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e2ebc74d JB |
1 | /* |
2 | * Copyright 2002-2005, Instant802 Networks, Inc. | |
3 | * Copyright 2005-2006, Devicescape Software, Inc. | |
4 | * Copyright 2006-2007 Jiri Benc <[email protected]> | |
5 | * Copyright 2007 Johannes Berg <[email protected]> | |
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 | * | |
12 | * Transmit and frame generation functions. | |
13 | */ | |
14 | ||
15 | #include <linux/kernel.h> | |
16 | #include <linux/slab.h> | |
17 | #include <linux/skbuff.h> | |
18 | #include <linux/etherdevice.h> | |
19 | #include <linux/bitmap.h> | |
d4e46a3d | 20 | #include <linux/rcupdate.h> |
881d966b | 21 | #include <net/net_namespace.h> |
e2ebc74d JB |
22 | #include <net/ieee80211_radiotap.h> |
23 | #include <net/cfg80211.h> | |
24 | #include <net/mac80211.h> | |
25 | #include <asm/unaligned.h> | |
26 | ||
27 | #include "ieee80211_i.h" | |
2c8dccc7 | 28 | #include "led.h" |
33b64eb2 | 29 | #include "mesh.h" |
e2ebc74d JB |
30 | #include "wep.h" |
31 | #include "wpa.h" | |
32 | #include "wme.h" | |
2c8dccc7 | 33 | #include "rate.h" |
e2ebc74d JB |
34 | |
35 | #define IEEE80211_TX_OK 0 | |
36 | #define IEEE80211_TX_AGAIN 1 | |
37 | #define IEEE80211_TX_FRAG_AGAIN 2 | |
97d97b80 | 38 | #define IEEE80211_TX_PENDING 3 |
e2ebc74d JB |
39 | |
40 | /* misc utils */ | |
41 | ||
03f93c3d JB |
42 | static __le16 ieee80211_duration(struct ieee80211_tx_data *tx, int group_addr, |
43 | int next_frag_len) | |
e2ebc74d JB |
44 | { |
45 | int rate, mrate, erp, dur, i; | |
2e92e6f2 | 46 | struct ieee80211_rate *txrate; |
e2ebc74d | 47 | struct ieee80211_local *local = tx->local; |
8318d78a | 48 | struct ieee80211_supported_band *sband; |
358c8d9d | 49 | struct ieee80211_hdr *hdr; |
e6a9854b JB |
50 | struct ieee80211_tx_info *info = IEEE80211_SKB_CB(tx->skb); |
51 | ||
52 | /* assume HW handles this */ | |
53 | if (info->control.rates[0].flags & IEEE80211_TX_RC_MCS) | |
54 | return 0; | |
55 | ||
56 | /* uh huh? */ | |
57 | if (WARN_ON_ONCE(info->control.rates[0].idx < 0)) | |
58 | return 0; | |
e2ebc74d | 59 | |
2e92e6f2 | 60 | sband = local->hw.wiphy->bands[tx->channel->band]; |
e6a9854b | 61 | txrate = &sband->bitrates[info->control.rates[0].idx]; |
8318d78a | 62 | |
e6a9854b | 63 | erp = txrate->flags & IEEE80211_RATE_ERP_G; |
e2ebc74d JB |
64 | |
65 | /* | |
66 | * data and mgmt (except PS Poll): | |
67 | * - during CFP: 32768 | |
68 | * - during contention period: | |
69 | * if addr1 is group address: 0 | |
70 | * if more fragments = 0 and addr1 is individual address: time to | |
71 | * transmit one ACK plus SIFS | |
72 | * if more fragments = 1 and addr1 is individual address: time to | |
73 | * transmit next fragment plus 2 x ACK plus 3 x SIFS | |
74 | * | |
75 | * IEEE 802.11, 9.6: | |
76 | * - control response frame (CTS or ACK) shall be transmitted using the | |
77 | * same rate as the immediately previous frame in the frame exchange | |
78 | * sequence, if this rate belongs to the PHY mandatory rates, or else | |
79 | * at the highest possible rate belonging to the PHY rates in the | |
80 | * BSSBasicRateSet | |
81 | */ | |
358c8d9d HH |
82 | hdr = (struct ieee80211_hdr *)tx->skb->data; |
83 | if (ieee80211_is_ctl(hdr->frame_control)) { | |
e2ebc74d | 84 | /* TODO: These control frames are not currently sent by |
ccd7b362 | 85 | * mac80211, but should they be implemented, this function |
e2ebc74d JB |
86 | * needs to be updated to support duration field calculation. |
87 | * | |
88 | * RTS: time needed to transmit pending data/mgmt frame plus | |
89 | * one CTS frame plus one ACK frame plus 3 x SIFS | |
90 | * CTS: duration of immediately previous RTS minus time | |
91 | * required to transmit CTS and its SIFS | |
92 | * ACK: 0 if immediately previous directed data/mgmt had | |
93 | * more=0, with more=1 duration in ACK frame is duration | |
94 | * from previous frame minus time needed to transmit ACK | |
95 | * and its SIFS | |
96 | * PS Poll: BIT(15) | BIT(14) | aid | |
97 | */ | |
98 | return 0; | |
99 | } | |
100 | ||
101 | /* data/mgmt */ | |
102 | if (0 /* FIX: data/mgmt during CFP */) | |
03f93c3d | 103 | return cpu_to_le16(32768); |
e2ebc74d JB |
104 | |
105 | if (group_addr) /* Group address as the destination - no ACK */ | |
106 | return 0; | |
107 | ||
108 | /* Individual destination address: | |
109 | * IEEE 802.11, Ch. 9.6 (after IEEE 802.11g changes) | |
110 | * CTS and ACK frames shall be transmitted using the highest rate in | |
111 | * basic rate set that is less than or equal to the rate of the | |
112 | * immediately previous frame and that is using the same modulation | |
113 | * (CCK or OFDM). If no basic rate set matches with these requirements, | |
114 | * the highest mandatory rate of the PHY that is less than or equal to | |
115 | * the rate of the previous frame is used. | |
116 | * Mandatory rates for IEEE 802.11g PHY: 1, 2, 5.5, 11, 6, 12, 24 Mbps | |
117 | */ | |
118 | rate = -1; | |
8318d78a JB |
119 | /* use lowest available if everything fails */ |
120 | mrate = sband->bitrates[0].bitrate; | |
121 | for (i = 0; i < sband->n_bitrates; i++) { | |
122 | struct ieee80211_rate *r = &sband->bitrates[i]; | |
e2ebc74d | 123 | |
8318d78a JB |
124 | if (r->bitrate > txrate->bitrate) |
125 | break; | |
e2ebc74d | 126 | |
bda3933a | 127 | if (tx->sdata->vif.bss_conf.basic_rates & BIT(i)) |
8318d78a JB |
128 | rate = r->bitrate; |
129 | ||
130 | switch (sband->band) { | |
131 | case IEEE80211_BAND_2GHZ: { | |
132 | u32 flag; | |
133 | if (tx->sdata->flags & IEEE80211_SDATA_OPERATING_GMODE) | |
134 | flag = IEEE80211_RATE_MANDATORY_G; | |
135 | else | |
136 | flag = IEEE80211_RATE_MANDATORY_B; | |
137 | if (r->flags & flag) | |
138 | mrate = r->bitrate; | |
139 | break; | |
140 | } | |
141 | case IEEE80211_BAND_5GHZ: | |
142 | if (r->flags & IEEE80211_RATE_MANDATORY_A) | |
143 | mrate = r->bitrate; | |
144 | break; | |
145 | case IEEE80211_NUM_BANDS: | |
146 | WARN_ON(1); | |
147 | break; | |
148 | } | |
e2ebc74d JB |
149 | } |
150 | if (rate == -1) { | |
151 | /* No matching basic rate found; use highest suitable mandatory | |
152 | * PHY rate */ | |
153 | rate = mrate; | |
154 | } | |
155 | ||
156 | /* Time needed to transmit ACK | |
157 | * (10 bytes + 4-byte FCS = 112 bits) plus SIFS; rounded up | |
158 | * to closest integer */ | |
159 | ||
160 | dur = ieee80211_frame_duration(local, 10, rate, erp, | |
bda3933a | 161 | tx->sdata->vif.bss_conf.use_short_preamble); |
e2ebc74d JB |
162 | |
163 | if (next_frag_len) { | |
164 | /* Frame is fragmented: duration increases with time needed to | |
165 | * transmit next fragment plus ACK and 2 x SIFS. */ | |
166 | dur *= 2; /* ACK + SIFS */ | |
167 | /* next fragment */ | |
168 | dur += ieee80211_frame_duration(local, next_frag_len, | |
8318d78a | 169 | txrate->bitrate, erp, |
bda3933a | 170 | tx->sdata->vif.bss_conf.use_short_preamble); |
e2ebc74d JB |
171 | } |
172 | ||
03f93c3d | 173 | return cpu_to_le16(dur); |
e2ebc74d JB |
174 | } |
175 | ||
133b8226 JB |
176 | static int inline is_ieee80211_device(struct ieee80211_local *local, |
177 | struct net_device *dev) | |
e2ebc74d | 178 | { |
133b8226 | 179 | return local == wdev_priv(dev->ieee80211_ptr); |
e2ebc74d JB |
180 | } |
181 | ||
182 | /* tx handlers */ | |
183 | ||
d9e8a70f | 184 | static ieee80211_tx_result debug_noinline |
5cf121c3 | 185 | ieee80211_tx_h_check_assoc(struct ieee80211_tx_data *tx) |
e2ebc74d | 186 | { |
358c8d9d | 187 | |
e039fa4a | 188 | struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)tx->skb->data; |
e039fa4a | 189 | struct ieee80211_tx_info *info = IEEE80211_SKB_CB(tx->skb); |
e2ebc74d JB |
190 | u32 sta_flags; |
191 | ||
e039fa4a | 192 | if (unlikely(info->flags & IEEE80211_TX_CTL_INJECTED)) |
9ae54c84 | 193 | return TX_CONTINUE; |
58d4185e | 194 | |
c2b13452 | 195 | if (unlikely(tx->local->sw_scanning) && |
a9a6ffff KV |
196 | !ieee80211_is_probe_req(hdr->frame_control) && |
197 | !ieee80211_is_nullfunc(hdr->frame_control)) | |
198 | /* | |
199 | * When software scanning only nullfunc frames (to notify | |
200 | * the sleep state to the AP) and probe requests (for the | |
201 | * active scan) are allowed, all other frames should not be | |
202 | * sent and we should not get here, but if we do | |
203 | * nonetheless, drop them to avoid sending them | |
204 | * off-channel. See the link below and | |
205 | * ieee80211_start_scan() for more. | |
206 | * | |
207 | * http://article.gmane.org/gmane.linux.kernel.wireless.general/30089 | |
208 | */ | |
9ae54c84 | 209 | return TX_DROP; |
e2ebc74d | 210 | |
05c914fe | 211 | if (tx->sdata->vif.type == NL80211_IFTYPE_MESH_POINT) |
33b64eb2 LCC |
212 | return TX_CONTINUE; |
213 | ||
5cf121c3 | 214 | if (tx->flags & IEEE80211_TX_PS_BUFFERED) |
9ae54c84 | 215 | return TX_CONTINUE; |
e2ebc74d | 216 | |
07346f81 | 217 | sta_flags = tx->sta ? get_sta_flags(tx->sta) : 0; |
e2ebc74d | 218 | |
5cf121c3 | 219 | if (likely(tx->flags & IEEE80211_TX_UNICAST)) { |
e2ebc74d | 220 | if (unlikely(!(sta_flags & WLAN_STA_ASSOC) && |
05c914fe | 221 | tx->sdata->vif.type != NL80211_IFTYPE_ADHOC && |
358c8d9d | 222 | ieee80211_is_data(hdr->frame_control))) { |
e2ebc74d JB |
223 | #ifdef CONFIG_MAC80211_VERBOSE_DEBUG |
224 | printk(KERN_DEBUG "%s: dropped data frame to not " | |
0c68ae26 JB |
225 | "associated station %pM\n", |
226 | tx->dev->name, hdr->addr1); | |
e2ebc74d JB |
227 | #endif /* CONFIG_MAC80211_VERBOSE_DEBUG */ |
228 | I802_DEBUG_INC(tx->local->tx_handlers_drop_not_assoc); | |
9ae54c84 | 229 | return TX_DROP; |
e2ebc74d JB |
230 | } |
231 | } else { | |
358c8d9d | 232 | if (unlikely(ieee80211_is_data(hdr->frame_control) && |
e2ebc74d | 233 | tx->local->num_sta == 0 && |
05c914fe | 234 | tx->sdata->vif.type != NL80211_IFTYPE_ADHOC)) { |
e2ebc74d JB |
235 | /* |
236 | * No associated STAs - no need to send multicast | |
237 | * frames. | |
238 | */ | |
9ae54c84 | 239 | return TX_DROP; |
e2ebc74d | 240 | } |
9ae54c84 | 241 | return TX_CONTINUE; |
e2ebc74d JB |
242 | } |
243 | ||
9ae54c84 | 244 | return TX_CONTINUE; |
e2ebc74d JB |
245 | } |
246 | ||
e2ebc74d JB |
247 | /* This function is called whenever the AP is about to exceed the maximum limit |
248 | * of buffered frames for power saving STAs. This situation should not really | |
249 | * happen often during normal operation, so dropping the oldest buffered packet | |
