]> sourceware.org Git - glibc.git/blame - elf/elf.h
2001-10-10 Jeff Bailey <jbailey@nisa.net>
[glibc.git] / elf / elf.h
CommitLineData
28f540f4 1/* This file defines standard ELF types, structures, and macros.
2e42b53c 2 Copyright (C) 1995-1999, 2000, 2001 Free Software Foundation, Inc.
54d79e99 3 This file is part of the GNU C Library.
28f540f4 4
54d79e99 5 The GNU C Library is free software; you can redistribute it and/or
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6 modify it under the terms of the GNU Lesser General Public
7 License as published by the Free Software Foundation; either
8 version 2.1 of the License, or (at your option) any later version.
28f540f4 9
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10 The GNU C Library is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
41bdb6e2 13 Lesser General Public License for more details.
28f540f4 14
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15 You should have received a copy of the GNU Lesser General Public
16 License along with the GNU C Library; if not, write to the Free
17 Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
18 02111-1307 USA. */
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19
20#ifndef _ELF_H
21#define _ELF_H 1
5107cf1d 22
c0fb8a56 23#include <features.h>
28f540f4 24
54d79e99 25__BEGIN_DECLS
28f540f4 26
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27/* Standard ELF types. */
28
c0fb8a56 29#include <stdint.h>
28f540f4 30
266180eb 31/* Type for a 16-bit quantity. */
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32typedef uint16_t Elf32_Half;
33typedef uint16_t Elf64_Half;
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34
35/* Types for signed and unsigned 32-bit quantities. */
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36typedef uint32_t Elf32_Word;
37typedef int32_t Elf32_Sword;
38typedef uint32_t Elf64_Word;
39typedef int32_t Elf64_Sword;
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40
41/* Types for signed and unsigned 64-bit quantities. */
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42typedef uint64_t Elf32_Xword;
43typedef int64_t Elf32_Sxword;
44typedef uint64_t Elf64_Xword;
45typedef int64_t Elf64_Sxword;
28f540f4 46
266180eb 47/* Type of addresses. */
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48typedef uint32_t Elf32_Addr;
49typedef uint64_t Elf64_Addr;
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50
51/* Type of file offsets. */
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52typedef uint32_t Elf32_Off;
53typedef uint64_t Elf64_Off;
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54
55/* Type for section indices, which are 16-bit quantities. */
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56typedef uint16_t Elf32_Section;
57typedef uint16_t Elf64_Section;
266180eb 58
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59/* Type for version symbol information. */
60typedef Elf32_Half Elf32_Versym;
61typedef Elf64_Half Elf64_Versym;
62
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63
64/* The ELF file header. This appears at the start of every ELF file. */
65
66#define EI_NIDENT (16)
67
68typedef struct
69{
70 unsigned char e_ident[EI_NIDENT]; /* Magic number and other info */
71 Elf32_Half e_type; /* Object file type */
72 Elf32_Half e_machine; /* Architecture */
73 Elf32_Word e_version; /* Object file version */
74 Elf32_Addr e_entry; /* Entry point virtual address */
75 Elf32_Off e_phoff; /* Program header table file offset */
76 Elf32_Off e_shoff; /* Section header table file offset */
77 Elf32_Word e_flags; /* Processor-specific flags */
78 Elf32_Half e_ehsize; /* ELF header size in bytes */
79 Elf32_Half e_phentsize; /* Program header table entry size */
80 Elf32_Half e_phnum; /* Program header table entry count */
81 Elf32_Half e_shentsize; /* Section header table entry size */
82 Elf32_Half e_shnum; /* Section header table entry count */
83 Elf32_Half e_shstrndx; /* Section header string table index */
84} Elf32_Ehdr;
85
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86typedef struct
87{
88 unsigned char e_ident[EI_NIDENT]; /* Magic number and other info */
89 Elf64_Half e_type; /* Object file type */
90 Elf64_Half e_machine; /* Architecture */
91 Elf64_Word e_version; /* Object file version */
92 Elf64_Addr e_entry; /* Entry point virtual address */
93 Elf64_Off e_phoff; /* Program header table file offset */
94 Elf64_Off e_shoff; /* Section header table file offset */
95 Elf64_Word e_flags; /* Processor-specific flags */
96 Elf64_Half e_ehsize; /* ELF header size in bytes */
97 Elf64_Half e_phentsize; /* Program header table entry size */
98 Elf64_Half e_phnum; /* Program header table entry count */
99 Elf64_Half e_shentsize; /* Section header table entry size */
100 Elf64_Half e_shnum; /* Section header table entry count */
101 Elf64_Half e_shstrndx; /* Section header string table index */
102} Elf64_Ehdr;
103
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104/* Fields in the e_ident array. The EI_* macros are indices into the
105 array. The macros under each EI_* macro are the values the byte
106 may have. */
107
108#define EI_MAG0 0 /* File identification byte 0 index */
109#define ELFMAG0 0x7f /* Magic number byte 0 */
110
111#define EI_MAG1 1 /* File identification byte 1 index */
112#define ELFMAG1 'E' /* Magic number byte 1 */
113
114#define EI_MAG2 2 /* File identification byte 2 index */
115#define ELFMAG2 'L' /* Magic number byte 2 */
116
117#define EI_MAG3 3 /* File identification byte 3 index */
118#define ELFMAG3 'F' /* Magic number byte 3 */
119
b7976c00 120/* Conglomeration of the identification bytes, for easy testing as a word. */
75598ca6 121#define ELFMAG "\177ELF"
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122#define SELFMAG 4
123
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124#define EI_CLASS 4 /* File class byte index */
125#define ELFCLASSNONE 0 /* Invalid class */
126#define ELFCLASS32 1 /* 32-bit objects */
127#define ELFCLASS64 2 /* 64-bit objects */
2888c738 128#define ELFCLASSNUM 3
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129
130#define EI_DATA 5 /* Data encoding byte index */
131#define ELFDATANONE 0 /* Invalid data encoding */
132#define ELFDATA2LSB 1 /* 2's complement, little endian */
133#define ELFDATA2MSB 2 /* 2's complement, big endian */
2888c738 134#define ELFDATANUM 3
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135
136#define EI_VERSION 6 /* File version byte index */
137 /* Value must be EV_CURRENT */
138
5d7de7aa 139#define EI_OSABI 7 /* OS ABI identification */
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140#define ELFOSABI_NONE 0 /* UNIX System V ABI */
141#define ELFOSABI_SYSV 0 /* Alias. */
5d7de7aa 142#define ELFOSABI_HPUX 1 /* HP-UX */
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143#define ELFOSABI_NETBSD 2 /* NetBSD. */
144#define ELFOSABI_LINUX 3 /* Linux. */
145#define ELFOSABI_SOLARIS 6 /* Sun Solaris. */
146#define ELFOSABI_AIX 7 /* IBM AIX. */
147#define ELFOSABI_IRIX 8 /* SGI Irix. */
148#define ELFOSABI_FREEBSD 9 /* FreeBSD. */
149#define ELFOSABI_TRU64 10 /* Compaq TRU64 UNIX. */
150#define ELFOSABI_MODESTO 11 /* Novell Modesto. */
151#define ELFOSABI_OPENBSD 12 /* OpenBSD. */
e79137b2 152#define ELFOSABI_ARM 97 /* ARM */
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153#define ELFOSABI_STANDALONE 255 /* Standalone (embedded) application */
154
155#define EI_ABIVERSION 8 /* ABI version */
156
157#define EI_PAD 9 /* Byte index of padding bytes */
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158
159/* Legal values for e_type (object file type). */
160
161#define ET_NONE 0 /* No file type */
162#define ET_REL 1 /* Relocatable file */
163#define ET_EXEC 2 /* Executable file */
164#define ET_DYN 3 /* Shared object file */
165#define ET_CORE 4 /* Core file */
b2eda92b 166#define ET_NUM 5 /* Number of defined types */
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167#define ET_LOOS 0xfe00 /* OS-specific range start */
168#define ET_HIOS 0xfeff /* OS-specific range end */
169#define ET_LOPROC 0xff00 /* Processor-specific range start */
170#define ET_HIPROC 0xffff /* Processor-specific range end */
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171
172/* Legal values for e_machine (architecture). */
173
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174#define EM_NONE 0 /* No machine */
175#define EM_M32 1 /* AT&T WE 32100 */
176#define EM_SPARC 2 /* SUN SPARC */
177#define EM_386 3 /* Intel 80386 */
178#define EM_68K 4 /* Motorola m68k family */
179#define EM_88K 5 /* Motorola m88k family */
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180#define EM_860 7 /* Intel 80860 */
181#define EM_MIPS 8 /* MIPS R3000 big-endian */
a3d655ca 182#define EM_S370 9 /* IBM System/370 */
10507e55 183#define EM_MIPS_RS3_LE 10 /* MIPS R3000 little-endian */
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184
185#define EM_PARISC 15 /* HPPA */
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186#define EM_VPP500 17 /* Fujitsu VPP500 */
187#define EM_SPARC32PLUS 18 /* Sun's "v8plus" */
188#define EM_960 19 /* Intel 80960 */
189#define EM_PPC 20 /* PowerPC */
eea1a8cf 190#define EM_PPC64 21 /* PowerPC 64-bit */
9672b937 191#define EM_S390 22 /* IBM S390 */
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192
193#define EM_V800 36 /* NEC V800 series */
194#define EM_FR20 37 /* Fujitsu FR20 */
10507e55 195#define EM_RH32 38 /* TRW RH-32 */
eea1a8cf 196#define EM_RCE 39 /* Motorola RCE */
bf7997b6 197#define EM_ARM 40 /* ARM */
b259e746 198#define EM_FAKE_ALPHA 41 /* Digital Alpha */
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199#define EM_SH 42 /* Hitachi SH */
200#define EM_SPARCV9 43 /* SPARC v9 64-bit */
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201#define EM_TRICORE 44 /* Siemens Tricore */
202#define EM_ARC 45 /* Argonaut RISC Core */
203#define EM_H8_300 46 /* Hitachi H8/300 */
204#define EM_H8_300H 47 /* Hitachi H8/300H */
205#define EM_H8S 48 /* Hitachi H8S */
206#define EM_H8_500 49 /* Hitachi H8/500 */
207#define EM_IA_64 50 /* Intel Merced */
208#define EM_MIPS_X 51 /* Stanford MIPS-X */
209#define EM_COLDFIRE 52 /* Motorola Coldfire */
210#define EM_68HC12 53 /* Motorola M68HC12 */
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211#define EM_MMA 54 /* Fujitsu MMA Multimedia Accelerator*/
212#define EM_PCP 55 /* Siemens PCP */
213#define EM_NCPU 56 /* Sony nCPU embeeded RISC */
214#define EM_NDR1 57 /* Denso NDR1 microprocessor */
215#define EM_STARCORE 58 /* Motorola Start*Core processor */
216#define EM_ME16 59 /* Toyota ME16 processor */
217#define EM_ST100 60 /* STMicroelectronic ST100 processor */
218#define EM_TINYJ 61 /* Advanced Logic Corp. Tinyj emb.fam*/
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219#define EM_X86_64 62 /* AMD x86-64 architecture */
220#define EM_PDSP 63 /* Sony DSP Processor */
10507e55 221
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222#define EM_FX66 66 /* Siemens FX66 microcontroller */
223#define EM_ST9PLUS 67 /* STMicroelectronics ST9+ 8/16 mc */
224#define EM_ST7 68 /* STmicroelectronics ST7 8 bit mc */
225#define EM_68HC16 69 /* Motorola MC68HC16 microcontroller */
226#define EM_68HC11 70 /* Motorola MC68HC11 microcontroller */
227#define EM_68HC08 71 /* Motorola MC68HC08 microcontroller */
228#define EM_68HC05 72 /* Motorola MC68HC05 microcontroller */
229#define EM_SVX 73 /* Silicon Graphics SVx */
230#define EM_AT19 74 /* STMicroelectronics ST19 8 bit mc */
6fba2b2b 231#define EM_VAX 75 /* Digital VAX */
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232#define EM_CRIS 76 /* Axis Communications 32-bit embedded processor */
233#define EM_JAVELIN 77 /* Infineon Technologies 32-bit embedded processor */
234#define EM_FIREPATH 78 /* Element 14 64-bit DSP Processor */
235#define EM_ZSP 79 /* LSI Logic 16-bit DSP Processor */
236#define EM_MMIX 80 /* Donald Knuth's educational 64-bit processor */
237#define EM_HUANY 81 /* Harvard University machine-independent object files */
238#define EM_PRISM 82 /* SiTera Prism */
239#define EM_AVR 83 /* Atmel AVR 8-bit microcontroller */
240#define EM_FR30 84 /* Fujitsu FR30 */
241#define EM_D10V 85 /* Mitsubishi D10V */
242#define EM_D30V 86 /* Mitsubishi D30V */
243#define EM_V850 87 /* NEC v850 */
244#define EM_M32R 88 /* Mitsubishi M32R */
245#define EM_MN10300 89 /* Matsushita MN10300 */
246#define EM_MN10200 90 /* Matsushita MN10200 */
247#define EM_PJ 91 /* picoJava */
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248#define EM_OPENRISC 92 /* OpenRISC 32-bit embedded processor */
249#define EM_ARC_A5 93 /* ARC Cores Tangent-A5 */
250#define EM_XTENSA 94 /* Tensilica Xtensa Architecture */
251#define EM_NUM 95
4194bc66 252
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253/* If it is necessary to assign new unofficial EM_* values, please
254 pick large random numbers (0x8523, 0xa7f2, etc.) to minimize the
255 chances of collision with official or non-GNU unofficial values. */
256
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257#define EM_ALPHA 0x9026
258
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259/* Legal values for e_version (version). */
260
261#define EV_NONE 0 /* Invalid ELF version */
262#define EV_CURRENT 1 /* Current version */
2888c738 263#define EV_NUM 2
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264
265/* Section header. */
266
267typedef struct
268{
269 Elf32_Word sh_name; /* Section name (string tbl index) */
270 Elf32_Word sh_type; /* Section type */
271 Elf32_Word sh_flags; /* Section flags */
272 Elf32_Addr sh_addr; /* Section virtual addr at execution */
273 Elf32_Off sh_offset; /* Section file offset */
274 Elf32_Word sh_size; /* Section size in bytes */
275 Elf32_Word sh_link; /* Link to another section */
276 Elf32_Word sh_info; /* Additional section information */
277 Elf32_Word sh_addralign; /* Section alignment */
278 Elf32_Word sh_entsize; /* Entry size if section holds table */
279} Elf32_Shdr;
280
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281typedef struct
282{
283 Elf64_Word sh_name; /* Section name (string tbl index) */
284 Elf64_Word sh_type; /* Section type */
285 Elf64_Xword sh_flags; /* Section flags */
286 Elf64_Addr sh_addr; /* Section virtual addr at execution */
287 Elf64_Off sh_offset; /* Section file offset */
288 Elf64_Xword sh_size; /* Section size in bytes */
289 Elf64_Word sh_link; /* Link to another section */
290 Elf64_Word sh_info; /* Additional section information */
291 Elf64_Xword sh_addralign; /* Section alignment */
292 Elf64_Xword sh_entsize; /* Entry size if section holds table */
293} Elf64_Shdr;
294
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295/* Special section indices. */
296
297#define SHN_UNDEF 0 /* Undefined section */
298#define SHN_LORESERVE 0xff00 /* Start of reserved indices */
299#define SHN_LOPROC 0xff00 /* Start of processor-specific */
300#define SHN_HIPROC 0xff1f /* End of processor-specific */
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301#define SHN_LOOS 0xff20 /* Start of OS-specific */
302#define SHN_HIOS 0xff3f /* End of OS-specific */
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303#define SHN_ABS 0xfff1 /* Associated symbol is absolute */
304#define SHN_COMMON 0xfff2 /* Associated symbol is common */
775106de 305#define SHN_XINDEX 0xffff /* Index is in extra table. */
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306#define SHN_HIRESERVE 0xffff /* End of reserved indices */
307
308/* Legal values for sh_type (section type). */
309
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310#define SHT_NULL 0 /* Section header table entry unused */
311#define SHT_PROGBITS 1 /* Program data */
312#define SHT_SYMTAB 2 /* Symbol table */
313#define SHT_STRTAB 3 /* String table */
314#define SHT_RELA 4 /* Relocation entries with addends */
315#define SHT_HASH 5 /* Symbol hash table */
316#define SHT_DYNAMIC 6 /* Dynamic linking information */
317#define SHT_NOTE 7 /* Notes */
318#define SHT_NOBITS 8 /* Program space with no data (bss) */
319#define SHT_REL 9 /* Relocation entries, no addends */
320#define SHT_SHLIB 10 /* Reserved */
321#define SHT_DYNSYM 11 /* Dynamic linker symbol table */
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322#define SHT_INIT_ARRAY 14 /* Array of constructors */
323#define SHT_FINI_ARRAY 15 /* Array of destructors */
324#define SHT_PREINIT_ARRAY 16 /* Array of pre-constructors */
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325#define SHT_GROUP 17 /* Section group */
326#define SHT_SYMTAB_SHNDX 18 /* Extended section indeces */
327#define SHT_NUM 19 /* Number of defined types. */
eea1a8cf 328#define SHT_LOOS 0x60000000 /* Start OS-specific */
5d916713 329#define SHT_CHECKSUM 0x6ffffff8 /* Checksum for DSO content. */
