1b60a18deSMichael J. Spencer //===- ELFObjectFile.cpp - ELF object file implementation -------*- C++ -*-===//
2b60a18deSMichael J. Spencer //
3b60a18deSMichael J. Spencer //                     The LLVM Compiler Infrastructure
4b60a18deSMichael J. Spencer //
5b60a18deSMichael J. Spencer // This file is distributed under the University of Illinois Open Source
6b60a18deSMichael J. Spencer // License. See LICENSE.TXT for details.
7b60a18deSMichael J. Spencer //
8b60a18deSMichael J. Spencer //===----------------------------------------------------------------------===//
9b60a18deSMichael J. Spencer //
10b60a18deSMichael J. Spencer // This file defines the ELFObjectFile class.
11b60a18deSMichael J. Spencer //
12b60a18deSMichael J. Spencer //===----------------------------------------------------------------------===//
13b60a18deSMichael J. Spencer 
14b60a18deSMichael J. Spencer #include "llvm/ADT/SmallVector.h"
15b60a18deSMichael J. Spencer #include "llvm/ADT/StringSwitch.h"
16b60a18deSMichael J. Spencer #include "llvm/ADT/Triple.h"
17022ecdf2SBenjamin Kramer #include "llvm/ADT/DenseMap.h"
18b60a18deSMichael J. Spencer #include "llvm/Object/ObjectFile.h"
19b60a18deSMichael J. Spencer #include "llvm/Support/ELF.h"
20b60a18deSMichael J. Spencer #include "llvm/Support/Endian.h"
21b60a18deSMichael J. Spencer #include "llvm/Support/ErrorHandling.h"
22b60a18deSMichael J. Spencer #include "llvm/Support/MemoryBuffer.h"
23*e5fd0047SMichael J. Spencer #include "llvm/Support/raw_ostream.h"
24*e5fd0047SMichael J. Spencer #include <algorithm>
25b60a18deSMichael J. Spencer #include <limits>
26b60a18deSMichael J. Spencer #include <utility>
27b60a18deSMichael J. Spencer 
28b60a18deSMichael J. Spencer using namespace llvm;
29b60a18deSMichael J. Spencer using namespace object;
30b60a18deSMichael J. Spencer 
31b60a18deSMichael J. Spencer // Templates to choose Elf_Addr and Elf_Off depending on is64Bits.
32b60a18deSMichael J. Spencer namespace {
33b60a18deSMichael J. Spencer template<support::endianness target_endianness>
34b60a18deSMichael J. Spencer struct ELFDataTypeTypedefHelperCommon {
35b60a18deSMichael J. Spencer   typedef support::detail::packed_endian_specific_integral
36b60a18deSMichael J. Spencer     <uint16_t, target_endianness, support::aligned> Elf_Half;
37b60a18deSMichael J. Spencer   typedef support::detail::packed_endian_specific_integral
38b60a18deSMichael J. Spencer     <uint32_t, target_endianness, support::aligned> Elf_Word;
39b60a18deSMichael J. Spencer   typedef support::detail::packed_endian_specific_integral
40b60a18deSMichael J. Spencer     <int32_t, target_endianness, support::aligned> Elf_Sword;
41b60a18deSMichael J. Spencer   typedef support::detail::packed_endian_specific_integral
42b60a18deSMichael J. Spencer     <uint64_t, target_endianness, support::aligned> Elf_Xword;
43b60a18deSMichael J. Spencer   typedef support::detail::packed_endian_specific_integral
44b60a18deSMichael J. Spencer     <int64_t, target_endianness, support::aligned> Elf_Sxword;
45b60a18deSMichael J. Spencer };
46b60a18deSMichael J. Spencer }
47b60a18deSMichael J. Spencer 
48b60a18deSMichael J. Spencer namespace {
49b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
50b60a18deSMichael J. Spencer struct ELFDataTypeTypedefHelper;
51b60a18deSMichael J. Spencer 
52b60a18deSMichael J. Spencer /// ELF 32bit types.
53b60a18deSMichael J. Spencer template<support::endianness target_endianness>
54b60a18deSMichael J. Spencer struct ELFDataTypeTypedefHelper<target_endianness, false>
55b60a18deSMichael J. Spencer   : ELFDataTypeTypedefHelperCommon<target_endianness> {
56b60a18deSMichael J. Spencer   typedef support::detail::packed_endian_specific_integral
57b60a18deSMichael J. Spencer     <uint32_t, target_endianness, support::aligned> Elf_Addr;
58b60a18deSMichael J. Spencer   typedef support::detail::packed_endian_specific_integral
59b60a18deSMichael J. Spencer     <uint32_t, target_endianness, support::aligned> Elf_Off;
60b60a18deSMichael J. Spencer };
61b60a18deSMichael J. Spencer 
62b60a18deSMichael J. Spencer /// ELF 64bit types.
63b60a18deSMichael J. Spencer template<support::endianness target_endianness>
64b60a18deSMichael J. Spencer struct ELFDataTypeTypedefHelper<target_endianness, true>
65b60a18deSMichael J. Spencer   : ELFDataTypeTypedefHelperCommon<target_endianness>{
66b60a18deSMichael J. Spencer   typedef support::detail::packed_endian_specific_integral
67b60a18deSMichael J. Spencer     <uint64_t, target_endianness, support::aligned> Elf_Addr;
68b60a18deSMichael J. Spencer   typedef support::detail::packed_endian_specific_integral
69b60a18deSMichael J. Spencer     <uint64_t, target_endianness, support::aligned> Elf_Off;
70b60a18deSMichael J. Spencer };
71b60a18deSMichael J. Spencer }
72b60a18deSMichael J. Spencer 
73b60a18deSMichael J. Spencer // I really don't like doing this, but the alternative is copypasta.
74b60a18deSMichael J. Spencer #define LLVM_ELF_IMPORT_TYPES(target_endianness, is64Bits) \
75b60a18deSMichael J. Spencer typedef typename \
76b60a18deSMichael J. Spencer   ELFDataTypeTypedefHelper<target_endianness, is64Bits>::Elf_Addr Elf_Addr; \
77b60a18deSMichael J. Spencer typedef typename \
78b60a18deSMichael J. Spencer   ELFDataTypeTypedefHelper<target_endianness, is64Bits>::Elf_Off Elf_Off; \
79b60a18deSMichael J. Spencer typedef typename \
80b60a18deSMichael J. Spencer   ELFDataTypeTypedefHelper<target_endianness, is64Bits>::Elf_Half Elf_Half; \
81b60a18deSMichael J. Spencer typedef typename \
82b60a18deSMichael J. Spencer   ELFDataTypeTypedefHelper<target_endianness, is64Bits>::Elf_Word Elf_Word; \
83b60a18deSMichael J. Spencer typedef typename \
84b60a18deSMichael J. Spencer   ELFDataTypeTypedefHelper<target_endianness, is64Bits>::Elf_Sword Elf_Sword; \
85b60a18deSMichael J. Spencer typedef typename \
86b60a18deSMichael J. Spencer   ELFDataTypeTypedefHelper<target_endianness, is64Bits>::Elf_Xword Elf_Xword; \
87b60a18deSMichael J. Spencer typedef typename \
88b60a18deSMichael J. Spencer   ELFDataTypeTypedefHelper<target_endianness, is64Bits>::Elf_Sxword Elf_Sxword;
89b60a18deSMichael J. Spencer 
90b60a18deSMichael J. Spencer   // Section header.
91b60a18deSMichael J. Spencer namespace {
92b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
93b60a18deSMichael J. Spencer struct Elf_Shdr_Base;
94b60a18deSMichael J. Spencer 
95b60a18deSMichael J. Spencer template<support::endianness target_endianness>
96b60a18deSMichael J. Spencer struct Elf_Shdr_Base<target_endianness, false> {
97b60a18deSMichael J. Spencer   LLVM_ELF_IMPORT_TYPES(target_endianness, false)
98b60a18deSMichael J. Spencer   Elf_Word sh_name;     // Section name (index into string table)
99b60a18deSMichael J. Spencer   Elf_Word sh_type;     // Section type (SHT_*)
100b60a18deSMichael J. Spencer   Elf_Word sh_flags;    // Section flags (SHF_*)
101b60a18deSMichael J. Spencer   Elf_Addr sh_addr;     // Address where section is to be loaded
102b60a18deSMichael J. Spencer   Elf_Off  sh_offset;   // File offset of section data, in bytes
103b60a18deSMichael J. Spencer   Elf_Word sh_size;     // Size of section, in bytes
104b60a18deSMichael J. Spencer   Elf_Word sh_link;     // Section type-specific header table index link
105b60a18deSMichael J. Spencer   Elf_Word sh_info;     // Section type-specific extra information
106b60a18deSMichael J. Spencer   Elf_Word sh_addralign;// Section address alignment
107b60a18deSMichael J. Spencer   Elf_Word sh_entsize;  // Size of records contained within the section
108b60a18deSMichael J. Spencer };
109b60a18deSMichael J. Spencer 
110b60a18deSMichael J. Spencer template<support::endianness target_endianness>
111b60a18deSMichael J. Spencer struct Elf_Shdr_Base<target_endianness, true> {
112b60a18deSMichael J. Spencer   LLVM_ELF_IMPORT_TYPES(target_endianness, true)
113b60a18deSMichael J. Spencer   Elf_Word  sh_name;     // Section name (index into string table)
114b60a18deSMichael J. Spencer   Elf_Word  sh_type;     // Section type (SHT_*)
115b60a18deSMichael J. Spencer   Elf_Xword sh_flags;    // Section flags (SHF_*)
116b60a18deSMichael J. Spencer   Elf_Addr  sh_addr;     // Address where section is to be loaded
117b60a18deSMichael J. Spencer   Elf_Off   sh_offset;   // File offset of section data, in bytes
118b60a18deSMichael J. Spencer   Elf_Xword sh_size;     // Size of section, in bytes
119b60a18deSMichael J. Spencer   Elf_Word  sh_link;     // Section type-specific header table index link
120b60a18deSMichael J. Spencer   Elf_Word  sh_info;     // Section type-specific extra information
121b60a18deSMichael J. Spencer   Elf_Xword sh_addralign;// Section address alignment
122b60a18deSMichael J. Spencer   Elf_Xword sh_entsize;  // Size of records contained within the section
123b60a18deSMichael J. Spencer };
124b60a18deSMichael J. Spencer 
125b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
126b60a18deSMichael J. Spencer struct Elf_Shdr_Impl : Elf_Shdr_Base<target_endianness, is64Bits> {
127b60a18deSMichael J. Spencer   using Elf_Shdr_Base<target_endianness, is64Bits>::sh_entsize;
128b60a18deSMichael J. Spencer   using Elf_Shdr_Base<target_endianness, is64Bits>::sh_size;
129b60a18deSMichael J. Spencer 
130b60a18deSMichael J. Spencer   /// @brief Get the number of entities this section contains if it has any.
