68e5523a751ab1e1e2447813eca8d4a3b559f8ca
[libfirm] / ir / be / begnuas.c
1 /*
2  * Copyright (C) 1995-2011 University of Karlsruhe.  All right reserved.
3  *
4  * This file is part of libFirm.
5  *
6  * This file may be distributed and/or modified under the terms of the
7  * GNU General Public License version 2 as published by the Free Software
8  * Foundation and appearing in the file LICENSE.GPL included in the
9  * packaging of this file.
10  *
11  * Licensees holding valid libFirm Professional Edition licenses may use
12  * this file in accordance with the libFirm Commercial License.
13  * Agreement provided with the Software.
14  *
15  * This file is provided AS IS with NO WARRANTY OF ANY KIND, INCLUDING THE
16  * WARRANTY OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR
17  * PURPOSE.
18  */
19
20 /**
21  * @file
22  * @brief       Dumps global variables and constants as gas assembler.
23  * @author      Christian Wuerdig, Matthias Braun
24  * @date        04.11.2005
25  */
26 #include "config.h"
27
28 #include "begnuas.h"
29
30 #include <stdlib.h>
31 #include <string.h>
32 #include <ctype.h>
33 #include <assert.h>
34
35 #include "obst.h"
36 #include "tv.h"
37 #include "irnode.h"
38 #include "irprog.h"
39 #include "entity_t.h"
40 #include "error.h"
41 #include "util.h"
42 #include "execfreq.h"
43
44 #include "be_t.h"
45 #include "beemitter.h"
46 #include "bedwarf.h"
47
48 /** by default, we generate assembler code for the Linux gas */
49 object_file_format_t  be_gas_object_file_format = OBJECT_FILE_FORMAT_ELF;
50 elf_variant_t         be_gas_elf_variant        = ELF_VARIANT_NORMAL;
51 bool                  be_gas_emit_types         = true;
52 char                  be_gas_elf_type_char      = '@';
53
54 static be_gas_section_t current_section = (be_gas_section_t) -1;
55 static pmap            *block_numbers;
56 static unsigned         next_block_nr;
57
58 /**
59  * An environment containing all needed dumper data.
60  * Currently we create the file completely in memory first, then
61  * write it to the disk. This is an artifact from the old C-generating backend
62  * and even there NOT needed. So we might change it in the future.
63  */
64 typedef struct be_gas_decl_env {
65         be_gas_section_t     section;
66         const be_main_env_t *main_env;
67 } be_gas_decl_env_t;
68
69 static void emit_section_macho(be_gas_section_t section)
70 {
71         be_gas_section_t  base  = section & GAS_SECTION_TYPE_MASK;
72         be_gas_section_t  flags = section & ~GAS_SECTION_TYPE_MASK;
73         const char       *name;
74
75         if (current_section == section)
76                 return;
77         current_section = section;
78
79         /* shortforms */
80         if (flags == 0) {
81                 switch (base) {
82                 case GAS_SECTION_TEXT:            name = "text";          break;
83                 case GAS_SECTION_DATA:            name = "data";          break;
84                 case GAS_SECTION_RODATA:          name = "const";         break;
85                 case GAS_SECTION_BSS:             name = "data";          break;
86                 case GAS_SECTION_CONSTRUCTORS:    name = "mod_init_func"; break;
87                 case GAS_SECTION_DESTRUCTORS:     name = "mod_term_func"; break;
88                 case GAS_SECTION_PIC_TRAMPOLINES: name = "section\t__IMPORT,__jump_table,symbol_stubs,self_modifying_code+pure_instructions,5"; break;
89                 case GAS_SECTION_PIC_SYMBOLS:     name = "section\t__IMPORT,__pointers,non_lazy_symbol_pointers"; break;
90                 case GAS_SECTION_CSTRING:         name = "cstring";       break;
91                 case GAS_SECTION_DEBUG_INFO:      name = "section __DWARF,__debug_info,regular,debug"; break;
92                 case GAS_SECTION_DEBUG_ABBREV:    name = "section __DWARF,__debug_abbrev,regular,debug"; break;
93                 case GAS_SECTION_DEBUG_LINE:      name = "section __DWARF,__debug_line,regular,debug"; break;
94                 case GAS_SECTION_DEBUG_PUBNAMES:  name = "section __DWARF,__debug_pubnames,regular,debug"; break;
95                 case GAS_SECTION_DEBUG_FRAME:     name = "section __DWARF,__debug_frame,regular,debug"; break;
96                 default: panic("unsupported scetion type 0x%X", section);
97                 }
98         } else if (flags & GAS_SECTION_FLAG_COMDAT) {
99                 switch (base) {
100                 case GAS_SECTION_TEXT:            name = "section __TEXT,__textcoal_nt,coalesced,pure_instructions"; break;
101                 case GAS_SECTION_BSS:
102                 case GAS_SECTION_DATA:            name = "section __DATA,__datacoal_nt,coalesced"; break;
103                 case GAS_SECTION_RODATA:          name = "section __TEXT,__const_coal,coalesced"; break;
104                 case GAS_SECTION_CSTRING:         name = "section __TEXT,__const_coal,coalesced"; break;
105                 default: panic("unsupported scetion type 0x%X", section);
106                 }
107         } else if (flags & GAS_SECTION_FLAG_TLS) {
108                 panic("thread local storage not supported on macho (section 0x%X)", section);
109         } else {
110                 panic("unsupported section type 0x%X", section);
111         }
112         be_emit_irprintf("\t.%s\n", name);
113         be_emit_write_line();
114 }
115
116 static void emit_section_sparc(be_gas_section_t section, const ir_entity *entity)
117 {
118         be_gas_section_t base = section & GAS_SECTION_TYPE_MASK;
119         be_gas_section_t flags = section & ~GAS_SECTION_TYPE_MASK;
120         static const char *const basename[GAS_SECTION_LAST+1] = {
121                 "text",
122                 "data",
123                 "rodata",
124                 "bss",
125                 "ctors",
126                 "dtors",
127                 NULL, /* cstring */
128                 NULL, /* pic trampolines */
129                 NULL, /* pic symbols */
130                 "debug_info",
131                 "debug_abbrev",
132                 "debug_line",
133                 "debug_pubnames"
134                 "debug_frame",
135         };
136
137         if (current_section == section && !(section & GAS_SECTION_FLAG_COMDAT))
138                 return;
139         current_section = section;
140
141         be_emit_cstring("\t.section\t\".");
142
143         /* Part1: section-name */
144         if (flags & GAS_SECTION_FLAG_TLS)
145                 be_emit_char('t');
146         assert(base < (be_gas_section_t)ARRAY_SIZE(basename));
147         be_emit_string(basename[base]);
148
149         if (flags & GAS_SECTION_FLAG_COMDAT) {
150                 be_emit_char('.');
151                 be_gas_emit_entity(entity);
152         }
153         be_emit_char('"');
154
155         /* for the simple sections we're done here */
156         if (flags == 0)
157                 goto end;
158
159         be_emit_cstring(",#alloc");
160
161         switch (base) {
162         case GAS_SECTION_TEXT: be_emit_cstring(",#execinstr"); break;
163         case GAS_SECTION_DATA:
164         case GAS_SECTION_BSS:  be_emit_cstring(",#write"); break;
165         default:
166                 /* nothing */
167                 break;
168         }
169         if (flags & GAS_SECTION_FLAG_TLS) {
170                 be_emit_cstring(",#tls");
171         }
172
173 end:
174         be_emit_char('\n');
175         be_emit_write_line();
176 }
177
178 static void emit_section(be_gas_section_t section, const ir_entity *entity)
179 {
180         be_gas_section_t base = section & GAS_SECTION_TYPE_MASK;
181         be_gas_section_t flags = section & ~GAS_SECTION_TYPE_MASK;
182         const char *f;
183         static const struct {
184                 const char *name;
185                 const char *type;
186                 const char *flags;
187         } sectioninfos[GAS_SECTION_LAST+1] = {
188                 { "text",           "progbits", "ax" },
189                 { "data",           "progbits", "aw" },
190                 { "rodata",         "progbits", "a"  },
191                 { "bss",            "nobits",   "aw" },
192                 { "ctors",          "progbits", "aw" },
193                 { "dtors",          "progbits", "aw" },
194                 { NULL,             NULL,       NULL }, /* cstring */
195                 { NULL,             NULL,       NULL }, /* pic trampolines */
