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[deliverable/binutils-gdb.git] / gold / output.cc
CommitLineData
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1// output.cc -- manage the output file for gold
2
3#include "gold.h"
4
5#include <cstdlib>
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6#include <cerrno>
7#include <fcntl.h>
8#include <unistd.h>
9#include <sys/mman.h>
75f65a3e 10#include <algorithm>
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11
12#include "object.h"
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13#include "symtab.h"
14#include "reloc.h"
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15#include "output.h"
16
17namespace gold
18{
19
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20// Output_data variables.
21
22bool Output_data::sizes_are_fixed;
23
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24// Output_data methods.
25
26Output_data::~Output_data()
27{
28}
29
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30// Set the address and offset.
31
32void
33Output_data::set_address(uint64_t addr, off_t off)
34{
35 this->address_ = addr;
36 this->offset_ = off;
37
38 // Let the child class know.
39 this->do_set_address(addr, off);
40}
41
42// Return the default alignment for a size--32 or 64.
43
44uint64_t
45Output_data::default_alignment(int size)
46{
47 if (size == 32)
48 return 4;
49 else if (size == 64)
50 return 8;
51 else
a3ad94ed 52 gold_unreachable();
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53}
54
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55// Output_section_header methods. This currently assumes that the
56// segment and section lists are complete at construction time.
57
58Output_section_headers::Output_section_headers(
59 int size,
61ba1cf9 60 bool big_endian,
75f65a3e 61 const Layout::Segment_list& segment_list,
a3ad94ed 62 const Layout::Section_list& unattached_section_list,
61ba1cf9 63 const Stringpool* secnamepool)
75f65a3e 64 : size_(size),
61ba1cf9 65 big_endian_(big_endian),
75f65a3e 66 segment_list_(segment_list),
a3ad94ed 67 unattached_section_list_(unattached_section_list),
61ba1cf9 68 secnamepool_(secnamepool)
75f65a3e 69{
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70 // Count all the sections. Start with 1 for the null section.
71 off_t count = 1;
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72 for (Layout::Segment_list::const_iterator p = segment_list.begin();
73 p != segment_list.end();
74 ++p)
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75 if ((*p)->type() == elfcpp::PT_LOAD)
76 count += (*p)->output_section_count();
a3ad94ed 77 count += unattached_section_list.size();
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78
79 int shdr_size;
80 if (size == 32)
81 shdr_size = elfcpp::Elf_sizes<32>::shdr_size;
82 else if (size == 64)
83 shdr_size = elfcpp::Elf_sizes<64>::shdr_size;
84 else
a3ad94ed 85 gold_unreachable();
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86
87 this->set_data_size(count * shdr_size);
88}
89
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90// Write out the section headers.
91
75f65a3e 92void
61ba1cf9 93Output_section_headers::do_write(Output_file* of)
a2fb1b05 94{
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95 if (this->size_ == 32)
96 {
97 if (this->big_endian_)
98 this->do_sized_write<32, true>(of);
99 else
100 this->do_sized_write<32, false>(of);
101 }
102 else if (this->size_ == 64)
103 {
104 if (this->big_endian_)
105 this->do_sized_write<64, true>(of);
106 else
107 this->do_sized_write<64, false>(of);
108 }
109 else
a3ad94ed 110 gold_unreachable();
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111}
112
113template<int size, bool big_endian>
114void
115Output_section_headers::do_sized_write(Output_file* of)
116{
117 off_t all_shdrs_size = this->data_size();
118 unsigned char* view = of->get_output_view(this->offset(), all_shdrs_size);
119
120 const int shdr_size = elfcpp::Elf_sizes<size>::shdr_size;
121 unsigned char* v = view;
122
123 {
124 typename elfcpp::Shdr_write<size, big_endian> oshdr(v);
125 oshdr.put_sh_name(0);
126 oshdr.put_sh_type(elfcpp::SHT_NULL);
127 oshdr.put_sh_flags(0);
128 oshdr.put_sh_addr(0);
129 oshdr.put_sh_offset(0);
130 oshdr.put_sh_size(0);
131 oshdr.put_sh_link(0);
132 oshdr.put_sh_info(0);
133 oshdr.put_sh_addralign(0);
134 oshdr.put_sh_entsize(0);
135 }
136
137 v += shdr_size;
138
ead1e424 139 unsigned shndx = 1;
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140 for (Layout::Segment_list::const_iterator p = this->segment_list_.begin();
141 p != this->segment_list_.end();
142 ++p)
593f47df 143 v = (*p)->write_section_headers SELECT_SIZE_ENDIAN_NAME(size, big_endian) (
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144 this->secnamepool_, v, &shndx
145 SELECT_SIZE_ENDIAN(size, big_endian));
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146 for (Layout::Section_list::const_iterator p =
147 this->unattached_section_list_.begin();
148 p != this->unattached_section_list_.end();
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149 ++p)
150 {
a3ad94ed 151 gold_assert(shndx == (*p)->out_shndx());
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152 elfcpp::Shdr_write<size, big_endian> oshdr(v);
153 (*p)->write_header(this->secnamepool_, &oshdr);
154 v += shdr_size;
ead1e424 155 ++shndx;
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156 }
157
158 of->write_output_view(this->offset(), all_shdrs_size, view);
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159}
160
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161// Output_segment_header methods.
162
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163Output_segment_headers::Output_segment_headers(
164 int size,
165 bool big_endian,
166 const Layout::Segment_list& segment_list)
167 : size_(size), big_endian_(big_endian), segment_list_(segment_list)
168{
169 int phdr_size;
170 if (size == 32)
171 phdr_size = elfcpp::Elf_sizes<32>::phdr_size;
172 else if (size == 64)
173 phdr_size = elfcpp::Elf_sizes<64>::phdr_size;
174 else
a3ad94ed 175 gold_unreachable();
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176
177 this->set_data_size(segment_list.size() * phdr_size);
178}
179
54dc6425 180void
61ba1cf9 181Output_segment_headers::do_write(Output_file* of)
75f65a3e 182{
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183 if (this->size_ == 32)
184 {
185 if (this->big_endian_)
186 this->do_sized_write<32, true>(of);
187 else
188 this->do_sized_write<32, false>(of);
189 }
190 else if (this->size_ == 64)
191 {
192 if (this->big_endian_)
193 this->do_sized_write<64, true>(of);
194 else
195 this->do_sized_write<64, false>(of);
196 }
197 else
a3ad94ed 198 gold_unreachable();
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199}
200
201template<int size, bool big_endian>
202void
203Output_segment_headers::do_sized_write(Output_file* of)
204{
205 const int phdr_size = elfcpp::Elf_sizes<size>::phdr_size;
206 off_t all_phdrs_size = this->segment_list_.size() * phdr_size;
207 unsigned char* view = of->get_output_view(this->offset(),
208 all_phdrs_size);
209 unsigned char* v = view;
210 for (Layout::Segment_list::const_iterator p = this->segment_list_.begin();
211 p != this->segment_list_.end();
212 ++p)
213 {
214 elfcpp::Phdr_write<size, big_endian> ophdr(v);
215 (*p)->write_header(&ophdr);
216 v += phdr_size;
217 }
218
219 of->write_output_view(this->offset(), all_phdrs_size, view);
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220}
221
222// Output_file_header methods.
