linker-map.gnu: Export __verbose_terminate_handler.
[official-gcc.git] / gcc / varasm.c
blobfc45cd8b0d0092c7366107836dc096a57c55ee7a
1 /* Output variables, constants and external declarations, for GNU compiler.
2 Copyright (C) 1987, 1988, 1989, 1992, 1993, 1994, 1995, 1996, 1997,
3 1998, 1999, 2000, 2001, 2002 Free Software Foundation, Inc.
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify it under
8 the terms of the GNU General Public License as published by the Free
9 Software Foundation; either version 2, or (at your option) any later
10 version.
12 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
13 WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
15 for more details.
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING. If not, write to the Free
19 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
20 02111-1307, USA. */
23 /* This file handles generation of all the assembler code
24 *except* the instructions of a function.
25 This includes declarations of variables and their initial values.
27 We also output the assembler code for constants stored in memory
28 and are responsible for combining constants with the same value. */
30 #include "config.h"
31 #include "system.h"
32 #include "rtl.h"
33 #include "tree.h"
34 #include "flags.h"
35 #include "function.h"
36 #include "expr.h"
37 #include "hard-reg-set.h"
38 #include "regs.h"
39 #include "output.h"
40 #include "real.h"
41 #include "toplev.h"
42 #include "obstack.h"
43 #include "hashtab.h"
44 #include "c-pragma.h"
45 #include "c-tree.h"
46 #include "ggc.h"
47 #include "langhooks.h"
48 #include "tm_p.h"
49 #include "debug.h"
50 #include "target.h"
52 #ifdef XCOFF_DEBUGGING_INFO
53 #include "xcoffout.h" /* Needed for external data
54 declarations for e.g. AIX 4.x. */
55 #endif
57 #ifndef TRAMPOLINE_ALIGNMENT
58 #define TRAMPOLINE_ALIGNMENT FUNCTION_BOUNDARY
59 #endif
61 #ifndef ASM_STABS_OP
62 #define ASM_STABS_OP "\t.stabs\t"
63 #endif
65 /* The (assembler) name of the first globally-visible object output. */
66 const char *first_global_object_name;
67 const char *weak_global_object_name;
69 extern struct obstack permanent_obstack;
70 #define obstack_chunk_alloc xmalloc
72 struct addr_const;
73 struct constant_descriptor;
74 struct rtx_const;
75 struct pool_constant;
77 #define MAX_RTX_HASH_TABLE 61
79 struct varasm_status
81 /* Hash facility for making memory-constants
82 from constant rtl-expressions. It is used on RISC machines
83 where immediate integer arguments and constant addresses are restricted
84 so that such constants must be stored in memory.
86 This pool of constants is reinitialized for each function
87 so each function gets its own constants-pool that comes right before
88 it. */
89 struct constant_descriptor **x_const_rtx_hash_table;
90 struct pool_constant **x_const_rtx_sym_hash_table;
92 /* Pointers to first and last constant in pool. */
93 struct pool_constant *x_first_pool, *x_last_pool;
95 /* Current offset in constant pool (does not include any machine-specific
96 header). */
97 HOST_WIDE_INT x_pool_offset;
99 /* Chain of all CONST_DOUBLE rtx's constructed for the current function.
100 They are chained through the CONST_DOUBLE_CHAIN. */
101 rtx x_const_double_chain;
104 #define const_rtx_hash_table (cfun->varasm->x_const_rtx_hash_table)
105 #define const_rtx_sym_hash_table (cfun->varasm->x_const_rtx_sym_hash_table)
106 #define first_pool (cfun->varasm->x_first_pool)
107 #define last_pool (cfun->varasm->x_last_pool)
108 #define pool_offset (cfun->varasm->x_pool_offset)
109 #define const_double_chain (cfun->varasm->x_const_double_chain)
111 /* Number for making the label on the next
112 constant that is stored in memory. */
114 int const_labelno;
116 /* Number for making the label on the next
117 static variable internal to a function. */
119 int var_labelno;
121 /* Carry information from ASM_DECLARE_OBJECT_NAME
122 to ASM_FINISH_DECLARE_OBJECT. */
124 int size_directive_output;
126 /* The last decl for which assemble_variable was called,
127 if it did ASM_DECLARE_OBJECT_NAME.
128 If the last call to assemble_variable didn't do that,
129 this holds 0. */
131 tree last_assemble_variable_decl;
133 /* RTX_UNCHANGING_P in a MEM can mean it is stored into, for initialization.
134 So giving constant the alias set for the type will allow such
135 initializations to appear to conflict with the load of the constant. We
136 avoid this by giving all constants an alias set for just constants.
137 Since there will be no stores to that alias set, nothing will ever
138 conflict with them. */
140 static HOST_WIDE_INT const_alias_set;
142 static const char *strip_reg_name PARAMS ((const char *));
143 static int contains_pointers_p PARAMS ((tree));
144 static void decode_addr_const PARAMS ((tree, struct addr_const *));
145 static int const_hash PARAMS ((tree));
146 static int compare_constant PARAMS ((tree,
147 struct constant_descriptor *));
148 static const unsigned char *compare_constant_1 PARAMS ((tree, const unsigned char *));
149 static struct constant_descriptor *record_constant PARAMS ((tree));
150 static void record_constant_1 PARAMS ((tree));
151 static tree copy_constant PARAMS ((tree));
152 static void output_constant_def_contents PARAMS ((tree, int, int));
153 static void decode_rtx_const PARAMS ((enum machine_mode, rtx,
154 struct rtx_const *));
155 static int const_hash_rtx PARAMS ((enum machine_mode, rtx));
156 static int compare_constant_rtx PARAMS ((enum machine_mode, rtx,
157 struct constant_descriptor *));
158 static struct constant_descriptor *record_constant_rtx PARAMS ((enum machine_mode,
159 rtx));
160 static struct pool_constant *find_pool_constant PARAMS ((struct function *, rtx));
161 static void mark_constant_pool PARAMS ((void));
162 static void mark_constants PARAMS ((rtx));
163 static int mark_constant PARAMS ((rtx *current_rtx, void *data));
164 static int output_addressed_constants PARAMS ((tree));
165 static void output_after_function_constants PARAMS ((void));
166 static unsigned HOST_WIDE_INT array_size_for_constructor PARAMS ((tree));
167 static unsigned min_align PARAMS ((unsigned, unsigned));
168 static void output_constructor PARAMS ((tree, HOST_WIDE_INT,
169 unsigned int));
170 static void globalize_decl PARAMS ((tree));
171 static void maybe_assemble_visibility PARAMS ((tree));
172 static int in_named_entry_eq PARAMS ((const PTR, const PTR));
173 static hashval_t in_named_entry_hash PARAMS ((const PTR));
174 #ifdef ASM_OUTPUT_BSS
175 static void asm_output_bss PARAMS ((FILE *, tree, const char *, int, int));
176 #endif
177 #ifdef BSS_SECTION_ASM_OP
178 #ifdef ASM_OUTPUT_ALIGNED_BSS
179 static void asm_output_aligned_bss PARAMS ((FILE *, tree, const char *,
180 int, int));
181 #endif
182 #endif /* BSS_SECTION_ASM_OP */
183 static void mark_pool_constant PARAMS ((struct pool_constant *));
184 static void mark_const_hash_entry PARAMS ((void *));
185 static int mark_const_str_htab_1 PARAMS ((void **, void *));
186 static void mark_const_str_htab PARAMS ((void *));
187 static hashval_t const_str_htab_hash PARAMS ((const void *x));
188 static int const_str_htab_eq PARAMS ((const void *x, const void *y));
189 static void const_str_htab_del PARAMS ((void *));
190 static void asm_emit_uninitialised PARAMS ((tree, const char*, int, int));
191 static void resolve_unique_section PARAMS ((tree, int));
193 static enum in_section { no_section, in_text, in_data, in_named
194 #ifdef BSS_SECTION_ASM_OP
195 , in_bss
196 #endif
197 #ifdef CTORS_SECTION_ASM_OP
198 , in_ctors
199 #endif
200 #ifdef DTORS_SECTION_ASM_OP
201 , in_dtors
202 #endif
203 #ifdef EXTRA_SECTIONS
204 , EXTRA_SECTIONS
205 #endif
206 } in_section = no_section;
208 /* Return a non-zero value if DECL has a section attribute. */
209 #ifndef IN_NAMED_SECTION
210 #define IN_NAMED_SECTION(DECL) \
211 ((TREE_CODE (DECL) == FUNCTION_DECL || TREE_CODE (DECL) == VAR_DECL) \
212 && DECL_SECTION_NAME (DECL) != NULL_TREE)
213 #endif
215 /* Text of section name when in_section == in_named. */
216 static const char *in_named_name;
218 /* Hash table of flags that have been used for a particular named section. */
220 struct in_named_entry
222 const char *name;
223 unsigned int flags;
224 bool declared;
227 static htab_t in_named_htab;
229 /* Define functions like text_section for any extra sections. */
230 #ifdef EXTRA_SECTION_FUNCTIONS
231 EXTRA_SECTION_FUNCTIONS
232 #endif
234 /* Tell assembler to switch to text section. */
236 void
237 text_section ()
239 if (in_section != in_text)
241 #ifdef TEXT_SECTION
242 TEXT_SECTION ();
243 #else
244 fprintf (asm_out_file, "%s\n", TEXT_SECTION_ASM_OP);
245 #endif
246 in_section = in_text;
250 /* Tell assembler to switch to data section. */
252 void
253 data_section ()
255 if (in_section != in_data)
257 if (flag_shared_data)
259 #ifdef SHARED_SECTION_ASM_OP
260 fprintf (asm_out_file, "%s\n", SHARED_SECTION_ASM_OP);
261 #else
262 fprintf (asm_out_file, "%s\n", DATA_SECTION_ASM_OP);
263 #endif
265 else
266 fprintf (asm_out_file, "%s\n", DATA_SECTION_ASM_OP);
268 in_section = in_data;
271 /* Tell assembler to ALWAYS switch to data section, in case
272 it's not sure where it is. */
274 void
275 force_data_section ()
277 in_section = no_section;
278 data_section ();
281 /* Tell assembler to switch to read-only data section. This is normally
282 the text section. */
284 void
285 readonly_data_section ()
287 #ifdef READONLY_DATA_SECTION
288 READONLY_DATA_SECTION (); /* Note this can call data_section. */
289 #else
290 text_section ();
291 #endif
294 /* Determine if we're in the text section. */
297 in_text_section ()
299 return in_section == in_text;
302 /* Determine if we're in the data section. */
305 in_data_section ()
307 return in_section == in_data;
310 /* Helper routines for maintaining in_named_htab. */
312 static int
313 in_named_entry_eq (p1, p2)
314 const PTR p1;
315 const PTR p2;
317 const struct in_named_entry *old = p1;
318 const char *new = p2;
320 return strcmp (old->name, new) == 0;
323 static hashval_t
324 in_named_entry_hash (p)
325 const PTR p;
327 const struct in_named_entry *old = p;
328 return htab_hash_string (old->name);
331 /* If SECTION has been seen before as a named section, return the flags
332 that were used. Otherwise, return 0. Note, that 0 is a perfectly valid
333 set of flags for a section to have, so 0 does not mean that the section
334 has not been seen. */
336 unsigned int
337 get_named_section_flags (section)
338 const char *section;
340 struct in_named_entry **slot;
342 slot = (struct in_named_entry**)
343 htab_find_slot_with_hash (in_named_htab, section,
344 htab_hash_string (section), NO_INSERT);
346 return slot ? (*slot)->flags : 0;
349 /* Returns true if the section has been declared before. Sets internal
350 flag on this section in in_named_hash so subsequent calls on this
351 section will return false. */
353 bool
354 named_section_first_declaration (name)
355 const char *name;
357 struct in_named_entry **slot;
359 slot = (struct in_named_entry**)
360 htab_find_slot_with_hash (in_named_htab, name,
361 htab_hash_string (name), NO_INSERT);
362 if (! (*slot)->declared)
364 (*slot)->declared = true;
365 return true;
367 else
369 return false;
374 /* Record FLAGS for SECTION. If SECTION was previously recorded with a
375 different set of flags, return false. */
377 bool
378 set_named_section_flags (section, flags)
379 const char *section;
380 unsigned int flags;
382 struct in_named_entry **slot, *entry;
384 slot = (struct in_named_entry**)
385 htab_find_slot_with_hash (in_named_htab, section,
386 htab_hash_string (section), INSERT);
387 entry = *slot;
389 if (!entry)
391 entry = (struct in_named_entry *) xmalloc (sizeof (*entry));
392 *slot = entry;
393 entry->name = ggc_strdup (section);
394 entry->flags = flags;
395 entry->declared = false;
397 else if (entry->flags != flags)
398 return false;
400 return true;
403 /* Tell assembler to change to section NAME with attributes FLAGS. */
405 void
406 named_section_flags (name, flags)
407 const char *name;
408 unsigned int flags;
410 if (in_section != in_named || strcmp (name, in_named_name) != 0)
412 if (! set_named_section_flags (name, flags))
413 abort ();
415 (* targetm.asm_out.named_section) (name, flags);
417 if (flags & SECTION_FORGET)
418 in_section = no_section;
419 else
421 in_named_name = ggc_strdup (name);
422 in_section = in_named;
427 /* Tell assembler to change to section NAME for DECL.
428 If DECL is NULL, just switch to section NAME.
429 If NAME is NULL, get the name from DECL.
430 If RELOC is 1, the initializer for DECL contains relocs. */
432 void
433 named_section (decl, name, reloc)
434 tree decl;
435 const char *name;
436 int reloc;
438 unsigned int flags;
440 if (decl != NULL_TREE && !DECL_P (decl))
441 abort ();
442 if (name == NULL)
443 name = TREE_STRING_POINTER (DECL_SECTION_NAME (decl));
445 flags = (* targetm.section_type_flags) (decl, name, reloc);
447 /* Sanity check user variables for flag changes. Non-user
448 section flag changes will abort in named_section_flags.
449 However, don't complain if SECTION_OVERRIDE is set.
450 We trust that the setter knows that it is safe to ignore
451 the default flags for this decl. */
452 if (decl && ! set_named_section_flags (name, flags))
454 flags = get_named_section_flags (name);
455 if ((flags & SECTION_OVERRIDE) == 0)
456 error_with_decl (decl, "%s causes a section type conflict");
459 named_section_flags (name, flags);
462 /* If required, set DECL_SECTION_NAME to a unique name. */
464 static void
465 resolve_unique_section (decl, reloc)
466 tree decl;
467 int reloc ATTRIBUTE_UNUSED;
469 if (DECL_SECTION_NAME (decl) == NULL_TREE
470 && (flag_function_sections
471 || (targetm.have_named_sections
472 && DECL_ONE_ONLY (decl))))
473 UNIQUE_SECTION (decl, reloc);
476 #ifdef BSS_SECTION_ASM_OP
478 /* Tell the assembler to switch to the bss section. */
480 void
481 bss_section ()
483 if (in_section != in_bss)
485 #ifdef SHARED_BSS_SECTION_ASM_OP
486 if (flag_shared_data)
487 fprintf (asm_out_file, "%s\n", SHARED_BSS_SECTION_ASM_OP);
488 else
489 #endif
490 fprintf (asm_out_file, "%s\n", BSS_SECTION_ASM_OP);
492 in_section = in_bss;
496 #ifdef ASM_OUTPUT_BSS
498 /* Utility function for ASM_OUTPUT_BSS for targets to use if
499 they don't support alignments in .bss.
500 ??? It is believed that this function will work in most cases so such
501 support is localized here. */
503 static void
504 asm_output_bss (file, decl, name, size, rounded)
505 FILE *file;
506 tree decl ATTRIBUTE_UNUSED;
507 const char *name;
508 int size ATTRIBUTE_UNUSED, rounded;
510 ASM_GLOBALIZE_LABEL (file, name);
511 bss_section ();
512 #ifdef ASM_DECLARE_OBJECT_NAME
513 last_assemble_variable_decl = decl;
514 ASM_DECLARE_OBJECT_NAME (file, name, decl);
515 #else
516 /* Standard thing is just output label for the object. */
517 ASM_OUTPUT_LABEL (file, name);
518 #endif /* ASM_DECLARE_OBJECT_NAME */
519 ASM_OUTPUT_SKIP (file, rounded);
522 #endif
524 #ifdef ASM_OUTPUT_ALIGNED_BSS
526 /* Utility function for targets to use in implementing
527 ASM_OUTPUT_ALIGNED_BSS.
528 ??? It is believed that this function will work in most cases so such
529 support is localized here. */
531 static void
532 asm_output_aligned_bss (file, decl, name, size, align)
533 FILE *file;
534 tree decl ATTRIBUTE_UNUSED;
535 const char *name;
536 int size, align;
538 ASM_GLOBALIZE_LABEL (file, name);
539 bss_section ();
540 ASM_OUTPUT_ALIGN (file, floor_log2 (align / BITS_PER_UNIT));
541 #ifdef ASM_DECLARE_OBJECT_NAME
542 last_assemble_variable_decl = decl;
543 ASM_DECLARE_OBJECT_NAME (file, name, decl);
544 #else
545 /* Standard thing is just output label for the object. */
546 ASM_OUTPUT_LABEL (file, name);
547 #endif /* ASM_DECLARE_OBJECT_NAME */
548 ASM_OUTPUT_SKIP (file, size ? size : 1);
551 #endif
553 #endif /* BSS_SECTION_ASM_OP */
555 /* Switch to the section for function DECL.
557 If DECL is NULL_TREE, switch to the text section.
558 ??? It's not clear that we will ever be passed NULL_TREE, but it's
559 safer to handle it. */
561 void
562 function_section (decl)
563 tree decl;
565 if (decl != NULL_TREE
566 && DECL_SECTION_NAME (decl) != NULL_TREE)
567 named_section (decl, (char *) 0, 0);
568 else
569 text_section ();
572 /* Switch to section for variable DECL.
574 RELOC is the `reloc' argument to SELECT_SECTION. */
576 void
577 variable_section (decl, reloc)
578 tree decl;
579 int reloc;
581 if (IN_NAMED_SECTION (decl))
582 named_section (decl, NULL, reloc);
583 else
585 /* C++ can have const variables that get initialized from constructors,
586 and thus can not be in a readonly section. We prevent this by
587 verifying that the initial value is constant for objects put in a
588 readonly section.
590 error_mark_node is used by the C front end to indicate that the
591 initializer has not been seen yet. In this case, we assume that
592 the initializer must be constant.
594 C++ uses error_mark_node for variables that have complicated
595 initializers, but these variables go in BSS so we won't be called
596 for them. */
598 #ifdef SELECT_SECTION
599 SELECT_SECTION (decl, reloc, DECL_ALIGN (decl));
600 #else
601 if (DECL_READONLY_SECTION (decl, reloc))
602 readonly_data_section ();
603 else
604 data_section ();
605 #endif
609 /* Tell assembler to switch to the section for the exception handling
610 table. */
612 void
613 default_exception_section ()
615 if (targetm.have_named_sections)
616 named_section (NULL_TREE, ".gcc_except_table", 0);
617 else if (flag_pic)
618 data_section ();
619 else
620 readonly_data_section ();
623 /* Tell assembler to switch to the section for string merging. */
625 void
626 mergeable_string_section (decl, align, flags)
627 tree decl ATTRIBUTE_UNUSED;
628 unsigned HOST_WIDE_INT align ATTRIBUTE_UNUSED;
629 unsigned int flags ATTRIBUTE_UNUSED;
631 #ifdef HAVE_GAS_SHF_MERGE
632 if (flag_merge_constants
633 && TREE_CODE (decl) == STRING_CST
634 && TREE_CODE (TREE_TYPE (decl)) == ARRAY_TYPE
635 && align <= 256
636 && TREE_STRING_LENGTH (decl) >= int_size_in_bytes (TREE_TYPE (decl)))
638 enum machine_mode mode;
639 unsigned int modesize;
640 const char *str;
641 int i, j, len, unit;
642 char name[30];
644 mode = TYPE_MODE (TREE_TYPE (TREE_TYPE (decl)));
645 modesize = GET_MODE_BITSIZE (mode);
646 if (modesize >= 8 && modesize <= 256
647 && (modesize & (modesize - 1)) == 0)
649 if (align < modesize)
650 align = modesize;
652 str = TREE_STRING_POINTER (decl);
653 len = TREE_STRING_LENGTH (decl);
654 unit = GET_MODE_SIZE (mode);
656 /* Check for embedded NUL characters. */
657 for (i = 0; i < len; i += unit)
659 for (j = 0; j < unit; j++)
660 if (str [i + j] != '\0')
661 break;
662 if (j == unit)
663 break;
665 if (i == len - unit)
667 sprintf (name, ".rodata.str%d.%d", modesize / 8,
668 (int) (align / 8));
669 flags |= (modesize / 8) | SECTION_MERGE | SECTION_STRINGS;
670 if (!i && modesize < align)
672 /* A "" string with requested alignment greater than
673 character size might cause a problem:
674 if some other string required even bigger
675 alignment than "", then linker might think the
676 "" is just part of padding after some other string
677 and not put it into the hash table initially.
678 But this means "" could have smaller alignment
679 than requested. */
680 #ifdef ASM_OUTPUT_SECTION_START
681 named_section_flags (name, flags);
682 ASM_OUTPUT_SECTION_START (asm_out_file);
683 #else
684 readonly_data_section ();
685 #endif
686 return;
689 named_section_flags (name, flags);
690 return;
694 #endif
695 readonly_data_section ();
698 /* Tell assembler to switch to the section for constant merging. */
700 void
701 mergeable_constant_section (mode, align, flags)
702 enum machine_mode mode ATTRIBUTE_UNUSED;
703 unsigned HOST_WIDE_INT align ATTRIBUTE_UNUSED;
704 unsigned int flags ATTRIBUTE_UNUSED;
706 #ifdef HAVE_GAS_SHF_MERGE
707 unsigned int modesize = GET_MODE_BITSIZE (mode);
709 if (flag_merge_constants
710 && mode != VOIDmode
711 && mode != BLKmode
712 && modesize <= align
713 && align >= 8
714 && align <= 256
715 && (align & (align - 1)) == 0)
717 char name[24];
719 sprintf (name, ".rodata.cst%d", (int) (align / 8));
720 flags |= (align / 8) | SECTION_MERGE;
721 named_section_flags (name, flags);
722 return;
724 #endif
725 readonly_data_section ();
728 /* Given NAME, a putative register name, discard any customary prefixes. */
730 static const char *
731 strip_reg_name (name)
732 const char *name;
734 #ifdef REGISTER_PREFIX
735 if (!strncmp (name, REGISTER_PREFIX, strlen (REGISTER_PREFIX)))
736 name += strlen (REGISTER_PREFIX);
737 #endif
738 if (name[0] == '%' || name[0] == '#')
739 name++;
740 return name;
743 /* Decode an `asm' spec for a declaration as a register name.
