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a2fb1b05 ILT |
1 | // layout.cc -- lay out output file sections for gold |
2 | ||
6cb15b7f ILT |
3 | // Copyright 2006, 2007 Free Software Foundation, Inc. |
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 | ||
a2fb1b05 ILT |
23 | #include "gold.h" |
24 | ||
a2fb1b05 | 25 | #include <cstring> |
54dc6425 | 26 | #include <algorithm> |
a2fb1b05 ILT |
27 | #include <iostream> |
28 | #include <utility> | |
29 | ||
7e1edb90 | 30 | #include "parameters.h" |
a2fb1b05 | 31 | #include "output.h" |
f6ce93d6 | 32 | #include "symtab.h" |
a3ad94ed | 33 | #include "dynobj.h" |
3151305a | 34 | #include "ehframe.h" |
a2fb1b05 ILT |
35 | #include "layout.h" |
36 | ||
37 | namespace gold | |
38 | { | |
39 | ||
92e059d8 | 40 | // Layout_task_runner methods. |
a2fb1b05 ILT |
41 | |
42 | // Lay out the sections. This is called after all the input objects | |
43 | // have been read. | |
44 | ||
45 | void | |
92e059d8 | 46 | Layout_task_runner::run(Workqueue* workqueue) |
a2fb1b05 | 47 | { |
12e14209 ILT |
48 | off_t file_size = this->layout_->finalize(this->input_objects_, |
49 | this->symtab_); | |
61ba1cf9 ILT |
50 | |
51 | // Now we know the final size of the output file and we know where | |
52 | // each piece of information goes. | |
c51e6221 ILT |
53 | Output_file* of = new Output_file(this->options_, |
54 | this->input_objects_->target()); | |
61ba1cf9 ILT |
55 | of->open(file_size); |
56 | ||
57 | // Queue up the final set of tasks. | |
58 | gold::queue_final_tasks(this->options_, this->input_objects_, | |
12e14209 | 59 | this->symtab_, this->layout_, workqueue, of); |
a2fb1b05 ILT |
60 | } |
61 | ||
62 | // Layout methods. | |
63 | ||
54dc6425 | 64 | Layout::Layout(const General_options& options) |
a3ad94ed | 65 | : options_(options), namepool_(), sympool_(), dynpool_(), signatures_(), |
61ba1cf9 | 66 | section_name_map_(), segment_list_(), section_list_(), |
a3ad94ed | 67 | unattached_section_list_(), special_output_list_(), |
14b31740 | 68 | tls_segment_(NULL), symtab_section_(NULL), |
3151305a | 69 | dynsym_section_(NULL), dynamic_section_(NULL), dynamic_data_(NULL), |
35cdfc9a ILT |
70 | eh_frame_section_(NULL), output_file_size_(-1), |
71 | input_requires_executable_stack_(false), | |
72 | input_with_gnu_stack_note_(false), | |
07f397ab ILT |
73 | input_without_gnu_stack_note_(false), |
74 | have_textrel_(false) | |
54dc6425 ILT |
75 | { |
76 | // Make space for more than enough segments for a typical file. | |
77 | // This is just for efficiency--it's OK if we wind up needing more. | |
a3ad94ed ILT |
78 | this->segment_list_.reserve(12); |
79 | ||
80 | // We expect three unattached Output_data objects: the file header, | |
81 | // the segment headers, and the section headers. | |
82 | this->special_output_list_.reserve(3); | |
54dc6425 ILT |
83 | } |
84 | ||
a2fb1b05 ILT |
85 | // Hash a key we use to look up an output section mapping. |
86 | ||
87 | size_t | |
88 | Layout::Hash_key::operator()(const Layout::Key& k) const | |
89 | { | |
f0641a0b | 90 | return k.first + k.second.first + k.second.second; |
a2fb1b05 ILT |
91 | } |
92 | ||
9e2dcb77 ILT |
93 | // Return whether PREFIX is a prefix of STR. |
94 | ||
95 | static inline bool | |
96 | is_prefix_of(const char* prefix, const char* str) | |
97 | { | |
98 | return strncmp(prefix, str, strlen(prefix)) == 0; | |
99 | } | |
100 | ||
a2fb1b05 ILT |
101 | // Whether to include this section in the link. |
102 | ||
103 | template<int size, bool big_endian> | |
104 | bool | |
730cdc88 | 105 | Layout::include_section(Sized_relobj<size, big_endian>*, const char* name, |
a2fb1b05 ILT |
106 | const elfcpp::Shdr<size, big_endian>& shdr) |
107 | { | |
108 | // Some section types are never linked. Some are only linked when | |
109 | // doing a relocateable link. | |
110 | switch (shdr.get_sh_type()) | |
111 | { | |
112 | case elfcpp::SHT_NULL: | |
113 | case elfcpp::SHT_SYMTAB: | |
114 | case elfcpp::SHT_DYNSYM: | |
115 | case elfcpp::SHT_STRTAB: | |
116 | case elfcpp::SHT_HASH: | |
117 | case elfcpp::SHT_DYNAMIC: | |
118 | case elfcpp::SHT_SYMTAB_SHNDX: | |
119 | return false; | |
120 | ||
121 | case elfcpp::SHT_RELA: | |
122 | case elfcpp::SHT_REL: | |
123 | case elfcpp::SHT_GROUP: | |
7e1edb90 | 124 | return parameters->output_is_object(); |
a2fb1b05 | 125 | |
9e2dcb77 ILT |
126 | case elfcpp::SHT_PROGBITS: |
127 | if (parameters->strip_debug() | |
128 | && (shdr.get_sh_flags() & elfcpp::SHF_ALLOC) == 0) | |
129 | { | |
130 | // Debugging sections can only be recognized by name. | |
131 | if (is_prefix_of(".debug", name) | |
132 | || is_prefix_of(".gnu.linkonce.wi.", name) | |
133 | || is_prefix_of(".line", name) | |
134 | || is_prefix_of(".stab", name)) | |
135 | return false; | |
136 | } | |
137 | return true; | |
138 | ||
a2fb1b05 | 139 | default: |
a2fb1b05 ILT |
140 | return true; |
141 | } | |
142 | } | |
143 | ||
ead1e424 | 144 | // Return an output section named NAME, or NULL if there is none. |
a2fb1b05 | 145 | |
a2fb1b05 | 146 | Output_section* |
ead1e424 | 147 | Layout::find_output_section(const char* name) const |
a2fb1b05 | 148 | { |
ead1e424 ILT |
149 | for (Section_name_map::const_iterator p = this->section_name_map_.begin(); |
150 | p != this->section_name_map_.end(); | |
151 | ++p) | |
f0641a0b | 152 | if (strcmp(p->second->name(), name) == 0) |
ead1e424 ILT |
153 | return p->second; |
154 | return NULL; | |
155 | } | |
a2fb1b05 | 156 | |
ead1e424 ILT |
157 | // Return an output segment of type TYPE, with segment flags SET set |
158 | // and segment flags CLEAR clear. Return NULL if there is none. | |
a2fb1b05 | 159 | |
ead1e424 ILT |
160 | Output_segment* |
161 | Layout::find_output_segment(elfcpp::PT type, elfcpp::Elf_Word set, | |
162 | elfcpp::Elf_Word clear) const | |
163 | { | |
164 | for (Segment_list::const_iterator p = this->segment_list_.begin(); | |
165 | p != this->segment_list_.end(); | |
166 | ++p) | |
167 | if (static_cast<elfcpp::PT>((*p)->type()) == type | |
168 | && ((*p)->flags() & set) == set | |
169 | && ((*p)->flags() & clear) == 0) | |
170 | return *p; | |
171 | return NULL; | |
172 | } | |
a2fb1b05 | 173 | |
ead1e424 ILT |
174 | // Return the output section to use for section NAME with type TYPE |
175 | // and section flags FLAGS. | |
a2fb1b05 | 176 | |
ead1e424 | 177 | Output_section* |
f0641a0b ILT |
178 | Layout::get_output_section(const char* name, Stringpool::Key name_key, |
179 | elfcpp::Elf_Word type, elfcpp::Elf_Xword flags) | |
ead1e424 ILT |
180 | { |
181 | // We should ignore some flags. | |
182 | flags &= ~ (elfcpp::SHF_INFO_LINK | |
183 | | elfcpp::SHF_LINK_ORDER | |
b8e6aad9 ILT |
184 | | elfcpp::SHF_GROUP |
185 | | elfcpp::SHF_MERGE | |
186 | | elfcpp::SHF_STRINGS); | |
a2fb1b05 | 187 | |
f0641a0b | 188 | const Key key(name_key, std::make_pair(type, flags)); |
a2fb1b05 ILT |
189 | const std::pair<Key, Output_section*> v(key, NULL); |
190 | std::pair<Section_name_map::iterator, bool> ins( | |
191 | this->section_name_map_.insert(v)); | |
192 | ||
a2fb1b05 | 193 | if (!ins.second) |
ead1e424 | 194 | return ins.first->second; |
a2fb1b05 ILT |
195 | else |
196 | { | |
197 | // This is the first time we've seen this name/type/flags | |
198 | // combination. | |
ead1e424 | 199 | Output_section* os = this->make_output_section(name, type, flags); |
a2fb1b05 | 200 | ins.first->second = os; |
ead1e424 | 201 | return os; |
a2fb1b05 | 202 | } |
ead1e424 ILT |
203 | } |
204 | ||
205 | // Return the output section to use for input section SHNDX, with name | |
730cdc88 ILT |
206 | // NAME, with header HEADER, from object OBJECT. RELOC_SHNDX is the |
207 | // index of a relocation section which applies to this section, or 0 | |
208 | // if none, or -1U if more than one. RELOC_TYPE is the type of the | |
209 | // relocation section if there is one. Set *OFF to the offset of this | |
210 | // input section without the output section. Return NULL if the | |
211 | // section should be discarded. Set *OFF to -1 if the section | |
212 | // contents should not be written directly to the output file, but | |
213 | // will instead receive special handling. | |
ead1e424 ILT |
214 | |
215 | template<int size, bool big_endian> | |
216 | Output_section* | |
730cdc88 ILT |
217 | Layout::layout(Sized_relobj<size, big_endian>* object, unsigned int shndx, |
218 | const char* name, const elfcpp::Shdr<size, big_endian>& shdr, | |
219 | unsigned int reloc_shndx, unsigned int, off_t* off) | |
ead1e424 ILT |
220 | { |
221 | if (!this->include_section(object, name, shdr)) | |
222 | return NULL; | |
223 | ||
224 | // If we are not doing a relocateable link, choose the name to use | |
225 | // for the output section. | |
226 | size_t len = strlen(name); | |
7e1edb90 | 227 | if (!parameters->output_is_object()) |
ead1e424 ILT |
228 | name = Layout::output_section_name(name, &len); |
229 | ||
230 | // FIXME: Handle SHF_OS_NONCONFORMING here. | |
231 | ||
232 | // Canonicalize the section name. | |
f0641a0b | 233 | Stringpool::Key name_key; |
cfd73a4e | 234 | name = this->namepool_.add_prefix(name, len, &name_key); |
ead1e424 ILT |
235 | |
236 | // Find the output section. The output section is selected based on | |
237 | // the section name, type, and flags. | |
f0641a0b ILT |
238 | Output_section* os = this->get_output_section(name, name_key, |
239 | shdr.get_sh_type(), | |
ead1e424 | 240 | shdr.get_sh_flags()); |
a2fb1b05 ILT |
241 | |
242 | // FIXME: Handle SHF_LINK_ORDER somewhere. | |
243 | ||
730cdc88 | 244 | *off = os->add_input_section(object, shndx, name, shdr, reloc_shndx); |
a2fb1b05 ILT |
245 | |
246 | return os; | |
247 | } | |
248 | ||
730cdc88 ILT |
249 | // Special GNU handling of sections name .eh_frame. They will |
250 | // normally hold exception frame data as defined by the C++ ABI | |
251 | // (http://codesourcery.com/cxx-abi/). | |
3151305a ILT |
252 | |
253 | template<int size, bool big_endian> | |
730cdc88 ILT |
254 | Output_section* |
255 | Layout::layout_eh_frame(Sized_relobj<size, big_endian>* object, | |
256 | const unsigned char* symbols, | |
257 | off_t symbols_size, | |
258 | const unsigned char* symbol_names, | |
259 | off_t symbol_names_size, | |
3151305a | 260 | unsigned int shndx, |
3151305a | 261 | const elfcpp::Shdr<size, big_endian>& shdr, |
730cdc88 ILT |
262 | unsigned int reloc_shndx, unsigned int reloc_type, |
