1 // plugin.cc -- plugin manager for gold -*- C++ -*-
3 // Copyright 2008, 2009, 2010, 2011 Free Software Foundation, Inc.
4 // Written by Cary Coutant <ccoutant@google.com>.
6 // This file is part of gold.
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.
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.
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.
35 #include "parameters.h"
51 // The linker's exported interfaces.
56 static enum ld_plugin_status
57 register_claim_file(ld_plugin_claim_file_handler handler
);
59 static enum ld_plugin_status
60 register_all_symbols_read(ld_plugin_all_symbols_read_handler handler
);
62 static enum ld_plugin_status
63 register_cleanup(ld_plugin_cleanup_handler handler
);
65 static enum ld_plugin_status
66 add_symbols(void *handle
, int nsyms
, const struct ld_plugin_symbol
*syms
);
68 static enum ld_plugin_status
69 get_input_file(const void *handle
, struct ld_plugin_input_file
*file
);
71 static enum ld_plugin_status
72 get_view(const void *handle
, const void **viewp
);
74 static enum ld_plugin_status
75 release_input_file(const void *handle
);
77 static enum ld_plugin_status
78 get_symbols(const void *handle
, int nsyms
, struct ld_plugin_symbol
*syms
);
80 static enum ld_plugin_status
81 get_symbols_v2(const void *handle
, int nsyms
, struct ld_plugin_symbol
*syms
);
83 static enum ld_plugin_status
84 add_input_file(const char *pathname
);
86 static enum ld_plugin_status
87 add_input_library(const char *pathname
);
89 static enum ld_plugin_status
90 set_extra_library_path(const char *path
);
92 static enum ld_plugin_status
93 message(int level
, const char *format
, ...);
95 static enum ld_plugin_status
96 get_input_section_count(const void* handle
, unsigned int* count
);
98 static enum ld_plugin_status
99 get_input_section_type(const struct ld_plugin_section section
,
102 static enum ld_plugin_status
103 get_input_section_name(const struct ld_plugin_section section
,
104 char** section_name_ptr
);
106 static enum ld_plugin_status
107 get_input_section_contents(const struct ld_plugin_section section
,
108 const unsigned char** section_contents
,
111 static enum ld_plugin_status
112 update_section_order(const struct ld_plugin_section
*section_list
,
113 unsigned int num_sections
);
115 static enum ld_plugin_status
116 allow_section_ordering();
118 static enum ld_plugin_status
119 allow_unique_segment_for_sections();
121 static enum ld_plugin_status
122 unique_segment_for_sections(const char* segment_name
,
125 const struct ld_plugin_section
*section_list
,
126 unsigned int num_sections
);
129 #endif // ENABLE_PLUGINS
131 static Pluginobj
* make_sized_plugin_object(Input_file
* input_file
,
132 off_t offset
, off_t filesize
);
136 // Load one plugin library.
141 #ifdef ENABLE_PLUGINS
142 // Load the plugin library.
143 // FIXME: Look for the library in standard locations.
144 this->handle_
= dlopen(this->filename_
.c_str(), RTLD_NOW
);
145 if (this->handle_
== NULL
)
147 gold_error(_("%s: could not load plugin library: %s"),
148 this->filename_
.c_str(), dlerror());
152 // Find the plugin's onload entry point.
153 void* ptr
= dlsym(this->handle_
, "onload");
156 gold_error(_("%s: could not find onload entry point"),
157 this->filename_
.c_str());
160 ld_plugin_onload onload
;
161 gold_assert(sizeof(onload
) == sizeof(ptr
));
162 memcpy(&onload
, &ptr
, sizeof(ptr
));
164 // Get the linker's version number.
165 const char* ver
= get_version_string();
168 sscanf(ver
, "%d.%d", &major
, &minor
);
170 // Allocate and populate a transfer vector.
171 const int tv_fixed_size
= 26;
173 int tv_size
= this->args_
.size() + tv_fixed_size
;
174 ld_plugin_tv
* tv
= new ld_plugin_tv
[tv_size
];
176 // Put LDPT_MESSAGE at the front of the list so the plugin can use it
177 // while processing subsequent entries.
179 tv
[i
].tv_tag
= LDPT_MESSAGE
;
180 tv
[i
].tv_u
.tv_message
= message
;
183 tv
[i
].tv_tag
= LDPT_API_VERSION
;
184 tv
[i
].tv_u
.tv_val
= LD_PLUGIN_API_VERSION
;
187 tv
[i
].tv_tag
= LDPT_GOLD_VERSION
;
188 tv
[i
].tv_u
.tv_val
= major
* 100 + minor
;
191 tv
[i
].tv_tag
= LDPT_LINKER_OUTPUT
;
192 if (parameters
->options().relocatable())
193 tv
[i
].tv_u
.tv_val
= LDPO_REL
;
194 else if (parameters
->options().shared())
195 tv
[i
].tv_u
.tv_val
= LDPO_DYN
;
196 else if (parameters
->options().pie())
197 tv
[i
].tv_u
.tv_val
= LDPO_PIE
;
199 tv
[i
].tv_u
.tv_val
= LDPO_EXEC
;
202 tv
[i
].tv_tag
= LDPT_OUTPUT_NAME
;
203 tv
[i
].tv_u
.tv_string
= parameters
->options().output();
205 for (unsigned int j
= 0; j
< this->args_
.size(); ++j
)
208 tv
[i
].tv_tag
= LDPT_OPTION
;
209 tv
[i
].tv_u
.tv_string
= this->args_
[j
].c_str();
213 tv
[i
].tv_tag
= LDPT_REGISTER_CLAIM_FILE_HOOK
;
214 tv
[i
].tv_u
.tv_register_claim_file
= register_claim_file
;
217 tv
[i
].tv_tag
= LDPT_REGISTER_ALL_SYMBOLS_READ_HOOK
;
218 tv
[i
].tv_u
.tv_register_all_symbols_read
= register_all_symbols_read
;
221 tv
[i
].tv_tag
= LDPT_REGISTER_CLEANUP_HOOK
;
222 tv
[i
].tv_u
.tv_register_cleanup
= register_cleanup
;
225 tv
[i
].tv_tag
= LDPT_ADD_SYMBOLS
;
226 tv
[i
].tv_u
