Fix for Bug 3671 - QEMU GDB stub listens on IPv6-only port on Windows 7
The connection string used by the GDB stub does not specify which
version of the Internet Protocol should be used by the port on
which it listens. On host platforms with IPv6 support, such as
Windows 7, this means that the stub listens on an IPv6-only port.
Since the GDB client uses IPv4, this means that the client cannot
connect to QEMU.
/*
* verdef.h - copy versioning information.
* Copyright (C) 2001 - 2006 Michael Riepe
*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Library General Public
* License as published by the Free Software Foundation; either
* version 2 of the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Library General Public License for more details.
*
* You should have received a copy of the GNU Library General Public
* License along with this library; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
*/
#ifndef lint
static const char verdef_h_rcsid[] = "@(#) $Id: verdef.h,v 1.12 2006/07/27 22:56:11 michael Exp $";
#endif /* lint */
#if VER_DEF_CURRENT != 1
#error libelf currently does not support VER_DEF_CURRENT != 1
#endif /* VER_DEF_CURRENT != 1 */
#if TOFILE
static void
__store_verdaux(verdaux_ftype *dst, const verdaux_mtype *src, unsigned enc) {
if (enc == ELFDATA2LSB) {
__store_u32L(dst->vda_name, src->vda_name);
__store_u32L(dst->vda_next, src->vda_next);
}
else {
__store_u32M(dst->vda_name, src->vda_name);
__store_u32M(dst->vda_next, src->vda_next);
}
}
static void
__store_verdef(verdef_ftype *dst, const verdef_mtype *src, unsigned enc) {
if (enc == ELFDATA2LSB) {
__store_u16L(dst->vd_version, src->vd_version);
__store_u16L(dst->vd_flags, src->vd_flags);
__store_u16L(dst->vd_ndx, src->vd_ndx);
__store_u16L(dst->vd_cnt, src->vd_cnt);
__store_u32L(dst->vd_hash, src->vd_hash);
__store_u32L(dst->vd_aux, src->vd_aux);
__store_u32L(dst->vd_next, src->vd_next);
}
else {
__store_u16M(dst->vd_version, src->vd_version);
__store_u16M(dst->vd_flags, src->vd_flags);
__store_u16M(dst->vd_ndx, src->vd_ndx);
__store_u16M(dst->vd_cnt, src->vd_cnt);
__store_u32M(dst->vd_hash, src->vd_hash);
__store_u32M(dst->vd_aux, src->vd_aux);
__store_u32M(dst->vd_next, src->vd_next);
}
}
typedef verdaux_mtype verdaux_stype;
typedef verdaux_ftype verdaux_dtype;
typedef verdef_mtype verdef_stype;
typedef verdef_ftype verdef_dtype;
typedef align_mtype verdef_atype;
#define copy_verdaux_srctotmp(d, s, e) (*(d) = *(s))
#define copy_verdaux_tmptodst(d, s, e) __store_verdaux((d), (s), (e))
#define copy_verdef_srctotmp(d, s, e) (*(d) = *(s))
#define copy_verdef_tmptodst(d, s, e) __store_verdef((d), (s), (e))
#define translator_suffix _tof
#else /* TOFILE */
static void
__load_verdaux(verdaux_mtype *dst, const verdaux_ftype *src, unsigned enc) {
if (enc == ELFDATA2LSB) {
dst->vda_name = __load_u32L(src->vda_name);
dst->vda_next = __load_u32L(src->vda_next);
}
else {
dst->vda_name = __load_u32M(src->vda_name);
dst->vda_next = __load_u32M(src->vda_next);
}
}
static void
__load_verdef(verdef_mtype *dst, const verdef_ftype *src, unsigned enc) {
if (enc == ELFDATA2LSB) {
dst->vd_version = __load_u16L(src->vd_version);
dst->vd_flags = __load_u16L(src->vd_flags);
dst->vd_ndx = __load_u16L(src->vd_ndx);
