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[deliverable/binutils-gdb.git] / gold / symtab.cc
CommitLineData
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1// symtab.cc -- the gold symbol table
2
4b95cf5c 3// Copyright (C) 2006-2014 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
04bf7072 25#include <cstring>
14bfc3f5 26#include <stdint.h>
04bf7072 27#include <algorithm>
70e654ba 28#include <set>
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29#include <string>
30#include <utility>
a2b1aa12 31#include "demangle.h"
14bfc3f5 32
6d03d481 33#include "gc.h"
14bfc3f5 34#include "object.h"
70e654ba 35#include "dwarf_reader.h"
dbe717ef 36#include "dynobj.h"
75f65a3e 37#include "output.h"
61ba1cf9 38#include "target.h"
645f8123 39#include "workqueue.h"
14bfc3f5 40#include "symtab.h"
88a4108b 41#include "script.h"
89fc3421 42#include "plugin.h"
cdc29364 43#include "incremental.h"
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44
45namespace gold
46{
47
48// Class Symbol.
49
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50// Initialize fields in Symbol. This initializes everything except u_
51// and source_.
14bfc3f5 52
14bfc3f5 53void
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54Symbol::init_fields(const char* name, const char* version,
55 elfcpp::STT type, elfcpp::STB binding,
56 elfcpp::STV visibility, unsigned char nonvis)
14bfc3f5 57{
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58 this->name_ = name;
59 this->version_ = version;
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60 this->symtab_index_ = 0;
61 this->dynsym_index_ = 0;
0a65a3a7 62 this->got_offsets_.init();
880cd20d 63 this->plt_offset_ = -1U;
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64 this->type_ = type;
65 this->binding_ = binding;
66 this->visibility_ = visibility;
67 this->nonvis_ = nonvis;
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68 this->is_def_ = false;
69 this->is_forwarder_ = false;
aeddab66 70 this->has_alias_ = false;
c06b7b0b 71 this->needs_dynsym_entry_ = false;
008db82e 72 this->in_reg_ = false;
ead1e424 73 this->in_dyn_ = false;
f6ce93d6 74 this->has_warning_ = false;
46fe1623 75 this->is_copied_from_dynobj_ = false;
55a93433 76 this->is_forced_local_ = false;
d491d34e 77 this->is_ordinary_shndx_ = false;
89fc3421 78 this->in_real_elf_ = false;
880cd20d 79 this->is_defined_in_discarded_section_ = false;
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80 this->undef_binding_set_ = false;
81 this->undef_binding_weak_ = false;
5146f448 82 this->is_predefined_ = false;
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83}
84
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85// Return the demangled version of the symbol's name, but only
86// if the --demangle flag was set.
87
88static std::string
2ea97941 89demangle(const char* name)
a2b1aa12 90{
086a1841 91 if (!parameters->options().do_demangle())
2ea97941 92 return name;
ff541f30 93
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94 // cplus_demangle allocates memory for the result it returns,
95 // and returns NULL if the name is already demangled.
2ea97941 96 char* demangled_name = cplus_demangle(name, DMGL_ANSI | DMGL_PARAMS);
a2b1aa12 97 if (demangled_name == NULL)
2ea97941 98 return name;
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99
100 std::string retval(demangled_name);
101 free(demangled_name);
102 return retval;
103}
104
105std::string
106Symbol::demangled_name() const
107{
ff541f30 108 return demangle(this->name());
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109}
110
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111// Initialize the fields in the base class Symbol for SYM in OBJECT.
112
113template<int size, bool big_endian>
114void
2ea97941 115Symbol::init_base_object(const char* name, const char* version, Object* object,
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116 const elfcpp::Sym<size, big_endian>& sym,
117 unsigned int st_shndx, bool is_ordinary)
ead1e424 118{
2ea97941 119 this->init_fields(name, version, sym.get_st_type(), sym.get_st_bind(),
ead1e424 120 sym.get_st_visibility(), sym.get_st_nonvis());
2ea97941 121 this->u_.from_object.object = object;
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122 this->u_.from_object.shndx = st_shndx;
123 this->is_ordinary_shndx_ = is_ordinary;
ead1e424 124 this->source_ = FROM_OBJECT;
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125 this->in_reg_ = !object->is_dynamic();
126 this->in_dyn_ = object->is_dynamic();
127 this->in_real_elf_ = object->pluginobj() == NULL;
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128}
129
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130// Initialize the fields in the base class Symbol for a symbol defined
131// in an Output_data.
132
133void
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134Symbol::init_base_output_data(const char* name, const char* version,
135 Output_data* od, elfcpp::STT type,
136 elfcpp::STB binding, elfcpp::STV visibility,
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137 unsigned char nonvis, bool offset_is_from_end,
138 bool is_predefined)
ead1e424 139{
2ea97941 140 this->init_fields(name, version, type, binding, visibility, nonvis);
ead1e424 141 this->u_.in_output_data.output_data = od;
2ea97941 142 this->u_.in_output_data.offset_is_from_end = offset_is_from_end;
ead1e424 143 this->source_ = IN_OUTPUT_DATA;
008db82e 144 this->in_reg_ = true;
89fc3421 145 this->in_real_elf_ = true;
5146f448 146 this->is_predefined_ = is_predefined;
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147}
148
149// Initialize the fields in the base class Symbol for a symbol defined
150// in an Output_segment.
151
152void
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153Symbol::init_base_output_segment(const char* name, const char* version,
154 Output_segment* os, elfcpp::STT type,
155 elfcpp::STB binding, elfcpp::STV visibility,
156 unsigned char nonvis,
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157 Segment_offset_base offset_base,
158 bool is_predefined)
ead1e424 159{
2ea97941 160 this->init_fields(name, version, type, binding, visibility, nonvis);
ead1e424 161 this->u_.in_output_segment.output_segment = os;
2ea97941 162 this->u_.in_output_segment.offset_base = offset_base;
ead1e424 163 this->source_ = IN_OUTPUT_SEGMENT;
008db82e 164 this->in_reg_ = true;
89fc3421 165 this->in_real_elf_ = true;
5146f448 166 this->is_predefined_ = is_predefined;
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167}
168
169// Initialize the fields in the base class Symbol for a symbol defined
170// as a constant.
171
172void
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173Symbol::init_base_constant(const char* name, const char* version,
174 elfcpp::STT type, elfcpp::STB binding,
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175 elfcpp::STV visibility, unsigned char nonvis,
176 bool is_predefined)
f3e9c5c5 177{
2ea97941 178 this->init_fields(name, version, type, binding, visibility, nonvis);
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179 this->source_ = IS_CONSTANT;
180 this->in_reg_ = true;
89fc3421 181 this->in_real_elf_ = true;
5146f448 182 this->is_predefined_ = is_predefined;
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183}
184
185// Initialize the fields in the base class Symbol for an undefined
186// symbol.
187
188void
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189Symbol::init_base_undefined(const char* name, const char* version,
190 elfcpp::STT type, elfcpp::STB binding,
191 elfcpp::STV visibility, unsigned char nonvis)
ead1e424 192{
2ea97941 193 this->init_fields(name, version, type, binding, visibility, nonvis);
d7ab2a47 194 this->dynsym_index_ = -1U;
f3e9c5c5 195 this->source_ = IS_UNDEFINED;
008db82e 196 this->in_reg_ = true;
89fc3421 197 this->in_real_elf_ = true;
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198}
199
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200// Allocate a common symbol in the base.
201
202void
203Symbol::allocate_base_common(Output_data* od)
204{
205 gold_assert(this->is_common());
206 this->source_ = IN_OUTPUT_DATA;
207 this->u_.in_output_data.output_data = od;
208 this->u_.in_output_data.offset_is_from_end = false;
209}
210
ead1e424 211// Initialize the fields in Sized_symbol for SYM in OBJECT.
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212
213template<int size>
214template<bool big_endian>
215void
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216Sized_symbol<size>::init_object(const char* name, const char* version,
217 Object* object,
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218 const elfcpp::Sym<size, big_endian>& sym,
219 unsigned int st_shndx, bool is_ordinary)
14bfc3f5 220{
2ea97941 221 this->init_base_object(name, version, object, sym, st_shndx, is_ordinary);
14bfc3f5 222 this->value_ = sym.get_st_value();
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223 this->symsize_ = sym.get_st_size();
224}
225
226// Initialize the fields in Sized_symbol for a symbol defined in an
227// Output_data.
228
229template<int size>
230void
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231Sized_symbol<size>::init_output_data(const char* name, const char* version,
232 Output_data* od, Value_type value,
233 Size_type symsize, elfcpp::STT type,
234 elfcpp::STB binding,
235 elfcpp::STV visibility,
236 unsigned char nonvis,
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237 bool offset_is_from_end,
238 bool is_predefined)
ead1e424 239{
2ea97941 240 this->init_base_output_data(name, version, od, type, binding, visibility,
5146f448 241 nonvis, offset_is_from_end, is_predefined);
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242 this->value_ = value;
243 this->symsize_ = symsize;
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244}
245
246// Initialize the fields in Sized_symbol for a symbol defined in an
247// Output_segment.
248
249template<int size>
250void
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251Sized_symbol<size>::init_output_segment(const char* name, const char* version,
252 Output_segment* os, Value_type value,
253 Size_type symsize, elfcpp::STT type,
254 elfcpp::STB binding,
255 elfcpp::STV visibility,
256 unsigned char nonvis,
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257 Segment_offset_base offset_base,
258 bool is_predefined)
ead1e424 259{
2ea97941 260 this->init_base_output_segment(name, version, os, type, binding, visibility,
5146f448 261 nonvis, offset_base, is_predefined);
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262 this->value_ = value;
263 this->symsize_ = symsize;
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264}
265
266// Initialize the fields in Sized_symbol for a symbol defined as a
267// constant.
268
269template<int size>
270void
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271Sized_symbol<size>::init_constant(const char* name, const char* version,
272 Value_type value, Size_type symsize,
273 elfcpp::STT type, elfcpp::STB binding,
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274 elfcpp::STV visibility, unsigned char nonvis,
275 bool is_predefined)
ead1e424 276{
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277 this->init_base_constant(name, version, type, binding, visibility, nonvis,
278 is_predefined);
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279 this->value_ = value;
280 this->symsize_ = symsize;
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281}
282
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283// Initialize the fields in Sized_symbol for an undefined symbol.
284
285template<int size>
286void
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287Sized_symbol<size>::init_undefined(const char* name, const char* version,
288 elfcpp::STT type, elfcpp::STB binding,
289 elfcpp::STV visibility, unsigned char nonvis)
f3e9c5c5 290{
2ea97941 291 this->init_base_undefined(name, version, type, binding, visibility, nonvis);
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292 this->value_ = 0;
293 this->symsize_ = 0;
294}
295
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296// Return an allocated string holding the symbol's name as
297// name@version. This is used for relocatable links.
298
299std::string
300Symbol::versioned_name() const
301{
302 gold_assert(this->version_ != NULL);
303 std::string ret = this->name_;
304 ret.push_back('@');
305 if (this->is_def_)
306 ret.push_back('@');
307 ret += this->version_;
308 return ret;
309}
310
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311// Return true if SHNDX represents a common symbol.
312
313bool
2ea97941 314Symbol::is_common_shndx(unsigned int shndx)
8a5e3e08 315{
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316 return (shndx == elfcpp::SHN_COMMON
317 || shndx == parameters->target().small_common_shndx()
318 || shndx == parameters->target().large_common_shndx());
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319}
320
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321// Allocate a common symbol.
322
323template<int size>
324void
2ea97941 325Sized_symbol<size>::allocate_common(Output_data* od, Value_type value)
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326{
327 this->allocate_base_common(od);
2ea97941 328 this->value_ = value;
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329}
330
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331// The ""'s around str ensure str is a string literal, so sizeof works.
332#define strprefix(var, str) (strncmp(var, str, sizeof("" str "") - 1) == 0)
333
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334// Return true if this symbol should be added to the dynamic symbol
335// table.
336
337inline bool
ce97fa81 338Symbol::should_add_dynsym_entry(Symbol_table* symtab) const
436ca963 339{
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340 // If the symbol is only present on plugin files, the plugin decided we
341 // don't need it.
342 if (!this->in_real_elf())
343 return false;
344
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345 // If the symbol is used by a dynamic relocation, we need to add it.
346 if (this->needs_dynsym_entry())
347 return true;
348
6d03d481
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349 // If this symbol's section is not added, the symbol need not be added.
350 // The section may have been GCed. Note that export_dynamic is being
351 // overridden here. This should not be done for shared objects.
352 if (parameters->options().gc_sections()
353 && !parameters->options().shared()
354 && this->source() == Symbol::FROM_OBJECT
355 && !this->object()->is_dynamic())
356 {
357 Relobj* relobj = static_cast<Relobj*>(this->object());
358 bool is_ordinary;
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359 unsigned int shndx = this->shndx(&is_ordinary);
360 if (is_ordinary && shndx != elfcpp::SHN_UNDEF
ce97fa81
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361 && !relobj->is_section_included(shndx)
362 && !symtab->is_section_folded(relobj, shndx))
6d03d481
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363 return false;
364 }
365
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366 // If the symbol was forced dynamic in a --dynamic-list file
367 // or an --export-dynamic-symbol option, add it.
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368 if (!this->is_from_dynobj()
369 && (parameters->options().in_dynamic_list(this->name())
370 || parameters->options().is_export_dynamic_symbol(this->name())))
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371 {
372 if (!this->is_forced_local())
373 return true;
374 gold_warning(_("Cannot export local symbol '%s'"),
375 this->demangled_name().c_str());
376 return false;
377 }
378
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379 // If the symbol was forced local in a version script, do not add it.
380 if (this->is_forced_local())
381 return false;
382
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383 // If dynamic-list-data was specified, add any STT_OBJECT.
384 if (parameters->options().dynamic_list_data()
385 && !this->is_from_dynobj()
386 && this->type() == elfcpp::STT_OBJECT)
387 return true;
388
389 // If --dynamic-list-cpp-new was specified, add any new/delete symbol.
390 // If --dynamic-list-cpp-typeinfo was specified, add any typeinfo symbols.
391 if ((parameters->options().dynamic_list_cpp_new()
392 || parameters->options().dynamic_list_cpp_typeinfo())
393 && !this->is_from_dynobj())
394 {
395 // TODO(csilvers): We could probably figure out if we're an operator
396 // new/delete or typeinfo without the need to demangle.
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397 char* demangled_name = cplus_demangle(this->name(),
398 DMGL_ANSI | DMGL_PARAMS);
399 if (demangled_name == NULL)
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400 {
401 // Not a C++ symbol, so it can't satisfy these flags
402 }
403 else if (parameters->options().dynamic_list_cpp_new()
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404 && (strprefix(demangled_name, "operator new")
405 || strprefix(demangled_name, "operator delete")))
c82fbeee 406 {
2ea97941 407 free(demangled_name);
c82fbeee
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408 return true;
409 }
410 else if (parameters->options().dynamic_list_cpp_typeinfo()
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411 && (strprefix(demangled_name, "typeinfo name for")
412 || strprefix(demangled_name, "typeinfo for")))
c82fbeee 413 {
2ea97941 414 free(demangled_name);
c82fbeee
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415 return true;
416 }
417 else
2ea97941 418 free(demangled_name);
c82fbeee
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419 }
420
436ca963
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421 // If exporting all symbols or building a shared library,
422 // and the symbol is defined in a regular object and is
423 // externally visible, we need to add it.
8851ecca 424 if ((parameters->options().export_dynamic() || parameters->options().shared())
436ca963 425 && !this->is_from_dynobj()
f3ae1b28 426 && !this->is_undefined()
436ca963
ILT
427 && this->is_externally_visible())
428 return true;
429
430 return false;
431}
432
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433// Return true if the final value of this symbol is known at link
434// time.
435
436bool
437Symbol::final_value_is_known() const
438{
439 // If we are not generating an executable, then no final values are
440 // known, since they will change at runtime.
374ad285
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441 if (parameters->options().output_is_position_independent()
442 || parameters->options().relocatable())
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443 return false;
444
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445 // If the symbol is not from an object file, and is not undefined,
446 // then it is defined, and known.
b3b74ddc 447 if (this->source_ != FROM_OBJECT)
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448 {
449 if (this->source_ != IS_UNDEFINED)
450 return true;
451 }
452 else
453 {
454 // If the symbol is from a dynamic object, then the final value
455 // is not known.
456 if (this->object()->is_dynamic())
457 return false;
b3b74ddc 458
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459 // If the symbol is not undefined (it is defined or common),
460 // then the final value is known.
461 if (!this->is_undefined())
462 return true;
463 }
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464
465 // If the symbol is undefined, then whether the final value is known
466 // depends on whether we are doing a static link. If we are doing a
467 // dynamic link, then the final value could be filled in at runtime.
468 // This could reasonably be the case for a weak undefined symbol.
469 return parameters->doing_static_link();
470}
471
77e65537 472// Return the output section where this symbol is defined.
a445fddf 473
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474Output_section*
475Symbol::output_section() const
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476{
477 switch (this->source_)
478 {
479 case FROM_OBJECT:
77e65537 480 {
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481 unsigned int shndx = this->u_.from_object.shndx;
482 if (shndx != elfcpp::SHN_UNDEF && this->is_ordinary_shndx_)
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483 {
484 gold_assert(!this->u_.from_object.object->is_dynamic());
89fc3421 485 gold_assert(this->u_.from_object.object->pluginobj() == NULL);
77e65537 486 Relobj* relobj = static_cast<Relobj*>(this->u_.from_object.object);
2ea97941 487 return relobj->output_section(shndx);
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488 }
489 return NULL;
490 }
491
a445fddf 492 case IN_OUTPUT_DATA:
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493 return this->u_.in_output_data.output_data->output_section();
494
a445fddf 495 case IN_OUTPUT_SEGMENT:
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496 case IS_CONSTANT:
497 case IS_UNDEFINED:
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498 return NULL;
499
500 default:
501 gold_unreachable();
502 }
503}
504
505// Set the symbol's output section. This is used for symbols defined
506// in scripts. This should only be called after the symbol table has
507// been finalized.
508
509void
510Symbol::set_output_section(Output_section* os)
511{
512 switch (this->source_)
513 {
514 case FROM_OBJECT:
515 case IN_OUTPUT_DATA:
516 gold_assert(this->output_section() == os);
517 break;
f3e9c5c5 518 case IS_CONSTANT:
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519 this->source_ = IN_OUTPUT_DATA;
520 this->u_.in_output_data.output_data = os;
521 this->u_.in_output_data.offset_is_from_end = false;
522 break;
523 case IN_OUTPUT_SEGMENT:
f3e9c5c5 524 case IS_UNDEFINED:
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525 default:
526 gold_unreachable();
527 }
528}
529
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530// Set the symbol's output segment. This is used for pre-defined
531// symbols whose segments aren't known until after layout is done
532// (e.g., __ehdr_start).
533
534void
535Symbol::set_output_segment(Output_segment* os, Segment_offset_base base)
536{
537 gold_assert(this->is_predefined_);
538 this->source_ = IN_OUTPUT_SEGMENT;
539 this->u_.in_output_segment.output_segment = os;
540 this->u_.in_output_segment.offset_base = base;
541}
542
543// Set the symbol to undefined. This is used for pre-defined
544// symbols whose segments aren't known until after layout is done
545// (e.g., __ehdr_start).
546
547void
548Symbol::set_undefined()
549{
550 gold_assert(this->is_predefined_);
551 this->source_ = IS_UNDEFINED;
552 this->is_predefined_ = false;
553}
554
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555// Class Symbol_table.
