len, i;
3119 enum tree_code code = TREE_CODE (exp);
3121 /* Either set P and LEN to the address and len of something to hash and
3122 exit the switch or return a value. */
3124 switch (code)
3126 case INTEGER_CST:
3127 p = (char *) &TREE_INT_CST_ELT (exp, 0);
3128 len = TREE_INT_CST_NUNITS (exp) * sizeof (HOST_WIDE_INT);
3129 break;
3131 case REAL_CST:
3132 return real_hash (TREE_REAL_CST_PTR (exp));
3134 case FIXED_CST:
3135 return fixed_hash (TREE_FIXED_CST_PTR (exp));
3137 case STRING_CST:
3138 p = TREE_STRING_POINTER (exp);
3139 len = TREE_STRING_LENGTH (exp);
3140 break;
3142 case COMPLEX_CST:
3143 return (const_hash_1 (TREE_REALPART (exp)) * 5
3144 + const_hash_1 (TREE_IMAGPART (exp)));
3146 case VECTOR_CST:
3148 hi = 7 + VECTOR_CST_NPATTERNS (exp);
3149 hi = hi * 563 + VECTOR_CST_NELTS_PER_PATTERN (exp);
3150 unsigned int count = vector_cst_encoded_nelts (exp);
3151 for (unsigned int i = 0; i < count; ++i)
3152 hi = hi * 563 + const_hash_1 (VECTOR_CST_ENCODED_ELT (exp, i));
3153 return hi;
3156 case CONSTRUCTOR:
3158 unsigned HOST_WIDE_INT idx;
3159 tree value;
3161 hi = 5 + int_size_in_bytes (TREE_TYPE (exp));
3163 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (exp), idx, value)
3164 if (value)
3165 hi = hi * 603 + const_hash_1 (value);
3167 return hi;
3170 case ADDR_EXPR:
3171 if (CONSTANT_CLASS_P (TREE_OPERAND (exp, 0)))
3172 return const_hash_1 (TREE_OPERAND (exp, 0));
3174 /* Fallthru. */
3175 case FDESC_EXPR:
3177 class addr_const value;
3179 decode_addr_const (exp, &value);
3180 switch (GET_CODE (value.base))
3182 case SYMBOL_REF:
3183 /* Don't hash the address of the SYMBOL_REF;
3184 only use the offset and the symbol name. */
3185 hi = value.offset.coeffs[0];
3186 p = XSTR (value.base, 0);
3187 for (i = 0; p[i] != 0; i++)
3188 hi = ((hi * 613) + (unsigned) (p[i]));
3189 break;
3191 case LABEL_REF:
3192 hi = (value.offset.coeffs[0]
3193 + CODE_LABEL_NUMBER (label_ref_label (value.base)) * 13);
3194 break;
3196 default:
3197 gcc_unreachable ();
3200 return hi;
3202 case PLUS_EXPR:
3203 case POINTER_PLUS_EXPR:
3204 case MINUS_EXPR:
3205 return (const_hash_1 (TREE_OPERAND (exp, 0)) * 9
3206 + const_hash_1 (TREE_OPERAND (exp, 1)));
3208 CASE_CONVERT:
3209 return const_hash_1 (TREE_OPERAND (exp, 0)) * 7 + 2;
3211 default:
3212 /* A language specific constant. Just hash the code. */
3213 return code;
3216 /* Compute hashing function. */
3217 hi = len;
3218 for (i = 0; i < len; i++)
3219 hi = ((hi * 613) + (unsigned) (p[i]));
3221 return hi;
3224 /* Wrapper of compare_constant, for the htab interface. */
3225 bool
3226 tree_descriptor_hasher::equal (constant_descriptor_tree *c1,
3227 constant_descriptor_tree *c2)
3229 if (c1->hash != c2->hash)
3230 return 0;
3231 return compare_constant (c1->value, c2->value);
3234 /* Compare t1 and t2, and return 1 only if they are known to result in
3235 the same bit pattern on output. */
3237 static int
3238 compare_constant (const tree t1, const tree t2)
3240 enum tree_code typecode;
3242 if (t1 == NULL_TREE)
3243 return t2 == NULL_TREE;
3244 if (t2 == NULL_TREE)
3245 return 0;
3247 if (TREE_CODE (t1) != TREE_CODE (t2))
3248 return 0;
3250 switch (TREE_CODE (t1))
3252 case INTEGER_CST:
3253 /* Integer constants are the same only if the same width of type. */
3254 if (TYPE_PRECISION (TREE_TYPE (t1)) != TYPE_PRECISION (TREE_TYPE (t2)))
3255 return 0;
3256 if (TYPE_MODE (TREE_TYPE (t1)) != TYPE_MODE (TREE_TYPE (t2)))
3257 return 0;
3258 return tree_int_cst_equal (t1, t2);
3260 case REAL_CST:
3261 /* Real constants are the same only if the same width of type. In
3262 addition to the same width, we need to check whether the modes are the
3263 same. There might be two floating point modes that are the same size
3264 but have different representations, such as the PowerPC that has 2
3265 different 128-bit floating point types (IBM extended double and IEEE
3266 128-bit floating point). */
3267 if (TYPE_PRECISION (TREE_TYPE (t1)) != TYPE_PRECISION (TREE_TYPE (t2)))
3268 return 0;
3269 if (TYPE_MODE (TREE_TYPE (t1)) != TYPE_MODE (TREE_TYPE (t2)))
3270 return 0;
3271 return real_identical (&TREE_REAL_CST (t1), &TREE_REAL_CST (t2));
3273 case FIXED_CST:
3274 /* Fixed constants are the same only if the same width of type. */
3275 if (TYPE_PRECISION (TREE_TYPE (t1)) != TYPE_PRECISION (TREE_TYPE (t2)))
3276 return 0;
3278 return FIXED_VALUES_IDENTICAL (TREE_FIXED_CST (t1), TREE_FIXED_CST (t2));
3280 case STRING_CST:
3281 if (TYPE_MODE (TREE_TYPE (t1)) != TYPE_MODE (TREE_TYPE (t2))
3282 || int_size_in_bytes (TREE_TYPE (t1))
3283 != int_size_in_bytes (TREE_TYPE (t2)))
3284 return 0;
3286 return (TREE_STRING_LENGTH (t1) == TREE_STRING_LENGTH (t2)
3287 && ! memcmp (TREE_STRING_POINTER (t1), TREE_STRING_POINTER (t2),
3288 TREE_STRING_LENGTH (t1)));
3290 case COMPLEX_CST:
3291 return (compare_constant (TREE_REALPART (t1), TREE_REALPART (t2))
3292 && compare_constant (TREE_IMAGPART (t1), TREE_IMAGPART (t2)));
3294 case VECTOR_CST:
3296 if (VECTOR_CST_NPATTERNS (t1)
3297 != VECTOR_CST_NPATTERNS (t2))
3298 return 0;
3300 if (VECTOR_CST_NELTS_PER_PATTERN (t1)
3301 != VECTOR_CST_NELTS_PER_PATTERN (t2))
3302 return 0;
3304 unsigned int count = vector_cst_encoded_nelts (t1);
3305 for (unsigned int i = 0; i < count; ++i)
3306 if (!compare_constant (VECTOR_CST_ENCODED_ELT (t1, i),
3307 VECTOR_CST_ENCODED_ELT (t2, i)))
3308 return 0;
3310 return 1;
3313 case CONSTRUCTOR:
3315 vec<constructor_elt, va_gc> *v1, *v2;
3316 unsigned HOST_WIDE_INT idx;
3318 typecode = TREE_CODE (TREE_TYPE (t1));
3319 if (typecode != TREE_CODE (TREE_TYPE (t2)))
3320 return 0;
3322 if (typecode == ARRAY_TYPE)
3324 HOST_WIDE_INT size_1 = int_size_in_bytes (TREE_TYPE (t1));
3325 /* For arrays, check that mode, size and storage order match. */
3326 if (TYPE_MODE (TREE_TYPE (t1)) != TYPE_MODE (TREE_TYPE (t2))
3327 || size_1 == -1
3328 || size_1 != int_size_in_bytes (TREE_TYPE (t2))
3329 || TYPE_REVERSE_STORAGE_ORDER (TREE_TYPE (t1))
3330 != TYPE_REVERSE_STORAGE_ORDER (TREE_TYPE (t2)))
3331 return 0;
3333 else
3335 /* For record and union constructors, require exact type
3336 equality. */
3337 if (TREE_TYPE (t1) != TREE_TYPE (t2))
3338 return 0;
3341 v1 = CONSTRUCTOR_ELTS (t1);
3342 v2 = CONSTRUCTOR_ELTS (t2);
3343 if (vec_safe_length (v1) != vec_safe_length (v2))
3344 return 0;
3346 for (idx = 0; idx < vec_safe_length (v1); ++idx)
3348 constructor_elt *c1 = &(*v1)[idx];
3349 constructor_elt *c2 = &(*v2)[idx];
3351 /* Check that each value is the same... */
3352 if (!compare_constant (c1->value, c2->value))
3353 return 0;
3354 /* ... and that they apply to the same fields! */
3355 if (typecode == ARRAY_TYPE)
3357 if (!compare_constant (c1->index, c2->index))
3358 return 0;
3360 else
3362 if (c1->index != c2->index)
3363 return 0;
3367 return 1;
3370 case ADDR_EXPR:
3371 case FDESC_EXPR:
3373 class addr_const value1, value2;
3374 enum rtx_code code;
3375 int ret;
3377 decode_addr_const (t1, &value1);
3378 decode_addr_const (t2, &value2);
3380 if (maybe_ne (value1.offset, value2.offset))
3381 return 0;
3383 code = GET_CODE (value1.base);
3384 if (code != GET_CODE (value2.base))
3385 return 0;
3387 switch (code)
3389 case SYMBOL_REF:
3390 ret = (strcmp (XSTR (value1.base, 0), XSTR (value2.base, 0)) == 0);
3391 break;
3393 case LABEL_REF:
3394 ret = (CODE_LABEL_NUMBER (label_ref_label (value1.base))
3395 == CODE_LABEL_NUMBER (label_ref_label (value2.base)));
3396 break;
3398 default:
3399 gcc_unreachable ();
3401 return ret;
3404 case PLUS_EXPR:
3405 case POINTER_PLUS_EXPR:
3406 case MINUS_EXPR:
3407 case RANGE_EXPR:
3408 return (compare_constant (TREE_OPERAND (t1, 0), TREE_OPERAND (t2, 0))
3409 && compare_constant (TREE_OPERAND (t1, 1), TREE_OPERAND (t2, 1)));
3411 CASE_CONVERT:
3412 case VIEW_CONVERT_EXPR:
3413 return compare_constant (TREE_OPERAND (t1, 0), TREE_OPERAND (t2, 0));
3415 default:
3416 return 0;
3419 gcc_unreachable ();
3422 /* Return the section into which constant EXP should be placed. */
3424 static section *
3425 get_constant_section (tree exp, unsigned int align)
3427 return targetm.asm_out.select_section (exp,
3428 compute_reloc_for_constant (exp),
3429 align);
3432 /* Return the size of constant EXP in bytes. */
3434 static HOST_WIDE_INT
3435 get_constant_size (tree exp)
3437 HOST_WIDE_INT size;
3439 size = int_size_in_bytes (TREE_TYPE (exp));
3440 gcc_checking_assert (size >= 0);
3441 gcc_checking_assert (TREE_CODE (exp) != STRING_CST
3442 || size >= TREE_STRING_LENGTH (exp));
3443 return size;
3446 /* Subroutine of output_constant_def:
3447 No constant equal to EXP is known to have been output.
3448 Make a constant descriptor to enter EXP in the hash table.
3449 Assign the label number and construct RTL to refer to the
3450 constant's location in memory.
3451 Caller is responsible for updating the hash table. */
3453 static struct constant_descriptor_tree *
3454 build_constant_desc (tree exp)
3456 struct constant_descriptor_tree *desc;
3457 rtx symbol, rtl;
3458 char label[256];
3459 int labelno;
3460 tree decl;
3462 desc = ggc_alloc<constant_descriptor_tree> ();
3463 desc->value = exp;
3465 /* Create a string containing the label name, in LABEL. */
3466 labelno = const_labelno++;
3467 ASM_GENERATE_INTERNAL_LABEL (label, "LC", labelno);
3469 /* Construct the VAR_DECL associated with the constant. */
3470 decl = build_decl (UNKNOWN_LOCATION, VAR_DECL, get_identifier (label),
3471 TREE_TYPE (exp));
3472 DECL_ARTIFICIAL (decl) = 1;
3473 DECL_IGNORED_P (decl) = 1;
3474 TREE_READONLY (decl) = 1;
3475 TREE_STATIC (decl) = 1;
3476 TREE_ADDRESSABLE (decl) = 1;
3477 /* We don't set the RTL yet as this would cause varpool to assume that the
3478 variable is referenced. Moreover, it would just be dropped in LTO mode.
3479 Instead we set the flag that will be recognized in make_decl_rtl. */
3480 DECL_IN_CONSTANT_POOL (decl) = 1;
3481 DECL_INITIAL (decl) = desc->value;
3482 /* ??? targetm.constant_alignment hasn't been updated for vector types on
3483 most architectures so use DATA_ALIGNMENT as well, except for strings. */
3484 if (TREE_CODE (exp) == STRING_CST)
3485 SET_DECL_ALIGN (decl, targetm.constant_alignment (exp, DECL_ALIGN (decl)));
3486 else
3488 align_variable (decl, 0);
3489 if (DECL_ALIGN (decl) < GET_MODE_ALIGNMENT (DECL_MODE (decl))
3490 && ((optab_handler (movmisalign_optab, DECL_MODE (decl))
3491 != CODE_FOR_nothing)
3492 || targetm.slow_unaligned_access (DECL_MODE (decl),
3493 DECL_ALIGN (decl))))
3494 SET_DECL_ALIGN (decl, GET_MODE_ALIGNMENT (DECL_MODE (decl)));
3497 /* Now construct the SYMBOL_REF and the MEM. */
3498 if (use_object_blocks_p ())
3500 int align = (TREE_CODE (decl) == CONST_DECL
3501 || (VAR_P (decl) && DECL_IN_CONSTANT_POOL (decl))
3502 ? DECL_ALIGN (decl)
3503 : symtab_node::get (decl)->definition_alignment ());
3504 section *sect = get_constant_section (exp, align);
3505 symbol = create_block_symbol (ggc_strdup (label),
3506 get_block_for_section (sect), -1);
3508 else
3509 symbol = gen_rtx_SYMBOL_REF (Pmode, ggc_strdup (label));
3510 SYMBOL_REF_FLAGS (symbol) |= SYMBOL_FLAG_LOCAL;
3511 SET_SYMBOL_REF_DECL (symbol, decl);
3512 TREE_CONSTANT_POOL_ADDRESS_P (symbol) = 1;
3514 rtl = gen_const_mem (TYPE_MODE (TREE_TYPE (exp)), symbol);
3515 set_mem_alias_set (rtl, 0);
3517 /* Putting EXP into the literal pool might have imposed a different
3518 alignment which should be visible in the RTX as well. */
3519 set_mem_align (rtl, DECL_ALIGN (decl));
3521 /* We cannot share RTX'es in pool entries.
3522 Mark this piece of RTL as required for unsharing. */
3523 RTX_FLAG (rtl, used) = 1;
3525 /* Set flags or add text to the name to record information, such as
3526 that it is a local symbol. If the name is changed, the macro
3527 ASM_OUTPUT_LABELREF will have to know how to strip this
3528 information. This call might invalidate our local variable
3529 SYMBOL; we can't use it afterward. */
3530 targetm.encode_section_info (exp, rtl, true);
3532 desc->rtl = rtl;
3534 return desc;
3537 /* Subroutine of output_constant_def and tree_output_constant_def:
3538 Add a constant to the hash table that tracks which constants
3539 already have labels. */
3541 static constant_descriptor_tree *
3542 add_constant_to_table (tree exp, int defer)
3544 /* The hash table methods may call output_constant_def for addressed
3545 constants, so handle them first. */
3546 output_addressed_constants (exp, defer);
3548 /* Sanity check to catch recursive insertion. */
3549 static bool inserting;
3550 gcc_assert (!inserting);
3551 inserting = true;
3553 /* Look up EXP in the table of constant descriptors. If we didn't
3554 find it, create a new one. */
3555 struct constant_descriptor_tree key;
3556 key.value = exp;
3557 key.hash = const_hash_1 (exp);
3558 constant_descriptor_tree **loc
3559 = const_desc_htab->find_slot_with_hash (&key, key.hash, INSERT);
3561 inserting = false;
3563 struct constant_descriptor_tree *desc = *loc;
3564 if (!desc)
3566 desc = build_constant_desc (exp);
3567 desc->hash = key.hash;
3568 *loc = desc;
3571 return desc;
3574 /* Return an rtx representing a reference to constant data in memory
3575 for the constant expression EXP.
3577 If assembler code for such a constant has already been output,
3578 return an rtx to refer to it.
3579 Otherwise, output such a constant in memory
3580 and generate an rtx for it.
3582 If DEFER is nonzero, this constant can be deferred and output only
3583 if referenced in the function after all optimizations.
3585 `const_desc_table' records which constants already have label strings. */
3588 output_constant_def (tree exp, int defer)
3590 struct constant_descriptor_tree *desc = add_constant_to_table (exp, defer);
3591 maybe_output_constant_def_contents (desc, defer);
3592 return desc->rtl;
3595 /* Subroutine of output_constant_def: Decide whether or not we need to
3596 output the constant DESC now, and if so, do it. */
3597 static void
3598 maybe_output_constant_def_contents (struct constant_descriptor_tree *desc,
3599 int defer)
3601 rtx symbol = XEXP (desc->rtl, 0);
3602 tree exp = desc->value;
3604 if (flag_syntax_only)
3605 return;
3607 if (TREE_ASM_WRITTEN (exp))
3608 /* Already output; don't do it again. */
3609 return;
3611 /* We can always defer constants as long as the context allows
3612 doing so. */
3613 if (defer)
3615 /* Increment n_deferred_constants if it exists. It needs to be at
3616 least as large as the number of constants actually referred to
3617 by the function. If it's too small we'll stop looking too early
3618 and fail to emit constants; if it's too large we'll only look
3619 through the entire function when we could have stopped earlier. */
3620 if (cfun)
3621 n_deferred_constants++;
3622 return;
3625 output_constant_def_contents (symbol);
3628 /* Subroutine of output_constant_def_contents. Output the definition
3629 of constant EXP, which is pointed to by label LABEL. ALIGN is the
3630 constant's alignment in bits. */
3632 static void
3633 assemble_constant_contents (tree exp, const char *label, unsigned int align,
3634 bool merge_strings)
3636 HOST_WIDE_INT size;
3638 size = get_constant_size (exp);
3640 /* Do any machine/system dependent processing of the constant. */
3641 targetm.asm_out.declare_constant_name (asm_out_file, label, exp, size);
3643 /* Output the value of EXP. */
3644 output_constant (exp, size, align, false, merge_strings);
3646 targetm.asm_out.decl_end ();
3649 /* We must output the constant data referred to by SYMBOL; do so. */
3651 static void
3652 output_constant_def_contents (rtx symbol)
3654 tree decl = SYMBOL_REF_DECL (symbol);
3655 tree exp = DECL_INITIAL (decl);
3656 bool asan_protected = false;
3658 /* Make sure any other constants whose addresses appear in EXP
3659 are assigned label numbers. */
3660 output_addressed_constants (exp, 0);
3662 /* We are no longer deferring this constant. */
3663 TREE_ASM_WRITTEN (decl) = TREE_ASM_WRITTEN (exp) = 1;
3665 if ((flag_sanitize & SANITIZE_ADDRESS)
3666 && TREE_CODE (exp) == STRING_CST
3667 && asan_protect_global (exp))
3669 asan_protected = true;
3670 SET_DECL_ALIGN (decl, MAX (DECL_ALIGN (decl),
3671 ASAN_RED_ZONE_SIZE * BITS_PER_UNIT));
3674 /* If the constant is part of an object block, make sure that the
3675 decl has been positioned within its block, but do not write out
3676 its definition yet. output_object_blocks will do that later. */
3677 if (SYMBOL_REF_HAS_BLOCK_INFO_P (symbol) && SYMBOL_REF_BLOCK (symbol))
3678 place_block_symbol (symbol);
3679 else
3681 int align = (TREE_CODE (decl) == CONST_DECL
3682 || (VAR_P (decl) && DECL_IN_CONSTANT_POOL (decl))
3683 ? DECL_ALIGN (decl)
3684 : symtab_node::get (decl)->definition_alignment ());
3685 section *sect = get_constant_section (exp, align);
3686 switch_to_section (sect);
3687 if (align > BITS_PER_UNIT)
3688 ASM_OUTPUT_ALIGN (asm_out_file, floor_log2 (align / BITS_PER_UNIT));
3689 assemble_constant_contents (exp, XSTR (symbol, 0), align,
3690 (sect->common.flags & SECTION_MERGE)
3691 && (sect->common.flags & SECTION_STRINGS));
3692 if (asan_protected)
3694 HOST_WIDE_INT size = get_constant_size (exp);
3695 assemble_zeros (asan_red_zone_size (size));
3700 /* Look up EXP in the table of constant descriptors. Return the rtl
3701 if it has been emitted, else null. */
3704 lookup_constant_def (tree exp)
3706 struct constant_descriptor_tree key;
3708 key.value = exp;
3709 key.hash = const_hash_1 (exp);
3710 constant_descriptor_tree *desc
3711 = const_desc_htab->find_with_hash (&key, key.hash);
3713 return (desc ? desc->rtl : NULL_RTX);
3716 /* Return a tree representing a reference to constant data in memory
3717 for the constant expression EXP.
3719 This is the counterpart of output_constant_def at the Tree level. */
3721 tree
3722 tree_output_constant_def (tree exp)
3724 struct constant_descriptor_tree *desc = add_constant_to_table (exp, 1);
3725 tree decl = SYMBOL_REF_DECL (XEXP (desc->rtl, 0));
3726 varpool_node::finalize_decl (decl);
3727 return decl;
3730 class GTY((chain_next ("%h.next"), for_user)) constant_descriptor_rtx {
3731 public:
3732 class constant_descriptor_rtx *next;
3733 rtx mem;
3734 rtx sym;
3735 rtx constant;
3736 HOST_WIDE_INT offset;
3737 hashval_t hash;
3738 fixed_size_mode mode;
3739 unsigned int align;
3740 int labelno;
3741 int mark;
3744 struct const_rtx_desc_hasher : ggc_ptr_hash<constant_descriptor_rtx>
3746 static hashval_t hash (constant_descriptor_rtx *);
3747 static bool equal (constant_descriptor_rtx *, constant_descriptor_rtx *);
3750 /* Used in the hash tables to avoid outputting the same constant
3751 twice. Unlike 'struct constant_descriptor_tree', RTX constants
3752 are output once per function, not once per file. */
3753 /* ??? Only a few targets need per-function constant pools. Most
3754 can use one per-file pool. Should add a targetm bit to tell the
3755 difference. */
3757 struct GTY(()) rtx_constant_pool {
3758 /* Pointers to first and last constant in pool, as ordered by offset. */
3759 class constant_descriptor_rtx *first;
3760 class constant_descriptor_rtx *last;
3762 /* Hash facility for making memory-constants from constant rtl-expressions.
