gold/
[external/binutils.git] / gold / archive.cc
1 // archive.cc -- archive support for gold
2
3 // Copyright 2006, 2007, 2008, 2009, 2010, 2011 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 <cerrno>
26 #include <cstring>
27 #include <climits>
28 #include <vector>
29 #include "libiberty.h"
30 #include "filenames.h"
31
32 #include "elfcpp.h"
33 #include "options.h"
34 #include "mapfile.h"
35 #include "fileread.h"
36 #include "readsyms.h"
37 #include "symtab.h"
38 #include "object.h"
39 #include "layout.h"
40 #include "archive.h"
41 #include "plugin.h"
42 #include "incremental.h"
43
44 namespace gold
45 {
46
47 // Library_base methods.
48
49 // Determine whether a definition of SYM_NAME should cause an archive
50 // library member to be included in the link.  Returns SHOULD_INCLUDE_YES
51 // if the symbol is referenced but not defined, SHOULD_INCLUDE_NO if the
52 // symbol is already defined, and SHOULD_INCLUDE_UNKNOWN if the symbol is
53 // neither referenced nor defined.
54
55 Library_base::Should_include
56 Library_base::should_include_member(Symbol_table* symtab, Layout* layout,
57                                     const char* sym_name, Symbol** symp,
58                                     std::string* why, char** tmpbufp,
59                                     size_t* tmpbuflen)
60 {
61   // In an object file, and therefore in an archive map, an
62   // '@' in the name separates the symbol name from the
63   // version name.  If there are two '@' characters, this is
64   // the default version.
65   char* tmpbuf = *tmpbufp;
66   const char* ver = strchr(sym_name, '@');
67   bool def = false;
68   if (ver != NULL)
69     {
70       size_t symlen = ver - sym_name;
71       if (symlen + 1 > *tmpbuflen)
72         {
73           tmpbuf = static_cast<char*>(xrealloc(tmpbuf, symlen + 1));
74           *tmpbufp = tmpbuf;
75           *tmpbuflen = symlen + 1;
76         }
77       memcpy(tmpbuf, sym_name, symlen);
78       tmpbuf[symlen] = '\0';
79       sym_name = tmpbuf;
80
81       ++ver;
82       if (*ver == '@')
83         {
84           ++ver;
85           def = true;
86         }
87     }
88
89   Symbol* sym = symtab->lookup(sym_name, ver);
90   if (def
91       && ver != NULL
92       && (sym == NULL
93           || !sym->is_undefined()
94           || sym->binding() == elfcpp::STB_WEAK))
95     sym = symtab->lookup(sym_name, NULL);
96
97   *symp = sym;
98
99   if (sym == NULL)
100     {
101       // Check whether the symbol was named in a -u option.
102       if (parameters->options().is_undefined(sym_name))
103         {
104           *why = "-u ";
105           *why += sym_name;
106         }
107       else if (parameters->options().is_export_dynamic_symbol(sym_name))
108         {
109           *why = "--export-dynamic-symbol ";
110           *why += sym_name;
111         }
112       else if (layout->script_options()->is_referenced(sym_name))
113         {
114           size_t alc = 100 + strlen(sym_name);
115           char* buf = new char[alc];
116           snprintf(buf, alc, _("script or expression reference to %s"),
117                    sym_name);
118           *why = buf;
119           delete[] buf;
120         }
121       else if (strcmp(sym_name, parameters->entry()) == 0)
122         {
123           *why = "entry symbol ";
124           *why += sym_name;
125         }
126       else
127         return Library_base::SHOULD_INCLUDE_UNKNOWN;
128     }
129   else if (!sym->is_undefined())
130     return Library_base::SHOULD_INCLUDE_NO;
131   // PR 12001: Do not include an archive when the undefined
132   // symbol has actually been defined on the command line.
133   else if (layout->script_options()->is_pending_assignment(sym_name))
134     return Library_base::SHOULD_INCLUDE_NO;
135   else if (sym->binding() == elfcpp::STB_WEAK)
136     return Library_base::SHOULD_INCLUDE_UNKNOWN;
137
138   return Library_base::SHOULD_INCLUDE_YES;
139 }
140
141 // The header of an entry in the archive.  This is all readable text,
142 // padded with spaces where necessary.  If the contents of an archive
143 // are all text file, the entire archive is readable.
144
145 struct Archive::Archive_header
146 {
147   // The entry name.
148   char ar_name[16];
149   // The file modification time.
150   char ar_date[12];
151   // The user's UID in decimal.
152   char ar_uid[6];
153   // The user's GID in decimal.
154   char ar_gid[6];
155   // The file mode in octal.
156   char ar_mode[8];
157   // The file size in decimal.
158   char ar_size[10];
159   // The final magic code.
160   char ar_fmag[2];
161 };
162
163 // Class Archive static variables.
164 unsigned int Archive::total_archives;
165 unsigned int Archive::total_members;
166 unsigned int Archive::total_members_loaded;
167
168 // Archive methods.