556
09124467 557Symbol_table::Symbol_table(unsigned int count,
2ea97941 558 const Version_script_info& version_script)
6d013333 559 : saw_undefined_(0), offset_(0), table_(count), namepool_(),
8a5e3e08
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560 forwarders_(), commons_(), tls_commons_(), small_commons_(),
561 large_commons_(), forced_locals_(), warnings_(),
2ea97941 562 version_script_(version_script), gc_(NULL), icf_(NULL)
14bfc3f5 563{
6d013333 564 namepool_.reserve(count);
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ILT
565}
566
567Symbol_table::~Symbol_table()
568{
569}
570
ad8f37d1
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571// The symbol table key equality function. This is called with
572// Stringpool keys.
14bfc3f5 573
ad8f37d1 574inline bool
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575Symbol_table::Symbol_table_eq::operator()(const Symbol_table_key& k1,
576 const Symbol_table_key& k2) const
577{
578 return k1.first == k2.first && k1.second == k2.second;
579}
580
ef15dade 581bool
2ea97941 582Symbol_table::is_section_folded(Object* obj, unsigned int shndx) const
ef15dade 583{
032ce4e9 584 return (parameters->options().icf_enabled()
2ea97941 585 && this->icf_->is_section_folded(obj, shndx));
ef15dade
ST
586}
587
31821be0
CC
588// For symbols that have been listed with a -u or --export-dynamic-symbol
589// option, add them to the work list to avoid gc'ing them.
6d03d481
ST
590
591void
88a4108b 592Symbol_table::gc_mark_undef_symbols(Layout* layout)
6d03d481
ST
593{
594 for (options::String_set::const_iterator p =
595 parameters->options().undefined_begin();
596 p != parameters->options().undefined_end();
597 ++p)
598 {
2ea97941
ILT
599 const char* name = p->c_str();
600 Symbol* sym = this->lookup(name);
ca09d69a 601 gold_assert(sym != NULL);
6d03d481
ST
602 if (sym->source() == Symbol::FROM_OBJECT
603 && !sym->object()->is_dynamic())
604 {
e81fea4d 605 this->gc_mark_symbol(sym);
6d03d481
ST
606 }
607 }
88a4108b 608
31821be0
CC
609 for (options::String_set::const_iterator p =
610 parameters->options().export_dynamic_symbol_begin();
611 p != parameters->options().export_dynamic_symbol_end();
612 ++p)
613 {
614 const char* name = p->c_str();
615 Symbol* sym = this->lookup(name);
1d5dfe78
CC
616 // It's not an error if a symbol named by --export-dynamic-symbol
617 // is undefined.
618 if (sym != NULL
619 && sym->source() == Symbol::FROM_OBJECT
31821be0
CC
620 && !sym->object()->is_dynamic())
621 {
e81fea4d 622 this->gc_mark_symbol(sym);
31821be0
CC
623 }
624 }
625
88a4108b
ILT
626 for (Script_options::referenced_const_iterator p =
627 layout->script_options()->referenced_begin();
628 p != layout->script_options()->referenced_end();
629 ++p)
630 {
631 Symbol* sym = this->lookup(p->c_str());
632 gold_assert(sym != NULL);
633 if (sym->source() == Symbol::FROM_OBJECT
634 && !sym->object()->is_dynamic())
635 {
e81fea4d 636 this->gc_mark_symbol(sym);
88a4108b
ILT
637 }
638 }
6d03d481
ST
639}
640
641void
7257cc92 642Symbol_table::gc_mark_symbol(Symbol* sym)
6d03d481 643{
7257cc92 644 // Add the object and section to the work list.
7257cc92
ST
645 bool is_ordinary;
646 unsigned int shndx = sym->shndx(&is_ordinary);
647 if (is_ordinary && shndx != elfcpp::SHN_UNDEF)
6d03d481 648 {
7257cc92 649 gold_assert(this->gc_!= NULL);
e81fea4d 650 this->gc_->worklist().push(Section_id(sym->object(), shndx));
6d03d481 651 }
e81fea4d 652 parameters->target().gc_mark_symbol(this, sym);
6d03d481
ST
653}
654
655// When doing garbage collection, keep symbols that have been seen in
656// dynamic objects.
657inline void
658Symbol_table::gc_mark_dyn_syms(Symbol* sym)
659{
660 if (sym->in_dyn() && sym->source() == Symbol::FROM_OBJECT
661 && !sym->object()->is_dynamic())
7257cc92 662 this->gc_mark_symbol(sym);
6d03d481
ST
663}
664
dd8670e5 665// Make TO a symbol which forwards to FROM.
14bfc3f5
ILT
666
667void
668Symbol_table::make_forwarder(Symbol* from, Symbol* to)
669{
a3ad94ed
ILT
670 gold_assert(from != to);
671 gold_assert(!from->is_forwarder() && !to->is_forwarder());
14bfc3f5
ILT
672 this->forwarders_[from] = to;
673 from->set_forwarder();
674}
675
61ba1cf9
ILT
676// Resolve the forwards from FROM, returning the real symbol.
677
14bfc3f5 678Symbol*
c06b7b0b 679Symbol_table::resolve_forwards(const Symbol* from) const
14bfc3f5 680{
a3ad94ed 681 gold_assert(from->is_forwarder());
c06b7b0b 682 Unordered_map<const Symbol*, Symbol*>::const_iterator p =
14bfc3f5 683 this->forwarders_.find(from);
a3ad94ed 684 gold_assert(p != this->forwarders_.end());
14bfc3f5
ILT
685 return p->second;
686}
687
61ba1cf9
ILT
688// Look up a symbol by name.
689
690Symbol*
2ea97941 691Symbol_table::lookup(const char* name, const char* version) const
61ba1cf9 692{
f0641a0b 693 Stringpool::Key name_key;
2ea97941
ILT
694 name = this->namepool_.find(name, &name_key);
695 if (name == NULL)
61ba1cf9 696 return NULL;
f0641a0b
ILT
697
698 Stringpool::Key version_key = 0;
2ea97941 699 if (version != NULL)
61ba1cf9 700 {
2ea97941
ILT
701 version = this->namepool_.find(version, &version_key);
702 if (version == NULL)
61ba1cf9
ILT
703 return NULL;
704 }
705
f0641a0b 706 Symbol_table_key key(name_key, version_key);
61ba1cf9
ILT
707 Symbol_table::Symbol_table_type::const_iterator p = this->table_.find(key);
708 if (p == this->table_.end())
709 return NULL;
710 return p->second;
711}
712
14bfc3f5
ILT
713// Resolve a Symbol with another Symbol. This is only used in the
714// unusual case where there are references to both an unversioned
715// symbol and a symbol with a version, and we then discover that that
1564db8d
ILT
716// version is the default version. Because this is unusual, we do
717// this the slow way, by converting back to an ELF symbol.
14bfc3f5 718
1564db8d 719template<int size, bool big_endian>
14bfc3f5 720void
95d14cd3 721Symbol_table::resolve(Sized_symbol<size>* to, const Sized_symbol<size>* from)
14bfc3f5 722{
1564db8d
ILT
723 unsigned char buf[elfcpp::Elf_sizes<size>::sym_size];
724 elfcpp::Sym_write<size, big_endian> esym(buf);
d491d34e 725 // We don't bother to set the st_name or the st_shndx field.
1564db8d
ILT
726 esym.put_st_value(from->value());
727 esym.put_st_size(from->symsize());
728 esym.put_st_info(from->binding(), from->type());
ead1e424 729 esym.put_st_other(from->visibility(), from->nonvis());
d491d34e 730 bool is_ordinary;
2ea97941
ILT
731 unsigned int shndx = from->shndx(&is_ordinary);
732 this->resolve(to, esym.sym(), shndx, is_ordinary, shndx, from->object(),
95d14cd3 733 from->version());
1ebd95fd
ILT
734 if (from->in_reg())
735 to->set_in_reg();
736 if (from->in_dyn())
737 to->set_in_dyn();
6d03d481
ST
738 if (parameters->options().gc_sections())
739 this->gc_mark_dyn_syms(to);
14bfc3f5
ILT
740}
741
0602e05a
ILT
742// Record that a symbol is forced to be local by a version script or
743// by visibility.
55a93433
ILT
744
745void
746Symbol_table::force_local(Symbol* sym)
747{
748 if (!sym->is_defined() && !sym->is_common())
749 return;
750 if (sym->is_forced_local())
751 {
752 // We already got this one.
753 return;
754 }
755 sym->set_is_forced_local();
756 this->forced_locals_.push_back(sym);
757}
758
0864d551
ILT
759// Adjust NAME for wrapping, and update *NAME_KEY if necessary. This
760// is only called for undefined symbols, when at least one --wrap
761// option was used.
762
763const char*
2ea97941 764Symbol_table::wrap_symbol(const char* name, Stringpool::Key* name_key)
0864d551
ILT
765{
766 // For some targets, we need to ignore a specific character when
767 // wrapping, and add it back later.
768 char prefix = '\0';
2ea97941 769 if (name[0] == parameters->target().wrap_char())
0864d551 770 {
2ea97941
ILT
771 prefix = name[0];
772 ++name;
0864d551
ILT
773 }
774
2ea97941 775 if (parameters->options().is_wrap(name))
0864d551
ILT
776 {
777 // Turn NAME into __wrap_NAME.
778 std::string s;
779 if (prefix != '\0')
780 s += prefix;
781 s += "__wrap_";
2ea97941 782 s += name;
0864d551
ILT
783
784 // This will give us both the old and new name in NAMEPOOL_, but
785 // that is OK. Only the versions we need will wind up in the
786 // real string table in the output file.
787 return this->namepool_.add(s.c_str(), true, name_key);
788 }
789
790 const char* const real_prefix = "__real_";
791 const size_t real_prefix_length = strlen(real_prefix);
2ea97941
ILT
792 if (strncmp(name, real_prefix, real_prefix_length) == 0
793 && parameters->options().is_wrap(name + real_prefix_length))
0864d551
ILT
794 {
795 // Turn __real_NAME into NAME.
796 std::string s;
797 if (prefix != '\0')
798 s += prefix;
2ea97941 799 s += name + real_prefix_length;
0864d551
ILT
800 return this->namepool_.add(s.c_str(), true, name_key);
801 }
802
2ea97941 803 return name;
0864d551
ILT
804}
805
8c500701
ILT
806// This is called when we see a symbol NAME/VERSION, and the symbol
807// already exists in the symbol table, and VERSION is marked as being
808// the default version. SYM is the NAME/VERSION symbol we just added.
809// DEFAULT_IS_NEW is true if this is the first time we have seen the
810// symbol NAME/NULL. PDEF points to the entry for NAME/NULL.
811
812template<int size, bool big_endian>
813void
814Symbol_table::define_default_version(Sized_symbol<size>* sym,
815 bool default_is_new,
816 Symbol_table_type::iterator pdef)
817{
818 if (default_is_new)
819 {
820 // This is the first time we have seen NAME/NULL. Make
821 // NAME/NULL point to NAME/VERSION, and mark SYM as the default
822 // version.
823 pdef->second = sym;
824 sym->set_is_default();
825 }
826 else if (pdef->second == sym)
827 {
828 // NAME/NULL already points to NAME/VERSION. Don't mark the
829 // symbol as the default if it is not already the default.
830 }
831 else
832 {
833 // This is the unfortunate case where we already have entries
834 // for both NAME/VERSION and NAME/NULL. We now see a symbol
835 // NAME/VERSION where VERSION is the default version. We have
836 // already resolved this new symbol with the existing
837 // NAME/VERSION symbol.
838
839 // It's possible that NAME/NULL and NAME/VERSION are both
840 // defined in regular objects. This can only happen if one
841 // object file defines foo and another defines foo@@ver. This
842 // is somewhat obscure, but we call it a multiple definition
843 // error.
844
845 // It's possible that NAME/NULL actually has a version, in which
846 // case it won't be the same as VERSION. This happens with
847 // ver_test_7.so in the testsuite for the symbol t2_2. We see
848 // t2_2@@VER2, so we define both t2_2/VER2 and t2_2/NULL. We
849 // then see an unadorned t2_2 in an object file and give it
850 // version VER1 from the version script. This looks like a
851 // default definition for VER1, so it looks like we should merge
852 // t2_2/NULL with t2_2/VER1. That doesn't make sense, but it's
853 // not obvious that this is an error, either. So we just punt.
854
855 // If one of the symbols has non-default visibility, and the
856 // other is defined in a shared object, then they are different
857 // symbols.
858
859 // Otherwise, we just resolve the symbols as though they were
860 // the same.
861
862 if (pdef->second->version() != NULL)
863 gold_assert(pdef->second->version() != sym->version());
864 else if (sym->visibility() != elfcpp::STV_DEFAULT
865 && pdef->second->is_from_dynobj())
866 ;
867 else if (pdef->second->visibility() != elfcpp::STV_DEFAULT
868 && sym->is_from_dynobj())
869 ;
870 else
871 {
872 const Sized_symbol<size>* symdef;
873 symdef = this->get_sized_symbol<size>(pdef->second);
874 Symbol_table::resolve<size, big_endian>(sym, symdef);
875 this->make_forwarder(pdef->second, sym);
876 pdef->second = sym;
877 sym->set_is_default();
878 }
879 }
880}
881
14bfc3f5
ILT
882// Add one symbol from OBJECT to the symbol table. NAME is symbol
883// name and VERSION is the version; both are canonicalized. DEF is
d491d34e
ILT
884// whether this is the default version. ST_SHNDX is the symbol's
885// section index; IS_ORDINARY is whether this is a normal section
886// rather than a special code.
14bfc3f5 887
8781f709
ILT
888// If IS_DEFAULT_VERSION is true, then this is the definition of a
889// default version of a symbol. That means that any lookup of
890// NAME/NULL and any lookup of NAME/VERSION should always return the
891// same symbol. This is obvious for references, but in particular we
892// want to do this for definitions: overriding NAME/NULL should also
893// override NAME/VERSION. If we don't do that, it would be very hard
894// to override functions in a shared library which uses versioning.
14bfc3f5
ILT
895
896// We implement this by simply making both entries in the hash table
897// point to the same Symbol structure. That is easy enough if this is
898// the first time we see NAME/NULL or NAME/VERSION, but it is possible
899// that we have seen both already, in which case they will both have
900// independent entries in the symbol table. We can't simply change
901// the symbol table entry, because we have pointers to the entries
902// attached to the object files. So we mark the entry attached to the
903// object file as a forwarder, and record it in the forwarders_ map.
904// Note that entries in the hash table will never be marked as
905// forwarders.
70e654ba 906//
d491d34e
ILT
907// ORIG_ST_SHNDX and ST_SHNDX are almost always the same.
908// ORIG_ST_SHNDX is the section index in the input file, or SHN_UNDEF
909// for a special section code. ST_SHNDX may be modified if the symbol
910// is defined in a section being discarded.
14bfc3f5
ILT
911
912template<int size, bool big_endian>
aeddab66 913Sized_symbol<size>*
2ea97941 914Symbol_table::add_from_object(Object* object,
ca09d69a 915 const char* name,
f0641a0b 916 Stringpool::Key name_key,
ca09d69a 917 const char* version,
f0641a0b 918 Stringpool::Key version_key,
8781f709 919 bool is_default_version,
70e654ba 920 const elfcpp::Sym<size, big_endian>& sym,
d491d34e
ILT
921 unsigned int st_shndx,
922 bool is_ordinary,
923 unsigned int orig_st_shndx)
14bfc3f5 924{
c5818ff1 925 // Print a message if this symbol is being traced.
2ea97941 926 if (parameters->options().is_trace_symbol(name))
c5818ff1 927 {
d491d34e 928 if (orig_st_shndx == elfcpp::SHN_UNDEF)
2ea97941 929 gold_info(_("%s: reference to %s"), object->name().c_str(), name);
c5818ff1 930 else
2ea97941 931 gold_info(_("%s: definition of %s"), object->name().c_str(), name);
c5818ff1
CC
932 }
933
0864d551
ILT
934 // For an undefined symbol, we may need to adjust the name using
935 // --wrap.
d491d34e 936 if (orig_st_shndx == elfcpp::SHN_UNDEF
c5818ff1 937 && parameters->options().any_wrap())
0864d551 938 {
2ea97941
ILT
939 const char* wrap_name = this->wrap_symbol(name, &name_key);
940 if (wrap_name != name)
0864d551
ILT
941 {
942 // If we see a reference to malloc with version GLIBC_2.0,
943 // and we turn it into a reference to __wrap_malloc, then we
944 // discard the version number. Otherwise the user would be
945 // required to specify the correct version for
946 // __wrap_malloc.
2ea97941 947 version = NULL;
0864d551 948 version_key = 0;
2ea97941 949 name = wrap_name;
0864d551
ILT
950 }
951 }
952
14bfc3f5
ILT
953 Symbol* const snull = NULL;
954 std::pair<typename Symbol_table_type::iterator, bool> ins =
f0641a0b
ILT
955 this->table_.insert(std::make_pair(std::make_pair(name_key, version_key),
956 snull));
14bfc3f5 957
8781f709 958 std::pair<typename Symbol_table_type::iterator, bool> insdefault =
14bfc3f5 959 std::make_pair(this->table_.end(), false);
8781f709 960 if (is_default_version)
14bfc3f5 961 {
f0641a0b 962 const Stringpool::Key vnull_key = 0;
8781f709
ILT
963 insdefault = this->table_.insert(std::make_pair(std::make_pair(name_key,
964 vnull_key),
965 snull));
14bfc3f5
ILT
966 }
967
968 // ins.first: an iterator, which is a pointer to a pair.
969 // ins.first->first: the key (a pair of name and version).
970 // ins.first->second: the value (Symbol*).
971 // ins.second: true if new entry was inserted, false if not.
972
1564db8d 973 Sized_symbol<size>* ret;
ead1e424
ILT
974 bool was_undefined;
975 bool was_common;
14bfc3f5
ILT
976 if (!ins.second)
977 {
978 // We already have an entry for NAME/VERSION.
7d1a9ebb 979 ret = this->get_sized_symbol<size>(ins.first->second);
a3ad94ed 980 gold_assert(ret != NULL);
ead1e424
ILT
981
982 was_undefined = ret->is_undefined();
983 was_common = ret->is_common();
984
2ea97941
ILT
985 this->resolve(ret, sym, st_shndx, is_ordinary, orig_st_shndx, object,
986 version);
6d03d481
ST
987 if (parameters->options().gc_sections())
988 this->gc_mark_dyn_syms(ret);
14bfc3f5 989
8781f709
ILT
990 if (is_default_version)
991 this->define_default_version<size, big_endian>(ret, insdefault.second,
992 insdefault.first);
14bfc3f5
ILT
993 }
994 else
995 {
996 // This is the first time we have seen NAME/VERSION.
a3ad94ed 997 gold_assert(ins.first->second == NULL);
ead1e424 998
8781f709 999 if (is_default_version && !insdefault.second)
14bfc3f5 1000 {
14b31740
ILT
1001 // We already have an entry for NAME/NULL. If we override
1002 // it, then change it to NAME/VERSION.
