* Copyright 2000, Axis Communications AB
* Inquiries/bugreports should be sent to Johan.Jorgensen@axis.com
*
- * $Id: packet-ieee80211.c,v 1.24 2001/06/19 23:08:55 guy Exp $
+ * $Id: packet-ieee80211.c,v 1.36 2001/06/22 08:12:11 guy Exp $
*
* Ethereal - Network traffic analyzer
* By Gerald Combs <gerald@ethereal.com>
/* Miscellaneous Constants */
/* ************************************************************************* */
#define SHORT_STR 128
-#define MGT_FRAME_LEN 24
/* ************************************************************************* */
/* Define some very useful macros that are used to analyze frame types etc. */
/* ************************************************************************* */
#define COMPOSE_FRAME_TYPE(x) (((x & 0x0C)<< 2)+((x & 0xF0) >> 4)) /* Create key to (sub)type */
-#define COOK_PROT_VERSION(x) ((x & 0x3))
-#define COOK_FRAME_TYPE(x) ((x & 0xC) >> 2)
-#define COOK_FRAME_SUBTYPE(x) ((x & 0xF0) >> 4)
-#define COOK_ADDR_SELECTOR(x) (((x & 0x200)) && ((x & 0x100)))
-#define COOK_ASSOC_ID(x) ((x & 0x3FFF))
-#define COOK_FRAGMENT_NUMBER(x) (x & 0x000F)
-#define COOK_SEQUENCE_NUMBER(x) ((x & 0xFFF0) >> 4)
-#define COOK_FLAGS(x) ((x & 0xFF00) >> 8)
-#define COOK_DS_STATUS(x) (x & 0x3)
-#define COOK_WEP_IV(x) (x & 0xFFFFFF)
-#define COOK_WEP_KEY(x) ((x & 0xC0000000) >> 30)
+#define COOK_PROT_VERSION(x) ((x) & 0x3)
+#define COOK_FRAME_TYPE(x) (((x) & 0xC) >> 2)
+#define COOK_FRAME_SUBTYPE(x) (((x) & 0xF0) >> 4)
+#define COOK_ADDR_SELECTOR(x) ((x) & 0x300)
+#define COOK_ASSOC_ID(x) ((x) & 0x3FFF)
+#define COOK_FRAGMENT_NUMBER(x) ((x) & 0x000F)
+#define COOK_SEQUENCE_NUMBER(x) (((x) & 0xFFF0) >> 4)
+#define COOK_FLAGS(x) (((x) & 0xFF00) >> 8)
+#define COOK_DS_STATUS(x) ((x) & 0x3)
+#define COOK_WEP_KEY(x) (((x) & 0xC0) >> 6)
#define COL_SHOW_INFO(fd,info) if (check_col(fd,COL_INFO)) \
-col_add_str(fd,COL_INFO,info);
+ col_add_str(fd,COL_INFO,info);
#define COL_SHOW_INFO_CONST(fd,info) if (check_col(fd,COL_INFO)) \
-col_set_str(fd,COL_INFO,info);
-
-#define IS_TO_DS(x) ((x & 0x1))
-#define IS_FROM_DS(x) ((x & 0x2))
-#define HAVE_FRAGMENTS(x) ((x & 0x4))
-#define IS_RETRY(x) ((x & 0x8))
-#define POWER_MGT_STATUS(x) ((x & 0x10))
-#define HAS_MORE_DATA(x) ((x & 0x20))
-#define IS_WEP(x) ((x & 0x40))
-#define IS_STRICTLY_ORDERED(x) ((x & 0x80))
-
-#define MGT_RESERVED_RANGE(x) (((x>=0x06)&&(x<=0x07))||((x>=0x0D)&&(x<=0x0F)))
+ col_set_str(fd,COL_INFO,info);
+
+#define FLAG_TO_DS 0x01
+#define FLAG_FROM_DS 0x02
+#define FLAG_MORE_FRAGMENTS 0x04
+#define FLAG_RETRY 0x08
+#define FLAG_POWER_MGT 0x10
+#define FLAG_MORE_DATA 0x20
+#define FLAG_WEP 0x40
+#define FLAG_ORDER 0x80
+
+#define IS_TO_DS(x) ((x) & FLAG_TO_DS)
+#define IS_FROM_DS(x) ((x) & FLAG_FROM_DS)
+#define HAVE_FRAGMENTS(x) ((x) & FLAG_MORE_FRAGMENTS)
+#define IS_RETRY(x) ((x) & FLAG_RETRY)
+#define POWER_MGT_STATUS(x) ((x) & FLAG_POWER_MGT)
+#define HAS_MORE_DATA(x) ((x) & FLAG_MORE_DATA)
+#define IS_WEP(x) ((x) & FLAG_WEP)
+#define IS_STRICTLY_ORDERED(x) ((x) & FLAG_ORDER)
+
+#define MGT_RESERVED_RANGE(x) (((x>=0x06)&&(x<=0x07))||((x>=0x0D)&&(x<=0x0F)))
#define CTRL_RESERVED_RANGE(x) ((x>=0x10)&&(x<=0x19))
#define DATA_RESERVED_RANGE(x) ((x>=0x28)&&(x<=0x2f))
#define SPEC_RESERVED_RANGE(x) ((x>=0x30)&&(x<=0x3f))
#define DATA_SHORT_HDR_LEN 24
#define DATA_LONG_HDR_LEN 30
#define MGT_FRAME_HDR_LEN 24 /* Length of Managment frame-headers */
-#define CTLR
+
#define MGT_ASSOC_REQ 0x00 /* Management - association request */
#define MGT_ASSOC_RESP 0x01 /* Management - association response */
#define MGT_REASSOC_REQ 0x02 /* Management - reassociation request */
#define DATA_CF_POLL_NOD 0x26 /* Data - Data + CF poll (No data) */
#define DATA_CF_ACK_POLL_NOD 0x27 /* Data - CF ack + CF poll (no data) */
-#define DATA_ADDR_T1 0x0000
-#define DATA_ADDR_T2 0x0100
-#define DATA_ADDR_T3 0x0200
-#define DATA_ADDR_T4 0x0300
+#define DATA_ADDR_T1 0
+#define DATA_ADDR_T2 (FLAG_FROM_DS << 8)
+#define DATA_ADDR_T3 (FLAG_TO_DS << 8)
+#define DATA_ADDR_T4 ((FLAG_TO_DS|FLAG_FROM_DS) << 8)
/* ************************************************************************* */
/* Macros used to extract information about fixed fields */
/* ************************************************************************* */
-#define ESS_SET(x) ((x & 0x0001))
-#define IBSS_SET(x) ((x & 0x0002))
+#define ESS_SET(x) ((x) & 0x0001)
+#define IBSS_SET(x) ((x) & 0x0002)
#define TAG_IBSS_PARAMETER 0x06
#define TAG_CHALLENGE_TEXT 0x10
+/* ************************************************************************* */
+/* Frame types, and their names */
+/* ************************************************************************* */
+static const value_string frame_type_subtype_vals[] = {
+ {MGT_ASSOC_REQ, "Association Request"},
+ {MGT_ASSOC_RESP, "Association Response"},
+ {MGT_REASSOC_REQ, "Reassociation Request"},
+ {MGT_REASSOC_RESP, "Reassociation Response"},
+ {MGT_PROBE_REQ, "Probe Request"},
+ {MGT_PROBE_RESP, "Probe Response"},
+ {MGT_BEACON, "Beacon frame"},
+ {MGT_ATIM, "ATIM"},
+ {MGT_DISASS, "Dissassociate"},
+ {MGT_AUTHENTICATION, "Authentication"},
+ {MGT_DEAUTHENTICATION, "Deauthentication"},
+ {CTRL_PS_POLL, "Power-Save poll"},
+ {CTRL_RTS, "Request-to-send"},
+ {CTRL_CTS, "Clear-to-send"},
+ {CTRL_ACKNOWLEDGEMENT, "Acknowledgement"},
+ {CTRL_CFP_END, "CF-End (Control-frame)"},
+ {CTRL_CFP_ENDACK, "CF-End + CF-Ack (Control-frame)"},
+ {DATA, "Data"},
+ {DATA_CF_ACK, "Data + CF-Acknowledgement"},
+ {DATA_CF_POLL, "Data + CF-Poll"},
+ {DATA_CF_ACK_POLL, "Data + CF-Acknowledgement/Poll"},
+ {DATA_NULL_FUNCTION, "Null function (No data)"},
+ {DATA_CF_ACK_NOD, "Data + Acknowledgement (No data)"},
+ {DATA_CF_POLL_NOD, "Data + CF-Poll (No data)"},
+ {DATA_CF_ACK_POLL_NOD, "Data + CF-Acknowledgement/Poll (No data)"},
+ {0, NULL}
+};
static int proto_wlan = -1;
/* ************************************************************************* */
static int hf_fc_proto_version = -1;
static int hf_fc_frame_type = -1;
static int hf_fc_frame_subtype = -1;
+static int hf_fc_frame_type_subtype = -1;
static int hf_fc_flags = -1;
static int hf_fc_to_ds = -1;
static int hf_fcs = -1;
+
+static int proto_wlan_mgt = -1;
/* ************************************************************************* */
/* Fixed fields found in mgt frames */
/* ************************************************************************* */
static int hf_fixed_parameters = -1; /* Protocol payload for management frames */
static int hf_tagged_parameters = -1; /* Fixed payload item */
-static int hf_wep_parameters = -1;
static int hf_wep_iv = -1;
static int hf_wep_key = -1;
static int hf_wep_crc = -1;
static gint ett_proto_flags = -1;
static gint ett_cap_tree = -1;
static gint ett_fc_tree = -1;
+
+static gint ett_80211_mgt = -1;
static gint ett_fixed_parameters = -1;
static gint ett_tagged_parameters = -1;
static gint ett_wep_parameters = -1;
/* ************************************************************************* */
/* Return the length of the current header (in bytes) */
/* ************************************************************************* */
-int
-find_header_length (const u_char * pd, int offset)
+static int
+find_header_length (guint16 fcf)
{
- guint16 frame_control;
+ switch (COOK_FRAME_TYPE (fcf)) {
+
+ case MGT_FRAME:
+ return MGT_FRAME_HDR_LEN;
+
+ case CONTROL_FRAME:
+ switch (COMPOSE_FRAME_TYPE (fcf)) {
- frame_control = pntohs (pd);
- return ((IS_FROM_DS(frame_control))
