]> git.ipfire.org Git - thirdparty/binutils-gdb.git/blob - gold/fileread.cc
Don't include options.h in fileread.h. Remove General_options
[thirdparty/binutils-gdb.git] / gold / fileread.cc
1 // fileread.cc -- read files for gold
2
3 // Copyright 2006, 2007 Free Software Foundation, Inc.
4 // Written by Ian Lance Taylor <iant@google.com>.
5
6 // This file is part of gold.
7
8 // This program is free software; you can redistribute it and/or modify
9 // it under the terms of the GNU General Public License as published by
10 // the Free Software Foundation; either version 3 of the License, or
11 // (at your option) any later version.
12
13 // This program is distributed in the hope that it will be useful,
14 // but WITHOUT ANY WARRANTY; without even the implied warranty of
15 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 // GNU General Public License for more details.
17
18 // You should have received a copy of the GNU General Public License
19 // along with this program; if not, write to the Free Software
20 // Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
21 // MA 02110-1301, USA.
22
23 #include "gold.h"
24
25 #include <cstring>
26 #include <cerrno>
27 #include <fcntl.h>
28 #include <unistd.h>
29 #include <sys/mman.h>
30 #include <sys/uio.h>
31 #include "filenames.h"
32
33 #include "options.h"
34 #include "dirsearch.h"
35 #include "fileread.h"
36
37 namespace gold
38 {
39
40 // Class File_read::View.
41
42 File_read::View::~View()
43 {
44 gold_assert(!this->is_locked());
45 if (!this->mapped_)
46 delete[] this->data_;
47 else
48 {
49 if (::munmap(const_cast<unsigned char*>(this->data_), this->size_) != 0)
50 gold_warning(_("munmap failed: %s"), strerror(errno));
51
52 File_read::current_mapped_bytes -= this->size_;
53 }
54 }
55
56 void
57 File_read::View::lock()
58 {
59 ++this->lock_count_;
60 }
61
62 void
63 File_read::View::unlock()
64 {
65 gold_assert(this->lock_count_ > 0);
66 --this->lock_count_;
67 }
68
69 bool
70 File_read::View::is_locked()
71 {
72 return this->lock_count_ > 0;
73 }
74
75 // Class File_read.
76
77 // The File_read static variables.
78 unsigned long long File_read::total_mapped_bytes;
79 unsigned long long File_read::current_mapped_bytes;
80 unsigned long long File_read::maximum_mapped_bytes;
81
82 // The File_read class is designed to support file descriptor caching,
83 // but this is not currently implemented.
84
85 File_read::~File_read()
86 {
87 gold_assert(this->token_.is_writable());
88 if (this->descriptor_ >= 0)
89 {
90 if (close(this->descriptor_) < 0)
91 gold_warning(_("close of %s failed: %s"),
92 this->name_.c_str(), strerror(errno));
93 this->descriptor_ = -1;
94 }
95 this->name_.clear();
96 this->clear_views(true);
97 }
98
99 // Open the file.
100
101 bool
102 File_read::open(const Task* task, const std::string& name)
103 {
104 gold_assert(this->token_.is_writable()
105 && this->descriptor_ < 0
106 && this->name_.empty());
107 this->name_ = name;
108
109 this->descriptor_ = ::open(this->name_.c_str(), O_RDONLY);
110
111 if (this->descriptor_ >= 0)
112 {
113 struct stat s;
114 if (::fstat(this->descriptor_, &s) < 0)
115 gold_error(_("%s: fstat failed: %s"),
116 this->name_.c_str(), strerror(errno));
117 this->size_ = s.st_size;
118 }
119
120 this->token_.add_writer(task);
121
122 return this->descriptor_ >= 0;
123 }
124
125 // Open the file for testing purposes.
126
127 bool
128 File_read::open(const Task* task, const std::string& name,
129 const unsigned char* contents, off_t size)
130 {
131 gold_assert(this->token_.is_writable()
132 && this->descriptor_ < 0
133 && this->name_.empty());
134 this->name_ = name;
135 this->contents_ = contents;
136 this->size_ = size;
137 this->token_.add_writer(task);
138 return true;
139 }
140
141 // Release the file. This is called when we are done with the file in
142 // a Task.