250 | * from each queue should be OK to make some room for new frames. */ | |
251 | static void purge_old_ps_buffers(struct ieee80211_local *local) | |
252 | { | |
253 | int total = 0, purged = 0; | |
254 | struct sk_buff *skb; | |
255 | struct ieee80211_sub_if_data *sdata; | |
256 | struct sta_info *sta; | |
257 | ||
79010420 JB |
258 | /* |
259 | * virtual interfaces are protected by RCU | |
260 | */ | |
261 | rcu_read_lock(); | |
262 | ||
263 | list_for_each_entry_rcu(sdata, &local->interfaces, list) { | |
e2ebc74d | 264 | struct ieee80211_if_ap *ap; |
05c914fe | 265 | if (sdata->vif.type != NL80211_IFTYPE_AP) |
e2ebc74d JB |
266 | continue; |
267 | ap = &sdata->u.ap; | |
268 | skb = skb_dequeue(&ap->ps_bc_buf); | |
269 | if (skb) { | |
270 | purged++; | |
271 | dev_kfree_skb(skb); | |
272 | } | |
273 | total += skb_queue_len(&ap->ps_bc_buf); | |
274 | } | |
e2ebc74d | 275 | |
d0709a65 | 276 | list_for_each_entry_rcu(sta, &local->sta_list, list) { |
e2ebc74d JB |
277 | skb = skb_dequeue(&sta->ps_tx_buf); |
278 | if (skb) { | |
279 | purged++; | |
280 | dev_kfree_skb(skb); | |
281 | } | |
282 | total += skb_queue_len(&sta->ps_tx_buf); | |
283 | } | |
d0709a65 JB |
284 | |
285 | rcu_read_unlock(); | |
e2ebc74d JB |
286 | |
287 | local->total_ps_buffered = total; | |
54223995 | 288 | #ifdef CONFIG_MAC80211_VERBOSE_PS_DEBUG |
e2ebc74d | 289 | printk(KERN_DEBUG "%s: PS buffers full - purged %d frames\n", |
dd1cd4c6 | 290 | wiphy_name(local->hw.wiphy), purged); |
f4ea83dd | 291 | #endif |
e2ebc74d JB |
292 | } |
293 | ||
9ae54c84 | 294 | static ieee80211_tx_result |
5cf121c3 | 295 | ieee80211_tx_h_multicast_ps_buf(struct ieee80211_tx_data *tx) |
e2ebc74d | 296 | { |
e039fa4a | 297 | struct ieee80211_tx_info *info = IEEE80211_SKB_CB(tx->skb); |
358c8d9d | 298 | struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)tx->skb->data; |
e039fa4a | 299 | |
7d54d0dd JB |
300 | /* |
301 | * broadcast/multicast frame | |
302 | * | |
303 | * If any of the associated stations is in power save mode, | |
304 | * the frame is buffered to be sent after DTIM beacon frame. | |
305 | * This is done either by the hardware or us. | |
306 | */ | |
307 | ||
3e122be0 JB |
308 | /* powersaving STAs only in AP/VLAN mode */ |
309 | if (!tx->sdata->bss) | |
310 | return TX_CONTINUE; | |
311 | ||
312 | /* no buffering for ordered frames */ | |
358c8d9d | 313 | if (ieee80211_has_order(hdr->frame_control)) |
9ae54c84 | 314 | return TX_CONTINUE; |
7d54d0dd JB |
315 | |
316 | /* no stations in PS mode */ | |
317 | if (!atomic_read(&tx->sdata->bss->num_sta_ps)) | |
9ae54c84 | 318 | return TX_CONTINUE; |
7d54d0dd JB |
319 | |
320 | /* buffered in mac80211 */ | |
321 | if (tx->local->hw.flags & IEEE80211_HW_HOST_BROADCAST_PS_BUFFERING) { | |
e2ebc74d JB |
322 | if (tx->local->total_ps_buffered >= TOTAL_MAX_TX_BUFFER) |
323 | purge_old_ps_buffers(tx->local); | |
324 | if (skb_queue_len(&tx->sdata->bss->ps_bc_buf) >= | |
325 | AP_MAX_BC_BUFFER) { | |
54223995 | 326 | #ifdef CONFIG_MAC80211_VERBOSE_PS_DEBUG |
e2ebc74d JB |
327 | if (net_ratelimit()) { |
328 | printk(KERN_DEBUG "%s: BC TX buffer full - " | |
329 | "dropping the oldest frame\n", | |
330 | tx->dev->name); | |
331 | } | |
f4ea83dd | 332 | #endif |
e2ebc74d JB |
333 | dev_kfree_skb(skb_dequeue(&tx->sdata->bss->ps_bc_buf)); |
334 | } else | |
335 | tx->local->total_ps_buffered++; | |
336 | skb_queue_tail(&tx->sdata->bss->ps_bc_buf, tx->skb); | |
9ae54c84 | 337 | return TX_QUEUED; |
e2ebc74d JB |
338 | } |
339 | ||
7d54d0dd | 340 | /* buffered in hardware */ |
e039fa4a | 341 | info->flags |= IEEE80211_TX_CTL_SEND_AFTER_DTIM; |
7d54d0dd | 342 | |
9ae54c84 | 343 | return TX_CONTINUE; |
e2ebc74d JB |
344 | } |
345 | ||
fb733336 JM |
346 | static int ieee80211_use_mfp(__le16 fc, struct sta_info *sta, |
347 | struct sk_buff *skb) | |
348 | { | |
349 | if (!ieee80211_is_mgmt(fc)) | |
350 | return 0; | |
351 | ||
352 | if (sta == NULL || !test_sta_flags(sta, WLAN_STA_MFP)) | |
353 | return 0; | |
354 | ||
355 | if (!ieee80211_is_robust_mgmt_frame((struct ieee80211_hdr *) | |
356 | skb->data)) | |
357 | return 0; | |
358 | ||
359 | return 1; | |
360 | } | |
361 | ||
9ae54c84 | 362 | static ieee80211_tx_result |
5cf121c3 | 363 | ieee80211_tx_h_unicast_ps_buf(struct ieee80211_tx_data *tx) |
e2ebc74d JB |
364 | { |
365 | struct sta_info *sta = tx->sta; | |
e039fa4a | 366 | struct ieee80211_tx_info *info = IEEE80211_SKB_CB(tx->skb); |
358c8d9d | 367 | struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)tx->skb->data; |
07346f81 | 368 | u32 staflags; |
e2ebc74d | 369 | |
358c8d9d | 370 | if (unlikely(!sta || ieee80211_is_probe_resp(hdr->frame_control))) |
9ae54c84 | 371 | return TX_CONTINUE; |
e2ebc74d | 372 | |
07346f81 JB |
373 | staflags = get_sta_flags(sta); |
374 | ||
375 | if (unlikely((staflags & WLAN_STA_PS) && | |
376 | !(staflags & WLAN_STA_PSPOLL))) { | |
e2ebc74d | 377 | #ifdef CONFIG_MAC80211_VERBOSE_PS_DEBUG |
0c68ae26 | 378 | printk(KERN_DEBUG "STA %pM aid %d: PS buffer (entries " |
e2ebc74d | 379 | "before %d)\n", |
0c68ae26 | 380 | sta->sta.addr, sta->sta.aid, |
e2ebc74d JB |
381 | skb_queue_len(&sta->ps_tx_buf)); |
382 | #endif /* CONFIG_MAC80211_VERBOSE_PS_DEBUG */ | |
e2ebc74d JB |
383 | if (tx->local->total_ps_buffered >= TOTAL_MAX_TX_BUFFER) |
384 | purge_old_ps_buffers(tx->local); | |
385 | if (skb_queue_len(&sta->ps_tx_buf) >= STA_MAX_TX_BUFFER) { | |
386 | struct sk_buff *old = skb_dequeue(&sta->ps_tx_buf); | |
54223995 | 387 | #ifdef CONFIG_MAC80211_VERBOSE_PS_DEBUG |
e2ebc74d | 388 | if (net_ratelimit()) { |
0c68ae26 | 389 | printk(KERN_DEBUG "%s: STA %pM TX " |
e2ebc74d | 390 | "buffer full - dropping oldest frame\n", |
0c68ae26 | 391 | tx->dev->name, sta->sta.addr); |
e2ebc74d | 392 | } |
f4ea83dd | 393 | #endif |
e2ebc74d JB |
394 | dev_kfree_skb(old); |
395 | } else | |
396 | tx->local->total_ps_buffered++; | |
004c872e | 397 | |
e2ebc74d | 398 | /* Queue frame to be sent after STA sends an PS Poll frame */ |
004c872e JB |
399 | if (skb_queue_empty(&sta->ps_tx_buf)) |
400 | sta_info_set_tim_bit(sta); | |
401 | ||
e039fa4a | 402 | info->control.jiffies = jiffies; |
e2ebc74d | 403 | skb_queue_tail(&sta->ps_tx_buf, tx->skb); |
9ae54c84 | 404 | return TX_QUEUED; |
e2ebc74d JB |
405 | } |
406 | #ifdef CONFIG_MAC80211_VERBOSE_PS_DEBUG | |
07346f81 | 407 | else if (unlikely(test_sta_flags(sta, WLAN_STA_PS))) { |
0c68ae26 | 408 | printk(KERN_DEBUG "%s: STA %pM in PS mode, but pspoll " |
e2ebc74d | 409 | "set -> send frame\n", tx->dev->name, |
0c68ae26 | 410 | sta->sta.addr); |
e2ebc74d JB |
411 | } |
412 | #endif /* CONFIG_MAC80211_VERBOSE_PS_DEBUG */ | |
07346f81 | 413 | clear_sta_flags(sta, WLAN_STA_PSPOLL); |
e2ebc74d | 414 | |
9ae54c84 | 415 | return TX_CONTINUE; |
e2ebc74d JB |
416 | } |
417 | ||
d9e8a70f | 418 | static ieee80211_tx_result debug_noinline |
5cf121c3 | 419 | ieee80211_tx_h_ps_buf(struct ieee80211_tx_data *tx) |
e2ebc74d | 420 | { |
5cf121c3 | 421 | if (unlikely(tx->flags & IEEE80211_TX_PS_BUFFERED)) |
9ae54c84 | 422 | return TX_CONTINUE; |
e2ebc74d | 423 | |
5cf121c3 | 424 | if (tx->flags & IEEE80211_TX_UNICAST) |
e2ebc74d JB |
425 | return ieee80211_tx_h_unicast_ps_buf(tx); |
426 | else | |
427 | return ieee80211_tx_h_multicast_ps_buf(tx); | |
428 | } | |
429 | ||
d9e8a70f | 430 | static ieee80211_tx_result debug_noinline |
5cf121c3 | 431 | ieee80211_tx_h_select_key(struct ieee80211_tx_data *tx) |
e2ebc74d | 432 | { |
d4e46a3d | 433 | struct ieee80211_key *key; |
e039fa4a | 434 | struct ieee80211_tx_info *info = IEEE80211_SKB_CB(tx->skb); |
358c8d9d | 435 | struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)tx->skb->data; |
d4e46a3d | 436 | |
d0f09804 | 437 | if (unlikely(tx->skb->do_not_encrypt)) |
e2ebc74d | 438 | tx->key = NULL; |
d4e46a3d JB |
439 | else if (tx->sta && (key = rcu_dereference(tx->sta->key))) |
440 | tx->key = key; | |
3cfcf6ac JM |
441 | else if (ieee80211_is_mgmt(hdr->frame_control) && |
442 | (key = rcu_dereference(tx->sdata->default_mgmt_key))) | |
443 | tx->key = key; | |
d4e46a3d JB |
444 | else if ((key = rcu_dereference(tx->sdata->default_key))) |
445 | tx->key = key; | |
e2ebc74d | 446 | else if (tx->sdata->drop_unencrypted && |
d0f09804 | 447 | (tx->skb->protocol != cpu_to_be16(ETH_P_PAE)) && |
e0463f50 JM |
448 | !(info->flags & IEEE80211_TX_CTL_INJECTED) && |
449 | (!ieee80211_is_robust_mgmt_frame(hdr) || | |
450 | (ieee80211_is_action(hdr->frame_control) && | |
451 | tx->sta && test_sta_flags(tx->sta, WLAN_STA_MFP)))) { | |
e2ebc74d | 452 | I802_DEBUG_INC(tx->local->tx_handlers_drop_unencrypted); |
9ae54c84 | 453 | return TX_DROP; |
176e4f84 | 454 | } else |
e2ebc74d JB |
455 | tx->key = NULL; |
456 | ||
457 | if (tx->key) { | |
458 | tx->key->tx_rx_count++; | |
011bfcc4 | 459 | /* TODO: add threshold stuff again */ |
176e4f84 JB |
460 | |
461 | switch (tx->key->conf.alg) { | |
462 | case ALG_WEP: | |
358c8d9d | 463 | if (ieee80211_is_auth(hdr->frame_control)) |
176e4f84 JB |
464 | break; |
465 | case ALG_TKIP: | |
358c8d9d | 466 | if (!ieee80211_is_data_present(hdr->frame_control)) |
176e4f84 JB |
467 | tx->key = NULL; |
468 | break; | |
fb733336 JM |
469 | case ALG_CCMP: |
470 | if (!ieee80211_is_data_present(hdr->frame_control) && | |
471 | !ieee80211_use_mfp(hdr->frame_control, tx->sta, | |
472 | tx->skb)) | |
473 | tx->key = NULL; | |
474 | break; | |
3cfcf6ac JM |
475 | case ALG_AES_CMAC: |
476 | if (!ieee80211_is_mgmt(hdr->frame_control)) | |
477 | tx->key = NULL; | |
478 | break; | |
176e4f84 | 479 | } |
e2ebc74d JB |
480 | } |
481 | ||
176e4f84 | 482 | if (!tx->key || !(tx->key->flags & KEY_FLAG_UPLOADED_TO_HARDWARE)) |
d0f09804 | 483 | tx->skb->do_not_encrypt = 1; |
176e4f84 | 484 | |
9ae54c84 | 485 | return TX_CONTINUE; |
e2ebc74d JB |
486 | } |
487 | ||
d9e8a70f | 488 | static ieee80211_tx_result debug_noinline |
5cf121c3 | 489 | ieee80211_tx_h_rate_ctrl(struct ieee80211_tx_data *tx) |
e2ebc74d | 490 | { |
e039fa4a | 491 | struct ieee80211_tx_info *info = IEEE80211_SKB_CB(tx->skb); |
e6a9854b JB |
492 | struct ieee80211_hdr *hdr = (void *)tx->skb->data; |
493 | struct ieee80211_supported_band *sband; | |
494 | struct ieee80211_rate *rate; | |
495 | int i, len; | |
496 | bool inval = false, rts = false, short_preamble = false; | |
497 | struct ieee80211_tx_rate_control txrc; | |
8318d78a | 498 | |
e6a9854b | 499 | memset(&txrc, 0, sizeof(txrc)); |
e2ebc74d | 500 | |
e6a9854b | 501 | sband = tx->local->hw.wiphy->bands[tx->channel->band]; |
