2010-03-22 Rafael Espindola <espindola@google.com>
[deliverable/binutils-gdb.git] / gold / readsyms.h
1 // readsyms.h -- read input file symbols for gold -*- C++ -*-
2
3 // Copyright 2006, 2007, 2008, 2009, 2010 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 #ifndef GOLD_READSYMS_H
24 #define GOLD_READSYMS_H
25
26 #include <vector>
27
28 #include "workqueue.h"
29 #include "object.h"
30
31 namespace gold
32 {
33
34 class Input_objects;
35 class Symbol_table;
36 class Input_group;
37 class Archive;
38 class Finish_group;
39
40 // This Task is responsible for reading the symbols from an input
41 // file. This also includes reading the relocations so that we can
42 // check for any that require a PLT and/or a GOT. After the data has
43 // been read, this queues up another task to actually add the symbols
44 // to the symbol table. The tasks are separated because the file
45 // reading can occur in parallel but adding the symbols must be done
46 // in the order of the input files.
47
48 class Read_symbols : public Task
49 {
50 public:
51 // DIRPATH is the list of directories to search for libraries.
52 // INPUT is the file to read. INPUT_GROUP is not NULL if we are in
53 // the middle of an input group. THIS_BLOCKER is used to prevent
54 // the associated Add_symbols task from running before the previous
55 // one has completed; it will be NULL for the first task.
56 // NEXT_BLOCKER is used to block the next input file from adding
57 // symbols.
58 Read_symbols(Input_objects* input_objects, Symbol_table* symtab,
59 Layout* layout, Dirsearch* dirpath, int dirindex,
60 Mapfile* mapfile, const Input_argument* input_argument,
61 Input_group* input_group, Archive_member* member,
62 Task_token* this_blocker, Task_token* next_blocker)
63 : input_objects_(input_objects), symtab_(symtab), layout_(layout),
64 dirpath_(dirpath), dirindex_(dirindex), mapfile_(mapfile),
65 input_argument_(input_argument), input_group_(input_group),
66 member_(member), this_blocker_(this_blocker),
67 next_blocker_(next_blocker)
68 { }
69
70 ~Read_symbols();
71
72 // If appropriate, issue a warning about skipping an incompatible
73 // object.
74 static void
75 incompatible_warning(const Input_argument*, const Input_file*);
76
77 // Requeue a Read_symbols task to search for the next object with
78 // the same name.
79 static void
80 requeue(Workqueue*, Input_objects*, Symbol_table*, Layout*, Dirsearch*,
81 int dirindex, Mapfile*, const Input_argument*, Input_group*,
82 Task_token* next_blocker);
83
84 // The standard Task methods.
85
86 Task_token*
87 is_runnable();
88
89 void
90 locks(Task_locker*);
91
92 void
93 run(Workqueue*);
94
95 std::string
96 get_name() const;
97
98 private:
99 // Handle an archive group.
100 void
101 do_group(Workqueue*);
102
103 // Handle --start-lib ... --end-lib
104 bool
105 do_lib_group(Workqueue*);
106
107 // Handle --whole-archive --start-lib ... --end-lib --no-whole-archive
108 bool
109 do_whole_lib_group(Workqueue*);
110
111 // Open and identify the file.
112 bool
113 do_read_symbols(Workqueue*);
114
115 Input_objects* input_objects_;
116 Symbol_table* symtab_;
117 Layout* layout_;
118 Dirsearch* dirpath_;
119 int dirindex_;
120 Mapfile* mapfile_;
121 const Input_argument* input_argument_;
122 Input_group* input_group_;
123 Archive_member* member_;
124 Task_token* this_blocker_;
125 Task_token* next_blocker_;
126 };
127
128 // This Task handles adding the symbols to the symbol table. These
129 // tasks must be run in the same order as the arguments appear on the
130 // command line.
131
132 class Add_symbols : public Task
133 {
134 public:
135 // THIS_BLOCKER is used to prevent this task from running before the
136 // one for the previous input file. NEXT_BLOCKER is used to prevent
137 // the next task from running.
138 Add_symbols(Input_objects* input_objects, Symbol_table* symtab,
139 Layout* layout, Dirsearch* dirpath, int dirindex,
140 Mapfile* mapfile, const Input_argument* input_argument,
141 Object* object,
142 Read_symbols_data* sd, Task_token* this_blocker,
143 Task_token* next_blocker)
144 : input_objects_(input_objects), symtab_(symtab), layout_(layout),
145 dirpath_(dirpath), dirindex_(dirindex), mapfile_(mapfile),
146 input_argument_(input_argument),
147 object_(object), sd_(sd), this_blocker_(this_blocker),
148 next_blocker_(next_blocker)
149 { }
150
151 ~Add_symbols();
152
153 // The standard Task methods.
154
155 Task_token*
156 is_runnable();
157
158 void
159 locks(Task_locker*);
160
161 void
162 run(Workqueue*);
163
164 std::string
165 get_name() const
166 { return "Add_symbols " + this->object_->name(); }
167
168 private:
169 Input_objects* input_objects_;
170 Symbol_table* symtab_;
171 Layout* layout_;
172 Dirsearch* dirpath_;
173 int dirindex_;
174 Mapfile* mapfile_;
175 const Input_argument* input_argument_;
176 Object* object_;
177 Read_symbols_data* sd_;
178 Task_token* this_blocker_;
179 Task_token* next_blocker_;
180 };
181
182 // This class is used to track the archives in a group.
