2007-09-25 Pierre Muller <muller@ics.u-strasbg.fr>
[deliverable/binutils-gdb.git] / gold / object.cc
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1// object.cc -- support for an object file for linking in 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 <cerrno>
26#include <cstring>
645f8123 27#include <cstdarg>
bae7f79e 28
14bfc3f5 29#include "target-select.h"
a2fb1b05 30#include "layout.h"
61ba1cf9 31#include "output.h"
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32#include "symtab.h"
33#include "object.h"
34#include "dynobj.h"
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35
36namespace gold
37{
38
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39// Class Object.
40
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41// Set the target based on fields in the ELF file header.
42
43void
44Object::set_target(int machine, int size, bool big_endian, int osabi,
45 int abiversion)
46{
47 Target* target = select_target(machine, size, big_endian, osabi, abiversion);
48 if (target == NULL)
49 {
50 fprintf(stderr, _("%s: %s: unsupported ELF machine number %d\n"),
51 program_name, this->name().c_str(), machine);
52 gold_exit(false);
53 }
54 this->target_ = target;
55}
56
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57// Report an error for the elfcpp::Elf_file interface.
58
59void
60Object::error(const char* format, ...)
61{
62 va_list args;
63
64 fprintf(stderr, "%s: %s: ", program_name, this->name().c_str());
65 va_start(args, format);
66 vfprintf(stderr, format, args);
67 va_end(args);
68 putc('\n', stderr);
69
70 gold_exit(false);
71}
72
73// Return a view of the contents of a section.
74
75const unsigned char*
76Object::section_contents(unsigned int shndx, off_t* plen)
77{
78 Location loc(this->do_section_contents(shndx));
79 *plen = loc.data_size;
80 return this->get_view(loc.file_offset, loc.data_size);
81}
82
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83// Read the section data into SD. This is code common to Sized_relobj
84// and Sized_dynobj, so we put it into Object.
85
86template<int size, bool big_endian>
87void
88Object::read_section_data(elfcpp::Elf_file<size, big_endian, Object>* elf_file,
89 Read_symbols_data* sd)
90{
91 const int shdr_size = elfcpp::Elf_sizes<size>::shdr_size;
92
93 // Read the section headers.
94 const off_t shoff = elf_file->shoff();
95 const unsigned int shnum = this->shnum();
96 sd->section_headers = this->get_lasting_view(shoff, shnum * shdr_size);
97
98 // Read the section names.
99 const unsigned char* pshdrs = sd->section_headers->data();
100 const unsigned char* pshdrnames = pshdrs + elf_file->shstrndx() * shdr_size;
101 typename elfcpp::Shdr<size, big_endian> shdrnames(pshdrnames);
102
103 if (shdrnames.get_sh_type() != elfcpp::SHT_STRTAB)
104 {
105 fprintf(stderr,
106 _("%s: %s: section name section has wrong type: %u\n"),
107 program_name, this->name().c_str(),
108 static_cast<unsigned int>(shdrnames.get_sh_type()));
109 gold_exit(false);
110 }
111
112 sd->section_names_size = shdrnames.get_sh_size();
113 sd->section_names = this->get_lasting_view(shdrnames.get_sh_offset(),
114 sd->section_names_size);
115}
116
117// If NAME is the name of a special .gnu.warning section, arrange for
118// the warning to be issued. SHNDX is the section index. Return
119// whether it is a warning section.
120
121bool
122Object::handle_gnu_warning_section(const char* name, unsigned int shndx,
123 Symbol_table* symtab)
124{
125 const char warn_prefix[] = ".gnu.warning.";
126 const int warn_prefix_len = sizeof warn_prefix - 1;
127 if (strncmp(name, warn_prefix, warn_prefix_len) == 0)
128 {
129 symtab->add_warning(name + warn_prefix_len, this, shndx);
130 return true;
131 }
132 return false;
133}
134
f6ce93d6 135// Class Sized_relobj.
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136
137template<int size, bool big_endian>
f6ce93d6 138Sized_relobj<size, big_endian>::Sized_relobj(
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139 const std::string& name,
140 Input_file* input_file,
141 off_t offset,
142 const elfcpp::Ehdr<size, big_endian>& ehdr)
f6ce93d6 143 : Relobj(name, input_file, offset),
645f8123 144 elf_file_(this, ehdr),
dbe717ef 145 symtab_shndx_(-1U),
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146 local_symbol_count_(0),
147 output_local_symbol_count_(0),
75f65a3e 148 symbols_(NULL),
61ba1cf9 149 local_symbol_offset_(0),
b8e6aad9 150 local_values_()
bae7f79e 151{
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152}
153
154template<int size, bool big_endian>
f6ce93d6 155Sized_relobj<size, big_endian>::~Sized_relobj()
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156{
157}
158
645f8123 159// Set up an object file based on the file header. This sets up the
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160// target and reads the section information.