744 Return the register number, or -1 if nothing specified,
745 or -2 if the ASMSPEC is not `cc' or `memory' and is not recognized,
746 or -3 if ASMSPEC is `cc' and is not recognized,
747 or -4 if ASMSPEC is `memory' and is not recognized.
748 Accept an exact spelling or a decimal number.
749 Prefixes such as % are optional. */
752 decode_reg_name (asmspec)
753 const char *asmspec;
755 if (asmspec != 0)
757 int i;
759 /* Get rid of confusing prefixes. */
760 asmspec = strip_reg_name (asmspec);
762 /* Allow a decimal number as a "register name". */
763 for (i = strlen (asmspec) - 1; i >= 0; i--)
764 if (! ISDIGIT (asmspec[i]))
765 break;
766 if (asmspec[0] != 0 && i < 0)
768 i = atoi (asmspec);
769 if (i < FIRST_PSEUDO_REGISTER && i >= 0)
770 return i;
771 else
772 return -2;
775 for (i = 0; i < FIRST_PSEUDO_REGISTER; i++)
776 if (reg_names[i][0]
777 && ! strcmp (asmspec, strip_reg_name (reg_names[i])))
778 return i;
780 #ifdef ADDITIONAL_REGISTER_NAMES
782 static const struct { const char *const name; const int number; } table[]
783 = ADDITIONAL_REGISTER_NAMES;
785 for (i = 0; i < (int) ARRAY_SIZE (table); i++)
786 if (! strcmp (asmspec, table[i].name))
787 return table[i].number;
789 #endif /* ADDITIONAL_REGISTER_NAMES */
791 if (!strcmp (asmspec, "memory"))
792 return -4;
794 if (!strcmp (asmspec, "cc"))
795 return -3;
797 return -2;
800 return -1;
803 /* Create the DECL_RTL for a VAR_DECL or FUNCTION_DECL. DECL should
804 have static storage duration. In other words, it should not be an
805 automatic variable, including PARM_DECLs.
807 There is, however, one exception: this function handles variables
808 explicitly placed in a particular register by the user.
810 ASMSPEC, if not 0, is the string which the user specified as the
811 assembler symbol name.
813 This is never called for PARM_DECL nodes. */
815 void
816 make_decl_rtl (decl, asmspec)
817 tree decl;
818 const char *asmspec;
820 int top_level = (DECL_CONTEXT (decl) == NULL_TREE);
821 const char *name = 0;
822 const char *new_name = 0;
823 int reg_number;
824 rtx x;
826 /* Check that we are not being given an automatic variable. */
827 /* A weak alias has TREE_PUBLIC set but not the other bits. */
828 if (TREE_CODE (decl) == PARM_DECL
829 || TREE_CODE (decl) == RESULT_DECL
830 || (TREE_CODE (decl) == VAR_DECL
831 && !TREE_STATIC (decl)
832 && !TREE_PUBLIC (decl)
833 && !DECL_EXTERNAL (decl)
834 && !DECL_REGISTER (decl)))
835 abort ();
836 /* And that we were not given a type or a label. */
837 else if (TREE_CODE (decl) == TYPE_DECL
838 || TREE_CODE (decl) == LABEL_DECL)
839 abort ();
841 /* For a duplicate declaration, we can be called twice on the
842 same DECL node. Don't discard the RTL already made. */
843 if (DECL_RTL_SET_P (decl))
845 /* If the old RTL had the wrong mode, fix the mode. */
846 if (GET_MODE (DECL_RTL (decl)) != DECL_MODE (decl))
847 SET_DECL_RTL (decl, adjust_address_nv (DECL_RTL (decl),
848 DECL_MODE (decl), 0));
850 /* ??? Another way to do this would be to do what halfpic.c does
851 and maintain a hashed table of such critters. */
852 /* Let the target reassign the RTL if it wants.
853 This is necessary, for example, when one machine specific
854 decl attribute overrides another. */
855 #ifdef ENCODE_SECTION_INFO
856 ENCODE_SECTION_INFO (decl, false);
857 #endif
858 return;
861 new_name = name = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl));
863 reg_number = decode_reg_name (asmspec);
864 if (reg_number == -2)
866 /* ASMSPEC is given, and not the name of a register. Mark the
867 name with a star so assemble_name won't munge it. */
868 char *starred = alloca (strlen (asmspec) + 2);
869 starred[0] = '*';
870 strcpy (starred + 1, asmspec);
871 new_name = starred;
874 if (TREE_CODE (decl) != FUNCTION_DECL && DECL_REGISTER (decl))
876 /* First detect errors in declaring global registers. */
877 if (reg_number == -1)
878 error_with_decl (decl, "register name not specified for `%s'");
879 else if (reg_number < 0)
880 error_with_decl (decl, "invalid register name for `%s'");
881 else if (TYPE_MODE (TREE_TYPE (decl)) == BLKmode)
882 error_with_decl (decl,
883 "data type of `%s' isn't suitable for a register");
884 else if (! HARD_REGNO_MODE_OK (reg_number, TYPE_MODE (TREE_TYPE (decl))))
885 error_with_decl (decl,
886 "register specified for `%s' isn't suitable for data type");
887 /* Now handle properly declared static register variables. */
888 else
890 int nregs;
892 if (DECL_INITIAL (decl) != 0 && TREE_STATIC (decl))
894 DECL_INITIAL (decl) = 0;
895 error ("global register variable has initial value");
897 if (TREE_THIS_VOLATILE (decl))
898 warning ("volatile register variables don't work as you might wish");
900 /* If the user specified one of the eliminables registers here,
901 e.g., FRAME_POINTER_REGNUM, we don't want to get this variable
902 confused with that register and be eliminated. This usage is
903 somewhat suspect... */
905 SET_DECL_RTL (decl, gen_rtx_raw_REG (DECL_MODE (decl), reg_number));
906 ORIGINAL_REGNO (DECL_RTL (decl)) = reg_number;
907 REG_USERVAR_P (DECL_RTL (decl)) = 1;
909 if (TREE_STATIC (decl))
911 /* Make this register global, so not usable for anything
912 else. */
913 #ifdef ASM_DECLARE_REGISTER_GLOBAL
914 ASM_DECLARE_REGISTER_GLOBAL (asm_out_file, decl, reg_number, name);
915 #endif
916 nregs = HARD_REGNO_NREGS (reg_number, DECL_MODE (decl));
917 while (nregs > 0)
918 globalize_reg (reg_number + --nregs);
921 /* As a register variable, it has no section. */
922 return;
926 /* Now handle ordinary static variables and functions (in memory).
927 Also handle vars declared register invalidly. */
929 if (reg_number >= 0 || reg_number == -3)
930 error_with_decl (decl,
931 "register name given for non-register variable `%s'");
933 /* Specifying a section attribute on a variable forces it into a
934 non-.bss section, and thus it cannot be common. */
935 if (TREE_CODE (decl) == VAR_DECL
936 && DECL_SECTION_NAME (decl) != NULL_TREE
937 && DECL_INITIAL (decl) == NULL_TREE
938 && DECL_COMMON (decl))
939 DECL_COMMON (decl) = 0;
941 /* Can't use just the variable's own name for a variable
942 whose scope is less than the whole file, unless it's a member
943 of a local class (which will already be unambiguous).
944 Concatenate a distinguishing number. */
945 if (!top_level && !TREE_PUBLIC (decl)
946 && ! (DECL_CONTEXT (decl) && TYPE_P (DECL_CONTEXT (decl)))
947 && asmspec == 0
948 && name == IDENTIFIER_POINTER (DECL_NAME (decl)))
950 char *label;
952 ASM_FORMAT_PRIVATE_NAME (label, name, var_labelno);
953 var_labelno++;
954 new_name = label;
957 if (name != new_name)
959 SET_DECL_ASSEMBLER_NAME (decl, get_identifier (new_name));
960 name = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl));
963 /* If this variable is to be treated as volatile, show its
964 tree node has side effects. */
965 if ((flag_volatile_global && TREE_CODE (decl) == VAR_DECL
966 && TREE_PUBLIC (decl))
967 || ((flag_volatile_static && TREE_CODE (decl) == VAR_DECL
968 && (TREE_PUBLIC (decl) || TREE_STATIC (decl)))))
969 TREE_SIDE_EFFECTS (decl) = 1;
971 x = gen_rtx_MEM (DECL_MODE (decl), gen_rtx_SYMBOL_REF (Pmode, name));
972 SYMBOL_REF_WEAK (XEXP (x, 0)) = DECL_WEAK (decl);
973 if (TREE_CODE (decl) != FUNCTION_DECL)
974 set_mem_attributes (x, decl, 1);
975 SET_DECL_RTL (decl, x);
977 /* Optionally set flags or add text to the name to record information
978 such as that it is a function name.
979 If the name is changed, the macro ASM_OUTPUT_LABELREF
980 will have to know how to strip this information. */
981 #ifdef ENCODE_SECTION_INFO
982 ENCODE_SECTION_INFO (decl, true);
983 #endif
986 /* Make the rtl for variable VAR be volatile.
987 Use this only for static variables. */
989 void
990 make_var_volatile (var)
991 tree var;
993 if (GET_CODE (DECL_RTL (var)) != MEM)
994 abort ();
996 MEM_VOLATILE_P (DECL_RTL (var)) = 1;
999 /* Output alignment directive to align for constant expression EXP. */
1001 void
1002 assemble_constant_align (exp)
1003 tree exp;
1005 int align;
1007 /* Align the location counter as required by EXP's data type. */
1008 align = TYPE_ALIGN (TREE_TYPE (exp));
1009 #ifdef CONSTANT_ALIGNMENT
1010 align = CONSTANT_ALIGNMENT (exp, align);
1011 #endif
1013 if (align > BITS_PER_UNIT)
1015 ASM_OUTPUT_ALIGN (asm_out_file, floor_log2 (align / BITS_PER_UNIT));
1019 /* Output a string of literal assembler code
1020 for an `asm' keyword used between functions. */
1022 void
1023 assemble_asm (string)
1024 tree string;
1026 app_enable ();
1028 if (TREE_CODE (string) == ADDR_EXPR)
1029 string = TREE_OPERAND (string, 0);
1031 fprintf (asm_out_file, "\t%s\n", TREE_STRING_POINTER (string));
1034 /* Record an element in the table of global destructors. SYMBOL is
1035 a SYMBOL_REF of the function to be called; PRIORITY is a number
1036 between 0 and MAX_INIT_PRIORITY. */
1038 void
1039 default_stabs_asm_out_destructor (symbol, priority)
1040 rtx symbol;
1041 int priority ATTRIBUTE_UNUSED;
1043 /* Tell GNU LD that this is part of the static destructor set.
1044 This will work for any system that uses stabs, most usefully
1045 aout systems. */
1046 fprintf (asm_out_file, "%s\"___DTOR_LIST__\",22,0,0,", ASM_STABS_OP);
1047 assemble_name (asm_out_file, XSTR (symbol, 0));
1048 fputc ('\n', asm_out_file);
1051 void
1052 default_named_section_asm_out_destructor (symbol, priority)
1053 rtx symbol;
1054 int priority;
1056 const char *section = ".dtors";
1057 char buf[16];
1059 /* ??? This only works reliably with the GNU linker. */
1060 if (priority != DEFAULT_INIT_PRIORITY)
1062 sprintf (buf, ".dtors.%.5u",
1063 /* Invert the numbering so the linker puts us in the proper
1064 order; constructors are run from right to left, and the
1065 linker sorts in increasing order. */
1066 MAX_INIT_PRIORITY - priority);
1067 section = buf;
1070 named_section_flags (section, SECTION_WRITE);
1071 assemble_align (POINTER_SIZE);
1072 assemble_integer (symbol, POINTER_SIZE / BITS_PER_UNIT, POINTER_SIZE, 1);
1075 #ifdef DTORS_SECTION_ASM_OP
1076 void
1077 dtors_section ()
1079 if (in_section != in_dtors)
1081 in_section = in_dtors;
1082 fputs (DTORS_SECTION_ASM_OP, asm_out_file);
1083 fputc ('\n', asm_out_file);
1087 void
1088 default_dtor_section_asm_out_destructor (symbol, priority)
1089 rtx symbol;
1090 int priority ATTRIBUTE_UNUSED;
1092 dtors_section ();
1093 assemble_align (POINTER_SIZE);
1094 assemble_integer (symbol, POINTER_SIZE / BITS_PER_UNIT, POINTER_SIZE, 1);
1096 #endif
1098 /* Likewise for global constructors. */
1100 void
1101 default_stabs_asm_out_constructor (symbol, priority)
1102 rtx symbol;
1103 int priority ATTRIBUTE_UNUSED;
1105 /* Tell GNU LD that this is part of the static destructor set.
1106 This will work for any system that uses stabs, most usefully
1107 aout systems. */
1108 fprintf (asm_out_file, "%s\"___CTOR_LIST__\",22,0,0,", ASM_STABS_OP);
1109 assemble_name (asm_out_file, XSTR (symbol, 0));
1110 fputc ('\n', asm_out_file);
1113 void
1114 default_named_section_asm_out_constructor (symbol, priority)
1115 rtx symbol;
1116 int priority;
1118 const char *section = ".ctors";
1119 char buf[16];
1121 /* ??? This only works reliably with the GNU linker. */
1122 if (priority != DEFAULT_INIT_PRIORITY)
1124 sprintf (buf, ".ctors.%.5u",
1125 /* Invert the numbering so the linker puts us in the proper
1126 order; constructors are run from right to left, and the
1127 linker sorts in increasing order. */
1128 MAX_INIT_PRIORITY - priority);
1129 section = buf;
1132 named_section_flags (section, SECTION_WRITE);
1133 assemble_align (POINTER_SIZE);
1134 assemble_integer (symbol, POINTER_SIZE / BITS_PER_UNIT, POINTER_SIZE, 1);
1137 #ifdef CTORS_SECTION_ASM_OP
1138 void
1139 ctors_section ()
1141 if (in_section != in_ctors)
1143 in_section = in_ctors;
1144 fputs (CTORS_SECTION_ASM_OP, asm_out_file);
1145 fputc ('\n', asm_out_file);
1149 void
1150 default_ctor_section_asm_out_constructor (symbol, priority)
1151 rtx symbol;
1152 int priority ATTRIBUTE_UNUSED;
1154 ctors_section ();
1155 assemble_align (POINTER_SIZE);
1156 assemble_integer (symbol, POINTER_SIZE / BITS_PER_UNIT, POINTER_SIZE, 1);
1158 #endif
1160 /* CONSTANT_POOL_BEFORE_FUNCTION may be defined as an expression with
1161 a non-zero value if the constant pool should be output before the
1162 start of the function, or a zero value if the pool should output
1163 after the end of the function. The default is to put it before the
1164 start. */
1166 #ifndef CONSTANT_POOL_BEFORE_FUNCTION
1167 #define CONSTANT_POOL_BEFORE_FUNCTION 1
1168 #endif
1170 /* Output assembler code for the constant pool of a function and associated
1171 with defining the name of the function. DECL describes the function.
1172 NAME is the function's name. For the constant pool, we use the current
1173 constant pool data. */
1175 void
1176 assemble_start_function (decl, fnname)
1177 tree decl;
1178 const char *fnname;
1180 int align;
1182 /* The following code does not need preprocessing in the assembler. */
1184 app_disable ();
1186 if (CONSTANT_POOL_BEFORE_FUNCTION)
1187 output_constant_pool (fnname, decl);
1189 resolve_unique_section (decl, 0);
1190 function_section (decl);
1192 /* Tell assembler to move to target machine's alignment for functions. */
1193 align = floor_log2 (FUNCTION_BOUNDARY / BITS_PER_UNIT);
1194 if (align > 0)
1196 ASM_OUTPUT_ALIGN (asm_out_file, align);
1199 /* Handle a user-specified function alignment.
1200 Note that we still need to align to FUNCTION_BOUNDARY, as above,
1201 because ASM_OUTPUT_MAX_SKIP_ALIGN might not do any alignment at all. */
1202 if (align_functions_log > align)
1204 #ifdef ASM_OUTPUT_MAX_SKIP_ALIGN
1205 ASM_OUTPUT_MAX_SKIP_ALIGN (asm_out_file,
1206 align_functions_log, align_functions-1);
1207 #else
1208 ASM_OUTPUT_ALIGN (asm_out_file, align_functions_log);
1209 #endif
1212 #ifdef ASM_OUTPUT_FUNCTION_PREFIX
1213 ASM_OUTPUT_FUNCTION_PREFIX (asm_out_file, fnname);
1214 #endif
1216 (*debug_hooks->begin_function) (decl);
1218 /* Make function name accessible from other files, if appropriate. */
1220 if (TREE_PUBLIC (decl))
1222 if (! first_global_object_name)
1224 const char *p;
1225 char *name;
1227 STRIP_NAME_ENCODING (p, fnname);
1228 name = permalloc (strlen (p) + 1);
1229 strcpy (name, p);
1231 if (! DECL_WEAK (decl) && ! DECL_ONE_ONLY (decl))
1232 first_global_object_name = name;
1233 else
1234 weak_global_object_name = name;
1237 globalize_decl (decl);
1239 maybe_assemble_visibility (decl);
1242 /* Do any machine/system dependent processing of the function name */
1243 #ifdef ASM_DECLARE_FUNCTION_NAME
1244 ASM_DECLARE_FUNCTION_NAME (asm_out_file, fnname, current_function_decl);
1245 #else
1246 /* Standard thing is just output label for the function. */
1247 ASM_OUTPUT_LABEL (asm_out_file, fnname);
1248 #endif /* ASM_DECLARE_FUNCTION_NAME */
1251 /* Output assembler code associated with defining the size of the
1252 function. DECL describes the function. NAME is the function's name. */
1254 void
1255 assemble_end_function (decl, fnname)
1256 tree decl;
1257 const char *fnname;
1259 #ifdef ASM_DECLARE_FUNCTION_SIZE
1260 ASM_DECLARE_FUNCTION_SIZE (asm_out_file, fnname, decl);
1261 #endif
1262 if (! CONSTANT_POOL_BEFORE_FUNCTION)
1264 output_constant_pool (fnname, decl);
1265 function_section (decl); /* need to switch back */
1268 /* Output any constants which should appear after the function. */
1269 output_after_function_constants ();
1272 /* Assemble code to leave SIZE bytes of zeros. */
1274 void
1275 assemble_zeros (size)
1276 int size;
1278 /* Do no output if -fsyntax-only. */
1279 if (flag_syntax_only)
1280 return;
1282 #ifdef ASM_NO_SKIP_IN_TEXT
1283 /* The `space' pseudo in the text section outputs nop insns rather than 0s,
1284 so we must output 0s explicitly in the text section. */
1285 if (ASM_NO_SKIP_IN_TEXT && in_text_section ())
1287 int i;
1288 for (i = 0; i < size; i++)
1289 assemble_integer (const0_rtx, 1, BITS_PER_UNIT, 1);
1291 else
1292 #endif
1293 if (size > 0)
1294 ASM_OUTPUT_SKIP (asm_out_file, size);
1297 /* Assemble an alignment pseudo op for an ALIGN-bit boundary. */
1299 void
1300 assemble_align (align)
1301 int align;
1303 if (align > BITS_PER_UNIT)
1305 ASM_OUTPUT_ALIGN (asm_out_file, floor_log2 (align / BITS_PER_UNIT));
1309 /* Assemble a string constant with the specified C string as contents. */
1311 void
1312 assemble_string (p, size)
1313 const char *p;
1314 int size;
1316 int pos = 0;
1317 int maximum = 2000;
1319 /* If the string is very long, split it up. */
1321 while (pos < size)
1323 int thissize = size - pos;
1324 if (thissize > maximum)
1325 thissize = maximum;
1327 ASM_OUTPUT_ASCII (asm_out_file, p, thissize);
1329 pos += thissize;
1330 p += thissize;
1335 #if defined ASM_OUTPUT_ALIGNED_DECL_LOCAL
1336 #define ASM_EMIT_LOCAL(decl, name, size, rounded) \
1337 ASM_OUTPUT_ALIGNED_DECL_LOCAL (asm_out_file, decl, name, size, DECL_ALIGN (decl))
1338 #else
1339 #if defined ASM_OUTPUT_ALIGNED_LOCAL
1340 #define ASM_EMIT_LOCAL(decl, name, size, rounded) \
1341 ASM_OUTPUT_ALIGNED_LOCAL (asm_out_file, name, size, DECL_ALIGN (decl))
1342 #else
1343 #define ASM_EMIT_LOCAL(decl, name, size, rounded) \
1344 ASM_OUTPUT_LOCAL (asm_out_file, name, size, rounded)
1345 #endif
1346 #endif
1348 #if defined ASM_OUTPUT_ALIGNED_BSS
1349 #define ASM_EMIT_BSS(decl, name, size, rounded) \
1350 ASM_OUTPUT_ALIGNED_BSS (asm_out_file, decl, name, size, DECL_ALIGN (decl))
1351 #else
1352 #if defined ASM_OUTPUT_BSS
1353 #define ASM_EMIT_BSS(decl, name, size, rounded) \
1354 ASM_OUTPUT_BSS (asm_out_file, decl, name, size, rounded)
1355 #else
1356 #undef ASM_EMIT_BSS
1357 #endif
1358 #endif
1360 #if defined ASM_OUTPUT_ALIGNED_DECL_COMMON
1361 #define ASM_EMIT_COMMON(decl, name, size, rounded) \
1362 ASM_OUTPUT_ALIGNED_DECL_COMMON (asm_out_file, decl, name, size, DECL_ALIGN (decl))
1363 #else
1364 #if defined ASM_OUTPUT_ALIGNED_COMMON
1365 #define ASM_EMIT_COMMON(decl, name, size, rounded) \
1366 ASM_OUTPUT_ALIGNED_COMMON (asm_out_file, name, size, DECL_ALIGN (decl))
1367 #else
1368 #define ASM_EMIT_COMMON(decl, name, size, rounded) \
1369 ASM_OUTPUT_COMMON (asm_out_file, name, size, rounded)
1370 #endif
1371 #endif
1373 static void
1374 asm_emit_uninitialised (decl, name, size, rounded)
1375 tree decl;
1376 const char * name;
1377 int size ATTRIBUTE_UNUSED;
1378 int rounded ATTRIBUTE_UNUSED;
1380 enum
1382 asm_dest_common,
1383 asm_dest_bss,
1384 asm_dest_local
1386 destination = asm_dest_local;
1388 if (TREE_PUBLIC (decl))
1390 #if defined ASM_EMIT_BSS
1391 if (! DECL_COMMON (decl))
1392 destination = asm_dest_bss;
1393 else
1394 #endif
1395 destination = asm_dest_common;
1398 if (destination == asm_dest_bss)
1399 globalize_decl (decl);
1400 resolve_unique_section (decl, 0);
1402 if (flag_shared_data)
1404 switch (destination)
1406 #ifdef ASM_OUTPUT_SHARED_BSS
1407 case asm_dest_bss:
1408 ASM_OUTPUT_SHARED_BSS (asm_out_file, decl, name, size, rounded);
1409 return;
1410 #endif
1411 #ifdef ASM_OUTPUT_SHARED_COMMON
1412 case asm_dest_common:
1413 ASM_OUTPUT_SHARED_COMMON (asm_out_file, name, size, rounded);
1414 return;
1415 #endif
1416 #ifdef ASM_OUTPUT_SHARED_LOCAL
1417 case asm_dest_local:
1418 ASM_OUTPUT_SHARED_LOCAL (asm_out_file, name, size, rounded);
1419 return;
1420 #endif
1421 default:
1422 break;
1426 switch (destination)
1428 #ifdef ASM_EMIT_BSS
1429 case asm_dest_bss:
1430 ASM_EMIT_BSS (decl, name, size, rounded);
1431 break;
1432 #endif
1433 case asm_dest_common:
1434 ASM_EMIT_COMMON (decl, name, size, rounded);
1435 break;
1436 case asm_dest_local:
1437 ASM_EMIT_LOCAL (decl, name, size, rounded);
1438 break;
1439 default:
1440 abort ();
1443 return;
1446 /* Assemble everything that is needed for a variable or function declaration.
