From Craig Silverstein: add tls.h, use it in i386.cc.
[deliverable/binutils-gdb.git] / gold / output.cc
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1// output.cc -- manage the output file for gold
2
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3// Copyright 2006, 2007 Free Software Foundation, Inc.
4// Written by Ian Lance Taylor <iant@google.com>.
5
6// This file is part of gold.
7
8// This program is free software; you can redistribute it and/or modify
9// it under the terms of the GNU General Public License as published by
10// the Free Software Foundation; either version 3 of the License, or
11// (at your option) any later version.
12
13// This program is distributed in the hope that it will be useful,
14// but WITHOUT ANY WARRANTY; without even the implied warranty of
15// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16// GNU General Public License for more details.
17
18// You should have received a copy of the GNU General Public License
19// along with this program; if not, write to the Free Software
20// Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
21// MA 02110-1301, USA.
22
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23#include "gold.h"
24
25#include <cstdlib>
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26#include <cerrno>
27#include <fcntl.h>
28#include <unistd.h>
29#include <sys/mman.h>
75f65a3e 30#include <algorithm>
a2fb1b05 31
7e1edb90 32#include "parameters.h"
a2fb1b05 33#include "object.h"
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34#include "symtab.h"
35#include "reloc.h"
b8e6aad9 36#include "merge.h"
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37#include "output.h"
38
39namespace gold
40{
41
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42// Output_data variables.
43
44bool Output_data::sizes_are_fixed;
45
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46// Output_data methods.
47
48Output_data::~Output_data()
49{
50}
51
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52// Set the address and offset.
53
54void
55Output_data::set_address(uint64_t addr, off_t off)
56{
57 this->address_ = addr;
58 this->offset_ = off;
59
60 // Let the child class know.
61 this->do_set_address(addr, off);
62}
63
64// Return the default alignment for a size--32 or 64.
65
66uint64_t
67Output_data::default_alignment(int size)
68{
69 if (size == 32)
70 return 4;
71 else if (size == 64)
72 return 8;
73 else
a3ad94ed 74 gold_unreachable();
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75}
76
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77// Output_section_header methods. This currently assumes that the
78// segment and section lists are complete at construction time.
79
80Output_section_headers::Output_section_headers(
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81 const Layout* layout,
82 const Layout::Segment_list* segment_list,
83 const Layout::Section_list* unattached_section_list,
61ba1cf9 84 const Stringpool* secnamepool)
9025d29d 85 : layout_(layout),
75f65a3e 86 segment_list_(segment_list),
a3ad94ed 87 unattached_section_list_(unattached_section_list),
61ba1cf9 88 secnamepool_(secnamepool)
75f65a3e 89{
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90 // Count all the sections. Start with 1 for the null section.
91 off_t count = 1;
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92 for (Layout::Segment_list::const_iterator p = segment_list->begin();
93 p != segment_list->end();
75f65a3e 94 ++p)
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95 if ((*p)->type() == elfcpp::PT_LOAD)
96 count += (*p)->output_section_count();
16649710 97 count += unattached_section_list->size();
75f65a3e 98
9025d29d 99 const int size = parameters->get_size();
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100 int shdr_size;
101 if (size == 32)
102 shdr_size = elfcpp::Elf_sizes<32>::shdr_size;
103 else if (size == 64)
104 shdr_size = elfcpp::Elf_sizes<64>::shdr_size;
105 else
a3ad94ed 106 gold_unreachable();
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107
108 this->set_data_size(count * shdr_size);
109}
110
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111// Write out the section headers.
112
75f65a3e 113void
61ba1cf9 114Output_section_headers::do_write(Output_file* of)
a2fb1b05 115{
9025d29d 116 if (parameters->get_size() == 32)
61ba1cf9 117 {
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118 if (parameters->is_big_endian())
119 {
120#ifdef HAVE_TARGET_32_BIG
121 this->do_sized_write<32, true>(of);
122#else
123 gold_unreachable();
124#endif
125 }
61ba1cf9 126 else
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127 {
128#ifdef HAVE_TARGET_32_LITTLE
129 this->do_sized_write<32, false>(of);
130#else
131 gold_unreachable();
132#endif
133 }
61ba1cf9 134 }
9025d29d 135 else if (parameters->get_size() == 64)
61ba1cf9 136 {
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137 if (parameters->is_big_endian())
138 {
139#ifdef HAVE_TARGET_64_BIG
140 this->do_sized_write<64, true>(of);
141#else
142 gold_unreachable();
143#endif
144 }
61ba1cf9 145 else
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146 {
147#ifdef HAVE_TARGET_64_LITTLE
148 this->do_sized_write<64, false>(of);
149#else
150 gold_unreachable();
151#endif
152 }
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153 }
154 else
a3ad94ed 155 gold_unreachable();
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156}
157
158template<int size, bool big_endian>
159void
160Output_section_headers::do_sized_write(Output_file* of)
161{
162 off_t all_shdrs_size = this->data_size();
163 unsigned char* view = of->get_output_view(this->offset(), all_shdrs_size);
164
165 const int shdr_size = elfcpp::Elf_sizes<size>::shdr_size;
166 unsigned char* v = view;
167
168 {
169 typename elfcpp::Shdr_write<size, big_endian> oshdr(v);
170 oshdr.put_sh_name(0);
171 oshdr.put_sh_type(elfcpp::SHT_NULL);
172 oshdr.put_sh_flags(0);
173 oshdr.put_sh_addr(0);
174 oshdr.put_sh_offset(0);
175 oshdr.put_sh_size(0);
176 oshdr.put_sh_link(0);
177 oshdr.put_sh_info(0);
178 oshdr.put_sh_addralign(0);
179 oshdr.put_sh_entsize(0);
180 }
181
182 v += shdr_size;
183
ead1e424 184 unsigned shndx = 1;
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185 for (Layout::Segment_list::const_iterator p = this->segment_list_->begin();
186 p != this->segment_list_->end();
61ba1cf9 187 ++p)
593f47df 188 v = (*p)->write_section_headers SELECT_SIZE_ENDIAN_NAME(size, big_endian) (
16649710 189 this->layout_, this->secnamepool_, v, &shndx
ead1e424 190 SELECT_SIZE_ENDIAN(size, big_endian));
a3ad94ed 191 for (Layout::Section_list::const_iterator p =
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192 this->unattached_section_list_->begin();
193 p != this->unattached_section_list_->end();
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194 ++p)
195 {
a3ad94ed 196 gold_assert(shndx == (*p)->out_shndx());
61ba1cf9 197 elfcpp::Shdr_write<size, big_endian> oshdr(v);
16649710 198 (*p)->write_header(this->layout_, this->secnamepool_, &oshdr);
61ba1cf9 199 v += shdr_size;
ead1e424 200 ++shndx;
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201 }
202
203 of->write_output_view(this->offset(), all_shdrs_size, view);
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204}
205
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206// Output_segment_header methods.
207
61ba1cf9 208Output_segment_headers::Output_segment_headers(
61ba1cf9 209 const Layout::Segment_list& segment_list)
9025d29d 210 : segment_list_(segment_list)
61ba1cf9 211{
9025d29d 212 const int size = parameters->get_size();
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213 int phdr_size;
214 if (size == 32)
215 phdr_size = elfcpp::Elf_sizes<32>::phdr_size;
216 else if (size == 64)
217 phdr_size = elfcpp::Elf_sizes<64>::phdr_size;
218 else
a3ad94ed 219 gold_unreachable();
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220
221 this->set_data_size(segment_list.size() * phdr_size);
222}
223
54dc6425 224void
61ba1cf9 225Output_segment_headers::do_write(Output_file* of)
75f65a3e 226{
9025d29d 227 if (parameters->get_size() == 32)
61ba1cf9 228 {
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229 if (parameters->is_big_endian())
230 {
231#ifdef HAVE_TARGET_32_BIG
232 this->do_sized_write<32, true>(of);
233#else
234 gold_unreachable();
235#endif
236 }
61ba1cf9 237 else
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238 {
239#ifdef HAVE_TARGET_32_LITTLE
61ba1cf9 240 this->do_sized_write<32, false>(of);
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241#else
242 gold_unreachable();
243#endif
244 }
61ba1cf9 245 }
9025d29d 246 else if (parameters->get_size() == 64)
61ba1cf9 247 {
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248 if (parameters->is_big_endian())
249 {
250#ifdef HAVE_TARGET_64_BIG
251 this->do_sized_write<64, true>(of);
252#else
253 gold_unreachable();
254#endif
255 }
61ba1cf9 256 else
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257 {
258#ifdef HAVE_TARGET_64_LITTLE
259 this->do_sized_write<64, false>(of);
260#else
261 gold_unreachable();
262#endif
263 }
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264 }
265 else
a3ad94ed 266 gold_unreachable();
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267}
268
269template<int size, bool big_endian>
270void
271Output_segment_headers::do_sized_write(Output_file* of)
272{
273 const int phdr_size = elfcpp::Elf_sizes<size>::phdr_size;
274 off_t all_phdrs_size = this->segment_list_.size() * phdr_size;
275 unsigned char* view = of->get_output_view(this->offset(),
276 all_phdrs_size);
277 unsigned char* v = view;
278 for (Layout::Segment_list::const_iterator p = this->segment_list_.begin();
279 p != this->segment_list_.end();
280 ++p)
281 {
282 elfcpp::Phdr_write<size, big_endian> ophdr(v);
283 (*p)->write_header(&ophdr);
284 v += phdr_size;
285 }
286
287 of->write_output_view(this->offset(), all_phdrs_size, view);
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288}
289
290// Output_file_header methods.