169
170 const char Archive::armag[sarmag] =
171 {
172   '!', '<', 'a', 'r', 'c', 'h', '>', '\n'
173 };
174
175 const char Archive::armagt[sarmag] =
176 {
177   '!', '<', 't', 'h', 'i', 'n', '>', '\n'
178 };
179
180 const char Archive::arfmag[2] = { '`', '\n' };
181
182 Archive::Archive(const std::string& name, Input_file* input_file,
183                  bool is_thin_archive, Dirsearch* dirpath, Task* task)
184   : Library_base(task), name_(name), input_file_(input_file), armap_(),
185     armap_names_(), extended_names_(), armap_checked_(), seen_offsets_(),
186     members_(), is_thin_archive_(is_thin_archive), included_member_(false),
187     nested_archives_(), dirpath_(dirpath), num_members_(0),
188     included_all_members_(false)
189 {
190   this->no_export_ =
191     parameters->options().check_excluded_libs(input_file->found_name());
192 }
193
194 // Set up the archive: read the symbol map and the extended name
195 // table.
196
197 void
198 Archive::setup()
199 {
200   // We need to ignore empty archives.
201   if (this->input_file_->file().filesize() == sarmag)
202     return;
203
204   // The first member of the archive should be the symbol table.
205   std::string armap_name;
206   off_t header_size = this->read_header(sarmag, false, &armap_name, NULL);
207   if (header_size == -1)
208     return;
209
210   section_size_type armap_size = convert_to_section_size_type(header_size);
211   off_t off = sarmag;
212   if (armap_name.empty())
213     {
214       this->read_armap(sarmag + sizeof(Archive_header), armap_size);
215       off = sarmag + sizeof(Archive_header) + armap_size;
216     }
217   else if (!this->input_file_->options().whole_archive())
218     gold_error(_("%s: no archive symbol table (run ranlib)"),
219                this->name().c_str());
220
221   // See if there is an extended name table.  We cache these views
222   // because it is likely that we will want to read the following
223   // header in the add_symbols routine.
224   if ((off & 1) != 0)
225     ++off;
226   std::string xname;
227   header_size = this->read_header(off, true, &xname, NULL);
228   if (header_size == -1)
229     return;
230
231   section_size_type extended_size = convert_to_section_size_type(header_size);
232   if (xname == "/")
233     {
234       const unsigned char* p = this->get_view(off + sizeof(Archive_header),
235                                               extended_size, false, true);
236       const char* px = reinterpret_cast<const char*>(p);
237       this->extended_names_.assign(px, extended_size);
238     }
239   bool preread_syms = (parameters->options().threads()
240                        && parameters->options().preread_archive_symbols());
241 #ifndef ENABLE_THREADS
242   preread_syms = false;
243 #else
244   if (parameters->options().has_plugins())
245     preread_syms = false;
246 #endif
247   if (preread_syms)
248     this->read_all_symbols();
249 }
250
251 // Unlock any nested archives.
252
253 void
254 Archive::unlock_nested_archives()
255 {
256   for (Nested_archive_table::iterator p = this->nested_archives_.begin();
257        p != this->nested_archives_.end();
258        ++p)
259     {
260       p->second->unlock(this->task_);
261     }
262 }
263
264 // Read the archive symbol map.
265
266 void
267 Archive::read_armap(off_t start, section_size_type size)
268 {
269   // To count the total number of archive members, we'll just count
270   // the number of times the file offset changes.  Since most archives
271   // group the symbols in the armap by object, this ought to give us
272   // an accurate count.
273   off_t last_seen_offset = -1;
274
275   // Read in the entire armap.
276   const unsigned char* p = this->get_view(start, size, true, false);
277
278   // Numbers in the armap are always big-endian.
279   const elfcpp::Elf_Word* pword = reinterpret_cast<const elfcpp::Elf_Word*>(p);
280   unsigned int nsyms = elfcpp::Swap<32, true>::readval(pword);
281   ++pword;
282
283   // Note that the addition is in units of sizeof(elfcpp::Elf_Word).
284   const char* pnames = reinterpret_cast<const char*>(pword + nsyms);
285   section_size_type names_size =
286     reinterpret_cast<const char*>(p) + size - pnames;
287   this->armap_names_.assign(pnames, names_size);
288
289   this->armap_.resize(nsyms);
290
291   section_offset_type name_offset = 0;
292   for (unsigned int i = 0; i < nsyms; ++i)
293     {
294       this->armap_[i].name_offset = name_offset;
295       this->armap_[i].file_offset = elfcpp::Swap<32, true>::readval(pword);
296       name_offset += strlen(pnames + name_offset) + 1;
297       ++pword;
298       if (this->armap_[i].file_offset != last_seen_offset)
299         {
300           last_seen_offset = this->armap_[i].file_offset;
301           ++this->num_members_;
302         }
303     }
304
305   if (static_cast<section_size_type>(name_offset) > names_size)
306     gold_error(_("%s: bad archive symbol table names"),
307                this->name().c_str());
308
309   // This array keeps track of which symbols are for archive elements
310   // which we have already included in the link.
311   this->armap_checked_.resize(nsyms);
312 }
313
314 // Read the header of an archive member at OFF.  Fail if something
315 // goes wrong.  Return the size of the member.  Set *PNAME to the name
316 // of the member.
