xref: /netbsd-src/external/gpl3/binutils/usr.sbin/dbsym/dbsym.c (revision a5c3ba3e65629b0354c94099f6dedf12b3d5a7fd)
1*a5c3ba3eSjoerg /* $NetBSD: dbsym.c,v 1.6 2017/07/11 21:19:42 joerg Exp $ */
231580a89Sskrll 
331580a89Sskrll /*
431580a89Sskrll  * Copyright (c) 2001 Simon Burge (for Wasabi Systems)
531580a89Sskrll  * Copyright (c) 1996 Christopher G. Demetriou
631580a89Sskrll  * All rights reserved.
731580a89Sskrll  *
831580a89Sskrll  * Redistribution and use in source and binary forms, with or without
931580a89Sskrll  * modification, are permitted provided that the following conditions
1031580a89Sskrll  * are met:
1131580a89Sskrll  * 1. Redistributions of source code must retain the above copyright
1231580a89Sskrll  *    notice, this list of conditions and the following disclaimer.
1331580a89Sskrll  * 2. Redistributions in binary form must reproduce the above copyright
1431580a89Sskrll  *    notice, this list of conditions and the following disclaimer in the
1531580a89Sskrll  *    documentation and/or other materials provided with the distribution.
1631580a89Sskrll  * 3. The name of the author may not be used to endorse or promote products
1731580a89Sskrll  *    derived from this software without specific prior written permission.
1831580a89Sskrll  *
1931580a89Sskrll  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
2031580a89Sskrll  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
2131580a89Sskrll  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
2231580a89Sskrll  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
2331580a89Sskrll  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
2431580a89Sskrll  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
2531580a89Sskrll  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
2631580a89Sskrll  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
2731580a89Sskrll  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
2831580a89Sskrll  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
2931580a89Sskrll  *
3031580a89Sskrll  * <<Id: LICENSE_GC,v 1.1 2001/10/01 23:24:05 cgd Exp>>
3131580a89Sskrll  */
3231580a89Sskrll 
3331580a89Sskrll #if HAVE_NBTOOL_CONFIG_H
3431580a89Sskrll #include "nbtool_config.h"
3531580a89Sskrll #endif
3631580a89Sskrll 
3731580a89Sskrll #include <sys/cdefs.h>
3831580a89Sskrll #if !defined(lint)
3931580a89Sskrll __COPYRIGHT("@(#) Copyright (c) 1996 Christopher G. Demetriou.\
4031580a89Sskrll   Copyright 2001 Simon Burge.\
4131580a89Sskrll   All rights reserved.");
42*a5c3ba3eSjoerg __RCSID("$NetBSD: dbsym.c,v 1.6 2017/07/11 21:19:42 joerg Exp $");
4331580a89Sskrll #endif /* not lint */
4431580a89Sskrll 
4531580a89Sskrll #include <sys/param.h>
4631580a89Sskrll #include <sys/mman.h>
4731580a89Sskrll #include <sys/stat.h>
4831580a89Sskrll 
4931580a89Sskrll #include <bfd.h>
5031580a89Sskrll #include <err.h>
5131580a89Sskrll #include <fcntl.h>
5231580a89Sskrll #include <stdio.h>