263 | off_t* off) | |
3151305a | 264 | { |
730cdc88 ILT |
265 | gold_assert(shdr.get_sh_type() == elfcpp::SHT_PROGBITS); |
266 | gold_assert(shdr.get_sh_flags() == elfcpp::SHF_ALLOC); | |
267 | ||
268 | Stringpool::Key name_key; | |
269 | const char* name = this->namepool_.add(".eh_frame", false, &name_key); | |
270 | ||
271 | Output_section* os = this->get_output_section(name, name_key, | |
272 | elfcpp::SHT_PROGBITS, | |
273 | elfcpp::SHF_ALLOC); | |
274 | ||
3151305a ILT |
275 | if (this->eh_frame_section_ == NULL) |
276 | { | |
277 | this->eh_frame_section_ = os; | |
730cdc88 ILT |
278 | this->eh_frame_data_ = new Eh_frame(); |
279 | os->add_output_section_data(this->eh_frame_data_); | |
3151305a ILT |
280 | |
281 | if (this->options_.create_eh_frame_hdr()) | |
282 | { | |
283 | Stringpool::Key hdr_name_key; | |
284 | const char* hdr_name = this->namepool_.add(".eh_frame_hdr", | |
cfd73a4e | 285 | false, |
3151305a ILT |
286 | &hdr_name_key); |
287 | Output_section* hdr_os = | |
288 | this->get_output_section(hdr_name, hdr_name_key, | |
289 | elfcpp::SHT_PROGBITS, | |
290 | elfcpp::SHF_ALLOC); | |
291 | ||
730cdc88 | 292 | Eh_frame_hdr* hdr_posd = new Eh_frame_hdr(os, this->eh_frame_data_); |
3151305a ILT |
293 | hdr_os->add_output_section_data(hdr_posd); |
294 | ||
730cdc88 ILT |
295 | hdr_os->set_after_input_sections(); |
296 | ||
3151305a ILT |
297 | Output_segment* hdr_oseg = |
298 | new Output_segment(elfcpp::PT_GNU_EH_FRAME, elfcpp::PF_R); | |
299 | this->segment_list_.push_back(hdr_oseg); | |
300 | hdr_oseg->add_output_section(hdr_os, elfcpp::PF_R); | |
730cdc88 ILT |
301 | |
302 | this->eh_frame_data_->set_eh_frame_hdr(hdr_posd); | |
3151305a ILT |
303 | } |
304 | } | |
305 | ||
306 | gold_assert(this->eh_frame_section_ == os); | |
307 | ||
730cdc88 ILT |
308 | if (this->eh_frame_data_->add_ehframe_input_section(object, |
309 | symbols, | |
310 | symbols_size, | |
311 | symbol_names, | |
312 | symbol_names_size, | |
313 | shndx, | |
314 | reloc_shndx, | |
315 | reloc_type)) | |
316 | *off = -1; | |
317 | else | |
318 | { | |
319 | // We couldn't handle this .eh_frame section for some reason. | |
320 | // Add it as a normal section. | |
321 | *off = os->add_input_section(object, shndx, name, shdr, reloc_shndx); | |
322 | } | |
323 | ||
324 | return os; | |
3151305a ILT |
325 | } |
326 | ||
ead1e424 ILT |
327 | // Add POSD to an output section using NAME, TYPE, and FLAGS. |
328 | ||
329 | void | |
330 | Layout::add_output_section_data(const char* name, elfcpp::Elf_Word type, | |
331 | elfcpp::Elf_Xword flags, | |
332 | Output_section_data* posd) | |
333 | { | |
334 | // Canonicalize the name. | |
f0641a0b | 335 | Stringpool::Key name_key; |
cfd73a4e | 336 | name = this->namepool_.add(name, true, &name_key); |
ead1e424 | 337 | |
f0641a0b | 338 | Output_section* os = this->get_output_section(name, name_key, type, flags); |
ead1e424 ILT |
339 | os->add_output_section_data(posd); |
340 | } | |
341 | ||
a2fb1b05 ILT |
342 | // Map section flags to segment flags. |
343 | ||
344 | elfcpp::Elf_Word | |
345 | Layout::section_flags_to_segment(elfcpp::Elf_Xword flags) | |
346 | { | |
347 | elfcpp::Elf_Word ret = elfcpp::PF_R; | |
348 | if ((flags & elfcpp::SHF_WRITE) != 0) | |
349 | ret |= elfcpp::PF_W; | |
350 | if ((flags & elfcpp::SHF_EXECINSTR) != 0) | |
351 | ret |= elfcpp::PF_X; | |
352 | return ret; | |
353 | } | |
354 | ||
355 | // Make a new Output_section, and attach it to segments as | |
356 | // appropriate. | |
357 | ||
358 | Output_section* | |
359 | Layout::make_output_section(const char* name, elfcpp::Elf_Word type, | |
360 | elfcpp::Elf_Xword flags) | |
361 | { | |
b8e6aad9 | 362 | Output_section* os = new Output_section(name, type, flags); |
a3ad94ed | 363 | this->section_list_.push_back(os); |
a2fb1b05 ILT |
364 | |
365 | if ((flags & elfcpp::SHF_ALLOC) == 0) | |
a3ad94ed | 366 | this->unattached_section_list_.push_back(os); |
a2fb1b05 ILT |
367 | else |
368 | { | |
369 | // This output section goes into a PT_LOAD segment. | |
370 | ||
371 | elfcpp::Elf_Word seg_flags = Layout::section_flags_to_segment(flags); | |
372 | ||
373 | // The only thing we really care about for PT_LOAD segments is | |
374 | // whether or not they are writable, so that is how we search | |
375 | // for them. People who need segments sorted on some other | |
376 | // basis will have to wait until we implement a mechanism for | |
377 | // them to describe the segments they want. | |
378 | ||
379 | Segment_list::const_iterator p; | |
380 | for (p = this->segment_list_.begin(); | |
381 | p != this->segment_list_.end(); | |
382 | ++p) | |
383 | { | |
384 | if ((*p)->type() == elfcpp::PT_LOAD | |
385 | && ((*p)->flags() & elfcpp::PF_W) == (seg_flags & elfcpp::PF_W)) | |
386 | { | |
75f65a3e | 387 | (*p)->add_output_section(os, seg_flags); |
a2fb1b05 ILT |
388 | break; |
389 | } | |
390 | } | |
391 | ||
392 | if (p == this->segment_list_.end()) | |
393 | { | |
394 | Output_segment* oseg = new Output_segment(elfcpp::PT_LOAD, | |
395 | seg_flags); | |
396 | this->segment_list_.push_back(oseg); | |
75f65a3e | 397 | oseg->add_output_section(os, seg_flags); |
a2fb1b05 ILT |
398 | } |
399 | ||
400 | // If we see a loadable SHT_NOTE section, we create a PT_NOTE | |
401 | // segment. | |
402 | if (type == elfcpp::SHT_NOTE) | |
403 | { | |
404 | // See if we already have an equivalent PT_NOTE segment. | |
405 | for (p = this->segment_list_.begin(); | |
406 | p != segment_list_.end(); | |
407 | ++p) | |
408 | { | |
409 | if ((*p)->type() == elfcpp::PT_NOTE | |
410 | && (((*p)->flags() & elfcpp::PF_W) | |
411 | == (seg_flags & elfcpp::PF_W))) | |
412 | { | |
75f65a3e | 413 | (*p)->add_output_section(os, seg_flags); |
a2fb1b05 ILT |
414 | break; |
415 | } | |
416 | } | |
417 | ||
418 | if (p == this->segment_list_.end()) | |
419 | { | |
420 | Output_segment* oseg = new Output_segment(elfcpp::PT_NOTE, | |
421 | seg_flags); | |
422 | this->segment_list_.push_back(oseg); | |
75f65a3e | 423 | oseg->add_output_section(os, seg_flags); |
a2fb1b05 ILT |
424 | } |
425 | } | |
54dc6425 ILT |
426 | |
427 | // If we see a loadable SHF_TLS section, we create a PT_TLS | |
92e059d8 | 428 | // segment. There can only be one such segment. |
54dc6425 ILT |
429 | if ((flags & elfcpp::SHF_TLS) != 0) |
430 | { | |
92e059d8 | 431 | if (this->tls_segment_ == NULL) |
54dc6425 | 432 | { |
92e059d8 ILT |
433 | this->tls_segment_ = new Output_segment(elfcpp::PT_TLS, |
434 | seg_flags); | |
435 | this->segment_list_.push_back(this->tls_segment_); | |
54dc6425 | 436 | } |
92e059d8 | 437 | this->tls_segment_->add_output_section(os, seg_flags); |
54dc6425 | 438 | } |
a2fb1b05 ILT |
439 | } |
440 | ||
441 | return os; | |
442 | } | |
443 | ||
35cdfc9a ILT |
444 | // Handle the .note.GNU-stack section at layout time. SEEN_GNU_STACK |
445 | // is whether we saw a .note.GNU-stack section in the object file. | |
446 | // GNU_STACK_FLAGS is the section flags. The flags give the | |
447 | // protection required for stack memory. We record this in an | |
448 | // executable as a PT_GNU_STACK segment. If an object file does not | |
449 | // have a .note.GNU-stack segment, we must assume that it is an old | |
450 | // object. On some targets that will force an executable stack. | |
451 | ||
452 | void | |
453 | Layout::layout_gnu_stack(bool seen_gnu_stack, uint64_t gnu_stack_flags) | |
454 | { | |
455 | if (!seen_gnu_stack) | |
456 | this->input_without_gnu_stack_note_ = true; | |
457 | else | |
458 | { | |
459 | this->input_with_gnu_stack_note_ = true; | |
460 | if ((gnu_stack_flags & elfcpp::SHF_EXECINSTR) != 0) | |
461 | this->input_requires_executable_stack_ = true; | |
462 | } | |
463 | } | |
464 | ||
a3ad94ed ILT |
465 | // Create the dynamic sections which are needed before we read the |
466 | // relocs. | |
467 | ||
468 | void | |
469 | Layout::create_initial_dynamic_sections(const Input_objects* input_objects, | |
470 | Symbol_table* symtab) | |
471 | { | |
436ca963 | 472 | if (parameters->doing_static_link()) |
a3ad94ed ILT |
473 | return; |
474 | ||
cfd73a4e | 475 | const char* dynamic_name = this->namepool_.add(".dynamic", false, NULL); |
a3ad94ed ILT |
476 | this->dynamic_section_ = this->make_output_section(dynamic_name, |
477 | elfcpp::SHT_DYNAMIC, | |
478 | (elfcpp::SHF_ALLOC | |
479 | | elfcpp::SHF_WRITE)); | |
480 | ||
14b31740 | 481 | symtab->define_in_output_data(input_objects->target(), "_DYNAMIC", NULL, |
a3ad94ed ILT |
482 | this->dynamic_section_, 0, 0, |
483 | elfcpp::STT_OBJECT, elfcpp::STB_LOCAL, | |
484 | elfcpp::STV_HIDDEN, 0, false, false); | |
16649710 | 485 | |
9025d29d | 486 | this->dynamic_data_ = new Output_data_dynamic(&this->dynpool_); |
16649710 ILT |
487 | |
488 | this->dynamic_section_->add_output_section_data(this->dynamic_data_); | |
a3ad94ed ILT |
489 | } |
490 | ||
bfd58944 ILT |
491 | // For each output section whose name can be represented as C symbol, |
492 | // define __start and __stop symbols for the section. This is a GNU | |
493 | // extension. | |
494 | ||
495 | void | |
496 | Layout::define_section_symbols(Symbol_table* symtab, const Target* target) | |
497 | { | |
498 | for (Section_list::const_iterator p = this->section_list_.begin(); | |
499 | p != this->section_list_.end(); | |
500 | ++p) | |
501 | { | |
502 | const char* const name = (*p)->name(); | |
503 | if (name[strspn(name, | |
504 | ("0123456789" | |
505 | "ABCDEFGHIJKLMNOPWRSTUVWXYZ" | |
506 | "abcdefghijklmnopqrstuvwxyz" | |
507 | "_"))] | |
508 | == '\0') | |
509 | { | |
510 | const std::string name_string(name); | |
511 | const std::string start_name("__start_" + name_string); | |
512 | const std::string stop_name("__stop_" + name_string); | |
513 | ||
514 | symtab->define_in_output_data(target, | |
515 | start_name.c_str(), | |
516 | NULL, // version | |
517 | *p, | |
518 | 0, // value | |
519 | 0, // symsize | |
520 | elfcpp::STT_NOTYPE, | |
521 | elfcpp::STB_GLOBAL, | |
522 | elfcpp::STV_DEFAULT, | |
523 | 0, // nonvis | |
524 | false, // offset_is_from_end | |
525 | false); // only_if_ref | |
526 | ||
527 | symtab->define_in_output_data(target, | |
528 | stop_name.c_str(), | |
529 | NULL, // version | |
530 | *p, | |
531 | 0, // value | |
532 | 0, // symsize | |
533 | elfcpp::STT_NOTYPE, | |
534 | elfcpp::STB_GLOBAL, | |
535 | elfcpp::STV_DEFAULT, | |