223
224Output_file_header::Output_file_header(int size,
61ba1cf9 225 bool big_endian,
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226 const General_options& options,
227 const Target* target,
228 const Symbol_table* symtab,
229 const Output_segment_headers* osh)
230 : size_(size),
61ba1cf9 231 big_endian_(big_endian),
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232 options_(options),
233 target_(target),
234 symtab_(symtab),
61ba1cf9 235 segment_header_(osh),
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236 section_header_(NULL),
237 shstrtab_(NULL)
238{
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239 int ehdr_size;
240 if (size == 32)
241 ehdr_size = elfcpp::Elf_sizes<32>::ehdr_size;
242 else if (size == 64)
243 ehdr_size = elfcpp::Elf_sizes<64>::ehdr_size;
244 else
a3ad94ed 245 gold_unreachable();
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246
247 this->set_data_size(ehdr_size);
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248}
249
250// Set the section table information for a file header.
251
252void
253Output_file_header::set_section_info(const Output_section_headers* shdrs,
254 const Output_section* shstrtab)
255{
256 this->section_header_ = shdrs;
257 this->shstrtab_ = shstrtab;
258}
259
260// Write out the file header.
261
262void
61ba1cf9 263Output_file_header::do_write(Output_file* of)
54dc6425 264{
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265 if (this->size_ == 32)
266 {
267 if (this->big_endian_)
268 this->do_sized_write<32, true>(of);
269 else
270 this->do_sized_write<32, false>(of);
271 }
272 else if (this->size_ == 64)
273 {
274 if (this->big_endian_)
275 this->do_sized_write<64, true>(of);
276 else
277 this->do_sized_write<64, false>(of);
278 }
279 else
a3ad94ed 280 gold_unreachable();
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281}
282
283// Write out the file header with appropriate size and endianess.
284
285template<int size, bool big_endian>
286void
287Output_file_header::do_sized_write(Output_file* of)
288{
a3ad94ed 289 gold_assert(this->offset() == 0);
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290
291 int ehdr_size = elfcpp::Elf_sizes<size>::ehdr_size;
292 unsigned char* view = of->get_output_view(0, ehdr_size);
293 elfcpp::Ehdr_write<size, big_endian> oehdr(view);
294
295 unsigned char e_ident[elfcpp::EI_NIDENT];
296 memset(e_ident, 0, elfcpp::EI_NIDENT);
297 e_ident[elfcpp::EI_MAG0] = elfcpp::ELFMAG0;
298 e_ident[elfcpp::EI_MAG1] = elfcpp::ELFMAG1;
299 e_ident[elfcpp::EI_MAG2] = elfcpp::ELFMAG2;
300 e_ident[elfcpp::EI_MAG3] = elfcpp::ELFMAG3;
301 if (size == 32)
302 e_ident[elfcpp::EI_CLASS] = elfcpp::ELFCLASS32;
303 else if (size == 64)
304 e_ident[elfcpp::EI_CLASS] = elfcpp::ELFCLASS64;
305 else
a3ad94ed 306 gold_unreachable();
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307 e_ident[elfcpp::EI_DATA] = (big_endian
308 ? elfcpp::ELFDATA2MSB
309 : elfcpp::ELFDATA2LSB);
310 e_ident[elfcpp::EI_VERSION] = elfcpp::EV_CURRENT;
311 // FIXME: Some targets may need to set EI_OSABI and EI_ABIVERSION.
312 oehdr.put_e_ident(e_ident);
313
314 elfcpp::ET e_type;
315 // FIXME: ET_DYN.
316 if (this->options_.is_relocatable())
317 e_type = elfcpp::ET_REL;
318 else
319 e_type = elfcpp::ET_EXEC;
320 oehdr.put_e_type(e_type);
321
322 oehdr.put_e_machine(this->target_->machine_code());
323 oehdr.put_e_version(elfcpp::EV_CURRENT);
324
ead1e424 325 // FIXME: Need to support -e, and target specific entry symbol.
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326 Symbol* sym = this->symtab_->lookup("_start");
327 typename Sized_symbol<size>::Value_type v;
328 if (sym == NULL)
329 v = 0;
330 else
331 {
332 Sized_symbol<size>* ssym;
593f47df 333 ssym = this->symtab_->get_sized_symbol SELECT_SIZE_NAME(size) (
5482377d 334 sym SELECT_SIZE(size));
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335 v = ssym->value();
336 }
337 oehdr.put_e_entry(v);
338
339 oehdr.put_e_phoff(this->segment_header_->offset());
340 oehdr.put_e_shoff(this->section_header_->offset());
341
342 // FIXME: The target needs to set the flags.
343 oehdr.put_e_flags(0);
344
345 oehdr.put_e_ehsize(elfcpp::Elf_sizes<size>::ehdr_size);
346 oehdr.put_e_phentsize(elfcpp::Elf_sizes<size>::phdr_size);
347 oehdr.put_e_phnum(this->segment_header_->data_size()
348 / elfcpp::Elf_sizes<size>::phdr_size);
349 oehdr.put_e_shentsize(elfcpp::Elf_sizes<size>::shdr_size);
350 oehdr.put_e_shnum(this->section_header_->data_size()
351 / elfcpp::Elf_sizes<size>::shdr_size);
ead1e424 352 oehdr.put_e_shstrndx(this->shstrtab_->out_shndx());
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353
354 of->write_output_view(0, ehdr_size, view);
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355}
356
dbe717ef
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357// Output_data_const methods.
358
359void
a3ad94ed 360Output_data_const::do_write(Output_file* of)
dbe717ef 361{
a3ad94ed
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362 of->write(this->offset(), this->data_.data(), this->data_.size());
363}
364
365// Output_data_const_buffer methods.
