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mac80211: avoid transmitting delBA to old AP
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CommitLineData
571ecf67
JB
1/*
2 * Copyright 2002-2005, Instant802 Networks, Inc.
3 * Copyright 2005-2006, Devicescape Software, Inc.
4 * Copyright 2006-2007 Jiri Benc <jbenc@suse.cz>
84040805 5 * Copyright 2007-2010 Johannes Berg <johannes@sipsolutions.net>
571ecf67
JB
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License version 2 as
9 * published by the Free Software Foundation.
10 */
11
ab46623e 12#include <linux/jiffies.h>
5a0e3ad6 13#include <linux/slab.h>
571ecf67
JB
14#include <linux/kernel.h>
15#include <linux/skbuff.h>
16#include <linux/netdevice.h>
17#include <linux/etherdevice.h>
d4e46a3d 18#include <linux/rcupdate.h>
571ecf67
JB
19#include <net/mac80211.h>
20#include <net/ieee80211_radiotap.h>
21
22#include "ieee80211_i.h"
24487981 23#include "driver-ops.h"
2c8dccc7 24#include "led.h"
33b64eb2 25#include "mesh.h"
571ecf67
JB
26#include "wep.h"
27#include "wpa.h"
28#include "tkip.h"
29#include "wme.h"
30
b2e7771e
JB
31/*
32 * monitor mode reception
33 *
34 * This function cleans up the SKB, i.e. it removes all the stuff
35 * only useful for monitoring.
36 */
37static struct sk_buff *remove_monitor_info(struct ieee80211_local *local,
0869aea0 38 struct sk_buff *skb)
b2e7771e 39{
b2e7771e
JB
40 if (local->hw.flags & IEEE80211_HW_RX_INCLUDES_FCS) {
41 if (likely(skb->len > FCS_LEN))
e3cf8b3f 42 __pskb_trim(skb, skb->len - FCS_LEN);
b2e7771e
JB
43 else {
44 /* driver bug */
45 WARN_ON(1);
46 dev_kfree_skb(skb);
47 skb = NULL;
48 }
49 }
50
51 return skb;
52}
53
f1d58c25 54static inline int should_drop_frame(struct sk_buff *skb,
0869aea0 55 int present_fcs_len)
b2e7771e 56{
f1d58c25 57 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(skb);
182503ab 58 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
b2e7771e
JB
59
60 if (status->flag & (RX_FLAG_FAILED_FCS_CRC | RX_FLAG_FAILED_PLCP_CRC))
61 return 1;
0869aea0 62 if (unlikely(skb->len < 16 + present_fcs_len))
b2e7771e 63 return 1;
87228f57
HH
64 if (ieee80211_is_ctl(hdr->frame_control) &&
65 !ieee80211_is_pspoll(hdr->frame_control) &&
66 !ieee80211_is_back_req(hdr->frame_control))
b2e7771e
JB
67 return 1;
68 return 0;
69}
70
601ae7f2
BR
71static int
72ieee80211_rx_radiotap_len(struct ieee80211_local *local,
73 struct ieee80211_rx_status *status)
74{
75 int len;
76
77 /* always present fields */
78 len = sizeof(struct ieee80211_radiotap_header) + 9;
79
80 if (status->flag & RX_FLAG_TSFT)
81 len += 8;
7fee5372 82 if (local->hw.flags & IEEE80211_HW_SIGNAL_DBM)
601ae7f2 83 len += 1;
601ae7f2
BR
84
85 if (len & 1) /* padding for RX_FLAGS if necessary */
86 len++;
87
601ae7f2
BR
88 return len;
89}
90
d1c3a37c 91/*
601ae7f2
BR
92 * ieee80211_add_rx_radiotap_header - add radiotap header
93 *
94 * add a radiotap header containing all the fields which the hardware provided.
95 */
96static void
97ieee80211_add_rx_radiotap_header(struct ieee80211_local *local,
98 struct sk_buff *skb,
601ae7f2
BR
99 struct ieee80211_rate *rate,
100 int rtap_len)
101{
f1d58c25 102 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(skb);
601ae7f2
BR
103 struct ieee80211_radiotap_header *rthdr;
104 unsigned char *pos;
6a86b9c7 105 u16 rx_flags = 0;
601ae7f2
BR
106
107 rthdr = (struct ieee80211_radiotap_header *)skb_push(skb, rtap_len);
108 memset(rthdr, 0, rtap_len);
109
110 /* radiotap header, set always present flags */
111 rthdr->it_present =
112 cpu_to_le32((1 << IEEE80211_RADIOTAP_FLAGS) |
601ae7f2
BR
113 (1 << IEEE80211_RADIOTAP_CHANNEL) |
114 (1 << IEEE80211_RADIOTAP_ANTENNA) |
115 (1 << IEEE80211_RADIOTAP_RX_FLAGS));
116 rthdr->it_len = cpu_to_le16(rtap_len);
117
118 pos = (unsigned char *)(rthdr+1);
119
120 /* the order of the following fields is important */
121
122 /* IEEE80211_RADIOTAP_TSFT */
123 if (status->flag & RX_FLAG_TSFT) {
6a86b9c7 124 put_unaligned_le64(status->mactime, pos);
601ae7f2
BR
125 rthdr->it_present |=
126 cpu_to_le32(1 << IEEE80211_RADIOTAP_TSFT);
127 pos += 8;
128 }
129
130 /* IEEE80211_RADIOTAP_FLAGS */
131 if (local->hw.flags & IEEE80211_HW_RX_INCLUDES_FCS)
132 *pos |= IEEE80211_RADIOTAP_F_FCS;
aae89831
JB
133 if (status->flag & (RX_FLAG_FAILED_FCS_CRC | RX_FLAG_FAILED_PLCP_CRC))
134 *pos |= IEEE80211_RADIOTAP_F_BADFCS;
b4f28bbb
BR
135 if (status->flag & RX_FLAG_SHORTPRE)
136 *pos |= IEEE80211_RADIOTAP_F_SHORTPRE;
601ae7f2
BR
137 pos++;
138
139 /* IEEE80211_RADIOTAP_RATE */
0fb8ca45
JM
140 if (status->flag & RX_FLAG_HT) {
141 /*
142 * TODO: add following information into radiotap header once
143 * suitable fields are defined for it:
144 * - MCS index (status->rate_idx)
145 * - HT40 (status->flag & RX_FLAG_40MHZ)
146 * - short-GI (status->flag & RX_FLAG_SHORT_GI)
147 */
148 *pos = 0;
8d6f658e 149 } else {
ebe6c7ba 150 rthdr->it_present |= cpu_to_le32(1 << IEEE80211_RADIOTAP_RATE);
0fb8ca45 151 *pos = rate->bitrate / 5;
8d6f658e 152 }
601ae7f2
BR
153 pos++;
154
155 /* IEEE80211_RADIOTAP_CHANNEL */
6a86b9c7 156 put_unaligned_le16(status->freq, pos);
601ae7f2
BR
157 pos += 2;
158 if (status->band == IEEE80211_BAND_5GHZ)
6a86b9c7
JB
159 put_unaligned_le16(IEEE80211_CHAN_OFDM | IEEE80211_CHAN_5GHZ,
160 pos);
5f0b7de5
JB
161 else if (status->flag & RX_FLAG_HT)
162 put_unaligned_le16(IEEE80211_CHAN_DYN | IEEE80211_CHAN_2GHZ,
163 pos);
9deb1ae5 164 else if (rate->flags & IEEE80211_RATE_ERP_G)
6a86b9c7
JB
165 put_unaligned_le16(IEEE80211_CHAN_OFDM | IEEE80211_CHAN_2GHZ,
166 pos);
601ae7f2 167 else
6a86b9c7
JB
168 put_unaligned_le16(IEEE80211_CHAN_CCK | IEEE80211_CHAN_2GHZ,
169 pos);
601ae7f2
BR
170 pos += 2;
171
172 /* IEEE80211_RADIOTAP_DBM_ANTSIGNAL */
173 if (local->hw.flags & IEEE80211_HW_SIGNAL_DBM) {
174 *pos = status->signal;
175 rthdr->it_present |=
176 cpu_to_le32(1 << IEEE80211_RADIOTAP_DBM_ANTSIGNAL);
177 pos++;
178 }
179
601ae7f2
BR
180 /* IEEE80211_RADIOTAP_LOCK_QUALITY is missing */
181
182 /* IEEE80211_RADIOTAP_ANTENNA */
183 *pos = status->antenna;
184 pos++;
185
601ae7f2
BR
186 /* IEEE80211_RADIOTAP_DB_ANTNOISE is not used */
187
188 /* IEEE80211_RADIOTAP_RX_FLAGS */
189 /* ensure 2 byte alignment for the 2 byte field as required */
6a86b9c7 190 if ((pos - (u8 *)rthdr) & 1)
601ae7f2 191 pos++;
aae89831 192 if (status->flag & RX_FLAG_FAILED_PLCP_CRC)
6a86b9c7
JB
193 rx_flags |= IEEE80211_RADIOTAP_F_RX_BADPLCP;
194 put_unaligned_le16(rx_flags, pos);
601ae7f2
BR
195 pos += 2;
196}
197
b2e7771e
JB
198/*
199 * This function copies a received frame to all monitor interfaces and
200 * returns a cleaned-up SKB that no longer includes the FCS nor the
201 * radiotap header the driver might have added.
202 */
203static struct sk_buff *
204ieee80211_rx_monitor(struct ieee80211_local *local, struct sk_buff *origskb,
8318d78a 205 struct ieee80211_rate *rate)
b2e7771e 206{
f1d58c25 207 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(origskb);
b2e7771e 208 struct ieee80211_sub_if_data *sdata;
b2e7771e 209 int needed_headroom = 0;
b2e7771e
JB
210 struct sk_buff *skb, *skb2;
211 struct net_device *prev_dev = NULL;
212 int present_fcs_len = 0;
b2e7771e
JB
213
214 /*
215 * First, we may need to make a copy of the skb because
216 * (1) we need to modify it for radiotap (if not present), and
217 * (2) the other RX handlers will modify the skb we got.
218 *
219 * We don't need to, of course, if we aren't going to return
220 * the SKB because it has a bad FCS/PLCP checksum.
221 */
0869aea0
JB
222
223 /* room for the radiotap header based on driver features */
224 needed_headroom = ieee80211_rx_radiotap_len(local, status);
b2e7771e
JB
225
226 if (local->hw.flags & IEEE80211_HW_RX_INCLUDES_FCS)
227 present_fcs_len = FCS_LEN;
228
e3cf8b3f
ZY
229 /* make sure hdr->frame_control is on the linear part */
230 if (!pskb_may_pull(origskb, 2)) {
231 dev_kfree_skb(origskb);
232 return NULL;
233 }
234
b2e7771e 235 if (!local->monitors) {
0869aea0 236 if (should_drop_frame(origskb, present_fcs_len)) {
b2e7771e
JB
237 dev_kfree_skb(origskb);
238 return NULL;
239 }
240
0869aea0 241 return remove_monitor_info(local, origskb);
b2e7771e
JB
242 }
243
0869aea0 244 if (should_drop_frame(origskb, present_fcs_len)) {
b2e7771e
JB
245 /* only need to expand headroom if necessary */
246 skb = origskb;
247 origskb = NULL;
248
249 /*
250 * This shouldn't trigger often because most devices have an
251 * RX header they pull before we get here, and that should
252 * be big enough for our radiotap information. We should
253 * probably export the length to drivers so that we can have
254 * them allocate enough headroom to start with.
255 */
256 if (skb_headroom(skb) < needed_headroom &&
c49e5ea3 257 pskb_expand_head(skb, needed_headroom, 0, GFP_ATOMIC)) {
b2e7771e
JB
258 dev_kfree_skb(skb);
259 return NULL;
260 }
261 } else {
262 /*
263 * Need to make a copy and possibly remove radiotap header
264 * and FCS from the original.
265 */
266 skb = skb_copy_expand(origskb, needed_headroom, 0, GFP_ATOMIC);
267
0869aea0 268 origskb = remove_monitor_info(local, origskb);
b2e7771e
JB
269
270 if (!skb)
271 return origskb;
272 }
273
0869aea0
JB
274 /* prepend radiotap information */
275 ieee80211_add_rx_radiotap_header(local, skb, rate, needed_headroom);
b2e7771e 276
ce3edf6d 277 skb_reset_mac_header(skb);
b2e7771e
JB
278 skb->ip_summed = CHECKSUM_UNNECESSARY;
279 skb->pkt_type = PACKET_OTHERHOST;
280 skb->protocol = htons(ETH_P_802_2);
281
282 list_for_each_entry_rcu(sdata, &local->interfaces, list) {
05c914fe 283 if (sdata->vif.type != NL80211_IFTYPE_MONITOR)
b2e7771e
JB
284 continue;
285
3d30d949
MW
286 if (sdata->u.mntr_flags & MONITOR_FLAG_COOK_FRAMES)
287 continue;
288
9607e6b6 289 if (!ieee80211_sdata_running(sdata))
47846c9b
JB
290 continue;
291
b2e7771e
JB
292 if (prev_dev) {
293 skb2 = skb_clone(skb, GFP_ATOMIC);
294 if (skb2) {
295 skb2->dev = prev_dev;
5548a8a1 296 netif_receive_skb(skb2);
b2e7771e
JB
297 }
298 }
299
300 prev_dev = sdata->dev;
301 sdata->dev->stats.rx_packets++;
302 sdata->dev->stats.rx_bytes += skb->len;
303 }
304
305 if (prev_dev) {
306 skb->dev = prev_dev;
5548a8a1 307 netif_receive_skb(skb);
b2e7771e
JB
308 } else
309 dev_kfree_skb(skb);
310
311 return origskb;
312}
313
314
5cf121c3 315static void ieee80211_parse_qos(struct ieee80211_rx_data *rx)
6e0d114d 316{
238f74a2 317 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)rx->skb->data;
554891e6 318 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(rx->skb);
6e0d114d
JB
319 int tid;
320
321 /* does the frame have a qos control field? */
238f74a2
HH
322 if (ieee80211_is_data_qos(hdr->frame_control)) {
323 u8 *qc = ieee80211_get_qos_ctl(hdr);
6e0d114d 324 /* frame has qos control */
238f74a2
HH
325 tid = *qc & IEEE80211_QOS_CTL_TID_MASK;
326 if (*qc & IEEE80211_QOS_CONTROL_A_MSDU_PRESENT)
554891e6 327 status->rx_flags |= IEEE80211_RX_AMSDU;
6e0d114d 328 } else {
1411f9b5
JB
329 /*
330 * IEEE 802.11-2007, 7.1.3.4.1 ("Sequence Number field"):
331 *
332 * Sequence numbers for management frames, QoS data
333 * frames with a broadcast/multicast address in the
334 * Address 1 field, and all non-QoS data frames sent
335 * by QoS STAs are assigned using an additional single
336 * modulo-4096 counter, [...]
337 *
338 * We also use that counter for non-QoS STAs.
339 */
340 tid = NUM_RX_DATA_QUEUES - 1;
6e0d114d 341 }
52865dfd 342
5cf121c3 343 rx->queue = tid;
6e0d114d
JB
344 /* Set skb->priority to 1d tag if highest order bit of TID is not set.
345 * For now, set skb->priority to 0 for other cases. */
346 rx->skb->priority = (tid > 7) ? 0 : tid;
38f3714d 347}
6e0d114d 348
d1c3a37c
JB
349/**
350 * DOC: Packet alignment
351 *
352 * Drivers always need to pass packets that are aligned to two-byte boundaries
353 * to the stack.
354 *
355 * Additionally, should, if possible, align the payload data in a way that
356 * guarantees that the contained IP header is aligned to a four-byte
357 * boundary. In the case of regular frames, this simply means aligning the
358 * payload to a four-byte boundary (because either the IP header is directly
359 * contained, or IV/RFC1042 headers that have a length divisible by four are
59d9cb07
KV
360 * in front of it). If the payload data is not properly aligned and the
361 * architecture doesn't support efficient unaligned operations, mac80211
362 * will align the data.
d1c3a37c
JB
363 *
364 * With A-MSDU frames, however, the payload data address must yield two modulo
365 * four because there are 14-byte 802.3 headers within the A-MSDU frames that
366 * push the IP header further back to a multiple of four again. Thankfully, the
367 * specs were sane enough this time around to require padding each A-MSDU
368 * subframe to a length that is a multiple of four.
369 *
370 * Padding like Atheros hardware adds which is inbetween the 802.11 header and
371 * the payload is not supported, the driver is required to move the 802.11
372 * header to be directly in front of the payload in that case.
