Use failif on ld-elf/exclude3 tests
[deliverable/binutils-gdb.git] / gold / gold.cc
CommitLineData
5a6f7e2d 1// gold.cc -- main linker functions
bae7f79e 2
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3// Copyright 2006, 2007, 2008, 2009, 2010, 2011, 2012
4// Free Software Foundation, Inc.
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5// Written by Ian Lance Taylor <iant@google.com>.
6
7// This file is part of gold.
8
9// This program is free software; you can redistribute it and/or modify
10// it under the terms of the GNU General Public License as published by
11// the Free Software Foundation; either version 3 of the License, or
12// (at your option) any later version.
13
14// This program is distributed in the hope that it will be useful,
15// but WITHOUT ANY WARRANTY; without even the implied warranty of
16// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17// GNU General Public License for more details.
18
19// You should have received a copy of the GNU General Public License
20// along with this program; if not, write to the Free Software
21// Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
22// MA 02110-1301, USA.
23
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24#include "gold.h"
25
26#include <cstdlib>
27#include <cstdio>
28#include <cstring>
29#include <unistd.h>
fbfba508 30#include <algorithm>
75f2446e 31#include "libiberty.h"
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32
33#include "options.h"
f1ddb600 34#include "target-select.h"
494e05f4 35#include "debug.h"
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36#include "workqueue.h"
37#include "dirsearch.h"
38#include "readsyms.h"
14bfc3f5 39#include "symtab.h"
ead1e424 40#include "common.h"
54dc6425 41#include "object.h"
a2fb1b05 42#include "layout.h"
61ba1cf9 43#include "reloc.h"
ead1e424 44#include "defstd.h"
89fc3421 45#include "plugin.h"
f345227a 46#include "gc.h"
ef15dade 47#include "icf.h"
44453f85 48#include "incremental.h"
b490c0bb 49#include "timer.h"
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50
51namespace gold
52{
53
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54class Object;
55
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56const char* program_name;
57
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58static Task*
59process_incremental_input(Incremental_binary*, unsigned int, Input_objects*,
60 Symbol_table*, Layout*, Dirsearch*, Mapfile*,
61 Task_token*, Task_token*);
62
bae7f79e 63void
e6455dfb 64gold_exit(Exit_status status)
bae7f79e 65{
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66 if (parameters != NULL
67 && parameters->options_valid()
68 && parameters->options().has_plugins())
69 parameters->options().plugins()->cleanup();
e6455dfb 70 if (status != GOLD_OK && parameters != NULL && parameters->options_valid())
8851ecca 71 unlink_if_ordinary(parameters->options().output_file_name());
e6455dfb 72 exit(status);
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73}
74
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75void
76gold_nomem()
77{
78 // We are out of memory, so try hard to print a reasonable message.
79 // Note that we don't try to translate this message, since the
80 // translation process itself will require memory.
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81
82 // LEN only exists to avoid a pointless warning when write is
83 // declared with warn_use_result, as when compiling with
84 // -D_USE_FORTIFY on GNU/Linux. Casting to void does not appear to
85 // work, at least not with gcc 4.3.0.
86
87 ssize_t len = write(2, program_name, strlen(program_name));
88 if (len >= 0)
89 {
90 const char* const s = ": out of memory\n";
91 len = write(2, s, strlen(s));
92 }
e6455dfb 93 gold_exit(GOLD_ERR);
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94}
95
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96// Handle an unreachable case.
97
bae7f79e 98void
a3ad94ed 99do_gold_unreachable(const char* filename, int lineno, const char* function)
bae7f79e 100{
27b7985a 101 fprintf(stderr, _("%s: internal error in %s, at %s:%d\n"),
a3ad94ed 102 program_name, function, filename, lineno);
e6455dfb 103 gold_exit(GOLD_ERR);
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104}
105
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106// This class arranges to run the functions done in the middle of the
107// link. It is just a closure.