131b60a18deSMichael J. Spencer   unsigned getEntityCount() const {
132b60a18deSMichael J. Spencer     if (sh_entsize == 0)
133b60a18deSMichael J. Spencer       return 0;
134b60a18deSMichael J. Spencer     return sh_size / sh_entsize;
135b60a18deSMichael J. Spencer   }
136b60a18deSMichael J. Spencer };
137b60a18deSMichael J. Spencer }
138b60a18deSMichael J. Spencer 
139b60a18deSMichael J. Spencer namespace {
140b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
141b60a18deSMichael J. Spencer struct Elf_Sym_Base;
142b60a18deSMichael J. Spencer 
143b60a18deSMichael J. Spencer template<support::endianness target_endianness>
144b60a18deSMichael J. Spencer struct Elf_Sym_Base<target_endianness, false> {
145b60a18deSMichael J. Spencer   LLVM_ELF_IMPORT_TYPES(target_endianness, false)
146b60a18deSMichael J. Spencer   Elf_Word      st_name;  // Symbol name (index into string table)
147b60a18deSMichael J. Spencer   Elf_Addr      st_value; // Value or address associated with the symbol
148b60a18deSMichael J. Spencer   Elf_Word      st_size;  // Size of the symbol
149b60a18deSMichael J. Spencer   unsigned char st_info;  // Symbol's type and binding attributes
150b60a18deSMichael J. Spencer   unsigned char st_other; // Must be zero; reserved
151b60a18deSMichael J. Spencer   Elf_Half      st_shndx; // Which section (header table index) it's defined in
152b60a18deSMichael J. Spencer };
153b60a18deSMichael J. Spencer 
154b60a18deSMichael J. Spencer template<support::endianness target_endianness>
155b60a18deSMichael J. Spencer struct Elf_Sym_Base<target_endianness, true> {
156b60a18deSMichael J. Spencer   LLVM_ELF_IMPORT_TYPES(target_endianness, true)
157b60a18deSMichael J. Spencer   Elf_Word      st_name;  // Symbol name (index into string table)
158b60a18deSMichael J. Spencer   unsigned char st_info;  // Symbol's type and binding attributes
159b60a18deSMichael J. Spencer   unsigned char st_other; // Must be zero; reserved
160b60a18deSMichael J. Spencer   Elf_Half      st_shndx; // Which section (header table index) it's defined in
161b60a18deSMichael J. Spencer   Elf_Addr      st_value; // Value or address associated with the symbol
162b60a18deSMichael J. Spencer   Elf_Xword     st_size;  // Size of the symbol
163b60a18deSMichael J. Spencer };
164b60a18deSMichael J. Spencer 
165b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
166b60a18deSMichael J. Spencer struct Elf_Sym_Impl : Elf_Sym_Base<target_endianness, is64Bits> {
167b60a18deSMichael J. Spencer   using Elf_Sym_Base<target_endianness, is64Bits>::st_info;
168b60a18deSMichael J. Spencer 
169b60a18deSMichael J. Spencer   // These accessors and mutators correspond to the ELF32_ST_BIND,
170b60a18deSMichael J. Spencer   // ELF32_ST_TYPE, and ELF32_ST_INFO macros defined in the ELF specification:
171b60a18deSMichael J. Spencer   unsigned char getBinding() const { return st_info >> 4; }
172b60a18deSMichael J. Spencer   unsigned char getType() const { return st_info & 0x0f; }
173b60a18deSMichael J. Spencer   void setBinding(unsigned char b) { setBindingAndType(b, getType()); }
174b60a18deSMichael J. Spencer   void setType(unsigned char t) { setBindingAndType(getBinding(), t); }
175b60a18deSMichael J. Spencer   void setBindingAndType(unsigned char b, unsigned char t) {
176b60a18deSMichael J. Spencer     st_info = (b << 4) + (t & 0x0f);
177b60a18deSMichael J. Spencer   }
178b60a18deSMichael J. Spencer };
179b60a18deSMichael J. Spencer }
180b60a18deSMichael J. Spencer 
181b60a18deSMichael J. Spencer namespace {
182022ecdf2SBenjamin Kramer template<support::endianness target_endianness, bool is64Bits, bool isRela>
183022ecdf2SBenjamin Kramer struct Elf_Rel_Base;
184022ecdf2SBenjamin Kramer 
185022ecdf2SBenjamin Kramer template<support::endianness target_endianness>
186022ecdf2SBenjamin Kramer struct Elf_Rel_Base<target_endianness, false, false> {
187022ecdf2SBenjamin Kramer   LLVM_ELF_IMPORT_TYPES(target_endianness, false)
188022ecdf2SBenjamin Kramer   Elf_Addr      r_offset; // Location (file byte offset, or program virtual addr)
189022ecdf2SBenjamin Kramer   Elf_Word      r_info;  // Symbol table index and type of relocation to apply
190022ecdf2SBenjamin Kramer };
191022ecdf2SBenjamin Kramer 
192022ecdf2SBenjamin Kramer template<support::endianness target_endianness>
193022ecdf2SBenjamin Kramer struct Elf_Rel_Base<target_endianness, true, false> {
194022ecdf2SBenjamin Kramer   LLVM_ELF_IMPORT_TYPES(target_endianness, true)
195022ecdf2SBenjamin Kramer   Elf_Addr      r_offset; // Location (file byte offset, or program virtual addr)
196022ecdf2SBenjamin Kramer   Elf_Xword     r_info;   // Symbol table index and type of relocation to apply
197022ecdf2SBenjamin Kramer };
198022ecdf2SBenjamin Kramer 
199022ecdf2SBenjamin Kramer template<support::endianness target_endianness>
200022ecdf2SBenjamin Kramer struct Elf_Rel_Base<target_endianness, false, true> {
201022ecdf2SBenjamin Kramer   LLVM_ELF_IMPORT_TYPES(target_endianness, false)
202022ecdf2SBenjamin Kramer   Elf_Addr      r_offset; // Location (file byte offset, or program virtual addr)
203022ecdf2SBenjamin Kramer   Elf_Word      r_info;   // Symbol table index and type of relocation to apply
204022ecdf2SBenjamin Kramer   Elf_Sword     r_addend; // Compute value for relocatable field by adding this
205022ecdf2SBenjamin Kramer };
206022ecdf2SBenjamin Kramer 
207022ecdf2SBenjamin Kramer template<support::endianness target_endianness>
208022ecdf2SBenjamin Kramer struct Elf_Rel_Base<target_endianness, true, true> {
209022ecdf2SBenjamin Kramer   LLVM_ELF_IMPORT_TYPES(target_endianness, true)
210022ecdf2SBenjamin Kramer   Elf_Addr      r_offset; // Location (file byte offset, or program virtual addr)
211022ecdf2SBenjamin Kramer   Elf_Xword     r_info;   // Symbol table index and type of relocation to apply
212022ecdf2SBenjamin Kramer   Elf_Sxword    r_addend; // Compute value for relocatable field by adding this.
213022ecdf2SBenjamin Kramer };
214022ecdf2SBenjamin Kramer 
215022ecdf2SBenjamin Kramer template<support::endianness target_endianness, bool is64Bits, bool isRela>
216022ecdf2SBenjamin Kramer struct Elf_Rel_Impl;
217022ecdf2SBenjamin Kramer 
218022ecdf2SBenjamin Kramer template<support::endianness target_endianness, bool isRela>
219022ecdf2SBenjamin Kramer struct Elf_Rel_Impl<target_endianness, true, isRela>
220022ecdf2SBenjamin Kramer        : Elf_Rel_Base<target_endianness, true, isRela> {
221022ecdf2SBenjamin Kramer   using Elf_Rel_Base<target_endianness, true, isRela>::r_info;
222022ecdf2SBenjamin Kramer   LLVM_ELF_IMPORT_TYPES(target_endianness, true)
223022ecdf2SBenjamin Kramer 
224022ecdf2SBenjamin Kramer   // These accessors and mutators correspond to the ELF64_R_SYM, ELF64_R_TYPE,
225022ecdf2SBenjamin Kramer   // and ELF64_R_INFO macros defined in the ELF specification:
226022ecdf2SBenjamin Kramer   uint64_t getSymbol() const { return (r_info >> 32); }
227022ecdf2SBenjamin Kramer   unsigned char getType() const {
228022ecdf2SBenjamin Kramer     return (unsigned char) (r_info & 0xffffffffL);
229022ecdf2SBenjamin Kramer   }
230022ecdf2SBenjamin Kramer   void setSymbol(uint64_t s) { setSymbolAndType(s, getType()); }
231022ecdf2SBenjamin Kramer   void setType(unsigned char t) { setSymbolAndType(getSymbol(), t); }
232022ecdf2SBenjamin Kramer   void setSymbolAndType(uint64_t s, unsigned char t) {
233022ecdf2SBenjamin Kramer     r_info = (s << 32) + (t&0xffffffffL);
234022ecdf2SBenjamin Kramer   }
235022ecdf2SBenjamin Kramer };
236022ecdf2SBenjamin Kramer 
237022ecdf2SBenjamin Kramer template<support::endianness target_endianness, bool isRela>
238022ecdf2SBenjamin Kramer struct Elf_Rel_Impl<target_endianness, false, isRela>
239022ecdf2SBenjamin Kramer        : Elf_Rel_Base<target_endianness, false, isRela> {
240022ecdf2SBenjamin Kramer   using Elf_Rel_Base<target_endianness, false, isRela>::r_info;
241022ecdf2SBenjamin Kramer   LLVM_ELF_IMPORT_TYPES(target_endianness, false)
242022ecdf2SBenjamin Kramer 
243022ecdf2SBenjamin Kramer   // These accessors and mutators correspond to the ELF32_R_SYM, ELF32_R_TYPE,
244022ecdf2SBenjamin Kramer   // and ELF32_R_INFO macros defined in the ELF specification:
245022ecdf2SBenjamin Kramer   uint32_t getSymbol() const { return (r_info >> 8); }
246022ecdf2SBenjamin Kramer   unsigned char getType() const { return (unsigned char) (r_info & 0x0ff); }
247022ecdf2SBenjamin Kramer   void setSymbol(uint32_t s) { setSymbolAndType(s, getType()); }
248022ecdf2SBenjamin Kramer   void setType(unsigned char t) { setSymbolAndType(getSymbol(), t); }
249022ecdf2SBenjamin Kramer   void setSymbolAndType(uint32_t s, unsigned char t) {
250022ecdf2SBenjamin Kramer     r_info = (s << 8) + t;
251022ecdf2SBenjamin Kramer   }
252022ecdf2SBenjamin Kramer };
253022ecdf2SBenjamin Kramer 
254022ecdf2SBenjamin Kramer }
255022ecdf2SBenjamin Kramer 
256022ecdf2SBenjamin Kramer namespace {
257b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
258b60a18deSMichael J. Spencer class ELFObjectFile : public ObjectFile {
259b60a18deSMichael J. Spencer   LLVM_ELF_IMPORT_TYPES(target_endianness, is64Bits)
260b60a18deSMichael J. Spencer 
261b60a18deSMichael J. Spencer   typedef Elf_Shdr_Impl<target_endianness, is64Bits> Elf_Shdr;
262b60a18deSMichael J. Spencer   typedef Elf_Sym_Impl<target_endianness, is64Bits> Elf_Sym;
263022ecdf2SBenjamin Kramer   typedef Elf_Rel_Impl<target_endianness, is64Bits, false> Elf_Rel;
264022ecdf2SBenjamin Kramer   typedef Elf_Rel_Impl<target_endianness, is64Bits, true> Elf_Rela;
265b60a18deSMichael J. Spencer 
266b60a18deSMichael J. Spencer   struct Elf_Ehdr {
267b60a18deSMichael J. Spencer     unsigned char e_ident[ELF::EI_NIDENT]; // ELF Identification bytes
268b60a18deSMichael J. Spencer     Elf_Half e_type;     // Type of file (see ET_*)
269b60a18deSMichael J. Spencer     Elf_Half e_machine;  // Required architecture for this file (see EM_*)
270b60a18deSMichael J. Spencer     Elf_Word e_version;  // Must be equal to 1
271b60a18deSMichael J. Spencer     Elf_Addr e_entry;    // Address to jump to in order to start program
272b60a18deSMichael J. Spencer     Elf_Off  e_phoff;    // Program header table's file offset, in bytes
273b60a18deSMichael J. Spencer     Elf_Off  e_shoff;    // Section header table's file offset, in bytes
274b60a18deSMichael J. Spencer     Elf_Word e_flags;    // Processor-specific flags
275b60a18deSMichael J. Spencer     Elf_Half e_ehsize;   // Size of ELF header, in bytes
276b60a18deSMichael J. Spencer     Elf_Half e_phentsize;// Size of an entry in the program header table
277b60a18deSMichael J. Spencer     Elf_Half e_phnum;    // Number of entries in the program header table
278b60a18deSMichael J. Spencer     Elf_Half e_shentsize;// Size of an entry in the section header table
279b60a18deSMichael J. Spencer     Elf_Half e_shnum;    // Number of entries in the section header table
280b60a18deSMichael J. Spencer     Elf_Half e_shstrndx; // Section header table index of section name
281b60a18deSMichael J. Spencer                                   // string table
282b60a18deSMichael J. Spencer     bool checkMagic() const {
283b60a18deSMichael J. Spencer       return (memcmp(e_ident, ELF::ElfMagic, strlen(ELF::ElfMagic))) == 0;
284b60a18deSMichael J. Spencer     }
285b60a18deSMichael J. Spencer     unsigned char getFileClass() const { return e_ident[ELF::EI_CLASS]; }
286b60a18deSMichael J. Spencer     unsigned char getDataEncoding() const { return e_ident[ELF::EI_DATA]; }
287b60a18deSMichael J. Spencer   };
288b60a18deSMichael J. Spencer 
289022ecdf2SBenjamin Kramer   typedef SmallVector<const Elf_Shdr*, 1> Sections_t;
290022ecdf2SBenjamin Kramer   typedef DenseMap<unsigned, unsigned> IndexMap_t;
291*e5fd0047SMichael J. Spencer   typedef DenseMap<const Elf_Shdr*, SmallVector<uint32_t, 1> > RelocMap_t;
292b60a18deSMichael J. Spencer 
293b60a18deSMichael J. Spencer   const Elf_Ehdr *Header;
294b60a18deSMichael J. Spencer   const Elf_Shdr *SectionHeaderTable;
295b60a18deSMichael J. Spencer   const Elf_Shdr *dot_shstrtab_sec; // Section header string table.
296b60a18deSMichael J. Spencer   const Elf_Shdr *dot_strtab_sec;   // Symbol header string table.
297022ecdf2SBenjamin Kramer   Sections_t SymbolTableSections;
298022ecdf2SBenjamin Kramer   IndexMap_t SymbolTableSectionsIndexMap;
299*e5fd0047SMichael J. Spencer 
300*e5fd0047SMichael J. Spencer   /// @brief Map sections to an array of relocation sections that reference
301*e5fd0047SMichael J. Spencer   ///        them sorted by section index.