5331580a89Sskrll #include <stdlib.h>
5431580a89Sskrll #include <string.h>
5531580a89Sskrll #include <unistd.h>
5631580a89Sskrll 
5731580a89Sskrll /* BFD ELF headers */
5831580a89Sskrll #include <elf/common.h>
5931580a89Sskrll #include <elf/external.h>
6031580a89Sskrll 
6131580a89Sskrll struct symbols {
6231580a89Sskrll 	char *name;
6331580a89Sskrll 	size_t offset;
6431580a89Sskrll } db_symtab_symbols[] = {
6531580a89Sskrll #define	X_DB_SYMTAB	0
6631580a89Sskrll 	{ "_db_symtab", 0 },
6731580a89Sskrll #define	X_DB_SYMTABSIZE	1
6831580a89Sskrll 	{ "_db_symtabsize", 0 },
6931580a89Sskrll 	{ NULL, 0 }
7031580a89Sskrll };
7131580a89Sskrll 
7231580a89Sskrll int	main(int, char **);
7331580a89Sskrll void	usage(void) __attribute__((noreturn));
7431580a89Sskrll int	find_symtab(bfd *, struct symbols *);
7531580a89Sskrll int	load_symtab(bfd *, int fd, char **, u_int32_t *);
7631580a89Sskrll 
7731580a89Sskrll int	verbose;
78f4eb9f64Sbsh int	printsize;
795983af16Sjoerg int	printsize2;
8031580a89Sskrll 
8131580a89Sskrll int
main(int argc,char ** argv)8231580a89Sskrll main(int argc, char **argv)
8331580a89Sskrll {
8431580a89Sskrll 	int ch, kfd;
8531580a89Sskrll 	struct stat ksb;
8631580a89Sskrll 	size_t symtab_offset;
8731580a89Sskrll 	u_int32_t symtab_space, symtabsize;
8831580a89Sskrll 	const char *kfile;
8931580a89Sskrll 	char *bfdname, *mappedkfile, *symtab;
9031580a89Sskrll 	bfd *abfd;
9131580a89Sskrll 
9231580a89Sskrll 	setprogname(argv[0]);
9331580a89Sskrll 
9431580a89Sskrll 	bfdname = NULL;
955983af16Sjoerg 	while ((ch = getopt(argc, argv, "b:Ppv")) != -1)
9631580a89Sskrll 		switch (ch) {
9731580a89Sskrll 		case 'b':
9831580a89Sskrll 			bfdname = optarg;
9931580a89Sskrll 			break;
10031580a89Sskrll 		case 'v':
10131580a89Sskrll 			verbose = 1;
10231580a89Sskrll 			break;
103f4eb9f64Sbsh 		case 'p':
104f4eb9f64Sbsh 			printsize = 1;
105f4eb9f64Sbsh 			break;
1065983af16Sjoerg 		case 'P':
1075983af16Sjoerg 			printsize2 = 1;
1085983af16Sjoerg 			break;
10931580a89Sskrll 		case '?':
11031580a89Sskrll 		default:
11131580a89Sskrll 			usage();
11231580a89Sskrll 	}
11331580a89Sskrll 	argc -= optind;
11431580a89Sskrll 	argv += optind;
11531580a89Sskrll 
11631580a89Sskrll 	if (argc != 1)
11731580a89Sskrll 		usage();
11831580a89Sskrll 	kfile = argv[0];
11931580a89Sskrll 
12031580a89Sskrll 	if ((kfd = open(kfile, O_RDWR, 0))  == -1)
12131580a89Sskrll 		err(1, "open %s", kfile);
12231580a89Sskrll 
12331580a89Sskrll 	bfd_init();
12431580a89Sskrll 	if ((abfd = bfd_fdopenr(kfile, bfdname, kfd)) == NULL) {
12531580a89Sskrll 		bfd_perror("open");
12631580a89Sskrll 		exit(1);
12731580a89Sskrll 	}
12831580a89Sskrll 	if (!bfd_check_format(abfd, bfd_object)) {
12931580a89Sskrll 		bfd_perror("check format");
13031580a89Sskrll 		exit(1);
13131580a89Sskrll 	}
13231580a89Sskrll 
13331580a89Sskrll 	if (!(bfd_get_file_flags(abfd) & HAS_SYMS))
13431580a89Sskrll 		errx(1, "no symbol table in %s", kfile);
