Always pass explicit location to fatal_error.
[official-gcc.git] / gcc / config / darwin.c
blob40804b8d11af6bd124ed884e595bed3781795515
1 /* Functions for generic Darwin as target machine for GNU C compiler.
2 Copyright (C) 1989-2015 Free Software Foundation, Inc.
3 Contributed by Apple Computer Inc.
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3, or (at your option)
10 any later version.
12 GCC is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
21 #include "config.h"
22 #include "system.h"
23 #include "coretypes.h"
24 #include "tm.h"
25 #include "rtl.h"
26 #include "regs.h"
27 #include "hard-reg-set.h"
28 #include "insn-config.h"
29 #include "conditions.h"
30 #include "insn-flags.h"
31 #include "output.h"
32 #include "insn-attr.h"
33 #include "flags.h"
34 #include "hash-set.h"
35 #include "machmode.h"
36 #include "vec.h"
37 #include "double-int.h"
38 #include "input.h"
39 #include "alias.h"
40 #include "symtab.h"
41 #include "wide-int.h"
42 #include "inchash.h"
43 #include "tree.h"
44 #include "fold-const.h"
45 #include "stringpool.h"
46 #include "varasm.h"
47 #include "stor-layout.h"
48 #include "hashtab.h"
49 #include "function.h"
50 #include "statistics.h"
51 #include "real.h"
52 #include "fixed-value.h"
53 #include "expmed.h"
54 #include "dojump.h"
55 #include "explow.h"
56 #include "calls.h"
57 #include "emit-rtl.h"
58 #include "stmt.h"
59 #include "expr.h"
60 #include "reload.h"
61 #include "ggc.h"
62 #include "langhooks.h"
63 #include "target.h"
64 #include "tm_p.h"
65 #include "diagnostic-core.h"
66 #include "toplev.h"
67 #include "dominance.h"
68 #include "cfg.h"
69 #include "cfgrtl.h"
70 #include "cfganal.h"
71 #include "lcm.h"
72 #include "cfgbuild.h"
73 #include "cfgcleanup.h"
74 #include "predict.h"
75 #include "basic-block.h"
76 #include "df.h"
77 #include "debug.h"
78 #include "obstack.h"
79 #include "hash-table.h"
80 #include "tree-ssa-alias.h"
81 #include "internal-fn.h"
82 #include "gimple-fold.h"
83 #include "tree-eh.h"
84 #include "gimple-expr.h"
85 #include "is-a.h"
86 #include "gimple.h"
87 #include "gimplify.h"
88 #include "hash-map.h"
89 #include "plugin-api.h"
90 #include "ipa-ref.h"
91 #include "cgraph.h"
92 #include "lto-streamer.h"
93 #include "lto-section-names.h"
95 /* Darwin supports a feature called fix-and-continue, which is used
96 for rapid turn around debugging. When code is compiled with the
97 -mfix-and-continue flag, two changes are made to the generated code
98 that allow the system to do things that it would normally not be
99 able to do easily. These changes allow gdb to load in
100 recompilation of a translation unit that has been changed into a
101 running program and replace existing functions and methods of that
102 translation unit with versions of those functions and methods
103 from the newly compiled translation unit. The new functions access
104 the existing static symbols from the old translation unit, if the
105 symbol existed in the unit to be replaced, and from the new
106 translation unit, otherwise.
108 The changes are to insert 5 nops at the beginning of all functions
109 and to use indirection to get at static symbols. The 5 nops
110 are required by consumers of the generated code. Currently, gdb
111 uses this to patch in a jump to the overriding function, this
112 allows all uses of the old name to forward to the replacement,
113 including existing function pointers and virtual methods. See
114 rs6000_emit_prologue for the code that handles the nop insertions.
116 The added indirection allows gdb to redirect accesses to static
117 symbols from the newly loaded translation unit to the existing
118 symbol, if any. @code{static} symbols are special and are handled by
119 setting the second word in the .non_lazy_symbol_pointer data
120 structure to symbol. See indirect_data for the code that handles
121 the extra indirection, and machopic_output_indirection and its use
122 of MACHO_SYMBOL_STATIC for the code that handles @code{static}
123 symbol indirection. */
125 /* For darwin >= 9 (OSX 10.5) the linker is capable of making the necessary
126 branch islands and we no longer need to emit darwin stubs.
127 However, if we are generating code for earlier systems (or for use in the
128 kernel) the stubs might still be required, and this will be set true. */
129 int darwin_emit_branch_islands = false;
131 typedef struct GTY(()) cdtor_record {
132 rtx symbol;
133 int priority; /* [con/de]structor priority */
134 int position; /* original position */
135 } cdtor_record;
137 static GTY(()) vec<cdtor_record, va_gc> *ctors = NULL;
138 static GTY(()) vec<cdtor_record, va_gc> *dtors = NULL;
140 /* A flag to determine whether we are running c++ or obj-c++. This has to be
141 settable from non-c-family contexts too (i.e. we can't use the c_dialect_
142 functions). */
143 int darwin_running_cxx;
145 /* Some code-gen now depends on OS major version numbers (at least). */
146 int generating_for_darwin_version ;
148 /* Section names. */
149 section * darwin_sections[NUM_DARWIN_SECTIONS];
151 /* While we transition to using in-tests instead of ifdef'd code. */
152 #ifndef HAVE_lo_sum
153 #define HAVE_lo_sum 0
154 #define gen_macho_high(a,b) (a)
155 #define gen_macho_low(a,b,c) (a)
156 #endif
158 /* True if we're setting __attribute__ ((ms_struct)). */
159 int darwin_ms_struct = false;
161 /* Earlier versions of Darwin as do not recognize an alignment field in
162 .comm directives, this should be set for versions that allow it. */
163 int emit_aligned_common = false;
165 /* A get_unnamed_section callback used to switch to an ObjC section.
166 DIRECTIVE is as for output_section_asm_op. */
168 static void
169 output_objc_section_asm_op (const void *directive)
171 static bool been_here = false;
173 /* The NeXT ObjC Runtime requires these sections to be present and in
174 order in the object. The code below implements this by emitting
175 a section header for each ObjC section the first time that an ObjC
176 section is requested. */
177 if (! been_here)
179 section *saved_in_section = in_section;
180 static const enum darwin_section_enum tomark[] =
182 /* written, cold -> hot */
183 objc_cat_cls_meth_section,
184 objc_cat_inst_meth_section,
185 objc_string_object_section,
186 objc_constant_string_object_section,
187 objc_selector_refs_section,
188 objc_selector_fixup_section,
189 objc_cls_refs_section,
190 objc_class_section,
191 objc_meta_class_section,
192 /* shared, hot -> cold */
193 objc_cls_meth_section,
194 objc_inst_meth_section,
195 objc_protocol_section,
196 objc_class_names_section,
197 objc_meth_var_types_section,
198 objc_meth_var_names_section,
199 objc_category_section,
200 objc_class_vars_section,
201 objc_instance_vars_section,
202 objc_module_info_section,
203 objc_symbols_section,
205 /* ABI=1 */
206 static const enum darwin_section_enum tomarkv1[] =
208 objc1_protocol_ext_section,
209 objc1_class_ext_section,
210 objc1_prop_list_section
212 /* ABI=2 */
213 static const enum darwin_section_enum tomarkv2[] =
215 objc2_message_refs_section,
216 objc2_classdefs_section,
217 objc2_metadata_section,
218 objc2_classrefs_section,
219 objc2_classlist_section,
220 objc2_categorylist_section,
221 objc2_selector_refs_section,
222 objc2_nonlazy_class_section,
223 objc2_nonlazy_category_section,
224 objc2_protocollist_section,
225 objc2_protocolrefs_section,
226 objc2_super_classrefs_section,
227 objc2_image_info_section,
228 objc2_constant_string_object_section
230 size_t i;
232 been_here = true;
233 if (flag_objc_abi < 2)
235 for (i = 0; i < ARRAY_SIZE (tomark); i++)
236 switch_to_section (darwin_sections[tomark[i]]);
237 if (flag_objc_abi == 1)
238 for (i = 0; i < ARRAY_SIZE (tomarkv1); i++)
239 switch_to_section (darwin_sections[tomarkv1[i]]);
241 else
242 for (i = 0; i < ARRAY_SIZE (tomarkv2); i++)
243 switch_to_section (darwin_sections[tomarkv2[i]]);
244 /* Make sure we don't get varasm.c out of sync with us. */
245 switch_to_section (saved_in_section);
247 output_section_asm_op (directive);
251 /* Private flag applied to disable section-anchors in a particular section. */
252 #define SECTION_NO_ANCHOR SECTION_MACH_DEP
255 /* Implement TARGET_ASM_INIT_SECTIONS. */
257 void
258 darwin_init_sections (void)
260 #define DEF_SECTION(NAME, FLAGS, DIRECTIVE, OBJC) \
261 darwin_sections[NAME] = \
262 get_unnamed_section (FLAGS, (OBJC \
263 ? output_objc_section_asm_op \
264 : output_section_asm_op), \
265 "\t" DIRECTIVE);
266 #include "config/darwin-sections.def"
267 #undef DEF_SECTION
269 readonly_data_section = darwin_sections[const_section];
270 exception_section = darwin_sections[darwin_exception_section];
271 eh_frame_section = darwin_sections[darwin_eh_frame_section];
275 name_needs_quotes (const char *name)
277 int c;
278 while ((c = *name++) != '\0')
279 if (! ISIDNUM (c)
280 && c != '.' && c != '$' && c != '_' )
281 return 1;
282 return 0;
285 /* Return true if SYM_REF can be used without an indirection. */
287 machopic_symbol_defined_p (rtx sym_ref)
289 if (SYMBOL_REF_FLAGS (sym_ref) & MACHO_SYMBOL_FLAG_DEFINED)
290 return true;
292 /* If a symbol references local and is not an extern to this
293 file, then the symbol might be able to declared as defined. */
294 if (SYMBOL_REF_LOCAL_P (sym_ref) && ! SYMBOL_REF_EXTERNAL_P (sym_ref))
296 /* If the symbol references a variable and the variable is a
297 common symbol, then this symbol is not defined. */
298 if (SYMBOL_REF_FLAGS (sym_ref) & MACHO_SYMBOL_FLAG_VARIABLE)
300 tree decl = SYMBOL_REF_DECL (sym_ref);
301 if (!decl)
302 return true;
303 if (DECL_COMMON (decl))
304 return false;
306 return true;
308 return false;
311 /* This module assumes that (const (symbol_ref "foo")) is a legal pic
312 reference, which will not be changed. */
314 enum machopic_addr_class
315 machopic_classify_symbol (rtx sym_ref)
317 bool function_p;
319 function_p = SYMBOL_REF_FUNCTION_P (sym_ref);
320 if (machopic_symbol_defined_p (sym_ref))
321 return (function_p
322 ? MACHOPIC_DEFINED_FUNCTION : MACHOPIC_DEFINED_DATA);
323 else
324 return (function_p
325 ? MACHOPIC_UNDEFINED_FUNCTION : MACHOPIC_UNDEFINED_DATA);
328 #ifndef TARGET_FIX_AND_CONTINUE
329 #define TARGET_FIX_AND_CONTINUE 0
330 #endif
332 /* Indicate when fix-and-continue style code generation is being used
333 and when a reference to data should be indirected so that it can be
334 rebound in a new translation unit to reference the original instance
335 of that data. Symbol names that are for code generation local to
336 the translation unit are bound to the new translation unit;
337 currently this means symbols that begin with L or _OBJC_;
338 otherwise, we indicate that an indirect reference should be made to
339 permit the runtime to rebind new instances of the translation unit
340 to the original instance of the data. */
342 static int
343 indirect_data (rtx sym_ref)
345 int lprefix;
346 const char *name;
348 /* If we aren't generating fix-and-continue code, don't do anything
349 special. */
350 if (TARGET_FIX_AND_CONTINUE == 0)
351 return 0;
353 /* Otherwise, all symbol except symbols that begin with L or _OBJC_
354 are indirected. Symbols that begin with L and _OBJC_ are always
355 bound to the current translation unit as they are used for
356 generated local data of the translation unit. */
358 name = XSTR (sym_ref, 0);
360 lprefix = (((name[0] == '*' || name[0] == '&')
361 && (name[1] == 'L' || (name[1] == '"' && name[2] == 'L')))
362 || (strncmp (name, "_OBJC_", 6) == 0));
364 return ! lprefix;
367 static int
368 machopic_data_defined_p (rtx sym_ref)
370 if (indirect_data (sym_ref))
371 return 0;
373 switch (machopic_classify_symbol (sym_ref))
375 case MACHOPIC_DEFINED_DATA:
376 case MACHOPIC_DEFINED_FUNCTION:
377 return 1;
378 default:
379 return 0;
383 void
384 machopic_define_symbol (rtx mem)
386 rtx sym_ref;
388 gcc_assert (GET_CODE (mem) == MEM);
389 sym_ref = XEXP (mem, 0);
390 SYMBOL_REF_FLAGS (sym_ref) |= MACHO_SYMBOL_FLAG_DEFINED;
393 /* Return either ORIG or:
395 (const:P (unspec:P [ORIG] UNSPEC_MACHOPIC_OFFSET))
397 depending on MACHO_DYNAMIC_NO_PIC_P. */
399 machopic_gen_offset (rtx orig)
401 if (MACHO_DYNAMIC_NO_PIC_P)
402 return orig;
403 else
405 /* Play games to avoid marking the function as needing pic if we
406 are being called as part of the cost-estimation process. */
407 if (current_ir_type () != IR_GIMPLE || currently_expanding_to_rtl)
408 crtl->uses_pic_offset_table = 1;
409 orig = gen_rtx_UNSPEC (Pmode, gen_rtvec (1, orig),
410 UNSPEC_MACHOPIC_OFFSET);
411 return gen_rtx_CONST (Pmode, orig);
415 static GTY(()) const char * function_base_func_name;
416 static GTY(()) int current_pic_label_num;
417 static GTY(()) int emitted_pic_label_num;
419 static void
420 update_pic_label_number_if_needed (void)
422 const char *current_name;
424 /* When we are generating _get_pc thunks within stubs, there is no current
425 function. */
426 if (current_function_decl)
428 current_name =
429 IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (current_function_decl));
430 if (function_base_func_name != current_name)
432 ++current_pic_label_num;
433 function_base_func_name = current_name;
436 else
438 ++current_pic_label_num;
439 function_base_func_name = "L_machopic_stub_dummy";
443 void
444 machopic_output_function_base_name (FILE *file)
446 /* If dynamic-no-pic is on, we should not get here. */
447 gcc_assert (!MACHO_DYNAMIC_NO_PIC_P);
449 update_pic_label_number_if_needed ();
450 fprintf (file, "L%d$pb", current_pic_label_num);
453 char curr_picbasename[32];
455 const char *
456 machopic_get_function_picbase (void)
458 /* If dynamic-no-pic is on, we should not get here. */
459 gcc_assert (!MACHO_DYNAMIC_NO_PIC_P);
461 update_pic_label_number_if_needed ();
462 snprintf (curr_picbasename, 32, "L%d$pb", current_pic_label_num);
463 return (const char *) curr_picbasename;
466 bool
467 machopic_should_output_picbase_label (void)
469 update_pic_label_number_if_needed ();
471 if (current_pic_label_num == emitted_pic_label_num)
472 return false;
474 emitted_pic_label_num = current_pic_label_num;
475 return true;
478 /* The suffix attached to non-lazy pointer symbols. */
479 #define NON_LAZY_POINTER_SUFFIX "$non_lazy_ptr"
480 /* The suffix attached to stub symbols. */
481 #define STUB_SUFFIX "$stub"
483 typedef struct GTY ((for_user)) machopic_indirection
485 /* The SYMBOL_REF for the entity referenced. */
486 rtx symbol;
487 /* The name of the stub or non-lazy pointer. */
