* linux-low.c (linux_wait, linux_resume): Do not handle async I/O.
[deliverable/binutils-gdb.git] / gold / ehframe.h
CommitLineData
3151305a
ILT
1// ehframe.h -- handle exception frame sections for gold -*- C++ -*-
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#ifndef GOLD_EHFRAME_H
24#define GOLD_EHFRAME_H
25
26#include "output.h"
730cdc88 27#include "merge.h"
3151305a
ILT
28
29namespace gold
30{
31
730cdc88
ILT
32template<int size, bool big_endian>
33class Track_relocs;
34
35class Eh_frame;
36
3151305a
ILT
37// This class manages the .eh_frame_hdr section, which holds the data
38// for the PT_GNU_EH_FRAME segment. gcc's unwind support code uses
39// the PT_GNU_EH_FRAME segment to find the list of FDEs. This saves
40// the time required to register the exception handlers at startup
41// time and when a shared object is loaded, and the time required to
42// deregister the exception handlers when a shared object is unloaded.
43
44// FIXME: gcc supports using storing a sorted lookup table for the
45// FDEs in the PT_GNU_EH_FRAME segment, but we do not yet generate
46// that.
47
48class Eh_frame_hdr : public Output_section_data
49{
50 public:
730cdc88
ILT
51 Eh_frame_hdr(Output_section* eh_frame_section, const Eh_frame*);
52
53 // Record that we found an unrecognized .eh_frame section.
54 void
55 found_unrecognized_eh_frame_section()
56 { this->any_unrecognized_eh_frame_sections_ = true; }
57
58 // Record an FDE.
59 void
60 record_fde(off_t fde_offset, unsigned char fde_encoding)
61 {
62 if (!this->any_unrecognized_eh_frame_sections_)
63 this->fde_offsets_.push_back(std::make_pair(fde_offset, fde_encoding));
64 }
3151305a
ILT
65
66 // Set the final data size.
67 void
27bc2bce 68 set_final_data_size();
3151305a
ILT
69
70 // Write the data to the file.
71 void
72 do_write(Output_file*);
73
74 private:
730cdc88
ILT
75 // Write the data to the file with the right endianness.
76 template<int size, bool big_endian>
77 void
78 do_sized_write(Output_file*);
79
80 // The data we record for one FDE: the offset of the FDE within the
81 // .eh_frame section, and the FDE encoding.
82 typedef std::pair<off_t, unsigned char> Fde_offset;
83
84 // The list of information we record for an FDE.
85 typedef std::vector<Fde_offset> Fde_offsets;
86
87 // When writing out the header, we convert the FDE offsets into FDE
88 // addresses. This is a list of pairs of the offset from the header
89 // to the FDE PC and to the FDE itself.
90 template<int size>
91 class Fde_addresses
92 {
93 public:
94 typedef typename elfcpp::Elf_types<size>::Elf_Addr Address;
95 typedef typename std::pair<Address, Address> Fde_address;
96 typedef typename std::vector<Fde_address> Fde_address_list;
97 typedef typename Fde_address_list::iterator iterator;
98
99 Fde_addresses(unsigned int reserve)
100 : fde_addresses_()
101 { this->fde_addresses_.reserve(reserve); }
102
103 void
104 push_back(Address pc_address, Address fde_address)
105 {
106 this->fde_addresses_.push_back(std::make_pair(pc_address, fde_address));
107 }
108
109 iterator
110 begin()
111 { return this->fde_addresses_.begin(); }
112
113 iterator
114 end()
115 { return this->fde_addresses_.end(); }
116
117 private:
118 Fde_address_list fde_addresses_;
119 };
120
121 // Compare Fde_address objects.
122 template<int size>
123 struct Fde_address_compare
124 {
125 bool
126 operator()(const typename Fde_addresses<size>::Fde_address& f1,
127 const typename Fde_addresses<size>::Fde_address& f2) const
128 { return f1.first < f2.first; }
129 };
130
131 // Return the PC to which an FDE refers.
132 template<int size, bool big_endian>
133 typename elfcpp::Elf_types<size>::Elf_Addr
134 get_fde_pc(const unsigned char* eh_frame_contents,
135 off_t fde_offset, unsigned char fde_encoding);
136
137 // Convert Fde_offsets to Fde_addresses.
138 template<int size, bool big_endian>
139 void
140 get_fde_addresses(Output_file* of,
141 const Fde_offsets* fde_offsets,
142 Fde_addresses<size>* fde_addresses);
143
3151305a
ILT
144 // The .eh_frame section.
145 Output_section* eh_frame_section_;
730cdc88
ILT
146 // The .eh_frame section data.
147 const Eh_frame* eh_frame_data_;
148 // Data from the FDEs in the .eh_frame sections.
