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a2fb1b05 ILT |
1 | // output.cc -- manage the output file for gold |
2 | ||
88597d34 | 3 | // Copyright 2006, 2007, 2008, 2009, 2010, 2011 Free Software Foundation, Inc. |
6cb15b7f ILT |
4 | // Written by Ian Lance Taylor <[email protected]>. |
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 | ||
25 | #include <cstdlib> | |
04bf7072 | 26 | #include <cstring> |
61ba1cf9 ILT |
27 | #include <cerrno> |
28 | #include <fcntl.h> | |
29 | #include <unistd.h> | |
4e9d8586 | 30 | #include <sys/stat.h> |
75f65a3e | 31 | #include <algorithm> |
88597d34 ILT |
32 | |
33 | #ifdef HAVE_SYS_MMAN_H | |
34 | #include <sys/mman.h> | |
35 | #endif | |
36 | ||
6a89f575 | 37 | #include "libiberty.h" |
a2fb1b05 | 38 | |
7e1edb90 | 39 | #include "parameters.h" |
a2fb1b05 | 40 | #include "object.h" |
ead1e424 ILT |
41 | #include "symtab.h" |
42 | #include "reloc.h" | |
b8e6aad9 | 43 | #include "merge.h" |
2a00e4fb | 44 | #include "descriptors.h" |
a2fb1b05 ILT |
45 | #include "output.h" |
46 | ||
88597d34 ILT |
47 | // For systems without mmap support. |
48 | #ifndef HAVE_MMAP | |
49 | # define mmap gold_mmap | |
50 | # define munmap gold_munmap | |
51 | # define mremap gold_mremap | |
52 | # ifndef MAP_FAILED | |
53 | # define MAP_FAILED (reinterpret_cast<void*>(-1)) | |
54 | # endif | |
55 | # ifndef PROT_READ | |
56 | # define PROT_READ 0 | |
57 | # endif | |
58 | # ifndef PROT_WRITE | |
59 | # define PROT_WRITE 0 | |
60 | # endif | |
61 | # ifndef MAP_PRIVATE | |
62 | # define MAP_PRIVATE 0 | |
63 | # endif | |
64 | # ifndef MAP_ANONYMOUS | |
65 | # define MAP_ANONYMOUS 0 | |
66 | # endif | |
67 | # ifndef MAP_SHARED | |
68 | # define MAP_SHARED 0 | |
69 | # endif | |
70 | ||
71 | # ifndef ENOSYS | |
72 | # define ENOSYS EINVAL | |
73 | # endif | |
74 | ||
75 | static void * | |
76 | gold_mmap(void *, size_t, int, int, int, off_t) | |
77 | { | |
78 | errno = ENOSYS; | |
79 | return MAP_FAILED; | |
80 | } | |
81 | ||
82 | static int | |
83 | gold_munmap(void *, size_t) | |
84 | { | |
85 | errno = ENOSYS; | |
86 | return -1; | |
87 | } | |
88 | ||
89 | static void * | |
90 | gold_mremap(void *, size_t, size_t, int) | |
91 | { | |
92 | errno = ENOSYS; | |
93 | return MAP_FAILED; | |
94 | } | |
95 | ||
96 | #endif | |
97 | ||
98 | #if defined(HAVE_MMAP) && !defined(HAVE_MREMAP) | |
99 | # define mremap gold_mremap | |
100 | extern "C" void *gold_mremap(void *, size_t, size_t, int); | |
101 | #endif | |
102 | ||
c420411f ILT |
103 | // Some BSD systems still use MAP_ANON instead of MAP_ANONYMOUS |
104 | #ifndef MAP_ANONYMOUS | |
105 | # define MAP_ANONYMOUS MAP_ANON | |
106 | #endif | |
107 | ||
88597d34 ILT |
108 | #ifndef MREMAP_MAYMOVE |
109 | # define MREMAP_MAYMOVE 1 | |
110 | #endif | |
111 | ||
9201d894 ILT |
112 | #ifndef HAVE_POSIX_FALLOCATE |
113 | // A dummy, non general, version of posix_fallocate. Here we just set | |
114 | // the file size and hope that there is enough disk space. FIXME: We | |
115 | // could allocate disk space by walking block by block and writing a | |
116 | // zero byte into each block. | |
117 | static int | |
118 | posix_fallocate(int o, off_t offset, off_t len) | |
119 | { | |
120 | return ftruncate(o, offset + len); | |
121 | } | |
122 | #endif // !defined(HAVE_POSIX_FALLOCATE) | |
123 | ||
d0a9ace3 ILT |
124 | // Mingw does not have S_ISLNK. |
125 | #ifndef S_ISLNK | |
126 | # define S_ISLNK(mode) 0 | |
127 | #endif | |
128 | ||
a2fb1b05 ILT |
129 | namespace gold |
130 | { | |
131 | ||
a3ad94ed ILT |
132 | // Output_data variables. |
133 | ||
27bc2bce | 134 | bool Output_data::allocated_sizes_are_fixed; |
a3ad94ed | 135 | |
a2fb1b05 ILT |
136 | // Output_data methods. |
137 | ||
138 | Output_data::~Output_data() | |
139 | { | |
140 | } | |
141 | ||
730cdc88 ILT |
142 | // Return the default alignment for the target size. |
143 | ||
144 | uint64_t | |
145 | Output_data::default_alignment() | |
146 | { | |
8851ecca ILT |
147 | return Output_data::default_alignment_for_size( |
148 | parameters->target().get_size()); | |
730cdc88 ILT |
149 | } |
150 | ||
75f65a3e ILT |
151 | // Return the default alignment for a size--32 or 64. |
152 | ||
153 | uint64_t | |
730cdc88 | 154 | Output_data::default_alignment_for_size(int size) |
75f65a3e ILT |
155 | { |
156 | if (size == 32) | |
157 | return 4; | |
158 | else if (size == 64) | |
159 | return 8; | |
160 | else | |
a3ad94ed | 161 | gold_unreachable(); |
75f65a3e ILT |
162 | } |
163 | ||
75f65a3e ILT |
164 | // Output_section_header methods. This currently assumes that the |
165 | // segment and section lists are complete at construction time. | |
166 | ||
167 | Output_section_headers::Output_section_headers( | |
16649710 ILT |
168 | const Layout* layout, |
169 | const Layout::Segment_list* segment_list, | |
6a74a719 | 170 | const Layout::Section_list* section_list, |
16649710 | 171 | const Layout::Section_list* unattached_section_list, |
d491d34e ILT |
172 | const Stringpool* secnamepool, |
173 | const Output_section* shstrtab_section) | |
9025d29d | 174 | : layout_(layout), |
75f65a3e | 175 | segment_list_(segment_list), |
6a74a719 | 176 | section_list_(section_list), |
a3ad94ed | 177 | unattached_section_list_(unattached_section_list), |
d491d34e ILT |
178 | secnamepool_(secnamepool), |
179 | shstrtab_section_(shstrtab_section) | |
20e6d0d6 DK |
180 | { |
181 | } | |
182 | ||
183 | // Compute the current data size. | |
184 | ||
185 | off_t | |
186 | Output_section_headers::do_size() const | |
75f65a3e | 187 | { |
61ba1cf9 ILT |
188 | // Count all the sections. Start with 1 for the null section. |
189 | off_t count = 1; | |
8851ecca | 190 | if (!parameters->options().relocatable()) |
6a74a719 | 191 | { |
20e6d0d6 DK |
192 | for (Layout::Segment_list::const_iterator p = |
193 | this->segment_list_->begin(); | |
194 | p != this->segment_list_->end(); | |
6a74a719 ILT |
195 | ++p) |
196 | if ((*p)->type() == elfcpp::PT_LOAD) | |
197 | count += (*p)->output_section_count(); | |
198 | } | |
199 | else | |
200 | { | |
20e6d0d6 DK |
201 | for (Layout::Section_list::const_iterator p = |
202 | this->section_list_->begin(); | |
203 | p != this->section_list_->end(); | |
6a74a719 ILT |
204 | ++p) |
205 | if (((*p)->flags() & elfcpp::SHF_ALLOC) != 0) | |
206 | ++count; | |
207 | } | |
20e6d0d6 | 208 | count += this->unattached_section_list_->size(); |
75f65a3e | 209 | |
8851ecca | 210 | const int size = parameters->target().get_size(); |
75f65a3e ILT |
211 | int shdr_size; |
212 | if (size == 32) | |
213 | shdr_size = elfcpp::Elf_sizes<32>::shdr_size; | |
214 | else if (size == 64) | |
215 | shdr_size = elfcpp::Elf_sizes<64>::shdr_size; | |
216 | else | |
a3ad94ed | 217 | gold_unreachable(); |
75f65a3e | 218 | |
20e6d0d6 | 219 | return count * shdr_size; |
75f65a3e ILT |
220 | } |
221 | ||
61ba1cf9 ILT |
222 | // Write out the section headers. |
223 | ||
75f65a3e | 224 | void |
61ba1cf9 | 225 | Output_section_headers::do_write(Output_file* of) |
a2fb1b05 | 226 | { |
8851ecca | 227 | switch (parameters->size_and_endianness()) |
61ba1cf9 | 228 | { |
9025d29d | 229 | #ifdef HAVE_TARGET_32_LITTLE |
8851ecca ILT |
230 | case Parameters::TARGET_32_LITTLE: |
231 | this->do_sized_write<32, false>(of); | |
232 | break; | |
9025d29d | 233 | #endif |
8851ecca ILT |
234 | #ifdef HAVE_TARGET_32_BIG |
235 | case Parameters::TARGET_32_BIG: | |
236 | this->do_sized_write<32, true>(of); | |
237 | break; | |
9025d29d | 238 | #endif |
9025d29d | 239 | #ifdef HAVE_TARGET_64_LITTLE |
8851ecca ILT |
240 | case Parameters::TARGET_64_LITTLE: |
241 | this->do_sized_write<64, false>(of); | |
242 | break; | |
9025d29d | 243 | #endif |
8851ecca ILT |
244 | #ifdef HAVE_TARGET_64_BIG |
245 | case Parameters::TARGET_64_BIG: | |
246 | this->do_sized_write<64, true>(of); | |
247 | break; | |
248 | #endif | |
249 | default: | |
250 | gold_unreachable(); | |
61ba1cf9 | 251 | } |
61ba1cf9 ILT |
252 | } |
253 | ||
254 | template<int size, bool big_endian> | |
255 | void | |
256 | Output_section_headers::do_sized_write(Output_file* of) | |
257 | { | |
258 | off_t all_shdrs_size = this->data_size(); | |
259 | unsigned char* view = of->get_output_view(this->offset(), all_shdrs_size); | |
260 | ||
261 | const int shdr_size = elfcpp::Elf_sizes<size>::shdr_size; | |
262 | unsigned char* v = view; | |
263 | ||
264 | { | |
265 | typename elfcpp::Shdr_write<size, big_endian> oshdr(v); | |
266 | oshdr.put_sh_name(0); | |
267 | oshdr.put_sh_type(elfcpp::SHT_NULL); | |
268 | oshdr.put_sh_flags(0); | |
269 | oshdr.put_sh_addr(0); | |
270 | oshdr.put_sh_offset(0); | |
d491d34e ILT |
271 | |
272 | size_t section_count = (this->data_size() | |
273 | / elfcpp::Elf_sizes<size>::shdr_size); | |
274 | if (section_count < elfcpp::SHN_LORESERVE) | |
275 | oshdr.put_sh_size(0); | |
276 | else | |
277 | oshdr.put_sh_size(section_count); | |
278 | ||
279 | unsigned int shstrndx = this->shstrtab_section_->out_shndx(); | |
280 | if (shstrndx < elfcpp::SHN_LORESERVE) | |
281 | oshdr.put_sh_link(0); | |
282 | else | |
283 | oshdr.put_sh_link(shstrndx); | |
284 | ||
5696ab0b ILT |
285 | size_t segment_count = this->segment_list_->size(); |
286 | oshdr.put_sh_info(segment_count >= elfcpp::PN_XNUM ? segment_count : 0); | |
287 | ||
61ba1cf9 ILT |
288 | oshdr.put_sh_addralign(0); |
289 | oshdr.put_sh_entsize(0); | |
290 | } | |
291 | ||
292 | v += shdr_size; | |
293 | ||
6a74a719 | 294 | unsigned int shndx = 1; |
8851ecca | 295 | if (!parameters->options().relocatable()) |
6a74a719 ILT |
296 | { |
297 | for (Layout::Segment_list::const_iterator p = | |
298 | this->segment_list_->begin(); | |
299 | p != this->segment_list_->end(); | |
300 | ++p) | |
301 | v = (*p)->write_section_headers<size, big_endian>(this->layout_, | |
302 | this->secnamepool_, | |
303 | v, | |
304 | &shndx); | |
305 | } | |
306 | else | |
307 | { | |
308 | for (Layout::Section_list::const_iterator p = | |
309 | this->section_list_->begin(); | |
310 | p != this->section_list_->end(); | |
311 | ++p) | |
312 | { | |
313 | // We do unallocated sections below, except that group | |
314 | // sections have to come first. | |
315 | if (((*p)->flags() & elfcpp::SHF_ALLOC) == 0 | |
316 | && (*p)->type() != elfcpp::SHT_GROUP) | |
317 | continue; | |
318 | gold_assert(shndx == (*p)->out_shndx()); | |
319 | elfcpp::Shdr_write<size, big_endian> oshdr(v); | |
320 | (*p)->write_header(this->layout_, this->secnamepool_, &oshdr); | |
321 | v += shdr_size; | |
322 | ++shndx; | |
323 | } | |
324 | } | |
325 | ||
a3ad94ed | 326 | for (Layout::Section_list::const_iterator p = |
16649710 ILT |
327 | this->unattached_section_list_->begin(); |
328 | p != this->unattached_section_list_->end(); | |
61ba1cf9 ILT |
329 | ++p) |
330 | { | |
6a74a719 ILT |
331 | // For a relocatable link, we did unallocated group sections |
332 | // above, since they have to come first. | |
333 | if ((*p)->type() == elfcpp::SHT_GROUP | |
8851ecca | 334 | && parameters->options().relocatable()) |
6a74a719 | 335 | continue; |
a3ad94ed | 336 | gold_assert(shndx == (*p)->out_shndx()); |
61ba1cf9 | 337 | elfcpp::Shdr_write<size, big_endian> oshdr(v); |
16649710 | 338 | (*p)->write_header(this->layout_, this->secnamepool_, &oshdr); |
61ba1cf9 | 339 | v += shdr_size; |
ead1e424 | 340 | ++shndx; |
61ba1cf9 ILT |
341 | } |
342 | ||
343 | of->write_output_view(this->offset(), all_shdrs_size, view); | |
a2fb1b05 ILT |
344 | } |
345 | ||
54dc6425 ILT |
346 | // Output_segment_header methods. |
347 | ||
61ba1cf9 | 348 | Output_segment_headers::Output_segment_headers( |
61ba1cf9 | 349 | const Layout::Segment_list& segment_list) |
9025d29d | 350 | : segment_list_(segment_list) |
61ba1cf9 | 351 | { |
cdc29364 | 352 | this->set_current_data_size_for_child(this->do_size()); |
61ba1cf9 ILT |
353 | } |
354 | ||
54dc6425 | 355 | void |
61ba1cf9 | 356 | Output_segment_headers::do_write(Output_file* of) |
75f65a3e | 357 | { |
8851ecca | 358 | switch (parameters->size_and_endianness()) |
61ba1cf9 | 359 | { |
9025d29d | 360 | #ifdef HAVE_TARGET_32_LITTLE |
8851ecca ILT |
361 | case Parameters::TARGET_32_LITTLE: |
362 | this->do_sized_write<32, false>(of); | |
363 | break; | |
9025d29d | 364 | #endif |
8851ecca ILT |
365 | #ifdef HAVE_TARGET_32_BIG |
366 | case Parameters::TARGET_32_BIG: | |
367 | this->do_sized_write<32, true>(of); | |
368 | break; | |
9025d29d | 369 | #endif |
9025d29d | 370 | #ifdef HAVE_TARGET_64_LITTLE |
8851ecca ILT |
371 | case Parameters::TARGET_64_LITTLE: |
372 | this->do_sized_write<64, false>(of); | |
373 | break; | |
9025d29d | 374 | #endif |
8851ecca ILT |
375 | #ifdef HAVE_TARGET_64_BIG |
376 | case Parameters::TARGET_64_BIG: | |
377 | this->do_sized_write<64, true>(of); | |
378 | break; | |
379 | #endif | |
380 | default: | |
381 | gold_unreachable(); | |
61ba1cf9 | 382 | } |
61ba1cf9 ILT |
383 | } |
384 | ||
385 | template<int size, bool big_endian> | |
386 | void | |
387 | Output_segment_headers::do_sized_write(Output_file* of) | |
388 | { | |
389 | const int phdr_size = elfcpp::Elf_sizes<size>::phdr_size; | |
390 | off_t all_phdrs_size = this->segment_list_.size() * phdr_size; | |
a445fddf | 391 | gold_assert(all_phdrs_size == this->data_size()); |
61ba1cf9 ILT |
392 | unsigned char* view = of->get_output_view(this->offset(), |
393 | all_phdrs_size); | |
394 | unsigned char* v = view; | |
395 | for (Layout::Segment_list::const_iterator p = this->segment_list_.begin(); | |
396 | p != this->segment_list_.end(); | |
397 | ++p) | |
398 | { | |
399 | elfcpp::Phdr_write<size, big_endian> ophdr(v); | |
400 | (*p)->write_header(&ophdr); | |
401 | v += phdr_size; | |
402 | } | |
403 | ||
a445fddf ILT |
404 | gold_assert(v - view == all_phdrs_size); |
405 | ||
61ba1cf9 | 406 | of->write_output_view(this->offset(), all_phdrs_size, view); |
75f65a3e ILT |
407 | } |
408 | ||
20e6d0d6 DK |
409 | off_t |
410 | Output_segment_headers::do_size() const | |
411 | { | |
412 | const int size = parameters->target().get_size(); | |
413 | int phdr_size; | |
414 | if (size == 32) | |
415 | phdr_size = elfcpp::Elf_sizes<32>::phdr_size; | |
416 | else if (size == 64) | |
417 | phdr_size = elfcpp::Elf_sizes<64>::phdr_size; | |
418 | else | |
419 | gold_unreachable(); | |
420 | ||
421 | return this->segment_list_.size() * phdr_size; | |
422 | } | |
423 | ||
75f65a3e ILT |
424 | // Output_file_header methods. |
425 | ||
9025d29d | 426 | Output_file_header::Output_file_header(const Target* target, |
75f65a3e | 427 | const Symbol_table* symtab, |
d391083d | 428 | const Output_segment_headers* osh, |
2ea97941 | 429 | const char* entry) |
9025d29d | 430 | : target_(target), |
75f65a3e | 431 | symtab_(symtab), |
61ba1cf9 | 432 | segment_header_(osh), |
75f65a3e | 433 | section_header_(NULL), |
d391083d | 434 | shstrtab_(NULL), |
2ea97941 | 435 | entry_(entry) |
75f65a3e | 436 | { |
20e6d0d6 | 437 | this->set_data_size(this->do_size()); |
75f65a3e ILT |
438 | } |
439 | ||
440 | // Set the section table information for a file header. | |
441 | ||
442 | void | |
443 | Output_file_header::set_section_info(const Output_section_headers* shdrs, | |
444 | const Output_section* shstrtab) | |
445 | { | |
446 | this->section_header_ = shdrs; | |
447 | this->shstrtab_ = shstrtab; | |
448 | } | |
449 | ||
450 | // Write out the file header. | |
451 | ||
452 | void | |
61ba1cf9 | 453 | Output_file_header::do_write(Output_file* of) |
54dc6425 | 454 | { |
27bc2bce ILT |
455 | gold_assert(this->offset() == 0); |
456 | ||
8851ecca | 457 | switch (parameters->size_and_endianness()) |
61ba1cf9 | 458 | { |
9025d29d | 459 | #ifdef HAVE_TARGET_32_LITTLE |
8851ecca ILT |
460 | case Parameters::TARGET_32_LITTLE: |
461 | this->do_sized_write<32, false>(of); | |
462 | break; | |
9025d29d | 463 | #endif |
8851ecca ILT |
464 | #ifdef HAVE_TARGET_32_BIG |
465 | case Parameters::TARGET_32_BIG: | |
466 | this->do_sized_write<32, true>(of); | |
467 | break; | |
9025d29d | 468 | #endif |
9025d29d | 469 | #ifdef HAVE_TARGET_64_LITTLE |
8851ecca ILT |
470 | case Parameters::TARGET_64_LITTLE: |
471 | this->do_sized_write<64, false>(of); | |
472 | break; | |
9025d29d | 473 | #endif |
8851ecca ILT |
474 | #ifdef HAVE_TARGET_64_BIG |
475 | case Parameters::TARGET_64_BIG: | |
476 | this->do_sized_write<64, true>(of); | |
477 | break; | |
478 | #endif | |
479 | default: | |
480 | gold_unreachable(); | |
61ba1cf9 | 481 | } |
61ba1cf9 ILT |
482 | } |
483 | ||
484 | // Write out the file header with appropriate size and endianess. | |
485 | ||
486 | template<int size, bool big_endian> | |
487 | void | |
488 | Output_file_header::do_sized_write(Output_file* of) | |
489 | { | |
a3ad94ed | 490 | gold_assert(this->offset() == 0); |
61ba1cf9 ILT |
491 | |
492 | int ehdr_size = elfcpp::Elf_sizes<size>::ehdr_size; | |
493 | unsigned char* view = of->get_output_view(0, ehdr_size); | |
494 | elfcpp::Ehdr_write<size, big_endian> oehdr(view); | |
495 | ||
496 | unsigned char e_ident[elfcpp::EI_NIDENT]; | |
497 | memset(e_ident, 0, elfcpp::EI_NIDENT); | |
498 | e_ident[elfcpp::EI_MAG0] = elfcpp::ELFMAG0; | |
499 | e_ident[elfcpp::EI_MAG1] = elfcpp::ELFMAG1; | |
500 | e_ident[elfcpp::EI_MAG2] = elfcpp::ELFMAG2; | |
501 | e_ident[elfcpp::EI_MAG3] = elfcpp::ELFMAG3; | |
502 | if (size == 32) | |
503 | e_ident[elfcpp::EI_CLASS] = elfcpp::ELFCLASS32; | |
504 | else if (size == 64) | |
505 | e_ident[elfcpp::EI_CLASS] = elfcpp::ELFCLASS64; | |
506 | else | |
a3ad94ed | 507 | gold_unreachable(); |
61ba1cf9 ILT |
508 | e_ident[elfcpp::EI_DATA] = (big_endian |
509 | ? elfcpp::ELFDATA2MSB | |
510 | : elfcpp::ELFDATA2LSB); | |
511 | e_ident[elfcpp::EI_VERSION] = elfcpp::EV_CURRENT; | |
61ba1cf9 ILT |
512 | oehdr.put_e_ident(e_ident); |
513 | ||
514 | elfcpp::ET e_type; | |
8851ecca | 515 | if (parameters->options().relocatable()) |
61ba1cf9 | 516 | e_type = elfcpp::ET_REL; |
374ad285 | 517 | else if (parameters->options().output_is_position_independent()) |
436ca963 | 518 | e_type = elfcpp::ET_DYN; |
61ba1cf9 ILT |
519 | else |
520 | e_type = elfcpp::ET_EXEC; | |
521 | oehdr.put_e_type(e_type); | |
522 | ||
523 | oehdr.put_e_machine(this->target_->machine_code()); | |
524 | oehdr.put_e_version(elfcpp::EV_CURRENT); | |
525 | ||
d391083d | 526 | oehdr.put_e_entry(this->entry<size>()); |
61ba1cf9 | 527 | |
6a74a719 ILT |
528 | if (this->segment_header_ == NULL) |
529 | oehdr.put_e_phoff(0); | |
530 | else | |
531 | oehdr.put_e_phoff(this->segment_header_->offset()); | |
532 | ||
61ba1cf9 | 533 | oehdr.put_e_shoff(this->section_header_->offset()); |
d5b40221 | 534 | oehdr.put_e_flags(this->target_->processor_specific_flags()); |
61ba1cf9 | 535 | oehdr.put_e_ehsize(elfcpp::Elf_sizes<size>::ehdr_size); |
6a74a719 ILT |
536 | |
537 | if (this->segment_header_ == NULL) | |
538 | { | |
539 | oehdr.put_e_phentsize(0); | |
540 | oehdr.put_e_phnum(0); | |
541 | } | |
542 | else | |
543 | { | |
544 | oehdr.put_e_phentsize(elfcpp::Elf_sizes<size>::phdr_size); | |
5696ab0b ILT |
545 | size_t phnum = (this->segment_header_->data_size() |
546 | / elfcpp::Elf_sizes<size>::phdr_size); | |
547 | if (phnum > elfcpp::PN_XNUM) | |
548 | phnum = elfcpp::PN_XNUM; | |
549 | oehdr.put_e_phnum(phnum); | |
6a74a719 ILT |
550 | } |
551 | ||
61ba1cf9 | 552 | oehdr.put_e_shentsize(elfcpp::Elf_sizes<size>::shdr_size); |
d491d34e ILT |
553 | size_t section_count = (this->section_header_->data_size() |
554 | / elfcpp::Elf_sizes<size>::shdr_size); | |
555 | ||
556 | if (section_count < elfcpp::SHN_LORESERVE) | |
557 | oehdr.put_e_shnum(this->section_header_->data_size() | |
558 | / elfcpp::Elf_sizes<size>::shdr_size); | |
559 | else | |
560 | oehdr.put_e_shnum(0); | |
561 | ||
562 | unsigned int shstrndx = this->shstrtab_->out_shndx(); | |
563 | if (shstrndx < elfcpp::SHN_LORESERVE) | |
564 | oehdr.put_e_shstrndx(this->shstrtab_->out_shndx()); | |
565 | else | |
566 | oehdr.put_e_shstrndx(elfcpp::SHN_XINDEX); | |
61ba1cf9 | 567 | |
36959681 ILT |
568 | // Let the target adjust the ELF header, e.g., to set EI_OSABI in |
569 | // the e_ident field. | |
570 | parameters->target().adjust_elf_header(view, ehdr_size); | |
571 | ||
61ba1cf9 | 572 | of->write_output_view(0, ehdr_size, view); |
54dc6425 ILT |
573 | } |
574 | ||
d391083d ILT |
575 | // Return the value to use for the entry address. THIS->ENTRY_ is the |
576 | // symbol specified on the command line, if any. | |
577 | ||
578 | template<int size> | |
579 | typename elfcpp::Elf_types<size>::Elf_Addr | |
580 | Output_file_header::entry() | |
581 | { | |
582 | const bool should_issue_warning = (this->entry_ != NULL | |
8851ecca ILT |
583 | && !parameters->options().relocatable() |
584 | && !parameters->options().shared()); | |
d391083d ILT |
585 | |
586 | // FIXME: Need to support target specific entry symbol. | |
2ea97941 ILT |
587 | const char* entry = this->entry_; |
588 | if (entry == NULL) | |
589 | entry = "_start"; | |
d391083d | 590 | |
2ea97941 | 591 | Symbol* sym = this->symtab_->lookup(entry); |
d391083d ILT |
592 | |
593 | typename Sized_symbol<size>::Value_type v; | |
594 | if (sym != NULL) | |
595 | { | |
596 | Sized_symbol<size>* ssym; | |
597 | ssym = this->symtab_->get_sized_symbol<size>(sym); | |
598 | if (!ssym->is_defined() && should_issue_warning) | |
2ea97941 | 599 | gold_warning("entry symbol '%s' exists but is not defined", entry); |
d391083d ILT |
600 | v = ssym->value(); |
601 | } | |
602 | else | |
603 | { | |
604 | // We couldn't find the entry symbol. See if we can parse it as | |
605 | // a number. This supports, e.g., -e 0x1000. | |
606 | char* endptr; | |
2ea97941 | 607 | v = strtoull(entry, &endptr, 0); |
d391083d ILT |
608 | if (*endptr != '\0') |
609 | { | |
610 | if (should_issue_warning) | |
2ea97941 | 611 | gold_warning("cannot find entry symbol '%s'", entry); |
d391083d ILT |
612 | v = 0; |
613 | } | |
614 | } | |
615 | ||
616 | return v; | |
617 | } | |
618 | ||
20e6d0d6 DK |
619 | // Compute the current data size. |
620 | ||
621 | off_t | |
622 | Output_file_header::do_size() const | |
623 | { | |
624 | const int size = parameters->target().get_size(); | |
625 | if (size == 32) | |
626 | return elfcpp::Elf_sizes<32>::ehdr_size; | |
627 | else if (size == 64) | |
628 | return elfcpp::Elf_sizes<64>::ehdr_size; | |
629 | else | |
630 | gold_unreachable(); | |
631 | } | |
632 | ||
dbe717ef ILT |
633 | // Output_data_const methods. |
634 | ||
635 | void | |
a3ad94ed | 636 | Output_data_const::do_write(Output_file* of) |
dbe717ef | 637 | { |
a3ad94ed ILT |
638 | of->write(this->offset(), this->data_.data(), this->data_.size()); |
639 | } | |
640 | ||
641 | // Output_data_const_buffer methods. | |
642 | ||
643 | void | |
644 | Output_data_const_buffer::do_write(Output_file* of) | |
645 | { | |
646 | of->write(this->offset(), this->p_, this->data_size()); | |
dbe717ef ILT |
647 | } |
648 | ||
649 | // Output_section_data methods. | |
650 | ||
16649710 ILT |
651 | // Record the output section, and set the entry size and such. |
652 | ||
653 | void | |
654 | Output_section_data::set_output_section(Output_section* os) | |
655 | { | |
656 | gold_assert(this->output_section_ == NULL); | |
657 | this->output_section_ = os; | |
658 | this->do_adjust_output_section(os); | |
659 | } | |
660 | ||
661 | // Return the section index of the output section. | |
662 | ||
dbe717ef ILT |
663 | unsigned int |
664 | Output_section_data::do_out_shndx() const | |
665 | { | |
a3ad94ed | 666 | gold_assert(this->output_section_ != NULL); |
dbe717ef ILT |
667 | return this->output_section_->out_shndx(); |
668 | } | |
669 | ||
759b1a24 ILT |
670 | // Set the alignment, which means we may need to update the alignment |
671 | // of the output section. | |
672 | ||
673 | void | |
2ea97941 | 674 | Output_section_data::set_addralign(uint64_t addralign) |
759b1a24 | 675 | { |
2ea97941 | 676 | this->addralign_ = addralign; |
759b1a24 | 677 | if (this->output_section_ != NULL |
2ea97941 ILT |
678 | && this->output_section_->addralign() < addralign) |
679 | this->output_section_->set_addralign(addralign); | |
759b1a24 ILT |
680 | } |
681 | ||
a3ad94ed ILT |
682 | // Output_data_strtab methods. |
683 | ||
27bc2bce | 684 | // Set the final data size. |
a3ad94ed ILT |
685 | |
686 | void | |
27bc2bce | 687 | Output_data_strtab::set_final_data_size() |
a3ad94ed ILT |
688 | { |
689 | this->strtab_->set_string_offsets(); | |
690 | this->set_data_size(this->strtab_->get_strtab_size()); | |
691 | } | |
692 | ||
693 | // Write out a string table. | |
694 | ||
695 | void | |
696 | Output_data_strtab::do_write(Output_file* of) | |
697 | { | |
698 | this->strtab_->write(of, this->offset()); | |
699 | } | |
700 | ||
c06b7b0b ILT |
701 | // Output_reloc methods. |
702 | ||
7bf1f802 ILT |
703 | // A reloc against a global symbol. |
704 | ||
705 | template<bool dynamic, int size, bool big_endian> | |
706 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::Output_reloc( | |
707 | Symbol* gsym, | |
708 | unsigned int type, | |
709 | Output_data* od, | |
e8c846c3 | 710 | Address address, |
0da6fa6c DM |
711 | bool is_relative, |
712 | bool is_symbolless) | |
7bf1f802 | 713 | : address_(address), local_sym_index_(GSYM_CODE), type_(type), |
0da6fa6c DM |
714 | is_relative_(is_relative), is_symbolless_(is_symbolless), |
715 | is_section_symbol_(false), shndx_(INVALID_CODE) | |
7bf1f802 | 716 | { |
dceae3c1 ILT |
717 | // this->type_ is a bitfield; make sure TYPE fits. |
718 | gold_assert(this->type_ == type); | |
7bf1f802 ILT |
719 | this->u1_.gsym = gsym; |
720 | this->u2_.od = od; | |
dceae3c1 ILT |
721 | if (dynamic) |
722 | this->set_needs_dynsym_index(); | |
7bf1f802 ILT |
723 | } |
724 | ||
725 | template<bool dynamic, int size, bool big_endian> | |
726 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::Output_reloc( | |
727 | Symbol* gsym, | |
728 | unsigned int type, | |
ef9beddf | 729 | Sized_relobj<size, big_endian>* relobj, |
7bf1f802 | 730 | unsigned int shndx, |
e8c846c3 | 731 | Address address, |
0da6fa6c DM |
