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bae7f79e ILT |
1 | // object.cc -- support for an object file for linking in gold |
2 | ||
ebdbb458 | 3 | // Copyright 2006, 2007, 2008 Free Software Foundation, Inc. |
6cb15b7f ILT |
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 | ||
bae7f79e ILT |
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 | |
14bfc3f5 | 31 | #include "target-select.h" |
5c2c6c95 | 32 | #include "dwarf_reader.h" |
a2fb1b05 | 33 | #include "layout.h" |
61ba1cf9 | 34 | #include "output.h" |
f6ce93d6 | 35 | #include "symtab.h" |
4c50553d | 36 | #include "reloc.h" |
f6ce93d6 ILT |
37 | #include "object.h" |
38 | #include "dynobj.h" | |
bae7f79e ILT |
39 | |
40 | namespace gold | |
41 | { | |
42 | ||
d491d34e ILT |
43 | // Class Xindex. |
44 | ||
45 | // Initialize the symtab_xindex_ array. Find the SHT_SYMTAB_SHNDX | |
46 | // section and read it in. SYMTAB_SHNDX is the index of the symbol | |
47 | // table we care about. | |
48 | ||
49 | template<int size, bool big_endian> | |
50 | void | |
51 | Xindex::initialize_symtab_xindex(Object* object, unsigned int symtab_shndx) | |
52 | { | |
53 | if (!this->symtab_xindex_.empty()) | |
54 | return; | |
55 | ||
56 | gold_assert(symtab_shndx != 0); | |
57 | ||
58 | // Look through the sections in reverse order, on the theory that it | |
59 | // is more likely to be near the end than the beginning. | |
60 | unsigned int i = object->shnum(); | |
61 | while (i > 0) | |
62 | { | |
63 | --i; | |
64 | if (object->section_type(i) == elfcpp::SHT_SYMTAB_SHNDX | |
65 | && this->adjust_shndx(object->section_link(i)) == symtab_shndx) | |
66 | { | |
67 | this->read_symtab_xindex<size, big_endian>(object, i, NULL); | |
68 | return; | |
69 | } | |
70 | } | |
71 | ||
72 | object->error(_("missing SHT_SYMTAB_SHNDX section")); | |
73 | } | |
74 | ||
75 | // Read in the symtab_xindex_ array, given the section index of the | |
76 | // SHT_SYMTAB_SHNDX section. If PSHDRS is not NULL, it points at the | |
77 | // section headers. | |
78 | ||
79 | template<int size, bool big_endian> | |
80 | void | |
81 | Xindex::read_symtab_xindex(Object* object, unsigned int xindex_shndx, | |
82 | const unsigned char* pshdrs) | |
83 | { | |
84 | section_size_type bytecount; | |
85 | const unsigned char* contents; | |
86 | if (pshdrs == NULL) | |
87 | contents = object->section_contents(xindex_shndx, &bytecount, false); | |
88 | else | |
89 | { | |
90 | const unsigned char* p = (pshdrs | |
91 | + (xindex_shndx | |
92 | * elfcpp::Elf_sizes<size>::shdr_size)); | |
93 | typename elfcpp::Shdr<size, big_endian> shdr(p); | |
94 | bytecount = convert_to_section_size_type(shdr.get_sh_size()); | |
95 | contents = object->get_view(shdr.get_sh_offset(), bytecount, true, false); | |
96 | } | |
97 | ||
98 | gold_assert(this->symtab_xindex_.empty()); | |
99 | this->symtab_xindex_.reserve(bytecount / 4); | |
100 | for (section_size_type i = 0; i < bytecount; i += 4) | |
101 | { | |
102 | unsigned int shndx = elfcpp::Swap<32, big_endian>::readval(contents + i); | |
103 | // We preadjust the section indexes we save. | |
104 | this->symtab_xindex_.push_back(this->adjust_shndx(shndx)); | |
105 | } | |
106 | } | |
107 | ||
108 | // Symbol symndx has a section of SHN_XINDEX; return the real section | |
109 | // index. | |
110 | ||
111 | unsigned int | |
112 | Xindex::sym_xindex_to_shndx(Object* object, unsigned int symndx) | |
113 | { | |
114 | if (symndx >= this->symtab_xindex_.size()) | |
115 | { | |
116 | object->error(_("symbol %u out of range for SHT_SYMTAB_SHNDX section"), | |
117 | symndx); | |
118 | return elfcpp::SHN_UNDEF; | |
119 | } | |
120 | unsigned int shndx = this->symtab_xindex_[symndx]; | |
121 | if (shndx < elfcpp::SHN_LORESERVE || shndx >= object->shnum()) | |
122 | { | |
123 | object->error(_("extended index for symbol %u out of range: %u"), | |
124 | symndx, shndx); | |
125 | return elfcpp::SHN_UNDEF; | |
126 | } | |
127 | return shndx; | |
128 | } | |
129 | ||
645f8123 ILT |
130 | // Class Object. |
131 | ||
dbe717ef ILT |
132 | // Set the target based on fields in the ELF file header. |
133 | ||
134 | void | |
135 | Object::set_target(int machine, int size, bool big_endian, int osabi, | |
136 | int abiversion) | |
137 | { | |
138 | Target* target = select_target(machine, size, big_endian, osabi, abiversion); | |
139 | if (target == NULL) | |
75f2446e ILT |
140 | gold_fatal(_("%s: unsupported ELF machine number %d"), |
141 | this->name().c_str(), machine); | |
dbe717ef ILT |
142 | this->target_ = target; |
143 | } | |
144 | ||
75f2446e ILT |
145 | // Report an error for this object file. This is used by the |
146 | // elfcpp::Elf_file interface, and also called by the Object code | |
147 | // itself. | |
645f8123 ILT |
148 | |
149 | void | |
75f2446e | 150 | Object::error(const char* format, ...) const |
645f8123 ILT |
151 | { |
152 | va_list args; | |
645f8123 | 153 | va_start(args, format); |
75f2446e ILT |
154 | char* buf = NULL; |
155 | if (vasprintf(&buf, format, args) < 0) | |
156 | gold_nomem(); | |
645f8123 | 157 | va_end(args); |
75f2446e ILT |
158 | gold_error(_("%s: %s"), this->name().c_str(), buf); |
159 | free(buf); | |
645f8123 ILT |
160 | } |
161 | ||
162 | // Return a view of the contents of a section. | |
163 | ||
164 | const unsigned char* | |
8383303e ILT |
165 | Object::section_contents(unsigned int shndx, section_size_type* plen, |
166 | bool cache) | |
645f8123 ILT |
167 | { |
168 | Location loc(this->do_section_contents(shndx)); | |
8383303e | 169 | *plen = convert_to_section_size_type(loc.data_size); |
39d0cb0e | 170 | return this->get_view(loc.file_offset, *plen, true, cache); |
645f8123 ILT |
171 | } |
172 | ||
dbe717ef ILT |
173 | // Read the section data into SD. This is code common to Sized_relobj |
174 | // and Sized_dynobj, so we put it into Object. | |
175 | ||
176 | template<int size, bool big_endian> | |
177 | void | |
178 | Object::read_section_data(elfcpp::Elf_file<size, big_endian, Object>* elf_file, | |
179 | Read_symbols_data* sd) | |
180 | { | |
181 | const int shdr_size = elfcpp::Elf_sizes<size>::shdr_size; | |
182 | ||
183 | // Read the section headers. | |
184 | const off_t shoff = elf_file->shoff(); | |
185 | const unsigned int shnum = this->shnum(); | |
39d0cb0e ILT |
186 | sd->section_headers = this->get_lasting_view(shoff, shnum * shdr_size, |
187 | true, true); | |
dbe717ef ILT |
188 | |
189 | // Read the section names. | |
190 | const unsigned char* pshdrs = sd->section_headers->data(); | |
191 | const unsigned char* pshdrnames = pshdrs + elf_file->shstrndx() * shdr_size; | |
192 | typename elfcpp::Shdr<size, big_endian> shdrnames(pshdrnames); | |
193 | ||
194 | if (shdrnames.get_sh_type() != elfcpp::SHT_STRTAB) | |
75f2446e ILT |
195 | this->error(_("section name section has wrong type: %u"), |
196 | static_cast<unsigned int>(shdrnames.get_sh_type())); | |
dbe717ef | 197 | |
8383303e ILT |
198 | sd->section_names_size = |
199 | convert_to_section_size_type(shdrnames.get_sh_size()); | |
dbe717ef | 200 | sd->section_names = this->get_lasting_view(shdrnames.get_sh_offset(), |
39d0cb0e ILT |
201 | sd->section_names_size, false, |
202 | false); | |
dbe717ef ILT |
203 | } |
204 | ||
205 | // If NAME is the name of a special .gnu.warning section, arrange for | |
206 | // the warning to be issued. SHNDX is the section index. Return | |
207 | // whether it is a warning section. | |
208 | ||
209 | bool | |
210 | Object::handle_gnu_warning_section(const char* name, unsigned int shndx, | |
211 | Symbol_table* symtab) | |
212 | { | |
213 | const char warn_prefix[] = ".gnu.warning."; | |
214 | const int warn_prefix_len = sizeof warn_prefix - 1; | |
215 | if (strncmp(name, warn_prefix, warn_prefix_len) == 0) | |
216 | { | |
cb295612 ILT |
217 | // Read the section contents to get the warning text. It would |
218 | // be nicer if we only did this if we have to actually issue a | |
219 | // warning. Unfortunately, warnings are issued as we relocate | |
220 | // sections. That means that we can not lock the object then, | |
221 | // as we might try to issue the same warning multiple times | |
222 | // simultaneously. | |
223 | section_size_type len; | |
224 | const unsigned char* contents = this->section_contents(shndx, &len, | |
225 | false); | |
226 | std::string warning(reinterpret_cast<const char*>(contents), len); | |
227 | symtab->add_warning(name + warn_prefix_len, this, warning); | |
dbe717ef ILT |
228 | return true; |
229 | } | |
230 | return false; | |
231 | } | |
232 | ||
f6ce93d6 | 233 | // Class Sized_relobj. |
bae7f79e ILT |
234 | |
235 | template<int size, bool big_endian> | |
f6ce93d6 | 236 | Sized_relobj<size, big_endian>::Sized_relobj( |
bae7f79e ILT |
237 | const std::string& name, |
238 | Input_file* input_file, | |
239 | off_t offset, | |
240 | const elfcpp::Ehdr<size, big_endian>& ehdr) | |
f6ce93d6 | 241 | : Relobj(name, input_file, offset), |
645f8123 | 242 | elf_file_(this, ehdr), |
dbe717ef | 243 | symtab_shndx_(-1U), |
61ba1cf9 ILT |
244 | local_symbol_count_(0), |