143
144 void
145 File_read::release()
146 {
147 gold_assert(this->is_locked());
148
149 File_read::total_mapped_bytes += this->mapped_bytes_;
150 File_read::current_mapped_bytes += this->mapped_bytes_;
151 this->mapped_bytes_ = 0;
152 if (File_read::current_mapped_bytes > File_read::maximum_mapped_bytes)
153 File_read::maximum_mapped_bytes = File_read::current_mapped_bytes;
154
155 this->clear_views(false);
156
157 this->released_ = true;
158 }
159
160 // Lock the file.
161
162 void
163 File_read::lock(const Task* task)
164 {
165 gold_assert(this->released_);
166 this->token_.add_writer(task);
167 this->released_ = false;
168 }
169
170 // Unlock the file.
171
172 void
173 File_read::unlock(const Task* task)
174 {
175 this->release();
176 this->token_.remove_writer(task);
177 }
178
179 // Return whether the file is locked.
180
181 bool
182 File_read::is_locked() const
183 {
184 if (!this->token_.is_writable())
185 return true;
186 // The file is not locked, so it should have been released.
187 gold_assert(this->released_);
188 return false;
189 }
190
191 // See if we have a view which covers the file starting at START for
192 // SIZE bytes. Return a pointer to the View if found, NULL if not.
193
194 inline File_read::View*
195 File_read::find_view(off_t start, section_size_type size) const
196 {
197 off_t page = File_read::page_offset(start);
198
199 Views::const_iterator p = this->views_.lower_bound(page);
200 if (p == this->views_.end() || p->first > page)
201 {
202 if (p == this->views_.begin())
203 return NULL;
204 --p;
205 }
206
207 if (p->second->start() + static_cast<off_t>(p->second->size())
208 < start + static_cast<off_t>(size))
209 return NULL;
210
211 p->second->set_accessed();
212
213 return p->second;
214 }
215
216 // Read SIZE bytes from the file starting at offset START. Read into
217 // the buffer at P.
218
219 void
220 File_read::do_read(off_t start, section_size_type size, void* p) const
221 {
222 ssize_t bytes;
223 if (this->contents_ != NULL)
224 {
225 bytes = this->size_ - start;
226 if (static_cast<section_size_type>(bytes) >= size)
227 {
228 memcpy(p, this->contents_ + start, size);
229 return;
230 }
231 }
232 else
233 {
234 bytes = ::pread(this->descriptor_, p, size, start);
235 if (static_cast<section_size_type>(bytes) == size)
236 return;
237
238 if (bytes < 0)
239 {
240 gold_fatal(_("%s: pread failed: %s"),
241 this->filename().c_str(), strerror(errno));
242 return;
243 }
244 }
245
246 gold_fatal(_("%s: file too short: read only %lld of %lld bytes at %lld"),
247 this->filename().c_str(),
248 static_cast<long long>(bytes),
249 static_cast<long long>(size),
250 static_cast<long long>(start));
251 }
252
253 // Read data from the file.
254
255 void
256 File_read::read(off_t start, section_size_type size, void* p) const
257 {
258 const File_read::View* pv = this->find_view(start, size);
259 if (pv != NULL)
260 {
261 memcpy(p, pv->data() + (start - pv->start()), size);
262 return;
263 }
264
265 this->do_read(start, size, p);
266 }
267
268 // Find an existing view or make a new one.
269
270 File_read::View*
271 File_read::find_or_make_view(off_t start, section_size_type size, bool cache)
272 {
273 gold_assert(!this->token_.is_writable());
274 this->released_ = false;
275
276 File_read::View* v = this->find_view(start, size);
277 if (v != NULL)
278 {
279 if (cache)
280 v->set_cache();
281 return v;
282 }
283
284 off_t poff = File_read::page_offset(start);
285
286 File_read::View* const vnull = NULL;
287 std::pair<Views::iterator, bool> ins =
288 this->views_.insert(std::make_pair(poff, vnull));
289
290 if (!ins.second)
291 {
292 // There was an existing view at this offset. It must not be
293 // large enough. We can't delete it here, since something might
294 // be using it; put it on a list to be deleted when the file is
295 // unlocked.