13531580a89Sskrll 
13631580a89Sskrll 	if (find_symtab(abfd, db_symtab_symbols) != 0)
13731580a89Sskrll 		errx(1, "could not find SYMTAB_SPACE in %s", kfile);
13831580a89Sskrll 	if (verbose)
13931580a89Sskrll 		fprintf(stderr, "got SYMTAB_SPACE symbols from %s\n", kfile);
14031580a89Sskrll 
14131580a89Sskrll 	if (load_symtab(abfd, kfd, &symtab, &symtabsize) != 0)
14231580a89Sskrll 		errx(1, "could not load symbol table from %s", kfile);
14331580a89Sskrll 	if (verbose)
14431580a89Sskrll 		fprintf(stderr, "loaded symbol table from %s\n", kfile);
14531580a89Sskrll 
14631580a89Sskrll 	if (fstat(kfd, &ksb) == -1)
14731580a89Sskrll 		err(1, "fstat %s", kfile);
14831580a89Sskrll 	if (ksb.st_size != (size_t)ksb.st_size)
14931580a89Sskrll 		errx(1, "%s too big to map", kfile);
15031580a89Sskrll 
15131580a89Sskrll 	if ((mappedkfile = mmap(NULL, ksb.st_size, PROT_READ | PROT_WRITE,
15231580a89Sskrll 	    MAP_FILE | MAP_SHARED, kfd, 0)) == (caddr_t)-1)
15331580a89Sskrll 		err(1, "mmap %s", kfile);
15431580a89Sskrll 	if (verbose)
15531580a89Sskrll 		fprintf(stderr, "mapped %s\n", kfile);
15631580a89Sskrll 
15731580a89Sskrll 	symtab_offset = db_symtab_symbols[X_DB_SYMTAB].offset;
15831580a89Sskrll 	symtab_space = bfd_get_32(abfd,
15931580a89Sskrll 	    &mappedkfile[db_symtab_symbols[X_DB_SYMTABSIZE].offset]);
16031580a89Sskrll 
161f4eb9f64Sbsh 	if (printsize) {
162f4eb9f64Sbsh 		printf("%d %d\n", symtabsize, symtab_space);
163f4eb9f64Sbsh 		goto done;
164f4eb9f64Sbsh 	}
1655983af16Sjoerg 	if (printsize2) {
1665983af16Sjoerg 		printf("%d\n", symtabsize);
1675983af16Sjoerg 		goto done;
1685983af16Sjoerg 	}
169f4eb9f64Sbsh 
17031580a89Sskrll 	if (symtabsize > symtab_space)
17131580a89Sskrll 		errx(1, "symbol table (%u bytes) too big for buffer (%u bytes)\n"
17231580a89Sskrll 		    "Increase options SYMTAB_SPACE in your kernel config",
17331580a89Sskrll 		    symtabsize, symtab_space);
17431580a89Sskrll 
17531580a89Sskrll 	if (verbose)
17631580a89Sskrll 		fprintf(stderr, "symtab size %d, space available %d\n",
17731580a89Sskrll 		    symtabsize, symtab_space);
17831580a89Sskrll 
17931580a89Sskrll 	memcpy(mappedkfile + symtab_offset, symtab, symtabsize);
18031580a89Sskrll 
18131580a89Sskrll 	if (verbose)
18231580a89Sskrll 		fprintf(stderr, "done copying image to file offset %#lx\n",
18331580a89Sskrll 		    (long)db_symtab_symbols[X_DB_SYMTAB].offset);
18431580a89Sskrll 
18531580a89Sskrll 	bfd_put_32(abfd, symtabsize,
18631580a89Sskrll 	    &mappedkfile[db_symtab_symbols[X_DB_SYMTABSIZE].offset]);
18731580a89Sskrll 
188f4eb9f64Sbsh done:
18931580a89Sskrll 	munmap(mappedkfile, ksb.st_size);
19031580a89Sskrll 	close(kfd);
19131580a89Sskrll 
19231580a89Sskrll 	if (verbose)
19331580a89Sskrll 		fprintf(stderr, "exiting\n");
19431580a89Sskrll 
19531580a89Sskrll 	bfd_close_all_done(abfd);
19631580a89Sskrll 	exit(0);
19731580a89Sskrll }
19831580a89Sskrll 