373 */
374static void ieee80211_verify_alignment(struct ieee80211_rx_data *rx)
38f3714d 375{
59d9cb07
KV
376#ifdef CONFIG_MAC80211_VERBOSE_DEBUG
377 WARN_ONCE((unsigned long)rx->skb->data & 1,
378 "unaligned packet at 0x%p\n", rx->skb->data);
d1c3a37c 379#endif
6e0d114d
JB
380}
381
6368e4b1 382
571ecf67
JB
383/* rx handlers */
384
49461622 385static ieee80211_rx_result debug_noinline
5cf121c3 386ieee80211_rx_h_passive_scan(struct ieee80211_rx_data *rx)
571ecf67
JB
387{
388 struct ieee80211_local *local = rx->local;
554891e6 389 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(rx->skb);
571ecf67
JB
390 struct sk_buff *skb = rx->skb;
391
554891e6 392 if (likely(!(status->rx_flags & IEEE80211_RX_IN_SCAN)))
4080c7cd
JB
393 return RX_CONTINUE;
394
395 if (test_bit(SCAN_HW_SCANNING, &local->scanning))
f1d58c25 396 return ieee80211_scan_rx(rx->sdata, skb);
ece8eddd 397
4080c7cd 398 if (test_bit(SCAN_SW_SCANNING, &local->scanning)) {
ece8eddd 399 /* drop all the other packets during a software scan anyway */
f1d58c25 400 if (ieee80211_scan_rx(rx->sdata, skb) != RX_QUEUED)
ece8eddd 401 dev_kfree_skb(skb);
9ae54c84 402 return RX_QUEUED;
571ecf67
JB
403 }
404
4080c7cd
JB
405 /* scanning finished during invoking of handlers */
406 I802_DEBUG_INC(local->rx_handlers_drop_passive_scan);
407 return RX_DROP_UNUSABLE;
571ecf67
JB
408}
409
3cfcf6ac
JM
410
411static int ieee80211_is_unicast_robust_mgmt_frame(struct sk_buff *skb)
412{
413 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *) skb->data;
414
415 if (skb->len < 24 || is_multicast_ether_addr(hdr->addr1))
416 return 0;
417
418 return ieee80211_is_robust_mgmt_frame(hdr);
419}
420
421
422static int ieee80211_is_multicast_robust_mgmt_frame(struct sk_buff *skb)
423{
424 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *) skb->data;
425
426 if (skb->len < 24 || !is_multicast_ether_addr(hdr->addr1))
427 return 0;
428
429 return ieee80211_is_robust_mgmt_frame(hdr);
430}
431
432
433/* Get the BIP key index from MMIE; return -1 if this is not a BIP frame */
434static int ieee80211_get_mmie_keyidx(struct sk_buff *skb)
435{
436 struct ieee80211_mgmt *hdr = (struct ieee80211_mgmt *) skb->data;
437 struct ieee80211_mmie *mmie;
438
439 if (skb->len < 24 + sizeof(*mmie) ||
440 !is_multicast_ether_addr(hdr->da))
441 return -1;
442
443 if (!ieee80211_is_robust_mgmt_frame((struct ieee80211_hdr *) hdr))
444 return -1; /* not a robust management frame */
445
446 mmie = (struct ieee80211_mmie *)
447 (skb->data + skb->len - sizeof(*mmie));
448 if (mmie->element_id != WLAN_EID_MMIE ||
449 mmie->length != sizeof(*mmie) - 2)
450 return -1;
451
452 return le16_to_cpu(mmie->key_id);
453}
454
455
33b64eb2 456static ieee80211_rx_result
5cf121c3 457ieee80211_rx_mesh_check(struct ieee80211_rx_data *rx)
33b64eb2 458{
a7767f95
HH
459 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)rx->skb->data;
460 unsigned int hdrlen = ieee80211_hdrlen(hdr->frame_control);
47846c9b 461 char *dev_addr = rx->sdata->vif.addr;
d6d1a5a7 462
a7767f95 463 if (ieee80211_is_data(hdr->frame_control)) {
3c5772a5
JC
464 if (is_multicast_ether_addr(hdr->addr1)) {
465 if (ieee80211_has_tods(hdr->frame_control) ||
466 !ieee80211_has_fromds(hdr->frame_control))
467 return RX_DROP_MONITOR;
468 if (memcmp(hdr->addr3, dev_addr, ETH_ALEN) == 0)
469 return RX_DROP_MONITOR;
470 } else {
471 if (!ieee80211_has_a4(hdr->frame_control))
472 return RX_DROP_MONITOR;
473 if (memcmp(hdr->addr4, dev_addr, ETH_ALEN) == 0)
474 return RX_DROP_MONITOR;
475 }
33b64eb2
LCC
476 }
477
478 /* If there is not an established peer link and this is not a peer link
479 * establisment frame, beacon or probe, drop the frame.
480 */
481
b4e08ea1 482 if (!rx->sta || sta_plink_state(rx->sta) != PLINK_ESTAB) {
33b64eb2 483 struct ieee80211_mgmt *mgmt;
d6d1a5a7 484
a7767f95 485 if (!ieee80211_is_mgmt(hdr->frame_control))
33b64eb2
LCC
486 return RX_DROP_MONITOR;
487
a7767f95 488 if (ieee80211_is_action(hdr->frame_control)) {
33b64eb2 489 mgmt = (struct ieee80211_mgmt *)hdr;
97ad9139 490 if (mgmt->u.action.category != WLAN_CATEGORY_MESH_PLINK)
33b64eb2 491 return RX_DROP_MONITOR;
33b64eb2 492 return RX_CONTINUE;
33b64eb2
LCC
493 }
494
a7767f95
HH
495 if (ieee80211_is_probe_req(hdr->frame_control) ||
496 ieee80211_is_probe_resp(hdr->frame_control) ||
497 ieee80211_is_beacon(hdr->frame_control))
498 return RX_CONTINUE;
499
500 return RX_DROP_MONITOR;
501
502 }
503
504#define msh_h_get(h, l) ((struct ieee80211s_hdr *) ((u8 *)h + l))
505
506 if (ieee80211_is_data(hdr->frame_control) &&
507 is_multicast_ether_addr(hdr->addr1) &&
3c5772a5 508 mesh_rmc_check(hdr->addr3, msh_h_get(hdr, hdrlen), rx->sdata))
33b64eb2 509 return RX_DROP_MONITOR;
902acc78 510#undef msh_h_get
d6d1a5a7 511
902acc78
JB
512 return RX_CONTINUE;
513}
33b64eb2 514
1edfb1af
JB
515#define SEQ_MODULO 0x1000
516#define SEQ_MASK 0xfff
517
518static inline int seq_less(u16 sq1, u16 sq2)
519{
520 return ((sq1 - sq2) & SEQ_MASK) > (SEQ_MODULO >> 1);
521}
522
523static inline u16 seq_inc(u16 sq)
524{
525 return (sq + 1) & SEQ_MASK;
526}
527
528static inline u16 seq_sub(u16 sq1, u16 sq2)
529{
530 return (sq1 - sq2) & SEQ_MASK;
531}
532
533
534static void ieee80211_release_reorder_frame(struct ieee80211_hw *hw,
535 struct tid_ampdu_rx *tid_agg_rx,
2569a826
JB
536 int index,
537 struct sk_buff_head *frames)
1edfb1af 538{
1edfb1af 539 struct sk_buff *skb = tid_agg_rx->reorder_buf[index];
1edfb1af
JB
540
541 if (!skb)
542 goto no_frame;
543
071d9ac2 544 /* release the frame from the reorder ring buffer */
1edfb1af
JB
545 tid_agg_rx->stored_mpdu_num--;
546 tid_agg_rx->reorder_buf[index] = NULL;
d29cecda 547 __skb_queue_tail(frames, skb);
1edfb1af
JB
548
549no_frame:
550 tid_agg_rx->head_seq_num = seq_inc(tid_agg_rx->head_seq_num);
551}
552
553static void ieee80211_release_reorder_frames(struct ieee80211_hw *hw,
554 struct tid_ampdu_rx *tid_agg_rx,
2569a826
JB
555 u16 head_seq_num,
556 struct sk_buff_head *frames)
1edfb1af
JB
557{
558 int index;
559
560 while (seq_less(tid_agg_rx->head_seq_num, head_seq_num)) {
561 index = seq_sub(tid_agg_rx->head_seq_num, tid_agg_rx->ssn) %
562 tid_agg_rx->buf_size;
2569a826 563 ieee80211_release_reorder_frame(hw, tid_agg_rx, index, frames);
1edfb1af
JB
564 }
565}
566
567/*
568 * Timeout (in jiffies) for skb's that are waiting in the RX reorder buffer. If
569 * the skb was added to the buffer longer than this time ago, the earlier
570 * frames that have not yet been received are assumed to be lost and the skb
571 * can be released for processing. This may also release other skb's from the
572 * reorder buffer if there are no additional gaps between the frames.
2bff8ebf
CL
573 *
574 * Callers must hold tid_agg_rx->reorder_lock.
1edfb1af
JB
575 */
576#define HT_RX_REORDER_BUF_TIMEOUT (HZ / 10)
577
aa0c8636
CL
578static void ieee80211_sta_reorder_release(struct ieee80211_hw *hw,
579 struct tid_ampdu_rx *tid_agg_rx,
580 struct sk_buff_head *frames)
581{
2bff8ebf 582 int index, j;
aa0c8636
CL
583
584 /* release the buffer until next missing frame */
585 index = seq_sub(tid_agg_rx->head_seq_num, tid_agg_rx->ssn) %
586 tid_agg_rx->buf_size;
587 if (!tid_agg_rx->reorder_buf[index] &&
588 tid_agg_rx->stored_mpdu_num > 1) {
589 /*
590 * No buffers ready to be released, but check whether any
591 * frames in the reorder buffer have timed out.
592 */
aa0c8636
CL
593 int skipped = 1;
594 for (j = (index + 1) % tid_agg_rx->buf_size; j != index;
595 j = (j + 1) % tid_agg_rx->buf_size) {
596 if (!tid_agg_rx->reorder_buf[j]) {
597 skipped++;
598 continue;
599 }
600 if (!time_after(jiffies, tid_agg_rx->reorder_time[j] +
601 HT_RX_REORDER_BUF_TIMEOUT))
2bff8ebf 602 goto set_release_timer;
aa0c8636
CL
603
604#ifdef CONFIG_MAC80211_HT_DEBUG
605 if (net_ratelimit())
0fb9a9ec
JP
606 wiphy_debug(hw->wiphy,
607 "release an RX reorder frame due to timeout on earlier frames\n");
aa0c8636
CL
608#endif
609 ieee80211_release_reorder_frame(hw, tid_agg_rx,
610 j, frames);
611
612 /*
613 * Increment the head seq# also for the skipped slots.
614 */
615 tid_agg_rx->head_seq_num =
616 (tid_agg_rx->head_seq_num + skipped) & SEQ_MASK;
617 skipped = 0;
618 }
619 } else while (tid_agg_rx->reorder_buf[index]) {
620 ieee80211_release_reorder_frame(hw, tid_agg_rx, index, frames);
621 index = seq_sub(tid_agg_rx->head_seq_num, tid_agg_rx->ssn) %
622 tid_agg_rx->buf_size;
623 }
2bff8ebf
CL
624
625 if (tid_agg_rx->stored_mpdu_num) {
626 j = index = seq_sub(tid_agg_rx->head_seq_num,
627 tid_agg_rx->ssn) % tid_agg_rx->buf_size;
628
629 for (; j != (index - 1) % tid_agg_rx->buf_size;
630 j = (j + 1) % tid_agg_rx->buf_size) {
631 if (tid_agg_rx->reorder_buf[j])
632 break;
633 }
634
635 set_release_timer:
636
637 mod_timer(&tid_agg_rx->reorder_timer,
638 tid_agg_rx->reorder_time[j] +
639 HT_RX_REORDER_BUF_TIMEOUT);
640 } else {
641 del_timer(&tid_agg_rx->reorder_timer);
642 }
aa0c8636
CL
643}
644
1edfb1af
JB
645/*
646 * As this function belongs to the RX path it must be under
647 * rcu_read_lock protection. It returns false if the frame
648 * can be processed immediately, true if it was consumed.
649 */
650static bool ieee80211_sta_manage_reorder_buf(struct ieee80211_hw *hw,
651 struct tid_ampdu_rx *tid_agg_rx,
2569a826
JB
652 struct sk_buff *skb,
653 struct sk_buff_head *frames)
1edfb1af
JB
654{
655 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *) skb->data;
656 u16 sc = le16_to_cpu(hdr->seq_ctrl);
657 u16 mpdu_seq_num = (sc & IEEE80211_SCTL_SEQ) >> 4;
658 u16 head_seq_num, buf_size;
659 int index;
2bff8ebf 660 bool ret = true;
1edfb1af
JB
661
662 buf_size = tid_agg_rx->buf_size;
663 head_seq_num = tid_agg_rx->head_seq_num;
664
2bff8ebf 665 spin_lock(&tid_agg_rx->reorder_lock);
1edfb1af
JB
666 /* frame with out of date sequence number */
667 if (seq_less(mpdu_seq_num, head_seq_num)) {
668 dev_kfree_skb(skb);
2bff8ebf 669 goto out;
1edfb1af
JB
670 }
671
672 /*
673 * If frame the sequence number exceeds our buffering window
674 * size release some previous frames to make room for this one.
675 */
676 if (!seq_less(mpdu_seq_num, head_seq_num + buf_size)) {
677 head_seq_num = seq_inc(seq_sub(mpdu_seq_num, buf_size));
678 /* release stored frames up to new head to stack */
2569a826
JB
679 ieee80211_release_reorder_frames(hw, tid_agg_rx, head_seq_num,
680 frames);
1edfb1af
JB
681 }
682
683 /* Now the new frame is always in the range of the reordering buffer */
684
685 index = seq_sub(mpdu_seq_num, tid_agg_rx->ssn) % tid_agg_rx->buf_size;
686
687 /* check if we already stored this frame */
688 if (tid_agg_rx->reorder_buf[index]) {
689 dev_kfree_skb(skb);
2bff8ebf 690 goto out;
1edfb1af
JB
691 }
692
693 /*
694 * If the current MPDU is in the right order and nothing else
695 * is stored we can process it directly, no need to buffer it.
696 */
697 if (mpdu_seq_num == tid_agg_rx->head_seq_num &&
698 tid_agg_rx->stored_mpdu_num == 0) {
699 tid_agg_rx->head_seq_num = seq_inc(tid_agg_rx->head_seq_num);
2bff8ebf
CL
700 ret = false;
701 goto out;
1edfb1af
JB
702 }
703
704 /* put the frame in the reordering buffer */
705 tid_agg_rx->reorder_buf[index] = skb;
706 tid_agg_rx->reorder_time[index] = jiffies;
707 tid_agg_rx->stored_mpdu_num++;
aa0c8636 708 ieee80211_sta_reorder_release(hw, tid_agg_rx, frames);
1edfb1af 709
2bff8ebf
CL
710 out:
711 spin_unlock(&tid_agg_rx->reorder_lock);
712 return ret;
1edfb1af
JB
713}
714
715/*
716 * Reorder MPDUs from A-MPDUs, keeping them on a buffer. Returns
717 * true if the MPDU was buffered, false if it should be processed.
718 */
2569a826
JB
719static void ieee80211_rx_reorder_ampdu(struct ieee80211_rx_data *rx,
720 struct sk_buff_head *frames)
1edfb1af 721{
2569a826
JB
722 struct sk_buff *skb = rx->skb;
723 struct ieee80211_local *local = rx->local;
1edfb1af
JB
724 struct ieee80211_hw *hw = &local->hw;
725 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *) skb->data;
2569a826 726 struct sta_info *sta = rx->sta;
1edfb1af
JB
727 struct tid_ampdu_rx *tid_agg_rx;
728 u16 sc;
729 int tid;
730
731 if (!ieee80211_is_data_qos(hdr->frame_control))
2569a826 732 goto dont_reorder;
1edfb1af
JB
733
734 /*
735 * filter the QoS data rx stream according to
736 * STA/TID and check if this STA/TID is on aggregation
737 */
738
1edfb1af 739 if (!sta)
2569a826 740 goto dont_reorder;
1edfb1af
JB
741
742 tid = *ieee80211_get_qos_ctl(hdr) & IEEE80211_QOS_CTL_TID_MASK;
743
a87f736d
JB
744 tid_agg_rx = rcu_dereference(sta->ampdu_mlme.tid_rx[tid]);
745 if (!tid_agg_rx)
746 goto dont_reorder;
1edfb1af
JB
747
748 /* qos null data frames are excluded */
749 if (unlikely(hdr->frame_control & cpu_to_le16(IEEE80211_STYPE_NULLFUNC)))
a87f736d 750 goto dont_reorder;
1edfb1af
JB
751
752 /* new, potentially un-ordered, ampdu frame - process it */
753
754 /* reset session timer */
755 if (tid_agg_rx->timeout)
756 mod_timer(&tid_agg_rx->session_timer,
757 TU_TO_EXP_TIME(tid_agg_rx->timeout));
758
759 /* if this mpdu is fragmented - terminate rx aggregation session */
760 sc = le16_to_cpu(hdr->seq_ctrl);
761 if (sc & IEEE80211_SCTL_FRAG) {
c1475ca9 762 skb->pkt_type = IEEE80211_SDATA_QUEUE_TYPE_FRAME;
344eec67
JB
763 skb_queue_tail(&rx->sdata->skb_queue, skb);
764 ieee80211_queue_work(&local->hw, &rx->sdata->work);
2569a826 765 return;
1edfb1af
JB
766 }
767
a87f736d
JB
768 /*
769 * No locking needed -- we will only ever process one
770 * RX packet at a time, and thus own tid_agg_rx. All
771 * other code manipulating it needs to (and does) make
772 * sure that we cannot get to it any more before doing
773 * anything with it.