3763 It is used on RISC machines where immediate integer arguments and
3764 constant addresses are restricted so that such constants must be stored
3765 in memory. */
3766 hash_table<const_rtx_desc_hasher> *const_rtx_htab;
3768 /* Current offset in constant pool (does not include any
3769 machine-specific header). */
3770 HOST_WIDE_INT offset;
3773 /* Hash and compare functions for const_rtx_htab. */
3775 hashval_t
3776 const_rtx_desc_hasher::hash (constant_descriptor_rtx *desc)
3778 return desc->hash;
3781 bool
3782 const_rtx_desc_hasher::equal (constant_descriptor_rtx *x,
3783 constant_descriptor_rtx *y)
3785 if (x->mode != y->mode)
3786 return 0;
3787 return rtx_equal_p (x->constant, y->constant);
3790 /* Hash one component of a constant. */
3792 static hashval_t
3793 const_rtx_hash_1 (const_rtx x)
3795 unsigned HOST_WIDE_INT hwi;
3796 machine_mode mode;
3797 enum rtx_code code;
3798 hashval_t h;
3799 int i;
3801 code = GET_CODE (x);
3802 mode = GET_MODE (x);
3803 h = (hashval_t) code * 1048573 + mode;
3805 switch (code)
3807 case CONST_INT:
3808 hwi = INTVAL (x);
3810 fold_hwi:
3812 int shift = sizeof (hashval_t) * CHAR_BIT;
3813 const int n = sizeof (HOST_WIDE_INT) / sizeof (hashval_t);
3815 h ^= (hashval_t) hwi;
3816 for (i = 1; i < n; ++i)
3818 hwi >>= shift;
3819 h ^= (hashval_t) hwi;
3822 break;
3824 case CONST_WIDE_INT:
3825 hwi = 0;
3827 for (i = 0; i < CONST_WIDE_INT_NUNITS (x); i++)
3828 hwi ^= CONST_WIDE_INT_ELT (x, i);
3829 goto fold_hwi;
3832 case CONST_DOUBLE:
3833 if (TARGET_SUPPORTS_WIDE_INT == 0 && mode == VOIDmode)
3835 hwi = CONST_DOUBLE_LOW (x) ^ CONST_DOUBLE_HIGH (x);
3836 goto fold_hwi;
3838 else
3839 h ^= real_hash (CONST_DOUBLE_REAL_VALUE (x));
3840 break;
3842 case CONST_FIXED:
3843 h ^= fixed_hash (CONST_FIXED_VALUE (x));
3844 break;
3846 case SYMBOL_REF:
3847 h ^= htab_hash_string (XSTR (x, 0));
3848 break;
3850 case LABEL_REF:
3851 h = h * 251 + CODE_LABEL_NUMBER (label_ref_label (x));
3852 break;
3854 case UNSPEC:
3855 case UNSPEC_VOLATILE:
3856 h = h * 251 + XINT (x, 1);
3857 break;
3859 default:
3860 break;
3863 return h;
3866 /* Compute a hash value for X, which should be a constant. */
3868 static hashval_t
3869 const_rtx_hash (rtx x)
3871 hashval_t h = 0;
3872 subrtx_iterator::array_type array;
3873 FOR_EACH_SUBRTX (iter, array, x, ALL)
3874 h = h * 509 + const_rtx_hash_1 (*iter);
3875 return h;
3879 /* Create and return a new rtx constant pool. */
3881 static struct rtx_constant_pool *
3882 create_constant_pool (void)
3884 struct rtx_constant_pool *pool;
3886 pool = ggc_alloc<rtx_constant_pool> ();
3887 pool->const_rtx_htab = hash_table<const_rtx_desc_hasher>::create_ggc (31);
3888 pool->first = NULL;
3889 pool->last = NULL;
3890 pool->offset = 0;
3891 return pool;
3894 /* Initialize constant pool hashing for a new function. */
3896 void
3897 init_varasm_status (void)
3899 crtl->varasm.pool = create_constant_pool ();
3900 crtl->varasm.deferred_constants = 0;
3903 /* Given a MINUS expression, simplify it if both sides
3904 include the same symbol. */
3907 simplify_subtraction (rtx x)
3909 rtx r = simplify_rtx (x);
3910 return r ? r : x;
3913 /* Given a constant rtx X, make (or find) a memory constant for its value
3914 and return a MEM rtx to refer to it in memory. IN_MODE is the mode
3915 of X. */
3918 force_const_mem (machine_mode in_mode, rtx x)
3920 class constant_descriptor_rtx *desc, tmp;
3921 struct rtx_constant_pool *pool;
3922 char label[256];
3923 rtx def, symbol;
3924 hashval_t hash;
3925 unsigned int align;
3926 constant_descriptor_rtx **slot;
3927 fixed_size_mode mode;
3929 /* We can't force variable-sized objects to memory. */
3930 if (!is_a <fixed_size_mode> (in_mode, &mode))
3931 return NULL_RTX;
3933 /* If we're not allowed to drop X into the constant pool, don't. */
3934 if (targetm.cannot_force_const_mem (mode, x))
3935 return NULL_RTX;
3937 /* Record that this function has used a constant pool entry. */
3938 crtl->uses_const_pool = 1;
3940 /* Decide which pool to use. */
3941 pool = (targetm.use_blocks_for_constant_p (mode, x)
3942 ? shared_constant_pool
3943 : crtl->varasm.pool);
3945 /* Lookup the value in the hashtable. */
3946 tmp.constant = x;
3947 tmp.mode = mode;
3948 hash = const_rtx_hash (x);
3949 slot = pool->const_rtx_htab->find_slot_with_hash (&tmp, hash, INSERT);
3950 desc = *slot;
3952 /* If the constant was already present, return its memory. */
3953 if (desc)
3954 return copy_rtx (desc->mem);
3956 /* Otherwise, create a new descriptor. */
3957 desc = ggc_alloc<constant_descriptor_rtx> ();
3958 *slot = desc;
3960 /* Align the location counter as required by EXP's data type. */
3961 machine_mode align_mode = (mode == VOIDmode ? word_mode : mode);
3962 align = targetm.static_rtx_alignment (align_mode);
3964 pool->offset += (align / BITS_PER_UNIT) - 1;
3965 pool->offset &= ~ ((align / BITS_PER_UNIT) - 1);
3967 desc->next = NULL;
3968 desc->constant = copy_rtx (tmp.constant);
3969 desc->offset = pool->offset;
3970 desc->hash = hash;
3971 desc->mode = mode;
3972 desc->align = align;
3973 desc->labelno = const_labelno;
3974 desc->mark = 0;
3976 pool->offset += GET_MODE_SIZE (mode);
3977 if (pool->last)
3978 pool->last->next = desc;
3979 else
3980 pool->first = pool->last = desc;
3981 pool->last = desc;
3983 /* Create a string containing the label name, in LABEL. */
3984 ASM_GENERATE_INTERNAL_LABEL (label, "LC", const_labelno);
3985 ++const_labelno;
3987 /* Construct the SYMBOL_REF. Make sure to mark it as belonging to
3988 the constants pool. */
3989 if (use_object_blocks_p () && targetm.use_blocks_for_constant_p (mode, x))
3991 section *sect = targetm.asm_out.select_rtx_section (mode, x, align);
3992 symbol = create_block_symbol (ggc_strdup (label),
3993 get_block_for_section (sect), -1);
3995 else
3996 symbol = gen_rtx_SYMBOL_REF (Pmode, ggc_strdup (label));
3997 desc->sym = symbol;
3998 SYMBOL_REF_FLAGS (symbol) |= SYMBOL_FLAG_LOCAL;
3999 CONSTANT_POOL_ADDRESS_P (symbol) = 1;
4000 SET_SYMBOL_REF_CONSTANT (symbol, desc);
4002 /* Construct the MEM. */
4003 desc->mem = def = gen_const_mem (mode, symbol);
4004 set_mem_align (def, align);
4006 /* If we're dropping a label to the constant pool, make sure we
4007 don't delete it. */
4008 if (GET_CODE (x) == LABEL_REF)
4009 LABEL_PRESERVE_P (XEXP (x, 0)) = 1;
4011 return copy_rtx (def);
4014 /* Given a constant pool SYMBOL_REF, return the corresponding constant. */
4017 get_pool_constant (const_rtx addr)
4019 return SYMBOL_REF_CONSTANT (addr)->constant;
4022 /* Given a constant pool SYMBOL_REF, return the corresponding constant
4023 and whether it has been output or not. */
4026 get_pool_constant_mark (rtx addr, bool *pmarked)
4028 class constant_descriptor_rtx *desc;
4030 desc = SYMBOL_REF_CONSTANT (addr);
4031 *pmarked = (desc->mark != 0);
4032 return desc->constant;
4035 /* Similar, return the mode. */
4037 fixed_size_mode
4038 get_pool_mode (const_rtx addr)
4040 return SYMBOL_REF_CONSTANT (addr)->mode;
4043 /* Return TRUE if and only if the constant pool has no entries. Note
4044 that even entries we might end up choosing not to emit are counted
4045 here, so there is the potential for missed optimizations. */
4047 bool
4048 constant_pool_empty_p (void)
4050 return crtl->varasm.pool->first == NULL;
4053 /* Worker function for output_constant_pool_1. Emit assembly for X
4054 in MODE with known alignment ALIGN. */
4056 static void
4057 output_constant_pool_2 (fixed_size_mode mode, rtx x, unsigned int align)
4059 switch (GET_MODE_CLASS (mode))
4061 case MODE_FLOAT:
4062 case MODE_DECIMAL_FLOAT:
4064 gcc_assert (CONST_DOUBLE_AS_FLOAT_P (x));
4065 assemble_real (*CONST_DOUBLE_REAL_VALUE (x),
4066 as_a <scalar_float_mode> (mode), align, false);
4067 break;
4070 case MODE_INT:
4071 case MODE_PARTIAL_INT:
4072 case MODE_FRACT:
4073 case MODE_UFRACT:
4074 case MODE_ACCUM:
4075 case MODE_UACCUM:
4076 assemble_integer (x, GET_MODE_SIZE (mode), align, 1);
4077 break;
4079 case MODE_VECTOR_BOOL:
4081 gcc_assert (GET_CODE (x) == CONST_VECTOR);
4083 /* Pick the smallest integer mode that contains at least one
4084 whole element. Often this is byte_mode and contains more
4085 than one element. */
4086 unsigned int nelts = GET_MODE_NUNITS (mode);
4087 unsigned int elt_bits = GET_MODE_BITSIZE (mode) / nelts;
4088 unsigned int int_bits = MAX (elt_bits, BITS_PER_UNIT);
4089 scalar_int_mode int_mode = int_mode_for_size (int_bits, 0).require ();
4091 /* Build the constant up one integer at a time. */
4092 unsigned int elts_per_int = int_bits / elt_bits;
4093 for (unsigned int i = 0; i < nelts; i += elts_per_int)
4095 unsigned HOST_WIDE_INT value = 0;
4096 unsigned int limit = MIN (nelts - i, elts_per_int);
4097 for (unsigned int j = 0; j < limit; ++j)
4098 if (INTVAL (CONST_VECTOR_ELT (x, i + j)) != 0)
4099 value |= 1 << (j * elt_bits);
4100 output_constant_pool_2 (int_mode, gen_int_mode (value, int_mode),
4101 i != 0 ? MIN (align, int_bits) : align);
4103 break;
4105 case MODE_VECTOR_FLOAT:
4106 case MODE_VECTOR_INT:
4107 case MODE_VECTOR_FRACT:
4108 case MODE_VECTOR_UFRACT:
4109 case MODE_VECTOR_ACCUM:
4110 case MODE_VECTOR_UACCUM:
4112 int i, units;
4113 scalar_mode submode = GET_MODE_INNER (mode);
4114 unsigned int subalign = MIN (align, GET_MODE_BITSIZE (submode));
4116 gcc_assert (GET_CODE (x) == CONST_VECTOR);
4117 units = GET_MODE_NUNITS (mode);
4119 for (i = 0; i < units; i++)
4121 rtx elt = CONST_VECTOR_ELT (x, i);
4122 output_constant_pool_2 (submode, elt, i ? subalign : align);
4125 break;
4127 default:
4128 gcc_unreachable ();
4132 /* Worker function for output_constant_pool. Emit constant DESC,
4133 giving it ALIGN bits of alignment. */
4135 static void
4136 output_constant_pool_1 (class constant_descriptor_rtx *desc,
4137 unsigned int align)
4139 rtx x, tmp;
4141 x = desc->constant;
4143 /* See if X is a LABEL_REF (or a CONST referring to a LABEL_REF)
4144 whose CODE_LABEL has been deleted. This can occur if a jump table
4145 is eliminated by optimization. If so, write a constant of zero
4146 instead. Note that this can also happen by turning the
4147 CODE_LABEL into a NOTE. */
4148 /* ??? This seems completely and utterly wrong. Certainly it's
4149 not true for NOTE_INSN_DELETED_LABEL, but I disbelieve proper
4150 functioning even with rtx_insn::deleted and friends. */
4152 tmp = x;
4153 switch (GET_CODE (tmp))
4155 case CONST:
4156 if (GET_CODE (XEXP (tmp, 0)) != PLUS
4157 || GET_CODE (XEXP (XEXP (tmp, 0), 0)) != LABEL_REF)
4158 break;
4159 tmp = XEXP (XEXP (tmp, 0), 0);
4160 /* FALLTHRU */
4162 case LABEL_REF:
4164 rtx_insn *insn = label_ref_label (tmp);
4165 gcc_assert (!insn->deleted ());
4166 gcc_assert (!NOTE_P (insn)
4167 || NOTE_KIND (insn) != NOTE_INSN_DELETED);
4168 break;
4171 default:
4172 break;
4175 #ifdef ASM_OUTPUT_SPECIAL_POOL_ENTRY
4176 ASM_OUTPUT_SPECIAL_POOL_ENTRY (asm_out_file, x, desc->mode,
4177 align, desc->labelno, done);
4178 #endif
4180 assemble_align (align);
4182 /* Output the label. */
4183 targetm.asm_out.internal_label (asm_out_file, "LC", desc->labelno);
4185 /* Output the data.
4186 Pass actual alignment value while emitting string constant to asm code
4187 as function 'output_constant_pool_1' explicitly passes the alignment as 1
4188 assuming that the data is already aligned which prevents the generation
4189 of fix-up table entries. */
4190 output_constant_pool_2 (desc->mode, x, desc->align);
4192 /* Make sure all constants in SECTION_MERGE and not SECTION_STRINGS
4193 sections have proper size. */
4194 if (align > GET_MODE_BITSIZE (desc->mode)
4195 && in_section
4196 && (in_section->common.flags & SECTION_MERGE))
4197 assemble_align (align);
4199 #ifdef ASM_OUTPUT_SPECIAL_POOL_ENTRY
4200 done:
4201 #endif
4202 return;
4205 /* Recompute the offsets of entries in POOL, and the overall size of
4206 POOL. Do this after calling mark_constant_pool to ensure that we
4207 are computing the offset values for the pool which we will actually
4208 emit. */
4210 static void
4211 recompute_pool_offsets (struct rtx_constant_pool *pool)
4213 class constant_descriptor_rtx *desc;
4214 pool->offset = 0;
4216 for (desc = pool->first; desc ; desc = desc->next)
4217 if (desc->mark)
4219 /* Recalculate offset. */
4220 unsigned int align = desc->align;
4221 pool->offset += (align / BITS_PER_UNIT) - 1;
4222 pool->offset &= ~ ((align / BITS_PER_UNIT) - 1);
4223 desc->offset = pool->offset;
4224 pool->offset += GET_MODE_SIZE (desc->mode);
4228 /* Mark all constants that are referenced by SYMBOL_REFs in X.
4229 Emit referenced deferred strings. */
4231 static void
4232 mark_constants_in_pattern (rtx insn)
4234 subrtx_iterator::array_type array;
4235 FOR_EACH_SUBRTX (iter, array, PATTERN (insn), ALL)
4237 const_rtx x = *iter;
4238 if (GET_CODE (x) == SYMBOL_REF)
4240 if (CONSTANT_POOL_ADDRESS_P (x))
4242 class constant_descriptor_rtx *desc = SYMBOL_REF_CONSTANT (x);
4243 if (desc->mark == 0)
4245 desc->mark = 1;
4246 iter.substitute (desc->constant);
4249 else if (TREE_CONSTANT_POOL_ADDRESS_P (x))
4251 tree decl = SYMBOL_REF_DECL (x);
4252 if (!TREE_ASM_WRITTEN (DECL_INITIAL (decl)))
4254 n_deferred_constants--;
4255 output_constant_def_contents (CONST_CAST_RTX (x));
4262 /* Look through appropriate parts of INSN, marking all entries in the
4263 constant pool which are actually being used. Entries that are only
4264 referenced by other constants are also marked as used. Emit
4265 deferred strings that are used. */
4267 static void
4268 mark_constants (rtx_insn *insn)
4270 if (!INSN_P (insn))
4271 return;
4273 /* Insns may appear inside a SEQUENCE. Only check the patterns of
4274 insns, not any notes that may be attached. We don't want to mark
4275 a constant just because it happens to appear in a REG_EQUIV note. */
4276 if (rtx_sequence *seq = dyn_cast <rtx_sequence *> (PATTERN (insn)))
4278 int i, n = seq->len ();
4279 for (i = 0; i < n; ++i)
4281 rtx subinsn = seq->element (i);
4282 if (INSN_P (subinsn))
4283 mark_constants_in_pattern (subinsn);
4286 else
4287 mark_constants_in_pattern (insn);
4290 /* Look through the instructions for this function, and mark all the
4291 entries in POOL which are actually being used. Emit deferred constants
4292 which have indeed been used. */
4294 static void
4295 mark_constant_pool (void)
4297 rtx_insn *insn;
4299 if (!crtl->uses_const_pool && n_deferred_constants == 0)
4300 return;
4302 for (insn = get_insns (); insn; insn = NEXT_INSN (insn))
4303 mark_constants (insn);
4306 /* Write all the constants in POOL. */
4308 static void
4309 output_constant_pool_contents (struct rtx_constant_pool *pool)
4311 class constant_descriptor_rtx *desc;
4313 for (desc = pool->first; desc ; desc = desc->next)
4314 if (desc->mark < 0)
4316 #ifdef ASM_OUTPUT_DEF
4317 const char *name = XSTR (desc->sym, 0);
4318 char label[256];
4319 char buffer[256 + 32];
4320 const char *p;
4322 ASM_GENERATE_INTERNAL_LABEL (label, "LC", ~desc->mark);
4323 p = label;
4324 if (desc->offset)
4326 sprintf (buffer, "%s+%ld", p, (long) (desc->offset));
4327 p = buffer;
4329 ASM_OUTPUT_DEF (asm_out_file, name, p);
4330 #else
4331 gcc_unreachable ();
4332 #endif
4334 else if (desc->mark)
4336 /* If the constant is part of an object_block, make sure that
4337 the constant has been positioned within its block, but do not
4338 write out its definition yet. output_object_blocks will do
4339 that later. */
4340 if (SYMBOL_REF_HAS_BLOCK_INFO_P (desc->sym)
4341 && SYMBOL_REF_BLOCK (desc->sym))
4342 place_block_symbol (desc->sym);
4343 else
4345 switch_to_section (targetm.asm_out.select_rtx_section
4346 (desc->mode, desc->constant, desc->align));
4347 output_constant_pool_1 (desc, desc->align);
4352 struct constant_descriptor_rtx_data {
4353 constant_descriptor_rtx *desc;
4354 target_unit *bytes;
4355 unsigned short size;
4356 unsigned short offset;
4357 unsigned int hash;
4360 /* qsort callback to sort constant_descriptor_rtx_data * vector by
4361 decreasing size. */
4363 static int
4364 constant_descriptor_rtx_data_cmp (const void *p1, const void *p2)
4366 constant_descriptor_rtx_data *const data1
4367 = *(constant_descriptor_rtx_data * const *) p1;
4368 constant_descriptor_rtx_data *const data2
4369 = *(constant_descriptor_rtx_data * const *) p2;
4370 if (data1->size > data2->size)
4371 return -1;
4372 if (data1->size < data2->size)
4373 return 1;
4374 if (data1->hash < data2->hash)
4375 return -1;
4376 gcc_assert (data1->hash > data2->hash);
4377 return 1;
4380 struct const_rtx_data_hasher : nofree_ptr_hash<constant_descriptor_rtx_data>
4382 static hashval_t hash (constant_descriptor_rtx_data *);
4383 static bool equal (constant_descriptor_rtx_data *,
4384 constant_descriptor_rtx_data *);
4387 /* Hash and compare functions for const_rtx_data_htab. */
4389 hashval_t
4390 const_rtx_data_hasher::hash (constant_descriptor_rtx_data *data)
4392 return data->hash;
4395 bool
4396 const_rtx_data_hasher::equal (constant_descriptor_rtx_data *x,
4397 constant_descriptor_rtx_data *y)
4399 if (x->hash != y->hash || x->size != y->size)
4400 return 0;
4401 unsigned int align1 = x->desc->align;
4402 unsigned int align2 = y->desc->align;
4403 unsigned int offset1 = (x->offset * BITS_PER_UNIT) & (align1 - 1);
4404 unsigned int offset2 = (y->offset * BITS_PER_UNIT) & (align2 - 1);
4405 if (offset1)
4406 align1 = least_bit_hwi (offset1);
4407 if (offset2)
4408 align2 = least_bit_hwi (offset2);
4409 if (align2 > align1)
4410 return 0;
4411 if (memcmp (x->bytes, y->bytes, x->size * sizeof (target_unit)) != 0)
4412 return 0;
4413 return 1;
4416 /* Attempt to optimize constant pool POOL. If it contains both CONST_VECTOR
4417 constants and scalar constants with the values of CONST_VECTOR elements,
4418 try to alias the scalar constants with the CONST_VECTOR elements. */
4420 static void
4421 optimize_constant_pool (struct rtx_constant_pool *pool)
4423 auto_vec<target_unit, 128> buffer;
4424 auto_vec<constant_descriptor_rtx_data *, 128> vec;
4425 object_allocator<constant_descriptor_rtx_data>
4426 data_pool ("constant_descriptor_rtx_data_pool");
4427 int idx = 0;
4428 size_t size = 0;
4429 for (constant_descriptor_rtx *desc = pool->first; desc; desc = desc->next)
4430 if (desc->mark > 0
4431 && ! (SYMBOL_REF_HAS_BLOCK_INFO_P (desc->sym)
4432 && SYMBOL_REF_BLOCK (desc->sym)))
4434 buffer.truncate (0);
4435 buffer.reserve (GET_MODE_SIZE (desc->mode));
4436 if (native_encode_rtx (desc->mode, desc->constant, buffer, 0,
4437 GET_MODE_SIZE (desc->mode)))
4439 constant_descriptor_rtx_data *data = data_pool.allocate ();
4440 data->desc = desc;
4441 data->bytes = NULL;
4442 data->size = GET_MODE_SIZE (desc->mode);
4443 data->offset = 0;
4444 data->hash = idx++;
4445 size += data->size;
4446 vec.safe_push (data);
4449 if (idx)
4451 vec.qsort (constant_descriptor_rtx_data_cmp);
4452 unsigned min_size = vec.last ()->size;
4453 target_unit *bytes = XNEWVEC (target_unit, size);
4454 unsigned int i;
4455 constant_descriptor_rtx_data *data;
4456 hash_table<const_rtx_data_hasher> * htab
4457 = new hash_table<const_rtx_data_hasher> (31);
4458 size = 0;
4459 FOR_EACH_VEC_ELT (vec, i, data)
4461 buffer.truncate (0);
4462 native_encode_rtx (data->desc->mode, data->desc->constant,
4463 buffer, 0, data->size);
4464 memcpy (bytes + size, buffer.address (), data->size);
4465 data->bytes = bytes + size;
4466 data->hash = iterative_hash (data->bytes,
4467 data->size * sizeof (target_unit), 0);
4468 size += data->size;
4469 constant_descriptor_rtx_data **slot
4470 = htab->find_slot_with_hash (data, data->hash, INSERT);
4471 if (*slot)
4473 data->desc->mark = ~(*slot)->desc->labelno;
4474 data->desc->offset = (*slot)->offset;
4476 else
4478 unsigned int sz = 1 << floor_log2 (data->size);
4480 *slot = data;
4481 for (sz >>= 1; sz >= min_size; sz >>= 1)
4482 for (unsigned off = 0; off + sz <= data->size; off += sz)
4484 constant_descriptor_rtx_data tmp;
4485 tmp.desc = data->desc;
4486 tmp.bytes = data->bytes + off;
4487 tmp.size = sz;
4488 tmp.offset = off;
4489 tmp.hash = iterative_hash (tmp.bytes,
4490 sz * sizeof (target_unit), 0);
4491 slot = htab->find_slot_with_hash (&tmp, tmp.hash, INSERT);
4492 if (*slot == NULL)
4494 *slot = data_pool.allocate ();
4495 **slot = tmp;
4500 delete htab;
4501 XDELETE (bytes);
4503 data_pool.release ();
4506 /* Mark all constants that are used in the current function, then write
4507 out the function's private constant pool. */
4509 static void
4510 output_constant_pool (const char *fnname ATTRIBUTE_UNUSED,
4511 tree fndecl ATTRIBUTE_UNUSED)
4513 struct rtx_constant_pool *pool = crtl->varasm.pool;
4515 /* It is possible for gcc to call force_const_mem and then to later
4516 discard the instructions which refer to the constant. In such a
4517 case we do not need to output the constant. */
4518 mark_constant_pool ();
4520 /* Having marked the constant pool entries we'll actually emit, we
4521 now need to rebuild the offset information, which may have become
4522 stale. */
4523 recompute_pool_offsets (pool);
4525 #ifdef ASM_OUTPUT_POOL_PROLOGUE
4526 ASM_OUTPUT_POOL_PROLOGUE (asm_out_file, fnname, fndecl, pool->offset);
4527 #endif
4529 output_constant_pool_contents (pool);
4531 #ifdef ASM_OUTPUT_POOL_EPILOGUE
4532 ASM_OUTPUT_POOL_EPILOGUE (asm_out_file, fnname, fndecl, pool->offset);
4533 #endif
4536 /* Write the contents of the shared constant pool. */
4538 void
4539 output_shared_constant_pool (void)
4541 if (optimize
4542 && TARGET_SUPPORTS_ALIASES)
4543 optimize_constant_pool (shared_constant_pool);
4545 output_constant_pool_contents (shared_constant_pool);
4548 /* Determine what kind of relocations EXP may need. */
4551 compute_reloc_for_constant (tree exp)
4553 int reloc = 0, reloc2;
4554 tree tem;
4556 switch (TREE_CODE (exp))
4558 case ADDR_EXPR:
4559 case FDESC_EXPR:
4560 /* Go inside any operations that get_inner_reference can handle and see
4561 if what's inside is a constant: no need to do anything here for
4562 addresses of variables or functions. */
4563 for (tem = TREE_OPERAND (exp, 0); handled_component_p (tem);
4564 tem = TREE_OPERAND (tem, 0))
4567 if (TREE_CODE (tem) == MEM_REF
4568 && TREE_CODE (TREE_OPERAND (tem, 0)) == ADDR_EXPR)
4570 reloc = compute_reloc_for_constant (TREE_OPERAND (tem, 0));
4571 break;
4574 if (!targetm.binds_local_p (tem))
4575 reloc |= 2;
4576 else
4577 reloc |= 1;
4578 break;
4580 case PLUS_EXPR:
4581 case POINTER_PLUS_EXPR:
4582 reloc = compute_reloc_for_constant (TREE_OPERAND (exp, 0));
4583 reloc |= compute_reloc_for_constant (TREE_OPERAND (exp, 1));
4584 break;
4586 case MINUS_EXPR:
4587 reloc = compute_reloc_for_constant (TREE_OPERAND (exp, 0));
4588 reloc2 = compute_reloc_for_constant (TREE_OPERAND (exp, 1));
4589 /* The difference of two local labels is computable at link time. */
4590 if (reloc == 1 && reloc2 == 1)
4591 reloc = 0;
4592 else
4593 reloc |= reloc2;
4594 break;
4596 CASE_CONVERT:
4597 case VIEW_CONVERT_EXPR:
4598 reloc = compute_reloc_for_constant (TREE_OPERAND (exp, 0));
4599 break;
4601 case CONSTRUCTOR:
4603 unsigned HOST_WIDE_INT idx;
4604 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (exp), idx, tem)
4605 if (tem != 0)
4606 reloc |= compute_reloc_for_constant (tem);
4608 break;
4610 default:
4611 break;
4613 return reloc;
4616 /* Find all the constants whose addresses are referenced inside of EXP,
4617 and make sure assembler code with a label has been output for each one.