161
162template<int size, bool big_endian>
163void
f6ce93d6 164Sized_relobj<size, big_endian>::setup(
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165 const elfcpp::Ehdr<size, big_endian>& ehdr)
166{
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167 this->set_target(ehdr.get_e_machine(), size, big_endian,
168 ehdr.get_e_ident()[elfcpp::EI_OSABI],
169 ehdr.get_e_ident()[elfcpp::EI_ABIVERSION]);
12e14209 170
dbe717ef 171 const unsigned int shnum = this->elf_file_.shnum();
a2fb1b05 172 this->set_shnum(shnum);
dbe717ef 173}
12e14209 174
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175// Find the SHT_SYMTAB section, given the section headers. The ELF
176// standard says that maybe in the future there can be more than one
177// SHT_SYMTAB section. Until somebody figures out how that could
178// work, we assume there is only one.
12e14209 179
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180template<int size, bool big_endian>
181void
182Sized_relobj<size, big_endian>::find_symtab(const unsigned char* pshdrs)
183{
184 const unsigned int shnum = this->shnum();
185 this->symtab_shndx_ = 0;
186 if (shnum > 0)
bae7f79e 187 {
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188 // Look through the sections in reverse order, since gas tends
189 // to put the symbol table at the end.
190 const unsigned char* p = pshdrs + shnum * This::shdr_size;
191 unsigned int i = shnum;
192 while (i > 0)
bae7f79e 193 {
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194 --i;
195 p -= This::shdr_size;
196 typename This::Shdr shdr(p);
197 if (shdr.get_sh_type() == elfcpp::SHT_SYMTAB)
198 {
199 this->symtab_shndx_ = i;
200 break;
201 }
bae7f79e 202 }
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203 }
204}
205
12e14209 206// Read the sections and symbols from an object file.
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207
208template<int size, bool big_endian>
12e14209 209void
f6ce93d6 210Sized_relobj<size, big_endian>::do_read_symbols(Read_symbols_data* sd)
bae7f79e 211{
dbe717ef 212 this->read_section_data(&this->elf_file_, sd);
12e14209 213
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214 const unsigned char* const pshdrs = sd->section_headers->data();
215
216 this->find_symtab(pshdrs);
12e14209 217
645f8123 218 if (this->symtab_shndx_ == 0)
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219 {
220 // No symbol table. Weird but legal.
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221 sd->symbols = NULL;
222 sd->symbols_size = 0;
223 sd->symbol_names = NULL;
224 sd->symbol_names_size = 0;
225 return;
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226 }
227
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228 // Get the symbol table section header.
229 typename This::Shdr symtabshdr(pshdrs
645f8123 230 + this->symtab_shndx_ * This::shdr_size);
a3ad94ed 231 gold_assert(symtabshdr.get_sh_type() == elfcpp::SHT_SYMTAB);
bae7f79e 232
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233 // We only need the external symbols.
234 const int sym_size = This::sym_size;
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235 const unsigned int loccount = symtabshdr.get_sh_info();
236 this->local_symbol_count_ = loccount;
237 off_t locsize = loccount * sym_size;
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238 off_t extoff = symtabshdr.get_sh_offset() + locsize;
239 off_t extsize = symtabshdr.get_sh_size() - locsize;
240
bae7f79e 241 // Read the symbol table.
75f65a3e 242 File_view* fvsymtab = this->get_lasting_view(extoff, extsize);
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243
244 // Read the section header for the symbol names.
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245 unsigned int strtab_shndx = symtabshdr.get_sh_link();
246 if (strtab_shndx >= this->shnum())
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247 {
248 fprintf(stderr, _("%s: %s: invalid symbol table name index: %u\n"),
dbe717ef 249 program_name, this->name().c_str(), strtab_shndx);
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250 gold_exit(false);
251 }
dbe717ef 252 typename This::Shdr strtabshdr(pshdrs + strtab_shndx * This::shdr_size);
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253 if (strtabshdr.get_sh_type() != elfcpp::SHT_STRTAB)
254 {
255 fprintf(stderr,
256 _("%s: %s: symbol table name section has wrong type: %u\n"),
257 program_name, this->name().c_str(),
258 static_cast<unsigned int>(strtabshdr.get_sh_type()));
259 gold_exit(false);
260 }
261
262 // Read the symbol names.
263 File_view* fvstrtab = this->get_lasting_view(strtabshdr.get_sh_offset(),
264 strtabshdr.get_sh_size());
265
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266 sd->symbols = fvsymtab;
267 sd->symbols_size = extsize;
268 sd->symbol_names = fvstrtab;
269 sd->symbol_names_size = strtabshdr.get_sh_size();
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270}
271
272// Return whether to include a section group in the link. LAYOUT is
273// used to keep track of which section groups we have already seen.
274// INDEX is the index of the section group and SHDR is the section
275// header. If we do not want to include this group, we set bits in
276// OMIT for each section which should be discarded.
277
278template<int size, bool big_endian>
279bool
f6ce93d6 280Sized_relobj<size, big_endian>::include_section_group(
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281 Layout* layout,
282 unsigned int index,
283 const elfcpp::Shdr<size, big_endian>& shdr,
284 std::vector<bool>* omit)
285{
286 // Read the section contents.
