Fix a typo in comments.
[deliverable/binutils-gdb.git] / gold / object.h
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1// object.h -- support for an object file for linking in gold -*- C++ -*-
2
dde3f402 3// Copyright 2006, 2007, 2008, 2009, 2010 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#ifndef GOLD_OBJECT_H
24#define GOLD_OBJECT_H
25
92e059d8 26#include <string>
a2fb1b05 27#include <vector>
14bfc3f5 28
bae7f79e 29#include "elfcpp.h"
645f8123 30#include "elfcpp_file.h"
bae7f79e 31#include "fileread.h"
14bfc3f5 32#include "target.h"
b0193076 33#include "archive.h"
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34
35namespace gold
36{
37
92e059d8 38class General_options;
17a1d0a9 39class Task;
92de84a6 40class Cref;
a2fb1b05 41class Layout;
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42class Output_section;
43class Output_file;
d491d34e 44class Output_symtab_xindex;
89fc3421 45class Pluginobj;
f6ce93d6 46class Dynobj;
4625f782 47class Object_merge_map;
6a74a719 48class Relocatable_relocs;
6d03d481 49class Symbols_data;
a2fb1b05 50
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51template<typename Stringpool_char>
52class Stringpool_template;
53
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54// Data to pass from read_symbols() to add_symbols().
55
56struct Read_symbols_data
57{
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58 Read_symbols_data()
59 : section_headers(NULL), section_names(NULL), symbols(NULL),
60 symbol_names(NULL), versym(NULL), verdef(NULL), verneed(NULL)
61 { }
62
63 ~Read_symbols_data();
64
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65 // Section headers.
66 File_view* section_headers;
67 // Section names.
68 File_view* section_names;
69 // Size of section name data in bytes.
8383303e 70 section_size_type section_names_size;
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71 // Symbol data.
72 File_view* symbols;
73 // Size of symbol data in bytes.
8383303e 74 section_size_type symbols_size;
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75 // Offset of external symbols within symbol data. This structure
76 // sometimes contains only external symbols, in which case this will
77 // be zero. Sometimes it contains all symbols.
8383303e 78 section_offset_type external_symbols_offset;
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79 // Symbol names.
80 File_view* symbol_names;
81 // Size of symbol name data in bytes.
8383303e 82 section_size_type symbol_names_size;
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83
84 // Version information. This is only used on dynamic objects.
85 // Version symbol data (from SHT_GNU_versym section).
86 File_view* versym;
8383303e 87 section_size_type versym_size;
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88 // Version definition data (from SHT_GNU_verdef section).
89 File_view* verdef;
8383303e 90 section_size_type verdef_size;
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91 unsigned int verdef_info;
92 // Needed version data (from SHT_GNU_verneed section).
93 File_view* verneed;
8383303e 94 section_size_type verneed_size;
dbe717ef 95 unsigned int verneed_info;
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96};
97
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98// Information used to print error messages.
99
100struct Symbol_location_info
101{
102 std::string source_file;
103 std::string enclosing_symbol_name;
104 int line_number;
105};
106
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107// Data about a single relocation section. This is read in
108// read_relocs and processed in scan_relocs.
109
110struct Section_relocs
111{
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112 Section_relocs()
113 : contents(NULL)
114 { }
115
116 ~Section_relocs()
117 { delete this->contents; }
118
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119 // Index of reloc section.
120 unsigned int reloc_shndx;
121 // Index of section that relocs apply to.
122 unsigned int data_shndx;
123 // Contents of reloc section.
124 File_view* contents;
125 // Reloc section type.
126 unsigned int sh_type;
127 // Number of reloc entries.
128 size_t reloc_count;
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129 // Output section.
130 Output_section* output_section;
131 // Whether this section has special handling for offsets.
132 bool needs_special_offset_handling;
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133 // Whether the data section is allocated (has the SHF_ALLOC flag set).
134 bool is_data_section_allocated;
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135};
136
137// Relocations in an object file. This is read in read_relocs and
138// processed in scan_relocs.
139
140struct Read_relocs_data
141{
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142 Read_relocs_data()
143 : local_symbols(NULL)
144 { }
145
146 ~Read_relocs_data()
147 { delete this->local_symbols; }
148
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149 typedef std::vector<Section_relocs> Relocs_list;
150 // The relocations.
151 Relocs_list relocs;
152 // The local symbols.
153 File_view* local_symbols;
154};
155
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156// The Xindex class manages section indexes for objects with more than
157// 0xff00 sections.
158
159class Xindex
160{
161 public:
162 Xindex(int large_shndx_offset)
163 : large_shndx_offset_(large_shndx_offset), symtab_xindex_()
164 { }
165
166 // Initialize the symtab_xindex_ array, given the object and the
167 // section index of the symbol table to use.
168 template<int size, bool big_endian>
169 void
170 initialize_symtab_xindex(Object*, unsigned int symtab_shndx);
171
172 // Read in the symtab_xindex_ array, given its section index.
173 // PSHDRS may optionally point to the section headers.
174 template<int size, bool big_endian>
175 void
176 read_symtab_xindex(Object*, unsigned int xindex_shndx,
177 const unsigned char* pshdrs);
178
179 // Symbol SYMNDX in OBJECT has a section of SHN_XINDEX; return the
180 // real section index.
181 unsigned int
182 sym_xindex_to_shndx(Object* object, unsigned int symndx);
183
184 private:
185 // The type of the array giving the real section index for symbols
186 // whose st_shndx field holds SHN_XINDEX.
187 typedef std::vector<unsigned int> Symtab_xindex;
188
189 // Adjust a section index if necessary. This should only be called
190 // for ordinary section indexes.
191 unsigned int
192 adjust_shndx(unsigned int shndx)
193 {
194 if (shndx >= elfcpp::SHN_LORESERVE)
195 shndx += this->large_shndx_offset_;
196 return shndx;
197 }
198
199 // Adjust to apply to large section indexes.
200 int large_shndx_offset_;
201 // The data from the SHT_SYMTAB_SHNDX section.
202 Symtab_xindex symtab_xindex_;
203};
204
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205// Object is an abstract base class which represents either a 32-bit
206// or a 64-bit input object. This can be a regular object file
207// (ET_REL) or a shared object (ET_DYN).
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208
209class Object
210{
211 public:
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212 typedef std::vector<Symbol*> Symbols;
213
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214 // NAME is the name of the object as we would report it to the user
215 // (e.g., libfoo.a(bar.o) if this is in an archive. INPUT_FILE is
216 // used to read the file. OFFSET is the offset within the input
217 // file--0 for a .o or .so file, something else for a .a file.
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218 Object(const std::string& name, Input_file* input_file, bool is_dynamic,
219 off_t offset = 0)
220 : name_(name), input_file_(input_file), offset_(offset), shnum_(-1U),
221 is_dynamic_(is_dynamic), is_needed_(false), uses_split_stack_(false),
594c8e5e 222 has_no_split_stack_(false), no_export_(false), xindex_(NULL)
2ea97941 223 { input_file->file().add_object(); }
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224
225 virtual ~Object()
cb295612 226 { this->input_file_->file().remove_object(); }
bae7f79e 227
14bfc3f5 228 // Return the name of the object as we would report it to the tuser.
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229 const std::string&
230 name() const
231 { return this->name_; }
232
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233 // Get the offset into the file.
234 off_t
235 offset() const
236 { return this->offset_; }
237
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238 // Return whether this is a dynamic object.
239 bool
240 is_dynamic() const
241 { return this->is_dynamic_; }
242
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243 // Return whether this object is needed--true if it is a dynamic
244 // object which defines some symbol referenced by a regular object.
245 // We keep the flag here rather than in Dynobj for convenience when
246 // setting it.
247 bool
248 is_needed() const
249 { return this->is_needed_; }
250
251 // Record that this object is needed.
252 void
253 set_is_needed()
254 { this->is_needed_ = true; }
255
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256 // Return whether this object was compiled with -fsplit-stack.
257 bool
258 uses_split_stack() const
259 { return this->uses_split_stack_; }
260
261 // Return whether this object contains any functions compiled with
262 // the no_split_stack attribute.
263 bool
264 has_no_split_stack() const
265 { return this->has_no_split_stack_; }
266
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267 // Returns NULL for Objects that are not plugin objects. This method
268 // is overridden in the Pluginobj class.
269 Pluginobj*
270 pluginobj()
271 { return this->do_pluginobj(); }
272
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273 // Get the file. We pass on const-ness.
274 Input_file*
275 input_file()
276 { return this->input_file_; }
277
278 const Input_file*
279 input_file() const
280 { return this->input_file_; }
281
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282 // Lock the underlying file.
283 void
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284 lock(const Task* t)
285 { this->input_file()->file().lock(t); }
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286
287 // Unlock the underlying file.
288 void
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289 unlock(const Task* t)
290 { this->input_file()->file().unlock(t); }
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291
292 // Return whether the underlying file is locked.
293 bool
294 is_locked() const
7004837e 295 { return this->input_file()->file().is_locked(); }
a2fb1b05 296
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297 // Return the token, so that the task can be queued.
298 Task_token*
299 token()
300 { return this->input_file()->file().token(); }
301
302 // Release the underlying file.
303 void
304 release()
305 { this->input_file_->file().release(); }
306
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307 // Return whether we should just read symbols from this file.
308 bool
309 just_symbols() const
310 { return this->input_file()->just_symbols(); }
311
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312 // Get the number of sections.
313 unsigned int
314 shnum() const
315 { return this->shnum_; }
a2fb1b05 316
f6ce93d6 317 // Return a view of the contents of a section. Set *PLEN to the
9eb9fa57 318 // size. CACHE is a hint as in File_read::get_view.
f6ce93d6 319 const unsigned char*
8383303e 320 section_contents(unsigned int shndx, section_size_type* plen, bool cache);
f6ce93d6 321
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322 // Adjust a symbol's section index as needed. SYMNDX is the index
323 // of the symbol and SHNDX is the symbol's section from
324 // get_st_shndx. This returns the section index. It sets
325 // *IS_ORDINARY to indicate whether this is a normal section index,
326 // rather than a special code between SHN_LORESERVE and
327 // SHN_HIRESERVE.
328 unsigned int
329 adjust_sym_shndx(unsigned int symndx, unsigned int shndx, bool* is_ordinary)
330 {
331 if (shndx < elfcpp::SHN_LORESERVE)
332 *is_ordinary = true;
333 else if (shndx == elfcpp::SHN_XINDEX)
334 {
335 if (this->xindex_ == NULL)
336 this->xindex_ = this->do_initialize_xindex();
337 shndx = this->xindex_->sym_xindex_to_shndx(this, symndx);
338 *is_ordinary = true;
339 }
340 else
341 *is_ordinary = false;
342 return shndx;
343 }
344
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345 // Return the size of a section given a section index.
346 uint64_t
347 section_size(unsigned int shndx)
348 { return this->do_section_size(shndx); }
349
350 // Return the name of a section given a section index.
f6ce93d6 351 std::string
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352 section_name(unsigned int shndx)
353 { return this->do_section_name(shndx); }
354
355 // Return the section flags given a section index.
356 uint64_t
357 section_flags(unsigned int shndx)
358 { return this->do_section_flags(shndx); }
f6ce93d6 359
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360 // Return the section entsize given a section index.
361 uint64_t
362 section_entsize(unsigned int shndx)
363 { return this->do_section_entsize(shndx); }
364
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365 // Return the section address given a section index.
366 uint64_t
367 section_address(unsigned int shndx)
368 { return this->do_section_address(shndx); }
369
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370 // Return the section type given a section index.