8781f709 1003 ret = this->get_sized_symbol<size>(insdefault.first->second);
18e6b24e
ILT
1004
1005 was_undefined = ret->is_undefined();
1006 was_common = ret->is_common();
1007
2ea97941
ILT
1008 this->resolve(ret, sym, st_shndx, is_ordinary, orig_st_shndx, object,
1009 version);
6d03d481
ST
1010 if (parameters->options().gc_sections())
1011 this->gc_mark_dyn_syms(ret);
14bfc3f5
ILT
1012 ins.first->second = ret;
1013 }
1014 else
1015 {
18e6b24e
ILT
1016 was_undefined = false;
1017 was_common = false;
1018
f6ce93d6 1019 Sized_target<size, big_endian>* target =
029ba973 1020 parameters->sized_target<size, big_endian>();
1564db8d
ILT
1021 if (!target->has_make_symbol())
1022 ret = new Sized_symbol<size>();
1023 else
14bfc3f5 1024 {
1564db8d
ILT
1025 ret = target->make_symbol();
1026 if (ret == NULL)
14bfc3f5
ILT
1027 {
1028 // This means that we don't want a symbol table
1029 // entry after all.
8781f709 1030 if (!is_default_version)
14bfc3f5
ILT
1031 this->table_.erase(ins.first);
1032 else
1033 {
8781f709
ILT
1034 this->table_.erase(insdefault.first);
1035 // Inserting INSDEFAULT invalidated INS.
f0641a0b
ILT
1036 this->table_.erase(std::make_pair(name_key,
1037 version_key));
14bfc3f5
ILT
1038 }
1039 return NULL;
1040 }
1041 }
14bfc3f5 1042
2ea97941 1043 ret->init_object(name, version, object, sym, st_shndx, is_ordinary);
1564db8d 1044
14bfc3f5 1045 ins.first->second = ret;
8781f709 1046 if (is_default_version)
14bfc3f5
ILT
1047 {
1048 // This is the first time we have seen NAME/NULL. Point
1049 // it at the new entry for NAME/VERSION.
8781f709
ILT
1050 gold_assert(insdefault.second);
1051 insdefault.first->second = ret;
14bfc3f5
ILT
1052 }
1053 }
8c500701 1054
8781f709 1055 if (is_default_version)
8c500701 1056 ret->set_is_default();
14bfc3f5
ILT
1057 }
1058
ead1e424
ILT
1059 // Record every time we see a new undefined symbol, to speed up
1060 // archive groups.
1061 if (!was_undefined && ret->is_undefined())
0f3b89d8
ILT
1062 {
1063 ++this->saw_undefined_;
1064 if (parameters->options().has_plugins())
1065 parameters->options().plugins()->new_undefined_symbol(ret);
1066 }
ead1e424
ILT
1067
1068 // Keep track of common symbols, to speed up common symbol
1069 // allocation.
1070 if (!was_common && ret->is_common())
155a0dd7 1071 {
8a5e3e08 1072 if (ret->type() == elfcpp::STT_TLS)
155a0dd7 1073 this->tls_commons_.push_back(ret);
8a5e3e08
ILT
1074 else if (!is_ordinary
1075 && st_shndx == parameters->target().small_common_shndx())
1076 this->small_commons_.push_back(ret);
1077 else if (!is_ordinary
1078 && st_shndx == parameters->target().large_common_shndx())
1079 this->large_commons_.push_back(ret);
1080 else
1081 this->commons_.push_back(ret);
155a0dd7 1082 }
ead1e424 1083
0602e05a
ILT
1084 // If we're not doing a relocatable link, then any symbol with
1085 // hidden or internal visibility is local.
1086 if ((ret->visibility() == elfcpp::STV_HIDDEN
1087 || ret->visibility() == elfcpp::STV_INTERNAL)
1088 && (ret->binding() == elfcpp::STB_GLOBAL
adcf2816 1089 || ret->binding() == elfcpp::STB_GNU_UNIQUE
0602e05a
ILT
1090 || ret->binding() == elfcpp::STB_WEAK)
1091 && !parameters->options().relocatable())
1092 this->force_local(ret);
1093
14bfc3f5
ILT
1094 return ret;
1095}
1096
f6ce93d6 1097// Add all the symbols in a relocatable object to the hash table.
14bfc3f5
ILT
1098
1099template<int size, bool big_endian>
1100void
dbe717ef 1101Symbol_table::add_from_relobj(
6fa2a40b 1102 Sized_relobj_file<size, big_endian>* relobj,
f6ce93d6 1103 const unsigned char* syms,
14bfc3f5 1104 size_t count,
d491d34e 1105 size_t symndx_offset,
14bfc3f5
ILT
1106 const char* sym_names,
1107 size_t sym_name_size,
6fa2a40b 1108 typename Sized_relobj_file<size, big_endian>::Symbols* sympointers,
ca09d69a 1109 size_t* defined)
14bfc3f5 1110{
92de84a6
ILT
1111 *defined = 0;
1112
8851ecca 1113 gold_assert(size == parameters->target().get_size());
14bfc3f5 1114
a783673b
ILT
1115 const int sym_size = elfcpp::Elf_sizes<size>::sym_size;
1116
88dd47ac
ILT
1117 const bool just_symbols = relobj->just_symbols();
1118
f6ce93d6 1119 const unsigned char* p = syms;
a783673b 1120 for (size_t i = 0; i < count; ++i, p += sym_size)
14bfc3f5 1121 {
92de84a6
ILT
1122 (*sympointers)[i] = NULL;
1123
14bfc3f5
ILT
1124 elfcpp::Sym<size, big_endian> sym(p);
1125
d491d34e 1126 unsigned int st_name = sym.get_st_name();
14bfc3f5
ILT
1127 if (st_name >= sym_name_size)
1128 {
75f2446e
ILT
1129 relobj->error(_("bad global symbol name offset %u at %zu"),
1130 st_name, i);
1131 continue;
14bfc3f5
ILT
1132 }
1133
2ea97941 1134 const char* name = sym_names + st_name;
dbe717ef 1135
d491d34e
ILT
1136 bool is_ordinary;
1137 unsigned int st_shndx = relobj->adjust_sym_shndx(i + symndx_offset,
1138 sym.get_st_shndx(),
1139 &is_ordinary);
1140 unsigned int orig_st_shndx = st_shndx;
1141 if (!is_ordinary)
1142 orig_st_shndx = elfcpp::SHN_UNDEF;
1143
92de84a6
ILT
1144 if (st_shndx != elfcpp::SHN_UNDEF)
1145 ++*defined;
1146
a783673b
ILT
1147 // A symbol defined in a section which we are not including must
1148 // be treated as an undefined symbol.
880cd20d 1149 bool is_defined_in_discarded_section = false;
a783673b 1150 if (st_shndx != elfcpp::SHN_UNDEF
d491d34e 1151 && is_ordinary
ce97fa81
ST
1152 && !relobj->is_section_included(st_shndx)
1153 && !this->is_section_folded(relobj, st_shndx))
880cd20d
ILT
1154 {
1155 st_shndx = elfcpp::SHN_UNDEF;
1156 is_defined_in_discarded_section = true;
1157 }
a783673b 1158
14bfc3f5
ILT
1159 // In an object file, an '@' in the name separates the symbol
1160 // name from the version name. If there are two '@' characters,
1161 // this is the default version.
2ea97941 1162 const char* ver = strchr(name, '@');
057ead22 1163 Stringpool::Key ver_key = 0;
09124467 1164 int namelen = 0;
8781f709
ILT
1165 // IS_DEFAULT_VERSION: is the version default?
1166 // IS_FORCED_LOCAL: is the symbol forced local?
1167 bool is_default_version = false;
1168 bool is_forced_local = false;
09124467 1169
a7dac153
CC
1170 // FIXME: For incremental links, we don't store version information,
1171 // so we need to ignore version symbols for now.
1172 if (parameters->incremental_update() && ver != NULL)
1173 {
1174 namelen = ver - name;
1175 ver = NULL;
1176 }
1177
09124467
ILT
1178 if (ver != NULL)
1179 {
1180 // The symbol name is of the form foo@VERSION or foo@@VERSION
2ea97941 1181 namelen = ver - name;
09124467
ILT
1182 ++ver;
1183 if (*ver == '@')
1184 {
8781f709 1185 is_default_version = true;
09124467
ILT
1186 ++ver;
1187 }
057ead22 1188 ver = this->namepool_.add(ver, true, &ver_key);
09124467 1189 }
5871526f
ILT
1190 // We don't want to assign a version to an undefined symbol,
1191 // even if it is listed in the version script. FIXME: What
1192 // about a common symbol?
057ead22
ILT
1193 else
1194 {
2ea97941 1195 namelen = strlen(name);
057ead22
ILT
1196 if (!this->version_script_.empty()
1197 && st_shndx != elfcpp::SHN_UNDEF)
1198 {
1199 // The symbol name did not have a version, but the
1200 // version script may assign a version anyway.
2ea97941 1201 std::string version;
98e090bd
ILT
1202 bool is_global;
1203 if (this->version_script_.get_symbol_version(name, &version,
1204 &is_global))
057ead22 1205 {
98e090bd
ILT
1206 if (!is_global)
1207 is_forced_local = true;
1208 else if (!version.empty())
057ead22 1209 {
2ea97941
ILT
1210 ver = this->namepool_.add_with_length(version.c_str(),
1211 version.length(),
057ead22
ILT
1212 true,
1213 &ver_key);
8781f709 1214 is_default_version = true;
057ead22
ILT
1215 }
1216 }
057ead22
ILT
1217 }
1218 }
14bfc3f5 1219
d491d34e
ILT
1220 elfcpp::Sym<size, big_endian>* psym = &sym;
1221 unsigned char symbuf[sym_size];
1222 elfcpp::Sym<size, big_endian> sym2(symbuf);
88dd47ac
ILT
1223 if (just_symbols)
1224 {
d491d34e 1225 memcpy(symbuf, p, sym_size);
88dd47ac 1226 elfcpp::Sym_write<size, big_endian> sw(symbuf);
9590bf25
CC
1227 if (orig_st_shndx != elfcpp::SHN_UNDEF
1228 && is_ordinary
1229 && relobj->e_type() == elfcpp::ET_REL)
88dd47ac 1230 {
9590bf25
CC
1231 // Symbol values in relocatable object files are section
1232 // relative. This is normally what we want, but since here
1233 // we are converting the symbol to absolute we need to add
1234 // the section address. The section address in an object
88dd47ac
ILT
1235 // file is normally zero, but people can use a linker
1236 // script to change it.
d491d34e
ILT
1237 sw.put_st_value(sym.get_st_value()
1238 + relobj->section_address(orig_st_shndx));
88dd47ac 1239 }
d491d34e
ILT
1240 st_shndx = elfcpp::SHN_ABS;
1241 is_ordinary = false;
88dd47ac
ILT
1242 psym = &sym2;
1243 }
1244
65514900 1245 // Fix up visibility if object has no-export set.
1c74fab0
ILT
1246 if (relobj->no_export()
1247 && (orig_st_shndx != elfcpp::SHN_UNDEF || !is_ordinary))
65514900
CC
1248 {
1249 // We may have copied symbol already above.
1250 if (psym != &sym2)
1251 {
1252 memcpy(symbuf, p, sym_size);
1253 psym = &sym2;
1254 }
1255
1256 elfcpp::STV visibility = sym2.get_st_visibility();
1257 if (visibility == elfcpp::STV_DEFAULT
1258 || visibility == elfcpp::STV_PROTECTED)
1259 {
1260 elfcpp::Sym_write<size, big_endian> sw(symbuf);
1261 unsigned char nonvis = sym2.get_st_nonvis();
1262 sw.put_st_other(elfcpp::STV_HIDDEN, nonvis);
1263 }
1264 }
1265
057ead22 1266 Stringpool::Key name_key;
2ea97941 1267 name = this->namepool_.add_with_length(name, namelen, true,
057ead22
ILT
1268 &name_key);
1269
aeddab66 1270 Sized_symbol<size>* res;
2ea97941 1271 res = this->add_from_object(relobj, name, name_key, ver, ver_key,
8781f709
ILT
1272 is_default_version, *psym, st_shndx,
1273 is_ordinary, orig_st_shndx);
6d03d481 1274
804eb480
ST
1275 if (is_forced_local)
1276 this->force_local(res);
1277
7257cc92
ST
1278 // Do not treat this symbol as garbage if this symbol will be
1279 // exported to the dynamic symbol table. This is true when
1280 // building a shared library or using --export-dynamic and
1281 // the symbol is externally visible.
1282 if (parameters->options().gc_sections()
1283 && res->is_externally_visible()
1284 && !res->is_from_dynobj()
1285 && (parameters->options().shared()
fd834e57
CC
1286 || parameters->options().export_dynamic()
1287 || parameters->options().in_dynamic_list(res->name())))
7257cc92 1288 this->gc_mark_symbol(res);
f0641a0b 1289
880cd20d
ILT
1290 if (is_defined_in_discarded_section)
1291 res->set_is_defined_in_discarded_section();
1292
730cdc88 1293 (*sympointers)[i] = res;
14bfc3f5
ILT
1294 }
1295}
1296
89fc3421
CC
1297// Add a symbol from a plugin-claimed file.
1298
1299template<int size, bool big_endian>
1300Symbol*
1301Symbol_table::add_from_pluginobj(
1302 Sized_pluginobj<size, big_endian>* obj,
2ea97941 1303 const char* name,
89fc3421
CC
1304 const char* ver,
1305 elfcpp::Sym<size, big_endian>* sym)
1306{
1307 unsigned int st_shndx = sym->get_st_shndx();
24998053 1308 bool is_ordinary = st_shndx < elfcpp::SHN_LORESERVE;
89fc3421
CC
1309
1310 Stringpool::Key ver_key = 0;
8781f709
ILT
1311 bool is_default_version = false;
1312 bool is_forced_local = false;
89fc3421
CC
1313
1314 if (ver != NULL)
1315 {
1316 ver = this->namepool_.add(ver, true, &ver_key);
1317 }
1318 // We don't want to assign a version to an undefined symbol,
1319 // even if it is listed in the version script. FIXME: What
1320 // about a common symbol?
1321 else
1322 {
1323 if (!this->version_script_.empty()
1324 && st_shndx != elfcpp::SHN_UNDEF)
1325 {
1326 // The symbol name did not have a version, but the
1327 // version script may assign a version anyway.
2ea97941 1328 std::string version;
98e090bd
ILT
1329 bool is_global;
1330 if (this->version_script_.get_symbol_version(name, &version,
1331 &is_global))
89fc3421 1332 {
98e090bd
ILT
1333 if (!is_global)
1334 is_forced_local = true;
1335 else if (!version.empty())
89fc3421 1336 {
2ea97941
ILT
1337 ver = this->namepool_.add_with_length(version.c_str(),
1338 version.length(),
89fc3421
CC
1339 true,
1340 &ver_key);
8781f709 1341 is_default_version = true;
89fc3421
CC
1342 }
1343 }
89fc3421
CC
1344 }
1345 }
1346
1347 Stringpool::Key name_key;
2ea97941 1348 name = this->namepool_.add(name, true, &name_key);
89fc3421
CC
1349
1350 Sized_symbol<size>* res;
2ea97941 1351 res = this->add_from_object(obj, name, name_key, ver, ver_key,
8781f709
ILT
1352 is_default_version, *sym, st_shndx,
1353 is_ordinary, st_shndx);
89fc3421 1354
8781f709 1355 if (is_forced_local)
0602e05a 1356 this->force_local(res);
89fc3421
CC
1357
1358 return res;
1359}
1360
dbe717ef
ILT
1361// Add all the symbols in a dynamic object to the hash table.
1362
1363template<int size, bool big_endian>
1364void
1365Symbol_table::add_from_dynobj(
1366 Sized_dynobj<size, big_endian>* dynobj,
1367 const unsigned char* syms,
1368 size_t count,
1369 const char* sym_names,
1370 size_t sym_name_size,
1371 const unsigned char* versym,
1372 size_t versym_size,
92de84a6 1373 const std::vector<const char*>* version_map,
6fa2a40b 1374 typename Sized_relobj_file<size, big_endian>::Symbols* sympointers,
92de84a6 1375 size_t* defined)
dbe717ef 1376{
92de84a6
ILT
1377 *defined = 0;
1378
8851ecca 1379 gold_assert(size == parameters->target().get_size());
dbe717ef 1380
88dd47ac
ILT
1381 if (dynobj->just_symbols())
1382 {
1383 gold_error(_("--just-symbols does not make sense with a shared object"));
1384 return;
1385 }
1386
a7dac153
CC
1387 // FIXME: For incremental links, we don't store version information,
1388 // so we need to ignore version symbols for now.
1389 if (parameters->incremental_update())
1390 versym = NULL;
1391
dbe717ef
ILT
1392 if (versym != NULL && versym_size / 2 < count)
1393 {
75f2446e
ILT
1394 dynobj->error(_("too few symbol versions"));
1395 return;
dbe717ef
ILT
1396 }
1397
1398 const int sym_size = elfcpp::Elf_sizes<size>::sym_size;
1399
aeddab66
ILT
1400 // We keep a list of all STT_OBJECT symbols, so that we can resolve
1401 // weak aliases. This is necessary because if the dynamic object
1402 // provides the same variable under two names, one of which is a
1403 // weak definition, and the regular object refers to the weak
1404 // definition, we have to put both the weak definition and the
1405 // strong definition into the dynamic symbol table. Given a weak
1406 // definition, the only way that we can find the corresponding
1407 // strong definition, if any, is to search the symbol table.
1408 std::vector<Sized_symbol<size>*> object_symbols;
1409
dbe717ef
ILT
1410 const unsigned char* p = syms;
1411 const unsigned char* vs = versym;
1412 for (size_t i = 0; i < count; ++i, p += sym_size, vs += 2)
1413 {
1414 elfcpp::Sym<size, big_endian> sym(p);
1415
92de84a6
ILT
1416 if (sympointers != NULL)
1417 (*sympointers)[i] = NULL;
1418
65778909
ILT
1419 // Ignore symbols with local binding or that have
1420 // internal or hidden visibility.
1421 if (sym.get_st_bind() == elfcpp::STB_LOCAL
1422 || sym.get_st_visibility() == elfcpp::STV_INTERNAL
1423 || sym.get_st_visibility() == elfcpp::STV_HIDDEN)
dbe717ef
ILT
1424 continue;
1425
8bdcdf2c
ILT
1426 // A protected symbol in a shared library must be treated as a
1427 // normal symbol when viewed from outside the shared library.
1428 // Implement this by overriding the visibility here.
1429 elfcpp::Sym<size, big_endian>* psym = &sym;
1430 unsigned char symbuf[sym_size];
1431 elfcpp::Sym<size, big_endian> sym2(symbuf);
1432 if (sym.get_st_visibility() == elfcpp::STV_PROTECTED)
1433 {
1434 memcpy(symbuf, p, sym_size);
1435 elfcpp::Sym_write<size, big_endian> sw(symbuf);
1436 sw.put_st_other(elfcpp::STV_DEFAULT, sym.get_st_nonvis());
1437 psym = &sym2;
1438 }
1439
1440 unsigned int st_name = psym->get_st_name();
dbe717ef
ILT
1441 if (st_name >= sym_name_size)
1442 {
75f2446e
ILT
1443 dynobj->error(_("bad symbol name offset %u at %zu"),
1444 st_name, i);
1445 continue;
dbe717ef
ILT
1446 }
1447
2ea97941 1448 const char* name = sym_names + st_name;
dbe717ef 1449
d491d34e 1450 bool is_ordinary;
8bdcdf2c 1451 unsigned int st_shndx = dynobj->adjust_sym_shndx(i, psym->get_st_shndx(),
d491d34e
ILT
1452 &is_ordinary);
1453
92de84a6
ILT
1454 if (st_shndx != elfcpp::SHN_UNDEF)
1455 ++*defined;
1456
aeddab66
ILT
1457 Sized_symbol<size>* res;
1458
dbe717ef
ILT
1459 if (versym == NULL)
1460 {
1461 Stringpool::Key name_key;
2ea97941
ILT
1462 name = this->namepool_.add(name, true, &name_key);
1463 res = this->add_from_object(dynobj, name, name_key, NULL, 0,
8bdcdf2c 1464 false, *psym, st_shndx, is_ordinary,
d491d34e 1465 st_shndx);
dbe717ef 1466 }
aeddab66
ILT
1467 else
1468 {
1469 // Read the version information.
dbe717ef 1470
aeddab66 1471 unsigned int v = elfcpp::Swap<16, big_endian>::readval(vs);
dbe717ef 1472
aeddab66
ILT
1473 bool hidden = (v & elfcpp::VERSYM_HIDDEN) != 0;
1474 v &= elfcpp::VERSYM_VERSION;
dbe717ef 1475
aeddab66
ILT
1476 // The Sun documentation says that V can be VER_NDX_LOCAL,
1477 // or VER_NDX_GLOBAL, or a version index. The meaning of
1478 // VER_NDX_LOCAL is defined as "Symbol has local scope."
