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[deliverable/binutils-gdb.git] / gold / ehframe.h
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1// ehframe.h -- handle exception frame sections for gold -*- C++ -*-
2
07a60597 3// Copyright 2006, 2007, 2008, 2010, 2011 Free Software Foundation, Inc.
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4// Written by Ian Lance Taylor <iant@google.com>.
5
6// This file is part of gold.
7
8// This program is free software; you can redistribute it and/or modify
9// it under the terms of the GNU General Public License as published by
10// the Free Software Foundation; either version 3 of the License, or
11// (at your option) any later version.
12
13// This program is distributed in the hope that it will be useful,
14// but WITHOUT ANY WARRANTY; without even the implied warranty of
15// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16// GNU General Public License for more details.
17
18// You should have received a copy of the GNU General Public License
19// along with this program; if not, write to the Free Software
20// Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
21// MA 02110-1301, USA.
22
23#ifndef GOLD_EHFRAME_H
24#define GOLD_EHFRAME_H
25
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26#include <map>
27#include <set>
28#include <vector>
29
3151305a 30#include "output.h"
730cdc88 31#include "merge.h"
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32
33namespace gold
34{
35
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36template<int size, bool big_endian>
37class Track_relocs;
38
39class Eh_frame;
40
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41// This class manages the .eh_frame_hdr section, which holds the data
42// for the PT_GNU_EH_FRAME segment. gcc's unwind support code uses
43// the PT_GNU_EH_FRAME segment to find the list of FDEs. This saves
44// the time required to register the exception handlers at startup
45// time and when a shared object is loaded, and the time required to
46// deregister the exception handlers when a shared object is unloaded.
47
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48class Eh_frame_hdr : public Output_section_data
49{
50 public:
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51 Eh_frame_hdr(Output_section* eh_frame_section, const Eh_frame*);
52
53 // Record that we found an unrecognized .eh_frame section.
54 void
55 found_unrecognized_eh_frame_section()
56 { this->any_unrecognized_eh_frame_sections_ = true; }
57
58 // Record an FDE.
59 void
8383303e 60 record_fde(section_offset_type fde_offset, unsigned char fde_encoding)
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61 {
62 if (!this->any_unrecognized_eh_frame_sections_)
63 this->fde_offsets_.push_back(std::make_pair(fde_offset, fde_encoding));
64 }
3151305a 65
7d9e3d98 66 protected:
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67 // Set the final data size.
68 void
27bc2bce 69 set_final_data_size();
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70
71 // Write the data to the file.
72 void
73 do_write(Output_file*);
74
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75 // Write to a map file.
76 void
77 do_print_to_mapfile(Mapfile* mapfile) const
78 { mapfile->print_output_data(this, _("** eh_frame_hdr")); }
79
3151305a 80 private:
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81 // Write the data to the file with the right endianness.
82 template<int size, bool big_endian>
83 void
84 do_sized_write(Output_file*);
85
86 // The data we record for one FDE: the offset of the FDE within the
87 // .eh_frame section, and the FDE encoding.
8383303e 88 typedef std::pair<section_offset_type, unsigned char> Fde_offset;
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89
90 // The list of information we record for an FDE.
91 typedef std::vector<Fde_offset> Fde_offsets;
92
93 // When writing out the header, we convert the FDE offsets into FDE
94 // addresses. This is a list of pairs of the offset from the header
95 // to the FDE PC and to the FDE itself.
96 template<int size>
97 class Fde_addresses
98 {
99 public:
100 typedef typename elfcpp::Elf_types<size>::Elf_Addr Address;
101 typedef typename std::pair<Address, Address> Fde_address;
102 typedef typename std::vector<Fde_address> Fde_address_list;
103 typedef typename Fde_address_list::iterator iterator;
104
105 Fde_addresses(unsigned int reserve)
106 : fde_addresses_()
107 { this->fde_addresses_.reserve(reserve); }
108
109 void
110 push_back(Address pc_address, Address fde_address)
111 {
112 this->fde_addresses_.push_back(std::make_pair(pc_address, fde_address));
113 }
114
115 iterator
116 begin()
117 { return this->fde_addresses_.begin(); }
118
119 iterator
120 end()
121 { return this->fde_addresses_.end(); }
122
123 private:
124 Fde_address_list fde_addresses_;
125 };
126
127 // Compare Fde_address objects.
128 template<int size>
129 struct Fde_address_compare
130 {
131 bool
132 operator()(const typename Fde_addresses<size>::Fde_address& f1,
133 const typename Fde_addresses<size>::Fde_address& f2) const
134 { return f1.first < f2.first; }
135 };
136
137 // Return the PC to which an FDE refers.