774 */
775 if (ieee80211_sta_manage_reorder_buf(hw, tid_agg_rx, skb, frames))
2569a826
JB
776 return;
777
778 dont_reorder:
779 __skb_queue_tail(frames, skb);
1edfb1af 780}
33b64eb2 781
49461622 782static ieee80211_rx_result debug_noinline
5cf121c3 783ieee80211_rx_h_check(struct ieee80211_rx_data *rx)
571ecf67 784{
a7767f95 785 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)rx->skb->data;
554891e6 786 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(rx->skb);
571ecf67
JB
787
788 /* Drop duplicate 802.11 retransmissions (IEEE 802.11 Chap. 9.2.9) */
789 if (rx->sta && !is_multicast_ether_addr(hdr->addr1)) {
a7767f95 790 if (unlikely(ieee80211_has_retry(hdr->frame_control) &&
5cf121c3 791 rx->sta->last_seq_ctrl[rx->queue] ==
571ecf67 792 hdr->seq_ctrl)) {
554891e6 793 if (status->rx_flags & IEEE80211_RX_RA_MATCH) {
571ecf67
JB
794 rx->local->dot11FrameDuplicateCount++;
795 rx->sta->num_duplicates++;
796 }
e4c26add 797 return RX_DROP_MONITOR;
571ecf67 798 } else
5cf121c3 799 rx->sta->last_seq_ctrl[rx->queue] = hdr->seq_ctrl;
571ecf67
JB
800 }
801
571ecf67
JB
802 if (unlikely(rx->skb->len < 16)) {
803 I802_DEBUG_INC(rx->local->rx_handlers_drop_short);
e4c26add 804 return RX_DROP_MONITOR;
571ecf67
JB
805 }
806
571ecf67
JB
807 /* Drop disallowed frame classes based on STA auth/assoc state;
808 * IEEE 802.11, Chap 5.5.
809 *
ccd7b362
JB
810 * mac80211 filters only based on association state, i.e. it drops
811 * Class 3 frames from not associated stations. hostapd sends
571ecf67
JB
812 * deauth/disassoc frames when needed. In addition, hostapd is
813 * responsible for filtering on both auth and assoc states.
814 */
33b64eb2 815
902acc78 816 if (ieee80211_vif_is_mesh(&rx->sdata->vif))
33b64eb2 817 return ieee80211_rx_mesh_check(rx);
33b64eb2 818
a7767f95
HH
819 if (unlikely((ieee80211_is_data(hdr->frame_control) ||
820 ieee80211_is_pspoll(hdr->frame_control)) &&
05c914fe 821 rx->sdata->vif.type != NL80211_IFTYPE_ADHOC &&
1be7fe8d 822 rx->sdata->vif.type != NL80211_IFTYPE_WDS &&
07346f81 823 (!rx->sta || !test_sta_flags(rx->sta, WLAN_STA_ASSOC)))) {
a7767f95
HH
824 if ((!ieee80211_has_fromds(hdr->frame_control) &&
825 !ieee80211_has_tods(hdr->frame_control) &&
826 ieee80211_is_data(hdr->frame_control)) ||
554891e6 827 !(status->rx_flags & IEEE80211_RX_RA_MATCH)) {
571ecf67
JB
828 /* Drop IBSS frames and frames for other hosts
829 * silently. */
e4c26add 830 return RX_DROP_MONITOR;
571ecf67
JB
831 }
832
e4c26add 833 return RX_DROP_MONITOR;
571ecf67
JB
834 }
835
9ae54c84 836 return RX_CONTINUE;
570bd537
JB
837}
838
839
49461622 840static ieee80211_rx_result debug_noinline
5cf121c3 841ieee80211_rx_h_decrypt(struct ieee80211_rx_data *rx)
570bd537 842{
eb9fb5b8
JB
843 struct sk_buff *skb = rx->skb;
844 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(skb);
845 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
3017b80b
JB
846 int keyidx;
847 int hdrlen;
e4c26add 848 ieee80211_rx_result result = RX_DROP_UNUSABLE;
d4e46a3d 849 struct ieee80211_key *stakey = NULL;
3cfcf6ac 850 int mmie_keyidx = -1;
761ab470 851 __le16 fc;
570bd537 852
3017b80b
JB
853 /*
854 * Key selection 101
855 *
3cfcf6ac 856 * There are four types of keys:
3017b80b 857 * - GTK (group keys)
3cfcf6ac 858 * - IGTK (group keys for management frames)
3017b80b
JB
859 * - PTK (pairwise keys)
860 * - STK (station-to-station pairwise keys)
861 *
862 * When selecting a key, we have to distinguish between multicast
863 * (including broadcast) and unicast frames, the latter can only
3cfcf6ac
JM
864 * use PTKs and STKs while the former always use GTKs and IGTKs.
865 * Unless, of course, actual WEP keys ("pre-RSNA") are used, then
866 * unicast frames can also use key indices like GTKs. Hence, if we
867 * don't have a PTK/STK we check the key index for a WEP key.
3017b80b 868 *
8dc06a1c
JB
869 * Note that in a regular BSS, multicast frames are sent by the
870 * AP only, associated stations unicast the frame to the AP first
871 * which then multicasts it on their behalf.
872 *
3017b80b
JB
873 * There is also a slight problem in IBSS mode: GTKs are negotiated
874 * with each station, that is something we don't currently handle.
8dc06a1c
JB
875 * The spec seems to expect that one negotiates the same key with
876 * every station but there's no such requirement; VLANs could be
877 * possible.
3017b80b
JB
878 */
879
3017b80b 880 /*
1990af8d 881 * No point in finding a key and decrypting if the frame is neither
3017b80b
JB
882 * addressed to us nor a multicast frame.
883 */
554891e6 884 if (!(status->rx_flags & IEEE80211_RX_RA_MATCH))
9ae54c84 885 return RX_CONTINUE;
3017b80b 886
2569a826
JB
887 /* start without a key */
888 rx->key = NULL;
889
d4e46a3d
JB
890 if (rx->sta)
891 stakey = rcu_dereference(rx->sta->key);
892
761ab470
JB
893 fc = hdr->frame_control;
894
895 if (!ieee80211_has_protected(fc))
0c7c10c7
JM
896 mmie_keyidx = ieee80211_get_mmie_keyidx(rx->skb);
897
d4e46a3d
JB
898 if (!is_multicast_ether_addr(hdr->addr1) && stakey) {
899 rx->key = stakey;
dc1580dd
JB
900 if ((status->flag & RX_FLAG_DECRYPTED) &&
901 (status->flag & RX_FLAG_IV_STRIPPED))
902 return RX_CONTINUE;
0c7c10c7 903 /* Skip decryption if the frame is not protected. */
761ab470 904 if (!ieee80211_has_protected(fc))
0c7c10c7 905 return RX_CONTINUE;
3cfcf6ac
JM
906 } else if (mmie_keyidx >= 0) {
907 /* Broadcast/multicast robust management frame / BIP */
eb9fb5b8
JB
908 if ((status->flag & RX_FLAG_DECRYPTED) &&
909 (status->flag & RX_FLAG_IV_STRIPPED))
3cfcf6ac
JM
910 return RX_CONTINUE;
911
912 if (mmie_keyidx < NUM_DEFAULT_KEYS ||
913 mmie_keyidx >= NUM_DEFAULT_KEYS + NUM_DEFAULT_MGMT_KEYS)
914 return RX_DROP_MONITOR; /* unexpected BIP keyidx */
915 rx->key = rcu_dereference(rx->sdata->keys[mmie_keyidx]);
761ab470 916 } else if (!ieee80211_has_protected(fc)) {
0c7c10c7
JM
917 /*
918 * The frame was not protected, so skip decryption. However, we
919 * need to set rx->key if there is a key that could have been
920 * used so that the frame may be dropped if encryption would
921 * have been expected.
922 */
923 struct ieee80211_key *key = NULL;
761ab470 924 if (ieee80211_is_mgmt(fc) &&
0c7c10c7
JM
925 is_multicast_ether_addr(hdr->addr1) &&
926 (key = rcu_dereference(rx->sdata->default_mgmt_key)))
927 rx->key = key;
928 else if ((key = rcu_dereference(rx->sdata->default_key)))
929 rx->key = key;
930 return RX_CONTINUE;
571ecf67 931 } else {
39184b15 932 u8 keyid;
3017b80b
JB
933 /*
934 * The device doesn't give us the IV so we won't be
935 * able to look up the key. That's ok though, we
936 * don't need to decrypt the frame, we just won't
937 * be able to keep statistics accurate.
938 * Except for key threshold notifications, should
939 * we somehow allow the driver to tell us which key
940 * the hardware used if this flag is set?
941 */
eb9fb5b8
JB
942 if ((status->flag & RX_FLAG_DECRYPTED) &&
943 (status->flag & RX_FLAG_IV_STRIPPED))
9ae54c84 944 return RX_CONTINUE;
3017b80b 945
761ab470 946 hdrlen = ieee80211_hdrlen(fc);
3017b80b
JB
947
948 if (rx->skb->len < 8 + hdrlen)
e4c26add 949 return RX_DROP_UNUSABLE; /* TODO: count this? */
3017b80b
JB
950
951 /*
952 * no need to call ieee80211_wep_get_keyidx,
953 * it verifies a bunch of things we've done already
954 */
39184b15
ZY
955 skb_copy_bits(rx->skb, hdrlen + 3, &keyid, 1);
956 keyidx = keyid >> 6;
3017b80b 957
d4e46a3d 958 rx->key = rcu_dereference(rx->sdata->keys[keyidx]);
3017b80b
JB
959
960 /*
961 * RSNA-protected unicast frames should always be sent with
962 * pairwise or station-to-station keys, but for WEP we allow
963 * using a key index as well.
964 */
97359d12
JB
965 if (rx->key && rx->key->conf.cipher != WLAN_CIPHER_SUITE_WEP40 &&
966 rx->key->conf.cipher != WLAN_CIPHER_SUITE_WEP104 &&
3017b80b
JB
967 !is_multicast_ether_addr(hdr->addr1))
968 rx->key = NULL;
571ecf67
JB
969 }
970
3017b80b 971 if (rx->key) {
571ecf67 972 rx->key->tx_rx_count++;
011bfcc4 973 /* TODO: add threshold stuff again */
1990af8d 974 } else {
e4c26add 975 return RX_DROP_MONITOR;
70f08765
JB
976 }
977
39184b15
ZY
978 if (skb_linearize(rx->skb))
979 return RX_DROP_UNUSABLE;
761ab470 980 /* the hdr variable is invalid now! */
1990af8d 981
97359d12
JB
982 switch (rx->key->conf.cipher) {
983 case WLAN_CIPHER_SUITE_WEP40:
984 case WLAN_CIPHER_SUITE_WEP104:
761ab470
JB
985 /* Check for weak IVs if possible */
986 if (rx->sta && ieee80211_is_data(fc) &&
987 (!(status->flag & RX_FLAG_IV_STRIPPED) ||
988 !(status->flag & RX_FLAG_DECRYPTED)) &&
989 ieee80211_wep_is_weak_iv(rx->skb, rx->key))
990 rx->sta->wep_weak_iv_count++;
991
e2f036da
MN
992 result = ieee80211_crypto_wep_decrypt(rx);
993 break;
97359d12 994 case WLAN_CIPHER_SUITE_TKIP:
e2f036da
MN
995 result = ieee80211_crypto_tkip_decrypt(rx);
996 break;
97359d12 997 case WLAN_CIPHER_SUITE_CCMP:
e2f036da
MN
998 result = ieee80211_crypto_ccmp_decrypt(rx);
999 break;
97359d12 1000 case WLAN_CIPHER_SUITE_AES_CMAC:
3cfcf6ac
JM
1001 result = ieee80211_crypto_aes_cmac_decrypt(rx);
1002 break;
3ffc2a90
JB
1003 default:
1004 /*
1005 * We can reach here only with HW-only algorithms
1006 * but why didn't it decrypt the frame?!
1007 */
1008 return RX_DROP_UNUSABLE;
70f08765
JB
1009 }
1010
e2f036da 1011 /* either the frame has been decrypted or will be dropped */
eb9fb5b8 1012 status->flag |= RX_FLAG_DECRYPTED;
e2f036da
MN
1013
1014 return result;
70f08765
JB
1015}
1016
572e0012
KV
1017static ieee80211_rx_result debug_noinline
1018ieee80211_rx_h_check_more_data(struct ieee80211_rx_data *rx)
1019{
1020 struct ieee80211_local *local;
1021 struct ieee80211_hdr *hdr;
1022 struct sk_buff *skb;
1023
1024 local = rx->local;
1025 skb = rx->skb;
1026 hdr = (struct ieee80211_hdr *) skb->data;
1027
1028 if (!local->pspolling)
1029 return RX_CONTINUE;
1030
1031 if (!ieee80211_has_fromds(hdr->frame_control))
1032 /* this is not from AP */
1033 return RX_CONTINUE;
1034
1035 if (!ieee80211_is_data(hdr->frame_control))
1036 return RX_CONTINUE;
1037
1038 if (!ieee80211_has_moredata(hdr->frame_control)) {
1039 /* AP has no more frames buffered for us */
1040 local->pspolling = false;
1041 return RX_CONTINUE;
1042 }
1043
1044 /* more data bit is set, let's request a new frame from the AP */
1045 ieee80211_send_pspoll(local, rx->sdata);
1046
1047 return RX_CONTINUE;
1048}
1049
133b8226 1050static void ap_sta_ps_start(struct sta_info *sta)
571ecf67 1051{
133b8226 1052 struct ieee80211_sub_if_data *sdata = sta->sdata;
4571d3bf 1053 struct ieee80211_local *local = sdata->local;
0795af57 1054
3e122be0 1055 atomic_inc(&sdata->bss->num_sta_ps);
af818581 1056 set_sta_flags(sta, WLAN_STA_PS_STA);
12375ef9 1057 drv_sta_notify(local, sdata, STA_NOTIFY_SLEEP, &sta->sta);
571ecf67 1058#ifdef CONFIG_MAC80211_VERBOSE_PS_DEBUG
0c68ae26 1059 printk(KERN_DEBUG "%s: STA %pM aid %d enters power save mode\n",
47846c9b 1060 sdata->name, sta->sta.addr, sta->sta.aid);
571ecf67
JB
1061#endif /* CONFIG_MAC80211_VERBOSE_PS_DEBUG */
1062}
1063
ff9458d3 1064static void ap_sta_ps_end(struct sta_info *sta)
571ecf67 1065{
133b8226 1066 struct ieee80211_sub_if_data *sdata = sta->sdata;
571ecf67 1067
3e122be0 1068 atomic_dec(&sdata->bss->num_sta_ps);
004c872e 1069
af818581 1070 clear_sta_flags(sta, WLAN_STA_PS_STA);
004c872e 1071
571ecf67 1072#ifdef CONFIG_MAC80211_VERBOSE_PS_DEBUG
0c68ae26 1073 printk(KERN_DEBUG "%s: STA %pM aid %d exits power save mode\n",
47846c9b 1074 sdata->name, sta->sta.addr, sta->sta.aid);
571ecf67 1075#endif /* CONFIG_MAC80211_VERBOSE_PS_DEBUG */
004c872e 1076
af818581 1077 if (test_sta_flags(sta, WLAN_STA_PS_DRIVER)) {
571ecf67 1078#ifdef CONFIG_MAC80211_VERBOSE_PS_DEBUG
af818581 1079 printk(KERN_DEBUG "%s: STA %pM aid %d driver-ps-blocked\n",
47846c9b 1080 sdata->name, sta->sta.addr, sta->sta.aid);
571ecf67 1081#endif /* CONFIG_MAC80211_VERBOSE_PS_DEBUG */
af818581
JB
1082 return;
1083 }
1084
1085 ieee80211_sta_ps_deliver_wakeup(sta);
571ecf67
JB
1086}
1087
49461622 1088static ieee80211_rx_result debug_noinline
5cf121c3 1089ieee80211_rx_h_sta_process(struct ieee80211_rx_data *rx)
571ecf67
JB
1090{
1091 struct sta_info *sta = rx->sta;
eb9fb5b8
JB
1092 struct sk_buff *skb = rx->skb;
1093 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(skb);
1094 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
571ecf67
JB
1095
1096 if (!sta)
9ae54c84 1097 return RX_CONTINUE;
571ecf67 1098
b291ba11
JB
1099 /*
1100 * Update last_rx only for IBSS packets which are for the current
1101 * BSSID to avoid keeping the current IBSS network alive in cases
1102 * where other STAs start using different BSSID.