291
9025d29d 292Output_file_header::Output_file_header(const Target* target,
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293 const Symbol_table* symtab,
294 const Output_segment_headers* osh)
9025d29d 295 : target_(target),
75f65a3e 296 symtab_(symtab),
61ba1cf9 297 segment_header_(osh),
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298 section_header_(NULL),
299 shstrtab_(NULL)
300{
9025d29d 301 const int size = parameters->get_size();
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302 int ehdr_size;
303 if (size == 32)
304 ehdr_size = elfcpp::Elf_sizes<32>::ehdr_size;
305 else if (size == 64)
306 ehdr_size = elfcpp::Elf_sizes<64>::ehdr_size;
307 else
a3ad94ed 308 gold_unreachable();
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309
310 this->set_data_size(ehdr_size);
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311}
312
313// Set the section table information for a file header.
314
315void
316Output_file_header::set_section_info(const Output_section_headers* shdrs,
317 const Output_section* shstrtab)
318{
319 this->section_header_ = shdrs;
320 this->shstrtab_ = shstrtab;
321}
322
323// Write out the file header.
324
325void
61ba1cf9 326Output_file_header::do_write(Output_file* of)
54dc6425 327{
9025d29d 328 if (parameters->get_size() == 32)
61ba1cf9 329 {
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330 if (parameters->is_big_endian())
331 {
332#ifdef HAVE_TARGET_32_BIG
333 this->do_sized_write<32, true>(of);
334#else
335 gold_unreachable();
336#endif
337 }
61ba1cf9 338 else
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339 {
340#ifdef HAVE_TARGET_32_LITTLE
341 this->do_sized_write<32, false>(of);
342#else
343 gold_unreachable();
344#endif
345 }
61ba1cf9 346 }
9025d29d 347 else if (parameters->get_size() == 64)
61ba1cf9 348 {
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349 if (parameters->is_big_endian())
350 {
351#ifdef HAVE_TARGET_64_BIG
352 this->do_sized_write<64, true>(of);
353#else
354 gold_unreachable();
355#endif
356 }
61ba1cf9 357 else
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358 {
359#ifdef HAVE_TARGET_64_LITTLE
360 this->do_sized_write<64, false>(of);
361#else
362 gold_unreachable();
363#endif
364 }
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365 }
366 else
a3ad94ed 367 gold_unreachable();
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368}
369
370// Write out the file header with appropriate size and endianess.
371
372template<int size, bool big_endian>
373void
374Output_file_header::do_sized_write(Output_file* of)
375{
a3ad94ed 376 gold_assert(this->offset() == 0);
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377
378 int ehdr_size = elfcpp::Elf_sizes<size>::ehdr_size;
379 unsigned char* view = of->get_output_view(0, ehdr_size);
380 elfcpp::Ehdr_write<size, big_endian> oehdr(view);
381
382 unsigned char e_ident[elfcpp::EI_NIDENT];
383 memset(e_ident, 0, elfcpp::EI_NIDENT);
384 e_ident[elfcpp::EI_MAG0] = elfcpp::ELFMAG0;
385 e_ident[elfcpp::EI_MAG1] = elfcpp::ELFMAG1;
386 e_ident[elfcpp::EI_MAG2] = elfcpp::ELFMAG2;
387 e_ident[elfcpp::EI_MAG3] = elfcpp::ELFMAG3;
388 if (size == 32)
389 e_ident[elfcpp::EI_CLASS] = elfcpp::ELFCLASS32;
390 else if (size == 64)
391 e_ident[elfcpp::EI_CLASS] = elfcpp::ELFCLASS64;
392 else
a3ad94ed 393 gold_unreachable();
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394 e_ident[elfcpp::EI_DATA] = (big_endian
395 ? elfcpp::ELFDATA2MSB
396 : elfcpp::ELFDATA2LSB);
397 e_ident[elfcpp::EI_VERSION] = elfcpp::EV_CURRENT;
398 // FIXME: Some targets may need to set EI_OSABI and EI_ABIVERSION.
399 oehdr.put_e_ident(e_ident);
400
401 elfcpp::ET e_type;
402 // FIXME: ET_DYN.
7e1edb90 403 if (parameters->output_is_object())
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404 e_type = elfcpp::ET_REL;
405 else
406 e_type = elfcpp::ET_EXEC;
407 oehdr.put_e_type(e_type);
408
409 oehdr.put_e_machine(this->target_->machine_code());
410 oehdr.put_e_version(elfcpp::EV_CURRENT);
411
ead1e424 412 // FIXME: Need to support -e, and target specific entry symbol.
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413 Symbol* sym = this->symtab_->lookup("_start");
414 typename Sized_symbol<size>::Value_type v;
415 if (sym == NULL)
416 v = 0;
417 else
418 {
419 Sized_symbol<size>* ssym;
593f47df 420 ssym = this->symtab_->get_sized_symbol SELECT_SIZE_NAME(size) (
5482377d 421 sym SELECT_SIZE(size));
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422 v = ssym->value();
423 }
424 oehdr.put_e_entry(v);
425
426 oehdr.put_e_phoff(this->segment_header_->offset());
427 oehdr.put_e_shoff(this->section_header_->offset());
428
429 // FIXME: The target needs to set the flags.
430 oehdr.put_e_flags(0);
431
432 oehdr.put_e_ehsize(elfcpp::Elf_sizes<size>::ehdr_size);
433 oehdr.put_e_phentsize(elfcpp::Elf_sizes<size>::phdr_size);
434 oehdr.put_e_phnum(this->segment_header_->data_size()
435 / elfcpp::Elf_sizes<size>::phdr_size);
436 oehdr.put_e_shentsize(elfcpp::Elf_sizes<size>::shdr_size);
437 oehdr.put_e_shnum(this->section_header_->data_size()
438 / elfcpp::Elf_sizes<size>::shdr_size);
ead1e424 439 oehdr.put_e_shstrndx(this->shstrtab_->out_shndx());
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440
441 of->write_output_view(0, ehdr_size, view);
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442}
443
dbe717ef
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444// Output_data_const methods.
445
446void
a3ad94ed 447Output_data_const::do_write(Output_file* of)
dbe717ef 448{
a3ad94ed
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449 of->write(this->offset(), this->data_.data(), this->data_.size());
450}
451
452// Output_data_const_buffer methods.
453
454void
455Output_data_const_buffer::do_write(Output_file* of)
456{
457 of->write(this->offset(), this->p_, this->data_size());
dbe717ef
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458}
459
460// Output_section_data methods.
461
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462// Record the output section, and set the entry size and such.
463
464void
465Output_section_data::set_output_section(Output_section* os)
466{
467 gold_assert(this->output_section_ == NULL);
468 this->output_section_ = os;
469 this->do_adjust_output_section(os);
470}
471
472// Return the section index of the output section.
473
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474unsigned int
475Output_section_data::do_out_shndx() const
476{
a3ad94ed 477 gold_assert(this->output_section_ != NULL);
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478 return this->output_section_->out_shndx();
479}
480
a3ad94ed
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481// Output_data_strtab methods.
482
483// Set the address. We don't actually care about the address, but we
484// do set our final size.
485
486void
487Output_data_strtab::do_set_address(uint64_t, off_t)
488{
489 this->strtab_->set_string_offsets();
490 this->set_data_size(this->strtab_->get_strtab_size());
491}
492
493// Write out a string table.
494
495void
496Output_data_strtab::do_write(Output_file* of)
497{
498 this->strtab_->write(of, this->offset());
499}
500
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501// Output_reloc methods.
502
503// Get the symbol index of a relocation.