.tv_add_symbols
= add_symbols
;
229 tv
[i
].tv_tag
= LDPT_GET_INPUT_FILE
;
230 tv
[i
].tv_u
.tv_get_input_file
= get_input_file
;
233 tv
[i
].tv_tag
= LDPT_GET_VIEW
;
234 tv
[i
].tv_u
.tv_get_view
= get_view
;
237 tv
[i
].tv_tag
= LDPT_RELEASE_INPUT_FILE
;
238 tv
[i
].tv_u
.tv_release_input_file
= release_input_file
;
241 tv
[i
].tv_tag
= LDPT_GET_SYMBOLS
;
242 tv
[i
].tv_u
.tv_get_symbols
= get_symbols
;
245 tv
[i
].tv_tag
= LDPT_GET_SYMBOLS_V2
;
246 tv
[i
].tv_u
.tv_get_symbols
= get_symbols_v2
;
249 tv
[i
].tv_tag
= LDPT_ADD_INPUT_FILE
;
250 tv
[i
].tv_u
.tv_add_input_file
= add_input_file
;
253 tv
[i
].tv_tag
= LDPT_ADD_INPUT_LIBRARY
;
254 tv
[i
].tv_u
.tv_add_input_library
= add_input_library
;
257 tv
[i
].tv_tag
= LDPT_SET_EXTRA_LIBRARY_PATH
;
258 tv
[i
].tv_u
.tv_set_extra_library_path
= set_extra_library_path
;
261 tv
[i
].tv_tag
= LDPT_GET_INPUT_SECTION_COUNT
;
262 tv
[i
].tv_u
.tv_get_input_section_count
= get_input_section_count
;
265 tv
[i
].tv_tag
= LDPT_GET_INPUT_SECTION_TYPE
;
266 tv
[i
].tv_u
.tv_get_input_section_type
= get_input_section_type
;
269 tv
[i
].tv_tag
= LDPT_GET_INPUT_SECTION_NAME
;
270 tv
[i
].tv_u
.tv_get_input_section_name
= get_input_section_name
;
273 tv
[i
].tv_tag
= LDPT_GET_INPUT_SECTION_CONTENTS
;
274 tv
[i
].tv_u
.tv_get_input_section_contents
= get_input_section_contents
;
277 tv
[i
].tv_tag
= LDPT_UPDATE_SECTION_ORDER
;
278 tv
[i
].tv_u
.tv_update_section_order
= update_section_order
;
281 tv
[i
].tv_tag
= LDPT_ALLOW_SECTION_ORDERING
;
282 tv
[i
].tv_u
.tv_allow_section_ordering
= allow_section_ordering
;
285 tv
[i
].tv_tag
= LDPT_ALLOW_UNIQUE_SEGMENT_FOR_SECTIONS
;
286 tv
[i
].tv_u
.tv_allow_unique_segment_for_sections
287 = allow_unique_segment_for_sections
;
290 tv
[i
].tv_tag
= LDPT_UNIQUE_SEGMENT_FOR_SECTIONS
;
291 tv
[i
].tv_u
.tv_unique_segment_for_sections
= unique_segment_for_sections
;
294 tv
[i
].tv_tag
= LDPT_NULL
;
295 tv
[i
].tv_u
.tv_val
= 0;
297 gold_assert(i
== tv_size
- 1);
299 // Call the onload entry point.
303 #endif // ENABLE_PLUGINS
306 // Call the plugin claim-file handler.
309 Plugin::claim_file(struct ld_plugin_input_file
* plugin_input_file
)
313 if (this->claim_file_handler_
!= NULL
)
315 (*this->claim_file_handler_
)(plugin_input_file
, &claimed
);
322 // Call the all-symbols-read handler.
325 Plugin::all_symbols_read()
327 if (this->all_symbols_read_handler_
!= NULL
)
328 (*this->all_symbols_read_handler_
)();
331 // Call the cleanup handler.
336 if (this->cleanup_handler_
!= NULL
&& !this->cleanup_done_
)
338 // Set this flag before calling to prevent a recursive plunge
339 // in the event that a plugin's cleanup handler issues a
341 this->cleanup_done_
= true;
342 (*this->cleanup_handler_
)();
346 // This task is used to rescan archives as needed.
348 class Plugin_rescan
: public Task
351 Plugin_rescan(Task_token
* this_blocker
, Task_token
* next_blocker
)
352 : this_blocker_(this_blocker
), next_blocker_(next_blocker
)
357 delete this->this_blocker_
;
363 if (this->this_blocker_
->is_blocked())
364 return this->this_blocker_
;
369 locks(Task_locker
* tl
)
370 { tl
->add(this, this->next_blocker_
); }
374 { parameters
->options().plugins()->rescan(this); }
378 { return "Plugin_rescan"; }
381 Task_token
* this_blocker_
;
382 Task_token
* next_blocker_
;
385 // Plugin_manager methods.
387 Plugin_manager::~Plugin_manager()
389 for (Plugin_list::iterator p
= this->plugins_
.begin();
390 p
!= this->plugins_
.end();
393 this->plugins_
.clear();
394 for (Object_list::iterator obj
= this->objects_
.begin();
395 obj
!= this->objects_
.end();
398 this->objects_
.clear();
401 // Load all plugin libraries.
404 Plugin_manager::load_plugins(Layout
* layout
)
406 this->layout_
= layout
;
407 for (this->current_
= this->plugins_
.begin();
408 this->current_
!= this->plugins_
.end();
410 (*this->current_
)->load();
413 // Call the plugin claim-file handlers in turn to see if any claim the file.
416 Plugin_manager::claim_file(Input_file
* input_file
, off_t offset
,
417 off_t filesize
, Object
* elf_object
)
419 if (this->in_replacement_phase_
)
422 unsigned int handle
= this->objects_
.size();
423 this->input_file_
= input_file
;
424 this->plugin_input_file_
.name
= input_file
->filename().c_str();
425 this->plugin_input_file_
.fd
= input_file
->file().descriptor();
426 this->plugin_input_file_
.offset
= offset
;
427 this->plugin_input_file_
.filesize
= filesize
;
428 this->plugin_input_file_
.handle
= reinterpret_cast<void*>(handle
);
429 if (elf_object
!= NULL
)
430 this->objects_
.push_back(elf_object
);
431 this->in_claim_file_handler_
= true;
433 for (this->current_
= this->plugins_
.begin();
434 this->current_
!= this->plugins_
.end();
437 if ((*this->current_
)->claim_file(&this->plugin_input_file_
))
439 this->any_claimed_
= true;
440 this->in_claim_file_handler_
= false;
442 if (this->objects_
.size() > handle
443 && this->objects_
[handle
]->pluginobj() != NULL
)
444 return this->objects_
[handle
]->pluginobj();
446 // If the plugin claimed the file but did not call the
447 // add_symbols callback, we need to create the Pluginobj now.
