wireshark/epan/asn1.c

127 lines
3.1 KiB
C
Raw Normal View History

/* asn1.c
* Common routines for ASN.1
* 2007 Anders Broman
*
* $Id$
*
* Wireshark - Network traffic analyzer
* By Gerald Combs <gerald@wireshark.org>
* Copyright 1998 Gerald Combs
*
* This program is free software; you can redistribute it and/or
* modify it under the terms of the GNU General Public License
* as published by the Free Software Foundation; either version 2
* of the License, or (at your option) any later version.
*
* This program 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 General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
*/
#ifdef HAVE_CONFIG_H
# include "config.h"
#endif
#include <glib.h>
#include <string.h>
#include <stdlib.h>
#include <math.h>
#include <epan/packet.h>
#include "asn1.h"
void asn1_ctx_init(asn1_ctx_t *actx, asn1_enc_e encoding, gboolean aligned, packet_info *pinfo) {
memset(actx, '\0', sizeof(*actx));
actx->signature = ASN1_CTX_SIGNATURE;
actx->encoding = encoding;
actx->aligned = aligned;
actx->pinfo = pinfo;
}
gboolean asn1_ctx_check_signature(asn1_ctx_t *actx) {
return actx && (actx->signature == ASN1_CTX_SIGNATURE);
}
void asn1_ctx_clean_external(asn1_ctx_t *actx) {
memset(&actx->external, '\0', sizeof(actx->external));
actx->external.hf_index = -1;
actx->external.encoding = -1;
}
void asn1_ctx_clean_epdv(asn1_ctx_t *actx) {
memset(&actx->embedded_pdv, '\0', sizeof(actx->embedded_pdv));
actx->embedded_pdv.hf_index = -1;
actx->embedded_pdv.identification = -1;
}
void rose_ctx_init(rose_ctx_t *rctx) {
memset(rctx, '\0', sizeof(*rctx));
rctx->signature = ROSE_CTX_SIGNATURE;
}
gboolean rose_ctx_check_signature(rose_ctx_t *rctx) {
return rctx && (rctx->signature == ROSE_CTX_SIGNATURE);
}
void rose_ctx_clean_data(rose_ctx_t *rctx) {
memset(&rctx->d, '\0', sizeof(rctx->d));
rctx->d.code = -1;
}
asn1_ctx_t *get_asn1_ctx(void *ptr) {
asn1_ctx_t *actx = (asn1_ctx_t*)ptr;
if (!asn1_ctx_check_signature(actx))
actx = NULL;
return actx;
}
rose_ctx_t *get_rose_ctx(void *ptr) {
rose_ctx_t *rctx = (rose_ctx_t*)ptr;
asn1_ctx_t *actx = (asn1_ctx_t*)ptr;
if (!asn1_ctx_check_signature(actx))
actx = NULL;
if (actx)
rctx = actx->rose_ctx;
if (!rose_ctx_check_signature(rctx))
rctx = NULL;
return rctx;
}
double asn1_get_real(const guint8 *real_ptr, gint real_len) {
guint8 octet;
const guint8 *p;
guint8 *buf;
double val = 0;
if (real_len < 1) return val;
octet = real_ptr[0];
p = real_ptr + 1;
real_len -= 1;
if (octet & 0x80) { /* binary encoding */
} else if (octet & 0x40) { /* SpecialRealValue */
switch (octet & 0x3F) {
case 0x00: val = HUGE_VAL; break;
case 0x01: val = -HUGE_VAL; break;
}
} else { /* decimal encoding */
buf = ep_alloc0(real_len + 1);
memcpy(buf, p, real_len);
val = atof(buf);
}
return val;
}