1// plugin.h -- plugin manager for gold      -*- C++ -*-
2
3// Copyright (C) 2008-2017 Free Software Foundation, Inc.
4// Written by Cary Coutant <ccoutant@google.com>.
5
6// This file is part of gold.
7
8// This program is free software; you can redistribute it and/or modify
9// it under the terms of the GNU General Public License as published by
10// the Free Software Foundation; either version 3 of the License, or
11// (at your option) any later version.
12
13// This program is distributed in the hope that it will be useful,
14// but WITHOUT ANY WARRANTY; without even the implied warranty of
15// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16// GNU General Public License for more details.
17
18// You should have received a copy of the GNU General Public License
19// along with this program; if not, write to the Free Software
20// Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
21// MA 02110-1301, USA.
22
23#ifndef GOLD_PLUGIN_H
24#define GOLD_PLUGIN_H
25
26#include <list>
27#include <string>
28
29#include "object.h"
30#include "plugin-api.h"
31#include "workqueue.h"
32
33namespace gold
34{
35
36class General_options;
37class Input_file;
38class Input_objects;
39class Archive;
40class Input_group;
41class Symbol;
42class Symbol_table;
43class Layout;
44class Dirsearch;
45class Mapfile;
46class Task;
47class Task_token;
48class Pluginobj;
49class Plugin_rescan;
50
51// This class represents a single plugin library.
52
53class Plugin
54{
55 public:
56  Plugin(const char* filename)
57    : handle_(NULL),
58      filename_(filename),
59      args_(),
60      claim_file_handler_(NULL),
61      all_symbols_read_handler_(NULL),
62      cleanup_handler_(NULL),
63      cleanup_done_(false)
64  { }
65
66  ~Plugin()
67  { }
68
69  // Load the library and call its entry point.
70  void
71  load();
72
73  // Call the claim-file handler.
74  bool
75  claim_file(struct ld_plugin_input_file* plugin_input_file);
76
77  // Call the all-symbols-read handler.
78  void
79  all_symbols_read();
80
81  // Call the cleanup handler.
82  void
83  cleanup();
84
85  // Register a claim-file handler.
86  void
87  set_claim_file_handler(ld_plugin_claim_file_handler handler)
88  { this->claim_file_handler_ = handler; }
89
90  // Register an all-symbols-read handler.
91  void
92  set_all_symbols_read_handler(ld_plugin_all_symbols_read_handler handler)
93  { this->all_symbols_read_handler_ = handler; }
94
95  // Register a claim-file handler.
96  void
97  set_cleanup_handler(ld_plugin_cleanup_handler handler)
98  { this->cleanup_handler_ = handler; }
99
100  // Add an argument
101  void
102  add_option(const char* arg)
103  {
104    this->args_.push_back(arg);
105  }
106
107 private:
108  Plugin(const Plugin&);
109  Plugin& operator=(const Plugin&);
110
111  // The shared library handle returned by dlopen.
112  void* handle_;
113  // The argument string given to --plugin.
114  std::string filename_;
115  // The list of argument string given to --plugin-opt.
116  std::vector<std::string> args_;
117  // The plugin's event handlers.
118  ld_plugin_claim_file_handler claim_file_handler_;
119  ld_plugin_all_symbols_read_handler all_symbols_read_handler_;
120  ld_plugin_cleanup_handler cleanup_handler_;
121  // TRUE if the cleanup handlers have been called.
122  bool cleanup_done_;
123};
124
125// A manager class for plugins.
126
127class Plugin_manager
128{
129 public:
130  Plugin_manager(const General_options& options)
131    : plugins_(), objects_(), deferred_layout_objects_(), input_file_(NULL),
132      plugin_input_file_(), rescannable_(), undefined_symbols_(),
133      any_claimed_(false), in_replacement_phase_(false), any_added_(false),
134      in_claim_file_handler_(false),
135      options_(options), workqueue_(NULL), task_(NULL), input_objects_(NULL),
136      symtab_(NULL), layout_(NULL), dirpath_(NULL), mapfile_(NULL),
137      this_blocker_(NULL), extra_search_path_(), lock_(NULL),
138      initialize_lock_(&lock_)
139  { this->current_ = plugins_.end(); }
140
141  ~Plugin_manager();
142
143  // Add a plugin library.
144  void
145  add_plugin(const char* filename)
146  { this->plugins_.push_back(new Plugin(filename)); }
147
148  // Add an argument to the current plugin.
149  void
150  add_plugin_option(const char* opt)
151  {
152    Plugin* last = this->plugins_.back();
153    last->add_option(opt);
154  }
155
156  // Load all plugin libraries.