536 | 0, // nonvis | |
537 | true, // offset_is_from_end | |
538 | false); // only_if_ref | |
539 | } | |
540 | } | |
541 | } | |
542 | ||
75f65a3e ILT |
543 | // Find the first read-only PT_LOAD segment, creating one if |
544 | // necessary. | |
54dc6425 | 545 | |
75f65a3e ILT |
546 | Output_segment* |
547 | Layout::find_first_load_seg() | |
54dc6425 | 548 | { |
75f65a3e ILT |
549 | for (Segment_list::const_iterator p = this->segment_list_.begin(); |
550 | p != this->segment_list_.end(); | |
551 | ++p) | |
552 | { | |
553 | if ((*p)->type() == elfcpp::PT_LOAD | |
554 | && ((*p)->flags() & elfcpp::PF_R) != 0 | |
555 | && ((*p)->flags() & elfcpp::PF_W) == 0) | |
556 | return *p; | |
557 | } | |
558 | ||
559 | Output_segment* load_seg = new Output_segment(elfcpp::PT_LOAD, elfcpp::PF_R); | |
560 | this->segment_list_.push_back(load_seg); | |
561 | return load_seg; | |
54dc6425 ILT |
562 | } |
563 | ||
564 | // Finalize the layout. When this is called, we have created all the | |
565 | // output sections and all the output segments which are based on | |
566 | // input sections. We have several things to do, and we have to do | |
567 | // them in the right order, so that we get the right results correctly | |
568 | // and efficiently. | |
569 | ||
570 | // 1) Finalize the list of output segments and create the segment | |
571 | // table header. | |
572 | ||
573 | // 2) Finalize the dynamic symbol table and associated sections. | |
574 | ||
575 | // 3) Determine the final file offset of all the output segments. | |
576 | ||
577 | // 4) Determine the final file offset of all the SHF_ALLOC output | |
578 | // sections. | |
579 | ||
75f65a3e ILT |
580 | // 5) Create the symbol table sections and the section name table |
581 | // section. | |
582 | ||
583 | // 6) Finalize the symbol table: set symbol values to their final | |
54dc6425 ILT |
584 | // value and make a final determination of which symbols are going |
585 | // into the output symbol table. | |
586 | ||
54dc6425 ILT |
587 | // 7) Create the section table header. |
588 | ||
589 | // 8) Determine the final file offset of all the output sections which | |
590 | // are not SHF_ALLOC, including the section table header. | |
591 | ||
592 | // 9) Finalize the ELF file header. | |
593 | ||
75f65a3e ILT |
594 | // This function returns the size of the output file. |
595 | ||
596 | off_t | |
597 | Layout::finalize(const Input_objects* input_objects, Symbol_table* symtab) | |
54dc6425 | 598 | { |
5a6f7e2d | 599 | Target* const target = input_objects->target(); |
dbe717ef | 600 | |
7e1edb90 | 601 | target->finalize_sections(this); |
5a6f7e2d | 602 | |
35cdfc9a ILT |
603 | this->create_gold_note(); |
604 | this->create_executable_stack_info(target); | |
4f211c8b | 605 | |
dbe717ef | 606 | Output_segment* phdr_seg = NULL; |
436ca963 | 607 | if (!parameters->doing_static_link()) |
54dc6425 | 608 | { |
dbe717ef ILT |
609 | // There was a dynamic object in the link. We need to create |
610 | // some information for the dynamic linker. | |
611 | ||
612 | // Create the PT_PHDR segment which will hold the program | |
613 | // headers. | |
614 | phdr_seg = new Output_segment(elfcpp::PT_PHDR, elfcpp::PF_R); | |
615 | this->segment_list_.push_back(phdr_seg); | |
616 | ||
14b31740 ILT |
617 | // Create the dynamic symbol table, including the hash table. |
618 | Output_section* dynstr; | |
619 | std::vector<Symbol*> dynamic_symbols; | |
620 | unsigned int local_dynamic_count; | |
621 | Versions versions; | |
622 | this->create_dynamic_symtab(target, symtab, &dynstr, | |
623 | &local_dynamic_count, &dynamic_symbols, | |
624 | &versions); | |
dbe717ef ILT |
625 | |
626 | // Create the .interp section to hold the name of the | |
627 | // interpreter, and put it in a PT_INTERP segment. | |
96f2030e ILT |
628 | if (!parameters->output_is_shared()) |
629 | this->create_interp(target); | |
a3ad94ed ILT |
630 | |
631 | // Finish the .dynamic section to hold the dynamic data, and put | |
632 | // it in a PT_DYNAMIC segment. | |
16649710 | 633 | this->finish_dynamic_section(input_objects, symtab); |
14b31740 ILT |
634 | |
635 | // We should have added everything we need to the dynamic string | |
636 | // table. | |
637 | this->dynpool_.set_string_offsets(); | |
638 | ||
639 | // Create the version sections. We can't do this until the | |
640 | // dynamic string table is complete. | |
46fe1623 | 641 | this->create_version_sections(&versions, symtab, local_dynamic_count, |
14b31740 | 642 | dynamic_symbols, dynstr); |
54dc6425 ILT |
643 | } |
644 | ||
645 | // FIXME: Handle PT_GNU_STACK. | |
646 | ||
75f65a3e ILT |
647 | Output_segment* load_seg = this->find_first_load_seg(); |
648 | ||
649 | // Lay out the segment headers. | |
75f65a3e | 650 | Output_segment_headers* segment_headers; |
9025d29d | 651 | segment_headers = new Output_segment_headers(this->segment_list_); |
75f65a3e | 652 | load_seg->add_initial_output_data(segment_headers); |
61ba1cf9 | 653 | this->special_output_list_.push_back(segment_headers); |
dbe717ef ILT |
654 | if (phdr_seg != NULL) |
655 | phdr_seg->add_initial_output_data(segment_headers); | |
75f65a3e ILT |
656 | |
657 | // Lay out the file header. | |
658 | Output_file_header* file_header; | |
9025d29d | 659 | file_header = new Output_file_header(target, symtab, segment_headers); |
75f65a3e | 660 | load_seg->add_initial_output_data(file_header); |
61ba1cf9 | 661 | this->special_output_list_.push_back(file_header); |
75f65a3e | 662 | |
ead1e424 ILT |
663 | // We set the output section indexes in set_segment_offsets and |
664 | // set_section_offsets. | |
665 | unsigned int shndx = 1; | |
666 | ||
667 | // Set the file offsets of all the segments, and all the sections | |
668 | // they contain. | |
a3ad94ed | 669 | off_t off = this->set_segment_offsets(target, load_seg, &shndx); |
75f65a3e | 670 | |
dba5a01f ILT |
671 | // Set the file offsets of all the data sections not associated with |
672 | // segments. This makes sure that debug sections have their offsets | |
673 | // before symbols are finalized. | |
86887060 | 674 | off = this->set_section_offsets(off, true); |
dba5a01f | 675 | |
75f65a3e | 676 | // Create the symbol table sections. |
9025d29d | 677 | this->create_symtab_sections(input_objects, symtab, &off); |
75f65a3e ILT |
678 | |
679 | // Create the .shstrtab section. | |
680 | Output_section* shstrtab_section = this->create_shstrtab(); | |
681 | ||
dba5a01f | 682 | // Set the file offsets of all the non-data sections not associated with |
75f65a3e | 683 | // segments. |
86887060 ILT |
684 | off = this->set_section_offsets(off, false); |
685 | ||
686 | // Now that all sections have been created, set the section indexes. | |
687 | shndx = this->set_section_indexes(shndx); | |
ead1e424 | 688 | |
75f65a3e | 689 | // Create the section table header. |
9025d29d | 690 | Output_section_headers* oshdrs = this->create_shdrs(&off); |
75f65a3e ILT |
691 | |
692 | file_header->set_section_info(oshdrs, shstrtab_section); | |
693 | ||
694 | // Now we know exactly where everything goes in the output file. | |
a3ad94ed | 695 | Output_data::layout_complete(); |
75f65a3e | 696 | |
e44fcf3b ILT |
697 | this->output_file_size_ = off; |
698 | ||
75f65a3e ILT |
699 | return off; |
700 | } | |
701 | ||
4f211c8b ILT |
702 | // Create a .note section for an executable or shared library. This |
703 | // records the version of gold used to create the binary. | |
704 | ||
705 | void | |
35cdfc9a | 706 | Layout::create_gold_note() |
4f211c8b ILT |
707 | { |
708 | if (parameters->output_is_object()) | |
709 | return; | |
710 | ||
e2305dc0 ILT |
711 | // Authorities all agree that the values in a .note field should |
712 | // be aligned on 4-byte boundaries for 32-bit binaries. However, | |
713 | // they differ on what the alignment is for 64-bit binaries. | |
714 | // The GABI says unambiguously they take 8-byte alignment: | |
715 | // http://sco.com/developers/gabi/latest/ch5.pheader.html#note_section | |
716 | // Other documentation says alignment should always be 4 bytes: | |
717 | // http://www.netbsd.org/docs/kernel/elf-notes.html#note-format | |
718 | // GNU ld and GNU readelf both support the latter (at least as of | |
719 | // version 2.16.91), and glibc always generates the latter for | |
720 | // .note.ABI-tag (as of version 1.6), so that's the one we go with | |
721 | // here. | |
35cdfc9a | 722 | #ifdef GABI_FORMAT_FOR_DOTNOTE_SECTION // This is not defined by default. |
4f211c8b | 723 | const int size = parameters->get_size(); |
e2305dc0 ILT |
724 | #else |
725 | const int size = 32; | |
726 | #endif | |
4f211c8b ILT |
727 | |
728 | // The contents of the .note section. | |
729 | const char* name = "GNU"; | |
730 | std::string desc(std::string("gold ") + gold::get_version_string()); | |
731 | size_t namesz = strlen(name) + 1; | |
732 | size_t aligned_namesz = align_address(namesz, size / 8); | |
733 | size_t descsz = desc.length() + 1; | |
734 | size_t aligned_descsz = align_address(descsz, size / 8); | |
735 | const int note_type = 4; | |
736 | ||
737 | size_t notesz = 3 * (size / 8) + aligned_namesz + aligned_descsz; | |
738 | ||
739 | unsigned char buffer[128]; | |
740 | gold_assert(sizeof buffer >= notesz); | |
741 | memset(buffer, 0, notesz); | |
742 | ||
743 | bool is_big_endian = parameters->is_big_endian(); | |
744 | ||
745 | if (size == 32) | |
746 | { | |
747 | if (!is_big_endian) | |
748 | { | |
749 | elfcpp::Swap<32, false>::writeval(buffer, namesz); | |
750 | elfcpp::Swap<32, false>::writeval(buffer + 4, descsz); | |
751 | elfcpp::Swap<32, false>::writeval(buffer + 8, note_type); | |
752 | } | |
753 | else | |
754 | { | |
755 | elfcpp::Swap<32, true>::writeval(buffer, namesz); | |
756 | elfcpp::Swap<32, true>::writeval(buffer + 4, descsz); | |
757 | elfcpp::Swap<32, true>::writeval(buffer + 8, note_type); | |
758 | } | |
759 | } | |
760 | else if (size == 64) | |
761 | { | |
762 | if (!is_big_endian) | |
763 | { | |
764 | elfcpp::Swap<64, false>::writeval(buffer, namesz); | |
765 | elfcpp::Swap<64, false>::writeval(buffer + 8, descsz); | |
766 | elfcpp::Swap<64, false>::writeval(buffer + 16, note_type); | |
767 | } | |
768 | else | |
769 | { | |
770 | elfcpp::Swap<64, true>::writeval(buffer, namesz); | |
771 | elfcpp::Swap<64, true>::writeval(buffer + 8, descsz); | |
