* symtab.h (add_minsym_to_hash_table): Don't declare.
[deliverable/binutils-gdb.git] / gold / object.cc
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1// object.cc -- support for an object file for linking in gold
2
308ecdc7 3// Copyright 2006, 2007, 2008, 2009, 2010, 2011 Free Software Foundation, Inc.
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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>
a2b1aa12 28#include "demangle.h"
9a2d6984 29#include "libiberty.h"
bae7f79e 30
6d03d481 31#include "gc.h"
14bfc3f5 32#include "target-select.h"
5c2c6c95 33#include "dwarf_reader.h"
a2fb1b05 34#include "layout.h"
61ba1cf9 35#include "output.h"
f6ce93d6 36#include "symtab.h"
92de84a6 37#include "cref.h"
4c50553d 38#include "reloc.h"
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39#include "object.h"
40#include "dynobj.h"
5995b570 41#include "plugin.h"
a2e47362 42#include "compressed_output.h"
09ec0418 43#include "incremental.h"
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44
45namespace gold
46{
47
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48// Struct Read_symbols_data.
49
50// Destroy any remaining File_view objects.
51
52Read_symbols_data::~Read_symbols_data()
53{
54 if (this->section_headers != NULL)
55 delete this->section_headers;
56 if (this->section_names != NULL)
57 delete this->section_names;
58 if (this->symbols != NULL)
59 delete this->symbols;
60 if (this->symbol_names != NULL)
61 delete this->symbol_names;
62 if (this->versym != NULL)
63 delete this->versym;
64 if (this->verdef != NULL)
65 delete this->verdef;
66 if (this->verneed != NULL)
67 delete this->verneed;
68}
69
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70// Class Xindex.
71
72// Initialize the symtab_xindex_ array. Find the SHT_SYMTAB_SHNDX
73// section and read it in. SYMTAB_SHNDX is the index of the symbol
74// table we care about.
75
76template<int size, bool big_endian>
77void
2ea97941 78Xindex::initialize_symtab_xindex(Object* object, unsigned int symtab_shndx)
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79{
80 if (!this->symtab_xindex_.empty())
81 return;
82
2ea97941 83 gold_assert(symtab_shndx != 0);
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84
85 // Look through the sections in reverse order, on the theory that it
86 // is more likely to be near the end than the beginning.
87 unsigned int i = object->shnum();
88 while (i > 0)
89 {
90 --i;
91 if (object->section_type(i) == elfcpp::SHT_SYMTAB_SHNDX
2ea97941 92 && this->adjust_shndx(object->section_link(i)) == symtab_shndx)
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93 {
94 this->read_symtab_xindex<size, big_endian>(object, i, NULL);
95 return;
96 }
97 }
98
99 object->error(_("missing SHT_SYMTAB_SHNDX section"));
100}
101
102// Read in the symtab_xindex_ array, given the section index of the
103// SHT_SYMTAB_SHNDX section. If PSHDRS is not NULL, it points at the
104// section headers.
105
106template<int size, bool big_endian>
107void
108Xindex::read_symtab_xindex(Object* object, unsigned int xindex_shndx,
109 const unsigned char* pshdrs)
110{
111 section_size_type bytecount;
112 const unsigned char* contents;
113 if (pshdrs == NULL)
114 contents = object->section_contents(xindex_shndx, &bytecount, false);
115 else
116 {
117 const unsigned char* p = (pshdrs
118 + (xindex_shndx
119 * elfcpp::Elf_sizes<size>::shdr_size));
120 typename elfcpp::Shdr<size, big_endian> shdr(p);
121 bytecount = convert_to_section_size_type(shdr.get_sh_size());
122 contents = object->get_view(shdr.get_sh_offset(), bytecount, true, false);
123 }
124
125 gold_assert(this->symtab_xindex_.empty());
126 this->symtab_xindex_.reserve(bytecount / 4);
127 for (section_size_type i = 0; i < bytecount; i += 4)
128 {
129 unsigned int shndx = elfcpp::Swap<32, big_endian>::readval(contents + i);
130 // We preadjust the section indexes we save.
131 this->symtab_xindex_.push_back(this->adjust_shndx(shndx));
132 }
133}
134
135// Symbol symndx has a section of SHN_XINDEX; return the real section
136// index.
137
138unsigned int
139Xindex::sym_xindex_to_shndx(Object* object, unsigned int symndx)
140{
141 if (symndx >= this->symtab_xindex_.size())
142 {
143 object->error(_("symbol %u out of range for SHT_SYMTAB_SHNDX section"),
144 symndx);
145 return elfcpp::SHN_UNDEF;
146 }
147 unsigned int shndx = this->symtab_xindex_[symndx];
148 if (shndx < elfcpp::SHN_LORESERVE || shndx >= object->shnum())
149 {
150 object->error(_("extended index for symbol %u out of range: %u"),
151 symndx, shndx);
152 return elfcpp::SHN_UNDEF;
153 }
154 return shndx;
155}
156
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157// Class Object.
158
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159// Report an error for this object file. This is used by the
160// elfcpp::Elf_file interface, and also called by the Object code
161// itself.
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162
163void
75f2446e 164Object::error(const char* format, ...) const
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165{
166 va_list args;
645f8123 167 va_start(args, format);
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168 char* buf = NULL;
169 if (vasprintf(&buf, format, args) < 0)
170 gold_nomem();
645f8123 171 va_end(args);
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172 gold_error(_("%s: %s"), this->name().c_str(), buf);
173 free(buf);
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174}
175
176// Return a view of the contents of a section.
177
178const unsigned char*
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179Object::section_contents(unsigned int shndx, section_size_type* plen,
180 bool cache)
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181{
182 Location loc(this->do_section_contents(shndx));
8383303e 183 *plen = convert_to_section_size_type(loc.data_size);
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184 if (*plen == 0)
185 {
186 static const unsigned char empty[1] = { '\0' };
187 return empty;
188 }
39d0cb0e 189 return this->get_view(loc.file_offset, *plen, true, cache);
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190}
191
6fa2a40b 192// Read the section data into SD. This is code common to Sized_relobj_file
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193// and Sized_dynobj, so we put it into Object.
194
195template<int size, bool big_endian>
196void
197Object::read_section_data(elfcpp::Elf_file<size, big_endian, Object>* elf_file,
198 Read_symbols_data* sd)
199{
200 const int shdr_size = elfcpp::Elf_sizes<size>::shdr_size;
201
202 // Read the section headers.
203 const off_t shoff = elf_file->shoff();
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204 const unsigned int shnum = this->shnum();
205 sd->section_headers = this->get_lasting_view(shoff, shnum * shdr_size,
39d0cb0e 206 true, true);
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207
208 // Read the section names.
209 const unsigned char* pshdrs = sd->section_headers->data();
210 const unsigned char* pshdrnames = pshdrs + elf_file->shstrndx() * shdr_size;
211 typename elfcpp::Shdr<size, big_endian> shdrnames(pshdrnames);
212
213 if (shdrnames.get_sh_type() != elfcpp::SHT_STRTAB)
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214 this->error(_("section name section has wrong type: %u"),
215 static_cast<unsigned int>(shdrnames.get_sh_type()));
dbe717ef 216
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217 sd->section_names_size =
218 convert_to_section_size_type(shdrnames.get_sh_size());
dbe717ef 219 sd->section_names = this->get_lasting_view(shdrnames.get_sh_offset(),
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220 sd->section_names_size, false,
221 false);
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222}
223
2ea97941 224// If NAME is the name of a special .gnu.warning section, arrange for
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225// the warning to be issued. SHNDX is the section index. Return
226// whether it is a warning section.
227
228bool
2ea97941 229Object::handle_gnu_warning_section(const char* name, unsigned int shndx,
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230 Symbol_table* symtab)
231{
232 const char warn_prefix[] = ".gnu.warning.";
233 const int warn_prefix_len = sizeof warn_prefix - 1;
2ea97941 234 if (strncmp(name, warn_prefix, warn_prefix_len) == 0)
dbe717ef 235 {
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236 // Read the section contents to get the warning text. It would
237 // be nicer if we only did this if we have to actually issue a
238 // warning. Unfortunately, warnings are issued as we relocate
239 // sections. That means that we can not lock the object then,
240 // as we might try to issue the same warning multiple times
241 // simultaneously.
242 section_size_type len;
243 const unsigned char* contents = this->section_contents(shndx, &len,
244 false);
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245 if (len == 0)
246 {
2ea97941 247 const char* warning = name + warn_prefix_len;
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248 contents = reinterpret_cast<const unsigned char*>(warning);
249 len = strlen(warning);
250 }
cb295612 251 std::string warning(reinterpret_cast<const char*>(contents), len);
2ea97941 252 symtab->add_warning(name + warn_prefix_len, this, warning);
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253 return true;
254 }
255 return false;
256}
257
2ea97941 258// If NAME is the name of the special section which indicates that
9b547ce6 259// this object was compiled with -fsplit-stack, mark it accordingly.
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260
261bool
2ea97941 262Object::handle_split_stack_section(const char* name)
364c7fa5 263{
2ea97941 264 if (strcmp(name, ".note.GNU-split-stack") == 0)
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265 {
266 this->uses_split_stack_ = true;
267 return true;
268 }
2ea97941 269 if (strcmp(name, ".note.GNU-no-split-stack") == 0)
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270 {
271 this->has_no_split_stack_ = true;
272 return true;
273 }
274 return false;
275}
276
6d03d481
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277// Class Relobj
278
279// To copy the symbols data read from the file to a local data structure.
280// This function is called from do_layout only while doing garbage
281// collection.
282
283void
284Relobj::copy_symbols_data(Symbols_data* gc_sd, Read_symbols_data* sd,
285 unsigned int section_header_size)
286{
287 gc_sd->section_headers_data =
288 new unsigned char[(section_header_size)];
289 memcpy(gc_sd->section_headers_data, sd->section_headers->data(),
290 section_header_size);
291 gc_sd->section_names_data =
292 new unsigned char[sd->section_names_size];
293 memcpy(gc_sd->section_names_data, sd->section_names->data(),
294 sd->section_names_size);
295 gc_sd->section_names_size = sd->section_names_size;
296 if (sd->symbols != NULL)
297 {
298 gc_sd->symbols_data =
299 new unsigned char[sd->symbols_size];
300 memcpy(gc_sd->symbols_data, sd->symbols->data(),
301 sd->symbols_size);
302 }
303 else
304 {
305 gc_sd->symbols_data = NULL;
306 }
307 gc_sd->symbols_size = sd->symbols_size;
308 gc_sd->external_symbols_offset = sd->external_symbols_offset;
309 if (sd->symbol_names != NULL)
310 {
311 gc_sd->symbol_names_data =
312 new unsigned char[sd->symbol_names_size];
313 memcpy(gc_sd->symbol_names_data, sd->symbol_names->data(),
314 sd->symbol_names_size);
315 }
316 else
317 {
318 gc_sd->symbol_names_data = NULL;
319 }
320 gc_sd->symbol_names_size = sd->symbol_names_size;
321}
322
323// This function determines if a particular section name must be included
324// in the link. This is used during garbage collection to determine the
325// roots of the worklist.
326
327bool
2ea97941 328Relobj::is_section_name_included(const char* name)
6d03d481 329{
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330 if (is_prefix_of(".ctors", name)
331 || is_prefix_of(".dtors", name)
332 || is_prefix_of(".note", name)
333 || is_prefix_of(".init", name)
334 || is_prefix_of(".fini", name)
335 || is_prefix_of(".gcc_except_table", name)
336 || is_prefix_of(".jcr", name)
337 || is_prefix_of(".preinit_array", name)
338 || (is_prefix_of(".text", name)
339 && strstr(name, "personality"))
340 || (is_prefix_of(".data", name)
341 && strstr(name, "personality"))
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342 || (is_prefix_of(".gnu.linkonce.d", name)
343 && strstr(name, "personality")))
6d03d481
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344 {
345 return true;
346 }
347 return false;
348}
349
09ec0418
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350// Finalize the incremental relocation information. Allocates a block
351// of relocation entries for each symbol, and sets the reloc_bases_
cdc29364
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352// array to point to the first entry in each block. If CLEAR_COUNTS
353// is TRUE, also clear the per-symbol relocation counters.
09ec0418
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354
355void
cdc29364 356Relobj::finalize_incremental_relocs(Layout* layout, bool clear_counts)
09ec0418
CC
357{
358 unsigned int nsyms = this->get_global_symbols()->size();
359 this->reloc_bases_ = new unsigned int[nsyms];
360
361 gold_assert(this->reloc_bases_ != NULL);
362 gold_assert(layout->incremental_inputs() != NULL);
363
364 unsigned int rindex = layout->incremental_inputs()->get_reloc_count();
365 for (unsigned int i = 0; i < nsyms; ++i)
366 {
367 this->reloc_bases_[i] = rindex;
368 rindex += this->reloc_counts_[i];
cdc29364
CC
369 if (clear_counts)
370 this->reloc_counts_[i] = 0;
09ec0418
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371 }
372 layout->incremental_inputs()->set_reloc_count(rindex);
373}
374
f6ce93d6 375// Class Sized_relobj.
bae7f79e 376
6fa2a40b
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377// Iterate over local symbols, calling a visitor class V for each GOT offset
378// associated with a local symbol.
379
bae7f79e 380template<int size, bool big_endian>
6fa2a40b
CC
381void
382Sized_relobj<size, big_endian>::do_for_all_local_got_entries(
383 Got_offset_list::Visitor* v) const
384{
385 unsigned int nsyms = this->local_symbol_count();
386 for (unsigned int i = 0; i < nsyms; i++)
387 {
388 Local_got_offsets::const_iterator p = this->local_got_offsets_.find(i);
389 if (p != this->local_got_offsets_.end())
390 {
391 const Got_offset_list* got_offsets = p->second;
392 got_offsets->for_all_got_offsets(v);
393 }
394 }
395}
396
397// Class Sized_relobj_file.
398
399template<int size, bool big_endian>
400Sized_relobj_file<size, big_endian>::Sized_relobj_file(
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ILT
401 const std::string& name,
402 Input_file* input_file,
403 off_t offset,
bae7f79e 404 const elfcpp::Ehdr<size, big_endian>& ehdr)
6fa2a40b 405 : Sized_relobj<size, big_endian>(name, input_file, offset),
645f8123 406 elf_file_(this, ehdr),
dbe717ef 407 symtab_shndx_(-1U),
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408 local_symbol_count_(0),
409 output_local_symbol_count_(0),
7bf1f802 410 output_local_dynsym_count_(0),
730cdc88 411 symbols_(),
92de84a6 412 defined_count_(0),
61ba1cf9 413 local_symbol_offset_(0),
7bf1f802 414 local_dynsym_offset_(0),
e727fa71 415 local_values_(),
7223e9ca 416 local_plt_offsets_(),
ef9beddf 417 kept_comdat_sections_(),
805bb01c 418 has_eh_frame_(false),
a2e47362
CC
419 discarded_eh_frame_shndx_(-1U),
420 deferred_layout_(),
421 deferred_layout_relocs_(),
422 compressed_sections_()
bae7f79e 423{
9590bf25 424 this->e_type_ = ehdr.get_e_type();
bae7f79e
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425}
426
427template<int size, bool big_endian>
6fa2a40b 428Sized_relobj_file<size, big_endian>::~Sized_relobj_file()
bae7f79e
ILT
429{
430}
431
645f8123 432// Set up an object file based on the file header. This sets up the
029ba973 433// section information.
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434
435template<int size, bool big_endian>
436void
6fa2a40b 437Sized_relobj_file<size, big_endian>::do_setup()
bae7f79e 438{
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439 const unsigned int shnum = this->elf_file_.shnum();
440 this->set_shnum(shnum);
dbe717ef 441}
12e14209 442
dbe717ef
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443// Find the SHT_SYMTAB section, given the section headers. The ELF
444// standard says that maybe in the future there can be more than one
445// SHT_SYMTAB section. Until somebody figures out how that could
446// work, we assume there is only one.