- && (IS_TO_DS(frame_control))) ? 30 : 24;
+ case CTRL_CTS:
+ case CTRL_ACKNOWLEDGEMENT:
+ return 10;
+
+ case CTRL_RTS:
+ case CTRL_PS_POLL:
+ case CTRL_CFP_END:
+ case CTRL_CFP_ENDACK:
+ return 16;
+ }
+ return 4; /* XXX */
+
+ case DATA_FRAME:
+ return (COOK_ADDR_SELECTOR(fcf) == DATA_ADDR_T4) ? DATA_LONG_HDR_LEN :
+ DATA_SHORT_HDR_LEN;
+ default:
+ return 4; /* XXX */
+ }
}
fcf = pletohs (&pd[0]);
-
- hdr_length = MGT_FRAME_HDR_LEN; /* Set the header length of the frame */
-
if (IS_WEP(COOK_FLAGS(fcf)))
{
ld->other++;
{
case DATA: /* We got a data frame */
- hdr_length = find_header_length (pd, offset);
- capture_llc (pd, offset + hdr_length, ld);
- break;
-
case DATA_CF_ACK: /* Data with ACK */
- hdr_length = find_header_length (pd, offset);
- capture_llc (pd, offset + hdr_length, ld);
- break;
-
case DATA_CF_POLL:
- hdr_length = find_header_length (pd, offset);
- capture_llc (pd, offset + hdr_length, ld);
- break;
-
case DATA_CF_ACK_POLL:
- hdr_length = find_header_length (pd, offset);
+ hdr_length = find_header_length (fcf);
capture_llc (pd, offset + hdr_length, ld);
break;
/* ************************************************************************* */
/* Add the subtree used to store WEP parameters */
/* ************************************************************************* */
-void
+static void
get_wep_parameter_tree (proto_tree * tree, tvbuff_t *tvb, int start, int size)
{
proto_item *wep_fields;
proto_tree *wep_tree;
int crc_offset = size - 4;
- wep_fields = proto_tree_add_string_format(tree, hf_wep_parameters, tvb,
- 0, 4, 0, "WEP parameters");
+ wep_fields = proto_tree_add_text(tree, tvb, start, 4, "WEP parameters");
wep_tree = proto_item_add_subtree (wep_fields, ett_wep_parameters);
- proto_tree_add_uint (wep_tree, hf_wep_iv, tvb, start, 3,
- COOK_WEP_IV (tvb_get_letohl (tvb, start)));
+ proto_tree_add_item (wep_tree, hf_wep_iv, tvb, start, 3, TRUE);
proto_tree_add_uint (wep_tree, hf_wep_key, tvb, start + 3, 1,
- COOK_WEP_KEY (tvb_get_letohl (tvb, start)));
+ COOK_WEP_KEY (tvb_get_guint8 (tvb, start + 3)));
if (tvb_bytes_exist(tvb, start + crc_offset, 4))
proto_tree_add_uint (wep_tree, hf_wep_crc, tvb, start + crc_offset, 4,
{
const guint8 *dataptr;
char out_buff[SHORT_STR];
- guint16 *temp16;
+ guint16 capability;
proto_item *cap_item;
static proto_tree *cap_tree;
double temp_double;
proto_tree_add_string (tree, ff_timestamp, tvb, offset, 8, out_buff);
break;
-
case FIELD_BEACON_INTERVAL:
- dataptr = tvb_get_ptr (tvb, offset, 2);
- temp_double = ((double) *((guint16 *) dataptr));
+ temp_double = (double) tvb_get_letohs (tvb, offset);
temp_double = temp_double * 1024 / 1000000;
proto_tree_add_double_format (tree, ff_beacon_interval, tvb, offset, 2,
temp_double,"Beacon Interval: %f [Seconds]",
case FIELD_CAP_INFO:
- dataptr = tvb_get_ptr (tvb, offset, 2);
- temp16 = (guint16 *) dataptr;
+ capability = tvb_get_letohs (tvb, offset);
cap_item = proto_tree_add_uint_format (tree, ff_capture,
tvb, offset, 2,
- pletohs (temp16),
+ capability,
"Capability Information: 0x%04X",
- pletohs (temp16));
+ capability);
cap_tree = proto_item_add_subtree (cap_item, ett_cap_tree);
proto_tree_add_boolean (cap_tree, ff_cf_ess, tvb, offset, 1,
- pletohs (temp16));
+ capability);
proto_tree_add_boolean (cap_tree, ff_cf_ibss, tvb, offset, 1,
- pletohs (temp16));
+ capability);
proto_tree_add_boolean (cap_tree, ff_cf_privacy, tvb, offset, 1,
- pletohs (temp16));
+ capability);
proto_tree_add_boolean (cap_tree, ff_cf_preamble, tvb, offset, 1,
- pletohs (temp16));
+ capability);
proto_tree_add_boolean (cap_tree, ff_cf_pbcc, tvb, offset, 1,
- pletohs (temp16));
+ capability);
proto_tree_add_boolean (cap_tree, ff_cf_agility, tvb, offset, 1,
- pletohs (temp16));
- if (ESS_SET (pletohs (temp16)) != 0) /* This is an AP */
+ capability);
+ if (ESS_SET (capability) != 0) /* This is an AP */
proto_tree_add_uint (cap_tree, ff_cf_ap_poll, tvb, offset, 2,
- ((pletohs (temp16) & 0xC) >> 2));
+ ((capability & 0xC) >> 2));
else /* This is a STA */
proto_tree_add_uint (cap_tree, ff_cf_sta_poll, tvb, offset, 2,
- ((pletohs (temp16) & 0xC) >> 2));
+ ((capability & 0xC) >> 2));
break;
-
case FIELD_AUTH_ALG:
- dataptr = tvb_get_ptr (tvb, offset, 2);
- temp16 =(guint16 *) dataptr;
- proto_tree_add_uint (tree, ff_auth_alg, tvb, offset, 2,
- pletohs (temp16));
+ proto_tree_add_uint (tree, ff_auth_alg, tvb, offset, 2, TRUE);
break;
-
case FIELD_AUTH_TRANS_SEQ:
- dataptr = tvb_get_ptr (tvb, offset, 2);
- temp16 = (guint16 *)dataptr;
- proto_tree_add_uint (tree, ff_auth_seq, tvb, offset, 2,
- pletohs (temp16));
+ proto_tree_add_uint (tree, ff_auth_seq, tvb, offset, 2, TRUE);
break;
-
case FIELD_CURRENT_AP_ADDR:
- dataptr = tvb_get_ptr (tvb, offset, 6);
- proto_tree_add_ether (tree, ff_current_ap, tvb, offset, 6, dataptr);
+ proto_tree_add_item (tree, ff_current_ap, tvb, offset, 6, FALSE);
break;
-
case FIELD_LISTEN_IVAL:
- dataptr = tvb_get_ptr (tvb, offset, 2);
- temp16 = (guint16 *) dataptr;
- proto_tree_add_uint (tree, ff_listen_ival, tvb, offset, 2,
- pletohs (temp16));
+ proto_tree_add_item (tree, ff_listen_ival, tvb, offset, 2, TRUE);
break;
-
case FIELD_REASON_CODE:
- dataptr = tvb_get_ptr (tvb, offset, 2);
- temp16 = (guint16 *) dataptr;
- proto_tree_add_uint (tree, ff_reason, tvb, offset, 2, pletohs (temp16));
+ proto_tree_add_item (tree, ff_reason, tvb, offset, 2, TRUE);
break;
-
case FIELD_ASSOC_ID:
- dataptr = tvb_get_ptr (tvb, offset, 2);
- temp16 = (guint16 *) dataptr;
- proto_tree_add_uint (tree, ff_assoc_id, tvb, offset, 2, pletohs (temp16));
+ proto_tree_add_item (tree, ff_assoc_id, tvb, offset, 2, TRUE);
break;
case FIELD_STATUS_CODE:
- dataptr = tvb_get_ptr (tvb, offset, 2);
- temp16 = (guint16 *) dataptr;
- proto_tree_add_uint (tree, ff_status_code, tvb, offset, 2,
- pletohs (temp16));
+ proto_tree_add_item (tree, ff_status_code, tvb, offset, 2, TRUE);
break;
}
}
static int
add_tagged_field (proto_tree * tree, tvbuff_t * tvb, int offset)
{
- const guint8 *tag_info_ptr;
const guint8 *tag_data_ptr;
guint32 tag_no, tag_len;
unsigned int i;
char out_buff[SHORT_STR];
- tag_info_ptr = tvb_get_ptr (tvb, offset, 2);
- tag_no = tag_info_ptr[0];
- tag_len = tag_info_ptr[1];
+ tag_no = tvb_get_guint8(tvb, offset);
+ tag_len = tvb_get_guint8(tvb, offset + 1);
tag_data_ptr = tvb_get_ptr (tvb, offset + 2, tag_len);
}
- switch (tag_info_ptr[0])
+ switch (tag_no)
{
return tag_len + 2;
}
+/* ************************************************************************* */
+/* Dissect 802.11 management frame */
+/* ************************************************************************* */
+static void
+dissect_ieee80211_mgt (guint16 fcf, tvbuff_t * tvb, packet_info * pinfo,
+ proto_tree * tree)
+{
+ proto_item *ti = NULL;
+ proto_tree *mgt_tree;
+ proto_tree *fixed_tree;
+ proto_tree *tagged_tree;
+ guint32 next_idx;
+ guint32 next_len;
+ int tagged_parameter_tree_len;
+
+ CHECK_DISPLAY_AS_DATA(proto_wlan_mgt, tvb, pinfo, tree);
+
+ if (tree)
+ {
+ ti = proto_tree_add_item (tree, proto_wlan_mgt, tvb, 0, tvb_length(tvb), FALSE);
+ mgt_tree = proto_item_add_subtree (ti, ett_80211_mgt);
+
+ switch (COMPOSE_FRAME_TYPE(fcf))
+ {
+
+ case MGT_ASSOC_REQ:
+ fixed_tree = get_fixed_parameter_tree (mgt_tree, tvb, 0, 4);
+ add_fixed_field (fixed_tree, tvb, 0, FIELD_CAP_INFO);
+ add_fixed_field (fixed_tree, tvb, 2, FIELD_LISTEN_IVAL);
+
+ next_idx = 4; /* Size of fixed fields */
+ tagged_parameter_tree_len =