296 v = ins.first->second;
297 gold_assert(v->size() - (start - v->start()) < size);
298 if (v->should_cache())
299 cache = true;
300 v->clear_cache();
301 this->saved_views_.push_back(v);
302 }
303
304 // We need to map data from the file.
305
306 section_size_type psize = File_read::pages(size + (start - poff));
307
308 if (poff + static_cast<off_t>(psize) >= this->size_)
309 {
310 psize = this->size_ - poff;
311 gold_assert(psize >= size);
312 }
313
314 if (this->contents_ != NULL)
315 {
316 unsigned char* p = new unsigned char[psize];
317 this->do_read(poff, psize, p);
318 v = new File_read::View(poff, psize, p, cache, false);
319 }
320 else
321 {
322 void* p = ::mmap(NULL, psize, PROT_READ, MAP_PRIVATE,
323 this->descriptor_, poff);
324 if (p == MAP_FAILED)
325 gold_fatal(_("%s: mmap offset %lld size %lld failed: %s"),
326 this->filename().c_str(),
327 static_cast<long long>(poff),
328 static_cast<long long>(psize),
329 strerror(errno));
330
331 this->mapped_bytes_ += psize;
332
333 const unsigned char* pbytes = static_cast<const unsigned char*>(p);
334 v = new File_read::View(poff, psize, pbytes, cache, true);
335 }
336
337 ins.first->second = v;
338 return v;
339 }
340
341 // Get a view into the file.
342
343 const unsigned char*
344 File_read::get_view(off_t start, section_size_type size, bool cache)
345 {
346 File_read::View* pv = this->find_or_make_view(start, size, cache);
347 return pv->data() + (start - pv->start());
348 }
349
350 File_view*
351 File_read::get_lasting_view(off_t start, section_size_type size, bool cache)
352 {
353 File_read::View* pv = this->find_or_make_view(start, size, cache);
354 pv->lock();
355 return new File_view(*this, pv, pv->data() + (start - pv->start()));
356 }
357
358 // Use readv to read COUNT entries from RM starting at START. BASE
359 // must be added to all file offsets in RM.
360
361 void
362 File_read::do_readv(off_t base, const Read_multiple& rm, size_t start,
363 size_t count)
364 {
365 unsigned char discard[File_read::page_size];
366 iovec iov[File_read::max_readv_entries * 2];
367 size_t iov_index = 0;
368
369 off_t first_offset = rm[start].file_offset;
370 off_t last_offset = first_offset;
371 ssize_t want = 0;
372 for (size_t i = 0; i < count; ++i)
373 {
374 const Read_multiple_entry& i_entry(rm[start + i]);
375
376 if (i_entry.file_offset > last_offset)
377 {
378 size_t skip = i_entry.file_offset - last_offset;
379 gold_assert(skip <= sizeof discard);
380
381 iov[iov_index].iov_base = discard;
382 iov[iov_index].iov_len = skip;
383 ++iov_index;
384
385 want += skip;
386 }
387
388 iov[iov_index].iov_base = i_entry.buffer;
389 iov[iov_index].iov_len = i_entry.size;
390 ++iov_index;
391
392 want += i_entry.size;
393
394 last_offset = i_entry.file_offset + i_entry.size;
395 }
396
397 gold_assert(iov_index < sizeof iov / sizeof iov[0]);
398
399 if (::lseek(this->descriptor_, base + first_offset, SEEK_SET) < 0)
400 gold_fatal(_("%s: lseek failed: %s"),
401 this->filename().c_str(), strerror(errno));
402
403 ssize_t got = ::readv(this->descriptor_, iov, iov_index);
404
405 if (got < 0)
406 gold_fatal(_("%s: readv failed: %s"),
407 this->filename().c_str(), strerror(errno));
408 if (got != want)
409 gold_fatal(_("%s: file too short: read only %zd of %zd bytes at %lld"),
410 this->filename().c_str(),
411 got, want, static_cast<long long>(base + first_offset));
412 }
413
414 // Read several pieces of data from the file.
