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1// elfcpp.h -- main header file for elfcpp -*- C++ -*-
2
fd67aa11 3// Copyright (C) 2006-2024 Free Software Foundation, Inc.
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4// Written by Ian Lance Taylor <iant@google.com>.
5
6// This file is part of elfcpp.
0e879927 7
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8// This program is free software; you can redistribute it and/or
9// modify it under the terms of the GNU Library General Public License
10// as published by the Free Software Foundation; either version 2, or
11// (at your option) any later version.
12
13// In addition to the permissions in the GNU Library General Public
14// License, the Free Software Foundation gives you unlimited
15// permission to link the compiled version of this file into
16// combinations with other programs, and to distribute those
17// combinations without any restriction coming from the use of this
18// file. (The Library Public License restrictions do apply in other
19// respects; for example, they cover modification of the file, and
f77507bd 20// distribution when not linked into a combined executable.)
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21
22// This program is distributed in the hope that it will be useful, but
23// WITHOUT ANY WARRANTY; without even the implied warranty of
24// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
25// Library General Public License for more details.
26
27// You should have received a copy of the GNU Library General Public
28// License along with this program; if not, write to the Free Software
29// Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston, MA
30// 02110-1301, USA.
31
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32// This is the external interface for elfcpp.
33
34#ifndef ELFCPP_H
35#define ELFCPP_H
36
8d9455b4 37#include "elfcpp_swap.h"
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38
39#include <stdint.h>
40
41namespace elfcpp
42{
43
44// Basic ELF types.
45
46// These types are always the same size.
47
48typedef uint16_t Elf_Half;
49typedef uint32_t Elf_Word;
50typedef int32_t Elf_Sword;
51typedef uint64_t Elf_Xword;
52typedef int64_t Elf_Sxword;
53
54// These types vary in size depending on the ELF file class. The
55// template parameter should be 32 or 64.
56
57template<int size>
39081c14 58struct Elf_types;
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59
60template<>
61struct Elf_types<32>
62{
63 typedef uint32_t Elf_Addr;
64 typedef uint32_t Elf_Off;
65 typedef uint32_t Elf_WXword;
61ba1cf9 66 typedef int32_t Elf_Swxword;
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67};
68
69template<>
70struct Elf_types<64>
71{
72 typedef uint64_t Elf_Addr;
73 typedef uint64_t Elf_Off;
74 typedef uint64_t Elf_WXword;
61ba1cf9 75 typedef int64_t Elf_Swxword;
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76};
77
78// Offsets within the Ehdr e_ident field.
79
80const int EI_MAG0 = 0;
81const int EI_MAG1 = 1;
82const int EI_MAG2 = 2;
83const int EI_MAG3 = 3;
84const int EI_CLASS = 4;
85const int EI_DATA = 5;
86const int EI_VERSION = 6;
87const int EI_OSABI = 7;
88const int EI_ABIVERSION = 8;
89const int EI_PAD = 9;
90const int EI_NIDENT = 16;
91
92// The valid values found in Ehdr e_ident[EI_MAG0 through EI_MAG3].
93
94const int ELFMAG0 = 0x7f;
95const int ELFMAG1 = 'E';
96const int ELFMAG2 = 'L';
97const int ELFMAG3 = 'F';
98
99// The valid values found in Ehdr e_ident[EI_CLASS].
100
101enum
102{
103 ELFCLASSNONE = 0,
104 ELFCLASS32 = 1,
105 ELFCLASS64 = 2
106};
107
108// The valid values found in Ehdr e_ident[EI_DATA].
109
110enum
111{
112 ELFDATANONE = 0,
113 ELFDATA2LSB = 1,
114 ELFDATA2MSB = 2
115};
116
117// The valid values found in Ehdr e_ident[EI_VERSION] and e_version.
118
119enum
120{
121 EV_NONE = 0,
122 EV_CURRENT = 1
123};
124
125// The valid values found in Ehdr e_ident[EI_OSABI].
126
127enum ELFOSABI
128{
129 ELFOSABI_NONE = 0,
130 ELFOSABI_HPUX = 1,
131 ELFOSABI_NETBSD = 2,
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132 ELFOSABI_GNU = 3,
133 // ELFOSABI_LINUX is an alias for ELFOSABI_GNU.
bae7f79e 134 ELFOSABI_LINUX = 3,
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135 ELFOSABI_SOLARIS = 6,
136 ELFOSABI_AIX = 7,
137 ELFOSABI_IRIX = 8,
138 ELFOSABI_FREEBSD = 9,
139 ELFOSABI_TRU64 = 10,
140 ELFOSABI_MODESTO = 11,
141 ELFOSABI_OPENBSD = 12,
142 ELFOSABI_OPENVMS = 13,
143 ELFOSABI_NSK = 14,
144 ELFOSABI_AROS = 15,
145 // A GNU extension for the ARM.
146 ELFOSABI_ARM = 97,
147 // A GNU extension for the MSP.
148 ELFOSABI_STANDALONE = 255
149};
150
151// The valid values found in the Ehdr e_type field.
152
153enum ET
154{
155 ET_NONE = 0,
156 ET_REL = 1,
157 ET_EXEC = 2,
158 ET_DYN = 3,
159 ET_CORE = 4,
160 ET_LOOS = 0xfe00,
161 ET_HIOS = 0xfeff,
162 ET_LOPROC = 0xff00,
163 ET_HIPROC = 0xffff
164};
165
166// The valid values found in the Ehdr e_machine field.
167
168enum EM
169{
170 EM_NONE = 0,
171 EM_M32 = 1,
172 EM_SPARC = 2,
173 EM_386 = 3,
174 EM_68K = 4,
175 EM_88K = 5,
01f573ad 176 EM_IAMCU = 6,
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177 EM_860 = 7,
178 EM_MIPS = 8,
179 EM_S370 = 9,
180 EM_MIPS_RS3_LE = 10,
181 // 11 was the old Sparc V9 ABI.
182 // 12 through 14 are reserved.
183 EM_PARISC = 15,
184 // 16 is reserved.
185 // Some old PowerPC object files use 17.
186 EM_VPP500 = 17,
187 EM_SPARC32PLUS = 18,
188 EM_960 = 19,
189 EM_PPC = 20,
190 EM_PPC64 = 21,
191 EM_S390 = 22,
192 // 23 through 35 are served.
193 EM_V800 = 36,
194 EM_FR20 = 37,
195 EM_RH32 = 38,
196 EM_RCE = 39,
197 EM_ARM = 40,
198 EM_ALPHA = 41,
199 EM_SH = 42,
200 EM_SPARCV9 = 43,
201 EM_TRICORE = 44,
202 EM_ARC = 45,
203 EM_H8_300 = 46,
204 EM_H8_300H = 47,
205 EM_H8S = 48,
206 EM_H8_500 = 49,
207 EM_IA_64 = 50,
208 EM_MIPS_X = 51,
209 EM_COLDFIRE = 52,
210 EM_68HC12 = 53,
211 EM_MMA = 54,
212 EM_PCP = 55,
213 EM_NCPU = 56,
214 EM_NDR1 = 57,
215 EM_STARCORE = 58,
216 EM_ME16 = 59,
217 EM_ST100 = 60,
218 EM_TINYJ = 61,
219 EM_X86_64 = 62,
220 EM_PDSP = 63,
221 EM_PDP10 = 64,
222 EM_PDP11 = 65,
223 EM_FX66 = 66,
224 EM_ST9PLUS = 67,
225 EM_ST7 = 68,
226 EM_68HC16 = 69,
227 EM_68HC11 = 70,
228 EM_68HC08 = 71,
229 EM_68HC05 = 72,
230 EM_SVX = 73,
231 EM_ST19 = 74,
232 EM_VAX = 75,
233 EM_CRIS = 76,
234 EM_JAVELIN = 77,
235 EM_FIREPATH = 78,
236 EM_ZSP = 79,
237 EM_MMIX = 80,
238 EM_HUANY = 81,
239 EM_PRISM = 82,
240 EM_AVR = 83,
241 EM_FR30 = 84,
242 EM_D10V = 85,
243 EM_D30V = 86,
244 EM_V850 = 87,
245 EM_M32R = 88,
246 EM_MN10300 = 89,
247 EM_MN10200 = 90,
248 EM_PJ = 91,
73589c9d 249 EM_OR1K = 92,
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250 EM_ARC_A5 = 93,
251 EM_XTENSA = 94,
252 EM_VIDEOCORE = 95,
253 EM_TMM_GPP = 96,
254 EM_NS32K = 97,
255 EM_TPC = 98,
256 // Some old picoJava object files use 99 (EM_PJ is correct).
257 EM_SNP1K = 99,
258 EM_ST200 = 100,
259 EM_IP2K = 101,
260 EM_MAX = 102,
261 EM_CR = 103,
262 EM_F2MC16 = 104,
263 EM_MSP430 = 105,
264 EM_BLACKFIN = 106,
265 EM_SE_C33 = 107,
266 EM_SEP = 108,
267 EM_ARCA = 109,
268 EM_UNICORE = 110,
269 EM_ALTERA_NIOS2 = 113,
270 EM_CRX = 114,
4244d58a 271 EM_TI_PRU = 144,
053a4d68 272 EM_AARCH64 = 183,
5c0b3823 273 EM_TILEGX = 191,
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274 // The Morph MT.
275 EM_MT = 0x2530,
276 // DLX.
277 EM_DLX = 0x5aa5,
278 // FRV.
279 EM_FRV = 0x5441,
280 // Infineon Technologies 16-bit microcontroller with C166-V2 core.
281 EM_X16X = 0x4688,
282 // Xstorym16
283 EM_XSTORMY16 = 0xad45,
284 // Renesas M32C
285 EM_M32C = 0xfeb0,
286 // Vitesse IQ2000
287 EM_IQ2000 = 0xfeba,
288 // NIOS
289 EM_NIOS32 = 0xfebb
290 // Old AVR objects used 0x1057 (EM_AVR is correct).
291 // Old MSP430 objects used 0x1059 (EM_MSP430 is correct).
292 // Old FR30 objects used 0x3330 (EM_FR30 is correct).
73589c9d 293 // Old OpenRISC objects used 0x3426 and 0x8472 (EM_OR1K is correct).
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294 // Old D10V objects used 0x7650 (EM_D10V is correct).
295 // Old D30V objects used 0x7676 (EM_D30V is correct).
296 // Old IP2X objects used 0x8217 (EM_IP2K is correct).
297 // Old PowerPC objects used 0x9025 (EM_PPC is correct).
298 // Old Alpha objects used 0x9026 (EM_ALPHA is correct).
299 // Old M32R objects used 0x9041 (EM_M32R is correct).
300 // Old V850 objects used 0x9080 (EM_V850 is correct).
301 // Old S/390 objects used 0xa390 (EM_S390 is correct).
302 // Old Xtensa objects used 0xabc7 (EM_XTENSA is correct).
303 // Old MN10300 objects used 0xbeef (EM_MN10300 is correct).
304 // Old MN10200 objects used 0xdead (EM_MN10200 is correct).