1103 */
05c914fe 1104 if (rx->sdata->vif.type == NL80211_IFTYPE_ADHOC) {
71364716 1105 u8 *bssid = ieee80211_get_bssid(hdr, rx->skb->len,
05c914fe 1106 NL80211_IFTYPE_ADHOC);
46900298 1107 if (compare_ether_addr(bssid, rx->sdata->u.ibss.bssid) == 0)
571ecf67 1108 sta->last_rx = jiffies;
b291ba11
JB
1109 } else if (!is_multicast_ether_addr(hdr->addr1)) {
1110 /*
33b64eb2
LCC
1111 * Mesh beacons will update last_rx when if they are found to
1112 * match the current local configuration when processed.
571ecf67 1113 */
b291ba11 1114 sta->last_rx = jiffies;
571ecf67
JB
1115 }
1116
554891e6 1117 if (!(status->rx_flags & IEEE80211_RX_RA_MATCH))
9ae54c84 1118 return RX_CONTINUE;
571ecf67 1119
3cf335d5
KV
1120 if (rx->sdata->vif.type == NL80211_IFTYPE_STATION)
1121 ieee80211_sta_rx_notify(rx->sdata, hdr);
1122
571ecf67
JB
1123 sta->rx_fragments++;
1124 sta->rx_bytes += rx->skb->len;
eb9fb5b8 1125 sta->last_signal = status->signal;
571ecf67 1126
72eaa43a
JB
1127 /*
1128 * Change STA power saving mode only at the end of a frame
1129 * exchange sequence.
1130 */
3e122be0 1131 if (!ieee80211_has_morefrags(hdr->frame_control) &&
05c914fe
JB
1132 (rx->sdata->vif.type == NL80211_IFTYPE_AP ||
1133 rx->sdata->vif.type == NL80211_IFTYPE_AP_VLAN)) {
af818581 1134 if (test_sta_flags(sta, WLAN_STA_PS_STA)) {
72eaa43a
JB
1135 /*
1136 * Ignore doze->wake transitions that are
1137 * indicated by non-data frames, the standard
1138 * is unclear here, but for example going to
1139 * PS mode and then scanning would cause a
1140 * doze->wake transition for the probe request,
1141 * and that is clearly undesirable.
1142 */
1143 if (ieee80211_is_data(hdr->frame_control) &&
1144 !ieee80211_has_pm(hdr->frame_control))
ff9458d3 1145 ap_sta_ps_end(sta);
72eaa43a
JB
1146 } else {
1147 if (ieee80211_has_pm(hdr->frame_control))
1148 ap_sta_ps_start(sta);
1149 }
571ecf67
JB
1150 }
1151
22403def
JB
1152 /*
1153 * Drop (qos-)data::nullfunc frames silently, since they
1154 * are used only to control station power saving mode.
1155 */
1156 if (ieee80211_is_nullfunc(hdr->frame_control) ||
1157 ieee80211_is_qos_nullfunc(hdr->frame_control)) {
571ecf67 1158 I802_DEBUG_INC(rx->local->rx_handlers_drop_nullfunc);
d524215f
FF
1159
1160 /*
1161 * If we receive a 4-addr nullfunc frame from a STA
1162 * that was not moved to a 4-addr STA vlan yet, drop
1163 * the frame to the monitor interface, to make sure
1164 * that hostapd sees it
1165 */
1166 if (ieee80211_has_a4(hdr->frame_control) &&
1167 (rx->sdata->vif.type == NL80211_IFTYPE_AP ||
1168 (rx->sdata->vif.type == NL80211_IFTYPE_AP_VLAN &&
1169 !rx->sdata->u.vlan.sta)))
1170 return RX_DROP_MONITOR;
22403def
JB
1171 /*
1172 * Update counter and free packet here to avoid
1173 * counting this as a dropped packed.
1174 */
571ecf67
JB
1175 sta->rx_packets++;
1176 dev_kfree_skb(rx->skb);
9ae54c84 1177 return RX_QUEUED;
571ecf67
JB
1178 }
1179
9ae54c84 1180 return RX_CONTINUE;
571ecf67
JB
1181} /* ieee80211_rx_h_sta_process */
1182
571ecf67
JB
1183static inline struct ieee80211_fragment_entry *
1184ieee80211_reassemble_add(struct ieee80211_sub_if_data *sdata,
1185 unsigned int frag, unsigned int seq, int rx_queue,
1186 struct sk_buff **skb)
1187{
1188 struct ieee80211_fragment_entry *entry;
1189 int idx;
1190
1191 idx = sdata->fragment_next;
1192 entry = &sdata->fragments[sdata->fragment_next++];
1193 if (sdata->fragment_next >= IEEE80211_FRAGMENT_MAX)
1194 sdata->fragment_next = 0;
1195
1196 if (!skb_queue_empty(&entry->skb_list)) {
f4ea83dd 1197#ifdef CONFIG_MAC80211_VERBOSE_DEBUG
571ecf67
JB
1198 struct ieee80211_hdr *hdr =
1199 (struct ieee80211_hdr *) entry->skb_list.next->data;
1200 printk(KERN_DEBUG "%s: RX reassembly removed oldest "
1201 "fragment entry (idx=%d age=%lu seq=%d last_frag=%d "
0c68ae26 1202 "addr1=%pM addr2=%pM\n",
47846c9b 1203 sdata->name, idx,
571ecf67 1204 jiffies - entry->first_frag_time, entry->seq,
0c68ae26 1205 entry->last_frag, hdr->addr1, hdr->addr2);
f4ea83dd 1206#endif
571ecf67
JB
1207 __skb_queue_purge(&entry->skb_list);
1208 }
1209
1210 __skb_queue_tail(&entry->skb_list, *skb); /* no need for locking */
1211 *skb = NULL;
1212 entry->first_frag_time = jiffies;
1213 entry->seq = seq;
1214 entry->rx_queue = rx_queue;
1215 entry->last_frag = frag;
1216 entry->ccmp = 0;
1217 entry->extra_len = 0;
1218
1219 return entry;
1220}
1221
1222static inline struct ieee80211_fragment_entry *
1223ieee80211_reassemble_find(struct ieee80211_sub_if_data *sdata,
b73d70ad 1224 unsigned int frag, unsigned int seq,
571ecf67
JB
1225 int rx_queue, struct ieee80211_hdr *hdr)
1226{
1227 struct ieee80211_fragment_entry *entry;
1228 int i, idx;
1229
1230 idx = sdata->fragment_next;
1231 for (i = 0; i < IEEE80211_FRAGMENT_MAX; i++) {
1232 struct ieee80211_hdr *f_hdr;
571ecf67
JB
1233
1234 idx--;
1235 if (idx < 0)
1236 idx = IEEE80211_FRAGMENT_MAX - 1;
1237
1238 entry = &sdata->fragments[idx];
1239 if (skb_queue_empty(&entry->skb_list) || entry->seq != seq ||
1240 entry->rx_queue != rx_queue ||
1241 entry->last_frag + 1 != frag)
1242 continue;
1243
b73d70ad 1244 f_hdr = (struct ieee80211_hdr *)entry->skb_list.next->data;
571ecf67 1245
b73d70ad
HH
1246 /*
1247 * Check ftype and addresses are equal, else check next fragment
1248 */
1249 if (((hdr->frame_control ^ f_hdr->frame_control) &
1250 cpu_to_le16(IEEE80211_FCTL_FTYPE)) ||
571ecf67
JB
1251 compare_ether_addr(hdr->addr1, f_hdr->addr1) != 0 ||
1252 compare_ether_addr(hdr->addr2, f_hdr->addr2) != 0)
1253 continue;
1254
ab46623e 1255 if (time_after(jiffies, entry->first_frag_time + 2 * HZ)) {
571ecf67
JB
1256 __skb_queue_purge(&entry->skb_list);
1257 continue;
1258 }
1259 return entry;
1260 }
1261
1262 return NULL;
1263}
1264
49461622 1265static ieee80211_rx_result debug_noinline
5cf121c3 1266ieee80211_rx_h_defragment(struct ieee80211_rx_data *rx)
571ecf67
JB
1267{
1268 struct ieee80211_hdr *hdr;
1269 u16 sc;
358c8d9d 1270 __le16 fc;
571ecf67
JB
1271 unsigned int frag, seq;
1272 struct ieee80211_fragment_entry *entry;
1273 struct sk_buff *skb;
554891e6 1274 struct ieee80211_rx_status *status;
571ecf67 1275
b73d70ad 1276 hdr = (struct ieee80211_hdr *)rx->skb->data;
358c8d9d 1277 fc = hdr->frame_control;
571ecf67
JB
1278 sc = le16_to_cpu(hdr->seq_ctrl);
1279 frag = sc & IEEE80211_SCTL_FRAG;
1280
358c8d9d 1281 if (likely((!ieee80211_has_morefrags(fc) && frag == 0) ||
571ecf67
JB
1282 (rx->skb)->len < 24 ||
1283 is_multicast_ether_addr(hdr->addr1))) {
1284 /* not fragmented */
1285 goto out;
1286 }
1287 I802_DEBUG_INC(rx->local->rx_handlers_fragments);
1288
e3cf8b3f
ZY
1289 if (skb_linearize(rx->skb))
1290 return RX_DROP_UNUSABLE;
1291
058897a4
AK
1292 /*
1293 * skb_linearize() might change the skb->data and
1294 * previously cached variables (in this case, hdr) need to
1295 * be refreshed with the new data.
1296 */
1297 hdr = (struct ieee80211_hdr *)rx->skb->data;
571ecf67
JB
1298 seq = (sc & IEEE80211_SCTL_SEQ) >> 4;
1299
1300 if (frag == 0) {
1301 /* This is the first fragment of a new frame. */
1302 entry = ieee80211_reassemble_add(rx->sdata, frag, seq,
5cf121c3 1303 rx->queue, &(rx->skb));
97359d12 1304 if (rx->key && rx->key->conf.cipher == WLAN_CIPHER_SUITE_CCMP &&
358c8d9d 1305 ieee80211_has_protected(fc)) {
9190252c
JM
1306 int queue = ieee80211_is_mgmt(fc) ?
1307 NUM_RX_DATA_QUEUES : rx->queue;
571ecf67
JB
1308 /* Store CCMP PN so that we can verify that the next
1309 * fragment has a sequential PN value. */
1310 entry->ccmp = 1;
1311 memcpy(entry->last_pn,
9190252c 1312 rx->key->u.ccmp.rx_pn[queue],
571ecf67
JB
1313 CCMP_PN_LEN);
1314 }
9ae54c84 1315 return RX_QUEUED;
571ecf67
JB
1316 }
1317
1318 /* This is a fragment for a frame that should already be pending in
1319 * fragment cache. Add this fragment to the end of the pending entry.
1320 */
b73d70ad 1321 entry = ieee80211_reassemble_find(rx->sdata, frag, seq, rx->queue, hdr);
571ecf67
JB
1322 if (!entry) {
1323 I802_DEBUG_INC(rx->local->rx_handlers_drop_defrag);
e4c26add 1324 return RX_DROP_MONITOR;
571ecf67
JB
1325 }
1326
1327 /* Verify that MPDUs within one MSDU have sequential PN values.
1328 * (IEEE 802.11i, 8.3.3.4.5) */
1329 if (entry->ccmp) {
1330 int i;
1331 u8 pn[CCMP_PN_LEN], *rpn;
9190252c 1332 int queue;
97359d12 1333 if (!rx->key || rx->key->conf.cipher != WLAN_CIPHER_SUITE_CCMP)
e4c26add 1334 return RX_DROP_UNUSABLE;
571ecf67
JB
1335 memcpy(pn, entry->last_pn, CCMP_PN_LEN);
1336 for (i = CCMP_PN_LEN - 1; i >= 0; i--) {
1337 pn[i]++;
1338 if (pn[i])
1339 break;
1340 }
9190252c
JM
1341 queue = ieee80211_is_mgmt(fc) ?
1342 NUM_RX_DATA_QUEUES : rx->queue;
1343 rpn = rx->key->u.ccmp.rx_pn[queue];
f4ea83dd 1344 if (memcmp(pn, rpn, CCMP_PN_LEN))
e4c26add 1345 return RX_DROP_UNUSABLE;
571ecf67
JB
1346 memcpy(entry->last_pn, pn, CCMP_PN_LEN);
1347 }
1348
358c8d9d 1349 skb_pull(rx->skb, ieee80211_hdrlen(fc));
571ecf67
JB
1350 __skb_queue_tail(&entry->skb_list, rx->skb);
1351 entry->last_frag = frag;
1352 entry->extra_len += rx->skb->len;
358c8d9d 1353 if (ieee80211_has_morefrags(fc)) {
571ecf67 1354 rx->skb = NULL;
9ae54c84 1355 return RX_QUEUED;
571ecf67
JB
1356 }
1357
1358 rx->skb = __skb_dequeue(&entry->skb_list);
1359 if (skb_tailroom(rx->skb) < entry->extra_len) {
1360 I802_DEBUG_INC(rx->local->rx_expand_skb_head2);
1361 if (unlikely(pskb_expand_head(rx->skb, 0, entry->extra_len,
1362 GFP_ATOMIC))) {
1363 I802_DEBUG_INC(rx->local->rx_handlers_drop_defrag);
1364 __skb_queue_purge(&entry->skb_list);
e4c26add 1365 return RX_DROP_UNUSABLE;
571ecf67
JB
1366 }
1367 }
1368 while ((skb = __skb_dequeue(&entry->skb_list))) {
1369 memcpy(skb_put(rx->skb, skb->len), skb->data, skb->len);
1370 dev_kfree_skb(skb);
1371 }
1372
1373 /* Complete frame has been reassembled - process it now */
554891e6
JB
1374 status = IEEE80211_SKB_RXCB(rx->skb);
1375 status->rx_flags |= IEEE80211_RX_FRAGMENTED;
571ecf67
JB
1376
1377 out:
1378 if (rx->sta)
1379 rx->sta->rx_packets++;
1380 if (is_multicast_ether_addr(hdr->addr1))
1381 rx->local->dot11MulticastReceivedFrameCount++;
1382 else
1383 ieee80211_led_rx(rx->local);
9ae54c84 1384 return RX_CONTINUE;
571ecf67
JB
1385}
1386
49461622 1387static ieee80211_rx_result debug_noinline
5cf121c3 1388ieee80211_rx_h_ps_poll(struct ieee80211_rx_data *rx)
571ecf67 1389{
af818581 1390 struct ieee80211_sub_if_data *sdata = rx->sdata;
358c8d9d 1391 __le16 fc = ((struct ieee80211_hdr *)rx->skb->data)->frame_control;
554891e6 1392 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(rx->skb);
571ecf67 1393
358c8d9d 1394 if (likely(!rx->sta || !ieee80211_is_pspoll(fc) ||
554891e6 1395 !(status->rx_flags & IEEE80211_RX_RA_MATCH)))
9ae54c84 1396 return RX_CONTINUE;
571ecf67 1397
05c914fe
JB
1398 if ((sdata->vif.type != NL80211_IFTYPE_AP) &&
1399 (sdata->vif.type != NL80211_IFTYPE_AP_VLAN))
e4c26add 1400 return RX_DROP_UNUSABLE;
98f0b0a3 1401
af818581
JB
1402 if (!test_sta_flags(rx->sta, WLAN_STA_PS_DRIVER))
1403 ieee80211_sta_ps_deliver_poll_response(rx->sta);
1404 else
1405 set_sta_flags(rx->sta, WLAN_STA_PSPOLL);
571ecf67 1406
9ae54c84 1407 /* Free PS Poll skb here instead of returning RX_DROP that would
571ecf67
JB
1408 * count as an dropped frame. */
1409 dev_kfree_skb(rx->skb);
1410
9ae54c84 1411 return RX_QUEUED;
571ecf67
JB
1412}
1413
49461622 1414static ieee80211_rx_result debug_noinline
5cf121c3 1415ieee80211_rx_h_remove_qos_control(struct ieee80211_rx_data *rx)
6e0d114d 1416{
6e0d114d 1417 u8 *data = rx->skb->data;
238f74a2 1418 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)data;
6e0d114d 1419
238f74a2 1420 if (!ieee80211_is_data_qos(hdr->frame_control))
9ae54c84 1421 return RX_CONTINUE;
6e0d114d
JB
1422
1423 /* remove the qos control field, update frame type and meta-data */
238f74a2
HH
1424 memmove(data + IEEE80211_QOS_CTL_LEN, data,
1425 ieee80211_hdrlen(hdr->frame_control) - IEEE80211_QOS_CTL_LEN);
1426 hdr = (struct ieee80211_hdr *)skb_pull(rx->skb, IEEE80211_QOS_CTL_LEN);
6e0d114d 1427 /* change frame type to non QOS */
238f74a2 1428 hdr->frame_control &= ~cpu_to_le16(IEEE80211_STYPE_QOS_DATA);
6e0d114d 1429
9ae54c84 1430 return RX_CONTINUE;
6e0d114d
JB
1431}
1432
76ee65bf 1433static int
5cf121c3 1434ieee80211_802_1x_port_control(struct ieee80211_rx_data *rx)
571ecf67 1435{
07346f81 1436 if (unlikely(!rx->sta ||
f4ea83dd 1437 !test_sta_flags(rx->sta, WLAN_STA_AUTHORIZED)))
76ee65bf 1438 return -EACCES;
571ecf67 1439
76ee65bf 1440 return 0;
571ecf67
JB
1441}
1442
76ee65bf 1443static int
358c8d9d 1444ieee80211_drop_unencrypted(struct ieee80211_rx_data *rx, __le16 fc)
571ecf67 1445{
eb9fb5b8
JB
1446 struct sk_buff *skb = rx->skb;
1447 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(skb);
1448
3017b80b 1449 /*
7848ba7d
JB
1450 * Pass through unencrypted frames if the hardware has
1451 * decrypted them already.