371 unsigned int
372 section_type(unsigned int shndx)
373 { return this->do_section_type(shndx); }
374
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375 // Return the section link field given a section index.
376 unsigned int
377 section_link(unsigned int shndx)
378 { return this->do_section_link(shndx); }
379
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380 // Return the section info field given a section index.
381 unsigned int
382 section_info(unsigned int shndx)
383 { return this->do_section_info(shndx); }
384
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385 // Return the required section alignment given a section index.
386 uint64_t
387 section_addralign(unsigned int shndx)
388 { return this->do_section_addralign(shndx); }
389
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390 // Return the output section given a section index.
391 Output_section*
392 output_section(unsigned int shndx) const
393 { return this->do_output_section(shndx); }
394
395 // Given a section index, return the offset in the Output_section.
396 // The return value will be -1U if the section is specially mapped,
397 // such as a merge section.
398 uint64_t
399 output_section_offset(unsigned int shndx) const
400 { return this->do_output_section_offset(shndx); }
401
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402 // Read the symbol information.
403 void
404 read_symbols(Read_symbols_data* sd)
405 { return this->do_read_symbols(sd); }
406
407 // Pass sections which should be included in the link to the Layout
408 // object, and record where the sections go in the output file.
409 void
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410 layout(Symbol_table* symtab, Layout* layout, Read_symbols_data* sd)
411 { this->do_layout(symtab, layout, sd); }
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412
413 // Add symbol information to the global symbol table.
414 void
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415 add_symbols(Symbol_table* symtab, Read_symbols_data* sd, Layout *layout)
416 { this->do_add_symbols(symtab, sd, layout); }
5a6f7e2d 417
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418 // Add symbol information to the global symbol table.
419 Archive::Should_include
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420 should_include_member(Symbol_table* symtab, Layout* layout,
421 Read_symbols_data* sd, std::string* why)
422 { return this->do_should_include_member(symtab, layout, sd, why); }
b0193076 423
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424 // Functions and types for the elfcpp::Elf_file interface. This
425 // permit us to use Object as the File template parameter for
426 // elfcpp::Elf_file.
427
428 // The View class is returned by view. It must support a single
429 // method, data(). This is trivial, because get_view does what we
430 // need.
431 class View
432 {
433 public:
434 View(const unsigned char* p)
435 : p_(p)
436 { }
437
438 const unsigned char*
439 data() const
440 { return this->p_; }
441
442 private:
443 const unsigned char* p_;
444 };
445
446 // Return a View.
447 View
8383303e 448 view(off_t file_offset, section_size_type data_size)
39d0cb0e 449 { return View(this->get_view(file_offset, data_size, true, true)); }
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450
451 // Report an error.
452 void
75f2446e 453 error(const char* format, ...) const ATTRIBUTE_PRINTF_2;
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454
455 // A location in the file.
456 struct Location
457 {
458 off_t file_offset;
459 off_t data_size;
460
8383303e 461 Location(off_t fo, section_size_type ds)
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462 : file_offset(fo), data_size(ds)
463 { }
464 };
465
466 // Get a View given a Location.
467 View view(Location loc)
39d0cb0e 468 { return View(this->get_view(loc.file_offset, loc.data_size, true, true)); }
645f8123 469
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470 // Get a view into the underlying file.
471 const unsigned char*
39d0cb0e 472 get_view(off_t start, section_size_type size, bool aligned, bool cache)
cb295612 473 {
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474 return this->input_file()->file().get_view(this->offset_, start, size,
475 aligned, cache);
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476 }
477
478 // Get a lasting view into the underlying file.
479 File_view*
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480 get_lasting_view(off_t start, section_size_type size, bool aligned,
481 bool cache)
cb295612 482 {
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483 return this->input_file()->file().get_lasting_view(this->offset_, start,
484 size, aligned, cache);
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485 }
486
487 // Read data from the underlying file.
488 void
2a00e4fb 489 read(off_t start, section_size_type size, void* p)
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490 { this->input_file()->file().read(start + this->offset_, size, p); }
491
492 // Read multiple data from the underlying file.
493 void
494 read_multiple(const File_read::Read_multiple& rm)
495 { this->input_file()->file().read_multiple(this->offset_, rm); }
496
497 // Stop caching views in the underlying file.
498 void
499 clear_view_cache_marks()
500 { this->input_file()->file().clear_view_cache_marks(); }
501
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502 // Get the number of global symbols defined by this object, and the
503 // number of the symbols whose final definition came from this
504 // object.
505 void
506 get_global_symbol_counts(const Symbol_table* symtab, size_t* defined,
507 size_t* used) const
508 { this->do_get_global_symbol_counts(symtab, defined, used); }
509
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510 // Get the symbols defined in this object.
511 const Symbols*
512 get_global_symbols() const
513 { return this->do_get_global_symbols(); }
514
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515 // Return whether this object was found in a system directory.
516 bool
517 is_in_system_directory() const
518 { return this->input_file()->is_in_system_directory(); }
519
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520 // Return whether we found this object by searching a directory.
521 bool
522 searched_for() const
523 { return this->input_file()->will_search_for(); }
524
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525 bool
526 no_export() const
527 { return this->no_export_; }
528
529 void
530 set_no_export(bool value)
531 { this->no_export_ = value; }
532
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533 // Return TRUE if the section is a compressed debug section, and set
534 // *UNCOMPRESSED_SIZE to the size of the uncompressed data.
535 bool
536 section_is_compressed(unsigned int shndx,
537 section_size_type* uncompressed_size) const
538 { return this->do_section_is_compressed(shndx, uncompressed_size); }
539
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540 // Return the index of the first incremental relocation for symbol SYMNDX.
541 unsigned int
542 get_incremental_reloc_base(unsigned int symndx) const
543 { return this->do_get_incremental_reloc_base(symndx); }
544
545 // Return the number of incremental relocations for symbol SYMNDX.
546 unsigned int
547 get_incremental_reloc_count(unsigned int symndx) const
548 { return this->do_get_incremental_reloc_count(symndx); }
549
f6ce93d6 550 protected:
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551 // Returns NULL for Objects that are not plugin objects. This method
552 // is overridden in the Pluginobj class.
553 virtual Pluginobj*
554 do_pluginobj()
555 { return NULL; }
556
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557 // Read the symbols--implemented by child class.
558 virtual void
559 do_read_symbols(Read_symbols_data*) = 0;
560
561 // Lay out sections--implemented by child class.
562 virtual void
7e1edb90 563 do_layout(Symbol_table*, Layout*, Read_symbols_data*) = 0;
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564
565 // Add symbol information to the global symbol table--implemented by
566 // child class.
567 virtual void
f488e4b0 568 do_add_symbols(Symbol_table*, Read_symbols_data*, Layout*) = 0;
f6ce93d6 569
b0193076 570 virtual Archive::Should_include
88a4108b 571 do_should_include_member(Symbol_table* symtab, Layout*, Read_symbols_data*,
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572 std::string* why) = 0;
573
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574 // Return the location of the contents of a section. Implemented by
575 // child class.
576 virtual Location
a3ad94ed 577 do_section_contents(unsigned int shndx) = 0;
f6ce93d6 578
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579 // Get the size of a section--implemented by child class.
580 virtual uint64_t
581 do_section_size(unsigned int shndx) = 0;
582
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583 // Get the name of a section--implemented by child class.
584 virtual std::string
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585 do_section_name(unsigned int shndx) = 0;
586
587 // Get section flags--implemented by child class.
588 virtual uint64_t
589 do_section_flags(unsigned int shndx) = 0;
f6ce93d6 590
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591 // Get section entsize--implemented by child class.
592 virtual uint64_t
593 do_section_entsize(unsigned int shndx) = 0;
594
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595 // Get section address--implemented by child class.
596 virtual uint64_t
597 do_section_address(unsigned int shndx) = 0;
598
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599 // Get section type--implemented by child class.
600 virtual unsigned int
601 do_section_type(unsigned int shndx) = 0;
602
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603 // Get section link field--implemented by child class.
604 virtual unsigned int
605 do_section_link(unsigned int shndx) = 0;
606
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607 // Get section info field--implemented by child class.
608 virtual unsigned int
609 do_section_info(unsigned int shndx) = 0;
610
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611 // Get section alignment--implemented by child class.
612 virtual uint64_t
613 do_section_addralign(unsigned int shndx) = 0;
614
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615 // Return the output section given a section index--implemented
616 // by child class.
617 virtual Output_section*
618 do_output_section(unsigned int) const
619 { gold_unreachable(); }
620
621 // Get the offset of a section--implemented by child class.
622 virtual uint64_t
623 do_output_section_offset(unsigned int) const
624 { gold_unreachable(); }
625
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626 // Return the Xindex structure to use.
627 virtual Xindex*
628 do_initialize_xindex() = 0;
629
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630 // Implement get_global_symbol_counts--implemented by child class.
631 virtual void
632 do_get_global_symbol_counts(const Symbol_table*, size_t*, size_t*) const = 0;
633
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634 virtual const Symbols*
635 do_get_global_symbols() const = 0;
636
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637 // Set the number of sections.
638 void
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639 set_shnum(int shnum)
640 { this->shnum_ = shnum; }
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641
642 // Functions used by both Sized_relobj and Sized_dynobj.
643
644 // Read the section data into a Read_symbols_data object.
645 template<int size, bool big_endian>
646 void
647 read_section_data(elfcpp::Elf_file<size, big_endian, Object>*,
648 Read_symbols_data*);
649
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650 // Let the child class initialize the xindex object directly.
651 void
652 set_xindex(Xindex* xindex)
653 {
654 gold_assert(this->xindex_ == NULL);
655 this->xindex_ = xindex;
656 }
657
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658 // If NAME is the name of a special .gnu.warning section, arrange
659 // for the warning to be issued. SHNDX is the section index.
660 // Return whether it is a warning section.
661 bool
662 handle_gnu_warning_section(const char* name, unsigned int shndx,
663 Symbol_table*);
f6ce93d6 664
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665 // If NAME is the name of the special section which indicates that
666 // this object was compiled with -fstack-split, mark it accordingly,
667 // and return true. Otherwise return false.
668 bool
669 handle_split_stack_section(const char* name);
670
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671 // Return TRUE if the section is a compressed debug section, and set
672 // *UNCOMPRESSED_SIZE to the size of the uncompressed data.
673 virtual bool
674 do_section_is_compressed(unsigned int, section_size_type*) const
675 { return false; }
676
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677 // Return the index of the first incremental relocation for symbol SYMNDX--
678 // implemented by child class.
679 virtual unsigned int
680 do_get_incremental_reloc_base(unsigned int) const
681 { gold_unreachable(); }
682
683 // Return the number of incremental relocations for symbol SYMNDX--
684 // implemented by child class.
685 virtual unsigned int
686 do_get_incremental_reloc_count(unsigned int) const
687 { gold_unreachable(); }
688
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689 private:
690 // This class may not be copied.
691 Object(const Object&);
692 Object& operator=(const Object&);
693
694 // Name of object as printed to user.
695 std::string name_;
696 // For reading the file.
697 Input_file* input_file_;
698 // Offset within the file--0 for an object file, non-0 for an
699 // archive.
700 off_t offset_;
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701 // Number of input sections.
702 unsigned int shnum_;
f6ce93d6 703 // Whether this is a dynamic object.
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704 bool is_dynamic_ : 1;
705 // Whether this object is needed. This is only set for dynamic
706 // objects, and means that the object defined a symbol which was
707 // used by a reference from a regular object.