58d4185e | 502 | |
e6a9854b JB |
503 | len = min_t(int, tx->skb->len + FCS_LEN, |
504 | tx->local->fragmentation_threshold); | |
505 | ||
506 | /* set up the tx rate control struct we give the RC algo */ | |
507 | txrc.hw = local_to_hw(tx->local); | |
508 | txrc.sband = sband; | |
509 | txrc.bss_conf = &tx->sdata->vif.bss_conf; | |
510 | txrc.skb = tx->skb; | |
511 | txrc.reported_rate.idx = -1; | |
512 | txrc.max_rate_idx = tx->sdata->max_ratectrl_rateidx; | |
513 | ||
514 | /* set up RTS protection if desired */ | |
515 | if (tx->local->rts_threshold < IEEE80211_MAX_RTS_THRESHOLD && | |
516 | len > tx->local->rts_threshold) { | |
517 | txrc.rts = rts = true; | |
e2ebc74d | 518 | } |
e2ebc74d | 519 | |
e6a9854b JB |
520 | /* |
521 | * Use short preamble if the BSS can handle it, but not for | |
522 | * management frames unless we know the receiver can handle | |
523 | * that -- the management frame might be to a station that | |
524 | * just wants a probe response. | |
525 | */ | |
526 | if (tx->sdata->vif.bss_conf.use_short_preamble && | |
527 | (ieee80211_is_data(hdr->frame_control) || | |
528 | (tx->sta && test_sta_flags(tx->sta, WLAN_STA_SHORT_PREAMBLE)))) | |
529 | txrc.short_preamble = short_preamble = true; | |
e2ebc74d | 530 | |
2e92e6f2 | 531 | |
e6a9854b JB |
532 | rate_control_get_rate(tx->sdata, tx->sta, &txrc); |
533 | ||
534 | if (unlikely(info->control.rates[0].idx < 0)) | |
535 | return TX_DROP; | |
536 | ||
537 | if (txrc.reported_rate.idx < 0) | |
538 | txrc.reported_rate = info->control.rates[0]; | |
e2ebc74d | 539 | |
e039fa4a | 540 | if (tx->sta) |
e6a9854b | 541 | tx->sta->last_tx_rate = txrc.reported_rate; |
e039fa4a | 542 | |
e6a9854b JB |
543 | if (unlikely(!info->control.rates[0].count)) |
544 | info->control.rates[0].count = 1; | |
e2ebc74d | 545 | |
e6a9854b JB |
546 | if (is_multicast_ether_addr(hdr->addr1)) { |
547 | /* | |
548 | * XXX: verify the rate is in the basic rateset | |
549 | */ | |
550 | return TX_CONTINUE; | |
e2ebc74d JB |
551 | } |
552 | ||
e6a9854b JB |
553 | /* |
554 | * set up the RTS/CTS rate as the fastest basic rate | |
555 | * that is not faster than the data rate | |
556 | * | |
557 | * XXX: Should this check all retry rates? | |
558 | */ | |
559 | if (!(info->control.rates[0].flags & IEEE80211_TX_RC_MCS)) { | |
560 | s8 baserate = 0; | |
561 | ||
562 | rate = &sband->bitrates[info->control.rates[0].idx]; | |
563 | ||
564 | for (i = 0; i < sband->n_bitrates; i++) { | |
565 | /* must be a basic rate */ | |
566 | if (!(tx->sdata->vif.bss_conf.basic_rates & BIT(i))) | |
567 | continue; | |
568 | /* must not be faster than the data rate */ | |
569 | if (sband->bitrates[i].bitrate > rate->bitrate) | |
570 | continue; | |
571 | /* maximum */ | |
572 | if (sband->bitrates[baserate].bitrate < | |
573 | sband->bitrates[i].bitrate) | |
574 | baserate = i; | |
575 | } | |
576 | ||
577 | info->control.rts_cts_rate_idx = baserate; | |
7e9ed188 DD |
578 | } |
579 | ||
e6a9854b JB |
580 | for (i = 0; i < IEEE80211_TX_MAX_RATES; i++) { |
581 | /* | |
582 | * make sure there's no valid rate following | |
583 | * an invalid one, just in case drivers don't | |
584 | * take the API seriously to stop at -1. | |
585 | */ | |
586 | if (inval) { | |
587 | info->control.rates[i].idx = -1; | |
588 | continue; | |
589 | } | |
590 | if (info->control.rates[i].idx < 0) { | |
591 | inval = true; | |
592 | continue; | |
593 | } | |
8318d78a | 594 | |
e6a9854b JB |
595 | /* |
596 | * For now assume MCS is already set up correctly, this | |
597 | * needs to be fixed. | |
598 | */ | |
599 | if (info->control.rates[i].flags & IEEE80211_TX_RC_MCS) { | |
600 | WARN_ON(info->control.rates[i].idx > 76); | |
601 | continue; | |
602 | } | |
e2ebc74d | 603 | |
e6a9854b JB |
604 | /* set up RTS protection if desired */ |
605 | if (rts) | |
606 | info->control.rates[i].flags |= | |
607 | IEEE80211_TX_RC_USE_RTS_CTS; | |
8318d78a | 608 | |
e6a9854b | 609 | /* RC is busted */ |
075cbc9e S |
610 | if (WARN_ON_ONCE(info->control.rates[i].idx >= |
611 | sband->n_bitrates)) { | |
e6a9854b JB |
612 | info->control.rates[i].idx = -1; |
613 | continue; | |
8318d78a | 614 | } |
e2ebc74d | 615 | |
e6a9854b JB |
616 | rate = &sband->bitrates[info->control.rates[i].idx]; |
617 | ||
618 | /* set up short preamble */ | |
619 | if (short_preamble && | |
620 | rate->flags & IEEE80211_RATE_SHORT_PREAMBLE) | |
621 | info->control.rates[i].flags |= | |
622 | IEEE80211_TX_RC_USE_SHORT_PREAMBLE; | |
623 | ||
624 | /* set up G protection */ | |
625 | if (!rts && tx->sdata->vif.bss_conf.use_cts_prot && | |
626 | rate->flags & IEEE80211_RATE_ERP_G) | |
627 | info->control.rates[i].flags |= | |
628 | IEEE80211_TX_RC_USE_CTS_PROTECT; | |
e2ebc74d JB |
629 | } |
630 | ||
e6a9854b JB |
631 | return TX_CONTINUE; |
632 | } | |
633 | ||
634 | static ieee80211_tx_result debug_noinline | |
635 | ieee80211_tx_h_misc(struct ieee80211_tx_data *tx) | |
636 | { | |
637 | struct ieee80211_tx_info *info = IEEE80211_SKB_CB(tx->skb); | |
638 | ||
e2454948 | 639 | if (tx->sta) |
17741cdc | 640 | info->control.sta = &tx->sta->sta; |
e2454948 JB |
641 | |
642 | return TX_CONTINUE; | |
643 | } | |
644 | ||
f591fa5d JB |
645 | static ieee80211_tx_result debug_noinline |
646 | ieee80211_tx_h_sequence(struct ieee80211_tx_data *tx) | |
647 | { | |
648 | struct ieee80211_tx_info *info = IEEE80211_SKB_CB(tx->skb); | |
649 | struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)tx->skb->data; | |
650 | u16 *seq; | |
651 | u8 *qc; | |
652 | int tid; | |
653 | ||
25d834e1 JB |
654 | /* |
655 | * Packet injection may want to control the sequence | |
656 | * number, if we have no matching interface then we | |
657 | * neither assign one ourselves nor ask the driver to. | |
658 | */ | |
659 | if (unlikely(!info->control.vif)) | |
660 | return TX_CONTINUE; | |
661 | ||
f591fa5d JB |
662 | if (unlikely(ieee80211_is_ctl(hdr->frame_control))) |
663 | return TX_CONTINUE; | |
664 | ||
665 | if (ieee80211_hdrlen(hdr->frame_control) < 24) | |
666 | return TX_CONTINUE; | |
667 | ||
94778280 JB |
668 | /* |
669 | * Anything but QoS data that has a sequence number field | |
670 | * (is long enough) gets a sequence number from the global | |
671 | * counter. | |
672 | */ | |
f591fa5d | 673 | if (!ieee80211_is_data_qos(hdr->frame_control)) { |
94778280 | 674 | /* driver should assign sequence number */ |
f591fa5d | 675 | info->flags |= IEEE80211_TX_CTL_ASSIGN_SEQ; |
94778280 JB |
676 | /* for pure STA mode without beacons, we can do it */ |
677 | hdr->seq_ctrl = cpu_to_le16(tx->sdata->sequence_number); | |
678 | tx->sdata->sequence_number += 0x10; | |
679 | tx->sdata->sequence_number &= IEEE80211_SCTL_SEQ; | |
f591fa5d JB |
680 | return TX_CONTINUE; |
681 | } | |
682 | ||
683 | /* | |
684 | * This should be true for injected/management frames only, for | |
685 | * management frames we have set the IEEE80211_TX_CTL_ASSIGN_SEQ | |
686 | * above since they are not QoS-data frames. | |
687 | */ | |
688 | if (!tx->sta) | |
689 | return TX_CONTINUE; | |
690 | ||
691 | /* include per-STA, per-TID sequence counter */ | |
692 | ||
693 | qc = ieee80211_get_qos_ctl(hdr); | |
694 | tid = *qc & IEEE80211_QOS_CTL_TID_MASK; | |
695 | seq = &tx->sta->tid_seq[tid]; | |
696 | ||
697 | hdr->seq_ctrl = cpu_to_le16(*seq); | |
698 | ||
699 | /* Increase the sequence number. */ | |
700 | *seq = (*seq + 0x10) & IEEE80211_SCTL_SEQ; | |
701 | ||
702 | return TX_CONTINUE; | |
703 | } | |
704 | ||
d9e8a70f | 705 | static ieee80211_tx_result debug_noinline |
e2454948 JB |
706 | ieee80211_tx_h_fragment(struct ieee80211_tx_data *tx) |
707 | { | |
8b30b1fe | 708 | struct ieee80211_tx_info *info = IEEE80211_SKB_CB(tx->skb); |
065e9605 | 709 | struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)tx->skb->data; |
e2454948 JB |
710 | size_t hdrlen, per_fragm, num_fragm, payload_len, left; |
711 | struct sk_buff **frags, *first, *frag; | |
712 | int i; | |
713 | u16 seq; | |
714 | u8 *pos; | |
715 | int frag_threshold = tx->local->fragmentation_threshold; | |
716 | ||
717 | if (!(tx->flags & IEEE80211_TX_FRAGMENTED)) | |
718 | return TX_CONTINUE; | |
719 | ||
eefce91a JB |
720 | /* |
721 | * Warn when submitting a fragmented A-MPDU frame and drop it. | |
8d5e0d58 RR |
722 | * This scenario is handled in __ieee80211_tx_prepare but extra |
723 | * caution taken here as fragmented ampdu may cause Tx stop. | |
eefce91a | 724 | */ |
8b30b1fe | 725 | if (WARN_ON(info->flags & IEEE80211_TX_CTL_AMPDU)) |
eefce91a JB |
726 | return TX_DROP; |
727 | ||
e2454948 JB |
728 | first = tx->skb; |
729 | ||
065e9605 | 730 | hdrlen = ieee80211_hdrlen(hdr->frame_control); |
e2454948 JB |
731 | payload_len = first->len - hdrlen; |
732 | per_fragm = frag_threshold - hdrlen - FCS_LEN; | |
733 | num_fragm = DIV_ROUND_UP(payload_len, per_fragm); | |
734 | ||
735 | frags = kzalloc(num_fragm * sizeof(struct sk_buff *), GFP_ATOMIC); | |
736 | if (!frags) | |
737 | goto fail; | |
738 | ||
739 | hdr->frame_control |= cpu_to_le16(IEEE80211_FCTL_MOREFRAGS); | |
740 | seq = le16_to_cpu(hdr->seq_ctrl) & IEEE80211_SCTL_SEQ; | |
741 | pos = first->data + hdrlen + per_fragm; | |
742 | left = payload_len - per_fragm; | |
743 | for (i = 0; i < num_fragm - 1; i++) { | |
744 | struct ieee80211_hdr *fhdr; | |
745 | size_t copylen; | |
746 | ||
747 | if (left <= 0) | |
748 | goto fail; | |
749 | ||
750 | /* reserve enough extra head and tail room for possible | |
751 | * encryption */ | |
752 | frag = frags[i] = | |
753 | dev_alloc_skb(tx->local->tx_headroom + | |
754 | frag_threshold + | |
755 | IEEE80211_ENCRYPT_HEADROOM + | |
756 | IEEE80211_ENCRYPT_TAILROOM); | |
757 | if (!frag) | |
758 | goto fail; | |
e6a9854b | 759 | |
e2454948 JB |
760 | /* Make sure that all fragments use the same priority so |
761 | * that they end up using the same TX queue */ | |
762 | frag->priority = first->priority; | |
e6a9854b | 763 | |
e2454948 JB |
764 | skb_reserve(frag, tx->local->tx_headroom + |
765 | IEEE80211_ENCRYPT_HEADROOM); | |
e6a9854b JB |
766 | |
767 | /* copy TX information */ | |
768 | info = IEEE80211_SKB_CB(frag); | |
769 | memcpy(info, first->cb, sizeof(frag->cb)); | |
770 | ||
771 | /* copy/fill in 802.11 header */ | |
e2454948 JB |
772 | fhdr = (struct ieee80211_hdr *) skb_put(frag, hdrlen); |
773 | memcpy(fhdr, first->data, hdrlen); | |
e2454948 | 774 | fhdr->seq_ctrl = cpu_to_le16(seq | ((i + 1) & IEEE80211_SCTL_FRAG)); |