bae7f79e 108
92e059d8 109class Middle_runner : public Task_function_runner
bae7f79e 110{
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111 public:
112 Middle_runner(const General_options& options,
113 const Input_objects* input_objects,
114 Symbol_table* symtab,
7d9e3d98 115 Layout* layout, Mapfile* mapfile)
92e059d8 116 : options_(options), input_objects_(input_objects), symtab_(symtab),
7d9e3d98 117 layout_(layout), mapfile_(mapfile)
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118 { }
119
120 void
17a1d0a9 121 run(Workqueue*, const Task*);
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122
123 private:
124 const General_options& options_;
125 const Input_objects* input_objects_;
126 Symbol_table* symtab_;
127 Layout* layout_;
7d9e3d98 128 Mapfile* mapfile_;
92e059d8 129};
bae7f79e 130
92e059d8 131void
17a1d0a9 132Middle_runner::run(Workqueue* workqueue, const Task* task)
92e059d8 133{
17a1d0a9 134 queue_middle_tasks(this->options_, task, this->input_objects_, this->symtab_,
7d9e3d98 135 this->layout_, workqueue, this->mapfile_);
92e059d8 136}
bae7f79e 137
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138// This class arranges the tasks to process the relocs for garbage collection.
139
2e702c99 140class Gc_runner : public Task_function_runner
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141{
142 public:
143 Gc_runner(const General_options& options,
144 const Input_objects* input_objects,
145 Symbol_table* symtab,
146 Layout* layout, Mapfile* mapfile)
147 : options_(options), input_objects_(input_objects), symtab_(symtab),
148 layout_(layout), mapfile_(mapfile)
149 { }
150
151 void
152 run(Workqueue*, const Task*);
153
154 private:
155 const General_options& options_;
156 const Input_objects* input_objects_;
157 Symbol_table* symtab_;
158 Layout* layout_;
159 Mapfile* mapfile_;
160};
161
162void
163Gc_runner::run(Workqueue* workqueue, const Task* task)
164{
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165 queue_middle_gc_tasks(this->options_, task, this->input_objects_,
166 this->symtab_, this->layout_, workqueue,
167 this->mapfile_);
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168}
169
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170// Queue up the initial set of tasks for this link job.
171
172void
173queue_initial_tasks(const General_options& options,
17a1d0a9 174 Dirsearch& search_path,
ead1e424 175 const Command_line& cmdline,
54dc6425 176 Workqueue* workqueue, Input_objects* input_objects,
7d9e3d98 177 Symbol_table* symtab, Layout* layout, Mapfile* mapfile)
bae7f79e 178{
e5366891 179 if (cmdline.begin() == cmdline.end())
459c9f1c 180 {
f1ddb600 181 bool is_ok = false;
459c9f1c 182 if (options.printed_version())
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183 is_ok = true;
184 if (options.print_output_format())
185 {
186 print_output_format();
187 is_ok = true;
188 }
189 if (is_ok)
e6455dfb 190 gold_exit(GOLD_OK);
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191 gold_fatal(_("no input files"));
192 }
e5366891 193
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194 int thread_count = options.thread_count_initial();
195 if (thread_count == 0)
e5366891 196 thread_count = cmdline.number_of_input_files();
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197 workqueue->set_thread_count(thread_count);
198
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199 // For incremental links, the base output file.
200 Incremental_binary* ibase = NULL;
201
403a3331 202 if (parameters->incremental_update())
44453f85 203 {
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204 Output_file* of = new Output_file(options.output_file_name());
205 if (of->open_base_file(options.incremental_base(), true))
cdc29364 206 {
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207 ibase = open_incremental_binary(of);
208 if (ibase != NULL
209 && ibase->check_inputs(cmdline, layout->incremental_inputs()))
210 ibase->init_layout(layout);
211 else
cdc29364 212 {
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213 delete ibase;
214 ibase = NULL;
215 of->close();
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216 }
217 }
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218 if (ibase == NULL)
219 {
220 if (set_parameters_incremental_full())
221 gold_info(_("linking with --incremental-full"));
222 else
223 gold_fallback(_("restart link with --incremental-full"));
224 }
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225 }
226
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227 // Read the input files. We have to add the symbols to the symbol
228 // table in order. We do this by creating a separate blocker for
229 // each input file. We associate the blocker with the following
230 // input file, to give us a convenient place to delete it.
231 Task_token* this_blocker = NULL;
cdc29364 232 if (ibase == NULL)
bae7f79e 233 {
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234 // Normal link. Queue a Read_symbols task for each input file
235 // on the command line.
