1 /* Output variables, constants and external declarations, for GNU compiler.
2 Copyright (C) 1987-2018 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
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
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. */
30 #include "coretypes.h"
38 #include "stringpool.h"
42 #include "diagnostic-core.h"
43 #include "fold-const.h"
44 #include "stor-layout.h"
51 #include "langhooks.h"
53 #include "common/common-target.h"
54 #include "stringpool.h"
58 #include "file-prefix-map.h" /* remap_debug_filename() */
60 #ifdef XCOFF_DEBUGGING_INFO
61 #include "xcoffout.h" /* Needed for external data declarations. */
64 /* The (assembler) name of the first globally-visible object output. */
65 extern GTY(()) const char *first_global_object_name
;
66 extern GTY(()) const char *weak_global_object_name
;
68 const char *first_global_object_name
;
69 const char *weak_global_object_name
;
72 struct constant_descriptor_rtx
;
73 struct rtx_constant_pool
;
75 #define n_deferred_constants (crtl->varasm.deferred_constants)
77 /* Number for making the label on the next
78 constant that is stored in memory. */
80 static GTY(()) int const_labelno
;
82 /* Carry information from ASM_DECLARE_OBJECT_NAME
83 to ASM_FINISH_DECLARE_OBJECT. */
85 int size_directive_output
;
87 /* The last decl for which assemble_variable was called,
88 if it did ASM_DECLARE_OBJECT_NAME.
89 If the last call to assemble_variable didn't do that,
92 tree last_assemble_variable_decl
;
94 /* The following global variable indicates if the first basic block
95 in a function belongs to the cold partition or not. */
97 bool first_function_block_is_cold
;
99 /* Whether we saw any functions with no_split_stack. */
101 static bool saw_no_split_stack
;
103 static const char *strip_reg_name (const char *);
104 static int contains_pointers_p (tree
);
105 #ifdef ASM_OUTPUT_EXTERNAL
106 static bool incorporeal_function_p (tree
);
108 static void decode_addr_const (tree
, struct addr_const
*);
109 static hashval_t
const_hash_1 (const tree
);
110 static int compare_constant (const tree
, const tree
);
111 static void output_constant_def_contents (rtx
);
112 static void output_addressed_constants (tree
);
113 static unsigned HOST_WIDE_INT
output_constant (tree
, unsigned HOST_WIDE_INT
,
114 unsigned int, bool, bool);
115 static void globalize_decl (tree
);
116 static bool decl_readonly_section_1 (enum section_category
);
117 #ifdef BSS_SECTION_ASM_OP
118 #ifdef ASM_OUTPUT_ALIGNED_BSS
119 static void asm_output_aligned_bss (FILE *, tree
, const char *,
120 unsigned HOST_WIDE_INT
, int)
123 #endif /* BSS_SECTION_ASM_OP */
124 static void mark_weak (tree
);
125 static void output_constant_pool (const char *, tree
);
126 static void handle_vtv_comdat_section (section
*, const_tree
);
128 /* Well-known sections, each one associated with some sort of *_ASM_OP. */
129 section
*text_section
;
130 section
*data_section
;
131 section
*readonly_data_section
;
132 section
*sdata_section
;
133 section
*ctors_section
;
134 section
*dtors_section
;
135 section
*bss_section
;
136 section
*sbss_section
;
138 /* Various forms of common section. All are guaranteed to be nonnull. */
139 section
*tls_comm_section
;
140 section
*comm_section
;
141 section
*lcomm_section
;
143 /* A SECTION_NOSWITCH section used for declaring global BSS variables.
145 section
*bss_noswitch_section
;
147 /* The section that holds the main exception table, when known. The section
148 is set either by the target's init_sections hook or by the first call to
149 switch_to_exception_section. */
150 section
*exception_section
;
152 /* The section that holds the DWARF2 frame unwind information, when known.
153 The section is set either by the target's init_sections hook or by the
154 first call to switch_to_eh_frame_section. */
155 section
*eh_frame_section
;
157 /* asm_out_file's current section. This is NULL if no section has yet
158 been selected or if we lose track of what the current section is. */
161 /* True if code for the current function is currently being directed
162 at the cold section. */
163 bool in_cold_section_p
;
165 /* The following global holds the "function name" for the code in the
166 cold section of a function, if hot/cold function splitting is enabled
167 and there was actually code that went into the cold section. A
168 pseudo function name is needed for the cold section of code for some
169 debugging tools that perform symbolization. */
170 tree cold_function_name
= NULL_TREE
;
172 /* A linked list of all the unnamed sections. */
173 static GTY(()) section
*unnamed_sections
;
175 /* Return a nonzero value if DECL has a section attribute. */
176 #define IN_NAMED_SECTION(DECL) \
177 (VAR_OR_FUNCTION_DECL_P (DECL) && DECL_SECTION_NAME (DECL) != NULL)
179 struct section_hasher
: ggc_ptr_hash
<section
>
181 typedef const char *compare_type
;
183 static hashval_t
hash (section
*);
184 static bool equal (section
*, const char *);
187 /* Hash table of named sections. */
188 static GTY(()) hash_table
<section_hasher
> *section_htab
;
190 struct object_block_hasher
: ggc_ptr_hash
<object_block
>
192 typedef const section
*compare_type
;
194 static hashval_t
hash (object_block
*);
195 static bool equal (object_block
*, const section
*);
198 /* A table of object_blocks, indexed by section. */
199 static GTY(()) hash_table
<object_block_hasher
> *object_block_htab
;
201 /* The next number to use for internal anchor labels. */
202 static GTY(()) int anchor_labelno
;
204 /* A pool of constants that can be shared between functions. */
205 static GTY(()) struct rtx_constant_pool
*shared_constant_pool
;
207 /* Helper routines for maintaining section_htab. */
210 section_hasher::equal (section
*old
, const char *new_name
)
212 return strcmp (old
->named
.name
, new_name
) == 0;
216 section_hasher::hash (section
*old
)
218 return htab_hash_string (old
->named
.name
);
221 /* Return a hash value for section SECT. */
224 hash_section (section
*sect
)
226 if (sect
->common
.flags
& SECTION_NAMED
)
227 return htab_hash_string (sect
->named
.name
);
228 return sect
->common
.flags
& ~SECTION_DECLARED
;
231 /* Helper routines for maintaining object_block_htab. */
234 object_block_hasher::equal (object_block
*old
, const section
*new_section
)
236 return old
->sect
== new_section
;
240 object_block_hasher::hash (object_block
*old
)
242 return hash_section (old
->sect
);
245 /* Return a new unnamed section with the given fields. */
248 get_unnamed_section (unsigned int flags
, void (*callback
) (const void *),
253 sect
= ggc_alloc
<section
> ();
254 sect
->unnamed
.common
.flags
= flags
| SECTION_UNNAMED
;
255 sect
->unnamed
.callback
= callback
;
256 sect
->unnamed
.data
= data
;
257 sect
->unnamed
.next
= unnamed_sections
;
259 unnamed_sections
= sect
;
263 /* Return a SECTION_NOSWITCH section with the given fields. */
266 get_noswitch_section (unsigned int flags
, noswitch_section_callback callback
)
270 sect
= ggc_alloc
<section
> ();
271 sect
->noswitch
.common
.flags
= flags
| SECTION_NOSWITCH
;
272 sect
->noswitch
.callback
= callback
;
277 /* Return the named section structure associated with NAME. Create
278 a new section with the given fields if no such structure exists. */
281 get_section (const char *name
, unsigned int flags
, tree decl
)
283 section
*sect
, **slot
;
285 slot
= section_htab
->find_slot_with_hash (name
, htab_hash_string (name
),
287 flags
|= SECTION_NAMED
;
290 sect
= ggc_alloc
<section
> ();
291 sect
->named
.common
.flags
= flags
;
292 sect
->named
.name
= ggc_strdup (name
);
293 sect
->named
.decl
= decl
;
299 /* It is fine if one of the sections has SECTION_NOTYPE as long as
300 the other has none of the contrary flags (see the logic at the end
301 of default_section_type_flags, below). */
302 if (((sect
->common
.flags
^ flags
) & SECTION_NOTYPE
)
303 && !((sect
->common
.flags
| flags
)
304 & (SECTION_CODE
| SECTION_BSS
| SECTION_TLS
| SECTION_ENTSIZE
305 | (HAVE_COMDAT_GROUP
? SECTION_LINKONCE
: 0))))
307 sect
->common
.flags
|= SECTION_NOTYPE
;
308 flags
|= SECTION_NOTYPE
;
310 if ((sect
->common
.flags
& ~SECTION_DECLARED
) != flags
311 && ((sect
->common
.flags
| flags
) & SECTION_OVERRIDE
) == 0)
313 /* It is fine if one of the section flags is
314 SECTION_WRITE | SECTION_RELRO and the other has none of these
315 flags (i.e. read-only) in named sections and either the
316 section hasn't been declared yet or has been declared as writable.
317 In that case just make sure the resulting flags are
318 SECTION_WRITE | SECTION_RELRO, ie. writable only because of
320 if (((sect
->common
.flags
^ flags
) & (SECTION_WRITE
| SECTION_RELRO
))
321 == (SECTION_WRITE
| SECTION_RELRO
)
322 && (sect
->common
.flags
323 & ~(SECTION_DECLARED
| SECTION_WRITE
| SECTION_RELRO
))
324 == (flags
& ~(SECTION_WRITE
| SECTION_RELRO
))
325 && ((sect
->common
.flags
& SECTION_DECLARED
) == 0
326 || (sect
->common
.flags
& SECTION_WRITE
)))
328 sect
->common
.flags
|= (SECTION_WRITE
| SECTION_RELRO
);
331 /* Sanity check user variables for flag changes. */
332 if (sect
->named
.decl
!= NULL
333 && DECL_P (sect
->named
.decl
)
334 && decl
!= sect
->named
.decl
)
336 if (decl
!= NULL
&& DECL_P (decl
))
337 error ("%+qD causes a section type conflict with %qD",
338 decl
, sect
->named
.decl
);
340 error ("section type conflict with %qD", sect
->named
.decl
);
341 inform (DECL_SOURCE_LOCATION (sect
->named
.decl
),
342 "%qD was declared here", sect
->named
.decl
);
344 else if (decl
!= NULL
&& DECL_P (decl
))
345 error ("%+qD causes a section type conflict", decl
);
347 error ("section type conflict");
348 /* Make sure we don't error about one section multiple times. */
349 sect
->common
.flags
|= SECTION_OVERRIDE
;
355 /* Return true if the current compilation mode benefits from having
356 objects grouped into blocks. */
359 use_object_blocks_p (void)
361 return flag_section_anchors
;
364 /* Return the object_block structure for section SECT. Create a new
365 structure if we haven't created one already. Return null if SECT
368 static struct object_block
*
369 get_block_for_section (section
*sect
)
371 struct object_block
*block
;
377 = object_block_htab
->find_slot_with_hash (sect
, hash_section (sect
),
382 block
= ggc_cleared_alloc
<object_block
> ();
389 /* Create a symbol with label LABEL and place it at byte offset
390 OFFSET in BLOCK. OFFSET can be negative if the symbol's offset
391 is not yet known. LABEL must be a garbage-collected string. */
394 create_block_symbol (const char *label
, struct object_block
*block
,
395 HOST_WIDE_INT offset
)
400 /* Create the extended SYMBOL_REF. */
401 size
= RTX_HDR_SIZE
+ sizeof (struct block_symbol
);
402 symbol
= (rtx
) ggc_internal_alloc (size
);
404 /* Initialize the normal SYMBOL_REF fields. */
405 memset (symbol
, 0, size
);
406 PUT_CODE (symbol
, SYMBOL_REF
);
407 PUT_MODE (symbol
, Pmode
);
408 XSTR (symbol
, 0) = label
;
409 SYMBOL_REF_FLAGS (symbol
) = SYMBOL_FLAG_HAS_BLOCK_INFO
;
411 /* Initialize the block_symbol stuff. */
412 SYMBOL_REF_BLOCK (symbol
) = block
;
413 SYMBOL_REF_BLOCK_OFFSET (symbol
) = offset
;
418 /* Return a section with a particular name and with whatever SECTION_*
419 flags section_type_flags deems appropriate. The name of the section
420 is taken from NAME if nonnull, otherwise it is taken from DECL's
421 DECL_SECTION_NAME. DECL is the decl associated with the section
422 (see the section comment for details) and RELOC is as for
423 section_type_flags. */
426 get_named_section (tree decl
, const char *name
, int reloc
)
432 gcc_assert (decl
&& DECL_P (decl
) && DECL_SECTION_NAME (decl
));
433 name
= DECL_SECTION_NAME (decl
);
436 flags
= targetm
.section_type_flags (decl
, name
, reloc
);
437 return get_section (name
, flags
, decl
);
440 /* Worker for resolve_unique_section. */
443 set_implicit_section (struct symtab_node
*n
, void *data ATTRIBUTE_UNUSED
)
445 n
->implicit_section
= true;
449 /* If required, set DECL_SECTION_NAME to a unique name. */
452 resolve_unique_section (tree decl
, int reloc ATTRIBUTE_UNUSED
,
453 int flag_function_or_data_sections
)
455 if (DECL_SECTION_NAME (decl
) == NULL
456 && targetm_common
.have_named_sections
457 && (flag_function_or_data_sections
458 || DECL_COMDAT_GROUP (decl
)))
460 targetm
.asm_out
.unique_section (decl
, reloc
);
461 if (DECL_SECTION_NAME (decl
))
462 symtab_node::get (decl
)->call_for_symbol_and_aliases
463 (set_implicit_section
, NULL
, true);
467 #ifdef BSS_SECTION_ASM_OP
469 #ifdef ASM_OUTPUT_ALIGNED_BSS
471 /* Utility function for targets to use in implementing
472 ASM_OUTPUT_ALIGNED_BSS.
473 ??? It is believed that this function will work in most cases so such
474 support is localized here. */
477 asm_output_aligned_bss (FILE *file
, tree decl ATTRIBUTE_UNUSED
,
478 const char *name
, unsigned HOST_WIDE_INT size
,
481 switch_to_section (bss_section
);
482 ASM_OUTPUT_ALIGN (file
, floor_log2 (align
/ BITS_PER_UNIT
));
483 #ifdef ASM_DECLARE_OBJECT_NAME
484 last_assemble_variable_decl
= decl
;
485 ASM_DECLARE_OBJECT_NAME (file
, name
, decl
);
487 /* Standard thing is just output label for the object. */
488 ASM_OUTPUT_LABEL (file
, name
);
489 #endif /* ASM_DECLARE_OBJECT_NAME */
490 ASM_OUTPUT_SKIP (file
, size
? size
: 1);
495 #endif /* BSS_SECTION_ASM_OP */
497 #ifndef USE_SELECT_SECTION_FOR_FUNCTIONS
498 /* Return the hot section for function DECL. Return text_section for
502 hot_function_section (tree decl
)
504 if (decl
!= NULL_TREE
505 && DECL_SECTION_NAME (decl
) != NULL
506 && targetm_common
.have_named_sections
)
507 return get_named_section (decl
, NULL
, 0);
513 /* Return section for TEXT_SECTION_NAME if DECL or DECL_SECTION_NAME (DECL)
516 When DECL_SECTION_NAME is non-NULL and it is implicit section and
517 NAMED_SECTION_SUFFIX is non-NULL, then produce section called
518 concatenate the name with NAMED_SECTION_SUFFIX.
519 Otherwise produce "TEXT_SECTION_NAME.IMPLICIT_NAME". */
522 get_named_text_section (tree decl
,
523 const char *text_section_name
,
524 const char *named_section_suffix
)
526 if (decl
&& DECL_SECTION_NAME (decl
))
528 if (named_section_suffix
)
530 const char *dsn
= DECL_SECTION_NAME (decl
);
531 const char *stripped_name
;
534 name
= (char *) alloca (strlen (dsn
) + 1);
538 stripped_name
= targetm
.strip_name_encoding (name
);
540 buffer
= ACONCAT ((stripped_name
, named_section_suffix
, NULL
));
541 return get_named_section (decl
, buffer
, 0);
543 else if (symtab_node::get (decl
)->implicit_section
)
547 /* Do not try to split gnu_linkonce functions. This gets somewhat
549 if (DECL_COMDAT_GROUP (decl
) && !HAVE_COMDAT_GROUP
)
551 name
= IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl
));
552 name
= targetm
.strip_name_encoding (name
);
553 return get_named_section (decl
, ACONCAT ((text_section_name
, ".",
559 return get_named_section (decl
, text_section_name
, 0);
562 /* Choose named function section based on its frequency. */
565 default_function_section (tree decl
, enum node_frequency freq
,
566 bool startup
, bool exit
)
568 #if defined HAVE_LD_EH_GC_SECTIONS && defined HAVE_LD_EH_GC_SECTIONS_BUG
569 /* Old GNU linkers have buggy --gc-section support, which sometimes
570 results in .gcc_except_table* sections being garbage collected. */
572 && symtab_node::get (decl
)->implicit_section
)
576 if (!flag_reorder_functions
577 || !targetm_common
.have_named_sections
)
579 /* Startup code should go to startup subsection unless it is
580 unlikely executed (this happens especially with function splitting
581 where we can split away unnecessary parts of static constructors. */
582 if (startup
&& freq
!= NODE_FREQUENCY_UNLIKELY_EXECUTED
)
584 /* If we do have a profile or(and) LTO phase is executed, we do not need
585 these ELF section. */
586 if (!in_lto_p
|| !flag_profile_values
)
587 return get_named_text_section (decl
, ".text.startup", NULL
);
592 /* Similarly for exit. */
593 if (exit
&& freq
!= NODE_FREQUENCY_UNLIKELY_EXECUTED
)
594 return get_named_text_section (decl
, ".text.exit", NULL
);
596 /* Group cold functions together, similarly for hot code. */
599 case NODE_FREQUENCY_UNLIKELY_EXECUTED
:
600 return get_named_text_section (decl
, ".text.unlikely", NULL
);
601 case NODE_FREQUENCY_HOT
:
602 /* If we do have a profile or(and) LTO phase is executed, we do not need
603 these ELF section. */
604 if (!in_lto_p
|| !flag_profile_values
)
605 return get_named_text_section (decl
, ".text.hot", NULL
);
612 /* Return the section for function DECL.
614 If DECL is NULL_TREE, return the text section. We can be passed
615 NULL_TREE under some circumstances by dbxout.c at least.
617 If FORCE_COLD is true, return cold function section ignoring
618 the frequency info of cgraph_node. */
621 function_section_1 (tree decl
, bool force_cold
)
623 section
*section
= NULL
;
624 enum node_frequency freq
= NODE_FREQUENCY_NORMAL
;
625 bool startup
= false, exit
= false;
629 struct cgraph_node
*node
= cgraph_node::get (decl
);
633 freq
= node
->frequency
;
634 startup
= node
->only_called_at_startup
;
635 exit
= node
->only_called_at_exit
;
639 freq
= NODE_FREQUENCY_UNLIKELY_EXECUTED
;
641 #ifdef USE_SELECT_SECTION_FOR_FUNCTIONS
642 if (decl
!= NULL_TREE
643 && DECL_SECTION_NAME (decl
) != NULL
)
645 if (targetm
.asm_out
.function_section
)
646 section
= targetm
.asm_out
.function_section (decl
, freq
,
650 return get_named_section (decl
, NULL
, 0);
653 return targetm
.asm_out
.select_section
654 (decl
, freq
== NODE_FREQUENCY_UNLIKELY_EXECUTED
,
655 symtab_node::get (decl
)->definition_alignment ());
657 if (targetm
.asm_out
.function_section
)
658 section
= targetm
.asm_out
.function_section (decl
, freq
, startup
, exit
);
661 return hot_function_section (decl
);
665 /* Return the section for function DECL.
667 If DECL is NULL_TREE, return the text section. We can be passed
668 NULL_TREE under some circumstances by dbxout.c at least. */
671 function_section (tree decl
)
673 /* Handle cases where function splitting code decides
674 to put function entry point into unlikely executed section
675 despite the fact that the function itself is not cold
676 (i.e. it is called rarely but contains a hot loop that is
677 better to live in hot subsection for the code locality). */
678 return function_section_1 (decl
,
679 first_function_block_is_cold
);
682 /* Return the section for the current function, take IN_COLD_SECTION_P
686 current_function_section (void)
688 return function_section_1 (current_function_decl
, in_cold_section_p
);
691 /* Tell assembler to switch to unlikely-to-be-executed text section. */
694 unlikely_text_section (void)
696 return function_section_1 (current_function_decl
, true);
699 /* When called within a function context, return true if the function
700 has been assigned a cold text section and if SECT is that section.
701 When called outside a function context, return true if SECT is the
702 default cold section. */
705 unlikely_text_section_p (section
*sect
)
707 return sect
== function_section_1 (current_function_decl
, true);
710 /* Switch to the other function partition (if inside of hot section
711 into cold section, otherwise into the hot section). */
714 switch_to_other_text_partition (void)
716 in_cold_section_p
= !in_cold_section_p
;
717 switch_to_section (current_function_section ());
720 /* Return the read-only data section associated with function DECL. */
723 default_function_rodata_section (tree decl
)
725 if (decl
!= NULL_TREE
&& DECL_SECTION_NAME (decl
))
727 const char *name
= DECL_SECTION_NAME (decl
);
729 if (DECL_COMDAT_GROUP (decl
) && HAVE_COMDAT_GROUP
)
735 dot
= strchr (name
+ 1, '.');
738 len
= strlen (dot
) + 8;
739 rname
= (char *) alloca (len
);
741 strcpy (rname
, ".rodata");
743 return get_section (rname
, SECTION_LINKONCE
, decl
);
745 /* For .gnu.linkonce.t.foo we want to use .gnu.linkonce.r.foo. */
746 else if (DECL_COMDAT_GROUP (decl
)
747 && strncmp (name
, ".gnu.linkonce.t.", 16) == 0)
749 size_t len
= strlen (name
) + 1;
750 char *rname
= (char *) alloca (len
);
752 memcpy (rname
, name
, len
);
754 return get_section (rname
, SECTION_LINKONCE
, decl
);
756 /* For .text.foo we want to use .rodata.foo. */
757 else if (flag_function_sections
&& flag_data_sections
758 && strncmp (name
, ".text.", 6) == 0)
760 size_t len
= strlen (name
) + 1;
761 char *rname
= (char *) alloca (len
+ 2);
763 memcpy (rname
, ".rodata", 7);
764 memcpy (rname
+ 7, name
+ 5, len
- 5);
765 return get_section (rname
, 0, decl
);
769 return readonly_data_section
;
772 /* Return the read-only data section associated with function DECL
773 for targets where that section should be always the single
774 readonly data section. */
777 default_no_function_rodata_section (tree decl ATTRIBUTE_UNUSED
)
779 return readonly_data_section
;
782 /* A subroutine of mergeable_string_section and mergeable_constant_section. */
785 function_mergeable_rodata_prefix (void)
787 section
*s
= targetm
.asm_out
.function_rodata_section (current_function_decl
);
788 if (SECTION_STYLE (s
) == SECTION_NAMED
)
789 return s
->named
.name
;
791 return targetm
.asm_out
.mergeable_rodata_prefix
;
794 /* Return the section to use for string merging. */
797 mergeable_string_section (tree decl ATTRIBUTE_UNUSED
,
798 unsigned HOST_WIDE_INT align ATTRIBUTE_UNUSED
,
799 unsigned int flags ATTRIBUTE_UNUSED
)
803 if (HAVE_GAS_SHF_MERGE
&& flag_merge_constants
804 && TREE_CODE (decl
) == STRING_CST
805 && TREE_CODE (TREE_TYPE (decl
)) == ARRAY_TYPE
807 && (len
= int_size_in_bytes (TREE_TYPE (decl
))) > 0
808 && TREE_STRING_LENGTH (decl
) == len
)
810 scalar_int_mode mode
;
811 unsigned int modesize
;
815 const char *prefix
= function_mergeable_rodata_prefix ();
816 char *name
= (char *) alloca (strlen (prefix
) + 30);
818 mode
= SCALAR_INT_TYPE_MODE (TREE_TYPE (TREE_TYPE (decl
)));
819 modesize
= GET_MODE_BITSIZE (mode
);
820 if (modesize
>= 8 && modesize
<= 256
821 && (modesize
& (modesize
- 1)) == 0)
823 if (align
< modesize
)
826 str
= TREE_STRING_POINTER (decl
);
827 unit
= GET_MODE_SIZE (mode
);
829 /* Check for embedded NUL characters. */
830 for (i
= 0; i
< len
; i
+= unit
)
832 for (j
= 0; j
< unit
; j
++)
833 if (str
[i
+ j
] != '\0')
838 if (i
== len
- unit
|| (unit
== 1 && i
== len
))
840 sprintf (name
, "%s.str%d.%d", prefix
,
841 modesize
/ 8, (int) (align
/ 8));
842 flags
|= (modesize
/ 8) | SECTION_MERGE
| SECTION_STRINGS
;
843 return get_section (name
, flags
, NULL
);
848 return readonly_data_section
;
851 /* Return the section to use for constant merging. */
854 mergeable_constant_section (machine_mode mode ATTRIBUTE_UNUSED
,
855 unsigned HOST_WIDE_INT align ATTRIBUTE_UNUSED
,
856 unsigned int flags ATTRIBUTE_UNUSED
)
858 if (HAVE_GAS_SHF_MERGE
&& flag_merge_constants
861 && known_le (GET_MODE_BITSIZE (mode
), align
)
864 && (align
& (align
- 1)) == 0)
866 const char *prefix
= function_mergeable_rodata_prefix ();
867 char *name
= (char *) alloca (strlen (prefix
) + 30);
869 sprintf (name
, "%s.cst%d", prefix
, (int) (align
/ 8));
870 flags
|= (align
/ 8) | SECTION_MERGE
;
871 return get_section (name
, flags
, NULL
);
873 return readonly_data_section
;
876 /* Given NAME, a putative register name, discard any customary prefixes. */
879 strip_reg_name (const char *name
)
881 #ifdef REGISTER_PREFIX
882 if (!strncmp (name
, REGISTER_PREFIX
, strlen (REGISTER_PREFIX
)))
883 name
+= strlen (REGISTER_PREFIX
);
885 if (name
[0] == '%' || name
[0] == '#')
890 /* The user has asked for a DECL to have a particular name. Set (or
891 change) it in such a way that we don't prefix an underscore to
894 set_user_assembler_name (tree decl
, const char *name
)
896 char *starred
= (char *) alloca (strlen (name
) + 2);
898 strcpy (starred
+ 1, name
);
899 symtab
->change_decl_assembler_name (decl
, get_identifier (starred
));
900 SET_DECL_RTL (decl
, NULL_RTX
);
903 /* Decode an `asm' spec for a declaration as a register name.
904 Return the register number, or -1 if nothing specified,
905 or -2 if the ASMSPEC is not `cc' or `memory' and is not recognized,
906 or -3 if ASMSPEC is `cc' and is not recognized,
907 or -4 if ASMSPEC is `memory' and is not recognized.
908 Accept an exact spelling or a decimal number.
909 Prefixes such as % are optional. */
912 decode_reg_name_and_count (const char *asmspec
, int *pnregs
)
914 /* Presume just one register is clobbered. */
921 /* Get rid of confusing prefixes. */
922 asmspec
= strip_reg_name (asmspec
);
924 /* Allow a decimal number as a "register name". */
925 for (i
= strlen (asmspec
) - 1; i
>= 0; i
--)
926 if (! ISDIGIT (asmspec
[i
]))
928 if (asmspec
[0] != 0 && i
< 0)
931 if (i
< FIRST_PSEUDO_REGISTER
&& i
>= 0 && reg_names
[i
][0])
937 for (i
= 0; i
< FIRST_PSEUDO_REGISTER
; i
++)
939 && ! strcmp (asmspec
, strip_reg_name (reg_names
[i
])))
942 #ifdef OVERLAPPING_REGISTER_NAMES
946 const char *const name
;
949 } table
[] = OVERLAPPING_REGISTER_NAMES
;
951 for (i
= 0; i
< (int) ARRAY_SIZE (table
); i
++)
953 && ! strcmp (asmspec
, table
[i
].name
))
955 *pnregs
= table
[i
].nregs
;
956 return table
[i
].number
;
959 #endif /* OVERLAPPING_REGISTER_NAMES */
961 #ifdef ADDITIONAL_REGISTER_NAMES
963 static const struct { const char *const name
; const int number
; } table
[]
964 = ADDITIONAL_REGISTER_NAMES
;
966 for (i
= 0; i
< (int) ARRAY_SIZE (table
); i
++)
968 && ! strcmp (asmspec
, table
[i
].name
)
969 && reg_names
[table
[i
].number
][0])
970 return table
[i
].number
;
972 #endif /* ADDITIONAL_REGISTER_NAMES */
974 if (!strcmp (asmspec
, "memory"))
977 if (!strcmp (asmspec
, "cc"))
987 decode_reg_name (const char *name
)
990 return decode_reg_name_and_count (name
, &count
);
994 /* Return true if DECL's initializer is suitable for a BSS section. */
997 bss_initializer_p (const_tree decl
, bool named
)
999 /* Do not put non-common constants into the .bss section, they belong in
1000 a readonly section, except when NAMED is true. */
1001 return ((!TREE_READONLY (decl
) || DECL_COMMON (decl
) || named
)
1002 && (DECL_INITIAL (decl
) == NULL
1003 /* In LTO we have no errors in program; error_mark_node is used
1004 to mark offlined constructors. */
1005 || (DECL_INITIAL (decl
) == error_mark_node
1007 || (flag_zero_initialized_in_bss
1008 && initializer_zerop (DECL_INITIAL (decl
)))));
1011 /* Compute the alignment of variable specified by DECL.
1012 DONT_OUTPUT_DATA is from assemble_variable. */
1015 align_variable (tree decl
, bool dont_output_data
)
1017 unsigned int align
= DECL_ALIGN (decl
);
1019 /* In the case for initialing an array whose length isn't specified,
1020 where we have not yet been able to do the layout,
1021 figure out the proper alignment now. */
1022 if (dont_output_data
&& DECL_SIZE (decl
) == 0
1023 && TREE_CODE (TREE_TYPE (decl
)) == ARRAY_TYPE
)
1024 align
= MAX (align
, TYPE_ALIGN (TREE_TYPE (TREE_TYPE (decl
))));
1026 /* Some object file formats have a maximum alignment which they support.
1027 In particular, a.out format supports a maximum alignment of 4. */
1028 if (align
> MAX_OFILE_ALIGNMENT
)
1030 error ("alignment of %q+D is greater than maximum object "
1031 "file alignment %d", decl
,
1032 MAX_OFILE_ALIGNMENT
/BITS_PER_UNIT
);
1033 align
= MAX_OFILE_ALIGNMENT
;
1036 if (! DECL_USER_ALIGN (decl
))
1038 #ifdef DATA_ABI_ALIGNMENT
1039 unsigned int data_abi_align
1040 = DATA_ABI_ALIGNMENT (TREE_TYPE (decl
), align
);
1041 /* For backwards compatibility, don't assume the ABI alignment for
1043 if (! DECL_THREAD_LOCAL_P (decl
) || data_abi_align
<= BITS_PER_WORD
)
1044 align
= data_abi_align
;
1047 /* On some machines, it is good to increase alignment sometimes.
