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[PATCH] ieee80211: Type-o, capbility definition for QoS, and ERP parsing
[linux-2.6] / net / ieee80211 / ieee80211_rx.c
1 /*
2  * Original code based Host AP (software wireless LAN access point) driver
3  * for Intersil Prism2/2.5/3 - hostap.o module, common routines
4  *
5  * Copyright (c) 2001-2002, SSH Communications Security Corp and Jouni Malinen
6  * <jkmaline@cc.hut.fi>
7  * Copyright (c) 2002-2003, Jouni Malinen <jkmaline@cc.hut.fi>
8  * Copyright (c) 2004, Intel Corporation
9  *
10  * This program is free software; you can redistribute it and/or modify
11  * it under the terms of the GNU General Public License version 2 as
12  * published by the Free Software Foundation. See README and COPYING for
13  * more details.
14  */
15
16 #include <linux/compiler.h>
17 #include <linux/config.h>
18 #include <linux/errno.h>
19 #include <linux/if_arp.h>
20 #include <linux/in6.h>
21 #include <linux/in.h>
22 #include <linux/ip.h>
23 #include <linux/kernel.h>
24 #include <linux/module.h>
25 #include <linux/netdevice.h>
26 #include <linux/proc_fs.h>
27 #include <linux/skbuff.h>
28 #include <linux/slab.h>
29 #include <linux/tcp.h>
30 #include <linux/types.h>
31 #include <linux/version.h>
32 #include <linux/wireless.h>
33 #include <linux/etherdevice.h>
34 #include <asm/uaccess.h>
35 #include <linux/ctype.h>
36
37 #include <net/ieee80211.h>
38
39 static inline void ieee80211_monitor_rx(struct ieee80211_device *ieee,
40                                         struct sk_buff *skb,
41                                         struct ieee80211_rx_stats *rx_stats)
42 {
43         struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
44         u16 fc = le16_to_cpu(hdr->frame_ctl);
45
46         skb->dev = ieee->dev;
47         skb->mac.raw = skb->data;
48         skb_pull(skb, ieee80211_get_hdrlen(fc));
49         skb->pkt_type = PACKET_OTHERHOST;
50         skb->protocol = __constant_htons(ETH_P_80211_RAW);
51         memset(skb->cb, 0, sizeof(skb->cb));
52         netif_rx(skb);
53 }
54
55 /* Called only as a tasklet (software IRQ) */
56 static struct ieee80211_frag_entry *ieee80211_frag_cache_find(struct
57                                                               ieee80211_device
58                                                               *ieee,
59                                                               unsigned int seq,
60                                                               unsigned int frag,
61                                                               u8 * src,
62                                                               u8 * dst)
63 {
64         struct ieee80211_frag_entry *entry;
65         int i;
66
67         for (i = 0; i < IEEE80211_FRAG_CACHE_LEN; i++) {
68                 entry = &ieee->frag_cache[i];
69                 if (entry->skb != NULL &&
70                     time_after(jiffies, entry->first_frag_time + 2 * HZ)) {
71                         IEEE80211_DEBUG_FRAG("expiring fragment cache entry "
72                                              "seq=%u last_frag=%u\n",
73                                              entry->seq, entry->last_frag);
74                         dev_kfree_skb_any(entry->skb);
75                         entry->skb = NULL;
76                 }
77
78                 if (entry->skb != NULL && entry->seq == seq &&
79                     (entry->last_frag + 1 == frag || frag == -1) &&
80                     memcmp(entry->src_addr, src, ETH_ALEN) == 0 &&
81                     memcmp(entry->dst_addr, dst, ETH_ALEN) == 0)
82                         return entry;
83         }
84
85         return NULL;
86 }
87
88 /* Called only as a tasklet (software IRQ) */
89 static struct sk_buff *ieee80211_frag_cache_get(struct ieee80211_device *ieee,
90                                                 struct ieee80211_hdr_4addr *hdr)
91 {
92         struct sk_buff *skb = NULL;
93         u16 sc;
94         unsigned int frag, seq;
95         struct ieee80211_frag_entry *entry;
96
97         sc = le16_to_cpu(hdr->seq_ctl);
98         frag = WLAN_GET_SEQ_FRAG(sc);
99         seq = WLAN_GET_SEQ_SEQ(sc);
100
101         if (frag == 0) {
102                 /* Reserve enough space to fit maximum frame length */
103                 skb = dev_alloc_skb(ieee->dev->mtu +
104                                     sizeof(struct ieee80211_hdr_4addr) +
105                                     8 /* LLC */  +
106                                     2 /* alignment */  +
107                                     8 /* WEP */  + ETH_ALEN /* WDS */ );
108                 if (skb == NULL)
109                         return NULL;
110
111                 entry = &ieee->frag_cache[ieee->frag_next_idx];
112                 ieee->frag_next_idx++;
113                 if (ieee->frag_next_idx >= IEEE80211_FRAG_CACHE_LEN)
114                         ieee->frag_next_idx = 0;
115
116                 if (entry->skb != NULL)
117                         dev_kfree_skb_any(entry->skb);
118
119                 entry->first_frag_time = jiffies;
120                 entry->seq = seq;
121                 entry->last_frag = frag;
122                 entry->skb = skb;
123                 memcpy(entry->src_addr, hdr->addr2, ETH_ALEN);
124                 memcpy(entry->dst_addr, hdr->addr1, ETH_ALEN);
125         } else {
126                 /* received a fragment of a frame for which the head fragment
127                  * should have already been received */
128                 entry = ieee80211_frag_cache_find(ieee, seq, frag, hdr->addr2,
129                                                   hdr->addr1);
130                 if (entry != NULL) {
131                         entry->last_frag = frag;
132                         skb = entry->skb;
133                 }
134         }
135
136         return skb;
137 }
138
139 /* Called only as a tasklet (software IRQ) */
140 static int ieee80211_frag_cache_invalidate(struct ieee80211_device *ieee,
141                                            struct ieee80211_hdr_4addr *hdr)
142 {
143         u16 sc;
144         unsigned int seq;
145         struct ieee80211_frag_entry *entry;
146
147         sc = le16_to_cpu(hdr->seq_ctl);
148         seq = WLAN_GET_SEQ_SEQ(sc);
149
150         entry = ieee80211_frag_cache_find(ieee, seq, -1, hdr->addr2,
151                                           hdr->addr1);
152
153         if (entry == NULL) {
154                 IEEE80211_DEBUG_FRAG("could not invalidate fragment cache "
155                                      "entry (seq=%u)\n", seq);
156                 return -1;
157         }
158
159         entry->skb = NULL;
160         return 0;
161 }
162
163 #ifdef NOT_YET
164 /* ieee80211_rx_frame_mgtmt
165  *
166  * Responsible for handling management control frames
167  *
168  * Called by ieee80211_rx */
169 static inline int
170 ieee80211_rx_frame_mgmt(struct ieee80211_device *ieee, struct sk_buff *skb,
171                         struct ieee80211_rx_stats *rx_stats, u16 type,
172                         u16 stype)
173 {
174         if (ieee->iw_mode == IW_MODE_MASTER) {
175                 printk(KERN_DEBUG "%s: Master mode not yet suppported.\n",
176                        ieee->dev->name);
177                 return 0;
178 /*
179   hostap_update_sta_ps(ieee, (struct hostap_ieee80211_hdr_4addr *)
180   skb->data);*/
181         }
182
183         if (ieee->hostapd && type == WLAN_FC_TYPE_MGMT) {
184                 if (stype == WLAN_FC_STYPE_BEACON &&
185                     ieee->iw_mode == IW_MODE_MASTER) {
186                         struct sk_buff *skb2;
187                         /* Process beacon frames also in kernel driver to
188                          * update STA(AP) table statistics */
189                         skb2 = skb_clone(skb, GFP_ATOMIC);
190                         if (skb2)
191                                 hostap_rx(skb2->dev, skb2, rx_stats);
192                 }
193
194                 /* send management frames to the user space daemon for
195                  * processing */
196                 ieee->apdevstats.rx_packets++;
197                 ieee->apdevstats.rx_bytes += skb->len;
198                 prism2_rx_80211(ieee->apdev, skb, rx_stats, PRISM2_RX_MGMT);
199                 return 0;
200         }
201
202         if (ieee->iw_mode == IW_MODE_MASTER) {
203                 if (type != WLAN_FC_TYPE_MGMT && type != WLAN_FC_TYPE_CTRL) {
204                         printk(KERN_DEBUG "%s: unknown management frame "
205                                "(type=0x%02x, stype=0x%02x) dropped\n",
206                                skb->dev->name, type, stype);
207                         return -1;
208                 }
209
210                 hostap_rx(skb->dev, skb, rx_stats);
211                 return 0;
212         }
213
214         printk(KERN_DEBUG "%s: hostap_rx_frame_mgmt: management frame "
215                "received in non-Host AP mode\n", skb->dev->name);
216         return -1;
217 }
218 #endif
219
220 /* See IEEE 802.1H for LLC/SNAP encapsulation/decapsulation */