317
318 off_t
319 Archive::read_header(off_t off, bool cache, std::string* pname,
320                      off_t* nested_off)
321 {
322   const unsigned char* p = this->get_view(off, sizeof(Archive_header), true,
323                                           cache);
324   const Archive_header* hdr = reinterpret_cast<const Archive_header*>(p);
325   return this->interpret_header(hdr, off,  pname, nested_off);
326 }
327
328 // Interpret the header of HDR, the header of the archive member at
329 // file offset OFF.  Return the size of the member, or -1 if something
330 // has gone wrong.  Set *PNAME to the name of the member.
331
332 off_t
333 Archive::interpret_header(const Archive_header* hdr, off_t off,
334                           std::string* pname, off_t* nested_off) const
335 {
336   if (memcmp(hdr->ar_fmag, arfmag, sizeof arfmag) != 0)
337     {
338       gold_error(_("%s: malformed archive header at %zu"),
339                  this->name().c_str(), static_cast<size_t>(off));
340       return -1;
341     }
342
343   const int size_string_size = sizeof hdr->ar_size;
344   char size_string[size_string_size + 1];
345   memcpy(size_string, hdr->ar_size, size_string_size);
346   char* ps = size_string + size_string_size;
347   while (ps[-1] == ' ')
348     --ps;
349   *ps = '\0';
350
351   errno = 0;
352   char* end;
353   off_t member_size = strtol(size_string, &end, 10);
354   if (*end != '\0'
355       || member_size < 0
356       || (member_size == LONG_MAX && errno == ERANGE))
357     {
358       gold_error(_("%s: malformed archive header size at %zu"),
359                  this->name().c_str(), static_cast<size_t>(off));
360       return -1;
361     }
362
363   if (hdr->ar_name[0] != '/')
364     {
365       const char* name_end = strchr(hdr->ar_name, '/');
366       if (name_end == NULL
367           || name_end - hdr->ar_name >= static_cast<int>(sizeof hdr->ar_name))
368         {
369           gold_error(_("%s: malformed archive header name at %zu"),
370                      this->name().c_str(), static_cast<size_t>(off));
371           return -1;
372         }
373       pname->assign(hdr->ar_name, name_end - hdr->ar_name);
374       if (nested_off != NULL)
375         *nested_off = 0;
376     }
377   else if (hdr->ar_name[1] == ' ')
378     {
379       // This is the symbol table.
380       if (!pname->empty())
381         pname->clear();
382     }
383   else if (hdr->ar_name[1] == '/')
384     {
385       // This is the extended name table.
386       pname->assign(1, '/');
387     }
388   else
389     {
390       errno = 0;
391       long x = strtol(hdr->ar_name + 1, &end, 10);
392       long y = 0;
393       if (*end == ':')
394         y = strtol(end + 1, &end, 10);
395       if (*end != ' '
396           || x < 0
397           || (x == LONG_MAX && errno == ERANGE)
398           || static_cast<size_t>(x) >= this->extended_names_.size())
399         {
400           gold_error(_("%s: bad extended name index at %zu"),
401                      this->name().c_str(), static_cast<size_t>(off));
402           return -1;
403         }
404
405       const char* name = this->extended_names_.data() + x;
406       const char* name_end = strchr(name, '\n');
407       if (static_cast<size_t>(name_end - name) > this->extended_names_.size()
408           || name_end[-1] != '/')
409         {
410           gold_error(_("%s: bad extended name entry at header %zu"),
411                      this->name().c_str(), static_cast<size_t>(off));
412           return -1;
413         }
414       pname->assign(name, name_end - 1 - name);
415       if (nested_off != NULL)
416         *nested_off = y;
417     }
418
419   return member_size;
420 }
421
422 // An archive member iterator.
423
424 class Archive::const_iterator
425 {
426  public:
427   // The header of an archive member.  This is what this iterator
428   // points to.
429   struct Header
430   {
431     // The name of the member.
432     std::string name;
433     // The file offset of the member.
434     off_t off;
435     // The file offset of a nested archive member.
436     off_t nested_off;
437     // The size of the member.
438     off_t size;
439   };
440
441   const_iterator(Archive* archive, off_t off)
442     : archive_(archive), off_(off)
443   { this->read_next_header(); }
444
445   const Header&
446   operator*() const
447   { return this->header_; }
448
449   const Header*
450   operator->() const
451   { return &this->header_; }
452
453   const_iterator&
454   operator++()
455   {
456     if (this->off_ == this->archive_->file().filesize())
457       return *this;
458     this->off_ += sizeof(Archive_header);
459     if (!this->archive_->is_thin_archive())
460       this->off_ += this->header_.size;
461     if ((this->off_ & 1) != 0)
462       ++this->off_;
463     this->read_next_header();
464     return *this;
465   }
466
467   const_iterator
468   operator++(int)
469   {
470     const_iterator ret = *this;
471     ++*this;
472     return ret;
473   }
474
475   bool
476   operator==(const const_iterator p) const
477   { return this->off_ == p->off; }
478
479   bool
480   operator!=(const const_iterator p) const
481   { return this->off_ != p->off; }
482
483  private:
484   void
485   read_next_header();
486
487   // The underlying archive.
488   Archive* archive_;
489   // The current offset in the file.
490   off_t off_;
491   // The current archive header.
492   Header header_;
493 };
494
495 // Read the next archive header.
