xref: /freebsd/usr.bin/elfdump/elfdump.c (revision f1f890804985a1043da42a5def13c79dc005f5e9)
1 /*-
2  * Copyright (c) 2003 David O'Brien.  All rights reserved.
3  * Copyright (c) 2001 Jake Burkholder
4  * All rights reserved.
5  *
6  * Redistribution and use in source and binary forms, with or without
7  * modification, are permitted provided that the following conditions
8  * are met:
9  * 1. Redistributions of source code must retain the above copyright
10  *    notice, this list of conditions and the following disclaimer.
11  * 2. Redistributions in binary form must reproduce the above copyright
12  *    notice, this list of conditions and the following disclaimer in the
13  *    documentation and/or other materials provided with the distribution.
14  *
15  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
16  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
17  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
18  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
19  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
21  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25  * SUCH DAMAGE.
26  */
27 
28 #include <sys/cdefs.h>
29 __FBSDID("$FreeBSD$");
30 
31 #include <sys/types.h>
32 #include <sys/elf32.h>
33 #include <sys/elf64.h>
34 #include <sys/endian.h>
35 #include <sys/mman.h>
36 #include <sys/stat.h>
37 #include <err.h>
38 #include <fcntl.h>
39 #include <inttypes.h>
40 #include <stddef.h>
41 #include <stdio.h>
42 #include <stdlib.h>
43 #include <string.h>
44 #include <unistd.h>
45 
46 #define	ED_DYN		(1<<0)
47 #define	ED_EHDR		(1<<1)
48 #define	ED_GOT		(1<<2)
49 #define	ED_HASH		(1<<3)
50 #define	ED_INTERP	(1<<4)
51 #define	ED_NOTE		(1<<5)
52 #define	ED_PHDR		(1<<6)
53 #define	ED_REL		(1<<7)
54 #define	ED_SHDR		(1<<8)
55 #define	ED_SYMTAB	(1<<9)
56 #define	ED_ALL		((1<<10)-1)
57 
58 #define	elf_get_addr	elf_get_quad
59 #define	elf_get_off	elf_get_quad
60 #define	elf_get_size	elf_get_quad
61 
62 enum elf_member {
63 	D_TAG = 1, D_PTR, D_VAL,
64 
65 	E_CLASS, E_DATA, E_OSABI, E_TYPE, E_MACHINE, E_VERSION, E_ENTRY,
66 	E_PHOFF, E_SHOFF, E_FLAGS, E_EHSIZE, E_PHENTSIZE, E_PHNUM, E_SHENTSIZE,
67 	E_SHNUM, E_SHSTRNDX,
68 
69 	N_NAMESZ, N_DESCSZ, N_TYPE,
70 
71 	P_TYPE, P_OFFSET, P_VADDR, P_PADDR, P_FILESZ, P_MEMSZ, P_FLAGS,
72 	P_ALIGN,
73 
74 	SH_NAME, SH_TYPE, SH_FLAGS, SH_ADDR, SH_OFFSET, SH_SIZE, SH_LINK,
75 	SH_INFO, SH_ADDRALIGN, SH_ENTSIZE,
76 
77 	ST_NAME, ST_VALUE, ST_SIZE, ST_INFO, ST_SHNDX,
78 
79 	R_OFFSET, R_INFO,
80 
81 	RA_OFFSET, RA_INFO, RA_ADDEND
82 };
83 
84 typedef enum elf_member elf_member_t;
85 
86 static int elf32_offsets[] = {
87 	0,
88 
89 	offsetof(Elf32_Dyn, d_tag), offsetof(Elf32_Dyn, d_un.d_ptr),
90 	offsetof(Elf32_Dyn, d_un.d_val),
91 
92 	offsetof(Elf32_Ehdr, e_ident[EI_CLASS]),
93 	offsetof(Elf32_Ehdr, e_ident[EI_DATA]),
94 	offsetof(Elf32_Ehdr, e_ident[EI_OSABI]),
95 	offsetof(Elf32_Ehdr, e_type), offsetof(Elf32_Ehdr, e_machine),
96 	offsetof(Elf32_Ehdr, e_version), offsetof(Elf32_Ehdr, e_entry),
97 	offsetof(Elf32_Ehdr, e_phoff), offsetof(Elf32_Ehdr, e_shoff),
98 	offsetof(Elf32_Ehdr, e_flags), offsetof(Elf32_Ehdr, e_ehsize),
99 	offsetof(Elf32_Ehdr, e_phentsize), offsetof(Elf32_Ehdr, e_phnum),
100 	offsetof(Elf32_Ehdr, e_shentsize), offsetof(Elf32_Ehdr, e_shnum),
101 	offsetof(Elf32_Ehdr, e_shstrndx),
102 
103 	offsetof(Elf_Note, n_namesz), offsetof(Elf_Note, n_descsz),
104 	offsetof(Elf_Note, n_type),
105 
106 	offsetof(Elf32_Phdr, p_type), offsetof(Elf32_Phdr, p_offset),
107 	offsetof(Elf32_Phdr, p_vaddr), offsetof(Elf32_Phdr, p_paddr),
108 	offsetof(Elf32_Phdr, p_filesz), offsetof(Elf32_Phdr, p_memsz),
109 	offsetof(Elf32_Phdr, p_flags), offsetof(Elf32_Phdr, p_align),
110 
111 	offsetof(Elf32_Shdr, sh_name), offsetof(Elf32_Shdr, sh_type),
112 	offsetof(Elf32_Shdr, sh_flags), offsetof(Elf32_Shdr, sh_addr),
113 	offsetof(Elf32_Shdr, sh_offset), offsetof(Elf32_Shdr, sh_size),
114 	offsetof(Elf32_Shdr, sh_link), offsetof(Elf32_Shdr, sh_info),
115 	offsetof(Elf32_Shdr, sh_addralign), offsetof(Elf32_Shdr, sh_entsize),
116 
117 	offsetof(Elf32_Sym, st_name), offsetof(Elf32_Sym, st_value),
118 	offsetof(Elf32_Sym, st_size), offsetof(Elf32_Sym, st_info),
119 	offsetof(Elf32_Sym, st_shndx),
120 
121 	offsetof(Elf32_Rel, r_offset), offsetof(Elf32_Rel, r_info),
122 
