2007-08-29 Randolph Chung <tausq@debian.org>
[deliverable/binutils-gdb.git] / gold / symtab.h
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1// symtab.h -- the gold symbol table -*- C++ -*-
2
3// Symbol_table
4// The symbol table.
5
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6#include <string>
7#include <utility>
ead1e424 8#include <vector>
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9
10#include "elfcpp.h"
14bfc3f5 11#include "stringpool.h"
f6ce93d6 12#include "object.h"
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13
14#ifndef GOLD_SYMTAB_H
15#define GOLD_SYMTAB_H
16
17namespace gold
18{
19
14bfc3f5 20class Object;
f6ce93d6 21class Relobj;
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22template<int size, bool big_endian>
23class Sized_relobj;
f6ce93d6 24class Dynobj;
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25template<int size, bool big_endian>
26class Sized_dynobj;
14b31740 27class Versions;
ead1e424 28class Output_data;
a3ad94ed 29class Output_section;
ead1e424 30class Output_segment;
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31class Output_file;
32class Target;
14bfc3f5 33
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34// The base class of an entry in the symbol table. The symbol table
35// can have a lot of entries, so we don't want this class to big.
36// Size dependent fields can be found in the template class
37// Sized_symbol. Targets may support their own derived classes.
bae7f79e 38
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39class Symbol
40{
41 public:
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42 // Because we want the class to be small, we don't use any virtual
43 // functions. But because symbols can be defined in different
44 // places, we need to classify them. This enum is the different
45 // sources of symbols we support.
46 enum Source
47 {
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48 // Symbol defined in a relocatable or dynamic input file--this is
49 // the most common case.
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50 FROM_OBJECT,
51 // Symbol defined in an Output_data, a special section created by
52 // the target.
53 IN_OUTPUT_DATA,
54 // Symbol defined in an Output_segment, with no associated
55 // section.
56 IN_OUTPUT_SEGMENT,
57 // Symbol value is constant.
58 CONSTANT
59 };
60
61 // When the source is IN_OUTPUT_SEGMENT, we need to describe what
62 // the offset means.
63 enum Segment_offset_base
64 {
65 // From the start of the segment.
66 SEGMENT_START,
67 // From the end of the segment.
68 SEGMENT_END,
69 // From the filesz of the segment--i.e., after the loaded bytes
70 // but before the bytes which are allocated but zeroed.
71 SEGMENT_BSS
72 };
73
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74 // Return the symbol name.
75 const char*
76 name() const
77 { return this->name_; }
78
79 // Return the symbol version. This will return NULL for an
80 // unversioned symbol.
81 const char*
82 version() const
83 { return this->version_; }
84
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85 // Return the symbol source.
86 Source
87 source() const
88 { return this->source_; }
89
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90 // Return the object with which this symbol is associated.
91 Object*
92 object() const
ead1e424 93 {
a3ad94ed 94 gold_assert(this->source_ == FROM_OBJECT);
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95 return this->u_.from_object.object;
96 }
97
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98 // Return the index of the section in the input relocatable or
99 // dynamic object file.
ead1e424 100 unsigned int
16649710 101 shndx() const
ead1e424 102 {
a3ad94ed 103 gold_assert(this->source_ == FROM_OBJECT);
16649710 104 return this->u_.from_object.shndx;
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105 }
106
107 // Return the output data section with which this symbol is
108 // associated, if the symbol was specially defined with respect to
109 // an output data section.
110 Output_data*
111 output_data() const
112 {
a3ad94ed 113 gold_assert(this->source_ == IN_OUTPUT_DATA);
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114 return this->u_.in_output_data.output_data;
115 }
116
117 // If this symbol was defined with respect to an output data
118 // section, return whether the value is an offset from end.
119 bool
120 offset_is_from_end() const
121 {
a3ad94ed 122 gold_assert(this->source_ == IN_OUTPUT_DATA);
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123 return this->u_.in_output_data.offset_is_from_end;
124 }
125
126 // Return the output segment with which this symbol is associated,
127 // if the symbol was specially defined with respect to an output
128 // segment.
129 Output_segment*
130 output_segment() const
131 {
a3ad94ed 132 gold_assert(this->source_ == IN_OUTPUT_SEGMENT);
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133 return this->u_.in_output_segment.output_segment;
134 }
135
136 // If this symbol was defined with respect to an output segment,
137 // return the offset base.
138 Segment_offset_base
139 offset_base() const
140 {
a3ad94ed 141 gold_assert(this->source_ == IN_OUTPUT_SEGMENT);
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142 return this->u_.in_output_segment.offset_base;
143 }
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144
145 // Return the symbol binding.
146 elfcpp::STB
147 binding() const
148 { return this->binding_; }
149
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150 // Return the symbol type.