305};
306
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307// A special value found in the Ehdr e_phnum field.
308
309enum
310{
311 // Number of program segments stored in sh_info field of first
312 // section headre.
313 PN_XNUM = 0xffff
314};
315
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316// Special section indices.
317
318enum
319{
320 SHN_UNDEF = 0,
321 SHN_LORESERVE = 0xff00,
322 SHN_LOPROC = 0xff00,
323 SHN_HIPROC = 0xff1f,
324 SHN_LOOS = 0xff20,
325 SHN_HIOS = 0xff3f,
326 SHN_ABS = 0xfff1,
327 SHN_COMMON = 0xfff2,
328 SHN_XINDEX = 0xffff,
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329 SHN_HIRESERVE = 0xffff,
330
331 // Provide for initial and final section ordering in conjunction
332 // with the SHF_LINK_ORDER and SHF_ORDERED section flags.
333 SHN_BEFORE = 0xff00,
334 SHN_AFTER = 0xff01,
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335
336 // x86_64 specific large common symbol.
337 SHN_X86_64_LCOMMON = 0xff02
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338};
339
340// The valid values found in the Shdr sh_type field.
341
39081c14 342enum SHT
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343{
344 SHT_NULL = 0,
345 SHT_PROGBITS = 1,
346 SHT_SYMTAB = 2,
347 SHT_STRTAB = 3,
348 SHT_RELA = 4,
349 SHT_HASH = 5,
350 SHT_DYNAMIC = 6,
351 SHT_NOTE = 7,
352 SHT_NOBITS = 8,
353 SHT_REL = 9,
354 SHT_SHLIB = 10,
355 SHT_DYNSYM = 11,
356 SHT_INIT_ARRAY = 14,
357 SHT_FINI_ARRAY = 15,
358 SHT_PREINIT_ARRAY = 16,
359 SHT_GROUP = 17,
360 SHT_SYMTAB_SHNDX = 18,
361 SHT_LOOS = 0x60000000,
362 SHT_HIOS = 0x6fffffff,
363 SHT_LOPROC = 0x70000000,
364 SHT_HIPROC = 0x7fffffff,
365 SHT_LOUSER = 0x80000000,
366 SHT_HIUSER = 0xffffffff,
367 // The remaining values are not in the standard.
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368 // Incremental build data.
369 SHT_GNU_INCREMENTAL_INPUTS = 0x6fff4700,
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370 SHT_GNU_INCREMENTAL_SYMTAB = 0x6fff4701,
371 SHT_GNU_INCREMENTAL_RELOCS = 0x6fff4702,
84a3e677 372 SHT_GNU_INCREMENTAL_GOT_PLT = 0x6fff4703,
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373 // Object attributes.
374 SHT_GNU_ATTRIBUTES = 0x6ffffff5,
375 // GNU style dynamic hash table.
376 SHT_GNU_HASH = 0x6ffffff6,
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377 // List of prelink dependencies.
378 SHT_GNU_LIBLIST = 0x6ffffff7,
379 // Versions defined by file.
380 SHT_SUNW_verdef = 0x6ffffffd,
381 SHT_GNU_verdef = 0x6ffffffd,
382 // Versions needed by file.
383 SHT_SUNW_verneed = 0x6ffffffe,
384 SHT_GNU_verneed = 0x6ffffffe,
385 // Symbol versions,
386 SHT_SUNW_versym = 0x6fffffff,
387 SHT_GNU_versym = 0x6fffffff,
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388
389 SHT_SPARC_GOTDATA = 0x70000000,
8da8e50a 390
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391 // ARM-specific section types.
392 // Exception Index table.
393 SHT_ARM_EXIDX = 0x70000001,
394 // BPABI DLL dynamic linking pre-emption map.
395 SHT_ARM_PREEMPTMAP = 0x70000002,
396 // Object file compatibility attributes.
397 SHT_ARM_ATTRIBUTES = 0x70000003,
398 // Support for debugging overlaid programs.
399 SHT_ARM_DEBUGOVERLAY = 0x70000004,
400 SHT_ARM_OVERLAYSECTION = 0x70000005,
401
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402 // x86_64 unwind information.
403 SHT_X86_64_UNWIND = 0x70000001,
404
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405 // MIPS-specific section types.
406 // Section contains register usage information.
d3c25860 407 SHT_MIPS_REGINFO = 0x70000006,
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408 // Section contains miscellaneous options.
409 SHT_MIPS_OPTIONS = 0x7000000d,
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410 // ABI related flags section.
411 SHT_MIPS_ABIFLAGS = 0x7000002a,
d3c25860 412
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413 // AARCH64-specific section type.
414 SHT_AARCH64_ATTRIBUTES = 0x70000003,
415
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416 // CSKY-specific section types.
417 // Object file compatibility attributes.
418 SHT_CSKY_ATTRIBUTES = 0x70000001,
419
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420 // Link editor is to sort the entries in this section based on the
421 // address specified in the associated symbol table entry.
f77507bd 422 SHT_ORDERED = 0x7fffffff
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423};
424
425// The valid bit flags found in the Shdr sh_flags field.
426
39081c14 427enum SHF
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428{
429 SHF_WRITE = 0x1,
430 SHF_ALLOC = 0x2,
431 SHF_EXECINSTR = 0x4,
432 SHF_MERGE = 0x10,
433 SHF_STRINGS = 0x20,
434 SHF_INFO_LINK = 0x40,
435 SHF_LINK_ORDER = 0x80,
436 SHF_OS_NONCONFORMING = 0x100,
437 SHF_GROUP = 0x200,
438 SHF_TLS = 0x400,
91fb4b1a 439 SHF_COMPRESSED = 0x800,
bae7f79e 440 SHF_MASKOS = 0x0ff00000,
ff4bc37d 441 SHF_GNU_RETAIN = 0x200000,
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442 SHF_MASKPROC = 0xf0000000,
443
444 // Indicates this section requires ordering in relation to
445 // other sections of the same type. Ordered sections are
446 // combined within the section pointed to by the sh_link entry.
447 // The sh_info values SHN_BEFORE and SHN_AFTER imply that the
448 // sorted section is to precede or follow, respectively, all
449 // other sections in the set being ordered.
450 SHF_ORDERED = 0x40000000,
451 // This section is excluded from input to the link-edit of an
452 // executable or shared object. This flag is ignored if SHF_ALLOC
453 // is also set, or if relocations exist against the section.
454 SHF_EXCLUDE = 0x80000000,
0c195c0a 455
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456 // Section with data that is GP relative addressable.
457 SHF_MIPS_GPREL = 0x10000000,
458
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459 // x86_64 specific large section.
460 SHF_X86_64_LARGE = 0x10000000
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461};
462
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463// Values which appear in the first Elf_WXword of the section data
464// of a SHF_COMPRESSED section.
465enum
466{
467 ELFCOMPRESS_ZLIB = 1,
332a4eea 468 ELFCOMPRESS_ZSTD = 2,
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469 ELFCOMPRESS_LOOS = 0x60000000,
470 ELFCOMPRESS_HIOS = 0x6fffffff,
471 ELFCOMPRESS_LOPROC = 0x70000000,
472 ELFCOMPRESS_HIPROC = 0x7fffffff,
473};
474
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475// Bit flags which appear in the first 32-bit word of the section data
476// of a SHT_GROUP section.
477
478enum
479{
480 GRP_COMDAT = 0x1,
481 GRP_MASKOS = 0x0ff00000,
482 GRP_MASKPROC = 0xf0000000
483};
484
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485// The valid values found in the Phdr p_type field.
486
487enum PT
488{
489 PT_NULL = 0,
490 PT_LOAD = 1,
491 PT_DYNAMIC = 2,
492 PT_INTERP = 3,
493 PT_NOTE = 4,
494 PT_SHLIB = 5,
495 PT_PHDR = 6,
496 PT_TLS = 7,
497 PT_LOOS = 0x60000000,
498 PT_HIOS = 0x6fffffff,
499 PT_LOPROC = 0x70000000,
500 PT_HIPROC = 0x7fffffff,
501 // The remaining values are not in the standard.
502 // Frame unwind information.
503 PT_GNU_EH_FRAME = 0x6474e550,
504 PT_SUNW_EH_FRAME = 0x6474e550,
505 // Stack flags.
506 PT_GNU_STACK = 0x6474e551,
507 // Read only after relocation.
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508 PT_GNU_RELRO = 0x6474e552,
509 // Platform architecture compatibility information
510 PT_ARM_ARCHEXT = 0x70000000,
511 // Exception unwind tables
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512 PT_ARM_EXIDX = 0x70000001,
513 // Register usage information. Identifies one .reginfo section.
514 PT_MIPS_REGINFO =0x70000000,
515 // Runtime procedure table.
516 PT_MIPS_RTPROC = 0x70000001,
517 // .MIPS.options section.
053a4d68 518 PT_MIPS_OPTIONS = 0x70000002,
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519 // .MIPS.abiflags section.
520 PT_MIPS_ABIFLAGS = 0x70000003,
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521 // Platform architecture compatibility information
522 PT_AARCH64_ARCHEXT = 0x70000000,
523 // Exception unwind tables
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524 PT_AARCH64_UNWIND = 0x70000001,
525 // 4k page table size
526 PT_S390_PGSTE = 0x70000000,
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527};
528
529// The valid bit flags found in the Phdr p_flags field.
530
531enum PF
532{
533 PF_X = 0x1,
534 PF_W = 0x2,
535 PF_R = 0x4,
536 PF_MASKOS = 0x0ff00000,
537 PF_MASKPROC = 0xf0000000
538};
539
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540// Symbol binding from Sym st_info field.
541
542enum STB
543{
544 STB_LOCAL = 0,
545 STB_GLOBAL = 1,
546 STB_WEAK = 2,
547 STB_LOOS = 10,
3e7a7d11 548 STB_GNU_UNIQUE = 10,
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549 STB_HIOS = 12,
550 STB_LOPROC = 13,
551 STB_HIPROC = 15
552};
553
554// Symbol types from Sym st_info field.
555
556enum STT
557{
558 STT_NOTYPE = 0,
559 STT_OBJECT = 1,
560 STT_FUNC = 2,
561 STT_SECTION = 3,
562 STT_FILE = 4,
563 STT_COMMON = 5,
564 STT_TLS = 6,
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565
566 // GNU extension: symbol value points to a function which is called
567 // at runtime to determine the final value of the symbol.
d8045f23 568 STT_GNU_IFUNC = 10,
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569
570 STT_LOOS = 10,
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571 STT_HIOS = 12,
572 STT_LOPROC = 13,
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573 STT_HIPROC = 15,
574
575 // The section type that must be used for register symbols on
576 // Sparc. These symbols initialize a global register.