708 bool is_needed_ : 1;
364c7fa5 709 // Whether this object was compiled with -fsplit-stack.
594c8e5e 710 bool uses_split_stack_ : 1;
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711 // Whether this object contains any functions compiled with the
712 // no_split_stack attribute.
594c8e5e 713 bool has_no_split_stack_ : 1;
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714 // True if exclude this object from automatic symbol export.
715 // This is used only for archive objects.
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716 bool no_export_ : 1;
717 // Many sections for objects with more than SHN_LORESERVE sections.
718 Xindex* xindex_;
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719};
720
f6ce93d6 721// A regular object (ET_REL). This is an abstract base class itself.
b8e6aad9 722// The implementation is the template class Sized_relobj.
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723
724class Relobj : public Object
725{
726 public:
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727 Relobj(const std::string& name, Input_file* input_file, off_t offset = 0)
728 : Object(name, input_file, false, offset),
ef9beddf 729 output_sections_(),
6a74a719 730 map_to_relocatable_relocs_(NULL),
4625f782 731 object_merge_map_(NULL),
ef15dade 732 relocs_must_follow_section_writes_(false),
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733 sd_(NULL),
734 reloc_counts_(NULL),
735 reloc_bases_(NULL)
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736 { }
737
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738 // During garbage collection, the Read_symbols_data pass for
739 // each object is stored as layout needs to be done after
740 // reloc processing.
741 Symbols_data*
742 get_symbols_data()
743 { return this->sd_; }
744
745 // Decides which section names have to be included in the worklist
746 // as roots.
747 bool
748 is_section_name_included(const char *name);
749
750 void
751 copy_symbols_data(Symbols_data* gc_sd, Read_symbols_data* sd,
752 unsigned int section_header_size);
753
754 void
755 set_symbols_data(Symbols_data* sd)
756 { this->sd_ = sd; }
757
758 // During garbage collection, the Read_relocs pass for all objects
759 // is done before scanning the relocs. In that case, this->rd_ is
760 // used to store the information from Read_relocs for each object.
761 // This data is also used to compute the list of relevant sections.
762 Read_relocs_data*
763 get_relocs_data()
764 { return this->rd_; }
765
766 void
767 set_relocs_data(Read_relocs_data* rd)
768 { this->rd_ = rd; }
769
770 virtual bool
771 is_output_section_offset_invalid(unsigned int shndx) const = 0;
772
92e059d8 773 // Read the relocs.
a2fb1b05 774 void
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775 read_relocs(Read_relocs_data* rd)
776 { return this->do_read_relocs(rd); }
777
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778 // Process the relocs, during garbage collection only.
779 void
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780 gc_process_relocs(Symbol_table* symtab, Layout* layout, Read_relocs_data* rd)
781 { return this->do_gc_process_relocs(symtab, layout, rd); }
6d03d481 782
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783 // Scan the relocs and adjust the symbol table.
784 void
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785 scan_relocs(Symbol_table* symtab, Layout* layout, Read_relocs_data* rd)
786 { return this->do_scan_relocs(symtab, layout, rd); }
a2fb1b05 787
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788 // The number of local symbols in the input symbol table.
789 virtual unsigned int
790 local_symbol_count() const
791 { return this->do_local_symbol_count(); }
792
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793 // Initial local symbol processing: count the number of local symbols
794 // in the output symbol table and dynamic symbol table; add local symbol
795 // names to *POOL and *DYNPOOL.
796 void
797 count_local_symbols(Stringpool_template<char>* pool,
798 Stringpool_template<char>* dynpool)
799 { return this->do_count_local_symbols(pool, dynpool); }
800
801 // Set the values of the local symbols, set the output symbol table
802 // indexes for the local variables, and set the offset where local
803 // symbol information will be stored. Returns the new local symbol index.
804 unsigned int
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805 finalize_local_symbols(unsigned int index, off_t off, Symbol_table* symtab)
806 { return this->do_finalize_local_symbols(index, off, symtab); }
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807
808 // Set the output dynamic symbol table indexes for the local variables.
c06b7b0b 809 unsigned int
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810 set_local_dynsym_indexes(unsigned int index)
811 { return this->do_set_local_dynsym_indexes(index); }
812
813 // Set the offset where local dynamic symbol information will be stored.
814 unsigned int
815 set_local_dynsym_offset(off_t off)
816 { return this->do_set_local_dynsym_offset(off); }
75f65a3e 817
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818 // Relocate the input sections and write out the local symbols.
819 void
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820 relocate(const Symbol_table* symtab, const Layout* layout, Output_file* of)
821 { return this->do_relocate(symtab, layout, of); }
61ba1cf9 822
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823 // Return whether an input section is being included in the link.
824 bool
5a6f7e2d 825 is_section_included(unsigned int shndx) const
a783673b 826 {
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827 gold_assert(shndx < this->output_sections_.size());
828 return this->output_sections_[shndx] != NULL;
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ILT
829 }
830
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831 // The the output section of the input section with index SHNDX.
832 // This is only used currently to remove a section from the link in
833 // relaxation.
834 void
835 set_output_section(unsigned int shndx, Output_section* os)
836 {
837 gold_assert(shndx < this->output_sections_.size());
838 this->output_sections_[shndx] = os;
839 }
840
ead1e424 841 // Set the offset of an input section within its output section.
5995b570 842 void
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843 set_section_offset(unsigned int shndx, uint64_t off)
844 { this->do_set_section_offset(shndx, off); }
e94cf127 845
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846 // Return true if we need to wait for output sections to be written
847 // before we can apply relocations. This is true if the object has
848 // any relocations for sections which require special handling, such
849 // as the exception frame section.
850 bool
17a1d0a9 851 relocs_must_follow_section_writes() const
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852 { return this->relocs_must_follow_section_writes_; }
853
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854 // Return the object merge map.
855 Object_merge_map*
856 merge_map() const
857 { return this->object_merge_map_; }
858
859 // Set the object merge map.
860 void
861 set_merge_map(Object_merge_map* object_merge_map)
862 {
863 gold_assert(this->object_merge_map_ == NULL);
864 this->object_merge_map_ = object_merge_map;
865 }
866
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867 // Record the relocatable reloc info for an input reloc section.
868 void
869 set_relocatable_relocs(unsigned int reloc_shndx, Relocatable_relocs* rr)
870 {
871 gold_assert(reloc_shndx < this->shnum());
872 (*this->map_to_relocatable_relocs_)[reloc_shndx] = rr;
873 }
874
875 // Get the relocatable reloc info for an input reloc section.
876 Relocatable_relocs*
877 relocatable_relocs(unsigned int reloc_shndx)
878 {
879 gold_assert(reloc_shndx < this->shnum());
880 return (*this->map_to_relocatable_relocs_)[reloc_shndx];
881 }
882
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883 // Layout sections whose layout was deferred while waiting for
884 // input files from a plugin.
885 void
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886 layout_deferred_sections(Layout* layout)
887 { this->do_layout_deferred_sections(layout); }
5995b570 888
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889 // Return the index of the first incremental relocation for symbol SYMNDX.
890 virtual unsigned int
891 do_get_incremental_reloc_base(unsigned int symndx) const
892 { return this->reloc_bases_[symndx]; }
893
894 // Return the number of incremental relocations for symbol SYMNDX.
895 virtual unsigned int
896 do_get_incremental_reloc_count(unsigned int symndx) const
897 { return this->reloc_counts_[symndx]; }
898
a783673b 899 protected:
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ILT
900 // The output section to be used for each input section, indexed by
901 // the input section number. The output section is NULL if the
902 // input section is to be discarded.
903 typedef std::vector<Output_section*> Output_sections;
e94cf127 904
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905 // Read the relocs--implemented by child class.
906 virtual void
907 do_read_relocs(Read_relocs_data*) = 0;
908
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ST
909 // Process the relocs--implemented by child class.
910 virtual void
ad0f2072 911 do_gc_process_relocs(Symbol_table*, Layout*, Read_relocs_data*) = 0;
6d03d481 912
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ILT
913 // Scan the relocs--implemented by child class.
914 virtual void
ad0f2072 915 do_scan_relocs(Symbol_table*, Layout*, Read_relocs_data*) = 0;
92e059d8 916
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ILT
917 // Return the number of local symbols--implemented by child class.
918 virtual unsigned int
919 do_local_symbol_count() const = 0;
920
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ILT
921 // Count local symbols--implemented by child class.
922 virtual void
923 do_count_local_symbols(Stringpool_template<char>*,
6a74a719 924 Stringpool_template<char>*) = 0;
75f65a3e 925
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ILT
926 // Finalize the local symbols. Set the output symbol table indexes
927 // for the local variables, and set the offset where local symbol
928 // information will be stored.
7bf1f802 929 virtual unsigned int
ef15dade 930 do_finalize_local_symbols(unsigned int, off_t, Symbol_table*) = 0;
7bf1f802
ILT
931
932 // Set the output dynamic symbol table indexes for the local variables.
933 virtual unsigned int
934 do_set_local_dynsym_indexes(unsigned int) = 0;
935
936 // Set the offset where local dynamic symbol information will be stored.
937 virtual unsigned int
938 do_set_local_dynsym_offset(off_t) = 0;
939
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940 // Relocate the input sections and write out the local
941 // symbols--implemented by child class.
942 virtual void
ad0f2072 943 do_relocate(const Symbol_table* symtab, const Layout*, Output_file* of) = 0;
92e059d8 944
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945 // Set the offset of a section--implemented by child class.
946 virtual void
947 do_set_section_offset(unsigned int shndx, uint64_t off) = 0;
e94cf127 948
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949 // Layout sections whose layout was deferred while waiting for
950 // input files from a plugin--implemented by child class.
951 virtual void
952 do_layout_deferred_sections(Layout*) = 0;
953
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954 // Given a section index, return the corresponding Output_section.
955 // The return value will be NULL if the section is not included in
956 // the link.
957 Output_section*
958 do_output_section(unsigned int shndx) const
959 {
960 gold_assert(shndx < this->output_sections_.size());
961 return this->output_sections_[shndx];
962 }
963
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964 // Return the vector mapping input sections to output sections.
965 Output_sections&
966 output_sections()
967 { return this->output_sections_; }
e94cf127 968
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969 const Output_sections&
970 output_sections() const
971 { return this->output_sections_; }
e94cf127 972
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ILT
973 // Set the size of the relocatable relocs array.
974 void
975 size_relocatable_relocs()
976 {
977 this->map_to_relocatable_relocs_ =
978 new std::vector<Relocatable_relocs*>(this->shnum());
979 }
980
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ILT
981 // Record that we must wait for the output sections to be written
982 // before applying relocations.
983 void
984 set_relocs_must_follow_section_writes()
985 { this->relocs_must_follow_section_writes_ = true; }
986
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987 // Allocate the array for counting incremental relocations.
988 void
989 allocate_incremental_reloc_counts()
990 {
991 unsigned int nsyms = this->do_get_global_symbols()->size();
992 this->reloc_counts_ = new unsigned int[nsyms];
993 gold_assert(this->reloc_counts_ != NULL);
994 memset(this->reloc_counts_, 0, nsyms * sizeof(unsigned int));
995 }
996
997 // Record a relocation in this object referencing global symbol SYMNDX.
998 // Used for tracking incremental link information.
999 void
1000 count_incremental_reloc(unsigned int symndx)
1001 {
1002 unsigned int nsyms = this->do_get_global_symbols()->size();
1003 gold_assert(symndx < nsyms);
1004 gold_assert(this->reloc_counts_ != NULL);
1005 ++this->reloc_counts_[symndx];
1006 }
1007
1008 // Finalize the incremental relocation information.