772 | elfcpp::Swap<64, true>::writeval(buffer + 16, note_type); | |
773 | } | |
774 | } | |
775 | else | |
776 | gold_unreachable(); | |
777 | ||
778 | memcpy(buffer + 3 * (size / 8), name, namesz); | |
779 | memcpy(buffer + 3 * (size / 8) + aligned_namesz, desc.data(), descsz); | |
780 | ||
cfd73a4e | 781 | const char* note_name = this->namepool_.add(".note", false, NULL); |
4f211c8b ILT |
782 | Output_section* os = this->make_output_section(note_name, |
783 | elfcpp::SHT_NOTE, | |
784 | 0); | |
785 | Output_section_data* posd = new Output_data_const(buffer, notesz, | |
786 | size / 8); | |
787 | os->add_output_section_data(posd); | |
788 | } | |
789 | ||
35cdfc9a ILT |
790 | // Record whether the stack should be executable. This can be set |
791 | // from the command line using the -z execstack or -z noexecstack | |
792 | // options. Otherwise, if any input file has a .note.GNU-stack | |
793 | // section with the SHF_EXECINSTR flag set, the stack should be | |
794 | // executable. Otherwise, if at least one input file a | |
795 | // .note.GNU-stack section, and some input file has no .note.GNU-stack | |
796 | // section, we use the target default for whether the stack should be | |
797 | // executable. Otherwise, we don't generate a stack note. When | |
798 | // generating a object file, we create a .note.GNU-stack section with | |
799 | // the appropriate marking. When generating an executable or shared | |
800 | // library, we create a PT_GNU_STACK segment. | |
801 | ||
802 | void | |
803 | Layout::create_executable_stack_info(const Target* target) | |
804 | { | |
805 | bool is_stack_executable; | |
806 | if (this->options_.is_execstack_set()) | |
807 | is_stack_executable = this->options_.is_stack_executable(); | |
808 | else if (!this->input_with_gnu_stack_note_) | |
809 | return; | |
810 | else | |
811 | { | |
812 | if (this->input_requires_executable_stack_) | |
813 | is_stack_executable = true; | |
814 | else if (this->input_without_gnu_stack_note_) | |
815 | is_stack_executable = target->is_default_stack_executable(); | |
816 | else | |
817 | is_stack_executable = false; | |
818 | } | |
819 | ||
820 | if (parameters->output_is_object()) | |
821 | { | |
822 | const char* name = this->namepool_.add(".note.GNU-stack", false, NULL); | |
823 | elfcpp::Elf_Xword flags = 0; | |
824 | if (is_stack_executable) | |
825 | flags |= elfcpp::SHF_EXECINSTR; | |
826 | this->make_output_section(name, elfcpp::SHT_PROGBITS, flags); | |
827 | } | |
828 | else | |
829 | { | |
830 | int flags = elfcpp::PF_R | elfcpp::PF_W; | |
831 | if (is_stack_executable) | |
832 | flags |= elfcpp::PF_X; | |
833 | Output_segment* oseg = new Output_segment(elfcpp::PT_GNU_STACK, flags); | |
834 | this->segment_list_.push_back(oseg); | |
835 | } | |
836 | } | |
837 | ||
75f65a3e ILT |
838 | // Return whether SEG1 should be before SEG2 in the output file. This |
839 | // is based entirely on the segment type and flags. When this is | |
840 | // called the segment addresses has normally not yet been set. | |
841 | ||
842 | bool | |
843 | Layout::segment_precedes(const Output_segment* seg1, | |
844 | const Output_segment* seg2) | |
845 | { | |
846 | elfcpp::Elf_Word type1 = seg1->type(); | |
847 | elfcpp::Elf_Word type2 = seg2->type(); | |
848 | ||
849 | // The single PT_PHDR segment is required to precede any loadable | |
850 | // segment. We simply make it always first. | |
851 | if (type1 == elfcpp::PT_PHDR) | |
852 | { | |
a3ad94ed | 853 | gold_assert(type2 != elfcpp::PT_PHDR); |
75f65a3e ILT |
854 | return true; |
855 | } | |
856 | if (type2 == elfcpp::PT_PHDR) | |
857 | return false; | |
858 | ||
859 | // The single PT_INTERP segment is required to precede any loadable | |
860 | // segment. We simply make it always second. | |
861 | if (type1 == elfcpp::PT_INTERP) | |
862 | { | |
a3ad94ed | 863 | gold_assert(type2 != elfcpp::PT_INTERP); |
75f65a3e ILT |
864 | return true; |
865 | } | |
866 | if (type2 == elfcpp::PT_INTERP) | |
867 | return false; | |
868 | ||
869 | // We then put PT_LOAD segments before any other segments. | |
870 | if (type1 == elfcpp::PT_LOAD && type2 != elfcpp::PT_LOAD) | |
871 | return true; | |
872 | if (type2 == elfcpp::PT_LOAD && type1 != elfcpp::PT_LOAD) | |
873 | return false; | |
874 | ||
92e059d8 ILT |
875 | // We put the PT_TLS segment last, because that is where the dynamic |
876 | // linker expects to find it (this is just for efficiency; other | |
877 | // positions would also work correctly). | |
878 | if (type1 == elfcpp::PT_TLS && type2 != elfcpp::PT_TLS) | |
879 | return false; | |
880 | if (type2 == elfcpp::PT_TLS && type1 != elfcpp::PT_TLS) | |
881 | return true; | |
882 | ||
75f65a3e ILT |
883 | const elfcpp::Elf_Word flags1 = seg1->flags(); |
884 | const elfcpp::Elf_Word flags2 = seg2->flags(); | |
885 | ||
886 | // The order of non-PT_LOAD segments is unimportant. We simply sort | |
887 | // by the numeric segment type and flags values. There should not | |
888 | // be more than one segment with the same type and flags. | |
889 | if (type1 != elfcpp::PT_LOAD) | |
890 | { | |
891 | if (type1 != type2) | |
892 | return type1 < type2; | |
a3ad94ed | 893 | gold_assert(flags1 != flags2); |
75f65a3e ILT |
894 | return flags1 < flags2; |
895 | } | |
896 | ||
897 | // We sort PT_LOAD segments based on the flags. Readonly segments | |
898 | // come before writable segments. Then executable segments come | |
899 | // before non-executable segments. Then the unlikely case of a | |
900 | // non-readable segment comes before the normal case of a readable | |
901 | // segment. If there are multiple segments with the same type and | |
902 | // flags, we require that the address be set, and we sort by | |
903 | // virtual address and then physical address. | |
904 | if ((flags1 & elfcpp::PF_W) != (flags2 & elfcpp::PF_W)) | |
905 | return (flags1 & elfcpp::PF_W) == 0; | |
906 | if ((flags1 & elfcpp::PF_X) != (flags2 & elfcpp::PF_X)) | |
907 | return (flags1 & elfcpp::PF_X) != 0; | |
908 | if ((flags1 & elfcpp::PF_R) != (flags2 & elfcpp::PF_R)) | |
909 | return (flags1 & elfcpp::PF_R) == 0; | |
910 | ||
911 | uint64_t vaddr1 = seg1->vaddr(); | |
912 | uint64_t vaddr2 = seg2->vaddr(); | |
913 | if (vaddr1 != vaddr2) | |
914 | return vaddr1 < vaddr2; | |
915 | ||
916 | uint64_t paddr1 = seg1->paddr(); | |
917 | uint64_t paddr2 = seg2->paddr(); | |
a3ad94ed | 918 | gold_assert(paddr1 != paddr2); |
75f65a3e ILT |
919 | return paddr1 < paddr2; |
920 | } | |
921 | ||
ead1e424 ILT |
922 | // Set the file offsets of all the segments, and all the sections they |
923 | // contain. They have all been created. LOAD_SEG must be be laid out | |
924 | // first. Return the offset of the data to follow. | |
75f65a3e ILT |
925 | |
926 | off_t | |
ead1e424 ILT |
927 | Layout::set_segment_offsets(const Target* target, Output_segment* load_seg, |
928 | unsigned int *pshndx) | |
75f65a3e ILT |
929 | { |
930 | // Sort them into the final order. | |
54dc6425 ILT |
931 | std::sort(this->segment_list_.begin(), this->segment_list_.end(), |
932 | Layout::Compare_segments()); | |
933 | ||
75f65a3e ILT |
934 | // Find the PT_LOAD segments, and set their addresses and offsets |
935 | // and their section's addresses and offsets. | |
0c5e9c22 ILT |
936 | uint64_t addr; |
937 | if (options_.user_set_text_segment_address()) | |
938 | addr = options_.text_segment_address(); | |
939 | else | |
940 | addr = target->default_text_segment_address(); | |
75f65a3e ILT |
941 | off_t off = 0; |
942 | bool was_readonly = false; | |
943 | for (Segment_list::iterator p = this->segment_list_.begin(); | |
944 | p != this->segment_list_.end(); | |
945 | ++p) | |
946 | { | |
947 | if ((*p)->type() == elfcpp::PT_LOAD) | |
948 | { | |
949 | if (load_seg != NULL && load_seg != *p) | |
a3ad94ed | 950 | gold_unreachable(); |
75f65a3e ILT |
951 | load_seg = NULL; |
952 | ||
953 | // If the last segment was readonly, and this one is not, | |
954 | // then skip the address forward one page, maintaining the | |
955 | // same position within the page. This lets us store both | |
956 | // segments overlapping on a single page in the file, but | |
957 | // the loader will put them on different pages in memory. | |
958 | ||
959 | uint64_t orig_addr = addr; | |
960 | uint64_t orig_off = off; | |
961 | ||
962 | uint64_t aligned_addr = addr; | |
963 | uint64_t abi_pagesize = target->abi_pagesize(); | |
0496d5e5 ILT |
964 | |
965 | // FIXME: This should depend on the -n and -N options. | |
966 | (*p)->set_minimum_addralign(target->common_pagesize()); | |
967 | ||
75f65a3e ILT |
968 | if (was_readonly && ((*p)->flags() & elfcpp::PF_W) != 0) |
969 | { | |
ead1e424 | 970 | uint64_t align = (*p)->addralign(); |
75f65a3e | 971 | |
ead1e424 | 972 | addr = align_address(addr, align); |
75f65a3e ILT |
973 | aligned_addr = addr; |
974 | if ((addr & (abi_pagesize - 1)) != 0) | |
975 | addr = addr + abi_pagesize; | |
976 | } | |
977 | ||
ead1e424 | 978 | unsigned int shndx_hold = *pshndx; |
75f65a3e | 979 | off = orig_off + ((addr - orig_addr) & (abi_pagesize - 1)); |
ead1e424 | 980 | uint64_t new_addr = (*p)->set_section_addresses(addr, &off, pshndx); |
75f65a3e ILT |
981 | |
982 | // Now that we know the size of this segment, we may be able | |
983 | // to save a page in memory, at the cost of wasting some | |
984 | // file space, by instead aligning to the start of a new | |
985 | // page. Here we use the real machine page size rather than | |
986 | // the ABI mandated page size. | |
987 | ||
988 | if (aligned_addr != addr) | |
989 | { | |
990 | uint64_t common_pagesize = target->common_pagesize(); | |
991 | uint64_t first_off = (common_pagesize | |
992 | - (aligned_addr | |
993 | & (common_pagesize - 1))); | |
994 | uint64_t last_off = new_addr & (common_pagesize - 1); | |
995 | if (first_off > 0 | |
996 | && last_off > 0 | |
997 | && ((aligned_addr & ~ (common_pagesize - 1)) | |
998 | != (new_addr & ~ (common_pagesize - 1))) | |
999 | && first_off + last_off <= common_pagesize) | |
1000 | { | |
ead1e424 ILT |
1001 | *pshndx = shndx_hold; |
1002 | addr = align_address(aligned_addr, common_pagesize); | |
75f65a3e | 1003 | off = orig_off + ((addr - orig_addr) & (abi_pagesize - 1)); |
ead1e424 | 1004 | new_addr = (*p)->set_section_addresses(addr, &off, pshndx); |
75f65a3e ILT |
1005 | } |
1006 | } | |
1007 | ||
1008 | addr = new_addr; | |
1009 | ||