19931580a89Sskrll void
usage(void)20031580a89Sskrll usage(void)
20131580a89Sskrll {
20231580a89Sskrll 	const char **list;
20331580a89Sskrll 
20431580a89Sskrll 	fprintf(stderr,
2055983af16Sjoerg 	    "usage: %s [-Ppv] [-b bfdname] kernel\n",
20631580a89Sskrll 	    getprogname());
20731580a89Sskrll 	fprintf(stderr, "supported targets:");
20831580a89Sskrll 	for (list = bfd_target_list(); *list != NULL; list++)
20931580a89Sskrll 		fprintf(stderr, " %s", *list);
21031580a89Sskrll 	fprintf(stderr, "\n");
21131580a89Sskrll 	exit(1);
21231580a89Sskrll }
21331580a89Sskrll 
21431580a89Sskrll int
find_symtab(bfd * abfd,struct symbols * symbols)21531580a89Sskrll find_symtab(bfd *abfd, struct symbols *symbols)
21631580a89Sskrll {
21731580a89Sskrll 	long i;
21831580a89Sskrll 	long storage_needed;
21931580a89Sskrll 	long number_of_symbols;
22031580a89Sskrll 	asymbol **symbol_table = NULL;
22131580a89Sskrll 	struct symbols *s;
22231580a89Sskrll 
22331580a89Sskrll 	storage_needed = bfd_get_symtab_upper_bound(abfd);
22431580a89Sskrll 	if (storage_needed <= 0)
22531580a89Sskrll 		return (1);
22631580a89Sskrll 
22731580a89Sskrll 	if ((symbol_table = (asymbol **)malloc(storage_needed)) == NULL)
22831580a89Sskrll 		return (1);
22931580a89Sskrll 
23031580a89Sskrll 	number_of_symbols = bfd_canonicalize_symtab(abfd, symbol_table);
23131580a89Sskrll 	if (number_of_symbols <= 0) {
23231580a89Sskrll 		free(symbol_table);
23331580a89Sskrll 		return (1);
23431580a89Sskrll 	}
23531580a89Sskrll 
23631580a89Sskrll 	for (i = 0; i < number_of_symbols; i++) {
23731580a89Sskrll 		for (s = symbols; s->name != NULL; s++) {
23831580a89Sskrll 		  const char *sym = symbol_table[i]->name;
23931580a89Sskrll 
24031580a89Sskrll 			/*
24131580a89Sskrll 			 * match symbol prefix '_' or ''.
24231580a89Sskrll 			 * XXX: use bfd_get_symbol_leading_char() here?
24331580a89Sskrll 			 */
24431580a89Sskrll 			if (!strcmp(s->name, sym) ||
24531580a89Sskrll 			    !strcmp(s->name + 1, sym)) {
24631580a89Sskrll 				s->offset = (size_t)
24731580a89Sskrll 				    (symbol_table[i]->section->filepos
24831580a89Sskrll                                     + symbol_table[i]->value);
24931580a89Sskrll 
25031580a89Sskrll 			}
25131580a89Sskrll 		}
25231580a89Sskrll 	}
25331580a89Sskrll 
25431580a89Sskrll 	free(symbol_table);
25531580a89Sskrll 
25631580a89Sskrll 	for (s = symbols; s->name != NULL; s++) {
25731580a89Sskrll 		if (s->offset == 0)
25831580a89Sskrll 			return (1);
25931580a89Sskrll 	}
26031580a89Sskrll 
26131580a89Sskrll 	return (0);
26231580a89Sskrll }
26331580a89Sskrll 
26431580a89Sskrll /* --------------------------- ELF gunk follows --------------------------- */
26531580a89Sskrll 
26631580a89Sskrll /*
26731580a89Sskrll  * The format of the symbols loaded by the boot program is:
26831580a89Sskrll  *
26931580a89Sskrll  *      Elf exec header
27031580a89Sskrll  *      first section header
27131580a89Sskrll  *      . . .