157  void
158  load_plugins(Layout* layout);
159
160  // Call the plugin claim-file handlers in turn to see if any claim the file.
161  Pluginobj*
162  claim_file(Input_file* input_file, off_t offset, off_t filesize,
163             Object* elf_object);
164
165  // Get the object associated with the handle and check if it is an elf object.
166  // If it is not a Pluginobj, it is an elf object.
167  Object*
168  get_elf_object(const void* handle);
169
170  // True if the claim_file handler of the plugins is being called.
171  bool
172  in_claim_file_handler()
173  { return in_claim_file_handler_; }
174
175  // Let the plugin manager save an archive for later rescanning.
176  // This takes ownership of the Archive pointer.
177  void
178  save_archive(Archive*);
179
180  // Let the plugin manager save an input group for later rescanning.
181  // This takes ownership of the Input_group pointer.
182  void
183  save_input_group(Input_group*);
184
185  // Call the all-symbols-read handlers.
186  void
187  all_symbols_read(Workqueue* workqueue, Task* task,
188                   Input_objects* input_objects, Symbol_table* symtab,
189                   Dirsearch* dirpath, Mapfile* mapfile,
190                   Task_token** last_blocker);
191
192  // Tell the plugin manager that we've a new undefined symbol which
193  // may require rescanning.
194  void
195  new_undefined_symbol(Symbol*);
196
197  // Run deferred layout.
198  void
199  layout_deferred_objects();
200
201  // Call the cleanup handlers.
202  void
203  cleanup();
204
205  // Register a claim-file handler.
206  void
207  set_claim_file_handler(ld_plugin_claim_file_handler handler)
208  {
209    gold_assert(this->current_ != plugins_.end());
210    (*this->current_)->set_claim_file_handler(handler);
211  }
212
213  // Register an all-symbols-read handler.
214  void
215  set_all_symbols_read_handler(ld_plugin_all_symbols_read_handler handler)
216  {
217    gold_assert(this->current_ != plugins_.end());
218    (*this->current_)->set_all_symbols_read_handler(handler);
219  }
220
221  // Register a claim-file handler.
222  void
223  set_cleanup_handler(ld_plugin_cleanup_handler handler)
224  {
225    gold_assert(this->current_ != plugins_.end());
226    (*this->current_)->set_cleanup_handler(handler);
227  }
228
229  // Make a new Pluginobj object.  This is called when the plugin calls
230  // the add_symbols API.
231  Pluginobj*
232  make_plugin_object(unsigned int handle);
233
234  // Return the object associated with the given HANDLE.
235  Object*
236  object(unsigned int handle) const
237  {
238    if (handle >= this->objects_.size())
239      return NULL;
240    return this->objects_[handle];
241  }
242
243  // Return TRUE if any input files have been claimed by a plugin
244  // and we are still in the initial input phase.
245  bool
246  should_defer_layout() const
247  { return this->any_claimed_ && !this->in_replacement_phase_; }
248
249  // Add a regular object to the deferred layout list.  These are
250  // objects whose layout has been deferred until after the
251  // replacement files have arrived.
252  void
253  add_deferred_layout_object(Relobj* obj)
254  { this->deferred_layout_objects_.push_back(obj); }
255
256  // Get input file information with an open (possibly re-opened)
257  // file descriptor.
258  ld_plugin_status
259  get_input_file(unsigned int handle, struct ld_plugin_input_file* file);
260
261  ld_plugin_status
262  get_view(unsigned int handle, const void **viewp);
263
264  // Release an input file.
265  ld_plugin_status
266  release_input_file(unsigned int handle);
267
268  // Add a new input file.
269  ld_plugin_status
270  add_input_file(const char* pathname, bool is_lib);
271
272  // Set the extra library path.
273  ld_plugin_status
274  set_extra_library_path(const char* path);
275
276  // Return TRUE if we are in the replacement phase.
277  bool
278  in_replacement_phase() const
279  { return this->in_replacement_phase_; }
280
281  Input_objects*
282  input_objects() const
283  { return this->input_objects_; }
284
285  Symbol_table*
286  symtab()
287  { return this->symtab_; }
288
289  Layout*
290  layout()
291  { return this->layout_; }
292
293 private:
294  Plugin_manager(const Plugin_manager&);
295  Plugin_manager& operator=(const Plugin_manager&);
296
297  // Plugin_rescan is a Task which calls the private rescan method.
298  friend class Plugin_rescan;
299
300  // An archive or input group which may have to be rescanned if a
301  // plugin adds a new file.