221 /* Ethernet-II snap header (RFC1042 for most EtherTypes) */
222 static unsigned char rfc1042_header[] = { 0xaa, 0xaa, 0x03, 0x00, 0x00, 0x00 };
223
224 /* Bridge-Tunnel header (for EtherTypes ETH_P_AARP and ETH_P_IPX) */
225 static unsigned char bridge_tunnel_header[] =
226     { 0xaa, 0xaa, 0x03, 0x00, 0x00, 0xf8 };
227 /* No encapsulation header if EtherType < 0x600 (=length) */
228
229 /* Called by ieee80211_rx_frame_decrypt */
230 static int ieee80211_is_eapol_frame(struct ieee80211_device *ieee,
231                                     struct sk_buff *skb)
232 {
233         struct net_device *dev = ieee->dev;
234         u16 fc, ethertype;
235         struct ieee80211_hdr_3addr *hdr;
236         u8 *pos;
237
238         if (skb->len < 24)
239                 return 0;
240
241         hdr = (struct ieee80211_hdr_3addr *)skb->data;
242         fc = le16_to_cpu(hdr->frame_ctl);
243
244         /* check that the frame is unicast frame to us */
245         if ((fc & (IEEE80211_FCTL_TODS | IEEE80211_FCTL_FROMDS)) ==
246             IEEE80211_FCTL_TODS &&
247             memcmp(hdr->addr1, dev->dev_addr, ETH_ALEN) == 0 &&
248             memcmp(hdr->addr3, dev->dev_addr, ETH_ALEN) == 0) {
249                 /* ToDS frame with own addr BSSID and DA */
250         } else if ((fc & (IEEE80211_FCTL_TODS | IEEE80211_FCTL_FROMDS)) ==
251                    IEEE80211_FCTL_FROMDS &&
252                    memcmp(hdr->addr1, dev->dev_addr, ETH_ALEN) == 0) {
253                 /* FromDS frame with own addr as DA */
254         } else
255                 return 0;
256
257         if (skb->len < 24 + 8)
258                 return 0;
259
260         /* check for port access entity Ethernet type */
261         pos = skb->data + 24;
262         ethertype = (pos[6] << 8) | pos[7];
263         if (ethertype == ETH_P_PAE)
264                 return 1;
265
266         return 0;
267 }
268
269 /* Called only as a tasklet (software IRQ), by ieee80211_rx */
270 static inline int
271 ieee80211_rx_frame_decrypt(struct ieee80211_device *ieee, struct sk_buff *skb,
272                            struct ieee80211_crypt_data *crypt)
273 {
274         struct ieee80211_hdr_3addr *hdr;
275         int res, hdrlen;
276
277         if (crypt == NULL || crypt->ops->decrypt_mpdu == NULL)
278                 return 0;
279
280         hdr = (struct ieee80211_hdr_3addr *)skb->data;
281         hdrlen = ieee80211_get_hdrlen(le16_to_cpu(hdr->frame_ctl));
282
283         atomic_inc(&crypt->refcnt);
284         res = crypt->ops->decrypt_mpdu(skb, hdrlen, crypt->priv);
285         atomic_dec(&crypt->refcnt);
286         if (res < 0) {
287                 IEEE80211_DEBUG_DROP("decryption failed (SA=" MAC_FMT
288                                      ") res=%d\n", MAC_ARG(hdr->addr2), res);
289                 if (res == -2)
290                         IEEE80211_DEBUG_DROP("Decryption failed ICV "
291                                              "mismatch (key %d)\n",
292                                              skb->data[hdrlen + 3] >> 6);
293                 ieee->ieee_stats.rx_discards_undecryptable++;
294                 return -1;
295         }
296
297         return res;
298 }
299
300 /* Called only as a tasklet (software IRQ), by ieee80211_rx */
301 static inline int
302 ieee80211_rx_frame_decrypt_msdu(struct ieee80211_device *ieee,
303                                 struct sk_buff *skb, int keyidx,
304                                 struct ieee80211_crypt_data *crypt)
305 {
306         struct ieee80211_hdr_3addr *hdr;
307         int res, hdrlen;
308
309         if (crypt == NULL || crypt->ops->decrypt_msdu == NULL)
310                 return 0;
311
312         hdr = (struct ieee80211_hdr_3addr *)skb->data;
313         hdrlen = ieee80211_get_hdrlen(le16_to_cpu(hdr->frame_ctl));
314
315         atomic_inc(&crypt->refcnt);
316         res = crypt->ops->decrypt_msdu(skb, keyidx, hdrlen, crypt->priv);
317         atomic_dec(&crypt->refcnt);
318         if (res < 0) {
319                 printk(KERN_DEBUG "%s: MSDU decryption/MIC verification failed"
320                        " (SA=" MAC_FMT " keyidx=%d)\n",
321                        ieee->dev->name, MAC_ARG(hdr->addr2), keyidx);
322                 return -1;
323         }
324
325         return 0;
326 }
327
328 /* All received frames are sent to this function. @skb contains the frame in
329  * IEEE 802.11 format, i.e., in the format it was sent over air.
330  * This function is called only as a tasklet (software IRQ). */
331 int ieee80211_rx(struct ieee80211_device *ieee, struct sk_buff *skb,
332                  struct ieee80211_rx_stats *rx_stats)
333 {
334         struct net_device *dev = ieee->dev;
335         struct ieee80211_hdr_4addr *hdr;
336         size_t hdrlen;
337         u16 fc, type, stype, sc;
338         struct net_device_stats *stats;
339         unsigned int frag;
340         u8 *payload;
341         u16 ethertype;
342 #ifdef NOT_YET
343         struct net_device *wds = NULL;
344         struct sk_buff *skb2 = NULL;
345         struct net_device *wds = NULL;
346         int frame_authorized = 0;
347         int from_assoc_ap = 0;
348         void *sta = NULL;
349 #endif
350         u8 dst[ETH_ALEN];
351         u8 src[ETH_ALEN];
352         struct ieee80211_crypt_data *crypt = NULL;
353         int keyidx = 0;
354
355         hdr = (struct ieee80211_hdr_4addr *)skb->data;
356         stats = &ieee->stats;
357
358         if (skb->len < 10) {
359                 printk(KERN_INFO "%s: SKB length < 10\n", dev->name);
360                 goto rx_dropped;
361         }
362
363         fc = le16_to_cpu(hdr->frame_ctl);
364         type = WLAN_FC_GET_TYPE(fc);
365         stype = WLAN_FC_GET_STYPE(fc);
366         sc = le16_to_cpu(hdr->seq_ctl);
367         frag = WLAN_GET_SEQ_FRAG(sc);
368         hdrlen = ieee80211_get_hdrlen(fc);
369
370         /* Put this code here so that we avoid duplicating it in all
371          * Rx paths. - Jean II */
372 #ifdef IW_WIRELESS_SPY          /* defined in iw_handler.h */
373         /* If spy monitoring on */
374         if (ieee->spy_data.spy_number > 0) {
375                 struct iw_quality wstats;
376
377                 wstats.updated = 0;
378                 if (rx_stats->mask & IEEE80211_STATMASK_RSSI) {
379                         wstats.level = rx_stats->rssi;
380                         wstats.updated |= IW_QUAL_LEVEL_UPDATED;
381                 } else
382                         wstats.updated |= IW_QUAL_LEVEL_INVALID;
383
384                 if (rx_stats->mask & IEEE80211_STATMASK_NOISE) {
385                         wstats.noise = rx_stats->noise;
386                         wstats.updated |= IW_QUAL_NOISE_UPDATED;
387                 } else
388                         wstats.updated |= IW_QUAL_NOISE_INVALID;
389
390                 if (rx_stats->mask & IEEE80211_STATMASK_SIGNAL) {
391                         wstats.qual = rx_stats->signal;
392                         wstats.updated |= IW_QUAL_QUAL_UPDATED;
393                 } else
394                         wstats.updated |= IW_QUAL_QUAL_INVALID;
395
396                 /* Update spy records */
397                 wireless_spy_update(ieee->dev, hdr->addr2, &wstats);
398         }
399 #endif                          /* IW_WIRELESS_SPY */
400
401 #ifdef NOT_YET
402         hostap_update_rx_stats(local->ap, hdr, rx_stats);
403 #endif
404
405         if (ieee->iw_mode == IW_MODE_MONITOR) {
406                 ieee80211_monitor_rx(ieee, skb, rx_stats);
407                 stats->rx_packets++;
408                 stats->rx_bytes += skb->len;
409                 return 1;
410         }
411
412         if (ieee->host_decrypt) {
413                 int idx = 0;
414                 if (skb->len >= hdrlen + 3)
415                         idx = skb->data[hdrlen + 3] >> 6;
416                 crypt = ieee->crypt[idx];
417 #ifdef NOT_YET
418                 sta = NULL;
419
420                 /* Use station specific key to override default keys if the
421                  * receiver address is a unicast address ("individual RA"). If
422                  * bcrx_sta_key parameter is set, station specific key is used
423                  * even with broad/multicast targets (this is against IEEE
424                  * 802.11, but makes it easier to use different keys with
425                  * stations that do not support WEP key mapping). */
426
427                 if (!(hdr->addr1[0] & 0x01) || local->bcrx_sta_key)
428                         (void)hostap_handle_sta_crypto(local, hdr, &crypt,
429                                                        &sta);
430 #endif
431
432                 /* allow NULL decrypt to indicate an station specific override
433                  * for default encryption */
434                 if (crypt && (crypt->ops == NULL ||
435                               crypt->ops->decrypt_mpdu == NULL))
436                         crypt = NULL;
437
438                 if (!crypt && (fc & IEEE80211_FCTL_PROTECTED)) {
439                         /* This seems to be triggered by some (multicast?)