+ tvb_reported_length_remaining(tvb, next_idx + 4);
+ tagged_tree = get_tagged_parameter_tree (mgt_tree, tvb, next_idx,
+ tagged_parameter_tree_len);
+
+ while (tagged_parameter_tree_len > 0) {
+ if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
+ break;
+ next_idx +=next_len;
+ tagged_parameter_tree_len -= next_len;
+ }
+ break;
+
+
+ case MGT_ASSOC_RESP:
+ fixed_tree = get_fixed_parameter_tree (mgt_tree, tvb, 0, 6);
+ add_fixed_field (fixed_tree, tvb, 0, FIELD_CAP_INFO);
+ add_fixed_field (fixed_tree, tvb, 2, FIELD_STATUS_CODE);
+ add_fixed_field (fixed_tree, tvb, 4, FIELD_ASSOC_ID);
+
+ next_idx = 6; /* Size of fixed fields */
+
+ tagged_parameter_tree_len =
+ tvb_reported_length_remaining(tvb, next_idx + 4);
+ tagged_tree = get_tagged_parameter_tree (mgt_tree, tvb, next_idx,
+ tagged_parameter_tree_len);
+
+ while (tagged_parameter_tree_len > 0) {
+ if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
+ break;
+ next_idx +=next_len;
+ tagged_parameter_tree_len -= next_len;
+ }
+ break;
+
+
+ case MGT_REASSOC_REQ:
+ fixed_tree = get_fixed_parameter_tree (mgt_tree, tvb, 0, 10);
+ add_fixed_field (fixed_tree, tvb, 0, FIELD_CAP_INFO);
+ add_fixed_field (fixed_tree, tvb, 2, FIELD_LISTEN_IVAL);
+ add_fixed_field (fixed_tree, tvb, 4, FIELD_CURRENT_AP_ADDR);
+
+ next_idx = 10; /* Size of fixed fields */
+ tagged_parameter_tree_len =
+ tvb_reported_length_remaining(tvb, next_idx + 4);
+ tagged_tree = get_tagged_parameter_tree (mgt_tree, tvb, next_idx,
+ tagged_parameter_tree_len);
+
+ while (tagged_parameter_tree_len > 0) {
+ if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
+ break;
+ next_idx +=next_len;
+ tagged_parameter_tree_len -= next_len;
+ }
+ break;
+
+ case MGT_REASSOC_RESP:
+ fixed_tree = get_fixed_parameter_tree (mgt_tree, tvb, 0, 10);
+ add_fixed_field (fixed_tree, tvb, 0, FIELD_CAP_INFO);
+ add_fixed_field (fixed_tree, tvb, 2, FIELD_STATUS_CODE);
+ add_fixed_field (fixed_tree, tvb, 4, FIELD_ASSOC_ID);
+
+ next_idx = 6; /* Size of fixed fields */
+ tagged_parameter_tree_len =
+ tvb_reported_length_remaining(tvb, next_idx + 4);
+ tagged_tree = get_tagged_parameter_tree (mgt_tree, tvb, next_idx,
+ tagged_parameter_tree_len);
+
+ while (tagged_parameter_tree_len > 0) {
+ if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
+ break;
+ next_idx +=next_len;
+ tagged_parameter_tree_len -= next_len;
+ }
+ break;
+
+
+ case MGT_PROBE_REQ:
+ next_idx = 0;
+ tagged_parameter_tree_len =
+ tvb_reported_length_remaining(tvb, next_idx + 4);
+ tagged_tree = get_tagged_parameter_tree (mgt_tree, tvb, next_idx,
+ tagged_parameter_tree_len);
+
+ while (tagged_parameter_tree_len > 0) {
+ if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
+ break;
+ next_idx +=next_len;
+ tagged_parameter_tree_len -= next_len;
+ }
+ break;
+
+
+ case MGT_PROBE_RESP:
+ fixed_tree = get_fixed_parameter_tree (mgt_tree, tvb, 0, 12);
+ add_fixed_field (fixed_tree, tvb, 0, FIELD_TIMESTAMP);
+ add_fixed_field (fixed_tree, tvb, 8, FIELD_BEACON_INTERVAL);
+ add_fixed_field (fixed_tree, tvb, 10, FIELD_CAP_INFO);
+
+ next_idx = 12; /* Size of fixed fields */
+ tagged_parameter_tree_len =
+ tvb_reported_length_remaining(tvb, next_idx + 4);
+ tagged_tree = get_tagged_parameter_tree (mgt_tree, tvb, next_idx,
+ tagged_parameter_tree_len);
+
+ while (tagged_parameter_tree_len > 0) {
+ if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
+ break;
+ next_idx +=next_len;
+ tagged_parameter_tree_len -= next_len;
+ }
+ break;
+
+
+ case MGT_BEACON: /* Dissect protocol payload fields */
+ fixed_tree = get_fixed_parameter_tree (mgt_tree, tvb, 0, 12);
+
+ add_fixed_field (fixed_tree, tvb, 0, FIELD_TIMESTAMP);
+ add_fixed_field (fixed_tree, tvb, 8, FIELD_BEACON_INTERVAL);
+ add_fixed_field (fixed_tree, tvb, 10, FIELD_CAP_INFO);
+
+ next_idx = 12; /* Size of fixed fields */
+ tagged_parameter_tree_len =
+ tvb_reported_length_remaining(tvb, next_idx + 4);
+ tagged_tree = get_tagged_parameter_tree (mgt_tree, tvb, next_idx,
+ tagged_parameter_tree_len);
+
+ while (tagged_parameter_tree_len > 0) {
+ if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
+ break;
+ next_idx +=next_len;
+ tagged_parameter_tree_len -= next_len;
+ }
+ break;
+
+
+ case MGT_ATIM:
+ break;
+
+
+ case MGT_DISASS:
+ fixed_tree = get_fixed_parameter_tree (mgt_tree, tvb, 0, 2);
+ add_fixed_field (fixed_tree, tvb, 0, FIELD_REASON_CODE);
+ break;
+
+
+ case MGT_AUTHENTICATION:
+ fixed_tree = get_fixed_parameter_tree (mgt_tree, tvb, 0, 6);
+ add_fixed_field (fixed_tree, tvb, 0, FIELD_AUTH_ALG);
+ add_fixed_field (fixed_tree, tvb, 2, FIELD_AUTH_TRANS_SEQ);
+ add_fixed_field (fixed_tree, tvb, 4, FIELD_STATUS_CODE);
+
+ next_idx = 6; /* Size of fixed fields */
+
+ tagged_parameter_tree_len =
+ tvb_reported_length_remaining(tvb, next_idx + 4);
+ if (tagged_parameter_tree_len != 0)
+ {
+ tagged_tree = get_tagged_parameter_tree (mgt_tree,
+ tvb,
+ next_idx,
+ tagged_parameter_tree_len);
+
+ while (tagged_parameter_tree_len > 0) {
+ if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
+ break;
+ next_idx +=next_len;
+ tagged_parameter_tree_len -= next_len;
+ }
+ }
+ break;
+
+
+ case MGT_DEAUTHENTICATION:
+ fixed_tree = get_fixed_parameter_tree (mgt_tree, tvb, 0, 2);
+ add_fixed_field (fixed_tree, tvb, 0, FIELD_REASON_CODE);
+ break;
+ }
+ }
+}
+
static void
set_src_addr_cols(packet_info *pinfo, const guint8 *addr, char *type)
{
static void
dissect_ieee80211 (tvbuff_t * tvb, packet_info * pinfo, proto_tree * tree)
{
- guint16 fcf, flags;
+ guint16 fcf, flags, frame_type_subtype;
const guint8 *src = NULL, *dst = NULL;
- proto_item *ti;
+ proto_item *ti = NULL;
proto_item *flag_item;
proto_item *fc_item;
- static proto_tree *hdr_tree;
- static proto_tree *flag_tree;
- static proto_tree *fixed_tree;
- static proto_tree *tagged_tree;
- static proto_tree *fc_tree;
- guint16 cap_len, hdr_len;
+ proto_tree *hdr_tree = NULL;
+ proto_tree *flag_tree;
+ proto_tree *fc_tree;
+ guint16 hdr_len;
tvbuff_t *next_tvb;
- guint32 next_idx;
guint32 addr_type;
- guint32 next_len;
- int tagged_parameter_tree_len;
if (check_col (pinfo->fd, COL_PROTOCOL))
col_set_str (pinfo->fd, COL_PROTOCOL, "IEEE 802.11");
if (check_col (pinfo->fd, COL_INFO))
col_clear (pinfo->fd, COL_INFO);
- cap_len = tvb_length(tvb);
fcf = tvb_get_letohs (tvb, 0);
+ hdr_len = find_header_length (fcf);
+ frame_type_subtype = COMPOSE_FRAME_TYPE(fcf);
+
+ COL_SHOW_INFO_CONST (pinfo->fd,
+ val_to_str(frame_type_subtype, frame_type_subtype_vals,
+ "Unrecognized (Reserved frame)"));
/* Add the FC to the current tree */
if (tree)
{
- hdr_len = find_header_length (tvb_get_ptr (tvb, 0, cap_len), 0);
ti = proto_tree_add_protocol_format (tree, proto_wlan, tvb, 0, hdr_len,
- "IEEE 802.11 Header");
+ "IEEE 802.11");
hdr_tree = proto_item_add_subtree (ti, ett_80211);
+ proto_tree_add_uint (hdr_tree, hf_fc_frame_type_subtype,
+ tvb, 0, 1,
+ frame_type_subtype);
+
fc_item = proto_tree_add_uint_format (hdr_tree, hf_fc_field, tvb, 0, 2,
fcf,
"Frame Control: 0x%04X",
proto_tree_add_boolean (flag_tree, hf_fc_order, tvb, 1, 1, flags);
- if ((COMPOSE_FRAME_TYPE(fcf))==CTRL_PS_POLL)
+ if (frame_type_subtype == CTRL_PS_POLL)
proto_tree_add_uint(hdr_tree, hf_assoc_id,tvb,2,2,
COOK_ASSOC_ID(tvb_get_letohs(tvb,2)));
tvb_get_letohs (tvb, 2));
}
- /* Perform tasks which are common to a certain frame type */
- switch (COOK_FRAME_TYPE (fcf))
+ /*
+ * Decode the part of the frame header that isn't the same for all
+ * frame types.