1447 Not used for automatic variables, and not used for function definitions.
1448 Should not be called for variables of incomplete structure type.
1450 TOP_LEVEL is nonzero if this variable has file scope.
1451 AT_END is nonzero if this is the special handling, at end of compilation,
1452 to define things that have had only tentative definitions.
1453 DONT_OUTPUT_DATA if nonzero means don't actually output the
1454 initial value (that will be done by the caller). */
1456 void
1457 assemble_variable (decl, top_level, at_end, dont_output_data)
1458 tree decl;
1459 int top_level ATTRIBUTE_UNUSED;
1460 int at_end ATTRIBUTE_UNUSED;
1461 int dont_output_data;
1463 const char *name;
1464 unsigned int align;
1465 int reloc = 0;
1466 rtx decl_rtl;
1468 last_assemble_variable_decl = 0;
1470 /* Normally no need to say anything here for external references,
1471 since assemble_external is called by the language-specific code
1472 when a declaration is first seen. */
1474 if (DECL_EXTERNAL (decl))
1475 return;
1477 /* Output no assembler code for a function declaration.
1478 Only definitions of functions output anything. */
1480 if (TREE_CODE (decl) == FUNCTION_DECL)
1481 return;
1483 /* Do nothing for global register variables. */
1484 if (DECL_RTL_SET_P (decl) && GET_CODE (DECL_RTL (decl)) == REG)
1486 TREE_ASM_WRITTEN (decl) = 1;
1487 return;
1490 /* If type was incomplete when the variable was declared,
1491 see if it is complete now. */
1493 if (DECL_SIZE (decl) == 0)
1494 layout_decl (decl, 0);
1496 /* Still incomplete => don't allocate it; treat the tentative defn
1497 (which is what it must have been) as an `extern' reference. */
1499 if (!dont_output_data && DECL_SIZE (decl) == 0)
1501 error_with_file_and_line (DECL_SOURCE_FILE (decl),
1502 DECL_SOURCE_LINE (decl),
1503 "storage size of `%s' isn't known",
1504 IDENTIFIER_POINTER (DECL_NAME (decl)));
1505 TREE_ASM_WRITTEN (decl) = 1;
1506 return;
1509 /* The first declaration of a variable that comes through this function
1510 decides whether it is global (in C, has external linkage)
1511 or local (in C, has internal linkage). So do nothing more
1512 if this function has already run. */
1514 if (TREE_ASM_WRITTEN (decl))
1515 return;
1517 /* Make sure ENCODE_SECTION_INFO is invoked before we set ASM_WRITTEN. */
1518 decl_rtl = DECL_RTL (decl);
1520 TREE_ASM_WRITTEN (decl) = 1;
1522 /* Do no output if -fsyntax-only. */
1523 if (flag_syntax_only)
1524 return;
1526 app_disable ();
1528 if (! dont_output_data
1529 && ! host_integerp (DECL_SIZE_UNIT (decl), 1))
1531 error_with_decl (decl, "size of variable `%s' is too large");
1532 return;
1535 name = XSTR (XEXP (decl_rtl, 0), 0);
1536 if (TREE_PUBLIC (decl) && DECL_NAME (decl)
1537 && ! first_global_object_name
1538 && ! (DECL_COMMON (decl) && (DECL_INITIAL (decl) == 0
1539 || DECL_INITIAL (decl) == error_mark_node))
1540 && ! DECL_WEAK (decl)
1541 && ! DECL_ONE_ONLY (decl))
1543 const char *p;
1544 char *xname;
1546 STRIP_NAME_ENCODING (p, name);
1547 xname = permalloc (strlen (p) + 1);
1548 strcpy (xname, p);
1549 first_global_object_name = xname;
1552 /* Compute the alignment of this data. */
1554 align = DECL_ALIGN (decl);
1556 /* In the case for initialing an array whose length isn't specified,
1557 where we have not yet been able to do the layout,
1558 figure out the proper alignment now. */
1559 if (dont_output_data && DECL_SIZE (decl) == 0
1560 && TREE_CODE (TREE_TYPE (decl)) == ARRAY_TYPE)
1561 align = MAX (align, TYPE_ALIGN (TREE_TYPE (TREE_TYPE (decl))));
1563 /* Some object file formats have a maximum alignment which they support.
1564 In particular, a.out format supports a maximum alignment of 4. */
1565 #ifndef MAX_OFILE_ALIGNMENT
1566 #define MAX_OFILE_ALIGNMENT BIGGEST_ALIGNMENT
1567 #endif
1568 if (align > MAX_OFILE_ALIGNMENT)
1570 warning_with_decl (decl,
1571 "alignment of `%s' is greater than maximum object file alignment. Using %d",
1572 MAX_OFILE_ALIGNMENT/BITS_PER_UNIT);
1573 align = MAX_OFILE_ALIGNMENT;
1576 /* On some machines, it is good to increase alignment sometimes. */
1577 if (! DECL_USER_ALIGN (decl))
1579 #ifdef DATA_ALIGNMENT
1580 align = DATA_ALIGNMENT (TREE_TYPE (decl), align);
1581 #endif
1582 #ifdef CONSTANT_ALIGNMENT
1583 if (DECL_INITIAL (decl) != 0 && DECL_INITIAL (decl) != error_mark_node)
1584 align = CONSTANT_ALIGNMENT (DECL_INITIAL (decl), align);
1585 #endif
1588 /* Reset the alignment in case we have made it tighter, so we can benefit
1589 from it in get_pointer_alignment. */
1590 DECL_ALIGN (decl) = align;
1591 set_mem_align (decl_rtl, align);
1593 if (TREE_PUBLIC (decl))
1594 maybe_assemble_visibility (decl);
1596 /* Output any data that we will need to use the address of. */
1597 if (DECL_INITIAL (decl) == error_mark_node)
1598 reloc = contains_pointers_p (TREE_TYPE (decl)) ? 3 : 0;
1599 else if (DECL_INITIAL (decl))
1600 reloc = output_addressed_constants (DECL_INITIAL (decl));
1601 resolve_unique_section (decl, reloc);
1603 /* Handle uninitialized definitions. */
1605 if ((DECL_INITIAL (decl) == 0 || DECL_INITIAL (decl) == error_mark_node
1606 #if defined ASM_EMIT_BSS
1607 || (flag_zero_initialized_in_bss
1608 && initializer_zerop (DECL_INITIAL (decl)))
1609 #endif
1611 /* If the target can't output uninitialized but not common global data
1612 in .bss, then we have to use .data. */
1613 #if ! defined ASM_EMIT_BSS
1614 && DECL_COMMON (decl)
1615 #endif
1616 && DECL_SECTION_NAME (decl) == NULL_TREE
1617 && ! dont_output_data)
1619 unsigned HOST_WIDE_INT size = tree_low_cst (DECL_SIZE_UNIT (decl), 1);
1620 unsigned HOST_WIDE_INT rounded = size;
1622 /* Don't allocate zero bytes of common,
1623 since that means "undefined external" in the linker. */
1624 if (size == 0)
1625 rounded = 1;
1627 /* Round size up to multiple of BIGGEST_ALIGNMENT bits
1628 so that each uninitialized object starts on such a boundary. */
1629 rounded += (BIGGEST_ALIGNMENT / BITS_PER_UNIT) - 1;
1630 rounded = (rounded / (BIGGEST_ALIGNMENT / BITS_PER_UNIT)
1631 * (BIGGEST_ALIGNMENT / BITS_PER_UNIT));
1633 /* Don't continue this line--convex cc version 4.1 would lose. */
1634 #if !defined(ASM_OUTPUT_ALIGNED_COMMON) && !defined(ASM_OUTPUT_ALIGNED_DECL_COMMON) && !defined(ASM_OUTPUT_ALIGNED_BSS)
1635 if ((unsigned HOST_WIDE_INT) DECL_ALIGN (decl) / BITS_PER_UNIT > rounded)
1636 warning_with_decl
1637 (decl, "requested alignment for %s is greater than implemented alignment of %d",rounded);
1638 #endif
1640 asm_emit_uninitialised (decl, name, size, rounded);
1642 return;
1645 /* Handle initialized definitions.
1646 Also handle uninitialized global definitions if -fno-common and the
1647 target doesn't support ASM_OUTPUT_BSS. */
1649 /* First make the assembler name(s) global if appropriate. */
1650 if (TREE_PUBLIC (decl) && DECL_NAME (decl))
1651 globalize_decl (decl);
1653 /* Switch to the appropriate section. */
1654 variable_section (decl, reloc);
1656 /* dbxout.c needs to know this. */
1657 if (in_text_section ())
1658 DECL_IN_TEXT_SECTION (decl) = 1;
1660 /* Output the alignment of this data. */
1661 if (align > BITS_PER_UNIT)
1663 ASM_OUTPUT_ALIGN (asm_out_file,
1664 floor_log2 (DECL_ALIGN (decl) / BITS_PER_UNIT));
1667 /* Do any machine/system dependent processing of the object. */
1668 #ifdef ASM_DECLARE_OBJECT_NAME
1669 last_assemble_variable_decl = decl;
1670 ASM_DECLARE_OBJECT_NAME (asm_out_file, name, decl);
1671 #else
1672 /* Standard thing is just output label for the object. */
1673 ASM_OUTPUT_LABEL (asm_out_file, name);
1674 #endif /* ASM_DECLARE_OBJECT_NAME */
1676 if (!dont_output_data)
1678 if (DECL_INITIAL (decl) && DECL_INITIAL (decl) != error_mark_node)
1679 /* Output the actual data. */
1680 output_constant (DECL_INITIAL (decl),
1681 tree_low_cst (DECL_SIZE_UNIT (decl), 1),
1682 align);
1683 else
1684 /* Leave space for it. */
1685 assemble_zeros (tree_low_cst (DECL_SIZE_UNIT (decl), 1));
1689 /* Return 1 if type TYPE contains any pointers. */
1691 static int
1692 contains_pointers_p (type)
1693 tree type;
1695 switch (TREE_CODE (type))
1697 case POINTER_TYPE:
1698 case REFERENCE_TYPE:
1699 /* I'm not sure whether OFFSET_TYPE needs this treatment,
1700 so I'll play safe and return 1. */
1701 case OFFSET_TYPE:
1702 return 1;
1704 case RECORD_TYPE:
1705 case UNION_TYPE:
1706 case QUAL_UNION_TYPE:
1708 tree fields;
1709 /* For a type that has fields, see if the fields have pointers. */
1710 for (fields = TYPE_FIELDS (type); fields; fields = TREE_CHAIN (fields))
1711 if (TREE_CODE (fields) == FIELD_DECL
1712 && contains_pointers_p (TREE_TYPE (fields)))
1713 return 1;
1714 return 0;
1717 case ARRAY_TYPE:
1718 /* An array type contains pointers if its element type does. */
1719 return contains_pointers_p (TREE_TYPE (type));
1721 default:
1722 return 0;
1726 /* Output something to declare an external symbol to the assembler.
1727 (Most assemblers don't need this, so we normally output nothing.)
1728 Do nothing if DECL is not external. */
1730 void
1731 assemble_external (decl)
1732 tree decl ATTRIBUTE_UNUSED;
1734 /* Because most platforms do not define ASM_OUTPUT_EXTERNAL, the
1735 main body of this code is only rarely exercised. To provide some
1736 testing, on all platforms, we make sure that the ASM_OUT_FILE is
1737 open. If it's not, we should not be calling this function. */
1738 if (!asm_out_file)
1739 abort ();
1741 #ifdef ASM_OUTPUT_EXTERNAL
1742 if (DECL_P (decl) && DECL_EXTERNAL (decl) && TREE_PUBLIC (decl))
1744 rtx rtl = DECL_RTL (decl);
1746 if (GET_CODE (rtl) == MEM && GET_CODE (XEXP (rtl, 0)) == SYMBOL_REF
1747 && ! SYMBOL_REF_USED (XEXP (rtl, 0)))
1749 /* Some systems do require some output. */
1750 SYMBOL_REF_USED (XEXP (rtl, 0)) = 1;
1751 ASM_OUTPUT_EXTERNAL (asm_out_file, decl, XSTR (XEXP (rtl, 0), 0));
1754 #endif
1757 /* Similar, for calling a library function FUN. */
1759 void
1760 assemble_external_libcall (fun)
1761 rtx fun ATTRIBUTE_UNUSED;
1763 #ifdef ASM_OUTPUT_EXTERNAL_LIBCALL
1764 /* Declare library function name external when first used, if nec. */
1765 if (! SYMBOL_REF_USED (fun))
1767 SYMBOL_REF_USED (fun) = 1;
1768 ASM_OUTPUT_EXTERNAL_LIBCALL (asm_out_file, fun);
1770 #endif
1773 /* Declare the label NAME global. */
1775 void
1776 assemble_global (name)
1777 const char *name ATTRIBUTE_UNUSED;
1779 ASM_GLOBALIZE_LABEL (asm_out_file, name);
1782 /* Assemble a label named NAME. */
1784 void
1785 assemble_label (name)
1786 const char *name;
1788 ASM_OUTPUT_LABEL (asm_out_file, name);
1791 /* Output to FILE a reference to the assembler name of a C-level name NAME.
1792 If NAME starts with a *, the rest of NAME is output verbatim.
1793 Otherwise NAME is transformed in an implementation-defined way
1794 (usually by the addition of an underscore).
1795 Many macros in the tm file are defined to call this function. */
1797 void
1798 assemble_name (file, name)
1799 FILE *file;
1800 const char *name;
1802 const char *real_name;
1803 tree id;
1805 STRIP_NAME_ENCODING (real_name, name);
1807 id = maybe_get_identifier (real_name);
1808 if (id)
1809 TREE_SYMBOL_REFERENCED (id) = 1;
1811 if (name[0] == '*')
1812 fputs (&name[1], file);
1813 else
1814 ASM_OUTPUT_LABELREF (file, name);
1817 /* Allocate SIZE bytes writable static space with a gensym name
1818 and return an RTX to refer to its address. */
1821 assemble_static_space (size)
1822 int size;
1824 char name[12];
1825 const char *namestring;
1826 rtx x;
1828 #if 0
1829 if (flag_shared_data)
1830 data_section ();
1831 #endif
1833 ASM_GENERATE_INTERNAL_LABEL (name, "LF", const_labelno);
1834 ++const_labelno;
1835 namestring = ggc_strdup (name);
1837 x = gen_rtx_SYMBOL_REF (Pmode, namestring);
1839 #ifdef ASM_OUTPUT_ALIGNED_DECL_LOCAL
1840 ASM_OUTPUT_ALIGNED_DECL_LOCAL (asm_out_file, NULL_TREE, name, size,
1841 BIGGEST_ALIGNMENT);
1842 #else
1843 #ifdef ASM_OUTPUT_ALIGNED_LOCAL
1844 ASM_OUTPUT_ALIGNED_LOCAL (asm_out_file, name, size, BIGGEST_ALIGNMENT);
1845 #else
1847 /* Round size up to multiple of BIGGEST_ALIGNMENT bits
1848 so that each uninitialized object starts on such a boundary. */
1849 /* Variable `rounded' might or might not be used in ASM_OUTPUT_LOCAL. */
1850 int rounded ATTRIBUTE_UNUSED
1851 = ((size + (BIGGEST_ALIGNMENT / BITS_PER_UNIT) - 1)
1852 / (BIGGEST_ALIGNMENT / BITS_PER_UNIT)
1853 * (BIGGEST_ALIGNMENT / BITS_PER_UNIT));
1854 ASM_OUTPUT_LOCAL (asm_out_file, name, size, rounded);
1856 #endif
1857 #endif
1858 return x;
1861 /* Assemble the static constant template for function entry trampolines.
1862 This is done at most once per compilation.
1863 Returns an RTX for the address of the template. */
1865 #ifdef TRAMPOLINE_TEMPLATE
1867 assemble_trampoline_template ()
1869 char label[256];
1870 const char *name;
1871 int align;
1873 /* By default, put trampoline templates in read-only data section. */
1875 #ifdef TRAMPOLINE_SECTION
1876 TRAMPOLINE_SECTION ();
1877 #else
1878 readonly_data_section ();
1879 #endif
1881 /* Write the assembler code to define one. */
1882 align = floor_log2 (TRAMPOLINE_ALIGNMENT / BITS_PER_UNIT);
1883 if (align > 0)
1885 ASM_OUTPUT_ALIGN (asm_out_file, align);
1888 ASM_OUTPUT_INTERNAL_LABEL (asm_out_file, "LTRAMP", 0);
1889 TRAMPOLINE_TEMPLATE (asm_out_file);
1891 /* Record the rtl to refer to it. */
1892 ASM_GENERATE_INTERNAL_LABEL (label, "LTRAMP", 0);
1893 name = ggc_strdup (label);
1894 return gen_rtx_SYMBOL_REF (Pmode, name);
1896 #endif
1898 /* A and B are either alignments or offsets. Return the minimum alignment
1899 that may be assumed after adding the two together. */
1901 static inline unsigned
1902 min_align (a, b)
1903 unsigned int a, b;
1905 return (a | b) & -(a | b);
1908 /* Return the assembler directive for creating a given kind of integer
1909 object. SIZE is the number of bytes in the object and ALIGNED_P
1910 indicates whether it is known to be aligned. Return NULL if the
1911 assembly dialect has no such directive.
1913 The returned string should be printed at the start of a new line and
1914 be followed immediately by the object's initial value. */
1916 const char *
1917 integer_asm_op (size, aligned_p)
1918 int size;
1919 int aligned_p;
1921 struct asm_int_op *ops;
1923 if (aligned_p)
1924 ops = &targetm.asm_out.aligned_op;
1925 else
1926 ops = &targetm.asm_out.unaligned_op;
1928 switch (size)
1930 case 1:
1931 return targetm.asm_out.byte_op;
1932 case 2:
1933 return ops->hi;
1934 case 4:
1935 return ops->si;
1936 case 8:
1937 return ops->di;
1938 case 16:
1939 return ops->ti;
1940 default:
1941 return NULL;
1945 /* Use directive OP to assemble an integer object X. Print OP at the
1946 start of the line, followed immediately by the value of X. */
1948 void
1949 assemble_integer_with_op (op, x)
1950 const char *op;
1951 rtx x;
1953 fputs (op, asm_out_file);
1954 output_addr_const (asm_out_file, x);
1955 fputc ('\n', asm_out_file);
1958 /* The default implementation of the asm_out.integer target hook. */
1960 bool
1961 default_assemble_integer (x, size, aligned_p)
1962 rtx x ATTRIBUTE_UNUSED;
1963 unsigned int size ATTRIBUTE_UNUSED;
1964 int aligned_p ATTRIBUTE_UNUSED;
1966 const char *op = integer_asm_op (size, aligned_p);
1967 return op && (assemble_integer_with_op (op, x), true);
1970 /* Assemble the integer constant X into an object of SIZE bytes. ALIGN is
1971 the alignment of the integer in bits. Return 1 if we were able to output
1972 the constant, otherwise 0. If FORCE is non-zero, abort if we can't output
1973 the constant. */
1975 bool
1976 assemble_integer (x, size, align, force)
1977 rtx x;
1978 unsigned int size;
1979 unsigned int align;
1980 int force;
1982 int aligned_p;
1984 aligned_p = (align >= MIN (size * BITS_PER_UNIT, BIGGEST_ALIGNMENT));
1986 /* See if the target hook can handle this kind of object. */
1987 if ((*targetm.asm_out.integer) (x, size, aligned_p))
1988 return true;
1990 /* If the object is a multi-byte one, try splitting it up. Split
1991 it into words it if is multi-word, otherwise split it into bytes. */
1992 if (size > 1)
1994 enum machine_mode omode, imode;
1995 unsigned int subalign;
1996 unsigned int subsize, i;
1998 subsize = size > UNITS_PER_WORD? UNITS_PER_WORD : 1;
1999 subalign = MIN (align, subsize * BITS_PER_UNIT);
2000 omode = mode_for_size (subsize * BITS_PER_UNIT, MODE_INT, 0);
2001 imode = mode_for_size (size * BITS_PER_UNIT, MODE_INT, 0);
2003 for (i = 0; i < size; i += subsize)
2005 rtx partial = simplify_subreg (omode, x, imode, i);
2006 if (!partial || !assemble_integer (partial, subsize, subalign, 0))
2007 break;
2009 if (i == size)
2010 return true;
2012 /* If we've printed some of it, but not all of it, there's no going
2013 back now. */
2014 if (i > 0)
2015 abort ();
2018 if (force)
2019 abort ();
2021 return false;
2024 void
2025 assemble_real (d, mode, align)
2026 REAL_VALUE_TYPE d;
2027 enum machine_mode mode;
2028 unsigned int align;
2030 long data[4];
2031 long l;
2032 unsigned int nalign = min_align (align, 32);
2034 switch (BITS_PER_UNIT)
2036 case 8:
2037 switch (mode)
2039 case SFmode:
2040 REAL_VALUE_TO_TARGET_SINGLE (d, l);
2041 assemble_integer (GEN_INT (l), 4, align, 1);
2042 break;
2043 case DFmode:
2044 REAL_VALUE_TO_TARGET_DOUBLE (d, data);
2045 assemble_integer (GEN_INT (data[0]), 4, align, 1);
2046 assemble_integer (GEN_INT (data[1]), 4, nalign, 1);
2047 break;
2048 case XFmode:
2049 REAL_VALUE_TO_TARGET_LONG_DOUBLE (d, data);
2050 assemble_integer (GEN_INT (data[0]), 4, align, 1);
2051 assemble_integer (GEN_INT (data[1]), 4, nalign, 1);
2052 assemble_integer (GEN_INT (data[2]), 4, nalign, 1);
2053 break;
2054 case TFmode:
2055 REAL_VALUE_TO_TARGET_LONG_DOUBLE (d, data);
2056 assemble_integer (GEN_INT (data[0]), 4, align, 1);
2057 assemble_integer (GEN_INT (data[1]), 4, nalign, 1);
2058 assemble_integer (GEN_INT (data[2]), 4, nalign, 1);
2059 assemble_integer (GEN_INT (data[3]), 4, nalign, 1);
2060 break;
2061 default:
2062 abort ();
2064 break;
2066 case 16:
2067 switch (mode)
2069 case HFmode:
2070 REAL_VALUE_TO_TARGET_SINGLE (d, l);
2071 assemble_integer (GEN_INT (l), 2, align, 1);
2072 break;
2073 case TQFmode:
2074 REAL_VALUE_TO_TARGET_DOUBLE (d, data);
2075 assemble_integer (GEN_INT (data[0]), 2, align, 1);
2076 assemble_integer (GEN_INT (data[1]), 1, nalign, 1);
2077 break;
2078 default:
2079 abort ();
2081 break;
2083 case 32:
2084 switch (mode)
2086 case QFmode:
2087 REAL_VALUE_TO_TARGET_SINGLE (d, l);
2088 assemble_integer (GEN_INT (l), 1, align, 1);
2089 break;
2090 case HFmode:
2091 REAL_VALUE_TO_TARGET_DOUBLE (d, data);
2092 assemble_integer (GEN_INT (data[0]), 1, align, 1);
2093 assemble_integer (GEN_INT (data[1]), 1, nalign, 1);
2094 break;
2095 default:
2096 abort ();
2098 break;
2100 default:
2101 abort ();
2105 /* Here we combine duplicate floating constants to make
2106 CONST_DOUBLE rtx's, and force those out to memory when necessary. */
2108 /* Return a CONST_DOUBLE or CONST_INT for a value specified as a pair of ints.