3017b80b 1452 */
eb9fb5b8 1453 if (status->flag & RX_FLAG_DECRYPTED)
76ee65bf 1454 return 0;
571ecf67
JB
1455
1456 /* Drop unencrypted frames if key is set. */
358c8d9d
HH
1457 if (unlikely(!ieee80211_has_protected(fc) &&
1458 !ieee80211_is_nullfunc(fc) &&
f2ca3ea4 1459 ieee80211_is_data(fc) &&
b3fc9c6c 1460 (rx->key || rx->sdata->drop_unencrypted)))
76ee65bf 1461 return -EACCES;
bef5d1c7
JB
1462
1463 return 0;
1464}
1465
1466static int
1467ieee80211_drop_unencrypted_mgmt(struct ieee80211_rx_data *rx)
1468{
1469 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)rx->skb->data;
e3efca0a 1470 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(rx->skb);
bef5d1c7 1471 __le16 fc = hdr->frame_control;
bef5d1c7 1472
e3efca0a
JM
1473 /*
1474 * Pass through unencrypted frames if the hardware has
1475 * decrypted them already.
1476 */
1477 if (status->flag & RX_FLAG_DECRYPTED)
1478 return 0;
bef5d1c7 1479
f2ca3ea4 1480 if (rx->sta && test_sta_flags(rx->sta, WLAN_STA_MFP)) {
d211e90e
JM
1481 if (unlikely(!ieee80211_has_protected(fc) &&
1482 ieee80211_is_unicast_robust_mgmt_frame(rx->skb) &&
f2ca3ea4
JM
1483 rx->key))
1484 return -EACCES;
1485 /* BIP does not use Protected field, so need to check MMIE */
f64f9e71 1486 if (unlikely(ieee80211_is_multicast_robust_mgmt_frame(rx->skb) &&
fa83a218 1487 ieee80211_get_mmie_keyidx(rx->skb) < 0))
f2ca3ea4
JM
1488 return -EACCES;
1489 /*
1490 * When using MFP, Action frames are not allowed prior to
1491 * having configured keys.
1492 */
1493 if (unlikely(ieee80211_is_action(fc) && !rx->key &&
1494 ieee80211_is_robust_mgmt_frame(
1495 (struct ieee80211_hdr *) rx->skb->data)))
1496 return -EACCES;
1497 }
b3fc9c6c 1498
76ee65bf 1499 return 0;
571ecf67
JB
1500}
1501
76ee65bf 1502static int
e31a16d6 1503__ieee80211_data_to_8023(struct ieee80211_rx_data *rx)
571ecf67 1504{
eb9fb5b8 1505 struct ieee80211_sub_if_data *sdata = rx->sdata;
f14543ee
FF
1506 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)rx->skb->data;
1507
9bc383de
JB
1508 if (ieee80211_has_a4(hdr->frame_control) &&
1509 sdata->vif.type == NL80211_IFTYPE_AP_VLAN && !sdata->u.vlan.sta)
f14543ee 1510 return -1;
9bc383de
JB
1511
1512 if (is_multicast_ether_addr(hdr->addr1) &&
1513 ((sdata->vif.type == NL80211_IFTYPE_AP_VLAN && sdata->u.vlan.sta) ||
1514 (sdata->vif.type == NL80211_IFTYPE_STATION && sdata->u.mgd.use_4addr)))
f14543ee 1515 return -1;
571ecf67 1516
47846c9b 1517 return ieee80211_data_to_8023(rx->skb, sdata->vif.addr, sdata->vif.type);
76ee65bf 1518}
571ecf67 1519
ce3edf6d
JB
1520/*
1521 * requires that rx->skb is a frame with ethernet header
1522 */
358c8d9d 1523static bool ieee80211_frame_allowed(struct ieee80211_rx_data *rx, __le16 fc)
ce3edf6d 1524{
c97c23e3 1525 static const u8 pae_group_addr[ETH_ALEN] __aligned(2)
ce3edf6d
JB
1526 = { 0x01, 0x80, 0xC2, 0x00, 0x00, 0x03 };
1527 struct ethhdr *ehdr = (struct ethhdr *) rx->skb->data;
1528
1529 /*
1530 * Allow EAPOL frames to us/the PAE group address regardless
1531 * of whether the frame was encrypted or not.
1532 */
a621fa4d 1533 if (ehdr->h_proto == rx->sdata->control_port_protocol &&
47846c9b 1534 (compare_ether_addr(ehdr->h_dest, rx->sdata->vif.addr) == 0 ||
ce3edf6d
JB
1535 compare_ether_addr(ehdr->h_dest, pae_group_addr) == 0))
1536 return true;
1537
1538 if (ieee80211_802_1x_port_control(rx) ||
358c8d9d 1539 ieee80211_drop_unencrypted(rx, fc))
ce3edf6d
JB
1540 return false;
1541
1542 return true;
1543}
1544
1545/*
1546 * requires that rx->skb is a frame with ethernet header
1547 */
76ee65bf 1548static void
5cf121c3 1549ieee80211_deliver_skb(struct ieee80211_rx_data *rx)
76ee65bf 1550{
eb9fb5b8
JB
1551 struct ieee80211_sub_if_data *sdata = rx->sdata;
1552 struct net_device *dev = sdata->dev;
76ee65bf 1553 struct sk_buff *skb, *xmit_skb;
ce3edf6d
JB
1554 struct ethhdr *ehdr = (struct ethhdr *) rx->skb->data;
1555 struct sta_info *dsta;
554891e6 1556 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(rx->skb);
571ecf67 1557
76ee65bf
RR
1558 skb = rx->skb;
1559 xmit_skb = NULL;
571ecf67 1560
05c914fe
JB
1561 if ((sdata->vif.type == NL80211_IFTYPE_AP ||
1562 sdata->vif.type == NL80211_IFTYPE_AP_VLAN) &&
213cd118 1563 !(sdata->flags & IEEE80211_SDATA_DONT_BRIDGE_PACKETS) &&
554891e6 1564 (status->rx_flags & IEEE80211_RX_RA_MATCH) &&
9bc383de 1565 (sdata->vif.type != NL80211_IFTYPE_AP_VLAN || !sdata->u.vlan.sta)) {
ce3edf6d
JB
1566 if (is_multicast_ether_addr(ehdr->h_dest)) {
1567 /*
1568 * send multicast frames both to higher layers in
1569 * local net stack and back to the wireless medium
1570 */
76ee65bf
RR
1571 xmit_skb = skb_copy(skb, GFP_ATOMIC);
1572 if (!xmit_skb && net_ratelimit())
571ecf67
JB
1573 printk(KERN_DEBUG "%s: failed to clone "
1574 "multicast frame\n", dev->name);
1575 } else {
abe60632
JB
1576 dsta = sta_info_get(sdata, skb->data);
1577 if (dsta) {
ce3edf6d
JB
1578 /*
1579 * The destination station is associated to
1580 * this AP (in this VLAN), so send the frame
1581 * directly to it and do not pass it to local
1582 * net stack.
571ecf67 1583 */
76ee65bf 1584 xmit_skb = skb;
571ecf67
JB
1585 skb = NULL;
1586 }
571ecf67
JB
1587 }
1588 }
1589
1590 if (skb) {
d1c3a37c
JB
1591 int align __maybe_unused;
1592
59d9cb07 1593#ifndef CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS
d1c3a37c
JB
1594 /*
1595 * 'align' will only take the values 0 or 2 here
1596 * since all frames are required to be aligned
1597 * to 2-byte boundaries when being passed to
1598 * mac80211. That also explains the __skb_push()
1599 * below.
1600 */
dacb6f1d 1601 align = ((unsigned long)(skb->data + sizeof(struct ethhdr))) & 3;
d1c3a37c
JB
1602 if (align) {
1603 if (WARN_ON(skb_headroom(skb) < 3)) {
1604 dev_kfree_skb(skb);
1605 skb = NULL;
1606 } else {
1607 u8 *data = skb->data;
8ce0b589
ZY
1608 size_t len = skb_headlen(skb);
1609 skb->data -= align;
1610 memmove(skb->data, data, len);
1611 skb_set_tail_pointer(skb, len);
d1c3a37c
JB
1612 }
1613 }
1614#endif
1615
1616 if (skb) {
1617 /* deliver to local stack */
1618 skb->protocol = eth_type_trans(skb, dev);
1619 memset(skb->cb, 0, sizeof(skb->cb));
5548a8a1 1620 netif_receive_skb(skb);
d1c3a37c 1621 }
571ecf67
JB
1622 }
1623
76ee65bf 1624 if (xmit_skb) {
571ecf67 1625 /* send to wireless media */
f831e909 1626 xmit_skb->protocol = htons(ETH_P_802_3);
ce3edf6d
JB
1627 skb_reset_network_header(xmit_skb);
1628 skb_reset_mac_header(xmit_skb);
76ee65bf 1629 dev_queue_xmit(xmit_skb);
571ecf67 1630 }
76ee65bf
RR
1631}
1632
49461622 1633static ieee80211_rx_result debug_noinline
5cf121c3 1634ieee80211_rx_h_amsdu(struct ieee80211_rx_data *rx)
fd4c7f2f 1635{
eb9fb5b8 1636 struct net_device *dev = rx->sdata->dev;
eaf85ca7 1637 struct sk_buff *skb = rx->skb;
358c8d9d
HH
1638 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
1639 __le16 fc = hdr->frame_control;
eaf85ca7 1640 struct sk_buff_head frame_list;
554891e6 1641 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(rx->skb);
fd4c7f2f 1642
358c8d9d 1643 if (unlikely(!ieee80211_is_data(fc)))
9ae54c84 1644 return RX_CONTINUE;
fd4c7f2f 1645
358c8d9d 1646 if (unlikely(!ieee80211_is_data_present(fc)))
e4c26add 1647 return RX_DROP_MONITOR;
fd4c7f2f 1648
554891e6 1649 if (!(status->rx_flags & IEEE80211_RX_AMSDU))
9ae54c84 1650 return RX_CONTINUE;
fd4c7f2f 1651
eaf85ca7
ZY
1652 if (ieee80211_has_a4(hdr->frame_control) &&
1653 rx->sdata->vif.type == NL80211_IFTYPE_AP_VLAN &&
1654 !rx->sdata->u.vlan.sta)
e4c26add 1655 return RX_DROP_UNUSABLE;
fd4c7f2f 1656
eaf85ca7
ZY
1657 if (is_multicast_ether_addr(hdr->addr1) &&
1658 ((rx->sdata->vif.type == NL80211_IFTYPE_AP_VLAN &&
1659 rx->sdata->u.vlan.sta) ||
1660 (rx->sdata->vif.type == NL80211_IFTYPE_STATION &&
1661 rx->sdata->u.mgd.use_4addr)))
e4c26add 1662 return RX_DROP_UNUSABLE;
fd4c7f2f 1663
eaf85ca7
ZY
1664 skb->dev = dev;
1665 __skb_queue_head_init(&frame_list);
fd4c7f2f 1666
e3cf8b3f
ZY
1667 if (skb_linearize(skb))
1668 return RX_DROP_UNUSABLE;
1669
eaf85ca7
ZY
1670 ieee80211_amsdu_to_8023s(skb, &frame_list, dev->dev_addr,
1671 rx->sdata->vif.type,
1672 rx->local->hw.extra_tx_headroom);
fd4c7f2f 1673
eaf85ca7
ZY
1674 while (!skb_queue_empty(&frame_list)) {
1675 rx->skb = __skb_dequeue(&frame_list);
fd4c7f2f 1676
358c8d9d 1677 if (!ieee80211_frame_allowed(rx, fc)) {
eaf85ca7 1678 dev_kfree_skb(rx->skb);
ce3edf6d
JB
1679 continue;
1680 }
eaf85ca7
ZY
1681 dev->stats.rx_packets++;
1682 dev->stats.rx_bytes += rx->skb->len;
fd4c7f2f
RR
1683
1684 ieee80211_deliver_skb(rx);
1685 }
1686
9ae54c84 1687 return RX_QUEUED;
fd4c7f2f
RR
1688}
1689
bf94e17b 1690#ifdef CONFIG_MAC80211_MESH
b0dee578 1691static ieee80211_rx_result
e32f85f7
LCC
1692ieee80211_rx_h_mesh_fwding(struct ieee80211_rx_data *rx)
1693{
1694 struct ieee80211_hdr *hdr;
1695 struct ieee80211s_hdr *mesh_hdr;
1696 unsigned int hdrlen;
1697 struct sk_buff *skb = rx->skb, *fwd_skb;
3b8d81e0 1698 struct ieee80211_local *local = rx->local;
eb9fb5b8 1699 struct ieee80211_sub_if_data *sdata = rx->sdata;
554891e6 1700 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(skb);
e32f85f7
LCC
1701
1702 hdr = (struct ieee80211_hdr *) skb->data;
1703 hdrlen = ieee80211_hdrlen(hdr->frame_control);
1704 mesh_hdr = (struct ieee80211s_hdr *) (skb->data + hdrlen);
1705
1706 if (!ieee80211_is_data(hdr->frame_control))
1707 return RX_CONTINUE;
1708
1709 if (!mesh_hdr->ttl)
1710 /* illegal frame */
1711 return RX_DROP_MONITOR;
1712
43b7b314 1713 if (mesh_hdr->flags & MESH_FLAGS_AE) {
79617dee 1714 struct mesh_path *mppath;
43b7b314
JC
1715 char *proxied_addr;
1716 char *mpp_addr;
1717
1718 if (is_multicast_ether_addr(hdr->addr1)) {
1719 mpp_addr = hdr->addr3;
1720 proxied_addr = mesh_hdr->eaddr1;
1721 } else {
1722 mpp_addr = hdr->addr4;
1723 proxied_addr = mesh_hdr->eaddr2;
1724 }
79617dee 1725
79617dee 1726 rcu_read_lock();
43b7b314 1727 mppath = mpp_path_lookup(proxied_addr, sdata);
79617dee 1728 if (!mppath) {
43b7b314 1729 mpp_path_add(proxied_addr, mpp_addr, sdata);
79617dee
Y
1730 } else {
1731 spin_lock_bh(&mppath->state_lock);
43b7b314
JC
1732 if (compare_ether_addr(mppath->mpp, mpp_addr) != 0)
1733 memcpy(mppath->mpp, mpp_addr, ETH_ALEN);
79617dee
Y
1734 spin_unlock_bh(&mppath->state_lock);
1735 }
1736 rcu_read_unlock();
1737 }
1738
3c5772a5
JC
1739 /* Frame has reached destination. Don't forward */
1740 if (!is_multicast_ether_addr(hdr->addr1) &&
47846c9b 1741 compare_ether_addr(sdata->vif.addr, hdr->addr3) == 0)
e32f85f7
LCC
1742 return RX_CONTINUE;
1743
1744 mesh_hdr->ttl--;
1745
554891e6 1746 if (status->rx_flags & IEEE80211_RX_RA_MATCH) {
e32f85f7 1747 if (!mesh_hdr->ttl)
472dbc45 1748 IEEE80211_IFSTA_MESH_CTR_INC(&rx->sdata->u.mesh,
e32f85f7
LCC
1749 dropped_frames_ttl);
1750 else {
1751 struct ieee80211_hdr *fwd_hdr;
3b8d81e0
JB
1752 struct ieee80211_tx_info *info;
1753
e32f85f7
LCC
1754 fwd_skb = skb_copy(skb, GFP_ATOMIC);
1755
1756 if (!fwd_skb && net_ratelimit())
1757 printk(KERN_DEBUG "%s: failed to clone mesh frame\n",
47846c9b 1758 sdata->name);
e32f85f7
LCC
1759
1760 fwd_hdr = (struct ieee80211_hdr *) fwd_skb->data;
47846c9b 1761 memcpy(fwd_hdr->addr2, sdata->vif.addr, ETH_ALEN);
3b8d81e0
JB
1762 info = IEEE80211_SKB_CB(fwd_skb);
1763 memset(info, 0, sizeof(*info));
1764 info->flags |= IEEE80211_TX_INTFL_NEED_TXPROCESSING;
5061b0c2 1765 info->control.vif = &rx->sdata->vif;
cf0277e7
JB
1766 skb_set_queue_mapping(skb,
1767 ieee80211_select_queue(rx->sdata, fwd_skb));
1768 ieee80211_set_qos_hdr(local, skb);
c8a61a7d
DW
1769 if (is_multicast_ether_addr(fwd_hdr->addr1))
1770 IEEE80211_IFSTA_MESH_CTR_INC(&sdata->u.mesh,
1771 fwded_mcast);
1772 else {
3c5772a5
JC
1773 int err;
1774 /*
1775 * Save TA to addr1 to send TA a path error if a
1776 * suitable next hop is not found
1777 */
1778 memcpy(fwd_hdr->addr1, fwd_hdr->addr2,
249b405c 1779 ETH_ALEN);
3c5772a5 1780 err = mesh_nexthop_lookup(fwd_skb, sdata);
249b405c
JC
1781 /* Failed to immediately resolve next hop:
1782 * fwded frame was dropped or will be added
1783 * later to the pending skb queue. */