1009 void
1010 finalize_incremental_relocs(Layout* layout);
1011
1012 // Return the index of the next relocation to be written for global symbol
1013 // SYMNDX. Only valid after finalize_incremental_relocs() has been called.
1014 unsigned int
1015 next_incremental_reloc_index(unsigned int symndx)
1016 {
1017 unsigned int nsyms = this->do_get_global_symbols()->size();
1018
1019 gold_assert(this->reloc_counts_ != NULL);
1020 gold_assert(this->reloc_bases_ != NULL);
1021 gold_assert(symndx < nsyms);
1022
1023 unsigned int counter = this->reloc_counts_[symndx]++;
1024 return this->reloc_bases_[symndx] + counter;
1025 }
1026
bae7f79e 1027 private:
a2fb1b05 1028 // Mapping from input sections to output section.
ef9beddf 1029 Output_sections output_sections_;
6a74a719
ILT
1030 // Mapping from input section index to the information recorded for
1031 // the relocations. This is only used for a relocatable link.
1032 std::vector<Relocatable_relocs*>* map_to_relocatable_relocs_;
4625f782
ILT
1033 // Mappings for merge sections. This is managed by the code in the
1034 // Merge_map class.
1035 Object_merge_map* object_merge_map_;
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ILT
1036 // Whether we need to wait for output sections to be written before
1037 // we can apply relocations.
1038 bool relocs_must_follow_section_writes_;
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ST
1039 // Used to store the relocs data computed by the Read_relocs pass.
1040 // Used during garbage collection of unused sections.
1041 Read_relocs_data* rd_;
1042 // Used to store the symbols data computed by the Read_symbols pass.
1043 // Again used during garbage collection when laying out referenced
1044 // sections.
1045 gold::Symbols_data *sd_;
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1046 // Per-symbol counts of relocations, for incremental links.
1047 unsigned int* reloc_counts_;
1048 // Per-symbol base indexes of relocations, for incremental links.
1049 unsigned int* reloc_bases_;
bae7f79e
ILT
1050};
1051
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ILT
1052// This class is used to handle relocations against a section symbol
1053// in an SHF_MERGE section. For such a symbol, we need to know the
1054// addend of the relocation before we can determine the final value.
1055// The addend gives us the location in the input section, and we can
1056// determine how it is mapped to the output section. For a
1057// non-section symbol, we apply the addend to the final value of the
1058// symbol; that is done in finalize_local_symbols, and does not use
1059// this class.
1060
1061template<int size>
1062class Merged_symbol_value
1063{
1064 public:
1065 typedef typename elfcpp::Elf_types<size>::Elf_Addr Value;
1066
1067 // We use a hash table to map offsets in the input section to output
1068 // addresses.
1069 typedef Unordered_map<section_offset_type, Value> Output_addresses;
1070
1071 Merged_symbol_value(Value input_value, Value output_start_address)
1072 : input_value_(input_value), output_start_address_(output_start_address),
1073 output_addresses_()
1074 { }
1075
1076 // Initialize the hash table.
1077 void
1078 initialize_input_to_output_map(const Relobj*, unsigned int input_shndx);
1079
1080 // Release the hash table to save space.
1081 void
1082 free_input_to_output_map()
1083 { this->output_addresses_.clear(); }
1084
1085 // Get the output value corresponding to an addend. The object and
1086 // input section index are passed in because the caller will have
1087 // them; otherwise we could store them here.
1088 Value
1089 value(const Relobj* object, unsigned int input_shndx, Value addend) const
1090 {
7f649c59
ILT
1091 // This is a relocation against a section symbol. ADDEND is the
1092 // offset in the section. The result should be the start of some
1093 // merge area. If the object file wants something else, it should
1094 // use a regular symbol rather than a section symbol.
1095 // Unfortunately, PR 6658 shows a case in which the object file
1096 // refers to the section symbol, but uses a negative ADDEND to
1097 // compensate for a PC relative reloc. We can't handle the
1098 // general case. However, we can handle the special case of a
1099 // negative addend, by assuming that it refers to the start of the
1100 // section. Of course, that means that we have to guess when
1101 // ADDEND is negative. It is normal to see a 32-bit value here
1102 // even when the template parameter size is 64, as 64-bit object
1103 // file formats have 32-bit relocations. We know this is a merge
1104 // section, so we know it has to fit into memory. So we assume
1105 // that we won't see a value larger than a large 32-bit unsigned
1106 // value. This will break objects with very very large merge
1107 // sections; they probably break in other ways anyhow.
1108 Value input_offset = this->input_value_;
1109 if (addend < 0xffffff00)
1110 {
1111 input_offset += addend;
1112 addend = 0;
1113 }
a9a60db6
ILT
1114 typename Output_addresses::const_iterator p =
1115 this->output_addresses_.find(input_offset);
1116 if (p != this->output_addresses_.end())
7f649c59 1117 return p->second + addend;
a9a60db6 1118
7f649c59
ILT
1119 return (this->value_from_output_section(object, input_shndx, input_offset)
1120 + addend);
a9a60db6
ILT
1121 }
1122
1123 private:
1124 // Get the output value for an input offset if we couldn't find it
1125 // in the hash table.
1126 Value
1127 value_from_output_section(const Relobj*, unsigned int input_shndx,
1128 Value input_offset) const;
1129
1130 // The value of the section symbol in the input file. This is
1131 // normally zero, but could in principle be something else.
1132 Value input_value_;
1133 // The start address of this merged section in the output file.
1134 Value output_start_address_;
1135 // A hash table which maps offsets in the input section to output
1136 // addresses. This only maps specific offsets, not all offsets.
1137 Output_addresses output_addresses_;
1138};
1139
b8e6aad9
ILT
1140// This POD class is holds the value of a symbol. This is used for
1141// local symbols, and for all symbols during relocation processing.
730cdc88
ILT
1142// For special sections, such as SHF_MERGE sections, this calls a
1143// function to get the final symbol value.
b8e6aad9
ILT
1144
1145template<int size>
1146class Symbol_value
1147{
1148 public:
1149 typedef typename elfcpp::Elf_types<size>::Elf_Addr Value;
1150
1151 Symbol_value()
7bf1f802 1152 : output_symtab_index_(0), output_dynsym_index_(-1U), input_shndx_(0),
d491d34e
ILT
1153 is_ordinary_shndx_(false), is_section_symbol_(false),
1154 is_tls_symbol_(false), has_output_value_(true)
a9a60db6 1155 { this->u_.value = 0; }
b8e6aad9
ILT
1156
1157 // Get the value of this symbol. OBJECT is the object in which this
1158 // symbol is defined, and ADDEND is an addend to add to the value.
1159 template<bool big_endian>
1160 Value
1161 value(const Sized_relobj<size, big_endian>* object, Value addend) const
1162 {
a9a60db6
ILT
1163 if (this->has_output_value_)
1164 return this->u_.value + addend;
1165 else
d491d34e
ILT
1166 {
1167 gold_assert(this->is_ordinary_shndx_);
1168 return this->u_.merged_symbol_value->value(object, this->input_shndx_,
1169 addend);
1170 }
b8e6aad9
ILT
1171 }
1172
1173 // Set the value of this symbol in the output symbol table.
1174 void
2ea97941
ILT
1175 set_output_value(Value value)
1176 { this->u_.value = value; }
a9a60db6
ILT
1177
1178 // For a section symbol in a merged section, we need more
1179 // information.
1180 void
1181 set_merged_symbol_value(Merged_symbol_value<size>* msv)
b8e6aad9 1182 {
a9a60db6
ILT
1183 gold_assert(this->is_section_symbol_);
1184 this->has_output_value_ = false;
1185 this->u_.merged_symbol_value = msv;
b8e6aad9
ILT
1186 }
1187
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ILT
1188 // Initialize the input to output map for a section symbol in a
1189 // merged section. We also initialize the value of a non-section
1190 // symbol in a merged section.
b8e6aad9 1191 void
a9a60db6 1192 initialize_input_to_output_map(const Relobj* object)
b8e6aad9 1193 {
a9a60db6
ILT
1194 if (!this->has_output_value_)
1195 {
d491d34e 1196 gold_assert(this->is_section_symbol_ && this->is_ordinary_shndx_);
a9a60db6
ILT
1197 Merged_symbol_value<size>* msv = this->u_.merged_symbol_value;
1198 msv->initialize_input_to_output_map(object, this->input_shndx_);
1199 }
b8e6aad9
ILT
1200 }
1201
a9a60db6
ILT
1202 // Free the input to output map for a section symbol in a merged
1203 // section.
1204 void
1205 free_input_to_output_map()
7bf1f802 1206 {
a9a60db6
ILT
1207 if (!this->has_output_value_)
1208 this->u_.merged_symbol_value->free_input_to_output_map();
7bf1f802
ILT
1209 }
1210
a9a60db6
ILT
1211 // Set the value of the symbol from the input file. This is only
1212 // called by count_local_symbols, to communicate the value to
1213 // finalize_local_symbols.
1214 void
2ea97941
ILT
1215 set_input_value(Value value)
1216 { this->u_.value = value; }
a9a60db6
ILT
1217
1218 // Return the input value. This is only called by
e94cf127 1219 // finalize_local_symbols and (in special cases) relocate_section.
a9a60db6
ILT
1220 Value
1221 input_value() const
1222 { return this->u_.value; }
1223
d3bbad62
ILT
1224 // Return whether we have set the index in the output symbol table
1225 // yet.
1226 bool
1227 is_output_symtab_index_set() const
1228 {
1229 return (this->output_symtab_index_ != 0
1230 && this->output_symtab_index_ != -2U);
1231 }
1232
1233 // Return whether this symbol may be discarded from the normal
1234 // symbol table.
1235 bool
1236 may_be_discarded_from_output_symtab() const
1237 {
1238 gold_assert(!this->is_output_symtab_index_set());
1239 return this->output_symtab_index_ != -2U;
1240 }
1241
1242 // Return whether this symbol has an entry in the output symbol
b8e6aad9
ILT
1243 // table.
1244 bool
d3bbad62
ILT
1245 has_output_symtab_entry() const
1246 {
1247 gold_assert(this->is_output_symtab_index_set());
1248 return this->output_symtab_index_ != -1U;
1249 }
b8e6aad9
ILT
1250
1251 // Return the index in the output symbol table.
1252 unsigned int
1253 output_symtab_index() const
1254 {
d3bbad62
ILT
1255 gold_assert(this->is_output_symtab_index_set()
1256 && this->output_symtab_index_ != -1U);
b8e6aad9
ILT
1257 return this->output_symtab_index_;
1258 }
1259
1260 // Set the index in the output symbol table.
1261 void
1262 set_output_symtab_index(unsigned int i)
1263 {
d3bbad62
ILT
1264 gold_assert(!this->is_output_symtab_index_set());
1265 gold_assert(i != 0 && i != -1U && i != -2U);
b8e6aad9
ILT
1266 this->output_symtab_index_ = i;
1267 }
1268
1269 // Record that this symbol should not go into the output symbol
1270 // table.
1271 void
1272 set_no_output_symtab_entry()
1273 {
1274 gold_assert(this->output_symtab_index_ == 0);
1275 this->output_symtab_index_ = -1U;
1276 }
1277
d3bbad62
ILT
1278 // Record that this symbol must go into the output symbol table,
1279 // because it there is a relocation that uses it.
1280 void
1281 set_must_have_output_symtab_entry()
1282 {
1283 gold_assert(!this->is_output_symtab_index_set());
1284 this->output_symtab_index_ = -2U;
1285 }
1286
7bf1f802
ILT
1287 // Set the index in the output dynamic symbol table.