236 for (Command_line::const_iterator p = cmdline.begin();
237 p != cmdline.end();
238 ++p)
239 {
240 Task_token* next_blocker = new Task_token(true);
241 next_blocker->add_blocker();
242 workqueue->queue(new Read_symbols(input_objects, symtab, layout,
243 &search_path, 0, mapfile, &*p, NULL,
244 NULL, this_blocker, next_blocker));
245 this_blocker = next_blocker;
246 }
247 }
248 else
249 {
250 // Incremental update link. Process the list of input files
251 // stored in the base file, and queue a task for each file:
252 // a Read_symbols task for a changed file, and an Add_symbols task
253 // for an unchanged file. We need to mark all the space used by
254 // unchanged files before we can start any tasks running.
255 unsigned int input_file_count = ibase->input_file_count();
256 std::vector<Task*> tasks;
257 tasks.reserve(input_file_count);
258 for (unsigned int i = 0; i < input_file_count; ++i)
259 {
260 Task_token* next_blocker = new Task_token(true);
261 next_blocker->add_blocker();
262 Task* t = process_incremental_input(ibase, i, input_objects, symtab,
263 layout, &search_path, mapfile,
264 this_blocker, next_blocker);
265 tasks.push_back(t);
266 this_blocker = next_blocker;
267 }
268 // Now we can queue the tasks.
269 for (unsigned int i = 0; i < tasks.size(); i++)
270 workqueue->queue(tasks[i]);
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271 }
272
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273 if (options.has_plugins())
274 {
275 Task_token* next_blocker = new Task_token(true);
276 next_blocker->add_blocker();
277 workqueue->queue(new Plugin_hook(options, input_objects, symtab, layout,
278 &search_path, mapfile, this_blocker,
279 next_blocker));
280 this_blocker = next_blocker;
281 }
282
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283 if (options.relocatable()
284 && (options.gc_sections() || options.icf_enabled()))
ef15dade 285 gold_error(_("cannot mix -r with --gc-sections or --icf"));
6d03d481 286
cdc29364 287 if (options.gc_sections() || options.icf_enabled())
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288 {
289 workqueue->queue(new Task_function(new Gc_runner(options,
ad0f2072 290 input_objects,
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291 symtab,
292 layout,
293 mapfile),
294 this_blocker,
295 "Task_function Gc_runner"));
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296 }
297 else
298 {
299 workqueue->queue(new Task_function(new Middle_runner(options,
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300 input_objects,
301 symtab,
302 layout,
303 mapfile),
304 this_blocker,
305 "Task_function Middle_runner"));
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306 }
307}
308
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309// Process an incremental input file: if it is unchanged from the previous
310// link, return a task to add its symbols from the base file's incremental
311// info; if it has changed, return a normal Read_symbols task. We create a
312// task for every input file, if only to report the file for rebuilding the
313// incremental info.
314
315static Task*
316process_incremental_input(Incremental_binary* ibase,
317 unsigned int input_file_index,
318 Input_objects* input_objects,
319 Symbol_table* symtab,
320 Layout* layout,
321 Dirsearch* search_path,
322 Mapfile* mapfile,
323 Task_token* this_blocker,
324 Task_token* next_blocker)
325{
326 const Incremental_binary::Input_reader* input_reader =
327 ibase->get_input_reader(input_file_index);
328 Incremental_input_type input_type = input_reader->type();
329
330 // Get the input argument corresponding to this input file, matching on
331 // the argument serial number. If the input file cannot be matched
332 // to an existing input argument, synthesize a new one.
333 const Input_argument* input_argument =
334 ibase->get_input_argument(input_file_index);
335 if (input_argument == NULL)
336 {
337 Input_file_argument file(input_reader->filename(),
338 Input_file_argument::INPUT_FILE_TYPE_FILE,
339 "", false, parameters->options());
340 Input_argument* arg = new Input_argument(file);
341 arg->set_script_info(ibase->get_script_info(input_file_index));
342 input_argument = arg;
343 }
344
345 gold_debug(DEBUG_INCREMENTAL, "Incremental object: %s, type %d",
346 input_reader->filename(), input_type);
347
348 if (input_type == INCREMENTAL_INPUT_SCRIPT)
349 {
350 // Incremental_binary::check_inputs should have cancelled the
351 // incremental update if the script has changed.
352 gold_assert(!ibase->file_has_changed(input_file_index));
353 return new Check_script(layout, ibase, input_file_index, input_reader,
354 this_blocker, next_blocker);
355 }
356
357 if (input_type == INCREMENTAL_INPUT_ARCHIVE)
358 {
359 Incremental_library* lib = ibase->get_library(input_file_index);
360 gold_assert(lib != NULL);
361 if (lib->filename() == "/group/"
362 || !ibase->file_has_changed(input_file_index))
363 {
364 // Queue a task to check that no references have been added to any
365 // of the library's unused symbols.
