1 // plugin.cc -- plugin manager for gold -*- C++ -*-
2
3 // Copyright (C) 2008-2016 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 #include "gold.h"
24
25 #include <cstdio>
26 #include <cstdarg>
27 #include <cstring>
28 #include <string>
29 #include <vector>
30
31 #ifdef ENABLE_PLUGINS
32 #ifdef HAVE_DLFCN_H
33 #include <dlfcn.h>
34 #elif defined (HAVE_WINDOWS_H)
35 #include <windows.h>
36 #else
37 #error Unknown how to handle dynamic-load-libraries.
38 #endif
39
40 #if !defined (HAVE_DLFCN_H) && defined (HAVE_WINDOWS_H)
41
42 #define RTLD_NOW 0 /* Dummy value. */
43 static void *
dlopen(const char * file,int mode ATTRIBUTE_UNUSED)44 dlopen(const char *file, int mode ATTRIBUTE_UNUSED)
45 {
46 // Use LOAD_LIBRARY_SEARCH_DLL_LOAD_DIR to search the loaded library's
47 // directory to satisfy dependencies.
48 return LoadLibraryEx(file, NULL,
49 LOAD_LIBRARY_SEARCH_DLL_LOAD_DIR |
50 LOAD_LIBRARY_SEARCH_DEFAULT_DIRS);
51 }
52
53 static void *
dlsym(void * handle,const char * name)54 dlsym(void *handle, const char *name)
55 {
56 return reinterpret_cast<void *>(
57 GetProcAddress(static_cast<HMODULE>(handle),name));
58 }
59
60 static const char *
dlerror(void)61 dlerror(void)
62 {
63 DWORD error = GetLastError();
64 static char error_buf[512];
65 FormatMessage(FORMAT_MESSAGE_FROM_SYSTEM, NULL, error,
66 MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT), error_buf,
67 sizeof(error_buf), NULL);
68 return error_buf;
69 }
70
71 #endif /* !defined (HAVE_DLFCN_H) && defined (HAVE_WINDOWS_H) */
72 #endif /* ENABLE_PLUGINS */
73
74 #include "parameters.h"
75 #include "errors.h"
76 #include "fileread.h"
77 #include "layout.h"
78 #include "options.h"
79 #include "plugin.h"
80 #include "target.h"
81 #include "readsyms.h"
82 #include "symtab.h"
83 #include "descriptors.h"
84 #include "elfcpp.h"
85
86 namespace gold
87 {
88
89 #ifdef ENABLE_PLUGINS
90
91 // The linker's exported interfaces.
92
93 extern "C"
94 {
95
96 static enum ld_plugin_status
97 register_claim_file(ld_plugin_claim_file_handler handler);
98
99 static enum ld_plugin_status
100 register_all_symbols_read(ld_plugin_all_symbols_read_handler handler);
101
102 static enum ld_plugin_status
103 register_cleanup(ld_plugin_cleanup_handler handler);
104
105 static enum ld_plugin_status
106 add_symbols(void *handle, int nsyms, const struct ld_plugin_symbol *syms);
107
108 static enum ld_plugin_status
109 get_input_file(const void *handle, struct ld_plugin_input_file *file);
110
111 static enum ld_plugin_status
112 get_view(const void *handle, const void **viewp);
113
114 static enum ld_plugin_status
115 release_input_file(const void *handle);
116
117 static enum ld_plugin_status
118 get_symbols(const void *handle, int nsyms, struct ld_plugin_symbol *syms);
119
120 static enum ld_plugin_status
121 get_symbols_v2(const void *handle, int nsyms, struct ld_plugin_symbol *syms);
122
123 static enum ld_plugin_status
124 get_symbols_v3(const void *handle, int nsyms, struct ld_plugin_symbol *syms);
125
126 static enum ld_plugin_status
127 add_input_file(const char *pathname);
128
129 static enum ld_plugin_status
130 add_input_library(const char *pathname);
131
132 static enum ld_plugin_status
133 set_extra_library_path(const char *path);
134
135 static enum ld_plugin_status
136 message(int level, const char *format, ...);
137
138 static enum ld_plugin_status
139 get_input_section_count(const void* handle, unsigned int* count);
140
141 static enum ld_plugin_status
142 get_input_section_type(const struct ld_plugin_section section,
143 unsigned int* type);
144
145 static enum ld_plugin_status
146 get_input_section_name(const struct ld_plugin_section section,
147 char** section_name_ptr);
148
149 static enum ld_plugin_status
150 get_input_section_contents(const struct ld_plugin_section section,
151 const unsigned char** section_contents,
152 size_t* len);
153
154 static enum ld_plugin_status
155 update_section_order(const struct ld_plugin_section *section_list,
156 unsigned int num_sections);
157
158 static enum ld_plugin_status
159 allow_section_ordering();
160
161 static enum ld_plugin_status
162 allow_unique_segment_for_sections();
163
164 static enum ld_plugin_status
165 unique_segment_for_sections(const char* segment_name,
166 uint64_t flags,
167 uint64_t align,
168 const struct ld_plugin_section *section_list,
169 unsigned int num_sections);
170
171 static enum ld_plugin_status
172 get_input_section_alignment(const struct ld_plugin_section section,
173 unsigned int* addralign);
174
175 static enum ld_plugin_status
176 get_input_section_size(const struct ld_plugin_section section,
177 uint64_t* secsize);
178
179 };
180
181 #endif // ENABLE_PLUGINS
182
183 static Pluginobj* make_sized_plugin_object(Input_file* input_file,
184 off_t offset, off_t filesize);
185
186 // Plugin methods.
187
188 // Load one plugin library.
189
190 void
load()191 Plugin::load()
192 {
193 #ifdef ENABLE_PLUGINS
194 // Load the plugin library.
195 // FIXME: Look for the library in standard locations.
196 this->handle_ = dlopen(this->filename_.c_str(), RTLD_NOW);
197 if (this->handle_ == NULL)
198 {
199 gold_error(_("%s: could not load plugin library: %s"),
200 this->filename_.c_str(), dlerror());
201 return;
202 }
203
204 // Find the plugin's onload entry point.
205 void* ptr = dlsym(this->handle_, "onload");
206 if (ptr == NULL)
207 {
208 gold_error(_("%s: could not find onload entry point"),
209 this->filename_.c_str());
210 return;
211 }
212 ld_plugin_onload onload;
213 gold_assert(sizeof(onload) == sizeof(ptr));
214 memcpy(&onload, &ptr, sizeof(ptr));
215
216 // Get the linker's version number.
217 const char* ver = get_version_string();
218 int major = 0;
219 int minor = 0;
220 sscanf(ver, "%d.%d", &major, &minor);
221
222 // Allocate and populate a transfer vector.
223 const int tv_fixed_size = 29;
224
225 int tv_size = this->args_.size() + tv_fixed_size;
226 ld_plugin_tv* tv = new ld_plugin_tv[tv_size];
227
228 // Put LDPT_MESSAGE at the front of the list so the plugin can use it
229 // while processing subsequent entries.