1048 But as DECL_ALIGN is used both for actually emitting the variable
1049 and for code accessing the variable as guaranteed alignment, we
1050 can only increase the alignment if it is a performance optimization
1051 if the references to it must bind to the current definition. */
1052 if (decl_binds_to_current_def_p (decl
)
1053 && !DECL_VIRTUAL_P (decl
))
1055 #ifdef DATA_ALIGNMENT
1056 unsigned int data_align
= DATA_ALIGNMENT (TREE_TYPE (decl
), align
);
1057 /* Don't increase alignment too much for TLS variables - TLS space
1059 if (! DECL_THREAD_LOCAL_P (decl
) || data_align
<= BITS_PER_WORD
)
1062 if (DECL_INITIAL (decl
) != 0
1063 /* In LTO we have no errors in program; error_mark_node is used
1064 to mark offlined constructors. */
1065 && (in_lto_p
|| DECL_INITIAL (decl
) != error_mark_node
))
1067 unsigned int const_align
1068 = targetm
.constant_alignment (DECL_INITIAL (decl
), align
);
1069 /* Don't increase alignment too much for TLS variables - TLS
1070 space is too precious. */
1071 if (! DECL_THREAD_LOCAL_P (decl
) || const_align
<= BITS_PER_WORD
)
1072 align
= const_align
;
1077 /* Reset the alignment in case we have made it tighter, so we can benefit
1078 from it in get_pointer_alignment. */
1079 SET_DECL_ALIGN (decl
, align
);
1082 /* Return DECL_ALIGN (decl), possibly increased for optimization purposes
1083 beyond what align_variable returned. */
1086 get_variable_align (tree decl
)
1088 unsigned int align
= DECL_ALIGN (decl
);
1090 /* For user aligned vars or static vars align_variable already did
1092 if (DECL_USER_ALIGN (decl
) || !TREE_PUBLIC (decl
))
1095 #ifdef DATA_ABI_ALIGNMENT
1096 if (DECL_THREAD_LOCAL_P (decl
))
1097 align
= DATA_ABI_ALIGNMENT (TREE_TYPE (decl
), align
);
1100 /* For decls that bind to the current definition, align_variable
1101 did also everything, except for not assuming ABI required alignment
1102 of TLS variables. For other vars, increase the alignment here
1103 as an optimization. */
1104 if (!decl_binds_to_current_def_p (decl
))
1106 /* On some machines, it is good to increase alignment sometimes. */
1107 #ifdef DATA_ALIGNMENT
1108 unsigned int data_align
= DATA_ALIGNMENT (TREE_TYPE (decl
), align
);
1109 /* Don't increase alignment too much for TLS variables - TLS space
1111 if (! DECL_THREAD_LOCAL_P (decl
) || data_align
<= BITS_PER_WORD
)
1114 if (DECL_INITIAL (decl
) != 0
1115 /* In LTO we have no errors in program; error_mark_node is used
1116 to mark offlined constructors. */
1117 && (in_lto_p
|| DECL_INITIAL (decl
) != error_mark_node
))
1119 unsigned int const_align
1120 = targetm
.constant_alignment (DECL_INITIAL (decl
), align
);
1121 /* Don't increase alignment too much for TLS variables - TLS space
1123 if (! DECL_THREAD_LOCAL_P (decl
) || const_align
<= BITS_PER_WORD
)
1124 align
= const_align
;
1131 /* Return the section into which the given VAR_DECL or CONST_DECL
1132 should be placed. PREFER_NOSWITCH_P is true if a noswitch
1133 section should be used wherever possible. */
1136 get_variable_section (tree decl
, bool prefer_noswitch_p
)
1138 addr_space_t as
= ADDR_SPACE_GENERIC
;
1140 varpool_node
*vnode
= varpool_node::get (decl
);
1143 vnode
= vnode
->ultimate_alias_target ();
1147 if (TREE_TYPE (decl
) != error_mark_node
)
1148 as
= TYPE_ADDR_SPACE (TREE_TYPE (decl
));
1150 /* We need the constructor to figure out reloc flag. */
1152 vnode
->get_constructor ();
1154 if (DECL_COMMON (decl
))
1156 /* If the decl has been given an explicit section name, or it resides
1157 in a non-generic address space, then it isn't common, and shouldn't
1158 be handled as such. */
1159 gcc_assert (DECL_SECTION_NAME (decl
) == NULL
1160 && ADDR_SPACE_GENERIC_P (as
));
1161 if (DECL_THREAD_LOCAL_P (decl
))
1162 return tls_comm_section
;
1163 else if (TREE_PUBLIC (decl
) && bss_initializer_p (decl
))
1164 return comm_section
;
1167 if (DECL_INITIAL (decl
) == error_mark_node
)
1168 reloc
= contains_pointers_p (TREE_TYPE (decl
)) ? 3 : 0;
1169 else if (DECL_INITIAL (decl
))
1170 reloc
= compute_reloc_for_constant (DECL_INITIAL (decl
));
1174 resolve_unique_section (decl
, reloc
, flag_data_sections
);
1175 if (IN_NAMED_SECTION (decl
))
1177 section
*sect
= get_named_section (decl
, NULL
, reloc
);
1179 if ((sect
->common
.flags
& SECTION_BSS
)
1180 && !bss_initializer_p (decl
, true))
1182 error_at (DECL_SOURCE_LOCATION (decl
),
1183 "only zero initializers are allowed in section %qs",
1185 DECL_INITIAL (decl
) = error_mark_node
;
1190 if (ADDR_SPACE_GENERIC_P (as
)
1191 && !DECL_THREAD_LOCAL_P (decl
)
1192 && !(prefer_noswitch_p
&& targetm
.have_switchable_bss_sections
)
1193 && bss_initializer_p (decl
))
1195 if (!TREE_PUBLIC (decl
)
1196 && !((flag_sanitize
& SANITIZE_ADDRESS
)
1197 && asan_protect_global (decl
)))
1198 return lcomm_section
;
1199 if (bss_noswitch_section
)
1200 return bss_noswitch_section
;
1203 return targetm
.asm_out
.select_section (decl
, reloc
,
1204 get_variable_align (decl
));
1207 /* Return the block into which object_block DECL should be placed. */
1209 static struct object_block
*
1210 get_block_for_decl (tree decl
)
1216 /* The object must be defined in this translation unit. */
1217 if (DECL_EXTERNAL (decl
))
1220 /* There's no point using object blocks for something that is
1221 isolated by definition. */
1222 if (DECL_COMDAT_GROUP (decl
))
1226 /* We can only calculate block offsets if the decl has a known
1228 if (DECL_SIZE_UNIT (decl
) == NULL
)
1230 if (!tree_fits_uhwi_p (DECL_SIZE_UNIT (decl
)))
1233 /* Find out which section should contain DECL. We cannot put it into
1234 an object block if it requires a standalone definition. */
1236 align_variable (decl
, 0);
1237 sect
= get_variable_section (decl
, true);
1238 if (SECTION_STYLE (sect
) == SECTION_NOSWITCH
)
1241 return get_block_for_section (sect
);
1244 /* Make sure block symbol SYMBOL is in block BLOCK. */
1247 change_symbol_block (rtx symbol
, struct object_block
*block
)
1249 if (block
!= SYMBOL_REF_BLOCK (symbol
))
1251 gcc_assert (SYMBOL_REF_BLOCK_OFFSET (symbol
) < 0);
1252 SYMBOL_REF_BLOCK (symbol
) = block
;
1256 /* Return true if it is possible to put DECL in an object_block. */
1259 use_blocks_for_decl_p (tree decl
)
1261 struct symtab_node
*snode
;
1263 /* Only data DECLs can be placed into object blocks. */
1264 if (!VAR_P (decl
) && TREE_CODE (decl
) != CONST_DECL
)
1267 /* DECL_INITIAL (decl) set to decl is a hack used for some decls that
1268 are never used from code directly and we never want object block handling
1270 if (DECL_INITIAL (decl
) == decl
)
1273 /* If this decl is an alias, then we don't want to emit a
1276 && (snode
= symtab_node::get (decl
)) != NULL
1280 return targetm
.use_blocks_for_decl_p (decl
);
1283 /* Follow the IDENTIFIER_TRANSPARENT_ALIAS chain starting at *ALIAS
1284 until we find an identifier that is not itself a transparent alias.
1285 Modify the alias passed to it by reference (and all aliases on the
1286 way to the ultimate target), such that they do not have to be
1287 followed again, and return the ultimate target of the alias
1291 ultimate_transparent_alias_target (tree
*alias
)
1293 tree target
= *alias
;
1295 if (IDENTIFIER_TRANSPARENT_ALIAS (target
))
1297 gcc_assert (TREE_CHAIN (target
));
1298 target
= ultimate_transparent_alias_target (&TREE_CHAIN (target
));
1299 gcc_assert (! IDENTIFIER_TRANSPARENT_ALIAS (target
)
1300 && ! TREE_CHAIN (target
));
1307 /* Create the DECL_RTL for a VAR_DECL or FUNCTION_DECL. DECL should
1308 have static storage duration. In other words, it should not be an
1309 automatic variable, including PARM_DECLs.
1311 There is, however, one exception: this function handles variables
1312 explicitly placed in a particular register by the user.
1314 This is never called for PARM_DECL nodes. */
1317 make_decl_rtl (tree decl
)
1319 const char *name
= 0;
1324 /* Check that we are not being given an automatic variable. */
1325 gcc_assert (TREE_CODE (decl
) != PARM_DECL
1326 && TREE_CODE (decl
) != RESULT_DECL
);
1328 /* A weak alias has TREE_PUBLIC set but not the other bits. */
1329 gcc_assert (!VAR_P (decl
)
1330 || TREE_STATIC (decl
)
1331 || TREE_PUBLIC (decl
)
1332 || DECL_EXTERNAL (decl
)
1333 || DECL_REGISTER (decl
));
1335 /* And that we were not given a type or a label. */
1336 gcc_assert (TREE_CODE (decl
) != TYPE_DECL
1337 && TREE_CODE (decl
) != LABEL_DECL
);
1339 /* For a duplicate declaration, we can be called twice on the
1340 same DECL node. Don't discard the RTL already made. */
1341 if (DECL_RTL_SET_P (decl
))
1343 /* If the old RTL had the wrong mode, fix the mode. */
1344 x
= DECL_RTL (decl
);
1345 if (GET_MODE (x
) != DECL_MODE (decl
))
1346 SET_DECL_RTL (decl
, adjust_address_nv (x
, DECL_MODE (decl
), 0));
1348 if (TREE_CODE (decl
) != FUNCTION_DECL
&& DECL_REGISTER (decl
))
1351 /* ??? Another way to do this would be to maintain a hashed
1352 table of such critters. Instead of adding stuff to a DECL
1353 to give certain attributes to it, we could use an external
1354 hash map from DECL to set of attributes. */
1356 /* Let the target reassign the RTL if it wants.
1357 This is necessary, for example, when one machine specific
1358 decl attribute overrides another. */
1359 targetm
.encode_section_info (decl
, DECL_RTL (decl
), false);
1361 /* If the symbol has a SYMBOL_REF_BLOCK field, update it based
1362 on the new decl information. */
1364 && GET_CODE (XEXP (x
, 0)) == SYMBOL_REF
1365 && SYMBOL_REF_HAS_BLOCK_INFO_P (XEXP (x
, 0)))
1366 change_symbol_block (XEXP (x
, 0), get_block_for_decl (decl
));
1371 /* If this variable belongs to the global constant pool, retrieve the
1372 pre-computed RTL or recompute it in LTO mode. */
1373 if (VAR_P (decl
) && DECL_IN_CONSTANT_POOL (decl
))
1375 SET_DECL_RTL (decl
, output_constant_def (DECL_INITIAL (decl
), 1));
1379 id
= DECL_ASSEMBLER_NAME (decl
);
1380 name
= IDENTIFIER_POINTER (id
);
1382 if (name
[0] != '*' && TREE_CODE (decl
) != FUNCTION_DECL
1383 && DECL_REGISTER (decl
))
1385 error ("register name not specified for %q+D", decl
);
1387 else if (TREE_CODE (decl
) != FUNCTION_DECL
&& DECL_REGISTER (decl
))
1389 const char *asmspec
= name
+1;
1390 machine_mode mode
= DECL_MODE (decl
);
1391 reg_number
= decode_reg_name (asmspec
);
1392 /* First detect errors in declaring global registers. */
1393 if (reg_number
== -1)
1394 error ("register name not specified for %q+D", decl
);
1395 else if (reg_number
< 0)
1396 error ("invalid register name for %q+D", decl
);
1397 else if (mode
== BLKmode
)
1398 error ("data type of %q+D isn%'t suitable for a register",
1400 else if (!in_hard_reg_set_p (accessible_reg_set
, mode
, reg_number
))
1401 error ("the register specified for %q+D cannot be accessed"
1402 " by the current target", decl
);
1403 else if (!in_hard_reg_set_p (operand_reg_set
, mode
, reg_number
))
1404 error ("the register specified for %q+D is not general enough"
1405 " to be used as a register variable", decl
);
1406 else if (!targetm
.hard_regno_mode_ok (reg_number
, mode
))
1407 error ("register specified for %q+D isn%'t suitable for data type",
1409 /* Now handle properly declared static register variables. */
1414 if (DECL_INITIAL (decl
) != 0 && TREE_STATIC (decl
))
1416 DECL_INITIAL (decl
) = 0;
1417 error ("global register variable has initial value");
1419 if (TREE_THIS_VOLATILE (decl
))
1420 warning (OPT_Wvolatile_register_var
,
1421 "optimization may eliminate reads and/or "
1422 "writes to register variables");
1424 /* If the user specified one of the eliminables registers here,
1425 e.g., FRAME_POINTER_REGNUM, we don't want to get this variable
1426 confused with that register and be eliminated. This usage is
1427 somewhat suspect... */
1429 SET_DECL_RTL (decl
, gen_raw_REG (mode
, reg_number
));
1430 ORIGINAL_REGNO (DECL_RTL (decl
)) = reg_number
;
1431 REG_USERVAR_P (DECL_RTL (decl
)) = 1;
1433 if (TREE_STATIC (decl
))
1435 /* Make this register global, so not usable for anything
1437 #ifdef ASM_DECLARE_REGISTER_GLOBAL
1438 name
= IDENTIFIER_POINTER (DECL_NAME (decl
));
1439 ASM_DECLARE_REGISTER_GLOBAL (asm_out_file
, decl
, reg_number
, name
);
1441 nregs
= hard_regno_nregs (reg_number
, mode
);
1443 globalize_reg (decl
, reg_number
+ --nregs
);
1446 /* As a register variable, it has no section. */
1449 /* Avoid internal errors from invalid register
1451 SET_DECL_ASSEMBLER_NAME (decl
, NULL_TREE
);
1452 DECL_HARD_REGISTER (decl
) = 0;
1453 /* Also avoid SSA inconsistencies by pretending this is an external
1455 DECL_EXTERNAL (decl
) = 1;
1458 /* Now handle ordinary static variables and functions (in memory).
1459 Also handle vars declared register invalidly. */
1460 else if (name
[0] == '*')
1462 #ifdef REGISTER_PREFIX
1463 if (strlen (REGISTER_PREFIX
) != 0)
1465 reg_number
= decode_reg_name (name
);
1466 if (reg_number
>= 0 || reg_number
== -3)
1467 error ("register name given for non-register variable %q+D", decl
);
1472 /* Specifying a section attribute on a variable forces it into a
1473 non-.bss section, and thus it cannot be common. */
1474 /* FIXME: In general this code should not be necessary because
1475 visibility pass is doing the same work. But notice_global_symbol
1476 is called early and it needs to make DECL_RTL to get the name.
1477 we take care of recomputing the DECL_RTL after visibility is changed. */
1479 && (TREE_STATIC (decl
) || DECL_EXTERNAL (decl
))
1480 && DECL_SECTION_NAME (decl
) != NULL
1481 && DECL_INITIAL (decl
) == NULL_TREE
1482 && DECL_COMMON (decl
))
1483 DECL_COMMON (decl
) = 0;
1485 /* Variables can't be both common and weak. */
1486 if (VAR_P (decl
) && DECL_WEAK (decl
))
1487 DECL_COMMON (decl
) = 0;
1489 if (use_object_blocks_p () && use_blocks_for_decl_p (decl
))
1490 x
= create_block_symbol (name
, get_block_for_decl (decl
), -1);
1493 machine_mode address_mode
= Pmode
;
1494 if (TREE_TYPE (decl
) != error_mark_node
)
1496 addr_space_t as
= TYPE_ADDR_SPACE (TREE_TYPE (decl
));
1497 address_mode
= targetm
.addr_space
.address_mode (as
);
1499 x
= gen_rtx_SYMBOL_REF (address_mode
, name
);
1501 SYMBOL_REF_WEAK (x
) = DECL_WEAK (decl
);
1502 SET_SYMBOL_REF_DECL (x
, decl
);
1504 x
= gen_rtx_MEM (DECL_MODE (decl
), x
);
1505 if (TREE_CODE (decl
) != FUNCTION_DECL
)
1506 set_mem_attributes (x
, decl
, 1);
1507 SET_DECL_RTL (decl
, x
);
1509 /* Optionally set flags or add text to the name to record information
1510 such as that it is a function name.
1511 If the name is changed, the macro ASM_OUTPUT_LABELREF
1512 will have to know how to strip this information. */
1513 targetm
.encode_section_info (decl
, DECL_RTL (decl
), true);
1516 /* Like make_decl_rtl, but inhibit creation of new alias sets when
1517 calling make_decl_rtl. Also, reset DECL_RTL before returning the
1521 make_decl_rtl_for_debug (tree decl
)
1523 unsigned int save_aliasing_flag
;
1526 if (DECL_RTL_SET_P (decl
))
1527 return DECL_RTL (decl
);
1529 /* Kludge alert! Somewhere down the call chain, make_decl_rtl will
1530 call new_alias_set. If running with -fcompare-debug, sometimes
1531 we do not want to create alias sets that will throw the alias
1532 numbers off in the comparison dumps. So... clearing
1533 flag_strict_aliasing will keep new_alias_set() from creating a
1535 save_aliasing_flag
= flag_strict_aliasing
;
1536 flag_strict_aliasing
= 0;
1538 rtl
= DECL_RTL (decl
);
1539 /* Reset DECL_RTL back, as various parts of the compiler expects
1540 DECL_RTL set meaning it is actually going to be output. */
1541 SET_DECL_RTL (decl
, NULL
);
1543 flag_strict_aliasing
= save_aliasing_flag
;
1547 /* Output a string of literal assembler code
1548 for an `asm' keyword used between functions. */
1551 assemble_asm (tree string
)
1556 if (TREE_CODE (string
) == ADDR_EXPR
)
1557 string
= TREE_OPERAND (string
, 0);
1559 p
= TREE_STRING_POINTER (string
);
1560 fprintf (asm_out_file
, "%s%s\n", p
[0] == '\t' ? "" : "\t", p
);
1563 /* Write the address of the entity given by SYMBOL to SEC. */
1565 assemble_addr_to_section (rtx symbol
, section
*sec
)
1567 switch_to_section (sec
);
1568 assemble_align (POINTER_SIZE
);
1569 assemble_integer (symbol
, POINTER_SIZE_UNITS
, POINTER_SIZE
, 1);
1572 /* Return the numbered .ctors.N (if CONSTRUCTOR_P) or .dtors.N (if
1573 not) section for PRIORITY. */
1575 get_cdtor_priority_section (int priority
, bool constructor_p
)
1577 /* Buffer conservatively large enough for the full range of a 32-bit
1578 int plus the text below. */
1581 /* ??? This only works reliably with the GNU linker. */
1582 sprintf (buf
, "%s.%.5u",
1583 constructor_p
? ".ctors" : ".dtors",
1584 /* Invert the numbering so the linker puts us in the proper
1585 order; constructors are run from right to left, and the
1586 linker sorts in increasing order. */
1587 MAX_INIT_PRIORITY
- priority
);
1588 return get_section (buf
, SECTION_WRITE
, NULL
);
1592 default_named_section_asm_out_destructor (rtx symbol
, int priority
)
1596 if (priority
!= DEFAULT_INIT_PRIORITY
)
1597 sec
= get_cdtor_priority_section (priority
,
1598 /*constructor_p=*/false);
1600 sec
= get_section (".dtors", SECTION_WRITE
, NULL
);
1602 assemble_addr_to_section (symbol
, sec
);
1605 #ifdef DTORS_SECTION_ASM_OP
1607 default_dtor_section_asm_out_destructor (rtx symbol
,
1608 int priority ATTRIBUTE_UNUSED
)
1610 assemble_addr_to_section (symbol
, dtors_section
);
1615 default_named_section_asm_out_constructor (rtx symbol
, int priority
)
1619 if (priority
!= DEFAULT_INIT_PRIORITY
)
1620 sec
= get_cdtor_priority_section (priority
,
1621 /*constructor_p=*/true);
1623 sec
= get_section (".ctors", SECTION_WRITE
, NULL
);
1625 assemble_addr_to_section (symbol
, sec
);
1628 #ifdef CTORS_SECTION_ASM_OP
1630 default_ctor_section_asm_out_constructor (rtx symbol
,
1631 int priority ATTRIBUTE_UNUSED
)
1633 assemble_addr_to_section (symbol
, ctors_section
);
1637 /* CONSTANT_POOL_BEFORE_FUNCTION may be defined as an expression with
1638 a nonzero value if the constant pool should be output before the
1639 start of the function, or a zero value if the pool should output
1640 after the end of the function. The default is to put it before the
1643 #ifndef CONSTANT_POOL_BEFORE_FUNCTION
1644 #define CONSTANT_POOL_BEFORE_FUNCTION 1
1647 /* DECL is an object (either VAR_DECL or FUNCTION_DECL) which is going
1648 to be output to assembler.
1649 Set first_global_object_name and weak_global_object_name as appropriate. */
1652 notice_global_symbol (tree decl
)
1654 const char **t
= &first_global_object_name
;
1656 if (first_global_object_name
1657 || !TREE_PUBLIC (decl
)
1658 || DECL_EXTERNAL (decl
)
1659 || !DECL_NAME (decl
)
1660 || (VAR_P (decl
) && DECL_HARD_REGISTER (decl
))
1661 || (TREE_CODE (decl
) != FUNCTION_DECL
1663 || (DECL_COMMON (decl
)
1664 && (DECL_INITIAL (decl
) == 0
1665 || DECL_INITIAL (decl
) == error_mark_node
)))))
1668 /* We win when global object is found, but it is useful to know about weak
1669 symbol as well so we can produce nicer unique names. */
1670 if (DECL_WEAK (decl
) || DECL_ONE_ONLY (decl
) || flag_shlib
)
1671 t
= &weak_global_object_name
;
1675 tree id
= DECL_ASSEMBLER_NAME (decl
);
1676 ultimate_transparent_alias_target (&id
);
1677 *t
= ggc_strdup (targetm
.strip_name_encoding (IDENTIFIER_POINTER (id
)));
1681 /* If not using flag_reorder_blocks_and_partition, decide early whether the
1682 current function goes into the cold section, so that targets can use
1683 current_function_section during RTL expansion. DECL describes the
1687 decide_function_section (tree decl
)
1689 first_function_block_is_cold
= false;
1691 if (DECL_SECTION_NAME (decl
))
1693 struct cgraph_node
*node
= cgraph_node::get (current_function_decl
);
1694 /* Calls to function_section rely on first_function_block_is_cold
1696 first_function_block_is_cold
= (node
1698 == NODE_FREQUENCY_UNLIKELY_EXECUTED
);
1701 in_cold_section_p
= first_function_block_is_cold
;
1704 /* Get the function's name, as described by its RTL. This may be
1705 different from the DECL_NAME name used in the source file. */
1707 get_fnname_from_decl (tree decl
)
1709 rtx x
= DECL_RTL (decl
);
1710 gcc_assert (MEM_P (x
));
1712 gcc_assert (GET_CODE (x
) == SYMBOL_REF
);
1716 /* Output assembler code for the constant pool of a function and associated
1717 with defining the name of the function. DECL describes the function.
1718 NAME is the function's name. For the constant pool, we use the current
1719 constant pool data. */
1722 assemble_start_function (tree decl
, const char *fnname
)
1725 char tmp_label
[100];
1726 bool hot_label_written
= false;
1728 if (crtl
->has_bb_partition
)
1730 ASM_GENERATE_INTERNAL_LABEL (tmp_label
, "LHOTB", const_labelno
);
1731 crtl
->subsections
.hot_section_label
= ggc_strdup (tmp_label
);
1732 ASM_GENERATE_INTERNAL_LABEL (tmp_label
, "LCOLDB", const_labelno
);
1733 crtl
->subsections
.cold_section_label
= ggc_strdup (tmp_label
);
1734 ASM_GENERATE_INTERNAL_LABEL (tmp_label
, "LHOTE", const_labelno
);
1735 crtl
->subsections
.hot_section_end_label
= ggc_strdup (tmp_label
);
1736 ASM_GENERATE_INTERNAL_LABEL (tmp_label
, "LCOLDE", const_labelno
);
1737 crtl
->subsections
.cold_section_end_label
= ggc_strdup (tmp_label
);
1739 cold_function_name
= NULL_TREE
;
1743 crtl
->subsections
.hot_section_label
= NULL
;
1744 crtl
->subsections
.cold_section_label
= NULL
;
1745 crtl
->subsections
.hot_section_end_label
= NULL
;
1746 crtl
->subsections
.cold_section_end_label
= NULL
;
1749 /* The following code does not need preprocessing in the assembler. */
1753 if (CONSTANT_POOL_BEFORE_FUNCTION
)
1754 output_constant_pool (fnname
, decl
);
1756 align
= symtab_node::get (decl
)->definition_alignment ();
1758 /* Make sure the not and cold text (code) sections are properly
1759 aligned. This is necessary here in the case where the function
1760 has both hot and cold sections, because we don't want to re-set
1761 the alignment when the section switch happens mid-function. */
1763 if (crtl
->has_bb_partition
)
1765 first_function_block_is_cold
= false;
1767 switch_to_section (unlikely_text_section ());
1768 assemble_align (align
);
1769 ASM_OUTPUT_LABEL (asm_out_file
, crtl
->subsections
.cold_section_label
);
1771 /* When the function starts with a cold section, we need to explicitly
1772 align the hot section and write out the hot section label.
1773 But if the current function is a thunk, we do not have a CFG. */
1775 && BB_PARTITION (ENTRY_BLOCK_PTR_FOR_FN (cfun
)->next_bb
) == BB_COLD_PARTITION
)
1777 switch_to_section (text_section
);
1778 assemble_align (align
);
1779 ASM_OUTPUT_LABEL (asm_out_file
, crtl
->subsections
.hot_section_label
);
1780 hot_label_written
= true;
1781 first_function_block_is_cold
= true;
1783 in_cold_section_p
= first_function_block_is_cold
;
1787 /* Switch to the correct text section for the start of the function. */
1789 switch_to_section (function_section (decl
));
1790 if (crtl
->has_bb_partition
&& !hot_label_written
)
1791 ASM_OUTPUT_LABEL (asm_out_file
, crtl
->subsections
.hot_section_label
);
1793 /* Tell assembler to move to target machine's alignment for functions. */
1794 align
= floor_log2 (align
/ BITS_PER_UNIT
);
1797 ASM_OUTPUT_ALIGN (asm_out_file
, align
);
1800 /* Handle a user-specified function alignment.
1801 Note that we still need to align to DECL_ALIGN, as above,
1802 because ASM_OUTPUT_MAX_SKIP_ALIGN might not do any alignment at all. */
1803 if (! DECL_USER_ALIGN (decl
)
1804 && align_functions
.levels
[0].log
> align
1805 && optimize_function_for_speed_p (cfun
))
1807 #ifdef ASM_OUTPUT_MAX_SKIP_ALIGN
1808 int align_log
= align_functions
.levels
[0].log
;
1810 int max_skip
= align_functions
.levels
[0].maxskip
;
1811 if (flag_limit_function_alignment
&& crtl
->max_insn_address
> 0
1812 && max_skip
>= crtl
->max_insn_address
)
1813 max_skip
= crtl
->max_insn_address
- 1;
1815 #ifdef ASM_OUTPUT_MAX_SKIP_ALIGN
1816 ASM_OUTPUT_MAX_SKIP_ALIGN (asm_out_file
, align_log
, max_skip
);
1817 if (max_skip
== align_functions
.levels
[0].maxskip
)
1818 ASM_OUTPUT_MAX_SKIP_ALIGN (asm_out_file
,
1819 align_functions
.levels
[1].log
,
1820 align_functions
.levels
[1].maxskip
);
1822 ASM_OUTPUT_ALIGN (asm_out_file
, align_functions
.levels
[0].log
);
1826 #ifdef ASM_OUTPUT_FUNCTION_PREFIX
1827 ASM_OUTPUT_FUNCTION_PREFIX (asm_out_file
, fnname
);
1830 if (!DECL_IGNORED_P (decl
))
1831 (*debug_hooks
->begin_function
) (decl
);
1833 /* Make function name accessible from other files, if appropriate. */
1835 if (TREE_PUBLIC (decl
))
1837 notice_global_symbol (decl
);
1839 globalize_decl (decl
);
1841 maybe_assemble_visibility (decl
);
1844 if (DECL_PRESERVE_P (decl
))
1845 targetm
.asm_out
.mark_decl_preserved (fnname
);
1847 unsigned HOST_WIDE_INT patch_area_size
= function_entry_patch_area_size
;
1848 unsigned HOST_WIDE_INT patch_area_entry
= function_entry_patch_area_start
;
1850 tree patchable_function_entry_attr
1851 = lookup_attribute ("patchable_function_entry", DECL_ATTRIBUTES (decl
));
1852 if (patchable_function_entry_attr
)
1854 tree pp_val
= TREE_VALUE (patchable_function_entry_attr
);
1855 tree patchable_function_entry_value1
= TREE_VALUE (pp_val
);
1857 if (tree_fits_uhwi_p (patchable_function_entry_value1
))
1858 patch_area_size
= tree_to_uhwi (patchable_function_entry_value1
);
1862 patch_area_entry
= 0;
1863 if (list_length (pp_val
) > 1)
1865 tree patchable_function_entry_value2
=
1866 TREE_VALUE (TREE_CHAIN (pp_val
));
1868 if (tree_fits_uhwi_p (patchable_function_entry_value2
))
1869 patch_area_entry
= tree_to_uhwi (patchable_function_entry_value2
);
1875 if (patch_area_entry
> patch_area_size
)
1877 if (patch_area_size
> 0)
1878 warning (OPT_Wattributes
, "Patchable function entry > size");
1879 patch_area_entry
= 0;
1882 /* Emit the patching area before the entry label, if any. */
1883 if (patch_area_entry
> 0)
1884 targetm
.asm_out
.print_patchable_function_entry (asm_out_file
,
1885 patch_area_entry
, true);
1887 /* Do any machine/system dependent processing of the function name. */
1888 #ifdef ASM_DECLARE_FUNCTION_NAME
1889 ASM_DECLARE_FUNCTION_NAME (asm_out_file
, fnname
, current_function_decl
);
1891 /* Standard thing is just output label for the function. */
1892 ASM_OUTPUT_FUNCTION_LABEL (asm_out_file
, fnname
, current_function_decl
);
1893 #endif /* ASM_DECLARE_FUNCTION_NAME */
1895 /* And the area after the label. Record it if we haven't done so yet. */
1896 if (patch_area_size
> patch_area_entry
)
1897 targetm
.asm_out
.print_patchable_function_entry (asm_out_file
,
1898 patch_area_size
-patch_area_entry
,
1899 patch_area_entry
== 0);
1901 if (lookup_attribute ("no_split_stack", DECL_ATTRIBUTES (decl
)))
1902 saw_no_split_stack
= true;
1905 /* Output assembler code associated with defining the size of the
1906 function. DECL describes the function. NAME is the function's name. */
1909 assemble_end_function (tree decl
, const char *fnname ATTRIBUTE_UNUSED
)
1911 #ifdef ASM_DECLARE_FUNCTION_SIZE
1912 /* We could have switched section in the middle of the function. */
1913 if (crtl
->has_bb_partition
)
1914 switch_to_section (function_section (decl
));
1915 ASM_DECLARE_FUNCTION_SIZE (asm_out_file
, fnname
, decl
);
1917 if (! CONSTANT_POOL_BEFORE_FUNCTION
)
1919 output_constant_pool (fnname
, decl
);
1920 switch_to_section (function_section (decl
)); /* need to switch back */
1922 /* Output labels for end of hot/cold text sections (to be used by
1924 if (crtl
->has_bb_partition
)
1926 section
*save_text_section
;
1928 save_text_section
= in_section
;
1929 switch_to_section (unlikely_text_section ());
1930 #ifdef ASM_DECLARE_COLD_FUNCTION_SIZE
1931 if (cold_function_name
!= NULL_TREE
)
1932 ASM_DECLARE_COLD_FUNCTION_SIZE (asm_out_file
,
1933 IDENTIFIER_POINTER (cold_function_name
),
1936 ASM_OUTPUT_LABEL (asm_out_file
, crtl
->subsections
.cold_section_end_label
);
1937 if (first_function_block_is_cold
)
1938 switch_to_section (text_section
);
1940 switch_to_section (function_section (decl
));
1941 ASM_OUTPUT_LABEL (asm_out_file
, crtl
->subsections
.hot_section_end_label
);
1942 switch_to_section (save_text_section
);
1946 /* Assemble code to leave SIZE bytes of zeros. */
1949 assemble_zeros (unsigned HOST_WIDE_INT size
)
1951 /* Do no output if -fsyntax-only. */
1952 if (flag_syntax_only
)
1955 #ifdef ASM_NO_SKIP_IN_TEXT
1956 /* The `space' pseudo in the text section outputs nop insns rather than 0s,
1957 so we must output 0s explicitly in the text section. */
1958 if (ASM_NO_SKIP_IN_TEXT
&& (in_section
->common
.flags
& SECTION_CODE
) != 0)
1960 unsigned HOST_WIDE_INT i
;
1961 for (i
= 0; i
< size
; i
++)
1962 assemble_integer (const0_rtx
, 1, BITS_PER_UNIT
, 1);
1967 ASM_OUTPUT_SKIP (asm_out_file
, size
);
1970 /* Assemble an alignment pseudo op for an ALIGN-bit boundary. */
1973 assemble_align (int align
)
1975 if (align
> BITS_PER_UNIT
)
1977 ASM_OUTPUT_ALIGN (asm_out_file
, floor_log2 (align
/ BITS_PER_UNIT
));
1981 /* Assemble a string constant with the specified C string as contents. */
1984 assemble_string (const char *p
, int size
)
1989 /* If the string is very long, split it up. */
1993 int thissize
= size
- pos
;
1994 if (thissize
> maximum
)
1997 ASM_OUTPUT_ASCII (asm_out_file
, p
, thissize
);
2005 /* A noswitch_section_callback for lcomm_section. */
2008 emit_local (tree decl ATTRIBUTE_UNUSED
,
2009 const char *name ATTRIBUTE_UNUSED
,
2010 unsigned HOST_WIDE_INT size ATTRIBUTE_UNUSED
,
2011 unsigned HOST_WIDE_INT rounded ATTRIBUTE_UNUSED
)
2013 #if defined ASM_OUTPUT_ALIGNED_DECL_LOCAL
2014 unsigned int align
= symtab_node::get (decl
)->definition_alignment ();
2015 ASM_OUTPUT_ALIGNED_DECL_LOCAL (asm_out_file
, decl
, name
,
2018 #elif defined ASM_OUTPUT_ALIGNED_LOCAL
2019 unsigned int align
= symtab_node::get (decl
)->definition_alignment ();
2020 ASM_OUTPUT_ALIGNED_LOCAL (asm_out_file
, name
, size
, align
);
2023 ASM_OUTPUT_LOCAL (asm_out_file
, name
, size
, rounded
);
2028 /* A noswitch_section_callback for bss_noswitch_section. */
2030 #if defined ASM_OUTPUT_ALIGNED_BSS
2032 emit_bss (tree decl ATTRIBUTE_UNUSED
,
2033 const char *name ATTRIBUTE_UNUSED
,
2034 unsigned HOST_WIDE_INT size ATTRIBUTE_UNUSED
,
2035 unsigned HOST_WIDE_INT rounded ATTRIBUTE_UNUSED
)
2037 ASM_OUTPUT_ALIGNED_BSS (asm_out_file
, decl
, name
, size
,
2038 get_variable_align (decl
));
2043 /* A noswitch_section_callback for comm_section. */
2046 emit_common (tree decl ATTRIBUTE_UNUSED
,
2047 const char *name ATTRIBUTE_UNUSED
,
2048 unsigned HOST_WIDE_INT size ATTRIBUTE_UNUSED
,
2049 unsigned HOST_WIDE_INT rounded ATTRIBUTE_UNUSED
)
2051 #if defined ASM_OUTPUT_ALIGNED_DECL_COMMON
2052 ASM_OUTPUT_ALIGNED_DECL_COMMON (asm_out_file
, decl
, name
,
2053 size
, get_variable_align (decl
));
2055 #elif defined ASM_OUTPUT_ALIGNED_COMMON
2056 ASM_OUTPUT_ALIGNED_COMMON (asm_out_file
, name
, size
,
2057 get_variable_align (decl
));
2060 ASM_OUTPUT_COMMON (asm_out_file
, name
, size
, rounded
);
2065 /* A noswitch_section_callback for tls_comm_section. */
2068 emit_tls_common (tree decl ATTRIBUTE_UNUSED
,
2069 const char *name ATTRIBUTE_UNUSED
,
2070 unsigned HOST_WIDE_INT size ATTRIBUTE_UNUSED
,
2071 unsigned HOST_WIDE_INT rounded ATTRIBUTE_UNUSED
)
2073 #ifdef ASM_OUTPUT_TLS_COMMON
2074 ASM_OUTPUT_TLS_COMMON (asm_out_file
, decl
, name
, size
);
2077 sorry ("thread-local COMMON data not implemented");
2082 /* Assemble DECL given that it belongs in SECTION_NOSWITCH section SECT.