196                 { NULL,             NULL,       NULL }, /* pic symbols */
197                 { "debug_info",     "progbits", ""   },
198                 { "debug_abbrev",   "progbits", ""   },
199                 { "debug_line",     "progbits", ""   },
200                 { "debug_pubnames", "progbits", ""   },
201                 { "debug_frame",    "progbits", ""   },
202         };
203
204         if (be_gas_object_file_format == OBJECT_FILE_FORMAT_MACH_O) {
205                 emit_section_macho(section);
206                 return;
207         } else if(be_gas_elf_variant == ELF_VARIANT_SPARC) {
208                 emit_section_sparc(section, entity);
209                 return;
210         }
211
212         if (current_section == section && !(section & GAS_SECTION_FLAG_COMDAT))
213                 return;
214         current_section = section;
215
216         /* shortforms */
217         if (flags == 0) {
218                 switch (base) {
219                 case GAS_SECTION_TEXT:
220                         be_emit_cstring("\t.text\n");
221                         be_emit_write_line();
222                         return;
223                 case GAS_SECTION_DATA:
224                         be_emit_cstring("\t.data\n");
225                         be_emit_write_line();
226                         return;
227                 case GAS_SECTION_RODATA:
228                         be_emit_cstring("\t.section\t.rodata\n");
229                         be_emit_write_line();
230                         return;
231                 case GAS_SECTION_BSS:
232                         be_emit_cstring("\t.bss\n");
233                         be_emit_write_line();
234                         return;
235                 default:
236                         break;
237                 }
238         }
239
240         assert(base < (be_gas_section_t) ARRAY_SIZE(sectioninfos));
241         be_emit_cstring("\t.section\t.");
242         /* section name */
243         if (flags & GAS_SECTION_FLAG_TLS)
244                 be_emit_char('t');
245         be_emit_string(sectioninfos[base].name);
246         if (flags & GAS_SECTION_FLAG_COMDAT) {
247                 be_emit_char('.');
248                 be_gas_emit_entity(entity);
249         }
250
251         /* section flags */
252         be_emit_cstring(",\"");
253         for (f = sectioninfos[base].flags; *f != '\0'; ++f) {
254                 be_emit_char(*f);
255         }
256         if (flags & GAS_SECTION_FLAG_TLS)
257                 be_emit_char('T');
258         if (flags & GAS_SECTION_FLAG_COMDAT)
259                 be_emit_char('G');
260
261         /* section type */
262         if (be_gas_object_file_format != OBJECT_FILE_FORMAT_COFF) {
263                 be_emit_cstring("\",");
264                 be_emit_char(be_gas_elf_type_char);
265                 be_emit_string(sectioninfos[base].type);
266         }
267
268         if (flags & GAS_SECTION_FLAG_COMDAT) {
269                 be_emit_char(',');
270                 be_gas_emit_entity(entity);
271                 be_emit_cstring(",comdat");
272         }
273         be_emit_char('\n');
274         be_emit_write_line();
275 }
276
277
278
279 void be_gas_emit_switch_section(be_gas_section_t section)
280 {
281         /* you have to produce a switch_section call with entity manually
282          * for comdat sections */
283         assert( !(section & GAS_SECTION_FLAG_COMDAT));
284
285         emit_section(section, NULL);
286 }
287
288 static ir_tarval *get_initializer_tarval(const ir_initializer_t *initializer)
289 {
290         if (initializer->kind == IR_INITIALIZER_TARVAL)
291                 return initializer->tarval.value;
292         if (initializer->kind == IR_INITIALIZER_CONST) {
293                 ir_node *node = initializer->consti.value;
294                 if (is_Const(node)) {
295                         return get_Const_tarval(node);
296                 }
297         }
298         return get_tarval_undefined();
299 }
300
301 static bool initializer_is_string_const(const ir_initializer_t *initializer)
302 {
303         size_t i, len;
304         bool found_printable = false;
305
306         if (initializer->kind != IR_INITIALIZER_COMPOUND)
307                 return false;
308
309         len = initializer->compound.n_initializers;
310         if (len < 1)
311                 return false;
312         for (i = 0; i < len; ++i) {
313                 int               c;
314                 ir_tarval        *tv;
315                 ir_mode          *mode;
316                 ir_initializer_t *sub_initializer
317                         = initializer->compound.initializers[i];
318
319                 tv = get_initializer_tarval(sub_initializer);
320                 if (!tarval_is_constant(tv))
321                         return false;
322
323                 mode = get_tarval_mode(tv);
324                 if (!mode_is_int(mode) || get_mode_size_bits(mode) != 8)
325                         return false;
326
327                 c = get_tarval_long(tv);
328                 if (isgraph(c) || isspace(c))
329                         found_printable = true;
330                 else if (c != 0)
331                         return false;
332
333                 if (i == len - 1 && c != '\0')
334                         return false;
335         }
336
337         return found_printable;
338 }
339
340 static bool initializer_is_null(const ir_initializer_t *initializer)
341 {
342         switch (initializer->kind) {
343         case IR_INITIALIZER_NULL:
344                 return true;
345         case IR_INITIALIZER_TARVAL: {
346                 ir_tarval *tv = initializer->tarval.value;
347                 return tarval_is_null(tv);
348         }
349         case IR_INITIALIZER_CONST: {
350                 ir_node *value = initializer->consti.value;
351                 if (!is_Const(value))
352                         return false;
353                 return is_Const_null(value);
354         }
355         case IR_INITIALIZER_COMPOUND: {
356                 size_t i;
357                 for (i = 0; i < initializer->compound.n_initializers; ++i) {
358                         ir_initializer_t *subinitializer
359                                 = initializer->compound.initializers[i];
360                         if (!initializer_is_null(subinitializer))
361                                 return false;
362                 }
363                 return true;
364         }
365         }
366         panic("invalid initializer in initializer_is_null");
367 }
368
369 /**
370  * Determine if an entity is a string constant
371  * @param ent The entity
372  * @return 1 if it is a string constant, 0 otherwise
373  */
374 static int entity_is_string_const(const ir_entity *ent)
375 {
376         ir_type *type, *element_type;
377         ir_mode *mode;
378
379         type = get_entity_type(ent);
380
381         /* if it's an array */
382         if (!is_Array_type(type))
383                 return 0;
384
385         element_type = get_array_element_type(type);
386
387         /* and the array's element type is primitive */
388         if (!is_Primitive_type(element_type))
389                 return 0;
390
391         /* and the mode of the element type is an int of
392          * the same size as the byte mode */
393         mode = get_type_mode(element_type);
394         if (!mode_is_int(mode) || get_mode_size_bits(mode) != 8)
395                 return 0;
396
397         if (ent->initializer != NULL) {
398                 return initializer_is_string_const(ent->initializer);
399         }
400
401         return 0;
402 }
403
404 static bool entity_is_null(const ir_entity *entity)
405 {
406         ir_initializer_t *initializer = get_entity_initializer(entity);
407         return initializer == NULL || initializer_is_null(initializer);
408 }
409
410 static bool is_comdat(const ir_entity *entity)
411 {
412         ir_linkage linkage = get_entity_linkage(entity);
413         return (linkage & IR_LINKAGE_MERGE)
414                 && (linkage & IR_LINKAGE_GARBAGE_COLLECT);
415 }
416
417 static be_gas_section_t determine_basic_section(const ir_entity *entity)
418 {
419         ir_linkage linkage;
420
421         if (is_method_entity(entity))
422                 return GAS_SECTION_TEXT;
423
424         linkage = get_entity_linkage(entity);
425         if (linkage & IR_LINKAGE_CONSTANT) {