366 return new Check_library(symtab, layout, ibase, input_file_index,
367 input_reader, this_blocker, next_blocker);
368 }
369 else
370 {
371 // Queue a Read_symbols task to process the archive normally.
372 return new Read_symbols(input_objects, symtab, layout, search_path,
373 0, mapfile, input_argument, NULL, NULL,
374 this_blocker, next_blocker);
375 }
376 }
377
378 if (input_type == INCREMENTAL_INPUT_ARCHIVE_MEMBER)
379 {
380 // For archive members, check the timestamp of the containing archive.
381 Incremental_library* lib = ibase->get_library(input_file_index);
382 gold_assert(lib != NULL);
383 // Process members of a --start-lib/--end-lib group as normal objects.
384 if (lib->filename() != "/group/")
385 {
386 if (ibase->file_has_changed(lib->input_file_index()))
387 {
388 return new Read_member(input_objects, symtab, layout, mapfile,
389 input_reader, this_blocker, next_blocker);
390 }
391 else
392 {
393 // The previous contributions from this file will be kept.
394 // Mark the pieces of output sections contributed by this
395 // object.
396 ibase->reserve_layout(input_file_index);
397 Object* obj = make_sized_incremental_object(ibase,
398 input_file_index,
399 input_type,
400 input_reader);
401 return new Add_symbols(input_objects, symtab, layout,
402 search_path, 0, mapfile, input_argument,
403 obj, lib, NULL, this_blocker,
404 next_blocker);
405 }
406 }
407 }
408
409 // Normal object file or shared library. Check if the file has changed
410 // since the last incremental link.
411 if (ibase->file_has_changed(input_file_index))
412 {
413 return new Read_symbols(input_objects, symtab, layout, search_path, 0,
414 mapfile, input_argument, NULL, NULL,
415 this_blocker, next_blocker);
416 }
417 else
418 {
419 // The previous contributions from this file will be kept.
420 // Mark the pieces of output sections contributed by this object.
421 ibase->reserve_layout(input_file_index);
422 Object* obj = make_sized_incremental_object(ibase,
423 input_file_index,
424 input_type,
425 input_reader);
426 return new Add_symbols(input_objects, symtab, layout, search_path, 0,
427 mapfile, input_argument, obj, NULL, NULL,
428 this_blocker, next_blocker);
429 }
430}
431
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432// Queue up a set of tasks to be done before queueing the middle set
433// of tasks. This is only necessary when garbage collection
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434// (--gc-sections) of unused sections is desired. The relocs are read
435// and processed here early to determine the garbage sections before the
436// relocs can be scanned in later tasks.
437
438void
439queue_middle_gc_tasks(const General_options& options,
440 const Task* ,
441 const Input_objects* input_objects,
442 Symbol_table* symtab,
443 Layout* layout,
444 Workqueue* workqueue,
445 Mapfile* mapfile)
446{
447 // Read_relocs for all the objects must be done and processed to find
448 // unused sections before any scanning of the relocs can take place.
93ceb764 449 Task_token* this_blocker = NULL;
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450 for (Input_objects::Relobj_iterator p = input_objects->relobj_begin();
451 p != input_objects->relobj_end();
452 ++p)
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453 {
454 Task_token* next_blocker = new Task_token(true);
455 next_blocker->add_blocker();
456 workqueue->queue(new Read_relocs(symtab, layout, *p, this_blocker,
457 next_blocker));
458 this_blocker = next_blocker;
459 }
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460
461 // If we are given only archives in input, we have no regular
462 // objects and THIS_BLOCKER is NULL here. Create a dummy
463 // blocker here so that we can run the middle tasks immediately.
464 if (this_blocker == NULL)
465 {
466 gold_assert(input_objects->number_of_relobjs() == 0);
467 this_blocker = new Task_token(true);
468 }
469
92e059d8 470 workqueue->queue(new Task_function(new Middle_runner(options,
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471 input_objects,
472 symtab,
473 layout,
474 mapfile),
475 this_blocker,
476 "Task_function Middle_runner"));
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477}
478
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479// Queue up the middle set of tasks. These are the tasks which run
480// after all the input objects have been found and all the symbols
481// have been read, but before we lay out the output file.
bae7f79e 482
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483void
484queue_middle_tasks(const General_options& options,
17a1d0a9 485 const Task* task,
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486 const Input_objects* input_objects,
487 Symbol_table* symtab,
488 Layout* layout,
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489 Workqueue* workqueue,
490 Mapfile* mapfile)
61ba1cf9 491{
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492 Timer* timer = parameters->timer();
493 if (timer != NULL)
494 timer->stamp(0);
495
6d03d481 496 // Add any symbols named with -u options to the symbol table.