2083 NAME is the name of DECL's SYMBOL_REF. */
2086 assemble_noswitch_variable (tree decl
, const char *name
, section
*sect
,
2089 unsigned HOST_WIDE_INT size
, rounded
;
2091 size
= tree_to_uhwi (DECL_SIZE_UNIT (decl
));
2094 if ((flag_sanitize
& SANITIZE_ADDRESS
) && asan_protect_global (decl
))
2095 size
+= asan_red_zone_size (size
);
2097 /* Don't allocate zero bytes of common,
2098 since that means "undefined external" in the linker. */
2102 /* Round size up to multiple of BIGGEST_ALIGNMENT bits
2103 so that each uninitialized object starts on such a boundary. */
2104 rounded
+= (BIGGEST_ALIGNMENT
/ BITS_PER_UNIT
) - 1;
2105 rounded
= (rounded
/ (BIGGEST_ALIGNMENT
/ BITS_PER_UNIT
)
2106 * (BIGGEST_ALIGNMENT
/ BITS_PER_UNIT
));
2108 if (!sect
->noswitch
.callback (decl
, name
, size
, rounded
)
2109 && (unsigned HOST_WIDE_INT
) (align
/ BITS_PER_UNIT
) > rounded
)
2110 error ("requested alignment for %q+D is greater than "
2111 "implemented alignment of %wu", decl
, rounded
);
2114 /* A subroutine of assemble_variable. Output the label and contents of
2115 DECL, whose address is a SYMBOL_REF with name NAME. DONT_OUTPUT_DATA
2116 is as for assemble_variable. */
2119 assemble_variable_contents (tree decl
, const char *name
,
2120 bool dont_output_data
, bool merge_strings
)
2122 /* Do any machine/system dependent processing of the object. */
2123 #ifdef ASM_DECLARE_OBJECT_NAME
2124 last_assemble_variable_decl
= decl
;
2125 ASM_DECLARE_OBJECT_NAME (asm_out_file
, name
, decl
);
2127 /* Standard thing is just output label for the object. */
2128 ASM_OUTPUT_LABEL (asm_out_file
, name
);
2129 #endif /* ASM_DECLARE_OBJECT_NAME */
2131 if (!dont_output_data
)
2133 /* Caller is supposed to use varpool_get_constructor when it wants
2134 to output the body. */
2135 gcc_assert (!in_lto_p
|| DECL_INITIAL (decl
) != error_mark_node
);
2136 if (DECL_INITIAL (decl
)
2137 && DECL_INITIAL (decl
) != error_mark_node
2138 && !initializer_zerop (DECL_INITIAL (decl
)))
2139 /* Output the actual data. */
2140 output_constant (DECL_INITIAL (decl
),
2141 tree_to_uhwi (DECL_SIZE_UNIT (decl
)),
2142 get_variable_align (decl
),
2143 false, merge_strings
);
2145 /* Leave space for it. */
2146 assemble_zeros (tree_to_uhwi (DECL_SIZE_UNIT (decl
)));
2147 targetm
.asm_out
.decl_end ();
2151 /* Write out assembly for the variable DECL, which is not defined in
2152 the current translation unit. */
2154 assemble_undefined_decl (tree decl
)
2156 const char *name
= XSTR (XEXP (DECL_RTL (decl
), 0), 0);
2157 targetm
.asm_out
.assemble_undefined_decl (asm_out_file
, name
, decl
);
2160 /* Assemble everything that is needed for a variable or function declaration.
2161 Not used for automatic variables, and not used for function definitions.
2162 Should not be called for variables of incomplete structure type.
2164 TOP_LEVEL is nonzero if this variable has file scope.
2165 AT_END is nonzero if this is the special handling, at end of compilation,
2166 to define things that have had only tentative definitions.
2167 DONT_OUTPUT_DATA if nonzero means don't actually output the
2168 initial value (that will be done by the caller). */
2171 assemble_variable (tree decl
, int top_level ATTRIBUTE_UNUSED
,
2172 int at_end ATTRIBUTE_UNUSED
, int dont_output_data
)
2175 rtx decl_rtl
, symbol
;
2178 bool asan_protected
= false;
2180 /* This function is supposed to handle VARIABLES. Ensure we have one. */
2181 gcc_assert (VAR_P (decl
));
2183 /* Emulated TLS had better not get this far. */
2184 gcc_checking_assert (targetm
.have_tls
|| !DECL_THREAD_LOCAL_P (decl
));
2186 last_assemble_variable_decl
= 0;
2188 /* Normally no need to say anything here for external references,
2189 since assemble_external is called by the language-specific code
2190 when a declaration is first seen. */
2192 if (DECL_EXTERNAL (decl
))
2195 /* Do nothing for global register variables. */
2196 if (DECL_RTL_SET_P (decl
) && REG_P (DECL_RTL (decl
)))
2198 TREE_ASM_WRITTEN (decl
) = 1;
2202 /* If type was incomplete when the variable was declared,
2203 see if it is complete now. */
2205 if (DECL_SIZE (decl
) == 0)
2206 layout_decl (decl
, 0);
2208 /* Still incomplete => don't allocate it; treat the tentative defn
2209 (which is what it must have been) as an `extern' reference. */
2211 if (!dont_output_data
&& DECL_SIZE (decl
) == 0)
2213 error ("storage size of %q+D isn%'t known", decl
);
2214 TREE_ASM_WRITTEN (decl
) = 1;
2218 /* The first declaration of a variable that comes through this function
2219 decides whether it is global (in C, has external linkage)
2220 or local (in C, has internal linkage). So do nothing more
2221 if this function has already run. */
2223 if (TREE_ASM_WRITTEN (decl
))
2226 /* Make sure targetm.encode_section_info is invoked before we set
2228 decl_rtl
= DECL_RTL (decl
);
2230 TREE_ASM_WRITTEN (decl
) = 1;
2232 /* Do no output if -fsyntax-only. */
2233 if (flag_syntax_only
)
2236 if (! dont_output_data
2237 && ! valid_constant_size_p (DECL_SIZE_UNIT (decl
)))
2239 error ("size of variable %q+D is too large", decl
);
2243 gcc_assert (MEM_P (decl_rtl
));
2244 gcc_assert (GET_CODE (XEXP (decl_rtl
, 0)) == SYMBOL_REF
);
2245 symbol
= XEXP (decl_rtl
, 0);
2247 /* If this symbol belongs to the tree constant pool, output the constant
2248 if it hasn't already been written. */
2249 if (TREE_CONSTANT_POOL_ADDRESS_P (symbol
))
2251 tree decl
= SYMBOL_REF_DECL (symbol
);
2252 if (!TREE_ASM_WRITTEN (DECL_INITIAL (decl
)))
2253 output_constant_def_contents (symbol
);
2259 name
= XSTR (symbol
, 0);
2260 if (TREE_PUBLIC (decl
) && DECL_NAME (decl
))
2261 notice_global_symbol (decl
);
2263 /* Compute the alignment of this data. */
2265 align_variable (decl
, dont_output_data
);
2267 if ((flag_sanitize
& SANITIZE_ADDRESS
)
2268 && asan_protect_global (decl
))
2270 asan_protected
= true;
2271 SET_DECL_ALIGN (decl
, MAX (DECL_ALIGN (decl
),
2272 ASAN_RED_ZONE_SIZE
* BITS_PER_UNIT
));
2275 set_mem_align (decl_rtl
, DECL_ALIGN (decl
));
2277 align
= get_variable_align (decl
);
2279 if (TREE_PUBLIC (decl
))
2280 maybe_assemble_visibility (decl
);
2282 if (DECL_PRESERVE_P (decl
))
2283 targetm
.asm_out
.mark_decl_preserved (name
);
2285 /* First make the assembler name(s) global if appropriate. */
2286 sect
= get_variable_section (decl
, false);
2287 if (TREE_PUBLIC (decl
)
2288 && (sect
->common
.flags
& SECTION_COMMON
) == 0)
2289 globalize_decl (decl
);
2291 /* Output any data that we will need to use the address of. */
2292 if (DECL_INITIAL (decl
) && DECL_INITIAL (decl
) != error_mark_node
)
2293 output_addressed_constants (DECL_INITIAL (decl
));
2295 /* dbxout.c needs to know this. */
2296 if (sect
&& (sect
->common
.flags
& SECTION_CODE
) != 0)
2297 DECL_IN_TEXT_SECTION (decl
) = 1;
2299 /* If the decl is part of an object_block, make sure that the decl
2300 has been positioned within its block, but do not write out its
2301 definition yet. output_object_blocks will do that later. */
2302 if (SYMBOL_REF_HAS_BLOCK_INFO_P (symbol
) && SYMBOL_REF_BLOCK (symbol
))
2304 gcc_assert (!dont_output_data
);
2305 place_block_symbol (symbol
);
2307 else if (SECTION_STYLE (sect
) == SECTION_NOSWITCH
)
2308 assemble_noswitch_variable (decl
, name
, sect
, align
);
2311 /* Special-case handling of vtv comdat sections. */
2312 if (sect
->named
.name
2313 && (strcmp (sect
->named
.name
, ".vtable_map_vars") == 0))
2314 handle_vtv_comdat_section (sect
, decl
);
2316 switch_to_section (sect
);
2317 if (align
> BITS_PER_UNIT
)
2318 ASM_OUTPUT_ALIGN (asm_out_file
, floor_log2 (align
/ BITS_PER_UNIT
));
2319 assemble_variable_contents (decl
, name
, dont_output_data
,
2320 (sect
->common
.flags
& SECTION_MERGE
)
2321 && (sect
->common
.flags
& SECTION_STRINGS
));
2324 unsigned HOST_WIDE_INT
int size
2325 = tree_to_uhwi (DECL_SIZE_UNIT (decl
));
2326 assemble_zeros (asan_red_zone_size (size
));
2332 /* Given a function declaration (FN_DECL), this function assembles the
2333 function into the .preinit_array section. */
2336 assemble_vtv_preinit_initializer (tree fn_decl
)
2339 unsigned flags
= SECTION_WRITE
;
2340 rtx symbol
= XEXP (DECL_RTL (fn_decl
), 0);
2342 flags
|= SECTION_NOTYPE
;
2343 sect
= get_section (".preinit_array", flags
, fn_decl
);
2344 switch_to_section (sect
);
2345 assemble_addr_to_section (symbol
, sect
);
2348 /* Return 1 if type TYPE contains any pointers. */
2351 contains_pointers_p (tree type
)
2353 switch (TREE_CODE (type
))
2356 case REFERENCE_TYPE
:
2357 /* I'm not sure whether OFFSET_TYPE needs this treatment,
2358 so I'll play safe and return 1. */
2364 case QUAL_UNION_TYPE
:
2367 /* For a type that has fields, see if the fields have pointers. */
2368 for (fields
= TYPE_FIELDS (type
); fields
; fields
= DECL_CHAIN (fields
))
2369 if (TREE_CODE (fields
) == FIELD_DECL
2370 && contains_pointers_p (TREE_TYPE (fields
)))
2376 /* An array type contains pointers if its element type does. */
2377 return contains_pointers_p (TREE_TYPE (type
));
2384 /* We delay assemble_external processing until
2385 the compilation unit is finalized. This is the best we can do for
2386 right now (i.e. stage 3 of GCC 4.0) - the right thing is to delay
2387 it all the way to final. See PR 17982 for further discussion. */
2388 static GTY(()) tree pending_assemble_externals
;
2390 #ifdef ASM_OUTPUT_EXTERNAL
2391 /* Some targets delay some output to final using TARGET_ASM_FILE_END.
2392 As a result, assemble_external can be called after the list of externals
2393 is processed and the pointer set destroyed. */
2394 static bool pending_assemble_externals_processed
;
2396 /* Avoid O(external_decls**2) lookups in the pending_assemble_externals
2397 TREE_LIST in assemble_external. */
2398 static hash_set
<tree
> *pending_assemble_externals_set
;
2400 /* True if DECL is a function decl for which no out-of-line copy exists.
2401 It is assumed that DECL's assembler name has been set. */
2404 incorporeal_function_p (tree decl
)
2406 if (TREE_CODE (decl
) == FUNCTION_DECL
&& fndecl_built_in_p (decl
))
2410 if (DECL_BUILT_IN_CLASS (decl
) == BUILT_IN_NORMAL
2411 && ALLOCA_FUNCTION_CODE_P (DECL_FUNCTION_CODE (decl
)))
2414 name
= IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl
));
2415 /* Atomic or sync builtins which have survived this far will be
2416 resolved externally and therefore are not incorporeal. */
2417 if (strncmp (name
, "__builtin_", 10) == 0)
2423 /* Actually do the tests to determine if this is necessary, and invoke
2424 ASM_OUTPUT_EXTERNAL. */
2426 assemble_external_real (tree decl
)
2428 rtx rtl
= DECL_RTL (decl
);
2430 if (MEM_P (rtl
) && GET_CODE (XEXP (rtl
, 0)) == SYMBOL_REF
2431 && !SYMBOL_REF_USED (XEXP (rtl
, 0))
2432 && !incorporeal_function_p (decl
))
2434 /* Some systems do require some output. */
2435 SYMBOL_REF_USED (XEXP (rtl
, 0)) = 1;
2436 ASM_OUTPUT_EXTERNAL (asm_out_file
, decl
, XSTR (XEXP (rtl
, 0), 0));
2442 process_pending_assemble_externals (void)
2444 #ifdef ASM_OUTPUT_EXTERNAL
2446 for (list
= pending_assemble_externals
; list
; list
= TREE_CHAIN (list
))
2447 assemble_external_real (TREE_VALUE (list
));
2449 pending_assemble_externals
= 0;
2450 pending_assemble_externals_processed
= true;
2451 delete pending_assemble_externals_set
;
2455 /* This TREE_LIST contains any weak symbol declarations waiting
2457 static GTY(()) tree weak_decls
;
2459 /* Output something to declare an external symbol to the assembler,
2460 and qualifiers such as weakness. (Most assemblers don't need
2461 extern declaration, so we normally output nothing.) Do nothing if
2462 DECL is not external. */
2465 assemble_external (tree decl ATTRIBUTE_UNUSED
)
2467 /* Make sure that the ASM_OUT_FILE is open.
2468 If it's not, we should not be calling this function. */
2469 gcc_assert (asm_out_file
);
2471 /* In a perfect world, the following condition would be true.
2472 Sadly, the Go front end emit assembly *from the front end*,
2473 bypassing the call graph. See PR52739. Fix before GCC 4.8. */
2475 /* This function should only be called if we are expanding, or have
2477 Ideally, only final.c would be calling this function, but it is
2478 not clear whether that would break things somehow. See PR 17982
2479 for further discussion. */
2480 gcc_assert (state
== EXPANSION
2481 || state
== FINISHED
);
2484 if (!DECL_P (decl
) || !DECL_EXTERNAL (decl
) || !TREE_PUBLIC (decl
))
2487 /* We want to output annotation for weak and external symbols at
2488 very last to check if they are references or not. */
2490 if (TARGET_SUPPORTS_WEAK
2492 /* TREE_STATIC is a weird and abused creature which is not
2493 generally the right test for whether an entity has been
2494 locally emitted, inlined or otherwise not-really-extern, but
2495 for declarations that can be weak, it happens to be
2497 && !TREE_STATIC (decl
)
2498 && lookup_attribute ("weak", DECL_ATTRIBUTES (decl
))
2499 && value_member (decl
, weak_decls
) == NULL_TREE
)
2500 weak_decls
= tree_cons (NULL
, decl
, weak_decls
);
2502 #ifdef ASM_OUTPUT_EXTERNAL
2503 if (pending_assemble_externals_processed
)
2505 assemble_external_real (decl
);
2509 if (! pending_assemble_externals_set
->add (decl
))
2510 pending_assemble_externals
= tree_cons (NULL
, decl
,
2511 pending_assemble_externals
);
2515 /* Similar, for calling a library function FUN. */
2518 assemble_external_libcall (rtx fun
)
2520 /* Declare library function name external when first used, if nec. */
2521 if (! SYMBOL_REF_USED (fun
))
2523 SYMBOL_REF_USED (fun
) = 1;
2524 targetm
.asm_out
.external_libcall (fun
);
2528 /* Assemble a label named NAME. */
2531 assemble_label (FILE *file
, const char *name
)
2533 ASM_OUTPUT_LABEL (file
, name
);
2536 /* Set the symbol_referenced flag for ID. */
2538 mark_referenced (tree id
)
2540 TREE_SYMBOL_REFERENCED (id
) = 1;
2543 /* Set the symbol_referenced flag for DECL and notify callgraph. */
2545 mark_decl_referenced (tree decl
)
2547 if (TREE_CODE (decl
) == FUNCTION_DECL
)
2549 /* Extern inline functions don't become needed when referenced.
2550 If we know a method will be emitted in other TU and no new
2551 functions can be marked reachable, just use the external
2553 struct cgraph_node
*node
= cgraph_node::get_create (decl
);
2554 if (!DECL_EXTERNAL (decl
)
2555 && !node
->definition
)
2556 node
->mark_force_output ();
2558 else if (VAR_P (decl
))
2560 varpool_node
*node
= varpool_node::get_create (decl
);
2561 /* C++ frontend use mark_decl_references to force COMDAT variables
2562 to be output that might appear dead otherwise. */
2563 node
->force_output
= true;
2565 /* else do nothing - we can get various sorts of CST nodes here,
2566 which do not need to be marked. */
2570 /* Output to FILE (an assembly file) a reference to NAME. If NAME
2571 starts with a *, the rest of NAME is output verbatim. Otherwise
2572 NAME is transformed in a target-specific way (usually by the
2573 addition of an underscore). */
2576 assemble_name_raw (FILE *file
, const char *name
)
2579 fputs (&name
[1], file
);
2581 ASM_OUTPUT_LABELREF (file
, name
);
2584 /* Like assemble_name_raw, but should be used when NAME might refer to
2585 an entity that is also represented as a tree (like a function or
2586 variable). If NAME does refer to such an entity, that entity will
2587 be marked as referenced. */
2590 assemble_name (FILE *file
, const char *name
)
2592 const char *real_name
;
2595 real_name
= targetm
.strip_name_encoding (name
);
2597 id
= maybe_get_identifier (real_name
);
2602 mark_referenced (id
);
2603 ultimate_transparent_alias_target (&id
);
2605 name
= IDENTIFIER_POINTER (id
);
2606 gcc_assert (! TREE_CHAIN (id
));
2609 assemble_name_raw (file
, name
);
2612 /* Allocate SIZE bytes writable static space with a gensym name
2613 and return an RTX to refer to its address. */
2616 assemble_static_space (unsigned HOST_WIDE_INT size
)
2619 const char *namestring
;
2622 ASM_GENERATE_INTERNAL_LABEL (name
, "LF", const_labelno
);
2624 namestring
= ggc_strdup (name
);
2626 x
= gen_rtx_SYMBOL_REF (Pmode
, namestring
);
2627 SYMBOL_REF_FLAGS (x
) = SYMBOL_FLAG_LOCAL
;
2629 #ifdef ASM_OUTPUT_ALIGNED_DECL_LOCAL
2630 ASM_OUTPUT_ALIGNED_DECL_LOCAL (asm_out_file
, NULL_TREE
, name
, size
,
2633 #ifdef ASM_OUTPUT_ALIGNED_LOCAL
2634 ASM_OUTPUT_ALIGNED_LOCAL (asm_out_file
, name
, size
, BIGGEST_ALIGNMENT
);
2637 /* Round size up to multiple of BIGGEST_ALIGNMENT bits
2638 so that each uninitialized object starts on such a boundary. */
2639 /* Variable `rounded' might or might not be used in ASM_OUTPUT_LOCAL. */
2640 unsigned HOST_WIDE_INT rounded ATTRIBUTE_UNUSED
2641 = ((size
+ (BIGGEST_ALIGNMENT
/ BITS_PER_UNIT
) - 1)
2642 / (BIGGEST_ALIGNMENT
/ BITS_PER_UNIT
)
2643 * (BIGGEST_ALIGNMENT
/ BITS_PER_UNIT
));
2644 ASM_OUTPUT_LOCAL (asm_out_file
, name
, size
, rounded
);
2651 /* Assemble the static constant template for function entry trampolines.
2652 This is done at most once per compilation.
2653 Returns an RTX for the address of the template. */
2655 static GTY(()) rtx initial_trampoline
;
2658 assemble_trampoline_template (void)
2665 gcc_assert (targetm
.asm_out
.trampoline_template
!= NULL
);
2667 if (initial_trampoline
)
2668 return initial_trampoline
;
2670 /* By default, put trampoline templates in read-only data section. */
2672 #ifdef TRAMPOLINE_SECTION
2673 switch_to_section (TRAMPOLINE_SECTION
);
2675 switch_to_section (readonly_data_section
);
2678 /* Write the assembler code to define one. */
2679 align
= floor_log2 (TRAMPOLINE_ALIGNMENT
/ BITS_PER_UNIT
);
2681 ASM_OUTPUT_ALIGN (asm_out_file
, align
);
2683 targetm
.asm_out
.internal_label (asm_out_file
, "LTRAMP", 0);
2684 targetm
.asm_out
.trampoline_template (asm_out_file
);
2686 /* Record the rtl to refer to it. */
2687 ASM_GENERATE_INTERNAL_LABEL (label
, "LTRAMP", 0);
2688 name
= ggc_strdup (label
);
2689 symbol
= gen_rtx_SYMBOL_REF (Pmode
, name
);
2690 SYMBOL_REF_FLAGS (symbol
) = SYMBOL_FLAG_LOCAL
;
2692 initial_trampoline
= gen_const_mem (BLKmode
, symbol
);
2693 set_mem_align (initial_trampoline
, TRAMPOLINE_ALIGNMENT
);
2694 set_mem_size (initial_trampoline
, TRAMPOLINE_SIZE
);
2696 return initial_trampoline
;
2699 /* A and B are either alignments or offsets. Return the minimum alignment
2700 that may be assumed after adding the two together. */
2702 static inline unsigned
2703 min_align (unsigned int a
, unsigned int b
)
2705 return least_bit_hwi (a
| b
);
2708 /* Return the assembler directive for creating a given kind of integer
2709 object. SIZE is the number of bytes in the object and ALIGNED_P
2710 indicates whether it is known to be aligned. Return NULL if the
2711 assembly dialect has no such directive.
2713 The returned string should be printed at the start of a new line and
2714 be followed immediately by the object's initial value. */
2717 integer_asm_op (int size
, int aligned_p
)
2719 struct asm_int_op
*ops
;
2722 ops
= &targetm
.asm_out
.aligned_op
;
2724 ops
= &targetm
.asm_out
.unaligned_op
;
2729 return targetm
.asm_out
.byte_op
;
2743 /* Use directive OP to assemble an integer object X. Print OP at the
2744 start of the line, followed immediately by the value of X. */
2747 assemble_integer_with_op (const char *op
, rtx x
)
2749 fputs (op
, asm_out_file
);
2750 output_addr_const (asm_out_file
, x
);
2751 fputc ('\n', asm_out_file
);
2754 /* The default implementation of the asm_out.integer target hook. */
2757 default_assemble_integer (rtx x ATTRIBUTE_UNUSED
,
2758 unsigned int size ATTRIBUTE_UNUSED
,
2759 int aligned_p ATTRIBUTE_UNUSED
)
2761 const char *op
= integer_asm_op (size
, aligned_p
);
2762 /* Avoid GAS bugs for large values. Specifically negative values whose
2763 absolute value fits in a bfd_vma, but not in a bfd_signed_vma. */
2764 if (size
> UNITS_PER_WORD
&& size
> POINTER_SIZE_UNITS
)
2766 return op
&& (assemble_integer_with_op (op
, x
), true);
2769 /* Assemble the integer constant X into an object of SIZE bytes. ALIGN is
2770 the alignment of the integer in bits. Return 1 if we were able to output
2771 the constant, otherwise 0. We must be able to output the constant,
2772 if FORCE is nonzero. */
2775 assemble_integer (rtx x
, unsigned int size
, unsigned int align
, int force
)
2779 aligned_p
= (align
>= MIN (size
* BITS_PER_UNIT
, BIGGEST_ALIGNMENT
));
2781 /* See if the target hook can handle this kind of object. */
2782 if (targetm
.asm_out
.integer (x
, size
, aligned_p
))
2785 /* If the object is a multi-byte one, try splitting it up. Split
2786 it into words it if is multi-word, otherwise split it into bytes. */
2789 machine_mode omode
, imode
;
2790 unsigned int subalign
;
2791 unsigned int subsize
, i
;
2792 enum mode_class mclass
;
2794 subsize
= size
> UNITS_PER_WORD
? UNITS_PER_WORD
: 1;
2795 subalign
= MIN (align
, subsize
* BITS_PER_UNIT
);
2796 if (GET_CODE (x
) == CONST_FIXED
)
2797 mclass
= GET_MODE_CLASS (GET_MODE (x
));
2801 omode
= mode_for_size (subsize
* BITS_PER_UNIT
, mclass
, 0).require ();
2802 imode
= mode_for_size (size
* BITS_PER_UNIT
, mclass
, 0).require ();
2804 for (i
= 0; i
< size
; i
+= subsize
)
2806 rtx partial
= simplify_subreg (omode
, x
, imode
, i
);
2807 if (!partial
|| !assemble_integer (partial
, subsize
, subalign
, 0))
2813 /* If we've printed some of it, but not all of it, there's no going
2818 gcc_assert (!force
);
2823 /* Assemble the floating-point constant D into an object of size MODE. ALIGN
2824 is the alignment of the constant in bits. If REVERSE is true, D is output
2825 in reverse storage order. */
2828 assemble_real (REAL_VALUE_TYPE d
, scalar_float_mode mode
, unsigned int align
,
2831 long data
[4] = {0, 0, 0, 0};
2832 int bitsize
, nelts
, nunits
, units_per
;
2835 /* This is hairy. We have a quantity of known size. real_to_target
2836 will put it into an array of *host* longs, 32 bits per element
2837 (even if long is more than 32 bits). We need to determine the
2838 number of array elements that are occupied (nelts) and the number
2839 of *target* min-addressable units that will be occupied in the
2840 object file (nunits). We cannot assume that 32 divides the
2841 mode's bitsize (size * BITS_PER_UNIT) evenly.
2843 size * BITS_PER_UNIT is used here to make sure that padding bits
2844 (which might appear at either end of the value; real_to_target
2845 will include the padding bits in its output array) are included. */
2847 nunits
= GET_MODE_SIZE (mode
);
2848 bitsize
= nunits
* BITS_PER_UNIT
;
2849 nelts
= CEIL (bitsize
, 32);
2850 units_per
= 32 / BITS_PER_UNIT
;
2852 real_to_target (data
, &d
, mode
);
2854 /* Put out the first word with the specified alignment. */
2856 elt
= flip_storage_order (SImode
, gen_int_mode (data
[nelts
- 1], SImode
));
2858 elt
= GEN_INT (data
[0]);
2859 assemble_integer (elt
, MIN (nunits
, units_per
), align
, 1);
2860 nunits
-= units_per
;
2862 /* Subsequent words need only 32-bit alignment. */
2863 align
= min_align (align
, 32);
2865 for (int i
= 1; i
< nelts
; i
++)
2868 elt
= flip_storage_order (SImode
,
2869 gen_int_mode (data
[nelts
- 1 - i
], SImode
));
2871 elt
= GEN_INT (data
[i
]);
2872 assemble_integer (elt
, MIN (nunits
, units_per
), align
, 1);
2873 nunits
-= units_per
;
2877 /* Given an expression EXP with a constant value,
2878 reduce it to the sum of an assembler symbol and an integer.