504
505template<bool dynamic, int size, bool big_endian>
506unsigned int
507Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::get_symbol_index()
508 const
509{
510 unsigned int index;
511 switch (this->local_sym_index_)
512 {
513 case INVALID_CODE:
a3ad94ed 514 gold_unreachable();
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515
516 case GSYM_CODE:
5a6f7e2d 517 if (this->u1_.gsym == NULL)
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518 index = 0;
519 else if (dynamic)
5a6f7e2d 520 index = this->u1_.gsym->dynsym_index();
c06b7b0b 521 else
5a6f7e2d 522 index = this->u1_.gsym->symtab_index();
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523 break;
524
525 case SECTION_CODE:
526 if (dynamic)
5a6f7e2d 527 index = this->u1_.os->dynsym_index();
c06b7b0b 528 else
5a6f7e2d 529 index = this->u1_.os->symtab_index();
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530 break;
531
532 default:
533 if (dynamic)
534 {
535 // FIXME: It seems that some targets may need to generate
536 // dynamic relocations against local symbols for some
537 // reasons. This will have to be addressed at some point.
a3ad94ed 538 gold_unreachable();
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539 }
540 else
5a6f7e2d 541 index = this->u1_.relobj->symtab_index(this->local_sym_index_);
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542 break;
543 }
a3ad94ed 544 gold_assert(index != -1U);
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545 return index;
546}
547
548// Write out the offset and info fields of a Rel or Rela relocation
549// entry.
550
551template<bool dynamic, int size, bool big_endian>
552template<typename Write_rel>
553void
554Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::write_rel(
555 Write_rel* wr) const
556{
a3ad94ed 557 Address address = this->address_;
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ILT
558 if (this->shndx_ != INVALID_CODE)
559 {
560 off_t off;
561 Output_section* os = this->u2_.relobj->output_section(this->shndx_,
562 &off);
563 gold_assert(os != NULL);
564 address += os->address() + off;
565 }
566 else if (this->u2_.od != NULL)
567 address += this->u2_.od->address();
a3ad94ed 568 wr->put_r_offset(address);
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569 wr->put_r_info(elfcpp::elf_r_info<size>(this->get_symbol_index(),
570 this->type_));
571}
572
573// Write out a Rel relocation.
574
575template<bool dynamic, int size, bool big_endian>
576void
577Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::write(
578 unsigned char* pov) const
579{
580 elfcpp::Rel_write<size, big_endian> orel(pov);
581 this->write_rel(&orel);
582}
583
584// Write out a Rela relocation.
585
586template<bool dynamic, int size, bool big_endian>
587void
588Output_reloc<elfcpp::SHT_RELA, dynamic, size, big_endian>::write(
589 unsigned char* pov) const
590{
591 elfcpp::Rela_write<size, big_endian> orel(pov);
592 this->rel_.write_rel(&orel);
593 orel.put_r_addend(this->addend_);
594}
595
596// Output_data_reloc_base methods.
597
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598// Adjust the output section.
599
600template<int sh_type, bool dynamic, int size, bool big_endian>
601void
602Output_data_reloc_base<sh_type, dynamic, size, big_endian>
603 ::do_adjust_output_section(Output_section* os)
604{
605 if (sh_type == elfcpp::SHT_REL)
606 os->set_entsize(elfcpp::Elf_sizes<size>::rel_size);
607 else if (sh_type == elfcpp::SHT_RELA)
608 os->set_entsize(elfcpp::Elf_sizes<size>::rela_size);
609 else
610 gold_unreachable();
611 if (dynamic)
612 os->set_should_link_to_dynsym();
613 else
614 os->set_should_link_to_symtab();
615}
616
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617// Write out relocation data.
618
619template<int sh_type, bool dynamic, int size, bool big_endian>
620void
621Output_data_reloc_base<sh_type, dynamic, size, big_endian>::do_write(
622 Output_file* of)
623{
624 const off_t off = this->offset();
625 const off_t oview_size = this->data_size();
626 unsigned char* const oview = of->get_output_view(off, oview_size);
627
628 unsigned char* pov = oview;
629 for (typename Relocs::const_iterator p = this->relocs_.begin();
630 p != this->relocs_.end();
631 ++p)
632 {
633 p->write(pov);
634 pov += reloc_size;
635 }
636
a3ad94ed 637 gold_assert(pov - oview == oview_size);
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ILT
638
639 of->write_output_view(off, oview_size, oview);
640
641 // We no longer need the relocation entries.
642 this->relocs_.clear();
643}
644
dbe717ef 645// Output_data_got::Got_entry methods.
ead1e424
ILT
646
647// Write out the entry.
648
649template<int size, bool big_endian>
650void
7e1edb90 651Output_data_got<size, big_endian>::Got_entry::write(unsigned char* pov) const
ead1e424
ILT
652{
653 Valtype val = 0;
654
655 switch (this->local_sym_index_)
656 {
657 case GSYM_CODE:
658 {
659 Symbol* gsym = this->u_.gsym;
660
661 // If the symbol is resolved locally, we need to write out its
662 // value. Otherwise we just write zero. The target code is
663 // responsible for creating a relocation entry to fill in the
664 // value at runtime.
7e1edb90 665 if (gsym->final_value_is_known())
ead1e424
ILT
666 {
667 Sized_symbol<size>* sgsym;
668 // This cast is a bit ugly. We don't want to put a
669 // virtual method in Symbol, because we want Symbol to be
670 // as small as possible.
671 sgsym = static_cast<Sized_symbol<size>*>(gsym);
672 val = sgsym->value();
673 }
674 }
675 break;
676
677 case CONSTANT_CODE:
678 val = this->u_.constant;
679 break;
680
681 default:
a3ad94ed 682 gold_unreachable();
ead1e424
ILT
683 }
684
a3ad94ed 685 elfcpp::Swap<size, big_endian>::writeval(pov, val);
ead1e424
ILT
686}
687
dbe717ef 688// Output_data_got methods.
ead1e424 689
dbe717ef
ILT
690// Add an entry for a global symbol to the GOT. This returns true if
691// this is a new GOT entry, false if the symbol already had a GOT
692// entry.
693
694template<int size, bool big_endian>
695bool
696Output_data_got<size, big_endian>::add_global(Symbol* gsym)
ead1e424 697{
dbe717ef
ILT
698 if (gsym->has_got_offset())
699 return false;
ead1e424 700
dbe717ef
ILT
701 this->entries_.push_back(Got_entry(gsym));
702 this->set_got_size();
703 gsym->set_got_offset(this->last_got_offset());
704 return true;
705}
ead1e424
ILT
706
707// Write out the GOT.
708
709template<int size, bool big_endian>
710void
dbe717ef 711Output_data_got<size, big_endian>::do_write(Output_file* of)
ead1e424
ILT
712{
713 const int add = size / 8;
714
715 const off_t off = this->offset();
c06b7b0b 716 const off_t oview_size = this->data_size();
ead1e424
ILT
717 unsigned char* const oview = of->get_output_view(off, oview_size);
718
719 unsigned char* pov = oview;
720 for (typename Got_entries::const_iterator p = this->entries_.begin();
721 p != this->entries_.end();
722 ++p)
723 {
7e1edb90 724 p->write(pov);
ead1e424
ILT
725 pov += add;
726 }
727
a3ad94ed 728 gold_assert(pov - oview == oview_size);
c06b7b0b 729
ead1e424
ILT
730 of->write_output_view(off, oview_size, oview);
731
732 // We no longer need the GOT entries.
733 this->entries_.clear();
734}
735
a3ad94ed
ILT
736// Output_data_dynamic::Dynamic_entry methods.
737
738// Write out the entry.
739
740template<int size, bool big_endian>
741void
742Output_data_dynamic::Dynamic_entry::write(
743 unsigned char* pov,
1ddbd1e6
ILT
744 const Stringpool* pool
745 ACCEPT_SIZE_ENDIAN) const
a3ad94ed
ILT
746{
747 typename elfcpp::Elf_types<size>::Elf_WXword val;
748 switch (this->classification_)
749 {
750 case DYNAMIC_NUMBER:
751 val = this->u_.val;
752 break;
753
754 case DYNAMIC_SECTION_ADDRESS:
16649710 755 val = this->u_.od->address();
a3ad94ed
ILT
756 break;
757
758 case DYNAMIC_SECTION_SIZE:
16649710 759 val = this->u_.od->data_size();
a3ad94ed
ILT
760 break;
761
762 case DYNAMIC_SYMBOL:
763 {
16649710
ILT
764 const Sized_symbol<size>* s =
765 static_cast<const Sized_symbol<size>*>(this->u_.sym);
a3ad94ed
ILT
766 val = s->value();
767 }
768 break;
769
770 case DYNAMIC_STRING:
771 val = pool->get_offset(this->u_.str);
772 break;
773
774 default:
775 gold_unreachable();
776 }
777
778 elfcpp::Dyn_write<size, big_endian> dw(pov);
779 dw.put_d_tag(this->tag_);
780 dw.put_d_val(val);
781}
782
783// Output_data_dynamic methods.