577 STT_SPARC_REGISTER = 13,
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578
579 // ARM: a THUMB function. This is not defined in ARM ELF Specification but
580 // used by the GNU tool-chain.
f77507bd 581 STT_ARM_TFUNC = 13
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582};
583
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584inline STB
585elf_st_bind(unsigned char info)
586{
587 return static_cast<STB>(info >> 4);
588}
589
590inline STT
591elf_st_type(unsigned char info)
592{
593 return static_cast<STT>(info & 0xf);
594}
595
596inline unsigned char
597elf_st_info(STB bind, STT type)
598{
599 return ((static_cast<unsigned char>(bind) << 4)
600 + (static_cast<unsigned char>(type) & 0xf));
601}
602
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603// Symbol visibility from Sym st_other field.
604
605enum STV
606{
607 STV_DEFAULT = 0,
608 STV_INTERNAL = 1,
609 STV_HIDDEN = 2,
610 STV_PROTECTED = 3
611};
612
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613inline STV
614elf_st_visibility(unsigned char other)
615{
616 return static_cast<STV>(other & 0x3);
617}
618
619inline unsigned char
620elf_st_nonvis(unsigned char other)
621{
622 return static_cast<STV>(other >> 2);
623}
624
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625inline unsigned char
626elf_st_other(STV vis, unsigned char nonvis)
627{
628 return ((nonvis << 2)
629 + (static_cast<unsigned char>(vis) & 3));
630}
631
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632// Reloc information from Rel/Rela r_info field.
633
634template<int size>
635unsigned int
636elf_r_sym(typename Elf_types<size>::Elf_WXword);
637
638template<>
639inline unsigned int
640elf_r_sym<32>(Elf_Word v)
641{
642 return v >> 8;
643}
644
645template<>
646inline unsigned int
647elf_r_sym<64>(Elf_Xword v)
648{
649 return v >> 32;
650}
651
652template<int size>
653unsigned int
654elf_r_type(typename Elf_types<size>::Elf_WXword);
655
656template<>
657inline unsigned int
658elf_r_type<32>(Elf_Word v)
659{
660 return v & 0xff;
661}
662
663template<>
664inline unsigned int
665elf_r_type<64>(Elf_Xword v)
666{
667 return v & 0xffffffff;
668}
669
670template<int size>
671typename Elf_types<size>::Elf_WXword
672elf_r_info(unsigned int s, unsigned int t);
673
674template<>
675inline Elf_Word
676elf_r_info<32>(unsigned int s, unsigned int t)
677{
678 return (s << 8) + (t & 0xff);
679}
680
681template<>
682inline Elf_Xword
683elf_r_info<64>(unsigned int s, unsigned int t)
684{
685 return (static_cast<Elf_Xword>(s) << 32) + (t & 0xffffffff);
686}
687
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688// Dynamic tags found in the PT_DYNAMIC segment.
689
690enum DT
691{
692 DT_NULL = 0,
693 DT_NEEDED = 1,
694 DT_PLTRELSZ = 2,
695 DT_PLTGOT = 3,
696 DT_HASH = 4,
697 DT_STRTAB = 5,
698 DT_SYMTAB = 6,
699 DT_RELA = 7,
700 DT_RELASZ = 8,
701 DT_RELAENT = 9,
702 DT_STRSZ = 10,
703 DT_SYMENT = 11,
704 DT_INIT = 12,
705 DT_FINI = 13,
706 DT_SONAME = 14,
707 DT_RPATH = 15,
708 DT_SYMBOLIC = 16,
709 DT_REL = 17,
710 DT_RELSZ = 18,
711 DT_RELENT = 19,
712 DT_PLTREL = 20,
713 DT_DEBUG = 21,
714 DT_TEXTREL = 22,
715 DT_JMPREL = 23,
716 DT_BIND_NOW = 24,
717 DT_INIT_ARRAY = 25,
718 DT_FINI_ARRAY = 26,
719 DT_INIT_ARRAYSZ = 27,
720 DT_FINI_ARRAYSZ = 28,
721 DT_RUNPATH = 29,
722 DT_FLAGS = 30,
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723
724 // This is used to mark a range of dynamic tags. It is not really
725 // a tag value.
dbe717ef 726 DT_ENCODING = 32,
d5b40221 727
f2e3d4e2 728 DT_PREINIT_ARRAY = 32,
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729 DT_PREINIT_ARRAYSZ = 33,
730 DT_LOOS = 0x6000000d,
731 DT_HIOS = 0x6ffff000,
732 DT_LOPROC = 0x70000000,
733 DT_HIPROC = 0x7fffffff,
734
735 // The remaining values are extensions used by GNU or Solaris.
736 DT_VALRNGLO = 0x6ffffd00,
af3c233b 737 DT_GNU_FLAGS_1 = 0x6ffffdf4,
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738 DT_GNU_PRELINKED = 0x6ffffdf5,
739 DT_GNU_CONFLICTSZ = 0x6ffffdf6,
740 DT_GNU_LIBLISTSZ = 0x6ffffdf7,
741 DT_CHECKSUM = 0x6ffffdf8,
742 DT_PLTPADSZ = 0x6ffffdf9,
743 DT_MOVEENT = 0x6ffffdfa,
744 DT_MOVESZ = 0x6ffffdfb,
745 DT_FEATURE = 0x6ffffdfc,
746 DT_POSFLAG_1 = 0x6ffffdfd,
747 DT_SYMINSZ = 0x6ffffdfe,
748 DT_SYMINENT = 0x6ffffdff,
749 DT_VALRNGHI = 0x6ffffdff,
750
751 DT_ADDRRNGLO = 0x6ffffe00,
752 DT_GNU_HASH = 0x6ffffef5,
753 DT_TLSDESC_PLT = 0x6ffffef6,
754 DT_TLSDESC_GOT = 0x6ffffef7,
755 DT_GNU_CONFLICT = 0x6ffffef8,
756 DT_GNU_LIBLIST = 0x6ffffef9,
757 DT_CONFIG = 0x6ffffefa,
758 DT_DEPAUDIT = 0x6ffffefb,
759 DT_AUDIT = 0x6ffffefc,
760 DT_PLTPAD = 0x6ffffefd,
761 DT_MOVETAB = 0x6ffffefe,
762 DT_SYMINFO = 0x6ffffeff,
763 DT_ADDRRNGHI = 0x6ffffeff,
764
765 DT_RELACOUNT = 0x6ffffff9,
766 DT_RELCOUNT = 0x6ffffffa,
767 DT_FLAGS_1 = 0x6ffffffb,
768 DT_VERDEF = 0x6ffffffc,
769 DT_VERDEFNUM = 0x6ffffffd,
770 DT_VERNEED = 0x6ffffffe,
771 DT_VERNEEDNUM = 0x6fffffff,
772
773 DT_VERSYM = 0x6ffffff0,
774
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775 // Specify the value of _GLOBAL_OFFSET_TABLE_.
776 DT_PPC_GOT = 0x70000000,
777
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778 // Specify whether various optimisations are possible.
779 DT_PPC_OPT = 0x70000001,
780
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781 // Specify the start of the .glink section.
782 DT_PPC64_GLINK = 0x70000000,
783
784 // Specify the start and size of the .opd section.
785 DT_PPC64_OPD = 0x70000001,
786 DT_PPC64_OPDSZ = 0x70000002,
787
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788 // Specify whether various optimisations are possible.
789 DT_PPC64_OPT = 0x70000003,
790
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791 // The index of an STT_SPARC_REGISTER symbol within the DT_SYMTAB
792 // symbol table. One dynamic entry exists for every STT_SPARC_REGISTER
793 // symbol in the symbol table.
794 DT_SPARC_REGISTER = 0x70000001,
795
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796 // MIPS specific dynamic array tags.
797 // 32 bit version number for runtime linker interface.
798 DT_MIPS_RLD_VERSION = 0x70000001,
799 // Time stamp.
800 DT_MIPS_TIME_STAMP = 0x70000002,
801 // Checksum of external strings and common sizes.
802 DT_MIPS_ICHECKSUM = 0x70000003,
803 // Index of version string in string table.
804 DT_MIPS_IVERSION = 0x70000004,
805 // 32 bits of flags.
806 DT_MIPS_FLAGS = 0x70000005,
807 // Base address of the segment.
808 DT_MIPS_BASE_ADDRESS = 0x70000006,
809 // ???
810 DT_MIPS_MSYM = 0x70000007,
811 // Address of .conflict section.
812 DT_MIPS_CONFLICT = 0x70000008,
813 // Address of .liblist section.
814 DT_MIPS_LIBLIST = 0x70000009,
815 // Number of local global offset table entries.
816 DT_MIPS_LOCAL_GOTNO = 0x7000000a,
817 // Number of entries in the .conflict section.
818 DT_MIPS_CONFLICTNO = 0x7000000b,
819 // Number of entries in the .liblist section.
820 DT_MIPS_LIBLISTNO = 0x70000010,
821 // Number of entries in the .dynsym section.
822 DT_MIPS_SYMTABNO = 0x70000011,
823 // Index of first external dynamic symbol not referenced locally.
824 DT_MIPS_UNREFEXTNO = 0x70000012,
825 // Index of first dynamic symbol in global offset table.
826 DT_MIPS_GOTSYM = 0x70000013,
827 // Number of page table entries in global offset table.
828 DT_MIPS_HIPAGENO = 0x70000014,
829 // Address of run time loader map, used for debugging.
830 DT_MIPS_RLD_MAP = 0x70000016,
831 // Delta C++ class definition.
832 DT_MIPS_DELTA_CLASS = 0x70000017,
833 // Number of entries in DT_MIPS_DELTA_CLASS.
834 DT_MIPS_DELTA_CLASS_NO = 0x70000018,
835 // Delta C++ class instances.
836 DT_MIPS_DELTA_INSTANCE = 0x70000019,
837 // Number of entries in DT_MIPS_DELTA_INSTANCE.
838 DT_MIPS_DELTA_INSTANCE_NO = 0x7000001a,
839 // Delta relocations.
840 DT_MIPS_DELTA_RELOC = 0x7000001b,
841 // Number of entries in DT_MIPS_DELTA_RELOC.
842 DT_MIPS_DELTA_RELOC_NO = 0x7000001c,
843 // Delta symbols that Delta relocations refer to.
844 DT_MIPS_DELTA_SYM = 0x7000001d,
845 // Number of entries in DT_MIPS_DELTA_SYM.
846 DT_MIPS_DELTA_SYM_NO = 0x7000001e,
847 // Delta symbols that hold class declarations.
848 DT_MIPS_DELTA_CLASSSYM = 0x70000020,
849 // Number of entries in DT_MIPS_DELTA_CLASSSYM.
850 DT_MIPS_DELTA_CLASSSYM_NO = 0x70000021,
851 // Flags indicating information about C++ flavor.
852 DT_MIPS_CXX_FLAGS = 0x70000022,
853 // Pixie information (???).
854 DT_MIPS_PIXIE_INIT = 0x70000023,
855 // Address of .MIPS.symlib
856 DT_MIPS_SYMBOL_LIB = 0x70000024,
857 // The GOT index of the first PTE for a segment
858 DT_MIPS_LOCALPAGE_GOTIDX = 0x70000025,
859 // The GOT index of the first PTE for a local symbol
860 DT_MIPS_LOCAL_GOTIDX = 0x70000026,
861 // The GOT index of the first PTE for a hidden symbol
862 DT_MIPS_HIDDEN_GOTIDX = 0x70000027,
863 // The GOT index of the first PTE for a protected symbol
864 DT_MIPS_PROTECTED_GOTIDX = 0x70000028,
865 // Address of `.MIPS.options'.
