From Craig Silverstein: add support for searching for input files
[deliverable/binutils-gdb.git] / gold / readsyms.cc
1 // readsyms.cc -- read input file symbols for gold
2
3 // Copyright 2006, 2007 Free Software Foundation, Inc.
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
23 #include "gold.h"
24
25 #include <cstring>
26
27 #include "elfcpp.h"
28 #include "options.h"
29 #include "dirsearch.h"
30 #include "symtab.h"
31 #include "object.h"
32 #include "archive.h"
33 #include "script.h"
34 #include "readsyms.h"
35
36 namespace gold
37 {
38
39 // Class read_symbols.
40
41 Read_symbols::~Read_symbols()
42 {
43 // The this_blocker_ and next_blocker_ pointers are passed on to the
44 // Add_symbols task.
45 }
46
47 // Return whether a Read_symbols task is runnable. We can read an
48 // ordinary input file immediately. For an archive specified using
49 // -l, we have to wait until the search path is complete.
50
51 Task::Is_runnable_type
52 Read_symbols::is_runnable(Workqueue*)
53 {
54 if (this->input_argument_->is_file()
55 && this->input_argument_->file().may_need_search()
56 && this->dirpath_.token().is_blocked())
57 return IS_BLOCKED;
58
59 return IS_RUNNABLE;
60 }
61
62 // Return a Task_locker for a Read_symbols task. We don't need any
63 // locks here.
64
65 Task_locker*
66 Read_symbols::locks(Workqueue*)
67 {
68 return NULL;
69 }
70
71 // Run a Read_symbols task. This is where we actually read the
72 // symbols and relocations.
73
74 void
75 Read_symbols::run(Workqueue* workqueue)
76 {
77 if (this->input_argument_->is_group())
78 {
79 gold_assert(this->input_group_ == NULL);
80 this->do_group(workqueue);
81 return;
82 }
83
84 Input_file* input_file = new Input_file(&this->input_argument_->file());
85 input_file->open(this->options_, this->dirpath_);
86
87 // Read enough of the file to pick up the entire ELF header.
88
89 off_t filesize = input_file->file().filesize();
90
91 if (filesize == 0)
92 {
93 fprintf(stderr, _("%s: %s: file is empty\n"),
94 program_name, input_file->file().filename().c_str());
95 gold_exit(false);
96 }
97
98 unsigned char ehdr_buf[elfcpp::Elf_sizes<64>::ehdr_size];
99
100 int read_size = elfcpp::Elf_sizes<64>::ehdr_size;
101 if (filesize < read_size)
102 read_size = filesize;
103
104 input_file->file().read(0, read_size, ehdr_buf);
105
106 if (read_size >= 4)
107 {
108 static unsigned char elfmagic[4] =
109 {
110 elfcpp::ELFMAG0, elfcpp::ELFMAG1,
111 elfcpp::ELFMAG2, elfcpp::ELFMAG3
112 };
113 if (memcmp(ehdr_buf, elfmagic, 4) == 0)
114 {
115 // This is an ELF object.
116
117 Object* obj = make_elf_object(input_file->filename(),
118 input_file, 0, ehdr_buf, read_size);
119
120 // We don't have a way to record a non-archive in an input
121 // group. If this is an ordinary object file, we can't
122 // include it more than once anyhow. If this is a dynamic
123 // object, then including it a second time changes nothing.
124 if (this->input_group_ != NULL && !obj->is_dynamic())
125 {
126 fprintf(stderr,
127 _("%s: %s: ordinary object found in input group\n"),
128 program_name, input_file->name());
129 gold_exit(false);
130 }
131
132 Read_symbols_data* sd = new Read_symbols_data;
133 obj->read_symbols(sd);
134 workqueue->queue_front(new Add_symbols(this->input_objects_,
135 this->symtab_, this->layout_,
136 obj, sd,
137 this->this_blocker_,
138 this->next_blocker_));
139
140 // Opening the file locked it, so now we need to unlock it.
141 input_file->file().unlock();
142
143 return;
144 }
145 }
146
147 if (read_size >= Archive::sarmag)
148 {
149 if (memcmp(ehdr_buf, Archive::armag, Archive::sarmag) == 0)
150 {
151 // This is an archive.
152 Archive* arch = new Archive(this->input_argument_->file().name(),
153 input_file);
154 arch->setup();
155 workqueue->queue(new Add_archive_symbols(this->symtab_,
156 this->layout_,
157 this->input_objects_,
158 arch,
159 this->input_group_,
160 this->this_blocker_,
161 this->next_blocker_));
162 return;
163 }
164 }
165
166 // Try to parse this file as a script.
167 if (read_input_script(workqueue, this->options_, this->symtab_,
168 this->layout_, this->dirpath_, this->input_objects_,
169 this->input_group_, this->input_argument_, input_file,
170 ehdr_buf, read_size, this->this_blocker_,
171 this->next_blocker_))
172 return;
173
174 // Here we have to handle any other input file types we need.