302*e5fd0047SMichael J. Spencer   RelocMap_t SectionRelocMap;
303*e5fd0047SMichael J. Spencer 
304*e5fd0047SMichael J. Spencer   /// @brief Get the relocation section that contains \a Rel.
305*e5fd0047SMichael J. Spencer   const Elf_Shdr *getRelSection(DataRefImpl Rel) const {
306*e5fd0047SMichael J. Spencer     return getSection(Rel.w.b);
307*e5fd0047SMichael J. Spencer   }
308b60a18deSMichael J. Spencer 
309b60a18deSMichael J. Spencer   void            validateSymbol(DataRefImpl Symb) const;
310022ecdf2SBenjamin Kramer   bool            isRelocationHasAddend(DataRefImpl Rel) const;
311022ecdf2SBenjamin Kramer   template<typename T>
312*e5fd0047SMichael J. Spencer   const T        *getEntry(uint16_t Section, uint32_t Entry) const;
313*e5fd0047SMichael J. Spencer   template<typename T>
314*e5fd0047SMichael J. Spencer   const T        *getEntry(const Elf_Shdr *Section, uint32_t Entry) const;
315b60a18deSMichael J. Spencer   const Elf_Sym  *getSymbol(DataRefImpl Symb) const;
316b60a18deSMichael J. Spencer   const Elf_Shdr *getSection(DataRefImpl index) const;
317b60a18deSMichael J. Spencer   const Elf_Shdr *getSection(uint16_t index) const;
318022ecdf2SBenjamin Kramer   const Elf_Rel  *getRel(DataRefImpl Rel) const;
319022ecdf2SBenjamin Kramer   const Elf_Rela *getRela(DataRefImpl Rela) const;
320b60a18deSMichael J. Spencer   const char     *getString(uint16_t section, uint32_t offset) const;
321b60a18deSMichael J. Spencer   const char     *getString(const Elf_Shdr *section, uint32_t offset) const;
322*e5fd0047SMichael J. Spencer   error_code      getSymbolName(const Elf_Sym *Symb, StringRef &Res) const;
323b60a18deSMichael J. Spencer 
324b60a18deSMichael J. Spencer protected:
3251d6167fdSMichael J. Spencer   virtual error_code getSymbolNext(DataRefImpl Symb, SymbolRef &Res) const;
3261d6167fdSMichael J. Spencer   virtual error_code getSymbolName(DataRefImpl Symb, StringRef &Res) const;
32775d1cf33SBenjamin Kramer   virtual error_code getSymbolOffset(DataRefImpl Symb, uint64_t &Res) const;
3281d6167fdSMichael J. Spencer   virtual error_code getSymbolAddress(DataRefImpl Symb, uint64_t &Res) const;
3291d6167fdSMichael J. Spencer   virtual error_code getSymbolSize(DataRefImpl Symb, uint64_t &Res) const;
3301d6167fdSMichael J. Spencer   virtual error_code getSymbolNMTypeChar(DataRefImpl Symb, char &Res) const;
3311d6167fdSMichael J. Spencer   virtual error_code isSymbolInternal(DataRefImpl Symb, bool &Res) const;
33275d1cf33SBenjamin Kramer   virtual error_code isSymbolGlobal(DataRefImpl Symb, bool &Res) const;
33375d1cf33SBenjamin Kramer   virtual error_code getSymbolType(DataRefImpl Symb, SymbolRef::SymbolType &Res) const;
334b60a18deSMichael J. Spencer 
3351d6167fdSMichael J. Spencer   virtual error_code getSectionNext(DataRefImpl Sec, SectionRef &Res) const;
3361d6167fdSMichael J. Spencer   virtual error_code getSectionName(DataRefImpl Sec, StringRef &Res) const;
3371d6167fdSMichael J. Spencer   virtual error_code getSectionAddress(DataRefImpl Sec, uint64_t &Res) const;
3381d6167fdSMichael J. Spencer   virtual error_code getSectionSize(DataRefImpl Sec, uint64_t &Res) const;
3391d6167fdSMichael J. Spencer   virtual error_code getSectionContents(DataRefImpl Sec, StringRef &Res) const;
3401d6167fdSMichael J. Spencer   virtual error_code isSectionText(DataRefImpl Sec, bool &Res) const;
341800619f2SMichael J. Spencer   virtual error_code isSectionData(DataRefImpl Sec, bool &Res) const;
342800619f2SMichael J. Spencer   virtual error_code isSectionBSS(DataRefImpl Sec, bool &Res) const;
343f6f3e81cSBenjamin Kramer   virtual error_code sectionContainsSymbol(DataRefImpl Sec, DataRefImpl Symb,
344f6f3e81cSBenjamin Kramer                                            bool &Result) const;
345*e5fd0047SMichael J. Spencer   virtual relocation_iterator getSectionRelBegin(DataRefImpl Sec) const;
346*e5fd0047SMichael J. Spencer   virtual relocation_iterator getSectionRelEnd(DataRefImpl Sec) const;
347b60a18deSMichael J. Spencer 
348022ecdf2SBenjamin Kramer   virtual error_code getRelocationNext(DataRefImpl Rel,
349022ecdf2SBenjamin Kramer                                        RelocationRef &Res) const;
350022ecdf2SBenjamin Kramer   virtual error_code getRelocationAddress(DataRefImpl Rel,
351022ecdf2SBenjamin Kramer                                           uint64_t &Res) const;
352022ecdf2SBenjamin Kramer   virtual error_code getRelocationSymbol(DataRefImpl Rel,
353022ecdf2SBenjamin Kramer                                          SymbolRef &Res) const;
354022ecdf2SBenjamin Kramer   virtual error_code getRelocationType(DataRefImpl Rel,
355022ecdf2SBenjamin Kramer                                        uint32_t &Res) const;
356*e5fd0047SMichael J. Spencer   virtual error_code getRelocationTypeName(DataRefImpl Rel,
357*e5fd0047SMichael J. Spencer                                            SmallVectorImpl<char> &Result) const;
358022ecdf2SBenjamin Kramer   virtual error_code getRelocationAdditionalInfo(DataRefImpl Rel,
359022ecdf2SBenjamin Kramer                                                  int64_t &Res) const;
360*e5fd0047SMichael J. Spencer   virtual error_code getRelocationValueString(DataRefImpl Rel,
361*e5fd0047SMichael J. Spencer                                            SmallVectorImpl<char> &Result) const;
362022ecdf2SBenjamin Kramer 
363b60a18deSMichael J. Spencer public:
364ec29b121SMichael J. Spencer   ELFObjectFile(MemoryBuffer *Object, error_code &ec);
365b60a18deSMichael J. Spencer   virtual symbol_iterator begin_symbols() const;
366b60a18deSMichael J. Spencer   virtual symbol_iterator end_symbols() const;
367b60a18deSMichael J. Spencer   virtual section_iterator begin_sections() const;
368b60a18deSMichael J. Spencer   virtual section_iterator end_sections() const;
369b60a18deSMichael J. Spencer 
370b60a18deSMichael J. Spencer   virtual uint8_t getBytesInAddress() const;
371b60a18deSMichael J. Spencer   virtual StringRef getFileFormatName() const;
372b60a18deSMichael J. Spencer   virtual unsigned getArch() const;
373b60a18deSMichael J. Spencer };
374b60a18deSMichael J. Spencer } // end namespace
375b60a18deSMichael J. Spencer 
376b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
377b60a18deSMichael J. Spencer void ELFObjectFile<target_endianness, is64Bits>
378b60a18deSMichael J. Spencer                   ::validateSymbol(DataRefImpl Symb) const {
379b60a18deSMichael J. Spencer   const Elf_Sym  *symb = getSymbol(Symb);
3800324b672SMichael J. Spencer   const Elf_Shdr *SymbolTableSection = SymbolTableSections[Symb.d.b];
381b60a18deSMichael J. Spencer   // FIXME: We really need to do proper error handling in the case of an invalid
382b60a18deSMichael J. Spencer   //        input file. Because we don't use exceptions, I think we'll just pass
383b60a18deSMichael J. Spencer   //        an error object around.
384b60a18deSMichael J. Spencer   if (!(  symb
385b60a18deSMichael J. Spencer         && SymbolTableSection
386ec29b121SMichael J. Spencer         && symb >= (const Elf_Sym*)(base()
387b60a18deSMichael J. Spencer                    + SymbolTableSection->sh_offset)
388ec29b121SMichael J. Spencer         && symb <  (const Elf_Sym*)(base()
389b60a18deSMichael J. Spencer                    + SymbolTableSection->sh_offset
390b60a18deSMichael J. Spencer                    + SymbolTableSection->sh_size)))
391b60a18deSMichael J. Spencer     // FIXME: Proper error handling.
392b60a18deSMichael J. Spencer     report_fatal_error("Symb must point to a valid symbol!");
393b60a18deSMichael J. Spencer }
394b60a18deSMichael J. Spencer 
395b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
3961d6167fdSMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
3971d6167fdSMichael J. Spencer                         ::getSymbolNext(DataRefImpl Symb,
3981d6167fdSMichael J. Spencer                                         SymbolRef &Result) const {
399b60a18deSMichael J. Spencer   validateSymbol(Symb);
4000324b672SMichael J. Spencer   const Elf_Shdr *SymbolTableSection = SymbolTableSections[Symb.d.b];
401b60a18deSMichael J. Spencer 
4020324b672SMichael J. Spencer   ++Symb.d.a;
403b60a18deSMichael J. Spencer   // Check to see if we are at the end of this symbol table.
4040324b672SMichael J. Spencer   if (Symb.d.a >= SymbolTableSection->getEntityCount()) {
405b60a18deSMichael J. Spencer     // We are at the end. If there are other symbol tables, jump to them.
4060324b672SMichael J. Spencer     ++Symb.d.b;
4070324b672SMichael J. Spencer     Symb.d.a = 1; // The 0th symbol in ELF is fake.
408b60a18deSMichael J. Spencer     // Otherwise return the terminator.
4090324b672SMichael J. Spencer     if (Symb.d.b >= SymbolTableSections.size()) {
4100324b672SMichael J. Spencer       Symb.d.a = std::numeric_limits<uint32_t>::max();
4110324b672SMichael J. Spencer       Symb.d.b = std::numeric_limits<uint32_t>::max();
412b60a18deSMichael J. Spencer     }
413b60a18deSMichael J. Spencer   }
414b60a18deSMichael J. Spencer 
4151d6167fdSMichael J. Spencer   Result = SymbolRef(Symb, this);
4161d6167fdSMichael J. Spencer   return object_error::success;
417b60a18deSMichael J. Spencer }
418b60a18deSMichael J. Spencer 
419b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
4201d6167fdSMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
4211d6167fdSMichael J. Spencer                         ::getSymbolName(DataRefImpl Symb,
4221d6167fdSMichael J. Spencer                                         StringRef &Result) const {
423b60a18deSMichael J. Spencer   validateSymbol(Symb);
424b60a18deSMichael J. Spencer   const Elf_Sym  *symb = getSymbol(Symb);
425*e5fd0047SMichael J. Spencer   return getSymbolName(symb, Result);
426b60a18deSMichael J. Spencer }
427b60a18deSMichael J. Spencer 
428b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
4291d6167fdSMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
43075d1cf33SBenjamin Kramer                         ::getSymbolOffset(DataRefImpl Symb,
4311d6167fdSMichael J. Spencer                                            uint64_t &Result) const {
432b60a18deSMichael J. Spencer   validateSymbol(Symb);
433b60a18deSMichael J. Spencer   const Elf_Sym  *symb = getSymbol(Symb);
434b60a18deSMichael J. Spencer   const Elf_Shdr *Section;
435b60a18deSMichael J. Spencer   switch (symb->st_shndx) {
436b60a18deSMichael J. Spencer   case ELF::SHN_COMMON:
437b60a18deSMichael J. Spencer    // Undefined symbols have no address yet.