245 | output_local_symbol_count_(0), | |
7bf1f802 | 246 | output_local_dynsym_count_(0), |
730cdc88 | 247 | symbols_(), |
61ba1cf9 | 248 | local_symbol_offset_(0), |
7bf1f802 | 249 | local_dynsym_offset_(0), |
e727fa71 | 250 | local_values_(), |
730cdc88 ILT |
251 | local_got_offsets_(), |
252 | has_eh_frame_(false) | |
bae7f79e | 253 | { |
bae7f79e ILT |
254 | } |
255 | ||
256 | template<int size, bool big_endian> | |
f6ce93d6 | 257 | Sized_relobj<size, big_endian>::~Sized_relobj() |
bae7f79e ILT |
258 | { |
259 | } | |
260 | ||
645f8123 | 261 | // Set up an object file based on the file header. This sets up the |
bae7f79e ILT |
262 | // target and reads the section information. |
263 | ||
264 | template<int size, bool big_endian> | |
265 | void | |
f6ce93d6 | 266 | Sized_relobj<size, big_endian>::setup( |
bae7f79e ILT |
267 | const elfcpp::Ehdr<size, big_endian>& ehdr) |
268 | { | |
dbe717ef ILT |
269 | this->set_target(ehdr.get_e_machine(), size, big_endian, |
270 | ehdr.get_e_ident()[elfcpp::EI_OSABI], | |
271 | ehdr.get_e_ident()[elfcpp::EI_ABIVERSION]); | |
12e14209 | 272 | |
dbe717ef | 273 | const unsigned int shnum = this->elf_file_.shnum(); |
a2fb1b05 | 274 | this->set_shnum(shnum); |
dbe717ef | 275 | } |
12e14209 | 276 | |
dbe717ef ILT |
277 | // Find the SHT_SYMTAB section, given the section headers. The ELF |
278 | // standard says that maybe in the future there can be more than one | |
279 | // SHT_SYMTAB section. Until somebody figures out how that could | |
280 | // work, we assume there is only one. | |
12e14209 | 281 | |
dbe717ef ILT |
282 | template<int size, bool big_endian> |
283 | void | |
284 | Sized_relobj<size, big_endian>::find_symtab(const unsigned char* pshdrs) | |
285 | { | |
286 | const unsigned int shnum = this->shnum(); | |
287 | this->symtab_shndx_ = 0; | |
288 | if (shnum > 0) | |
bae7f79e | 289 | { |
dbe717ef ILT |
290 | // Look through the sections in reverse order, since gas tends |
291 | // to put the symbol table at the end. | |
292 | const unsigned char* p = pshdrs + shnum * This::shdr_size; | |
293 | unsigned int i = shnum; | |
d491d34e ILT |
294 | unsigned int xindex_shndx = 0; |
295 | unsigned int xindex_link = 0; | |
dbe717ef | 296 | while (i > 0) |
bae7f79e | 297 | { |
dbe717ef ILT |
298 | --i; |
299 | p -= This::shdr_size; | |
300 | typename This::Shdr shdr(p); | |
301 | if (shdr.get_sh_type() == elfcpp::SHT_SYMTAB) | |
302 | { | |
303 | this->symtab_shndx_ = i; | |
d491d34e ILT |
304 | if (xindex_shndx > 0 && xindex_link == i) |
305 | { | |
306 | Xindex* xindex = | |
307 | new Xindex(this->elf_file_.large_shndx_offset()); | |
308 | xindex->read_symtab_xindex<size, big_endian>(this, | |
309 | xindex_shndx, | |
310 | pshdrs); | |
311 | this->set_xindex(xindex); | |
312 | } | |
dbe717ef ILT |
313 | break; |
314 | } | |
d491d34e ILT |
315 | |
316 | // Try to pick up the SHT_SYMTAB_SHNDX section, if there is | |
317 | // one. This will work if it follows the SHT_SYMTAB | |
318 | // section. | |
319 | if (shdr.get_sh_type() == elfcpp::SHT_SYMTAB_SHNDX) | |
320 | { | |
321 | xindex_shndx = i; | |
322 | xindex_link = this->adjust_shndx(shdr.get_sh_link()); | |
323 | } | |
bae7f79e | 324 | } |
bae7f79e ILT |
325 | } |
326 | } | |
327 | ||
d491d34e ILT |
328 | // Return the Xindex structure to use for object with lots of |
329 | // sections. | |
330 | ||
331 | template<int size, bool big_endian> | |
332 | Xindex* | |
333 | Sized_relobj<size, big_endian>::do_initialize_xindex() | |
334 | { | |
335 | gold_assert(this->symtab_shndx_ != -1U); | |
336 | Xindex* xindex = new Xindex(this->elf_file_.large_shndx_offset()); | |
337 | xindex->initialize_symtab_xindex<size, big_endian>(this, this->symtab_shndx_); | |
338 | return xindex; | |
339 | } | |
340 | ||
730cdc88 ILT |
341 | // Return whether SHDR has the right type and flags to be a GNU |
342 | // .eh_frame section. | |
343 | ||
344 | template<int size, bool big_endian> | |
345 | bool | |
346 | Sized_relobj<size, big_endian>::check_eh_frame_flags( | |
347 | const elfcpp::Shdr<size, big_endian>* shdr) const | |
348 | { | |
2c38906f | 349 | return (shdr->get_sh_type() == elfcpp::SHT_PROGBITS |
1650c4ff | 350 | && (shdr->get_sh_flags() & elfcpp::SHF_ALLOC) != 0); |
730cdc88 ILT |
351 | } |
352 | ||
353 | // Return whether there is a GNU .eh_frame section, given the section | |
354 | // headers and the section names. | |
355 | ||
356 | template<int size, bool big_endian> | |
357 | bool | |
8383303e ILT |
358 | Sized_relobj<size, big_endian>::find_eh_frame( |
359 | const unsigned char* pshdrs, | |
360 | const char* names, | |
361 | section_size_type names_size) const | |
730cdc88 ILT |
362 | { |
363 | const unsigned int shnum = this->shnum(); | |
364 | const unsigned char* p = pshdrs + This::shdr_size; | |
365 | for (unsigned int i = 1; i < shnum; ++i, p += This::shdr_size) | |
366 | { | |
367 | typename This::Shdr shdr(p); | |
368 | if (this->check_eh_frame_flags(&shdr)) | |
369 | { | |
370 | if (shdr.get_sh_name() >= names_size) | |
371 | { | |
372 | this->error(_("bad section name offset for section %u: %lu"), | |
373 | i, static_cast<unsigned long>(shdr.get_sh_name())); | |
374 | continue; | |
375 | } | |
376 | ||
377 | const char* name = names + shdr.get_sh_name(); | |
378 | if (strcmp(name, ".eh_frame") == 0) | |
379 | return true; | |
380 | } | |
381 | } | |
382 | return false; | |
383 | } | |
384 | ||
12e14209 | 385 | // Read the sections and symbols from an object file. |
bae7f79e ILT |
386 | |
387 | template<int size, bool big_endian> | |
12e14209 | 388 | void |
f6ce93d6 | 389 | Sized_relobj<size, big_endian>::do_read_symbols(Read_symbols_data* sd) |
bae7f79e | 390 | { |
dbe717ef | 391 | this->read_section_data(&this->elf_file_, sd); |
12e14209 | 392 | |
dbe717ef ILT |
393 | const unsigned char* const pshdrs = sd->section_headers->data(); |
394 | ||
395 | this->find_symtab(pshdrs); | |
12e14209 | 396 | |
730cdc88 ILT |
397 | const unsigned char* namesu = sd->section_names->data(); |
398 | const char* names = reinterpret_cast<const char*>(namesu); | |
1650c4ff ILT |
399 | if (memmem(names, sd->section_names_size, ".eh_frame", 10) != NULL) |
400 | { | |
401 | if (this->find_eh_frame(pshdrs, names, sd->section_names_size)) | |
402 | this->has_eh_frame_ = true; | |
403 | } | |
730cdc88 | 404 | |
75f2446e ILT |
405 | sd->symbols = NULL; |
406 | sd->symbols_size = 0; | |
730cdc88 | 407 | sd->external_symbols_offset = 0; |
75f2446e ILT |
408 | sd->symbol_names = NULL; |
409 | sd->symbol_names_size = 0; | |
410 | ||
645f8123 | 411 | if (this->symtab_shndx_ == 0) |
bae7f79e ILT |
412 | { |
413 | // No symbol table. Weird but legal. | |
12e14209 | 414 | return; |
bae7f79e ILT |
415 | } |
416 | ||
12e14209 ILT |
417 | // Get the symbol table section header. |
418 | typename This::Shdr symtabshdr(pshdrs | |
645f8123 | 419 | + this->symtab_shndx_ * This::shdr_size); |
a3ad94ed | 420 | gold_assert(symtabshdr.get_sh_type() == elfcpp::SHT_SYMTAB); |
bae7f79e | 421 | |
730cdc88 ILT |
422 | // If this object has a .eh_frame section, we need all the symbols. |
423 | // Otherwise we only need the external symbols. While it would be | |
424 | // simpler to just always read all the symbols, I've seen object | |
425 | // files with well over 2000 local symbols, which for a 64-bit | |
426 | // object file format is over 5 pages that we don't need to read | |
427 | // now. | |
428 | ||
75f65a3e | 429 | const int sym_size = This::sym_size; |
92e059d8 ILT |
430 | const unsigned int loccount = symtabshdr.get_sh_info(); |
431 | this->local_symbol_count_ = loccount; | |
7bf1f802 | 432 | this->local_values_.resize(loccount); |
8383303e | 433 | section_offset_type locsize = loccount * sym_size; |
730cdc88 | 434 | off_t dataoff = symtabshdr.get_sh_offset(); |
8383303e ILT |
435 | section_size_type datasize = |
436 | convert_to_section_size_type(symtabshdr.get_sh_size()); | |
730cdc88 | 437 | off_t extoff = dataoff + locsize; |
8383303e | 438 | section_size_type extsize = datasize - locsize; |
75f65a3e | 439 | |
730cdc88 | 440 | off_t readoff = this->has_eh_frame_ ? dataoff : extoff; |
8383303e | 441 | section_size_type readsize = this->has_eh_frame_ ? datasize : extsize; |
730cdc88 | 442 | |
39d0cb0e | 443 | File_view* fvsymtab = this->get_lasting_view(readoff, readsize, true, false); |
bae7f79e ILT |
444 | |
445 | // Read the section header for the symbol names. | |
d491d34e | 446 | unsigned int strtab_shndx = this->adjust_shndx(symtabshdr.get_sh_link()); |
dbe717ef | 447 | if (strtab_shndx >= this->shnum()) |
bae7f79e | 448 | { |
75f2446e ILT |
449 | this->error(_("invalid symbol table name index: %u"), strtab_shndx); |
450 | return; | |
bae7f79e | 451 | } |
dbe717ef | 452 | typename This::Shdr strtabshdr(pshdrs + strtab_shndx * This::shdr_size); |
bae7f79e ILT |
453 | if (strtabshdr.get_sh_type() != elfcpp::SHT_STRTAB) |
454 | { | |
75f2446e ILT |
455 | this->error(_("symbol table name section has wrong type: %u"), |
456 | static_cast<unsigned int>(strtabshdr.get_sh_type())); | |
457 | return; | |