123 	offsetof(Elf32_Rela, r_offset), offsetof(Elf32_Rela, r_info),
124 	offsetof(Elf32_Rela, r_addend)
125 };
126 
127 static int elf64_offsets[] = {
128 	0,
129 
130 	offsetof(Elf64_Dyn, d_tag), offsetof(Elf64_Dyn, d_un.d_ptr),
131 	offsetof(Elf64_Dyn, d_un.d_val),
132 
133 	offsetof(Elf32_Ehdr, e_ident[EI_CLASS]),
134 	offsetof(Elf32_Ehdr, e_ident[EI_DATA]),
135 	offsetof(Elf32_Ehdr, e_ident[EI_OSABI]),
136 	offsetof(Elf64_Ehdr, e_type), offsetof(Elf64_Ehdr, e_machine),
137 	offsetof(Elf64_Ehdr, e_version), offsetof(Elf64_Ehdr, e_entry),
138 	offsetof(Elf64_Ehdr, e_phoff), offsetof(Elf64_Ehdr, e_shoff),
139 	offsetof(Elf64_Ehdr, e_flags), offsetof(Elf64_Ehdr, e_ehsize),
140 	offsetof(Elf64_Ehdr, e_phentsize), offsetof(Elf64_Ehdr, e_phnum),
141 	offsetof(Elf64_Ehdr, e_shentsize), offsetof(Elf64_Ehdr, e_shnum),
142 	offsetof(Elf64_Ehdr, e_shstrndx),
143 
144 	offsetof(Elf_Note, n_namesz), offsetof(Elf_Note, n_descsz),
145 	offsetof(Elf_Note, n_type),
146 
147 	offsetof(Elf64_Phdr, p_type), offsetof(Elf64_Phdr, p_offset),
148 	offsetof(Elf64_Phdr, p_vaddr), offsetof(Elf64_Phdr, p_paddr),
149 	offsetof(Elf64_Phdr, p_filesz), offsetof(Elf64_Phdr, p_memsz),
150 	offsetof(Elf64_Phdr, p_flags), offsetof(Elf64_Phdr, p_align),
151 
152 	offsetof(Elf64_Shdr, sh_name), offsetof(Elf64_Shdr, sh_type),
153 	offsetof(Elf64_Shdr, sh_flags), offsetof(Elf64_Shdr, sh_addr),
154 	offsetof(Elf64_Shdr, sh_offset), offsetof(Elf64_Shdr, sh_size),
155 	offsetof(Elf64_Shdr, sh_link), offsetof(Elf64_Shdr, sh_info),
156 	offsetof(Elf64_Shdr, sh_addralign), offsetof(Elf64_Shdr, sh_entsize),
157 
158 	offsetof(Elf64_Sym, st_name), offsetof(Elf64_Sym, st_value),
159 	offsetof(Elf64_Sym, st_size), offsetof(Elf64_Sym, st_info),
160 	offsetof(Elf64_Sym, st_shndx),
161 
162 	offsetof(Elf64_Rel, r_offset), offsetof(Elf64_Rel, r_info),
163 
164 	offsetof(Elf64_Rela, r_offset), offsetof(Elf64_Rela, r_info),
165 	offsetof(Elf64_Rela, r_addend)
166 };
167 
168 /* http://www.sco.com/developers/gabi/latest/ch5.dynamic.html#tag_encodings */
169 static const char *
170 d_tags(u_int64_t tag) {
171 	switch (tag) {
172 	case 0: return "DT_NULL";
173 	case 1: return "DT_NEEDED";
174 	case 2: return "DT_PLTRELSZ";
175 	case 3: return "DT_PLTGOT";
176 	case 4: return "DT_HASH";
177 	case 5: return "DT_STRTAB";
178 	case 6: return "DT_SYMTAB";
179 	case 7: return "DT_RELA";
180 	case 8: return "DT_RELASZ";
181 	case 9: return "DT_RELAENT";
182 	case 10: return "DT_STRSZ";
183 	case 11: return "DT_SYMENT";
184 	case 12: return "DT_INIT";
185 	case 13: return "DT_FINI";
186 	case 14: return "DT_SONAME";
187 	case 15: return "DT_RPATH";
188 	case 16: return "DT_SYMBOLIC";
189 	case 17: return "DT_REL";
190 	case 18: return "DT_RELSZ";
191 	case 19: return "DT_RELENT";
192 	case 20: return "DT_PLTREL";
193 	case 21: return "DT_DEBUG";
194 	case 22: return "DT_TEXTREL";
195 	case 23: return "DT_JMPREL";
196 	case 24: return "DT_BIND_NOW";
197 	case 25: return "DT_INIT_ARRAY";
198 	case 26: return "DT_FINI_ARRAY";
199 	case 27: return "DT_INIT_ARRAYSZ";
200 	case 28: return "DT_FINI_ARRAYSZ";
201 	case 29: return "DT_RUNPATH";
202 	case 30: return "DT_FLAGS";
203 	case 32: return "DT_PREINIT_ARRAY"; /* XXX: DT_ENCODING */
204 	case 33: return "DT_PREINIT_ARRAYSZ";
205 	/* 0x6000000D - 0x6ffff000 operating system-specific semantics */
206 	case 0x6ffffdf5: return "DT_GNU_PRELINKED";
207 	case 0x6ffffdf6: return "DT_GNU_CONFLICTSZ";
208 	case 0x6ffffdf7: return "DT_GNU_LIBLISTSZ";
209 	case 0x6ffffdf8: return "DT_SUNW_CHECKSUM";
210 	case 0x6ffffdf9: return "DT_PLTPADSZ";
211 	case 0x6ffffdfa: return "DT_MOVEENT";
212 	case 0x6ffffdfb: return "DT_MOVESZ";
213 	case 0x6ffffdfc: return "DT_FEATURE";
214 	case 0x6ffffdfd: return "DT_POSFLAG_1";
215 	case 0x6ffffdfe: return "DT_SYMINSZ";
216 	case 0x6ffffdff: return "DT_SYMINENT (DT_VALRNGHI)";
217 	case 0x6ffffe00: return "DT_ADDRRNGLO";
218 	case 0x6ffffef8: return "DT_GNU_CONFLICT";
219 	case 0x6ffffef9: return "DT_GNU_LIBLIST";
220 	case 0x6ffffefa: return "DT_SUNW_CONFIG";
221 	case 0x6ffffefb: return "DT_SUNW_DEPAUDIT";
222 	case 0x6ffffefc: return "DT_SUNW_AUDIT";
223 	case 0x6ffffefd: return "DT_SUNW_PLTPAD";
224 	case 0x6ffffefe: return "DT_SUNW_MOVETAB";
225 	case 0x6ffffeff: return "DT_SYMINFO (DT_ADDRRNGHI)";
226 	case 0x6ffffff9: return "DT_RELACOUNT";