27231580a89Sskrll  *      . . .
27331580a89Sskrll  *      last section header
27431580a89Sskrll  *      first symbol or string table section
27531580a89Sskrll  *      . . .
27631580a89Sskrll  *      . . .
27731580a89Sskrll  *      last symbol or string table section
27831580a89Sskrll  */
27931580a89Sskrll 
28031580a89Sskrll 
28131580a89Sskrll /* Note elftype is local to load_symtab()... */
28231580a89Sskrll #define	ELF_TYPE_64	0x01
28331580a89Sskrll #define	ISELF64		(elftype & ELF_TYPE_64)
28431580a89Sskrll 
28531580a89Sskrll /*
28631580a89Sskrll  * Field sizes for the Elf exec header:
28731580a89Sskrll  *
28831580a89Sskrll  *    ELF32    ELF64
28931580a89Sskrll  *
29031580a89Sskrll  *    unsigned char      e_ident[ELF_NIDENT];    # Id bytes
29131580a89Sskrll  *     16       16       e_type;                 # file type
29231580a89Sskrll  *     16       16       e_machine;              # machine type
29331580a89Sskrll  *     32       32       e_version;              # version number
29431580a89Sskrll  *     32       64       e_entry;                # entry point
29531580a89Sskrll  *     32       64       e_phoff;                # Program hdr offset
29631580a89Sskrll  *     32       64       e_shoff;                # Section hdr offset
29731580a89Sskrll  *     32       32       e_flags;                # Processor flags
29831580a89Sskrll  *     16       16       e_ehsize;               # sizeof ehdr
29931580a89Sskrll  *     16       16       e_phentsize;            # Program header entry size
30031580a89Sskrll  *     16       16       e_phnum;                # Number of program headers
30131580a89Sskrll  *     16       16       e_shentsize;            # Section header entry size
30231580a89Sskrll  *     16       16       e_shnum;                # Number of section headers
30331580a89Sskrll  *     16       16       e_shstrndx;             # String table index
30431580a89Sskrll  */
30531580a89Sskrll 
30631580a89Sskrll typedef union {
30731580a89Sskrll 	Elf32_External_Ehdr e32hdr;
30831580a89Sskrll 	Elf64_External_Ehdr e64hdr;
30931580a89Sskrll 	char e_ident[16];		/* XXX MAGIC NUMBER */
31031580a89Sskrll } elf_ehdr;
31131580a89Sskrll 
31231580a89Sskrll #define	e32_hdr	ehdr.e32hdr
31331580a89Sskrll #define	e64_hdr	ehdr.e64hdr
31431580a89Sskrll 
31531580a89Sskrll /*
31631580a89Sskrll  * Field sizes for Elf section headers
31731580a89Sskrll  *
31831580a89Sskrll  *    ELF32    ELF64
31931580a89Sskrll  *
32031580a89Sskrll  *     32       32       sh_name;        # section name (.shstrtab index)
32131580a89Sskrll  *     32       32       sh_type;        # section type
32231580a89Sskrll  *     32       64       sh_flags;       # section flags
32331580a89Sskrll  *     32       64       sh_addr;        # virtual address
32431580a89Sskrll  *     32       64       sh_offset;      # file offset