1479 // The old GNU linker will happily generate VER_NDX_LOCAL
1480 // for an undefined symbol. I don't know what the Sun
1481 // linker will generate.
dbe717ef 1482
aeddab66 1483 if (v == static_cast<unsigned int>(elfcpp::VER_NDX_LOCAL)
d491d34e 1484 && st_shndx != elfcpp::SHN_UNDEF)
aeddab66
ILT
1485 {
1486 // This symbol should not be visible outside the object.
1487 continue;
1488 }
64707334 1489
aeddab66
ILT
1490 // At this point we are definitely going to add this symbol.
1491 Stringpool::Key name_key;
2ea97941 1492 name = this->namepool_.add(name, true, &name_key);
dbe717ef 1493
aeddab66
ILT
1494 if (v == static_cast<unsigned int>(elfcpp::VER_NDX_LOCAL)
1495 || v == static_cast<unsigned int>(elfcpp::VER_NDX_GLOBAL))
1496 {
1497 // This symbol does not have a version.
2ea97941 1498 res = this->add_from_object(dynobj, name, name_key, NULL, 0,
8bdcdf2c 1499 false, *psym, st_shndx, is_ordinary,
d491d34e 1500 st_shndx);
aeddab66
ILT
1501 }
1502 else
1503 {
1504 if (v >= version_map->size())
1505 {
1506 dynobj->error(_("versym for symbol %zu out of range: %u"),
1507 i, v);
1508 continue;
1509 }
dbe717ef 1510
2ea97941
ILT
1511 const char* version = (*version_map)[v];
1512 if (version == NULL)
aeddab66
ILT
1513 {
1514 dynobj->error(_("versym for symbol %zu has no name: %u"),
1515 i, v);
1516 continue;
1517 }
dbe717ef 1518
aeddab66 1519 Stringpool::Key version_key;
2ea97941 1520 version = this->namepool_.add(version, true, &version_key);
aeddab66
ILT
1521
1522 // If this is an absolute symbol, and the version name
1523 // and symbol name are the same, then this is the
1524 // version definition symbol. These symbols exist to
1525 // support using -u to pull in particular versions. We
1526 // do not want to record a version for them.
d491d34e
ILT
1527 if (st_shndx == elfcpp::SHN_ABS
1528 && !is_ordinary
aeddab66 1529 && name_key == version_key)
2ea97941 1530 res = this->add_from_object(dynobj, name, name_key, NULL, 0,
8bdcdf2c 1531 false, *psym, st_shndx, is_ordinary,
d491d34e 1532 st_shndx);
aeddab66
ILT
1533 else
1534 {
8781f709
ILT
1535 const bool is_default_version =
1536 !hidden && st_shndx != elfcpp::SHN_UNDEF;
2ea97941 1537 res = this->add_from_object(dynobj, name, name_key, version,
8781f709
ILT
1538 version_key, is_default_version,
1539 *psym, st_shndx,
d491d34e 1540 is_ordinary, st_shndx);
aeddab66
ILT
1541 }
1542 }
dbe717ef
ILT
1543 }
1544
99a37bfd 1545 // Note that it is possible that RES was overridden by an
a4bb589a 1546 // earlier object, in which case it can't be aliased here.
d491d34e
ILT
1547 if (st_shndx != elfcpp::SHN_UNDEF
1548 && is_ordinary
8bdcdf2c 1549 && psym->get_st_type() == elfcpp::STT_OBJECT
99a37bfd
ILT
1550 && res->source() == Symbol::FROM_OBJECT
1551 && res->object() == dynobj)
aeddab66 1552 object_symbols.push_back(res);
92de84a6
ILT
1553
1554 if (sympointers != NULL)
1555 (*sympointers)[i] = res;
aeddab66
ILT
1556 }
1557
1558 this->record_weak_aliases(&object_symbols);
1559}
1560
cdc29364
CC
1561// Add a symbol from a incremental object file.
1562
1563template<int size, bool big_endian>
26d3c67d 1564Sized_symbol<size>*
cdc29364
CC
1565Symbol_table::add_from_incrobj(
1566 Object* obj,
1567 const char* name,
1568 const char* ver,
1569 elfcpp::Sym<size, big_endian>* sym)
1570{
1571 unsigned int st_shndx = sym->get_st_shndx();
1572 bool is_ordinary = st_shndx < elfcpp::SHN_LORESERVE;
1573
1574 Stringpool::Key ver_key = 0;
1575 bool is_default_version = false;
1576 bool is_forced_local = false;
1577
1578 Stringpool::Key name_key;
1579 name = this->namepool_.add(name, true, &name_key);
1580
1581 Sized_symbol<size>* res;
1582 res = this->add_from_object(obj, name, name_key, ver, ver_key,
1583 is_default_version, *sym, st_shndx,
1584 is_ordinary, st_shndx);
1585
1586 if (is_forced_local)
1587 this->force_local(res);
1588
1589 return res;
1590}
1591
aeddab66
ILT
1592// This is used to sort weak aliases. We sort them first by section
1593// index, then by offset, then by weak ahead of strong.
1594
1595template<int size>
1596class Weak_alias_sorter
1597{
1598 public:
1599 bool operator()(const Sized_symbol<size>*, const Sized_symbol<size>*) const;
1600};
1601
1602template<int size>
1603bool
1604Weak_alias_sorter<size>::operator()(const Sized_symbol<size>* s1,
1605 const Sized_symbol<size>* s2) const
1606{
d491d34e
ILT
1607 bool is_ordinary;
1608 unsigned int s1_shndx = s1->shndx(&is_ordinary);
1609 gold_assert(is_ordinary);
1610 unsigned int s2_shndx = s2->shndx(&is_ordinary);
1611 gold_assert(is_ordinary);
1612 if (s1_shndx != s2_shndx)
1613 return s1_shndx < s2_shndx;
1614
aeddab66
ILT
1615 if (s1->value() != s2->value())
1616 return s1->value() < s2->value();
1617 if (s1->binding() != s2->binding())
1618 {
1619 if (s1->binding() == elfcpp::STB_WEAK)
1620 return true;
1621 if (s2->binding() == elfcpp::STB_WEAK)
1622 return false;
1623 }
1624 return std::string(s1->name()) < std::string(s2->name());
1625}
dbe717ef 1626
aeddab66
ILT
1627// SYMBOLS is a list of object symbols from a dynamic object. Look
1628// for any weak aliases, and record them so that if we add the weak
1629// alias to the dynamic symbol table, we also add the corresponding
1630// strong symbol.
dbe717ef 1631
aeddab66
ILT
1632template<int size>
1633void
1634Symbol_table::record_weak_aliases(std::vector<Sized_symbol<size>*>* symbols)
1635{
1636 // Sort the vector by section index, then by offset, then by weak
1637 // ahead of strong.
1638 std::sort(symbols->begin(), symbols->end(), Weak_alias_sorter<size>());
1639
1640 // Walk through the vector. For each weak definition, record
1641 // aliases.
1642 for (typename std::vector<Sized_symbol<size>*>::const_iterator p =
1643 symbols->begin();
1644 p != symbols->end();
1645 ++p)
1646 {
1647 if ((*p)->binding() != elfcpp::STB_WEAK)
1648 continue;
1649
1650 // Build a circular list of weak aliases. Each symbol points to
1651 // the next one in the circular list.
1652
1653 Sized_symbol<size>* from_sym = *p;
1654 typename std::vector<Sized_symbol<size>*>::const_iterator q;
1655 for (q = p + 1; q != symbols->end(); ++q)
dbe717ef 1656 {
d491d34e
ILT
1657 bool dummy;
1658 if ((*q)->shndx(&dummy) != from_sym->shndx(&dummy)
aeddab66
ILT
1659 || (*q)->value() != from_sym->value())
1660 break;
1661
1662 this->weak_aliases_[from_sym] = *q;
1663 from_sym->set_has_alias();
1664 from_sym = *q;
dbe717ef
ILT
1665 }
1666
aeddab66
ILT
1667 if (from_sym != *p)
1668 {
1669 this->weak_aliases_[from_sym] = *p;
1670 from_sym->set_has_alias();
1671 }
dbe717ef 1672
aeddab66 1673 p = q - 1;
dbe717ef
ILT
1674 }
1675}
1676
ead1e424
ILT
1677// Create and return a specially defined symbol. If ONLY_IF_REF is
1678// true, then only create the symbol if there is a reference to it.
86f2e683 1679// If this does not return NULL, it sets *POLDSYM to the existing
8c500701
ILT
1680// symbol if there is one. This sets *RESOLVE_OLDSYM if we should
1681// resolve the newly created symbol to the old one. This
1682// canonicalizes *PNAME and *PVERSION.
ead1e424
ILT
1683
1684template<int size, bool big_endian>
1685Sized_symbol<size>*
9b07f471
ILT
1686Symbol_table::define_special_symbol(const char** pname, const char** pversion,
1687 bool only_if_ref,
8c500701 1688 Sized_symbol<size>** poldsym,
ca09d69a 1689 bool* resolve_oldsym)
ead1e424 1690{
8c500701 1691 *resolve_oldsym = false;
8cc69fb6 1692 *poldsym = NULL;
ead1e424 1693
55a93433
ILT
1694 // If the caller didn't give us a version, see if we get one from
1695 // the version script.
057ead22 1696 std::string v;
8c500701 1697 bool is_default_version = false;
55a93433
ILT
1698 if (*pversion == NULL)
1699 {
98e090bd
ILT
1700 bool is_global;
1701 if (this->version_script_.get_symbol_version(*pname, &v, &is_global))
057ead22 1702 {
98e090bd
ILT
1703 if (is_global && !v.empty())
1704 {
1705 *pversion = v.c_str();
1706 // If we get the version from a version script, then we
1707 // are also the default version.
1708 is_default_version = true;
1709 }
057ead22 1710 }
55a93433
ILT
1711 }
1712
8c500701
ILT
1713 Symbol* oldsym;
1714 Sized_symbol<size>* sym;
1715
1716 bool add_to_table = false;
1717 typename Symbol_table_type::iterator add_loc = this->table_.end();
1718 bool add_def_to_table = false;
1719 typename Symbol_table_type::iterator add_def_loc = this->table_.end();
1720
ead1e424
ILT
1721 if (only_if_ref)
1722 {
306d9ef0 1723 oldsym = this->lookup(*pname, *pversion);
8c500701
ILT
1724 if (oldsym == NULL && is_default_version)
1725 oldsym = this->lookup(*pname, NULL);
f6ce93d6 1726 if (oldsym == NULL || !oldsym->is_undefined())
ead1e424 1727 return NULL;
306d9ef0
ILT
1728
1729 *pname = oldsym->name();
eebd87a5
ILT
1730 if (is_default_version)
1731 *pversion = this->namepool_.add(*pversion, true, NULL);
1732 else
8c500701 1733 *pversion = oldsym->version();
ead1e424
ILT
1734 }
1735 else
1736 {
14b31740 1737 // Canonicalize NAME and VERSION.
f0641a0b 1738 Stringpool::Key name_key;
cfd73a4e 1739 *pname = this->namepool_.add(*pname, true, &name_key);
ead1e424 1740
14b31740 1741 Stringpool::Key version_key = 0;
306d9ef0 1742 if (*pversion != NULL)
cfd73a4e 1743 *pversion = this->namepool_.add(*pversion, true, &version_key);
14b31740 1744
ead1e424 1745 Symbol* const snull = NULL;
ead1e424 1746 std::pair<typename Symbol_table_type::iterator, bool> ins =
14b31740
ILT
1747 this->table_.insert(std::make_pair(std::make_pair(name_key,
1748 version_key),
ead1e424
ILT
1749 snull));
1750
8781f709 1751 std::pair<typename Symbol_table_type::iterator, bool> insdefault =
8c500701
ILT
1752 std::make_pair(this->table_.end(), false);
1753 if (is_default_version)
1754 {
1755 const Stringpool::Key vnull = 0;
8781f709
ILT
1756 insdefault =
1757 this->table_.insert(std::make_pair(std::make_pair(name_key,
1758 vnull),
1759 snull));
8c500701
ILT
1760 }
1761
ead1e424
ILT
1762 if (!ins.second)
1763 {
14b31740 1764 // We already have a symbol table entry for NAME/VERSION.
ead1e424 1765 oldsym = ins.first->second;
a3ad94ed 1766 gold_assert(oldsym != NULL);
8c500701
ILT
1767
1768 if (is_default_version)
1769 {
1770 Sized_symbol<size>* soldsym =
1771 this->get_sized_symbol<size>(oldsym);
1772 this->define_default_version<size, big_endian>(soldsym,
8781f709
ILT
1773 insdefault.second,
1774 insdefault.first);
8c500701 1775 }
ead1e424
ILT
1776 }
1777 else
1778 {
1779 // We haven't seen this symbol before.
a3ad94ed 1780 gold_assert(ins.first->second == NULL);
8c500701
ILT
1781
1782 add_to_table = true;
1783 add_loc = ins.first;
1784
8781f709 1785 if (is_default_version && !insdefault.second)
8c500701
ILT
1786 {
1787 // We are adding NAME/VERSION, and it is the default
1788 // version. We already have an entry for NAME/NULL.
8781f709 1789 oldsym = insdefault.first->second;
8c500701
ILT
1790 *resolve_oldsym = true;
1791 }
1792 else
1793 {
1794 oldsym = NULL;
1795
1796 if (is_default_version)
1797 {
1798 add_def_to_table = true;
8781f709 1799 add_def_loc = insdefault.first;
8c500701
ILT
1800 }
1801 }
ead1e424
ILT
1802 }
1803 }
1804
8851ecca
ILT
1805 const Target& target = parameters->target();
1806 if (!target.has_make_symbol())
86f2e683
ILT
1807 sym = new Sized_symbol<size>();
1808 else
ead1e424 1809 {
029ba973
ILT
1810 Sized_target<size, big_endian>* sized_target =
1811 parameters->sized_target<size, big_endian>();
86f2e683
ILT
1812 sym = sized_target->make_symbol();
1813 if (sym == NULL)
1814 return NULL;
1815 }
ead1e424 1816
86f2e683
ILT
1817 if (add_to_table)
1818 add_loc->second = sym;
1819 else
1820 gold_assert(oldsym != NULL);
ead1e424 1821
8c500701
ILT
1822 if (add_def_to_table)
1823 add_def_loc->second = sym;
1824
7d1a9ebb 1825 *poldsym = this->get_sized_symbol<size>(oldsym);
ead1e424
ILT
1826
1827 return sym;
1828}
1829
1830// Define a symbol based on an Output_data.
1831
14b31740 1832Symbol*
2ea97941
ILT
1833Symbol_table::define_in_output_data(const char* name,
1834 const char* version,
99fff23b 1835 Defined defined,
9b07f471 1836 Output_data* od,
2ea97941
ILT
1837 uint64_t value,
1838 uint64_t symsize,
9b07f471
ILT
1839 elfcpp::STT type,
1840 elfcpp::STB binding,
ead1e424
ILT
1841 elfcpp::STV visibility,
1842 unsigned char nonvis,
2ea97941 1843 bool offset_is_from_end,
ead1e424
ILT
1844 bool only_if_ref)
1845{
8851ecca 1846 if (parameters->target().get_size() == 32)
86f2e683
ILT
1847 {
1848#if defined(HAVE_TARGET_32_LITTLE) || defined(HAVE_TARGET_32_BIG)
99fff23b 1849 return this->do_define_in_output_data<32>(name, version, defined, od,
2ea97941 1850 value, symsize, type, binding,
86f2e683 1851 visibility, nonvis,
2ea97941 1852 offset_is_from_end,
86f2e683
ILT
1853 only_if_ref);
1854#else
1855 gold_unreachable();
1856#endif
1857 }
8851ecca 1858 else if (parameters->target().get_size() == 64)
86f2e683
ILT
1859 {
1860#if defined(HAVE_TARGET_64_LITTLE) || defined(HAVE_TARGET_64_BIG)
99fff23b 1861 return this->do_define_in_output_data<64>(name, version, defined, od,
2ea97941 1862 value, symsize, type, binding,
86f2e683 1863 visibility, nonvis,
2ea97941 1864 offset_is_from_end,
86f2e683
ILT
1865 only_if_ref);
1866#else
1867 gold_unreachable();
1868#endif
1869 }
ead1e424 1870 else
a3ad94ed 1871 gold_unreachable();
ead1e424
ILT
1872}
1873
1874// Define a symbol in an Output_data, sized version.
1875
1876template<int size>
14b31740 1877Sized_symbol<size>*
ead1e424 1878Symbol_table::do_define_in_output_data(
2ea97941
ILT
1879 const char* name,
1880 const char* version,
99fff23b 1881 Defined defined,
ead1e424 1882 Output_data* od,
2ea97941
ILT
1883 typename elfcpp::Elf_types<size>::Elf_Addr value,
1884 typename elfcpp::Elf_types<size>::Elf_WXword symsize,
ead1e424
ILT
1885 elfcpp::STT type,
1886 elfcpp::STB binding,
1887 elfcpp::STV visibility,
1888 unsigned char nonvis,
2ea97941 1889 bool offset_is_from_end,
ead1e424
ILT
1890 bool only_if_ref)
1891{
1892 Sized_symbol<size>* sym;
86f2e683 1893 Sized_symbol<size>* oldsym;
8c500701 1894 bool resolve_oldsym;
ead1e424 1895
8851ecca 1896 if (parameters->target().is_big_endian())
193a53d9
ILT
1897 {
1898#if defined(HAVE_TARGET_32_BIG) || defined(HAVE_TARGET_64_BIG)
2ea97941 1899 sym = this->define_special_symbol<size, true>(&name, &version,
8c500701
ILT
1900 only_if_ref, &oldsym,
1901 &resolve_oldsym);
193a53d9
ILT
1902#else
1903 gold_unreachable();
1904#endif
1905 }
ead1e424 1906 else
193a53d9
ILT
1907 {
1908#if defined(HAVE_TARGET_32_LITTLE) || defined(HAVE_TARGET_64_LITTLE)
2ea97941 1909 sym = this->define_special_symbol<size, false>(&name, &version,
8c500701
ILT
1910 only_if_ref, &oldsym,
1911 &resolve_oldsym);
193a53d9
ILT
1912#else
1913 gold_unreachable();
1914#endif
1915 }
ead1e424
ILT
1916
1917 if (sym == NULL)
14b31740 1918 return NULL;
ead1e424 1919
2ea97941 1920 sym->init_output_data(name, version, od, value, symsize, type, binding,
5146f448
CC
1921 visibility, nonvis, offset_is_from_end,
1922 defined == PREDEFINED);
14b31740 1923
e5756efb 1924 if (oldsym == NULL)
55a93433
ILT
1925 {
1926 if (binding == elfcpp::STB_LOCAL
2ea97941 1927 || this->version_script_.symbol_is_local(name))
55a93433 1928 this->force_local(sym);
2ea97941 1929 else if (version != NULL)
75517b77 1930 sym->set_is_default();
55a93433
ILT
1931 return sym;
1932 }
86f2e683 1933
62855347 1934 if (Symbol_table::should_override_with_special(oldsym, type, defined))
e5756efb 1935 this->override_with_special(oldsym, sym);
8c500701
ILT
1936
1937 if (resolve_oldsym)
1938 return sym;
1939 else
1940 {
1941 delete sym;
1942 return oldsym;
1943 }
ead1e424
ILT
1944}
1945
1946// Define a symbol based on an Output_segment.
