#ifndef _GNU_SOURCE
#define _GNU_SOURCE
#endif
#include "dso_local.h"
#include "internal/e_os.h"
#ifdef DSO_DLFCN
#ifdef HAVE_DLFCN_H
#ifdef __osf__
#define __EXTENSIONS__
#endif
#include <dlfcn.h>
#define HAVE_DLINFO 1
#if defined(__SCO_VERSION__) || defined(_SCO_ELF) || (defined(__osf__) && !defined(RTLD_NEXT)) || (defined(__OpenBSD__) && !defined(RTLD_SELF)) || defined(__ANDROID__) || defined(__TANDEM)
#undef HAVE_DLINFO
#endif
#endif
#define DSO_MAX_TRANSLATED_SIZE 256
static int dlfcn_load(DSO *dso);
static int dlfcn_unload(DSO *dso);
static DSO_FUNC_TYPE dlfcn_bind_func(DSO *dso, const char *symname);
static char *dlfcn_name_converter(DSO *dso, const char *filename);
static char *dlfcn_merger(DSO *dso, const char *filespec1,
const char *filespec2);
static int dlfcn_pathbyaddr(void *addr, char *path, int sz);
static void *dlfcn_globallookup(const char *name);
static DSO_METHOD dso_meth_dlfcn = {
"OpenSSL 'dlfcn' shared library method",
dlfcn_load,
dlfcn_unload,
dlfcn_bind_func,
NULL,
dlfcn_name_converter,
dlfcn_merger,
NULL,
NULL,
dlfcn_pathbyaddr,
dlfcn_globallookup
};
DSO_METHOD *DSO_METHOD_openssl(void)
{
return &dso_meth_dlfcn;
}
#if defined(__OpenBSD__) || defined(__NetBSD__)
#ifdef DL_LAZY
#define DLOPEN_FLAG DL_LAZY
#else
#ifdef RTLD_NOW
#define DLOPEN_FLAG RTLD_NOW
#else
#define DLOPEN_FLAG 0
#endif
#endif
#else
#define DLOPEN_FLAG RTLD_NOW
#endif
static int dlfcn_load(DSO *dso)
{
void *ptr = NULL;
char *filename = DSO_convert_filename(dso, NULL);
int flags = DLOPEN_FLAG;
int saveerrno = get_last_sys_error();
if (filename == NULL) {
ERR_raise(ERR_LIB_DSO, DSO_R_NO_FILENAME);
goto err;
}
#ifdef RTLD_GLOBAL
if (dso->flags & DSO_FLAG_GLOBAL_SYMBOLS)
flags |= RTLD_GLOBAL;
#endif
#ifdef _AIX
if (filename[strlen(filename) - 1] == ')')
flags |= RTLD_MEMBER;
#endif
ptr = dlopen(filename, flags);
if (ptr == NULL) {
ERR_raise_data(ERR_LIB_DSO, DSO_R_LOAD_FAILED,
"filename(%s): %s", filename, dlerror());
goto err;
}
set_sys_error(saveerrno);
if (!sk_void_push(dso->meth_data, (char *)ptr)) {
ERR_raise(ERR_LIB_DSO, DSO_R_STACK_ERROR);
goto err;
}
dso->loaded_filename = filename;
return 1;
err:
OPENSSL_free(filename);
if (ptr != NULL)
dlclose(ptr);
return 0;
}
static int dlfcn_unload(DSO *dso)
{
void *ptr;
if (dso == NULL) {
ERR_raise(ERR_LIB_DSO, ERR_R_PASSED_NULL_PARAMETER);
return 0;
}
if (sk_void_num(dso->meth_data) < 1)
return 1;
ptr = sk_void_pop(dso->meth_data);
if (ptr == NULL) {
ERR_raise(ERR_LIB_DSO, DSO_R_NULL_HANDLE);
sk_void_push(dso->meth_data, ptr);
return 0;
}
dlclose(ptr);
return 1;
}
static DSO_FUNC_TYPE dlfcn_bind_func(DSO *dso, const char *symname)
{
void *ptr;
union {
DSO_FUNC_TYPE sym;
void *dlret;
} u;
if ((dso == NULL) || (symname == NULL)) {
ERR_raise(ERR_LIB_DSO, ERR_R_PASSED_NULL_PARAMETER);
return NULL;
}
if (sk_void_num(dso->meth_data) < 1) {
ERR_raise(ERR_LIB_DSO, DSO_R_STACK_ERROR);
return NULL;
}
ptr = sk_void_value(dso->meth_data, sk_void_num(dso->meth_data) - 1);
if (ptr == NULL) {
ERR_raise(ERR_LIB_DSO, DSO_R_NULL_HANDLE);
return NULL;
}
u.dlret = dlsym(ptr, symname);
if (u.dlret == NULL) {
ERR_raise_data(ERR_LIB_DSO, DSO_R_SYM_FAILURE,
"symname(%s): %s", symname, dlerror());
return NULL;
}
return u.sym;
}
static char *dlfcn_merger(DSO *dso, const char *filespec1,
const char *filespec2)
{
char *merged;
if (!filespec1 && !filespec2) {
ERR_raise(ERR_LIB_DSO, ERR_R_PASSED_NULL_PARAMETER);
return NULL;
}
if (!filespec2 || (filespec1 != NULL && filespec1[0] == '/')) {
merged = OPENSSL_strdup(filespec1);
if (merged == NULL)
return NULL;
}
else if (!filespec1) {
merged = OPENSSL_strdup(filespec2);
if (merged == NULL)
return NULL;
} else {
int spec2len, len;
spec2len = strlen(filespec2);
len = spec2len + strlen(filespec1);
if (spec2len && filespec2[spec2len - 1] == '/') {
spec2len--;
len--;
}