bae7f79e ILT |
458 | } |
459 | ||
460 | // Read the symbol names. | |
461 | File_view* fvstrtab = this->get_lasting_view(strtabshdr.get_sh_offset(), | |
39d0cb0e ILT |
462 | strtabshdr.get_sh_size(), |
463 | false, true); | |
bae7f79e | 464 | |
12e14209 | 465 | sd->symbols = fvsymtab; |
730cdc88 ILT |
466 | sd->symbols_size = readsize; |
467 | sd->external_symbols_offset = this->has_eh_frame_ ? locsize : 0; | |
12e14209 | 468 | sd->symbol_names = fvstrtab; |
8383303e ILT |
469 | sd->symbol_names_size = |
470 | convert_to_section_size_type(strtabshdr.get_sh_size()); | |
a2fb1b05 ILT |
471 | } |
472 | ||
730cdc88 | 473 | // Return the section index of symbol SYM. Set *VALUE to its value in |
d491d34e ILT |
474 | // the object file. Set *IS_ORDINARY if this is an ordinary section |
475 | // index. not a special cod between SHN_LORESERVE and SHN_HIRESERVE. | |
476 | // Note that for a symbol which is not defined in this object file, | |
477 | // this will set *VALUE to 0 and return SHN_UNDEF; it will not return | |
478 | // the final value of the symbol in the link. | |
730cdc88 ILT |
479 | |
480 | template<int size, bool big_endian> | |
481 | unsigned int | |
482 | Sized_relobj<size, big_endian>::symbol_section_and_value(unsigned int sym, | |
d491d34e ILT |
483 | Address* value, |
484 | bool* is_ordinary) | |
730cdc88 | 485 | { |
8383303e | 486 | section_size_type symbols_size; |
730cdc88 ILT |
487 | const unsigned char* symbols = this->section_contents(this->symtab_shndx_, |
488 | &symbols_size, | |
489 | false); | |
490 | ||
491 | const size_t count = symbols_size / This::sym_size; | |
492 | gold_assert(sym < count); | |
493 | ||
494 | elfcpp::Sym<size, big_endian> elfsym(symbols + sym * This::sym_size); | |
495 | *value = elfsym.get_st_value(); | |
d491d34e ILT |
496 | |
497 | return this->adjust_sym_shndx(sym, elfsym.get_st_shndx(), is_ordinary); | |
730cdc88 ILT |
498 | } |
499 | ||
a2fb1b05 ILT |
500 | // Return whether to include a section group in the link. LAYOUT is |
501 | // used to keep track of which section groups we have already seen. | |
502 | // INDEX is the index of the section group and SHDR is the section | |
503 | // header. If we do not want to include this group, we set bits in | |
504 | // OMIT for each section which should be discarded. | |
505 | ||
506 | template<int size, bool big_endian> | |
507 | bool | |
f6ce93d6 | 508 | Sized_relobj<size, big_endian>::include_section_group( |
6a74a719 | 509 | Symbol_table* symtab, |
a2fb1b05 ILT |
510 | Layout* layout, |
511 | unsigned int index, | |
6a74a719 | 512 | const char* name, |
a2fb1b05 ILT |
513 | const elfcpp::Shdr<size, big_endian>& shdr, |
514 | std::vector<bool>* omit) | |
515 | { | |
516 | // Read the section contents. | |
517 | const unsigned char* pcon = this->get_view(shdr.get_sh_offset(), | |
39d0cb0e | 518 | shdr.get_sh_size(), true, false); |
a2fb1b05 ILT |
519 | const elfcpp::Elf_Word* pword = |
520 | reinterpret_cast<const elfcpp::Elf_Word*>(pcon); | |
521 | ||
522 | // The first word contains flags. We only care about COMDAT section | |
523 | // groups. Other section groups are always included in the link | |
524 | // just like ordinary sections. | |
f6ce93d6 | 525 | elfcpp::Elf_Word flags = elfcpp::Swap<32, big_endian>::readval(pword); |
a2fb1b05 ILT |
526 | |
527 | // Look up the group signature, which is the name of a symbol. This | |
528 | // is a lot of effort to go to to read a string. Why didn't they | |
6a74a719 ILT |
529 | // just have the group signature point into the string table, rather |
530 | // than indirect through a symbol? | |
a2fb1b05 ILT |
531 | |
532 | // Get the appropriate symbol table header (this will normally be | |
533 | // the single SHT_SYMTAB section, but in principle it need not be). | |
d491d34e | 534 | const unsigned int link = this->adjust_shndx(shdr.get_sh_link()); |
645f8123 | 535 | typename This::Shdr symshdr(this, this->elf_file_.section_header(link)); |
a2fb1b05 ILT |
536 | |
537 | // Read the symbol table entry. | |
d491d34e ILT |
538 | unsigned int symndx = shdr.get_sh_info(); |
539 | if (symndx >= symshdr.get_sh_size() / This::sym_size) | |
a2fb1b05 | 540 | { |
75f2446e | 541 | this->error(_("section group %u info %u out of range"), |
d491d34e | 542 | index, symndx); |
75f2446e | 543 | return false; |
a2fb1b05 | 544 | } |
d491d34e | 545 | off_t symoff = symshdr.get_sh_offset() + symndx * This::sym_size; |
39d0cb0e ILT |
546 | const unsigned char* psym = this->get_view(symoff, This::sym_size, true, |
547 | false); | |
a2fb1b05 ILT |
548 | elfcpp::Sym<size, big_endian> sym(psym); |
549 | ||
a2fb1b05 | 550 | // Read the symbol table names. |
8383303e | 551 | section_size_type symnamelen; |
645f8123 | 552 | const unsigned char* psymnamesu; |
d491d34e ILT |
553 | psymnamesu = this->section_contents(this->adjust_shndx(symshdr.get_sh_link()), |
554 | &symnamelen, true); | |
a2fb1b05 ILT |
555 | const char* psymnames = reinterpret_cast<const char*>(psymnamesu); |
556 | ||
557 | // Get the section group signature. | |
645f8123 | 558 | if (sym.get_st_name() >= symnamelen) |
a2fb1b05 | 559 | { |
75f2446e | 560 | this->error(_("symbol %u name offset %u out of range"), |
d491d34e | 561 | symndx, sym.get_st_name()); |
75f2446e | 562 | return false; |
a2fb1b05 ILT |
563 | } |
564 | ||
565 | const char* signature = psymnames + sym.get_st_name(); | |
566 | ||
ead1e424 ILT |
567 | // It seems that some versions of gas will create a section group |
568 | // associated with a section symbol, and then fail to give a name to | |
569 | // the section symbol. In such a case, use the name of the section. | |
645f8123 ILT |
570 | std::string secname; |
571 | if (signature[0] == '\0' && sym.get_st_type() == elfcpp::STT_SECTION) | |
ead1e424 | 572 | { |
d491d34e ILT |
573 | bool is_ordinary; |
574 | unsigned int sym_shndx = this->adjust_sym_shndx(symndx, | |
575 | sym.get_st_shndx(), | |
576 | &is_ordinary); | |
577 | if (!is_ordinary || sym_shndx >= this->shnum()) | |
578 | { | |
579 | this->error(_("symbol %u invalid section index %u"), | |
580 | symndx, sym_shndx); | |
581 | return false; | |
582 | } | |
583 | secname = this->section_name(sym_shndx); | |
645f8123 | 584 | signature = secname.c_str(); |
ead1e424 ILT |
585 | } |
586 | ||
a2fb1b05 ILT |
587 | // Record this section group, and see whether we've already seen one |
588 | // with the same signature. | |
6a74a719 ILT |
589 | |
590 | if ((flags & elfcpp::GRP_COMDAT) == 0 | |
591 | || layout->add_comdat(signature, true)) | |
592 | { | |
8851ecca | 593 | if (parameters->options().relocatable()) |
6a74a719 ILT |
594 | layout->layout_group(symtab, this, index, name, signature, shdr, |
595 | pword); | |
596 | return true; | |
597 | } | |
a2fb1b05 ILT |
598 | |
599 | // This is a duplicate. We want to discard the sections in this | |
600 | // group. | |
601 | size_t count = shdr.get_sh_size() / sizeof(elfcpp::Elf_Word); | |
602 | for (size_t i = 1; i < count; ++i) | |
603 | { | |
f6ce93d6 ILT |
604 | elfcpp::Elf_Word secnum = |
605 | elfcpp::Swap<32, big_endian>::readval(pword + i); | |
a2fb1b05 ILT |
606 | if (secnum >= this->shnum()) |
607 | { | |
75f2446e ILT |
608 | this->error(_("section %u in section group %u out of range"), |
609 | secnum, index); | |
610 | continue; | |
a2fb1b05 ILT |
611 | } |
612 | (*omit)[secnum] = true; | |
613 | } | |
614 | ||
615 | return false; | |
616 | } | |
617 | ||
618 | // Whether to include a linkonce section in the link. NAME is the | |
619 | // name of the section and SHDR is the section header. | |
620 | ||
621 | // Linkonce sections are a GNU extension implemented in the original | |
622 | // GNU linker before section groups were defined. The semantics are | |
623 | // that we only include one linkonce section with a given name. The | |
624 | // name of a linkonce section is normally .gnu.linkonce.T.SYMNAME, | |
625 | // where T is the type of section and SYMNAME is the name of a symbol. | |
626 | // In an attempt to make linkonce sections interact well with section | |
627 | // groups, we try to identify SYMNAME and use it like a section group | |
628 | // signature. We want to block section groups with that signature, | |
629 | // but not other linkonce sections with that signature. We also use | |
630 | // the full name of the linkonce section as a normal section group | |
631 | // signature. | |
632 | ||
633 | template<int size, bool big_endian> | |
634 | bool | |
f6ce93d6 | 635 | Sized_relobj<size, big_endian>::include_linkonce_section( |
a2fb1b05 ILT |
636 | Layout* layout, |
637 | const char* name, | |
638 | const elfcpp::Shdr<size, big_endian>&) | |
639 | { | |
ad435a24 ILT |
640 | // In general the symbol name we want will be the string following |
641 | // the last '.'. However, we have to handle the case of | |
642 | // .gnu.linkonce.t.__i686.get_pc_thunk.bx, which was generated by | |
643 | // some versions of gcc. So we use a heuristic: if the name starts | |
644 | // with ".gnu.linkonce.t.", we use everything after that. Otherwise | |