287 const unsigned char* pcon = this->get_view(shdr.get_sh_offset(),
288 shdr.get_sh_size());
289 const elfcpp::Elf_Word* pword =
290 reinterpret_cast<const elfcpp::Elf_Word*>(pcon);
291
292 // The first word contains flags. We only care about COMDAT section
293 // groups. Other section groups are always included in the link
294 // just like ordinary sections.
f6ce93d6 295 elfcpp::Elf_Word flags = elfcpp::Swap<32, big_endian>::readval(pword);
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296 if ((flags & elfcpp::GRP_COMDAT) == 0)
297 return true;
298
299 // Look up the group signature, which is the name of a symbol. This
300 // is a lot of effort to go to to read a string. Why didn't they
301 // just use the name of the SHT_GROUP section as the group
302 // signature?
303
304 // Get the appropriate symbol table header (this will normally be
305 // the single SHT_SYMTAB section, but in principle it need not be).
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306 const unsigned int link = shdr.get_sh_link();
307 typename This::Shdr symshdr(this, this->elf_file_.section_header(link));
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308
309 // Read the symbol table entry.
310 if (shdr.get_sh_info() >= symshdr.get_sh_size() / This::sym_size)
311 {
312 fprintf(stderr, _("%s: %s: section group %u info %u out of range\n"),
313 program_name, this->name().c_str(), index, shdr.get_sh_info());
314 gold_exit(false);
315 }
316 off_t symoff = symshdr.get_sh_offset() + shdr.get_sh_info() * This::sym_size;
317 const unsigned char* psym = this->get_view(symoff, This::sym_size);
318 elfcpp::Sym<size, big_endian> sym(psym);
319
a2fb1b05 320 // Read the symbol table names.
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321 off_t symnamelen;
322 const unsigned char* psymnamesu;
323 psymnamesu = this->section_contents(symshdr.get_sh_link(), &symnamelen);
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324 const char* psymnames = reinterpret_cast<const char*>(psymnamesu);
325
326 // Get the section group signature.
645f8123 327 if (sym.get_st_name() >= symnamelen)
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328 {
329 fprintf(stderr, _("%s: %s: symbol %u name offset %u out of range\n"),
330 program_name, this->name().c_str(), shdr.get_sh_info(),
331 sym.get_st_name());
332 gold_exit(false);
333 }
334
335 const char* signature = psymnames + sym.get_st_name();
336
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337 // It seems that some versions of gas will create a section group
338 // associated with a section symbol, and then fail to give a name to
339 // the section symbol. In such a case, use the name of the section.
340 // FIXME.
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341 std::string secname;
342 if (signature[0] == '\0' && sym.get_st_type() == elfcpp::STT_SECTION)
ead1e424 343 {
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344 secname = this->section_name(sym.get_st_shndx());
345 signature = secname.c_str();
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346 }
347
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348 // Record this section group, and see whether we've already seen one
349 // with the same signature.
350 if (layout->add_comdat(signature, true))
351 return true;
352
353 // This is a duplicate. We want to discard the sections in this
354 // group.
355 size_t count = shdr.get_sh_size() / sizeof(elfcpp::Elf_Word);
356 for (size_t i = 1; i < count; ++i)
357 {
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358 elfcpp::Elf_Word secnum =
359 elfcpp::Swap<32, big_endian>::readval(pword + i);
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360 if (secnum >= this->shnum())
361 {
362 fprintf(stderr,
363 _("%s: %s: section %u in section group %u out of range"),
364 program_name, this->name().c_str(), secnum,
365 index);
366 gold_exit(false);
367 }
368 (*omit)[secnum] = true;
369 }
370
371 return false;
372}
373
374// Whether to include a linkonce section in the link. NAME is the
375// name of the section and SHDR is the section header.
376
377// Linkonce sections are a GNU extension implemented in the original
378// GNU linker before section groups were defined. The semantics are
379// that we only include one linkonce section with a given name. The
380// name of a linkonce section is normally .gnu.linkonce.T.SYMNAME,
381// where T is the type of section and SYMNAME is the name of a symbol.
382// In an attempt to make linkonce sections interact well with section
383// groups, we try to identify SYMNAME and use it like a section group
384// signature. We want to block section groups with that signature,
385// but not other linkonce sections with that signature. We also use
386// the full name of the linkonce section as a normal section group
387// signature.
388
389template<int size, bool big_endian>
390bool
f6ce93d6 391Sized_relobj<size, big_endian>::include_linkonce_section(
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392 Layout* layout,
393 const char* name,
394 const elfcpp::Shdr<size, big_endian>&)
395{
396 const char* symname = strrchr(name, '.') + 1;
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397 bool include1 = layout->add_comdat(symname, false);
398 bool include2 = layout->add_comdat(name, true);
399 return include1 && include2;
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400}
401
402// Lay out the input sections. We walk through the sections and check
403// whether they should be included in the link. If they should, we
404// pass them to the Layout object, which will return an output section
405// and an offset.