32531580a89Sskrll  *     32       64       sh_size;        # section size
32631580a89Sskrll  *     32       32       sh_link;        # link to another
32731580a89Sskrll  *     32       32       sh_info;        # misc info
32831580a89Sskrll  *     32       64       sh_addralign;   # memory alignment
32931580a89Sskrll  *     32       64       sh_entsize;     # table entry size
33031580a89Sskrll  */
33131580a89Sskrll 
33231580a89Sskrll /* Extract a 32 bit field from Elf32_Shdr */
33331580a89Sskrll #define	SH_E32_32(x, n)		bfd_get_32(abfd, s32hdr[(x)].n)
33431580a89Sskrll 
33531580a89Sskrll /* Extract a 32 bit field from Elf64_Shdr */
33631580a89Sskrll #define	SH_E64_32(x, n)		bfd_get_32(abfd, s64hdr[(x)].n)
33731580a89Sskrll 
33831580a89Sskrll /* Extract a 64 bit field from Elf64_Shdr */
33931580a89Sskrll #define	SH_E64_64(x, n)		bfd_get_64(abfd, s64hdr[(x)].n)
34031580a89Sskrll 
34131580a89Sskrll /* Extract a 32 bit field from either size Shdr */
34231580a89Sskrll #define	SH_E32E32(x, n)	(ISELF64 ? SH_E64_32(x, n) : SH_E32_32(x, n))
34331580a89Sskrll 
34431580a89Sskrll /* Extract a 32 bit field from Elf32_Shdr or 64 bit field from Elf64_Shdr */
34531580a89Sskrll #define	SH_E32E64(x, n)	(ISELF64 ? SH_E64_64(x, n) : SH_E32_32(x, n))
34631580a89Sskrll 
34731580a89Sskrll #define	SH_NAME(x)	SH_E32E32(x, sh_name)
34831580a89Sskrll #define	SH_TYPE(x)	SH_E32E32(x, sh_type)
34931580a89Sskrll #define	SH_FLAGS(x)	SH_E32E64(x, sh_flags)
35031580a89Sskrll #define	SH_ADDR(x)	SH_E32E64(x, sh_addr)
35131580a89Sskrll #define	SH_OFFSET(x)	SH_E32E64(x, sh_offset)
35231580a89Sskrll #define	SH_SIZE(x)	SH_E32E64(x, sh_size)
35331580a89Sskrll #define	SH_LINK(x)	SH_E32E32(x, sh_link)
35431580a89Sskrll #define	SH_INFO(x)	SH_E32E32(x, sh_info)
35531580a89Sskrll #define	SH_ADDRALIGN(x)	SH_E32E64(x, sh_addralign)
35631580a89Sskrll #define	SH_ENTSIZE(x)	SH_E32E64(x, sh_entsize)
35731580a89Sskrll 
35831580a89Sskrll int
load_symtab(bfd * abfd,int fd,char ** symtab,u_int32_t * symtabsize)35931580a89Sskrll load_symtab(bfd *abfd, int fd, char **symtab, u_int32_t *symtabsize)
36031580a89Sskrll {
36131580a89Sskrll 	elf_ehdr ehdr;
36231580a89Sskrll 	Elf32_External_Shdr *s32hdr = NULL;
36331580a89Sskrll 	Elf64_External_Shdr *s64hdr = NULL;
36431580a89Sskrll 	void *shdr;
3653c2bb6eaSchs 	char *shstrtab = NULL;
36631580a89Sskrll 	u_int32_t osymtabsize, sh_offset;
3673c2bb6eaSchs 	int elftype, e_shnum, i, sh_size, rv = 1, shstridx;
36831580a89Sskrll 	off_t e_shoff;
36931580a89Sskrll 
37031580a89Sskrll 	if (lseek(fd, 0, SEEK_SET) < 0)
37131580a89Sskrll 		return (1);
37231580a89Sskrll 	if (read(fd, &ehdr, sizeof(ehdr)) != sizeof(ehdr))
37331580a89Sskrll 		return (1);
37431580a89Sskrll 
37531580a89Sskrll 	/*
37631580a89Sskrll 	 * Check that we are targetting an Elf binary.