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330#define SHT_LOSUNW 0x6ffffffa /* Sun-specific low bound. */
331#define SHT_SUNW_move 0x6ffffffa
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332#define SHT_SUNW_COMDAT 0x6ffffffb
333#define SHT_SUNW_syminfo 0x6ffffffc
334#define SHT_GNU_verdef 0x6ffffffd /* Version definition section. */
335#define SHT_GNU_verneed 0x6ffffffe /* Version needs section. */
336#define SHT_GNU_versym 0x6fffffff /* Version symbol table. */
337#define SHT_HISUNW 0x6fffffff /* Sun-specific high bound. */
338#define SHT_HIOS 0x6fffffff /* End OS-specific type */
339#define SHT_LOPROC 0x70000000 /* Start of processor-specific */
340#define SHT_HIPROC 0x7fffffff /* End of processor-specific */
341#define SHT_LOUSER 0x80000000 /* Start of application-specific */
342#define SHT_HIUSER 0x8fffffff /* End of application-specific */
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343
344/* Legal values for sh_flags (section flags). */
345
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346#define SHF_WRITE (1 << 0) /* Writable */
347#define SHF_ALLOC (1 << 1) /* Occupies memory during execution */
348#define SHF_EXECINSTR (1 << 2) /* Executable */
349#define SHF_MERGE (1 << 4) /* Might be merged */
350#define SHF_STRINGS (1 << 5) /* Contains nul-terminated strings */
351#define SHF_INFO_LINK (1 << 6) /* `sh_info' contains SHT index */
352#define SHF_LINK_ORDER (1 << 7) /* Preserve order after combining */
353#define SHF_OS_NONCONFORMING (1 << 8) /* Non-standard OS specific handling
354 required */
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355#define SHF_GROUP (1 << 9) /* Section is member of a group. */
356#define SHF_TLS (1 << 10) /* Section hold thread-local data. */
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357#define SHF_MASKOS 0x0ff00000 /* OS-specific. */
358#define SHF_MASKPROC 0xf0000000 /* Processor-specific */
28f540f4 359
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360/* Section group handling. */
361#define GRP_COMDAT 0x1 /* Mark group as COMDAT. */
362
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363/* Symbol table entry. */
364
365typedef struct
366{
367 Elf32_Word st_name; /* Symbol name (string tbl index) */
368 Elf32_Addr st_value; /* Symbol value */
369 Elf32_Word st_size; /* Symbol size */
370 unsigned char st_info; /* Symbol type and binding */
eea1a8cf 371 unsigned char st_other; /* Symbol visibility */
266180eb 372 Elf32_Section st_shndx; /* Section index */
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373} Elf32_Sym;
374
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375typedef struct
376{
377 Elf64_Word st_name; /* Symbol name (string tbl index) */
378 unsigned char st_info; /* Symbol type and binding */
eea1a8cf 379 unsigned char st_other; /* Symbol visibility */
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380 Elf64_Section st_shndx; /* Section index */
381 Elf64_Addr st_value; /* Symbol value */
382 Elf64_Xword st_size; /* Symbol size */
383} Elf64_Sym;
384
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385/* The syminfo section if available contains additional information about
386 every dynamic symbol. */
387
388typedef struct
389{
390 Elf32_Half si_boundto; /* Direct bindings, symbol bound to */
391 Elf32_Half si_flags; /* Per symbol flags */
392} Elf32_Syminfo;
393
394typedef struct
395{
396 Elf64_Half si_boundto; /* Direct bindings, symbol bound to */
397 Elf64_Half si_flags; /* Per symbol flags */
398} Elf64_Syminfo;
399
400/* Possible values for si_boundto. */
401#define SYMINFO_BT_SELF 0xffff /* Symbol bound to self */
402#define SYMINFO_BT_PARENT 0xfffe /* Symbol bound to parent */
403#define SYMINFO_BT_LOWRESERVE 0xff00 /* Beginning of reserved entries */
404
405/* Possible bitmasks for si_flags. */
406#define SYMINFO_FLG_DIRECT 0x0001 /* Direct bound symbol */
407#define SYMINFO_FLG_PASSTHRU 0x0002 /* Pass-thru symbol for translator */
408#define SYMINFO_FLG_COPY 0x0004 /* Symbol is a copy-reloc */
409#define SYMINFO_FLG_LAZYLOAD 0x0008 /* Symbol bound to object to be lazy
410 loaded */
411/* Syminfo version values. */
412#define SYMINFO_NONE 0
413#define SYMINFO_CURRENT 1
414#define SYMINFO_NUM 2
415
416
b1f11361 417/* Special section index. */
28f540f4 418
b1f11361 419#define SHN_UNDEF 0 /* No section, undefined symbol. */
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420
421/* How to extract and insert information held in the st_info field. */
422
423#define ELF32_ST_BIND(val) (((unsigned char) (val)) >> 4)
424#define ELF32_ST_TYPE(val) ((val) & 0xf)
425#define ELF32_ST_INFO(bind, type) (((bind) << 4) + ((type) & 0xf))
426
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427/* Both Elf32_Sym and Elf64_Sym use the same one-byte st_info field. */
428#define ELF64_ST_BIND(val) ELF32_ST_BIND (val)
429#define ELF64_ST_TYPE(val) ELF32_ST_TYPE (val)
430#define ELF64_ST_INFO(bind, type) ELF32_ST_INFO ((bind), (type))
431
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432/* Legal values for ST_BIND subfield of st_info (symbol binding). */
433
434#define STB_LOCAL 0 /* Local symbol */
435#define STB_GLOBAL 1 /* Global symbol */
436#define STB_WEAK 2 /* Weak symbol */
787e4db9 437#define STB_NUM 3 /* Number of defined types. */
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438#define STB_LOOS 10 /* Start of OS-specific */
439#define STB_HIOS 12 /* End of OS-specific */
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440#define STB_LOPROC 13 /* Start of processor-specific */
441#define STB_HIPROC 15 /* End of processor-specific */
442
443/* Legal values for ST_TYPE subfield of st_info (symbol type). */
444
445#define STT_NOTYPE 0 /* Symbol type is unspecified */
446#define STT_OBJECT 1 /* Symbol is a data object */
447#define STT_FUNC 2 /* Symbol is a code object */
448#define STT_SECTION 3 /* Symbol associated with a section */
449#define STT_FILE 4 /* Symbol's name is file name */
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450#define STT_COMMON 5 /* Symbol is a common data object */
451#define STT_NUM 6 /* Number of defined types. */
452#define STT_LOOS 10 /* Start of OS-specific */
7ce241a0 453#define STT_HIOS 12 /* End of OS-specific */
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454#define STT_LOPROC 13 /* Start of processor-specific */
455#define STT_HIPROC 15 /* End of processor-specific */
456
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457
458/* Symbol table indices are found in the hash buckets and chain table
459 of a symbol hash table section. This special index value indicates
460 the end of a chain, meaning no further symbols are found in that bucket. */
461
462#define STN_UNDEF 0 /* End of a chain. */
463
464
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465/* How to extract and insert information held in the st_other field. */
466
467#define ELF32_ST_VISIBILITY(o) ((o) & 0x03)
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468
469/* For ELF64 the definitions are the same. */
470#define ELF64_ST_VISIBILITY(o) ELF32_ST_VISIBILITY (o)
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471
472/* Symbol visibility specification encoded in the st_other field. */
473#define STV_DEFAULT 0 /* Default symbol visibility rules */
474#define STV_INTERNAL 1 /* Processor specific hidden class */
475#define STV_HIDDEN 2 /* Sym unavailable in other modules */
476#define STV_PROTECTED 3 /* Not preemptible, not exported */
477
478
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479/* Relocation table entry without addend (in section of type SHT_REL). */
480
481typedef struct
482{
483 Elf32_Addr r_offset; /* Address */
484 Elf32_Word r_info; /* Relocation type and symbol index */
485} Elf32_Rel;
486
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487/* I have seen two different definitions of the Elf64_Rel and
488 Elf64_Rela structures, so we'll leave them out until Novell (or
489 whoever) gets their act together. */
490/* The following, at least, is used on Sparc v9, MIPS, and Alpha. */
491
492typedef struct
493{
494 Elf64_Addr r_offset; /* Address */
495 Elf64_Xword r_info; /* Relocation type and symbol index */
496} Elf64_Rel;
497
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498/* Relocation table entry with addend (in section of type SHT_RELA). */
499
500typedef struct
501{
502 Elf32_Addr r_offset; /* Address */
503 Elf32_Word r_info; /* Relocation type and symbol index */
504 Elf32_Sword r_addend; /* Addend */
505} Elf32_Rela;
506
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507typedef struct
508{
509 Elf64_Addr r_offset; /* Address */
510 Elf64_Xword r_info; /* Relocation type and symbol index */
511 Elf64_Sxword r_addend; /* Addend */
512} Elf64_Rela;
513
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514/* How to extract and insert information held in the r_info field. */
515
516#define ELF32_R_SYM(val) ((val) >> 8)
517#define ELF32_R_TYPE(val) ((val) & 0xff)
518#define ELF32_R_INFO(sym, type) (((sym) << 8) + ((type) & 0xff))
519
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520#define ELF64_R_SYM(i) ((i) >> 32)
521#define ELF64_R_TYPE(i) ((i) & 0xffffffff)
68979757 522#define ELF64_R_INFO(sym,type) ((((Elf64_Xword) (sym)) << 32) + (type))
0200214b 523
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524/* Program segment header. */
525
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526typedef struct
527{
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528 Elf32_Word p_type; /* Segment type */
529 Elf32_Off p_offset; /* Segment file offset */
530 Elf32_Addr p_vaddr; /* Segment virtual address */
531 Elf32_Addr p_paddr; /* Segment physical address */
532 Elf32_Word p_filesz; /* Segment size in file */
533 Elf32_Word p_memsz; /* Segment size in memory */
534 Elf32_Word p_flags; /* Segment flags */
535 Elf32_Word p_align; /* Segment alignment */
536} Elf32_Phdr;
537
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538typedef struct
539{
540 Elf64_Word p_type; /* Segment type */
541 Elf64_Word p_flags; /* Segment flags */
542 Elf64_Off p_offset; /* Segment file offset */
543 Elf64_Addr p_vaddr; /* Segment virtual address */
544 Elf64_Addr p_paddr; /* Segment physical address */
545 Elf64_Xword p_filesz; /* Segment size in file */
546 Elf64_Xword p_memsz; /* Segment size in memory */
547 Elf64_Xword p_align; /* Segment alignment */
548} Elf64_Phdr;
549
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550/* Legal values for p_type (segment type). */
551
552#define PT_NULL 0 /* Program header table entry unused */
553#define PT_LOAD 1 /* Loadable program segment */
554#define PT_DYNAMIC 2 /* Dynamic linking information */
555#define PT_INTERP 3 /* Program interpreter */
556#define PT_NOTE 4 /* Auxiliary information */
557#define PT_SHLIB 5 /* Reserved */
558#define PT_PHDR 6 /* Entry for header table itself */
577567c1 559#define PT_NUM 7 /* Number of defined types */
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560#define PT_LOOS 0x60000000 /* Start of OS-specific */
561#define PT_HIOS 0x6fffffff /* End of OS-specific */
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562#define PT_LOPROC 0x70000000 /* Start of processor-specific */
563#define PT_HIPROC 0x7fffffff /* End of processor-specific */
564
565/* Legal values for p_flags (segment flags). */
566
567#define PF_X (1 << 0) /* Segment is executable */
568#define PF_W (1 << 1) /* Segment is writable */
569#define PF_R (1 << 2) /* Segment is readable */
577567c1 570#define PF_MASKOS 0x0ff00000 /* OS-specific */
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571#define PF_MASKPROC 0xf0000000 /* Processor-specific */
572
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573/* Legal values for note segment descriptor types for core files. */
574
575#define NT_PRSTATUS 1 /* Contains copy of prstatus struct */
576#define NT_FPREGSET 2 /* Contains copy of fpregset struct */
577#define NT_PRPSINFO 3 /* Contains copy of prpsinfo struct */
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578#define NT_PRXREG 4 /* Contains copy of prxregset struct */
579#define NT_PLATFORM 5 /* String from sysinfo(SI_PLATFORM) */
580#define NT_AUXV 6 /* Contains copy of auxv array */
581#define NT_GWINDOWS 7 /* Contains copy of gwindows struct */
582#define NT_PSTATUS 10 /* Contains copy of pstatus struct */
583#define NT_PSINFO 13 /* Contains copy of psinfo struct */
584#define NT_PRCRED 14 /* Contains copy of prcred struct */
585#define NT_UTSNAME 15 /* Contains copy of utsname struct */
586#define NT_LWPSTATUS 16 /* Contains copy of lwpstatus struct */
587#define NT_LWPSINFO 17 /* Contains copy of lwpinfo struct */
756186e7 588#define NT_PRFPXREG 20 /* Contains copy of fprxregset struct*/
0200214b 589
d34c0a4a 590/* Legal values for the note segment descriptor types for object files. */
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591
592#define NT_VERSION 1 /* Contains a version string. */
593
594
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595/* Dynamic section entry. */
596
597typedef struct
598{
599 Elf32_Sword d_tag; /* Dynamic entry type */
600 union
601 {
602 Elf32_Word d_val; /* Integer value */
603 Elf32_Addr d_ptr; /* Address value */
604 } d_un;
605} Elf32_Dyn;
606
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607typedef struct
608{
609 Elf64_Sxword d_tag; /* Dynamic entry type */
610 union
611 {
612 Elf64_Xword d_val; /* Integer value */
613 Elf64_Addr d_ptr; /* Address value */
614 } d_un;
615} Elf64_Dyn;
616
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617/* Legal values for d_tag (dynamic entry type). */
618
619#define DT_NULL 0 /* Marks end of dynamic section */
620#define DT_NEEDED 1 /* Name of needed library */
621#define DT_PLTRELSZ 2 /* Size in bytes of PLT relocs */
622#define DT_PLTGOT 3 /* Processor defined value */
623#define DT_HASH 4 /* Address of symbol hash table */
624#define DT_STRTAB 5 /* Address of string table */
625#define DT_SYMTAB 6 /* Address of symbol table */
626#define DT_RELA 7 /* Address of Rela relocs */
627#define DT_RELASZ 8 /* Total size of Rela relocs */
628#define DT_RELAENT 9 /* Size of one Rela reloc */
629#define DT_STRSZ 10 /* Size of string table */
630#define DT_SYMENT 11 /* Size of one symbol table entry */
631#define DT_INIT 12 /* Address of init function */
632#define DT_FINI 13 /* Address of termination function */
633#define DT_SONAME 14 /* Name of shared object */
eea1a8cf 634#define DT_RPATH 15 /* Library search path (deprecated) */
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635#define DT_SYMBOLIC 16 /* Start symbol search here */
636#define DT_REL 17 /* Address of Rel relocs */
637#define DT_RELSZ 18 /* Total size of Rel relocs */
638#define DT_RELENT 19 /* Size of one Rel reloc */
639#define DT_PLTREL 20 /* Type of reloc in PLT */
640#define DT_DEBUG 21 /* For debugging; unspecified */
641#define DT_TEXTREL 22 /* Reloc might modify .text */
642#define DT_JMPREL 23 /* Address of PLT relocs */
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643#define DT_BIND_NOW 24 /* Process relocations of object */
644#define DT_INIT_ARRAY 25 /* Array with addresses of init fct */
645#define DT_FINI_ARRAY 26 /* Array with addresses of fini fct */
646#define DT_INIT_ARRAYSZ 27 /* Size in bytes of DT_INIT_ARRAY */
647#define DT_FINI_ARRAYSZ 28 /* Size in bytes of DT_FINI_ARRAY */
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648#define DT_RUNPATH 29 /* Library search path */
649#define DT_FLAGS 30 /* Flags for the object being loaded */
650#define DT_ENCODING 32 /* Start of encoded range */
651#define DT_PREINIT_ARRAY 32 /* Array with addresses of preinit fct*/
652#define DT_PREINIT_ARRAYSZ 33 /* size in bytes of DT_PREINIT_ARRAY */
653#define DT_NUM 34 /* Number used */
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654#define DT_LOOS 0x60000000 /* Start of OS-specific */
655#define DT_HIOS 0x6fffffff /* End of OS-specific */
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656#define DT_LOPROC 0x70000000 /* Start of processor-specific */
657#define DT_HIPROC 0x7fffffff /* End of processor-specific */
a2e1b046 658#define DT_PROCNUM DT_MIPS_NUM /* Most used by any processor */
28f540f4 659
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660/* DT_* entries which fall between DT_VALRNGHI & DT_VALRNGLO use the
661 Dyn.d_un.d_val field of the Elf*_Dyn structure. This follows Sun's
662 approach. */
663#define DT_VALRNGLO 0x6ffffd00
3f1866e3 664#define DT_CHECKSUM 0x6ffffdf8
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665#define DT_PLTPADSZ 0x6ffffdf9
666#define DT_MOVEENT 0x6ffffdfa
667#define DT_MOVESZ 0x6ffffdfb
bf8b3e74 668#define DT_FEATURE_1 0x6ffffdfc /* Feature selection (DTF_*). */
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669#define DT_POSFLAG_1 0x6ffffdfd /* Flags for DT_* entries, effecting
670 the following DT_* entry. */
671#define DT_SYMINSZ 0x6ffffdfe /* Size of syminfo table (in bytes) */
672#define DT_SYMINENT 0x6ffffdff /* Entry size of syminfo */
673#define DT_VALRNGHI 0x6ffffdff
674
675/* DT_* entries which fall between DT_ADDRRNGHI & DT_ADDRRNGLO use the
676 Dyn.d_un.d_ptr field of the Elf*_Dyn structure.
677
678 If any adjustment is made to the ELF object after it has been
679 built these entries will need to be adjusted. */
680#define DT_ADDRRNGLO 0x6ffffe00
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681#define DT_CONFIG 0x6ffffefa /* Configuration information. */
682#define DT_DEPAUDIT 0x6ffffefb /* Dependency auditing. */
683#define DT_AUDIT 0x6ffffefc /* Object auditing. */
684#define DT_PLTPAD 0x6ffffefd /* PLT padding. */
685#define DT_MOVETAB 0x6ffffefe /* Move table. */
686#define DT_SYMINFO 0x6ffffeff /* Syminfo table. */
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687#define DT_ADDRRNGHI 0x6ffffeff
688
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689/* The versioning entry types. The next are defined as part of the
690 GNU extension. */
691#define DT_VERSYM 0x6ffffff0
692
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693#define DT_RELACOUNT 0x6ffffff9
694#define DT_RELCOUNT 0x6ffffffa
695
1228ed5c 696/* These were chosen by Sun. */
e3e0315c 697#define DT_FLAGS_1 0x6ffffffb /* State flags, see DF_1_* below. */
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698#define DT_VERDEF 0x6ffffffc /* Address of version definition
699 table */
700#define DT_VERDEFNUM 0x6ffffffd /* Number of version definitions */
701#define DT_VERNEED 0x6ffffffe /* Address of table with needed
702 versions */
703#define DT_VERNEEDNUM 0x6fffffff /* Number of needed versions */
704#define DT_VERSIONTAGIDX(tag) (DT_VERNEEDNUM - (tag)) /* Reverse order! */
705#define DT_VERSIONTAGNUM 16
706
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707/* Sun added these machine-independent extensions in the "processor-specific"
708 range. Be compatible. */
709#define DT_AUXILIARY 0x7ffffffd /* Shared object to load before self */
710#define DT_FILTER 0x7fffffff /* Shared object to get values from */
711#define DT_EXTRATAGIDX(tag) ((Elf32_Word)-((Elf32_Sword) (tag) <<1>>1)-1)
712#define DT_EXTRANUM 3
713
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714/* Values of `d_un.d_val' in the DT_FLAGS entry. */
715#define DF_ORIGIN 0x00000001 /* Object may use DF_ORIGIN */
716#define DF_SYMBOLIC 0x00000002 /* Symbol resolutions starts here */
717#define DF_TEXTREL 0x00000004 /* Object contains text relocations */
718#define DF_BIND_NOW 0x00000008 /* No lazy binding for this object */
719
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720/* State flags selectable in the `d_un.d_val' element of the DT_FLAGS_1
721 entry in the dynamic section. */
722#define DF_1_NOW 0x00000001 /* Set RTLD_NOW for this object. */
723#define DF_1_GLOBAL 0x00000002 /* Set RTLD_GLOBAL for this object. */
724#define DF_1_GROUP 0x00000004 /* Set RTLD_GROUP for this object. */
725#define DF_1_NODELETE 0x00000008 /* Set RTLD_NODELETE for this object.*/
726#define DF_1_LOADFLTR 0x00000010 /* Trigger filtee loading at runtime.*/
727#define DF_1_INITFIRST 0x00000020 /* Set RTLD_INITFIRST for this object*/
728#define DF_1_NOOPEN 0x00000040 /* Set RTLD_NOOPEN for this object. */
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729#define DF_1_ORIGIN 0x00000080 /* $ORIGIN must be handled. */
730#define DF_1_DIRECT 0x00000100 /* Direct binding enabled. */
731#define DF_1_TRANS 0x00000200
732#define DF_1_INTERPOSE 0x00000400 /* Object is used to interpose. */
733#define DF_1_NODEFLIB 0x00000800 /* Ignore default lib search path. */
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734#define DF_1_NODUMP 0x00001000 /* Object can't be dldump'ed. */
735#define DF_1_CONFALT 0x00002000 /* Configuration alternative created.*/
736#define DF_1_ENDFILTEE 0x00004000 /* Filtee terminates filters search. */
737#define DF_1_DISPRELDNE 0x00008000 /* Disp reloc applied at build time. */
738#define DF_1_DISPRELPND 0x00010000 /* Disp reloc applied at run-time. */
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739
740/* Flags for the feature selection in DT_FEATURE_1. */
741#define DTF_1_PARINIT 0x00000001
742#define DTF_1_CONFEXP 0x00000002
743
744/* Flags in the DT_POSFLAG_1 entry effecting only the next DT_* entry. */
745#define DF_P1_LAZYLOAD 0x00000001 /* Lazyload following object. */
746#define DF_P1_GROUPPERM 0x00000002 /* Symbols from next object are not
747 generally available. */
e3e0315c 748
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749/* Version definition sections. */
750
751typedef struct
752{
753 Elf32_Half vd_version; /* Version revision */
754 Elf32_Half vd_flags; /* Version information */
755 Elf32_Half vd_ndx; /* Version Index */
756 Elf32_Half vd_cnt; /* Number of associated aux entries */
757 Elf32_Word vd_hash; /* Version name hash value */
758 Elf32_Word vd_aux; /* Offset in bytes to verdaux array */
759 Elf32_Word vd_next; /* Offset in bytes to next verdef
760 entry */
761} Elf32_Verdef;
762
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763typedef struct
764{
765 Elf64_Half vd_version; /* Version revision */
766 Elf64_Half vd_flags; /* Version information */
767 Elf64_Half vd_ndx; /* Version Index */
768 Elf64_Half vd_cnt; /* Number of associated aux entries */
769 Elf64_Word vd_hash; /* Version name hash value */
770 Elf64_Word vd_aux; /* Offset in bytes to verdaux array */
771 Elf64_Word vd_next; /* Offset in bytes to next verdef
772 entry */
773} Elf64_Verdef;
6c202c68 774
c84142e8 775
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776/* Legal values for vd_version (version revision). */
777#define VER_DEF_NONE 0 /* No version */
778#define VER_DEF_CURRENT 1 /* Current version */
779#define VER_DEF_NUM 2 /* Given version number */
780
781/* Legal values for vd_flags (version information flags). */
782#define VER_FLG_BASE 0x1 /* Version definition of file itself */
783#define VER_FLG_WEAK 0x2 /* Weak version identifier */
784
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785/* Versym symbol index values. */
786#define VER_NDX_LOCAL 0 /* Symbol is local. */
787#define VER_NDX_GLOBAL 1 /* Symbol is global. */
788#define VER_NDX_LORESERVE 0xff00 /* Beginning of reserved entries. */
789#define VER_NDX_ELIMINATE 0xff01 /* Symbol is to be eliminated. */
790
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791/* Auxialiary version information. */
792
793typedef struct
794{
6c202c68 795 Elf32_Word vda_name; /* Version or dependency names */
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796 Elf32_Word vda_next; /* Offset in bytes to next verdaux
797 entry */
798} Elf32_Verdaux;
799
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800typedef struct
801{
6c202c68 802 Elf64_Word vda_name; /* Version or dependency names */
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803 Elf64_Word vda_next; /* Offset in bytes to next verdaux
804 entry */
805} Elf64_Verdaux;
6c202c68 806
c84142e8 807
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808/* Version dependency section. */
809
810typedef struct
811{
812 Elf32_Half vn_version; /* Version of structure */
813 Elf32_Half vn_cnt; /* Number of associated aux entries */
6c202c68 814 Elf32_Word vn_file; /* Offset of filename for this
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815 dependency */
816 Elf32_Word vn_aux; /* Offset in bytes to vernaux array */
817 Elf32_Word vn_next; /* Offset in bytes to next verneed
818 entry */
819} Elf32_Verneed;
820
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821typedef struct
822{
823 Elf64_Half vn_version; /* Version of structure */
824 Elf64_Half vn_cnt; /* Number of associated aux entries */
6c202c68 825 Elf64_Word vn_file; /* Offset of filename for this
c84142e8
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826 dependency */
827 Elf64_Word vn_aux; /* Offset in bytes to vernaux array */
828 Elf64_Word vn_next; /* Offset in bytes to next verneed
829 entry */
830} Elf64_Verneed;
6c202c68 831
c84142e8 832
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UD
833/* Legal values for vn_version (version revision). */
834#define VER_NEED_NONE 0 /* No version */
835#define VER_NEED_CURRENT 1 /* Current version */
836#define VER_NEED_NUM 2 /* Given version number */
837
838/* Auxiliary needed version information. */
839
840typedef struct
841{
842 Elf32_Word vna_hash; /* Hash value of dependency name */
843 Elf32_Half vna_flags; /* Dependency specific information */
844 Elf32_Half vna_other; /* Unused */
6c202c68 845 Elf32_Word vna_name; /* Dependency name string offset */
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846 Elf32_Word vna_next; /* Offset in bytes to next vernaux
847 entry */
848} Elf32_Vernaux;
849
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850typedef struct
851{
852 Elf64_Word vna_hash; /* Hash value of dependency name */
853 Elf64_Half vna_flags; /* Dependency specific information */
854 Elf64_Half vna_other; /* Unused */
6c202c68 855 Elf64_Word vna_name; /* Dependency name string offset */
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856 Elf64_Word vna_next; /* Offset in bytes to next vernaux
857 entry */
858} Elf64_Vernaux;
6c202c68 859
c84142e8 860
1228ed5c 861/* Legal values for vna_flags. */
6c202c68 862#define VER_FLG_WEAK 0x2 /* Weak version identifier */
1228ed5c 863
df4ef2ab 864
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865/* Auxiliary vector. */
866
867/* This vector is normally only used by the program interpreter. The
868 usual definition in an ABI supplement uses the name auxv_t. The
869 vector is not usually defined in a standard <elf.h> file, but it
870 can't hurt. We rename it to avoid conflicts. The sizes of these
871 types are an arrangement between the exec server and the program
872 interpreter, so we don't fully specify them here. */
873
874typedef struct
875{
6025c399 876 int a_type; /* Entry type */
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877 union
878 {
6025c399
RM
879 long int a_val; /* Integer value */
880 void *a_ptr; /* Pointer value */
881 void (*a_fcn) (void); /* Function pointer value */
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882 } a_un;
883} Elf32_auxv_t;
884
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885typedef struct
886{
887 long int a_type; /* Entry type */
888 union
889 {
890 long int a_val; /* Integer value */
891 void *a_ptr; /* Pointer value */
892 void (*a_fcn) (void); /* Function pointer value */
893 } a_un;
894} Elf64_auxv_t;
895
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896/* Legal values for a_type (entry type). */
897
898#define AT_NULL 0 /* End of vector */
899#define AT_IGNORE 1 /* Entry should be ignored */
900#define AT_EXECFD 2 /* File descriptor of program */
901#define AT_PHDR 3 /* Program headers for program */
902#define AT_PHENT 4 /* Size of program header entry */
903#define AT_PHNUM 5 /* Number of program headers */
904#define AT_PAGESZ 6 /* System page size */
905#define AT_BASE 7 /* Base address of interpreter */
906#define AT_FLAGS 8 /* Flags */
907#define AT_ENTRY 9 /* Entry point of program */
908#define AT_NOTELF 10 /* Program is not ELF */
909#define AT_UID 11 /* Real uid */
910#define AT_EUID 12 /* Effective uid */
60478656 911#define AT_GID 13 /* Real gid */
28f540f4 912#define AT_EGID 14 /* Effective gid */
25b3dd49 913#define AT_CLKTCK 17 /* Frequency of times() */
28f540f4 914
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915/* Some more special a_type values describing the hardware. */
916#define AT_PLATFORM 15 /* String identifying platform. */
917#define AT_HWCAP 16 /* Machine dependent hints about
918 processor capabilities. */
919
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920/* This entry gives some information about the FPU initialization
921 performed by the kernel. */
25b3dd49 922#define AT_FPUCW 18 /* Used FPU control word. */
a0780919 923
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924/* Cache block sizes. */
925#define AT_DCACHEBSIZE 19 /* Data cache block size. */
926#define AT_ICACHEBSIZE 20 /* Instruction cache block size. */
927#define AT_UCACHEBSIZE 21 /* Unified cache block size. */
928
929/* A special ignored value for PPC, used by the kernel to control the
930 interpretation of the AUXV. Must be > 16. */
931#define AT_IGNOREPPC 22 /* Entry should be ignored */
932
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933
934/* Note section contents. Each entry in the note section begins with
935 a header of a fixed form. */
936
937typedef struct
938{
939 Elf32_Word n_namesz; /* Length of the note's name. */
940 Elf32_Word n_descsz; /* Length of the note's descriptor. */
941 Elf32_Word n_type; /* Type of the note. */
942} Elf32_Nhdr;
943
944typedef struct
945{
946 Elf64_Word n_namesz; /* Length of the note's name. */
947 Elf64_Word n_descsz; /* Length of the note's descriptor. */
948 Elf64_Word n_type; /* Type of the note. */
949} Elf64_Nhdr;
950
951/* Known names of notes. */
952
953/* Solaris entries in the note section have this name. */
954#define ELF_NOTE_SOLARIS "SUNW Solaris"
955
956/* Note entries for GNU systems have this name. */
957#define ELF_NOTE_GNU "GNU"
958
959
960/* Defined types of notes for Solaris. */
961
962/* Value of descriptor (one word) is desired pagesize for the binary. */
963#define ELF_NOTE_PAGESIZE_HINT 1
964
965
966/* Defined note types for GNU systems. */
967
968/* ABI information. The descriptor consists of words:
969 word 0: OS descriptor
970 word 1: major version of the ABI
971 word 2: minor version of the ABI
972 word 3: subminor version of the ABI
973*/
974#define ELF_NOTE_ABI 1
975
976/* Known OSes. These value can appear in word 0 of an ELF_NOTE_ABI
977 note section entry. */
978#define ELF_NOTE_OS_LINUX 0
979#define ELF_NOTE_OS_GNU 1
980#define ELF_NOTE_OS_SOLARIS2 2
981
982
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983/* Move records. */
984typedef struct
985{
986 Elf32_Xword m_value; /* Symbol value. */
987 Elf32_Word m_info; /* Size and index. */
988 Elf32_Word m_poffset; /* Symbol offset. */
989 Elf32_Half m_repeat; /* Repeat count. */
990 Elf32_Half m_stride; /* Stride info. */
991} Elf32_Move;
992
993typedef struct
994{
995 Elf64_Xword m_value; /* Symbol value. */
996 Elf64_Xword m_info; /* Size and index. */
997 Elf64_Xword m_poffset; /* Symbol offset. */
998 Elf64_Half m_repeat; /* Repeat count. */
999 Elf64_Half m_stride; /* Stride info. */
1000} Elf64_Move;
1001
1002/* Macro to construct move records. */
1003#define ELF32_M_SYM(info) ((info) >> 8)
1004#define ELF32_M_SIZE(info) ((unsigned char) (info))
1005#define ELF32_M_INFO(sym, size) (((sym) << 8) + (unsigned char) (size))
1006
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1007#define ELF64_M_SYM(info) ELF32_M_SYM (info)
1008#define ELF64_M_SIZE(info) ELF32_M_SIZE (info)
1009#define ELF64_M_INFO(sym, size) ELF32_M_INFO (sym, size)
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1010
1011
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RM
1012/* Motorola 68k specific definitions. */
1013
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1014/* Values for Elf32_Ehdr.e_flags. */
1015#define EF_CPU32 0x00810000
1016
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1017/* m68k relocs. */
1018
1019#define R_68K_NONE 0 /* No reloc */
1020#define R_68K_32 1 /* Direct 32 bit */
1021#define R_68K_16 2 /* Direct 16 bit */
1022#define R_68K_8 3 /* Direct 8 bit */
1023#define R_68K_PC32 4 /* PC relative 32 bit */
1024#define R_68K_PC16 5 /* PC relative 16 bit */
1025#define R_68K_PC8 6 /* PC relative 8 bit */
1026#define R_68K_GOT32 7 /* 32 bit PC relative GOT entry */
1027#define R_68K_GOT16 8 /* 16 bit PC relative GOT entry */
1028#define R_68K_GOT8 9 /* 8 bit PC relative GOT entry */
1029#define R_68K_GOT32O 10 /* 32 bit GOT offset */
1030#define R_68K_GOT16O 11 /* 16 bit GOT offset */
1031#define R_68K_GOT8O 12 /* 8 bit GOT offset */
1032#define R_68K_PLT32 13 /* 32 bit PC relative PLT address */
1033#define R_68K_PLT16 14 /* 16 bit PC relative PLT address */
1034#define R_68K_PLT8 15 /* 8 bit PC relative PLT address */
1035#define R_68K_PLT32O 16 /* 32 bit PLT offset */
1036#define R_68K_PLT16O 17 /* 16 bit PLT offset */
1037#define R_68K_PLT8O 18 /* 8 bit PLT offset */
1038#define R_68K_COPY 19 /* Copy symbol at runtime */
1039#define R_68K_GLOB_DAT 20 /* Create GOT entry */
1040#define R_68K_JMP_SLOT 21 /* Create PLT entry */
1041#define R_68K_RELATIVE 22 /* Adjust by program base */
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1042/* Keep this the last entry. */
1043#define R_68K_NUM 23
01f3e03b 1044
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1045/* Intel 80386 specific definitions. */
1046
1047/* i386 relocs. */
1048
1049#define R_386_NONE 0 /* No reloc */
1050#define R_386_32 1 /* Direct 32 bit */
1051#define R_386_PC32 2 /* PC relative 32 bit */
1052#define R_386_GOT32 3 /* 32 bit GOT entry */
1053#define R_386_PLT32 4 /* 32 bit PLT address */
1054#define R_386_COPY 5 /* Copy symbol at runtime */
1055#define R_386_GLOB_DAT 6 /* Create GOT entry */
1056#define R_386_JMP_SLOT 7 /* Create PLT entry */
1057#define R_386_RELATIVE 8 /* Adjust by program base */
1058#define R_386_GOTOFF 9 /* 32 bit offset to GOT */
1059#define R_386_GOTPC 10 /* 32 bit PC relative offset to GOT */
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1060/* Keep this the last entry. */
1061#define R_386_NUM 11
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1062
1063/* SUN SPARC specific definitions. */
1064
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1065/* Legal values for ST_TYPE subfield of st_info (symbol type). */
1066
1067#define STT_REGISTER 13 /* Global register reserved to app. */
1068
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1069/* Values for Elf64_Ehdr.e_flags. */
1070
1071#define EF_SPARCV9_MM 3
1072#define EF_SPARCV9_TSO 0
1073#define EF_SPARCV9_PSO 1
1074#define EF_SPARCV9_RMO 2
ef5d6645 1075#define EF_SPARC_LEDATA 0x800000 /* little endian data */
41df5ed4 1076#define EF_SPARC_EXT_MASK 0xFFFF00
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1077#define EF_SPARC_32PLUS 0x000100 /* generic V8+ features */
1078#define EF_SPARC_SUN_US1 0x000200 /* Sun UltraSPARC1 extensions */
1079#define EF_SPARC_HAL_R1 0x000400 /* HAL R1 extensions */
1080#define EF_SPARC_SUN_US3 0x000800 /* Sun UltraSPARCIII extensions */
41df5ed4 1081
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1082/* SPARC relocs. */
1083
1084#define R_SPARC_NONE 0 /* No reloc */
1085#define R_SPARC_8 1 /* Direct 8 bit */
1086#define R_SPARC_16 2 /* Direct 16 bit */
1087#define R_SPARC_32 3 /* Direct 32 bit */
1088#define R_SPARC_DISP8 4 /* PC relative 8 bit */
1089#define R_SPARC_DISP16 5 /* PC relative 16 bit */
1090#define R_SPARC_DISP32 6 /* PC relative 32 bit */
1091#define R_SPARC_WDISP30 7 /* PC relative 30 bit shifted */
1092#define R_SPARC_WDISP22 8 /* PC relative 22 bit shifted */
1093#define R_SPARC_HI22 9 /* High 22 bit */
1094#define R_SPARC_22 10 /* Direct 22 bit */
1095#define R_SPARC_13 11 /* Direct 13 bit */
1096#define R_SPARC_LO10 12 /* Truncated 10 bit */
1097#define R_SPARC_GOT10 13 /* Truncated 10 bit GOT entry */
1098#define R_SPARC_GOT13 14 /* 13 bit GOT entry */
1099#define R_SPARC_GOT22 15 /* 22 bit GOT entry shifted */
1100#define R_SPARC_PC10 16 /* PC relative 10 bit truncated */
1101#define R_SPARC_PC22 17 /* PC relative 22 bit shifted */
1102#define R_SPARC_WPLT30 18 /* 30 bit PC relative PLT address */
1103#define R_SPARC_COPY 19 /* Copy symbol at runtime */
1104#define R_SPARC_GLOB_DAT 20 /* Create GOT entry */
1105#define R_SPARC_JMP_SLOT 21 /* Create PLT entry */
1106#define R_SPARC_RELATIVE 22 /* Adjust by program base */
1107#define R_SPARC_UA32 23 /* Direct 32 bit unaligned */
1108
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1109/* Additional Sparc64 relocs. */
1110
1111#define R_SPARC_PLT32 24 /* Direct 32 bit ref to PLT entry */
1112#define R_SPARC_HIPLT22 25 /* High 22 bit PLT entry */
1113#define R_SPARC_LOPLT10 26 /* Truncated 10 bit PLT entry */
1114#define R_SPARC_PCPLT32 27 /* PC rel 32 bit ref to PLT entry */
1115#define R_SPARC_PCPLT22 28 /* PC rel high 22 bit PLT entry */
1116#define R_SPARC_PCPLT10 29 /* PC rel trunc 10 bit PLT entry */
1117#define R_SPARC_10 30 /* Direct 10 bit */
1118#define R_SPARC_11 31 /* Direct 11 bit */
1119#define R_SPARC_64 32 /* Direct 64 bit */
2e65ca2b 1120#define R_SPARC_OLO10 33 /* 10bit with secondary 13bit addend */
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1121#define R_SPARC_HH22 34 /* Top 22 bits of direct 64 bit */
1122#define R_SPARC_HM10 35 /* High middle 10 bits of ... */
1123#define R_SPARC_LM22 36 /* Low middle 22 bits of ... */
1124#define R_SPARC_PC_HH22 37 /* Top 22 bits of pc rel 64 bit */
1125#define R_SPARC_PC_HM10 38 /* High middle 10 bit of ... */
1126#define R_SPARC_PC_LM22 39 /* Low miggle 22 bits of ... */
1127#define R_SPARC_WDISP16 40 /* PC relative 16 bit shifted */
1128#define R_SPARC_WDISP19 41 /* PC relative 19 bit shifted */
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1129#define R_SPARC_7 43 /* Direct 7 bit */
1130#define R_SPARC_5 44 /* Direct 5 bit */
1131#define R_SPARC_6 45 /* Direct 6 bit */
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1132#define R_SPARC_DISP64 46 /* PC relative 64 bit */
1133#define R_SPARC_PLT64 47 /* Direct 64 bit ref to PLT entry */
1134#define R_SPARC_HIX22 48 /* High 22 bit complemented */
1135#define R_SPARC_LOX10 49 /* Truncated 11 bit complemented */
1136#define R_SPARC_H44 50 /* Direct high 12 of 44 bit */
1137#define R_SPARC_M44 51 /* Direct mid 22 of 44 bit */
1138#define R_SPARC_L44 52 /* Direct low 10 of 44 bit */
1139#define R_SPARC_REGISTER 53 /* Global register usage */
1140#define R_SPARC_UA64 54 /* Direct 64 bit unaligned */
1141#define R_SPARC_UA16 55 /* Direct 16 bit unaligned */
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1142/* Keep this the last entry. */
1143#define R_SPARC_NUM 56
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1144
1145/* For Sparc64, legal values for d_tag of Elf64_Dyn. */
1146
41df5ed4 1147#define DT_SPARC_REGISTER 0x70000001
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1148#define DT_SPARC_NUM 2
1149
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1150/* Bits present in AT_HWCAP, primarily for Sparc32. */
1151
1152#define HWCAP_SPARC_FLUSH 1 /* The cpu supports flush insn. */
1153#define HWCAP_SPARC_STBAR 2
1154#define HWCAP_SPARC_SWAP 4
1155#define HWCAP_SPARC_MULDIV 8
4194bc66 1156#define HWCAP_SPARC_V9 16 /* The cpu is v9, so v8plus is ok. */
5e014387 1157#define HWCAP_SPARC_ULTRA3 32
f41c8091 1158
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RM
1159/* MIPS R3000 specific definitions. */
1160
1161/* Legal values for e_flags field of Elf32_Ehdr. */
1162
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1163#define EF_MIPS_NOREORDER 1 /* A .noreorder directive was used */
1164#define EF_MIPS_PIC 2 /* Contains PIC code */
1165#define EF_MIPS_CPIC 4 /* Uses PIC calling sequence */
1166#define EF_MIPS_XGOT 8
1167#define EF_MIPS_64BIT_WHIRL 16
1168#define EF_MIPS_ABI2 32
1169#define EF_MIPS_ABI_ON32 64
1170#define EF_MIPS_ARCH 0xf0000000 /* MIPS architecture level */
28f540f4 1171
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1172/* Legal values for MIPS architecture level. */
1173
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1174#define EF_MIPS_ARCH_1 0x00000000 /* -mips1 code. */
1175#define EF_MIPS_ARCH_2 0x10000000 /* -mips2 code. */
1176#define EF_MIPS_ARCH_3 0x20000000 /* -mips3 code. */
1177#define EF_MIPS_ARCH_4 0x30000000 /* -mips4 code. */
1178#define EF_MIPS_ARCH_5 0x40000000 /* -mips5 code. */
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1179#define EF_MIPS_ARCH_32 0x60000000 /* MIPS32 code. */
1180#define EF_MIPS_ARCH_64 0x70000000 /* MIPS64 code. */
c3966b88 1181
49c091e5 1182/* The following are non-official names and should not be used. */
c3966b88 1183
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RM
1184#define E_MIPS_ARCH_1 0x00000000 /* -mips1 code. */
1185#define E_MIPS_ARCH_2 0x10000000 /* -mips2 code. */
1186#define E_MIPS_ARCH_3 0x20000000 /* -mips3 code. */
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1187#define E_MIPS_ARCH_4 0x30000000 /* -mips4 code. */
1188#define E_MIPS_ARCH_5 0x40000000 /* -mips5 code. */
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1189#define E_MIPS_ARCH_32 0x60000000 /* MIPS32 code. */
1190#define E_MIPS_ARCH_64 0x70000000 /* MIPS64 code. */
0200214b 1191
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1192/* Special section indices. */
1193
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1194#define SHN_MIPS_ACOMMON 0xff00 /* Allocated common symbols */
1195#define SHN_MIPS_TEXT 0xff01 /* Allocated test symbols. */
1196#define SHN_MIPS_DATA 0xff02 /* Allocated data symbols. */
1197#define SHN_MIPS_SCOMMON 0xff03 /* Small common symbols */
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1198#define SHN_MIPS_SUNDEFINED 0xff04 /* Small undefined symbols */
1199
1200/* Legal values for sh_type field of Elf32_Shdr. */
1201
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1202#define SHT_MIPS_LIBLIST 0x70000000 /* Shared objects used in link */
1203#define SHT_MIPS_MSYM 0x70000001
1204#define SHT_MIPS_CONFLICT 0x70000002 /* Conflicting symbols */
1205#define SHT_MIPS_GPTAB 0x70000003 /* Global data area sizes */
1206#define SHT_MIPS_UCODE 0x70000004 /* Reserved for SGI/MIPS compilers */
1207#define SHT_MIPS_DEBUG 0x70000005 /* MIPS ECOFF debugging information*/
1208#define SHT_MIPS_REGINFO 0x70000006 /* Register usage information */
1209#define SHT_MIPS_PACKAGE 0x70000007
1210#define SHT_MIPS_PACKSYM 0x70000008
1211#define SHT_MIPS_RELD 0x70000009
1212#define SHT_MIPS_IFACE 0x7000000b
1213#define SHT_MIPS_CONTENT 0x7000000c
1214#define SHT_MIPS_OPTIONS 0x7000000d /* Miscellaneous options. */
1215#define SHT_MIPS_SHDR 0x70000010
1216#define SHT_MIPS_FDESC 0x70000011
1217#define SHT_MIPS_EXTSYM 0x70000012
1218#define SHT_MIPS_DENSE 0x70000013
1219#define SHT_MIPS_PDESC 0x70000014
1220#define SHT_MIPS_LOCSYM 0x70000015
1221#define SHT_MIPS_AUXSYM 0x70000016
1222#define SHT_MIPS_OPTSYM 0x70000017
1223#define SHT_MIPS_LOCSTR 0x70000018
1224#define SHT_MIPS_LINE 0x70000019
1225#define SHT_MIPS_RFDESC 0x7000001a
1226#define SHT_MIPS_DELTASYM 0x7000001b
1227#define SHT_MIPS_DELTAINST 0x7000001c
1228#define SHT_MIPS_DELTACLASS 0x7000001d
1229#define SHT_MIPS_DWARF 0x7000001e /* DWARF debugging information. */
1230#define SHT_MIPS_DELTADECL 0x7000001f
1231#define SHT_MIPS_SYMBOL_LIB 0x70000020
1232#define SHT_MIPS_EVENTS 0x70000021 /* Event section. */
1233#define SHT_MIPS_TRANSLATE 0x70000022
1234#define SHT_MIPS_PIXIE 0x70000023
1235#define SHT_MIPS_XLATE 0x70000024
1236#define SHT_MIPS_XLATE_DEBUG 0x70000025
1237#define SHT_MIPS_WHIRL 0x70000026
1238#define SHT_MIPS_EH_REGION 0x70000027
1239#define SHT_MIPS_XLATE_OLD 0x70000028
1240#define SHT_MIPS_PDR_EXCEPTION 0x70000029
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1241
1242/* Legal values for sh_flags field of Elf32_Shdr. */
1243
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1244#define SHF_MIPS_GPREL 0x10000000 /* Must be part of global data area */
1245#define SHF_MIPS_MERGE 0x20000000
1246#define SHF_MIPS_ADDR 0x40000000
1247#define SHF_MIPS_STRINGS 0x80000000
1248#define SHF_MIPS_NOSTRIP 0x08000000
1249#define SHF_MIPS_LOCAL 0x04000000
1250#define SHF_MIPS_NAMES 0x02000000
1251#define SHF_MIPS_NODUPE 0x01000000
1252
1253
1254/* Symbol tables. */
1255
1256/* MIPS specific values for `st_other'. */
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1257#define STO_MIPS_DEFAULT 0x0
1258#define STO_MIPS_INTERNAL 0x1
1259#define STO_MIPS_HIDDEN 0x2
1260#define STO_MIPS_PROTECTED 0x3
1261#define STO_MIPS_SC_ALIGN_UNUSED 0xff
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1262
1263/* MIPS specific values for `st_info'. */
b259e746 1264#define STB_MIPS_SPLIT_COMMON 13
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1265
1266/* Entries found in sections of type SHT_MIPS_GPTAB. */
1267
1268typedef union
1269{
1270 struct
1271 {
1272 Elf32_Word gt_current_g_value; /* -G value used for compilation */
1273 Elf32_Word gt_unused; /* Not used */
1274 } gt_header; /* First entry in section */
1275 struct
1276 {
1277 Elf32_Word gt_g_value; /* If this value were used for -G */
1278 Elf32_Word gt_bytes; /* This many bytes would be used */
1279 } gt_entry; /* Subsequent entries in section */
1280} Elf32_gptab;
1281
1282/* Entry found in sections of type SHT_MIPS_REGINFO. */
1283
1284typedef struct
1285{
1286 Elf32_Word ri_gprmask; /* General registers used */
1287 Elf32_Word ri_cprmask[4]; /* Coprocessor registers used */
1288 Elf32_Sword ri_gp_value; /* $gp register value */
1289} Elf32_RegInfo;
1290
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1291/* Entries found in sections of type SHT_MIPS_OPTIONS. */
1292
1293typedef struct
1294{
1295 unsigned char kind; /* Determines interpretation of the
1296 variable part of descriptor. */
1297 unsigned char size; /* Size of descriptor, including header. */
1298 Elf32_Section section; /* Section header index of section affected,
1299 0 for global options. */
1300 Elf32_Word info; /* Kind-specific information. */
1301} Elf_Options;
1302
1303/* Values for `kind' field in Elf_Options. */
1304
1305#define ODK_NULL 0 /* Undefined. */
1306#define ODK_REGINFO 1 /* Register usage information. */
1307#define ODK_EXCEPTIONS 2 /* Exception processing options. */
1308#define ODK_PAD 3 /* Section padding options. */
1309#define ODK_HWPATCH 4 /* Hardware workarounds performed */
1310#define ODK_FILL 5 /* record the fill value used by the linker. */
1311#define ODK_TAGS 6 /* reserve space for desktop tools to write. */
1312#define ODK_HWAND 7 /* HW workarounds. 'AND' bits when merging. */
1313#define ODK_HWOR 8 /* HW workarounds. 'OR' bits when merging. */
1314
1315/* Values for `info' in Elf_Options for ODK_EXCEPTIONS entries. */
1316
1317#define OEX_FPU_MIN 0x1f /* FPE's which MUST be enabled. */
1318#define OEX_FPU_MAX 0x1f00 /* FPE's which MAY be enabled. */
1319#define OEX_PAGE0 0x10000 /* page zero must be mapped. */
1320#define OEX_SMM 0x20000 /* Force sequential memory mode? */
1321#define OEX_FPDBUG 0x40000 /* Force floating point debug mode? */
1322#define OEX_PRECISEFP OEX_FPDBUG
1323#define OEX_DISMISS 0x80000 /* Dismiss invalid address faults? */
1324
1325#define OEX_FPU_INVAL 0x10
1326#define OEX_FPU_DIV0 0x08
1327#define OEX_FPU_OFLO 0x04
1328#define OEX_FPU_UFLO 0x02
1329#define OEX_FPU_INEX 0x01
1330
1331/* Masks for `info' in Elf_Options for an ODK_HWPATCH entry. */
1332
1333#define OHW_R4KEOP 0x1 /* R4000 end-of-page patch. */
1334#define OHW_R8KPFETCH 0x2 /* may need R8000 prefetch patch. */
1335#define OHW_R5KEOP 0x4 /* R5000 end-of-page patch. */
1336#define OHW_R5KCVTL 0x8 /* R5000 cvt.[ds].l bug. clean=1. */
1337
1338#define OPAD_PREFIX 0x1
1339#define OPAD_POSTFIX 0x2
1340#define OPAD_SYMBOL 0x4
1341
1342/* Entry found in `.options' section. */
1343
1344typedef struct
1345{
1346 Elf32_Word hwp_flags1; /* Extra flags. */
1347 Elf32_Word hwp_flags2; /* Extra flags. */
1348} Elf_Options_Hw;
1349
1350/* Masks for `info' in ElfOptions for ODK_HWAND and ODK_HWOR entries. */
1351
1352#define OHWA0_R4KEOP_CHECKED 0x00000001
1353#define OHWA1_R4KEOP_CLEAN 0x00000002
1354
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1355/* MIPS relocs. */
1356
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1357#define R_MIPS_NONE 0 /* No reloc */
1358#define R_MIPS_16 1 /* Direct 16 bit */
1359#define R_MIPS_32 2 /* Direct 32 bit */
1360#define R_MIPS_REL32 3 /* PC relative 32 bit */
1361#define R_MIPS_26 4 /* Direct 26 bit shifted */
1362#define R_MIPS_HI16 5 /* High 16 bit */
1363#define R_MIPS_LO16 6 /* Low 16 bit */
1364#define R_MIPS_GPREL16 7 /* GP relative 16 bit */
1365#define R_MIPS_LITERAL 8 /* 16 bit literal entry */
1366#define R_MIPS_GOT16 9 /* 16 bit GOT entry */
1367#define R_MIPS_PC16 10 /* PC relative 16 bit */
1368#define R_MIPS_CALL16 11 /* 16 bit GOT entry for function */
1369#define R_MIPS_GPREL32 12 /* GP relative 32 bit */
1370
1371#define R_MIPS_SHIFT5 16
1372#define R_MIPS_SHIFT6 17
1373#define R_MIPS_64 18
1374#define R_MIPS_GOT_DISP 19
1375#define R_MIPS_GOT_PAGE 20
1376#define R_MIPS_GOT_OFST 21
1377#define R_MIPS_GOT_HI16 22
1378#define R_MIPS_GOT_LO16 23
1379#define R_MIPS_SUB 24
1380#define R_MIPS_INSERT_A 25
1381#define R_MIPS_INSERT_B 26
1382#define R_MIPS_DELETE 27
1383#define R_MIPS_HIGHER 28
1384#define R_MIPS_HIGHEST 29
1385#define R_MIPS_CALL_HI16 30
1386#define R_MIPS_CALL_LO16 31
1387#define R_MIPS_SCN_DISP 32
1388#define R_MIPS_REL16 33
1389#define R_MIPS_ADD_IMMEDIATE 34
1390#define R_MIPS_PJUMP 35
1391#define R_MIPS_RELGOT 36
eeabe877 1392#define R_MIPS_JALR 37
7ce241a0 1393/* Keep this the last entry. */
eeabe877 1394#define R_MIPS_NUM 38
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1395
1396/* Legal values for p_type field of Elf32_Phdr. */
1397
273d56ce 1398#define PT_MIPS_REGINFO 0x70000000 /* Register usage information */
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1399#define PT_MIPS_RTPROC 0x70000001 /* Runtime procedure table. */
1400#define PT_MIPS_OPTIONS 0x70000002
28f540f4 1401
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1402/* Special program header types. */
1403
1404#define PF_MIPS_LOCAL 0x10000000
1405
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1406/* Legal values for d_tag field of Elf32_Dyn. */
1407
1408#define DT_MIPS_RLD_VERSION 0x70000001 /* Runtime linker interface version */
1409#define DT_MIPS_TIME_STAMP 0x70000002 /* Timestamp */
1410#define DT_MIPS_ICHECKSUM 0x70000003 /* Checksum */
1411#define DT_MIPS_IVERSION 0x70000004 /* Version string (string tbl index) */
1412#define DT_MIPS_FLAGS 0x70000005 /* Flags */
1413#define DT_MIPS_BASE_ADDRESS 0x70000006 /* Base address */
c3966b88 1414#define DT_MIPS_MSYM 0x70000007
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1415#define DT_MIPS_CONFLICT 0x70000008 /* Address of CONFLICT section */
1416#define DT_MIPS_LIBLIST 0x70000009 /* Address of LIBLIST section */
1417#define DT_MIPS_LOCAL_GOTNO 0x7000000a /* Number of local GOT entries */
1418#define DT_MIPS_CONFLICTNO 0x7000000b /* Number of CONFLICT entries */
1419#define DT_MIPS_LIBLISTNO 0x70000010 /* Number of LIBLIST entries */
1420#define DT_MIPS_SYMTABNO 0x70000011 /* Number of DYNSYM entries */
1421#define DT_MIPS_UNREFEXTNO 0x70000012 /* First external DYNSYM */
1422#define DT_MIPS_GOTSYM 0x70000013 /* First GOT entry in DYNSYM */