138 template<int size, bool big_endian>
139 typename elfcpp::Elf_types<size>::Elf_Addr
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140 get_fde_pc(typename elfcpp::Elf_types<size>::Elf_Addr eh_frame_address,
141 const unsigned char* eh_frame_contents,
8383303e 142 section_offset_type fde_offset, unsigned char fde_encoding);
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143
144 // Convert Fde_offsets to Fde_addresses.
145 template<int size, bool big_endian>
146 void
147 get_fde_addresses(Output_file* of,
148 const Fde_offsets* fde_offsets,
149 Fde_addresses<size>* fde_addresses);
150
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151 // The .eh_frame section.
152 Output_section* eh_frame_section_;
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153 // The .eh_frame section data.
154 const Eh_frame* eh_frame_data_;
155 // Data from the FDEs in the .eh_frame sections.
156 Fde_offsets fde_offsets_;
157 // Whether we found any .eh_frame sections which we could not
158 // process.
159 bool any_unrecognized_eh_frame_sections_;
160};
161
162// This class holds an FDE.
163
164class Fde
165{
166 public:
8383303e 167 Fde(Relobj* object, unsigned int shndx, section_offset_type input_offset,
2ea97941 168 const unsigned char* contents, size_t length)
07a60597 169 : object_(object),
2ea97941 170 contents_(reinterpret_cast<const char*>(contents), length)
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171 {
172 this->u_.from_object.shndx = shndx;
173 this->u_.from_object.input_offset = input_offset;
174 }
175
176 // Create an FDE associated with a PLT.
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177 Fde(Output_data* plt, const unsigned char* contents, size_t length,
178 bool post_map)
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179 : object_(NULL),
180 contents_(reinterpret_cast<const char*>(contents), length)
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181 {
182 this->u_.from_linker.plt = plt;
183 this->u_.from_linker.post_map = post_map;
184 }
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185
186 // Return the length of this FDE. Add 4 for the length and 4 for
187 // the offset to the CIE.
188 size_t
189 length() const
190 { return this->contents_.length() + 8; }
191
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192 // Add a mapping for this FDE to MERGE_MAP, so that relocations
193 // against the FDE are applied to right part of the output file.
730cdc88 194 void
8383303e 195 add_mapping(section_offset_type output_offset, Merge_map* merge_map) const
730cdc88 196 {
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197 if (this->object_ != NULL)
198 merge_map->add_mapping(this->object_, this->u_.from_object.shndx,
199 this->u_.from_object.input_offset, this->length(),
200 output_offset);
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201 }
202
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203 // Return whether this FDE was added after merge mapping.
204 bool
205 post_map()
206 { return this->object_ == NULL && this->u_.from_linker.post_map; }
207
730cdc88 208 // Write the FDE to OVIEW starting at OFFSET. FDE_ENCODING is the
935e8877 209 // encoding, from the CIE. Round up the bytes to ADDRALIGN if
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210 // necessary. ADDRESS is the virtual address of OVIEW. Record the
211 // FDE in EH_FRAME_HDR. Return the new offset.
730cdc88 212 template<int size, bool big_endian>
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213 section_offset_type
214 write(unsigned char* oview, section_offset_type offset,
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215 uint64_t address, unsigned int addralign,
216 section_offset_type cie_offset, unsigned char fde_encoding,
217 Eh_frame_hdr* eh_frame_hdr);
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218
219 private:
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220 // The object in which this FDE was seen. This will be NULL for a
221 // linker generated FDE.
730cdc88 222 Relobj* object_;
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223 union
224 {
225 // These fields are used if the FDE is from an input object (the
226 // object_ field is not NULL).
227 struct
228 {
229 // Input section index for this FDE.
230 unsigned int shndx;
231 // Offset within the input section for this FDE.
232 section_offset_type input_offset;
233 } from_object;
234 // This field is used if the FDE is generated by the linker (the
235 // object_ field is NULL).
236 struct
237 {
238 // The only linker generated FDEs are for PLT sections, and this
239 // points to the PLT section.
240 Output_data* plt;
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241 // Set if the FDE was added after merge mapping.
242 bool post_map;
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243 } from_linker;
244 } u_;
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245 // FDE data.
246 std::string contents_;
247};
248
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249// FDEs stashed for later processing.
250
251struct Post_fde;
252typedef std::vector<Post_fde*> Post_fdes;
253
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254// This class holds a CIE.
255
256class Cie
257{
258 public:
8383303e 259 Cie(Relobj* object, unsigned int shndx, section_offset_type input_offset,
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260 unsigned char fde_encoding, const char* personality_name,
261 const unsigned char* contents, size_t length)
262 : object_(object),
263 shndx_(shndx),
264 input_offset_(input_offset),
265 fde_encoding_(fde_encoding),
266 personality_name_(personality_name),
267 fdes_(),
268 contents_(reinterpret_cast<const char*>(contents), length)
269 { }
270
271 ~Cie();
272
273 // We permit copying a CIE when there are no FDEs. This is
274 // convenient in the code which creates them.