37731580a89Sskrll 	 */
37831580a89Sskrll 	if (ehdr.e_ident[EI_MAG0] != ELFMAG0 ||
37931580a89Sskrll 	    ehdr.e_ident[EI_MAG1] != ELFMAG1 ||
38031580a89Sskrll 	    ehdr.e_ident[EI_MAG2] != ELFMAG2 ||
38131580a89Sskrll 	    ehdr.e_ident[EI_MAG3] != ELFMAG3)
38231580a89Sskrll 		return (1);
38331580a89Sskrll 
38431580a89Sskrll 	/*
38531580a89Sskrll 	 * Determine Elf size and endianness.
38631580a89Sskrll 	 */
38731580a89Sskrll 	elftype = 0;
38831580a89Sskrll 	if (ehdr.e_ident[EI_CLASS] == ELFCLASS64)
38931580a89Sskrll 		elftype |= ELF_TYPE_64;
39031580a89Sskrll 
39131580a89Sskrll 	/*
39231580a89Sskrll 	 * Elf exec header.  Only need to allocate space for now,
39331580a89Sskrll 	 * the header is copied into place at the end.
39431580a89Sskrll 	 */
39531580a89Sskrll 	*symtabsize = ISELF64 ? sizeof(Elf64_External_Ehdr)
39631580a89Sskrll 			      : sizeof(Elf32_External_Ehdr);
39731580a89Sskrll 	*symtab = NULL;
39831580a89Sskrll 
39931580a89Sskrll 	/*
40031580a89Sskrll 	 * Section headers.  Allocate a temporary copy that will
40131580a89Sskrll 	 * be copied into place at the end.
40231580a89Sskrll 	 */
40331580a89Sskrll 	sh_offset = osymtabsize = *symtabsize;
40431580a89Sskrll 	e_shnum = (ISELF64
40531580a89Sskrll 	    ? bfd_get_16(abfd, e64_hdr.e_shnum)
40631580a89Sskrll 	    : bfd_get_16(abfd, e32_hdr.e_shnum));
40731580a89Sskrll 	sh_size = e_shnum * (ISELF64 ? sizeof(Elf64_External_Shdr)
40831580a89Sskrll 				     : sizeof(Elf32_External_Shdr));
40931580a89Sskrll 	if ((shdr = malloc(sh_size)) == NULL)
41031580a89Sskrll 		return (1);
41131580a89Sskrll 	if (ISELF64)
41231580a89Sskrll 		s64hdr = shdr;
41331580a89Sskrll 	else
41431580a89Sskrll 		s32hdr = shdr;
41531580a89Sskrll 
41631580a89Sskrll 	*symtabsize += roundup(sh_size, ISELF64 ? 8 : 4);
41731580a89Sskrll 
41831580a89Sskrll 	e_shoff = (ISELF64
41931580a89Sskrll 	   ? bfd_get_64(abfd, e64_hdr.e_shoff)
42031580a89Sskrll 	   : bfd_get_32(abfd, e32_hdr.e_shoff));
42131580a89Sskrll 	if (lseek(fd, e_shoff, SEEK_SET) < 0)
42231580a89Sskrll 		goto out;
42331580a89Sskrll 	if (read(fd, shdr, sh_size) != sh_size)
42431580a89Sskrll 		goto out;
42531580a89Sskrll 
4263c2bb6eaSchs 	shstridx = (ISELF64
4273c2bb6eaSchs 	   ? bfd_get_16(abfd, e64_hdr.e_shstrndx)
4283c2bb6eaSchs 	   : bfd_get_16(abfd, e32_hdr.e_shstrndx));
429*a5c3ba3eSjoerg 	shstrtab = malloc(SH_SIZE(shstridx));
4303c2bb6eaSchs 	if (shstrtab == NULL)
4313c2bb6eaSchs 		goto out;