784
16649710
ILT
785// Adjust the output section to set the entry size.
786
787void
788Output_data_dynamic::do_adjust_output_section(Output_section* os)
789{
9025d29d 790 if (parameters->get_size() == 32)
16649710 791 os->set_entsize(elfcpp::Elf_sizes<32>::dyn_size);
9025d29d 792 else if (parameters->get_size() == 64)
16649710
ILT
793 os->set_entsize(elfcpp::Elf_sizes<64>::dyn_size);
794 else
795 gold_unreachable();
796}
797
a3ad94ed
ILT
798// Set the final data size.
799
800void
801Output_data_dynamic::do_set_address(uint64_t, off_t)
802{
803 // Add the terminating entry.
804 this->add_constant(elfcpp::DT_NULL, 0);
805
806 int dyn_size;
9025d29d 807 if (parameters->get_size() == 32)
a3ad94ed 808 dyn_size = elfcpp::Elf_sizes<32>::dyn_size;
9025d29d 809 else if (parameters->get_size() == 64)
a3ad94ed
ILT
810 dyn_size = elfcpp::Elf_sizes<64>::dyn_size;
811 else
812 gold_unreachable();
813 this->set_data_size(this->entries_.size() * dyn_size);
814}
815
816// Write out the dynamic entries.
817
818void
819Output_data_dynamic::do_write(Output_file* of)
820{
9025d29d 821 if (parameters->get_size() == 32)
a3ad94ed 822 {
9025d29d
ILT
823 if (parameters->is_big_endian())
824 {
825#ifdef HAVE_TARGET_32_BIG
826 this->sized_write<32, true>(of);
827#else
828 gold_unreachable();
829#endif
830 }
a3ad94ed 831 else
9025d29d
ILT
832 {
833#ifdef HAVE_TARGET_32_LITTLE
834 this->sized_write<32, false>(of);
835#else
836 gold_unreachable();
837#endif
838 }
a3ad94ed 839 }
9025d29d 840 else if (parameters->get_size() == 64)
a3ad94ed 841 {
9025d29d
ILT
842 if (parameters->is_big_endian())
843 {
844#ifdef HAVE_TARGET_64_BIG
845 this->sized_write<64, true>(of);
846#else
847 gold_unreachable();
848#endif
849 }
a3ad94ed 850 else
9025d29d
ILT
851 {
852#ifdef HAVE_TARGET_64_LITTLE
853 this->sized_write<64, false>(of);
854#else
855 gold_unreachable();
856#endif
857 }
a3ad94ed
ILT
858 }
859 else
860 gold_unreachable();
861}
862
863template<int size, bool big_endian>
864void
865Output_data_dynamic::sized_write(Output_file* of)
866{
867 const int dyn_size = elfcpp::Elf_sizes<size>::dyn_size;
868
869 const off_t offset = this->offset();
870 const off_t oview_size = this->data_size();
871 unsigned char* const oview = of->get_output_view(offset, oview_size);
872
873 unsigned char* pov = oview;
874 for (typename Dynamic_entries::const_iterator p = this->entries_.begin();
875 p != this->entries_.end();
876 ++p)
877 {
1ddbd1e6
ILT
878 p->write SELECT_SIZE_ENDIAN_NAME(size, big_endian)(
879 pov, this->pool_ SELECT_SIZE_ENDIAN(size, big_endian));
a3ad94ed
ILT
880 pov += dyn_size;
881 }
882
883 gold_assert(pov - oview == oview_size);
884
885 of->write_output_view(offset, oview_size, oview);
886
887 // We no longer need the dynamic entries.
888 this->entries_.clear();
889}
890
ead1e424
ILT
891// Output_section::Input_section methods.
892
893// Return the data size. For an input section we store the size here.
894// For an Output_section_data, we have to ask it for the size.
895
896off_t
897Output_section::Input_section::data_size() const
898{
899 if (this->is_input_section())
b8e6aad9 900 return this->u1_.data_size;
ead1e424 901 else
b8e6aad9 902 return this->u2_.posd->data_size();
ead1e424
ILT
903}
904
905// Set the address and file offset.
906
907void
908Output_section::Input_section::set_address(uint64_t addr, off_t off,
909 off_t secoff)
910{
911 if (this->is_input_section())
b8e6aad9 912 this->u2_.object->set_section_offset(this->shndx_, off - secoff);
ead1e424 913 else
b8e6aad9
ILT
914 this->u2_.posd->set_address(addr, off);
915}
916
917// Try to turn an input address into an output address.
918
919bool
920Output_section::Input_section::output_address(const Relobj* object,
921 unsigned int shndx,
922 off_t offset,
923 uint64_t output_section_address,
924 uint64_t *poutput) const
925{
926 if (!this->is_input_section())
927 return this->u2_.posd->output_address(object, shndx, offset,
928 output_section_address, poutput);
929 else
930 {
9d7094e8
ILT
931 if (this->shndx_ != shndx
932 || this->u2_.object != object)
b8e6aad9
ILT
933 return false;
934 off_t output_offset;
935 Output_section* os = object->output_section(shndx, &output_offset);
936 gold_assert(os != NULL);
937 *poutput = output_section_address + output_offset + offset;
938 return true;
939 }
ead1e424
ILT
940}
941
942// Write out the data. We don't have to do anything for an input
943// section--they are handled via Object::relocate--but this is where
944// we write out the data for an Output_section_data.
945
946void
947Output_section::Input_section::write(Output_file* of)
948{
949 if (!this->is_input_section())
b8e6aad9 950 this->u2_.posd->write(of);
ead1e424
ILT
951}
952
a2fb1b05
ILT
953// Output_section methods.
954
955// Construct an Output_section. NAME will point into a Stringpool.
956
957Output_section::Output_section(const char* name, elfcpp::Elf_Word type,
b8e6aad9 958 elfcpp::Elf_Xword flags)
a2fb1b05 959 : name_(name),
a2fb1b05
ILT
960 addralign_(0),
961 entsize_(0),
16649710 962 link_section_(NULL),
a2fb1b05 963 link_(0),
16649710 964 info_section_(NULL),
a2fb1b05
ILT
965 info_(0),
966 type_(type),
61ba1cf9 967 flags_(flags),
ead1e424 968 out_shndx_(0),
c06b7b0b
ILT
969 symtab_index_(0),
970 dynsym_index_(0),
ead1e424
ILT
971 input_sections_(),
972 first_input_offset_(0),
c51e6221 973 fills_(),
a3ad94ed 974 needs_symtab_index_(false),
16649710
ILT
975 needs_dynsym_index_(false),
976 should_link_to_symtab_(false),
977 should_link_to_dynsym_(false)
a2fb1b05
ILT
978{
979}
980
54dc6425
ILT
981Output_section::~Output_section()
982{
983}
984
16649710
ILT
985// Set the entry size.
986
987void
988Output_section::set_entsize(uint64_t v)
989{
990 if (this->entsize_ == 0)
991 this->entsize_ = v;
992 else
993 gold_assert(this->entsize_ == v);
994}
995
ead1e424
ILT
996// Add the input section SHNDX, with header SHDR, named SECNAME, in
997// OBJECT, to the Output_section. Return the offset of the input
998// section within the output section. We don't always keep track of
a2fb1b05
ILT
999// input sections for an Output_section. Instead, each Object keeps
1000// track of the Output_section for each of its input sections.
1001
1002template<int size, bool big_endian>
1003off_t
f6ce93d6 1004Output_section::add_input_section(Relobj* object, unsigned int shndx,
ead1e424 1005 const char* secname,
a2fb1b05
ILT
1006 const elfcpp::Shdr<size, big_endian>& shdr)
1007{
1008 elfcpp::Elf_Xword addralign = shdr.get_sh_addralign();
1009 if ((addralign & (addralign - 1)) != 0)
1010 {
1011 fprintf(stderr, _("%s: %s: invalid alignment %lu for section \"%s\"\n"),
1012 program_name, object->name().c_str(),
1013 static_cast<unsigned long>(addralign), secname);
1014 gold_exit(false);
1015 }
a2fb1b05
ILT
1016
1017 if (addralign > this->addralign_)
1018 this->addralign_ = addralign;
1019
b8e6aad9
ILT
1020 // If this is a SHF_MERGE section, we pass all the input sections to
1021 // a Output_data_merge.