227 	case 0x6ffffffa: return "DT_RELCOUNT";
228 	case 0x6ffffffb: return "DT_FLAGS_1";
229 	case 0x6ffffffc: return "DT_VERDEF";
230 	case 0x6ffffffd: return "DT_VERDEFNUM";
231 	case 0x6ffffffe: return "DT_VERNEED";
232 	case 0x6fffffff: return "DT_VERNEEDNUM";
233 	case 0x6ffffff0: return "DT_GNU_VERSYM";
234 	/* 0x70000000 - 0x7fffffff processor-specific semantics */
235 	case 0x70000000: return "DT_IA_64_PLT_RESERVE";
236 	case 0x7ffffffd: return "DT_SUNW_AUXILIARY";
237 	case 0x7ffffffe: return "DT_SUNW_USED";
238 	case 0x7fffffff: return "DT_SUNW_FILTER";
239 	default: return "ERROR: TAG NOT DEFINED";
240 	}
241 }
242 
243 static const char *
244 e_machines(u_int mach)
245 {
246 	static char machdesc[64];
247 
248 	switch (mach) {
249 	case EM_NONE:	return "EM_NONE";
250 	case EM_M32:	return "EM_M32";
251 	case EM_SPARC:	return "EM_SPARC";
252 	case EM_386:	return "EM_386";
253 	case EM_68K:	return "EM_68K";
254 	case EM_88K:	return "EM_88K";
255 	case EM_860:	return "EM_860";
256 	case EM_MIPS:	return "EM_MIPS";
257 	case EM_PPC:	return "EM_PPC";
258 	case EM_ARM:	return "EM_ARM";
259 	case EM_ALPHA:	return "EM_ALPHA (legacy)";
260 	case EM_SPARCV9:return "EM_SPARCV9";
261 	case EM_IA_64:	return "EM_IA_64";
262 	case EM_X86_64:	return "EM_X86_64";
263 	}
264 	snprintf(machdesc, sizeof(machdesc),
265 	    "(unknown machine) -- type 0x%x", mach);
266 	return (machdesc);
267 }
268 
269 static const char *e_types[] = {
270 	"ET_NONE", "ET_REL", "ET_EXEC", "ET_DYN", "ET_CORE"
271 };
272 
273 static const char *ei_versions[] = {
274 	"EV_NONE", "EV_CURRENT"
275 };
276 
277 static const char *ei_classes[] = {
278 	"ELFCLASSNONE", "ELFCLASS32", "ELFCLASS64"
279 };
280 
281 static const char *ei_data[] = {
282 	"ELFDATANONE", "ELFDATA2LSB", "ELFDATA2MSB"
283 };
284 
285 static const char *ei_abis[256] = {
286 	"ELFOSABI_SYSV", "ELFOSABI_HPUX", "ELFOSABI_NETBSD", "ELFOSABI_LINUX",
287 	"ELFOSABI_HURD", "ELFOSABI_86OPEN", "ELFOSABI_SOLARIS", "ELFOSABI_AIX",
288 	"ELFOSABI_IRIX", "ELFOSABI_FREEBSD", "ELFOSABI_TRU64",
289 	"ELFOSABI_MODESTO", "ELFOSABI_OPENBSD",
290 	[255] = "ELFOSABI_STANDALONE"
291 };
292 
293 static const char *p_types[] = {
294 	"PT_NULL", "PT_LOAD", "PT_DYNAMIC", "PT_INTERP", "PT_NOTE",
295 	"PT_SHLIB", "PT_PHDR", "PT_TLS"
296 };
297 
298 static const char *p_flags[] = {
299 	"", "PF_X", "PF_W", "PF_X|PF_W", "PF_R", "PF_X|PF_R", "PF_W|PF_R",
300 	"PF_X|PF_W|PF_R"
301 };
302 
303 /* http://www.sco.com/developers/gabi/latest/ch4.sheader.html#sh_type */
304 static const char *
305 sh_types(u_int64_t sht) {
306 	switch (sht) {
307 	case 0:	return "SHT_NULL";
308 	case 1: return "SHT_PROGBITS";
309 	case 2: return "SHT_SYMTAB";
310 	case 3: return "SHT_STRTAB";
311 	case 4: return "SHT_RELA";
312 	case 5: return "SHT_HASH";
313 	case 6: return "SHT_DYNAMIC";
314 	case 7: return "SHT_NOTE";
315 	case 8: return "SHT_NOBITS";
316 	case 9: return "SHT_REL";
317 	case 10: return "SHT_SHLIB";
318 	case 11: return "SHT_DYNSYM";
319 	case 14: return "SHT_INIT_ARRAY";
320 	case 15: return "SHT_FINI_ARRAY";
321 	case 16: return "SHT_PREINIT_ARRAY";
322 	case 17: return "SHT_GROUP";
323 	case 18: return "SHT_SYMTAB_SHNDX";
324 	/* 0x60000000 - 0x6fffffff operating system-specific semantics */
325 	case 0x6ffffff0: return "XXX:VERSYM";
326 	case 0x6ffffff4: return "SHT_SUNW_dof";
327 	case 0x6ffffff7: return "SHT_GNU_LIBLIST";
328 	case 0x6ffffffc: return "XXX:VERDEF";
329 	case 0x6ffffffd: return "SHT_SUNW(GNU)_verdef";
330 	case 0x6ffffffe: return "SHT_SUNW(GNU)_verneed";
331 	case 0x6fffffff: return "SHT_SUNW(GNU)_versym";
332 	/* 0x70000000 - 0x7fffffff processor-specific semantics */
333 	case 0x70000000: return "SHT_IA_64_EXT";
334 	case 0x70000001: return "SHT_IA_64_UNWIND";
335 	case 0x7ffffffd: return "XXX:AUXILIARY";
336 	case 0x7fffffff: return "XXX:FILTER";
337 	/* 0x80000000 - 0xffffffff application programs */
338 	default: return "ERROR: SHT NOT DEFINED";
339 	}
340 }
341 
342 static const char *sh_flags[] = {
343 	"", "SHF_WRITE", "SHF_ALLOC", "SHF_WRITE|SHF_ALLOC", "SHF_EXECINSTR",
344 	"SHF_WRITE|SHF_EXECINSTR", "SHF_ALLOC|SHF_EXECINSTR",
345 	"SHF_WRITE|SHF_ALLOC|SHF_EXECINSTR"
346 };
347 
348 static const char *st_types[] = {
349 	"STT_NOTYPE", "STT_OBJECT", "STT_FUNC", "STT_SECTION", "STT_FILE"
350 };
351 
352 static const char *st_bindings[] = {