415
416 void
417 File_read::read_multiple(off_t base, const Read_multiple& rm)
418 {
419 size_t count = rm.size();
420 size_t i = 0;
421 while (i < count)
422 {
423 // Find up to MAX_READV_ENTRIES consecutive entries which are
424 // less than one page apart.
425 const Read_multiple_entry& i_entry(rm[i]);
426 off_t i_off = i_entry.file_offset;
427 off_t end_off = i_off + i_entry.size;
428 size_t j;
429 for (j = i + 1; j < count; ++j)
430 {
431 if (j - i >= File_read::max_readv_entries)
432 break;
433 const Read_multiple_entry& j_entry(rm[j]);
434 off_t j_off = j_entry.file_offset;
435 gold_assert(j_off >= end_off);
436 off_t j_end_off = j_off + j_entry.size;
437 if (j_end_off - end_off >= File_read::page_size)
438 break;
439 end_off = j_end_off;
440 }
441
442 if (j == i + 1)
443 this->read(base + i_off, i_entry.size, i_entry.buffer);
444 else
445 {
446 File_read::View* view = this->find_view(base + i_off,
447 end_off - i_off);
448 if (view == NULL)
449 this->do_readv(base, rm, i, j - i);
450 else
451 {
452 const unsigned char* v = (view->data()
453 + (base + i_off - view->start()));
454 for (size_t k = i; k < j; ++k)
455 {
456 const Read_multiple_entry& k_entry(rm[k]);
457 gold_assert((convert_to_section_size_type(k_entry.file_offset
458 - i_off)
459 + k_entry.size)
460 <= convert_to_section_size_type(end_off
461 - i_off));
462 memcpy(k_entry.buffer,
463 v + (k_entry.file_offset - i_off),
464 k_entry.size);
465 }
466 }
467 }
468
469 i = j;
470 }
471 }
472
473 // Mark all views as no longer cached.
474
475 void
476 File_read::clear_view_cache_marks()
477 {
478 // Just ignore this if there are multiple objects associated with
479 // the file. Otherwise we will wind up uncaching and freeing some
480 // views for other objects.
481 if (this->object_count_ > 1)
482 return;
483
484 for (Views::iterator p = this->views_.begin();
485 p != this->views_.end();
486 ++p)
487 p->second->clear_cache();
488 for (Saved_views::iterator p = this->saved_views_.begin();
489 p != this->saved_views_.end();
490 ++p)
491 (*p)->clear_cache();
492 }
493
494 // Remove all the file views. For a file which has multiple
495 // associated objects (i.e., an archive), we keep accessed views
496 // around until next time, in the hopes that they will be useful for
497 // the next object.
498
499 void
500 File_read::clear_views(bool destroying)
501 {
502 Views::iterator p = this->views_.begin();
503 while (p != this->views_.end())
504 {
505 bool should_delete;
506 if (p->second->is_locked())
507 should_delete = false;
508 else if (destroying)
509 should_delete = true;
510 else if (p->second->should_cache())
511 should_delete = false;
512 else if (this->object_count_ > 1 && p->second->accessed())
513 should_delete = false;
514 else
515 should_delete = true;
516
517 if (should_delete)
518 {
519 delete p->second;
520
521 // map::erase invalidates only the iterator to the deleted
522 // element.
523 Views::iterator pe = p;
524 ++p;
525 this->views_.erase(pe);
526 }
527 else
528 {
529 gold_assert(!destroying);
530 p->second->clear_accessed();
531 ++p;
532 }
533 }
534
535 Saved_views::iterator q = this->saved_views_.begin();
536 while (q != this->saved_views_.end())
537 {
538 if (!(*q)->is_locked())
539 {
540 delete *q;
541 q = this->saved_views_.erase(q);
542 }
543 else
544 {
545 gold_assert(!destroying);
546 ++q;
547 }
548 }
549 }
550
551 // Print statistical information to stderr. This is used for --stats.