448 Pluginobj
* obj
= this->make_plugin_object(handle
);
453 this->in_claim_file_handler_
= false;
457 // Save an archive. This is used so that a plugin can add a file
458 // which refers to a symbol which was not previously referenced. In
459 // that case we want to pretend that the symbol was referenced before,
460 // and pull in the archive object.
463 Plugin_manager::save_archive(Archive
* archive
)
465 if (this->in_replacement_phase_
|| !this->any_claimed_
)
468 this->rescannable_
.push_back(Rescannable(archive
));
471 // Save an Input_group. This is like save_archive.
474 Plugin_manager::save_input_group(Input_group
* input_group
)
476 if (this->in_replacement_phase_
|| !this->any_claimed_
)
479 this->rescannable_
.push_back(Rescannable(input_group
));
482 // Call the all-symbols-read handlers.
485 Plugin_manager::all_symbols_read(Workqueue
* workqueue
, Task
* task
,
486 Input_objects
* input_objects
,
487 Symbol_table
* symtab
,
488 Dirsearch
* dirpath
, Mapfile
* mapfile
,
489 Task_token
** last_blocker
)
491 this->in_replacement_phase_
= true;
492 this->workqueue_
= workqueue
;
494 this->input_objects_
= input_objects
;
495 this->symtab_
= symtab
;
496 this->dirpath_
= dirpath
;
497 this->mapfile_
= mapfile
;
498 this->this_blocker_
= NULL
;
500 for (this->current_
= this->plugins_
.begin();
501 this->current_
!= this->plugins_
.end();
503 (*this->current_
)->all_symbols_read();
505 if (this->any_added_
)
507 Task_token
* next_blocker
= new Task_token(true);
508 next_blocker
->add_blocker();
509 workqueue
->queue(new Plugin_rescan(this->this_blocker_
, next_blocker
));
510 this->this_blocker_
= next_blocker
;
513 *last_blocker
= this->this_blocker_
;
516 // This is called when we see a new undefined symbol. If we are in
517 // the replacement phase, this means that we may need to rescan some
518 // archives we have previously seen.
521 Plugin_manager::new_undefined_symbol(Symbol
* sym
)
523 if (this->in_replacement_phase_
)
524 this->undefined_symbols_
.push_back(sym
);
527 // Rescan archives as needed. This handles the case where a new
528 // object file added by a plugin has an undefined reference to some
529 // symbol defined in an archive.
532 Plugin_manager::rescan(Task
* task
)
534 size_t rescan_pos
= 0;
535 size_t rescan_size
= this->rescannable_
.size();
536 while (!this->undefined_symbols_
.empty())
538 if (rescan_pos
>= rescan_size
)
540 this->undefined_symbols_
.clear();
544 Undefined_symbol_list undefs
;
545 undefs
.reserve(this->undefined_symbols_
.size());
546 this->undefined_symbols_
.swap(undefs
);
548 size_t min_rescan_pos
= rescan_size
;
550 for (Undefined_symbol_list::const_iterator p
= undefs
.begin();
554 if (!(*p
)->is_undefined())
557 this->undefined_symbols_
.push_back(*p
);
559 // Find the first rescan archive which defines this symbol,
560 // starting at the current rescan position. The rescan position
561 // exists so that given -la -lb -lc we don't look for undefined
562 // symbols in -lb back in -la, but instead get the definition
563 // from -lc. Don't bother to look past the current minimum
565 for (size_t i
= rescan_pos
; i
< min_rescan_pos
; ++i
)
567 if (this->rescannable_defines(i
, *p
))
575 if (min_rescan_pos
>= rescan_size
)
577 // We didn't find any rescannable archives which define any
578 // undefined symbols.
582 const Rescannable
& r(this->rescannable_
[min_rescan_pos
]);
585 Task_lock_obj
<Archive
> tl(task
, r
.u
.archive
);
586 r
.u
.archive
->add_symbols(this->symtab_
, this->layout_
,
587 this->input_objects_
, this->mapfile_
);
591 size_t next_saw_undefined
= this->symtab_
->saw_undefined();
592 size_t saw_undefined
;
595 saw_undefined
= next_saw_undefined
;
597 for (Input_group::const_iterator p
= r
.u
.input_group
->begin();
598 p
!= r
.u
.input_group
->end();
601 Task_lock_obj
<Archive
> tl(task
, *p
);
603 (*p
)->add_symbols(this->symtab_
, this->layout_
,
604 this->input_objects_
, this->mapfile_
);
607 next_saw_undefined
= this->symtab_
->saw_undefined();
609 while (saw_undefined
!= next_saw_undefined
);
612 for (size_t i
= rescan_pos
; i
< min_rescan_pos
+ 1; ++i
)
614 if (this->rescannable_
[i
].is_archive
)
615 delete this->rescannable_
[i
].u
.archive
;
617 delete this->rescannable_
[i
].u
.input_group
;
620 rescan_pos
= min_rescan_pos
+ 1;
624 // Return whether the rescannable at index I defines SYM.
627 Plugin_manager::rescannable_defines(size_t i
, Symbol
* sym
)
629 const Rescannable
& r(this->rescannable_
[i
]);
631 return r
.u
.archive
->defines_symbol(sym
);
634 for (Input_group::const_iterator p
= r
.u
.input_group
->begin();
635 p
!= r
.u
.input_group
->end();
638 if ((*p
)->defines_symbol(sym
))
645 // Layout deferred objects.
648 Plugin_manager::layout_deferred_objects()
650 Deferred_layout_list::iterator obj
;
652 for (obj
= this->deferred_layout_objects_
.begin();
653 obj
!= this->deferred_layout_objects_
.end();
656 // Lock the object so we can read from it. This is only called
657 // single-threaded from queue_middle_tasks, so it is OK to lock.
658 // Unfortunately we have no way to pass in a Task token.