+ */
+ switch (frame_type_subtype)
{
- case MGT_FRAME: /* All management frames share a common header */
+ case MGT_ASSOC_REQ:
+ case MGT_ASSOC_RESP:
+ case MGT_REASSOC_REQ:
+ case MGT_REASSOC_RESP:
+ case MGT_PROBE_REQ:
+ case MGT_PROBE_RESP:
+ case MGT_BEACON:
+ case MGT_ATIM:
+ case MGT_DISASS:
+ case MGT_AUTHENTICATION:
+ case MGT_DEAUTHENTICATION:
+ /*
+ * All management frame types have the same header.
+ */
src = tvb_get_ptr (tvb, 10, 6);
dst = tvb_get_ptr (tvb, 4, 6);
if (tree)
{
- proto_tree_add_ether (hdr_tree, hf_addr_da, tvb, 4, 6,
- tvb_get_ptr (tvb, 4, 6));
+ proto_tree_add_ether (hdr_tree, hf_addr_da, tvb, 4, 6, dst);
- proto_tree_add_ether (hdr_tree, hf_addr_sa, tvb, 10, 6,
- tvb_get_ptr (tvb, 10, 6));
+ proto_tree_add_ether (hdr_tree, hf_addr_sa, tvb, 10, 6, src);
proto_tree_add_ether (hdr_tree, hf_addr_bssid, tvb, 16, 6,
tvb_get_ptr (tvb, 16, 6));
proto_tree_add_uint (hdr_tree, hf_seq_number, tvb, 22, 2,
COOK_SEQUENCE_NUMBER (tvb_get_letohs
(tvb, 22)));
- cap_len = cap_len - MGT_FRAME_LEN - 4;
}
break;
+ case CTRL_PS_POLL:
+ src = tvb_get_ptr (tvb, 10, 6);
+ dst = tvb_get_ptr (tvb, 4, 6);
+
+ set_src_addr_cols(pinfo, src, "BSSID");
+ set_dst_addr_cols(pinfo, dst, "BSSID");
+
+ if (tree)
+ {
+ proto_tree_add_ether (hdr_tree, hf_addr_bssid, tvb, 4, 6, dst);
- case CONTROL_FRAME:
+ proto_tree_add_ether (hdr_tree, hf_addr_ta, tvb, 10, 6, src);
+ }
break;
+ case CTRL_RTS:
+ src = tvb_get_ptr (tvb, 10, 6);
+ dst = tvb_get_ptr (tvb, 4, 6);
- case DATA_FRAME:
- addr_type = COOK_ADDR_SELECTOR (fcf);
- hdr_len = find_header_length (tvb_get_ptr (tvb, 0, cap_len), 0);
+ set_src_addr_cols(pinfo, src, "TA");
+ set_dst_addr_cols(pinfo, dst, "RA");
- /* In order to show src/dst address we must always do the following */
- switch (addr_type)
+ if (tree)
{
+ proto_tree_add_ether (hdr_tree, hf_addr_ra, tvb, 4, 6, dst);
- case DATA_ADDR_T1:
- src = tvb_get_ptr (tvb, 10, 6);
- dst = tvb_get_ptr (tvb, 4, 6);
- break;
+ proto_tree_add_ether (hdr_tree, hf_addr_ta, tvb, 10, 6, src);
+ }
+ break;
- case DATA_ADDR_T2:
- src = tvb_get_ptr (tvb, 16, 6);
- dst = tvb_get_ptr (tvb, 4, 6);
- break;
+ case CTRL_CTS:
+ dst = tvb_get_ptr (tvb, 4, 6);
+ set_dst_addr_cols(pinfo, dst, "RA");
- case DATA_ADDR_T3:
- src = tvb_get_ptr (tvb, 10, 6);
- dst = tvb_get_ptr (tvb, 16, 6);
- break;
+ if (tree)
+ proto_tree_add_ether (hdr_tree, hf_addr_ra, tvb, 4, 6, dst);
+ break;
- case DATA_ADDR_T4:
- src = tvb_get_ptr (tvb, 24, 6);
- dst = tvb_get_ptr (tvb, 16, 6);
- break;
- }
+ case CTRL_ACKNOWLEDGEMENT:
+ dst = tvb_get_ptr (tvb, 4, 6);
- SET_ADDRESS(&pinfo->dl_src, AT_ETHER, 6, src);
- SET_ADDRESS(&pinfo->src, AT_ETHER, 6, src);
- SET_ADDRESS(&pinfo->dl_dst, AT_ETHER, 6, dst);
- SET_ADDRESS(&pinfo->dst, AT_ETHER, 6, dst);
+ set_dst_addr_cols(pinfo, dst, "RA");
- /* Now if we have a tree we start adding stuff */
if (tree)
- {
+ proto_tree_add_ether (hdr_tree, hf_addr_ra, tvb, 4, 6, dst);
+ break;
- switch (addr_type)
- {
+ case CTRL_CFP_END:
+ src = tvb_get_ptr (tvb, 10, 6);
+ dst = tvb_get_ptr (tvb, 4, 6);
- case DATA_ADDR_T1:
- proto_tree_add_ether (hdr_tree, hf_addr_da, tvb, 4, 6,
- tvb_get_ptr (tvb, 4, 6));
- proto_tree_add_ether (hdr_tree, hf_addr_sa, tvb, 10, 6,
- tvb_get_ptr (tvb, 10, 6));
- proto_tree_add_ether (hdr_tree, hf_addr_bssid, tvb, 16, 6,
- tvb_get_ptr (tvb, 16, 6));
- proto_tree_add_uint (hdr_tree, hf_frag_number, tvb, 22, 2,
- COOK_FRAGMENT_NUMBER (tvb_get_letohs
- (tvb, 22)));
- proto_tree_add_uint (hdr_tree, hf_seq_number, tvb, 22, 2,
- COOK_SEQUENCE_NUMBER (tvb_get_letohs
+ set_src_addr_cols(pinfo, src, "BSSID");
+ set_dst_addr_cols(pinfo, dst, "RA");
+
+ if (tree)
+ {
+ proto_tree_add_ether (hdr_tree, hf_addr_ra, tvb, 4, 6, dst);
+ proto_tree_add_ether (hdr_tree, hf_addr_bssid, tvb, 10, 6, src);
+ }
+ break;
+
+
+ case CTRL_CFP_ENDACK:
+ src = tvb_get_ptr (tvb, 10, 6);
+ dst = tvb_get_ptr (tvb, 4, 6);
+
+ set_src_addr_cols(pinfo, src, "BSSID");
+ set_dst_addr_cols(pinfo, dst, "RA");
+
+ if (tree)
+ {
+ proto_tree_add_ether (hdr_tree, hf_addr_ra, tvb, 4, 6, dst);
+
+ proto_tree_add_ether (hdr_tree, hf_addr_bssid, tvb, 10, 6, src);
+ }
+ break;
+
+
+ case DATA:
+ case DATA_CF_ACK:
+ case DATA_CF_POLL:
+ case DATA_CF_ACK_POLL:
+ addr_type = COOK_ADDR_SELECTOR (fcf);
+
+ /* In order to show src/dst address we must always do the following */
+ switch (addr_type)
+ {
+
+ case DATA_ADDR_T1:
+ src = tvb_get_ptr (tvb, 10, 6);
+ dst = tvb_get_ptr (tvb, 4, 6);
+ break;
+
+
+ case DATA_ADDR_T2:
+ src = tvb_get_ptr (tvb, 16, 6);
+ dst = tvb_get_ptr (tvb, 4, 6);
+ break;
+
+
+ case DATA_ADDR_T3:
+ src = tvb_get_ptr (tvb, 10, 6);
+ dst = tvb_get_ptr (tvb, 16, 6);
+ break;
+
+
+ case DATA_ADDR_T4:
+ src = tvb_get_ptr (tvb, 24, 6);
+ dst = tvb_get_ptr (tvb, 16, 6);
+ break;
+ }
+
+ SET_ADDRESS(&pinfo->dl_src, AT_ETHER, 6, src);
+ SET_ADDRESS(&pinfo->src, AT_ETHER, 6, src);
+ SET_ADDRESS(&pinfo->dl_dst, AT_ETHER, 6, dst);
+ SET_ADDRESS(&pinfo->dst, AT_ETHER, 6, dst);
+
+ /* Now if we have a tree we start adding stuff */
+ if (tree)
+ {
+
+
+ switch (addr_type)
+ {
+
+ case DATA_ADDR_T1:
+ proto_tree_add_ether (hdr_tree, hf_addr_da, tvb, 4, 6, dst);
+ proto_tree_add_ether (hdr_tree, hf_addr_sa, tvb, 10, 6, src);
+ proto_tree_add_ether (hdr_tree, hf_addr_bssid, tvb, 16, 6,
+ tvb_get_ptr (tvb, 16, 6));
+ proto_tree_add_uint (hdr_tree, hf_frag_number, tvb, 22, 2,
+ COOK_FRAGMENT_NUMBER (tvb_get_letohs
+ (tvb, 22)));
+ proto_tree_add_uint (hdr_tree, hf_seq_number, tvb, 22, 2,
+ COOK_SEQUENCE_NUMBER (tvb_get_letohs
(tvb, 22)));
break;
case DATA_ADDR_T2:
- proto_tree_add_ether (hdr_tree, hf_addr_da, tvb, 4, 6,
- tvb_get_ptr (tvb, 4, 6));
+ proto_tree_add_ether (hdr_tree, hf_addr_da, tvb, 4, 6, dst);
proto_tree_add_ether (hdr_tree, hf_addr_bssid, tvb, 10, 6,
tvb_get_ptr (tvb, 10, 6));
- proto_tree_add_ether (hdr_tree, hf_addr_sa, tvb, 16, 6,
- tvb_get_ptr (tvb, 16, 6));
+ proto_tree_add_ether (hdr_tree, hf_addr_sa, tvb, 16, 6, src);
proto_tree_add_uint (hdr_tree, hf_frag_number, tvb, 22, 2,
COOK_FRAGMENT_NUMBER (tvb_get_letohs
(tvb, 22)));
case DATA_ADDR_T3:
proto_tree_add_ether (hdr_tree, hf_addr_bssid, tvb, 4, 6,