866 DT_MIPS_OPTIONS = 0x70000029,
867 // Address of `.interface'.
868 DT_MIPS_INTERFACE = 0x7000002a,
869 // ???
870 DT_MIPS_DYNSTR_ALIGN = 0x7000002b,
871 // Size of the .interface section.
872 DT_MIPS_INTERFACE_SIZE = 0x7000002c,
873 // Size of rld_text_resolve function stored in the GOT.
874 DT_MIPS_RLD_TEXT_RESOLVE_ADDR = 0x7000002d,
875 // Default suffix of DSO to be added by rld on dlopen() calls.
876 DT_MIPS_PERF_SUFFIX = 0x7000002e,
877 // Size of compact relocation section (O32).
878 DT_MIPS_COMPACT_SIZE = 0x7000002f,
879 // GP value for auxiliary GOTs.
880 DT_MIPS_GP_VALUE = 0x70000030,
881 // Address of auxiliary .dynamic.
882 DT_MIPS_AUX_DYNAMIC = 0x70000031,
883 // Address of the base of the PLTGOT.
884 DT_MIPS_PLTGOT = 0x70000032,
885 // Points to the base of a writable PLT.
886 DT_MIPS_RWPLT = 0x70000034,
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887 // Relative offset of run time loader map, used for debugging.
888 DT_MIPS_RLD_MAP_REL = 0x70000035,
d3c25860 889
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890 DT_AUXILIARY = 0x7ffffffd,
891 DT_USED = 0x7ffffffe,
892 DT_FILTER = 0x7fffffff
893};
894
895// Flags found in the DT_FLAGS dynamic element.
896
897enum DF
898{
899 DF_ORIGIN = 0x1,
900 DF_SYMBOLIC = 0x2,
901 DF_TEXTREL = 0x4,
902 DF_BIND_NOW = 0x8,
903 DF_STATIC_TLS = 0x10
904};
905
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906// Flags found in the DT_FLAGS_1 dynamic element.
907
908enum DF_1
909{
910 DF_1_NOW = 0x1,
911 DF_1_GLOBAL = 0x2,
912 DF_1_GROUP = 0x4,
913 DF_1_NODELETE = 0x8,
914 DF_1_LOADFLTR = 0x10,
915 DF_1_INITFIRST = 0x20,
916 DF_1_NOOPEN = 0x40,
917 DF_1_ORIGIN = 0x80,
918 DF_1_DIRECT = 0x100,
919 DF_1_TRANS = 0x200,
920 DF_1_INTERPOSE = 0x400,
921 DF_1_NODEFLIB = 0x800,
922 DF_1_NODUMP = 0x1000,
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923 DF_1_CONLFAT = 0x2000,
924 DF_1_PIE = 0x08000000
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925};
926
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927// Flags found in the DT_GNU_FLAGS_1 dynamic element.
928enum DF_GNU_1
929{
930 DF_GNU_1_UNIQUE = 0x1,
931};
932
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933// Version numbers which appear in the vd_version field of a Verdef
934// structure.
935
936const int VER_DEF_NONE = 0;
937const int VER_DEF_CURRENT = 1;
938
939// Version numbers which appear in the vn_version field of a Verneed
940// structure.
941
942const int VER_NEED_NONE = 0;
943const int VER_NEED_CURRENT = 1;
944
945// Bit flags which appear in vd_flags of Verdef and vna_flags of
946// Vernaux.
947
948const int VER_FLG_BASE = 0x1;
949const int VER_FLG_WEAK = 0x2;
44ec90b9 950const int VER_FLG_INFO = 0x4;
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951
952// Special constants found in the SHT_GNU_versym entries.
953
954const int VER_NDX_LOCAL = 0;
955const int VER_NDX_GLOBAL = 1;
956
957// A SHT_GNU_versym section holds 16-bit words. This bit is set if
958// the symbol is hidden and can only be seen when referenced using an
959// explicit version number. This is a GNU extension.
960
961const int VERSYM_HIDDEN = 0x8000;
962
963// This is the mask for the rest of the data in a word read from a
964// SHT_GNU_versym section.
965
966const int VERSYM_VERSION = 0x7fff;
967
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968// Note descriptor type codes for notes in a non-core file with an
969// empty name.
970
971enum
972{
973 // A version string.
974 NT_VERSION = 1,
975 // An architecture string.
976 NT_ARCH = 2
977};
978
979// Note descriptor type codes for notes in a non-core file with the
980// name "GNU".
981
982enum
983{
984 // The minimum ABI level. This is used by the dynamic linker to
985 // describe the minimal kernel version on which a shared library may
986 // be used. Th value should be four words. Word 0 is an OS
987 // descriptor (see below). Word 1 is the major version of the ABI.
988 // Word 2 is the minor version. Word 3 is the subminor version.
989 NT_GNU_ABI_TAG = 1,
990 // Hardware capabilities information. Word 0 is the number of
991 // entries. Word 1 is a bitmask of enabled entries. The rest of
992 // the descriptor is a series of entries, where each entry is a
993 // single byte followed by a nul terminated string. The byte gives
994 // the bit number to test if enabled in the bitmask.
995 NT_GNU_HWCAP = 2,
996 // The build ID as set by the linker's --build-id option. The
997 // format of the descriptor depends on the build ID style.
998 NT_GNU_BUILD_ID = 3,
999 // The version of gold used to link. Th descriptor is just a
1000 // string.
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1001 NT_GNU_GOLD_VERSION = 4,
1002 // Program property note, as described in "Linux Extensions to the gABI".
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1003 NT_GNU_PROPERTY_TYPE_0 = 5,
1004 // FDO .note.package notes as defined on https://systemd.io/ELF_PACKAGE_METADATA/
1005 FDO_PACKAGING_METADATA = 0xcafe1a7e
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1006};
1007
1008// The OS values which may appear in word 0 of a NT_GNU_ABI_TAG note.
1009
1010enum
1011{
1012 ELF_NOTE_OS_LINUX = 0,
1013 ELF_NOTE_OS_GNU = 1,
1014 ELF_NOTE_OS_SOLARIS2 = 2,
1015 ELF_NOTE_OS_FREEBSD = 3,
1016 ELF_NOTE_OS_NETBSD = 4,
1017 ELF_NOTE_OS_SYLLABLE = 5
1018};
1019
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1020// Program property types for NT_GNU_PROPERTY_TYPE_0.
1021
1022enum
1023{
1024 GNU_PROPERTY_STACK_SIZE = 1,
1025 GNU_PROPERTY_NO_COPY_ON_PROTECTED = 2,
1026 GNU_PROPERTY_LOPROC = 0xc0000000,
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1027 GNU_PROPERTY_X86_COMPAT_ISA_1_USED = 0xc0000000,
1028 GNU_PROPERTY_X86_COMPAT_ISA_1_NEEDED = 0xc0000001,
1029 GNU_PROPERTY_X86_UINT32_AND_LO = 0xc0000002,
1030 GNU_PROPERTY_X86_UINT32_AND_HI = 0xc0007fff,
1031 GNU_PROPERTY_X86_UINT32_OR_LO = 0xc0008000,
1032 GNU_PROPERTY_X86_UINT32_OR_HI = 0xc000ffff,
1033 GNU_PROPERTY_X86_UINT32_OR_AND_LO = 0xc0010000,
1034 GNU_PROPERTY_X86_UINT32_OR_AND_HI = 0xc0017fff,
1035 GNU_PROPERTY_X86_COMPAT_2_ISA_1_NEEDED = GNU_PROPERTY_X86_UINT32_OR_LO + 0,
1036 GNU_PROPERTY_X86_COMPAT_2_ISA_1_USED = GNU_PROPERTY_X86_UINT32_OR_AND_LO + 0,
1037 GNU_PROPERTY_X86_FEATURE_1_AND = GNU_PROPERTY_X86_UINT32_AND_LO + 0,
1038 GNU_PROPERTY_X86_ISA_1_NEEDED = GNU_PROPERTY_X86_UINT32_OR_LO + 2,
1039 GNU_PROPERTY_X86_FEATURE_2_NEEDED = GNU_PROPERTY_X86_UINT32_OR_LO + 1,
1040 GNU_PROPERTY_X86_ISA_1_USED = GNU_PROPERTY_X86_UINT32_OR_AND_LO + 2,
1041 GNU_PROPERTY_X86_FEATURE_2_USED = GNU_PROPERTY_X86_UINT32_OR_AND_LO + 1,
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1042 GNU_PROPERTY_HIPROC = 0xdfffffff,
1043 GNU_PROPERTY_LOUSER = 0xe0000000,
1044 GNU_PROPERTY_HIUSER = 0xffffffff
1045};
1046
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1047} // End namespace elfcpp.
1048
1049// Include internal details after defining the types.
1050#include "elfcpp_internal.h"
1051
1052namespace elfcpp
1053{
1054
1055// The offset of the ELF file header in the ELF file.
1056
1057const int file_header_offset = 0;
1058
1059// ELF structure sizes.
1060
1061template<int size>
1062struct Elf_sizes
1063{
1064 // Size of ELF file header.
1065 static const int ehdr_size = sizeof(internal::Ehdr_data<size>);
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1066 // Size of ELF segment header.
1067 static const int phdr_size = sizeof(internal::Phdr_data<size>);
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1068 // Size of ELF section header.
1069 static const int shdr_size = sizeof(internal::Shdr_data<size>);
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1070 // Size of ELF compression header.
1071 static const int chdr_size = sizeof(internal::Chdr_data<size>);
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1072 // Size of ELF symbol table entry.
1073 static const int sym_size = sizeof(internal::Sym_data<size>);
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1074 // Sizes of ELF reloc entries.
1075 static const int rel_size = sizeof(internal::Rel_data<size>);
1076 static const int rela_size = sizeof(internal::Rela_data<size>);
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1077 // Size of ELF dynamic entry.
1078 static const int dyn_size = sizeof(internal::Dyn_data<size>);
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1079 // Size of ELF version structures.
1080 static const int verdef_size = sizeof(internal::Verdef_data);
1081 static const int verdaux_size = sizeof(internal::Verdaux_data);
1082 static const int verneed_size = sizeof(internal::Verneed_data);
1083 static const int vernaux_size = sizeof(internal::Vernaux_data);
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1084};
1085
1086// Accessor class for the ELF file header.
1087
1088template<int size, bool big_endian>
1089class Ehdr
1090{
1091 public:
1092 Ehdr(const unsigned char* p)
1093 : p_(reinterpret_cast<const internal::Ehdr_data<size>*>(p))
1094 { }
1095
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1096 template<typename File>
1097 Ehdr(File* file, typename File::Location loc)
1098 : p_(reinterpret_cast<const internal::Ehdr_data<size>*>(
1099 file->view(loc.file_offset, loc.data_size).data()))
1100 { }
1101
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1102 const unsigned char*
1103 get_e_ident() const
1104 { return this->p_->e_ident; }
1105
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1106 unsigned char
1107 get_ei_osabi() const
1108 { return this->p_->e_ident[EI_OSABI]; }
1109
1110 unsigned char
1111 get_ei_abiversion() const
1112 { return this->p_->e_ident[EI_ABIVERSION]; }
1113
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1114 Elf_Half
1115 get_e_type() const
8d9455b4 1116 { return Convert<16, big_endian>::convert_host(this->p_->e_type); }
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1117
1118 Elf_Half
1119 get_e_machine() const
8d9455b4 1120 { return Convert<16, big_endian>::convert_host(this->p_->e_machine); }
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1121
1122 Elf_Word
1123 get_e_version() const
8d9455b4 1124 { return Convert<32, big_endian>::convert_host(this->p_->e_version); }
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1125
1126 typename Elf_types<size>::Elf_Addr
1127 get_e_entry() const
8d9455b4 1128 { return Convert<size, big_endian>::convert_host(this->p_->e_entry); }
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1129
1130 typename Elf_types<size>::Elf_Off
1131 get_e_phoff() const
8d9455b4 1132 { return Convert<size, big_endian>::convert_host(this->p_->e_phoff); }
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1133
1134 typename Elf_types<size>::Elf_Off
1135 get_e_shoff() const
8d9455b4 1136 { return Convert<size, big_endian>::convert_host(this->p_->e_shoff); }
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1137
1138 Elf_Word
1139 get_e_flags() const
8d9455b4 1140 { return Convert<32, big_endian>::convert_host(this->p_->e_flags); }
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1141
1142 Elf_Half
1143 get_e_ehsize() const
8d9455b4 1144 { return Convert<16, big_endian>::convert_host(this->p_->e_ehsize); }
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1145
1146 Elf_Half
1147 get_e_phentsize() const
8d9455b4 1148 { return Convert<16, big_endian>::convert_host(this->p_->e_phentsize); }
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1149
1150 Elf_Half
1151 get_e_phnum() const
8d9455b4 1152 { return Convert<16, big_endian>::convert_host(this->p_->e_phnum); }
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1153
1154 Elf_Half
1155 get_e_shentsize() const
8d9455b4 1156 { return Convert<16, big_endian>::convert_host(this->p_->e_shentsize); }
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1157
1158 Elf_Half
1159 get_e_shnum() const
8d9455b4 1160 { return Convert<16, big_endian>::convert_host(this->p_->e_shnum); }
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1161
1162 Elf_Half
1163 get_e_shstrndx() const
8d9455b4 1164 { return Convert<16, big_endian>::convert_host(this->p_->e_shstrndx); }
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1165
1166 private:
1167 const internal::Ehdr_data<size>* p_;
1168};
1169
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1170// Write class for the ELF file header.
1171
1172template<int size, bool big_endian>
1173class Ehdr_write
1174{
1175 public:
1176 Ehdr_write(unsigned char* p)
1177 : p_(reinterpret_cast<internal::Ehdr_data<size>*>(p))
1178 { }
1179
1180 void
1181 put_e_ident(const unsigned char v[EI_NIDENT]) const
1182 { memcpy(this->p_->e_ident, v, EI_NIDENT); }
1183
1184 void
1185 put_e_type(Elf_Half v)
8d9455b4 1186 { this->p_->e_type = Convert<16, big_endian>::convert_host(v); }
0e879927 1187
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1188 void
1189 put_e_machine(Elf_Half v)
8d9455b4 1190 { this->p_->e_machine = Convert<16, big_endian>::convert_host(v); }
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1191
1192 void
1193 put_e_version(Elf_Word v)
8d9455b4 1194 { this->p_->e_version = Convert<32, big_endian>::convert_host(v); }
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1195
1196 void
1197 put_e_entry(typename Elf_types<size>::Elf_Addr v)
8d9455b4 1198 { this->p_->e_entry = Convert<size, big_endian>::convert_host(v); }
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1199
1200 void
1201 put_e_phoff(typename Elf_types<size>::Elf_Off v)
8d9455b4 1202 { this->p_->e_phoff = Convert<size, big_endian>::convert_host(v); }
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1203
1204 void
1205 put_e_shoff(typename Elf_types<size>::Elf_Off v)
8d9455b4 1206 { this->p_->e_shoff = Convert<size, big_endian>::convert_host(v); }
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1207
1208 void
1209 put_e_flags(Elf_Word v)
8d9455b4 1210 { this->p_->e_flags = Convert<32, big_endian>::convert_host(v); }
61ba1cf9
ILT
1211
1212 void
1213 put_e_ehsize(Elf_Half v)
8d9455b4 1214 { this->p_->e_ehsize = Convert<16, big_endian>::convert_host(v); }
61ba1cf9
ILT
1215
1216 void
1217 put_e_phentsize(Elf_Half v)
8d9455b4 1218 { this->p_->e_phentsize = Convert<16, big_endian>::convert_host(v); }
61ba1cf9
ILT
1219
1220 void
1221 put_e_phnum(Elf_Half v)
8d9455b4 1222 { this->p_->e_phnum = Convert<16, big_endian>::convert_host(v); }
61ba1cf9
ILT
1223
1224 void
1225 put_e_shentsize(Elf_Half v)
8d9455b4 1226 { this->p_->e_shentsize = Convert<16, big_endian>::convert_host(v); }
61ba1cf9
ILT
1227
1228 void
1229 put_e_shnum(Elf_Half v)
8d9455b4 1230 { this->p_->e_shnum = Convert<16, big_endian>::convert_host(v); }
61ba1cf9
ILT
1231
1232 void
1233 put_e_shstrndx(Elf_Half v)
8d9455b4 1234 { this->p_->e_shstrndx = Convert<16, big_endian>::convert_host(v); }
61ba1cf9
ILT
1235
1236 private:
1237 internal::Ehdr_data<size>* p_;
1238};
1239
bae7f79e
ILT
1240// Accessor class for an ELF section header.
1241
1242template<int size, bool big_endian>
1243class Shdr
1244{
1245 public:
1246 Shdr(const unsigned char* p)
1247 : p_(reinterpret_cast<const internal::Shdr_data<size>*>(p))
1248 { }
1249
645f8123
ILT
1250 template<typename File>
1251 Shdr(File* file, typename File::Location loc)
1252 : p_(reinterpret_cast<const internal::Shdr_data<size>*>(
1253 file->view(loc.file_offset, loc.data_size).data()))
1254 { }
1255
bae7f79e
ILT
1256 Elf_Word
1257 get_sh_name() const
8d9455b4 1258 { return Convert<32, big_endian>::convert_host(this->p_->sh_name); }
bae7f79e
ILT
1259
1260 Elf_Word
1261 get_sh_type() const
8d9455b4 1262 { return Convert<32, big_endian>::convert_host(this->p_->sh_type); }
bae7f79e
ILT
1263
1264 typename Elf_types<size>::Elf_WXword
1265 get_sh_flags() const
8d9455b4 1266 { return Convert<size, big_endian>::convert_host(this->p_->sh_flags); }
bae7f79e
ILT
1267
1268 typename Elf_types<size>::Elf_Addr
1269 get_sh_addr() const
8d9455b4 1270 { return Convert<size, big_endian>::convert_host(this->p_->sh_addr); }
bae7f79e
ILT
1271
1272 typename Elf_types<size>::Elf_Off
1273 get_sh_offset() const
8d9455b4 1274 { return Convert<size, big_endian>::convert_host(this->p_->sh_offset); }
bae7f79e
ILT
1275
1276 typename Elf_types<size>::Elf_WXword
1277 get_sh_size() const
8d9455b4 1278 { return Convert<size, big_endian>::convert_host(this->p_->sh_size); }
bae7f79e
ILT
1279
1280 Elf_Word
1281 get_sh_link() const
8d9455b4 1282 { return Convert<32, big_endian>::convert_host(this->p_->sh_link); }
bae7f79e
ILT
1283
1284 Elf_Word
1285 get_sh_info() const
8d9455b4 1286 { return Convert<32, big_endian>::convert_host(this->p_->sh_info); }
bae7f79e
ILT
1287
1288 typename Elf_types<size>::Elf_WXword
1289 get_sh_addralign() const
1290 { return
8d9455b4 1291 Convert<size, big_endian>::convert_host(this->p_->sh_addralign); }
bae7f79e
ILT
1292
1293 typename Elf_types<size>::Elf_WXword
1294 get_sh_entsize() const
8d9455b4 1295 { return Convert<size, big_endian>::convert_host(this->p_->sh_entsize); }
bae7f79e
ILT
1296
1297 private:
1298 const internal::Shdr_data<size>* p_;
1299};
1300
61ba1cf9
ILT
1301// Write class for an ELF section header.
1302
1303template<int size, bool big_endian>
1304class Shdr_write
1305{
1306 public:
1307 Shdr_write(unsigned char* p)
1308 : p_(reinterpret_cast<internal::Shdr_data<size>*>(p))
1309 { }
1310
1311 void
1312 put_sh_name(Elf_Word v)
8d9455b4 1313 { this->p_->sh_name = Convert<32, big_endian>::convert_host(v); }
61ba1cf9
ILT
1314
1315 void
1316 put_sh_type(Elf_Word v)
8d9455b4 1317 { this->p_->sh_type = Convert<32, big_endian>::convert_host(v); }
61ba1cf9
ILT
1318
1319 void
1320 put_sh_flags(typename Elf_types<size>::Elf_WXword v)
8d9455b4 1321 { this->p_->sh_flags = Convert<size, big_endian>::convert_host(v); }
61ba1cf9
ILT
1322
1323 void
1324 put_sh_addr(typename Elf_types<size>::Elf_Addr v)
8d9455b4 1325 { this->p_->sh_addr = Convert<size, big_endian>::convert_host(v); }
61ba1cf9
ILT
1326
1327 void
1328 put_sh_offset(typename Elf_types<size>::Elf_Off v)
8d9455b4 1329 { this->p_->sh_offset = Convert<size, big_endian>::convert_host(v); }
61ba1cf9
ILT
1330
1331 void
1332 put_sh_size(typename Elf_types<size>::Elf_WXword v)
8d9455b4 1333 { this->p_->sh_size = Convert<size, big_endian>::convert_host(v); }
61ba1cf9
ILT
1334
1335 void
1336 put_sh_link(Elf_Word v)
8d9455b4 1337 { this->p_->sh_link = Convert<32, big_endian>::convert_host(v); }
61ba1cf9
ILT
1338
1339 void
1340 put_sh_info(Elf_Word v)
8d9455b4 1341 { this->p_->sh_info = Convert<32, big_endian>::convert_host(v); }
61ba1cf9
ILT
1342
1343 void
1344 put_sh_addralign(typename Elf_types<size>::Elf_WXword v)
8d9455b4 1345 { this->p_->sh_addralign = Convert<size, big_endian>::convert_host(v); }
61ba1cf9
ILT
1346
1347 void
1348 put_sh_entsize(typename Elf_types<size>::Elf_WXword v)
8d9455b4 1349 { this->p_->sh_entsize = Convert<size, big_endian>::convert_host(v); }
61ba1cf9
ILT
1350
1351 private:
1352 internal::Shdr_data<size>* p_;
febdfe65
L
1353};
1354
1355// Accessor class for an ELF compression header.