230 int i = 0;
231 tv[i].tv_tag = LDPT_MESSAGE;
232 tv[i].tv_u.tv_message = message;
233
234 ++i;
235 tv[i].tv_tag = LDPT_API_VERSION;
236 tv[i].tv_u.tv_val = LD_PLUGIN_API_VERSION;
237
238 ++i;
239 tv[i].tv_tag = LDPT_GOLD_VERSION;
240 tv[i].tv_u.tv_val = major * 100 + minor;
241
242 ++i;
243 tv[i].tv_tag = LDPT_LINKER_OUTPUT;
244 if (parameters->options().relocatable())
245 tv[i].tv_u.tv_val = LDPO_REL;
246 else if (parameters->options().shared())
247 tv[i].tv_u.tv_val = LDPO_DYN;
248 else if (parameters->options().pie())
249 tv[i].tv_u.tv_val = LDPO_PIE;
250 else
251 tv[i].tv_u.tv_val = LDPO_EXEC;
252
253 ++i;
254 tv[i].tv_tag = LDPT_OUTPUT_NAME;
255 tv[i].tv_u.tv_string = parameters->options().output();
256
257 for (unsigned int j = 0; j < this->args_.size(); ++j)
258 {
259 ++i;
260 tv[i].tv_tag = LDPT_OPTION;
261 tv[i].tv_u.tv_string = this->args_[j].c_str();
262 }
263
264 ++i;
265 tv[i].tv_tag = LDPT_REGISTER_CLAIM_FILE_HOOK;
266 tv[i].tv_u.tv_register_claim_file = register_claim_file;
267
268 ++i;
269 tv[i].tv_tag = LDPT_REGISTER_ALL_SYMBOLS_READ_HOOK;
270 tv[i].tv_u.tv_register_all_symbols_read = register_all_symbols_read;
271
272 ++i;
273 tv[i].tv_tag = LDPT_REGISTER_CLEANUP_HOOK;
274 tv[i].tv_u.tv_register_cleanup = register_cleanup;
275
276 ++i;
277 tv[i].tv_tag = LDPT_ADD_SYMBOLS;
278 tv[i].tv_u.tv_add_symbols = add_symbols;
279
280 ++i;
281 tv[i].tv_tag = LDPT_GET_INPUT_FILE;
282 tv[i].tv_u.tv_get_input_file = get_input_file;
283
284 ++i;
285 tv[i].tv_tag = LDPT_GET_VIEW;
286 tv[i].tv_u.tv_get_view = get_view;
287
288 ++i;
289 tv[i].tv_tag = LDPT_RELEASE_INPUT_FILE;
290 tv[i].tv_u.tv_release_input_file = release_input_file;
291
292 ++i;
293 tv[i].tv_tag = LDPT_GET_SYMBOLS;
294 tv[i].tv_u.tv_get_symbols = get_symbols;
295
296 ++i;
297 tv[i].tv_tag = LDPT_GET_SYMBOLS_V2;
298 tv[i].tv_u.tv_get_symbols = get_symbols_v2;
299
300 ++i;
301 tv[i].tv_tag = LDPT_GET_SYMBOLS_V3;
302 tv[i].tv_u.tv_get_symbols = get_symbols_v3;
303
304 ++i;
305 tv[i].tv_tag = LDPT_ADD_INPUT_FILE;
306 tv[i].tv_u.tv_add_input_file = add_input_file;
307
308 ++i;
309 tv[i].tv_tag = LDPT_ADD_INPUT_LIBRARY;
310 tv[i].tv_u.tv_add_input_library = add_input_library;
311
312 ++i;
313 tv[i].tv_tag = LDPT_SET_EXTRA_LIBRARY_PATH;
314 tv[i].tv_u.tv_set_extra_library_path = set_extra_library_path;
315
316 ++i;
317 tv[i].tv_tag = LDPT_GET_INPUT_SECTION_COUNT;
318 tv[i].tv_u.tv_get_input_section_count = get_input_section_count;
319
320 ++i;
321 tv[i].tv_tag = LDPT_GET_INPUT_SECTION_TYPE;
322 tv[i].tv_u.tv_get_input_section_type = get_input_section_type;
323
324 ++i;
325 tv[i].tv_tag = LDPT_GET_INPUT_SECTION_NAME;
326 tv[i].tv_u.tv_get_input_section_name = get_input_section_name;
327
328 ++i;
329 tv[i].tv_tag = LDPT_GET_INPUT_SECTION_CONTENTS;
330 tv[i].tv_u.tv_get_input_section_contents = get_input_section_contents;
331
332 ++i;
333 tv[i].tv_tag = LDPT_UPDATE_SECTION_ORDER;
334 tv[i].tv_u.tv_update_section_order = update_section_order;
335
336 ++i;
337 tv[i].tv_tag = LDPT_ALLOW_SECTION_ORDERING;
338 tv[i].tv_u.tv_allow_section_ordering = allow_section_ordering;
339
340 ++i;
341 tv[i].tv_tag = LDPT_ALLOW_UNIQUE_SEGMENT_FOR_SECTIONS;
342 tv[i].tv_u.tv_allow_unique_segment_for_sections
343 = allow_unique_segment_for_sections;
344
345 ++i;
346 tv[i].tv_tag = LDPT_UNIQUE_SEGMENT_FOR_SECTIONS;
347 tv[i].tv_u.tv_unique_segment_for_sections = unique_segment_for_sections;
348
349 ++i;
350 tv[i].tv_tag = LDPT_GET_INPUT_SECTION_ALIGNMENT;
351 tv[i].tv_u.tv_get_input_section_alignment = get_input_section_alignment;
352
353 ++i;
354 tv[i].tv_tag = LDPT_GET_INPUT_SECTION_SIZE;
355 tv[i].tv_u.tv_get_input_section_size = get_input_section_size;
356
357 ++i;
358 tv[i].tv_tag = LDPT_NULL;
359 tv[i].tv_u.tv_val = 0;
360
361 gold_assert(i == tv_size - 1);
362
363 // Call the onload entry point.
364 (*onload)(tv);
365
366 delete[] tv;
367 #endif // ENABLE_PLUGINS
368 }
369
370 // Call the plugin claim-file handler.
371
372 inline bool
claim_file(struct ld_plugin_input_file * plugin_input_file)373 Plugin::claim_file(struct ld_plugin_input_file* plugin_input_file)
374 {
375 int claimed = 0;
376
377 if (this->claim_file_handler_ != NULL)
378 {
379 (*this->claim_file_handler_)(plugin_input_file, &claimed);
380 if (claimed)
381 return true;
382 }
383 return false;
384 }
385
386 // Call the all-symbols-read handler.
387
388 inline void
all_symbols_read()389 Plugin::all_symbols_read()
390 {
391 if (this->all_symbols_read_handler_ != NULL)
392 (*this->all_symbols_read_handler_)();
393 }
394
395 // Call the cleanup handler.
396
397 inline void
cleanup()398 Plugin::cleanup()
399 {
400 if (this->cleanup_handler_ != NULL && !this->cleanup_done_)
401 {
402 // Set this flag before calling to prevent a recursive plunge
403 // in the event that a plugin's cleanup handler issues a
404 // fatal error.
405 this->cleanup_done_ = true;
406 (*this->cleanup_handler_)();
407 }
408 }
409
410 // This task is used to rescan archives as needed.
411
412 class Plugin_rescan : public Task
413 {
414 public:
Plugin_rescan(Task_token * this_blocker,Task_token * next_blocker)415 Plugin_rescan(Task_token* this_blocker, Task_token* next_blocker)
416 : this_blocker_(this_blocker), next_blocker_(next_blocker)
417 { }
418
~Plugin_rescan()419 ~Plugin_rescan()
420 {
421 delete this->this_blocker_;
422 }
423
424 Task_token*
is_runnable()425 is_runnable()
426 {
427 if (this->this_blocker_->is_blocked())
428 return this->this_blocker_;
429 return NULL;
430 }
431
432 void
locks(Task_locker * tl)433 locks(Task_locker* tl)
434 { tl->add(this, this->next_blocker_); }
435
436 void
run(Workqueue *)437 run(Workqueue*)
438 { parameters->options().plugins()->rescan(this); }
439
440 std::string
get_name() const441 get_name() const
442 { return "Plugin_rescan"; }
443
444 private:
445 Task_token* this_blocker_;
446 Task_token* next_blocker_;
447 };
448
449 // Plugin_manager methods.
450
~Plugin_manager()451 Plugin_manager::~Plugin_manager()
452 {
453 for (Plugin_list::iterator p = this->plugins_.begin();
454 p != this->plugins_.end();
455 ++p)
456 delete *p;
457 this->plugins_.clear();
458 for (Object_list::iterator obj = this->objects_.begin();
459 obj != this->objects_.end();
460 ++obj)
461 delete *obj;
462 this->objects_.clear();
463 delete this->lock_;
464 }
465
466 // Load all plugin libraries.
467
468 void
load_plugins(Layout * layout)469 Plugin_manager::load_plugins(Layout* layout)
470 {
471 this->layout_ = layout;
472 for (this->current_ = this->plugins_.begin();
473 this->current_ != this->plugins_.end();
474 ++this->current_)
475 (*this->current_)->load();
476 }
477
478 // Call the plugin claim-file handlers in turn to see if any claim the file.
479
480 Pluginobj*
claim_file(Input_file * input_file,off_t offset,off_t filesize,Object * elf_object)481 Plugin_manager::claim_file(Input_file* input_file, off_t offset,
482 off_t filesize, Object* elf_object)
483 {
484 bool lock_initialized = this->initialize_lock_.initialize();
485
486 gold_assert(lock_initialized);
487 Hold_lock hl(*this->lock_);
488 if (this->in_replacement_phase_)
489 return NULL;
490
491 unsigned int handle = this->objects_.size();
492 this->input_file_ = input_file;
493 this->plugin_input_file_.name = input_file->filename().c_str();
494 this->plugin_input_file_.fd = input_file->file().descriptor();
495 this->plugin_input_file_.offset = offset;
496 this->plugin_input_file_.filesize = filesize;
497 this->plugin_input_file_.handle = reinterpret_cast<void*>(handle);
498 if (elf_object != NULL)
499 this->objects_.push_back(elf_object);
500 this->in_claim_file_handler_ = true;
501
502 for (this->current_ = this->plugins_.begin();
503 this->current_ != this->plugins_.end();
504 ++this->current_)
505 {
506 if ((*this->current_)->claim_file(&this->plugin_input_file_))
507 {
508 this->any_claimed_ = true;
509 this->in_claim_file_handler_ = false;
510
511 if (this->objects_.size() > handle
512 && this->objects_[handle]->pluginobj() != NULL)
513 return this->objects_[handle]->pluginobj();
514
515 // If the plugin claimed the file but did not call the
516 // add_symbols callback, we need to create the Pluginobj now.