366
367void
368Output_data_const_buffer::do_write(Output_file* of)
369{
370 of->write(this->offset(), this->p_, this->data_size());
dbe717ef
ILT
371}
372
373// Output_section_data methods.
374
375unsigned int
376Output_section_data::do_out_shndx() const
377{
a3ad94ed 378 gold_assert(this->output_section_ != NULL);
dbe717ef
ILT
379 return this->output_section_->out_shndx();
380}
381
a3ad94ed
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382// Output_data_strtab methods.
383
384// Set the address. We don't actually care about the address, but we
385// do set our final size.
386
387void
388Output_data_strtab::do_set_address(uint64_t, off_t)
389{
390 this->strtab_->set_string_offsets();
391 this->set_data_size(this->strtab_->get_strtab_size());
392}
393
394// Write out a string table.
395
396void
397Output_data_strtab::do_write(Output_file* of)
398{
399 this->strtab_->write(of, this->offset());
400}
401
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ILT
402// Output_reloc methods.
403
404// Get the symbol index of a relocation.
405
406template<bool dynamic, int size, bool big_endian>
407unsigned int
408Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::get_symbol_index()
409 const
410{
411 unsigned int index;
412 switch (this->local_sym_index_)
413 {
414 case INVALID_CODE:
a3ad94ed 415 gold_unreachable();
c06b7b0b
ILT
416
417 case GSYM_CODE:
5a6f7e2d 418 if (this->u1_.gsym == NULL)
c06b7b0b
ILT
419 index = 0;
420 else if (dynamic)
5a6f7e2d 421 index = this->u1_.gsym->dynsym_index();
c06b7b0b 422 else
5a6f7e2d 423 index = this->u1_.gsym->symtab_index();
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ILT
424 break;
425
426 case SECTION_CODE:
427 if (dynamic)
5a6f7e2d 428 index = this->u1_.os->dynsym_index();
c06b7b0b 429 else
5a6f7e2d 430 index = this->u1_.os->symtab_index();
c06b7b0b
ILT
431 break;
432
433 default:
434 if (dynamic)
435 {
436 // FIXME: It seems that some targets may need to generate
437 // dynamic relocations against local symbols for some
438 // reasons. This will have to be addressed at some point.
a3ad94ed 439 gold_unreachable();
c06b7b0b
ILT
440 }
441 else
5a6f7e2d 442 index = this->u1_.relobj->symtab_index(this->local_sym_index_);
c06b7b0b
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443 break;
444 }
a3ad94ed 445 gold_assert(index != -1U);
c06b7b0b
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446 return index;
447}
448
449// Write out the offset and info fields of a Rel or Rela relocation
450// entry.
451
452template<bool dynamic, int size, bool big_endian>
453template<typename Write_rel>
454void
455Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::write_rel(
456 Write_rel* wr) const
457{
a3ad94ed 458 Address address = this->address_;
5a6f7e2d
ILT
459 if (this->shndx_ != INVALID_CODE)
460 {
461 off_t off;
462 Output_section* os = this->u2_.relobj->output_section(this->shndx_,
463 &off);
464 gold_assert(os != NULL);
465 address += os->address() + off;
466 }
467 else if (this->u2_.od != NULL)
468 address += this->u2_.od->address();
a3ad94ed 469 wr->put_r_offset(address);
c06b7b0b
ILT
470 wr->put_r_info(elfcpp::elf_r_info<size>(this->get_symbol_index(),
471 this->type_));
472}
473
474// Write out a Rel relocation.
475
476template<bool dynamic, int size, bool big_endian>
477void
478Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::write(
479 unsigned char* pov) const
480{
481 elfcpp::Rel_write<size, big_endian> orel(pov);
482 this->write_rel(&orel);
483}
484
485// Write out a Rela relocation.
486
487template<bool dynamic, int size, bool big_endian>
488void
489Output_reloc<elfcpp::SHT_RELA, dynamic, size, big_endian>::write(
490 unsigned char* pov) const
491{
492 elfcpp::Rela_write<size, big_endian> orel(pov);
493 this->rel_.write_rel(&orel);
494 orel.put_r_addend(this->addend_);
495}
496
497// Output_data_reloc_base methods.
498
499// Write out relocation data.
500
501template<int sh_type, bool dynamic, int size, bool big_endian>
502void
503Output_data_reloc_base<sh_type, dynamic, size, big_endian>::do_write(
504 Output_file* of)
505{
506 const off_t off = this->offset();
507 const off_t oview_size = this->data_size();
508 unsigned char* const oview = of->get_output_view(off, oview_size);
509
510 unsigned char* pov = oview;
511 for (typename Relocs::const_iterator p = this->relocs_.begin();
512 p != this->relocs_.end();
513 ++p)
514 {
515 p->write(pov);
516 pov += reloc_size;
517 }
518
a3ad94ed 519 gold_assert(pov - oview == oview_size);
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520
521 of->write_output_view(off, oview_size, oview);
522
523 // We no longer need the relocation entries.
524 this->relocs_.clear();
525}
526
dbe717ef 527// Output_data_got::Got_entry methods.
ead1e424
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528
529// Write out the entry.
530
531template<int size, bool big_endian>
532void
a3ad94ed
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533Output_data_got<size, big_endian>::Got_entry::write(
534 const General_options* options,
535 unsigned char* pov) const
ead1e424
ILT
536{
537 Valtype val = 0;
538
539 switch (this->local_sym_index_)
540 {
541 case GSYM_CODE:
542 {
543 Symbol* gsym = this->u_.gsym;
544
545 // If the symbol is resolved locally, we need to write out its
546 // value. Otherwise we just write zero. The target code is
547 // responsible for creating a relocation entry to fill in the
548 // value at runtime.
a3ad94ed 549 if (gsym->final_value_is_known(options))
ead1e424
ILT
550 {
551 Sized_symbol<size>* sgsym;
552 // This cast is a bit ugly. We don't want to put a
553 // virtual method in Symbol, because we want Symbol to be
554 // as small as possible.
555 sgsym = static_cast<Sized_symbol<size>*>(gsym);
556 val = sgsym->value();
557 }
558 }
559 break;
560
561 case CONSTANT_CODE:
562 val = this->u_.constant;
563 break;
564
565 default:
a3ad94ed 566 gold_unreachable();
ead1e424
ILT
567 }
568
a3ad94ed 569 elfcpp::Swap<size, big_endian>::writeval(pov, val);
ead1e424
ILT
570}
571
dbe717ef 572// Output_data_got methods.
ead1e424 573
dbe717ef
ILT
574// Add an entry for a global symbol to the GOT. This returns true if
575// this is a new GOT entry, false if the symbol already had a GOT
576// entry.