1947
14b31740 1948Symbol*
2ea97941 1949Symbol_table::define_in_output_segment(const char* name,
99fff23b
ILT
1950 const char* version,
1951 Defined defined,
1952 Output_segment* os,
2ea97941
ILT
1953 uint64_t value,
1954 uint64_t symsize,
9b07f471
ILT
1955 elfcpp::STT type,
1956 elfcpp::STB binding,
ead1e424
ILT
1957 elfcpp::STV visibility,
1958 unsigned char nonvis,
2ea97941 1959 Symbol::Segment_offset_base offset_base,
ead1e424
ILT
1960 bool only_if_ref)
1961{
8851ecca 1962 if (parameters->target().get_size() == 32)
86f2e683
ILT
1963 {
1964#if defined(HAVE_TARGET_32_LITTLE) || defined(HAVE_TARGET_32_BIG)
99fff23b 1965 return this->do_define_in_output_segment<32>(name, version, defined, os,
2ea97941 1966 value, symsize, type,
86f2e683 1967 binding, visibility, nonvis,
2ea97941 1968 offset_base, only_if_ref);
86f2e683
ILT
1969#else
1970 gold_unreachable();
1971#endif
1972 }
8851ecca 1973 else if (parameters->target().get_size() == 64)
86f2e683
ILT
1974 {
1975#if defined(HAVE_TARGET_64_LITTLE) || defined(HAVE_TARGET_64_BIG)
99fff23b 1976 return this->do_define_in_output_segment<64>(name, version, defined, os,
2ea97941 1977 value, symsize, type,
86f2e683 1978 binding, visibility, nonvis,
2ea97941 1979 offset_base, only_if_ref);
86f2e683
ILT
1980#else
1981 gold_unreachable();
1982#endif
1983 }
ead1e424 1984 else
a3ad94ed 1985 gold_unreachable();
ead1e424
ILT
1986}
1987
1988// Define a symbol in an Output_segment, sized version.
1989
1990template<int size>
14b31740 1991Sized_symbol<size>*
ead1e424 1992Symbol_table::do_define_in_output_segment(
2ea97941
ILT
1993 const char* name,
1994 const char* version,
99fff23b 1995 Defined defined,
ead1e424 1996 Output_segment* os,
2ea97941
ILT
1997 typename elfcpp::Elf_types<size>::Elf_Addr value,
1998 typename elfcpp::Elf_types<size>::Elf_WXword symsize,
ead1e424
ILT
1999 elfcpp::STT type,
2000 elfcpp::STB binding,
2001 elfcpp::STV visibility,
2002 unsigned char nonvis,
2ea97941 2003 Symbol::Segment_offset_base offset_base,
ead1e424
ILT
2004 bool only_if_ref)
2005{
2006 Sized_symbol<size>* sym;
86f2e683 2007 Sized_symbol<size>* oldsym;
8c500701 2008 bool resolve_oldsym;
ead1e424 2009
8851ecca 2010 if (parameters->target().is_big_endian())
9025d29d
ILT
2011 {
2012#if defined(HAVE_TARGET_32_BIG) || defined(HAVE_TARGET_64_BIG)
2ea97941 2013 sym = this->define_special_symbol<size, true>(&name, &version,
8c500701
ILT
2014 only_if_ref, &oldsym,
2015 &resolve_oldsym);
9025d29d
ILT
2016#else
2017 gold_unreachable();
2018#endif
2019 }
ead1e424 2020 else
9025d29d
ILT
2021 {
2022#if defined(HAVE_TARGET_32_LITTLE) || defined(HAVE_TARGET_64_LITTLE)
2ea97941 2023 sym = this->define_special_symbol<size, false>(&name, &version,
8c500701
ILT
2024 only_if_ref, &oldsym,
2025 &resolve_oldsym);
9025d29d
ILT
2026#else
2027 gold_unreachable();
2028#endif
2029 }
ead1e424
ILT
2030
2031 if (sym == NULL)
14b31740 2032 return NULL;
ead1e424 2033
2ea97941 2034 sym->init_output_segment(name, version, os, value, symsize, type, binding,
5146f448
CC
2035 visibility, nonvis, offset_base,
2036 defined == PREDEFINED);
14b31740 2037
e5756efb 2038 if (oldsym == NULL)
55a93433
ILT
2039 {
2040 if (binding == elfcpp::STB_LOCAL
2ea97941 2041 || this->version_script_.symbol_is_local(name))
55a93433 2042 this->force_local(sym);
2ea97941 2043 else if (version != NULL)
75517b77 2044 sym->set_is_default();
55a93433
ILT
2045 return sym;
2046 }
86f2e683 2047
62855347 2048 if (Symbol_table::should_override_with_special(oldsym, type, defined))
e5756efb 2049 this->override_with_special(oldsym, sym);
8c500701
ILT
2050
2051 if (resolve_oldsym)
2052 return sym;
2053 else
2054 {
2055 delete sym;
2056 return oldsym;
2057 }
ead1e424
ILT
2058}
2059
2060// Define a special symbol with a constant value. It is a multiple
2061// definition error if this symbol is already defined.
2062
14b31740 2063Symbol*
2ea97941
ILT
2064Symbol_table::define_as_constant(const char* name,
2065 const char* version,
99fff23b 2066 Defined defined,
2ea97941
ILT
2067 uint64_t value,
2068 uint64_t symsize,
9b07f471
ILT
2069 elfcpp::STT type,
2070 elfcpp::STB binding,
2071 elfcpp::STV visibility,
2072 unsigned char nonvis,
caa9d5d9
ILT
2073 bool only_if_ref,
2074 bool force_override)
ead1e424 2075{
8851ecca 2076 if (parameters->target().get_size() == 32)
86f2e683
ILT
2077 {
2078#if defined(HAVE_TARGET_32_LITTLE) || defined(HAVE_TARGET_32_BIG)
99fff23b 2079 return this->do_define_as_constant<32>(name, version, defined, value,
2ea97941 2080 symsize, type, binding,
caa9d5d9
ILT
2081 visibility, nonvis, only_if_ref,
2082 force_override);
86f2e683
ILT
2083#else
2084 gold_unreachable();
2085#endif
2086 }
8851ecca 2087 else if (parameters->target().get_size() == 64)
86f2e683
ILT
2088 {
2089#if defined(HAVE_TARGET_64_LITTLE) || defined(HAVE_TARGET_64_BIG)
99fff23b 2090 return this->do_define_as_constant<64>(name, version, defined, value,
2ea97941 2091 symsize, type, binding,
caa9d5d9
ILT
2092 visibility, nonvis, only_if_ref,
2093 force_override);
86f2e683
ILT
2094#else
2095 gold_unreachable();
2096#endif
2097 }
ead1e424 2098 else
a3ad94ed 2099 gold_unreachable();
ead1e424
ILT
2100}
2101
2102// Define a symbol as a constant, sized version.
2103
2104template<int size>
14b31740 2105Sized_symbol<size>*
ead1e424 2106Symbol_table::do_define_as_constant(
2ea97941
ILT
2107 const char* name,
2108 const char* version,
99fff23b 2109 Defined defined,
2ea97941
ILT
2110 typename elfcpp::Elf_types<size>::Elf_Addr value,
2111 typename elfcpp::Elf_types<size>::Elf_WXword symsize,
ead1e424
ILT
2112 elfcpp::STT type,
2113 elfcpp::STB binding,
2114 elfcpp::STV visibility,
2115 unsigned char nonvis,
caa9d5d9
ILT
2116 bool only_if_ref,
2117 bool force_override)
ead1e424
ILT
2118{
2119 Sized_symbol<size>* sym;
86f2e683 2120 Sized_symbol<size>* oldsym;
8c500701 2121 bool resolve_oldsym;
ead1e424 2122
8851ecca 2123 if (parameters->target().is_big_endian())
9025d29d
ILT
2124 {
2125#if defined(HAVE_TARGET_32_BIG) || defined(HAVE_TARGET_64_BIG)
2ea97941 2126 sym = this->define_special_symbol<size, true>(&name, &version,
8c500701
ILT
2127 only_if_ref, &oldsym,
2128 &resolve_oldsym);
9025d29d
ILT
2129#else
2130 gold_unreachable();
2131#endif
2132 }
ead1e424 2133 else
9025d29d
ILT
2134 {
2135#if defined(HAVE_TARGET_32_LITTLE) || defined(HAVE_TARGET_64_LITTLE)
2ea97941 2136 sym = this->define_special_symbol<size, false>(&name, &version,
8c500701
ILT
2137 only_if_ref, &oldsym,
2138 &resolve_oldsym);
9025d29d
ILT
2139#else
2140 gold_unreachable();
2141#endif
2142 }
ead1e424
ILT
2143
2144 if (sym == NULL)
14b31740 2145 return NULL;
ead1e424 2146
2ea97941 2147 sym->init_constant(name, version, value, symsize, type, binding, visibility,
5146f448 2148 nonvis, defined == PREDEFINED);
14b31740 2149
e5756efb 2150 if (oldsym == NULL)
55a93433 2151 {
686c8caf
ILT
2152 // Version symbols are absolute symbols with name == version.
2153 // We don't want to force them to be local.
2ea97941
ILT
2154 if ((version == NULL
2155 || name != version
2156 || value != 0)
686c8caf 2157 && (binding == elfcpp::STB_LOCAL
2ea97941 2158 || this->version_script_.symbol_is_local(name)))
55a93433 2159 this->force_local(sym);
2ea97941
ILT
2160 else if (version != NULL
2161 && (name != version || value != 0))
75517b77 2162 sym->set_is_default();
55a93433
ILT
2163 return sym;
2164 }
86f2e683 2165
99fff23b 2166 if (force_override
62855347 2167 || Symbol_table::should_override_with_special(oldsym, type, defined))
e5756efb 2168 this->override_with_special(oldsym, sym);
8c500701
ILT
2169
2170 if (resolve_oldsym)
2171 return sym;
2172 else
2173 {
2174 delete sym;
2175 return oldsym;
2176 }
ead1e424
ILT
2177}
2178
2179// Define a set of symbols in output sections.
2180
2181void
9b07f471 2182Symbol_table::define_symbols(const Layout* layout, int count,
a445fddf
ILT
2183 const Define_symbol_in_section* p,
2184 bool only_if_ref)
ead1e424
ILT
2185{
2186 for (int i = 0; i < count; ++i, ++p)
2187 {
2188 Output_section* os = layout->find_output_section(p->output_section);
2189 if (os != NULL)
99fff23b 2190 this->define_in_output_data(p->name, NULL, PREDEFINED, os, p->value,
14b31740
ILT
2191 p->size, p->type, p->binding,
2192 p->visibility, p->nonvis,
a445fddf
ILT
2193 p->offset_is_from_end,
2194 only_if_ref || p->only_if_ref);
ead1e424 2195 else
99fff23b
ILT
2196 this->define_as_constant(p->name, NULL, PREDEFINED, 0, p->size,
2197 p->type, p->binding, p->visibility, p->nonvis,
caa9d5d9
ILT
2198 only_if_ref || p->only_if_ref,
2199 false);
ead1e424
ILT
2200 }
2201}
2202
2203// Define a set of symbols in output segments.
2204
2205void
9b07f471 2206Symbol_table::define_symbols(const Layout* layout, int count,
a445fddf
ILT
2207 const Define_symbol_in_segment* p,
2208 bool only_if_ref)
ead1e424
ILT
2209{
2210 for (int i = 0; i < count; ++i, ++p)
2211 {
2212 Output_segment* os = layout->find_output_segment(p->segment_type,
2213 p->segment_flags_set,
2214 p->segment_flags_clear);
2215 if (os != NULL)
99fff23b 2216 this->define_in_output_segment(p->name, NULL, PREDEFINED, os, p->value,
14b31740
ILT
2217 p->size, p->type, p->binding,
2218 p->visibility, p->nonvis,
a445fddf
ILT
2219 p->offset_base,
2220 only_if_ref || p->only_if_ref);
ead1e424 2221 else
99fff23b
ILT
2222 this->define_as_constant(p->name, NULL, PREDEFINED, 0, p->size,
2223 p->type, p->binding, p->visibility, p->nonvis,
caa9d5d9
ILT
2224 only_if_ref || p->only_if_ref,
2225 false);
ead1e424
ILT
2226 }
2227}
2228
46fe1623
ILT
2229// Define CSYM using a COPY reloc. POSD is the Output_data where the
2230// symbol should be defined--typically a .dyn.bss section. VALUE is
2231// the offset within POSD.
2232
2233template<int size>
2234void
fe8718a4 2235Symbol_table::define_with_copy_reloc(
fe8718a4
ILT
2236 Sized_symbol<size>* csym,
2237 Output_data* posd,
2ea97941 2238 typename elfcpp::Elf_types<size>::Elf_Addr value)
46fe1623
ILT
2239{
2240 gold_assert(csym->is_from_dynobj());
2241 gold_assert(!csym->is_copied_from_dynobj());
2ea97941
ILT
2242 Object* object = csym->object();
2243 gold_assert(object->is_dynamic());
2244 Dynobj* dynobj = static_cast<Dynobj*>(object);
46fe1623
ILT
2245
2246 // Our copied variable has to override any variable in a shared
2247 // library.
2248 elfcpp::STB binding = csym->binding();
2249 if (binding == elfcpp::STB_WEAK)
2250 binding = elfcpp::STB_GLOBAL;
2251
99fff23b 2252 this->define_in_output_data(csym->name(), csym->version(), COPY,
2ea97941 2253 posd, value, csym->symsize(),
46fe1623
ILT
2254 csym->type(), binding,
2255 csym->visibility(), csym->nonvis(),
2256 false, false);
2257
2258 csym->set_is_copied_from_dynobj();
2259 csym->set_needs_dynsym_entry();
2260
2261 this->copied_symbol_dynobjs_[csym] = dynobj;
2262
2263 // We have now defined all aliases, but we have not entered them all
2264 // in the copied_symbol_dynobjs_ map.
2265 if (csym->has_alias())
2266 {
2267 Symbol* sym = csym;
2268 while (true)
2269 {
2270 sym = this->weak_aliases_[sym];
2271 if (sym == csym)
2272 break;
2273 gold_assert(sym->output_data() == posd);
2274
2275 sym->set_is_copied_from_dynobj();
2276 this->copied_symbol_dynobjs_[sym] = dynobj;
2277 }
2278 }
2279}
2280
2281// SYM is defined using a COPY reloc. Return the dynamic object where
2282// the original definition was found.
2283
2284Dynobj*
2285Symbol_table::get_copy_source(const Symbol* sym) const
2286{
2287 gold_assert(sym->is_copied_from_dynobj());
2288 Copied_symbol_dynobjs::const_iterator p =
2289 this->copied_symbol_dynobjs_.find(sym);
2290 gold_assert(p != this->copied_symbol_dynobjs_.end());
2291 return p->second;
2292}
2293
f3e9c5c5
ILT
2294// Add any undefined symbols named on the command line.
2295
2296void
88a4108b 2297Symbol_table::add_undefined_symbols_from_command_line(Layout* layout)
f3e9c5c5 2298{
88a4108b
ILT
2299 if (parameters->options().any_undefined()
2300 || layout->script_options()->any_unreferenced())
f3e9c5c5
ILT
2301 {
2302 if (parameters->target().get_size() == 32)
2303 {
5adf9721 2304#if defined(HAVE_TARGET_32_LITTLE) || defined(HAVE_TARGET_32_BIG)
88a4108b 2305 this->do_add_undefined_symbols_from_command_line<32>(layout);
f3e9c5c5
ILT
2306#else
2307 gold_unreachable();
2308#endif
2309 }
2310 else if (parameters->target().get_size() == 64)
2311 {
2312#if defined(HAVE_TARGET_64_LITTLE) || defined(HAVE_TARGET_64_BIG)
88a4108b 2313 this->do_add_undefined_symbols_from_command_line<64>(layout);
f3e9c5c5
ILT
2314#else
2315 gold_unreachable();
2316#endif
2317 }
2318 else
2319 gold_unreachable();
2320 }
2321}
2322
2323template<int size>
2324void
88a4108b 2325Symbol_table::do_add_undefined_symbols_from_command_line(Layout* layout)
f3e9c5c5
ILT
2326{
2327 for (options::String_set::const_iterator p =
2328 parameters->options().undefined_begin();
2329 p != parameters->options().undefined_end();
2330 ++p)
88a4108b 2331 this->add_undefined_symbol_from_command_line<size>(p->c_str());
f3e9c5c5 2332
31821be0
CC
2333 for (options::String_set::const_iterator p =
2334 parameters->options().export_dynamic_symbol_begin();
2335 p != parameters->options().export_dynamic_symbol_end();
2336 ++p)
2337 this->add_undefined_symbol_from_command_line<size>(p->c_str());
2338
88a4108b
ILT
2339 for (Script_options::referenced_const_iterator p =
2340 layout->script_options()->referenced_begin();
2341 p != layout->script_options()->referenced_end();
2342 ++p)
2343 this->add_undefined_symbol_from_command_line<size>(p->c_str());
2344}
2345
2346template<int size>
2347void
2348Symbol_table::add_undefined_symbol_from_command_line(const char* name)
2349{
2350 if (this->lookup(name) != NULL)
2351 return;
f3e9c5c5 2352
88a4108b 2353 const char* version = NULL;
f3e9c5c5 2354
88a4108b
ILT
2355 Sized_symbol<size>* sym;
2356 Sized_symbol<size>* oldsym;
2357 bool resolve_oldsym;
2358 if (parameters->target().is_big_endian())
2359 {
f3e9c5c5 2360#if defined(HAVE_TARGET_32_BIG) || defined(HAVE_TARGET_64_BIG)
88a4108b
ILT
2361 sym = this->define_special_symbol<size, true>(&name, &version,
2362 false, &oldsym,
2363 &resolve_oldsym);
f3e9c5c5 2364#else
88a4108b 2365 gold_unreachable();
f3e9c5c5 2366#endif
88a4108b
ILT
2367 }
2368 else
2369 {
f3e9c5c5 2370#if defined(HAVE_TARGET_32_LITTLE) || defined(HAVE_TARGET_64_LITTLE)
88a4108b
ILT
2371 sym = this->define_special_symbol<size, false>(&name, &version,
2372 false, &oldsym,
2373 &resolve_oldsym);
f3e9c5c5 2374#else
88a4108b 2375 gold_unreachable();
f3e9c5c5 2376#endif
88a4108b 2377 }
f3e9c5c5 2378
88a4108b 2379 gold_assert(oldsym == NULL);
f3e9c5c5 2380
88a4108b
ILT
2381 sym->init_undefined(name, version, elfcpp::STT_NOTYPE, elfcpp::STB_GLOBAL,
2382 elfcpp::STV_DEFAULT, 0);
2383 ++this->saw_undefined_;
f3e9c5c5
ILT
2384}
2385
a3ad94ed
ILT
2386// Set the dynamic symbol indexes. INDEX is the index of the first
2387// global dynamic symbol. Pointers to the symbols are stored into the
2388// vector SYMS. The names are added to DYNPOOL. This returns an
2389// updated dynamic symbol index.