426                 /* mach-o is the only one with a cstring section */
427                 if (be_gas_object_file_format == OBJECT_FILE_FORMAT_MACH_O
428                     && entity_is_string_const(entity))
429                         return GAS_SECTION_CSTRING;
430
431                 return GAS_SECTION_RODATA;
432         }
433         if (entity_is_null(entity))
434                 return GAS_SECTION_BSS;
435
436         return GAS_SECTION_DATA;
437 }
438
439 static be_gas_section_t determine_section(be_gas_decl_env_t *env,
440                                           const ir_entity *entity)
441 {
442         ir_type *owner = get_entity_owner(entity);
443
444         if (owner == get_segment_type(IR_SEGMENT_GLOBAL)) {
445                 be_gas_section_t section = determine_basic_section(entity);
446                 if (is_comdat(entity))
447                         section |= GAS_SECTION_FLAG_COMDAT;
448                 return section;
449         } else if (env != NULL && owner == env->main_env->pic_symbols_type) {
450                 return GAS_SECTION_PIC_SYMBOLS;
451         } else if (env != NULL && owner == env->main_env->pic_trampolines_type) {
452                 return GAS_SECTION_PIC_TRAMPOLINES;
453         } else if (owner == get_segment_type(IR_SEGMENT_CONSTRUCTORS)) {
454                 return GAS_SECTION_CONSTRUCTORS;
455         } else if (owner == get_segment_type(IR_SEGMENT_DESTRUCTORS)) {
456                 return GAS_SECTION_DESTRUCTORS;
457         } else if (owner == get_segment_type(IR_SEGMENT_THREAD_LOCAL)) {
458                 be_gas_section_t section = determine_basic_section(entity);
459                 if (is_comdat(entity))
460                         section |= GAS_SECTION_FLAG_COMDAT;
461
462                 return section | GAS_SECTION_FLAG_TLS;
463         }
464
465         /* the java frontend keeps some functions inside classes */
466         if (is_Class_type(owner)) {
467                 return determine_basic_section(entity);
468         }
469
470         panic("Couldn't determine section for %+F?!?", entity);
471 }
472
473 static void emit_weak(const ir_entity *entity)
474 {
475         if (be_gas_object_file_format == OBJECT_FILE_FORMAT_MACH_O) {
476                 be_emit_cstring("\t.weak_reference ");
477         } else {
478                 be_emit_cstring("\t.weak ");
479         }
480         be_gas_emit_entity(entity);
481         be_emit_char('\n');
482         be_emit_write_line();
483 }
484
485 static void emit_visibility(const ir_entity *entity)
486 {
487         ir_linkage const linkage = get_entity_linkage(entity);
488
489         if (linkage & IR_LINKAGE_WEAK) {
490                 emit_weak(entity);
491                 /* Note: .weak seems to imply .globl so no need to output .globl */
492         } else if (get_entity_visibility(entity) == ir_visibility_external
493                    && entity_has_definition(entity)) {
494                 be_emit_cstring("\t.globl ");
495                 be_gas_emit_entity(entity);
496                 be_emit_char('\n');
497                 be_emit_write_line();
498         }
499
500         if (be_gas_object_file_format == OBJECT_FILE_FORMAT_MACH_O
501                         && (linkage & IR_LINKAGE_HIDDEN_USER)
502                         && get_entity_ld_name(entity)[0] != '\0') {
503                 be_emit_cstring("\t.no_dead_strip ");
504                 be_gas_emit_entity(entity);
505                 be_emit_char('\n');
506                 be_emit_write_line();
507         }
508 }
509
510 void be_gas_emit_function_prolog(const ir_entity *entity, unsigned po2alignment, const parameter_dbg_info_t *parameter_infos)
511 {
512         be_gas_section_t section;
513
514         be_dwarf_method_before(entity, parameter_infos);
515
516         section = determine_section(NULL, entity);
517         emit_section(section, entity);
518
519         /* write the begin line (makes the life easier for scripts parsing the
520          * assembler) */
521         if (be_options.verbose_asm) {
522                 be_emit_cstring("# -- Begin  ");
523                 be_gas_emit_entity(entity);
524                 be_emit_char('\n');
525                 be_emit_write_line();
526         }
527
528         if (po2alignment > 0) {
529                 const char *fill_byte = "";
530                 unsigned    maximum_skip = (1 << po2alignment) - 1;
531                 /* gcc fills space between function with 0x90... */
532                 if (be_gas_object_file_format == OBJECT_FILE_FORMAT_MACH_O) {
533                         fill_byte = "0x90";
534                 }
535                 be_emit_cstring("\t.p2align ");
536                 be_emit_irprintf("%u,%s,%u\n", po2alignment, fill_byte, maximum_skip);
537                 be_emit_write_line();
538         }
539         emit_visibility(entity);
540
541         switch (be_gas_object_file_format) {
542         case OBJECT_FILE_FORMAT_ELF:
543                 be_emit_cstring("\t.type\t");
544                 be_gas_emit_entity(entity);
545                 be_emit_cstring(", ");
546                 be_emit_char(be_gas_elf_type_char);
547                 be_emit_cstring("function\n");
548                 be_emit_write_line();
549                 break;
550         case OBJECT_FILE_FORMAT_COFF:
551                 be_emit_cstring("\t.def\t");
552                 be_gas_emit_entity(entity);
553                 be_emit_cstring(";");
554                 if (get_entity_visibility(entity) == ir_visibility_local) {
555                         be_emit_cstring("\t.scl\t3;");
556                 } else {
557                         be_emit_cstring("\t.scl\t2;");
558                 }
559                 be_emit_cstring("\t.type\t32;\t.endef\n");
560                 be_emit_write_line();
561                 break;
562         case OBJECT_FILE_FORMAT_MACH_O:
563                 break;
564         }
565         be_gas_emit_entity(entity);
566         be_emit_cstring(":\n");
567         be_emit_write_line();
568
569         be_dwarf_method_begin();
570 }
571
572 void be_gas_emit_function_epilog(const ir_entity *entity)
573 {
574         be_dwarf_method_end();
575
576         if (be_gas_object_file_format == OBJECT_FILE_FORMAT_ELF) {
577                 be_emit_cstring("\t.size\t");
578                 be_gas_emit_entity(entity);
579                 be_emit_cstring(", .-");
580                 be_gas_emit_entity(entity);
581                 be_emit_char('\n');
582                 be_emit_write_line();
583         }
584
585         if (be_options.verbose_asm) {
586                 be_emit_cstring("# -- End  ");
587                 be_gas_emit_entity(entity);
588                 be_emit_char('\n');
589                 be_emit_write_line();
590         }
591
592         be_emit_char('\n');
593         be_emit_write_line();
594
595         next_block_nr += 199;
596         next_block_nr -= next_block_nr % 100;
597 }
598
599 /**
600  * Output a tarval.
601  *
602  * @param tv     the tarval
603  * @param bytes  the width of the tarvals value in bytes
604  */
605 static void emit_arith_tarval(ir_tarval *tv, unsigned bytes)
606 {
607         switch (bytes) {
608         case 1:
609                 be_emit_irprintf("0x%02x", get_tarval_sub_bits(tv, 0));
610                 return;
611
612         case 2:
613                 be_emit_irprintf("0x%02x%02x",
614                         get_tarval_sub_bits(tv, 1), get_tarval_sub_bits(tv, 0));
615                 return;
616
617         case 4:
618                 be_emit_irprintf("0x%02x%02x%02x%02x",
619                         get_tarval_sub_bits(tv, 3), get_tarval_sub_bits(tv, 2),
620                         get_tarval_sub_bits(tv, 1), get_tarval_sub_bits(tv, 0));
621                 return;
622
623         case 8:
624                 be_emit_irprintf("0x%02x%02x%02x%02x%02x%02x%02x%02x",
625                         get_tarval_sub_bits(tv, 7), get_tarval_sub_bits(tv, 6),
626                         get_tarval_sub_bits(tv, 5), get_tarval_sub_bits(tv, 4),
627                         get_tarval_sub_bits(tv, 3), get_tarval_sub_bits(tv, 2),
628                         get_tarval_sub_bits(tv, 1), get_tarval_sub_bits(tv, 0));
629                 return;
630         }
631
632         panic("Can't dump a tarval with %d bytes", bytes);
633 }
634
635 /**
636  * Return the label prefix for labeled instructions.