e6a9854b JB |
775 | |
776 | if (i == num_fragm - 2) { | |
777 | /* clear MOREFRAGS bit for the last fragment */ | |
778 | fhdr->frame_control &= cpu_to_le16(~IEEE80211_FCTL_MOREFRAGS); | |
779 | } else { | |
780 | /* | |
781 | * No multi-rate retries for fragmented frames, that | |
782 | * would completely throw off the NAV at other STAs. | |
783 | */ | |
784 | info->control.rates[1].idx = -1; | |
785 | info->control.rates[2].idx = -1; | |
786 | info->control.rates[3].idx = -1; | |
787 | info->control.rates[4].idx = -1; | |
788 | BUILD_BUG_ON(IEEE80211_TX_MAX_RATES != 5); | |
789 | info->flags &= ~IEEE80211_TX_CTL_RATE_CTRL_PROBE; | |
790 | } | |
791 | ||
792 | /* copy data */ | |
e2454948 JB |
793 | copylen = left > per_fragm ? per_fragm : left; |
794 | memcpy(skb_put(frag, copylen), pos, copylen); | |
e6a9854b | 795 | |
03f93c3d | 796 | skb_copy_queue_mapping(frag, first); |
e6a9854b | 797 | |
d0f09804 | 798 | frag->do_not_encrypt = first->do_not_encrypt; |
055249d2 JM |
799 | frag->dev = first->dev; |
800 | frag->iif = first->iif; | |
e2454948 JB |
801 | |
802 | pos += copylen; | |
803 | left -= copylen; | |
e2ebc74d | 804 | } |
e2454948 JB |
805 | skb_trim(first, hdrlen + per_fragm); |
806 | ||
807 | tx->num_extra_frag = num_fragm - 1; | |
808 | tx->extra_frag = frags; | |
e2ebc74d | 809 | |
9ae54c84 | 810 | return TX_CONTINUE; |
e2454948 JB |
811 | |
812 | fail: | |
e2454948 JB |
813 | if (frags) { |
814 | for (i = 0; i < num_fragm - 1; i++) | |
815 | if (frags[i]) | |
816 | dev_kfree_skb(frags[i]); | |
817 | kfree(frags); | |
818 | } | |
819 | I802_DEBUG_INC(tx->local->tx_handlers_drop_fragment); | |
820 | return TX_DROP; | |
e2ebc74d JB |
821 | } |
822 | ||
d9e8a70f | 823 | static ieee80211_tx_result debug_noinline |
e2454948 JB |
824 | ieee80211_tx_h_encrypt(struct ieee80211_tx_data *tx) |
825 | { | |
826 | if (!tx->key) | |
827 | return TX_CONTINUE; | |
828 | ||
829 | switch (tx->key->conf.alg) { | |
830 | case ALG_WEP: | |
831 | return ieee80211_crypto_wep_encrypt(tx); | |
832 | case ALG_TKIP: | |
833 | return ieee80211_crypto_tkip_encrypt(tx); | |
834 | case ALG_CCMP: | |
835 | return ieee80211_crypto_ccmp_encrypt(tx); | |
3cfcf6ac JM |
836 | case ALG_AES_CMAC: |
837 | return ieee80211_crypto_aes_cmac_encrypt(tx); | |
e2454948 JB |
838 | } |
839 | ||
840 | /* not reached */ | |
841 | WARN_ON(1); | |
842 | return TX_DROP; | |
843 | } | |
844 | ||
d9e8a70f | 845 | static ieee80211_tx_result debug_noinline |
03f93c3d JB |
846 | ieee80211_tx_h_calculate_duration(struct ieee80211_tx_data *tx) |
847 | { | |
848 | struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)tx->skb->data; | |
849 | int next_len, i; | |
850 | int group_addr = is_multicast_ether_addr(hdr->addr1); | |
851 | ||
852 | if (!(tx->flags & IEEE80211_TX_FRAGMENTED)) { | |
853 | hdr->duration_id = ieee80211_duration(tx, group_addr, 0); | |
854 | return TX_CONTINUE; | |
855 | } | |
856 | ||
857 | hdr->duration_id = ieee80211_duration(tx, group_addr, | |
858 | tx->extra_frag[0]->len); | |
859 | ||
860 | for (i = 0; i < tx->num_extra_frag; i++) { | |
e6a9854b | 861 | if (i + 1 < tx->num_extra_frag) |
03f93c3d | 862 | next_len = tx->extra_frag[i + 1]->len; |
e6a9854b | 863 | else |
03f93c3d | 864 | next_len = 0; |
03f93c3d JB |
865 | |
866 | hdr = (struct ieee80211_hdr *)tx->extra_frag[i]->data; | |
867 | hdr->duration_id = ieee80211_duration(tx, 0, next_len); | |
868 | } | |
869 | ||
870 | return TX_CONTINUE; | |
871 | } | |
872 | ||
d9e8a70f | 873 | static ieee80211_tx_result debug_noinline |
e2454948 | 874 | ieee80211_tx_h_stats(struct ieee80211_tx_data *tx) |
e2ebc74d | 875 | { |
9e72ebd6 | 876 | int i; |
e2ebc74d | 877 | |
9e72ebd6 JB |
878 | if (!tx->sta) |
879 | return TX_CONTINUE; | |
e2ebc74d | 880 | |
9e72ebd6 JB |
881 | tx->sta->tx_packets++; |
882 | tx->sta->tx_fragments++; | |
883 | tx->sta->tx_bytes += tx->skb->len; | |
5cf121c3 | 884 | if (tx->extra_frag) { |
9e72ebd6 JB |
885 | tx->sta->tx_fragments += tx->num_extra_frag; |
886 | for (i = 0; i < tx->num_extra_frag; i++) | |
887 | tx->sta->tx_bytes += tx->extra_frag[i]->len; | |
e2454948 JB |
888 | } |
889 | ||
9ae54c84 | 890 | return TX_CONTINUE; |
e2ebc74d JB |
891 | } |
892 | ||
e2ebc74d JB |
893 | /* actual transmit path */ |
894 | ||
895 | /* | |
896 | * deal with packet injection down monitor interface | |
897 | * with Radiotap Header -- only called for monitor mode interface | |
898 | */ | |
9ae54c84 | 899 | static ieee80211_tx_result |
5cf121c3 | 900 | __ieee80211_parse_tx_radiotap(struct ieee80211_tx_data *tx, |
58d4185e | 901 | struct sk_buff *skb) |
e2ebc74d JB |
902 | { |
903 | /* | |
904 | * this is the moment to interpret and discard the radiotap header that | |
905 | * must be at the start of the packet injected in Monitor mode | |
906 | * | |
907 | * Need to take some care with endian-ness since radiotap | |
908 | * args are little-endian | |
909 | */ | |
910 | ||
911 | struct ieee80211_radiotap_iterator iterator; | |
912 | struct ieee80211_radiotap_header *rthdr = | |
913 | (struct ieee80211_radiotap_header *) skb->data; | |
8318d78a | 914 | struct ieee80211_supported_band *sband; |
e2ebc74d JB |
915 | int ret = ieee80211_radiotap_iterator_init(&iterator, rthdr, skb->len); |
916 | ||
2e92e6f2 | 917 | sband = tx->local->hw.wiphy->bands[tx->channel->band]; |
8318d78a | 918 | |
d0f09804 | 919 | skb->do_not_encrypt = 1; |
5cf121c3 | 920 | tx->flags &= ~IEEE80211_TX_FRAGMENTED; |
e2ebc74d JB |
921 | |
922 | /* | |
923 | * for every radiotap entry that is present | |
924 | * (ieee80211_radiotap_iterator_next returns -ENOENT when no more | |
925 | * entries present, or -EINVAL on error) | |
926 | */ | |
927 | ||
928 | while (!ret) { | |
e2ebc74d JB |
929 | ret = ieee80211_radiotap_iterator_next(&iterator); |
930 | ||
931 | if (ret) | |
932 | continue; | |
933 | ||
934 | /* see if this argument is something we can use */ | |
935 | switch (iterator.this_arg_index) { | |
936 | /* | |
937 | * You must take care when dereferencing iterator.this_arg | |
938 | * for multibyte types... the pointer is not aligned. Use | |
939 | * get_unaligned((type *)iterator.this_arg) to dereference | |
940 | * iterator.this_arg for type "type" safely on all arches. | |
941 | */ | |
e2ebc74d JB |
942 | case IEEE80211_RADIOTAP_FLAGS: |
943 | if (*iterator.this_arg & IEEE80211_RADIOTAP_F_FCS) { | |
944 | /* | |
945 | * this indicates that the skb we have been | |
946 | * handed has the 32-bit FCS CRC at the end... | |
947 | * we should react to that by snipping it off | |
948 | * because it will be recomputed and added | |
949 | * on transmission | |
950 | */ | |
951 | if (skb->len < (iterator.max_length + FCS_LEN)) | |
9ae54c84 | 952 | return TX_DROP; |
e2ebc74d JB |
953 | |
954 | skb_trim(skb, skb->len - FCS_LEN); | |
955 | } | |
58d4185e | 956 | if (*iterator.this_arg & IEEE80211_RADIOTAP_F_WEP) |
d0f09804 | 957 | tx->skb->do_not_encrypt = 0; |
58d4185e | 958 | if (*iterator.this_arg & IEEE80211_RADIOTAP_F_FRAG) |
5cf121c3 | 959 | tx->flags |= IEEE80211_TX_FRAGMENTED; |
e2ebc74d JB |
960 | break; |
961 | ||
58d4185e JB |
962 | /* |
963 | * Please update the file | |
964 | * Documentation/networking/mac80211-injection.txt | |
965 | * when parsing new fields here. | |
966 | */ | |
967 | ||
e2ebc74d JB |
968 | default: |
969 | break; | |
970 | } | |
971 | } | |
972 | ||
973 | if (ret != -ENOENT) /* ie, if we didn't simply run out of fields */ | |
9ae54c84 | 974 | return TX_DROP; |
e2ebc74d JB |
975 | |
976 | /* | |
977 | * remove the radiotap header | |
978 | * iterator->max_length was sanity-checked against | |
979 | * skb->len by iterator init | |
980 | */ | |
981 | skb_pull(skb, iterator.max_length); | |
982 | ||
9ae54c84 | 983 | return TX_CONTINUE; |
e2ebc74d JB |
984 | } |
985 | ||
58d4185e JB |
986 | /* |
987 | * initialises @tx | |
988 | */ | |
9ae54c84 | 989 | static ieee80211_tx_result |
5cf121c3 | 990 | __ieee80211_tx_prepare(struct ieee80211_tx_data *tx, |
e2ebc74d | 991 | struct sk_buff *skb, |
e039fa4a | 992 | struct net_device *dev) |
e2ebc74d JB |
993 | { |
994 | struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr); | |
58d4185e | 995 | struct ieee80211_hdr *hdr; |
e2ebc74d | 996 | struct ieee80211_sub_if_data *sdata; |
e039fa4a | 997 | struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb); |
e2ebc74d | 998 | |
8b30b1fe S |
999 | int hdrlen, tid; |
1000 | u8 *qc, *state; | |
e2ebc74d JB |
1001 | |
1002 | memset(tx, 0, sizeof(*tx)); | |
1003 | tx->skb = skb; | |
1004 | tx->dev = dev; /* use original interface */ | |
1005 | tx->local = local; | |
1006 | tx->sdata = IEEE80211_DEV_TO_SUB_IF(dev); | |
e039fa4a | 1007 | tx->channel = local->hw.conf.channel; |
e2ebc74d | 1008 | /* |
58d4185e JB |
1009 | * Set this flag (used below to indicate "automatic fragmentation"), |
1010 | * it will be cleared/left by radiotap as desired. | |
e2ebc74d | 1011 | */ |
5cf121c3 | 1012 | tx->flags |= IEEE80211_TX_FRAGMENTED; |
e2ebc74d JB |
1013 | |
1014 | /* process and remove the injection radiotap header */ | |
1015 | sdata = IEEE80211_DEV_TO_SUB_IF(dev); | |
25d834e1 | 1016 | if (unlikely(info->flags & IEEE80211_TX_CTL_INJECTED)) { |
9ae54c84 JB |
1017 | if (__ieee80211_parse_tx_radiotap(tx, skb) == TX_DROP) |
1018 | return TX_DROP; | |
58d4185e | 1019 | |
e2ebc74d | 1020 | /* |
58d4185e JB |
1021 | * __ieee80211_parse_tx_radiotap has now removed |
1022 | * the radiotap header that was present and pre-filled | |
1023 | * 'tx' with tx control information. | |
e2ebc74d | 1024 | */ |
e2ebc74d JB |
1025 | } |
1026 | ||
58d4185e JB |
1027 | hdr = (struct ieee80211_hdr *) skb->data; |
1028 | ||
24338793 | 1029 | tx->sta = sta_info_get(local, hdr->addr1); |
58d4185e | 1030 | |
8b30b1fe | 1031 | if (tx->sta && ieee80211_is_data_qos(hdr->frame_control)) { |
96f5e66e | 1032 | unsigned long flags; |
8b30b1fe S |
1033 | qc = ieee80211_get_qos_ctl(hdr); |
1034 | tid = *qc & IEEE80211_QOS_CTL_TID_MASK; | |
1035 | ||
96f5e66e | 1036 | spin_lock_irqsave(&tx->sta->lock, flags); |
8b30b1fe | 1037 | state = &tx->sta->ampdu_mlme.tid_state_tx[tid]; |
96f5e66e | 1038 | if (*state == HT_AGG_STATE_OPERATIONAL) { |
8b30b1fe | 1039 | info->flags |= IEEE80211_TX_CTL_AMPDU; |
96f5e66e JB |
1040 | if (local->hw.ampdu_queues) |
1041 | skb_set_queue_mapping( | |
1042 | skb, tx->local->hw.queues + | |
1043 | tx->sta->tid_to_tx_q[tid]); | |
1044 | } | |
1045 | spin_unlock_irqrestore(&tx->sta->lock, flags); | |