2109 For an integer, I0 is the low-order word and I1 is the high-order word.
2110 For a real number, I0 is the word with the low address
2111 and I1 is the word with the high address. */
2114 immed_double_const (i0, i1, mode)
2115 HOST_WIDE_INT i0, i1;
2116 enum machine_mode mode;
2118 rtx r;
2120 if (GET_MODE_CLASS (mode) == MODE_INT
2121 || GET_MODE_CLASS (mode) == MODE_PARTIAL_INT)
2123 /* We clear out all bits that don't belong in MODE, unless they and our
2124 sign bit are all one. So we get either a reasonable negative value
2125 or a reasonable unsigned value for this mode. */
2126 int width = GET_MODE_BITSIZE (mode);
2127 if (width < HOST_BITS_PER_WIDE_INT
2128 && ((i0 & ((HOST_WIDE_INT) (-1) << (width - 1)))
2129 != ((HOST_WIDE_INT) (-1) << (width - 1))))
2130 i0 &= ((HOST_WIDE_INT) 1 << width) - 1, i1 = 0;
2131 else if (width == HOST_BITS_PER_WIDE_INT
2132 && ! (i1 == ~0 && i0 < 0))
2133 i1 = 0;
2134 else if (width > 2 * HOST_BITS_PER_WIDE_INT)
2135 /* We cannot represent this value as a constant. */
2136 abort ();
2138 /* If this would be an entire word for the target, but is not for
2139 the host, then sign-extend on the host so that the number will look
2140 the same way on the host that it would on the target.
2142 For example, when building a 64 bit alpha hosted 32 bit sparc
2143 targeted compiler, then we want the 32 bit unsigned value -1 to be
2144 represented as a 64 bit value -1, and not as 0x00000000ffffffff.
2145 The later confuses the sparc backend. */
2147 if (width < HOST_BITS_PER_WIDE_INT
2148 && (i0 & ((HOST_WIDE_INT) 1 << (width - 1))))
2149 i0 |= ((HOST_WIDE_INT) (-1) << width);
2151 /* If MODE fits within HOST_BITS_PER_WIDE_INT, always use a CONST_INT.
2153 ??? Strictly speaking, this is wrong if we create a CONST_INT
2154 for a large unsigned constant with the size of MODE being
2155 HOST_BITS_PER_WIDE_INT and later try to interpret that constant in a
2156 wider mode. In that case we will mis-interpret it as a negative
2157 number.
2159 Unfortunately, the only alternative is to make a CONST_DOUBLE
2160 for any constant in any mode if it is an unsigned constant larger
2161 than the maximum signed integer in an int on the host. However,
2162 doing this will break everyone that always expects to see a CONST_INT
2163 for SImode and smaller.
2165 We have always been making CONST_INTs in this case, so nothing new
2166 is being broken. */
2168 if (width <= HOST_BITS_PER_WIDE_INT)
2169 i1 = (i0 < 0) ? ~(HOST_WIDE_INT) 0 : 0;
2171 /* If this integer fits in one word, return a CONST_INT. */
2172 if ((i1 == 0 && i0 >= 0)
2173 || (i1 == ~0 && i0 < 0))
2174 return GEN_INT (i0);
2176 /* We use VOIDmode for integers. */
2177 mode = VOIDmode;
2180 /* Search the chain for an existing CONST_DOUBLE with the right value.
2181 If one is found, return it. */
2182 if (cfun != 0)
2183 for (r = const_double_chain; r; r = CONST_DOUBLE_CHAIN (r))
2184 if (CONST_DOUBLE_LOW (r) == i0 && CONST_DOUBLE_HIGH (r) == i1
2185 && GET_MODE (r) == mode)
2186 return r;
2188 /* No; make a new one and add it to the chain. */
2189 r = gen_rtx_CONST_DOUBLE (mode, i0, i1);
2191 /* Don't touch const_double_chain if not inside any function. */
2192 if (current_function_decl != 0)
2194 CONST_DOUBLE_CHAIN (r) = const_double_chain;
2195 const_double_chain = r;
2198 return r;
2201 /* Return a CONST_DOUBLE for a specified `double' value
2202 and machine mode. */
2205 immed_real_const_1 (d, mode)
2206 REAL_VALUE_TYPE d;
2207 enum machine_mode mode;
2209 rtx r;
2211 /* Detect special cases. Check for NaN first, because some ports
2212 (specifically the i386) do not emit correct ieee-fp code by default, and
2213 thus will generate a core dump here if we pass a NaN to REAL_VALUES_EQUAL
2214 and if REAL_VALUES_EQUAL does a floating point comparison. */
2215 if (! REAL_VALUE_ISNAN (d) && REAL_VALUES_IDENTICAL (dconst0, d))
2216 return CONST0_RTX (mode);
2217 else if (! REAL_VALUE_ISNAN (d) && REAL_VALUES_EQUAL (dconst1, d))
2218 return CONST1_RTX (mode);
2219 else if (! REAL_VALUE_ISNAN (d) && REAL_VALUES_EQUAL (dconst2, d))
2220 return CONST2_RTX (mode);
2222 if (sizeof (REAL_VALUE_TYPE) == sizeof (HOST_WIDE_INT))
2223 return immed_double_const (d.r[0], 0, mode);
2224 if (sizeof (REAL_VALUE_TYPE) == 2 * sizeof (HOST_WIDE_INT))
2225 return immed_double_const (d.r[0], d.r[1], mode);
2227 /* The rest of this function handles the case where
2228 a float value requires more than 2 ints of space.
2229 It will be deleted as dead code on machines that don't need it. */
2231 /* Search the chain for an existing CONST_DOUBLE with the right value.
2232 If one is found, return it. */
2233 if (cfun != 0)
2234 for (r = const_double_chain; r; r = CONST_DOUBLE_CHAIN (r))
2235 if (! memcmp ((char *) &CONST_DOUBLE_LOW (r), (char *) &d, sizeof d)
2236 && GET_MODE (r) == mode)
2237 return r;
2239 /* No; make a new one and add it to the chain.
2241 We may be called by an optimizer which may be discarding any memory
2242 allocated during its processing (such as combine and loop). However,
2243 we will be leaving this constant on the chain, so we cannot tolerate
2244 freed memory. */
2245 r = rtx_alloc (CONST_DOUBLE);
2246 PUT_MODE (r, mode);
2247 memcpy ((char *) &CONST_DOUBLE_LOW (r), (char *) &d, sizeof d);
2249 /* If we aren't inside a function, don't put r on the
2250 const_double_chain. */
2251 if (current_function_decl != 0)
2253 CONST_DOUBLE_CHAIN (r) = const_double_chain;
2254 const_double_chain = r;
2256 else
2257 CONST_DOUBLE_CHAIN (r) = NULL_RTX;
2259 return r;
2262 /* Return a CONST_DOUBLE rtx for a value specified by EXP,
2263 which must be a REAL_CST tree node. */
2266 immed_real_const (exp)
2267 tree exp;
2269 return immed_real_const_1 (TREE_REAL_CST (exp), TYPE_MODE (TREE_TYPE (exp)));
2272 /* At the end of a function, forget the memory-constants
2273 previously made for CONST_DOUBLEs. Mark them as not on real_constant_chain.
2274 Also clear out real_constant_chain and clear out all the chain-pointers. */
2276 void
2277 clear_const_double_mem ()
2279 rtx r, next;
2281 for (r = const_double_chain; r; r = next)
2283 next = CONST_DOUBLE_CHAIN (r);
2284 CONST_DOUBLE_CHAIN (r) = 0;
2286 const_double_chain = 0;
2289 /* Given an expression EXP with a constant value,
2290 reduce it to the sum of an assembler symbol and an integer.
2291 Store them both in the structure *VALUE.
2292 Abort if EXP does not reduce. */
2294 struct addr_const
2296 rtx base;
2297 HOST_WIDE_INT offset;
2300 static void
2301 decode_addr_const (exp, value)
2302 tree exp;
2303 struct addr_const *value;
2305 tree target = TREE_OPERAND (exp, 0);
2306 int offset = 0;
2307 rtx x;
2309 while (1)
2311 if (TREE_CODE (target) == COMPONENT_REF
2312 && host_integerp (byte_position (TREE_OPERAND (target, 1)), 0))
2315 offset += int_byte_position (TREE_OPERAND (target, 1));
2316 target = TREE_OPERAND (target, 0);
2318 else if (TREE_CODE (target) == ARRAY_REF
2319 || TREE_CODE (target) == ARRAY_RANGE_REF)
2321 offset += (tree_low_cst (TYPE_SIZE_UNIT (TREE_TYPE (target)), 1)
2322 * tree_low_cst (TREE_OPERAND (target, 1), 0));
2323 target = TREE_OPERAND (target, 0);
2325 else
2326 break;
2329 switch (TREE_CODE (target))
2331 case VAR_DECL:
2332 case FUNCTION_DECL:
2333 x = DECL_RTL (target);
2334 break;
2336 case LABEL_DECL:
2337 x = gen_rtx_MEM (FUNCTION_MODE,
2338 gen_rtx_LABEL_REF (VOIDmode,
2339 label_rtx (TREE_OPERAND (exp, 0))));
2340 break;
2342 case REAL_CST:
2343 case STRING_CST:
2344 case COMPLEX_CST:
2345 case CONSTRUCTOR:
2346 case INTEGER_CST:
2347 /* This constant should have been output already, but we can't simply
2348 use TREE_CST_RTL since INTEGER_CST doesn't have one. */
2349 x = output_constant_def (target, 1);
2350 break;
2352 default:
2353 abort ();
2356 if (GET_CODE (x) != MEM)
2357 abort ();
2358 x = XEXP (x, 0);
2360 value->base = x;
2361 value->offset = offset;
2364 /* We do RTX_UNSPEC + XINT (blah), so nothing can go after RTX_UNSPEC. */
2365 enum kind { RTX_UNKNOWN, RTX_DOUBLE, RTX_INT, RTX_VECTOR, RTX_UNSPEC };
2366 struct rtx_const
2368 ENUM_BITFIELD(kind) kind : 16;
2369 ENUM_BITFIELD(machine_mode) mode : 16;
2370 union {
2371 REAL_VALUE_TYPE du;
2372 struct addr_const addr;
2373 struct {HOST_WIDE_INT high, low;} di;
2375 /* The max vector size we have is 8 wide. This should be enough. */
2376 HOST_WIDE_INT veclo[16];
2377 HOST_WIDE_INT vechi[16];
2378 } un;
2381 /* Uniquize all constants that appear in memory.
2382 Each constant in memory thus far output is recorded
2383 in `const_hash_table' with a `struct constant_descriptor'
2384 that contains a polish representation of the value of
2385 the constant.
2387 We cannot store the trees in the hash table
2388 because the trees may be temporary. */
2390 struct constant_descriptor
2392 struct constant_descriptor *next;
2393 const char *label;
2394 rtx rtl;
2395 /* Make sure the data is reasonably aligned. */
2396 union
2398 unsigned char contents[1];
2399 #ifdef HAVE_LONG_DOUBLE
2400 long double d;
2401 #else
2402 double d;
2403 #endif
2404 } u;
2407 #define HASHBITS 30
2408 #define MAX_HASH_TABLE 1009
2409 static struct constant_descriptor *const_hash_table[MAX_HASH_TABLE];
2411 /* We maintain a hash table of STRING_CST values. Unless we are asked to force
2412 out a string constant, we defer output of the constants until we know
2413 they are actually used. This will be if something takes its address or if
2414 there is a usage of the string in the RTL of a function. */
2416 #define STRHASH(x) ((hashval_t) ((long) (x) >> 3))
2418 struct deferred_string
2420 const char *label;
2421 tree exp;
2422 int labelno;
2425 static htab_t const_str_htab;
2427 /* Mark a const_hash_table descriptor for GC. */
2429 static void
2430 mark_const_hash_entry (ptr)
2431 void *ptr;
2433 struct constant_descriptor *desc = * (struct constant_descriptor **) ptr;
2435 while (desc)
2437 ggc_mark_rtx (desc->rtl);
2438 desc = desc->next;
2442 /* Mark the hash-table element X (which is really a pointer to an
2443 struct deferred_string *). */
2445 static int
2446 mark_const_str_htab_1 (x, data)
2447 void **x;
2448 void *data ATTRIBUTE_UNUSED;
2450 ggc_mark_tree (((struct deferred_string *) *x)->exp);
2451 return 1;
2454 /* Mark a const_str_htab for GC. */
2456 static void
2457 mark_const_str_htab (htab)
2458 void *htab;
2460 htab_traverse (*((htab_t *) htab), mark_const_str_htab_1, NULL);
2463 /* Returns a hash code for X (which is a really a
2464 struct deferred_string *). */
2466 static hashval_t
2467 const_str_htab_hash (x)
2468 const void *x;
2470 return STRHASH (((const struct deferred_string *) x)->label);
2473 /* Returns non-zero if the value represented by X (which is really a
2474 struct deferred_string *) is the same as that given by Y
2475 (which is really a char *). */
2477 static int
2478 const_str_htab_eq (x, y)
2479 const void *x;
2480 const void *y;
2482 return (((const struct deferred_string *) x)->label == (const char *) y);
2485 /* Delete the hash table entry dfsp. */
2487 static void
2488 const_str_htab_del (dfsp)
2489 void *dfsp;
2491 free (dfsp);
2494 /* Compute a hash code for a constant expression. */
2496 static int
2497 const_hash (exp)
2498 tree exp;
2500 const char *p;
2501 int len, hi, i;
2502 enum tree_code code = TREE_CODE (exp);
2504 /* Either set P and LEN to the address and len of something to hash and
2505 exit the switch or return a value. */
2507 switch (code)
2509 case INTEGER_CST:
2510 p = (char *) &TREE_INT_CST (exp);
2511 len = sizeof TREE_INT_CST (exp);
2512 break;
2514 case REAL_CST:
2515 p = (char *) &TREE_REAL_CST (exp);
2516 len = sizeof TREE_REAL_CST (exp);
2517 break;
2519 case STRING_CST:
2520 p = TREE_STRING_POINTER (exp);
2521 len = TREE_STRING_LENGTH (exp);
2522 break;
2524 case COMPLEX_CST:
2525 return (const_hash (TREE_REALPART (exp)) * 5
2526 + const_hash (TREE_IMAGPART (exp)));
2528 case CONSTRUCTOR:
2529 if (TREE_CODE (TREE_TYPE (exp)) == SET_TYPE)
2531 char *tmp;
2533 len = int_size_in_bytes (TREE_TYPE (exp));
2534 tmp = (char *) alloca (len);
2535 get_set_constructor_bytes (exp, (unsigned char *) tmp, len);
2536 p = tmp;
2537 break;
2539 else
2541 tree link;
2543 /* For record type, include the type in the hashing.
2544 We do not do so for array types
2545 because (1) the sizes of the elements are sufficient
2546 and (2) distinct array types can have the same constructor.
2547 Instead, we include the array size because the constructor could
2548 be shorter. */
2549 if (TREE_CODE (TREE_TYPE (exp)) == RECORD_TYPE)
2550 hi = ((unsigned long) TREE_TYPE (exp) & ((1 << HASHBITS) - 1))
2551 % MAX_HASH_TABLE;
2552 else
2553 hi = ((5 + int_size_in_bytes (TREE_TYPE (exp)))
2554 & ((1 << HASHBITS) - 1)) % MAX_HASH_TABLE;
2556 for (link = CONSTRUCTOR_ELTS (exp); link; link = TREE_CHAIN (link))
2557 if (TREE_VALUE (link))
2559 = (hi * 603 + const_hash (TREE_VALUE (link))) % MAX_HASH_TABLE;
2561 return hi;
2564 case ADDR_EXPR:
2566 struct addr_const value;
2568 decode_addr_const (exp, &value);
2569 if (GET_CODE (value.base) == SYMBOL_REF)
2571 /* Don't hash the address of the SYMBOL_REF;
2572 only use the offset and the symbol name. */
2573 hi = value.offset;
2574 p = XSTR (value.base, 0);
2575 for (i = 0; p[i] != 0; i++)
2576 hi = ((hi * 613) + (unsigned) (p[i]));
2578 else if (GET_CODE (value.base) == LABEL_REF)
2579 hi = value.offset + CODE_LABEL_NUMBER (XEXP (value.base, 0)) * 13;
2580 else
2581 abort ();
2583 hi &= (1 << HASHBITS) - 1;
2584 hi %= MAX_HASH_TABLE;
2586 return hi;
2588 case PLUS_EXPR:
2589 case MINUS_EXPR:
2590 return (const_hash (TREE_OPERAND (exp, 0)) * 9
2591 + const_hash (TREE_OPERAND (exp, 1)));
2593 case NOP_EXPR:
2594 case CONVERT_EXPR:
2595 case NON_LVALUE_EXPR:
2596 return const_hash (TREE_OPERAND (exp, 0)) * 7 + 2;
2598 default:
2599 /* A language specific constant. Just hash the code. */
2600 return (int) code % MAX_HASH_TABLE;
2603 /* Compute hashing function */
2604 hi = len;
2605 for (i = 0; i < len; i++)
2606 hi = ((hi * 613) + (unsigned) (p[i]));
2608 hi &= (1 << HASHBITS) - 1;
2609 hi %= MAX_HASH_TABLE;
2610 return hi;
2613 /* Compare a constant expression EXP with a constant-descriptor DESC.
2614 Return 1 if DESC describes a constant with the same value as EXP. */
2616 static int
2617 compare_constant (exp, desc)
2618 tree exp;
2619 struct constant_descriptor *desc;
2621 return 0 != compare_constant_1 (exp, desc->u.contents);
2624 /* Compare constant expression EXP with a substring P of a constant descriptor.
2625 If they match, return a pointer to the end of the substring matched.
2626 If they do not match, return 0.
2628 Since descriptors are written in polish prefix notation,
2629 this function can be used recursively to test one operand of EXP
2630 against a subdescriptor, and if it succeeds it returns the
2631 address of the subdescriptor for the next operand. */
2633 static const unsigned char *
2634 compare_constant_1 (exp, p)
2635 tree exp;
2636 const unsigned char *p;
2638 const unsigned char *strp;
2639 int len;
2640 enum tree_code code = TREE_CODE (exp);
2642 if (code != (enum tree_code) *p++)
2643 return 0;
2645 /* Either set STRP, P and LEN to pointers and length to compare and exit the
2646 switch, or return the result of the comparison. */
2648 switch (code)
2650 case INTEGER_CST:
2651 /* Integer constants are the same only if the same width of type. */
2652 if (*p++ != TYPE_PRECISION (TREE_TYPE (exp)))
2653 return 0;
2655 strp = (unsigned char *) &TREE_INT_CST (exp);
2656 len = sizeof TREE_INT_CST (exp);
2657 break;
2659 case REAL_CST:
2660 /* Real constants are the same only if the same width of type. */
2661 if (*p++ != TYPE_PRECISION (TREE_TYPE (exp)))
2662 return 0;
2664 strp = (unsigned char *) &TREE_REAL_CST (exp);
2665 len = sizeof TREE_REAL_CST (exp);
2666 break;
2668 case STRING_CST:
2669 if (flag_writable_strings)
2670 return 0;
2672 if ((enum machine_mode) *p++ != TYPE_MODE (TREE_TYPE (exp)))
2673 return 0;
2675 strp = (const unsigned char *) TREE_STRING_POINTER (exp);
2676 len = TREE_STRING_LENGTH (exp);
2677 if (memcmp ((char *) &TREE_STRING_LENGTH (exp), p,
2678 sizeof TREE_STRING_LENGTH (exp)))
2679 return 0;
2681 p += sizeof TREE_STRING_LENGTH (exp);
2682 break;
2684 case COMPLEX_CST:
2685 p = compare_constant_1 (TREE_REALPART (exp), p);
2686 if (p == 0)
2687 return 0;
2689 return compare_constant_1 (TREE_IMAGPART (exp), p);
2691 case CONSTRUCTOR:
2692 if (TREE_CODE (TREE_TYPE (exp)) == SET_TYPE)
2694 int xlen = len = int_size_in_bytes (TREE_TYPE (exp));
2695 unsigned char *tmp = (unsigned char *) alloca (len);
2697 get_set_constructor_bytes (exp, tmp, len);
2698 strp = (unsigned char *) tmp;
2699 if (memcmp ((char *) &xlen, p, sizeof xlen))
2700 return 0;
2702 p += sizeof xlen;
2703 break;
2705 else
2707 tree link;
2708 int length = list_length (CONSTRUCTOR_ELTS (exp));
2709 tree type;
2710 enum machine_mode mode = TYPE_MODE (TREE_TYPE (exp));
2711 int have_purpose = 0;
2713 for (link = CONSTRUCTOR_ELTS (exp); link; link = TREE_CHAIN (link))
2714 if (TREE_PURPOSE (link))
2715 have_purpose = 1;
2717 if (memcmp ((char *) &length, p, sizeof length))
2718 return 0;
2720 p += sizeof length;
2722 /* For record constructors, insist that the types match.