12e14209 447
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448template<int size, bool big_endian>
449void
6fa2a40b 450Sized_relobj_file<size, big_endian>::find_symtab(const unsigned char* pshdrs)
dbe717ef 451{
2ea97941 452 const unsigned int shnum = this->shnum();
dbe717ef 453 this->symtab_shndx_ = 0;
2ea97941 454 if (shnum > 0)
bae7f79e 455 {
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456 // Look through the sections in reverse order, since gas tends
457 // to put the symbol table at the end.
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458 const unsigned char* p = pshdrs + shnum * This::shdr_size;
459 unsigned int i = shnum;
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460 unsigned int xindex_shndx = 0;
461 unsigned int xindex_link = 0;
dbe717ef 462 while (i > 0)
bae7f79e 463 {
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464 --i;
465 p -= This::shdr_size;
466 typename This::Shdr shdr(p);
467 if (shdr.get_sh_type() == elfcpp::SHT_SYMTAB)
468 {
469 this->symtab_shndx_ = i;
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470 if (xindex_shndx > 0 && xindex_link == i)
471 {
472 Xindex* xindex =
473 new Xindex(this->elf_file_.large_shndx_offset());
474 xindex->read_symtab_xindex<size, big_endian>(this,
475 xindex_shndx,
476 pshdrs);
477 this->set_xindex(xindex);
478 }
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479 break;
480 }
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481
482 // Try to pick up the SHT_SYMTAB_SHNDX section, if there is
483 // one. This will work if it follows the SHT_SYMTAB
484 // section.
485 if (shdr.get_sh_type() == elfcpp::SHT_SYMTAB_SHNDX)
486 {
487 xindex_shndx = i;
488 xindex_link = this->adjust_shndx(shdr.get_sh_link());
489 }
bae7f79e 490 }
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491 }
492}
493
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494// Return the Xindex structure to use for object with lots of
495// sections.
496
497template<int size, bool big_endian>
498Xindex*
6fa2a40b 499Sized_relobj_file<size, big_endian>::do_initialize_xindex()
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ILT
500{
501 gold_assert(this->symtab_shndx_ != -1U);
502 Xindex* xindex = new Xindex(this->elf_file_.large_shndx_offset());
503 xindex->initialize_symtab_xindex<size, big_endian>(this, this->symtab_shndx_);
504 return xindex;
505}
506
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507// Return whether SHDR has the right type and flags to be a GNU
508// .eh_frame section.
509
510template<int size, bool big_endian>
511bool
6fa2a40b 512Sized_relobj_file<size, big_endian>::check_eh_frame_flags(
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513 const elfcpp::Shdr<size, big_endian>* shdr) const
514{
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515 elfcpp::Elf_Word sh_type = shdr->get_sh_type();
516 return ((sh_type == elfcpp::SHT_PROGBITS
517 || sh_type == elfcpp::SHT_X86_64_UNWIND)
1650c4ff 518 && (shdr->get_sh_flags() & elfcpp::SHF_ALLOC) != 0);
730cdc88
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519}
520
521// Return whether there is a GNU .eh_frame section, given the section
522// headers and the section names.
523
524template<int size, bool big_endian>
525bool
6fa2a40b 526Sized_relobj_file<size, big_endian>::find_eh_frame(
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527 const unsigned char* pshdrs,
528 const char* names,
529 section_size_type names_size) const
730cdc88 530{
2ea97941 531 const unsigned int shnum = this->shnum();
730cdc88 532 const unsigned char* p = pshdrs + This::shdr_size;
2ea97941 533 for (unsigned int i = 1; i < shnum; ++i, p += This::shdr_size)
730cdc88
ILT
534 {
535 typename This::Shdr shdr(p);
536 if (this->check_eh_frame_flags(&shdr))
537 {
538 if (shdr.get_sh_name() >= names_size)
539 {
540 this->error(_("bad section name offset for section %u: %lu"),
541 i, static_cast<unsigned long>(shdr.get_sh_name()));
542 continue;
543 }
544
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545 const char* name = names + shdr.get_sh_name();
546 if (strcmp(name, ".eh_frame") == 0)
730cdc88
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547 return true;
548 }
549 }
550 return false;
551}
552
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553// Build a table for any compressed debug sections, mapping each section index
554// to the uncompressed size.
555
556template<int size, bool big_endian>
557Compressed_section_map*
558build_compressed_section_map(
559 const unsigned char* pshdrs,
560 unsigned int shnum,
561 const char* names,
562 section_size_type names_size,
6fa2a40b 563 Sized_relobj_file<size, big_endian>* obj)
a2e47362
CC
564{
565 Compressed_section_map* uncompressed_sizes = new Compressed_section_map();
566 const unsigned int shdr_size = elfcpp::Elf_sizes<size>::shdr_size;
567 const unsigned char* p = pshdrs + shdr_size;
568 for (unsigned int i = 1; i < shnum; ++i, p += shdr_size)
569 {
570 typename elfcpp::Shdr<size, big_endian> shdr(p);
571 if (shdr.get_sh_type() == elfcpp::SHT_PROGBITS
572 && (shdr.get_sh_flags() & elfcpp::SHF_ALLOC) == 0)
573 {
574 if (shdr.get_sh_name() >= names_size)
575 {
576 obj->error(_("bad section name offset for section %u: %lu"),
577 i, static_cast<unsigned long>(shdr.get_sh_name()));
578 continue;
579 }
580
581 const char* name = names + shdr.get_sh_name();
582 if (is_compressed_debug_section(name))
583 {
584 section_size_type len;
585 const unsigned char* contents =
586 obj->section_contents(i, &len, false);
587 uint64_t uncompressed_size = get_uncompressed_size(contents, len);
588 if (uncompressed_size != -1ULL)
589 (*uncompressed_sizes)[i] =
590 convert_to_section_size_type(uncompressed_size);
591 }
592 }
593 }
594 return uncompressed_sizes;
595}
596
12e14209 597// Read the sections and symbols from an object file.
bae7f79e
ILT
598
599template<int size, bool big_endian>
12e14209 600void
6fa2a40b 601Sized_relobj_file<size, big_endian>::do_read_symbols(Read_symbols_data* sd)
bae7f79e 602{
dbe717ef 603 this->read_section_data(&this->elf_file_, sd);
12e14209 604
dbe717ef
ILT
605 const unsigned char* const pshdrs = sd->section_headers->data();
606
607 this->find_symtab(pshdrs);
12e14209 608
730cdc88
ILT
609 const unsigned char* namesu = sd->section_names->data();
610 const char* names = reinterpret_cast<const char*>(namesu);
1650c4ff
ILT
611 if (memmem(names, sd->section_names_size, ".eh_frame", 10) != NULL)
612 {
613 if (this->find_eh_frame(pshdrs, names, sd->section_names_size))
614 this->has_eh_frame_ = true;
615 }
a2e47362
CC
616 if (memmem(names, sd->section_names_size, ".zdebug_", 8) != NULL)
617 this->compressed_sections_ =
618 build_compressed_section_map(pshdrs, this->shnum(), names,
619 sd->section_names_size, this);
730cdc88 620
75f2446e
ILT
621 sd->symbols = NULL;
622 sd->symbols_size = 0;
730cdc88 623 sd->external_symbols_offset = 0;
75f2446e
ILT
624 sd->symbol_names = NULL;
625 sd->symbol_names_size = 0;
626
645f8123 627 if (this->symtab_shndx_ == 0)
bae7f79e
ILT
628 {
629 // No symbol table. Weird but legal.
12e14209 630 return;
bae7f79e
ILT
631 }
632
12e14209
ILT
633 // Get the symbol table section header.
634 typename This::Shdr symtabshdr(pshdrs
645f8123 635 + this->symtab_shndx_ * This::shdr_size);
a3ad94ed 636 gold_assert(symtabshdr.get_sh_type() == elfcpp::SHT_SYMTAB);
bae7f79e 637
730cdc88
ILT
638 // If this object has a .eh_frame section, we need all the symbols.
639 // Otherwise we only need the external symbols. While it would be
640 // simpler to just always read all the symbols, I've seen object
641 // files with well over 2000 local symbols, which for a 64-bit
642 // object file format is over 5 pages that we don't need to read
643 // now.
644
2ea97941 645 const int sym_size = This::sym_size;
92e059d8
ILT
646 const unsigned int loccount = symtabshdr.get_sh_info();
647 this->local_symbol_count_ = loccount;
7bf1f802 648 this->local_values_.resize(loccount);
2ea97941 649 section_offset_type locsize = loccount * sym_size;
730cdc88 650 off_t dataoff = symtabshdr.get_sh_offset();
8383303e
ILT
651 section_size_type datasize =
652 convert_to_section_size_type(symtabshdr.get_sh_size());
730cdc88 653 off_t extoff = dataoff + locsize;
8383303e 654 section_size_type extsize = datasize - locsize;
75f65a3e 655
730cdc88 656 off_t readoff = this->has_eh_frame_ ? dataoff : extoff;
8383303e 657 section_size_type readsize = this->has_eh_frame_ ? datasize : extsize;
730cdc88 658
3f2e6a2d
CC
659 if (readsize == 0)
660 {
661 // No external symbols. Also weird but also legal.
662 return;
663 }
664
39d0cb0e 665 File_view* fvsymtab = this->get_lasting_view(readoff, readsize, true, false);
bae7f79e
ILT
666
667 // Read the section header for the symbol names.
d491d34e 668 unsigned int strtab_shndx = this->adjust_shndx(symtabshdr.get_sh_link());
dbe717ef 669 if (strtab_shndx >= this->shnum())
bae7f79e 670 {
75f2446e
ILT
671 this->error(_("invalid symbol table name index: %u"), strtab_shndx);
672 return;
bae7f79e 673 }
dbe717ef 674 typename This::Shdr strtabshdr(pshdrs + strtab_shndx * This::shdr_size);
bae7f79e
ILT
675 if (strtabshdr.get_sh_type() != elfcpp::SHT_STRTAB)
676 {
75f2446e
ILT
677 this->error(_("symbol table name section has wrong type: %u"),
678 static_cast<unsigned int>(strtabshdr.get_sh_type()));
679 return;
bae7f79e
ILT
680 }
681
682 // Read the symbol names.
683 File_view* fvstrtab = this->get_lasting_view(strtabshdr.get_sh_offset(),
39d0cb0e
ILT
684 strtabshdr.get_sh_size(),
685 false, true);
bae7f79e 686
12e14209 687 sd->symbols = fvsymtab;
730cdc88
ILT
688 sd->symbols_size = readsize;
689 sd->external_symbols_offset = this->has_eh_frame_ ? locsize : 0;
12e14209 690 sd->symbol_names = fvstrtab;
8383303e
ILT
691 sd->symbol_names_size =
692 convert_to_section_size_type(strtabshdr.get_sh_size());
a2fb1b05
ILT
693}
694
730cdc88 695// Return the section index of symbol SYM. Set *VALUE to its value in
d491d34e 696// the object file. Set *IS_ORDINARY if this is an ordinary section
9b547ce6 697// index, not a special code between SHN_LORESERVE and SHN_HIRESERVE.
d491d34e
ILT
698// Note that for a symbol which is not defined in this object file,
699// this will set *VALUE to 0 and return SHN_UNDEF; it will not return
700// the final value of the symbol in the link.
730cdc88
ILT
701
702template<int size, bool big_endian>
703unsigned int
6fa2a40b
CC
704Sized_relobj_file<size, big_endian>::symbol_section_and_value(unsigned int sym,
705 Address* value,
706 bool* is_ordinary)
730cdc88 707{
8383303e 708 section_size_type symbols_size;
730cdc88
ILT
709 const unsigned char* symbols = this->section_contents(this->symtab_shndx_,
710 &symbols_size,
711 false);
712
713 const size_t count = symbols_size / This::sym_size;
714 gold_assert(sym < count);
715
716 elfcpp::Sym<size, big_endian> elfsym(symbols + sym * This::sym_size);
717 *value = elfsym.get_st_value();
d491d34e
ILT
718
719 return this->adjust_sym_shndx(sym, elfsym.get_st_shndx(), is_ordinary);
730cdc88
ILT
720}
721
a2fb1b05
ILT
722// Return whether to include a section group in the link. LAYOUT is
723// used to keep track of which section groups we have already seen.
724// INDEX is the index of the section group and SHDR is the section
725// header. If we do not want to include this group, we set bits in
726// OMIT for each section which should be discarded.
727
728template<int size, bool big_endian>
729bool
6fa2a40b 730Sized_relobj_file<size, big_endian>::include_section_group(
6a74a719 731 Symbol_table* symtab,
2ea97941 732 Layout* layout,
a2fb1b05 733 unsigned int index,
2ea97941 734 const char* name,
e94cf127
CC
735 const unsigned char* shdrs,
736 const char* section_names,
737 section_size_type section_names_size,
a2fb1b05
ILT
738 std::vector<bool>* omit)
739{
740 // Read the section contents.
e94cf127 741 typename This::Shdr shdr(shdrs + index * This::shdr_size);
a2fb1b05 742 const unsigned char* pcon = this->get_view(shdr.get_sh_offset(),
39d0cb0e 743 shdr.get_sh_size(), true, false);
a2fb1b05
ILT
744 const elfcpp::Elf_Word* pword =
745 reinterpret_cast<const elfcpp::Elf_Word*>(pcon);
746
747 // The first word contains flags. We only care about COMDAT section
748 // groups. Other section groups are always included in the link
749 // just like ordinary sections.
f6ce93d6 750 elfcpp::Elf_Word flags = elfcpp::Swap<32, big_endian>::readval(pword);
a2fb1b05 751
41f9cbbe
ILT
752 // Look up the group signature, which is the name of a symbol. ELF
753 // uses a symbol name because some group signatures are long, and
754 // the name is generally already in the symbol table, so it makes
755 // sense to put the long string just once in .strtab rather than in
756 // both .strtab and .shstrtab.
a2fb1b05
ILT
757
758 // Get the appropriate symbol table header (this will normally be
759 // the single SHT_SYMTAB section, but in principle it need not be).
d491d34e 760 const unsigned int link = this->adjust_shndx(shdr.get_sh_link());
645f8123 761 typename This::Shdr symshdr(this, this->elf_file_.section_header(link));
a2fb1b05
ILT
762
763 // Read the symbol table entry.
d491d34e
ILT
764 unsigned int symndx = shdr.get_sh_info();
765 if (symndx >= symshdr.get_sh_size() / This::sym_size)
a2fb1b05 766 {
75f2446e 767 this->error(_("section group %u info %u out of range"),
d491d34e 768 index, symndx);
75f2446e 769 return false;
a2fb1b05 770 }
d491d34e 771 off_t symoff = symshdr.get_sh_offset() + symndx * This::sym_size;
39d0cb0e
ILT
772 const unsigned char* psym = this->get_view(symoff, This::sym_size, true,
773 false);
a2fb1b05
ILT
774 elfcpp::Sym<size, big_endian> sym(psym);
775
a2fb1b05 776 // Read the symbol table names.
8383303e 777 section_size_type symnamelen;
645f8123 778 const unsigned char* psymnamesu;
d491d34e
ILT
779 psymnamesu = this->section_contents(this->adjust_shndx(symshdr.get_sh_link()),
780 &symnamelen, true);
a2fb1b05
ILT
781 const char* psymnames = reinterpret_cast<const char*>(psymnamesu);
782
783 // Get the section group signature.
645f8123 784 if (sym.get_st_name() >= symnamelen)
a2fb1b05 785 {
75f2446e 786 this->error(_("symbol %u name offset %u out of range"),
d491d34e 787 symndx, sym.get_st_name());
75f2446e 788 return false;
a2fb1b05
ILT
789 }
790
e94cf127 791 std::string signature(psymnames + sym.get_st_name());
a2fb1b05 792
ead1e424
ILT
793 // It seems that some versions of gas will create a section group
794 // associated with a section symbol, and then fail to give a name to
795 // the section symbol. In such a case, use the name of the section.
645f8123 796 if (signature[0] == '\0' && sym.get_st_type() == elfcpp::STT_SECTION)
ead1e424 797 {
d491d34e
ILT
798 bool is_ordinary;
799 unsigned int sym_shndx = this->adjust_sym_shndx(symndx,
800 sym.get_st_shndx(),
801 &is_ordinary);
802 if (!is_ordinary || sym_shndx >= this->shnum())
803 {
804 this->error(_("symbol %u invalid section index %u"),
805 symndx, sym_shndx);
806 return false;
807 }
e94cf127
CC
808 typename This::Shdr member_shdr(shdrs + sym_shndx * This::shdr_size);
809 if (member_shdr.get_sh_name() < section_names_size)
810 signature = section_names + member_shdr.get_sh_name();
ead1e424
ILT
811 }
812
e94cf127
CC
813 // Record this section group in the layout, and see whether we've already
814 // seen one with the same signature.
8a4c0b0d 815 bool include_group;
1ef4d87f
ILT
816 bool is_comdat;
817 Kept_section* kept_section = NULL;
6a74a719 818
8a4c0b0d 819 if ((flags & elfcpp::GRP_COMDAT) == 0)
1ef4d87f
ILT
820 {
821 include_group = true;
822 is_comdat = false;
823 }
8a4c0b0d 824 else
e94cf127 825 {
2ea97941
ILT
826 include_group = layout->find_or_add_kept_section(signature,
827 this, index, true,
828 true, &kept_section);
1ef4d87f 829 is_comdat = true;
6a74a719 830 }
a2fb1b05 831
89d8a36b
CC
832 if (is_comdat && include_group)
833 {
834 Incremental_inputs* incremental_inputs = layout->incremental_inputs();
835 if (incremental_inputs != NULL)
836 incremental_inputs->report_comdat_group(this, signature.c_str());
837 }
838
a2fb1b05 839 size_t count = shdr.get_sh_size() / sizeof(elfcpp::Elf_Word);
8825ac63
ILT
840
841 std::vector<unsigned int> shndxes;
842 bool relocate_group = include_group && parameters->options().relocatable();
843 if (relocate_group)
844 shndxes.reserve(count - 1);
845
a2fb1b05
ILT
846 for (size_t i = 1; i < count; ++i)
847 {
1ef4d87f 848 elfcpp::Elf_Word shndx =
8825ac63
ILT
849 this->adjust_shndx(elfcpp::Swap<32, big_endian>::readval(pword + i));
850
851 if (relocate_group)
1ef4d87f 852 shndxes.push_back(shndx);
8825ac63 853
1ef4d87f 854 if (shndx >= this->shnum())
a2fb1b05 855 {
75f2446e 856 this->error(_("section %u in section group %u out of range"),
1ef4d87f 857 shndx, index);
75f2446e 858 continue;
a2fb1b05 859 }
55438702
ILT
860
861 // Check for an earlier section number, since we're going to get
862 // it wrong--we may have already decided to include the section.
1ef4d87f 863 if (shndx < index)
55438702 864 this->error(_("invalid section group %u refers to earlier section %u"),
1ef4d87f 865 index, shndx);
55438702 866
e94cf127 867 // Get the name of the member section.
1ef4d87f 868 typename This::Shdr member_shdr(shdrs + shndx * This::shdr_size);
e94cf127
CC
869 if (member_shdr.get_sh_name() >= section_names_size)
870 {
871 // This is an error, but it will be diagnosed eventually
872 // in do_layout, so we don't need to do anything here but
873 // ignore it.
874 continue;
875 }
876 std::string mname(section_names + member_shdr.get_sh_name());
877
1ef4d87f
ILT
878 if (include_group)
879 {
880 if (is_comdat)
881 kept_section->add_comdat_section(mname, shndx,
882 member_shdr.get_sh_size());
883 }
884 else
e94cf127 885 {
1ef4d87f
ILT
886 (*omit)[shndx] = true;
887
888 if (is_comdat)
e94cf127 889 {
1ef4d87f
ILT
890 Relobj* kept_object = kept_section->object();
891 if (kept_section->is_comdat())
892 {
893 // Find the corresponding kept section, and store
894 // that info in the discarded section table.
895 unsigned int kept_shndx;
896 uint64_t kept_size;
897 if (kept_section->find_comdat_section(mname, &kept_shndx,
898 &kept_size))
899 {
900 // We don't keep a mapping for this section if
901 // it has a different size. The mapping is only
902 // used for relocation processing, and we don't
903 // want to treat the sections as similar if the
904 // sizes are different. Checking the section
905 // size is the approach used by the GNU linker.
906 if (kept_size == member_shdr.get_sh_size())
907 this->set_kept_comdat_section(shndx, kept_object,
908 kept_shndx);
909 }
910 }
911 else
912 {
913 // The existing section is a linkonce section. Add
914 // a mapping if there is exactly one section in the
915 // group (which is true when COUNT == 2) and if it
916 // is the same size.
917 if (count == 2
918 && (kept_section->linkonce_size()
919 == member_shdr.get_sh_size()))
920 this->set_kept_comdat_section(shndx, kept_object,
921 kept_section->shndx());
922 }
e94cf127
CC
923 }
924 }
a2fb1b05
ILT
925 }
926
8825ac63 927 if (relocate_group)
2ea97941
ILT
928 layout->layout_group(symtab, this, index, name, signature.c_str(),
929 shdr, flags, &shndxes);
8825ac63 930
e94cf127 931 return include_group;
a2fb1b05
ILT
932}
933
934// Whether to include a linkonce section in the link. NAME is the
935// name of the section and SHDR is the section header.
936
937// Linkonce sections are a GNU extension implemented in the original
938// GNU linker before section groups were defined. The semantics are
939// that we only include one linkonce section with a given name. The
940// name of a linkonce section is normally .gnu.linkonce.T.SYMNAME,
941// where T is the type of section and SYMNAME is the name of a symbol.
942// In an attempt to make linkonce sections interact well with section
943// groups, we try to identify SYMNAME and use it like a section group
944// signature. We want to block section groups with that signature,
945// but not other linkonce sections with that signature. We also use
946// the full name of the linkonce section as a normal section group
947// signature.
948
949template<int size, bool big_endian>
950bool
6fa2a40b 951Sized_relobj_file<size, big_endian>::include_linkonce_section(
2ea97941 952 Layout* layout,
e94cf127 953 unsigned int index,
2ea97941 954 const char* name,
1ef4d87f 955 const elfcpp::Shdr<size, big_endian>& shdr)
a2fb1b05 956{
1ef4d87f 957 typename elfcpp::Elf_types<size>::Elf_WXword sh_size = shdr.get_sh_size();
ad435a24
ILT
958 // In general the symbol name we want will be the string following
959 // the last '.'. However, we have to handle the case of
960 // .gnu.linkonce.t.__i686.get_pc_thunk.bx, which was generated by
961 // some versions of gcc. So we use a heuristic: if the name starts
962 // with ".gnu.linkonce.t.", we use everything after that. Otherwise
963 // we look for the last '.'. We can't always simply skip
964 // ".gnu.linkonce.X", because we have to deal with cases like
965 // ".gnu.linkonce.d.rel.ro.local".
966 const char* const linkonce_t = ".gnu.linkonce.t.";
967 const char* symname;
2ea97941
ILT
968 if (strncmp(name, linkonce_t, strlen(linkonce_t)) == 0)
969 symname = name + strlen(linkonce_t);
ad435a24 970 else
2ea97941 971 symname = strrchr(name, '.') + 1;
e94cf127 972 std::string sig1(symname);
2ea97941 973 std::string sig2(name);
8a4c0b0d
ILT
974 Kept_section* kept1;
975 Kept_section* kept2;
2ea97941
ILT
976 bool include1 = layout->find_or_add_kept_section(sig1, this, index, false,
977 false, &kept1);
978 bool include2 = layout->find_or_add_kept_section(sig2, this, index, false,
979 true, &kept2);
e94cf127
CC
980
981 if (!include2)
982 {
1ef4d87f
ILT
983 // We are not including this section because we already saw the
984 // name of the section as a signature. This normally implies
985 // that the kept section is another linkonce section. If it is
986 // the same size, record it as the section which corresponds to
987 // this one.
988 if (kept2->object() != NULL
989 && !kept2->is_comdat()
990 && kept2->linkonce_size() == sh_size)
991 this->set_kept_comdat_section(index, kept2->object(), kept2->shndx());
e94cf127
CC
992 }
993 else if (!include1)
994 {
995 // The section is being discarded on the basis of its symbol
996 // name. This means that the corresponding kept section was
997 // part of a comdat group, and it will be difficult to identify
998 // the specific section within that group that corresponds to
999 // this linkonce section. We'll handle the simple case where
1000 // the group has only one member section. Otherwise, it's not
1001 // worth the effort.
1ef4d87f
ILT
1002 unsigned int kept_shndx;
1003 uint64_t kept_size;
1004 if (kept1->object() != NULL
1005 && kept1->is_comdat()
1006 && kept1->find_single_comdat_section(&kept_shndx, &kept_size)
1007 && kept_size == sh_size)
1008 this->set_kept_comdat_section(index, kept1->object(), kept_shndx);
1009 }
1010 else
1011 {
1012 kept1->set_linkonce_size(sh_size);
1013 kept2->set_linkonce_size(sh_size);
e94cf127
CC
1014 }
1015
a783673b 1016 return include1 && include2;
a2fb1b05
ILT
1017}
1018
5995b570
CC
1019// Layout an input section.
1020
1021template<int size, bool big_endian>
1022inline void
14788a3f
ILT
1023Sized_relobj_file<size, big_endian>::layout_section(
1024 Layout* layout,
1025 unsigned int shndx,
1026 const char* name,
1027 const typename This::Shdr& shdr,
1028 unsigned int reloc_shndx,
1029 unsigned int reloc_type)
5995b570 1030{
2ea97941
ILT
1031 off_t offset;
1032 Output_section* os = layout->layout(this, shndx, name, shdr,
1033 reloc_shndx, reloc_type, &offset);
5995b570
CC
1034
1035 this->output_sections()[shndx] = os;
2ea97941 1036 if (offset == -1)
6fa2a40b 1037 this->section_offsets()[shndx] = invalid_address;
5995b570 1038 else
6fa2a40b 1039 this->section_offsets()[shndx] = convert_types<Address, off_t>(offset);
5995b570
CC
1040
1041 // If this section requires special handling, and if there are
1042 // relocs that apply to it, then we must do the special handling
1043 // before we apply the relocs.
2ea97941 1044 if (offset == -1 && reloc_shndx != 0)
5995b570
CC
1045 this->set_relocs_must_follow_section_writes();
1046}
1047
14788a3f
ILT
1048// Layout an input .eh_frame section.
1049
1050template<int size, bool big_endian>
1051void
1052Sized_relobj_file<size, big_endian>::layout_eh_frame_section(
1053 Layout* layout,
1054 const unsigned char* symbols_data,
1055 section_size_type symbols_size,
1056 const unsigned char* symbol_names_data,
1057 section_size_type symbol_names_size,
1058 unsigned int shndx,
1059 const typename This::Shdr& shdr,
1060 unsigned int reloc_shndx,
1061 unsigned int reloc_type)
1062{
1063 gold_assert(this->has_eh_frame_);
1064
1065 off_t offset;
1066 Output_section* os = layout->layout_eh_frame(this,
1067 symbols_data,
1068 symbols_size,
1069 symbol_names_data,
1070 symbol_names_size,
1071 shndx,
1072 shdr,
1073 reloc_shndx,
1074 reloc_type,
1075 &offset);
1076 this->output_sections()[shndx] = os;
1077 if (os == NULL || offset == -1)
1078 {
1079 // An object can contain at most one section holding exception
1080 // frame information.
1081 gold_assert(this->discarded_eh_frame_shndx_ == -1U);
1082 this->discarded_eh_frame_shndx_ = shndx;
1083 this->section_offsets()[shndx] = invalid_address;
1084 }
1085 else
1086 this->section_offsets()[shndx] = convert_types<Address, off_t>(offset);
1087
1088 // If this section requires special handling, and if there are
1089 // relocs that aply to it, then we must do the special handling
1090 // before we apply the relocs.
1091 if (os != NULL && offset == -1 && reloc_shndx != 0)
1092 this->set_relocs_must_follow_section_writes();
1093}
1094
a2fb1b05
ILT
1095// Lay out the input sections. We walk through the sections and check
1096// whether they should be included in the link. If they should, we
1097// pass them to the Layout object, which will return an output section
6d03d481 1098// and an offset.
ef15dade
ST
1099// During garbage collection (--gc-sections) and identical code folding
1100// (--icf), this function is called twice. When it is called the first
1101// time, it is for setting up some sections as roots to a work-list for
1102// --gc-sections and to do comdat processing. Actual layout happens the
1103// second time around after all the relevant sections have been determined.
1104// The first time, is_worklist_ready or is_icf_ready is false. It is then
1105// set to true after the garbage collection worklist or identical code
1106// folding is processed and the relevant sections to be kept are
1107// determined. Then, this function is called again to layout the sections.
a2fb1b05
ILT
1108
1109template<int size, bool big_endian>
1110void
6fa2a40b
CC
1111Sized_relobj_file<size, big_endian>::do_layout(Symbol_table* symtab,
1112 Layout* layout,
1113 Read_symbols_data* sd)
a2fb1b05 1114{
2ea97941 1115 const unsigned int shnum = this->shnum();
ef15dade
ST
1116 bool is_gc_pass_one = ((parameters->options().gc_sections()
1117 && !symtab->gc()->is_worklist_ready())
032ce4e9 1118 || (parameters->options().icf_enabled()
ef15dade
ST
1119 && !symtab->icf()->is_icf_ready()));
1120
1121 bool is_gc_pass_two = ((parameters->options().gc_sections()
1122 && symtab->gc()->is_worklist_ready())
032ce4e9 1123 || (parameters->options().icf_enabled()
ef15dade
ST
1124 && symtab->icf()->is_icf_ready()));
1125
1126 bool is_gc_or_icf = (parameters->options().gc_sections()
032ce4e9 1127 || parameters->options().icf_enabled());
ef15dade
ST
1128
1129 // Both is_gc_pass_one and is_gc_pass_two should not be true.
1130 gold_assert(!(is_gc_pass_one && is_gc_pass_two));
1131
2ea97941 1132 if (shnum == 0)
12e14209 1133 return;
e0ebcf42 1134 Symbols_data* gc_sd = NULL;
6d03d481
ST
1135 if (is_gc_pass_one)
1136 {
1137 // During garbage collection save the symbols data to use it when
1138 // re-entering this function.
1139 gc_sd = new Symbols_data;
2ea97941 1140 this->copy_symbols_data(gc_sd, sd, This::shdr_size * shnum);
6d03d481
ST
1141 this->set_symbols_data(gc_sd);
1142 }
1143 else if (is_gc_pass_two)
1144 {
1145 gc_sd = this->get_symbols_data();
1146 }
1147
1148 const unsigned char* section_headers_data = NULL;
1149 section_size_type section_names_size;
1150 const unsigned char* symbols_data = NULL;
1151 section_size_type symbols_size;
6d03d481
ST
1152 const unsigned char* symbol_names_data = NULL;
1153 section_size_type symbol_names_size;
1154
ef15dade 1155 if (is_gc_or_icf)
6d03d481
ST
1156 {
1157 section_headers_data = gc_sd->section_headers_data;
1158 section_names_size = gc_sd->section_names_size;
1159 symbols_data = gc_sd->symbols_data;
1160 symbols_size = gc_sd->symbols_size;
6d03d481
ST
1161 symbol_names_data = gc_sd->symbol_names_data;
1162 symbol_names_size = gc_sd->symbol_names_size;
1163 }
1164 else
1165 {
1166 section_headers_data = sd->section_headers->data();
1167 section_names_size = sd->section_names_size;
1168 if (sd->symbols != NULL)
1169 symbols_data = sd->symbols->data();
1170 symbols_size = sd->symbols_size;
6d03d481
ST
1171 if (sd->symbol_names != NULL)
1172 symbol_names_data = sd->symbol_names->data();
1173 symbol_names_size = sd->symbol_names_size;
1174 }
a2fb1b05
ILT
1175
1176 // Get the section headers.