645 | // we look for the last '.'. We can't always simply skip | |
646 | // ".gnu.linkonce.X", because we have to deal with cases like | |
647 | // ".gnu.linkonce.d.rel.ro.local". | |
648 | const char* const linkonce_t = ".gnu.linkonce.t."; | |
649 | const char* symname; | |
650 | if (strncmp(name, linkonce_t, strlen(linkonce_t)) == 0) | |
651 | symname = name + strlen(linkonce_t); | |
652 | else | |
653 | symname = strrchr(name, '.') + 1; | |
a783673b ILT |
654 | bool include1 = layout->add_comdat(symname, false); |
655 | bool include2 = layout->add_comdat(name, true); | |
656 | return include1 && include2; | |
a2fb1b05 ILT |
657 | } |
658 | ||
659 | // Lay out the input sections. We walk through the sections and check | |
660 | // whether they should be included in the link. If they should, we | |
661 | // pass them to the Layout object, which will return an output section | |
662 | // and an offset. | |
663 | ||
664 | template<int size, bool big_endian> | |
665 | void | |
7e1edb90 | 666 | Sized_relobj<size, big_endian>::do_layout(Symbol_table* symtab, |
f6ce93d6 | 667 | Layout* layout, |
12e14209 | 668 | Read_symbols_data* sd) |
a2fb1b05 | 669 | { |
dbe717ef | 670 | const unsigned int shnum = this->shnum(); |
12e14209 ILT |
671 | if (shnum == 0) |
672 | return; | |
a2fb1b05 ILT |
673 | |
674 | // Get the section headers. | |
12e14209 | 675 | const unsigned char* pshdrs = sd->section_headers->data(); |
a2fb1b05 ILT |
676 | |
677 | // Get the section names. | |
12e14209 | 678 | const unsigned char* pnamesu = sd->section_names->data(); |
a2fb1b05 ILT |
679 | const char* pnames = reinterpret_cast<const char*>(pnamesu); |
680 | ||
730cdc88 ILT |
681 | // For each section, record the index of the reloc section if any. |
682 | // Use 0 to mean that there is no reloc section, -1U to mean that | |
683 | // there is more than one. | |
684 | std::vector<unsigned int> reloc_shndx(shnum, 0); | |
685 | std::vector<unsigned int> reloc_type(shnum, elfcpp::SHT_NULL); | |
686 | // Skip the first, dummy, section. | |
687 | pshdrs += This::shdr_size; | |
688 | for (unsigned int i = 1; i < shnum; ++i, pshdrs += This::shdr_size) | |
689 | { | |
690 | typename This::Shdr shdr(pshdrs); | |
691 | ||
692 | unsigned int sh_type = shdr.get_sh_type(); | |
693 | if (sh_type == elfcpp::SHT_REL || sh_type == elfcpp::SHT_RELA) | |
694 | { | |
d491d34e | 695 | unsigned int target_shndx = this->adjust_shndx(shdr.get_sh_info()); |
730cdc88 ILT |
696 | if (target_shndx == 0 || target_shndx >= shnum) |
697 | { | |
698 | this->error(_("relocation section %u has bad info %u"), | |
699 | i, target_shndx); | |
700 | continue; | |
701 | } | |
702 | ||
703 | if (reloc_shndx[target_shndx] != 0) | |
704 | reloc_shndx[target_shndx] = -1U; | |
705 | else | |
706 | { | |
707 | reloc_shndx[target_shndx] = i; | |
708 | reloc_type[target_shndx] = sh_type; | |
709 | } | |
710 | } | |
711 | } | |
712 | ||
a2fb1b05 | 713 | std::vector<Map_to_output>& map_sections(this->map_to_output()); |
61ba1cf9 | 714 | map_sections.resize(shnum); |
a2fb1b05 | 715 | |
88dd47ac ILT |
716 | // If we are only linking for symbols, then there is nothing else to |
717 | // do here. | |
718 | if (this->input_file()->just_symbols()) | |
719 | { | |
720 | delete sd->section_headers; | |
721 | sd->section_headers = NULL; | |
722 | delete sd->section_names; | |
723 | sd->section_names = NULL; | |
724 | return; | |
725 | } | |
726 | ||
35cdfc9a ILT |
727 | // Whether we've seen a .note.GNU-stack section. |
728 | bool seen_gnu_stack = false; | |
729 | // The flags of a .note.GNU-stack section. | |
730 | uint64_t gnu_stack_flags = 0; | |
731 | ||
a2fb1b05 ILT |
732 | // Keep track of which sections to omit. |
733 | std::vector<bool> omit(shnum, false); | |
734 | ||
7019cd25 | 735 | // Keep track of reloc sections when emitting relocations. |
8851ecca ILT |
736 | const bool relocatable = parameters->options().relocatable(); |
737 | const bool emit_relocs = (relocatable | |
738 | || parameters->options().emit_relocs()); | |
6a74a719 ILT |
739 | std::vector<unsigned int> reloc_sections; |
740 | ||
730cdc88 ILT |
741 | // Keep track of .eh_frame sections. |
742 | std::vector<unsigned int> eh_frame_sections; | |
743 | ||
f6ce93d6 | 744 | // Skip the first, dummy, section. |
730cdc88 | 745 | pshdrs = sd->section_headers->data() + This::shdr_size; |
f6ce93d6 | 746 | for (unsigned int i = 1; i < shnum; ++i, pshdrs += This::shdr_size) |
a2fb1b05 | 747 | { |
75f65a3e | 748 | typename This::Shdr shdr(pshdrs); |
a2fb1b05 | 749 | |
12e14209 | 750 | if (shdr.get_sh_name() >= sd->section_names_size) |
a2fb1b05 | 751 | { |
75f2446e ILT |
752 | this->error(_("bad section name offset for section %u: %lu"), |
753 | i, static_cast<unsigned long>(shdr.get_sh_name())); | |
754 | return; | |
a2fb1b05 ILT |
755 | } |
756 | ||
757 | const char* name = pnames + shdr.get_sh_name(); | |
758 | ||
dbe717ef | 759 | if (this->handle_gnu_warning_section(name, i, symtab)) |
f6ce93d6 | 760 | { |
8851ecca | 761 | if (!relocatable) |
f6ce93d6 ILT |
762 | omit[i] = true; |
763 | } | |
764 | ||
35cdfc9a ILT |
765 | // The .note.GNU-stack section is special. It gives the |
766 | // protection flags that this object file requires for the stack | |
767 | // in memory. | |
768 | if (strcmp(name, ".note.GNU-stack") == 0) | |
769 | { | |
770 | seen_gnu_stack = true; | |
771 | gnu_stack_flags |= shdr.get_sh_flags(); | |
772 | omit[i] = true; | |
773 | } | |
774 | ||
a2fb1b05 ILT |
775 | bool discard = omit[i]; |
776 | if (!discard) | |
777 | { | |
778 | if (shdr.get_sh_type() == elfcpp::SHT_GROUP) | |
779 | { | |
6a74a719 ILT |
780 | if (!this->include_section_group(symtab, layout, i, name, shdr, |
781 | &omit)) | |
a2fb1b05 ILT |
782 | discard = true; |
783 | } | |
cba134d6 ILT |
784 | else if ((shdr.get_sh_flags() & elfcpp::SHF_GROUP) == 0 |
785 | && Layout::is_linkonce(name)) | |
a2fb1b05 ILT |
786 | { |
787 | if (!this->include_linkonce_section(layout, name, shdr)) | |
788 | discard = true; | |
789 | } | |
790 | } | |
791 | ||
792 | if (discard) | |
793 | { | |
794 | // Do not include this section in the link. | |
795 | map_sections[i].output_section = NULL; | |
796 | continue; | |
797 | } | |
798 | ||
6a74a719 ILT |
799 | // When doing a relocatable link we are going to copy input |
800 | // reloc sections into the output. We only want to copy the | |
801 | // ones associated with sections which are not being discarded. | |
802 | // However, we don't know that yet for all sections. So save | |
803 | // reloc sections and process them later. | |
7019cd25 | 804 | if (emit_relocs |
6a74a719 ILT |
805 | && (shdr.get_sh_type() == elfcpp::SHT_REL |
806 | || shdr.get_sh_type() == elfcpp::SHT_RELA)) | |
807 | { | |
808 | reloc_sections.push_back(i); | |
809 | continue; | |
810 | } | |
811 | ||
8851ecca | 812 | if (relocatable && shdr.get_sh_type() == elfcpp::SHT_GROUP) |
6a74a719 ILT |
813 | continue; |
814 | ||
730cdc88 ILT |
815 | // The .eh_frame section is special. It holds exception frame |
816 | // information that we need to read in order to generate the | |
817 | // exception frame header. We process these after all the other | |
818 | // sections so that the exception frame reader can reliably | |
819 | // determine which sections are being discarded, and discard the | |
820 | // corresponding information. | |
8851ecca | 821 | if (!relocatable |
730cdc88 ILT |
822 | && strcmp(name, ".eh_frame") == 0 |
823 | && this->check_eh_frame_flags(&shdr)) | |
824 | { | |
825 | eh_frame_sections.push_back(i); | |
826 | continue; | |
827 | } | |
828 | ||
a2fb1b05 | 829 | off_t offset; |
730cdc88 ILT |
830 | Output_section* os = layout->layout(this, i, name, shdr, |
831 | reloc_shndx[i], reloc_type[i], | |
832 | &offset); | |
a2fb1b05 ILT |
833 | |
834 | map_sections[i].output_section = os; | |
835 | map_sections[i].offset = offset; | |
730cdc88 ILT |
836 | |
837 | // If this section requires special handling, and if there are | |
838 | // relocs that apply to it, then we must do the special handling | |
839 | // before we apply the relocs. | |
840 | if (offset == -1 && reloc_shndx[i] != 0) | |
841 | this->set_relocs_must_follow_section_writes(); | |
12e14209 ILT |
842 | } |
843 | ||
35cdfc9a ILT |
844 | layout->layout_gnu_stack(seen_gnu_stack, gnu_stack_flags); |
845 | ||
6a74a719 ILT |
846 | // When doing a relocatable link handle the reloc sections at the |
847 | // end. | |
7019cd25 | 848 | if (emit_relocs) |
6a74a719 ILT |
849 | this->size_relocatable_relocs(); |
850 | for (std::vector<unsigned int>::const_iterator p = reloc_sections.begin(); | |
851 | p != reloc_sections.end(); | |
852 | ++p) | |
853 | { | |
854 | unsigned int i = *p; | |
855 | const unsigned char* pshdr; | |
856 | pshdr = sd->section_headers->data() + i * This::shdr_size; | |
857 | typename This::Shdr shdr(pshdr); | |
858 | ||
d491d34e | 859 | unsigned int data_shndx = this->adjust_shndx(shdr.get_sh_info()); |
6a74a719 ILT |
860 | if (data_shndx >= shnum) |
861 | { | |
862 | // We already warned about this above. | |
863 | continue; | |