1423#define DT_MIPS_HIPAGENO 0x70000014 /* Number of GOT page table entries */
0200214b 1424#define DT_MIPS_RLD_MAP 0x70000016 /* Address of run time loader map. */
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1425#define DT_MIPS_DELTA_CLASS 0x70000017 /* Delta C++ class definition. */
1426#define DT_MIPS_DELTA_CLASS_NO 0x70000018 /* Number of entries in
1427 DT_MIPS_DELTA_CLASS. */
1428#define DT_MIPS_DELTA_INSTANCE 0x70000019 /* Delta C++ class instances. */
1429#define DT_MIPS_DELTA_INSTANCE_NO 0x7000001a /* Number of entries in
1430 DT_MIPS_DELTA_INSTANCE. */
1431#define DT_MIPS_DELTA_RELOC 0x7000001b /* Delta relocations. */
1432#define DT_MIPS_DELTA_RELOC_NO 0x7000001c /* Number of entries in
1433 DT_MIPS_DELTA_RELOC. */
1434#define DT_MIPS_DELTA_SYM 0x7000001d /* Delta symbols that Delta
1435 relocations refer to. */
1436#define DT_MIPS_DELTA_SYM_NO 0x7000001e /* Number of entries in
1437 DT_MIPS_DELTA_SYM. */
1438#define DT_MIPS_DELTA_CLASSSYM 0x70000020 /* Delta symbols that hold the
1439 class declaration. */
1440#define DT_MIPS_DELTA_CLASSSYM_NO 0x70000021 /* Number of entries in
1441 DT_MIPS_DELTA_CLASSSYM. */
1442#define DT_MIPS_CXX_FLAGS 0x70000022 /* Flags indicating for C++ flavor. */
1443#define DT_MIPS_PIXIE_INIT 0x70000023
1444#define DT_MIPS_SYMBOL_LIB 0x70000024
1445#define DT_MIPS_LOCALPAGE_GOTIDX 0x70000025
1446#define DT_MIPS_LOCAL_GOTIDX 0x70000026
1447#define DT_MIPS_HIDDEN_GOTIDX 0x70000027
1448#define DT_MIPS_PROTECTED_GOTIDX 0x70000028
1449#define DT_MIPS_OPTIONS 0x70000029 /* Address of .options. */
1450#define DT_MIPS_INTERFACE 0x7000002a /* Address of .interface. */
1451#define DT_MIPS_DYNSTR_ALIGN 0x7000002b
1452#define DT_MIPS_INTERFACE_SIZE 0x7000002c /* Size of the .interface section. */
1453#define DT_MIPS_RLD_TEXT_RESOLVE_ADDR 0x7000002d /* Address of rld_text_rsolve
1454 function stored in GOT. */
1455#define DT_MIPS_PERF_SUFFIX 0x7000002e /* Default suffix of dso to be added
1456 by rld on dlopen() calls. */
1457#define DT_MIPS_COMPACT_SIZE 0x7000002f /* (O32)Size of compact rel section. */
1458#define DT_MIPS_GP_VALUE 0x70000030 /* GP value for aux GOTs. */
1459#define DT_MIPS_AUX_DYNAMIC 0x70000031 /* Address of aux .dynamic. */
1460#define DT_MIPS_NUM 0x32
28f540f4 1461
7cabd57c 1462/* Legal values for DT_MIPS_FLAGS Elf32_Dyn entry. */
28f540f4
RM
1463
1464#define RHF_NONE 0 /* No flags */
1465#define RHF_QUICKSTART (1 << 0) /* Use quickstart */
1466#define RHF_NOTPOT (1 << 1) /* Hash size not power of 2 */
1467#define RHF_NO_LIBRARY_REPLACEMENT (1 << 2) /* Ignore LD_LIBRARY_PATH */
c3966b88
UD
1468#define RHF_NO_MOVE (1 << 3)
1469#define RHF_SGI_ONLY (1 << 4)
1470#define RHF_GUARANTEE_INIT (1 << 5)
1471#define RHF_DELTA_C_PLUS_PLUS (1 << 6)
1472#define RHF_GUARANTEE_START_INIT (1 << 7)
1473#define RHF_PIXIE (1 << 8)
1474#define RHF_DEFAULT_DELAY_LOAD (1 << 9)
1475#define RHF_REQUICKSTART (1 << 10)
1476#define RHF_REQUICKSTARTED (1 << 11)
1477#define RHF_CORD (1 << 12)
1478#define RHF_NO_UNRES_UNDEF (1 << 13)
1479#define RHF_RLD_ORDER_SAFE (1 << 14)
28f540f4
RM
1480
1481/* Entries found in sections of type SHT_MIPS_LIBLIST. */
1482
1483typedef struct
1484{
c3966b88
UD
1485 Elf32_Word l_name; /* Name (string table index) */
1486 Elf32_Word l_time_stamp; /* Timestamp */
1487 Elf32_Word l_checksum; /* Checksum */
1488 Elf32_Word l_version; /* Interface version */
1489 Elf32_Word l_flags; /* Flags */
28f540f4
RM
1490} Elf32_Lib;
1491
c3966b88
UD
1492typedef struct
1493{
1494 Elf64_Word l_name; /* Name (string table index) */
1495 Elf64_Word l_time_stamp; /* Timestamp */
1496 Elf64_Word l_checksum; /* Checksum */
1497 Elf64_Word l_version; /* Interface version */
1498 Elf64_Word l_flags; /* Flags */
1499} Elf64_Lib;
1500
1501
28f540f4
RM
1502/* Legal values for l_flags. */
1503
c3966b88 1504#define LL_NONE 0
28f540f4
RM
1505#define LL_EXACT_MATCH (1 << 0) /* Require exact match */
1506#define LL_IGNORE_INT_VER (1 << 1) /* Ignore interface version */
c3966b88
UD
1507#define LL_REQUIRE_MINOR (1 << 2)
1508#define LL_EXPORTS (1 << 3)
1509#define LL_DELAY_LOAD (1 << 4)
1510#define LL_DELTA (1 << 5)
28f540f4
RM
1511
1512/* Entries found in sections of type SHT_MIPS_CONFLICT. */
1513
1514typedef Elf32_Addr Elf32_Conflict;
1515
1516
0200214b
RM
1517/* HPPA specific definitions. */
1518
1ff283cb
UD
1519/* Legal values for e_flags field of Elf32_Ehdr. */
1520
f01a6a08
UD
1521#define EF_PARISC_TRAPNIL 0x00010000 /* Trap nil pointer dereference. */
1522#define EF_PARISC_EXT 0x00020000 /* Program uses arch. extensions. */
1523#define EF_PARISC_LSB 0x00040000 /* Program expects little endian. */
1524#define EF_PARISC_WIDE 0x00080000 /* Program expects wide mode. */
1525#define EF_PARISC_NO_KABP 0x00100000 /* No kernel assisted branch
1526 prediction. */
1527#define EF_PARISC_LAZYSWAP 0x00400000 /* Allow lazy swapping. */
1528#define EF_PARISC_ARCH 0x0000ffff /* Architecture version. */
1529
1530/* Defined values for `e_flags & EF_PARISC_ARCH' are: */
1531
1532#define EFA_PARISC_1_0 0x020b /* PA-RISC 1.0 big-endian. */
1533#define EFA_PARISC_1_1 0x0210 /* PA-RISC 1.1 big-endian. */
1534#define EFA_PARISC_2_0 0x0214 /* PA-RISC 2.0 big-endian. */
1535
1536/* Additional section indeces. */
1537
1538#define SHN_PARISC_ANSI_COMMON 0xff00 /* Section for tenatively declared
1539 symbols in ANSI C. */
1540#define SHN_PARISC_HUGE_COMMON 0xff01 /* Common blocks in huge model. */
1ff283cb 1541
0200214b
RM
1542/* Legal values for sh_type field of Elf32_Shdr. */
1543
f01a6a08
UD
1544#define SHT_PARISC_EXT 0x70000000 /* Contains product specific ext. */
1545#define SHT_PARISC_UNWIND 0x70000001 /* Unwind information. */
1546#define SHT_PARISC_DOC 0x70000002 /* Debug info for optimized code. */
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RM
1547
1548/* Legal values for sh_flags field of Elf32_Shdr. */
1549
1550#define SHF_PARISC_SHORT 0x20000000 /* Section with short addressing. */
f01a6a08
UD
1551#define SHF_PARISC_HUGE 0x40000000 /* Section far from gp. */
1552#define SHF_PARISC_SBP 0x80000000 /* Static branch prediction code. */
0200214b
RM
1553
1554/* Legal values for ST_TYPE subfield of st_info (symbol type). */
1555
1556#define STT_PARISC_MILLICODE 13 /* Millicode function entry point. */
1557
f2b9733f
UD
1558#define STT_HP_OPAQUE (STT_LOOS + 0x1)
1559#define STT_HP_STUB (STT_LOOS + 0x2)
1560
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UD
1561/* HPPA relocs. */
1562
1563#define R_PARISC_NONE 0 /* No reloc. */
1564#define R_PARISC_DIR32 1 /* Direct 32-bit reference. */
1565#define R_PARISC_DIR21L 2 /* Left 21 bits of eff. address. */
1566#define R_PARISC_DIR17R 3 /* Right 17 bits of eff. address. */
fa53da17 1567#define R_PARISC_DIR17F 4 /* 17 bits of eff. address. */
46346835 1568#define R_PARISC_DIR14R 6 /* Right 14 bits of eff. address. */
fa53da17
UD
1569#define R_PARISC_PCREL32 9 /* 32-bit rel. address. */
1570#define R_PARISC_PCREL21L 10 /* Left 21 bits of rel. address. */
1571#define R_PARISC_PCREL17R 11 /* Right 17 bits of rel. address. */
1572#define R_PARISC_PCREL17F 12 /* 17 bits of rel. address. */
1573#define R_PARISC_PCREL14R 14 /* Right 14 bits of rel. address. */
46346835
UD
1574#define R_PARISC_DPREL21L 18 /* Left 21 bits of rel. address. */
1575#define R_PARISC_DPREL14R 22 /* Right 14 bits of rel. address. */
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UD
1576#define R_PARISC_GPREL21L 26 /* GP-relative, left 21 bits. */
1577#define R_PARISC_GPREL14R 30 /* GP-relative, right 14 bits. */
1578#define R_PARISC_LTOFF21L 34 /* LT-relative, left 21 bits. */
1579#define R_PARISC_LTOFF14R 38 /* LT-relative, right 14 bits. */
1580#define R_PARISC_SECREL32 41 /* 32 bits section rel. address. */
1581#define R_PARISC_SEGBASE 48 /* No relocation, set segment base. */
1582#define R_PARISC_SEGREL32 49 /* 32 bits segment rel. address. */
1583#define R_PARISC_PLTOFF21L 50 /* PLT rel. address, left 21 bits. */
1584#define R_PARISC_PLTOFF14R 54 /* PLT rel. address, right 14 bits. */
1585#define R_PARISC_LTOFF_FPTR32 57 /* 32 bits LT-rel. function pointer. */
1586#define R_PARISC_LTOFF_FPTR21L 58 /* LT-rel. fct ptr, left 21 bits. */
1587#define R_PARISC_LTOFF_FPTR14R 62 /* LT-rel. fct ptr, right 14 bits. */
1588#define R_PARISC_FPTR64 64 /* 64 bits function address. */
b15cb495 1589#define R_PARISC_PLABEL32 65 /* 32 bits function address. */
fa53da17
UD
1590#define R_PARISC_PCREL64 72 /* 64 bits PC-rel. address. */
1591#define R_PARISC_PCREL22F 74 /* 22 bits PC-rel. address. */
1592#define R_PARISC_PCREL14WR 75 /* PC-rel. address, right 14 bits. */
1593#define R_PARISC_PCREL14DR 76 /* PC rel. address, right 14 bits. */
1594#define R_PARISC_PCREL16F 77 /* 16 bits PC-rel. address. */
1595#define R_PARISC_PCREL16WF 78 /* 16 bits PC-rel. address. */
1596#define R_PARISC_PCREL16DF 79 /* 16 bits PC-rel. address. */
1597#define R_PARISC_DIR64 80 /* 64 bits of eff. address. */
1598#define R_PARISC_DIR14WR 83 /* 14 bits of eff. address. */
1599#define R_PARISC_DIR14DR 84 /* 14 bits of eff. address. */
1600#define R_PARISC_DIR16F 85 /* 16 bits of eff. address. */
1601#define R_PARISC_DIR16WF 86 /* 16 bits of eff. address. */
1602#define R_PARISC_DIR16DF 87 /* 16 bits of eff. address. */
1603#define R_PARISC_GPREL64 88 /* 64 bits of GP-rel. address. */
1604#define R_PARISC_GPREL14WR 91 /* GP-rel. address, right 14 bits. */
1605#define R_PARISC_GPREL14DR 92 /* GP-rel. address, right 14 bits. */
1606#define R_PARISC_GPREL16F 93 /* 16 bits GP-rel. address. */
1607#define R_PARISC_GPREL16WF 94 /* 16 bits GP-rel. address. */
1608#define R_PARISC_GPREL16DF 95 /* 16 bits GP-rel. address. */
1609#define R_PARISC_LTOFF64 96 /* 64 bits LT-rel. address. */
1610#define R_PARISC_LTOFF14WR 99 /* LT-rel. address, right 14 bits. */
1611#define R_PARISC_LTOFF14DR 100 /* LT-rel. address, right 14 bits. */
1612#define R_PARISC_LTOFF16F 101 /* 16 bits LT-rel. address. */
1613#define R_PARISC_LTOFF16WF 102 /* 16 bits LT-rel. address. */
1614#define R_PARISC_LTOFF16DF 103 /* 16 bits LT-rel. address. */
1615#define R_PARISC_SECREL64 104 /* 64 bits section rel. address. */
1616#define R_PARISC_SEGREL64 112 /* 64 bits segment rel. address. */
1617#define R_PARISC_PLTOFF14WR 115 /* PLT-rel. address, right 14 bits. */
1618#define R_PARISC_PLTOFF14DR 116 /* PLT-rel. address, right 14 bits. */
1619#define R_PARISC_PLTOFF16F 117 /* 16 bits LT-rel. address. */
1620#define R_PARISC_PLTOFF16WF 118 /* 16 bits PLT-rel. address. */
1621#define R_PARISC_PLTOFF16DF 119 /* 16 bits PLT-rel. address. */
1622#define R_PARISC_LTOFF_FPTR64 120 /* 64 bits LT-rel. function ptr. */
1623#define R_PARISC_LTOFF_FPTR14WR 123 /* LT-rel. fct. ptr., right 14 bits. */
1624#define R_PARISC_LTOFF_FPTR14DR 124 /* LT-rel. fct. ptr., right 14 bits. */
1625#define R_PARISC_LTOFF_FPTR16F 125 /* 16 bits LT-rel. function ptr. */
1626#define R_PARISC_LTOFF_FPTR16WF 126 /* 16 bits LT-rel. function ptr. */
1627#define R_PARISC_LTOFF_FPTR16DF 127 /* 16 bits LT-rel. function ptr. */
1628#define R_PARISC_LORESERVE 128
1629#define R_PARISC_COPY 128 /* Copy relocation. */
b15cb495
UD
1630#define R_PARISC_IPLT 129 /* Dynamic reloc, imported PLT */
1631#define R_PARISC_EPLT 130 /* Dynamic reloc, exported PLT */
fa53da17
UD
1632#define R_PARISC_TPREL32 153 /* 32 bits TP-rel. address. */
1633#define R_PARISC_TPREL21L 154 /* TP-rel. address, left 21 bits. */
1634#define R_PARISC_TPREL14R 158 /* TP-rel. address, right 14 bits. */
1635#define R_PARISC_LTOFF_TP21L 162 /* LT-TP-rel. address, left 21 bits. */
1636#define R_PARISC_LTOFF_TP14R 166 /* LT-TP-rel. address, right 14 bits.*/
1637#define R_PARISC_LTOFF_TP14F 167 /* 14 bits LT-TP-rel. address. */