151 elfcpp::STT
152 type() const
153 { return this->type_; }
154
155 // Return the symbol visibility.
156 elfcpp::STV
157 visibility() const
158 { return this->visibility_; }
159
160 // Return the non-visibility part of the st_other field.
161 unsigned char
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162 nonvis() const
163 { return this->nonvis_; }
14bfc3f5 164
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165 // Return whether this symbol is a forwarder. This will never be
166 // true of a symbol found in the hash table, but may be true of
167 // symbol pointers attached to object files.
168 bool
169 is_forwarder() const
170 { return this->is_forwarder_; }
171
172 // Mark this symbol as a forwarder.
173 void
174 set_forwarder()
175 { this->is_forwarder_ = true; }
176
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177 // Return whether this symbol needs an entry in the dynamic symbol
178 // table.
179 bool
180 needs_dynsym_entry() const
181 { return this->needs_dynsym_entry_; }
182
183 // Mark this symbol as needing an entry in the dynamic symbol table.
184 void
185 set_needs_dynsym_entry()
186 { this->needs_dynsym_entry_ = true; }
187
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188 // Return whether this symbol has been seen in a regular object.
189 bool
190 in_reg() const
191 { return this->in_reg_; }
192
193 // Mark this symbol as having been seen in a regular object.
194 void
195 set_in_reg()
196 { this->in_reg_ = true; }
197
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198 // Return whether this symbol has been seen in a dynamic object.
199 bool
200 in_dyn() const
201 { return this->in_dyn_; }
202
f6ce93d6 203 // Mark this symbol as having been seen in a dynamic object.
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204 void
205 set_in_dyn()
206 { this->in_dyn_ = true; }
207
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208 // Return the index of this symbol in the output file symbol table.
209 // A value of -1U means that this symbol is not going into the
210 // output file. This starts out as zero, and is set to a non-zero
211 // value by Symbol_table::finalize. It is an error to ask for the
212 // symbol table index before it has been set.
213 unsigned int
214 symtab_index() const
215 {
a3ad94ed 216 gold_assert(this->symtab_index_ != 0);
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217 return this->symtab_index_;
218 }
219
220 // Set the index of the symbol in the output file symbol table.
221 void
222 set_symtab_index(unsigned int index)
223 {
a3ad94ed 224 gold_assert(index != 0);
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225 this->symtab_index_ = index;
226 }
227
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228 // Return whether this symbol already has an index in the output
229 // file symbol table.
230 bool
231 has_symtab_index() const
232 { return this->symtab_index_ != 0; }
233
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234 // Return the index of this symbol in the dynamic symbol table. A
235 // value of -1U means that this symbol is not going into the dynamic
236 // symbol table. This starts out as zero, and is set to a non-zero
237 // during Layout::finalize. It is an error to ask for the dynamic
238 // symbol table index before it has been set.
239 unsigned int
240 dynsym_index() const
241 {
a3ad94ed 242 gold_assert(this->dynsym_index_ != 0);
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243 return this->dynsym_index_;
244 }
245
246 // Set the index of the symbol in the dynamic symbol table.
247 void
248 set_dynsym_index(unsigned int index)
249 {
a3ad94ed 250 gold_assert(index != 0);
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251 this->dynsym_index_ = index;
252 }
253
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254 // Return whether this symbol already has an index in the dynamic
255 // symbol table.
256 bool
257 has_dynsym_index() const
258 { return this->dynsym_index_ != 0; }
259
ead1e424 260 // Return whether this symbol has an entry in the GOT section.
92e059d8 261 bool
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262 has_got_offset() const
263 { return this->has_got_offset_; }
264
265 // Return the offset into the GOT section of this symbol.
266 unsigned int
267 got_offset() const
268 {
a3ad94ed 269 gold_assert(this->has_got_offset());
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270 return this->got_offset_;
271 }
272
273 // Set the GOT offset of this symbol.
274 void
275 set_got_offset(unsigned int got_offset)
276 {
277 this->has_got_offset_ = true;
278 this->got_offset_ = got_offset;
279 }
280
a3ad94ed 281 // Return whether this symbol has an entry in the PLT section.
ead1e424 282 bool
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283 has_plt_offset() const
284 { return this->has_plt_offset_; }
285
286 // Return the offset into the PLT section of this symbol.
287 unsigned int
288 plt_offset() const
289 {
290 gold_assert(this->has_plt_offset());
291 return this->plt_offset_;
292 }
293
294 // Set the PLT offset of this symbol.
295 void
296 set_plt_offset(unsigned int plt_offset)
297 {
298 this->has_plt_offset_ = true;
299 this->plt_offset_ = plt_offset;
300 }
301
302 // Return true if the final value of this symbol is known at link
303 // time.