406
407template<int size, bool big_endian>
408void
7e1edb90 409Sized_relobj<size, big_endian>::do_layout(Symbol_table* symtab,
f6ce93d6 410 Layout* layout,
12e14209 411 Read_symbols_data* sd)
a2fb1b05 412{
dbe717ef 413 const unsigned int shnum = this->shnum();
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414 if (shnum == 0)
415 return;
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416
417 // Get the section headers.
12e14209 418 const unsigned char* pshdrs = sd->section_headers->data();
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419
420 // Get the section names.
12e14209 421 const unsigned char* pnamesu = sd->section_names->data();
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422 const char* pnames = reinterpret_cast<const char*>(pnamesu);
423
424 std::vector<Map_to_output>& map_sections(this->map_to_output());
61ba1cf9 425 map_sections.resize(shnum);
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426
427 // Keep track of which sections to omit.
428 std::vector<bool> omit(shnum, false);
429
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430 // Skip the first, dummy, section.
431 pshdrs += This::shdr_size;
432 for (unsigned int i = 1; i < shnum; ++i, pshdrs += This::shdr_size)
a2fb1b05 433 {
75f65a3e 434 typename This::Shdr shdr(pshdrs);
a2fb1b05 435
12e14209 436 if (shdr.get_sh_name() >= sd->section_names_size)
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437 {
438 fprintf(stderr,
439 _("%s: %s: bad section name offset for section %u: %lu\n"),
440 program_name, this->name().c_str(), i,
441 static_cast<unsigned long>(shdr.get_sh_name()));
442 gold_exit(false);
443 }
444
445 const char* name = pnames + shdr.get_sh_name();
446
dbe717ef 447 if (this->handle_gnu_warning_section(name, i, symtab))
f6ce93d6 448 {
7e1edb90 449 if (!parameters->output_is_object())
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450 omit[i] = true;
451 }
452
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453 bool discard = omit[i];
454 if (!discard)
455 {
456 if (shdr.get_sh_type() == elfcpp::SHT_GROUP)
457 {
458 if (!this->include_section_group(layout, i, shdr, &omit))
459 discard = true;
460 }
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461 else if ((shdr.get_sh_flags() & elfcpp::SHF_GROUP) == 0
462 && Layout::is_linkonce(name))
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463 {
464 if (!this->include_linkonce_section(layout, name, shdr))
465 discard = true;
466 }
467 }
468
469 if (discard)
470 {
471 // Do not include this section in the link.
472 map_sections[i].output_section = NULL;
473 continue;
474 }
475
476 off_t offset;
ead1e424 477 Output_section* os = layout->layout(this, i, name, shdr, &offset);
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478
479 map_sections[i].output_section = os;
480 map_sections[i].offset = offset;
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481 }
482
483 delete sd->section_headers;
484 sd->section_headers = NULL;
485 delete sd->section_names;
486 sd->section_names = NULL;
487}
488
489// Add the symbols to the symbol table.
490
491template<int size, bool big_endian>
492void
f6ce93d6 493Sized_relobj<size, big_endian>::do_add_symbols(Symbol_table* symtab,
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494 Read_symbols_data* sd)
495{
496 if (sd->symbols == NULL)
497 {
a3ad94ed 498 gold_assert(sd->symbol_names == NULL);
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499 return;
500 }
a2fb1b05 501
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502 const int sym_size = This::sym_size;
503 size_t symcount = sd->symbols_size / sym_size;
504 if (symcount * sym_size != sd->symbols_size)
505 {
506 fprintf(stderr,
507 _("%s: %s: size of symbols is not multiple of symbol size\n"),
508 program_name, this->name().c_str());
509 gold_exit(false);
a2fb1b05 510 }
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511
512 this->symbols_ = new Symbol*[symcount];
513
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514 const char* sym_names =
515 reinterpret_cast<const char*>(sd->symbol_names->data());
193a53d9 516 symtab->add_from_relobj(this, sd->symbols->data(), symcount, sym_names,
dbe717ef 517 sd->symbol_names_size, this->symbols_);
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518
519 delete sd->symbols;
520 sd->symbols = NULL;
521 delete sd->symbol_names;
522 sd->symbol_names = NULL;
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523}
524
75f65a3e 525// Finalize the local symbols. Here we record the file offset at
61ba1cf9 526// which they should be output, we add their names to *POOL, and we
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527// add their values to THIS->LOCAL_VALUES_. Return the symbol index.
528// This function is always called from the main thread. The actual
529// output of the local symbols will occur in a separate task.
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530
531template<int size, bool big_endian>
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532unsigned int
533Sized_relobj<size, big_endian>::do_finalize_local_symbols(unsigned int index,
534 off_t off,
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535 Stringpool* pool)
536{
a3ad94ed 537 gold_assert(this->symtab_shndx_ != -1U);
645f8123 538 if (this->symtab_shndx_ == 0)
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539 {
540 // This object has no symbols. Weird but legal.
c06b7b0b 541 return index;
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542 }
543
a3ad94ed 544 gold_assert(off == static_cast<off_t>(align_address(off, size >> 3)));
61ba1cf9 545
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546 this->local_symbol_offset_ = off;
547
548 // Read the symbol table section header.