1356
1357template<int size, bool big_endian>
1358class Chdr
1359{
1360 public:
1361 Chdr(const unsigned char* p)
1362 : p_(reinterpret_cast<const internal::Chdr_data<size>*>(p))
1363 { }
1364
1365 template<typename File>
1366 Chdr(File* file, typename File::Location loc)
1367 : p_(reinterpret_cast<const internal::Chdr_data<size>*>(
1368 file->view(loc.file_offset, loc.data_size).data()))
1369 { }
1370
9706b5e6 1371 Elf_Word
febdfe65
L
1372 get_ch_type() const
1373 { return Convert<size, big_endian>::convert_host(this->p_->ch_type); }
1374
1375 typename Elf_types<size>::Elf_WXword
1376 get_ch_size() const
1377 { return Convert<size, big_endian>::convert_host(this->p_->ch_size); }
1378
1379 typename Elf_types<size>::Elf_WXword
1380 get_ch_addralign() const
1381 { return
1382 Convert<size, big_endian>::convert_host(this->p_->ch_addralign); }
1383
1384 private:
1385 const internal::Chdr_data<size>* p_;
1386};
1387
1388// Write class for an ELF compression header.
1389
1390template<int size, bool big_endian>
1391class Chdr_write
1392{
1393 public:
1394 Chdr_write(unsigned char* p)
1395 : p_(reinterpret_cast<internal::Chdr_data<size>*>(p))
1396 { }
1397
1398 void
1399 put_ch_type(typename Elf_types<size>::Elf_WXword v)
1400 { this->p_->ch_type = Convert<size, big_endian>::convert_host(v); }
1401
1402 void
1403 put_ch_size(typename Elf_types<size>::Elf_WXword v)
1404 { this->p_->ch_size = Convert<size, big_endian>::convert_host(v); }
1405
1406 void
1407 put_ch_addralign(typename Elf_types<size>::Elf_WXword v)
1408 { this->p_->ch_addralign = Convert<size, big_endian>::convert_host(v); }
1409
49ba15a2
L
1410 void
1411 put_ch_reserved(Elf_Word);
1412
febdfe65
L
1413 private:
1414 internal::Chdr_data<size>* p_;
61ba1cf9
ILT
1415};
1416
49ba15a2
L
1417template<>
1418inline void
1419elfcpp::Chdr_write<64, true>::put_ch_reserved(Elf_Word v)
1420{
1421 this->p_->ch_reserved = v;
1422}
1423
1424template<>
1425inline void
1426elfcpp::Chdr_write<64, false>::put_ch_reserved(Elf_Word v)
1427{
1428 this->p_->ch_reserved = v;
1429}
1430
39081c14
ILT
1431// Accessor class for an ELF segment header.
1432
1433template<int size, bool big_endian>
1434class Phdr
1435{
1436 public:
1437 Phdr(const unsigned char* p)
1438 : p_(reinterpret_cast<const internal::Phdr_data<size>*>(p))
1439 { }
1440
645f8123
ILT
1441 template<typename File>
1442 Phdr(File* file, typename File::Location loc)
1443 : p_(reinterpret_cast<internal::Phdr_data<size>*>(
1444 file->view(loc.file_offset, loc.data_size).data()))
1445 { }
1446
39081c14
ILT
1447 Elf_Word
1448 get_p_type() const
8d9455b4 1449 { return Convert<32, big_endian>::convert_host(this->p_->p_type); }
39081c14
ILT
1450
1451 typename Elf_types<size>::Elf_Off
1452 get_p_offset() const
8d9455b4 1453 { return Convert<size, big_endian>::convert_host(this->p_->p_offset); }
39081c14
ILT
1454
1455 typename Elf_types<size>::Elf_Addr
1456 get_p_vaddr() const
8d9455b4 1457 { return Convert<size, big_endian>::convert_host(this->p_->p_vaddr); }
39081c14
ILT
1458
1459 typename Elf_types<size>::Elf_Addr
1460 get_p_paddr() const
8d9455b4 1461 { return Convert<size, big_endian>::convert_host(this->p_->p_paddr); }
39081c14
ILT
1462
1463 typename Elf_types<size>::Elf_WXword
1464 get_p_filesz() const
8d9455b4 1465 { return Convert<size, big_endian>::convert_host(this->p_->p_filesz); }
39081c14
ILT
1466
1467 typename Elf_types<size>::Elf_WXword
1468 get_p_memsz() const
8d9455b4 1469 { return Convert<size, big_endian>::convert_host(this->p_->p_memsz); }
39081c14
ILT
1470
1471 Elf_Word
1472 get_p_flags() const
8d9455b4 1473 { return Convert<32, big_endian>::convert_host(this->p_->p_flags); }
39081c14
ILT
1474
1475 typename Elf_types<size>::Elf_WXword
1476 get_p_align() const
8d9455b4 1477 { return Convert<size, big_endian>::convert_host(this->p_->p_align); }
39081c14
ILT
1478
1479 private:
1480 const internal::Phdr_data<size>* p_;
1481};
1482
61ba1cf9
ILT
1483// Write class for an ELF segment header.
1484
1485template<int size, bool big_endian>
1486class Phdr_write
1487{
1488 public:
1489 Phdr_write(unsigned char* p)
1490 : p_(reinterpret_cast<internal::Phdr_data<size>*>(p))
1491 { }
1492
1493 void
1494 put_p_type(Elf_Word v)
8d9455b4 1495 { this->p_->p_type = Convert<32, big_endian>::convert_host(v); }
61ba1cf9
ILT
1496
1497 void
1498 put_p_offset(typename Elf_types<size>::Elf_Off v)
8d9455b4 1499 { this->p_->p_offset = Convert<size, big_endian>::convert_host(v); }
61ba1cf9
ILT
1500
1501 void
1502 put_p_vaddr(typename Elf_types<size>::Elf_Addr v)
8d9455b4 1503 { this->p_->p_vaddr = Convert<size, big_endian>::convert_host(v); }
61ba1cf9
ILT
1504
1505 void
1506 put_p_paddr(typename Elf_types<size>::Elf_Addr v)
8d9455b4 1507 { this->p_->p_paddr = Convert<size, big_endian>::convert_host(v); }
61ba1cf9
ILT
1508
1509 void
1510 put_p_filesz(typename Elf_types<size>::Elf_WXword v)
8d9455b4 1511 { this->p_->p_filesz = Convert<size, big_endian>::convert_host(v); }
61ba1cf9
ILT
1512
1513 void
1514 put_p_memsz(typename Elf_types<size>::Elf_WXword v)
8d9455b4 1515 { this->p_->p_memsz = Convert<size, big_endian>::convert_host(v); }
61ba1cf9
ILT
1516
1517 void
1518 put_p_flags(Elf_Word v)
8d9455b4 1519 { this->p_->p_flags = Convert<32, big_endian>::convert_host(v); }
61ba1cf9
ILT
1520
1521 void
1522 put_p_align(typename Elf_types<size>::Elf_WXword v)
8d9455b4 1523 { this->p_->p_align = Convert<size, big_endian>::convert_host(v); }
61ba1cf9
ILT
1524
1525 private:
1526 internal::Phdr_data<size>* p_;
1527};
1528
bae7f79e
ILT
1529// Accessor class for an ELF symbol table entry.
1530
1531template<int size, bool big_endian>
1532class Sym
1533{
1534 public:
1535 Sym(const unsigned char* p)
1536 : p_(reinterpret_cast<const internal::Sym_data<size>*>(p))
1537 { }
1538
645f8123
ILT
1539 template<typename File>
1540 Sym(File* file, typename File::Location loc)
1541 : p_(reinterpret_cast<const internal::Sym_data<size>*>(
1542 file->view(loc.file_offset, loc.data_size).data()))
1543 { }
1544
bae7f79e
ILT
1545 Elf_Word
1546 get_st_name() const
8d9455b4 1547 { return Convert<32, big_endian>::convert_host(this->p_->st_name); }
bae7f79e
ILT
1548
1549 typename Elf_types<size>::Elf_Addr
1550 get_st_value() const
8d9455b4 1551 { return Convert<size, big_endian>::convert_host(this->p_->st_value); }
bae7f79e
ILT
1552
1553 typename Elf_types<size>::Elf_WXword
1554 get_st_size() const
8d9455b4 1555 { return Convert<size, big_endian>::convert_host(this->p_->st_size); }
bae7f79e
ILT
1556
1557 unsigned char
1558 get_st_info() const
1559 { return this->p_->st_info; }
1560
14bfc3f5
ILT
1561 STB
1562 get_st_bind() const
1563 { return elf_st_bind(this->get_st_info()); }
1564
1565 STT
1566 get_st_type() const
1567 { return elf_st_type(this->get_st_info()); }
1568
bae7f79e
ILT
1569 unsigned char
1570 get_st_other() const
1571 { return this->p_->st_other; }
1572
14bfc3f5
ILT
1573 STV
1574 get_st_visibility() const
1575 { return elf_st_visibility(this->get_st_other()); }
1576
1577 unsigned char
1578 get_st_nonvis() const
1579 { return elf_st_nonvis(this->get_st_other()); }
1580
bae7f79e
ILT
1581 Elf_Half
1582 get_st_shndx() const
8d9455b4 1583 { return Convert<16, big_endian>::convert_host(this->p_->st_shndx); }
bae7f79e
ILT
1584
1585 private:
1586 const internal::Sym_data<size>* p_;
1587};
1588
1564db8d
ILT
1589// Writer class for an ELF symbol table entry.
1590
1591template<int size, bool big_endian>
1592class Sym_write
1593{
1594 public:
1595 Sym_write(unsigned char* p)
1596 : p_(reinterpret_cast<internal::Sym_data<size>*>(p))
1597 { }
1598
1599 void
1600 put_st_name(Elf_Word v)
8d9455b4 1601 { this->p_->st_name = Convert<32, big_endian>::convert_host(v); }
1564db8d
ILT
1602
1603 void
1604 put_st_value(typename Elf_types<size>::Elf_Addr v)
8d9455b4 1605 { this->p_->st_value = Convert<size, big_endian>::convert_host(v); }
1564db8d
ILT
1606
1607 void
1608 put_st_size(typename Elf_types<size>::Elf_WXword v)
8d9455b4 1609 { this->p_->st_size = Convert<size, big_endian>::convert_host(v); }
1564db8d
ILT
1610
1611 void
1612 put_st_info(unsigned char v)
1613 { this->p_->st_info = v; }
1614
1615 void
1616 put_st_info(STB bind, STT type)
1617 { this->p_->st_info = elf_st_info(bind, type); }
1618
1619 void
1620 put_st_other(unsigned char v)
1621 { this->p_->st_other = v; }
1622
1623 void
1624 put_st_other(STV vis, unsigned char nonvis)
1625 { this->p_->st_other = elf_st_other(vis, nonvis); }
1626
1627 void
1628 put_st_shndx(Elf_Half v)
8d9455b4 1629 { this->p_->st_shndx = Convert<16, big_endian>::convert_host(v); }
1564db8d
ILT
1630
1631 Sym<size, big_endian>
1632 sym()
1633 { return Sym<size, big_endian>(reinterpret_cast<unsigned char*>(this->p_)); }
1634
1635 private:
1636 internal::Sym_data<size>* p_;
1637};
1638
c06b7b0b 1639// Accessor classes for an ELF REL relocation entry.