488 const char * ptr_name;
489 /* True iff this entry is for a stub (as opposed to a non-lazy
490 pointer). */
491 bool stub_p;
492 /* True iff this stub or pointer pointer has been referenced. */
493 bool used;
494 } machopic_indirection;
496 struct indirection_hasher : ggc_hasher<machopic_indirection *>
498 typedef const char *compare_type;
499 static hashval_t hash (machopic_indirection *);
500 static bool equal (machopic_indirection *, const char *);
503 /* A table mapping stub names and non-lazy pointer names to
504 SYMBOL_REFs for the stubbed-to and pointed-to entities. */
506 static GTY (()) hash_table<indirection_hasher> *machopic_indirections;
508 /* Return a hash value for a SLOT in the indirections hash table. */
510 hashval_t
511 indirection_hasher::hash (machopic_indirection *p)
513 return htab_hash_string (p->ptr_name);
516 /* Returns true if the KEY is the same as that associated with
517 SLOT. */
519 bool
520 indirection_hasher::equal (machopic_indirection *s, const char *k)
522 return strcmp (s->ptr_name, k) == 0;
525 /* Return the name of the non-lazy pointer (if STUB_P is false) or
526 stub (if STUB_B is true) corresponding to the given name. */
528 const char *
529 machopic_indirection_name (rtx sym_ref, bool stub_p)
531 char *buffer;
532 const char *name = XSTR (sym_ref, 0);
533 size_t namelen = strlen (name);
534 machopic_indirection *p;
535 bool needs_quotes;
536 const char *suffix;
537 const char *prefix = user_label_prefix;
538 const char *quote = "";
539 tree id;
541 id = maybe_get_identifier (name);
542 if (id)
544 tree id_orig = id;
546 while (IDENTIFIER_TRANSPARENT_ALIAS (id))
547 id = TREE_CHAIN (id);
548 if (id != id_orig)
550 name = IDENTIFIER_POINTER (id);
551 namelen = strlen (name);
555 if (name[0] == '*')
557 prefix = "";
558 ++name;
559 --namelen;
562 needs_quotes = name_needs_quotes (name);
563 if (needs_quotes)
565 quote = "\"";
568 if (stub_p)
569 suffix = STUB_SUFFIX;
570 else
571 suffix = NON_LAZY_POINTER_SUFFIX;
573 buffer = XALLOCAVEC (char, strlen ("&L")
574 + strlen (prefix)
575 + namelen
576 + strlen (suffix)
577 + 2 * strlen (quote)
578 + 1 /* '\0' */);
580 /* Construct the name of the non-lazy pointer or stub. */
581 sprintf (buffer, "&%sL%s%s%s%s", quote, prefix, name, suffix, quote);
583 if (!machopic_indirections)
584 machopic_indirections = hash_table<indirection_hasher>::create_ggc (37);
586 machopic_indirection **slot
587 = machopic_indirections->find_slot_with_hash (buffer,
588 htab_hash_string (buffer),
589 INSERT);
590 if (*slot)
592 p = *slot;
594 else
596 p = ggc_alloc<machopic_indirection> ();
597 p->symbol = sym_ref;
598 p->ptr_name = xstrdup (buffer);
599 p->stub_p = stub_p;
600 p->used = false;
601 *slot = p;
604 return p->ptr_name;
607 /* Return the name of the stub for the mcount function. */
609 const char*
610 machopic_mcount_stub_name (void)
612 rtx symbol = gen_rtx_SYMBOL_REF (Pmode, "*mcount");
613 return machopic_indirection_name (symbol, /*stub_p=*/true);
616 /* If NAME is the name of a stub or a non-lazy pointer , mark the stub
617 or non-lazy pointer as used -- and mark the object to which the
618 pointer/stub refers as used as well, since the pointer/stub will
619 emit a reference to it. */
621 void
622 machopic_validate_stub_or_non_lazy_ptr (const char *name)
624 machopic_indirection *p
625 = machopic_indirections->find_with_hash (name, htab_hash_string (name));
626 if (p && ! p->used)
628 const char *real_name;
629 tree id;
631 p->used = true;
633 /* Do what output_addr_const will do when we actually call it. */
634 if (SYMBOL_REF_DECL (p->symbol))
635 mark_decl_referenced (SYMBOL_REF_DECL (p->symbol));
637 real_name = targetm.strip_name_encoding (XSTR (p->symbol, 0));
639 id = maybe_get_identifier (real_name);
640 if (id)
641 mark_referenced (id);
645 /* Transform ORIG, which may be any data source, to the corresponding
646 source using indirections. */
649 machopic_indirect_data_reference (rtx orig, rtx reg)
651 rtx ptr_ref = orig;
653 if (! MACHOPIC_INDIRECT)
654 return orig;
656 if (GET_CODE (orig) == SYMBOL_REF)
658 int defined = machopic_data_defined_p (orig);
660 if (defined && MACHO_DYNAMIC_NO_PIC_P)
662 if (DARWIN_PPC)
664 /* Create a new register for CSE opportunities. */
665 rtx hi_reg = (!can_create_pseudo_p () ? reg : gen_reg_rtx (Pmode));
666 emit_insn (gen_macho_high (hi_reg, orig));
667 emit_insn (gen_macho_low (reg, hi_reg, orig));
668 return reg;
670 else if (DARWIN_X86)
671 return orig;
672 else
673 /* some other cpu -- writeme! */
674 gcc_unreachable ();
676 else if (defined)
678 rtx offset = NULL;
679 if (DARWIN_PPC || HAVE_lo_sum)
680 offset = machopic_gen_offset (orig);
682 if (DARWIN_PPC)
684 rtx hi_sum_reg = (!can_create_pseudo_p ()
685 ? reg
686 : gen_reg_rtx (Pmode));
688 gcc_assert (reg);
690 emit_insn (gen_rtx_SET (Pmode, hi_sum_reg,
691 gen_rtx_PLUS (Pmode, pic_offset_table_rtx,
692 gen_rtx_HIGH (Pmode, offset))));
693 emit_insn (gen_rtx_SET (Pmode, reg,
694 gen_rtx_LO_SUM (Pmode, hi_sum_reg,
695 copy_rtx (offset))));
697 orig = reg;
699 else if (HAVE_lo_sum)
701 gcc_assert (reg);
703 emit_insn (gen_rtx_SET (VOIDmode, reg,
704 gen_rtx_HIGH (Pmode, offset)));
705 emit_insn (gen_rtx_SET (VOIDmode, reg,
706 gen_rtx_LO_SUM (Pmode, reg,
707 copy_rtx (offset))));
708 emit_use (pic_offset_table_rtx);
710 orig = gen_rtx_PLUS (Pmode, pic_offset_table_rtx, reg);
712 return orig;
715 ptr_ref = (gen_rtx_SYMBOL_REF
716 (Pmode,
717 machopic_indirection_name (orig, /*stub_p=*/false)));
719 SYMBOL_REF_DATA (ptr_ref) = SYMBOL_REF_DATA (orig);
721 ptr_ref = gen_const_mem (Pmode, ptr_ref);
722 machopic_define_symbol (ptr_ref);
724 if (DARWIN_X86
725 && reg
726 && MACHO_DYNAMIC_NO_PIC_P)
728 emit_insn (gen_rtx_SET (Pmode, reg, ptr_ref));
729 ptr_ref = reg;
732 return ptr_ref;
734 else if (GET_CODE (orig) == CONST)
736 /* If "(const (plus ...", walk the PLUS and return that result.
737 PLUS processing (below) will restore the "(const ..." if
738 appropriate. */
739 if (GET_CODE (XEXP (orig, 0)) == PLUS)
740 return machopic_indirect_data_reference (XEXP (orig, 0), reg);
741 else
742 return orig;
744 else if (GET_CODE (orig) == MEM)
746 XEXP (ptr_ref, 0) =
747 machopic_indirect_data_reference (XEXP (orig, 0), reg);
748 return ptr_ref;
750 else if (GET_CODE (orig) == PLUS)
752 rtx base, result;
753 /* When the target is i386, this code prevents crashes due to the
754 compiler's ignorance on how to move the PIC base register to
755 other registers. (The reload phase sometimes introduces such
756 insns.) */
757 if (GET_CODE (XEXP (orig, 0)) == REG
758 && REGNO (XEXP (orig, 0)) == PIC_OFFSET_TABLE_REGNUM
759 /* Prevent the same register from being erroneously used
760 as both the base and index registers. */
761 && (DARWIN_X86 && (GET_CODE (XEXP (orig, 1)) == CONST))
762 && reg)
764 emit_move_insn (reg, XEXP (orig, 0));
765 XEXP (ptr_ref, 0) = reg;
766 return ptr_ref;
769 /* Legitimize both operands of the PLUS. */
770 base = machopic_indirect_data_reference (XEXP (orig, 0), reg);
771 orig = machopic_indirect_data_reference (XEXP (orig, 1),
772 (base == reg ? 0 : reg));
773 if (MACHOPIC_INDIRECT && (GET_CODE (orig) == CONST_INT))
774 result = plus_constant (Pmode, base, INTVAL (orig));
775 else
776 result = gen_rtx_PLUS (Pmode, base, orig);
778 if (MACHOPIC_JUST_INDIRECT && GET_CODE (base) == MEM)
780 if (reg)
782 emit_move_insn (reg, result);
783 result = reg;
785 else
787 result = force_reg (GET_MODE (result), result);
791 return result;
793 return ptr_ref;
796 /* Transform TARGET (a MEM), which is a function call target, to the
797 corresponding symbol_stub if necessary. Return a new MEM. */
800 machopic_indirect_call_target (rtx target)
802 if (! darwin_emit_branch_islands)
803 return target;
805 if (GET_CODE (target) != MEM)
806 return target;
808 if (MACHOPIC_INDIRECT
809 && GET_CODE (XEXP (target, 0)) == SYMBOL_REF
810 && !(SYMBOL_REF_FLAGS (XEXP (target, 0))
811 & MACHO_SYMBOL_FLAG_DEFINED))
813 rtx sym_ref = XEXP (target, 0);
814 const char *stub_name = machopic_indirection_name (sym_ref,
815 /*stub_p=*/true);
816 machine_mode mode = GET_MODE (sym_ref);
818 XEXP (target, 0) = gen_rtx_SYMBOL_REF (mode, stub_name);
819 SYMBOL_REF_DATA (XEXP (target, 0)) = SYMBOL_REF_DATA (sym_ref);
820 MEM_READONLY_P (target) = 1;
821 MEM_NOTRAP_P (target) = 1;
824 return target;
828 machopic_legitimize_pic_address (rtx orig, machine_mode mode, rtx reg)
830 rtx pic_ref = orig;
832 if (! MACHOPIC_INDIRECT)
833 return orig;
835 /* First handle a simple SYMBOL_REF or LABEL_REF */
836 if (GET_CODE (orig) == LABEL_REF
837 || (GET_CODE (orig) == SYMBOL_REF
840 /* addr(foo) = &func+(foo-func) */
841 orig = machopic_indirect_data_reference (orig, reg);
843 if (GET_CODE (orig) == PLUS
844 && GET_CODE (XEXP (orig, 0)) == REG)
846 if (reg == 0)
847 return force_reg (mode, orig);
849 emit_move_insn (reg, orig);
850 return reg;
853 if (GET_CODE (orig) == MEM)
855 if (reg == 0)
857 gcc_assert (!reload_in_progress);
858 reg = gen_reg_rtx (Pmode);
861 #if HAVE_lo_sum
862 if (MACHO_DYNAMIC_NO_PIC_P
863 && (GET_CODE (XEXP (orig, 0)) == SYMBOL_REF
864 || GET_CODE (XEXP (orig, 0)) == LABEL_REF))
866 #if defined (TARGET_TOC) /* ppc */
867 rtx temp_reg = (!can_create_pseudo_p ()
868 ? reg :
869 gen_reg_rtx (Pmode));
870 rtx asym = XEXP (orig, 0);
871 rtx mem;
873 emit_insn (gen_macho_high (temp_reg, asym));
874 mem = gen_const_mem (GET_MODE (orig),
875 gen_rtx_LO_SUM (Pmode, temp_reg,
876 copy_rtx (asym)));
877 emit_insn (gen_rtx_SET (VOIDmode, reg, mem));
878 #else
879 /* Some other CPU -- WriteMe! but right now there are no other
880 platforms that can use dynamic-no-pic */
881 gcc_unreachable ();
882 #endif
883 pic_ref = reg;
885 else
886 if (GET_CODE (XEXP (orig, 0)) == SYMBOL_REF
887 || GET_CODE (XEXP (orig, 0)) == LABEL_REF)
889 rtx offset = machopic_gen_offset (XEXP (orig, 0));
890 #if defined (TARGET_TOC) /* i.e., PowerPC */
891 /* Generating a new reg may expose opportunities for
892 common subexpression elimination. */
893 rtx hi_sum_reg = (!can_create_pseudo_p ()
894 ? reg
895 : gen_reg_rtx (Pmode));
896 rtx mem;
897 rtx insn;
898 rtx sum;
900 sum = gen_rtx_HIGH (Pmode, offset);
901 if (! MACHO_DYNAMIC_NO_PIC_P)
902 sum = gen_rtx_PLUS (Pmode, pic_offset_table_rtx, sum);
904 emit_insn (gen_rtx_SET (Pmode, hi_sum_reg, sum));
906 mem = gen_const_mem (GET_MODE (orig),
907 gen_rtx_LO_SUM (Pmode,
908 hi_sum_reg,
909 copy_rtx (offset)));
910 insn = emit_insn (gen_rtx_SET (VOIDmode, reg, mem));
911 set_unique_reg_note (insn, REG_EQUAL, pic_ref);
913 pic_ref = reg;
914 #else
915 emit_use (gen_rtx_REG (Pmode, PIC_OFFSET_TABLE_REGNUM));
917 emit_insn (gen_rtx_SET (VOIDmode, reg,
918 gen_rtx_HIGH (Pmode,
919 gen_rtx_CONST (Pmode,
920 offset))));
921 emit_insn (gen_rtx_SET (VOIDmode, reg,
922 gen_rtx_LO_SUM (Pmode, reg,
923 gen_rtx_CONST (Pmode,
924 copy_rtx (offset)))));
925 pic_ref = gen_rtx_PLUS (Pmode,
926 pic_offset_table_rtx, reg);
927 #endif
929 else
930 #endif /* HAVE_lo_sum */
932 rtx pic = pic_offset_table_rtx;
933 if (GET_CODE (pic) != REG)
935 emit_move_insn (reg, pic);
936 pic = reg;
938 #if 0
939 emit_use (gen_rtx_REG (Pmode, PIC_OFFSET_TABLE_REGNUM));
940 #endif
942 if (reload_in_progress)
943 df_set_regs_ever_live (REGNO (pic), true);
944 pic_ref = gen_rtx_PLUS (Pmode, pic,
945 machopic_gen_offset (XEXP (orig, 0)));
948 #if !defined (TARGET_TOC)
949 emit_move_insn (reg, pic_ref);
950 pic_ref = gen_const_mem (GET_MODE (orig), reg);
951 #endif
953 else
956 #if HAVE_lo_sum
957 if (GET_CODE (orig) == SYMBOL_REF
958 || GET_CODE (orig) == LABEL_REF)
960 rtx offset = machopic_gen_offset (orig);
961 #if defined (TARGET_TOC) /* i.e., PowerPC */
962 rtx hi_sum_reg;
964 if (reg == 0)
966 gcc_assert (!reload_in_progress);
967 reg = gen_reg_rtx (Pmode);
970 hi_sum_reg = reg;
972 emit_insn (gen_rtx_SET (Pmode, hi_sum_reg,
973 (MACHO_DYNAMIC_NO_PIC_P)
974 ? gen_rtx_HIGH (Pmode, offset)
975 : gen_rtx_PLUS (Pmode,
976 pic_offset_table_rtx,
977 gen_rtx_HIGH (Pmode,
978 offset))));
979 emit_insn (gen_rtx_SET (VOIDmode, reg,
980 gen_rtx_LO_SUM (Pmode,
981 hi_sum_reg,
982 copy_rtx (offset))));
983 pic_ref = reg;
984 #else
985 emit_insn (gen_rtx_SET (VOIDmode, reg,
986 gen_rtx_HIGH (Pmode, offset)));
987 emit_insn (gen_rtx_SET (VOIDmode, reg,
988 gen_rtx_LO_SUM (Pmode, reg,
989 copy_rtx (offset))));
990 pic_ref = gen_rtx_PLUS (Pmode,
991 pic_offset_table_rtx, reg);
992 #endif
994 else
995 #endif /* HAVE_lo_sum */
997 if (REG_P (orig)
998 || GET_CODE (orig) == SUBREG)
1000 return orig;
1002 else
1004 rtx pic = pic_offset_table_rtx;
1005 if (GET_CODE (pic) != REG)
1007 emit_move_insn (reg, pic);
1008 pic = reg;
1010 #if 0
1011 emit_use (pic_offset_table_rtx);
1012 #endif
1013 if (reload_in_progress)
1014 df_set_regs_ever_live (REGNO (pic), true);
1015 pic_ref = gen_rtx_PLUS (Pmode,
1016 pic,
1017 machopic_gen_offset (orig));
1022 if (GET_CODE (pic_ref) != REG)
1024 if (reg != 0)
1026 emit_move_insn (reg, pic_ref);
1027 return reg;
1029 else
1031 return force_reg (mode, pic_ref);
1034 else
1036 return pic_ref;
1040 else if (GET_CODE (orig) == SYMBOL_REF)
1041 return orig;
1043 else if (GET_CODE (orig) == PLUS
1044 && (GET_CODE (XEXP (orig, 0)) == MEM
1045 || GET_CODE (XEXP (orig, 0)) == SYMBOL_REF
1046 || GET_CODE (XEXP (orig, 0)) == LABEL_REF)
1047 && XEXP (orig, 0) != pic_offset_table_rtx
1048 && GET_CODE (XEXP (orig, 1)) != REG)
1051 rtx base;
1052 int is_complex = (GET_CODE (XEXP (orig, 0)) == MEM);
1054 base = machopic_legitimize_pic_address (XEXP (orig, 0), Pmode, reg);
1055 orig = machopic_legitimize_pic_address (XEXP (orig, 1),
1056 Pmode, (base == reg ? 0 : reg));
1057 if (GET_CODE (orig) == CONST_INT)
1059 pic_ref = plus_constant (Pmode, base, INTVAL (orig));
1060 is_complex = 1;
1062 else
1063 pic_ref = gen_rtx_PLUS (Pmode, base, orig);
1065 if (reg && is_complex)
1067 emit_move_insn (reg, pic_ref);
1068 pic_ref = reg;
1070 /* Likewise, should we set special REG_NOTEs here? */
1073 else if (GET_CODE (orig) == CONST)
1075 return machopic_legitimize_pic_address (XEXP (orig, 0), Pmode, reg);
1078 else if (GET_CODE (orig) == MEM
1079 && GET_CODE (XEXP (orig, 0)) == SYMBOL_REF)
1081 rtx addr = machopic_legitimize_pic_address (XEXP (orig, 0), Pmode, reg);
1082 addr = replace_equiv_address (orig, addr);
1083 emit_move_insn (reg, addr);
1084 pic_ref = reg;
1087 return pic_ref;
1090 /* Output the stub or non-lazy pointer in *SLOT, if it has been used.