6d03d481 1177 const unsigned char* shdrs = section_headers_data;
e94cf127 1178 const unsigned char* pshdrs;
a2fb1b05
ILT
1179
1180 // Get the section names.
ef15dade
ST
1181 const unsigned char* pnamesu = (is_gc_or_icf)
1182 ? gc_sd->section_names_data
1183 : sd->section_names->data();
1184
a2fb1b05
ILT
1185 const char* pnames = reinterpret_cast<const char*>(pnamesu);
1186
5995b570
CC
1187 // If any input files have been claimed by plugins, we need to defer
1188 // actual layout until the replacement files have arrived.
1189 const bool should_defer_layout =
1190 (parameters->options().has_plugins()
1191 && parameters->options().plugins()->should_defer_layout());
1192 unsigned int num_sections_to_defer = 0;
1193
730cdc88
ILT
1194 // For each section, record the index of the reloc section if any.
1195 // Use 0 to mean that there is no reloc section, -1U to mean that
1196 // there is more than one.
2ea97941
ILT
1197 std::vector<unsigned int> reloc_shndx(shnum, 0);
1198 std::vector<unsigned int> reloc_type(shnum, elfcpp::SHT_NULL);
730cdc88 1199 // Skip the first, dummy, section.
e94cf127 1200 pshdrs = shdrs + This::shdr_size;
2ea97941 1201 for (unsigned int i = 1; i < shnum; ++i, pshdrs += This::shdr_size)
730cdc88
ILT
1202 {
1203 typename This::Shdr shdr(pshdrs);
1204
5995b570
CC
1205 // Count the number of sections whose layout will be deferred.
1206 if (should_defer_layout && (shdr.get_sh_flags() & elfcpp::SHF_ALLOC))
1207 ++num_sections_to_defer;
1208
730cdc88
ILT
1209 unsigned int sh_type = shdr.get_sh_type();
1210 if (sh_type == elfcpp::SHT_REL || sh_type == elfcpp::SHT_RELA)
1211 {
d491d34e 1212 unsigned int target_shndx = this->adjust_shndx(shdr.get_sh_info());
2ea97941 1213 if (target_shndx == 0 || target_shndx >= shnum)
730cdc88
ILT
1214 {
1215 this->error(_("relocation section %u has bad info %u"),
1216 i, target_shndx);
1217 continue;
1218 }
1219
1220 if (reloc_shndx[target_shndx] != 0)
1221 reloc_shndx[target_shndx] = -1U;
1222 else
1223 {
1224 reloc_shndx[target_shndx] = i;
1225 reloc_type[target_shndx] = sh_type;
1226 }
1227 }
1228 }
1229
ef9beddf 1230 Output_sections& out_sections(this->output_sections());
6fa2a40b 1231 std::vector<Address>& out_section_offsets(this->section_offsets());
ef9beddf 1232
6d03d481
ST
1233 if (!is_gc_pass_two)
1234 {
2ea97941
ILT
1235 out_sections.resize(shnum);
1236 out_section_offsets.resize(shnum);
6d03d481 1237 }
a2fb1b05 1238
88dd47ac
ILT
1239 // If we are only linking for symbols, then there is nothing else to
1240 // do here.
1241 if (this->input_file()->just_symbols())
1242 {
6d03d481
ST
1243 if (!is_gc_pass_two)
1244 {
1245 delete sd->section_headers;
1246 sd->section_headers = NULL;
1247 delete sd->section_names;
1248 sd->section_names = NULL;
1249 }
88dd47ac
ILT
1250 return;
1251 }
1252
5995b570
CC
1253 if (num_sections_to_defer > 0)
1254 {
1255 parameters->options().plugins()->add_deferred_layout_object(this);
1256 this->deferred_layout_.reserve(num_sections_to_defer);
1257 }
1258
35cdfc9a
ILT
1259 // Whether we've seen a .note.GNU-stack section.
1260 bool seen_gnu_stack = false;
1261 // The flags of a .note.GNU-stack section.
1262 uint64_t gnu_stack_flags = 0;
1263
a2fb1b05 1264 // Keep track of which sections to omit.
2ea97941 1265 std::vector<bool> omit(shnum, false);
a2fb1b05 1266
7019cd25 1267 // Keep track of reloc sections when emitting relocations.
8851ecca 1268 const bool relocatable = parameters->options().relocatable();
2ea97941
ILT
1269 const bool emit_relocs = (relocatable
1270 || parameters->options().emit_relocs());
6a74a719
ILT
1271 std::vector<unsigned int> reloc_sections;
1272
730cdc88
ILT
1273 // Keep track of .eh_frame sections.
1274 std::vector<unsigned int> eh_frame_sections;
1275
f6ce93d6 1276 // Skip the first, dummy, section.
e94cf127 1277 pshdrs = shdrs + This::shdr_size;
2ea97941 1278 for (unsigned int i = 1; i < shnum; ++i, pshdrs += This::shdr_size)
a2fb1b05 1279 {
75f65a3e 1280 typename This::Shdr shdr(pshdrs);
a2fb1b05 1281
6d03d481 1282 if (shdr.get_sh_name() >= section_names_size)
a2fb1b05 1283 {
75f2446e
ILT
1284 this->error(_("bad section name offset for section %u: %lu"),
1285 i, static_cast<unsigned long>(shdr.get_sh_name()));
1286 return;
a2fb1b05
ILT
1287 }
1288
2ea97941 1289 const char* name = pnames + shdr.get_sh_name();
a2fb1b05 1290
6d03d481
ST
1291 if (!is_gc_pass_two)
1292 {
2ea97941 1293 if (this->handle_gnu_warning_section(name, i, symtab))
6d03d481 1294 {
e588ea8d 1295 if (!relocatable && !parameters->options().shared())
6d03d481
ST
1296 omit[i] = true;
1297 }
f6ce93d6 1298
6d03d481
ST
1299 // The .note.GNU-stack section is special. It gives the
1300 // protection flags that this object file requires for the stack
1301 // in memory.
2ea97941 1302 if (strcmp(name, ".note.GNU-stack") == 0)
6d03d481
ST
1303 {
1304 seen_gnu_stack = true;
1305 gnu_stack_flags |= shdr.get_sh_flags();
1306 omit[i] = true;
1307 }
35cdfc9a 1308
364c7fa5
ILT
1309 // The .note.GNU-split-stack section is also special. It
1310 // indicates that the object was compiled with
1311 // -fsplit-stack.
2ea97941 1312 if (this->handle_split_stack_section(name))
364c7fa5 1313 {
e588ea8d 1314 if (!relocatable && !parameters->options().shared())
364c7fa5
ILT
1315 omit[i] = true;
1316 }
1317
05a352e6 1318 // Skip attributes section.
2ea97941 1319 if (parameters->target().is_attributes_section(name))
05a352e6
DK
1320 {
1321 omit[i] = true;
1322 }
1323
6d03d481
ST
1324 bool discard = omit[i];
1325 if (!discard)
1326 {
1327 if (shdr.get_sh_type() == elfcpp::SHT_GROUP)
1328 {
2ea97941 1329 if (!this->include_section_group(symtab, layout, i, name,
6d03d481
ST
1330 shdrs, pnames,
1331 section_names_size,
1332 &omit))
1333 discard = true;
1334 }
1335 else if ((shdr.get_sh_flags() & elfcpp::SHF_GROUP) == 0
2ea97941 1336 && Layout::is_linkonce(name))
6d03d481 1337 {
2ea97941 1338 if (!this->include_linkonce_section(layout, i, name, shdr))
6d03d481
ST
1339 discard = true;
1340 }
a2fb1b05 1341 }
a2fb1b05 1342
09ec0418
CC
1343 // Add the section to the incremental inputs layout.
1344 Incremental_inputs* incremental_inputs = layout->incremental_inputs();
cdc29364
CC
1345 if (incremental_inputs != NULL
1346 && !discard
aa06ae28 1347 && can_incremental_update(shdr.get_sh_type()))
4fb3a1c3
CC
1348 {
1349 off_t sh_size = shdr.get_sh_size();
1350 section_size_type uncompressed_size;
1351 if (this->section_is_compressed(i, &uncompressed_size))
1352 sh_size = uncompressed_size;
1353 incremental_inputs->report_input_section(this, i, name, sh_size);
1354 }
09ec0418 1355
6d03d481
ST
1356 if (discard)
1357 {
1358 // Do not include this section in the link.
1359 out_sections[i] = NULL;
1360 out_section_offsets[i] = invalid_address;
1361 continue;
1362 }
1363 }
1364
ef15dade 1365 if (is_gc_pass_one && parameters->options().gc_sections())
6d03d481 1366 {
cdc29364 1367 if (this->is_section_name_included(name)
6d03d481
ST
1368 || shdr.get_sh_type() == elfcpp::SHT_INIT_ARRAY
1369 || shdr.get_sh_type() == elfcpp::SHT_FINI_ARRAY)
1370 {
1371 symtab->gc()->worklist().push(Section_id(this, i));
1372 }
f1ec9ded
ST
1373 // If the section name XXX can be represented as a C identifier
1374 // it cannot be discarded if there are references to
1375 // __start_XXX and __stop_XXX symbols. These need to be
1376 // specially handled.
1377 if (is_cident(name))
1378 {
1379 symtab->gc()->add_cident_section(name, Section_id(this, i));
1380 }
6d03d481 1381 }
a2fb1b05 1382
6a74a719
ILT
1383 // When doing a relocatable link we are going to copy input
1384 // reloc sections into the output. We only want to copy the
1385 // ones associated with sections which are not being discarded.
1386 // However, we don't know that yet for all sections. So save
6d03d481
ST
1387 // reloc sections and process them later. Garbage collection is
1388 // not triggered when relocatable code is desired.
2ea97941 1389 if (emit_relocs
6a74a719
ILT
1390 && (shdr.get_sh_type() == elfcpp::SHT_REL
1391 || shdr.get_sh_type() == elfcpp::SHT_RELA))
1392 {
1393 reloc_sections.push_back(i);
1394 continue;
1395 }
1396
8851ecca 1397 if (relocatable && shdr.get_sh_type() == elfcpp::SHT_GROUP)
6a74a719
ILT
1398 continue;
1399
730cdc88
ILT
1400 // The .eh_frame section is special. It holds exception frame
1401 // information that we need to read in order to generate the
1402 // exception frame header. We process these after all the other
1403 // sections so that the exception frame reader can reliably
1404 // determine which sections are being discarded, and discard the
1405 // corresponding information.
8851ecca 1406 if (!relocatable
2ea97941 1407 && strcmp(name, ".eh_frame") == 0
6d03d481
ST
1408 && this->check_eh_frame_flags(&shdr))
1409 {
1410 if (is_gc_pass_one)
1411 {
1412 out_sections[i] = reinterpret_cast<Output_section*>(1);
1413 out_section_offsets[i] = invalid_address;
1414 }
14788a3f
ILT
1415 else if (should_defer_layout)
1416 this->deferred_layout_.push_back(Deferred_layout(i, name,
1417 pshdrs,
1418 reloc_shndx[i],
1419 reloc_type[i]));
1420 else
6d03d481
ST
1421 eh_frame_sections.push_back(i);
1422 continue;
1423 }
730cdc88 1424
ef15dade 1425 if (is_gc_pass_two && parameters->options().gc_sections())
6d03d481
ST
1426 {
1427 // This is executed during the second pass of garbage
1428 // collection. do_layout has been called before and some
1429 // sections have been already discarded. Simply ignore
1430 // such sections this time around.
1431 if (out_sections[i] == NULL)
1432 {
1433 gold_assert(out_section_offsets[i] == invalid_address);
1434 continue;
1435 }
ef15dade
ST
1436 if (((shdr.get_sh_flags() & elfcpp::SHF_ALLOC) != 0)
1437 && symtab->gc()->is_section_garbage(this, i))
6d03d481
ST
1438 {
1439 if (parameters->options().print_gc_sections())
89dd1680 1440 gold_info(_("%s: removing unused section from '%s'"
ef15dade 1441 " in file '%s'"),
6d03d481
ST
1442 program_name, this->section_name(i).c_str(),
1443 this->name().c_str());
1444 out_sections[i] = NULL;
1445 out_section_offsets[i] = invalid_address;
1446 continue;
1447 }
1448 }
ef15dade 1449
032ce4e9 1450 if (is_gc_pass_two && parameters->options().icf_enabled())
ef15dade
ST
1451 {
1452 if (out_sections[i] == NULL)
1453 {
1454 gold_assert(out_section_offsets[i] == invalid_address);
1455 continue;
1456 }
1457 if (((shdr.get_sh_flags() & elfcpp::SHF_ALLOC) != 0)
1458 && symtab->icf()->is_section_folded(this, i))
1459 {
1460 if (parameters->options().print_icf_sections())
1461 {
1462 Section_id folded =
1463 symtab->icf()->get_folded_section(this, i);
1464 Relobj* folded_obj =
1465 reinterpret_cast<Relobj*>(folded.first);
1466 gold_info(_("%s: ICF folding section '%s' in file '%s'"
1467 "into '%s' in file '%s'"),
1468 program_name, this->section_name(i).c_str(),
1469 this->name().c_str(),
1470 folded_obj->section_name(folded.second).c_str(),
1471 folded_obj->name().c_str());
1472 }
1473 out_sections[i] = NULL;
1474 out_section_offsets[i] = invalid_address;
1475 continue;
1476 }
1477 }
1478
6d03d481
ST
1479 // Defer layout here if input files are claimed by plugins. When gc
1480 // is turned on this function is called twice. For the second call
1481 // should_defer_layout should be false.
5995b570
CC
1482 if (should_defer_layout && (shdr.get_sh_flags() & elfcpp::SHF_ALLOC))
1483 {
6d03d481 1484 gold_assert(!is_gc_pass_two);
2ea97941 1485 this->deferred_layout_.push_back(Deferred_layout(i, name,
6d03d481 1486 pshdrs,
5995b570
CC
1487 reloc_shndx[i],
1488 reloc_type[i]));
5995b570
CC
1489 // Put dummy values here; real values will be supplied by
1490 // do_layout_deferred_sections.
6d03d481
ST
1491 out_sections[i] = reinterpret_cast<Output_section*>(2);
1492 out_section_offsets[i] = invalid_address;
1493 continue;
ef15dade
ST
1494 }
1495
6d03d481
ST
1496 // During gc_pass_two if a section that was previously deferred is
1497 // found, do not layout the section as layout_deferred_sections will
1498 // do it later from gold.cc.
1499 if (is_gc_pass_two
1500 && (out_sections[i] == reinterpret_cast<Output_section*>(2)))
1501 continue;
1502
1503 if (is_gc_pass_one)
1504 {
1505 // This is during garbage collection. The out_sections are
1506 // assigned in the second call to this function.
5995b570
CC
1507 out_sections[i] = reinterpret_cast<Output_section*>(1);
1508 out_section_offsets[i] = invalid_address;
1509 }
ef9beddf 1510 else
5995b570 1511 {
6d03d481
ST
1512 // When garbage collection is switched on the actual layout
1513 // only happens in the second call.