577
578template<int size, bool big_endian>
579bool
580Output_data_got<size, big_endian>::add_global(Symbol* gsym)
ead1e424 581{
dbe717ef
ILT
582 if (gsym->has_got_offset())
583 return false;
ead1e424 584
dbe717ef
ILT
585 this->entries_.push_back(Got_entry(gsym));
586 this->set_got_size();
587 gsym->set_got_offset(this->last_got_offset());
588 return true;
589}
ead1e424
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590
591// Write out the GOT.
592
593template<int size, bool big_endian>
594void
dbe717ef 595Output_data_got<size, big_endian>::do_write(Output_file* of)
ead1e424
ILT
596{
597 const int add = size / 8;
598
599 const off_t off = this->offset();
c06b7b0b 600 const off_t oview_size = this->data_size();
ead1e424
ILT
601 unsigned char* const oview = of->get_output_view(off, oview_size);
602
603 unsigned char* pov = oview;
604 for (typename Got_entries::const_iterator p = this->entries_.begin();
605 p != this->entries_.end();
606 ++p)
607 {
a3ad94ed 608 p->write(this->options_, pov);
ead1e424
ILT
609 pov += add;
610 }
611
a3ad94ed 612 gold_assert(pov - oview == oview_size);
c06b7b0b 613
ead1e424
ILT
614 of->write_output_view(off, oview_size, oview);
615
616 // We no longer need the GOT entries.
617 this->entries_.clear();
618}
619
a3ad94ed
ILT
620// Output_data_dynamic::Dynamic_entry methods.
621
622// Write out the entry.
623
624template<int size, bool big_endian>
625void
626Output_data_dynamic::Dynamic_entry::write(
627 unsigned char* pov,
628 const Stringpool* pool) const
629{
630 typename elfcpp::Elf_types<size>::Elf_WXword val;
631 switch (this->classification_)
632 {
633 case DYNAMIC_NUMBER:
634 val = this->u_.val;
635 break;
636
637 case DYNAMIC_SECTION_ADDRESS:
638 val = this->u_.os->address();
639 break;
640
641 case DYNAMIC_SECTION_SIZE:
642 val = this->u_.os->data_size();
643 break;
644
645 case DYNAMIC_SYMBOL:
646 {
647 Sized_symbol<size>* s = static_cast<Sized_symbol<size>*>(this->u_.sym);
648 val = s->value();
649 }
650 break;
651
652 case DYNAMIC_STRING:
653 val = pool->get_offset(this->u_.str);
654 break;
655
656 default:
657 gold_unreachable();
658 }
659
660 elfcpp::Dyn_write<size, big_endian> dw(pov);
661 dw.put_d_tag(this->tag_);
662 dw.put_d_val(val);
663}
664
665// Output_data_dynamic methods.
666
667// Set the final data size.
668
669void
670Output_data_dynamic::do_set_address(uint64_t, off_t)
671{
672 // Add the terminating entry.
673 this->add_constant(elfcpp::DT_NULL, 0);
674
675 int dyn_size;
676 if (this->target_->get_size() == 32)
677 dyn_size = elfcpp::Elf_sizes<32>::dyn_size;
678 else if (this->target_->get_size() == 64)
679 dyn_size = elfcpp::Elf_sizes<64>::dyn_size;
680 else
681 gold_unreachable();
682 this->set_data_size(this->entries_.size() * dyn_size);
683}
684
685// Write out the dynamic entries.
686
687void
688Output_data_dynamic::do_write(Output_file* of)
689{
690 if (this->target_->get_size() == 32)
691 {
692 if (this->target_->is_big_endian())
693 this->sized_write<32, true>(of);
694 else
695 this->sized_write<32, false>(of);
696 }
697 else if (this->target_->get_size() == 64)
698 {
699 if (this->target_->is_big_endian())
700 this->sized_write<64, true>(of);
701 else
702 this->sized_write<64, false>(of);
703 }
704 else
705 gold_unreachable();
706}
707
708template<int size, bool big_endian>
709void
710Output_data_dynamic::sized_write(Output_file* of)
711{
712 const int dyn_size = elfcpp::Elf_sizes<size>::dyn_size;
713
714 const off_t offset = this->offset();
715 const off_t oview_size = this->data_size();
716 unsigned char* const oview = of->get_output_view(offset, oview_size);
717
718 unsigned char* pov = oview;
719 for (typename Dynamic_entries::const_iterator p = this->entries_.begin();
720 p != this->entries_.end();
721 ++p)
722 {
723 p->write<size, big_endian>(pov, this->pool_);
724 pov += dyn_size;
725 }
726
727 gold_assert(pov - oview == oview_size);
728
729 of->write_output_view(offset, oview_size, oview);
730
731 // We no longer need the dynamic entries.
732 this->entries_.clear();
733}
734
ead1e424
ILT
735// Output_section::Input_section methods.
736
737// Return the data size. For an input section we store the size here.
738// For an Output_section_data, we have to ask it for the size.
739
740off_t
741Output_section::Input_section::data_size() const
742{
743 if (this->is_input_section())
744 return this->data_size_;
745 else
746 return this->u_.posd->data_size();
747}
748
749// Set the address and file offset.
750
751void
752Output_section::Input_section::set_address(uint64_t addr, off_t off,
753 off_t secoff)
754{
755 if (this->is_input_section())
756 this->u_.object->set_section_offset(this->shndx_, off - secoff);
757 else
758 this->u_.posd->set_address(addr, off);
759}
760
761// Write out the data. We don't have to do anything for an input
762// section--they are handled via Object::relocate--but this is where
763// we write out the data for an Output_section_data.
764
765void
766Output_section::Input_section::write(Output_file* of)
767{
768 if (!this->is_input_section())
769 this->u_.posd->write(of);
770}
771
a2fb1b05
ILT
772// Output_section methods.
773
774// Construct an Output_section. NAME will point into a Stringpool.