4618 Indicate whether an ADDR_EXPR has been encountered. */
4620 static void
4621 output_addressed_constants (tree exp, int defer)
4623 tree tem;
4625 switch (TREE_CODE (exp))
4627 case ADDR_EXPR:
4628 case FDESC_EXPR:
4629 /* Go inside any operations that get_inner_reference can handle and see
4630 if what's inside is a constant: no need to do anything here for
4631 addresses of variables or functions. */
4632 for (tem = TREE_OPERAND (exp, 0); handled_component_p (tem);
4633 tem = TREE_OPERAND (tem, 0))
4636 /* If we have an initialized CONST_DECL, retrieve the initializer. */
4637 if (TREE_CODE (tem) == CONST_DECL && DECL_INITIAL (tem))
4638 tem = DECL_INITIAL (tem);
4640 if (CONSTANT_CLASS_P (tem) || TREE_CODE (tem) == CONSTRUCTOR)
4641 output_constant_def (tem, defer);
4643 if (TREE_CODE (tem) == MEM_REF)
4644 output_addressed_constants (TREE_OPERAND (tem, 0), defer);
4645 break;
4647 case PLUS_EXPR:
4648 case POINTER_PLUS_EXPR:
4649 case MINUS_EXPR:
4650 output_addressed_constants (TREE_OPERAND (exp, 1), defer);
4651 gcc_fallthrough ();
4653 CASE_CONVERT:
4654 case VIEW_CONVERT_EXPR:
4655 output_addressed_constants (TREE_OPERAND (exp, 0), defer);
4656 break;
4658 case CONSTRUCTOR:
4660 unsigned HOST_WIDE_INT idx;
4661 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (exp), idx, tem)
4662 if (tem != 0)
4663 output_addressed_constants (tem, defer);
4665 break;
4667 default:
4668 break;
4672 /* Whether a constructor CTOR is a valid static constant initializer if all
4673 its elements are. This used to be internal to initializer_constant_valid_p
4674 and has been exposed to let other functions like categorize_ctor_elements
4675 evaluate the property while walking a constructor for other purposes. */
4677 bool
4678 constructor_static_from_elts_p (const_tree ctor)
4680 return (TREE_CONSTANT (ctor)
4681 && (TREE_CODE (TREE_TYPE (ctor)) == UNION_TYPE
4682 || TREE_CODE (TREE_TYPE (ctor)) == RECORD_TYPE
4683 || TREE_CODE (TREE_TYPE (ctor)) == ARRAY_TYPE));
4686 static tree initializer_constant_valid_p_1 (tree value, tree endtype,
4687 tree *cache);
4689 /* A subroutine of initializer_constant_valid_p. VALUE is a MINUS_EXPR,
4690 PLUS_EXPR or POINTER_PLUS_EXPR. This looks for cases of VALUE
4691 which are valid when ENDTYPE is an integer of any size; in
4692 particular, this does not accept a pointer minus a constant. This
4693 returns null_pointer_node if the VALUE is an absolute constant
4694 which can be used to initialize a static variable. Otherwise it
4695 returns NULL. */
4697 static tree
4698 narrowing_initializer_constant_valid_p (tree value, tree endtype, tree *cache)
4700 tree op0, op1;
4702 if (!INTEGRAL_TYPE_P (endtype))
4703 return NULL_TREE;
4705 op0 = TREE_OPERAND (value, 0);
4706 op1 = TREE_OPERAND (value, 1);
4708 /* Like STRIP_NOPS except allow the operand mode to widen. This
4709 works around a feature of fold that simplifies (int)(p1 - p2) to
4710 ((int)p1 - (int)p2) under the theory that the narrower operation
4711 is cheaper. */
4713 while (CONVERT_EXPR_P (op0)
4714 || TREE_CODE (op0) == NON_LVALUE_EXPR)
4716 tree inner = TREE_OPERAND (op0, 0);
4717 if (inner == error_mark_node
4718 || ! INTEGRAL_MODE_P (TYPE_MODE (TREE_TYPE (inner)))
4719 || (GET_MODE_SIZE (SCALAR_INT_TYPE_MODE (TREE_TYPE (op0)))
4720 > GET_MODE_SIZE (SCALAR_INT_TYPE_MODE (TREE_TYPE (inner)))))
4721 break;
4722 op0 = inner;
4725 while (CONVERT_EXPR_P (op1)
4726 || TREE_CODE (op1) == NON_LVALUE_EXPR)
4728 tree inner = TREE_OPERAND (op1, 0);
4729 if (inner == error_mark_node
4730 || ! INTEGRAL_MODE_P (TYPE_MODE (TREE_TYPE (inner)))
4731 || (GET_MODE_SIZE (SCALAR_INT_TYPE_MODE (TREE_TYPE (op1)))
4732 > GET_MODE_SIZE (SCALAR_INT_TYPE_MODE (TREE_TYPE (inner)))))
4733 break;
4734 op1 = inner;
4737 op0 = initializer_constant_valid_p_1 (op0, endtype, cache);
4738 if (!op0)
4739 return NULL_TREE;
4741 op1 = initializer_constant_valid_p_1 (op1, endtype,
4742 cache ? cache + 2 : NULL);
4743 /* Both initializers must be known. */
4744 if (op1)
4746 if (op0 == op1
4747 && (op0 == null_pointer_node
4748 || TREE_CODE (value) == MINUS_EXPR))
4749 return null_pointer_node;
4751 /* Support differences between labels. */
4752 if (TREE_CODE (op0) == LABEL_DECL
4753 && TREE_CODE (op1) == LABEL_DECL)
4754 return null_pointer_node;
4756 if (TREE_CODE (op0) == STRING_CST
4757 && TREE_CODE (op1) == STRING_CST
4758 && operand_equal_p (op0, op1, 1))
4759 return null_pointer_node;
4762 return NULL_TREE;
4765 /* Helper function of initializer_constant_valid_p.
4766 Return nonzero if VALUE is a valid constant-valued expression
4767 for use in initializing a static variable; one that can be an
4768 element of a "constant" initializer.
4770 Return null_pointer_node if the value is absolute;
4771 if it is relocatable, return the variable that determines the relocation.
4772 We assume that VALUE has been folded as much as possible;
4773 therefore, we do not need to check for such things as
4774 arithmetic-combinations of integers.
4776 Use CACHE (pointer to 2 tree values) for caching if non-NULL. */
4778 static tree
4779 initializer_constant_valid_p_1 (tree value, tree endtype, tree *cache)
4781 tree ret;
4783 switch (TREE_CODE (value))
4785 case CONSTRUCTOR:
4786 if (constructor_static_from_elts_p (value))
4788 unsigned HOST_WIDE_INT idx;
4789 tree elt;
4790 bool absolute = true;
4792 if (cache && cache[0] == value)
4793 return cache[1];
4794 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (value), idx, elt)
4796 tree reloc;
4797 reloc = initializer_constant_valid_p_1 (elt, TREE_TYPE (elt),
4798 NULL);
4799 if (!reloc
4800 /* An absolute value is required with reverse SSO. */
4801 || (reloc != null_pointer_node
4802 && TYPE_REVERSE_STORAGE_ORDER (TREE_TYPE (value))
4803 && !AGGREGATE_TYPE_P (TREE_TYPE (elt))))
4805 if (cache)
4807 cache[0] = value;
4808 cache[1] = NULL_TREE;
4810 return NULL_TREE;
4812 if (reloc != null_pointer_node)
4813 absolute = false;
4815 /* For a non-absolute relocation, there is no single
4816 variable that can be "the variable that determines the
4817 relocation." */
4818 if (cache)
4820 cache[0] = value;
4821 cache[1] = absolute ? null_pointer_node : error_mark_node;
4823 return absolute ? null_pointer_node : error_mark_node;
4826 return TREE_STATIC (value) ? null_pointer_node : NULL_TREE;
4828 case INTEGER_CST:
4829 case VECTOR_CST:
4830 case REAL_CST:
4831 case FIXED_CST:
4832 case STRING_CST:
4833 case COMPLEX_CST:
4834 return null_pointer_node;
4836 case ADDR_EXPR:
4837 case FDESC_EXPR:
4839 tree op0 = staticp (TREE_OPERAND (value, 0));
4840 if (op0)
4842 /* "&(*a).f" is like unto pointer arithmetic. If "a" turns out
4843 to be a constant, this is old-skool offsetof-like nonsense. */
4844 if (TREE_CODE (op0) == INDIRECT_REF
4845 && TREE_CONSTANT (TREE_OPERAND (op0, 0)))
4846 return null_pointer_node;
4847 /* Taking the address of a nested function involves a trampoline,
4848 unless we don't need or want one. */
4849 if (TREE_CODE (op0) == FUNCTION_DECL
4850 && DECL_STATIC_CHAIN (op0)
4851 && !TREE_NO_TRAMPOLINE (value))
4852 return NULL_TREE;
4853 /* "&{...}" requires a temporary to hold the constructed
4854 object. */
4855 if (TREE_CODE (op0) == CONSTRUCTOR)
4856 return NULL_TREE;
4858 return op0;
4861 case NON_LVALUE_EXPR:
4862 return initializer_constant_valid_p_1 (TREE_OPERAND (value, 0),
4863 endtype, cache);
4865 case VIEW_CONVERT_EXPR:
4867 tree src = TREE_OPERAND (value, 0);
4868 tree src_type = TREE_TYPE (src);
4869 tree dest_type = TREE_TYPE (value);
4871 /* Allow view-conversions from aggregate to non-aggregate type only
4872 if the bit pattern is fully preserved afterwards; otherwise, the
4873 RTL expander won't be able to apply a subsequent transformation
4874 to the underlying constructor. */
4875 if (AGGREGATE_TYPE_P (src_type) && !AGGREGATE_TYPE_P (dest_type))
4877 if (TYPE_MODE (endtype) == TYPE_MODE (dest_type))
4878 return initializer_constant_valid_p_1 (src, endtype, cache);
4879 else
4880 return NULL_TREE;
4883 /* Allow all other kinds of view-conversion. */
4884 return initializer_constant_valid_p_1 (src, endtype, cache);
4887 CASE_CONVERT:
4889 tree src = TREE_OPERAND (value, 0);
4890 tree src_type = TREE_TYPE (src);
4891 tree dest_type = TREE_TYPE (value);
4893 /* Allow conversions between pointer types, floating-point
4894 types, and offset types. */
4895 if ((POINTER_TYPE_P (dest_type) && POINTER_TYPE_P (src_type))
4896 || (FLOAT_TYPE_P (dest_type) && FLOAT_TYPE_P (src_type))
4897 || (TREE_CODE (dest_type) == OFFSET_TYPE
4898 && TREE_CODE (src_type) == OFFSET_TYPE))
4899 return initializer_constant_valid_p_1 (src, endtype, cache);
4901 /* Allow length-preserving conversions between integer types. */
4902 if (INTEGRAL_TYPE_P (dest_type) && INTEGRAL_TYPE_P (src_type)
4903 && (TYPE_PRECISION (dest_type) == TYPE_PRECISION (src_type)))
4904 return initializer_constant_valid_p_1 (src, endtype, cache);
4906 /* Allow conversions between other integer types only if
4907 explicit value. Don't allow sign-extension to a type larger
4908 than word and pointer, there aren't relocations that would
4909 allow to sign extend it to a wider type. */
4910 if (INTEGRAL_TYPE_P (dest_type)
4911 && INTEGRAL_TYPE_P (src_type)
4912 && (TYPE_UNSIGNED (src_type)
4913 || TYPE_PRECISION (dest_type) <= TYPE_PRECISION (src_type)
4914 || TYPE_PRECISION (dest_type) <= BITS_PER_WORD
4915 || TYPE_PRECISION (dest_type) <= POINTER_SIZE))
4917 tree inner = initializer_constant_valid_p_1 (src, endtype, cache);
4918 if (inner == null_pointer_node)
4919 return null_pointer_node;
4920 break;
4923 /* Allow (int) &foo provided int is as wide as a pointer. */
4924 if (INTEGRAL_TYPE_P (dest_type) && POINTER_TYPE_P (src_type)
4925 && (TYPE_PRECISION (dest_type) >= TYPE_PRECISION (src_type)))
4926 return initializer_constant_valid_p_1 (src, endtype, cache);
4928 /* Likewise conversions from int to pointers, but also allow
4929 conversions from 0. */
4930 if ((POINTER_TYPE_P (dest_type)
4931 || TREE_CODE (dest_type) == OFFSET_TYPE)
4932 && INTEGRAL_TYPE_P (src_type))
4934 if (TREE_CODE (src) == INTEGER_CST
4935 && TYPE_PRECISION (dest_type) >= TYPE_PRECISION (src_type))
4936 return null_pointer_node;
4937 if (integer_zerop (src))
4938 return null_pointer_node;
4939 else if (TYPE_PRECISION (dest_type) <= TYPE_PRECISION (src_type))
4940 return initializer_constant_valid_p_1 (src, endtype, cache);
4943 /* Allow conversions to struct or union types if the value
4944 inside is okay. */
4945 if (TREE_CODE (dest_type) == RECORD_TYPE
4946 || TREE_CODE (dest_type) == UNION_TYPE)
4947 return initializer_constant_valid_p_1 (src, endtype, cache);
4949 break;
4951 case POINTER_PLUS_EXPR:
4952 case PLUS_EXPR:
4953 /* Any valid floating-point constants will have been folded by now;
4954 with -frounding-math we hit this with addition of two constants. */
4955 if (TREE_CODE (endtype) == REAL_TYPE)
4956 return NULL_TREE;
4957 if (cache && cache[0] == value)
4958 return cache[1];
4959 if (! INTEGRAL_TYPE_P (endtype)
4960 || TYPE_PRECISION (endtype) >= TYPE_PRECISION (TREE_TYPE (value)))
4962 tree ncache[4] = { NULL_TREE, NULL_TREE, NULL_TREE, NULL_TREE };
4963 tree valid0
4964 = initializer_constant_valid_p_1 (TREE_OPERAND (value, 0),
4965 endtype, ncache);
4966 tree valid1
4967 = initializer_constant_valid_p_1 (TREE_OPERAND (value, 1),
4968 endtype, ncache + 2);
4969 /* If either term is absolute, use the other term's relocation. */
4970 if (valid0 == null_pointer_node)
4971 ret = valid1;
4972 else if (valid1 == null_pointer_node)
4973 ret = valid0;
4974 /* Support narrowing pointer differences. */
4975 else
4976 ret = narrowing_initializer_constant_valid_p (value, endtype,
4977 ncache);
4979 else
4980 /* Support narrowing pointer differences. */
4981 ret = narrowing_initializer_constant_valid_p (value, endtype, NULL);
4982 if (cache)
4984 cache[0] = value;
4985 cache[1] = ret;
4987 return ret;
4989 case POINTER_DIFF_EXPR:
4990 case MINUS_EXPR:
4991 if (TREE_CODE (endtype) == REAL_TYPE)
4992 return NULL_TREE;
4993 if (cache && cache[0] == value)
4994 return cache[1];
4995 if (! INTEGRAL_TYPE_P (endtype)
4996 || TYPE_PRECISION (endtype) >= TYPE_PRECISION (TREE_TYPE (value)))
4998 tree ncache[4] = { NULL_TREE, NULL_TREE, NULL_TREE, NULL_TREE };
4999 tree valid0
5000 = initializer_constant_valid_p_1 (TREE_OPERAND (value, 0),
5001 endtype, ncache);
5002 tree valid1
5003 = initializer_constant_valid_p_1 (TREE_OPERAND (value, 1),
5004 endtype, ncache + 2);
5005 /* Win if second argument is absolute. */
5006 if (valid1 == null_pointer_node)
5007 ret = valid0;
5008 /* Win if both arguments have the same relocation.
5009 Then the value is absolute. */
5010 else if (valid0 == valid1 && valid0 != 0)
5011 ret = null_pointer_node;
5012 /* Since GCC guarantees that string constants are unique in the
5013 generated code, a subtraction between two copies of the same
5014 constant string is absolute. */
5015 else if (valid0 && TREE_CODE (valid0) == STRING_CST
5016 && valid1 && TREE_CODE (valid1) == STRING_CST
5017 && operand_equal_p (valid0, valid1, 1))
5018 ret = null_pointer_node;
5019 /* Support narrowing differences. */
5020 else
5021 ret = narrowing_initializer_constant_valid_p (value, endtype,
5022 ncache);
5024 else
5025 /* Support narrowing differences. */
5026 ret = narrowing_initializer_constant_valid_p (value, endtype, NULL);
5027 if (cache)
5029 cache[0] = value;
5030 cache[1] = ret;
5032 return ret;
5034 default:
5035 break;
5038 return NULL_TREE;
5041 /* Return nonzero if VALUE is a valid constant-valued expression
5042 for use in initializing a static variable; one that can be an
5043 element of a "constant" initializer.
5045 Return null_pointer_node if the value is absolute;
5046 if it is relocatable, return the variable that determines the relocation.
5047 We assume that VALUE has been folded as much as possible;
5048 therefore, we do not need to check for such things as
5049 arithmetic-combinations of integers. */
5050 tree
5051 initializer_constant_valid_p (tree value, tree endtype, bool reverse)
5053 tree reloc = initializer_constant_valid_p_1 (value, endtype, NULL);
5055 /* An absolute value is required with reverse storage order. */
5056 if (reloc
5057 && reloc != null_pointer_node
5058 && reverse
5059 && !AGGREGATE_TYPE_P (endtype)
5060 && !VECTOR_TYPE_P (endtype))
5061 reloc = NULL_TREE;
5063 return reloc;
5066 /* Return true if VALUE is a valid constant-valued expression
5067 for use in initializing a static bit-field; one that can be
5068 an element of a "constant" initializer. */
5070 bool
5071 initializer_constant_valid_for_bitfield_p (tree value)
5073 /* For bitfields we support integer constants or possibly nested aggregates
5074 of such. */
5075 switch (TREE_CODE (value))
5077 case CONSTRUCTOR:
5079 unsigned HOST_WIDE_INT idx;
5080 tree elt;
5082 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (value), idx, elt)
5083 if (!initializer_constant_valid_for_bitfield_p (elt))
5084 return false;
5085 return true;
5088 case INTEGER_CST:
5089 case REAL_CST:
5090 return true;
5092 case VIEW_CONVERT_EXPR:
5093 case NON_LVALUE_EXPR:
5094 return
5095 initializer_constant_valid_for_bitfield_p (TREE_OPERAND (value, 0));
5097 default:
5098 break;
5101 return false;
5104 /* Check if a STRING_CST fits into the field.
5105 Tolerate only the case when the NUL termination
5106 does not fit into the field. */
5108 static bool
5109 check_string_literal (tree string, unsigned HOST_WIDE_INT size)
5111 tree type = TREE_TYPE (string);
5112 tree eltype = TREE_TYPE (type);
5113 unsigned HOST_WIDE_INT elts = tree_to_uhwi (TYPE_SIZE_UNIT (eltype));
5114 unsigned HOST_WIDE_INT mem_size = tree_to_uhwi (TYPE_SIZE_UNIT (type));
5115 int len = TREE_STRING_LENGTH (string);
5117 if (elts != 1 && elts != 2 && elts != 4)
5118 return false;
5119 if (len < 0 || len % elts != 0)
5120 return false;
5121 if (size < (unsigned)len)
5122 return false;
5123 if (mem_size != size)
5124 return false;
5125 return true;
5128 /* output_constructor outer state of relevance in recursive calls, typically
5129 for nested aggregate bitfields. */
5131 struct oc_outer_state {
5132 unsigned int bit_offset; /* current position in ... */
5133 int byte; /* ... the outer byte buffer. */
5136 static unsigned HOST_WIDE_INT
5137 output_constructor (tree, unsigned HOST_WIDE_INT, unsigned int, bool,
5138 oc_outer_state *);
5140 /* Output assembler code for constant EXP, with no label.
5141 This includes the pseudo-op such as ".int" or ".byte", and a newline.
5142 Assumes output_addressed_constants has been done on EXP already.
5144 Generate at least SIZE bytes of assembler data, padding at the end
5145 with zeros if necessary. SIZE must always be specified. The returned
5146 value is the actual number of bytes of assembler data generated, which
5147 may be bigger than SIZE if the object contains a variable length field.
5149 SIZE is important for structure constructors,
5150 since trailing members may have been omitted from the constructor.
5151 It is also important for initialization of arrays from string constants
5152 since the full length of the string constant might not be wanted.
5153 It is also needed for initialization of unions, where the initializer's
5154 type is just one member, and that may not be as long as the union.
5156 There a case in which we would fail to output exactly SIZE bytes:
5157 for a structure constructor that wants to produce more than SIZE bytes.