1091 DATA is the FILE* for assembly output. Called from
1092 htab_traverse. */
1095 machopic_output_indirection (machopic_indirection **slot, FILE *asm_out_file)
1097 machopic_indirection *p = *slot;
1098 rtx symbol;
1099 const char *sym_name;
1100 const char *ptr_name;
1102 if (!p->used)
1103 return 1;
1105 symbol = p->symbol;
1106 sym_name = XSTR (symbol, 0);
1107 ptr_name = p->ptr_name;
1109 if (p->stub_p)
1111 char *sym;
1112 char *stub;
1113 tree id;
1115 id = maybe_get_identifier (sym_name);
1116 if (id)
1118 tree id_orig = id;
1120 while (IDENTIFIER_TRANSPARENT_ALIAS (id))
1121 id = TREE_CHAIN (id);
1122 if (id != id_orig)
1123 sym_name = IDENTIFIER_POINTER (id);
1126 sym = XALLOCAVEC (char, strlen (sym_name) + 2);
1127 if (sym_name[0] == '*' || sym_name[0] == '&')
1128 strcpy (sym, sym_name + 1);
1129 else if (sym_name[0] == '-' || sym_name[0] == '+')
1130 strcpy (sym, sym_name);
1131 else
1132 sprintf (sym, "%s%s", user_label_prefix, sym_name);
1134 stub = XALLOCAVEC (char, strlen (ptr_name) + 2);
1135 if (ptr_name[0] == '*' || ptr_name[0] == '&')
1136 strcpy (stub, ptr_name + 1);
1137 else
1138 sprintf (stub, "%s%s", user_label_prefix, ptr_name);
1140 machopic_output_stub (asm_out_file, sym, stub);
1142 else if (! indirect_data (symbol)
1143 && (machopic_symbol_defined_p (symbol)
1144 || SYMBOL_REF_LOCAL_P (symbol)))
1146 switch_to_section (data_section);
1147 assemble_align (GET_MODE_ALIGNMENT (Pmode));
1148 assemble_label (asm_out_file, ptr_name);
1149 assemble_integer (gen_rtx_SYMBOL_REF (Pmode, sym_name),
1150 GET_MODE_SIZE (Pmode),
1151 GET_MODE_ALIGNMENT (Pmode), 1);
1153 else
1155 rtx init = const0_rtx;
1157 switch_to_section (darwin_sections[machopic_nl_symbol_ptr_section]);
1159 /* Mach-O symbols are passed around in code through indirect
1160 references and the original symbol_ref hasn't passed through
1161 the generic handling and reference-catching in
1162 output_operand, so we need to manually mark weak references
1163 as such. */
1164 if (SYMBOL_REF_WEAK (symbol))
1166 tree decl = SYMBOL_REF_DECL (symbol);
1167 gcc_assert (DECL_P (decl));
1169 if (decl != NULL_TREE
1170 && DECL_EXTERNAL (decl) && TREE_PUBLIC (decl)
1171 /* Handle only actual external-only definitions, not
1172 e.g. extern inline code or variables for which
1173 storage has been allocated. */
1174 && !TREE_STATIC (decl))
1176 fputs ("\t.weak_reference ", asm_out_file);
1177 assemble_name (asm_out_file, sym_name);
1178 fputc ('\n', asm_out_file);
1182 assemble_name (asm_out_file, ptr_name);
1183 fprintf (asm_out_file, ":\n");
1185 fprintf (asm_out_file, "\t.indirect_symbol ");
1186 assemble_name (asm_out_file, sym_name);
1187 fprintf (asm_out_file, "\n");
1189 /* Variables that are marked with MACHO_SYMBOL_STATIC need to
1190 have their symbol name instead of 0 in the second entry of
1191 the non-lazy symbol pointer data structure when they are
1192 defined. This allows the runtime to rebind newer instances
1193 of the translation unit with the original instance of the
1194 symbol. */
1196 if ((SYMBOL_REF_FLAGS (symbol) & MACHO_SYMBOL_STATIC)
1197 && machopic_symbol_defined_p (symbol))
1198 init = gen_rtx_SYMBOL_REF (Pmode, sym_name);
1200 assemble_integer (init, GET_MODE_SIZE (Pmode),
1201 GET_MODE_ALIGNMENT (Pmode), 1);
1204 return 1;
1207 void
1208 machopic_finish (FILE *asm_out_file)
1210 if (machopic_indirections)
1211 machopic_indirections
1212 ->traverse_noresize<FILE *, machopic_output_indirection> (asm_out_file);
1216 machopic_operand_p (rtx op)
1218 if (MACHOPIC_JUST_INDIRECT)
1219 return (GET_CODE (op) == SYMBOL_REF
1220 && machopic_symbol_defined_p (op));
1221 else
1222 return (GET_CODE (op) == CONST
1223 && GET_CODE (XEXP (op, 0)) == UNSPEC
1224 && XINT (XEXP (op, 0), 1) == UNSPEC_MACHOPIC_OFFSET);
1227 /* This function records whether a given name corresponds to a defined
1228 or undefined function or variable, for machopic_classify_ident to
1229 use later. */
1231 void
1232 darwin_encode_section_info (tree decl, rtx rtl, int first ATTRIBUTE_UNUSED)
1234 rtx sym_ref;
1236 /* Do the standard encoding things first. */
1237 default_encode_section_info (decl, rtl, first);
1239 if (TREE_CODE (decl) != FUNCTION_DECL && TREE_CODE (decl) != VAR_DECL)
1240 return;
1242 sym_ref = XEXP (rtl, 0);
1243 if (TREE_CODE (decl) == VAR_DECL)
1244 SYMBOL_REF_FLAGS (sym_ref) |= MACHO_SYMBOL_FLAG_VARIABLE;
1246 if (!DECL_EXTERNAL (decl)
1247 && (!TREE_PUBLIC (decl) || !DECL_WEAK (decl))
1248 && ! lookup_attribute ("weakref", DECL_ATTRIBUTES (decl))
1249 && ((TREE_STATIC (decl)
1250 && (!DECL_COMMON (decl) || !TREE_PUBLIC (decl)))
1251 || (!DECL_COMMON (decl) && DECL_INITIAL (decl)
1252 && DECL_INITIAL (decl) != error_mark_node)))
1253 SYMBOL_REF_FLAGS (sym_ref) |= MACHO_SYMBOL_FLAG_DEFINED;
1255 if (! TREE_PUBLIC (decl))
1256 SYMBOL_REF_FLAGS (sym_ref) |= MACHO_SYMBOL_STATIC;
1259 void
1260 darwin_mark_decl_preserved (const char *name)
1262 fprintf (asm_out_file, "\t.no_dead_strip ");
1263 assemble_name (asm_out_file, name);
1264 fputc ('\n', asm_out_file);
1267 static section *
1268 darwin_rodata_section (int weak, bool zsize)
1270 return (weak
1271 ? darwin_sections[const_coal_section]
1272 : (zsize ? darwin_sections[zobj_const_section]
1273 : darwin_sections[const_section]));
1276 static section *
1277 darwin_mergeable_string_section (tree exp,
1278 unsigned HOST_WIDE_INT align)
1280 /* Darwin's ld expects to see non-writable string literals in the .cstring
1281 section. Later versions of ld check and complain when CFStrings are
1282 enabled. Therefore we shall force the strings into .cstring since we
1283 don't support writable ones anyway. */
1284 if ((darwin_constant_cfstrings || flag_merge_constants)
1285 && TREE_CODE (exp) == STRING_CST
1286 && TREE_CODE (TREE_TYPE (exp)) == ARRAY_TYPE
1287 && align <= 256
1288 && (int_size_in_bytes (TREE_TYPE (exp))
1289 == TREE_STRING_LENGTH (exp))
1290 && ((size_t) TREE_STRING_LENGTH (exp)
1291 == strlen (TREE_STRING_POINTER (exp)) + 1))
1292 return darwin_sections[cstring_section];
1294 if (DARWIN_SECTION_ANCHORS && flag_section_anchors
1295 && TREE_CODE (exp) == STRING_CST
1296 && TREE_STRING_LENGTH (exp) == 0)
1297 return darwin_sections[zobj_const_section];
1299 return readonly_data_section;
1302 #ifndef HAVE_GAS_LITERAL16
1303 #define HAVE_GAS_LITERAL16 0
1304 #endif
1306 static section *
1307 darwin_mergeable_constant_section (tree exp,
1308 unsigned HOST_WIDE_INT align,
1309 bool zsize)
1311 machine_mode mode = DECL_MODE (exp);
1312 unsigned int modesize = GET_MODE_BITSIZE (mode);
1314 if (DARWIN_SECTION_ANCHORS
1315 && flag_section_anchors
1316 && zsize)
1317 return darwin_sections[zobj_const_section];
1319 if (flag_merge_constants
1320 && mode != VOIDmode
1321 && mode != BLKmode
1322 && modesize <= align
1323 && align >= 8
1324 && align <= 256
1325 && (align & (align -1)) == 0)
1327 tree size = TYPE_SIZE_UNIT (TREE_TYPE (exp));
1329 if (TREE_CODE (size) == INTEGER_CST)
1331 if (wi::eq_p (size, 4))
1332 return darwin_sections[literal4_section];
1333 else if (wi::eq_p (size, 8))
1334 return darwin_sections[literal8_section];
1335 else if (HAVE_GAS_LITERAL16
1336 && TARGET_64BIT
1337 && wi::eq_p (size, 16))
1338 return darwin_sections[literal16_section];
1342 return readonly_data_section;
1345 section *
1346 darwin_tm_clone_table_section (void)
1348 return get_named_section (NULL,
1349 "__DATA,__tm_clone_table,regular,no_dead_strip",
1354 machopic_reloc_rw_mask (void)
1356 return MACHOPIC_INDIRECT ? 3 : 0;
1359 /* We have to deal with ObjC/C++ metadata section placement in the common
1360 code, since it will also be called from LTO.
1362 Return metadata attributes, if present (searching for ABI=2 first)
1363 Return NULL_TREE if no such attributes are found. */
1365 static tree
1366 is_objc_metadata (tree decl)
1368 if (DECL_P (decl)
1369 && (TREE_CODE (decl) == VAR_DECL || TREE_CODE (decl) == CONST_DECL)
1370 && DECL_ATTRIBUTES (decl))
1372 tree meta = lookup_attribute ("OBJC2META", DECL_ATTRIBUTES (decl));
1373 if (meta)
1374 return meta;
1375 meta = lookup_attribute ("OBJC1META", DECL_ATTRIBUTES (decl));
1376 if (meta)
1377 return meta;
1379 return NULL_TREE;
1382 static int classes_seen;
1383 static int objc_metadata_seen;
1385 /* Return the section required for Objective C ABI 2 metadata. */
1386 static section *
1387 darwin_objc2_section (tree decl ATTRIBUTE_UNUSED, tree meta, section * base)
1389 const char *p;
1390 tree ident = TREE_VALUE (meta);
1391 gcc_assert (TREE_CODE (ident) == IDENTIFIER_NODE);
1392 p = IDENTIFIER_POINTER (ident);
1394 gcc_checking_assert (flag_next_runtime == 1 && flag_objc_abi == 2);
1396 objc_metadata_seen = 1;
1398 if (base == data_section)
1399 base = darwin_sections[objc2_metadata_section];
1401 /* Most of the OBJC2 META-data end up in the base section, so check it
1402 first. */
1403 if (!strncmp (p, "V2_BASE", 7))
1404 return base;
1405 else if (!strncmp (p, "V2_STRG", 7))
1406 return darwin_sections[cstring_section];
1408 else if (!strncmp (p, "G2_META", 7) || !strncmp (p, "G2_CLAS", 7))
1409 return darwin_sections[objc2_classdefs_section];
1410 else if (!strncmp (p, "V2_MREF", 7))
1411 return darwin_sections[objc2_message_refs_section];
1412 else if (!strncmp (p, "V2_CLRF", 7))
1413 return darwin_sections[objc2_classrefs_section];
1414 else if (!strncmp (p, "V2_SURF", 7))
1415 return darwin_sections[objc2_super_classrefs_section];
1416 else if (!strncmp (p, "V2_NLCL", 7))
1417 return darwin_sections[objc2_nonlazy_class_section];
1418 else if (!strncmp (p, "V2_CLAB", 7))
1420 classes_seen = 1;
1421 return darwin_sections[objc2_classlist_section];
1423 else if (!strncmp (p, "V2_SRFS", 7))
1424 return darwin_sections[objc2_selector_refs_section];
1425 else if (!strncmp (p, "V2_NLCA", 7))
1426 return darwin_sections[objc2_nonlazy_category_section];
1427 else if (!strncmp (p, "V2_CALA", 7))
1428 return darwin_sections[objc2_categorylist_section];
1430 else if (!strncmp (p, "V2_PLST", 7))
1431 return darwin_sections[objc2_protocollist_section];
1432 else if (!strncmp (p, "V2_PRFS", 7))
1433 return darwin_sections[objc2_protocolrefs_section];
1435 else if (!strncmp (p, "V2_INFO", 7))
1436 return darwin_sections[objc2_image_info_section];
1438 else if (!strncmp (p, "V2_EHTY", 7))
1439 return darwin_sections[data_coal_section];
1441 else if (!strncmp (p, "V2_CSTR", 7))
1442 return darwin_sections[objc2_constant_string_object_section];
1444 /* Not recognized, default. */
1445 return base;
1448 /* Return the section required for Objective C ABI 0/1 metadata. */
1449 static section *
1450 darwin_objc1_section (tree decl ATTRIBUTE_UNUSED, tree meta, section * base)
1452 const char *p;
1453 tree ident = TREE_VALUE (meta);
1454 gcc_assert (TREE_CODE (ident) == IDENTIFIER_NODE);
1455 p = IDENTIFIER_POINTER (ident);
1457 gcc_checking_assert (flag_next_runtime == 1 && flag_objc_abi < 2);
1459 objc_metadata_seen = 1;
1461 /* String sections first, cos there are lots of strings. */
1462 if (!strncmp (p, "V1_STRG", 7))
1463 return darwin_sections[cstring_section];
1464 else if (!strncmp (p, "V1_CLSN", 7))
1465 return darwin_sections[objc_class_names_section];
1466 else if (!strncmp (p, "V1_METN", 7))
1467 return darwin_sections[objc_meth_var_names_section];
1468 else if (!strncmp (p, "V1_METT", 7))
1469 return darwin_sections[objc_meth_var_types_section];
1471 else if (!strncmp (p, "V1_CLAS", 7))
1473 classes_seen = 1;
1474 return darwin_sections[objc_class_section];
1476 else if (!strncmp (p, "V1_META", 7))
1477 return darwin_sections[objc_meta_class_section];
1478 else if (!strncmp (p, "V1_CATG", 7))
1479 return darwin_sections[objc_category_section];
1480 else if (!strncmp (p, "V1_PROT", 7))
1481 return darwin_sections[objc_protocol_section];
1483 else if (!strncmp (p, "V1_CLCV", 7))
1484 return darwin_sections[objc_class_vars_section];
1485 else if (!strncmp (p, "V1_CLIV", 7))
1486 return darwin_sections[objc_instance_vars_section];
1488 else if (!strncmp (p, "V1_CLCM", 7))
1489 return darwin_sections[objc_cls_meth_section];
1490 else if (!strncmp (p, "V1_CLIM", 7))
1491 return darwin_sections[objc_inst_meth_section];
1492 else if (!strncmp (p, "V1_CACM", 7))
1493 return darwin_sections[objc_cat_cls_meth_section];
1494 else if (!strncmp (p, "V1_CAIM", 7))
1495 return darwin_sections[objc_cat_inst_meth_section];
1496 else if (!strncmp (p, "V1_PNSM", 7))
1497 return darwin_sections[objc_cat_inst_meth_section];
1498 else if (!strncmp (p, "V1_PCLM", 7))
1499 return darwin_sections[objc_cat_cls_meth_section];
1501 else if (!strncmp (p, "V1_CLPR", 7))
1502 return darwin_sections[objc_cat_cls_meth_section];
1503 else if (!strncmp (p, "V1_CAPR", 7))
1504 return darwin_sections[objc_category_section]; /* ??? CHECK me. */
1506 else if (!strncmp (p, "V1_PRFS", 7))
1507 return darwin_sections[objc_cat_cls_meth_section];
1508 else if (!strncmp (p, "V1_CLRF", 7))
1509 return darwin_sections[objc_cls_refs_section];
1510 else if (!strncmp (p, "V1_SRFS", 7))
1511 return darwin_sections[objc_selector_refs_section];
1513 else if (!strncmp (p, "V1_MODU", 7))
1514 return darwin_sections[objc_module_info_section];
1515 else if (!strncmp (p, "V1_SYMT", 7))
1516 return darwin_sections[objc_symbols_section];
1517 else if (!strncmp (p, "V1_INFO", 7))
1518 return darwin_sections[objc_image_info_section];
1520 else if (!strncmp (p, "V1_PLST", 7))
1521 return darwin_sections[objc1_prop_list_section];
1522 else if (!strncmp (p, "V1_PEXT", 7))
1523 return darwin_sections[objc1_protocol_ext_section];
1524 else if (!strncmp (p, "V1_CEXT", 7))
1525 return darwin_sections[objc1_class_ext_section];
1527 else if (!strncmp (p, "V2_CSTR", 7))
1528 return darwin_sections[objc_constant_string_object_section];
1530 return base;
1533 section *
1534 machopic_select_section (tree decl,
1535 int reloc,
1536 unsigned HOST_WIDE_INT align)
1538 bool zsize, one, weak, ro;
1539 section *base_section = NULL;
1541 weak = (DECL_P (decl)
1542 && DECL_WEAK (decl)
1543 && !lookup_attribute ("weak_import", DECL_ATTRIBUTES (decl)));
1545 zsize = (DECL_P (decl)
1546 && (TREE_CODE (decl) == VAR_DECL || TREE_CODE (decl) == CONST_DECL)
1547 && tree_to_uhwi (DECL_SIZE_UNIT (decl)) == 0);
1549 one = DECL_P (decl)
1550 && TREE_CODE (decl) == VAR_DECL
1551 && DECL_COMDAT_GROUP (decl);
1553 ro = TREE_READONLY (decl) || TREE_CONSTANT (decl) ;
1555 switch (categorize_decl_for_section (decl, reloc))
1557 case SECCAT_TEXT:
1558 gcc_unreachable ();
1559 break;
1561 case SECCAT_RODATA:
1562 case SECCAT_SRODATA:
1563 base_section = darwin_rodata_section (weak, zsize);
1564 break;
1566 case SECCAT_RODATA_MERGE_STR:
1567 base_section = darwin_mergeable_string_section (decl, align);
1568 break;
1570 case SECCAT_RODATA_MERGE_STR_INIT:
1571 base_section = darwin_mergeable_string_section (DECL_INITIAL (decl), align);
1572 break;
1574 case SECCAT_RODATA_MERGE_CONST:
1575 base_section = darwin_mergeable_constant_section (decl, align, zsize);
1576 break;
1578 case SECCAT_DATA:
1579 case SECCAT_DATA_REL:
1580 case SECCAT_DATA_REL_LOCAL:
1581 case SECCAT_DATA_REL_RO:
1582 case SECCAT_DATA_REL_RO_LOCAL:
1583 case SECCAT_SDATA:
1584 case SECCAT_TDATA:
1585 if (weak || one)
1587 if (ro)
1588 base_section = darwin_sections[const_data_coal_section];
1589 else
1590 base_section = darwin_sections[data_coal_section];
1592 else if (DARWIN_SECTION_ANCHORS
1593 && flag_section_anchors
1594 && zsize)
1596 /* If we're doing section anchors, then punt zero-sized objects into
1597 their own sections so that they don't interfere with offset
1598 computation for the remaining vars. This does not need to be done
1599 for stuff in mergeable sections, since these are ineligible for
1600 anchors. */
1601 if (ro)
1602 base_section = darwin_sections[zobj_const_data_section];
1603 else
1604 base_section = darwin_sections[zobj_data_section];
1606 else if (ro)
1607 base_section = darwin_sections[const_data_section];
1608 else
1609 base_section = data_section;
1610 break;
1611 case SECCAT_BSS:
1612 case SECCAT_SBSS:
1613 case SECCAT_TBSS:
1614 if (weak || one)
1615 base_section = darwin_sections[data_coal_section];
1616 else
1618 if (!TREE_PUBLIC (decl))
1619 base_section = lcomm_section;
1620 else if (bss_noswitch_section)
1621 base_section = bss_noswitch_section;
1622 else
1623 base_section = data_section;
1625 break;
1627 default:
1628 gcc_unreachable ();
1631 /* Darwin weird special cases.
