forked from osmocom/wireshark
Latest WSMP protocol support. Bug 9244 (https://bugs.wireshark.org/bugzilla/show_bug.cgi?id=9244)
Per bug, version 1 is no longer in use as its no longer specified in the standard. svn path=/trunk/; revision=52755
This commit is contained in:
parent
c87641f286
commit
75926345c6
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@ -1,6 +1,8 @@
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/* packet-wsmp.c
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/* packet-wsmp.c
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* Routines for WAVE Short Message dissection (WSMP)
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* Routines for WAVE Short Message dissection (WSMP)
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* Copyright 2008, Arada Systems (http://www.aradasystems.com) (email: siva@aradasystems.com)
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* Copyright 2013, Savari Networks (http://www.savarinetworks.com) (email: smooney@savarinetworks.com)
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* Based on packet-wsmp.c implemented by
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* Arada Systems (http://www.aradasystems.com) (email: siva@aradasystems.com)
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*
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*
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* $Id$
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* $Id$
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*
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*
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@ -31,20 +33,59 @@
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#include <epan/packet.h>
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#include <epan/packet.h>
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#include <epan/etypes.h>
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#include <epan/etypes.h>
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#include <epan/prefs.h>
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#include <glib.h>
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#define WSMP 0x80
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#define WSMP_S 0x81
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#define WSMP_I 0x82
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#define CHANNUM 0x0F
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#define DATARATE 0x10
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#define TRANSMITPW 0x04
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static const value_string wsmp_elemenid_names[] = {
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{ 0x80, "WSMP" },
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{ 0x81, "WSMP-S" },
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{ 0x82, "WSMP-I" },
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{ 0, NULL }
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};
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static dissector_handle_t data_handle;
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static dissector_handle_t data_handle;
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/* Initialize the protocol and registered fields */
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/* Initialize the protocol and registered fields */
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static int proto_wsmp = -1;
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static int proto_wsmp = -1;
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static int hf_wsmp_version = -1;
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static int hf_wsmp_version = -1;
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static int hf_wsmp_security = -1;
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static int hf_wsmp_psid = -1;
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static int hf_wsmp_rate = -1;
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static int hf_wsmp_rate = -1;
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static int hf_wsmp_channel = -1;
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static int hf_wsmp_channel = -1;
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static int hf_wsmp_txpower = -1;
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static int hf_wsmp_txpower = -1;
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static int hf_wsmp_appclass = -1;
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static int hf_wsmp_WAVEid = -1;
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static int hf_wsmp_acmlength = -1;
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static int hf_wsmp_acm = -1;
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static int hf_wsmp_wsmlength = -1;
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static int hf_wsmp_wsmlength = -1;
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static int hf_wsmp_WSMP_S_data = -1;
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/* Savari function to get the length of a psid based on the number of
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successive 1s in the most sig bits of the most sig octet. Taken
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from libwme
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*/
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int wme_getpsidlen (guint8 *psid)
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{
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int length = 0;
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if ((psid[0] & 0xF0) == 0xF0) {
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length = 255;
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} else if ( (psid[0] & 0xE0) == 0xE0) {
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length = 4;
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} else if ( (psid[0] & 0xE0) == 0xC0) {
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length = 3;
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} else if ( (psid[0] & 0xC0) == 0x80) {
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length = 2;
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} else if ((psid[0] & 0x80) == 0x00) {
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length = 1;
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}
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return length;
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}
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/* Initialize the subtree pointers */
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/* Initialize the subtree pointers */
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static gint ett_wsmp = -1;
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static gint ett_wsmp = -1;
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@ -59,69 +100,122 @@ dissect_wsmp(tvbuff_t *tvb, packet_info *pinfo, proto_tree *tree)
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proto_item *ti, *wsmdata_item;
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proto_item *ti, *wsmdata_item;
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proto_tree *wsmp_tree, *wsmdata_tree;
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proto_tree *wsmp_tree, *wsmdata_tree;
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tvbuff_t *wsmdata_tvb;
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tvbuff_t *wsmdata_tvb;
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guint16 acmlength, wsmlength, offset;
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guint16 wsmlength, offset;
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guint32 psidLen, psid;
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guint8 elemenId, elemenLen, msb, supLen;
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/* Make entries in Protocol column and Info column on summary display */
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/* Make entries in Protocol column and Info column on summary display */
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col_set_str(pinfo->cinfo, COL_PROTOCOL, "WSMP");
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col_set_str(pinfo->cinfo, COL_PROTOCOL, "WSMP");