61ba1cf9
ILT
1640
1641template<int size, bool big_endian>
1642class Rel
1643{
1644 public:
1645 Rel(const unsigned char* p)
1646 : p_(reinterpret_cast<const internal::Rel_data<size>*>(p))
1647 { }
1648
645f8123
ILT
1649 template<typename File>
1650 Rel(File* file, typename File::Location loc)
1651 : p_(reinterpret_cast<const internal::Rel_data<size>*>(
1652 file->view(loc.file_offset, loc.data_size).data()))
1653 { }
1654
61ba1cf9
ILT
1655 typename Elf_types<size>::Elf_Addr
1656 get_r_offset() const
8d9455b4 1657 { return Convert<size, big_endian>::convert_host(this->p_->r_offset); }
61ba1cf9
ILT
1658
1659 typename Elf_types<size>::Elf_WXword
1660 get_r_info() const
8d9455b4 1661 { return Convert<size, big_endian>::convert_host(this->p_->r_info); }
61ba1cf9
ILT
1662
1663 private:
1664 const internal::Rel_data<size>* p_;
1665};
1666
c06b7b0b
ILT
1667// Writer class for an ELF Rel relocation.
1668
1669template<int size, bool big_endian>
1670class Rel_write
1671{
1672 public:
1673 Rel_write(unsigned char* p)
1674 : p_(reinterpret_cast<internal::Rel_data<size>*>(p))
1675 { }
1676
1677 void
1678 put_r_offset(typename Elf_types<size>::Elf_Addr v)
1679 { this->p_->r_offset = Convert<size, big_endian>::convert_host(v); }
1680
1681 void
1682 put_r_info(typename Elf_types<size>::Elf_WXword v)
1683 { this->p_->r_info = Convert<size, big_endian>::convert_host(v); }
1684
1685 private:
1686 internal::Rel_data<size>* p_;
1687};
1688
1689// Accessor class for an ELF Rela relocation.
1690
61ba1cf9
ILT
1691template<int size, bool big_endian>
1692class Rela
1693{
1694 public:
1695 Rela(const unsigned char* p)
1696 : p_(reinterpret_cast<const internal::Rela_data<size>*>(p))
1697 { }
1698
645f8123
ILT
1699 template<typename File>
1700 Rela(File* file, typename File::Location loc)
1701 : p_(reinterpret_cast<const internal::Rela_data<size>*>(
1702 file->view(loc.file_offset, loc.data_size).data()))
1703 { }
1704
61ba1cf9
ILT
1705 typename Elf_types<size>::Elf_Addr
1706 get_r_offset() const
8d9455b4 1707 { return Convert<size, big_endian>::convert_host(this->p_->r_offset); }
61ba1cf9
ILT
1708
1709 typename Elf_types<size>::Elf_WXword
1710 get_r_info() const
8d9455b4 1711 { return Convert<size, big_endian>::convert_host(this->p_->r_info); }
61ba1cf9
ILT
1712
1713 typename Elf_types<size>::Elf_Swxword
1714 get_r_addend() const
8d9455b4 1715 { return Convert<size, big_endian>::convert_host(this->p_->r_addend); }
61ba1cf9
ILT
1716
1717 private:
1718 const internal::Rela_data<size>* p_;
1719};
1720
c06b7b0b
ILT
1721// Writer class for an ELF Rela relocation.
1722
1723template<int size, bool big_endian>
1724class Rela_write
1725{
1726 public:
1727 Rela_write(unsigned char* p)
1728 : p_(reinterpret_cast<internal::Rela_data<size>*>(p))
1729 { }
1730
1731 void
1732 put_r_offset(typename Elf_types<size>::Elf_Addr v)
1733 { this->p_->r_offset = Convert<size, big_endian>::convert_host(v); }
1734
1735 void
1736 put_r_info(typename Elf_types<size>::Elf_WXword v)
1737 { this->p_->r_info = Convert<size, big_endian>::convert_host(v); }
1738
1739 void
1740 put_r_addend(typename Elf_types<size>::Elf_Swxword v)
1741 { this->p_->r_addend = Convert<size, big_endian>::convert_host(v); }
1742
1743 private:
1744 internal::Rela_data<size>* p_;
1745};
1746
4d625b70
CC
1747// MIPS-64 has a non-standard relocation layout.
1748
1749template<bool big_endian>
1750class Mips64_rel
1751{
1752 public:
1753 Mips64_rel(const unsigned char* p)
1754 : p_(reinterpret_cast<const internal::Mips64_rel_data*>(p))
1755 { }
1756
1757 template<typename File>
1758 Mips64_rel(File* file, typename File::Location loc)
1759 : p_(reinterpret_cast<const internal::Mips64_rel_data*>(
1760 file->view(loc.file_offset, loc.data_size).data()))
1761 { }
1762
1763 typename Elf_types<64>::Elf_Addr
1764 get_r_offset() const
1765 { return Convert<64, big_endian>::convert_host(this->p_->r_offset); }
1766
1767 Elf_Word
1768 get_r_sym() const
1769 { return Convert<32, big_endian>::convert_host(this->p_->r_sym); }
1770
1771 unsigned char
1772 get_r_ssym() const
1773 { return this->p_->r_ssym; }
1774
1775 unsigned char
1776 get_r_type() const
1777 { return this->p_->r_type; }
1778
1779 unsigned char
1780 get_r_type2() const
1781 { return this->p_->r_type2; }
1782
1783 unsigned char
1784 get_r_type3() const
1785 { return this->p_->r_type3; }
1786
1787 private:
1788 const internal::Mips64_rel_data* p_;
1789};
1790
1791template<bool big_endian>
1792class Mips64_rel_write
1793{
1794 public:
1795 Mips64_rel_write(unsigned char* p)
1796 : p_(reinterpret_cast<internal::Mips64_rel_data*>(p))
1797 { }
1798
1799 void
1800 put_r_offset(typename Elf_types<64>::Elf_Addr v)
1801 { this->p_->r_offset = Convert<64, big_endian>::convert_host(v); }
1802
1803 void
1804 put_r_sym(Elf_Word v)
1805 { this->p_->r_sym = Convert<32, big_endian>::convert_host(v); }
1806
1807 void
1808 put_r_ssym(unsigned char v)
1809 { this->p_->r_ssym = v; }
1810
1811 void
1812 put_r_type(unsigned char v)
1813 { this->p_->r_type = v; }
1814
1815 void
1816 put_r_type2(unsigned char v)
1817 { this->p_->r_type2 = v; }
1818
1819 void
1820 put_r_type3(unsigned char v)
1821 { this->p_->r_type3 = v; }
1822
1823 private:
1824 internal::Mips64_rel_data* p_;
1825};
1826
1827template<bool big_endian>
1828class Mips64_rela
1829{
1830 public:
1831 Mips64_rela(const unsigned char* p)
1832 : p_(reinterpret_cast<const internal::Mips64_rela_data*>(p))
1833 { }
1834
1835 template<typename File>
1836 Mips64_rela(File* file, typename File::Location loc)
1837 : p_(reinterpret_cast<const internal::Mips64_rela_data*>(
1838 file->view(loc.file_offset, loc.data_size).data()))
1839 { }
1840
1841 typename Elf_types<64>::Elf_Addr
1842 get_r_offset() const
1843 { return Convert<64, big_endian>::convert_host(this->p_->r_offset); }
1844
1845 Elf_Word
1846 get_r_sym() const
1847 { return Convert<32, big_endian>::convert_host(this->p_->r_sym); }
1848
1849 unsigned char
1850 get_r_ssym() const
1851 { return this->p_->r_ssym; }
1852
1853 unsigned char
1854 get_r_type() const
1855 { return this->p_->r_type; }
1856
1857 unsigned char
1858 get_r_type2() const
1859 { return this->p_->r_type2; }
1860
1861 unsigned char
1862 get_r_type3() const
1863 { return this->p_->r_type3; }
1864
1865 typename Elf_types<64>::Elf_Swxword
1866 get_r_addend() const
1867 { return Convert<64, big_endian>::convert_host(this->p_->r_addend); }
1868
1869 private:
1870 const internal::Mips64_rela_data* p_;
1871};
1872
1873template<bool big_endian>
1874class Mips64_rela_write
1875{
1876 public:
1877 Mips64_rela_write(unsigned char* p)
1878 : p_(reinterpret_cast<internal::Mips64_rela_data*>(p))
1879 { }
1880
1881 void
1882 put_r_offset(typename Elf_types<64>::Elf_Addr v)
1883 { this->p_->r_offset = Convert<64, big_endian>::convert_host(v); }
1884
1885 void
1886 put_r_sym(Elf_Word v)
1887 { this->p_->r_sym = Convert<32, big_endian>::convert_host(v); }
1888
1889 void
1890 put_r_ssym(unsigned char v)
1891 { this->p_->r_ssym = v; }
1892
1893 void
1894 put_r_type(unsigned char v)
1895 { this->p_->r_type = v; }
1896
1897 void
1898 put_r_type2(unsigned char v)
1899 { this->p_->r_type2 = v; }
1900
1901 void
1902 put_r_type3(unsigned char v)
1903 { this->p_->r_type3 = v; }
1904
1905 void
1906 put_r_addend(typename Elf_types<64>::Elf_Swxword v)
1907 { this->p_->r_addend = Convert<64, big_endian>::convert_host(v); }
1908
1909 private:
1910 internal::Mips64_rela_data* p_;
1911};
1912
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1913// Accessor classes for entries in the ELF SHT_DYNAMIC section aka
1914// PT_DYNAMIC segment.
1915
1916template<int size, bool big_endian>
1917class Dyn
1918{
1919 public:
1920 Dyn(const unsigned char* p)
1921 : p_(reinterpret_cast<const internal::Dyn_data<size>*>(p))
1922 { }
1923
1924 template<typename File>
1925 Dyn(File* file, typename File::Location loc)
1926 : p_(reinterpret_cast<const internal::Dyn_data<size>*>(
1927 file->view(loc.file_offset, loc.data_size).data()))
1928 { }
1929
1930 typename Elf_types<size>::Elf_Swxword
1931 get_d_tag() const
1932 { return Convert<size, big_endian>::convert_host(this->p_->d_tag); }
1933
1934 typename Elf_types<size>::Elf_WXword
1935 get_d_val() const
1936 { return Convert<size, big_endian>::convert_host(this->p_->d_val); }
1937
1938 typename Elf_types<size>::Elf_Addr
1939 get_d_ptr() const
1940 { return Convert<size, big_endian>::convert_host(this->p_->d_val); }
1941
1942 private:
1943 const internal::Dyn_data<size>* p_;
1944};
1945
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1946// Write class for an entry in the SHT_DYNAMIC section.