440                          * frames from other than current BSS, so just drop the
441                          * frames silently instead of filling system log with
442                          * these reports. */
443                         IEEE80211_DEBUG_DROP("Decryption failed (not set)"
444                                              " (SA=" MAC_FMT ")\n",
445                                              MAC_ARG(hdr->addr2));
446                         ieee->ieee_stats.rx_discards_undecryptable++;
447                         goto rx_dropped;
448                 }
449         }
450 #ifdef NOT_YET
451         if (type != WLAN_FC_TYPE_DATA) {
452                 if (type == WLAN_FC_TYPE_MGMT && stype == WLAN_FC_STYPE_AUTH &&
453                     fc & IEEE80211_FCTL_PROTECTED && ieee->host_decrypt &&
454                     (keyidx = hostap_rx_frame_decrypt(ieee, skb, crypt)) < 0) {
455                         printk(KERN_DEBUG "%s: failed to decrypt mgmt::auth "
456                                "from " MAC_FMT "\n", dev->name,
457                                MAC_ARG(hdr->addr2));
458                         /* TODO: could inform hostapd about this so that it
459                          * could send auth failure report */
460                         goto rx_dropped;
461                 }
462
463                 if (ieee80211_rx_frame_mgmt(ieee, skb, rx_stats, type, stype))
464                         goto rx_dropped;
465                 else
466                         goto rx_exit;
467         }
468 #endif
469
470         /* Data frame - extract src/dst addresses */
471         if (skb->len < IEEE80211_3ADDR_LEN)
472                 goto rx_dropped;
473
474         switch (fc & (IEEE80211_FCTL_FROMDS | IEEE80211_FCTL_TODS)) {
475         case IEEE80211_FCTL_FROMDS:
476                 memcpy(dst, hdr->addr1, ETH_ALEN);
477                 memcpy(src, hdr->addr3, ETH_ALEN);
478                 break;
479         case IEEE80211_FCTL_TODS:
480                 memcpy(dst, hdr->addr3, ETH_ALEN);
481                 memcpy(src, hdr->addr2, ETH_ALEN);
482                 break;
483         case IEEE80211_FCTL_FROMDS | IEEE80211_FCTL_TODS:
484                 if (skb->len < IEEE80211_4ADDR_LEN)
485                         goto rx_dropped;
486                 memcpy(dst, hdr->addr3, ETH_ALEN);
487                 memcpy(src, hdr->addr4, ETH_ALEN);
488                 break;
489         case 0:
490                 memcpy(dst, hdr->addr1, ETH_ALEN);
491                 memcpy(src, hdr->addr2, ETH_ALEN);
492                 break;
493         }
494
495 #ifdef NOT_YET
496         if (hostap_rx_frame_wds(ieee, hdr, fc, &wds))
497                 goto rx_dropped;
498         if (wds) {
499                 skb->dev = dev = wds;
500                 stats = hostap_get_stats(dev);
501         }
502
503         if (ieee->iw_mode == IW_MODE_MASTER && !wds &&
504             (fc & (IEEE80211_FCTL_TODS | IEEE80211_FCTL_FROMDS)) ==
505             IEEE80211_FCTL_FROMDS && ieee->stadev
506             && memcmp(hdr->addr2, ieee->assoc_ap_addr, ETH_ALEN) == 0) {
507                 /* Frame from BSSID of the AP for which we are a client */
508                 skb->dev = dev = ieee->stadev;
509                 stats = hostap_get_stats(dev);
510                 from_assoc_ap = 1;
511         }
512 #endif
513
514         dev->last_rx = jiffies;
515
516 #ifdef NOT_YET
517         if ((ieee->iw_mode == IW_MODE_MASTER ||
518              ieee->iw_mode == IW_MODE_REPEAT) && !from_assoc_ap) {
519                 switch (hostap_handle_sta_rx(ieee, dev, skb, rx_stats,
520                                              wds != NULL)) {
521                 case AP_RX_CONTINUE_NOT_AUTHORIZED:
522                         frame_authorized = 0;
523                         break;
524                 case AP_RX_CONTINUE:
525                         frame_authorized = 1;
526                         break;
527                 case AP_RX_DROP:
528                         goto rx_dropped;
529                 case AP_RX_EXIT:
530                         goto rx_exit;
531                 }
532         }
533 #endif
534
535         /* Nullfunc frames may have PS-bit set, so they must be passed to
536          * hostap_handle_sta_rx() before being dropped here. */
537
538         stype &= ~IEEE80211_STYPE_QOS_DATA;
539
540         if (stype != IEEE80211_STYPE_DATA &&
541             stype != IEEE80211_STYPE_DATA_CFACK &&
542             stype != IEEE80211_STYPE_DATA_CFPOLL &&
543             stype != IEEE80211_STYPE_DATA_CFACKPOLL) {
544                 if (stype != IEEE80211_STYPE_NULLFUNC)
545                         IEEE80211_DEBUG_DROP("RX: dropped data frame "
546                                              "with no data (type=0x%02x, "
547                                              "subtype=0x%02x, len=%d)\n",
548                                              type, stype, skb->len);
549                 goto rx_dropped;
550         }
551
552         /* skb: hdr + (possibly fragmented, possibly encrypted) payload */
553
554         if (ieee->host_decrypt && (fc & IEEE80211_FCTL_PROTECTED) &&
555             (keyidx = ieee80211_rx_frame_decrypt(ieee, skb, crypt)) < 0)
556                 goto rx_dropped;
557
558         hdr = (struct ieee80211_hdr_4addr *)skb->data;
559
560         /* skb: hdr + (possibly fragmented) plaintext payload */
561         // PR: FIXME: hostap has additional conditions in the "if" below:
562         // ieee->host_decrypt && (fc & IEEE80211_FCTL_PROTECTED) &&
563         if ((frag != 0 || (fc & IEEE80211_FCTL_MOREFRAGS))) {
564                 int flen;
565                 struct sk_buff *frag_skb = ieee80211_frag_cache_get(ieee, hdr);
566                 IEEE80211_DEBUG_FRAG("Rx Fragment received (%u)\n", frag);
567
568                 if (!frag_skb) {
569                         IEEE80211_DEBUG(IEEE80211_DL_RX | IEEE80211_DL_FRAG,
570                                         "Rx cannot get skb from fragment "
571                                         "cache (morefrag=%d seq=%u frag=%u)\n",
572                                         (fc & IEEE80211_FCTL_MOREFRAGS) != 0,
573                                         WLAN_GET_SEQ_SEQ(sc), frag);
574                         goto rx_dropped;
575                 }
576
577                 flen = skb->len;
578                 if (frag != 0)
579                         flen -= hdrlen;
580
581                 if (frag_skb->tail + flen > frag_skb->end) {
582                         printk(KERN_WARNING "%s: host decrypted and "
583                                "reassembled frame did not fit skb\n",
584                                dev->name);
585                         ieee80211_frag_cache_invalidate(ieee, hdr);
586                         goto rx_dropped;
587                 }
588
589                 if (frag == 0) {
590                         /* copy first fragment (including full headers) into
591                          * beginning of the fragment cache skb */
592                         memcpy(skb_put(frag_skb, flen), skb->data, flen);
593                 } else {
594                         /* append frame payload to the end of the fragment
595                          * cache skb */
596                         memcpy(skb_put(frag_skb, flen), skb->data + hdrlen,
597                                flen);
598                 }
599                 dev_kfree_skb_any(skb);
600                 skb = NULL;
601
602                 if (fc & IEEE80211_FCTL_MOREFRAGS) {
603                         /* more fragments expected - leave the skb in fragment
604                          * cache for now; it will be delivered to upper layers
605                          * after all fragments have been received */
606                         goto rx_exit;
607                 }
608
609                 /* this was the last fragment and the frame will be
610                  * delivered, so remove skb from fragment cache */
611                 skb = frag_skb;
612                 hdr = (struct ieee80211_hdr_4addr *)skb->data;
613                 ieee80211_frag_cache_invalidate(ieee, hdr);
614         }
615
616         /* skb: hdr + (possible reassembled) full MSDU payload; possibly still
617          * encrypted/authenticated */
618         if (ieee->host_decrypt && (fc & IEEE80211_FCTL_PROTECTED) &&
619             ieee80211_rx_frame_decrypt_msdu(ieee, skb, keyidx, crypt))
620                 goto rx_dropped;
621
622         hdr = (struct ieee80211_hdr_4addr *)skb->data;
623         if (crypt && !(fc & IEEE80211_FCTL_PROTECTED) && !ieee->open_wep) {
624                 if (            /*ieee->ieee802_1x && */
625                            ieee80211_is_eapol_frame(ieee, skb)) {
626                         /* pass unencrypted EAPOL frames even if encryption is
627                          * configured */
628                 } else {
629                         IEEE80211_DEBUG_DROP("encryption configured, but RX "
630                                              "frame not encrypted (SA=" MAC_FMT
