2010-01-20 Doug Kwan <dougkwan@google.com>
[deliverable/binutils-gdb.git] / gold / gc.h
1 // gc.h -- garbage collection of unused sections
2
3 // Copyright 2009, 2010 Free Software Foundation, Inc.
4 // Written by Sriraman Tallam <tmsriram@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_GC_H
24 #define GOLD_GC_H
25
26 #include <queue>
27 #include <vector>
28
29 #include "elfcpp.h"
30 #include "symtab.h"
31 #include "object.h"
32 #include "icf.h"
33
34 namespace gold
35 {
36
37 class Object;
38
39 template<int size, bool big_endian>
40 class Sized_relobj;
41
42 template<int sh_type, int size, bool big_endian>
43 class Reloc_types;
44
45 class Output_section;
46 class General_options;
47 class Layout;
48
49 class Garbage_collection
50 {
51 public:
52
53 typedef Unordered_set<Section_id, Section_id_hash> Sections_reachable;
54 typedef std::map<Section_id, Sections_reachable> Section_ref;
55 typedef std::queue<Section_id> Worklist_type;
56 // This maps the name of the section which can be represented as a C
57 // identifier (cident) to the list of sections that have that name.
58 // Different object files can have cident sections with the same name.
59 typedef std::map<std::string, Sections_reachable> Cident_section_map;
60
61 Garbage_collection()
62 : is_worklist_ready_(false)
63 { }
64
65 // Accessor methods for the private members.
66
67 Sections_reachable&
68 referenced_list()
69 { return referenced_list_; }
70
71 Section_ref&
72 section_reloc_map()
73 { return this->section_reloc_map_; }
74
75 Worklist_type&
76 worklist()
77 { return this->work_list_; }
78
79 bool
80 is_worklist_ready()
81 { return this->is_worklist_ready_; }
82
83 void
84 worklist_ready()
85 { this->is_worklist_ready_ = true; }
86
87 void
88 do_transitive_closure();
89
90 bool
91 is_section_garbage(Object* obj, unsigned int shndx)
92 { return (this->referenced_list().find(Section_id(obj, shndx))
93 == this->referenced_list().end()); }
94
95 Cident_section_map*
96 cident_sections()
97 { return &cident_sections_; }
98
99 void
100 add_cident_section(std::string section_name,
101 Section_id secn)
102 { this->cident_sections_[section_name].insert(secn); }
103
104 // Add a reference from the SRC_SHNDX-th section of SRC_OBJECT to
105 // DST_SHNDX-th section of DST_OBJECT.
106 void
107 add_reference(Object* src_object, unsigned int src_shndx,
108 Object* dst_object, unsigned int dst_shndx)
109 {
110 Section_id src_id(src_object, src_shndx);
111 Section_id dst_id(dst_object, dst_shndx);
112 Section_ref::iterator p = this->section_reloc_map_.find(src_id);
113 if (p == this->section_reloc_map_.end())
114 this->section_reloc_map_[src_id].insert(dst_id);
115 else
116 p->second.insert(dst_id);
117 }
118
119 private:
120
121 Worklist_type work_list_;
122 bool is_worklist_ready_;
123 Section_ref section_reloc_map_;
124 Sections_reachable referenced_list_;
125 Cident_section_map cident_sections_;
126 };
127
128 // Data to pass between successive invocations of do_layout
129 // in object.cc while garbage collecting. This data structure
130 // is filled by using the data from Read_symbols_data.
131
132 struct Symbols_data
133 {
134 // Section headers.
135 unsigned char* section_headers_data;
136 // Section names.
137 unsigned char* section_names_data;
138 // Size of section name data in bytes.
139 section_size_type section_names_size;
140 // Symbol data.
141 unsigned char* symbols_data;
142 // Size of symbol data in bytes.
143 section_size_type symbols_size;
144 // Offset of external symbols within symbol data. This structure
145 // sometimes contains only external symbols, in which case this will
146 // be zero. Sometimes it contains all symbols.
147 section_offset_type external_symbols_offset;
148 // Symbol names.
149 unsigned char* symbol_names_data;
150 // Size of symbol name data in bytes.
151 section_size_type symbol_names_size;
152 };
153
154 // This function implements the generic part of reloc
155 // processing to map a section to all the sections it
156 // references through relocs. It is called only during
157 // garbage collection (--gc-sections) and identical code
158 // folding (--icf).