775
776Output_section::Output_section(const char* name, elfcpp::Elf_Word type,
ead1e424 777 elfcpp::Elf_Xword flags, bool may_add_data)
a2fb1b05 778 : name_(name),
a2fb1b05
ILT
779 addralign_(0),
780 entsize_(0),
a2fb1b05
ILT
781 link_(0),
782 info_(0),
783 type_(type),
61ba1cf9 784 flags_(flags),
ead1e424 785 out_shndx_(0),
c06b7b0b
ILT
786 symtab_index_(0),
787 dynsym_index_(0),
ead1e424
ILT
788 input_sections_(),
789 first_input_offset_(0),
a3ad94ed
ILT
790 may_add_data_(may_add_data),
791 needs_symtab_index_(false),
792 needs_dynsym_index_(false)
a2fb1b05
ILT
793{
794}
795
54dc6425
ILT
796Output_section::~Output_section()
797{
798}
799
ead1e424
ILT
800// Add the input section SHNDX, with header SHDR, named SECNAME, in
801// OBJECT, to the Output_section. Return the offset of the input
802// section within the output section. We don't always keep track of
a2fb1b05
ILT
803// input sections for an Output_section. Instead, each Object keeps
804// track of the Output_section for each of its input sections.
805
806template<int size, bool big_endian>
807off_t
f6ce93d6 808Output_section::add_input_section(Relobj* object, unsigned int shndx,
ead1e424 809 const char* secname,
a2fb1b05
ILT
810 const elfcpp::Shdr<size, big_endian>& shdr)
811{
a3ad94ed 812 gold_assert(this->may_add_data_);
ead1e424 813
a2fb1b05
ILT
814 elfcpp::Elf_Xword addralign = shdr.get_sh_addralign();
815 if ((addralign & (addralign - 1)) != 0)
816 {
817 fprintf(stderr, _("%s: %s: invalid alignment %lu for section \"%s\"\n"),
818 program_name, object->name().c_str(),
819 static_cast<unsigned long>(addralign), secname);
820 gold_exit(false);
821 }
a2fb1b05
ILT
822
823 if (addralign > this->addralign_)
824 this->addralign_ = addralign;
825
75f65a3e 826 off_t ssize = this->data_size();
ead1e424
ILT
827 ssize = align_address(ssize, addralign);
828 this->set_data_size(ssize + shdr.get_sh_size());
a2fb1b05 829
ead1e424
ILT
830 // We need to keep track of this section if we are already keeping
831 // track of sections, or if we are relaxing. FIXME: Add test for
832 // relaxing.
833 if (! this->input_sections_.empty())
834 this->input_sections_.push_back(Input_section(object, shndx,
835 shdr.get_sh_size(),
836 addralign));
54dc6425 837
61ba1cf9
ILT
838 return ssize;
839}
840
ead1e424
ILT
841// Add arbitrary data to an output section.
842
843void
844Output_section::add_output_section_data(Output_section_data* posd)
845{
a3ad94ed 846 gold_assert(this->may_add_data_);
c06b7b0b 847
ead1e424
ILT
848 if (this->input_sections_.empty())
849 this->first_input_offset_ = this->data_size();
c06b7b0b 850
ead1e424 851 this->input_sections_.push_back(Input_section(posd));
c06b7b0b 852
ead1e424
ILT
853 uint64_t addralign = posd->addralign();
854 if (addralign > this->addralign_)
855 this->addralign_ = addralign;
c06b7b0b 856
ead1e424
ILT
857 posd->set_output_section(this);
858}
859
860// Set the address of an Output_section. This is where we handle
861// setting the addresses of any Output_section_data objects.
862
863void
864Output_section::do_set_address(uint64_t address, off_t startoff)
865{
866 if (this->input_sections_.empty())
867 return;
868
869 off_t off = startoff + this->first_input_offset_;
870 for (Input_section_list::iterator p = this->input_sections_.begin();
871 p != this->input_sections_.end();
872 ++p)
873 {
874 off = align_address(off, p->addralign());
875 p->set_address(address + (off - startoff), off, startoff);
876 off += p->data_size();
877 }
878
879 this->set_data_size(off - startoff);
880}
881
61ba1cf9
ILT
882// Write the section header to *OSHDR.
883
884template<int size, bool big_endian>
885void
886Output_section::write_header(const Stringpool* secnamepool,
887 elfcpp::Shdr_write<size, big_endian>* oshdr) const
888{
889 oshdr->put_sh_name(secnamepool->get_offset(this->name_));
890 oshdr->put_sh_type(this->type_);
891 oshdr->put_sh_flags(this->flags_);
892 oshdr->put_sh_addr(this->address());
893 oshdr->put_sh_offset(this->offset());
894 oshdr->put_sh_size(this->data_size());
895 oshdr->put_sh_link(this->link_);
896 oshdr->put_sh_info(this->info_);
897 oshdr->put_sh_addralign(this->addralign_);
898 oshdr->put_sh_entsize(this->entsize_);
a2fb1b05
ILT
899}
900
ead1e424
ILT
901// Write out the data. For input sections the data is written out by
902// Object::relocate, but we have to handle Output_section_data objects
903// here.
904
905void
906Output_section::do_write(Output_file* of)
907{
908 for (Input_section_list::iterator p = this->input_sections_.begin();
909 p != this->input_sections_.end();
910 ++p)
911 p->write(of);
912}
913
a2fb1b05
ILT
914// Output segment methods.
915
916Output_segment::Output_segment(elfcpp::Elf_Word type, elfcpp::Elf_Word flags)
54dc6425 917 : output_data_(),
75f65a3e 918 output_bss_(),
a2fb1b05
ILT
919 vaddr_(0),
920 paddr_(0),
921 memsz_(0),
922 align_(0),
923 offset_(0),
924 filesz_(0),
925 type_(type),
ead1e424
ILT
926 flags_(flags),
927 is_align_known_(false)
a2fb1b05
ILT
928{
929}
930
931// Add an Output_section to an Output_segment.
932
933void
75f65a3e 934Output_segment::add_output_section(Output_section* os,
dbe717ef
ILT
935 elfcpp::Elf_Word seg_flags,
936 bool front)
a2fb1b05 937{
a3ad94ed
ILT
938 gold_assert((os->flags() & elfcpp::SHF_ALLOC) != 0);
939 gold_assert(!this->is_align_known_);
75f65a3e 940
ead1e424 941 // Update the segment flags.
75f65a3e 942 this->flags_ |= seg_flags;
75f65a3e
ILT
943
944 Output_segment::Output_data_list* pdl;
945 if (os->type() == elfcpp::SHT_NOBITS)
946 pdl = &this->output_bss_;
947 else
948 pdl = &this->output_data_;
54dc6425 949
a2fb1b05
ILT
950 // So that PT_NOTE segments will work correctly, we need to ensure
951 // that all SHT_NOTE sections are adjacent. This will normally
952 // happen automatically, because all the SHT_NOTE input sections
953 // will wind up in the same output section. However, it is possible
954 // for multiple SHT_NOTE input sections to have different section
955 // flags, and thus be in different output sections, but for the
956 // different section flags to map into the same segment flags and
957 // thus the same output segment.