1632 a) OBJC Meta-data. */
1633 if (DECL_P (decl)
1634 && (TREE_CODE (decl) == VAR_DECL
1635 || TREE_CODE (decl) == CONST_DECL)
1636 && DECL_ATTRIBUTES (decl))
1638 tree meta = lookup_attribute ("OBJC2META", DECL_ATTRIBUTES (decl));
1639 if (meta)
1640 return darwin_objc2_section (decl, meta, base_section);
1641 meta = lookup_attribute ("OBJC1META", DECL_ATTRIBUTES (decl));
1642 if (meta)
1643 return darwin_objc1_section (decl, meta, base_section);
1644 meta = lookup_attribute ("OBJC1METG", DECL_ATTRIBUTES (decl));
1645 if (meta)
1646 return base_section; /* GNU runtime is happy with it all in one pot. */
1649 /* b) Constant string objects. */
1650 if (TREE_CODE (decl) == CONSTRUCTOR
1651 && TREE_TYPE (decl)
1652 && TREE_CODE (TREE_TYPE (decl)) == RECORD_TYPE
1653 && TYPE_NAME (TREE_TYPE (decl)))
1655 tree name = TYPE_NAME (TREE_TYPE (decl));
1656 if (TREE_CODE (name) == TYPE_DECL)
1657 name = DECL_NAME (name);
1659 if (!strcmp (IDENTIFIER_POINTER (name), "__builtin_ObjCString"))
1661 if (flag_next_runtime)
1663 if (flag_objc_abi == 2)
1664 return darwin_sections[objc2_constant_string_object_section];
1665 else
1666 return darwin_sections[objc_constant_string_object_section];
1668 else
1669 return darwin_sections[objc_string_object_section];
1671 else if (!strcmp (IDENTIFIER_POINTER (name), "__builtin_CFString"))
1672 return darwin_sections[cfstring_constant_object_section];
1673 else
1674 return base_section;
1676 /* c) legacy meta-data selection. */
1677 else if (TREE_CODE (decl) == VAR_DECL
1678 && DECL_NAME (decl)
1679 && TREE_CODE (DECL_NAME (decl)) == IDENTIFIER_NODE
1680 && IDENTIFIER_POINTER (DECL_NAME (decl))
1681 && flag_next_runtime
1682 && !strncmp (IDENTIFIER_POINTER (DECL_NAME (decl)), "_OBJC_", 6))
1684 const char *name = IDENTIFIER_POINTER (DECL_NAME (decl));
1685 static bool warned_objc_46 = false;
1686 /* We shall assert that zero-sized objects are an error in ObjC
1687 meta-data. */
1688 gcc_assert (tree_to_uhwi (DECL_SIZE_UNIT (decl)) != 0);
1690 /* ??? This mechanism for determining the metadata section is
1691 broken when LTO is in use, since the frontend that generated
1692 the data is not identified. We will keep the capability for
1693 the short term - in case any non-Objective-C programs are using
1694 it to place data in specified sections. */
1695 if (!warned_objc_46)
1697 location_t loc = DECL_SOURCE_LOCATION (decl);
1698 warning_at (loc, 0, "the use of _OBJC_-prefixed variable names"
1699 " to select meta-data sections is deprecated at 4.6"
1700 " and will be removed in 4.7");
1701 warned_objc_46 = true;
1704 if (!strncmp (name, "_OBJC_CLASS_METHODS_", 20))
1705 return darwin_sections[objc_cls_meth_section];
1706 else if (!strncmp (name, "_OBJC_INSTANCE_METHODS_", 23))
1707 return darwin_sections[objc_inst_meth_section];
1708 else if (!strncmp (name, "_OBJC_CATEGORY_CLASS_METHODS_", 29))
1709 return darwin_sections[objc_cat_cls_meth_section];
1710 else if (!strncmp (name, "_OBJC_CATEGORY_INSTANCE_METHODS_", 32))
1711 return darwin_sections[objc_cat_inst_meth_section];
1712 else if (!strncmp (name, "_OBJC_CLASS_VARIABLES_", 22))
1713 return darwin_sections[objc_class_vars_section];
1714 else if (!strncmp (name, "_OBJC_INSTANCE_VARIABLES_", 25))
1715 return darwin_sections[objc_instance_vars_section];
1716 else if (!strncmp (name, "_OBJC_CLASS_PROTOCOLS_", 22))
1717 return darwin_sections[objc_cat_cls_meth_section];
1718 else if (!strncmp (name, "_OBJC_CLASS_NAME_", 17))
1719 return darwin_sections[objc_class_names_section];
1720 else if (!strncmp (name, "_OBJC_METH_VAR_NAME_", 20))
1721 return darwin_sections[objc_meth_var_names_section];
1722 else if (!strncmp (name, "_OBJC_METH_VAR_TYPE_", 20))
1723 return darwin_sections[objc_meth_var_types_section];
1724 else if (!strncmp (name, "_OBJC_CLASS_REFERENCES", 22))
1725 return darwin_sections[objc_cls_refs_section];
1726 else if (!strncmp (name, "_OBJC_CLASS_", 12))
1727 return darwin_sections[objc_class_section];
1728 else if (!strncmp (name, "_OBJC_METACLASS_", 16))
1729 return darwin_sections[objc_meta_class_section];
1730 else if (!strncmp (name, "_OBJC_CATEGORY_", 15))
1731 return darwin_sections[objc_category_section];
1732 else if (!strncmp (name, "_OBJC_SELECTOR_REFERENCES", 25))
1733 return darwin_sections[objc_selector_refs_section];
1734 else if (!strncmp (name, "_OBJC_SELECTOR_FIXUP", 20))
1735 return darwin_sections[objc_selector_fixup_section];
1736 else if (!strncmp (name, "_OBJC_SYMBOLS", 13))
1737 return darwin_sections[objc_symbols_section];
1738 else if (!strncmp (name, "_OBJC_MODULES", 13))
1739 return darwin_sections[objc_module_info_section];
1740 else if (!strncmp (name, "_OBJC_IMAGE_INFO", 16))
1741 return darwin_sections[objc_image_info_section];
1742 else if (!strncmp (name, "_OBJC_PROTOCOL_INSTANCE_METHODS_", 32))
1743 return darwin_sections[objc_cat_inst_meth_section];
1744 else if (!strncmp (name, "_OBJC_PROTOCOL_CLASS_METHODS_", 29))
1745 return darwin_sections[objc_cat_cls_meth_section];
1746 else if (!strncmp (name, "_OBJC_PROTOCOL_REFS_", 20))
1747 return darwin_sections[objc_cat_cls_meth_section];
1748 else if (!strncmp (name, "_OBJC_PROTOCOL_", 15))
1749 return darwin_sections[objc_protocol_section];
1750 else
1751 return base_section;
1754 return base_section;
1757 /* This can be called with address expressions as "rtx".
1758 They must go in "const". */
1760 section *
1761 machopic_select_rtx_section (machine_mode mode, rtx x,
1762 unsigned HOST_WIDE_INT align ATTRIBUTE_UNUSED)
1764 if (GET_MODE_SIZE (mode) == 8
1765 && (GET_CODE (x) == CONST_INT
1766 || GET_CODE (x) == CONST_WIDE_INT
1767 || GET_CODE (x) == CONST_DOUBLE))
1768 return darwin_sections[literal8_section];
1769 else if (GET_MODE_SIZE (mode) == 4
1770 && (GET_CODE (x) == CONST_INT
1771 || GET_CODE (x) == CONST_WIDE_INT
1772 || GET_CODE (x) == CONST_DOUBLE))
1773 return darwin_sections[literal4_section];
1774 else if (HAVE_GAS_LITERAL16
1775 && TARGET_64BIT
1776 && GET_MODE_SIZE (mode) == 16
1777 && (GET_CODE (x) == CONST_INT
1778 || GET_CODE (x) == CONST_WIDE_INT
1779 || GET_CODE (x) == CONST_DOUBLE
1780 || GET_CODE (x) == CONST_VECTOR))
1781 return darwin_sections[literal16_section];
1782 else if (MACHOPIC_INDIRECT
1783 && (GET_CODE (x) == SYMBOL_REF
1784 || GET_CODE (x) == CONST
1785 || GET_CODE (x) == LABEL_REF))
1786 return darwin_sections[const_data_section];
1787 else
1788 return darwin_sections[const_section];
1791 void
1792 machopic_asm_out_constructor (rtx symbol, int priority ATTRIBUTE_UNUSED)
1794 cdtor_record new_elt = {symbol, priority, vec_safe_length (ctors)};
1796 vec_safe_push (ctors, new_elt);
1798 if (! MACHOPIC_INDIRECT)
1799 fprintf (asm_out_file, ".reference .constructors_used\n");
1802 void
1803 machopic_asm_out_destructor (rtx symbol, int priority ATTRIBUTE_UNUSED)
1805 cdtor_record new_elt = {symbol, priority, vec_safe_length (dtors)};
1807 vec_safe_push (dtors, new_elt);
1809 if (! MACHOPIC_INDIRECT)
1810 fprintf (asm_out_file, ".reference .destructors_used\n");
1813 static int
1814 sort_cdtor_records (const void * a, const void * b)
1816 const cdtor_record *cda = (const cdtor_record *)a;
1817 const cdtor_record *cdb = (const cdtor_record *)b;
1818 if (cda->priority > cdb->priority)
1819 return 1;
1820 if (cda->priority < cdb->priority)
1821 return -1;
1822 if (cda->position > cdb->position)
1823 return 1;
1824 if (cda->position < cdb->position)
1825 return -1;
1826 return 0;
1829 static void
1830 finalize_ctors ()
1832 unsigned int i;
1833 cdtor_record *elt;
1835 if (MACHOPIC_INDIRECT)
1836 switch_to_section (darwin_sections[mod_init_section]);
1837 else
1838 switch_to_section (darwin_sections[constructor_section]);
1840 if (vec_safe_length (ctors) > 1)
1841 ctors->qsort (sort_cdtor_records);
1842 FOR_EACH_VEC_SAFE_ELT (ctors, i, elt)
1844 assemble_align (POINTER_SIZE);
1845 assemble_integer (elt->symbol, POINTER_SIZE / BITS_PER_UNIT, POINTER_SIZE, 1);
1849 static void
1850 finalize_dtors ()
1852 unsigned int i;
1853 cdtor_record *elt;
1855 if (MACHOPIC_INDIRECT)
1856 switch_to_section (darwin_sections[mod_term_section]);
1857 else
1858 switch_to_section (darwin_sections[destructor_section]);
1860 if (vec_safe_length (dtors) > 1)
1861 dtors->qsort (sort_cdtor_records);
1862 FOR_EACH_VEC_SAFE_ELT (dtors, i, elt)
1864 assemble_align (POINTER_SIZE);
1865 assemble_integer (elt->symbol, POINTER_SIZE / BITS_PER_UNIT, POINTER_SIZE, 1);
1869 void
1870 darwin_globalize_label (FILE *stream, const char *name)
1872 if (!!strncmp (name, "_OBJC_", 6))
1873 default_globalize_label (stream, name);
1876 /* This routine returns non-zero if 'name' starts with the special objective-c
1877 anonymous file-scope static name. It accommodates c++'s mangling of such
1878 symbols (in this case the symbols will have form _ZL{d}*_OBJC_* d=digit). */
1880 int
1881 darwin_label_is_anonymous_local_objc_name (const char *name)
1883 const unsigned char *p = (const unsigned char *) name;
1884 if (*p != '_')
1885 return 0;
1886 if (p[1] == 'Z' && p[2] == 'L')
1888 p += 3;
1889 while (*p >= '0' && *p <= '9')
1890 p++;
1892 return (!strncmp ((const char *)p, "_OBJC_", 6));
1895 /* LTO support for Mach-O.
1897 This version uses three mach-o sections to encapsulate the (unlimited
1898 number of) lto sections.
1900 __GNU_LTO, __lto_sections contains the concatented GNU LTO section data.
1901 __GNU_LTO, __section_names contains the GNU LTO section names.
1902 __GNU_LTO, __section_index contains an array of values that index these.
1904 Indexed thus:
1905 <section offset from the start of __GNU_LTO, __lto_sections>,
1906 <section length>
1907 <name offset from the start of __GNU_LTO, __section_names,
1908 <name length>.
1910 At present, for both m32 and m64 mach-o files each of these fields is
1911 represented by a uint32_t. This is because, AFAICT, a mach-o object
1912 cannot exceed 4Gb because the section_64 offset field (see below) is 32bits.
1914 uint32_t offset;
1915 "offset An integer specifying the offset to this section in the file." */
1917 /* Count lto section numbers. */
1918 static unsigned int lto_section_num = 0;
1920 /* A vector of information about LTO sections, at present, we only have
1921 the name. TODO: see if we can get the data length somehow. */
1922 typedef struct GTY (()) darwin_lto_section_e {
1923 const char *sectname;
1924 } darwin_lto_section_e ;
1926 static GTY (()) vec<darwin_lto_section_e, va_gc> *lto_section_names;
1928 /* Section wrapper scheme (used here to wrap the unlimited number of LTO
1929 sections into three Mach-O ones).