732 | bool is_relative, |
733 | bool is_symbolless) | |
7bf1f802 | 734 | : address_(address), local_sym_index_(GSYM_CODE), type_(type), |
0da6fa6c DM |
735 | is_relative_(is_relative), is_symbolless_(is_symbolless), |
736 | is_section_symbol_(false), shndx_(shndx) | |
7bf1f802 ILT |
737 | { |
738 | gold_assert(shndx != INVALID_CODE); | |
dceae3c1 ILT |
739 | // this->type_ is a bitfield; make sure TYPE fits. |
740 | gold_assert(this->type_ == type); | |
7bf1f802 ILT |
741 | this->u1_.gsym = gsym; |
742 | this->u2_.relobj = relobj; | |
dceae3c1 ILT |
743 | if (dynamic) |
744 | this->set_needs_dynsym_index(); | |
7bf1f802 ILT |
745 | } |
746 | ||
747 | // A reloc against a local symbol. | |
748 | ||
749 | template<bool dynamic, int size, bool big_endian> | |
750 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::Output_reloc( | |
751 | Sized_relobj<size, big_endian>* relobj, | |
752 | unsigned int local_sym_index, | |
753 | unsigned int type, | |
754 | Output_data* od, | |
e8c846c3 | 755 | Address address, |
2ea97941 | 756 | bool is_relative, |
0da6fa6c | 757 | bool is_symbolless, |
dceae3c1 | 758 | bool is_section_symbol) |
7bf1f802 | 759 | : address_(address), local_sym_index_(local_sym_index), type_(type), |
0da6fa6c DM |
760 | is_relative_(is_relative), is_symbolless_(is_symbolless), |
761 | is_section_symbol_(is_section_symbol), shndx_(INVALID_CODE) | |
7bf1f802 ILT |
762 | { |
763 | gold_assert(local_sym_index != GSYM_CODE | |
764 | && local_sym_index != INVALID_CODE); | |
dceae3c1 ILT |
765 | // this->type_ is a bitfield; make sure TYPE fits. |
766 | gold_assert(this->type_ == type); | |
7bf1f802 ILT |
767 | this->u1_.relobj = relobj; |
768 | this->u2_.od = od; | |
dceae3c1 ILT |
769 | if (dynamic) |
770 | this->set_needs_dynsym_index(); | |
7bf1f802 ILT |
771 | } |
772 | ||
773 | template<bool dynamic, int size, bool big_endian> | |
774 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::Output_reloc( | |
775 | Sized_relobj<size, big_endian>* relobj, | |
776 | unsigned int local_sym_index, | |
777 | unsigned int type, | |
778 | unsigned int shndx, | |
e8c846c3 | 779 | Address address, |
2ea97941 | 780 | bool is_relative, |
0da6fa6c | 781 | bool is_symbolless, |
dceae3c1 | 782 | bool is_section_symbol) |
7bf1f802 | 783 | : address_(address), local_sym_index_(local_sym_index), type_(type), |
0da6fa6c DM |
784 | is_relative_(is_relative), is_symbolless_(is_symbolless), |
785 | is_section_symbol_(is_section_symbol), shndx_(shndx) | |
7bf1f802 ILT |
786 | { |
787 | gold_assert(local_sym_index != GSYM_CODE | |
788 | && local_sym_index != INVALID_CODE); | |
789 | gold_assert(shndx != INVALID_CODE); | |
dceae3c1 ILT |
790 | // this->type_ is a bitfield; make sure TYPE fits. |
791 | gold_assert(this->type_ == type); | |
7bf1f802 ILT |
792 | this->u1_.relobj = relobj; |
793 | this->u2_.relobj = relobj; | |
dceae3c1 ILT |
794 | if (dynamic) |
795 | this->set_needs_dynsym_index(); | |
7bf1f802 ILT |
796 | } |
797 | ||
798 | // A reloc against the STT_SECTION symbol of an output section. | |
799 | ||
800 | template<bool dynamic, int size, bool big_endian> | |
801 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::Output_reloc( | |
802 | Output_section* os, | |
803 | unsigned int type, | |
804 | Output_data* od, | |
805 | Address address) | |
806 | : address_(address), local_sym_index_(SECTION_CODE), type_(type), | |
0da6fa6c DM |
807 | is_relative_(false), is_symbolless_(false), |
808 | is_section_symbol_(true), shndx_(INVALID_CODE) | |
7bf1f802 | 809 | { |
dceae3c1 ILT |
810 | // this->type_ is a bitfield; make sure TYPE fits. |
811 | gold_assert(this->type_ == type); | |
7bf1f802 ILT |
812 | this->u1_.os = os; |
813 | this->u2_.od = od; | |
814 | if (dynamic) | |
dceae3c1 ILT |
815 | this->set_needs_dynsym_index(); |
816 | else | |
817 | os->set_needs_symtab_index(); | |
7bf1f802 ILT |
818 | } |
819 | ||
820 | template<bool dynamic, int size, bool big_endian> | |
821 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::Output_reloc( | |
822 | Output_section* os, | |
823 | unsigned int type, | |
ef9beddf | 824 | Sized_relobj<size, big_endian>* relobj, |
7bf1f802 ILT |
825 | unsigned int shndx, |
826 | Address address) | |
827 | : address_(address), local_sym_index_(SECTION_CODE), type_(type), | |
0da6fa6c DM |
828 | is_relative_(false), is_symbolless_(false), |
829 | is_section_symbol_(true), shndx_(shndx) | |
7bf1f802 ILT |
830 | { |
831 | gold_assert(shndx != INVALID_CODE); | |
dceae3c1 ILT |
832 | // this->type_ is a bitfield; make sure TYPE fits. |
833 | gold_assert(this->type_ == type); | |
7bf1f802 ILT |
834 | this->u1_.os = os; |
835 | this->u2_.relobj = relobj; | |
836 | if (dynamic) | |
dceae3c1 ILT |
837 | this->set_needs_dynsym_index(); |
838 | else | |
839 | os->set_needs_symtab_index(); | |
840 | } | |
841 | ||
e291e7b9 ILT |
842 | // An absolute relocation. |
843 | ||
844 | template<bool dynamic, int size, bool big_endian> | |
845 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::Output_reloc( | |
846 | unsigned int type, | |
847 | Output_data* od, | |
848 | Address address) | |
849 | : address_(address), local_sym_index_(0), type_(type), | |
0da6fa6c DM |
850 | is_relative_(false), is_symbolless_(false), |
851 | is_section_symbol_(false), shndx_(INVALID_CODE) | |
e291e7b9 ILT |
852 | { |
853 | // this->type_ is a bitfield; make sure TYPE fits. | |
854 | gold_assert(this->type_ == type); | |
855 | this->u1_.relobj = NULL; | |
856 | this->u2_.od = od; | |
857 | } | |
858 | ||
859 | template<bool dynamic, int size, bool big_endian> | |
860 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::Output_reloc( | |
861 | unsigned int type, | |
862 | Sized_relobj<size, big_endian>* relobj, | |
863 | unsigned int shndx, | |
864 | Address address) | |
865 | : address_(address), local_sym_index_(0), type_(type), | |
0da6fa6c DM |
866 | is_relative_(false), is_symbolless_(false), |
867 | is_section_symbol_(false), shndx_(shndx) | |
e291e7b9 ILT |
868 | { |
869 | gold_assert(shndx != INVALID_CODE); | |
870 | // this->type_ is a bitfield; make sure TYPE fits. | |
871 | gold_assert(this->type_ == type); | |
872 | this->u1_.relobj = NULL; | |
873 | this->u2_.relobj = relobj; | |
874 | } | |
875 | ||
876 | // A target specific relocation. | |
877 | ||
878 | template<bool dynamic, int size, bool big_endian> | |
879 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::Output_reloc( | |
880 | unsigned int type, | |
881 | void* arg, | |
882 | Output_data* od, | |
883 | Address address) | |
884 | : address_(address), local_sym_index_(TARGET_CODE), type_(type), | |
0da6fa6c DM |
885 | is_relative_(false), is_symbolless_(false), |
886 | is_section_symbol_(false), shndx_(INVALID_CODE) | |
e291e7b9 ILT |
887 | { |
888 | // this->type_ is a bitfield; make sure TYPE fits. | |
889 | gold_assert(this->type_ == type); | |
890 | this->u1_.arg = arg; | |
891 | this->u2_.od = od; | |
892 | } | |
893 | ||
894 | template<bool dynamic, int size, bool big_endian> | |
895 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::Output_reloc( | |
896 | unsigned int type, | |
897 | void* arg, | |
898 | Sized_relobj<size, big_endian>* relobj, | |
899 | unsigned int shndx, | |
900 | Address address) | |
901 | : address_(address), local_sym_index_(TARGET_CODE), type_(type), | |
0da6fa6c DM |
902 | is_relative_(false), is_symbolless_(false), |
903 | is_section_symbol_(false), shndx_(shndx) | |
e291e7b9 ILT |
904 | { |
905 | gold_assert(shndx != INVALID_CODE); | |
906 | // this->type_ is a bitfield; make sure TYPE fits. | |
907 | gold_assert(this->type_ == type); | |
908 | this->u1_.arg = arg; | |
909 | this->u2_.relobj = relobj; | |
910 | } | |
911 | ||
dceae3c1 ILT |
912 | // Record that we need a dynamic symbol index for this relocation. |
913 | ||
914 | template<bool dynamic, int size, bool big_endian> | |
915 | void | |
916 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>:: | |
917 | set_needs_dynsym_index() | |
918 | { | |
0da6fa6c | 919 | if (this->is_symbolless_) |
dceae3c1 ILT |
920 | return; |
921 | switch (this->local_sym_index_) | |
922 | { | |
923 | case INVALID_CODE: | |
924 | gold_unreachable(); | |
925 | ||
926 | case GSYM_CODE: | |
927 | this->u1_.gsym->set_needs_dynsym_entry(); | |
928 | break; | |
929 | ||
930 | case SECTION_CODE: | |
931 | this->u1_.os->set_needs_dynsym_index(); | |
932 | break; | |
933 | ||
e291e7b9 ILT |
934 | case TARGET_CODE: |
935 | // The target must take care of this if necessary. | |
936 | break; | |
937 | ||
dceae3c1 ILT |
938 | case 0: |
939 | break; | |
940 | ||
941 | default: | |
942 | { | |
943 | const unsigned int lsi = this->local_sym_index_; | |
6fa2a40b CC |
944 | Sized_relobj_file<size, big_endian>* relobj = |
945 | this->u1_.relobj->sized_relobj(); | |
946 | gold_assert(relobj != NULL); | |
dceae3c1 | 947 | if (!this->is_section_symbol_) |
6fa2a40b | 948 | relobj->set_needs_output_dynsym_entry(lsi); |
dceae3c1 | 949 | else |
6fa2a40b | 950 | relobj->output_section(lsi)->set_needs_dynsym_index(); |
dceae3c1 ILT |
951 | } |
952 | break; | |
953 | } | |
7bf1f802 ILT |
954 | } |
955 | ||
c06b7b0b ILT |
956 | // Get the symbol index of a relocation. |
957 | ||
958 | template<bool dynamic, int size, bool big_endian> | |
959 | unsigned int | |
960 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::get_symbol_index() | |
961 | const | |
962 | { | |
963 | unsigned int index; | |
0da6fa6c DM |
964 | if (this->is_symbolless_) |
965 | return 0; | |
c06b7b0b ILT |
966 | switch (this->local_sym_index_) |
967 | { | |
968 | case INVALID_CODE: | |
a3ad94ed | 969 | gold_unreachable(); |
c06b7b0b ILT |
970 | |
971 | case GSYM_CODE: | |
5a6f7e2d | 972 | if (this->u1_.gsym == NULL) |
c06b7b0b ILT |
973 | index = 0; |
974 | else if (dynamic) | |
5a6f7e2d | 975 | index = this->u1_.gsym->dynsym_index(); |
c06b7b0b | 976 | else |
5a6f7e2d | 977 | index = this->u1_.gsym->symtab_index(); |
c06b7b0b ILT |
978 | break; |
979 | ||
980 | case SECTION_CODE: | |
981 | if (dynamic) | |
5a6f7e2d | 982 | index = this->u1_.os->dynsym_index(); |
c06b7b0b | 983 | else |
5a6f7e2d | 984 | index = this->u1_.os->symtab_index(); |
c06b7b0b ILT |
985 | break; |
986 | ||
e291e7b9 ILT |
987 | case TARGET_CODE: |
988 | index = parameters->target().reloc_symbol_index(this->u1_.arg, | |
989 | this->type_); | |
990 | break; | |
991 | ||
436ca963 ILT |
992 | case 0: |
993 | // Relocations without symbols use a symbol index of 0. | |
994 | index = 0; | |
995 | break; | |
996 | ||
c06b7b0b | 997 | default: |
dceae3c1 ILT |
998 | { |
999 | const unsigned int lsi = this->local_sym_index_; | |
6fa2a40b CC |
1000 | Sized_relobj_file<size, big_endian>* relobj = |
1001 | this->u1_.relobj->sized_relobj(); | |
1002 | gold_assert(relobj != NULL); | |
dceae3c1 ILT |
1003 | if (!this->is_section_symbol_) |
1004 | { | |
1005 | if (dynamic) | |
6fa2a40b | 1006 | index = relobj->dynsym_index(lsi); |
dceae3c1 | 1007 | else |
6fa2a40b | 1008 | index = relobj->symtab_index(lsi); |
dceae3c1 ILT |
1009 | } |
1010 | else | |
1011 | { | |
6fa2a40b | 1012 | Output_section* os = relobj->output_section(lsi); |
dceae3c1 ILT |
1013 | gold_assert(os != NULL); |
1014 | if (dynamic) | |
1015 | index = os->dynsym_index(); | |
1016 | else | |
1017 | index = os->symtab_index(); | |
1018 | } | |
1019 | } | |
c06b7b0b ILT |
1020 | break; |
1021 | } | |
a3ad94ed | 1022 | gold_assert(index != -1U); |
c06b7b0b ILT |
1023 | return index; |
1024 | } | |
1025 | ||
624f8810 ILT |
1026 | // For a local section symbol, get the address of the offset ADDEND |
1027 | // within the input section. | |
dceae3c1 ILT |
1028 | |
1029 | template<bool dynamic, int size, bool big_endian> | |
ef9beddf | 1030 | typename elfcpp::Elf_types<size>::Elf_Addr |
dceae3c1 | 1031 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>:: |
624f8810 | 1032 | local_section_offset(Addend addend) const |
dceae3c1 | 1033 | { |
624f8810 ILT |
1034 | gold_assert(this->local_sym_index_ != GSYM_CODE |
1035 | && this->local_sym_index_ != SECTION_CODE | |
e291e7b9 | 1036 | && this->local_sym_index_ != TARGET_CODE |
624f8810 | 1037 | && this->local_sym_index_ != INVALID_CODE |
e291e7b9 | 1038 | && this->local_sym_index_ != 0 |
624f8810 | 1039 | && this->is_section_symbol_); |
dceae3c1 | 1040 | const unsigned int lsi = this->local_sym_index_; |
ef9beddf | 1041 | Output_section* os = this->u1_.relobj->output_section(lsi); |
624f8810 | 1042 | gold_assert(os != NULL); |
ef9beddf | 1043 | Address offset = this->u1_.relobj->get_output_section_offset(lsi); |
eff45813 | 1044 | if (offset != invalid_address) |
624f8810 ILT |
1045 | return offset + addend; |
1046 | // This is a merge section. | |
6fa2a40b CC |
1047 | Sized_relobj_file<size, big_endian>* relobj = |
1048 | this->u1_.relobj->sized_relobj(); | |
1049 | gold_assert(relobj != NULL); | |
1050 | offset = os->output_address(relobj, lsi, addend); | |
eff45813 | 1051 | gold_assert(offset != invalid_address); |
dceae3c1 ILT |
1052 | return offset; |
1053 | } | |
1054 | ||
d98bc257 | 1055 | // Get the output address of a relocation. |
c06b7b0b ILT |
1056 | |
1057 | template<bool dynamic, int size, bool big_endian> | |
a984ee1d | 1058 | typename elfcpp::Elf_types<size>::Elf_Addr |
d98bc257 | 1059 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::get_address() const |
c06b7b0b | 1060 | { |
a3ad94ed | 1061 | Address address = this->address_; |
5a6f7e2d ILT |
1062 | if (this->shndx_ != INVALID_CODE) |
1063 | { | |
ef9beddf | 1064 | Output_section* os = this->u2_.relobj->output_section(this->shndx_); |
5a6f7e2d | 1065 | gold_assert(os != NULL); |
ef9beddf | 1066 | Address off = this->u2_.relobj->get_output_section_offset(this->shndx_); |
eff45813 | 1067 | if (off != invalid_address) |
730cdc88 ILT |
1068 | address += os->address() + off; |
1069 | else | |
1070 | { | |
6fa2a40b CC |
1071 | Sized_relobj_file<size, big_endian>* relobj = |
1072 | this->u2_.relobj->sized_relobj(); | |
1073 | gold_assert(relobj != NULL); | |
1074 | address = os->output_address(relobj, this->shndx_, address); | |
eff45813 | 1075 | gold_assert(address != invalid_address); |
730cdc88 | 1076 | } |
5a6f7e2d ILT |
1077 | } |
1078 | else if (this->u2_.od != NULL) | |
1079 | address += this->u2_.od->address(); | |
d98bc257 ILT |
1080 | return address; |
1081 | } | |
1082 | ||
1083 | // Write out the offset and info fields of a Rel or Rela relocation | |
1084 | // entry. | |
1085 | ||
1086 | template<bool dynamic, int size, bool big_endian> | |
1087 | template<typename Write_rel> | |
1088 | void | |
1089 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::write_rel( | |
1090 | Write_rel* wr) const | |
1091 | { | |
1092 | wr->put_r_offset(this->get_address()); | |
0da6fa6c | 1093 | unsigned int sym_index = this->get_symbol_index(); |
e8c846c3 | 1094 | wr->put_r_info(elfcpp::elf_r_info<size>(sym_index, this->type_)); |
c06b7b0b ILT |
1095 | } |
1096 | ||
1097 | // Write out a Rel relocation. | |
1098 | ||
1099 | template<bool dynamic, int size, bool big_endian> | |
1100 | void | |
1101 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::write( | |
1102 | unsigned char* pov) const | |
1103 | { | |
1104 | elfcpp::Rel_write<size, big_endian> orel(pov); | |
1105 | this->write_rel(&orel); | |
1106 | } | |
1107 | ||
e8c846c3 ILT |
1108 | // Get the value of the symbol referred to by a Rel relocation. |
1109 | ||
1110 | template<bool dynamic, int size, bool big_endian> | |
1111 | typename elfcpp::Elf_types<size>::Elf_Addr | |
d1f003c6 | 1112 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>::symbol_value( |
624f8810 | 1113 | Addend addend) const |
e8c846c3 ILT |
1114 | { |
1115 | if (this->local_sym_index_ == GSYM_CODE) | |
1116 | { | |
1117 | const Sized_symbol<size>* sym; | |
1118 | sym = static_cast<const Sized_symbol<size>*>(this->u1_.gsym); | |
d1f003c6 | 1119 | return sym->value() + addend; |
e8c846c3 ILT |
1120 | } |
1121 | gold_assert(this->local_sym_index_ != SECTION_CODE | |
e291e7b9 | 1122 | && this->local_sym_index_ != TARGET_CODE |
d1f003c6 | 1123 | && this->local_sym_index_ != INVALID_CODE |
e291e7b9 | 1124 | && this->local_sym_index_ != 0 |
d1f003c6 ILT |
1125 | && !this->is_section_symbol_); |
1126 | const unsigned int lsi = this->local_sym_index_; | |
6fa2a40b CC |
1127 | Sized_relobj_file<size, big_endian>* relobj = |
1128 | this->u1_.relobj->sized_relobj(); | |
1129 | gold_assert(relobj != NULL); | |
1130 | const Symbol_value<size>* symval = relobj->local_symbol(lsi); | |
1131 | return symval->value(relobj, addend); | |
e8c846c3 ILT |
1132 | } |
1133 | ||
d98bc257 ILT |
1134 | // Reloc comparison. This function sorts the dynamic relocs for the |
1135 | // benefit of the dynamic linker. First we sort all relative relocs | |
1136 | // to the front. Among relative relocs, we sort by output address. | |
1137 | // Among non-relative relocs, we sort by symbol index, then by output | |
1138 | // address. | |
1139 | ||
1140 | template<bool dynamic, int size, bool big_endian> | |
1141 | int | |
1142 | Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>:: | |
1143 | compare(const Output_reloc<elfcpp::SHT_REL, dynamic, size, big_endian>& r2) | |
1144 | const | |
1145 | { | |
1146 | if (this->is_relative_) | |
1147 | { | |
1148 | if (!r2.is_relative_) | |
1149 | return -1; | |
1150 | // Otherwise sort by reloc address below. | |
1151 | } | |
1152 | else if (r2.is_relative_) | |
1153 | return 1; | |
1154 | else | |
1155 | { | |
1156 | unsigned int sym1 = this->get_symbol_index(); | |
1157 | unsigned int sym2 = r2.get_symbol_index(); | |
1158 | if (sym1 < sym2) | |
1159 | return -1; | |
1160 | else if (sym1 > sym2) | |
1161 | return 1; | |
1162 | // Otherwise sort by reloc address. | |
1163 | } | |
1164 | ||
1165 | section_offset_type addr1 = this->get_address(); | |
1166 | section_offset_type addr2 = r2.get_address(); | |
1167 | if (addr1 < addr2) | |
1168 | return -1; | |
1169 | else if (addr1 > addr2) | |
1170 | return 1; | |
1171 | ||
1172 | // Final tie breaker, in order to generate the same output on any | |
1173 | // host: reloc type. | |
1174 | unsigned int type1 = this->type_; | |
1175 | unsigned int type2 = r2.type_; | |
1176 | if (type1 < type2) | |
1177 | return -1; | |
1178 | else if (type1 > type2) | |
1179 | return 1; | |
1180 | ||
1181 | // These relocs appear to be exactly the same. | |
1182 | return 0; | |
1183 | } | |
1184 | ||
c06b7b0b ILT |
1185 | // Write out a Rela relocation. |
1186 | ||
1187 | template<bool dynamic, int size, bool big_endian> | |
1188 | void | |
1189 | Output_reloc<elfcpp::SHT_RELA, dynamic, size, big_endian>::write( | |
1190 | unsigned char* pov) const | |
1191 | { | |
1192 | elfcpp::Rela_write<size, big_endian> orel(pov); | |
1193 | this->rel_.write_rel(&orel); | |
e8c846c3 | 1194 | Addend addend = this->addend_; |
e291e7b9 ILT |
1195 | if (this->rel_.is_target_specific()) |
1196 | addend = parameters->target().reloc_addend(this->rel_.target_arg(), | |
1197 | this->rel_.type(), addend); | |
0da6fa6c | 1198 | else if (this->rel_.is_symbolless()) |
d1f003c6 ILT |
1199 | addend = this->rel_.symbol_value(addend); |
1200 | else if (this->rel_.is_local_section_symbol()) | |
624f8810 | 1201 | addend = this->rel_.local_section_offset(addend); |
e8c846c3 | 1202 | orel.put_r_addend(addend); |
c06b7b0b ILT |
1203 | } |
1204 | ||
1205 | // Output_data_reloc_base methods. | |
1206 | ||
16649710 ILT |
1207 | // Adjust the output section. |
1208 | ||
1209 | template<int sh_type, bool dynamic, int size, bool big_endian> | |
1210 | void | |
1211 | Output_data_reloc_base<sh_type, dynamic, size, big_endian> | |
1212 | ::do_adjust_output_section(Output_section* os) | |
1213 | { | |
1214 | if (sh_type == elfcpp::SHT_REL) | |
1215 | os->set_entsize(elfcpp::Elf_sizes<size>::rel_size); | |
1216 | else if (sh_type == elfcpp::SHT_RELA) | |
1217 | os->set_entsize(elfcpp::Elf_sizes<size>::rela_size); | |
1218 | else | |
1219 | gold_unreachable(); | |
7223e9ca ILT |
1220 | |
1221 | // A STT_GNU_IFUNC symbol may require a IRELATIVE reloc when doing a | |
1222 | // static link. The backends will generate a dynamic reloc section | |
1223 | // to hold this. In that case we don't want to link to the dynsym | |
1224 | // section, because there isn't one. | |
1225 | if (!dynamic) | |
16649710 | 1226 | os->set_should_link_to_symtab(); |
7223e9ca ILT |
1227 | else if (parameters->doing_static_link()) |
1228 | ; | |
1229 | else | |
1230 | os->set_should_link_to_dynsym(); | |
16649710 ILT |
1231 | } |
1232 | ||
c06b7b0b ILT |
1233 | // Write out relocation data. |
1234 | ||
1235 | template<int sh_type, bool dynamic, int size, bool big_endian> | |
1236 | void | |
1237 | Output_data_reloc_base<sh_type, dynamic, size, big_endian>::do_write( | |
1238 | Output_file* of) | |
1239 | { | |
1240 | const off_t off = this->offset(); | |
1241 | const off_t oview_size = this->data_size(); | |
1242 | unsigned char* const oview = of->get_output_view(off, oview_size); | |
1243 | ||
3a44184e | 1244 | if (this->sort_relocs()) |
d98bc257 ILT |
1245 | { |
1246 | gold_assert(dynamic); | |
1247 | std::sort(this->relocs_.begin(), this->relocs_.end(), | |
1248 | Sort_relocs_comparison()); | |
1249 | } | |
1250 | ||
c06b7b0b ILT |
1251 | unsigned char* pov = oview; |
1252 | for (typename Relocs::const_iterator p = this->relocs_.begin(); | |
1253 | p != this->relocs_.end(); | |
1254 | ++p) | |
1255 | { | |
1256 | p->write(pov); | |
1257 | pov += reloc_size; | |
1258 | } | |
1259 | ||
a3ad94ed | 1260 | gold_assert(pov - oview == oview_size); |
c06b7b0b ILT |
1261 | |
1262 | of->write_output_view(off, oview_size, oview); | |
1263 | ||
1264 | // We no longer need the relocation entries. | |
1265 | this->relocs_.clear(); | |
1266 | } | |
1267 | ||
6a74a719 ILT |
1268 | // Class Output_relocatable_relocs. |
1269 | ||
1270 | template<int sh_type, int size, bool big_endian> | |
1271 | void | |
1272 | Output_relocatable_relocs<sh_type, size, big_endian>::set_final_data_size() | |
1273 | { | |
1274 | this->set_data_size(this->rr_->output_reloc_count() | |
1275 | * Reloc_types<sh_type, size, big_endian>::reloc_size); | |
1276 | } | |
1277 | ||
1278 | // class Output_data_group. | |
1279 | ||
1280 | template<int size, bool big_endian> | |
1281 | Output_data_group<size, big_endian>::Output_data_group( | |
6fa2a40b | 1282 | Sized_relobj_file<size, big_endian>* relobj, |
6a74a719 | 1283 | section_size_type entry_count, |
8825ac63 ILT |
1284 | elfcpp::Elf_Word flags, |
1285 | std::vector<unsigned int>* input_shndxes) | |
20e6d0d6 | 1286 | : Output_section_data(entry_count * 4, 4, false), |
8825ac63 ILT |
1287 | relobj_(relobj), |
1288 | flags_(flags) | |
6a74a719 | 1289 | { |
8825ac63 | 1290 | this->input_shndxes_.swap(*input_shndxes); |
6a74a719 ILT |
1291 | } |
1292 | ||
1293 | // Write out the section group, which means translating the section | |
1294 | // indexes to apply to the output file. | |
1295 | ||
1296 | template<int size, bool big_endian> | |
1297 | void | |
1298 | Output_data_group<size, big_endian>::do_write(Output_file* of) | |
1299 | { | |
1300 | const off_t off = this->offset(); | |
1301 | const section_size_type oview_size = | |
1302 | convert_to_section_size_type(this->data_size()); | |
1303 | unsigned char* const oview = of->get_output_view(off, oview_size); | |
1304 | ||
1305 | elfcpp::Elf_Word* contents = reinterpret_cast<elfcpp::Elf_Word*>(oview); | |
1306 | elfcpp::Swap<32, big_endian>::writeval(contents, this->flags_); | |
1307 | ++contents; | |
1308 | ||
1309 | for (std::vector<unsigned int>::const_iterator p = | |
8825ac63 ILT |
1310 | this->input_shndxes_.begin(); |
1311 | p != this->input_shndxes_.end(); | |
6a74a719 ILT |
1312 | ++p, ++contents) |
1313 | { | |
ef9beddf | 1314 | Output_section* os = this->relobj_->output_section(*p); |
6a74a719 ILT |
1315 | |
1316 | unsigned int output_shndx; | |
1317 | if (os != NULL) | |
1318 | output_shndx = os->out_shndx(); | |
1319 | else | |
1320 | { | |
1321 | this->relobj_->error(_("section group retained but " | |
1322 | "group element discarded")); | |
1323 | output_shndx = 0; | |
1324 | } | |
1325 | ||
1326 | elfcpp::Swap<32, big_endian>::writeval(contents, output_shndx); | |
1327 | } | |
1328 | ||
1329 | size_t wrote = reinterpret_cast<unsigned char*>(contents) - oview; | |
1330 | gold_assert(wrote == oview_size); | |
1331 | ||
1332 | of->write_output_view(off, oview_size, oview); | |
1333 | ||
1334 | // We no longer need this information. | |
8825ac63 | 1335 | this->input_shndxes_.clear(); |
6a74a719 ILT |
1336 | } |
1337 | ||
dbe717ef | 1338 | // Output_data_got::Got_entry methods. |
ead1e424 ILT |
1339 | |
1340 | // Write out the entry. | |
1341 | ||
1342 | template<int size, bool big_endian> | |
1343 | void | |
7e1edb90 | 1344 | Output_data_got<size, big_endian>::Got_entry::write(unsigned char* pov) const |
ead1e424 ILT |
1345 | { |
1346 | Valtype val = 0; | |
1347 | ||
1348 | switch (this->local_sym_index_) | |
1349 | { | |
1350 | case GSYM_CODE: | |
1351 | { | |
e8c846c3 ILT |
1352 | // If the symbol is resolved locally, we need to write out the |
1353 | // link-time value, which will be relocated dynamically by a | |
1354 | // RELATIVE relocation. | |
ead1e424 | 1355 | Symbol* gsym = this->u_.gsym; |
7223e9ca ILT |
1356 | if (this->use_plt_offset_ && gsym->has_plt_offset()) |
1357 | val = (parameters->target().plt_section_for_global(gsym)->address() | |
1358 | + gsym->plt_offset()); | |
1359 | else | |
1360 | { | |
1361 | Sized_symbol<size>* sgsym; | |
1362 | // This cast is a bit ugly. We don't want to put a | |
1363 | // virtual method in Symbol, because we want Symbol to be | |
1364 | // as small as possible. | |
1365 | sgsym = static_cast<Sized_symbol<size>*>(gsym); | |
1366 | val = sgsym->value(); | |
1367 | } | |
ead1e424 ILT |
1368 | } |
1369 | break; | |
1370 | ||
1371 | case CONSTANT_CODE: | |
1372 | val = this->u_.constant; | |
1373 | break; | |
1374 | ||
4829d394 CC |
1375 | case RESERVED_CODE: |
1376 | // If we're doing an incremental update, don't touch this GOT entry. | |
1377 | if (parameters->incremental_update()) | |
1378 | return; | |
1379 | val = this->u_.constant; | |
1380 | break; | |
1381 | ||
ead1e424 | 1382 | default: |
d1f003c6 | 1383 | { |
6fa2a40b | 1384 | const Sized_relobj_file<size, big_endian>* object = this->u_.object; |
d1f003c6 | 1385 | const unsigned int lsi = this->local_sym_index_; |
7223e9ca ILT |
1386 | const Symbol_value<size>* symval = object->local_symbol(lsi); |
1387 | if (!this->use_plt_offset_) | |
1388 | val = symval->value(this->u_.object, 0); | |
1389 | else | |
1390 | { | |
1391 | const Output_data* plt = | |
1392 | parameters->target().plt_section_for_local(object, lsi); | |
1393 | val = plt->address() + object->local_plt_offset(lsi); | |
1394 | } | |
d1f003c6 | 1395 | } |
e727fa71 | 1396 | break; |
ead1e424 ILT |
1397 | } |
1398 | ||
a3ad94ed | 1399 | elfcpp::Swap<size, big_endian>::writeval(pov, val); |
ead1e424 ILT |
1400 | } |
1401 | ||
dbe717ef | 1402 | // Output_data_got methods. |
ead1e424 | 1403 | |
dbe717ef ILT |
1404 | // Add an entry for a global symbol to the GOT. This returns true if |
1405 | // this is a new GOT entry, false if the symbol already had a GOT | |
1406 | // entry. | |
1407 | ||
1408 | template<int size, bool big_endian> | |
1409 | bool | |
0a65a3a7 CC |
1410 | Output_data_got<size, big_endian>::add_global( |
1411 | Symbol* gsym, | |
1412 | unsigned int got_type) | |
ead1e424 | 1413 | { |
0a65a3a7 | 1414 | if (gsym->has_got_offset(got_type)) |
dbe717ef | 1415 | return false; |
ead1e424 | 1416 | |
4829d394 CC |
1417 | unsigned int got_offset = this->add_got_entry(Got_entry(gsym, false)); |
1418 | gsym->set_got_offset(got_type, got_offset); | |
7223e9ca ILT |
1419 | return true; |
1420 | } | |
1421 | ||
1422 | // Like add_global, but use the PLT offset. | |
1423 | ||
1424 | template<int size, bool big_endian> | |
1425 | bool | |
1426 | Output_data_got<size, big_endian>::add_global_plt(Symbol* gsym, | |
1427 | unsigned int got_type) | |
1428 | { | |
1429 | if (gsym->has_got_offset(got_type)) | |
1430 | return false; | |
1431 | ||
4829d394 CC |
1432 | unsigned int got_offset = this->add_got_entry(Got_entry(gsym, true)); |
1433 | gsym->set_got_offset(got_type, got_offset); | |
dbe717ef ILT |
1434 | return true; |
1435 | } | |
ead1e424 | 1436 | |
7bf1f802 ILT |
1437 | // Add an entry for a global symbol to the GOT, and add a dynamic |
1438 | // relocation of type R_TYPE for the GOT entry. | |
7223e9ca | 1439 | |
7bf1f802 ILT |
1440 | template<int size, bool big_endian> |
1441 | void | |
1442 | Output_data_got<size, big_endian>::add_global_with_rel( | |
1443 | Symbol* gsym, | |
0a65a3a7 | 1444 | unsigned int got_type, |
7bf1f802 ILT |
1445 | Rel_dyn* rel_dyn, |
1446 | unsigned int r_type) | |
1447 | { | |
0a65a3a7 | 1448 | if (gsym->has_got_offset(got_type)) |
7bf1f802 ILT |
1449 | return; |
1450 | ||
4829d394 | 1451 | unsigned int got_offset = this->add_got_entry(Got_entry()); |
2ea97941 ILT |
1452 | gsym->set_got_offset(got_type, got_offset); |
1453 | rel_dyn->add_global(gsym, r_type, this, got_offset); | |
7bf1f802 ILT |
1454 | } |
1455 | ||
1456 | template<int size, bool big_endian> | |
1457 | void | |
1458 | Output_data_got<size, big_endian>::add_global_with_rela( | |
1459 | Symbol* gsym, | |
0a65a3a7 | 1460 | unsigned int got_type, |
7bf1f802 ILT |
1461 | Rela_dyn* rela_dyn, |
1462 | unsigned int r_type) | |
1463 | { | |
0a65a3a7 | 1464 | if (gsym->has_got_offset(got_type)) |
7bf1f802 ILT |
1465 | return; |
1466 | ||
4829d394 | 1467 | unsigned int got_offset = this->add_got_entry(Got_entry()); |
2ea97941 ILT |
1468 | gsym->set_got_offset(got_type, got_offset); |
1469 | rela_dyn->add_global(gsym, r_type, this, got_offset, 0); | |
7bf1f802 ILT |
1470 | } |
1471 | ||
0a65a3a7 CC |
1472 | // Add a pair of entries for a global symbol to the GOT, and add |
1473 | // dynamic relocations of type R_TYPE_1 and R_TYPE_2, respectively. | |
1474 | // If R_TYPE_2 == 0, add the second entry with no relocation. | |
7bf1f802 ILT |
1475 | template<int size, bool big_endian> |
1476 | void | |
0a65a3a7 CC |
1477 | Output_data_got<size, big_endian>::add_global_pair_with_rel( |
1478 | Symbol* gsym, | |
1479 | unsigned int got_type, | |
7bf1f802 | 1480 | Rel_dyn* rel_dyn, |
0a65a3a7 CC |
1481 | unsigned int r_type_1, |
1482 | unsigned int r_type_2) | |
7bf1f802 | 1483 | { |
0a65a3a7 | 1484 | if (gsym->has_got_offset(got_type)) |
7bf1f802 ILT |
1485 | return; |
1486 | ||
4829d394 | 1487 | unsigned int got_offset = this->add_got_entry_pair(Got_entry(), Got_entry()); |
2ea97941 ILT |
1488 | gsym->set_got_offset(got_type, got_offset); |
1489 | rel_dyn->add_global(gsym, r_type_1, this, got_offset); | |
0a65a3a7 | 1490 | |
0a65a3a7 | 1491 | if (r_type_2 != 0) |
4829d394 | 1492 | rel_dyn->add_global(gsym, r_type_2, this, got_offset + size / 8); |
7bf1f802 ILT |
1493 | } |
1494 | ||
1495 | template<int size, bool big_endian> | |
1496 | void | |
0a65a3a7 CC |
1497 | Output_data_got<size, big_endian>::add_global_pair_with_rela( |
1498 | Symbol* gsym, | |
1499 | unsigned int got_type, | |
7bf1f802 | 1500 | Rela_dyn* rela_dyn, |
0a65a3a7 CC |
1501 | unsigned int r_type_1, |
1502 | unsigned int r_type_2) | |
7bf1f802 | 1503 | { |
0a65a3a7 | 1504 | if (gsym->has_got_offset(got_type)) |
7bf1f802 ILT |
1505 | return; |
1506 | ||
4829d394 | 1507 | unsigned int got_offset = this->add_got_entry_pair(Got_entry(), Got_entry()); |
2ea97941 ILT |
1508 | gsym->set_got_offset(got_type, got_offset); |
1509 | rela_dyn->add_global(gsym, r_type_1, this, got_offset, 0); | |
0a65a3a7 | 1510 | |
0a65a3a7 | 1511 | if (r_type_2 != 0) |
4829d394 | 1512 | rela_dyn->add_global(gsym, r_type_2, this, got_offset + size / 8, 0); |
7bf1f802 ILT |
1513 | } |
1514 | ||
0a65a3a7 CC |
1515 | // Add an entry for a local symbol to the GOT. This returns true if |
1516 | // this is a new GOT entry, false if the symbol already has a GOT | |
1517 | // entry. | |
07f397ab ILT |
1518 | |
1519 | template<int size, bool big_endian> | |
1520 | bool | |
0a65a3a7 | 1521 | Output_data_got<size, big_endian>::add_local( |
6fa2a40b | 1522 | Sized_relobj_file<size, big_endian>* object, |
0a65a3a7 CC |
1523 | unsigned int symndx, |
1524 | unsigned int got_type) | |
07f397ab | 1525 | { |
0a65a3a7 | 1526 | if (object->local_has_got_offset(symndx, got_type)) |
07f397ab ILT |
1527 | return false; |
1528 | ||
4829d394 CC |
1529 | unsigned int got_offset = this->add_got_entry(Got_entry(object, symndx, |
1530 | false)); | |
1531 | object->set_local_got_offset(symndx, got_type, got_offset); | |
7223e9ca ILT |
1532 | return true; |
1533 | } | |
1534 | ||
1535 | // Like add_local, but use the PLT offset. | |
1536 | ||
1537 | template<int size, bool big_endian> | |
1538 | bool | |
1539 | Output_data_got<size, big_endian>::add_local_plt( | |
6fa2a40b | 1540 | Sized_relobj_file<size, big_endian>* object, |
7223e9ca ILT |
1541 | unsigned int symndx, |
1542 | unsigned int got_type) | |
1543 | { | |
1544 | if (object->local_has_got_offset(symndx, got_type)) | |
1545 | return false; | |
1546 | ||
4829d394 CC |
1547 | unsigned int got_offset = this->add_got_entry(Got_entry(object, symndx, |
1548 | true)); | |
1549 | object->set_local_got_offset(symndx, got_type, got_offset); | |
07f397ab ILT |
1550 | return true; |
1551 | } | |
1552 | ||
0a65a3a7 CC |
1553 | // Add an entry for a local symbol to the GOT, and add a dynamic |
1554 | // relocation of type R_TYPE for the GOT entry. | |
7223e9ca | 1555 | |
7bf1f802 ILT |
1556 | template<int size, bool big_endian> |
1557 | void | |
0a65a3a7 | 1558 | Output_data_got<size, big_endian>::add_local_with_rel( |
6fa2a40b | 1559 | Sized_relobj_file<size, big_endian>* object, |
0a65a3a7 CC |
1560 | unsigned int symndx, |
1561 | unsigned int got_type, | |
7bf1f802 ILT |
1562 | Rel_dyn* rel_dyn, |
1563 | unsigned int r_type) | |
1564 | { | |
0a65a3a7 | 1565 | if (object->local_has_got_offset(symndx, got_type)) |
7bf1f802 ILT |
1566 | return; |
1567 | ||
4829d394 | 1568 | unsigned int got_offset = this->add_got_entry(Got_entry()); |
2ea97941 ILT |
1569 | object->set_local_got_offset(symndx, got_type, got_offset); |
1570 | rel_dyn->add_local(object, symndx, r_type, this, got_offset); | |
7bf1f802 ILT |
1571 | } |
1572 | ||
1573 | template<int size, bool big_endian> | |
1574 | void | |
0a65a3a7 | 1575 | Output_data_got<size, big_endian>::add_local_with_rela( |
6fa2a40b | 1576 | Sized_relobj_file<size, big_endian>* object, |
0a65a3a7 CC |
1577 | unsigned int symndx, |
1578 | unsigned int got_type, | |
7bf1f802 ILT |
1579 | Rela_dyn* rela_dyn, |
1580 | unsigned int r_type) | |
1581 | { | |
0a65a3a7 | 1582 | if (object->local_has_got_offset(symndx, got_type)) |
7bf1f802 ILT |
1583 | return; |
1584 | ||
4829d394 | 1585 | unsigned int got_offset = this->add_got_entry(Got_entry()); |
2ea97941 ILT |
1586 | object->set_local_got_offset(symndx, got_type, got_offset); |
1587 | rela_dyn->add_local(object, symndx, r_type, this, got_offset, 0); | |
07f397ab ILT |
1588 | } |
1589 | ||
0a65a3a7 CC |
1590 | // Add a pair of entries for a local symbol to the GOT, and add |
1591 | // dynamic relocations of type R_TYPE_1 and R_TYPE_2, respectively. | |
1592 | // If R_TYPE_2 == 0, add the second entry with no relocation. | |
7bf1f802 ILT |
1593 | template<int size, bool big_endian> |
1594 | void | |
0a65a3a7 | 1595 | Output_data_got<size, big_endian>::add_local_pair_with_rel( |
6fa2a40b | 1596 | Sized_relobj_file<size, big_endian>* object, |
7bf1f802 ILT |
1597 | unsigned int symndx, |
1598 | unsigned int shndx, | |
0a65a3a7 | 1599 | unsigned int got_type, |
7bf1f802 | 1600 | Rel_dyn* rel_dyn, |
0a65a3a7 CC |
1601 | unsigned int r_type_1, |
1602 | unsigned int r_type_2) | |
7bf1f802 | 1603 | { |
0a65a3a7 | 1604 | if (object->local_has_got_offset(symndx, got_type)) |
7bf1f802 ILT |
1605 | return; |
1606 | ||
4829d394 CC |
1607 | unsigned int got_offset = |
1608 | this->add_got_entry_pair(Got_entry(), | |
1609 | Got_entry(object, symndx, false)); | |
2ea97941 | 1610 | object->set_local_got_offset(symndx, got_type, got_offset); |
ef9beddf | 1611 | Output_section* os = object->output_section(shndx); |
2ea97941 | 1612 | rel_dyn->add_output_section(os, r_type_1, this, got_offset); |
7bf1f802 | 1613 | |
0a65a3a7 | 1614 | if (r_type_2 != 0) |
4829d394 | 1615 | rel_dyn->add_output_section(os, r_type_2, this, got_offset + size / 8); |
7bf1f802 ILT |
1616 | } |
1617 | ||
1618 | template<int size, bool big_endian> | |
1619 | void | |
0a65a3a7 | 1620 | Output_data_got<size, big_endian>::add_local_pair_with_rela( |
6fa2a40b | 1621 | Sized_relobj_file<size, big_endian>* object, |
7bf1f802 ILT |
1622 | unsigned int symndx, |
1623 | unsigned int shndx, | |
0a65a3a7 | 1624 | unsigned int got_type, |
7bf1f802 | 1625 | Rela_dyn* rela_dyn, |
0a65a3a7 CC |
1626 | unsigned int r_type_1, |
1627 | unsigned int r_type_2) | |
7bf1f802 | 1628 | { |
0a65a3a7 | 1629 | if (object->local_has_got_offset(symndx, got_type)) |
7bf1f802 ILT |
1630 | return; |
1631 | ||
4829d394 CC |
1632 | unsigned int got_offset = |
1633 | this->add_got_entry_pair(Got_entry(), | |
1634 | Got_entry(object, symndx, false)); | |
2ea97941 | 1635 | object->set_local_got_offset(symndx, got_type, got_offset); |
ef9beddf | 1636 | Output_section* os = object->output_section(shndx); |
2ea97941 | 1637 | rela_dyn->add_output_section(os, r_type_1, this, got_offset, 0); |
7bf1f802 | 1638 | |
0a65a3a7 | 1639 | if (r_type_2 != 0) |
4829d394 CC |
1640 | rela_dyn->add_output_section(os, r_type_2, this, got_offset + size / 8, 0); |
1641 | } | |
1642 | ||
1643 | // Reserve a slot in the GOT for a local symbol or the second slot of a pair. | |
1644 | ||
1645 | template<int size, bool big_endian> | |
1646 | void | |
6fa2a40b CC |
1647 | Output_data_got<size, big_endian>::reserve_local( |
1648 | unsigned int i, | |
1649 | Sized_relobj<size, big_endian>* object, | |
1650 | unsigned int sym_index, | |
1651 | unsigned int got_type) | |
4829d394 | 1652 | { |
6fa2a40b CC |
1653 | this->reserve_slot(i); |
1654 | object->set_local_got_offset(sym_index, got_type, this->got_offset(i)); | |
4829d394 | 1655 | } |
7bf1f802 | 1656 | |
4829d394 CC |
1657 | // Reserve a slot in the GOT for a global symbol. |
1658 | ||
1659 | template<int size, bool big_endian> | |
1660 | void | |
6fa2a40b | 1661 | Output_data_got<size, big_endian>::reserve_global( |
4829d394 CC |
1662 | unsigned int i, |
1663 | Symbol* gsym, | |
1664 | unsigned int got_type) | |
1665 | { | |
6fa2a40b | 1666 | this->reserve_slot(i); |
4829d394 | 1667 | gsym->set_got_offset(got_type, this->got_offset(i)); |
7bf1f802 ILT |
1668 | } |
1669 | ||
ead1e424 ILT |
1670 | // Write out the GOT. |
1671 | ||
1672 | template<int size, bool big_endian> | |
1673 | void | |
dbe717ef | 1674 | Output_data_got<size, big_endian>::do_write(Output_file* of) |
ead1e424 ILT |
1675 | { |
1676 | const int add = size / 8; | |
1677 | ||
1678 | const off_t off = this->offset(); | |
c06b7b0b | 1679 | const off_t oview_size = this->data_size(); |
ead1e424 ILT |
1680 | unsigned char* const oview = of->get_output_view(off, oview_size); |
1681 | ||
1682 | unsigned char* pov = oview; | |
1683 | for (typename Got_entries::const_iterator p = this->entries_.begin(); | |
1684 | p != this->entries_.end(); | |
1685 | ++p) | |
1686 | { | |
7e1edb90 | 1687 | p->write(pov); |
ead1e424 ILT |
1688 | pov += add; |
1689 | } | |
1690 | ||
a3ad94ed | 1691 | gold_assert(pov - oview == oview_size); |
c06b7b0b | 1692 | |
ead1e424 ILT |
1693 | of->write_output_view(off, oview_size, oview); |
1694 | ||
1695 | // We no longer need the GOT entries. | |
1696 | this->entries_.clear(); | |
1697 | } | |
1698 | ||
4829d394 CC |
1699 | // Create a new GOT entry and return its offset. |
1700 | ||
1701 | template<int size, bool big_endian> | |
1702 | unsigned int | |
1703 | Output_data_got<size, big_endian>::add_got_entry(Got_entry got_entry) | |
1704 | { | |
1705 | if (!this->is_data_size_valid()) | |
1706 | { | |
1707 | this->entries_.push_back(got_entry); | |
1708 | this->set_got_size(); | |
1709 | return this->last_got_offset(); | |
1710 | } | |
1711 | else | |
1712 | { | |
1713 | // For an incremental update, find an available slot. | |
1714 | off_t got_offset = this->free_list_.allocate(size / 8, size / 8, 0); | |
1715 | if (got_offset == -1) | |
1716 | gold_fatal(_("out of patch space (GOT);" | |
1717 | " relink with --incremental-full")); | |
1718 | unsigned int got_index = got_offset / (size / 8); | |
1719 | gold_assert(got_index < this->entries_.size()); | |
1720 | this->entries_[got_index] = got_entry; | |
1721 | return static_cast<unsigned int>(got_offset); | |
1722 | } | |
1723 | } | |
1724 | ||
1725 | // Create a pair of new GOT entries and return the offset of the first. | |
1726 | ||
1727 | template<int size, bool big_endian> | |
1728 | unsigned int | |
1729 | Output_data_got<size, big_endian>::add_got_entry_pair(Got_entry got_entry_1, | |
1730 | Got_entry got_entry_2) | |
1731 | { | |
1732 | if (!this->is_data_size_valid()) | |
1733 | { | |
1734 | unsigned int got_offset; | |
1735 | this->entries_.push_back(got_entry_1); | |
1736 | got_offset = this->last_got_offset(); | |
1737 | this->entries_.push_back(got_entry_2); | |
1738 | this->set_got_size(); | |
1739 | return got_offset; | |
1740 | } | |
1741 | else | |
1742 | { | |
1743 | // For an incremental update, find an available pair of slots. | |
1744 | off_t got_offset = this->free_list_.allocate(2 * size / 8, size / 8, 0); | |
1745 | if (got_offset == -1) | |
1746 | gold_fatal(_("out of patch space (GOT);" | |
1747 | " relink with --incremental-full")); | |
1748 | unsigned int got_index = got_offset / (size / 8); | |
1749 | gold_assert(got_index < this->entries_.size()); | |
1750 | this->entries_[got_index] = got_entry_1; | |
1751 | this->entries_[got_index + 1] = got_entry_2; | |
1752 | return static_cast<unsigned int>(got_offset); | |
1753 | } | |
1754 | } | |
1755 | ||
a3ad94ed ILT |
1756 | // Output_data_dynamic::Dynamic_entry methods. |
1757 | ||
1758 | // Write out the entry. | |
1759 | ||
1760 | template<int size, bool big_endian> | |
1761 | void | |
1762 | Output_data_dynamic::Dynamic_entry::write( | |
1763 | unsigned char* pov, | |
7d1a9ebb | 1764 | const Stringpool* pool) const |
a3ad94ed ILT |
1765 | { |
1766 | typename elfcpp::Elf_types<size>::Elf_WXword val; | |
c2b45e22 | 1767 | switch (this->offset_) |
a3ad94ed ILT |
1768 | { |
1769 | case DYNAMIC_NUMBER: | |
1770 | val = this->u_.val; | |
1771 | break; | |
1772 | ||
a3ad94ed | 1773 | case DYNAMIC_SECTION_SIZE: |
16649710 | 1774 | val = this->u_.od->data_size(); |
612a8d3d DM |
1775 | if (this->od2 != NULL) |
1776 | val += this->od2->data_size(); | |
a3ad94ed ILT |
1777 | break; |
1778 | ||
1779 | case DYNAMIC_SYMBOL: | |
1780 | { | |
16649710 ILT |
1781 | const Sized_symbol<size>* s = |
1782 | static_cast<const Sized_symbol<size>*>(this->u_.sym); | |
a3ad94ed ILT |
1783 | val = s->value(); |
1784 | } | |
1785 | break; | |
1786 | ||
1787 | case DYNAMIC_STRING: | |
1788 | val = pool->get_offset(this->u_.str); | |
1789 | break; | |
1790 | ||
1791 | default: | |
c2b45e22 CC |
1792 | val = this->u_.od->address() + this->offset_; |
1793 | break; | |
a3ad94ed ILT |
1794 | } |
1795 | ||
1796 | elfcpp::Dyn_write<size, big_endian> dw(pov); | |
1797 | dw.put_d_tag(this->tag_); | |
1798 | dw.put_d_val(val); | |
1799 | } | |
1800 | ||
1801 | // Output_data_dynamic methods. | |
1802 | ||
16649710 ILT |
1803 | // Adjust the output section to set the entry size. |
1804 | ||
1805 | void | |
1806 | Output_data_dynamic::do_adjust_output_section(Output_section* os) | |
1807 | { | |
8851ecca | 1808 | if (parameters->target().get_size() == 32) |
16649710 | 1809 | os->set_entsize(elfcpp::Elf_sizes<32>::dyn_size); |
8851ecca | 1810 | else if (parameters->target().get_size() == 64) |
16649710 ILT |
1811 | os->set_entsize(elfcpp::Elf_sizes<64>::dyn_size); |
1812 | else | |
1813 | gold_unreachable(); | |
1814 | } | |
1815 | ||
a3ad94ed ILT |
1816 | // Set the final data size. |
1817 | ||
1818 | void | |
27bc2bce | 1819 | Output_data_dynamic::set_final_data_size() |
a3ad94ed | 1820 | { |
20e6d0d6 DK |
1821 | // Add the terminating entry if it hasn't been added. |
1822 | // Because of relaxation, we can run this multiple times. | |
9e9e071b ILT |
1823 | if (this->entries_.empty() || this->entries_.back().tag() != elfcpp::DT_NULL) |
1824 | { | |
1825 | int extra = parameters->options().spare_dynamic_tags(); | |
1826 | for (int i = 0; i < extra; ++i) | |
1827 | this->add_constant(elfcpp::DT_NULL, 0); | |
1828 | this->add_constant(elfcpp::DT_NULL, 0); | |
1829 | } | |
a3ad94ed ILT |
1830 | |
1831 | int dyn_size; | |
8851ecca | 1832 | if (parameters->target().get_size() == 32) |
a3ad94ed | 1833 | dyn_size = elfcpp::Elf_sizes<32>::dyn_size; |
8851ecca | 1834 | else if (parameters->target().get_size() == 64) |
a3ad94ed ILT |
1835 | dyn_size = elfcpp::Elf_sizes<64>::dyn_size; |
1836 | else | |
1837 | gold_unreachable(); | |
1838 | this->set_data_size(this->entries_.size() * dyn_size); | |
1839 | } | |
1840 | ||
1841 | // Write out the dynamic entries. | |
1842 | ||
1843 | void | |
1844 | Output_data_dynamic::do_write(Output_file* of) | |
1845 | { | |
8851ecca | 1846 | switch (parameters->size_and_endianness()) |
a3ad94ed | 1847 | { |
9025d29d | 1848 | #ifdef HAVE_TARGET_32_LITTLE |
8851ecca ILT |
1849 | case Parameters::TARGET_32_LITTLE: |
1850 | this->sized_write<32, false>(of); | |
1851 | break; | |
9025d29d | 1852 | #endif |
8851ecca ILT |
1853 | #ifdef HAVE_TARGET_32_BIG |
1854 | case Parameters::TARGET_32_BIG: | |
1855 | this->sized_write<32, true>(of); | |
1856 | break; | |
9025d29d | 1857 | #endif |
9025d29d | 1858 | #ifdef HAVE_TARGET_64_LITTLE |
8851ecca ILT |
1859 | case Parameters::TARGET_64_LITTLE: |
1860 | this->sized_write<64, false>(of); | |
1861 | break; | |
9025d29d | 1862 | #endif |
8851ecca ILT |
1863 | #ifdef HAVE_TARGET_64_BIG |
1864 | case Parameters::TARGET_64_BIG: | |
1865 | this->sized_write<64, true>(of); | |
1866 | break; | |
1867 | #endif | |
1868 | default: | |
1869 | gold_unreachable(); | |
a3ad94ed | 1870 | } |
a3ad94ed ILT |
1871 | } |
1872 | ||
1873 | template<int size, bool big_endian> | |
1874 | void | |
1875 | Output_data_dynamic::sized_write(Output_file* of) | |
1876 | { | |
1877 | const int dyn_size = elfcpp::Elf_sizes<size>::dyn_size; | |
1878 | ||
2ea97941 | 1879 | const off_t offset = this->offset(); |
a3ad94ed | 1880 | const off_t oview_size = this->data_size(); |
2ea97941 | 1881 | unsigned char* const oview = of->get_output_view(offset, oview_size); |
a3ad94ed ILT |
1882 | |
1883 | unsigned char* pov = oview; | |
1884 | for (typename Dynamic_entries::const_iterator p = this->entries_.begin(); | |
1885 | p != this->entries_.end(); | |
1886 | ++p) | |
1887 | { | |
7d1a9ebb | 1888 | p->write<size, big_endian>(pov, this->pool_); |
a3ad94ed ILT |
1889 | pov += dyn_size; |
1890 | } | |
1891 | ||
1892 | gold_assert(pov - oview == oview_size); | |
1893 | ||
2ea97941 | 1894 | of->write_output_view(offset, oview_size, oview); |
a3ad94ed ILT |
1895 | |
1896 | // We no longer need the dynamic entries. | |
1897 | this->entries_.clear(); | |
1898 | } | |
1899 | ||
d491d34e ILT |
1900 | // Class Output_symtab_xindex. |
1901 | ||
1902 | void | |
1903 | Output_symtab_xindex::do_write(Output_file* of) | |
1904 | { | |
2ea97941 | 1905 | const off_t offset = this->offset(); |
d491d34e | 1906 | const off_t oview_size = this->data_size(); |
2ea97941 | 1907 | unsigned char* const oview = of->get_output_view(offset, oview_size); |
d491d34e ILT |
1908 | |
1909 | memset(oview, 0, oview_size); | |
1910 | ||
1911 | if (parameters->target().is_big_endian()) | |
1912 | this->endian_do_write<true>(oview); | |
1913 | else | |
1914 | this->endian_do_write<false>(oview); | |
1915 | ||
2ea97941 | 1916 | of->write_output_view(offset, oview_size, oview); |
d491d34e ILT |
1917 | |
1918 | // We no longer need the data. | |
1919 | this->entries_.clear(); | |
1920 | } | |
1921 | ||
1922 | template<bool big_endian> | |
1923 | void | |
1924 | Output_symtab_xindex::endian_do_write(unsigned char* const oview) | |
1925 | { | |
1926 | for (Xindex_entries::const_iterator p = this->entries_.begin(); | |
1927 | p != this->entries_.end(); | |
1928 | ++p) | |
20e6d0d6 DK |
1929 | { |
1930 | unsigned int symndx = p->first; | |
1931 | gold_assert(symndx * 4 < this->data_size()); | |
1932 | elfcpp::Swap<32, big_endian>::writeval(oview + symndx * 4, p->second); | |
1933 | } | |
d491d34e ILT |
1934 | } |
1935 | ||
ead1e424 ILT |
1936 | // Output_section::Input_section methods. |
1937 | ||
cdc29364 CC |
1938 | // Return the current data size. For an input section we store the size here. |
1939 | // For an Output_section_data, we have to ask it for the size. | |
1940 | ||
1941 | off_t | |
1942 | Output_section::Input_section::current_data_size() const | |
1943 | { | |
1944 | if (this->is_input_section()) | |
1945 | return this->u1_.data_size; | |
1946 | else | |
1947 | { | |
1948 | this->u2_.posd->pre_finalize_data_size(); | |
1949 | return this->u2_.posd->current_data_size(); | |
1950 | } | |
1951 | } | |
1952 | ||
ead1e424 ILT |
1953 | // Return the data size. For an input section we store the size here. |
1954 | // For an Output_section_data, we have to ask it for the size. | |
1955 | ||
1956 | off_t | |
1957 | Output_section::Input_section::data_size() const | |
1958 | { | |
1959 | if (this->is_input_section()) | |
b8e6aad9 | 1960 | return this->u1_.data_size; |
ead1e424 | 1961 | else |
b8e6aad9 | 1962 | return this->u2_.posd->data_size(); |
ead1e424 ILT |
1963 | } |
1964 | ||
0439c796 DK |
1965 | // Return the object for an input section. |
1966 | ||
1967 | Relobj* | |
1968 | Output_section::Input_section::relobj() const | |
1969 | { | |
1970 | if (this->is_input_section()) | |
1971 | return this->u2_.object; | |
1972 | else if (this->is_merge_section()) | |
1973 | { | |
1974 | gold_assert(this->u2_.pomb->first_relobj() != NULL); | |
1975 | return this->u2_.pomb->first_relobj(); | |
1976 | } | |
1977 | else if (this->is_relaxed_input_section()) | |
1978 | return this->u2_.poris->relobj(); | |
1979 | else | |
1980 | gold_unreachable(); | |
1981 | } | |
1982 | ||
1983 | // Return the input section index for an input section. | |
1984 | ||
1985 | unsigned int | |
1986 | Output_section::Input_section::shndx() const | |
1987 | { | |
1988 | if (this->is_input_section()) | |
1989 | return this->shndx_; | |
1990 | else if (this->is_merge_section()) | |
1991 | { | |
1992 | gold_assert(this->u2_.pomb->first_relobj() != NULL); | |
1993 | return this->u2_.pomb->first_shndx(); | |
1994 | } | |
1995 | else if (this->is_relaxed_input_section()) | |
1996 | return this->u2_.poris->shndx(); | |
1997 | else | |
1998 | gold_unreachable(); | |
1999 | } | |
2000 | ||
ead1e424 ILT |
2001 | // Set the address and file offset. |
2002 | ||
2003 | void | |
96803768 ILT |
2004 | Output_section::Input_section::set_address_and_file_offset( |
2005 | uint64_t address, | |
2006 | off_t file_offset, | |
2007 | off_t section_file_offset) | |
ead1e424 ILT |
2008 | { |
2009 | if (this->is_input_section()) | |
96803768 ILT |
2010 | this->u2_.object->set_section_offset(this->shndx_, |
2011 | file_offset - section_file_offset); | |
ead1e424 | 2012 | else |
96803768 ILT |
2013 | this->u2_.posd->set_address_and_file_offset(address, file_offset); |
2014 | } | |
2015 | ||
a445fddf ILT |
2016 | // Reset the address and file offset. |
2017 | ||
2018 | void | |
2019 | Output_section::Input_section::reset_address_and_file_offset() | |
2020 | { | |
2021 | if (!this->is_input_section()) | |
2022 | this->u2_.posd->reset_address_and_file_offset(); | |
2023 | } | |
2024 | ||
96803768 ILT |
2025 | // Finalize the data size. |
2026 | ||
2027 | void | |
2028 | Output_section::Input_section::finalize_data_size() | |
2029 | { | |
2030 | if (!this->is_input_section()) | |