864 | } | |
865 | ||
866 | Output_section* data_section = map_sections[data_shndx].output_section; | |
867 | if (data_section == NULL) | |
868 | { | |
869 | map_sections[i].output_section = NULL; | |
870 | continue; | |
871 | } | |
872 | ||
873 | Relocatable_relocs* rr = new Relocatable_relocs(); | |
874 | this->set_relocatable_relocs(i, rr); | |
875 | ||
876 | Output_section* os = layout->layout_reloc(this, i, shdr, data_section, | |
877 | rr); | |
878 | map_sections[i].output_section = os; | |
879 | map_sections[i].offset = -1; | |
880 | } | |
881 | ||
730cdc88 ILT |
882 | // Handle the .eh_frame sections at the end. |
883 | for (std::vector<unsigned int>::const_iterator p = eh_frame_sections.begin(); | |
884 | p != eh_frame_sections.end(); | |
885 | ++p) | |
886 | { | |
887 | gold_assert(this->has_eh_frame_); | |
888 | gold_assert(sd->external_symbols_offset != 0); | |
889 | ||
890 | unsigned int i = *p; | |
891 | const unsigned char *pshdr; | |
892 | pshdr = sd->section_headers->data() + i * This::shdr_size; | |
893 | typename This::Shdr shdr(pshdr); | |
894 | ||
895 | off_t offset; | |
896 | Output_section* os = layout->layout_eh_frame(this, | |
897 | sd->symbols->data(), | |
898 | sd->symbols_size, | |
899 | sd->symbol_names->data(), | |
900 | sd->symbol_names_size, | |
901 | i, shdr, | |
902 | reloc_shndx[i], | |
903 | reloc_type[i], | |
904 | &offset); | |
905 | map_sections[i].output_section = os; | |
906 | map_sections[i].offset = offset; | |
907 | ||
908 | // If this section requires special handling, and if there are | |
909 | // relocs that apply to it, then we must do the special handling | |
910 | // before we apply the relocs. | |
911 | if (offset == -1 && reloc_shndx[i] != 0) | |
912 | this->set_relocs_must_follow_section_writes(); | |
913 | } | |
914 | ||
12e14209 ILT |
915 | delete sd->section_headers; |
916 | sd->section_headers = NULL; | |
917 | delete sd->section_names; | |
918 | sd->section_names = NULL; | |
919 | } | |
920 | ||
921 | // Add the symbols to the symbol table. | |
922 | ||
923 | template<int size, bool big_endian> | |
924 | void | |
f6ce93d6 | 925 | Sized_relobj<size, big_endian>::do_add_symbols(Symbol_table* symtab, |
12e14209 ILT |
926 | Read_symbols_data* sd) |
927 | { | |
928 | if (sd->symbols == NULL) | |
929 | { | |
a3ad94ed | 930 | gold_assert(sd->symbol_names == NULL); |
12e14209 ILT |
931 | return; |
932 | } | |
a2fb1b05 | 933 | |
12e14209 | 934 | const int sym_size = This::sym_size; |
730cdc88 ILT |
935 | size_t symcount = ((sd->symbols_size - sd->external_symbols_offset) |
936 | / sym_size); | |
8383303e | 937 | if (symcount * sym_size != sd->symbols_size - sd->external_symbols_offset) |
12e14209 | 938 | { |
75f2446e ILT |
939 | this->error(_("size of symbols is not multiple of symbol size")); |
940 | return; | |
a2fb1b05 | 941 | } |
12e14209 | 942 | |
730cdc88 | 943 | this->symbols_.resize(symcount); |
12e14209 | 944 | |
12e14209 ILT |
945 | const char* sym_names = |
946 | reinterpret_cast<const char*>(sd->symbol_names->data()); | |
730cdc88 ILT |
947 | symtab->add_from_relobj(this, |
948 | sd->symbols->data() + sd->external_symbols_offset, | |
d491d34e ILT |
949 | symcount, |
950 | (sd->external_symbols_offset == 0 | |
951 | ? this->local_symbol_count_ | |
952 | : 0), | |
953 | sym_names, sd->symbol_names_size, | |
730cdc88 | 954 | &this->symbols_); |
12e14209 ILT |
955 | |
956 | delete sd->symbols; | |
957 | sd->symbols = NULL; | |
958 | delete sd->symbol_names; | |
959 | sd->symbol_names = NULL; | |
bae7f79e ILT |
960 | } |
961 | ||
cb295612 ILT |
962 | // First pass over the local symbols. Here we add their names to |
963 | // *POOL and *DYNPOOL, and we store the symbol value in | |
964 | // THIS->LOCAL_VALUES_. This function is always called from a | |
965 | // singleton thread. This is followed by a call to | |
966 | // finalize_local_symbols. | |
75f65a3e ILT |
967 | |
968 | template<int size, bool big_endian> | |
7bf1f802 ILT |
969 | void |
970 | Sized_relobj<size, big_endian>::do_count_local_symbols(Stringpool* pool, | |
971 | Stringpool* dynpool) | |
75f65a3e | 972 | { |
a3ad94ed | 973 | gold_assert(this->symtab_shndx_ != -1U); |
645f8123 | 974 | if (this->symtab_shndx_ == 0) |
61ba1cf9 ILT |
975 | { |
976 | // This object has no symbols. Weird but legal. | |
7bf1f802 | 977 | return; |
61ba1cf9 ILT |
978 | } |
979 | ||
75f65a3e | 980 | // Read the symbol table section header. |
645f8123 ILT |
981 | const unsigned int symtab_shndx = this->symtab_shndx_; |
982 | typename This::Shdr symtabshdr(this, | |
983 | this->elf_file_.section_header(symtab_shndx)); | |
a3ad94ed | 984 | gold_assert(symtabshdr.get_sh_type() == elfcpp::SHT_SYMTAB); |
75f65a3e ILT |
985 | |
986 | // Read the local symbols. | |
75f65a3e | 987 | const int sym_size = This::sym_size; |
92e059d8 | 988 | const unsigned int loccount = this->local_symbol_count_; |
a3ad94ed | 989 | gold_assert(loccount == symtabshdr.get_sh_info()); |
75f65a3e ILT |
990 | off_t locsize = loccount * sym_size; |
991 | const unsigned char* psyms = this->get_view(symtabshdr.get_sh_offset(), | |
39d0cb0e | 992 | locsize, true, true); |
75f65a3e | 993 | |
75f65a3e | 994 | // Read the symbol names. |
d491d34e ILT |
995 | const unsigned int strtab_shndx = |
996 | this->adjust_shndx(symtabshdr.get_sh_link()); | |
8383303e | 997 | section_size_type strtab_size; |
645f8123 | 998 | const unsigned char* pnamesu = this->section_contents(strtab_shndx, |
9eb9fa57 ILT |
999 | &strtab_size, |
1000 | true); | |
75f65a3e ILT |
1001 | const char* pnames = reinterpret_cast<const char*>(pnamesu); |
1002 | ||
1003 | // Loop over the local symbols. | |
1004 | ||
c06b7b0b | 1005 | const std::vector<Map_to_output>& mo(this->map_to_output()); |
75f65a3e | 1006 | unsigned int shnum = this->shnum(); |
61ba1cf9 | 1007 | unsigned int count = 0; |
7bf1f802 | 1008 | unsigned int dyncount = 0; |
75f65a3e ILT |
1009 | // Skip the first, dummy, symbol. |
1010 | psyms += sym_size; | |
61ba1cf9 | 1011 | for (unsigned int i = 1; i < loccount; ++i, psyms += sym_size) |
75f65a3e ILT |
1012 | { |
1013 | elfcpp::Sym<size, big_endian> sym(psyms); | |
1014 | ||
b8e6aad9 ILT |
1015 | Symbol_value<size>& lv(this->local_values_[i]); |
1016 | ||
d491d34e ILT |
1017 | bool is_ordinary; |
1018 | unsigned int shndx = this->adjust_sym_shndx(i, sym.get_st_shndx(), | |
1019 | &is_ordinary); | |
1020 | lv.set_input_shndx(shndx, is_ordinary); | |
75f65a3e | 1021 | |
063f12a8 ILT |
1022 | if (sym.get_st_type() == elfcpp::STT_SECTION) |
1023 | lv.set_is_section_symbol(); | |
7bf1f802 ILT |
1024 | else if (sym.get_st_type() == elfcpp::STT_TLS) |
1025 | lv.set_is_tls_symbol(); | |
1026 | ||
1027 | // Save the input symbol value for use in do_finalize_local_symbols(). | |
1028 | lv.set_input_value(sym.get_st_value()); | |
1029 | ||
1030 | // Decide whether this symbol should go into the output file. | |
063f12a8 | 1031 | |
7bf1f802 ILT |
1032 | if (shndx < shnum && mo[shndx].output_section == NULL) |
1033 | { | |
1034 | lv.set_no_output_symtab_entry(); | |
dceae3c1 | 1035 | gold_assert(!lv.needs_output_dynsym_entry()); |
7bf1f802 ILT |
1036 | continue; |
1037 | } | |
1038 | ||
1039 | if (sym.get_st_type() == elfcpp::STT_SECTION) | |
1040 | { | |
1041 | lv.set_no_output_symtab_entry(); | |
dceae3c1 | 1042 | gold_assert(!lv.needs_output_dynsym_entry()); |
7bf1f802 ILT |
1043 | continue; |
1044 | } | |
1045 | ||
1046 | if (sym.get_st_name() >= strtab_size) | |
1047 | { | |
1048 | this->error(_("local symbol %u section name out of range: %u >= %u"), | |
1049 | i, sym.get_st_name(), | |
1050 | static_cast<unsigned int>(strtab_size)); | |
1051 | lv.set_no_output_symtab_entry(); | |
1052 | continue; | |
1053 | } | |
1054 | ||
1055 | // Add the symbol to the symbol table string pool. | |
1056 | const char* name = pnames + sym.get_st_name(); | |
1057 | pool->add(name, true, NULL); | |
1058 | ++count; | |
1059 | ||
1060 | // If needed, add the symbol to the dynamic symbol table string pool. | |
1061 | if (lv.needs_output_dynsym_entry()) | |
1062 | { | |
1063 | dynpool->add(name, true, NULL); | |
1064 | ++dyncount; | |
1065 | } | |
1066 | } | |
1067 | ||
1068 | this->output_local_symbol_count_ = count; | |
1069 | this->output_local_dynsym_count_ = dyncount; | |
1070 | } | |
1071 | ||
cb295612 | 1072 | // Finalize the local symbols. Here we set the final value in |
7bf1f802 | 1073 | // THIS->LOCAL_VALUES_ and set their output symbol table indexes. |
17a1d0a9 | 1074 | // This function is always called from a singleton thread. The actual |
7bf1f802 ILT |
1075 | // output of the local symbols will occur in a separate task. |
1076 | ||
1077 | template<int size, bool big_endian> | |
1078 | unsigned int | |
1079 | Sized_relobj<size, big_endian>::do_finalize_local_symbols(unsigned int index, | |
d491d34e | 1080 | off_t off) |
7bf1f802 ILT |
1081 | { |
1082 | gold_assert(off == static_cast<off_t>(align_address(off, size >> 3))); | |
1083 | ||
1084 | const unsigned int loccount = this->local_symbol_count_; | |
1085 | this->local_symbol_offset_ = off; | |