631                                              ")\n", MAC_ARG(hdr->addr2));
632                         goto rx_dropped;
633                 }
634         }
635
636         if (crypt && !(fc & IEEE80211_FCTL_PROTECTED) && !ieee->open_wep &&
637             !ieee80211_is_eapol_frame(ieee, skb)) {
638                 IEEE80211_DEBUG_DROP("dropped unencrypted RX data "
639                                      "frame from " MAC_FMT
640                                      " (drop_unencrypted=1)\n",
641                                      MAC_ARG(hdr->addr2));
642                 goto rx_dropped;
643         }
644
645         /* skb: hdr + (possible reassembled) full plaintext payload */
646
647         payload = skb->data + hdrlen;
648         ethertype = (payload[6] << 8) | payload[7];
649
650 #ifdef NOT_YET
651         /* If IEEE 802.1X is used, check whether the port is authorized to send
652          * the received frame. */
653         if (ieee->ieee802_1x && ieee->iw_mode == IW_MODE_MASTER) {
654                 if (ethertype == ETH_P_PAE) {
655                         printk(KERN_DEBUG "%s: RX: IEEE 802.1X frame\n",
656                                dev->name);
657                         if (ieee->hostapd && ieee->apdev) {
658                                 /* Send IEEE 802.1X frames to the user
659                                  * space daemon for processing */
660                                 prism2_rx_80211(ieee->apdev, skb, rx_stats,
661                                                 PRISM2_RX_MGMT);
662                                 ieee->apdevstats.rx_packets++;
663                                 ieee->apdevstats.rx_bytes += skb->len;
664                                 goto rx_exit;
665                         }
666                 } else if (!frame_authorized) {
667                         printk(KERN_DEBUG "%s: dropped frame from "
668                                "unauthorized port (IEEE 802.1X): "
669                                "ethertype=0x%04x\n", dev->name, ethertype);
670                         goto rx_dropped;
671                 }
672         }
673 #endif
674
675         /* convert hdr + possible LLC headers into Ethernet header */
676         if (skb->len - hdrlen >= 8 &&
677             ((memcmp(payload, rfc1042_header, SNAP_SIZE) == 0 &&
678               ethertype != ETH_P_AARP && ethertype != ETH_P_IPX) ||
679              memcmp(payload, bridge_tunnel_header, SNAP_SIZE) == 0)) {
680                 /* remove RFC1042 or Bridge-Tunnel encapsulation and
681                  * replace EtherType */
682                 skb_pull(skb, hdrlen + SNAP_SIZE);
683                 memcpy(skb_push(skb, ETH_ALEN), src, ETH_ALEN);
684                 memcpy(skb_push(skb, ETH_ALEN), dst, ETH_ALEN);
685         } else {
686                 u16 len;
687                 /* Leave Ethernet header part of hdr and full payload */
688                 skb_pull(skb, hdrlen);
689                 len = htons(skb->len);
690                 memcpy(skb_push(skb, 2), &len, 2);
691                 memcpy(skb_push(skb, ETH_ALEN), src, ETH_ALEN);
692                 memcpy(skb_push(skb, ETH_ALEN), dst, ETH_ALEN);
693         }
694
695 #ifdef NOT_YET
696         if (wds && ((fc & (IEEE80211_FCTL_TODS | IEEE80211_FCTL_FROMDS)) ==
697                     IEEE80211_FCTL_TODS) && skb->len >= ETH_HLEN + ETH_ALEN) {
698                 /* Non-standard frame: get addr4 from its bogus location after
699                  * the payload */
700                 memcpy(skb->data + ETH_ALEN,
701                        skb->data + skb->len - ETH_ALEN, ETH_ALEN);
702                 skb_trim(skb, skb->len - ETH_ALEN);
703         }
704 #endif
705
706         stats->rx_packets++;
707         stats->rx_bytes += skb->len;
708
709 #ifdef NOT_YET
710         if (ieee->iw_mode == IW_MODE_MASTER && !wds && ieee->ap->bridge_packets) {
711                 if (dst[0] & 0x01) {
712                         /* copy multicast frame both to the higher layers and
713                          * to the wireless media */
714                         ieee->ap->bridged_multicast++;
715                         skb2 = skb_clone(skb, GFP_ATOMIC);
716                         if (skb2 == NULL)
717                                 printk(KERN_DEBUG "%s: skb_clone failed for "
718                                        "multicast frame\n", dev->name);
719                 } else if (hostap_is_sta_assoc(ieee->ap, dst)) {
720                         /* send frame directly to the associated STA using
721                          * wireless media and not passing to higher layers */
722                         ieee->ap->bridged_unicast++;
723                         skb2 = skb;
724                         skb = NULL;
725                 }
726         }
727
728         if (skb2 != NULL) {
729                 /* send to wireless media */
730                 skb2->protocol = __constant_htons(ETH_P_802_3);
731                 skb2->mac.raw = skb2->nh.raw = skb2->data;
732                 /* skb2->nh.raw = skb2->data + ETH_HLEN; */
733                 skb2->dev = dev;
734                 dev_queue_xmit(skb2);
735         }
736 #endif
737
738         if (skb) {
739                 skb->protocol = eth_type_trans(skb, dev);
740                 memset(skb->cb, 0, sizeof(skb->cb));
741                 skb->dev = dev;
742                 skb->ip_summed = CHECKSUM_NONE; /* 802.11 crc not sufficient */
743                 netif_rx(skb);
744         }
745
746       rx_exit:
747 #ifdef NOT_YET
748         if (sta)
749                 hostap_handle_sta_release(sta);
750 #endif
751         return 1;
752
753       rx_dropped:
754         stats->rx_dropped++;
755
756         /* Returning 0 indicates to caller that we have not handled the SKB--
757          * so it is still allocated and can be used again by underlying
758          * hardware as a DMA target */
759         return 0;
760 }
761
762 #define MGMT_FRAME_FIXED_PART_LENGTH            0x24
763
764 static u8 qos_oui[QOS_OUI_LEN] = { 0x00, 0x50, 0xF2 };
765
766 /*
767 * Make ther structure we read from the beacon packet has
768 * the right values
769 */
770 static int ieee80211_verify_qos_info(struct ieee80211_qos_information_element
771                                      *info_element, int sub_type)
772 {
773
774         if (info_element->qui_subtype != sub_type)
775                 return -1;
776         if (memcmp(info_element->qui, qos_oui, QOS_OUI_LEN))
777                 return -1;
778         if (info_element->qui_type != QOS_OUI_TYPE)
779                 return -1;
780         if (info_element->version != QOS_VERSION_1)
781                 return -1;
782
783         return 0;
784 }
785
786 /*
787  * Parse a QoS parameter element
788  */
789 static int ieee80211_read_qos_param_element(struct ieee80211_qos_parameter_info
790                                             *element_param, struct ieee80211_info_element
791                                             *info_element)
792 {
793         int ret = 0;
794         u16 size = sizeof(struct ieee80211_qos_parameter_info) - 2;
795
796         if ((info_element == NULL) || (element_param == NULL))
797                 return -1;
798
799         if (info_element->id == QOS_ELEMENT_ID && info_element->len == size) {
800                 memcpy(element_param->info_element.qui, info_element->data,
801                        info_element->len);
802                 element_param->info_element.elementID = info_element->id;
803                 element_param->info_element.length = info_element->len;
804         } else
805                 ret = -1;
806         if (ret == 0)
807                 ret = ieee80211_verify_qos_info(&element_param->info_element,
808                                                 QOS_OUI_PARAM_SUB_TYPE);
809         return ret;
810 }
811
812 /*
813  * Parse a QoS information element
814  */
815 static int ieee80211_read_qos_info_element(struct
816                                            ieee80211_qos_information_element
817                                            *element_info, struct ieee80211_info_element
818                                            *info_element)
819 {
820         int ret = 0;
821         u16 size = sizeof(struct ieee80211_qos_information_element) - 2;
822
823         if (element_info == NULL)
824                 return -1;
825         if (info_element == NULL)
826                 return -1;
827
828         if ((info_element->id == QOS_ELEMENT_ID) && (info_element->len == size)) {
829                 memcpy(element_info->qui, info_element->data,
830                        info_element->len);
831                 element_info->elementID = info_element->id;
832                 element_info->length = info_element->len;
833         } else
834                 ret = -1;
835
836         if (ret == 0)
837                 ret = ieee80211_verify_qos_info(element_info,
838                                                 QOS_OUI_INFO_SUB_TYPE);
839         return ret;
840 }
841
842 /*
843  * Write QoS parameters from the ac parameters.