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col_set_str(pinfo->cinfo, COL_INFO, "WAVE Short Message Protocol IEEE P1609.3");
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col_set_str(pinfo->cinfo, COL_INFO, "WAVE Short Message Protocol IEEE P1609.3");
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/* create display subtree for the protocol */
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ti = proto_tree_add_item(tree, proto_wsmp, tvb, 0, -1, ENC_NA);
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wsmp_tree = proto_item_add_subtree(ti, ett_wsmp);
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offset = 0;
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proto_tree_add_item(wsmp_tree,
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hf_wsmp_version, tvb, offset, 1, ENC_BIG_ENDIAN);
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offset ++;
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psid = tvb_get_guint8(tvb, offset);
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psidLen =(guint32)wme_getpsidlen((guint8*)&psid);
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if(psidLen == 2)
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psid = tvb_get_ntohs(tvb, offset);
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else if(psidLen == 3)
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{
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psid = tvb_get_ntohl(tvb, offset);
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psid = psid & 0x00FFFF; /* three bytes */
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}
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else if(psidLen ==4)
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psid = tvb_get_ntohl(tvb, offset);
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if (tree) {
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if (tree) {
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/* create display subtree for the protocol */
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ti = proto_tree_add_item(tree, proto_wsmp, tvb, 0, -1, ENC_NA);
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wsmp_tree = proto_item_add_subtree(ti, ett_wsmp);
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offset = 0;
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proto_tree_add_item(wsmp_tree,
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proto_tree_add_item(wsmp_tree,
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hf_wsmp_version, tvb, offset, 1, ENC_BIG_ENDIAN);
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hf_wsmp_psid, tvb, offset, psidLen, ENC_BIG_ENDIAN);
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offset ++;
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offset += psidLen;
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elemenId = tvb_get_guint8(tvb, offset);
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while(elemenId != WSMP && elemenId != WSMP_S
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&& elemenId != WSMP_I)
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{
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offset++;
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if(elemenId == CHANNUM)
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{
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/* channel number */
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elemenLen = tvb_get_guint8(tvb, offset);
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offset++;
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proto_tree_add_item(wsmp_tree,
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hf_wsmp_channel, tvb, offset, elemenLen, ENC_BIG_ENDIAN);
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offset += elemenLen;
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}
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else if(elemenId == DATARATE)
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{
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/* Data rate */
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elemenLen = tvb_get_guint8(tvb, offset);
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offset++;
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proto_tree_add_item(wsmp_tree,
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hf_wsmp_rate, tvb, offset, elemenLen, ENC_BIG_ENDIAN);
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offset += elemenLen;
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}
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else if(elemenId == TRANSMITPW)
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{
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/* Transmit power */
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elemenLen = tvb_get_guint8(tvb, offset);
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offset++;
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proto_tree_add_item(wsmp_tree,
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hf_wsmp_txpower, tvb, offset, elemenLen, ENC_BIG_ENDIAN);
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offset += elemenLen;
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}
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elemenId = tvb_get_guint8(tvb, offset);
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elemenLen = 0;
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}
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proto_tree_add_item(wsmp_tree,
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proto_tree_add_item(wsmp_tree,
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hf_wsmp_security, tvb, offset, 1, ENC_BIG_ENDIAN);
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hf_wsmp_WAVEid, tvb, offset, 1, ENC_BIG_ENDIAN);
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offset ++;
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offset ++;
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proto_tree_add_item(wsmp_tree,
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hf_wsmp_channel, tvb, offset, 1, ENC_BIG_ENDIAN);
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offset ++;
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proto_tree_add_item(wsmp_tree,
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hf_wsmp_rate, tvb, offset, 1, ENC_BIG_ENDIAN);
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offset ++;
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proto_tree_add_item(wsmp_tree,
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hf_wsmp_txpower, tvb, offset, 1, ENC_BIG_ENDIAN);
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offset ++;
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proto_tree_add_item(wsmp_tree,
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hf_wsmp_appclass, tvb, offset, 1, ENC_BIG_ENDIAN);
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offset ++;
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acmlength = tvb_get_guint8(tvb,offset);
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proto_tree_add_item(wsmp_tree,
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hf_wsmp_acmlength, tvb, offset, 1, ENC_BIG_ENDIAN);
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offset ++;
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proto_tree_add_item(wsmp_tree, hf_wsmp_acm, tvb, offset, acmlength, ENC_ASCII|ENC_NA);
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offset +=acmlength;
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wsmlength = tvb_get_letohs( tvb, offset);
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wsmlength = tvb_get_letohs( tvb, offset);
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proto_tree_add_item(wsmp_tree,
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proto_tree_add_item(wsmp_tree,
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hf_wsmp_wsmlength, tvb, offset, 2, ENC_LITTLE_ENDIAN);
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hf_wsmp_wsmlength, tvb, offset, 2, ENC_BIG_ENDIAN);
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offset += 2;
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offset += 2;
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wsmdata_item = proto_tree_add_text (wsmp_tree, tvb, offset, wsmlength,