2390
2391unsigned int
9b07f471 2392Symbol_table::set_dynsym_indexes(unsigned int index,
a3ad94ed 2393 std::vector<Symbol*>* syms,
14b31740
ILT
2394 Stringpool* dynpool,
2395 Versions* versions)
a3ad94ed 2396{
32e2b61d
AM
2397 std::vector<Symbol*> as_needed_sym;
2398
98ff9231
CC
2399 // Allow a target to set dynsym indexes.
2400 if (parameters->target().has_custom_set_dynsym_indexes())
2401 {
2402 std::vector<Symbol*> dyn_symbols;
2403 for (Symbol_table_type::iterator p = this->table_.begin();
2404 p != this->table_.end();
2405 ++p)
2406 {
2407 Symbol* sym = p->second;
2408 if (!sym->should_add_dynsym_entry(this))
2409 sym->set_dynsym_index(-1U);
2410 else
2411 dyn_symbols.push_back(sym);
2412 }
2413
2414 return parameters->target().set_dynsym_indexes(&dyn_symbols, index, syms,
2415 dynpool, versions, this);
2416 }
2417
a3ad94ed
ILT
2418 for (Symbol_table_type::iterator p = this->table_.begin();
2419 p != this->table_.end();
2420 ++p)
2421 {
2422 Symbol* sym = p->second;
16649710
ILT
2423
2424 // Note that SYM may already have a dynamic symbol index, since
2425 // some symbols appear more than once in the symbol table, with
2426 // and without a version.
2427
ce97fa81 2428 if (!sym->should_add_dynsym_entry(this))
16649710
ILT
2429 sym->set_dynsym_index(-1U);
2430 else if (!sym->has_dynsym_index())
a3ad94ed
ILT
2431 {
2432 sym->set_dynsym_index(index);
2433 ++index;
2434 syms->push_back(sym);
cfd73a4e 2435 dynpool->add(sym->name(), false, NULL);
14b31740 2436
594c8e5e 2437 // If the symbol is defined in a dynamic object and is
32e2b61d
AM
2438 // referenced strongly in a regular object, then mark the
2439 // dynamic object as needed. This is used to implement
2440 // --as-needed.
2441 if (sym->is_from_dynobj()
2442 && sym->in_reg()
2443 && !sym->is_undef_binding_weak())
594c8e5e 2444 sym->object()->set_is_needed();
32e2b61d
AM
2445
2446 // Record any version information, except those from
2447 // as-needed libraries not seen to be needed. Note that the
2448 // is_needed state for such libraries can change in this loop.
2449 if (sym->version() != NULL)
2450 {
2451 if (!sym->is_from_dynobj()
2452 || !sym->object()->as_needed()
2453 || sym->object()->is_needed())
2454 versions->record_version(this, dynpool, sym);
2455 else
2456 as_needed_sym.push_back(sym);
2457 }
a3ad94ed
ILT
2458 }
2459 }
2460
32e2b61d
AM
2461 // Process version information for symbols from as-needed libraries.
2462 for (std::vector<Symbol*>::iterator p = as_needed_sym.begin();
2463 p != as_needed_sym.end();
2464 ++p)
2465 {
2466 Symbol* sym = *p;
2467
2468 if (sym->object()->is_needed())
2469 versions->record_version(this, dynpool, sym);
2470 else
2471 sym->clear_version();
2472 }
2473
14b31740
ILT
2474 // Finish up the versions. In some cases this may add new dynamic
2475 // symbols.
9b07f471 2476 index = versions->finalize(this, index, syms);
14b31740 2477
a3ad94ed
ILT
2478 return index;
2479}
2480
c06b7b0b 2481// Set the final values for all the symbols. The index of the first
55a93433
ILT
2482// global symbol in the output file is *PLOCAL_SYMCOUNT. Record the
2483// file offset OFF. Add their names to POOL. Return the new file
2484// offset. Update *PLOCAL_SYMCOUNT if necessary.
54dc6425 2485
75f65a3e 2486off_t
55a93433
ILT
2487Symbol_table::finalize(off_t off, off_t dynoff, size_t dyn_global_index,
2488 size_t dyncount, Stringpool* pool,
ca09d69a 2489 unsigned int* plocal_symcount)
54dc6425 2490{
f6ce93d6
ILT
2491 off_t ret;
2492
55a93433
ILT
2493 gold_assert(*plocal_symcount != 0);
2494 this->first_global_index_ = *plocal_symcount;
c06b7b0b 2495
16649710
ILT
2496 this->dynamic_offset_ = dynoff;
2497 this->first_dynamic_global_index_ = dyn_global_index;
2498 this->dynamic_count_ = dyncount;
2499
8851ecca 2500 if (parameters->target().get_size() == 32)
9025d29d
ILT
2501 {
2502#if defined(HAVE_TARGET_32_BIG) || defined(HAVE_TARGET_32_LITTLE)
55a93433 2503 ret = this->sized_finalize<32>(off, pool, plocal_symcount);
9025d29d
ILT
2504#else
2505 gold_unreachable();
2506#endif
2507 }
8851ecca 2508 else if (parameters->target().get_size() == 64)
9025d29d
ILT
2509 {
2510#if defined(HAVE_TARGET_64_BIG) || defined(HAVE_TARGET_64_LITTLE)
55a93433 2511 ret = this->sized_finalize<64>(off, pool, plocal_symcount);
9025d29d
ILT
2512#else
2513 gold_unreachable();
2514#endif
2515 }
61ba1cf9 2516 else
a3ad94ed 2517 gold_unreachable();
f6ce93d6
ILT
2518
2519 // Now that we have the final symbol table, we can reliably note
2520 // which symbols should get warnings.
cb295612 2521 this->warnings_.note_warnings(this);
f6ce93d6
ILT
2522
2523 return ret;
75f65a3e
ILT
2524}
2525
55a93433
ILT
2526// SYM is going into the symbol table at *PINDEX. Add the name to
2527// POOL, update *PINDEX and *POFF.
2528
2529template<int size>
2530void
2531Symbol_table::add_to_final_symtab(Symbol* sym, Stringpool* pool,
2532 unsigned int* pindex, off_t* poff)
2533{
2534 sym->set_symtab_index(*pindex);
6d1c4efb
ILT
2535 if (sym->version() == NULL || !parameters->options().relocatable())
2536 pool->add(sym->name(), false, NULL);
2537 else
2538 pool->add(sym->versioned_name(), true, NULL);
55a93433
ILT
2539 ++*pindex;
2540 *poff += elfcpp::Elf_sizes<size>::sym_size;
2541}
2542
ead1e424
ILT
2543// Set the final value for all the symbols. This is called after
2544// Layout::finalize, so all the output sections have their final
2545// address.
75f65a3e
ILT
2546
2547template<int size>
2548off_t
55a93433
ILT
2549Symbol_table::sized_finalize(off_t off, Stringpool* pool,
2550 unsigned int* plocal_symcount)
75f65a3e 2551{
ead1e424 2552 off = align_address(off, size >> 3);
75f65a3e
ILT
2553 this->offset_ = off;
2554
55a93433
ILT
2555 unsigned int index = *plocal_symcount;
2556 const unsigned int orig_index = index;
c06b7b0b 2557
55a93433
ILT
2558 // First do all the symbols which have been forced to be local, as
2559 // they must appear before all global symbols.
2560 for (Forced_locals::iterator p = this->forced_locals_.begin();
2561 p != this->forced_locals_.end();
2562 ++p)
2563 {
2564 Symbol* sym = *p;
2565 gold_assert(sym->is_forced_local());
2566 if (this->sized_finalize_symbol<size>(sym))
2567 {
2568 this->add_to_final_symtab<size>(sym, pool, &index, &off);
2569 ++*plocal_symcount;
2570 }
2571 }
2572
2573 // Now do all the remaining symbols.
c06b7b0b
ILT
2574 for (Symbol_table_type::iterator p = this->table_.begin();
2575 p != this->table_.end();
2576 ++p)
54dc6425 2577 {
55a93433
ILT
2578 Symbol* sym = p->second;
2579 if (this->sized_finalize_symbol<size>(sym))
2580 this->add_to_final_symtab<size>(sym, pool, &index, &off);
2581 }
54dc6425 2582
55a93433 2583 this->output_count_ = index - orig_index;
a3ad94ed 2584
55a93433
ILT
2585 return off;
2586}
75f65a3e 2587
c0a62865
DK
2588// Compute the final value of SYM and store status in location PSTATUS.
2589// During relaxation, this may be called multiple times for a symbol to
2590// compute its would-be final value in each relaxation pass.
008db82e 2591
55a93433 2592template<int size>
c0a62865
DK
2593typename Sized_symbol<size>::Value_type
2594Symbol_table::compute_final_value(
2595 const Sized_symbol<size>* sym,
2596 Compute_final_value_status* pstatus) const
55a93433 2597{
ef9beddf 2598 typedef typename Sized_symbol<size>::Value_type Value_type;
2ea97941 2599 Value_type value;
ead1e424 2600
55a93433
ILT
2601 switch (sym->source())
2602 {
2603 case Symbol::FROM_OBJECT:
2604 {
d491d34e 2605 bool is_ordinary;
2ea97941 2606 unsigned int shndx = sym->shndx(&is_ordinary);
ead1e424 2607
d491d34e 2608 if (!is_ordinary
2ea97941
ILT
2609 && shndx != elfcpp::SHN_ABS
2610 && !Symbol::is_common_shndx(shndx))
55a93433 2611 {
c0a62865
DK
2612 *pstatus = CFVS_UNSUPPORTED_SYMBOL_SECTION;
2613 return 0;
ead1e424 2614 }
ead1e424 2615
55a93433
ILT
2616 Object* symobj = sym->object();
2617 if (symobj->is_dynamic())
ead1e424 2618 {
2ea97941
ILT
2619 value = 0;
2620 shndx = elfcpp::SHN_UNDEF;
ead1e424 2621 }
89fc3421
CC
2622 else if (symobj->pluginobj() != NULL)
2623 {
2ea97941
ILT
2624 value = 0;
2625 shndx = elfcpp::SHN_UNDEF;
89fc3421 2626 }
2ea97941
ILT
2627 else if (shndx == elfcpp::SHN_UNDEF)
2628 value = 0;
d491d34e 2629 else if (!is_ordinary
2ea97941
ILT
2630 && (shndx == elfcpp::SHN_ABS
2631 || Symbol::is_common_shndx(shndx)))
2632 value = sym->value();
55a93433 2633 else
ead1e424 2634 {
55a93433 2635 Relobj* relobj = static_cast<Relobj*>(symobj);
2ea97941 2636 Output_section* os = relobj->output_section(shndx);
55a93433 2637
2ea97941 2638 if (this->is_section_folded(relobj, shndx))
ef15dade
ST
2639 {
2640 gold_assert(os == NULL);
2641 // Get the os of the section it is folded onto.
2642 Section_id folded = this->icf_->get_folded_section(relobj,
2ea97941 2643 shndx);
ef15dade
ST
2644 gold_assert(folded.first != NULL);
2645 Relobj* folded_obj = reinterpret_cast<Relobj*>(folded.first);
d6344fb5
DK
2646 unsigned folded_shndx = folded.second;
2647
2648 os = folded_obj->output_section(folded_shndx);
ef15dade 2649 gold_assert(os != NULL);
d6344fb5
DK
2650
2651 // Replace (relobj, shndx) with canonical ICF input section.
2652 shndx = folded_shndx;
2653 relobj = folded_obj;
ef15dade
ST
2654 }
2655
d6344fb5 2656 uint64_t secoff64 = relobj->output_section_offset(shndx);
ef15dade 2657 if (os == NULL)
ead1e424 2658 {
6d03d481
ST
2659 bool static_or_reloc = (parameters->doing_static_link() ||
2660 parameters->options().relocatable());
2661 gold_assert(static_or_reloc || sym->dynsym_index() == -1U);
2662
c0a62865
DK
2663 *pstatus = CFVS_NO_OUTPUT_SECTION;
2664 return 0;
ead1e424 2665 }
55a93433 2666
eff45813
CC
2667 if (secoff64 == -1ULL)
2668 {
2669 // The section needs special handling (e.g., a merge section).
ef15dade 2670
2ea97941 2671 value = os->output_address(relobj, shndx, sym->value());
eff45813
CC
2672 }
2673 else
2674 {
2675 Value_type secoff =
2676 convert_types<Value_type, uint64_t>(secoff64);
2677 if (sym->type() == elfcpp::STT_TLS)
2ea97941 2678 value = sym->value() + os->tls_offset() + secoff;
eff45813 2679 else
2ea97941 2680 value = sym->value() + os->address() + secoff;
eff45813 2681 }
ead1e424 2682 }
55a93433
ILT
2683 }
2684 break;
2685
2686 case Symbol::IN_OUTPUT_DATA:
2687 {
2688 Output_data* od = sym->output_data();
2ea97941 2689 value = sym->value();
155a0dd7 2690 if (sym->type() != elfcpp::STT_TLS)
2ea97941 2691 value += od->address();
155a0dd7
ILT
2692 else
2693 {
2694 Output_section* os = od->output_section();
2695 gold_assert(os != NULL);
2ea97941 2696 value += os->tls_offset() + (od->address() - os->address());
155a0dd7 2697 }
55a93433 2698 if (sym->offset_is_from_end())
2ea97941 2699 value += od->data_size();
55a93433
ILT
2700 }
2701 break;
2702
2703 case Symbol::IN_OUTPUT_SEGMENT:
2704 {
2705 Output_segment* os = sym->output_segment();
2ea97941 2706 value = sym->value();
edfbb029 2707 if (sym->type() != elfcpp::STT_TLS)
2ea97941 2708 value += os->vaddr();
55a93433
ILT
2709 switch (sym->offset_base())
2710 {
2711 case Symbol::SEGMENT_START:
2712 break;
2713 case Symbol::SEGMENT_END:
2ea97941 2714 value += os->memsz();
55a93433
ILT
2715 break;
2716 case Symbol::SEGMENT_BSS:
2ea97941 2717 value += os->filesz();
55a93433
ILT
2718 break;
2719 default:
2720 gold_unreachable();
2721 }
2722 }
2723 break;
ead1e424 2724
f3e9c5c5 2725 case Symbol::IS_CONSTANT:
2ea97941 2726 value = sym->value();
55a93433 2727 break;
ead1e424 2728
f3e9c5c5 2729 case Symbol::IS_UNDEFINED:
2ea97941 2730 value = 0;
f3e9c5c5
ILT
2731 break;
2732
55a93433
ILT
2733 default:
2734 gold_unreachable();
2735 }
ead1e424 2736
c0a62865 2737 *pstatus = CFVS_OK;
2ea97941 2738 return value;
c0a62865
DK
2739}
2740
2741// Finalize the symbol SYM. This returns true if the symbol should be
2742// added to the symbol table, false otherwise.
2743
2744template<int size>
2745bool
2746Symbol_table::sized_finalize_symbol(Symbol* unsized_sym)
2747{
2748 typedef typename Sized_symbol<size>::Value_type Value_type;
2749
2750 Sized_symbol<size>* sym = static_cast<Sized_symbol<size>*>(unsized_sym);
2751
2752 // The default version of a symbol may appear twice in the symbol
2753 // table. We only need to finalize it once.
2754 if (sym->has_symtab_index())
2755 return false;
2756
2757 if (!sym->in_reg())
2758 {
2759 gold_assert(!sym->has_symtab_index());
2760 sym->set_symtab_index(-1U);
2761 gold_assert(sym->dynsym_index() == -1U);
2762 return false;
2763 }
2764
badc8139
RÁE
2765 // If the symbol is only present on plugin files, the plugin decided we
2766 // don't need it.
2767 if (!sym->in_real_elf())
2768 {
2769 gold_assert(!sym->has_symtab_index());
2770 sym->set_symtab_index(-1U);
2771 return false;
2772 }
2773
c0a62865
DK
2774 // Compute final symbol value.
2775 Compute_final_value_status status;
2ea97941 2776 Value_type value = this->compute_final_value(sym, &status);
c0a62865
DK
2777
2778 switch (status)
2779 {
2780 case CFVS_OK:
2781 break;
2782 case CFVS_UNSUPPORTED_SYMBOL_SECTION:
2783 {
2784 bool is_ordinary;
2ea97941 2785 unsigned int shndx = sym->shndx(&is_ordinary);
c0a62865 2786 gold_error(_("%s: unsupported symbol section 0x%x"),
2ea97941 2787 sym->demangled_name().c_str(), shndx);
c0a62865
DK
2788 }
2789 break;
2790 case CFVS_NO_OUTPUT_SECTION:
2791 sym->set_symtab_index(-1U);
2792 return false;
2793 default:
2794 gold_unreachable();
2795 }
2796
2ea97941 2797 sym->set_value(value);
9e2dcb77 2798
8c604651
CS
2799 if (parameters->options().strip_all()
2800 || !parameters->options().should_retain_symbol(sym->name()))
55a93433
ILT
2801 {
2802 sym->set_symtab_index(-1U);
2803 return false;
54dc6425 2804 }
75f65a3e 2805
55a93433 2806 return true;
54dc6425
ILT
2807}
2808
61ba1cf9
ILT
2809// Write out the global symbols.
2810
2811void
fd9d194f 2812Symbol_table::write_globals(const Stringpool* sympool,
d491d34e
ILT
2813 const Stringpool* dynpool,
2814 Output_symtab_xindex* symtab_xindex,
2815 Output_symtab_xindex* dynsym_xindex,
2816 Output_file* of) const
61ba1cf9 2817{
8851ecca 2818 switch (parameters->size_and_endianness())
61ba1cf9 2819 {
9025d29d 2820#ifdef HAVE_TARGET_32_LITTLE
8851ecca 2821 case Parameters::TARGET_32_LITTLE:
fd9d194f 2822 this->sized_write_globals<32, false>(sympool, dynpool, symtab_xindex,
d491d34e 2823 dynsym_xindex, of);
8851ecca 2824 break;
9025d29d 2825#endif
8851ecca
ILT
2826#ifdef HAVE_TARGET_32_BIG
2827 case Parameters::TARGET_32_BIG:
fd9d194f 2828 this->sized_write_globals<32, true>(sympool, dynpool, symtab_xindex,
d491d34e 2829 dynsym_xindex, of);
8851ecca 2830 break;
9025d29d 2831#endif
9025d29d 2832#ifdef HAVE_TARGET_64_LITTLE
8851ecca 2833 case Parameters::TARGET_64_LITTLE:
fd9d194f 2834 this->sized_write_globals<64, false>(sympool, dynpool, symtab_xindex,
d491d34e 2835 dynsym_xindex, of);
8851ecca 2836 break;
9025d29d 2837#endif
8851ecca
ILT
2838#ifdef HAVE_TARGET_64_BIG
2839 case Parameters::TARGET_64_BIG:
fd9d194f 2840 this->sized_write_globals<64, true>(sympool, dynpool, symtab_xindex,
d491d34e 2841 dynsym_xindex, of);
8851ecca
ILT
2842 break;
2843#endif
2844 default:
2845 gold_unreachable();
61ba1cf9 2846 }
61ba1cf9
ILT
2847}
2848
2849// Write out the global symbols.