2ea97941 1514 this->layout_section(layout, i, name, shdr, reloc_shndx[i],
5995b570
CC
1515 reloc_type[i]);
1516 }
12e14209
ILT
1517 }
1518
459e9b03 1519 if (!is_gc_pass_two)
83e17bd5 1520 layout->layout_gnu_stack(seen_gnu_stack, gnu_stack_flags, this);
35cdfc9a 1521
6a74a719 1522 // When doing a relocatable link handle the reloc sections at the
ef15dade
ST
1523 // end. Garbage collection and Identical Code Folding is not
1524 // turned on for relocatable code.
2ea97941 1525 if (emit_relocs)
6a74a719 1526 this->size_relocatable_relocs();
ef15dade
ST
1527
1528 gold_assert(!(is_gc_or_icf) || reloc_sections.empty());
1529
6a74a719
ILT
1530 for (std::vector<unsigned int>::const_iterator p = reloc_sections.begin();
1531 p != reloc_sections.end();
1532 ++p)
1533 {
1534 unsigned int i = *p;
1535 const unsigned char* pshdr;
6d03d481 1536 pshdr = section_headers_data + i * This::shdr_size;
6a74a719
ILT
1537 typename This::Shdr shdr(pshdr);
1538
d491d34e 1539 unsigned int data_shndx = this->adjust_shndx(shdr.get_sh_info());
2ea97941 1540 if (data_shndx >= shnum)
6a74a719
ILT
1541 {
1542 // We already warned about this above.
1543 continue;
1544 }
1545
ef9beddf 1546 Output_section* data_section = out_sections[data_shndx];
f3a2388f
CC
1547 if (data_section == reinterpret_cast<Output_section*>(2))
1548 {
1549 // The layout for the data section was deferred, so we need
1550 // to defer the relocation section, too.
1551 const char* name = pnames + shdr.get_sh_name();
1552 this->deferred_layout_relocs_.push_back(
1553 Deferred_layout(i, name, pshdr, 0, elfcpp::SHT_NULL));
1554 out_sections[i] = reinterpret_cast<Output_section*>(2);
1555 out_section_offsets[i] = invalid_address;
1556 continue;
1557 }
6a74a719
ILT
1558 if (data_section == NULL)
1559 {
ef9beddf 1560 out_sections[i] = NULL;
eff45813 1561 out_section_offsets[i] = invalid_address;
6a74a719
ILT
1562 continue;
1563 }
1564
1565 Relocatable_relocs* rr = new Relocatable_relocs();
1566 this->set_relocatable_relocs(i, rr);
1567
2ea97941
ILT
1568 Output_section* os = layout->layout_reloc(this, i, shdr, data_section,
1569 rr);
ef9beddf 1570 out_sections[i] = os;
eff45813 1571 out_section_offsets[i] = invalid_address;
6a74a719
ILT
1572 }
1573
730cdc88 1574 // Handle the .eh_frame sections at the end.
6d03d481 1575 gold_assert(!is_gc_pass_one || eh_frame_sections.empty());
730cdc88
ILT
1576 for (std::vector<unsigned int>::const_iterator p = eh_frame_sections.begin();
1577 p != eh_frame_sections.end();
1578 ++p)
1579 {
730cdc88 1580 unsigned int i = *p;
ca09d69a 1581 const unsigned char* pshdr;
6d03d481 1582 pshdr = section_headers_data + i * This::shdr_size;
730cdc88
ILT
1583 typename This::Shdr shdr(pshdr);
1584
14788a3f
ILT
1585 this->layout_eh_frame_section(layout,
1586 symbols_data,
1587 symbols_size,
1588 symbol_names_data,
1589 symbol_names_size,
1590 i,
1591 shdr,
1592 reloc_shndx[i],
1593 reloc_type[i]);
730cdc88
ILT
1594 }
1595
6d03d481
ST
1596 if (is_gc_pass_two)
1597 {
1598 delete[] gc_sd->section_headers_data;
1599 delete[] gc_sd->section_names_data;
1600 delete[] gc_sd->symbols_data;
1601 delete[] gc_sd->symbol_names_data;
ef15dade 1602 this->set_symbols_data(NULL);
6d03d481
ST
1603 }
1604 else
1605 {
1606 delete sd->section_headers;
1607 sd->section_headers = NULL;
1608 delete sd->section_names;
1609 sd->section_names = NULL;
1610 }
12e14209
ILT
1611}
1612
5995b570
CC
1613// Layout sections whose layout was deferred while waiting for
1614// input files from a plugin.
1615
1616template<int size, bool big_endian>
1617void
6fa2a40b 1618Sized_relobj_file<size, big_endian>::do_layout_deferred_sections(Layout* layout)
5995b570
CC
1619{
1620 typename std::vector<Deferred_layout>::iterator deferred;
1621
1622 for (deferred = this->deferred_layout_.begin();
1623 deferred != this->deferred_layout_.end();
1624 ++deferred)
1625 {
1626 typename This::Shdr shdr(deferred->shdr_data_);
5e0f337e
RÁE
1627 // If the section is not included, it is because the garbage collector
1628 // decided it is not needed. Avoid reverting that decision.
1629 if (!this->is_section_included(deferred->shndx_))
1630 continue;
1631
14788a3f
ILT
1632 if (parameters->options().relocatable()
1633 || deferred->name_ != ".eh_frame"
1634 || !this->check_eh_frame_flags(&shdr))
1635 this->layout_section(layout, deferred->shndx_, deferred->name_.c_str(),
1636 shdr, deferred->reloc_shndx_,
1637 deferred->reloc_type_);
1638 else
1639 {
1640 // Reading the symbols again here may be slow.
1641 Read_symbols_data sd;
1642 this->read_symbols(&sd);
1643 this->layout_eh_frame_section(layout,
1644 sd.symbols->data(),
1645 sd.symbols_size,
1646 sd.symbol_names->data(),
1647 sd.symbol_names_size,
1648 deferred->shndx_,
1649 shdr,
1650 deferred->reloc_shndx_,
1651 deferred->reloc_type_);
1652 }
5995b570
CC
1653 }
1654
1655 this->deferred_layout_.clear();
f3a2388f
CC
1656
1657 // Now handle the deferred relocation sections.
1658
1659 Output_sections& out_sections(this->output_sections());
6fa2a40b 1660 std::vector<Address>& out_section_offsets(this->section_offsets());
f3a2388f
CC
1661
1662 for (deferred = this->deferred_layout_relocs_.begin();
1663 deferred != this->deferred_layout_relocs_.end();
1664 ++deferred)
1665 {
1666 unsigned int shndx = deferred->shndx_;
1667 typename This::Shdr shdr(deferred->shdr_data_);
1668 unsigned int data_shndx = this->adjust_shndx(shdr.get_sh_info());
1669
1670 Output_section* data_section = out_sections[data_shndx];
1671 if (data_section == NULL)
1672 {
1673 out_sections[shndx] = NULL;
1674 out_section_offsets[shndx] = invalid_address;
1675 continue;
1676 }
1677
1678 Relocatable_relocs* rr = new Relocatable_relocs();
1679 this->set_relocatable_relocs(shndx, rr);
1680
1681 Output_section* os = layout->layout_reloc(this, shndx, shdr,
1682 data_section, rr);
1683 out_sections[shndx] = os;
1684 out_section_offsets[shndx] = invalid_address;
1685 }
5995b570
CC
1686}
1687
12e14209
ILT
1688// Add the symbols to the symbol table.
1689
1690template<int size, bool big_endian>
1691void
6fa2a40b
CC
1692Sized_relobj_file<size, big_endian>::do_add_symbols(Symbol_table* symtab,
1693 Read_symbols_data* sd,
1694 Layout*)
12e14209
ILT
1695{
1696 if (sd->symbols == NULL)
1697 {
a3ad94ed 1698 gold_assert(sd->symbol_names == NULL);
12e14209
ILT
1699 return;
1700 }
a2fb1b05 1701
2ea97941 1702 const int sym_size = This::sym_size;
730cdc88 1703 size_t symcount = ((sd->symbols_size - sd->external_symbols_offset)
2ea97941
ILT
1704 / sym_size);
1705 if (symcount * sym_size != sd->symbols_size - sd->external_symbols_offset)
12e14209 1706 {
75f2446e
ILT
1707 this->error(_("size of symbols is not multiple of symbol size"));
1708 return;
a2fb1b05 1709 }
12e14209 1710
730cdc88 1711 this->symbols_.resize(symcount);
12e14209 1712
12e14209
ILT
1713 const char* sym_names =
1714 reinterpret_cast<const char*>(sd->symbol_names->data());
730cdc88
ILT
1715 symtab->add_from_relobj(this,
1716 sd->symbols->data() + sd->external_symbols_offset,
7fcd3aa9 1717 symcount, this->local_symbol_count_,
d491d34e 1718 sym_names, sd->symbol_names_size,
92de84a6
ILT
1719 &this->symbols_,
1720 &this->defined_count_);
12e14209
ILT
1721
1722 delete sd->symbols;
1723 sd->symbols = NULL;
1724 delete sd->symbol_names;
1725 sd->symbol_names = NULL;
bae7f79e
ILT
1726}
1727
b0193076
RÁE
1728// Find out if this object, that is a member of a lib group, should be included
1729// in the link. We check every symbol defined by this object. If the symbol
1730// table has a strong undefined reference to that symbol, we have to include
1731// the object.
1732
1733template<int size, bool big_endian>
1734Archive::Should_include
6fa2a40b
CC
1735Sized_relobj_file<size, big_endian>::do_should_include_member(
1736 Symbol_table* symtab,
1737 Layout* layout,
1738 Read_symbols_data* sd,
1739 std::string* why)
b0193076
RÁE
1740{
1741 char* tmpbuf = NULL;
1742 size_t tmpbuflen = 0;
1743 const char* sym_names =
1744 reinterpret_cast<const char*>(sd->symbol_names->data());
1745 const unsigned char* syms =
1746 sd->symbols->data() + sd->external_symbols_offset;
1747 const int sym_size = elfcpp::Elf_sizes<size>::sym_size;
1748 size_t symcount = ((sd->symbols_size - sd->external_symbols_offset)
1749 / sym_size);
1750
1751 const unsigned char* p = syms;
1752
1753 for (size_t i = 0; i < symcount; ++i, p += sym_size)
1754 {
1755 elfcpp::Sym<size, big_endian> sym(p);
1756 unsigned int st_shndx = sym.get_st_shndx();
1757 if (st_shndx == elfcpp::SHN_UNDEF)
1758 continue;
1759
1760 unsigned int st_name = sym.get_st_name();
1761 const char* name = sym_names + st_name;
1762 Symbol* symbol;
88a4108b
ILT
1763 Archive::Should_include t = Archive::should_include_member(symtab,
1764 layout,
1765 name,
b0193076
RÁE
1766 &symbol, why,
1767 &tmpbuf,
1768 &tmpbuflen);
1769 if (t == Archive::SHOULD_INCLUDE_YES)
1770 {
1771 if (tmpbuf != NULL)
1772 free(tmpbuf);
1773 return t;
1774 }
1775 }
1776 if (tmpbuf != NULL)
1777 free(tmpbuf);
1778 return Archive::SHOULD_INCLUDE_UNKNOWN;
1779}
1780
e0c52780
CC
1781// Iterate over global defined symbols, calling a visitor class V for each.
1782
1783template<int size, bool big_endian>
1784void
6fa2a40b 1785Sized_relobj_file<size, big_endian>::do_for_all_global_symbols(
e0c52780
CC
1786 Read_symbols_data* sd,
1787 Library_base::Symbol_visitor_base* v)
1788{
1789 const char* sym_names =
1790 reinterpret_cast<const char*>(sd->symbol_names->data());
1791 const unsigned char* syms =
1792 sd->symbols->data() + sd->external_symbols_offset;
1793 const int sym_size = elfcpp::Elf_sizes<size>::sym_size;
1794 size_t symcount = ((sd->symbols_size - sd->external_symbols_offset)
1795 / sym_size);
1796 const unsigned char* p = syms;
1797
1798 for (size_t i = 0; i < symcount; ++i, p += sym_size)
1799 {
1800 elfcpp::Sym<size, big_endian> sym(p);
1801 if (sym.get_st_shndx() != elfcpp::SHN_UNDEF)
1802 v->visit(sym_names + sym.get_st_name());
1803 }
1804}
1805
7223e9ca
ILT
1806// Return whether the local symbol SYMNDX has a PLT offset.
1807
1808template<int size, bool big_endian>
1809bool
6fa2a40b
CC
1810Sized_relobj_file<size, big_endian>::local_has_plt_offset(
1811 unsigned int symndx) const
7223e9ca
ILT
1812{
1813 typename Local_plt_offsets::const_iterator p =
1814 this->local_plt_offsets_.find(symndx);
1815 return p != this->local_plt_offsets_.end();
1816}
1817
1818// Get the PLT offset of a local symbol.
1819
1820template<int size, bool big_endian>
1821unsigned int
6fa2a40b 1822Sized_relobj_file<size, big_endian>::local_plt_offset(unsigned int symndx) const
7223e9ca
ILT
1823{
1824 typename Local_plt_offsets::const_iterator p =
1825 this->local_plt_offsets_.find(symndx);
1826 gold_assert(p != this->local_plt_offsets_.end());
1827 return p->second;
1828}
1829
1830// Set the PLT offset of a local symbol.
1831
1832template<int size, bool big_endian>
1833void
6fa2a40b
CC
1834Sized_relobj_file<size, big_endian>::set_local_plt_offset(
1835 unsigned int symndx, unsigned int plt_offset)
7223e9ca
ILT
1836{
1837 std::pair<typename Local_plt_offsets::iterator, bool> ins =
1838 this->local_plt_offsets_.insert(std::make_pair(symndx, plt_offset));
1839 gold_assert(ins.second);
1840}
1841
cb295612
ILT
1842// First pass over the local symbols. Here we add their names to
1843// *POOL and *DYNPOOL, and we store the symbol value in
1844// THIS->LOCAL_VALUES_. This function is always called from a
1845// singleton thread. This is followed by a call to
1846// finalize_local_symbols.
75f65a3e
ILT
1847
1848template<int size, bool big_endian>
7bf1f802 1849void
6fa2a40b
CC
1850Sized_relobj_file<size, big_endian>::do_count_local_symbols(Stringpool* pool,
1851 Stringpool* dynpool)
75f65a3e 1852{
a3ad94ed 1853 gold_assert(this->symtab_shndx_ != -1U);
645f8123 1854 if (this->symtab_shndx_ == 0)
61ba1cf9
ILT
1855 {
1856 // This object has no symbols. Weird but legal.
7bf1f802 1857 return;
61ba1cf9
ILT
1858 }
1859
75f65a3e 1860 // Read the symbol table section header.
2ea97941 1861 const unsigned int symtab_shndx = this->symtab_shndx_;
645f8123 1862 typename This::Shdr symtabshdr(this,
2ea97941 1863 this->elf_file_.section_header(symtab_shndx));
a3ad94ed 1864 gold_assert(symtabshdr.get_sh_type() == elfcpp::SHT_SYMTAB);
75f65a3e
ILT
1865
1866 // Read the local symbols.
2ea97941 1867 const int sym_size = This::sym_size;
92e059d8 1868 const unsigned int loccount = this->local_symbol_count_;
a3ad94ed 1869 gold_assert(loccount == symtabshdr.get_sh_info());
2ea97941 1870 off_t locsize = loccount * sym_size;
75f65a3e 1871 const unsigned char* psyms = this->get_view(symtabshdr.get_sh_offset(),
39d0cb0e 1872 locsize, true, true);
75f65a3e 1873
75f65a3e 1874 // Read the symbol names.
d491d34e
ILT
1875 const unsigned int strtab_shndx =
1876 this->adjust_shndx(symtabshdr.get_sh_link());
8383303e 1877 section_size_type strtab_size;
645f8123 1878 const unsigned char* pnamesu = this->section_contents(strtab_shndx,
9eb9fa57
ILT
1879 &strtab_size,
1880 true);
75f65a3e
ILT
1881 const char* pnames = reinterpret_cast<const char*>(pnamesu);
1882
1883 // Loop over the local symbols.