2879 Store them both in the structure *VALUE.
2880 EXP must be reducible. */
2888 decode_addr_const (tree exp
, struct addr_const
*value
)
2890 tree target
= TREE_OPERAND (exp
, 0);
2891 poly_int64 offset
= 0;
2897 if (TREE_CODE (target
) == COMPONENT_REF
2898 && poly_int_tree_p (byte_position (TREE_OPERAND (target
, 1)),
2902 target
= TREE_OPERAND (target
, 0);
2904 else if (TREE_CODE (target
) == ARRAY_REF
2905 || TREE_CODE (target
) == ARRAY_RANGE_REF
)
2907 /* Truncate big offset. */
2909 += (TREE_INT_CST_LOW (TYPE_SIZE_UNIT (TREE_TYPE (target
)))
2910 * wi::to_poly_widest (TREE_OPERAND (target
, 1)).force_shwi ());
2911 target
= TREE_OPERAND (target
, 0);
2913 else if (TREE_CODE (target
) == MEM_REF
2914 && TREE_CODE (TREE_OPERAND (target
, 0)) == ADDR_EXPR
)
2916 offset
+= mem_ref_offset (target
).force_shwi ();
2917 target
= TREE_OPERAND (TREE_OPERAND (target
, 0), 0);
2919 else if (TREE_CODE (target
) == INDIRECT_REF
2920 && TREE_CODE (TREE_OPERAND (target
, 0)) == NOP_EXPR
2921 && TREE_CODE (TREE_OPERAND (TREE_OPERAND (target
, 0), 0))
2923 target
= TREE_OPERAND (TREE_OPERAND (TREE_OPERAND (target
, 0), 0), 0);
2928 switch (TREE_CODE (target
))
2932 x
= DECL_RTL (target
);
2936 x
= gen_rtx_MEM (FUNCTION_MODE
,
2937 gen_rtx_LABEL_REF (Pmode
, force_label_rtx (target
)));
2946 x
= output_constant_def (target
, 1);
2950 /* This deals with absolute addresses. */
2951 offset
+= tree_to_shwi (TREE_OPERAND (target
, 0));
2952 x
= gen_rtx_MEM (QImode
,
2953 gen_rtx_SYMBOL_REF (Pmode
, "origin of addresses"));
2956 case COMPOUND_LITERAL_EXPR
:
2957 gcc_assert (COMPOUND_LITERAL_EXPR_DECL (target
));
2958 x
= DECL_RTL (COMPOUND_LITERAL_EXPR_DECL (target
));
2965 gcc_assert (MEM_P (x
));
2969 value
->offset
= offset
;
2972 static GTY(()) hash_table
<tree_descriptor_hasher
> *const_desc_htab
;
2974 static void maybe_output_constant_def_contents (struct constant_descriptor_tree
*, int);
2976 /* Constant pool accessor function. */
2978 hash_table
<tree_descriptor_hasher
> *
2979 constant_pool_htab (void)
2981 return const_desc_htab
;
2984 /* Compute a hash code for a constant expression. */
2987 tree_descriptor_hasher::hash (constant_descriptor_tree
*ptr
)
2993 const_hash_1 (const tree exp
)
2998 enum tree_code code
= TREE_CODE (exp
);
3000 /* Either set P and LEN to the address and len of something to hash and
3001 exit the switch or return a value. */
3006 p
= (char *) &TREE_INT_CST_ELT (exp
, 0);
3007 len
= TREE_INT_CST_NUNITS (exp
) * sizeof (HOST_WIDE_INT
);
3011 return real_hash (TREE_REAL_CST_PTR (exp
));
3014 return fixed_hash (TREE_FIXED_CST_PTR (exp
));
3017 p
= TREE_STRING_POINTER (exp
);
3018 len
= TREE_STRING_LENGTH (exp
);
3022 return (const_hash_1 (TREE_REALPART (exp
)) * 5
3023 + const_hash_1 (TREE_IMAGPART (exp
)));
3027 hi
= 7 + VECTOR_CST_NPATTERNS (exp
);
3028 hi
= hi
* 563 + VECTOR_CST_NELTS_PER_PATTERN (exp
);
3029 unsigned int count
= vector_cst_encoded_nelts (exp
);
3030 for (unsigned int i
= 0; i
< count
; ++i
)
3031 hi
= hi
* 563 + const_hash_1 (VECTOR_CST_ENCODED_ELT (exp
, i
));
3037 unsigned HOST_WIDE_INT idx
;
3040 hi
= 5 + int_size_in_bytes (TREE_TYPE (exp
));
3042 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (exp
), idx
, value
)
3044 hi
= hi
* 603 + const_hash_1 (value
);
3052 struct addr_const value
;
3054 decode_addr_const (exp
, &value
);
3055 switch (GET_CODE (value
.base
))
3058 /* Don't hash the address of the SYMBOL_REF;
3059 only use the offset and the symbol name. */
3060 hi
= value
.offset
.coeffs
[0];
3061 p
= XSTR (value
.base
, 0);
3062 for (i
= 0; p
[i
] != 0; i
++)
3063 hi
= ((hi
* 613) + (unsigned) (p
[i
]));
3067 hi
= (value
.offset
.coeffs
[0]
3068 + CODE_LABEL_NUMBER (label_ref_label (value
.base
)) * 13);
3078 case POINTER_PLUS_EXPR
:
3080 return (const_hash_1 (TREE_OPERAND (exp
, 0)) * 9
3081 + const_hash_1 (TREE_OPERAND (exp
, 1)));
3084 return const_hash_1 (TREE_OPERAND (exp
, 0)) * 7 + 2;
3087 /* A language specific constant. Just hash the code. */
3091 /* Compute hashing function. */
3093 for (i
= 0; i
< len
; i
++)
3094 hi
= ((hi
* 613) + (unsigned) (p
[i
]));
3099 /* Wrapper of compare_constant, for the htab interface. */
3101 tree_descriptor_hasher::equal (constant_descriptor_tree
*c1
,
3102 constant_descriptor_tree
*c2
)
3104 if (c1
->hash
!= c2
->hash
)
3106 return compare_constant (c1
->value
, c2
->value
);
3109 /* Compare t1 and t2, and return 1 only if they are known to result in
3110 the same bit pattern on output. */
3113 compare_constant (const tree t1
, const tree t2
)
3115 enum tree_code typecode
;
3117 if (t1
== NULL_TREE
)
3118 return t2
== NULL_TREE
;
3119 if (t2
== NULL_TREE
)
3122 if (TREE_CODE (t1
) != TREE_CODE (t2
))
3125 switch (TREE_CODE (t1
))
3128 /* Integer constants are the same only if the same width of type. */
3129 if (TYPE_PRECISION (TREE_TYPE (t1
)) != TYPE_PRECISION (TREE_TYPE (t2
)))
3131 if (TYPE_MODE (TREE_TYPE (t1
)) != TYPE_MODE (TREE_TYPE (t2
)))
3133 return tree_int_cst_equal (t1
, t2
);
3136 /* Real constants are the same only if the same width of type. In
3137 addition to the same width, we need to check whether the modes are the
3138 same. There might be two floating point modes that are the same size
3139 but have different representations, such as the PowerPC that has 2
3140 different 128-bit floating point types (IBM extended double and IEEE
3141 128-bit floating point). */
3142 if (TYPE_PRECISION (TREE_TYPE (t1
)) != TYPE_PRECISION (TREE_TYPE (t2
)))
3144 if (TYPE_MODE (TREE_TYPE (t1
)) != TYPE_MODE (TREE_TYPE (t2
)))
3146 return real_identical (&TREE_REAL_CST (t1
), &TREE_REAL_CST (t2
));
3149 /* Fixed constants are the same only if the same width of type. */
3150 if (TYPE_PRECISION (TREE_TYPE (t1
)) != TYPE_PRECISION (TREE_TYPE (t2
)))
3153 return FIXED_VALUES_IDENTICAL (TREE_FIXED_CST (t1
), TREE_FIXED_CST (t2
));
3156 if (TYPE_MODE (TREE_TYPE (t1
)) != TYPE_MODE (TREE_TYPE (t2
))
3157 || int_size_in_bytes (TREE_TYPE (t1
))
3158 != int_size_in_bytes (TREE_TYPE (t2
)))
3161 return (TREE_STRING_LENGTH (t1
) == TREE_STRING_LENGTH (t2
)
3162 && ! memcmp (TREE_STRING_POINTER (t1
), TREE_STRING_POINTER (t2
),
3163 TREE_STRING_LENGTH (t1
)));
3166 return (compare_constant (TREE_REALPART (t1
), TREE_REALPART (t2
))
3167 && compare_constant (TREE_IMAGPART (t1
), TREE_IMAGPART (t2
)));
3171 if (VECTOR_CST_NPATTERNS (t1
)
3172 != VECTOR_CST_NPATTERNS (t2
))
3175 if (VECTOR_CST_NELTS_PER_PATTERN (t1
)
3176 != VECTOR_CST_NELTS_PER_PATTERN (t2
))
3179 unsigned int count
= vector_cst_encoded_nelts (t1
);
3180 for (unsigned int i
= 0; i
< count
; ++i
)
3181 if (!compare_constant (VECTOR_CST_ENCODED_ELT (t1
, i
),
3182 VECTOR_CST_ENCODED_ELT (t2
, i
)))
3190 vec
<constructor_elt
, va_gc
> *v1
, *v2
;
3191 unsigned HOST_WIDE_INT idx
;
3193 typecode
= TREE_CODE (TREE_TYPE (t1
));
3194 if (typecode
!= TREE_CODE (TREE_TYPE (t2
)))
3197 if (typecode
== ARRAY_TYPE
)
3199 HOST_WIDE_INT size_1
= int_size_in_bytes (TREE_TYPE (t1
));
3200 /* For arrays, check that mode, size and storage order match. */
3201 if (TYPE_MODE (TREE_TYPE (t1
)) != TYPE_MODE (TREE_TYPE (t2
))
3203 || size_1
!= int_size_in_bytes (TREE_TYPE (t2
))
3204 || TYPE_REVERSE_STORAGE_ORDER (TREE_TYPE (t1
))
3205 != TYPE_REVERSE_STORAGE_ORDER (TREE_TYPE (t2
)))
3210 /* For record and union constructors, require exact type
3212 if (TREE_TYPE (t1
) != TREE_TYPE (t2
))
3216 v1
= CONSTRUCTOR_ELTS (t1
);
3217 v2
= CONSTRUCTOR_ELTS (t2
);
3218 if (vec_safe_length (v1
) != vec_safe_length (v2
))
3221 for (idx
= 0; idx
< vec_safe_length (v1
); ++idx
)
3223 constructor_elt
*c1
= &(*v1
)[idx
];
3224 constructor_elt
*c2
= &(*v2
)[idx
];
3226 /* Check that each value is the same... */
3227 if (!compare_constant (c1
->value
, c2
->value
))
3229 /* ... and that they apply to the same fields! */
3230 if (typecode
== ARRAY_TYPE
)
3232 if (!compare_constant (c1
->index
, c2
->index
))
3237 if (c1
->index
!= c2
->index
)
3248 struct addr_const value1
, value2
;
3252 decode_addr_const (t1
, &value1
);
3253 decode_addr_const (t2
, &value2
);
3255 if (maybe_ne (value1
.offset
, value2
.offset
))
3258 code
= GET_CODE (value1
.base
);
3259 if (code
!= GET_CODE (value2
.base
))
3265 ret
= (strcmp (XSTR (value1
.base
, 0), XSTR (value2
.base
, 0)) == 0);
3269 ret
= (CODE_LABEL_NUMBER (label_ref_label (value1
.base
))
3270 == CODE_LABEL_NUMBER (label_ref_label (value2
.base
)));
3280 case POINTER_PLUS_EXPR
:
3283 return (compare_constant (TREE_OPERAND (t1
, 0), TREE_OPERAND (t2
, 0))
3284 && compare_constant (TREE_OPERAND (t1
, 1), TREE_OPERAND (t2
, 1)));
3287 case VIEW_CONVERT_EXPR
:
3288 return compare_constant (TREE_OPERAND (t1
, 0), TREE_OPERAND (t2
, 0));
3297 /* Return the section into which constant EXP should be placed. */
3300 get_constant_section (tree exp
, unsigned int align
)
3302 return targetm
.asm_out
.select_section (exp
,
3303 compute_reloc_for_constant (exp
),
3307 /* Return the size of constant EXP in bytes. */
3309 static HOST_WIDE_INT
3310 get_constant_size (tree exp
)
3314 size
= int_size_in_bytes (TREE_TYPE (exp
));
3315 gcc_checking_assert (size
>= 0);
3316 gcc_checking_assert (TREE_CODE (exp
) != STRING_CST
3317 || size
>= TREE_STRING_LENGTH (exp
));
3321 /* Subroutine of output_constant_def:
3322 No constant equal to EXP is known to have been output.
3323 Make a constant descriptor to enter EXP in the hash table.
3324 Assign the label number and construct RTL to refer to the
3325 constant's location in memory.
3326 Caller is responsible for updating the hash table. */
3328 static struct constant_descriptor_tree
*
3329 build_constant_desc (tree exp
)
3331 struct constant_descriptor_tree
*desc
;
3337 desc
= ggc_alloc
<constant_descriptor_tree
> ();
3340 /* Create a string containing the label name, in LABEL. */
3341 labelno
= const_labelno
++;
3342 ASM_GENERATE_INTERNAL_LABEL (label
, "LC", labelno
);
3344 /* Construct the VAR_DECL associated with the constant. */
3345 decl
= build_decl (UNKNOWN_LOCATION
, VAR_DECL
, get_identifier (label
),
3347 DECL_ARTIFICIAL (decl
) = 1;
3348 DECL_IGNORED_P (decl
) = 1;
3349 TREE_READONLY (decl
) = 1;
3350 TREE_STATIC (decl
) = 1;
3351 TREE_ADDRESSABLE (decl
) = 1;
3352 /* We don't set the RTL yet as this would cause varpool to assume that the
3353 variable is referenced. Moreover, it would just be dropped in LTO mode.
3354 Instead we set the flag that will be recognized in make_decl_rtl. */
3355 DECL_IN_CONSTANT_POOL (decl
) = 1;
3356 DECL_INITIAL (decl
) = desc
->value
;
3357 /* ??? targetm.constant_alignment hasn't been updated for vector types on
3358 most architectures so use DATA_ALIGNMENT as well, except for strings. */
3359 if (TREE_CODE (exp
) == STRING_CST
)
3360 SET_DECL_ALIGN (decl
, targetm
.constant_alignment (exp
, DECL_ALIGN (decl
)));
3362 align_variable (decl
, 0);
3364 /* Now construct the SYMBOL_REF and the MEM. */
3365 if (use_object_blocks_p ())
3367 int align
= (TREE_CODE (decl
) == CONST_DECL
3368 || (VAR_P (decl
) && DECL_IN_CONSTANT_POOL (decl
))
3370 : symtab_node::get (decl
)->definition_alignment ());
3371 section
*sect
= get_constant_section (exp
, align
);
3372 symbol
= create_block_symbol (ggc_strdup (label
),
3373 get_block_for_section (sect
), -1);
3376 symbol
= gen_rtx_SYMBOL_REF (Pmode
, ggc_strdup (label
));
3377 SYMBOL_REF_FLAGS (symbol
) |= SYMBOL_FLAG_LOCAL
;
3378 SET_SYMBOL_REF_DECL (symbol
, decl
);
3379 TREE_CONSTANT_POOL_ADDRESS_P (symbol
) = 1;
3381 rtl
= gen_const_mem (TYPE_MODE (TREE_TYPE (exp
)), symbol
);
3382 set_mem_attributes (rtl
, exp
, 1);
3383 set_mem_alias_set (rtl
, 0);
3385 /* Putting EXP into the literal pool might have imposed a different
3386 alignment which should be visible in the RTX as well. */
3387 set_mem_align (rtl
, DECL_ALIGN (decl
));
3389 /* We cannot share RTX'es in pool entries.
3390 Mark this piece of RTL as required for unsharing. */
3391 RTX_FLAG (rtl
, used
) = 1;
3393 /* Set flags or add text to the name to record information, such as
3394 that it is a local symbol. If the name is changed, the macro
3395 ASM_OUTPUT_LABELREF will have to know how to strip this
3396 information. This call might invalidate our local variable
3397 SYMBOL; we can't use it afterward. */
3398 targetm
.encode_section_info (exp
, rtl
, true);
3405 /* Return an rtx representing a reference to constant data in memory
3406 for the constant expression EXP.
3408 If assembler code for such a constant has already been output,
3409 return an rtx to refer to it.
3410 Otherwise, output such a constant in memory
3411 and generate an rtx for it.
3413 If DEFER is nonzero, this constant can be deferred and output only
3414 if referenced in the function after all optimizations.
3416 `const_desc_table' records which constants already have label strings. */
3419 output_constant_def (tree exp
, int defer
)
3421 struct constant_descriptor_tree
*desc
;
3422 struct constant_descriptor_tree key
;
3424 /* Look up EXP in the table of constant descriptors. If we didn't find
3425 it, create a new one. */
3427 key
.hash
= const_hash_1 (exp
);
3428 constant_descriptor_tree
**loc
3429 = const_desc_htab
->find_slot_with_hash (&key
, key
.hash
, INSERT
);
3434 desc
= build_constant_desc (exp
);
3435 desc
->hash
= key
.hash
;
3439 maybe_output_constant_def_contents (desc
, defer
);
3443 /* Subroutine of output_constant_def: Decide whether or not we need to
3444 output the constant DESC now, and if so, do it. */
3446 maybe_output_constant_def_contents (struct constant_descriptor_tree
*desc
,
3449 rtx symbol
= XEXP (desc
->rtl
, 0);
3450 tree exp
= desc
->value
;
3452 if (flag_syntax_only
)
3455 if (TREE_ASM_WRITTEN (exp
))
3456 /* Already output; don't do it again. */
3459 /* We can always defer constants as long as the context allows
3463 /* Increment n_deferred_constants if it exists. It needs to be at
3464 least as large as the number of constants actually referred to
3465 by the function. If it's too small we'll stop looking too early
3466 and fail to emit constants; if it's too large we'll only look
3467 through the entire function when we could have stopped earlier. */
3469 n_deferred_constants
++;
3473 output_constant_def_contents (symbol
);
3476 /* Subroutine of output_constant_def_contents. Output the definition
3477 of constant EXP, which is pointed to by label LABEL. ALIGN is the
3478 constant's alignment in bits. */
3481 assemble_constant_contents (tree exp
, const char *label
, unsigned int align
,
3486 size
= get_constant_size (exp
);
3488 /* Do any machine/system dependent processing of the constant. */
3489 targetm
.asm_out
.declare_constant_name (asm_out_file
, label
, exp
, size
);
3491 /* Output the value of EXP. */
3492 output_constant (exp
, size
, align
, false, merge_strings
);
3494 targetm
.asm_out
.decl_end ();
3497 /* We must output the constant data referred to by SYMBOL; do so. */
3500 output_constant_def_contents (rtx symbol
)
3502 tree decl
= SYMBOL_REF_DECL (symbol
);
3503 tree exp
= DECL_INITIAL (decl
);
3504 bool asan_protected
= false;
3506 /* Make sure any other constants whose addresses appear in EXP
3507 are assigned label numbers. */
3508 output_addressed_constants (exp
);
3510 /* We are no longer deferring this constant. */
3511 TREE_ASM_WRITTEN (decl
) = TREE_ASM_WRITTEN (exp
) = 1;
3513 if ((flag_sanitize
& SANITIZE_ADDRESS
)
3514 && TREE_CODE (exp
) == STRING_CST
3515 && asan_protect_global (exp
))
3517 asan_protected
= true;
3518 SET_DECL_ALIGN (decl
, MAX (DECL_ALIGN (decl
),
3519 ASAN_RED_ZONE_SIZE
* BITS_PER_UNIT
));
3522 /* If the constant is part of an object block, make sure that the
3523 decl has been positioned within its block, but do not write out
3524 its definition yet. output_object_blocks will do that later. */
3525 if (SYMBOL_REF_HAS_BLOCK_INFO_P (symbol
) && SYMBOL_REF_BLOCK (symbol
))
3526 place_block_symbol (symbol
);
3529 int align
= (TREE_CODE (decl
) == CONST_DECL
3530 || (VAR_P (decl
) && DECL_IN_CONSTANT_POOL (decl
))
3532 : symtab_node::get (decl
)->definition_alignment ());
3533 section
*sect
= get_constant_section (exp
, align
);
3534 switch_to_section (sect
);
3535 if (align
> BITS_PER_UNIT
)
3536 ASM_OUTPUT_ALIGN (asm_out_file
, floor_log2 (align
/ BITS_PER_UNIT
));
3537 assemble_constant_contents (exp
, XSTR (symbol
, 0), align
,
3538 (sect
->common
.flags
& SECTION_MERGE
)
3539 && (sect
->common
.flags
& SECTION_STRINGS
));
3542 HOST_WIDE_INT size
= get_constant_size (exp
);
3543 assemble_zeros (asan_red_zone_size (size
));
3548 /* Look up EXP in the table of constant descriptors. Return the rtl
3549 if it has been emitted, else null. */
3552 lookup_constant_def (tree exp
)
3554 struct constant_descriptor_tree key
;
3557 key
.hash
= const_hash_1 (exp
);
3558 constant_descriptor_tree
*desc
3559 = const_desc_htab
->find_with_hash (&key
, key
.hash
);
3561 return (desc
? desc
->rtl
: NULL_RTX
);
3564 /* Return a tree representing a reference to constant data in memory
3565 for the constant expression EXP.
3567 This is the counterpart of output_constant_def at the Tree level. */
3570 tree_output_constant_def (tree exp
)
3572 struct constant_descriptor_tree
*desc
, key
;
3575 /* Look up EXP in the table of constant descriptors. If we didn't find
3576 it, create a new one. */
3578 key
.hash
= const_hash_1 (exp
);
3579 constant_descriptor_tree
**loc
3580 = const_desc_htab
->find_slot_with_hash (&key
, key
.hash
, INSERT
);
3585 desc
= build_constant_desc (exp
);
3586 desc
->hash
= key
.hash
;
3590 decl
= SYMBOL_REF_DECL (XEXP (desc
->rtl
, 0));
3591 varpool_node::finalize_decl (decl
);
3595 struct GTY((chain_next ("%h.next"), for_user
)) constant_descriptor_rtx
{
3596 struct constant_descriptor_rtx
*next
;
3600 HOST_WIDE_INT offset
;
3602 fixed_size_mode mode
;
3608 struct const_rtx_desc_hasher
: ggc_ptr_hash
<constant_descriptor_rtx
>
3610 static hashval_t
hash (constant_descriptor_rtx
*);
3611 static bool equal (constant_descriptor_rtx
*, constant_descriptor_rtx
*);
3614 /* Used in the hash tables to avoid outputting the same constant
3615 twice. Unlike 'struct constant_descriptor_tree', RTX constants
3616 are output once per function, not once per file. */
3617 /* ??? Only a few targets need per-function constant pools. Most
3618 can use one per-file pool. Should add a targetm bit to tell the
3621 struct GTY(()) rtx_constant_pool
{
3622 /* Pointers to first and last constant in pool, as ordered by offset. */
3623 struct constant_descriptor_rtx
*first
;
3624 struct constant_descriptor_rtx
*last
;
3626 /* Hash facility for making memory-constants from constant rtl-expressions.
3627 It is used on RISC machines where immediate integer arguments and
3628 constant addresses are restricted so that such constants must be stored
3630 hash_table
<const_rtx_desc_hasher
> *const_rtx_htab
;
3632 /* Current offset in constant pool (does not include any
3633 machine-specific header). */
3634 HOST_WIDE_INT offset
;
3637 /* Hash and compare functions for const_rtx_htab. */
3640 const_rtx_desc_hasher::hash (constant_descriptor_rtx
*desc
)
3646 const_rtx_desc_hasher::equal (constant_descriptor_rtx
*x
,
3647 constant_descriptor_rtx
*y
)
3649 if (x
->mode
!= y
->mode
)
3651 return rtx_equal_p (x
->constant
, y
->constant
);
3654 /* Hash one component of a constant. */
3657 const_rtx_hash_1 (const_rtx x
)
3659 unsigned HOST_WIDE_INT hwi
;
3665 code
= GET_CODE (x
);
3666 mode
= GET_MODE (x
);
3667 h
= (hashval_t
) code
* 1048573 + mode
;
3676 int shift
= sizeof (hashval_t
) * CHAR_BIT
;
3677 const int n
= sizeof (HOST_WIDE_INT
) / sizeof (hashval_t
);
3679 h
^= (hashval_t
) hwi
;
3680 for (i
= 1; i
< n
; ++i
)
3683 h
^= (hashval_t
) hwi
;
3688 case CONST_WIDE_INT
:
3691 for (i
= 0; i
< CONST_WIDE_INT_NUNITS (x
); i
++)
3692 hwi
^= CONST_WIDE_INT_ELT (x
, i
);
3697 if (TARGET_SUPPORTS_WIDE_INT
== 0 && mode
== VOIDmode
)
3699 hwi
= CONST_DOUBLE_LOW (x
) ^ CONST_DOUBLE_HIGH (x
);
3703 h
^= real_hash (CONST_DOUBLE_REAL_VALUE (x
));
3707 h
^= fixed_hash (CONST_FIXED_VALUE (x
));
3711 h
^= htab_hash_string (XSTR (x
, 0));
3715 h
= h
* 251 + CODE_LABEL_NUMBER (label_ref_label (x
));
3719 case UNSPEC_VOLATILE
:
3720 h
= h
* 251 + XINT (x
, 1);
3730 /* Compute a hash value for X, which should be a constant. */
3733 const_rtx_hash (rtx x
)
3736 subrtx_iterator::array_type array
;
3737 FOR_EACH_SUBRTX (iter
, array
, x
, ALL
)
3738 h
= h
* 509 + const_rtx_hash_1 (*iter
);
3743 /* Create and return a new rtx constant pool. */
3745 static struct rtx_constant_pool
*
3746 create_constant_pool (void)
3748 struct rtx_constant_pool
*pool
;
3750 pool
= ggc_alloc
<rtx_constant_pool
> ();
3751 pool
->const_rtx_htab
= hash_table
<const_rtx_desc_hasher
>::create_ggc (31);
3758 /* Initialize constant pool hashing for a new function. */
3761 init_varasm_status (void)
3763 crtl
->varasm
.pool
= create_constant_pool ();
3764 crtl
->varasm
.deferred_constants
= 0;
3767 /* Given a MINUS expression, simplify it if both sides
3768 include the same symbol. */
3771 simplify_subtraction (rtx x
)
3773 rtx r
= simplify_rtx (x
);
3777 /* Given a constant rtx X, make (or find) a memory constant for its value
3778 and return a MEM rtx to refer to it in memory. IN_MODE is the mode
3782 force_const_mem (machine_mode in_mode
, rtx x
)
3784 struct constant_descriptor_rtx
*desc
, tmp
;
3785 struct rtx_constant_pool
*pool
;
3790 constant_descriptor_rtx
**slot
;
3791 fixed_size_mode mode
;
3793 /* We can't force variable-sized objects to memory. */
3794 if (!is_a
<fixed_size_mode
> (in_mode
, &mode
))
3797 /* If we're not allowed to drop X into the constant pool, don't. */
3798 if (targetm
.cannot_force_const_mem (mode
, x
))
3801 /* Record that this function has used a constant pool entry. */
3802 crtl
->uses_const_pool
= 1;
3804 /* Decide which pool to use. */
3805 pool
= (targetm
.use_blocks_for_constant_p (mode
, x
)
3806 ? shared_constant_pool
3807 : crtl
->varasm
.pool
);
3809 /* Lookup the value in the hashtable. */
3812 hash
= const_rtx_hash (x
);
3813 slot
= pool
->const_rtx_htab
->find_slot_with_hash (&tmp
, hash
, INSERT
);
3816 /* If the constant was already present, return its memory. */
3818 return copy_rtx (desc
->mem
);
3820 /* Otherwise, create a new descriptor. */
3821 desc
= ggc_alloc
<constant_descriptor_rtx
> ();
3824 /* Align the location counter as required by EXP's data type. */
3825 machine_mode align_mode
= (mode
== VOIDmode
? word_mode
: mode
);
3826 align
= targetm
.static_rtx_alignment (align_mode
);
3828 pool
->offset
+= (align
/ BITS_PER_UNIT
) - 1;
3829 pool
->offset
&= ~ ((align
/ BITS_PER_UNIT
) - 1);
3832 desc
->constant
= copy_rtx (tmp
.constant
);
3833 desc
->offset
= pool
->offset
;
3836 desc
->align
= align
;
3837 desc
->labelno
= const_labelno
;
3840 pool
->offset
+= GET_MODE_SIZE (mode
);
3842 pool
->last
->next
= desc
;
3844 pool
->first
= pool
->last
= desc
;
3847 /* Create a string containing the label name, in LABEL. */
3848 ASM_GENERATE_INTERNAL_LABEL (label
, "LC", const_labelno
);
3851 /* Construct the SYMBOL_REF. Make sure to mark it as belonging to
3852 the constants pool. */
3853 if (use_object_blocks_p () && targetm
.use_blocks_for_constant_p (mode
, x
))
3855 section
*sect
= targetm
.asm_out
.select_rtx_section (mode
, x
, align
);
3856 symbol
= create_block_symbol (ggc_strdup (label
),
3857 get_block_for_section (sect
), -1);
3860 symbol
= gen_rtx_SYMBOL_REF (Pmode
, ggc_strdup (label
));
3862 SYMBOL_REF_FLAGS (symbol
) |= SYMBOL_FLAG_LOCAL
;
3863 CONSTANT_POOL_ADDRESS_P (symbol
) = 1;
3864 SET_SYMBOL_REF_CONSTANT (symbol
, desc
);
3866 /* Construct the MEM. */
3867 desc
->mem
= def
= gen_const_mem (mode
, symbol
);
3868 set_mem_align (def
, align
);
3870 /* If we're dropping a label to the constant pool, make sure we
3872 if (GET_CODE (x
) == LABEL_REF
)
3873 LABEL_PRESERVE_P (XEXP (x
, 0)) = 1;
3875 return copy_rtx (def
);
3878 /* Given a constant pool SYMBOL_REF, return the corresponding constant. */
3881 get_pool_constant (const_rtx addr
)
3883 return SYMBOL_REF_CONSTANT (addr
)->constant
;
3886 /* Given a constant pool SYMBOL_REF, return the corresponding constant
3887 and whether it has been output or not. */
3890 get_pool_constant_mark (rtx addr
, bool *pmarked
)
3892 struct constant_descriptor_rtx
*desc
;
3894 desc
= SYMBOL_REF_CONSTANT (addr
);
3895 *pmarked
= (desc
->mark
!= 0);
3896 return desc
->constant
;
3899 /* Similar, return the mode. */
3902 get_pool_mode (const_rtx addr
)
3904 return SYMBOL_REF_CONSTANT (addr
)->mode
;
3907 /* Return TRUE if and only if the constant pool has no entries. Note
3908 that even entries we might end up choosing not to emit are counted
3909 here, so there is the potential for missed optimizations. */
3912 constant_pool_empty_p (void)
3914 return crtl
->varasm
.pool
->first
== NULL
;
3917 /* Worker function for output_constant_pool_1. Emit assembly for X
3918 in MODE with known alignment ALIGN. */
3921 output_constant_pool_2 (fixed_size_mode mode
, rtx x
, unsigned int align
)
3923 switch (GET_MODE_CLASS (mode
))
3926 case MODE_DECIMAL_FLOAT
:
3928 gcc_assert (CONST_DOUBLE_AS_FLOAT_P (x
));
3929 assemble_real (*CONST_DOUBLE_REAL_VALUE (x
),
3930 as_a
<scalar_float_mode
> (mode
), align
, false);
3935 case MODE_PARTIAL_INT
:
3940 assemble_integer (x
, GET_MODE_SIZE (mode
), align
, 1);
3943 case MODE_VECTOR_BOOL
:
3945 gcc_assert (GET_CODE (x
) == CONST_VECTOR
);
3947 /* Pick the smallest integer mode that contains at least one
3948 whole element. Often this is byte_mode and contains more
3949 than one element. */
3950 unsigned int nelts
= GET_MODE_NUNITS (mode
);
3951 unsigned int elt_bits
= GET_MODE_BITSIZE (mode
) / nelts
;
3952 unsigned int int_bits
= MAX (elt_bits
, BITS_PER_UNIT
);
3953 scalar_int_mode int_mode
= int_mode_for_size (int_bits
, 0).require ();
3955 /* Build the constant up one integer at a time. */
3956 unsigned int elts_per_int
= int_bits
/ elt_bits
;
3957 for (unsigned int i
= 0; i
< nelts
; i
+= elts_per_int
)
3959 unsigned HOST_WIDE_INT value
= 0;
3960 unsigned int limit
= MIN (nelts
- i
, elts_per_int
);
3961 for (unsigned int j
= 0; j
< limit
; ++j
)
3962 if (INTVAL (CONST_VECTOR_ELT (x
, i
+ j
)) != 0)
3963 value
|= 1 << (j
* elt_bits
);
3964 output_constant_pool_2 (int_mode
, gen_int_mode (value
, int_mode
),
3965 i
!= 0 ? MIN (align
, int_bits
) : align
);
3969 case MODE_VECTOR_FLOAT
:
3970 case MODE_VECTOR_INT
:
3971 case MODE_VECTOR_FRACT
:
3972 case MODE_VECTOR_UFRACT
:
3973 case MODE_VECTOR_ACCUM
:
3974 case MODE_VECTOR_UACCUM
:
3977 scalar_mode submode
= GET_MODE_INNER (mode
);
3978 unsigned int subalign
= MIN (align
, GET_MODE_BITSIZE (submode
));
3980 gcc_assert (GET_CODE (x
) == CONST_VECTOR
);
3981 units
= GET_MODE_NUNITS (mode
);
3983 for (i
= 0; i
< units
; i
++)
3985 rtx elt
= CONST_VECTOR_ELT (x
, i
);
3986 output_constant_pool_2 (submode
, elt
, i
? subalign
: align
);
3996 /* Worker function for output_constant_pool. Emit constant DESC,
3997 giving it ALIGN bits of alignment. */
4000 output_constant_pool_1 (struct constant_descriptor_rtx
*desc
,
4007 /* See if X is a LABEL_REF (or a CONST referring to a LABEL_REF)
4008 whose CODE_LABEL has been deleted. This can occur if a jump table
4009 is eliminated by optimization. If so, write a constant of zero
4010 instead. Note that this can also happen by turning the
4011 CODE_LABEL into a NOTE. */
4012 /* ??? This seems completely and utterly wrong. Certainly it's
4013 not true for NOTE_INSN_DELETED_LABEL, but I disbelieve proper
4014 functioning even with rtx_insn::deleted and friends. */
4017 switch (GET_CODE (tmp
))
4020 if (GET_CODE (XEXP (tmp
, 0)) != PLUS
4021 || GET_CODE (XEXP (XEXP (tmp
, 0), 0)) != LABEL_REF
)
4023 tmp
= XEXP (XEXP (tmp
, 0), 0);
4028 rtx_insn
*insn
= label_ref_label (tmp
);
4029 gcc_assert (!insn
->deleted ());
4030 gcc_assert (!NOTE_P (insn
)
4031 || NOTE_KIND (insn
) != NOTE_INSN_DELETED
);
4039 #ifdef ASM_OUTPUT_SPECIAL_POOL_ENTRY
4040 ASM_OUTPUT_SPECIAL_POOL_ENTRY (asm_out_file
, x
, desc
->mode
,
4041 align
, desc
->labelno
, done
);
4044 assemble_align (align
);
4046 /* Output the label. */
4047 targetm
.asm_out
.internal_label (asm_out_file
, "LC", desc
->labelno
);
4050 Pass actual alignment value while emitting string constant to asm code
4051 as function 'output_constant_pool_1' explicitly passes the alignment as 1
4052 assuming that the data is already aligned which prevents the generation
4053 of fix-up table entries. */
4054 output_constant_pool_2 (desc
->mode
, x
, desc
->align
);
4056 /* Make sure all constants in SECTION_MERGE and not SECTION_STRINGS
4057 sections have proper size. */
4058 if (align
> GET_MODE_BITSIZE (desc
->mode
)
4060 && (in_section
->common
.flags
& SECTION_MERGE
))
4061 assemble_align (align
);
4063 #ifdef ASM_OUTPUT_SPECIAL_POOL_ENTRY
4069 /* Recompute the offsets of entries in POOL, and the overall size of
4070 POOL. Do this after calling mark_constant_pool to ensure that we
4071 are computing the offset values for the pool which we will actually
4075 recompute_pool_offsets (struct rtx_constant_pool
*pool
)
4077 struct constant_descriptor_rtx
*desc
;
4080 for (desc
= pool
->first
; desc
; desc
= desc
->next
)
4083 /* Recalculate offset. */
4084 unsigned int align
= desc
->align
;
4085 pool
->offset
+= (align
/ BITS_PER_UNIT
) - 1;
4086 pool
->offset
&= ~ ((align
/ BITS_PER_UNIT
) - 1);
4087 desc
->offset
= pool
->offset
;
4088 pool
->offset
+= GET_MODE_SIZE (desc
->mode
);
4092 /* Mark all constants that are referenced by SYMBOL_REFs in X.