5158 But such constructors will never be generated for any possible input.
5160 ALIGN is the alignment of the data in bits.
5162 If REVERSE is true, EXP is output in reverse storage order. */
5164 static unsigned HOST_WIDE_INT
5165 output_constant (tree exp, unsigned HOST_WIDE_INT size, unsigned int align,
5166 bool reverse, bool merge_strings)
5168 enum tree_code code;
5169 unsigned HOST_WIDE_INT thissize;
5170 rtx cst;
5172 if (size == 0 || flag_syntax_only)
5173 return size;
5175 /* See if we're trying to initialize a pointer in a non-default mode
5176 to the address of some declaration somewhere. If the target says
5177 the mode is valid for pointers, assume the target has a way of
5178 resolving it. */
5179 if (TREE_CODE (exp) == NOP_EXPR
5180 && POINTER_TYPE_P (TREE_TYPE (exp))
5181 && targetm.addr_space.valid_pointer_mode
5182 (SCALAR_INT_TYPE_MODE (TREE_TYPE (exp)),
5183 TYPE_ADDR_SPACE (TREE_TYPE (TREE_TYPE (exp)))))
5185 tree saved_type = TREE_TYPE (exp);
5187 /* Peel off any intermediate conversions-to-pointer for valid
5188 pointer modes. */
5189 while (TREE_CODE (exp) == NOP_EXPR
5190 && POINTER_TYPE_P (TREE_TYPE (exp))
5191 && targetm.addr_space.valid_pointer_mode
5192 (SCALAR_INT_TYPE_MODE (TREE_TYPE (exp)),
5193 TYPE_ADDR_SPACE (TREE_TYPE (TREE_TYPE (exp)))))
5194 exp = TREE_OPERAND (exp, 0);
5196 /* If what we're left with is the address of something, we can
5197 convert the address to the final type and output it that
5198 way. */
5199 if (TREE_CODE (exp) == ADDR_EXPR)
5200 exp = build1 (ADDR_EXPR, saved_type, TREE_OPERAND (exp, 0));
5201 /* Likewise for constant ints. */
5202 else if (TREE_CODE (exp) == INTEGER_CST)
5203 exp = fold_convert (saved_type, exp);
5207 /* Eliminate any conversions since we'll be outputting the underlying
5208 constant. */
5209 while (CONVERT_EXPR_P (exp)
5210 || TREE_CODE (exp) == NON_LVALUE_EXPR
5211 || TREE_CODE (exp) == VIEW_CONVERT_EXPR)
5213 HOST_WIDE_INT type_size = int_size_in_bytes (TREE_TYPE (exp));
5214 HOST_WIDE_INT op_size = int_size_in_bytes (TREE_TYPE (TREE_OPERAND (exp, 0)));
5216 /* Make sure eliminating the conversion is really a no-op, except with
5217 VIEW_CONVERT_EXPRs to allow for wild Ada unchecked conversions and
5218 union types to allow for Ada unchecked unions. */
5219 if (type_size > op_size
5220 && TREE_CODE (exp) != VIEW_CONVERT_EXPR
5221 && TREE_CODE (TREE_TYPE (exp)) != UNION_TYPE)
5222 /* Keep the conversion. */
5223 break;
5224 else
5225 exp = TREE_OPERAND (exp, 0);
5228 code = TREE_CODE (TREE_TYPE (exp));
5229 thissize = int_size_in_bytes (TREE_TYPE (exp));
5231 /* Allow a constructor with no elements for any data type.
5232 This means to fill the space with zeros. */
5233 if (TREE_CODE (exp) == CONSTRUCTOR
5234 && vec_safe_is_empty (CONSTRUCTOR_ELTS (exp)))
5236 assemble_zeros (size);
5237 return size;
5240 if (TREE_CODE (exp) == FDESC_EXPR)
5242 #ifdef ASM_OUTPUT_FDESC
5243 HOST_WIDE_INT part = tree_to_shwi (TREE_OPERAND (exp, 1));
5244 tree decl = TREE_OPERAND (exp, 0);
5245 ASM_OUTPUT_FDESC (asm_out_file, decl, part);
5246 #else
5247 gcc_unreachable ();
5248 #endif
5249 return size;
5252 /* Now output the underlying data. If we've handling the padding, return.
5253 Otherwise, break and ensure SIZE is the size written. */
5254 switch (code)
5256 case BOOLEAN_TYPE:
5257 case INTEGER_TYPE:
5258 case ENUMERAL_TYPE:
5259 case POINTER_TYPE:
5260 case REFERENCE_TYPE:
5261 case OFFSET_TYPE:
5262 case FIXED_POINT_TYPE:
5263 case NULLPTR_TYPE:
5264 cst = expand_expr (exp, NULL_RTX, VOIDmode, EXPAND_INITIALIZER);
5265 if (reverse)
5266 cst = flip_storage_order (TYPE_MODE (TREE_TYPE (exp)), cst);
5267 if (!assemble_integer (cst, MIN (size, thissize), align, 0))
5268 error ("initializer for integer/fixed-point value is too complicated");
5269 break;
5271 case REAL_TYPE:
5272 if (TREE_CODE (exp) != REAL_CST)
5273 error ("initializer for floating value is not a floating constant");
5274 else
5275 assemble_real (TREE_REAL_CST (exp),
5276 SCALAR_FLOAT_TYPE_MODE (TREE_TYPE (exp)),
5277 align, reverse);
5278 break;
5280 case COMPLEX_TYPE:
5281 output_constant (TREE_REALPART (exp), thissize / 2, align,
5282 reverse, false);
5283 output_constant (TREE_IMAGPART (exp), thissize / 2,
5284 min_align (align, BITS_PER_UNIT * (thissize / 2)),
5285 reverse, false);
5286 break;
5288 case ARRAY_TYPE:
5289 case VECTOR_TYPE:
5290 switch (TREE_CODE (exp))
5292 case CONSTRUCTOR:
5293 return output_constructor (exp, size, align, reverse, NULL);
5294 case STRING_CST:
5295 thissize = (unsigned HOST_WIDE_INT)TREE_STRING_LENGTH (exp);
5296 if (merge_strings
5297 && (thissize == 0
5298 || TREE_STRING_POINTER (exp) [thissize - 1] != '\0'))
5299 thissize++;
5300 gcc_checking_assert (check_string_literal (exp, size));
5301 assemble_string (TREE_STRING_POINTER (exp), thissize);
5302 break;
5303 case VECTOR_CST:
5305 scalar_mode inner = SCALAR_TYPE_MODE (TREE_TYPE (TREE_TYPE (exp)));
5306 unsigned int nalign = MIN (align, GET_MODE_ALIGNMENT (inner));
5307 int elt_size = GET_MODE_SIZE (inner);
5308 output_constant (VECTOR_CST_ELT (exp, 0), elt_size, align,
5309 reverse, false);
5310 thissize = elt_size;
5311 /* Static constants must have a fixed size. */
5312 unsigned int nunits = VECTOR_CST_NELTS (exp).to_constant ();
5313 for (unsigned int i = 1; i < nunits; i++)
5315 output_constant (VECTOR_CST_ELT (exp, i), elt_size, nalign,
5316 reverse, false);
5317 thissize += elt_size;
5319 break;
5321 default:
5322 gcc_unreachable ();
5324 break;
5326 case RECORD_TYPE:
5327 case UNION_TYPE:
5328 gcc_assert (TREE_CODE (exp) == CONSTRUCTOR);
5329 return output_constructor (exp, size, align, reverse, NULL);
5331 case ERROR_MARK:
5332 return 0;
5334 default:
5335 gcc_unreachable ();
5338 if (size > thissize)
5339 assemble_zeros (size - thissize);
5341 return size;
5344 /* Subroutine of output_constructor, used for computing the size of
5345 arrays of unspecified length. VAL must be a CONSTRUCTOR of an array
5346 type with an unspecified upper bound. */
5348 static unsigned HOST_WIDE_INT
5349 array_size_for_constructor (tree val)
5351 tree max_index;
5352 unsigned HOST_WIDE_INT cnt;
5353 tree index, value, tmp;
5354 offset_int i;
5356 /* This code used to attempt to handle string constants that are not
5357 arrays of single-bytes, but nothing else does, so there's no point in
5358 doing it here. */
5359 if (TREE_CODE (val) == STRING_CST)
5360 return TREE_STRING_LENGTH (val);
5362 max_index = NULL_TREE;
5363 FOR_EACH_CONSTRUCTOR_ELT (CONSTRUCTOR_ELTS (val), cnt, index, value)
5365 if (TREE_CODE (index) == RANGE_EXPR)
5366 index = TREE_OPERAND (index, 1);
5367 if (max_index == NULL_TREE || tree_int_cst_lt (max_index, index))
5368 max_index = index;
5371 if (max_index == NULL_TREE)
5372 return 0;
5374 /* Compute the total number of array elements. */
5375 tmp = TYPE_MIN_VALUE (TYPE_DOMAIN (TREE_TYPE (val)));
5376 i = wi::to_offset (max_index) - wi::to_offset (tmp) + 1;
5378 /* Multiply by the array element unit size to find number of bytes. */
5379 i *= wi::to_offset (TYPE_SIZE_UNIT (TREE_TYPE (TREE_TYPE (val))));
5381 gcc_assert (wi::fits_uhwi_p (i));
5382 return i.to_uhwi ();
5385 /* Other datastructures + helpers for output_constructor. */
5387 /* output_constructor local state to support interaction with helpers. */
5389 struct oc_local_state {
5391 /* Received arguments. */
5392 tree exp; /* Constructor expression. */
5393 tree type; /* Type of constructor expression. */
5394 unsigned HOST_WIDE_INT size; /* # bytes to output - pad if necessary. */
5395 unsigned int align; /* Known initial alignment. */
5396 tree min_index; /* Lower bound if specified for an array. */
5398 /* Output processing state. */
5399 HOST_WIDE_INT total_bytes; /* # bytes output so far / current position. */
5400 int byte; /* Part of a bitfield byte yet to be output. */
5401 int last_relative_index; /* Implicit or explicit index of the last
5402 array element output within a bitfield. */
5403 bool byte_buffer_in_use; /* Whether BYTE is in use. */
5404 bool reverse; /* Whether reverse storage order is in use. */
5406 /* Current element. */
5407 tree field; /* Current field decl in a record. */
5408 tree val; /* Current element value. */
5409 tree index; /* Current element index. */
5413 /* Helper for output_constructor. From the current LOCAL state, output a
5414 RANGE_EXPR element. */
5416 static void
5417 output_constructor_array_range (oc_local_state *local)
5419 /* Perform the index calculation in modulo arithmetic but
5420 sign-extend the result because Ada has negative DECL_FIELD_OFFSETs
5421 but we are using an unsigned sizetype. */
5422 unsigned prec = TYPE_PRECISION (sizetype);
5423 offset_int idx = wi::sext (wi::to_offset (TREE_OPERAND (local->index, 0))
5424 - wi::to_offset (local->min_index), prec);
5425 tree valtype = TREE_TYPE (local->val);
5426 HOST_WIDE_INT fieldpos
5427 = (idx * wi::to_offset (TYPE_SIZE_UNIT (valtype))).to_short_addr ();
5429 /* Advance to offset of this element. */
5430 if (fieldpos > local->total_bytes)
5432 assemble_zeros (fieldpos - local->total_bytes);
5433 local->total_bytes = fieldpos;
5435 else
5436 /* Must not go backwards. */
5437 gcc_assert (fieldpos == local->total_bytes);
5439 unsigned HOST_WIDE_INT fieldsize
5440 = int_size_in_bytes (TREE_TYPE (local->type));
5442 HOST_WIDE_INT lo_index
5443 = tree_to_shwi (TREE_OPERAND (local->index, 0));
5444 HOST_WIDE_INT hi_index
5445 = tree_to_shwi (TREE_OPERAND (local->index, 1));
5446 HOST_WIDE_INT index;
5448 unsigned int align2
5449 = min_align (local->align, fieldsize * BITS_PER_UNIT);
5451 for (index = lo_index; index <= hi_index; index++)
5453 /* Output the element's initial value. */
5454 if (local->val == NULL_TREE)
5455 assemble_zeros (fieldsize);
5456 else
5457 fieldsize = output_constant (local->val, fieldsize, align2,
5458 local->reverse, false);
5460 /* Count its size. */
5461 local->total_bytes += fieldsize;
5465 /* Helper for output_constructor. From the current LOCAL state, output a
5466 field element that is not true bitfield or part of an outer one. */
5468 static void
5469 output_constructor_regular_field (oc_local_state *local)
5471 /* Field size and position. Since this structure is static, we know the
5472 positions are constant. */
5473 unsigned HOST_WIDE_INT fieldsize;
5474 HOST_WIDE_INT fieldpos;
5476 unsigned int align2;
5478 /* Output any buffered-up bit-fields preceding this element. */
5479 if (local->byte_buffer_in_use)
5481 assemble_integer (GEN_INT (local->byte), 1, BITS_PER_UNIT, 1);
5482 local->total_bytes++;
5483 local->byte_buffer_in_use = false;
5486 if (local->index != NULL_TREE)
5488 /* Perform the index calculation in modulo arithmetic but
5489 sign-extend the result because Ada has negative DECL_FIELD_OFFSETs
5490 but we are using an unsigned sizetype. */
5491 unsigned prec = TYPE_PRECISION (sizetype);
5492 offset_int idx = wi::sext (wi::to_offset (local->index)
5493 - wi::to_offset (local->min_index), prec);
5494 fieldpos = (idx * wi::to_offset (TYPE_SIZE_UNIT (TREE_TYPE (local->val))))
5495 .to_short_addr ();
5497 else if (local->field != NULL_TREE)
5498 fieldpos = int_byte_position (local->field);
5499 else
5500 fieldpos = 0;
5502 /* Advance to offset of this element.
5503 Note no alignment needed in an array, since that is guaranteed
5504 if each element has the proper size. */
5505 if (local->field != NULL_TREE || local->index != NULL_TREE)
5507 if (fieldpos > local->total_bytes)
5509 assemble_zeros (fieldpos - local->total_bytes);
5510 local->total_bytes = fieldpos;
5512 else
5513 /* Must not go backwards. */
5514 gcc_assert (fieldpos == local->total_bytes);
5517 /* Find the alignment of this element. */
5518 align2 = min_align (local->align, BITS_PER_UNIT * fieldpos);
5520 /* Determine size this element should occupy. */
5521 if (local->field)
5523 fieldsize = 0;
5525 /* If this is an array with an unspecified upper bound,
5526 the initializer determines the size. */
5527 /* ??? This ought to only checked if DECL_SIZE_UNIT is NULL,
5528 but we cannot do this until the deprecated support for
5529 initializing zero-length array members is removed. */
5530 if (TREE_CODE (TREE_TYPE (local->field)) == ARRAY_TYPE
5531 && (!TYPE_DOMAIN (TREE_TYPE (local->field))
5532 || !TYPE_MAX_VALUE (TYPE_DOMAIN (TREE_TYPE (local->field)))))
5534 fieldsize = array_size_for_constructor (local->val);
5535 /* Given a non-empty initialization, this field had better
5536 be last. Given a flexible array member, the next field
5537 on the chain is a TYPE_DECL of the enclosing struct. */
5538 const_tree next = DECL_CHAIN (local->field);
5539 gcc_assert (!fieldsize || !next || TREE_CODE (next) != FIELD_DECL);
5540 tree size = TYPE_SIZE_UNIT (TREE_TYPE (local->val));
5541 gcc_checking_assert (compare_tree_int (size, fieldsize) == 0);
5543 else
5544 fieldsize = tree_to_uhwi (DECL_SIZE_UNIT (local->field));
5546 else
5547 fieldsize = int_size_in_bytes (TREE_TYPE (local->type));
5549 /* Output the element's initial value. */
5550 if (local->val == NULL_TREE)
5551 assemble_zeros (fieldsize);
5552 else
5553 fieldsize = output_constant (local->val, fieldsize, align2,
5554 local->reverse, false);
5556 /* Count its size. */
5557 local->total_bytes += fieldsize;
5560 /* Helper for output_constructor. From the LOCAL state, output an element
5561 that is a true bitfield or part of an outer one. BIT_OFFSET is the offset
5562 from the start of a possibly ongoing outer byte buffer. */
5564 static void
5565 output_constructor_bitfield (oc_local_state *local, unsigned int bit_offset)
5567 /* Bit size of this element. */
5568 HOST_WIDE_INT ebitsize
5569 = (local->field
5570 ? tree_to_uhwi (DECL_SIZE (local->field))
5571 : tree_to_uhwi (TYPE_SIZE (TREE_TYPE (local->type))));
5573 /* Relative index of this element if this is an array component. */
5574 HOST_WIDE_INT relative_index
5575 = (!local->field
5576 ? (local->index
5577 ? (tree_to_shwi (local->index)
5578 - tree_to_shwi (local->min_index))
5579 : local->last_relative_index + 1)
5580 : 0);
5582 /* Bit position of this element from the start of the containing
5583 constructor. */
5584 HOST_WIDE_INT constructor_relative_ebitpos
5585 = (local->field
5586 ? int_bit_position (local->field)
5587 : ebitsize * relative_index);
5589 /* Bit position of this element from the start of a possibly ongoing
5590 outer byte buffer. */
5591 HOST_WIDE_INT byte_relative_ebitpos
5592 = bit_offset + constructor_relative_ebitpos;
5594 /* From the start of a possibly ongoing outer byte buffer, offsets to
5595 the first bit of this element and to the first bit past the end of
5596 this element. */
5597 HOST_WIDE_INT next_offset = byte_relative_ebitpos;
5598 HOST_WIDE_INT end_offset = byte_relative_ebitpos + ebitsize;
5600 local->last_relative_index = relative_index;
5602 if (local->val == NULL_TREE)
5603 local->val = integer_zero_node;
5605 while (TREE_CODE (local->val) == VIEW_CONVERT_EXPR
5606 || TREE_CODE (local->val) == NON_LVALUE_EXPR)
5607 local->val = TREE_OPERAND (local->val, 0);
5609 if (TREE_CODE (local->val) != INTEGER_CST
5610 && TREE_CODE (local->val) != CONSTRUCTOR)
5612 error ("invalid initial value for member %qE", DECL_NAME (local->field));
5613 return;
5616 /* If this field does not start in this (or next) byte, skip some bytes. */
5617 if (next_offset / BITS_PER_UNIT != local->total_bytes)
5619 /* Output remnant of any bit field in previous bytes. */
5620 if (local->byte_buffer_in_use)
5622 assemble_integer (GEN_INT (local->byte), 1, BITS_PER_UNIT, 1);
5623 local->total_bytes++;
5624 local->byte_buffer_in_use = false;
5627 /* If still not at proper byte, advance to there. */
5628 if (next_offset / BITS_PER_UNIT != local->total_bytes)
5630 gcc_assert (next_offset / BITS_PER_UNIT >= local->total_bytes);
5631 assemble_zeros (next_offset / BITS_PER_UNIT - local->total_bytes);
5632 local->total_bytes = next_offset / BITS_PER_UNIT;
5636 /* Set up the buffer if necessary. */
5637 if (!local->byte_buffer_in_use)
5639 local->byte = 0;
5640 if (ebitsize > 0)
5641 local->byte_buffer_in_use = true;
5644 /* If this is nested constructor, recurse passing the bit offset and the
5645 pending data, then retrieve the new pending data afterwards. */
5646 if (TREE_CODE (local->val) == CONSTRUCTOR)
5648 oc_outer_state temp_state;
5649 temp_state.bit_offset = next_offset % BITS_PER_UNIT;
5650 temp_state.byte = local->byte;
5651 local->total_bytes
5652 += output_constructor (local->val, 0, 0, local->reverse, &temp_state);
5653 local->byte = temp_state.byte;
5654 return;
5657 /* Otherwise, we must split the element into pieces that fall within
5658 separate bytes, and combine each byte with previous or following
5659 bit-fields. */
5660 while (next_offset < end_offset)
5662 int this_time;
5663 int shift;
5664 unsigned HOST_WIDE_INT value;
5665 HOST_WIDE_INT next_byte = next_offset / BITS_PER_UNIT;
5666 HOST_WIDE_INT next_bit = next_offset % BITS_PER_UNIT;
5668 /* Advance from byte to byte within this element when necessary. */
5669 while (next_byte != local->total_bytes)
5671 assemble_integer (GEN_INT (local->byte), 1, BITS_PER_UNIT, 1);
5672 local->total_bytes++;
5673 local->byte = 0;
5676 /* Number of bits we can process at once (all part of the same byte). */
5677 this_time = MIN (end_offset - next_offset, BITS_PER_UNIT - next_bit);
5678 if (local->reverse ? !BYTES_BIG_ENDIAN : BYTES_BIG_ENDIAN)
5680 /* For big-endian data, take the most significant bits (of the
5681 bits that are significant) first and put them into bytes from
5682 the most significant end. */
5683 shift = end_offset - next_offset - this_time;
5685 /* Don't try to take a bunch of bits that cross
5686 the word boundary in the INTEGER_CST. We can
5687 only select bits from one element. */
5688 if ((shift / HOST_BITS_PER_WIDE_INT)
5689 != ((shift + this_time - 1) / HOST_BITS_PER_WIDE_INT))
5691 const int end = shift + this_time - 1;
5692 shift = end & -HOST_BITS_PER_WIDE_INT;
5693 this_time = end - shift + 1;
5696 /* Now get the bits we want to insert. */
5697 value = wi::extract_uhwi (wi::to_widest (local->val),
5698 shift, this_time);
5700 /* Get the result. This works only when:
5701 1 <= this_time <= HOST_BITS_PER_WIDE_INT. */
5702 local->byte |= value << (BITS_PER_UNIT - this_time - next_bit);
5704 else
5706 /* On little-endian machines, take the least significant bits of
5707 the value first and pack them starting at the least significant
5708 bits of the bytes. */
5709 shift = next_offset - byte_relative_ebitpos;
5711 /* Don't try to take a bunch of bits that cross
5712 the word boundary in the INTEGER_CST. We can
5713 only select bits from one element. */
5714 if ((shift / HOST_BITS_PER_WIDE_INT)
5715 != ((shift + this_time - 1) / HOST_BITS_PER_WIDE_INT))
5716 this_time
5717 = HOST_BITS_PER_WIDE_INT - (shift & (HOST_BITS_PER_WIDE_INT - 1));
5719 /* Now get the bits we want to insert. */
5720 value = wi::extract_uhwi (wi::to_widest (local->val),
5721 shift, this_time);
5723 /* Get the result. This works only when:
5724 1 <= this_time <= HOST_BITS_PER_WIDE_INT. */
5725 local->byte |= value << next_bit;
5728 next_offset += this_time;
5729 local->byte_buffer_in_use = true;
5733 /* Subroutine of output_constant, used for CONSTRUCTORs (aggregate constants).
5734 Generate at least SIZE bytes, padding if necessary. OUTER designates the
5735 caller output state of relevance in recursive invocations. */
5737 static unsigned HOST_WIDE_INT
5738 output_constructor (tree exp, unsigned HOST_WIDE_INT size, unsigned int align,
5739 bool reverse, oc_outer_state *outer)
5741 unsigned HOST_WIDE_INT cnt;
5742 constructor_elt *ce;
5743 oc_local_state local;
5745 /* Setup our local state to communicate with helpers. */
5746 local.exp = exp;
5747 local.type = TREE_TYPE (exp);
5748 local.size = size;
5749 local.align = align;
5750 if (TREE_CODE (local.type) == ARRAY_TYPE && TYPE_DOMAIN (local.type))
5751 local.min_index = TYPE_MIN_VALUE (TYPE_DOMAIN (local.type));
5752 else
5753 local.min_index = integer_zero_node;
5755 local.total_bytes = 0;
5756 local.byte_buffer_in_use = outer != NULL;
5757 local.byte = outer ? outer->byte : 0;
5758 local.last_relative_index = -1;
5759 /* The storage order is specified for every aggregate type. */
5760 if (AGGREGATE_TYPE_P (local.type))
5761 local.reverse = TYPE_REVERSE_STORAGE_ORDER (local.type);
5762 else
5763 local.reverse = reverse;
5765 gcc_assert (HOST_BITS_PER_WIDE_INT >= BITS_PER_UNIT);
5767 /* As CE goes through the elements of the constant, FIELD goes through the
5768 structure fields if the constant is a structure. If the constant is a
5769 union, we override this by getting the field from the TREE_LIST element.