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549 const unsigned int symtab_shndx = this->symtab_shndx_;
550 typename This::Shdr symtabshdr(this,
551 this->elf_file_.section_header(symtab_shndx));
a3ad94ed 552 gold_assert(symtabshdr.get_sh_type() == elfcpp::SHT_SYMTAB);
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553
554 // Read the local symbols.
75f65a3e 555 const int sym_size = This::sym_size;
92e059d8 556 const unsigned int loccount = this->local_symbol_count_;
a3ad94ed 557 gold_assert(loccount == symtabshdr.get_sh_info());
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558 off_t locsize = loccount * sym_size;
559 const unsigned char* psyms = this->get_view(symtabshdr.get_sh_offset(),
560 locsize);
561
c06b7b0b 562 this->local_values_.resize(loccount);
61ba1cf9 563
75f65a3e 564 // Read the symbol names.
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565 const unsigned int strtab_shndx = symtabshdr.get_sh_link();
566 off_t strtab_size;
567 const unsigned char* pnamesu = this->section_contents(strtab_shndx,
568 &strtab_size);
75f65a3e
ILT
569 const char* pnames = reinterpret_cast<const char*>(pnamesu);
570
571 // Loop over the local symbols.
572
c06b7b0b 573 const std::vector<Map_to_output>& mo(this->map_to_output());
75f65a3e 574 unsigned int shnum = this->shnum();
61ba1cf9 575 unsigned int count = 0;
75f65a3e
ILT
576 // Skip the first, dummy, symbol.
577 psyms += sym_size;
61ba1cf9 578 for (unsigned int i = 1; i < loccount; ++i, psyms += sym_size)
75f65a3e
ILT
579 {
580 elfcpp::Sym<size, big_endian> sym(psyms);
581
b8e6aad9
ILT
582 Symbol_value<size>& lv(this->local_values_[i]);
583
75f65a3e 584 unsigned int shndx = sym.get_st_shndx();
b8e6aad9 585 lv.set_input_shndx(shndx);
75f65a3e
ILT
586
587 if (shndx >= elfcpp::SHN_LORESERVE)
588 {
61ba1cf9 589 if (shndx == elfcpp::SHN_ABS)
b8e6aad9 590 lv.set_output_value(sym.get_st_value());
61ba1cf9 591 else
75f65a3e 592 {
61ba1cf9 593 // FIXME: Handle SHN_XINDEX.
75f65a3e
ILT
594 fprintf(stderr,
595 _("%s: %s: unknown section index %u "
596 "for local symbol %u\n"),
597 program_name, this->name().c_str(), shndx, i);
598 gold_exit(false);
599 }
75f65a3e
ILT
600 }
601 else
602 {
603 if (shndx >= shnum)
604 {
605 fprintf(stderr,
606 _("%s: %s: local symbol %u section index %u "
607 "out of range\n"),
608 program_name, this->name().c_str(), i, shndx);
609 gold_exit(false);
610 }
611
b8e6aad9
ILT
612 Output_section* os = mo[shndx].output_section;
613
614 if (os == NULL)
61ba1cf9 615 {
b8e6aad9
ILT
616 lv.set_output_value(0);
617 lv.set_no_output_symtab_entry();
61ba1cf9
ILT
618 continue;
619 }
620
b8e6aad9
ILT
621 if (mo[shndx].offset == -1)
622 lv.set_input_value(sym.get_st_value());
623 else
624 lv.set_output_value(mo[shndx].output_section->address()
625 + mo[shndx].offset
626 + sym.get_st_value());
75f65a3e
ILT
627 }
628
c06b7b0b
ILT
629 // Decide whether this symbol should go into the output file.
630
631 if (sym.get_st_type() == elfcpp::STT_SECTION)
f6ce93d6 632 {
b8e6aad9 633 lv.set_no_output_symtab_entry();
c06b7b0b
ILT
634 continue;
635 }
645f8123 636
c06b7b0b
ILT
637 if (sym.get_st_name() >= strtab_size)
638 {
639 fprintf(stderr,
640 _("%s: %s: local symbol %u section name "
641 "out of range: %u >= %u\n"),
642 program_name, this->name().c_str(),
643 i, sym.get_st_name(),
644 static_cast<unsigned int>(strtab_size));
645 gold_exit(false);
f6ce93d6 646 }
c06b7b0b
ILT
647
648 const char* name = pnames + sym.get_st_name();
649 pool->add(name, NULL);
b8e6aad9 650 lv.set_output_symtab_index(index);
c06b7b0b 651 ++index;
c06b7b0b 652 ++count;
75f65a3e
ILT
653 }
654
61ba1cf9
ILT
655 this->output_local_symbol_count_ = count;
656
c06b7b0b 657 return index;
75f65a3e
ILT
658}
659
b8e6aad9
ILT
660// Return the value of a local symbol defined in input section SHNDX,
661// with value VALUE, adding addend ADDEND. This handles SHF_MERGE
662// sections.
663template<int size, bool big_endian>
664typename elfcpp::Elf_types<size>::Elf_Addr
665Sized_relobj<size, big_endian>::local_value(unsigned int shndx,
666 Address value,
667 Address addend) const
668{
669 const std::vector<Map_to_output>& mo(this->map_to_output());
670 Output_section* os = mo[shndx].output_section;
671 if (os == NULL)
672 return addend;
673 gold_assert(mo[shndx].offset == -1);
674 return os->output_address(this, shndx, value + addend);
675}
676
61ba1cf9
ILT
677// Write out the local symbols.
678
679template<int size, bool big_endian>
680void
f6ce93d6 681Sized_relobj<size, big_endian>::write_local_symbols(Output_file* of,
61ba1cf9
ILT
682 const Stringpool* sympool)
683{
a3ad94ed 684 gold_assert(this->symtab_shndx_ != -1U);
645f8123 685 if (this->symtab_shndx_ == 0)
61ba1cf9
ILT
686 {
687 // This object has no symbols. Weird but legal.
688 return;
689 }
690
691 // Read the symbol table section header.
645f8123
ILT
692 const unsigned int symtab_shndx = this->symtab_shndx_;
693 typename This::Shdr symtabshdr(this,
694 this->elf_file_.section_header(symtab_shndx));
a3ad94ed 695 gold_assert(symtabshdr.get_sh_type() == elfcpp::SHT_SYMTAB);
92e059d8 696 const unsigned int loccount = this->local_symbol_count_;
a3ad94ed 697 gold_assert(loccount == symtabshdr.get_sh_info());
61ba1cf9
ILT
698
699 // Read the local symbols.
700 const int sym_size = This::sym_size;
92e059d8 701 off_t locsize = loccount * sym_size;
61ba1cf9
ILT
702 const unsigned char* psyms = this->get_view(symtabshdr.get_sh_offset(),
703 locsize);
704
61ba1cf9 705 // Read the symbol names.
645f8123
ILT
706 const unsigned int strtab_shndx = symtabshdr.get_sh_link();
707 off_t strtab_size;
708 const unsigned char* pnamesu = this->section_contents(strtab_shndx,
709 &strtab_size);
61ba1cf9
ILT
710 const char* pnames = reinterpret_cast<const char*>(pnamesu);
711
712 // Get a view into the output file.
713 off_t output_size = this->output_local_symbol_count_ * sym_size;
714 unsigned char* oview = of->get_output_view(this->local_symbol_offset_,
715 output_size);
716
c06b7b0b
ILT
717 const std::vector<Map_to_output>& mo(this->map_to_output());
718
a3ad94ed 719 gold_assert(this->local_values_.size() == loccount);
61ba1cf9 720
61ba1cf9 721 unsigned char* ov = oview;
c06b7b0b 722 psyms += sym_size;
92e059d8 723 for (unsigned int i = 1; i < loccount; ++i, psyms += sym_size)
61ba1cf9
ILT
724 {
725 elfcpp::Sym<size, big_endian> isym(psyms);
f6ce93d6 726
b8e6aad9 727 if (!this->local_values_[i].needs_output_symtab_entry())
f6ce93d6 728 continue;
61ba1cf9
ILT
729
730 unsigned int st_shndx = isym.get_st_shndx();
731 if (st_shndx < elfcpp::SHN_LORESERVE)
732 {
a3ad94ed 733 gold_assert(st_shndx < mo.size());
61ba1cf9
ILT
734 if (mo[st_shndx].output_section == NULL)
735 continue;
ead1e424 736 st_shndx = mo[st_shndx].output_section->out_shndx();
61ba1cf9
ILT
737 }
738
f6ce93d6
ILT
739 elfcpp::Sym_write<size, big_endian> osym(ov);
740
a3ad94ed 741 gold_assert(isym.get_st_name() < strtab_size);
c06b7b0b
ILT
742 const char* name = pnames + isym.get_st_name();
743 osym.put_st_name(sympool->get_offset(name));
b8e6aad9 744 osym.put_st_value(this->local_values_[i].value(this, 0));
61ba1cf9
ILT
745 osym.put_st_size(isym.get_st_size());
746 osym.put_st_info(isym.get_st_info());
747 osym.put_st_other(isym.get_st_other());
748 osym.put_st_shndx(st_shndx);
749
750 ov += sym_size;
751 }
752
a3ad94ed 753 gold_assert(ov - oview == output_size);
61ba1cf9
ILT
754
755 of->write_output_view(this->local_symbol_offset_, output_size, oview);
756}
757
54dc6425
ILT
758// Input_objects methods.
759
008db82e
ILT
760// Add a regular relocatable object to the list. Return false if this
761// object should be ignored.
f6ce93d6 762
008db82e 763bool
54dc6425
ILT
764Input_objects::add_object(Object* obj)
765{
008db82e 766 if (!obj->is_dynamic())
f6ce93d6 767 this->relobj_list_.push_back(static_cast<Relobj*>(obj));
008db82e
ILT
768 else
769 {
770 // See if this is a duplicate SONAME.