496
497 void
498 Archive::const_iterator::read_next_header()
499 {
500   off_t filesize = this->archive_->file().filesize();
501   while (true)
502     {
503       if (filesize - this->off_ < static_cast<off_t>(sizeof(Archive_header)))
504         {
505           if (filesize != this->off_)
506             {
507               gold_error(_("%s: short archive header at %zu"),
508                          this->archive_->filename().c_str(),
509                          static_cast<size_t>(this->off_));
510               this->off_ = filesize;
511             }
512           this->header_.off = filesize;
513           return;
514         }
515
516       unsigned char buf[sizeof(Archive_header)];
517       this->archive_->file().read(this->off_, sizeof(Archive_header), buf);
518
519       const Archive_header* hdr = reinterpret_cast<const Archive_header*>(buf);
520       off_t size = this->archive_->interpret_header(hdr, this->off_,
521                                                     &this->header_.name,
522                                                     &this->header_.nested_off);
523       if (size == -1)
524         {
525           this->header_.off = filesize;
526           return;
527         }
528
529       this->header_.size = size;
530       this->header_.off = this->off_;
531
532       // Skip special members.
533       if (!this->header_.name.empty() && this->header_.name != "/")
534         return;
535
536       this->off_ += sizeof(Archive_header) + this->header_.size;
537       if ((this->off_ & 1) != 0)
538         ++this->off_;
539     }
540 }
541
542 // Initial iterator.
543
544 Archive::const_iterator
545 Archive::begin()
546 {
547   return Archive::const_iterator(this, sarmag);
548 }
549
550 // Final iterator.
551
552 Archive::const_iterator
553 Archive::end()
554 {
555   return Archive::const_iterator(this, this->input_file_->file().filesize());
556 }
557
558 // Get the file and offset for an archive member, which may be an
559 // external member of a thin archive.  Set *INPUT_FILE to the
560 // file containing the actual member, *MEMOFF to the offset
561 // within that file (0 if not a nested archive), and *MEMBER_NAME
562 // to the name of the archive member.  Return TRUE on success.
563
564 bool
565 Archive::get_file_and_offset(off_t off, Input_file** input_file, off_t* memoff,
566                              off_t* memsize, std::string* member_name)
567 {
568   off_t nested_off;
569
570   *memsize = this->read_header(off, false, member_name, &nested_off);
571   if (*memsize == -1)
572     return false;
573
574   *input_file = this->input_file_;
575   *memoff = off + static_cast<off_t>(sizeof(Archive_header));
576
577   if (!this->is_thin_archive_)
578     return true;
579
580   // Adjust a relative pathname so that it is relative
581   // to the directory containing the archive.
582   if (!IS_ABSOLUTE_PATH(member_name->c_str()))
583     {
584       const char* arch_path = this->filename().c_str();
585       const char* basename = lbasename(arch_path);
586       if (basename > arch_path)
587         member_name->replace(0, 0,
588                              this->filename().substr(0, basename - arch_path));
589     }
590
591   if (nested_off > 0)
592     {
593       // This is a member of a nested archive.  Open the containing
594       // archive if we don't already have it open, then do a recursive
595       // call to include the member from that archive.
596       Archive* arch;
597       Nested_archive_table::const_iterator p =
598         this->nested_archives_.find(*member_name);
599       if (p != this->nested_archives_.end())
600         arch = p->second;
601       else
602         {
603           Input_file_argument* input_file_arg =
604             new Input_file_argument(member_name->c_str(),
605                                     Input_file_argument::INPUT_FILE_TYPE_FILE,
606                                     "", false, parameters->options());
607           *input_file = new Input_file(input_file_arg);
608           int dummy = 0;
609           if (!(*input_file)->open(*this->dirpath_, this->task_, &dummy))
610             return false;
611           arch = new Archive(*member_name, *input_file, false, this->dirpath_,
612                              this->task_);
613           arch->setup();
614           std::pair<Nested_archive_table::iterator, bool> ins =
615             this->nested_archives_.insert(std::make_pair(*member_name, arch));
616           gold_assert(ins.second);
617         }
618       return arch->get_file_and_offset(nested_off, input_file, memoff,
619                                        memsize, member_name);
620     }
621
622   // This is an external member of a thin archive.  Open the
623   // file as a regular relocatable object file.
624   Input_file_argument* input_file_arg =
625       new Input_file_argument(member_name->c_str(),
626                               Input_file_argument::INPUT_FILE_TYPE_FILE,
627                               "", false, this->input_file_->options());
628   *input_file = new Input_file(input_file_arg);
629   int dummy = 0;
630   if (!(*input_file)->open(*this->dirpath_, this->task_, &dummy))
631     return false;
632
633   *memoff = 0;
634   *memsize = (*input_file)->file().filesize();
635   return true;
636 }
637
638 // Return an ELF object for the member at offset OFF.  If
639 // PUNCONFIGURED is not NULL, then if the ELF object has an
640 // unsupported target type, set *PUNCONFIGURED to true and return
641 // NULL.