4381d6167fdSMichael J. Spencer   case ELF::SHN_UNDEF:
4391d6167fdSMichael J. Spencer     Result = UnknownAddressOrSize;
4401d6167fdSMichael J. Spencer     return object_error::success;
4411d6167fdSMichael J. Spencer   case ELF::SHN_ABS:
4421d6167fdSMichael J. Spencer     Result = symb->st_value;
4431d6167fdSMichael J. Spencer     return object_error::success;
444b60a18deSMichael J. Spencer   default: Section = getSection(symb->st_shndx);
445b60a18deSMichael J. Spencer   }
446b60a18deSMichael J. Spencer 
447b60a18deSMichael J. Spencer   switch (symb->getType()) {
4481d6167fdSMichael J. Spencer   case ELF::STT_SECTION:
4491d6167fdSMichael J. Spencer     Result = Section ? Section->sh_addr : UnknownAddressOrSize;
4501d6167fdSMichael J. Spencer     return object_error::success;
451b60a18deSMichael J. Spencer   case ELF::STT_FUNC:
452b60a18deSMichael J. Spencer   case ELF::STT_OBJECT:
453b60a18deSMichael J. Spencer   case ELF::STT_NOTYPE:
4541d6167fdSMichael J. Spencer     Result = symb->st_value;
4551d6167fdSMichael J. Spencer     return object_error::success;
4561d6167fdSMichael J. Spencer   default:
4571d6167fdSMichael J. Spencer     Result = UnknownAddressOrSize;
4581d6167fdSMichael J. Spencer     return object_error::success;
459b60a18deSMichael J. Spencer   }
460b60a18deSMichael J. Spencer }
461b60a18deSMichael J. Spencer 
462b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
4631d6167fdSMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
46475d1cf33SBenjamin Kramer                         ::getSymbolAddress(DataRefImpl Symb,
46575d1cf33SBenjamin Kramer                                            uint64_t &Result) const {
46675d1cf33SBenjamin Kramer   validateSymbol(Symb);
46775d1cf33SBenjamin Kramer   const Elf_Sym  *symb = getSymbol(Symb);
46875d1cf33SBenjamin Kramer   const Elf_Shdr *Section;
46975d1cf33SBenjamin Kramer   switch (symb->st_shndx) {
47075d1cf33SBenjamin Kramer   case ELF::SHN_COMMON: // Fall through.
47175d1cf33SBenjamin Kramer    // Undefined symbols have no address yet.
47275d1cf33SBenjamin Kramer   case ELF::SHN_UNDEF:
47375d1cf33SBenjamin Kramer     Result = UnknownAddressOrSize;
47475d1cf33SBenjamin Kramer     return object_error::success;
47575d1cf33SBenjamin Kramer   case ELF::SHN_ABS:
47675d1cf33SBenjamin Kramer     Result = reinterpret_cast<uintptr_t>(base()+symb->st_value);
47775d1cf33SBenjamin Kramer     return object_error::success;
47875d1cf33SBenjamin Kramer   default: Section = getSection(symb->st_shndx);
47975d1cf33SBenjamin Kramer   }
48075d1cf33SBenjamin Kramer   const uint8_t* addr = base();
48175d1cf33SBenjamin Kramer   if (Section)
48275d1cf33SBenjamin Kramer     addr += Section->sh_offset;
48375d1cf33SBenjamin Kramer   switch (symb->getType()) {
48475d1cf33SBenjamin Kramer   case ELF::STT_SECTION:
48575d1cf33SBenjamin Kramer     Result = reinterpret_cast<uintptr_t>(addr);
48675d1cf33SBenjamin Kramer     return object_error::success;
48775d1cf33SBenjamin Kramer   case ELF::STT_FUNC: // Fall through.
48875d1cf33SBenjamin Kramer   case ELF::STT_OBJECT: // Fall through.
48975d1cf33SBenjamin Kramer   case ELF::STT_NOTYPE:
49075d1cf33SBenjamin Kramer     addr += symb->st_value;
49175d1cf33SBenjamin Kramer     Result = reinterpret_cast<uintptr_t>(addr);
49275d1cf33SBenjamin Kramer     return object_error::success;
49375d1cf33SBenjamin Kramer   default:
49475d1cf33SBenjamin Kramer     Result = UnknownAddressOrSize;
49575d1cf33SBenjamin Kramer     return object_error::success;
49675d1cf33SBenjamin Kramer   }
49775d1cf33SBenjamin Kramer }
49875d1cf33SBenjamin Kramer 
49975d1cf33SBenjamin Kramer template<support::endianness target_endianness, bool is64Bits>
50075d1cf33SBenjamin Kramer error_code ELFObjectFile<target_endianness, is64Bits>
5011d6167fdSMichael J. Spencer                         ::getSymbolSize(DataRefImpl Symb,
5021d6167fdSMichael J. Spencer                                         uint64_t &Result) const {
503b60a18deSMichael J. Spencer   validateSymbol(Symb);
504b60a18deSMichael J. Spencer   const Elf_Sym  *symb = getSymbol(Symb);
505b60a18deSMichael J. Spencer   if (symb->st_size == 0)
5061d6167fdSMichael J. Spencer     Result = UnknownAddressOrSize;
5071d6167fdSMichael J. Spencer   Result = symb->st_size;
5081d6167fdSMichael J. Spencer   return object_error::success;
509b60a18deSMichael J. Spencer }
510b60a18deSMichael J. Spencer 
511b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
5121d6167fdSMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
5131d6167fdSMichael J. Spencer                         ::getSymbolNMTypeChar(DataRefImpl Symb,
5141d6167fdSMichael J. Spencer                                               char &Result) const {
515b60a18deSMichael J. Spencer   validateSymbol(Symb);
516b60a18deSMichael J. Spencer   const Elf_Sym  *symb = getSymbol(Symb);
517b60a18deSMichael J. Spencer   const Elf_Shdr *Section = getSection(symb->st_shndx);
518b60a18deSMichael J. Spencer 
519b60a18deSMichael J. Spencer   char ret = '?';
520b60a18deSMichael J. Spencer 
521b60a18deSMichael J. Spencer   if (Section) {
522b60a18deSMichael J. Spencer     switch (Section->sh_type) {
523b60a18deSMichael J. Spencer     case ELF::SHT_PROGBITS:
524b60a18deSMichael J. Spencer     case ELF::SHT_DYNAMIC:
525b60a18deSMichael J. Spencer       switch (Section->sh_flags) {
526b60a18deSMichael J. Spencer       case (ELF::SHF_ALLOC | ELF::SHF_EXECINSTR):
527b60a18deSMichael J. Spencer         ret = 't'; break;
528b60a18deSMichael J. Spencer       case (ELF::SHF_ALLOC | ELF::SHF_WRITE):
529b60a18deSMichael J. Spencer         ret = 'd'; break;
530b60a18deSMichael J. Spencer       case ELF::SHF_ALLOC:
531b60a18deSMichael J. Spencer       case (ELF::SHF_ALLOC | ELF::SHF_MERGE):
532b60a18deSMichael J. Spencer       case (ELF::SHF_ALLOC | ELF::SHF_MERGE | ELF::SHF_STRINGS):
533b60a18deSMichael J. Spencer         ret = 'r'; break;
534b60a18deSMichael J. Spencer       }
535b60a18deSMichael J. Spencer       break;
536b60a18deSMichael J. Spencer     case ELF::SHT_NOBITS: ret = 'b';
537b60a18deSMichael J. Spencer     }
538b60a18deSMichael J. Spencer   }
539b60a18deSMichael J. Spencer 
540b60a18deSMichael J. Spencer   switch (symb->st_shndx) {
541b60a18deSMichael J. Spencer   case ELF::SHN_UNDEF:
542b60a18deSMichael J. Spencer     if (ret == '?')
543b60a18deSMichael J. Spencer       ret = 'U';
544b60a18deSMichael J. Spencer     break;
545b60a18deSMichael J. Spencer   case ELF::SHN_ABS: ret = 'a'; break;
546b60a18deSMichael J. Spencer   case ELF::SHN_COMMON: ret = 'c'; break;
547b60a18deSMichael J. Spencer   }
548b60a18deSMichael J. Spencer 
549b60a18deSMichael J. Spencer   switch (symb->getBinding()) {
550b60a18deSMichael J. Spencer   case ELF::STB_GLOBAL: ret = ::toupper(ret); break;
551b60a18deSMichael J. Spencer   case ELF::STB_WEAK:
552b60a18deSMichael J. Spencer     if (symb->st_shndx == ELF::SHN_UNDEF)
553b60a18deSMichael J. Spencer       ret = 'w';
554b60a18deSMichael J. Spencer     else
555b60a18deSMichael J. Spencer       if (symb->getType() == ELF::STT_OBJECT)
556b60a18deSMichael J. Spencer         ret = 'V';
557b60a18deSMichael J. Spencer       else
558b60a18deSMichael J. Spencer         ret = 'W';
559b60a18deSMichael J. Spencer   }
560b60a18deSMichael J. Spencer 
5611d6167fdSMichael J. Spencer   if (ret == '?' && symb->getType() == ELF::STT_SECTION) {
5621d6167fdSMichael J. Spencer     StringRef name;
5631d6167fdSMichael J. Spencer     if (error_code ec = getSymbolName(Symb, name))
5641d6167fdSMichael J. Spencer       return ec;
5651d6167fdSMichael J. Spencer     Result = StringSwitch<char>(name)
566b60a18deSMichael J. Spencer       .StartsWith(".debug", 'N')
567022ecdf2SBenjamin Kramer       .StartsWith(".note", 'n')
568022ecdf2SBenjamin Kramer       .Default('?');
5691d6167fdSMichael J. Spencer     return object_error::success;
5701d6167fdSMichael J. Spencer   }
571b60a18deSMichael J. Spencer 
5721d6167fdSMichael J. Spencer   Result = ret;
5731d6167fdSMichael J. Spencer   return object_error::success;
574b60a18deSMichael J. Spencer }
575b60a18deSMichael J. Spencer 
576b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
5771d6167fdSMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
57875d1cf33SBenjamin Kramer                         ::getSymbolType(DataRefImpl Symb,
57975d1cf33SBenjamin Kramer                                         SymbolRef::SymbolType &Result) const {
58075d1cf33SBenjamin Kramer   validateSymbol(Symb);
58175d1cf33SBenjamin Kramer   const Elf_Sym  *symb = getSymbol(Symb);
58275d1cf33SBenjamin Kramer 
58375d1cf33SBenjamin Kramer   if (symb->st_shndx == ELF::SHN_UNDEF) {
58475d1cf33SBenjamin Kramer     Result = SymbolRef::ST_External;
58575d1cf33SBenjamin Kramer     return object_error::success;
58675d1cf33SBenjamin Kramer   }
58775d1cf33SBenjamin Kramer 
58875d1cf33SBenjamin Kramer   switch (symb->getType()) {
58975d1cf33SBenjamin Kramer   case ELF::STT_FUNC:
59075d1cf33SBenjamin Kramer     Result = SymbolRef::ST_Function;
59175d1cf33SBenjamin Kramer     break;
59275d1cf33SBenjamin Kramer   case ELF::STT_OBJECT:
59375d1cf33SBenjamin Kramer     Result = SymbolRef::ST_Data;
59475d1cf33SBenjamin Kramer     break;
59575d1cf33SBenjamin Kramer   default:
59675d1cf33SBenjamin Kramer     Result = SymbolRef::ST_Other;
59775d1cf33SBenjamin Kramer     break;
59875d1cf33SBenjamin Kramer   }
59975d1cf33SBenjamin Kramer   return object_error::success;
60075d1cf33SBenjamin Kramer }
60175d1cf33SBenjamin Kramer 
60275d1cf33SBenjamin Kramer template<support::endianness target_endianness, bool is64Bits>
60375d1cf33SBenjamin Kramer error_code ELFObjectFile<target_endianness, is64Bits>
60475d1cf33SBenjamin Kramer                         ::isSymbolGlobal(DataRefImpl Symb,
60575d1cf33SBenjamin Kramer                                         bool &Result) const {
60675d1cf33SBenjamin Kramer   validateSymbol(Symb);
60775d1cf33SBenjamin Kramer   const Elf_Sym  *symb = getSymbol(Symb);
60875d1cf33SBenjamin Kramer 
60975d1cf33SBenjamin Kramer   Result = symb->getBinding() == ELF::STB_GLOBAL;
61075d1cf33SBenjamin Kramer   return object_error::success;
61175d1cf33SBenjamin Kramer }
61275d1cf33SBenjamin Kramer 
61375d1cf33SBenjamin Kramer template<support::endianness target_endianness, bool is64Bits>
61475d1cf33SBenjamin Kramer error_code ELFObjectFile<target_endianness, is64Bits>
6151d6167fdSMichael J. Spencer                         ::isSymbolInternal(DataRefImpl Symb,
6161d6167fdSMichael J. Spencer                                            bool &Result) const {
617b60a18deSMichael J. Spencer   validateSymbol(Symb);
618b60a18deSMichael J. Spencer   const Elf_Sym  *symb = getSymbol(Symb);
619b60a18deSMichael J. Spencer 
620b60a18deSMichael J. Spencer   if (  symb->getType() == ELF::STT_FILE