8b30b1fe S |
1046 | } |
1047 | ||
badffb72 | 1048 | if (is_multicast_ether_addr(hdr->addr1)) { |
5cf121c3 | 1049 | tx->flags &= ~IEEE80211_TX_UNICAST; |
e039fa4a | 1050 | info->flags |= IEEE80211_TX_CTL_NO_ACK; |
badffb72 | 1051 | } else { |
5cf121c3 | 1052 | tx->flags |= IEEE80211_TX_UNICAST; |
e039fa4a | 1053 | info->flags &= ~IEEE80211_TX_CTL_NO_ACK; |
badffb72 | 1054 | } |
58d4185e | 1055 | |
5cf121c3 JB |
1056 | if (tx->flags & IEEE80211_TX_FRAGMENTED) { |
1057 | if ((tx->flags & IEEE80211_TX_UNICAST) && | |
58d4185e | 1058 | skb->len + FCS_LEN > local->fragmentation_threshold && |
8d5e0d58 | 1059 | !(info->flags & IEEE80211_TX_CTL_AMPDU)) |
5cf121c3 | 1060 | tx->flags |= IEEE80211_TX_FRAGMENTED; |
58d4185e | 1061 | else |
5cf121c3 | 1062 | tx->flags &= ~IEEE80211_TX_FRAGMENTED; |
58d4185e JB |
1063 | } |
1064 | ||
e2ebc74d | 1065 | if (!tx->sta) |
e039fa4a | 1066 | info->flags |= IEEE80211_TX_CTL_CLEAR_PS_FILT; |
07346f81 | 1067 | else if (test_and_clear_sta_flags(tx->sta, WLAN_STA_CLEAR_PS_FILT)) |
e039fa4a | 1068 | info->flags |= IEEE80211_TX_CTL_CLEAR_PS_FILT; |
58d4185e | 1069 | |
b73d70ad | 1070 | hdrlen = ieee80211_hdrlen(hdr->frame_control); |
e2ebc74d JB |
1071 | if (skb->len > hdrlen + sizeof(rfc1042_header) + 2) { |
1072 | u8 *pos = &skb->data[hdrlen + sizeof(rfc1042_header)]; | |
1073 | tx->ethertype = (pos[0] << 8) | pos[1]; | |
1074 | } | |
e039fa4a | 1075 | info->flags |= IEEE80211_TX_CTL_FIRST_FRAGMENT; |
e2ebc74d | 1076 | |
9ae54c84 | 1077 | return TX_CONTINUE; |
e2ebc74d JB |
1078 | } |
1079 | ||
32bfd35d | 1080 | /* |
58d4185e JB |
1081 | * NB: @tx is uninitialised when passed in here |
1082 | */ | |
133b8226 JB |
1083 | static int ieee80211_tx_prepare(struct ieee80211_local *local, |
1084 | struct ieee80211_tx_data *tx, | |
1085 | struct sk_buff *skb) | |
e2ebc74d | 1086 | { |
e2ebc74d JB |
1087 | struct net_device *dev; |
1088 | ||
d0f09804 | 1089 | dev = dev_get_by_index(&init_net, skb->iif); |
133b8226 | 1090 | if (unlikely(dev && !is_ieee80211_device(local, dev))) { |
e2ebc74d JB |
1091 | dev_put(dev); |
1092 | dev = NULL; | |
1093 | } | |
1094 | if (unlikely(!dev)) | |
1095 | return -ENODEV; | |
58d4185e | 1096 | /* initialises tx with control */ |
e039fa4a | 1097 | __ieee80211_tx_prepare(tx, skb, dev); |
32bfd35d | 1098 | dev_put(dev); |
e2ebc74d JB |
1099 | return 0; |
1100 | } | |
1101 | ||
1102 | static int __ieee80211_tx(struct ieee80211_local *local, struct sk_buff *skb, | |
5cf121c3 | 1103 | struct ieee80211_tx_data *tx) |
e2ebc74d | 1104 | { |
f8e79ddd | 1105 | struct ieee80211_tx_info *info; |
e2ebc74d JB |
1106 | int ret, i; |
1107 | ||
e2ebc74d | 1108 | if (skb) { |
96f5e66e JB |
1109 | if (ieee80211_queue_stopped(&local->hw, |
1110 | skb_get_queue_mapping(skb))) | |
97d97b80 | 1111 | return IEEE80211_TX_PENDING; |
f8e79ddd | 1112 | |
e039fa4a | 1113 | ret = local->ops->tx(local_to_hw(local), skb); |
e2ebc74d JB |
1114 | if (ret) |
1115 | return IEEE80211_TX_AGAIN; | |
1116 | local->mdev->trans_start = jiffies; | |
1117 | ieee80211_led_tx(local, 1); | |
1118 | } | |
5cf121c3 | 1119 | if (tx->extra_frag) { |
5cf121c3 JB |
1120 | for (i = 0; i < tx->num_extra_frag; i++) { |
1121 | if (!tx->extra_frag[i]) | |
e2ebc74d | 1122 | continue; |
e039fa4a | 1123 | info = IEEE80211_SKB_CB(tx->extra_frag[i]); |
e6a9854b | 1124 | info->flags &= ~(IEEE80211_TX_CTL_CLEAR_PS_FILT | |
e039fa4a | 1125 | IEEE80211_TX_CTL_FIRST_FRAGMENT); |
96f5e66e JB |
1126 | if (ieee80211_queue_stopped(&local->hw, |
1127 | skb_get_queue_mapping(tx->extra_frag[i]))) | |
e2ebc74d | 1128 | return IEEE80211_TX_FRAG_AGAIN; |
e2ebc74d | 1129 | |
e2ebc74d | 1130 | ret = local->ops->tx(local_to_hw(local), |
e039fa4a | 1131 | tx->extra_frag[i]); |
e2ebc74d JB |
1132 | if (ret) |
1133 | return IEEE80211_TX_FRAG_AGAIN; | |
1134 | local->mdev->trans_start = jiffies; | |
1135 | ieee80211_led_tx(local, 1); | |
5cf121c3 | 1136 | tx->extra_frag[i] = NULL; |
e2ebc74d | 1137 | } |
5cf121c3 JB |
1138 | kfree(tx->extra_frag); |
1139 | tx->extra_frag = NULL; | |
e2ebc74d JB |
1140 | } |
1141 | return IEEE80211_TX_OK; | |
1142 | } | |
1143 | ||
97b045d6 JB |
1144 | /* |
1145 | * Invoke TX handlers, return 0 on success and non-zero if the | |
1146 | * frame was dropped or queued. | |
1147 | */ | |
1148 | static int invoke_tx_handlers(struct ieee80211_tx_data *tx) | |
1149 | { | |
97b045d6 | 1150 | struct sk_buff *skb = tx->skb; |
97b045d6 JB |
1151 | ieee80211_tx_result res = TX_DROP; |
1152 | int i; | |
1153 | ||
d9e8a70f JB |
1154 | #define CALL_TXH(txh) \ |
1155 | res = txh(tx); \ | |
1156 | if (res != TX_CONTINUE) \ | |
1157 | goto txh_done; | |
1158 | ||
1159 | CALL_TXH(ieee80211_tx_h_check_assoc) | |
d9e8a70f JB |
1160 | CALL_TXH(ieee80211_tx_h_ps_buf) |
1161 | CALL_TXH(ieee80211_tx_h_select_key) | |
1162 | CALL_TXH(ieee80211_tx_h_michael_mic_add) | |
1163 | CALL_TXH(ieee80211_tx_h_rate_ctrl) | |
1164 | CALL_TXH(ieee80211_tx_h_misc) | |
f591fa5d | 1165 | CALL_TXH(ieee80211_tx_h_sequence) |
d9e8a70f JB |
1166 | CALL_TXH(ieee80211_tx_h_fragment) |
1167 | /* handlers after fragment must be aware of tx info fragmentation! */ | |
1168 | CALL_TXH(ieee80211_tx_h_encrypt) | |
1169 | CALL_TXH(ieee80211_tx_h_calculate_duration) | |
1170 | CALL_TXH(ieee80211_tx_h_stats) | |
1171 | #undef CALL_TXH | |
97b045d6 | 1172 | |
d9e8a70f | 1173 | txh_done: |
97b045d6 | 1174 | if (unlikely(res == TX_DROP)) { |
5479d0e7 | 1175 | I802_DEBUG_INC(tx->local->tx_handlers_drop); |
97b045d6 JB |
1176 | dev_kfree_skb(skb); |
1177 | for (i = 0; i < tx->num_extra_frag; i++) | |
1178 | if (tx->extra_frag[i]) | |
1179 | dev_kfree_skb(tx->extra_frag[i]); | |
1180 | kfree(tx->extra_frag); | |
1181 | return -1; | |
1182 | } else if (unlikely(res == TX_QUEUED)) { | |
5479d0e7 | 1183 | I802_DEBUG_INC(tx->local->tx_handlers_queued); |
97b045d6 JB |
1184 | return -1; |
1185 | } | |
1186 | ||
1187 | return 0; | |
1188 | } | |
1189 | ||
e039fa4a | 1190 | static int ieee80211_tx(struct net_device *dev, struct sk_buff *skb) |
e2ebc74d JB |
1191 | { |
1192 | struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr); | |
1193 | struct sta_info *sta; | |
5cf121c3 | 1194 | struct ieee80211_tx_data tx; |
97b045d6 | 1195 | ieee80211_tx_result res_prepare; |
e039fa4a | 1196 | struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb); |
e2ebc74d | 1197 | int ret, i; |
e2530083 | 1198 | u16 queue; |
e2ebc74d | 1199 | |
e2530083 JB |
1200 | queue = skb_get_queue_mapping(skb); |
1201 | ||
1202 | WARN_ON(test_bit(queue, local->queues_pending)); | |
e2ebc74d JB |
1203 | |
1204 | if (unlikely(skb->len < 10)) { | |
1205 | dev_kfree_skb(skb); | |
1206 | return 0; | |
1207 | } | |
1208 | ||
d0709a65 JB |
1209 | rcu_read_lock(); |
1210 | ||
58d4185e | 1211 | /* initialises tx */ |
e039fa4a | 1212 | res_prepare = __ieee80211_tx_prepare(&tx, skb, dev); |
e2ebc74d | 1213 | |
9ae54c84 | 1214 | if (res_prepare == TX_DROP) { |
e2ebc74d | 1215 | dev_kfree_skb(skb); |
d0709a65 | 1216 | rcu_read_unlock(); |
e2ebc74d JB |
1217 | return 0; |
1218 | } | |
1219 | ||
1220 | sta = tx.sta; | |
5cf121c3 | 1221 | tx.channel = local->hw.conf.channel; |
e039fa4a | 1222 | info->band = tx.channel->band; |
e2ebc74d | 1223 | |
97b045d6 JB |
1224 | if (invoke_tx_handlers(&tx)) |
1225 | goto out; | |
e2ebc74d | 1226 | |
e2ebc74d JB |
1227 | retry: |
1228 | ret = __ieee80211_tx(local, skb, &tx); | |
1229 | if (ret) { | |
eefce91a JB |
1230 | struct ieee80211_tx_stored_packet *store; |
1231 | ||
1232 | /* | |
1233 | * Since there are no fragmented frames on A-MPDU | |
1234 | * queues, there's no reason for a driver to reject | |
1235 | * a frame there, warn and drop it. | |
1236 | */ | |
97d97b80 VN |
1237 | if (ret != IEEE80211_TX_PENDING) |
1238 | if (WARN_ON(info->flags & IEEE80211_TX_CTL_AMPDU)) | |
1239 | goto drop; | |
eefce91a JB |
1240 | |
1241 | store = &local->pending_packet[queue]; | |
e2ebc74d JB |
1242 | |
1243 | if (ret == IEEE80211_TX_FRAG_AGAIN) | |
1244 | skb = NULL; | |
f8e79ddd | 1245 | |
e2530083 | 1246 | set_bit(queue, local->queues_pending); |
e2ebc74d | 1247 | smp_mb(); |
e2530083 JB |
1248 | /* |
1249 | * When the driver gets out of buffers during sending of | |
1250 | * fragments and calls ieee80211_stop_queue, the netif | |
1251 | * subqueue is stopped. There is, however, a small window | |
1252 | * in which the PENDING bit is not yet set. If a buffer | |
e2ebc74d JB |
1253 | * gets available in that window (i.e. driver calls |
1254 | * ieee80211_wake_queue), we would end up with ieee80211_tx | |
e2530083 | 1255 | * called with the PENDING bit still set. Prevent this by |
e2ebc74d | 1256 | * continuing transmitting here when that situation is |
e2530083 JB |
1257 | * possible to have happened. |
1258 | */ | |
1259 | if (!__netif_subqueue_stopped(local->mdev, queue)) { | |
1260 | clear_bit(queue, local->queues_pending); | |
e2ebc74d JB |
1261 | goto retry; |
1262 | } | |
e2ebc74d | 1263 | store->skb = skb; |
5cf121c3 JB |
1264 | store->extra_frag = tx.extra_frag; |
1265 | store->num_extra_frag = tx.num_extra_frag; | |
e2ebc74d | 1266 | } |
97b045d6 | 1267 | out: |
d4e46a3d | 1268 | rcu_read_unlock(); |
e2ebc74d JB |
1269 | return 0; |
1270 | ||
1271 | drop: | |
1272 | if (skb) | |
1273 | dev_kfree_skb(skb); | |
5cf121c3 JB |
1274 | for (i = 0; i < tx.num_extra_frag; i++) |
1275 | if (tx.extra_frag[i]) | |
1276 | dev_kfree_skb(tx.extra_frag[i]); | |
1277 | kfree(tx.extra_frag); | |
d4e46a3d | 1278 | rcu_read_unlock(); |
e2ebc74d JB |
1279 | return 0; |
1280 | } | |
1281 | ||
1282 | /* device xmit handlers */ | |
1283 | ||
23c0752a JB |
1284 | static int ieee80211_skb_resize(struct ieee80211_local *local, |
1285 | struct sk_buff *skb, | |
1286 | int head_need, bool may_encrypt) | |
1287 | { | |
1288 | int tail_need = 0; | |
1289 | ||
1290 | /* | |
1291 | * This could be optimised, devices that do full hardware | |
1292 | * crypto (including TKIP MMIC) need no tailroom... But we | |
1293 | * have no drivers for such devices currently. | |
1294 | */ | |
1295 | if (may_encrypt) { | |
1296 | tail_need = IEEE80211_ENCRYPT_TAILROOM; | |
1297 | tail_need -= skb_tailroom(skb); | |
1298 | tail_need = max_t(int, tail_need, 0); | |
1299 | } | |
1300 | ||
1301 | if (head_need || tail_need) { | |
1302 | /* Sorry. Can't account for this any more */ | |
1303 | skb_orphan(skb); | |
1304 | } | |
1305 | ||
1306 | if (skb_header_cloned(skb)) | |