659 const Task
* dummy_task
= reinterpret_cast<const Task
*>(-1);
660 Task_lock_obj
<Object
> tl(dummy_task
, *obj
);
661 (*obj
)->layout_deferred_sections(this->layout_
);
665 // Call the cleanup handlers.
668 Plugin_manager::cleanup()
670 for (this->current_
= this->plugins_
.begin();
671 this->current_
!= this->plugins_
.end();
673 (*this->current_
)->cleanup();
676 // Make a new Pluginobj object. This is called when the plugin calls
677 // the add_symbols API.
680 Plugin_manager::make_plugin_object(unsigned int handle
)
682 // Make sure we aren't asked to make an object for the same handle twice.
683 if (this->objects_
.size() != handle
684 && this->objects_
[handle
]->pluginobj() != NULL
)
687 Pluginobj
* obj
= make_sized_plugin_object(this->input_file_
,
688 this->plugin_input_file_
.offset
,
689 this->plugin_input_file_
.filesize
);
692 // If the elf object for this file was pushed into the objects_ vector, delete
693 // it to make room for the Pluginobj as this file is claimed.
694 if (this->objects_
.size() != handle
)
695 this->objects_
.pop_back();
697 this->objects_
.push_back(obj
);
701 // Get the input file information with an open (possibly re-opened)
705 Plugin_manager::get_input_file(unsigned int handle
,
706 struct ld_plugin_input_file
* file
)
708 Pluginobj
* obj
= this->object(handle
)->pluginobj();
710 return LDPS_BAD_HANDLE
;
712 obj
->lock(this->task_
);
713 file
->name
= obj
->filename().c_str();
714 file
->fd
= obj
->descriptor();
715 file
->offset
= obj
->offset();
716 file
->filesize
= obj
->filesize();
717 file
->handle
= reinterpret_cast<void*>(handle
);
721 // Release the input file.
724 Plugin_manager::release_input_file(unsigned int handle
)
726 if (this->object(handle
) == NULL
)
727 return LDPS_BAD_HANDLE
;
729 Pluginobj
* obj
= this->object(handle
)->pluginobj();
732 return LDPS_BAD_HANDLE
;
734 obj
->unlock(this->task_
);
738 // Get the elf object corresponding to the handle. Return NULL if we
739 // found a Pluginobj instead.
742 Plugin_manager::get_elf_object(const void* handle
)
744 Object
* obj
= this->object(
745 static_cast<unsigned int>(reinterpret_cast<intptr_t>(handle
)));
747 // The object should not be a Pluginobj.
749 || obj
->pluginobj() != NULL
)
756 Plugin_manager::get_view(unsigned int handle
, const void **viewp
)
760 Input_file
*input_file
;
761 if (this->in_claim_file_handler_
)
763 // We are being called from the claim_file hook.
764 const struct ld_plugin_input_file
&f
= this->plugin_input_file_
;
766 filesize
= f
.filesize
;
767 input_file
= this->input_file_
;
771 // An already claimed file.
772 if (this->object(handle
) == NULL
)
773 return LDPS_BAD_HANDLE
;
774 Pluginobj
* obj
= this->object(handle
)->pluginobj();
776 return LDPS_BAD_HANDLE
;
777 offset
= obj
->offset();
778 filesize
= obj
->filesize();
779 input_file
= obj
->input_file();
781 *viewp
= (void*) input_file
->file().get_view(offset
, 0, filesize
, false,
786 // Add a new library path.
789 Plugin_manager::set_extra_library_path(const char* path
)
791 this->extra_search_path_
= std::string(path
);
795 // Add a new input file.
798 Plugin_manager::add_input_file(const char* pathname
, bool is_lib
)
800 Input_file_argument
file(pathname
,
802 ? Input_file_argument::INPUT_FILE_TYPE_LIBRARY
803 : Input_file_argument::INPUT_FILE_TYPE_FILE
),
805 ? this->extra_search_path_
.c_str()
809 Input_argument
* input_argument
= new Input_argument(file
);
810 Task_token
* next_blocker
= new Task_token(true);
811 next_blocker
->add_blocker();
812 if (parameters
->incremental())
813 gold_error(_("input files added by plug-ins in --incremental mode not "
815 this->workqueue_
->queue_soon(new Read_symbols(this->input_objects_
,
826 this->this_blocker_
= next_blocker
;
827 this->any_added_
= true;
833 Pluginobj::Pluginobj(const std::string
& name
, Input_file
* input_file
,
834 off_t offset
, off_t filesize
)
835 : Object(name
, input_file
, false, offset
),
836 nsyms_(0), syms_(NULL
), symbols_(), filesize_(filesize
), comdat_map_()
840 // Return TRUE if a defined symbol is referenced from outside the
841 // universe of claimed objects. Only references from relocatable,
842 // non-IR (unclaimed) objects count as a reference. References from
843 // dynamic objects count only as "visible".
846 is_referenced_from_outside(Symbol
* lsym
)
848 if (lsym
->in_real_elf())
850 if (parameters
->options().relocatable())
852 if (parameters
->options().is_undefined(lsym
->name()))
857 // Return TRUE if a defined symbol might be reachable from outside the
861 is_visible_from_outside(Symbol
* lsym
)
865 if (parameters
->options().export_dynamic() || parameters
->options().shared())
866 return lsym
->is_externally_visible();
870 // Get symbol resolution info.
873 Pluginobj::get_symbol_resolution_info(int nsyms
,
874 ld_plugin_symbol
* syms
,
877 // For version 1 of this interface, we cannot use
878 // LDPR_PREVAILING_DEF_IRONLY_EXP, so we return LDPR_PREVAILING_DEF
880 const ld_plugin_symbol_resolution ldpr_prevailing_def_ironly_exp
882 ? LDPR_PREVAILING_DEF_IRONLY_EXP
883 : LDPR_PREVAILING_DEF
);
885 if (nsyms
> this->nsyms_
)
888 if (static_cast<size_t>(nsyms
) > this->symbols_
.size())
890 // We never decided to include this object. We mark all symbols as
892 gold_assert(this->symbols_
.size() == 0);
893 for (int i
= 0; i
< nsyms
; i
++)
894 syms
[i
].resolution
= LDPR_PREEMPTED_REG
;
898 for (int i
= 0; i
< nsyms
; i
++)
900 ld_plugin_symbol
* isym
= &syms
[i
];
901 Symbol
* lsym
= this->symbols_
[i
];
902 ld_plugin_symbol_resolution res
= LDPR_UNKNOWN
;
904 if (lsym
->is_undefined())
905 // The symbol remains undefined.