4093 Emit referenced deferred strings. */
4096 mark_constants_in_pattern (rtx insn
)
4098 subrtx_iterator::array_type array
;
4099 FOR_EACH_SUBRTX (iter
, array
, PATTERN (insn
), ALL
)
4101 const_rtx x
= *iter
;
4102 if (GET_CODE (x
) == SYMBOL_REF
)
4104 if (CONSTANT_POOL_ADDRESS_P (x
))
4106 struct constant_descriptor_rtx
*desc
= SYMBOL_REF_CONSTANT (x
);
4107 if (desc
->mark
== 0)
4110 iter
.substitute (desc
->constant
);
4113 else if (TREE_CONSTANT_POOL_ADDRESS_P (x
))
4115 tree decl
= SYMBOL_REF_DECL (x
);
4116 if (!TREE_ASM_WRITTEN (DECL_INITIAL (decl
)))
4118 n_deferred_constants
--;
4119 output_constant_def_contents (CONST_CAST_RTX (x
));
4126 /* Look through appropriate parts of INSN, marking all entries in the
4127 constant pool which are actually being used. Entries that are only
4128 referenced by other constants are also marked as used. Emit
4129 deferred strings that are used. */
4132 mark_constants (rtx_insn
*insn
)
4137 /* Insns may appear inside a SEQUENCE. Only check the patterns of
4138 insns, not any notes that may be attached. We don't want to mark
4139 a constant just because it happens to appear in a REG_EQUIV note. */
4140 if (rtx_sequence
*seq
= dyn_cast
<rtx_sequence
*> (PATTERN (insn
)))
4142 int i
, n
= seq
->len ();
4143 for (i
= 0; i
< n
; ++i
)
4145 rtx subinsn
= seq
->element (i
);
4146 if (INSN_P (subinsn
))
4147 mark_constants_in_pattern (subinsn
);
4151 mark_constants_in_pattern (insn
);
4154 /* Look through the instructions for this function, and mark all the
4155 entries in POOL which are actually being used. Emit deferred constants
4156 which have indeed been used. */
4159 mark_constant_pool (void)
4163 if (!crtl
->uses_const_pool
&& n_deferred_constants
== 0)
4166 for (insn
= get_insns (); insn
; insn
= NEXT_INSN (insn
))
4167 mark_constants (insn
);
4170 /* Write all the constants in POOL. */
4173 output_constant_pool_contents (struct rtx_constant_pool
*pool
)
4175 struct constant_descriptor_rtx
*desc
;
4177 for (desc
= pool
->first
; desc
; desc
= desc
->next
)
4180 /* If the constant is part of an object_block, make sure that
4181 the constant has been positioned within its block, but do not
4182 write out its definition yet. output_object_blocks will do
4184 if (SYMBOL_REF_HAS_BLOCK_INFO_P (desc
->sym
)
4185 && SYMBOL_REF_BLOCK (desc
->sym
))
4186 place_block_symbol (desc
->sym
);
4189 switch_to_section (targetm
.asm_out
.select_rtx_section
4190 (desc
->mode
, desc
->constant
, desc
->align
));
4191 output_constant_pool_1 (desc
, desc
->align
);
4196 /* Mark all constants that are used in the current function, then write
4197 out the function's private constant pool. */
4200 output_constant_pool (const char *fnname ATTRIBUTE_UNUSED
,
4201 tree fndecl ATTRIBUTE_UNUSED
)
4203 struct rtx_constant_pool
*pool
= crtl
->varasm
.pool
;
4205 /* It is possible for gcc to call force_const_mem and then to later
4206 discard the instructions which refer to the constant. In such a
4207 case we do not need to output the constant. */
4208 mark_constant_pool ();
4210 /* Having marked the constant pool entries we'll actually emit, we
4211 now need to rebuild the offset information, which may have become
4213 recompute_pool_offsets (pool
);
4215 #ifdef ASM_OUTPUT_POOL_PROLOGUE
4216 ASM_OUTPUT_POOL_PROLOGUE (asm_out_file
, fnname
, fndecl
, pool
->offset
);
4219 output_constant_pool_contents (pool
);
4221 #ifdef ASM_OUTPUT_POOL_EPILOGUE
4222 ASM_OUTPUT_POOL_EPILOGUE (asm_out_file
, fnname
, fndecl
, pool
->offset
);
4226 /* Write the contents of the shared constant pool. */
4229 output_shared_constant_pool (void)
4231 output_constant_pool_contents (shared_constant_pool
);
4234 /* Determine what kind of relocations EXP may need. */
4237 compute_reloc_for_constant (tree exp
)
4239 int reloc
= 0, reloc2
;
4242 switch (TREE_CODE (exp
))
4246 /* Go inside any operations that get_inner_reference can handle and see
4247 if what's inside is a constant: no need to do anything here for
4248 addresses of variables or functions. */
4249 for (tem
= TREE_OPERAND (exp
, 0); handled_component_p (tem
);
4250 tem
= TREE_OPERAND (tem
, 0))
4253 if (TREE_CODE (tem
) == MEM_REF
4254 && TREE_CODE (TREE_OPERAND (tem
, 0)) == ADDR_EXPR
)
4256 reloc
= compute_reloc_for_constant (TREE_OPERAND (tem
, 0));
4260 if (!targetm
.binds_local_p (tem
))
4267 case POINTER_PLUS_EXPR
:
4268 reloc
= compute_reloc_for_constant (TREE_OPERAND (exp
, 0));
4269 reloc
|= compute_reloc_for_constant (TREE_OPERAND (exp
, 1));
4273 reloc
= compute_reloc_for_constant (TREE_OPERAND (exp
, 0));
4274 reloc2
= compute_reloc_for_constant (TREE_OPERAND (exp
, 1));
4275 /* The difference of two local labels is computable at link time. */
4276 if (reloc
== 1 && reloc2
== 1)
4283 case VIEW_CONVERT_EXPR
:
4284 reloc
= compute_reloc_for_constant (TREE_OPERAND (exp
, 0));
4289 unsigned HOST_WIDE_INT idx
;
4290 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (exp
), idx
, tem
)
4292 reloc
|= compute_reloc_for_constant (tem
);
4302 /* Find all the constants whose addresses are referenced inside of EXP,
4303 and make sure assembler code with a label has been output for each one.
4304 Indicate whether an ADDR_EXPR has been encountered. */
4307 output_addressed_constants (tree exp
)
4311 switch (TREE_CODE (exp
))
4315 /* Go inside any operations that get_inner_reference can handle and see
4316 if what's inside is a constant: no need to do anything here for
4317 addresses of variables or functions. */
4318 for (tem
= TREE_OPERAND (exp
, 0); handled_component_p (tem
);
4319 tem
= TREE_OPERAND (tem
, 0))
4322 /* If we have an initialized CONST_DECL, retrieve the initializer. */
4323 if (TREE_CODE (tem
) == CONST_DECL
&& DECL_INITIAL (tem
))
4324 tem
= DECL_INITIAL (tem
);
4326 if (CONSTANT_CLASS_P (tem
) || TREE_CODE (tem
) == CONSTRUCTOR
)
4327 output_constant_def (tem
, 0);
4329 if (TREE_CODE (tem
) == MEM_REF
)
4330 output_addressed_constants (TREE_OPERAND (tem
, 0));
4334 case POINTER_PLUS_EXPR
:
4336 output_addressed_constants (TREE_OPERAND (exp
, 1));
4340 case VIEW_CONVERT_EXPR
:
4341 output_addressed_constants (TREE_OPERAND (exp
, 0));
4346 unsigned HOST_WIDE_INT idx
;
4347 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (exp
), idx
, tem
)
4349 output_addressed_constants (tem
);
4358 /* Whether a constructor CTOR is a valid static constant initializer if all
4359 its elements are. This used to be internal to initializer_constant_valid_p
4360 and has been exposed to let other functions like categorize_ctor_elements
4361 evaluate the property while walking a constructor for other purposes. */
4364 constructor_static_from_elts_p (const_tree ctor
)
4366 return (TREE_CONSTANT (ctor
)
4367 && (TREE_CODE (TREE_TYPE (ctor
)) == UNION_TYPE
4368 || TREE_CODE (TREE_TYPE (ctor
)) == RECORD_TYPE
4369 || TREE_CODE (TREE_TYPE (ctor
)) == ARRAY_TYPE
));
4372 static tree
initializer_constant_valid_p_1 (tree value
, tree endtype
,
4375 /* A subroutine of initializer_constant_valid_p. VALUE is a MINUS_EXPR,
4376 PLUS_EXPR or POINTER_PLUS_EXPR. This looks for cases of VALUE
4377 which are valid when ENDTYPE is an integer of any size; in
4378 particular, this does not accept a pointer minus a constant. This
4379 returns null_pointer_node if the VALUE is an absolute constant
4380 which can be used to initialize a static variable. Otherwise it
4384 narrowing_initializer_constant_valid_p (tree value
, tree endtype
, tree
*cache
)
4388 if (!INTEGRAL_TYPE_P (endtype
))
4391 op0
= TREE_OPERAND (value
, 0);
4392 op1
= TREE_OPERAND (value
, 1);
4394 /* Like STRIP_NOPS except allow the operand mode to widen. This
4395 works around a feature of fold that simplifies (int)(p1 - p2) to
4396 ((int)p1 - (int)p2) under the theory that the narrower operation
4399 while (CONVERT_EXPR_P (op0
)
4400 || TREE_CODE (op0
) == NON_LVALUE_EXPR
)
4402 tree inner
= TREE_OPERAND (op0
, 0);
4403 if (inner
== error_mark_node
4404 || ! INTEGRAL_MODE_P (TYPE_MODE (TREE_TYPE (inner
)))
4405 || (GET_MODE_SIZE (SCALAR_INT_TYPE_MODE (TREE_TYPE (op0
)))
4406 > GET_MODE_SIZE (SCALAR_INT_TYPE_MODE (TREE_TYPE (inner
)))))
4411 while (CONVERT_EXPR_P (op1
)
4412 || TREE_CODE (op1
) == NON_LVALUE_EXPR
)
4414 tree inner
= TREE_OPERAND (op1
, 0);
4415 if (inner
== error_mark_node
4416 || ! INTEGRAL_MODE_P (TYPE_MODE (TREE_TYPE (inner
)))
4417 || (GET_MODE_SIZE (SCALAR_INT_TYPE_MODE (TREE_TYPE (op1
)))
4418 > GET_MODE_SIZE (SCALAR_INT_TYPE_MODE (TREE_TYPE (inner
)))))
4423 op0
= initializer_constant_valid_p_1 (op0
, endtype
, cache
);
4427 op1
= initializer_constant_valid_p_1 (op1
, endtype
,
4428 cache
? cache
+ 2 : NULL
);
4429 /* Both initializers must be known. */
4433 && (op0
== null_pointer_node
4434 || TREE_CODE (value
) == MINUS_EXPR
))
4435 return null_pointer_node
;
4437 /* Support differences between labels. */
4438 if (TREE_CODE (op0
) == LABEL_DECL
4439 && TREE_CODE (op1
) == LABEL_DECL
)
4440 return null_pointer_node
;
4442 if (TREE_CODE (op0
) == STRING_CST
4443 && TREE_CODE (op1
) == STRING_CST
4444 && operand_equal_p (op0
, op1
, 1))
4445 return null_pointer_node
;
4451 /* Helper function of initializer_constant_valid_p.
4452 Return nonzero if VALUE is a valid constant-valued expression
4453 for use in initializing a static variable; one that can be an
4454 element of a "constant" initializer.
4456 Return null_pointer_node if the value is absolute;
4457 if it is relocatable, return the variable that determines the relocation.
4458 We assume that VALUE has been folded as much as possible;
4459 therefore, we do not need to check for such things as
4460 arithmetic-combinations of integers.
4462 Use CACHE (pointer to 2 tree values) for caching if non-NULL. */
4465 initializer_constant_valid_p_1 (tree value
, tree endtype
, tree
*cache
)
4469 switch (TREE_CODE (value
))
4472 if (constructor_static_from_elts_p (value
))
4474 unsigned HOST_WIDE_INT idx
;
4476 bool absolute
= true;
4478 if (cache
&& cache
[0] == value
)
4480 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (value
), idx
, elt
)
4483 reloc
= initializer_constant_valid_p_1 (elt
, TREE_TYPE (elt
),
4486 /* An absolute value is required with reverse SSO. */
4487 || (reloc
!= null_pointer_node
4488 && TYPE_REVERSE_STORAGE_ORDER (TREE_TYPE (value
))
4489 && !AGGREGATE_TYPE_P (TREE_TYPE (elt
))))
4494 cache
[1] = NULL_TREE
;
4498 if (reloc
!= null_pointer_node
)
4501 /* For a non-absolute relocation, there is no single
4502 variable that can be "the variable that determines the
4507 cache
[1] = absolute
? null_pointer_node
: error_mark_node
;
4509 return absolute
? null_pointer_node
: error_mark_node
;
4512 return TREE_STATIC (value
) ? null_pointer_node
: NULL_TREE
;
4520 return null_pointer_node
;
4525 tree op0
= staticp (TREE_OPERAND (value
, 0));
4528 /* "&(*a).f" is like unto pointer arithmetic. If "a" turns out
4529 to be a constant, this is old-skool offsetof-like nonsense. */
4530 if (TREE_CODE (op0
) == INDIRECT_REF
4531 && TREE_CONSTANT (TREE_OPERAND (op0
, 0)))
4532 return null_pointer_node
;
4533 /* Taking the address of a nested function involves a trampoline,
4534 unless we don't need or want one. */
4535 if (TREE_CODE (op0
) == FUNCTION_DECL
4536 && DECL_STATIC_CHAIN (op0
)
4537 && !TREE_NO_TRAMPOLINE (value
))
4539 /* "&{...}" requires a temporary to hold the constructed
4541 if (TREE_CODE (op0
) == CONSTRUCTOR
)
4547 case NON_LVALUE_EXPR
:
4548 return initializer_constant_valid_p_1 (TREE_OPERAND (value
, 0),
4551 case VIEW_CONVERT_EXPR
:
4553 tree src
= TREE_OPERAND (value
, 0);
4554 tree src_type
= TREE_TYPE (src
);
4555 tree dest_type
= TREE_TYPE (value
);
4557 /* Allow view-conversions from aggregate to non-aggregate type only
4558 if the bit pattern is fully preserved afterwards; otherwise, the
4559 RTL expander won't be able to apply a subsequent transformation
4560 to the underlying constructor. */
4561 if (AGGREGATE_TYPE_P (src_type
) && !AGGREGATE_TYPE_P (dest_type
))
4563 if (TYPE_MODE (endtype
) == TYPE_MODE (dest_type
))
4564 return initializer_constant_valid_p_1 (src
, endtype
, cache
);
4569 /* Allow all other kinds of view-conversion. */
4570 return initializer_constant_valid_p_1 (src
, endtype
, cache
);
4575 tree src
= TREE_OPERAND (value
, 0);
4576 tree src_type
= TREE_TYPE (src
);
4577 tree dest_type
= TREE_TYPE (value
);
4579 /* Allow conversions between pointer types, floating-point
4580 types, and offset types. */
4581 if ((POINTER_TYPE_P (dest_type
) && POINTER_TYPE_P (src_type
))
4582 || (FLOAT_TYPE_P (dest_type
) && FLOAT_TYPE_P (src_type
))
4583 || (TREE_CODE (dest_type
) == OFFSET_TYPE
4584 && TREE_CODE (src_type
) == OFFSET_TYPE
))
4585 return initializer_constant_valid_p_1 (src
, endtype
, cache
);
4587 /* Allow length-preserving conversions between integer types. */
4588 if (INTEGRAL_TYPE_P (dest_type
) && INTEGRAL_TYPE_P (src_type
)
4589 && (TYPE_PRECISION (dest_type
) == TYPE_PRECISION (src_type
)))
4590 return initializer_constant_valid_p_1 (src
, endtype
, cache
);
4592 /* Allow conversions between other integer types only if
4593 explicit value. Don't allow sign-extension to a type larger
4594 than word and pointer, there aren't relocations that would
4595 allow to sign extend it to a wider type. */
4596 if (INTEGRAL_TYPE_P (dest_type
)
4597 && INTEGRAL_TYPE_P (src_type
)
4598 && (TYPE_UNSIGNED (src_type
)
4599 || TYPE_PRECISION (dest_type
) <= TYPE_PRECISION (src_type
)
4600 || TYPE_PRECISION (dest_type
) <= BITS_PER_WORD
4601 || TYPE_PRECISION (dest_type
) <= POINTER_SIZE
))
4603 tree inner
= initializer_constant_valid_p_1 (src
, endtype
, cache
);
4604 if (inner
== null_pointer_node
)
4605 return null_pointer_node
;
4609 /* Allow (int) &foo provided int is as wide as a pointer. */
4610 if (INTEGRAL_TYPE_P (dest_type
) && POINTER_TYPE_P (src_type
)
4611 && (TYPE_PRECISION (dest_type
) >= TYPE_PRECISION (src_type
)))
4612 return initializer_constant_valid_p_1 (src
, endtype
, cache
);
4614 /* Likewise conversions from int to pointers, but also allow
4615 conversions from 0. */
4616 if ((POINTER_TYPE_P (dest_type
)
4617 || TREE_CODE (dest_type
) == OFFSET_TYPE
)
4618 && INTEGRAL_TYPE_P (src_type
))
4620 if (TREE_CODE (src
) == INTEGER_CST
4621 && TYPE_PRECISION (dest_type
) >= TYPE_PRECISION (src_type
))
4622 return null_pointer_node
;
4623 if (integer_zerop (src
))
4624 return null_pointer_node
;
4625 else if (TYPE_PRECISION (dest_type
) <= TYPE_PRECISION (src_type
))
4626 return initializer_constant_valid_p_1 (src
, endtype
, cache
);
4629 /* Allow conversions to struct or union types if the value
4631 if (TREE_CODE (dest_type
) == RECORD_TYPE
4632 || TREE_CODE (dest_type
) == UNION_TYPE
)
4633 return initializer_constant_valid_p_1 (src
, endtype
, cache
);
4637 case POINTER_PLUS_EXPR
:
4639 /* Any valid floating-point constants will have been folded by now;
4640 with -frounding-math we hit this with addition of two constants. */
4641 if (TREE_CODE (endtype
) == REAL_TYPE
)
4643 if (cache
&& cache
[0] == value
)
4645 if (! INTEGRAL_TYPE_P (endtype
)
4646 || TYPE_PRECISION (endtype
) >= TYPE_PRECISION (TREE_TYPE (value
)))
4648 tree ncache
[4] = { NULL_TREE
, NULL_TREE
, NULL_TREE
, NULL_TREE
};
4650 = initializer_constant_valid_p_1 (TREE_OPERAND (value
, 0),
4653 = initializer_constant_valid_p_1 (TREE_OPERAND (value
, 1),
4654 endtype
, ncache
+ 2);
4655 /* If either term is absolute, use the other term's relocation. */
4656 if (valid0
== null_pointer_node
)
4658 else if (valid1
== null_pointer_node
)
4660 /* Support narrowing pointer differences. */
4662 ret
= narrowing_initializer_constant_valid_p (value
, endtype
,
4666 /* Support narrowing pointer differences. */
4667 ret
= narrowing_initializer_constant_valid_p (value
, endtype
, NULL
);
4675 case POINTER_DIFF_EXPR
:
4677 if (TREE_CODE (endtype
) == REAL_TYPE
)
4679 if (cache
&& cache
[0] == value
)
4681 if (! INTEGRAL_TYPE_P (endtype
)
4682 || TYPE_PRECISION (endtype
) >= TYPE_PRECISION (TREE_TYPE (value
)))
4684 tree ncache
[4] = { NULL_TREE
, NULL_TREE
, NULL_TREE
, NULL_TREE
};
4686 = initializer_constant_valid_p_1 (TREE_OPERAND (value
, 0),
4689 = initializer_constant_valid_p_1 (TREE_OPERAND (value
, 1),
4690 endtype
, ncache
+ 2);
4691 /* Win if second argument is absolute. */
4692 if (valid1
== null_pointer_node
)
4694 /* Win if both arguments have the same relocation.
4695 Then the value is absolute. */
4696 else if (valid0
== valid1
&& valid0
!= 0)
4697 ret
= null_pointer_node
;
4698 /* Since GCC guarantees that string constants are unique in the
4699 generated code, a subtraction between two copies of the same
4700 constant string is absolute. */
4701 else if (valid0
&& TREE_CODE (valid0
) == STRING_CST
4702 && valid1
&& TREE_CODE (valid1
) == STRING_CST
4703 && operand_equal_p (valid0
, valid1
, 1))
4704 ret
= null_pointer_node
;
4705 /* Support narrowing differences. */
4707 ret
= narrowing_initializer_constant_valid_p (value
, endtype
,
4711 /* Support narrowing differences. */
4712 ret
= narrowing_initializer_constant_valid_p (value
, endtype
, NULL
);
4727 /* Return nonzero if VALUE is a valid constant-valued expression
4728 for use in initializing a static variable; one that can be an
4729 element of a "constant" initializer.
4731 Return null_pointer_node if the value is absolute;
4732 if it is relocatable, return the variable that determines the relocation.
4733 We assume that VALUE has been folded as much as possible;
4734 therefore, we do not need to check for such things as
4735 arithmetic-combinations of integers. */
4737 initializer_constant_valid_p (tree value
, tree endtype
, bool reverse
)
4739 tree reloc
= initializer_constant_valid_p_1 (value
, endtype
, NULL
);
4741 /* An absolute value is required with reverse storage order. */
4743 && reloc
!= null_pointer_node
4745 && !AGGREGATE_TYPE_P (endtype
)
4746 && !VECTOR_TYPE_P (endtype
))
4752 /* Return true if VALUE is a valid constant-valued expression
4753 for use in initializing a static bit-field; one that can be
4754 an element of a "constant" initializer. */
4757 initializer_constant_valid_for_bitfield_p (tree value
)
4759 /* For bitfields we support integer constants or possibly nested aggregates
4761 switch (TREE_CODE (value
))
4765 unsigned HOST_WIDE_INT idx
;
4768 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (value
), idx
, elt
)
4769 if (!initializer_constant_valid_for_bitfield_p (elt
))
4778 case VIEW_CONVERT_EXPR
:
4779 case NON_LVALUE_EXPR
:
4781 initializer_constant_valid_for_bitfield_p (TREE_OPERAND (value
, 0));
4790 /* Check if a STRING_CST fits into the field.
4791 Tolerate only the case when the NUL termination
4792 does not fit into the field. */
4795 check_string_literal (tree string
, unsigned HOST_WIDE_INT size
)
4797 tree type
= TREE_TYPE (string
);
4798 tree eltype
= TREE_TYPE (type
);
4799 unsigned HOST_WIDE_INT elts
= tree_to_uhwi (TYPE_SIZE_UNIT (eltype
));
4800 unsigned HOST_WIDE_INT mem_size
= tree_to_uhwi (TYPE_SIZE_UNIT (type
));
4801 int len
= TREE_STRING_LENGTH (string
);
4803 if (elts
!= 1 && elts
!= 2 && elts
!= 4)
4805 if (len
< 0 || len
% elts
!= 0)
4807 if (size
< (unsigned)len
)
4809 if (mem_size
!= size
)
4814 /* output_constructor outer state of relevance in recursive calls, typically
4815 for nested aggregate bitfields. */
4817 struct oc_outer_state
{
4818 unsigned int bit_offset
; /* current position in ... */
4819 int byte
; /* ... the outer byte buffer. */
4822 static unsigned HOST_WIDE_INT
4823 output_constructor (tree
, unsigned HOST_WIDE_INT
, unsigned int, bool,
4826 /* Output assembler code for constant EXP, with no label.
4827 This includes the pseudo-op such as ".int" or ".byte", and a newline.
4828 Assumes output_addressed_constants has been done on EXP already.
4830 Generate at least SIZE bytes of assembler data, padding at the end
4831 with zeros if necessary. SIZE must always be specified. The returned
4832 value is the actual number of bytes of assembler data generated, which
4833 may be bigger than SIZE if the object contains a variable length field.
4835 SIZE is important for structure constructors,
4836 since trailing members may have been omitted from the constructor.
4837 It is also important for initialization of arrays from string constants
4838 since the full length of the string constant might not be wanted.
4839 It is also needed for initialization of unions, where the initializer's
4840 type is just one member, and that may not be as long as the union.
4842 There a case in which we would fail to output exactly SIZE bytes:
4843 for a structure constructor that wants to produce more than SIZE bytes.
4844 But such constructors will never be generated for any possible input.
4846 ALIGN is the alignment of the data in bits.
4848 If REVERSE is true, EXP is output in reverse storage order. */
4850 static unsigned HOST_WIDE_INT
4851 output_constant (tree exp
, unsigned HOST_WIDE_INT size
, unsigned int align
,
4852 bool reverse
, bool merge_strings
)
4854 enum tree_code code
;
4855 unsigned HOST_WIDE_INT thissize
;
4858 if (size
== 0 || flag_syntax_only
)
4861 /* See if we're trying to initialize a pointer in a non-default mode
4862 to the address of some declaration somewhere. If the target says
4863 the mode is valid for pointers, assume the target has a way of
4865 if (TREE_CODE (exp
) == NOP_EXPR
4866 && POINTER_TYPE_P (TREE_TYPE (exp
))
4867 && targetm
.addr_space
.valid_pointer_mode
4868 (SCALAR_INT_TYPE_MODE (TREE_TYPE (exp
)),
4869 TYPE_ADDR_SPACE (TREE_TYPE (TREE_TYPE (exp
)))))
4871 tree saved_type
= TREE_TYPE (exp
);
4873 /* Peel off any intermediate conversions-to-pointer for valid
4875 while (TREE_CODE (exp
) == NOP_EXPR
4876 && POINTER_TYPE_P (TREE_TYPE (exp
))
4877 && targetm
.addr_space
.valid_pointer_mode
4878 (SCALAR_INT_TYPE_MODE (TREE_TYPE (exp
)),
4879 TYPE_ADDR_SPACE (TREE_TYPE (TREE_TYPE (exp
)))))
4880 exp
= TREE_OPERAND (exp
, 0);
4882 /* If what we're left with is the address of something, we can
4883 convert the address to the final type and output it that
4885 if (TREE_CODE (exp
) == ADDR_EXPR
)
4886 exp
= build1 (ADDR_EXPR
, saved_type
, TREE_OPERAND (exp
, 0));
4887 /* Likewise for constant ints. */
4888 else if (TREE_CODE (exp
) == INTEGER_CST
)
4889 exp
= fold_convert (saved_type
, exp
);
4893 /* Eliminate any conversions since we'll be outputting the underlying
4895 while (CONVERT_EXPR_P (exp
)
4896 || TREE_CODE (exp
) == NON_LVALUE_EXPR
4897 || TREE_CODE (exp
) == VIEW_CONVERT_EXPR
)
4899 HOST_WIDE_INT type_size
= int_size_in_bytes (TREE_TYPE (exp
));
4900 HOST_WIDE_INT op_size
= int_size_in_bytes (TREE_TYPE (TREE_OPERAND (exp
, 0)));
4902 /* Make sure eliminating the conversion is really a no-op, except with
4903 VIEW_CONVERT_EXPRs to allow for wild Ada unchecked conversions and
4904 union types to allow for Ada unchecked unions. */
4905 if (type_size
> op_size
4906 && TREE_CODE (exp
) != VIEW_CONVERT_EXPR
4907 && TREE_CODE (TREE_TYPE (exp
)) != UNION_TYPE
)
4908 /* Keep the conversion. */
4911 exp
= TREE_OPERAND (exp
, 0);
4914 code
= TREE_CODE (TREE_TYPE (exp
));
4915 thissize
= int_size_in_bytes (TREE_TYPE (exp
));
4917 /* Allow a constructor with no elements for any data type.
4918 This means to fill the space with zeros. */
4919 if (TREE_CODE (exp
) == CONSTRUCTOR
4920 && vec_safe_is_empty (CONSTRUCTOR_ELTS (exp
)))
4922 assemble_zeros (size
);
4926 if (TREE_CODE (exp
) == FDESC_EXPR
)
4928 #ifdef ASM_OUTPUT_FDESC
4929 HOST_WIDE_INT part
= tree_to_shwi (TREE_OPERAND (exp
, 1));
4930 tree decl
= TREE_OPERAND (exp
, 0);
4931 ASM_OUTPUT_FDESC (asm_out_file
, decl
, part
);
4938 /* Now output the underlying data. If we've handling the padding, return.
4939 Otherwise, break and ensure SIZE is the size written. */
4946 case REFERENCE_TYPE
:
4948 case FIXED_POINT_TYPE
:
4950 cst
= expand_expr (exp
, NULL_RTX
, VOIDmode
, EXPAND_INITIALIZER
);
4952 cst
= flip_storage_order (TYPE_MODE (TREE_TYPE (exp
)), cst
);
4953 if (!assemble_integer (cst
, MIN (size
, thissize
), align
, 0))
4954 error ("initializer for integer/fixed-point value is too complicated");
4958 if (TREE_CODE (exp
) != REAL_CST
)
4959 error ("initializer for floating value is not a floating constant");
4961 assemble_real (TREE_REAL_CST (exp
),
4962 SCALAR_FLOAT_TYPE_MODE (TREE_TYPE (exp
)),
4967 output_constant (TREE_REALPART (exp
), thissize
/ 2, align
,
4969 output_constant (TREE_IMAGPART (exp
), thissize
/ 2,
4970 min_align (align
, BITS_PER_UNIT
* (thissize
/ 2)),
4976 switch (TREE_CODE (exp
))
4979 return output_constructor (exp
, size
, align
, reverse
, NULL
);
4981 thissize
= (unsigned HOST_WIDE_INT
)TREE_STRING_LENGTH (exp
);
4984 || TREE_STRING_POINTER (exp
) [thissize
- 1] != '\0'))
4986 gcc_checking_assert (check_string_literal (exp
, size
));
4987 assemble_string (TREE_STRING_POINTER (exp
), thissize
);
4991 scalar_mode inner
= SCALAR_TYPE_MODE (TREE_TYPE (TREE_TYPE (exp
)));
4992 unsigned int nalign
= MIN (align
, GET_MODE_ALIGNMENT (inner
));
4993 int elt_size
= GET_MODE_SIZE (inner
);
4994 output_constant (VECTOR_CST_ELT (exp
, 0), elt_size
, align
,
4996 thissize
= elt_size
;
4997 /* Static constants must have a fixed size. */
4998 unsigned int nunits
= VECTOR_CST_NELTS (exp
).to_constant ();
4999 for (unsigned int i
= 1; i
< nunits
; i
++)
5001 output_constant (VECTOR_CST_ELT (exp
, i
), elt_size
, nalign
,
5003 thissize
+= elt_size
;
5014 gcc_assert (TREE_CODE (exp
) == CONSTRUCTOR
);
5015 return output_constructor (exp
, size
, align
, reverse
, NULL
);
5024 if (size
> thissize
)
5025 assemble_zeros (size
- thissize
);
5030 /* Subroutine of output_constructor, used for computing the size of
5031 arrays of unspecified length. VAL must be a CONSTRUCTOR of an array
5032 type with an unspecified upper bound. */
5034 static unsigned HOST_WIDE_INT
5035 array_size_for_constructor (tree val
)
5038 unsigned HOST_WIDE_INT cnt
;
5039 tree index
, value
, tmp
;
5042 /* This code used to attempt to handle string constants that are not
5043 arrays of single-bytes, but nothing else does, so there's no point in
5045 if (TREE_CODE (val
) == STRING_CST
)
5046 return TREE_STRING_LENGTH (val
);
5048 max_index
= NULL_TREE
;
5049 FOR_EACH_CONSTRUCTOR_ELT (CONSTRUCTOR_ELTS (val
), cnt
, index
, value
)
5051 if (TREE_CODE (index
) == RANGE_EXPR
)
5052 index
= TREE_OPERAND (index
, 1);
5053 if (max_index
== NULL_TREE
|| tree_int_cst_lt (max_index
, index
))
5057 if (max_index
== NULL_TREE
)
5060 /* Compute the total number of array elements. */
5061 tmp
= TYPE_MIN_VALUE (TYPE_DOMAIN (TREE_TYPE (val
)));
5062 i
= wi::to_offset (max_index
) - wi::to_offset (tmp
) + 1;
5064 /* Multiply by the array element unit size to find number of bytes. */
5065 i
*= wi::to_offset (TYPE_SIZE_UNIT (TREE_TYPE (TREE_TYPE (val
))));
5067 gcc_assert (wi::fits_uhwi_p (i
));
5068 return i
.to_uhwi ();
5071 /* Other datastructures + helpers for output_constructor. */
5073 /* output_constructor local state to support interaction with helpers. */
5075 struct oc_local_state
{
5077 /* Received arguments. */
5078 tree exp
; /* Constructor expression. */
5079 tree type
; /* Type of constructor expression. */
5080 unsigned HOST_WIDE_INT size
; /* # bytes to output - pad if necessary. */
5081 unsigned int align
; /* Known initial alignment. */
5082 tree min_index
; /* Lower bound if specified for an array. */
5084 /* Output processing state. */
5085 HOST_WIDE_INT total_bytes
; /* # bytes output so far / current position. */
5086 int byte
; /* Part of a bitfield byte yet to be output. */
5087 int last_relative_index
; /* Implicit or explicit index of the last
5088 array element output within a bitfield. */
5089 bool byte_buffer_in_use
; /* Whether BYTE is in use. */
5090 bool reverse
; /* Whether reverse storage order is in use. */
5092 /* Current element. */
5093 tree field
; /* Current field decl in a record. */
5094 tree val
; /* Current element value. */
5095 tree index
; /* Current element index. */
5099 /* Helper for output_constructor. From the current LOCAL state, output a
5100 RANGE_EXPR element. */
5103 output_constructor_array_range (oc_local_state
*local
)
5105 unsigned HOST_WIDE_INT fieldsize
5106 = int_size_in_bytes (TREE_TYPE (local
->type
));
5108 HOST_WIDE_INT lo_index
5109 = tree_to_shwi (TREE_OPERAND (local
->index
, 0));
5110 HOST_WIDE_INT hi_index
5111 = tree_to_shwi (TREE_OPERAND (local
->index
, 1));
5112 HOST_WIDE_INT index
;
5115 = min_align (local
->align
, fieldsize
* BITS_PER_UNIT
);
5117 for (index
= lo_index
; index
<= hi_index
; index
++)
5119 /* Output the element's initial value. */
5120 if (local
->val
== NULL_TREE
)
5121 assemble_zeros (fieldsize
);
5123 fieldsize
= output_constant (local
->val
, fieldsize
, align2
,
5124 local
->reverse
, false);
5126 /* Count its size. */
5127 local
->total_bytes
+= fieldsize
;
5131 /* Helper for output_constructor. From the current LOCAL state, output a
5132 field element that is not true bitfield or part of an outer one. */
5135 output_constructor_regular_field (oc_local_state
*local
)
5137 /* Field size and position. Since this structure is static, we know the
5138 positions are constant. */
5139 unsigned HOST_WIDE_INT fieldsize
;
5140 HOST_WIDE_INT fieldpos
;
5142 unsigned int align2
;
5144 /* Output any buffered-up bit-fields preceding this element. */
5145 if (local
->byte_buffer_in_use
)
5147 assemble_integer (GEN_INT (local
->byte
), 1, BITS_PER_UNIT
, 1);
5148 local
->total_bytes
++;
5149 local
->byte_buffer_in_use
= false;
5152 if (local
->index
!= NULL_TREE
)
5154 /* Perform the index calculation in modulo arithmetic but
5155 sign-extend the result because Ada has negative DECL_FIELD_OFFSETs
5156 but we are using an unsigned sizetype. */
5157 unsigned prec
= TYPE_PRECISION (sizetype
);
5158 offset_int idx
= wi::sext (wi::to_offset (local
->index
)
5159 - wi::to_offset (local
->min_index
), prec
);
5160 fieldpos
= (idx
* wi::to_offset (TYPE_SIZE_UNIT (TREE_TYPE (local
->val
))))
5163 else if (local
->field
!= NULL_TREE
)
5164 fieldpos
= int_byte_position (local
->field
);
5168 /* Advance to offset of this element.