1307 | I802_DEBUG_INC(local->tx_expand_skb_head_cloned); | |
1308 | else | |
1309 | I802_DEBUG_INC(local->tx_expand_skb_head); | |
1310 | ||
1311 | if (pskb_expand_head(skb, head_need, tail_need, GFP_ATOMIC)) { | |
1312 | printk(KERN_DEBUG "%s: failed to reallocate TX buffer\n", | |
1313 | wiphy_name(local->hw.wiphy)); | |
1314 | return -ENOMEM; | |
1315 | } | |
1316 | ||
1317 | /* update truesize too */ | |
1318 | skb->truesize += head_need + tail_need; | |
1319 | ||
1320 | return 0; | |
1321 | } | |
1322 | ||
8ef9dad3 | 1323 | int ieee80211_master_start_xmit(struct sk_buff *skb, struct net_device *dev) |
e2ebc74d | 1324 | { |
133b8226 JB |
1325 | struct ieee80211_master_priv *mpriv = netdev_priv(dev); |
1326 | struct ieee80211_local *local = mpriv->local; | |
e039fa4a | 1327 | struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb); |
e32f85f7 | 1328 | struct ieee80211_hdr *hdr = (struct ieee80211_hdr *) skb->data; |
e2ebc74d JB |
1329 | struct net_device *odev = NULL; |
1330 | struct ieee80211_sub_if_data *osdata; | |
1331 | int headroom; | |
23c0752a | 1332 | bool may_encrypt; |
25d834e1 JB |
1333 | enum { |
1334 | NOT_MONITOR, | |
1335 | FOUND_SDATA, | |
1336 | UNKNOWN_ADDRESS, | |
1337 | } monitor_iface = NOT_MONITOR; | |
e2ebc74d JB |
1338 | int ret; |
1339 | ||
d0f09804 JB |
1340 | if (skb->iif) |
1341 | odev = dev_get_by_index(&init_net, skb->iif); | |
133b8226 | 1342 | if (unlikely(odev && !is_ieee80211_device(local, odev))) { |
e2ebc74d JB |
1343 | dev_put(odev); |
1344 | odev = NULL; | |
1345 | } | |
1346 | if (unlikely(!odev)) { | |
1347 | #ifdef CONFIG_MAC80211_VERBOSE_DEBUG | |
1348 | printk(KERN_DEBUG "%s: Discarded packet with nonexistent " | |
1349 | "originating device\n", dev->name); | |
1350 | #endif | |
1351 | dev_kfree_skb(skb); | |
1352 | return 0; | |
1353 | } | |
e039fa4a | 1354 | |
4be8c387 | 1355 | if ((local->hw.flags & IEEE80211_HW_PS_NULLFUNC_STACK) && |
46f2c4bd | 1356 | local->hw.conf.dynamic_ps_timeout > 0) { |
d063ed0f VN |
1357 | if (local->hw.conf.flags & IEEE80211_CONF_PS) { |
1358 | ieee80211_stop_queues_by_reason(&local->hw, | |
1359 | IEEE80211_QUEUE_STOP_REASON_PS); | |
1360 | queue_work(local->hw.workqueue, | |
1361 | &local->dynamic_ps_disable_work); | |
1362 | } | |
1363 | ||
1364 | mod_timer(&local->dynamic_ps_timer, jiffies + | |
46f2c4bd | 1365 | msecs_to_jiffies(local->hw.conf.dynamic_ps_timeout)); |
d063ed0f VN |
1366 | } |
1367 | ||
d0f09804 JB |
1368 | memset(info, 0, sizeof(*info)); |
1369 | ||
1370 | info->flags |= IEEE80211_TX_CTL_REQ_TX_STATUS; | |
1371 | ||
e2ebc74d JB |
1372 | osdata = IEEE80211_DEV_TO_SUB_IF(odev); |
1373 | ||
e32f85f7 LCC |
1374 | if (ieee80211_vif_is_mesh(&osdata->vif) && |
1375 | ieee80211_is_data(hdr->frame_control)) { | |
f74b6a54 RR |
1376 | if (is_multicast_ether_addr(hdr->addr3)) |
1377 | memcpy(hdr->addr1, hdr->addr3, ETH_ALEN); | |
1378 | else | |
5dc306f3 BC |
1379 | if (mesh_nexthop_lookup(skb, osdata)) { |
1380 | dev_put(odev); | |
1381 | return 0; | |
1382 | } | |
f74b6a54 RR |
1383 | if (memcmp(odev->dev_addr, hdr->addr4, ETH_ALEN) != 0) |
1384 | IEEE80211_IFSTA_MESH_CTR_INC(&osdata->u.mesh, | |
1385 | fwded_frames); | |
25d834e1 JB |
1386 | } else if (unlikely(osdata->vif.type == NL80211_IFTYPE_MONITOR)) { |
1387 | struct ieee80211_sub_if_data *sdata; | |
25d834e1 JB |
1388 | int hdrlen; |
1389 | u16 len_rthdr; | |
1390 | ||
1391 | info->flags |= IEEE80211_TX_CTL_INJECTED; | |
1392 | monitor_iface = UNKNOWN_ADDRESS; | |
1393 | ||
1394 | len_rthdr = ieee80211_get_radiotap_len(skb->data); | |
1395 | hdr = (struct ieee80211_hdr *)skb->data + len_rthdr; | |
1396 | hdrlen = ieee80211_hdrlen(hdr->frame_control); | |
1397 | ||
1398 | /* check the header is complete in the frame */ | |
1399 | if (likely(skb->len >= len_rthdr + hdrlen)) { | |
1400 | /* | |
1401 | * We process outgoing injected frames that have a | |
1402 | * local address we handle as though they are our | |
1403 | * own frames. | |
1404 | * This code here isn't entirely correct, the local | |
1405 | * MAC address is not necessarily enough to find | |
1406 | * the interface to use; for that proper VLAN/WDS | |
1407 | * support we will need a different mechanism. | |
1408 | */ | |
1409 | ||
1410 | rcu_read_lock(); | |
1411 | list_for_each_entry_rcu(sdata, &local->interfaces, | |
1412 | list) { | |
1413 | if (!netif_running(sdata->dev)) | |
1414 | continue; | |
f1b33cb1 JB |
1415 | if (sdata->vif.type != NL80211_IFTYPE_AP) |
1416 | continue; | |
25d834e1 JB |
1417 | if (compare_ether_addr(sdata->dev->dev_addr, |
1418 | hdr->addr2)) { | |
1419 | dev_hold(sdata->dev); | |
1420 | dev_put(odev); | |
1421 | osdata = sdata; | |
1422 | odev = osdata->dev; | |
1423 | skb->iif = sdata->dev->ifindex; | |
1424 | monitor_iface = FOUND_SDATA; | |
1425 | break; | |
1426 | } | |
1427 | } | |
1428 | rcu_read_unlock(); | |
1429 | } | |
e32f85f7 LCC |
1430 | } |
1431 | ||
d0f09804 | 1432 | may_encrypt = !skb->do_not_encrypt; |
23c0752a JB |
1433 | |
1434 | headroom = osdata->local->tx_headroom; | |
1435 | if (may_encrypt) | |
1436 | headroom += IEEE80211_ENCRYPT_HEADROOM; | |
1437 | headroom -= skb_headroom(skb); | |
1438 | headroom = max_t(int, 0, headroom); | |
1439 | ||
1440 | if (ieee80211_skb_resize(osdata->local, skb, headroom, may_encrypt)) { | |
1441 | dev_kfree_skb(skb); | |
1442 | dev_put(odev); | |
1443 | return 0; | |
e2ebc74d JB |
1444 | } |
1445 | ||
30613070 JB |
1446 | if (osdata->vif.type == NL80211_IFTYPE_AP_VLAN) |
1447 | osdata = container_of(osdata->bss, | |
1448 | struct ieee80211_sub_if_data, | |
1449 | u.ap); | |
25d834e1 JB |
1450 | if (likely(monitor_iface != UNKNOWN_ADDRESS)) |
1451 | info->control.vif = &osdata->vif; | |
e039fa4a | 1452 | ret = ieee80211_tx(odev, skb); |
e2ebc74d JB |
1453 | dev_put(odev); |
1454 | ||
1455 | return ret; | |
1456 | } | |
1457 | ||
1458 | int ieee80211_monitor_start_xmit(struct sk_buff *skb, | |
1459 | struct net_device *dev) | |
1460 | { | |
1461 | struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr); | |
47f4d887 | 1462 | struct ieee80211_channel *chan = local->hw.conf.channel; |
e2ebc74d JB |
1463 | struct ieee80211_radiotap_header *prthdr = |
1464 | (struct ieee80211_radiotap_header *)skb->data; | |
9b8a74e3 | 1465 | u16 len_rthdr; |
e2ebc74d | 1466 | |
47f4d887 LR |
1467 | /* |
1468 | * Frame injection is not allowed if beaconing is not allowed | |
1469 | * or if we need radar detection. Beaconing is usually not allowed when | |
1470 | * the mode or operation (Adhoc, AP, Mesh) does not support DFS. | |
1471 | * Passive scan is also used in world regulatory domains where | |
1472 | * your country is not known and as such it should be treated as | |
1473 | * NO TX unless the channel is explicitly allowed in which case | |
1474 | * your current regulatory domain would not have the passive scan | |
1475 | * flag. | |
1476 | * | |
1477 | * Since AP mode uses monitor interfaces to inject/TX management | |
1478 | * frames we can make AP mode the exception to this rule once it | |
1479 | * supports radar detection as its implementation can deal with | |
1480 | * radar detection by itself. We can do that later by adding a | |
1481 | * monitor flag interfaces used for AP support. | |
1482 | */ | |
1483 | if ((chan->flags & (IEEE80211_CHAN_NO_IBSS | IEEE80211_CHAN_RADAR | | |
1484 | IEEE80211_CHAN_PASSIVE_SCAN))) | |
1485 | goto fail; | |
1486 | ||
9b8a74e3 AG |
1487 | /* check for not even having the fixed radiotap header part */ |
1488 | if (unlikely(skb->len < sizeof(struct ieee80211_radiotap_header))) | |
1489 | goto fail; /* too short to be possibly valid */ | |
1490 | ||
1491 | /* is it a header version we can trust to find length from? */ | |
1492 | if (unlikely(prthdr->it_version)) | |
1493 | goto fail; /* only version 0 is supported */ | |
1494 | ||
1495 | /* then there must be a radiotap header with a length we can use */ | |
1496 | len_rthdr = ieee80211_get_radiotap_len(skb->data); | |
1497 | ||
1498 | /* does the skb contain enough to deliver on the alleged length? */ | |
1499 | if (unlikely(skb->len < len_rthdr)) | |
1500 | goto fail; /* skb too short for claimed rt header extent */ | |
e2ebc74d JB |
1501 | |
1502 | skb->dev = local->mdev; | |
1503 | ||
9b8a74e3 | 1504 | /* needed because we set skb device to master */ |
d0f09804 | 1505 | skb->iif = dev->ifindex; |
9b8a74e3 | 1506 | |
d0f09804 JB |
1507 | /* sometimes we do encrypt injected frames, will be fixed |
1508 | * up in radiotap parser if not wanted */ | |
1509 | skb->do_not_encrypt = 0; | |
e2ebc74d | 1510 | |
e2ebc74d JB |
1511 | /* |
1512 | * fix up the pointers accounting for the radiotap | |
1513 | * header still being in there. We are being given | |
1514 | * a precooked IEEE80211 header so no need for | |
1515 | * normal processing | |
1516 | */ | |
9b8a74e3 | 1517 | skb_set_mac_header(skb, len_rthdr); |
e2ebc74d | 1518 | /* |
9b8a74e3 AG |
1519 | * these are just fixed to the end of the rt area since we |
1520 | * don't have any better information and at this point, nobody cares | |
e2ebc74d | 1521 | */ |
9b8a74e3 AG |
1522 | skb_set_network_header(skb, len_rthdr); |
1523 | skb_set_transport_header(skb, len_rthdr); | |
e2ebc74d | 1524 | |
9b8a74e3 AG |
1525 | /* pass the radiotap header up to the next stage intact */ |
1526 | dev_queue_xmit(skb); | |
e2ebc74d | 1527 | return NETDEV_TX_OK; |
9b8a74e3 AG |
1528 | |
1529 | fail: | |
1530 | dev_kfree_skb(skb); | |
1531 | return NETDEV_TX_OK; /* meaning, we dealt with the skb */ | |
e2ebc74d JB |
1532 | } |
1533 | ||
1534 | /** | |
1535 | * ieee80211_subif_start_xmit - netif start_xmit function for Ethernet-type | |
1536 | * subinterfaces (wlan#, WDS, and VLAN interfaces) | |
1537 | * @skb: packet to be sent | |
1538 | * @dev: incoming interface | |
1539 | * | |
1540 | * Returns: 0 on success (and frees skb in this case) or 1 on failure (skb will | |
1541 | * not be freed, and caller is responsible for either retrying later or freeing | |
1542 | * skb). | |
1543 | * | |
1544 | * This function takes in an Ethernet header and encapsulates it with suitable | |
1545 | * IEEE 802.11 header based on which interface the packet is coming in. The | |
1546 | * encapsulated packet will then be passed to master interface, wlan#.11, for | |
1547 | * transmission (through low-level driver). | |
1548 | */ | |
1549 | int ieee80211_subif_start_xmit(struct sk_buff *skb, | |
1550 | struct net_device *dev) | |