5770 But the constant could also be an array. Then FIELD is zero.
5772 There is always a maximum of one element in the chain LINK for unions
5773 (even if the initializer in a source program incorrectly contains
5774 more one). */
5776 if (TREE_CODE (local.type) == RECORD_TYPE)
5777 local.field = TYPE_FIELDS (local.type);
5778 else
5779 local.field = NULL_TREE;
5781 for (cnt = 0;
5782 vec_safe_iterate (CONSTRUCTOR_ELTS (exp), cnt, &ce);
5783 cnt++, local.field = local.field ? DECL_CHAIN (local.field) : 0)
5785 local.val = ce->value;
5786 local.index = NULL_TREE;
5788 /* The element in a union constructor specifies the proper field
5789 or index. */
5790 if (RECORD_OR_UNION_TYPE_P (local.type) && ce->index != NULL_TREE)
5791 local.field = ce->index;
5793 else if (TREE_CODE (local.type) == ARRAY_TYPE)
5794 local.index = ce->index;
5796 if (local.field && flag_verbose_asm)
5797 fprintf (asm_out_file, "%s %s:\n",
5798 ASM_COMMENT_START,
5799 DECL_NAME (local.field)
5800 ? IDENTIFIER_POINTER (DECL_NAME (local.field))
5801 : "<anonymous>");
5803 /* Eliminate the marker that makes a cast not be an lvalue. */
5804 if (local.val != NULL_TREE)
5805 STRIP_NOPS (local.val);
5807 /* Output the current element, using the appropriate helper ... */
5809 /* For an array slice not part of an outer bitfield. */
5810 if (!outer
5811 && local.index != NULL_TREE
5812 && TREE_CODE (local.index) == RANGE_EXPR)
5813 output_constructor_array_range (&local);
5815 /* For a field that is neither a true bitfield nor part of an outer one,
5816 known to be at least byte aligned and multiple-of-bytes long. */
5817 else if (!outer
5818 && (local.field == NULL_TREE
5819 || !CONSTRUCTOR_BITFIELD_P (local.field)))
5820 output_constructor_regular_field (&local);
5822 /* For a true bitfield or part of an outer one. Only INTEGER_CSTs are
5823 supported for scalar fields, so we may need to convert first. */
5824 else
5826 if (TREE_CODE (local.val) == REAL_CST)
5827 local.val
5828 = fold_unary (VIEW_CONVERT_EXPR,
5829 build_nonstandard_integer_type
5830 (TYPE_PRECISION (TREE_TYPE (local.val)), 0),
5831 local.val);
5832 output_constructor_bitfield (&local, outer ? outer->bit_offset : 0);
5836 /* If we are not at toplevel, save the pending data for our caller.
5837 Otherwise output the pending data and padding zeros as needed. */
5838 if (outer)
5839 outer->byte = local.byte;
5840 else
5842 if (local.byte_buffer_in_use)
5844 assemble_integer (GEN_INT (local.byte), 1, BITS_PER_UNIT, 1);
5845 local.total_bytes++;
5848 if ((unsigned HOST_WIDE_INT)local.total_bytes < local.size)
5850 assemble_zeros (local.size - local.total_bytes);
5851 local.total_bytes = local.size;
5855 return local.total_bytes;
5858 /* Mark DECL as weak. */
5860 static void
5861 mark_weak (tree decl)
5863 if (DECL_WEAK (decl))
5864 return;
5866 struct symtab_node *n = symtab_node::get (decl);
5867 if (n && n->refuse_visibility_changes)
5868 error ("%+qD declared weak after being used", decl);
5869 DECL_WEAK (decl) = 1;
5871 if (DECL_RTL_SET_P (decl)
5872 && MEM_P (DECL_RTL (decl))
5873 && XEXP (DECL_RTL (decl), 0)
5874 && GET_CODE (XEXP (DECL_RTL (decl), 0)) == SYMBOL_REF)
5875 SYMBOL_REF_WEAK (XEXP (DECL_RTL (decl), 0)) = 1;
5878 /* Merge weak status between NEWDECL and OLDDECL. */
5880 void
5881 merge_weak (tree newdecl, tree olddecl)
5883 if (DECL_WEAK (newdecl) == DECL_WEAK (olddecl))
5885 if (DECL_WEAK (newdecl) && TARGET_SUPPORTS_WEAK)
5887 tree *pwd;
5888 /* We put the NEWDECL on the weak_decls list at some point
5889 and OLDDECL as well. Keep just OLDDECL on the list. */
5890 for (pwd = &weak_decls; *pwd; pwd = &TREE_CHAIN (*pwd))
5891 if (TREE_VALUE (*pwd) == newdecl)
5893 *pwd = TREE_CHAIN (*pwd);
5894 break;
5897 return;
5900 if (DECL_WEAK (newdecl))
5902 tree wd;
5904 /* NEWDECL is weak, but OLDDECL is not. */
5906 /* If we already output the OLDDECL, we're in trouble; we can't
5907 go back and make it weak. This should never happen in
5908 unit-at-a-time compilation. */
5909 gcc_assert (!TREE_ASM_WRITTEN (olddecl));
5911 /* If we've already generated rtl referencing OLDDECL, we may
5912 have done so in a way that will not function properly with
5913 a weak symbol. Again in unit-at-a-time this should be
5914 impossible. */
5915 gcc_assert (!TREE_USED (olddecl)
5916 || !TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (olddecl)));
5918 /* PR 49899: You cannot convert a static function into a weak, public function. */
5919 if (! TREE_PUBLIC (olddecl) && TREE_PUBLIC (newdecl))
5920 error ("weak declaration of %q+D being applied to a already "
5921 "existing, static definition", newdecl);
5923 if (TARGET_SUPPORTS_WEAK)
5925 /* We put the NEWDECL on the weak_decls list at some point.
5926 Replace it with the OLDDECL. */
5927 for (wd = weak_decls; wd; wd = TREE_CHAIN (wd))
5928 if (TREE_VALUE (wd) == newdecl)
5930 TREE_VALUE (wd) = olddecl;
5931 break;
5933 /* We may not find the entry on the list. If NEWDECL is a
5934 weak alias, then we will have already called
5935 globalize_decl to remove the entry; in that case, we do
5936 not need to do anything. */
5939 /* Make the OLDDECL weak; it's OLDDECL that we'll be keeping. */
5940 mark_weak (olddecl);
5942 else
5943 /* OLDDECL was weak, but NEWDECL was not explicitly marked as
5944 weak. Just update NEWDECL to indicate that it's weak too. */
5945 mark_weak (newdecl);
5948 /* Declare DECL to be a weak symbol. */
5950 void
5951 declare_weak (tree decl)
5953 /* With -fsyntax-only, TREE_ASM_WRITTEN might be set on certain function
5954 decls earlier than normally, but as with -fsyntax-only nothing is really
5955 emitted, there is no harm in marking it weak later. */
5956 gcc_assert (TREE_CODE (decl) != FUNCTION_DECL
5957 || !TREE_ASM_WRITTEN (decl)
5958 || flag_syntax_only);
5959 if (! TREE_PUBLIC (decl))
5961 error ("weak declaration of %q+D must be public", decl);
5962 return;
5964 else if (!TARGET_SUPPORTS_WEAK)
5965 warning (0, "weak declaration of %q+D not supported", decl);
5967 mark_weak (decl);
5968 if (!lookup_attribute ("weak", DECL_ATTRIBUTES (decl)))
5969 DECL_ATTRIBUTES (decl)
5970 = tree_cons (get_identifier ("weak"), NULL, DECL_ATTRIBUTES (decl));
5973 static void
5974 weak_finish_1 (tree decl)
5976 #if defined (ASM_WEAKEN_DECL) || defined (ASM_WEAKEN_LABEL)
5977 const char *const name = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl));
5978 #endif
5980 if (! TREE_USED (decl))
5981 return;
5983 #ifdef ASM_WEAKEN_DECL
5984 ASM_WEAKEN_DECL (asm_out_file, decl, name, NULL);
5985 #else
5986 #ifdef ASM_WEAKEN_LABEL
5987 ASM_WEAKEN_LABEL (asm_out_file, name);
5988 #else
5989 #ifdef ASM_OUTPUT_WEAK_ALIAS
5991 static bool warn_once = 0;
5992 if (! warn_once)
5994 warning (0, "only weak aliases are supported in this configuration");
5995 warn_once = 1;
5997 return;
5999 #endif
6000 #endif
6001 #endif
6004 /* Fiven an assembly name, find the decl it is associated with. */
6005 static tree
6006 find_decl (tree target)
6008 symtab_node *node = symtab_node::get_for_asmname (target);
6009 if (node)
6010 return node->decl;
6011 return NULL_TREE;
6014 /* This TREE_LIST contains weakref targets. */
6016 static GTY(()) tree weakref_targets;
6018 /* Emit any pending weak declarations. */
6020 void
6021 weak_finish (void)
6023 tree t;
6025 for (t = weakref_targets; t; t = TREE_CHAIN (t))
6027 tree alias_decl = TREE_PURPOSE (t);
6028 tree target = ultimate_transparent_alias_target (&TREE_VALUE (t));
6030 if (! TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (alias_decl))
6031 || TREE_SYMBOL_REFERENCED (target))
6032 /* Remove alias_decl from the weak list, but leave entries for
6033 the target alone. */
6034 target = NULL_TREE;
6035 #ifndef ASM_OUTPUT_WEAKREF
6036 else if (! TREE_SYMBOL_REFERENCED (target))
6038 /* Use ASM_WEAKEN_LABEL only if ASM_WEAKEN_DECL is not
6039 defined, otherwise we and weak_finish_1 would use
6040 different macros. */
6041 # if defined ASM_WEAKEN_LABEL && ! defined ASM_WEAKEN_DECL
6042 ASM_WEAKEN_LABEL (asm_out_file, IDENTIFIER_POINTER (target));
6043 # else
6044 tree decl = find_decl (target);
6046 if (! decl)
6048 decl = build_decl (DECL_SOURCE_LOCATION (alias_decl),
6049 TREE_CODE (alias_decl), target,
6050 TREE_TYPE (alias_decl));
6052 DECL_EXTERNAL (decl) = 1;
6053 TREE_PUBLIC (decl) = 1;
6054 DECL_ARTIFICIAL (decl) = 1;
6055 TREE_NOTHROW (decl) = TREE_NOTHROW (alias_decl);
6056 TREE_USED (decl) = 1;
6059 weak_finish_1 (decl);
6060 # endif
6062 #endif
6065 tree *p;
6066 tree t2;
6068 /* Remove the alias and the target from the pending weak list
6069 so that we do not emit any .weak directives for the former,
6070 nor multiple .weak directives for the latter. */
6071 for (p = &weak_decls; (t2 = *p) ; )
6073 if (TREE_VALUE (t2) == alias_decl
6074 || target == DECL_ASSEMBLER_NAME (TREE_VALUE (t2)))
6075 *p = TREE_CHAIN (t2);
6076 else
6077 p = &TREE_CHAIN (t2);
6080 /* Remove other weakrefs to the same target, to speed things up. */
6081 for (p = &TREE_CHAIN (t); (t2 = *p) ; )
6083 if (target == ultimate_transparent_alias_target (&TREE_VALUE (t2)))
6084 *p = TREE_CHAIN (t2);
6085 else
6086 p = &TREE_CHAIN (t2);
6091 for (t = weak_decls; t; t = TREE_CHAIN (t))
6093 tree decl = TREE_VALUE (t);
6095 weak_finish_1 (decl);
6099 /* Emit the assembly bits to indicate that DECL is globally visible. */
6101 static void
6102 globalize_decl (tree decl)
6105 #if defined (ASM_WEAKEN_LABEL) || defined (ASM_WEAKEN_DECL)
6106 if (DECL_WEAK (decl))
6108 const char *name = XSTR (XEXP (DECL_RTL (decl), 0), 0);
6109 tree *p, t;
6111 #ifdef ASM_WEAKEN_DECL
6112 ASM_WEAKEN_DECL (asm_out_file, decl, name, 0);
6113 #else
6114 ASM_WEAKEN_LABEL (asm_out_file, name);
6115 #endif
6117 /* Remove this function from the pending weak list so that
6118 we do not emit multiple .weak directives for it. */
6119 for (p = &weak_decls; (t = *p) ; )
6121 if (DECL_ASSEMBLER_NAME (decl) == DECL_ASSEMBLER_NAME (TREE_VALUE (t)))
6122 *p = TREE_CHAIN (t);
6123 else
6124 p = &TREE_CHAIN (t);
6127 /* Remove weakrefs to the same target from the pending weakref
6128 list, for the same reason. */
6129 for (p = &weakref_targets; (t = *p) ; )
6131 if (DECL_ASSEMBLER_NAME (decl)
6132 == ultimate_transparent_alias_target (&TREE_VALUE (t)))
6133 *p = TREE_CHAIN (t);
6134 else
6135 p = &TREE_CHAIN (t);
6138 return;
6140 #endif
6142 targetm.asm_out.globalize_decl_name (asm_out_file, decl);
6145 vec<alias_pair, va_gc> *alias_pairs;
6147 /* Output the assembler code for a define (equate) using ASM_OUTPUT_DEF
6148 or ASM_OUTPUT_DEF_FROM_DECLS. The function defines the symbol whose
6149 tree node is DECL to have the value of the tree node TARGET. */
6151 void
6152 do_assemble_alias (tree decl, tree target)
6154 tree id;
6156 /* Emulated TLS had better not get this var. */
6157 gcc_assert (!(!targetm.have_tls
6158 && VAR_P (decl)
6159 && DECL_THREAD_LOCAL_P (decl)));
6161 if (TREE_ASM_WRITTEN (decl))
6162 return;
6164 id = DECL_ASSEMBLER_NAME (decl);
6165 ultimate_transparent_alias_target (&id);
6166 ultimate_transparent_alias_target (&target);
6168 /* We must force creation of DECL_RTL for debug info generation, even though
6169 we don't use it here. */
6170 make_decl_rtl (decl);
6172 TREE_ASM_WRITTEN (decl) = 1;
6173 TREE_ASM_WRITTEN (DECL_ASSEMBLER_NAME (decl)) = 1;
6174 TREE_ASM_WRITTEN (id) = 1;
6176 if (lookup_attribute ("weakref", DECL_ATTRIBUTES (decl)))
6178 if (!TREE_SYMBOL_REFERENCED (target))
6179 weakref_targets = tree_cons (decl, target, weakref_targets);
6181 #ifdef ASM_OUTPUT_WEAKREF
6182 ASM_OUTPUT_WEAKREF (asm_out_file, decl,
6183 IDENTIFIER_POINTER (id),
6184 IDENTIFIER_POINTER (target));
6185 #else
6186 if (!TARGET_SUPPORTS_WEAK)
6188 error_at (DECL_SOURCE_LOCATION (decl),
6189 "weakref is not supported in this configuration");
6190 return;
6192 #endif
6193 return;
6196 #ifdef ASM_OUTPUT_DEF
6197 tree orig_decl = decl;
6199 /* Make name accessible from other files, if appropriate. */
6201 if (TREE_PUBLIC (decl) || TREE_PUBLIC (orig_decl))
6203 globalize_decl (decl);
6204 maybe_assemble_visibility (decl);
6206 if (TREE_CODE (decl) == FUNCTION_DECL
6207 && cgraph_node::get (decl)->ifunc_resolver)
6209 #if defined (ASM_OUTPUT_TYPE_DIRECTIVE)
6210 if (targetm.has_ifunc_p ())
6211 ASM_OUTPUT_TYPE_DIRECTIVE
6212 (asm_out_file, IDENTIFIER_POINTER (id),
6213 IFUNC_ASM_TYPE);
6214 else
6215 #endif
6216 error_at (DECL_SOURCE_LOCATION (decl),
6217 "%qs is not supported on this target", "ifunc");
6220 # ifdef ASM_OUTPUT_DEF_FROM_DECLS
6221 ASM_OUTPUT_DEF_FROM_DECLS (asm_out_file, decl, target);
6222 # else
6223 ASM_OUTPUT_DEF (asm_out_file,
6224 IDENTIFIER_POINTER (id),
6225 IDENTIFIER_POINTER (target));
6226 # endif
6227 #elif defined (ASM_OUTPUT_WEAK_ALIAS) || defined (ASM_WEAKEN_DECL)
6229 const char *name;
6230 tree *p, t;
6232 name = IDENTIFIER_POINTER (id);
6233 # ifdef ASM_WEAKEN_DECL
6234 ASM_WEAKEN_DECL (asm_out_file, decl, name, IDENTIFIER_POINTER (target));
6235 # else
6236 ASM_OUTPUT_WEAK_ALIAS (asm_out_file, name, IDENTIFIER_POINTER (target));
6237 # endif
6238 /* Remove this function from the pending weak list so that
6239 we do not emit multiple .weak directives for it. */
6240 for (p = &weak_decls; (t = *p) ; )
6241 if (DECL_ASSEMBLER_NAME (decl) == DECL_ASSEMBLER_NAME (TREE_VALUE (t))
6242 || id == DECL_ASSEMBLER_NAME (TREE_VALUE (t)))
6243 *p = TREE_CHAIN (t);
6244 else
6245 p = &TREE_CHAIN (t);
6247 /* Remove weakrefs to the same target from the pending weakref
6248 list, for the same reason. */
6249 for (p = &weakref_targets; (t = *p) ; )
6251 if (id == ultimate_transparent_alias_target (&TREE_VALUE (t)))
6252 *p = TREE_CHAIN (t);
6253 else
6254 p = &TREE_CHAIN (t);
6257 #endif
6260 /* Output .symver directive. */
6262 void
6263 do_assemble_symver (tree decl, tree target)
6265 tree id = DECL_ASSEMBLER_NAME (decl);
6266 ultimate_transparent_alias_target (&id);
6267 ultimate_transparent_alias_target (&target);
6268 #ifdef ASM_OUTPUT_SYMVER_DIRECTIVE
6269 ASM_OUTPUT_SYMVER_DIRECTIVE (asm_out_file,
6270 IDENTIFIER_POINTER (target),
6271 IDENTIFIER_POINTER (id));
6272 #else
6273 error ("symver is only supported on ELF platforms");
6274 #endif
6277 /* Emit an assembler directive to make the symbol for DECL an alias to
6278 the symbol for TARGET. */
6280 void
6281 assemble_alias (tree decl, tree target)
6283 tree target_decl;
6285 if (lookup_attribute ("weakref", DECL_ATTRIBUTES (decl)))
6287 tree alias = DECL_ASSEMBLER_NAME (decl);
6289 ultimate_transparent_alias_target (&target);
6291 if (alias == target)
6292 error ("%qs symbol %q+D ultimately targets itself", "weakref", decl);
6293 if (TREE_PUBLIC (decl))
6294 error ("%qs symbol %q+D must have static linkage", "weakref", decl);
6296 else
6298 #if !defined (ASM_OUTPUT_DEF)
6299 # if !defined(ASM_OUTPUT_WEAK_ALIAS) && !defined (ASM_WEAKEN_DECL)
6300 error_at (DECL_SOURCE_LOCATION (decl),
6301 "alias definitions not supported in this configuration");
6302 TREE_ASM_WRITTEN (decl) = 1;
6303 return;
6304 # else
6305 if (!DECL_WEAK (decl))
6307 /* NB: ifunc_resolver isn't set when an error is detected. */
6308 if (TREE_CODE (decl) == FUNCTION_DECL
6309 && lookup_attribute ("ifunc", DECL_ATTRIBUTES (decl)))
6310 error_at (DECL_SOURCE_LOCATION (decl),
6311 "%qs is not supported in this configuration", "ifunc");
6312 else
6313 error_at (DECL_SOURCE_LOCATION (decl),
6314 "only weak aliases are supported in this configuration");
6315 TREE_ASM_WRITTEN (decl) = 1;
6316 return;
6318 # endif
6319 #endif
6321 TREE_USED (decl) = 1;
6323 /* Allow aliases to aliases. */
6324 if (TREE_CODE (decl) == FUNCTION_DECL)
6325 cgraph_node::get_create (decl)->alias = true;
6326 else
6327 varpool_node::get_create (decl)->alias = true;
6329 /* If the target has already been emitted, we don't have to queue the
6330 alias. This saves a tad of memory. */
6331 if (symtab->global_info_ready)
6332 target_decl = find_decl (target);
6333 else
6334 target_decl= NULL;
6335 if ((target_decl && TREE_ASM_WRITTEN (target_decl))
6336 || symtab->state >= EXPANSION)
6337 do_assemble_alias (decl, target);
6338 else
6340 alias_pair p = {decl, target};
6341 vec_safe_push (alias_pairs, p);
6345 /* Record and output a table of translations from original function
6346 to its transaction aware clone. Note that tm_pure functions are
6347 considered to be their own clone. */
6349 struct tm_clone_hasher : ggc_cache_ptr_hash<tree_map>
6351 static hashval_t hash (tree_map *m) { return tree_map_hash (m); }
6352 static bool equal (tree_map *a, tree_map *b) { return tree_map_eq (a, b); }
6354 static int
6355 keep_cache_entry (tree_map *&e)
6357 return ggc_marked_p (e->base.from);