844  */
845 static int ieee80211_qos_convert_ac_to_parameters(struct
846                                                   ieee80211_qos_parameter_info
847                                                   *param_elm, struct
848                                                   ieee80211_qos_parameters
849                                                   *qos_param)
850 {
851         int rc = 0;
852         int i;
853         struct ieee80211_qos_ac_parameter *ac_params;
854         u32 txop;
855         u8 cw_min;
856         u8 cw_max;
857
858         for (i = 0; i < QOS_QUEUE_NUM; i++) {
859                 ac_params = &(param_elm->ac_params_record[i]);
860
861                 qos_param->aifs[i] = (ac_params->aci_aifsn) & 0x0F;
862                 qos_param->aifs[i] -= (qos_param->aifs[i] < 2) ? 0 : 2;
863
864                 cw_min = ac_params->ecw_min_max & 0x0F;
865                 qos_param->cw_min[i] = (u16) ((1 << cw_min) - 1);
866
867                 cw_max = (ac_params->ecw_min_max & 0xF0) >> 4;
868                 qos_param->cw_max[i] = (u16) ((1 << cw_max) - 1);
869
870                 qos_param->flag[i] =
871                     (ac_params->aci_aifsn & 0x10) ? 0x01 : 0x00;
872
873                 txop = le16_to_cpu(ac_params->tx_op_limit) * 32;
874                 qos_param->tx_op_limit[i] = (u16) txop;
875         }
876         return rc;
877 }
878
879 /*
880  * we have a generic data element which it may contain QoS information or
881  * parameters element. check the information element length to decide
882  * which type to read
883  */
884 static int ieee80211_parse_qos_info_param_IE(struct ieee80211_info_element
885                                              *info_element,
886                                              struct ieee80211_network *network)
887 {
888         int rc = 0;
889         struct ieee80211_qos_parameters *qos_param = NULL;
890         struct ieee80211_qos_information_element qos_info_element;
891
892         rc = ieee80211_read_qos_info_element(&qos_info_element, info_element);
893
894         if (rc == 0) {
895                 network->qos_data.param_count = qos_info_element.ac_info & 0x0F;
896                 network->flags |= NETWORK_HAS_QOS_INFORMATION;
897         } else {
898                 struct ieee80211_qos_parameter_info param_element;
899
900                 rc = ieee80211_read_qos_param_element(&param_element,
901                                                       info_element);
902                 if (rc == 0) {
903                         qos_param = &(network->qos_data.parameters);
904                         ieee80211_qos_convert_ac_to_parameters(&param_element,
905                                                                qos_param);
906                         network->flags |= NETWORK_HAS_QOS_PARAMETERS;
907                         network->qos_data.param_count =
908                             param_element.info_element.ac_info & 0x0F;
909                 }
910         }
911
912         if (rc == 0) {
913                 IEEE80211_DEBUG_QOS("QoS is supported\n");
914                 network->qos_data.supported = 1;
915         }
916         return rc;
917 }
918
919 static int ieee80211_handle_assoc_resp(struct ieee80211_device *ieee, struct ieee80211_assoc_response
920                                        *frame, struct ieee80211_rx_stats *stats)
921 {
922         struct ieee80211_network network_resp;
923         struct ieee80211_network *network = &network_resp;
924         struct ieee80211_info_element *info_element;
925         struct net_device *dev = ieee->dev;
926         u16 left;
927
928         network->flags = 0;
929         network->qos_data.active = 0;
930         network->qos_data.supported = 0;
931         network->qos_data.param_count = 0;
932         network->qos_data.old_param_count = 0;
933
934         //network->atim_window = le16_to_cpu(frame->aid) & (0x3FFF);
935         network->atim_window = le16_to_cpu(frame->aid);
936         network->listen_interval = le16_to_cpu(frame->status);
937
938         info_element = frame->info_element;
939         left = stats->len - sizeof(*frame);
940
941         while (left >= sizeof(struct ieee80211_info_element)) {
942                 if (sizeof(struct ieee80211_info_element) +
943                     info_element->len > left) {
944                         IEEE80211_DEBUG_QOS("ASSOC RESP: parse failed: "
945                                             "info_element->len + 2 > left : "
946                                             "info_element->len+2=%zd left=%d, id=%d.\n",
947                                             info_element->len +
948                                             sizeof(struct
949                                                    ieee80211_info_element),
950                                             left, info_element->id);
951                         return 1;
952                 }
953
954                 switch (info_element->id) {
955                 case MFIE_TYPE_SSID:
956                         if (ieee80211_is_empty_essid(info_element->data,
957                                                      info_element->len)) {
958                                 network->flags |= NETWORK_EMPTY_ESSID;
959                                 break;
960                         }
961
962                         network->ssid_len = min(info_element->len,
963                                                 (u8) IW_ESSID_MAX_SIZE);
964                         memcpy(network->ssid, info_element->data,
965                                network->ssid_len);
966                         if (network->ssid_len < IW_ESSID_MAX_SIZE)
967                                 memset(network->ssid + network->ssid_len, 0,
968                                        IW_ESSID_MAX_SIZE - network->ssid_len);
969
970                         IEEE80211_DEBUG_QOS("MFIE_TYPE_SSID: '%s' len=%d.\n",
971                                             network->ssid, network->ssid_len);
972                         break;
973
974                 case MFIE_TYPE_TIM:
975                         IEEE80211_DEBUG_QOS("MFIE_TYPE_TIM: ignored\n");
976                         break;
977
978                 case MFIE_TYPE_IBSS_SET:
979                         IEEE80211_DEBUG_QOS("MFIE_TYPE_IBSS_SET: ignored\n");
980                         break;
981
982                 case MFIE_TYPE_CHALLENGE:
983                         IEEE80211_DEBUG_QOS("MFIE_TYPE_CHALLENGE: ignored\n");
984                         break;
985
986                 case MFIE_TYPE_GENERIC:
987                         IEEE80211_DEBUG_QOS("MFIE_TYPE_GENERIC: %d bytes\n",
988                                             info_element->len);
989                         ieee80211_parse_qos_info_param_IE(info_element,
990                                                           network);
991                         break;
992
993                 case MFIE_TYPE_RSN:
994                         IEEE80211_DEBUG_QOS("MFIE_TYPE_RSN: %d bytes\n",
995                                             info_element->len);
996                         break;
997
998                 case MFIE_TYPE_QOS_PARAMETER:
999                         printk("QoS Error need to parse QOS_PARAMETER IE\n");
1000                         break;
1001
1002                 default:
1003                         IEEE80211_DEBUG_QOS("unsupported IE %d\n",
1004                                             info_element->id);
1005                         break;
1006                 }
1007
1008                 left -= sizeof(struct ieee80211_info_element) +
1009                     info_element->len;
1010                 info_element = (struct ieee80211_info_element *)
1011                     &info_element->data[info_element->len];
1012         }
1013
1014         if (ieee->handle_assoc_response != NULL)
1015                 ieee->handle_assoc_response(dev, frame, network);
1016
1017         return 0;
1018 }
1019
1020 /***************************************************/
1021
1022 static inline int ieee80211_is_ofdm_rate(u8 rate)
1023 {
1024         switch (rate & ~IEEE80211_BASIC_RATE_MASK) {
1025         case IEEE80211_OFDM_RATE_6MB:
1026         case IEEE80211_OFDM_RATE_9MB:
1027         case IEEE80211_OFDM_RATE_12MB:
1028         case IEEE80211_OFDM_RATE_18MB:
1029         case IEEE80211_OFDM_RATE_24MB:
1030         case IEEE80211_OFDM_RATE_36MB:
1031         case IEEE80211_OFDM_RATE_48MB:
1032         case IEEE80211_OFDM_RATE_54MB:
1033                 return 1;
1034         }
1035         return 0;
1036 }
1037
1038 static inline int ieee80211_network_init(struct ieee80211_device *ieee, struct ieee80211_probe_response