1551 | { | |
133b8226 JB |
1552 | struct ieee80211_sub_if_data *sdata = IEEE80211_DEV_TO_SUB_IF(dev); |
1553 | struct ieee80211_local *local = sdata->local; | |
e2ebc74d | 1554 | int ret = 1, head_need; |
065e9605 HH |
1555 | u16 ethertype, hdrlen, meshhdrlen = 0; |
1556 | __le16 fc; | |
e2ebc74d | 1557 | struct ieee80211_hdr hdr; |
33b64eb2 | 1558 | struct ieee80211s_hdr mesh_hdr; |
e2ebc74d JB |
1559 | const u8 *encaps_data; |
1560 | int encaps_len, skip_header_bytes; | |
e8bf9649 | 1561 | int nh_pos, h_pos; |
e2ebc74d | 1562 | struct sta_info *sta; |
ce3edf6d | 1563 | u32 sta_flags = 0; |
e2ebc74d | 1564 | |
e2ebc74d | 1565 | if (unlikely(skb->len < ETH_HLEN)) { |
e2ebc74d JB |
1566 | ret = 0; |
1567 | goto fail; | |
1568 | } | |
1569 | ||
1570 | nh_pos = skb_network_header(skb) - skb->data; | |
1571 | h_pos = skb_transport_header(skb) - skb->data; | |
1572 | ||
1573 | /* convert Ethernet header to proper 802.11 header (based on | |
1574 | * operation mode) */ | |
1575 | ethertype = (skb->data[12] << 8) | skb->data[13]; | |
065e9605 | 1576 | fc = cpu_to_le16(IEEE80211_FTYPE_DATA | IEEE80211_STYPE_DATA); |
e2ebc74d | 1577 | |
51fb61e7 | 1578 | switch (sdata->vif.type) { |
05c914fe JB |
1579 | case NL80211_IFTYPE_AP: |
1580 | case NL80211_IFTYPE_AP_VLAN: | |
065e9605 | 1581 | fc |= cpu_to_le16(IEEE80211_FCTL_FROMDS); |
e2ebc74d JB |
1582 | /* DA BSSID SA */ |
1583 | memcpy(hdr.addr1, skb->data, ETH_ALEN); | |
1584 | memcpy(hdr.addr2, dev->dev_addr, ETH_ALEN); | |
1585 | memcpy(hdr.addr3, skb->data + ETH_ALEN, ETH_ALEN); | |
1586 | hdrlen = 24; | |
cf966838 | 1587 | break; |
05c914fe | 1588 | case NL80211_IFTYPE_WDS: |
065e9605 | 1589 | fc |= cpu_to_le16(IEEE80211_FCTL_FROMDS | IEEE80211_FCTL_TODS); |
e2ebc74d JB |
1590 | /* RA TA DA SA */ |
1591 | memcpy(hdr.addr1, sdata->u.wds.remote_addr, ETH_ALEN); | |
1592 | memcpy(hdr.addr2, dev->dev_addr, ETH_ALEN); | |
1593 | memcpy(hdr.addr3, skb->data, ETH_ALEN); | |
1594 | memcpy(hdr.addr4, skb->data + ETH_ALEN, ETH_ALEN); | |
1595 | hdrlen = 30; | |
cf966838 | 1596 | break; |
33b64eb2 | 1597 | #ifdef CONFIG_MAC80211_MESH |
05c914fe | 1598 | case NL80211_IFTYPE_MESH_POINT: |
065e9605 | 1599 | fc |= cpu_to_le16(IEEE80211_FCTL_FROMDS | IEEE80211_FCTL_TODS); |
472dbc45 | 1600 | if (!sdata->u.mesh.mshcfg.dot11MeshTTL) { |
e32f85f7 | 1601 | /* Do not send frames with mesh_ttl == 0 */ |
472dbc45 | 1602 | sdata->u.mesh.mshstats.dropped_frames_ttl++; |
e32f85f7 LCC |
1603 | ret = 0; |
1604 | goto fail; | |
33b64eb2 | 1605 | } |
79617dee Y |
1606 | memset(&mesh_hdr, 0, sizeof(mesh_hdr)); |
1607 | ||
1608 | if (compare_ether_addr(dev->dev_addr, | |
1609 | skb->data + ETH_ALEN) == 0) { | |
1610 | /* RA TA DA SA */ | |
1611 | memset(hdr.addr1, 0, ETH_ALEN); | |
1612 | memcpy(hdr.addr2, dev->dev_addr, ETH_ALEN); | |
1613 | memcpy(hdr.addr3, skb->data, ETH_ALEN); | |
1614 | memcpy(hdr.addr4, skb->data + ETH_ALEN, ETH_ALEN); | |
1615 | meshhdrlen = ieee80211_new_mesh_header(&mesh_hdr, sdata); | |
1616 | } else { | |
1617 | /* packet from other interface */ | |
1618 | struct mesh_path *mppath; | |
1619 | ||
1620 | memset(hdr.addr1, 0, ETH_ALEN); | |
1621 | memcpy(hdr.addr2, dev->dev_addr, ETH_ALEN); | |
1622 | memcpy(hdr.addr4, dev->dev_addr, ETH_ALEN); | |
1623 | ||
1624 | if (is_multicast_ether_addr(skb->data)) | |
1625 | memcpy(hdr.addr3, skb->data, ETH_ALEN); | |
1626 | else { | |
1627 | rcu_read_lock(); | |
1628 | mppath = mpp_path_lookup(skb->data, sdata); | |
1629 | if (mppath) | |
1630 | memcpy(hdr.addr3, mppath->mpp, ETH_ALEN); | |
1631 | else | |
1632 | memset(hdr.addr3, 0xff, ETH_ALEN); | |
1633 | rcu_read_unlock(); | |
1634 | } | |
1635 | ||
1636 | mesh_hdr.flags |= MESH_FLAGS_AE_A5_A6; | |
1637 | mesh_hdr.ttl = sdata->u.mesh.mshcfg.dot11MeshTTL; | |
1638 | put_unaligned(cpu_to_le32(sdata->u.mesh.mesh_seqnum), &mesh_hdr.seqnum); | |
1639 | memcpy(mesh_hdr.eaddr1, skb->data, ETH_ALEN); | |
1640 | memcpy(mesh_hdr.eaddr2, skb->data + ETH_ALEN, ETH_ALEN); | |
1641 | sdata->u.mesh.mesh_seqnum++; | |
1642 | meshhdrlen = 18; | |
1643 | } | |
33b64eb2 LCC |
1644 | hdrlen = 30; |
1645 | break; | |
1646 | #endif | |
05c914fe | 1647 | case NL80211_IFTYPE_STATION: |
065e9605 | 1648 | fc |= cpu_to_le16(IEEE80211_FCTL_TODS); |
e2ebc74d | 1649 | /* BSSID SA DA */ |
46900298 | 1650 | memcpy(hdr.addr1, sdata->u.mgd.bssid, ETH_ALEN); |
e2ebc74d JB |
1651 | memcpy(hdr.addr2, skb->data + ETH_ALEN, ETH_ALEN); |
1652 | memcpy(hdr.addr3, skb->data, ETH_ALEN); | |
1653 | hdrlen = 24; | |
cf966838 | 1654 | break; |
05c914fe | 1655 | case NL80211_IFTYPE_ADHOC: |
e2ebc74d JB |
1656 | /* DA SA BSSID */ |
1657 | memcpy(hdr.addr1, skb->data, ETH_ALEN); | |
1658 | memcpy(hdr.addr2, skb->data + ETH_ALEN, ETH_ALEN); | |
46900298 | 1659 | memcpy(hdr.addr3, sdata->u.ibss.bssid, ETH_ALEN); |
e2ebc74d | 1660 | hdrlen = 24; |
cf966838 JB |
1661 | break; |
1662 | default: | |
e2ebc74d JB |
1663 | ret = 0; |
1664 | goto fail; | |
1665 | } | |
1666 | ||
7d185b8b JB |
1667 | /* |
1668 | * There's no need to try to look up the destination | |
1669 | * if it is a multicast address (which can only happen | |
1670 | * in AP mode) | |
1671 | */ | |
1672 | if (!is_multicast_ether_addr(hdr.addr1)) { | |
d0709a65 | 1673 | rcu_read_lock(); |
7d185b8b | 1674 | sta = sta_info_get(local, hdr.addr1); |
d0709a65 | 1675 | if (sta) |
07346f81 | 1676 | sta_flags = get_sta_flags(sta); |
d0709a65 | 1677 | rcu_read_unlock(); |
e2ebc74d JB |
1678 | } |
1679 | ||
3434fbd3 | 1680 | /* receiver and we are QoS enabled, use a QoS type frame */ |
176be728 | 1681 | if ((sta_flags & WLAN_STA_WME) && local->hw.queues >= 4) { |
065e9605 | 1682 | fc |= cpu_to_le16(IEEE80211_STYPE_QOS_DATA); |
ce3edf6d JB |
1683 | hdrlen += 2; |
1684 | } | |
1685 | ||
1686 | /* | |
238814fd JB |
1687 | * Drop unicast frames to unauthorised stations unless they are |
1688 | * EAPOL frames from the local station. | |
ce3edf6d | 1689 | */ |
e32f85f7 LCC |
1690 | if (!ieee80211_vif_is_mesh(&sdata->vif) && |
1691 | unlikely(!is_multicast_ether_addr(hdr.addr1) && | |
33b64eb2 LCC |
1692 | !(sta_flags & WLAN_STA_AUTHORIZED) && |
1693 | !(ethertype == ETH_P_PAE && | |
ce3edf6d JB |
1694 | compare_ether_addr(dev->dev_addr, |
1695 | skb->data + ETH_ALEN) == 0))) { | |
1696 | #ifdef CONFIG_MAC80211_VERBOSE_DEBUG | |
ce3edf6d | 1697 | if (net_ratelimit()) |
0c68ae26 | 1698 | printk(KERN_DEBUG "%s: dropped frame to %pM" |
ce3edf6d | 1699 | " (unauthorized port)\n", dev->name, |
0c68ae26 | 1700 | hdr.addr1); |
ce3edf6d JB |
1701 | #endif |
1702 | ||
1703 | I802_DEBUG_INC(local->tx_handlers_drop_unauth_port); | |
1704 | ||
1705 | ret = 0; | |
1706 | goto fail; | |
1707 | } | |
1708 | ||
065e9605 | 1709 | hdr.frame_control = fc; |
e2ebc74d JB |
1710 | hdr.duration_id = 0; |
1711 | hdr.seq_ctrl = 0; | |
1712 | ||
1713 | skip_header_bytes = ETH_HLEN; | |
1714 | if (ethertype == ETH_P_AARP || ethertype == ETH_P_IPX) { | |
1715 | encaps_data = bridge_tunnel_header; | |
1716 | encaps_len = sizeof(bridge_tunnel_header); | |
1717 | skip_header_bytes -= 2; | |
1718 | } else if (ethertype >= 0x600) { | |
1719 | encaps_data = rfc1042_header; | |
1720 | encaps_len = sizeof(rfc1042_header); | |
1721 | skip_header_bytes -= 2; | |
1722 | } else { | |
1723 | encaps_data = NULL; | |
1724 | encaps_len = 0; | |
1725 | } | |
1726 | ||
1727 | skb_pull(skb, skip_header_bytes); | |
1728 | nh_pos -= skip_header_bytes; | |
1729 | h_pos -= skip_header_bytes; | |
1730 | ||
23c0752a | 1731 | head_need = hdrlen + encaps_len + meshhdrlen - skb_headroom(skb); |
e2ebc74d | 1732 | |
23c0752a JB |
1733 | /* |
1734 | * So we need to modify the skb header and hence need a copy of | |
1735 | * that. The head_need variable above doesn't, so far, include | |
1736 | * the needed header space that we don't need right away. If we | |
1737 | * can, then we don't reallocate right now but only after the | |
1738 | * frame arrives at the master device (if it does...) | |
1739 | * | |
1740 | * If we cannot, however, then we will reallocate to include all | |
1741 | * the ever needed space. Also, if we need to reallocate it anyway, | |
1742 | * make it big enough for everything we may ever need. | |
1743 | */ | |
e2ebc74d | 1744 | |
3a5be7d4 | 1745 | if (head_need > 0 || skb_cloned(skb)) { |
23c0752a JB |
1746 | head_need += IEEE80211_ENCRYPT_HEADROOM; |
1747 | head_need += local->tx_headroom; | |
1748 | head_need = max_t(int, 0, head_need); | |
1749 | if (ieee80211_skb_resize(local, skb, head_need, true)) | |
e2ebc74d | 1750 | goto fail; |
e2ebc74d JB |
1751 | } |
1752 | ||
1753 | if (encaps_data) { | |
1754 | memcpy(skb_push(skb, encaps_len), encaps_data, encaps_len); | |
1755 | nh_pos += encaps_len; | |
1756 | h_pos += encaps_len; | |
1757 | } | |
c29b9b9b | 1758 | |
33b64eb2 LCC |
1759 | if (meshhdrlen > 0) { |
1760 | memcpy(skb_push(skb, meshhdrlen), &mesh_hdr, meshhdrlen); | |
1761 | nh_pos += meshhdrlen; | |
1762 | h_pos += meshhdrlen; | |
1763 | } | |
1764 | ||
065e9605 | 1765 | if (ieee80211_is_data_qos(fc)) { |
c29b9b9b JB |
1766 | __le16 *qos_control; |
1767 | ||
1768 | qos_control = (__le16*) skb_push(skb, 2); | |
1769 | memcpy(skb_push(skb, hdrlen - 2), &hdr, hdrlen - 2); | |
1770 | /* | |
1771 | * Maybe we could actually set some fields here, for now just | |
1772 | * initialise to zero to indicate no special operation. | |
1773 | */ | |
1774 | *qos_control = 0; | |
1775 | } else | |
1776 | memcpy(skb_push(skb, hdrlen), &hdr, hdrlen); | |
1777 | ||
e2ebc74d JB |
1778 | nh_pos += hdrlen; |
1779 | h_pos += hdrlen; | |
1780 | ||
d0f09804 | 1781 | skb->iif = dev->ifindex; |
b0a67179 | 1782 | |
e2ebc74d | 1783 | skb->dev = local->mdev; |
68aae116 SH |
1784 | dev->stats.tx_packets++; |
1785 | dev->stats.tx_bytes += skb->len; | |
e2ebc74d JB |
1786 | |
1787 | /* Update skb pointers to various headers since this modified frame | |
1788 | * is going to go through Linux networking code that may potentially | |
1789 | * need things like pointer to IP header. */ | |
1790 | skb_set_mac_header(skb, 0); | |
1791 | skb_set_network_header(skb, nh_pos); | |
1792 | skb_set_transport_header(skb, h_pos); | |
1793 | ||
1794 | dev->trans_start = jiffies; | |
1795 | dev_queue_xmit(skb); | |
1796 | ||
1797 | return 0; | |
1798 | ||
1799 | fail: | |
1800 | if (!ret) | |
1801 | dev_kfree_skb(skb); | |
1802 | ||
1803 | return ret; | |
1804 | } | |
1805 | ||
e2ebc74d | 1806 | |
e2530083 JB |
1807 | /* |