1288 void
1289 set_needs_output_dynsym_entry()
1290 {
dceae3c1 1291 gold_assert(!this->is_section_symbol());
7bf1f802
ILT
1292 this->output_dynsym_index_ = 0;
1293 }
1294
d3bbad62 1295 // Return whether this symbol should go into the dynamic symbol
7bf1f802
ILT
1296 // table.
1297 bool
1298 needs_output_dynsym_entry() const
1299 {
1300 return this->output_dynsym_index_ != -1U;
1301 }
1302
d3bbad62
ILT
1303 // Return whether this symbol has an entry in the dynamic symbol
1304 // table.
1305 bool
1306 has_output_dynsym_entry() const
1307 {
1308 gold_assert(this->output_dynsym_index_ != 0);
1309 return this->output_dynsym_index_ != -1U;
1310 }
1311
7bf1f802
ILT
1312 // Record that this symbol should go into the dynamic symbol table.
1313 void
1314 set_output_dynsym_index(unsigned int i)
1315 {
1316 gold_assert(this->output_dynsym_index_ == 0);
d3bbad62 1317 gold_assert(i != 0 && i != -1U);
7bf1f802
ILT
1318 this->output_dynsym_index_ = i;
1319 }
1320
1321 // Return the index in the output dynamic symbol table.
1322 unsigned int
1323 output_dynsym_index() const
1324 {
dceae3c1
ILT
1325 gold_assert(this->output_dynsym_index_ != 0
1326 && this->output_dynsym_index_ != -1U);
7bf1f802
ILT
1327 return this->output_dynsym_index_;
1328 }
1329
b8e6aad9
ILT
1330 // Set the index of the input section in the input file.
1331 void
d491d34e 1332 set_input_shndx(unsigned int i, bool is_ordinary)
730cdc88
ILT
1333 {
1334 this->input_shndx_ = i;
ac1f0c21
ILT
1335 // input_shndx_ field is a bitfield, so make sure that the value
1336 // fits.
730cdc88 1337 gold_assert(this->input_shndx_ == i);
d491d34e 1338 this->is_ordinary_shndx_ = is_ordinary;
730cdc88 1339 }
b8e6aad9 1340
7bf1f802
ILT
1341 // Return the index of the input section in the input file.
1342 unsigned int
d491d34e
ILT
1343 input_shndx(bool* is_ordinary) const
1344 {
1345 *is_ordinary = this->is_ordinary_shndx_;
1346 return this->input_shndx_;
1347 }
7bf1f802 1348
a9a60db6
ILT
1349 // Whether this is a section symbol.
1350 bool
1351 is_section_symbol() const
1352 { return this->is_section_symbol_; }
1353
063f12a8
ILT
1354 // Record that this is a section symbol.
1355 void
1356 set_is_section_symbol()
dceae3c1
ILT
1357 {
1358 gold_assert(!this->needs_output_dynsym_entry());
1359 this->is_section_symbol_ = true;
1360 }
063f12a8 1361
7bf1f802
ILT
1362 // Record that this is a TLS symbol.
1363 void
1364 set_is_tls_symbol()
1365 { this->is_tls_symbol_ = true; }
1366
1367 // Return TRUE if this is a TLS symbol.
1368 bool
1369 is_tls_symbol() const
1370 { return this->is_tls_symbol_; }
1371
b8e6aad9
ILT
1372 private:
1373 // The index of this local symbol in the output symbol table. This
d3bbad62
ILT
1374 // will be 0 if no value has been assigned yet, and the symbol may
1375 // be omitted. This will be -1U if the symbol should not go into
1376 // the symbol table. This will be -2U if the symbol must go into
1377 // the symbol table, but no index has been assigned yet.
b8e6aad9 1378 unsigned int output_symtab_index_;
7bf1f802 1379 // The index of this local symbol in the dynamic symbol table. This
d3bbad62 1380 // will be -1U if the symbol should not go into the symbol table.
7bf1f802 1381 unsigned int output_dynsym_index_;
b8e6aad9
ILT
1382 // The section index in the input file in which this symbol is
1383 // defined.
d491d34e
ILT
1384 unsigned int input_shndx_ : 28;
1385 // Whether the section index is an ordinary index, not a special
1386 // value.
1387 bool is_ordinary_shndx_ : 1;
063f12a8
ILT
1388 // Whether this is a STT_SECTION symbol.
1389 bool is_section_symbol_ : 1;
7bf1f802
ILT
1390 // Whether this is a STT_TLS symbol.
1391 bool is_tls_symbol_ : 1;
a9a60db6
ILT
1392 // Whether this symbol has a value for the output file. This is
1393 // normally set to true during Layout::finalize, by
1394 // finalize_local_symbols. It will be false for a section symbol in
1395 // a merge section, as for such symbols we can not determine the
1396 // value to use in a relocation until we see the addend.
1397 bool has_output_value_ : 1;
1398 union
1399 {
1400 // This is used if has_output_value_ is true. Between
1401 // count_local_symbols and finalize_local_symbols, this is the
1402 // value in the input file. After finalize_local_symbols, it is
1403 // the value in the output file.
1404 Value value;
1405 // This is used if has_output_value_ is false. It points to the
1406 // information we need to get the value for a merge section.
1407 Merged_symbol_value<size>* merged_symbol_value;
1408 } u_;
b8e6aad9
ILT
1409};
1410
0a65a3a7
CC
1411// A GOT offset list. A symbol may have more than one GOT offset
1412// (e.g., when mixing modules compiled with two different TLS models),
1413// but will usually have at most one. GOT_TYPE identifies the type of
1414// GOT entry; its values are specific to each target.
1415
1416class Got_offset_list
1417{
1418 public:
1419 Got_offset_list()
1420 : got_type_(-1U), got_offset_(0), got_next_(NULL)
1421 { }
1422
1423 Got_offset_list(unsigned int got_type, unsigned int got_offset)
1424 : got_type_(got_type), got_offset_(got_offset), got_next_(NULL)
1425 { }
1426
1427 ~Got_offset_list()
1428 {
1429 if (this->got_next_ != NULL)
1430 {
1431 delete this->got_next_;
1432 this->got_next_ = NULL;
1433 }
1434 }
1435
1436 // Initialize the fields to their default values.
1437 void
1438 init()
1439 {
1440 this->got_type_ = -1U;
1441 this->got_offset_ = 0;
1442 this->got_next_ = NULL;
1443 }
1444
1445 // Set the offset for the GOT entry of type GOT_TYPE.
1446 void
1447 set_offset(unsigned int got_type, unsigned int got_offset)
1448 {
1449 if (this->got_type_ == -1U)
1450 {
1451 this->got_type_ = got_type;
1452 this->got_offset_ = got_offset;
1453 }
1454 else
1455 {
1456 for (Got_offset_list* g = this; g != NULL; g = g->got_next_)
1457 {
1458 if (g->got_type_ == got_type)
1459 {
1460 g->got_offset_ = got_offset;
1461 return;
1462 }
1463 }
1464 Got_offset_list* g = new Got_offset_list(got_type, got_offset);
1465 g->got_next_ = this->got_next_;
1466 this->got_next_ = g;
1467 }
1468 }
1469
1470 // Return the offset for a GOT entry of type GOT_TYPE.
1471 unsigned int
1472 get_offset(unsigned int got_type) const
1473 {
1474 for (const Got_offset_list* g = this; g != NULL; g = g->got_next_)
1475 {
1476 if (g->got_type_ == got_type)
1477 return g->got_offset_;
1478 }
1479 return -1U;
1480 }
1481
0e70b911
CC
1482 // Return a pointer to the list, or NULL if the list is empty.
1483 const Got_offset_list*
1484 get_list() const
1485 {
1486 if (this->got_type_ == -1U)
1487 return NULL;
1488 return this;
1489 }
1490
1491 // Loop over all GOT offset entries, applying the function F to each.
1492 template<typename F>
1493 void
1494 for_all_got_offsets(F f) const
1495 {
1496 if (this->got_type_ == -1U)
1497 return;
1498 for (const Got_offset_list* g = this; g != NULL; g = g->got_next_)
1499 f(g->got_type_, g->got_offset_);
1500 }
1501
0a65a3a7
CC
1502 private:
1503 unsigned int got_type_;
1504 unsigned int got_offset_;
1505 Got_offset_list* got_next_;
1506};
1507
364c7fa5
ILT
1508// This type is used to modify relocations for -fsplit-stack. It is
1509// indexed by relocation index, and means that the relocation at that
1510// index should use the symbol from the vector, rather than the one
1511// indicated by the relocation.
1512
1513class Reloc_symbol_changes
1514{
1515 public:
1516 Reloc_symbol_changes(size_t count)
1517 : vec_(count, NULL)
1518 { }
1519
1520 void
1521 set(size_t i, Symbol* sym)
1522 { this->vec_[i] = sym; }
1523
1524 const Symbol*
1525 operator[](size_t i) const
1526 { return this->vec_[i]; }
1527
1528 private:
1529 std::vector<Symbol*> vec_;
1530};
1531
a2e47362
CC
1532// Type for mapping section index to uncompressed size.
1533
1534typedef std::map<unsigned int, section_size_type> Compressed_section_map;
1535
14bfc3f5 1536// A regular object file. This is size and endian specific.
bae7f79e
ILT
1537
1538template<int size, bool big_endian>
f6ce93d6 1539class Sized_relobj : public Relobj
bae7f79e
ILT
1540{
1541 public:
c06b7b0b 1542 typedef typename elfcpp::Elf_types<size>::Elf_Addr Address;
730cdc88 1543 typedef std::vector<Symbol*> Symbols;
b8e6aad9 1544 typedef std::vector<Symbol_value<size> > Local_values;
c06b7b0b 1545
eff45813
CC
1546 static const Address invalid_address = static_cast<Address>(0) - 1;
1547
f6ce93d6 1548 Sized_relobj(const std::string& name, Input_file* input_file, off_t offset,
bae7f79e
ILT
1549 const typename elfcpp::Ehdr<size, big_endian>&);
1550
f6ce93d6 1551 ~Sized_relobj();
bae7f79e 1552
6d03d481
ST
1553 // Checks if the offset of input section SHNDX within its output
1554 // section is invalid.
1555 bool
1556 is_output_section_offset_invalid(unsigned int shndx) const
1557 { return this->get_output_section_offset(shndx) == invalid_address; }
1558
f733487b 1559 // Set up the object file based on TARGET.
bae7f79e 1560 void
c0a62865
DK
1561 setup()
1562 { this->do_setup(); }
bae7f79e 1563
7d9e3d98
ILT
1564 // Return the number of symbols. This is only valid after
1565 // Object::add_symbols has been called.
1566 unsigned int
1567 symbol_count() const
1568 { return this->local_symbol_count_ + this->symbols_.size(); }
1569
730cdc88
ILT
1570 // If SYM is the index of a global symbol in the object file's
1571 // symbol table, return the Symbol object. Otherwise, return NULL.
1572 Symbol*
1573 global_symbol(unsigned int sym) const
1574 {
1575 if (sym >= this->local_symbol_count_)
1576 {
1577 gold_assert(sym - this->local_symbol_count_ < this->symbols_.size());
1578 return this->symbols_[sym - this->local_symbol_count_];
1579 }
1580 return NULL;
1581 }
1582
1583 // Return the section index of symbol SYM. Set *VALUE to its value
d491d34e
ILT
1584 // in the object file. Set *IS_ORDINARY if this is an ordinary
1585 // section index, not a special code between SHN_LORESERVE and
1586 // SHN_HIRESERVE. Note that for a symbol which is not defined in
1587 // this object file, this will set *VALUE to 0 and return SHN_UNDEF;
1588 // it will not return the final value of the symbol in the link.