304 bool
305 final_value_is_known(const General_options* options) const
306 {
307 if (options->is_shared())
308 return false;
309 return this->source_ != FROM_OBJECT || !this->object()->is_dynamic();
310 }
ead1e424 311
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312 // Return whether this is a defined symbol (not undefined or
313 // common).
314 bool
315 is_defined() const
316 {
317 return (this->source_ != FROM_OBJECT
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318 || (this->shndx() != elfcpp::SHN_UNDEF
319 && this->shndx() != elfcpp::SHN_COMMON));
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320 }
321
14b31740 322 // Return true if this symbol is from a dynamic object.
a3ad94ed 323 bool
14b31740 324 is_from_dynobj() const
a3ad94ed 325 {
14b31740 326 return this->source_ == FROM_OBJECT && this->object()->is_dynamic();
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327 }
328
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329 // Return whether this is an undefined symbol.
330 bool
331 is_undefined() const
332 {
16649710 333 return this->source_ == FROM_OBJECT && this->shndx() == elfcpp::SHN_UNDEF;
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334 }
335
336 // Return whether this is a common symbol.
337 bool
338 is_common() const
339 {
f6ce93d6 340 return (this->source_ == FROM_OBJECT
16649710 341 && (this->shndx() == elfcpp::SHN_COMMON
f6ce93d6 342 || this->type_ == elfcpp::STT_COMMON));
ead1e424 343 }
92e059d8 344
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345 // Return whether this symbol can be seen outside this object.
346 bool
347 is_externally_visible() const
348 {
349 return (this->visibility_ == elfcpp::STV_DEFAULT
350 || this->visibility_ == elfcpp::STV_PROTECTED);
351 }
352
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353 // Return whether there should be a warning for references to this
354 // symbol.
355 bool
356 has_warning() const
357 { return this->has_warning_; }
358
359 // Mark this symbol as having a warning.
360 void
361 set_has_warning()
362 { this->has_warning_ = true; }
363
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364 protected:
365 // Instances of this class should always be created at a specific
366 // size.
367 Symbol()
f6ce93d6 368 { memset(this, 0, sizeof *this); }
14bfc3f5 369
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370 // Initialize the general fields.
371 void
372 init_fields(const char* name, const char* version,
373 elfcpp::STT type, elfcpp::STB binding,
374 elfcpp::STV visibility, unsigned char nonvis);
375
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376 // Initialize fields from an ELF symbol in OBJECT.
377 template<int size, bool big_endian>
378 void
379 init_base(const char *name, const char* version, Object* object,
380 const elfcpp::Sym<size, big_endian>&);
bae7f79e 381
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382 // Initialize fields for an Output_data.
383 void
384 init_base(const char* name, Output_data*, elfcpp::STT, elfcpp::STB,
385 elfcpp::STV, unsigned char nonvis, bool offset_is_from_end);
386
387 // Initialize fields for an Output_segment.
388 void
389 init_base(const char* name, Output_segment* os, elfcpp::STT type,
390 elfcpp::STB binding, elfcpp::STV visibility,
391 unsigned char nonvis, Segment_offset_base offset_base);
392
393 // Initialize fields for a constant.
394 void
395 init_base(const char* name, elfcpp::STT type, elfcpp::STB binding,
396 elfcpp::STV visibility, unsigned char nonvis);
397
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398 // Override existing symbol.
399 template<int size, bool big_endian>
400 void
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401 override_base(const elfcpp::Sym<size, big_endian>&, Object* object,
402 const char* version);
1564db8d 403
bae7f79e 404 private:
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405 Symbol(const Symbol&);
406 Symbol& operator=(const Symbol&);
407
408 // Symbol name (expected to point into a Stringpool).
409 const char* name_;
410 // Symbol version (expected to point into a Stringpool). This may
411 // be NULL.
bae7f79e 412 const char* version_;
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413
414 union
415 {
416 // This struct is used if SOURCE_ == FROM_OBJECT.
417 struct
418 {
419 // Object in which symbol is defined, or in which it was first
420 // seen.
421 Object* object;
422 // Section number in object_ in which symbol is defined.
16649710 423 unsigned int shndx;
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424 } from_object;
425
426 // This struct is used if SOURCE_ == IN_OUTPUT_DATA.
427 struct
428 {
429 // Output_data in which symbol is defined. Before
430 // Layout::finalize the symbol's value is an offset within the
431 // Output_data.
432 Output_data* output_data;
433 // True if the offset is from the end, false if the offset is
434 // from the beginning.
435 bool offset_is_from_end;
436 } in_output_data;
437
438 // This struct is used if SOURCE_ == IN_OUTPUT_SEGMENT.
439 struct
440 {
441 // Output_segment in which the symbol is defined. Before
442 // Layout::finalize the symbol's value is an offset.
443 Output_segment* output_segment;
444 // The base to use for the offset before Layout::finalize.