5169 Note no alignment needed in an array, since that is guaranteed
5170 if each element has the proper size. */
5171 if (local
->field
!= NULL_TREE
|| local
->index
!= NULL_TREE
)
5173 if (fieldpos
> local
->total_bytes
)
5175 assemble_zeros (fieldpos
- local
->total_bytes
);
5176 local
->total_bytes
= fieldpos
;
5179 /* Must not go backwards. */
5180 gcc_assert (fieldpos
== local
->total_bytes
);
5183 /* Find the alignment of this element. */
5184 align2
= min_align (local
->align
, BITS_PER_UNIT
* fieldpos
);
5186 /* Determine size this element should occupy. */
5191 /* If this is an array with an unspecified upper bound,
5192 the initializer determines the size. */
5193 /* ??? This ought to only checked if DECL_SIZE_UNIT is NULL,
5194 but we cannot do this until the deprecated support for
5195 initializing zero-length array members is removed. */
5196 if (TREE_CODE (TREE_TYPE (local
->field
)) == ARRAY_TYPE
5197 && (!TYPE_DOMAIN (TREE_TYPE (local
->field
))
5198 || !TYPE_MAX_VALUE (TYPE_DOMAIN (TREE_TYPE (local
->field
)))))
5200 fieldsize
= array_size_for_constructor (local
->val
);
5201 /* Given a non-empty initialization, this field had better
5202 be last. Given a flexible array member, the next field
5203 on the chain is a TYPE_DECL of the enclosing struct. */
5204 const_tree next
= DECL_CHAIN (local
->field
);
5205 gcc_assert (!fieldsize
|| !next
|| TREE_CODE (next
) != FIELD_DECL
);
5206 tree size
= TYPE_SIZE_UNIT (TREE_TYPE (local
->val
));
5207 gcc_checking_assert (compare_tree_int (size
, fieldsize
) == 0);
5210 fieldsize
= tree_to_uhwi (DECL_SIZE_UNIT (local
->field
));
5213 fieldsize
= int_size_in_bytes (TREE_TYPE (local
->type
));
5215 /* Output the element's initial value. */
5216 if (local
->val
== NULL_TREE
)
5217 assemble_zeros (fieldsize
);
5219 fieldsize
= output_constant (local
->val
, fieldsize
, align2
,
5220 local
->reverse
, false);
5222 /* Count its size. */
5223 local
->total_bytes
+= fieldsize
;
5226 /* Helper for output_constructor. From the LOCAL state, output an element
5227 that is a true bitfield or part of an outer one. BIT_OFFSET is the offset
5228 from the start of a possibly ongoing outer byte buffer. */
5231 output_constructor_bitfield (oc_local_state
*local
, unsigned int bit_offset
)
5233 /* Bit size of this element. */
5234 HOST_WIDE_INT ebitsize
5236 ? tree_to_uhwi (DECL_SIZE (local
->field
))
5237 : tree_to_uhwi (TYPE_SIZE (TREE_TYPE (local
->type
))));
5239 /* Relative index of this element if this is an array component. */
5240 HOST_WIDE_INT relative_index
5243 ? (tree_to_shwi (local
->index
)
5244 - tree_to_shwi (local
->min_index
))
5245 : local
->last_relative_index
+ 1)
5248 /* Bit position of this element from the start of the containing
5250 HOST_WIDE_INT constructor_relative_ebitpos
5252 ? int_bit_position (local
->field
)
5253 : ebitsize
* relative_index
);
5255 /* Bit position of this element from the start of a possibly ongoing
5256 outer byte buffer. */
5257 HOST_WIDE_INT byte_relative_ebitpos
5258 = bit_offset
+ constructor_relative_ebitpos
;
5260 /* From the start of a possibly ongoing outer byte buffer, offsets to
5261 the first bit of this element and to the first bit past the end of
5263 HOST_WIDE_INT next_offset
= byte_relative_ebitpos
;
5264 HOST_WIDE_INT end_offset
= byte_relative_ebitpos
+ ebitsize
;
5266 local
->last_relative_index
= relative_index
;
5268 if (local
->val
== NULL_TREE
)
5269 local
->val
= integer_zero_node
;
5271 while (TREE_CODE (local
->val
) == VIEW_CONVERT_EXPR
5272 || TREE_CODE (local
->val
) == NON_LVALUE_EXPR
)
5273 local
->val
= TREE_OPERAND (local
->val
, 0);
5275 if (TREE_CODE (local
->val
) != INTEGER_CST
5276 && TREE_CODE (local
->val
) != CONSTRUCTOR
)
5278 error ("invalid initial value for member %qE", DECL_NAME (local
->field
));
5282 /* If this field does not start in this (or next) byte, skip some bytes. */
5283 if (next_offset
/ BITS_PER_UNIT
!= local
->total_bytes
)
5285 /* Output remnant of any bit field in previous bytes. */
5286 if (local
->byte_buffer_in_use
)
5288 assemble_integer (GEN_INT (local
->byte
), 1, BITS_PER_UNIT
, 1);
5289 local
->total_bytes
++;
5290 local
->byte_buffer_in_use
= false;
5293 /* If still not at proper byte, advance to there. */
5294 if (next_offset
/ BITS_PER_UNIT
!= local
->total_bytes
)
5296 gcc_assert (next_offset
/ BITS_PER_UNIT
>= local
->total_bytes
);
5297 assemble_zeros (next_offset
/ BITS_PER_UNIT
- local
->total_bytes
);
5298 local
->total_bytes
= next_offset
/ BITS_PER_UNIT
;
5302 /* Set up the buffer if necessary. */
5303 if (!local
->byte_buffer_in_use
)
5307 local
->byte_buffer_in_use
= true;
5310 /* If this is nested constructor, recurse passing the bit offset and the
5311 pending data, then retrieve the new pending data afterwards. */
5312 if (TREE_CODE (local
->val
) == CONSTRUCTOR
)
5314 oc_outer_state temp_state
;
5315 temp_state
.bit_offset
= next_offset
% BITS_PER_UNIT
;
5316 temp_state
.byte
= local
->byte
;
5318 += output_constructor (local
->val
, 0, 0, local
->reverse
, &temp_state
);
5319 local
->byte
= temp_state
.byte
;
5323 /* Otherwise, we must split the element into pieces that fall within
5324 separate bytes, and combine each byte with previous or following
5326 while (next_offset
< end_offset
)
5330 HOST_WIDE_INT value
;
5331 HOST_WIDE_INT next_byte
= next_offset
/ BITS_PER_UNIT
;
5332 HOST_WIDE_INT next_bit
= next_offset
% BITS_PER_UNIT
;
5334 /* Advance from byte to byte within this element when necessary. */
5335 while (next_byte
!= local
->total_bytes
)
5337 assemble_integer (GEN_INT (local
->byte
), 1, BITS_PER_UNIT
, 1);
5338 local
->total_bytes
++;
5342 /* Number of bits we can process at once (all part of the same byte). */
5343 this_time
= MIN (end_offset
- next_offset
, BITS_PER_UNIT
- next_bit
);
5344 if (local
->reverse
? !BYTES_BIG_ENDIAN
: BYTES_BIG_ENDIAN
)
5346 /* For big-endian data, take the most significant bits (of the
5347 bits that are significant) first and put them into bytes from
5348 the most significant end. */
5349 shift
= end_offset
- next_offset
- this_time
;
5351 /* Don't try to take a bunch of bits that cross
5352 the word boundary in the INTEGER_CST. We can
5353 only select bits from one element. */
5354 if ((shift
/ HOST_BITS_PER_WIDE_INT
)
5355 != ((shift
+ this_time
- 1) / HOST_BITS_PER_WIDE_INT
))
5357 const int end
= shift
+ this_time
- 1;
5358 shift
= end
& -HOST_BITS_PER_WIDE_INT
;
5359 this_time
= end
- shift
+ 1;
5362 /* Now get the bits from the appropriate constant word. */
5363 value
= TREE_INT_CST_ELT (local
->val
, shift
/ HOST_BITS_PER_WIDE_INT
);
5364 shift
= shift
& (HOST_BITS_PER_WIDE_INT
- 1);
5366 /* Get the result. This works only when:
5367 1 <= this_time <= HOST_BITS_PER_WIDE_INT. */
5368 local
->byte
|= (((value
>> shift
)
5369 & (((HOST_WIDE_INT
) 2 << (this_time
- 1)) - 1))
5370 << (BITS_PER_UNIT
- this_time
- next_bit
));
5374 /* On little-endian machines, take the least significant bits of
5375 the value first and pack them starting at the least significant
5376 bits of the bytes. */
5377 shift
= next_offset
- byte_relative_ebitpos
;
5379 /* Don't try to take a bunch of bits that cross
5380 the word boundary in the INTEGER_CST. We can
5381 only select bits from one element. */
5382 if ((shift
/ HOST_BITS_PER_WIDE_INT
)
5383 != ((shift
+ this_time
- 1) / HOST_BITS_PER_WIDE_INT
))
5385 = HOST_BITS_PER_WIDE_INT
- (shift
& (HOST_BITS_PER_WIDE_INT
- 1));
5387 /* Now get the bits from the appropriate constant word. */
5388 value
= TREE_INT_CST_ELT (local
->val
, shift
/ HOST_BITS_PER_WIDE_INT
);
5389 shift
= shift
& (HOST_BITS_PER_WIDE_INT
- 1);
5391 /* Get the result. This works only when:
5392 1 <= this_time <= HOST_BITS_PER_WIDE_INT. */
5393 local
->byte
|= (((value
>> shift
)
5394 & (((HOST_WIDE_INT
) 2 << (this_time
- 1)) - 1))
5398 next_offset
+= this_time
;
5399 local
->byte_buffer_in_use
= true;
5403 /* Subroutine of output_constant, used for CONSTRUCTORs (aggregate constants).
5404 Generate at least SIZE bytes, padding if necessary. OUTER designates the
5405 caller output state of relevance in recursive invocations. */
5407 static unsigned HOST_WIDE_INT
5408 output_constructor (tree exp
, unsigned HOST_WIDE_INT size
, unsigned int align
,
5409 bool reverse
, oc_outer_state
*outer
)
5411 unsigned HOST_WIDE_INT cnt
;
5412 constructor_elt
*ce
;
5413 oc_local_state local
;
5415 /* Setup our local state to communicate with helpers. */
5417 local
.type
= TREE_TYPE (exp
);
5419 local
.align
= align
;
5420 if (TREE_CODE (local
.type
) == ARRAY_TYPE
&& TYPE_DOMAIN (local
.type
))
5421 local
.min_index
= TYPE_MIN_VALUE (TYPE_DOMAIN (local
.type
));
5423 local
.min_index
= integer_zero_node
;
5425 local
.total_bytes
= 0;
5426 local
.byte_buffer_in_use
= outer
!= NULL
;
5427 local
.byte
= outer
? outer
->byte
: 0;
5428 local
.last_relative_index
= -1;
5429 /* The storage order is specified for every aggregate type. */
5430 if (AGGREGATE_TYPE_P (local
.type
))
5431 local
.reverse
= TYPE_REVERSE_STORAGE_ORDER (local
.type
);
5433 local
.reverse
= reverse
;
5435 gcc_assert (HOST_BITS_PER_WIDE_INT
>= BITS_PER_UNIT
);
5437 /* As CE goes through the elements of the constant, FIELD goes through the
5438 structure fields if the constant is a structure. If the constant is a
5439 union, we override this by getting the field from the TREE_LIST element.
5440 But the constant could also be an array. Then FIELD is zero.
5442 There is always a maximum of one element in the chain LINK for unions
5443 (even if the initializer in a source program incorrectly contains
5446 if (TREE_CODE (local
.type
) == RECORD_TYPE
)
5447 local
.field
= TYPE_FIELDS (local
.type
);
5449 local
.field
= NULL_TREE
;
5452 vec_safe_iterate (CONSTRUCTOR_ELTS (exp
), cnt
, &ce
);
5453 cnt
++, local
.field
= local
.field
? DECL_CHAIN (local
.field
) : 0)
5455 local
.val
= ce
->value
;
5456 local
.index
= NULL_TREE
;
5458 /* The element in a union constructor specifies the proper field
5460 if (RECORD_OR_UNION_TYPE_P (local
.type
) && ce
->index
!= NULL_TREE
)
5461 local
.field
= ce
->index
;
5463 else if (TREE_CODE (local
.type
) == ARRAY_TYPE
)
5464 local
.index
= ce
->index
;
5466 if (local
.field
&& flag_verbose_asm
)
5467 fprintf (asm_out_file
, "%s %s:\n",
5469 DECL_NAME (local
.field
)
5470 ? IDENTIFIER_POINTER (DECL_NAME (local
.field
))
5473 /* Eliminate the marker that makes a cast not be an lvalue. */
5474 if (local
.val
!= NULL_TREE
)
5475 STRIP_NOPS (local
.val
);
5477 /* Output the current element, using the appropriate helper ... */
5479 /* For an array slice not part of an outer bitfield. */
5481 && local
.index
!= NULL_TREE
5482 && TREE_CODE (local
.index
) == RANGE_EXPR
)
5483 output_constructor_array_range (&local
);
5485 /* For a field that is neither a true bitfield nor part of an outer one,
5486 known to be at least byte aligned and multiple-of-bytes long. */
5488 && (local
.field
== NULL_TREE
5489 || !CONSTRUCTOR_BITFIELD_P (local
.field
)))
5490 output_constructor_regular_field (&local
);
5492 /* For a true bitfield or part of an outer one. Only INTEGER_CSTs are
5493 supported for scalar fields, so we may need to convert first. */
5496 if (TREE_CODE (local
.val
) == REAL_CST
)
5498 = fold_unary (VIEW_CONVERT_EXPR
,
5499 build_nonstandard_integer_type
5500 (TYPE_PRECISION (TREE_TYPE (local
.val
)), 0),
5502 output_constructor_bitfield (&local
, outer
? outer
->bit_offset
: 0);
5506 /* If we are not at toplevel, save the pending data for our caller.
5507 Otherwise output the pending data and padding zeros as needed. */
5509 outer
->byte
= local
.byte
;
5512 if (local
.byte_buffer_in_use
)
5514 assemble_integer (GEN_INT (local
.byte
), 1, BITS_PER_UNIT
, 1);
5515 local
.total_bytes
++;
5518 if ((unsigned HOST_WIDE_INT
)local
.total_bytes
< local
.size
)
5520 assemble_zeros (local
.size
- local
.total_bytes
);
5521 local
.total_bytes
= local
.size
;
5525 return local
.total_bytes
;
5528 /* Mark DECL as weak. */
5531 mark_weak (tree decl
)
5533 if (DECL_WEAK (decl
))
5536 struct symtab_node
*n
= symtab_node::get (decl
);
5537 if (n
&& n
->refuse_visibility_changes
)
5538 error ("%+qD declared weak after being used", decl
);
5539 DECL_WEAK (decl
) = 1;
5541 if (DECL_RTL_SET_P (decl
)
5542 && MEM_P (DECL_RTL (decl
))
5543 && XEXP (DECL_RTL (decl
), 0)
5544 && GET_CODE (XEXP (DECL_RTL (decl
), 0)) == SYMBOL_REF
)
5545 SYMBOL_REF_WEAK (XEXP (DECL_RTL (decl
), 0)) = 1;
5548 /* Merge weak status between NEWDECL and OLDDECL. */
5551 merge_weak (tree newdecl
, tree olddecl
)
5553 if (DECL_WEAK (newdecl
) == DECL_WEAK (olddecl
))
5555 if (DECL_WEAK (newdecl
) && TARGET_SUPPORTS_WEAK
)
5558 /* We put the NEWDECL on the weak_decls list at some point
5559 and OLDDECL as well. Keep just OLDDECL on the list. */
5560 for (pwd
= &weak_decls
; *pwd
; pwd
= &TREE_CHAIN (*pwd
))
5561 if (TREE_VALUE (*pwd
) == newdecl
)
5563 *pwd
= TREE_CHAIN (*pwd
);
5570 if (DECL_WEAK (newdecl
))
5574 /* NEWDECL is weak, but OLDDECL is not. */
5576 /* If we already output the OLDDECL, we're in trouble; we can't
5577 go back and make it weak. This should never happen in
5578 unit-at-a-time compilation. */
5579 gcc_assert (!TREE_ASM_WRITTEN (olddecl
));
5581 /* If we've already generated rtl referencing OLDDECL, we may
5582 have done so in a way that will not function properly with
5583 a weak symbol. Again in unit-at-a-time this should be
5585 gcc_assert (!TREE_USED (olddecl
)
5586 || !TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (olddecl
)));
5588 /* PR 49899: You cannot convert a static function into a weak, public function. */
5589 if (! TREE_PUBLIC (olddecl
) && TREE_PUBLIC (newdecl
))
5590 error ("weak declaration of %q+D being applied to a already "
5591 "existing, static definition", newdecl
);
5593 if (TARGET_SUPPORTS_WEAK
)
5595 /* We put the NEWDECL on the weak_decls list at some point.
5596 Replace it with the OLDDECL. */
5597 for (wd
= weak_decls
; wd
; wd
= TREE_CHAIN (wd
))
5598 if (TREE_VALUE (wd
) == newdecl
)
5600 TREE_VALUE (wd
) = olddecl
;
5603 /* We may not find the entry on the list. If NEWDECL is a
5604 weak alias, then we will have already called
5605 globalize_decl to remove the entry; in that case, we do
5606 not need to do anything. */
5609 /* Make the OLDDECL weak; it's OLDDECL that we'll be keeping. */
5610 mark_weak (olddecl
);
5613 /* OLDDECL was weak, but NEWDECL was not explicitly marked as
5614 weak. Just update NEWDECL to indicate that it's weak too. */
5615 mark_weak (newdecl
);
5618 /* Declare DECL to be a weak symbol. */
5621 declare_weak (tree decl
)
5623 gcc_assert (TREE_CODE (decl
) != FUNCTION_DECL
|| !TREE_ASM_WRITTEN (decl
));
5624 if (! TREE_PUBLIC (decl
))
5626 error ("weak declaration of %q+D must be public", decl
);
5629 else if (!TARGET_SUPPORTS_WEAK
)
5630 warning (0, "weak declaration of %q+D not supported", decl
);
5633 if (!lookup_attribute ("weak", DECL_ATTRIBUTES (decl
)))
5634 DECL_ATTRIBUTES (decl
)
5635 = tree_cons (get_identifier ("weak"), NULL
, DECL_ATTRIBUTES (decl
));
5639 weak_finish_1 (tree decl
)
5641 #if defined (ASM_WEAKEN_DECL) || defined (ASM_WEAKEN_LABEL)
5642 const char *const name
= IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl
));
5645 if (! TREE_USED (decl
))
5648 #ifdef ASM_WEAKEN_DECL
5649 ASM_WEAKEN_DECL (asm_out_file
, decl
, name
, NULL
);
5651 #ifdef ASM_WEAKEN_LABEL
5652 ASM_WEAKEN_LABEL (asm_out_file
, name
);
5654 #ifdef ASM_OUTPUT_WEAK_ALIAS
5656 static bool warn_once
= 0;
5659 warning (0, "only weak aliases are supported in this configuration");
5669 /* Fiven an assembly name, find the decl it is associated with. */
5671 find_decl (tree target
)
5673 symtab_node
*node
= symtab_node::get_for_asmname (target
);
5679 /* This TREE_LIST contains weakref targets. */
5681 static GTY(()) tree weakref_targets
;
5683 /* Emit any pending weak declarations. */
5690 for (t
= weakref_targets
; t
; t
= TREE_CHAIN (t
))
5692 tree alias_decl
= TREE_PURPOSE (t
);
5693 tree target
= ultimate_transparent_alias_target (&TREE_VALUE (t
));
5695 if (! TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (alias_decl
))
5696 || TREE_SYMBOL_REFERENCED (target
))
5697 /* Remove alias_decl from the weak list, but leave entries for
5698 the target alone. */
5700 #ifndef ASM_OUTPUT_WEAKREF
5701 else if (! TREE_SYMBOL_REFERENCED (target
))
5703 /* Use ASM_WEAKEN_LABEL only if ASM_WEAKEN_DECL is not
5704 defined, otherwise we and weak_finish_1 would use
5705 different macros. */
5706 # if defined ASM_WEAKEN_LABEL && ! defined ASM_WEAKEN_DECL
5707 ASM_WEAKEN_LABEL (asm_out_file
, IDENTIFIER_POINTER (target
));
5709 tree decl
= find_decl (target
);
5713 decl
= build_decl (DECL_SOURCE_LOCATION (alias_decl
),
5714 TREE_CODE (alias_decl
), target
,
5715 TREE_TYPE (alias_decl
));
5717 DECL_EXTERNAL (decl
) = 1;
5718 TREE_PUBLIC (decl
) = 1;
5719 DECL_ARTIFICIAL (decl
) = 1;
5720 TREE_NOTHROW (decl
) = TREE_NOTHROW (alias_decl
);
5721 TREE_USED (decl
) = 1;
5724 weak_finish_1 (decl
);
5733 /* Remove the alias and the target from the pending weak list
5734 so that we do not emit any .weak directives for the former,
5735 nor multiple .weak directives for the latter. */
5736 for (p
= &weak_decls
; (t2
= *p
) ; )
5738 if (TREE_VALUE (t2
) == alias_decl
5739 || target
== DECL_ASSEMBLER_NAME (TREE_VALUE (t2
)))
5740 *p
= TREE_CHAIN (t2
);
5742 p
= &TREE_CHAIN (t2
);
5745 /* Remove other weakrefs to the same target, to speed things up. */
5746 for (p
= &TREE_CHAIN (t
); (t2
= *p
) ; )
5748 if (target
== ultimate_transparent_alias_target (&TREE_VALUE (t2
)))
5749 *p
= TREE_CHAIN (t2
);
5751 p
= &TREE_CHAIN (t2
);
5756 for (t
= weak_decls
; t
; t
= TREE_CHAIN (t
))
5758 tree decl
= TREE_VALUE (t
);
5760 weak_finish_1 (decl
);
5764 /* Emit the assembly bits to indicate that DECL is globally visible. */
5767 globalize_decl (tree decl
)
5770 #if defined (ASM_WEAKEN_LABEL) || defined (ASM_WEAKEN_DECL)
5771 if (DECL_WEAK (decl
))
5773 const char *name
= XSTR (XEXP (DECL_RTL (decl
), 0), 0);
5776 #ifdef ASM_WEAKEN_DECL
5777 ASM_WEAKEN_DECL (asm_out_file
, decl
, name
, 0);
5779 ASM_WEAKEN_LABEL (asm_out_file
, name
);
5782 /* Remove this function from the pending weak list so that
5783 we do not emit multiple .weak directives for it. */
5784 for (p
= &weak_decls
; (t
= *p
) ; )
5786 if (DECL_ASSEMBLER_NAME (decl
) == DECL_ASSEMBLER_NAME (TREE_VALUE (t
)))
5787 *p
= TREE_CHAIN (t
);
5789 p
= &TREE_CHAIN (t
);
5792 /* Remove weakrefs to the same target from the pending weakref
5793 list, for the same reason. */
5794 for (p
= &weakref_targets
; (t
= *p
) ; )
5796 if (DECL_ASSEMBLER_NAME (decl
)
5797 == ultimate_transparent_alias_target (&TREE_VALUE (t
)))
5798 *p
= TREE_CHAIN (t
);
5800 p
= &TREE_CHAIN (t
);
5807 targetm
.asm_out
.globalize_decl_name (asm_out_file
, decl
);
5810 vec
<alias_pair
, va_gc
> *alias_pairs
;
5812 /* Output the assembler code for a define (equate) using ASM_OUTPUT_DEF
5813 or ASM_OUTPUT_DEF_FROM_DECLS. The function defines the symbol whose
5814 tree node is DECL to have the value of the tree node TARGET. */
5817 do_assemble_alias (tree decl
, tree target
)
5821 /* Emulated TLS had better not get this var. */
5822 gcc_assert (!(!targetm
.have_tls
5824 && DECL_THREAD_LOCAL_P (decl
)));
5826 if (TREE_ASM_WRITTEN (decl
))
5829 id
= DECL_ASSEMBLER_NAME (decl
);
5830 ultimate_transparent_alias_target (&id
);
5831 ultimate_transparent_alias_target (&target
);
5833 /* We must force creation of DECL_RTL for debug info generation, even though
5834 we don't use it here. */
5835 make_decl_rtl (decl
);
5837 TREE_ASM_WRITTEN (decl
) = 1;
5838 TREE_ASM_WRITTEN (DECL_ASSEMBLER_NAME (decl
)) = 1;
5839 TREE_ASM_WRITTEN (id
) = 1;
5841 if (lookup_attribute ("weakref", DECL_ATTRIBUTES (decl
)))
5843 if (!TREE_SYMBOL_REFERENCED (target
))
5844 weakref_targets
= tree_cons (decl
, target
, weakref_targets
);
5846 #ifdef ASM_OUTPUT_WEAKREF
5847 ASM_OUTPUT_WEAKREF (asm_out_file
, decl
,
5848 IDENTIFIER_POINTER (id
),
5849 IDENTIFIER_POINTER (target
));
5851 if (!TARGET_SUPPORTS_WEAK
)
5853 error_at (DECL_SOURCE_LOCATION (decl
),
5854 "weakref is not supported in this configuration");
5861 #ifdef ASM_OUTPUT_DEF
5862 tree orig_decl
= decl
;
5864 /* Make name accessible from other files, if appropriate. */
5866 if (TREE_PUBLIC (decl
) || TREE_PUBLIC (orig_decl
))
5868 globalize_decl (decl
);
5869 maybe_assemble_visibility (decl
);
5871 if (TREE_CODE (decl
) == FUNCTION_DECL
5872 && cgraph_node::get (decl
)->ifunc_resolver
)
5874 #if defined (ASM_OUTPUT_TYPE_DIRECTIVE)
5875 if (targetm
.has_ifunc_p ())
5876 ASM_OUTPUT_TYPE_DIRECTIVE
5877 (asm_out_file
, IDENTIFIER_POINTER (id
),
5881 error_at (DECL_SOURCE_LOCATION (decl
),
5882 "ifunc is not supported on this target");
5885 # ifdef ASM_OUTPUT_DEF_FROM_DECLS
5886 ASM_OUTPUT_DEF_FROM_DECLS (asm_out_file
, decl
, target
);
5888 ASM_OUTPUT_DEF (asm_out_file
,
5889 IDENTIFIER_POINTER (id
),
5890 IDENTIFIER_POINTER (target
));
5892 #elif defined (ASM_OUTPUT_WEAK_ALIAS) || defined (ASM_WEAKEN_DECL)
5897 name
= IDENTIFIER_POINTER (id
);
5898 # ifdef ASM_WEAKEN_DECL
5899 ASM_WEAKEN_DECL (asm_out_file
, decl
, name
, IDENTIFIER_POINTER (target
));
5901 ASM_OUTPUT_WEAK_ALIAS (asm_out_file
, name
, IDENTIFIER_POINTER (target
));
5903 /* Remove this function from the pending weak list so that
5904 we do not emit multiple .weak directives for it. */
5905 for (p
= &weak_decls
; (t
= *p
) ; )
5906 if (DECL_ASSEMBLER_NAME (decl
) == DECL_ASSEMBLER_NAME (TREE_VALUE (t
))
5907 || id
== DECL_ASSEMBLER_NAME (TREE_VALUE (t
)))
5908 *p
= TREE_CHAIN (t
);
5910 p
= &TREE_CHAIN (t
);
5912 /* Remove weakrefs to the same target from the pending weakref
5913 list, for the same reason. */
5914 for (p
= &weakref_targets
; (t
= *p
) ; )
5916 if (id
== ultimate_transparent_alias_target (&TREE_VALUE (t
)))
5917 *p
= TREE_CHAIN (t
);
5919 p
= &TREE_CHAIN (t
);
5925 /* Emit an assembler directive to make the symbol for DECL an alias to
5926 the symbol for TARGET. */
5929 assemble_alias (tree decl
, tree target
)
5933 if (lookup_attribute ("weakref", DECL_ATTRIBUTES (decl
)))
5935 tree alias
= DECL_ASSEMBLER_NAME (decl
);
5937 ultimate_transparent_alias_target (&target
);
5939 if (alias
== target
)
5940 error ("weakref %q+D ultimately targets itself", decl
);
5941 if (TREE_PUBLIC (decl
))
5942 error ("weakref %q+D must have static linkage", decl
);
5946 #if !defined (ASM_OUTPUT_DEF)
5947 # if !defined(ASM_OUTPUT_WEAK_ALIAS) && !defined (ASM_WEAKEN_DECL)
5948 error_at (DECL_SOURCE_LOCATION (decl
),
5949 "alias definitions not supported in this configuration");
5950 TREE_ASM_WRITTEN (decl
) = 1;
5953 if (!DECL_WEAK (decl
))
5955 /* NB: ifunc_resolver isn't set when an error is detected. */
5956 if (TREE_CODE (decl
) == FUNCTION_DECL
5957 && lookup_attribute ("ifunc", DECL_ATTRIBUTES (decl
)))
5958 error_at (DECL_SOURCE_LOCATION (decl
),
5959 "ifunc is not supported in this configuration");
5961 error_at (DECL_SOURCE_LOCATION (decl
),
5962 "only weak aliases are supported in this configuration");
5963 TREE_ASM_WRITTEN (decl
) = 1;
5969 TREE_USED (decl
) = 1;
5971 /* Allow aliases to aliases. */
5972 if (TREE_CODE (decl
) == FUNCTION_DECL
)
5973 cgraph_node::get_create (decl
)->alias
= true;
5975 varpool_node::get_create (decl
)->alias
= true;
5977 /* If the target has already been emitted, we don't have to queue the
5978 alias. This saves a tad of memory. */
5979 if (symtab
->global_info_ready
)
5980 target_decl
= find_decl (target
);
5983 if ((target_decl
&& TREE_ASM_WRITTEN (target_decl
))
5984 || symtab
->state
>= EXPANSION
)
5985 do_assemble_alias (decl
, target
);
5988 alias_pair p
= {decl
, target
};
5989 vec_safe_push (alias_pairs
, p
);
5993 /* Record and output a table of translations from original function
5994 to its transaction aware clone. Note that tm_pure functions are
5995 considered to be their own clone. */
5997 struct tm_clone_hasher
: ggc_cache_ptr_hash
<tree_map
>
5999 static hashval_t
hash (tree_map
*m
) { return tree_map_hash (m
); }
6000 static bool equal (tree_map
*a
, tree_map
*b
) { return tree_map_eq (a
, b
); }
6003 keep_cache_entry (tree_map
*&e
)
6005 return ggc_marked_p (e
->base
.from
);
6009 static GTY((cache
)) hash_table
<tm_clone_hasher
> *tm_clone_hash
;
6012 record_tm_clone_pair (tree o
, tree n
)
6014 struct tree_map
**slot
, *h
;
6016 if (tm_clone_hash
== NULL
)
6017 tm_clone_hash
= hash_table
<tm_clone_hasher
>::create_ggc (32);
6019 h
= ggc_alloc
<tree_map
> ();
6020 h
->hash
= htab_hash_pointer (o
);
6024 slot
= tm_clone_hash
->find_slot_with_hash (h
, h
->hash
, INSERT
);
6029 get_tm_clone_pair (tree o
)
6033 struct tree_map
*h
, in
;
6036 in
.hash
= htab_hash_pointer (o
);
6037 h
= tm_clone_hash
->find_with_hash (&in
, in
.hash
);
6044 struct tm_alias_pair
6052 /* Dump the actual pairs to the .tm_clone_table section. */
6055 dump_tm_clone_pairs (vec
<tm_alias_pair
> tm_alias_pairs
)
6059 bool switched
= false;
6061 FOR_EACH_VEC_ELT (tm_alias_pairs
, i
, p
)
6065 struct cgraph_node
*src_n
= cgraph_node::get (src
);
6066 struct cgraph_node
*dst_n
= cgraph_node::get (dst
);
6068 /* The function ipa_tm_create_version() marks the clone as needed if
6069 the original function was needed. But we also mark the clone as
6070 needed if we ever called the clone indirectly through
6071 TM_GETTMCLONE. If neither of these are true, we didn't generate
6072 a clone, and we didn't call it indirectly... no sense keeping it
6073 in the clone table. */
6074 if (!dst_n
|| !dst_n
->definition
)
6077 /* This covers the case where we have optimized the original
6078 function away, and only access the transactional clone. */
6079 if (!src_n
|| !src_n
->definition
)
6084 switch_to_section (targetm
.asm_out
.tm_clone_table_section ());
6085 assemble_align (POINTER_SIZE
);
6089 assemble_integer (XEXP (DECL_RTL (src
), 0),
6090 POINTER_SIZE_UNITS