2723 For arrays, just verify both constructors are for arrays.
2724 Then insist that either both or none have any TREE_PURPOSE
2725 values. */
2726 if (TREE_CODE (TREE_TYPE (exp)) == RECORD_TYPE)
2727 type = TREE_TYPE (exp);
2728 else
2729 type = 0;
2731 if (memcmp ((char *) &type, p, sizeof type))
2732 return 0;
2734 if (TREE_CODE (TREE_TYPE (exp)) == ARRAY_TYPE)
2736 if (memcmp ((char *) &mode, p, sizeof mode))
2737 return 0;
2739 p += sizeof mode;
2742 p += sizeof type;
2744 if (memcmp ((char *) &have_purpose, p, sizeof have_purpose))
2745 return 0;
2747 p += sizeof have_purpose;
2749 /* For arrays, insist that the size in bytes match. */
2750 if (TREE_CODE (TREE_TYPE (exp)) == ARRAY_TYPE)
2752 HOST_WIDE_INT size = int_size_in_bytes (TREE_TYPE (exp));
2754 if (memcmp ((char *) &size, p, sizeof size))
2755 return 0;
2757 p += sizeof size;
2760 for (link = CONSTRUCTOR_ELTS (exp); link; link = TREE_CHAIN (link))
2762 if (TREE_VALUE (link))
2764 if ((p = compare_constant_1 (TREE_VALUE (link), p)) == 0)
2765 return 0;
2767 else
2769 tree zero = 0;
2771 if (memcmp ((char *) &zero, p, sizeof zero))
2772 return 0;
2774 p += sizeof zero;
2777 if (TREE_PURPOSE (link)
2778 && TREE_CODE (TREE_PURPOSE (link)) == FIELD_DECL)
2780 if (memcmp ((char *) &TREE_PURPOSE (link), p,
2781 sizeof TREE_PURPOSE (link)))
2782 return 0;
2784 p += sizeof TREE_PURPOSE (link);
2786 else if (TREE_PURPOSE (link))
2788 if ((p = compare_constant_1 (TREE_PURPOSE (link), p)) == 0)
2789 return 0;
2791 else if (have_purpose)
2793 int zero = 0;
2795 if (memcmp ((char *) &zero, p, sizeof zero))
2796 return 0;
2798 p += sizeof zero;
2802 return p;
2805 case ADDR_EXPR:
2807 struct addr_const value;
2809 decode_addr_const (exp, &value);
2810 strp = (unsigned char *) &value.offset;
2811 len = sizeof value.offset;
2812 /* Compare the offset. */
2813 while (--len >= 0)
2814 if (*p++ != *strp++)
2815 return 0;
2817 /* Compare symbol name. */
2818 strp = (const unsigned char *) XSTR (value.base, 0);
2819 len = strlen ((const char *) strp) + 1;
2821 break;
2823 case PLUS_EXPR:
2824 case MINUS_EXPR:
2825 case RANGE_EXPR:
2826 p = compare_constant_1 (TREE_OPERAND (exp, 0), p);
2827 if (p == 0)
2828 return 0;
2830 return compare_constant_1 (TREE_OPERAND (exp, 1), p);
2832 case NOP_EXPR:
2833 case CONVERT_EXPR:
2834 case NON_LVALUE_EXPR:
2835 return compare_constant_1 (TREE_OPERAND (exp, 0), p);
2837 default:
2839 tree new = (*lang_hooks.expand_constant) (exp);
2841 if (new != exp)
2842 return compare_constant_1 (new, p);
2843 else
2844 return 0;
2848 /* Compare constant contents. */
2849 while (--len >= 0)
2850 if (*p++ != *strp++)
2851 return 0;
2853 return p;
2856 /* Construct a constant descriptor for the expression EXP.
2857 It is up to the caller to enter the descriptor in the hash table. */
2859 static struct constant_descriptor *
2860 record_constant (exp)
2861 tree exp;
2863 struct constant_descriptor *next = 0;
2864 char *label = 0;
2865 rtx rtl = 0;
2866 int pad;
2868 /* Make a struct constant_descriptor. The first three pointers will
2869 be filled in later. Here we just leave space for them. */
2871 obstack_grow (&permanent_obstack, (char *) &next, sizeof next);
2872 obstack_grow (&permanent_obstack, (char *) &label, sizeof label);
2873 obstack_grow (&permanent_obstack, (char *) &rtl, sizeof rtl);
2875 /* Align the descriptor for the data payload. */
2876 pad = (offsetof (struct constant_descriptor, u)
2877 - offsetof(struct constant_descriptor, rtl)
2878 - sizeof(next->rtl));
2879 if (pad > 0)
2880 obstack_blank (&permanent_obstack, pad);
2882 record_constant_1 (exp);
2883 return (struct constant_descriptor *) obstack_finish (&permanent_obstack);
2886 /* Add a description of constant expression EXP
2887 to the object growing in `permanent_obstack'.
2888 No need to return its address; the caller will get that
2889 from the obstack when the object is complete. */
2891 static void
2892 record_constant_1 (exp)
2893 tree exp;
2895 const unsigned char *strp;
2896 int len;
2897 enum tree_code code = TREE_CODE (exp);
2899 obstack_1grow (&permanent_obstack, (unsigned int) code);
2901 switch (code)
2903 case INTEGER_CST:
2904 obstack_1grow (&permanent_obstack, TYPE_PRECISION (TREE_TYPE (exp)));
2905 strp = (unsigned char *) &TREE_INT_CST (exp);
2906 len = sizeof TREE_INT_CST (exp);
2907 break;
2909 case REAL_CST:
2910 obstack_1grow (&permanent_obstack, TYPE_PRECISION (TREE_TYPE (exp)));
2911 strp = (unsigned char *) &TREE_REAL_CST (exp);
2912 len = sizeof TREE_REAL_CST (exp);
2913 break;
2915 case STRING_CST:
2916 if (flag_writable_strings)
2917 return;
2919 obstack_1grow (&permanent_obstack, TYPE_MODE (TREE_TYPE (exp)));
2920 strp = (const unsigned char *) TREE_STRING_POINTER (exp);
2921 len = TREE_STRING_LENGTH (exp);
2922 obstack_grow (&permanent_obstack, (char *) &TREE_STRING_LENGTH (exp),
2923 sizeof TREE_STRING_LENGTH (exp));
2924 break;
2926 case COMPLEX_CST:
2927 record_constant_1 (TREE_REALPART (exp));
2928 record_constant_1 (TREE_IMAGPART (exp));
2929 return;
2931 case CONSTRUCTOR:
2932 if (TREE_CODE (TREE_TYPE (exp)) == SET_TYPE)
2934 int nbytes = int_size_in_bytes (TREE_TYPE (exp));
2935 obstack_grow (&permanent_obstack, &nbytes, sizeof (nbytes));
2936 obstack_blank (&permanent_obstack, nbytes);
2937 get_set_constructor_bytes
2938 (exp, (unsigned char *) permanent_obstack.next_free-nbytes,
2939 nbytes);
2940 return;
2942 else
2944 tree link;
2945 int length = list_length (CONSTRUCTOR_ELTS (exp));
2946 enum machine_mode mode = TYPE_MODE (TREE_TYPE (exp));
2947 tree type;
2948 int have_purpose = 0;
2950 for (link = CONSTRUCTOR_ELTS (exp); link; link = TREE_CHAIN (link))
2951 if (TREE_PURPOSE (link))
2952 have_purpose = 1;
2954 obstack_grow (&permanent_obstack, (char *) &length, sizeof length);
2956 /* For record constructors, insist that the types match.
2957 For arrays, just verify both constructors are for arrays
2958 of the same mode. Then insist that either both or none
2959 have any TREE_PURPOSE values. */
2960 if (TREE_CODE (TREE_TYPE (exp)) == RECORD_TYPE)
2961 type = TREE_TYPE (exp);
2962 else
2963 type = 0;
2965 obstack_grow (&permanent_obstack, (char *) &type, sizeof type);
2966 if (TREE_CODE (TREE_TYPE (exp)) == ARRAY_TYPE)
2967 obstack_grow (&permanent_obstack, &mode, sizeof mode);
2969 obstack_grow (&permanent_obstack, (char *) &have_purpose,
2970 sizeof have_purpose);
2972 /* For arrays, insist that the size in bytes match. */
2973 if (TREE_CODE (TREE_TYPE (exp)) == ARRAY_TYPE)
2975 HOST_WIDE_INT size = int_size_in_bytes (TREE_TYPE (exp));
2976 obstack_grow (&permanent_obstack, (char *) &size, sizeof size);
2979 for (link = CONSTRUCTOR_ELTS (exp); link; link = TREE_CHAIN (link))
2981 if (TREE_VALUE (link))
2982 record_constant_1 (TREE_VALUE (link));
2983 else
2985 tree zero = 0;
2987 obstack_grow (&permanent_obstack,
2988 (char *) &zero, sizeof zero);
2991 if (TREE_PURPOSE (link)
2992 && TREE_CODE (TREE_PURPOSE (link)) == FIELD_DECL)
2993 obstack_grow (&permanent_obstack,
2994 (char *) &TREE_PURPOSE (link),
2995 sizeof TREE_PURPOSE (link));
2996 else if (TREE_PURPOSE (link))
2997 record_constant_1 (TREE_PURPOSE (link));
2998 else if (have_purpose)
3000 int zero = 0;
3002 obstack_grow (&permanent_obstack,
3003 (char *) &zero, sizeof zero);
3007 return;
3009 case ADDR_EXPR:
3011 struct addr_const value;
3013 decode_addr_const (exp, &value);
3014 /* Record the offset. */
3015 obstack_grow (&permanent_obstack,
3016 (char *) &value.offset, sizeof value.offset);
3018 switch (GET_CODE (value.base))
3020 case SYMBOL_REF:
3021 /* Record the symbol name. */
3022 obstack_grow (&permanent_obstack, XSTR (value.base, 0),
3023 strlen (XSTR (value.base, 0)) + 1);
3024 break;
3025 case LABEL_REF:
3026 /* Record the address of the CODE_LABEL. It may not have
3027 been emitted yet, so it's UID may be zero. But pointer
3028 identity is good enough. */
3029 obstack_grow (&permanent_obstack, &XEXP (value.base, 0),
3030 sizeof (rtx));
3031 break;
3032 default:
3033 abort ();
3036 return;
3038 case PLUS_EXPR:
3039 case MINUS_EXPR:
3040 case RANGE_EXPR:
3041 record_constant_1 (TREE_OPERAND (exp, 0));
3042 record_constant_1 (TREE_OPERAND (exp, 1));
3043 return;
3045 case NOP_EXPR:
3046 case CONVERT_EXPR:
3047 case NON_LVALUE_EXPR:
3048 record_constant_1 (TREE_OPERAND (exp, 0));
3049 return;
3051 default:
3053 tree new = (*lang_hooks.expand_constant) (exp);
3055 if (new != exp)
3056 record_constant_1 (new);
3057 return;
3061 /* Record constant contents. */
3062 obstack_grow (&permanent_obstack, strp, len);
3065 /* Record a list of constant expressions that were passed to
3066 output_constant_def but that could not be output right away. */
3068 struct deferred_constant
3070 struct deferred_constant *next;
3071 tree exp;
3072 int reloc;
3073 int labelno;
3076 static struct deferred_constant *deferred_constants;
3078 /* Another list of constants which should be output after the
3079 function. */
3080 static struct deferred_constant *after_function_constants;
3082 /* Nonzero means defer output of addressed subconstants
3083 (i.e., those for which output_constant_def is called.) */
3084 static int defer_addressed_constants_flag;
3086 /* Start deferring output of subconstants. */
3088 void
3089 defer_addressed_constants ()
3091 defer_addressed_constants_flag++;
3094 /* Stop deferring output of subconstants,
3095 and output now all those that have been deferred. */
3097 void
3098 output_deferred_addressed_constants ()
3100 struct deferred_constant *p, *next;
3102 defer_addressed_constants_flag--;
3104 if (defer_addressed_constants_flag > 0)
3105 return;
3107 for (p = deferred_constants; p; p = next)
3109 output_constant_def_contents (p->exp, p->reloc, p->labelno);
3110 next = p->next;
3111 free (p);
3114 deferred_constants = 0;
3117 /* Output any constants which should appear after a function. */
3119 static void
3120 output_after_function_constants ()
3122 struct deferred_constant *p, *next;
3124 for (p = after_function_constants; p; p = next)
3126 output_constant_def_contents (p->exp, p->reloc, p->labelno);
3127 next = p->next;
3128 free (p);
3131 after_function_constants = 0;
3134 /* Make a copy of the whole tree structure for a constant.
3135 This handles the same types of nodes that compare_constant
3136 and record_constant handle. */
3138 static tree
3139 copy_constant (exp)
3140 tree exp;
3142 switch (TREE_CODE (exp))
3144 case ADDR_EXPR:
3145 /* For ADDR_EXPR, we do not want to copy the decl whose address
3146 is requested. We do want to copy constants though. */
3147 if (TREE_CODE_CLASS (TREE_CODE (TREE_OPERAND (exp, 0))) == 'c')
3148 return build1 (TREE_CODE (exp), TREE_TYPE (exp),
3149 copy_constant (TREE_OPERAND (exp, 0)));
3150 else
3151 return copy_node (exp);
3153 case INTEGER_CST:
3154 case REAL_CST:
3155 case STRING_CST:
3156 return copy_node (exp);
3158 case COMPLEX_CST:
3159 return build_complex (TREE_TYPE (exp),
3160 copy_constant (TREE_REALPART (exp)),
3161 copy_constant (TREE_IMAGPART (exp)));
3163 case PLUS_EXPR:
3164 case MINUS_EXPR:
3165 return build (TREE_CODE (exp), TREE_TYPE (exp),
3166 copy_constant (TREE_OPERAND (exp, 0)),
3167 copy_constant (TREE_OPERAND (exp, 1)));
3169 case NOP_EXPR:
3170 case CONVERT_EXPR:
3171 case NON_LVALUE_EXPR:
3172 return build1 (TREE_CODE (exp), TREE_TYPE (exp),
3173 copy_constant (TREE_OPERAND (exp, 0)));
3175 case CONSTRUCTOR:
3177 tree copy = copy_node (exp);
3178 tree list = copy_list (CONSTRUCTOR_ELTS (exp));
3179 tree tail;
3181 CONSTRUCTOR_ELTS (copy) = list;
3182 for (tail = list; tail; tail = TREE_CHAIN (tail))
3183 TREE_VALUE (tail) = copy_constant (TREE_VALUE (tail));
3184 if (TREE_CODE (TREE_TYPE (exp)) == SET_TYPE)
3185 for (tail = list; tail; tail = TREE_CHAIN (tail))
3186 TREE_PURPOSE (tail) = copy_constant (TREE_PURPOSE (tail));
3188 return copy;
3191 default:
3192 abort ();
3196 /* Return an rtx representing a reference to constant data in memory
3197 for the constant expression EXP.
3199 If assembler code for such a constant has already been output,
3200 return an rtx to refer to it.
3201 Otherwise, output such a constant in memory (or defer it for later)
3202 and generate an rtx for it.
3204 If DEFER is non-zero, the output of string constants can be deferred
3205 and output only if referenced in the function after all optimizations.
3207 The TREE_CST_RTL of EXP is set up to point to that rtx.
3208 The const_hash_table records which constants already have label strings. */
3211 output_constant_def (exp, defer)
3212 tree exp;
3213 int defer;
3215 int hash;
3216 struct constant_descriptor *desc;
3217 struct deferred_string **defstr;
3218 char label[256];
3219 int reloc;
3220 int found = 1;
3221 int after_function = 0;
3222 int labelno = -1;
3223 rtx rtl;
3225 /* We can't just use the saved RTL if this is a defererred string constant
3226 and we are not to defer anymode. */
3227 if (TREE_CODE (exp) != INTEGER_CST && TREE_CST_RTL (exp)
3228 && (defer || !STRING_POOL_ADDRESS_P (XEXP (TREE_CST_RTL (exp), 0))))
3229 return TREE_CST_RTL (exp);
3231 /* Make sure any other constants whose addresses appear in EXP
3232 are assigned label numbers. */
3234 reloc = output_addressed_constants (exp);
3236 /* Compute hash code of EXP. Search the descriptors for that hash code
3237 to see if any of them describes EXP. If yes, the descriptor records
3238 the label number already assigned. */
3240 hash = const_hash (exp) % MAX_HASH_TABLE;
3242 for (desc = const_hash_table[hash]; desc; desc = desc->next)
3243 if (compare_constant (exp, desc))
3244 break;
3246 if (desc == 0)
3248 /* No constant equal to EXP is known to have been output.
3249 Make a constant descriptor to enter EXP in the hash table.
3250 Assign the label number and record it in the descriptor for
3251 future calls to this function to find. */
3253 /* Create a string containing the label name, in LABEL. */
3254 labelno = const_labelno++;
3255 ASM_GENERATE_INTERNAL_LABEL (label, "LC", labelno);
3257 desc = record_constant (exp);
3258 desc->next = const_hash_table[hash];
3259 desc->label = ggc_strdup (label);
3260 const_hash_table[hash] = desc;
3262 /* We have a symbol name; construct the SYMBOL_REF and the MEM. */
3263 rtl = desc->rtl
3264 = gen_rtx_MEM (TYPE_MODE (TREE_TYPE (exp)),
3265 gen_rtx_SYMBOL_REF (Pmode, desc->label));
3267 set_mem_attributes (rtl, exp, 1);
3268 set_mem_alias_set (rtl, 0);
3269 set_mem_alias_set (rtl, const_alias_set);
3271 found = 0;
3273 else
3274 rtl = desc->rtl;
3276 if (TREE_CODE (exp) != INTEGER_CST)
3277 TREE_CST_RTL (exp) = rtl;
3279 /* Optionally set flags or add text to the name to record information
3280 such as that it is a function name. If the name is changed, the macro
3281 ASM_OUTPUT_LABELREF will have to know how to strip this information. */
3282 #ifdef ENCODE_SECTION_INFO
3283 /* A previously-processed constant would already have section info
3284 encoded in it. */
3285 if (! found)
3287 if (TREE_CODE (exp) == INTEGER_CST)
3288 ENCODE_SECTION_INFO (exp, true);
3290 desc->rtl = rtl;
3291 desc->label = XSTR (XEXP (desc->rtl, 0), 0);
3293 #endif
3295 #ifdef CONSTANT_AFTER_FUNCTION_P
3296 if (current_function_decl != 0
3297 && CONSTANT_AFTER_FUNCTION_P (exp))
3298 after_function = 1;
3299 #endif
3301 if (found
3302 && STRING_POOL_ADDRESS_P (XEXP (rtl, 0))
3303 && (!defer || defer_addressed_constants_flag || after_function))
3305 defstr = (struct deferred_string **)
3306 htab_find_slot_with_hash (const_str_htab, desc->label,
3307 STRHASH (desc->label), NO_INSERT);
3308 if (defstr)
3310 /* If the string is currently deferred but we need to output it now,
3311 remove it from deferred string hash table. */
3312 found = 0;
3313 labelno = (*defstr)->labelno;
3314 STRING_POOL_ADDRESS_P (XEXP (rtl, 0)) = 0;
3315 htab_clear_slot (const_str_htab, (void **) defstr);
3319 /* If this is the first time we've seen this particular constant,
3320 output it (or defer its output for later). */
3321 if (! found)
3323 if (defer_addressed_constants_flag || after_function)
3325 struct deferred_constant *p
3326 = (struct deferred_constant *)
3327 xmalloc (sizeof (struct deferred_constant));
3329 p->exp = copy_constant (exp);
3330 p->reloc = reloc;
3331 p->labelno = labelno;
3332 if (after_function)
3334 p->next = after_function_constants;
3335 after_function_constants = p;
3337 else
3339 p->next = deferred_constants;
3340 deferred_constants = p;
3343 else
3345 /* Do no output if -fsyntax-only. */
3346 if (! flag_syntax_only)
3348 if (TREE_CODE (exp) != STRING_CST
3349 || !defer
3350 || flag_writable_strings
3351 || (defstr = (struct deferred_string **)
3352 htab_find_slot_with_hash (const_str_htab,
3353 desc->label,
3354 STRHASH (desc->label),
3355 INSERT)) == NULL)
3356 output_constant_def_contents (exp, reloc, labelno);
3357 else
3359 struct deferred_string *p;
3361 p = (struct deferred_string *)
3362 xmalloc (sizeof (struct deferred_string));
3364 p->exp = copy_constant (exp);
3365 p->label = desc->label;
3366 p->labelno = labelno;
3367 *defstr = p;
3368 STRING_POOL_ADDRESS_P (XEXP (rtl, 0)) = 1;
3374 return rtl;
3377 /* Now output assembler code to define the label for EXP,
3378 and follow it with the data of EXP. */
3380 static void
3381 output_constant_def_contents (exp, reloc, labelno)
3382 tree exp;
3383 int reloc;
3384 int labelno;
3386 int align;
3388 /* Align the location counter as required by EXP's data type. */
3389 align = TYPE_ALIGN (TREE_TYPE (exp));
3390 #ifdef CONSTANT_ALIGNMENT
3391 align = CONSTANT_ALIGNMENT (exp, align);
3392 #endif
3394 if (IN_NAMED_SECTION (exp))
3395 named_section (exp, NULL, reloc);
3396 else
3398 /* First switch to text section, except for writable strings. */
3399 #ifdef SELECT_SECTION
3400 SELECT_SECTION (exp, reloc, align);
3401 #else
3402 if (((TREE_CODE (exp) == STRING_CST) && flag_writable_strings)
3403 || (flag_pic && reloc))
3404 data_section ();
3405 else
3406 readonly_data_section ();
3407 #endif
3410 if (align > BITS_PER_UNIT)
3412 ASM_OUTPUT_ALIGN (asm_out_file, floor_log2 (align / BITS_PER_UNIT));
3415 /* Output the label itself. */
3416 ASM_OUTPUT_INTERNAL_LABEL (asm_out_file, "LC", labelno);
3418 /* Output the value of EXP. */
3419 output_constant (exp,
3420 (TREE_CODE (exp) == STRING_CST
3421 ? MAX (TREE_STRING_LENGTH (exp),
3422 int_size_in_bytes (TREE_TYPE (exp)))
3423 : int_size_in_bytes (TREE_TYPE (exp))),
3424 align);
3428 /* Structure to represent sufficient information about a constant so that
3429 it can be output when the constant pool is output, so that function
3430 integration can be done, and to simplify handling on machines that reference
3431 constant pool as base+displacement. */
3433 struct pool_constant
3435 struct constant_descriptor *desc;
3436 struct pool_constant *next, *next_sym;
3437 rtx constant;
3438 enum machine_mode mode;
3439 int labelno;
3440 unsigned int align;
3441 HOST_WIDE_INT offset;
3442 int mark;
3445 /* Hash code for a SYMBOL_REF with CONSTANT_POOL_ADDRESS_P true.