dst->vd_cnt = __load_u16L(src->vd_cnt);
dst->vd_hash = __load_u32L(src->vd_hash);
dst->vd_aux = __load_u32L(src->vd_aux);
dst->vd_next = __load_u32L(src->vd_next);
}
else {
dst->vd_version = __load_u16M(src->vd_version);
dst->vd_flags = __load_u16M(src->vd_flags);
dst->vd_ndx = __load_u16M(src->vd_ndx);
dst->vd_cnt = __load_u16M(src->vd_cnt);
dst->vd_hash = __load_u32M(src->vd_hash);
dst->vd_aux = __load_u32M(src->vd_aux);
dst->vd_next = __load_u32M(src->vd_next);
}
}
typedef verdaux_ftype verdaux_stype;
typedef verdaux_mtype verdaux_dtype;
typedef verdef_ftype verdef_stype;
typedef verdef_mtype verdef_dtype;
typedef align_ftype verdef_atype;
#define copy_verdaux_srctotmp(d, s, e) __load_verdaux((d), (s), (e))
#define copy_verdaux_tmptodst(d, s, e) (*(d) = *(s))
#define copy_verdef_srctotmp(d, s, e) __load_verdef((d), (s), (e))
#define copy_verdef_tmptodst(d, s, e) (*(d) = *(s))
#define translator_suffix _tom
#endif /* TOFILE */
#define cat3(a,b,c) a##b##c
#define xlt3(p,e,s) cat3(p,e,s)
#define xltprefix(x) xlt3(x,_,class_suffix)
#define translator(x,e) xlt3(xltprefix(_elf_##x),e,translator_suffix)
static size_t
xlt_verdef(unsigned char *dst, const unsigned char *src, size_t n, unsigned enc) {
size_t off;
if (sizeof(verdef_stype) != sizeof(verdef_dtype)
|| sizeof(verdaux_stype) != sizeof(verdaux_dtype)) {
/* never happens for ELF v1 and Verneed v1 */
seterr(ERROR_UNIMPLEMENTED);
return (size_t)-1;
}
/* size translation shortcut */
if (dst == NULL) {
return n;
}
if (src == NULL) {
seterr(ERROR_NULLBUF);
return (size_t)-1;
}
off = 0;
while (off + sizeof(verdef_stype) <= n) {
const verdef_stype *svd;
verdef_dtype *dvd;
verdef_mtype vd;
size_t acount;
size_t aoff;
/*
* check for proper alignment
*/
if (off % sizeof(verdef_atype)) {
seterr(ERROR_VERDEF_FORMAT);
return (size_t)-1;
}
/*
* copy and check src
*/
svd = (verdef_stype*)(src + off);
dvd = (verdef_dtype*)(dst + off);
copy_verdef_srctotmp(&vd, svd, enc);
if (vd.vd_version < 1
|| vd.vd_version > VER_DEF_CURRENT) {
seterr(ERROR_VERDEF_VERSION);
return (size_t)-1;
}
if (vd.vd_cnt < 1
|| vd.vd_aux == 0) {
seterr(ERROR_VERDEF_FORMAT);
return (size_t)-1;
}
copy_verdef_tmptodst(dvd, &vd, enc);
/*
* copy aux array
*/
aoff = off + vd.vd_aux;
for (acount = 0; acount < vd.vd_cnt; acount++) {
const verdaux_stype *svda;
verdaux_dtype *dvda;
verdaux_mtype vda;
/*
* are we still inside the buffer limits?
*/
if (aoff + sizeof(verdaux_stype) > n) {
break;
}
/*
* check for proper alignment
*/
if (aoff % sizeof(verdef_atype)) {
seterr(ERROR_VERDEF_FORMAT);
return (size_t)-1;
}
/*
* copy and check src
*/
svda = (verdaux_stype*)(src + aoff);
dvda = (verdaux_dtype*)(dst + aoff);
copy_verdaux_srctotmp(&vda, svda, enc);
copy_verdaux_tmptodst(dvda, &vda, enc);
/*
* advance to next verdaux
*/
if (vda.vda_next == 0) {
/* end of list */
break;
}
aoff += vda.vda_next;
}
/*
* advance to next verdef
*/
if (vd.vd_next == 0) {
/* end of list */
break;
}
off += vd.vd_next;
}
return n;
}
size_t
translator(verdef,L11)(unsigned char *dst, const unsigned char *src, size_t n) {
return xlt_verdef(dst, src, n, ELFDATA2LSB);
}
size_t
translator(verdef,M11)(unsigned char *dst, const unsigned char *src, size_t n) {
return xlt_verdef(dst, src, n, ELFDATA2MSB);
}