907 else if (isym
->def
== LDPK_UNDEF
908 || isym
->def
== LDPK_WEAKUNDEF
909 || isym
->def
== LDPK_COMMON
)
911 // The original symbol was undefined or common.
912 if (lsym
->source() != Symbol::FROM_OBJECT
)
913 res
= LDPR_RESOLVED_EXEC
;
914 else if (lsym
->object()->pluginobj() == this)
916 if (is_referenced_from_outside(lsym
))
917 res
= LDPR_PREVAILING_DEF
;
918 else if (is_visible_from_outside(lsym
))
919 res
= ldpr_prevailing_def_ironly_exp
;
921 res
= LDPR_PREVAILING_DEF_IRONLY
;
923 else if (lsym
->object()->pluginobj() != NULL
)
924 res
= LDPR_RESOLVED_IR
;
925 else if (lsym
->object()->is_dynamic())
926 res
= LDPR_RESOLVED_DYN
;
928 res
= LDPR_RESOLVED_EXEC
;
932 // The original symbol was a definition.
933 if (lsym
->source() != Symbol::FROM_OBJECT
)
934 res
= LDPR_PREEMPTED_REG
;
935 else if (lsym
->object() == static_cast<const Object
*>(this))
937 if (is_referenced_from_outside(lsym
))
938 res
= LDPR_PREVAILING_DEF
;
939 else if (is_visible_from_outside(lsym
))
940 res
= ldpr_prevailing_def_ironly_exp
;
942 res
= LDPR_PREVAILING_DEF_IRONLY
;
945 res
= (lsym
->object()->pluginobj() != NULL
947 : LDPR_PREEMPTED_REG
);
949 isym
->resolution
= res
;
954 // Return TRUE if the comdat group with key COMDAT_KEY from this object
958 Pluginobj::include_comdat_group(std::string comdat_key
, Layout
* layout
)
960 std::pair
<Comdat_map::iterator
, bool> ins
=
961 this->comdat_map_
.insert(std::make_pair(comdat_key
, false));
963 // If this is the first time we've seen this comdat key, ask the
964 // layout object whether it should be included.
966 ins
.first
->second
= layout
->find_or_add_kept_section(comdat_key
,
970 return ins
.first
->second
;
973 // Class Sized_pluginobj.
975 template<int size
, bool big_endian
>
976 Sized_pluginobj
<size
, big_endian
>::Sized_pluginobj(
977 const std::string
& name
,
978 Input_file
* input_file
,
981 : Pluginobj(name
, input_file
, offset
, filesize
)
985 // Read the symbols. Not used for plugin objects.
987 template<int size
, bool big_endian
>
989 Sized_pluginobj
<size
, big_endian
>::do_read_symbols(Read_symbols_data
*)
994 // Lay out the input sections. Not used for plugin objects.
996 template<int size
, bool big_endian
>
998 Sized_pluginobj
<size
, big_endian
>::do_layout(Symbol_table
*, Layout
*,
1004 // Add the symbols to the symbol table.
1006 template<int size
, bool big_endian
>
1008 Sized_pluginobj
<size
, big_endian
>::do_add_symbols(Symbol_table
* symtab
,
1012 const int sym_size
= elfcpp::Elf_sizes
<size
>::sym_size
;
1013 unsigned char symbuf
[sym_size
];
1014 elfcpp::Sym
<size
, big_endian
> sym(symbuf
);
1015 elfcpp::Sym_write
<size
, big_endian
> osym(symbuf
);
1017 typedef typename
elfcpp::Elf_types
<size
>::Elf_WXword Elf_size_type
;
1019 this->symbols_
.resize(this->nsyms_
);
1021 for (int i
= 0; i
< this->nsyms_
; ++i
)
1023 const struct ld_plugin_symbol
* isym
= &this->syms_
[i
];
1024 const char* name
= isym
->name
;
1025 const char* ver
= isym
->version
;
1026 elfcpp::Elf_Half shndx
;
1030 if (name
!= NULL
&& name
[0] == '\0')
1032 if (ver
!= NULL
&& ver
[0] == '\0')
1038 case LDPK_WEAKUNDEF
:
1039 bind
= elfcpp::STB_WEAK
;
1045 bind
= elfcpp::STB_GLOBAL
;
1053 shndx
= elfcpp::SHN_ABS
;
1056 shndx
= elfcpp::SHN_COMMON
;
1059 case LDPK_WEAKUNDEF
:
1061 shndx
= elfcpp::SHN_UNDEF
;
1065 switch (isym
->visibility
)
1067 case LDPV_PROTECTED
:
1068 vis
= elfcpp::STV_PROTECTED
;
1071 vis
= elfcpp::STV_INTERNAL
;
1074 vis
= elfcpp::STV_HIDDEN
;
1078 vis
= elfcpp::STV_DEFAULT
;
1082 if (isym
->comdat_key
!= NULL
1083 && isym
->comdat_key
[0] != '\0'
1084 && !this->include_comdat_group(isym
->comdat_key
, layout
))
1085 shndx
= elfcpp::SHN_UNDEF
;
1087 osym
.put_st_name(0);
1088 osym
.put_st_value(0);
1089 osym
.put_st_size(static_cast<Elf_size_type
>(isym
->size
));
1090 osym
.put_st_info(bind
, elfcpp::STT_NOTYPE
);
1091 osym
.put_st_other(vis
, 0);
1092 osym
.put_st_shndx(shndx
);
1095 symtab
->add_from_pluginobj
<size
, big_endian
>(this, name
, ver
, &sym
);
1099 template<int size
, bool big_endian
>
1100 Archive::Should_include
1101 Sized_pluginobj
<size
, big_endian
>::do_should_include_member(
1102 Symbol_table
* symtab
,
1107 char* tmpbuf
= NULL
;
1108 size_t tmpbuflen
= 0;
1110 for (int i
= 0; i
< this->nsyms_
; ++i
)
1112 const struct ld_plugin_symbol
& sym
= this->syms_
[i
];
1113 const char* name
= sym
.name
;
1115 Archive::Should_include t
= Archive::should_include_member(symtab
,
1121 if (t
== Archive::SHOULD_INCLUDE_YES
)
1130 return Archive::SHOULD_INCLUDE_UNKNOWN
;
1133 // Iterate over global symbols, calling a visitor class V for each.