88a4108b 497 symtab->add_undefined_symbols_from_command_line(layout);
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498
499 // If garbage collection was chosen, relocs have been read and processed
2e702c99 500 // at this point by pre_middle_tasks. Layout can then be done for all
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501 // objects.
502 if (parameters->options().gc_sections())
503 {
504 // Find the start symbol if any.
a10ae760 505 Symbol* start_sym = symtab->lookup(parameters->entry());
556bd683 506 if (start_sym != NULL)
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507 {
508 bool is_ordinary;
509 unsigned int shndx = start_sym->shndx(&is_ordinary);
510 if (is_ordinary)
511 {
512 symtab->gc()->worklist().push(
513 Section_id(start_sym->object(), shndx));
514 }
515 }
6d03d481 516 // Symbols named with -u should not be considered garbage.
88a4108b 517 symtab->gc_mark_undef_symbols(layout);
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518 gold_assert(symtab->gc() != NULL);
519 // Do a transitive closure on all references to determine the worklist.
520 symtab->gc()->do_transitive_closure();
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521 }
522
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523 // If identical code folding (--icf) is chosen it makes sense to do it
524 // only after garbage collection (--gc-sections) as we do not want to
ef15dade 525 // be folding sections that will be garbage.
032ce4e9 526 if (parameters->options().icf_enabled())
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527 {
528 symtab->icf()->find_identical_sections(input_objects, symtab);
529 }
530
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531 // Call Object::layout for the second time to determine the
532 // output_sections for all referenced input sections. When
533 // --gc-sections or --icf is turned on, Object::layout is
534 // called twice. It is called the first time when the
ef15dade 535 // symbols are added.
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ST
536 if (parameters->options().gc_sections()
537 || parameters->options().icf_enabled())
ef15dade 538 {
6d03d481 539 for (Input_objects::Relobj_iterator p = input_objects->relobj_begin();
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540 p != input_objects->relobj_end();
541 ++p)
542 {
543 Task_lock_obj<Object> tlo(task, *p);
544 (*p)->layout(symtab, layout, NULL);
545 }
6d03d481 546 }
ef15dade 547
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548 // Layout deferred objects due to plugins.
549 if (parameters->options().has_plugins())
550 {
551 Plugin_manager* plugins = parameters->options().plugins();
552 gold_assert(plugins != NULL);
553 plugins->layout_deferred_objects();
554 }
555
f0558624
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556 /* If plugins have specified a section order, re-arrange input sections
557 according to a specified section order. If --section-ordering-file is
558 also specified, do not do anything here. */
559 if (parameters->options().has_plugins()
560 && layout->is_section_ordering_specified()
561 && !parameters->options().section_ordering_file ())
562 {
563 for (Layout::Section_list::const_iterator p
564 = layout->section_list().begin();
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565 p != layout->section_list().end();
566 ++p)
567 (*p)->update_section_layout(layout->get_section_order_map());
f0558624
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568 }
569
032ce4e9
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570 if (parameters->options().gc_sections()
571 || parameters->options().icf_enabled())
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572 {
573 for (Input_objects::Relobj_iterator p = input_objects->relobj_begin();
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574 p != input_objects->relobj_end();
575 ++p)
576 {
577 // Update the value of output_section stored in rd.
578 Read_relocs_data* rd = (*p)->get_relocs_data();
579 for (Read_relocs_data::Relocs_list::iterator q = rd->relocs.begin();
580 q != rd->relocs.end();
581 ++q)
582 {
583 q->output_section = (*p)->output_section(q->data_shndx);
584 q->needs_special_offset_handling =
585 (*p)->is_output_section_offset_invalid(q->data_shndx);
586 }
587 }
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588 }
589
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590 // We have to support the case of not seeing any input objects, and
591 // generate an empty file. Existing builds depend on being able to
592 // pass an empty archive to the linker and get an empty object file
593 // out. In order to do this we need to use a default target.