2850
2851template<int size, bool big_endian>
2852void
fd9d194f 2853Symbol_table::sized_write_globals(const Stringpool* sympool,
16649710 2854 const Stringpool* dynpool,
d491d34e
ILT
2855 Output_symtab_xindex* symtab_xindex,
2856 Output_symtab_xindex* dynsym_xindex,
61ba1cf9
ILT
2857 Output_file* of) const
2858{
8851ecca 2859 const Target& target = parameters->target();
9a2d6984 2860
61ba1cf9 2861 const int sym_size = elfcpp::Elf_sizes<size>::sym_size;
55a93433
ILT
2862
2863 const unsigned int output_count = this->output_count_;
2864 const section_size_type oview_size = output_count * sym_size;
2865 const unsigned int first_global_index = this->first_global_index_;
5fe2a0f5
ILT
2866 unsigned char* psyms;
2867 if (this->offset_ == 0 || output_count == 0)
2868 psyms = NULL;
2869 else
2870 psyms = of->get_output_view(this->offset_, oview_size);
16649710 2871
55a93433
ILT
2872 const unsigned int dynamic_count = this->dynamic_count_;
2873 const section_size_type dynamic_size = dynamic_count * sym_size;
2874 const unsigned int first_dynamic_global_index =
2875 this->first_dynamic_global_index_;
16649710 2876 unsigned char* dynamic_view;
5fe2a0f5 2877 if (this->dynamic_offset_ == 0 || dynamic_count == 0)
16649710
ILT
2878 dynamic_view = NULL;
2879 else
2880 dynamic_view = of->get_output_view(this->dynamic_offset_, dynamic_size);
c06b7b0b 2881
61ba1cf9
ILT
2882 for (Symbol_table_type::const_iterator p = this->table_.begin();
2883 p != this->table_.end();
2884 ++p)
2885 {
2886 Sized_symbol<size>* sym = static_cast<Sized_symbol<size>*>(p->second);
2887
9a2d6984 2888 // Possibly warn about unresolved symbols in shared libraries.
fd9d194f 2889 this->warn_about_undefined_dynobj_symbol(sym);
e2827e5f 2890
a3ad94ed 2891 unsigned int sym_index = sym->symtab_index();
16649710
ILT
2892 unsigned int dynsym_index;
2893 if (dynamic_view == NULL)
2894 dynsym_index = -1U;
2895 else
2896 dynsym_index = sym->dynsym_index();
2897
2898 if (sym_index == -1U && dynsym_index == -1U)
a3ad94ed
ILT
2899 {
2900 // This symbol is not included in the output file.
2901 continue;
2902 }
16649710 2903
2ea97941 2904 unsigned int shndx;
88dd47ac
ILT
2905 typename elfcpp::Elf_types<size>::Elf_Addr sym_value = sym->value();
2906 typename elfcpp::Elf_types<size>::Elf_Addr dynsym_value = sym_value;
ce279a62 2907 elfcpp::STB binding = sym->binding();
9634ed06
CC
2908
2909 // If --no-gnu-unique is set, change STB_GNU_UNIQUE to STB_GLOBAL.
2910 if (binding == elfcpp::STB_GNU_UNIQUE
2911 && !parameters->options().gnu_unique())
2912 binding = elfcpp::STB_GLOBAL;
2913
ead1e424
ILT
2914 switch (sym->source())
2915 {
2916 case Symbol::FROM_OBJECT:
2917 {
d491d34e
ILT
2918 bool is_ordinary;
2919 unsigned int in_shndx = sym->shndx(&is_ordinary);
ead1e424 2920
d491d34e 2921 if (!is_ordinary
0dfbdef4 2922 && in_shndx != elfcpp::SHN_ABS
8a5e3e08 2923 && !Symbol::is_common_shndx(in_shndx))
ead1e424 2924 {
75f2446e 2925 gold_error(_("%s: unsupported symbol section 0x%x"),
a2b1aa12 2926 sym->demangled_name().c_str(), in_shndx);
2ea97941 2927 shndx = in_shndx;
f6ce93d6 2928 }
ead1e424
ILT
2929 else
2930 {
75f2446e
ILT
2931 Object* symobj = sym->object();
2932 if (symobj->is_dynamic())
2933 {
2934 if (sym->needs_dynsym_value())
8851ecca 2935 dynsym_value = target.dynsym_value(sym);
2ea97941 2936 shndx = elfcpp::SHN_UNDEF;
ce279a62
CC
2937 if (sym->is_undef_binding_weak())
2938 binding = elfcpp::STB_WEAK;
74f67560
DK
2939 else
2940 binding = elfcpp::STB_GLOBAL;
75f2446e 2941 }
89fc3421 2942 else if (symobj->pluginobj() != NULL)
2ea97941 2943 shndx = elfcpp::SHN_UNDEF;
75f2446e 2944 else if (in_shndx == elfcpp::SHN_UNDEF
d491d34e
ILT
2945 || (!is_ordinary
2946 && (in_shndx == elfcpp::SHN_ABS
8a5e3e08 2947 || Symbol::is_common_shndx(in_shndx))))
2ea97941 2948 shndx = in_shndx;
75f2446e
ILT
2949 else
2950 {
2951 Relobj* relobj = static_cast<Relobj*>(symobj);
ef9beddf 2952 Output_section* os = relobj->output_section(in_shndx);
ef15dade
ST
2953 if (this->is_section_folded(relobj, in_shndx))
2954 {
2955 // This global symbol must be written out even though
2956 // it is folded.
2957 // Get the os of the section it is folded onto.
2958 Section_id folded =
2959 this->icf_->get_folded_section(relobj, in_shndx);
2960 gold_assert(folded.first !=NULL);
2961 Relobj* folded_obj =
2962 reinterpret_cast<Relobj*>(folded.first);
2963 os = folded_obj->output_section(folded.second);
2964 gold_assert(os != NULL);
2965 }
75f2446e 2966 gold_assert(os != NULL);
2ea97941 2967 shndx = os->out_shndx();
88dd47ac 2968
2ea97941 2969 if (shndx >= elfcpp::SHN_LORESERVE)
d491d34e
ILT
2970 {
2971 if (sym_index != -1U)
2ea97941 2972 symtab_xindex->add(sym_index, shndx);
d491d34e 2973 if (dynsym_index != -1U)
2ea97941
ILT
2974 dynsym_xindex->add(dynsym_index, shndx);
2975 shndx = elfcpp::SHN_XINDEX;
d491d34e
ILT
2976 }
2977
88dd47ac
ILT
2978 // In object files symbol values are section
2979 // relative.
8851ecca 2980 if (parameters->options().relocatable())
88dd47ac 2981 sym_value -= os->address();
75f2446e 2982 }
ead1e424
ILT
2983 }
2984 }
2985 break;
2986
2987 case Symbol::IN_OUTPUT_DATA:
502e8a84
CC
2988 {
2989 Output_data* od = sym->output_data();
2990
2991 shndx = od->out_shndx();
2992 if (shndx >= elfcpp::SHN_LORESERVE)
2993 {
2994 if (sym_index != -1U)
2995 symtab_xindex->add(sym_index, shndx);
2996 if (dynsym_index != -1U)
2997 dynsym_xindex->add(dynsym_index, shndx);
2998 shndx = elfcpp::SHN_XINDEX;
2999 }
3000
3001 // In object files symbol values are section
3002 // relative.
3003 if (parameters->options().relocatable())
3004 sym_value -= od->address();
3005 }
ead1e424
ILT
3006 break;
3007
3008 case Symbol::IN_OUTPUT_SEGMENT:
2ea97941 3009 shndx = elfcpp::SHN_ABS;
ead1e424
ILT
3010 break;
3011
f3e9c5c5 3012 case Symbol::IS_CONSTANT:
2ea97941 3013 shndx = elfcpp::SHN_ABS;
ead1e424
ILT
3014 break;
3015
f3e9c5c5 3016 case Symbol::IS_UNDEFINED:
2ea97941 3017 shndx = elfcpp::SHN_UNDEF;
f3e9c5c5
ILT
3018 break;
3019
ead1e424 3020 default:
a3ad94ed 3021 gold_unreachable();
ead1e424 3022 }
61ba1cf9 3023
16649710
ILT
3024 if (sym_index != -1U)
3025 {
55a93433
ILT
3026 sym_index -= first_global_index;
3027 gold_assert(sym_index < output_count);
3028 unsigned char* ps = psyms + (sym_index * sym_size);
2ea97941 3029 this->sized_write_symbol<size, big_endian>(sym, sym_value, shndx,
ce279a62 3030 binding, sympool, ps);
16649710 3031 }
61ba1cf9 3032
16649710
ILT
3033 if (dynsym_index != -1U)
3034 {
3035 dynsym_index -= first_dynamic_global_index;
3036 gold_assert(dynsym_index < dynamic_count);
3037 unsigned char* pd = dynamic_view + (dynsym_index * sym_size);
2ea97941 3038 this->sized_write_symbol<size, big_endian>(sym, dynsym_value, shndx,
ce279a62 3039 binding, dynpool, pd);
800d9823
CC
3040 // Allow a target to adjust dynamic symbol value.
3041 parameters->target().adjust_dyn_symbol(sym, pd);
16649710 3042 }
61ba1cf9
ILT
3043 }
3044
c06b7b0b 3045 of->write_output_view(this->offset_, oview_size, psyms);
16649710
ILT
3046 if (dynamic_view != NULL)
3047 of->write_output_view(this->dynamic_offset_, dynamic_size, dynamic_view);
3048}
3049
3050// Write out the symbol SYM, in section SHNDX, to P. POOL is the
3051// strtab holding the name.
3052
3053template<int size, bool big_endian>
3054void
ab5c9e90
ILT
3055Symbol_table::sized_write_symbol(
3056 Sized_symbol<size>* sym,
2ea97941
ILT
3057 typename elfcpp::Elf_types<size>::Elf_Addr value,
3058 unsigned int shndx,
ce279a62 3059 elfcpp::STB binding,
ab5c9e90 3060 const Stringpool* pool,
7d1a9ebb 3061 unsigned char* p) const
16649710
ILT
3062{
3063 elfcpp::Sym_write<size, big_endian> osym(p);
6d1c4efb
ILT
3064 if (sym->version() == NULL || !parameters->options().relocatable())
3065 osym.put_st_name(pool->get_offset(sym->name()));
3066 else
3067 osym.put_st_name(pool->get_offset(sym->versioned_name()));
2ea97941 3068 osym.put_st_value(value);
58e54ac2 3069 // Use a symbol size of zero for undefined symbols from shared libraries.
2ea97941 3070 if (shndx == elfcpp::SHN_UNDEF && sym->is_from_dynobj())
58e54ac2
CD
3071 osym.put_st_size(0);
3072 else
3073 osym.put_st_size(sym->symsize());
53d7974c
L
3074 elfcpp::STT type = sym->type();
3075 // Turn IFUNC symbols from shared libraries into normal FUNC symbols.
3076 if (type == elfcpp::STT_GNU_IFUNC
3077 && sym->is_from_dynobj())
3078 type = elfcpp::STT_FUNC;
55a93433
ILT
3079 // A version script may have overridden the default binding.
3080 if (sym->is_forced_local())
53d7974c 3081 osym.put_st_info(elfcpp::elf_st_info(elfcpp::STB_LOCAL, type));
55a93433 3082 else
ce279a62 3083 osym.put_st_info(elfcpp::elf_st_info(binding, type));
16649710 3084 osym.put_st_other(elfcpp::elf_st_other(sym->visibility(), sym->nonvis()));
2ea97941 3085 osym.put_st_shndx(shndx);
61ba1cf9
ILT
3086}
3087
9a2d6984
ILT
3088// Check for unresolved symbols in shared libraries. This is
3089// controlled by the --allow-shlib-undefined option.
3090
3091// We only warn about libraries for which we have seen all the
3092// DT_NEEDED entries. We don't try to track down DT_NEEDED entries
3093// which were not seen in this link. If we didn't see a DT_NEEDED
3094// entry, we aren't going to be able to reliably report whether the
3095// symbol is undefined.
3096
fd9d194f
ILT
3097// We also don't warn about libraries found in a system library
3098// directory (e.g., /lib or /usr/lib); we assume that those libraries
3099// are OK. This heuristic avoids problems on GNU/Linux, in which -ldl
3100// can have undefined references satisfied by ld-linux.so.
9a2d6984
ILT
3101
3102inline void
fd9d194f 3103Symbol_table::warn_about_undefined_dynobj_symbol(Symbol* sym) const
9a2d6984 3104{
d491d34e 3105 bool dummy;
9a2d6984
ILT
3106 if (sym->source() == Symbol::FROM_OBJECT
3107 && sym->object()->is_dynamic()
d491d34e 3108 && sym->shndx(&dummy) == elfcpp::SHN_UNDEF
9a2d6984 3109 && sym->binding() != elfcpp::STB_WEAK
8851ecca
ILT
3110 && !parameters->options().allow_shlib_undefined()
3111 && !parameters->target().is_defined_by_abi(sym)
fd9d194f 3112 && !sym->object()->is_in_system_directory())
9a2d6984
ILT
3113 {
3114 // A very ugly cast.
3115 Dynobj* dynobj = static_cast<Dynobj*>(sym->object());
3116 if (!dynobj->has_unknown_needed_entries())
f073bbf7 3117 gold_undefined_symbol(sym);
9a2d6984
ILT
3118 }
3119}
3120
a3ad94ed
ILT
3121// Write out a section symbol. Return the update offset.
3122
3123void
ca09d69a 3124Symbol_table::write_section_symbol(const Output_section* os,
d491d34e 3125 Output_symtab_xindex* symtab_xindex,
a3ad94ed
ILT
3126 Output_file* of,
3127 off_t offset) const
3128{
8851ecca 3129 switch (parameters->size_and_endianness())
a3ad94ed 3130 {
9025d29d 3131#ifdef HAVE_TARGET_32_LITTLE
8851ecca 3132 case Parameters::TARGET_32_LITTLE:
d491d34e
ILT
3133 this->sized_write_section_symbol<32, false>(os, symtab_xindex, of,
3134 offset);
8851ecca 3135 break;
9025d29d 3136#endif
8851ecca
ILT
3137#ifdef HAVE_TARGET_32_BIG
3138 case Parameters::TARGET_32_BIG:
d491d34e
ILT
3139 this->sized_write_section_symbol<32, true>(os, symtab_xindex, of,
3140 offset);
8851ecca 3141 break;
9025d29d 3142#endif
9025d29d 3143#ifdef HAVE_TARGET_64_LITTLE
8851ecca 3144 case Parameters::TARGET_64_LITTLE:
d491d34e
ILT
3145 this->sized_write_section_symbol<64, false>(os, symtab_xindex, of,
3146 offset);
8851ecca 3147 break;
9025d29d 3148#endif
8851ecca
ILT
3149#ifdef HAVE_TARGET_64_BIG
3150 case Parameters::TARGET_64_BIG:
d491d34e
ILT
3151 this->sized_write_section_symbol<64, true>(os, symtab_xindex, of,
3152 offset);
8851ecca
ILT
3153 break;
3154#endif
3155 default:
3156 gold_unreachable();
a3ad94ed 3157 }
a3ad94ed
ILT
3158}
3159
3160// Write out a section symbol, specialized for size and endianness.
3161
3162template<int size, bool big_endian>
3163void
3164Symbol_table::sized_write_section_symbol(const Output_section* os,
d491d34e 3165 Output_symtab_xindex* symtab_xindex,
a3ad94ed
ILT
3166 Output_file* of,
3167 off_t offset) const
3168{
3169 const int sym_size = elfcpp::Elf_sizes<size>::sym_size;
3170
3171 unsigned char* pov = of->get_output_view(offset, sym_size);
3172
3173 elfcpp::Sym_write<size, big_endian> osym(pov);
3174 osym.put_st_name(0);
b4ecf66b
ILT
3175 if (parameters->options().relocatable())
3176 osym.put_st_value(0);
3177 else
3178 osym.put_st_value(os->address());
a3ad94ed
ILT
3179 osym.put_st_size(0);
3180 osym.put_st_info(elfcpp::elf_st_info(elfcpp::STB_LOCAL,
3181 elfcpp::STT_SECTION));
3182 osym.put_st_other(elfcpp::elf_st_other(elfcpp::STV_DEFAULT, 0));
d491d34e 3183
2ea97941
ILT
3184 unsigned int shndx = os->out_shndx();
3185 if (shndx >= elfcpp::SHN_LORESERVE)
d491d34e 3186 {
2ea97941
ILT
3187 symtab_xindex->add(os->symtab_index(), shndx);
3188 shndx = elfcpp::SHN_XINDEX;
d491d34e 3189 }
2ea97941 3190 osym.put_st_shndx(shndx);
a3ad94ed
ILT
3191
3192 of->write_output_view(offset, sym_size, pov);
3193}
3194
abaa3995
ILT
3195// Print statistical information to stderr. This is used for --stats.
3196
3197void
3198Symbol_table::print_stats() const
3199{
3200#if defined(HAVE_TR1_UNORDERED_MAP) || defined(HAVE_EXT_HASH_MAP)
3201 fprintf(stderr, _("%s: symbol table entries: %zu; buckets: %zu\n"),
3202 program_name, this->table_.size(), this->table_.bucket_count());
3203#else
3204 fprintf(stderr, _("%s: symbol table entries: %zu\n"),
3205 program_name, this->table_.size());
3206#endif
ad8f37d1 3207 this->namepool_.print_stats("symbol table stringpool");
abaa3995
ILT
3208}
3209
ff541f30
ILT
3210// We check for ODR violations by looking for symbols with the same
3211// name for which the debugging information reports that they were
71ff8986 3212// defined in disjoint source locations. When comparing the source
55382fb7
ILT
3213// location, we consider instances with the same base filename to be
3214// the same. This is because different object files/shared libraries
3215// can include the same header file using different paths, and
3216// different optimization settings can make the line number appear to
3217// be a couple lines off, and we don't want to report an ODR violation
3218// in those cases.
ff541f30
ILT
3219
3220// This struct is used to compare line information, as returned by
7bf1f802 3221// Dwarf_line_info::one_addr2line. It implements a < comparison
71ff8986 3222// operator used with std::sort.
ff541f30
ILT
3223
3224struct Odr_violation_compare
3225{
3226 bool
3227 operator()(const std::string& s1, const std::string& s2) const
3228 {
55382fb7 3229 // Inputs should be of the form "dirname/filename:linenum" where
71ff8986 3230 // "dirname/" is optional. We want to compare just the filename:linenum.
55382fb7 3231
71ff8986 3232 // Find the last '/' in each string.
55382fb7
ILT
3233 std::string::size_type s1begin = s1.rfind('/');
3234 std::string::size_type s2begin = s2.rfind('/');
55382fb7
ILT
3235 // If there was no '/' in a string, start at the beginning.
3236 if (s1begin == std::string::npos)
3237 s1begin = 0;
3238 if (s2begin == std::string::npos)
3239 s2begin = 0;
71ff8986
ILT
3240 return s1.compare(s1begin, std::string::npos,
3241 s2, s2begin, std::string::npos) < 0;
ff541f30
ILT
3242 }
3243};
3244
71ff8986
ILT
3245// Returns all of the lines attached to LOC, not just the one the
3246// instruction actually came from.