149 Fde_offsets fde_offsets_;
150 // Whether we found any .eh_frame sections which we could not
151 // process.
152 bool any_unrecognized_eh_frame_sections_;
153};
154
155// This class holds an FDE.
156
157class Fde
158{
159 public:
160 Fde(Relobj* object, unsigned int shndx, off_t input_offset,
161 const unsigned char* contents, size_t length)
162 : object_(object), shndx_(shndx), input_offset_(input_offset),
163 contents_(reinterpret_cast<const char*>(contents), length)
164 { }
165
166 // Return the length of this FDE. Add 4 for the length and 4 for
167 // the offset to the CIE.
168 size_t
169 length() const
170 { return this->contents_.length() + 8; }
171
172 // Add a mapping for this FDE to MERGE_MAP.
173 void
174 add_mapping(off_t output_offset, Merge_map* merge_map) const
175 {
176 merge_map->add_mapping(this->object_, this->shndx_,
177 this->input_offset_, this->length(),
178 output_offset);
179 }
180
181 // Write the FDE to OVIEW starting at OFFSET. FDE_ENCODING is the
182 // encoding, from the CIE. Record the FDE in EH_FRAME_HDR. Return
183 // the new offset.
184 template<int size, bool big_endian>
185 off_t
186 write(unsigned char* oview, off_t offset, off_t cie_offset,
187 unsigned char fde_encoding, Eh_frame_hdr* eh_frame_hdr);
188
189 private:
190 // The object in which this FDE was seen.
191 Relobj* object_;
192 // Input section index for this FDE.
193 unsigned int shndx_;
194 // Offset within the input section for this FDE.
195 off_t input_offset_;
196 // FDE data.
197 std::string contents_;
198};
199
200// This class holds a CIE.
201
202class Cie
203{
204 public:
205 Cie(Relobj* object, unsigned int shndx, off_t input_offset,
206 unsigned char fde_encoding, const char* personality_name,
207 const unsigned char* contents, size_t length)
208 : object_(object),
209 shndx_(shndx),
210 input_offset_(input_offset),
211 fde_encoding_(fde_encoding),
212 personality_name_(personality_name),
213 fdes_(),
214 contents_(reinterpret_cast<const char*>(contents), length)
215 { }
216
217 ~Cie();
218
219 // We permit copying a CIE when there are no FDEs. This is
220 // convenient in the code which creates them.
221 Cie(const Cie& cie)
222 : object_(cie.object_),
223 shndx_(cie.shndx_),
224 input_offset_(cie.input_offset_),
225 fde_encoding_(cie.fde_encoding_),
226 personality_name_(cie.personality_name_),
227 fdes_(),
228 contents_(cie.contents_)
229 { gold_assert(cie.fdes_.empty()); }
230
231 // Add an FDE associated with this CIE.
232 void
233 add_fde(Fde* fde)
234 { this->fdes_.push_back(fde); }
235
236 // Return the number of FDEs.
237 unsigned int
238 fde_count() const
239 { return this->fdes_.size(); }
240
241 // Set the output offset of this CIE to OUTPUT_OFFSET. It will be
242 // followed by all its FDEs. ADDRALIGN is the required address
243 // alignment, typically 4 or 8. This updates MERGE_MAP with the
244 // mapping. It returns the new output offset.
245 off_t
246 set_output_offset(off_t output_offset, unsigned int addralign, Merge_map*);
247
248 // Write the CIE to OVIEW starting at OFFSET. EH_FRAME_HDR is the
249 // exception frame header for FDE recording. Return the new offset.
250 template<int size, bool big_endian>
251 off_t
252 write(unsigned char* oview, off_t offset, Eh_frame_hdr* eh_frame_hdr);
253
254 friend bool operator<(const Cie&, const Cie&);
255 friend bool operator==(const Cie&, const Cie&);
256
257 private:
258 // The class is not assignable.
259 Cie& operator=(const Cie&);
260
261 // The object in which this CIE was first seen.
262 Relobj* object_;
263 // Input section index for this CIE.
264 unsigned int shndx_;
265 // Offset within the input section for this CIE.
266 off_t input_offset_;
267 // The encoding of the FDE. This is a DW_EH_PE code.
268 unsigned char fde_encoding_;
269 // The name of the personality routine. This will be the name of a
270 // global symbol, or will be the empty string.
271 std::string personality_name_;
272 // List of FDEs.
273 std::vector<Fde*> fdes_;
274 // CIE data.
275 std::string contents_;
276};
277
278extern bool operator<(const Cie&, const Cie&);
279extern bool operator==(const Cie&, const Cie&);
280
281// This class manages .eh_frame sections. It discards duplicate
282// exception information.
283
284class Eh_frame : public Output_section_data
285{
286 public:
287 Eh_frame();
288
289 // Record the associated Eh_frame_hdr, if any.