1086 | ||
1087 | const std::vector<Map_to_output>& mo(this->map_to_output()); | |
1088 | unsigned int shnum = this->shnum(); | |
1089 | ||
1090 | for (unsigned int i = 1; i < loccount; ++i) | |
1091 | { | |
1092 | Symbol_value<size>& lv(this->local_values_[i]); | |
1093 | ||
d491d34e ILT |
1094 | bool is_ordinary; |
1095 | unsigned int shndx = lv.input_shndx(&is_ordinary); | |
7bf1f802 ILT |
1096 | |
1097 | // Set the output symbol value. | |
1098 | ||
d491d34e | 1099 | if (!is_ordinary) |
75f65a3e | 1100 | { |
0dfbdef4 | 1101 | if (shndx == elfcpp::SHN_ABS || shndx == elfcpp::SHN_COMMON) |
7bf1f802 | 1102 | lv.set_output_value(lv.input_value()); |
61ba1cf9 | 1103 | else |
75f65a3e | 1104 | { |
75f2446e ILT |
1105 | this->error(_("unknown section index %u for local symbol %u"), |
1106 | shndx, i); | |
1107 | lv.set_output_value(0); | |
75f65a3e | 1108 | } |
75f65a3e ILT |
1109 | } |
1110 | else | |
1111 | { | |
1112 | if (shndx >= shnum) | |
1113 | { | |
75f2446e ILT |
1114 | this->error(_("local symbol %u section index %u out of range"), |
1115 | i, shndx); | |
1116 | shndx = 0; | |
75f65a3e ILT |
1117 | } |
1118 | ||
b8e6aad9 ILT |
1119 | Output_section* os = mo[shndx].output_section; |
1120 | ||
1121 | if (os == NULL) | |
61ba1cf9 | 1122 | { |
b8e6aad9 | 1123 | lv.set_output_value(0); |
61ba1cf9 ILT |
1124 | continue; |
1125 | } | |
7bf1f802 ILT |
1126 | else if (mo[shndx].offset == -1) |
1127 | { | |
a9a60db6 ILT |
1128 | // This is a SHF_MERGE section or one which otherwise |
1129 | // requires special handling. We get the output address | |
1130 | // of the start of the merged section. If this is not a | |
1131 | // section symbol, we can then determine the final | |
1132 | // value. If it is a section symbol, we can not, as in | |
1133 | // that case we have to consider the addend to determine | |
1134 | // the value to use in a relocation. | |
a9a60db6 | 1135 | if (!lv.is_section_symbol()) |
8d32f935 ILT |
1136 | lv.set_output_value(os->output_address(this, shndx, |
1137 | lv.input_value())); | |
a9a60db6 ILT |
1138 | else |
1139 | { | |
8d32f935 ILT |
1140 | section_offset_type start = |
1141 | os->starting_output_address(this, shndx); | |
a9a60db6 ILT |
1142 | Merged_symbol_value<size>* msv = |
1143 | new Merged_symbol_value<size>(lv.input_value(), start); | |
1144 | lv.set_merged_symbol_value(msv); | |
1145 | } | |
7bf1f802 ILT |
1146 | } |
1147 | else if (lv.is_tls_symbol()) | |
a9a60db6 | 1148 | lv.set_output_value(os->tls_offset() |
7bf1f802 ILT |
1149 | + mo[shndx].offset |
1150 | + lv.input_value()); | |
b8e6aad9 | 1151 | else |
a9a60db6 | 1152 | lv.set_output_value(os->address() |
b8e6aad9 | 1153 | + mo[shndx].offset |
7bf1f802 | 1154 | + lv.input_value()); |
75f65a3e ILT |
1155 | } |
1156 | ||
7bf1f802 ILT |
1157 | if (lv.needs_output_symtab_entry()) |
1158 | { | |
1159 | lv.set_output_symtab_index(index); | |
1160 | ++index; | |
1161 | } | |
1162 | } | |
1163 | return index; | |
1164 | } | |
645f8123 | 1165 | |
7bf1f802 | 1166 | // Set the output dynamic symbol table indexes for the local variables. |
c06b7b0b | 1167 | |
7bf1f802 ILT |
1168 | template<int size, bool big_endian> |
1169 | unsigned int | |
1170 | Sized_relobj<size, big_endian>::do_set_local_dynsym_indexes(unsigned int index) | |
1171 | { | |
1172 | const unsigned int loccount = this->local_symbol_count_; | |
1173 | for (unsigned int i = 1; i < loccount; ++i) | |
1174 | { | |
1175 | Symbol_value<size>& lv(this->local_values_[i]); | |
1176 | if (lv.needs_output_dynsym_entry()) | |
1177 | { | |
1178 | lv.set_output_dynsym_index(index); | |
1179 | ++index; | |
1180 | } | |
75f65a3e | 1181 | } |
7bf1f802 ILT |
1182 | return index; |
1183 | } | |
75f65a3e | 1184 | |
7bf1f802 ILT |
1185 | // Set the offset where local dynamic symbol information will be stored. |
1186 | // Returns the count of local symbols contributed to the symbol table by | |
1187 | // this object. | |
61ba1cf9 | 1188 | |
7bf1f802 ILT |
1189 | template<int size, bool big_endian> |
1190 | unsigned int | |
1191 | Sized_relobj<size, big_endian>::do_set_local_dynsym_offset(off_t off) | |
1192 | { | |
1193 | gold_assert(off == static_cast<off_t>(align_address(off, size >> 3))); | |
1194 | this->local_dynsym_offset_ = off; | |
1195 | return this->output_local_dynsym_count_; | |
75f65a3e ILT |
1196 | } |
1197 | ||
61ba1cf9 ILT |
1198 | // Write out the local symbols. |
1199 | ||
1200 | template<int size, bool big_endian> | |
1201 | void | |
17a1d0a9 ILT |
1202 | Sized_relobj<size, big_endian>::write_local_symbols( |
1203 | Output_file* of, | |
1204 | const Stringpool* sympool, | |
d491d34e ILT |
1205 | const Stringpool* dynpool, |
1206 | Output_symtab_xindex* symtab_xindex, | |
1207 | Output_symtab_xindex* dynsym_xindex) | |
61ba1cf9 | 1208 | { |
8851ecca ILT |
1209 | if (parameters->options().strip_all() |
1210 | && this->output_local_dynsym_count_ == 0) | |
9e2dcb77 ILT |
1211 | return; |
1212 | ||
a3ad94ed | 1213 | gold_assert(this->symtab_shndx_ != -1U); |
645f8123 | 1214 | if (this->symtab_shndx_ == 0) |
61ba1cf9 ILT |
1215 | { |
1216 | // This object has no symbols. Weird but legal. | |
1217 | return; | |
1218 | } | |
1219 | ||
1220 | // Read the symbol table section header. | |
645f8123 ILT |
1221 | const unsigned int symtab_shndx = this->symtab_shndx_; |
1222 | typename This::Shdr symtabshdr(this, | |
1223 | this->elf_file_.section_header(symtab_shndx)); | |
a3ad94ed | 1224 | gold_assert(symtabshdr.get_sh_type() == elfcpp::SHT_SYMTAB); |
92e059d8 | 1225 | const unsigned int loccount = this->local_symbol_count_; |
a3ad94ed | 1226 | gold_assert(loccount == symtabshdr.get_sh_info()); |
61ba1cf9 ILT |
1227 | |
1228 | // Read the local symbols. | |
1229 | const int sym_size = This::sym_size; | |
92e059d8 | 1230 | off_t locsize = loccount * sym_size; |
61ba1cf9 | 1231 | const unsigned char* psyms = this->get_view(symtabshdr.get_sh_offset(), |
39d0cb0e | 1232 | locsize, true, false); |
61ba1cf9 | 1233 | |
61ba1cf9 | 1234 | // Read the symbol names. |
d491d34e ILT |
1235 | const unsigned int strtab_shndx = |
1236 | this->adjust_shndx(symtabshdr.get_sh_link()); | |
8383303e | 1237 | section_size_type strtab_size; |
645f8123 | 1238 | const unsigned char* pnamesu = this->section_contents(strtab_shndx, |
9eb9fa57 | 1239 | &strtab_size, |
cb295612 | 1240 | false); |
61ba1cf9 ILT |
1241 | const char* pnames = reinterpret_cast<const char*>(pnamesu); |
1242 | ||
7bf1f802 ILT |
1243 | // Get views into the output file for the portions of the symbol table |
1244 | // and the dynamic symbol table that we will be writing. | |
61ba1cf9 | 1245 | off_t output_size = this->output_local_symbol_count_ * sym_size; |
f2619d6c | 1246 | unsigned char* oview = NULL; |
7bf1f802 ILT |
1247 | if (output_size > 0) |
1248 | oview = of->get_output_view(this->local_symbol_offset_, output_size); | |
1249 | ||
1250 | off_t dyn_output_size = this->output_local_dynsym_count_ * sym_size; | |
1251 | unsigned char* dyn_oview = NULL; | |
1252 | if (dyn_output_size > 0) | |
1253 | dyn_oview = of->get_output_view(this->local_dynsym_offset_, | |
1254 | dyn_output_size); | |
61ba1cf9 | 1255 | |
c06b7b0b ILT |
1256 | const std::vector<Map_to_output>& mo(this->map_to_output()); |
1257 | ||
a3ad94ed | 1258 | gold_assert(this->local_values_.size() == loccount); |
61ba1cf9 | 1259 | |
61ba1cf9 | 1260 | unsigned char* ov = oview; |
7bf1f802 | 1261 | unsigned char* dyn_ov = dyn_oview; |
c06b7b0b | 1262 | psyms += sym_size; |
92e059d8 | 1263 | for (unsigned int i = 1; i < loccount; ++i, psyms += sym_size) |
61ba1cf9 ILT |
1264 | { |
1265 | elfcpp::Sym<size, big_endian> isym(psyms); | |
f6ce93d6 | 1266 | |
d491d34e ILT |
1267 | Symbol_value<size>& lv(this->local_values_[i]); |
1268 | ||
1269 | bool is_ordinary; | |
1270 | unsigned int st_shndx = this->adjust_sym_shndx(i, isym.get_st_shndx(), | |
1271 | &is_ordinary); | |
1272 | if (is_ordinary) | |
61ba1cf9 | 1273 | { |
a3ad94ed | 1274 | gold_assert(st_shndx < mo.size()); |
61ba1cf9 ILT |
1275 | if (mo[st_shndx].output_section == NULL) |
1276 | continue; | |
ead1e424 | 1277 | st_shndx = mo[st_shndx].output_section->out_shndx(); |
d491d34e ILT |
1278 | if (st_shndx >= elfcpp::SHN_LORESERVE) |
1279 | { | |
1280 | if (lv.needs_output_symtab_entry()) | |
1281 | symtab_xindex->add(lv.output_symtab_index(), st_shndx); | |
1282 | if (lv.needs_output_dynsym_entry()) | |
1283 | dynsym_xindex->add(lv.output_dynsym_index(), st_shndx); | |
1284 | st_shndx = elfcpp::SHN_XINDEX; | |
1285 | } | |
61ba1cf9 ILT |
1286 | } |
1287 | ||
7bf1f802 | 1288 | // Write the symbol to the output symbol table. |
8851ecca | 1289 | if (!parameters->options().strip_all() |
d491d34e | 1290 | && lv.needs_output_symtab_entry()) |
7bf1f802 ILT |
1291 | { |
1292 | elfcpp::Sym_write<size, big_endian> osym(ov); | |
1293 | ||
1294 | gold_assert(isym.get_st_name() < strtab_size); | |
1295 | const char* name = pnames + isym.get_st_name(); | |
1296 | osym.put_st_name(sympool->get_offset(name)); | |
1297 | osym.put_st_value(this->local_values_[i].value(this, 0)); | |