730cdc88 1589 unsigned int
d491d34e 1590 symbol_section_and_value(unsigned int sym, Address* value, bool* is_ordinary);
730cdc88
ILT
1591
1592 // Return a pointer to the Symbol_value structure which holds the
1593 // value of a local symbol.
1594 const Symbol_value<size>*
1595 local_symbol(unsigned int sym) const
1596 {
1597 gold_assert(sym < this->local_values_.size());
1598 return &this->local_values_[sym];
1599 }
1600
c06b7b0b
ILT
1601 // Return the index of local symbol SYM in the ordinary symbol
1602 // table. A value of -1U means that the symbol is not being output.
1603 unsigned int
1604 symtab_index(unsigned int sym) const
1605 {
b8e6aad9
ILT
1606 gold_assert(sym < this->local_values_.size());
1607 return this->local_values_[sym].output_symtab_index();
c06b7b0b
ILT
1608 }
1609
7bf1f802
ILT
1610 // Return the index of local symbol SYM in the dynamic symbol
1611 // table. A value of -1U means that the symbol is not being output.
1612 unsigned int
1613 dynsym_index(unsigned int sym) const
1614 {
1615 gold_assert(sym < this->local_values_.size());
1616 return this->local_values_[sym].output_dynsym_index();
1617 }
1618
6a74a719
ILT
1619 // Return the input section index of local symbol SYM.
1620 unsigned int
d491d34e 1621 local_symbol_input_shndx(unsigned int sym, bool* is_ordinary) const
6a74a719
ILT
1622 {
1623 gold_assert(sym < this->local_values_.size());
d491d34e 1624 return this->local_values_[sym].input_shndx(is_ordinary);
6a74a719
ILT
1625 }
1626
d3bbad62
ILT
1627 // Record that local symbol SYM must be in the output symbol table.
1628 void
1629 set_must_have_output_symtab_entry(unsigned int sym)
1630 {
1631 gold_assert(sym < this->local_values_.size());
1632 this->local_values_[sym].set_must_have_output_symtab_entry();
1633 }
1634
d1f003c6 1635 // Record that local symbol SYM needs a dynamic symbol entry.
7bf1f802
ILT
1636 void
1637 set_needs_output_dynsym_entry(unsigned int sym)
1638 {
1639 gold_assert(sym < this->local_values_.size());
1640 this->local_values_[sym].set_needs_output_dynsym_entry();
1641 }
1642
e727fa71 1643 // Return whether the local symbol SYMNDX has a GOT offset.
07f397ab 1644 // For TLS symbols, the GOT entry will hold its tp-relative offset.
e727fa71 1645 bool
0a65a3a7 1646 local_has_got_offset(unsigned int symndx, unsigned int got_type) const
e727fa71 1647 {
0a65a3a7
CC
1648 Local_got_offsets::const_iterator p =
1649 this->local_got_offsets_.find(symndx);
1650 return (p != this->local_got_offsets_.end()
1651 && p->second->get_offset(got_type) != -1U);
e727fa71
ILT
1652 }
1653
1654 // Return the GOT offset of the local symbol SYMNDX.
1655 unsigned int
0a65a3a7 1656 local_got_offset(unsigned int symndx, unsigned int got_type) const
e727fa71
ILT
1657 {
1658 Local_got_offsets::const_iterator p =
1659 this->local_got_offsets_.find(symndx);
1660 gold_assert(p != this->local_got_offsets_.end());
0a65a3a7
CC
1661 unsigned int off = p->second->get_offset(got_type);
1662 gold_assert(off != -1U);
1663 return off;
e727fa71
ILT
1664 }
1665
1666 // Set the GOT offset of the local symbol SYMNDX to GOT_OFFSET.
1667 void
0a65a3a7
CC
1668 set_local_got_offset(unsigned int symndx, unsigned int got_type,
1669 unsigned int got_offset)
07f397ab 1670 {
0a65a3a7
CC
1671 Local_got_offsets::const_iterator p =
1672 this->local_got_offsets_.find(symndx);
1673 if (p != this->local_got_offsets_.end())
1674 p->second->set_offset(got_type, got_offset);
07f397ab
ILT
1675 else
1676 {
0a65a3a7
CC
1677 Got_offset_list* g = new Got_offset_list(got_type, got_offset);
1678 std::pair<Local_got_offsets::iterator, bool> ins =
1679 this->local_got_offsets_.insert(std::make_pair(symndx, g));
07f397ab
ILT
1680 gold_assert(ins.second);
1681 }
1682 }
1683
0e70b911
CC
1684 // Return the GOT offset list for the local symbol SYMNDX.
1685 const Got_offset_list*
1686 local_got_offset_list(unsigned int symndx) const
1687 {
1688 Local_got_offsets::const_iterator p =
1689 this->local_got_offsets_.find(symndx);
1690 if (p == this->local_got_offsets_.end())
1691 return NULL;
1692 return p->second;
1693 }
1694
ef9beddf
ILT
1695 // Get the offset of input section SHNDX within its output section.
1696 // This is -1 if the input section requires a special mapping, such
1697 // as a merge section. The output section can be found in the
1698 // output_sections_ field of the parent class Relobj.
1699 Address
1700 get_output_section_offset(unsigned int shndx) const
1701 {
1702 gold_assert(shndx < this->section_offsets_.size());
1703 return this->section_offsets_[shndx];
1704 }
1705
f7e2ee48
ILT
1706 // Return the name of the symbol that spans the given offset in the
1707 // specified section in this object. This is used only for error
1708 // messages and is not particularly efficient.
1709 bool
1710 get_symbol_location_info(unsigned int shndx, off_t offset,
1711 Symbol_location_info* info);
1712
e94cf127
CC
1713 // Look for a kept section corresponding to the given discarded section,
1714 // and return its output address. This is used only for relocations in
1715 // debugging sections.
1716 Address
1717 map_to_kept_section(unsigned int shndx, bool* found) const;
1718
6d013333 1719 protected:
c0a62865
DK
1720 // Set up.
1721 virtual void
1722 do_setup();
1723
a2fb1b05 1724 // Read the symbols.
bae7f79e 1725 void
12e14209 1726 do_read_symbols(Read_symbols_data*);
14bfc3f5 1727
6d013333
ILT
1728 // Return the number of local symbols.
1729 unsigned int
1730 do_local_symbol_count() const
1731 { return this->local_symbol_count_; }
1732
dbe717ef
ILT
1733 // Lay out the input sections.
1734 void
7e1edb90 1735 do_layout(Symbol_table*, Layout*, Read_symbols_data*);
dbe717ef 1736
5995b570
CC
1737 // Layout sections whose layout was deferred while waiting for
1738 // input files from a plugin.
1739 void
1740 do_layout_deferred_sections(Layout*);
1741
12e14209
ILT
1742 // Add the symbols to the symbol table.
1743 void
f488e4b0 1744 do_add_symbols(Symbol_table*, Read_symbols_data*, Layout*);
b0193076
RÁE
1745
1746 Archive::Should_include
88a4108b 1747 do_should_include_member(Symbol_table* symtab, Layout*, Read_symbols_data*,
b0193076 1748 std::string* why);
a2fb1b05 1749
92e059d8
ILT
1750 // Read the relocs.
1751 void
1752 do_read_relocs(Read_relocs_data*);
1753
6d03d481
ST
1754 // Process the relocs to find list of referenced sections. Used only
1755 // during garbage collection.
1756 void
ad0f2072 1757 do_gc_process_relocs(Symbol_table*, Layout*, Read_relocs_data*);
6d03d481 1758
92e059d8
ILT
1759 // Scan the relocs and adjust the symbol table.
1760 void
ad0f2072 1761 do_scan_relocs(Symbol_table*, Layout*, Read_relocs_data*);
92e059d8 1762
7bf1f802
ILT
1763 // Count the local symbols.
1764 void
1765 do_count_local_symbols(Stringpool_template<char>*,
1766 Stringpool_template<char>*);
1767
75f65a3e 1768 // Finalize the local symbols.
c06b7b0b 1769 unsigned int
ef15dade 1770 do_finalize_local_symbols(unsigned int, off_t, Symbol_table*);
7bf1f802
ILT
1771
1772 // Set the offset where local dynamic symbol information will be stored.
1773 unsigned int
1774 do_set_local_dynsym_indexes(unsigned int);
1775
1776 // Set the offset where local dynamic symbol information will be stored.
1777 unsigned int
1778 do_set_local_dynsym_offset(off_t);
75f65a3e 1779
61ba1cf9
ILT
1780 // Relocate the input sections and write out the local symbols.
1781 void
ad0f2072 1782 do_relocate(const Symbol_table* symtab, const Layout*, Output_file* of);
92e059d8 1783
a445fddf
ILT
1784 // Get the size of a section.
1785 uint64_t
1786 do_section_size(unsigned int shndx)
1787 { return this->elf_file_.section_size(shndx); }
1788
92e059d8
ILT
1789 // Get the name of a section.
1790 std::string
645f8123
ILT
1791 do_section_name(unsigned int shndx)
1792 { return this->elf_file_.section_name(shndx); }
61ba1cf9 1793
645f8123 1794 // Return the location of the contents of a section.
dbe717ef 1795 Object::Location
645f8123
ILT
1796 do_section_contents(unsigned int shndx)
1797 { return this->elf_file_.section_contents(shndx); }
f6ce93d6 1798
a3ad94ed
ILT
1799 // Return section flags.
1800 uint64_t
ef15dade
ST
1801 do_section_flags(unsigned int shndx);
1802
1803 // Return section entsize.
1804 uint64_t
1805 do_section_entsize(unsigned int shndx);
a3ad94ed 1806
88dd47ac
ILT
1807 // Return section address.
1808 uint64_t
1809 do_section_address(unsigned int shndx)
1810 { return this->elf_file_.section_addr(shndx); }
1811
730cdc88
ILT
1812 // Return section type.
1813 unsigned int
1814 do_section_type(unsigned int shndx)
1815 { return this->elf_file_.section_type(shndx); }
1816
f7e2ee48
ILT
1817 // Return the section link field.
1818 unsigned int
1819 do_section_link(unsigned int shndx)
1820 { return this->elf_file_.section_link(shndx); }
1821
4c50553d
ILT
1822 // Return the section info field.
1823 unsigned int
1824 do_section_info(unsigned int shndx)
1825 { return this->elf_file_.section_info(shndx); }
1826
a445fddf
ILT
1827 // Return the section alignment.
1828 uint64_t
1829 do_section_addralign(unsigned int shndx)
1830 { return this->elf_file_.section_addralign(shndx); }
1831
d491d34e
ILT
1832 // Return the Xindex structure to use.
1833 Xindex*
1834 do_initialize_xindex();
1835
92de84a6
ILT
1836 // Get symbol counts.
1837 void
1838 do_get_global_symbol_counts(const Symbol_table*, size_t*, size_t*) const;
1839
dde3f402
ILT
1840 // Get the global symbols.
1841 const Symbols*
1842 do_get_global_symbols() const
1843 { return &this->symbols_; }
1844
ef9beddf
ILT
1845 // Get the offset of a section.
1846 uint64_t
1847 do_output_section_offset(unsigned int shndx) const
eff45813
CC
1848 {
1849 Address off = this->get_output_section_offset(shndx);
1850 if (off == invalid_address)
1851 return -1ULL;
1852 return off;
1853 }
ef9beddf
ILT
1854
1855 // Set the offset of a section.