1135 template<int size
, bool big_endian
>
1137 Sized_pluginobj
<size
, big_endian
>::do_for_all_global_symbols(
1139 Library_base::Symbol_visitor_base
* v
)
1141 for (int i
= 0; i
< this->nsyms_
; ++i
)
1143 const struct ld_plugin_symbol
& sym
= this->syms_
[i
];
1144 if (sym
.def
!= LDPK_UNDEF
)
1149 // Iterate over local symbols, calling a visitor class V for each GOT offset
1150 // associated with a local symbol.
1151 template<int size
, bool big_endian
>
1153 Sized_pluginobj
<size
, big_endian
>::do_for_all_local_got_entries(
1154 Got_offset_list::Visitor
*) const
1159 // Get the size of a section. Not used for plugin objects.
1161 template<int size
, bool big_endian
>
1163 Sized_pluginobj
<size
, big_endian
>::do_section_size(unsigned int)
1169 // Get the name of a section. Not used for plugin objects.
1171 template<int size
, bool big_endian
>
1173 Sized_pluginobj
<size
, big_endian
>::do_section_name(unsigned int)
1176 return std::string();
1179 // Return a view of the contents of a section. Not used for plugin objects.
1181 template<int size
, bool big_endian
>
1182 const unsigned char*
1183 Sized_pluginobj
<size
, big_endian
>::do_section_contents(
1192 // Return section flags. Not used for plugin objects.
1194 template<int size
, bool big_endian
>
1196 Sized_pluginobj
<size
, big_endian
>::do_section_flags(unsigned int)
1202 // Return section entsize. Not used for plugin objects.
1204 template<int size
, bool big_endian
>
1206 Sized_pluginobj
<size
, big_endian
>::do_section_entsize(unsigned int)
1212 // Return section address. Not used for plugin objects.
1214 template<int size
, bool big_endian
>
1216 Sized_pluginobj
<size
, big_endian
>::do_section_address(unsigned int)
1222 // Return section type. Not used for plugin objects.
1224 template<int size
, bool big_endian
>
1226 Sized_pluginobj
<size
, big_endian
>::do_section_type(unsigned int)
1232 // Return the section link field. Not used for plugin objects.
1234 template<int size
, bool big_endian
>
1236 Sized_pluginobj
<size
, big_endian
>::do_section_link(unsigned int)
1242 // Return the section link field. Not used for plugin objects.
1244 template<int size
, bool big_endian
>
1246 Sized_pluginobj
<size
, big_endian
>::do_section_info(unsigned int)
1252 // Return the section alignment. Not used for plugin objects.
1254 template<int size
, bool big_endian
>
1256 Sized_pluginobj
<size
, big_endian
>::do_section_addralign(unsigned int)
1262 // Return the Xindex structure to use. Not used for plugin objects.
1264 template<int size
, bool big_endian
>
1266 Sized_pluginobj
<size
, big_endian
>::do_initialize_xindex()
1272 // Get symbol counts. Don't count plugin objects; the replacement
1273 // files will provide the counts.
1275 template<int size
, bool big_endian
>
1277 Sized_pluginobj
<size
, big_endian
>::do_get_global_symbol_counts(
1278 const Symbol_table
*,
1286 // Get symbols. Not used for plugin objects.
1288 template<int size
, bool big_endian
>
1289 const Object::Symbols
*
1290 Sized_pluginobj
<size
, big_endian
>::do_get_global_symbols() const
1295 // Class Plugin_finish. This task runs after all replacement files have
1296 // been added. For now, it's a placeholder for a possible plugin API
1297 // to allow the plugin to release most of its resources. The cleanup
1298 // handlers must be called later, because they can remove the temporary
1299 // object files that are needed until the end of the link.
1301 class Plugin_finish
: public Task
1304 Plugin_finish(Task_token
* this_blocker
, Task_token
* next_blocker
)
1305 : this_blocker_(this_blocker
), next_blocker_(next_blocker
)
1310 if (this->this_blocker_
!= NULL
)
1311 delete this->this_blocker_
;
1317 if (this->this_blocker_
!= NULL
&& this->this_blocker_
->is_blocked())
1318 return this->this_blocker_
;
1323 locks(Task_locker
* tl
)
1324 { tl
->add(this, this->next_blocker_
); }
1329 // We could call early cleanup handlers here.
1334 { return "Plugin_finish"; }
1337 Task_token
* this_blocker_
;
1338 Task_token
* next_blocker_
;
1341 // Class Plugin_hook.
1343 Plugin_hook::~Plugin_hook()
1347 // Return whether a Plugin_hook task is runnable.
1350 Plugin_hook::is_runnable()
1352 if (this->this_blocker_
!= NULL
&& this->this_blocker_
->is_blocked())
1353 return this->this_blocker_
;
1357 // Return a Task_locker for a Plugin_hook task. We don't need any
1361 Plugin_hook::locks(Task_locker
*)
1365 // Run the "all symbols read" plugin hook.
1368 Plugin_hook::run(Workqueue
* workqueue
)
1370 gold_assert(this->options_
.has_plugins());
1371 Symbol
* start_sym
= this->symtab_
->lookup(parameters
->entry());
1372 if (start_sym
!= NULL
)
1373 start_sym
->set_in_real_elf();
1375 this->options_
.plugins()->all_symbols_read(workqueue
,
1377 this->input_objects_
,
1381 &this->this_blocker_
);
1382 workqueue
->queue_soon(new Plugin_finish(this->this_blocker_
,
1383 this->next_blocker_
));
1386 // The C interface routines called by the plugins.
1388 #ifdef ENABLE_PLUGINS
1390 // Register a claim-file handler.
1392 static enum ld_plugin_status
1393 register_claim_file(ld_plugin_claim_file_handler handler
)
1395 gold_assert(parameters
->options().has_plugins());
1396 parameters
->options().plugins()->set_claim_file_handler(handler
);
1400 // Register an all-symbols-read handler.
1402 static enum ld_plugin_status
1403 register_all_symbols_read(ld_plugin_all_symbols_read_handler handler
)
1405 gold_assert(parameters
->options().has_plugins());
1406 parameters
->options().plugins()->set_all_symbols_read_handler(handler
);
1410 // Register a cleanup handler.