1930 NOTE: These names MUST be kept in sync with those in
1931 libiberty/simple-object-mach-o. */
1932 #define LTO_SECTS_SECTION "__wrapper_sects"
1933 #define LTO_NAMES_SECTION "__wrapper_names"
1934 #define LTO_INDEX_SECTION "__wrapper_index"
1936 /* File to temporarily store LTO data. This is appended to asm_out_file
1937 in darwin_end_file. */
1938 static FILE *lto_asm_out_file, *saved_asm_out_file;
1939 static char *lto_asm_out_name;
1941 /* Prepare asm_out_file for LTO output. For darwin, this means hiding
1942 asm_out_file and switching to an alternative output file. */
1943 void
1944 darwin_asm_lto_start (void)
1946 gcc_assert (! saved_asm_out_file);
1947 saved_asm_out_file = asm_out_file;
1948 if (! lto_asm_out_name)
1949 lto_asm_out_name = make_temp_file (".lto.s");
1950 lto_asm_out_file = fopen (lto_asm_out_name, "a");
1951 if (lto_asm_out_file == NULL)
1952 fatal_error (input_location,
1953 "failed to open temporary file %s for LTO output",
1954 lto_asm_out_name);
1955 asm_out_file = lto_asm_out_file;
1958 /* Restore asm_out_file. */
1959 void
1960 darwin_asm_lto_end (void)
1962 gcc_assert (saved_asm_out_file);
1963 fclose (lto_asm_out_file);
1964 asm_out_file = saved_asm_out_file;
1965 saved_asm_out_file = NULL;
1968 static void
1969 darwin_asm_dwarf_section (const char *name, unsigned int flags, tree decl);
1971 /* Called for the TARGET_ASM_NAMED_SECTION hook. */
1973 void
1974 darwin_asm_named_section (const char *name,
1975 unsigned int flags,
1976 tree decl ATTRIBUTE_UNUSED)
1978 /* LTO sections go in a special section that encapsulates the (unlimited)
1979 number of GNU LTO sections within a single mach-o one. */
1980 if (strncmp (name, LTO_SECTION_NAME_PREFIX,
1981 strlen (LTO_SECTION_NAME_PREFIX)) == 0)
1983 darwin_lto_section_e e;
1984 /* We expect certain flags to be set... */
1985 gcc_assert ((flags & (SECTION_DEBUG | SECTION_NAMED))
1986 == (SECTION_DEBUG | SECTION_NAMED));
1988 /* Switch to our combined section. */
1989 fprintf (asm_out_file, "\t.section %s,%s,regular,debug\n",
1990 LTO_SEGMENT_NAME, LTO_SECTS_SECTION);
1991 /* Output a label for the start of this sub-section. */
1992 fprintf (asm_out_file, "L_GNU_LTO%d:\t;# %s\n",
1993 lto_section_num, name);
1994 /* We have to jump through hoops to get the values of the intra-section
1995 offsets... */
1996 fprintf (asm_out_file, "\t.set L$gnu$lto$offs%d,L_GNU_LTO%d-L_GNU_LTO0\n",
1997 lto_section_num, lto_section_num);
1998 fprintf (asm_out_file,
1999 "\t.set L$gnu$lto$size%d,L_GNU_LTO%d-L_GNU_LTO%d\n",
2000 lto_section_num, lto_section_num+1, lto_section_num);
2001 lto_section_num++;
2002 e.sectname = xstrdup (name);
2003 /* Keep the names, we'll need to make a table later.
2004 TODO: check that we do not revisit sections, that would break
2005 the assumption of how this is done. */
2006 if (lto_section_names == NULL)
2007 vec_alloc (lto_section_names, 16);
2008 vec_safe_push (lto_section_names, e);
2010 else if (strncmp (name, "__DWARF,", 8) == 0)
2011 darwin_asm_dwarf_section (name, flags, decl);
2012 else
2013 fprintf (asm_out_file, "\t.section %s\n", name);
2016 void
2017 darwin_unique_section (tree decl ATTRIBUTE_UNUSED, int reloc ATTRIBUTE_UNUSED)
2019 /* Darwin does not use unique sections. */
2022 /* Handle __attribute__ ((apple_kext_compatibility)).
2023 This only applies to darwin kexts for 2.95 compatibility -- it shrinks the
2024 vtable for classes with this attribute (and their descendants) by not
2025 outputting the new 3.0 nondeleting destructor. This means that such
2026 objects CANNOT be allocated on the stack or as globals UNLESS they have
2027 a completely empty `operator delete'.
2028 Luckily, this fits in with the Darwin kext model.
2030 This attribute also disables gcc3's potential overlaying of derived
2031 class data members on the padding at the end of the base class. */
2033 tree
2034 darwin_handle_kext_attribute (tree *node, tree name,
2035 tree args ATTRIBUTE_UNUSED,
2036 int flags ATTRIBUTE_UNUSED,
2037 bool *no_add_attrs)
2039 /* APPLE KEXT stuff -- only applies with pure static C++ code. */
2040 if (! TARGET_KEXTABI)
2042 warning (0, "%qE 2.95 vtable-compatibility attribute applies "
2043 "only when compiling a kext", name);
2045 *no_add_attrs = true;
2047 else if (TREE_CODE (*node) != RECORD_TYPE)
2049 warning (0, "%qE 2.95 vtable-compatibility attribute applies "
2050 "only to C++ classes", name);
2052 *no_add_attrs = true;
2055 return NULL_TREE;
2058 /* Handle a "weak_import" attribute; arguments as in
2059 struct attribute_spec.handler. */
2061 tree
2062 darwin_handle_weak_import_attribute (tree *node, tree name,
2063 tree ARG_UNUSED (args),
2064 int ARG_UNUSED (flags),
2065 bool * no_add_attrs)
2067 if (TREE_CODE (*node) != FUNCTION_DECL && TREE_CODE (*node) != VAR_DECL)
2069 warning (OPT_Wattributes, "%qE attribute ignored",
2070 name);
2071 *no_add_attrs = true;
2073 else
2074 declare_weak (*node);
2076 return NULL_TREE;
2079 /* Emit a label for an FDE, making it global and/or weak if appropriate.
2080 The third parameter is nonzero if this is for exception handling.
2081 The fourth parameter is nonzero if this is just a placeholder for an
2082 FDE that we are omitting. */
2084 void
2085 darwin_emit_unwind_label (FILE *file, tree decl, int for_eh, int empty)
2087 char *lab ;
2088 char buf[32];
2089 static int invok_count = 0;
2090 static tree last_fun_decl = NULL_TREE;
2092 /* We use the linker to emit the .eh labels for Darwin 9 and above. */
2093 if (! for_eh || generating_for_darwin_version >= 9)
2094 return;
2096 /* FIXME: This only works when the eh for all sections of a function is
2097 emitted at the same time. If that changes, we would need to use a lookup
2098 table of some form to determine what to do. Also, we should emit the
2099 unadorned label for the partition containing the public label for a
2100 function. This is of limited use, probably, since we do not currently
2101 enable partitioning. */
2102 strcpy (buf, ".eh");
2103 if (decl && TREE_CODE (decl) == FUNCTION_DECL)
2105 if (decl == last_fun_decl)
2107 invok_count++;
2108 snprintf (buf, 31, "$$part$$%d.eh", invok_count);
2110 else
2112 last_fun_decl = decl;
2113 invok_count = 0;
2117 lab = concat (IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl)), buf, NULL);
2119 if (TREE_PUBLIC (decl))
2121 targetm.asm_out.globalize_label (file, lab);
2122 if (DECL_VISIBILITY (decl) == VISIBILITY_HIDDEN)
2124 fputs ("\t.private_extern ", file);
2125 assemble_name (file, lab);
2126 fputc ('\n', file);
2130 if (DECL_WEAK (decl))
2132 fputs ("\t.weak_definition ", file);
2133 assemble_name (file, lab);
2134 fputc ('\n', file);
2137 assemble_name (file, lab);
2138 if (empty)
2140 fputs (" = 0\n", file);
2142 /* Mark the absolute .eh and .eh1 style labels as needed to
2143 ensure that we don't dead code strip them and keep such
2144 labels from another instantiation point until we can fix this
2145 properly with group comdat support. */
2146 darwin_mark_decl_preserved (lab);
2148 else
2149 fputs (":\n", file);
2151 free (lab);
2154 static GTY(()) unsigned long except_table_label_num;
2156 void
2157 darwin_emit_except_table_label (FILE *file)
2159 char section_start_label[30];
2161 ASM_GENERATE_INTERNAL_LABEL (section_start_label, "GCC_except_table",
2162 except_table_label_num++);
2163 ASM_OUTPUT_LABEL (file, section_start_label);
2165 /* Generate a PC-relative reference to a Mach-O non-lazy-symbol. */
2167 void
2168 darwin_non_lazy_pcrel (FILE *file, rtx addr)
2170 const char *nlp_name;
2172 gcc_assert (GET_CODE (addr) == SYMBOL_REF);
2174 nlp_name = machopic_indirection_name (addr, /*stub_p=*/false);
2175 fputs ("\t.long\t", file);
2176 ASM_OUTPUT_LABELREF (file, nlp_name);
2177 fputs ("-.", file);
2180 /* If this is uncommented, details of each allocation will be printed
2181 in the asm right before the actual code. WARNING - this will cause some
2182 test-suite fails (since the printout will contain items that some tests
2183 are not expecting) -- so don't leave it on by default (it bloats the
2184 asm too). */
2185 /*#define DEBUG_DARWIN_MEM_ALLOCATORS*/
2187 /* The first two of these routines are ostensibly just intended to put
2188 names into the asm. However, they are both hijacked in order to ensure
2189 that zero-sized items do not make their way into the output. Consequently,
2190 we also need to make these participate in provisions for dealing with
2191 such items in section anchors. */
2193 /* The implementation of ASM_DECLARE_OBJECT_NAME. */
2194 /* The RTTI data (e.g., __ti4name) is common and public (and static),
2195 but it does need to be referenced via indirect PIC data pointers.
2196 The machopic_define_symbol calls are telling the machopic subsystem
2197 that the name *is* defined in this module, so it doesn't need to
2198 make them indirect. */
2199 void
2200 darwin_asm_declare_object_name (FILE *file,
2201 const char *nam, tree decl)
2203 const char *xname = nam;
2204 unsigned HOST_WIDE_INT size;
2205 bool local_def, weak;
2207 weak = (DECL_P (decl)
2208 && DECL_WEAK (decl)
2209 && !lookup_attribute ("weak_import",
2210 DECL_ATTRIBUTES (decl)));
2212 local_def = DECL_INITIAL (decl) || (TREE_STATIC (decl)
2213 && (!DECL_COMMON (decl)
2214 || !TREE_PUBLIC (decl)));
2216 if (GET_CODE (XEXP (DECL_RTL (decl), 0)) != SYMBOL_REF)
2217 xname = IDENTIFIER_POINTER (DECL_NAME (decl));
2219 if (local_def)
2221 (* targetm.encode_section_info) (decl, DECL_RTL (decl), false);
2222 if (!weak)
2223 machopic_define_symbol (DECL_RTL (decl));
2226 size = tree_to_uhwi (DECL_SIZE_UNIT (decl));
2228 #ifdef DEBUG_DARWIN_MEM_ALLOCATORS
2229 fprintf (file, "# dadon: %s %s (%llu, %u) local %d weak %d"
2230 " stat %d com %d pub %d t-const %d t-ro %d init %lx\n",
2231 xname, (TREE_CODE (decl) == VAR_DECL?"var":"const"),
2232 (unsigned long long)size, DECL_ALIGN (decl), local_def,
2233 DECL_WEAK (decl), TREE_STATIC (decl), DECL_COMMON (decl),
2234 TREE_PUBLIC (decl), TREE_CONSTANT (decl), TREE_READONLY (decl),
2235 (unsigned long)DECL_INITIAL (decl));
2236 #endif
2238 /* Darwin needs help to support local zero-sized objects.
2239 They must be made at least one byte, and the section containing must be
2240 marked as unsuitable for section-anchors (see storage allocators below).
2242 For non-zero objects this output is handled by varasm.c.
2244 if (!size)
2246 unsigned int l2align = 0;
2248 /* The align must be honored, even for zero-sized. */
2249 if (DECL_ALIGN (decl))
2251 l2align = floor_log2 (DECL_ALIGN (decl) / BITS_PER_UNIT);
2252 fprintf (file, "\t.align\t%u\n", l2align);
2255 ASM_OUTPUT_LABEL (file, xname);
2256 size = 1;
2257 fprintf (file, "\t.space\t"HOST_WIDE_INT_PRINT_UNSIGNED"\n", size);
2259 /* Check that we've correctly picked up the zero-sized item and placed it
2260 properly. */
2261 gcc_assert ((!DARWIN_SECTION_ANCHORS || !flag_section_anchors)
2262 || (in_section
2263 && (in_section->common.flags & SECTION_NO_ANCHOR)));
2265 else
2266 ASM_OUTPUT_LABEL (file, xname);
2269 /* The implementation of ASM_DECLARE_CONSTANT_NAME. */
2270 void
2271 darwin_asm_declare_constant_name (FILE *file, const char *name,
2272 const_tree exp ATTRIBUTE_UNUSED,
2273 HOST_WIDE_INT size)
2275 assemble_label (file, name);
2276 /* As for other items, we need at least one byte. */
2277 if (!size)
2279 fputs ("\t.space\t1\n", file);
2280 /* Check that we've correctly picked up the zero-sized item and placed it
2281 properly. */
2282 gcc_assert ((!DARWIN_SECTION_ANCHORS || !flag_section_anchors)
2283 || (in_section
2284 && (in_section->common.flags & SECTION_NO_ANCHOR)));
2288 /* Darwin storage allocators.
2290 Zerofill sections are desirable for large blank data since, otherwise, these
2291 data bloat objects (PR33210).
2293 However, section anchors don't work in .zerofill sections (one cannot switch
2294 to a zerofill section). Ergo, for Darwin targets using section anchors we need
2295 to put (at least some) data into 'normal' switchable sections.
2297 Here we set a relatively arbitrary value for the size of an object to trigger
2298 zerofill when section anchors are enabled (anything bigger than a page for
2299 current Darwin implementations). FIXME: there ought to be some objective way
2300 to make this choice.
2302 When section anchor are off this is ignored anyway. */
2304 #define BYTES_ZFILL 4096
2306 /* Emit a chunk of data for items coalesced by the linker. */
2307 static void
2308 darwin_emit_weak_or_comdat (FILE *fp, tree decl, const char *name,
2309 unsigned HOST_WIDE_INT size,
2310 unsigned int align)
2312 /* Since the sections used here are coalesed, they will not be eligible
2313 for section anchors, and therefore we don't need to break that out. */
2314 if (TREE_READONLY (decl) || TREE_CONSTANT (decl))
2315 switch_to_section (darwin_sections[const_data_coal_section]);
2316 else
2317 switch_to_section (darwin_sections[data_coal_section]);
2319 /* To be consistent, we'll allow darwin_asm_declare_object_name to assemble
2320 the align info for zero-sized items... but do it here otherwise. */
2321 if (size && align)
2322 fprintf (fp, "\t.align\t%d\n", floor_log2 (align / BITS_PER_UNIT));
2324 if (TREE_PUBLIC (decl))
2325 darwin_globalize_label (fp, name);
2327 /* ... and we let it deal with outputting one byte of zero for them too. */
2328 darwin_asm_declare_object_name (fp, name, decl);
2329 if (size)
2330 assemble_zeros (size);
2333 /* Emit a chunk of data for ObjC meta-data that got placed in BSS erroneously. */
2334 static void
2335 darwin_emit_objc_zeroed (FILE *fp, tree decl, const char *name,
2336 unsigned HOST_WIDE_INT size,
2337 unsigned int align, tree meta)
2339 section *ocs = data_section;
2341 if (TREE_PURPOSE (meta) == get_identifier("OBJC2META"))
2342 ocs = darwin_objc2_section (decl, meta, ocs);
2343 else
2344 ocs = darwin_objc1_section (decl, meta, ocs);
2346 switch_to_section (ocs);
2348 /* We shall declare that zero-sized meta-data are not valid (yet). */
2349 gcc_assert (size);
2350 fprintf (fp, "\t.align\t%d\n", floor_log2 (align / BITS_PER_UNIT));
2352 /* ... and we let it deal with outputting one byte of zero for them too. */
2353 darwin_asm_declare_object_name (fp, name, decl);
2354 assemble_zeros (size);
2357 /* This routine emits 'local' storage:
2359 When Section Anchors are off this routine emits .zerofill commands in
2360 sections named for their alignment.
2362 When Section Anchors are on, smaller (non-zero-sized) items are placed in
2363 the .static_data section so that the section anchoring system can see them.
2364 Larger items are still placed in .zerofill sections, addressing PR33210.
2365 The routine has no checking - it is all assumed to be done by the caller.
2367 static void
2368 darwin_emit_local_bss (FILE *fp, tree decl, const char *name,
2369 unsigned HOST_WIDE_INT size,
2370 unsigned int l2align)
2372 /* FIXME: We have a fudge to make this work with Java even when the target does
2373 not use sections anchors -- Java seems to need at least one small item in a
2374 non-zerofill segment. */
2375 if ((DARWIN_SECTION_ANCHORS && flag_section_anchors && size < BYTES_ZFILL)
2376 || (size && size <= 2))
2378 /* Put smaller objects in _static_data, where the section anchors system
2379 can get them.