1010 | if (((*p)->flags() & elfcpp::PF_W) == 0) | |
1011 | was_readonly = true; | |
1012 | } | |
1013 | } | |
1014 | ||
1015 | // Handle the non-PT_LOAD segments, setting their offsets from their | |
1016 | // section's offsets. | |
1017 | for (Segment_list::iterator p = this->segment_list_.begin(); | |
1018 | p != this->segment_list_.end(); | |
1019 | ++p) | |
1020 | { | |
1021 | if ((*p)->type() != elfcpp::PT_LOAD) | |
1022 | (*p)->set_offset(); | |
1023 | } | |
1024 | ||
1025 | return off; | |
1026 | } | |
1027 | ||
1028 | // Set the file offset of all the sections not associated with a | |
1029 | // segment. | |
1030 | ||
1031 | off_t | |
dba5a01f | 1032 | Layout::set_section_offsets(off_t off, |
dba5a01f | 1033 | bool do_bits_sections) |
75f65a3e | 1034 | { |
a3ad94ed ILT |
1035 | for (Section_list::iterator p = this->unattached_section_list_.begin(); |
1036 | p != this->unattached_section_list_.end(); | |
75f65a3e ILT |
1037 | ++p) |
1038 | { | |
dba5a01f ILT |
1039 | bool is_bits_section = ((*p)->type() == elfcpp::SHT_PROGBITS |
1040 | || (*p)->type() == elfcpp::SHT_NOBITS); | |
1041 | if (is_bits_section != do_bits_sections) | |
1042 | continue; | |
61ba1cf9 ILT |
1043 | if ((*p)->offset() != -1) |
1044 | continue; | |
ead1e424 | 1045 | off = align_address(off, (*p)->addralign()); |
75f65a3e ILT |
1046 | (*p)->set_address(0, off); |
1047 | off += (*p)->data_size(); | |
1048 | } | |
1049 | return off; | |
1050 | } | |
1051 | ||
86887060 ILT |
1052 | // Set the section indexes of all the sections not associated with a |
1053 | // segment. | |
1054 | ||
1055 | unsigned int | |
1056 | Layout::set_section_indexes(unsigned int shndx) | |
1057 | { | |
1058 | for (Section_list::iterator p = this->unattached_section_list_.begin(); | |
1059 | p != this->unattached_section_list_.end(); | |
1060 | ++p) | |
1061 | { | |
1062 | (*p)->set_out_shndx(shndx); | |
1063 | ++shndx; | |
1064 | } | |
1065 | return shndx; | |
1066 | } | |
1067 | ||
b8e6aad9 ILT |
1068 | // Create the symbol table sections. Here we also set the final |
1069 | // values of the symbols. At this point all the loadable sections are | |
1070 | // fully laid out. | |
75f65a3e ILT |
1071 | |
1072 | void | |
9025d29d | 1073 | Layout::create_symtab_sections(const Input_objects* input_objects, |
75f65a3e | 1074 | Symbol_table* symtab, |
16649710 | 1075 | off_t* poff) |
75f65a3e | 1076 | { |
61ba1cf9 ILT |
1077 | int symsize; |
1078 | unsigned int align; | |
9025d29d | 1079 | if (parameters->get_size() == 32) |
61ba1cf9 ILT |
1080 | { |
1081 | symsize = elfcpp::Elf_sizes<32>::sym_size; | |
1082 | align = 4; | |
1083 | } | |
9025d29d | 1084 | else if (parameters->get_size() == 64) |
61ba1cf9 ILT |
1085 | { |
1086 | symsize = elfcpp::Elf_sizes<64>::sym_size; | |
1087 | align = 8; | |
1088 | } | |
1089 | else | |
a3ad94ed | 1090 | gold_unreachable(); |
61ba1cf9 ILT |
1091 | |
1092 | off_t off = *poff; | |
ead1e424 | 1093 | off = align_address(off, align); |
61ba1cf9 ILT |
1094 | off_t startoff = off; |
1095 | ||
1096 | // Save space for the dummy symbol at the start of the section. We | |
1097 | // never bother to write this out--it will just be left as zero. | |
1098 | off += symsize; | |
c06b7b0b | 1099 | unsigned int local_symbol_index = 1; |
61ba1cf9 | 1100 | |
a3ad94ed ILT |
1101 | // Add STT_SECTION symbols for each Output section which needs one. |
1102 | for (Section_list::iterator p = this->section_list_.begin(); | |
1103 | p != this->section_list_.end(); | |
1104 | ++p) | |
1105 | { | |
1106 | if (!(*p)->needs_symtab_index()) | |
1107 | (*p)->set_symtab_index(-1U); | |
1108 | else | |
1109 | { | |
1110 | (*p)->set_symtab_index(local_symbol_index); | |
1111 | ++local_symbol_index; | |
1112 | off += symsize; | |
1113 | } | |
1114 | } | |
1115 | ||
f6ce93d6 ILT |
1116 | for (Input_objects::Relobj_iterator p = input_objects->relobj_begin(); |
1117 | p != input_objects->relobj_end(); | |
75f65a3e ILT |
1118 | ++p) |
1119 | { | |
1120 | Task_lock_obj<Object> tlo(**p); | |
c06b7b0b ILT |
1121 | unsigned int index = (*p)->finalize_local_symbols(local_symbol_index, |
1122 | off, | |
1123 | &this->sympool_); | |
1124 | off += (index - local_symbol_index) * symsize; | |
1125 | local_symbol_index = index; | |
75f65a3e ILT |
1126 | } |
1127 | ||
c06b7b0b | 1128 | unsigned int local_symcount = local_symbol_index; |
a3ad94ed | 1129 | gold_assert(local_symcount * symsize == off - startoff); |
61ba1cf9 | 1130 | |
16649710 ILT |
1131 | off_t dynoff; |
1132 | size_t dyn_global_index; | |
1133 | size_t dyncount; | |
1134 | if (this->dynsym_section_ == NULL) | |
1135 | { | |
1136 | dynoff = 0; | |
1137 | dyn_global_index = 0; | |
1138 | dyncount = 0; | |
1139 | } | |
1140 | else | |
1141 | { | |
1142 | dyn_global_index = this->dynsym_section_->info(); | |
1143 | off_t locsize = dyn_global_index * this->dynsym_section_->entsize(); | |
1144 | dynoff = this->dynsym_section_->offset() + locsize; | |
1145 | dyncount = (this->dynsym_section_->data_size() - locsize) / symsize; | |
f5c3f225 | 1146 | gold_assert(static_cast<off_t>(dyncount * symsize) |
16649710 ILT |
1147 | == this->dynsym_section_->data_size() - locsize); |
1148 | } | |
1149 | ||
1150 | off = symtab->finalize(local_symcount, off, dynoff, dyn_global_index, | |
1151 | dyncount, &this->sympool_); | |
75f65a3e | 1152 | |
9e2dcb77 ILT |
1153 | if (!parameters->strip_all()) |
1154 | { | |
1155 | this->sympool_.set_string_offsets(); | |
61ba1cf9 | 1156 | |
cfd73a4e | 1157 | const char* symtab_name = this->namepool_.add(".symtab", false, NULL); |
9e2dcb77 ILT |
1158 | Output_section* osymtab = this->make_output_section(symtab_name, |
1159 | elfcpp::SHT_SYMTAB, | |
1160 | 0); | |
1161 | this->symtab_section_ = osymtab; | |
a3ad94ed | 1162 | |
9e2dcb77 ILT |
1163 | Output_section_data* pos = new Output_data_space(off - startoff, |
1164 | align); | |
1165 | osymtab->add_output_section_data(pos); | |
61ba1cf9 | 1166 | |
cfd73a4e | 1167 | const char* strtab_name = this->namepool_.add(".strtab", false, NULL); |
9e2dcb77 ILT |
1168 | Output_section* ostrtab = this->make_output_section(strtab_name, |
1169 | elfcpp::SHT_STRTAB, | |
1170 | 0); | |
a3ad94ed | 1171 | |
9e2dcb77 ILT |
1172 | Output_section_data* pstr = new Output_data_strtab(&this->sympool_); |
1173 | ostrtab->add_output_section_data(pstr); | |
61ba1cf9 | 1174 | |
9e2dcb77 ILT |
1175 | osymtab->set_address(0, startoff); |
1176 | osymtab->set_link_section(ostrtab); | |
1177 | osymtab->set_info(local_symcount); | |
1178 | osymtab->set_entsize(symsize); | |
61ba1cf9 | 1179 | |
9e2dcb77 ILT |
1180 | *poff = off; |
1181 | } | |
75f65a3e ILT |
1182 | } |
1183 | ||
1184 | // Create the .shstrtab section, which holds the names of the | |
1185 | // sections. At the time this is called, we have created all the | |
1186 | // output sections except .shstrtab itself. | |
1187 | ||
1188 | Output_section* | |
1189 | Layout::create_shstrtab() | |
1190 | { | |
1191 | // FIXME: We don't need to create a .shstrtab section if we are | |
1192 | // stripping everything. | |
1193 | ||
cfd73a4e | 1194 | const char* name = this->namepool_.add(".shstrtab", false, NULL); |
75f65a3e | 1195 | |
61ba1cf9 ILT |
1196 | this->namepool_.set_string_offsets(); |
1197 | ||
a3ad94ed | 1198 | Output_section* os = this->make_output_section(name, elfcpp::SHT_STRTAB, 0); |
75f65a3e | 1199 | |
a3ad94ed ILT |
1200 | Output_section_data* posd = new Output_data_strtab(&this->namepool_); |
1201 | os->add_output_section_data(posd); | |
75f65a3e ILT |
1202 | |
1203 | return os; | |
1204 | } | |
1205 | ||
1206 | // Create the section headers. SIZE is 32 or 64. OFF is the file | |
1207 | // offset. | |
1208 | ||
1209 | Output_section_headers* | |
9025d29d | 1210 | Layout::create_shdrs(off_t* poff) |
75f65a3e ILT |
1211 | { |
1212 | Output_section_headers* oshdrs; | |
9025d29d | 1213 | oshdrs = new Output_section_headers(this, |
16649710 ILT |
1214 | &this->segment_list_, |
1215 | &this->unattached_section_list_, | |
61ba1cf9 | 1216 | &this->namepool_); |
ead1e424 | 1217 | off_t off = align_address(*poff, oshdrs->addralign()); |
75f65a3e | 1218 | oshdrs->set_address(0, off); |
61ba1cf9 ILT |
1219 | off += oshdrs->data_size(); |
1220 | *poff = off; | |
1221 | this->special_output_list_.push_back(oshdrs); | |
75f65a3e | 1222 | return oshdrs; |
54dc6425 ILT |
1223 | } |
1224 | ||
dbe717ef ILT |
1225 | // Create the dynamic symbol table. |
1226 | ||
1227 | void | |
14b31740 ILT |
1228 | Layout::create_dynamic_symtab(const Target* target, Symbol_table* symtab, |
1229 | Output_section **pdynstr, | |
1230 | unsigned int* plocal_dynamic_count, | |
1231 | std::vector<Symbol*>* pdynamic_symbols, | |
1232 | Versions* pversions) | |
dbe717ef | 1233 | { |
a3ad94ed ILT |
1234 | // Count all the symbols in the dynamic symbol table, and set the |
1235 | // dynamic symbol indexes. | |
dbe717ef | 1236 | |
a3ad94ed ILT |
1237 | // Skip symbol 0, which is always all zeroes. |
1238 | unsigned int index = 1; | |
dbe717ef | 1239 | |
a3ad94ed ILT |
1240 | // Add STT_SECTION symbols for each Output section which needs one. |
1241 | for (Section_list::iterator p = this->section_list_.begin(); | |
1242 | p != this->section_list_.end(); | |
1243 | ++p) | |
1244 | { | |
1245 | if (!(*p)->needs_dynsym_index()) | |
1246 | (*p)->set_dynsym_index(-1U); | |
1247 | else | |
1248 | { | |
1249 | (*p)->set_dynsym_index(index); | |
1250 | ++index; | |
1251 | } | |
1252 | } | |
1253 | ||
1254 | // FIXME: Some targets apparently require local symbols in the | |
1255 | // dynamic symbol table. Here is where we will have to count them, | |
1256 | // and set the dynamic symbol indexes, and add the names to | |
1257 | // this->dynpool_. | |
1258 | ||
1259 | unsigned int local_symcount = index; | |
14b31740 | 1260 | *plocal_dynamic_count = local_symcount; |
a3ad94ed ILT |
1261 | |
1262 | // FIXME: We have to tell set_dynsym_indexes whether the | |
1263 | // -E/--export-dynamic option was used. | |
35cdfc9a ILT |
1264 | index = symtab->set_dynsym_indexes(target, index, pdynamic_symbols, |
1265 | &this->dynpool_, pversions); | |
a3ad94ed ILT |
1266 | |
1267 | int symsize; | |
1268 | unsigned int align; | |
9025d29d | 1269 | const int size = parameters->get_size(); |
a3ad94ed ILT |
1270 | if (size == 32) |
1271 | { | |
1272 | symsize = elfcpp::Elf_sizes<32>::sym_size; | |
1273 | align = 4; | |