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594 if (input_objects->number_of_input_objects() == 0
595 && layout->incremental_base() == NULL)
029ba973 596 parameters_force_valid_target();
2c0aeda4 597
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598 int thread_count = options.thread_count_middle();
599 if (thread_count == 0)
fbfba508 600 thread_count = std::max(2, input_objects->number_of_input_objects());
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601 workqueue->set_thread_count(thread_count);
602
b3b74ddc 603 // Now we have seen all the input files.
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604 const bool doing_static_link =
605 (!input_objects->any_dynamic()
606 && !parameters->options().output_is_position_independent());
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607 set_parameters_doing_static_link(doing_static_link);
608 if (!doing_static_link && options.is_static())
609 {
610 // We print out just the first .so we see; there may be others.
4e1e25e0 611 gold_assert(input_objects->dynobj_begin() != input_objects->dynobj_end());
75f2446e
ILT
612 gold_error(_("cannot mix -static with dynamic object %s"),
613 (*input_objects->dynobj_begin())->name().c_str());
4eff2974 614 }
8851ecca 615 if (!doing_static_link && parameters->options().relocatable())
459c9f1c 616 gold_fatal(_("cannot mix -r with dynamic object %s"),
6a74a719 617 (*input_objects->dynobj_begin())->name().c_str());
516cb3d0 618 if (!doing_static_link
7cc619c3 619 && options.oformat_enum() != General_options::OBJECT_FORMAT_ELF)
516cb3d0
ILT
620 gold_fatal(_("cannot use non-ELF output format with dynamic object %s"),
621 (*input_objects->dynobj_begin())->name().c_str());
b3b74ddc 622
364c7fa5
ILT
623 if (parameters->options().relocatable())
624 {
625 Input_objects::Relobj_iterator p = input_objects->relobj_begin();
626 if (p != input_objects->relobj_end())
627 {
628 bool uses_split_stack = (*p)->uses_split_stack();
629 for (++p; p != input_objects->relobj_end(); ++p)
630 {
631 if ((*p)->uses_split_stack() != uses_split_stack)
632 gold_fatal(_("cannot mix split-stack '%s' and "
633 "non-split-stack '%s' when using -r"),
634 (*input_objects->relobj_begin())->name().c_str(),
635 (*p)->name().c_str());
636 }
637 }
638 }
639
26d3c67d
CC
640 // For incremental updates, record the existing GOT and PLT entries,
641 // and the COPY relocations.
4829d394
CC
642 if (parameters->incremental_update())
643 {
644 Incremental_binary* ibase = layout->incremental_base();
645 ibase->process_got_plt(symtab, layout);
26d3c67d 646 ibase->emit_copy_relocs(symtab);
4829d394
CC
647 }
648
494e05f4
ILT
649 if (is_debugging_enabled(DEBUG_SCRIPT))
650 layout->script_options()->print(stderr);
651
e2827e5f
ILT
652 // For each dynamic object, record whether we've seen all the
653 // dynamic objects that it depends upon.
654 input_objects->check_dynamic_dependencies();
655
70e654ba
ILT
656 // See if any of the input definitions violate the One Definition Rule.
657 // TODO: if this is too slow, do this as a task, rather than inline.
17a1d0a9 658 symtab->detect_odr_violations(task, options.output_file_name());
70e654ba 659
62dfdd4d
ILT
660 // Do the --no-undefined-version check.
661 if (!parameters->options().undefined_version())
662 {
663 Script_options* so = layout->script_options();
664 so->version_script_info()->check_unmatched_names(symtab);
665 }
666
9c547ec3
ILT
667 // Create any automatic note sections.
668 layout->create_notes();
669
919ed24c
ILT
670 // Create any output sections required by any linker script.
671 layout->create_script_sections();
672
a3ad94ed
ILT
673 // Define some sections and symbols needed for a dynamic link. This
674 // handles some cases we want to see before we read the relocs.
9b07f471 675 layout->create_initial_dynamic_sections(symtab);
a3ad94ed 676
a445fddf
ILT
677 // Define symbols from any linker scripts.
678 layout->define_script_symbols(symtab);
679
647f1574
DK
680 // TODO(csilvers): figure out a more principled way to get the target
681 Target* target = const_cast<Target*>(&parameters->target());
2e702c99
RM
682
683 // Attach sections to segments.
