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authormax <max>2002-12-08 16:26:16 (UTC)
committer max <max>2002-12-08 16:26:16 (UTC)
commita2840f80792c7e40ee3b44be0ec48302d8816cc0 (patch) (unidiff)
tree21318df2f9611818f4a0fe501381b19ae753e493
parent5fd10ba0772bb87598a3f4fd2e0fff8c3d4dbe43 (diff)
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macaddress-fix
Diffstat (more/less context) (ignore whitespace changes)
-rw-r--r--noncore/net/wellenreiter/libwellenreiter/source/sniff.cc23
1 files changed, 19 insertions, 4 deletions
diff --git a/noncore/net/wellenreiter/libwellenreiter/source/sniff.cc b/noncore/net/wellenreiter/libwellenreiter/source/sniff.cc
index 81eccab..3c227ab 100644
--- a/noncore/net/wellenreiter/libwellenreiter/source/sniff.cc
+++ b/noncore/net/wellenreiter/libwellenreiter/source/sniff.cc
@@ -146,73 +146,88 @@ void process_packets(const struct pcap_pkthdr *pkthdr, const unsigned char *pack
146 146
147 case T_DATA: 147 case T_DATA:
148 wl_loginfo("Received date frame, not implemented yet"); 148 wl_loginfo("Received date frame, not implemented yet");
149 break; 149 break;
150 150
151 default: 151 default:
152 wl_logerr("Unknown IEEE802.11 frame type (%d)", FC_TYPE(fc)); 152 wl_logerr("Unknown IEEE802.11 frame type (%d)", FC_TYPE(fc));
153 break; 153 break;
154 } 154 }
155} 155}
156 156
157/* This decodes the 802.11b frame header out of the 802.11b packet 157/* This decodes the 802.11b frame header out of the 802.11b packet
158 all the infos is placed into the packetinfo structure */ 158 all the infos is placed into the packetinfo structure */
159int decode_80211b_hdr(const u_char *p,struct packetinfo *ppinfo) 159int decode_80211b_hdr(const u_char *p,struct packetinfo *ppinfo)
160{ 160{
161 const struct mgmt_header_t *mgthdr = (const struct mgmt_header_t *) p; 161 const struct mgmt_header_t *mgthdr = (const struct mgmt_header_t *) p;
162 ppinfo->fcsubtype = FC_SUBTYPE(mgthdr->fc); 162 ppinfo->fcsubtype = FC_SUBTYPE(mgthdr->fc);
163 163
164 /* Get the sender, bssid and dest mac address */ 164 /* Get the sender, bssid and dest mac address */
165 etheraddr_string(mgthdr->bssid,ppinfo->bssid); 165 etheraddr_string(mgthdr->bssid,ppinfo->bssid);
166 etheraddr_string(mgthdr->da,ppinfo->desthwaddr); 166 etheraddr_string(mgthdr->da,ppinfo->desthwaddr);
167 etheraddr_string(mgthdr->sa,ppinfo->sndhwaddr); 167 etheraddr_string(mgthdr->sa,ppinfo->sndhwaddr);
168 ppinfo->fc_wep = FC_WEP(mgthdr->fc); 168 ppinfo->fc_wep = FC_WEP(mgthdr->fc);
169 return 0; 169 return 0;
170} 170}
171 171
172 172
173void etheraddr_string(register const u_char *ep, char *text) 173void etheraddr_string(register const u_char *ep, char *text)
174{ 174{
175 static char hex[] = "0123456789abcdef"; 175 static char hex[] = "0123456789abcdef";
176 register unsigned int i, j; 176 register unsigned int i, j;
177 register char *cp; 177 register char *cp;
178 char buf[sizeof("00:00:00:00:00:00")]; 178 char buf[sizeof("00:00:00:00:00:00\0")];
179 cp = buf; 179 cp = buf;
180 if ((j = *ep >> 4) != 0) 180 if ((j = *ep >> 4) != 0)
181 *cp++ = hex[j]; 181 {
182 *cp++ = hex[j];
183 }
184 else
185 {
186 *cp++ = '0';
187 }
182 *cp++ = hex[*ep++ & 0xf]; 188 *cp++ = hex[*ep++ & 0xf];
183 for (i = 5; (int)--i >= 0;) { 189
190 for (i = 5; (int)--i >= 0;)
191 {
184 *cp++ = ':'; 192 *cp++ = ':';
185 if ((j = *ep >> 4) != 0) 193 if ((j = *ep >> 4) != 0)
186 *cp++ = hex[j]; 194 {
195 *cp++ = hex[j];
196 }
197 else
198 {
199 *cp++ = '0';
200 }
201
187 *cp++ = hex[*ep++ & 0xf]; 202 *cp++ = hex[*ep++ & 0xf];
188 } 203 }
189 *cp = '\0'; 204 *cp = '\0';
190 strcpy(text,buf); 205 strcpy(text,buf);
191} 206}
192 207
193/* beacon handler */ 208/* beacon handler */
194int handle_beacon(u_int16_t fc, const u_char *p,struct packetinfo *ppinfo) 209int handle_beacon(u_int16_t fc, const u_char *p,struct packetinfo *ppinfo)
195{ 210{
196 struct mgmt_body_t pbody; 211 struct mgmt_body_t pbody;
197 int offset = 0; 212 int offset = 0;
198 213
199 /* Get the static informations out of the packet */ 214 /* Get the static informations out of the packet */
200 memset(&pbody, 0, sizeof(pbody)); 215 memset(&pbody, 0, sizeof(pbody));
201 memcpy(&pbody.timestamp, p, 8); 216 memcpy(&pbody.timestamp, p, 8);
202 offset += 8; 217 offset += 8;
203 pbody.beacon_interval = EXTRACT_LE_16BITS(p+offset); 218 pbody.beacon_interval = EXTRACT_LE_16BITS(p+offset);
204 offset += 2; 219 offset += 2;
205 pbody.capability_info = EXTRACT_LE_16BITS(p+offset); 220 pbody.capability_info = EXTRACT_LE_16BITS(p+offset);
206 offset += 2; 221 offset += 2;
207 222
208 /* Gets the different flags out of the capabilities */ 223 /* Gets the different flags out of the capabilities */
209 ppinfo->cap_ESS = CAPABILITY_ESS(pbody.capability_info); 224 ppinfo->cap_ESS = CAPABILITY_ESS(pbody.capability_info);
210 ppinfo->cap_IBSS = CAPABILITY_IBSS(pbody.capability_info); 225 ppinfo->cap_IBSS = CAPABILITY_IBSS(pbody.capability_info);
211 ppinfo->cap_WEP = CAPABILITY_PRIVACY(pbody.capability_info); 226 ppinfo->cap_WEP = CAPABILITY_PRIVACY(pbody.capability_info);
212 227
213 /* Gets the tagged elements out of the packets */ 228 /* Gets the tagged elements out of the packets */
214 while (offset + 1 < ppinfo->pktlen) 229 while (offset + 1 < ppinfo->pktlen)
215 { 230 {
216 switch (*(p + offset)) 231 switch (*(p + offset))
217 { 232 {
218 case E_SSID: 233 case E_SSID: