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[deliverable/binutils-gdb.git] / gold / gold.cc
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5a6f7e2d 1// gold.cc -- main linker functions
bae7f79e 2
e5756efb 3// Copyright 2006, 2007, 2008 Free Software Foundation, Inc.
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4// Written by Ian Lance Taylor <iant@google.com>.
5
6// This file is part of gold.
7
8// This program is free software; you can redistribute it and/or modify
9// it under the terms of the GNU General Public License as published by
10// the Free Software Foundation; either version 3 of the License, or
11// (at your option) any later version.
12
13// This program is distributed in the hope that it will be useful,
14// but WITHOUT ANY WARRANTY; without even the implied warranty of
15// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16// GNU General Public License for more details.
17
18// You should have received a copy of the GNU General Public License
19// along with this program; if not, write to the Free Software
20// Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
21// MA 02110-1301, USA.
22
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23#include "gold.h"
24
25#include <cstdlib>
26#include <cstdio>
27#include <cstring>
28#include <unistd.h>
75f2446e 29#include "libiberty.h"
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30
31#include "options.h"
32#include "workqueue.h"
33#include "dirsearch.h"
34#include "readsyms.h"
14bfc3f5 35#include "symtab.h"
ead1e424 36#include "common.h"
54dc6425 37#include "object.h"
a2fb1b05 38#include "layout.h"
61ba1cf9 39#include "reloc.h"
ead1e424 40#include "defstd.h"
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41
42namespace gold
43{
44
45const char* program_name;
46
47void
48gold_exit(bool status)
49{
2d684091 50 if (!status && parameters != NULL && parameters->options_valid())
75f2446e 51 unlink_if_ordinary(parameters->output_file_name());
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52 exit(status ? EXIT_SUCCESS : EXIT_FAILURE);
53}
54
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55void
56gold_nomem()
57{
58 // We are out of memory, so try hard to print a reasonable message.
59 // Note that we don't try to translate this message, since the
60 // translation process itself will require memory.
61 write(2, program_name, strlen(program_name));
62 const char* const s = ": out of memory\n";
63 write(2, s, strlen(s));
64 gold_exit(false);
65}
66
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67// Handle an unreachable case.
68
bae7f79e 69void
a3ad94ed 70do_gold_unreachable(const char* filename, int lineno, const char* function)
bae7f79e 71{
27b7985a 72 fprintf(stderr, _("%s: internal error in %s, at %s:%d\n"),
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73 program_name, function, filename, lineno);
74 gold_exit(false);
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75}
76
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77// This class arranges to run the functions done in the middle of the
78// link. It is just a closure.
bae7f79e 79
92e059d8 80class Middle_runner : public Task_function_runner
bae7f79e 81{
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82 public:
83 Middle_runner(const General_options& options,
84 const Input_objects* input_objects,
85 Symbol_table* symtab,
86 Layout* layout)
87 : options_(options), input_objects_(input_objects), symtab_(symtab),
88 layout_(layout)
89 { }
90
91 void
17a1d0a9 92 run(Workqueue*, const Task*);
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93
94 private:
95 const General_options& options_;
96 const Input_objects* input_objects_;
97 Symbol_table* symtab_;
98 Layout* layout_;
99};
bae7f79e 100
92e059d8 101void
17a1d0a9 102Middle_runner::run(Workqueue* workqueue, const Task* task)
92e059d8 103{
17a1d0a9 104 queue_middle_tasks(this->options_, task, this->input_objects_, this->symtab_,
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105 this->layout_, workqueue);
106}
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107
108// Queue up the initial set of tasks for this link job.
109
110void
111queue_initial_tasks(const General_options& options,
17a1d0a9 112 Dirsearch& search_path,
ead1e424 113 const Command_line& cmdline,
54dc6425 114 Workqueue* workqueue, Input_objects* input_objects,
12e14209 115 Symbol_table* symtab, Layout* layout)
bae7f79e 116{
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117 if (cmdline.begin() == cmdline.end())
118 gold_fatal(_("no input files"));
119
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120 int thread_count = options.thread_count_initial();
121 if (thread_count == 0)
e5366891 122 thread_count = cmdline.number_of_input_files();
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123 workqueue->set_thread_count(thread_count);
124
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125 // Read the input files. We have to add the symbols to the symbol
126 // table in order. We do this by creating a separate blocker for
127 // each input file. We associate the blocker with the following
128 // input file, to give us a convenient place to delete it.