1884
ef9beddf 1885 const Output_sections& out_sections(this->output_sections());
2ea97941 1886 unsigned int shnum = this->shnum();
61ba1cf9 1887 unsigned int count = 0;
7bf1f802 1888 unsigned int dyncount = 0;
75f65a3e 1889 // Skip the first, dummy, symbol.
2ea97941 1890 psyms += sym_size;
403676b5 1891 bool strip_all = parameters->options().strip_all();
ebcc8304 1892 bool discard_all = parameters->options().discard_all();
bb04269c 1893 bool discard_locals = parameters->options().discard_locals();
2ea97941 1894 for (unsigned int i = 1; i < loccount; ++i, psyms += sym_size)
75f65a3e
ILT
1895 {
1896 elfcpp::Sym<size, big_endian> sym(psyms);
1897
b8e6aad9
ILT
1898 Symbol_value<size>& lv(this->local_values_[i]);
1899
d491d34e
ILT
1900 bool is_ordinary;
1901 unsigned int shndx = this->adjust_sym_shndx(i, sym.get_st_shndx(),
1902 &is_ordinary);
1903 lv.set_input_shndx(shndx, is_ordinary);
75f65a3e 1904
063f12a8
ILT
1905 if (sym.get_st_type() == elfcpp::STT_SECTION)
1906 lv.set_is_section_symbol();
7bf1f802
ILT
1907 else if (sym.get_st_type() == elfcpp::STT_TLS)
1908 lv.set_is_tls_symbol();
7223e9ca
ILT
1909 else if (sym.get_st_type() == elfcpp::STT_GNU_IFUNC)
1910 lv.set_is_ifunc_symbol();
7bf1f802
ILT
1911
1912 // Save the input symbol value for use in do_finalize_local_symbols().
1913 lv.set_input_value(sym.get_st_value());
1914
1915 // Decide whether this symbol should go into the output file.
063f12a8 1916
2ea97941 1917 if ((shndx < shnum && out_sections[shndx] == NULL)
ebcc8304 1918 || shndx == this->discarded_eh_frame_shndx_)
7bf1f802
ILT
1919 {
1920 lv.set_no_output_symtab_entry();
dceae3c1 1921 gold_assert(!lv.needs_output_dynsym_entry());
7bf1f802
ILT
1922 continue;
1923 }
1924
1925 if (sym.get_st_type() == elfcpp::STT_SECTION)
1926 {
1927 lv.set_no_output_symtab_entry();
dceae3c1 1928 gold_assert(!lv.needs_output_dynsym_entry());
7bf1f802
ILT
1929 continue;
1930 }
1931
1932 if (sym.get_st_name() >= strtab_size)
1933 {
1934 this->error(_("local symbol %u section name out of range: %u >= %u"),
1935 i, sym.get_st_name(),
1936 static_cast<unsigned int>(strtab_size));
1937 lv.set_no_output_symtab_entry();
1938 continue;
1939 }
1940
ebcc8304
ILT
1941 const char* name = pnames + sym.get_st_name();
1942
1943 // If needed, add the symbol to the dynamic symbol table string pool.
1944 if (lv.needs_output_dynsym_entry())
1945 {
1946 dynpool->add(name, true, NULL);
1947 ++dyncount;
1948 }
1949
403676b5
CC
1950 if (strip_all
1951 || (discard_all && lv.may_be_discarded_from_output_symtab()))
ebcc8304
ILT
1952 {
1953 lv.set_no_output_symtab_entry();
1954 continue;
1955 }
1956
bb04269c
DK
1957 // If --discard-locals option is used, discard all temporary local
1958 // symbols. These symbols start with system-specific local label
1959 // prefixes, typically .L for ELF system. We want to be compatible
1960 // with GNU ld so here we essentially use the same check in
1961 // bfd_is_local_label(). The code is different because we already
1962 // know that:
1963 //
1964 // - the symbol is local and thus cannot have global or weak binding.
1965 // - the symbol is not a section symbol.
1966 // - the symbol has a name.
1967 //
1968 // We do not discard a symbol if it needs a dynamic symbol entry.
bb04269c
DK
1969 if (discard_locals
1970 && sym.get_st_type() != elfcpp::STT_FILE
1971 && !lv.needs_output_dynsym_entry()
d3bbad62 1972 && lv.may_be_discarded_from_output_symtab()
2ea97941 1973 && parameters->target().is_local_label_name(name))
bb04269c
DK
1974 {
1975 lv.set_no_output_symtab_entry();
1976 continue;
1977 }
1978
8c604651
CS
1979 // Discard the local symbol if -retain_symbols_file is specified
1980 // and the local symbol is not in that file.
2ea97941 1981 if (!parameters->options().should_retain_symbol(name))
8c604651
CS
1982 {
1983 lv.set_no_output_symtab_entry();
1984 continue;
1985 }
1986
bb04269c 1987 // Add the symbol to the symbol table string pool.
2ea97941 1988 pool->add(name, true, NULL);
7bf1f802 1989 ++count;
7bf1f802
ILT
1990 }
1991
1992 this->output_local_symbol_count_ = count;
1993 this->output_local_dynsym_count_ = dyncount;
1994}
1995
aa98ff75
DK
1996// Compute the final value of a local symbol.
1997
1998template<int size, bool big_endian>
6fa2a40b
CC
1999typename Sized_relobj_file<size, big_endian>::Compute_final_local_value_status
2000Sized_relobj_file<size, big_endian>::compute_final_local_value_internal(
aa98ff75
DK
2001 unsigned int r_sym,
2002 const Symbol_value<size>* lv_in,
2003 Symbol_value<size>* lv_out,
2004 bool relocatable,
2005 const Output_sections& out_sections,
2006 const std::vector<Address>& out_offsets,
2007 const Symbol_table* symtab)
2008{
2009 // We are going to overwrite *LV_OUT, if it has a merged symbol value,
2010 // we may have a memory leak.
2011 gold_assert(lv_out->has_output_value());
2012
2013 bool is_ordinary;
2014 unsigned int shndx = lv_in->input_shndx(&is_ordinary);
2015
2016 // Set the output symbol value.
2017
2018 if (!is_ordinary)
2019 {
2020 if (shndx == elfcpp::SHN_ABS || Symbol::is_common_shndx(shndx))
2021 lv_out->set_output_value(lv_in->input_value());
2022 else
2023 {
2024 this->error(_("unknown section index %u for local symbol %u"),
2025 shndx, r_sym);
2026 lv_out->set_output_value(0);
2027 return This::CFLV_ERROR;
2028 }
2029 }
2030 else
2031 {
2032 if (shndx >= this->shnum())
2033 {
2034 this->error(_("local symbol %u section index %u out of range"),
2035 r_sym, shndx);
2036 lv_out->set_output_value(0);
2037 return This::CFLV_ERROR;
2038 }
2039
2040 Output_section* os = out_sections[shndx];
2041 Address secoffset = out_offsets[shndx];
2042 if (symtab->is_section_folded(this, shndx))
2043 {
2044 gold_assert(os == NULL && secoffset == invalid_address);
2045 // Get the os of the section it is folded onto.
2046 Section_id folded = symtab->icf()->get_folded_section(this,
2047 shndx);
2048 gold_assert(folded.first != NULL);
6fa2a40b
CC
2049 Sized_relobj_file<size, big_endian>* folded_obj = reinterpret_cast
2050 <Sized_relobj_file<size, big_endian>*>(folded.first);
aa98ff75
DK
2051 os = folded_obj->output_section(folded.second);
2052 gold_assert(os != NULL);
2053 secoffset = folded_obj->get_output_section_offset(folded.second);
2054
2055 // This could be a relaxed input section.
2056 if (secoffset == invalid_address)
2057 {
2058 const Output_relaxed_input_section* relaxed_section =
2059 os->find_relaxed_input_section(folded_obj, folded.second);
2060 gold_assert(relaxed_section != NULL);
2061 secoffset = relaxed_section->address() - os->address();
2062 }
2063 }
2064
2065 if (os == NULL)
2066 {
2067 // This local symbol belongs to a section we are discarding.
2068 // In some cases when applying relocations later, we will
2069 // attempt to match it to the corresponding kept section,
2070 // so we leave the input value unchanged here.
2071 return This::CFLV_DISCARDED;
2072 }
2073 else if (secoffset == invalid_address)
2074 {
2075 uint64_t start;
2076
2077 // This is a SHF_MERGE section or one which otherwise
2078 // requires special handling.
2079 if (shndx == this->discarded_eh_frame_shndx_)
2080 {
2081 // This local symbol belongs to a discarded .eh_frame
2082 // section. Just treat it like the case in which
2083 // os == NULL above.
2084 gold_assert(this->has_eh_frame_);
2085 return This::CFLV_DISCARDED;
2086 }
2087 else if (!lv_in->is_section_symbol())
2088 {
2089 // This is not a section symbol. We can determine
2090 // the final value now.
2091 lv_out->set_output_value(
2092 os->output_address(this, shndx, lv_in->input_value()));
2093 }
2094 else if (!os->find_starting_output_address(this, shndx, &start))
2095 {
2096 // This is a section symbol, but apparently not one in a
2097 // merged section. First check to see if this is a relaxed
2098 // input section. If so, use its address. Otherwise just
2099 // use the start of the output section. This happens with
2100 // relocatable links when the input object has section
2101 // symbols for arbitrary non-merge sections.
2102 const Output_section_data* posd =
2103 os->find_relaxed_input_section(this, shndx);
2104 if (posd != NULL)
2105 {
2106 Address relocatable_link_adjustment =
2107 relocatable ? os->address() : 0;
2108 lv_out->set_output_value(posd->address()
2109 - relocatable_link_adjustment);
2110 }
2111 else
2112 lv_out->set_output_value(os->address());
2113 }
2114 else
2115 {
2116 // We have to consider the addend to determine the
2117 // value to use in a relocation. START is the start
2118 // of this input section. If we are doing a relocatable
2119 // link, use offset from start output section instead of
2120 // address.
2121 Address adjusted_start =
2122 relocatable ? start - os->address() : start;
2123 Merged_symbol_value<size>* msv =
2124 new Merged_symbol_value<size>(lv_in->input_value(),
2125 adjusted_start);
2126 lv_out->set_merged_symbol_value(msv);
2127 }
2128 }
2129 else if (lv_in->is_tls_symbol())
2130 lv_out->set_output_value(os->tls_offset()
2131 + secoffset
2132 + lv_in->input_value());
2133 else
2134 lv_out->set_output_value((relocatable ? 0 : os->address())
2135 + secoffset
2136 + lv_in->input_value());
2137 }
2138 return This::CFLV_OK;
2139}
2140
2141// Compute final local symbol value. R_SYM is the index of a local
2142// symbol in symbol table. LV points to a symbol value, which is
2143// expected to hold the input value and to be over-written by the
2144// final value. SYMTAB points to a symbol table. Some targets may want
2145// to know would-be-finalized local symbol values in relaxation.
2146// Hence we provide this method. Since this method updates *LV, a
2147// callee should make a copy of the original local symbol value and
2148// use the copy instead of modifying an object's local symbols before
2149// everything is finalized. The caller should also free up any allocated
2150// memory in the return value in *LV.
2151template<int size, bool big_endian>
6fa2a40b
CC
2152typename Sized_relobj_file<size, big_endian>::Compute_final_local_value_status
2153Sized_relobj_file<size, big_endian>::compute_final_local_value(
aa98ff75
DK
2154 unsigned int r_sym,
2155 const Symbol_value<size>* lv_in,
2156 Symbol_value<size>* lv_out,
2157 const Symbol_table* symtab)
2158{
2159 // This is just a wrapper of compute_final_local_value_internal.
2160 const bool relocatable = parameters->options().relocatable();
2161 const Output_sections& out_sections(this->output_sections());
6fa2a40b 2162 const std::vector<Address>& out_offsets(this->section_offsets());
aa98ff75
DK
2163 return this->compute_final_local_value_internal(r_sym, lv_in, lv_out,
2164 relocatable, out_sections,
2165 out_offsets, symtab);
2166}
2167
cb295612 2168// Finalize the local symbols. Here we set the final value in
7bf1f802 2169// THIS->LOCAL_VALUES_ and set their output symbol table indexes.
17a1d0a9 2170// This function is always called from a singleton thread. The actual
7bf1f802
ILT
2171// output of the local symbols will occur in a separate task.
2172
2173template<int size, bool big_endian>
2174unsigned int
6fa2a40b
CC
2175Sized_relobj_file<size, big_endian>::do_finalize_local_symbols(
2176 unsigned int index,
2177 off_t off,
2178 Symbol_table* symtab)
7bf1f802
ILT
2179{
2180 gold_assert(off == static_cast<off_t>(align_address(off, size >> 3)));
2181
2182 const unsigned int loccount = this->local_symbol_count_;
2183 this->local_symbol_offset_ = off;
2184
b4ecf66b 2185 const bool relocatable = parameters->options().relocatable();
ef9beddf 2186 const Output_sections& out_sections(this->output_sections());
6fa2a40b 2187 const std::vector<Address>& out_offsets(this->section_offsets());
7bf1f802
ILT
2188
2189 for (unsigned int i = 1; i < loccount; ++i)
2190 {
aa98ff75 2191 Symbol_value<size>* lv = &this->local_values_[i];
7bf1f802 2192
6695e4b3 2193 Compute_final_local_value_status cflv_status =
aa98ff75
DK
2194 this->compute_final_local_value_internal(i, lv, lv, relocatable,
2195 out_sections, out_offsets,
2196 symtab);
2197 switch (cflv_status)
75f65a3e 2198 {
aa98ff75
DK
2199 case CFLV_OK:
2200 if (!lv->is_output_symtab_index_set())
75f65a3e 2201 {
aa98ff75
DK
2202 lv->set_output_symtab_index(index);
2203 ++index;
75f65a3e 2204 }
aa98ff75
DK
2205 break;
2206 case CFLV_DISCARDED:
2207 case CFLV_ERROR:
2208 // Do nothing.
2209 break;
2210 default:
2211 gold_unreachable();
75f65a3e 2212 }
7bf1f802
ILT
2213 }
2214 return index;
2215}
645f8123 2216
7bf1f802 2217// Set the output dynamic symbol table indexes for the local variables.
c06b7b0b 2218
7bf1f802
ILT
2219template<int size, bool big_endian>
2220unsigned int
6fa2a40b
CC
2221Sized_relobj_file<size, big_endian>::do_set_local_dynsym_indexes(
2222 unsigned int index)
7bf1f802
ILT
2223{
2224 const unsigned int loccount = this->local_symbol_count_;
2225 for (unsigned int i = 1; i < loccount; ++i)
2226 {
2227 Symbol_value<size>& lv(this->local_values_[i]);
2228 if (lv.needs_output_dynsym_entry())
2229 {
2230 lv.set_output_dynsym_index(index);
2231 ++index;
2232 }
75f65a3e 2233 }
7bf1f802
ILT
2234 return index;
2235}
75f65a3e 2236
7bf1f802
ILT
2237// Set the offset where local dynamic symbol information will be stored.
2238// Returns the count of local symbols contributed to the symbol table by
2239// this object.
61ba1cf9 2240
7bf1f802
ILT
2241template<int size, bool big_endian>
2242unsigned int
6fa2a40b 2243Sized_relobj_file<size, big_endian>::do_set_local_dynsym_offset(off_t off)
7bf1f802
ILT
2244{
2245 gold_assert(off == static_cast<off_t>(align_address(off, size >> 3)));
2246 this->local_dynsym_offset_ = off;
2247 return this->output_local_dynsym_count_;
75f65a3e
ILT
2248}
2249
ef15dade
ST
2250// If Symbols_data is not NULL get the section flags from here otherwise
2251// get it from the file.
2252
2253template<int size, bool big_endian>
2254uint64_t
6fa2a40b 2255Sized_relobj_file<size, big_endian>::do_section_flags(unsigned int shndx)
ef15dade
ST
2256{
2257 Symbols_data* sd = this->get_symbols_data();
2258 if (sd != NULL)
2259 {
2260 const unsigned char* pshdrs = sd->section_headers_data
2261 + This::shdr_size * shndx;
2262 typename This::Shdr shdr(pshdrs);
2263 return shdr.get_sh_flags();
2264 }
2265 // If sd is NULL, read the section header from the file.
2266 return this->elf_file_.section_flags(shndx);
2267}
2268
2269// Get the section's ent size from Symbols_data. Called by get_section_contents
2270// in icf.cc
2271
2272template<int size, bool big_endian>
2273uint64_t
6fa2a40b 2274Sized_relobj_file<size, big_endian>::do_section_entsize(unsigned int shndx)
ef15dade
ST
2275{
2276 Symbols_data* sd = this->get_symbols_data();
ca09d69a 2277 gold_assert(sd != NULL);
ef15dade
ST
2278
2279 const unsigned char* pshdrs = sd->section_headers_data
2280 + This::shdr_size * shndx;
2281 typename This::Shdr shdr(pshdrs);
2282 return shdr.get_sh_entsize();
2283}
2284
61ba1cf9
ILT
2285// Write out the local symbols.
2286
2287template<int size, bool big_endian>
2288void
6fa2a40b 2289Sized_relobj_file<size, big_endian>::write_local_symbols(
17a1d0a9
ILT
2290 Output_file* of,
2291 const Stringpool* sympool,
d491d34e
ILT
2292 const Stringpool* dynpool,
2293 Output_symtab_xindex* symtab_xindex,
cdc29364
CC
2294 Output_symtab_xindex* dynsym_xindex,
2295 off_t symtab_off)
61ba1cf9 2296{
99e9a495
ILT
2297 const bool strip_all = parameters->options().strip_all();
2298 if (strip_all)
2299 {
2300 if (this->output_local_dynsym_count_ == 0)
2301 return;
2302 this->output_local_symbol_count_ = 0;
2303 }
9e2dcb77 2304
a3ad94ed 2305 gold_assert(this->symtab_shndx_ != -1U);
645f8123 2306 if (this->symtab_shndx_ == 0)
61ba1cf9
ILT
2307 {
2308 // This object has no symbols. Weird but legal.
2309 return;
2310 }
2311
2312 // Read the symbol table section header.
2ea97941 2313 const unsigned int symtab_shndx = this->symtab_shndx_;
645f8123 2314 typename This::Shdr symtabshdr(this,
2ea97941 2315 this->elf_file_.section_header(symtab_shndx));
a3ad94ed 2316 gold_assert(symtabshdr.get_sh_type() == elfcpp::SHT_SYMTAB);
92e059d8 2317 const unsigned int loccount = this->local_symbol_count_;
a3ad94ed 2318 gold_assert(loccount == symtabshdr.get_sh_info());
61ba1cf9
ILT
2319
2320 // Read the local symbols.
2ea97941
ILT
2321 const int sym_size = This::sym_size;
2322 off_t locsize = loccount * sym_size;
61ba1cf9 2323 const unsigned char* psyms = this->get_view(symtabshdr.get_sh_offset(),
39d0cb0e 2324 locsize, true, false);
61ba1cf9 2325
61ba1cf9 2326 // Read the symbol names.
d491d34e
ILT
2327 const unsigned int strtab_shndx =
2328 this->adjust_shndx(symtabshdr.get_sh_link());
8383303e 2329 section_size_type strtab_size;
645f8123 2330 const unsigned char* pnamesu = this->section_contents(strtab_shndx,
9eb9fa57 2331 &strtab_size,
cb295612 2332 false);
61ba1cf9
ILT
2333 const char* pnames = reinterpret_cast<const char*>(pnamesu);
2334
7bf1f802
ILT
2335 // Get views into the output file for the portions of the symbol table
2336 // and the dynamic symbol table that we will be writing.
2ea97941 2337 off_t output_size = this->output_local_symbol_count_ * sym_size;
f2619d6c 2338 unsigned char* oview = NULL;
7bf1f802 2339 if (output_size > 0)
cdc29364
CC
2340 oview = of->get_output_view(symtab_off + this->local_symbol_offset_,
2341 output_size);
7bf1f802 2342
2ea97941 2343 off_t dyn_output_size = this->output_local_dynsym_count_ * sym_size;
7bf1f802
ILT
2344 unsigned char* dyn_oview = NULL;
2345 if (dyn_output_size > 0)
2346 dyn_oview = of->get_output_view(this->local_dynsym_offset_,
2347 dyn_output_size);
61ba1cf9 2348
ef9beddf 2349 const Output_sections out_sections(this->output_sections());
c06b7b0b 2350
a3ad94ed 2351 gold_assert(this->local_values_.size() == loccount);
61ba1cf9 2352
61ba1cf9 2353 unsigned char* ov = oview;
7bf1f802 2354 unsigned char* dyn_ov = dyn_oview;
2ea97941
ILT
2355 psyms += sym_size;
2356 for (unsigned int i = 1; i < loccount; ++i, psyms += sym_size)
61ba1cf9
ILT
2357 {
2358 elfcpp::Sym<size, big_endian> isym(psyms);
f6ce93d6 2359
d491d34e
ILT
2360 Symbol_value<size>& lv(this->local_values_[i]);
2361
2362 bool is_ordinary;
2363 unsigned int st_shndx = this->adjust_sym_shndx(i, isym.get_st_shndx(),
2364 &is_ordinary);
2365 if (is_ordinary)
61ba1cf9 2366 {
ef9beddf
ILT
2367 gold_assert(st_shndx < out_sections.size());
2368 if (out_sections[st_shndx] == NULL)
61ba1cf9 2369 continue;
ef9beddf 2370 st_shndx = out_sections[st_shndx]->out_shndx();
d491d34e
ILT
2371 if (st_shndx >= elfcpp::SHN_LORESERVE)
2372 {
d3bbad62 2373 if (lv.has_output_symtab_entry())
d491d34e 2374 symtab_xindex->add(lv.output_symtab_index(), st_shndx);
d3bbad62 2375 if (lv.has_output_dynsym_entry())
d491d34e
ILT
2376 dynsym_xindex->add(lv.output_dynsym_index(), st_shndx);
2377 st_shndx = elfcpp::SHN_XINDEX;
2378 }
61ba1cf9
ILT
2379 }
2380
7bf1f802 2381 // Write the symbol to the output symbol table.
d3bbad62 2382 if (lv.has_output_symtab_entry())
7bf1f802
ILT
2383 {
2384 elfcpp::Sym_write<size, big_endian> osym(ov);
2385
2386 gold_assert(isym.get_st_name() < strtab_size);
2ea97941
ILT
2387 const char* name = pnames + isym.get_st_name();
2388 osym.put_st_name(sympool->get_offset(name));
7bf1f802
ILT
2389 osym.put_st_value(this->local_values_[i].value(this, 0));
2390 osym.put_st_size(isym.get_st_size());
2391 osym.put_st_info(isym.get_st_info());
2392 osym.put_st_other(isym.get_st_other());
2393 osym.put_st_shndx(st_shndx);
2394
2ea97941 2395 ov += sym_size;
7bf1f802
ILT
2396 }
2397
2398 // Write the symbol to the output dynamic symbol table.
d3bbad62 2399 if (lv.has_output_dynsym_entry())
7bf1f802
ILT
2400 {
2401 gold_assert(dyn_ov < dyn_oview + dyn_output_size);
2402 elfcpp::Sym_write<size, big_endian> osym(dyn_ov);
2403
2404 gold_assert(isym.get_st_name() < strtab_size);
2ea97941
ILT
2405 const char* name = pnames + isym.get_st_name();
2406 osym.put_st_name(dynpool->get_offset(name));
7bf1f802
ILT
2407 osym.put_st_value(this->local_values_[i].value(this, 0));
2408 osym.put_st_size(isym.get_st_size());
2409 osym.put_st_info(isym.get_st_info());
2410 osym.put_st_other(isym.get_st_other());
2411 osym.put_st_shndx(st_shndx);
2412
2ea97941 2413 dyn_ov += sym_size;
7bf1f802
ILT
2414 }
2415 }
f6ce93d6 2416
61ba1cf9 2417
7bf1f802
ILT
2418 if (output_size > 0)
2419 {
2420 gold_assert(ov - oview == output_size);
cdc29364
CC
2421 of->write_output_view(symtab_off + this->local_symbol_offset_,
2422 output_size, oview);
61ba1cf9
ILT
2423 }
2424
7bf1f802
ILT
2425 if (dyn_output_size > 0)
2426 {
2427 gold_assert(dyn_ov - dyn_oview == dyn_output_size);
2428 of->write_output_view(this->local_dynsym_offset_, dyn_output_size,
2429 dyn_oview);
2430 }
61ba1cf9
ILT
2431}
2432
f7e2ee48
ILT
2433// Set *INFO to symbolic information about the offset OFFSET in the
2434// section SHNDX. Return true if we found something, false if we
2435// found nothing.
2436
2437template<int size, bool big_endian>
2438bool
6fa2a40b 2439Sized_relobj_file<size, big_endian>::get_symbol_location_info(
f7e2ee48 2440 unsigned int shndx,
2ea97941 2441 off_t offset,
f7e2ee48
ILT
2442 Symbol_location_info* info)
2443{
2444 if (this->symtab_shndx_ == 0)
2445 return false;
2446
8383303e 2447 section_size_type symbols_size;
f7e2ee48
ILT
2448 const unsigned char* symbols = this->section_contents(this->symtab_shndx_,
2449 &symbols_size,
2450 false);
2451
d491d34e
ILT
2452 unsigned int symbol_names_shndx =
2453 this->adjust_shndx(this->section_link(this->symtab_shndx_));
8383303e 2454 section_size_type names_size;
f7e2ee48
ILT
2455 const unsigned char* symbol_names_u =
2456 this->section_contents(symbol_names_shndx, &names_size, false);
2457 const char* symbol_names = reinterpret_cast<const char*>(symbol_names_u);
2458
2ea97941
ILT
2459 const int sym_size = This::sym_size;
2460 const size_t count = symbols_size / sym_size;
f7e2ee48
ILT
2461
2462 const unsigned char* p = symbols;
2ea97941 2463 for (size_t i = 0; i < count; ++i, p += sym_size)
f7e2ee48
ILT
2464 {
2465 elfcpp::Sym<size, big_endian> sym(p);
2466
2467 if (sym.get_st_type() == elfcpp::STT_FILE)
2468 {
2469 if (sym.get_st_name() >= names_size)
2470 info->source_file = "(invalid)";
2471 else
2472 info->source_file = symbol_names + sym.get_st_name();
d491d34e 2473 continue;
f7e2ee48 2474 }
d491d34e
ILT
2475
2476 bool is_ordinary;
2477 unsigned int st_shndx = this->adjust_sym_shndx(i, sym.get_st_shndx(),
2478 &is_ordinary);
2479 if (is_ordinary
2480 && st_shndx == shndx
2ea97941 2481 && static_cast<off_t>(sym.get_st_value()) <= offset
d491d34e 2482 && (static_cast<off_t>(sym.get_st_value() + sym.get_st_size())
2ea97941 2483 > offset))
f7e2ee48
ILT
2484 {
2485 if (sym.get_st_name() > names_size)
2486 info->enclosing_symbol_name = "(invalid)";
2487 else
a2b1aa12
ILT
2488 {
2489 info->enclosing_symbol_name = symbol_names + sym.get_st_name();
086a1841 2490 if (parameters->options().do_demangle())
a2b1aa12
ILT
2491 {
2492 char* demangled_name = cplus_demangle(
2493 info->enclosing_symbol_name.c_str(),
2494 DMGL_ANSI | DMGL_PARAMS);
2495 if (demangled_name != NULL)
2496 {
2497 info->enclosing_symbol_name.assign(demangled_name);
2498 free(demangled_name);
2499 }
2500 }
2501 }
f7e2ee48
ILT
2502 return true;
2503 }
2504 }
2505
2506 return false;
2507}
2508
e94cf127
CC
2509// Look for a kept section corresponding to the given discarded section,
2510// and return its output address. This is used only for relocations in
2511// debugging sections. If we can't find the kept section, return 0.
2512
2513template<int size, bool big_endian>
6fa2a40b
CC
2514typename Sized_relobj_file<size, big_endian>::Address
2515Sized_relobj_file<size, big_endian>::map_to_kept_section(
e94cf127
CC
2516 unsigned int shndx,
2517 bool* found) const
2518{
1ef4d87f
ILT
2519 Relobj* kept_object;
2520 unsigned int kept_shndx;
2521 if (this->get_kept_comdat_section(shndx, &kept_object, &kept_shndx))
e94cf127 2522 {
6fa2a40b
CC
2523 Sized_relobj_file<size, big_endian>* kept_relobj =
2524 static_cast<Sized_relobj_file<size, big_endian>*>(kept_object);
1ef4d87f 2525 Output_section* os = kept_relobj->output_section(kept_shndx);
2ea97941
ILT
2526 Address offset = kept_relobj->get_output_section_offset(kept_shndx);
2527 if (os != NULL && offset != invalid_address)
1ef4d87f
ILT
2528 {
2529 *found = true;
2ea97941 2530 return os->address() + offset;
1ef4d87f 2531 }
e94cf127
CC
2532 }
2533 *found = false;
2534 return 0;
2535}
2536
92de84a6
ILT
2537// Get symbol counts.
2538
2539template<int size, bool big_endian>
2540void
6fa2a40b 2541Sized_relobj_file<size, big_endian>::do_get_global_symbol_counts(
92de84a6
ILT
2542 const Symbol_table*,
2543 size_t* defined,
2544 size_t* used) const
2545{
2546 *defined = this->defined_count_;
2547 size_t count = 0;
cdc29364 2548 for (typename Symbols::const_iterator p = this->symbols_.begin();
92de84a6
ILT
2549 p != this->symbols_.end();
2550 ++p)
2551 if (*p != NULL
2552 && (*p)->source() == Symbol::FROM_OBJECT
2553 && (*p)->object() == this
2554 && (*p)->is_defined())
2555 ++count;
2556 *used = count;
2557}
2558
54dc6425
ILT
2559// Input_objects methods.
2560
008db82e
ILT
2561// Add a regular relocatable object to the list. Return false if this
2562// object should be ignored.
f6ce93d6 2563
008db82e 2564bool
54dc6425
ILT
2565Input_objects::add_object(Object* obj)
2566{
c5818ff1
CC
2567 // Print the filename if the -t/--trace option is selected.
2568 if (parameters->options().trace())
2569 gold_info("%s", obj->name().c_str());
2570
008db82e 2571 if (!obj->is_dynamic())
f6ce93d6 2572 this->relobj_list_.push_back(static_cast<Relobj*>(obj));
008db82e
ILT
2573 else
2574 {
2575 // See if this is a duplicate SONAME.
2576 Dynobj* dynobj = static_cast<Dynobj*>(obj);
9a2d6984 2577 const char* soname = dynobj->soname();
008db82e
ILT
2578
2579 std::pair<Unordered_set<std::string>::iterator, bool> ins =
9a2d6984 2580 this->sonames_.insert(soname);
008db82e
ILT
2581 if (!ins.second)
2582 {
2583 // We have already seen a dynamic object with this soname.