1039                                          *beacon,
1040                                          struct ieee80211_network *network,
1041                                          struct ieee80211_rx_stats *stats)
1042 {
1043 #ifdef CONFIG_IEEE80211_DEBUG
1044         char rates_str[64];
1045         char *p;
1046 #endif
1047         struct ieee80211_info_element *info_element;
1048         u16 left;
1049         u8 i;
1050         network->qos_data.active = 0;
1051         network->qos_data.supported = 0;
1052         network->qos_data.param_count = 0;
1053
1054         /* Pull out fixed field data */
1055         memcpy(network->bssid, beacon->header.addr3, ETH_ALEN);
1056         network->capability = le16_to_cpu(beacon->capability);
1057         network->last_scanned = jiffies;
1058         network->time_stamp[0] = le32_to_cpu(beacon->time_stamp[0]);
1059         network->time_stamp[1] = le32_to_cpu(beacon->time_stamp[1]);
1060         network->beacon_interval = le16_to_cpu(beacon->beacon_interval);
1061         /* Where to pull this? beacon->listen_interval; */
1062         network->listen_interval = 0x0A;
1063         network->rates_len = network->rates_ex_len = 0;
1064         network->last_associate = 0;
1065         network->ssid_len = 0;
1066         network->flags = 0;
1067         network->atim_window = 0;
1068         network->erp_value = (network->capability & WLAN_CAPABILITY_IBSS) ?
1069                 0x3 : 0x0;
1070
1071         if (stats->freq == IEEE80211_52GHZ_BAND) {
1072                 /* for A band (No DS info) */
1073                 network->channel = stats->received_channel;
1074         } else
1075                 network->flags |= NETWORK_HAS_CCK;
1076
1077         network->wpa_ie_len = 0;
1078         network->rsn_ie_len = 0;
1079
1080         info_element = beacon->info_element;
1081         left = stats->len - sizeof(*beacon);
1082         while (left >= sizeof(*info_element)) {
1083                 if (sizeof(*info_element) + info_element->len > left) {
1084                         IEEE80211_DEBUG_SCAN
1085                             ("SCAN: parse failed: info_element->len + 2 > left : info_element->len+2=%Zd left=%d.\n",
1086                              info_element->len + sizeof(*info_element), left);
1087                         return 1;
1088                 }
1089
1090                 switch (info_element->id) {
1091                 case MFIE_TYPE_SSID:
1092                         if (ieee80211_is_empty_essid(info_element->data,
1093                                                      info_element->len)) {
1094                                 network->flags |= NETWORK_EMPTY_ESSID;
1095                                 break;
1096                         }
1097
1098                         network->ssid_len = min(info_element->len,
1099                                                 (u8) IW_ESSID_MAX_SIZE);
1100                         memcpy(network->ssid, info_element->data,
1101                                network->ssid_len);
1102                         if (network->ssid_len < IW_ESSID_MAX_SIZE)
1103                                 memset(network->ssid + network->ssid_len, 0,
1104                                        IW_ESSID_MAX_SIZE - network->ssid_len);
1105
1106                         IEEE80211_DEBUG_SCAN("MFIE_TYPE_SSID: '%s' len=%d.\n",
1107                                              network->ssid, network->ssid_len);
1108                         break;
1109
1110                 case MFIE_TYPE_RATES:
1111 #ifdef CONFIG_IEEE80211_DEBUG
1112                         p = rates_str;
1113 #endif
1114                         network->rates_len = min(info_element->len,
1115                                                  MAX_RATES_LENGTH);
1116                         for (i = 0; i < network->rates_len; i++) {
1117                                 network->rates[i] = info_element->data[i];
1118 #ifdef CONFIG_IEEE80211_DEBUG
1119                                 p += snprintf(p, sizeof(rates_str) -
1120                                               (p - rates_str), "%02X ",
1121                                               network->rates[i]);
1122 #endif
1123                                 if (ieee80211_is_ofdm_rate
1124                                     (info_element->data[i])) {
1125                                         network->flags |= NETWORK_HAS_OFDM;
1126                                         if (info_element->data[i] &
1127                                             IEEE80211_BASIC_RATE_MASK)
1128                                                 network->flags &=
1129                                                     ~NETWORK_HAS_CCK;
1130                                 }
1131                         }
1132
1133                         IEEE80211_DEBUG_SCAN("MFIE_TYPE_RATES: '%s' (%d)\n",
1134                                              rates_str, network->rates_len);
1135                         break;
1136
1137                 case MFIE_TYPE_RATES_EX:
1138 #ifdef CONFIG_IEEE80211_DEBUG
1139                         p = rates_str;
1140 #endif
1141                         network->rates_ex_len = min(info_element->len,
1142                                                     MAX_RATES_EX_LENGTH);
1143                         for (i = 0; i < network->rates_ex_len; i++) {
1144                                 network->rates_ex[i] = info_element->data[i];
1145 #ifdef CONFIG_IEEE80211_DEBUG
1146                                 p += snprintf(p, sizeof(rates_str) -
1147                                               (p - rates_str), "%02X ",
1148                                               network->rates[i]);
1149 #endif
1150                                 if (ieee80211_is_ofdm_rate
1151                                     (info_element->data[i])) {
1152                                         network->flags |= NETWORK_HAS_OFDM;
1153                                         if (info_element->data[i] &
1154                                             IEEE80211_BASIC_RATE_MASK)
1155                                                 network->flags &=
1156                                                     ~NETWORK_HAS_CCK;
1157                                 }
1158                         }
1159
1160                         IEEE80211_DEBUG_SCAN("MFIE_TYPE_RATES_EX: '%s' (%d)\n",
1161                                              rates_str, network->rates_ex_len);
1162                         break;
1163
1164                 case MFIE_TYPE_DS_SET:
1165                         IEEE80211_DEBUG_SCAN("MFIE_TYPE_DS_SET: %d\n",
1166                                              info_element->data[0]);
1167                         if (stats->freq == IEEE80211_24GHZ_BAND)
1168                                 network->channel = info_element->data[0];
1169                         break;
1170
1171                 case MFIE_TYPE_FH_SET:
1172                         IEEE80211_DEBUG_SCAN("MFIE_TYPE_FH_SET: ignored\n");
1173                         break;
1174
1175                 case MFIE_TYPE_CF_SET:
1176                         IEEE80211_DEBUG_SCAN("MFIE_TYPE_CF_SET: ignored\n");
1177                         break;
1178
1179                 case MFIE_TYPE_TIM:
1180                         IEEE80211_DEBUG_SCAN("MFIE_TYPE_TIM: ignored\n");
1181                         break;
1182
1183                 case MFIE_TYPE_ERP_INFO:
1184                         network->erp_value = info_element->data[0];
1185                         IEEE80211_DEBUG_SCAN("MFIE_TYPE_ERP_SET: %d\n",
1186                                              network->erp_value);
1187                         break;
1188
1189                 case MFIE_TYPE_IBSS_SET:
1190                         network->atim_window = info_element->data[0];
1191                         IEEE80211_DEBUG_SCAN("MFIE_TYPE_IBSS_SET: %d\n",
1192                                              network->atim_window);
1193                         break;
1194
1195                 case MFIE_TYPE_CHALLENGE:
1196                         IEEE80211_DEBUG_SCAN("MFIE_TYPE_CHALLENGE: ignored\n");
1197                         break;
1198
1199                 case MFIE_TYPE_GENERIC:
1200                         IEEE80211_DEBUG_SCAN("MFIE_TYPE_GENERIC: %d bytes\n",
1201                                              info_element->len);
1202                         if (!ieee80211_parse_qos_info_param_IE(info_element,
1203                                                                network))
1204                                 break;
1205
1206                         if (info_element->len >= 4 &&
1207                             info_element->data[0] == 0x00 &&
1208                             info_element->data[1] == 0x50 &&