2380 However, if they are zero-sized punt them to yet a different section
2381 (that is not allowed to participate in anchoring). */
2382 if (!size)
2384 fputs ("\t.section\t__DATA,__zobj_bss\n", fp);
2385 in_section = darwin_sections[zobj_bss_section];
2386 size = 1;
2388 else
2390 fputs ("\t.static_data\n", fp);
2391 in_section = darwin_sections[static_data_section];
2394 if (l2align)
2395 fprintf (fp, "\t.align\t%u\n", l2align);
2397 assemble_name (fp, name);
2398 fprintf (fp, ":\n\t.space\t"HOST_WIDE_INT_PRINT_UNSIGNED"\n", size);
2400 else
2402 /* When we are on a non-section anchor target, we can get zero-sized
2403 items here. However, all we need to do is to bump them to one byte
2404 and the section alignment will take care of the rest. */
2405 char secnam[64];
2406 unsigned int flags ;
2407 snprintf (secnam, 64, "__DATA,__%sbss%u", ((size)?"":"zo_"),
2408 (unsigned) l2align);
2409 /* We can't anchor (yet, if ever) in zerofill sections, because we can't
2410 switch to them and emit a label. */
2411 flags = SECTION_BSS|SECTION_WRITE|SECTION_NO_ANCHOR;
2412 in_section = get_section (secnam, flags, NULL);
2413 fprintf (fp, "\t.zerofill %s,", secnam);
2414 assemble_name (fp, name);
2415 if (!size)
2416 size = 1;
2418 if (l2align)
2419 fprintf (fp, ","HOST_WIDE_INT_PRINT_UNSIGNED",%u\n",
2420 size, (unsigned) l2align);
2421 else
2422 fprintf (fp, ","HOST_WIDE_INT_PRINT_UNSIGNED"\n", size);
2425 (*targetm.encode_section_info) (decl, DECL_RTL (decl), false);
2426 /* This is defined as a file-scope var, so we know to notify machopic. */
2427 machopic_define_symbol (DECL_RTL (decl));
2430 /* Emit a chunk of common. */
2431 static void
2432 darwin_emit_common (FILE *fp, const char *name,
2433 unsigned HOST_WIDE_INT size, unsigned int align)
2435 unsigned HOST_WIDE_INT rounded;
2436 unsigned int l2align;
2438 /* Earlier systems complain if the alignment exceeds the page size.
2439 The magic number is 4096 * 8 - hard-coded for legacy systems. */
2440 if (!emit_aligned_common && (align > 32768UL))
2441 align = 4096UL; /* In units. */
2442 else
2443 align /= BITS_PER_UNIT;
2445 /* Make sure we have a meaningful align. */
2446 if (!align)
2447 align = 1;
2449 /* For earlier toolchains, we need to emit the var as a rounded size to
2450 tell ld the alignment. */
2451 if (size < align)
2452 rounded = align;
2453 else
2454 rounded = (size + (align-1)) & ~(align-1);
2456 l2align = floor_log2 (align);
2457 gcc_assert (l2align <= L2_MAX_OFILE_ALIGNMENT);
2459 in_section = comm_section;
2460 /* We mustn't allow multiple public symbols to share an address when using
2461 the normal OSX toolchain. */
2462 if (!size)
2464 /* Put at least one byte. */
2465 size = 1;
2466 /* This section can no longer participate in section anchoring. */
2467 comm_section->common.flags |= SECTION_NO_ANCHOR;
2470 fputs ("\t.comm\t", fp);
2471 assemble_name (fp, name);
2472 fprintf (fp, "," HOST_WIDE_INT_PRINT_UNSIGNED,
2473 emit_aligned_common?size:rounded);
2474 if (l2align && emit_aligned_common)
2475 fprintf (fp, ",%u", l2align);
2476 fputs ("\n", fp);
2479 /* Output a var which is all zero - into aligned BSS sections, common, lcomm
2480 or coalescable data sections (for weak or comdat) as appropriate. */
2482 void
2483 darwin_output_aligned_bss (FILE *fp, tree decl, const char *name,
2484 unsigned HOST_WIDE_INT size, unsigned int align)
2486 unsigned int l2align;
2487 bool one, pub, weak;
2488 tree meta;
2490 pub = TREE_PUBLIC (decl);
2491 one = DECL_ONE_ONLY (decl);
2492 weak = (DECL_P (decl)
2493 && DECL_WEAK (decl)
2494 && !lookup_attribute ("weak_import",
2495 DECL_ATTRIBUTES (decl)));
2497 #ifdef DEBUG_DARWIN_MEM_ALLOCATORS
2498 fprintf (fp, "# albss: %s (%lld,%d) ro %d cst %d stat %d com %d"
2499 " pub %d weak %d one %d init %lx\n",
2500 name, (long long)size, (int)align, TREE_READONLY (decl),
2501 TREE_CONSTANT (decl), TREE_STATIC (decl), DECL_COMMON (decl),
2502 pub, weak, one, (unsigned long)DECL_INITIAL (decl));
2503 #endif
2505 /* ObjC metadata can get put in BSS because varasm.c decides it's BSS
2506 before the target has a chance to comment. */
2507 if ((meta = is_objc_metadata (decl)))
2509 darwin_emit_objc_zeroed (fp, decl, name, size, DECL_ALIGN (decl), meta);
2510 return;
2513 /* Check that any initializer is valid. */
2514 gcc_assert ((DECL_INITIAL (decl) == NULL)
2515 || (DECL_INITIAL (decl) == error_mark_node)
2516 || initializer_zerop (DECL_INITIAL (decl)));
2518 gcc_assert (DECL_SECTION_NAME (decl) == NULL);
2519 gcc_assert (!DECL_COMMON (decl));
2521 /* Pick up the correct alignment. */
2522 if (!size || !align)
2523 align = DECL_ALIGN (decl);
2525 l2align = floor_log2 (align / BITS_PER_UNIT);
2526 gcc_assert (l2align <= L2_MAX_OFILE_ALIGNMENT);
2528 last_assemble_variable_decl = decl;
2530 /* We would rather not have to check this here - but it seems that we might
2531 be passed a decl that should be in coalesced space. */
2532 if (one || weak)
2534 /* Weak or COMDAT objects are put in mergeable sections. */
2535 darwin_emit_weak_or_comdat (fp, decl, name, size,
2536 DECL_ALIGN (decl));
2537 return;
2540 /* If this is not public, then emit according to local rules. */
2541 if (!pub)
2543 darwin_emit_local_bss (fp, decl, name, size, l2align);
2544 return;
2547 /* So we have a public symbol (small item fudge for Java, see above). */
2548 if ((DARWIN_SECTION_ANCHORS && flag_section_anchors && size < BYTES_ZFILL)
2549 || (size && size <= 2))
2551 /* Put smaller objects in data, where the section anchors system can get
2552 them. However, if they are zero-sized punt them to yet a different
2553 section (that is not allowed to participate in anchoring). */
2554 if (!size)
2556 fputs ("\t.section\t__DATA,__zobj_data\n", fp);
2557 in_section = darwin_sections[zobj_data_section];
2558 size = 1;
2560 else
2562 fputs ("\t.data\n", fp);
2563 in_section = data_section;
2566 if (l2align)
2567 fprintf (fp, "\t.align\t%u\n", l2align);
2569 assemble_name (fp, name);
2570 fprintf (fp, ":\n\t.space\t"HOST_WIDE_INT_PRINT_UNSIGNED"\n", size);
2572 else
2574 char secnam[64];
2575 unsigned int flags ;
2576 /* When we are on a non-section anchor target, we can get zero-sized
2577 items here. However, all we need to do is to bump them to one byte
2578 and the section alignment will take care of the rest. */
2579 snprintf (secnam, 64, "__DATA,__%spu_bss%u", ((size)?"":"zo_"), l2align);
2581 /* We can't anchor in zerofill sections, because we can't switch
2582 to them and emit a label. */
2583 flags = SECTION_BSS|SECTION_WRITE|SECTION_NO_ANCHOR;
2584 in_section = get_section (secnam, flags, NULL);
2585 fprintf (fp, "\t.zerofill %s,", secnam);
2586 assemble_name (fp, name);
2587 if (!size)
2588 size = 1;
2590 if (l2align)
2591 fprintf (fp, ","HOST_WIDE_INT_PRINT_UNSIGNED",%u\n", size, l2align);
2592 else
2593 fprintf (fp, ","HOST_WIDE_INT_PRINT_UNSIGNED"\n", size);
2595 (* targetm.encode_section_info) (decl, DECL_RTL (decl), false);
2598 /* Output a chunk of common, with alignment specified (where the target
2599 supports this). */
2600 void
2601 darwin_asm_output_aligned_decl_common (FILE *fp, tree decl, const char *name,
2602 unsigned HOST_WIDE_INT size,
2603 unsigned int align)
2605 unsigned int l2align;
2606 bool one, weak;
2607 tree meta;
2609 /* No corresponding var. */
2610 if (decl==NULL)
2612 #ifdef DEBUG_DARWIN_MEM_ALLOCATORS
2613 fprintf (fp, "# adcom: %s (%d,%d) decl=0x0\n", name, (int)size, (int)align);
2614 #endif
2615 darwin_emit_common (fp, name, size, align);
2616 return;
2619 one = DECL_ONE_ONLY (decl);
2620 weak = (DECL_P (decl)
2621 && DECL_WEAK (decl)
2622 && !lookup_attribute ("weak_import",
2623 DECL_ATTRIBUTES (decl)));
2625 #ifdef DEBUG_DARWIN_MEM_ALLOCATORS
2626 fprintf (fp, "# adcom: %s (%lld,%d) ro %d cst %d stat %d com %d pub %d"
2627 " weak %d one %d init %lx\n",
2628 name, (long long)size, (int)align, TREE_READONLY (decl),
2629 TREE_CONSTANT (decl), TREE_STATIC (decl), DECL_COMMON (decl),
2630 TREE_PUBLIC (decl), weak, one, (unsigned long)DECL_INITIAL (decl));
2631 #endif
2633 /* ObjC metadata can get put in BSS because varasm.c decides it's BSS
2634 before the target has a chance to comment. */
2635 if ((meta = is_objc_metadata (decl)))
2637 darwin_emit_objc_zeroed (fp, decl, name, size, DECL_ALIGN (decl), meta);
2638 return;
2641 /* We shouldn't be messing with this if the decl has a section name. */
2642 gcc_assert (DECL_SECTION_NAME (decl) == NULL);
2644 /* We would rather not have to check this here - but it seems that we might
2645 be passed a decl that should be in coalesced space. */
2646 if (one || weak)
2648 /* Weak or COMDAT objects are put in mergable sections. */
2649 darwin_emit_weak_or_comdat (fp, decl, name, size,
2650 DECL_ALIGN (decl));
2651 return;
2654 /* We should only get here for DECL_COMMON, with a zero init (and, in
2655 principle, only for public symbols too - although we deal with local
2656 ones below). */
2658 /* Check the initializer is OK. */
2659 gcc_assert (DECL_COMMON (decl)
2660 && ((DECL_INITIAL (decl) == NULL)
2661 || (DECL_INITIAL (decl) == error_mark_node)
2662 || initializer_zerop (DECL_INITIAL (decl))));
2664 last_assemble_variable_decl = decl;
2666 if (!size || !align)
2667 align = DECL_ALIGN (decl);
2669 l2align = floor_log2 (align / BITS_PER_UNIT);
2670 /* Check we aren't asking for more aligment than the platform allows. */
2671 gcc_assert (l2align <= L2_MAX_OFILE_ALIGNMENT);
2673 if (TREE_PUBLIC (decl) != 0)
2674 darwin_emit_common (fp, name, size, align);
2675 else
2676 darwin_emit_local_bss (fp, decl, name, size, l2align);
2679 /* Output a chunk of BSS with alignment specfied. */
2680 void
2681 darwin_asm_output_aligned_decl_local (FILE *fp, tree decl, const char *name,
2682 unsigned HOST_WIDE_INT size,
2683 unsigned int align)
2685 unsigned long l2align;
2686 bool one, weak;
2687 tree meta;
2689 one = DECL_ONE_ONLY (decl);
2690 weak = (DECL_P (decl)
2691 && DECL_WEAK (decl)
2692 && !lookup_attribute ("weak_import",
2693 DECL_ATTRIBUTES (decl)));
2695 #ifdef DEBUG_DARWIN_MEM_ALLOCATORS
2696 fprintf (fp, "# adloc: %s (%lld,%d) ro %d cst %d stat %d one %d pub %d"
2697 " weak %d init %lx\n",
2698 name, (long long)size, (int)align, TREE_READONLY (decl),
2699 TREE_CONSTANT (decl), TREE_STATIC (decl), one, TREE_PUBLIC (decl),
2700 weak , (unsigned long)DECL_INITIAL (decl));
2701 #endif
2703 /* ObjC metadata can get put in BSS because varasm.c decides it's BSS
2704 before the target has a chance to comment. */
2705 if ((meta = is_objc_metadata (decl)))
2707 darwin_emit_objc_zeroed (fp, decl, name, size, DECL_ALIGN (decl), meta);
2708 return;
2711 /* We shouldn't be messing with this if the decl has a section name. */
2712 gcc_assert (DECL_SECTION_NAME (decl) == NULL);
2714 /* We would rather not have to check this here - but it seems that we might
2715 be passed a decl that should be in coalesced space. */
2716 if (one || weak)
2718 /* Weak or COMDAT objects are put in mergable sections. */
2719 darwin_emit_weak_or_comdat (fp, decl, name, size,
2720 DECL_ALIGN (decl));
2721 return;
2724 /* .. and it should be suitable for placement in local mem. */
2725 gcc_assert(!TREE_PUBLIC (decl) && !DECL_COMMON (decl));
2726 /* .. and any initializer must be all-zero. */
2727 gcc_assert ((DECL_INITIAL (decl) == NULL)
2728 || (DECL_INITIAL (decl) == error_mark_node)
2729 || initializer_zerop (DECL_INITIAL (decl)));
2731 last_assemble_variable_decl = decl;
2733 if (!size || !align)
2734 align = DECL_ALIGN (decl);
2736 l2align = floor_log2 (align / BITS_PER_UNIT);
2737 gcc_assert (l2align <= L2_MAX_OFILE_ALIGNMENT);
2739 darwin_emit_local_bss (fp, decl, name, size, l2align);
2742 /* Emit an assembler directive to set visibility for a symbol. The
2743 only supported visibilities are VISIBILITY_DEFAULT and
2744 VISIBILITY_HIDDEN; the latter corresponds to Darwin's "private
2745 extern". There is no MACH-O equivalent of ELF's
2746 VISIBILITY_INTERNAL or VISIBILITY_PROTECTED. */
2748 void
2749 darwin_assemble_visibility (tree decl, int vis)
2751 if (vis == VISIBILITY_DEFAULT)
2753 else if (vis == VISIBILITY_HIDDEN || vis == VISIBILITY_INTERNAL)
2755 fputs ("\t.private_extern ", asm_out_file);
2756 assemble_name (asm_out_file,
2757 (IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl))));
2758 fputs ("\n", asm_out_file);
2760 else
2761 warning (OPT_Wattributes, "protected visibility attribute "
2762 "not supported in this configuration; ignored");
2765 /* vec used by darwin_asm_dwarf_section.
2766 Maybe a hash tab would be better here - but the intention is that this is
2767 a very short list (fewer than 16 items) and each entry should (ideally,
2768 eventually) only be presented once.