1298 | osym.put_st_size(isym.get_st_size()); | |
1299 | osym.put_st_info(isym.get_st_info()); | |
1300 | osym.put_st_other(isym.get_st_other()); | |
1301 | osym.put_st_shndx(st_shndx); | |
1302 | ||
1303 | ov += sym_size; | |
1304 | } | |
1305 | ||
1306 | // Write the symbol to the output dynamic symbol table. | |
d491d34e | 1307 | if (lv.needs_output_dynsym_entry()) |
7bf1f802 ILT |
1308 | { |
1309 | gold_assert(dyn_ov < dyn_oview + dyn_output_size); | |
1310 | elfcpp::Sym_write<size, big_endian> osym(dyn_ov); | |
1311 | ||
1312 | gold_assert(isym.get_st_name() < strtab_size); | |
1313 | const char* name = pnames + isym.get_st_name(); | |
1314 | osym.put_st_name(dynpool->get_offset(name)); | |
1315 | osym.put_st_value(this->local_values_[i].value(this, 0)); | |
1316 | osym.put_st_size(isym.get_st_size()); | |
1317 | osym.put_st_info(isym.get_st_info()); | |
1318 | osym.put_st_other(isym.get_st_other()); | |
1319 | osym.put_st_shndx(st_shndx); | |
1320 | ||
1321 | dyn_ov += sym_size; | |
1322 | } | |
1323 | } | |
f6ce93d6 | 1324 | |
61ba1cf9 | 1325 | |
7bf1f802 ILT |
1326 | if (output_size > 0) |
1327 | { | |
1328 | gold_assert(ov - oview == output_size); | |
1329 | of->write_output_view(this->local_symbol_offset_, output_size, oview); | |
61ba1cf9 ILT |
1330 | } |
1331 | ||
7bf1f802 ILT |
1332 | if (dyn_output_size > 0) |
1333 | { | |
1334 | gold_assert(dyn_ov - dyn_oview == dyn_output_size); | |
1335 | of->write_output_view(this->local_dynsym_offset_, dyn_output_size, | |
1336 | dyn_oview); | |
1337 | } | |
61ba1cf9 ILT |
1338 | } |
1339 | ||
f7e2ee48 ILT |
1340 | // Set *INFO to symbolic information about the offset OFFSET in the |
1341 | // section SHNDX. Return true if we found something, false if we | |
1342 | // found nothing. | |
1343 | ||
1344 | template<int size, bool big_endian> | |
1345 | bool | |
1346 | Sized_relobj<size, big_endian>::get_symbol_location_info( | |
1347 | unsigned int shndx, | |
1348 | off_t offset, | |
1349 | Symbol_location_info* info) | |
1350 | { | |
1351 | if (this->symtab_shndx_ == 0) | |
1352 | return false; | |
1353 | ||
8383303e | 1354 | section_size_type symbols_size; |
f7e2ee48 ILT |
1355 | const unsigned char* symbols = this->section_contents(this->symtab_shndx_, |
1356 | &symbols_size, | |
1357 | false); | |
1358 | ||
d491d34e ILT |
1359 | unsigned int symbol_names_shndx = |
1360 | this->adjust_shndx(this->section_link(this->symtab_shndx_)); | |
8383303e | 1361 | section_size_type names_size; |
f7e2ee48 ILT |
1362 | const unsigned char* symbol_names_u = |
1363 | this->section_contents(symbol_names_shndx, &names_size, false); | |
1364 | const char* symbol_names = reinterpret_cast<const char*>(symbol_names_u); | |
1365 | ||
1366 | const int sym_size = This::sym_size; | |
1367 | const size_t count = symbols_size / sym_size; | |
1368 | ||
1369 | const unsigned char* p = symbols; | |
1370 | for (size_t i = 0; i < count; ++i, p += sym_size) | |
1371 | { | |
1372 | elfcpp::Sym<size, big_endian> sym(p); | |
1373 | ||
1374 | if (sym.get_st_type() == elfcpp::STT_FILE) | |
1375 | { | |
1376 | if (sym.get_st_name() >= names_size) | |
1377 | info->source_file = "(invalid)"; | |
1378 | else | |
1379 | info->source_file = symbol_names + sym.get_st_name(); | |
d491d34e | 1380 | continue; |
f7e2ee48 | 1381 | } |
d491d34e ILT |
1382 | |
1383 | bool is_ordinary; | |
1384 | unsigned int st_shndx = this->adjust_sym_shndx(i, sym.get_st_shndx(), | |
1385 | &is_ordinary); | |
1386 | if (is_ordinary | |
1387 | && st_shndx == shndx | |
1388 | && static_cast<off_t>(sym.get_st_value()) <= offset | |
1389 | && (static_cast<off_t>(sym.get_st_value() + sym.get_st_size()) | |
1390 | > offset)) | |
f7e2ee48 ILT |
1391 | { |
1392 | if (sym.get_st_name() > names_size) | |
1393 | info->enclosing_symbol_name = "(invalid)"; | |
1394 | else | |
a2b1aa12 ILT |
1395 | { |
1396 | info->enclosing_symbol_name = symbol_names + sym.get_st_name(); | |
086a1841 | 1397 | if (parameters->options().do_demangle()) |
a2b1aa12 ILT |
1398 | { |
1399 | char* demangled_name = cplus_demangle( | |
1400 | info->enclosing_symbol_name.c_str(), | |
1401 | DMGL_ANSI | DMGL_PARAMS); | |
1402 | if (demangled_name != NULL) | |
1403 | { | |
1404 | info->enclosing_symbol_name.assign(demangled_name); | |
1405 | free(demangled_name); | |
1406 | } | |
1407 | } | |
1408 | } | |
f7e2ee48 ILT |
1409 | return true; |
1410 | } | |
1411 | } | |
1412 | ||
1413 | return false; | |
1414 | } | |
1415 | ||
54dc6425 ILT |
1416 | // Input_objects methods. |
1417 | ||
008db82e ILT |
1418 | // Add a regular relocatable object to the list. Return false if this |
1419 | // object should be ignored. | |
f6ce93d6 | 1420 | |
008db82e | 1421 | bool |
54dc6425 ILT |
1422 | Input_objects::add_object(Object* obj) |
1423 | { | |
fbfba508 | 1424 | // Set the global target from the first object file we recognize. |
019cdb1a | 1425 | Target* target = obj->target(); |
8851ecca | 1426 | if (!parameters->target_valid()) |
fbfba508 | 1427 | set_parameters_target(target); |
8851ecca | 1428 | else if (target != ¶meters->target()) |
019cdb1a | 1429 | { |
fbfba508 | 1430 | obj->error(_("incompatible target")); |
019cdb1a ILT |
1431 | return false; |
1432 | } | |
1433 | ||
c5818ff1 CC |
1434 | // Print the filename if the -t/--trace option is selected. |
1435 | if (parameters->options().trace()) | |
1436 | gold_info("%s", obj->name().c_str()); | |
1437 | ||
008db82e | 1438 | if (!obj->is_dynamic()) |
f6ce93d6 | 1439 | this->relobj_list_.push_back(static_cast<Relobj*>(obj)); |
008db82e ILT |
1440 | else |
1441 | { | |
1442 | // See if this is a duplicate SONAME. | |
1443 | Dynobj* dynobj = static_cast<Dynobj*>(obj); | |
9a2d6984 | 1444 | const char* soname = dynobj->soname(); |
008db82e ILT |
1445 | |
1446 | std::pair<Unordered_set<std::string>::iterator, bool> ins = | |
9a2d6984 | 1447 | this->sonames_.insert(soname); |
008db82e ILT |
1448 | if (!ins.second) |
1449 | { | |
1450 | // We have already seen a dynamic object with this soname. | |
1451 | return false; | |
1452 | } | |
1453 | ||
1454 | this->dynobj_list_.push_back(dynobj); | |
9a2d6984 ILT |
1455 | |
1456 | // If this is -lc, remember the directory in which we found it. | |
1457 | // We use this when issuing warnings about undefined symbols: as | |
1458 | // a heuristic, we don't warn about system libraries found in | |
1459 | // the same directory as -lc. | |
1460 | if (strncmp(soname, "libc.so", 7) == 0) | |
1461 | { | |
1462 | const char* object_name = dynobj->name().c_str(); | |
1463 | const char* base = lbasename(object_name); | |
1464 | if (base != object_name) | |
1465 | this->system_library_directory_.assign(object_name, | |
1466 | base - 1 - object_name); | |
1467 | } | |
008db82e | 1468 | } |
75f65a3e | 1469 | |
008db82e | 1470 | return true; |
54dc6425 ILT |
1471 | } |
1472 | ||
9a2d6984 ILT |
1473 | // Return whether an object was found in the system library directory. |
1474 | ||
1475 | bool | |
1476 | Input_objects::found_in_system_library_directory(const Object* object) const | |
1477 | { | |
1478 | return (!this->system_library_directory_.empty() | |
1479 | && object->name().compare(0, | |
1480 | this->system_library_directory_.size(), | |
1481 | this->system_library_directory_) == 0); | |
1482 | } | |
1483 | ||
e2827e5f ILT |
1484 | // For each dynamic object, record whether we've seen all of its |
1485 | // explicit dependencies. | |
1486 | ||
1487 | void | |
1488 | Input_objects::check_dynamic_dependencies() const | |
1489 | { | |
1490 | for (Dynobj_list::const_iterator p = this->dynobj_list_.begin(); | |
1491 | p != this->dynobj_list_.end(); | |
1492 | ++p) | |
1493 | { | |
1494 | const Dynobj::Needed& needed((*p)->needed()); | |
1495 | bool found_all = true; | |
1496 | for (Dynobj::Needed::const_iterator pneeded = needed.begin(); | |
1497 | pneeded != needed.end(); | |
1498 | ++pneeded) | |
1499 | { | |
1500 | if (this->sonames_.find(*pneeded) == this->sonames_.end()) | |
1501 | { | |
1502 | found_all = false; | |
1503 | break; | |
1504 | } | |
1505 | } | |
1506 | (*p)->set_has_unknown_needed_entries(!found_all); | |
1507 | } | |
1508 | } | |
1509 | ||
92e059d8 ILT |
1510 | // Relocate_info methods. |
1511 | ||
1512 | // Return a string describing the location of a relocation. This is | |
1513 | // only used in error messages. | |
1514 | ||
1515 | template<int size, bool big_endian> | |
1516 | std::string | |
f7e2ee48 | 1517 | Relocate_info<size, big_endian>::location(size_t, off_t offset) const |
92e059d8 | 1518 | { |
5c2c6c95 ILT |
1519 | // See if we can get line-number information from debugging sections. |
1520 | std::string filename; | |
1521 | std::string file_and_lineno; // Better than filename-only, if available. | |
4c50553d | 1522 | |
a55ce7fe | 1523 | Sized_dwarf_line_info<size, big_endian> line_info(this->object); |
24badc65 ILT |
1524 | // This will be "" if we failed to parse the debug info for any reason. |
1525 | file_and_lineno = line_info.addr2line(this->data_shndx, offset); | |
4c50553d | 1526 | |