tvb_get_ptr (tvb, 4, 6));
- proto_tree_add_ether (hdr_tree, hf_addr_sa, tvb, 10, 6,
- tvb_get_ptr (tvb, 10, 6));
- proto_tree_add_ether (hdr_tree, hf_addr_da, tvb, 16, 6,
- tvb_get_ptr (tvb, 16, 6));
+ proto_tree_add_ether (hdr_tree, hf_addr_sa, tvb, 10, 6, src);
+ proto_tree_add_ether (hdr_tree, hf_addr_da, tvb, 16, 6, dst);
proto_tree_add_uint (hdr_tree, hf_frag_number, tvb, 22, 2,
COOK_FRAGMENT_NUMBER (tvb_get_letohs
(tvb, 22)));
tvb_get_ptr (tvb, 4, 6));
proto_tree_add_ether (hdr_tree, hf_addr_ta, tvb, 10, 6,
tvb_get_ptr (tvb, 10, 6));
- proto_tree_add_ether (hdr_tree, hf_addr_da, tvb, 16, 6,
- tvb_get_ptr (tvb, 16, 6));
+ proto_tree_add_ether (hdr_tree, hf_addr_da, tvb, 16, 6, dst);
proto_tree_add_uint (hdr_tree, hf_frag_number, tvb, 22, 2,
COOK_FRAGMENT_NUMBER (tvb_get_letohs
(tvb, 22)));
proto_tree_add_uint (hdr_tree, hf_seq_number, tvb, 22, 2,
COOK_SEQUENCE_NUMBER (tvb_get_letohs
(tvb, 22)));
- proto_tree_add_ether (hdr_tree, hf_addr_sa, tvb, 24, 6,
- tvb_get_ptr (tvb, 24, 6));
+ proto_tree_add_ether (hdr_tree, hf_addr_sa, tvb, 24, 6, src);
break;
}
break;
}
-
- switch (COMPOSE_FRAME_TYPE (fcf))
+ /*
+ * Only management and data frames have a body, so we don't have
+ * anything more to do for other types of frames.
+ */
+ switch (COOK_FRAME_TYPE (fcf))
{
- case MGT_ASSOC_REQ:
- COL_SHOW_INFO_CONST (pinfo->fd, "Association Request");
- if (tree)
- {
- fixed_tree = get_fixed_parameter_tree (tree, tvb, MGT_FRAME_LEN, 4);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_HDR_LEN,
- FIELD_CAP_INFO);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_HDR_LEN + 2,
- FIELD_LISTEN_IVAL);
-
- next_idx = MGT_FRAME_HDR_LEN + 4; /* Size of fixed fields */
- tagged_parameter_tree_len =
- tvb_reported_length_remaining(tvb, next_idx + 4);
- tagged_tree = get_tagged_parameter_tree (tree, tvb, next_idx,
- tagged_parameter_tree_len);
-
- while (tagged_parameter_tree_len > 0) {
- if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
- break;
- next_idx +=next_len;
- tagged_parameter_tree_len -= next_len;
- }
- }
- break;
-
-
-
- case MGT_ASSOC_RESP:
- COL_SHOW_INFO_CONST (pinfo->fd, "Association Response");
-
- if (tree)
- {
- fixed_tree = get_fixed_parameter_tree (tree, tvb, MGT_FRAME_LEN, 6);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN, FIELD_CAP_INFO);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN + 2,
- FIELD_STATUS_CODE);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN + 4,
- FIELD_ASSOC_ID);
-
- next_idx = MGT_FRAME_LEN + 6; /* Size of fixed fields */
-
- tagged_parameter_tree_len =
- tvb_reported_length_remaining(tvb, next_idx + 4);
- tagged_tree = get_tagged_parameter_tree (tree, tvb, next_idx,
- tagged_parameter_tree_len);
-
- while (tagged_parameter_tree_len > 0) {
- if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
- break;
- next_idx +=next_len;
- tagged_parameter_tree_len -= next_len;
- }
- }
- break;
-
-
- case MGT_REASSOC_REQ:
- COL_SHOW_INFO_CONST (pinfo->fd, "Reassociation Request");
- if (tree)
- {
- fixed_tree = get_fixed_parameter_tree (tree, tvb, MGT_FRAME_LEN, 10);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN, FIELD_CAP_INFO);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN + 2,
- FIELD_LISTEN_IVAL);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN + 4,
- FIELD_CURRENT_AP_ADDR);
-
- next_idx = MGT_FRAME_LEN + 10; /* Size of fixed fields */
- tagged_parameter_tree_len =
- tvb_reported_length_remaining(tvb, next_idx + 4);
- tagged_tree = get_tagged_parameter_tree (tree, tvb, next_idx,
- tagged_parameter_tree_len);
-
- while (tagged_parameter_tree_len > 0) {
- if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
- break;
- next_idx +=next_len;
- tagged_parameter_tree_len -= next_len;
- }
- }
- break;
-
- case MGT_REASSOC_RESP:
- COL_SHOW_INFO_CONST (pinfo->fd, "Reassociation Response");
- if (tree)
- {
- fixed_tree = get_fixed_parameter_tree (tree, tvb, MGT_FRAME_LEN, 10);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN, FIELD_CAP_INFO);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN + 2,
- FIELD_STATUS_CODE);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN + 4,
- FIELD_ASSOC_ID);
-
- next_idx = MGT_FRAME_LEN + 6; /* Size of fixed fields */
- tagged_parameter_tree_len =
- tvb_reported_length_remaining(tvb, next_idx + 4);
- tagged_tree = get_tagged_parameter_tree (tree, tvb, next_idx,
- tagged_parameter_tree_len);
-
- while (tagged_parameter_tree_len > 0) {
- if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
- break;
- next_idx +=next_len;
- tagged_parameter_tree_len -= next_len;
- }
- }
- break;
-
-
- case MGT_PROBE_REQ:
- COL_SHOW_INFO_CONST (pinfo->fd, "Probe Request");
- if (tree)
- {
- next_idx = MGT_FRAME_LEN;
- tagged_parameter_tree_len =
- tvb_reported_length_remaining(tvb, next_idx + 4);
- tagged_tree = get_tagged_parameter_tree (tree, tvb, next_idx,
- tagged_parameter_tree_len);
-
- while (tagged_parameter_tree_len > 0) {
- if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
- break;
- next_idx +=next_len;
- tagged_parameter_tree_len -= next_len;
- }
- }
- break;
-
-
- case MGT_PROBE_RESP:
- COL_SHOW_INFO_CONST (pinfo->fd, "Probe Response");
- if (tree)
- {
- fixed_tree = get_fixed_parameter_tree (tree, tvb, MGT_FRAME_LEN, 12);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN, FIELD_TIMESTAMP);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN + 8,
- FIELD_BEACON_INTERVAL);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN + 10,
- FIELD_CAP_INFO);
-
- next_idx = MGT_FRAME_LEN + 12; /* Size of fixed fields */
- tagged_parameter_tree_len =
- tvb_reported_length_remaining(tvb, next_idx + 4);
- tagged_tree = get_tagged_parameter_tree (tree, tvb, next_idx,
- tagged_parameter_tree_len);
-
- while (tagged_parameter_tree_len > 0) {
- if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
- break;
- next_idx +=next_len;
- tagged_parameter_tree_len -= next_len;
- }
- }
- break;
-
-
- case MGT_BEACON: /* Dissect protocol payload fields */
- COL_SHOW_INFO_CONST (pinfo->fd, "Beacon frame");
-
- if (tree)
- {