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if(elemenId == WSMP_S)
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"Wave Short Message");
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{
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wsmdata_tree = proto_item_add_subtree(wsmdata_item, ett_wsmdata);
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msb = 1;
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supLen = 0;
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/* TODO: Branch on the application context and display accordingly
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while(msb)
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* Default call the data dissector
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{
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*/
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msb = tvb_get_guint8(tvb, offset + supLen);
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wsmdata_tvb = tvb_new_subset(tvb, offset,wsmlength, wsmlength);
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msb = msb & 0x80;
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call_dissector(data_handle, wsmdata_tvb, pinfo, wsmdata_tree);
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supLen++;
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}
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proto_tree_add_item(wsmp_tree,
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hf_wsmp_WSMP_S_data, tvb, offset, supLen, ENC_BIG_ENDIAN);
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wsmlength -= supLen;
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offset += supLen;
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}
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}
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}
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wsmdata_item = proto_tree_add_text (wsmp_tree, tvb, offset, wsmlength,
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"Wave Short Message");
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wsmdata_tree = proto_item_add_subtree(wsmdata_item, ett_wsmdata);
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wsmdata_tvb = tvb_new_subset(tvb, offset,-1, wsmlength);
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/* TODO: Branch on the application context and display accordingly
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* Default call the data dissector
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*/
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if(psid == 0xbff0)
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{
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call_dissector(data_handle, wsmdata_tvb, pinfo, wsmdata_tree);
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}
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}
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}
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@ -140,8 +234,8 @@ proto_register_wsmp(void)
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{ "Version", "wsmp.version", FT_UINT8, BASE_DEC, NULL, 0x0,
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{ "Version", "wsmp.version", FT_UINT8, BASE_DEC, NULL, 0x0,
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NULL, HFILL }},
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NULL, HFILL }},
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{ &hf_wsmp_security,
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{ &hf_wsmp_psid,
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{ "Security", "wsmp.security", FT_UINT8, BASE_DEC, NULL, 0x0,
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{ "PSID", "wsmp.psid", FT_UINT32, BASE_HEX, NULL, 0x0,
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NULL, HFILL }},
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NULL, HFILL }},
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{ &hf_wsmp_channel,
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{ &hf_wsmp_channel,
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@ -149,33 +243,30 @@ proto_register_wsmp(void)
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NULL, HFILL }},
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NULL, HFILL }},
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{ &hf_wsmp_rate,
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{ &hf_wsmp_rate,
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{ "Rate", "wsmp.rate", FT_UINT8, BASE_DEC, NULL, 0x0,
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{ "Data Rate", "wsmp.rate", FT_UINT8, BASE_DEC, NULL, 0x0,
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NULL, HFILL }},
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NULL, HFILL }},
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{ &hf_wsmp_txpower,
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{ &hf_wsmp_txpower,
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{ "Transmit power", "wsmp.txpower", FT_UINT8, BASE_DEC, NULL, 0x0,
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{ "Transmit Power", "wsmp.txpower", FT_UINT8, BASE_DEC, NULL, 0x0,
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NULL, HFILL }},
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NULL, HFILL }},
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{ &hf_wsmp_appclass,
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{ &hf_wsmp_WAVEid,
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{ "App class", "wsmp.appclass", FT_UINT8, BASE_DEC, NULL, 0x0,
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{ "WAVE element id", "wsmp.WAVEid", FT_UINT8, BASE_DEC, VALS(wsmp_elemenid_names), 0x0,
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NULL, HFILL }},
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NULL, HFILL }},
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{ &hf_wsmp_acmlength,
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{ "Acm Length", "wsmp.acmlength", FT_UINT8, BASE_DEC, NULL, 0x0,
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NULL, HFILL }},
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{ &hf_wsmp_acm,
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{ "Application Context Data", "wsmp.acm", FT_STRING,
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BASE_NONE, NULL, 0x0, "Acm", HFILL }},
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{ &hf_wsmp_wsmlength,
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{ &hf_wsmp_wsmlength,
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{ "WSM Length", "wsmp.wsmlength", FT_UINT16, BASE_DEC, NULL, 0x0,
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{ "WSM Length", "wsmp.wsmlength", FT_UINT16, BASE_DEC, NULL, 0x0,
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NULL, HFILL }},
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NULL, HFILL }},
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{ &hf_wsmp_WSMP_S_data,
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{ "WAVE Supplement Data", "wsmp.supplement", FT_UINT8, BASE_HEX, NULL, 0x0,
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NULL, HFILL }},
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};
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};
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/* Setup protocol subtree array */
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/* Setup protocol subtree array */
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static gint *ett[] = {
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static gint *ett[] = {
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&ett_wsmp,
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&ett_wsmp,
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&ett_wsmdata,
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&ett_wsmdata,
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};
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};
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/* Register the protocol name and description */
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/* Register the protocol name and description */
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