2031 | this->u2_.posd->finalize_data_size(); | |
b8e6aad9 ILT |
2032 | } |
2033 | ||
1e983657 ILT |
2034 | // Try to turn an input offset into an output offset. We want to |
2035 | // return the output offset relative to the start of this | |
2036 | // Input_section in the output section. | |
b8e6aad9 | 2037 | |
8f00aeb8 | 2038 | inline bool |
8383303e ILT |
2039 | Output_section::Input_section::output_offset( |
2040 | const Relobj* object, | |
2ea97941 ILT |
2041 | unsigned int shndx, |
2042 | section_offset_type offset, | |
ca09d69a | 2043 | section_offset_type* poutput) const |
b8e6aad9 ILT |
2044 | { |
2045 | if (!this->is_input_section()) | |
2ea97941 | 2046 | return this->u2_.posd->output_offset(object, shndx, offset, poutput); |
b8e6aad9 ILT |
2047 | else |
2048 | { | |
2ea97941 | 2049 | if (this->shndx_ != shndx || this->u2_.object != object) |
b8e6aad9 | 2050 | return false; |
2ea97941 | 2051 | *poutput = offset; |
b8e6aad9 ILT |
2052 | return true; |
2053 | } | |
ead1e424 ILT |
2054 | } |
2055 | ||
a9a60db6 ILT |
2056 | // Return whether this is the merge section for the input section |
2057 | // SHNDX in OBJECT. | |
2058 | ||
2059 | inline bool | |
2060 | Output_section::Input_section::is_merge_section_for(const Relobj* object, | |
2ea97941 | 2061 | unsigned int shndx) const |
a9a60db6 ILT |
2062 | { |
2063 | if (this->is_input_section()) | |
2064 | return false; | |
2ea97941 | 2065 | return this->u2_.posd->is_merge_section_for(object, shndx); |
a9a60db6 ILT |
2066 | } |
2067 | ||
ead1e424 ILT |
2068 | // Write out the data. We don't have to do anything for an input |
2069 | // section--they are handled via Object::relocate--but this is where | |
2070 | // we write out the data for an Output_section_data. | |
2071 | ||
2072 | void | |
2073 | Output_section::Input_section::write(Output_file* of) | |
2074 | { | |
2075 | if (!this->is_input_section()) | |
b8e6aad9 | 2076 | this->u2_.posd->write(of); |
ead1e424 ILT |
2077 | } |
2078 | ||
96803768 ILT |
2079 | // Write the data to a buffer. As for write(), we don't have to do |
2080 | // anything for an input section. | |
2081 | ||
2082 | void | |
2083 | Output_section::Input_section::write_to_buffer(unsigned char* buffer) | |
2084 | { | |
2085 | if (!this->is_input_section()) | |
2086 | this->u2_.posd->write_to_buffer(buffer); | |
2087 | } | |
2088 | ||
7d9e3d98 ILT |
2089 | // Print to a map file. |
2090 | ||
2091 | void | |
2092 | Output_section::Input_section::print_to_mapfile(Mapfile* mapfile) const | |
2093 | { | |
2094 | switch (this->shndx_) | |
2095 | { | |
2096 | case OUTPUT_SECTION_CODE: | |
2097 | case MERGE_DATA_SECTION_CODE: | |
2098 | case MERGE_STRING_SECTION_CODE: | |
2099 | this->u2_.posd->print_to_mapfile(mapfile); | |
2100 | break; | |
2101 | ||
20e6d0d6 DK |
2102 | case RELAXED_INPUT_SECTION_CODE: |
2103 | { | |
2104 | Output_relaxed_input_section* relaxed_section = | |
2105 | this->relaxed_input_section(); | |
2106 | mapfile->print_input_section(relaxed_section->relobj(), | |
2107 | relaxed_section->shndx()); | |
2108 | } | |
2109 | break; | |
7d9e3d98 ILT |
2110 | default: |
2111 | mapfile->print_input_section(this->u2_.object, this->shndx_); | |
2112 | break; | |
2113 | } | |
2114 | } | |
2115 | ||
a2fb1b05 ILT |
2116 | // Output_section methods. |
2117 | ||
2118 | // Construct an Output_section. NAME will point into a Stringpool. | |
2119 | ||
2ea97941 ILT |
2120 | Output_section::Output_section(const char* name, elfcpp::Elf_Word type, |
2121 | elfcpp::Elf_Xword flags) | |
2122 | : name_(name), | |
a2fb1b05 ILT |
2123 | addralign_(0), |
2124 | entsize_(0), | |
a445fddf | 2125 | load_address_(0), |
16649710 | 2126 | link_section_(NULL), |
a2fb1b05 | 2127 | link_(0), |
16649710 | 2128 | info_section_(NULL), |
6a74a719 | 2129 | info_symndx_(NULL), |
a2fb1b05 | 2130 | info_(0), |
2ea97941 ILT |
2131 | type_(type), |
2132 | flags_(flags), | |
22f0da72 | 2133 | order_(ORDER_INVALID), |
91ea499d | 2134 | out_shndx_(-1U), |
c06b7b0b ILT |
2135 | symtab_index_(0), |
2136 | dynsym_index_(0), | |
ead1e424 ILT |
2137 | input_sections_(), |
2138 | first_input_offset_(0), | |
c51e6221 | 2139 | fills_(), |
96803768 | 2140 | postprocessing_buffer_(NULL), |
a3ad94ed | 2141 | needs_symtab_index_(false), |
16649710 ILT |
2142 | needs_dynsym_index_(false), |
2143 | should_link_to_symtab_(false), | |
730cdc88 | 2144 | should_link_to_dynsym_(false), |
27bc2bce | 2145 | after_input_sections_(false), |
7bf1f802 | 2146 | requires_postprocessing_(false), |
a445fddf ILT |
2147 | found_in_sections_clause_(false), |
2148 | has_load_address_(false), | |
755ab8af | 2149 | info_uses_section_index_(false), |
6e9ba2ca | 2150 | input_section_order_specified_(false), |
2fd32231 ILT |
2151 | may_sort_attached_input_sections_(false), |
2152 | must_sort_attached_input_sections_(false), | |
2153 | attached_input_sections_are_sorted_(false), | |
9f1d377b | 2154 | is_relro_(false), |
8a5e3e08 ILT |
2155 | is_small_section_(false), |
2156 | is_large_section_(false), | |
f5c870d2 | 2157 | generate_code_fills_at_write_(false), |
e8cd95c7 | 2158 | is_entsize_zero_(false), |
8923b24c | 2159 | section_offsets_need_adjustment_(false), |
1e5d2fb1 | 2160 | is_noload_(false), |
131687b4 | 2161 | always_keeps_input_sections_(false), |
cdc29364 | 2162 | has_fixed_layout_(false), |
20e6d0d6 | 2163 | tls_offset_(0), |
c0a62865 | 2164 | checkpoint_(NULL), |
cdc29364 CC |
2165 | lookup_maps_(new Output_section_lookup_maps), |
2166 | free_list_() | |
a2fb1b05 | 2167 | { |
27bc2bce ILT |
2168 | // An unallocated section has no address. Forcing this means that |
2169 | // we don't need special treatment for symbols defined in debug | |
2170 | // sections. | |
2ea97941 | 2171 | if ((flags & elfcpp::SHF_ALLOC) == 0) |
27bc2bce | 2172 | this->set_address(0); |
a2fb1b05 ILT |
2173 | } |
2174 | ||
54dc6425 ILT |
2175 | Output_section::~Output_section() |
2176 | { | |
20e6d0d6 | 2177 | delete this->checkpoint_; |
54dc6425 ILT |
2178 | } |
2179 | ||
16649710 ILT |
2180 | // Set the entry size. |
2181 | ||
2182 | void | |
2183 | Output_section::set_entsize(uint64_t v) | |
2184 | { | |
e8cd95c7 ILT |
2185 | if (this->is_entsize_zero_) |
2186 | ; | |
2187 | else if (this->entsize_ == 0) | |
16649710 | 2188 | this->entsize_ = v; |
e8cd95c7 ILT |
2189 | else if (this->entsize_ != v) |
2190 | { | |
2191 | this->entsize_ = 0; | |
2192 | this->is_entsize_zero_ = 1; | |
2193 | } | |
16649710 ILT |
2194 | } |
2195 | ||
ead1e424 | 2196 | // Add the input section SHNDX, with header SHDR, named SECNAME, in |
730cdc88 ILT |
2197 | // OBJECT, to the Output_section. RELOC_SHNDX is the index of a |
2198 | // relocation section which applies to this section, or 0 if none, or | |
2199 | // -1U if more than one. Return the offset of the input section | |
2200 | // within the output section. Return -1 if the input section will | |
2201 | // receive special handling. In the normal case we don't always keep | |
2202 | // track of input sections for an Output_section. Instead, each | |
2203 | // Object keeps track of the Output_section for each of its input | |
a445fddf ILT |
2204 | // sections. However, if HAVE_SECTIONS_SCRIPT is true, we do keep |
2205 | // track of input sections here; this is used when SECTIONS appears in | |
2206 | // a linker script. | |
a2fb1b05 ILT |
2207 | |
2208 | template<int size, bool big_endian> | |
2209 | off_t | |
6e9ba2ca | 2210 | Output_section::add_input_section(Layout* layout, |
6fa2a40b | 2211 | Sized_relobj_file<size, big_endian>* object, |
2ea97941 | 2212 | unsigned int shndx, |
ead1e424 | 2213 | const char* secname, |
730cdc88 | 2214 | const elfcpp::Shdr<size, big_endian>& shdr, |
a445fddf ILT |
2215 | unsigned int reloc_shndx, |
2216 | bool have_sections_script) | |
a2fb1b05 | 2217 | { |
2ea97941 ILT |
2218 | elfcpp::Elf_Xword addralign = shdr.get_sh_addralign(); |
2219 | if ((addralign & (addralign - 1)) != 0) | |
a2fb1b05 | 2220 | { |
75f2446e | 2221 | object->error(_("invalid alignment %lu for section \"%s\""), |
2ea97941 ILT |
2222 | static_cast<unsigned long>(addralign), secname); |
2223 | addralign = 1; | |
a2fb1b05 | 2224 | } |
a2fb1b05 | 2225 | |
2ea97941 ILT |
2226 | if (addralign > this->addralign_) |
2227 | this->addralign_ = addralign; | |
a2fb1b05 | 2228 | |
44a43cf9 | 2229 | typename elfcpp::Elf_types<size>::Elf_WXword sh_flags = shdr.get_sh_flags(); |
2ea97941 | 2230 | uint64_t entsize = shdr.get_sh_entsize(); |
44a43cf9 ILT |
2231 | |
2232 | // .debug_str is a mergeable string section, but is not always so | |
2233 | // marked by compilers. Mark manually here so we can optimize. | |
2234 | if (strcmp(secname, ".debug_str") == 0) | |
4f833eee ILT |
2235 | { |
2236 | sh_flags |= (elfcpp::SHF_MERGE | elfcpp::SHF_STRINGS); | |
2ea97941 | 2237 | entsize = 1; |
4f833eee | 2238 | } |
44a43cf9 | 2239 | |
e8cd95c7 ILT |
2240 | this->update_flags_for_input_section(sh_flags); |
2241 | this->set_entsize(entsize); | |
2242 | ||
b8e6aad9 | 2243 | // If this is a SHF_MERGE section, we pass all the input sections to |
730cdc88 | 2244 | // a Output_data_merge. We don't try to handle relocations for such |
e0b64032 ILT |
2245 | // a section. We don't try to handle empty merge sections--they |
2246 | // mess up the mappings, and are useless anyhow. | |
cdc29364 | 2247 | // FIXME: Need to handle merge sections during incremental update. |
44a43cf9 | 2248 | if ((sh_flags & elfcpp::SHF_MERGE) != 0 |
e0b64032 | 2249 | && reloc_shndx == 0 |
cdc29364 CC |
2250 | && shdr.get_sh_size() > 0 |
2251 | && !parameters->incremental()) | |
b8e6aad9 | 2252 | { |
0439c796 DK |
2253 | // Keep information about merged input sections for rebuilding fast |
2254 | // lookup maps if we have sections-script or we do relaxation. | |
131687b4 DK |
2255 | bool keeps_input_sections = (this->always_keeps_input_sections_ |
2256 | || have_sections_script | |
2257 | || parameters->target().may_relax()); | |
2258 | ||
0439c796 DK |
2259 | if (this->add_merge_input_section(object, shndx, sh_flags, entsize, |
2260 | addralign, keeps_input_sections)) | |
b8e6aad9 ILT |
2261 | { |
2262 | // Tell the relocation routines that they need to call the | |
730cdc88 | 2263 | // output_offset method to determine the final address. |
b8e6aad9 ILT |
2264 | return -1; |
2265 | } | |
2266 | } | |
2267 | ||
cdc29364 CC |
2268 | section_size_type input_section_size = shdr.get_sh_size(); |
2269 | section_size_type uncompressed_size; | |
2270 | if (object->section_is_compressed(shndx, &uncompressed_size)) | |
2271 | input_section_size = uncompressed_size; | |
2272 | ||
2273 | off_t offset_in_section; | |
2274 | off_t aligned_offset_in_section; | |
2275 | if (this->has_fixed_layout()) | |
2276 | { | |
2277 | // For incremental updates, find a chunk of unused space in the section. | |
2278 | offset_in_section = this->free_list_.allocate(input_section_size, | |
2279 | addralign, 0); | |
2280 | if (offset_in_section == -1) | |
2281 | gold_fatal(_("out of patch space; relink with --incremental-full")); | |
2282 | aligned_offset_in_section = offset_in_section; | |
2283 | } | |
2284 | else | |
2285 | { | |
2286 | offset_in_section = this->current_data_size_for_child(); | |
2287 | aligned_offset_in_section = align_address(offset_in_section, | |
2288 | addralign); | |
2289 | this->set_current_data_size_for_child(aligned_offset_in_section | |
2290 | + input_section_size); | |
2291 | } | |
c51e6221 | 2292 | |
c0a62865 DK |
2293 | // Determine if we want to delay code-fill generation until the output |
2294 | // section is written. When the target is relaxing, we want to delay fill | |
4cf7a849 ST |
2295 | // generating to avoid adjusting them during relaxation. Also, if we are |
2296 | // sorting input sections we must delay fill generation. | |
c0a62865 DK |
2297 | if (!this->generate_code_fills_at_write_ |
2298 | && !have_sections_script | |
2299 | && (sh_flags & elfcpp::SHF_EXECINSTR) != 0 | |
2300 | && parameters->target().has_code_fill() | |
4cf7a849 ST |
2301 | && (parameters->target().may_relax() |
2302 | || parameters->options().section_ordering_file())) | |
c0a62865 DK |
2303 | { |
2304 | gold_assert(this->fills_.empty()); | |
2305 | this->generate_code_fills_at_write_ = true; | |
2306 | } | |
2307 | ||
c51e6221 | 2308 | if (aligned_offset_in_section > offset_in_section |
c0a62865 | 2309 | && !this->generate_code_fills_at_write_ |
a445fddf | 2310 | && !have_sections_script |
44a43cf9 | 2311 | && (sh_flags & elfcpp::SHF_EXECINSTR) != 0 |
029ba973 | 2312 | && parameters->target().has_code_fill()) |
c51e6221 ILT |
2313 | { |
2314 | // We need to add some fill data. Using fill_list_ when | |
2315 | // possible is an optimization, since we will often have fill | |
2316 | // sections without input sections. | |
2317 | off_t fill_len = aligned_offset_in_section - offset_in_section; | |
2318 | if (this->input_sections_.empty()) | |
2319 | this->fills_.push_back(Fill(offset_in_section, fill_len)); | |
2320 | else | |
2321 | { | |
029ba973 | 2322 | std::string fill_data(parameters->target().code_fill(fill_len)); |
c51e6221 ILT |
2323 | Output_data_const* odc = new Output_data_const(fill_data, 1); |
2324 | this->input_sections_.push_back(Input_section(odc)); | |
2325 | } | |
2326 | } | |
2327 | ||
ead1e424 | 2328 | // We need to keep track of this section if we are already keeping |
2fd32231 ILT |
2329 | // track of sections, or if we are relaxing. Also, if this is a |
2330 | // section which requires sorting, or which may require sorting in | |
6e9ba2ca ST |
2331 | // the future, we keep track of the sections. If the |
2332 | // --section-ordering-file option is used to specify the order of | |
2333 | // sections, we need to keep track of sections. | |
131687b4 DK |
2334 | if (this->always_keeps_input_sections_ |
2335 | || have_sections_script | |
2fd32231 ILT |
2336 | || !this->input_sections_.empty() |
2337 | || this->may_sort_attached_input_sections() | |
7d9e3d98 | 2338 | || this->must_sort_attached_input_sections() |
20e6d0d6 | 2339 | || parameters->options().user_set_Map() |
6e9ba2ca ST |
2340 | || parameters->target().may_relax() |
2341 | || parameters->options().section_ordering_file()) | |
2342 | { | |
6fc6ea19 | 2343 | Input_section isecn(object, shndx, input_section_size, addralign); |
6e9ba2ca ST |
2344 | if (parameters->options().section_ordering_file()) |
2345 | { | |
2346 | unsigned int section_order_index = | |
2347 | layout->find_section_order_index(std::string(secname)); | |
2348 | if (section_order_index != 0) | |
2349 | { | |
2350 | isecn.set_section_order_index(section_order_index); | |
2351 | this->set_input_section_order_specified(); | |
2352 | } | |
2353 | } | |
cdc29364 CC |
2354 | if (this->has_fixed_layout()) |
2355 | { | |
2356 | // For incremental updates, finalize the address and offset now. | |
2357 | uint64_t addr = this->address(); | |
2358 | isecn.set_address_and_file_offset(addr + aligned_offset_in_section, | |
2359 | aligned_offset_in_section, | |
2360 | this->offset()); | |
2361 | } | |
6e9ba2ca ST |
2362 | this->input_sections_.push_back(isecn); |
2363 | } | |
54dc6425 | 2364 | |
c51e6221 | 2365 | return aligned_offset_in_section; |
61ba1cf9 ILT |
2366 | } |
2367 | ||
ead1e424 ILT |
2368 | // Add arbitrary data to an output section. |
2369 | ||
2370 | void | |
2371 | Output_section::add_output_section_data(Output_section_data* posd) | |
2372 | { | |
b8e6aad9 ILT |
2373 | Input_section inp(posd); |
2374 | this->add_output_section_data(&inp); | |
a445fddf ILT |
2375 | |
2376 | if (posd->is_data_size_valid()) | |
2377 | { | |
cdc29364 CC |
2378 | off_t offset_in_section; |
2379 | if (this->has_fixed_layout()) | |
2380 | { | |
2381 | // For incremental updates, find a chunk of unused space. | |
2382 | offset_in_section = this->free_list_.allocate(posd->data_size(), | |
2383 | posd->addralign(), 0); | |
2384 | if (offset_in_section == -1) | |
2385 | gold_fatal(_("out of patch space; relink with --incremental-full")); | |
2386 | // Finalize the address and offset now. | |
2387 | uint64_t addr = this->address(); | |
2388 | off_t offset = this->offset(); | |
2389 | posd->set_address_and_file_offset(addr + offset_in_section, | |
2390 | offset + offset_in_section); | |
2391 | } | |
2392 | else | |
2393 | { | |
2394 | offset_in_section = this->current_data_size_for_child(); | |
2395 | off_t aligned_offset_in_section = align_address(offset_in_section, | |
2396 | posd->addralign()); | |
2397 | this->set_current_data_size_for_child(aligned_offset_in_section | |
2398 | + posd->data_size()); | |
2399 | } | |
2400 | } | |
2401 | else if (this->has_fixed_layout()) | |
2402 | { | |
2403 | // For incremental updates, arrange for the data to have a fixed layout. | |
2404 | // This will mean that additions to the data must be allocated from | |
2405 | // free space within the containing output section. | |
2406 | uint64_t addr = this->address(); | |
2407 | posd->set_address(addr); | |
2408 | posd->set_file_offset(0); | |
4829d394 CC |
2409 | // FIXME: This should eventually be unreachable. |
2410 | // gold_unreachable(); | |
a445fddf | 2411 | } |
b8e6aad9 ILT |
2412 | } |
2413 | ||
c0a62865 DK |
2414 | // Add a relaxed input section. |
2415 | ||
2416 | void | |
d06fb4d1 DK |
2417 | Output_section::add_relaxed_input_section(Layout* layout, |
2418 | Output_relaxed_input_section* poris, | |
2419 | const std::string& name) | |
c0a62865 DK |
2420 | { |
2421 | Input_section inp(poris); | |
d06fb4d1 DK |
2422 | |
2423 | // If the --section-ordering-file option is used to specify the order of | |
2424 | // sections, we need to keep track of sections. | |
2425 | if (parameters->options().section_ordering_file()) | |
2426 | { | |
2427 | unsigned int section_order_index = | |
2428 | layout->find_section_order_index(name); | |
2429 | if (section_order_index != 0) | |
2430 | { | |
2431 | inp.set_section_order_index(section_order_index); | |
2432 | this->set_input_section_order_specified(); | |
2433 | } | |
2434 | } | |
2435 | ||
c0a62865 | 2436 | this->add_output_section_data(&inp); |
0439c796 DK |
2437 | if (this->lookup_maps_->is_valid()) |
2438 | this->lookup_maps_->add_relaxed_input_section(poris->relobj(), | |
2439 | poris->shndx(), poris); | |
c0a62865 DK |
2440 | |
2441 | // For a relaxed section, we use the current data size. Linker scripts | |
2442 | // get all the input sections, including relaxed one from an output | |
2443 | // section and add them back to them same output section to compute the | |
2444 | // output section size. If we do not account for sizes of relaxed input | |
2445 | // sections, an output section would be incorrectly sized. | |
2446 | off_t offset_in_section = this->current_data_size_for_child(); | |
2447 | off_t aligned_offset_in_section = align_address(offset_in_section, | |
2448 | poris->addralign()); | |
2449 | this->set_current_data_size_for_child(aligned_offset_in_section | |
2450 | + poris->current_data_size()); | |
2451 | } | |
2452 | ||
b8e6aad9 | 2453 | // Add arbitrary data to an output section by Input_section. |
c06b7b0b | 2454 | |
b8e6aad9 ILT |
2455 | void |
2456 | Output_section::add_output_section_data(Input_section* inp) | |
2457 | { | |
ead1e424 | 2458 | if (this->input_sections_.empty()) |
27bc2bce | 2459 | this->first_input_offset_ = this->current_data_size_for_child(); |
c06b7b0b | 2460 | |
b8e6aad9 | 2461 | this->input_sections_.push_back(*inp); |
c06b7b0b | 2462 | |
2ea97941 ILT |
2463 | uint64_t addralign = inp->addralign(); |
2464 | if (addralign > this->addralign_) | |
2465 | this->addralign_ = addralign; | |
c06b7b0b | 2466 | |
b8e6aad9 ILT |
2467 | inp->set_output_section(this); |
2468 | } | |
2469 | ||
2470 | // Add a merge section to an output section. | |
2471 | ||
2472 | void | |
2473 | Output_section::add_output_merge_section(Output_section_data* posd, | |
2ea97941 | 2474 | bool is_string, uint64_t entsize) |
b8e6aad9 | 2475 | { |
2ea97941 | 2476 | Input_section inp(posd, is_string, entsize); |
b8e6aad9 ILT |
2477 | this->add_output_section_data(&inp); |
2478 | } | |
2479 | ||
2480 | // Add an input section to a SHF_MERGE section. | |
2481 | ||
2482 | bool | |
2ea97941 ILT |
2483 | Output_section::add_merge_input_section(Relobj* object, unsigned int shndx, |
2484 | uint64_t flags, uint64_t entsize, | |
0439c796 DK |
2485 | uint64_t addralign, |
2486 | bool keeps_input_sections) | |
b8e6aad9 | 2487 | { |
2ea97941 | 2488 | bool is_string = (flags & elfcpp::SHF_STRINGS) != 0; |
87f95776 ILT |
2489 | |
2490 | // We only merge strings if the alignment is not more than the | |
2491 | // character size. This could be handled, but it's unusual. | |
2ea97941 | 2492 | if (is_string && addralign > entsize) |
b8e6aad9 ILT |
2493 | return false; |
2494 | ||
20e6d0d6 DK |
2495 | // We cannot restore merged input section states. |
2496 | gold_assert(this->checkpoint_ == NULL); | |
2497 | ||
c0a62865 | 2498 | // Look up merge sections by required properties. |
0439c796 DK |
2499 | // Currently, we only invalidate the lookup maps in script processing |
2500 | // and relaxation. We should not have done either when we reach here. | |
2501 | // So we assume that the lookup maps are valid to simply code. | |
2502 | gold_assert(this->lookup_maps_->is_valid()); | |
2ea97941 | 2503 | Merge_section_properties msp(is_string, entsize, addralign); |
0439c796 DK |
2504 | Output_merge_base* pomb = this->lookup_maps_->find_merge_section(msp); |
2505 | bool is_new = false; | |
2506 | if (pomb != NULL) | |
c0a62865 | 2507 | { |
6bf924b0 DK |
2508 | gold_assert(pomb->is_string() == is_string |
2509 | && pomb->entsize() == entsize | |
2510 | && pomb->addralign() == addralign); | |
c0a62865 | 2511 | } |
b8e6aad9 ILT |
2512 | else |
2513 | { | |
6bf924b0 DK |
2514 | // Create a new Output_merge_data or Output_merge_string_data. |
2515 | if (!is_string) | |
2516 | pomb = new Output_merge_data(entsize, addralign); | |
2517 | else | |
9a0910c3 | 2518 | { |
6bf924b0 DK |
2519 | switch (entsize) |
2520 | { | |
2521 | case 1: | |
2522 | pomb = new Output_merge_string<char>(addralign); | |
2523 | break; | |
2524 | case 2: | |
2525 | pomb = new Output_merge_string<uint16_t>(addralign); | |
2526 | break; | |
2527 | case 4: | |
2528 | pomb = new Output_merge_string<uint32_t>(addralign); | |
2529 | break; | |
2530 | default: | |
2531 | return false; | |
2532 | } | |
9a0910c3 | 2533 | } |
0439c796 DK |
2534 | // If we need to do script processing or relaxation, we need to keep |
2535 | // the original input sections to rebuild the fast lookup maps. | |
2536 | if (keeps_input_sections) | |
2537 | pomb->set_keeps_input_sections(); | |
2538 | is_new = true; | |
b8e6aad9 ILT |
2539 | } |
2540 | ||
6bf924b0 DK |
2541 | if (pomb->add_input_section(object, shndx)) |
2542 | { | |
0439c796 DK |
2543 | // Add new merge section to this output section and link merge |
2544 | // section properties to new merge section in map. | |
2545 | if (is_new) | |
2546 | { | |
2547 | this->add_output_merge_section(pomb, is_string, entsize); | |
2548 | this->lookup_maps_->add_merge_section(msp, pomb); | |
2549 | } | |
2550 | ||
6bf924b0 DK |
2551 | // Add input section to new merge section and link input section to new |
2552 | // merge section in map. | |
0439c796 | 2553 | this->lookup_maps_->add_merge_input_section(object, shndx, pomb); |
6bf924b0 DK |
2554 | return true; |
2555 | } | |
2556 | else | |
0439c796 DK |
2557 | { |
2558 | // If add_input_section failed, delete new merge section to avoid | |
2559 | // exporting empty merge sections in Output_section::get_input_section. | |
2560 | if (is_new) | |
2561 | delete pomb; | |
2562 | return false; | |
2563 | } | |
b8e6aad9 ILT |
2564 | } |
2565 | ||
c0a62865 | 2566 | // Build a relaxation map to speed up relaxation of existing input sections. |
2ea97941 | 2567 | // Look up to the first LIMIT elements in INPUT_SECTIONS. |
c0a62865 | 2568 | |
20e6d0d6 | 2569 | void |
c0a62865 | 2570 | Output_section::build_relaxation_map( |
2ea97941 | 2571 | const Input_section_list& input_sections, |
c0a62865 DK |
2572 | size_t limit, |
2573 | Relaxation_map* relaxation_map) const | |
20e6d0d6 | 2574 | { |
c0a62865 DK |
2575 | for (size_t i = 0; i < limit; ++i) |
2576 | { | |
2ea97941 | 2577 | const Input_section& is(input_sections[i]); |
c0a62865 DK |
2578 | if (is.is_input_section() || is.is_relaxed_input_section()) |
2579 | { | |
5ac169d4 DK |
2580 | Section_id sid(is.relobj(), is.shndx()); |
2581 | (*relaxation_map)[sid] = i; | |
c0a62865 DK |
2582 | } |
2583 | } | |
2584 | } | |
2585 | ||
2586 | // Convert regular input sections in INPUT_SECTIONS into relaxed input | |
5ac169d4 DK |
2587 | // sections in RELAXED_SECTIONS. MAP is a prebuilt map from section id |
2588 | // indices of INPUT_SECTIONS. | |
20e6d0d6 | 2589 | |
c0a62865 DK |
2590 | void |
2591 | Output_section::convert_input_sections_in_list_to_relaxed_sections( | |
2592 | const std::vector<Output_relaxed_input_section*>& relaxed_sections, | |
2593 | const Relaxation_map& map, | |
2ea97941 | 2594 | Input_section_list* input_sections) |
c0a62865 DK |
2595 | { |
2596 | for (size_t i = 0; i < relaxed_sections.size(); ++i) | |
2597 | { | |
2598 | Output_relaxed_input_section* poris = relaxed_sections[i]; | |
5ac169d4 DK |
2599 | Section_id sid(poris->relobj(), poris->shndx()); |
2600 | Relaxation_map::const_iterator p = map.find(sid); | |
c0a62865 | 2601 | gold_assert(p != map.end()); |
2ea97941 | 2602 | gold_assert((*input_sections)[p->second].is_input_section()); |
d06fb4d1 DK |
2603 | |
2604 | // Remember section order index of original input section | |
2605 | // if it is set. Copy it to the relaxed input section. | |
2606 | unsigned int soi = | |
2607 | (*input_sections)[p->second].section_order_index(); | |
2ea97941 | 2608 | (*input_sections)[p->second] = Input_section(poris); |
d06fb4d1 | 2609 | (*input_sections)[p->second].set_section_order_index(soi); |
c0a62865 DK |
2610 | } |
2611 | } | |
2612 | ||