2770 A structure to hold a dwarf debug section used entry. */
2772 typedef struct GTY(()) dwarf_sect_used_entry {
2773 const char *name;
2774 unsigned count;
2776 dwarf_sect_used_entry;
2779 /* A list of used __DWARF sections. */
2780 static GTY (()) vec<dwarf_sect_used_entry, va_gc> *dwarf_sect_names_table;
2782 /* This is called when we are asked to assemble a named section and the
2783 name begins with __DWARF,. We keep a list of the section names (without
2784 the __DWARF, prefix) and use this to emit our required start label on the
2785 first switch to each section. */
2787 static void
2788 darwin_asm_dwarf_section (const char *name, unsigned int flags,
2789 tree ARG_UNUSED (decl))
2791 unsigned i;
2792 int namelen;
2793 const char * sname;
2794 dwarf_sect_used_entry *ref;
2795 bool found = false;
2796 gcc_assert ((flags & (SECTION_DEBUG | SECTION_NAMED))
2797 == (SECTION_DEBUG | SECTION_NAMED));
2798 /* We know that the name starts with __DWARF, */
2799 sname = name + 8;
2800 namelen = strchr (sname, ',') - sname;
2801 gcc_assert (namelen);
2802 if (dwarf_sect_names_table == NULL)
2803 vec_alloc (dwarf_sect_names_table, 16);
2804 else
2805 for (i = 0;
2806 dwarf_sect_names_table->iterate (i, &ref);
2807 i++)
2809 if (!ref)
2810 break;
2811 if (!strcmp (ref->name, sname))
2813 found = true;
2814 ref->count++;
2815 break;
2819 fprintf (asm_out_file, "\t.section %s\n", name);
2820 if (!found)
2822 dwarf_sect_used_entry e;
2823 fprintf (asm_out_file, "Lsection%.*s:\n", namelen, sname);
2824 e.count = 1;
2825 e.name = xstrdup (sname);
2826 vec_safe_push (dwarf_sect_names_table, e);
2830 /* Output a difference of two labels that will be an assembly time
2831 constant if the two labels are local. (.long lab1-lab2 will be
2832 very different if lab1 is at the boundary between two sections; it
2833 will be relocated according to the second section, not the first,
2834 so one ends up with a difference between labels in different
2835 sections, which is bad in the dwarf2 eh context for instance.) */
2837 static int darwin_dwarf_label_counter;
2839 void
2840 darwin_asm_output_dwarf_delta (FILE *file, int size,
2841 const char *lab1, const char *lab2)
2843 int islocaldiff = (lab1[0] == '*' && lab1[1] == 'L'
2844 && lab2[0] == '*' && lab2[1] == 'L');
2845 const char *directive = (size == 8 ? ".quad" : ".long");
2847 if (islocaldiff)
2848 fprintf (file, "\t.set L$set$%d,", darwin_dwarf_label_counter);
2849 else
2850 fprintf (file, "\t%s\t", directive);
2852 assemble_name_raw (file, lab1);
2853 fprintf (file, "-");
2854 assemble_name_raw (file, lab2);
2855 if (islocaldiff)
2856 fprintf (file, "\n\t%s L$set$%d", directive, darwin_dwarf_label_counter++);
2859 /* Output an offset in a DWARF section on Darwin. On Darwin, DWARF section
2860 offsets are not represented using relocs in .o files; either the
2861 section never leaves the .o file, or the linker or other tool is
2862 responsible for parsing the DWARF and updating the offsets. */
2864 void
2865 darwin_asm_output_dwarf_offset (FILE *file, int size, const char * lab,
2866 section *base)
2868 char sname[64];
2869 int namelen;
2871 gcc_assert (base->common.flags & SECTION_NAMED);
2872 gcc_assert (strncmp (base->named.name, "__DWARF,", 8) == 0);
2873 gcc_assert (strchr (base->named.name + 8, ','));
2875 namelen = strchr (base->named.name + 8, ',') - (base->named.name + 8);
2876 sprintf (sname, "*Lsection%.*s", namelen, base->named.name + 8);
2877 darwin_asm_output_dwarf_delta (file, size, lab, sname);
2880 /* Called from the within the TARGET_ASM_FILE_START for each target. */
2882 void
2883 darwin_file_start (void)
2885 /* Nothing to do. */
2888 /* Called for the TARGET_ASM_FILE_END hook.
2889 Emit the mach-o pic indirection data, the lto data and, finally a flag
2890 to tell the linker that it can break the file object into sections and
2891 move those around for efficiency. */
2893 void
2894 darwin_file_end (void)
2896 if (!vec_safe_is_empty (ctors))
2897 finalize_ctors ();
2898 if (!vec_safe_is_empty (dtors))
2899 finalize_dtors ();
2901 /* If we are expecting to output NeXT ObjC meta-data, (and we actually see
2902 some) then we output the fix-and-continue marker (Image Info).
2903 This applies to Objective C, Objective C++ and LTO with either language
2904 as part of the input. */
2905 if (flag_next_runtime && objc_metadata_seen)
2907 unsigned int flags = 0;
2908 if (flag_objc_abi >= 2)
2910 flags = 16;
2911 output_section_asm_op
2912 (darwin_sections[objc2_image_info_section]->unnamed.data);
2914 else
2915 output_section_asm_op
2916 (darwin_sections[objc_image_info_section]->unnamed.data);
2918 ASM_OUTPUT_ALIGN (asm_out_file, 2);
2919 fputs ("L_OBJC_ImageInfo:\n", asm_out_file);
2921 flags |= (flag_replace_objc_classes && classes_seen) ? 1 : 0;
2922 flags |= flag_objc_gc ? 2 : 0;
2924 fprintf (asm_out_file, "\t.long\t0\n\t.long\t%u\n", flags);
2927 machopic_finish (asm_out_file);
2928 if (lang_GNU_CXX ())
2930 switch_to_section (darwin_sections[constructor_section]);
2931 switch_to_section (darwin_sections[destructor_section]);
2932 ASM_OUTPUT_ALIGN (asm_out_file, 1);
2935 /* If there was LTO assembler output, append it to asm_out_file. */
2936 if (lto_asm_out_name)
2938 int n;
2939 char *buf, *lto_asm_txt;
2941 /* Shouldn't be here if we failed to switch back. */
2942 gcc_assert (! saved_asm_out_file);
2944 lto_asm_out_file = fopen (lto_asm_out_name, "r");
2945 if (lto_asm_out_file == NULL)
2946 fatal_error (input_location,
2947 "failed to open temporary file %s with LTO output",
2948 lto_asm_out_name);
2949 fseek (lto_asm_out_file, 0, SEEK_END);
2950 n = ftell (lto_asm_out_file);
2951 if (n > 0)
2953 fseek (lto_asm_out_file, 0, SEEK_SET);
2954 lto_asm_txt = buf = (char *) xmalloc (n + 1);
2955 while (fgets (lto_asm_txt, n, lto_asm_out_file))
2956 fputs (lto_asm_txt, asm_out_file);
2957 /* Put a termination label. */
2958 fprintf (asm_out_file, "\t.section %s,%s,regular,debug\n",
2959 LTO_SEGMENT_NAME, LTO_SECTS_SECTION);
2960 fprintf (asm_out_file, "L_GNU_LTO%d:\t;# end of lto\n",
2961 lto_section_num);
2962 /* Make sure our termination label stays in this section. */
2963 fputs ("\t.space\t1\n", asm_out_file);
2966 /* Remove the temporary file. */
2967 fclose (lto_asm_out_file);
2968 unlink_if_ordinary (lto_asm_out_name);
2969 free (lto_asm_out_name);
2972 /* Output the names and indices. */
2973 if (lto_section_names && lto_section_names->length ())
2975 int count;
2976 darwin_lto_section_e *ref;
2977 /* For now, we'll make the offsets 4 bytes and unaligned - we'll fix
2978 the latter up ourselves. */
2979 const char *op = integer_asm_op (4,0);
2981 /* Emit the names. */
2982 fprintf (asm_out_file, "\t.section %s,%s,regular,debug\n",
2983 LTO_SEGMENT_NAME, LTO_NAMES_SECTION);
2984 FOR_EACH_VEC_ELT (*lto_section_names, count, ref)
2986 fprintf (asm_out_file, "L_GNU_LTO_NAME%d:\n", count);
2987 /* We have to jump through hoops to get the values of the intra-section
2988 offsets... */
2989 fprintf (asm_out_file,
2990 "\t.set L$gnu$lto$noff%d,L_GNU_LTO_NAME%d-L_GNU_LTO_NAME0\n",
2991 count, count);
2992 fprintf (asm_out_file,
2993 "\t.set L$gnu$lto$nsiz%d,L_GNU_LTO_NAME%d-L_GNU_LTO_NAME%d\n",
2994 count, count+1, count);
2995 fprintf (asm_out_file, "\t.asciz\t\"%s\"\n", ref->sectname);
2997 fprintf (asm_out_file, "L_GNU_LTO_NAME%d:\t;# end\n", lto_section_num);
2998 /* make sure our termination label stays in this section. */
2999 fputs ("\t.space\t1\n", asm_out_file);
3001 /* Emit the Index. */
3002 fprintf (asm_out_file, "\t.section %s,%s,regular,debug\n",
3003 LTO_SEGMENT_NAME, LTO_INDEX_SECTION);
3004 fputs ("\t.align\t2\n", asm_out_file);
3005 fputs ("# Section offset, Section length, Name offset, Name length\n",
3006 asm_out_file);
3007 FOR_EACH_VEC_ELT (*lto_section_names, count, ref)
3009 fprintf (asm_out_file, "%s L$gnu$lto$offs%d\t;# %s\n",
3010 op, count, ref->sectname);
3011 fprintf (asm_out_file, "%s L$gnu$lto$size%d\n", op, count);
3012 fprintf (asm_out_file, "%s L$gnu$lto$noff%d\n", op, count);
3013 fprintf (asm_out_file, "%s L$gnu$lto$nsiz%d\n", op, count);
3017 /* If we have section anchors, then we must prevent the linker from
3018 re-arranging data. */
3019 if (!DARWIN_SECTION_ANCHORS || !flag_section_anchors)
3020 fprintf (asm_out_file, "\t.subsections_via_symbols\n");
3023 /* TODO: Add a language hook for identifying if a decl is a vtable. */
3024 #define DARWIN_VTABLE_P(DECL) 0
3026 /* Cross-module name binding. Darwin does not support overriding
3027 functions at dynamic-link time, except for vtables in kexts. */
3029 bool
3030 darwin_binds_local_p (const_tree decl)
3032 return default_binds_local_p_1 (decl,
3033 TARGET_KEXTABI && DARWIN_VTABLE_P (decl));
3036 /* The Darwin's implementation of TARGET_ASM_OUTPUT_ANCHOR. Define the
3037 anchor relative to ".", the current section position. We cannot use
3038 the default one because ASM_OUTPUT_DEF is wrong for Darwin. */
3039 void
3040 darwin_asm_output_anchor (rtx symbol)
3042 fprintf (asm_out_file, "\t.set\t");
3043 assemble_name (asm_out_file, XSTR (symbol, 0));
3044 fprintf (asm_out_file, ", . + " HOST_WIDE_INT_PRINT_DEC "\n",
3045 SYMBOL_REF_BLOCK_OFFSET (symbol));
3048 /* Disable section anchoring on any section containing a zero-sized
3049 object. */
3050 bool
3051 darwin_use_anchors_for_symbol_p (const_rtx symbol)
3053 if (DARWIN_SECTION_ANCHORS && flag_section_anchors)
3055 section *sect;
3056 /* If the section contains a zero-sized object it's ineligible. */
3057 sect = SYMBOL_REF_BLOCK (symbol)->sect;
3058 /* This should have the effect of disabling anchors for vars that follow
3059 any zero-sized one, in a given section. */
3060 if (sect->common.flags & SECTION_NO_ANCHOR)
3061 return false;
3063 /* Also check the normal reasons for suppressing. */
3064 return default_use_anchors_for_symbol_p (symbol);
3066 else
3067 return false;
3070 /* Set the darwin specific attributes on TYPE. */
3071 void
3072 darwin_set_default_type_attributes (tree type)
3074 if (darwin_ms_struct
3075 && TREE_CODE (type) == RECORD_TYPE)
3076 TYPE_ATTRIBUTES (type) = tree_cons (get_identifier ("ms_struct"),
3077 NULL_TREE,
3078 TYPE_ATTRIBUTES (type));
3081 /* True, iff we're generating code for loadable kernel extensions. */
3083 bool
3084 darwin_kextabi_p (void) {
3085 return flag_apple_kext;
3088 void
3089 darwin_override_options (void)
3091 /* Keep track of which (major) version we're generating code for. */
3092 if (darwin_macosx_version_min)
3094 if (strverscmp (darwin_macosx_version_min, "10.6") >= 0)
3095 generating_for_darwin_version = 10;
3096 else if (strverscmp (darwin_macosx_version_min, "10.5") >= 0)
3097 generating_for_darwin_version = 9;
3099 /* Earlier versions are not specifically accounted, until required. */
3102 /* In principle, this should be c-family only. However, we really need to
3103 set sensible defaults for LTO as well, since the section selection stuff
3104 should check for correctness re. the ABI. TODO: check and provide the
3105 flags (runtime & ABI) from the lto wrapper). */
3107 /* Unless set, force ABI=2 for NeXT and m64, 0 otherwise. */
3108 if (!global_options_set.x_flag_objc_abi)
3109 global_options.x_flag_objc_abi
3110 = (!flag_next_runtime)
3112 : (TARGET_64BIT ? 2
3113 : (generating_for_darwin_version >= 9) ? 1
3114 : 0);
3116 /* Objective-C family ABI 2 is only valid for next/m64 at present. */
3117 if (global_options_set.x_flag_objc_abi && flag_next_runtime)
3119 if (TARGET_64BIT && global_options.x_flag_objc_abi < 2)
3120 error_at (UNKNOWN_LOCATION, "%<-fobjc-abi-version%> >= 2 must be"
3121 " used for %<-m64%> targets with"
3122 " %<-fnext-runtime%>");
3123 if (!TARGET_64BIT && global_options.x_flag_objc_abi >= 2)
3124 error_at (UNKNOWN_LOCATION, "%<-fobjc-abi-version%> >= 2 is not"
3125 " supported on %<-m32%> targets with"
3126 " %<-fnext-runtime%>");
3129 /* Don't emit DWARF3/4 unless specifically selected. This is a
3130 workaround for tool bugs. */
3131 if (!global_options_set.x_dwarf_strict)
3132 dwarf_strict = 1;
3133 if (!global_options_set.x_dwarf_version)
3134 dwarf_version = 2;
3136 /* Do not allow unwind tables to be generated by default for m32.
3137 fnon-call-exceptions will override this, regardless of what we do. */
3138 if (generating_for_darwin_version < 10
3139 && !global_options_set.x_flag_asynchronous_unwind_tables
3140 && !TARGET_64BIT)
3141 global_options.x_flag_asynchronous_unwind_tables = 0;
3143 /* Disable -freorder-blocks-and-partition when unwind tables are being
3144 emitted for Darwin < 9 (OSX 10.5).