3247std::vector<std::string>
3248Symbol_table::linenos_from_loc(const Task* task,
3249 const Symbol_location& loc)
3250{
3251 // We need to lock the object in order to read it. This
3252 // means that we have to run in a singleton Task. If we
3253 // want to run this in a general Task for better
3254 // performance, we will need one Task for object, plus
3255 // appropriate locking to ensure that we don't conflict with
3256 // other uses of the object. Also note, one_addr2line is not
3257 // currently thread-safe.
3258 Task_lock_obj<Object> tl(task, loc.object);
3259
3260 std::vector<std::string> result;
dc3714f3
AM
3261 Symbol_location code_loc = loc;
3262 parameters->target().function_location(&code_loc);
71ff8986
ILT
3263 // 16 is the size of the object-cache that one_addr2line should use.
3264 std::string canonical_result = Dwarf_line_info::one_addr2line(
dc3714f3 3265 code_loc.object, code_loc.shndx, code_loc.offset, 16, &result);
71ff8986
ILT
3266 if (!canonical_result.empty())
3267 result.push_back(canonical_result);
3268 return result;
3269}
3270
3271// OutputIterator that records if it was ever assigned to. This
3272// allows it to be used with std::set_intersection() to check for
3273// intersection rather than computing the intersection.
3274struct Check_intersection
3275{
3276 Check_intersection()
3277 : value_(false)
3278 {}
3279
3280 bool had_intersection() const
3281 { return this->value_; }
3282
3283 Check_intersection& operator++()
3284 { return *this; }
3285
3286 Check_intersection& operator*()
3287 { return *this; }
3288
3289 template<typename T>
3290 Check_intersection& operator=(const T&)
3291 {
3292 this->value_ = true;
3293 return *this;
3294 }
3295
3296 private:
3297 bool value_;
3298};
3299
70e654ba 3300// Check candidate_odr_violations_ to find symbols with the same name
71ff8986
ILT
3301// but apparently different definitions (different source-file/line-no
3302// for each line assigned to the first instruction).
70e654ba
ILT
3303
3304void
17a1d0a9
ILT
3305Symbol_table::detect_odr_violations(const Task* task,
3306 const char* output_file_name) const
70e654ba
ILT
3307{
3308 for (Odr_map::const_iterator it = candidate_odr_violations_.begin();
3309 it != candidate_odr_violations_.end();
3310 ++it)
3311 {
71ff8986
ILT
3312 const char* const symbol_name = it->first;
3313
3314 std::string first_object_name;
3315 std::vector<std::string> first_object_linenos;
3316
3317 Unordered_set<Symbol_location, Symbol_location_hash>::const_iterator
3318 locs = it->second.begin();
3319 const Unordered_set<Symbol_location, Symbol_location_hash>::const_iterator
3320 locs_end = it->second.end();
3321 for (; locs != locs_end && first_object_linenos.empty(); ++locs)
70e654ba 3322 {
71ff8986
ILT
3323 // Save the line numbers from the first definition to
3324 // compare to the other definitions. Ideally, we'd compare
3325 // every definition to every other, but we don't want to
3326 // take O(N^2) time to do this. This shortcut may cause
3327 // false negatives that appear or disappear depending on the
3328 // link order, but it won't cause false positives.
3329 first_object_name = locs->object->name();
3330 first_object_linenos = this->linenos_from_loc(task, *locs);
70e654ba
ILT
3331 }
3332
71ff8986
ILT
3333 // Sort by Odr_violation_compare to make std::set_intersection work.
3334 std::sort(first_object_linenos.begin(), first_object_linenos.end(),
3335 Odr_violation_compare());
3336
3337 for (; locs != locs_end; ++locs)
70e654ba 3338 {
71ff8986
ILT
3339 std::vector<std::string> linenos =
3340 this->linenos_from_loc(task, *locs);
3341 // linenos will be empty if we couldn't parse the debug info.
3342 if (linenos.empty())
3343 continue;
3344 // Sort by Odr_violation_compare to make std::set_intersection work.
3345 std::sort(linenos.begin(), linenos.end(), Odr_violation_compare());
3346
3347 Check_intersection intersection_result =
3348 std::set_intersection(first_object_linenos.begin(),
3349 first_object_linenos.end(),
3350 linenos.begin(),
3351 linenos.end(),
3352 Check_intersection(),
3353 Odr_violation_compare());
3354 if (!intersection_result.had_intersection())
3355 {
3356 gold_warning(_("while linking %s: symbol '%s' defined in "
3357 "multiple places (possible ODR violation):"),
3358 output_file_name, demangle(symbol_name).c_str());
3359 // This only prints one location from each definition,
3360 // which may not be the location we expect to intersect
3361 // with another definition. We could print the whole
3362 // set of locations, but that seems too verbose.
3363 gold_assert(!first_object_linenos.empty());
3364 gold_assert(!linenos.empty());
3365 fprintf(stderr, _(" %s from %s\n"),
3366 first_object_linenos[0].c_str(),
3367 first_object_name.c_str());
3368 fprintf(stderr, _(" %s from %s\n"),
3369 linenos[0].c_str(),
3370 locs->object->name().c_str());
3371 // Only print one broken pair, to avoid needing to
3372 // compare against a list of the disjoint definition
3373 // locations we've found so far. (If we kept comparing
3374 // against just the first one, we'd get a lot of
3375 // redundant complaints about the second definition
3376 // location.)
3377 break;
3378 }
70e654ba
ILT
3379 }
3380 }
e4e5049b
CS
3381 // We only call one_addr2line() in this function, so we can clear its cache.
3382 Dwarf_line_info::clear_addr2line_cache();
70e654ba
ILT
3383}
3384
f6ce93d6
ILT
3385// Warnings functions.
3386
3387// Add a new warning.
3388
3389void
2ea97941 3390Warnings::add_warning(Symbol_table* symtab, const char* name, Object* obj,
cb295612 3391 const std::string& warning)
f6ce93d6 3392{
2ea97941
ILT
3393 name = symtab->canonicalize_name(name);
3394 this->warnings_[name].set(obj, warning);
f6ce93d6
ILT
3395}
3396
3397// Look through the warnings and mark the symbols for which we should
3398// warn. This is called during Layout::finalize when we know the
3399// sources for all the symbols.
3400
3401void
cb295612 3402Warnings::note_warnings(Symbol_table* symtab)
f6ce93d6
ILT
3403{
3404 for (Warning_table::iterator p = this->warnings_.begin();
3405 p != this->warnings_.end();
3406 ++p)
3407 {
3408 Symbol* sym = symtab->lookup(p->first, NULL);
3409 if (sym != NULL
3410 && sym->source() == Symbol::FROM_OBJECT
3411 && sym->object() == p->second.object)
cb295612 3412 sym->set_has_warning();
f6ce93d6
ILT
3413 }
3414}
3415
3416// Issue a warning. This is called when we see a relocation against a
3417// symbol for which has a warning.
3418
75f2446e 3419template<int size, bool big_endian>
f6ce93d6 3420void
75f2446e
ILT
3421Warnings::issue_warning(const Symbol* sym,
3422 const Relocate_info<size, big_endian>* relinfo,
3423 size_t relnum, off_t reloffset) const
f6ce93d6 3424{
a3ad94ed 3425 gold_assert(sym->has_warning());
9d3b0698
ILT
3426
3427 // We don't want to issue a warning for a relocation against the
3428 // symbol in the same object file in which the symbol is defined.
3429 if (sym->object() == relinfo->object)
3430 return;
3431
f6ce93d6 3432 Warning_table::const_iterator p = this->warnings_.find(sym->name());
a3ad94ed 3433 gold_assert(p != this->warnings_.end());
75f2446e
ILT
3434 gold_warning_at_location(relinfo, relnum, reloffset,
3435 "%s", p->second.text.c_str());
f6ce93d6
ILT
3436}
3437
14bfc3f5
ILT
3438// Instantiate the templates we need. We could use the configure
3439// script to restrict this to only the ones needed for implemented
3440// targets.
3441
c7912668
ILT
3442#if defined(HAVE_TARGET_32_LITTLE) || defined(HAVE_TARGET_32_BIG)
3443template
3444void
3445Sized_symbol<32>::allocate_common(Output_data*, Value_type);
3446#endif
3447
3448#if defined(HAVE_TARGET_64_LITTLE) || defined(HAVE_TARGET_64_BIG)
3449template
3450void
3451Sized_symbol<64>::allocate_common(Output_data*, Value_type);
3452#endif
3453
193a53d9 3454#ifdef HAVE_TARGET_32_LITTLE
14bfc3f5
ILT
3455template
3456void
193a53d9 3457Symbol_table::add_from_relobj<32, false>(
6fa2a40b 3458 Sized_relobj_file<32, false>* relobj,
f6ce93d6 3459 const unsigned char* syms,
14bfc3f5 3460 size_t count,
d491d34e 3461 size_t symndx_offset,
14bfc3f5
ILT
3462 const char* sym_names,
3463 size_t sym_name_size,
6fa2a40b 3464 Sized_relobj_file<32, false>::Symbols* sympointers,
92de84a6 3465 size_t* defined);
193a53d9 3466#endif
14bfc3f5 3467
193a53d9 3468#ifdef HAVE_TARGET_32_BIG
14bfc3f5
ILT
3469template
3470void
193a53d9 3471Symbol_table::add_from_relobj<32, true>(
6fa2a40b 3472 Sized_relobj_file<32, true>* relobj,
f6ce93d6 3473 const unsigned char* syms,
14bfc3f5 3474 size_t count,
d491d34e 3475 size_t symndx_offset,
14bfc3f5
ILT
3476 const char* sym_names,
3477 size_t sym_name_size,
6fa2a40b 3478 Sized_relobj_file<32, true>::Symbols* sympointers,
92de84a6 3479 size_t* defined);
193a53d9 3480#endif
14bfc3f5 3481
193a53d9 3482#ifdef HAVE_TARGET_64_LITTLE
14bfc3f5
ILT
3483template
3484void
193a53d9 3485Symbol_table::add_from_relobj<64, false>(
6fa2a40b 3486 Sized_relobj_file<64, false>* relobj,
f6ce93d6 3487 const unsigned char* syms,
14bfc3f5 3488 size_t count,
d491d34e 3489 size_t symndx_offset,
14bfc3f5
ILT
3490 const char* sym_names,
3491 size_t sym_name_size,
6fa2a40b 3492 Sized_relobj_file<64, false>::Symbols* sympointers,
92de84a6 3493 size_t* defined);
193a53d9 3494#endif
14bfc3f5 3495
193a53d9 3496#ifdef HAVE_TARGET_64_BIG
14bfc3f5
ILT
3497template
3498void
193a53d9 3499Symbol_table::add_from_relobj<64, true>(
6fa2a40b 3500 Sized_relobj_file<64, true>* relobj,
f6ce93d6 3501 const unsigned char* syms,
14bfc3f5 3502 size_t count,
d491d34e 3503 size_t symndx_offset,
14bfc3f5
ILT
3504 const char* sym_names,
3505 size_t sym_name_size,
6fa2a40b 3506 Sized_relobj_file<64, true>::Symbols* sympointers,
92de84a6 3507 size_t* defined);
193a53d9 3508#endif
14bfc3f5 3509
89fc3421
CC
3510#ifdef HAVE_TARGET_32_LITTLE
3511template
3512Symbol*
3513Symbol_table::add_from_pluginobj<32, false>(
3514 Sized_pluginobj<32, false>* obj,
3515 const char* name,
3516 const char* ver,
3517 elfcpp::Sym<32, false>* sym);
3518#endif
3519
3520#ifdef HAVE_TARGET_32_BIG
3521template
3522Symbol*
3523Symbol_table::add_from_pluginobj<32, true>(
3524 Sized_pluginobj<32, true>* obj,
3525 const char* name,
3526 const char* ver,
3527 elfcpp::Sym<32, true>* sym);
3528#endif
3529
3530#ifdef HAVE_TARGET_64_LITTLE
3531template
3532Symbol*
3533Symbol_table::add_from_pluginobj<64, false>(
3534 Sized_pluginobj<64, false>* obj,
3535 const char* name,
3536 const char* ver,
3537 elfcpp::Sym<64, false>* sym);
3538#endif
3539
3540#ifdef HAVE_TARGET_64_BIG
3541template
3542Symbol*
3543Symbol_table::add_from_pluginobj<64, true>(
3544 Sized_pluginobj<64, true>* obj,
3545 const char* name,
3546 const char* ver,
3547 elfcpp::Sym<64, true>* sym);
3548#endif
3549
193a53d9 3550#ifdef HAVE_TARGET_32_LITTLE
dbe717ef
ILT
3551template
3552void
193a53d9
ILT
3553Symbol_table::add_from_dynobj<32, false>(
3554 Sized_dynobj<32, false>* dynobj,
dbe717ef
ILT
3555 const unsigned char* syms,
3556 size_t count,
3557 const char* sym_names,
3558 size_t sym_name_size,
3559 const unsigned char* versym,
3560 size_t versym_size,
92de84a6 3561 const std::vector<const char*>* version_map,
6fa2a40b 3562 Sized_relobj_file<32, false>::Symbols* sympointers,
92de84a6 3563 size_t* defined);
193a53d9 3564#endif
dbe717ef 3565
193a53d9 3566#ifdef HAVE_TARGET_32_BIG
dbe717ef
ILT
3567template
3568void
193a53d9
ILT
3569Symbol_table::add_from_dynobj<32, true>(
3570 Sized_dynobj<32, true>* dynobj,
dbe717ef
ILT
3571 const unsigned char* syms,
3572 size_t count,
3573 const char* sym_names,
3574 size_t sym_name_size,
3575 const unsigned char* versym,
3576 size_t versym_size,
92de84a6 3577 const std::vector<const char*>* version_map,
6fa2a40b 3578 Sized_relobj_file<32, true>::Symbols* sympointers,
92de84a6 3579 size_t* defined);
193a53d9 3580#endif
dbe717ef 3581
193a53d9 3582#ifdef HAVE_TARGET_64_LITTLE
dbe717ef
ILT
3583template
3584void
193a53d9
ILT
3585Symbol_table::add_from_dynobj<64, false>(
3586 Sized_dynobj<64, false>* dynobj,
dbe717ef
ILT
3587 const unsigned char* syms,
3588 size_t count,
3589 const char* sym_names,
3590 size_t sym_name_size,
3591 const unsigned char* versym,
3592 size_t versym_size,
92de84a6 3593 const std::vector<const char*>* version_map,
6fa2a40b 3594 Sized_relobj_file<64, false>::Symbols* sympointers,
92de84a6 3595 size_t* defined);
193a53d9 3596#endif
dbe717ef 3597
193a53d9 3598#ifdef HAVE_TARGET_64_BIG
dbe717ef
ILT
3599template
3600void
193a53d9
ILT
3601Symbol_table::add_from_dynobj<64, true>(
3602 Sized_dynobj<64, true>* dynobj,
dbe717ef
ILT
3603 const unsigned char* syms,
3604 size_t count,
3605 const char* sym_names,
3606 size_t sym_name_size,
3607 const unsigned char* versym,
3608 size_t versym_size,
92de84a6 3609 const std::vector<const char*>* version_map,
6fa2a40b 3610 Sized_relobj_file<64, true>::Symbols* sympointers,
92de84a6 3611 size_t* defined);
193a53d9 3612#endif
dbe717ef 3613
cdc29364
CC
3614#ifdef HAVE_TARGET_32_LITTLE
3615template
26d3c67d 3616Sized_symbol<32>*
cdc29364
CC
3617Symbol_table::add_from_incrobj(
3618 Object* obj,
3619 const char* name,
3620 const char* ver,
3621 elfcpp::Sym<32, false>* sym);
3622#endif
3623
3624#ifdef HAVE_TARGET_32_BIG
3625template
26d3c67d 3626Sized_symbol<32>*
cdc29364
CC
3627Symbol_table::add_from_incrobj(
3628 Object* obj,
3629 const char* name,
3630 const char* ver,
3631 elfcpp::Sym<32, true>* sym);
3632#endif
3633
3634#ifdef HAVE_TARGET_64_LITTLE
3635template
26d3c67d 3636Sized_symbol<64>*
cdc29364
CC
3637Symbol_table::add_from_incrobj(
3638 Object* obj,
3639 const char* name,
3640 const char* ver,
3641 elfcpp::Sym<64, false>* sym);
3642#endif
3643
3644#ifdef HAVE_TARGET_64_BIG
3645template
26d3c67d 3646Sized_symbol<64>*
cdc29364
CC
3647Symbol_table::add_from_incrobj(
3648 Object* obj,
3649 const char* name,
3650 const char* ver,
3651 elfcpp::Sym<64, true>* sym);
3652#endif
3653
46fe1623
ILT
3654#if defined(HAVE_TARGET_32_LITTLE) || defined(HAVE_TARGET_32_BIG)
3655template
3656void
fe8718a4 3657Symbol_table::define_with_copy_reloc<32>(
fe8718a4
ILT
3658 Sized_symbol<32>* sym,
3659 Output_data* posd,
2ea97941 3660 elfcpp::Elf_types<32>::Elf_Addr value);
46fe1623
ILT
3661#endif
3662
3663#if defined(HAVE_TARGET_64_LITTLE) || defined(HAVE_TARGET_64_BIG)
3664template
3665void
fe8718a4 3666Symbol_table::define_with_copy_reloc<64>(
fe8718a4
ILT
3667 Sized_symbol<64>* sym,
3668 Output_data* posd,
2ea97941 3669 elfcpp::Elf_types<64>::Elf_Addr value);
46fe1623
ILT
3670#endif
3671
beacaa96
CC
3672#if defined(HAVE_TARGET_32_LITTLE) || defined(HAVE_TARGET_32_BIG)
3673template
3674void
3675Sized_symbol<32>::init_output_data(const char* name, const char* version,
3676 Output_data* od, Value_type value,
3677 Size_type symsize, elfcpp::STT type,
3678 elfcpp::STB binding,
3679 elfcpp::STV visibility,
3680 unsigned char nonvis,
3681 bool offset_is_from_end,
3682 bool is_predefined);
3683#endif
3684
3685#if defined(HAVE_TARGET_64_LITTLE) || defined(HAVE_TARGET_64_BIG)
3686template
3687void
3688Sized_symbol<64>::init_output_data(const char* name, const char* version,
3689 Output_data* od, Value_type value,
3690 Size_type symsize, elfcpp::STT type,
3691 elfcpp::STB binding,
3692 elfcpp::STV visibility,
3693 unsigned char nonvis,
3694 bool offset_is_from_end,
3695 bool is_predefined);
3696#endif
3697
75f2446e
ILT
3698#ifdef HAVE_TARGET_32_LITTLE
3699template
3700void
3701Warnings::issue_warning<32, false>(const Symbol* sym,
3702 const Relocate_info<32, false>* relinfo,
3703 size_t relnum, off_t reloffset) const;
3704#endif
3705
3706#ifdef HAVE_TARGET_32_BIG
3707template
3708void
3709Warnings::issue_warning<32, true>(const Symbol* sym,
3710 const Relocate_info<32, true>* relinfo,
3711 size_t relnum, off_t reloffset) const;
3712#endif
3713
3714#ifdef HAVE_TARGET_64_LITTLE
3715template
3716void
3717Warnings::issue_warning<64, false>(const Symbol* sym,
3718 const Relocate_info<64, false>* relinfo,
3719 size_t relnum, off_t reloffset) const;
3720#endif
3721
3722#ifdef HAVE_TARGET_64_BIG
3723template
3724void
3725Warnings::issue_warning<64, true>(const Symbol* sym,
3726 const Relocate_info<64, true>* relinfo,
3727 size_t relnum, off_t reloffset) const;
3728#endif
3729
14bfc3f5 3730} // End namespace gold.
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