- fixed_tree = get_fixed_parameter_tree (tree, tvb, MGT_FRAME_LEN, 12);
-
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN, FIELD_TIMESTAMP);
-
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN + 8,
- FIELD_BEACON_INTERVAL);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN + 10,
- FIELD_CAP_INFO);
-
- next_idx = MGT_FRAME_LEN + 12; /* Size of fixed fields */
- tagged_parameter_tree_len =
- tvb_reported_length_remaining(tvb, next_idx + 4);
- tagged_tree = get_tagged_parameter_tree (tree, tvb, next_idx,
- tagged_parameter_tree_len);
-
- while (tagged_parameter_tree_len > 0) {
- if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
- break;
- next_idx +=next_len;
- tagged_parameter_tree_len -= next_len;
- }
- }
- break;
-
-
-
- case MGT_ATIM:
- COL_SHOW_INFO_CONST (pinfo->fd, "ATIM");
- if (tree)
- {
- }
- break;
-
- case MGT_DISASS:
- COL_SHOW_INFO_CONST (pinfo->fd, "Dissassociate");
- if (tree)
- {
- fixed_tree = get_fixed_parameter_tree (tree, tvb, MGT_FRAME_LEN, cap_len);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN, FIELD_REASON_CODE);
- }
- break;
-
- case MGT_AUTHENTICATION:
- COL_SHOW_INFO_CONST (pinfo->fd, "Authentication");
- if (IS_WEP(COOK_FLAGS(fcf)))
- {
- int pkt_len = tvb_reported_length (tvb);
- int cap_len = tvb_length (tvb);
-
- if (tree)
- get_wep_parameter_tree (tree, tvb, MGT_FRAME_LEN, pkt_len);
- pkt_len = MAX (pkt_len - 8 - MGT_FRAME_LEN, 0);
- cap_len = MIN (pkt_len, MAX (cap_len - 8 - MGT_FRAME_LEN, 0));
- next_tvb = tvb_new_subset (tvb, MGT_FRAME_LEN + 4, cap_len, pkt_len);
- dissect_data (next_tvb, 0, pinfo, tree);
- }
- else
- {
- if (tree)
- {
- fixed_tree = get_fixed_parameter_tree (tree, tvb, MGT_FRAME_LEN, 6);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN, FIELD_AUTH_ALG);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN + 2,
- FIELD_AUTH_TRANS_SEQ);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN + 4,
- FIELD_STATUS_CODE);
-
- next_idx = MGT_FRAME_LEN + 6; /* Size of fixed fields */
-
- tagged_parameter_tree_len =
- tvb_reported_length_remaining(tvb, next_idx + 4);
- if (tagged_parameter_tree_len != 0)
- {
- tagged_tree = get_tagged_parameter_tree (tree,
- tvb,
- next_idx,
- tagged_parameter_tree_len);
-
- while (tagged_parameter_tree_len > 0) {
- if ((next_len=add_tagged_field (tagged_tree, tvb, next_idx))==0)
- break;
- next_idx +=next_len;
- tagged_parameter_tree_len -= next_len;
- }
- }
- }
- }
- break;
-
- case MGT_DEAUTHENTICATION:
- COL_SHOW_INFO_CONST (pinfo->fd, "Deauthentication");
- if (tree)
- {
- fixed_tree = get_fixed_parameter_tree (hdr_tree, tvb, MGT_FRAME_LEN, 2);
- add_fixed_field (fixed_tree, tvb, MGT_FRAME_LEN, FIELD_REASON_CODE);
- }
- break;
-
-
-
- case CTRL_PS_POLL:
- COL_SHOW_INFO_CONST (pinfo->fd, "Power-Save poll");
-
- src = tvb_get_ptr (tvb, 10, 6);
- dst = tvb_get_ptr (tvb, 4, 6);
-
- set_src_addr_cols(pinfo, src, "BSSID");
- set_dst_addr_cols(pinfo, dst, "BSSID");
-
- if (tree)
- {
- proto_tree_add_ether (hdr_tree, hf_addr_bssid, tvb, 4, 6,
- tvb_get_ptr (tvb, 4, 6));
-
- proto_tree_add_ether (hdr_tree, hf_addr_ta, tvb, 10, 6,
- tvb_get_ptr (tvb, 10, 6));
-
- }
- break;
-
-
-
- case CTRL_RTS:
- COL_SHOW_INFO_CONST (pinfo->fd, "Request-to-send");
- src = tvb_get_ptr (tvb, 10, 6);
- dst = tvb_get_ptr (tvb, 4, 6);
-
- set_src_addr_cols(pinfo, src, "TA");
- set_dst_addr_cols(pinfo, dst, "RA");
-
- if (tree)
- {
- proto_tree_add_ether (hdr_tree, hf_addr_ra, tvb, 4, 6,
- tvb_get_ptr (tvb, 4, 6));
-
- proto_tree_add_ether (hdr_tree, hf_addr_ta, tvb, 10, 6,
- tvb_get_ptr (tvb, 10, 6));
-
- }
- break;
-
-
-
- case CTRL_CTS:
- COL_SHOW_INFO_CONST (pinfo->fd, "Clear-to-send");
-
- dst = tvb_get_ptr (tvb, 4, 6);
-
- set_dst_addr_cols(pinfo, dst, "RA");
-
- if (tree)
- {
- proto_tree_add_ether (hdr_tree, hf_addr_ra, tvb, 4, 6,
- tvb_get_ptr (tvb, 4, 6));
-
- }
- break;
-
-
-
- case CTRL_ACKNOWLEDGEMENT:
- COL_SHOW_INFO_CONST (pinfo->fd, "Acknowledgement");
-
- dst = tvb_get_ptr (tvb, 4, 6);
-
- set_dst_addr_cols(pinfo, dst, "RA");
-
- if (tree)
- proto_tree_add_ether (hdr_tree, hf_addr_ra, tvb, 4, 6,
- tvb_get_ptr (tvb, 4, 6));
- break;
-
-
-
- case CTRL_CFP_END:
- COL_SHOW_INFO_CONST (pinfo->fd, "CF-End (Control-frame)");
-
- src = tvb_get_ptr (tvb, 10, 6);
- dst = tvb_get_ptr (tvb, 4, 6);
-
- set_src_addr_cols(pinfo, src, "BSSID");
- set_dst_addr_cols(pinfo, dst, "RA");
-
- if (tree)
- {
- proto_tree_add_ether (hdr_tree, hf_addr_ra, tvb, 4, 6,
- tvb_get_ptr (tvb, 4, 6));
- proto_tree_add_ether (hdr_tree, hf_addr_bssid, tvb, 10, 6,
- tvb_get_ptr (tvb, 10, 6));
- }
+ case MGT_FRAME:
+ case DATA_FRAME:
break;
+ default:
+ return;
+ }
-
- case CTRL_CFP_ENDACK:
- COL_SHOW_INFO_CONST (pinfo->fd, "CF-End + CF-Ack (Control-frame)");
-
- src = tvb_get_ptr (tvb, 10, 6);
- dst = tvb_get_ptr (tvb, 4, 6);
-
- set_src_addr_cols(pinfo, src, "BSSID");
- set_dst_addr_cols(pinfo, dst, "RA");
+ /*
+ * For WEP-encrypted frames, dissect the WEP parameters and
+ * display the payload as data.
+ *
+ * XXX - allow the key to be specified, and, if it is, decrypt
+ * the payload and dissect it?
+ */
+ if (IS_WEP(COOK_FLAGS(fcf)))
+ {
+ int pkt_len = tvb_reported_length (tvb);
+ int cap_len = tvb_length (tvb);
if (tree)
- {
- proto_tree_add_ether (hdr_tree, hf_addr_ra, tvb, 4, 6,
- tvb_get_ptr (tvb, 4, 6));
-
- proto_tree_add_ether (hdr_tree, hf_addr_bssid, tvb, 10, 6,
- tvb_get_ptr (tvb, 10, 6));
+ {
+ get_wep_parameter_tree (tree, tvb, hdr_len, pkt_len);
+ pkt_len -= hdr_len + 4;
+ cap_len -= hdr_len + 4;
+
+ /*
+ * OK, pkt_len and cap_len have had the length of the 802.11
+ * header and WEP parameters subtracted.
+ *
+ * If there's anything left:
+ *
+ * if cap_len is greater than or equal to pkt_len (i.e., we
+ * captured the entire packet), subtract the length of the
+ * WEP CRC from cap_len;
+ *
+ * if cap_len is from 1 to 3 bytes less than pkt_len (i.e.,
+ * we captured some but not all of the WEP CRC), subtract
+ * the length of the part of the WEP CRC we captured from
+ * crc_len;
+ *
+ * otherwise, (i.e., we captured none of the WEP CRC),
+ * leave cap_len alone;
+ *
+ * and subtract the length of the WEP CRC from pkt_len.