621b60a18deSMichael J. Spencer      || symb->getType() == ELF::STT_SECTION)
6221d6167fdSMichael J. Spencer     Result = true;
6231d6167fdSMichael J. Spencer   Result = false;
6241d6167fdSMichael J. Spencer   return object_error::success;
625b60a18deSMichael J. Spencer }
626b60a18deSMichael J. Spencer 
627b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
6281d6167fdSMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
6291d6167fdSMichael J. Spencer                         ::getSectionNext(DataRefImpl Sec, SectionRef &Result) const {
6300324b672SMichael J. Spencer   const uint8_t *sec = reinterpret_cast<const uint8_t *>(Sec.p);
631b60a18deSMichael J. Spencer   sec += Header->e_shentsize;
6320324b672SMichael J. Spencer   Sec.p = reinterpret_cast<intptr_t>(sec);
6331d6167fdSMichael J. Spencer   Result = SectionRef(Sec, this);
6341d6167fdSMichael J. Spencer   return object_error::success;
635b60a18deSMichael J. Spencer }
636b60a18deSMichael J. Spencer 
637b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
6381d6167fdSMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
6391d6167fdSMichael J. Spencer                         ::getSectionName(DataRefImpl Sec,
6401d6167fdSMichael J. Spencer                                          StringRef &Result) const {
6410324b672SMichael J. Spencer   const Elf_Shdr *sec = reinterpret_cast<const Elf_Shdr *>(Sec.p);
6421d6167fdSMichael J. Spencer   Result = StringRef(getString(dot_shstrtab_sec, sec->sh_name));
6431d6167fdSMichael J. Spencer   return object_error::success;
644b60a18deSMichael J. Spencer }
645b60a18deSMichael J. Spencer 
646b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
6471d6167fdSMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
6481d6167fdSMichael J. Spencer                         ::getSectionAddress(DataRefImpl Sec,
6491d6167fdSMichael J. Spencer                                             uint64_t &Result) const {
6500324b672SMichael J. Spencer   const Elf_Shdr *sec = reinterpret_cast<const Elf_Shdr *>(Sec.p);
6511d6167fdSMichael J. Spencer   Result = sec->sh_addr;
6521d6167fdSMichael J. Spencer   return object_error::success;
653b60a18deSMichael J. Spencer }
654b60a18deSMichael J. Spencer 
655b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
6561d6167fdSMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
6571d6167fdSMichael J. Spencer                         ::getSectionSize(DataRefImpl Sec,
6581d6167fdSMichael J. Spencer                                          uint64_t &Result) const {
6590324b672SMichael J. Spencer   const Elf_Shdr *sec = reinterpret_cast<const Elf_Shdr *>(Sec.p);
6601d6167fdSMichael J. Spencer   Result = sec->sh_size;
6611d6167fdSMichael J. Spencer   return object_error::success;
662b60a18deSMichael J. Spencer }
663b60a18deSMichael J. Spencer 
664b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
6651d6167fdSMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
6661d6167fdSMichael J. Spencer                         ::getSectionContents(DataRefImpl Sec,
6671d6167fdSMichael J. Spencer                                              StringRef &Result) const {
6680324b672SMichael J. Spencer   const Elf_Shdr *sec = reinterpret_cast<const Elf_Shdr *>(Sec.p);
6691d6167fdSMichael J. Spencer   const char *start = (const char*)base() + sec->sh_offset;
6701d6167fdSMichael J. Spencer   Result = StringRef(start, sec->sh_size);
6711d6167fdSMichael J. Spencer   return object_error::success;
672b60a18deSMichael J. Spencer }
673b60a18deSMichael J. Spencer 
674b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
6751d6167fdSMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
6761d6167fdSMichael J. Spencer                         ::isSectionText(DataRefImpl Sec,
6771d6167fdSMichael J. Spencer                                         bool &Result) const {
6780324b672SMichael J. Spencer   const Elf_Shdr *sec = reinterpret_cast<const Elf_Shdr *>(Sec.p);
679b60a18deSMichael J. Spencer   if (sec->sh_flags & ELF::SHF_EXECINSTR)
6801d6167fdSMichael J. Spencer     Result = true;
6811d6167fdSMichael J. Spencer   else
6821d6167fdSMichael J. Spencer     Result = false;
6831d6167fdSMichael J. Spencer   return object_error::success;
684b60a18deSMichael J. Spencer }
685b60a18deSMichael J. Spencer 
686b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
687f6f3e81cSBenjamin Kramer error_code ELFObjectFile<target_endianness, is64Bits>
688800619f2SMichael J. Spencer                         ::isSectionData(DataRefImpl Sec,
689800619f2SMichael J. Spencer                                         bool &Result) const {
690800619f2SMichael J. Spencer   const Elf_Shdr *sec = reinterpret_cast<const Elf_Shdr *>(Sec.p);
691800619f2SMichael J. Spencer   if (sec->sh_flags & (ELF::SHF_ALLOC | ELF::SHF_WRITE)
692800619f2SMichael J. Spencer       && sec->sh_type == ELF::SHT_PROGBITS)
693800619f2SMichael J. Spencer     Result = true;
694800619f2SMichael J. Spencer   else
695800619f2SMichael J. Spencer     Result = false;
696800619f2SMichael J. Spencer   return object_error::success;
697800619f2SMichael J. Spencer }
698800619f2SMichael J. Spencer 
699800619f2SMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
700800619f2SMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
701800619f2SMichael J. Spencer                         ::isSectionBSS(DataRefImpl Sec,
702800619f2SMichael J. Spencer                                        bool &Result) const {
703800619f2SMichael J. Spencer   const Elf_Shdr *sec = reinterpret_cast<const Elf_Shdr *>(Sec.p);
704800619f2SMichael J. Spencer   if (sec->sh_flags & (ELF::SHF_ALLOC | ELF::SHF_WRITE)
705800619f2SMichael J. Spencer       && sec->sh_type == ELF::SHT_NOBITS)
706800619f2SMichael J. Spencer     Result = true;
707800619f2SMichael J. Spencer   else
708800619f2SMichael J. Spencer     Result = false;
709800619f2SMichael J. Spencer   return object_error::success;
710800619f2SMichael J. Spencer }
711800619f2SMichael J. Spencer 
712800619f2SMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
713800619f2SMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
714f6f3e81cSBenjamin Kramer                           ::sectionContainsSymbol(DataRefImpl Sec,
715f6f3e81cSBenjamin Kramer                                                   DataRefImpl Symb,
716f6f3e81cSBenjamin Kramer                                                   bool &Result) const {
717f6f3e81cSBenjamin Kramer   // FIXME: Unimplemented.
718f6f3e81cSBenjamin Kramer   Result = false;
719f6f3e81cSBenjamin Kramer   return object_error::success;
720f6f3e81cSBenjamin Kramer }
721f6f3e81cSBenjamin Kramer 
722*e5fd0047SMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
723*e5fd0047SMichael J. Spencer relocation_iterator ELFObjectFile<target_endianness, is64Bits>
724*e5fd0047SMichael J. Spencer                                  ::getSectionRelBegin(DataRefImpl Sec) const {
725*e5fd0047SMichael J. Spencer   DataRefImpl RelData;
726*e5fd0047SMichael J. Spencer   memset(&RelData, 0, sizeof(RelData));
727*e5fd0047SMichael J. Spencer   const Elf_Shdr *sec = reinterpret_cast<const Elf_Shdr *>(Sec.p);
728*e5fd0047SMichael J. Spencer   typename RelocMap_t::const_iterator ittr = SectionRelocMap.find(sec);
729*e5fd0047SMichael J. Spencer   if (sec != 0 && ittr != SectionRelocMap.end()) {
730*e5fd0047SMichael J. Spencer     RelData.w.a = getSection(ittr->second[0])->sh_link;
731*e5fd0047SMichael J. Spencer     RelData.w.b = ittr->second[0];
732*e5fd0047SMichael J. Spencer     RelData.w.c = 0;
733*e5fd0047SMichael J. Spencer   }
734*e5fd0047SMichael J. Spencer   return relocation_iterator(RelocationRef(RelData, this));
735*e5fd0047SMichael J. Spencer }
736*e5fd0047SMichael J. Spencer 
737*e5fd0047SMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
738*e5fd0047SMichael J. Spencer relocation_iterator ELFObjectFile<target_endianness, is64Bits>
739*e5fd0047SMichael J. Spencer                                  ::getSectionRelEnd(DataRefImpl Sec) const {
740*e5fd0047SMichael J. Spencer   DataRefImpl RelData;
741*e5fd0047SMichael J. Spencer   memset(&RelData, 0, sizeof(RelData));
742*e5fd0047SMichael J. Spencer   const Elf_Shdr *sec = reinterpret_cast<const Elf_Shdr *>(Sec.p);
743*e5fd0047SMichael J. Spencer   typename RelocMap_t::const_iterator ittr = SectionRelocMap.find(sec);
744*e5fd0047SMichael J. Spencer   if (sec != 0 && ittr != SectionRelocMap.end()) {
745*e5fd0047SMichael J. Spencer     // Get the index of the last relocation section for this section.
746*e5fd0047SMichael J. Spencer     std::size_t relocsecindex = ittr->second[ittr->second.size() - 1];
747*e5fd0047SMichael J. Spencer     const Elf_Shdr *relocsec = getSection(relocsecindex);
748*e5fd0047SMichael J. Spencer     RelData.w.a = relocsec->sh_link;
749*e5fd0047SMichael J. Spencer     RelData.w.b = relocsecindex;
750*e5fd0047SMichael J. Spencer     RelData.w.c = relocsec->sh_size / relocsec->sh_entsize;
751*e5fd0047SMichael J. Spencer   }
752*e5fd0047SMichael J. Spencer   return relocation_iterator(RelocationRef(RelData, this));
753*e5fd0047SMichael J. Spencer }
754*e5fd0047SMichael J. Spencer 
755022ecdf2SBenjamin Kramer // Relocations
756022ecdf2SBenjamin Kramer template<support::endianness target_endianness, bool is64Bits>
757022ecdf2SBenjamin Kramer error_code ELFObjectFile<target_endianness, is64Bits>
758022ecdf2SBenjamin Kramer                         ::getRelocationNext(DataRefImpl Rel,
759022ecdf2SBenjamin Kramer                                             RelocationRef &Result) const {
760*e5fd0047SMichael J. Spencer   ++Rel.w.c;
761*e5fd0047SMichael J. Spencer   const Elf_Shdr *relocsec = getSection(Rel.w.b);
762*e5fd0047SMichael J. Spencer   if (Rel.w.c >= (relocsec->sh_size / relocsec->sh_entsize)) {
763*e5fd0047SMichael J. Spencer     // We have reached the end of the relocations for this section. See if there
764*e5fd0047SMichael J. Spencer     // is another relocation section.
765*e5fd0047SMichael J. Spencer     typename RelocMap_t::mapped_type &relocseclist =
766*e5fd0047SMichael J. Spencer       SectionRelocMap.lookup(getSection(Rel.w.a));
767022ecdf2SBenjamin Kramer 
768*e5fd0047SMichael J. Spencer     // Do a binary search for the current reloc section index (which must be
769*e5fd0047SMichael J. Spencer     // present). Then get the next one.
770*e5fd0047SMichael J. Spencer     typename RelocMap_t::mapped_type::const_iterator loc =
771*e5fd0047SMichael J. Spencer       std::lower_bound(relocseclist.begin(), relocseclist.end(), Rel.w.b);
772*e5fd0047SMichael J. Spencer     ++loc;
773*e5fd0047SMichael J. Spencer 
774*e5fd0047SMichael J. Spencer     // If there is no next one, don't do anything. The ++Rel.w.c above sets Rel
775*e5fd0047SMichael J. Spencer     // to the end iterator.