445 Segment_offset_base offset_base;
446 } in_output_segment;
447 } u_;
448
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449 // The index of this symbol in the output file. If the symbol is
450 // not going into the output file, this value is -1U. This field
451 // starts as always holding zero. It is set to a non-zero value by
452 // Symbol_table::finalize.
453 unsigned int symtab_index_;
454
455 // The index of this symbol in the dynamic symbol table. If the
456 // symbol is not going into the dynamic symbol table, this value is
457 // -1U. This field starts as always holding zero. It is set to a
458 // non-zero value during Layout::finalize.
459 unsigned int dynsym_index_;
460
ead1e424 461 // If this symbol has an entry in the GOT section (has_got_offset_
c06b7b0b 462 // is true), this is the offset from the start of the GOT section.
ead1e424 463 unsigned int got_offset_;
c06b7b0b 464
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465 // If this symbol has an entry in the PLT section (has_plt_offset_
466 // is true), then this is the offset from the start of the PLT
467 // section.
468 unsigned int plt_offset_;
469
14bfc3f5 470 // Symbol type.
bae7f79e 471 elfcpp::STT type_ : 4;
14bfc3f5 472 // Symbol binding.
bae7f79e 473 elfcpp::STB binding_ : 4;
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474 // Symbol visibility.
475 elfcpp::STV visibility_ : 2;
476 // Rest of symbol st_other field.
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477 unsigned int nonvis_ : 6;
478 // The type of symbol.
f6ce93d6 479 Source source_ : 3;
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480 // True if this symbol always requires special target-specific
481 // handling.
ead1e424 482 bool is_target_special_ : 1;
14bfc3f5 483 // True if this is the default version of the symbol.
1564db8d 484 bool is_def_ : 1;
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485 // True if this symbol really forwards to another symbol. This is
486 // used when we discover after the fact that two different entries
487 // in the hash table really refer to the same symbol. This will
488 // never be set for a symbol found in the hash table, but may be set
489 // for a symbol found in the list of symbols attached to an Object.
490 // It forwards to the symbol found in the forwarders_ map of
491 // Symbol_table.
1564db8d 492 bool is_forwarder_ : 1;
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493 // True if this symbol needs to be in the dynamic symbol table.
494 bool needs_dynsym_entry_ : 1;
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495 // True if we've seen this symbol in a regular object.
496 bool in_reg_ : 1;
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497 // True if we've seen this symbol in a dynamic object.
498 bool in_dyn_ : 1;
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499 // True if the symbol has an entry in the GOT section.
500 bool has_got_offset_ : 1;
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501 // True if the symbol has an entry in the PLT section.
502 bool has_plt_offset_ : 1;
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503 // True if there is a warning for this symbol.
504 bool has_warning_ : 1;
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505};
506
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507// The parts of a symbol which are size specific. Using a template
508// derived class like this helps us use less space on a 32-bit system.
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509
510template<int size>
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511class Sized_symbol : public Symbol
512{
513 public:
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514 typedef typename elfcpp::Elf_types<size>::Elf_Addr Value_type;
515 typedef typename elfcpp::Elf_types<size>::Elf_WXword Size_type;
516
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517 Sized_symbol()
518 { }
519
520 // Initialize fields from an ELF symbol in OBJECT.
521 template<bool big_endian>
522 void
523 init(const char *name, const char* version, Object* object,
524 const elfcpp::Sym<size, big_endian>&);
525
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526 // Initialize fields for an Output_data.
527 void
528 init(const char* name, Output_data*, Value_type value, Size_type symsize,
529 elfcpp::STT, elfcpp::STB, elfcpp::STV, unsigned char nonvis,
530 bool offset_is_from_end);
531
532 // Initialize fields for an Output_segment.
533 void
534 init(const char* name, Output_segment*, Value_type value, Size_type symsize,
535 elfcpp::STT, elfcpp::STB, elfcpp::STV, unsigned char nonvis,
536 Segment_offset_base offset_base);
537
538 // Initialize fields for a constant.
539 void
540 init(const char* name, Value_type value, Size_type symsize,
541 elfcpp::STT, elfcpp::STB, elfcpp::STV, unsigned char nonvis);
542
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543 // Override existing symbol.
544 template<bool big_endian>
545 void
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546 override(const elfcpp::Sym<size, big_endian>&, Object* object,
547 const char* version);
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548
549 // Return the symbol's value.
550 Value_type
551 value() const
552 { return this->value_; }
553
554 // Return the symbol's size (we can't call this 'size' because that
555 // is a template parameter).
556 Size_type
557 symsize() const
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558 { return this->symsize_; }
559
560 // Set the symbol size. This is used when resolving common symbols.