275 Cie(const Cie& cie)
276 : object_(cie.object_),
277 shndx_(cie.shndx_),
278 input_offset_(cie.input_offset_),
279 fde_encoding_(cie.fde_encoding_),
280 personality_name_(cie.personality_name_),
281 fdes_(),
282 contents_(cie.contents_)
283 { gold_assert(cie.fdes_.empty()); }
284
285 // Add an FDE associated with this CIE.
286 void
287 add_fde(Fde* fde)
288 { this->fdes_.push_back(fde); }
289
290 // Return the number of FDEs.
291 unsigned int
292 fde_count() const
293 { return this->fdes_.size(); }
294
295 // Set the output offset of this CIE to OUTPUT_OFFSET. It will be
296 // followed by all its FDEs. ADDRALIGN is the required address
297 // alignment, typically 4 or 8. This updates MERGE_MAP with the
298 // mapping. It returns the new output offset.
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299 section_offset_type
300 set_output_offset(section_offset_type output_offset, unsigned int addralign,
301 Merge_map*);
730cdc88 302
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303 // Write the CIE to OVIEW starting at OFFSET. Round up the bytes to
304 // ADDRALIGN. ADDRESS is the virtual address of OVIEW.
305 // EH_FRAME_HDR is the exception frame header for FDE recording.
306 // POST_FDES stashes FDEs created after mappings were done, for later
307 // writing. Return the new offset.
730cdc88 308 template<int size, bool big_endian>
8383303e 309 section_offset_type
07a60597 310 write(unsigned char* oview, section_offset_type offset, uint64_t address,
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311 unsigned int addralign, Eh_frame_hdr* eh_frame_hdr,
312 Post_fdes* post_fdes);
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313
314 friend bool operator<(const Cie&, const Cie&);
315 friend bool operator==(const Cie&, const Cie&);
316
317 private:
318 // The class is not assignable.
319 Cie& operator=(const Cie&);
320
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321 // The object in which this CIE was first seen. This will be NULL
322 // for a linker generated CIE.
730cdc88 323 Relobj* object_;
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324 // Input section index for this CIE. This will be 0 for a linker
325 // generated CIE.
730cdc88 326 unsigned int shndx_;
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327 // Offset within the input section for this CIE. This will be 0 for
328 // a linker generated CIE.
8383303e 329 section_offset_type input_offset_;
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330 // The encoding of the FDE. This is a DW_EH_PE code.
331 unsigned char fde_encoding_;
332 // The name of the personality routine. This will be the name of a
333 // global symbol, or will be the empty string.
334 std::string personality_name_;
335 // List of FDEs.
336 std::vector<Fde*> fdes_;
337 // CIE data.
338 std::string contents_;
339};
340
341extern bool operator<(const Cie&, const Cie&);
342extern bool operator==(const Cie&, const Cie&);
343
344// This class manages .eh_frame sections. It discards duplicate
345// exception information.
346
347class Eh_frame : public Output_section_data
348{
349 public:
350 Eh_frame();
351
352 // Record the associated Eh_frame_hdr, if any.
353 void
354 set_eh_frame_hdr(Eh_frame_hdr* hdr)
355 { this->eh_frame_hdr_ = hdr; }
356
357 // Add the input section SHNDX in OBJECT. SYMBOLS is the contents
358 // of the symbol table section (size SYMBOLS_SIZE), SYMBOL_NAMES is
359 // the symbol names section (size SYMBOL_NAMES_SIZE). RELOC_SHNDX
360 // is the relocation section if any (0 for none, -1U for multiple).
361 // RELOC_TYPE is the type of the relocation section if any. This
362 // returns whether the section was incorporated into the .eh_frame
363 // data.
364 template<int size, bool big_endian>
365 bool
6fa2a40b 366 add_ehframe_input_section(Sized_relobj_file<size, big_endian>* object,
730cdc88 367 const unsigned char* symbols,
8383303e 368 section_size_type symbols_size,
730cdc88 369 const unsigned char* symbol_names,
8383303e 370 section_size_type symbol_names_size,
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371 unsigned int shndx, unsigned int reloc_shndx,
372 unsigned int reloc_type);
373
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374 // Add a CIE and an FDE for a PLT section, to permit unwinding
375 // through a PLT. The FDE data should start with 8 bytes of zero,
376 // which will be replaced by a 4 byte PC relative reference to the
377 // address of PLT and a 4 byte size of PLT.