642
643 Object*
644 Archive::get_elf_object_for_member(off_t off, bool* punconfigured)
645 {
646   if (punconfigured != NULL)
647     *punconfigured = false;
648
649   Input_file* input_file;
650   off_t memoff;
651   off_t memsize;
652   std::string member_name;
653   if (!this->get_file_and_offset(off, &input_file, &memoff, &memsize,
654                                  &member_name))
655     return NULL;
656
657   if (parameters->options().has_plugins())
658     {
659       Object* obj = parameters->options().plugins()->claim_file(input_file,
660                                                                 memoff,
661                                                                 memsize,
662                                                                 NULL);
663       if (obj != NULL)
664         {
665           // The input file was claimed by a plugin, and its symbols
666           // have been provided by the plugin.
667           return obj;
668         }
669     }
670
671   const unsigned char* ehdr;
672   int read_size;
673   if (!is_elf_object(input_file, memoff, &ehdr, &read_size))
674     {
675       gold_error(_("%s: member at %zu is not an ELF object"),
676                  this->name().c_str(), static_cast<size_t>(off));
677       return NULL;
678     }
679
680   Object* obj = make_elf_object((std::string(this->input_file_->filename())
681                                  + "(" + member_name + ")"),
682                                 input_file, memoff, ehdr, read_size,
683                                 punconfigured);
684   if (obj == NULL)
685     return NULL;
686   obj->set_no_export(this->no_export());
687   return obj;
688 }
689
690 // Read the symbols from all the archive members in the link.
691
692 void
693 Archive::read_all_symbols()
694 {
695   for (Archive::const_iterator p = this->begin();
696        p != this->end();
697        ++p)
698     this->read_symbols(p->off);
699 }
700
701 // Read the symbols from an archive member in the link.  OFF is the file
702 // offset of the member header.
703
704 void
705 Archive::read_symbols(off_t off)
706 {
707   Object* obj = this->get_elf_object_for_member(off, NULL);
708   if (obj == NULL)
709     return;
710
711   Read_symbols_data* sd = new Read_symbols_data;
712   obj->read_symbols(sd);
713   Archive_member member(obj, sd);
714   this->members_[off] = member;
715 }
716
717 // Select members from the archive and add them to the link.  We walk
718 // through the elements in the archive map, and look each one up in
719 // the symbol table.  If it exists as a strong undefined symbol, we
720 // pull in the corresponding element.  We have to do this in a loop,
721 // since pulling in one element may create new undefined symbols which
722 // may be satisfied by other objects in the archive.  Return true in
723 // the normal case, false if the first member we tried to add from
724 // this archive had an incompatible target.
725
726 bool
727 Archive::add_symbols(Symbol_table* symtab, Layout* layout,
728                      Input_objects* input_objects, Mapfile* mapfile)
729 {
730   ++Archive::total_archives;
731
732   if (this->input_file_->options().whole_archive())
733     return this->include_all_members(symtab, layout, input_objects,
734                                      mapfile);
735
736   Archive::total_members += this->num_members_;
737
738   input_objects->archive_start(this);
739
740   const size_t armap_size = this->armap_.size();
741
742   // This is a quick optimization, since we usually see many symbols
743   // in a row with the same offset.  last_seen_offset holds the last
744   // offset we saw that was present in the seen_offsets_ set.
745   off_t last_seen_offset = -1;
746
747   // Track which symbols in the symbol table we've already found to be
748   // defined.
749
750   char* tmpbuf = NULL;
751   size_t tmpbuflen = 0;
752   bool added_new_object;
753   do
754     {
755       added_new_object = false;
756       for (size_t i = 0; i < armap_size; ++i)
757         {
758           if (this->armap_checked_[i])
759             continue;
760           if (this->armap_[i].file_offset == last_seen_offset)
761             {
762               this->armap_checked_[i] = true;
763               continue;
764             }
765           if (this->seen_offsets_.find(this->armap_[i].file_offset)
766               != this->seen_offsets_.end())
767             {
768               this->armap_checked_[i] = true;
769               last_seen_offset = this->armap_[i].file_offset;
770               continue;
771             }
772
773           const char* sym_name = (this->armap_names_.data()
774                                   + this->armap_[i].name_offset);
775
776           Symbol* sym;
777           std::string why;
778           Archive::Should_include t =
779             Archive::should_include_member(symtab, layout, sym_name, &sym,
780                                            &why, &tmpbuf, &tmpbuflen);
781
782           if (t == Archive::SHOULD_INCLUDE_NO
783               || t == Archive::SHOULD_INCLUDE_YES)
784             this->armap_checked_[i] = true;
785
786           if (t != Archive::SHOULD_INCLUDE_YES)
787             continue;
788
789           // We want to include this object in the link.
790           last_seen_offset = this->armap_[i].file_offset;
791           this->seen_offsets_.insert(last_seen_offset);
792
793           if (!this->include_member(symtab, layout, input_objects,
794                                     last_seen_offset, mapfile, sym,
795                                     why.c_str()))
796             {
797               if (tmpbuf != NULL)
798                 free(tmpbuf);
799               return false;
800             }
801
802           added_new_object = true;
803         }
804     }
805   while (added_new_object);
806
807   if (tmpbuf != NULL)
808     free(tmpbuf);
809
810   input_objects->archive_stop(this);
811
812   return true;
813 }
814
815 // Return whether the archive includes a member which defines the
816 // symbol SYM.