, POINTER_SIZE
, 1);
6091 assemble_integer (XEXP (DECL_RTL (dst
), 0),
6092 POINTER_SIZE_UNITS
, POINTER_SIZE
, 1);
6096 /* Provide a default for the tm_clone_table section. */
6099 default_clone_table_section (void)
6101 return get_named_section (NULL
, ".tm_clone_table", 3);
6104 /* Helper comparison function for qsorting by the DECL_UID stored in
6105 alias_pair->emitted_diags. */
6108 tm_alias_pair_cmp (const void *x
, const void *y
)
6110 const tm_alias_pair
*p1
= (const tm_alias_pair
*) x
;
6111 const tm_alias_pair
*p2
= (const tm_alias_pair
*) y
;
6112 if (p1
->uid
< p2
->uid
)
6114 if (p1
->uid
> p2
->uid
)
6120 finish_tm_clone_pairs (void)
6122 vec
<tm_alias_pair
> tm_alias_pairs
= vNULL
;
6124 if (tm_clone_hash
== NULL
)
6127 /* We need a determenistic order for the .tm_clone_table, otherwise
6128 we will get bootstrap comparison failures, so dump the hash table
6129 to a vector, sort it, and dump the vector. */
6131 /* Dump the hashtable to a vector. */
6133 hash_table
<tm_clone_hasher
>::iterator iter
;
6134 FOR_EACH_HASH_TABLE_ELEMENT (*tm_clone_hash
, map
, tree_map
*, iter
)
6136 tm_alias_pair p
= {DECL_UID (map
->base
.from
), map
->base
.from
, map
->to
};
6137 tm_alias_pairs
.safe_push (p
);
6140 tm_alias_pairs
.qsort (tm_alias_pair_cmp
);
6143 dump_tm_clone_pairs (tm_alias_pairs
);
6145 tm_clone_hash
->empty ();
6146 tm_clone_hash
= NULL
;
6147 tm_alias_pairs
.release ();
6151 /* Emit an assembler directive to set symbol for DECL visibility to
6152 the visibility type VIS, which must not be VISIBILITY_DEFAULT. */
6155 default_assemble_visibility (tree decl ATTRIBUTE_UNUSED
,
6156 int vis ATTRIBUTE_UNUSED
)
6158 #ifdef HAVE_GAS_HIDDEN
6159 static const char * const visibility_types
[] = {
6160 NULL
, "protected", "hidden", "internal"
6163 const char *name
, *type
;
6166 id
= DECL_ASSEMBLER_NAME (decl
);
6167 ultimate_transparent_alias_target (&id
);
6168 name
= IDENTIFIER_POINTER (id
);
6170 type
= visibility_types
[vis
];
6172 fprintf (asm_out_file
, "\t.%s\t", type
);
6173 assemble_name (asm_out_file
, name
);
6174 fprintf (asm_out_file
, "\n");
6176 if (!DECL_ARTIFICIAL (decl
))
6177 warning (OPT_Wattributes
, "visibility attribute not supported "
6178 "in this configuration; ignored");
6182 /* A helper function to call assemble_visibility when needed for a decl. */
6185 maybe_assemble_visibility (tree decl
)
6187 enum symbol_visibility vis
= DECL_VISIBILITY (decl
);
6188 if (vis
!= VISIBILITY_DEFAULT
)
6190 targetm
.asm_out
.assemble_visibility (decl
, vis
);
6197 /* Returns 1 if the target configuration supports defining public symbols
6198 so that one of them will be chosen at link time instead of generating a
6199 multiply-defined symbol error, whether through the use of weak symbols or
6200 a target-specific mechanism for having duplicates discarded. */
6203 supports_one_only (void)
6205 if (SUPPORTS_ONE_ONLY
)
6207 return TARGET_SUPPORTS_WEAK
;
6210 /* Set up DECL as a public symbol that can be defined in multiple
6211 translation units without generating a linker error. */
6214 make_decl_one_only (tree decl
, tree comdat_group
)
6216 struct symtab_node
*symbol
;
6217 gcc_assert (VAR_OR_FUNCTION_DECL_P (decl
));
6219 TREE_PUBLIC (decl
) = 1;
6222 symbol
= varpool_node::get_create (decl
);
6224 symbol
= cgraph_node::get_create (decl
);
6226 if (SUPPORTS_ONE_ONLY
)
6228 #ifdef MAKE_DECL_ONE_ONLY
6229 MAKE_DECL_ONE_ONLY (decl
);
6231 symbol
->set_comdat_group (comdat_group
);
6233 else if (VAR_P (decl
)
6234 && (DECL_INITIAL (decl
) == 0
6235 || (!in_lto_p
&& DECL_INITIAL (decl
) == error_mark_node
)))
6236 DECL_COMMON (decl
) = 1;
6239 gcc_assert (TARGET_SUPPORTS_WEAK
);
6240 DECL_WEAK (decl
) = 1;
6245 init_varasm_once (void)
6247 section_htab
= hash_table
<section_hasher
>::create_ggc (31);
6248 object_block_htab
= hash_table
<object_block_hasher
>::create_ggc (31);
6249 const_desc_htab
= hash_table
<tree_descriptor_hasher
>::create_ggc (1009);
6251 shared_constant_pool
= create_constant_pool ();
6253 #ifdef TEXT_SECTION_ASM_OP
6254 text_section
= get_unnamed_section (SECTION_CODE
, output_section_asm_op
,
6255 TEXT_SECTION_ASM_OP
);
6258 #ifdef DATA_SECTION_ASM_OP
6259 data_section
= get_unnamed_section (SECTION_WRITE
, output_section_asm_op
,
6260 DATA_SECTION_ASM_OP
);
6263 #ifdef SDATA_SECTION_ASM_OP
6264 sdata_section
= get_unnamed_section (SECTION_WRITE
, output_section_asm_op
,
6265 SDATA_SECTION_ASM_OP
);
6268 #ifdef READONLY_DATA_SECTION_ASM_OP
6269 readonly_data_section
= get_unnamed_section (0, output_section_asm_op
,
6270 READONLY_DATA_SECTION_ASM_OP
);
6273 #ifdef CTORS_SECTION_ASM_OP
6274 ctors_section
= get_unnamed_section (0, output_section_asm_op
,
6275 CTORS_SECTION_ASM_OP
);
6278 #ifdef DTORS_SECTION_ASM_OP
6279 dtors_section
= get_unnamed_section (0, output_section_asm_op
,
6280 DTORS_SECTION_ASM_OP
);
6283 #ifdef BSS_SECTION_ASM_OP
6284 bss_section
= get_unnamed_section (SECTION_WRITE
| SECTION_BSS
,
6285 output_section_asm_op
,
6286 BSS_SECTION_ASM_OP
);
6289 #ifdef SBSS_SECTION_ASM_OP
6290 sbss_section
= get_unnamed_section (SECTION_WRITE
| SECTION_BSS
,
6291 output_section_asm_op
,
6292 SBSS_SECTION_ASM_OP
);
6295 tls_comm_section
= get_noswitch_section (SECTION_WRITE
| SECTION_BSS
6296 | SECTION_COMMON
, emit_tls_common
);
6297 lcomm_section
= get_noswitch_section (SECTION_WRITE
| SECTION_BSS
6298 | SECTION_COMMON
, emit_local
);
6299 comm_section
= get_noswitch_section (SECTION_WRITE
| SECTION_BSS
6300 | SECTION_COMMON
, emit_common
);
6302 #if defined ASM_OUTPUT_ALIGNED_BSS
6303 bss_noswitch_section
= get_noswitch_section (SECTION_WRITE
| SECTION_BSS
,
6307 targetm
.asm_out
.init_sections ();
6309 if (readonly_data_section
== NULL
)
6310 readonly_data_section
= text_section
;
6312 #ifdef ASM_OUTPUT_EXTERNAL
6313 pending_assemble_externals_set
= new hash_set
<tree
>;
6318 decl_default_tls_model (const_tree decl
)
6320 enum tls_model kind
;
6323 is_local
= targetm
.binds_local_p (decl
);
6327 kind
= TLS_MODEL_LOCAL_EXEC
;
6329 kind
= TLS_MODEL_INITIAL_EXEC
;
6332 /* Local dynamic is inefficient when we're not combining the
6333 parts of the address. */
6334 else if (optimize
&& is_local
)
6335 kind
= TLS_MODEL_LOCAL_DYNAMIC
;
6337 kind
= TLS_MODEL_GLOBAL_DYNAMIC
;
6338 if (kind
< flag_tls_default
)
6339 kind
= flag_tls_default
;
6344 /* Select a set of attributes for section NAME based on the properties
6345 of DECL and whether or not RELOC indicates that DECL's initializer
6346 might contain runtime relocations.
6348 We make the section read-only and executable for a function decl,
6349 read-only for a const data decl, and writable for a non-const data decl. */
6352 default_section_type_flags (tree decl
, const char *name
, int reloc
)
6356 if (decl
&& TREE_CODE (decl
) == FUNCTION_DECL
)
6357 flags
= SECTION_CODE
;
6360 enum section_category category
6361 = categorize_decl_for_section (decl
, reloc
);
6362 if (decl_readonly_section_1 (category
))
6364 else if (category
== SECCAT_DATA_REL_RO
6365 || category
== SECCAT_DATA_REL_RO_LOCAL
)
6366 flags
= SECTION_WRITE
| SECTION_RELRO
;
6368 flags
= SECTION_WRITE
;
6372 flags
= SECTION_WRITE
;
6373 if (strcmp (name
, ".data.rel.ro") == 0
6374 || strcmp (name
, ".data.rel.ro.local") == 0)
6375 flags
|= SECTION_RELRO
;
6378 if (decl
&& DECL_P (decl
) && DECL_COMDAT_GROUP (decl
))
6379 flags
|= SECTION_LINKONCE
;
6381 if (strcmp (name
, ".vtable_map_vars") == 0)
6382 flags
|= SECTION_LINKONCE
;
6384 if (decl
&& VAR_P (decl
) && DECL_THREAD_LOCAL_P (decl
))
6385 flags
|= SECTION_TLS
| SECTION_WRITE
;
6387 if (strcmp (name
, ".bss") == 0
6388 || strncmp (name
, ".bss.", 5) == 0
6389 || strncmp (name
, ".gnu.linkonce.b.", 16) == 0
6390 || strcmp (name
, ".persistent.bss") == 0
6391 || strcmp (name
, ".sbss") == 0
6392 || strncmp (name
, ".sbss.", 6) == 0
6393 || strncmp (name
, ".gnu.linkonce.sb.", 17) == 0)
6394 flags
|= SECTION_BSS
;
6396 if (strcmp (name
, ".tdata") == 0
6397 || strncmp (name
, ".tdata.", 7) == 0
6398 || strncmp (name
, ".gnu.linkonce.td.", 17) == 0)
6399 flags
|= SECTION_TLS
;
6401 if (strcmp (name
, ".tbss") == 0
6402 || strncmp (name
, ".tbss.", 6) == 0
6403 || strncmp (name
, ".gnu.linkonce.tb.", 17) == 0)
6404 flags
|= SECTION_TLS
| SECTION_BSS
;
6406 /* Various sections have special ELF types that the assembler will
6407 assign by default based on the name. They are neither SHT_PROGBITS
6408 nor SHT_NOBITS, so when changing sections we don't want to print a
6409 section type (@progbits or @nobits). Rather than duplicating the
6410 assembler's knowledge of what those special name patterns are, just
6411 let the assembler choose the type if we don't know a specific
6412 reason to set it to something other than the default. SHT_PROGBITS
6413 is the default for sections whose name is not specially known to
6414 the assembler, so it does no harm to leave the choice to the
6415 assembler when @progbits is the best thing we know to use. If
6416 someone is silly enough to emit code or TLS variables to one of
6417 these sections, then don't handle them specially.
6419 default_elf_asm_named_section (below) handles the BSS, TLS, ENTSIZE, and
6420 LINKONCE cases when NOTYPE is not set, so leave those to its logic. */
6421 if (!(flags
& (SECTION_CODE
| SECTION_BSS
| SECTION_TLS
| SECTION_ENTSIZE
))
6422 && !(HAVE_COMDAT_GROUP
&& (flags
& SECTION_LINKONCE
)))
6423 flags
|= SECTION_NOTYPE
;
6428 /* Return true if the target supports some form of global BSS,
6429 either through bss_noswitch_section, or by selecting a BSS
6430 section in TARGET_ASM_SELECT_SECTION. */
6433 have_global_bss_p (void)
6435 return bss_noswitch_section
|| targetm
.have_switchable_bss_sections
;
6438 /* Output assembly to switch to section NAME with attribute FLAGS.
6439 Four variants for common object file formats. */
6442 default_no_named_section (const char *name ATTRIBUTE_UNUSED
,
6443 unsigned int flags ATTRIBUTE_UNUSED
,
6444 tree decl ATTRIBUTE_UNUSED
)
6446 /* Some object formats don't support named sections at all. The
6447 front-end should already have flagged this as an error. */
6451 #ifndef TLS_SECTION_ASM_FLAG
6452 #define TLS_SECTION_ASM_FLAG 'T'
6456 default_elf_asm_named_section (const char *name
, unsigned int flags
,
6459 char flagchars
[11], *f
= flagchars
;
6460 unsigned int numeric_value
= 0;
6462 /* If we have already declared this section, we can use an
6463 abbreviated form to switch back to it -- unless this section is
6464 part of a COMDAT groups, in which case GAS requires the full
6465 declaration every time. */
6466 if (!(HAVE_COMDAT_GROUP
&& (flags
& SECTION_LINKONCE
))
6467 && (flags
& SECTION_DECLARED
))
6469 fprintf (asm_out_file
, "\t.section\t%s\n", name
);
6473 /* If we have a machine specific flag, then use the numeric value to pass
6475 if (targetm
.asm_out
.elf_flags_numeric (flags
, &numeric_value
))
6476 snprintf (f
, sizeof (flagchars
), "0x%08x", numeric_value
);
6479 if (!(flags
& SECTION_DEBUG
))
6481 #if HAVE_GAS_SECTION_EXCLUDE
6482 if (flags
& SECTION_EXCLUDE
)
6485 if (flags
& SECTION_WRITE
)
6487 if (flags
& SECTION_CODE
)
6489 if (flags
& SECTION_SMALL
)
6491 if (flags
& SECTION_MERGE
)
6493 if (flags
& SECTION_STRINGS
)
6495 if (flags
& SECTION_TLS
)
6496 *f
++ = TLS_SECTION_ASM_FLAG
;
6497 if (HAVE_COMDAT_GROUP
&& (flags
& SECTION_LINKONCE
))
6499 #ifdef MACH_DEP_SECTION_ASM_FLAG
6500 if (flags
& SECTION_MACH_DEP
)
6501 *f
++ = MACH_DEP_SECTION_ASM_FLAG
;
6506 fprintf (asm_out_file
, "\t.section\t%s,\"%s\"", name
, flagchars
);
6508 /* default_section_type_flags (above) knows which flags need special
6509 handling here, and sets NOTYPE when none of these apply so that the
6510 assembler's logic for default types can apply to user-chosen
6512 if (!(flags
& SECTION_NOTYPE
))
6517 if (flags
& SECTION_BSS
)
6523 /* On platforms that use "@" as the assembly comment character,
6525 if (strcmp (ASM_COMMENT_START
, "@") == 0)
6527 fprintf (asm_out_file
, format
, type
);
6529 if (flags
& SECTION_ENTSIZE
)
6530 fprintf (asm_out_file
, ",%d", flags
& SECTION_ENTSIZE
);
6531 if (HAVE_COMDAT_GROUP
&& (flags
& SECTION_LINKONCE
))
6533 if (TREE_CODE (decl
) == IDENTIFIER_NODE
)
6534 fprintf (asm_out_file
, ",%s,comdat", IDENTIFIER_POINTER (decl
));
6536 fprintf (asm_out_file
, ",%s,comdat",
6537 IDENTIFIER_POINTER (DECL_COMDAT_GROUP (decl
)));
6541 putc ('\n', asm_out_file
);
6545 default_coff_asm_named_section (const char *name
, unsigned int flags
,
6546 tree decl ATTRIBUTE_UNUSED
)
6548 char flagchars
[8], *f
= flagchars
;
6550 if (flags
& SECTION_WRITE
)
6552 if (flags
& SECTION_CODE
)
6556 fprintf (asm_out_file
, "\t.section\t%s,\"%s\"\n", name
, flagchars
);
6560 default_pe_asm_named_section (const char *name
, unsigned int flags
,
6563 default_coff_asm_named_section (name
, flags
, decl
);
6565 if (flags
& SECTION_LINKONCE
)
6567 /* Functions may have been compiled at various levels of
6568 optimization so we can't use `same_size' here.
6569 Instead, have the linker pick one. */
6570 fprintf (asm_out_file
, "\t.linkonce %s\n",
6571 (flags
& SECTION_CODE
? "discard" : "same_size"));
6575 /* The lame default section selector. */
6578 default_select_section (tree decl
, int reloc
,
6579 unsigned HOST_WIDE_INT align ATTRIBUTE_UNUSED
)
6583 if (decl_readonly_section (decl
, reloc
))
6584 return readonly_data_section
;
6586 else if (TREE_CODE (decl
) == CONSTRUCTOR
)
6588 if (! ((flag_pic
&& reloc
)
6589 || !TREE_READONLY (decl
)
6590 || TREE_SIDE_EFFECTS (decl
)
6591 || !TREE_CONSTANT (decl
)))
6592 return readonly_data_section
;
6594 else if (TREE_CODE (decl
) == STRING_CST
)
6595 return readonly_data_section
;
6596 else if (! (flag_pic
&& reloc
))
6597 return readonly_data_section
;
6599 return data_section
;
6602 enum section_category
6603 categorize_decl_for_section (const_tree decl
, int reloc
)
6605 enum section_category ret
;
6607 if (TREE_CODE (decl
) == FUNCTION_DECL
)
6609 else if (TREE_CODE (decl
) == STRING_CST
)
6611 if ((flag_sanitize
& SANITIZE_ADDRESS
)
6612 && asan_protect_global (CONST_CAST_TREE (decl
)))
6613 /* or !flag_merge_constants */
6614 return SECCAT_RODATA
;
6616 return SECCAT_RODATA_MERGE_STR
;
6618 else if (VAR_P (decl
))
6620 tree d
= CONST_CAST_TREE (decl
);
6621 if (bss_initializer_p (decl
))
6623 else if (! TREE_READONLY (decl
)
6624 || TREE_SIDE_EFFECTS (decl
)
6625 || (DECL_INITIAL (decl
)
6626 && ! TREE_CONSTANT (DECL_INITIAL (decl
))))
6628 /* Here the reloc_rw_mask is not testing whether the section should
6629 be read-only or not, but whether the dynamic link will have to
6630 do something. If so, we wish to segregate the data in order to
6631 minimize cache misses inside the dynamic linker. */
6632 if (reloc
& targetm
.asm_out
.reloc_rw_mask ())
6633 ret
= reloc
== 1 ? SECCAT_DATA_REL_LOCAL
: SECCAT_DATA_REL
;
6637 else if (reloc
& targetm
.asm_out
.reloc_rw_mask ())
6638 ret
= reloc
== 1 ? SECCAT_DATA_REL_RO_LOCAL
: SECCAT_DATA_REL_RO
;
6639 else if (reloc
|| flag_merge_constants
< 2
6640 || ((flag_sanitize
& SANITIZE_ADDRESS
)
6641 /* PR 81697: for architectures that use section anchors we
6642 need to ignore DECL_RTL_SET_P (decl) for string constants
6643 inside this asan_protect_global call because otherwise
6644 we'll wrongly put them into SECCAT_RODATA_MERGE_CONST
6645 section, set DECL_RTL (decl) later on and add DECL to
6646 protected globals via successive asan_protect_global
6647 calls. In this scenario we'll end up with wrong
6648 alignment of these strings at runtime and possible ASan
6650 && asan_protect_global (d
, use_object_blocks_p ()
6651 && use_blocks_for_decl_p (d
))))
6652 /* C and C++ don't allow different variables to share the same
6653 location. -fmerge-all-constants allows even that (at the
6654 expense of not conforming). */
6655 ret
= SECCAT_RODATA
;
6656 else if (DECL_INITIAL (decl
)
6657 && TREE_CODE (DECL_INITIAL (decl
)) == STRING_CST
)
6658 ret
= SECCAT_RODATA_MERGE_STR_INIT
;
6660 ret
= SECCAT_RODATA_MERGE_CONST
;
6662 else if (TREE_CODE (decl
) == CONSTRUCTOR
)
6664 if ((reloc
& targetm
.asm_out
.reloc_rw_mask ())
6665 || TREE_SIDE_EFFECTS (decl
)
6666 || ! TREE_CONSTANT (decl
))
6669 ret
= SECCAT_RODATA
;
6672 ret
= SECCAT_RODATA
;
6674 /* There are no read-only thread-local sections. */
6675 if (VAR_P (decl
) && DECL_THREAD_LOCAL_P (decl
))
6677 /* Note that this would be *just* SECCAT_BSS, except that there's
6678 no concept of a read-only thread-local-data section. */
6679 if (ret
== SECCAT_BSS
6680 || DECL_INITIAL (decl
) == NULL
6681 || (flag_zero_initialized_in_bss
6682 && initializer_zerop (DECL_INITIAL (decl
))))
6688 /* If the target uses small data sections, select it. */
6689 else if (targetm
.in_small_data_p (decl
))
6691 if (ret
== SECCAT_BSS
)
6693 else if (targetm
.have_srodata_section
&& ret
== SECCAT_RODATA
)
6694 ret
= SECCAT_SRODATA
;
6703 decl_readonly_section_1 (enum section_category category
)
6708 case SECCAT_RODATA_MERGE_STR
:
6709 case SECCAT_RODATA_MERGE_STR_INIT
:
6710 case SECCAT_RODATA_MERGE_CONST
:
6711 case SECCAT_SRODATA
:
6719 decl_readonly_section (const_tree decl
, int reloc
)
6721 return decl_readonly_section_1 (categorize_decl_for_section (decl
, reloc
));
6724 /* Select a section based on the above categorization. */
6727 default_elf_select_section (tree decl
, int reloc
,
6728 unsigned HOST_WIDE_INT align
)
6731 switch (categorize_decl_for_section (decl
, reloc
))
6734 /* We're not supposed to be called on FUNCTION_DECLs. */
6737 return readonly_data_section
;
6738 case SECCAT_RODATA_MERGE_STR
:
6739 return mergeable_string_section (decl
, align
, 0);
6740 case SECCAT_RODATA_MERGE_STR_INIT
:
6741 return mergeable_string_section (DECL_INITIAL (decl
), align
, 0);
6742 case SECCAT_RODATA_MERGE_CONST
:
6743 return mergeable_constant_section (DECL_MODE (decl
), align
, 0);
6744 case SECCAT_SRODATA
:
6748 return data_section
;
6749 case SECCAT_DATA_REL
:
6750 sname
= ".data.rel";
6752 case SECCAT_DATA_REL_LOCAL
:
6753 sname
= ".data.rel.local";
6755 case SECCAT_DATA_REL_RO
:
6756 sname
= ".data.rel.ro";
6758 case SECCAT_DATA_REL_RO_LOCAL
:
6759 sname
= ".data.rel.ro.local";
6782 return get_named_section (decl
, sname
, reloc
);
6785 /* Construct a unique section name based on the decl name and the
6786 categorization performed above. */
6789 default_unique_section (tree decl
, int reloc
)
6791 /* We only need to use .gnu.linkonce if we don't have COMDAT groups. */
6792 bool one_only
= DECL_ONE_ONLY (decl
) && !HAVE_COMDAT_GROUP
;
6793 const char *prefix
, *name
, *linkonce
;
6797 switch (categorize_decl_for_section (decl
, reloc
))
6800 prefix
= one_only
? ".t" : ".text";
6803 case SECCAT_RODATA_MERGE_STR
:
6804 case SECCAT_RODATA_MERGE_STR_INIT
:
6805 case SECCAT_RODATA_MERGE_CONST
:
6806 prefix
= one_only
? ".r" : ".rodata";
6808 case SECCAT_SRODATA
:
6809 prefix
= one_only
? ".s2" : ".sdata2";
6812 prefix
= one_only
? ".d" : ".data";
6814 case SECCAT_DATA_REL
:
6815 prefix
= one_only
? ".d.rel" : ".data.rel";
6817 case SECCAT_DATA_REL_LOCAL
:
6818 prefix
= one_only
? ".d.rel.local" : ".data.rel.local";
6820 case SECCAT_DATA_REL_RO
:
6821 prefix
= one_only
? ".d.rel.ro" : ".data.rel.ro";
6823 case SECCAT_DATA_REL_RO_LOCAL
:
6824 prefix
= one_only
? ".d.rel.ro.local" : ".data.rel.ro.local";
6827 prefix
= one_only
? ".s" : ".sdata";
6830 prefix
= one_only
? ".b" : ".bss";
6833 prefix
= one_only
? ".sb" : ".sbss";
6836 prefix
= one_only
? ".td" : ".tdata";
6839 prefix
= one_only
? ".tb" : ".tbss";
6845 id
= DECL_ASSEMBLER_NAME (decl
);
6846 ultimate_transparent_alias_target (&id
);
6847 name
= IDENTIFIER_POINTER (id
);
6848 name
= targetm
.strip_name_encoding (name
);
6850 /* If we're using one_only, then there needs to be a .gnu.linkonce
6851 prefix to the section name. */
6852 linkonce
= one_only
? ".gnu.linkonce" : "";
6854 string
= ACONCAT ((linkonce
, prefix
, ".", name
, NULL
));
6856 set_decl_section_name (decl
, string
);
6859 /* Subroutine of compute_reloc_for_rtx for leaf rtxes. */
6862 compute_reloc_for_rtx_1 (const_rtx x
)
6864 switch (GET_CODE (x
))
6867 return SYMBOL_REF_LOCAL_P (x
) ? 1 : 2;
6875 /* Like compute_reloc_for_constant, except for an RTX. The return value
6876 is a mask for which bit 1 indicates a global relocation, and bit 0
6877 indicates a local relocation. */
6880 compute_reloc_for_rtx (const_rtx x
)
6882 switch (GET_CODE (x
))
6886 return compute_reloc_for_rtx_1 (x
);
6891 subrtx_iterator::array_type array
;
6892 FOR_EACH_SUBRTX (iter
, array
, x
, ALL
)
6893 reloc
|= compute_reloc_for_rtx_1 (*iter
);
6903 default_select_rtx_section (machine_mode mode ATTRIBUTE_UNUSED
,
6905 unsigned HOST_WIDE_INT align ATTRIBUTE_UNUSED
)
6907 if (compute_reloc_for_rtx (x
) & targetm
.asm_out
.reloc_rw_mask ())
6908 return data_section
;
6910 return readonly_data_section
;
6914 default_elf_select_rtx_section (machine_mode mode
, rtx x
,
6915 unsigned HOST_WIDE_INT align
)
6917 int reloc
= compute_reloc_for_rtx (x
);
6919 /* ??? Handle small data here somehow. */
6921 if (reloc
& targetm
.asm_out
.reloc_rw_mask ())
6924 return get_named_section (NULL
, ".data.rel.ro.local", 1);
6926 return get_named_section (NULL
, ".data.rel.ro", 3);
6929 return mergeable_constant_section (mode
, align
, 0);
6932 /* Set the generally applicable flags on the SYMBOL_REF for EXP. */
6935 default_encode_section_info (tree decl
, rtx rtl
, int first ATTRIBUTE_UNUSED
)
6940 /* Careful not to prod global register variables. */
6943 symbol
= XEXP (rtl
, 0);
6944 if (GET_CODE (symbol
) != SYMBOL_REF
)
6947 flags
= SYMBOL_REF_FLAGS (symbol
) & SYMBOL_FLAG_HAS_BLOCK_INFO
;
6948 if (TREE_CODE (decl
) == FUNCTION_DECL
)
6949 flags
|= SYMBOL_FLAG_FUNCTION
;
6950 if (targetm
.binds_local_p (decl
))
6951 flags
|= SYMBOL_FLAG_LOCAL
;
6952 if (VAR_P (decl
) && DECL_THREAD_LOCAL_P (decl
))
6953 flags
|= DECL_TLS_MODEL (decl
) << SYMBOL_FLAG_TLS_SHIFT
;
6954 else if (targetm
.in_small_data_p (decl
))
6955 flags
|= SYMBOL_FLAG_SMALL
;
6956 /* ??? Why is DECL_EXTERNAL ever set for non-PUBLIC names? Without
6957 being PUBLIC, the thing *must* be defined in this translation unit.
6958 Prevent this buglet from being propagated into rtl code as well. */
6959 if (DECL_P (decl
) && DECL_EXTERNAL (decl
) && TREE_PUBLIC (decl
))
6960 flags
|= SYMBOL_FLAG_EXTERNAL
;
6962 SYMBOL_REF_FLAGS (symbol
) = flags
;
6965 /* By default, we do nothing for encode_section_info, so we need not
6966 do anything but discard the '*' marker. */
6969 default_strip_name_encoding (const char *str
)
6971 return str
+ (*str
== '*');
6974 #ifdef ASM_OUTPUT_DEF
6975 /* The default implementation of TARGET_ASM_OUTPUT_ANCHOR. Define the
6976 anchor relative to ".", the current section position. */
6979 default_asm_output_anchor (rtx symbol
)
6983 sprintf (buffer
, "*. + " HOST_WIDE_INT_PRINT_DEC
,
6984 SYMBOL_REF_BLOCK_OFFSET (symbol
));
6985 ASM_OUTPUT_DEF (asm_out_file
, XSTR (symbol
, 0), buffer
);
6989 /* The default implementation of TARGET_USE_ANCHORS_FOR_SYMBOL_P. */
6992 default_use_anchors_for_symbol_p (const_rtx symbol
)
6997 /* Don't use anchors for mergeable sections. The linker might move
6998 the objects around. */
6999 sect
= SYMBOL_REF_BLOCK (symbol
)->sect
;
7000 if (sect
->common
.flags
& SECTION_MERGE
)
7003 /* Don't use anchors for small data sections. The small data register
7004 acts as an anchor for such sections. */
7005 if (sect
->common
.flags
& SECTION_SMALL
)
7008 decl
= SYMBOL_REF_DECL (symbol
);
7009 if (decl
&& DECL_P (decl
))
7011 /* Don't use section anchors for decls that might be defined or
7012 usurped by other modules. */
7013 if (TREE_PUBLIC (decl
) && !decl_binds_to_current_def_p (decl
))
7016 /* Don't use section anchors for decls that will be placed in a
7017 small data section. */
7018 /* ??? Ideally, this check would be redundant with the SECTION_SMALL
7019 one above. The problem is that we only use SECTION_SMALL for
7020 sections that should be marked as small in the section directive. */
7021 if (targetm
.in_small_data_p (decl
))
7024 /* Don't use section anchors for decls that won't fit inside a single
7025 anchor range to reduce the amount of instructions required to refer
7026 to the entire declaration. */
7027 if (DECL_SIZE_UNIT (decl
) == NULL_TREE
7028 || !tree_fits_uhwi_p (DECL_SIZE_UNIT (decl
))
7029 || (tree_to_uhwi (DECL_SIZE_UNIT (decl
))
7030 >= (unsigned HOST_WIDE_INT
) targetm
.max_anchor_offset
))
7037 /* Return true when RESOLUTION indicate that symbol will be bound to the
7038 definition provided by current .o file. */
7041 resolution_to_local_definition_p (enum ld_plugin_symbol_resolution resolution
)
7043 return (resolution
== LDPR_PREVAILING_DEF
7044 || resolution
== LDPR_PREVAILING_DEF_IRONLY_EXP
7045 || resolution
== LDPR_PREVAILING_DEF_IRONLY
);
7048 /* Return true when RESOLUTION indicate that symbol will be bound locally
7049 within current executable or DSO. */
7052 resolution_local_p (enum ld_plugin_symbol_resolution resolution
)
7054 return (resolution
== LDPR_PREVAILING_DEF
7055 || resolution
== LDPR_PREVAILING_DEF_IRONLY
7056 || resolution
== LDPR_PREVAILING_DEF_IRONLY_EXP
7057 || resolution
== LDPR_PREEMPTED_REG
7058 || resolution
== LDPR_PREEMPTED_IR
7059 || resolution
== LDPR_RESOLVED_IR
7060 || resolution
== LDPR_RESOLVED_EXEC
);
7063 /* COMMON_LOCAL_P is true means that the linker can guarantee that an
7064 uninitialized common symbol in the executable will still be defined
7065 (through COPY relocation) in the executable. */
7068 default_binds_local_p_3 (const_tree exp
, bool shlib
, bool weak_dominate
,
7069 bool extern_protected_data
, bool common_local_p
)
7071 /* A non-decl is an entry in the constant pool. */
7075 /* Weakrefs may not bind locally, even though the weakref itself is always
7076 static and therefore local. Similarly, the resolver for ifunc functions
7077 might resolve to a non-local function.