3446 The argument is XSTR (... , 0) */
3448 #define SYMHASH(LABEL) \
3449 ((((unsigned long) (LABEL)) & ((1 << HASHBITS) - 1)) % MAX_RTX_HASH_TABLE)
3451 /* Initialize constant pool hashing for a new function. */
3453 void
3454 init_varasm_status (f)
3455 struct function *f;
3457 struct varasm_status *p;
3458 p = (struct varasm_status *) xmalloc (sizeof (struct varasm_status));
3459 f->varasm = p;
3460 p->x_const_rtx_hash_table
3461 = ((struct constant_descriptor **)
3462 xcalloc (MAX_RTX_HASH_TABLE, sizeof (struct constant_descriptor *)));
3463 p->x_const_rtx_sym_hash_table
3464 = ((struct pool_constant **)
3465 xcalloc (MAX_RTX_HASH_TABLE, sizeof (struct pool_constant *)));
3467 p->x_first_pool = p->x_last_pool = 0;
3468 p->x_pool_offset = 0;
3469 p->x_const_double_chain = 0;
3472 /* Mark PC for GC. */
3474 static void
3475 mark_pool_constant (pc)
3476 struct pool_constant *pc;
3478 while (pc)
3480 ggc_mark (pc);
3481 ggc_mark_rtx (pc->constant);
3482 ggc_mark_rtx (pc->desc->rtl);
3483 pc = pc->next;
3487 /* Mark P for GC. */
3489 void
3490 mark_varasm_status (p)
3491 struct varasm_status *p;
3493 if (p == NULL)
3494 return;
3496 mark_pool_constant (p->x_first_pool);
3497 ggc_mark_rtx (p->x_const_double_chain);
3500 /* Clear out all parts of the state in F that can safely be discarded
3501 after the function has been compiled, to let garbage collection
3502 reclaim the memory. */
3504 void
3505 free_varasm_status (f)
3506 struct function *f;
3508 struct varasm_status *p;
3509 int i;
3511 p = f->varasm;
3513 /* Clear out the hash tables. */
3514 for (i = 0; i < MAX_RTX_HASH_TABLE; ++i)
3516 struct constant_descriptor *cd;
3518 cd = p->x_const_rtx_hash_table[i];
3519 while (cd)
3521 struct constant_descriptor *next = cd->next;
3523 free (cd);
3524 cd = next;
3528 free (p->x_const_rtx_hash_table);
3529 free (p->x_const_rtx_sym_hash_table);
3530 free (p);
3532 f->varasm = NULL;
3536 /* Express an rtx for a constant integer (perhaps symbolic)
3537 as the sum of a symbol or label plus an explicit integer.
3538 They are stored into VALUE. */
3540 static void
3541 decode_rtx_const (mode, x, value)
3542 enum machine_mode mode;
3543 rtx x;
3544 struct rtx_const *value;
3546 /* Clear the whole structure, including any gaps. */
3547 memset (value, 0, sizeof (struct rtx_const));
3549 value->kind = RTX_INT; /* Most usual kind. */
3550 value->mode = mode;
3552 switch (GET_CODE (x))
3554 case CONST_DOUBLE:
3555 value->kind = RTX_DOUBLE;
3556 if (GET_MODE (x) != VOIDmode)
3558 value->mode = GET_MODE (x);
3559 REAL_VALUE_FROM_CONST_DOUBLE (value->un.du, x);
3561 else
3563 value->un.di.low = CONST_DOUBLE_LOW (x);
3564 value->un.di.high = CONST_DOUBLE_HIGH (x);
3566 break;
3568 case CONST_VECTOR:
3570 int units, i;
3571 rtx elt;
3573 units = CONST_VECTOR_NUNITS (x);
3574 value->kind = RTX_VECTOR;
3575 value->mode = mode;
3577 for (i = 0; i < units; ++i)
3579 elt = CONST_VECTOR_ELT (x, i);
3580 if (GET_MODE_CLASS (mode) == MODE_VECTOR_INT)
3582 value->un.veclo[i] = (HOST_WIDE_INT) INTVAL (elt);
3583 value->un.vechi[i] = 0;
3585 else if (GET_MODE_CLASS (mode) == MODE_VECTOR_FLOAT)
3587 value->un.veclo[i] = (HOST_WIDE_INT) CONST_DOUBLE_LOW (elt);
3588 value->un.vechi[i] = (HOST_WIDE_INT) CONST_DOUBLE_HIGH (elt);
3590 else
3591 abort ();
3594 break;
3596 case CONST_INT:
3597 value->un.addr.offset = INTVAL (x);
3598 break;
3600 case SYMBOL_REF:
3601 case LABEL_REF:
3602 case PC:
3603 value->un.addr.base = x;
3604 break;
3606 case CONST:
3607 x = XEXP (x, 0);
3608 if (GET_CODE (x) == PLUS && GET_CODE (XEXP (x, 1)) == CONST_INT)
3610 value->un.addr.base = XEXP (x, 0);
3611 value->un.addr.offset = INTVAL (XEXP (x, 1));
3613 else if (GET_CODE (x) == MINUS && GET_CODE (XEXP (x, 1)) == CONST_INT)
3615 value->un.addr.base = XEXP (x, 0);
3616 value->un.addr.offset = - INTVAL (XEXP (x, 1));
3618 else
3620 value->un.addr.base = x;
3621 value->un.addr.offset = 0;
3623 break;
3625 default:
3626 value->kind = RTX_UNKNOWN;
3627 break;
3630 if (value->kind == RTX_INT && value->un.addr.base != 0
3631 && GET_CODE (value->un.addr.base) == UNSPEC)
3633 /* For a simple UNSPEC, the base is set to the
3634 operand, the kind field is set to the index of
3635 the unspec expression.
3636 Together with the code below, in case that
3637 the operand is a SYMBOL_REF or LABEL_REF,
3638 the address of the string or the code_label
3639 is taken as base. */
3640 if (XVECLEN (value->un.addr.base, 0) == 1)
3642 value->kind = RTX_UNSPEC + XINT (value->un.addr.base, 1);
3643 value->un.addr.base = XVECEXP (value->un.addr.base, 0, 0);
3647 if (value->kind > RTX_DOUBLE && value->un.addr.base != 0)
3648 switch (GET_CODE (value->un.addr.base))
3650 case SYMBOL_REF:
3651 /* Use the string's address, not the SYMBOL_REF's address,
3652 for the sake of addresses of library routines. */
3653 value->un.addr.base = (rtx) XSTR (value->un.addr.base, 0);
3654 break;
3656 case LABEL_REF:
3657 /* For a LABEL_REF, compare labels. */
3658 value->un.addr.base = XEXP (value->un.addr.base, 0);
3660 default:
3661 break;
3665 /* Given a MINUS expression, simplify it if both sides
3666 include the same symbol. */
3669 simplify_subtraction (x)
3670 rtx x;
3672 struct rtx_const val0, val1;
3674 decode_rtx_const (GET_MODE (x), XEXP (x, 0), &val0);
3675 decode_rtx_const (GET_MODE (x), XEXP (x, 1), &val1);
3677 if (val0.kind > RTX_DOUBLE
3678 && val0.kind == val1.kind
3679 && val0.un.addr.base == val1.un.addr.base)
3680 return GEN_INT (val0.un.addr.offset - val1.un.addr.offset);
3682 return x;
3685 /* Compute a hash code for a constant RTL expression. */
3687 static int
3688 const_hash_rtx (mode, x)
3689 enum machine_mode mode;
3690 rtx x;
3692 int hi;
3693 size_t i;
3695 struct rtx_const value;
3696 decode_rtx_const (mode, x, &value);
3698 /* Compute hashing function */
3699 hi = 0;
3700 for (i = 0; i < sizeof value / sizeof (int); i++)
3701 hi += ((int *) &value)[i];
3703 hi &= (1 << HASHBITS) - 1;
3704 hi %= MAX_RTX_HASH_TABLE;
3705 return hi;
3708 /* Compare a constant rtl object X with a constant-descriptor DESC.
3709 Return 1 if DESC describes a constant with the same value as X. */
3711 static int
3712 compare_constant_rtx (mode, x, desc)
3713 enum machine_mode mode;
3714 rtx x;
3715 struct constant_descriptor *desc;
3717 int *p = (int *) desc->u.contents;
3718 int *strp;
3719 int len;
3720 struct rtx_const value;
3722 decode_rtx_const (mode, x, &value);
3723 strp = (int *) &value;
3724 len = sizeof value / sizeof (int);
3726 /* Compare constant contents. */
3727 while (--len >= 0)
3728 if (*p++ != *strp++)
3729 return 0;
3731 return 1;
3734 /* Construct a constant descriptor for the rtl-expression X.
3735 It is up to the caller to enter the descriptor in the hash table. */
3737 static struct constant_descriptor *
3738 record_constant_rtx (mode, x)
3739 enum machine_mode mode;
3740 rtx x;
3742 struct constant_descriptor *ptr;
3744 ptr = ((struct constant_descriptor *)
3745 xcalloc (1, (offsetof (struct constant_descriptor, u)
3746 + sizeof (struct rtx_const))));
3747 decode_rtx_const (mode, x, (struct rtx_const *) ptr->u.contents);
3749 return ptr;
3752 /* Given a constant rtx X, return a MEM for the location in memory at which
3753 this constant has been placed. Return 0 if it not has been placed yet. */
3756 mem_for_const_double (x)
3757 rtx x;
3759 enum machine_mode mode = GET_MODE (x);
3760 struct constant_descriptor *desc;
3762 for (desc = const_rtx_hash_table[const_hash_rtx (mode, x)]; desc;
3763 desc = desc->next)
3764 if (compare_constant_rtx (mode, x, desc))
3765 return desc->rtl;
3767 return 0;
3770 /* Given a constant rtx X, make (or find) a memory constant for its value
3771 and return a MEM rtx to refer to it in memory. */
3774 force_const_mem (mode, x)
3775 enum machine_mode mode;
3776 rtx x;
3778 int hash;
3779 struct constant_descriptor *desc;
3780 char label[256];
3781 rtx def;
3782 struct pool_constant *pool;
3783 unsigned int align;
3785 /* Compute hash code of X. Search the descriptors for that hash code
3786 to see if any of them describes X. If yes, we have an rtx to use. */
3787 hash = const_hash_rtx (mode, x);
3788 for (desc = const_rtx_hash_table[hash]; desc; desc = desc->next)
3789 if (compare_constant_rtx (mode, x, desc))
3790 return desc->rtl;
3792 /* No constant equal to X is known to have been output.
3793 Make a constant descriptor to enter X in the hash table
3794 and make a MEM for it. */
3795 desc = record_constant_rtx (mode, x);
3796 desc->next = const_rtx_hash_table[hash];
3797 const_rtx_hash_table[hash] = desc;
3799 /* Align the location counter as required by EXP's data type. */
3800 align = GET_MODE_ALIGNMENT (mode == VOIDmode ? word_mode : mode);
3801 #ifdef CONSTANT_ALIGNMENT
3802 align = CONSTANT_ALIGNMENT (make_tree ((*lang_hooks.types.type_for_mode)
3803 (mode, 0), x), align);
3804 #endif
3806 pool_offset += (align / BITS_PER_UNIT) - 1;
3807 pool_offset &= ~ ((align / BITS_PER_UNIT) - 1);
3809 if (GET_CODE (x) == LABEL_REF)
3810 LABEL_PRESERVE_P (XEXP (x, 0)) = 1;
3812 /* Allocate a pool constant descriptor, fill it in, and chain it in. */
3813 pool = (struct pool_constant *) ggc_alloc (sizeof (struct pool_constant));
3814 pool->desc = desc;
3815 pool->constant = x;
3816 pool->mode = mode;
3817 pool->labelno = const_labelno;
3818 pool->align = align;
3819 pool->offset = pool_offset;
3820 pool->mark = 1;
3821 pool->next = 0;
3823 if (last_pool == 0)
3824 first_pool = pool;
3825 else
3826 last_pool->next = pool;
3828 last_pool = pool;
3829 pool_offset += GET_MODE_SIZE (mode);
3831 /* Create a string containing the label name, in LABEL. */
3832 ASM_GENERATE_INTERNAL_LABEL (label, "LC", const_labelno);
3834 ++const_labelno;
3836 /* Construct the SYMBOL_REF and the MEM. */
3838 pool->desc->rtl = def
3839 = gen_rtx_MEM (mode, gen_rtx_SYMBOL_REF (Pmode, ggc_strdup (label)));
3840 set_mem_alias_set (def, const_alias_set);
3841 set_mem_attributes (def, (*lang_hooks.types.type_for_mode) (mode, 0), 1);
3842 RTX_UNCHANGING_P (def) = 1;
3844 /* Add label to symbol hash table. */
3845 hash = SYMHASH (XSTR (XEXP (def, 0), 0));
3846 pool->next_sym = const_rtx_sym_hash_table[hash];
3847 const_rtx_sym_hash_table[hash] = pool;
3849 /* Mark the symbol_ref as belonging to this constants pool. */
3850 CONSTANT_POOL_ADDRESS_P (XEXP (def, 0)) = 1;
3851 current_function_uses_const_pool = 1;
3853 return def;
3856 /* Given a SYMBOL_REF with CONSTANT_POOL_ADDRESS_P true, return a pointer to
3857 the corresponding pool_constant structure. */
3859 static struct pool_constant *
3860 find_pool_constant (f, addr)
3861 struct function *f;
3862 rtx addr;
3864 struct pool_constant *pool;
3865 const char *label = XSTR (addr, 0);
3867 for (pool = f->varasm->x_const_rtx_sym_hash_table[SYMHASH (label)]; pool;
3868 pool = pool->next_sym)
3869 if (XSTR (XEXP (pool->desc->rtl, 0), 0) == label)
3870 return pool;
3872 abort ();
3875 /* Given a constant pool SYMBOL_REF, return the corresponding constant. */
3878 get_pool_constant (addr)
3879 rtx addr;
3881 return (find_pool_constant (cfun, addr))->constant;
3884 /* Given a constant pool SYMBOL_REF, return the corresponding constant
3885 and whether it has been output or not. */
3888 get_pool_constant_mark (addr, pmarked)
3889 rtx addr;
3890 bool *pmarked;
3892 struct pool_constant *pool = find_pool_constant (cfun, addr);
3893 *pmarked = (pool->mark != 0);
3894 return pool->constant;
3897 /* Likewise, but for the constant pool of a specific function. */
3900 get_pool_constant_for_function (f, addr)
3901 struct function *f;
3902 rtx addr;
3904 return (find_pool_constant (f, addr))->constant;
3907 /* Similar, return the mode. */
3909 enum machine_mode
3910 get_pool_mode (addr)
3911 rtx addr;
3913 return (find_pool_constant (cfun, addr))->mode;
3916 enum machine_mode
3917 get_pool_mode_for_function (f, addr)
3918 struct function *f;
3919 rtx addr;
3921 return (find_pool_constant (f, addr))->mode;
3924 /* Similar, return the offset in the constant pool. */
3927 get_pool_offset (addr)
3928 rtx addr;
3930 return (find_pool_constant (cfun, addr))->offset;
3933 /* Return the size of the constant pool. */
3936 get_pool_size ()
3938 return pool_offset;
3941 /* Write all the constants in the constant pool. */
3943 void
3944 output_constant_pool (fnname, fndecl)
3945 const char *fnname ATTRIBUTE_UNUSED;
3946 tree fndecl ATTRIBUTE_UNUSED;
3948 struct pool_constant *pool;
3949 rtx x;
3950 REAL_VALUE_TYPE r;
3952 /* It is possible for gcc to call force_const_mem and then to later
3953 discard the instructions which refer to the constant. In such a
3954 case we do not need to output the constant. */
3955 mark_constant_pool ();
3957 #ifdef ASM_OUTPUT_POOL_PROLOGUE
3958 ASM_OUTPUT_POOL_PROLOGUE (asm_out_file, fnname, fndecl, pool_offset);
3959 #endif
3961 for (pool = first_pool; pool; pool = pool->next)
3963 rtx tmp;
3965 x = pool->constant;
3967 if (! pool->mark)
3968 continue;
3970 /* See if X is a LABEL_REF (or a CONST referring to a LABEL_REF)
3971 whose CODE_LABEL has been deleted. This can occur if a jump table
3972 is eliminated by optimization. If so, write a constant of zero
3973 instead. Note that this can also happen by turning the
3974 CODE_LABEL into a NOTE. */
3975 /* ??? This seems completely and utterly wrong. Certainly it's
3976 not true for NOTE_INSN_DELETED_LABEL, but I disbelieve proper
3977 functioning even with INSN_DELETED_P and friends. */
3979 tmp = x;
3980 switch (GET_CODE (x))
3982 case CONST:
3983 if (GET_CODE (XEXP (x, 0)) != PLUS
3984 || GET_CODE (XEXP (XEXP (x, 0), 0)) != LABEL_REF)
3985 break;
3986 tmp = XEXP (XEXP (x, 0), 0);
3987 /* FALLTHRU */
3989 case LABEL_REF:
3990 tmp = XEXP (x, 0);
3991 if (INSN_DELETED_P (tmp)
3992 || (GET_CODE (tmp) == NOTE
3993 && NOTE_LINE_NUMBER (tmp) == NOTE_INSN_DELETED))
3995 abort ();
3996 x = const0_rtx;
3998 break;
4000 default:
4001 break;
4004 /* First switch to correct section. */
4005 #ifdef SELECT_RTX_SECTION
4006 SELECT_RTX_SECTION (pool->mode, x, pool->align);
4007 #else
4008 readonly_data_section ();
4009 #endif
4011 #ifdef ASM_OUTPUT_SPECIAL_POOL_ENTRY
4012 ASM_OUTPUT_SPECIAL_POOL_ENTRY (asm_out_file, x, pool->mode,
4013 pool->align, pool->labelno, done);
4014 #endif
4016 assemble_align (pool->align);
4018 /* Output the label. */
4019 ASM_OUTPUT_INTERNAL_LABEL (asm_out_file, "LC", pool->labelno);
4021 /* Output the value of the constant itself. */
4022 switch (GET_MODE_CLASS (pool->mode))
4024 case MODE_FLOAT:
4025 if (GET_CODE (x) != CONST_DOUBLE)
4026 abort ();
4028 REAL_VALUE_FROM_CONST_DOUBLE (r, x);
4029 assemble_real (r, pool->mode, pool->align);
4030 break;
4032 case MODE_INT:
4033 case MODE_PARTIAL_INT:
4034 assemble_integer (x, GET_MODE_SIZE (pool->mode), pool->align, 1);
4035 break;
4037 case MODE_VECTOR_FLOAT:
4039 int i, units;
4040 rtx elt;
4042 if (GET_CODE (x) != CONST_VECTOR)
4043 abort ();
4045 units = CONST_VECTOR_NUNITS (x);
4047 for (i = 0; i < units; i++)
4049 elt = CONST_VECTOR_ELT (x, i);
4050 REAL_VALUE_FROM_CONST_DOUBLE (r, elt);
4051 assemble_real (r, GET_MODE_INNER (pool->mode), pool->align);
4054 break;
4056 case MODE_VECTOR_INT:
4058 int i, units;
4059 rtx elt;
4061 if (GET_CODE (x) != CONST_VECTOR)
4062 abort ();
4064 units = CONST_VECTOR_NUNITS (x);
4066 for (i = 0; i < units; i++)
4068 elt = CONST_VECTOR_ELT (x, i);
4069 assemble_integer (elt, GET_MODE_UNIT_SIZE (pool->mode),
4070 pool->align, 1);
4073 break;
4075 default:
4076 abort ();
4079 #ifdef ASM_OUTPUT_SPECIAL_POOL_ENTRY
4080 done: ;
4081 #endif
4084 #ifdef ASM_OUTPUT_POOL_EPILOGUE
4085 ASM_OUTPUT_POOL_EPILOGUE (asm_out_file, fnname, fndecl, pool_offset);
4086 #endif
4088 /* Done with this pool. */
4089 first_pool = last_pool = 0;
4092 /* Look through the instructions for this function, and mark all the
4093 entries in the constant pool which are actually being used.