817
818 bool
819 Archive::defines_symbol(Symbol* sym) const
820 {
821   const char* symname = sym->name();
822   size_t symname_len = strlen(symname);
823   size_t armap_size = this->armap_.size();
824   for (size_t i = 0; i < armap_size; ++i)
825     {
826       if (this->armap_checked_[i])
827         continue;
828       const char* archive_symname = (this->armap_names_.data()
829                                      + this->armap_[i].name_offset);
830       if (strncmp(archive_symname, symname, symname_len) != 0)
831         continue;
832       char c = archive_symname[symname_len];
833       if (c == '\0' && sym->version() == NULL)
834         return true;
835       if (c == '@')
836         {
837           const char* ver = archive_symname + symname_len + 1;
838           if (*ver == '@')
839             {
840               if (sym->version() == NULL)
841                 return true;
842               ++ver;
843             }
844           if (sym->version() != NULL && strcmp(sym->version(), ver) == 0)
845             return true;
846         }
847     }
848   return false;
849 }
850
851 // Include all the archive members in the link.  This is for --whole-archive.
852
853 bool
854 Archive::include_all_members(Symbol_table* symtab, Layout* layout,
855                              Input_objects* input_objects, Mapfile* mapfile)
856 {
857   // Don't include the same archive twice.  This can happen if
858   // --whole-archive is nested inside --start-group (PR gold/12163).
859   if (this->included_all_members_)
860     return true;
861
862   this->included_all_members_ = true;
863
864   input_objects->archive_start(this);
865
866   if (this->members_.size() > 0)
867     {
868       std::map<off_t, Archive_member>::const_iterator p;
869       for (p = this->members_.begin();
870            p != this->members_.end();
871            ++p)
872         {
873           if (!this->include_member(symtab, layout, input_objects, p->first,
874                                     mapfile, NULL, "--whole-archive"))
875             return false;
876           ++Archive::total_members;
877         }
878     }
879   else
880     {
881       for (Archive::const_iterator p = this->begin();
882            p != this->end();
883            ++p)
884         {
885           if (!this->include_member(symtab, layout, input_objects, p->off,
886                                     mapfile, NULL, "--whole-archive"))
887             return false;
888           ++Archive::total_members;
889         }
890     }
891
892   input_objects->archive_stop(this);
893
894   return true;
895 }
896
897 // Return the number of members in the archive.  This is only used for
898 // reports.
899
900 size_t
901 Archive::count_members()
902 {
903   size_t ret = 0;
904   for (Archive::const_iterator p = this->begin();
905        p != this->end();
906        ++p)
907     ++ret;
908   return ret;
909 }
910
911 // Include an archive member in the link.  OFF is the file offset of
912 // the member header.  WHY is the reason we are including this member.
913 // Return true if we added the member or if we had an error, return
914 // false if this was the first member we tried to add from this
915 // archive and it had an incompatible format.
916
917 bool
918 Archive::include_member(Symbol_table* symtab, Layout* layout,
919                         Input_objects* input_objects, off_t off,
920                         Mapfile* mapfile, Symbol* sym, const char* why)
921 {
922   ++Archive::total_members_loaded;
923
924   std::map<off_t, Archive_member>::const_iterator p = this->members_.find(off);
925   if (p != this->members_.end())
926     {
927       Object* obj = p->second.obj_;
928
929       Read_symbols_data* sd = p->second.sd_;
930       if (mapfile != NULL)
931         mapfile->report_include_archive_member(obj->name(), sym, why);
932       if (input_objects->add_object(obj))
933         {
934           obj->layout(symtab, layout, sd);
935           obj->add_symbols(symtab, sd, layout);
936           this->included_member_ = true;
937         }
938       delete sd;
939       return true;
940     }
941
942   // If this is the first object we are including from this archive,
943   // and we searched for this archive, most likely because it was
944   // found via a -l option, then if the target is incompatible we want
945   // to move on to the next archive found in the search path.
946   bool unconfigured = false;
947   bool* punconfigured = NULL;
948   if (!this->included_member_ && this->searched_for())
949     punconfigured = &unconfigured;
950
951   Object* obj = this->get_elf_object_for_member(off, punconfigured);
952   if (obj == NULL)
953     {
954       // Return false to search for another archive, true if we found
955       // an error.
956       return unconfigured ? false : true;
957     }
958
959   if (mapfile != NULL)
960     mapfile->report_include_archive_member(obj->name(), sym, why);
961
962   Pluginobj* pluginobj = obj->pluginobj();
963   if (pluginobj != NULL)
964     {
965       pluginobj->add_symbols(symtab, NULL, layout);
966       this->included_member_ = true;
967       return true;
968     }
969
970   if (!input_objects->add_object(obj))
971     {
972       // If this is an external member of a thin archive, unlock the
973       // file.
974       if (obj->offset() == 0)
975         obj->unlock(this->task_);
976       delete obj;
977     }
978   else
979     {
980       {
981         if (layout->incremental_inputs() != NULL)
982           layout->incremental_inputs()->report_object(obj, 0, this, NULL);
983         Read_symbols_data sd;
984         obj->read_symbols(&sd);
985         obj->layout(symtab, layout, &sd);
986         obj->add_symbols(symtab, &sd, layout);
987       }
988
989       // If this is an external member of a thin archive, unlock the file
990       // for the next task.
991       if (obj->offset() == 0)
992         obj->unlock(this->task_);
993
994       this->included_member_ = true;
995     }
996
997   return true;
998 }
999
1000 // Iterate over all unused symbols, and call the visitor class V for each.