684 layout->attach_sections_to_segments(target);
685
8851ecca 686 if (!parameters->options().relocatable())
6a74a719
ILT
687 {
688 // Predefine standard symbols.
689 define_standard_symbols(symtab, layout);
ead1e424 690
6a74a719
ILT
691 // Define __start and __stop symbols for output sections where
692 // appropriate.
693 layout->define_section_symbols(symtab);
647f1574
DK
694
695 // Define target-specific symbols.
696 target->define_standard_symbols(symtab, layout);
6a74a719 697 }
bfd58944 698
755ab8af
ILT
699 // Make sure we have symbols for any required group signatures.
700 layout->define_group_signatures(symtab);
701
93ceb764 702 Task_token* this_blocker = NULL;
fa17a3f4 703
93ceb764
ILT
704 // Allocate common symbols. We use a blocker to run this before the
705 // Scan_relocs tasks, because it writes to the symbol table just as
706 // they do.
707 if (parameters->options().define_common())
708 {
709 this_blocker = new Task_token(true);
710 this_blocker->add_blocker();
711 workqueue->queue(new Allocate_commons_task(symtab, layout, mapfile,
712 this_blocker));
713 }
6d03d481
ST
714
715 // If doing garbage collection, the relocations have already been read.
716 // Otherwise, read and scan the relocations.
032ce4e9
ST
717 if (parameters->options().gc_sections()
718 || parameters->options().icf_enabled())
92e059d8 719 {
6d03d481 720 for (Input_objects::Relobj_iterator p = input_objects->relobj_begin();
2e702c99
RM
721 p != input_objects->relobj_end();
722 ++p)
93ceb764
ILT
723 {
724 Task_token* next_blocker = new Task_token(true);
725 next_blocker->add_blocker();
2e702c99 726 workqueue->queue(new Scan_relocs(symtab, layout, *p,
93ceb764
ILT
727 (*p)->get_relocs_data(),
728 this_blocker, next_blocker));
729 this_blocker = next_blocker;
730 }
6d03d481
ST
731 }
732 else
733 {
734 // Read the relocations of the input files. We do this to find
735 // which symbols are used by relocations which require a GOT and/or
736 // a PLT entry, or a COPY reloc. When we implement garbage
737 // collection we will do it here by reading the relocations in a
738 // breadth first search by references.
739 //
740 // We could also read the relocations during the first pass, and
741 // mark symbols at that time. That is how the old GNU linker works.
742 // Doing that is more complex, since we may later decide to discard
743 // some of the sections, and thus change our minds about the types
744 // of references made to the symbols.
745 for (Input_objects::Relobj_iterator p = input_objects->relobj_begin();
2e702c99
RM
746 p != input_objects->relobj_end();
747 ++p)
748 {
93ceb764
ILT
749 Task_token* next_blocker = new Task_token(true);
750 next_blocker->add_blocker();
2e702c99 751 workqueue->queue(new Read_relocs(symtab, layout, *p, this_blocker,
93ceb764
ILT
752 next_blocker));
753 this_blocker = next_blocker;
2e702c99 754 }
92e059d8
ILT
755 }
756
135b9c78
ILT
757 if (this_blocker == NULL)
758 {
7296d933
DK
759 if (input_objects->number_of_relobjs() == 0)
760 {
761 // If we are given only archives in input, we have no regular
762 // objects and THIS_BLOCKER is NULL here. Create a dummy
763 // blocker here so that we can run the layout task immediately.
764 this_blocker = new Task_token(true);
765 }
2e702c99 766 else
7296d933
DK
767 {
768 // If we failed to open any input files, it's possible for
769 // THIS_BLOCKER to be NULL here. There's no real point in
770 // continuing if that happens.
771 gold_assert(parameters->errors()->error_count() > 0);
e6455dfb 772 gold_exit(GOLD_ERR);
7296d933 773 }
135b9c78
ILT
774 }
775
92e059d8
ILT
776 // When all those tasks are complete, we can start laying out the
777 // output file.
778 workqueue->queue(new Task_function(new Layout_task_runner(options,
779 input_objects,
780 symtab,
2e702c99 781 target,
7d9e3d98
ILT
782 layout,
783 mapfile),
93ceb764 784 this_blocker,
c7912668 785 "Task_function Layout_task_runner"));
92e059d8 786}
61ba1cf9
ILT
787
788// Queue up the final set of tasks. This is called at the end of
789// Layout_task.