4094 Emit used deferred strings. */
4096 static void
4097 mark_constant_pool ()
4099 rtx insn;
4100 struct pool_constant *pool;
4102 if (first_pool == 0 && htab_elements (const_str_htab) == 0)
4103 return;
4105 for (pool = first_pool; pool; pool = pool->next)
4106 pool->mark = 0;
4108 for (insn = get_insns (); insn; insn = NEXT_INSN (insn))
4109 if (INSN_P (insn))
4110 mark_constants (PATTERN (insn));
4112 for (insn = current_function_epilogue_delay_list;
4113 insn;
4114 insn = XEXP (insn, 1))
4115 if (INSN_P (insn))
4116 mark_constants (PATTERN (insn));
4119 /* Look through appropriate parts of X, marking all entries in the
4120 constant pool which are actually being used. Entries that are only
4121 referenced by other constants are also marked as used. Emit
4122 deferred strings that are used. */
4124 static void
4125 mark_constants (x)
4126 rtx x;
4128 int i;
4129 const char *format_ptr;
4131 if (x == 0)
4132 return;
4134 if (GET_CODE (x) == SYMBOL_REF)
4136 mark_constant (&x, NULL);
4137 return;
4140 /* Insns may appear inside a SEQUENCE. Only check the patterns of
4141 insns, not any notes that may be attached. We don't want to mark
4142 a constant just because it happens to appear in a REG_EQUIV note. */
4143 if (INSN_P (x))
4145 mark_constants (PATTERN (x));
4146 return;
4149 format_ptr = GET_RTX_FORMAT (GET_CODE (x));
4151 for (i = 0; i < GET_RTX_LENGTH (GET_CODE (x)); i++)
4153 switch (*format_ptr++)
4155 case 'e':
4156 mark_constants (XEXP (x, i));
4157 break;
4159 case 'E':
4160 if (XVEC (x, i) != 0)
4162 int j;
4164 for (j = 0; j < XVECLEN (x, i); j++)
4165 mark_constants (XVECEXP (x, i, j));
4167 break;
4169 case 'S':
4170 case 's':
4171 case '0':
4172 case 'i':
4173 case 'w':
4174 case 'n':
4175 case 'u':
4176 break;
4178 default:
4179 abort ();
4184 /* Given a SYMBOL_REF CURRENT_RTX, mark it and all constants it refers
4185 to as used. Emit referenced deferred strings. This function can
4186 be used with for_each_rtx to mark all SYMBOL_REFs in an rtx. */
4188 static int
4189 mark_constant (current_rtx, data)
4190 rtx *current_rtx;
4191 void *data ATTRIBUTE_UNUSED;
4193 rtx x = *current_rtx;
4195 if (x == NULL_RTX)
4196 return 0;
4198 else if (GET_CODE (x) == SYMBOL_REF)
4200 if (CONSTANT_POOL_ADDRESS_P (x))
4202 struct pool_constant *pool = find_pool_constant (cfun, x);
4203 if (pool->mark == 0) {
4204 pool->mark = 1;
4205 for_each_rtx (&(pool->constant), &mark_constant, NULL);
4207 else
4208 return -1;
4210 else if (STRING_POOL_ADDRESS_P (x))
4212 struct deferred_string **defstr;
4214 defstr = (struct deferred_string **)
4215 htab_find_slot_with_hash (const_str_htab, XSTR (x, 0),
4216 STRHASH (XSTR (x, 0)), NO_INSERT);
4217 if (defstr)
4219 struct deferred_string *p = *defstr;
4221 STRING_POOL_ADDRESS_P (x) = 0;
4222 output_constant_def_contents (p->exp, 0, p->labelno);
4223 htab_clear_slot (const_str_htab, (void **) defstr);
4227 return 0;
4230 /* Find all the constants whose addresses are referenced inside of EXP,
4231 and make sure assembler code with a label has been output for each one.
4232 Indicate whether an ADDR_EXPR has been encountered. */
4234 static int
4235 output_addressed_constants (exp)
4236 tree exp;
4238 int reloc = 0;
4239 tree tem;
4241 /* Give the front-end a chance to convert VALUE to something that
4242 looks more like a constant to the back-end. */
4243 exp = (*lang_hooks.expand_constant) (exp);
4245 switch (TREE_CODE (exp))
4247 case ADDR_EXPR:
4248 /* Go inside any operations that get_inner_reference can handle and see
4249 if what's inside is a constant: no need to do anything here for
4250 addresses of variables or functions. */
4251 for (tem = TREE_OPERAND (exp, 0); handled_component_p (tem);
4252 tem = TREE_OPERAND (tem, 0))
4255 if (TREE_CODE_CLASS (TREE_CODE (tem)) == 'c'
4256 || TREE_CODE (tem) == CONSTRUCTOR)
4257 output_constant_def (tem, 0);
4259 if (TREE_PUBLIC (tem))
4260 reloc |= 2;
4261 else
4262 reloc |= 1;
4263 break;
4265 case PLUS_EXPR:
4266 case MINUS_EXPR:
4267 reloc = output_addressed_constants (TREE_OPERAND (exp, 0));
4268 reloc |= output_addressed_constants (TREE_OPERAND (exp, 1));
4269 break;
4271 case NOP_EXPR:
4272 case CONVERT_EXPR:
4273 case NON_LVALUE_EXPR:
4274 reloc = output_addressed_constants (TREE_OPERAND (exp, 0));
4275 break;
4277 case CONSTRUCTOR:
4278 for (tem = CONSTRUCTOR_ELTS (exp); tem; tem = TREE_CHAIN (tem))
4279 if (TREE_VALUE (tem) != 0)
4280 reloc |= output_addressed_constants (TREE_VALUE (tem));
4282 break;
4284 default:
4285 break;
4287 return reloc;
4290 /* Return nonzero if VALUE is a valid constant-valued expression
4291 for use in initializing a static variable; one that can be an
4292 element of a "constant" initializer.
4294 Return null_pointer_node if the value is absolute;
4295 if it is relocatable, return the variable that determines the relocation.
4296 We assume that VALUE has been folded as much as possible;
4297 therefore, we do not need to check for such things as
4298 arithmetic-combinations of integers. */
4300 tree
4301 initializer_constant_valid_p (value, endtype)
4302 tree value;
4303 tree endtype;
4305 /* Give the front-end a chance to convert VALUE to something that
4306 looks more like a constant to the back-end. */
4307 value = (*lang_hooks.expand_constant) (value);
4309 switch (TREE_CODE (value))
4311 case CONSTRUCTOR:
4312 if ((TREE_CODE (TREE_TYPE (value)) == UNION_TYPE
4313 || TREE_CODE (TREE_TYPE (value)) == RECORD_TYPE)
4314 && TREE_CONSTANT (value)
4315 && CONSTRUCTOR_ELTS (value))
4316 return
4317 initializer_constant_valid_p (TREE_VALUE (CONSTRUCTOR_ELTS (value)),
4318 endtype);
4320 return TREE_STATIC (value) ? null_pointer_node : 0;
4322 case INTEGER_CST:
4323 case VECTOR_CST:
4324 case REAL_CST:
4325 case STRING_CST:
4326 case COMPLEX_CST:
4327 return null_pointer_node;
4329 case ADDR_EXPR:
4330 case FDESC_EXPR:
4331 return staticp (TREE_OPERAND (value, 0)) ? TREE_OPERAND (value, 0) : 0;
4333 case VIEW_CONVERT_EXPR:
4334 case NON_LVALUE_EXPR:
4335 return initializer_constant_valid_p (TREE_OPERAND (value, 0), endtype);
4337 case CONVERT_EXPR:
4338 case NOP_EXPR:
4339 /* Allow conversions between pointer types. */
4340 if (POINTER_TYPE_P (TREE_TYPE (value))
4341 && POINTER_TYPE_P (TREE_TYPE (TREE_OPERAND (value, 0))))
4342 return initializer_constant_valid_p (TREE_OPERAND (value, 0), endtype);
4344 /* Allow conversions between real types. */
4345 if (FLOAT_TYPE_P (TREE_TYPE (value))
4346 && FLOAT_TYPE_P (TREE_TYPE (TREE_OPERAND (value, 0))))
4347 return initializer_constant_valid_p (TREE_OPERAND (value, 0), endtype);
4349 /* Allow length-preserving conversions between integer types. */
4350 if (INTEGRAL_TYPE_P (TREE_TYPE (value))
4351 && INTEGRAL_TYPE_P (TREE_TYPE (TREE_OPERAND (value, 0)))
4352 && (TYPE_PRECISION (TREE_TYPE (value))
4353 == TYPE_PRECISION (TREE_TYPE (TREE_OPERAND (value, 0)))))
4354 return initializer_constant_valid_p (TREE_OPERAND (value, 0), endtype);
4356 /* Allow conversions between other integer types only if
4357 explicit value. */
4358 if (INTEGRAL_TYPE_P (TREE_TYPE (value))
4359 && INTEGRAL_TYPE_P (TREE_TYPE (TREE_OPERAND (value, 0))))
4361 tree inner = initializer_constant_valid_p (TREE_OPERAND (value, 0),
4362 endtype);
4363 if (inner == null_pointer_node)
4364 return null_pointer_node;
4365 break;
4368 /* Allow (int) &foo provided int is as wide as a pointer. */
4369 if (INTEGRAL_TYPE_P (TREE_TYPE (value))
4370 && POINTER_TYPE_P (TREE_TYPE (TREE_OPERAND (value, 0)))
4371 && (TYPE_PRECISION (TREE_TYPE (value))
4372 >= TYPE_PRECISION (TREE_TYPE (TREE_OPERAND (value, 0)))))
4373 return initializer_constant_valid_p (TREE_OPERAND (value, 0),
4374 endtype);
4376 /* Likewise conversions from int to pointers, but also allow
4377 conversions from 0. */
4378 if (POINTER_TYPE_P (TREE_TYPE (value))
4379 && INTEGRAL_TYPE_P (TREE_TYPE (TREE_OPERAND (value, 0))))
4381 if (integer_zerop (TREE_OPERAND (value, 0)))
4382 return null_pointer_node;
4383 else if (TYPE_PRECISION (TREE_TYPE (value))
4384 <= TYPE_PRECISION (TREE_TYPE (TREE_OPERAND (value, 0))))
4385 return initializer_constant_valid_p (TREE_OPERAND (value, 0),
4386 endtype);
4389 /* Allow conversions to union types if the value inside is okay. */
4390 if (TREE_CODE (TREE_TYPE (value)) == UNION_TYPE)
4391 return initializer_constant_valid_p (TREE_OPERAND (value, 0),
4392 endtype);
4393 break;
4395 case PLUS_EXPR:
4396 if (! INTEGRAL_TYPE_P (endtype)
4397 || TYPE_PRECISION (endtype) >= POINTER_SIZE)
4399 tree valid0 = initializer_constant_valid_p (TREE_OPERAND (value, 0),
4400 endtype);
4401 tree valid1 = initializer_constant_valid_p (TREE_OPERAND (value, 1),
4402 endtype);
4403 /* If either term is absolute, use the other terms relocation. */
4404 if (valid0 == null_pointer_node)
4405 return valid1;
4406 if (valid1 == null_pointer_node)
4407 return valid0;
4409 break;
4411 case MINUS_EXPR:
4412 if (! INTEGRAL_TYPE_P (endtype)
4413 || TYPE_PRECISION (endtype) >= POINTER_SIZE)
4415 tree valid0 = initializer_constant_valid_p (TREE_OPERAND (value, 0),
4416 endtype);
4417 tree valid1 = initializer_constant_valid_p (TREE_OPERAND (value, 1),
4418 endtype);
4419 /* Win if second argument is absolute. */
4420 if (valid1 == null_pointer_node)
4421 return valid0;
4422 /* Win if both arguments have the same relocation.
4423 Then the value is absolute. */
4424 if (valid0 == valid1 && valid0 != 0)
4425 return null_pointer_node;
4427 /* Since GCC guarantees that string constants are unique in the
4428 generated code, a subtraction between two copies of the same
4429 constant string is absolute. */
4430 if (valid0 && TREE_CODE (valid0) == STRING_CST &&
4431 valid1 && TREE_CODE (valid1) == STRING_CST &&
4432 TREE_STRING_POINTER (valid0) == TREE_STRING_POINTER (valid1))
4433 return null_pointer_node;
4436 /* Support differences between labels. */
4437 if (INTEGRAL_TYPE_P (endtype))
4439 tree op0, op1;
4440 op0 = TREE_OPERAND (value, 0);
4441 op1 = TREE_OPERAND (value, 1);
4443 /* Like STRIP_NOPS except allow the operand mode to widen.
4444 This works around a feature of fold that simplfies
4445 (int)(p1 - p2) to ((int)p1 - (int)p2) under the theory
4446 that the narrower operation is cheaper. */
4448 while (TREE_CODE (op0) == NOP_EXPR
4449 || TREE_CODE (op0) == CONVERT_EXPR
4450 || TREE_CODE (op0) == NON_LVALUE_EXPR)
4452 tree inner = TREE_OPERAND (op0, 0);
4453 if (inner == error_mark_node
4454 || ! INTEGRAL_MODE_P (TYPE_MODE (TREE_TYPE (inner)))
4455 || (GET_MODE_SIZE (TYPE_MODE (TREE_TYPE (op0)))
4456 > GET_MODE_SIZE (TYPE_MODE (TREE_TYPE (inner)))))
4457 break;
4458 op0 = inner;
4461 while (TREE_CODE (op1) == NOP_EXPR
4462 || TREE_CODE (op1) == CONVERT_EXPR
4463 || TREE_CODE (op1) == NON_LVALUE_EXPR)
4465 tree inner = TREE_OPERAND (op1, 0);
4466 if (inner == error_mark_node
4467 || ! INTEGRAL_MODE_P (TYPE_MODE (TREE_TYPE (inner)))
4468 || (GET_MODE_SIZE (TYPE_MODE (TREE_TYPE (op1)))
4469 > GET_MODE_SIZE (TYPE_MODE (TREE_TYPE (inner)))))
4470 break;
4471 op1 = inner;
4474 if (TREE_CODE (op0) == ADDR_EXPR
4475 && TREE_CODE (TREE_OPERAND (op0, 0)) == LABEL_DECL
4476 && TREE_CODE (op1) == ADDR_EXPR
4477 && TREE_CODE (TREE_OPERAND (op1, 0)) == LABEL_DECL)
4478 return null_pointer_node;
4480 break;
4482 default:
4483 break;
4486 return 0;
4489 /* Output assembler code for constant EXP to FILE, with no label.
4490 This includes the pseudo-op such as ".int" or ".byte", and a newline.
4491 Assumes output_addressed_constants has been done on EXP already.
4493 Generate exactly SIZE bytes of assembler data, padding at the end
4494 with zeros if necessary. SIZE must always be specified.
4496 SIZE is important for structure constructors,
4497 since trailing members may have been omitted from the constructor.
4498 It is also important for initialization of arrays from string constants
4499 since the full length of the string constant might not be wanted.
4500 It is also needed for initialization of unions, where the initializer's
4501 type is just one member, and that may not be as long as the union.
4503 There a case in which we would fail to output exactly SIZE bytes:
4504 for a structure constructor that wants to produce more than SIZE bytes.
4505 But such constructors will never be generated for any possible input.
4507 ALIGN is the alignment of the data in bits. */
4509 void
4510 output_constant (exp, size, align)
4511 tree exp;
4512 HOST_WIDE_INT size;
4513 unsigned int align;
4515 enum tree_code code;
4516 HOST_WIDE_INT thissize;
4518 /* Some front-ends use constants other than the standard language-indepdent
4519 varieties, but which may still be output directly. Give the front-end a
4520 chance to convert EXP to a language-independent representation. */
4521 exp = (*lang_hooks.expand_constant) (exp);
4523 if (size == 0 || flag_syntax_only)
4524 return;
4526 /* Eliminate any conversions since we'll be outputting the underlying
4527 constant. */
4528 while (TREE_CODE (exp) == NOP_EXPR || TREE_CODE (exp) == CONVERT_EXPR
4529 || TREE_CODE (exp) == NON_LVALUE_EXPR
4530 || TREE_CODE (exp) == VIEW_CONVERT_EXPR)
4531 exp = TREE_OPERAND (exp, 0);
4533 code = TREE_CODE (TREE_TYPE (exp));
4534 thissize = int_size_in_bytes (TREE_TYPE (exp));
4536 /* Allow a constructor with no elements for any data type.
4537 This means to fill the space with zeros. */
4538 if (TREE_CODE (exp) == CONSTRUCTOR && CONSTRUCTOR_ELTS (exp) == 0)
4540 assemble_zeros (size);
4541 return;
4544 if (TREE_CODE (exp) == FDESC_EXPR)
4546 #ifdef ASM_OUTPUT_FDESC
4547 HOST_WIDE_INT part = tree_low_cst (TREE_OPERAND (exp, 1), 0);
4548 tree decl = TREE_OPERAND (exp, 0);
4549 ASM_OUTPUT_FDESC (asm_out_file, decl, part);
4550 #else
4551 abort ();
4552 #endif
4553 return;
4556 /* Now output the underlying data. If we've handling the padding, return.
4557 Otherwise, break and ensure THISSIZE is the size written. */
4558 switch (code)
4560 case CHAR_TYPE:
4561 case BOOLEAN_TYPE:
4562 case INTEGER_TYPE:
4563 case ENUMERAL_TYPE:
4564 case POINTER_TYPE:
4565 case REFERENCE_TYPE:
4566 if (! assemble_integer (expand_expr (exp, NULL_RTX, VOIDmode,
4567 EXPAND_INITIALIZER),
4568 size, align, 0))
4569 error ("initializer for integer value is too complicated");
4570 break;
4572 case REAL_TYPE:
4573 if (TREE_CODE (exp) != REAL_CST)
4574 error ("initializer for floating value is not a floating constant");
4576 assemble_real (TREE_REAL_CST (exp),
4577 mode_for_size (size * BITS_PER_UNIT, MODE_FLOAT, 0),
4578 align);
4579 break;
4581 case COMPLEX_TYPE:
4582 output_constant (TREE_REALPART (exp), thissize / 2, align);
4583 output_constant (TREE_IMAGPART (exp), thissize / 2,
4584 min_align (align, BITS_PER_UNIT * (thissize / 2)));
4585 break;
4587 case ARRAY_TYPE:
4588 case VECTOR_TYPE:
4589 if (TREE_CODE (exp) == CONSTRUCTOR)
4591 output_constructor (exp, size, align);
4592 return;
4594 else if (TREE_CODE (exp) == STRING_CST)
4596 thissize = MIN (TREE_STRING_LENGTH (exp), size);
4597 assemble_string (TREE_STRING_POINTER (exp), thissize);
4599 else
4600 abort ();
4601 break;
4603 case RECORD_TYPE:
4604 case UNION_TYPE:
4605 if (TREE_CODE (exp) == CONSTRUCTOR)
4606 output_constructor (exp, size, align);
4607 else
4608 abort ();
4609 return;
4611 case SET_TYPE:
4612 if (TREE_CODE (exp) == INTEGER_CST)
4613 assemble_integer (expand_expr (exp, NULL_RTX,
4614 VOIDmode, EXPAND_INITIALIZER),
4615 thissize, align, 1);
4616 else if (TREE_CODE (exp) == CONSTRUCTOR)
4618 unsigned char *buffer = (unsigned char *) alloca (thissize);
4619 if (get_set_constructor_bytes (exp, buffer, thissize))
4620 abort ();
4621 assemble_string ((char *) buffer, thissize);
4623 else
4624 error ("unknown set constructor type");
4625 return;
4627 case ERROR_MARK:
4628 return;
4630 default:
4631 abort ();
4634 size -= thissize;
4635 if (size > 0)
4636 assemble_zeros (size);
4640 /* Subroutine of output_constructor, used for computing the size of
4641 arrays of unspecified length. VAL must be a CONSTRUCTOR of an array
4642 type with an unspecified upper bound. */
4644 static unsigned HOST_WIDE_INT
4645 array_size_for_constructor (val)
4646 tree val;
4648 tree max_index, i;
4650 /* This code used to attempt to handle string constants that are not
4651 arrays of single-bytes, but nothing else does, so there's no point in
4652 doing it here. */
4653 if (TREE_CODE (val) == STRING_CST)
4654 return TREE_STRING_LENGTH (val);
4656 max_index = NULL_TREE;
4657 for (i = CONSTRUCTOR_ELTS (val); i ; i = TREE_CHAIN (i))
4659 tree index = TREE_PURPOSE (i);
4661 if (TREE_CODE (index) == RANGE_EXPR)
4662 index = TREE_OPERAND (index, 1);
4663 if (max_index == NULL_TREE || tree_int_cst_lt (max_index, index))
4664 max_index = index;
4667 if (max_index == NULL_TREE)
4668 return 0;
4670 /* Compute the total number of array elements. */
4671 i = size_binop (MINUS_EXPR, convert (sizetype, max_index),
4672 convert (sizetype,
4673 TYPE_MIN_VALUE (TYPE_DOMAIN (TREE_TYPE (val)))));
4674 i = size_binop (PLUS_EXPR, i, convert (sizetype, integer_one_node));
4676 /* Multiply by the array element unit size to find number of bytes. */
4677 i = size_binop (MULT_EXPR, i, TYPE_SIZE_UNIT (TREE_TYPE (TREE_TYPE (val))));
4679 return tree_low_cst (i, 1);
4682 /* Subroutine of output_constant, used for CONSTRUCTORs (aggregate constants).
4683 Generate at least SIZE bytes, padding if necessary. */
4685 static void
4686 output_constructor (exp, size, align)
4687 tree exp;
4688 HOST_WIDE_INT size;
4689 unsigned int align;
4691 tree type = TREE_TYPE (exp);
4692 tree link, field = 0;
4693 tree min_index = 0;
4694 /* Number of bytes output or skipped so far.
4695 In other words, current position within the constructor. */
4696 HOST_WIDE_INT total_bytes = 0;
4697 /* Non-zero means BYTE contains part of a byte, to be output. */
4698 int byte_buffer_in_use = 0;
4699 int byte = 0;
4701 if (HOST_BITS_PER_WIDE_INT < BITS_PER_UNIT)
4702 abort ();
4704 if (TREE_CODE (type) == RECORD_TYPE)
4705 field = TYPE_FIELDS (type);
4707 if (TREE_CODE (type) == ARRAY_TYPE
4708 && TYPE_DOMAIN (type) != 0)
4709 min_index = TYPE_MIN_VALUE (TYPE_DOMAIN (type));
4711 /* As LINK goes through the elements of the constant,
4712 FIELD goes through the structure fields, if the constant is a structure.
4713 if the constant is a union, then we override this,
4714 by getting the field from the TREE_LIST element.