302  struct Rescannable
303  {
304    bool is_archive;
305    union
306    {
307      Archive* archive;
308      Input_group* input_group;
309    } u;
310
311    Rescannable(Archive* archive)
312      : is_archive(true)
313    { this->u.archive = archive; }
314
315    Rescannable(Input_group* input_group)
316      : is_archive(false)
317    { this->u.input_group = input_group; }
318  };
319
320  typedef std::list<Plugin*> Plugin_list;
321  typedef std::vector<Object*> Object_list;
322  typedef std::vector<Relobj*> Deferred_layout_list;
323  typedef std::vector<Rescannable> Rescannable_list;
324  typedef std::vector<Symbol*> Undefined_symbol_list;
325
326  // Rescan archives for undefined symbols.
327  void
328  rescan(Task*);
329
330  // See whether the rescannable at index I defines SYM.
331  bool
332  rescannable_defines(size_t i, Symbol* sym);
333
334  // The list of plugin libraries.
335  Plugin_list plugins_;
336  // A pointer to the current plugin.  Used while loading plugins.
337  Plugin_list::iterator current_;
338
339  // The list of plugin objects.  The index of an item in this list
340  // serves as the "handle" that we pass to the plugins.
341  Object_list objects_;
342
343  // The list of regular objects whose layout has been deferred.
344  Deferred_layout_list deferred_layout_objects_;
345
346  // The file currently up for claim by the plugins.
347  Input_file* input_file_;
348  struct ld_plugin_input_file plugin_input_file_;
349
350  // A list of archives and input groups being saved for possible
351  // later rescanning.
352  Rescannable_list rescannable_;
353
354  // A list of undefined symbols found in added files.
355  Undefined_symbol_list undefined_symbols_;
356
357  // Whether any input files have been claimed by a plugin.
358  bool any_claimed_;
359
360  // Set to true after the all symbols read event; indicates that we
361  // are processing replacement files whose symbols should replace the
362  // placeholder symbols from the Pluginobj objects.
363  bool in_replacement_phase_;
364
365  // Whether any input files or libraries were added by a plugin.
366  bool any_added_;
367
368  // Set to true when the claim_file handler of a plugin is called.
369  bool in_claim_file_handler_;
370
371  const General_options& options_;
372  Workqueue* workqueue_;
373  Task* task_;
374  Input_objects* input_objects_;
375  Symbol_table* symtab_;
376  Layout* layout_;
377  Dirsearch* dirpath_;
378  Mapfile* mapfile_;
379  Task_token* this_blocker_;
380
381  // An extra directory to search for the libraries passed by
382  // add_input_library.
383  std::string extra_search_path_;
384  Lock* lock_;
385  Initialize_lock initialize_lock_;
386};
387
388
389// An object file claimed by a plugin.  This is an abstract base class.
390// The implementation is the template class Sized_pluginobj.
391
392class Pluginobj : public Object
393{
394 public:
395
396  typedef std::vector<Symbol*> Symbols;
397
398  Pluginobj(const std::string& name, Input_file* input_file, off_t offset,
399            off_t filesize);
400
401  // Fill in the symbol resolution status for the given plugin symbols.
402  ld_plugin_status
403  get_symbol_resolution_info(Symbol_table* symtab,
404			     int nsyms,
405			     ld_plugin_symbol* syms,
406			     int version) const;
407
408  // Store the incoming symbols from the plugin for later processing.
409  void
410  store_incoming_symbols(int nsyms, const struct ld_plugin_symbol* syms)
411  {
412    this->nsyms_ = nsyms;
413    this->syms_ = syms;
414  }
415
416  // Return TRUE if the comdat group with key COMDAT_KEY from this object
417  // should be kept.
418  bool
419  include_comdat_group(std::string comdat_key, Layout* layout);
420
421  // Return the filename.
422  const std::string&
423  filename() const
424  { return this->input_file()->filename(); }
425
426  // Return the file descriptor.
427  int
428  descriptor()
429  { return this->input_file()->file().descriptor(); }
430
431  // Return the size of the file or archive member.
432  off_t
433  filesize()
434  { return this->filesize_; }
435
436  // Return the word size of the object file.
437  int
438  elfsize() const
439  { gold_unreachable(); }
440
441  // Return TRUE if this is a big-endian object file.
442  bool
443  is_big_endian() const
444  { gold_unreachable(); }
445
446 protected:
447  // Return TRUE if this is an object claimed by a plugin.
448  virtual Pluginobj*
449  do_pluginobj()
450  { return this; }
451
452  // The number of symbols provided by the plugin.
453  int nsyms_;
454
455  // The symbols provided by the plugin.