92e059d8 | 1527 | std::string ret(this->object->name()); |
f7e2ee48 ILT |
1528 | ret += ':'; |
1529 | Symbol_location_info info; | |
1530 | if (this->object->get_symbol_location_info(this->data_shndx, offset, &info)) | |
1531 | { | |
1532 | ret += " in function "; | |
1533 | ret += info.enclosing_symbol_name; | |
1534 | ret += ":"; | |
5c2c6c95 ILT |
1535 | filename = info.source_file; |
1536 | } | |
1537 | ||
1538 | if (!file_and_lineno.empty()) | |
1539 | ret += file_and_lineno; | |
1540 | else | |
1541 | { | |
1542 | if (!filename.empty()) | |
1543 | ret += filename; | |
1544 | ret += "("; | |
1545 | ret += this->object->section_name(this->data_shndx); | |
1546 | char buf[100]; | |
1547 | // Offsets into sections have to be positive. | |
1548 | snprintf(buf, sizeof(buf), "+0x%lx", static_cast<long>(offset)); | |
1549 | ret += buf; | |
1550 | ret += ")"; | |
f7e2ee48 | 1551 | } |
92e059d8 ILT |
1552 | return ret; |
1553 | } | |
1554 | ||
bae7f79e ILT |
1555 | } // End namespace gold. |
1556 | ||
1557 | namespace | |
1558 | { | |
1559 | ||
1560 | using namespace gold; | |
1561 | ||
1562 | // Read an ELF file with the header and return the appropriate | |
1563 | // instance of Object. | |
1564 | ||
1565 | template<int size, bool big_endian> | |
1566 | Object* | |
1567 | make_elf_sized_object(const std::string& name, Input_file* input_file, | |
1568 | off_t offset, const elfcpp::Ehdr<size, big_endian>& ehdr) | |
1569 | { | |
1570 | int et = ehdr.get_e_type(); | |
bae7f79e ILT |
1571 | if (et == elfcpp::ET_REL) |
1572 | { | |
f6ce93d6 ILT |
1573 | Sized_relobj<size, big_endian>* obj = |
1574 | new Sized_relobj<size, big_endian>(name, input_file, offset, ehdr); | |
bae7f79e ILT |
1575 | obj->setup(ehdr); |
1576 | return obj; | |
1577 | } | |
dbe717ef ILT |
1578 | else if (et == elfcpp::ET_DYN) |
1579 | { | |
1580 | Sized_dynobj<size, big_endian>* obj = | |
1581 | new Sized_dynobj<size, big_endian>(name, input_file, offset, ehdr); | |
1582 | obj->setup(ehdr); | |
1583 | return obj; | |
1584 | } | |
bae7f79e ILT |
1585 | else |
1586 | { | |
75f2446e ILT |
1587 | gold_error(_("%s: unsupported ELF file type %d"), |
1588 | name.c_str(), et); | |
1589 | return NULL; | |
bae7f79e ILT |
1590 | } |
1591 | } | |
1592 | ||
1593 | } // End anonymous namespace. | |
1594 | ||
1595 | namespace gold | |
1596 | { | |
1597 | ||
1598 | // Read an ELF file and return the appropriate instance of Object. | |
1599 | ||
1600 | Object* | |
1601 | make_elf_object(const std::string& name, Input_file* input_file, off_t offset, | |
8383303e | 1602 | const unsigned char* p, section_offset_type bytes) |
bae7f79e ILT |
1603 | { |
1604 | if (bytes < elfcpp::EI_NIDENT) | |
1605 | { | |
75f2446e ILT |
1606 | gold_error(_("%s: ELF file too short"), name.c_str()); |
1607 | return NULL; | |
bae7f79e ILT |
1608 | } |
1609 | ||
1610 | int v = p[elfcpp::EI_VERSION]; | |
1611 | if (v != elfcpp::EV_CURRENT) | |
1612 | { | |
1613 | if (v == elfcpp::EV_NONE) | |
75f2446e | 1614 | gold_error(_("%s: invalid ELF version 0"), name.c_str()); |
bae7f79e | 1615 | else |
75f2446e ILT |
1616 | gold_error(_("%s: unsupported ELF version %d"), name.c_str(), v); |
1617 | return NULL; | |
bae7f79e ILT |
1618 | } |
1619 | ||
1620 | int c = p[elfcpp::EI_CLASS]; | |
1621 | if (c == elfcpp::ELFCLASSNONE) | |
1622 | { | |
75f2446e ILT |
1623 | gold_error(_("%s: invalid ELF class 0"), name.c_str()); |
1624 | return NULL; | |
bae7f79e ILT |
1625 | } |
1626 | else if (c != elfcpp::ELFCLASS32 | |
1627 | && c != elfcpp::ELFCLASS64) | |
1628 | { | |
75f2446e ILT |
1629 | gold_error(_("%s: unsupported ELF class %d"), name.c_str(), c); |
1630 | return NULL; | |
bae7f79e ILT |
1631 | } |
1632 | ||
1633 | int d = p[elfcpp::EI_DATA]; | |
1634 | if (d == elfcpp::ELFDATANONE) | |
1635 | { | |
75f2446e ILT |
1636 | gold_error(_("%s: invalid ELF data encoding"), name.c_str()); |
1637 | return NULL; | |
bae7f79e ILT |
1638 | } |
1639 | else if (d != elfcpp::ELFDATA2LSB | |
1640 | && d != elfcpp::ELFDATA2MSB) | |
1641 | { | |
75f2446e ILT |
1642 | gold_error(_("%s: unsupported ELF data encoding %d"), name.c_str(), d); |
1643 | return NULL; | |
bae7f79e ILT |
1644 | } |
1645 | ||
1646 | bool big_endian = d == elfcpp::ELFDATA2MSB; | |
1647 | ||
1648 | if (c == elfcpp::ELFCLASS32) | |
1649 | { | |
1650 | if (bytes < elfcpp::Elf_sizes<32>::ehdr_size) | |
1651 | { | |
75f2446e ILT |
1652 | gold_error(_("%s: ELF file too short"), name.c_str()); |
1653 | return NULL; | |
bae7f79e ILT |
1654 | } |
1655 | if (big_endian) | |
1656 | { | |
193a53d9 | 1657 | #ifdef HAVE_TARGET_32_BIG |
bae7f79e ILT |
1658 | elfcpp::Ehdr<32, true> ehdr(p); |
1659 | return make_elf_sized_object<32, true>(name, input_file, | |
1660 | offset, ehdr); | |
193a53d9 | 1661 | #else |
75f2446e ILT |
1662 | gold_error(_("%s: not configured to support " |
1663 | "32-bit big-endian object"), | |
1664 | name.c_str()); | |
1665 | return NULL; | |
193a53d9 | 1666 | #endif |
bae7f79e ILT |
1667 | } |
1668 | else | |
1669 | { | |
193a53d9 | 1670 | #ifdef HAVE_TARGET_32_LITTLE |
bae7f79e ILT |
1671 | elfcpp::Ehdr<32, false> ehdr(p); |
1672 | return make_elf_sized_object<32, false>(name, input_file, | |
1673 | offset, ehdr); | |
193a53d9 | 1674 | #else |
75f2446e ILT |
1675 | gold_error(_("%s: not configured to support " |
1676 | "32-bit little-endian object"), | |
1677 | name.c_str()); | |
1678 | return NULL; | |
193a53d9 | 1679 | #endif |
bae7f79e ILT |
1680 | } |
1681 | } | |
1682 | else | |
1683 | { | |
1684 | if (bytes < elfcpp::Elf_sizes<32>::ehdr_size) | |
1685 | { | |
75f2446e ILT |
1686 | gold_error(_("%s: ELF file too short"), name.c_str()); |
1687 | return NULL; | |
bae7f79e ILT |
1688 | } |
1689 | if (big_endian) | |
1690 | { | |
193a53d9 | 1691 | #ifdef HAVE_TARGET_64_BIG |
bae7f79e ILT |
1692 | elfcpp::Ehdr<64, true> ehdr(p); |
1693 | return make_elf_sized_object<64, true>(name, input_file, | |
1694 | offset, ehdr); | |
193a53d9 | 1695 | #else |
75f2446e ILT |
1696 | gold_error(_("%s: not configured to support " |
1697 | "64-bit big-endian object"), | |
1698 | name.c_str()); | |
1699 | return NULL; | |
193a53d9 | 1700 | #endif |
bae7f79e ILT |
1701 | } |
1702 | else | |
1703 | { | |
193a53d9 | 1704 | #ifdef HAVE_TARGET_64_LITTLE |
bae7f79e ILT |
1705 | elfcpp::Ehdr<64, false> ehdr(p); |
1706 | return make_elf_sized_object<64, false>(name, input_file, | |
1707 | offset, ehdr); | |
193a53d9 | 1708 | #else |
75f2446e ILT |
1709 | gold_error(_("%s: not configured to support " |
1710 | "64-bit little-endian object"), | |
1711 | name.c_str()); | |
1712 | return NULL; | |
193a53d9 | 1713 | #endif |
bae7f79e ILT |
1714 | } |
1715 | } | |
1716 | } | |
1717 | ||
04bf7072 ILT |
1718 | // Instantiate the templates we need. |
1719 | ||
1720 | #ifdef HAVE_TARGET_32_LITTLE | |
1721 | template | |
1722 | void | |
1723 | Object::read_section_data<32, false>(elfcpp::Elf_file<32, false, Object>*, | |
1724 | Read_symbols_data*); | |
1725 | #endif | |
1726 | ||
1727 | #ifdef HAVE_TARGET_32_BIG | |
1728 | template | |
1729 | void | |
1730 | Object::read_section_data<32, true>(elfcpp::Elf_file<32, true, Object>*, | |
1731 | Read_symbols_data*); | |
1732 | #endif | |
1733 | ||
1734 | #ifdef HAVE_TARGET_64_LITTLE | |
1735 | template | |
1736 | void | |
1737 | Object::read_section_data<64, false>(elfcpp::Elf_file<64, false, Object>*, | |
1738 | Read_symbols_data*); | |
1739 | #endif | |
1740 | ||
1741 | #ifdef HAVE_TARGET_64_BIG | |
1742 | template | |
1743 | void | |
1744 | Object::read_section_data<64, true>(elfcpp::Elf_file<64, true, Object>*, | |
1745 | Read_symbols_data*); | |
1746 | #endif | |
bae7f79e | 1747 | |
193a53d9 | 1748 | #ifdef HAVE_TARGET_32_LITTLE |
bae7f79e | 1749 | template |
f6ce93d6 | 1750 | class Sized_relobj<32, false>; |
193a53d9 | 1751 | #endif |
bae7f79e | 1752 | |
193a53d9 | 1753 | #ifdef HAVE_TARGET_32_BIG |
bae7f79e | 1754 | template |
f6ce93d6 | 1755 | class Sized_relobj<32, true>; |
193a53d9 | 1756 | #endif |
bae7f79e | 1757 | |
193a53d9 | 1758 | #ifdef HAVE_TARGET_64_LITTLE |
bae7f79e | 1759 | template |
f6ce93d6 | 1760 | class Sized_relobj<64, false>; |
193a53d9 | 1761 | #endif |
bae7f79e | 1762 | |
193a53d9 | 1763 | #ifdef HAVE_TARGET_64_BIG |
bae7f79e | 1764 | template |
f6ce93d6 | 1765 | class Sized_relobj<64, true>; |
193a53d9 | 1766 | #endif |
bae7f79e | 1767 | |
193a53d9 | 1768 | #ifdef HAVE_TARGET_32_LITTLE |
92e059d8 ILT |
1769 | template |
1770 | struct Relocate_info<32, false>; | |
193a53d9 | 1771 | #endif |
92e059d8 | 1772 | |
193a53d9 | 1773 | #ifdef HAVE_TARGET_32_BIG |
92e059d8 ILT |
1774 | template |
1775 | struct Relocate_info<32, true>; | |
193a53d9 | 1776 | #endif |
92e059d8 | 1777 | |
193a53d9 | 1778 | #ifdef HAVE_TARGET_64_LITTLE |
92e059d8 ILT |
1779 | template |
1780 | struct Relocate_info<64, false>; | |
193a53d9 | 1781 | #endif |
92e059d8 | 1782 | |
193a53d9 | 1783 | #ifdef HAVE_TARGET_64_BIG |
92e059d8 ILT |
1784 | template |
1785 | struct Relocate_info<64, true>; | |
193a53d9 | 1786 | #endif |
92e059d8 | 1787 | |
bae7f79e | 1788 | } // End namespace gold. |