+ */
+ if (cap_len >= pkt_len)
+ cap_len -= 4;
+ else if ((pkt_len - cap_len) >= 1 && (pkt_len - cap_len) <= 3)
+ cap_len -= 4 - (pkt_len - cap_len);
+ pkt_len -= 4;
+ if (cap_len > 0 && pkt_len > 0)
+ dissect_data (tvb, hdr_len + 4, pinfo, tree);
}
- break;
-
-
-
- case DATA:
- COL_SHOW_INFO_CONST (pinfo->fd, "Data");
- hdr_len = find_header_length (tvb_get_ptr (tvb, 0, cap_len), 0);
-
- next_tvb = tvb_new_subset (tvb, hdr_len, -1, -1);
-
- if (IS_WEP(COOK_FLAGS(fcf)))
- {
- int pkt_len = tvb_reported_length (next_tvb);
- int cap_len = tvb_length (next_tvb);
-
- if (tree)
- get_wep_parameter_tree (tree, next_tvb, 0, pkt_len);
- pkt_len = MAX (pkt_len - 8, 0);
- cap_len = MIN (pkt_len, MAX (cap_len - 8, 0));
- next_tvb = tvb_new_subset (tvb, hdr_len + 4, cap_len, pkt_len);
- dissect_data (next_tvb, 0, pinfo, tree);
- }
- else
- call_dissector (llc_handle, next_tvb, pinfo, tree);
- break;
-
-
-
- case DATA_CF_ACK:
- COL_SHOW_INFO_CONST (pinfo->fd, "Data + CF-Acknowledgement");
- hdr_len = find_header_length (tvb_get_ptr (tvb, 0, cap_len), 0);
-
- next_tvb = tvb_new_subset (tvb, hdr_len, -1, -1);
-
- if (IS_WEP(COOK_FLAGS(fcf)))
- {
- int pkt_len = tvb_reported_length (next_tvb);
- int cap_len = tvb_length (next_tvb);
-
- if (tree)
- get_wep_parameter_tree (tree, next_tvb, 0, pkt_len);
- pkt_len = MAX (pkt_len - 8, 0);
- cap_len = MIN (pkt_len, MAX (cap_len - 8, 0));
- next_tvb = tvb_new_subset (tvb, hdr_len + 4, cap_len, pkt_len);
- dissect_data (next_tvb, 0, pinfo, tree);
- }
- else
- call_dissector (llc_handle, next_tvb, pinfo, tree);
- break;
-
-
-
- case DATA_CF_POLL:
- COL_SHOW_INFO_CONST (pinfo->fd, "Data + CF-Poll");
- hdr_len = find_header_length (tvb_get_ptr (tvb, 0, cap_len), 0);
- next_tvb = tvb_new_subset (tvb, hdr_len, -1, -1);
-
- if (IS_WEP(COOK_FLAGS(fcf)))
- {
- int pkt_len = tvb_reported_length (next_tvb);
- int cap_len = tvb_length (next_tvb);
-
- if (tree)
- get_wep_parameter_tree (tree, next_tvb, 0, pkt_len);
- pkt_len = MAX (pkt_len - 8, 0);
- cap_len = MIN (pkt_len, MAX (cap_len - 8, 0));
- next_tvb = tvb_new_subset (tvb, hdr_len + 4, cap_len, pkt_len);
- dissect_data (next_tvb, 0, pinfo, tree);
- }
- else
- call_dissector (llc_handle, next_tvb, pinfo, tree);
- break;
-
-
-
- case DATA_CF_ACK_POLL:
- COL_SHOW_INFO_CONST (pinfo->fd, "Data + CF-Acknowledgement/Poll");
- hdr_len = find_header_length (tvb_get_ptr (tvb, 0, cap_len), 0);
- next_tvb = tvb_new_subset (tvb, hdr_len, -1, -1);
-
- if (IS_WEP(COOK_FLAGS(fcf)))
- {
- int pkt_len = tvb_reported_length (next_tvb);
- int cap_len = tvb_length (next_tvb);
-
- if (tree)
- get_wep_parameter_tree (tree, next_tvb, 0, pkt_len);
- pkt_len = MAX (pkt_len - 8, 0);
- cap_len = MIN (pkt_len, MAX (cap_len - 8, 0));
- next_tvb = tvb_new_subset (tvb, hdr_len + 4, cap_len, pkt_len);
- dissect_data (next_tvb, 0, pinfo, tree);
- }
- else
- call_dissector (llc_handle, next_tvb, pinfo, tree);
- break;
-
-
-
- case DATA_NULL_FUNCTION:
- COL_SHOW_INFO_CONST (pinfo->fd, "Null function (No data)");
- break;
-
-
- case DATA_CF_ACK_NOD:
- COL_SHOW_INFO_CONST (pinfo->fd, "Data + Acknowledgement (No data)");
- break;
-
-
- case DATA_CF_POLL_NOD:
- COL_SHOW_INFO_CONST (pinfo->fd, "Data + CF-Poll (No data)");
- break;
+ return;
+ }
+ /*
+ * Now dissect the body of a non-WEP-encrypted frame.
+ */
+ next_tvb = tvb_new_subset (tvb, hdr_len, -1, -1);
+ switch (COOK_FRAME_TYPE (fcf))
+ {
- case DATA_CF_ACK_POLL_NOD:
- COL_SHOW_INFO_CONST (pinfo->fd, "Data + CF-Acknowledgement/Poll (No data)");
+ case MGT_FRAME:
+ dissect_ieee80211_mgt (fcf, next_tvb, pinfo, tree);
break;
- default:
- COL_SHOW_INFO_CONST (pinfo->fd, "Unrecognized (Reserved frame)");
+ case DATA_FRAME:
+ call_dissector (llc_handle, next_tvb, pinfo, tree);
break;
}
}
-
void
proto_register_wlan (void)
{
+ static const value_string frame_type[] = {
+ {MGT_FRAME, "Management frame"},
+ {CONTROL_FRAME, "Control frame"},
+ {DATA_FRAME, "Data frame"},
+ {0, NULL}
+ };
static const value_string tofrom_ds[] = {
- {0, "Not leaving DS or network is operating in AD-HOC mode ( To DS: 0 From DS: 0)"},
- {1, "Frame is exiting DS (To DS: 0 From DS: 1)"},
- {2, "Frame is entering DS (To DS: 1 From DS: 0)"},
- {3, "Frame part of WDS (To DS: 1 From DS: 1)"},
+ {0, "Not leaving DS or network is operating in AD-HOC mode (To DS: 0 From DS: 0)"},
+ {FLAG_TO_DS, "Frame is entering DS (To DS: 1 From DS: 0)"},
+ {FLAG_FROM_DS, "Frame is exiting DS (To DS: 0 From DS: 1)"},
+ {FLAG_TO_DS|FLAG_FROM_DS, "Frame part of WDS (To DS: 1 From DS: 1)"},
{0, NULL}
};
{0x00, NULL}
};
-
-
static hf_register_info hf[] = {
{&hf_fc_field,
{"Frame Control Field", "wlan.fc", FT_UINT16, BASE_HEX, NULL, 0,
"MAC Protocol version", HFILL }}, /* 0 */
{&hf_fc_frame_type,
- {"Type", "wlan.fc.type", FT_UINT8, BASE_DEC, NULL, 0,
+ {"Type", "wlan.fc.type", FT_UINT8, BASE_DEC, VALS(frame_type), 0,
"Frame type", HFILL }},
{&hf_fc_frame_subtype,
{"Subtype", "wlan.fc.subtype", FT_UINT8, BASE_DEC, NULL, 0,
"Frame subtype", HFILL }}, /* 2 */
+ {&hf_fc_frame_type_subtype,
+ {"Type/Subtype", "wlan.fc.type_subtype", FT_UINT16, BASE_DEC, VALS(frame_type_subtype_vals), 0,
+ "Type and subtype combined", HFILL }},
+
{&hf_fc_flags,
{"Protocol Flags", "wlan.flags", FT_UINT8, BASE_HEX, NULL, 0,
"Protocol flags", HFILL }},
{&hf_fc_data_ds,
- {"DS status", "wlan.fc.ds", FT_UINT8, BASE_HEX, TFS (&tofrom_ds), 0,
+ {"DS status", "wlan.fc.ds", FT_UINT8, BASE_HEX, VALS (&tofrom_ds), 0,
"Data-frame DS-traversal status", HFILL }}, /* 3 */
{&hf_fc_to_ds,
- {"To DS", "wlan.fc.tods", FT_BOOLEAN, 8, TFS (&tods_flag), 0x1,
+ {"To DS", "wlan.fc.tods", FT_BOOLEAN, 8, TFS (&tods_flag), FLAG_TO_DS,
"To DS flag", HFILL }}, /* 4 */
{&hf_fc_from_ds,
- {"From DS", "wlan.fc.fromds", FT_BOOLEAN, 8, TFS (&fromds_flag), 0x2,
+ {"From DS", "wlan.fc.fromds", FT_BOOLEAN, 8, TFS (&fromds_flag), FLAG_FROM_DS,
"From DS flag", HFILL }}, /* 5 */
{&hf_fc_more_frag,
- {"Fragments", "wlan.fc.frag", FT_BOOLEAN, 8, TFS (&more_frags), 0x4,
+ {"Fragments", "wlan.fc.frag", FT_BOOLEAN, 8, TFS (&more_frags), FLAG_MORE_FRAGMENTS,
"More Fragments flag", HFILL }}, /* 6 */
{&hf_fc_retry,
- {"Retry", "wlan.fc.retry", FT_BOOLEAN, 8, TFS (&retry_flags), 0x8,
+ {"Retry", "wlan.fc.retry", FT_BOOLEAN, 8, TFS (&retry_flags), FLAG_RETRY,
"Retransmission flag", HFILL }},
{&hf_fc_pwr_mgt,
- {"PWR MGT", "wlan.fc.pwrmgt", FT_BOOLEAN, 8, TFS (&pm_flags), 0x10,
+ {"PWR MGT", "wlan.fc.pwrmgt", FT_BOOLEAN, 8, TFS (&pm_flags), FLAG_POWER_MGT,
"Power management status", HFILL }},
{&hf_fc_more_data,
- {"More Data", "wlan.fc.moredata", FT_BOOLEAN, 8, TFS (&md_flags), 0x20,
+ {"More Data", "wlan.fc.moredata", FT_BOOLEAN, 8, TFS (&md_flags), FLAG_MORE_DATA,
"More data flag", HFILL }},
{&hf_fc_wep,