353 	"STB_LOCAL", "STB_GLOBAL", "STB_WEAK"
354 };
355 
356 static char *dynstr;
357 static char *shstrtab;
358 static char *strtab;
359 static FILE *out;
360 
361 static u_int64_t elf_get_byte(Elf32_Ehdr *e, void *base, elf_member_t member);
362 static u_int64_t elf_get_quarter(Elf32_Ehdr *e, void *base,
363     elf_member_t member);
364 #if 0
365 static u_int64_t elf_get_half(Elf32_Ehdr *e, void *base, elf_member_t member);
366 #endif
367 static u_int64_t elf_get_word(Elf32_Ehdr *e, void *base, elf_member_t member);
368 static u_int64_t elf_get_quad(Elf32_Ehdr *e, void *base, elf_member_t member);
369 
370 static void elf_print_ehdr(Elf32_Ehdr *e);
371 static void elf_print_phdr(Elf32_Ehdr *e, void *p);
372 static void elf_print_shdr(Elf32_Ehdr *e, void *sh);
373 static void elf_print_symtab(Elf32_Ehdr *e, void *sh, char *str);
374 static void elf_print_dynamic(Elf32_Ehdr *e, void *sh);
375 static void elf_print_rel(Elf32_Ehdr *e, void *r);
376 static void elf_print_rela(Elf32_Ehdr *e, void *ra);
377 static void elf_print_interp(Elf32_Ehdr *e, void *p);
378 static void elf_print_got(Elf32_Ehdr *e, void *sh);
379 static void elf_print_hash(Elf32_Ehdr *e, void *sh);
380 static void elf_print_note(Elf32_Ehdr *e, void *sh);
381 
382 static void usage(void);
383 
384 int
385 main(int ac, char **av)
386 {
387 	u_int64_t phoff;
388 	u_int64_t shoff;
389 	u_int64_t phentsize;
390 	u_int64_t phnum;
391 	u_int64_t shentsize;
392 	u_int64_t shnum;
393 	u_int64_t shstrndx;
394 	u_int64_t offset;
395 	u_int64_t name;
396 	u_int64_t type;
397 	struct stat sb;
398 	u_int flags;
399 	Elf32_Ehdr *e;
400 	void *p;
401 	void *sh;
402 	void *v;
403 	int fd;
404 	int ch;
405 	int i;
406 
407 	out = stdout;
408 	flags = 0;
409 	while ((ch = getopt(ac, av, "acdeiGhnprsw:")) != -1)
410 		switch (ch) {
411 		case 'a':
412 			flags = ED_ALL;
413 			break;
414 		case 'c':
415 			flags |= ED_SHDR;
416 			break;
417 		case 'd':
418 			flags |= ED_DYN;
419 			break;
420 		case 'e':
421 			flags |= ED_EHDR;
422 			break;
423 		case 'i':
424 			flags |= ED_INTERP;
425 			break;
426 		case 'G':
427 			flags |= ED_GOT;
428 			break;
429 		case 'h':
430 			flags |= ED_HASH;
431 			break;
432 		case 'n':
433 			flags |= ED_NOTE;
434 			break;
435 		case 'p':
436 			flags |= ED_PHDR;
437 			break;
438 		case 'r':
439 			flags |= ED_REL;
440 			break;
441 		case 's':
442 			flags |= ED_SYMTAB;
443 			break;
444 		case 'w':
445 			if ((out = fopen(optarg, "w")) == NULL)
446 				err(1, "%s", optarg);
447 			break;
448 		case '?':
449 		default:
450 			usage();
451 		}
452 	ac -= optind;
453 	av += optind;
454 	if (ac == 0 || flags == 0)
455 		usage();
456 	if ((fd = open(*av, O_RDONLY)) < 0 ||
457 	    fstat(fd, &sb) < 0)
458 		err(1, "%s", *av);
459 	e = mmap(NULL, sb.st_size, PROT_READ, MAP_SHARED, fd, 0);
460 	if (e == MAP_FAILED)
461 		err(1, NULL);
462 	if (!IS_ELF(*(Elf32_Ehdr *)e))
463 		errx(1, "not an elf file");
464 	phoff = elf_get_off(e, e, E_PHOFF);
465 	shoff = elf_get_off(e, e, E_SHOFF);
466 	phentsize = elf_get_quarter(e, e, E_PHENTSIZE);
467 	phnum = elf_get_quarter(e, e, E_PHNUM);
468 	shentsize = elf_get_quarter(e, e, E_SHENTSIZE);
469 	shnum = elf_get_quarter(e, e, E_SHNUM);
470 	shstrndx = elf_get_quarter(e, e, E_SHSTRNDX);
471 	p = (char *)e + phoff;
472 	sh = (char *)e + shoff;
473 	offset = elf_get_off(e, (char *)sh + shstrndx * shentsize, SH_OFFSET);
474 	shstrtab = (char *)e + offset;
475 	for (i = 0; (u_int64_t)i < shnum; i++) {
476 		name = elf_get_word(e, (char *)sh + i * shentsize, SH_NAME);
477 		offset = elf_get_off(e, (char *)sh + i * shentsize, SH_OFFSET);
478 		if (strcmp(shstrtab + name, ".strtab") == 0)
479 			strtab = (char *)e + offset;
480 		if (strcmp(shstrtab + name, ".dynstr") == 0)
481 			dynstr = (char *)e + offset;
482 	}
483 	if (flags & ED_EHDR)
484 		elf_print_ehdr(e);
485 	if (flags & ED_PHDR)
486 		elf_print_phdr(e, p);
487 	if (flags & ED_SHDR)
488 		elf_print_shdr(e, sh);
489 	for (i = 0; (u_int64_t)i < phnum; i++) {
490 		v = (char *)p + i * phentsize;
491 		type = elf_get_word(e, v, P_TYPE);
492 		switch (type) {
493 		case PT_INTERP:
494 			if (flags & ED_INTERP)
495 				elf_print_interp(e, v);
496 			break;
497 		case PT_NULL:
498 		case PT_LOAD:
499 		case PT_DYNAMIC:
500 		case PT_NOTE:
501 		case PT_SHLIB:
502 		case PT_PHDR:
503 			break;
504 		}
505 	}
506 	for (i = 0; (u_int64_t)i < shnum; i++) {
507 		v = (char *)sh + i * shentsize;
508 		type = elf_get_word(e, v, SH_TYPE);
509 		switch (type) {
510 		case SHT_SYMTAB:
511 			if (flags & ED_SYMTAB)
512 				elf_print_symtab(e, v, strtab);
513 			break;
514 		case SHT_DYNAMIC:
515 			if (flags & ED_DYN)
516 				elf_print_dynamic(e, v);
517 			break;
518 		case SHT_RELA:
519 			if (flags & ED_REL)
520 				elf_print_rela(e, v);
521 			break;
522 		case SHT_REL:
523 			if (flags & ED_REL)
524 				elf_print_rel(e, v);
525 			break;
526 		case SHT_NOTE:
527 			name = elf_get_word(e, v, SH_NAME);
528 			if (flags & ED_NOTE &&
529 			    strcmp(shstrtab + name, ".note.ABI-tag") == 0)
530 				elf_print_note(e, v);
531 			break;
532 		case SHT_DYNSYM:
533 			if (flags & ED_SYMTAB)
534 				elf_print_symtab(e, v, dynstr);
535 			break;
536 		case SHT_PROGBITS:
537 			name = elf_get_word(e, v, SH_NAME);
538 			if (flags & ED_GOT &&
539 			    strcmp(shstrtab + name, ".got") == 0)
540 				elf_print_got(e, v);
541 			break;
542 		case SHT_HASH:
543 			if (flags & ED_HASH)
544 				elf_print_hash(e, v);
545 			break;
546 		case SHT_NULL:
547 		case SHT_STRTAB:
548 		case SHT_NOBITS:
549 		case SHT_SHLIB:
550 			break;
551 		}
552 	}
553 
554 	return 0;
555 }
556 
557 static void
558 elf_print_ehdr(Elf32_Ehdr *e)
559 {
560 	u_int64_t class;
561 	u_int64_t data;
562 	u_int64_t osabi;
563 	u_int64_t type;
564 	u_int64_t machine;
565 	u_int64_t version;
566 	u_int64_t entry;
567 	u_int64_t phoff;
568 	u_int64_t shoff;
569 	u_int64_t flags;
570 	u_int64_t ehsize;
571 	u_int64_t phentsize;
572 	u_int64_t phnum;
573 	u_int64_t shentsize;
574 	u_int64_t shnum;
575 	u_int64_t shstrndx;
576 
577 	class = elf_get_byte(e, e, E_CLASS);
578 	data = elf_get_byte(e, e, E_DATA);
579 	osabi = elf_get_byte(e, e, E_OSABI);
580 	type = elf_get_quarter(e, e, E_TYPE);
581 	machine = elf_get_quarter(e, e, E_MACHINE);
582 	version = elf_get_word(e, e, E_VERSION);
583 	entry = elf_get_addr(e, e, E_ENTRY);
584 	phoff = elf_get_off(e, e, E_PHOFF);
585 	shoff = elf_get_off(e, e, E_SHOFF);
586 	flags = elf_get_word(e, e, E_FLAGS);
587 	ehsize = elf_get_quarter(e, e, E_EHSIZE);
588 	phentsize = elf_get_quarter(e, e, E_PHENTSIZE);
589 	phnum = elf_get_quarter(e, e, E_PHNUM);
590 	shentsize = elf_get_quarter(e, e, E_SHENTSIZE);
591 	shnum = elf_get_quarter(e, e, E_SHNUM);
592 	shstrndx = elf_get_quarter(e, e, E_SHSTRNDX);
593 	fprintf(out, "\nelf header:\n");
594 	fprintf(out, "\n");
595 	fprintf(out, "\te_ident: %s %s %s\n", ei_classes[class], ei_data[data],
596 	    ei_abis[osabi]);
597 	fprintf(out, "\te_type: %s\n", e_types[type]);
598 	fprintf(out, "\te_machine: %s\n", e_machines(machine));
599 	fprintf(out, "\te_version: %s\n", ei_versions[version]);
600 	fprintf(out, "\te_entry: %#jx\n", (intmax_t)entry);
601 	fprintf(out, "\te_phoff: %jd\n", (intmax_t)phoff);
602 	fprintf(out, "\te_shoff: %jd\n", (intmax_t)shoff);
603 	fprintf(out, "\te_flags: %jd\n", (intmax_t)flags);
604 	fprintf(out, "\te_ehsize: %jd\n", (intmax_t)ehsize);
605 	fprintf(out, "\te_phentsize: %jd\n", (intmax_t)phentsize);
606 	fprintf(out, "\te_phnum: %jd\n", (intmax_t)phnum);
607 	fprintf(out, "\te_shentsize: %jd\n", (intmax_t)shentsize);
608 	fprintf(out, "\te_shnum: %jd\n", (intmax_t)shnum);
609 	fprintf(out, "\te_shstrndx: %jd\n", (intmax_t)shstrndx);
610 }
611 
612 static void
613 elf_print_phdr(Elf32_Ehdr *e, void *p)
614 {
615 	u_int64_t phentsize;
616 	u_int64_t phnum;
617 	u_int64_t type;
618 	u_int64_t offset;
619 	u_int64_t vaddr;
620 	u_int64_t paddr;
621 	u_int64_t filesz;
622 	u_int64_t memsz;
623 	u_int64_t flags;
624 	u_int64_t align;
625 	void *v;
626 	int i;
627 
628 	phentsize = elf_get_quarter(e, e, E_PHENTSIZE);
629 	phnum = elf_get_quarter(e, e, E_PHNUM);
630 	fprintf(out, "\nprogram header:\n");
631 	for (i = 0; (u_int64_t)i < phnum; i++) {
632 		v = (char *)p + i * phentsize;
633 		type = elf_get_word(e, v, P_TYPE);
634 		offset = elf_get_off(e, v, P_OFFSET);
635 		vaddr = elf_get_addr(e, v, P_VADDR);
636 		paddr = elf_get_addr(e, v, P_PADDR);
637 		filesz = elf_get_size(e, v, P_FILESZ);
638 		memsz = elf_get_size(e, v, P_MEMSZ);
639 		flags = elf_get_word(e, v, P_FLAGS);
640 		align = elf_get_size(e, v, P_ALIGN);
641 		fprintf(out, "\n");
642 		fprintf(out, "entry: %d\n", i);
643 		fprintf(out, "\tp_type: %s\n", p_types[type & 0x7]);
644 		fprintf(out, "\tp_offset: %jd\n", (intmax_t)offset);
645 		fprintf(out, "\tp_vaddr: %#jx\n", (intmax_t)vaddr);
646 		fprintf(out, "\tp_paddr: %#jx\n", (intmax_t)paddr);
647 		fprintf(out, "\tp_filesz: %jd\n", (intmax_t)filesz);
648 		fprintf(out, "\tp_memsz: %jd\n", (intmax_t)memsz);
649 		fprintf(out, "\tp_flags: %s\n", p_flags[flags]);
650 		fprintf(out, "\tp_align: %jd\n", (intmax_t)align);
651 	}
652 }
653 
654 static void
655 elf_print_shdr(Elf32_Ehdr *e, void *sh)
656 {
657 	u_int64_t shentsize;
658 	u_int64_t shnum;
659 	u_int64_t name;
660 	u_int64_t type;
661 	u_int64_t flags;
662 	u_int64_t addr;
663 	u_int64_t offset;
664 	u_int64_t size;
665 	u_int64_t shlink;
666 	u_int64_t info;
667 	u_int64_t addralign;
668 	u_int64_t entsize;
669 	void *v;
670 	int i;
671 
672 	shentsize = elf_get_quarter(e, e, E_SHENTSIZE);
673 	shnum = elf_get_quarter(e, e, E_SHNUM);
674 	fprintf(out, "\nsection header:\n");
675 	for (i = 0; (u_int64_t)i < shnum; i++) {
676 		v = (char *)sh + i * shentsize;
677 		name = elf_get_word(e, v, SH_NAME);
678 		type = elf_get_word(e, v, SH_TYPE);
679 		flags = elf_get_word(e, v, SH_FLAGS);
680 		addr = elf_get_addr(e, v, SH_ADDR);
681 		offset = elf_get_off(e, v, SH_OFFSET);
682 		size = elf_get_size(e, v, SH_SIZE);
683 		shlink = elf_get_word(e, v, SH_LINK);
684 		info = elf_get_word(e, v, SH_INFO);
685 		addralign = elf_get_size(e, v, SH_ADDRALIGN);
686 		entsize = elf_get_size(e, v, SH_ENTSIZE);
687 		fprintf(out, "\n");
688 		fprintf(out, "entry: %d\n", i);
689 		fprintf(out, "\tsh_name: %s\n", shstrtab + name);
690 		fprintf(out, "\tsh_type: %s\n", sh_types(type));
691 		fprintf(out, "\tsh_flags: %s\n", sh_flags[flags & 0x7]);
692 		fprintf(out, "\tsh_addr: %#jx\n", addr);
693 		fprintf(out, "\tsh_offset: %jd\n", (intmax_t)offset);
694 		fprintf(out, "\tsh_size: %jd\n", (intmax_t)size);
695 		fprintf(out, "\tsh_link: %jd\n", (intmax_t)shlink);
696 		fprintf(out, "\tsh_info: %jd\n", (intmax_t)info);
697 		fprintf(out, "\tsh_addralign: %jd\n", (intmax_t)addralign);
698 		fprintf(out, "\tsh_entsize: %jd\n", (intmax_t)entsize);
699 	}
700 }
701 
702 static void
703 elf_print_symtab(Elf32_Ehdr *e, void *sh, char *str)
704 {
705 	u_int64_t offset;
706 	u_int64_t entsize;
707 	u_int64_t size;
708 	u_int64_t name;
709 	u_int64_t value;
710 	u_int64_t info;
711 	u_int64_t shndx;
712 	void *st;
713 	int len;
714 	int i;
715 
716 	offset = elf_get_off(e, sh, SH_OFFSET);
717 	entsize = elf_get_size(e, sh, SH_ENTSIZE);
718 	size = elf_get_size(e, sh, SH_SIZE);
719 	name = elf_get_word(e, sh, SH_NAME);
720 	len = size / entsize;
721 	fprintf(out, "\nsymbol table (%s):\n", shstrtab + name);
722 	for (i = 0; i < len; i++) {
723 		st = (char *)e + offset + i * entsize;
724 		name = elf_get_word(e, st, ST_NAME);
725 		value = elf_get_addr(e, st, ST_VALUE);
726 		size = elf_get_size(e, st, ST_SIZE);
727 		info = elf_get_byte(e, st, ST_INFO);
728 		shndx = elf_get_quarter(e, st, ST_SHNDX);
729 		fprintf(out, "\n");
730 		fprintf(out, "entry: %d\n", i);
731 		fprintf(out, "\tst_name: %s\n", str + name);
732 		fprintf(out, "\tst_value: %#jx\n", value);
733 		fprintf(out, "\tst_size: %jd\n", (intmax_t)size);
734 		fprintf(out, "\tst_info: %s %s\n",
735 		    st_types[ELF32_ST_TYPE(info)],
736 		    st_bindings[ELF32_ST_BIND(info)]);
737 		fprintf(out, "\tst_shndx: %jd\n", (intmax_t)shndx);
738 	}
739 }
740 
741 static void
742 elf_print_dynamic(Elf32_Ehdr *e, void *sh)
743 {
744 	u_int64_t offset;
745 	u_int64_t entsize;
746 	u_int64_t size;
747 	int64_t tag;
748 	u_int64_t ptr;
749 	u_int64_t val;
750 	void *d;
751 	int i;
752 
753 	offset = elf_get_off(e, sh, SH_OFFSET);
754 	entsize = elf_get_size(e, sh, SH_ENTSIZE);
755 	size = elf_get_size(e, sh, SH_SIZE);
756 	fprintf(out, "\ndynamic:\n");
757 	for (i = 0; (u_int64_t)i < size / entsize; i++) {
758 		d = (char *)e + offset + i * entsize;
759 		tag = elf_get_size(e, d, D_TAG);
760 		ptr = elf_get_size(e, d, D_PTR);
761 		val = elf_get_addr(e, d, D_VAL);
762 		fprintf(out, "\n");
763 		fprintf(out, "entry: %d\n", i);
764 		fprintf(out, "\td_tag: %s\n", d_tags(tag));
765 		switch (tag) {
766 		case DT_NEEDED:
767 		case DT_SONAME:
768 		case DT_RPATH:
769 			fprintf(out, "\td_val: %s\n", dynstr + val);