1784 if (err)
1785 return RX_DROP_MONITOR;
c8a61a7d
DW
1786
1787 IEEE80211_IFSTA_MESH_CTR_INC(&sdata->u.mesh,
1788 fwded_unicast);
249b405c
JC
1789 }
1790 IEEE80211_IFSTA_MESH_CTR_INC(&sdata->u.mesh,
1791 fwded_frames);
3b8d81e0 1792 ieee80211_add_pending_skb(local, fwd_skb);
e32f85f7
LCC
1793 }
1794 }
1795
3c5772a5 1796 if (is_multicast_ether_addr(hdr->addr1) ||
eb9fb5b8 1797 sdata->dev->flags & IFF_PROMISC)
e32f85f7
LCC
1798 return RX_CONTINUE;
1799 else
1800 return RX_DROP_MONITOR;
1801}
bf94e17b 1802#endif
e32f85f7 1803
49461622 1804static ieee80211_rx_result debug_noinline
5cf121c3 1805ieee80211_rx_h_data(struct ieee80211_rx_data *rx)
76ee65bf 1806{
eb9fb5b8 1807 struct ieee80211_sub_if_data *sdata = rx->sdata;
e15276a4 1808 struct ieee80211_local *local = rx->local;
eb9fb5b8 1809 struct net_device *dev = sdata->dev;
358c8d9d
HH
1810 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)rx->skb->data;
1811 __le16 fc = hdr->frame_control;
ce3edf6d 1812 int err;
76ee65bf 1813
358c8d9d 1814 if (unlikely(!ieee80211_is_data(hdr->frame_control)))
9ae54c84 1815 return RX_CONTINUE;
76ee65bf 1816
358c8d9d 1817 if (unlikely(!ieee80211_is_data_present(hdr->frame_control)))
e4c26add 1818 return RX_DROP_MONITOR;
76ee65bf 1819
f14543ee
FF
1820 /*
1821 * Allow the cooked monitor interface of an AP to see 4-addr frames so
1822 * that a 4-addr station can be detected and moved into a separate VLAN
1823 */
1824 if (ieee80211_has_a4(hdr->frame_control) &&
1825 sdata->vif.type == NL80211_IFTYPE_AP)
1826 return RX_DROP_MONITOR;
1827
e31a16d6 1828 err = __ieee80211_data_to_8023(rx);
76ee65bf 1829 if (unlikely(err))
e4c26add 1830 return RX_DROP_UNUSABLE;
76ee65bf 1831
358c8d9d 1832 if (!ieee80211_frame_allowed(rx, fc))
e4c26add 1833 return RX_DROP_MONITOR;
ce3edf6d 1834
76ee65bf
RR
1835 rx->skb->dev = dev;
1836
1837 dev->stats.rx_packets++;
1838 dev->stats.rx_bytes += rx->skb->len;
1839
e15276a4
VN
1840 if (ieee80211_is_data(hdr->frame_control) &&
1841 !is_multicast_ether_addr(hdr->addr1) &&
1842 local->hw.conf.dynamic_ps_timeout > 0 && local->ps_sdata) {
1843 mod_timer(&local->dynamic_ps_timer, jiffies +
1844 msecs_to_jiffies(local->hw.conf.dynamic_ps_timeout));
1845 }
1846
76ee65bf 1847 ieee80211_deliver_skb(rx);
571ecf67 1848
9ae54c84 1849 return RX_QUEUED;
571ecf67
JB
1850}
1851
49461622 1852static ieee80211_rx_result debug_noinline
2569a826 1853ieee80211_rx_h_ctrl(struct ieee80211_rx_data *rx, struct sk_buff_head *frames)
71364716
RR
1854{
1855 struct ieee80211_local *local = rx->local;
1856 struct ieee80211_hw *hw = &local->hw;
1857 struct sk_buff *skb = rx->skb;
a7767f95 1858 struct ieee80211_bar *bar = (struct ieee80211_bar *)skb->data;
71364716
RR
1859 struct tid_ampdu_rx *tid_agg_rx;
1860 u16 start_seq_num;
1861 u16 tid;
1862
a7767f95 1863 if (likely(!ieee80211_is_ctl(bar->frame_control)))
9ae54c84 1864 return RX_CONTINUE;
71364716 1865
a7767f95 1866 if (ieee80211_is_back_req(bar->frame_control)) {
8ae5977f
JB
1867 struct {
1868 __le16 control, start_seq_num;
1869 } __packed bar_data;
1870
71364716 1871 if (!rx->sta)
a02ae758 1872 return RX_DROP_MONITOR;
8ae5977f
JB
1873
1874 if (skb_copy_bits(skb, offsetof(struct ieee80211_bar, control),
1875 &bar_data, sizeof(bar_data)))
1876 return RX_DROP_MONITOR;
1877
8ae5977f 1878 tid = le16_to_cpu(bar_data.control) >> 12;
a87f736d
JB
1879
1880 tid_agg_rx = rcu_dereference(rx->sta->ampdu_mlme.tid_rx[tid]);
1881 if (!tid_agg_rx)
a02ae758 1882 return RX_DROP_MONITOR;
71364716 1883
8ae5977f 1884 start_seq_num = le16_to_cpu(bar_data.start_seq_num) >> 4;
71364716
RR
1885
1886 /* reset session timer */
20ad19d0
JB
1887 if (tid_agg_rx->timeout)
1888 mod_timer(&tid_agg_rx->session_timer,
1889 TU_TO_EXP_TIME(tid_agg_rx->timeout));
71364716 1890
a02ae758 1891 /* release stored frames up to start of BAR */
2569a826
JB
1892 ieee80211_release_reorder_frames(hw, tid_agg_rx, start_seq_num,
1893 frames);
a02ae758
JB
1894 kfree_skb(skb);
1895 return RX_QUEUED;
71364716
RR
1896 }
1897
08daecae
JB
1898 /*
1899 * After this point, we only want management frames,
1900 * so we can drop all remaining control frames to
1901 * cooked monitor interfaces.
1902 */
1903 return RX_DROP_MONITOR;
71364716
RR
1904}
1905
f4f727a6
JM
1906static void ieee80211_process_sa_query_req(struct ieee80211_sub_if_data *sdata,
1907 struct ieee80211_mgmt *mgmt,
1908 size_t len)
fea14732
JM
1909{
1910 struct ieee80211_local *local = sdata->local;
1911 struct sk_buff *skb;
1912 struct ieee80211_mgmt *resp;
1913
47846c9b 1914 if (compare_ether_addr(mgmt->da, sdata->vif.addr) != 0) {
fea14732
JM
1915 /* Not to own unicast address */
1916 return;
1917 }
1918
46900298
JB
1919 if (compare_ether_addr(mgmt->sa, sdata->u.mgd.bssid) != 0 ||
1920 compare_ether_addr(mgmt->bssid, sdata->u.mgd.bssid) != 0) {
77fdaa12 1921 /* Not from the current AP or not associated yet. */
fea14732
JM
1922 return;
1923 }
1924
1925 if (len < 24 + 1 + sizeof(resp->u.action.u.sa_query)) {
1926 /* Too short SA Query request frame */
1927 return;
1928 }
1929
1930 skb = dev_alloc_skb(sizeof(*resp) + local->hw.extra_tx_headroom);
1931 if (skb == NULL)
1932 return;
1933
1934 skb_reserve(skb, local->hw.extra_tx_headroom);
1935 resp = (struct ieee80211_mgmt *) skb_put(skb, 24);
1936 memset(resp, 0, 24);
1937 memcpy(resp->da, mgmt->sa, ETH_ALEN);
47846c9b 1938 memcpy(resp->sa, sdata->vif.addr, ETH_ALEN);
46900298 1939 memcpy(resp->bssid, sdata->u.mgd.bssid, ETH_ALEN);
fea14732
JM
1940 resp->frame_control = cpu_to_le16(IEEE80211_FTYPE_MGMT |
1941 IEEE80211_STYPE_ACTION);
1942 skb_put(skb, 1 + sizeof(resp->u.action.u.sa_query));
1943 resp->u.action.category = WLAN_CATEGORY_SA_QUERY;
1944 resp->u.action.u.sa_query.action = WLAN_ACTION_SA_QUERY_RESPONSE;
1945 memcpy(resp->u.action.u.sa_query.trans_id,
1946 mgmt->u.action.u.sa_query.trans_id,
1947 WLAN_SA_QUERY_TR_ID_LEN);
1948
62ae67be 1949 ieee80211_tx_skb(sdata, skb);
fea14732
JM
1950}
1951
2e161f78
JB
1952static ieee80211_rx_result debug_noinline
1953ieee80211_rx_h_mgmt_check(struct ieee80211_rx_data *rx)
1954{
1955 struct ieee80211_mgmt *mgmt = (struct ieee80211_mgmt *) rx->skb->data;
554891e6 1956 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(rx->skb);
2e161f78
JB
1957
1958 /*
1959 * From here on, look only at management frames.
1960 * Data and control frames are already handled,
1961 * and unknown (reserved) frames are useless.
1962 */
1963 if (rx->skb->len < 24)
1964 return RX_DROP_MONITOR;
1965
1966 if (!ieee80211_is_mgmt(mgmt->frame_control))
1967 return RX_DROP_MONITOR;
1968
554891e6 1969 if (!(status->rx_flags & IEEE80211_RX_RA_MATCH))
2e161f78
JB
1970 return RX_DROP_MONITOR;
1971
1972 if (ieee80211_drop_unencrypted_mgmt(rx))
1973 return RX_DROP_UNUSABLE;
1974
1975 return RX_CONTINUE;
1976}
1977
de1ede7a
JB
1978static ieee80211_rx_result debug_noinline
1979ieee80211_rx_h_action(struct ieee80211_rx_data *rx)
1980{
1981 struct ieee80211_local *local = rx->local;
eb9fb5b8 1982 struct ieee80211_sub_if_data *sdata = rx->sdata;
de1ede7a 1983 struct ieee80211_mgmt *mgmt = (struct ieee80211_mgmt *) rx->skb->data;
554891e6 1984 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(rx->skb);
de1ede7a
JB
1985 int len = rx->skb->len;
1986
1987 if (!ieee80211_is_action(mgmt->frame_control))
1988 return RX_CONTINUE;
1989
026331c4
JM
1990 /* drop too small frames */
1991 if (len < IEEE80211_MIN_ACTION_SIZE)
84040805 1992 return RX_DROP_UNUSABLE;
de1ede7a 1993
026331c4 1994 if (!rx->sta && mgmt->u.action.category != WLAN_CATEGORY_PUBLIC)
84040805 1995 return RX_DROP_UNUSABLE;
de1ede7a 1996
554891e6 1997 if (!(status->rx_flags & IEEE80211_RX_RA_MATCH))
84040805 1998 return RX_DROP_UNUSABLE;
97ebe12a 1999
de1ede7a
JB
2000 switch (mgmt->u.action.category) {
2001 case WLAN_CATEGORY_BACK:
8abd3f9b
JB
2002 /*
2003 * The aggregation code is not prepared to handle
2004 * anything but STA/AP due to the BSSID handling;
2005 * IBSS could work in the code but isn't supported
2006 * by drivers or the standard.
2007 */
2008 if (sdata->vif.type != NL80211_IFTYPE_STATION &&
2009 sdata->vif.type != NL80211_IFTYPE_AP_VLAN &&
2010 sdata->vif.type != NL80211_IFTYPE_AP)
84040805 2011 break;
8abd3f9b 2012
026331c4
JM
2013 /* verify action_code is present */
2014 if (len < IEEE80211_MIN_ACTION_SIZE + 1)
2015 break;
2016
de1ede7a
JB
2017 switch (mgmt->u.action.u.addba_req.action_code) {
2018 case WLAN_ACTION_ADDBA_REQ:
2019 if (len < (IEEE80211_MIN_ACTION_SIZE +
2020 sizeof(mgmt->u.action.u.addba_req)))
bed7ee6e
JB
2021 goto invalid;
2022 break;
de1ede7a
JB
2023 case WLAN_ACTION_ADDBA_RESP:
2024 if (len < (IEEE80211_MIN_ACTION_SIZE +
2025 sizeof(mgmt->u.action.u.addba_resp)))
bed7ee6e
JB
2026 goto invalid;
2027 break;
de1ede7a
JB
2028 case WLAN_ACTION_DELBA:
2029 if (len < (IEEE80211_MIN_ACTION_SIZE +
2030 sizeof(mgmt->u.action.u.delba)))
bed7ee6e
JB
2031 goto invalid;
2032 break;
2033 default:
2034 goto invalid;
de1ede7a 2035 }
bed7ee6e 2036
8b58ff83 2037 goto queue;
39192c0b
JB
2038 case WLAN_CATEGORY_SPECTRUM_MGMT:
2039 if (local->hw.conf.channel->band != IEEE80211_BAND_5GHZ)
84040805 2040 break;
46900298
JB
2041
2042 if (sdata->vif.type != NL80211_IFTYPE_STATION)
84040805 2043 break;
46900298 2044
026331c4
JM
2045 /* verify action_code is present */
2046 if (len < IEEE80211_MIN_ACTION_SIZE + 1)
2047 break;
2048
39192c0b
JB
2049 switch (mgmt->u.action.u.measurement.action_code) {
2050 case WLAN_ACTION_SPCT_MSR_REQ:
2051 if (len < (IEEE80211_MIN_ACTION_SIZE +
2052 sizeof(mgmt->u.action.u.measurement)))
84040805 2053 break;
39192c0b 2054 ieee80211_process_measurement_req(sdata, mgmt, len);
84040805 2055 goto handled;
c481ec97
S
2056 case WLAN_ACTION_SPCT_CHL_SWITCH:
2057 if (len < (IEEE80211_MIN_ACTION_SIZE +
2058 sizeof(mgmt->u.action.u.chan_switch)))
84040805 2059 break;
c481ec97 2060
cc32abd4 2061 if (sdata->vif.type != NL80211_IFTYPE_STATION)
84040805 2062 break;
cc32abd4 2063
46900298 2064 if (memcmp(mgmt->bssid, sdata->u.mgd.bssid, ETH_ALEN))
84040805 2065 break;
c481ec97 2066
8b58ff83 2067 goto queue;
39192c0b
JB
2068 }
2069 break;
fea14732
JM
2070 case WLAN_CATEGORY_SA_QUERY:
2071 if (len < (IEEE80211_MIN_ACTION_SIZE +
2072 sizeof(mgmt->u.action.u.sa_query)))
84040805
JB
2073 break;
2074
fea14732
JM
2075 switch (mgmt->u.action.u.sa_query.action) {
2076 case WLAN_ACTION_SA_QUERY_REQUEST:
2077 if (sdata->vif.type != NL80211_IFTYPE_STATION)
84040805 2078 break;
fea14732 2079 ieee80211_process_sa_query_req(sdata, mgmt, len);
84040805 2080 goto handled;
fea14732
JM
2081 }
2082 break;
97ad9139
JC
2083 case WLAN_CATEGORY_MESH_PLINK:
2084 case WLAN_CATEGORY_MESH_PATH_SEL:
77a121c3
JB
2085 if (!ieee80211_vif_is_mesh(&sdata->vif))
2086 break;
8b58ff83 2087 goto queue;
84040805 2088 }
026331c4 2089
2e161f78
JB
2090 return RX_CONTINUE;
2091
bed7ee6e 2092 invalid:
554891e6 2093 status->rx_flags |= IEEE80211_RX_MALFORMED_ACTION_FRM;
2e161f78
JB
2094 /* will return in the next handlers */
2095 return RX_CONTINUE;
2096
2097 handled:
2098 if (rx->sta)
2099 rx->sta->rx_packets++;
2100 dev_kfree_skb(rx->skb);
2101 return RX_QUEUED;
2102
2103 queue:
2104 rx->skb->pkt_type = IEEE80211_SDATA_QUEUE_TYPE_FRAME;
2105 skb_queue_tail(&sdata->skb_queue, rx->skb);
2106 ieee80211_queue_work(&local->hw, &sdata->work);
2107 if (rx->sta)
2108 rx->sta->rx_packets++;
2109 return RX_QUEUED;
2110}
2111
2112static ieee80211_rx_result debug_noinline
2113ieee80211_rx_h_userspace_mgmt(struct ieee80211_rx_data *rx)
2114{
554891e6 2115 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(rx->skb);
2e161f78
JB
2116
2117 /* skip known-bad action frames and return them in the next handler */
554891e6 2118 if (status->rx_flags & IEEE80211_RX_MALFORMED_ACTION_FRM)
2e161f78 2119 return RX_CONTINUE;
d7907448 2120
026331c4
JM
2121 /*
2122 * Getting here means the kernel doesn't know how to handle
2123 * it, but maybe userspace does ... include returned frames
2124 * so userspace can register for those to know whether ones
2125 * it transmitted were processed or returned.