637  */
638 const char *be_gas_insn_label_prefix(void)
639 {
640         return ".LE";
641 }
642
643 /**
644  * Dump an atomic value.
645  *
646  * @param env   the gas output environment
647  * @param init  a node representing the atomic value (on the const code irg)
648  */
649 static void emit_init_expression(be_gas_decl_env_t *env, ir_node *init)
650 {
651         ir_mode *mode = get_irn_mode(init);
652         int bytes     = get_mode_size_bytes(mode);
653         ir_tarval *tv;
654         ir_entity *ent;
655
656         init = skip_Id(init);
657
658         switch (get_irn_opcode(init)) {
659         case iro_Cast:
660                 emit_init_expression(env, get_Cast_op(init));
661                 return;
662
663         case iro_Conv:
664                 emit_init_expression(env, get_Conv_op(init));
665                 return;
666
667         case iro_Const:
668                 tv = get_Const_tarval(init);
669
670                 /* it's an arithmetic value */
671                 emit_arith_tarval(tv, bytes);
672                 return;
673
674         case iro_SymConst:
675                 switch (get_SymConst_kind(init)) {
676                 case symconst_addr_ent:
677                         ent = get_SymConst_entity(init);
678                         be_gas_emit_entity(ent);
679                         break;
680
681                 case symconst_ofs_ent:
682                         ent = get_SymConst_entity(init);
683                         be_emit_irprintf("%d", get_entity_offset(ent));
684                         break;
685
686                 case symconst_type_size:
687                         be_emit_irprintf("%u", get_type_size_bytes(get_SymConst_type(init)));
688                         break;
689
690                 case symconst_type_align:
691                         be_emit_irprintf("%u", get_type_alignment_bytes(get_SymConst_type(init)));
692                         break;
693
694                 case symconst_enum_const:
695                         tv = get_enumeration_value(get_SymConst_enum(init));
696                         emit_arith_tarval(tv, bytes);
697                         break;
698
699                 default:
700                         assert(!"emit_atomic_init(): don't know how to init from this SymConst");
701                 }
702                 return;
703
704         case iro_Add:
705                 if (!mode_is_int(mode) && !mode_is_reference(mode)) {
706                         panic("Constant must be int or pointer for '+' to work");
707                 }
708                 emit_init_expression(env, get_Add_left(init));
709                 be_emit_cstring(" + ");
710                 emit_init_expression(env, get_Add_right(init));
711                 return;
712
713         case iro_Sub:
714                 if (!mode_is_int(mode) && !mode_is_reference(mode)) {
715                         panic("Constant must be int or pointer for '-' to work");
716                 }
717                 emit_init_expression(env, get_Sub_left(init));
718                 be_emit_cstring(" - ");
719                 emit_init_expression(env, get_Sub_right(init));
720                 return;
721
722         case iro_Mul:
723                 if (!mode_is_int(mode) && !mode_is_reference(mode)) {
724                         panic("Constant must be int or pointer for '*' to work");
725                 }
726                 emit_init_expression(env, get_Mul_left(init));
727                 be_emit_cstring(" * ");
728                 emit_init_expression(env, get_Mul_right(init));
729                 return;
730
731         case iro_Unknown:
732                 be_emit_cstring("0");
733                 return;
734
735         default:
736                 panic("unsupported IR-node %+F", init);
737         }
738 }
739
740 /**
741  * Dumps the type for given size (.byte, .long, ...)
742  *
743  * @param size  the size in bytes
744  */
745 static void emit_size_type(size_t size)
746 {
747         switch (size) {
748         case 1: be_emit_cstring("\t.byte\t");  break;
749         case 2: be_emit_cstring("\t.short\t"); break;
750         case 4: be_emit_cstring("\t.long\t");  break;
751         case 8: be_emit_cstring("\t.quad\t");  break;
752
753         default:
754                 panic("Try to dump a type with %u bytes", (unsigned)size);
755         }
756 }
757
758 static void emit_string_char(int c)
759 {
760         switch (c) {
761         case '"' : be_emit_cstring("\\\""); break;
762         case '\n': be_emit_cstring("\\n"); break;
763         case '\r': be_emit_cstring("\\r"); break;
764         case '\t': be_emit_cstring("\\t"); break;
765         case '\\': be_emit_cstring("\\\\"); break;
766         default  :
767                 if (isprint(c))
768                         be_emit_char(c);
769                 else
770                         be_emit_irprintf("\\%03o", c);
771                 break;
772         }
773 }
774
775 static size_t emit_string_initializer(const ir_initializer_t *initializer)
776 {
777         be_emit_cstring("\t.asciz \"");
778
779         size_t len = initializer->compound.n_initializers;
780         for (size_t i = 0; i < len-1; ++i) {
781                 const ir_initializer_t *sub_initializer
782                         = get_initializer_compound_value(initializer, i);
783
784                 ir_tarval *tv = get_initializer_tarval(sub_initializer);
785                 int        c  = get_tarval_long(tv);
786                 emit_string_char(c);
787         }
788         be_emit_cstring("\"\n");
789         be_emit_write_line();
790
791         return initializer->compound.n_initializers;
792 }
793
794 void be_gas_emit_cstring(const char *string)
795 {
796         be_emit_cstring("\t.asciz \"");
797         for (const char *c = string; *c != '\0'; ++c) {
798                 emit_string_char(*c);
799         }
800         be_emit_cstring("\"\n");
801         be_emit_write_line();
802 }
803
804 typedef enum normal_or_bitfield_kind {
805         NORMAL = 0,
806         TARVAL,
807         STRING,
808         BITFIELD
809 } normal_or_bitfield_kind;
810
811 typedef struct {
812         normal_or_bitfield_kind kind;
813         ir_type                *type;
814         union {
815                 ir_node                *value;
816                 ir_tarval              *tarval;
817                 unsigned char           bf_val;
818                 const ir_initializer_t *string;
819         } v;
820 } normal_or_bitfield;
821
822 static size_t get_initializer_size(const ir_initializer_t *initializer,
823                                    ir_type *type)
824 {
825         switch (get_initializer_kind(initializer)) {
826         case IR_INITIALIZER_TARVAL:
827                 assert(get_tarval_mode(get_initializer_tarval_value(initializer)) == get_type_mode(type));
828                 return get_type_size_bytes(type);
829         case IR_INITIALIZER_CONST:
830         case IR_INITIALIZER_NULL:
831                 return get_type_size_bytes(type);
832         case IR_INITIALIZER_COMPOUND:
833                 if (is_Array_type(type)) {
834                         if (is_array_variable_size(type)) {
835                                 ir_type   *element_type = get_array_element_type(type);
836                                 unsigned   element_size = get_type_size_bytes(element_type);
837                                 unsigned   element_align
838                                         = get_type_alignment_bytes(element_type);
839                                 unsigned   misalign     = element_size % element_align;
840                                 size_t     n_inits
841                                         = get_initializer_compound_n_entries(initializer);
842                                 element_size += element_align - misalign;
843                                 return n_inits * element_size;
844                         } else {
845                                 return get_type_size_bytes(type);
846                         }
847                 } else {
848                         assert(is_compound_type(type));
849                         size_t size = get_type_size_bytes(type);
850                         if (is_compound_variable_size(type)) {
851                                 /* last initializer has to be an array of variable size */
852                                 size_t l = get_initializer_compound_n_entries(initializer)-1;
853                                 const ir_initializer_t *last
854                                         = get_initializer_compound_value(initializer, l);
855                                 const ir_entity *last_ent  = get_compound_member(type, l);
856                                 ir_type         *last_type = get_entity_type(last_ent);
857                                 assert(is_array_variable_size(last_type));
858                                 size += get_initializer_size(last, last_type);
859                         }
860                         return size;
861                 }
862         }
863
864         panic("found invalid initializer");
865 }
866
867 #ifndef NDEBUG
868 static normal_or_bitfield *glob_vals;
869 static size_t              max_vals;