1274 | } | |
1275 | else if (size == 64) | |
1276 | { | |
1277 | symsize = elfcpp::Elf_sizes<64>::sym_size; | |
1278 | align = 8; | |
1279 | } | |
1280 | else | |
1281 | gold_unreachable(); | |
1282 | ||
14b31740 ILT |
1283 | // Create the dynamic symbol table section. |
1284 | ||
cfd73a4e | 1285 | const char* dynsym_name = this->namepool_.add(".dynsym", false, NULL); |
a3ad94ed ILT |
1286 | Output_section* dynsym = this->make_output_section(dynsym_name, |
1287 | elfcpp::SHT_DYNSYM, | |
1288 | elfcpp::SHF_ALLOC); | |
1289 | ||
1290 | Output_section_data* odata = new Output_data_space(index * symsize, | |
1291 | align); | |
1292 | dynsym->add_output_section_data(odata); | |
1293 | ||
1294 | dynsym->set_info(local_symcount); | |
1295 | dynsym->set_entsize(symsize); | |
1296 | dynsym->set_addralign(align); | |
1297 | ||
1298 | this->dynsym_section_ = dynsym; | |
1299 | ||
16649710 | 1300 | Output_data_dynamic* const odyn = this->dynamic_data_; |
a3ad94ed ILT |
1301 | odyn->add_section_address(elfcpp::DT_SYMTAB, dynsym); |
1302 | odyn->add_constant(elfcpp::DT_SYMENT, symsize); | |
1303 | ||
14b31740 ILT |
1304 | // Create the dynamic string table section. |
1305 | ||
cfd73a4e | 1306 | const char* dynstr_name = this->namepool_.add(".dynstr", false, NULL); |
a3ad94ed ILT |
1307 | Output_section* dynstr = this->make_output_section(dynstr_name, |
1308 | elfcpp::SHT_STRTAB, | |
1309 | elfcpp::SHF_ALLOC); | |
1310 | ||
1311 | Output_section_data* strdata = new Output_data_strtab(&this->dynpool_); | |
1312 | dynstr->add_output_section_data(strdata); | |
1313 | ||
16649710 ILT |
1314 | dynsym->set_link_section(dynstr); |
1315 | this->dynamic_section_->set_link_section(dynstr); | |
1316 | ||
a3ad94ed ILT |
1317 | odyn->add_section_address(elfcpp::DT_STRTAB, dynstr); |
1318 | odyn->add_section_size(elfcpp::DT_STRSZ, dynstr); | |
1319 | ||
14b31740 ILT |
1320 | *pdynstr = dynstr; |
1321 | ||
1322 | // Create the hash tables. | |
1323 | ||
a3ad94ed ILT |
1324 | // FIXME: We need an option to create a GNU hash table. |
1325 | ||
1326 | unsigned char* phash; | |
1327 | unsigned int hashlen; | |
9025d29d | 1328 | Dynobj::create_elf_hash_table(*pdynamic_symbols, local_symcount, |
a3ad94ed ILT |
1329 | &phash, &hashlen); |
1330 | ||
cfd73a4e | 1331 | const char* hash_name = this->namepool_.add(".hash", false, NULL); |
a3ad94ed ILT |
1332 | Output_section* hashsec = this->make_output_section(hash_name, |
1333 | elfcpp::SHT_HASH, | |
1334 | elfcpp::SHF_ALLOC); | |
1335 | ||
1336 | Output_section_data* hashdata = new Output_data_const_buffer(phash, | |
1337 | hashlen, | |
1338 | align); | |
1339 | hashsec->add_output_section_data(hashdata); | |
1340 | ||
16649710 | 1341 | hashsec->set_link_section(dynsym); |
a3ad94ed | 1342 | hashsec->set_entsize(4); |
a3ad94ed ILT |
1343 | |
1344 | odyn->add_section_address(elfcpp::DT_HASH, hashsec); | |
dbe717ef ILT |
1345 | } |
1346 | ||
14b31740 ILT |
1347 | // Create the version sections. |
1348 | ||
1349 | void | |
9025d29d | 1350 | Layout::create_version_sections(const Versions* versions, |
46fe1623 | 1351 | const Symbol_table* symtab, |
14b31740 ILT |
1352 | unsigned int local_symcount, |
1353 | const std::vector<Symbol*>& dynamic_symbols, | |
1354 | const Output_section* dynstr) | |
1355 | { | |
1356 | if (!versions->any_defs() && !versions->any_needs()) | |
1357 | return; | |
1358 | ||
9025d29d | 1359 | if (parameters->get_size() == 32) |
14b31740 | 1360 | { |
9025d29d | 1361 | if (parameters->is_big_endian()) |
193a53d9 ILT |
1362 | { |
1363 | #ifdef HAVE_TARGET_32_BIG | |
1364 | this->sized_create_version_sections | |
1365 | SELECT_SIZE_ENDIAN_NAME(32, true)( | |
46fe1623 | 1366 | versions, symtab, local_symcount, dynamic_symbols, dynstr |
193a53d9 ILT |
1367 | SELECT_SIZE_ENDIAN(32, true)); |
1368 | #else | |
1369 | gold_unreachable(); | |
1370 | #endif | |
1371 | } | |
14b31740 | 1372 | else |
193a53d9 ILT |
1373 | { |
1374 | #ifdef HAVE_TARGET_32_LITTLE | |
1375 | this->sized_create_version_sections | |
1376 | SELECT_SIZE_ENDIAN_NAME(32, false)( | |
46fe1623 | 1377 | versions, symtab, local_symcount, dynamic_symbols, dynstr |
193a53d9 ILT |
1378 | SELECT_SIZE_ENDIAN(32, false)); |
1379 | #else | |
1380 | gold_unreachable(); | |
1381 | #endif | |
1382 | } | |
14b31740 | 1383 | } |
9025d29d | 1384 | else if (parameters->get_size() == 64) |
14b31740 | 1385 | { |
9025d29d | 1386 | if (parameters->is_big_endian()) |
193a53d9 ILT |
1387 | { |
1388 | #ifdef HAVE_TARGET_64_BIG | |
1389 | this->sized_create_version_sections | |
1390 | SELECT_SIZE_ENDIAN_NAME(64, true)( | |
46fe1623 | 1391 | versions, symtab, local_symcount, dynamic_symbols, dynstr |
193a53d9 ILT |
1392 | SELECT_SIZE_ENDIAN(64, true)); |
1393 | #else | |
1394 | gold_unreachable(); | |
1395 | #endif | |
1396 | } | |
14b31740 | 1397 | else |
193a53d9 ILT |
1398 | { |
1399 | #ifdef HAVE_TARGET_64_LITTLE | |
1400 | this->sized_create_version_sections | |
1401 | SELECT_SIZE_ENDIAN_NAME(64, false)( | |
46fe1623 | 1402 | versions, symtab, local_symcount, dynamic_symbols, dynstr |
193a53d9 ILT |
1403 | SELECT_SIZE_ENDIAN(64, false)); |
1404 | #else | |
1405 | gold_unreachable(); | |
1406 | #endif | |
1407 | } | |
14b31740 ILT |
1408 | } |
1409 | else | |
1410 | gold_unreachable(); | |
1411 | } | |
1412 | ||
1413 | // Create the version sections, sized version. | |
1414 | ||
1415 | template<int size, bool big_endian> | |
1416 | void | |
1417 | Layout::sized_create_version_sections( | |
1418 | const Versions* versions, | |
46fe1623 | 1419 | const Symbol_table* symtab, |
14b31740 ILT |
1420 | unsigned int local_symcount, |
1421 | const std::vector<Symbol*>& dynamic_symbols, | |
91da9340 ILT |
1422 | const Output_section* dynstr |
1423 | ACCEPT_SIZE_ENDIAN) | |
14b31740 | 1424 | { |
cfd73a4e | 1425 | const char* vname = this->namepool_.add(".gnu.version", false, NULL); |
14b31740 ILT |
1426 | Output_section* vsec = this->make_output_section(vname, |
1427 | elfcpp::SHT_GNU_versym, | |
1428 | elfcpp::SHF_ALLOC); | |
1429 | ||
1430 | unsigned char* vbuf; | |
1431 | unsigned int vsize; | |
91da9340 | 1432 | versions->symbol_section_contents SELECT_SIZE_ENDIAN_NAME(size, big_endian)( |
46fe1623 | 1433 | symtab, &this->dynpool_, local_symcount, dynamic_symbols, &vbuf, &vsize |
7e1edb90 | 1434 | SELECT_SIZE_ENDIAN(size, big_endian)); |
14b31740 ILT |
1435 | |
1436 | Output_section_data* vdata = new Output_data_const_buffer(vbuf, vsize, 2); | |
1437 | ||
1438 | vsec->add_output_section_data(vdata); | |
1439 | vsec->set_entsize(2); | |
1440 | vsec->set_link_section(this->dynsym_section_); | |
1441 | ||
1442 | Output_data_dynamic* const odyn = this->dynamic_data_; | |
1443 | odyn->add_section_address(elfcpp::DT_VERSYM, vsec); | |
1444 | ||
1445 | if (versions->any_defs()) | |
1446 | { | |
cfd73a4e | 1447 | const char* vdname = this->namepool_.add(".gnu.version_d", false, NULL); |
14b31740 ILT |
1448 | Output_section *vdsec; |
1449 | vdsec = this->make_output_section(vdname, elfcpp::SHT_GNU_verdef, | |
1450 | elfcpp::SHF_ALLOC); | |
1451 | ||
1452 | unsigned char* vdbuf; | |
1453 | unsigned int vdsize; | |
1454 | unsigned int vdentries; | |
91da9340 ILT |
1455 | versions->def_section_contents SELECT_SIZE_ENDIAN_NAME(size, big_endian)( |
1456 | &this->dynpool_, &vdbuf, &vdsize, &vdentries | |
1457 | SELECT_SIZE_ENDIAN(size, big_endian)); | |
14b31740 ILT |
1458 | |
1459 | Output_section_data* vddata = new Output_data_const_buffer(vdbuf, | |
1460 | vdsize, | |
1461 | 4); | |
1462 | ||
1463 | vdsec->add_output_section_data(vddata); | |
1464 | vdsec->set_link_section(dynstr); | |
1465 | vdsec->set_info(vdentries); | |
1466 | ||
1467 | odyn->add_section_address(elfcpp::DT_VERDEF, vdsec); | |
1468 | odyn->add_constant(elfcpp::DT_VERDEFNUM, vdentries); | |
1469 | } | |
1470 | ||
1471 | if (versions->any_needs()) | |
1472 | { | |
cfd73a4e | 1473 | const char* vnname = this->namepool_.add(".gnu.version_r", false, NULL); |
14b31740 ILT |
1474 | Output_section* vnsec; |
1475 | vnsec = this->make_output_section(vnname, elfcpp::SHT_GNU_verneed, | |
1476 | elfcpp::SHF_ALLOC); | |
1477 | ||
1478 | unsigned char* vnbuf; | |
1479 | unsigned int vnsize; | |
1480 | unsigned int vnentries; | |
91da9340 ILT |
1481 | versions->need_section_contents SELECT_SIZE_ENDIAN_NAME(size, big_endian) |
1482 | (&this->dynpool_, &vnbuf, &vnsize, &vnentries | |
1483 | SELECT_SIZE_ENDIAN(size, big_endian)); | |
14b31740 ILT |
1484 | |
1485 | Output_section_data* vndata = new Output_data_const_buffer(vnbuf, | |
1486 | vnsize, | |
1487 | 4); | |
1488 | ||
1489 | vnsec->add_output_section_data(vndata); | |
1490 | vnsec->set_link_section(dynstr); | |
1491 | vnsec->set_info(vnentries); | |
1492 | ||
1493 | odyn->add_section_address(elfcpp::DT_VERNEED, vnsec); | |
1494 | odyn->add_constant(elfcpp::DT_VERNEEDNUM, vnentries); | |
1495 | } | |
1496 | } | |
1497 | ||
dbe717ef ILT |
1498 | // Create the .interp section and PT_INTERP segment. |
1499 | ||
1500 | void | |
1501 | Layout::create_interp(const Target* target) | |
1502 | { | |
1503 | const char* interp = this->options_.dynamic_linker(); | |
1504 | if (interp == NULL) | |
1505 | { | |
1506 | interp = target->dynamic_linker(); | |
a3ad94ed | 1507 | gold_assert(interp != NULL); |
dbe717ef ILT |
1508 | } |
1509 | ||
1510 | size_t len = strlen(interp) + 1; | |
1511 | ||
1512 | Output_section_data* odata = new Output_data_const(interp, len, 1); | |
1513 | ||
cfd73a4e | 1514 | const char* interp_name = this->namepool_.add(".interp", false, NULL); |
dbe717ef ILT |
1515 | Output_section* osec = this->make_output_section(interp_name, |
1516 | elfcpp::SHT_PROGBITS, | |
1517 | elfcpp::SHF_ALLOC); | |
1518 | osec->add_output_section_data(odata); | |
1519 | ||
1520 | Output_segment* oseg = new Output_segment(elfcpp::PT_INTERP, elfcpp::PF_R); | |
1521 | this->segment_list_.push_back(oseg); | |
1522 | oseg->add_initial_output_section(osec, elfcpp::PF_R); | |
1523 | } | |
1524 | ||
a3ad94ed ILT |
1525 | // Finish the .dynamic section and PT_DYNAMIC segment. |
1526 | ||
1527 | void | |
1528 | Layout::finish_dynamic_section(const Input_objects* input_objects, | |
16649710 | 1529 | const Symbol_table* symtab) |
a3ad94ed | 1530 | { |
a3ad94ed ILT |
1531 | Output_segment* oseg = new Output_segment(elfcpp::PT_DYNAMIC, |
1532 | elfcpp::PF_R | elfcpp::PF_W); | |