2613 | // Convert regular input sections into relaxed input sections. RELAXED_SECTIONS | |
2614 | // is a vector of pointers to Output_relaxed_input_section or its derived | |
2615 | // classes. The relaxed sections must correspond to existing input sections. | |
2616 | ||
2617 | void | |
2618 | Output_section::convert_input_sections_to_relaxed_sections( | |
2619 | const std::vector<Output_relaxed_input_section*>& relaxed_sections) | |
2620 | { | |
029ba973 | 2621 | gold_assert(parameters->target().may_relax()); |
20e6d0d6 | 2622 | |
c0a62865 DK |
2623 | // We want to make sure that restore_states does not undo the effect of |
2624 | // this. If there is no checkpoint active, just search the current | |
2625 | // input section list and replace the sections there. If there is | |
2626 | // a checkpoint, also replace the sections there. | |
2627 | ||
2628 | // By default, we look at the whole list. | |
2629 | size_t limit = this->input_sections_.size(); | |
2630 | ||
2631 | if (this->checkpoint_ != NULL) | |
20e6d0d6 | 2632 | { |
c0a62865 DK |
2633 | // Replace input sections with relaxed input section in the saved |
2634 | // copy of the input section list. | |
2635 | if (this->checkpoint_->input_sections_saved()) | |
20e6d0d6 | 2636 | { |
c0a62865 DK |
2637 | Relaxation_map map; |
2638 | this->build_relaxation_map( | |
2639 | *(this->checkpoint_->input_sections()), | |
2640 | this->checkpoint_->input_sections()->size(), | |
2641 | &map); | |
2642 | this->convert_input_sections_in_list_to_relaxed_sections( | |
2643 | relaxed_sections, | |
2644 | map, | |
2645 | this->checkpoint_->input_sections()); | |
2646 | } | |
2647 | else | |
2648 | { | |
2649 | // We have not copied the input section list yet. Instead, just | |
2650 | // look at the portion that would be saved. | |
2651 | limit = this->checkpoint_->input_sections_size(); | |
20e6d0d6 | 2652 | } |
20e6d0d6 | 2653 | } |
c0a62865 DK |
2654 | |
2655 | // Convert input sections in input_section_list. | |
2656 | Relaxation_map map; | |
2657 | this->build_relaxation_map(this->input_sections_, limit, &map); | |
2658 | this->convert_input_sections_in_list_to_relaxed_sections( | |
2659 | relaxed_sections, | |
2660 | map, | |
2661 | &this->input_sections_); | |
41263c05 DK |
2662 | |
2663 | // Update fast look-up map. | |
0439c796 | 2664 | if (this->lookup_maps_->is_valid()) |
41263c05 DK |
2665 | for (size_t i = 0; i < relaxed_sections.size(); ++i) |
2666 | { | |
2667 | Output_relaxed_input_section* poris = relaxed_sections[i]; | |
0439c796 DK |
2668 | this->lookup_maps_->add_relaxed_input_section(poris->relobj(), |
2669 | poris->shndx(), poris); | |
41263c05 | 2670 | } |
20e6d0d6 DK |
2671 | } |
2672 | ||
9c547ec3 ILT |
2673 | // Update the output section flags based on input section flags. |
2674 | ||
2675 | void | |
2ea97941 | 2676 | Output_section::update_flags_for_input_section(elfcpp::Elf_Xword flags) |
9c547ec3 ILT |
2677 | { |
2678 | // If we created the section with SHF_ALLOC clear, we set the | |
2679 | // address. If we are now setting the SHF_ALLOC flag, we need to | |
2680 | // undo that. | |
2681 | if ((this->flags_ & elfcpp::SHF_ALLOC) == 0 | |
2ea97941 | 2682 | && (flags & elfcpp::SHF_ALLOC) != 0) |
9c547ec3 ILT |
2683 | this->mark_address_invalid(); |
2684 | ||
2ea97941 | 2685 | this->flags_ |= (flags |
9c547ec3 ILT |
2686 | & (elfcpp::SHF_WRITE |
2687 | | elfcpp::SHF_ALLOC | |
2688 | | elfcpp::SHF_EXECINSTR)); | |
e8cd95c7 ILT |
2689 | |
2690 | if ((flags & elfcpp::SHF_MERGE) == 0) | |
2691 | this->flags_ &=~ elfcpp::SHF_MERGE; | |
2692 | else | |
2693 | { | |
2694 | if (this->current_data_size_for_child() == 0) | |
2695 | this->flags_ |= elfcpp::SHF_MERGE; | |
2696 | } | |
2697 | ||
2698 | if ((flags & elfcpp::SHF_STRINGS) == 0) | |
2699 | this->flags_ &=~ elfcpp::SHF_STRINGS; | |
2700 | else | |
2701 | { | |
2702 | if (this->current_data_size_for_child() == 0) | |
2703 | this->flags_ |= elfcpp::SHF_STRINGS; | |
2704 | } | |
9c547ec3 ILT |
2705 | } |
2706 | ||
2ea97941 | 2707 | // Find the merge section into which an input section with index SHNDX in |
c0a62865 DK |
2708 | // OBJECT has been added. Return NULL if none found. |
2709 | ||
2710 | Output_section_data* | |
2711 | Output_section::find_merge_section(const Relobj* object, | |
2ea97941 | 2712 | unsigned int shndx) const |
c0a62865 | 2713 | { |
0439c796 DK |
2714 | if (!this->lookup_maps_->is_valid()) |
2715 | this->build_lookup_maps(); | |
2716 | return this->lookup_maps_->find_merge_section(object, shndx); | |
2717 | } | |
2718 | ||
2719 | // Build the lookup maps for merge and relaxed sections. This is needs | |
2720 | // to be declared as a const methods so that it is callable with a const | |
2721 | // Output_section pointer. The method only updates states of the maps. | |
2722 | ||
2723 | void | |
2724 | Output_section::build_lookup_maps() const | |
2725 | { | |
2726 | this->lookup_maps_->clear(); | |
2727 | for (Input_section_list::const_iterator p = this->input_sections_.begin(); | |
2728 | p != this->input_sections_.end(); | |
2729 | ++p) | |
c0a62865 | 2730 | { |
0439c796 DK |
2731 | if (p->is_merge_section()) |
2732 | { | |
2733 | Output_merge_base* pomb = p->output_merge_base(); | |
2734 | Merge_section_properties msp(pomb->is_string(), pomb->entsize(), | |
2735 | pomb->addralign()); | |
2736 | this->lookup_maps_->add_merge_section(msp, pomb); | |
2737 | for (Output_merge_base::Input_sections::const_iterator is = | |
2738 | pomb->input_sections_begin(); | |
2739 | is != pomb->input_sections_end(); | |
2740 | ++is) | |
2741 | { | |
2742 | const Const_section_id& csid = *is; | |
2743 | this->lookup_maps_->add_merge_input_section(csid.first, | |
2744 | csid.second, pomb); | |
2745 | } | |
2746 | ||
2747 | } | |
2748 | else if (p->is_relaxed_input_section()) | |
2749 | { | |
2750 | Output_relaxed_input_section* poris = p->relaxed_input_section(); | |
2751 | this->lookup_maps_->add_relaxed_input_section(poris->relobj(), | |
2752 | poris->shndx(), poris); | |
2753 | } | |
c0a62865 | 2754 | } |
c0a62865 DK |
2755 | } |
2756 | ||
2757 | // Find an relaxed input section corresponding to an input section | |
2ea97941 | 2758 | // in OBJECT with index SHNDX. |
c0a62865 | 2759 | |
d6344fb5 | 2760 | const Output_relaxed_input_section* |
c0a62865 | 2761 | Output_section::find_relaxed_input_section(const Relobj* object, |
2ea97941 | 2762 | unsigned int shndx) const |
c0a62865 | 2763 | { |
0439c796 DK |
2764 | if (!this->lookup_maps_->is_valid()) |
2765 | this->build_lookup_maps(); | |
2766 | return this->lookup_maps_->find_relaxed_input_section(object, shndx); | |
c0a62865 DK |
2767 | } |
2768 | ||
2ea97941 ILT |
2769 | // Given an address OFFSET relative to the start of input section |
2770 | // SHNDX in OBJECT, return whether this address is being included in | |
2771 | // the final link. This should only be called if SHNDX in OBJECT has | |
730cdc88 ILT |
2772 | // a special mapping. |
2773 | ||
2774 | bool | |
2775 | Output_section::is_input_address_mapped(const Relobj* object, | |
2ea97941 ILT |
2776 | unsigned int shndx, |
2777 | off_t offset) const | |
730cdc88 | 2778 | { |
c0a62865 | 2779 | // Look at the Output_section_data_maps first. |
2ea97941 | 2780 | const Output_section_data* posd = this->find_merge_section(object, shndx); |
c0a62865 | 2781 | if (posd == NULL) |
2ea97941 | 2782 | posd = this->find_relaxed_input_section(object, shndx); |
c0a62865 DK |
2783 | |
2784 | if (posd != NULL) | |
2785 | { | |
2ea97941 ILT |
2786 | section_offset_type output_offset; |
2787 | bool found = posd->output_offset(object, shndx, offset, &output_offset); | |
c0a62865 | 2788 | gold_assert(found); |
2ea97941 | 2789 | return output_offset != -1; |
c0a62865 DK |
2790 | } |
2791 | ||
2792 | // Fall back to the slow look-up. | |
730cdc88 ILT |
2793 | for (Input_section_list::const_iterator p = this->input_sections_.begin(); |
2794 | p != this->input_sections_.end(); | |
2795 | ++p) | |
2796 | { | |
2ea97941 ILT |
2797 | section_offset_type output_offset; |
2798 | if (p->output_offset(object, shndx, offset, &output_offset)) | |
2799 | return output_offset != -1; | |
730cdc88 ILT |
2800 | } |
2801 | ||
2802 | // By default we assume that the address is mapped. This should | |
2803 | // only be called after we have passed all sections to Layout. At | |
2804 | // that point we should know what we are discarding. | |
2805 | return true; | |
2806 | } | |
2807 | ||
2ea97941 ILT |
2808 | // Given an address OFFSET relative to the start of input section |
2809 | // SHNDX in object OBJECT, return the output offset relative to the | |
1e983657 | 2810 | // start of the input section in the output section. This should only |
2ea97941 | 2811 | // be called if SHNDX in OBJECT has a special mapping. |
730cdc88 | 2812 | |
8383303e | 2813 | section_offset_type |
2ea97941 ILT |
2814 | Output_section::output_offset(const Relobj* object, unsigned int shndx, |
2815 | section_offset_type offset) const | |
730cdc88 | 2816 | { |
c0a62865 DK |
2817 | // This can only be called meaningfully when we know the data size |
2818 | // of this. | |
2819 | gold_assert(this->is_data_size_valid()); | |
730cdc88 | 2820 | |
c0a62865 | 2821 | // Look at the Output_section_data_maps first. |
2ea97941 | 2822 | const Output_section_data* posd = this->find_merge_section(object, shndx); |
c0a62865 | 2823 | if (posd == NULL) |
2ea97941 | 2824 | posd = this->find_relaxed_input_section(object, shndx); |
c0a62865 DK |
2825 | if (posd != NULL) |
2826 | { | |
2ea97941 ILT |
2827 | section_offset_type output_offset; |
2828 | bool found = posd->output_offset(object, shndx, offset, &output_offset); | |
c0a62865 | 2829 | gold_assert(found); |
2ea97941 | 2830 | return output_offset; |
c0a62865 DK |
2831 | } |
2832 | ||
2833 | // Fall back to the slow look-up. | |
730cdc88 ILT |
2834 | for (Input_section_list::const_iterator p = this->input_sections_.begin(); |
2835 | p != this->input_sections_.end(); | |
2836 | ++p) | |
2837 | { | |
2ea97941 ILT |
2838 | section_offset_type output_offset; |
2839 | if (p->output_offset(object, shndx, offset, &output_offset)) | |
2840 | return output_offset; | |
730cdc88 ILT |
2841 | } |
2842 | gold_unreachable(); | |
2843 | } | |
2844 | ||
2ea97941 ILT |
2845 | // Return the output virtual address of OFFSET relative to the start |
2846 | // of input section SHNDX in object OBJECT. | |
b8e6aad9 ILT |
2847 | |
2848 | uint64_t | |
2ea97941 ILT |
2849 | Output_section::output_address(const Relobj* object, unsigned int shndx, |
2850 | off_t offset) const | |
b8e6aad9 ILT |
2851 | { |
2852 | uint64_t addr = this->address() + this->first_input_offset_; | |
c0a62865 DK |
2853 | |
2854 | // Look at the Output_section_data_maps first. | |
2ea97941 | 2855 | const Output_section_data* posd = this->find_merge_section(object, shndx); |
c0a62865 | 2856 | if (posd == NULL) |
2ea97941 | 2857 | posd = this->find_relaxed_input_section(object, shndx); |
c0a62865 DK |
2858 | if (posd != NULL && posd->is_address_valid()) |
2859 | { | |
2ea97941 ILT |
2860 | section_offset_type output_offset; |
2861 | bool found = posd->output_offset(object, shndx, offset, &output_offset); | |
c0a62865 | 2862 | gold_assert(found); |
2ea97941 | 2863 | return posd->address() + output_offset; |
c0a62865 DK |
2864 | } |
2865 | ||
2866 | // Fall back to the slow look-up. | |
b8e6aad9 ILT |
2867 | for (Input_section_list::const_iterator p = this->input_sections_.begin(); |
2868 | p != this->input_sections_.end(); | |
2869 | ++p) | |
2870 | { | |
2871 | addr = align_address(addr, p->addralign()); | |
2ea97941 ILT |
2872 | section_offset_type output_offset; |
2873 | if (p->output_offset(object, shndx, offset, &output_offset)) | |
730cdc88 | 2874 | { |
2ea97941 | 2875 | if (output_offset == -1) |
eff45813 | 2876 | return -1ULL; |
2ea97941 | 2877 | return addr + output_offset; |
730cdc88 | 2878 | } |
b8e6aad9 ILT |
2879 | addr += p->data_size(); |
2880 | } | |
2881 | ||
2882 | // If we get here, it means that we don't know the mapping for this | |
2883 | // input section. This might happen in principle if | |
2884 | // add_input_section were called before add_output_section_data. | |
2885 | // But it should never actually happen. | |
2886 | ||
2887 | gold_unreachable(); | |
ead1e424 ILT |
2888 | } |
2889 | ||
e29e076a | 2890 | // Find the output address of the start of the merged section for |
2ea97941 | 2891 | // input section SHNDX in object OBJECT. |
a9a60db6 | 2892 | |
e29e076a ILT |
2893 | bool |
2894 | Output_section::find_starting_output_address(const Relobj* object, | |
2ea97941 | 2895 | unsigned int shndx, |
e29e076a | 2896 | uint64_t* paddr) const |
a9a60db6 | 2897 | { |
c0a62865 DK |
2898 | // FIXME: This becomes a bottle-neck if we have many relaxed sections. |
2899 | // Looking up the merge section map does not always work as we sometimes | |
2900 | // find a merge section without its address set. | |
a9a60db6 ILT |
2901 | uint64_t addr = this->address() + this->first_input_offset_; |
2902 | for (Input_section_list::const_iterator p = this->input_sections_.begin(); | |
2903 | p != this->input_sections_.end(); | |
2904 | ++p) | |
2905 | { | |
2906 | addr = align_address(addr, p->addralign()); | |
2907 | ||
2908 | // It would be nice if we could use the existing output_offset | |
2909 | // method to get the output offset of input offset 0. | |
2910 | // Unfortunately we don't know for sure that input offset 0 is | |
2911 | // mapped at all. | |
2ea97941 | 2912 | if (p->is_merge_section_for(object, shndx)) |
e29e076a ILT |
2913 | { |
2914 | *paddr = addr; | |
2915 | return true; | |
2916 | } | |
a9a60db6 ILT |
2917 | |
2918 | addr += p->data_size(); | |
2919 | } | |
e29e076a ILT |
2920 | |
2921 | // We couldn't find a merge output section for this input section. | |
2922 | return false; | |
a9a60db6 ILT |
2923 | } |
2924 | ||
cdc29364 CC |
2925 | // Update the data size of an Output_section. |
2926 | ||
2927 | void | |
2928 | Output_section::update_data_size() | |
2929 | { | |
2930 | if (this->input_sections_.empty()) | |
2931 | return; | |
2932 | ||
2933 | if (this->must_sort_attached_input_sections() | |
2934 | || this->input_section_order_specified()) | |
2935 | this->sort_attached_input_sections(); | |
2936 | ||
2937 | off_t off = this->first_input_offset_; | |
2938 | for (Input_section_list::iterator p = this->input_sections_.begin(); | |
2939 | p != this->input_sections_.end(); | |
2940 | ++p) | |
2941 | { | |
2942 | off = align_address(off, p->addralign()); | |
2943 | off += p->current_data_size(); | |
2944 | } | |
2945 | ||
2946 | this->set_current_data_size_for_child(off); | |
2947 | } | |
2948 | ||
27bc2bce | 2949 | // Set the data size of an Output_section. This is where we handle |
ead1e424 ILT |
2950 | // setting the addresses of any Output_section_data objects. |
2951 | ||
2952 | void | |
27bc2bce | 2953 | Output_section::set_final_data_size() |
ead1e424 ILT |
2954 | { |
2955 | if (this->input_sections_.empty()) | |
27bc2bce ILT |
2956 | { |
2957 | this->set_data_size(this->current_data_size_for_child()); | |
2958 | return; | |
2959 | } | |
ead1e424 | 2960 | |
6e9ba2ca ST |
2961 | if (this->must_sort_attached_input_sections() |
2962 | || this->input_section_order_specified()) | |
2fd32231 ILT |
2963 | this->sort_attached_input_sections(); |
2964 | ||
2ea97941 | 2965 | uint64_t address = this->address(); |
27bc2bce | 2966 | off_t startoff = this->offset(); |
ead1e424 ILT |
2967 | off_t off = startoff + this->first_input_offset_; |
2968 | for (Input_section_list::iterator p = this->input_sections_.begin(); | |
2969 | p != this->input_sections_.end(); | |
2970 | ++p) | |
2971 | { | |
2972 | off = align_address(off, p->addralign()); | |
2ea97941 | 2973 | p->set_address_and_file_offset(address + (off - startoff), off, |
96803768 | 2974 | startoff); |
ead1e424 ILT |
2975 | off += p->data_size(); |
2976 | } | |
2977 | ||
2978 | this->set_data_size(off - startoff); | |
2979 | } | |
9a0910c3 | 2980 | |
a445fddf ILT |
2981 | // Reset the address and file offset. |
2982 | ||
2983 | void | |
2984 | Output_section::do_reset_address_and_file_offset() | |
2985 | { | |
20e6d0d6 DK |
2986 | // An unallocated section has no address. Forcing this means that |
2987 | // we don't need special treatment for symbols defined in debug | |
1e5d2fb1 DK |
2988 | // sections. We do the same in the constructor. This does not |
2989 | // apply to NOLOAD sections though. | |
2990 | if (((this->flags_ & elfcpp::SHF_ALLOC) == 0) && !this->is_noload_) | |
20e6d0d6 DK |
2991 | this->set_address(0); |
2992 | ||
a445fddf ILT |
2993 | for (Input_section_list::iterator p = this->input_sections_.begin(); |
2994 | p != this->input_sections_.end(); | |
2995 | ++p) | |
2996 | p->reset_address_and_file_offset(); | |
2997 | } | |
20e6d0d6 DK |
2998 | |
2999 | // Return true if address and file offset have the values after reset. | |
3000 | ||
3001 | bool | |
3002 | Output_section::do_address_and_file_offset_have_reset_values() const | |
3003 | { | |
3004 | if (this->is_offset_valid()) | |
3005 | return false; | |
3006 | ||
3007 | // An unallocated section has address 0 after its construction or a reset. | |
3008 | if ((this->flags_ & elfcpp::SHF_ALLOC) == 0) | |
3009 | return this->is_address_valid() && this->address() == 0; | |
3010 | else | |
3011 | return !this->is_address_valid(); | |
3012 | } | |
a445fddf | 3013 | |
7bf1f802 ILT |
3014 | // Set the TLS offset. Called only for SHT_TLS sections. |
3015 | ||
3016 | void | |
3017 | Output_section::do_set_tls_offset(uint64_t tls_base) | |
3018 | { | |
3019 | this->tls_offset_ = this->address() - tls_base; | |
3020 | } | |
3021 | ||
2fd32231 ILT |
3022 | // In a few cases we need to sort the input sections attached to an |
3023 | // output section. This is used to implement the type of constructor | |
3024 | // priority ordering implemented by the GNU linker, in which the | |
3025 | // priority becomes part of the section name and the sections are | |
3026 | // sorted by name. We only do this for an output section if we see an | |
3027 | // attached input section matching ".ctor.*", ".dtor.*", | |
3028 | // ".init_array.*" or ".fini_array.*". | |
3029 | ||
3030 | class Output_section::Input_section_sort_entry | |
3031 | { | |
3032 | public: | |
3033 | Input_section_sort_entry() | |
3034 | : input_section_(), index_(-1U), section_has_name_(false), | |
3035 | section_name_() | |
3036 | { } | |
3037 | ||
2ea97941 | 3038 | Input_section_sort_entry(const Input_section& input_section, |
6e9ba2ca ST |
3039 | unsigned int index, |
3040 | bool must_sort_attached_input_sections) | |
2ea97941 ILT |
3041 | : input_section_(input_section), index_(index), |
3042 | section_has_name_(input_section.is_input_section() | |
3043 | || input_section.is_relaxed_input_section()) | |
2fd32231 | 3044 | { |
6e9ba2ca ST |
3045 | if (this->section_has_name_ |
3046 | && must_sort_attached_input_sections) | |
2fd32231 ILT |
3047 | { |
3048 | // This is only called single-threaded from Layout::finalize, | |
3049 | // so it is OK to lock. Unfortunately we have no way to pass | |
3050 | // in a Task token. | |
3051 | const Task* dummy_task = reinterpret_cast<const Task*>(-1); | |
2ea97941 ILT |
3052 | Object* obj = (input_section.is_input_section() |
3053 | ? input_section.relobj() | |
3054 | : input_section.relaxed_input_section()->relobj()); | |
2fd32231 ILT |
3055 | Task_lock_obj<Object> tl(dummy_task, obj); |
3056 | ||
3057 | // This is a slow operation, which should be cached in | |
3058 | // Layout::layout if this becomes a speed problem. | |
2ea97941 | 3059 | this->section_name_ = obj->section_name(input_section.shndx()); |
2fd32231 ILT |
3060 | } |
3061 | } | |
3062 | ||
3063 | // Return the Input_section. | |
3064 | const Input_section& | |
3065 | input_section() const | |
3066 | { | |
3067 | gold_assert(this->index_ != -1U); | |
3068 | return this->input_section_; | |
3069 | } | |
3070 | ||
3071 | // The index of this entry in the original list. This is used to | |
3072 | // make the sort stable. | |
3073 | unsigned int | |
3074 | index() const | |
3075 | { | |
3076 | gold_assert(this->index_ != -1U); | |
3077 | return this->index_; | |
3078 | } | |
3079 | ||
3080 | // Whether there is a section name. | |
3081 | bool | |
3082 | section_has_name() const | |
3083 | { return this->section_has_name_; } | |
3084 | ||
3085 | // The section name. | |
3086 | const std::string& | |
3087 | section_name() const | |
3088 | { | |
3089 | gold_assert(this->section_has_name_); | |
3090 | return this->section_name_; | |
3091 | } | |
3092 | ||
ab794b6b ILT |
3093 | // Return true if the section name has a priority. This is assumed |
3094 | // to be true if it has a dot after the initial dot. | |
2fd32231 | 3095 | bool |
ab794b6b | 3096 | has_priority() const |
2fd32231 ILT |
3097 | { |
3098 | gold_assert(this->section_has_name_); | |
2a0ff005 | 3099 | return this->section_name_.find('.', 1) != std::string::npos; |
2fd32231 ILT |
3100 | } |
3101 | ||
ab794b6b ILT |
3102 | // Return true if this an input file whose base name matches |
3103 | // FILE_NAME. The base name must have an extension of ".o", and | |
3104 | // must be exactly FILE_NAME.o or FILE_NAME, one character, ".o". | |
3105 | // This is to match crtbegin.o as well as crtbeginS.o without | |
3106 | // getting confused by other possibilities. Overall matching the | |
3107 | // file name this way is a dreadful hack, but the GNU linker does it | |
3108 | // in order to better support gcc, and we need to be compatible. | |
2fd32231 | 3109 | bool |
2ea97941 | 3110 | match_file_name(const char* match_file_name) const |
2fd32231 | 3111 | { |
2fd32231 ILT |
3112 | const std::string& file_name(this->input_section_.relobj()->name()); |
3113 | const char* base_name = lbasename(file_name.c_str()); | |
2ea97941 ILT |
3114 | size_t match_len = strlen(match_file_name); |
3115 | if (strncmp(base_name, match_file_name, match_len) != 0) | |
2fd32231 ILT |
3116 | return false; |
3117 | size_t base_len = strlen(base_name); | |
3118 | if (base_len != match_len + 2 && base_len != match_len + 3) | |
3119 | return false; | |
3120 | return memcmp(base_name + base_len - 2, ".o", 2) == 0; | |
3121 | } | |
3122 | ||
8fe2a369 ST |
3123 | // Returns 1 if THIS should appear before S in section order, -1 if S |
3124 | // appears before THIS and 0 if they are not comparable. | |
6e9ba2ca ST |
3125 | int |
3126 | compare_section_ordering(const Input_section_sort_entry& s) const | |
3127 | { | |
8fe2a369 ST |
3128 | unsigned int this_secn_index = this->input_section_.section_order_index(); |
3129 | unsigned int s_secn_index = s.input_section().section_order_index(); | |
3130 | if (this_secn_index > 0 && s_secn_index > 0) | |
3131 | { | |
3132 | if (this_secn_index < s_secn_index) | |
3133 | return 1; | |
3134 | else if (this_secn_index > s_secn_index) | |
3135 | return -1; | |
3136 | } | |
3137 | return 0; | |
6e9ba2ca ST |
3138 | } |
3139 | ||
2fd32231 ILT |
3140 | private: |
3141 | // The Input_section we are sorting. | |
3142 | Input_section input_section_; | |
3143 | // The index of this Input_section in the original list. | |
3144 | unsigned int index_; | |
3145 | // Whether this Input_section has a section name--it won't if this | |
3146 | // is some random Output_section_data. | |
3147 | bool section_has_name_; | |
3148 | // The section name if there is one. | |
3149 | std::string section_name_; | |
3150 | }; | |
3151 | ||
3152 | // Return true if S1 should come before S2 in the output section. | |
3153 | ||
3154 | bool | |
3155 | Output_section::Input_section_sort_compare::operator()( | |
3156 | const Output_section::Input_section_sort_entry& s1, | |
3157 | const Output_section::Input_section_sort_entry& s2) const | |
3158 | { | |
ab794b6b ILT |
3159 | // crtbegin.o must come first. |
3160 | bool s1_begin = s1.match_file_name("crtbegin"); | |
3161 | bool s2_begin = s2.match_file_name("crtbegin"); | |
2fd32231 ILT |
3162 | if (s1_begin || s2_begin) |
3163 | { | |
3164 | if (!s1_begin) | |
3165 | return false; | |
3166 | if (!s2_begin) | |
3167 | return true; | |
3168 | return s1.index() < s2.index(); | |
3169 | } | |
3170 | ||
ab794b6b ILT |
3171 | // crtend.o must come last. |
3172 | bool s1_end = s1.match_file_name("crtend"); | |
3173 | bool s2_end = s2.match_file_name("crtend"); | |
2fd32231 ILT |
3174 | if (s1_end || s2_end) |
3175 | { | |
3176 | if (!s1_end) | |
3177 | return true; | |
3178 | if (!s2_end) | |
3179 | return false; | |
3180 | return s1.index() < s2.index(); | |
3181 | } | |
3182 | ||
ab794b6b ILT |
3183 | // We sort all the sections with no names to the end. |
3184 | if (!s1.section_has_name() || !s2.section_has_name()) | |
3185 | { | |
3186 | if (s1.section_has_name()) | |
3187 | return true; | |
3188 | if (s2.section_has_name()) | |
3189 | return false; | |
3190 | return s1.index() < s2.index(); | |
3191 | } | |
2fd32231 | 3192 | |
ab794b6b | 3193 | // A section with a priority follows a section without a priority. |
ab794b6b ILT |
3194 | bool s1_has_priority = s1.has_priority(); |
3195 | bool s2_has_priority = s2.has_priority(); | |
3196 | if (s1_has_priority && !s2_has_priority) | |
2fd32231 | 3197 | return false; |
ab794b6b | 3198 | if (!s1_has_priority && s2_has_priority) |
2fd32231 ILT |
3199 | return true; |
3200 | ||
6e9ba2ca ST |
3201 | // Check if a section order exists for these sections through a section |
3202 | // ordering file. If sequence_num is 0, an order does not exist. | |
3203 | int sequence_num = s1.compare_section_ordering(s2); | |
3204 | if (sequence_num != 0) | |
3205 | return sequence_num == 1; | |
3206 | ||
2fd32231 ILT |
3207 | // Otherwise we sort by name. |
3208 | int compare = s1.section_name().compare(s2.section_name()); | |
3209 | if (compare != 0) | |
3210 | return compare < 0; | |
3211 | ||
3212 | // Otherwise we keep the input order. | |
3213 | return s1.index() < s2.index(); | |