- {"WEP flag", "wlan.fc.wep", FT_BOOLEAN, 8, TFS (&wep_flags), 0x40,
+ {"WEP flag", "wlan.fc.wep", FT_BOOLEAN, 8, TFS (&wep_flags), FLAG_WEP,
"WEP flag", HFILL }},
{&hf_fc_order,
- {"Order flag", "wlan.fc.order", FT_BOOLEAN, 8, TFS (&order_flags), 0x80,
+ {"Order flag", "wlan.fc.order", FT_BOOLEAN, 8, TFS (&order_flags), FLAG_ORDER,
"Strictly ordered flag", HFILL }},
{&hf_assoc_id,
"Basic Service Set ID", HFILL }},
{&hf_frag_number,
- {"Fragment number", "wlan.frag", FT_UINT16, BASE_HEX, NULL, 0,
+ {"Fragment number", "wlan.frag", FT_UINT16, BASE_DEC, NULL, 0,
"Fragment number", HFILL }},
{&hf_seq_number,
- {"Sequence number", "wlan.seq", FT_UINT16, BASE_HEX, NULL, 0,
- "Fragment number", HFILL }},
+ {"Sequence number", "wlan.seq", FT_UINT16, BASE_DEC, NULL, 0,
+ "Sequence number", HFILL }},
{&hf_fcs,
{"Frame Check Sequence (not verified)", "wlan.fcs", FT_UINT32, BASE_HEX,
NULL, 0, "", HFILL }},
+ {&hf_wep_iv,
+ {"Initialization Vector", "wlan.wep.iv", FT_UINT24, BASE_HEX, NULL, 0,
+ "Initialization Vector", HFILL }},
+
+ {&hf_wep_key,
+ {"Key", "wlan.wep.key", FT_UINT8, BASE_DEC, NULL, 0,
+ "Key", HFILL }},
+
+ {&hf_wep_crc,
+ {"WEP CRC (not verified)", "wlan.wep.crc", FT_UINT32, BASE_HEX, NULL, 0,
+ "WEP CRC", HFILL }},
+ };
+
+ static hf_register_info ff[] = {
{&ff_timestamp,
- {"Timestamp", "wlan.fixed.timestamp", FT_STRING, BASE_NONE,
+ {"Timestamp", "wlan_mgt.fixed.timestamp", FT_STRING, BASE_NONE,
NULL, 0, "", HFILL }},
{&ff_auth_alg,
- {"Authentication Algorithm", "wlan.fixed.auth.alg",
+ {"Authentication Algorithm", "wlan_mgt.fixed.auth.alg",
FT_UINT16, BASE_DEC, VALS (&auth_alg), 0, "", HFILL }},
{&ff_beacon_interval,
- {"Beacon Interval", "wlan.fixed.beacon", FT_DOUBLE, BASE_DEC, NULL, 0,
+ {"Beacon Interval", "wlan_mgt.fixed.beacon", FT_DOUBLE, BASE_DEC, NULL, 0,
"", HFILL }},
{&hf_fixed_parameters,
- {"Fixed parameters", "wlan.fixed.all", FT_UINT16, BASE_DEC, NULL, 0,
+ {"Fixed parameters", "wlan_mgt.fixed.all", FT_UINT16, BASE_DEC, NULL, 0,
"", HFILL }},
{&hf_tagged_parameters,
- {"Tagged parameters", "wlan.tagged.all", FT_UINT16, BASE_DEC, NULL, 0,
- "", HFILL }},
-
- {&hf_wep_parameters,
- {"WEP parameters", "wlan.wep.all", FT_STRING, BASE_NONE, NULL, 0,
+ {"Tagged parameters", "wlan_mgt.tagged.all", FT_UINT16, BASE_DEC, NULL, 0,
"", HFILL }},
- {&hf_wep_iv,
- {"Initialization Vector", "wlan.wep.iv", FT_UINT32, BASE_HEX, NULL, 0,
- "Initialization Vector", HFILL }},
-
- {&hf_wep_key,
- {"Key", "wlan.wep.key", FT_UINT32, BASE_DEC, NULL, 0,
- "Key", HFILL }},
-
- {&hf_wep_crc,
- {"WEP CRC (not verified)", "wlan.wep.crc", FT_UINT32, BASE_HEX, NULL, 0,
- "WEP CRC", HFILL }},
-
{&ff_capture,
- {"Capabilities", "wlan.fixed.capabilities", FT_UINT16, BASE_HEX, NULL, 0,
+ {"Capabilities", "wlan_mgt.fixed.capabilities", FT_UINT16, BASE_HEX, NULL, 0,
"Capability information", HFILL }},
{&ff_cf_sta_poll,
- {"CFP participation capabilities", "wlan.fixed.capabilities.cfpoll.sta",
+ {"CFP participation capabilities", "wlan_mgt.fixed.capabilities.cfpoll.sta",
FT_UINT16, BASE_HEX, VALS (&sta_cf_pollable), 0,
"CF-Poll capabilities for a STA", HFILL }},
{&ff_cf_ap_poll,
- {"CFP participation capabilities", "wlan.fixed.capabilities.cfpoll.ap",
+ {"CFP participation capabilities", "wlan_mgt.fixed.capabilities.cfpoll.ap",
FT_UINT16, BASE_HEX, VALS (&ap_cf_pollable), 0,
"CF-Poll capabilities for an AP", HFILL }},
{&ff_cf_ess,
- {"ESS capabilities", "wlan.fixed.capabilities.ess",
+ {"ESS capabilities", "wlan_mgt.fixed.capabilities.ess",
FT_BOOLEAN, 8, TFS (&cf_ess_flags), 0x0001, "ESS capabilities", HFILL }},
{&ff_cf_ibss,
- {"IBSS status", "wlan.fixed.capabilities.ibss",
+ {"IBSS status", "wlan_mgt.fixed.capabilities.ibss",
FT_BOOLEAN, 8, TFS (&cf_ibss_flags), 0x0002, "IBSS participation", HFILL }},
{&ff_cf_privacy,
- {"Privacy", "wlan.fixed.capabilities.privacy",
+ {"Privacy", "wlan_mgt.fixed.capabilities.privacy",
FT_BOOLEAN, 8, TFS (&cf_privacy_flags), 0x0010, "WEP support", HFILL }},
{&ff_cf_preamble,
- {"Short Preamble", "wlan.fixed.capabilities.preamble",
+ {"Short Preamble", "wlan_mgt.fixed.capabilities.preamble",
FT_BOOLEAN, 8, TFS (&cf_preamble_flags), 0x0020, "Short Preamble", HFILL }},
{&ff_cf_pbcc,
- {"PBCC", "wlan.fixed.capabilities.pbcc",
+ {"PBCC", "wlan_mgt.fixed.capabilities.pbcc",
FT_BOOLEAN, 8, TFS (&cf_pbcc_flags), 0x0040, "PBCC Modulation", HFILL }},
{&ff_cf_agility,
- {"Channel Agility", "wlan.fixed.capabilities.agility",
+ {"Channel Agility", "wlan_mgt.fixed.capabilities.agility",
FT_BOOLEAN, 8, TFS (&cf_agility_flags), 0x0080, "Channel Agility", HFILL }},
-
{&ff_auth_seq,
- {"Authentication SEQ", "wlan.fixed.auth_seq",
+ {"Authentication SEQ", "wlan_mgt.fixed.auth_seq",
FT_UINT16, BASE_HEX, NULL, 0, "Authentication sequence number", HFILL }},
{&ff_assoc_id,
- {"Association ID", "wlan.fixed.aid",
+ {"Association ID", "wlan_mgt.fixed.aid",
FT_UINT16, BASE_HEX, NULL, 0, "Association ID", HFILL }},
{&ff_listen_ival,
- {"Listen Interval", "wlan.fixed.listen_ival",
+ {"Listen Interval", "wlan_mgt.fixed.listen_ival",
FT_UINT16, BASE_HEX, NULL, 0, "Listen Interval", HFILL }},
{&ff_current_ap,
- {"Current AP", "wlan.fixed.current_ap",
+ {"Current AP", "wlan_mgt.fixed.current_ap",
FT_ETHER, BASE_NONE, NULL, 0, "MAC address of current AP", HFILL }},
{&ff_reason,
- {"Reason code", "wlan.fixed.reason_code",
+ {"Reason code", "wlan_mgt.fixed.reason_code",
FT_UINT16, BASE_HEX, VALS (&reason_codes), 0,
"Reason for unsolicited notification", HFILL }},
{&ff_status_code,
- {"Status code", "wlan.fixed.status_code",
+ {"Status code", "wlan_mgt.fixed.status_code",
FT_UINT16, BASE_HEX, VALS (&status_codes), 0,
"Status of requested event", HFILL }},
{&tag_number,
- {"Tag", "wlan.tag.number",
+ {"Tag", "wlan_mgt.tag.number",
FT_UINT16, BASE_DEC, NULL, 0,
"Element ID", HFILL }},
{&tag_length,
- {"Tag length", "wlan.tag.length",
+ {"Tag length", "wlan_mgt.tag.length",
FT_UINT16, BASE_DEC, NULL, 0, "Length of tag", HFILL }},
{&tag_interpretation,
- {"Tag interpretation", "wlan.tag.interpretation",
+ {"Tag interpretation", "wlan_mgt.tag.interpretation",
FT_STRING, BASE_NONE, NULL, 0, "Interpretation of tag", HFILL }}
-
};
-
- static gint *tree_array[] = { &ett_80211,
+ static gint *tree_array[] = {
+ &ett_80211,
&ett_fc_tree,
&ett_proto_flags,
+ &ett_80211_mgt,
&ett_fixed_parameters,
&ett_tagged_parameters,
&ett_wep_parameters,
proto_wlan = proto_register_protocol ("IEEE 802.11 wireless LAN",
"IEEE 802.11", "wlan");
proto_register_field_array (proto_wlan, hf, array_length (hf));
+ proto_wlan_mgt = proto_register_protocol ("IEEE 802.11 wireless LAN management frame",
+ "802.11 MGT", "wlan_mgt");
+ proto_register_field_array (proto_wlan_mgt, ff, array_length (ff));
proto_register_subtree_array (tree_array, array_length (tree_array));
}