771 Dynobj* dynobj = static_cast<Dynobj*>(obj);
772
773 std::pair<Unordered_set<std::string>::iterator, bool> ins =
774 this->sonames_.insert(dynobj->soname());
775 if (!ins.second)
776 {
777 // We have already seen a dynamic object with this soname.
778 return false;
779 }
780
781 this->dynobj_list_.push_back(dynobj);
782 }
75f65a3e
ILT
783
784 Target* target = obj->target();
785 if (this->target_ == NULL)
786 this->target_ = target;
787 else if (this->target_ != target)
788 {
789 fprintf(stderr, "%s: %s: incompatible target\n",
790 program_name, obj->name().c_str());
791 gold_exit(false);
792 }
008db82e
ILT
793
794 return true;
54dc6425
ILT
795}
796
92e059d8
ILT
797// Relocate_info methods.
798
799// Return a string describing the location of a relocation. This is
800// only used in error messages.
801
802template<int size, bool big_endian>
803std::string
804Relocate_info<size, big_endian>::location(size_t relnum, off_t) const
805{
806 std::string ret(this->object->name());
807 ret += ": reloc ";
808 char buf[100];
809 snprintf(buf, sizeof buf, "%zu", relnum);
810 ret += buf;
811 ret += " in reloc section ";
812 snprintf(buf, sizeof buf, "%u", this->reloc_shndx);
813 ret += buf;
814 ret += " (" + this->object->section_name(this->reloc_shndx);
815 ret += ") for section ";
816 snprintf(buf, sizeof buf, "%u", this->data_shndx);
817 ret += buf;
818 ret += " (" + this->object->section_name(this->data_shndx) + ")";
819 return ret;
820}
821
bae7f79e
ILT
822} // End namespace gold.
823
824namespace
825{
826
827using namespace gold;
828
829// Read an ELF file with the header and return the appropriate
830// instance of Object.
831
832template<int size, bool big_endian>
833Object*
834make_elf_sized_object(const std::string& name, Input_file* input_file,
835 off_t offset, const elfcpp::Ehdr<size, big_endian>& ehdr)
836{
837 int et = ehdr.get_e_type();
bae7f79e
ILT
838 if (et == elfcpp::ET_REL)
839 {
f6ce93d6
ILT
840 Sized_relobj<size, big_endian>* obj =
841 new Sized_relobj<size, big_endian>(name, input_file, offset, ehdr);
bae7f79e
ILT
842 obj->setup(ehdr);
843 return obj;
844 }
dbe717ef
ILT
845 else if (et == elfcpp::ET_DYN)
846 {
847 Sized_dynobj<size, big_endian>* obj =
848 new Sized_dynobj<size, big_endian>(name, input_file, offset, ehdr);
849 obj->setup(ehdr);
850 return obj;
851 }
bae7f79e
ILT
852 else
853 {
dbe717ef
ILT
854 fprintf(stderr, _("%s: %s: unsupported ELF file type %d\n"),
855 program_name, name.c_str(), et);
bae7f79e 856 gold_exit(false);
bae7f79e
ILT
857 }
858}
859
860} // End anonymous namespace.
861
862namespace gold
863{
864
865// Read an ELF file and return the appropriate instance of Object.
866
867Object*
868make_elf_object(const std::string& name, Input_file* input_file, off_t offset,
869 const unsigned char* p, off_t bytes)
870{
871 if (bytes < elfcpp::EI_NIDENT)
872 {
873 fprintf(stderr, _("%s: %s: ELF file too short\n"),
874 program_name, name.c_str());
875 gold_exit(false);
876 }
877
878 int v = p[elfcpp::EI_VERSION];
879 if (v != elfcpp::EV_CURRENT)
880 {
881 if (v == elfcpp::EV_NONE)
882 fprintf(stderr, _("%s: %s: invalid ELF version 0\n"),
883 program_name, name.c_str());
884 else
885 fprintf(stderr, _("%s: %s: unsupported ELF version %d\n"),
886 program_name, name.c_str(), v);
887 gold_exit(false);
888 }
889
890 int c = p[elfcpp::EI_CLASS];
891 if (c == elfcpp::ELFCLASSNONE)
892 {
893 fprintf(stderr, _("%s: %s: invalid ELF class 0\n"),
894 program_name, name.c_str());
895 gold_exit(false);
896 }
897 else if (c != elfcpp::ELFCLASS32
898 && c != elfcpp::ELFCLASS64)
899 {
900 fprintf(stderr, _("%s: %s: unsupported ELF class %d\n"),
901 program_name, name.c_str(), c);
902 gold_exit(false);
903 }
904
905 int d = p[elfcpp::EI_DATA];