2584 return false;
2585 }
2586
2587 this->dynobj_list_.push_back(dynobj);
2588 }
75f65a3e 2589
92de84a6 2590 // Add this object to the cross-referencer if requested.
dde3f402
ILT
2591 if (parameters->options().user_set_print_symbol_counts()
2592 || parameters->options().cref())
92de84a6
ILT
2593 {
2594 if (this->cref_ == NULL)
2595 this->cref_ = new Cref();
2596 this->cref_->add_object(obj);
2597 }
2598
008db82e 2599 return true;
54dc6425
ILT
2600}
2601
e2827e5f
ILT
2602// For each dynamic object, record whether we've seen all of its
2603// explicit dependencies.
2604
2605void
2606Input_objects::check_dynamic_dependencies() const
2607{
7eaea549 2608 bool issued_copy_dt_needed_error = false;
e2827e5f
ILT
2609 for (Dynobj_list::const_iterator p = this->dynobj_list_.begin();
2610 p != this->dynobj_list_.end();
2611 ++p)
2612 {
2613 const Dynobj::Needed& needed((*p)->needed());
2614 bool found_all = true;
7eaea549
ILT
2615 Dynobj::Needed::const_iterator pneeded;
2616 for (pneeded = needed.begin(); pneeded != needed.end(); ++pneeded)
e2827e5f
ILT
2617 {
2618 if (this->sonames_.find(*pneeded) == this->sonames_.end())
2619 {
2620 found_all = false;
2621 break;
2622 }
2623 }
2624 (*p)->set_has_unknown_needed_entries(!found_all);
7eaea549
ILT
2625
2626 // --copy-dt-needed-entries aka --add-needed is a GNU ld option
612bdda1
ILT
2627 // that gold does not support. However, they cause no trouble
2628 // unless there is a DT_NEEDED entry that we don't know about;
2629 // warn only in that case.
7eaea549
ILT
2630 if (!found_all
2631 && !issued_copy_dt_needed_error
2632 && (parameters->options().copy_dt_needed_entries()
2633 || parameters->options().add_needed()))
2634 {
2635 const char* optname;
2636 if (parameters->options().copy_dt_needed_entries())
2637 optname = "--copy-dt-needed-entries";
2638 else
2639 optname = "--add-needed";
2640 gold_error(_("%s is not supported but is required for %s in %s"),
2641 optname, (*pneeded).c_str(), (*p)->name().c_str());
2642 issued_copy_dt_needed_error = true;
2643 }
e2827e5f
ILT
2644 }
2645}
2646
92de84a6
ILT
2647// Start processing an archive.
2648
2649void
2650Input_objects::archive_start(Archive* archive)
2651{
dde3f402
ILT
2652 if (parameters->options().user_set_print_symbol_counts()
2653 || parameters->options().cref())
92de84a6
ILT
2654 {
2655 if (this->cref_ == NULL)
2656 this->cref_ = new Cref();
2657 this->cref_->add_archive_start(archive);
2658 }
2659}
2660
2661// Stop processing an archive.
2662
2663void
2664Input_objects::archive_stop(Archive* archive)
2665{
dde3f402
ILT
2666 if (parameters->options().user_set_print_symbol_counts()
2667 || parameters->options().cref())
92de84a6
ILT
2668 this->cref_->add_archive_stop(archive);
2669}
2670
2671// Print symbol counts
2672
2673void
2674Input_objects::print_symbol_counts(const Symbol_table* symtab) const
2675{
2676 if (parameters->options().user_set_print_symbol_counts()
2677 && this->cref_ != NULL)
2678 this->cref_->print_symbol_counts(symtab);
2679}
2680
dde3f402
ILT
2681// Print a cross reference table.
2682
2683void
2684Input_objects::print_cref(const Symbol_table* symtab, FILE* f) const
2685{
2686 if (parameters->options().cref() && this->cref_ != NULL)
2687 this->cref_->print_cref(symtab, f);
2688}
2689
92e059d8
ILT
2690// Relocate_info methods.
2691
308ecdc7
ILT
2692// Return a string describing the location of a relocation when file
2693// and lineno information is not available. This is only used in
2694// error messages.
92e059d8
ILT
2695
2696template<int size, bool big_endian>
2697std::string
f7e2ee48 2698Relocate_info<size, big_endian>::location(size_t, off_t offset) const
92e059d8 2699{
a55ce7fe 2700 Sized_dwarf_line_info<size, big_endian> line_info(this->object);
308ecdc7
ILT
2701 std::string ret = line_info.addr2line(this->data_shndx, offset, NULL);
2702 if (!ret.empty())
2703 return ret;
2704
2705 ret = this->object->name();
4c50553d 2706
f7e2ee48
ILT
2707 Symbol_location_info info;
2708 if (this->object->get_symbol_location_info(this->data_shndx, offset, &info))
2709 {
308ecdc7
ILT
2710 if (!info.source_file.empty())
2711 {
2712 ret += ":";
2713 ret += info.source_file;
2714 }
2715 size_t len = info.enclosing_symbol_name.length() + 100;
2716 char* buf = new char[len];
2717 snprintf(buf, len, _(":function %s"),
2718 info.enclosing_symbol_name.c_str());
5c2c6c95 2719 ret += buf;
308ecdc7
ILT
2720 delete[] buf;
2721 return ret;
f7e2ee48 2722 }
308ecdc7
ILT
2723
2724 ret += "(";
2725 ret += this->object->section_name(this->data_shndx);
2726 char buf[100];
2727 snprintf(buf, sizeof buf, "+0x%lx)", static_cast<long>(offset));
2728 ret += buf;
92e059d8
ILT
2729 return ret;
2730}
2731
bae7f79e
ILT
2732} // End namespace gold.
2733
2734namespace
2735{
2736
2737using namespace gold;
2738
2739// Read an ELF file with the header and return the appropriate
2740// instance of Object.
2741
2742template<int size, bool big_endian>
2743Object*
2744make_elf_sized_object(const std::string& name, Input_file* input_file,
029ba973
ILT
2745 off_t offset, const elfcpp::Ehdr<size, big_endian>& ehdr,
2746 bool* punconfigured)
bae7f79e 2747{
f733487b
DK
2748 Target* target = select_target(ehdr.get_e_machine(), size, big_endian,
2749 ehdr.get_e_ident()[elfcpp::EI_OSABI],
2750 ehdr.get_e_ident()[elfcpp::EI_ABIVERSION]);
2751 if (target == NULL)
2752 gold_fatal(_("%s: unsupported ELF machine number %d"),
2753 name.c_str(), ehdr.get_e_machine());
029ba973
ILT
2754
2755 if (!parameters->target_valid())
2756 set_parameters_target(target);
2757 else if (target != &parameters->target())
2758 {
2759 if (punconfigured != NULL)
2760 *punconfigured = true;
2761 else
2762 gold_error(_("%s: incompatible target"), name.c_str());
2763 return NULL;
2764 }
2765
f733487b
DK
2766 return target->make_elf_object<size, big_endian>(name, input_file, offset,
2767 ehdr);
bae7f79e
ILT
2768}
2769
2770} // End anonymous namespace.
2771
2772namespace gold
2773{
2774
f6060a4d
ILT
2775// Return whether INPUT_FILE is an ELF object.
2776
2777bool
2778is_elf_object(Input_file* input_file, off_t offset,
ca09d69a 2779 const unsigned char** start, int* read_size)
f6060a4d
ILT
2780{
2781 off_t filesize = input_file->file().filesize();
c549a694 2782 int want = elfcpp::Elf_recognizer::max_header_size;
f6060a4d
ILT
2783 if (filesize - offset < want)
2784 want = filesize - offset;
2785
2786 const unsigned char* p = input_file->file().get_view(offset, 0, want,
2787 true, false);
2788 *start = p;
2789 *read_size = want;
2790
c549a694 2791 return elfcpp::Elf_recognizer::is_elf_file(p, want);
f6060a4d
ILT
2792}
2793
bae7f79e
ILT
2794// Read an ELF file and return the appropriate instance of Object.
2795
2796Object*
2797make_elf_object(const std::string& name, Input_file* input_file, off_t offset,
15f8229b
ILT
2798 const unsigned char* p, section_offset_type bytes,
2799 bool* punconfigured)
bae7f79e 2800{
15f8229b
ILT
2801 if (punconfigured != NULL)
2802 *punconfigured = false;
2803
c549a694 2804 std::string error;
ac33a407
DK
2805 bool big_endian = false;
2806 int size = 0;
c549a694
ILT
2807 if (!elfcpp::Elf_recognizer::is_valid_header(p, bytes, &size,
2808 &big_endian, &error))
bae7f79e 2809 {
c549a694 2810 gold_error(_("%s: %s"), name.c_str(), error.c_str());
75f2446e 2811 return NULL;
bae7f79e
ILT
2812 }
2813
c549a694 2814 if (size == 32)
bae7f79e 2815 {
bae7f79e
ILT
2816 if (big_endian)
2817 {
193a53d9 2818#ifdef HAVE_TARGET_32_BIG
bae7f79e
ILT
2819 elfcpp::Ehdr<32, true> ehdr(p);
2820 return make_elf_sized_object<32, true>(name, input_file,
029ba973 2821 offset, ehdr, punconfigured);
193a53d9 2822#else
15f8229b
ILT
2823 if (punconfigured != NULL)
2824 *punconfigured = true;
2825 else
2826 gold_error(_("%s: not configured to support "
2827 "32-bit big-endian object"),
2828 name.c_str());
75f2446e 2829 return NULL;
193a53d9 2830#endif
bae7f79e
ILT
2831 }
2832 else
2833 {
193a53d9 2834#ifdef HAVE_TARGET_32_LITTLE
bae7f79e
ILT
2835 elfcpp::Ehdr<32, false> ehdr(p);
2836 return make_elf_sized_object<32, false>(name, input_file,
029ba973 2837 offset, ehdr, punconfigured);
193a53d9 2838#else
15f8229b
ILT
2839 if (punconfigured != NULL)
2840 *punconfigured = true;
2841 else
2842 gold_error(_("%s: not configured to support "
2843 "32-bit little-endian object"),
2844 name.c_str());
75f2446e 2845 return NULL;
193a53d9 2846#endif
bae7f79e
ILT
2847 }
2848 }
c549a694 2849 else if (size == 64)
bae7f79e 2850 {
bae7f79e
ILT
2851 if (big_endian)
2852 {
193a53d9 2853#ifdef HAVE_TARGET_64_BIG
bae7f79e
ILT
2854 elfcpp::Ehdr<64, true> ehdr(p);
2855 return make_elf_sized_object<64, true>(name, input_file,
029ba973 2856 offset, ehdr, punconfigured);
193a53d9 2857#else
15f8229b
ILT
2858 if (punconfigured != NULL)
2859 *punconfigured = true;
2860 else
2861 gold_error(_("%s: not configured to support "
2862 "64-bit big-endian object"),
2863 name.c_str());
75f2446e 2864 return NULL;
193a53d9 2865#endif
bae7f79e
ILT
2866 }
2867 else
2868 {
193a53d9 2869#ifdef HAVE_TARGET_64_LITTLE
bae7f79e
ILT
2870 elfcpp::Ehdr<64, false> ehdr(p);
2871 return make_elf_sized_object<64, false>(name, input_file,
029ba973 2872 offset, ehdr, punconfigured);
193a53d9 2873#else
15f8229b
ILT
2874 if (punconfigured != NULL)
2875 *punconfigured = true;
2876 else
2877 gold_error(_("%s: not configured to support "
2878 "64-bit little-endian object"),
2879 name.c_str());
75f2446e 2880 return NULL;
193a53d9 2881#endif
bae7f79e
ILT
2882 }
2883 }
c549a694
ILT
2884 else
2885 gold_unreachable();
bae7f79e
ILT
2886}
2887
04bf7072
ILT
2888// Instantiate the templates we need.
2889
2890#ifdef HAVE_TARGET_32_LITTLE
2891template
2892void
2893Object::read_section_data<32, false>(elfcpp::Elf_file<32, false, Object>*,
2894 Read_symbols_data*);
2895#endif
2896
2897#ifdef HAVE_TARGET_32_BIG
2898template
2899void
2900Object::read_section_data<32, true>(elfcpp::Elf_file<32, true, Object>*,
2901 Read_symbols_data*);
2902#endif
2903
2904#ifdef HAVE_TARGET_64_LITTLE
2905template
2906void
2907Object::read_section_data<64, false>(elfcpp::Elf_file<64, false, Object>*,
2908 Read_symbols_data*);
2909#endif
2910
2911#ifdef HAVE_TARGET_64_BIG
2912template
2913void
2914Object::read_section_data<64, true>(elfcpp::Elf_file<64, true, Object>*,
2915 Read_symbols_data*);
2916#endif
bae7f79e 2917
193a53d9 2918#ifdef HAVE_TARGET_32_LITTLE
bae7f79e 2919template
6fa2a40b 2920class Sized_relobj_file<32, false>;
193a53d9 2921#endif
bae7f79e 2922
193a53d9 2923#ifdef HAVE_TARGET_32_BIG
bae7f79e 2924template
6fa2a40b 2925class Sized_relobj_file<32, true>;
193a53d9 2926#endif
bae7f79e 2927
193a53d9 2928#ifdef HAVE_TARGET_64_LITTLE
bae7f79e 2929template
6fa2a40b 2930class Sized_relobj_file<64, false>;
193a53d9 2931#endif
bae7f79e 2932
193a53d9 2933#ifdef HAVE_TARGET_64_BIG
bae7f79e 2934template
6fa2a40b 2935class Sized_relobj_file<64, true>;
193a53d9 2936#endif
bae7f79e 2937
193a53d9 2938#ifdef HAVE_TARGET_32_LITTLE
92e059d8
ILT
2939template
2940struct Relocate_info<32, false>;
193a53d9 2941#endif
92e059d8 2942
193a53d9 2943#ifdef HAVE_TARGET_32_BIG
92e059d8
ILT
2944template
2945struct Relocate_info<32, true>;
193a53d9 2946#endif
92e059d8 2947
193a53d9 2948#ifdef HAVE_TARGET_64_LITTLE
92e059d8
ILT
2949template
2950struct Relocate_info<64, false>;
193a53d9 2951#endif
92e059d8 2952
193a53d9 2953#ifdef HAVE_TARGET_64_BIG
92e059d8
ILT
2954template
2955struct Relocate_info<64, true>;
193a53d9 2956#endif
92e059d8 2957
9d3b86f6
ILT
2958#ifdef HAVE_TARGET_32_LITTLE
2959template
2960void
2961Xindex::initialize_symtab_xindex<32, false>(Object*, unsigned int);
2962
2963template
2964void
2965Xindex::read_symtab_xindex<32, false>(Object*, unsigned int,
2966 const unsigned char*);
2967#endif
2968
2969#ifdef HAVE_TARGET_32_BIG
2970template
2971void
2972Xindex::initialize_symtab_xindex<32, true>(Object*, unsigned int);
2973
2974template
2975void
2976Xindex::read_symtab_xindex<32, true>(Object*, unsigned int,
2977 const unsigned char*);
2978#endif
2979
2980#ifdef HAVE_TARGET_64_LITTLE
2981template
2982void
2983Xindex::initialize_symtab_xindex<64, false>(Object*, unsigned int);
2984
2985template
2986void
2987Xindex::read_symtab_xindex<64, false>(Object*, unsigned int,
2988 const unsigned char*);
2989#endif
2990
2991#ifdef HAVE_TARGET_64_BIG
2992template
2993void
2994Xindex::initialize_symtab_xindex<64, true>(Object*, unsigned int);
2995
2996template
2997void
2998Xindex::read_symtab_xindex<64, true>(Object*, unsigned int,
2999 const unsigned char*);
3000#endif
3001
bae7f79e 3002} // End namespace gold.
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