776*e5fd0047SMichael J. Spencer     if (loc != relocseclist.end()) {
777*e5fd0047SMichael J. Spencer       Rel.w.b = *loc;
778*e5fd0047SMichael J. Spencer       Rel.w.a = 0;
779022ecdf2SBenjamin Kramer     }
780022ecdf2SBenjamin Kramer   }
781022ecdf2SBenjamin Kramer   Result = RelocationRef(Rel, this);
782022ecdf2SBenjamin Kramer   return object_error::success;
783022ecdf2SBenjamin Kramer }
784022ecdf2SBenjamin Kramer 
785022ecdf2SBenjamin Kramer template<support::endianness target_endianness, bool is64Bits>
786022ecdf2SBenjamin Kramer error_code ELFObjectFile<target_endianness, is64Bits>
787022ecdf2SBenjamin Kramer                         ::getRelocationSymbol(DataRefImpl Rel,
788022ecdf2SBenjamin Kramer                                               SymbolRef &Result) const {
789022ecdf2SBenjamin Kramer   uint32_t symbolIdx;
790*e5fd0047SMichael J. Spencer   const Elf_Shdr *sec = getSection(Rel.w.b);
791022ecdf2SBenjamin Kramer   switch (sec->sh_type) {
792022ecdf2SBenjamin Kramer     default :
793022ecdf2SBenjamin Kramer       report_fatal_error("Invalid section type in Rel!");
794022ecdf2SBenjamin Kramer     case ELF::SHT_REL : {
795022ecdf2SBenjamin Kramer       symbolIdx = getRel(Rel)->getSymbol();
796022ecdf2SBenjamin Kramer       break;
797022ecdf2SBenjamin Kramer     }
798022ecdf2SBenjamin Kramer     case ELF::SHT_RELA : {
799022ecdf2SBenjamin Kramer       symbolIdx = getRela(Rel)->getSymbol();
800022ecdf2SBenjamin Kramer       break;
801022ecdf2SBenjamin Kramer     }
802022ecdf2SBenjamin Kramer   }
803022ecdf2SBenjamin Kramer   DataRefImpl SymbolData;
804022ecdf2SBenjamin Kramer   IndexMap_t::const_iterator it = SymbolTableSectionsIndexMap.find(sec->sh_link);
805022ecdf2SBenjamin Kramer   if (it == SymbolTableSectionsIndexMap.end())
806022ecdf2SBenjamin Kramer     report_fatal_error("Relocation symbol table not found!");
807022ecdf2SBenjamin Kramer   SymbolData.d.a = symbolIdx;
808022ecdf2SBenjamin Kramer   SymbolData.d.b = it->second;
809022ecdf2SBenjamin Kramer   Result = SymbolRef(SymbolData, this);
810022ecdf2SBenjamin Kramer   return object_error::success;
811022ecdf2SBenjamin Kramer }
812022ecdf2SBenjamin Kramer 
813022ecdf2SBenjamin Kramer template<support::endianness target_endianness, bool is64Bits>
814022ecdf2SBenjamin Kramer error_code ELFObjectFile<target_endianness, is64Bits>
815022ecdf2SBenjamin Kramer                         ::getRelocationAddress(DataRefImpl Rel,
816022ecdf2SBenjamin Kramer                                                uint64_t &Result) const {
817022ecdf2SBenjamin Kramer   uint64_t offset;
818*e5fd0047SMichael J. Spencer   const Elf_Shdr *sec = getSection(Rel.w.b);
819022ecdf2SBenjamin Kramer   switch (sec->sh_type) {
820022ecdf2SBenjamin Kramer     default :
821022ecdf2SBenjamin Kramer       report_fatal_error("Invalid section type in Rel!");
822022ecdf2SBenjamin Kramer     case ELF::SHT_REL : {
823022ecdf2SBenjamin Kramer       offset = getRel(Rel)->r_offset;
824022ecdf2SBenjamin Kramer       break;
825022ecdf2SBenjamin Kramer     }
826022ecdf2SBenjamin Kramer     case ELF::SHT_RELA : {
827022ecdf2SBenjamin Kramer       offset = getRela(Rel)->r_offset;
828022ecdf2SBenjamin Kramer       break;
829022ecdf2SBenjamin Kramer     }
830022ecdf2SBenjamin Kramer   }
831022ecdf2SBenjamin Kramer 
832*e5fd0047SMichael J. Spencer   Result = offset;
833022ecdf2SBenjamin Kramer   return object_error::success;
834022ecdf2SBenjamin Kramer }
835022ecdf2SBenjamin Kramer 
836022ecdf2SBenjamin Kramer template<support::endianness target_endianness, bool is64Bits>
837022ecdf2SBenjamin Kramer error_code ELFObjectFile<target_endianness, is64Bits>
838022ecdf2SBenjamin Kramer                         ::getRelocationType(DataRefImpl Rel,
839022ecdf2SBenjamin Kramer                                             uint32_t &Result) const {
840*e5fd0047SMichael J. Spencer   const Elf_Shdr *sec = getSection(Rel.w.b);
841022ecdf2SBenjamin Kramer   switch (sec->sh_type) {
842022ecdf2SBenjamin Kramer     default :
843022ecdf2SBenjamin Kramer       report_fatal_error("Invalid section type in Rel!");
844022ecdf2SBenjamin Kramer     case ELF::SHT_REL : {
845022ecdf2SBenjamin Kramer       Result = getRel(Rel)->getType();
846022ecdf2SBenjamin Kramer       break;
847022ecdf2SBenjamin Kramer     }
848022ecdf2SBenjamin Kramer     case ELF::SHT_RELA : {
849022ecdf2SBenjamin Kramer       Result = getRela(Rel)->getType();
850022ecdf2SBenjamin Kramer       break;
851022ecdf2SBenjamin Kramer     }
852022ecdf2SBenjamin Kramer   }
853022ecdf2SBenjamin Kramer   return object_error::success;
854022ecdf2SBenjamin Kramer }
855022ecdf2SBenjamin Kramer 
856*e5fd0047SMichael J. Spencer #define LLVM_ELF_SWITCH_RELOC_TYPE_NAME(enum) \
857*e5fd0047SMichael J. Spencer   case ELF::enum: res = #enum; break;
858*e5fd0047SMichael J. Spencer 
859*e5fd0047SMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
860*e5fd0047SMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
861*e5fd0047SMichael J. Spencer                         ::getRelocationTypeName(DataRefImpl Rel,
862*e5fd0047SMichael J. Spencer                                           SmallVectorImpl<char> &Result) const {
863*e5fd0047SMichael J. Spencer   const Elf_Shdr *sec = getSection(Rel.w.b);
864*e5fd0047SMichael J. Spencer   uint8_t type;
865*e5fd0047SMichael J. Spencer   StringRef res;
866*e5fd0047SMichael J. Spencer   switch (sec->sh_type) {
867*e5fd0047SMichael J. Spencer     default :
868*e5fd0047SMichael J. Spencer       return object_error::parse_failed;
869*e5fd0047SMichael J. Spencer     case ELF::SHT_REL : {
870*e5fd0047SMichael J. Spencer       type = getRel(Rel)->getType();
871*e5fd0047SMichael J. Spencer       break;
872*e5fd0047SMichael J. Spencer     }
873*e5fd0047SMichael J. Spencer     case ELF::SHT_RELA : {
874*e5fd0047SMichael J. Spencer       type = getRela(Rel)->getType();
875*e5fd0047SMichael J. Spencer       break;
876*e5fd0047SMichael J. Spencer     }
877*e5fd0047SMichael J. Spencer   }
878*e5fd0047SMichael J. Spencer   switch (Header->e_machine) {
879*e5fd0047SMichael J. Spencer   case ELF::EM_X86_64:
880*e5fd0047SMichael J. Spencer     switch (type) {
881*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_NONE);
882*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_64);
883*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_PC32);
884*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_GOT32);
885*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_PLT32);
886*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_COPY);
887*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_GLOB_DAT);
888*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_JUMP_SLOT);
889*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_RELATIVE);
890*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_GOTPCREL);
891*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_32);
892*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_32S);
893*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_16);
894*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_PC16);
895*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_8);
896*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_PC8);
897*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_DTPMOD64);
898*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_DTPOFF64);
899*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_TPOFF64);
900*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_TLSGD);
901*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_TLSLD);
902*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_DTPOFF32);
903*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_GOTTPOFF);
904*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_TPOFF32);
905*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_PC64);
906*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_GOTOFF64);
907*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_GOTPC32);
908*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_SIZE32);
909*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_SIZE64);
910*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_GOTPC32_TLSDESC);
911*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_TLSDESC_CALL);
912*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_X86_64_TLSDESC);
913*e5fd0047SMichael J. Spencer     default:
914*e5fd0047SMichael J. Spencer       res = "Unknown";
915*e5fd0047SMichael J. Spencer     }
916*e5fd0047SMichael J. Spencer     break;
917*e5fd0047SMichael J. Spencer   case ELF::EM_386:
918*e5fd0047SMichael J. Spencer     switch (type) {
919*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_NONE);
920*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_32);
921*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_PC32);
922*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_GOT32);
923*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_PLT32);
924*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_COPY);
925*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_GLOB_DAT);
926*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_JUMP_SLOT);
927*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_RELATIVE);
928*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_GOTOFF);
929*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_GOTPC);
930*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_32PLT);
931*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_TPOFF);
932*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_IE);
933*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_GOTIE);
934*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_LE);
935*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_GD);
936*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_LDM);
937*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_16);
938*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_PC16);
939*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_8);
940*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_PC8);
941*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_GD_32);
942*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_GD_PUSH);
943*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_GD_CALL);
944*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_GD_POP);
945*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_LDM_32);
946*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_LDM_PUSH);
947*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_LDM_CALL);
948*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_LDM_POP);
949*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_LDO_32);
950*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_IE_32);
951*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_LE_32);
952*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_DTPMOD32);
953*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_DTPOFF32);
954*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_TPOFF32);
955*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_GOTDESC);
956*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_DESC_CALL);
957*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_TLS_DESC);
958*e5fd0047SMichael J. Spencer       LLVM_ELF_SWITCH_RELOC_TYPE_NAME(R_386_IRELATIVE);
959*e5fd0047SMichael J. Spencer     default:
960*e5fd0047SMichael J. Spencer       res = "Unknown";
961*e5fd0047SMichael J. Spencer     }
962*e5fd0047SMichael J. Spencer     break;
963*e5fd0047SMichael J. Spencer   default:
964*e5fd0047SMichael J. Spencer     res = "Unknown";
965*e5fd0047SMichael J. Spencer   }
966*e5fd0047SMichael J. Spencer   Result.append(res.begin(), res.end());
967*e5fd0047SMichael J. Spencer   return object_error::success;
968*e5fd0047SMichael J. Spencer }
969*e5fd0047SMichael J. Spencer 
970*e5fd0047SMichael J. Spencer #undef LLVM_ELF_SWITCH_RELOC_TYPE_NAME
971*e5fd0047SMichael J. Spencer 
972022ecdf2SBenjamin Kramer template<support::endianness target_endianness, bool is64Bits>
973022ecdf2SBenjamin Kramer error_code ELFObjectFile<target_endianness, is64Bits>
974022ecdf2SBenjamin Kramer                         ::getRelocationAdditionalInfo(DataRefImpl Rel,
975022ecdf2SBenjamin Kramer                                                       int64_t &Result) const {
976*e5fd0047SMichael J. Spencer   const Elf_Shdr *sec = getSection(Rel.w.b);
977022ecdf2SBenjamin Kramer   switch (sec->sh_type) {
978022ecdf2SBenjamin Kramer     default :
979022ecdf2SBenjamin Kramer       report_fatal_error("Invalid section type in Rel!");
980022ecdf2SBenjamin Kramer     case ELF::SHT_REL : {
981022ecdf2SBenjamin Kramer       Result = 0;
982022ecdf2SBenjamin Kramer       return object_error::success;
983022ecdf2SBenjamin Kramer     }
984022ecdf2SBenjamin Kramer     case ELF::SHT_RELA : {
985022ecdf2SBenjamin Kramer       Result = getRela(Rel)->r_addend;
986022ecdf2SBenjamin Kramer       return object_error::success;
987022ecdf2SBenjamin Kramer     }
988022ecdf2SBenjamin Kramer   }
989022ecdf2SBenjamin Kramer }
990022ecdf2SBenjamin Kramer 
991*e5fd0047SMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
992*e5fd0047SMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
993*e5fd0047SMichael J. Spencer                         ::getRelocationValueString(DataRefImpl Rel,
994*e5fd0047SMichael J. Spencer                                           SmallVectorImpl<char> &Result) const {
995*e5fd0047SMichael J. Spencer   const Elf_Shdr *sec = getSection(Rel.w.b);
996*e5fd0047SMichael J. Spencer   uint8_t type;
997*e5fd0047SMichael J. Spencer   StringRef res;
998*e5fd0047SMichael J. Spencer   int64_t addend = 0;
999*e5fd0047SMichael J. Spencer   uint16_t symbol_index = 0;
1000*e5fd0047SMichael J. Spencer   switch (sec->sh_type) {
1001*e5fd0047SMichael J. Spencer     default :
1002*e5fd0047SMichael J. Spencer       return object_error::parse_failed;
1003*e5fd0047SMichael J. Spencer     case ELF::SHT_REL : {
1004*e5fd0047SMichael J. Spencer       type = getRel(Rel)->getType();
1005*e5fd0047SMichael J. Spencer       symbol_index = getRel(Rel)->getSymbol();
1006*e5fd0047SMichael J. Spencer       // TODO: Read implicit addend from section data.