merged = OPENSSL_malloc(len + 2);
if (merged == NULL)
return NULL;
strcpy(merged, filespec2);
merged[spec2len] = '/';
strcpy(&merged[spec2len + 1], filespec1);
}
return merged;
}
static char *dlfcn_name_converter(DSO *dso, const char *filename)
{
char *translated;
int len, rsize, transform;
len = strlen(filename);
rsize = len + 1;
transform = (strchr(filename, '/') == NULL);
if (transform) {
rsize += strlen(DSO_EXTENSION);
if ((DSO_flags(dso) & DSO_FLAG_NAME_TRANSLATION_EXT_ONLY) == 0)
rsize += 3;
}
translated = OPENSSL_malloc(rsize);
if (translated == NULL) {
ERR_raise(ERR_LIB_DSO, DSO_R_NAME_TRANSLATION_FAILED);
return NULL;
}
if (transform) {
if ((DSO_flags(dso) & DSO_FLAG_NAME_TRANSLATION_EXT_ONLY) == 0)
BIO_snprintf(translated, rsize, "lib%s" DSO_EXTENSION, filename);
else
BIO_snprintf(translated, rsize, "%s" DSO_EXTENSION, filename);
} else {
BIO_snprintf(translated, rsize, "%s", filename);
}
return translated;
}
#ifdef __sgi
#include <rld_interface.h>
#ifndef _RLD_INTERFACE_DLFCN_H_DLADDR
#define _RLD_INTERFACE_DLFCN_H_DLADDR
typedef struct Dl_info {
const char *dli_fname;
void *dli_fbase;
const char *dli_sname;
void *dli_saddr;
int dli_version;
int dli_reserved1;
long dli_reserved[4];
} Dl_info;
#else
typedef struct Dl_info Dl_info;
#endif
#define _RLD_DLADDR 14
static int dladdr(void *address, Dl_info *dl)
{
void *v;
v = _rld_new_interface(_RLD_DLADDR, address, dl);
return (int)v;
}
#endif
#ifdef _AIX
#include <sys/ldr.h>
#include <errno.h>
#define DLFCN_LDINFO_SIZE 86976
typedef struct Dl_info {
const char *dli_fname;
} Dl_info;
static int dladdr(void *ptr, Dl_info *dl)
{
uintptr_t addr = (uintptr_t)ptr;
unsigned int found = 0;
struct ld_info *ldinfos, *next_ldi, *this_ldi;
if ((ldinfos = OPENSSL_malloc(DLFCN_LDINFO_SIZE)) == NULL) {
errno = ENOMEM;
dl->dli_fname = NULL;
return 0;
}
if ((loadquery(L_GETINFO, (void *)ldinfos, DLFCN_LDINFO_SIZE)) < 0) {
OPENSSL_free((void *)ldinfos);
dl->dli_fname = NULL;
return 0;
}
next_ldi = ldinfos;
do {
this_ldi = next_ldi;
if (((addr >= (uintptr_t)this_ldi->ldinfo_textorg)
&& (addr < ((uintptr_t)this_ldi->ldinfo_textorg + this_ldi->ldinfo_textsize)))
|| ((addr >= (uintptr_t)this_ldi->ldinfo_dataorg)
&& (addr < ((uintptr_t)this_ldi->ldinfo_dataorg + this_ldi->ldinfo_datasize)))) {
char *buffer, *member;
size_t buffer_sz, member_len;
buffer_sz = strlen(this_ldi->ldinfo_filename) + 1;
member = this_ldi->ldinfo_filename + buffer_sz;
if ((member_len = strlen(member)) > 0)
buffer_sz += 1 + member_len + 1;
found = 1;
if ((buffer = OPENSSL_malloc(buffer_sz)) != NULL) {
OPENSSL_strlcpy(buffer, this_ldi->ldinfo_filename, buffer_sz);
if (member_len > 0) {
OPENSSL_strlcat(buffer, "(", buffer_sz);
OPENSSL_strlcat(buffer, member, buffer_sz);
OPENSSL_strlcat(buffer, ")", buffer_sz);
}
dl->dli_fname = buffer;
} else {
errno = ENOMEM;
}
} else {
next_ldi = (struct ld_info *)((uintptr_t)this_ldi + this_ldi->ldinfo_next);
}
} while (this_ldi->ldinfo_next && !found);
OPENSSL_free((void *)ldinfos);
return (found && dl->dli_fname != NULL);
}
#endif
static int dlfcn_pathbyaddr(void *addr, char *path, int sz)
{
#ifdef HAVE_DLINFO
Dl_info dli;
int len;
if (addr == NULL) {
union {
int (*f)(void *, char *, int);
void *p;
} t = {
dlfcn_pathbyaddr
};
addr = t.p;
}
if (dladdr(addr, &dli)) {
len = (int)strlen(dli.dli_fname);
if (sz <= 0) {
#ifdef _AIX
OPENSSL_free((void *)dli.dli_fname);
#endif
return len + 1;
}
if (len >= sz)
len = sz - 1;
memcpy(path, dli.dli_fname, len);
path[len++] = 0;
#ifdef _AIX
OPENSSL_free((void *)dli.dli_fname);
#endif
return len;
}
ERR_add_error_data(2, "dlfcn_pathbyaddr(): ", dlerror());
#endif
return -1;
}
static void *dlfcn_globallookup(const char *name)
{
void *ret = NULL, *handle = dlopen(NULL, RTLD_LAZY);
if (handle) {
ret = dlsym(handle, name);
dlclose(handle);
}
return ret;
}
#endif