6361 static GTY((cache)) hash_table<tm_clone_hasher> *tm_clone_hash;
6363 void
6364 record_tm_clone_pair (tree o, tree n)
6366 struct tree_map **slot, *h;
6368 if (tm_clone_hash == NULL)
6369 tm_clone_hash = hash_table<tm_clone_hasher>::create_ggc (32);
6371 h = ggc_alloc<tree_map> ();
6372 h->hash = htab_hash_pointer (o);
6373 h->base.from = o;
6374 h->to = n;
6376 slot = tm_clone_hash->find_slot_with_hash (h, h->hash, INSERT);
6377 *slot = h;
6380 tree
6381 get_tm_clone_pair (tree o)
6383 if (tm_clone_hash)
6385 struct tree_map *h, in;
6387 in.base.from = o;
6388 in.hash = htab_hash_pointer (o);
6389 h = tm_clone_hash->find_with_hash (&in, in.hash);
6390 if (h)
6391 return h->to;
6393 return NULL_TREE;
6396 struct tm_alias_pair
6398 unsigned int uid;
6399 tree from;
6400 tree to;
6404 /* Dump the actual pairs to the .tm_clone_table section. */
6406 static void
6407 dump_tm_clone_pairs (vec<tm_alias_pair> tm_alias_pairs)
6409 unsigned i;
6410 tm_alias_pair *p;
6411 bool switched = false;
6413 FOR_EACH_VEC_ELT (tm_alias_pairs, i, p)
6415 tree src = p->from;
6416 tree dst = p->to;
6417 struct cgraph_node *src_n = cgraph_node::get (src);
6418 struct cgraph_node *dst_n = cgraph_node::get (dst);
6420 /* The function ipa_tm_create_version() marks the clone as needed if
6421 the original function was needed. But we also mark the clone as
6422 needed if we ever called the clone indirectly through
6423 TM_GETTMCLONE. If neither of these are true, we didn't generate
6424 a clone, and we didn't call it indirectly... no sense keeping it
6425 in the clone table. */
6426 if (!dst_n || !dst_n->definition)
6427 continue;
6429 /* This covers the case where we have optimized the original
6430 function away, and only access the transactional clone. */
6431 if (!src_n || !src_n->definition)
6432 continue;
6434 if (!switched)
6436 switch_to_section (targetm.asm_out.tm_clone_table_section ());
6437 assemble_align (POINTER_SIZE);
6438 switched = true;
6441 assemble_integer (XEXP (DECL_RTL (src), 0),
6442 POINTER_SIZE_UNITS, POINTER_SIZE, 1);
6443 assemble_integer (XEXP (DECL_RTL (dst), 0),
6444 POINTER_SIZE_UNITS, POINTER_SIZE, 1);
6448 /* Provide a default for the tm_clone_table section. */
6450 section *
6451 default_clone_table_section (void)
6453 return get_named_section (NULL, ".tm_clone_table", 3);
6456 /* Helper comparison function for qsorting by the DECL_UID stored in
6457 alias_pair->emitted_diags. */
6459 static int
6460 tm_alias_pair_cmp (const void *x, const void *y)
6462 const tm_alias_pair *p1 = (const tm_alias_pair *) x;
6463 const tm_alias_pair *p2 = (const tm_alias_pair *) y;
6464 if (p1->uid < p2->uid)
6465 return -1;
6466 if (p1->uid > p2->uid)
6467 return 1;
6468 return 0;
6471 void
6472 finish_tm_clone_pairs (void)
6474 vec<tm_alias_pair> tm_alias_pairs = vNULL;
6476 if (tm_clone_hash == NULL)
6477 return;
6479 /* We need a determenistic order for the .tm_clone_table, otherwise
6480 we will get bootstrap comparison failures, so dump the hash table
6481 to a vector, sort it, and dump the vector. */
6483 /* Dump the hashtable to a vector. */
6484 tree_map *map;
6485 hash_table<tm_clone_hasher>::iterator iter;
6486 FOR_EACH_HASH_TABLE_ELEMENT (*tm_clone_hash, map, tree_map *, iter)
6488 tm_alias_pair p = {DECL_UID (map->base.from), map->base.from, map->to};
6489 tm_alias_pairs.safe_push (p);
6491 /* Sort it. */
6492 tm_alias_pairs.qsort (tm_alias_pair_cmp);
6494 /* Dump it. */
6495 dump_tm_clone_pairs (tm_alias_pairs);
6497 tm_clone_hash->empty ();
6498 tm_clone_hash = NULL;
6499 tm_alias_pairs.release ();
6503 /* Emit an assembler directive to set symbol for DECL visibility to
6504 the visibility type VIS, which must not be VISIBILITY_DEFAULT. */
6506 void
6507 default_assemble_visibility (tree decl ATTRIBUTE_UNUSED,
6508 int vis ATTRIBUTE_UNUSED)
6510 #ifdef HAVE_GAS_HIDDEN
6511 static const char * const visibility_types[] = {
6512 NULL, "protected", "hidden", "internal"
6515 const char *name, *type;
6516 tree id;
6518 id = DECL_ASSEMBLER_NAME (decl);
6519 ultimate_transparent_alias_target (&id);
6520 name = IDENTIFIER_POINTER (id);
6522 type = visibility_types[vis];
6524 fprintf (asm_out_file, "\t.%s\t", type);
6525 assemble_name (asm_out_file, name);
6526 fprintf (asm_out_file, "\n");
6527 #else
6528 if (!DECL_ARTIFICIAL (decl))
6529 warning (OPT_Wattributes, "visibility attribute not supported "
6530 "in this configuration; ignored");
6531 #endif
6534 /* A helper function to call assemble_visibility when needed for a decl. */
6537 maybe_assemble_visibility (tree decl)
6539 enum symbol_visibility vis = DECL_VISIBILITY (decl);
6540 if (vis != VISIBILITY_DEFAULT)
6542 targetm.asm_out.assemble_visibility (decl, vis);
6543 return 1;
6545 else
6546 return 0;
6549 /* Returns 1 if the target configuration supports defining public symbols
6550 so that one of them will be chosen at link time instead of generating a
6551 multiply-defined symbol error, whether through the use of weak symbols or
6552 a target-specific mechanism for having duplicates discarded. */
6555 supports_one_only (void)
6557 if (SUPPORTS_ONE_ONLY)
6558 return 1;
6559 return TARGET_SUPPORTS_WEAK;
6562 /* Set up DECL as a public symbol that can be defined in multiple
6563 translation units without generating a linker error. */
6565 void
6566 make_decl_one_only (tree decl, tree comdat_group)
6568 struct symtab_node *symbol;
6569 gcc_assert (VAR_OR_FUNCTION_DECL_P (decl));
6571 TREE_PUBLIC (decl) = 1;
6573 if (VAR_P (decl))
6574 symbol = varpool_node::get_create (decl);
6575 else
6576 symbol = cgraph_node::get_create (decl);
6578 if (SUPPORTS_ONE_ONLY)
6580 #ifdef MAKE_DECL_ONE_ONLY
6581 MAKE_DECL_ONE_ONLY (decl);
6582 #endif
6583 symbol->set_comdat_group (comdat_group);
6585 else if (VAR_P (decl)
6586 && (DECL_INITIAL (decl) == 0
6587 || (!in_lto_p && DECL_INITIAL (decl) == error_mark_node)))
6588 DECL_COMMON (decl) = 1;
6589 else
6591 gcc_assert (TARGET_SUPPORTS_WEAK);
6592 DECL_WEAK (decl) = 1;
6596 void
6597 init_varasm_once (void)
6599 section_htab = hash_table<section_hasher>::create_ggc (31);
6600 object_block_htab = hash_table<object_block_hasher>::create_ggc (31);
6601 const_desc_htab = hash_table<tree_descriptor_hasher>::create_ggc (1009);
6603 shared_constant_pool = create_constant_pool ();
6605 #ifdef TEXT_SECTION_ASM_OP
6606 text_section = get_unnamed_section (SECTION_CODE, output_section_asm_op,
6607 TEXT_SECTION_ASM_OP);
6608 #endif
6610 #ifdef DATA_SECTION_ASM_OP
6611 data_section = get_unnamed_section (SECTION_WRITE, output_section_asm_op,
6612 DATA_SECTION_ASM_OP);
6613 #endif
6615 #ifdef SDATA_SECTION_ASM_OP
6616 sdata_section = get_unnamed_section (SECTION_WRITE, output_section_asm_op,
6617 SDATA_SECTION_ASM_OP);
6618 #endif
6620 #ifdef READONLY_DATA_SECTION_ASM_OP
6621 readonly_data_section = get_unnamed_section (0, output_section_asm_op,
6622 READONLY_DATA_SECTION_ASM_OP);
6623 #endif
6625 #ifdef CTORS_SECTION_ASM_OP
6626 ctors_section = get_unnamed_section (0, output_section_asm_op,
6627 CTORS_SECTION_ASM_OP);
6628 #endif
6630 #ifdef DTORS_SECTION_ASM_OP
6631 dtors_section = get_unnamed_section (0, output_section_asm_op,
6632 DTORS_SECTION_ASM_OP);
6633 #endif
6635 #ifdef BSS_SECTION_ASM_OP
6636 bss_section = get_unnamed_section (SECTION_WRITE | SECTION_BSS,
6637 output_section_asm_op,
6638 BSS_SECTION_ASM_OP);
6639 #endif
6641 #ifdef SBSS_SECTION_ASM_OP
6642 sbss_section = get_unnamed_section (SECTION_WRITE | SECTION_BSS,
6643 output_section_asm_op,
6644 SBSS_SECTION_ASM_OP);
6645 #endif
6647 tls_comm_section = get_noswitch_section (SECTION_WRITE | SECTION_BSS
6648 | SECTION_COMMON, emit_tls_common);
6649 lcomm_section = get_noswitch_section (SECTION_WRITE | SECTION_BSS
6650 | SECTION_COMMON, emit_local);
6651 comm_section = get_noswitch_section (SECTION_WRITE | SECTION_BSS
6652 | SECTION_COMMON, emit_common);
6654 #if defined ASM_OUTPUT_ALIGNED_BSS
6655 bss_noswitch_section = get_noswitch_section (SECTION_WRITE | SECTION_BSS,
6656 emit_bss);
6657 #endif
6659 targetm.asm_out.init_sections ();
6661 if (readonly_data_section == NULL)
6662 readonly_data_section = text_section;
6664 #ifdef ASM_OUTPUT_EXTERNAL
6665 pending_assemble_externals_set = new hash_set<tree>;
6666 #endif
6669 enum tls_model
6670 decl_default_tls_model (const_tree decl)
6672 enum tls_model kind;
6673 bool is_local;
6675 is_local = targetm.binds_local_p (decl);
6676 if (!flag_shlib)
6678 if (is_local)
6679 kind = TLS_MODEL_LOCAL_EXEC;
6680 else
6681 kind = TLS_MODEL_INITIAL_EXEC;
6684 /* Local dynamic is inefficient when we're not combining the
6685 parts of the address. */
6686 else if (optimize && is_local)
6687 kind = TLS_MODEL_LOCAL_DYNAMIC;
6688 else
6689 kind = TLS_MODEL_GLOBAL_DYNAMIC;
6690 if (kind < flag_tls_default)
6691 kind = flag_tls_default;
6693 return kind;
6696 /* Select a set of attributes for section NAME based on the properties
6697 of DECL and whether or not RELOC indicates that DECL's initializer
6698 might contain runtime relocations.
6700 We make the section read-only and executable for a function decl,
6701 read-only for a const data decl, and writable for a non-const data decl. */
6703 unsigned int
6704 default_section_type_flags (tree decl, const char *name, int reloc)
6706 unsigned int flags;
6708 if (decl && TREE_CODE (decl) == FUNCTION_DECL)
6709 flags = SECTION_CODE;
6710 else if (decl)
6712 enum section_category category
6713 = categorize_decl_for_section (decl, reloc);
6714 if (decl_readonly_section_1 (category))
6715 flags = 0;
6716 else if (category == SECCAT_DATA_REL_RO
6717 || category == SECCAT_DATA_REL_RO_LOCAL)
6718 flags = SECTION_WRITE | SECTION_RELRO;
6719 else
6720 flags = SECTION_WRITE;
6722 else
6724 flags = SECTION_WRITE;
6725 if (strcmp (name, ".data.rel.ro") == 0
6726 || strcmp (name, ".data.rel.ro.local") == 0)
6727 flags |= SECTION_RELRO;
6730 if (decl && DECL_P (decl) && DECL_COMDAT_GROUP (decl))
6731 flags |= SECTION_LINKONCE;
6733 if (strcmp (name, ".vtable_map_vars") == 0)
6734 flags |= SECTION_LINKONCE;
6736 if (decl && VAR_P (decl) && DECL_THREAD_LOCAL_P (decl))
6737 flags |= SECTION_TLS | SECTION_WRITE;
6739 if (strcmp (name, ".bss") == 0
6740 || startswith (name, ".bss.")
6741 || startswith (name, ".gnu.linkonce.b.")
6742 || strcmp (name, ".persistent.bss") == 0
6743 || strcmp (name, ".sbss") == 0
6744 || startswith (name, ".sbss.")
6745 || startswith (name, ".gnu.linkonce.sb."))
6746 flags |= SECTION_BSS;
6748 if (strcmp (name, ".tdata") == 0
6749 || startswith (name, ".tdata.")
6750 || startswith (name, ".gnu.linkonce.td."))
6751 flags |= SECTION_TLS;
6753 if (strcmp (name, ".tbss") == 0
6754 || startswith (name, ".tbss.")
6755 || startswith (name, ".gnu.linkonce.tb."))
6756 flags |= SECTION_TLS | SECTION_BSS;
6758 if (strcmp (name, ".noinit") == 0)
6759 flags |= SECTION_WRITE | SECTION_BSS | SECTION_NOTYPE;
6761 if (strcmp (name, ".persistent") == 0)
6762 flags |= SECTION_WRITE | SECTION_NOTYPE;
6764 /* Various sections have special ELF types that the assembler will
6765 assign by default based on the name. They are neither SHT_PROGBITS
6766 nor SHT_NOBITS, so when changing sections we don't want to print a
6767 section type (@progbits or @nobits). Rather than duplicating the
6768 assembler's knowledge of what those special name patterns are, just
6769 let the assembler choose the type if we don't know a specific
6770 reason to set it to something other than the default. SHT_PROGBITS
6771 is the default for sections whose name is not specially known to
6772 the assembler, so it does no harm to leave the choice to the
6773 assembler when @progbits is the best thing we know to use. If
6774 someone is silly enough to emit code or TLS variables to one of
6775 these sections, then don't handle them specially.
6777 default_elf_asm_named_section (below) handles the BSS, TLS, ENTSIZE, and
6778 LINKONCE cases when NOTYPE is not set, so leave those to its logic. */
6779 if (!(flags & (SECTION_CODE | SECTION_BSS | SECTION_TLS | SECTION_ENTSIZE))
6780 && !(HAVE_COMDAT_GROUP && (flags & SECTION_LINKONCE)))
6781 flags |= SECTION_NOTYPE;
6783 return flags;
6786 /* Return true if the target supports some form of global BSS,
6787 either through bss_noswitch_section, or by selecting a BSS
6788 section in TARGET_ASM_SELECT_SECTION. */
6790 bool
6791 have_global_bss_p (void)
6793 return bss_noswitch_section || targetm.have_switchable_bss_sections;
6796 /* Output assembly to switch to section NAME with attribute FLAGS.
6797 Four variants for common object file formats. */
6799 void
6800 default_no_named_section (const char *name ATTRIBUTE_UNUSED,
6801 unsigned int flags ATTRIBUTE_UNUSED,
6802 tree decl ATTRIBUTE_UNUSED)
6804 /* Some object formats don't support named sections at all. The
6805 front-end should already have flagged this as an error. */
6806 gcc_unreachable ();
6809 #ifndef TLS_SECTION_ASM_FLAG
6810 #define TLS_SECTION_ASM_FLAG 'T'
6811 #endif
6813 void
6814 default_elf_asm_named_section (const char *name, unsigned int flags,
6815 tree decl)
6817 char flagchars[11], *f = flagchars;
6818 unsigned int numeric_value = 0;
6820 /* If we have already declared this section, we can use an
6821 abbreviated form to switch back to it -- unless this section is
6822 part of a COMDAT groups or with SHF_GNU_RETAIN or with SHF_LINK_ORDER,
6823 in which case GAS requires the full declaration every time. */
6824 if (!(HAVE_COMDAT_GROUP && (flags & SECTION_LINKONCE))
6825 && !(flags & (SECTION_RETAIN | SECTION_LINK_ORDER))
6826 && (flags & SECTION_DECLARED))
6828 fprintf (asm_out_file, "\t.section\t%s\n", name);
6829 return;
6832 /* If we have a machine specific flag, then use the numeric value to pass
6833 this on to GAS. */
6834 if (targetm.asm_out.elf_flags_numeric (flags, &numeric_value))
6835 snprintf (f, sizeof (flagchars), "0x%08x", numeric_value);
6836 else
6838 if (!(flags & SECTION_DEBUG))
6839 *f++ = 'a';
6840 #if HAVE_GAS_SECTION_EXCLUDE
6841 if (flags & SECTION_EXCLUDE)
6842 *f++ = 'e';
6843 #endif
6844 if (flags & SECTION_WRITE)
6845 *f++ = 'w';
6846 if (flags & SECTION_CODE)
6847 *f++ = 'x';
6848 if (flags & SECTION_SMALL)
6849 *f++ = 's';
6850 if (flags & SECTION_MERGE)
6851 *f++ = 'M';
6852 if (flags & SECTION_STRINGS)
6853 *f++ = 'S';
6854 if (flags & SECTION_TLS)
6855 *f++ = TLS_SECTION_ASM_FLAG;
6856 if (HAVE_COMDAT_GROUP && (flags & SECTION_LINKONCE))
6857 *f++ = 'G';
6858 if (flags & SECTION_RETAIN)
6859 *f++ = 'R';
6860 if (flags & SECTION_LINK_ORDER)
6861 *f++ = 'o';
6862 #ifdef MACH_DEP_SECTION_ASM_FLAG
6863 if (flags & SECTION_MACH_DEP)
6864 *f++ = MACH_DEP_SECTION_ASM_FLAG;
6865 #endif
6866 *f = '\0';
6869 fprintf (asm_out_file, "\t.section\t%s,\"%s\"", name, flagchars);
6871 /* default_section_type_flags (above) knows which flags need special
6872 handling here, and sets NOTYPE when none of these apply so that the
6873 assembler's logic for default types can apply to user-chosen
6874 section names. */
6875 if (!(flags & SECTION_NOTYPE))
6877 const char *type;
6878 const char *format;
6880 if (flags & SECTION_BSS)
6881 type = "nobits";
6882 else
6883 type = "progbits";
6885 format = ",@%s";
6886 /* On platforms that use "@" as the assembly comment character,
6887 use "%" instead. */
6888 if (strcmp (ASM_COMMENT_START, "@") == 0)
6889 format = ",%%%s";
6890 fprintf (asm_out_file, format, type);
6892 if (flags & SECTION_ENTSIZE)
6893 fprintf (asm_out_file, ",%d", flags & SECTION_ENTSIZE);
6894 if (flags & SECTION_LINK_ORDER)
6896 tree id = DECL_ASSEMBLER_NAME (decl);
6897 ultimate_transparent_alias_target (&id);
6898 const char *name = IDENTIFIER_POINTER (id);
6899 name = targetm.strip_name_encoding (name);
6900 fprintf (asm_out_file, ",%s", name);
6902 if (HAVE_COMDAT_GROUP && (flags & SECTION_LINKONCE))
6904 if (TREE_CODE (decl) == IDENTIFIER_NODE)
6905 fprintf (asm_out_file, ",%s,comdat", IDENTIFIER_POINTER (decl));
6906 else
6907 fprintf (asm_out_file, ",%s,comdat",
6908 IDENTIFIER_POINTER (DECL_COMDAT_GROUP (decl)));
6912 putc ('\n', asm_out_file);
6915 void
6916 default_coff_asm_named_section (const char *name, unsigned int flags,
6917 tree decl ATTRIBUTE_UNUSED)
6919 char flagchars[8], *f = flagchars;
6921 if (flags & SECTION_WRITE)
6922 *f++ = 'w';
6923 if (flags & SECTION_CODE)
6924 *f++ = 'x';
6925 *f = '\0';
6927 fprintf (asm_out_file, "\t.section\t%s,\"%s\"\n", name, flagchars);
6930 void
6931 default_pe_asm_named_section (const char *name, unsigned int flags,
6932 tree decl)
6934 default_coff_asm_named_section (name, flags, decl);
6936 if (flags & SECTION_LINKONCE)
6938 /* Functions may have been compiled at various levels of
6939 optimization so we can't use `same_size' here.