1001
1002 void
1003 Archive::do_for_all_unused_symbols(Symbol_visitor_base* v) const
1004 {
1005   for (std::vector<Armap_entry>::const_iterator p = this->armap_.begin();
1006        p != this->armap_.end();
1007        ++p)
1008     {
1009       if (this->seen_offsets_.find(p->file_offset)
1010           == this->seen_offsets_.end())
1011         v->visit(this->armap_names_.data() + p->name_offset);
1012     }
1013 }
1014
1015 // Print statistical information to stderr.  This is used for --stats.
1016
1017 void
1018 Archive::print_stats()
1019 {
1020   fprintf(stderr, _("%s: archive libraries: %u\n"),
1021           program_name, Archive::total_archives);
1022   fprintf(stderr, _("%s: total archive members: %u\n"),
1023           program_name, Archive::total_members);
1024   fprintf(stderr, _("%s: loaded archive members: %u\n"),
1025           program_name, Archive::total_members_loaded);
1026 }
1027
1028 // Add_archive_symbols methods.
1029
1030 Add_archive_symbols::~Add_archive_symbols()
1031 {
1032   if (this->this_blocker_ != NULL)
1033     delete this->this_blocker_;
1034   // next_blocker_ is deleted by the task associated with the next
1035   // input file.
1036 }
1037
1038 // Return whether we can add the archive symbols.  We are blocked by
1039 // this_blocker_.  We block next_blocker_.  We also lock the file.
1040
1041 Task_token*
1042 Add_archive_symbols::is_runnable()
1043 {
1044   if (this->this_blocker_ != NULL && this->this_blocker_->is_blocked())
1045     return this->this_blocker_;
1046   return NULL;
1047 }
1048
1049 void
1050 Add_archive_symbols::locks(Task_locker* tl)
1051 {
1052   tl->add(this, this->next_blocker_);
1053   tl->add(this, this->archive_->token());
1054 }
1055
1056 void
1057 Add_archive_symbols::run(Workqueue* workqueue)
1058 {
1059   // For an incremental link, begin recording layout information.
1060   Incremental_inputs* incremental_inputs = this->layout_->incremental_inputs();
1061   if (incremental_inputs != NULL)
1062     {
1063       unsigned int arg_serial = this->input_argument_->file().arg_serial();
1064       Script_info* script_info = this->input_argument_->script_info();
1065       incremental_inputs->report_archive_begin(this->archive_, arg_serial,
1066                                                script_info);
1067     }
1068
1069   bool added = this->archive_->add_symbols(this->symtab_, this->layout_,
1070                                            this->input_objects_,
1071                                            this->mapfile_);
1072   this->archive_->unlock_nested_archives();
1073
1074   this->archive_->release();
1075   this->archive_->clear_uncached_views();
1076
1077   if (!added)
1078     {
1079       // This archive holds object files which are incompatible with
1080       // our output file.
1081       Read_symbols::incompatible_warning(this->input_argument_,
1082                                          this->archive_->input_file());
1083       Read_symbols::requeue(workqueue, this->input_objects_, this->symtab_,
1084                             this->layout_, this->dirpath_, this->dirindex_,
1085                             this->mapfile_, this->input_argument_,
1086                             this->input_group_, this->next_blocker_);
1087       delete this->archive_;
1088       return;
1089     }
1090
1091   if (this->input_group_ != NULL)
1092     this->input_group_->add_archive(this->archive_);
1093   else
1094     {
1095       // For an incremental link, finish recording the layout information.
1096       if (incremental_inputs != NULL)
1097         incremental_inputs->report_archive_end(this->archive_);
1098
1099       if (!parameters->options().has_plugins()
1100           || this->archive_->input_file()->options().whole_archive())
1101         {
1102           // We no longer need to know about this archive.
1103           delete this->archive_;
1104         }
1105       else
1106         {
1107           // The plugin interface may want to rescan this archive.
1108           parameters->options().plugins()->save_archive(this->archive_);
1109         }
1110
1111       this->archive_ = NULL;
1112     }
1113 }
1114
1115 // Class Lib_group static variables.
1116 unsigned int Lib_group::total_lib_groups;
1117 unsigned int Lib_group::total_members;
1118 unsigned int Lib_group::total_members_loaded;
1119
1120 Lib_group::Lib_group(const Input_file_lib* lib, Task* task)
1121   : Library_base(task), lib_(lib), members_()
1122 {
1123   this->members_.resize(lib->size());
1124 }
1125
1126 const std::string&
1127 Lib_group::do_filename() const
1128 {
1129   std::string *filename = new std::string("/group/");
1130   return *filename;
1131 }
1132
1133 // Select members from the lib group and add them to the link.  We walk
1134 // through the members, and check if each one up should be included.
1135 // If the object says it should be included, we do so.  We have to do
1136 // this in a loop, since including one member may create new undefined
1137 // symbols which may be satisfied by other members.