456  const struct ld_plugin_symbol* syms_;
457
458  // The entries in the symbol table for the external symbols.
459  Symbols symbols_;
460
461 private:
462  // Size of the file (or archive member).
463  off_t filesize_;
464  // Map a comdat key symbol to a boolean indicating whether the comdat
465  // group in this object with that key should be kept.
466  typedef Unordered_map<std::string, bool> Comdat_map;
467  Comdat_map comdat_map_;
468};
469
470// A plugin object, size-specific version.
471
472template<int size, bool big_endian>
473class Sized_pluginobj : public Pluginobj
474{
475 public:
476  Sized_pluginobj(const std::string& name, Input_file* input_file,
477                  off_t offset, off_t filesize);
478
479  // Read the symbols.
480  void
481  do_read_symbols(Read_symbols_data*);
482
483  // Lay out the input sections.
484  void
485  do_layout(Symbol_table*, Layout*, Read_symbols_data*);
486
487  // Add the symbols to the symbol table.
488  void
489  do_add_symbols(Symbol_table*, Read_symbols_data*, Layout*);
490
491  Archive::Should_include
492  do_should_include_member(Symbol_table* symtab, Layout*, Read_symbols_data*,
493                           std::string* why);
494
495  // Iterate over global symbols, calling a visitor class V for each.
496  void
497  do_for_all_global_symbols(Read_symbols_data* sd,
498			    Library_base::Symbol_visitor_base* v);
499
500  // Iterate over local symbols, calling a visitor class V for each GOT offset
501  // associated with a local symbol.
502  void
503  do_for_all_local_got_entries(Got_offset_list::Visitor* v) const;
504
505  // Get the size of a section.
506  uint64_t
507  do_section_size(unsigned int shndx);
508
509  // Get the name of a section.
510  std::string
511  do_section_name(unsigned int shndx) const;
512
513  // Return a view of the contents of a section.
514  const unsigned char*
515  do_section_contents(unsigned int shndx, section_size_type* plen,
516		      bool cache);
517
518  // Return section flags.
519  uint64_t
520  do_section_flags(unsigned int shndx);
521
522  // Return section entsize.
523  uint64_t
524  do_section_entsize(unsigned int shndx);
525
526  // Return section address.
527  uint64_t
528  do_section_address(unsigned int shndx);
529
530  // Return section type.
531  unsigned int
532  do_section_type(unsigned int shndx);
533
534  // Return the section link field.
535  unsigned int
536  do_section_link(unsigned int shndx);
537
538  // Return the section link field.
539  unsigned int
540  do_section_info(unsigned int shndx);
541
542  // Return the section alignment.
543  uint64_t
544  do_section_addralign(unsigned int shndx);
545
546  // Return the Xindex structure to use.
547  Xindex*
548  do_initialize_xindex();
549
550  // Get symbol counts.
551  void
552  do_get_global_symbol_counts(const Symbol_table*, size_t*, size_t*) const;
553
554  // Get global symbols.
555  const Symbols*
556  do_get_global_symbols() const;
557
558  // Add placeholder symbols from a claimed file.
559  ld_plugin_status
560  add_symbols_from_plugin(int nsyms, const ld_plugin_symbol* syms);
561
562 protected:
563
564 private:
565};
566
567// This Task handles handles the "all symbols read" event hook.
568// The plugin may add additional input files at this time, which must
569// be queued for reading.
570
571class Plugin_hook : public Task
572{
573 public:
574  Plugin_hook(const General_options& options, Input_objects* input_objects,
575	      Symbol_table* symtab, Layout* /*layout*/, Dirsearch* dirpath,
576	      Mapfile* mapfile, Task_token* this_blocker,
577	      Task_token* next_blocker)
578    : options_(options), input_objects_(input_objects), symtab_(symtab),
579      dirpath_(dirpath), mapfile_(mapfile),
580      this_blocker_(this_blocker), next_blocker_(next_blocker)
581  { }
582
583  ~Plugin_hook();
584
585  // The standard Task methods.
586
587  Task_token*
588  is_runnable();
589
590  void
591  locks(Task_locker*);
592
593  void
594  run(Workqueue*);
595
596  std::string
597  get_name() const
598  { return "Plugin_hook"; }
599
600 private:
601  const General_options& options_;
602  Input_objects* input_objects_;
603  Symbol_table* symtab_;
604  Dirsearch* dirpath_;
605  Mapfile* mapfile_;
606  Task_token* this_blocker_;
607  Task_token* next_blocker_;
608};
609
610} // End namespace gold.
611
612#endif // !defined(GOLD_PLUGIN_H)
613