#include <sys/cdefs.h>
__RCSID("$NetBSD: bin_nlist.c,v 1.1 2016/09/21 16:25:41 christos Exp $");
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <nlist.h>
#include <err.h>
#include "bin.h"
#include "extern.h"
struct bininfo {
const char *fname;
int kfd;
};
#define X_MD_ROOT_IMAGE 0
#define X_MD_ROOT_SIZE 1
struct {
const char *name;
int (*check)(const char *, size_t);
int (*findoff)(const char *, size_t, u_long, size_t *, u_long);
} exec_formats[] = {
#ifdef NLIST_AOUT
{ "a.out", check_aout, findoff_aout, },
#endif
#ifdef NLIST_ECOFF
{ "ECOFF", check_ecoff, findoff_ecoff, },
#endif
#ifdef NLIST_ELF32
{ "ELF32", check_elf32, findoff_elf32, },
#endif
#ifdef NLIST_ELF64
{ "ELF64", check_elf64, findoff_elf64, },
#endif
#ifdef NLIST_COFF
{ "COFF", check_coff, findoff_coff, },
#endif
};
void *
bin_open(int kfd, const char *kfile, const char *bfdname)
{
struct bininfo *bin;
if ((bin = malloc(sizeof(*bin))) == NULL) {
warn("%s", kfile);
return NULL;
}
bin->kfd = kfd;
bin->fname = kfile;
return bin;
}
int
bin_find_md_root(void *binp, const char *mappedfile, off_t mappedsize,
unsigned long text_start, const char *root_name, const char *size_name,
size_t *md_root_image_offset, size_t *md_root_size_offset,
uint32_t *md_root_size, int verbose)
{
struct bininfo *bin = binp;
struct nlist nl[3];
size_t i, n = sizeof exec_formats / sizeof exec_formats[0];
for (i = 0; i < n; i++) {
if ((*exec_formats[i].check)(mappedfile, mappedsize) == 0)
break;
}
if (i == n) {
warnx("%s: unknown executable format", bin->fname);
return 1;
}
if (verbose) {
fprintf(stderr, "%s is an %s binary\n", bin->fname,
exec_formats[i].name);
#ifdef NLIST_AOUT
if (text_start != (unsigned long)~0)
fprintf(stderr, "kernel text loads at 0x%lx\n",
text_start);
#endif
}
(void)memset(nl, 0, sizeof(nl));
N_NAME(&nl[X_MD_ROOT_IMAGE]) = root_name;
N_NAME(&nl[X_MD_ROOT_SIZE]) = size_name;
if (__fdnlist(bin->kfd, nl) != 0)
return 1;
if ((*exec_formats[i].findoff)(mappedfile, mappedsize,
nl[1].n_value, md_root_size_offset, text_start) != 0) {
warnx("couldn't find offset for %s in %s",
nl[X_MD_ROOT_SIZE].n_name, bin->fname);
return 1;
}
if (verbose)
fprintf(stderr, "%s is at offset %#zx in %s\n",
nl[X_MD_ROOT_SIZE].n_name, *md_root_size_offset,
bin->fname);
memcpy(md_root_size, &mappedfile[*md_root_size_offset],
sizeof(*md_root_size));
if (verbose)
fprintf(stderr, "%s has value %#x\n",
nl[X_MD_ROOT_SIZE].n_name, *md_root_size);
if ((*exec_formats[i].findoff)(mappedfile, mappedsize,
nl[0].n_value, md_root_image_offset, text_start) != 0) {
warnx("couldn't find offset for %s in %s",
nl[X_MD_ROOT_IMAGE].n_name, bin->fname);
return 1;
}
if (verbose)
fprintf(stderr, "%s is at offset %#zx in %s\n",
nl[X_MD_ROOT_IMAGE].n_name,
*md_root_image_offset, bin->fname);
return 0;
}
void
bin_put_32(void *bin, off_t size, char *buf)
{
uint32_t s = (uint32_t)size;
memcpy(buf, &s, sizeof(s));
}
void
bin_close(void *bin)
{
}
const char **
bin_supported_targets(void)
{
static const char *fmts[] = {
#ifdef NLIST_AOUT
"aout",
#endif
#ifdef NLIST_ECOFF
"ecoff",
#endif
#ifdef NLIST_ELF32
"elf32",
#endif
#ifdef NLIST_ELF64
"elf64",
#endif
#ifdef NLIST_COFF
"coff",
#endif
NULL,
};
return fmts;
}