1533 | this->segment_list_.push_back(oseg); | |
1534 | oseg->add_initial_output_section(this->dynamic_section_, | |
1535 | elfcpp::PF_R | elfcpp::PF_W); | |
1536 | ||
16649710 ILT |
1537 | Output_data_dynamic* const odyn = this->dynamic_data_; |
1538 | ||
a3ad94ed ILT |
1539 | for (Input_objects::Dynobj_iterator p = input_objects->dynobj_begin(); |
1540 | p != input_objects->dynobj_end(); | |
1541 | ++p) | |
1542 | { | |
1543 | // FIXME: Handle --as-needed. | |
1544 | odyn->add_string(elfcpp::DT_NEEDED, (*p)->soname()); | |
1545 | } | |
1546 | ||
1547 | // FIXME: Support --init and --fini. | |
1548 | Symbol* sym = symtab->lookup("_init"); | |
14b31740 | 1549 | if (sym != NULL && sym->is_defined() && !sym->is_from_dynobj()) |
a3ad94ed ILT |
1550 | odyn->add_symbol(elfcpp::DT_INIT, sym); |
1551 | ||
1552 | sym = symtab->lookup("_fini"); | |
14b31740 | 1553 | if (sym != NULL && sym->is_defined() && !sym->is_from_dynobj()) |
a3ad94ed ILT |
1554 | odyn->add_symbol(elfcpp::DT_FINI, sym); |
1555 | ||
1556 | // FIXME: Support DT_INIT_ARRAY and DT_FINI_ARRAY. | |
41f542e7 ILT |
1557 | |
1558 | // Add a DT_RPATH entry if needed. | |
1559 | const General_options::Dir_list& rpath(this->options_.rpath()); | |
1560 | if (!rpath.empty()) | |
1561 | { | |
1562 | std::string rpath_val; | |
1563 | for (General_options::Dir_list::const_iterator p = rpath.begin(); | |
1564 | p != rpath.end(); | |
1565 | ++p) | |
1566 | { | |
1567 | if (rpath_val.empty()) | |
ad2d6943 | 1568 | rpath_val = p->name(); |
41f542e7 ILT |
1569 | else |
1570 | { | |
1571 | // Eliminate duplicates. | |
1572 | General_options::Dir_list::const_iterator q; | |
1573 | for (q = rpath.begin(); q != p; ++q) | |
ad2d6943 | 1574 | if (q->name() == p->name()) |
41f542e7 ILT |
1575 | break; |
1576 | if (q == p) | |
1577 | { | |
1578 | rpath_val += ':'; | |
ad2d6943 | 1579 | rpath_val += p->name(); |
41f542e7 ILT |
1580 | } |
1581 | } | |
1582 | } | |
1583 | ||
1584 | odyn->add_string(elfcpp::DT_RPATH, rpath_val); | |
1585 | } | |
07f397ab ILT |
1586 | |
1587 | // Add a DT_FLAGS entry. We add it even if no flags are set so that | |
1588 | // post-link tools can easily modify these flags if desired. | |
1589 | unsigned int flags = 0; | |
1590 | if (this->have_textrel_) | |
1591 | flags |= elfcpp::DF_TEXTREL; | |
1592 | odyn->add_constant(elfcpp::DT_FLAGS, flags); | |
a3ad94ed ILT |
1593 | } |
1594 | ||
a2fb1b05 ILT |
1595 | // The mapping of .gnu.linkonce section names to real section names. |
1596 | ||
ead1e424 | 1597 | #define MAPPING_INIT(f, t) { f, sizeof(f) - 1, t, sizeof(t) - 1 } |
a2fb1b05 ILT |
1598 | const Layout::Linkonce_mapping Layout::linkonce_mapping[] = |
1599 | { | |
1600 | MAPPING_INIT("d.rel.ro", ".data.rel.ro"), // Must be before "d". | |
1601 | MAPPING_INIT("t", ".text"), | |
1602 | MAPPING_INIT("r", ".rodata"), | |
1603 | MAPPING_INIT("d", ".data"), | |
1604 | MAPPING_INIT("b", ".bss"), | |
1605 | MAPPING_INIT("s", ".sdata"), | |
1606 | MAPPING_INIT("sb", ".sbss"), | |
1607 | MAPPING_INIT("s2", ".sdata2"), | |
1608 | MAPPING_INIT("sb2", ".sbss2"), | |
1609 | MAPPING_INIT("wi", ".debug_info"), | |
1610 | MAPPING_INIT("td", ".tdata"), | |
1611 | MAPPING_INIT("tb", ".tbss"), | |
1612 | MAPPING_INIT("lr", ".lrodata"), | |
1613 | MAPPING_INIT("l", ".ldata"), | |
1614 | MAPPING_INIT("lb", ".lbss"), | |
1615 | }; | |
1616 | #undef MAPPING_INIT | |
1617 | ||
1618 | const int Layout::linkonce_mapping_count = | |
1619 | sizeof(Layout::linkonce_mapping) / sizeof(Layout::linkonce_mapping[0]); | |
1620 | ||
1621 | // Return the name of the output section to use for a .gnu.linkonce | |
1622 | // section. This is based on the default ELF linker script of the old | |
1623 | // GNU linker. For example, we map a name like ".gnu.linkonce.t.foo" | |
ead1e424 ILT |
1624 | // to ".text". Set *PLEN to the length of the name. *PLEN is |
1625 | // initialized to the length of NAME. | |
a2fb1b05 ILT |
1626 | |
1627 | const char* | |
ead1e424 | 1628 | Layout::linkonce_output_name(const char* name, size_t *plen) |
a2fb1b05 ILT |
1629 | { |
1630 | const char* s = name + sizeof(".gnu.linkonce") - 1; | |
1631 | if (*s != '.') | |
1632 | return name; | |
1633 | ++s; | |
1634 | const Linkonce_mapping* plm = linkonce_mapping; | |
1635 | for (int i = 0; i < linkonce_mapping_count; ++i, ++plm) | |
1636 | { | |
1637 | if (strncmp(s, plm->from, plm->fromlen) == 0 && s[plm->fromlen] == '.') | |
ead1e424 ILT |
1638 | { |
1639 | *plen = plm->tolen; | |
1640 | return plm->to; | |
1641 | } | |
a2fb1b05 ILT |
1642 | } |
1643 | return name; | |
1644 | } | |
1645 | ||
ead1e424 ILT |
1646 | // Choose the output section name to use given an input section name. |
1647 | // Set *PLEN to the length of the name. *PLEN is initialized to the | |
1648 | // length of NAME. | |
1649 | ||
1650 | const char* | |
1651 | Layout::output_section_name(const char* name, size_t* plen) | |
1652 | { | |
1653 | if (Layout::is_linkonce(name)) | |
1654 | { | |
1655 | // .gnu.linkonce sections are laid out as though they were named | |
1656 | // for the sections are placed into. | |
1657 | return Layout::linkonce_output_name(name, plen); | |
1658 | } | |
1659 | ||
af4a8a83 ILT |
1660 | // gcc 4.3 generates the following sorts of section names when it |
1661 | // needs a section name specific to a function: | |
1662 | // .text.FN | |
1663 | // .rodata.FN | |
1664 | // .sdata2.FN | |
1665 | // .data.FN | |
1666 | // .data.rel.FN | |
1667 | // .data.rel.local.FN | |
1668 | // .data.rel.ro.FN | |
1669 | // .data.rel.ro.local.FN | |
1670 | // .sdata.FN | |
1671 | // .bss.FN | |
1672 | // .sbss.FN | |
1673 | // .tdata.FN | |
1674 | // .tbss.FN | |
1675 | ||
1676 | // The GNU linker maps all of those to the part before the .FN, | |
1677 | // except that .data.rel.local.FN is mapped to .data, and | |
1678 | // .data.rel.ro.local.FN is mapped to .data.rel.ro. The sections | |
1679 | // beginning with .data.rel.ro.local are grouped together. | |
1680 | ||
1681 | // For an anonymous namespace, the string FN can contain a '.'. | |
1682 | ||
1683 | // Also of interest: .rodata.strN.N, .rodata.cstN, both of which the | |
1684 | // GNU linker maps to .rodata. | |
1685 | ||
1686 | // The .data.rel.ro sections enable a security feature triggered by | |
1687 | // the -z relro option. Section which need to be relocated at | |
1688 | // program startup time but which may be readonly after startup are | |
1689 | // grouped into .data.rel.ro. They are then put into a PT_GNU_RELRO | |
1690 | // segment. The dynamic linker will make that segment writable, | |
1691 | // perform relocations, and then make it read-only. FIXME: We do | |
1692 | // not yet implement this optimization. | |
1693 | ||
1694 | // It is hard to handle this in a principled way. | |
1695 | ||
1696 | // These are the rules we follow: | |
1697 | ||
1698 | // If the section name has no initial '.', or no dot other than an | |
1699 | // initial '.', we use the name unchanged (i.e., "mysection" and | |
1700 | // ".text" are unchanged). | |
1701 | ||
1702 | // If the name starts with ".data.rel.ro" we use ".data.rel.ro". | |
1703 | ||
1704 | // Otherwise, we drop the second '.' and everything that comes after | |
1705 | // it (i.e., ".text.XXX" becomes ".text"). | |
ead1e424 ILT |
1706 | |
1707 | const char* s = name; | |
af4a8a83 ILT |
1708 | if (*s != '.') |
1709 | return name; | |
1710 | ++s; | |
ead1e424 ILT |
1711 | const char* sdot = strchr(s, '.'); |
1712 | if (sdot == NULL) | |
1713 | return name; | |
1714 | ||
af4a8a83 ILT |
1715 | const char* const data_rel_ro = ".data.rel.ro"; |
1716 | if (strncmp(name, data_rel_ro, strlen(data_rel_ro)) == 0) | |
ead1e424 | 1717 | { |
af4a8a83 ILT |
1718 | *plen = strlen(data_rel_ro); |
1719 | return data_rel_ro; | |
ead1e424 ILT |
1720 | } |
1721 | ||
ead1e424 ILT |
1722 | *plen = sdot - name; |
1723 | return name; | |
1724 | } | |
1725 | ||
a2fb1b05 ILT |
1726 | // Record the signature of a comdat section, and return whether to |
1727 | // include it in the link. If GROUP is true, this is a regular | |
1728 | // section group. If GROUP is false, this is a group signature | |
1729 | // derived from the name of a linkonce section. We want linkonce | |
1730 | // signatures and group signatures to block each other, but we don't | |
1731 | // want a linkonce signature to block another linkonce signature. | |
1732 | ||
1733 | bool | |
1734 | Layout::add_comdat(const char* signature, bool group) | |
1735 | { | |
1736 | std::string sig(signature); | |
1737 | std::pair<Signatures::iterator, bool> ins( | |
ead1e424 | 1738 | this->signatures_.insert(std::make_pair(sig, group))); |
a2fb1b05 ILT |
1739 | |
1740 | if (ins.second) | |
1741 | { | |
1742 | // This is the first time we've seen this signature. | |
1743 | return true; | |
1744 | } | |
1745 | ||
1746 | if (ins.first->second) | |
1747 | { | |
1748 | // We've already seen a real section group with this signature. | |
1749 | return false; | |
1750 | } | |
1751 | else if (group) | |
1752 | { | |
1753 | // This is a real section group, and we've already seen a | |
a0fa0c07 | 1754 | // linkonce section with this signature. Record that we've seen |
a2fb1b05 ILT |
1755 | // a section group, and don't include this section group. |
1756 | ins.first->second = true; | |
1757 | return false; | |
1758 | } | |
1759 | else | |
1760 | { | |
1761 | // We've already seen a linkonce section and this is a linkonce | |
1762 | // section. These don't block each other--this may be the same | |
1763 | // symbol name with different section types. | |
1764 | return true; | |
1765 | } | |
1766 | } | |
1767 | ||
730cdc88 ILT |
1768 | // Write out the Output_sections. Most won't have anything to write, |
1769 | // since most of the data will come from input sections which are | |
1770 | // handled elsewhere. But some Output_sections do have Output_data. | |
1771 | ||
1772 | void | |
1773 | Layout::write_output_sections(Output_file* of) const | |
1774 | { | |
1775 | for (Section_list::const_iterator p = this->section_list_.begin(); | |
1776 | p != this->section_list_.end(); | |
1777 | ++p) | |
1778 | { | |
1779 | if (!(*p)->after_input_sections()) | |
1780 | (*p)->write(of); | |
1781 | } | |
1782 | } | |
1783 | ||
61ba1cf9 ILT |
1784 | // Write out data not associated with a section or the symbol table. |
1785 | ||
1786 | void | |