54dc6425
ILT
958
959 // Note that while there may be many input sections in an output
960 // section, there are normally only a few output sections in an
961 // output segment. This loop is expected to be fast.
962
61ba1cf9 963 if (os->type() == elfcpp::SHT_NOTE && !pdl->empty())
a2fb1b05 964 {
a3ad94ed 965 Output_segment::Output_data_list::iterator p = pdl->end();
75f65a3e 966 do
54dc6425 967 {
75f65a3e 968 --p;
54dc6425
ILT
969 if ((*p)->is_section_type(elfcpp::SHT_NOTE))
970 {
dbe717ef 971 // We don't worry about the FRONT parameter.
54dc6425 972 ++p;
75f65a3e 973 pdl->insert(p, os);
54dc6425
ILT
974 return;
975 }
976 }
75f65a3e 977 while (p != pdl->begin());
54dc6425
ILT
978 }
979
980 // Similarly, so that PT_TLS segments will work, we need to group
75f65a3e
ILT
981 // SHF_TLS sections. An SHF_TLS/SHT_NOBITS section is a special
982 // case: we group the SHF_TLS/SHT_NOBITS sections right after the
983 // SHF_TLS/SHT_PROGBITS sections. This lets us set up PT_TLS
984 // correctly.
61ba1cf9 985 if ((os->flags() & elfcpp::SHF_TLS) != 0 && !this->output_data_.empty())
54dc6425 986 {
75f65a3e
ILT
987 pdl = &this->output_data_;
988 bool nobits = os->type() == elfcpp::SHT_NOBITS;
ead1e424 989 bool sawtls = false;
a3ad94ed 990 Output_segment::Output_data_list::iterator p = pdl->end();
75f65a3e 991 do
a2fb1b05 992 {
75f65a3e 993 --p;
ead1e424
ILT
994 bool insert;
995 if ((*p)->is_section_flag_set(elfcpp::SHF_TLS))
996 {
997 sawtls = true;
998 // Put a NOBITS section after the first TLS section.
999 // But a PROGBITS section after the first TLS/PROGBITS
1000 // section.
1001 insert = nobits || !(*p)->is_section_type(elfcpp::SHT_NOBITS);
1002 }
1003 else
1004 {
1005 // If we've gone past the TLS sections, but we've seen a
1006 // TLS section, then we need to insert this section now.
1007 insert = sawtls;
1008 }
1009
1010 if (insert)
a2fb1b05 1011 {
dbe717ef 1012 // We don't worry about the FRONT parameter.
a2fb1b05 1013 ++p;
75f65a3e 1014 pdl->insert(p, os);
a2fb1b05
ILT
1015 return;
1016 }
1017 }
75f65a3e 1018 while (p != pdl->begin());
ead1e424 1019
dbe717ef
ILT
1020 // There are no TLS sections yet; put this one at the requested
1021 // location in the section list.
a2fb1b05
ILT
1022 }
1023
dbe717ef
ILT
1024 if (front)
1025 pdl->push_front(os);
1026 else
1027 pdl->push_back(os);
75f65a3e
ILT
1028}
1029
1030// Add an Output_data (which is not an Output_section) to the start of
1031// a segment.
1032
1033void
1034Output_segment::add_initial_output_data(Output_data* od)
1035{
a3ad94ed 1036 gold_assert(!this->is_align_known_);
75f65a3e
ILT
1037 this->output_data_.push_front(od);
1038}
1039
1040// Return the maximum alignment of the Output_data in Output_segment.
ead1e424 1041// Once we compute this, we prohibit new sections from being added.
75f65a3e
ILT
1042
1043uint64_t
ead1e424 1044Output_segment::addralign()
75f65a3e 1045{
ead1e424
ILT
1046 if (!this->is_align_known_)
1047 {
1048 uint64_t addralign;
1049
1050 addralign = Output_segment::maximum_alignment(&this->output_data_);
1051 if (addralign > this->align_)
1052 this->align_ = addralign;
1053
1054 addralign = Output_segment::maximum_alignment(&this->output_bss_);
1055 if (addralign > this->align_)
1056 this->align_ = addralign;
1057
1058 this->is_align_known_ = true;
1059 }
1060
75f65a3e
ILT
1061 return this->align_;
1062}
1063
ead1e424
ILT
1064// Return the maximum alignment of a list of Output_data.
1065
1066uint64_t
1067Output_segment::maximum_alignment(const Output_data_list* pdl)
1068{
1069 uint64_t ret = 0;
1070 for (Output_data_list::const_iterator p = pdl->begin();
1071 p != pdl->end();
1072 ++p)
1073 {
1074 uint64_t addralign = (*p)->addralign();
1075 if (addralign > ret)
1076 ret = addralign;
1077 }
1078 return ret;
1079}
1080
75f65a3e 1081// Set the section addresses for an Output_segment. ADDR is the
ead1e424
ILT
1082// address and *POFF is the file offset. Set the section indexes
1083// starting with *PSHNDX. Return the address of the immediately
1084// following segment. Update *POFF and *PSHNDX.
75f65a3e
ILT
1085
1086uint64_t
ead1e424
ILT
1087Output_segment::set_section_addresses(uint64_t addr, off_t* poff,
1088 unsigned int* pshndx)
75f65a3e 1089{
a3ad94ed 1090 gold_assert(this->type_ == elfcpp::PT_LOAD);
75f65a3e
ILT
1091
1092 this->vaddr_ = addr;
1093 this->paddr_ = addr;
1094
1095 off_t orig_off = *poff;
1096 this->offset_ = orig_off;
1097
ead1e424
ILT
1098 *poff = align_address(*poff, this->addralign());
1099
1100 addr = this->set_section_list_addresses(&this->output_data_, addr, poff,
1101 pshndx);
75f65a3e
ILT
1102 this->filesz_ = *poff - orig_off;
1103
1104 off_t off = *poff;
1105
61ba1cf9 1106 uint64_t ret = this->set_section_list_addresses(&this->output_bss_, addr,
ead1e424 1107 poff, pshndx);
75f65a3e
ILT
1108 this->memsz_ = *poff - orig_off;
1109
1110 // Ignore the file offset adjustments made by the BSS Output_data
1111 // objects.
1112 *poff = off;
61ba1cf9
ILT
1113
1114 return ret;
75f65a3e
ILT
1115}
1116
1117// Set the addresses in a list of Output_data structures.