770 			break;
771 		case DT_PLTRELSZ:
772 		case DT_RELA:
773 		case DT_RELASZ:
774 		case DT_RELAENT:
775 		case DT_STRSZ:
776 		case DT_SYMENT:
777 		case DT_RELSZ:
778 		case DT_RELENT:
779 		case DT_PLTREL:
780 			fprintf(out, "\td_val: %jd\n", (intmax_t)val);
781 			break;
782 		case DT_PLTGOT:
783 		case DT_HASH:
784 		case DT_STRTAB:
785 		case DT_SYMTAB:
786 		case DT_INIT:
787 		case DT_FINI:
788 		case DT_REL:
789 		case DT_JMPREL:
790 			fprintf(out, "\td_ptr: %#jx\n", ptr);
791 			break;
792 		case DT_NULL:
793 		case DT_SYMBOLIC:
794 		case DT_DEBUG:
795 		case DT_TEXTREL:
796 			break;
797 		}
798 	}
799 }
800 
801 static void
802 elf_print_rela(Elf32_Ehdr *e, void *sh)
803 {
804 	u_int64_t offset;
805 	u_int64_t entsize;
806 	u_int64_t size;
807 	u_int64_t name;
808 	u_int64_t info;
809 	int64_t addend;
810 	void *ra;
811 	void *v;
812 	int i;
813 
814 	offset = elf_get_off(e, sh, SH_OFFSET);
815 	entsize = elf_get_size(e, sh, SH_ENTSIZE);
816 	size = elf_get_size(e, sh, SH_SIZE);
817 	name = elf_get_word(e, sh, SH_NAME);
818 	v = (char *)e + offset;
819 	fprintf(out, "\nrelocation with addend (%s):\n", shstrtab + name);
820 	for (i = 0; (u_int64_t)i < size / entsize; i++) {
821 		ra = (char *)v + i * entsize;
822 		offset = elf_get_addr(e, ra, RA_OFFSET);
823 		info = elf_get_word(e, ra, RA_INFO);
824 		addend = elf_get_off(e, ra, RA_ADDEND);
825 		fprintf(out, "\n");
826 		fprintf(out, "entry: %d\n", i);
827 		fprintf(out, "\tr_offset: %#jx\n", offset);
828 		fprintf(out, "\tr_info: %jd\n", (intmax_t)info);
829 		fprintf(out, "\tr_addend: %jd\n", (intmax_t)addend);
830 	}
831 }
832 
833 static void
834 elf_print_rel(Elf32_Ehdr *e, void *sh)
835 {
836 	u_int64_t offset;
837 	u_int64_t entsize;
838 	u_int64_t size;
839 	u_int64_t name;
840 	u_int64_t info;
841 	void *r;
842 	void *v;
843 	int i;
844 
845 	offset = elf_get_off(e, sh, SH_OFFSET);
846 	entsize = elf_get_size(e, sh, SH_ENTSIZE);
847 	size = elf_get_size(e, sh, SH_SIZE);
848 	name = elf_get_word(e, sh, SH_NAME);
849 	v = (char *)e + offset;
850 	fprintf(out, "\nrelocation (%s):\n", shstrtab + name);
851 	for (i = 0; (u_int64_t)i < size / entsize; i++) {
852 		r = (char *)v + i * entsize;
853 		offset = elf_get_addr(e, r, R_OFFSET);
854 		info = elf_get_word(e, r, R_INFO);
855 		fprintf(out, "\n");
856 		fprintf(out, "entry: %d\n", i);
857 		fprintf(out, "\tr_offset: %#jx\n", offset);
858 		fprintf(out, "\tr_info: %jd\n", (intmax_t)info);
859 	}
860 }
861 
862 static void
863 elf_print_interp(Elf32_Ehdr *e, void *p)
864 {
865 	u_int64_t offset;
866 	char *s;
867 
868 	offset = elf_get_off(e, p, P_OFFSET);
869 	s = (char *)e + offset;
870 	fprintf(out, "\ninterp:\n");
871 	fprintf(out, "\t%s\n", s);
872 }
873 
874 static void
875 elf_print_got(Elf32_Ehdr *e, void *sh)
876 {
877 	u_int64_t offset;
878 	u_int64_t addralign;
879 	u_int64_t size;
880 	u_int64_t addr;
881 	void *v;
882 	int i;
883 
884 	offset = elf_get_off(e, sh, SH_OFFSET);
885 	addralign = elf_get_size(e, sh, SH_ADDRALIGN);
886 	size = elf_get_size(e, sh, SH_SIZE);
887 	v = (char *)e + offset;
888 	fprintf(out, "\nglobal offset table:\n");
889 	for (i = 0; (u_int64_t)i < size / addralign; i++) {
890 		addr = elf_get_addr(e, (char *)v + i * addralign, 0);
891 		fprintf(out, "\n");
892 		fprintf(out, "entry: %d\n", i);
893 		fprintf(out, "\t%#jx\n", addr);
894 	}
895 }
896 
897 static void
898 elf_print_hash(Elf32_Ehdr *e __unused, void *sh __unused)
899 {
900 }
901 
902 static void
903 elf_print_note(Elf32_Ehdr *e, void *sh)
904 {
905 	u_int64_t offset;
906 	u_int64_t size;
907 	u_int64_t name;
908 	u_int32_t namesz;
909 	u_int32_t descsz;
910 	u_int32_t desc;
911 	char *n, *s;
912 
913 	offset = elf_get_off(e, sh, SH_OFFSET);
914 	size = elf_get_size(e, sh, SH_SIZE);
915 	name = elf_get_word(e, sh, SH_NAME);
916 	n = (char *)e + offset;
917 	fprintf(out, "\nnote (%s):\n", shstrtab + name);
918  	while (n < ((char *)e + offset + size)) {
919 		namesz = elf_get_word(e, n, N_NAMESZ);
920 		descsz = elf_get_word(e, n, N_DESCSZ);
921  		s = n + sizeof(Elf_Note);
922  		desc = elf_get_word(e, n + sizeof(Elf_Note) + namesz, 0);
923 		fprintf(out, "\t%s %d\n", s, desc);
924 		n += sizeof(Elf_Note) + namesz + descsz;
925 	}
926 }
927 
928 static u_int64_t
929 elf_get_byte(Elf32_Ehdr *e, void *base, elf_member_t member)