552
553 void
554 File_read::print_stats()
555 {
556 fprintf(stderr, _("%s: total bytes mapped for read: %llu\n"),
557 program_name, File_read::total_mapped_bytes);
558 fprintf(stderr, _("%s: maximum bytes mapped for read at one time: %llu\n"),
559 program_name, File_read::maximum_mapped_bytes);
560 }
561
562 // Class File_view.
563
564 File_view::~File_view()
565 {
566 gold_assert(this->file_.is_locked());
567 this->view_->unlock();
568 }
569
570 // Class Input_file.
571
572 // Create a file for testing.
573
574 Input_file::Input_file(const Task* task, const char* name,
575 const unsigned char* contents, off_t size)
576 : file_()
577 {
578 this->input_argument_ =
579 new Input_file_argument(name, false, "", Position_dependent_options());
580 bool ok = file_.open(task, name, contents, size);
581 gold_assert(ok);
582 }
583
584 // Return the position dependent options in force for this file.
585
586 const Position_dependent_options&
587 Input_file::options() const
588 {
589 return this->input_argument_->options();
590 }
591
592 // Return the name given by the user. For -lc this will return "c".
593
594 const char*
595 Input_file::name() const
596 { return this->input_argument_->name(); }
597
598 // Open the file.
599
600 // If the filename is not absolute, we assume it is in the current
601 // directory *except* when:
602 // A) input_argument_->is_lib() is true; or
603 // B) input_argument_->extra_search_path() is not empty.
604 // In both cases, we look in extra_search_path + library_path to find
605 // the file location, rather than the current directory.
606
607 bool
608 Input_file::open(const General_options& options, const Dirsearch& dirpath,
609 const Task* task)
610 {
611 std::string name;
612
613 // Case 1: name is an absolute file, just try to open it
614 // Case 2: name is relative but is_lib is false and extra_search_path
615 // is empty
616 if (IS_ABSOLUTE_PATH (this->input_argument_->name())
617 || (!this->input_argument_->is_lib()
618 && this->input_argument_->extra_search_path() == NULL))
619 {
620 name = this->input_argument_->name();
621 this->found_name_ = name;
622 }
623 // Case 3: is_lib is true
624 else if (this->input_argument_->is_lib())
625 {
626 // We don't yet support extra_search_path with -l.
627 gold_assert(this->input_argument_->extra_search_path() == NULL);
628 std::string n1("lib");
629 n1 += this->input_argument_->name();
630 std::string n2;
631 if (options.is_static()
632 || this->input_argument_->options().do_static_search())
633 n1 += ".a";
634 else
635 {
636 n2 = n1 + ".a";
637 n1 += ".so";
638 }
639 name = dirpath.find(n1, n2, &this->is_in_sysroot_);
640 if (name.empty())
641 {
642 gold_error(_("cannot find -l%s"),
643 this->input_argument_->name());
644 return false;
645 }
646 if (n2.empty() || name[name.length() - 1] == 'o')
647 this->found_name_ = n1;
648 else
649 this->found_name_ = n2;
650 }
651 // Case 4: extra_search_path is not empty
652 else
653 {
654 gold_assert(this->input_argument_->extra_search_path() != NULL);
655
656 // First, check extra_search_path.
657 name = this->input_argument_->extra_search_path();
658 if (!IS_DIR_SEPARATOR (name[name.length() - 1]))
659 name += '/';
660 name += this->input_argument_->name();
661 struct stat dummy_stat;
662 if (::stat(name.c_str(), &dummy_stat) < 0)
663 {
664 // extra_search_path failed, so check the normal search-path.
665 name = dirpath.find(this->input_argument_->name(), "",
666 &this->is_in_sysroot_);
667 if (name.empty())
668 {
669 gold_error(_("cannot find %s"),
670 this->input_argument_->name());
671 return false;
672 }
673 }
674 this->found_name_ = this->input_argument_->name();
675 }
676
677 // Now that we've figured out where the file lives, try to open it.
678 if (!this->file_.open(task, name))
679 {
680 gold_error(_("cannot open %s: %s"),
681 name.c_str(), strerror(errno));
682 return false;
683 }
684
685 return true;
686 }
687
688 } // End namespace gold.