1118
1119uint64_t
1120Output_segment::set_section_list_addresses(Output_data_list* pdl,
ead1e424
ILT
1121 uint64_t addr, off_t* poff,
1122 unsigned int* pshndx)
75f65a3e 1123{
ead1e424 1124 off_t startoff = *poff;
75f65a3e 1125
ead1e424 1126 off_t off = startoff;
75f65a3e
ILT
1127 for (Output_data_list::iterator p = pdl->begin();
1128 p != pdl->end();
1129 ++p)
1130 {
ead1e424
ILT
1131 off = align_address(off, (*p)->addralign());
1132 (*p)->set_address(addr + (off - startoff), off);
1133
1134 // Unless this is a PT_TLS segment, we want to ignore the size
1135 // of a SHF_TLS/SHT_NOBITS section. Such a section does not
1136 // affect the size of a PT_LOAD segment.
1137 if (this->type_ == elfcpp::PT_TLS
1138 || !(*p)->is_section_flag_set(elfcpp::SHF_TLS)
1139 || !(*p)->is_section_type(elfcpp::SHT_NOBITS))
1140 off += (*p)->data_size();
75f65a3e 1141
ead1e424
ILT
1142 if ((*p)->is_section())
1143 {
1144 (*p)->set_out_shndx(*pshndx);
1145 ++*pshndx;
1146 }
75f65a3e
ILT
1147 }
1148
1149 *poff = off;
ead1e424 1150 return addr + (off - startoff);
75f65a3e
ILT
1151}
1152
1153// For a non-PT_LOAD segment, set the offset from the sections, if
1154// any.
1155
1156void
1157Output_segment::set_offset()
1158{
a3ad94ed 1159 gold_assert(this->type_ != elfcpp::PT_LOAD);
75f65a3e
ILT
1160
1161 if (this->output_data_.empty() && this->output_bss_.empty())
1162 {
1163 this->vaddr_ = 0;
1164 this->paddr_ = 0;
1165 this->memsz_ = 0;
1166 this->align_ = 0;
1167 this->offset_ = 0;
1168 this->filesz_ = 0;
1169 return;
1170 }
1171
1172 const Output_data* first;
1173 if (this->output_data_.empty())
1174 first = this->output_bss_.front();
1175 else
1176 first = this->output_data_.front();
1177 this->vaddr_ = first->address();
1178 this->paddr_ = this->vaddr_;
1179 this->offset_ = first->offset();
1180
1181 if (this->output_data_.empty())
1182 this->filesz_ = 0;
1183 else
1184 {
1185 const Output_data* last_data = this->output_data_.back();
1186 this->filesz_ = (last_data->address()
1187 + last_data->data_size()
1188 - this->vaddr_);
1189 }
1190
1191 const Output_data* last;
1192 if (this->output_bss_.empty())
1193 last = this->output_data_.back();
1194 else
1195 last = this->output_bss_.back();
1196 this->memsz_ = (last->address()
1197 + last->data_size()
1198 - this->vaddr_);
75f65a3e
ILT
1199}
1200
1201// Return the number of Output_sections in an Output_segment.
1202
1203unsigned int
1204Output_segment::output_section_count() const
1205{
1206 return (this->output_section_count_list(&this->output_data_)
1207 + this->output_section_count_list(&this->output_bss_));
1208}
1209
1210// Return the number of Output_sections in an Output_data_list.
1211
1212unsigned int
1213Output_segment::output_section_count_list(const Output_data_list* pdl) const
1214{
1215 unsigned int count = 0;
1216 for (Output_data_list::const_iterator p = pdl->begin();
1217 p != pdl->end();
1218 ++p)
1219 {
1220 if ((*p)->is_section())
1221 ++count;
1222 }
1223 return count;
a2fb1b05
ILT
1224}
1225
61ba1cf9
ILT
1226// Write the segment data into *OPHDR.
1227
1228template<int size, bool big_endian>
1229void
ead1e424 1230Output_segment::write_header(elfcpp::Phdr_write<size, big_endian>* ophdr)
61ba1cf9
ILT
1231{
1232 ophdr->put_p_type(this->type_);
1233 ophdr->put_p_offset(this->offset_);
1234 ophdr->put_p_vaddr(this->vaddr_);
1235 ophdr->put_p_paddr(this->paddr_);
1236 ophdr->put_p_filesz(this->filesz_);
1237 ophdr->put_p_memsz(this->memsz_);
1238 ophdr->put_p_flags(this->flags_);
ead1e424 1239 ophdr->put_p_align(this->addralign());
61ba1cf9
ILT
1240}
1241
1242// Write the section headers into V.
1243
1244template<int size, bool big_endian>
1245unsigned char*
1246Output_segment::write_section_headers(const Stringpool* secnamepool,
ead1e424
ILT
1247 unsigned char* v,
1248 unsigned int *pshndx
5482377d
ILT
1249 ACCEPT_SIZE_ENDIAN) const
1250{
ead1e424
ILT
1251 // Every section that is attached to a segment must be attached to a
1252 // PT_LOAD segment, so we only write out section headers for PT_LOAD
1253 // segments.
1254 if (this->type_ != elfcpp::PT_LOAD)
1255 return v;
1256
593f47df
ILT
1257 v = this->write_section_headers_list
1258 SELECT_SIZE_ENDIAN_NAME(size, big_endian) (
1259 secnamepool, &this->output_data_, v, pshndx
1260 SELECT_SIZE_ENDIAN(size, big_endian));
1261 v = this->write_section_headers_list
1262 SELECT_SIZE_ENDIAN_NAME(size, big_endian) (
1263 secnamepool, &this->output_bss_, v, pshndx
1264 SELECT_SIZE_ENDIAN(size, big_endian));
61ba1cf9
ILT
1265 return v;
1266}
1267
1268template<int size, bool big_endian>
1269unsigned char*
1270Output_segment::write_section_headers_list(const Stringpool* secnamepool,
1271 const Output_data_list* pdl,
ead1e424
ILT
1272 unsigned char* v,
1273 unsigned int* pshndx
5482377d 1274 ACCEPT_SIZE_ENDIAN) const
61ba1cf9
ILT
1275{
1276 const int shdr_size = elfcpp::Elf_sizes<size>::shdr_size;
1277 for (Output_data_list::const_iterator p = pdl->begin();
1278 p != pdl->end();
1279 ++p)
1280 {
1281 if ((*p)->is_section())
1282 {
5482377d 1283 const Output_section* ps = static_cast<const Output_section*>(*p);
a3ad94ed 1284 gold_assert(*pshndx == ps->out_shndx());
61ba1cf9
ILT
1285 elfcpp::Shdr_write<size, big_endian> oshdr(v);
1286 ps->write_header(secnamepool, &oshdr);
1287 v += shdr_size;
ead1e424 1288 ++*pshndx;
61ba1cf9
ILT
1289 }
1290 }
1291 return v;
1292}
1293
a2fb1b05
ILT
1294// Output_file methods.