1022 if ((shdr.get_sh_flags() & elfcpp::SHF_MERGE) != 0)
1023 {
1024 if (this->add_merge_input_section(object, shndx, shdr.get_sh_flags(),
1025 shdr.get_sh_entsize(),
1026 addralign))
1027 {
1028 // Tell the relocation routines that they need to call the
1029 // output_address method to determine the final address.
1030 return -1;
1031 }
1032 }
1033
c51e6221
ILT
1034 off_t offset_in_section = this->data_size();
1035 off_t aligned_offset_in_section = align_address(offset_in_section,
1036 addralign);
1037
1038 if (aligned_offset_in_section > offset_in_section
1039 && (shdr.get_sh_flags() & elfcpp::SHF_EXECINSTR) != 0
1040 && object->target()->has_code_fill())
1041 {
1042 // We need to add some fill data. Using fill_list_ when
1043 // possible is an optimization, since we will often have fill
1044 // sections without input sections.
1045 off_t fill_len = aligned_offset_in_section - offset_in_section;
1046 if (this->input_sections_.empty())
1047 this->fills_.push_back(Fill(offset_in_section, fill_len));
1048 else
1049 {
1050 // FIXME: When relaxing, the size needs to adjust to
1051 // maintain a constant alignment.
1052 std::string fill_data(object->target()->code_fill(fill_len));
1053 Output_data_const* odc = new Output_data_const(fill_data, 1);
1054 this->input_sections_.push_back(Input_section(odc));
1055 }
1056 }
1057
1058 this->set_data_size(aligned_offset_in_section + shdr.get_sh_size());
a2fb1b05 1059
ead1e424
ILT
1060 // We need to keep track of this section if we are already keeping
1061 // track of sections, or if we are relaxing. FIXME: Add test for
1062 // relaxing.
c51e6221 1063 if (!this->input_sections_.empty())
ead1e424
ILT
1064 this->input_sections_.push_back(Input_section(object, shndx,
1065 shdr.get_sh_size(),
1066 addralign));
54dc6425 1067
c51e6221 1068 return aligned_offset_in_section;
61ba1cf9
ILT
1069}
1070
ead1e424
ILT
1071// Add arbitrary data to an output section.
1072
1073void
1074Output_section::add_output_section_data(Output_section_data* posd)
1075{
b8e6aad9
ILT
1076 Input_section inp(posd);
1077 this->add_output_section_data(&inp);
1078}
1079
1080// Add arbitrary data to an output section by Input_section.
c06b7b0b 1081
b8e6aad9
ILT
1082void
1083Output_section::add_output_section_data(Input_section* inp)
1084{
ead1e424
ILT
1085 if (this->input_sections_.empty())
1086 this->first_input_offset_ = this->data_size();
c06b7b0b 1087
b8e6aad9 1088 this->input_sections_.push_back(*inp);
c06b7b0b 1089
b8e6aad9 1090 uint64_t addralign = inp->addralign();
ead1e424
ILT
1091 if (addralign > this->addralign_)
1092 this->addralign_ = addralign;
c06b7b0b 1093
b8e6aad9
ILT
1094 inp->set_output_section(this);
1095}
1096
1097// Add a merge section to an output section.
1098
1099void
1100Output_section::add_output_merge_section(Output_section_data* posd,
1101 bool is_string, uint64_t entsize)
1102{
1103 Input_section inp(posd, is_string, entsize);
1104 this->add_output_section_data(&inp);
1105}
1106
1107// Add an input section to a SHF_MERGE section.
1108
1109bool
1110Output_section::add_merge_input_section(Relobj* object, unsigned int shndx,
1111 uint64_t flags, uint64_t entsize,
1112 uint64_t addralign)
1113{
1114 // We only merge constants if the alignment is not more than the
1115 // entry size. This could be handled, but it's unusual.
1116 if (addralign > entsize)
1117 return false;
1118
1119 bool is_string = (flags & elfcpp::SHF_STRINGS) != 0;
1120 Input_section_list::iterator p;
1121 for (p = this->input_sections_.begin();
1122 p != this->input_sections_.end();
1123 ++p)
1124 if (p->is_merge_section(is_string, entsize))
1125 break;
1126
1127 // We handle the actual constant merging in Output_merge_data or
1128 // Output_merge_string_data.
1129 if (p != this->input_sections_.end())
1130 p->add_input_section(object, shndx);
1131 else
1132 {
1133 Output_section_data* posd;
1134 if (!is_string)
1135 posd = new Output_merge_data(entsize);
1136 else if (entsize == 1)
1137 posd = new Output_merge_string<char>();
1138 else if (entsize == 2)
1139 posd = new Output_merge_string<uint16_t>();
1140 else if (entsize == 4)
1141 posd = new Output_merge_string<uint32_t>();
1142 else
1143 return false;
1144
1145 this->add_output_merge_section(posd, is_string, entsize);
1146 posd->add_input_section(object, shndx);
1147 }
1148
1149 return true;
1150}
1151
1152// Return the output virtual address of OFFSET relative to the start
1153// of input section SHNDX in object OBJECT.
1154
1155uint64_t
1156Output_section::output_address(const Relobj* object, unsigned int shndx,
1157 off_t offset) const
1158{
1159 uint64_t addr = this->address() + this->first_input_offset_;
1160 for (Input_section_list::const_iterator p = this->input_sections_.begin();
1161 p != this->input_sections_.end();
1162 ++p)
1163 {
1164 addr = align_address(addr, p->addralign());
1165 uint64_t output;
1166 if (p->output_address(object, shndx, offset, addr, &output))
1167 return output;
1168 addr += p->data_size();
1169 }
1170
1171 // If we get here, it means that we don't know the mapping for this
1172 // input section. This might happen in principle if
1173 // add_input_section were called before add_output_section_data.
1174 // But it should never actually happen.
1175
1176 gold_unreachable();
ead1e424
ILT
1177}
1178
1179// Set the address of an Output_section. This is where we handle
1180// setting the addresses of any Output_section_data objects.
1181
1182void
1183Output_section::do_set_address(uint64_t address, off_t startoff)
1184{
1185 if (this->input_sections_.empty())
1186 return;
1187
1188 off_t off = startoff + this->first_input_offset_;
1189 for (Input_section_list::iterator p = this->input_sections_.begin();
1190 p != this->input_sections_.end();
1191 ++p)
1192 {
1193 off = align_address(off, p->addralign());
1194 p->set_address(address + (off - startoff), off, startoff);
1195 off += p->data_size();
1196 }
1197
1198 this->set_data_size(off - startoff);
1199}
1200
61ba1cf9
ILT
1201// Write the section header to *OSHDR.
1202
1203template<int size, bool big_endian>
1204void
16649710
ILT
1205Output_section::write_header(const Layout* layout,
1206 const Stringpool* secnamepool,
61ba1cf9
ILT
1207 elfcpp::Shdr_write<size, big_endian>* oshdr) const
1208{
1209 oshdr->put_sh_name(secnamepool->get_offset(this->name_));
1210 oshdr->put_sh_type(this->type_);
1211 oshdr->put_sh_flags(this->flags_);
1212 oshdr->put_sh_addr(this->address());
1213 oshdr->put_sh_offset(this->offset());
1214 oshdr->put_sh_size(this->data_size());
16649710
ILT
1215 if (this->link_section_ != NULL)
1216 oshdr->put_sh_link(this->link_section_->out_shndx());
1217 else if (this->should_link_to_symtab_)
1218 oshdr->put_sh_link(layout->symtab_section()->out_shndx());
1219 else if (this->should_link_to_dynsym_)
1220 oshdr->put_sh_link(layout->dynsym_section()->out_shndx());
1221 else
1222 oshdr->put_sh_link(this->link_);
1223 if (this->info_section_ != NULL)
1224 oshdr->put_sh_info(this->info_section_->out_shndx());
1225 else
1226 oshdr->put_sh_info(this->info_);
61ba1cf9
ILT
1227 oshdr->put_sh_addralign(this->addralign_);
1228 oshdr->put_sh_entsize(this->entsize_);
a2fb1b05
ILT
1229}
1230
ead1e424
ILT
1231// Write out the data. For input sections the data is written out by
1232// Object::relocate, but we have to handle Output_section_data objects
1233// here.