129 Task_token* this_blocker = NULL;
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130 for (Command_line::const_iterator p = cmdline.begin();
131 p != cmdline.end();
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132 ++p)
133 {
17a1d0a9 134 Task_token* next_blocker = new Task_token(true);
bae7f79e 135 next_blocker->add_blocker();
12e14209 136 workqueue->queue(new Read_symbols(options, input_objects, symtab, layout,
17a1d0a9 137 &search_path, &*p, NULL, this_blocker,
a2fb1b05 138 next_blocker));
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139 this_blocker = next_blocker;
140 }
141
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142 workqueue->queue(new Task_function(new Middle_runner(options,
143 input_objects,
144 symtab,
145 layout),
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146 this_blocker,
147 "Task_function Middle_runner"));
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148}
149
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150// Queue up the middle set of tasks. These are the tasks which run
151// after all the input objects have been found and all the symbols
152// have been read, but before we lay out the output file.
bae7f79e 153
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154void
155queue_middle_tasks(const General_options& options,
17a1d0a9 156 const Task* task,
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157 const Input_objects* input_objects,
158 Symbol_table* symtab,
159 Layout* layout,
160 Workqueue* workqueue)
61ba1cf9 161{
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162 if (input_objects->number_of_input_objects() == 0)
163 {
164 // We had some input files, but we weren't able to open any of
165 // them.
166 gold_fatal(_("no input files"));
167 }
168
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169 int thread_count = options.thread_count_middle();
170 if (thread_count == 0)
e5366891 171 thread_count = input_objects->number_of_input_objects();
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172 workqueue->set_thread_count(thread_count);
173
b3b74ddc 174 // Now we have seen all the input files.
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175 const bool doing_static_link = (!input_objects->any_dynamic()
176 && !parameters->output_is_shared());
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177 set_parameters_doing_static_link(doing_static_link);
178 if (!doing_static_link && options.is_static())
179 {
180 // We print out just the first .so we see; there may be others.
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181 gold_error(_("cannot mix -static with dynamic object %s"),
182 (*input_objects->dynobj_begin())->name().c_str());
4eff2974 183 }
b3b74ddc 184
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185 // For each dynamic object, record whether we've seen all the
186 // dynamic objects that it depends upon.
187 input_objects->check_dynamic_dependencies();
188
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189 // See if any of the input definitions violate the One Definition Rule.
190 // TODO: if this is too slow, do this as a task, rather than inline.
17a1d0a9 191 symtab->detect_odr_violations(task, options.output_file_name());
70e654ba 192
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193 // Define some sections and symbols needed for a dynamic link. This
194 // handles some cases we want to see before we read the relocs.
195 layout->create_initial_dynamic_sections(input_objects, symtab);
196
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197 // Predefine standard symbols. This should be fast, so we don't
198 // bother to create a task for it.
199 define_standard_symbols(symtab, layout, input_objects->target());
200
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201 // Define __start and __stop symbols for output sections where
202 // appropriate.
203 layout->define_section_symbols(symtab, input_objects->target());
204
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205 // Define symbols from any linker scripts.
206 layout->define_script_symbols(symtab, input_objects->target());
207
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208 // Read the relocations of the input files. We do this to find
209 // which symbols are used by relocations which require a GOT and/or
210 // a PLT entry, or a COPY reloc. When we implement garbage
211 // collection we will do it here by reading the relocations in a
212 // breadth first search by references.
213 //
214 // We could also read the relocations during the first pass, and
215 // mark symbols at that time. That is how the old GNU linker works.
216 // Doing that is more complex, since we may later decide to discard
217 // some of the sections, and thus change our minds about the types
218 // of references made to the symbols.
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219 Task_token* blocker = new Task_token(true);
220 Task_token* symtab_lock = new Task_token(false);
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221 for (Input_objects::Relobj_iterator p = input_objects->relobj_begin();
222 p != input_objects->relobj_end();
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223 ++p)
224 {
225 // We can read and process the relocations in any order. But we
226 // only want one task to write to the symbol table at a time.
227 // So we queue up a task for each object to read the
228 // relocations. That task will in turn queue a task to wait
229 // until it can write to the symbol table.
