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Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +00001//===-- lib/CodeGen/ELF.h - ELF constants and data structures ---*- C++ -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This header contains common, non-processor-specific data structures and
11// constants for the ELF file format.
12//
Bruno Cardoso Lopesae9163f2009-06-14 07:53:21 +000013// The details of the ELF32 bits in this file are largely based on the Tool
14// Interface Standard (TIS) Executable and Linking Format (ELF) Specification
15// Version 1.2, May 1995. The ELF64 is based on HP/Intel definition of the
16// ELF-64 object file format document, Version 1.5 Draft 2 May 27, 1998
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +000017//
18//===----------------------------------------------------------------------===//
19
20#ifndef CODEGEN_ELF_H
21#define CODEGEN_ELF_H
22
Bruno Cardoso Lopesae9163f2009-06-14 07:53:21 +000023#include "llvm/CodeGen/BinaryObject.h"
Bruno Cardoso Lopesa029a272009-06-07 21:22:38 +000024#include "llvm/CodeGen/MachineRelocation.h"
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +000025#include "llvm/Support/DataTypes.h"
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +000026
27namespace llvm {
Bruno Cardoso Lopes45f5d642009-07-02 18:29:24 +000028 class GlobalValue;
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +000029
30 // Identification Indexes
31 enum {
32 EI_MAG0 = 0,
33 EI_MAG1 = 1,
34 EI_MAG2 = 2,
35 EI_MAG3 = 3
36 };
37
38 // File types
39 enum {
40 ET_NONE = 0, // No file type
41 ET_REL = 1, // Relocatable file
42 ET_EXEC = 2, // Executable file
43 ET_DYN = 3, // Shared object file
44 ET_CORE = 4, // Core file
45 ET_LOPROC = 0xff00, // Beginning of processor-specific codes
46 ET_HIPROC = 0xffff // Processor-specific
47 };
48
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +000049 // Versioning
50 enum {
51 EV_NONE = 0,
52 EV_CURRENT = 1
53 };
54
55 /// ELFSection - This struct contains information about each section that is
56 /// emitted to the file. This is eventually turned into the section header
57 /// table at the end of the file.
Bruno Cardoso Lopesae9163f2009-06-14 07:53:21 +000058 class ELFSection : public BinaryObject {
59 public:
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +000060 // ELF specific fields
Bruno Cardoso Lopesc997d452009-06-11 19:16:03 +000061 unsigned NameIdx; // sh_name - .shstrtab idx of name, once emitted.
62 unsigned Type; // sh_type - Section contents & semantics
63 unsigned Flags; // sh_flags - Section flags.
64 uint64_t Addr; // sh_addr - The mem addr this section is in.
65 unsigned Offset; // sh_offset - Offset from the file start
66 unsigned Size; // sh_size - The section size.
67 unsigned Link; // sh_link - Section header table index link.
68 unsigned Info; // sh_info - Auxillary information.
69 unsigned Align; // sh_addralign - Alignment of section.
70 unsigned EntSize; // sh_entsize - Size of entries in the section e
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +000071
72 // Section Header Flags
73 enum {
74 SHF_WRITE = 1 << 0, // Writable
75 SHF_ALLOC = 1 << 1, // Mapped into the process addr space
76 SHF_EXECINSTR = 1 << 2, // Executable
77 SHF_MERGE = 1 << 4, // Might be merged if equal
78 SHF_STRINGS = 1 << 5, // Contains null-terminated strings
79 SHF_INFO_LINK = 1 << 6, // 'sh_info' contains SHT index
80 SHF_LINK_ORDER = 1 << 7, // Preserve order after combining
81 SHF_OS_NONCONFORMING = 1 << 8, // nonstandard OS support required
82 SHF_GROUP = 1 << 9, // Section is a member of a group
83 SHF_TLS = 1 << 10 // Section holds thread-local data
84 };
85
86 // Section Types
87 enum {
88 SHT_NULL = 0, // No associated section (inactive entry).
89 SHT_PROGBITS = 1, // Program-defined contents.
90 SHT_SYMTAB = 2, // Symbol table.
91 SHT_STRTAB = 3, // String table.
92 SHT_RELA = 4, // Relocation entries; explicit addends.
93 SHT_HASH = 5, // Symbol hash table.
94 SHT_DYNAMIC = 6, // Information for dynamic linking.
95 SHT_NOTE = 7, // Information about the file.
96 SHT_NOBITS = 8, // Data occupies no space in the file.
97 SHT_REL = 9, // Relocation entries; no explicit addends.
98 SHT_SHLIB = 10, // Reserved.
99 SHT_DYNSYM = 11, // Symbol table.
Bruno Cardoso Lopesae9163f2009-06-14 07:53:21 +0000100 SHT_LOPROC = 0x70000000, // Lowest processor arch-specific type.
101 SHT_HIPROC = 0x7fffffff, // Highest processor arch-specific type.
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +0000102 SHT_LOUSER = 0x80000000, // Lowest type reserved for applications.
103 SHT_HIUSER = 0xffffffff // Highest type reserved for applications.
104 };
105
106 // Special section indices.
107 enum {
Bruno Cardoso Lopesa029a272009-06-07 21:22:38 +0000108 SHN_UNDEF = 0, // Undefined, missing, irrelevant
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +0000109 SHN_LORESERVE = 0xff00, // Lowest reserved index
110 SHN_LOPROC = 0xff00, // Lowest processor-specific index
111 SHN_HIPROC = 0xff1f, // Highest processor-specific index
Bruno Cardoso Lopesa029a272009-06-07 21:22:38 +0000112 SHN_ABS = 0xfff1, // Symbol has absolute value; no relocation
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +0000113 SHN_COMMON = 0xfff2, // FORTRAN COMMON or C external global variables
114 SHN_HIRESERVE = 0xffff // Highest reserved index
115 };
116
117 /// SectionIdx - The number of the section in the Section Table.