517 Pluginobj* obj = this->make_plugin_object(handle);
518 return obj;
519 }
520 }
521
522 this->in_claim_file_handler_ = false;
523 return NULL;
524 }
525
526 // Save an archive. This is used so that a plugin can add a file
527 // which refers to a symbol which was not previously referenced. In
528 // that case we want to pretend that the symbol was referenced before,
529 // and pull in the archive object.
530
531 void
save_archive(Archive * archive)532 Plugin_manager::save_archive(Archive* archive)
533 {
534 if (this->in_replacement_phase_ || !this->any_claimed_)
535 delete archive;
536 else
537 this->rescannable_.push_back(Rescannable(archive));
538 }
539
540 // Save an Input_group. This is like save_archive.
541
542 void
save_input_group(Input_group * input_group)543 Plugin_manager::save_input_group(Input_group* input_group)
544 {
545 if (this->in_replacement_phase_ || !this->any_claimed_)
546 delete input_group;
547 else
548 this->rescannable_.push_back(Rescannable(input_group));
549 }
550
551 // Call the all-symbols-read handlers.
552
553 void
all_symbols_read(Workqueue * workqueue,Task * task,Input_objects * input_objects,Symbol_table * symtab,Dirsearch * dirpath,Mapfile * mapfile,Task_token ** last_blocker)554 Plugin_manager::all_symbols_read(Workqueue* workqueue, Task* task,
555 Input_objects* input_objects,
556 Symbol_table* symtab,
557 Dirsearch* dirpath, Mapfile* mapfile,
558 Task_token** last_blocker)
559 {
560 this->in_replacement_phase_ = true;
561 this->workqueue_ = workqueue;
562 this->task_ = task;
563 this->input_objects_ = input_objects;
564 this->symtab_ = symtab;
565 this->dirpath_ = dirpath;
566 this->mapfile_ = mapfile;
567 this->this_blocker_ = NULL;
568
569 for (this->current_ = this->plugins_.begin();
570 this->current_ != this->plugins_.end();
571 ++this->current_)
572 (*this->current_)->all_symbols_read();
573
574 if (this->any_added_)
575 {
576 Task_token* next_blocker = new Task_token(true);
577 next_blocker->add_blocker();
578 workqueue->queue(new Plugin_rescan(this->this_blocker_, next_blocker));
579 this->this_blocker_ = next_blocker;
580 }
581
582 *last_blocker = this->this_blocker_;
583 }
584
585 // This is called when we see a new undefined symbol. If we are in
586 // the replacement phase, this means that we may need to rescan some
587 // archives we have previously seen.
588
589 void
new_undefined_symbol(Symbol * sym)590 Plugin_manager::new_undefined_symbol(Symbol* sym)
591 {
592 if (this->in_replacement_phase_)
593 this->undefined_symbols_.push_back(sym);
594 }
595
596 // Rescan archives as needed. This handles the case where a new
597 // object file added by a plugin has an undefined reference to some
598 // symbol defined in an archive.
599
600 void
rescan(Task * task)601 Plugin_manager::rescan(Task* task)
602 {
603 size_t rescan_pos = 0;
604 size_t rescan_size = this->rescannable_.size();
605 while (!this->undefined_symbols_.empty())
606 {
607 if (rescan_pos >= rescan_size)
608 {
609 this->undefined_symbols_.clear();
610 return;
611 }
612
613 Undefined_symbol_list undefs;
614 undefs.reserve(this->undefined_symbols_.size());
615 this->undefined_symbols_.swap(undefs);
616
617 size_t min_rescan_pos = rescan_size;
618
619 for (Undefined_symbol_list::const_iterator p = undefs.begin();
620 p != undefs.end();
621 ++p)
622 {
623 if (!(*p)->is_undefined())
624 continue;
625
626 this->undefined_symbols_.push_back(*p);
627
628 // Find the first rescan archive which defines this symbol,
629 // starting at the current rescan position. The rescan position
630 // exists so that given -la -lb -lc we don't look for undefined
631 // symbols in -lb back in -la, but instead get the definition
632 // from -lc. Don't bother to look past the current minimum
633 // rescan position.
634 for (size_t i = rescan_pos; i < min_rescan_pos; ++i)
635 {
636 if (this->rescannable_defines(i, *p))
637 {
638 min_rescan_pos = i;
639 break;
640 }
641 }
642 }
643
644 if (min_rescan_pos >= rescan_size)
645 {
646 // We didn't find any rescannable archives which define any
647 // undefined symbols.
648 return;
649 }
650
651 const Rescannable& r(this->rescannable_[min_rescan_pos]);
652 if (r.is_archive)
653 {
654 Task_lock_obj<Archive> tl(task, r.u.archive);
655 r.u.archive->add_symbols(this->symtab_, this->layout_,
656 this->input_objects_, this->mapfile_);
657 }
658 else
659 {
660 size_t next_saw_undefined = this->symtab_->saw_undefined();
661 size_t saw_undefined;
662 do
663 {
664 saw_undefined = next_saw_undefined;
665
666 for (Input_group::const_iterator p = r.u.input_group->begin();
667 p != r.u.input_group->end();
668 ++p)
669 {
670 Task_lock_obj<Archive> tl(task, *p);
671
672 (*p)->add_symbols(this->symtab_, this->layout_,
673 this->input_objects_, this->mapfile_);
674 }
675
676 next_saw_undefined = this->symtab_->saw_undefined();
677 }
678 while (saw_undefined != next_saw_undefined);
679 }
680
681 for (size_t i = rescan_pos; i < min_rescan_pos + 1; ++i)
682 {
683 if (this->rescannable_[i].is_archive)
684 delete this->rescannable_[i].u.archive;
685 else
686 delete this->rescannable_[i].u.input_group;
687 }
688
689 rescan_pos = min_rescan_pos + 1;
690 }
691 }
692
693 // Return whether the rescannable at index I defines SYM.
694
695 bool
rescannable_defines(size_t i,Symbol * sym)696 Plugin_manager::rescannable_defines(size_t i, Symbol* sym)
697 {
698 const Rescannable& r(this->rescannable_[i]);
699 if (r.is_archive)
700 return r.u.archive->defines_symbol(sym);
701 else
702 {
703 for (Input_group::const_iterator p = r.u.input_group->begin();
704 p != r.u.input_group->end();
705 ++p)
706 {
707 if ((*p)->defines_symbol(sym))
708 return true;
709 }
710 return false;
711 }
712 }
713
714 // Layout deferred objects.
715
716 void
layout_deferred_objects()717 Plugin_manager::layout_deferred_objects()
718 {
719 Deferred_layout_list::iterator obj;
720
721 for (obj = this->deferred_layout_objects_.begin();
722 obj != this->deferred_layout_objects_.end();
723 ++obj)
724 {
725 // Lock the object so we can read from it. This is only called
726 // single-threaded from queue_middle_tasks, so it is OK to lock.
727 // Unfortunately we have no way to pass in a Task token.
728 const Task* dummy_task = reinterpret_cast<const Task*>(-1);
729 Task_lock_obj<Object> tl(dummy_task, *obj);
730 (*obj)->layout_deferred_sections(this->layout_);
731 }
732 }
733
734 // Call the cleanup handlers.
735
736 void
cleanup()737 Plugin_manager::cleanup()
738 {
739 if (this->any_added_)
740 {
741 // If any input files were added, close all the input files.
742 // This is because the plugin may want to remove them, and on
743 // Windows you are not allowed to remove an open file.
744 close_all_descriptors();
745 }
746
747 for (this->current_ = this->plugins_.begin();
748 this->current_ != this->plugins_.end();
749 ++this->current_)
750 (*this->current_)->cleanup();
751 }
752
753 // Make a new Pluginobj object. This is called when the plugin calls
754 // the add_symbols API.
755
756 Pluginobj*
make_plugin_object(unsigned int handle)757 Plugin_manager::make_plugin_object(unsigned int handle)
758 {
759 // Make sure we aren't asked to make an object for the same handle twice.
760 if (this->objects_.size() != handle
761 && this->objects_[handle]->pluginobj() != NULL)
762 return NULL;
763
764 Pluginobj* obj = make_sized_plugin_object(this->input_file_,
765 this->plugin_input_file_.offset,
766 this->plugin_input_file_.filesize);
767
768
769 // If the elf object for this file was pushed into the objects_ vector, delete
770 // it to make room for the Pluginobj as this file is claimed.
771 if (this->objects_.size() != handle)
772 this->objects_.pop_back();
773
774 this->objects_.push_back(obj);
775 return obj;
776 }
777
778 // Get the input file information with an open (possibly re-opened)
779 // file descriptor.