183
184 class Input_group
185 {
186 public:
187 typedef std::vector<Archive*> Archives;
188 typedef Archives::const_iterator const_iterator;
189
190 Input_group()
191 : archives_()
192 { }
193
194 // Add an archive to the group.
195 void
196 add_archive(Archive* arch)
197 { this->archives_.push_back(arch); }
198
199 // Loop over the archives in the group.
200
201 const_iterator
202 begin() const
203 { return this->archives_.begin(); }
204
205 const_iterator
206 end() const
207 { return this->archives_.end(); }
208
209 private:
210 Archives archives_;
211 };
212
213 // This class starts the handling of a group. It exists only to pick
214 // up the number of undefined symbols at that point, so that we only
215 // run back through the group if we saw a new undefined symbol.
216
217 class Start_group : public Task
218 {
219 public:
220 Start_group(Symbol_table* symtab, Finish_group* finish_group,
221 Task_token* this_blocker, Task_token* next_blocker)
222 : symtab_(symtab), finish_group_(finish_group),
223 this_blocker_(this_blocker), next_blocker_(next_blocker)
224 { }
225
226 ~Start_group();
227
228 // The standard Task methods.
229
230 Task_token*
231 is_runnable();
232
233 void
234 locks(Task_locker*);
235
236 void
237 run(Workqueue*);
238
239 std::string
240 get_name() const
241 { return "Start_group"; }
242
243 private:
244 Symbol_table* symtab_;
245 Finish_group* finish_group_;
246 Task_token* this_blocker_;
247 Task_token* next_blocker_;
248 };
249
250 // This class is used to finish up handling a group. It is just a
251 // closure.
252
253 class Finish_group : public Task
254 {
255 public:
256 Finish_group(Input_objects* input_objects, Symbol_table* symtab,
257 Layout* layout, Mapfile* mapfile, Input_group* input_group,
258 Task_token* next_blocker)
259 : input_objects_(input_objects), symtab_(symtab),
260 layout_(layout), mapfile_(mapfile), input_group_(input_group),
261 saw_undefined_(0), this_blocker_(NULL), next_blocker_(next_blocker)
262 { }
263
264 ~Finish_group();
265
266 // Set the number of undefined symbols when we start processing the
267 // group. This is called by the Start_group task.
268 void
269 set_saw_undefined(size_t saw_undefined)
270 { this->saw_undefined_ = saw_undefined; }
271
272 // Set the blocker to use for this task.
273 void
274 set_blocker(Task_token* this_blocker)
275 {
276 gold_assert(this->this_blocker_ == NULL);
277 this->this_blocker_ = this_blocker;
278 }
279
280 // The standard Task methods.
281
282 Task_token*
283 is_runnable();
284
285 void
286 locks(Task_locker*);
287
288 void
289 run(Workqueue*);
290
291 std::string
292 get_name() const
293 { return "Finish_group"; }
294
295 private:
296 Input_objects* input_objects_;
297 Symbol_table* symtab_;
298 Layout* layout_;
299 Mapfile* mapfile_;
300 Input_group* input_group_;
301 size_t saw_undefined_;
302 Task_token* this_blocker_;
303 Task_token* next_blocker_;
304 };
305
306 // This class is used to read a file which was not recognized as an
307 // object or archive. It tries to read it as a linker script, using
308 // the tokens to serialize with the calls to Add_symbols.
309
310 class Read_script : public Task
311 {
312 public:
313 Read_script(Symbol_table* symtab, Layout* layout, Dirsearch* dirpath,
314 int dirindex, Input_objects* input_objects, Mapfile* mapfile,
315 Input_group* input_group, const Input_argument* input_argument,
316 Input_file* input_file, Task_token* this_blocker,
317 Task_token* next_blocker)
318 : symtab_(symtab), layout_(layout), dirpath_(dirpath), dirindex_(dirindex),
319 input_objects_(input_objects), mapfile_(mapfile),
320 input_group_(input_group), input_argument_(input_argument),
321 input_file_(input_file), this_blocker_(this_blocker),
322 next_blocker_(next_blocker)
323 { }
324
325 ~Read_script();
326
327 // The standard Task methods.
328
329 Task_token*
330 is_runnable();
331
332 void
333 locks(Task_locker*);
334
335 void
336 run(Workqueue*);
337
338 std::string
339 get_name() const;
340
341 private:
342 Symbol_table* symtab_;
343 Layout* layout_;
344 Dirsearch* dirpath_;
345 int dirindex_;
346 Input_objects* input_objects_;
347 Mapfile* mapfile_;
348 Input_group* input_group_;
349 const Input_argument* input_argument_;
350 Input_file* input_file_;
351 Task_token* this_blocker_;
352 Task_token* next_blocker_;
353 };
354
355 } // end namespace gold
356
357 #endif // !defined(GOLD_READSYMS_H)
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