561 void
562 set_symsize(Size_type symsize)
563 { this->symsize_ = symsize; }
1564db8d 564
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565 // Set the symbol value. This is called when we store the final
566 // values of the symbols into the symbol table.
567 void
568 set_value(Value_type value)
569 { this->value_ = value; }
570
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571 private:
572 Sized_symbol(const Sized_symbol&);
573 Sized_symbol& operator=(const Sized_symbol&);
574
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575 // Symbol value. Before Layout::finalize this is the offset in the
576 // input section. This is set to the final value during
577 // Layout::finalize.
1564db8d 578 Value_type value_;
14bfc3f5 579 // Symbol size.
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580 Size_type symsize_;
581};
582
583// A struct describing a symbol defined by the linker, where the value
584// of the symbol is defined based on an output section. This is used
585// for symbols defined by the linker, like "_init_array_start".
586
587struct Define_symbol_in_section
588{
589 // The symbol name.
590 const char* name;
591 // The name of the output section with which this symbol should be
592 // associated. If there is no output section with that name, the
593 // symbol will be defined as zero.
594 const char* output_section;
595 // The offset of the symbol within the output section. This is an
596 // offset from the start of the output section, unless start_at_end
597 // is true, in which case this is an offset from the end of the
598 // output section.
599 uint64_t value;
600 // The size of the symbol.
601 uint64_t size;
602 // The symbol type.
603 elfcpp::STT type;
604 // The symbol binding.
605 elfcpp::STB binding;
606 // The symbol visibility.
607 elfcpp::STV visibility;
608 // The rest of the st_other field.
609 unsigned char nonvis;
610 // If true, the value field is an offset from the end of the output
611 // section.
612 bool offset_is_from_end;
613 // If true, this symbol is defined only if we see a reference to it.
614 bool only_if_ref;
615};
616
617// A struct describing a symbol defined by the linker, where the value
618// of the symbol is defined based on a segment. This is used for
619// symbols defined by the linker, like "_end". We describe the
620// segment with which the symbol should be associated by its
621// characteristics. If no segment meets these characteristics, the
622// symbol will be defined as zero. If there is more than one segment
623// which meets these characteristics, we will use the first one.
624
625struct Define_symbol_in_segment
626{
627 // The symbol name.
628 const char* name;
629 // The segment type where the symbol should be defined, typically
630 // PT_LOAD.
631 elfcpp::PT segment_type;
632 // Bitmask of segment flags which must be set.
633 elfcpp::PF segment_flags_set;
634 // Bitmask of segment flags which must be clear.
635 elfcpp::PF segment_flags_clear;
636 // The offset of the symbol within the segment. The offset is
637 // calculated from the position set by offset_base.
638 uint64_t value;
639 // The size of the symbol.
640 uint64_t size;
641 // The symbol type.
642 elfcpp::STT type;
643 // The symbol binding.
644 elfcpp::STB binding;
645 // The symbol visibility.
646 elfcpp::STV visibility;
647 // The rest of the st_other field.
648 unsigned char nonvis;
649 // The base from which we compute the offset.
650 Symbol::Segment_offset_base offset_base;
651 // If true, this symbol is defined only if we see a reference to it.
652 bool only_if_ref;
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653};
654
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655// This class manages warnings. Warnings are a GNU extension. When
656// we see a section named .gnu.warning.SYM in an object file, and if
657// we wind using the definition of SYM from that object file, then we
658// will issue a warning for any relocation against SYM from a
659// different object file. The text of the warning is the contents of
660// the section. This is not precisely the definition used by the old
661// GNU linker; the old GNU linker treated an occurrence of
662// .gnu.warning.SYM as defining a warning symbol. A warning symbol
663// would trigger a warning on any reference. However, it was
664// inconsistent in that a warning in a dynamic object only triggered
665// if there was no definition in a regular object. This linker is
666// different in that we only issue a warning if we use the symbol
667// definition from the same object file as the warning section.
668
669class Warnings
670{
671 public:
672 Warnings()
673 : warnings_()
674 { }
675
676 // Add a warning for symbol NAME in section SHNDX in object OBJ.
677 void
678 add_warning(Symbol_table* symtab, const char* name, Object* obj,
679 unsigned int shndx);
680
681 // For each symbol for which we should give a warning, make a note
682 // on the symbol.
683 void
684 note_warnings(Symbol_table* symtab);
685
686 // Issue a warning for a reference to SYM at LOCATION.
687 void
c06b7b0b 688 issue_warning(const Symbol* sym, const std::string& location) const;
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689
690 private:
691 Warnings(const Warnings&);
692 Warnings& operator=(const Warnings&);
693
694 // What we need to know to get the warning text.
695 struct Warning_location
696 {
697 // The object the warning is in.
698 Object* object;
699 // The index of the warning section.
700 unsigned int shndx;
701 // The warning text if we have already loaded it.
702 std::string text;
703
704 Warning_location()
705 : object(NULL), shndx(0), text()
706 { }
707
708 void
709 set(Object* o, unsigned int s)
710 {
711 this->object = o;
712 this->shndx = s;
713 }
714
715 void
716 set_text(const char* t, off_t l)
717 { this->text.assign(t, l); }
718 };
719
720 // A mapping from warning symbol names (canonicalized in
721 // Symbol_table's namepool_ field) to
722 typedef Unordered_map<const char*, Warning_location> Warning_table;
723
724 Warning_table warnings_;
725};
726
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727// The main linker symbol table.
728
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729class Symbol_table
730{
731 public:
732 Symbol_table();
733
1564db8d 734 ~Symbol_table();
bae7f79e 735
dbe717ef 736 // Add COUNT external symbols from the relocatable object RELOBJ to
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737 // the symbol table. SYMS is the symbols, SYM_NAMES is their names,
738 // SYM_NAME_SIZE is the size of SYM_NAMES. This sets SYMPOINTERS to
739 // point to the symbols in the symbol table.
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740 template<int size, bool big_endian>
741 void
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742 add_from_relobj(Sized_relobj<size, big_endian>* relobj,
743 const unsigned char* syms, size_t count,
744 const char* sym_names, size_t sym_name_size,
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745 Symbol** sympointers);
746
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747 // Add COUNT dynamic symbols from the dynamic object DYNOBJ to the
748 // symbol table. SYMS is the symbols. SYM_NAMES is their names.
749 // SYM_NAME_SIZE is the size of SYM_NAMES. The other parameters are
750 // symbol version data.
751 template<int size, bool big_endian>
752 void
753 add_from_dynobj(Sized_dynobj<size, big_endian>* dynobj,
754 const unsigned char* syms, size_t count,
755 const char* sym_names, size_t sym_name_size,
756 const unsigned char* versym, size_t versym_size,
757 const std::vector<const char*>*);
758
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759 // Define a special symbol based on an Output_data. It is a
760 // multiple definition error if this symbol is already defined.
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761 Symbol*
762 define_in_output_data(const Target*, const char* name, const char* version,
763 Output_data*, uint64_t value, uint64_t symsize,
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764 elfcpp::STT type, elfcpp::STB binding,
765 elfcpp::STV visibility, unsigned char nonvis,
766 bool offset_is_from_end, bool only_if_ref);
767
768 // Define a special symbol based on an Output_segment. It is a
769 // multiple definition error if this symbol is already defined.
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770 Symbol*
771 define_in_output_segment(const Target*, const char* name,
772 const char* version, Output_segment*,
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773 uint64_t value, uint64_t symsize,
774 elfcpp::STT type, elfcpp::STB binding,
775 elfcpp::STV visibility, unsigned char nonvis,
776 Symbol::Segment_offset_base, bool only_if_ref);
777
778 // Define a special symbol with a constant value. It is a multiple
779 // definition error if this symbol is already defined.
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780 Symbol*
781 define_as_constant(const Target*, const char* name, const char* version,
782 uint64_t value, uint64_t symsize, elfcpp::STT type,
783 elfcpp::STB binding, elfcpp::STV visibility,
784 unsigned char nonvis, bool only_if_ref);
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785
786 // Define a set of symbols in output sections.
787 void
14b31740 788 define_symbols(const Layout*, const Target*, int count,
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789 const Define_symbol_in_section*);
790
791 // Define a set of symbols in output segments.
792 void
14b31740 793 define_symbols(const Layout*, const Target*, int count,
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794 const Define_symbol_in_segment*);
795
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796 // Look up a symbol.
797 Symbol*
798 lookup(const char*, const char* version = NULL) const;
799
14bfc3f5 800 // Return the real symbol associated with the forwarder symbol FROM.
bae7f79e 801 Symbol*
c06b7b0b 802 resolve_forwards(const Symbol* from) const;
bae7f79e 803
a3ad94ed 804 // Return the bitsize (32 or 64) of the symbols in the table.
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805 int
806 get_size() const
807 { return this->size_; }
bae7f79e 808
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809 // Return the sized version of a symbol in this table.
810 template<int size>
811 Sized_symbol<size>*
5482377d 812 get_sized_symbol(Symbol* ACCEPT_SIZE) const;
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813
814 template<int size>
815 const Sized_symbol<size>*
5482377d 816 get_sized_symbol(const Symbol* ACCEPT_SIZE) const;
54dc6425 817
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818 // Return the count of undefined symbols seen.
819 int
820 saw_undefined() const
821 { return this->saw_undefined_; }
822
823 // Allocate the common symbols
824 void
825 allocate_commons(const General_options&, Layout*);
826
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827 // Add a warning for symbol NAME in section SHNDX in object OBJ.
828 void
829 add_warning(const char* name, Object* obj, unsigned int shndx)
830 { this->warnings_.add_warning(this, name, obj, shndx); }
831
832 // Canonicalize a symbol name for use in the hash table.
833 const char*
834 canonicalize_name(const char* name)
f0641a0b 835 { return this->namepool_.add(name, NULL); }
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836
837 // Possibly issue a warning for a reference to SYM at LOCATION which
838 // is in OBJ.
839 void
c06b7b0b 840 issue_warning(const Symbol* sym, const std::string& location) const
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841 { this->warnings_.issue_warning(sym, location); }
842
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843 // Set the dynamic symbol indexes. INDEX is the index of the first
844 // global dynamic symbol. Pointers to the symbols are stored into
845 // the vector. The names are stored into the Stringpool. This
846 // returns an updated dynamic symbol index.
847 unsigned int
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848 set_dynsym_indexes(const General_options*, const Target*, unsigned int index,
849 std::vector<Symbol*>*, Stringpool*, Versions*);
a3ad94ed 850
75f65a3e 851 // Finalize the symbol table after we have set the final addresses
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852 // of all the input sections. This sets the final symbol indexes,
853 // values and adds the names to *POOL. INDEX is the index of the
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854 // first global symbol. OFF is the file offset of the global symbol
855 // table, DYNOFF is the offset of the globals in the dynamic symbol
856 // table, DYN_GLOBAL_INDEX is the index of the first global dynamic
857 // symbol, and DYNCOUNT is the number of global dynamic symbols.
858 // This records the parameters, and returns the new file offset.
75f65a3e 859 off_t
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860 finalize(unsigned int index, off_t off, off_t dynoff,
861 size_t dyn_global_index, size_t dyncount, Stringpool* pool);
1564db8d 862
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863 // Write out the global symbols.
864 void
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865 write_globals(const Target*, const Stringpool*, const Stringpool*,
866 Output_file*) const;
61ba1cf9 867
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868 // Write out a section symbol. Return the updated offset.
869 void
870 write_section_symbol(const Target*, const Output_section*, Output_file*,
871 off_t) const;
872
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873 private:
874 Symbol_table(const Symbol_table&);
875 Symbol_table& operator=(const Symbol_table&);
876
a3ad94ed 877 // Set the size (32 or 64) of the symbols in the table.
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878 void
879 set_size(int size)
880 { this->size_ = size; }
881
882 // Make FROM a forwarder symbol to TO.
883 void
884 make_forwarder(Symbol* from, Symbol* to);
885
886 // Add a symbol.
887 template<int size, bool big_endian>
888 Symbol*
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889 add_from_object(Object*, const char *name, Stringpool::Key name_key,
890 const char *version, Stringpool::Key version_key,
891 bool def, const elfcpp::Sym<size, big_endian>& sym);
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892
893 // Resolve symbols.
894 template<int size, bool big_endian>
895 static void
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896 resolve(Sized_symbol<size>* to,
897 const elfcpp::Sym<size, big_endian>& sym,
14b31740 898 Object*, const char* version);
14bfc3f5 899
1564db8d 900 template<int size, bool big_endian>
14bfc3f5 901 static void
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902 resolve(Sized_symbol<size>* to, const Sized_symbol<size>* from,
903 const char* version ACCEPT_SIZE_ENDIAN);
904
905 // Define a special symbol.
906 template<int size, bool big_endian>
907 Sized_symbol<size>*
908 define_special_symbol(const Target* target, const char* name,
909 const char* version, bool only_if_ref
910 ACCEPT_SIZE_ENDIAN);
14bfc3f5 911
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912 // Define a symbol in an Output_data, sized version.
913 template<int size>
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914 Sized_symbol<size>*
915 do_define_in_output_data(const Target*, const char* name,
916 const char* version, Output_data*,
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917 typename elfcpp::Elf_types<size>::Elf_Addr value,
918 typename elfcpp::Elf_types<size>::Elf_WXword ssize,
919 elfcpp::STT type, elfcpp::STB binding,
920 elfcpp::STV visibility, unsigned char nonvis,
921 bool offset_is_from_end, bool only_if_ref);
922
923 // Define a symbol in an Output_segment, sized version.
924 template<int size>
14b31740 925 Sized_symbol<size>*
ead1e424 926 do_define_in_output_segment(
14b31740 927 const Target*, const char* name, const char* version, Output_segment* os,
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928 typename elfcpp::Elf_types<size>::Elf_Addr value,
929 typename elfcpp::Elf_types<size>::Elf_WXword ssize,
930 elfcpp::STT type, elfcpp::STB binding,
931 elfcpp::STV visibility, unsigned char nonvis,
932 Symbol::Segment_offset_base offset_base, bool only_if_ref);
933
934 // Define a symbol as a constant, sized version.