790
791void
792queue_final_tasks(const General_options& options,
793 const Input_objects* input_objects,
794 const Symbol_table* symtab,
27bc2bce 795 Layout* layout,
61ba1cf9
ILT
796 Workqueue* workqueue,
797 Output_file* of)
798{
b490c0bb
CC
799 Timer* timer = parameters->timer();
800 if (timer != NULL)
801 timer->stamp(1);
802
fe9a4c12
ILT
803 int thread_count = options.thread_count_final();
804 if (thread_count == 0)
fbfba508 805 thread_count = std::max(2, input_objects->number_of_input_objects());
fe9a4c12
ILT
806 workqueue->set_thread_count(thread_count);
807
17a1d0a9
ILT
808 bool any_postprocessing_sections = layout->any_postprocessing_sections();
809
730cdc88
ILT
810 // Use a blocker to wait until all the input sections have been
811 // written out.
17a1d0a9
ILT
812 Task_token* input_sections_blocker = NULL;
813 if (!any_postprocessing_sections)
fa17a3f4
ILT
814 {
815 input_sections_blocker = new Task_token(true);
816 input_sections_blocker->add_blockers(input_objects->number_of_relobjs());
817 }
730cdc88
ILT
818
819 // Use a blocker to block any objects which have to wait for the
820 // output sections to complete before they can apply relocations.
17a1d0a9 821 Task_token* output_sections_blocker = new Task_token(true);
fa17a3f4 822 output_sections_blocker->add_blocker();
730cdc88 823
61ba1cf9 824 // Use a blocker to block the final cleanup task.
17a1d0a9 825 Task_token* final_blocker = new Task_token(true);
fa17a3f4
ILT
826 // Write_symbols_task, Write_sections_task, Write_data_task,
827 // Relocate_tasks.
828 final_blocker->add_blockers(3);
829 final_blocker->add_blockers(input_objects->number_of_relobjs());
830 if (!any_postprocessing_sections)
831 final_blocker->add_blocker();
61ba1cf9
ILT
832
833 // Queue a task to write out the symbol table.
d491d34e
ILT
834 workqueue->queue(new Write_symbols_task(layout,
835 symtab,
5fe2a0f5
ILT
836 input_objects,
837 layout->sympool(),
838 layout->dynpool(),
839 of,
840 final_blocker));
61ba1cf9 841
730cdc88 842 // Queue a task to write out the output sections.
730cdc88
ILT
843 workqueue->queue(new Write_sections_task(layout, of, output_sections_blocker,
844 final_blocker));
845
61ba1cf9 846 // Queue a task to write out everything else.
9025d29d 847 workqueue->queue(new Write_data_task(layout, symtab, of, final_blocker));
61ba1cf9 848
17a1d0a9
ILT
849 // Queue a task for each input object to relocate the sections and
850 // write out the local symbols.
851 for (Input_objects::Relobj_iterator p = input_objects->relobj_begin();
852 p != input_objects->relobj_end();
853 ++p)
fa17a3f4
ILT
854 workqueue->queue(new Relocate_task(symtab, layout, *p, of,
855 input_sections_blocker,
856 output_sections_blocker,
857 final_blocker));
17a1d0a9 858
730cdc88 859 // Queue a task to write out the output sections which depend on
17a1d0a9
ILT
860 // input sections. If there are any sections which require
861 // postprocessing, then we need to do this last, since it may resize
862 // the output file.
863 if (!any_postprocessing_sections)
864 {
17a1d0a9
ILT
865 Task* t = new Write_after_input_sections_task(layout, of,
866 input_sections_blocker,
867 final_blocker);
868 workqueue->queue(t);
869 }
870 else
871 {
ca09d69a 872 Task_token* new_final_blocker = new Task_token(true);
17a1d0a9
ILT
873 new_final_blocker->add_blocker();
874 Task* t = new Write_after_input_sections_task(layout, of,
875 final_blocker,
876 new_final_blocker);
877 workqueue->queue(t);
878 final_blocker = new_final_blocker;
879 }
730cdc88 880
61ba1cf9
ILT
881 // Queue a task to close the output file. This will be blocked by
882 // FINAL_BLOCKER.
516cb3d0
ILT
883 workqueue->queue(new Task_function(new Close_task_runner(&options, layout,
884 of),
c7912668
ILT
885 final_blocker,
886 "Task_function Close_task_runner"));
61ba1cf9
ILT
887}
888
889} // End namespace gold.
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