1138
1139 void
1140 Lib_group::add_symbols(Symbol_table* symtab, Layout* layout,
1141                        Input_objects* input_objects)
1142 {
1143   ++Lib_group::total_lib_groups;
1144
1145   Lib_group::total_members += this->members_.size();
1146
1147   bool added_new_object;
1148   do
1149     {
1150       added_new_object = false;
1151       unsigned int i = 0;
1152       while (i < this->members_.size())
1153         {
1154           const Archive_member& member = this->members_[i];
1155           Object* obj = member.obj_;
1156           std::string why;
1157
1158           // Skip files with no symbols. Plugin objects have
1159           // member.sd_ == NULL.
1160           if (obj != NULL
1161               && (member.sd_ == NULL || member.sd_->symbol_names != NULL))
1162             {
1163               Archive::Should_include t = obj->should_include_member(symtab,
1164                                                                      layout,
1165                                                                      member.sd_,
1166                                                                      &why);
1167
1168               if (t != Archive::SHOULD_INCLUDE_YES)
1169                 {
1170                   ++i;
1171                   continue;
1172                 }
1173
1174               this->include_member(symtab, layout, input_objects, member);
1175
1176               added_new_object = true;
1177             }
1178           else
1179             {
1180               if (member.sd_ != NULL)
1181                 {
1182                   // The file must be locked in order to destroy the views
1183                   // associated with it.
1184                   gold_assert(obj != NULL);
1185                   obj->lock(this->task_);
1186                   delete member.sd_;
1187                   obj->unlock(this->task_);
1188                 }
1189             }
1190
1191           this->members_[i] = this->members_.back();
1192           this->members_.pop_back();
1193         }
1194     }
1195   while (added_new_object);
1196 }
1197
1198 // Include a lib group member in the link.
1199
1200 void
1201 Lib_group::include_member(Symbol_table* symtab, Layout* layout,
1202                           Input_objects* input_objects,
1203                           const Archive_member& member)
1204 {
1205   ++Lib_group::total_members_loaded;
1206
1207   Object* obj = member.obj_;
1208   gold_assert(obj != NULL);
1209
1210   Pluginobj* pluginobj = obj->pluginobj();
1211   if (pluginobj != NULL)
1212     {
1213       pluginobj->add_symbols(symtab, NULL, layout);
1214       return;
1215     }
1216
1217   Read_symbols_data* sd = member.sd_;
1218   gold_assert(sd != NULL);
1219   obj->lock(this->task_);
1220   if (input_objects->add_object(obj))
1221     {
1222       if (layout->incremental_inputs() != NULL)
1223         layout->incremental_inputs()->report_object(obj, member.arg_serial_,
1224                                                     this, NULL);
1225       obj->layout(symtab, layout, sd);
1226       obj->add_symbols(symtab, sd, layout);
1227     }
1228   delete sd;
1229   // Unlock the file for the next task.
1230   obj->unlock(this->task_);
1231 }
1232
1233 // Iterate over all unused symbols, and call the visitor class V for each.
1234
1235 void
1236 Lib_group::do_for_all_unused_symbols(Symbol_visitor_base* v) const
1237 {
1238   // Files are removed from the members list when used, so all the
1239   // files remaining on the list are unused.
1240   for (std::vector<Archive_member>::const_iterator p = this->members_.begin();
1241        p != this->members_.end();
1242        ++p)
1243     {
1244       Object* obj = p->obj_;
1245       obj->for_all_global_symbols(p->sd_, v);
1246     }
1247 }
1248
1249 // Print statistical information to stderr.  This is used for --stats.
1250
1251 void
1252 Lib_group::print_stats()
1253 {
1254   fprintf(stderr, _("%s: lib groups: %u\n"),
1255           program_name, Lib_group::total_lib_groups);
1256   fprintf(stderr, _("%s: total lib groups members: %u\n"),
1257           program_name, Lib_group::total_members);
1258   fprintf(stderr, _("%s: loaded lib groups members: %u\n"),
1259           program_name, Lib_group::total_members_loaded);
1260 }
1261
1262 Task_token*
1263 Add_lib_group_symbols::is_runnable()
1264 {
1265   if (this->readsyms_blocker_ != NULL && this->readsyms_blocker_->is_blocked())
1266     return this->readsyms_blocker_;
1267   if (this->this_blocker_ != NULL && this->this_blocker_->is_blocked())
1268     return this->this_blocker_;
1269   return NULL;
1270 }
1271
1272 void
1273 Add_lib_group_symbols::locks(Task_locker* tl)
1274 {
1275   tl->add(this, this->next_blocker_);
1276 }
1277
1278 void
1279 Add_lib_group_symbols::run(Workqueue*)
1280 {
1281   // For an incremental link, begin recording layout information.
1282   Incremental_inputs* incremental_inputs = this->layout_->incremental_inputs();
1283   if (incremental_inputs != NULL)
1284     incremental_inputs->report_archive_begin(this->lib_, 0, NULL);
1285
1286   this->lib_->add_symbols(this->symtab_, this->layout_, this->input_objects_);
1287
1288   if (incremental_inputs != NULL)
1289     incremental_inputs->report_archive_end(this->lib_);
1290 }
1291
1292 Add_lib_group_symbols::~Add_lib_group_symbols()
1293 {
1294   if (this->this_blocker_ != NULL)
1295     delete this->this_blocker_;
1296   // next_blocker_ is deleted by the task associated with the next
1297   // input file.
1298 }
1299
1300 } // End namespace gold.