3145 The strategy is, "Unless the User has specifically set/unset an unwind
3146 flag we will switch off -freorder-blocks-and-partition when unwind tables
3147 will be generated". If the User specifically sets flags... we assume
3148 (s)he knows why... */
3149 if (generating_for_darwin_version < 9
3150 && global_options_set.x_flag_reorder_blocks_and_partition
3151 && ((global_options.x_flag_exceptions /* User, c++, java */
3152 && !global_options_set.x_flag_exceptions) /* User specified... */
3153 || (global_options.x_flag_unwind_tables
3154 && !global_options_set.x_flag_unwind_tables)
3155 || (global_options.x_flag_non_call_exceptions
3156 && !global_options_set.x_flag_non_call_exceptions)
3157 || (global_options.x_flag_asynchronous_unwind_tables
3158 && !global_options_set.x_flag_asynchronous_unwind_tables)))
3160 inform (input_location,
3161 "-freorder-blocks-and-partition does not work with exceptions "
3162 "on this architecture");
3163 flag_reorder_blocks_and_partition = 0;
3164 flag_reorder_blocks = 1;
3167 /* FIXME: flag_objc_sjlj_exceptions is no longer needed since there is only
3168 one valid choice of exception scheme for each runtime. */
3169 if (!global_options_set.x_flag_objc_sjlj_exceptions)
3170 global_options.x_flag_objc_sjlj_exceptions =
3171 flag_next_runtime && !TARGET_64BIT;
3173 /* FIXME: and this could be eliminated then too. */
3174 if (!global_options_set.x_flag_exceptions
3175 && flag_objc_exceptions
3176 && TARGET_64BIT)
3177 flag_exceptions = 1;
3179 if (flag_mkernel || flag_apple_kext)
3181 /* -mkernel implies -fapple-kext for C++ */
3182 if (lang_GNU_CXX ())
3183 flag_apple_kext = 1;
3185 flag_no_common = 1;
3187 /* No EH in kexts. */
3188 flag_exceptions = 0;
3189 /* No -fnon-call-exceptions data in kexts. */
3190 flag_non_call_exceptions = 0;
3191 /* so no tables either.. */
3192 flag_unwind_tables = 0;
3193 flag_asynchronous_unwind_tables = 0;
3194 /* We still need to emit branch islands for kernel context. */
3195 darwin_emit_branch_islands = true;
3198 if (flag_var_tracking_uninit == 0
3199 && generating_for_darwin_version >= 9
3200 && (flag_gtoggle ? (debug_info_level == DINFO_LEVEL_NONE)
3201 : (debug_info_level >= DINFO_LEVEL_NORMAL))
3202 && write_symbols == DWARF2_DEBUG)
3203 flag_var_tracking_uninit = flag_var_tracking;
3205 if (MACHO_DYNAMIC_NO_PIC_P)
3207 if (flag_pic)
3208 warning_at (UNKNOWN_LOCATION, 0,
3209 "%<-mdynamic-no-pic%> overrides %<-fpic%>, %<-fPIC%>,"
3210 " %<-fpie%> or %<-fPIE%>");
3211 flag_pic = 0;
3213 else if (flag_pic == 1)
3215 /* Darwin's -fpic is -fPIC. */
3216 flag_pic = 2;
3219 /* It is assumed that branch island stubs are needed for earlier systems. */
3220 if (generating_for_darwin_version < 9)
3221 darwin_emit_branch_islands = true;
3222 else
3223 emit_aligned_common = true; /* Later systems can support aligned common. */
3225 /* The c_dialect...() macros are not available to us here. */
3226 darwin_running_cxx = (strstr (lang_hooks.name, "C++") != 0);
3229 #if DARWIN_PPC
3230 /* Add $LDBL128 suffix to long double builtins for ppc darwin. */
3232 static void
3233 darwin_patch_builtin (enum built_in_function fncode)
3235 tree fn = builtin_decl_explicit (fncode);
3236 tree sym;
3237 char *newname;
3239 if (!fn)
3240 return;
3242 sym = DECL_ASSEMBLER_NAME (fn);
3243 newname = ACONCAT (("_", IDENTIFIER_POINTER (sym), "$LDBL128", NULL));
3245 set_user_assembler_name (fn, newname);
3247 fn = builtin_decl_implicit (fncode);
3248 if (fn)
3249 set_user_assembler_name (fn, newname);
3252 void
3253 darwin_patch_builtins (void)
3255 if (LONG_DOUBLE_TYPE_SIZE != 128)
3256 return;
3258 #define PATCH_BUILTIN(fncode) darwin_patch_builtin (fncode);
3259 #define PATCH_BUILTIN_NO64(fncode) \
3260 if (!TARGET_64BIT) \
3261 darwin_patch_builtin (fncode);
3262 #define PATCH_BUILTIN_VARIADIC(fncode) \
3263 if (!TARGET_64BIT \
3264 && (strverscmp (darwin_macosx_version_min, "10.3.9") >= 0)) \
3265 darwin_patch_builtin (fncode);
3266 #include "darwin-ppc-ldouble-patch.def"
3267 #undef PATCH_BUILTIN
3268 #undef PATCH_BUILTIN_NO64
3269 #undef PATCH_BUILTIN_VARIADIC
3271 #endif
3273 /* CFStrings implementation. */
3274 static GTY(()) tree cfstring_class_reference = NULL_TREE;
3275 static GTY(()) tree cfstring_type_node = NULL_TREE;
3276 static GTY(()) tree ccfstring_type_node = NULL_TREE;
3277 static GTY(()) tree pccfstring_type_node = NULL_TREE;
3278 static GTY(()) tree pcint_type_node = NULL_TREE;
3279 static GTY(()) tree pcchar_type_node = NULL_TREE;
3281 static enum built_in_function darwin_builtin_cfstring;
3283 /* Store all constructed constant CFStrings in a hash table so that
3284 they get uniqued properly. */
3286 typedef struct GTY ((for_user)) cfstring_descriptor {
3287 /* The string literal. */
3288 tree literal;
3289 /* The resulting constant CFString. */
3290 tree constructor;
3291 } cfstring_descriptor;
3293 struct cfstring_hasher : ggc_hasher<cfstring_descriptor *>
3295 static hashval_t hash (cfstring_descriptor *);
3296 static bool equal (cfstring_descriptor *, cfstring_descriptor *);
3299 static GTY (()) hash_table<cfstring_hasher> *cfstring_htab;
3301 static tree
3302 add_builtin_field_decl (tree type, const char *name, tree **chain)
3304 tree field = build_decl (BUILTINS_LOCATION, FIELD_DECL,
3305 get_identifier (name), type);
3307 if (*chain != NULL)
3308 **chain = field;
3309 *chain = &DECL_CHAIN (field);
3311 return field;
3314 tree
3315 darwin_init_cfstring_builtins (unsigned builtin_cfstring)
3317 tree cfsfun, fields, pccfstring_ftype_pcchar;
3318 tree *chain = NULL;
3320 darwin_builtin_cfstring =
3321 (enum built_in_function) builtin_cfstring;
3323 /* struct __builtin_CFString {
3324 const int *isa; (will point at
3325 int flags; __CFConstantStringClassReference)
3326 const char *str;
3327 long length;
3328 }; */
3330 pcint_type_node = build_pointer_type
3331 (build_qualified_type (integer_type_node, TYPE_QUAL_CONST));
3333 pcchar_type_node = build_pointer_type
3334 (build_qualified_type (char_type_node, TYPE_QUAL_CONST));
3336 cfstring_type_node = (*lang_hooks.types.make_type) (RECORD_TYPE);
3338 /* Have to build backwards for finish struct. */
3339 fields = add_builtin_field_decl (long_integer_type_node, "length", &chain);
3340 add_builtin_field_decl (pcchar_type_node, "str", &chain);
3341 add_builtin_field_decl (integer_type_node, "flags", &chain);
3342 add_builtin_field_decl (pcint_type_node, "isa", &chain);
3343 finish_builtin_struct (cfstring_type_node, "__builtin_CFString",
3344 fields, NULL_TREE);
3346 /* const struct __builtin_CFstring *
3347 __builtin___CFStringMakeConstantString (const char *); */
3349 ccfstring_type_node = build_qualified_type
3350 (cfstring_type_node, TYPE_QUAL_CONST);
3351 pccfstring_type_node = build_pointer_type (ccfstring_type_node);
3352 pccfstring_ftype_pcchar = build_function_type_list
3353 (pccfstring_type_node, pcchar_type_node, NULL_TREE);
3355 cfsfun = build_decl (BUILTINS_LOCATION, FUNCTION_DECL,
3356 get_identifier ("__builtin___CFStringMakeConstantString"),
3357 pccfstring_ftype_pcchar);
3359 TREE_PUBLIC (cfsfun) = 1;
3360 DECL_EXTERNAL (cfsfun) = 1;
3361 DECL_ARTIFICIAL (cfsfun) = 1;
3362 /* Make a lang-specific section - dup_lang_specific_decl makes a new node
3363 in place of the existing, which may be NULL. */
3364 DECL_LANG_SPECIFIC (cfsfun) = NULL;
3365 (*lang_hooks.dup_lang_specific_decl) (cfsfun);
3366 DECL_BUILT_IN_CLASS (cfsfun) = BUILT_IN_MD;
3367 DECL_FUNCTION_CODE (cfsfun) = darwin_builtin_cfstring;
3368 lang_hooks.builtin_function (cfsfun);
3370 /* extern int __CFConstantStringClassReference[]; */
3371 cfstring_class_reference = build_decl (BUILTINS_LOCATION, VAR_DECL,
3372 get_identifier ("__CFConstantStringClassReference"),
3373 build_array_type (integer_type_node, NULL_TREE));
3375 TREE_PUBLIC (cfstring_class_reference) = 1;
3376 DECL_ARTIFICIAL (cfstring_class_reference) = 1;
3377 (*lang_hooks.decls.pushdecl) (cfstring_class_reference);
3378 DECL_EXTERNAL (cfstring_class_reference) = 1;
3379 rest_of_decl_compilation (cfstring_class_reference, 0, 0);
3381 /* Initialize the hash table used to hold the constant CFString objects. */
3382 cfstring_htab = hash_table<cfstring_hasher>::create_ggc (31);
3384 return cfstring_type_node;
3387 tree
3388 darwin_fold_builtin (tree fndecl, int n_args, tree *argp,
3389 bool ARG_UNUSED (ignore))
3391 unsigned int fcode = DECL_FUNCTION_CODE (fndecl);
3393 if (fcode == darwin_builtin_cfstring)
3395 if (!darwin_constant_cfstrings)
3397 error ("built-in function %qD requires the"
3398 " %<-mconstant-cfstrings%> flag", fndecl);
3399 return error_mark_node;
3402 if (n_args != 1)
3404 error ("built-in function %qD takes one argument only", fndecl);
3405 return error_mark_node;
3408 return darwin_build_constant_cfstring (*argp);
3411 return NULL_TREE;
3414 void
3415 darwin_rename_builtins (void)
3417 /* The system ___divdc3 routine in libSystem on darwin10 is not
3418 accurate to 1ulp, ours is, so we avoid ever using the system name
3419 for this routine and instead install a non-conflicting name that
3420 is accurate.
3422 When -ffast-math or -funsafe-math-optimizations is given, we can
3423 use the faster version. */
3424 if (!flag_unsafe_math_optimizations)
3426 enum built_in_function dcode
3427 = (enum built_in_function)(BUILT_IN_COMPLEX_DIV_MIN
3428 + DCmode - MIN_MODE_COMPLEX_FLOAT);
3429 tree fn = builtin_decl_explicit (dcode);
3430 /* Fortran and c call TARGET_INIT_BUILTINS and
3431 TARGET_INIT_LIBFUNCS at different times, so we have to put a
3432 call into each to ensure that at least one of them is called
3433 after build_common_builtin_nodes. A better fix is to add a
3434 new hook to run after build_common_builtin_nodes runs. */
3435 if (fn)
3436 set_user_assembler_name (fn, "___ieee_divdc3");
3437 fn = builtin_decl_implicit (dcode);
3438 if (fn)
3439 set_user_assembler_name (fn, "___ieee_divdc3");
3443 bool
3444 darwin_libc_has_function (enum function_class fn_class)
3446 if (fn_class == function_sincos)
3447 return false;
3448 if (fn_class == function_c99_math_complex
3449 || fn_class == function_c99_misc)
3450 return (TARGET_64BIT
3451 || strverscmp (darwin_macosx_version_min, "10.3") >= 0);
3453 return true;
3456 hashval_t
3457 cfstring_hasher::hash (cfstring_descriptor *ptr)
3459 tree str = ptr->literal;
3460 const unsigned char *p = (const unsigned char *) TREE_STRING_POINTER (str);
3461 int i, len = TREE_STRING_LENGTH (str);
3462 hashval_t h = len;
3464 for (i = 0; i < len; i++)
3465 h = ((h * 613) + p[i]);
3467 return h;
3470 bool
3471 cfstring_hasher::equal (cfstring_descriptor *ptr1, cfstring_descriptor *ptr2)
3473 tree str1 = ptr1->literal;
3474 tree str2 = ptr2->literal;
3475 int len1 = TREE_STRING_LENGTH (str1);
3477 return (len1 == TREE_STRING_LENGTH (str2)
3478 && !memcmp (TREE_STRING_POINTER (str1), TREE_STRING_POINTER (str2),
3479 len1));
3482 tree
3483 darwin_build_constant_cfstring (tree str)
3485 struct cfstring_descriptor *desc, key;
3486 tree addr;
3488 if (!str)
3490 error ("CFString literal is missing");
3491 return error_mark_node;
3494 STRIP_NOPS (str);
3496 if (TREE_CODE (str) == ADDR_EXPR)
3497 str = TREE_OPERAND (str, 0);
3499 if (TREE_CODE (str) != STRING_CST)
3501 error ("CFString literal expression is not a string constant");
3502 return error_mark_node;
3505 /* Perhaps we already constructed a constant CFString just like this one? */
3506 key.literal = str;
3507 cfstring_descriptor **loc = cfstring_htab->find_slot (&key, INSERT);
3508 desc = *loc;
3510 if (!desc)
3512 tree var, constructor, field;
3513 vec<constructor_elt, va_gc> *v = NULL;
3514 int length = TREE_STRING_LENGTH (str) - 1;
3516 if (darwin_warn_nonportable_cfstrings)
3518 const char *s = TREE_STRING_POINTER (str);
3519 int l = 0;
3521 for (l = 0; l < length; l++)
3522 if (!s[l] || !isascii (s[l]))
3524 warning (darwin_warn_nonportable_cfstrings, "%s in CFString literal",
3525 s[l] ? "non-ASCII character" : "embedded NUL");
3526 break;
3530 *loc = desc = ggc_cleared_alloc<cfstring_descriptor> ();
3531 desc->literal = str;
3533 /* isa *. */
3534 field = TYPE_FIELDS (ccfstring_type_node);
3535 CONSTRUCTOR_APPEND_ELT(v, NULL_TREE,
3536 build1 (ADDR_EXPR, TREE_TYPE (field),
3537 cfstring_class_reference));
3538 /* flags */
3539 field = DECL_CHAIN (field);
3540 CONSTRUCTOR_APPEND_ELT(v, NULL_TREE,
3541 build_int_cst (TREE_TYPE (field), 0x000007c8));
3542 /* string *. */
3543 field = DECL_CHAIN (field);
3544 CONSTRUCTOR_APPEND_ELT(v, NULL_TREE,
3545 build1 (ADDR_EXPR, TREE_TYPE (field), str));
3546 /* length */
3547 field = DECL_CHAIN (field);
3548 CONSTRUCTOR_APPEND_ELT(v, NULL_TREE,
3549 build_int_cst (TREE_TYPE (field), length));
3551 constructor = build_constructor (ccfstring_type_node, v);
3552 TREE_READONLY (constructor) = 1;
3553 TREE_CONSTANT (constructor) = 1;
3554 TREE_STATIC (constructor) = 1;
3556 /* Fromage: The C++ flavor of 'build_unary_op' expects constructor nodes
3557 to have the TREE_HAS_CONSTRUCTOR (...) bit set. However, this file is
3558 being built without any knowledge of C++ tree accessors; hence, we shall
3559 use the generic accessor that TREE_HAS_CONSTRUCTOR actually maps to! */
3560 if (darwin_running_cxx)
3561 TREE_LANG_FLAG_4 (constructor) = 1; /* TREE_HAS_CONSTRUCTOR */
3563 /* Create an anonymous global variable for this CFString. */
3564 var = build_decl (input_location, CONST_DECL,
3565 NULL, TREE_TYPE (constructor));
3566 DECL_ARTIFICIAL (var) = 1;
3567 TREE_STATIC (var) = 1;
3568 DECL_INITIAL (var) = constructor;
3569 /* FIXME: This should use a translation_unit_decl to indicate file scope. */
3570 DECL_CONTEXT (var) = NULL_TREE;
3571 desc->constructor = var;
3574 addr = build1 (ADDR_EXPR, pccfstring_type_node, desc->constructor);
3575 TREE_CONSTANT (addr) = 1;
3577 return addr;
3580 bool
3581 darwin_cfstring_p (tree str)
3583 struct cfstring_descriptor key;
3585 if (!str)
3586 return false;
3588 STRIP_NOPS (str);
3590 if (TREE_CODE (str) == ADDR_EXPR)
3591 str = TREE_OPERAND (str, 0);
3593 if (TREE_CODE (str) != STRING_CST)
3594 return false;
3596 key.literal = str;
3597 cfstring_descriptor **loc = cfstring_htab->find_slot (&key, NO_INSERT);
3599 if (loc)
3600 return true;
3602 return false;
3605 void
3606 darwin_enter_string_into_cfstring_table (tree str)
3608 struct cfstring_descriptor key;
3610 key.literal = str;
3611 cfstring_descriptor **loc = cfstring_htab->find_slot (&key, INSERT);
3613 if (!*loc)
3615 *loc = ggc_cleared_alloc<cfstring_descriptor> ();
3616 ((struct cfstring_descriptor *)*loc)->literal = str;
3620 /* Choose named function section based on its frequency. */
3622 section *
3623 darwin_function_section (tree decl, enum node_frequency freq,
3624 bool startup, bool exit)
3626 /* Decide if we need to put this in a coalescable section. */
3627 bool weak = (decl
3628 && DECL_WEAK (decl)
3629 && (!DECL_ATTRIBUTES (decl)
3630 || !lookup_attribute ("weak_import",
3631 DECL_ATTRIBUTES (decl))));
3633 /* If there is a specified section name, we should not be trying to
3634 override. */
3635 if (decl && DECL_SECTION_NAME (decl) != NULL)
3636 return get_named_section (decl, NULL, 0);
3638 /* We always put unlikely executed stuff in the cold section. */
3639 if (freq == NODE_FREQUENCY_UNLIKELY_EXECUTED)
3640 return (weak) ? darwin_sections[text_cold_coal_section]
3641 : darwin_sections[text_cold_section];
3643 /* If we have LTO *and* feedback information, then let LTO handle
3644 the function ordering, it makes a better job (for normal, hot,
3645 startup and exit - hence the bailout for cold above). */
3646 if (in_lto_p && flag_profile_values)
3647 goto default_function_sections;
3649 /* Non-cold startup code should go to startup subsection. */
3650 if (startup)
3651 return (weak) ? darwin_sections[text_startup_coal_section]
3652 : darwin_sections[text_startup_section];
3654 /* Similarly for exit. */
3655 if (exit)
3656 return (weak) ? darwin_sections[text_exit_coal_section]
3657 : darwin_sections[text_exit_section];
3659 /* Place hot code. */
3660 if (freq == NODE_FREQUENCY_HOT)
3661 return (weak) ? darwin_sections[text_hot_coal_section]
3662 : darwin_sections[text_hot_section];
3664 /* Otherwise, default to the 'normal' non-reordered sections. */
3665 default_function_sections:
3666 return (weak) ? darwin_sections[text_coal_section]
3667 : text_section;
3670 /* When a function is partitioned between sections, we need to insert a label
3671 at the start of each new chunk - so that it may become a valid 'atom' for
3672 eh and debug purposes. Without this the linker will emit warnings if one
3673 tries to add line location information (since the switched fragment will
3674 be anonymous). */
3676 void
3677 darwin_function_switched_text_sections (FILE *fp, tree decl, bool new_is_cold)
3679 char buf[128];
3680 snprintf (buf, 128, "%s%s",new_is_cold?"__cold_sect_of_":"__hot_sect_of_",
3681 IDENTIFIER_POINTER (DECL_NAME (decl)));
3682 /* Make sure we pick up all the relevant quotes etc. */
3683 assemble_name_raw (fp, (const char *) buf);
3684 fputs (":\n", fp);
3687 #include "gt-darwin.h"