1856 void
1857 do_set_section_offset(unsigned int shndx, uint64_t off)
1858 {
1859 gold_assert(shndx < this->section_offsets_.size());
2b328d4e
DK
1860 this->section_offsets_[shndx] =
1861 (off == static_cast<uint64_t>(-1)
1862 ? invalid_address
1863 : convert_types<Address, uint64_t>(off));
c0a62865
DK
1864 }
1865
1866 // Adjust a section index if necessary.
1867 unsigned int
1868 adjust_shndx(unsigned int shndx)
1869 {
1870 if (shndx >= elfcpp::SHN_LORESERVE)
1871 shndx += this->elf_file_.large_shndx_offset();
1872 return shndx;
1873 }
1874
1875 // Initialize input to output maps for section symbols in merged
1876 // sections.
1877 void
1878 initialize_input_to_output_maps();
1879
1880 // Free the input to output maps for section symbols in merged
1881 // sections.
1882 void
1883 free_input_to_output_maps();
1884
1885 // Return symbol table section index.
1886 unsigned int
1887 symtab_shndx() const
1888 { return this->symtab_shndx_; }
1889
1890 // Allow a child class to access the ELF file.
1891 elfcpp::Elf_file<size, big_endian, Object>*
1892 elf_file()
1893 { return &this->elf_file_; }
1894
1895 // Allow a child class to access the local values.
1896 Local_values*
1897 local_values()
1898 { return &this->local_values_; }
1899
72adc4fa
DK
1900 // Views and sizes when relocating.
1901 struct View_size
1902 {
1903 unsigned char* view;
1904 typename elfcpp::Elf_types<size>::Elf_Addr address;
1905 off_t offset;
1906 section_size_type view_size;
1907 bool is_input_output_view;
1908 bool is_postprocessing_view;
1909 };
1910
1911 typedef std::vector<View_size> Views;
1912
1913 // This may be overriden by a child class.
1914 virtual void
ad0f2072 1915 do_relocate_sections(const Symbol_table* symtab, const Layout* layout,
09ec0418
CC
1916 const unsigned char* pshdrs, Output_file* of,
1917 Views* pviews);
72adc4fa 1918
e7eca48c
DK
1919 // Allow a child to set output local symbol count.
1920 void
1921 set_output_local_symbol_count(unsigned int value)
1922 { this->output_local_symbol_count_ = value; }
a2e47362
CC
1923
1924 // Return TRUE if the section is a compressed debug section, and set
1925 // *UNCOMPRESSED_SIZE to the size of the uncompressed data.
1926 bool
1927 do_section_is_compressed(unsigned int shndx,
1928 section_size_type* uncompressed_size) const
1929 {
1930 if (this->compressed_sections_ == NULL)
1931 return false;
1932 Compressed_section_map::const_iterator p =
1933 this->compressed_sections_->find(shndx);
1934 if (p != this->compressed_sections_->end())
1935 {
1936 if (uncompressed_size != NULL)
1937 *uncompressed_size = p->second;
1938 return true;
1939 }
1940 return false;
1941 }
1942
bae7f79e 1943 private:
a2fb1b05 1944 // For convenience.
f6ce93d6 1945 typedef Sized_relobj<size, big_endian> This;
a2fb1b05
ILT
1946 static const int ehdr_size = elfcpp::Elf_sizes<size>::ehdr_size;
1947 static const int shdr_size = elfcpp::Elf_sizes<size>::shdr_size;
1948 static const int sym_size = elfcpp::Elf_sizes<size>::sym_size;
75f65a3e
ILT
1949 typedef elfcpp::Shdr<size, big_endian> Shdr;
1950
ef9beddf
ILT
1951 // To keep track of discarded comdat sections, we need to map a member
1952 // section index to the object and section index of the corresponding
1953 // kept section.
1954 struct Kept_comdat_section
1955 {
1ef4d87f
ILT
1956 Kept_comdat_section(Relobj* a_object, unsigned int a_shndx)
1957 : object(a_object), shndx(a_shndx)
ef9beddf 1958 { }
1ef4d87f
ILT
1959 Relobj* object;
1960 unsigned int shndx;
ef9beddf 1961 };
1ef4d87f 1962 typedef std::map<unsigned int, Kept_comdat_section>
ef9beddf
ILT
1963 Kept_comdat_section_table;
1964
dbe717ef
ILT
1965 // Find the SHT_SYMTAB section, given the section headers.
1966 void
1967 find_symtab(const unsigned char* pshdrs);
1968
730cdc88
ILT
1969 // Return whether SHDR has the right flags for a GNU style exception
1970 // frame section.
1971 bool
1972 check_eh_frame_flags(const elfcpp::Shdr<size, big_endian>* shdr) const;
1973
1974 // Return whether there is a section named .eh_frame which might be
1975 // a GNU style exception frame section.
1976 bool
1977 find_eh_frame(const unsigned char* pshdrs, const char* names,
8383303e 1978 section_size_type names_size) const;
730cdc88 1979
a2fb1b05
ILT
1980 // Whether to include a section group in the link.
1981 bool
6a74a719 1982 include_section_group(Symbol_table*, Layout*, unsigned int, const char*,
e94cf127 1983 const unsigned char*, const char *, section_size_type,
a2fb1b05
ILT
1984 std::vector<bool>*);
1985
1986 // Whether to include a linkonce section in the link.
1987 bool
e94cf127 1988 include_linkonce_section(Layout*, unsigned int, const char*,
a2fb1b05
ILT
1989 const elfcpp::Shdr<size, big_endian>&);
1990
5995b570
CC
1991 // Layout an input section.
1992 void
1993 layout_section(Layout* layout, unsigned int shndx, const char* name,
1994 typename This::Shdr& shdr, unsigned int reloc_shndx,
1995 unsigned int reloc_type);
1996
61ba1cf9
ILT
1997 // Write section data to the output file. Record the views and
1998 // sizes in VIEWS for use when relocating.
1999 void
cb295612 2000 write_sections(const unsigned char* pshdrs, Output_file*, Views*);
61ba1cf9
ILT
2001
2002 // Relocate the sections in the output file.
2003 void
2ea97941 2004 relocate_sections(const Symbol_table* symtab, const Layout* layout,
09ec0418
CC
2005 const unsigned char* pshdrs, Output_file* of,
2006 Views* pviews)
2007 { this->do_relocate_sections(symtab, layout, pshdrs, of, pviews); }
61ba1cf9 2008
7019cd25
ILT
2009 // Scan the input relocations for --emit-relocs.
2010 void
ad0f2072 2011 emit_relocs_scan(Symbol_table*, Layout*, const unsigned char* plocal_syms,
7019cd25
ILT
2012 const Read_relocs_data::Relocs_list::iterator&);
2013
2014 // Scan the input relocations for --emit-relocs, templatized on the
2015 // type of the relocation section.
2016 template<int sh_type>
2017 void
ad0f2072 2018 emit_relocs_scan_reltype(Symbol_table*, Layout*,
7019cd25
ILT
2019 const unsigned char* plocal_syms,
2020 const Read_relocs_data::Relocs_list::iterator&,
2021 Relocatable_relocs*);
2022
2023 // Emit the relocs for --emit-relocs.
2024 void
2025 emit_relocs(const Relocate_info<size, big_endian>*, unsigned int,
2026 unsigned int sh_type, const unsigned char* prelocs,
ef9beddf 2027 size_t reloc_count, Output_section*, Address output_offset,
7019cd25
ILT
2028 unsigned char* view, Address address,
2029 section_size_type view_size,
2030 unsigned char* reloc_view, section_size_type reloc_view_size);
2031
2032 // Emit the relocs for --emit-relocs, templatized on the type of the
2033 // relocation section.
2034 template<int sh_type>
2035 void
2036 emit_relocs_reltype(const Relocate_info<size, big_endian>*, unsigned int,
2037 const unsigned char* prelocs, size_t reloc_count,
ef9beddf 2038 Output_section*, Address output_offset,
7019cd25
ILT
2039 unsigned char* view, Address address,
2040 section_size_type view_size,
2041 unsigned char* reloc_view,
2042 section_size_type reloc_view_size);
2043
09ec0418
CC
2044 // Scan the input relocations for --incremental.
2045 void
2046 incremental_relocs_scan(const Read_relocs_data::Relocs_list::iterator&);
2047
2048 // Scan the input relocations for --incremental, templatized on the
2049 // type of the relocation section.
2050 template<int sh_type>
2051 void
2052 incremental_relocs_scan_reltype(
2053 const Read_relocs_data::Relocs_list::iterator&);
2054
2055 void
2056 incremental_relocs_write(const Relocate_info<size, big_endian>*,
2057 unsigned int sh_type,
2058 const unsigned char* prelocs,
2059 size_t reloc_count,
2060 Output_section*,
2061 Address output_offset,
2062 Output_file*);
2063
2064 template<int sh_type>
2065 void
2066 incremental_relocs_write_reltype(const Relocate_info<size, big_endian>*,
2067 const unsigned char* prelocs,
2068 size_t reloc_count,
2069 Output_section*,
2070 Address output_offset,
2071 Output_file*);
2072
364c7fa5
ILT
2073 // A type shared by split_stack_adjust_reltype and find_functions.
2074 typedef std::map<section_offset_type, section_size_type> Function_offsets;
2075
2076 // Check for -fsplit-stack routines calling non-split-stack routines.
2077 void
2078 split_stack_adjust(const Symbol_table*, const unsigned char* pshdrs,
2079 unsigned int sh_type, unsigned int shndx,
2080 const unsigned char* prelocs, size_t reloc_count,
2081 unsigned char* view, section_size_type view_size,
2082 Reloc_symbol_changes** reloc_map);
2083
2084 template<int sh_type>
2085 void
2086 split_stack_adjust_reltype(const Symbol_table*, const unsigned char* pshdrs,
2087 unsigned int shndx, const unsigned char* prelocs,
2088 size_t reloc_count, unsigned char* view,
2089 section_size_type view_size,
2090 Reloc_symbol_changes** reloc_map);
2091
2092 // Find all functions in a section.
2093 void
2094 find_functions(const unsigned char* pshdrs, unsigned int shndx,
2095 Function_offsets*);
2096
61ba1cf9
ILT
2097 // Write out the local symbols.
2098 void
b8e6aad9 2099 write_local_symbols(Output_file*,
7bf1f802 2100 const Stringpool_template<char>*,
d491d34e
ILT
2101 const Stringpool_template<char>*,
2102 Output_symtab_xindex*,
2103 Output_symtab_xindex*);
61ba1cf9 2104
cb295612
ILT
2105 // Clear the local symbol information.
2106 void
2107 clear_local_symbols()
2108 {
2109 this->local_values_.clear();
2110 this->local_got_offsets_.clear();
cb295612
ILT
2111 }
2112
ef9beddf
ILT
2113 // Record a mapping from discarded section SHNDX to the corresponding
2114 // kept section.
2115 void
1ef4d87f
ILT
2116 set_kept_comdat_section(unsigned int shndx, Relobj* kept_object,
2117 unsigned int kept_shndx)
ef9beddf 2118 {
1ef4d87f
ILT
2119 Kept_comdat_section kept(kept_object, kept_shndx);
2120 this->kept_comdat_sections_.insert(std::make_pair(shndx, kept));
ef9beddf
ILT
2121 }
2122
1ef4d87f
ILT
2123 // Find the kept section corresponding to the discarded section
2124 // SHNDX. Return true if found.