1412 static enum ld_plugin_status
1413 register_cleanup(ld_plugin_cleanup_handler handler
)
1415 gold_assert(parameters
->options().has_plugins());
1416 parameters
->options().plugins()->set_cleanup_handler(handler
);
1420 // Add symbols from a plugin-claimed input file.
1422 static enum ld_plugin_status
1423 add_symbols(void* handle
, int nsyms
, const ld_plugin_symbol
* syms
)
1425 gold_assert(parameters
->options().has_plugins());
1426 Pluginobj
* obj
= parameters
->options().plugins()->make_plugin_object(
1427 static_cast<unsigned int>(reinterpret_cast<intptr_t>(handle
)));
1430 obj
->store_incoming_symbols(nsyms
, syms
);
1434 // Get the input file information with an open (possibly re-opened)
1437 static enum ld_plugin_status
1438 get_input_file(const void* handle
, struct ld_plugin_input_file
* file
)
1440 gold_assert(parameters
->options().has_plugins());
1441 unsigned int obj_index
=
1442 static_cast<unsigned int>(reinterpret_cast<intptr_t>(handle
));
1443 return parameters
->options().plugins()->get_input_file(obj_index
, file
);
1446 // Release the input file.
1448 static enum ld_plugin_status
1449 release_input_file(const void* handle
)
1451 gold_assert(parameters
->options().has_plugins());
1452 unsigned int obj_index
=
1453 static_cast<unsigned int>(reinterpret_cast<intptr_t>(handle
));
1454 return parameters
->options().plugins()->release_input_file(obj_index
);
1457 static enum ld_plugin_status
1458 get_view(const void *handle
, const void **viewp
)
1460 gold_assert(parameters
->options().has_plugins());
1461 unsigned int obj_index
=
1462 static_cast<unsigned int>(reinterpret_cast<intptr_t>(handle
));
1463 return parameters
->options().plugins()->get_view(obj_index
, viewp
);
1466 // Get the symbol resolution info for a plugin-claimed input file.
1468 static enum ld_plugin_status
1469 get_symbols(const void* handle
, int nsyms
, ld_plugin_symbol
* syms
)
1471 gold_assert(parameters
->options().has_plugins());
1472 Object
* obj
= parameters
->options().plugins()->object(
1473 static_cast<unsigned int>(reinterpret_cast<intptr_t>(handle
)));
1476 Pluginobj
* plugin_obj
= obj
->pluginobj();
1477 if (plugin_obj
== NULL
)
1479 return plugin_obj
->get_symbol_resolution_info(nsyms
, syms
, 1);
1482 // Version 2 of the above. The only difference is that this version
1483 // is allowed to return the resolution code LDPR_PREVAILING_DEF_IRONLY_EXP.
1485 static enum ld_plugin_status
1486 get_symbols_v2(const void* handle
, int nsyms
, ld_plugin_symbol
* syms
)
1488 gold_assert(parameters
->options().has_plugins());
1489 Object
* obj
= parameters
->options().plugins()->object(
1490 static_cast<unsigned int>(reinterpret_cast<intptr_t>(handle
)));
1493 Pluginobj
* plugin_obj
= obj
->pluginobj();
1494 if (plugin_obj
== NULL
)
1496 return plugin_obj
->get_symbol_resolution_info(nsyms
, syms
, 2);
1499 // Add a new (real) input file generated by a plugin.
1501 static enum ld_plugin_status
1502 add_input_file(const char* pathname
)
1504 gold_assert(parameters
->options().has_plugins());
1505 return parameters
->options().plugins()->add_input_file(pathname
, false);
1508 // Add a new (real) library required by a plugin.
1510 static enum ld_plugin_status
1511 add_input_library(const char* pathname
)
1513 gold_assert(parameters
->options().has_plugins());
1514 return parameters
->options().plugins()->add_input_file(pathname
, true);
1517 // Set the extra library path to be used by libraries added via
1518 // add_input_library
1520 static enum ld_plugin_status
1521 set_extra_library_path(const char* path
)
1523 gold_assert(parameters
->options().has_plugins());
1524 return parameters
->options().plugins()->set_extra_library_path(path
);
1527 // Issue a diagnostic message from a plugin.
1529 static enum ld_plugin_status
1530 message(int level
, const char* format
, ...)
1533 va_start(args
, format
);
1538 parameters
->errors()->info(format
, args
);
1541 parameters
->errors()->warning(format
, args
);
1545 parameters
->errors()->error(format
, args
);
1548 parameters
->errors()->fatal(format
, args
);
1556 // Get the section count of the object corresponding to the handle. This
1557 // plugin interface can only be called in the claim_file handler of the plugin.
1559 static enum ld_plugin_status
1560 get_input_section_count(const void* handle
, unsigned int* count
)
1562 gold_assert(parameters
->options().has_plugins());
1564 if (!parameters
->options().plugins()->in_claim_file_handler())
1567 Object
* obj
= parameters
->options().plugins()->get_elf_object(handle
);
1572 *count
= obj
->shnum();
1576 // Get the type of the specified section in the object corresponding
1577 // to the handle. This plugin interface can only be called in the
1578 // claim_file handler of the plugin.
1580 static enum ld_plugin_status
1581 get_input_section_type(const struct ld_plugin_section section
,
1584 gold_assert(parameters
->options().has_plugins());
1586 if (!parameters
->options().plugins()->in_claim_file_handler())
1590 = parameters
->options().plugins()->get_elf_object(section
.handle
);
1593 return LDPS_BAD_HANDLE
;
1595 *type
= obj
->section_type(section
.shndx
);
1599 // Get the name of the specified section in the object corresponding
1600 // to the handle. This plugin interface can only be called in the
1601 // claim_file handler of the plugin.
1603 static enum ld_plugin_status
1604 get_input_section_name(const struct ld_plugin_section section
,
1605 char** section_name_ptr
)
1607 gold_assert(parameters
->options().has_plugins());
1609 if (!parameters
->options().plugins()->in_claim_file_handler())
1613 = parameters
->options().plugins()->get_elf_object(section
.handle
);
1616 return LDPS_BAD_HANDLE
;
1618 // Check if the object is locked before getting the section name.