1209                             info_element->data[2] == 0xf2 &&
1210                             info_element->data[3] == 0x01) {
1211                                 network->wpa_ie_len = min(info_element->len + 2,
1212                                                           MAX_WPA_IE_LEN);
1213                                 memcpy(network->wpa_ie, info_element,
1214                                        network->wpa_ie_len);
1215                         }
1216                         break;
1217
1218                 case MFIE_TYPE_RSN:
1219                         IEEE80211_DEBUG_SCAN("MFIE_TYPE_RSN: %d bytes\n",
1220                                              info_element->len);
1221                         network->rsn_ie_len = min(info_element->len + 2,
1222                                                   MAX_WPA_IE_LEN);
1223                         memcpy(network->rsn_ie, info_element,
1224                                network->rsn_ie_len);
1225                         break;
1226
1227                 case MFIE_TYPE_QOS_PARAMETER:
1228                         printk(KERN_ERR
1229                                "QoS Error need to parse QOS_PARAMETER IE\n");
1230                         break;
1231
1232                 default:
1233                         IEEE80211_DEBUG_SCAN("unsupported IE %d\n",
1234                                              info_element->id);
1235                         break;
1236                 }
1237
1238                 left -= sizeof(*info_element) + info_element->len;
1239                 info_element = (struct ieee80211_info_element *)
1240                     &info_element->data[info_element->len];
1241         }
1242
1243         network->mode = 0;
1244         if (stats->freq == IEEE80211_52GHZ_BAND)
1245                 network->mode = IEEE_A;
1246         else {
1247                 if (network->flags & NETWORK_HAS_OFDM)
1248                         network->mode |= IEEE_G;
1249                 if (network->flags & NETWORK_HAS_CCK)
1250                         network->mode |= IEEE_B;
1251         }
1252
1253         if (network->mode == 0) {
1254                 IEEE80211_DEBUG_SCAN("Filtered out '%s (" MAC_FMT ")' "
1255                                      "network.\n",
1256                                      escape_essid(network->ssid,
1257                                                   network->ssid_len),
1258                                      MAC_ARG(network->bssid));
1259                 return 1;
1260         }
1261
1262         if (ieee80211_is_empty_essid(network->ssid, network->ssid_len))
1263                 network->flags |= NETWORK_EMPTY_ESSID;
1264
1265         memcpy(&network->stats, stats, sizeof(network->stats));
1266
1267         return 0;
1268 }
1269
1270 static inline int is_same_network(struct ieee80211_network *src,
1271                                   struct ieee80211_network *dst)
1272 {
1273         /* A network is only a duplicate if the channel, BSSID, and ESSID
1274          * all match.  We treat all <hidden> with the same BSSID and channel
1275          * as one network */
1276         return ((src->ssid_len == dst->ssid_len) &&
1277                 (src->channel == dst->channel) &&
1278                 !memcmp(src->bssid, dst->bssid, ETH_ALEN) &&
1279                 !memcmp(src->ssid, dst->ssid, src->ssid_len));
1280 }
1281
1282 static inline void update_network(struct ieee80211_network *dst,
1283                                   struct ieee80211_network *src)
1284 {
1285         int qos_active;
1286         u8 old_param;
1287
1288         memcpy(&dst->stats, &src->stats, sizeof(struct ieee80211_rx_stats));
1289         dst->capability = src->capability;
1290         memcpy(dst->rates, src->rates, src->rates_len);
1291         dst->rates_len = src->rates_len;
1292         memcpy(dst->rates_ex, src->rates_ex, src->rates_ex_len);
1293         dst->rates_ex_len = src->rates_ex_len;
1294
1295         dst->mode = src->mode;
1296         dst->flags = src->flags;
1297         dst->time_stamp[0] = src->time_stamp[0];
1298         dst->time_stamp[1] = src->time_stamp[1];
1299
1300         dst->beacon_interval = src->beacon_interval;
1301         dst->listen_interval = src->listen_interval;
1302         dst->atim_window = src->atim_window;
1303         dst->erp_value = src->erp_value;
1304
1305         memcpy(dst->wpa_ie, src->wpa_ie, src->wpa_ie_len);
1306         dst->wpa_ie_len = src->wpa_ie_len;
1307         memcpy(dst->rsn_ie, src->rsn_ie, src->rsn_ie_len);
1308         dst->rsn_ie_len = src->rsn_ie_len;
1309
1310         dst->last_scanned = jiffies;
1311         qos_active = src->qos_data.active;
1312         old_param = dst->qos_data.old_param_count;
1313         if (dst->flags & NETWORK_HAS_QOS_MASK)
1314                 memcpy(&dst->qos_data, &src->qos_data,
1315                        sizeof(struct ieee80211_qos_data));
1316         else {
1317                 dst->qos_data.supported = src->qos_data.supported;
1318                 dst->qos_data.param_count = src->qos_data.param_count;
1319         }
1320
1321         if (dst->qos_data.supported == 1) {
1322                 if (dst->ssid_len)
1323                         IEEE80211_DEBUG_QOS
1324                             ("QoS the network %s is QoS supported\n",
1325                              dst->ssid);
1326                 else
1327                         IEEE80211_DEBUG_QOS
1328                             ("QoS the network is QoS supported\n");
1329         }
1330         dst->qos_data.active = qos_active;
1331         dst->qos_data.old_param_count = old_param;
1332
1333         /* dst->last_associate is not overwritten */
1334 }
1335
1336 static inline int is_beacon(int fc)
1337 {
1338         return (WLAN_FC_GET_STYPE(le16_to_cpu(fc)) == IEEE80211_STYPE_BEACON);
1339 }
1340
1341 static inline void ieee80211_process_probe_response(struct ieee80211_device
1342                                                     *ieee, struct
1343                                                     ieee80211_probe_response
1344                                                     *beacon, struct ieee80211_rx_stats
1345                                                     *stats)
1346 {
1347         struct net_device *dev = ieee->dev;
1348         struct ieee80211_network network;
1349         struct ieee80211_network *target;
1350         struct ieee80211_network *oldest = NULL;
1351 #ifdef CONFIG_IEEE80211_DEBUG
1352         struct ieee80211_info_element *info_element = beacon->info_element;
1353 #endif
1354         unsigned long flags;
1355
1356         IEEE80211_DEBUG_SCAN("'%s' (" MAC_FMT
1357                              "): %c%c%c%c %c%c%c%c-%c%c%c%c %c%c%c%c\n",
1358                              escape_essid(info_element->data,
1359                                           info_element->len),
1360                              MAC_ARG(beacon->header.addr3),
1361                              (beacon->capability & (1 << 0xf)) ? '1' : '0',
1362                              (beacon->capability & (1 << 0xe)) ? '1' : '0',
1363                              (beacon->capability & (1 << 0xd)) ? '1' : '0',
1364                              (beacon->capability & (1 << 0xc)) ? '1' : '0',
1365                              (beacon->capability & (1 << 0xb)) ? '1' : '0',
1366                              (beacon->capability & (1 << 0xa)) ? '1' : '0',
1367                              (beacon->capability & (1 << 0x9)) ? '1' : '0',
1368                              (beacon->capability & (1 << 0x8)) ? '1' : '0',
1369                              (beacon->capability & (1 << 0x7)) ? '1' : '0',
1370                              (beacon->capability & (1 << 0x6)) ? '1' : '0',
1371                              (beacon->capability & (1 << 0x5)) ? '1' : '0',
1372                              (beacon->capability & (1 << 0x4)) ? '1' : '0',
1373                              (beacon->capability & (1 << 0x3)) ? '1' : '0',
1374                              (beacon->capability & (1 << 0x2)) ? '1' : '0',
1375                              (beacon->capability & (1 << 0x1)) ? '1' : '0',
1376                              (beacon->capability & (1 << 0x0)) ? '1' : '0');
1377
1378         if (ieee80211_network_init(ieee, beacon, &network, stats)) {
1379                 IEEE80211_DEBUG_SCAN("Dropped '%s' (" MAC_FMT ") via %s.\n",
1380                                      escape_essid(info_element->data,
1381                                                   info_element->len),
1382                                      MAC_ARG(beacon->header.addr3),
1383                                      is_beacon(le16_to_cpu
1384                                                (beacon->header.