870 #endif
871
872 static void emit_bitfield(normal_or_bitfield *vals, size_t offset_bits,
873                           const ir_initializer_t *initializer, ir_type *type)
874 {
875         static const size_t BITS_PER_BYTE = 8;
876         ir_mode   *mode      = get_type_mode(type);
877         ir_tarval *tv        = NULL;
878         int        value_len;
879         size_t     bit_offset;
880         size_t     end;
881         bool       big_endian = be_get_backend_param()->byte_order_big_endian;
882
883         switch (get_initializer_kind(initializer)) {
884         case IR_INITIALIZER_NULL:
885                 return;
886         case IR_INITIALIZER_TARVAL:
887                 tv = get_initializer_tarval_value(initializer);
888                 break;
889         case IR_INITIALIZER_CONST: {
890                 ir_node *node = get_initializer_const_value(initializer);
891                 if (!is_Const(node)) {
892                         panic("bitfield initializer not a Const node");
893                 }
894                 tv = get_Const_tarval(node);
895                 break;
896         }
897         case IR_INITIALIZER_COMPOUND:
898                 panic("bitfield initializer is compound");
899         }
900         if (tv == NULL) {
901                 panic("Couldn't get numeric value for bitfield initializer");
902         }
903         tv = tarval_convert_to(tv, get_type_mode(type));
904
905         value_len  = get_type_size_bytes(get_primitive_base_type(type));
906         bit_offset = 0;
907         end        = get_mode_size_bits(mode);
908         while (bit_offset < end) {
909                 size_t        src_offset      = bit_offset / BITS_PER_BYTE;
910                 size_t        src_offset_bits = bit_offset % BITS_PER_BYTE;
911                 size_t        dst_offset      = (bit_offset+offset_bits) / BITS_PER_BYTE;
912                 size_t        dst_offset_bits = (bit_offset+offset_bits) % BITS_PER_BYTE;
913                 size_t        src_bits_len    = end-bit_offset;
914                 size_t        dst_bits_len    = BITS_PER_BYTE-dst_offset_bits;
915                 unsigned char curr_bits;
916                 normal_or_bitfield *val;
917                 if (src_bits_len > dst_bits_len)
918                         src_bits_len = dst_bits_len;
919
920                 if (big_endian) {
921                         val = &vals[value_len - dst_offset - 1];
922                 } else {
923                         val = &vals[dst_offset];
924                 }
925
926                 assert((val-glob_vals) < (ptrdiff_t) max_vals);
927                 assert(val->kind == BITFIELD ||
928                                 (val->kind == NORMAL && val->v.value == NULL));
929                 val->kind  = BITFIELD;
930                 curr_bits  = get_tarval_sub_bits(tv, src_offset);
931                 curr_bits  = curr_bits >> src_offset_bits;
932                 if (src_offset_bits + src_bits_len > 8) {
933                         unsigned next_bits = get_tarval_sub_bits(tv, src_offset+1);
934                         curr_bits |= next_bits << (8 - src_offset_bits);
935                 }
936                 curr_bits &= (1 << src_bits_len) - 1;
937                 val->v.bf_val |= curr_bits << dst_offset_bits;
938
939                 bit_offset += dst_bits_len;
940         }
941 }
942
943 static void emit_ir_initializer(normal_or_bitfield *vals,
944                                 const ir_initializer_t *initializer,
945                                 ir_type *type)
946 {
947         assert((size_t) (vals - glob_vals) <= max_vals);
948
949         if (initializer_is_string_const(initializer)) {
950                 assert(vals->kind != BITFIELD);
951                 vals->kind     = STRING;
952                 vals->v.string = initializer;
953                 return;
954         }
955
956         switch (get_initializer_kind(initializer)) {
957         case IR_INITIALIZER_NULL:
958                 return;
959         case IR_INITIALIZER_TARVAL: {
960                 size_t i;
961
962                 assert(vals->kind != BITFIELD);
963                 vals->kind     = TARVAL;
964                 vals->type     = type;
965                 vals->v.tarval = get_initializer_tarval_value(initializer);
966                 assert(get_type_mode(type) == get_tarval_mode(vals->v.tarval));
967                 for (i = 1; i < get_type_size_bytes(type); ++i) {
968                         vals[i].kind    = NORMAL;
969                         vals[i].type    = NULL;
970                         vals[i].v.value = NULL;
971                 }
972                 return;
973         }
974         case IR_INITIALIZER_CONST: {
975                 size_t i;
976
977                 assert(vals->kind != BITFIELD);
978                 vals->kind    = NORMAL;
979                 vals->type    = type;
980                 vals->v.value = get_initializer_const_value(initializer);
981                 for (i = 1; i < get_type_size_bytes(type); ++i) {
982                         vals[i].kind    = NORMAL;
983                         vals[i].type    = NULL;
984                         vals[i].v.value = NULL;
985                 }
986                 return;
987         }
988         case IR_INITIALIZER_COMPOUND: {
989                 size_t i = 0;
990                 size_t n = get_initializer_compound_n_entries(initializer);
991
992                 if (is_Array_type(type)) {
993                         ir_type *element_type = get_array_element_type(type);
994                         size_t   skip         = get_type_size_bytes(element_type);
995                         size_t   alignment    = get_type_alignment_bytes(element_type);
996                         size_t   misalign     = skip % alignment;
997                         if (misalign != 0) {
998                                 skip += alignment - misalign;
999                         }
1000
1001                         for (i = 0; i < n; ++i) {
1002                                 ir_initializer_t *sub_initializer
1003                                         = get_initializer_compound_value(initializer, i);
1004
1005                                 emit_ir_initializer(vals, sub_initializer, element_type);
1006
1007                                 vals += skip;
1008                         }
1009                 } else {
1010                         size_t n_members, i;
1011                         assert(is_compound_type(type));
1012                         n_members = get_compound_n_members(type);
1013                         for (i = 0; i < n_members; ++i) {
1014                                 ir_entity        *member    = get_compound_member(type, i);
1015                                 size_t            offset    = get_entity_offset(member);
1016                                 ir_type          *subtype   = get_entity_type(member);
1017                                 ir_mode          *mode      = get_type_mode(subtype);
1018                                 ir_initializer_t *sub_initializer;
1019
1020                                 assert(i < get_initializer_compound_n_entries(initializer));
1021                                 sub_initializer
1022                                         = get_initializer_compound_value(initializer, i);
1023
1024                                 if (mode != NULL) {
1025                                         size_t offset_bits
1026                                                 = get_entity_offset_bits_remainder(member);
1027
1028                                         if (is_Primitive_type(subtype)
1029                                                         && get_primitive_base_type(subtype) != NULL) {
1030                                                 emit_bitfield(&vals[offset], offset_bits,
1031                                                               sub_initializer, subtype);
1032                                                 continue;
1033                                         } else {
1034                                                 assert(offset_bits == 0);
1035                                         }
1036                                 }
1037
1038                                 emit_ir_initializer(&vals[offset], sub_initializer, subtype);
1039                         }
1040                 }
1041
1042                 return;
1043         }
1044         }
1045         panic("invalid ir_initializer kind found");
1046 }
1047
1048 static void emit_tarval_data(ir_type *type, ir_tarval *tv)
1049 {
1050         size_t size = get_type_size_bytes(type);
1051         if (size == 12) {
1052                 /* this should be an x86 extended float */
1053                 assert(be_get_backend_param()->byte_order_big_endian == 0);
1054
1055                 /* Beware: Mixed endian output!  One little endian number emitted as
1056                  * three longs.  Each long initializer is written in big endian. */
1057                 be_emit_irprintf(
1058                         "\t.long\t0x%02x%02x%02x%02x\n"
1059                         "\t.long\t0x%02x%02x%02x%02x\n"
1060                         "\t.long\t0x%02x%02x%02x%02x\n",