1295
61ba1cf9
ILT
1296Output_file::Output_file(const General_options& options)
1297 : options_(options),
1298 name_(options.output_file_name()),
1299 o_(-1),
1300 file_size_(0),
1301 base_(NULL)
1302{
1303}
1304
1305// Open the output file.
1306
a2fb1b05 1307void
61ba1cf9 1308Output_file::open(off_t file_size)
a2fb1b05 1309{
61ba1cf9
ILT
1310 this->file_size_ = file_size;
1311
1312 int mode = this->options_.is_relocatable() ? 0666 : 0777;
1313 int o = ::open(this->name_, O_RDWR | O_CREAT | O_TRUNC, mode);
1314 if (o < 0)
1315 {
1316 fprintf(stderr, _("%s: %s: open: %s\n"),
1317 program_name, this->name_, strerror(errno));
1318 gold_exit(false);
1319 }
1320 this->o_ = o;
1321
1322 // Write out one byte to make the file the right size.
1323 if (::lseek(o, file_size - 1, SEEK_SET) < 0)
1324 {
1325 fprintf(stderr, _("%s: %s: lseek: %s\n"),
1326 program_name, this->name_, strerror(errno));
1327 gold_exit(false);
1328 }
1329 char b = 0;
1330 if (::write(o, &b, 1) != 1)
1331 {
1332 fprintf(stderr, _("%s: %s: write: %s\n"),
1333 program_name, this->name_, strerror(errno));
1334 gold_exit(false);
1335 }
1336
1337 // Map the file into memory.
1338 void* base = ::mmap(NULL, file_size, PROT_READ | PROT_WRITE,
1339 MAP_SHARED, o, 0);
1340 if (base == MAP_FAILED)
1341 {
1342 fprintf(stderr, _("%s: %s: mmap: %s\n"),
1343 program_name, this->name_, strerror(errno));
1344 gold_exit(false);
1345 }
1346 this->base_ = static_cast<unsigned char*>(base);
1347}
1348
1349// Close the output file.
1350
1351void
1352Output_file::close()
1353{
1354 if (::munmap(this->base_, this->file_size_) < 0)
1355 {
1356 fprintf(stderr, _("%s: %s: munmap: %s\n"),
1357 program_name, this->name_, strerror(errno));
1358 gold_exit(false);
1359 }
1360 this->base_ = NULL;
1361
1362 if (::close(this->o_) < 0)
1363 {
1364 fprintf(stderr, _("%s: %s: close: %s\n"),
1365 program_name, this->name_, strerror(errno));
1366 gold_exit(false);
1367 }
1368 this->o_ = -1;
a2fb1b05
ILT
1369}
1370
1371// Instantiate the templates we need. We could use the configure
1372// script to restrict this to only the ones for implemented targets.
1373
1374template
1375off_t
1376Output_section::add_input_section<32, false>(
f6ce93d6 1377 Relobj* object,
ead1e424 1378 unsigned int shndx,
a2fb1b05
ILT
1379 const char* secname,
1380 const elfcpp::Shdr<32, false>& shdr);
1381
1382template
1383off_t
1384Output_section::add_input_section<32, true>(
f6ce93d6 1385 Relobj* object,
ead1e424 1386 unsigned int shndx,
a2fb1b05
ILT
1387 const char* secname,
1388 const elfcpp::Shdr<32, true>& shdr);
1389
1390template
1391off_t
1392Output_section::add_input_section<64, false>(
f6ce93d6 1393 Relobj* object,
ead1e424 1394 unsigned int shndx,
a2fb1b05
ILT
1395 const char* secname,
1396 const elfcpp::Shdr<64, false>& shdr);
1397
1398template
1399off_t
1400Output_section::add_input_section<64, true>(
f6ce93d6 1401 Relobj* object,
ead1e424 1402 unsigned int shndx,
a2fb1b05
ILT
1403 const char* secname,
1404 const elfcpp::Shdr<64, true>& shdr);
1405
c06b7b0b
ILT
1406template
1407class Output_data_reloc<elfcpp::SHT_REL, false, 32, false>;
1408
1409template
1410class Output_data_reloc<elfcpp::SHT_REL, false, 32, true>;
1411
1412template
1413class Output_data_reloc<elfcpp::SHT_REL, false, 64, false>;
1414
1415template
1416class Output_data_reloc<elfcpp::SHT_REL, false, 64, true>;
1417
1418template
1419class Output_data_reloc<elfcpp::SHT_REL, true, 32, false>;
1420
1421template
1422class Output_data_reloc<elfcpp::SHT_REL, true, 32, true>;
1423
1424template
1425class Output_data_reloc<elfcpp::SHT_REL, true, 64, false>;
1426
1427template
1428class Output_data_reloc<elfcpp::SHT_REL, true, 64, true>;
1429
1430template
1431class Output_data_reloc<elfcpp::SHT_RELA, false, 32, false>;
1432
1433template
1434class Output_data_reloc<elfcpp::SHT_RELA, false, 32, true>;
1435
1436template
1437class Output_data_reloc<elfcpp::SHT_RELA, false, 64, false>;
1438
1439template
1440class Output_data_reloc<elfcpp::SHT_RELA, false, 64, true>;
1441
1442template
1443class Output_data_reloc<elfcpp::SHT_RELA, true, 32, false>;
1444
1445template
1446class Output_data_reloc<elfcpp::SHT_RELA, true, 32, true>;
1447
1448template
1449class Output_data_reloc<elfcpp::SHT_RELA, true, 64, false>;
1450
1451template
1452class Output_data_reloc<elfcpp::SHT_RELA, true, 64, true>;
1453
ead1e424 1454template
dbe717ef 1455class Output_data_got<32, false>;
ead1e424
ILT
1456
1457template
dbe717ef 1458class Output_data_got<32, true>;
ead1e424
ILT
1459
1460template
dbe717ef 1461class Output_data_got<64, false>;
ead1e424
ILT
1462
1463template
dbe717ef 1464class Output_data_got<64, true>;
ead1e424 1465
a2fb1b05 1466} // End namespace gold.
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