780
781 ld_plugin_status
get_input_file(unsigned int handle,struct ld_plugin_input_file * file)782 Plugin_manager::get_input_file(unsigned int handle,
783 struct ld_plugin_input_file* file)
784 {
785 Pluginobj* obj = this->object(handle)->pluginobj();
786 if (obj == NULL)
787 return LDPS_BAD_HANDLE;
788
789 obj->lock(this->task_);
790 file->name = obj->filename().c_str();
791 file->fd = obj->descriptor();
792 file->offset = obj->offset();
793 file->filesize = obj->filesize();
794 file->handle = reinterpret_cast<void*>(handle);
795 return LDPS_OK;
796 }
797
798 // Release the input file.
799
800 ld_plugin_status
release_input_file(unsigned int handle)801 Plugin_manager::release_input_file(unsigned int handle)
802 {
803 if (this->object(handle) == NULL)
804 return LDPS_BAD_HANDLE;
805
806 Pluginobj* obj = this->object(handle)->pluginobj();
807
808 if (obj == NULL)
809 return LDPS_BAD_HANDLE;
810
811 obj->unlock(this->task_);
812 return LDPS_OK;
813 }
814
815 // Get the elf object corresponding to the handle. Return NULL if we
816 // found a Pluginobj instead.
817
818 Object*
get_elf_object(const void * handle)819 Plugin_manager::get_elf_object(const void* handle)
820 {
821 Object* obj = this->object(
822 static_cast<unsigned int>(reinterpret_cast<intptr_t>(handle)));
823
824 // The object should not be a Pluginobj.
825 if (obj == NULL
826 || obj->pluginobj() != NULL)
827 return NULL;
828
829 return obj;
830 }
831
832 ld_plugin_status
get_view(unsigned int handle,const void ** viewp)833 Plugin_manager::get_view(unsigned int handle, const void **viewp)
834 {
835 off_t offset;
836 size_t filesize;
837 Input_file *input_file;
838 if (this->in_claim_file_handler_)
839 {
840 // We are being called from the claim_file hook.
841 const struct ld_plugin_input_file &f = this->plugin_input_file_;
842 offset = f.offset;
843 filesize = f.filesize;
844 input_file = this->input_file_;
845 }
846 else
847 {
848 // An already claimed file.
849 if (this->object(handle) == NULL)
850 return LDPS_BAD_HANDLE;
851 Pluginobj* obj = this->object(handle)->pluginobj();
852 if (obj == NULL)
853 return LDPS_BAD_HANDLE;
854 offset = obj->offset();
855 filesize = obj->filesize();
856 input_file = obj->input_file();
857 }
858 *viewp = (void*) input_file->file().get_view(offset, 0, filesize, false,
859 false);
860 return LDPS_OK;
861 }
862
863 // Add a new library path.
864
865 ld_plugin_status
set_extra_library_path(const char * path)866 Plugin_manager::set_extra_library_path(const char* path)
867 {
868 this->extra_search_path_ = std::string(path);
869 return LDPS_OK;
870 }
871
872 // Add a new input file.
873
874 ld_plugin_status
add_input_file(const char * pathname,bool is_lib)875 Plugin_manager::add_input_file(const char* pathname, bool is_lib)
876 {
877 Input_file_argument file(pathname,
878 (is_lib
879 ? Input_file_argument::INPUT_FILE_TYPE_LIBRARY
880 : Input_file_argument::INPUT_FILE_TYPE_FILE),
881 (is_lib
882 ? this->extra_search_path_.c_str()
883 : ""),
884 false,
885 this->options_);
886 Input_argument* input_argument = new Input_argument(file);
887 Task_token* next_blocker = new Task_token(true);
888 next_blocker->add_blocker();
889 if (parameters->incremental())
890 gold_error(_("input files added by plug-ins in --incremental mode not "
891 "supported yet"));
892 this->workqueue_->queue_soon(new Read_symbols(this->input_objects_,
893 this->symtab_,
894 this->layout_,
895 this->dirpath_,
896 0,
897 this->mapfile_,
898 input_argument,
899 NULL,
900 NULL,
901 this->this_blocker_,
902 next_blocker));
903 this->this_blocker_ = next_blocker;
904 this->any_added_ = true;
905 return LDPS_OK;
906 }
907
908 // Class Pluginobj.
909
Pluginobj(const std::string & name,Input_file * input_file,off_t offset,off_t filesize)910 Pluginobj::Pluginobj(const std::string& name, Input_file* input_file,
911 off_t offset, off_t filesize)
912 : Object(name, input_file, false, offset),
913 nsyms_(0), syms_(NULL), symbols_(), filesize_(filesize), comdat_map_()
914 {
915 }
916
917 // Return TRUE if a defined symbol is referenced from outside the
918 // universe of claimed objects. Only references from relocatable,
919 // non-IR (unclaimed) objects count as a reference. References from
920 // dynamic objects count only as "visible".
921
922 static inline bool
is_referenced_from_outside(Symbol * lsym)923 is_referenced_from_outside(Symbol* lsym)
924 {
925 if (lsym->in_real_elf())
926 return true;
927 if (parameters->options().relocatable())
928 return true;
929 if (parameters->options().is_undefined(lsym->name()))
930 return true;
931 return false;
932 }
933
934 // Return TRUE if a defined symbol might be reachable from outside the
935 // load module.
936
937 static inline bool
is_visible_from_outside(Symbol * lsym)938 is_visible_from_outside(Symbol* lsym)
939 {
940 if (lsym->in_dyn())
941 return true;
942 if (parameters->options().export_dynamic() || parameters->options().shared())
943 return lsym->is_externally_visible();
944 return false;
945 }
946
947 // Get symbol resolution info.
948
949 ld_plugin_status
get_symbol_resolution_info(Symbol_table * symtab,int nsyms,ld_plugin_symbol * syms,int version) const950 Pluginobj::get_symbol_resolution_info(Symbol_table* symtab,
951 int nsyms,
952 ld_plugin_symbol* syms,
953 int version) const
954 {
955 // For version 1 of this interface, we cannot use
956 // LDPR_PREVAILING_DEF_IRONLY_EXP, so we return LDPR_PREVAILING_DEF
957 // instead.
958 const ld_plugin_symbol_resolution ldpr_prevailing_def_ironly_exp
959 = (version > 1
960 ? LDPR_PREVAILING_DEF_IRONLY_EXP
961 : LDPR_PREVAILING_DEF);
962
963 if (nsyms > this->nsyms_)
964 return LDPS_NO_SYMS;
965
966 if (static_cast<size_t>(nsyms) > this->symbols_.size())
967 {
968 // We never decided to include this object. We mark all symbols as
969 // preempted.
970 gold_assert(this->symbols_.size() == 0);
971 for (int i = 0; i < nsyms; i++)
972 syms[i].resolution = LDPR_PREEMPTED_REG;
973 return version > 2 ? LDPS_NO_SYMS : LDPS_OK;
974 }
975
976 for (int i = 0; i < nsyms; i++)
977 {
978 ld_plugin_symbol* isym = &syms[i];
979 Symbol* lsym = this->symbols_[i];
980 if (lsym->is_forwarder())
981 lsym = symtab->resolve_forwards(lsym);
982 ld_plugin_symbol_resolution res = LDPR_UNKNOWN;
983
984 if (lsym->is_undefined())
985 // The symbol remains undefined.
986 res = LDPR_UNDEF;
987 else if (isym->def == LDPK_UNDEF
988 || isym->def == LDPK_WEAKUNDEF
989 || isym->def == LDPK_COMMON)
990 {
991 // The original symbol was undefined or common.
992 if (lsym->source() != Symbol::FROM_OBJECT)
993 res = LDPR_RESOLVED_EXEC;
994 else if (lsym->object()->pluginobj() == this)
995 {
996 if (is_referenced_from_outside(lsym))
997 res = LDPR_PREVAILING_DEF;
998 else if (is_visible_from_outside(lsym))
999 res = ldpr_prevailing_def_ironly_exp;
1000 else
1001 res = LDPR_PREVAILING_DEF_IRONLY;
1002 }
1003 else if (lsym->object()->pluginobj() != NULL)
1004 res = LDPR_RESOLVED_IR;
1005 else if (lsym->object()->is_dynamic())
1006 res = LDPR_RESOLVED_DYN;
1007 else
1008 res = LDPR_RESOLVED_EXEC;
1009 }
1010 else
1011 {
1012 // The original symbol was a definition.
1013 if (lsym->source() != Symbol::FROM_OBJECT)
1014 res = LDPR_PREEMPTED_REG;
1015 else if (lsym->object() == static_cast<const Object*>(this))
1016 {
1017 if (is_referenced_from_outside(lsym))
1018 res = LDPR_PREVAILING_DEF;
1019 else if (is_visible_from_outside(lsym))
1020 res = ldpr_prevailing_def_ironly_exp;
1021 else
1022 res = LDPR_PREVAILING_DEF_IRONLY;
1023 }
1024 else
1025 res = (lsym->object()->pluginobj() != NULL
1026 ? LDPR_PREEMPTED_IR
1027 : LDPR_PREEMPTED_REG);
1028 }
1029 isym->resolution = res;
1030 }
1031 return LDPS_OK;
1032 }
1033
1034 // Return TRUE if the comdat group with key COMDAT_KEY from this object
1035 // should be kept.