1061                         get_tarval_sub_bits(tv,  3), get_tarval_sub_bits(tv,  2),
1062                         get_tarval_sub_bits(tv,  1), get_tarval_sub_bits(tv,  0),
1063                         get_tarval_sub_bits(tv,  7), get_tarval_sub_bits(tv,  6),
1064                         get_tarval_sub_bits(tv,  5), get_tarval_sub_bits(tv,  4),
1065                         get_tarval_sub_bits(tv, 11), get_tarval_sub_bits(tv, 10),
1066                         get_tarval_sub_bits(tv,  9), get_tarval_sub_bits(tv,  8)
1067                 );
1068                 be_emit_write_line();
1069         } else if (size == 16) {
1070                 if (be_get_backend_param()->byte_order_big_endian) {
1071                         be_emit_irprintf(
1072                                 "\t.long\t0x%02x%02x%02x%02x\n"
1073                                 "\t.long\t0x%02x%02x%02x%02x\n"
1074                                 "\t.long\t0x%02x%02x%02x%02x\n"
1075                                 "\t.long\t0x%02x%02x%02x%02x\n",
1076                                 get_tarval_sub_bits(tv, 15), get_tarval_sub_bits(tv, 14),
1077                                 get_tarval_sub_bits(tv, 13), get_tarval_sub_bits(tv, 12),
1078                                 get_tarval_sub_bits(tv, 11), get_tarval_sub_bits(tv, 10),
1079                                 get_tarval_sub_bits(tv,  9), get_tarval_sub_bits(tv,  8),
1080                                 get_tarval_sub_bits(tv,  7), get_tarval_sub_bits(tv,  6),
1081                                 get_tarval_sub_bits(tv,  5), get_tarval_sub_bits(tv,  4),
1082                                 get_tarval_sub_bits(tv,  3), get_tarval_sub_bits(tv,  2),
1083                                 get_tarval_sub_bits(tv,  1), get_tarval_sub_bits(tv,  0)
1084                         );
1085                 } else {
1086                         /* Beware: Mixed endian output! One little endian number emitted as
1087                          * three longs.  Each long initializer is written in big endian. */
1088                         be_emit_irprintf(
1089                                 "\t.long\t0x%02x%02x%02x%02x\n"
1090                                 "\t.long\t0x%02x%02x%02x%02x\n"
1091                                 "\t.long\t0x%02x%02x%02x%02x\n"
1092                                 "\t.long\t0x%02x%02x%02x%02x\n",
1093                                 get_tarval_sub_bits(tv,  3), get_tarval_sub_bits(tv,  2),
1094                                 get_tarval_sub_bits(tv,  1), get_tarval_sub_bits(tv,  0),
1095                                 get_tarval_sub_bits(tv,  7), get_tarval_sub_bits(tv,  6),
1096                                 get_tarval_sub_bits(tv,  5), get_tarval_sub_bits(tv,  4),
1097                                 get_tarval_sub_bits(tv, 11), get_tarval_sub_bits(tv, 10),
1098                                 get_tarval_sub_bits(tv,  9), get_tarval_sub_bits(tv,  8),
1099                                 get_tarval_sub_bits(tv, 15), get_tarval_sub_bits(tv, 14),
1100                                 get_tarval_sub_bits(tv, 13), get_tarval_sub_bits(tv, 12)
1101                         );
1102                 }
1103                 be_emit_write_line();
1104                 return;
1105         } else {
1106                 /* default case */
1107                 emit_size_type(size);
1108                 emit_arith_tarval(tv, size);
1109                 be_emit_char('\n');
1110                 be_emit_write_line();
1111         }
1112 }
1113
1114 /**
1115  * Emit an atomic value.
1116  *
1117  * @param env   the gas output environment
1118  * @param init  a node representing the atomic value (on the const code irg)
1119  */
1120 static void emit_node_data(be_gas_decl_env_t *env, ir_node *init, ir_type *type)
1121 {
1122         size_t size = get_type_size_bytes(type);
1123         if (size == 12 || size == 16) {
1124                 ir_tarval *tv;
1125                 if (!is_Const(init)) {
1126                         panic("12/16byte initializers only support Const nodes yet");
1127                 }
1128                 tv = get_Const_tarval(init);
1129                 emit_tarval_data(type, tv);
1130                 return;
1131         }
1132
1133         emit_size_type(size);
1134         emit_init_expression(env, init);
1135         be_emit_char('\n');
1136         be_emit_write_line();
1137 }
1138
1139 static void emit_initializer(be_gas_decl_env_t *env, const ir_entity *entity)
1140 {
1141         const ir_initializer_t *initializer = entity->initializer;
1142         ir_type                *type;
1143         normal_or_bitfield     *vals;
1144         size_t                  size;
1145         size_t                  k;
1146
1147         if (initializer_is_string_const(initializer)) {
1148                 emit_string_initializer(initializer);
1149                 return;
1150         }
1151
1152         type = get_entity_type(entity);
1153         size = get_initializer_size(initializer, type);
1154
1155         if (size == 0)
1156                 return;
1157
1158         /*
1159          * In the worst case, every initializer allocates one byte.
1160          * Moreover, initializer might be big, do not allocate on stack.
1161          */
1162         vals = XMALLOCNZ(normal_or_bitfield, size);
1163
1164 #ifndef NDEBUG
1165         glob_vals = vals;
1166         max_vals  = size;
1167 #endif
1168
1169         emit_ir_initializer(vals, initializer, type);
1170
1171         /* now write values sorted */
1172         for (k = 0; k < size; ) {
1173                 int                     space     = 0;
1174                 normal_or_bitfield_kind kind      = vals[k].kind;
1175                 int                     elem_size;
1176                 switch (kind) {
1177                 case NORMAL:
1178                         if (vals[k].v.value != NULL) {
1179                                 emit_node_data(env, vals[k].v.value, vals[k].type);
1180                                 elem_size = get_type_size_bytes(vals[k].type);
1181                         } else {
1182                                 elem_size = 0;
1183                         }
1184                         break;
1185                 case TARVAL:
1186                         emit_tarval_data(vals[k].type, vals[k].v.tarval);
1187                         elem_size = get_type_size_bytes(vals[k].type);
1188                         break;
1189                 case STRING:
1190                         elem_size = emit_string_initializer(vals[k].v.string);
1191                         break;
1192                 case BITFIELD:
1193                         be_emit_irprintf("\t.byte\t%d\n", vals[k].v.bf_val);
1194                         be_emit_write_line();
1195                         elem_size = 1;
1196                         break;
1197                 default:
1198                         panic("internal compiler error (invalid normal_or_bitfield_kind");
1199                 }
1200
1201                 k += elem_size;
1202                 while (k < size && vals[k].kind == NORMAL && vals[k].v.value == NULL) {
1203                         ++space;
1204                         ++k;
1205                 }
1206
1207                 /* a gap */
1208                 if (space > 0) {
1209                         be_emit_irprintf("\t.space\t%d, 0\n", space);
1210                         be_emit_write_line();
1211                 }
1212         }
1213         xfree(vals);
1214 }
1215
1216 static void emit_align(unsigned p2alignment)
1217 {
1218         be_emit_irprintf("\t.p2align\t%u\n", log2_floor(p2alignment));
1219         be_emit_write_line();
1220 }
1221
1222 static unsigned get_effective_entity_alignment(const ir_entity *entity)
1223 {
1224         unsigned alignment = get_entity_alignment(entity);
1225         if (alignment == 0) {
1226                 ir_type *type = get_entity_type(entity);
1227                 alignment     = get_type_alignment_bytes(type);
1228         }
1229         return alignment;
1230 }
1231
1232 static void emit_common(const ir_entity *entity)
1233 {
1234         unsigned size      = get_type_size_bytes(get_entity_type(entity));
1235         unsigned alignment = get_effective_entity_alignment(entity);
1236
1237         if (get_entity_linkage(entity) & IR_LINKAGE_WEAK) {
1238                 emit_weak(entity);
1239         }
1240
1241         switch (be_gas_object_file_format) {
1242         case OBJECT_FILE_FORMAT_MACH_O:
1243                 be_emit_cstring("\t.comm ");
1244                 be_gas_emit_entity(entity);
1245                 be_emit_irprintf(",%u,%u\n", size, log2_floor(alignment));
1246                 be_emit_write_line();
1247                 return;
1248         case OBJECT_FILE_FORMAT_ELF:
1249                 be_emit_cstring("\t.comm ");
1250                 be_gas_emit_entity(entity);
1251                 be_emit_irprintf(",%u,%u\n", size, alignment);
1252                 be_emit_write_line();
1253                 return;
1254         case OBJECT_FILE_FORMAT_COFF:
1255                 be_emit_cstring("\t.comm ");
1256                 be_gas_emit_entity(entity);
1257                 be_emit_irprintf(",%u # %u\n", size, alignment);