1385                                                 frame_ctl)) ?
1386                                      "BEACON" : "PROBE RESPONSE");
1387                 return;
1388         }
1389
1390         /* The network parsed correctly -- so now we scan our known networks
1391          * to see if we can find it in our list.
1392          *
1393          * NOTE:  This search is definitely not optimized.  Once its doing
1394          *        the "right thing" we'll optimize it for efficiency if
1395          *        necessary */
1396
1397         /* Search for this entry in the list and update it if it is
1398          * already there. */
1399
1400         spin_lock_irqsave(&ieee->lock, flags);
1401
1402         list_for_each_entry(target, &ieee->network_list, list) {
1403                 if (is_same_network(target, &network))
1404                         break;
1405
1406                 if ((oldest == NULL) ||
1407                     (target->last_scanned < oldest->last_scanned))
1408                         oldest = target;
1409         }
1410
1411         /* If we didn't find a match, then get a new network slot to initialize
1412          * with this beacon's information */
1413         if (&target->list == &ieee->network_list) {
1414                 if (list_empty(&ieee->network_free_list)) {
1415                         /* If there are no more slots, expire the oldest */
1416                         list_del(&oldest->list);
1417                         target = oldest;
1418                         IEEE80211_DEBUG_SCAN("Expired '%s' (" MAC_FMT ") from "
1419                                              "network list.\n",
1420                                              escape_essid(target->ssid,
1421                                                           target->ssid_len),
1422                                              MAC_ARG(target->bssid));
1423                 } else {
1424                         /* Otherwise just pull from the free list */
1425                         target = list_entry(ieee->network_free_list.next,
1426                                             struct ieee80211_network, list);
1427                         list_del(ieee->network_free_list.next);
1428                 }
1429
1430 #ifdef CONFIG_IEEE80211_DEBUG
1431                 IEEE80211_DEBUG_SCAN("Adding '%s' (" MAC_FMT ") via %s.\n",
1432                                      escape_essid(network.ssid,
1433                                                   network.ssid_len),
1434                                      MAC_ARG(network.bssid),
1435                                      is_beacon(le16_to_cpu
1436                                                (beacon->header.
1437                                                 frame_ctl)) ?
1438                                      "BEACON" : "PROBE RESPONSE");
1439 #endif
1440                 memcpy(target, &network, sizeof(*target));
1441                 list_add_tail(&target->list, &ieee->network_list);
1442         } else {
1443                 IEEE80211_DEBUG_SCAN("Updating '%s' (" MAC_FMT ") via %s.\n",
1444                                      escape_essid(target->ssid,
1445                                                   target->ssid_len),
1446                                      MAC_ARG(target->bssid),
1447                                      is_beacon(le16_to_cpu
1448                                                (beacon->header.
1449                                                 frame_ctl)) ?
1450                                      "BEACON" : "PROBE RESPONSE");
1451                 update_network(target, &network);
1452         }
1453
1454         spin_unlock_irqrestore(&ieee->lock, flags);
1455
1456         if (is_beacon(le16_to_cpu(beacon->header.frame_ctl))) {
1457                 if (ieee->handle_beacon != NULL)
1458                         ieee->handle_beacon(dev, beacon, &network);
1459         } else {
1460                 if (ieee->handle_probe_response != NULL)
1461                         ieee->handle_probe_response(dev, beacon, &network);
1462         }
1463 }
1464
1465 void ieee80211_rx_mgt(struct ieee80211_device *ieee,
1466                       struct ieee80211_hdr_4addr *header,
1467                       struct ieee80211_rx_stats *stats)
1468 {
1469         switch (WLAN_FC_GET_STYPE(le16_to_cpu(header->frame_ctl))) {
1470         case IEEE80211_STYPE_ASSOC_RESP:
1471                 IEEE80211_DEBUG_MGMT("received ASSOCIATION RESPONSE (%d)\n",
1472                                      WLAN_FC_GET_STYPE(le16_to_cpu
1473                                                        (header->frame_ctl)));
1474                 ieee80211_handle_assoc_resp(ieee,
1475                                             (struct ieee80211_assoc_response *)
1476                                             header, stats);
1477                 break;
1478
1479         case IEEE80211_STYPE_REASSOC_RESP:
1480                 IEEE80211_DEBUG_MGMT("received REASSOCIATION RESPONSE (%d)\n",
1481                                      WLAN_FC_GET_STYPE(le16_to_cpu
1482                                                        (header->frame_ctl)));
1483                 break;
1484
1485         case IEEE80211_STYPE_PROBE_REQ:
1486                 IEEE80211_DEBUG_MGMT("recieved auth (%d)\n",
1487                                      WLAN_FC_GET_STYPE(le16_to_cpu
1488                                                        (header->frame_ctl)));
1489
1490                 if (ieee->handle_probe_request != NULL)
1491                         ieee->handle_probe_request(ieee->dev,
1492                                                    (struct
1493                                                     ieee80211_probe_request *)
1494                                                    header, stats);
1495                 break;
1496
1497         case IEEE80211_STYPE_PROBE_RESP:
1498                 IEEE80211_DEBUG_MGMT("received PROBE RESPONSE (%d)\n",
1499                                      WLAN_FC_GET_STYPE(le16_to_cpu
1500                                                        (header->frame_ctl)));
1501                 IEEE80211_DEBUG_SCAN("Probe response\n");
1502                 ieee80211_process_probe_response(ieee,
1503                                                  (struct
1504                                                   ieee80211_probe_response *)
1505                                                  header, stats);
1506                 break;
1507
1508         case IEEE80211_STYPE_BEACON:
1509                 IEEE80211_DEBUG_MGMT("received BEACON (%d)\n",
1510                                      WLAN_FC_GET_STYPE(le16_to_cpu
1511                                                        (header->frame_ctl)));
1512                 IEEE80211_DEBUG_SCAN("Beacon\n");
1513                 ieee80211_process_probe_response(ieee,
1514                                                  (struct
1515                                                   ieee80211_probe_response *)
1516                                                  header, stats);
1517                 break;
1518         case IEEE80211_STYPE_AUTH:
1519
1520                 IEEE80211_DEBUG_MGMT("recieved auth (%d)\n",
1521                                      WLAN_FC_GET_STYPE(le16_to_cpu
1522                                                        (header->frame_ctl)));
1523
1524                 if (ieee->handle_auth != NULL)
1525                         ieee->handle_auth(ieee->dev,
1526                                           (struct ieee80211_auth *)header);
1527                 break;
1528
1529         case IEEE80211_STYPE_DISASSOC:
1530                 if (ieee->handle_disassoc != NULL)
1531                         ieee->handle_disassoc(ieee->dev,
1532                                               (struct ieee80211_disassoc *)
1533                                               header);
1534                 break;
1535
1536         default:
1537                 IEEE80211_DEBUG_MGMT("received UNKNOWN (%d)\n",
1538                                      WLAN_FC_GET_STYPE(le16_to_cpu
1539                                                        (header->frame_ctl)));
1540                 IEEE80211_WARNING("%s: Unknown management packet: %d\n",
1541                                   ieee->dev->name,
1542                                   WLAN_FC_GET_STYPE(le16_to_cpu
1543                                                     (header->frame_ctl)));
1544                 break;
1545         }
1546 }
1547
1548 EXPORT_SYMBOL(ieee80211_rx_mgt);
1549 EXPORT_SYMBOL(ieee80211_rx);