1638#define R_PARISC_TPREL64 216 /* 64 bits TP-rel. address. */
1639#define R_PARISC_TPREL14WR 219 /* TP-rel. address, right 14 bits. */
1640#define R_PARISC_TPREL14DR 220 /* TP-rel. address, right 14 bits. */
1641#define R_PARISC_TPREL16F 221 /* 16 bits TP-rel. address. */
1642#define R_PARISC_TPREL16WF 222 /* 16 bits TP-rel. address. */
1643#define R_PARISC_TPREL16DF 223 /* 16 bits TP-rel. address. */
1644#define R_PARISC_LTOFF_TP64 224 /* 64 bits LT-TP-rel. address. */
1645#define R_PARISC_LTOFF_TP14WR 227 /* LT-TP-rel. address, right 14 bits.*/
1646#define R_PARISC_LTOFF_TP14DR 228 /* LT-TP-rel. address, right 14 bits.*/
1647#define R_PARISC_LTOFF_TP16F 229 /* 16 bits LT-TP-rel. address. */
1648#define R_PARISC_LTOFF_TP16WF 230 /* 16 bits LT-TP-rel. address. */
1649#define R_PARISC_LTOFF_TP16DF 231 /* 16 bits LT-TP-rel. address. */
1650#define R_PARISC_HIRESERVE 255
0200214b 1651
ef5d6645
UD
1652/* Legal values for p_type field of Elf32_Phdr/Elf64_Phdr. */
1653
1654#define PT_HP_TLS (PT_LOOS + 0x0)
1655#define PT_HP_CORE_NONE (PT_LOOS + 0x1)
1656#define PT_HP_CORE_VERSION (PT_LOOS + 0x2)
1657#define PT_HP_CORE_KERNEL (PT_LOOS + 0x3)
1658#define PT_HP_CORE_COMM (PT_LOOS + 0x4)
1659#define PT_HP_CORE_PROC (PT_LOOS + 0x5)
1660#define PT_HP_CORE_LOADABLE (PT_LOOS + 0x6)
1661#define PT_HP_CORE_STACK (PT_LOOS + 0x7)
1662#define PT_HP_CORE_SHM (PT_LOOS + 0x8)
1663#define PT_HP_CORE_MMF (PT_LOOS + 0x9)
1664#define PT_HP_PARALLEL (PT_LOOS + 0x10)
1665#define PT_HP_FASTBIND (PT_LOOS + 0x11)
1666#define PT_HP_OPT_ANNOT (PT_LOOS + 0x12)
1667#define PT_HP_HSL_ANNOT (PT_LOOS + 0x13)
1668#define PT_HP_STACK (PT_LOOS + 0x14)
1669
1670#define PT_PARISC_ARCHEXT 0x70000000
1671#define PT_PARISC_UNWIND 0x70000001
1672
1673/* Legal values for p_flags field of Elf32_Phdr/Elf64_Phdr. */
1674
1675#define PF_PARISC_SBP 0x08000000
1676
1677#define PF_HP_PAGE_SIZE 0x00100000
1678#define PF_HP_FAR_SHARED 0x00200000
1679#define PF_HP_NEAR_SHARED 0x00400000
1680#define PF_HP_CODE 0x01000000
1681#define PF_HP_MODIFY 0x02000000
1682#define PF_HP_LAZYSWAP 0x04000000
1683#define PF_HP_SBP 0x08000000
1684
1685
41df5ed4
RH
1686/* Alpha specific definitions. */
1687
1688/* Legal values for e_flags field of Elf64_Ehdr. */
1689
1690#define EF_ALPHA_32BIT 1 /* All addresses must be < 2GB. */
1691#define EF_ALPHA_CANRELAX 2 /* Relocations for relaxing exist. */
1692
1693/* Legal values for sh_type field of Elf64_Shdr. */
1694
1695/* These two are primerily concerned with ECOFF debugging info. */
1696#define SHT_ALPHA_DEBUG 0x70000001
1697#define SHT_ALPHA_REGINFO 0x70000002
1698
1699/* Legal values for sh_flags field of Elf64_Shdr. */
1700
1701#define SHF_ALPHA_GPREL 0x10000000
266180eb 1702
b259e746
UD
1703/* Legal values for st_other field of Elf64_Sym. */
1704#define STO_ALPHA_NOPV 0x80 /* No PV required. */
1705#define STO_ALPHA_STD_GPLOAD 0x88 /* PV only used for initial ldgp. */
1706
266180eb
RM
1707/* Alpha relocs. */
1708
1709#define R_ALPHA_NONE 0 /* No reloc */
1710#define R_ALPHA_REFLONG 1 /* Direct 32 bit */
1711#define R_ALPHA_REFQUAD 2 /* Direct 64 bit */
1712#define R_ALPHA_GPREL32 3 /* GP relative 32 bit */
1713#define R_ALPHA_LITERAL 4 /* GP relative 16 bit w/optimization */
1714#define R_ALPHA_LITUSE 5 /* Optimization hint for LITERAL */
1715#define R_ALPHA_GPDISP 6 /* Add displacement to GP */
1716#define R_ALPHA_BRADDR 7 /* PC+4 relative 23 bit shifted */
1717#define R_ALPHA_HINT 8 /* PC+4 relative 16 bit shifted */
1718#define R_ALPHA_SREL16 9 /* PC relative 16 bit */
1719#define R_ALPHA_SREL32 10 /* PC relative 32 bit */
1720#define R_ALPHA_SREL64 11 /* PC relative 64 bit */
9cd9ea10
UD
1721#define R_ALPHA_GPRELHIGH 17 /* GP relative 32 bit, high 16 bits */
1722#define R_ALPHA_GPRELLOW 18 /* GP relative 32 bit, low 16 bits */
1723#define R_ALPHA_GPREL16 19 /* GP relative 16 bit */
266180eb
RM
1724#define R_ALPHA_COPY 24 /* Copy symbol at runtime */
1725#define R_ALPHA_GLOB_DAT 25 /* Create GOT entry */
1726#define R_ALPHA_JMP_SLOT 26 /* Create PLT entry */
1727#define R_ALPHA_RELATIVE 27 /* Adjust by program base */
7ce241a0
UD
1728/* Keep this the last entry. */
1729#define R_ALPHA_NUM 28
266180eb 1730
4cca6b86
UD
1731
1732/* PowerPC specific declarations */
1733
ef5d6645
UD
1734/* Values for Elf32/64_Ehdr.e_flags. */
1735#define EF_PPC_EMB 0x80000000 /* PowerPC embedded flag */
1736
1737/* Cygnus local bits below */
1738#define EF_PPC_RELOCATABLE 0x00010000 /* PowerPC -mrelocatable flag*/
1739#define EF_PPC_RELOCATABLE_LIB 0x00008000 /* PowerPC -mrelocatable-lib
1740 flag */
1741
4cca6b86
UD
1742/* PowerPC relocations defined by the ABIs */
1743#define R_PPC_NONE 0
d610a544
UD
1744#define R_PPC_ADDR32 1 /* 32bit absolute address */
1745#define R_PPC_ADDR24 2 /* 26bit address, 2 bits ignored. */
1746#define R_PPC_ADDR16 3 /* 16bit absolute address */
1747#define R_PPC_ADDR16_LO 4 /* lower 16bit of absolute address */
1748#define R_PPC_ADDR16_HI 5 /* high 16bit of absolute address */
1749#define R_PPC_ADDR16_HA 6 /* adjusted high 16bit */
1750#define R_PPC_ADDR14 7 /* 16bit address, 2 bits ignored */
4cca6b86
UD
1751#define R_PPC_ADDR14_BRTAKEN 8
1752#define R_PPC_ADDR14_BRNTAKEN 9
d610a544
UD
1753#define R_PPC_REL24 10 /* PC relative 26 bit */
1754#define R_PPC_REL14 11 /* PC relative 16 bit */
4cca6b86
UD
1755#define R_PPC_REL14_BRTAKEN 12
1756#define R_PPC_REL14_BRNTAKEN 13
1757#define R_PPC_GOT16 14
1758#define R_PPC_GOT16_LO 15
1759#define R_PPC_GOT16_HI 16
1760#define R_PPC_GOT16_HA 17
1761#define R_PPC_PLTREL24 18
1762#define R_PPC_COPY 19
1763#define R_PPC_GLOB_DAT 20
1764#define R_PPC_JMP_SLOT 21
1765#define R_PPC_RELATIVE 22
1766#define R_PPC_LOCAL24PC 23
1767#define R_PPC_UADDR32 24
1768#define R_PPC_UADDR16 25
1769#define R_PPC_REL32 26
1770#define R_PPC_PLT32 27
1771#define R_PPC_PLTREL32 28
1772#define R_PPC_PLT16_LO 29
1773#define R_PPC_PLT16_HI 30
1774#define R_PPC_PLT16_HA 31
1775#define R_PPC_SDAREL16 32
1776#define R_PPC_SECTOFF 33
1777#define R_PPC_SECTOFF_LO 34
1778#define R_PPC_SECTOFF_HI 35
1779#define R_PPC_SECTOFF_HA 36
7ce241a0
UD
1780/* Keep this the last entry. */
1781#define R_PPC_NUM 37
4cca6b86
UD
1782
1783/* The remaining relocs are from the Embedded ELF ABI, and are not
1784 in the SVR4 ELF ABI. */
1785#define R_PPC_EMB_NADDR32 101
1786#define R_PPC_EMB_NADDR16 102
1787#define R_PPC_EMB_NADDR16_LO 103
1788#define R_PPC_EMB_NADDR16_HI 104
1789#define R_PPC_EMB_NADDR16_HA 105
1790#define R_PPC_EMB_SDAI16 106
1791#define R_PPC_EMB_SDA2I16 107
1792#define R_PPC_EMB_SDA2REL 108
d610a544 1793#define R_PPC_EMB_SDA21 109 /* 16 bit offset in SDA */
4cca6b86
UD
1794#define R_PPC_EMB_MRKREF 110
1795#define R_PPC_EMB_RELSEC16 111
1796#define R_PPC_EMB_RELST_LO 112
1797#define R_PPC_EMB_RELST_HI 113
1798#define R_PPC_EMB_RELST_HA 114
1799#define R_PPC_EMB_BIT_FLD 115
d610a544
UD
1800#define R_PPC_EMB_RELSDA 116 /* 16 bit relative offset in SDA */
1801
1802/* Diab tool relocations. */
1803#define R_PPC_DIAB_SDA21_LO 180 /* like EMB_SDA21, but lower 16 bit */
1804#define R_PPC_DIAB_SDA21_HI 181 /* like EMB_SDA21, but high 16 bit */
1805#define R_PPC_DIAB_SDA21_HA 182 /* like EMB_SDA21, adjusted high 16 */
1806#define R_PPC_DIAB_RELSDA_LO 183 /* like EMB_RELSDA, but lower 16 bit */
1807#define R_PPC_DIAB_RELSDA_HI 184 /* like EMB_RELSDA, but high 16 bit */
1808#define R_PPC_DIAB_RELSDA_HA 185 /* like EMB_RELSDA, adjusted high 16 */
4cca6b86
UD
1809
1810/* This is a phony reloc to handle any old fashioned TOC16 references
1811 that may still be in object files. */
1812#define R_PPC_TOC16 255
1813
bf7997b6
UD
1814
1815/* ARM specific declarations */
1816
c1a61edb
UD
1817/* Processor specific flags for the ELF header e_flags field. */
1818#define EF_ARM_RELEXEC 0x01
1819#define EF_ARM_HASENTRY 0x02
1820#define EF_ARM_INTERWORK 0x04
1821#define EF_ARM_APCS_26 0x08
1822#define EF_ARM_APCS_FLOAT 0x10
1823#define EF_ARM_PIC 0x20
1746f2b0
UD
1824#define EF_ARM_ALIGN8 0x40 /* 8-bit structure alignment is in use */
1825#define EF_ARM_NEW_ABI 0x80
1826#define EF_ARM_OLD_ABI 0x100
1827
1828/* Other constants defined in the ARM ELF spec. version B-01. */
1829/* NB. These conflict with values defined above. */
1830#define EF_ARM_SYMSARESORTED 0x04
1831#define EF_ARM_DYNSYMSUSESEGIDX 0x08
1832#define EF_ARM_MAPSYMSFIRST 0x10
1833#define EF_ARM_EABIMASK 0XFF000000
1834
1835#define EF_ARM_EABI_VERSION(flags) ((flags) & EF_ARM_EABIMASK)
1836#define EF_ARM_EABI_UNKNOWN 0x00000000
1837#define EF_ARM_EABI_VER1 0x01000000
1838#define EF_ARM_EABI_VER2 0x02000000
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1839
1840/* Additional symbol types for Thumb */
1841#define STT_ARM_TFUNC 0xd
1842
1843/* ARM-specific values for sh_flags */
1844#define SHF_ARM_ENTRYSECT 0x10000000 /* Section contains an entry point */
eeabe877 1845#define SHF_ARM_COMDEF 0x80000000 /* Section may be multiply defined
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1846 in the input to a link step */
1847
1848/* ARM-specific program header flags */
eeabe877 1849#define PF_ARM_SB 0x10000000 /* Segment contains the location
c1a61edb 1850 addressed by the static base */
bf7997b6 1851
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1852/* ARM relocs. */
1853#define R_ARM_NONE 0 /* No reloc */
1854#define R_ARM_PC24 1 /* PC relative 26 bit branch */
1855#define R_ARM_ABS32 2 /* Direct 32 bit */
1856#define R_ARM_REL32 3 /* PC relative 32 bit */
a64e578b 1857#define R_ARM_PC13 4
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1858#define R_ARM_ABS16 5 /* Direct 16 bit */
1859#define R_ARM_ABS12 6 /* Direct 12 bit */
1860#define R_ARM_THM_ABS5 7
a64e578b 1861#define R_ARM_ABS8 8 /* Direct 8 bit */
c1a61edb 1862#define R_ARM_SBREL32 9
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1863#define R_ARM_THM_PC22 10
1864#define R_ARM_THM_PC8 11
1865#define R_ARM_AMP_VCALL9 12
1866#define R_ARM_SWI24 13
1867#define R_ARM_THM_SWI8 14
1868#define R_ARM_XPC25 15
1869#define R_ARM_THM_XPC22 16
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1870#define R_ARM_COPY 20 /* Copy symbol at runtime */
1871#define R_ARM_GLOB_DAT 21 /* Create GOT entry */
1872#define R_ARM_JUMP_SLOT 22 /* Create PLT entry */
1873#define R_ARM_RELATIVE 23 /* Adjust by program base */
1874#define R_ARM_GOTOFF 24 /* 32 bit offset to GOT */
1875#define R_ARM_GOTPC 25 /* 32 bit PC relative offset to GOT */
1876#define R_ARM_GOT32 26 /* 32 bit GOT entry */
1877#define R_ARM_PLT32 27 /* 32 bit PLT address */
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1878#define R_ARM_ALU_PCREL_7_0 32
1879#define R_ARM_ALU_PCREL_15_8 33
1880#define R_ARM_ALU_PCREL_23_15 34
1881#define R_ARM_LDR_SBREL_11_0 35
1882#define R_ARM_ALU_SBREL_19_12 36
1883#define R_ARM_ALU_SBREL_27_20 37
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1884#define R_ARM_GNU_VTENTRY 100
1885#define R_ARM_GNU_VTINHERIT 101
1886#define R_ARM_THM_PC11 102 /* thumb unconditional branch */
1887#define R_ARM_THM_PC9 103 /* thumb conditional branch */
1888#define R_ARM_RXPC25 249
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1889#define R_ARM_RSBREL32 250
1890#define R_ARM_THM_RPC22 251
1891#define R_ARM_RREL32 252
1892#define R_ARM_RABS22 253
1893#define R_ARM_RPC24 254
1894#define R_ARM_RBASE 255
7ce241a0 1895/* Keep this the last entry. */
c1a61edb 1896#define R_ARM_NUM 256
bf7997b6 1897
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1898/* IA-64 specific declarations. */
1899
1900/* Processor specific flags for the Ehdr e_flags field. */
1901#define EF_IA_64_MASKOS 0x0000000f /* os-specific flags */
1902#define EF_IA_64_ABI64 0x00000010 /* 64-bit ABI */