175 fprintf(stderr, _("%s: %s: not an object or archive\n"),
176 program_name, input_file->file().filename().c_str());
177 gold_exit(false);
178 }
179
180 // Handle a group. We need to walk through the arguments over and
181 // over until we don't see any new undefined symbols. We do this by
182 // setting off Read_symbols Tasks as usual, but recording the archive
183 // entries instead of deleting them. We also start a Finish_group
184 // Task which runs after we've read all the symbols. In that task we
185 // process the archives in a loop until we are done.
186
187 void
188 Read_symbols::do_group(Workqueue* workqueue)
189 {
190 Input_group* input_group = new Input_group();
191
192 const Input_file_group* group = this->input_argument_->group();
193 Task_token* this_blocker = this->this_blocker_;
194 for (Input_file_group::const_iterator p = group->begin();
195 p != group->end();
196 ++p)
197 {
198 const Input_argument* arg = &*p;
199 gold_assert(arg->is_file());
200
201 Task_token* next_blocker = new Task_token();
202 next_blocker->add_blocker();
203 workqueue->queue(new Read_symbols(this->options_, this->input_objects_,
204 this->symtab_, this->layout_,
205 this->dirpath_, arg, input_group,
206 this_blocker, next_blocker));
207 this_blocker = next_blocker;
208 }
209
210 const int saw_undefined = this->symtab_->saw_undefined();
211 workqueue->queue(new Finish_group(this->input_objects_,
212 this->symtab_,
213 this->layout_,
214 input_group,
215 saw_undefined,
216 this_blocker,
217 this->next_blocker_));
218 }
219
220 // Class Add_symbols.
221
222 Add_symbols::~Add_symbols()
223 {
224 if (this->this_blocker_ != NULL)
225 delete this->this_blocker_;
226 // next_blocker_ is deleted by the task associated with the next
227 // input file.
228 }
229
230 // We are blocked by this_blocker_. We block next_blocker_. We also
231 // lock the file.
232
233 Task::Is_runnable_type
234 Add_symbols::is_runnable(Workqueue*)
235 {
236 if (this->this_blocker_ != NULL && this->this_blocker_->is_blocked())
237 return IS_BLOCKED;
238 if (this->object_->is_locked())
239 return IS_LOCKED;
240 return IS_RUNNABLE;
241 }
242
243 class Add_symbols::Add_symbols_locker : public Task_locker
244 {
245 public:
246 Add_symbols_locker(Task_token& token, Workqueue* workqueue,
247 Object* object)
248 : blocker_(token, workqueue), objlock_(*object)
249 { }
250
251 private:
252 Task_locker_block blocker_;
253 Task_locker_obj<Object> objlock_;
254 };
255
256 Task_locker*
257 Add_symbols::locks(Workqueue* workqueue)
258 {
259 return new Add_symbols_locker(*this->next_blocker_, workqueue,
260 this->object_);
261 }
262
263 // Add the symbols in the object to the symbol table.
264
265 void
266 Add_symbols::run(Workqueue*)
267 {
268 if (!this->input_objects_->add_object(this->object_))
269 {
270 // FIXME: We need to close the descriptor here.
271 delete this->object_;
272 }
273 else
274 {
275 this->object_->layout(this->symtab_, this->layout_, this->sd_);
276 this->object_->add_symbols(this->symtab_, this->sd_);
277 }
278 delete this->sd_;
279 this->sd_ = NULL;
280 }
281
282 // Class Finish_group.
283
284 Finish_group::~Finish_group()
285 {
286 if (this->this_blocker_ != NULL)
287 delete this->this_blocker_;
288 // next_blocker_ is deleted by the task associated with the next
289 // input file following the group.
290 }
291
292 // We need to wait for THIS_BLOCKER_ and unblock NEXT_BLOCKER_.
293
294 Task::Is_runnable_type
295 Finish_group::is_runnable(Workqueue*)
296 {
297 if (this->this_blocker_ != NULL && this->this_blocker_->is_blocked())
298 return IS_BLOCKED;
299 return IS_RUNNABLE;
300 }
301
302 Task_locker*
303 Finish_group::locks(Workqueue* workqueue)
304 {
305 return new Task_locker_block(*this->next_blocker_, workqueue);
306 }
307
308 // Loop over the archives until there are no new undefined symbols.
309
310 void
311 Finish_group::run(Workqueue*)
312 {
313 int saw_undefined = this->saw_undefined_;
314 while (saw_undefined != this->symtab_->saw_undefined())
315 {
316 saw_undefined = this->symtab_->saw_undefined();
317
318 for (Input_group::const_iterator p = this->input_group_->begin();
319 p != this->input_group_->end();
320 ++p)
321 {
322 Task_lock_obj<Archive> tl(**p);
323
324 (*p)->add_symbols(this->symtab_, this->layout_,
325 this->input_objects_);
326 }
327 }
328
329 // Delete all the archives now that we no longer need them.
330 for (Input_group::const_iterator p = this->input_group_->begin();
331 p != this->input_group_->end();
332 ++p)
333 delete *p;
334 delete this->input_group_;
335 }
336
337 } // End namespace gold.
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