1947
1948template<int size, bool big_endian>
1949class Dyn_write
1950{
1951 public:
1952 Dyn_write(unsigned char* p)
1953 : p_(reinterpret_cast<internal::Dyn_data<size>*>(p))
1954 { }
1955
1956 void
1957 put_d_tag(typename Elf_types<size>::Elf_Swxword v)
1958 { this->p_->d_tag = Convert<size, big_endian>::convert_host(v); }
1959
1960 void
1961 put_d_val(typename Elf_types<size>::Elf_WXword v)
1962 { this->p_->d_val = Convert<size, big_endian>::convert_host(v); }
1963
1964 void
1965 put_d_ptr(typename Elf_types<size>::Elf_Addr v)
1966 { this->p_->d_val = Convert<size, big_endian>::convert_host(v); }
1967
1968 private:
1969 internal::Dyn_data<size>* p_;
1970};
1971
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1972// Accessor classes for entries in the ELF SHT_GNU_verdef section.
1973
1974template<int size, bool big_endian>
1975class Verdef
1976{
1977 public:
1978 Verdef(const unsigned char* p)
1979 : p_(reinterpret_cast<const internal::Verdef_data*>(p))
1980 { }
1981
1982 template<typename File>
1983 Verdef(File* file, typename File::Location loc)
1984 : p_(reinterpret_cast<const internal::Verdef_data*>(
1985 file->view(loc.file_offset, loc.data_size).data()))
1986 { }
1987
1988 Elf_Half
1989 get_vd_version() const
1990 { return Convert<16, big_endian>::convert_host(this->p_->vd_version); }
1991
1992 Elf_Half
1993 get_vd_flags() const
1994 { return Convert<16, big_endian>::convert_host(this->p_->vd_flags); }
1995
1996 Elf_Half
1997 get_vd_ndx() const
1998 { return Convert<16, big_endian>::convert_host(this->p_->vd_ndx); }
1999
2000 Elf_Half
2001 get_vd_cnt() const
2002 { return Convert<16, big_endian>::convert_host(this->p_->vd_cnt); }
2003
2004 Elf_Word
2005 get_vd_hash() const
2006 { return Convert<32, big_endian>::convert_host(this->p_->vd_hash); }
2007
2008 Elf_Word
2009 get_vd_aux() const
2010 { return Convert<32, big_endian>::convert_host(this->p_->vd_aux); }
2011
2012 Elf_Word
2013 get_vd_next() const
2014 { return Convert<32, big_endian>::convert_host(this->p_->vd_next); }
2015
2016 private:
2017 const internal::Verdef_data* p_;
2018};
2019
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2020template<int size, bool big_endian>
2021class Verdef_write
2022{
2023 public:
2024 Verdef_write(unsigned char* p)
2025 : p_(reinterpret_cast<internal::Verdef_data*>(p))
2026 { }
2027
2028 void
2029 set_vd_version(Elf_Half v)
2030 { this->p_->vd_version = Convert<16, big_endian>::convert_host(v); }
2031
2032 void
2033 set_vd_flags(Elf_Half v)
2034 { this->p_->vd_flags = Convert<16, big_endian>::convert_host(v); }
2035
2036 void
2037 set_vd_ndx(Elf_Half v)
2038 { this->p_->vd_ndx = Convert<16, big_endian>::convert_host(v); }
2039
2040 void
2041 set_vd_cnt(Elf_Half v)
2042 { this->p_->vd_cnt = Convert<16, big_endian>::convert_host(v); }
2043
2044 void
2045 set_vd_hash(Elf_Word v)
2046 { this->p_->vd_hash = Convert<32, big_endian>::convert_host(v); }
2047
2048 void
2049 set_vd_aux(Elf_Word v)
2050 { this->p_->vd_aux = Convert<32, big_endian>::convert_host(v); }
2051
2052 void
2053 set_vd_next(Elf_Word v)
2054 { this->p_->vd_next = Convert<32, big_endian>::convert_host(v); }
2055
2056 private:
2057 internal::Verdef_data* p_;
2058};
2059
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2060// Accessor classes for auxiliary entries in the ELF SHT_GNU_verdef
2061// section.
2062
2063template<int size, bool big_endian>
2064class Verdaux
2065{
2066 public:
2067 Verdaux(const unsigned char* p)
2068 : p_(reinterpret_cast<const internal::Verdaux_data*>(p))
2069 { }
2070
2071 template<typename File>
2072 Verdaux(File* file, typename File::Location loc)
2073 : p_(reinterpret_cast<const internal::Verdaux_data*>(
2074 file->view(loc.file_offset, loc.data_size).data()))
2075 { }
2076
2077 Elf_Word
2078 get_vda_name() const
2079 { return Convert<32, big_endian>::convert_host(this->p_->vda_name); }
2080
2081 Elf_Word
2082 get_vda_next() const
2083 { return Convert<32, big_endian>::convert_host(this->p_->vda_next); }
2084
2085 private:
2086 const internal::Verdaux_data* p_;
2087};
2088
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2089template<int size, bool big_endian>
2090class Verdaux_write
2091{
2092 public:
2093 Verdaux_write(unsigned char* p)
2094 : p_(reinterpret_cast<internal::Verdaux_data*>(p))
2095 { }
2096
2097 void
2098 set_vda_name(Elf_Word v)
2099 { this->p_->vda_name = Convert<32, big_endian>::convert_host(v); }
2100
2101 void
2102 set_vda_next(Elf_Word v)
2103 { this->p_->vda_next = Convert<32, big_endian>::convert_host(v); }
2104
2105 private:
2106 internal::Verdaux_data* p_;
2107};
2108
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2109// Accessor classes for entries in the ELF SHT_GNU_verneed section.
2110
2111template<int size, bool big_endian>
2112class Verneed
2113{
2114 public:
2115 Verneed(const unsigned char* p)
2116 : p_(reinterpret_cast<const internal::Verneed_data*>(p))
2117 { }
2118
2119 template<typename File>
2120 Verneed(File* file, typename File::Location loc)
2121 : p_(reinterpret_cast<const internal::Verneed_data*>(
2122 file->view(loc.file_offset, loc.data_size).data()))
2123 { }
2124
2125 Elf_Half
2126 get_vn_version() const
2127 { return Convert<16, big_endian>::convert_host(this->p_->vn_version); }
2128
2129 Elf_Half
2130 get_vn_cnt() const
2131 { return Convert<16, big_endian>::convert_host(this->p_->vn_cnt); }
2132
2133 Elf_Word
2134 get_vn_file() const
2135 { return Convert<32, big_endian>::convert_host(this->p_->vn_file); }
2136
2137 Elf_Word
2138 get_vn_aux() const
2139 { return Convert<32, big_endian>::convert_host(this->p_->vn_aux); }
2140
2141 Elf_Word
2142 get_vn_next() const
2143 { return Convert<32, big_endian>::convert_host(this->p_->vn_next); }
2144
2145 private:
2146 const internal::Verneed_data* p_;
2147};
2148
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2149template<int size, bool big_endian>
2150class Verneed_write
2151{
2152 public:
2153 Verneed_write(unsigned char* p)
2154 : p_(reinterpret_cast<internal::Verneed_data*>(p))
2155 { }
2156
2157 void
2158 set_vn_version(Elf_Half v)
2159 { this->p_->vn_version = Convert<16, big_endian>::convert_host(v); }
2160
2161 void
2162 set_vn_cnt(Elf_Half v)
2163 { this->p_->vn_cnt = Convert<16, big_endian>::convert_host(v); }
2164
2165 void
2166 set_vn_file(Elf_Word v)
2167 { this->p_->vn_file = Convert<32, big_endian>::convert_host(v); }
2168
2169 void
2170 set_vn_aux(Elf_Word v)
2171 { this->p_->vn_aux = Convert<32, big_endian>::convert_host(v); }
2172
2173 void
2174 set_vn_next(Elf_Word v)
2175 { this->p_->vn_next = Convert<32, big_endian>::convert_host(v); }
2176
2177 private:
2178 internal::Verneed_data* p_;
2179};
2180
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2181// Accessor classes for auxiliary entries in the ELF SHT_GNU_verneed
2182// section.
2183
2184template<int size, bool big_endian>
2185class Vernaux
2186{
2187 public:
2188 Vernaux(const unsigned char* p)
2189 : p_(reinterpret_cast<const internal::Vernaux_data*>(p))
2190 { }
2191
2192 template<typename File>
2193 Vernaux(File* file, typename File::Location loc)
2194 : p_(reinterpret_cast<const internal::Vernaux_data*>(
2195 file->view(loc.file_offset, loc.data_size).data()))
2196 { }
2197
2198 Elf_Word
2199 get_vna_hash() const
2200 { return Convert<32, big_endian>::convert_host(this->p_->vna_hash); }
2201
2202 Elf_Half
2203 get_vna_flags() const
2204 { return Convert<16, big_endian>::convert_host(this->p_->vna_flags); }
2205
2206 Elf_Half
2207 get_vna_other() const
2208 { return Convert<16, big_endian>::convert_host(this->p_->vna_other); }
2209
2210 Elf_Word
2211 get_vna_name() const
2212 { return Convert<32, big_endian>::convert_host(this->p_->vna_name); }
2213
2214 Elf_Word
2215 get_vna_next() const
2216 { return Convert<32, big_endian>::convert_host(this->p_->vna_next); }
2217
2218 private:
2219 const internal::Vernaux_data* p_;
2220};
2221
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2222template<int size, bool big_endian>
2223class Vernaux_write
2224{
2225 public:
2226 Vernaux_write(unsigned char* p)
2227 : p_(reinterpret_cast<internal::Vernaux_data*>(p))
2228 { }
2229
2230 void
2231 set_vna_hash(Elf_Word v)
2232 { this->p_->vna_hash = Convert<32, big_endian>::convert_host(v); }
2233
2234 void
2235 set_vna_flags(Elf_Half v)
2236 { this->p_->vna_flags = Convert<16, big_endian>::convert_host(v); }
2237
2238 void
2239 set_vna_other(Elf_Half v)
2240 { this->p_->vna_other = Convert<16, big_endian>::convert_host(v); }
2241
2242 void
2243 set_vna_name(Elf_Word v)
2244 { this->p_->vna_name = Convert<32, big_endian>::convert_host(v); }
2245
2246 void
2247 set_vna_next(Elf_Word v)
2248 { this->p_->vna_next = Convert<32, big_endian>::convert_host(v); }
2249
2250 private:
2251 internal::Vernaux_data* p_;
2252};
dbe717ef 2253
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ILT
2254} // End namespace elfcpp.
2255
2256#endif // !defined(ELFPCP_H)