2126 */
026331c4 2127
2e161f78
JB
2128 if (cfg80211_rx_mgmt(rx->sdata->dev, status->freq,
2129 rx->skb->data, rx->skb->len,
2130 GFP_ATOMIC)) {
2131 if (rx->sta)
2132 rx->sta->rx_packets++;
2133 dev_kfree_skb(rx->skb);
2134 return RX_QUEUED;
2135 }
2136
2137
2138 return RX_CONTINUE;
2139}
2140
2141static ieee80211_rx_result debug_noinline
2142ieee80211_rx_h_action_return(struct ieee80211_rx_data *rx)
2143{
2144 struct ieee80211_local *local = rx->local;
2145 struct ieee80211_mgmt *mgmt = (struct ieee80211_mgmt *) rx->skb->data;
2146 struct sk_buff *nskb;
2147 struct ieee80211_sub_if_data *sdata = rx->sdata;
554891e6 2148 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(rx->skb);
2e161f78
JB
2149
2150 if (!ieee80211_is_action(mgmt->frame_control))
2151 return RX_CONTINUE;
2152
2153 /*
2154 * For AP mode, hostapd is responsible for handling any action
2155 * frames that we didn't handle, including returning unknown
2156 * ones. For all other modes we will return them to the sender,
2157 * setting the 0x80 bit in the action category, as required by
2158 * 802.11-2007 7.3.1.11.
2159 * Newer versions of hostapd shall also use the management frame
2160 * registration mechanisms, but older ones still use cooked
2161 * monitor interfaces so push all frames there.
2162 */
554891e6 2163 if (!(status->rx_flags & IEEE80211_RX_MALFORMED_ACTION_FRM) &&
2e161f78
JB
2164 (sdata->vif.type == NL80211_IFTYPE_AP ||
2165 sdata->vif.type == NL80211_IFTYPE_AP_VLAN))
2166 return RX_DROP_MONITOR;
026331c4 2167
84040805
JB
2168 /* do not return rejected action frames */
2169 if (mgmt->u.action.category & 0x80)
2170 return RX_DROP_UNUSABLE;
2171
2172 nskb = skb_copy_expand(rx->skb, local->hw.extra_tx_headroom, 0,
2173 GFP_ATOMIC);
2174 if (nskb) {
292b4df6 2175 struct ieee80211_mgmt *nmgmt = (void *)nskb->data;
84040805 2176
292b4df6
JL
2177 nmgmt->u.action.category |= 0x80;
2178 memcpy(nmgmt->da, nmgmt->sa, ETH_ALEN);
2179 memcpy(nmgmt->sa, rx->sdata->vif.addr, ETH_ALEN);
84040805
JB
2180
2181 memset(nskb->cb, 0, sizeof(nskb->cb));
2182
2183 ieee80211_tx_skb(rx->sdata, nskb);
de1ede7a 2184 }
39192c0b
JB
2185 dev_kfree_skb(rx->skb);
2186 return RX_QUEUED;
de1ede7a
JB
2187}
2188
49461622 2189static ieee80211_rx_result debug_noinline
5cf121c3 2190ieee80211_rx_h_mgmt(struct ieee80211_rx_data *rx)
571ecf67 2191{
eb9fb5b8 2192 struct ieee80211_sub_if_data *sdata = rx->sdata;
af6b6374 2193 ieee80211_rx_result rxs;
77a121c3
JB
2194 struct ieee80211_mgmt *mgmt = (void *)rx->skb->data;
2195 __le16 stype;
571ecf67 2196
af6b6374
JB
2197 rxs = ieee80211_work_rx_mgmt(rx->sdata, rx->skb);
2198 if (rxs != RX_CONTINUE)
2199 return rxs;
2200
77a121c3 2201 stype = mgmt->frame_control & cpu_to_le16(IEEE80211_FCTL_STYPE);
472dbc45 2202
77a121c3
JB
2203 if (!ieee80211_vif_is_mesh(&sdata->vif) &&
2204 sdata->vif.type != NL80211_IFTYPE_ADHOC &&
2205 sdata->vif.type != NL80211_IFTYPE_STATION)
2206 return RX_DROP_MONITOR;
472dbc45 2207
77a121c3
JB
2208 switch (stype) {
2209 case cpu_to_le16(IEEE80211_STYPE_BEACON):
2210 case cpu_to_le16(IEEE80211_STYPE_PROBE_RESP):
2211 /* process for all: mesh, mlme, ibss */
2212 break;
2213 case cpu_to_le16(IEEE80211_STYPE_DEAUTH):
2214 case cpu_to_le16(IEEE80211_STYPE_DISASSOC):
2215 /* process only for station */
2216 if (sdata->vif.type != NL80211_IFTYPE_STATION)
2217 return RX_DROP_MONITOR;
2218 break;
2219 case cpu_to_le16(IEEE80211_STYPE_PROBE_REQ):
2220 case cpu_to_le16(IEEE80211_STYPE_AUTH):
2221 /* process only for ibss */
2222 if (sdata->vif.type != NL80211_IFTYPE_ADHOC)
2223 return RX_DROP_MONITOR;
2224 break;
2225 default:
2226 return RX_DROP_MONITOR;
2227 }
f9d540ee 2228
77a121c3 2229 /* queue up frame and kick off work to process it */
c1475ca9 2230 rx->skb->pkt_type = IEEE80211_SDATA_QUEUE_TYPE_FRAME;
77a121c3
JB
2231 skb_queue_tail(&sdata->skb_queue, rx->skb);
2232 ieee80211_queue_work(&rx->local->hw, &sdata->work);
8b58ff83
JB
2233 if (rx->sta)
2234 rx->sta->rx_packets++;
46900298 2235
77a121c3 2236 return RX_QUEUED;
571ecf67
JB
2237}
2238
3b8d81e0 2239static void ieee80211_rx_michael_mic_report(struct ieee80211_hdr *hdr,
5cf121c3 2240 struct ieee80211_rx_data *rx)
571ecf67 2241{
a7767f95
HH
2242 int keyidx;
2243 unsigned int hdrlen;
571ecf67 2244
a7767f95 2245 hdrlen = ieee80211_hdrlen(hdr->frame_control);
571ecf67
JB
2246 if (rx->skb->len >= hdrlen + 4)
2247 keyidx = rx->skb->data[hdrlen + 3] >> 6;
2248 else
2249 keyidx = -1;
2250
8944b79f 2251 if (!rx->sta) {
aa0daf0e
JB
2252 /*
2253 * Some hardware seem to generate incorrect Michael MIC
2254 * reports; ignore them to avoid triggering countermeasures.
2255 */
af2ced6a 2256 return;
571ecf67
JB
2257 }
2258
a7767f95 2259 if (!ieee80211_has_protected(hdr->frame_control))
af2ced6a 2260 return;
571ecf67 2261
05c914fe 2262 if (rx->sdata->vif.type == NL80211_IFTYPE_AP && keyidx) {
aa0daf0e
JB
2263 /*
2264 * APs with pairwise keys should never receive Michael MIC
2265 * errors for non-zero keyidx because these are reserved for
2266 * group keys and only the AP is sending real multicast
2267 * frames in the BSS.
2268 */
af2ced6a 2269 return;
571ecf67
JB
2270 }
2271
a7767f95
HH
2272 if (!ieee80211_is_data(hdr->frame_control) &&
2273 !ieee80211_is_auth(hdr->frame_control))
af2ced6a 2274 return;
571ecf67 2275
e6d6e342
JB
2276 mac80211_ev_michael_mic_failure(rx->sdata, keyidx, hdr, NULL,
2277 GFP_ATOMIC);
571ecf67
JB
2278}
2279
5cf121c3 2280/* TODO: use IEEE80211_RX_FRAGMENTED */
5f0b7de5
JB
2281static void ieee80211_rx_cooked_monitor(struct ieee80211_rx_data *rx,
2282 struct ieee80211_rate *rate)
3d30d949
MW
2283{
2284 struct ieee80211_sub_if_data *sdata;
2285 struct ieee80211_local *local = rx->local;
2286 struct ieee80211_rtap_hdr {
2287 struct ieee80211_radiotap_header hdr;
2288 u8 flags;
5f0b7de5 2289 u8 rate_or_pad;
3d30d949
MW
2290 __le16 chan_freq;
2291 __le16 chan_flags;
bc10502d 2292 } __packed *rthdr;
3d30d949
MW
2293 struct sk_buff *skb = rx->skb, *skb2;
2294 struct net_device *prev_dev = NULL;
eb9fb5b8 2295 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(skb);
3d30d949 2296
554891e6
JB
2297 /*
2298 * If cooked monitor has been processed already, then
2299 * don't do it again. If not, set the flag.
2300 */
2301 if (rx->flags & IEEE80211_RX_CMNTR)
7c1e1831 2302 goto out_free_skb;
554891e6 2303 rx->flags |= IEEE80211_RX_CMNTR;
7c1e1831 2304
3d30d949
MW
2305 if (skb_headroom(skb) < sizeof(*rthdr) &&
2306 pskb_expand_head(skb, sizeof(*rthdr), 0, GFP_ATOMIC))
2307 goto out_free_skb;
2308
2309 rthdr = (void *)skb_push(skb, sizeof(*rthdr));
2310 memset(rthdr, 0, sizeof(*rthdr));
2311 rthdr->hdr.it_len = cpu_to_le16(sizeof(*rthdr));
2312 rthdr->hdr.it_present =
2313 cpu_to_le32((1 << IEEE80211_RADIOTAP_FLAGS) |
3d30d949
MW
2314 (1 << IEEE80211_RADIOTAP_CHANNEL));
2315
5f0b7de5
JB
2316 if (rate) {
2317 rthdr->rate_or_pad = rate->bitrate / 5;
2318 rthdr->hdr.it_present |=
2319 cpu_to_le32(1 << IEEE80211_RADIOTAP_RATE);
2320 }
3d30d949
MW
2321 rthdr->chan_freq = cpu_to_le16(status->freq);
2322
2323 if (status->band == IEEE80211_BAND_5GHZ)
2324 rthdr->chan_flags = cpu_to_le16(IEEE80211_CHAN_OFDM |
2325 IEEE80211_CHAN_5GHZ);
2326 else
2327 rthdr->chan_flags = cpu_to_le16(IEEE80211_CHAN_DYN |
2328 IEEE80211_CHAN_2GHZ);
2329
2330 skb_set_mac_header(skb, 0);
2331 skb->ip_summed = CHECKSUM_UNNECESSARY;
2332 skb->pkt_type = PACKET_OTHERHOST;
2333 skb->protocol = htons(ETH_P_802_2);
2334
2335 list_for_each_entry_rcu(sdata, &local->interfaces, list) {
9607e6b6 2336 if (!ieee80211_sdata_running(sdata))
3d30d949
MW
2337 continue;
2338
05c914fe 2339 if (sdata->vif.type != NL80211_IFTYPE_MONITOR ||
3d30d949
MW
2340 !(sdata->u.mntr_flags & MONITOR_FLAG_COOK_FRAMES))
2341 continue;
2342
2343 if (prev_dev) {
2344 skb2 = skb_clone(skb, GFP_ATOMIC);
2345 if (skb2) {
2346 skb2->dev = prev_dev;
5548a8a1 2347 netif_receive_skb(skb2);
3d30d949
MW
2348 }
2349 }
2350
2351 prev_dev = sdata->dev;
2352 sdata->dev->stats.rx_packets++;
2353 sdata->dev->stats.rx_bytes += skb->len;
2354 }
2355
2356 if (prev_dev) {
2357 skb->dev = prev_dev;
5548a8a1 2358 netif_receive_skb(skb);
554891e6
JB
2359 return;
2360 }
3d30d949
MW
2361
2362 out_free_skb:
2363 dev_kfree_skb(skb);
2364}
2365
aa0c8636
CL
2366static void ieee80211_rx_handlers_result(struct ieee80211_rx_data *rx,
2367 ieee80211_rx_result res)
2368{
2369 switch (res) {
2370 case RX_DROP_MONITOR:
2371 I802_DEBUG_INC(rx->sdata->local->rx_handlers_drop);
2372 if (rx->sta)
2373 rx->sta->rx_dropped++;
2374 /* fall through */
2375 case RX_CONTINUE: {
2376 struct ieee80211_rate *rate = NULL;
2377 struct ieee80211_supported_band *sband;
2378 struct ieee80211_rx_status *status;
2379
2380 status = IEEE80211_SKB_RXCB((rx->skb));
2381
2382 sband = rx->local->hw.wiphy->bands[status->band];
2383 if (!(status->flag & RX_FLAG_HT))
2384 rate = &sband->bitrates[status->rate_idx];
2385
2386 ieee80211_rx_cooked_monitor(rx, rate);
2387 break;
2388 }
2389 case RX_DROP_UNUSABLE:
2390 I802_DEBUG_INC(rx->sdata->local->rx_handlers_drop);
2391 if (rx->sta)
2392 rx->sta->rx_dropped++;
2393 dev_kfree_skb(rx->skb);
2394 break;
2395 case RX_QUEUED:
2396 I802_DEBUG_INC(rx->sdata->local->rx_handlers_queued);
2397 break;
2398 }
2399}
571ecf67 2400
aa0c8636
CL
2401static void ieee80211_rx_handlers(struct ieee80211_rx_data *rx,
2402 struct sk_buff_head *frames)
58905290 2403{
58905290 2404 ieee80211_rx_result res = RX_DROP_MONITOR;
aa0c8636 2405 struct sk_buff *skb;
8944b79f 2406
e32f85f7
LCC
2407#define CALL_RXH(rxh) \
2408 do { \
2409 res = rxh(rx); \
2410 if (res != RX_CONTINUE) \
2569a826 2411 goto rxh_next; \
e32f85f7 2412 } while (0);
49461622 2413
aa0c8636 2414 while ((skb = __skb_dequeue(frames))) {
2569a826
JB
2415 /*
2416 * all the other fields are valid across frames
2417 * that belong to an aMPDU since they are on the
2418 * same TID from the same station
2419 */
2420 rx->skb = skb;
554891e6 2421 rx->flags = 0;
2569a826
JB
2422
2423 CALL_RXH(ieee80211_rx_h_decrypt)
2424 CALL_RXH(ieee80211_rx_h_check_more_data)
2425 CALL_RXH(ieee80211_rx_h_sta_process)
2426 CALL_RXH(ieee80211_rx_h_defragment)
2427 CALL_RXH(ieee80211_rx_h_ps_poll)
2428 CALL_RXH(ieee80211_rx_h_michael_mic_verify)
2429 /* must be after MMIC verify so header is counted in MPDU mic */
2430 CALL_RXH(ieee80211_rx_h_remove_qos_control)
2431 CALL_RXH(ieee80211_rx_h_amsdu)
bf94e17b 2432#ifdef CONFIG_MAC80211_MESH
aa0c8636 2433 if (ieee80211_vif_is_mesh(&rx->sdata->vif))
2569a826 2434 CALL_RXH(ieee80211_rx_h_mesh_fwding);
bf94e17b 2435#endif
2569a826
JB
2436 CALL_RXH(ieee80211_rx_h_data)
2437
2438 /* special treatment -- needs the queue */
aa0c8636 2439 res = ieee80211_rx_h_ctrl(rx, frames);
2569a826
JB
2440 if (res != RX_CONTINUE)
2441 goto rxh_next;
2442
2e161f78 2443 CALL_RXH(ieee80211_rx_h_mgmt_check)
2569a826 2444 CALL_RXH(ieee80211_rx_h_action)
2e161f78
JB
2445 CALL_RXH(ieee80211_rx_h_userspace_mgmt)
2446 CALL_RXH(ieee80211_rx_h_action_return)
2569a826 2447 CALL_RXH(ieee80211_rx_h_mgmt)
49461622 2448
aa0c8636
CL
2449 rxh_next:
2450 ieee80211_rx_handlers_result(rx, res);
2451
49461622 2452#undef CALL_RXH
aa0c8636
CL
2453 }
2454}
2455
4406c376 2456static void ieee80211_invoke_rx_handlers(struct ieee80211_rx_data *rx)
aa0c8636
CL
2457{
2458 struct sk_buff_head reorder_release;
2459 ieee80211_rx_result res = RX_DROP_MONITOR;
2460
2461 __skb_queue_head_init(&reorder_release);
2462
aa0c8636
CL
2463#define CALL_RXH(rxh) \
2464 do { \
2465 res = rxh(rx); \
2466 if (res != RX_CONTINUE) \
2467 goto rxh_next; \
2468 } while (0);
2469
2470 CALL_RXH(ieee80211_rx_h_passive_scan)
2471 CALL_RXH(ieee80211_rx_h_check)
2472
2473 ieee80211_rx_reorder_ampdu(rx, &reorder_release);
2474
2475 ieee80211_rx_handlers(rx, &reorder_release);
2476 return;
49461622 2477
2569a826 2478 rxh_next:
aa0c8636
CL
2479 ieee80211_rx_handlers_result(rx, res);
2480
2481#undef CALL_RXH
58905290
JB
2482}
2483
2bff8ebf
CL
2484/*
2485 * This function makes calls into the RX path. Therefore the
2486 * caller must hold the sta_info->lock and everything has to
2487 * be under rcu_read_lock protection as well.