3214 | } | |
3215 | ||
2a0ff005 DK |
3216 | // Return true if S1 should come before S2 in an .init_array or .fini_array |
3217 | // output section. | |
3218 | ||
3219 | bool | |
3220 | Output_section::Input_section_sort_init_fini_compare::operator()( | |
3221 | const Output_section::Input_section_sort_entry& s1, | |
3222 | const Output_section::Input_section_sort_entry& s2) const | |
3223 | { | |
3224 | // We sort all the sections with no names to the end. | |
3225 | if (!s1.section_has_name() || !s2.section_has_name()) | |
3226 | { | |
3227 | if (s1.section_has_name()) | |
3228 | return true; | |
3229 | if (s2.section_has_name()) | |
3230 | return false; | |
3231 | return s1.index() < s2.index(); | |
3232 | } | |
3233 | ||
3234 | // A section without a priority follows a section with a priority. | |
3235 | // This is the reverse of .ctors and .dtors sections. | |
3236 | bool s1_has_priority = s1.has_priority(); | |
3237 | bool s2_has_priority = s2.has_priority(); | |
3238 | if (s1_has_priority && !s2_has_priority) | |
3239 | return true; | |
3240 | if (!s1_has_priority && s2_has_priority) | |
3241 | return false; | |
3242 | ||
6e9ba2ca ST |
3243 | // Check if a section order exists for these sections through a section |
3244 | // ordering file. If sequence_num is 0, an order does not exist. | |
3245 | int sequence_num = s1.compare_section_ordering(s2); | |
3246 | if (sequence_num != 0) | |
3247 | return sequence_num == 1; | |
3248 | ||
2a0ff005 DK |
3249 | // Otherwise we sort by name. |
3250 | int compare = s1.section_name().compare(s2.section_name()); | |
3251 | if (compare != 0) | |
3252 | return compare < 0; | |
3253 | ||
3254 | // Otherwise we keep the input order. | |
3255 | return s1.index() < s2.index(); | |
3256 | } | |
3257 | ||
8fe2a369 ST |
3258 | // Return true if S1 should come before S2. Sections that do not match |
3259 | // any pattern in the section ordering file are placed ahead of the sections | |
3260 | // that match some pattern. | |
3261 | ||
6e9ba2ca ST |
3262 | bool |
3263 | Output_section::Input_section_sort_section_order_index_compare::operator()( | |
3264 | const Output_section::Input_section_sort_entry& s1, | |
3265 | const Output_section::Input_section_sort_entry& s2) const | |
3266 | { | |
8fe2a369 ST |
3267 | unsigned int s1_secn_index = s1.input_section().section_order_index(); |
3268 | unsigned int s2_secn_index = s2.input_section().section_order_index(); | |
6e9ba2ca | 3269 | |
8fe2a369 ST |
3270 | // Keep input order if section ordering cannot determine order. |
3271 | if (s1_secn_index == s2_secn_index) | |
3272 | return s1.index() < s2.index(); | |
3273 | ||
3274 | return s1_secn_index < s2_secn_index; | |
6e9ba2ca ST |
3275 | } |
3276 | ||
2fd32231 ILT |
3277 | // Sort the input sections attached to an output section. |
3278 | ||
3279 | void | |
3280 | Output_section::sort_attached_input_sections() | |
3281 | { | |
3282 | if (this->attached_input_sections_are_sorted_) | |
3283 | return; | |
3284 | ||
20e6d0d6 DK |
3285 | if (this->checkpoint_ != NULL |
3286 | && !this->checkpoint_->input_sections_saved()) | |
3287 | this->checkpoint_->save_input_sections(); | |
3288 | ||
2fd32231 ILT |
3289 | // The only thing we know about an input section is the object and |
3290 | // the section index. We need the section name. Recomputing this | |
3291 | // is slow but this is an unusual case. If this becomes a speed | |
3292 | // problem we can cache the names as required in Layout::layout. | |
3293 | ||
3294 | // We start by building a larger vector holding a copy of each | |
3295 | // Input_section, plus its current index in the list and its name. | |
3296 | std::vector<Input_section_sort_entry> sort_list; | |
3297 | ||
3298 | unsigned int i = 0; | |
3299 | for (Input_section_list::iterator p = this->input_sections_.begin(); | |
3300 | p != this->input_sections_.end(); | |
3301 | ++p, ++i) | |
6e9ba2ca ST |
3302 | sort_list.push_back(Input_section_sort_entry(*p, i, |
3303 | this->must_sort_attached_input_sections())); | |
2fd32231 ILT |
3304 | |
3305 | // Sort the input sections. | |
6e9ba2ca ST |
3306 | if (this->must_sort_attached_input_sections()) |
3307 | { | |
3308 | if (this->type() == elfcpp::SHT_PREINIT_ARRAY | |
3309 | || this->type() == elfcpp::SHT_INIT_ARRAY | |
3310 | || this->type() == elfcpp::SHT_FINI_ARRAY) | |
3311 | std::sort(sort_list.begin(), sort_list.end(), | |
3312 | Input_section_sort_init_fini_compare()); | |
3313 | else | |
3314 | std::sort(sort_list.begin(), sort_list.end(), | |
3315 | Input_section_sort_compare()); | |
3316 | } | |
2a0ff005 | 3317 | else |
6e9ba2ca ST |
3318 | { |
3319 | gold_assert(parameters->options().section_ordering_file()); | |
3320 | std::sort(sort_list.begin(), sort_list.end(), | |
3321 | Input_section_sort_section_order_index_compare()); | |
3322 | } | |
2fd32231 ILT |
3323 | |
3324 | // Copy the sorted input sections back to our list. | |
3325 | this->input_sections_.clear(); | |
3326 | for (std::vector<Input_section_sort_entry>::iterator p = sort_list.begin(); | |
3327 | p != sort_list.end(); | |
3328 | ++p) | |
3329 | this->input_sections_.push_back(p->input_section()); | |
6e9ba2ca | 3330 | sort_list.clear(); |
2fd32231 ILT |
3331 | |
3332 | // Remember that we sorted the input sections, since we might get | |
3333 | // called again. | |
3334 | this->attached_input_sections_are_sorted_ = true; | |
3335 | } | |
3336 | ||
61ba1cf9 ILT |
3337 | // Write the section header to *OSHDR. |
3338 | ||
3339 | template<int size, bool big_endian> | |
3340 | void | |
16649710 ILT |
3341 | Output_section::write_header(const Layout* layout, |
3342 | const Stringpool* secnamepool, | |
61ba1cf9 ILT |
3343 | elfcpp::Shdr_write<size, big_endian>* oshdr) const |
3344 | { | |
3345 | oshdr->put_sh_name(secnamepool->get_offset(this->name_)); | |
3346 | oshdr->put_sh_type(this->type_); | |
6a74a719 | 3347 | |
2ea97941 | 3348 | elfcpp::Elf_Xword flags = this->flags_; |
755ab8af | 3349 | if (this->info_section_ != NULL && this->info_uses_section_index_) |
2ea97941 ILT |
3350 | flags |= elfcpp::SHF_INFO_LINK; |
3351 | oshdr->put_sh_flags(flags); | |
6a74a719 | 3352 | |
61ba1cf9 ILT |
3353 | oshdr->put_sh_addr(this->address()); |
3354 | oshdr->put_sh_offset(this->offset()); | |
3355 | oshdr->put_sh_size(this->data_size()); | |
16649710 ILT |
3356 | if (this->link_section_ != NULL) |
3357 | oshdr->put_sh_link(this->link_section_->out_shndx()); | |
3358 | else if (this->should_link_to_symtab_) | |
3359 | oshdr->put_sh_link(layout->symtab_section()->out_shndx()); | |
3360 | else if (this->should_link_to_dynsym_) | |
3361 | oshdr->put_sh_link(layout->dynsym_section()->out_shndx()); | |
3362 | else | |
3363 | oshdr->put_sh_link(this->link_); | |
755ab8af | 3364 | |
2ea97941 | 3365 | elfcpp::Elf_Word info; |
16649710 | 3366 | if (this->info_section_ != NULL) |
755ab8af ILT |
3367 | { |
3368 | if (this->info_uses_section_index_) | |
2ea97941 | 3369 | info = this->info_section_->out_shndx(); |
755ab8af | 3370 | else |
2ea97941 | 3371 | info = this->info_section_->symtab_index(); |
755ab8af | 3372 | } |
6a74a719 | 3373 | else if (this->info_symndx_ != NULL) |
2ea97941 | 3374 | info = this->info_symndx_->symtab_index(); |
16649710 | 3375 | else |
2ea97941 ILT |
3376 | info = this->info_; |
3377 | oshdr->put_sh_info(info); | |
755ab8af | 3378 | |
61ba1cf9 ILT |
3379 | oshdr->put_sh_addralign(this->addralign_); |
3380 | oshdr->put_sh_entsize(this->entsize_); | |
a2fb1b05 ILT |
3381 | } |
3382 | ||
ead1e424 ILT |
3383 | // Write out the data. For input sections the data is written out by |
3384 | // Object::relocate, but we have to handle Output_section_data objects | |
3385 | // here. | |
3386 | ||
3387 | void | |
3388 | Output_section::do_write(Output_file* of) | |
3389 | { | |
96803768 ILT |
3390 | gold_assert(!this->requires_postprocessing()); |
3391 | ||
c0a62865 DK |
3392 | // If the target performs relaxation, we delay filler generation until now. |
3393 | gold_assert(!this->generate_code_fills_at_write_ || this->fills_.empty()); | |
3394 | ||
c51e6221 ILT |
3395 | off_t output_section_file_offset = this->offset(); |
3396 | for (Fill_list::iterator p = this->fills_.begin(); | |
3397 | p != this->fills_.end(); | |
3398 | ++p) | |
3399 | { | |
8851ecca | 3400 | std::string fill_data(parameters->target().code_fill(p->length())); |
c51e6221 | 3401 | of->write(output_section_file_offset + p->section_offset(), |
a445fddf | 3402 | fill_data.data(), fill_data.size()); |
c51e6221 ILT |
3403 | } |
3404 | ||
c0a62865 | 3405 | off_t off = this->offset() + this->first_input_offset_; |
ead1e424 ILT |
3406 | for (Input_section_list::iterator p = this->input_sections_.begin(); |
3407 | p != this->input_sections_.end(); | |
3408 | ++p) | |
c0a62865 DK |
3409 | { |
3410 | off_t aligned_off = align_address(off, p->addralign()); | |
3411 | if (this->generate_code_fills_at_write_ && (off != aligned_off)) | |
3412 | { | |
3413 | size_t fill_len = aligned_off - off; | |
3414 | std::string fill_data(parameters->target().code_fill(fill_len)); | |
3415 | of->write(off, fill_data.data(), fill_data.size()); | |
3416 | } | |
3417 | ||
3418 | p->write(of); | |
3419 | off = aligned_off + p->data_size(); | |
3420 | } | |
ead1e424 ILT |
3421 | } |
3422 | ||
96803768 ILT |
3423 | // If a section requires postprocessing, create the buffer to use. |
3424 | ||
3425 | void | |
3426 | Output_section::create_postprocessing_buffer() | |
3427 | { | |
3428 | gold_assert(this->requires_postprocessing()); | |
1bedcac5 ILT |
3429 | |
3430 | if (this->postprocessing_buffer_ != NULL) | |
3431 | return; | |
96803768 ILT |
3432 | |
3433 | if (!this->input_sections_.empty()) | |
3434 | { | |
3435 | off_t off = this->first_input_offset_; | |
3436 | for (Input_section_list::iterator p = this->input_sections_.begin(); | |
3437 | p != this->input_sections_.end(); | |
3438 | ++p) | |
3439 | { | |
3440 | off = align_address(off, p->addralign()); | |
3441 | p->finalize_data_size(); | |
3442 | off += p->data_size(); | |
3443 | } | |
3444 | this->set_current_data_size_for_child(off); | |
3445 | } | |
3446 | ||
3447 | off_t buffer_size = this->current_data_size_for_child(); | |
3448 | this->postprocessing_buffer_ = new unsigned char[buffer_size]; | |
3449 | } | |
3450 | ||
3451 | // Write all the data of an Output_section into the postprocessing | |
3452 | // buffer. This is used for sections which require postprocessing, | |
3453 | // such as compression. Input sections are handled by | |
3454 | // Object::Relocate. | |
3455 | ||
3456 | void | |
3457 | Output_section::write_to_postprocessing_buffer() | |
3458 | { | |
3459 | gold_assert(this->requires_postprocessing()); | |
3460 | ||
c0a62865 DK |
3461 | // If the target performs relaxation, we delay filler generation until now. |
3462 | gold_assert(!this->generate_code_fills_at_write_ || this->fills_.empty()); | |
3463 | ||
96803768 ILT |
3464 | unsigned char* buffer = this->postprocessing_buffer(); |
3465 | for (Fill_list::iterator p = this->fills_.begin(); | |
3466 | p != this->fills_.end(); | |
3467 | ++p) | |
3468 | { | |
8851ecca | 3469 | std::string fill_data(parameters->target().code_fill(p->length())); |
a445fddf ILT |
3470 | memcpy(buffer + p->section_offset(), fill_data.data(), |
3471 | fill_data.size()); | |
96803768 ILT |
3472 | } |
3473 | ||
3474 | off_t off = this->first_input_offset_; | |
3475 | for (Input_section_list::iterator p = this->input_sections_.begin(); | |
3476 | p != this->input_sections_.end(); | |
3477 | ++p) | |
3478 | { | |
c0a62865 DK |
3479 | off_t aligned_off = align_address(off, p->addralign()); |
3480 | if (this->generate_code_fills_at_write_ && (off != aligned_off)) | |
3481 | { | |
3482 | size_t fill_len = aligned_off - off; | |
3483 | std::string fill_data(parameters->target().code_fill(fill_len)); | |
3484 | memcpy(buffer + off, fill_data.data(), fill_data.size()); | |
3485 | } | |
3486 | ||
3487 | p->write_to_buffer(buffer + aligned_off); | |
3488 | off = aligned_off + p->data_size(); | |
96803768 ILT |
3489 | } |
3490 | } | |
3491 | ||
a445fddf ILT |
3492 | // Get the input sections for linker script processing. We leave |
3493 | // behind the Output_section_data entries. Note that this may be | |
3494 | // slightly incorrect for merge sections. We will leave them behind, | |
3495 | // but it is possible that the script says that they should follow | |
3496 | // some other input sections, as in: | |
3497 | // .rodata { *(.rodata) *(.rodata.cst*) } | |
3498 | // For that matter, we don't handle this correctly: | |
3499 | // .rodata { foo.o(.rodata.cst*) *(.rodata.cst*) } | |
3500 | // With luck this will never matter. | |
3501 | ||
3502 | uint64_t | |
3503 | Output_section::get_input_sections( | |
2ea97941 | 3504 | uint64_t address, |
a445fddf | 3505 | const std::string& fill, |
6625d24e | 3506 | std::list<Input_section>* input_sections) |
a445fddf | 3507 | { |
20e6d0d6 DK |
3508 | if (this->checkpoint_ != NULL |
3509 | && !this->checkpoint_->input_sections_saved()) | |
3510 | this->checkpoint_->save_input_sections(); | |
3511 | ||
0439c796 DK |
3512 | // Invalidate fast look-up maps. |
3513 | this->lookup_maps_->invalidate(); | |
c0a62865 | 3514 | |
2ea97941 | 3515 | uint64_t orig_address = address; |
a445fddf | 3516 | |
2ea97941 | 3517 | address = align_address(address, this->addralign()); |
a445fddf ILT |
3518 | |
3519 | Input_section_list remaining; | |
3520 | for (Input_section_list::iterator p = this->input_sections_.begin(); | |
3521 | p != this->input_sections_.end(); | |
3522 | ++p) | |
3523 | { | |
0439c796 DK |
3524 | if (p->is_input_section() |
3525 | || p->is_relaxed_input_section() | |
3526 | || p->is_merge_section()) | |
6625d24e | 3527 | input_sections->push_back(*p); |
a445fddf ILT |
3528 | else |
3529 | { | |
2ea97941 ILT |
3530 | uint64_t aligned_address = align_address(address, p->addralign()); |
3531 | if (aligned_address != address && !fill.empty()) | |
a445fddf ILT |
3532 | { |
3533 | section_size_type length = | |
2ea97941 | 3534 | convert_to_section_size_type(aligned_address - address); |
a445fddf ILT |
3535 | std::string this_fill; |
3536 | this_fill.reserve(length); | |
3537 | while (this_fill.length() + fill.length() <= length) | |
3538 | this_fill += fill; | |
3539 | if (this_fill.length() < length) | |
3540 | this_fill.append(fill, 0, length - this_fill.length()); | |
3541 | ||
3542 | Output_section_data* posd = new Output_data_const(this_fill, 0); | |
3543 | remaining.push_back(Input_section(posd)); | |
3544 | } | |
2ea97941 | 3545 | address = aligned_address; |
a445fddf ILT |
3546 | |
3547 | remaining.push_back(*p); | |
3548 | ||
3549 | p->finalize_data_size(); | |
2ea97941 | 3550 | address += p->data_size(); |
a445fddf ILT |
3551 | } |
3552 | } | |
3553 | ||
3554 | this->input_sections_.swap(remaining); | |
3555 | this->first_input_offset_ = 0; | |
3556 | ||
2ea97941 ILT |
3557 | uint64_t data_size = address - orig_address; |
3558 | this->set_current_data_size_for_child(data_size); | |
3559 | return data_size; | |
a445fddf ILT |
3560 | } |
3561 | ||
6625d24e DK |
3562 | // Add a script input section. SIS is an Output_section::Input_section, |
3563 | // which can be either a plain input section or a special input section like | |
3564 | // a relaxed input section. For a special input section, its size must be | |
3565 | // finalized. | |
a445fddf ILT |
3566 | |
3567 | void | |
6625d24e | 3568 | Output_section::add_script_input_section(const Input_section& sis) |
a445fddf | 3569 | { |
6625d24e DK |
3570 | uint64_t data_size = sis.data_size(); |
3571 | uint64_t addralign = sis.addralign(); | |
2ea97941 ILT |
3572 | if (addralign > this->addralign_) |
3573 | this->addralign_ = addralign; | |
a445fddf ILT |
3574 | |
3575 | off_t offset_in_section = this->current_data_size_for_child(); | |
3576 | off_t aligned_offset_in_section = align_address(offset_in_section, | |
2ea97941 | 3577 | addralign); |
a445fddf ILT |
3578 | |
3579 | this->set_current_data_size_for_child(aligned_offset_in_section | |
2ea97941 | 3580 | + data_size); |
a445fddf | 3581 | |
6625d24e | 3582 | this->input_sections_.push_back(sis); |
0439c796 DK |
3583 | |
3584 | // Update fast lookup maps if necessary. | |
3585 | if (this->lookup_maps_->is_valid()) | |
3586 | { | |
3587 | if (sis.is_merge_section()) | |
3588 | { | |
3589 | Output_merge_base* pomb = sis.output_merge_base(); | |
3590 | Merge_section_properties msp(pomb->is_string(), pomb->entsize(), | |
3591 | pomb->addralign()); | |
3592 | this->lookup_maps_->add_merge_section(msp, pomb); | |
3593 | for (Output_merge_base::Input_sections::const_iterator p = | |
3594 | pomb->input_sections_begin(); | |
3595 | p != pomb->input_sections_end(); | |
3596 | ++p) | |
3597 | this->lookup_maps_->add_merge_input_section(p->first, p->second, | |
3598 | pomb); | |
3599 | } | |
3600 | else if (sis.is_relaxed_input_section()) | |
3601 | { | |
3602 | Output_relaxed_input_section* poris = sis.relaxed_input_section(); | |
3603 | this->lookup_maps_->add_relaxed_input_section(poris->relobj(), | |
3604 | poris->shndx(), poris); | |
3605 | } | |
3606 | } | |
20e6d0d6 DK |
3607 | } |
3608 | ||
8923b24c | 3609 | // Save states for relaxation. |
20e6d0d6 DK |
3610 | |
3611 | void | |
3612 | Output_section::save_states() | |
3613 | { | |
3614 | gold_assert(this->checkpoint_ == NULL); | |
3615 | Checkpoint_output_section* checkpoint = | |
3616 | new Checkpoint_output_section(this->addralign_, this->flags_, | |
3617 | this->input_sections_, | |
3618 | this->first_input_offset_, | |
3619 | this->attached_input_sections_are_sorted_); | |
3620 | this->checkpoint_ = checkpoint; | |
3621 | gold_assert(this->fills_.empty()); | |
3622 | } | |
3623 | ||
8923b24c DK |
3624 | void |
3625 | Output_section::discard_states() | |
3626 | { | |
3627 | gold_assert(this->checkpoint_ != NULL); | |
3628 | delete this->checkpoint_; | |
3629 | this->checkpoint_ = NULL; | |
3630 | gold_assert(this->fills_.empty()); | |
3631 | ||
0439c796 DK |
3632 | // Simply invalidate the fast lookup maps since we do not keep |
3633 | // track of them. | |
3634 | this->lookup_maps_->invalidate(); | |
8923b24c DK |
3635 | } |
3636 | ||
20e6d0d6 DK |
3637 | void |
3638 | Output_section::restore_states() | |
3639 | { | |
3640 | gold_assert(this->checkpoint_ != NULL); | |
3641 | Checkpoint_output_section* checkpoint = this->checkpoint_; | |
3642 | ||
3643 | this->addralign_ = checkpoint->addralign(); | |
3644 | this->flags_ = checkpoint->flags(); | |
3645 | this->first_input_offset_ = checkpoint->first_input_offset(); | |
3646 | ||
3647 | if (!checkpoint->input_sections_saved()) | |
3648 | { | |
3649 | // If we have not copied the input sections, just resize it. | |
3650 | size_t old_size = checkpoint->input_sections_size(); | |
3651 | gold_assert(this->input_sections_.size() >= old_size); | |
3652 | this->input_sections_.resize(old_size); | |
3653 | } | |
3654 | else | |
3655 | { | |
3656 | // We need to copy the whole list. This is not efficient for | |
3657 | // extremely large output with hundreads of thousands of input | |
3658 | // objects. We may need to re-think how we should pass sections | |
3659 | // to scripts. | |
c0a62865 | 3660 | this->input_sections_ = *checkpoint->input_sections(); |
20e6d0d6 DK |
3661 | } |
3662 | ||
3663 | this->attached_input_sections_are_sorted_ = | |
3664 | checkpoint->attached_input_sections_are_sorted(); | |
c0a62865 | 3665 | |
0439c796 DK |
3666 | // Simply invalidate the fast lookup maps since we do not keep |
3667 | // track of them. | |
3668 | this->lookup_maps_->invalidate(); | |
a445fddf ILT |
3669 | } |
3670 | ||
8923b24c DK |
3671 | // Update the section offsets of input sections in this. This is required if |
3672 | // relaxation causes some input sections to change sizes. | |
3673 | ||
3674 | void | |
3675 | Output_section::adjust_section_offsets() | |
3676 | { | |
3677 | if (!this->section_offsets_need_adjustment_) | |
3678 | return; | |
3679 | ||
3680 | off_t off = 0; | |
3681 | for (Input_section_list::iterator p = this->input_sections_.begin(); | |
3682 | p != this->input_sections_.end(); | |
3683 | ++p) | |
3684 | { | |
3685 | off = align_address(off, p->addralign()); | |
3686 | if (p->is_input_section()) | |
3687 | p->relobj()->set_section_offset(p->shndx(), off); | |
3688 | off += p->data_size(); | |
3689 | } | |
3690 | ||
3691 | this->section_offsets_need_adjustment_ = false; | |
3692 | } | |
3693 | ||
7d9e3d98 ILT |
3694 | // Print to the map file. |
3695 | ||
3696 | void | |
3697 | Output_section::do_print_to_mapfile(Mapfile* mapfile) const | |
3698 | { | |
3699 | mapfile->print_output_section(this); | |
3700 | ||
3701 | for (Input_section_list::const_iterator p = this->input_sections_.begin(); | |
3702 | p != this->input_sections_.end(); | |
3703 | ++p) | |
3704 | p->print_to_mapfile(mapfile); | |
3705 | } | |
3706 | ||
38c5e8b4 ILT |
3707 | // Print stats for merge sections to stderr. |
3708 | ||
3709 | void | |
3710 | Output_section::print_merge_stats() | |
3711 | { | |
3712 | Input_section_list::iterator p; | |
3713 | for (p = this->input_sections_.begin(); | |
3714 | p != this->input_sections_.end(); | |
3715 | ++p) | |
3716 | p->print_merge_stats(this->name_); | |
3717 | } | |
3718 | ||
cdc29364 CC |
3719 | // Set a fixed layout for the section. Used for incremental update links. |
3720 | ||
3721 | void | |
3722 | Output_section::set_fixed_layout(uint64_t sh_addr, off_t sh_offset, | |
3723 | off_t sh_size, uint64_t sh_addralign) | |
3724 | { | |
3725 | this->addralign_ = sh_addralign; | |
3726 | this->set_current_data_size(sh_size); | |
3727 | if ((this->flags_ & elfcpp::SHF_ALLOC) != 0) | |
3728 | this->set_address(sh_addr); | |
3729 | this->set_file_offset(sh_offset); | |
3730 | this->finalize_data_size(); | |
3731 | this->free_list_.init(sh_size, false); | |
3732 | this->has_fixed_layout_ = true; | |
3733 | } | |
3734 | ||
3735 | // Reserve space within the fixed layout for the section. Used for | |
3736 | // incremental update links. | |
3737 | void | |
3738 | Output_section::reserve(uint64_t sh_offset, uint64_t sh_size) | |
3739 | { | |
3740 | this->free_list_.remove(sh_offset, sh_offset + sh_size); | |
3741 | } | |
3742 | ||
a2fb1b05 ILT |
3743 | // Output segment methods. |
3744 | ||
2ea97941 | 3745 | Output_segment::Output_segment(elfcpp::Elf_Word type, elfcpp::Elf_Word flags) |
22f0da72 | 3746 | : vaddr_(0), |
a2fb1b05 ILT |
3747 | paddr_(0), |
3748 | memsz_(0), | |
a445fddf ILT |
3749 | max_align_(0), |
3750 | min_p_align_(0), | |
a2fb1b05 ILT |
3751 | offset_(0), |
3752 | filesz_(0), | |
2ea97941 ILT |
3753 | type_(type), |
3754 | flags_(flags), | |
a445fddf | 3755 | is_max_align_known_(false), |
8a5e3e08 ILT |
3756 | are_addresses_set_(false), |
3757 | is_large_data_segment_(false) | |
a2fb1b05 | 3758 | { |
bb321bb1 ILT |
3759 | // The ELF ABI specifies that a PT_TLS segment always has PF_R as |
3760 | // the flags. | |
3761 | if (type == elfcpp::PT_TLS) | |
3762 | this->flags_ = elfcpp::PF_R; | |
a2fb1b05 ILT |
3763 | } |
3764 | ||
22f0da72 | 3765 | // Add an Output_section to a PT_LOAD Output_segment. |
a2fb1b05 ILT |
3766 | |
3767 | void | |
22f0da72 ILT |
3768 | Output_segment::add_output_section_to_load(Layout* layout, |
3769 | Output_section* os, | |
3770 | elfcpp::Elf_Word seg_flags) | |
a2fb1b05 | 3771 | { |
22f0da72 | 3772 | gold_assert(this->type() == elfcpp::PT_LOAD); |
a3ad94ed | 3773 | gold_assert((os->flags() & elfcpp::SHF_ALLOC) != 0); |
a445fddf | 3774 | gold_assert(!this->is_max_align_known_); |
8a5e3e08 | 3775 | gold_assert(os->is_large_data_section() == this->is_large_data_segment()); |
75f65a3e | 3776 | |
a192ba05 | 3777 | this->update_flags_for_output_section(seg_flags); |
75f65a3e | 3778 | |
22f0da72 ILT |
3779 | // We don't want to change the ordering if we have a linker script |
3780 | // with a SECTIONS clause. | |
3781 | Output_section_order order = os->order(); | |
3782 | if (layout->script_options()->saw_sections_clause()) | |
3783 | order = static_cast<Output_section_order>(0); | |
75f65a3e | 3784 | else |
22f0da72 | 3785 | gold_assert(order != ORDER_INVALID); |
54dc6425 | 3786 | |
22f0da72 ILT |
3787 | this->output_lists_[order].push_back(os); |
3788 | } | |
9f1d377b | 3789 | |
22f0da72 | 3790 | // Add an Output_section to a non-PT_LOAD Output_segment. |
1a2dff53 | 3791 | |
22f0da72 ILT |
3792 | void |
3793 | Output_segment::add_output_section_to_nonload(Output_section* os, | |
3794 | elfcpp::Elf_Word seg_flags) | |
3795 | { | |
3796 | gold_assert(this->type() != elfcpp::PT_LOAD); | |
3797 | gold_assert((os->flags() & elfcpp::SHF_ALLOC) != 0); | |
3798 | gold_assert(!this->is_max_align_known_); | |
1a2dff53 | 3799 | |
22f0da72 | 3800 | this->update_flags_for_output_section(seg_flags); |
9f1d377b | 3801 | |
22f0da72 ILT |
3802 | this->output_lists_[0].push_back(os); |
3803 | } | |
8a5e3e08 | 3804 | |
22f0da72 ILT |
3805 | // Remove an Output_section from this segment. It is an error if it |
3806 | // is not present. | |
8a5e3e08 | 3807 | |
22f0da72 ILT |
3808 | void |
3809 | Output_segment::remove_output_section(Output_section* os) | |
3810 | { | |
3811 | for (int i = 0; i < static_cast<int>(ORDER_MAX); ++i) | |
8a5e3e08 | 3812 | { |
22f0da72 ILT |
3813 | Output_data_list* pdl = &this->output_lists_[i]; |
3814 | for (Output_data_list::iterator p = pdl->begin(); p != pdl->end(); ++p) | |
8a5e3e08 | 3815 | { |
22f0da72 | 3816 | if (*p == os) |
8a5e3e08 | 3817 | { |
22f0da72 | 3818 | pdl->erase(p); |
8a5e3e08 ILT |
3819 | return; |
3820 | } | |
3821 | } | |
f5c870d2 | 3822 | } |
1650c4ff ILT |
3823 | gold_unreachable(); |
3824 | } | |
3825 | ||
a192ba05 ILT |
3826 | // Add an Output_data (which need not be an Output_section) to the |
3827 | // start of a segment. | |
75f65a3e ILT |
3828 | |
3829 | void | |
3830 | Output_segment::add_initial_output_data(Output_data* od) | |
3831 | { | |