159
160 template<int size, bool big_endian, typename Target_type, int sh_type,
161 typename Scan>
162 inline void
163 gc_process_relocs(
164 Symbol_table* symtab,
165 Layout*,
166 Target_type* ,
167 Sized_relobj<size, big_endian>* src_obj,
168 unsigned int src_indx,
169 const unsigned char* prelocs,
170 size_t reloc_count,
171 Output_section*,
172 bool ,
173 size_t local_count,
174 const unsigned char* plocal_syms)
175 {
176 Object *dst_obj;
177 unsigned int dst_indx;
178
179 typedef typename Reloc_types<sh_type, size, big_endian>::Reloc Reltype;
180 const int reloc_size = Reloc_types<sh_type, size, big_endian>::reloc_size;
181 const int sym_size = elfcpp::Elf_sizes<size>::sym_size;
182
183 std::vector<Section_id>* secvec = NULL;
184 std::vector<Symbol*>* symvec = NULL;
185 std::vector<std::pair<long long, long long> >* addendvec = NULL;
186 bool is_icf_tracked = false;
187 const char* cident_section_name = NULL;
188
189 if (parameters->options().icf_enabled()
190 && is_section_foldable_candidate(src_obj->section_name(src_indx).c_str()))
191 {
192 is_icf_tracked = true;
193 Section_id src_id(src_obj, src_indx);
194 secvec = &symtab->icf()->section_reloc_list()[src_id];
195 symvec = &symtab->icf()->symbol_reloc_list()[src_id];
196 addendvec = &symtab->icf()->addend_reloc_list()[src_id];
197 }
198
199 for (size_t i = 0; i < reloc_count; ++i, prelocs += reloc_size)
200 {
201 Reltype reloc(prelocs);
202 typename elfcpp::Elf_types<size>::Elf_WXword r_info = reloc.get_r_info();
203 unsigned int r_sym = elfcpp::elf_r_sym<size>(r_info);
204 typename elfcpp::Elf_types<size>::Elf_Swxword addend =
205 Reloc_types<sh_type, size, big_endian>::get_reloc_addend_noerror(&reloc);
206
207 if (r_sym < local_count)
208 {
209 gold_assert(plocal_syms != NULL);
210 typename elfcpp::Sym<size, big_endian> lsym(plocal_syms
211 + r_sym * sym_size);
212 unsigned int shndx = lsym.get_st_shndx();
213 bool is_ordinary;
214 shndx = src_obj->adjust_sym_shndx(r_sym, shndx, &is_ordinary);
215 if (!is_ordinary)
216 continue;
217 dst_obj = src_obj;
218 dst_indx = shndx;
219 Section_id dst_id(dst_obj, dst_indx);
220 if (is_icf_tracked)
221 {
222 (*secvec).push_back(dst_id);
223 (*symvec).push_back(NULL);
224 long long symvalue = static_cast<long long>(lsym.get_st_value());
225 (*addendvec).push_back(std::make_pair(symvalue,
226 static_cast<long long>(addend)));
227 }
228 if (shndx == src_indx)
229 continue;
230 }
231 else
232 {
233 Symbol* gsym = src_obj->global_symbol(r_sym);
234 gold_assert(gsym != NULL);
235 if (gsym->is_forwarder())
236 gsym = symtab->resolve_forwards(gsym);
237 if (gsym->source() != Symbol::FROM_OBJECT)
238 continue;
239 bool is_ordinary;
240 dst_obj = gsym->object();
241 dst_indx = gsym->shndx(&is_ordinary);
242 if (!is_ordinary)
243 continue;
244 Section_id dst_id(dst_obj, dst_indx);
245 // If the symbol name matches '__start_XXX' then the section with
246 // the C identifier like name 'XXX' should not be garbage collected.
247 // A similar treatment to symbols with the name '__stop_XXX'.
248 if (is_prefix_of(cident_section_start_prefix, gsym->name()))
249 {
250 cident_section_name = (gsym->name()
251 + strlen(cident_section_start_prefix));
252 }
253 else if (is_prefix_of(cident_section_stop_prefix, gsym->name()))
254 {
255 cident_section_name = (gsym->name()
256 + strlen(cident_section_stop_prefix));
257 }
258 if (is_icf_tracked)
259 {
260 (*secvec).push_back(dst_id);
261 (*symvec).push_back(gsym);
262 Sized_symbol<size>* sized_gsym =
263 static_cast<Sized_symbol<size>* >(gsym);
264 long long symvalue =
265 static_cast<long long>(sized_gsym->value());
266 (*addendvec).push_back(std::make_pair(symvalue,
267 static_cast<long long>(addend)));
268 }
269 }
270 if (parameters->options().gc_sections())
271 {
272 symtab->gc()->add_reference(src_obj, src_indx, dst_obj, dst_indx);
273 if (cident_section_name != NULL)
274 {
275 Garbage_collection::Cident_section_map::iterator ele =
276 symtab->gc()->cident_sections()->find(std::string(cident_section_name));
277 if (ele == symtab->gc()->cident_sections()->end())
278 continue;
279 Section_id src_id(src_obj, src_indx);
280 Garbage_collection::Sections_reachable&
281 v(symtab->gc()->section_reloc_map()[src_id]);
282 Garbage_collection::Sections_reachable& cident_secn(ele->second);
283 for (Garbage_collection::Sections_reachable::iterator it_v
284 = cident_secn.begin();
285 it_v != cident_secn.end();
286 ++it_v)
287 {
288 v.insert(*it_v);
289 }
290 }
291 }
292 }
293 return;
294 }
295
296 } // End of namespace gold.
297
298 #endif
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