1036
1037 bool
include_comdat_group(std::string comdat_key,Layout * layout)1038 Pluginobj::include_comdat_group(std::string comdat_key, Layout* layout)
1039 {
1040 std::pair<Comdat_map::iterator, bool> ins =
1041 this->comdat_map_.insert(std::make_pair(comdat_key, false));
1042
1043 // If this is the first time we've seen this comdat key, ask the
1044 // layout object whether it should be included.
1045 if (ins.second)
1046 ins.first->second = layout->find_or_add_kept_section(comdat_key,
1047 NULL, 0, true,
1048 true, NULL);
1049
1050 return ins.first->second;
1051 }
1052
1053 // Class Sized_pluginobj.
1054
1055 template<int size, bool big_endian>
Sized_pluginobj(const std::string & name,Input_file * input_file,off_t offset,off_t filesize)1056 Sized_pluginobj<size, big_endian>::Sized_pluginobj(
1057 const std::string& name,
1058 Input_file* input_file,
1059 off_t offset,
1060 off_t filesize)
1061 : Pluginobj(name, input_file, offset, filesize)
1062 {
1063 }
1064
1065 // Read the symbols. Not used for plugin objects.
1066
1067 template<int size, bool big_endian>
1068 void
do_read_symbols(Read_symbols_data *)1069 Sized_pluginobj<size, big_endian>::do_read_symbols(Read_symbols_data*)
1070 {
1071 gold_unreachable();
1072 }
1073
1074 // Lay out the input sections. Not used for plugin objects.
1075
1076 template<int size, bool big_endian>
1077 void
do_layout(Symbol_table *,Layout *,Read_symbols_data *)1078 Sized_pluginobj<size, big_endian>::do_layout(Symbol_table*, Layout*,
1079 Read_symbols_data*)
1080 {
1081 gold_unreachable();
1082 }
1083
1084 // Add the symbols to the symbol table.
1085
1086 template<int size, bool big_endian>
1087 void
do_add_symbols(Symbol_table * symtab,Read_symbols_data *,Layout * layout)1088 Sized_pluginobj<size, big_endian>::do_add_symbols(Symbol_table* symtab,
1089 Read_symbols_data*,
1090 Layout* layout)
1091 {
1092 const int sym_size = elfcpp::Elf_sizes<size>::sym_size;
1093 unsigned char symbuf[sym_size];
1094 elfcpp::Sym<size, big_endian> sym(symbuf);
1095 elfcpp::Sym_write<size, big_endian> osym(symbuf);
1096
1097 this->symbols_.resize(this->nsyms_);
1098
1099 for (int i = 0; i < this->nsyms_; ++i)
1100 {
1101 const struct ld_plugin_symbol* isym = &this->syms_[i];
1102 const char* name = isym->name;
1103 const char* ver = isym->version;
1104 elfcpp::Elf_Half shndx;
1105 elfcpp::STB bind;
1106 elfcpp::STV vis;
1107
1108 if (name != NULL && name[0] == '\0')
1109 name = NULL;
1110 if (ver != NULL && ver[0] == '\0')
1111 ver = NULL;
1112
1113 switch (isym->def)
1114 {
1115 case LDPK_WEAKDEF:
1116 case LDPK_WEAKUNDEF:
1117 bind = elfcpp::STB_WEAK;
1118 break;
1119 case LDPK_DEF:
1120 case LDPK_UNDEF:
1121 case LDPK_COMMON:
1122 default:
1123 bind = elfcpp::STB_GLOBAL;
1124 break;
1125 }
1126
1127 switch (isym->def)
1128 {
1129 case LDPK_DEF:
1130 case LDPK_WEAKDEF:
1131 shndx = elfcpp::SHN_ABS;
1132 break;
1133 case LDPK_COMMON:
1134 shndx = elfcpp::SHN_COMMON;
1135 break;
1136 case LDPK_UNDEF:
1137 case LDPK_WEAKUNDEF:
1138 default:
1139 shndx = elfcpp::SHN_UNDEF;
1140 break;
1141 }
1142
1143 switch (isym->visibility)
1144 {
1145 case LDPV_PROTECTED:
1146 vis = elfcpp::STV_PROTECTED;
1147 break;
1148 case LDPV_INTERNAL:
1149 vis = elfcpp::STV_INTERNAL;
1150 break;
1151 case LDPV_HIDDEN:
1152 vis = elfcpp::STV_HIDDEN;
1153 break;
1154 case LDPV_DEFAULT:
1155 default:
1156 vis = elfcpp::STV_DEFAULT;
1157 break;
1158 }
1159
1160 if (isym->comdat_key != NULL
1161 && isym->comdat_key[0] != '\0'
1162 && !this->include_comdat_group(isym->comdat_key, layout))
1163 shndx = elfcpp::SHN_UNDEF;
1164
1165 osym.put_st_name(0);
1166 osym.put_st_value(0);
1167 osym.put_st_size(0);
1168 osym.put_st_info(bind, elfcpp::STT_NOTYPE);
1169 osym.put_st_other(vis, 0);
1170 osym.put_st_shndx(shndx);
1171
1172 this->symbols_[i] =
1173 symtab->add_from_pluginobj<size, big_endian>(this, name, ver, &sym);
1174 }
1175 }
1176
1177 template<int size, bool big_endian>
1178 Archive::Should_include
do_should_include_member(Symbol_table * symtab,Layout * layout,Read_symbols_data *,std::string * why)1179 Sized_pluginobj<size, big_endian>::do_should_include_member(
1180 Symbol_table* symtab,
1181 Layout* layout,
1182 Read_symbols_data*,
1183 std::string* why)
1184 {
1185 char* tmpbuf = NULL;
1186 size_t tmpbuflen = 0;
1187
1188 for (int i = 0; i < this->nsyms_; ++i)
1189 {
1190 const struct ld_plugin_symbol& sym = this->syms_[i];
1191 if (sym.def == LDPK_UNDEF || sym.def == LDPK_WEAKUNDEF)
1192 continue;
1193 const char* name = sym.name;
1194 Symbol* symbol;
1195 Archive::Should_include t = Archive::should_include_member(symtab,
1196 layout,
1197 name,
1198 &symbol, why,
1199 &tmpbuf,
1200 &tmpbuflen);
1201 if (t == Archive::SHOULD_INCLUDE_YES)
1202 {
1203 if (tmpbuf != NULL)
1204 free(tmpbuf);
1205 return t;
1206 }
1207 }
1208 if (tmpbuf != NULL)
1209 free(tmpbuf);
1210 return Archive::SHOULD_INCLUDE_UNKNOWN;
1211 }
1212
1213 // Iterate over global symbols, calling a visitor class V for each.
1214
1215 template<int size, bool big_endian>
1216 void
do_for_all_global_symbols(Read_symbols_data *,Library_base::Symbol_visitor_base * v)1217 Sized_pluginobj<size, big_endian>::do_for_all_global_symbols(
1218 Read_symbols_data*,
1219 Library_base::Symbol_visitor_base* v)
1220 {
1221 for (int i = 0; i < this->nsyms_; ++i)
1222 {
1223 const struct ld_plugin_symbol& sym = this->syms_[i];
1224 if (sym.def != LDPK_UNDEF)
1225 v->visit(sym.name);
1226 }
1227 }
1228
1229 // Iterate over local symbols, calling a visitor class V for each GOT offset
1230 // associated with a local symbol.
1231 template<int size, bool big_endian>
1232 void
do_for_all_local_got_entries(Got_offset_list::Visitor *) const1233 Sized_pluginobj<size, big_endian>::do_for_all_local_got_entries(
1234 Got_offset_list::Visitor*) const
1235 {
1236 gold_unreachable();
1237 }
1238
1239 // Get the size of a section. Not used for plugin objects.
1240
1241 template<int size, bool big_endian>
1242 uint64_t
do_section_size(unsigned int)1243 Sized_pluginobj<size, big_endian>::do_section_size(unsigned int)
1244 {
1245 gold_unreachable();
1246 return 0;
1247 }
1248
1249 // Get the name of a section. Not used for plugin objects.
1250
1251 template<int size, bool big_endian>
1252 std::string
do_section_name(unsigned int) const1253 Sized_pluginobj<size, big_endian>::do_section_name(unsigned int) const
1254 {
1255 gold_unreachable();
1256 return std::string();
1257 }
1258
1259 // Return a view of the contents of a section. Not used for plugin objects.
1260
1261 template<int size, bool big_endian>
1262 const unsigned char*
do_section_contents(unsigned int,section_size_type *,bool)1263 Sized_pluginobj<size, big_endian>::do_section_contents(
1264 unsigned int,
1265 section_size_type*,
1266 bool)
1267 {
1268 gold_unreachable();
1269 return NULL;
1270 }
1271
1272 // Return section flags. Not used for plugin objects.