1007*e5fd0047SMichael J. Spencer       break;
1008*e5fd0047SMichael J. Spencer     }
1009*e5fd0047SMichael J. Spencer     case ELF::SHT_RELA : {
1010*e5fd0047SMichael J. Spencer       type = getRela(Rel)->getType();
1011*e5fd0047SMichael J. Spencer       symbol_index = getRela(Rel)->getSymbol();
1012*e5fd0047SMichael J. Spencer       addend = getRela(Rel)->r_addend;
1013*e5fd0047SMichael J. Spencer       break;
1014*e5fd0047SMichael J. Spencer     }
1015*e5fd0047SMichael J. Spencer   }
1016*e5fd0047SMichael J. Spencer   const Elf_Sym *symb = getEntry<Elf_Sym>(sec->sh_link, symbol_index);
1017*e5fd0047SMichael J. Spencer   StringRef symname;
1018*e5fd0047SMichael J. Spencer   if (error_code ec = getSymbolName(symb, symname))
1019*e5fd0047SMichael J. Spencer     return ec;
1020*e5fd0047SMichael J. Spencer   switch (Header->e_machine) {
1021*e5fd0047SMichael J. Spencer   case ELF::EM_X86_64:
1022*e5fd0047SMichael J. Spencer     switch (type) {
1023*e5fd0047SMichael J. Spencer     case ELF::R_X86_64_32S:
1024*e5fd0047SMichael J. Spencer       res = symname;
1025*e5fd0047SMichael J. Spencer       break;
1026*e5fd0047SMichael J. Spencer     case ELF::R_X86_64_PC32: {
1027*e5fd0047SMichael J. Spencer         std::string fmtbuf;
1028*e5fd0047SMichael J. Spencer         raw_string_ostream fmt(fmtbuf);
1029*e5fd0047SMichael J. Spencer         fmt << symname << (addend < 0 ? "" : "+") << addend << "-P";
1030*e5fd0047SMichael J. Spencer         fmt.flush();
1031*e5fd0047SMichael J. Spencer         Result.append(fmtbuf.begin(), fmtbuf.end());
1032*e5fd0047SMichael J. Spencer       }
1033*e5fd0047SMichael J. Spencer       break;
1034*e5fd0047SMichael J. Spencer     default:
1035*e5fd0047SMichael J. Spencer       res = "Unknown";
1036*e5fd0047SMichael J. Spencer     }
1037*e5fd0047SMichael J. Spencer     break;
1038*e5fd0047SMichael J. Spencer   default:
1039*e5fd0047SMichael J. Spencer     res = "Unknown";
1040*e5fd0047SMichael J. Spencer   }
1041*e5fd0047SMichael J. Spencer   if (Result.empty())
1042*e5fd0047SMichael J. Spencer     Result.append(res.begin(), res.end());
1043*e5fd0047SMichael J. Spencer   return object_error::success;
1044*e5fd0047SMichael J. Spencer }
1045022ecdf2SBenjamin Kramer 
1046f6f3e81cSBenjamin Kramer template<support::endianness target_endianness, bool is64Bits>
1047ec29b121SMichael J. Spencer ELFObjectFile<target_endianness, is64Bits>::ELFObjectFile(MemoryBuffer *Object
1048ec29b121SMichael J. Spencer                                                           , error_code &ec)
1049ec29b121SMichael J. Spencer   : ObjectFile(Binary::isELF, Object, ec)
1050b60a18deSMichael J. Spencer   , SectionHeaderTable(0)
1051b60a18deSMichael J. Spencer   , dot_shstrtab_sec(0)
1052b60a18deSMichael J. Spencer   , dot_strtab_sec(0) {
1053ec29b121SMichael J. Spencer   Header = reinterpret_cast<const Elf_Ehdr *>(base());
1054b60a18deSMichael J. Spencer 
1055b60a18deSMichael J. Spencer   if (Header->e_shoff == 0)
1056b60a18deSMichael J. Spencer     return;
1057b60a18deSMichael J. Spencer 
1058b60a18deSMichael J. Spencer   SectionHeaderTable =
1059ec29b121SMichael J. Spencer     reinterpret_cast<const Elf_Shdr *>(base() + Header->e_shoff);
1060b60a18deSMichael J. Spencer   uint32_t SectionTableSize = Header->e_shnum * Header->e_shentsize;
1061b60a18deSMichael J. Spencer   if (!(  (const uint8_t *)SectionHeaderTable + SectionTableSize
1062ec29b121SMichael J. Spencer          <= base() + Data->getBufferSize()))
1063b60a18deSMichael J. Spencer     // FIXME: Proper error handling.
1064b60a18deSMichael J. Spencer     report_fatal_error("Section table goes past end of file!");
1065b60a18deSMichael J. Spencer 
1066b60a18deSMichael J. Spencer 
1067b60a18deSMichael J. Spencer   // To find the symbol tables we walk the section table to find SHT_STMTAB.
1068*e5fd0047SMichael J. Spencer   const Elf_Shdr* sh = reinterpret_cast<const Elf_Shdr*>(SectionHeaderTable);
1069022ecdf2SBenjamin Kramer   for (unsigned i = 0; i < Header->e_shnum; ++i) {
1070b60a18deSMichael J. Spencer     if (sh->sh_type == ELF::SHT_SYMTAB) {
1071022ecdf2SBenjamin Kramer       SymbolTableSectionsIndexMap[i] = SymbolTableSections.size();
1072b60a18deSMichael J. Spencer       SymbolTableSections.push_back(sh);
1073b60a18deSMichael J. Spencer     }
1074022ecdf2SBenjamin Kramer     if (sh->sh_type == ELF::SHT_REL || sh->sh_type == ELF::SHT_RELA) {
1075*e5fd0047SMichael J. Spencer       SectionRelocMap[getSection(sh->sh_link)].push_back(i);
1076022ecdf2SBenjamin Kramer     }
1077022ecdf2SBenjamin Kramer     ++sh;
1078b60a18deSMichael J. Spencer   }
1079b60a18deSMichael J. Spencer 
1080*e5fd0047SMichael J. Spencer   // Sort section relocation lists by index.
1081*e5fd0047SMichael J. Spencer   for (typename RelocMap_t::iterator i = SectionRelocMap.begin(),
1082*e5fd0047SMichael J. Spencer                                      e = SectionRelocMap.end(); i != e; ++i) {
1083*e5fd0047SMichael J. Spencer     std::sort(i->second.begin(), i->second.end());
1084*e5fd0047SMichael J. Spencer   }
1085*e5fd0047SMichael J. Spencer 
1086b60a18deSMichael J. Spencer   // Get string table sections.
1087b60a18deSMichael J. Spencer   dot_shstrtab_sec = getSection(Header->e_shstrndx);
1088b60a18deSMichael J. Spencer   if (dot_shstrtab_sec) {
1089b60a18deSMichael J. Spencer     // Verify that the last byte in the string table in a null.
1090ec29b121SMichael J. Spencer     if (((const char*)base() + dot_shstrtab_sec->sh_offset)
1091b60a18deSMichael J. Spencer         [dot_shstrtab_sec->sh_size - 1] != 0)
1092b60a18deSMichael J. Spencer       // FIXME: Proper error handling.
1093b60a18deSMichael J. Spencer       report_fatal_error("String table must end with a null terminator!");
1094b60a18deSMichael J. Spencer   }
1095b60a18deSMichael J. Spencer 
1096b60a18deSMichael J. Spencer   // Merge this into the above loop.
1097b60a18deSMichael J. Spencer   for (const char *i = reinterpret_cast<const char *>(SectionHeaderTable),
1098b60a18deSMichael J. Spencer                   *e = i + Header->e_shnum * Header->e_shentsize;
1099b60a18deSMichael J. Spencer                    i != e; i += Header->e_shentsize) {
1100b60a18deSMichael J. Spencer     const Elf_Shdr *sh = reinterpret_cast<const Elf_Shdr*>(i);
1101b60a18deSMichael J. Spencer     if (sh->sh_type == ELF::SHT_STRTAB) {
1102b60a18deSMichael J. Spencer       StringRef SectionName(getString(dot_shstrtab_sec, sh->sh_name));
1103b60a18deSMichael J. Spencer       if (SectionName == ".strtab") {
1104b60a18deSMichael J. Spencer         if (dot_strtab_sec != 0)
1105b60a18deSMichael J. Spencer           // FIXME: Proper error handling.
1106b60a18deSMichael J. Spencer           report_fatal_error("Already found section named .strtab!");
1107b60a18deSMichael J. Spencer         dot_strtab_sec = sh;
1108ec29b121SMichael J. Spencer         const char *dot_strtab = (const char*)base() + sh->sh_offset;
1109b60a18deSMichael J. Spencer           if (dot_strtab[sh->sh_size - 1] != 0)
1110b60a18deSMichael J. Spencer             // FIXME: Proper error handling.
1111b60a18deSMichael J. Spencer             report_fatal_error("String table must end with a null terminator!");
1112b60a18deSMichael J. Spencer       }
1113b60a18deSMichael J. Spencer     }
1114b60a18deSMichael J. Spencer   }
1115b60a18deSMichael J. Spencer }
1116b60a18deSMichael J. Spencer 
1117b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
1118*e5fd0047SMichael J. Spencer symbol_iterator ELFObjectFile<target_endianness, is64Bits>
1119b60a18deSMichael J. Spencer                              ::begin_symbols() const {
11200324b672SMichael J. Spencer   DataRefImpl SymbolData;
1121b60a18deSMichael J. Spencer   memset(&SymbolData, 0, sizeof(SymbolData));
1122b60a18deSMichael J. Spencer   if (SymbolTableSections.size() == 0) {
11230324b672SMichael J. Spencer     SymbolData.d.a = std::numeric_limits<uint32_t>::max();
11240324b672SMichael J. Spencer     SymbolData.d.b = std::numeric_limits<uint32_t>::max();
1125b60a18deSMichael J. Spencer   } else {
11260324b672SMichael J. Spencer     SymbolData.d.a = 1; // The 0th symbol in ELF is fake.
11270324b672SMichael J. Spencer     SymbolData.d.b = 0;
1128b60a18deSMichael J. Spencer   }
11290324b672SMichael J. Spencer   return symbol_iterator(SymbolRef(SymbolData, this));
1130b60a18deSMichael J. Spencer }
1131b60a18deSMichael J. Spencer 
1132b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
1133*e5fd0047SMichael J. Spencer symbol_iterator ELFObjectFile<target_endianness, is64Bits>
1134b60a18deSMichael J. Spencer                              ::end_symbols() const {
11350324b672SMichael J. Spencer   DataRefImpl SymbolData;
1136b60a18deSMichael J. Spencer   memset(&SymbolData, 0, sizeof(SymbolData));
11370324b672SMichael J. Spencer   SymbolData.d.a = std::numeric_limits<uint32_t>::max();
11380324b672SMichael J. Spencer   SymbolData.d.b = std::numeric_limits<uint32_t>::max();
11390324b672SMichael J. Spencer   return symbol_iterator(SymbolRef(SymbolData, this));
1140b60a18deSMichael J. Spencer }
1141b60a18deSMichael J. Spencer 
1142b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
1143*e5fd0047SMichael J. Spencer section_iterator ELFObjectFile<target_endianness, is64Bits>
1144b60a18deSMichael J. Spencer                               ::begin_sections() const {
11450324b672SMichael J. Spencer   DataRefImpl ret;
1146ee066fc4SEric Christopher   memset(&ret, 0, sizeof(DataRefImpl));
1147ec29b121SMichael J. Spencer   ret.p = reinterpret_cast<intptr_t>(base() + Header->e_shoff);
11480324b672SMichael J. Spencer   return section_iterator(SectionRef(ret, this));
1149b60a18deSMichael J. Spencer }
1150b60a18deSMichael J. Spencer 
1151b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
1152*e5fd0047SMichael J. Spencer section_iterator ELFObjectFile<target_endianness, is64Bits>
1153b60a18deSMichael J. Spencer                               ::end_sections() const {
11540324b672SMichael J. Spencer   DataRefImpl ret;
1155ee066fc4SEric Christopher   memset(&ret, 0, sizeof(DataRefImpl));
1156ec29b121SMichael J. Spencer   ret.p = reinterpret_cast<intptr_t>(base()
1157b60a18deSMichael J. Spencer                                      + Header->e_shoff
11580324b672SMichael J. Spencer                                      + (Header->e_shentsize * Header->e_shnum));
11590324b672SMichael J. Spencer   return section_iterator(SectionRef(ret, this));
1160b60a18deSMichael J. Spencer }
1161b60a18deSMichael J. Spencer 
1162b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
1163b60a18deSMichael J. Spencer uint8_t ELFObjectFile<target_endianness, is64Bits>::getBytesInAddress() const {
11640324b672SMichael J. Spencer   return is64Bits ? 8 : 4;
1165b60a18deSMichael J. Spencer }
1166b60a18deSMichael J. Spencer 
1167b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
1168b60a18deSMichael J. Spencer StringRef ELFObjectFile<target_endianness, is64Bits>
1169b60a18deSMichael J. Spencer                        ::getFileFormatName() const {
1170b60a18deSMichael J. Spencer   switch(Header->e_ident[ELF::EI_CLASS]) {
1171b60a18deSMichael J. Spencer   case ELF::ELFCLASS32:
1172b60a18deSMichael J. Spencer     switch(Header->e_machine) {
1173b60a18deSMichael J. Spencer     case ELF::EM_386:
1174b60a18deSMichael J. Spencer       return "ELF32-i386";
1175b60a18deSMichael J. Spencer     case ELF::EM_X86_64:
1176b60a18deSMichael J. Spencer       return "ELF32-x86-64";
1177022ecdf2SBenjamin Kramer     case ELF::EM_ARM:
1178022ecdf2SBenjamin Kramer       return "ELF32-arm";
1179b60a18deSMichael J. Spencer     default:
1180b60a18deSMichael J. Spencer       return "ELF32-unknown";
1181b60a18deSMichael J. Spencer     }
1182b60a18deSMichael J. Spencer   case ELF::ELFCLASS64:
1183b60a18deSMichael J. Spencer     switch(Header->e_machine) {
1184b60a18deSMichael J. Spencer     case ELF::EM_386:
1185b60a18deSMichael J. Spencer       return "ELF64-i386";
1186b60a18deSMichael J. Spencer     case ELF::EM_X86_64:
1187b60a18deSMichael J. Spencer       return "ELF64-x86-64";
1188b60a18deSMichael J. Spencer     default:
1189b60a18deSMichael J. Spencer       return "ELF64-unknown";
1190b60a18deSMichael J. Spencer     }
1191b60a18deSMichael J. Spencer   default:
1192b60a18deSMichael J. Spencer     // FIXME: Proper error handling.