7078 FIXME: We can resolve the weakref case more curefuly by looking at the
7080 if (lookup_attribute ("weakref", DECL_ATTRIBUTES (exp
))
7081 || (TREE_CODE (exp
) == FUNCTION_DECL
7082 && cgraph_node::get (exp
)
7083 && cgraph_node::get (exp
)->ifunc_resolver
))
7086 /* Static variables are always local. */
7087 if (! TREE_PUBLIC (exp
))
7090 /* With resolution file in hand, take look into resolutions.
7091 We can't just return true for resolved_locally symbols,
7092 because dynamic linking might overwrite symbols
7093 in shared libraries. */
7094 bool resolved_locally
= false;
7096 bool uninited_common
= (DECL_COMMON (exp
)
7097 && (DECL_INITIAL (exp
) == NULL
7099 && DECL_INITIAL (exp
) == error_mark_node
)));
7101 /* A non-external variable is defined locally only if it isn't
7102 uninitialized COMMON variable or common_local_p is true. */
7103 bool defined_locally
= (!DECL_EXTERNAL (exp
)
7104 && (!uninited_common
|| common_local_p
));
7105 if (symtab_node
*node
= symtab_node::get (exp
))
7107 if (node
->in_other_partition
)
7108 defined_locally
= true;
7109 if (node
->can_be_discarded_p ())
7111 else if (resolution_to_local_definition_p (node
->resolution
))
7112 defined_locally
= resolved_locally
= true;
7113 else if (resolution_local_p (node
->resolution
))
7114 resolved_locally
= true;
7116 if (defined_locally
&& weak_dominate
&& !shlib
)
7117 resolved_locally
= true;
7119 /* Undefined weak symbols are never defined locally. */
7120 if (DECL_WEAK (exp
) && !defined_locally
)
7123 /* A symbol is local if the user has said explicitly that it will be,
7124 or if we have a definition for the symbol. We cannot infer visibility
7125 for undefined symbols. */
7126 if (DECL_VISIBILITY (exp
) != VISIBILITY_DEFAULT
7127 && (TREE_CODE (exp
) == FUNCTION_DECL
7128 || !extern_protected_data
7129 || DECL_VISIBILITY (exp
) != VISIBILITY_PROTECTED
)
7130 && (DECL_VISIBILITY_SPECIFIED (exp
) || defined_locally
))
7133 /* If PIC, then assume that any global name can be overridden by
7134 symbols resolved from other modules. */
7138 /* Variables defined outside this object might not be local. */
7139 if (DECL_EXTERNAL (exp
) && !resolved_locally
)
7142 /* Non-dominant weak symbols are not defined locally. */
7143 if (DECL_WEAK (exp
) && !resolved_locally
)
7146 /* Uninitialized COMMON variable may be unified with symbols
7147 resolved from other modules. */
7148 if (uninited_common
&& !resolved_locally
)
7151 /* Otherwise we're left with initialized (or non-common) global data
7152 which is of necessity defined locally. */
7156 /* Assume ELF-ish defaults, since that's pretty much the most liberal
7157 wrt cross-module name binding. */
7160 default_binds_local_p (const_tree exp
)
7162 return default_binds_local_p_3 (exp
, flag_shlib
!= 0, true, false, false);
7165 /* Similar to default_binds_local_p, but common symbol may be local and
7166 extern protected data is non-local. */
7169 default_binds_local_p_2 (const_tree exp
)
7171 return default_binds_local_p_3 (exp
, flag_shlib
!= 0, true, true,
7176 default_binds_local_p_1 (const_tree exp
, int shlib
)
7178 return default_binds_local_p_3 (exp
, shlib
!= 0, false, false, false);
7181 /* Return true when references to DECL must bind to current definition in
7184 The condition is usually equivalent to whether the function binds to the
7185 current module (shared library or executable), that is to binds_local_p.
7186 We use this fact to avoid need for another target hook and implement
7187 the logic using binds_local_p and just special cases where
7188 decl_binds_to_current_def_p is stronger than binds_local_p. In particular
7189 the weak definitions (that can be overwritten at linktime by other
7190 definition from different object file) and when resolution info is available
7191 we simply use the knowledge passed to us by linker plugin. */
7193 decl_binds_to_current_def_p (const_tree decl
)
7195 gcc_assert (DECL_P (decl
));
7196 if (!targetm
.binds_local_p (decl
))
7198 if (!TREE_PUBLIC (decl
))
7201 /* When resolution is available, just use it. */
7202 if (symtab_node
*node
= symtab_node::get (decl
))
7204 if (node
->resolution
!= LDPR_UNKNOWN
7205 && !node
->can_be_discarded_p ())
7206 return resolution_to_local_definition_p (node
->resolution
);
7209 /* Otherwise we have to assume the worst for DECL_WEAK (hidden weaks
7210 binds locally but still can be overwritten), DECL_COMMON (can be merged
7211 with a non-common definition somewhere in the same module) or
7213 This rely on fact that binds_local_p behave as decl_replaceable_p
7214 for all other declaration types. */
7215 if (DECL_WEAK (decl
))
7217 if (DECL_COMMON (decl
)
7218 && (DECL_INITIAL (decl
) == NULL
7219 || (!in_lto_p
&& DECL_INITIAL (decl
) == error_mark_node
)))
7221 if (DECL_EXTERNAL (decl
))
7226 /* A replaceable function or variable is one which may be replaced
7227 at link-time with an entirely different definition, provided that the
7228 replacement has the same type. For example, functions declared
7229 with __attribute__((weak)) on most systems are replaceable.
7231 COMDAT functions are not replaceable, since all definitions of the
7232 function must be equivalent. It is important that COMDAT functions
7233 not be treated as replaceable so that use of C++ template
7234 instantiations is not penalized. */
7237 decl_replaceable_p (tree decl
)
7239 gcc_assert (DECL_P (decl
));
7240 if (!TREE_PUBLIC (decl
) || DECL_COMDAT (decl
))
7242 if (!flag_semantic_interposition
7243 && !DECL_WEAK (decl
))
7245 return !decl_binds_to_current_def_p (decl
);
7248 /* Default function to output code that will globalize a label. A
7249 target must define GLOBAL_ASM_OP or provide its own function to
7250 globalize a label. */
7251 #ifdef GLOBAL_ASM_OP
7253 default_globalize_label (FILE * stream
, const char *name
)
7255 fputs (GLOBAL_ASM_OP
, stream
);
7256 assemble_name (stream
, name
);
7257 putc ('\n', stream
);
7259 #endif /* GLOBAL_ASM_OP */
7261 /* Default function to output code that will globalize a declaration. */
7263 default_globalize_decl_name (FILE * stream
, tree decl
)
7265 const char *name
= XSTR (XEXP (DECL_RTL (decl
), 0), 0);
7266 targetm
.asm_out
.globalize_label (stream
, name
);
7269 /* Default function to output a label for unwind information. The
7270 default is to do nothing. A target that needs nonlocal labels for
7271 unwind information must provide its own function to do this. */
7273 default_emit_unwind_label (FILE * stream ATTRIBUTE_UNUSED
,
7274 tree decl ATTRIBUTE_UNUSED
,
7275 int for_eh ATTRIBUTE_UNUSED
,
7276 int empty ATTRIBUTE_UNUSED
)
7280 /* Default function to output a label to divide up the exception table.
7281 The default is to do nothing. A target that needs/wants to divide
7282 up the table must provide it's own function to do this. */
7284 default_emit_except_table_label (FILE * stream ATTRIBUTE_UNUSED
)
7288 /* This is how to output an internal numbered label where PREFIX is
7289 the class of label and LABELNO is the number within the class. */
7292 default_generate_internal_label (char *buf
, const char *prefix
,
7293 unsigned long labelno
)
7295 ASM_GENERATE_INTERNAL_LABEL (buf
, prefix
, labelno
);
7298 /* This is how to output an internal numbered label where PREFIX is
7299 the class of label and LABELNO is the number within the class. */
7302 default_internal_label (FILE *stream
, const char *prefix
,
7303 unsigned long labelno
)
7305 char *const buf
= (char *) alloca (40 + strlen (prefix
));
7306 ASM_GENERATE_INTERNAL_LABEL (buf
, prefix
, labelno
);
7307 ASM_OUTPUT_INTERNAL_LABEL (stream
, buf
);
7311 /* The default implementation of ASM_DECLARE_CONSTANT_NAME. */
7314 default_asm_declare_constant_name (FILE *file
, const char *name
,
7315 const_tree exp ATTRIBUTE_UNUSED
,
7316 HOST_WIDE_INT size ATTRIBUTE_UNUSED
)
7318 assemble_label (file
, name
);
7321 /* This is the default behavior at the beginning of a file. It's
7322 controlled by two other target-hook toggles. */
7324 default_file_start (void)
7326 if (targetm
.asm_file_start_app_off
7327 && !(flag_verbose_asm
|| flag_debug_asm
|| flag_dump_rtl_in_asm
))
7328 fputs (ASM_APP_OFF
, asm_out_file
);
7330 if (targetm
.asm_file_start_file_directive
)
7332 /* LTO produced units have no meaningful main_input_filename. */
7334 output_file_directive (asm_out_file
, "<artificial>");
7336 output_file_directive (asm_out_file
, main_input_filename
);
7340 /* This is a generic routine suitable for use as TARGET_ASM_FILE_END
7341 which emits a special section directive used to indicate whether or
7342 not this object file needs an executable stack. This is primarily
7343 a GNU extension to ELF but could be used on other targets. */
7345 int trampolines_created
;
7348 file_end_indicate_exec_stack (void)
7350 unsigned int flags
= SECTION_DEBUG
;
7351 if (trampolines_created
)
7352 flags
|= SECTION_CODE
;
7354 switch_to_section (get_section (".note.GNU-stack", flags
, NULL
));
7357 /* Emit a special section directive to indicate that this object file
7358 was compiled with -fsplit-stack. This is used to let the linker
7359 detect calls between split-stack code and non-split-stack code, so
7360 that it can modify the split-stack code to allocate a sufficiently
7361 large stack. We emit another special section if there are any
7362 functions in this file which have the no_split_stack attribute, to
7363 prevent the linker from warning about being unable to convert the
7364 functions if they call non-split-stack code. */
7367 file_end_indicate_split_stack (void)
7369 if (flag_split_stack
)
7371 switch_to_section (get_section (".note.GNU-split-stack", SECTION_DEBUG
,
7373 if (saw_no_split_stack
)
7374 switch_to_section (get_section (".note.GNU-no-split-stack",
7375 SECTION_DEBUG
, NULL
));
7379 /* Output DIRECTIVE (a C string) followed by a newline. This is used as
7380 a get_unnamed_section callback. */
7383 output_section_asm_op (const void *directive
)
7385 fprintf (asm_out_file
, "%s\n", (const char *) directive
);
7388 /* Emit assembly code to switch to section NEW_SECTION. Do nothing if
7389 the current section is NEW_SECTION. */
7392 switch_to_section (section
*new_section
)
7394 if (in_section
== new_section
)
7397 if (new_section
->common
.flags
& SECTION_FORGET
)
7400 in_section
= new_section
;
7402 switch (SECTION_STYLE (new_section
))
7405 targetm
.asm_out
.named_section (new_section
->named
.name
,
7406 new_section
->named
.common
.flags
,
7407 new_section
->named
.decl
);
7410 case SECTION_UNNAMED
:
7411 new_section
->unnamed
.callback (new_section
->unnamed
.data
);
7414 case SECTION_NOSWITCH
:
7419 new_section
->common
.flags
|= SECTION_DECLARED
;
7422 /* If block symbol SYMBOL has not yet been assigned an offset, place
7423 it at the end of its block. */
7426 place_block_symbol (rtx symbol
)
7428 unsigned HOST_WIDE_INT size
, mask
, offset
;
7429 struct constant_descriptor_rtx
*desc
;
7430 unsigned int alignment
;
7431 struct object_block
*block
;
7434 gcc_assert (SYMBOL_REF_BLOCK (symbol
));
7435 if (SYMBOL_REF_BLOCK_OFFSET (symbol
) >= 0)
7438 /* Work out the symbol's size and alignment. */
7439 if (CONSTANT_POOL_ADDRESS_P (symbol
))
7441 desc
= SYMBOL_REF_CONSTANT (symbol
);
7442 alignment
= desc
->align
;
7443 size
= GET_MODE_SIZE (desc
->mode
);
7445 else if (TREE_CONSTANT_POOL_ADDRESS_P (symbol
))
7447 decl
= SYMBOL_REF_DECL (symbol
);
7448 gcc_checking_assert (DECL_IN_CONSTANT_POOL (decl
));
7449 alignment
= DECL_ALIGN (decl
);
7450 size
= get_constant_size (DECL_INITIAL (decl
));
7451 if ((flag_sanitize
& SANITIZE_ADDRESS
)
7452 && TREE_CODE (DECL_INITIAL (decl
)) == STRING_CST
7453 && asan_protect_global (DECL_INITIAL (decl
)))
7455 size
+= asan_red_zone_size (size
);
7456 alignment
= MAX (alignment
,
7457 ASAN_RED_ZONE_SIZE
* BITS_PER_UNIT
);
7462 struct symtab_node
*snode
;
7463 decl
= SYMBOL_REF_DECL (symbol
);
7465 snode
= symtab_node::get (decl
);
7468 rtx target
= DECL_RTL (snode
->ultimate_alias_target ()->decl
);
7470 gcc_assert (MEM_P (target
)
7471 && GET_CODE (XEXP (target
, 0)) == SYMBOL_REF
7472 && SYMBOL_REF_HAS_BLOCK_INFO_P (XEXP (target
, 0)));
7473 target
= XEXP (target
, 0);
7474 place_block_symbol (target
);
7475 SYMBOL_REF_BLOCK_OFFSET (symbol
) = SYMBOL_REF_BLOCK_OFFSET (target
);
7478 alignment
= get_variable_align (decl
);
7479 size
= tree_to_uhwi (DECL_SIZE_UNIT (decl
));
7480 if ((flag_sanitize
& SANITIZE_ADDRESS
)
7481 && asan_protect_global (decl
))
7483 size
+= asan_red_zone_size (size
);
7484 alignment
= MAX (alignment
,
7485 ASAN_RED_ZONE_SIZE
* BITS_PER_UNIT
);
7489 /* Calculate the object's offset from the start of the block. */
7490 block
= SYMBOL_REF_BLOCK (symbol
);
7491 mask
= alignment
/ BITS_PER_UNIT
- 1;
7492 offset
= (block
->size
+ mask
) & ~mask
;
7493 SYMBOL_REF_BLOCK_OFFSET (symbol
) = offset
;
7495 /* Record the block's new alignment and size. */
7496 block
->alignment
= MAX (block
->alignment
, alignment
);
7497 block
->size
= offset
+ size
;
7499 vec_safe_push (block
->objects
, symbol
);
7502 /* Return the anchor that should be used to address byte offset OFFSET
7503 from the first object in BLOCK. MODEL is the TLS model used
7507 get_section_anchor (struct object_block
*block
, HOST_WIDE_INT offset
,
7508 enum tls_model model
)
7511 unsigned int begin
, middle
, end
;
7512 unsigned HOST_WIDE_INT min_offset
, max_offset
, range
, bias
, delta
;
7515 /* Work out the anchor's offset. Use an offset of 0 for the first
7516 anchor so that we don't pessimize the case where we take the address
7517 of a variable at the beginning of the block. This is particularly
7518 useful when a block has only one variable assigned to it.
7520 We try to place anchors RANGE bytes apart, so there can then be
7521 anchors at +/-RANGE, +/-2 * RANGE, and so on, up to the limits of
7522 a ptr_mode offset. With some target settings, the lowest such
7523 anchor might be out of range for the lowest ptr_mode offset;
7524 likewise the highest anchor for the highest offset. Use anchors
7525 at the extreme ends of the ptr_mode range in such cases.
7527 All arithmetic uses unsigned integers in order to avoid
7529 max_offset
= (unsigned HOST_WIDE_INT
) targetm
.max_anchor_offset
;
7530 min_offset
= (unsigned HOST_WIDE_INT
) targetm
.min_anchor_offset
;
7531 range
= max_offset
- min_offset
+ 1;
7536 bias
= HOST_WIDE_INT_1U
<< (GET_MODE_BITSIZE (ptr_mode
) - 1);
7539 delta
= -(unsigned HOST_WIDE_INT
) offset
+ max_offset
;
7540 delta
-= delta
% range
;
7543 offset
= (HOST_WIDE_INT
) (-delta
);
7547 delta
= (unsigned HOST_WIDE_INT
) offset
- min_offset
;
7548 delta
-= delta
% range
;
7549 if (delta
> bias
- 1)
7551 offset
= (HOST_WIDE_INT
) delta
;
7555 /* Do a binary search to see if there's already an anchor we can use.
7556 Set BEGIN to the new anchor's index if not. */
7558 end
= vec_safe_length (block
->anchors
);
7559 while (begin
!= end
)
7561 middle
= (end
+ begin
) / 2;
7562 anchor
= (*block
->anchors
)[middle
];
7563 if (SYMBOL_REF_BLOCK_OFFSET (anchor
) > offset
)
7565 else if (SYMBOL_REF_BLOCK_OFFSET (anchor
) < offset
)
7567 else if (SYMBOL_REF_TLS_MODEL (anchor
) > model
)
7569 else if (SYMBOL_REF_TLS_MODEL (anchor
) < model
)
7575 /* Create a new anchor with a unique label. */
7576 ASM_GENERATE_INTERNAL_LABEL (label
, "LANCHOR", anchor_labelno
++);
7577 anchor
= create_block_symbol (ggc_strdup (label
), block
, offset
);
7578 SYMBOL_REF_FLAGS (anchor
) |= SYMBOL_FLAG_LOCAL
| SYMBOL_FLAG_ANCHOR
;
7579 SYMBOL_REF_FLAGS (anchor
) |= model
<< SYMBOL_FLAG_TLS_SHIFT
;
7581 /* Insert it at index BEGIN. */
7582 vec_safe_insert (block
->anchors
, begin
, anchor
);
7586 /* Output the objects in BLOCK. */
7589 output_object_block (struct object_block
*block
)
7591 struct constant_descriptor_rtx
*desc
;
7593 HOST_WIDE_INT offset
;
7597 if (!block
->objects
)
7600 /* Switch to the section and make sure that the first byte is
7601 suitably aligned. */
7602 /* Special case VTV comdat sections similar to assemble_variable. */
7603 if (SECTION_STYLE (block
->sect
) == SECTION_NAMED
7604 && block
->sect
->named
.name
7605 && (strcmp (block
->sect
->named
.name
, ".vtable_map_vars") == 0))
7606 handle_vtv_comdat_section (block
->sect
, block
->sect
->named
.decl
);
7608 switch_to_section (block
->sect
);
7610 assemble_align (block
->alignment
);
7612 /* Define the values of all anchors relative to the current section
7614 FOR_EACH_VEC_SAFE_ELT (block
->anchors
, i
, symbol
)
7615 targetm
.asm_out
.output_anchor (symbol
);
7617 /* Output the objects themselves. */
7619 FOR_EACH_VEC_ELT (*block
->objects
, i
, symbol
)
7621 /* Move to the object's offset, padding with zeros if necessary. */
7622 assemble_zeros (SYMBOL_REF_BLOCK_OFFSET (symbol
) - offset
);
7623 offset
= SYMBOL_REF_BLOCK_OFFSET (symbol
);
7624 if (CONSTANT_POOL_ADDRESS_P (symbol
))
7626 desc
= SYMBOL_REF_CONSTANT (symbol
);
7627 /* Pass 1 for align as we have already laid out everything in the block.
7628 So aligning shouldn't be necessary. */
7629 output_constant_pool_1 (desc
, 1);
7630 offset
+= GET_MODE_SIZE (desc
->mode
);
7632 else if (TREE_CONSTANT_POOL_ADDRESS_P (symbol
))
7635 decl
= SYMBOL_REF_DECL (symbol
);
7636 assemble_constant_contents (DECL_INITIAL (decl
), XSTR (symbol
, 0),
7637 DECL_ALIGN (decl
), false);
7639 size
= get_constant_size (DECL_INITIAL (decl
));
7641 if ((flag_sanitize
& SANITIZE_ADDRESS
)
7642 && TREE_CODE (DECL_INITIAL (decl
)) == STRING_CST
7643 && asan_protect_global (DECL_INITIAL (decl
)))
7645 size
= asan_red_zone_size (size
);
7646 assemble_zeros (size
);
7653 decl
= SYMBOL_REF_DECL (symbol
);
7654 assemble_variable_contents (decl
, XSTR (symbol
, 0), false, false);
7655 size
= tree_to_uhwi (DECL_SIZE_UNIT (decl
));
7657 if ((flag_sanitize
& SANITIZE_ADDRESS
)
7658 && asan_protect_global (decl
))
7660 size
= asan_red_zone_size (size
);
7661 assemble_zeros (size
);
7668 /* A callback for qsort to compare object_blocks. */
7671 output_object_block_compare (const void *x
, const void *y
)
7673 object_block
*p1
= *(object_block
* const*)x
;
7674 object_block
*p2
= *(object_block
* const*)y
;
7676 if (p1
->sect
->common
.flags
& SECTION_NAMED
7677 && !(p2
->sect
->common
.flags
& SECTION_NAMED
))
7680 if (!(p1
->sect
->common
.flags
& SECTION_NAMED
)
7681 && p2
->sect
->common
.flags
& SECTION_NAMED
)
7684 if (p1
->sect
->common
.flags
& SECTION_NAMED
7685 && p2
->sect
->common
.flags
& SECTION_NAMED
)
7686 return strcmp (p1
->sect
->named
.name
, p2
->sect
->named
.name
);
7688 unsigned f1
= p1
->sect
->common
.flags
;
7689 unsigned f2
= p2
->sect
->common
.flags
;
7692 return f1
< f2
? -1 : 1;
7695 /* Output the definitions of all object_blocks. */
7698 output_object_blocks (void)
7700 vec
<object_block
*, va_heap
> v
;
7701 v
.create (object_block_htab
->elements ());
7703 hash_table
<object_block_hasher
>::iterator hi
;
7705 FOR_EACH_HASH_TABLE_ELEMENT (*object_block_htab
, obj
, object_block
*, hi
)
7708 /* Sort them in order to output them in a deterministic manner,
7709 otherwise we may get .rodata sections in different orders with
7711 v
.qsort (output_object_block_compare
);
7713 FOR_EACH_VEC_ELT (v
, i
, obj
)
7714 output_object_block (obj
);
7719 /* This function provides a possible implementation of the
7720 TARGET_ASM_RECORD_GCC_SWITCHES target hook for ELF targets. When triggered
7721 by -frecord-gcc-switches it creates a new mergeable, string section in the
7722 assembler output file called TARGET_ASM_RECORD_GCC_SWITCHES_SECTION which
7723 contains the switches in ASCII format.
7725 FIXME: This code does not correctly handle double quote characters
7726 that appear inside strings, (it strips them rather than preserving them).
7727 FIXME: ASM_OUTPUT_ASCII, as defined in config/elfos.h will not emit NUL
7728 characters - instead it treats them as sub-string separators. Since
7729 we want to emit NUL strings terminators into the object file we have to use
7733 elf_record_gcc_switches (print_switch_type type
, const char * name
)
7737 case SWITCH_TYPE_PASSED
:
7738 ASM_OUTPUT_ASCII (asm_out_file
, name
, strlen (name
));
7739 ASM_OUTPUT_SKIP (asm_out_file
, HOST_WIDE_INT_1U
);
7742 case SWITCH_TYPE_DESCRIPTIVE
:
7745 /* Distinguish between invocations where name is NULL. */
7746 static bool started
= false;
7752 sec
= get_section (targetm
.asm_out
.record_gcc_switches_section
,
7756 | (SECTION_ENTSIZE
& 1),
7758 switch_to_section (sec
);
7767 /* The return value is currently ignored by the caller, but must be 0.
7768 For -fverbose-asm the return value would be the number of characters
7769 emitted into the assembler file. */
7773 /* Emit text to declare externally defined symbols. It is needed to
7774 properly support non-default visibility. */
7776 default_elf_asm_output_external (FILE *file ATTRIBUTE_UNUSED
,
7778 const char *name ATTRIBUTE_UNUSED
)
7780 /* We output the name if and only if TREE_SYMBOL_REFERENCED is
7781 set in order to avoid putting out names that are never really
7782 used. Always output visibility specified in the source. */
7783 if (TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (decl
))
7784 && (DECL_VISIBILITY_SPECIFIED (decl
)
7785 || targetm
.binds_local_p (decl
)))
7786 maybe_assemble_visibility (decl
);
7789 /* The default hook for TARGET_ASM_OUTPUT_SOURCE_FILENAME. */
7792 default_asm_output_source_filename (FILE *file
, const char *name
)
7794 #ifdef ASM_OUTPUT_SOURCE_FILENAME
7795 ASM_OUTPUT_SOURCE_FILENAME (file
, name
);
7797 fprintf (file
, "\t.file\t");
7798 output_quoted_string (file
, name
);
7803 /* Output a file name in the form wanted by System V. */
7806 output_file_directive (FILE *asm_file
, const char *input_name
)
7811 if (input_name
== NULL
)
7812 input_name
= "<stdin>";
7814 input_name
= remap_debug_filename (input_name
);
7816 len
= strlen (input_name
);
7817 na
= input_name
+ len
;
7819 /* NA gets INPUT_NAME sans directory names. */
7820 while (na
> input_name
)
7822 if (IS_DIR_SEPARATOR (na
[-1]))
7827 targetm
.asm_out
.output_source_filename (asm_file
, na
);
7830 /* Create a DEBUG_EXPR_DECL / DEBUG_EXPR pair from RTL expression
7833 make_debug_expr_from_rtl (const_rtx exp
)
7835 tree ddecl
= make_node (DEBUG_EXPR_DECL
), type
;
7836 machine_mode mode
= GET_MODE (exp
);
7839 DECL_ARTIFICIAL (ddecl
) = 1;
7840 if (REG_P (exp
) && REG_EXPR (exp
))
7841 type
= TREE_TYPE (REG_EXPR (exp
));
7842 else if (MEM_P (exp
) && MEM_EXPR (exp
))
7843 type
= TREE_TYPE (MEM_EXPR (exp
));
7846 if (type
&& TYPE_MODE (type
) == mode
)
7847 TREE_TYPE (ddecl
) = type
;
7849 TREE_TYPE (ddecl
) = lang_hooks
.types
.type_for_mode (mode
, 1);
7850 SET_DECL_MODE (ddecl
, mode
);
7851 dval
= gen_rtx_DEBUG_EXPR (mode
);
7852 DEBUG_EXPR_TREE_DECL (dval
) = ddecl
;
7853 SET_DECL_RTL (ddecl
, dval
);
7857 #ifdef ELF_ASCII_ESCAPES
7858 /* Default ASM_OUTPUT_LIMITED_STRING for ELF targets. */
7861 default_elf_asm_output_limited_string (FILE *f
, const char *s
)
7866 fputs (STRING_ASM_OP
, f
);
7871 escape
= ELF_ASCII_ESCAPES
[c
];
7879 putc ('0'+((c
>>6)&7), f
);
7880 putc ('0'+((c
>>3)&7), f
);
7881 putc ('0'+(c
&7), f
);
7894 /* Default ASM_OUTPUT_ASCII for ELF targets. */
7897 default_elf_asm_output_ascii (FILE *f
, const char *s
, unsigned int len
)
7899 const char *limit
= s
+ len
;
7900 const char *last_null
= NULL
;
7901 unsigned bytes_in_chunk
= 0;
7905 for (; s
< limit
; s
++)
7909 if (bytes_in_chunk
>= 60)
7918 for (p
= s
; p
< limit
&& *p
!= '\0'; p
++)
7925 if (p
< limit
&& (p
- s
) <= (long) ELF_STRING_LIMIT
)
7927 if (bytes_in_chunk
> 0)
7934 default_elf_asm_output_limited_string (f
, s
);
7939 if (bytes_in_chunk
== 0)
7940 fputs (ASCII_DATA_ASM_OP
"\"", f
);
7943 escape
= ELF_ASCII_ESCAPES
[c
];
7952 putc ('0'+((c
>>6)&7), f
);
7953 putc ('0'+((c
>>3)&7), f
);
7954 putc ('0'+(c
&7), f
);
7955 bytes_in_chunk
+= 4;
7960 bytes_in_chunk
+= 2;
7967 if (bytes_in_chunk
> 0)
7975 static GTY(()) section
*elf_init_array_section
;
7976 static GTY(()) section
*elf_fini_array_section
;
7979 get_elf_initfini_array_priority_section (int priority
,
7983 if (priority
!= DEFAULT_INIT_PRIORITY
)
7986 sprintf (buf
, "%s.%.5u",
7987 constructor_p
? ".init_array" : ".fini_array",
7989 sec
= get_section (buf
, SECTION_WRITE
| SECTION_NOTYPE
, NULL_TREE
);
7995 if (elf_init_array_section
== NULL
)
7996 elf_init_array_section
7997 = get_section (".init_array",
7998 SECTION_WRITE
| SECTION_NOTYPE
, NULL_TREE
);
7999 sec
= elf_init_array_section
;
8003 if (elf_fini_array_section
== NULL
)
8004 elf_fini_array_section
8005 = get_section (".fini_array",
8006 SECTION_WRITE
| SECTION_NOTYPE
, NULL_TREE
);
8007 sec
= elf_fini_array_section
;
8013 /* Use .init_array section for constructors. */
8016 default_elf_init_array_asm_out_constructor (rtx symbol
, int priority
)
8018 section
*sec
= get_elf_initfini_array_priority_section (priority
,
8020 assemble_addr_to_section (symbol
, sec
);
8023 /* Use .fini_array section for destructors. */
8026 default_elf_fini_array_asm_out_destructor (rtx symbol
, int priority
)
8028 section
*sec
= get_elf_initfini_array_priority_section (priority
,
8030 assemble_addr_to_section (symbol
, sec
);
8033 /* Default TARGET_ASM_OUTPUT_IDENT hook.
8035 This is a bit of a cheat. The real default is a no-op, but this
8036 hook is the default for all targets with a .ident directive. */
8039 default_asm_output_ident_directive (const char *ident_str
)
8041 const char *ident_asm_op
= "\t.ident\t";
8043 /* If we are still in the front end, do not write out the string
8044 to asm_out_file. Instead, add a fake top-level asm statement.
8045 This allows the front ends to use this hook without actually
8046 writing to asm_out_file, to handle #ident or Pragma Ident. */
8047 if (symtab
->state
== PARSING
)
8049 char *buf
= ACONCAT ((ident_asm_op
, "\"", ident_str
, "\"\n", NULL
));
8050 symtab
->finalize_toplevel_asm (build_string (strlen (buf
), buf
));
8053 fprintf (asm_out_file
, "%s\"%s\"\n", ident_asm_op
, ident_str
);
8057 /* This function ensures that vtable_map variables are not only
8058 in the comdat section, but that each variable has its own unique
8059 comdat name. Without this the variables end up in the same section
8060 with a single comdat name.
8062 FIXME: resolve_unique_section needs to deal better with
8063 decls with both DECL_SECTION_NAME and DECL_ONE_ONLY. Once
8064 that is fixed, this if-else statement can be replaced with
8065 a single call to "switch_to_section (sect)". */
8068 handle_vtv_comdat_section (section
*sect
, const_tree decl ATTRIBUTE_UNUSED
)
8070 #if defined (OBJECT_FORMAT_ELF)
8071 targetm
.asm_out
.named_section (sect
->named
.name
,
8072 sect
->named
.common
.flags
8077 /* Neither OBJECT_FORMAT_PE, nor OBJECT_FORMAT_COFF is set here.
8078 Therefore the following check is used.
8079 In case a the target is PE or COFF a comdat group section
8080 is created, e.g. .vtable_map_vars$foo. The linker places
8081 everything in .vtable_map_vars at the end.
8083 A fix could be made in
8084 gcc/config/i386/winnt.c: i386_pe_unique_section. */
8089 if (TREE_CODE (DECL_NAME (decl
)) == IDENTIFIER_NODE
)
8090 name
= ACONCAT ((sect
->named
.name
, "$",
8091 IDENTIFIER_POINTER (DECL_NAME (decl
)), NULL
));
8093 name
= ACONCAT ((sect
->named
.name
, "$",
8094 IDENTIFIER_POINTER (DECL_COMDAT_GROUP (DECL_NAME (decl
))),
8097 targetm
.asm_out
.named_section (name
,
8098 sect
->named
.common
.flags
8104 switch_to_section (sect
);
8108 #include "gt-varasm.h"