1273
1274 template<int size, bool big_endian>
1275 uint64_t
do_section_flags(unsigned int)1276 Sized_pluginobj<size, big_endian>::do_section_flags(unsigned int)
1277 {
1278 gold_unreachable();
1279 return 0;
1280 }
1281
1282 // Return section entsize. Not used for plugin objects.
1283
1284 template<int size, bool big_endian>
1285 uint64_t
do_section_entsize(unsigned int)1286 Sized_pluginobj<size, big_endian>::do_section_entsize(unsigned int)
1287 {
1288 gold_unreachable();
1289 return 0;
1290 }
1291
1292 // Return section address. Not used for plugin objects.
1293
1294 template<int size, bool big_endian>
1295 uint64_t
do_section_address(unsigned int)1296 Sized_pluginobj<size, big_endian>::do_section_address(unsigned int)
1297 {
1298 gold_unreachable();
1299 return 0;
1300 }
1301
1302 // Return section type. Not used for plugin objects.
1303
1304 template<int size, bool big_endian>
1305 unsigned int
do_section_type(unsigned int)1306 Sized_pluginobj<size, big_endian>::do_section_type(unsigned int)
1307 {
1308 gold_unreachable();
1309 return 0;
1310 }
1311
1312 // Return the section link field. Not used for plugin objects.
1313
1314 template<int size, bool big_endian>
1315 unsigned int
do_section_link(unsigned int)1316 Sized_pluginobj<size, big_endian>::do_section_link(unsigned int)
1317 {
1318 gold_unreachable();
1319 return 0;
1320 }
1321
1322 // Return the section link field. Not used for plugin objects.
1323
1324 template<int size, bool big_endian>
1325 unsigned int
do_section_info(unsigned int)1326 Sized_pluginobj<size, big_endian>::do_section_info(unsigned int)
1327 {
1328 gold_unreachable();
1329 return 0;
1330 }
1331
1332 // Return the section alignment. Not used for plugin objects.
1333
1334 template<int size, bool big_endian>
1335 uint64_t
do_section_addralign(unsigned int)1336 Sized_pluginobj<size, big_endian>::do_section_addralign(unsigned int)
1337 {
1338 gold_unreachable();
1339 return 0;
1340 }
1341
1342 // Return the Xindex structure to use. Not used for plugin objects.
1343
1344 template<int size, bool big_endian>
1345 Xindex*
do_initialize_xindex()1346 Sized_pluginobj<size, big_endian>::do_initialize_xindex()
1347 {
1348 gold_unreachable();
1349 return NULL;
1350 }
1351
1352 // Get symbol counts. Don't count plugin objects; the replacement
1353 // files will provide the counts.
1354
1355 template<int size, bool big_endian>
1356 void
do_get_global_symbol_counts(const Symbol_table *,size_t * defined,size_t * used) const1357 Sized_pluginobj<size, big_endian>::do_get_global_symbol_counts(
1358 const Symbol_table*,
1359 size_t* defined,
1360 size_t* used) const
1361 {
1362 *defined = 0;
1363 *used = 0;
1364 }
1365
1366 // Get symbols. Not used for plugin objects.
1367
1368 template<int size, bool big_endian>
1369 const Object::Symbols*
do_get_global_symbols() const1370 Sized_pluginobj<size, big_endian>::do_get_global_symbols() const
1371 {
1372 gold_unreachable();
1373 }
1374
1375 // Class Plugin_finish. This task runs after all replacement files have
1376 // been added. For now, it's a placeholder for a possible plugin API
1377 // to allow the plugin to release most of its resources. The cleanup
1378 // handlers must be called later, because they can remove the temporary
1379 // object files that are needed until the end of the link.
1380
1381 class Plugin_finish : public Task
1382 {
1383 public:
Plugin_finish(Task_token * this_blocker,Task_token * next_blocker)1384 Plugin_finish(Task_token* this_blocker, Task_token* next_blocker)
1385 : this_blocker_(this_blocker), next_blocker_(next_blocker)
1386 { }
1387
~Plugin_finish()1388 ~Plugin_finish()
1389 {
1390 if (this->this_blocker_ != NULL)
1391 delete this->this_blocker_;
1392 }
1393
1394 Task_token*
is_runnable()1395 is_runnable()
1396 {
1397 if (this->this_blocker_ != NULL && this->this_blocker_->is_blocked())
1398 return this->this_blocker_;
1399 return NULL;
1400 }
1401
1402 void
locks(Task_locker * tl)1403 locks(Task_locker* tl)
1404 { tl->add(this, this->next_blocker_); }
1405
1406 void
run(Workqueue *)1407 run(Workqueue*)
1408 {
1409 // We could call early cleanup handlers here.
1410 }
1411
1412 std::string
get_name() const1413 get_name() const
1414 { return "Plugin_finish"; }
1415
1416 private:
1417 Task_token* this_blocker_;
1418 Task_token* next_blocker_;
1419 };
1420
1421 // Class Plugin_hook.
1422
~Plugin_hook()1423 Plugin_hook::~Plugin_hook()
1424 {
1425 }
1426
1427 // Return whether a Plugin_hook task is runnable.
1428
1429 Task_token*
is_runnable()1430 Plugin_hook::is_runnable()
1431 {
1432 if (this->this_blocker_ != NULL && this->this_blocker_->is_blocked())
1433 return this->this_blocker_;
1434 return NULL;
1435 }
1436
1437 // Return a Task_locker for a Plugin_hook task. We don't need any
1438 // locks here.
1439
1440 void
locks(Task_locker *)1441 Plugin_hook::locks(Task_locker*)
1442 {
1443 }
1444
1445 // Run the "all symbols read" plugin hook.
1446
1447 void
run(Workqueue * workqueue)1448 Plugin_hook::run(Workqueue* workqueue)
1449 {
1450 gold_assert(this->options_.has_plugins());
1451 Symbol* start_sym = this->symtab_->lookup(parameters->entry());
1452 if (start_sym != NULL)
1453 start_sym->set_in_real_elf();
1454
1455 this->options_.plugins()->all_symbols_read(workqueue,
1456 this,
1457 this->input_objects_,
1458 this->symtab_,
1459 this->dirpath_,
1460 this->mapfile_,
1461 &this->this_blocker_);
1462 workqueue->queue_soon(new Plugin_finish(this->this_blocker_,
1463 this->next_blocker_));
1464 }
1465
1466 // The C interface routines called by the plugins.
1467
1468 #ifdef ENABLE_PLUGINS
1469
1470 // Register a claim-file handler.
1471
1472 static enum ld_plugin_status
register_claim_file(ld_plugin_claim_file_handler handler)1473 register_claim_file(ld_plugin_claim_file_handler handler)
1474 {
1475 gold_assert(parameters->options().has_plugins());
1476 parameters->options().plugins()->set_claim_file_handler(handler);
1477 return LDPS_OK;
1478 }
1479
1480 // Register an all-symbols-read handler.
1481
1482 static enum ld_plugin_status
register_all_symbols_read(ld_plugin_all_symbols_read_handler handler)1483 register_all_symbols_read(ld_plugin_all_symbols_read_handler handler)
1484 {
1485 gold_assert(parameters->options().has_plugins());
1486 parameters->options().plugins()->set_all_symbols_read_handler(handler);
1487 return LDPS_OK;
1488 }
1489
1490 // Register a cleanup handler.
1491
1492 static enum ld_plugin_status
register_cleanup(ld_plugin_cleanup_handler handler)1493 register_cleanup(ld_plugin_cleanup_handler handler)
1494 {
1495 gold_assert(parameters->options().has_plugins());
1496 parameters->options().plugins()->set_cleanup_handler(handler);
1497 return LDPS_OK;
1498 }
1499
1500 // Add symbols from a plugin-claimed input file.
1501
1502 static enum ld_plugin_status
add_symbols(void * handle,int nsyms,const ld_plugin_symbol * syms)1503 add_symbols(void* handle, int nsyms, const ld_plugin_symbol* syms)
1504 {
1505 gold_assert(parameters->options().has_plugins());
1506 Pluginobj* obj = parameters->options().plugins()->make_plugin_object(
1507 static_cast<unsigned int>(reinterpret_cast<intptr_t>(handle)));
1508 if (obj == NULL)
1509 return LDPS_ERR;
1510 obj->store_incoming_symbols(nsyms, syms);
1511 return LDPS_OK;
1512 }
1513
1514 // Get the input file information with an open (possibly re-opened)
1515 // file descriptor.
1516
1517 static enum ld_plugin_status
get_input_file(const void * handle,struct ld_plugin_input_file * file)1518 get_input_file(const void* handle, struct ld_plugin_input_file* file)
1519 {
1520 gold_assert(parameters->options().has_plugins());
1521 unsigned int obj_index =
1522 static_cast<unsigned int>(reinterpret_cast<intptr_t>(handle));
1523 return parameters->options().plugins()->get_input_file(obj_index, file);
1524 }
1525
1526 // Release the input file.