6940 Instead, have the linker pick one. */
6941 fprintf (asm_out_file, "\t.linkonce %s\n",
6942 (flags & SECTION_CODE ? "discard" : "same_size"));
6946 /* The lame default section selector. */
6948 section *
6949 default_select_section (tree decl, int reloc,
6950 unsigned HOST_WIDE_INT align ATTRIBUTE_UNUSED)
6952 if (DECL_P (decl))
6954 if (decl_readonly_section (decl, reloc))
6955 return readonly_data_section;
6957 else if (TREE_CODE (decl) == CONSTRUCTOR)
6959 if (! ((flag_pic && reloc)
6960 || !TREE_READONLY (decl)
6961 || TREE_SIDE_EFFECTS (decl)
6962 || !TREE_CONSTANT (decl)))
6963 return readonly_data_section;
6965 else if (TREE_CODE (decl) == STRING_CST)
6966 return readonly_data_section;
6967 else if (! (flag_pic && reloc))
6968 return readonly_data_section;
6970 return data_section;
6973 enum section_category
6974 categorize_decl_for_section (const_tree decl, int reloc)
6976 enum section_category ret;
6978 if (TREE_CODE (decl) == FUNCTION_DECL)
6979 return SECCAT_TEXT;
6980 else if (TREE_CODE (decl) == STRING_CST)
6982 if ((flag_sanitize & SANITIZE_ADDRESS)
6983 && asan_protect_global (CONST_CAST_TREE (decl)))
6984 /* or !flag_merge_constants */
6985 return SECCAT_RODATA;
6986 else
6987 return SECCAT_RODATA_MERGE_STR;
6989 else if (VAR_P (decl))
6991 tree d = CONST_CAST_TREE (decl);
6992 if (bss_initializer_p (decl))
6993 ret = SECCAT_BSS;
6994 else if (! TREE_READONLY (decl)
6995 || TREE_SIDE_EFFECTS (decl)
6996 || (DECL_INITIAL (decl)
6997 && ! TREE_CONSTANT (DECL_INITIAL (decl))))
6999 /* Here the reloc_rw_mask is not testing whether the section should
7000 be read-only or not, but whether the dynamic link will have to
7001 do something. If so, we wish to segregate the data in order to
7002 minimize cache misses inside the dynamic linker. */
7003 if (reloc & targetm.asm_out.reloc_rw_mask ())
7004 ret = reloc == 1 ? SECCAT_DATA_REL_LOCAL : SECCAT_DATA_REL;
7005 else
7006 ret = SECCAT_DATA;
7008 else if (reloc & targetm.asm_out.reloc_rw_mask ())
7009 ret = reloc == 1 ? SECCAT_DATA_REL_RO_LOCAL : SECCAT_DATA_REL_RO;
7010 else if (reloc || flag_merge_constants < 2
7011 || ((flag_sanitize & SANITIZE_ADDRESS)
7012 /* PR 81697: for architectures that use section anchors we
7013 need to ignore DECL_RTL_SET_P (decl) for string constants
7014 inside this asan_protect_global call because otherwise
7015 we'll wrongly put them into SECCAT_RODATA_MERGE_CONST
7016 section, set DECL_RTL (decl) later on and add DECL to
7017 protected globals via successive asan_protect_global
7018 calls. In this scenario we'll end up with wrong
7019 alignment of these strings at runtime and possible ASan
7020 false positives. */
7021 && asan_protect_global (d, use_object_blocks_p ()
7022 && use_blocks_for_decl_p (d))))
7023 /* C and C++ don't allow different variables to share the same
7024 location. -fmerge-all-constants allows even that (at the
7025 expense of not conforming). */
7026 ret = SECCAT_RODATA;
7027 else if (DECL_INITIAL (decl)
7028 && TREE_CODE (DECL_INITIAL (decl)) == STRING_CST)
7029 ret = SECCAT_RODATA_MERGE_STR_INIT;
7030 else
7031 ret = SECCAT_RODATA_MERGE_CONST;
7033 else if (TREE_CODE (decl) == CONSTRUCTOR)
7035 if ((reloc & targetm.asm_out.reloc_rw_mask ())
7036 || TREE_SIDE_EFFECTS (decl)
7037 || ! TREE_CONSTANT (decl))
7038 ret = SECCAT_DATA;
7039 else
7040 ret = SECCAT_RODATA;
7042 else
7043 ret = SECCAT_RODATA;
7045 /* There are no read-only thread-local sections. */
7046 if (VAR_P (decl) && DECL_THREAD_LOCAL_P (decl))
7048 /* Note that this would be *just* SECCAT_BSS, except that there's
7049 no concept of a read-only thread-local-data section. */
7050 if (ret == SECCAT_BSS
7051 || DECL_INITIAL (decl) == NULL
7052 || (flag_zero_initialized_in_bss
7053 && initializer_zerop (DECL_INITIAL (decl))))
7054 ret = SECCAT_TBSS;
7055 else
7056 ret = SECCAT_TDATA;
7059 /* If the target uses small data sections, select it. */
7060 else if (targetm.in_small_data_p (decl))
7062 if (ret == SECCAT_BSS)
7063 ret = SECCAT_SBSS;
7064 else if (targetm.have_srodata_section && ret == SECCAT_RODATA)
7065 ret = SECCAT_SRODATA;
7066 else
7067 ret = SECCAT_SDATA;
7070 return ret;
7073 static bool
7074 decl_readonly_section_1 (enum section_category category)
7076 switch (category)
7078 case SECCAT_RODATA:
7079 case SECCAT_RODATA_MERGE_STR:
7080 case SECCAT_RODATA_MERGE_STR_INIT:
7081 case SECCAT_RODATA_MERGE_CONST:
7082 case SECCAT_SRODATA:
7083 return true;
7084 default:
7085 return false;
7089 bool
7090 decl_readonly_section (const_tree decl, int reloc)
7092 return decl_readonly_section_1 (categorize_decl_for_section (decl, reloc));
7095 /* Select a section based on the above categorization. */
7097 section *
7098 default_elf_select_section (tree decl, int reloc,
7099 unsigned HOST_WIDE_INT align)
7101 const char *sname;
7103 switch (categorize_decl_for_section (decl, reloc))
7105 case SECCAT_TEXT:
7106 /* We're not supposed to be called on FUNCTION_DECLs. */
7107 gcc_unreachable ();
7108 case SECCAT_RODATA:
7109 return readonly_data_section;
7110 case SECCAT_RODATA_MERGE_STR:
7111 return mergeable_string_section (decl, align, 0);
7112 case SECCAT_RODATA_MERGE_STR_INIT:
7113 return mergeable_string_section (DECL_INITIAL (decl), align, 0);
7114 case SECCAT_RODATA_MERGE_CONST:
7115 return mergeable_constant_section (DECL_MODE (decl), align, 0);
7116 case SECCAT_SRODATA:
7117 sname = ".sdata2";
7118 break;
7119 case SECCAT_DATA:
7120 if (DECL_P (decl) && DECL_PERSISTENT_P (decl))
7122 sname = ".persistent";
7123 break;
7125 return data_section;
7126 case SECCAT_DATA_REL:
7127 sname = ".data.rel";
7128 break;
7129 case SECCAT_DATA_REL_LOCAL:
7130 sname = ".data.rel.local";
7131 break;
7132 case SECCAT_DATA_REL_RO:
7133 sname = ".data.rel.ro";
7134 break;
7135 case SECCAT_DATA_REL_RO_LOCAL:
7136 sname = ".data.rel.ro.local";
7137 break;
7138 case SECCAT_SDATA:
7139 sname = ".sdata";
7140 break;
7141 case SECCAT_TDATA:
7142 sname = ".tdata";
7143 break;
7144 case SECCAT_BSS:
7145 if (DECL_P (decl) && DECL_NOINIT_P (decl))
7147 sname = ".noinit";
7148 break;
7150 if (bss_section)
7151 return bss_section;
7152 sname = ".bss";
7153 break;
7154 case SECCAT_SBSS:
7155 sname = ".sbss";
7156 break;
7157 case SECCAT_TBSS:
7158 sname = ".tbss";
7159 break;
7160 default:
7161 gcc_unreachable ();
7164 return get_named_section (decl, sname, reloc);
7167 /* Construct a unique section name based on the decl name and the
7168 categorization performed above. */
7170 void
7171 default_unique_section (tree decl, int reloc)
7173 /* We only need to use .gnu.linkonce if we don't have COMDAT groups. */
7174 bool one_only = DECL_ONE_ONLY (decl) && !HAVE_COMDAT_GROUP;
7175 const char *prefix, *name, *linkonce;
7176 char *string;
7177 tree id;
7179 switch (categorize_decl_for_section (decl, reloc))
7181 case SECCAT_TEXT:
7182 prefix = one_only ? ".t" : ".text";
7183 break;
7184 case SECCAT_RODATA:
7185 case SECCAT_RODATA_MERGE_STR:
7186 case SECCAT_RODATA_MERGE_STR_INIT:
7187 case SECCAT_RODATA_MERGE_CONST:
7188 prefix = one_only ? ".r" : ".rodata";
7189 break;
7190 case SECCAT_SRODATA:
7191 prefix = one_only ? ".s2" : ".sdata2";
7192 break;
7193 case SECCAT_DATA:
7194 prefix = one_only ? ".d" : ".data";
7195 if (DECL_P (decl) && DECL_PERSISTENT_P (decl))
7197 prefix = one_only ? ".p" : ".persistent";
7198 break;
7200 break;
7201 case SECCAT_DATA_REL:
7202 prefix = one_only ? ".d.rel" : ".data.rel";
7203 break;
7204 case SECCAT_DATA_REL_LOCAL:
7205 prefix = one_only ? ".d.rel.local" : ".data.rel.local";
7206 break;
7207 case SECCAT_DATA_REL_RO:
7208 prefix = one_only ? ".d.rel.ro" : ".data.rel.ro";
7209 break;
7210 case SECCAT_DATA_REL_RO_LOCAL:
7211 prefix = one_only ? ".d.rel.ro.local" : ".data.rel.ro.local";
7212 break;
7213 case SECCAT_SDATA:
7214 prefix = one_only ? ".s" : ".sdata";
7215 break;
7216 case SECCAT_BSS:
7217 if (DECL_P (decl) && DECL_NOINIT_P (decl))
7219 prefix = one_only ? ".n" : ".noinit";
7220 break;
7222 prefix = one_only ? ".b" : ".bss";
7223 break;
7224 case SECCAT_SBSS:
7225 prefix = one_only ? ".sb" : ".sbss";
7226 break;
7227 case SECCAT_TDATA:
7228 prefix = one_only ? ".td" : ".tdata";
7229 break;
7230 case SECCAT_TBSS:
7231 prefix = one_only ? ".tb" : ".tbss";
7232 break;
7233 default:
7234 gcc_unreachable ();
7237 id = DECL_ASSEMBLER_NAME (decl);
7238 ultimate_transparent_alias_target (&id);
7239 name = IDENTIFIER_POINTER (id);
7240 name = targetm.strip_name_encoding (name);
7242 /* If we're using one_only, then there needs to be a .gnu.linkonce
7243 prefix to the section name. */
7244 linkonce = one_only ? ".gnu.linkonce" : "";
7246 string = ACONCAT ((linkonce, prefix, ".", name, NULL));
7248 set_decl_section_name (decl, string);
7251 /* Subroutine of compute_reloc_for_rtx for leaf rtxes. */
7253 static int
7254 compute_reloc_for_rtx_1 (const_rtx x)
7256 switch (GET_CODE (x))
7258 case SYMBOL_REF:
7259 return SYMBOL_REF_LOCAL_P (x) ? 1 : 2;
7260 case LABEL_REF:
7261 return 1;
7262 default:
7263 return 0;
7267 /* Like compute_reloc_for_constant, except for an RTX. The return value
7268 is a mask for which bit 1 indicates a global relocation, and bit 0
7269 indicates a local relocation. Used by default_select_rtx_section
7270 and default_elf_select_rtx_section. */
7272 static int
7273 compute_reloc_for_rtx (const_rtx x)
7275 switch (GET_CODE (x))
7277 case SYMBOL_REF:
7278 case LABEL_REF:
7279 return compute_reloc_for_rtx_1 (x);
7281 case CONST:
7283 int reloc = 0;
7284 subrtx_iterator::array_type array;
7285 FOR_EACH_SUBRTX (iter, array, x, ALL)
7286 reloc |= compute_reloc_for_rtx_1 (*iter);
7287 return reloc;
7290 default:
7291 return 0;
7295 section *
7296 default_select_rtx_section (machine_mode mode ATTRIBUTE_UNUSED,
7297 rtx x,
7298 unsigned HOST_WIDE_INT align ATTRIBUTE_UNUSED)
7300 if (compute_reloc_for_rtx (x) & targetm.asm_out.reloc_rw_mask ())
7301 return data_section;
7302 else
7303 return readonly_data_section;
7306 section *
7307 default_elf_select_rtx_section (machine_mode mode, rtx x,
7308 unsigned HOST_WIDE_INT align)
7310 int reloc = compute_reloc_for_rtx (x);
7312 /* ??? Handle small data here somehow. */
7314 if (reloc & targetm.asm_out.reloc_rw_mask ())
7316 if (reloc == 1)
7317 return get_named_section (NULL, ".data.rel.ro.local", 1);
7318 else
7319 return get_named_section (NULL, ".data.rel.ro", 3);
7322 return mergeable_constant_section (mode, align, 0);
7325 /* Set the generally applicable flags on the SYMBOL_REF for EXP. */
7327 void
7328 default_encode_section_info (tree decl, rtx rtl, int first ATTRIBUTE_UNUSED)
7330 rtx symbol;
7331 int flags;
7333 /* Careful not to prod global register variables. */
7334 if (!MEM_P (rtl))
7335 return;
7336 symbol = XEXP (rtl, 0);
7337 if (GET_CODE (symbol) != SYMBOL_REF)
7338 return;
7340 flags = SYMBOL_REF_FLAGS (symbol) & SYMBOL_FLAG_HAS_BLOCK_INFO;
7341 if (TREE_CODE (decl) == FUNCTION_DECL)
7342 flags |= SYMBOL_FLAG_FUNCTION;
7343 if (targetm.binds_local_p (decl))
7344 flags |= SYMBOL_FLAG_LOCAL;
7345 if (VAR_P (decl) && DECL_THREAD_LOCAL_P (decl))
7346 flags |= DECL_TLS_MODEL (decl) << SYMBOL_FLAG_TLS_SHIFT;
7347 else if (targetm.in_small_data_p (decl))
7348 flags |= SYMBOL_FLAG_SMALL;
7349 /* ??? Why is DECL_EXTERNAL ever set for non-PUBLIC names? Without
7350 being PUBLIC, the thing *must* be defined in this translation unit.
7351 Prevent this buglet from being propagated into rtl code as well. */
7352 if (DECL_P (decl) && DECL_EXTERNAL (decl) && TREE_PUBLIC (decl))
7353 flags |= SYMBOL_FLAG_EXTERNAL;
7355 SYMBOL_REF_FLAGS (symbol) = flags;
7358 /* By default, we do nothing for encode_section_info, so we need not
7359 do anything but discard the '*' marker. */
7361 const char *
7362 default_strip_name_encoding (const char *str)
7364 return str + (*str == '*');
7367 #ifdef ASM_OUTPUT_DEF
7368 /* The default implementation of TARGET_ASM_OUTPUT_ANCHOR. Define the
7369 anchor relative to ".", the current section position. */
7371 void
7372 default_asm_output_anchor (rtx symbol)
7374 char buffer[100];
7376 sprintf (buffer, "*. + " HOST_WIDE_INT_PRINT_DEC,
7377 SYMBOL_REF_BLOCK_OFFSET (symbol));
7378 ASM_OUTPUT_DEF (asm_out_file, XSTR (symbol, 0), buffer);
7380 #endif
7382 /* The default implementation of TARGET_USE_ANCHORS_FOR_SYMBOL_P. */
7384 bool
7385 default_use_anchors_for_symbol_p (const_rtx symbol)
7387 tree decl;
7388 section *sect = SYMBOL_REF_BLOCK (symbol)->sect;
7390 /* This function should only be called with non-zero SYMBOL_REF_BLOCK,
7391 furthermore get_block_for_section should not create object blocks
7392 for mergeable sections. */
7393 gcc_checking_assert (sect && !(sect->common.flags & SECTION_MERGE));
7395 /* Don't use anchors for small data sections. The small data register
7396 acts as an anchor for such sections. */
7397 if (sect->common.flags & SECTION_SMALL)
7398 return false;
7400 decl = SYMBOL_REF_DECL (symbol);
7401 if (decl && DECL_P (decl))
7403 /* Don't use section anchors for decls that might be defined or
7404 usurped by other modules. */
7405 if (TREE_PUBLIC (decl) && !decl_binds_to_current_def_p (decl))
7406 return false;
7408 /* Don't use section anchors for decls that will be placed in a
7409 small data section. */
7410 /* ??? Ideally, this check would be redundant with the SECTION_SMALL
7411 one above. The problem is that we only use SECTION_SMALL for
7412 sections that should be marked as small in the section directive. */
7413 if (targetm.in_small_data_p (decl))
7414 return false;
7416 /* Don't use section anchors for decls that won't fit inside a single
7417 anchor range to reduce the amount of instructions required to refer
7418 to the entire declaration. */
7419 if (DECL_SIZE_UNIT (decl) == NULL_TREE
7420 || !tree_fits_uhwi_p (DECL_SIZE_UNIT (decl))
7421 || (tree_to_uhwi (DECL_SIZE_UNIT (decl))
7422 >= (unsigned HOST_WIDE_INT) targetm.max_anchor_offset))
7423 return false;
7426 return true;
7429 /* Return true when RESOLUTION indicate that symbol will be bound to the
7430 definition provided by current .o file. */
7432 static bool
7433 resolution_to_local_definition_p (enum ld_plugin_symbol_resolution resolution)
7435 return (resolution == LDPR_PREVAILING_DEF
7436 || resolution == LDPR_PREVAILING_DEF_IRONLY_EXP
7437 || resolution == LDPR_PREVAILING_DEF_IRONLY);
7440 /* Return true when RESOLUTION indicate that symbol will be bound locally
7441 within current executable or DSO. */
7443 static bool
7444 resolution_local_p (enum ld_plugin_symbol_resolution resolution)
7446 return (resolution == LDPR_PREVAILING_DEF
7447 || resolution == LDPR_PREVAILING_DEF_IRONLY
7448 || resolution == LDPR_PREVAILING_DEF_IRONLY_EXP
7449 || resolution == LDPR_PREEMPTED_REG
7450 || resolution == LDPR_PREEMPTED_IR
7451 || resolution == LDPR_RESOLVED_IR
7452 || resolution == LDPR_RESOLVED_EXEC);
7455 /* COMMON_LOCAL_P is true means that the linker can guarantee that an
7456 uninitialized common symbol in the executable will still be defined
7457 (through COPY relocation) in the executable. */
7459 bool
7460 default_binds_local_p_3 (const_tree exp, bool shlib, bool weak_dominate,
7461 bool extern_protected_data, bool common_local_p)
7463 /* A non-decl is an entry in the constant pool. */
7464 if (!DECL_P (exp))
7465 return true;
7467 /* Weakrefs may not bind locally, even though the weakref itself is always
7468 static and therefore local. Similarly, the resolver for ifunc functions
7469 might resolve to a non-local function.
7470 FIXME: We can resolve the weakref case more curefuly by looking at the
7471 weakref alias. */
7472 if (lookup_attribute ("weakref", DECL_ATTRIBUTES (exp))
7473 || (TREE_CODE (exp) == FUNCTION_DECL
7474 && cgraph_node::get (exp)
7475 && cgraph_node::get (exp)->ifunc_resolver))
7476 return false;
7478 /* Static variables are always local. */
7479 if (! TREE_PUBLIC (exp))
7480 return true;
7482 /* With resolution file in hand, take look into resolutions.
7483 We can't just return true for resolved_locally symbols,
7484 because dynamic linking might overwrite symbols
7485 in shared libraries. */
7486 bool resolved_locally = false;
7488 bool uninited_common = (DECL_COMMON (exp)
7489 && (DECL_INITIAL (exp) == NULL
7490 || (!in_lto_p
7491 && DECL_INITIAL (exp) == error_mark_node)));
7493 /* A non-external variable is defined locally only if it isn't
7494 uninitialized COMMON variable or common_local_p is true. */
7495 bool defined_locally = (!DECL_EXTERNAL (exp)
7496 && (!uninited_common || common_local_p));
7497 if (symtab_node *node = symtab_node::get (exp))
7499 if (node->in_other_partition)
7500 defined_locally = true;
7501 if (node->can_be_discarded_p ())
7503 else if (resolution_to_local_definition_p (node->resolution))
7504 defined_locally = resolved_locally = true;
7505 else if (resolution_local_p (node->resolution))
7506 resolved_locally = true;
7508 if (defined_locally && weak_dominate && !shlib)
7509 resolved_locally = true;
7511 /* Undefined weak symbols are never defined locally. */
7512 if (DECL_WEAK (exp) && !defined_locally)
7513 return false;
7515 /* A symbol is local if the user has said explicitly that it will be,
7516 or if we have a definition for the symbol. We cannot infer visibility
7517 for undefined symbols. */
7518 if (DECL_VISIBILITY (exp) != VISIBILITY_DEFAULT
7519 && (TREE_CODE (exp) == FUNCTION_DECL
7520 || !extern_protected_data
7521 || DECL_VISIBILITY (exp) != VISIBILITY_PROTECTED)
7522 && (DECL_VISIBILITY_SPECIFIED (exp) || defined_locally))
7523 return true;
7525 /* If PIC, then assume that any global name can be overridden by
7526 symbols resolved from other modules. */
7527 if (shlib)
7528 return false;
7530 /* Variables defined outside this object might not be local. */
7531 if (DECL_EXTERNAL (exp) && !resolved_locally)
7532 return false;
7534 /* Non-dominant weak symbols are not defined locally. */
7535 if (DECL_WEAK (exp) && !resolved_locally)
7536 return false;
7538 /* Uninitialized COMMON variable may be unified with symbols
7539 resolved from other modules. */
7540 if (uninited_common && !resolved_locally)
7541 return false;
7543 /* Otherwise we're left with initialized (or non-common) global data
7544 which is of necessity defined locally. */
7545 return true;
7548 /* Assume ELF-ish defaults, since that's pretty much the most liberal
7549 wrt cross-module name binding. */
7551 bool
7552 default_binds_local_p (const_tree exp)
7554 return default_binds_local_p_3 (exp, flag_shlib != 0, true, false, false);
7557 /* Similar to default_binds_local_p, but common symbol may be local and
7558 extern protected data is non-local. */
7560 bool
7561 default_binds_local_p_2 (const_tree exp)
7563 return default_binds_local_p_3 (exp, flag_shlib != 0, true, true,
7564 !flag_pic);
7567 bool
7568 default_binds_local_p_1 (const_tree exp, int shlib)
7570 return default_binds_local_p_3 (exp, shlib != 0, false, false, false);
7573 /* Return true when references to DECL must bind to current definition in
7574 final executable.
7576 The condition is usually equivalent to whether the function binds to the
7577 current module (shared library or executable), that is to binds_local_p.
7578 We use this fact to avoid need for another target hook and implement
7579 the logic using binds_local_p and just special cases where
7580 decl_binds_to_current_def_p is stronger than binds_local_p. In particular
7581 the weak definitions (that can be overwritten at linktime by other
7582 definition from different object file) and when resolution info is available
7583 we simply use the knowledge passed to us by linker plugin. */
7584 bool
7585 decl_binds_to_current_def_p (const_tree decl)
7587 gcc_assert (DECL_P (decl));
7588 if (!targetm.binds_local_p (decl))
7589 return false;
7590 if (!TREE_PUBLIC (decl))
7591 return true;
7593 /* When resolution is available, just use it. */
7594 if (symtab_node *node = symtab_node::get (decl))
7596 if (node->resolution != LDPR_UNKNOWN
7597 && !node->can_be_discarded_p ())
7598 return resolution_to_local_definition_p (node->resolution);
7601 /* Otherwise we have to assume the worst for DECL_WEAK (hidden weaks
7602 binds locally but still can be overwritten), DECL_COMMON (can be merged
7603 with a non-common definition somewhere in the same module) or
7604 DECL_EXTERNAL.
7605 This rely on fact that binds_local_p behave as decl_replaceable_p
7606 for all other declaration types. */
7607 if (DECL_WEAK (decl))
7608 return false;
7609 if (DECL_COMMON (decl)
7610 && (DECL_INITIAL (decl) == NULL
7611 || (!in_lto_p && DECL_INITIAL (decl) == error_mark_node)))
7612 return false;
7613 if (DECL_EXTERNAL (decl))
7614 return false;
7615 return true;
7618 /* A replaceable function or variable is one which may be replaced
7619 at link-time with an entirely different definition, provided that the
7620 replacement has the same type. For example, functions declared
7621 with __attribute__((weak)) on most systems are replaceable.
7623 COMDAT functions are not replaceable, since all definitions of the
7624 function must be equivalent. It is important that COMDAT functions
7625 not be treated as replaceable so that use of C++ template
7626 instantiations is not penalized. */
7628 bool
7629 decl_replaceable_p (tree decl)
7631 gcc_assert (DECL_P (decl));
7632 if (!TREE_PUBLIC (decl) || DECL_COMDAT (decl))
7633 return false;
7634 if (!flag_semantic_interposition
7635 && !DECL_WEAK (decl))
7636 return false;
7637 return !decl_binds_to_current_def_p (decl);
7640 /* Default function to output code that will globalize a label. A
7641 target must define GLOBAL_ASM_OP or provide its own function to
7642 globalize a label. */
7643 #ifdef GLOBAL_ASM_OP
7644 void
7645 default_globalize_label (FILE * stream, const char *name)
7647 fputs (GLOBAL_ASM_OP, stream);
7648 assemble_name (stream, name);
7649 putc ('\n', stream);
7651 #endif /* GLOBAL_ASM_OP */
7653 /* Default function to output code that will globalize a declaration. */
7654 void
7655 default_globalize_decl_name (FILE * stream, tree decl)
7657 const char *name = XSTR (XEXP (DECL_RTL (decl), 0), 0);
7658 targetm.asm_out.globalize_label (stream, name);
7661 /* Default function to output a label for unwind information. The
7662 default is to do nothing. A target that needs nonlocal labels for
7663 unwind information must provide its own function to do this. */
7664 void
7665 default_emit_unwind_label (FILE * stream ATTRIBUTE_UNUSED,
7666 tree decl ATTRIBUTE_UNUSED,
7667 int for_eh ATTRIBUTE_UNUSED,
7668 int empty ATTRIBUTE_UNUSED)
7672 /* Default function to output a label to divide up the exception table.