1234
1235void
1236Output_section::do_write(Output_file* of)
1237{
c51e6221
ILT
1238 off_t output_section_file_offset = this->offset();
1239 for (Fill_list::iterator p = this->fills_.begin();
1240 p != this->fills_.end();
1241 ++p)
1242 {
1243 std::string fill_data(of->target()->code_fill(p->length()));
1244 of->write(output_section_file_offset + p->section_offset(),
1245 fill_data.data(), fill_data.size());
1246 }
1247
ead1e424
ILT
1248 for (Input_section_list::iterator p = this->input_sections_.begin();
1249 p != this->input_sections_.end();
1250 ++p)
1251 p->write(of);
1252}
1253
a2fb1b05
ILT
1254// Output segment methods.
1255
1256Output_segment::Output_segment(elfcpp::Elf_Word type, elfcpp::Elf_Word flags)
54dc6425 1257 : output_data_(),
75f65a3e 1258 output_bss_(),
a2fb1b05
ILT
1259 vaddr_(0),
1260 paddr_(0),
1261 memsz_(0),
1262 align_(0),
1263 offset_(0),
1264 filesz_(0),
1265 type_(type),
ead1e424
ILT
1266 flags_(flags),
1267 is_align_known_(false)
a2fb1b05
ILT
1268{
1269}
1270
1271// Add an Output_section to an Output_segment.
1272
1273void
75f65a3e 1274Output_segment::add_output_section(Output_section* os,
dbe717ef
ILT
1275 elfcpp::Elf_Word seg_flags,
1276 bool front)
a2fb1b05 1277{
a3ad94ed
ILT
1278 gold_assert((os->flags() & elfcpp::SHF_ALLOC) != 0);
1279 gold_assert(!this->is_align_known_);
75f65a3e 1280
ead1e424 1281 // Update the segment flags.
75f65a3e 1282 this->flags_ |= seg_flags;
75f65a3e
ILT
1283
1284 Output_segment::Output_data_list* pdl;
1285 if (os->type() == elfcpp::SHT_NOBITS)
1286 pdl = &this->output_bss_;
1287 else
1288 pdl = &this->output_data_;
54dc6425 1289
a2fb1b05
ILT
1290 // So that PT_NOTE segments will work correctly, we need to ensure
1291 // that all SHT_NOTE sections are adjacent. This will normally
1292 // happen automatically, because all the SHT_NOTE input sections
1293 // will wind up in the same output section. However, it is possible
1294 // for multiple SHT_NOTE input sections to have different section
1295 // flags, and thus be in different output sections, but for the
1296 // different section flags to map into the same segment flags and
1297 // thus the same output segment.
54dc6425
ILT
1298
1299 // Note that while there may be many input sections in an output
1300 // section, there are normally only a few output sections in an
1301 // output segment. This loop is expected to be fast.
1302
61ba1cf9 1303 if (os->type() == elfcpp::SHT_NOTE && !pdl->empty())
a2fb1b05 1304 {
a3ad94ed 1305 Output_segment::Output_data_list::iterator p = pdl->end();
75f65a3e 1306 do
54dc6425 1307 {
75f65a3e 1308 --p;
54dc6425
ILT
1309 if ((*p)->is_section_type(elfcpp::SHT_NOTE))
1310 {
dbe717ef 1311 // We don't worry about the FRONT parameter.
54dc6425 1312 ++p;
75f65a3e 1313 pdl->insert(p, os);
54dc6425
ILT
1314 return;
1315 }
1316 }
75f65a3e 1317 while (p != pdl->begin());
54dc6425
ILT
1318 }
1319
1320 // Similarly, so that PT_TLS segments will work, we need to group
75f65a3e
ILT
1321 // SHF_TLS sections. An SHF_TLS/SHT_NOBITS section is a special
1322 // case: we group the SHF_TLS/SHT_NOBITS sections right after the
1323 // SHF_TLS/SHT_PROGBITS sections. This lets us set up PT_TLS
1324 // correctly.
61ba1cf9 1325 if ((os->flags() & elfcpp::SHF_TLS) != 0 && !this->output_data_.empty())
54dc6425 1326 {
75f65a3e
ILT
1327 pdl = &this->output_data_;
1328 bool nobits = os->type() == elfcpp::SHT_NOBITS;
ead1e424 1329 bool sawtls = false;
a3ad94ed 1330 Output_segment::Output_data_list::iterator p = pdl->end();
75f65a3e 1331 do
a2fb1b05 1332 {
75f65a3e 1333 --p;
ead1e424
ILT
1334 bool insert;
1335 if ((*p)->is_section_flag_set(elfcpp::SHF_TLS))
1336 {
1337 sawtls = true;
1338 // Put a NOBITS section after the first TLS section.
1339 // But a PROGBITS section after the first TLS/PROGBITS
1340 // section.
1341 insert = nobits || !(*p)->is_section_type(elfcpp::SHT_NOBITS);
1342 }
1343 else
1344 {
1345 // If we've gone past the TLS sections, but we've seen a
1346 // TLS section, then we need to insert this section now.
1347 insert = sawtls;
1348 }
1349
1350 if (insert)
a2fb1b05 1351 {
dbe717ef 1352 // We don't worry about the FRONT parameter.
a2fb1b05 1353 ++p;
75f65a3e 1354 pdl->insert(p, os);
a2fb1b05
ILT
1355 return;
1356 }
1357 }
75f65a3e 1358 while (p != pdl->begin());
ead1e424 1359
dbe717ef
ILT
1360 // There are no TLS sections yet; put this one at the requested
1361 // location in the section list.
a2fb1b05
ILT
1362 }
1363
dbe717ef
ILT
1364 if (front)
1365 pdl->push_front(os);
1366 else
1367 pdl->push_back(os);
75f65a3e
ILT
1368}
1369
1370// Add an Output_data (which is not an Output_section) to the start of
1371// a segment.
1372
1373void
1374Output_segment::add_initial_output_data(Output_data* od)
1375{
a3ad94ed 1376 gold_assert(!this->is_align_known_);
75f65a3e
ILT
1377 this->output_data_.push_front(od);
1378}
1379
1380// Return the maximum alignment of the Output_data in Output_segment.
ead1e424 1381// Once we compute this, we prohibit new sections from being added.
75f65a3e
ILT
1382
1383uint64_t
ead1e424 1384Output_segment::addralign()
75f65a3e 1385{
ead1e424
ILT
1386 if (!this->is_align_known_)
1387 {
1388 uint64_t addralign;
1389
1390 addralign = Output_segment::maximum_alignment(&this->output_data_);
1391 if (addralign > this->align_)
1392 this->align_ = addralign;
1393
1394 addralign = Output_segment::maximum_alignment(&this->output_bss_);
1395 if (addralign > this->align_)
1396 this->align_ = addralign;
1397
1398 this->is_align_known_ = true;
1399 }
1400
75f65a3e
ILT
1401 return this->align_;
1402}
1403
ead1e424
ILT
1404// Return the maximum alignment of a list of Output_data.
1405
1406uint64_t
1407Output_segment::maximum_alignment(const Output_data_list* pdl)
1408{
1409 uint64_t ret = 0;
1410 for (Output_data_list::const_iterator p = pdl->begin();
1411 p != pdl->end();
1412 ++p)
1413 {
1414 uint64_t addralign = (*p)->addralign();
1415 if (addralign > ret)
1416 ret = addralign;
1417 }
1418 return ret;
1419}
1420
75f65a3e 1421// Set the section addresses for an Output_segment. ADDR is the
ead1e424
ILT
1422// address and *POFF is the file offset. Set the section indexes
1423// starting with *PSHNDX. Return the address of the immediately
1424// following segment. Update *POFF and *PSHNDX.
75f65a3e
ILT
1425
1426uint64_t
ead1e424
ILT
1427Output_segment::set_section_addresses(uint64_t addr, off_t* poff,
1428 unsigned int* pshndx)
75f65a3e 1429{
a3ad94ed 1430 gold_assert(this->type_ == elfcpp::PT_LOAD);
75f65a3e
ILT
1431
1432 this->vaddr_ = addr;
1433 this->paddr_ = addr;
1434
1435 off_t orig_off = *poff;
1436 this->offset_ = orig_off;
1437
ead1e424
ILT
1438 *poff = align_address(*poff, this->addralign());
1439
1440 addr = this->set_section_list_addresses(&this->output_data_, addr, poff,
1441 pshndx);
75f65a3e
ILT
1442 this->filesz_ = *poff - orig_off;
1443
1444 off_t off = *poff;
1445
61ba1cf9 1446 uint64_t ret = this->set_section_list_addresses(&this->output_bss_, addr,
ead1e424 1447 poff, pshndx);
75f65a3e
ILT
1448 this->memsz_ = *poff - orig_off;
1449
1450 // Ignore the file offset adjustments made by the BSS Output_data
1451 // objects.