9025d29d | 1787 | Layout::write_data(const Symbol_table* symtab, Output_file* of) const |
61ba1cf9 | 1788 | { |
9e2dcb77 | 1789 | if (!parameters->strip_all()) |
a3ad94ed | 1790 | { |
9e2dcb77 ILT |
1791 | const Output_section* symtab_section = this->symtab_section_; |
1792 | for (Section_list::const_iterator p = this->section_list_.begin(); | |
1793 | p != this->section_list_.end(); | |
1794 | ++p) | |
a3ad94ed | 1795 | { |
9e2dcb77 ILT |
1796 | if ((*p)->needs_symtab_index()) |
1797 | { | |
1798 | gold_assert(symtab_section != NULL); | |
1799 | unsigned int index = (*p)->symtab_index(); | |
1800 | gold_assert(index > 0 && index != -1U); | |
1801 | off_t off = (symtab_section->offset() | |
1802 | + index * symtab_section->entsize()); | |
1803 | symtab->write_section_symbol(*p, of, off); | |
1804 | } | |
a3ad94ed ILT |
1805 | } |
1806 | } | |
1807 | ||
1808 | const Output_section* dynsym_section = this->dynsym_section_; | |
1809 | for (Section_list::const_iterator p = this->section_list_.begin(); | |
1810 | p != this->section_list_.end(); | |
1811 | ++p) | |
1812 | { | |
1813 | if ((*p)->needs_dynsym_index()) | |
1814 | { | |
1815 | gold_assert(dynsym_section != NULL); | |
1816 | unsigned int index = (*p)->dynsym_index(); | |
1817 | gold_assert(index > 0 && index != -1U); | |
1818 | off_t off = (dynsym_section->offset() | |
1819 | + index * dynsym_section->entsize()); | |
9025d29d | 1820 | symtab->write_section_symbol(*p, of, off); |
a3ad94ed ILT |
1821 | } |
1822 | } | |
1823 | ||
a3ad94ed | 1824 | // Write out the Output_data which are not in an Output_section. |
61ba1cf9 ILT |
1825 | for (Data_list::const_iterator p = this->special_output_list_.begin(); |
1826 | p != this->special_output_list_.end(); | |
1827 | ++p) | |
1828 | (*p)->write(of); | |
1829 | } | |
1830 | ||
730cdc88 ILT |
1831 | // Write out the Output_sections which can only be written after the |
1832 | // input sections are complete. | |
1833 | ||
1834 | void | |
1835 | Layout::write_sections_after_input_sections(Output_file* of) const | |
1836 | { | |
1837 | for (Section_list::const_iterator p = this->section_list_.begin(); | |
1838 | p != this->section_list_.end(); | |
1839 | ++p) | |
1840 | { | |
1841 | if ((*p)->after_input_sections()) | |
1842 | (*p)->write(of); | |
1843 | } | |
1844 | } | |
1845 | ||
1846 | // Write_sections_task methods. | |
1847 | ||
1848 | // We can always run this task. | |
1849 | ||
1850 | Task::Is_runnable_type | |
1851 | Write_sections_task::is_runnable(Workqueue*) | |
1852 | { | |
1853 | return IS_RUNNABLE; | |
1854 | } | |
1855 | ||
1856 | // We need to unlock both OUTPUT_SECTIONS_BLOCKER and FINAL_BLOCKER | |
1857 | // when finished. | |
1858 | ||
1859 | class Write_sections_task::Write_sections_locker : public Task_locker | |
1860 | { | |
1861 | public: | |
1862 | Write_sections_locker(Task_token& output_sections_blocker, | |
1863 | Task_token& final_blocker, | |
1864 | Workqueue* workqueue) | |
1865 | : output_sections_block_(output_sections_blocker, workqueue), | |
1866 | final_block_(final_blocker, workqueue) | |
1867 | { } | |
1868 | ||
1869 | private: | |
1870 | Task_block_token output_sections_block_; | |
1871 | Task_block_token final_block_; | |
1872 | }; | |
1873 | ||
1874 | Task_locker* | |
1875 | Write_sections_task::locks(Workqueue* workqueue) | |
1876 | { | |
1877 | return new Write_sections_locker(*this->output_sections_blocker_, | |
1878 | *this->final_blocker_, | |
1879 | workqueue); | |
1880 | } | |
1881 | ||
1882 | // Run the task--write out the data. | |
1883 | ||
1884 | void | |
1885 | Write_sections_task::run(Workqueue*) | |
1886 | { | |
1887 | this->layout_->write_output_sections(this->of_); | |
1888 | } | |
1889 | ||
61ba1cf9 ILT |
1890 | // Write_data_task methods. |
1891 | ||
1892 | // We can always run this task. | |
1893 | ||
1894 | Task::Is_runnable_type | |
1895 | Write_data_task::is_runnable(Workqueue*) | |
1896 | { | |
1897 | return IS_RUNNABLE; | |
1898 | } | |
1899 | ||
1900 | // We need to unlock FINAL_BLOCKER when finished. | |
1901 | ||
1902 | Task_locker* | |
1903 | Write_data_task::locks(Workqueue* workqueue) | |
1904 | { | |
1905 | return new Task_locker_block(*this->final_blocker_, workqueue); | |
1906 | } | |
1907 | ||
1908 | // Run the task--write out the data. | |
1909 | ||
1910 | void | |
1911 | Write_data_task::run(Workqueue*) | |
1912 | { | |
9025d29d | 1913 | this->layout_->write_data(this->symtab_, this->of_); |
61ba1cf9 ILT |
1914 | } |
1915 | ||
1916 | // Write_symbols_task methods. | |
1917 | ||
1918 | // We can always run this task. | |
1919 | ||
1920 | Task::Is_runnable_type | |
1921 | Write_symbols_task::is_runnable(Workqueue*) | |
1922 | { | |
1923 | return IS_RUNNABLE; | |
1924 | } | |
1925 | ||
1926 | // We need to unlock FINAL_BLOCKER when finished. | |
1927 | ||
1928 | Task_locker* | |
1929 | Write_symbols_task::locks(Workqueue* workqueue) | |
1930 | { | |
1931 | return new Task_locker_block(*this->final_blocker_, workqueue); | |
1932 | } | |
1933 | ||
1934 | // Run the task--write out the symbols. | |
1935 | ||
1936 | void | |
1937 | Write_symbols_task::run(Workqueue*) | |
1938 | { | |
9a2d6984 ILT |
1939 | this->symtab_->write_globals(this->input_objects_, this->sympool_, |
1940 | this->dynpool_, this->of_); | |
61ba1cf9 ILT |
1941 | } |
1942 | ||
730cdc88 ILT |
1943 | // Write_after_input_sections_task methods. |
1944 | ||
1945 | // We can only run this task after the input sections have completed. | |
1946 | ||
1947 | Task::Is_runnable_type | |
1948 | Write_after_input_sections_task::is_runnable(Workqueue*) | |
1949 | { | |
1950 | if (this->input_sections_blocker_->is_blocked()) | |
1951 | return IS_BLOCKED; | |
1952 | return IS_RUNNABLE; | |
1953 | } | |
1954 | ||
1955 | // We need to unlock FINAL_BLOCKER when finished. | |
1956 | ||
1957 | Task_locker* | |
1958 | Write_after_input_sections_task::locks(Workqueue* workqueue) | |
1959 | { | |
1960 | return new Task_locker_block(*this->final_blocker_, workqueue); | |
1961 | } | |
1962 | ||
1963 | // Run the task. | |
1964 | ||
1965 | void | |
1966 | Write_after_input_sections_task::run(Workqueue*) | |
1967 | { | |
1968 | this->layout_->write_sections_after_input_sections(this->of_); | |
1969 | } | |
1970 | ||
92e059d8 | 1971 | // Close_task_runner methods. |
61ba1cf9 ILT |
1972 | |
1973 | // Run the task--close the file. | |
1974 | ||
1975 | void | |
92e059d8 | 1976 | Close_task_runner::run(Workqueue*) |
61ba1cf9 ILT |
1977 | { |
1978 | this->of_->close(); | |
1979 | } | |
1980 | ||
a2fb1b05 ILT |
1981 | // Instantiate the templates we need. We could use the configure |
1982 | // script to restrict this to only the ones for implemented targets. | |
1983 | ||
193a53d9 | 1984 | #ifdef HAVE_TARGET_32_LITTLE |
a2fb1b05 ILT |
1985 | template |
1986 | Output_section* | |
730cdc88 ILT |
1987 | Layout::layout<32, false>(Sized_relobj<32, false>* object, unsigned int shndx, |
1988 | const char* name, | |
1989 | const elfcpp::Shdr<32, false>& shdr, | |
1990 | unsigned int, unsigned int, off_t*); | |
193a53d9 | 1991 | #endif |
a2fb1b05 | 1992 | |
193a53d9 | 1993 | #ifdef HAVE_TARGET_32_BIG |
a2fb1b05 ILT |
1994 | template |
1995 | Output_section* | |
730cdc88 ILT |
1996 | Layout::layout<32, true>(Sized_relobj<32, true>* object, unsigned int shndx, |
1997 | const char* name, | |
1998 | const elfcpp::Shdr<32, true>& shdr, | |
1999 | unsigned int, unsigned int, off_t*); | |
193a53d9 | 2000 | #endif |
a2fb1b05 | 2001 | |
193a53d9 | 2002 | #ifdef HAVE_TARGET_64_LITTLE |
a2fb1b05 ILT |
2003 | template |
2004 | Output_section* | |
730cdc88 ILT |
2005 | Layout::layout<64, false>(Sized_relobj<64, false>* object, unsigned int shndx, |
2006 | const char* name, | |
2007 | const elfcpp::Shdr<64, false>& shdr, | |
2008 | unsigned int, unsigned int, off_t*); | |
193a53d9 | 2009 | #endif |
a2fb1b05 | 2010 | |
193a53d9 | 2011 | #ifdef HAVE_TARGET_64_BIG |
a2fb1b05 ILT |
2012 | template |
2013 | Output_section* | |
730cdc88 ILT |
2014 | Layout::layout<64, true>(Sized_relobj<64, true>* object, unsigned int shndx, |
2015 | const char* name, | |
2016 | const elfcpp::Shdr<64, true>& shdr, | |
2017 | unsigned int, unsigned int, off_t*); | |
193a53d9 | 2018 | #endif |
a2fb1b05 | 2019 | |
730cdc88 ILT |
2020 | #ifdef HAVE_TARGET_32_LITTLE |
2021 | template | |
2022 | Output_section* | |
2023 | Layout::layout_eh_frame<32, false>(Sized_relobj<32, false>* object, | |
2024 | const unsigned char* symbols, | |
2025 | off_t symbols_size, | |
2026 | const unsigned char* symbol_names, | |
2027 | off_t symbol_names_size, | |
2028 | unsigned int shndx, | |
2029 | const elfcpp::Shdr<32, false>& shdr, | |
2030 | unsigned int reloc_shndx, | |
2031 | unsigned int reloc_type, | |
2032 | off_t* off); | |
2033 | #endif | |
2034 | ||
2035 | #ifdef HAVE_TARGET_32_BIG | |
2036 | template | |
2037 | Output_section* | |
2038 | Layout::layout_eh_frame<32, true>(Sized_relobj<32, true>* object, | |
2039 | const unsigned char* symbols, | |
2040 | off_t symbols_size, | |
2041 | const unsigned char* symbol_names, | |
2042 | off_t symbol_names_size, | |
2043 | unsigned int shndx, | |
2044 | const elfcpp::Shdr<32, true>& shdr, | |
2045 | unsigned int reloc_shndx, | |
2046 | unsigned int reloc_type, | |
2047 | off_t* off); | |
2048 | #endif | |
2049 | ||
2050 | #ifdef HAVE_TARGET_64_LITTLE | |
2051 | template | |
2052 | Output_section* | |
2053 | Layout::layout_eh_frame<64, false>(Sized_relobj<64, false>* object, | |
2054 | const unsigned char* symbols, | |
2055 | off_t symbols_size, | |
2056 | const unsigned char* symbol_names, | |
2057 | off_t symbol_names_size, | |
2058 | unsigned int shndx, | |
2059 | const elfcpp::Shdr<64, false>& shdr, | |
2060 | unsigned int reloc_shndx, | |
2061 | unsigned int reloc_type, | |
2062 | off_t* off); | |
2063 | #endif | |
2064 | ||
2065 | #ifdef HAVE_TARGET_64_BIG | |
2066 | template | |
2067 | Output_section* | |
2068 | Layout::layout_eh_frame<64, true>(Sized_relobj<64, true>* object, | |
2069 | const unsigned char* symbols, | |
2070 | off_t symbols_size, | |
2071 | const unsigned char* symbol_names, | |
2072 | off_t symbol_names_size, | |
2073 | unsigned int shndx, | |
2074 | const elfcpp::Shdr<64, true>& shdr, | |
2075 | unsigned int reloc_shndx, | |
2076 | unsigned int reloc_type, | |
2077 | off_t* off); | |
2078 | #endif | |
a2fb1b05 ILT |
2079 | |
2080 | } // End namespace gold. |