2125 bool
2126 get_kept_comdat_section(unsigned int shndx, Relobj** kept_object,
2127 unsigned int* kept_shndx) const
ef9beddf
ILT
2128 {
2129 typename Kept_comdat_section_table::const_iterator p =
2130 this->kept_comdat_sections_.find(shndx);
2131 if (p == this->kept_comdat_sections_.end())
1ef4d87f
ILT
2132 return false;
2133 *kept_object = p->second.object;
2134 *kept_shndx = p->second.shndx;
2135 return true;
ef9beddf
ILT
2136 }
2137
07f397ab
ILT
2138 // The GOT offsets of local symbols. This map also stores GOT offsets
2139 // for tp-relative offsets for TLS symbols.
0a65a3a7 2140 typedef Unordered_map<unsigned int, Got_offset_list*> Local_got_offsets;
e727fa71 2141
07f397ab
ILT
2142 // The TLS GOT offsets of local symbols. The map stores the offsets
2143 // for either a single GOT entry that holds the module index of a TLS
2144 // symbol, or a pair of GOT entries containing the module index and
2145 // dtv-relative offset.
2146 struct Tls_got_entry
2147 {
2148 Tls_got_entry(int got_offset, bool have_pair)
2149 : got_offset_(got_offset),
2150 have_pair_(have_pair)
2151 { }
2152 int got_offset_;
2153 bool have_pair_;
2154 };
2155 typedef Unordered_map<unsigned int, Tls_got_entry> Local_tls_got_offsets;
2156
5995b570
CC
2157 // Saved information for sections whose layout was deferred.
2158 struct Deferred_layout
2159 {
2160 static const int shdr_size = elfcpp::Elf_sizes<size>::shdr_size;
2161 Deferred_layout(unsigned int shndx, const char* name,
2162 const unsigned char* pshdr,
2163 unsigned int reloc_shndx, unsigned int reloc_type)
2164 : shndx_(shndx), name_(name), reloc_shndx_(reloc_shndx),
2165 reloc_type_(reloc_type)
2166 {
2167 memcpy(this->shdr_data_, pshdr, shdr_size);
2168 }
2169 unsigned int shndx_;
2170 std::string name_;
2171 unsigned int reloc_shndx_;
2172 unsigned int reloc_type_;
2173 unsigned char shdr_data_[shdr_size];
2174 };
2175
645f8123
ILT
2176 // General access to the ELF file.
2177 elfcpp::Elf_file<size, big_endian, Object> elf_file_;
bae7f79e 2178 // Index of SHT_SYMTAB section.
645f8123 2179 unsigned int symtab_shndx_;
61ba1cf9
ILT
2180 // The number of local symbols.
2181 unsigned int local_symbol_count_;
2182 // The number of local symbols which go into the output file.
2183 unsigned int output_local_symbol_count_;
7bf1f802
ILT
2184 // The number of local symbols which go into the output file's dynamic
2185 // symbol table.
2186 unsigned int output_local_dynsym_count_;
14bfc3f5 2187 // The entries in the symbol table for the external symbols.
730cdc88 2188 Symbols symbols_;
92de84a6
ILT
2189 // Number of symbols defined in object file itself.
2190 size_t defined_count_;
75f65a3e
ILT
2191 // File offset for local symbols.
2192 off_t local_symbol_offset_;
7bf1f802
ILT
2193 // File offset for local dynamic symbols.
2194 off_t local_dynsym_offset_;
61ba1cf9 2195 // Values of local symbols.
c06b7b0b 2196 Local_values local_values_;
07f397ab
ILT
2197 // GOT offsets for local non-TLS symbols, and tp-relative offsets
2198 // for TLS symbols, indexed by symbol number.
e727fa71 2199 Local_got_offsets local_got_offsets_;
ef9beddf 2200 // For each input section, the offset of the input section in its
eff45813 2201 // output section. This is INVALID_ADDRESS if the input section requires a
ef9beddf
ILT
2202 // special mapping.
2203 std::vector<Address> section_offsets_;
2204 // Table mapping discarded comdat sections to corresponding kept sections.
2205 Kept_comdat_section_table kept_comdat_sections_;
730cdc88
ILT
2206 // Whether this object has a GNU style .eh_frame section.
2207 bool has_eh_frame_;
805bb01c
DK
2208 // If this object has a GNU style .eh_frame section that is discarded in
2209 // output, record the index here. Otherwise it is -1U.
2210 unsigned int discarded_eh_frame_shndx_;
5995b570
CC
2211 // The list of sections whose layout was deferred.
2212 std::vector<Deferred_layout> deferred_layout_;
f3a2388f
CC
2213 // The list of relocation sections whose layout was deferred.
2214 std::vector<Deferred_layout> deferred_layout_relocs_;
a2e47362
CC
2215 // For compressed debug sections, map section index to uncompressed size.
2216 Compressed_section_map* compressed_sections_;
bae7f79e
ILT
2217};
2218
54dc6425 2219// A class to manage the list of all objects.
a2fb1b05 2220
54dc6425
ILT
2221class Input_objects
2222{
2223 public:
2224 Input_objects()
fd9d194f 2225 : relobj_list_(), dynobj_list_(), sonames_(), cref_(NULL)
54dc6425
ILT
2226 { }
2227
f6ce93d6
ILT
2228 // The type of the list of input relocateable objects.
2229 typedef std::vector<Relobj*> Relobj_list;
2230 typedef Relobj_list::const_iterator Relobj_iterator;
2231
2232 // The type of the list of input dynamic objects.
2233 typedef std::vector<Dynobj*> Dynobj_list;
2234 typedef Dynobj_list::const_iterator Dynobj_iterator;
54dc6425 2235
008db82e
ILT
2236 // Add an object to the list. Return true if all is well, or false
2237 // if this object should be ignored.
2238 bool
54dc6425
ILT
2239 add_object(Object*);
2240
92de84a6
ILT
2241 // Start processing an archive.
2242 void
2243 archive_start(Archive*);
2244
2245 // Stop processing an archive.
2246 void
2247 archive_stop(Archive*);
2248
e2827e5f
ILT
2249 // For each dynamic object, check whether we've seen all of its
2250 // explicit dependencies.
2251 void
2252 check_dynamic_dependencies() const;
2253
9a2d6984
ILT
2254 // Return whether an object was found in the system library
2255 // directory.
2256 bool
2257 found_in_system_library_directory(const Object*) const;
2258
92de84a6
ILT
2259 // Print symbol counts.
2260 void
2261 print_symbol_counts(const Symbol_table*) const;
2262
dde3f402
ILT
2263 // Print a cross reference table.
2264 void
2265 print_cref(const Symbol_table*, FILE*) const;
2266
f6ce93d6
ILT
2267 // Iterate over all regular objects.
2268
2269 Relobj_iterator
2270 relobj_begin() const
2271 { return this->relobj_list_.begin(); }
2272
2273 Relobj_iterator
2274 relobj_end() const
2275 { return this->relobj_list_.end(); }
2276
2277 // Iterate over all dynamic objects.
2278
2279 Dynobj_iterator
2280 dynobj_begin() const
2281 { return this->dynobj_list_.begin(); }
54dc6425 2282
f6ce93d6
ILT
2283 Dynobj_iterator
2284 dynobj_end() const
2285 { return this->dynobj_list_.end(); }
54dc6425
ILT
2286
2287 // Return whether we have seen any dynamic objects.
2288 bool
2289 any_dynamic() const
f6ce93d6 2290 { return !this->dynobj_list_.empty(); }
54dc6425 2291
fa17a3f4
ILT
2292 // Return the number of non dynamic objects.
2293 int
2294 number_of_relobjs() const
2295 { return this->relobj_list_.size(); }
2296
fe9a4c12
ILT
2297 // Return the number of input objects.
2298 int
2299 number_of_input_objects() const
2300 { return this->relobj_list_.size() + this->dynobj_list_.size(); }
2301
54dc6425
ILT
2302 private:
2303 Input_objects(const Input_objects&);
2304 Input_objects& operator=(const Input_objects&);
2305
008db82e 2306 // The list of ordinary objects included in the link.
f6ce93d6 2307 Relobj_list relobj_list_;
008db82e 2308 // The list of dynamic objects included in the link.
f6ce93d6 2309 Dynobj_list dynobj_list_;
008db82e
ILT
2310 // SONAMEs that we have seen.
2311 Unordered_set<std::string> sonames_;
92de84a6
ILT
2312 // Manage cross-references if requested.
2313 Cref* cref_;
54dc6425 2314};
a2fb1b05 2315
92e059d8
ILT
2316// Some of the information we pass to the relocation routines. We
2317// group this together to avoid passing a dozen different arguments.
2318
2319template<int size, bool big_endian>
2320struct Relocate_info
2321{
92e059d8
ILT
2322 // Symbol table.
2323 const Symbol_table* symtab;
2324 // Layout.
2325 const Layout* layout;
2326 // Object being relocated.
f6ce93d6 2327 Sized_relobj<size, big_endian>* object;
92e059d8
ILT
2328 // Section index of relocation section.
2329 unsigned int reloc_shndx;
82bb573a
ILT
2330 // Section header of relocation section.
2331 const unsigned char* reloc_shdr;
92e059d8
ILT
2332 // Section index of section being relocated.
2333 unsigned int data_shndx;
82bb573a
ILT
2334 // Section header of data section.
2335 const unsigned char* data_shdr;
92e059d8
ILT
2336
2337 // Return a string showing the location of a relocation. This is
2338 // only used for error messages.
2339 std::string
2340 location(size_t relnum, off_t reloffset) const;
2341};
2342
5ac169d4
DK
2343// This is used to represent a section in an object and is used as the
2344// key type for various section maps.
2345typedef std::pair<Object*, unsigned int> Section_id;
2346
2347// This is similar to Section_id but is used when the section
2348// pointers are const.
2349typedef std::pair<const Object*, unsigned int> Const_section_id;
2350
2351// The hash value is based on the address of an object in memory during
2352// linking. It is okay to use this for looking up sections but never use
2353// this in an unordered container that we want to traverse in a repeatable
2354// manner.
2355
2356struct Section_id_hash
2357{
2358 size_t operator()(const Section_id& loc) const
2359 { return reinterpret_cast<uintptr_t>(loc.first) ^ loc.second; }
2360};
2361
2362struct Const_section_id_hash
2363{
2364 size_t operator()(const Const_section_id& loc) const
2365 { return reinterpret_cast<uintptr_t>(loc.first) ^ loc.second; }
2366};
2367
f6060a4d
ILT
2368// Return whether INPUT_FILE contains an ELF object start at file
2369// offset OFFSET. This sets *START to point to a view of the start of
2370// the file. It sets *READ_SIZE to the number of bytes in the view.
2371
2372extern bool
2373is_elf_object(Input_file* input_file, off_t offset,
2374 const unsigned char** start, int *read_size);
2375
bae7f79e 2376// Return an Object appropriate for the input file. P is BYTES long,
15f8229b
ILT
2377// and holds the ELF header. If PUNCONFIGURED is not NULL, then if
2378// this sees an object the linker is not configured to support, it
2379// sets *PUNCONFIGURED to true and returns NULL without giving an
2380// error message.
bae7f79e 2381
61ba1cf9
ILT
2382extern Object*
2383make_elf_object(const std::string& name, Input_file*,
2384 off_t offset, const unsigned char* p,
15f8229b 2385 section_offset_type bytes, bool* punconfigured);
bae7f79e
ILT
2386
2387} // end namespace gold
2388
2389#endif // !defined(GOLD_OBJECT_H)
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