4715 But the constant could also be an array. Then FIELD is zero.
4717 There is always a maximum of one element in the chain LINK for unions
4718 (even if the initializer in a source program incorrectly contains
4719 more one). */
4720 for (link = CONSTRUCTOR_ELTS (exp);
4721 link;
4722 link = TREE_CHAIN (link),
4723 field = field ? TREE_CHAIN (field) : 0)
4725 tree val = TREE_VALUE (link);
4726 tree index = 0;
4728 /* The element in a union constructor specifies the proper field
4729 or index. */
4730 if ((TREE_CODE (type) == RECORD_TYPE || TREE_CODE (type) == UNION_TYPE
4731 || TREE_CODE (type) == QUAL_UNION_TYPE)
4732 && TREE_PURPOSE (link) != 0)
4733 field = TREE_PURPOSE (link);
4735 else if (TREE_CODE (type) == ARRAY_TYPE)
4736 index = TREE_PURPOSE (link);
4738 /* Eliminate the marker that makes a cast not be an lvalue. */
4739 if (val != 0)
4740 STRIP_NOPS (val);
4742 if (index && TREE_CODE (index) == RANGE_EXPR)
4744 unsigned HOST_WIDE_INT fieldsize
4745 = int_size_in_bytes (TREE_TYPE (type));
4746 HOST_WIDE_INT lo_index = tree_low_cst (TREE_OPERAND (index, 0), 0);
4747 HOST_WIDE_INT hi_index = tree_low_cst (TREE_OPERAND (index, 1), 0);
4748 HOST_WIDE_INT index;
4749 unsigned int align2 = min_align (align, fieldsize * BITS_PER_UNIT);
4751 for (index = lo_index; index <= hi_index; index++)
4753 /* Output the element's initial value. */
4754 if (val == 0)
4755 assemble_zeros (fieldsize);
4756 else
4757 output_constant (val, fieldsize, align2);
4759 /* Count its size. */
4760 total_bytes += fieldsize;
4763 else if (field == 0 || !DECL_BIT_FIELD (field))
4765 /* An element that is not a bit-field. */
4767 unsigned HOST_WIDE_INT fieldsize;
4768 /* Since this structure is static,
4769 we know the positions are constant. */
4770 HOST_WIDE_INT pos = field ? int_byte_position (field) : 0;
4771 unsigned int align2;
4773 if (index != 0)
4774 pos = (tree_low_cst (TYPE_SIZE_UNIT (TREE_TYPE (val)), 1)
4775 * (tree_low_cst (index, 0) - tree_low_cst (min_index, 0)));
4777 /* Output any buffered-up bit-fields preceding this element. */
4778 if (byte_buffer_in_use)
4780 assemble_integer (GEN_INT (byte), 1, BITS_PER_UNIT, 1);
4781 total_bytes++;
4782 byte_buffer_in_use = 0;
4785 /* Advance to offset of this element.
4786 Note no alignment needed in an array, since that is guaranteed
4787 if each element has the proper size. */
4788 if ((field != 0 || index != 0) && pos != total_bytes)
4790 assemble_zeros (pos - total_bytes);
4791 total_bytes = pos;
4794 /* Find the alignment of this element. */
4795 align2 = min_align (align, BITS_PER_UNIT * pos);
4797 /* Determine size this element should occupy. */
4798 if (field)
4800 fieldsize = 0;
4802 /* If this is an array with an unspecified upper bound,
4803 the initializer determines the size. */
4804 /* ??? This ought to only checked if DECL_SIZE_UNIT is NULL,
4805 but we cannot do this until the deprecated support for
4806 initializing zero-length array members is removed. */
4807 if (TREE_CODE (TREE_TYPE (field)) == ARRAY_TYPE
4808 && TYPE_DOMAIN (TREE_TYPE (field))
4809 && ! TYPE_MAX_VALUE (TYPE_DOMAIN (TREE_TYPE (field))))
4811 fieldsize = array_size_for_constructor (val);
4812 /* Given a non-empty initialization, this field had
4813 better be last. */
4814 if (fieldsize != 0 && TREE_CHAIN (field) != NULL_TREE)
4815 abort ();
4817 else if (DECL_SIZE_UNIT (field))
4819 /* ??? This can't be right. If the decl size overflows
4820 a host integer we will silently emit no data. */
4821 if (host_integerp (DECL_SIZE_UNIT (field), 1))
4822 fieldsize = tree_low_cst (DECL_SIZE_UNIT (field), 1);
4825 else
4826 fieldsize = int_size_in_bytes (TREE_TYPE (type));
4828 /* Output the element's initial value. */
4829 if (val == 0)
4830 assemble_zeros (fieldsize);
4831 else
4832 output_constant (val, fieldsize, align2);
4834 /* Count its size. */
4835 total_bytes += fieldsize;
4837 else if (val != 0 && TREE_CODE (val) != INTEGER_CST)
4838 error ("invalid initial value for member `%s'",
4839 IDENTIFIER_POINTER (DECL_NAME (field)));
4840 else
4842 /* Element that is a bit-field. */
4844 HOST_WIDE_INT next_offset = int_bit_position (field);
4845 HOST_WIDE_INT end_offset
4846 = (next_offset + tree_low_cst (DECL_SIZE (field), 1));
4848 if (val == 0)
4849 val = integer_zero_node;
4851 /* If this field does not start in this (or, next) byte,
4852 skip some bytes. */
4853 if (next_offset / BITS_PER_UNIT != total_bytes)
4855 /* Output remnant of any bit field in previous bytes. */
4856 if (byte_buffer_in_use)
4858 assemble_integer (GEN_INT (byte), 1, BITS_PER_UNIT, 1);
4859 total_bytes++;
4860 byte_buffer_in_use = 0;
4863 /* If still not at proper byte, advance to there. */
4864 if (next_offset / BITS_PER_UNIT != total_bytes)
4866 assemble_zeros (next_offset / BITS_PER_UNIT - total_bytes);
4867 total_bytes = next_offset / BITS_PER_UNIT;
4871 if (! byte_buffer_in_use)
4872 byte = 0;
4874 /* We must split the element into pieces that fall within
4875 separate bytes, and combine each byte with previous or
4876 following bit-fields. */
4878 /* next_offset is the offset n fbits from the beginning of
4879 the structure to the next bit of this element to be processed.
4880 end_offset is the offset of the first bit past the end of
4881 this element. */
4882 while (next_offset < end_offset)
4884 int this_time;
4885 int shift;
4886 HOST_WIDE_INT value;
4887 HOST_WIDE_INT next_byte = next_offset / BITS_PER_UNIT;
4888 HOST_WIDE_INT next_bit = next_offset % BITS_PER_UNIT;
4890 /* Advance from byte to byte
4891 within this element when necessary. */
4892 while (next_byte != total_bytes)
4894 assemble_integer (GEN_INT (byte), 1, BITS_PER_UNIT, 1);
4895 total_bytes++;
4896 byte = 0;
4899 /* Number of bits we can process at once
4900 (all part of the same byte). */
4901 this_time = MIN (end_offset - next_offset,
4902 BITS_PER_UNIT - next_bit);
4903 if (BYTES_BIG_ENDIAN)
4905 /* On big-endian machine, take the most significant bits
4906 first (of the bits that are significant)
4907 and put them into bytes from the most significant end. */
4908 shift = end_offset - next_offset - this_time;
4910 /* Don't try to take a bunch of bits that cross
4911 the word boundary in the INTEGER_CST. We can
4912 only select bits from the LOW or HIGH part
4913 not from both. */
4914 if (shift < HOST_BITS_PER_WIDE_INT
4915 && shift + this_time > HOST_BITS_PER_WIDE_INT)
4917 this_time = shift + this_time - HOST_BITS_PER_WIDE_INT;
4918 shift = HOST_BITS_PER_WIDE_INT;
4921 /* Now get the bits from the appropriate constant word. */
4922 if (shift < HOST_BITS_PER_WIDE_INT)
4923 value = TREE_INT_CST_LOW (val);
4924 else if (shift < 2 * HOST_BITS_PER_WIDE_INT)
4926 value = TREE_INT_CST_HIGH (val);
4927 shift -= HOST_BITS_PER_WIDE_INT;
4929 else
4930 abort ();
4932 /* Get the result. This works only when:
4933 1 <= this_time <= HOST_BITS_PER_WIDE_INT. */
4934 byte |= (((value >> shift)
4935 & (((HOST_WIDE_INT) 2 << (this_time - 1)) - 1))
4936 << (BITS_PER_UNIT - this_time - next_bit));
4938 else
4940 /* On little-endian machines,
4941 take first the least significant bits of the value
4942 and pack them starting at the least significant
4943 bits of the bytes. */
4944 shift = next_offset - int_bit_position (field);
4946 /* Don't try to take a bunch of bits that cross
4947 the word boundary in the INTEGER_CST. We can
4948 only select bits from the LOW or HIGH part
4949 not from both. */
4950 if (shift < HOST_BITS_PER_WIDE_INT
4951 && shift + this_time > HOST_BITS_PER_WIDE_INT)
4952 this_time = (HOST_BITS_PER_WIDE_INT - shift);
4954 /* Now get the bits from the appropriate constant word. */
4955 if (shift < HOST_BITS_PER_WIDE_INT)
4956 value = TREE_INT_CST_LOW (val);
4957 else if (shift < 2 * HOST_BITS_PER_WIDE_INT)
4959 value = TREE_INT_CST_HIGH (val);
4960 shift -= HOST_BITS_PER_WIDE_INT;
4962 else
4963 abort ();
4965 /* Get the result. This works only when:
4966 1 <= this_time <= HOST_BITS_PER_WIDE_INT. */
4967 byte |= (((value >> shift)
4968 & (((HOST_WIDE_INT) 2 << (this_time - 1)) - 1))
4969 << next_bit);
4972 next_offset += this_time;
4973 byte_buffer_in_use = 1;
4978 if (byte_buffer_in_use)
4980 assemble_integer (GEN_INT (byte), 1, BITS_PER_UNIT, 1);
4981 total_bytes++;
4984 if (total_bytes < size)
4985 assemble_zeros (size - total_bytes);
4988 /* This TREE_LIST contains any weak symbol declarations waiting
4989 to be emitted. */
4990 static tree weak_decls;
4992 /* Declare DECL to be a weak symbol. */
4994 void
4995 declare_weak (decl)
4996 tree decl;
4998 if (! TREE_PUBLIC (decl))
4999 error_with_decl (decl, "weak declaration of `%s' must be public");
5000 else if (TREE_ASM_WRITTEN (decl))
5001 error_with_decl (decl, "weak declaration of `%s' must precede definition");
5002 else if (SUPPORTS_WEAK)
5004 if (! DECL_WEAK (decl))
5005 weak_decls = tree_cons (NULL, decl, weak_decls);
5007 else
5008 warning_with_decl (decl, "weak declaration of `%s' not supported");
5010 DECL_WEAK (decl) = 1;
5013 /* Emit any pending weak declarations. */
5015 void
5016 weak_finish ()
5018 tree t;
5020 for (t = weak_decls; t ; t = TREE_CHAIN (t))
5022 tree decl = TREE_VALUE (t);
5023 const char *name = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl));
5025 if (! TREE_USED (decl))
5026 continue;
5028 #ifdef ASM_WEAKEN_DECL
5029 ASM_WEAKEN_DECL (asm_out_file, decl, name, NULL);
5030 #else
5031 #ifdef ASM_WEAKEN_LABEL
5032 ASM_WEAKEN_LABEL (asm_out_file, name);
5033 #else
5034 #ifdef ASM_OUTPUT_WEAK_ALIAS
5035 warning ("only weak aliases are supported in this configuration");
5036 return;
5037 #endif
5038 #endif
5039 #endif
5043 /* Emit the assembly bits to indicate that DECL is globally visible. */
5045 static void
5046 globalize_decl (decl)
5047 tree decl;
5049 const char *name = XSTR (XEXP (DECL_RTL (decl), 0), 0);
5051 #if defined (ASM_WEAKEN_LABEL) || defined (ASM_WEAKEN_DECL)
5052 if (DECL_WEAK (decl))
5054 tree *p, t;
5056 #ifdef ASM_WEAKEN_DECL
5057 ASM_WEAKEN_DECL (asm_out_file, decl, name, 0);
5058 #else
5059 ASM_WEAKEN_LABEL (asm_out_file, name);
5060 #endif
5062 /* Remove this function from the pending weak list so that
5063 we do not emit multiple .weak directives for it. */
5064 for (p = &weak_decls; (t = *p) ; p = &TREE_CHAIN (t))
5065 if (TREE_VALUE (t) == decl)
5067 *p = TREE_CHAIN (t);
5068 break;
5070 return;
5072 #endif
5074 ASM_GLOBALIZE_LABEL (asm_out_file, name);
5077 /* Emit an assembler directive to make the symbol for DECL an alias to
5078 the symbol for TARGET. */
5080 void
5081 assemble_alias (decl, target)
5082 tree decl, target ATTRIBUTE_UNUSED;
5084 const char *name;
5086 /* We must force creation of DECL_RTL for debug info generation, even though
5087 we don't use it here. */
5088 make_decl_rtl (decl, NULL);
5090 name = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl));
5092 #ifdef ASM_OUTPUT_DEF
5093 /* Make name accessible from other files, if appropriate. */
5095 if (TREE_PUBLIC (decl))
5097 globalize_decl (decl);
5098 maybe_assemble_visibility (decl);
5101 #ifdef ASM_OUTPUT_DEF_FROM_DECLS
5102 ASM_OUTPUT_DEF_FROM_DECLS (asm_out_file, decl, target);
5103 #else
5104 ASM_OUTPUT_DEF (asm_out_file, name, IDENTIFIER_POINTER (target));
5105 #endif
5106 TREE_ASM_WRITTEN (decl) = 1;
5107 #else /* !ASM_OUTPUT_DEF */
5108 #if defined (ASM_OUTPUT_WEAK_ALIAS) || defined (ASM_WEAKEN_DECL)
5109 if (! DECL_WEAK (decl))
5110 warning ("only weak aliases are supported in this configuration");
5112 #ifdef ASM_WEAKEN_DECL
5113 ASM_WEAKEN_DECL (asm_out_file, decl, name, IDENTIFIER_POINTER (target));
5114 #else
5115 ASM_OUTPUT_WEAK_ALIAS (asm_out_file, name, IDENTIFIER_POINTER (target));
5116 #endif
5117 TREE_ASM_WRITTEN (decl) = 1;
5118 #else
5119 warning ("alias definitions not supported in this configuration; ignored");
5120 #endif
5121 #endif
5124 /* Emit an assembler directive to set symbol for DECL visibility to
5125 VISIBILITY_TYPE. */
5127 void
5128 assemble_visibility (decl, visibility_type)
5129 tree decl;
5130 const char *visibility_type ATTRIBUTE_UNUSED;
5132 const char *name;
5134 name = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl));
5136 #ifdef HAVE_GAS_HIDDEN
5137 fprintf (asm_out_file, "\t.%s\t%s\n", visibility_type, name);
5138 #else
5139 warning ("visibility attribute not supported in this configuration; ignored");
5140 #endif
5143 /* A helper function to call assemble_visibility when needed for a decl. */
5145 static void
5146 maybe_assemble_visibility (decl)
5147 tree decl;
5149 tree visibility = lookup_attribute ("visibility", DECL_ATTRIBUTES (decl));
5150 if (visibility)
5152 const char *type
5153 = TREE_STRING_POINTER (TREE_VALUE (TREE_VALUE (visibility)));
5154 assemble_visibility (decl, type);
5158 /* Returns 1 if the target configuration supports defining public symbols
5159 so that one of them will be chosen at link time instead of generating a
5160 multiply-defined symbol error, whether through the use of weak symbols or
5161 a target-specific mechanism for having duplicates discarded. */
5164 supports_one_only ()
5166 if (SUPPORTS_ONE_ONLY)
5167 return 1;
5168 return SUPPORTS_WEAK;
5171 /* Set up DECL as a public symbol that can be defined in multiple
5172 translation units without generating a linker error. */
5174 void
5175 make_decl_one_only (decl)
5176 tree decl;
5178 if (TREE_CODE (decl) != VAR_DECL && TREE_CODE (decl) != FUNCTION_DECL)
5179 abort ();
5181 TREE_PUBLIC (decl) = 1;
5183 if (TREE_CODE (decl) == VAR_DECL
5184 && (DECL_INITIAL (decl) == 0 || DECL_INITIAL (decl) == error_mark_node))
5185 DECL_COMMON (decl) = 1;
5186 else if (SUPPORTS_ONE_ONLY)
5188 #ifdef MAKE_DECL_ONE_ONLY
5189 MAKE_DECL_ONE_ONLY (decl);
5190 #endif
5191 DECL_ONE_ONLY (decl) = 1;
5193 else if (SUPPORTS_WEAK)
5194 DECL_WEAK (decl) = 1;
5195 else
5196 abort ();
5199 void
5200 init_varasm_once ()
5202 const_str_htab = htab_create (128, const_str_htab_hash, const_str_htab_eq,
5203 const_str_htab_del);
5204 in_named_htab = htab_create (31, in_named_entry_hash,
5205 in_named_entry_eq, NULL);
5207 ggc_add_root (const_hash_table, MAX_HASH_TABLE, sizeof const_hash_table[0],
5208 mark_const_hash_entry);
5209 ggc_add_root (&const_str_htab, 1, sizeof const_str_htab,
5210 mark_const_str_htab);
5211 ggc_add_tree_root (&weak_decls, 1);
5213 const_alias_set = new_alias_set ();
5216 /* Select a set of attributes for section NAME based on the properties
5217 of DECL and whether or not RELOC indicates that DECL's initializer
5218 might contain runtime relocations.
5220 We make the section read-only and executable for a function decl,
5221 read-only for a const data decl, and writable for a non-const data decl. */
5223 unsigned int
5224 default_section_type_flags (decl, name, reloc)
5225 tree decl;
5226 const char *name;
5227 int reloc;
5229 unsigned int flags;
5231 if (decl && TREE_CODE (decl) == FUNCTION_DECL)
5232 flags = SECTION_CODE;
5233 else if (decl && DECL_READONLY_SECTION (decl, reloc))
5234 flags = 0;
5235 else
5236 flags = SECTION_WRITE;
5238 if (decl && DECL_ONE_ONLY (decl))
5239 flags |= SECTION_LINKONCE;
5241 if (strcmp (name, ".bss") == 0
5242 || strncmp (name, ".bss.", 5) == 0
5243 || strncmp (name, ".gnu.linkonce.b.", 16) == 0
5244 || strcmp (name, ".sbss") == 0
5245 || strncmp (name, ".sbss.", 6) == 0
5246 || strncmp (name, ".gnu.linkonce.sb.", 17) == 0)
5247 flags |= SECTION_BSS;
5249 return flags;
5252 /* Output assembly to switch to section NAME with attribute FLAGS.
5253 Four variants for common object file formats. */
5255 void
5256 default_no_named_section (name, flags)
5257 const char *name ATTRIBUTE_UNUSED;
5258 unsigned int flags ATTRIBUTE_UNUSED;
5260 /* Some object formats don't support named sections at all. The
5261 front-end should already have flagged this as an error. */
5262 abort ();
5265 void
5266 default_elf_asm_named_section (name, flags)
5267 const char *name;
5268 unsigned int flags;
5270 char flagchars[10], *f = flagchars;
5271 const char *type;
5273 if (! named_section_first_declaration (name))
5275 fprintf (asm_out_file, "\t.section\t%s\n", name);
5276 return;
5279 if (!(flags & SECTION_DEBUG))
5280 *f++ = 'a';
5281 if (flags & SECTION_WRITE)
5282 *f++ = 'w';
5283 if (flags & SECTION_CODE)
5284 *f++ = 'x';
5285 if (flags & SECTION_SMALL)
5286 *f++ = 's';
5287 if (flags & SECTION_MERGE)
5288 *f++ = 'M';
5289 if (flags & SECTION_STRINGS)
5290 *f++ = 'S';
5291 *f = '\0';
5293 if (flags & SECTION_BSS)
5294 type = "nobits";
5295 else
5296 type = "progbits";
5298 if (flags & SECTION_ENTSIZE)
5299 fprintf (asm_out_file, "\t.section\t%s,\"%s\",@%s,%d\n",
5300 name, flagchars, type, flags & SECTION_ENTSIZE);
5301 else
5302 fprintf (asm_out_file, "\t.section\t%s,\"%s\",@%s\n",
5303 name, flagchars, type);
5306 void
5307 default_coff_asm_named_section (name, flags)
5308 const char *name;
5309 unsigned int flags;
5311 char flagchars[8], *f = flagchars;
5313 if (flags & SECTION_WRITE)
5314 *f++ = 'w';
5315 if (flags & SECTION_CODE)
5316 *f++ = 'x';
5317 *f = '\0';
5319 fprintf (asm_out_file, "\t.section\t%s,\"%s\"\n", name, flagchars);
5322 void
5323 default_pe_asm_named_section (name, flags)
5324 const char *name;
5325 unsigned int flags;
5327 default_coff_asm_named_section (name, flags);
5329 if (flags & SECTION_LINKONCE)
5331 /* Functions may have been compiled at various levels of
5332 optimization so we can't use `same_size' here.
5333 Instead, have the linker pick one. */
5334 fprintf (asm_out_file, "\t.linkonce %s\n",
5335 (flags & SECTION_CODE ? "discard" : "same_size"));
5339 /* Used for vtable gc in GNU binutils. Record that the pointer at OFFSET
5340 from SYMBOL is used in all classes derived from SYMBOL. */
5342 void
5343 assemble_vtable_entry (symbol, offset)
5344 rtx symbol;
5345 HOST_WIDE_INT offset;
5347 fputs ("\t.vtable_entry ", asm_out_file);
5348 output_addr_const (asm_out_file, symbol);
5349 fputs (", ", asm_out_file);
5350 fprintf (asm_out_file, HOST_WIDE_INT_PRINT_DEC, offset);
5351 fputc ('\n', asm_out_file);
5354 /* Used for vtable gc in GNU binutils. Record the class hierarchy by noting
5355 that the vtable symbol CHILD is derived from the vtable symbol PARENT. */
5357 void
5358 assemble_vtable_inherit (child, parent)
5359 rtx child, parent;
5361 fputs ("\t.vtable_inherit ", asm_out_file);
5362 output_addr_const (asm_out_file, child);
5363 fputs (", ", asm_out_file);
5364 output_addr_const (asm_out_file, parent);
5365 fputc ('\n', asm_out_file);