1903#define EF_IA_64_ARCH 0xff000000 /* arch. version mask */
1904
1905/* Processor specific values for the Phdr p_type field. */
1906#define PT_IA_64_ARCHEXT (PT_LOPROC + 0) /* arch extension bits */
1907#define PT_IA_64_UNWIND (PT_LOPROC + 1) /* ia64 unwind bits */
1908
1909/* Processor specific flags for the Phdr p_flags field. */
1910#define PF_IA_64_NORECOV 0x80000000 /* spec insns w/o recovery */
1911
1912/* Processor specific values for the Shdr sh_type field. */
1913#define SHT_IA_64_EXT (SHT_LOPROC + 0) /* extension bits */
1914#define SHT_IA_64_UNWIND (SHT_LOPROC + 1) /* unwind bits */
1915
1916/* Processor specific flags for the Shdr sh_flags field. */
1917#define SHF_IA_64_SHORT 0x10000000 /* section near gp */
1918#define SHF_IA_64_NORECOV 0x20000000 /* spec insns w/o recovery */
1919
1920/* Processor specific values for the Dyn d_tag field. */
1921#define DT_IA_64_PLT_RESERVE (DT_LOPROC + 0)
1922#define DT_IA_64_NUM 1
1923
1924/* IA-64 relocations. */
1925#define R_IA64_NONE 0x00 /* none */
1926#define R_IA64_IMM14 0x21 /* symbol + addend, add imm14 */
1927#define R_IA64_IMM22 0x22 /* symbol + addend, add imm22 */
1928#define R_IA64_IMM64 0x23 /* symbol + addend, mov imm64 */
1929#define R_IA64_DIR32MSB 0x24 /* symbol + addend, data4 MSB */
1930#define R_IA64_DIR32LSB 0x25 /* symbol + addend, data4 LSB */
1931#define R_IA64_DIR64MSB 0x26 /* symbol + addend, data8 MSB */
1932#define R_IA64_DIR64LSB 0x27 /* symbol + addend, data8 LSB */
1933#define R_IA64_GPREL22 0x2a /* @gprel(sym + add), add imm22 */
1934#define R_IA64_GPREL64I 0x2b /* @gprel(sym + add), mov imm64 */
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1935#define R_IA64_GPREL32MSB 0x2c /* @gprel(sym + add), data4 MSB */
1936#define R_IA64_GPREL32LSB 0x2d /* @gprel(sym + add), data4 LSB */
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1937#define R_IA64_GPREL64MSB 0x2e /* @gprel(sym + add), data8 MSB */
1938#define R_IA64_GPREL64LSB 0x2f /* @gprel(sym + add), data8 LSB */
1939#define R_IA64_LTOFF22 0x32 /* @ltoff(sym + add), add imm22 */
1940#define R_IA64_LTOFF64I 0x33 /* @ltoff(sym + add), mov imm64 */
1941#define R_IA64_PLTOFF22 0x3a /* @pltoff(sym + add), add imm22 */
1942#define R_IA64_PLTOFF64I 0x3b /* @pltoff(sym + add), mov imm64 */
1943#define R_IA64_PLTOFF64MSB 0x3e /* @pltoff(sym + add), data8 MSB */
1944#define R_IA64_PLTOFF64LSB 0x3f /* @pltoff(sym + add), data8 LSB */
1945#define R_IA64_FPTR64I 0x43 /* @fptr(sym + add), mov imm64 */
1946#define R_IA64_FPTR32MSB 0x44 /* @fptr(sym + add), data4 MSB */
1947#define R_IA64_FPTR32LSB 0x45 /* @fptr(sym + add), data4 LSB */
1948#define R_IA64_FPTR64MSB 0x46 /* @fptr(sym + add), data8 MSB */
1949#define R_IA64_FPTR64LSB 0x47 /* @fptr(sym + add), data8 LSB */
8bf95899 1950#define R_IA64_PCREL60B 0x48 /* @pcrel(sym + add), brl */
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1951#define R_IA64_PCREL21B 0x49 /* @pcrel(sym + add), ptb, call */
1952#define R_IA64_PCREL21M 0x4a /* @pcrel(sym + add), chk.s */
1953#define R_IA64_PCREL21F 0x4b /* @pcrel(sym + add), fchkf */
1954#define R_IA64_PCREL32MSB 0x4c /* @pcrel(sym + add), data4 MSB */
1955#define R_IA64_PCREL32LSB 0x4d /* @pcrel(sym + add), data4 LSB */
1956#define R_IA64_PCREL64MSB 0x4e /* @pcrel(sym + add), data8 MSB */
1957#define R_IA64_PCREL64LSB 0x4f /* @pcrel(sym + add), data8 LSB */
1958#define R_IA64_LTOFF_FPTR22 0x52 /* @ltoff(@fptr(s+a)), imm22 */
1959#define R_IA64_LTOFF_FPTR64I 0x53 /* @ltoff(@fptr(s+a)), imm64 */
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1960#define R_IA64_LTOFF_FPTR32MSB 0x54 /* @ltoff(@fptr(s+a)), data4 MSB */
1961#define R_IA64_LTOFF_FPTR32LSB 0x55 /* @ltoff(@fptr(s+a)), data4 LSB */
1962#define R_IA64_LTOFF_FPTR64MSB 0x56 /* @ltoff(@fptr(s+a)), data8 MSB */
1963#define R_IA64_LTOFF_FPTR64LSB 0x57 /* @ltoff(@fptr(s+a)), data8 LSB */
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1964#define R_IA64_SEGREL32MSB 0x5c /* @segrel(sym + add), data4 MSB */
1965#define R_IA64_SEGREL32LSB 0x5d /* @segrel(sym + add), data4 LSB */
1966#define R_IA64_SEGREL64MSB 0x5e /* @segrel(sym + add), data8 MSB */
1967#define R_IA64_SEGREL64LSB 0x5f /* @segrel(sym + add), data8 LSB */
1968#define R_IA64_SECREL32MSB 0x64 /* @secrel(sym + add), data4 MSB */
1969#define R_IA64_SECREL32LSB 0x65 /* @secrel(sym + add), data4 LSB */
1970#define R_IA64_SECREL64MSB 0x66 /* @secrel(sym + add), data8 MSB */
1971#define R_IA64_SECREL64LSB 0x67 /* @secrel(sym + add), data8 LSB */
1972#define R_IA64_REL32MSB 0x6c /* data 4 + REL */
1973#define R_IA64_REL32LSB 0x6d /* data 4 + REL */
1974#define R_IA64_REL64MSB 0x6e /* data 8 + REL */
1975#define R_IA64_REL64LSB 0x6f /* data 8 + REL */
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1976#define R_IA64_LTV32MSB 0x74 /* symbol + addend, data4 MSB */
1977#define R_IA64_LTV32LSB 0x75 /* symbol + addend, data4 LSB */
1978#define R_IA64_LTV64MSB 0x76 /* symbol + addend, data8 MSB */
1979#define R_IA64_LTV64LSB 0x77 /* symbol + addend, data8 LSB */
1980#define R_IA64_PCREL21BI 0x79 /* @pcrel(sym + add), 21bit inst */
1981#define R_IA64_PCREL22 0x7a /* @pcrel(sym + add), 22bit inst */
1982#define R_IA64_PCREL64I 0x7b /* @pcrel(sym + add), 64bit inst */
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1983#define R_IA64_IPLTMSB 0x80 /* dynamic reloc, imported PLT, MSB */
1984#define R_IA64_IPLTLSB 0x81 /* dynamic reloc, imported PLT, LSB */
e950d61f 1985#define R_IA64_COPY 0x84 /* copy relocation */
09022115 1986#define R_IA64_SUB 0x85 /* Addend and symbol difference */
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1987#define R_IA64_LTOFF22X 0x86 /* LTOFF22, relaxable. */
1988#define R_IA64_LDXMOV 0x87 /* Use of LTOFF22X. */
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1989#define R_IA64_TPREL14 0x91 /* @tprel(sym + add), imm14 */
1990#define R_IA64_TPREL22 0x92 /* @tprel(sym + add), imm22 */
1991#define R_IA64_TPREL64I 0x93 /* @tprel(sym + add), imm64 */
1992#define R_IA64_TPREL64MSB 0x96 /* @tprel(sym + add), data8 MSB */
1993#define R_IA64_TPREL64LSB 0x97 /* @tprel(sym + add), data8 LSB */
1994#define R_IA64_LTOFF_TPREL22 0x9a /* @ltoff(@tprel(s+a)), imm2 */
1995#define R_IA64_DTPMOD64MSB 0xa6 /* @dtpmod(sym + add), data8 MSB */
1996#define R_IA64_DTPMOD64LSB 0xa7 /* @dtpmod(sym + add), data8 LSB */
1997#define R_IA64_LTOFF_DTPMOD22 0xaa /* @ltoff(@dtpmod(sym + add)), imm22 */
1998#define R_IA64_DTPREL14 0xb1 /* @dtprel(sym + add), imm14 */
1999#define R_IA64_DTPREL22 0xb2 /* @dtprel(sym + add), imm22 */
2000#define R_IA64_DTPREL64I 0xb3 /* @dtprel(sym + add), imm64 */
2001#define R_IA64_DTPREL32MSB 0xb4 /* @dtprel(sym + add), data4 MSB */
2002#define R_IA64_DTPREL32LSB 0xb5 /* @dtprel(sym + add), data4 LSB */
2003#define R_IA64_DTPREL64MSB 0xb6 /* @dtprel(sym + add), data8 MSB */
2004#define R_IA64_DTPREL64LSB 0xb7 /* @dtprel(sym + add), data8 LSB */
2005#define R_IA64_LTOFF_DTPREL22 0xba /* @ltoff(@dtprel(s+a)), imm22 */
c0282c06 2006
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2007/* SH specific declarations */
2008
2009/* SH relocs. */
2010#define R_SH_NONE 0
2011#define R_SH_DIR32 1
2012#define R_SH_REL32 2
2013#define R_SH_DIR8WPN 3
2014#define R_SH_IND12W 4
2015#define R_SH_DIR8WPL 5
2016#define R_SH_DIR8WPZ 6
2017#define R_SH_DIR8BP 7
2018#define R_SH_DIR8W 8
2019#define R_SH_DIR8L 9
2020#define R_SH_SWITCH16 25
2021#define R_SH_SWITCH32 26
2022#define R_SH_USES 27
2023#define R_SH_COUNT 28
2024#define R_SH_ALIGN 29
2025#define R_SH_CODE 30
2026#define R_SH_DATA 31
2027#define R_SH_LABEL 32
2028#define R_SH_SWITCH8 33
2029#define R_SH_GNU_VTINHERIT 34
2030#define R_SH_GNU_VTENTRY 35
2031#define R_SH_GOT32 160
2032#define R_SH_PLT32 161
2033#define R_SH_COPY 162
2034#define R_SH_GLOB_DAT 163
2035#define R_SH_JMP_SLOT 164
2036#define R_SH_RELATIVE 165
2037#define R_SH_GOTOFF 166
2038#define R_SH_GOTPC 167
2039/* Keep this the last entry. */
a5c88158 2040#define R_SH_NUM 256
88615235 2041
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AJ
2042/* Additional s390 relocs */
2043
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2044#define R_390_NONE 0 /* No reloc. */
2045#define R_390_8 1 /* Direct 8 bit. */
2046#define R_390_12 2 /* Direct 12 bit. */
2047#define R_390_16 3 /* Direct 16 bit. */
2048#define R_390_32 4 /* Direct 32 bit. */
2049#define R_390_PC32 5 /* PC relative 32 bit. */
2050#define R_390_GOT12 6 /* 12 bit GOT offset. */
2051#define R_390_GOT32 7 /* 32 bit GOT offset. */
2052#define R_390_PLT32 8 /* 32 bit PC relative PLT address. */
2053#define R_390_COPY 9 /* Copy symbol at runtime. */
2054#define R_390_GLOB_DAT 10 /* Create GOT entry. */
2055#define R_390_JMP_SLOT 11 /* Create PLT entry. */
2056#define R_390_RELATIVE 12 /* Adjust by program base. */
2057#define R_390_GOTOFF 13 /* 32 bit offset to GOT. */
2058#define R_390_GOTPC 14 /* 32 bit PC relative offset to GOT. */
2059#define R_390_GOT16 15 /* 16 bit GOT offset. */
2060#define R_390_PC16 16 /* PC relative 16 bit. */
2061#define R_390_PC16DBL 17 /* PC relative 16 bit shifted by 1. */
2062#define R_390_PLT16DBL 18 /* 16 bit PC rel. PLT shifted by 1. */
2063#define R_390_PC32DBL 19 /* PC relative 32 bit shifted by 1. */
2064#define R_390_PLT32DBL 20 /* 32 bit PC rel. PLT shifted by 1. */
2065#define R_390_GOTPCDBL 21 /* 32 bit PC rel. GOT shifted by 1. */
2066#define R_390_64 22 /* Direct 64 bit. */
2067#define R_390_PC64 23 /* PC relative 64 bit. */
2068#define R_390_GOT64 24 /* 64 bit GOT offset. */
2069#define R_390_PLT64 25 /* 64 bit PC relative PLT address. */
2070#define R_390_GOTENT 26 /* 32 bit PC rel. to GOT entry >> 1. */
136d4332 2071
7daf1a1b 2072/* Keep this the last entry. */
8bbbd5d0 2073#define R_390_NUM 27
7daf1a1b 2074
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2075/* CRIS relocations. */
2076#define R_CRIS_NONE 0
2077#define R_CRIS_8 1
2078#define R_CRIS_16 2
2079#define R_CRIS_32 3
2080#define R_CRIS_8_PCREL 4
2081#define R_CRIS_16_PCREL 5
2082#define R_CRIS_32_PCREL 6
2083#define R_CRIS_GNU_VTINHERIT 7
2084#define R_CRIS_GNU_VTENTRY 8
2085#define R_CRIS_COPY 9
2086#define R_CRIS_GLOB_DAT 10
2087#define R_CRIS_JUMP_SLOT 11
2088#define R_CRIS_RELATIVE 12
2089#define R_CRIS_16_GOT 13
2090#define R_CRIS_32_GOT 14
2091#define R_CRIS_16_GOTPLT 15
2092#define R_CRIS_32_GOTPLT 16
2093#define R_CRIS_32_GOTREL 17
2094#define R_CRIS_32_PLT_GOTREL 18
2095#define R_CRIS_32_PLT_PCREL 19
2096
2097#define R_CRIS_NUM 20
2098
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2099/* AMD x86-64 relocations. */
2100#define R_X86_64_NONE 0 /* No reloc */
2101#define R_X86_64_64 1 /* Direct 64 bit */
2102#define R_X86_64_PC32 2 /* PC relative 32 bit signed */
2103#define R_X86_64_GOT32 3 /* 32 bit GOT entry */
2104#define R_X86_64_PLT32 4 /* 32 bit PLT address */
2105#define R_X86_64_COPY 5 /* Copy symbol at runtime */
2106#define R_X86_64_GLOB_DAT 6 /* Create GOT entry */
2107#define R_X86_64_JUMP_SLOT 7 /* Create PLT entry */
2108#define R_X86_64_RELATIVE 8 /* Adjust by program base */
2109#define R_X86_64_GOTPCREL 9 /* 32 bit signed pc relative
2110 offset to GOT */
2111#define R_X86_64_32 10 /* Direct 32 bit zero extended */
2112#define R_X86_64_32S 11 /* Direct 32 bit sign extended */
2113#define R_X86_64_16 12 /* Direct 16 bit zero extended */
2114#define R_X86_64_PC16 13 /* 16 bit sign extended pc relative */
2115#define R_X86_64_8 14 /* Direct 8 bit sign extended */
2116#define R_X86_64_PC8 15 /* 8 bit sign extended pc relative */
2117
2118#define R_X86_64_NUM 16
2119
54d79e99 2120__END_DECLS
266180eb 2121
28f540f4 2122#endif /* elf.h */
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