118 unsigned short SectionIdx;
119
Bruno Cardoso Lopesae9163f2009-06-14 07:53:21 +0000120 ELFSection(const std::string &name, bool isLittleEndian, bool is64Bit)
121 : BinaryObject(name, isLittleEndian, is64Bit), Type(0), Flags(0), Addr(0),
122 Offset(0), Size(0), Link(0), Info(0), Align(0), EntSize(0) {}
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +0000123 };
124
125 /// ELFSym - This struct contains information about each symbol that is
126 /// added to logical symbol table for the module. This is eventually
127 /// turned into a real symbol table in the file.
128 struct ELFSym {
Bruno Cardoso Lopes0d3193e2009-06-22 19:16:16 +0000129 // The global value this corresponds to. Global symbols can be on of the
130 // 3 types : if this symbol has a zero initializer, it is common or should
131 // be placed in bss section otherwise it's a constant.
132 const GlobalValue *GV;
133 bool IsCommon;
134 bool IsBss;
135 bool IsConstant;
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +0000136
137 // ELF specific fields
138 unsigned NameIdx; // Index in .strtab of name, once emitted.
139 uint64_t Value;
140 unsigned Size;
141 uint8_t Info;
142 uint8_t Other;
143 unsigned short SectionIdx;
144
Bruno Cardoso Lopesa5e0abd2009-06-25 07:36:24 +0000145 // Symbol index into the Symbol table
146 unsigned SymTabIdx;
147
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +0000148 enum {
149 STB_LOCAL = 0,
150 STB_GLOBAL = 1,
151 STB_WEAK = 2
152 };
153
154 enum {
155 STT_NOTYPE = 0,
156 STT_OBJECT = 1,
157 STT_FUNC = 2,
158 STT_SECTION = 3,
159 STT_FILE = 4
160 };
161
Bruno Cardoso Lopesc997d452009-06-11 19:16:03 +0000162 enum {
163 STV_DEFAULT = 0, // Visibility is specified by binding type
164 STV_INTERNAL = 1, // Defined by processor supplements
165 STV_HIDDEN = 2, // Not visible to other components
166 STV_PROTECTED = 3 // Visible in other components but not preemptable
167 };
168
Bruno Cardoso Lopes0d3193e2009-06-22 19:16:16 +0000169 ELFSym(const GlobalValue *gv) : GV(gv), IsCommon(false), IsBss(false),
170 IsConstant(false), NameIdx(0), Value(0),
171 Size(0), Info(0), Other(STV_DEFAULT),
Bruno Cardoso Lopesa5e0abd2009-06-25 07:36:24 +0000172 SectionIdx(ELFSection::SHN_UNDEF),
Bruno Cardoso Lopes45f5d642009-07-02 18:29:24 +0000173 SymTabIdx(0) {}
Bruno Cardoso Lopesc997d452009-06-11 19:16:03 +0000174
Bruno Cardoso Lopes45f5d642009-07-02 18:29:24 +0000175 unsigned getBind() { return (Info >> 4) & 0xf; }
176 unsigned getType() { return Info & 0xf; }
Bruno Cardoso Lopesa5e0abd2009-06-25 07:36:24 +0000177
Bruno Cardoso Lopes0d3193e2009-06-22 19:16:16 +0000178 void setBind(unsigned X) {
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +0000179 assert(X == (X & 0xF) && "Bind value out of range!");
180 Info = (Info & 0x0F) | (X << 4);
181 }
Bruno Cardoso Lopes45f5d642009-07-02 18:29:24 +0000182
Bruno Cardoso Lopes0d3193e2009-06-22 19:16:16 +0000183 void setType(unsigned X) {
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +0000184 assert(X == (X & 0xF) && "Type value out of range!");
185 Info = (Info & 0xF0) | X;
186 }
Bruno Cardoso Lopes45f5d642009-07-02 18:29:24 +0000187
188 void setVisibility(unsigned V) {
189 assert(V == (V & 0x3) && "Type value out of range!");
190 Other = V;
191 }
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +0000192 };
193
Bruno Cardoso Lopes0d3193e2009-06-22 19:16:16 +0000194 /// ELFRelocation - This class contains all the information necessary to
195 /// to generate any 32-bit or 64-bit ELF relocation entry.
196 class ELFRelocation {
197 uint64_t r_offset; // offset in the section of the object this applies to
198 uint32_t r_symidx; // symbol table index of the symbol to use
199 uint32_t r_type; // machine specific relocation type
200 int64_t r_add; // explicit relocation addend
201 bool r_rela; // if true then the addend is part of the entry
202 // otherwise the addend is at the location specified
203 // by r_offset
204 public:
205 uint64_t getInfo(bool is64Bit) const {
206 if (is64Bit)
207 return ((uint64_t)r_symidx << 32) + ((uint64_t)r_type & 0xFFFFFFFFL);
208 else
209 return (r_symidx << 8) + (r_type & 0xFFL);
210 }
211
212 uint64_t getOffset() const { return r_offset; }
213 int64_t getAddend() const { return r_add; }
214
215 ELFRelocation(uint64_t off, uint32_t sym, uint32_t type,
216 bool rela = true, int64_t addend = 0) :
217 r_offset(off), r_symidx(sym), r_type(type),
218 r_add(addend), r_rela(rela) {}
219 };
220
Bruno Cardoso Lopesf5b0c5a2009-06-06 03:56:29 +0000221} // end namespace llvm
222
223#endif