4323c2bb6eaSchs 	if (pread(fd, shstrtab, SH_SIZE(shstridx), SH_OFFSET(shstridx)) !=
4333c2bb6eaSchs 	    SH_SIZE(shstridx))
4343c2bb6eaSchs 		goto out;
4353c2bb6eaSchs 
43631580a89Sskrll 	for (i = 0; i < e_shnum; i++) {
4373c2bb6eaSchs 		if (SH_TYPE(i) == SHT_SYMTAB || SH_TYPE(i) == SHT_STRTAB ||
4383c2bb6eaSchs 		    !strcmp(shstrtab + SH_NAME(i), ".SUNW_ctf")) {
43931580a89Sskrll 			osymtabsize = *symtabsize;
44031580a89Sskrll 			*symtabsize += roundup(SH_SIZE(i), ISELF64 ? 8 : 4);
44131580a89Sskrll 			if ((*symtab = realloc(*symtab, *symtabsize)) == NULL)
44231580a89Sskrll 				goto out;
44331580a89Sskrll 
44431580a89Sskrll 			if (lseek(fd, SH_OFFSET(i), SEEK_SET) < 0)
44531580a89Sskrll 				goto out;
44631580a89Sskrll 			if (read(fd, *symtab + osymtabsize, SH_SIZE(i)) !=
44731580a89Sskrll 			    SH_SIZE(i))
44831580a89Sskrll 				goto out;
44931580a89Sskrll 			if (ISELF64) {
45031580a89Sskrll 				bfd_put_64(abfd, osymtabsize,
45131580a89Sskrll 				    s64hdr[i].sh_offset);
45231580a89Sskrll 			} else {
45331580a89Sskrll 				bfd_put_32(abfd, osymtabsize,
45431580a89Sskrll 				    s32hdr[i].sh_offset);
45531580a89Sskrll 			}
45631580a89Sskrll 		}
45731580a89Sskrll 	}
45831580a89Sskrll 
45931580a89Sskrll 	if (*symtab == NULL)
46031580a89Sskrll 		goto out;
46131580a89Sskrll 
46231580a89Sskrll 	/*
46331580a89Sskrll 	 * Copy updated section headers.
46431580a89Sskrll 	 */
46531580a89Sskrll 	memcpy(*symtab + sh_offset, shdr, sh_size);
46631580a89Sskrll 
46731580a89Sskrll 	/*
46831580a89Sskrll 	 * Update and copy the exec header.
46931580a89Sskrll 	 */
47031580a89Sskrll 	if (ISELF64) {
47131580a89Sskrll 		bfd_put_64(abfd, 0, e64_hdr.e_phoff);
47231580a89Sskrll 		bfd_put_64(abfd, sizeof(Elf64_External_Ehdr), e64_hdr.e_shoff);
47331580a89Sskrll 		bfd_put_16(abfd, 0, e64_hdr.e_phentsize);
47431580a89Sskrll 		bfd_put_16(abfd, 0, e64_hdr.e_phnum);
47531580a89Sskrll 	} else {
47631580a89Sskrll 		bfd_put_32(abfd, 0, e32_hdr.e_phoff);
47731580a89Sskrll 		bfd_put_32(abfd, sizeof(Elf32_External_Ehdr), e32_hdr.e_shoff);
47831580a89Sskrll 		bfd_put_16(abfd, 0, e32_hdr.e_phentsize);
47931580a89Sskrll 		bfd_put_16(abfd, 0, e32_hdr.e_phnum);
48031580a89Sskrll 	}
48131580a89Sskrll 	memcpy(*symtab, &ehdr, sizeof(ehdr));
4823c2bb6eaSchs 	rv = 0;
48331580a89Sskrll 
48431580a89Sskrll out:
4853c2bb6eaSchs 	if (shstrtab != NULL)
4863c2bb6eaSchs 		free(shstrtab);
48731580a89Sskrll 	free(shdr);
4883c2bb6eaSchs 	return (rv);
48931580a89Sskrll }
490