935 template<int size>
14b31740 936 Sized_symbol<size>*
ead1e424 937 do_define_as_constant(
14b31740 938 const Target*, const char* name, const char* version,
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939 typename elfcpp::Elf_types<size>::Elf_Addr value,
940 typename elfcpp::Elf_types<size>::Elf_WXword ssize,
941 elfcpp::STT type, elfcpp::STB binding,
942 elfcpp::STV visibility, unsigned char nonvis,
943 bool only_if_ref);
944
945 // Allocate the common symbols, sized version.
946 template<int size>
947 void
948 do_allocate_commons(const General_options&, Layout*);
949
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950 // Finalize symbols specialized for size.
951 template<int size>
952 off_t
c06b7b0b 953 sized_finalize(unsigned int, off_t, Stringpool*);
75f65a3e 954
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955 // Write globals specialized for size and endianness.
956 template<int size, bool big_endian>
957 void
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958 sized_write_globals(const Target*, const Stringpool*, const Stringpool*,
959 Output_file*) const;
960
961 // Write out a symbol to P.
962 template<int size, bool big_endian>
963 void
964 sized_write_symbol(Sized_symbol<size>*, unsigned int shndx,
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965 const Stringpool*, unsigned char* p
966 ACCEPT_SIZE_ENDIAN) const;
61ba1cf9 967
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968 // Write out a section symbol, specialized for size and endianness.
969 template<int size, bool big_endian>
970 void
971 sized_write_section_symbol(const Output_section*, Output_file*, off_t) const;
972
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973 // The type of the symbol hash table.
974
f0641a0b 975 typedef std::pair<Stringpool::Key, Stringpool::Key> Symbol_table_key;
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976
977 struct Symbol_table_hash
978 {
979 size_t
980 operator()(const Symbol_table_key&) const;
981 };
982
983 struct Symbol_table_eq
984 {
985 bool
986 operator()(const Symbol_table_key&, const Symbol_table_key&) const;
987 };
988
989 typedef Unordered_map<Symbol_table_key, Symbol*, Symbol_table_hash,
990 Symbol_table_eq> Symbol_table_type;
991
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992 // The type of the list of common symbols.
993
994 typedef std::vector<Symbol*> Commons_type;
995
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996 // The size of the symbols in the symbol table (32 or 64).
997 int size_;
998
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999 // We increment this every time we see a new undefined symbol, for
1000 // use in archive groups.
1001 int saw_undefined_;
1002
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1003 // The index of the first global symbol in the output file.
1004 unsigned int first_global_index_;
1005
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1006 // The file offset within the output symtab section where we should
1007 // write the table.
1008 off_t offset_;
1009
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1010 // The number of global symbols we want to write out.
1011 size_t output_count_;
1012
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1013 // The file offset of the global dynamic symbols, or 0 if none.
1014 off_t dynamic_offset_;
1015
1016 // The index of the first global dynamic symbol.
1017 unsigned int first_dynamic_global_index_;
1018
1019 // The number of global dynamic symbols, or 0 if none.
1020 off_t dynamic_count_;
1021
54dc6425 1022 // The symbol hash table.
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1023 Symbol_table_type table_;
1024
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1025 // A pool of symbol names. This is used for all global symbols.
1026 // Entries in the hash table point into this pool.
14bfc3f5 1027 Stringpool namepool_;
bae7f79e 1028
14bfc3f5 1029 // Forwarding symbols.
c06b7b0b 1030 Unordered_map<const Symbol*, Symbol*> forwarders_;
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1031
1032 // We don't expect there to be very many common symbols, so we keep
1033 // a list of them. When we find a common symbol we add it to this
1034 // list. It is possible that by the time we process the list the
1035 // symbol is no longer a common symbol. It may also have become a
1036 // forwarder.
1037 Commons_type commons_;
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1038
1039 // Manage symbol warnings.
1040 Warnings warnings_;
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1041};
1042
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1043// We inline get_sized_symbol for efficiency.
1044
1045template<int size>
1046Sized_symbol<size>*
5482377d 1047Symbol_table::get_sized_symbol(Symbol* sym ACCEPT_SIZE) const
1564db8d 1048{
a3ad94ed 1049 gold_assert(size == this->get_size());
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1050 return static_cast<Sized_symbol<size>*>(sym);
1051}
1052
1053template<int size>
1054const Sized_symbol<size>*
5482377d 1055Symbol_table::get_sized_symbol(const Symbol* sym ACCEPT_SIZE) const
1564db8d 1056{
a3ad94ed 1057 gold_assert(size == this->get_size());
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1058 return static_cast<const Sized_symbol<size>*>(sym);
1059}
1060
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1061} // End namespace gold.
1062
1063#endif // !defined(GOLD_SYMTAB_H)
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