1258                 be_emit_write_line();
1259                 return;
1260         }
1261         panic("invalid object file format");
1262 }
1263
1264 static void emit_local_common(const ir_entity *entity)
1265 {
1266         unsigned size      = get_type_size_bytes(get_entity_type(entity));
1267         unsigned alignment = get_effective_entity_alignment(entity);
1268
1269         if (get_entity_linkage(entity) & IR_LINKAGE_WEAK) {
1270                 emit_weak(entity);
1271         }
1272
1273         switch (be_gas_object_file_format) {
1274         case OBJECT_FILE_FORMAT_MACH_O:
1275                 be_emit_cstring("\t.lcomm ");
1276                 be_gas_emit_entity(entity);
1277                 be_emit_irprintf(",%u,%u\n", size, log2_floor(alignment));
1278                 be_emit_write_line();
1279                 return;
1280         case OBJECT_FILE_FORMAT_ELF:
1281                 be_emit_cstring("\t.local ");
1282                 be_gas_emit_entity(entity);
1283                 be_emit_cstring("\n");
1284                 be_emit_write_line();
1285                 be_emit_cstring("\t.comm ");
1286                 be_gas_emit_entity(entity);
1287                 be_emit_irprintf(",%u,%u\n", size, alignment);
1288                 be_emit_write_line();
1289                 return;
1290         case OBJECT_FILE_FORMAT_COFF:
1291                 be_emit_cstring("\t.lcomm ");
1292                 be_gas_emit_entity(entity);
1293                 be_emit_irprintf(",%u # %u\n", size, alignment);
1294                 be_emit_write_line();
1295                 return;
1296         }
1297         panic("invalid object file format");
1298 }
1299
1300 static void emit_indirect_symbol(const ir_entity *entity, be_gas_section_t section)
1301 {
1302         /* we can only do PIC code on macho so far */
1303         assert(be_gas_object_file_format == OBJECT_FILE_FORMAT_MACH_O);
1304
1305         be_gas_emit_entity(entity);
1306         be_emit_cstring(":\n");
1307         be_emit_write_line();
1308         be_emit_irprintf("\t.indirect_symbol %I\n", get_entity_ident(entity));
1309         be_emit_write_line();
1310         if (section == GAS_SECTION_PIC_TRAMPOLINES) {
1311                 be_emit_cstring("\thlt ; hlt ; hlt ; hlt ; hlt\n");
1312                 be_emit_write_line();
1313         } else {
1314                 assert(section == GAS_SECTION_PIC_SYMBOLS);
1315                 be_emit_cstring("\t.long 0\n");
1316                 be_emit_write_line();
1317         }
1318 }
1319
1320 char const *be_gas_get_private_prefix(void)
1321 {
1322         return be_gas_object_file_format == OBJECT_FILE_FORMAT_MACH_O ? "L" : ".L";
1323 }
1324
1325 void be_gas_emit_entity(const ir_entity *entity)
1326 {
1327         if (entity->type == get_code_type()) {
1328                 ir_label_t label = get_entity_label(entity);
1329                 be_emit_irprintf("%s_%lu", be_gas_get_private_prefix(), label);
1330                 return;
1331         }
1332
1333         if (get_entity_visibility(entity) == ir_visibility_private) {
1334                 be_emit_string(be_gas_get_private_prefix());
1335         }
1336         be_emit_irprintf("%I", get_entity_ld_ident(entity));
1337 }
1338
1339 void be_gas_emit_block_name(const ir_node *block)
1340 {
1341         ir_entity *entity = get_Block_entity(block);
1342         if (entity != NULL) {
1343                 be_gas_emit_entity(entity);
1344         } else {
1345                 void *nr_val = pmap_get(void, block_numbers, block);
1346                 int   nr;
1347                 if (nr_val == NULL) {
1348                         nr = next_block_nr++;
1349                         pmap_insert(block_numbers, block, INT_TO_PTR(nr+1));
1350                 } else {
1351                         nr = PTR_TO_INT(nr_val)-1;
1352                 }
1353                 be_emit_irprintf("%s%d", be_gas_get_private_prefix(), nr);
1354         }
1355 }
1356
1357 void be_gas_begin_block(const ir_node *block, bool needs_label)
1358 {
1359         if (needs_label) {
1360                 be_gas_emit_block_name(block);
1361                 be_emit_char(':');
1362         } else {
1363                 if (!be_options.verbose_asm)
1364                         return;
1365                 be_emit_cstring("/*");
1366                 be_gas_emit_block_name(block);
1367                 be_emit_cstring(":*/");
1368         }
1369
1370         if (be_options.verbose_asm) {
1371                 be_emit_pad_comment();
1372                 be_emit_irprintf("/* %+F preds:", block);
1373
1374                 int arity = get_irn_arity(block);
1375                 if (arity == 0) {
1376                         be_emit_cstring(" none");
1377                 } else {
1378                         int i;
1379                         for (i = 0; i < arity; ++i) {
1380                                 ir_node *predblock = get_Block_cfgpred_block(block, i);
1381                                 be_emit_char(' ');
1382                                 be_gas_emit_block_name(predblock);
1383                         }
1384                 }
1385                 be_emit_irprintf(", freq: %.3f */", get_block_execfreq(block));
1386         }
1387         be_emit_char('\n');
1388         be_emit_write_line();
1389 }
1390
1391 /**
1392  * Dump a global entity.
1393  *
1394  * @param env  the gas output environment
1395  * @param ent  the entity to be dumped
1396  */
1397 static void emit_global(be_gas_decl_env_t *env, const ir_entity *entity)
1398 {
1399         ir_type          *type       = get_entity_type(entity);
1400         ident            *ld_ident   = get_entity_ld_ident(entity);
1401         unsigned          alignment  = get_effective_entity_alignment(entity);
1402         be_gas_section_t  section    = determine_section(env, entity);
1403         ir_visibility     visibility = get_entity_visibility(entity);
1404         ir_linkage        linkage    = get_entity_linkage(entity);
1405
1406         /* Block labels are already emitted in the code. */
1407         if (type == get_code_type())
1408                 return;
1409
1410         /* we already emitted all methods with graphs in other functions like
1411          * be_gas_emit_function_prolog(). All others don't need to be emitted.
1412          */
1413         if (is_Method_type(type) && section != GAS_SECTION_PIC_TRAMPOLINES) {
1414                 return;
1415         }
1416
1417         be_dwarf_variable(entity);
1418
1419         if (section == GAS_SECTION_BSS) {
1420                 switch (visibility) {
1421                 case ir_visibility_local:
1422                 case ir_visibility_private:
1423                         emit_local_common(entity);
1424                         return;
1425                 case ir_visibility_external:
1426                         if (linkage & IR_LINKAGE_MERGE) {
1427                                 emit_common(entity);
1428                                 return;
1429                         }
1430                         break;
1431                 }
1432         }
1433
1434         emit_visibility(entity);
1435
1436         if (!is_po2(alignment))
1437                 panic("alignment not a power of 2");
1438
1439         emit_section(section, entity);
1440
1441         if (section == GAS_SECTION_PIC_TRAMPOLINES
1442                         || section == GAS_SECTION_PIC_SYMBOLS) {
1443                 emit_indirect_symbol(entity, section);
1444                 return;
1445         }
1446
1447         /* nothing left to do without an initializer */
1448         if (!entity_has_definition(entity))
1449                 return;
1450
1451         /* alignment */
1452         if (alignment > 1) {
1453                 emit_align(alignment);
1454         }
1455         if (be_gas_object_file_format == OBJECT_FILE_FORMAT_ELF
1456                         && be_gas_emit_types
1457                         && visibility != ir_visibility_private) {
1458                 be_emit_cstring("\t.type\t");
1459                 be_gas_emit_entity(entity);
1460                 be_emit_cstring(", ");
1461                 be_emit_char(be_gas_elf_type_char);
1462                 be_emit_cstring("object\n\t.size\t");\
1463                 be_gas_emit_entity(entity);
1464                 be_emit_irprintf(", %u\n", get_type_size_bytes(type));
1465         }
1466
1467         if (get_id_str(ld_ident)[0] != '\0') {
1468                 be_gas_emit_entity(entity);
1469                 be_emit_cstring(":\n");
1470                 be_emit_write_line();
1471         }
1472
1473         if (entity_is_null(entity)) {
1474                 /* we should use .space for stuff in the bss segment */
1475                 unsigned size = get_type_size_bytes(type);
1476                 if (size > 0) {
1477                         be_emit_irprintf("\t.space %u, 0\n", get_type_size_bytes(type));
1478                         be_emit_write_line();
1479                 }
1480         } else {
1481                 assert(entity->initializer != NULL);
1482                 emit_initializer(env, entity);
1483         }
1484 }
1485
1486 /**
1487  * Dumps declarations of global variables and the initialization code.