1193b60a18deSMichael J. Spencer     report_fatal_error("Invalid ELFCLASS!");
1194b60a18deSMichael J. Spencer   }
1195b60a18deSMichael J. Spencer }
1196b60a18deSMichael J. Spencer 
1197b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
1198b60a18deSMichael J. Spencer unsigned ELFObjectFile<target_endianness, is64Bits>::getArch() const {
1199b60a18deSMichael J. Spencer   switch(Header->e_machine) {
1200b60a18deSMichael J. Spencer   case ELF::EM_386:
1201b60a18deSMichael J. Spencer     return Triple::x86;
1202b60a18deSMichael J. Spencer   case ELF::EM_X86_64:
1203b60a18deSMichael J. Spencer     return Triple::x86_64;
1204022ecdf2SBenjamin Kramer   case ELF::EM_ARM:
1205022ecdf2SBenjamin Kramer     return Triple::arm;
1206b60a18deSMichael J. Spencer   default:
1207b60a18deSMichael J. Spencer     return Triple::UnknownArch;
1208b60a18deSMichael J. Spencer   }
1209b60a18deSMichael J. Spencer }
1210b60a18deSMichael J. Spencer 
1211*e5fd0047SMichael J. Spencer 
1212b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
1213022ecdf2SBenjamin Kramer template<typename T>
1214022ecdf2SBenjamin Kramer inline const T *
1215*e5fd0047SMichael J. Spencer ELFObjectFile<target_endianness, is64Bits>::getEntry(uint16_t Section,
1216*e5fd0047SMichael J. Spencer                                                      uint32_t Entry) const {
1217*e5fd0047SMichael J. Spencer   return getEntry<T>(getSection(Section), Entry);
1218*e5fd0047SMichael J. Spencer }
1219*e5fd0047SMichael J. Spencer 
1220*e5fd0047SMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
1221*e5fd0047SMichael J. Spencer template<typename T>
1222*e5fd0047SMichael J. Spencer inline const T *
1223*e5fd0047SMichael J. Spencer ELFObjectFile<target_endianness, is64Bits>::getEntry(const Elf_Shdr * Section,
1224*e5fd0047SMichael J. Spencer                                                      uint32_t Entry) const {
1225022ecdf2SBenjamin Kramer   return reinterpret_cast<const T *>(
1226ec29b121SMichael J. Spencer            base()
1227*e5fd0047SMichael J. Spencer            + Section->sh_offset
1228*e5fd0047SMichael J. Spencer            + (Entry * Section->sh_entsize));
1229022ecdf2SBenjamin Kramer }
1230022ecdf2SBenjamin Kramer 
1231022ecdf2SBenjamin Kramer template<support::endianness target_endianness, bool is64Bits>
1232022ecdf2SBenjamin Kramer const typename ELFObjectFile<target_endianness, is64Bits>::Elf_Sym *
1233022ecdf2SBenjamin Kramer ELFObjectFile<target_endianness, is64Bits>::getSymbol(DataRefImpl Symb) const {
1234*e5fd0047SMichael J. Spencer   return getEntry<Elf_Sym>(SymbolTableSections[Symb.d.b], Symb.d.a);
1235022ecdf2SBenjamin Kramer }
1236022ecdf2SBenjamin Kramer 
1237022ecdf2SBenjamin Kramer template<support::endianness target_endianness, bool is64Bits>
1238022ecdf2SBenjamin Kramer const typename ELFObjectFile<target_endianness, is64Bits>::Elf_Rel *
1239022ecdf2SBenjamin Kramer ELFObjectFile<target_endianness, is64Bits>::getRel(DataRefImpl Rel) const {
1240*e5fd0047SMichael J. Spencer   return getEntry<Elf_Rel>(Rel.w.b, Rel.w.c);
1241022ecdf2SBenjamin Kramer }
1242022ecdf2SBenjamin Kramer 
1243022ecdf2SBenjamin Kramer template<support::endianness target_endianness, bool is64Bits>
1244022ecdf2SBenjamin Kramer const typename ELFObjectFile<target_endianness, is64Bits>::Elf_Rela *
1245022ecdf2SBenjamin Kramer ELFObjectFile<target_endianness, is64Bits>::getRela(DataRefImpl Rela) const {
1246*e5fd0047SMichael J. Spencer   return getEntry<Elf_Rela>(Rela.w.b, Rela.w.c);
1247b60a18deSMichael J. Spencer }
1248b60a18deSMichael J. Spencer 
1249b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
1250b60a18deSMichael J. Spencer const typename ELFObjectFile<target_endianness, is64Bits>::Elf_Shdr *
1251b60a18deSMichael J. Spencer ELFObjectFile<target_endianness, is64Bits>::getSection(DataRefImpl Symb) const {
12520324b672SMichael J. Spencer   const Elf_Shdr *sec = getSection(Symb.d.b);
1253*e5fd0047SMichael J. Spencer   if (sec->sh_type != ELF::SHT_SYMTAB || sec->sh_type != ELF::SHT_DYNSYM)
1254b60a18deSMichael J. Spencer     // FIXME: Proper error handling.
1255b60a18deSMichael J. Spencer     report_fatal_error("Invalid symbol table section!");
1256b60a18deSMichael J. Spencer   return sec;
1257b60a18deSMichael J. Spencer }
1258b60a18deSMichael J. Spencer 
1259b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
1260b60a18deSMichael J. Spencer const typename ELFObjectFile<target_endianness, is64Bits>::Elf_Shdr *
1261b60a18deSMichael J. Spencer ELFObjectFile<target_endianness, is64Bits>::getSection(uint16_t index) const {
1262b60a18deSMichael J. Spencer   if (index == 0 || index >= ELF::SHN_LORESERVE)
1263b60a18deSMichael J. Spencer     return 0;
1264b60a18deSMichael J. Spencer   if (!SectionHeaderTable || index >= Header->e_shnum)
1265b60a18deSMichael J. Spencer     // FIXME: Proper error handling.
1266b60a18deSMichael J. Spencer     report_fatal_error("Invalid section index!");
1267b60a18deSMichael J. Spencer 
1268b60a18deSMichael J. Spencer   return reinterpret_cast<const Elf_Shdr *>(
1269b60a18deSMichael J. Spencer          reinterpret_cast<const char *>(SectionHeaderTable)
1270b60a18deSMichael J. Spencer          + (index * Header->e_shentsize));
1271b60a18deSMichael J. Spencer }
1272b60a18deSMichael J. Spencer 
1273b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
1274b60a18deSMichael J. Spencer const char *ELFObjectFile<target_endianness, is64Bits>
1275b60a18deSMichael J. Spencer                          ::getString(uint16_t section,
1276b60a18deSMichael J. Spencer                                      ELF::Elf32_Word offset) const {
1277b60a18deSMichael J. Spencer   return getString(getSection(section), offset);
1278b60a18deSMichael J. Spencer }
1279b60a18deSMichael J. Spencer 
1280b60a18deSMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
1281b60a18deSMichael J. Spencer const char *ELFObjectFile<target_endianness, is64Bits>
1282b60a18deSMichael J. Spencer                          ::getString(const Elf_Shdr *section,
1283b60a18deSMichael J. Spencer                                      ELF::Elf32_Word offset) const {
1284b60a18deSMichael J. Spencer   assert(section && section->sh_type == ELF::SHT_STRTAB && "Invalid section!");
1285b60a18deSMichael J. Spencer   if (offset >= section->sh_size)
1286b60a18deSMichael J. Spencer     // FIXME: Proper error handling.
1287ec29b121SMichael J. Spencer     report_fatal_error("Symbol name offset outside of string table!");
1288ec29b121SMichael J. Spencer   return (const char *)base() + section->sh_offset + offset;
1289b60a18deSMichael J. Spencer }
1290b60a18deSMichael J. Spencer 
1291*e5fd0047SMichael J. Spencer template<support::endianness target_endianness, bool is64Bits>
1292*e5fd0047SMichael J. Spencer error_code ELFObjectFile<target_endianness, is64Bits>
1293*e5fd0047SMichael J. Spencer                         ::getSymbolName(const Elf_Sym *symb,
1294*e5fd0047SMichael J. Spencer                                         StringRef &Result) const {
1295*e5fd0047SMichael J. Spencer   if (symb->st_name == 0) {
1296*e5fd0047SMichael J. Spencer     const Elf_Shdr *section = getSection(symb->st_shndx);
1297*e5fd0047SMichael J. Spencer     if (!section)
1298*e5fd0047SMichael J. Spencer       Result = "";
1299*e5fd0047SMichael J. Spencer     else
1300*e5fd0047SMichael J. Spencer       Result = getString(dot_shstrtab_sec, section->sh_name);
1301*e5fd0047SMichael J. Spencer     return object_error::success;
1302*e5fd0047SMichael J. Spencer   }
1303*e5fd0047SMichael J. Spencer 
1304*e5fd0047SMichael J. Spencer   // Use the default symbol table name section.
1305*e5fd0047SMichael J. Spencer   Result = getString(dot_strtab_sec, symb->st_name);
1306*e5fd0047SMichael J. Spencer   return object_error::success;
1307*e5fd0047SMichael J. Spencer }
1308*e5fd0047SMichael J. Spencer 
1309b60a18deSMichael J. Spencer // EI_CLASS, EI_DATA.
1310b60a18deSMichael J. Spencer static std::pair<unsigned char, unsigned char>
1311b60a18deSMichael J. Spencer getElfArchType(MemoryBuffer *Object) {
1312b60a18deSMichael J. Spencer   if (Object->getBufferSize() < ELF::EI_NIDENT)
1313b60a18deSMichael J. Spencer     return std::make_pair((uint8_t)ELF::ELFCLASSNONE,(uint8_t)ELF::ELFDATANONE);
1314b60a18deSMichael J. Spencer   return std::make_pair( (uint8_t)Object->getBufferStart()[ELF::EI_CLASS]
1315b60a18deSMichael J. Spencer                        , (uint8_t)Object->getBufferStart()[ELF::EI_DATA]);
1316b60a18deSMichael J. Spencer }
1317b60a18deSMichael J. Spencer 
1318b60a18deSMichael J. Spencer namespace llvm {
1319b60a18deSMichael J. Spencer 
1320b60a18deSMichael J. Spencer   ObjectFile *ObjectFile::createELFObjectFile(MemoryBuffer *Object) {
1321b60a18deSMichael J. Spencer     std::pair<unsigned char, unsigned char> Ident = getElfArchType(Object);
1322ec29b121SMichael J. Spencer     error_code ec;
1323b60a18deSMichael J. Spencer     if (Ident.first == ELF::ELFCLASS32 && Ident.second == ELF::ELFDATA2LSB)
1324ec29b121SMichael J. Spencer       return new ELFObjectFile<support::little, false>(Object, ec);
1325b60a18deSMichael J. Spencer     else if (Ident.first == ELF::ELFCLASS32 && Ident.second == ELF::ELFDATA2MSB)
1326ec29b121SMichael J. Spencer       return new ELFObjectFile<support::big, false>(Object, ec);
1327b60a18deSMichael J. Spencer     else if (Ident.first == ELF::ELFCLASS64 && Ident.second == ELF::ELFDATA2LSB)
1328ec29b121SMichael J. Spencer       return new ELFObjectFile<support::little, true>(Object, ec);
1329b60a18deSMichael J. Spencer     else if (Ident.first == ELF::ELFCLASS64 && Ident.second == ELF::ELFDATA2MSB)
1330ec29b121SMichael J. Spencer       return new ELFObjectFile<support::big, true>(Object, ec);
1331b60a18deSMichael J. Spencer     // FIXME: Proper error handling.
1332b60a18deSMichael J. Spencer     report_fatal_error("Not an ELF object file!");
1333b60a18deSMichael J. Spencer   }
1334b60a18deSMichael J. Spencer 
1335b60a18deSMichael J. Spencer } // end namespace llvm
1336