1619 gold_assert(obj
->is_locked());
1621 const std::string section_name
= obj
->section_name(section
.shndx
);
1622 *section_name_ptr
= static_cast<char*>(malloc(section_name
.length() + 1));
1623 memcpy(*section_name_ptr
, section_name
.c_str(), section_name
.length() + 1);
1627 // Get the contents of the specified section in the object corresponding
1628 // to the handle. This plugin interface can only be called in the
1629 // claim_file handler of the plugin.
1631 static enum ld_plugin_status
1632 get_input_section_contents(const struct ld_plugin_section section
,
1633 const unsigned char** section_contents_ptr
,
1636 gold_assert(parameters
->options().has_plugins());
1638 if (!parameters
->options().plugins()->in_claim_file_handler())
1642 = parameters
->options().plugins()->get_elf_object(section
.handle
);
1645 return LDPS_BAD_HANDLE
;
1647 // Check if the object is locked before getting the section contents.
1648 gold_assert(obj
->is_locked());
1650 section_size_type plen
;
1651 *section_contents_ptr
1652 = obj
->section_contents(section
.shndx
, &plen
, false);
1657 // Specify the ordering of sections in the final layout. The sections are
1658 // specified as (handle,shndx) pairs in the two arrays in the order in
1659 // which they should appear in the final layout.
1661 static enum ld_plugin_status
1662 update_section_order(const struct ld_plugin_section
* section_list
,
1663 unsigned int num_sections
)
1665 gold_assert(parameters
->options().has_plugins());
1667 if (num_sections
== 0)
1670 if (section_list
== NULL
)
1673 Layout
* layout
= parameters
->options().plugins()->layout();
1674 gold_assert (layout
!= NULL
);
1676 std::map
<Section_id
, unsigned int>* order_map
1677 = layout
->get_section_order_map();
1679 /* Store the mapping from Section_id to section position in layout's
1680 order_map to consult after output sections are added. */
1681 for (unsigned int i
= 0; i
< num_sections
; ++i
)
1683 Object
* obj
= parameters
->options().plugins()->get_elf_object(
1684 section_list
[i
].handle
);
1686 return LDPS_BAD_HANDLE
;
1687 unsigned int shndx
= section_list
[i
].shndx
;
1688 Section_id
secn_id(obj
, shndx
);
1689 (*order_map
)[secn_id
] = i
+ 1;
1695 // Let the linker know that the sections could be reordered.
1697 static enum ld_plugin_status
1698 allow_section_ordering()
1700 gold_assert(parameters
->options().has_plugins());
1701 Layout
* layout
= parameters
->options().plugins()->layout();
1702 layout
->set_section_ordering_specified();
1706 // Let the linker know that a subset of sections could be mapped
1707 // to a unique segment.
1709 static enum ld_plugin_status
1710 allow_unique_segment_for_sections()
1712 gold_assert(parameters
->options().has_plugins());
1713 Layout
* layout
= parameters
->options().plugins()->layout();
1714 layout
->set_unique_segment_for_sections_specified();
1718 // This function should map the list of sections specified in the
1719 // SECTION_LIST to a unique segment. ELF segments do not have names
1720 // and the NAME is used to identify Output Section which should contain
1721 // the list of sections. This Output Section will then be mapped to
1722 // a unique segment. FLAGS is used to specify if any additional segment
1723 // flags need to be set. For instance, a specific segment flag can be
1724 // set to identify this segment. Unsetting segment flags is not possible.
1725 // ALIGN specifies the alignment of the segment.
1727 static enum ld_plugin_status
1728 unique_segment_for_sections(const char* segment_name
,
1731 const struct ld_plugin_section
* section_list
,
1732 unsigned int num_sections
)
1734 gold_assert(parameters
->options().has_plugins());
1736 if (num_sections
== 0)
1739 if (section_list
== NULL
)
1742 Layout
* layout
= parameters
->options().plugins()->layout();
1743 gold_assert (layout
!= NULL
);
1745 Layout::Unique_segment_info
* s
= new Layout::Unique_segment_info
;
1746 s
->name
= segment_name
;
1750 for (unsigned int i
= 0; i
< num_sections
; ++i
)
1752 Object
* obj
= parameters
->options().plugins()->get_elf_object(
1753 section_list
[i
].handle
);
1755 return LDPS_BAD_HANDLE
;
1756 unsigned int shndx
= section_list
[i
].shndx
;
1757 Const_section_id
secn_id(obj
, shndx
);
1758 layout
->insert_section_segment_map(secn_id
, s
);
1764 #endif // ENABLE_PLUGINS
1766 // Allocate a Pluginobj object of the appropriate size and endianness.
1769 make_sized_plugin_object(Input_file
* input_file
, off_t offset
, off_t filesize
)
1771 Pluginobj
* obj
= NULL
;
1773 parameters_force_valid_target();
1774 const Target
& target(parameters
->target());
1776 if (target
.get_size() == 32)
1778 if (target
.is_big_endian())
1779 #ifdef HAVE_TARGET_32_BIG
1780 obj
= new Sized_pluginobj
<32, true>(input_file
->filename(),
1781 input_file
, offset
, filesize
);
1783 gold_error(_("%s: not configured to support "
1784 "32-bit big-endian object"),
1785 input_file
->filename().c_str());
1788 #ifdef HAVE_TARGET_32_LITTLE
1789 obj
= new Sized_pluginobj
<32, false>(input_file
->filename(),
1790 input_file
, offset
, filesize
);
1792 gold_error(_("%s: not configured to support "
1793 "32-bit little-endian object"),
1794 input_file
->filename().c_str());
1797 else if (target
.get_size() == 64)
1799 if (target
.is_big_endian())
1800 #ifdef HAVE_TARGET_64_BIG
1801 obj
= new Sized_pluginobj
<64, true>(input_file
->filename(),
1802 input_file
, offset
, filesize
);
1804 gold_error(_("%s: not configured to support "
1805 "64-bit big-endian object"),
1806 input_file
->filename().c_str());
1809 #ifdef HAVE_TARGET_64_LITTLE
1810 obj
= new Sized_pluginobj
<64, false>(input_file
->filename(),
1811 input_file
, offset
, filesize
);
1813 gold_error(_("%s: not configured to support "
1814 "64-bit little-endian object"),
1815 input_file
->filename().c_str());
1819 gold_assert(obj
!= NULL
);
1823 } // End namespace gold.