378 void
379 add_ehframe_for_plt(Output_data* plt, const unsigned char* cie_data,
380 size_t cie_length, const unsigned char* fde_data,
381 size_t fde_length);
382
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383 // Return the number of FDEs.
384 unsigned int
385 fde_count() const;
386
7d9e3d98 387 protected:
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388 // Set the final data size.
389 void
27bc2bce 390 set_final_data_size();
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391
392 // Return the output address for an input address.
393 bool
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394 do_output_offset(const Relobj*, unsigned int shndx,
395 section_offset_type offset,
396 section_offset_type* poutput) const;
730cdc88 397
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398 // Return whether this is the merge section for an input section.
399 bool
400 do_is_merge_section_for(const Relobj*, unsigned int shndx) const;
401
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402 // Write the data to the file.
403 void
404 do_write(Output_file*);
405
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406 // Write to a map file.
407 void
408 do_print_to_mapfile(Mapfile* mapfile) const
409 { mapfile->print_output_data(this, _("** eh_frame")); }
410
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411 private:
412 // The comparison routine for the CIE map.
413 struct Cie_less
414 {
415 bool
416 operator()(const Cie* cie1, const Cie* cie2) const
417 { return *cie1 < *cie2; }
418 };
419
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420 // A set of unique CIEs.
421 typedef std::set<Cie*, Cie_less> Cie_offsets;
730cdc88 422
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423 // A list of unmergeable CIEs.
424 typedef std::vector<Cie*> Unmergeable_cie_offsets;
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425
426 // A mapping from offsets to CIEs. This is used while reading an
427 // input section.
428 typedef std::map<uint64_t, Cie*> Offsets_to_cie;
429
430 // A list of CIEs, and a bool indicating whether the CIE is
431 // mergeable.
432 typedef std::vector<std::pair<Cie*, bool> > New_cies;
433
434 // Skip an LEB128.
435 static bool
436 skip_leb128(const unsigned char**, const unsigned char*);
437
438 // The implementation of add_ehframe_input_section.
439 template<int size, bool big_endian>
440 bool
6fa2a40b 441 do_add_ehframe_input_section(Sized_relobj_file<size, big_endian>* object,
730cdc88 442 const unsigned char* symbols,
8383303e 443 section_size_type symbols_size,
730cdc88 444 const unsigned char* symbol_names,
8383303e 445 section_size_type symbol_names_size,
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446 unsigned int shndx,
447 unsigned int reloc_shndx,
448 unsigned int reloc_type,
449 const unsigned char* pcontents,
8383303e 450 section_size_type contents_len,
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451 New_cies*);
452
453 // Read a CIE.
454 template<int size, bool big_endian>
455 bool
6fa2a40b 456 read_cie(Sized_relobj_file<size, big_endian>* object,
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457 unsigned int shndx,
458 const unsigned char* symbols,
8383303e 459 section_size_type symbols_size,
730cdc88 460 const unsigned char* symbol_names,
8383303e 461 section_size_type symbol_names_size,
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462 const unsigned char* pcontents,
463 const unsigned char* pcie,
ca09d69a 464 const unsigned char* pcieend,
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465 Track_relocs<size, big_endian>* relocs,
466 Offsets_to_cie* cies,
467 New_cies* new_cies);
468
469 // Read an FDE.
470 template<int size, bool big_endian>
471 bool
6fa2a40b 472 read_fde(Sized_relobj_file<size, big_endian>* object,
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473 unsigned int shndx,
474 const unsigned char* symbols,
8383303e 475 section_size_type symbols_size,
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476 const unsigned char* pcontents,
477 unsigned int offset,
478 const unsigned char* pfde,
ca09d69a 479 const unsigned char* pfdeend,
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480 Track_relocs<size, big_endian>* relocs,
481 Offsets_to_cie* cies);
482
483 // Template version of write function.
484 template<int size, bool big_endian>
485 void
486 do_sized_write(unsigned char* oview);
487
488 // The exception frame header, if any.
489 Eh_frame_hdr* eh_frame_hdr_;
490 // A mapping from all unique CIEs to their offset in the output
491 // file.
492 Cie_offsets cie_offsets_;
493 // A mapping from unmergeable CIEs to their offset in the output
494 // file.
495 Unmergeable_cie_offsets unmergeable_cie_offsets_;
496 // A mapping from input sections to the output section.
497 Merge_map merge_map_;
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498 // Whether we have created the mappings to the output section.
499 bool mappings_are_done_;
500 // The final data size. This is only set if mappings_are_done_ is
501 // true.
502 section_size_type final_data_size_;
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503};
504
505} // End namespace gold.
506
507#endif // !defined(GOLD_EHFRAME_H)
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