906 if (d == elfcpp::ELFDATANONE)
907 {
908 fprintf(stderr, _("%s: %s: invalid ELF data encoding\n"),
909 program_name, name.c_str());
910 gold_exit(false);
911 }
912 else if (d != elfcpp::ELFDATA2LSB
913 && d != elfcpp::ELFDATA2MSB)
914 {
915 fprintf(stderr, _("%s: %s: unsupported ELF data encoding %d\n"),
916 program_name, name.c_str(), d);
917 gold_exit(false);
918 }
919
920 bool big_endian = d == elfcpp::ELFDATA2MSB;
921
922 if (c == elfcpp::ELFCLASS32)
923 {
924 if (bytes < elfcpp::Elf_sizes<32>::ehdr_size)
925 {
926 fprintf(stderr, _("%s: %s: ELF file too short\n"),
927 program_name, name.c_str());
928 gold_exit(false);
929 }
930 if (big_endian)
931 {
193a53d9 932#ifdef HAVE_TARGET_32_BIG
bae7f79e
ILT
933 elfcpp::Ehdr<32, true> ehdr(p);
934 return make_elf_sized_object<32, true>(name, input_file,
935 offset, ehdr);
193a53d9
ILT
936#else
937 fprintf(stderr,
938 _("%s: %s: not configured to support 32-bit big-endian object\n"),
939 program_name, name.c_str());
940 gold_exit(false);
941#endif
bae7f79e
ILT
942 }
943 else
944 {
193a53d9 945#ifdef HAVE_TARGET_32_LITTLE
bae7f79e
ILT
946 elfcpp::Ehdr<32, false> ehdr(p);
947 return make_elf_sized_object<32, false>(name, input_file,
948 offset, ehdr);
193a53d9
ILT
949#else
950 fprintf(stderr,
951 _("%s: %s: not configured to support 32-bit little-endian object\n"),
952 program_name, name.c_str());
953 gold_exit(false);
954#endif
bae7f79e
ILT
955 }
956 }
957 else
958 {
959 if (bytes < elfcpp::Elf_sizes<32>::ehdr_size)
960 {
961 fprintf(stderr, _("%s: %s: ELF file too short\n"),
962 program_name, name.c_str());
963 gold_exit(false);
964 }
965 if (big_endian)
966 {
193a53d9 967#ifdef HAVE_TARGET_64_BIG
bae7f79e
ILT
968 elfcpp::Ehdr<64, true> ehdr(p);
969 return make_elf_sized_object<64, true>(name, input_file,
970 offset, ehdr);
193a53d9
ILT
971#else
972 fprintf(stderr,
973 _("%s: %s: not configured to support 64-bit big-endian object\n"),
974 program_name, name.c_str());
975 gold_exit(false);
976#endif
bae7f79e
ILT
977 }
978 else
979 {
193a53d9 980#ifdef HAVE_TARGET_64_LITTLE
bae7f79e
ILT
981 elfcpp::Ehdr<64, false> ehdr(p);
982 return make_elf_sized_object<64, false>(name, input_file,
983 offset, ehdr);
193a53d9
ILT
984#else
985 fprintf(stderr,
986 _("%s: %s: not configured to support 64-bit little-endian object\n"),
987 program_name, name.c_str());
988 gold_exit(false);
989#endif
bae7f79e
ILT
990 }
991 }
992}
993
994// Instantiate the templates we need. We could use the configure
995// script to restrict this to only the ones for implemented targets.
996
193a53d9 997#ifdef HAVE_TARGET_32_LITTLE
bae7f79e 998template
f6ce93d6 999class Sized_relobj<32, false>;
193a53d9 1000#endif
bae7f79e 1001
193a53d9 1002#ifdef HAVE_TARGET_32_BIG
bae7f79e 1003template
f6ce93d6 1004class Sized_relobj<32, true>;
193a53d9 1005#endif
bae7f79e 1006
193a53d9 1007#ifdef HAVE_TARGET_64_LITTLE
bae7f79e 1008template
f6ce93d6 1009class Sized_relobj<64, false>;
193a53d9 1010#endif
bae7f79e 1011
193a53d9 1012#ifdef HAVE_TARGET_64_BIG
bae7f79e 1013template
f6ce93d6 1014class Sized_relobj<64, true>;
193a53d9 1015#endif
bae7f79e 1016
193a53d9 1017#ifdef HAVE_TARGET_32_LITTLE
92e059d8
ILT
1018template
1019struct Relocate_info<32, false>;
193a53d9 1020#endif
92e059d8 1021
193a53d9 1022#ifdef HAVE_TARGET_32_BIG
92e059d8
ILT
1023template
1024struct Relocate_info<32, true>;
193a53d9 1025#endif
92e059d8 1026
193a53d9 1027#ifdef HAVE_TARGET_64_LITTLE
92e059d8
ILT
1028template
1029struct Relocate_info<64, false>;
193a53d9 1030#endif
92e059d8 1031
193a53d9 1032#ifdef HAVE_TARGET_64_BIG
92e059d8
ILT
1033template
1034struct Relocate_info<64, true>;
193a53d9 1035#endif
92e059d8 1036
bae7f79e 1037} // End namespace gold.
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