930 {
931 	u_int64_t val;
932 
933 	val = 0;
934 	switch (e->e_ident[EI_CLASS]) {
935 	case ELFCLASS32:
936 		val = ((uint8_t *)base)[elf32_offsets[member]];
937 		break;
938 	case ELFCLASS64:
939 		val = ((uint8_t *)base)[elf64_offsets[member]];
940 		break;
941 	case ELFCLASSNONE:
942 		errx(1, "invalid class");
943 	}
944 
945 	return val;
946 }
947 
948 static u_int64_t
949 elf_get_quarter(Elf32_Ehdr *e, void *base, elf_member_t member)
950 {
951 	u_int64_t val;
952 
953 	val = 0;
954 	switch (e->e_ident[EI_CLASS]) {
955 	case ELFCLASS32:
956 		base = (char *)base + elf32_offsets[member];
957 		switch (e->e_ident[EI_DATA]) {
958 		case ELFDATA2MSB:
959 			val = be16dec(base);
960 			break;
961 		case ELFDATA2LSB:
962 			val = le16dec(base);
963 			break;
964 		case ELFDATANONE:
965 			errx(1, "invalid data format");
966 		}
967 		break;
968 	case ELFCLASS64:
969 		base = (char *)base + elf64_offsets[member];
970 		switch (e->e_ident[EI_DATA]) {
971 		case ELFDATA2MSB:
972 			val = be16dec(base);
973 			break;
974 		case ELFDATA2LSB:
975 			val = le16dec(base);
976 			break;
977 		case ELFDATANONE:
978 			errx(1, "invalid data format");
979 		}
980 		break;
981 	case ELFCLASSNONE:
982 		errx(1, "invalid class");
983 	}
984 
985 	return val;
986 }
987 
988 #if 0
989 static u_int64_t
990 elf_get_half(Elf32_Ehdr *e, void *base, elf_member_t member)
991 {
992 	u_int64_t val;
993 
994 	val = 0;
995 	switch (e->e_ident[EI_CLASS]) {
996 	case ELFCLASS32:
997 		base = (char *)base + elf32_offsets[member];
998 		switch (e->e_ident[EI_DATA]) {
999 		case ELFDATA2MSB:
1000 			val = be16dec(base);
1001 			break;
1002 		case ELFDATA2LSB:
1003 			val = le16dec(base);
1004 			break;
1005 		case ELFDATANONE:
1006 			errx(1, "invalid data format");
1007 		}
1008 		break;
1009 	case ELFCLASS64:
1010 		base = (char *)base + elf64_offsets[member];
1011 		switch (e->e_ident[EI_DATA]) {
1012 		case ELFDATA2MSB:
1013 			val = be32dec(base);
1014 			break;
1015 		case ELFDATA2LSB:
1016 			val = le32dec(base);
1017 			break;
1018 		case ELFDATANONE:
1019 			errx(1, "invalid data format");
1020 		}
1021 		break;
1022 	case ELFCLASSNONE:
1023 		errx(1, "invalid class");
1024 	}
1025 
1026 	return val;
1027 }
1028 #endif
1029 
1030 static u_int64_t
1031 elf_get_word(Elf32_Ehdr *e, void *base, elf_member_t member)
1032 {
1033 	u_int64_t val;
1034 
1035 	val = 0;
1036 	switch (e->e_ident[EI_CLASS]) {
1037 	case ELFCLASS32:
1038 		base = (char *)base + elf32_offsets[member];
1039 		switch (e->e_ident[EI_DATA]) {
1040 		case ELFDATA2MSB:
1041 			val = be32dec(base);
1042 			break;
1043 		case ELFDATA2LSB:
1044 			val = le32dec(base);
1045 			break;
1046 		case ELFDATANONE:
1047 			errx(1, "invalid data format");
1048 		}
1049 		break;
1050 	case ELFCLASS64:
1051 		base = (char *)base + elf64_offsets[member];
1052 		switch (e->e_ident[EI_DATA]) {
1053 		case ELFDATA2MSB:
1054 			val = be32dec(base);
1055 			break;
1056 		case ELFDATA2LSB:
1057 			val = le32dec(base);
1058 			break;
1059 		case ELFDATANONE:
1060 			errx(1, "invalid data format");
1061 		}
1062 		break;
1063 	case ELFCLASSNONE:
1064 		errx(1, "invalid class");
1065 	}
1066 
1067 	return val;
1068 }
1069 
1070 static u_int64_t
1071 elf_get_quad(Elf32_Ehdr *e, void *base, elf_member_t member)
1072 {
1073 	u_int64_t val;
1074 
1075 	val = 0;
1076 	switch (e->e_ident[EI_CLASS]) {
1077 	case ELFCLASS32:
1078 		base = (char *)base + elf32_offsets[member];
1079 		switch (e->e_ident[EI_DATA]) {
1080 		case ELFDATA2MSB:
1081 			val = be32dec(base);
1082 			break;
1083 		case ELFDATA2LSB:
1084 			val = le32dec(base);
1085 			break;
1086 		case ELFDATANONE:
1087 			errx(1, "invalid data format");
1088 		}
1089 		break;
1090 	case ELFCLASS64:
1091 		base = (char *)base + elf64_offsets[member];
1092 		switch (e->e_ident[EI_DATA]) {
1093 		case ELFDATA2MSB:
1094 			val = be64dec(base);
1095 			break;
1096 		case ELFDATA2LSB:
1097 			val = le64dec(base);
1098 			break;
1099 		case ELFDATANONE:
1100 			errx(1, "invalid data format");
1101 		}
1102 		break;
1103 	case ELFCLASSNONE:
1104 		errx(1, "invalid class");
1105 	}
1106 
1107 	return val;
1108 }
1109 
1110 static void
1111 usage(void)
1112 {
1113 	fprintf(stderr, "usage: elfdump -a | -cdeGhinprs [-w file] file\n");
1114 	exit(1);
1115 }
1116