1452 *poff = off;
61ba1cf9
ILT
1453
1454 return ret;
75f65a3e
ILT
1455}
1456
b8e6aad9
ILT
1457// Set the addresses and file offsets in a list of Output_data
1458// structures.
75f65a3e
ILT
1459
1460uint64_t
1461Output_segment::set_section_list_addresses(Output_data_list* pdl,
ead1e424
ILT
1462 uint64_t addr, off_t* poff,
1463 unsigned int* pshndx)
75f65a3e 1464{
ead1e424 1465 off_t startoff = *poff;
75f65a3e 1466
ead1e424 1467 off_t off = startoff;
75f65a3e
ILT
1468 for (Output_data_list::iterator p = pdl->begin();
1469 p != pdl->end();
1470 ++p)
1471 {
ead1e424
ILT
1472 off = align_address(off, (*p)->addralign());
1473 (*p)->set_address(addr + (off - startoff), off);
1474
1475 // Unless this is a PT_TLS segment, we want to ignore the size
1476 // of a SHF_TLS/SHT_NOBITS section. Such a section does not
1477 // affect the size of a PT_LOAD segment.
1478 if (this->type_ == elfcpp::PT_TLS
1479 || !(*p)->is_section_flag_set(elfcpp::SHF_TLS)
1480 || !(*p)->is_section_type(elfcpp::SHT_NOBITS))
1481 off += (*p)->data_size();
75f65a3e 1482
ead1e424
ILT
1483 if ((*p)->is_section())
1484 {
1485 (*p)->set_out_shndx(*pshndx);
1486 ++*pshndx;
1487 }
75f65a3e
ILT
1488 }
1489
1490 *poff = off;
ead1e424 1491 return addr + (off - startoff);
75f65a3e
ILT
1492}
1493
1494// For a non-PT_LOAD segment, set the offset from the sections, if
1495// any.
1496
1497void
1498Output_segment::set_offset()
1499{
a3ad94ed 1500 gold_assert(this->type_ != elfcpp::PT_LOAD);
75f65a3e
ILT
1501
1502 if (this->output_data_.empty() && this->output_bss_.empty())
1503 {
1504 this->vaddr_ = 0;
1505 this->paddr_ = 0;
1506 this->memsz_ = 0;
1507 this->align_ = 0;
1508 this->offset_ = 0;
1509 this->filesz_ = 0;
1510 return;
1511 }
1512
1513 const Output_data* first;
1514 if (this->output_data_.empty())
1515 first = this->output_bss_.front();
1516 else
1517 first = this->output_data_.front();
1518 this->vaddr_ = first->address();
1519 this->paddr_ = this->vaddr_;
1520 this->offset_ = first->offset();
1521
1522 if (this->output_data_.empty())
1523 this->filesz_ = 0;
1524 else
1525 {
1526 const Output_data* last_data = this->output_data_.back();
1527 this->filesz_ = (last_data->address()
1528 + last_data->data_size()
1529 - this->vaddr_);
1530 }
1531
1532 const Output_data* last;
1533 if (this->output_bss_.empty())
1534 last = this->output_data_.back();
1535 else
1536 last = this->output_bss_.back();
1537 this->memsz_ = (last->address()
1538 + last->data_size()
1539 - this->vaddr_);
75f65a3e
ILT
1540}
1541
1542// Return the number of Output_sections in an Output_segment.
1543
1544unsigned int
1545Output_segment::output_section_count() const
1546{
1547 return (this->output_section_count_list(&this->output_data_)
1548 + this->output_section_count_list(&this->output_bss_));
1549}
1550
1551// Return the number of Output_sections in an Output_data_list.
1552
1553unsigned int
1554Output_segment::output_section_count_list(const Output_data_list* pdl) const
1555{
1556 unsigned int count = 0;
1557 for (Output_data_list::const_iterator p = pdl->begin();
1558 p != pdl->end();
1559 ++p)
1560 {
1561 if ((*p)->is_section())
1562 ++count;
1563 }
1564 return count;
a2fb1b05
ILT
1565}
1566
61ba1cf9
ILT
1567// Write the segment data into *OPHDR.
1568
1569template<int size, bool big_endian>
1570void
ead1e424 1571Output_segment::write_header(elfcpp::Phdr_write<size, big_endian>* ophdr)
61ba1cf9
ILT
1572{
1573 ophdr->put_p_type(this->type_);
1574 ophdr->put_p_offset(this->offset_);
1575 ophdr->put_p_vaddr(this->vaddr_);
1576 ophdr->put_p_paddr(this->paddr_);
1577 ophdr->put_p_filesz(this->filesz_);
1578 ophdr->put_p_memsz(this->memsz_);
1579 ophdr->put_p_flags(this->flags_);
ead1e424 1580 ophdr->put_p_align(this->addralign());
61ba1cf9
ILT
1581}
1582
1583// Write the section headers into V.
1584
1585template<int size, bool big_endian>
1586unsigned char*
16649710
ILT
1587Output_segment::write_section_headers(const Layout* layout,
1588 const Stringpool* secnamepool,
ead1e424
ILT
1589 unsigned char* v,
1590 unsigned int *pshndx
5482377d
ILT
1591 ACCEPT_SIZE_ENDIAN) const
1592{
ead1e424
ILT
1593 // Every section that is attached to a segment must be attached to a
1594 // PT_LOAD segment, so we only write out section headers for PT_LOAD
1595 // segments.
1596 if (this->type_ != elfcpp::PT_LOAD)
1597 return v;
1598
593f47df
ILT
1599 v = this->write_section_headers_list
1600 SELECT_SIZE_ENDIAN_NAME(size, big_endian) (
16649710 1601 layout, secnamepool, &this->output_data_, v, pshndx
593f47df
ILT
1602 SELECT_SIZE_ENDIAN(size, big_endian));
1603 v = this->write_section_headers_list
1604 SELECT_SIZE_ENDIAN_NAME(size, big_endian) (
16649710 1605 layout, secnamepool, &this->output_bss_, v, pshndx
593f47df 1606 SELECT_SIZE_ENDIAN(size, big_endian));
61ba1cf9
ILT
1607 return v;
1608}
1609
1610template<int size, bool big_endian>
1611unsigned char*
16649710
ILT
1612Output_segment::write_section_headers_list(const Layout* layout,
1613 const Stringpool* secnamepool,
61ba1cf9 1614 const Output_data_list* pdl,
ead1e424
ILT
1615 unsigned char* v,
1616 unsigned int* pshndx
5482377d 1617 ACCEPT_SIZE_ENDIAN) const
61ba1cf9
ILT
1618{
1619 const int shdr_size = elfcpp::Elf_sizes<size>::shdr_size;
1620 for (Output_data_list::const_iterator p = pdl->begin();
1621 p != pdl->end();
1622 ++p)
1623 {
1624 if ((*p)->is_section())
1625 {
5482377d 1626 const Output_section* ps = static_cast<const Output_section*>(*p);
a3ad94ed 1627 gold_assert(*pshndx == ps->out_shndx());
61ba1cf9 1628 elfcpp::Shdr_write<size, big_endian> oshdr(v);
16649710 1629 ps->write_header(layout, secnamepool, &oshdr);
61ba1cf9 1630 v += shdr_size;
ead1e424 1631 ++*pshndx;
61ba1cf9
ILT
1632 }
1633 }
1634 return v;
1635}
1636
a2fb1b05
ILT
1637// Output_file methods.
1638
c51e6221 1639Output_file::Output_file(const General_options& options, Target* target)
61ba1cf9 1640 : options_(options),
c51e6221 1641 target_(target),
61ba1cf9
ILT
1642 name_(options.output_file_name()),
1643 o_(-1),
1644 file_size_(0),
1645 base_(NULL)
1646{
1647}
1648
1649// Open the output file.
1650
a2fb1b05 1651void
61ba1cf9 1652Output_file::open(off_t file_size)
a2fb1b05 1653{
61ba1cf9
ILT
1654 this->file_size_ = file_size;
1655
7e1edb90 1656 int mode = parameters->output_is_object() ? 0666 : 0777;
61ba1cf9
ILT
1657 int o = ::open(this->name_, O_RDWR | O_CREAT | O_TRUNC, mode);
1658 if (o < 0)
1659 {
1660 fprintf(stderr, _("%s: %s: open: %s\n"),
1661 program_name, this->name_, strerror(errno));
1662 gold_exit(false);
1663 }
1664 this->o_ = o;
1665
1666 // Write out one byte to make the file the right size.