2488 */
2489void ieee80211_release_reorder_timeout(struct sta_info *sta, int tid)
2490{
2491 struct sk_buff_head frames;
554891e6
JB
2492 struct ieee80211_rx_data rx = {
2493 .sta = sta,
2494 .sdata = sta->sdata,
2495 .local = sta->local,
2496 .queue = tid,
2497 };
2c15a0cf
CL
2498 struct tid_ampdu_rx *tid_agg_rx;
2499
2500 tid_agg_rx = rcu_dereference(sta->ampdu_mlme.tid_rx[tid]);
2501 if (!tid_agg_rx)
2502 return;
2bff8ebf
CL
2503
2504 __skb_queue_head_init(&frames);
2505
2c15a0cf
CL
2506 spin_lock(&tid_agg_rx->reorder_lock);
2507 ieee80211_sta_reorder_release(&sta->local->hw, tid_agg_rx, &frames);
2508 spin_unlock(&tid_agg_rx->reorder_lock);
2bff8ebf
CL
2509
2510 ieee80211_rx_handlers(&rx, &frames);
2511}
2512
571ecf67
JB
2513/* main receive path */
2514
20b01f80 2515static int prepare_for_handlers(struct ieee80211_rx_data *rx,
23a24def
JB
2516 struct ieee80211_hdr *hdr)
2517{
20b01f80 2518 struct ieee80211_sub_if_data *sdata = rx->sdata;
eb9fb5b8
JB
2519 struct sk_buff *skb = rx->skb;
2520 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(skb);
2521 u8 *bssid = ieee80211_get_bssid(hdr, skb->len, sdata->vif.type);
23a24def
JB
2522 int multicast = is_multicast_ether_addr(hdr->addr1);
2523
51fb61e7 2524 switch (sdata->vif.type) {
05c914fe 2525 case NL80211_IFTYPE_STATION:
9bc383de 2526 if (!bssid && !sdata->u.mgd.use_4addr)
23a24def 2527 return 0;
77fdaa12 2528 if (!multicast &&
47846c9b 2529 compare_ether_addr(sdata->vif.addr, hdr->addr1) != 0) {
4150c572 2530 if (!(sdata->dev->flags & IFF_PROMISC))
23a24def 2531 return 0;
554891e6 2532 status->rx_flags &= ~IEEE80211_RX_RA_MATCH;
23a24def
JB
2533 }
2534 break;
05c914fe 2535 case NL80211_IFTYPE_ADHOC:
23a24def
JB
2536 if (!bssid)
2537 return 0;
a7767f95 2538 if (ieee80211_is_beacon(hdr->frame_control)) {
9d9bf77d 2539 return 1;
87291c02 2540 }
46900298 2541 else if (!ieee80211_bssid_match(bssid, sdata->u.ibss.bssid)) {
554891e6 2542 if (!(status->rx_flags & IEEE80211_RX_IN_SCAN))
23a24def 2543 return 0;
554891e6 2544 status->rx_flags &= ~IEEE80211_RX_RA_MATCH;
23a24def 2545 } else if (!multicast &&
47846c9b 2546 compare_ether_addr(sdata->vif.addr,
23a24def 2547 hdr->addr1) != 0) {
4150c572 2548 if (!(sdata->dev->flags & IFF_PROMISC))
23a24def 2549 return 0;
554891e6 2550 status->rx_flags &= ~IEEE80211_RX_RA_MATCH;
0fb8ca45
JM
2551 } else if (!rx->sta) {
2552 int rate_idx;
eb9fb5b8 2553 if (status->flag & RX_FLAG_HT)
0fb8ca45
JM
2554 rate_idx = 0; /* TODO: HT rates */
2555 else
eb9fb5b8 2556 rate_idx = status->rate_idx;
34e89507
JB
2557 rx->sta = ieee80211_ibss_add_sta(sdata, bssid,
2558 hdr->addr2, BIT(rate_idx), GFP_ATOMIC);
0fb8ca45 2559 }
23a24def 2560 break;
05c914fe 2561 case NL80211_IFTYPE_MESH_POINT:
6032f934 2562 if (!multicast &&
47846c9b 2563 compare_ether_addr(sdata->vif.addr,
6032f934
JB
2564 hdr->addr1) != 0) {
2565 if (!(sdata->dev->flags & IFF_PROMISC))
2566 return 0;
2567
554891e6 2568 status->rx_flags &= ~IEEE80211_RX_RA_MATCH;
6032f934
JB
2569 }
2570 break;
05c914fe
JB
2571 case NL80211_IFTYPE_AP_VLAN:
2572 case NL80211_IFTYPE_AP:
23a24def 2573 if (!bssid) {
47846c9b 2574 if (compare_ether_addr(sdata->vif.addr,
23a24def
JB
2575 hdr->addr1))
2576 return 0;
2577 } else if (!ieee80211_bssid_match(bssid,
47846c9b 2578 sdata->vif.addr)) {
554891e6 2579 if (!(status->rx_flags & IEEE80211_RX_IN_SCAN))
23a24def 2580 return 0;
554891e6 2581 status->rx_flags &= ~IEEE80211_RX_RA_MATCH;
23a24def 2582 }
23a24def 2583 break;
05c914fe 2584 case NL80211_IFTYPE_WDS:
a7767f95 2585 if (bssid || !ieee80211_is_data(hdr->frame_control))
23a24def
JB
2586 return 0;
2587 if (compare_ether_addr(sdata->u.wds.remote_addr, hdr->addr2))
2588 return 0;
2589 break;
2ca27bcf 2590 default:
fb1c1cd6
JB
2591 /* should never get here */
2592 WARN_ON(1);
2593 break;
23a24def
JB
2594 }
2595
2596 return 1;
2597}
2598
4406c376
JB
2599/*
2600 * This function returns whether or not the SKB
2601 * was destined for RX processing or not, which,
2602 * if consume is true, is equivalent to whether
2603 * or not the skb was consumed.
2604 */
2605static bool ieee80211_prepare_and_rx_handle(struct ieee80211_rx_data *rx,
2606 struct sk_buff *skb, bool consume)
2607{
2608 struct ieee80211_local *local = rx->local;
2609 struct ieee80211_sub_if_data *sdata = rx->sdata;
2610 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(skb);
2611 struct ieee80211_hdr *hdr = (void *)skb->data;
2612 int prepares;
2613
2614 rx->skb = skb;
554891e6 2615 status->rx_flags |= IEEE80211_RX_RA_MATCH;
4406c376
JB
2616 prepares = prepare_for_handlers(rx, hdr);
2617
2618 if (!prepares)
2619 return false;
2620
2621 if (status->flag & RX_FLAG_MMIC_ERROR) {
554891e6 2622 if (status->rx_flags & IEEE80211_RX_RA_MATCH)
4406c376
JB
2623 ieee80211_rx_michael_mic_report(hdr, rx);
2624 return false;
2625 }
2626
2627 if (!consume) {
2628 skb = skb_copy(skb, GFP_ATOMIC);
2629 if (!skb) {
2630 if (net_ratelimit())
2631 wiphy_debug(local->hw.wiphy,
2632 "failed to copy multicast frame for %s\n",
2633 sdata->name);
2634 return true;
2635 }
2636
2637 rx->skb = skb;
2638 }
2639
2640 ieee80211_invoke_rx_handlers(rx);
2641 return true;
2642}
2643
571ecf67 2644/*
6368e4b1
RR
2645 * This is the actual Rx frames handler. as it blongs to Rx path it must
2646 * be called with rcu_read_lock protection.
571ecf67 2647 */
71ebb4aa 2648static void __ieee80211_rx_handle_packet(struct ieee80211_hw *hw,
071d9ac2 2649 struct sk_buff *skb)
571ecf67 2650{
554891e6 2651 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(skb);
571ecf67
JB
2652 struct ieee80211_local *local = hw_to_local(hw);
2653 struct ieee80211_sub_if_data *sdata;
571ecf67 2654 struct ieee80211_hdr *hdr;
e3cf8b3f 2655 __le16 fc;
5cf121c3 2656 struct ieee80211_rx_data rx;
4406c376 2657 struct ieee80211_sub_if_data *prev;
56af3268 2658 struct sta_info *sta, *tmp, *prev_sta;
e3cf8b3f 2659 int err = 0;
571ecf67 2660
e3cf8b3f 2661 fc = ((struct ieee80211_hdr *)skb->data)->frame_control;
571ecf67
JB
2662 memset(&rx, 0, sizeof(rx));
2663 rx.skb = skb;
2664 rx.local = local;
72abd81b 2665
e3cf8b3f 2666 if (ieee80211_is_data(fc) || ieee80211_is_mgmt(fc))
571ecf67 2667 local->dot11ReceivedFragmentCount++;
571ecf67 2668
142b9f50
HS
2669 if (unlikely(test_bit(SCAN_HW_SCANNING, &local->scanning) ||
2670 test_bit(SCAN_OFF_CHANNEL, &local->scanning)))
554891e6 2671 status->rx_flags |= IEEE80211_RX_IN_SCAN;
571ecf67 2672
e3cf8b3f
ZY
2673 if (ieee80211_is_mgmt(fc))
2674 err = skb_linearize(skb);
2675 else
2676 err = !pskb_may_pull(skb, ieee80211_hdrlen(fc));
2677
2678 if (err) {
2679 dev_kfree_skb(skb);
2680 return;
2681 }
2682
2683 hdr = (struct ieee80211_hdr *)skb->data;
38f3714d 2684 ieee80211_parse_qos(&rx);
d1c3a37c 2685 ieee80211_verify_alignment(&rx);
38f3714d 2686
e3cf8b3f 2687 if (ieee80211_is_data(fc)) {
56af3268 2688 prev_sta = NULL;
4406c376 2689
abe60632 2690 for_each_sta_info(local, hdr->addr2, sta, tmp) {
56af3268
BG
2691 if (!prev_sta) {
2692 prev_sta = sta;
2693 continue;
2694 }
2695
2696 rx.sta = prev_sta;
2697 rx.sdata = prev_sta->sdata;
4406c376 2698 ieee80211_prepare_and_rx_handle(&rx, skb, false);
abe60632 2699
56af3268 2700 prev_sta = sta;
4406c376 2701 }
56af3268
BG
2702
2703 if (prev_sta) {
2704 rx.sta = prev_sta;
2705 rx.sdata = prev_sta->sdata;
2706
4406c376 2707 if (ieee80211_prepare_and_rx_handle(&rx, skb, true))
56af3268 2708 return;
56af3268 2709 }
4406c376
JB
2710 }
2711
4b0dd98e 2712 prev = NULL;
b2e7771e 2713
4b0dd98e
JB
2714 list_for_each_entry_rcu(sdata, &local->interfaces, list) {
2715 if (!ieee80211_sdata_running(sdata))
2716 continue;
340e11f3 2717
4b0dd98e
JB
2718 if (sdata->vif.type == NL80211_IFTYPE_MONITOR ||
2719 sdata->vif.type == NL80211_IFTYPE_AP_VLAN)
2720 continue;
340e11f3 2721
4b0dd98e
JB
2722 /*
2723 * frame is destined for this interface, but if it's
2724 * not also for the previous one we handle that after
2725 * the loop to avoid copying the SKB once too much
2726 */
4bb29f8c 2727
4b0dd98e 2728 if (!prev) {
abe60632 2729 prev = sdata;
4b0dd98e 2730 continue;
340e11f3 2731 }
4bb29f8c 2732
4b0dd98e
JB
2733 rx.sta = sta_info_get_bss(prev, hdr->addr2);
2734 rx.sdata = prev;
2735 ieee80211_prepare_and_rx_handle(&rx, skb, false);
4bb29f8c 2736
4b0dd98e
JB
2737 prev = sdata;
2738 }
2739
2740 if (prev) {
2741 rx.sta = sta_info_get_bss(prev, hdr->addr2);
2742 rx.sdata = prev;
4406c376 2743
4b0dd98e
JB
2744 if (ieee80211_prepare_and_rx_handle(&rx, skb, true))
2745 return;
571ecf67 2746 }
4406c376
JB
2747
2748 dev_kfree_skb(skb);
571ecf67 2749}
6368e4b1
RR
2750
2751/*
2752 * This is the receive path handler. It is called by a low level driver when an
2753 * 802.11 MPDU is received from the hardware.
2754 */
103bf9f7 2755void ieee80211_rx(struct ieee80211_hw *hw, struct sk_buff *skb)
6368e4b1
RR
2756{
2757 struct ieee80211_local *local = hw_to_local(hw);
8318d78a
JB
2758 struct ieee80211_rate *rate = NULL;
2759 struct ieee80211_supported_band *sband;
f1d58c25 2760 struct ieee80211_rx_status *status = IEEE80211_SKB_RXCB(skb);
8318d78a 2761
d20ef63d
JB
2762 WARN_ON_ONCE(softirq_count() == 0);
2763
77a980dc
JB
2764 if (WARN_ON(status->band < 0 ||
2765 status->band >= IEEE80211_NUM_BANDS))
2766 goto drop;
8318d78a
JB
2767
2768 sband = local->hw.wiphy->bands[status->band];
77a980dc
JB
2769 if (WARN_ON(!sband))
2770 goto drop;
8318d78a 2771
89c3a8ac
JB
2772 /*
2773 * If we're suspending, it is possible although not too likely
2774 * that we'd be receiving frames after having already partially
2775 * quiesced the stack. We can't process such frames then since
2776 * that might, for example, cause stations to be added or other
2777 * driver callbacks be invoked.
2778 */
77a980dc
JB
2779 if (unlikely(local->quiescing || local->suspended))
2780 goto drop;
89c3a8ac 2781
ea77f12f
JB
2782 /*
2783 * The same happens when we're not even started,
2784 * but that's worth a warning.
2785 */
77a980dc
JB
2786 if (WARN_ON(!local->started))
2787 goto drop;
ea77f12f 2788
fc885189 2789 if (likely(!(status->flag & RX_FLAG_FAILED_PLCP_CRC))) {
e5d6eb83 2790 /*
fc885189
JB
2791 * Validate the rate, unless a PLCP error means that
2792 * we probably can't have a valid rate here anyway.
e5d6eb83 2793 */
fc885189
JB
2794
2795 if (status->flag & RX_FLAG_HT) {
2796 /*
2797 * rate_idx is MCS index, which can be [0-76]
2798 * as documented on:
2799 *
2800 * http://wireless.kernel.org/en/developers/Documentation/ieee80211/802.11n
2801 *
2802 * Anything else would be some sort of driver or
2803 * hardware error. The driver should catch hardware
2804 * errors.
2805 */
2806 if (WARN((status->rate_idx < 0 ||
2807 status->rate_idx > 76),
2808 "Rate marked as an HT rate but passed "
2809 "status->rate_idx is not "
2810 "an MCS index [0-76]: %d (0x%02x)\n",
2811 status->rate_idx,
2812 status->rate_idx))
2813 goto drop;
2814 } else {
2815 if (WARN_ON(status->rate_idx < 0 ||
2816 status->rate_idx >= sband->n_bitrates))
2817 goto drop;
2818 rate = &sband->bitrates[status->rate_idx];
2819 }
0fb8ca45 2820 }
6368e4b1 2821
554891e6
JB
2822 status->rx_flags = 0;
2823
6368e4b1
RR
2824 /*
2825 * key references and virtual interfaces are protected using RCU
2826 * and this requires that we are in a read-side RCU section during
2827 * receive processing
2828 */
2829 rcu_read_lock();
2830
2831 /*
2832 * Frames with failed FCS/PLCP checksum are not returned,
2833 * all other frames are returned without radiotap header
2834 * if it was previously present.
2835 * Also, frames with less than 16 bytes are dropped.
2836 */
f1d58c25 2837 skb = ieee80211_rx_monitor(local, skb, rate);
6368e4b1
RR
2838 if (!skb) {
2839 rcu_read_unlock();
2840 return;
2841 }
2842
071d9ac2 2843 __ieee80211_rx_handle_packet(hw, skb);
6368e4b1
RR
2844
2845 rcu_read_unlock();
77a980dc
JB
2846
2847 return;
2848 drop:
2849 kfree_skb(skb);
6368e4b1 2850}
103bf9f7 2851EXPORT_SYMBOL(ieee80211_rx);
571ecf67
JB
2852
2853/* This is a version of the rx handler that can be called from hard irq
2854 * context. Post the skb on the queue and schedule the tasklet */
f1d58c25 2855void ieee80211_rx_irqsafe(struct ieee80211_hw *hw, struct sk_buff *skb)
571ecf67
JB
2856{
2857 struct ieee80211_local *local = hw_to_local(hw);
2858
2859 BUILD_BUG_ON(sizeof(struct ieee80211_rx_status) > sizeof(skb->cb));
2860
571ecf67
JB
2861 skb->pkt_type = IEEE80211_RX_MSG;
2862 skb_queue_tail(&local->skb_queue, skb);
2863 tasklet_schedule(&local->tasklet);
2864}
2865EXPORT_SYMBOL(ieee80211_rx_irqsafe);