a445fddf | 3832 | gold_assert(!this->is_max_align_known_); |
22f0da72 ILT |
3833 | Output_data_list::iterator p = this->output_lists_[0].begin(); |
3834 | this->output_lists_[0].insert(p, od); | |
3835 | } | |
3836 | ||
3837 | // Return true if this segment has any sections which hold actual | |
3838 | // data, rather than being a BSS section. | |
3839 | ||
3840 | bool | |
3841 | Output_segment::has_any_data_sections() const | |
3842 | { | |
3843 | for (int i = 0; i < static_cast<int>(ORDER_MAX); ++i) | |
3844 | { | |
3845 | const Output_data_list* pdl = &this->output_lists_[i]; | |
3846 | for (Output_data_list::const_iterator p = pdl->begin(); | |
3847 | p != pdl->end(); | |
3848 | ++p) | |
3849 | { | |
3850 | if (!(*p)->is_section()) | |
3851 | return true; | |
3852 | if ((*p)->output_section()->type() != elfcpp::SHT_NOBITS) | |
3853 | return true; | |
3854 | } | |
3855 | } | |
3856 | return false; | |
75f65a3e ILT |
3857 | } |
3858 | ||
5bc2f5be CC |
3859 | // Return whether the first data section (not counting TLS sections) |
3860 | // is a relro section. | |
9f1d377b ILT |
3861 | |
3862 | bool | |
3863 | Output_segment::is_first_section_relro() const | |
3864 | { | |
22f0da72 ILT |
3865 | for (int i = 0; i < static_cast<int>(ORDER_MAX); ++i) |
3866 | { | |
5bc2f5be CC |
3867 | if (i == static_cast<int>(ORDER_TLS_DATA) |
3868 | || i == static_cast<int>(ORDER_TLS_BSS)) | |
3869 | continue; | |
22f0da72 ILT |
3870 | const Output_data_list* pdl = &this->output_lists_[i]; |
3871 | if (!pdl->empty()) | |
3872 | { | |
3873 | Output_data* p = pdl->front(); | |
3874 | return p->is_section() && p->output_section()->is_relro(); | |
3875 | } | |
3876 | } | |
3877 | return false; | |
9f1d377b ILT |
3878 | } |
3879 | ||
75f65a3e | 3880 | // Return the maximum alignment of the Output_data in Output_segment. |
75f65a3e ILT |
3881 | |
3882 | uint64_t | |
a445fddf | 3883 | Output_segment::maximum_alignment() |
75f65a3e | 3884 | { |
a445fddf | 3885 | if (!this->is_max_align_known_) |
ead1e424 | 3886 | { |
22f0da72 ILT |
3887 | for (int i = 0; i < static_cast<int>(ORDER_MAX); ++i) |
3888 | { | |
3889 | const Output_data_list* pdl = &this->output_lists_[i]; | |
3890 | uint64_t addralign = Output_segment::maximum_alignment_list(pdl); | |
3891 | if (addralign > this->max_align_) | |
3892 | this->max_align_ = addralign; | |
3893 | } | |
a445fddf | 3894 | this->is_max_align_known_ = true; |
ead1e424 ILT |
3895 | } |
3896 | ||
a445fddf | 3897 | return this->max_align_; |
75f65a3e ILT |
3898 | } |
3899 | ||
ead1e424 ILT |
3900 | // Return the maximum alignment of a list of Output_data. |
3901 | ||
3902 | uint64_t | |
a445fddf | 3903 | Output_segment::maximum_alignment_list(const Output_data_list* pdl) |
ead1e424 ILT |
3904 | { |
3905 | uint64_t ret = 0; | |
3906 | for (Output_data_list::const_iterator p = pdl->begin(); | |
3907 | p != pdl->end(); | |
3908 | ++p) | |
3909 | { | |
2ea97941 ILT |
3910 | uint64_t addralign = (*p)->addralign(); |
3911 | if (addralign > ret) | |
3912 | ret = addralign; | |
ead1e424 ILT |
3913 | } |
3914 | return ret; | |
3915 | } | |
3916 | ||
22f0da72 | 3917 | // Return whether this segment has any dynamic relocs. |
4f4c5f80 | 3918 | |
22f0da72 ILT |
3919 | bool |
3920 | Output_segment::has_dynamic_reloc() const | |
4f4c5f80 | 3921 | { |
22f0da72 ILT |
3922 | for (int i = 0; i < static_cast<int>(ORDER_MAX); ++i) |
3923 | if (this->has_dynamic_reloc_list(&this->output_lists_[i])) | |
3924 | return true; | |
3925 | return false; | |
4f4c5f80 ILT |
3926 | } |
3927 | ||
22f0da72 | 3928 | // Return whether this Output_data_list has any dynamic relocs. |
4f4c5f80 | 3929 | |
22f0da72 ILT |
3930 | bool |
3931 | Output_segment::has_dynamic_reloc_list(const Output_data_list* pdl) const | |
4f4c5f80 | 3932 | { |
4f4c5f80 ILT |
3933 | for (Output_data_list::const_iterator p = pdl->begin(); |
3934 | p != pdl->end(); | |
3935 | ++p) | |
22f0da72 ILT |
3936 | if ((*p)->has_dynamic_reloc()) |
3937 | return true; | |
3938 | return false; | |
4f4c5f80 ILT |
3939 | } |
3940 | ||
a445fddf ILT |
3941 | // Set the section addresses for an Output_segment. If RESET is true, |
3942 | // reset the addresses first. ADDR is the address and *POFF is the | |
3943 | // file offset. Set the section indexes starting with *PSHNDX. | |
5bc2f5be CC |
3944 | // INCREASE_RELRO is the size of the portion of the first non-relro |
3945 | // section that should be included in the PT_GNU_RELRO segment. | |
3946 | // If this segment has relro sections, and has been aligned for | |
3947 | // that purpose, set *HAS_RELRO to TRUE. Return the address of | |
3948 | // the immediately following segment. Update *HAS_RELRO, *POFF, | |
3949 | // and *PSHNDX. | |
75f65a3e ILT |
3950 | |
3951 | uint64_t | |
cdc29364 | 3952 | Output_segment::set_section_addresses(Layout* layout, bool reset, |
1a2dff53 | 3953 | uint64_t addr, |
fd064a5b | 3954 | unsigned int* increase_relro, |
fc497986 | 3955 | bool* has_relro, |
1a2dff53 | 3956 | off_t* poff, |
ead1e424 | 3957 | unsigned int* pshndx) |
75f65a3e | 3958 | { |
a3ad94ed | 3959 | gold_assert(this->type_ == elfcpp::PT_LOAD); |
75f65a3e | 3960 | |
fc497986 | 3961 | uint64_t last_relro_pad = 0; |
1a2dff53 ILT |
3962 | off_t orig_off = *poff; |
3963 | ||
5bc2f5be CC |
3964 | bool in_tls = false; |
3965 | ||
1a2dff53 ILT |
3966 | // If we have relro sections, we need to pad forward now so that the |
3967 | // relro sections plus INCREASE_RELRO end on a common page boundary. | |
3968 | if (parameters->options().relro() | |
3969 | && this->is_first_section_relro() | |
3970 | && (!this->are_addresses_set_ || reset)) | |
3971 | { | |
3972 | uint64_t relro_size = 0; | |
3973 | off_t off = *poff; | |
fc497986 | 3974 | uint64_t max_align = 0; |
5bc2f5be | 3975 | for (int i = 0; i <= static_cast<int>(ORDER_RELRO_LAST); ++i) |
1a2dff53 | 3976 | { |
22f0da72 ILT |
3977 | Output_data_list* pdl = &this->output_lists_[i]; |
3978 | Output_data_list::iterator p; | |
3979 | for (p = pdl->begin(); p != pdl->end(); ++p) | |
1a2dff53 | 3980 | { |
22f0da72 ILT |
3981 | if (!(*p)->is_section()) |
3982 | break; | |
fc497986 CC |
3983 | uint64_t align = (*p)->addralign(); |
3984 | if (align > max_align) | |
3985 | max_align = align; | |
5bc2f5be CC |
3986 | if ((*p)->is_section_flag_set(elfcpp::SHF_TLS)) |
3987 | in_tls = true; | |
3988 | else if (in_tls) | |
3989 | { | |
3990 | // Align the first non-TLS section to the alignment | |
3991 | // of the TLS segment. | |
3992 | align = max_align; | |
3993 | in_tls = false; | |
3994 | } | |
fc497986 | 3995 | relro_size = align_address(relro_size, align); |
5bc2f5be CC |
3996 | // Ignore the size of the .tbss section. |
3997 | if ((*p)->is_section_flag_set(elfcpp::SHF_TLS) | |
3998 | && (*p)->is_section_type(elfcpp::SHT_NOBITS)) | |
3999 | continue; | |
22f0da72 ILT |
4000 | if ((*p)->is_address_valid()) |
4001 | relro_size += (*p)->data_size(); | |
4002 | else | |
4003 | { | |
4004 | // FIXME: This could be faster. | |
4005 | (*p)->set_address_and_file_offset(addr + relro_size, | |
4006 | off + relro_size); | |
4007 | relro_size += (*p)->data_size(); | |
4008 | (*p)->reset_address_and_file_offset(); | |
4009 | } | |
1a2dff53 | 4010 | } |
22f0da72 ILT |
4011 | if (p != pdl->end()) |
4012 | break; | |
1a2dff53 | 4013 | } |
fd064a5b | 4014 | relro_size += *increase_relro; |
fc497986 CC |
4015 | // Pad the total relro size to a multiple of the maximum |
4016 | // section alignment seen. | |
4017 | uint64_t aligned_size = align_address(relro_size, max_align); | |
4018 | // Note the amount of padding added after the last relro section. | |
4019 | last_relro_pad = aligned_size - relro_size; | |
fc497986 | 4020 | *has_relro = true; |
1a2dff53 ILT |
4021 | |
4022 | uint64_t page_align = parameters->target().common_pagesize(); | |
4023 | ||
4024 | // Align to offset N such that (N + RELRO_SIZE) % PAGE_ALIGN == 0. | |
fc497986 | 4025 | uint64_t desired_align = page_align - (aligned_size % page_align); |
1a2dff53 ILT |
4026 | if (desired_align < *poff % page_align) |
4027 | *poff += page_align - *poff % page_align; | |
4028 | *poff += desired_align - *poff % page_align; | |
4029 | addr += *poff - orig_off; | |
4030 | orig_off = *poff; | |
4031 | } | |
4032 | ||
a445fddf ILT |
4033 | if (!reset && this->are_addresses_set_) |
4034 | { | |
4035 | gold_assert(this->paddr_ == addr); | |
4036 | addr = this->vaddr_; | |
4037 | } | |
4038 | else | |
4039 | { | |
4040 | this->vaddr_ = addr; | |
4041 | this->paddr_ = addr; | |
4042 | this->are_addresses_set_ = true; | |
4043 | } | |
75f65a3e | 4044 | |
5bc2f5be | 4045 | in_tls = false; |
96a2b4e4 | 4046 | |
75f65a3e ILT |
4047 | this->offset_ = orig_off; |
4048 | ||
22f0da72 ILT |
4049 | off_t off = 0; |
4050 | uint64_t ret; | |
4051 | for (int i = 0; i < static_cast<int>(ORDER_MAX); ++i) | |
4052 | { | |
fc497986 CC |
4053 | if (i == static_cast<int>(ORDER_RELRO_LAST)) |
4054 | { | |
4055 | *poff += last_relro_pad; | |
4056 | addr += last_relro_pad; | |
fd064a5b CC |
4057 | if (this->output_lists_[i].empty()) |
4058 | { | |
4059 | // If there is nothing in the ORDER_RELRO_LAST list, | |
4060 | // the padding will occur at the end of the relro | |
4061 | // segment, and we need to add it to *INCREASE_RELRO. | |
4062 | *increase_relro += last_relro_pad; | |
4063 | } | |
fc497986 | 4064 | } |
5bc2f5be CC |
4065 | addr = this->set_section_list_addresses(layout, reset, |
4066 | &this->output_lists_[i], | |
4067 | addr, poff, pshndx, &in_tls); | |
22f0da72 ILT |
4068 | if (i < static_cast<int>(ORDER_SMALL_BSS)) |
4069 | { | |
4070 | this->filesz_ = *poff - orig_off; | |
4071 | off = *poff; | |
4072 | } | |
75f65a3e | 4073 | |
22f0da72 ILT |
4074 | ret = addr; |
4075 | } | |
96a2b4e4 ILT |
4076 | |
4077 | // If the last section was a TLS section, align upward to the | |
4078 | // alignment of the TLS segment, so that the overall size of the TLS | |
4079 | // segment is aligned. | |
4080 | if (in_tls) | |
4081 | { | |
4082 | uint64_t segment_align = layout->tls_segment()->maximum_alignment(); | |
4083 | *poff = align_address(*poff, segment_align); | |
4084 | } | |
4085 | ||
75f65a3e ILT |
4086 | this->memsz_ = *poff - orig_off; |
4087 | ||
4088 | // Ignore the file offset adjustments made by the BSS Output_data | |
4089 | // objects. | |
4090 | *poff = off; | |
61ba1cf9 ILT |
4091 | |
4092 | return ret; | |
75f65a3e ILT |
4093 | } |
4094 | ||
b8e6aad9 ILT |
4095 | // Set the addresses and file offsets in a list of Output_data |
4096 | // structures. | |
75f65a3e ILT |
4097 | |
4098 | uint64_t | |
cdc29364 | 4099 | Output_segment::set_section_list_addresses(Layout* layout, bool reset, |
96a2b4e4 | 4100 | Output_data_list* pdl, |
ead1e424 | 4101 | uint64_t addr, off_t* poff, |
96a2b4e4 | 4102 | unsigned int* pshndx, |
1a2dff53 | 4103 | bool* in_tls) |
75f65a3e | 4104 | { |
ead1e424 | 4105 | off_t startoff = *poff; |
cdc29364 CC |
4106 | // For incremental updates, we may allocate non-fixed sections from |
4107 | // free space in the file. This keeps track of the high-water mark. | |
4108 | off_t maxoff = startoff; | |
75f65a3e | 4109 | |
ead1e424 | 4110 | off_t off = startoff; |
75f65a3e ILT |
4111 | for (Output_data_list::iterator p = pdl->begin(); |
4112 | p != pdl->end(); | |
4113 | ++p) | |
4114 | { | |
a445fddf ILT |
4115 | if (reset) |
4116 | (*p)->reset_address_and_file_offset(); | |
4117 | ||
cdc29364 CC |
4118 | // When doing an incremental update or when using a linker script, |
4119 | // the section will most likely already have an address. | |
a445fddf | 4120 | if (!(*p)->is_address_valid()) |
3802b2dd | 4121 | { |
96a2b4e4 ILT |
4122 | uint64_t align = (*p)->addralign(); |
4123 | ||
4124 | if ((*p)->is_section_flag_set(elfcpp::SHF_TLS)) | |
4125 | { | |
4126 | // Give the first TLS section the alignment of the | |
4127 | // entire TLS segment. Otherwise the TLS segment as a | |
4128 | // whole may be misaligned. | |
4129 | if (!*in_tls) | |
4130 | { | |
4131 | Output_segment* tls_segment = layout->tls_segment(); | |
4132 | gold_assert(tls_segment != NULL); | |
4133 | uint64_t segment_align = tls_segment->maximum_alignment(); | |
4134 | gold_assert(segment_align >= align); | |
4135 | align = segment_align; | |
4136 | ||
4137 | *in_tls = true; | |
4138 | } | |
4139 | } | |
4140 | else | |
4141 | { | |
4142 | // If this is the first section after the TLS segment, | |
4143 | // align it to at least the alignment of the TLS | |
4144 | // segment, so that the size of the overall TLS segment | |
4145 | // is aligned. | |
4146 | if (*in_tls) | |
4147 | { | |
4148 | uint64_t segment_align = | |
4149 | layout->tls_segment()->maximum_alignment(); | |
4150 | if (segment_align > align) | |
4151 | align = segment_align; | |
4152 | ||
4153 | *in_tls = false; | |
4154 | } | |
4155 | } | |
4156 | ||
cdc29364 CC |
4157 | // FIXME: Need to handle TLS and .bss with incremental update. |
4158 | if (!parameters->incremental_update() | |
4159 | || (*p)->is_section_flag_set(elfcpp::SHF_TLS) | |
4160 | || (*p)->is_section_type(elfcpp::SHT_NOBITS)) | |
4161 | { | |
4162 | off = align_address(off, align); | |
4163 | (*p)->set_address_and_file_offset(addr + (off - startoff), off); | |
4164 | } | |
4165 | else | |
4166 | { | |
4167 | // Incremental update: allocate file space from free list. | |
4168 | (*p)->pre_finalize_data_size(); | |
4169 | off_t current_size = (*p)->current_data_size(); | |
4170 | off = layout->allocate(current_size, align, startoff); | |
4171 | if (off == -1) | |
4172 | { | |
4173 | gold_assert((*p)->output_section() != NULL); | |
4174 | gold_fatal(_("out of patch space for section %s; " | |
4175 | "relink with --incremental-full"), | |
4176 | (*p)->output_section()->name()); | |
4177 | } | |
4178 | (*p)->set_address_and_file_offset(addr + (off - startoff), off); | |
4179 | if ((*p)->data_size() > current_size) | |
4180 | { | |
4181 | gold_assert((*p)->output_section() != NULL); | |
4182 | gold_fatal(_("%s: section changed size; " | |
4183 | "relink with --incremental-full"), | |
4184 | (*p)->output_section()->name()); | |
4185 | } | |
4186 | } | |
3802b2dd | 4187 | } |
cdc29364 CC |
4188 | else if (parameters->incremental_update()) |
4189 | { | |
4190 | // For incremental updates, use the fixed offset for the | |
4191 | // high-water mark computation. | |
4192 | off = (*p)->offset(); | |
4193 | } | |
a445fddf ILT |
4194 | else |
4195 | { | |
4196 | // The script may have inserted a skip forward, but it | |
4197 | // better not have moved backward. | |
661be1e2 ILT |
4198 | if ((*p)->address() >= addr + (off - startoff)) |
4199 | off += (*p)->address() - (addr + (off - startoff)); | |
4200 | else | |
4201 | { | |
4202 | if (!layout->script_options()->saw_sections_clause()) | |
4203 | gold_unreachable(); | |
4204 | else | |
4205 | { | |
4206 | Output_section* os = (*p)->output_section(); | |
64b1ae37 DK |
4207 | |
4208 | // Cast to unsigned long long to avoid format warnings. | |
4209 | unsigned long long previous_dot = | |
4210 | static_cast<unsigned long long>(addr + (off - startoff)); | |
4211 | unsigned long long dot = | |
4212 | static_cast<unsigned long long>((*p)->address()); | |
4213 | ||
661be1e2 ILT |
4214 | if (os == NULL) |
4215 | gold_error(_("dot moves backward in linker script " | |
64b1ae37 | 4216 | "from 0x%llx to 0x%llx"), previous_dot, dot); |
661be1e2 ILT |
4217 | else |
4218 | gold_error(_("address of section '%s' moves backward " | |
4219 | "from 0x%llx to 0x%llx"), | |
64b1ae37 | 4220 | os->name(), previous_dot, dot); |
661be1e2 ILT |
4221 | } |
4222 | } | |
a445fddf ILT |
4223 | (*p)->set_file_offset(off); |
4224 | (*p)->finalize_data_size(); | |
4225 | } | |
ead1e424 | 4226 | |
cdc29364 CC |
4227 | gold_debug(DEBUG_INCREMENTAL, |
4228 | "set_section_list_addresses: %08lx %08lx %s", | |
4229 | static_cast<long>(off), | |
4230 | static_cast<long>((*p)->data_size()), | |
4231 | ((*p)->output_section() != NULL | |
4232 | ? (*p)->output_section()->name() : "(special)")); | |
4233 | ||
96a2b4e4 ILT |
4234 | // We want to ignore the size of a SHF_TLS or SHT_NOBITS |
4235 | // section. Such a section does not affect the size of a | |
4236 | // PT_LOAD segment. | |
4237 | if (!(*p)->is_section_flag_set(elfcpp::SHF_TLS) | |
ead1e424 ILT |
4238 | || !(*p)->is_section_type(elfcpp::SHT_NOBITS)) |
4239 | off += (*p)->data_size(); | |
75f65a3e | 4240 | |
cdc29364 CC |
4241 | if (off > maxoff) |
4242 | maxoff = off; | |
4243 | ||
ead1e424 ILT |
4244 | if ((*p)->is_section()) |
4245 | { | |
4246 | (*p)->set_out_shndx(*pshndx); | |
4247 | ++*pshndx; | |
4248 | } | |
75f65a3e ILT |
4249 | } |
4250 | ||
cdc29364 CC |
4251 | *poff = maxoff; |
4252 | return addr + (maxoff - startoff); | |
75f65a3e ILT |
4253 | } |
4254 | ||
4255 | // For a non-PT_LOAD segment, set the offset from the sections, if | |
1a2dff53 | 4256 | // any. Add INCREASE to the file size and the memory size. |
75f65a3e ILT |
4257 | |
4258 | void | |
1a2dff53 | 4259 | Output_segment::set_offset(unsigned int increase) |
75f65a3e | 4260 | { |
a3ad94ed | 4261 | gold_assert(this->type_ != elfcpp::PT_LOAD); |
75f65a3e | 4262 | |
a445fddf ILT |
4263 | gold_assert(!this->are_addresses_set_); |
4264 | ||
22f0da72 ILT |
4265 | // A non-load section only uses output_lists_[0]. |
4266 | ||
4267 | Output_data_list* pdl = &this->output_lists_[0]; | |
4268 | ||
4269 | if (pdl->empty()) | |
75f65a3e | 4270 | { |
1a2dff53 | 4271 | gold_assert(increase == 0); |
75f65a3e ILT |
4272 | this->vaddr_ = 0; |
4273 | this->paddr_ = 0; | |
a445fddf | 4274 | this->are_addresses_set_ = true; |
75f65a3e | 4275 | this->memsz_ = 0; |
a445fddf | 4276 | this->min_p_align_ = 0; |
75f65a3e ILT |
4277 | this->offset_ = 0; |
4278 | this->filesz_ = 0; | |
4279 | return; | |
4280 | } | |
4281 | ||
22f0da72 | 4282 | // Find the first and last section by address. |
5f1ab67a ILT |
4283 | const Output_data* first = NULL; |
4284 | const Output_data* last_data = NULL; | |
4285 | const Output_data* last_bss = NULL; | |
22f0da72 ILT |
4286 | for (Output_data_list::const_iterator p = pdl->begin(); |
4287 | p != pdl->end(); | |
4288 | ++p) | |
4289 | { | |
4290 | if (first == NULL | |
4291 | || (*p)->address() < first->address() | |
4292 | || ((*p)->address() == first->address() | |
4293 | && (*p)->data_size() < first->data_size())) | |
4294 | first = *p; | |
4295 | const Output_data** plast; | |
4296 | if ((*p)->is_section() | |
4297 | && (*p)->output_section()->type() == elfcpp::SHT_NOBITS) | |
4298 | plast = &last_bss; | |
4299 | else | |
4300 | plast = &last_data; | |
4301 | if (*plast == NULL | |
4302 | || (*p)->address() > (*plast)->address() | |
4303 | || ((*p)->address() == (*plast)->address() | |
4304 | && (*p)->data_size() > (*plast)->data_size())) | |
4305 | *plast = *p; | |
4306 | } | |
5f1ab67a | 4307 | |
75f65a3e | 4308 | this->vaddr_ = first->address(); |
a445fddf ILT |
4309 | this->paddr_ = (first->has_load_address() |
4310 | ? first->load_address() | |
4311 | : this->vaddr_); | |
4312 | this->are_addresses_set_ = true; | |
75f65a3e ILT |
4313 | this->offset_ = first->offset(); |
4314 | ||
22f0da72 | 4315 | if (last_data == NULL) |
75f65a3e ILT |
4316 | this->filesz_ = 0; |
4317 | else | |
5f1ab67a ILT |
4318 | this->filesz_ = (last_data->address() |
4319 | + last_data->data_size() | |
4320 | - this->vaddr_); | |
75f65a3e | 4321 | |
5f1ab67a | 4322 | const Output_data* last = last_bss != NULL ? last_bss : last_data; |
75f65a3e ILT |
4323 | this->memsz_ = (last->address() |
4324 | + last->data_size() | |
4325 | - this->vaddr_); | |
96a2b4e4 | 4326 | |
1a2dff53 ILT |
4327 | this->filesz_ += increase; |
4328 | this->memsz_ += increase; | |
4329 | ||
fd064a5b CC |
4330 | // If this is a RELRO segment, verify that the segment ends at a |
4331 | // page boundary. | |
4332 | if (this->type_ == elfcpp::PT_GNU_RELRO) | |
4333 | { | |
4334 | uint64_t page_align = parameters->target().common_pagesize(); | |
4335 | uint64_t segment_end = this->vaddr_ + this->memsz_; | |
cdc29364 CC |
4336 | if (parameters->incremental_update()) |
4337 | { | |
4338 | // The INCREASE_RELRO calculation is bypassed for an incremental | |
4339 | // update, so we need to adjust the segment size manually here. | |
4340 | segment_end = align_address(segment_end, page_align); | |
4341 | this->memsz_ = segment_end - this->vaddr_; | |
4342 | } | |
4343 | else | |
4344 | gold_assert(segment_end == align_address(segment_end, page_align)); | |
fd064a5b CC |
4345 | } |
4346 | ||
96a2b4e4 ILT |
4347 | // If this is a TLS segment, align the memory size. The code in |
4348 | // set_section_list ensures that the section after the TLS segment | |
4349 | // is aligned to give us room. | |
4350 | if (this->type_ == elfcpp::PT_TLS) | |
4351 | { | |
4352 | uint64_t segment_align = this->maximum_alignment(); | |
4353 | gold_assert(this->vaddr_ == align_address(this->vaddr_, segment_align)); | |
4354 | this->memsz_ = align_address(this->memsz_, segment_align); | |
4355 | } | |
75f65a3e ILT |
4356 | } |
4357 | ||
7bf1f802 ILT |
4358 | // Set the TLS offsets of the sections in the PT_TLS segment. |
4359 | ||
4360 | void | |
4361 | Output_segment::set_tls_offsets() | |
4362 | { | |
4363 | gold_assert(this->type_ == elfcpp::PT_TLS); | |
4364 | ||
22f0da72 ILT |
4365 | for (Output_data_list::iterator p = this->output_lists_[0].begin(); |
4366 | p != this->output_lists_[0].end(); | |
7bf1f802 ILT |
4367 | ++p) |
4368 | (*p)->set_tls_offset(this->vaddr_); | |
4369 | } | |
4370 | ||
22f0da72 | 4371 | // Return the load address of the first section. |
a445fddf ILT |
4372 | |
4373 | uint64_t | |
4374 | Output_segment::first_section_load_address() const | |
4375 | { | |
22f0da72 ILT |
4376 | for (int i = 0; i < static_cast<int>(ORDER_MAX); ++i) |
4377 | { | |
4378 | const Output_data_list* pdl = &this->output_lists_[i]; | |
4379 | for (Output_data_list::const_iterator p = pdl->begin(); | |
4380 | p != pdl->end(); | |
4381 | ++p) | |
4382 | { | |
4383 | if ((*p)->is_section()) | |
4384 | return ((*p)->has_load_address() | |
4385 | ? (*p)->load_address() | |
4386 | : (*p)->address()); | |
4387 | } | |
4388 | } | |
a445fddf ILT |
4389 | gold_unreachable(); |
4390 | } | |
4391 | ||
75f65a3e ILT |
4392 | // Return the number of Output_sections in an Output_segment. |
4393 | ||
4394 | unsigned int | |
4395 | Output_segment::output_section_count() const | |
4396 | { | |
22f0da72 ILT |
4397 | unsigned int ret = 0; |
4398 | for (int i = 0; i < static_cast<int>(ORDER_MAX); ++i) | |
4399 | ret += this->output_section_count_list(&this->output_lists_[i]); | |
4400 | return ret; | |
75f65a3e ILT |
4401 | } |
4402 | ||
4403 | // Return the number of Output_sections in an Output_data_list. | |
4404 | ||
4405 | unsigned int | |
4406 | Output_segment::output_section_count_list(const Output_data_list* pdl) const | |
4407 | { | |
4408 | unsigned int count = 0; | |
4409 | for (Output_data_list::const_iterator p = pdl->begin(); | |
4410 | p != pdl->end(); | |
4411 | ++p) | |
4412 | { | |
4413 | if ((*p)->is_section()) | |
4414 | ++count; | |
4415 | } | |
4416 | return count; | |
a2fb1b05 ILT |
4417 | } |
4418 | ||
1c4f3631 ILT |
4419 | // Return the section attached to the list segment with the lowest |
4420 | // load address. This is used when handling a PHDRS clause in a | |
4421 | // linker script. | |
4422 | ||
4423 | Output_section* | |
4424 | Output_segment::section_with_lowest_load_address() const | |
4425 | { | |
4426 | Output_section* found = NULL; | |
4427 | uint64_t found_lma = 0; | |
22f0da72 ILT |
4428 | for (int i = 0; i < static_cast<int>(ORDER_MAX); ++i) |
4429 | this->lowest_load_address_in_list(&this->output_lists_[i], &found, | |
4430 | &found_lma); | |
1c4f3631 ILT |
4431 | return found; |
4432 | } | |
4433 | ||
4434 | // Look through a list for a section with a lower load address. | |
4435 | ||
4436 | void | |
4437 | Output_segment::lowest_load_address_in_list(const Output_data_list* pdl, | |
4438 | Output_section** found, | |
4439 | uint64_t* found_lma) const | |
4440 | { | |
4441 | for (Output_data_list::const_iterator p = pdl->begin(); | |
4442 | p != pdl->end(); | |
4443 | ++p) | |
4444 | { | |
4445 | if (!(*p)->is_section()) | |
4446 | continue; | |
4447 | Output_section* os = static_cast<Output_section*>(*p); | |
4448 | uint64_t lma = (os->has_load_address() | |
4449 | ? os->load_address() | |
4450 | : os->address()); | |
4451 | if (*found == NULL || lma < *found_lma) | |
4452 | { | |
4453 | *found = os; | |
4454 | *found_lma = lma; | |
4455 | } | |
4456 | } | |
4457 | } | |
4458 | ||
61ba1cf9 ILT |
4459 | // Write the segment data into *OPHDR. |
4460 | ||
4461 | template<int size, bool big_endian> | |
4462 | void | |
ead1e424 | 4463 | Output_segment::write_header(elfcpp::Phdr_write<size, big_endian>* ophdr) |
61ba1cf9 ILT |
4464 | { |
4465 | ophdr->put_p_type(this->type_); | |
4466 | ophdr->put_p_offset(this->offset_); | |
4467 | ophdr->put_p_vaddr(this->vaddr_); | |
4468 | ophdr->put_p_paddr(this->paddr_); | |
4469 | ophdr->put_p_filesz(this->filesz_); | |
4470 | ophdr->put_p_memsz(this->memsz_); | |
4471 | ophdr->put_p_flags(this->flags_); | |
a445fddf | 4472 | ophdr->put_p_align(std::max(this->min_p_align_, this->maximum_alignment())); |
61ba1cf9 ILT |
4473 | } |
4474 | ||
4475 | // Write the section headers into V. | |
4476 | ||
4477 | template<int size, bool big_endian> | |
4478 | unsigned char* | |
16649710 ILT |
4479 | Output_segment::write_section_headers(const Layout* layout, |
4480 | const Stringpool* secnamepool, | |
ead1e424 | 4481 | unsigned char* v, |
ca09d69a | 4482 | unsigned int* pshndx) const |
5482377d | 4483 | { |
ead1e424 ILT |
4484 | // Every section that is attached to a segment must be attached to a |
4485 | // PT_LOAD segment, so we only write out section headers for PT_LOAD | |
4486 | // segments. | |
4487 | if (this->type_ != elfcpp::PT_LOAD) | |
4488 | return v; | |
4489 | ||
22f0da72 ILT |
4490 | for (int i = 0; i < static_cast<int>(ORDER_MAX); ++i) |