1667 if (::lseek(o, file_size - 1, SEEK_SET) < 0)
1668 {
1669 fprintf(stderr, _("%s: %s: lseek: %s\n"),
1670 program_name, this->name_, strerror(errno));
1671 gold_exit(false);
1672 }
1673 char b = 0;
1674 if (::write(o, &b, 1) != 1)
1675 {
1676 fprintf(stderr, _("%s: %s: write: %s\n"),
1677 program_name, this->name_, strerror(errno));
1678 gold_exit(false);
1679 }
1680
1681 // Map the file into memory.
1682 void* base = ::mmap(NULL, file_size, PROT_READ | PROT_WRITE,
1683 MAP_SHARED, o, 0);
1684 if (base == MAP_FAILED)
1685 {
1686 fprintf(stderr, _("%s: %s: mmap: %s\n"),
1687 program_name, this->name_, strerror(errno));
1688 gold_exit(false);
1689 }
1690 this->base_ = static_cast<unsigned char*>(base);
1691}
1692
1693// Close the output file.
1694
1695void
1696Output_file::close()
1697{
1698 if (::munmap(this->base_, this->file_size_) < 0)
1699 {
1700 fprintf(stderr, _("%s: %s: munmap: %s\n"),
1701 program_name, this->name_, strerror(errno));
1702 gold_exit(false);
1703 }
1704 this->base_ = NULL;
1705
1706 if (::close(this->o_) < 0)
1707 {
1708 fprintf(stderr, _("%s: %s: close: %s\n"),
1709 program_name, this->name_, strerror(errno));
1710 gold_exit(false);
1711 }
1712 this->o_ = -1;
a2fb1b05
ILT
1713}
1714
1715// Instantiate the templates we need. We could use the configure
1716// script to restrict this to only the ones for implemented targets.
1717
193a53d9 1718#ifdef HAVE_TARGET_32_LITTLE
a2fb1b05
ILT
1719template
1720off_t
1721Output_section::add_input_section<32, false>(
f6ce93d6 1722 Relobj* object,
ead1e424 1723 unsigned int shndx,
a2fb1b05
ILT
1724 const char* secname,
1725 const elfcpp::Shdr<32, false>& shdr);
193a53d9 1726#endif
a2fb1b05 1727
193a53d9 1728#ifdef HAVE_TARGET_32_BIG
a2fb1b05
ILT
1729template
1730off_t
1731Output_section::add_input_section<32, true>(
f6ce93d6 1732 Relobj* object,
ead1e424 1733 unsigned int shndx,
a2fb1b05
ILT
1734 const char* secname,
1735 const elfcpp::Shdr<32, true>& shdr);
193a53d9 1736#endif
a2fb1b05 1737
193a53d9 1738#ifdef HAVE_TARGET_64_LITTLE
a2fb1b05
ILT
1739template
1740off_t
1741Output_section::add_input_section<64, false>(
f6ce93d6 1742 Relobj* object,
ead1e424 1743 unsigned int shndx,
a2fb1b05
ILT
1744 const char* secname,
1745 const elfcpp::Shdr<64, false>& shdr);
193a53d9 1746#endif
a2fb1b05 1747
193a53d9 1748#ifdef HAVE_TARGET_64_BIG
a2fb1b05
ILT
1749template
1750off_t
1751Output_section::add_input_section<64, true>(
f6ce93d6 1752 Relobj* object,
ead1e424 1753 unsigned int shndx,
a2fb1b05
ILT
1754 const char* secname,
1755 const elfcpp::Shdr<64, true>& shdr);
193a53d9 1756#endif
a2fb1b05 1757
193a53d9 1758#ifdef HAVE_TARGET_32_LITTLE
c06b7b0b
ILT
1759template
1760class Output_data_reloc<elfcpp::SHT_REL, false, 32, false>;
193a53d9 1761#endif
c06b7b0b 1762
193a53d9 1763#ifdef HAVE_TARGET_32_BIG
c06b7b0b
ILT
1764template
1765class Output_data_reloc<elfcpp::SHT_REL, false, 32, true>;
193a53d9 1766#endif
c06b7b0b 1767
193a53d9 1768#ifdef HAVE_TARGET_64_LITTLE
c06b7b0b
ILT
1769template
1770class Output_data_reloc<elfcpp::SHT_REL, false, 64, false>;
193a53d9 1771#endif
c06b7b0b 1772
193a53d9 1773#ifdef HAVE_TARGET_64_BIG
c06b7b0b
ILT
1774template
1775class Output_data_reloc<elfcpp::SHT_REL, false, 64, true>;
193a53d9 1776#endif
c06b7b0b 1777
193a53d9 1778#ifdef HAVE_TARGET_32_LITTLE
c06b7b0b
ILT
1779template
1780class Output_data_reloc<elfcpp::SHT_REL, true, 32, false>;
193a53d9 1781#endif
c06b7b0b 1782
193a53d9 1783#ifdef HAVE_TARGET_32_BIG
c06b7b0b
ILT
1784template
1785class Output_data_reloc<elfcpp::SHT_REL, true, 32, true>;
193a53d9 1786#endif
c06b7b0b 1787
193a53d9 1788#ifdef HAVE_TARGET_64_LITTLE
c06b7b0b
ILT
1789template
1790class Output_data_reloc<elfcpp::SHT_REL, true, 64, false>;
193a53d9 1791#endif
c06b7b0b 1792
193a53d9 1793#ifdef HAVE_TARGET_64_BIG
c06b7b0b
ILT
1794template
1795class Output_data_reloc<elfcpp::SHT_REL, true, 64, true>;
193a53d9 1796#endif
c06b7b0b 1797
193a53d9 1798#ifdef HAVE_TARGET_32_LITTLE
c06b7b0b
ILT
1799template
1800class Output_data_reloc<elfcpp::SHT_RELA, false, 32, false>;
193a53d9 1801#endif
c06b7b0b 1802
193a53d9 1803#ifdef HAVE_TARGET_32_BIG
c06b7b0b
ILT
1804template
1805class Output_data_reloc<elfcpp::SHT_RELA, false, 32, true>;
193a53d9 1806#endif
c06b7b0b 1807
193a53d9 1808#ifdef HAVE_TARGET_64_LITTLE
c06b7b0b
ILT
1809template
1810class Output_data_reloc<elfcpp::SHT_RELA, false, 64, false>;
193a53d9 1811#endif
c06b7b0b 1812
193a53d9 1813#ifdef HAVE_TARGET_64_BIG
c06b7b0b
ILT
1814template
1815class Output_data_reloc<elfcpp::SHT_RELA, false, 64, true>;
193a53d9 1816#endif
c06b7b0b 1817
193a53d9 1818#ifdef HAVE_TARGET_32_LITTLE
c06b7b0b
ILT
1819template
1820class Output_data_reloc<elfcpp::SHT_RELA, true, 32, false>;
193a53d9 1821#endif
c06b7b0b 1822
193a53d9 1823#ifdef HAVE_TARGET_32_BIG
c06b7b0b
ILT
1824template
1825class Output_data_reloc<elfcpp::SHT_RELA, true, 32, true>;
193a53d9 1826#endif
c06b7b0b 1827
193a53d9 1828#ifdef HAVE_TARGET_64_LITTLE
c06b7b0b
ILT
1829template
1830class Output_data_reloc<elfcpp::SHT_RELA, true, 64, false>;
193a53d9 1831#endif
c06b7b0b 1832
193a53d9 1833#ifdef HAVE_TARGET_64_BIG
c06b7b0b
ILT
1834template
1835class Output_data_reloc<elfcpp::SHT_RELA, true, 64, true>;
193a53d9 1836#endif
c06b7b0b 1837
193a53d9 1838#ifdef HAVE_TARGET_32_LITTLE
ead1e424 1839template
dbe717ef 1840class Output_data_got<32, false>;
193a53d9 1841#endif
ead1e424 1842
193a53d9 1843#ifdef HAVE_TARGET_32_BIG
ead1e424 1844template
dbe717ef 1845class Output_data_got<32, true>;
193a53d9 1846#endif
ead1e424 1847
193a53d9 1848#ifdef HAVE_TARGET_64_LITTLE
ead1e424 1849template
dbe717ef 1850class Output_data_got<64, false>;
193a53d9 1851#endif
ead1e424 1852
193a53d9 1853#ifdef HAVE_TARGET_64_BIG
ead1e424 1854template
dbe717ef 1855class Output_data_got<64, true>;
193a53d9 1856#endif
ead1e424 1857
a2fb1b05 1858} // End namespace gold.
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