290 void
291 set_eh_frame_hdr(Eh_frame_hdr* hdr)
292 { this->eh_frame_hdr_ = hdr; }
293
294 // Add the input section SHNDX in OBJECT. SYMBOLS is the contents
295 // of the symbol table section (size SYMBOLS_SIZE), SYMBOL_NAMES is
296 // the symbol names section (size SYMBOL_NAMES_SIZE). RELOC_SHNDX
297 // is the relocation section if any (0 for none, -1U for multiple).
298 // RELOC_TYPE is the type of the relocation section if any. This
299 // returns whether the section was incorporated into the .eh_frame
300 // data.
301 template<int size, bool big_endian>
302 bool
303 add_ehframe_input_section(Sized_relobj<size, big_endian>* object,
304 const unsigned char* symbols,
305 off_t symbols_size,
306 const unsigned char* symbol_names,
307 off_t symbol_names_size,
308 unsigned int shndx, unsigned int reloc_shndx,
309 unsigned int reloc_type);
310
311 // Return the number of FDEs.
312 unsigned int
313 fde_count() const;
314
315 // Set the final data size.
316 void
27bc2bce 317 set_final_data_size();
730cdc88
ILT
318
319 // Return the output address for an input address.
320 bool
321 do_output_offset(const Relobj*, unsigned int shndx, off_t offset,
322 off_t* poutput) const;
323
324 // Write the data to the file.
325 void
326 do_write(Output_file*);
327
328 private:
329 // The comparison routine for the CIE map.
330 struct Cie_less
331 {
332 bool
333 operator()(const Cie* cie1, const Cie* cie2) const
334 { return *cie1 < *cie2; }
335 };
336
337 // A mapping from unique CIEs to their offset in the output file.
338 typedef std::map<Cie*, uint64_t, Cie_less> Cie_offsets;
339
340 // A list of unmergeable CIEs with their offsets.
341 typedef std::vector<std::pair<Cie*, uint64_t> > Unmergeable_cie_offsets;
342
343 // A mapping from offsets to CIEs. This is used while reading an
344 // input section.
345 typedef std::map<uint64_t, Cie*> Offsets_to_cie;
346
347 // A list of CIEs, and a bool indicating whether the CIE is
348 // mergeable.
349 typedef std::vector<std::pair<Cie*, bool> > New_cies;
350
351 // Skip an LEB128.
352 static bool
353 skip_leb128(const unsigned char**, const unsigned char*);
354
355 // The implementation of add_ehframe_input_section.
356 template<int size, bool big_endian>
357 bool
358 do_add_ehframe_input_section(Sized_relobj<size, big_endian>* object,
359 const unsigned char* symbols,
360 off_t symbols_size,
361 const unsigned char* symbol_names,
362 off_t symbol_names_size,
363 unsigned int shndx,
364 unsigned int reloc_shndx,
365 unsigned int reloc_type,
366 const unsigned char* pcontents,
367 off_t contents_len,
368 New_cies*);
369
370 // Read a CIE.
371 template<int size, bool big_endian>
372 bool
373 read_cie(Sized_relobj<size, big_endian>* object,
374 unsigned int shndx,
375 const unsigned char* symbols,
376 off_t symbols_size,
377 const unsigned char* symbol_names,
378 off_t symbol_names_size,
379 const unsigned char* pcontents,
380 const unsigned char* pcie,
381 const unsigned char *pcieend,
382 Track_relocs<size, big_endian>* relocs,
383 Offsets_to_cie* cies,
384 New_cies* new_cies);
385
386 // Read an FDE.
387 template<int size, bool big_endian>
388 bool
389 read_fde(Sized_relobj<size, big_endian>* object,
390 unsigned int shndx,
391 const unsigned char* symbols,
392 off_t symbols_size,
393 const unsigned char* pcontents,
394 unsigned int offset,
395 const unsigned char* pfde,
396 const unsigned char *pfdeend,
397 Track_relocs<size, big_endian>* relocs,
398 Offsets_to_cie* cies);
399
400 // Template version of write function.
401 template<int size, bool big_endian>
402 void
403 do_sized_write(unsigned char* oview);
404
405 // The exception frame header, if any.
406 Eh_frame_hdr* eh_frame_hdr_;
407 // A mapping from all unique CIEs to their offset in the output
408 // file.
409 Cie_offsets cie_offsets_;
410 // A mapping from unmergeable CIEs to their offset in the output
411 // file.
412 Unmergeable_cie_offsets unmergeable_cie_offsets_;
413 // A mapping from input sections to the output section.
414 Merge_map merge_map_;
3151305a
ILT
415};
416
417} // End namespace gold.
418
419#endif // !defined(GOLD_EHFRAME_H)
This page took 0.067261 seconds and 4 git commands to generate.