4491 | { | |
4492 | const Output_data_list* pdl = &this->output_lists_[i]; | |
4493 | v = this->write_section_headers_list<size, big_endian>(layout, | |
4494 | secnamepool, | |
4495 | pdl, | |
4496 | v, pshndx); | |
4497 | } | |
4498 | ||
61ba1cf9 ILT |
4499 | return v; |
4500 | } | |
4501 | ||
4502 | template<int size, bool big_endian> | |
4503 | unsigned char* | |
16649710 ILT |
4504 | Output_segment::write_section_headers_list(const Layout* layout, |
4505 | const Stringpool* secnamepool, | |
61ba1cf9 | 4506 | const Output_data_list* pdl, |
ead1e424 | 4507 | unsigned char* v, |
7d1a9ebb | 4508 | unsigned int* pshndx) const |
61ba1cf9 ILT |
4509 | { |
4510 | const int shdr_size = elfcpp::Elf_sizes<size>::shdr_size; | |
4511 | for (Output_data_list::const_iterator p = pdl->begin(); | |
4512 | p != pdl->end(); | |
4513 | ++p) | |
4514 | { | |
4515 | if ((*p)->is_section()) | |
4516 | { | |
5482377d | 4517 | const Output_section* ps = static_cast<const Output_section*>(*p); |
a3ad94ed | 4518 | gold_assert(*pshndx == ps->out_shndx()); |
61ba1cf9 | 4519 | elfcpp::Shdr_write<size, big_endian> oshdr(v); |
16649710 | 4520 | ps->write_header(layout, secnamepool, &oshdr); |
61ba1cf9 | 4521 | v += shdr_size; |
ead1e424 | 4522 | ++*pshndx; |
61ba1cf9 ILT |
4523 | } |
4524 | } | |
4525 | return v; | |
4526 | } | |
4527 | ||
7d9e3d98 ILT |
4528 | // Print the output sections to the map file. |
4529 | ||
4530 | void | |
4531 | Output_segment::print_sections_to_mapfile(Mapfile* mapfile) const | |
4532 | { | |
4533 | if (this->type() != elfcpp::PT_LOAD) | |
4534 | return; | |
22f0da72 ILT |
4535 | for (int i = 0; i < static_cast<int>(ORDER_MAX); ++i) |
4536 | this->print_section_list_to_mapfile(mapfile, &this->output_lists_[i]); | |
7d9e3d98 ILT |
4537 | } |
4538 | ||
4539 | // Print an output section list to the map file. | |
4540 | ||
4541 | void | |
4542 | Output_segment::print_section_list_to_mapfile(Mapfile* mapfile, | |
4543 | const Output_data_list* pdl) const | |
4544 | { | |
4545 | for (Output_data_list::const_iterator p = pdl->begin(); | |
4546 | p != pdl->end(); | |
4547 | ++p) | |
4548 | (*p)->print_to_mapfile(mapfile); | |
4549 | } | |
4550 | ||
a2fb1b05 ILT |
4551 | // Output_file methods. |
4552 | ||
14144f39 ILT |
4553 | Output_file::Output_file(const char* name) |
4554 | : name_(name), | |
61ba1cf9 ILT |
4555 | o_(-1), |
4556 | file_size_(0), | |
c420411f | 4557 | base_(NULL), |
516cb3d0 | 4558 | map_is_anonymous_(false), |
88597d34 | 4559 | map_is_allocated_(false), |
516cb3d0 | 4560 | is_temporary_(false) |
61ba1cf9 ILT |
4561 | { |
4562 | } | |
4563 | ||
404c2abb | 4564 | // Try to open an existing file. Returns false if the file doesn't |
aa92d6ed CC |
4565 | // exist, has a size of 0 or can't be mmapped. If BASE_NAME is not |
4566 | // NULL, open that file as the base for incremental linking, and | |
4567 | // copy its contents to the new output file. This routine can | |
4568 | // be called for incremental updates, in which case WRITABLE should | |
4569 | // be true, or by the incremental-dump utility, in which case | |
4570 | // WRITABLE should be false. | |
404c2abb ILT |
4571 | |
4572 | bool | |
aa92d6ed | 4573 | Output_file::open_base_file(const char* base_name, bool writable) |
404c2abb ILT |
4574 | { |
4575 | // The name "-" means "stdout". | |
4576 | if (strcmp(this->name_, "-") == 0) | |
4577 | return false; | |
4578 | ||
aa92d6ed CC |
4579 | bool use_base_file = base_name != NULL; |
4580 | if (!use_base_file) | |
4581 | base_name = this->name_; | |
4582 | else if (strcmp(base_name, this->name_) == 0) | |
4583 | gold_fatal(_("%s: incremental base and output file name are the same"), | |
4584 | base_name); | |
4585 | ||
404c2abb ILT |
4586 | // Don't bother opening files with a size of zero. |
4587 | struct stat s; | |
aa92d6ed CC |
4588 | if (::stat(base_name, &s) != 0) |
4589 | { | |
4590 | gold_info(_("%s: stat: %s"), base_name, strerror(errno)); | |
4591 | return false; | |
4592 | } | |
4593 | if (s.st_size == 0) | |
4594 | { | |
4595 | gold_info(_("%s: incremental base file is empty"), base_name); | |
4596 | return false; | |
4597 | } | |
4598 | ||
4599 | // If we're using a base file, we want to open it read-only. | |
4600 | if (use_base_file) | |
4601 | writable = false; | |
404c2abb | 4602 | |
aa92d6ed CC |
4603 | int oflags = writable ? O_RDWR : O_RDONLY; |
4604 | int o = open_descriptor(-1, base_name, oflags, 0); | |
404c2abb | 4605 | if (o < 0) |
aa92d6ed CC |
4606 | { |
4607 | gold_info(_("%s: open: %s"), base_name, strerror(errno)); | |
4608 | return false; | |
4609 | } | |
4610 | ||
4611 | // If the base file and the output file are different, open a | |
4612 | // new output file and read the contents from the base file into | |
4613 | // the newly-mapped region. | |
4614 | if (use_base_file) | |
4615 | { | |
4616 | this->open(s.st_size); | |
4617 | ssize_t len = ::read(o, this->base_, s.st_size); | |
4618 | if (len < 0) | |
4619 | { | |
4620 | gold_info(_("%s: read failed: %s"), base_name, strerror(errno)); | |
4621 | return false; | |
4622 | } | |
4623 | if (len < s.st_size) | |
4624 | { | |
4625 | gold_info(_("%s: file too short"), base_name); | |
4626 | return false; | |
4627 | } | |
4628 | ::close(o); | |
4629 | return true; | |
4630 | } | |
4631 | ||
404c2abb ILT |
4632 | this->o_ = o; |
4633 | this->file_size_ = s.st_size; | |
4634 | ||
aa92d6ed | 4635 | if (!this->map_no_anonymous(writable)) |
404c2abb ILT |
4636 | { |
4637 | release_descriptor(o, true); | |
4638 | this->o_ = -1; | |
4639 | this->file_size_ = 0; | |
4640 | return false; | |
4641 | } | |
4642 | ||
4643 | return true; | |
4644 | } | |
4645 | ||
61ba1cf9 ILT |
4646 | // Open the output file. |
4647 | ||
a2fb1b05 | 4648 | void |
61ba1cf9 | 4649 | Output_file::open(off_t file_size) |
a2fb1b05 | 4650 | { |
61ba1cf9 ILT |
4651 | this->file_size_ = file_size; |
4652 | ||
4e9d8586 ILT |
4653 | // Unlink the file first; otherwise the open() may fail if the file |
4654 | // is busy (e.g. it's an executable that's currently being executed). | |
4655 | // | |
4656 | // However, the linker may be part of a system where a zero-length | |
4657 | // file is created for it to write to, with tight permissions (gcc | |
4658 | // 2.95 did something like this). Unlinking the file would work | |
4659 | // around those permission controls, so we only unlink if the file | |
4660 | // has a non-zero size. We also unlink only regular files to avoid | |
4661 | // trouble with directories/etc. | |
4662 | // | |
4663 | // If we fail, continue; this command is merely a best-effort attempt | |
4664 | // to improve the odds for open(). | |
4665 | ||
42a1b686 | 4666 | // We let the name "-" mean "stdout" |
516cb3d0 | 4667 | if (!this->is_temporary_) |
42a1b686 | 4668 | { |
516cb3d0 ILT |
4669 | if (strcmp(this->name_, "-") == 0) |
4670 | this->o_ = STDOUT_FILENO; | |
4671 | else | |
4672 | { | |
4673 | struct stat s; | |
6a89f575 CC |
4674 | if (::stat(this->name_, &s) == 0 |
4675 | && (S_ISREG (s.st_mode) || S_ISLNK (s.st_mode))) | |
4676 | { | |
4677 | if (s.st_size != 0) | |
4678 | ::unlink(this->name_); | |
4679 | else if (!parameters->options().relocatable()) | |
4680 | { | |
4681 | // If we don't unlink the existing file, add execute | |
4682 | // permission where read permissions already exist | |
4683 | // and where the umask permits. | |
4684 | int mask = ::umask(0); | |
4685 | ::umask(mask); | |
4686 | s.st_mode |= (s.st_mode & 0444) >> 2; | |
4687 | ::chmod(this->name_, s.st_mode & ~mask); | |
4688 | } | |
4689 | } | |
516cb3d0 | 4690 | |
8851ecca | 4691 | int mode = parameters->options().relocatable() ? 0666 : 0777; |
2a00e4fb ILT |
4692 | int o = open_descriptor(-1, this->name_, O_RDWR | O_CREAT | O_TRUNC, |
4693 | mode); | |
516cb3d0 ILT |
4694 | if (o < 0) |
4695 | gold_fatal(_("%s: open: %s"), this->name_, strerror(errno)); | |
4696 | this->o_ = o; | |
4697 | } | |
42a1b686 | 4698 | } |
61ba1cf9 | 4699 | |
27bc2bce ILT |
4700 | this->map(); |
4701 | } | |
4702 | ||
4703 | // Resize the output file. | |
4704 | ||
4705 | void | |
4706 | Output_file::resize(off_t file_size) | |
4707 | { | |
c420411f ILT |
4708 | // If the mmap is mapping an anonymous memory buffer, this is easy: |
4709 | // just mremap to the new size. If it's mapping to a file, we want | |
4710 | // to unmap to flush to the file, then remap after growing the file. | |
4711 | if (this->map_is_anonymous_) | |
4712 | { | |
88597d34 ILT |
4713 | void* base; |
4714 | if (!this->map_is_allocated_) | |
4715 | { | |
4716 | base = ::mremap(this->base_, this->file_size_, file_size, | |
4717 | MREMAP_MAYMOVE); | |
4718 | if (base == MAP_FAILED) | |
4719 | gold_fatal(_("%s: mremap: %s"), this->name_, strerror(errno)); | |
4720 | } | |
4721 | else | |
4722 | { | |
4723 | base = realloc(this->base_, file_size); | |
4724 | if (base == NULL) | |
4725 | gold_nomem(); | |
4726 | if (file_size > this->file_size_) | |
4727 | memset(static_cast<char*>(base) + this->file_size_, 0, | |
4728 | file_size - this->file_size_); | |
4729 | } | |
c420411f ILT |
4730 | this->base_ = static_cast<unsigned char*>(base); |
4731 | this->file_size_ = file_size; | |
4732 | } | |
4733 | else | |
4734 | { | |
4735 | this->unmap(); | |
4736 | this->file_size_ = file_size; | |
aa92d6ed | 4737 | if (!this->map_no_anonymous(true)) |
fdcac5af | 4738 | gold_fatal(_("%s: mmap: %s"), this->name_, strerror(errno)); |
c420411f | 4739 | } |
27bc2bce ILT |
4740 | } |
4741 | ||
404c2abb ILT |
4742 | // Map an anonymous block of memory which will later be written to the |
4743 | // file. Return whether the map succeeded. | |
26736d8e | 4744 | |
404c2abb | 4745 | bool |
26736d8e ILT |
4746 | Output_file::map_anonymous() |
4747 | { | |
404c2abb ILT |
4748 | void* base = ::mmap(NULL, this->file_size_, PROT_READ | PROT_WRITE, |
4749 | MAP_PRIVATE | MAP_ANONYMOUS, -1, 0); | |
88597d34 | 4750 | if (base == MAP_FAILED) |
404c2abb | 4751 | { |
88597d34 ILT |
4752 | base = malloc(this->file_size_); |
4753 | if (base == NULL) | |
4754 | return false; | |
4755 | memset(base, 0, this->file_size_); | |
4756 | this->map_is_allocated_ = true; | |
404c2abb | 4757 | } |
88597d34 ILT |
4758 | this->base_ = static_cast<unsigned char*>(base); |
4759 | this->map_is_anonymous_ = true; | |
4760 | return true; | |
26736d8e ILT |
4761 | } |
4762 | ||
404c2abb | 4763 | // Map the file into memory. Return whether the mapping succeeded. |
aa92d6ed | 4764 | // If WRITABLE is true, map with write access. |
27bc2bce | 4765 | |
404c2abb | 4766 | bool |
aa92d6ed | 4767 | Output_file::map_no_anonymous(bool writable) |
27bc2bce | 4768 | { |
c420411f | 4769 | const int o = this->o_; |
61ba1cf9 | 4770 | |
c420411f ILT |
4771 | // If the output file is not a regular file, don't try to mmap it; |
4772 | // instead, we'll mmap a block of memory (an anonymous buffer), and | |
4773 | // then later write the buffer to the file. | |
4774 | void* base; | |
4775 | struct stat statbuf; | |
42a1b686 ILT |
4776 | if (o == STDOUT_FILENO || o == STDERR_FILENO |
4777 | || ::fstat(o, &statbuf) != 0 | |
516cb3d0 ILT |
4778 | || !S_ISREG(statbuf.st_mode) |
4779 | || this->is_temporary_) | |
404c2abb ILT |
4780 | return false; |
4781 | ||
4782 | // Ensure that we have disk space available for the file. If we | |
4783 | // don't do this, it is possible that we will call munmap, close, | |
4784 | // and exit with dirty buffers still in the cache with no assigned | |
4785 | // disk blocks. If the disk is out of space at that point, the | |
4786 | // output file will wind up incomplete, but we will have already | |
4787 | // exited. The alternative to fallocate would be to use fdatasync, | |
4788 | // but that would be a more significant performance hit. | |
aa92d6ed | 4789 | if (writable && ::posix_fallocate(o, 0, this->file_size_) < 0) |
404c2abb ILT |
4790 | gold_fatal(_("%s: %s"), this->name_, strerror(errno)); |
4791 | ||
4792 | // Map the file into memory. | |
aa92d6ed CC |
4793 | int prot = PROT_READ; |
4794 | if (writable) | |
4795 | prot |= PROT_WRITE; | |
4796 | base = ::mmap(NULL, this->file_size_, prot, MAP_SHARED, o, 0); | |
404c2abb ILT |
4797 | |
4798 | // The mmap call might fail because of file system issues: the file | |
4799 | // system might not support mmap at all, or it might not support | |
4800 | // mmap with PROT_WRITE. | |
61ba1cf9 | 4801 | if (base == MAP_FAILED) |
404c2abb ILT |
4802 | return false; |
4803 | ||
4804 | this->map_is_anonymous_ = false; | |
61ba1cf9 | 4805 | this->base_ = static_cast<unsigned char*>(base); |
404c2abb ILT |
4806 | return true; |
4807 | } | |
4808 | ||
4809 | // Map the file into memory. | |
4810 | ||
4811 | void | |
4812 | Output_file::map() | |
4813 | { | |
aa92d6ed | 4814 | if (this->map_no_anonymous(true)) |
404c2abb ILT |
4815 | return; |
4816 | ||
4817 | // The mmap call might fail because of file system issues: the file | |
4818 | // system might not support mmap at all, or it might not support | |
4819 | // mmap with PROT_WRITE. I'm not sure which errno values we will | |
4820 | // see in all cases, so if the mmap fails for any reason and we | |
4821 | // don't care about file contents, try for an anonymous map. | |
4822 | if (this->map_anonymous()) | |
4823 | return; | |
4824 | ||
4825 | gold_fatal(_("%s: mmap: failed to allocate %lu bytes for output file: %s"), | |
4826 | this->name_, static_cast<unsigned long>(this->file_size_), | |
4827 | strerror(errno)); | |
61ba1cf9 ILT |
4828 | } |
4829 | ||
c420411f | 4830 | // Unmap the file from memory. |
61ba1cf9 ILT |
4831 | |
4832 | void | |
c420411f | 4833 | Output_file::unmap() |
61ba1cf9 | 4834 | { |
88597d34 ILT |
4835 | if (this->map_is_anonymous_) |
4836 | { | |
4837 | // We've already written out the data, so there is no reason to | |
4838 | // waste time unmapping or freeing the memory. | |
4839 | } | |
4840 | else | |
4841 | { | |
4842 | if (::munmap(this->base_, this->file_size_) < 0) | |
4843 | gold_error(_("%s: munmap: %s"), this->name_, strerror(errno)); | |
4844 | } | |
61ba1cf9 | 4845 | this->base_ = NULL; |
c420411f ILT |
4846 | } |
4847 | ||
4848 | // Close the output file. | |
4849 | ||
4850 | void | |
4851 | Output_file::close() | |
4852 | { | |
4853 | // If the map isn't file-backed, we need to write it now. | |
516cb3d0 | 4854 | if (this->map_is_anonymous_ && !this->is_temporary_) |
c420411f ILT |
4855 | { |
4856 | size_t bytes_to_write = this->file_size_; | |
6d1e3092 | 4857 | size_t offset = 0; |
c420411f ILT |
4858 | while (bytes_to_write > 0) |
4859 | { | |
6d1e3092 CD |
4860 | ssize_t bytes_written = ::write(this->o_, this->base_ + offset, |
4861 | bytes_to_write); | |
c420411f ILT |
4862 | if (bytes_written == 0) |
4863 | gold_error(_("%s: write: unexpected 0 return-value"), this->name_); | |
4864 | else if (bytes_written < 0) | |
4865 | gold_error(_("%s: write: %s"), this->name_, strerror(errno)); | |
4866 | else | |
6d1e3092 CD |
4867 | { |
4868 | bytes_to_write -= bytes_written; | |
4869 | offset += bytes_written; | |
4870 | } | |
c420411f ILT |
4871 | } |
4872 | } | |
4873 | this->unmap(); | |
61ba1cf9 | 4874 | |
42a1b686 | 4875 | // We don't close stdout or stderr |
516cb3d0 ILT |
4876 | if (this->o_ != STDOUT_FILENO |
4877 | && this->o_ != STDERR_FILENO | |
4878 | && !this->is_temporary_) | |
42a1b686 ILT |
4879 | if (::close(this->o_) < 0) |
4880 | gold_error(_("%s: close: %s"), this->name_, strerror(errno)); | |
61ba1cf9 | 4881 | this->o_ = -1; |
a2fb1b05 ILT |
4882 | } |
4883 | ||
4884 | // Instantiate the templates we need. We could use the configure | |
4885 | // script to restrict this to only the ones for implemented targets. | |
4886 | ||
193a53d9 | 4887 | #ifdef HAVE_TARGET_32_LITTLE |
a2fb1b05 ILT |
4888 | template |
4889 | off_t | |
4890 | Output_section::add_input_section<32, false>( | |
6e9ba2ca | 4891 | Layout* layout, |
6fa2a40b | 4892 | Sized_relobj_file<32, false>* object, |
2ea97941 | 4893 | unsigned int shndx, |
a2fb1b05 | 4894 | const char* secname, |
730cdc88 | 4895 | const elfcpp::Shdr<32, false>& shdr, |
a445fddf ILT |
4896 | unsigned int reloc_shndx, |
4897 | bool have_sections_script); | |
193a53d9 | 4898 | #endif |
a2fb1b05 | 4899 | |
193a53d9 | 4900 | #ifdef HAVE_TARGET_32_BIG |
a2fb1b05 ILT |
4901 | template |
4902 | off_t | |
4903 | Output_section::add_input_section<32, true>( | |
6e9ba2ca | 4904 | Layout* layout, |
6fa2a40b | 4905 | Sized_relobj_file<32, true>* object, |
2ea97941 | 4906 | unsigned int shndx, |
a2fb1b05 | 4907 | const char* secname, |
730cdc88 | 4908 | const elfcpp::Shdr<32, true>& shdr, |
a445fddf ILT |
4909 | unsigned int reloc_shndx, |
4910 | bool have_sections_script); | |
193a53d9 | 4911 | #endif |
a2fb1b05 | 4912 | |
193a53d9 | 4913 | #ifdef HAVE_TARGET_64_LITTLE |
a2fb1b05 ILT |
4914 | template |
4915 | off_t | |
4916 | Output_section::add_input_section<64, false>( | |
6e9ba2ca | 4917 | Layout* layout, |
6fa2a40b | 4918 | Sized_relobj_file<64, false>* object, |
2ea97941 | 4919 | unsigned int shndx, |
a2fb1b05 | 4920 | const char* secname, |
730cdc88 | 4921 | const elfcpp::Shdr<64, false>& shdr, |
a445fddf ILT |
4922 | unsigned int reloc_shndx, |
4923 | bool have_sections_script); | |
193a53d9 | 4924 | #endif |
a2fb1b05 | 4925 | |
193a53d9 | 4926 | #ifdef HAVE_TARGET_64_BIG |
a2fb1b05 ILT |
4927 | template |
4928 | off_t | |
4929 | Output_section::add_input_section<64, true>( | |
6e9ba2ca | 4930 | Layout* layout, |
6fa2a40b | 4931 | Sized_relobj_file<64, true>* object, |
2ea97941 | 4932 | unsigned int shndx, |
a2fb1b05 | 4933 | const char* secname, |
730cdc88 | 4934 | const elfcpp::Shdr<64, true>& shdr, |
a445fddf ILT |
4935 | unsigned int reloc_shndx, |
4936 | bool have_sections_script); | |
193a53d9 | 4937 | #endif |
a2fb1b05 | 4938 | |
bbbfea06 CC |
4939 | #ifdef HAVE_TARGET_32_LITTLE |
4940 | template | |
4941 | class Output_reloc<elfcpp::SHT_REL, false, 32, false>; | |
4942 | #endif | |
4943 | ||
4944 | #ifdef HAVE_TARGET_32_BIG | |
4945 | template | |
4946 | class Output_reloc<elfcpp::SHT_REL, false, 32, true>; | |
4947 | #endif | |
4948 | ||
4949 | #ifdef HAVE_TARGET_64_LITTLE | |
4950 | template | |
4951 | class Output_reloc<elfcpp::SHT_REL, false, 64, false>; | |
4952 | #endif | |
4953 | ||
4954 | #ifdef HAVE_TARGET_64_BIG | |
4955 | template | |
4956 | class Output_reloc<elfcpp::SHT_REL, false, 64, true>; | |
4957 | #endif | |
4958 | ||
4959 | #ifdef HAVE_TARGET_32_LITTLE | |
4960 | template | |
4961 | class Output_reloc<elfcpp::SHT_REL, true, 32, false>; | |
4962 | #endif | |
4963 | ||
4964 | #ifdef HAVE_TARGET_32_BIG | |
4965 | template | |
4966 | class Output_reloc<elfcpp::SHT_REL, true, 32, true>; | |
4967 | #endif | |
4968 | ||
4969 | #ifdef HAVE_TARGET_64_LITTLE | |
4970 | template | |
4971 | class Output_reloc<elfcpp::SHT_REL, true, 64, false>; | |
4972 | #endif | |
4973 | ||
4974 | #ifdef HAVE_TARGET_64_BIG | |
4975 | template | |
4976 | class Output_reloc<elfcpp::SHT_REL, true, 64, true>; | |
4977 | #endif | |
4978 | ||
4979 | #ifdef HAVE_TARGET_32_LITTLE | |
4980 | template | |
4981 | class Output_reloc<elfcpp::SHT_RELA, false, 32, false>; | |
4982 | #endif | |
4983 | ||
4984 | #ifdef HAVE_TARGET_32_BIG | |
4985 | template | |
4986 | class Output_reloc<elfcpp::SHT_RELA, false, 32, true>; | |
4987 | #endif | |
4988 | ||
4989 | #ifdef HAVE_TARGET_64_LITTLE | |
4990 | template | |
4991 | class Output_reloc<elfcpp::SHT_RELA, false, 64, false>; | |
4992 | #endif | |
4993 | ||
4994 | #ifdef HAVE_TARGET_64_BIG | |
4995 | template | |
4996 | class Output_reloc<elfcpp::SHT_RELA, false, 64, true>; | |
4997 | #endif | |
4998 | ||
4999 | #ifdef HAVE_TARGET_32_LITTLE | |
5000 | template | |
5001 | class Output_reloc<elfcpp::SHT_RELA, true, 32, false>; | |
5002 | #endif | |
5003 | ||
5004 | #ifdef HAVE_TARGET_32_BIG | |
5005 | template | |
5006 | class Output_reloc<elfcpp::SHT_RELA, true, 32, true>; | |
5007 | #endif | |
5008 | ||
5009 | #ifdef HAVE_TARGET_64_LITTLE | |
5010 | template | |
5011 | class Output_reloc<elfcpp::SHT_RELA, true, 64, false>; | |
5012 | #endif | |
5013 | ||
5014 | #ifdef HAVE_TARGET_64_BIG | |
5015 | template | |
5016 | class Output_reloc<elfcpp::SHT_RELA, true, 64, true>; | |
5017 | #endif | |
5018 | ||
193a53d9 | 5019 | #ifdef HAVE_TARGET_32_LITTLE |
c06b7b0b ILT |
5020 | template |
5021 | class Output_data_reloc<elfcpp::SHT_REL, false, 32, false>; | |
193a53d9 | 5022 | #endif |
c06b7b0b | 5023 | |
193a53d9 | 5024 | #ifdef HAVE_TARGET_32_BIG |
c06b7b0b ILT |
5025 | template |
5026 | class Output_data_reloc<elfcpp::SHT_REL, false, 32, true>; | |
193a53d9 | 5027 | #endif |
c06b7b0b | 5028 | |
193a53d9 | 5029 | #ifdef HAVE_TARGET_64_LITTLE |
c06b7b0b ILT |
5030 | template |
5031 | class Output_data_reloc<elfcpp::SHT_REL, false, 64, false>; | |
193a53d9 | 5032 | #endif |
c06b7b0b | 5033 | |
193a53d9 | 5034 | #ifdef HAVE_TARGET_64_BIG |
c06b7b0b ILT |
5035 | template |
5036 | class Output_data_reloc<elfcpp::SHT_REL, false, 64, true>; | |
193a53d9 | 5037 | #endif |
c06b7b0b | 5038 | |
193a53d9 | 5039 | #ifdef HAVE_TARGET_32_LITTLE |
c06b7b0b ILT |
5040 | template |
5041 | class Output_data_reloc<elfcpp::SHT_REL, true, 32, false>; | |
193a53d9 | 5042 | #endif |
c06b7b0b | 5043 | |
193a53d9 | 5044 | #ifdef HAVE_TARGET_32_BIG |
c06b7b0b ILT |
5045 | template |
5046 | class Output_data_reloc<elfcpp::SHT_REL, true, 32, true>; | |
193a53d9 | 5047 | #endif |
c06b7b0b | 5048 | |
193a53d9 | 5049 | #ifdef HAVE_TARGET_64_LITTLE |
c06b7b0b ILT |
5050 | template |
5051 | class Output_data_reloc<elfcpp::SHT_REL, true, 64, false>; | |
193a53d9 | 5052 | #endif |
c06b7b0b | 5053 | |
193a53d9 | 5054 | #ifdef HAVE_TARGET_64_BIG |
c06b7b0b ILT |
5055 | template |
5056 | class Output_data_reloc<elfcpp::SHT_REL, true, 64, true>; | |
193a53d9 | 5057 | #endif |
c06b7b0b | 5058 | |
193a53d9 | 5059 | #ifdef HAVE_TARGET_32_LITTLE |
c06b7b0b ILT |
5060 | template |
5061 | class Output_data_reloc<elfcpp::SHT_RELA, false, 32, false>; | |
193a53d9 | 5062 | #endif |
c06b7b0b | 5063 | |
193a53d9 | 5064 | #ifdef HAVE_TARGET_32_BIG |
c06b7b0b ILT |
5065 | template |
5066 | class Output_data_reloc<elfcpp::SHT_RELA, false, 32, true>; | |
193a53d9 | 5067 | #endif |
c06b7b0b | 5068 | |
193a53d9 | 5069 | #ifdef HAVE_TARGET_64_LITTLE |
c06b7b0b ILT |
5070 | template |
5071 | class Output_data_reloc<elfcpp::SHT_RELA, false, 64, false>; | |
193a53d9 | 5072 | #endif |
c06b7b0b | 5073 | |
193a53d9 | 5074 | #ifdef HAVE_TARGET_64_BIG |
c06b7b0b ILT |
5075 | template |
5076 | class Output_data_reloc<elfcpp::SHT_RELA, false, 64, true>; | |
193a53d9 | 5077 | #endif |
c06b7b0b | 5078 | |
193a53d9 | 5079 | #ifdef HAVE_TARGET_32_LITTLE |
c06b7b0b ILT |
5080 | template |
5081 | class Output_data_reloc<elfcpp::SHT_RELA, true, 32, false>; | |
193a53d9 | 5082 | #endif |
c06b7b0b | 5083 | |
193a53d9 | 5084 | #ifdef HAVE_TARGET_32_BIG |
c06b7b0b ILT |
5085 | template |
5086 | class Output_data_reloc<elfcpp::SHT_RELA, true, 32, true>; | |
193a53d9 | 5087 | #endif |
c06b7b0b | 5088 | |
193a53d9 | 5089 | #ifdef HAVE_TARGET_64_LITTLE |
c06b7b0b ILT |
5090 | template |
5091 | class Output_data_reloc<elfcpp::SHT_RELA, true, 64, false>; | |
193a53d9 | 5092 | #endif |
c06b7b0b | 5093 | |
193a53d9 | 5094 | #ifdef HAVE_TARGET_64_BIG |
c06b7b0b ILT |
5095 | template |
5096 | class Output_data_reloc<elfcpp::SHT_RELA, true, 64, true>; | |
193a53d9 | 5097 | #endif |
c06b7b0b | 5098 | |
6a74a719 ILT |
5099 | #ifdef HAVE_TARGET_32_LITTLE |
5100 | template | |
5101 | class Output_relocatable_relocs<elfcpp::SHT_REL, 32, false>; | |
5102 | #endif | |
5103 | ||
5104 | #ifdef HAVE_TARGET_32_BIG | |
5105 | template | |
5106 | class Output_relocatable_relocs<elfcpp::SHT_REL, 32, true>; | |
5107 | #endif | |
5108 | ||
5109 | #ifdef HAVE_TARGET_64_LITTLE | |
5110 | template | |
5111 | class Output_relocatable_relocs<elfcpp::SHT_REL, 64, false>; | |
5112 | #endif | |
5113 | ||
5114 | #ifdef HAVE_TARGET_64_BIG | |
5115 | template | |
5116 | class Output_relocatable_relocs<elfcpp::SHT_REL, 64, true>; | |
5117 | #endif | |
5118 | ||
5119 | #ifdef HAVE_TARGET_32_LITTLE | |
5120 | template | |
5121 | class Output_relocatable_relocs<elfcpp::SHT_RELA, 32, false>; | |
5122 | #endif | |
5123 | ||
5124 | #ifdef HAVE_TARGET_32_BIG | |
5125 | template | |
5126 | class Output_relocatable_relocs<elfcpp::SHT_RELA, 32, true>; | |
5127 | #endif | |
5128 | ||
5129 | #ifdef HAVE_TARGET_64_LITTLE | |
5130 | template | |
5131 | class Output_relocatable_relocs<elfcpp::SHT_RELA, 64, false>; | |
5132 | #endif | |
5133 | ||
5134 | #ifdef HAVE_TARGET_64_BIG | |
5135 | template | |
5136 | class Output_relocatable_relocs<elfcpp::SHT_RELA, 64, true>; | |
5137 | #endif | |
5138 | ||
5139 | #ifdef HAVE_TARGET_32_LITTLE | |
5140 | template | |
5141 | class Output_data_group<32, false>; | |
5142 | #endif | |
5143 | ||
5144 | #ifdef HAVE_TARGET_32_BIG | |
5145 | template | |
5146 | class Output_data_group<32, true>; | |
5147 | #endif | |
5148 | ||
5149 | #ifdef HAVE_TARGET_64_LITTLE | |
5150 | template | |
5151 | class Output_data_group<64, false>; | |
5152 | #endif | |
5153 | ||
5154 | #ifdef HAVE_TARGET_64_BIG | |
5155 | template | |
5156 | class Output_data_group<64, true>; | |
5157 | #endif | |
5158 | ||
193a53d9 | 5159 | #ifdef HAVE_TARGET_32_LITTLE |
ead1e424 | 5160 | template |
dbe717ef | 5161 | class Output_data_got<32, false>; |
193a53d9 | 5162 | #endif |
ead1e424 | 5163 | |
193a53d9 | 5164 | #ifdef HAVE_TARGET_32_BIG |
ead1e424 | 5165 | template |
dbe717ef | 5166 | class Output_data_got<32, true>; |
193a53d9 | 5167 | #endif |
ead1e424 | 5168 | |
193a53d9 | 5169 | #ifdef HAVE_TARGET_64_LITTLE |
ead1e424 | 5170 | template |
dbe717ef | 5171 | class Output_data_got<64, false>; |
193a53d9 | 5172 | #endif |
ead1e424 | 5173 | |
193a53d9 | 5174 | #ifdef HAVE_TARGET_64_BIG |
ead1e424 | 5175 | template |
dbe717ef | 5176 | class Output_data_got<64, true>; |
193a53d9 | 5177 | #endif |
ead1e424 | 5178 | |
a2fb1b05 | 5179 | } // End namespace gold. |