1488  *
1489  * @param gt                a global like type, either the global or the TLS one
1490  * @param env               an environment
1491  */
1492 static void be_gas_emit_globals(ir_type *gt, be_gas_decl_env_t *env)
1493 {
1494         size_t i, n = get_compound_n_members(gt);
1495
1496         for (i = 0; i < n; i++) {
1497                 ir_entity *ent = get_compound_member(gt, i);
1498                 emit_global(env, ent);
1499         }
1500 }
1501
1502 /* Generate all entities. */
1503 static void emit_global_decls(const be_main_env_t *main_env)
1504 {
1505         be_gas_decl_env_t env;
1506         memset(&env, 0, sizeof(env));
1507
1508         /* dump global type */
1509         env.main_env = main_env;
1510         env.section  = (be_gas_section_t) -1;
1511
1512         be_gas_emit_globals(get_glob_type(), &env);
1513         be_gas_emit_globals(get_tls_type(), &env);
1514         be_gas_emit_globals(get_segment_type(IR_SEGMENT_CONSTRUCTORS), &env);
1515         be_gas_emit_globals(get_segment_type(IR_SEGMENT_DESTRUCTORS), &env);
1516         be_gas_emit_globals(main_env->pic_symbols_type, &env);
1517         be_gas_emit_globals(main_env->pic_trampolines_type, &env);
1518
1519         /**
1520          * ".subsections_via_symbols marks object files which are OK to divide
1521          * their section contents into individual blocks".
1522          * From my understanding this means no label points in the middle of an
1523          * object which we want to address as a whole. Firm code should be fine
1524          * with this.
1525          */
1526         if (be_gas_object_file_format == OBJECT_FILE_FORMAT_MACH_O) {
1527                 be_emit_cstring("\t.subsections_via_symbols\n");
1528                 be_emit_write_line();
1529         }
1530 }
1531
1532 void be_emit_jump_table(const ir_node *node, const ir_switch_table *table,
1533                         ir_entity *entity, get_cfop_target_func get_cfop_target)
1534 {
1535         unsigned        n_outs    = arch_get_irn_n_outs(node);
1536         const ir_node **targets   = XMALLOCNZ(const ir_node*, n_outs);
1537         size_t          n_entries = ir_switch_table_get_n_entries(table);
1538         unsigned long   length    = 0;
1539         size_t          e;
1540         unsigned        i;
1541         const ir_node **labels;
1542
1543         /* go over all proj's and collect their jump targets */
1544         foreach_out_edge(node, edge) {
1545                 ir_node *proj   = get_edge_src_irn(edge);
1546                 long     pn     = get_Proj_proj(proj);
1547                 ir_node *target = get_cfop_target(proj);
1548                 assert(targets[pn] == NULL);
1549                 targets[pn] = target;
1550         }
1551
1552         /* go over table to determine max value (note that we normalized the
1553          * ranges so that the minimum is 0) */
1554         for (e = 0; e < n_entries; ++e) {
1555                 const ir_switch_table_entry *entry
1556                         = ir_switch_table_get_entry_const(table, e);
1557                 ir_tarval *max = entry->max;
1558                 unsigned long val;
1559                 if (entry->pn == 0)
1560                         continue;
1561                 if (!tarval_is_long(max))
1562                         panic("switch case overflow (%+F)", node);
1563                 val = (unsigned long) get_tarval_long(max);
1564                 if (val > length) {
1565                         length = val;
1566                 }
1567         }
1568
1569         /* the 16000 isn't a real limit of the architecture. But should protect us
1570          * from seamingly endless compiler runs */
1571         if (length > 16000) {
1572                 /* switch lowerer should have broken this monster to pieces... */
1573                 panic("too large switch encountered (%+F)", node);
1574         }
1575         ++length;
1576
1577         labels = XMALLOCNZ(const ir_node*, length);
1578         for (e = 0; e < n_entries; ++e) {
1579                 const ir_switch_table_entry *entry
1580                         = ir_switch_table_get_entry_const(table, e);
1581                 ir_tarval     *min    = entry->min;
1582                 ir_tarval     *max    = entry->max;
1583                 const ir_node *target = targets[entry->pn];
1584                 assert(entry->pn < (long)n_outs);
1585                 if (min == max) {
1586                         unsigned long val = (unsigned long)get_tarval_long(max);
1587                         labels[val] = target;
1588                 } else {
1589                         unsigned long min_val;
1590                         unsigned long max_val;
1591                         unsigned long i;
1592                         if (!tarval_is_long(min))
1593                                 panic("switch case overflow (%+F)", node);
1594                         min_val = (unsigned long)get_tarval_long(min);
1595                         max_val = (unsigned long)get_tarval_long(max);
1596                         assert(min_val <= max_val);
1597                         for (i = min_val; i <= max_val; ++i) {
1598                                 labels[i] = target;
1599                         }
1600                 }
1601         }
1602
1603         /* emit table */
1604         if (entity != NULL) {
1605                 be_gas_emit_switch_section(GAS_SECTION_RODATA);
1606                 be_emit_cstring("\t.align 4\n");
1607                 be_gas_emit_entity(entity);
1608                 be_emit_cstring(":\n");
1609         }
1610
1611         for (i = 0; i < length; ++i) {
1612                 const ir_node *block = labels[i];
1613                 if (block == NULL)
1614                         block = targets[0];
1615                 be_emit_cstring("\t.long ");
1616                 be_gas_emit_block_name(block);
1617                 be_emit_char('\n');
1618                 be_emit_write_line();
1619         }
1620
1621         if (entity != NULL)
1622                 be_gas_emit_switch_section(GAS_SECTION_TEXT);
1623
1624         xfree(labels);
1625         xfree(targets);
1626 }
1627
1628 static void emit_global_asms(void)
1629 {
1630         size_t n = get_irp_n_asms();
1631         size_t i;
1632
1633         be_gas_emit_switch_section(GAS_SECTION_TEXT);
1634         for (i = 0; i < n; ++i) {
1635                 ident *asmtext = get_irp_asm(i);
1636
1637                 be_emit_cstring("#APP\n");
1638                 be_emit_write_line();
1639                 be_emit_irprintf("%I\n", asmtext);
1640                 be_emit_write_line();
1641                 be_emit_cstring("#NO_APP\n");
1642                 be_emit_write_line();
1643         }
1644 }
1645
1646 void be_gas_begin_compilation_unit(const be_main_env_t *env)
1647 {
1648         be_dwarf_open();
1649         be_dwarf_unit_begin(env->cup_name);
1650
1651         block_numbers = pmap_create();
1652         next_block_nr = 0;
1653
1654         emit_global_asms();
1655 }
1656
1657 void be_gas_end_compilation_unit(const be_main_env_t *env)
1658 {
1659         emit_global_decls(env);
1660
1661         pmap_destroy(block_numbers);
1662
1663         be_dwarf_unit_end();
1664         be_dwarf_close();
1665 }