1527
1528 static enum ld_plugin_status
release_input_file(const void * handle)1529 release_input_file(const void* handle)
1530 {
1531 gold_assert(parameters->options().has_plugins());
1532 unsigned int obj_index =
1533 static_cast<unsigned int>(reinterpret_cast<intptr_t>(handle));
1534 return parameters->options().plugins()->release_input_file(obj_index);
1535 }
1536
1537 static enum ld_plugin_status
get_view(const void * handle,const void ** viewp)1538 get_view(const void *handle, const void **viewp)
1539 {
1540 gold_assert(parameters->options().has_plugins());
1541 unsigned int obj_index =
1542 static_cast<unsigned int>(reinterpret_cast<intptr_t>(handle));
1543 return parameters->options().plugins()->get_view(obj_index, viewp);
1544 }
1545
1546 // Get the symbol resolution info for a plugin-claimed input file.
1547
1548 static enum ld_plugin_status
get_symbols(const void * handle,int nsyms,ld_plugin_symbol * syms)1549 get_symbols(const void* handle, int nsyms, ld_plugin_symbol* syms)
1550 {
1551 gold_assert(parameters->options().has_plugins());
1552 Plugin_manager* plugins = parameters->options().plugins();
1553 Object* obj = plugins->object(
1554 static_cast<unsigned int>(reinterpret_cast<intptr_t>(handle)));
1555 if (obj == NULL)
1556 return LDPS_ERR;
1557 Pluginobj* plugin_obj = obj->pluginobj();
1558 if (plugin_obj == NULL)
1559 return LDPS_ERR;
1560 Symbol_table* symtab = plugins->symtab();
1561 return plugin_obj->get_symbol_resolution_info(symtab, nsyms, syms, 1);
1562 }
1563
1564 // Version 2 of the above. The only difference is that this version
1565 // is allowed to return the resolution code LDPR_PREVAILING_DEF_IRONLY_EXP.
1566
1567 static enum ld_plugin_status
get_symbols_v2(const void * handle,int nsyms,ld_plugin_symbol * syms)1568 get_symbols_v2(const void* handle, int nsyms, ld_plugin_symbol* syms)
1569 {
1570 gold_assert(parameters->options().has_plugins());
1571 Plugin_manager* plugins = parameters->options().plugins();
1572 Object* obj = plugins->object(
1573 static_cast<unsigned int>(reinterpret_cast<intptr_t>(handle)));
1574 if (obj == NULL)
1575 return LDPS_ERR;
1576 Pluginobj* plugin_obj = obj->pluginobj();
1577 if (plugin_obj == NULL)
1578 return LDPS_ERR;
1579 Symbol_table* symtab = plugins->symtab();
1580 return plugin_obj->get_symbol_resolution_info(symtab, nsyms, syms, 2);
1581 }
1582
1583 // Version 3 of the above. The only difference from v2 is that it
1584 // returns LDPS_NO_SYMS instead of LDPS_OK for the objects we never
1585 // decided to include.
1586
1587 static enum ld_plugin_status
get_symbols_v3(const void * handle,int nsyms,ld_plugin_symbol * syms)1588 get_symbols_v3(const void* handle, int nsyms, ld_plugin_symbol* syms)
1589 {
1590 gold_assert(parameters->options().has_plugins());
1591 Plugin_manager* plugins = parameters->options().plugins();
1592 Object* obj = plugins->object(
1593 static_cast<unsigned int>(reinterpret_cast<intptr_t>(handle)));
1594 if (obj == NULL)
1595 return LDPS_ERR;
1596 Pluginobj* plugin_obj = obj->pluginobj();
1597 if (plugin_obj == NULL)
1598 return LDPS_ERR;
1599 Symbol_table* symtab = plugins->symtab();
1600 return plugin_obj->get_symbol_resolution_info(symtab, nsyms, syms, 3);
1601 }
1602
1603 // Add a new (real) input file generated by a plugin.
1604
1605 static enum ld_plugin_status
add_input_file(const char * pathname)1606 add_input_file(const char* pathname)
1607 {
1608 gold_assert(parameters->options().has_plugins());
1609 return parameters->options().plugins()->add_input_file(pathname, false);
1610 }
1611
1612 // Add a new (real) library required by a plugin.
1613
1614 static enum ld_plugin_status
add_input_library(const char * pathname)1615 add_input_library(const char* pathname)
1616 {
1617 gold_assert(parameters->options().has_plugins());
1618 return parameters->options().plugins()->add_input_file(pathname, true);
1619 }
1620
1621 // Set the extra library path to be used by libraries added via
1622 // add_input_library
1623
1624 static enum ld_plugin_status
set_extra_library_path(const char * path)1625 set_extra_library_path(const char* path)
1626 {
1627 gold_assert(parameters->options().has_plugins());
1628 return parameters->options().plugins()->set_extra_library_path(path);
1629 }
1630
1631 // Issue a diagnostic message from a plugin.
1632
1633 static enum ld_plugin_status
message(int level,const char * format,...)1634 message(int level, const char* format, ...)
1635 {
1636 va_list args;
1637 va_start(args, format);
1638
1639 switch (level)
1640 {
1641 case LDPL_INFO:
1642 parameters->errors()->info(format, args);
1643 break;
1644 case LDPL_WARNING:
1645 parameters->errors()->warning(format, args);
1646 break;
1647 case LDPL_ERROR:
1648 default:
1649 parameters->errors()->error(format, args);
1650 break;
1651 case LDPL_FATAL:
1652 parameters->errors()->fatal(format, args);
1653 break;
1654 }
1655
1656 va_end(args);
1657 return LDPS_OK;
1658 }
1659
1660 // Get the section count of the object corresponding to the handle. This
1661 // plugin interface can only be called in the claim_file handler of the plugin.
1662
1663 static enum ld_plugin_status
get_input_section_count(const void * handle,unsigned int * count)1664 get_input_section_count(const void* handle, unsigned int* count)
1665 {
1666 gold_assert(parameters->options().has_plugins());
1667
1668 if (!parameters->options().plugins()->in_claim_file_handler())
1669 return LDPS_ERR;
1670
1671 Object* obj = parameters->options().plugins()->get_elf_object(handle);
1672
1673 if (obj == NULL)
1674 return LDPS_ERR;
1675
1676 *count = obj->shnum();
1677 return LDPS_OK;
1678 }
1679
1680 // Get the type of the specified section in the object corresponding
1681 // to the handle. This plugin interface can only be called in the
1682 // claim_file handler of the plugin.
1683
1684 static enum ld_plugin_status
get_input_section_type(const struct ld_plugin_section section,unsigned int * type)1685 get_input_section_type(const struct ld_plugin_section section,
1686 unsigned int* type)
1687 {
1688 gold_assert(parameters->options().has_plugins());
1689
1690 if (!parameters->options().plugins()->in_claim_file_handler())
1691 return LDPS_ERR;
1692
1693 Object* obj
1694 = parameters->options().plugins()->get_elf_object(section.handle);
1695
1696 if (obj == NULL)
1697 return LDPS_BAD_HANDLE;
1698
1699 *type = obj->section_type(section.shndx);
1700 return LDPS_OK;
1701 }
1702
1703 // Get the name of the specified section in the object corresponding
1704 // to the handle. This plugin interface can only be called in the
1705 // claim_file handler of the plugin.
1706
1707 static enum ld_plugin_status
get_input_section_name(const struct ld_plugin_section section,char ** section_name_ptr)1708 get_input_section_name(const struct ld_plugin_section section,
1709 char** section_name_ptr)
1710 {
1711 gold_assert(parameters->options().has_plugins());
1712
1713 if (!parameters->options().plugins()->in_claim_file_handler())
1714 return LDPS_ERR;
1715
1716 Object* obj
1717 = parameters->options().plugins()->get_elf_object(section.handle);
1718
1719 if (obj == NULL)
1720 return LDPS_BAD_HANDLE;
1721
1722 // Check if the object is locked before getting the section name.
1723 gold_assert(obj->is_locked());
1724
1725 const std::string section_name = obj->section_name(section.shndx);
1726 *section_name_ptr = static_cast<char*>(malloc(section_name.length() + 1));
1727 memcpy(*section_name_ptr, section_name.c_str(), section_name.length() + 1);
1728 return LDPS_OK;
1729 }
1730
1731 // Get the contents of the specified section in the object corresponding
1732 // to the handle. This plugin interface can only be called in the
1733 // claim_file handler of the plugin.