230 blocker->add_blocker();
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231 workqueue->queue(new Read_relocs(options, symtab, layout, *p,
232 symtab_lock, blocker));
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233 }
234
235 // Allocate common symbols. This requires write access to the
236 // symbol table, but is independent of the relocation processing.
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237 blocker->add_blocker();
238 workqueue->queue(new Allocate_commons_task(options, symtab, layout,
239 symtab_lock, blocker));
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240
241 // When all those tasks are complete, we can start laying out the
242 // output file.
243 workqueue->queue(new Task_function(new Layout_task_runner(options,
244 input_objects,
245 symtab,
246 layout),
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247 blocker,
248 "Task_function Layout_task_runner"));
92e059d8 249}
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250
251// Queue up the final set of tasks. This is called at the end of
252// Layout_task.
253
254void
255queue_final_tasks(const General_options& options,
256 const Input_objects* input_objects,
257 const Symbol_table* symtab,
27bc2bce 258 Layout* layout,
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259 Workqueue* workqueue,
260 Output_file* of)
261{
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262 int thread_count = options.thread_count_final();
263 if (thread_count == 0)
e5366891 264 thread_count = input_objects->number_of_input_objects();
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265 workqueue->set_thread_count(thread_count);
266
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267 bool any_postprocessing_sections = layout->any_postprocessing_sections();
268
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269 // Use a blocker to wait until all the input sections have been
270 // written out.
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271 Task_token* input_sections_blocker = NULL;
272 if (!any_postprocessing_sections)
273 input_sections_blocker = new Task_token(true);
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274
275 // Use a blocker to block any objects which have to wait for the
276 // output sections to complete before they can apply relocations.
17a1d0a9 277 Task_token* output_sections_blocker = new Task_token(true);
730cdc88 278
61ba1cf9 279 // Use a blocker to block the final cleanup task.
17a1d0a9 280 Task_token* final_blocker = new Task_token(true);
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281
282 // Queue a task to write out the symbol table.
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283 if (!options.strip_all())
284 {
285 final_blocker->add_blocker();
286 workqueue->queue(new Write_symbols_task(symtab,
287 input_objects,
288 layout->sympool(),
289 layout->dynpool(),
290 of,
291 final_blocker));
292 }
61ba1cf9 293
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294 // Queue a task to write out the output sections.
295 output_sections_blocker->add_blocker();
296 final_blocker->add_blocker();
297 workqueue->queue(new Write_sections_task(layout, of, output_sections_blocker,
298 final_blocker));
299
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300 // Queue a task to write out everything else.
301 final_blocker->add_blocker();
9025d29d 302 workqueue->queue(new Write_data_task(layout, symtab, of, final_blocker));
61ba1cf9 303
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304 // Queue a task for each input object to relocate the sections and
305 // write out the local symbols.
306 for (Input_objects::Relobj_iterator p = input_objects->relobj_begin();
307 p != input_objects->relobj_end();
308 ++p)
309 {
310 if (input_sections_blocker != NULL)
311 input_sections_blocker->add_blocker();
312 final_blocker->add_blocker();
313 workqueue->queue(new Relocate_task(options, symtab, layout, *p, of,
314 input_sections_blocker,
315 output_sections_blocker,
316 final_blocker));
317 }
318
730cdc88 319 // Queue a task to write out the output sections which depend on
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320 // input sections. If there are any sections which require
321 // postprocessing, then we need to do this last, since it may resize
322 // the output file.
323 if (!any_postprocessing_sections)
324 {
325 final_blocker->add_blocker();
326 Task* t = new Write_after_input_sections_task(layout, of,
327 input_sections_blocker,
328 final_blocker);
329 workqueue->queue(t);
330 }
331 else
332 {
333 Task_token *new_final_blocker = new Task_token(true);
334 new_final_blocker->add_blocker();
335 Task* t = new Write_after_input_sections_task(layout, of,
336 final_blocker,
337 new_final_blocker);
338 workqueue->queue(t);
339 final_blocker = new_final_blocker;
340 }
730cdc88 341
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342 // Queue a task to close the output file. This will be blocked by
343 // FINAL_BLOCKER.
92e059d8 344 workqueue->queue(new Task_function(new Close_task_runner(of),
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345 final_blocker,
346 "Task_function Close_task_runner"));
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347}
348
349} // End namespace gold.
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