7673 The default is to do nothing. A target that needs/wants to divide
7674 up the table must provide it's own function to do this. */
7675 void
7676 default_emit_except_table_label (FILE * stream ATTRIBUTE_UNUSED)
7680 /* This is how to output an internal numbered label where PREFIX is
7681 the class of label and LABELNO is the number within the class. */
7683 void
7684 default_generate_internal_label (char *buf, const char *prefix,
7685 unsigned long labelno)
7687 ASM_GENERATE_INTERNAL_LABEL (buf, prefix, labelno);
7690 /* This is how to output an internal numbered label where PREFIX is
7691 the class of label and LABELNO is the number within the class. */
7693 void
7694 default_internal_label (FILE *stream, const char *prefix,
7695 unsigned long labelno)
7697 char *const buf = (char *) alloca (40 + strlen (prefix));
7698 ASM_GENERATE_INTERNAL_LABEL (buf, prefix, labelno);
7699 ASM_OUTPUT_INTERNAL_LABEL (stream, buf);
7703 /* The default implementation of ASM_DECLARE_CONSTANT_NAME. */
7705 void
7706 default_asm_declare_constant_name (FILE *file, const char *name,
7707 const_tree exp ATTRIBUTE_UNUSED,
7708 HOST_WIDE_INT size ATTRIBUTE_UNUSED)
7710 assemble_label (file, name);
7713 /* This is the default behavior at the beginning of a file. It's
7714 controlled by two other target-hook toggles. */
7715 void
7716 default_file_start (void)
7718 if (targetm.asm_file_start_app_off
7719 && !(flag_verbose_asm || flag_debug_asm || flag_dump_rtl_in_asm))
7720 fputs (ASM_APP_OFF, asm_out_file);
7722 if (targetm.asm_file_start_file_directive)
7724 /* LTO produced units have no meaningful main_input_filename. */
7725 if (in_lto_p)
7726 output_file_directive (asm_out_file, "<artificial>");
7727 else
7728 output_file_directive (asm_out_file, main_input_filename);
7732 /* This is a generic routine suitable for use as TARGET_ASM_FILE_END
7733 which emits a special section directive used to indicate whether or
7734 not this object file needs an executable stack. This is primarily
7735 a GNU extension to ELF but could be used on other targets. */
7737 int trampolines_created;
7739 void
7740 file_end_indicate_exec_stack (void)
7742 unsigned int flags = SECTION_DEBUG;
7743 if (trampolines_created)
7744 flags |= SECTION_CODE;
7746 switch_to_section (get_section (".note.GNU-stack", flags, NULL));
7749 /* Emit a special section directive to indicate that this object file
7750 was compiled with -fsplit-stack. This is used to let the linker
7751 detect calls between split-stack code and non-split-stack code, so
7752 that it can modify the split-stack code to allocate a sufficiently
7753 large stack. We emit another special section if there are any
7754 functions in this file which have the no_split_stack attribute, to
7755 prevent the linker from warning about being unable to convert the
7756 functions if they call non-split-stack code. */
7758 void
7759 file_end_indicate_split_stack (void)
7761 if (flag_split_stack)
7763 switch_to_section (get_section (".note.GNU-split-stack", SECTION_DEBUG,
7764 NULL));
7765 if (saw_no_split_stack)
7766 switch_to_section (get_section (".note.GNU-no-split-stack",
7767 SECTION_DEBUG, NULL));
7771 /* Output DIRECTIVE (a C string) followed by a newline. This is used as
7772 a get_unnamed_section callback. */
7774 void
7775 output_section_asm_op (const void *directive)
7777 fprintf (asm_out_file, "%s\n", (const char *) directive);
7780 /* Emit assembly code to switch to section NEW_SECTION. Do nothing if
7781 the current section is NEW_SECTION. */
7783 void
7784 switch_to_section (section *new_section, tree decl)
7786 bool retain_p;
7787 if ((new_section->common.flags & SECTION_NAMED)
7788 && decl != nullptr
7789 && DECL_P (decl)
7790 && ((retain_p = !!lookup_attribute ("retain",
7791 DECL_ATTRIBUTES (decl)))
7792 != !!(new_section->common.flags & SECTION_RETAIN)))
7794 /* If the SECTION_RETAIN bit doesn't match, switch to a new
7795 section. */
7796 tree used_decl, no_used_decl;
7798 if (retain_p)
7800 new_section->common.flags |= SECTION_RETAIN;
7801 used_decl = decl;
7802 no_used_decl = new_section->named.decl;
7804 else
7806 new_section->common.flags &= ~(SECTION_RETAIN
7807 | SECTION_DECLARED);
7808 used_decl = new_section->named.decl;
7809 no_used_decl = decl;
7811 if (no_used_decl != used_decl)
7813 warning (OPT_Wattributes,
7814 "%+qD without %<retain%> attribute and %qD with "
7815 "%<retain%> attribute are placed in a section with "
7816 "the same name", no_used_decl, used_decl);
7817 inform (DECL_SOURCE_LOCATION (used_decl),
7818 "%qD was declared here", used_decl);
7821 else if (in_section == new_section)
7822 return;
7824 if (new_section->common.flags & SECTION_FORGET)
7825 in_section = NULL;
7826 else
7827 in_section = new_section;
7829 switch (SECTION_STYLE (new_section))
7831 case SECTION_NAMED:
7832 targetm.asm_out.named_section (new_section->named.name,
7833 new_section->named.common.flags,
7834 new_section->named.decl);
7835 break;
7837 case SECTION_UNNAMED:
7838 new_section->unnamed.callback (new_section->unnamed.data);
7839 break;
7841 case SECTION_NOSWITCH:
7842 gcc_unreachable ();
7843 break;
7846 new_section->common.flags |= SECTION_DECLARED;
7849 /* If block symbol SYMBOL has not yet been assigned an offset, place
7850 it at the end of its block. */
7852 void
7853 place_block_symbol (rtx symbol)
7855 unsigned HOST_WIDE_INT size, mask, offset;
7856 class constant_descriptor_rtx *desc;
7857 unsigned int alignment;
7858 struct object_block *block;
7859 tree decl;
7861 gcc_assert (SYMBOL_REF_BLOCK (symbol));
7862 if (SYMBOL_REF_BLOCK_OFFSET (symbol) >= 0)
7863 return;
7865 /* Work out the symbol's size and alignment. */
7866 if (CONSTANT_POOL_ADDRESS_P (symbol))
7868 desc = SYMBOL_REF_CONSTANT (symbol);
7869 alignment = desc->align;
7870 size = GET_MODE_SIZE (desc->mode);
7872 else if (TREE_CONSTANT_POOL_ADDRESS_P (symbol))
7874 decl = SYMBOL_REF_DECL (symbol);
7875 gcc_checking_assert (DECL_IN_CONSTANT_POOL (decl));
7876 alignment = DECL_ALIGN (decl);
7877 size = get_constant_size (DECL_INITIAL (decl));
7878 if ((flag_sanitize & SANITIZE_ADDRESS)
7879 && TREE_CODE (DECL_INITIAL (decl)) == STRING_CST
7880 && asan_protect_global (DECL_INITIAL (decl)))
7882 size += asan_red_zone_size (size);
7883 alignment = MAX (alignment,
7884 ASAN_RED_ZONE_SIZE * BITS_PER_UNIT);
7887 else
7889 struct symtab_node *snode;
7890 decl = SYMBOL_REF_DECL (symbol);
7892 snode = symtab_node::get (decl);
7893 if (snode->alias)
7895 rtx target = DECL_RTL (snode->ultimate_alias_target ()->decl);
7897 gcc_assert (MEM_P (target)
7898 && GET_CODE (XEXP (target, 0)) == SYMBOL_REF
7899 && SYMBOL_REF_HAS_BLOCK_INFO_P (XEXP (target, 0)));
7900 target = XEXP (target, 0);
7901 place_block_symbol (target);
7902 SYMBOL_REF_BLOCK_OFFSET (symbol) = SYMBOL_REF_BLOCK_OFFSET (target);
7903 return;
7905 alignment = get_variable_align (decl);
7906 size = tree_to_uhwi (DECL_SIZE_UNIT (decl));
7907 if ((flag_sanitize & SANITIZE_ADDRESS)
7908 && asan_protect_global (decl))
7910 size += asan_red_zone_size (size);
7911 alignment = MAX (alignment,
7912 ASAN_RED_ZONE_SIZE * BITS_PER_UNIT);
7916 /* Calculate the object's offset from the start of the block. */
7917 block = SYMBOL_REF_BLOCK (symbol);
7918 mask = alignment / BITS_PER_UNIT - 1;
7919 offset = (block->size + mask) & ~mask;
7920 SYMBOL_REF_BLOCK_OFFSET (symbol) = offset;
7922 /* Record the block's new alignment and size. */
7923 block->alignment = MAX (block->alignment, alignment);
7924 block->size = offset + size;
7926 vec_safe_push (block->objects, symbol);
7929 /* Return the anchor that should be used to address byte offset OFFSET
7930 from the first object in BLOCK. MODEL is the TLS model used
7931 to access it. */
7934 get_section_anchor (struct object_block *block, HOST_WIDE_INT offset,
7935 enum tls_model model)
7937 char label[100];
7938 unsigned int begin, middle, end;
7939 unsigned HOST_WIDE_INT min_offset, max_offset, range, bias, delta;
7940 rtx anchor;
7942 /* Work out the anchor's offset. Use an offset of 0 for the first
7943 anchor so that we don't pessimize the case where we take the address
7944 of a variable at the beginning of the block. This is particularly
7945 useful when a block has only one variable assigned to it.
7947 We try to place anchors RANGE bytes apart, so there can then be
7948 anchors at +/-RANGE, +/-2 * RANGE, and so on, up to the limits of
7949 a ptr_mode offset. With some target settings, the lowest such
7950 anchor might be out of range for the lowest ptr_mode offset;
7951 likewise the highest anchor for the highest offset. Use anchors
7952 at the extreme ends of the ptr_mode range in such cases.
7954 All arithmetic uses unsigned integers in order to avoid
7955 signed overflow. */
7956 max_offset = (unsigned HOST_WIDE_INT) targetm.max_anchor_offset;
7957 min_offset = (unsigned HOST_WIDE_INT) targetm.min_anchor_offset;
7958 range = max_offset - min_offset + 1;
7959 if (range == 0)
7960 offset = 0;
7961 else
7963 bias = HOST_WIDE_INT_1U << (GET_MODE_BITSIZE (ptr_mode) - 1);
7964 if (offset < 0)
7966 delta = -(unsigned HOST_WIDE_INT) offset + max_offset;
7967 delta -= delta % range;
7968 if (delta > bias)
7969 delta = bias;
7970 offset = (HOST_WIDE_INT) (-delta);
7972 else
7974 delta = (unsigned HOST_WIDE_INT) offset - min_offset;
7975 delta -= delta % range;
7976 if (delta > bias - 1)
7977 delta = bias - 1;
7978 offset = (HOST_WIDE_INT) delta;
7982 /* Do a binary search to see if there's already an anchor we can use.
7983 Set BEGIN to the new anchor's index if not. */
7984 begin = 0;
7985 end = vec_safe_length (block->anchors);
7986 while (begin != end)
7988 middle = (end + begin) / 2;
7989 anchor = (*block->anchors)[middle];
7990 if (SYMBOL_REF_BLOCK_OFFSET (anchor) > offset)
7991 end = middle;
7992 else if (SYMBOL_REF_BLOCK_OFFSET (anchor) < offset)
7993 begin = middle + 1;
7994 else if (SYMBOL_REF_TLS_MODEL (anchor) > model)
7995 end = middle;
7996 else if (SYMBOL_REF_TLS_MODEL (anchor) < model)
7997 begin = middle + 1;
7998 else
7999 return anchor;
8002 /* Create a new anchor with a unique label. */
8003 ASM_GENERATE_INTERNAL_LABEL (label, "LANCHOR", anchor_labelno++);
8004 anchor = create_block_symbol (ggc_strdup (label), block, offset);
8005 SYMBOL_REF_FLAGS (anchor) |= SYMBOL_FLAG_LOCAL | SYMBOL_FLAG_ANCHOR;
8006 SYMBOL_REF_FLAGS (anchor) |= model << SYMBOL_FLAG_TLS_SHIFT;
8008 /* Insert it at index BEGIN. */
8009 vec_safe_insert (block->anchors, begin, anchor);
8010 return anchor;
8013 /* Output the objects in BLOCK. */
8015 static void
8016 output_object_block (struct object_block *block)
8018 class constant_descriptor_rtx *desc;
8019 unsigned int i;
8020 HOST_WIDE_INT offset;
8021 tree decl;
8022 rtx symbol;
8024 if (!block->objects)
8025 return;
8027 /* Switch to the section and make sure that the first byte is
8028 suitably aligned. */
8029 /* Special case VTV comdat sections similar to assemble_variable. */
8030 if (SECTION_STYLE (block->sect) == SECTION_NAMED
8031 && block->sect->named.name
8032 && (strcmp (block->sect->named.name, ".vtable_map_vars") == 0))
8033 handle_vtv_comdat_section (block->sect, block->sect->named.decl);
8034 else
8035 switch_to_section (block->sect, SYMBOL_REF_DECL ((*block->objects)[0]));
8037 gcc_checking_assert (!(block->sect->common.flags & SECTION_MERGE));
8038 assemble_align (block->alignment);
8040 /* Define the values of all anchors relative to the current section
8041 position. */
8042 FOR_EACH_VEC_SAFE_ELT (block->anchors, i, symbol)
8043 targetm.asm_out.output_anchor (symbol);
8045 /* Output the objects themselves. */
8046 offset = 0;
8047 FOR_EACH_VEC_ELT (*block->objects, i, symbol)
8049 /* Move to the object's offset, padding with zeros if necessary. */
8050 assemble_zeros (SYMBOL_REF_BLOCK_OFFSET (symbol) - offset);
8051 offset = SYMBOL_REF_BLOCK_OFFSET (symbol);
8052 if (CONSTANT_POOL_ADDRESS_P (symbol))
8054 desc = SYMBOL_REF_CONSTANT (symbol);
8055 /* Pass 1 for align as we have already laid out everything in the block.
8056 So aligning shouldn't be necessary. */
8057 output_constant_pool_1 (desc, 1);
8058 offset += GET_MODE_SIZE (desc->mode);
8060 else if (TREE_CONSTANT_POOL_ADDRESS_P (symbol))
8062 HOST_WIDE_INT size;
8063 decl = SYMBOL_REF_DECL (symbol);
8064 assemble_constant_contents (DECL_INITIAL (decl), XSTR (symbol, 0),
8065 DECL_ALIGN (decl), false);
8067 size = get_constant_size (DECL_INITIAL (decl));
8068 offset += size;
8069 if ((flag_sanitize & SANITIZE_ADDRESS)
8070 && TREE_CODE (DECL_INITIAL (decl)) == STRING_CST
8071 && asan_protect_global (DECL_INITIAL (decl)))
8073 size = asan_red_zone_size (size);
8074 assemble_zeros (size);
8075 offset += size;
8078 else
8080 HOST_WIDE_INT size;
8081 decl = SYMBOL_REF_DECL (symbol);
8082 assemble_variable_contents (decl, XSTR (symbol, 0), false, false);
8083 size = tree_to_uhwi (DECL_SIZE_UNIT (decl));
8084 offset += size;
8085 if ((flag_sanitize & SANITIZE_ADDRESS)
8086 && asan_protect_global (decl))
8088 size = asan_red_zone_size (size);
8089 assemble_zeros (size);
8090 offset += size;
8096 /* A callback for qsort to compare object_blocks. */
8098 static int
8099 output_object_block_compare (const void *x, const void *y)
8101 object_block *p1 = *(object_block * const*)x;
8102 object_block *p2 = *(object_block * const*)y;
8104 if (p1->sect->common.flags & SECTION_NAMED
8105 && !(p2->sect->common.flags & SECTION_NAMED))
8106 return 1;
8108 if (!(p1->sect->common.flags & SECTION_NAMED)
8109 && p2->sect->common.flags & SECTION_NAMED)
8110 return -1;
8112 if (p1->sect->common.flags & SECTION_NAMED
8113 && p2->sect->common.flags & SECTION_NAMED)
8114 return strcmp (p1->sect->named.name, p2->sect->named.name);
8116 unsigned f1 = p1->sect->common.flags;
8117 unsigned f2 = p2->sect->common.flags;
8118 if (f1 == f2)
8119 return 0;
8120 return f1 < f2 ? -1 : 1;
8123 /* Output the definitions of all object_blocks. */
8125 void
8126 output_object_blocks (void)
8128 vec<object_block *, va_heap> v;
8129 v.create (object_block_htab->elements ());
8130 object_block *obj;
8131 hash_table<object_block_hasher>::iterator hi;
8133 FOR_EACH_HASH_TABLE_ELEMENT (*object_block_htab, obj, object_block *, hi)
8134 v.quick_push (obj);
8136 /* Sort them in order to output them in a deterministic manner,
8137 otherwise we may get .rodata sections in different orders with
8138 and without -g. */
8139 v.qsort (output_object_block_compare);
8140 unsigned i;
8141 FOR_EACH_VEC_ELT (v, i, obj)
8142 output_object_block (obj);
8144 v.release ();
8147 /* This function provides a possible implementation of the
8148 TARGET_ASM_RECORD_GCC_SWITCHES target hook for ELF targets. When triggered
8149 by -frecord-gcc-switches it creates a new mergeable, string section in the
8150 assembler output file called TARGET_ASM_RECORD_GCC_SWITCHES_SECTION which
8151 contains the switches in ASCII format.
8153 FIXME: This code does not correctly handle double quote characters
8154 that appear inside strings, (it strips them rather than preserving them).
8155 FIXME: ASM_OUTPUT_ASCII, as defined in config/elfos.h will not emit NUL
8156 characters - instead it treats them as sub-string separators. Since
8157 we want to emit NUL strings terminators into the object file we have to use
8158 ASM_OUTPUT_SKIP. */
8160 void
8161 elf_record_gcc_switches (const char *options)
8163 section *sec = get_section (targetm.asm_out.record_gcc_switches_section,
8164 SECTION_DEBUG | SECTION_MERGE
8165 | SECTION_STRINGS | (SECTION_ENTSIZE & 1), NULL);
8166 switch_to_section (sec);
8167 ASM_OUTPUT_ASCII (asm_out_file, options, strlen (options) + 1);
8170 /* Emit text to declare externally defined symbols. It is needed to
8171 properly support non-default visibility. */
8172 void
8173 default_elf_asm_output_external (FILE *file ATTRIBUTE_UNUSED,
8174 tree decl,
8175 const char *name ATTRIBUTE_UNUSED)
8177 /* We output the name if and only if TREE_SYMBOL_REFERENCED is
8178 set in order to avoid putting out names that are never really
8179 used. Always output visibility specified in the source. */
8180 if (TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (decl))
8181 && (DECL_VISIBILITY_SPECIFIED (decl)
8182 || targetm.binds_local_p (decl)))
8183 maybe_assemble_visibility (decl);
8186 /* The default hook for TARGET_ASM_OUTPUT_SOURCE_FILENAME. */
8188 void
8189 default_asm_output_source_filename (FILE *file, const char *name)
8191 #ifdef ASM_OUTPUT_SOURCE_FILENAME
8192 ASM_OUTPUT_SOURCE_FILENAME (file, name);
8193 #else
8194 fprintf (file, "\t.file\t");
8195 output_quoted_string (file, name);
8196 putc ('\n', file);
8197 #endif
8200 /* Output a file name in the form wanted by System V. */
8202 void
8203 output_file_directive (FILE *asm_file, const char *input_name)
8205 int len;
8206 const char *na;
8208 if (input_name == NULL)
8209 input_name = "<stdin>";
8210 else
8211 input_name = remap_debug_filename (input_name);
8213 len = strlen (input_name);
8214 na = input_name + len;
8216 /* NA gets INPUT_NAME sans directory names. */
8217 while (na > input_name)
8219 if (IS_DIR_SEPARATOR (na[-1]))
8220 break;
8221 na--;
8224 targetm.asm_out.output_source_filename (asm_file, na);
8227 /* Create a DEBUG_EXPR_DECL / DEBUG_EXPR pair from RTL expression
8228 EXP. */
8230 make_debug_expr_from_rtl (const_rtx exp)
8232 tree ddecl = make_node (DEBUG_EXPR_DECL), type;
8233 machine_mode mode = GET_MODE (exp);
8234 rtx dval;
8236 DECL_ARTIFICIAL (ddecl) = 1;
8237 if (REG_P (exp) && REG_EXPR (exp))
8238 type = TREE_TYPE (REG_EXPR (exp));
8239 else if (MEM_P (exp) && MEM_EXPR (exp))
8240 type = TREE_TYPE (MEM_EXPR (exp));
8241 else
8242 type = NULL_TREE;
8243 if (type && TYPE_MODE (type) == mode)
8244 TREE_TYPE (ddecl) = type;
8245 else
8246 TREE_TYPE (ddecl) = lang_hooks.types.type_for_mode (mode, 1);
8247 SET_DECL_MODE (ddecl, mode);
8248 dval = gen_rtx_DEBUG_EXPR (mode);
8249 DEBUG_EXPR_TREE_DECL (dval) = ddecl;
8250 SET_DECL_RTL (ddecl, dval);
8251 return dval;
8254 #ifdef ELF_ASCII_ESCAPES
8255 /* Default ASM_OUTPUT_LIMITED_STRING for ELF targets. */
8257 void
8258 default_elf_asm_output_limited_string (FILE *f, const char *s)
8260 int escape;
8261 unsigned char c;
8263 fputs (STRING_ASM_OP, f);
8264 putc ('"', f);
8265 while (*s != '\0')
8267 c = *s;
8268 escape = ELF_ASCII_ESCAPES[c];
8269 switch (escape)
8271 case 0:
8272 putc (c, f);
8273 break;
8274 case 1:
8275 putc ('\\', f);
8276 putc ('0'+((c>>6)&7), f);
8277 putc ('0'+((c>>3)&7), f);
8278 putc ('0'+(c&7), f);
8279 break;
8280 default:
8281 putc ('\\', f);
8282 putc (escape, f);
8283 break;
8285 s++;
8287 putc ('\"', f);
8288 putc ('\n', f);
8291 /* Default ASM_OUTPUT_ASCII for ELF targets. */
8293 void
8294 default_elf_asm_output_ascii (FILE *f, const char *s, unsigned int len)
8296 const char *limit = s + len;
8297 const char *last_null = NULL;
8298 unsigned bytes_in_chunk = 0;
8299 unsigned char c;
8300 int escape;
8302 for (; s < limit; s++)
8304 const char *p;
8306 if (bytes_in_chunk >= 60)
8308 putc ('\"', f);
8309 putc ('\n', f);
8310 bytes_in_chunk = 0;
8313 if (s > last_null)
8315 for (p = s; p < limit && *p != '\0'; p++)
8316 continue;
8317 last_null = p;
8319 else
8320 p = last_null;
8322 if (p < limit && (p - s) <= (long) ELF_STRING_LIMIT)
8324 if (bytes_in_chunk > 0)
8326 putc ('\"', f);
8327 putc ('\n', f);
8328 bytes_in_chunk = 0;
8331 default_elf_asm_output_limited_string (f, s);
8332 s = p;
8334 else
8336 if (bytes_in_chunk == 0)
8337 fputs (ASCII_DATA_ASM_OP "\"", f);
8339 c = *s;
8340 escape = ELF_ASCII_ESCAPES[c];
8341 switch (escape)
8343 case 0:
8344 putc (c, f);
8345 bytes_in_chunk++;
8346 break;
8347 case 1:
8348 putc ('\\', f);
8349 putc ('0'+((c>>6)&7), f);
8350 putc ('0'+((c>>3)&7), f);
8351 putc ('0'+(c&7), f);
8352 bytes_in_chunk += 4;
8353 break;
8354 default:
8355 putc ('\\', f);
8356 putc (escape, f);
8357 bytes_in_chunk += 2;
8358 break;
8364 if (bytes_in_chunk > 0)
8366 putc ('\"', f);
8367 putc ('\n', f);
8370 #endif
8372 static GTY(()) section *elf_init_array_section;
8373 static GTY(()) section *elf_fini_array_section;
8375 static section *
8376 get_elf_initfini_array_priority_section (int priority,
8377 bool constructor_p)
8379 section *sec;
8380 if (priority != DEFAULT_INIT_PRIORITY)
8382 char buf[18];
8383 sprintf (buf, "%s.%.5u",
8384 constructor_p ? ".init_array" : ".fini_array",
8385 priority);
8386 sec = get_section (buf, SECTION_WRITE | SECTION_NOTYPE, NULL_TREE);
8388 else
8390 if (constructor_p)
8392 if (elf_init_array_section == NULL)
8393 elf_init_array_section
8394 = get_section (".init_array",
8395 SECTION_WRITE | SECTION_NOTYPE, NULL_TREE);
8396 sec = elf_init_array_section;
8398 else
8400 if (elf_fini_array_section == NULL)
8401 elf_fini_array_section
8402 = get_section (".fini_array",
8403 SECTION_WRITE | SECTION_NOTYPE, NULL_TREE);
8404 sec = elf_fini_array_section;
8407 return sec;
8410 /* Use .init_array section for constructors. */
8412 void
8413 default_elf_init_array_asm_out_constructor (rtx symbol, int priority)
8415 section *sec = get_elf_initfini_array_priority_section (priority,
8416 true);
8417 assemble_addr_to_section (symbol, sec);
8420 /* Use .fini_array section for destructors. */
8422 void
8423 default_elf_fini_array_asm_out_destructor (rtx symbol, int priority)
8425 section *sec = get_elf_initfini_array_priority_section (priority,
8426 false);
8427 assemble_addr_to_section (symbol, sec);
8430 /* Default TARGET_ASM_OUTPUT_IDENT hook.
8432 This is a bit of a cheat. The real default is a no-op, but this
8433 hook is the default for all targets with a .ident directive. */
8435 void
8436 default_asm_output_ident_directive (const char *ident_str)
8438 const char *ident_asm_op = "\t.ident\t";
8440 /* If we are still in the front end, do not write out the string
8441 to asm_out_file. Instead, add a fake top-level asm statement.
8442 This allows the front ends to use this hook without actually
8443 writing to asm_out_file, to handle #ident or Pragma Ident. */
8444 if (symtab->state == PARSING)
8446 char *buf = ACONCAT ((ident_asm_op, "\"", ident_str, "\"\n", NULL));
8447 symtab->finalize_toplevel_asm (build_string (strlen (buf), buf));
8449 else
8450 fprintf (asm_out_file, "%s\"%s\"\n", ident_asm_op, ident_str);
8454 /* This function ensures that vtable_map variables are not only
8455 in the comdat section, but that each variable has its own unique
8456 comdat name. Without this the variables end up in the same section
8457 with a single comdat name.
8459 FIXME: resolve_unique_section needs to deal better with
8460 decls with both DECL_SECTION_NAME and DECL_ONE_ONLY. Once
8461 that is fixed, this if-else statement can be replaced with
8462 a single call to "switch_to_section (sect)". */
8464 static void
8465 handle_vtv_comdat_section (section *sect, const_tree decl ATTRIBUTE_UNUSED)
8467 #if defined (OBJECT_FORMAT_ELF)
8468 targetm.asm_out.named_section (sect->named.name,
8469 sect->named.common.flags
8470 | SECTION_LINKONCE,
8471 DECL_NAME (decl));
8472 in_section = sect;
8473 #else
8474 /* Neither OBJECT_FORMAT_PE, nor OBJECT_FORMAT_COFF is set here.
8475 Therefore the following check is used.
8476 In case a the target is PE or COFF a comdat group section
8477 is created, e.g. .vtable_map_vars$foo. The linker places
8478 everything in .vtable_map_vars at the end.
8480 A fix could be made in
8481 gcc/config/i386/winnt.c: i386_pe_unique_section. */
8482 if (TARGET_PECOFF)
8484 char *name;
8486 if (TREE_CODE (DECL_NAME (decl)) == IDENTIFIER_NODE)
8487 name = ACONCAT ((sect->named.name, "$",
8488 IDENTIFIER_POINTER (DECL_NAME (decl)), NULL));
8489 else
8490 name = ACONCAT ((sect->named.name, "$",
8491 IDENTIFIER_POINTER (DECL_COMDAT_GROUP (DECL_NAME (decl))),
8492 NULL));
8494 targetm.asm_out.named_section (name,
8495 sect->named.common.flags
8496 | SECTION_LINKONCE,
8497 DECL_NAME (decl));
8498 in_section = sect;
8500 else
8501 switch_to_section (sect);
8502 #endif
8505 #include "gt-varasm.h"