1734
1735 static enum ld_plugin_status
get_input_section_contents(const struct ld_plugin_section section,const unsigned char ** section_contents_ptr,size_t * len)1736 get_input_section_contents(const struct ld_plugin_section section,
1737 const unsigned char** section_contents_ptr,
1738 size_t* len)
1739 {
1740 gold_assert(parameters->options().has_plugins());
1741
1742 if (!parameters->options().plugins()->in_claim_file_handler())
1743 return LDPS_ERR;
1744
1745 Object* obj
1746 = parameters->options().plugins()->get_elf_object(section.handle);
1747
1748 if (obj == NULL)
1749 return LDPS_BAD_HANDLE;
1750
1751 // Check if the object is locked before getting the section contents.
1752 gold_assert(obj->is_locked());
1753
1754 section_size_type plen;
1755 *section_contents_ptr
1756 = obj->section_contents(section.shndx, &plen, false);
1757 *len = plen;
1758 return LDPS_OK;
1759 }
1760
1761 // Get the alignment of the specified section in the object corresponding
1762 // to the handle. This plugin interface can only be called in the
1763 // claim_file handler of the plugin.
1764
1765 static enum ld_plugin_status
get_input_section_alignment(const struct ld_plugin_section section,unsigned int * addralign)1766 get_input_section_alignment(const struct ld_plugin_section section,
1767 unsigned int* addralign)
1768 {
1769 gold_assert(parameters->options().has_plugins());
1770
1771 if (!parameters->options().plugins()->in_claim_file_handler())
1772 return LDPS_ERR;
1773
1774 Object* obj
1775 = parameters->options().plugins()->get_elf_object(section.handle);
1776
1777 if (obj == NULL)
1778 return LDPS_BAD_HANDLE;
1779
1780 *addralign = obj->section_addralign(section.shndx);
1781 return LDPS_OK;
1782 }
1783
1784 // Get the size of the specified section in the object corresponding
1785 // to the handle. This plugin interface can only be called in the
1786 // claim_file handler of the plugin.
1787
1788 static enum ld_plugin_status
get_input_section_size(const struct ld_plugin_section section,uint64_t * secsize)1789 get_input_section_size(const struct ld_plugin_section section,
1790 uint64_t* secsize)
1791 {
1792 gold_assert(parameters->options().has_plugins());
1793
1794 if (!parameters->options().plugins()->in_claim_file_handler())
1795 return LDPS_ERR;
1796
1797 Object* obj
1798 = parameters->options().plugins()->get_elf_object(section.handle);
1799
1800 if (obj == NULL)
1801 return LDPS_BAD_HANDLE;
1802
1803 *secsize = obj->section_size(section.shndx);
1804 return LDPS_OK;
1805 }
1806
1807
1808 // Specify the ordering of sections in the final layout. The sections are
1809 // specified as (handle,shndx) pairs in the two arrays in the order in
1810 // which they should appear in the final layout.
1811
1812 static enum ld_plugin_status
update_section_order(const struct ld_plugin_section * section_list,unsigned int num_sections)1813 update_section_order(const struct ld_plugin_section* section_list,
1814 unsigned int num_sections)
1815 {
1816 gold_assert(parameters->options().has_plugins());
1817
1818 if (num_sections == 0)
1819 return LDPS_OK;
1820
1821 if (section_list == NULL)
1822 return LDPS_ERR;
1823
1824 Layout* layout = parameters->options().plugins()->layout();
1825 gold_assert (layout != NULL);
1826
1827 std::map<Section_id, unsigned int>* order_map
1828 = layout->get_section_order_map();
1829
1830 /* Store the mapping from Section_id to section position in layout's
1831 order_map to consult after output sections are added. */
1832 for (unsigned int i = 0; i < num_sections; ++i)
1833 {
1834 Object* obj = parameters->options().plugins()->get_elf_object(
1835 section_list[i].handle);
1836 if (obj == NULL || obj->is_dynamic())
1837 return LDPS_BAD_HANDLE;
1838 unsigned int shndx = section_list[i].shndx;
1839 Section_id secn_id(static_cast<Relobj*>(obj), shndx);
1840 (*order_map)[secn_id] = i + 1;
1841 }
1842
1843 return LDPS_OK;
1844 }
1845
1846 // Let the linker know that the sections could be reordered.
1847
1848 static enum ld_plugin_status
allow_section_ordering()1849 allow_section_ordering()
1850 {
1851 gold_assert(parameters->options().has_plugins());
1852 Layout* layout = parameters->options().plugins()->layout();
1853 layout->set_section_ordering_specified();
1854 return LDPS_OK;
1855 }
1856
1857 // Let the linker know that a subset of sections could be mapped
1858 // to a unique segment.
1859
1860 static enum ld_plugin_status
allow_unique_segment_for_sections()1861 allow_unique_segment_for_sections()
1862 {
1863 gold_assert(parameters->options().has_plugins());
1864 Layout* layout = parameters->options().plugins()->layout();
1865 layout->set_unique_segment_for_sections_specified();
1866 return LDPS_OK;
1867 }
1868
1869 // This function should map the list of sections specified in the
1870 // SECTION_LIST to a unique segment. ELF segments do not have names
1871 // and the NAME is used to identify Output Section which should contain
1872 // the list of sections. This Output Section will then be mapped to
1873 // a unique segment. FLAGS is used to specify if any additional segment
1874 // flags need to be set. For instance, a specific segment flag can be
1875 // set to identify this segment. Unsetting segment flags is not possible.
1876 // ALIGN specifies the alignment of the segment.
1877
1878 static enum ld_plugin_status
unique_segment_for_sections(const char * segment_name,uint64_t flags,uint64_t align,const struct ld_plugin_section * section_list,unsigned int num_sections)1879 unique_segment_for_sections(const char* segment_name,
1880 uint64_t flags,
1881 uint64_t align,
1882 const struct ld_plugin_section* section_list,
1883 unsigned int num_sections)
1884 {
1885 gold_assert(parameters->options().has_plugins());
1886
1887 if (num_sections == 0)
1888 return LDPS_OK;
1889
1890 if (section_list == NULL)
1891 return LDPS_ERR;
1892
1893 Layout* layout = parameters->options().plugins()->layout();
1894 gold_assert (layout != NULL);
1895
1896 Layout::Unique_segment_info* s = new Layout::Unique_segment_info;
1897 s->name = segment_name;
1898 s->flags = flags;
1899 s->align = align;
1900
1901 for (unsigned int i = 0; i < num_sections; ++i)
1902 {
1903 Object* obj = parameters->options().plugins()->get_elf_object(
1904 section_list[i].handle);
1905 if (obj == NULL || obj->is_dynamic())
1906 return LDPS_BAD_HANDLE;
1907 unsigned int shndx = section_list[i].shndx;
1908 Const_section_id secn_id(static_cast<Relobj*>(obj), shndx);
1909 layout->insert_section_segment_map(secn_id, s);
1910 }
1911
1912 return LDPS_OK;
1913 }
1914
1915 #endif // ENABLE_PLUGINS
1916
1917 // Allocate a Pluginobj object of the appropriate size and endianness.
1918
1919 static Pluginobj*
make_sized_plugin_object(Input_file * input_file,off_t offset,off_t filesize)1920 make_sized_plugin_object(Input_file* input_file, off_t offset, off_t filesize)
1921 {
1922 Pluginobj* obj = NULL;
1923
1924 parameters_force_valid_target();
1925 const Target& target(parameters->target());
1926
1927 if (target.get_size() == 32)
1928 {
1929 if (target.is_big_endian())
1930 #ifdef HAVE_TARGET_32_BIG
1931 obj = new Sized_pluginobj<32, true>(input_file->filename(),
1932 input_file, offset, filesize);
1933 #else
1934 gold_error(_("%s: not configured to support "
1935 "32-bit big-endian object"),
1936 input_file->filename().c_str());
1937 #endif
1938 else
1939 #ifdef HAVE_TARGET_32_LITTLE
1940 obj = new Sized_pluginobj<32, false>(input_file->filename(),
1941 input_file, offset, filesize);
1942 #else
1943 gold_error(_("%s: not configured to support "
1944 "32-bit little-endian object"),
1945 input_file->filename().c_str());
1946 #endif
1947 }
1948 else if (target.get_size() == 64)
1949 {
1950 if (target.is_big_endian())
1951 #ifdef HAVE_TARGET_64_BIG
1952 obj = new Sized_pluginobj<64, true>(input_file->filename(),
1953 input_file, offset, filesize);
1954 #else
1955 gold_error(_("%s: not configured to support "
1956 "64-bit big-endian object"),
1957 input_file->filename().c_str());
1958 #endif
1959 else
1960 #ifdef HAVE_TARGET_64_LITTLE
1961 obj = new Sized_pluginobj<64, false>(input_file->filename(),
1962 input_file, offset, filesize);
1963 #else
1964 gold_error(_("%s: not configured to support "
1965 "64-bit little-endian object"),
1966 input_file->filename().c_str());
1967 #endif
1968 }
1969
1970 gold_assert(obj != NULL);
1971 return obj;
1972 }
1973
1974 } // End namespace gold.
1975