1808 | * ieee80211_clear_tx_pending may not be called in a context where | |
1809 | * it is possible that it packets could come in again. | |
1810 | */ | |
e2ebc74d JB |
1811 | void ieee80211_clear_tx_pending(struct ieee80211_local *local) |
1812 | { | |
1813 | int i, j; | |
1814 | struct ieee80211_tx_stored_packet *store; | |
1815 | ||
176be728 | 1816 | for (i = 0; i < local->hw.queues; i++) { |
e2530083 | 1817 | if (!test_bit(i, local->queues_pending)) |
e2ebc74d JB |
1818 | continue; |
1819 | store = &local->pending_packet[i]; | |
1820 | kfree_skb(store->skb); | |
1821 | for (j = 0; j < store->num_extra_frag; j++) | |
1822 | kfree_skb(store->extra_frag[j]); | |
1823 | kfree(store->extra_frag); | |
e2530083 | 1824 | clear_bit(i, local->queues_pending); |
e2ebc74d JB |
1825 | } |
1826 | } | |
1827 | ||
e2530083 JB |
1828 | /* |
1829 | * Transmit all pending packets. Called from tasklet, locks master device | |
1830 | * TX lock so that no new packets can come in. | |
1831 | */ | |
e2ebc74d JB |
1832 | void ieee80211_tx_pending(unsigned long data) |
1833 | { | |
1834 | struct ieee80211_local *local = (struct ieee80211_local *)data; | |
1835 | struct net_device *dev = local->mdev; | |
1836 | struct ieee80211_tx_stored_packet *store; | |
5cf121c3 | 1837 | struct ieee80211_tx_data tx; |
e2530083 | 1838 | int i, ret; |
e2ebc74d JB |
1839 | |
1840 | netif_tx_lock_bh(dev); | |
176be728 | 1841 | for (i = 0; i < local->hw.queues; i++) { |
e2530083 | 1842 | /* Check that this queue is ok */ |
f8e79ddd TW |
1843 | if (__netif_subqueue_stopped(local->mdev, i) && |
1844 | !test_bit(i, local->queues_pending_run)) | |
e2ebc74d | 1845 | continue; |
e2530083 JB |
1846 | |
1847 | if (!test_bit(i, local->queues_pending)) { | |
f8e79ddd | 1848 | clear_bit(i, local->queues_pending_run); |
e2530083 | 1849 | ieee80211_wake_queue(&local->hw, i); |
e2ebc74d JB |
1850 | continue; |
1851 | } | |
e2530083 | 1852 | |
f8e79ddd TW |
1853 | clear_bit(i, local->queues_pending_run); |
1854 | netif_start_subqueue(local->mdev, i); | |
1855 | ||
e2ebc74d | 1856 | store = &local->pending_packet[i]; |
5cf121c3 JB |
1857 | tx.extra_frag = store->extra_frag; |
1858 | tx.num_extra_frag = store->num_extra_frag; | |
badffb72 | 1859 | tx.flags = 0; |
e2ebc74d JB |
1860 | ret = __ieee80211_tx(local, store->skb, &tx); |
1861 | if (ret) { | |
1862 | if (ret == IEEE80211_TX_FRAG_AGAIN) | |
1863 | store->skb = NULL; | |
1864 | } else { | |
e2530083 JB |
1865 | clear_bit(i, local->queues_pending); |
1866 | ieee80211_wake_queue(&local->hw, i); | |
e2ebc74d JB |
1867 | } |
1868 | } | |
1869 | netif_tx_unlock_bh(dev); | |
e2ebc74d JB |
1870 | } |
1871 | ||
1872 | /* functions for drivers to get certain frames */ | |
1873 | ||
8e7be8da | 1874 | static void ieee80211_beacon_add_tim(struct ieee80211_if_ap *bss, |
5dfdaf58 JB |
1875 | struct sk_buff *skb, |
1876 | struct beacon_data *beacon) | |
e2ebc74d JB |
1877 | { |
1878 | u8 *pos, *tim; | |
1879 | int aid0 = 0; | |
1880 | int i, have_bits = 0, n1, n2; | |
1881 | ||
1882 | /* Generate bitmap for TIM only if there are any STAs in power save | |
1883 | * mode. */ | |
e2ebc74d JB |
1884 | if (atomic_read(&bss->num_sta_ps) > 0) |
1885 | /* in the hope that this is faster than | |
1886 | * checking byte-for-byte */ | |
1887 | have_bits = !bitmap_empty((unsigned long*)bss->tim, | |
1888 | IEEE80211_MAX_AID+1); | |
1889 | ||
1890 | if (bss->dtim_count == 0) | |
5dfdaf58 | 1891 | bss->dtim_count = beacon->dtim_period - 1; |
e2ebc74d JB |
1892 | else |
1893 | bss->dtim_count--; | |
1894 | ||
1895 | tim = pos = (u8 *) skb_put(skb, 6); | |
1896 | *pos++ = WLAN_EID_TIM; | |
1897 | *pos++ = 4; | |
1898 | *pos++ = bss->dtim_count; | |
5dfdaf58 | 1899 | *pos++ = beacon->dtim_period; |
e2ebc74d JB |
1900 | |
1901 | if (bss->dtim_count == 0 && !skb_queue_empty(&bss->ps_bc_buf)) | |
1902 | aid0 = 1; | |
1903 | ||
1904 | if (have_bits) { | |
1905 | /* Find largest even number N1 so that bits numbered 1 through | |
1906 | * (N1 x 8) - 1 in the bitmap are 0 and number N2 so that bits | |
1907 | * (N2 + 1) x 8 through 2007 are 0. */ | |
1908 | n1 = 0; | |
1909 | for (i = 0; i < IEEE80211_MAX_TIM_LEN; i++) { | |
1910 | if (bss->tim[i]) { | |
1911 | n1 = i & 0xfe; | |
1912 | break; | |
1913 | } | |
1914 | } | |
1915 | n2 = n1; | |
1916 | for (i = IEEE80211_MAX_TIM_LEN - 1; i >= n1; i--) { | |
1917 | if (bss->tim[i]) { | |
1918 | n2 = i; | |
1919 | break; | |
1920 | } | |
1921 | } | |
1922 | ||
1923 | /* Bitmap control */ | |
1924 | *pos++ = n1 | aid0; | |
1925 | /* Part Virt Bitmap */ | |
1926 | memcpy(pos, bss->tim + n1, n2 - n1 + 1); | |
1927 | ||
1928 | tim[1] = n2 - n1 + 4; | |
1929 | skb_put(skb, n2 - n1); | |
1930 | } else { | |
1931 | *pos++ = aid0; /* Bitmap control */ | |
1932 | *pos++ = 0; /* Part Virt Bitmap */ | |
1933 | } | |
e2ebc74d JB |
1934 | } |
1935 | ||
32bfd35d | 1936 | struct sk_buff *ieee80211_beacon_get(struct ieee80211_hw *hw, |
e039fa4a | 1937 | struct ieee80211_vif *vif) |
e2ebc74d JB |
1938 | { |
1939 | struct ieee80211_local *local = hw_to_local(hw); | |
9d139c81 | 1940 | struct sk_buff *skb = NULL; |
e039fa4a | 1941 | struct ieee80211_tx_info *info; |
e2ebc74d JB |
1942 | struct ieee80211_sub_if_data *sdata = NULL; |
1943 | struct ieee80211_if_ap *ap = NULL; | |
5dfdaf58 | 1944 | struct beacon_data *beacon; |
8318d78a | 1945 | struct ieee80211_supported_band *sband; |
2e92e6f2 | 1946 | enum ieee80211_band band = local->hw.conf.channel->band; |
8318d78a | 1947 | |
2e92e6f2 | 1948 | sband = local->hw.wiphy->bands[band]; |
5dfdaf58 JB |
1949 | |
1950 | rcu_read_lock(); | |
e2ebc74d | 1951 | |
32bfd35d | 1952 | sdata = vif_to_sdata(vif); |
e2ebc74d | 1953 | |
05c914fe | 1954 | if (sdata->vif.type == NL80211_IFTYPE_AP) { |
33b64eb2 LCC |
1955 | ap = &sdata->u.ap; |
1956 | beacon = rcu_dereference(ap->beacon); | |
902acc78 JB |
1957 | if (ap && beacon) { |
1958 | /* | |
1959 | * headroom, head length, | |
1960 | * tail length and maximum TIM length | |
1961 | */ | |
1962 | skb = dev_alloc_skb(local->tx_headroom + | |
1963 | beacon->head_len + | |
1964 | beacon->tail_len + 256); | |
1965 | if (!skb) | |
1966 | goto out; | |
33b64eb2 | 1967 | |
902acc78 JB |
1968 | skb_reserve(skb, local->tx_headroom); |
1969 | memcpy(skb_put(skb, beacon->head_len), beacon->head, | |
1970 | beacon->head_len); | |
33b64eb2 | 1971 | |
d0709a65 JB |
1972 | /* |
1973 | * Not very nice, but we want to allow the driver to call | |
1974 | * ieee80211_beacon_get() as a response to the set_tim() | |
1975 | * callback. That, however, is already invoked under the | |
1976 | * sta_lock to guarantee consistent and race-free update | |
1977 | * of the tim bitmap in mac80211 and the driver. | |
1978 | */ | |
1979 | if (local->tim_in_locked_section) { | |
8e7be8da | 1980 | ieee80211_beacon_add_tim(ap, skb, beacon); |
d0709a65 JB |
1981 | } else { |
1982 | unsigned long flags; | |
1983 | ||
1984 | spin_lock_irqsave(&local->sta_lock, flags); | |
8e7be8da | 1985 | ieee80211_beacon_add_tim(ap, skb, beacon); |
d0709a65 JB |
1986 | spin_unlock_irqrestore(&local->sta_lock, flags); |
1987 | } | |
33b64eb2 | 1988 | |
902acc78 JB |
1989 | if (beacon->tail) |
1990 | memcpy(skb_put(skb, beacon->tail_len), | |
1991 | beacon->tail, beacon->tail_len); | |
9d139c81 JB |
1992 | } else |
1993 | goto out; | |
05c914fe | 1994 | } else if (sdata->vif.type == NL80211_IFTYPE_ADHOC) { |
46900298 | 1995 | struct ieee80211_if_ibss *ifibss = &sdata->u.ibss; |
9d139c81 | 1996 | struct ieee80211_hdr *hdr; |
33b64eb2 | 1997 | |
46900298 | 1998 | if (!ifibss->probe_resp) |
9d139c81 JB |
1999 | goto out; |
2000 | ||
46900298 | 2001 | skb = skb_copy(ifibss->probe_resp, GFP_ATOMIC); |
9d139c81 JB |
2002 | if (!skb) |
2003 | goto out; | |
2004 | ||
2005 | hdr = (struct ieee80211_hdr *) skb->data; | |
e7827a70 HH |
2006 | hdr->frame_control = cpu_to_le16(IEEE80211_FTYPE_MGMT | |
2007 | IEEE80211_STYPE_BEACON); | |
9d139c81 | 2008 | |
902acc78 | 2009 | } else if (ieee80211_vif_is_mesh(&sdata->vif)) { |
472dbc45 JB |
2010 | struct ieee80211_mgmt *mgmt; |
2011 | u8 *pos; | |
2012 | ||
902acc78 JB |
2013 | /* headroom, head length, tail length and maximum TIM length */ |
2014 | skb = dev_alloc_skb(local->tx_headroom + 400); | |
2015 | if (!skb) | |
2016 | goto out; | |
2017 | ||
2018 | skb_reserve(skb, local->hw.extra_tx_headroom); | |
2019 | mgmt = (struct ieee80211_mgmt *) | |
2020 | skb_put(skb, 24 + sizeof(mgmt->u.beacon)); | |
2021 | memset(mgmt, 0, 24 + sizeof(mgmt->u.beacon)); | |
065e9605 HH |
2022 | mgmt->frame_control = |
2023 | cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_BEACON); | |
902acc78 JB |
2024 | memset(mgmt->da, 0xff, ETH_ALEN); |
2025 | memcpy(mgmt->sa, sdata->dev->dev_addr, ETH_ALEN); | |
2026 | /* BSSID is left zeroed, wildcard value */ | |
2027 | mgmt->u.beacon.beacon_int = | |
2028 | cpu_to_le16(local->hw.conf.beacon_int); | |
2029 | mgmt->u.beacon.capab_info = 0x0; /* 0x0 for MPs */ | |
2030 | ||
2031 | pos = skb_put(skb, 2); | |
2032 | *pos++ = WLAN_EID_SSID; | |
2033 | *pos++ = 0x0; | |
2034 | ||
f698d856 | 2035 | mesh_mgmt_ies_add(skb, sdata); |
9d139c81 JB |
2036 | } else { |
2037 | WARN_ON(1); | |
5dfdaf58 | 2038 | goto out; |
e2ebc74d JB |
2039 | } |
2040 | ||
e039fa4a JB |
2041 | info = IEEE80211_SKB_CB(skb); |
2042 | ||
d0f09804 JB |
2043 | skb->do_not_encrypt = 1; |
2044 | ||
e039fa4a | 2045 | info->band = band; |
e6a9854b JB |
2046 | /* |
2047 | * XXX: For now, always use the lowest rate | |
2048 | */ | |
2049 | info->control.rates[0].idx = 0; | |
2050 | info->control.rates[0].count = 1; | |
2051 | info->control.rates[1].idx = -1; | |
2052 | info->control.rates[2].idx = -1; | |
2053 | info->control.rates[3].idx = -1; | |
2054 | info->control.rates[4].idx = -1; | |
2055 | BUILD_BUG_ON(IEEE80211_TX_MAX_RATES != 5); | |
e039fa4a JB |
2056 | |
2057 | info->control.vif = vif; | |
f591fa5d JB |
2058 | |
2059 | info->flags |= IEEE80211_TX_CTL_NO_ACK; | |
f591fa5d JB |
2060 | info->flags |= IEEE80211_TX_CTL_CLEAR_PS_FILT; |
2061 | info->flags |= IEEE80211_TX_CTL_ASSIGN_SEQ; | |
e6a9854b | 2062 | out: |
5dfdaf58 | 2063 | rcu_read_unlock(); |
e2ebc74d JB |
2064 | return skb; |
2065 | } | |
2066 | EXPORT_SYMBOL(ieee80211_beacon_get); | |
2067 | ||
32bfd35d | 2068 | void ieee80211_rts_get(struct ieee80211_hw *hw, struct ieee80211_vif *vif, |
e2ebc74d | 2069 | const void *frame, size_t frame_len, |
e039fa4a | 2070 | const struct ieee80211_tx_info *frame_txctl, |
e2ebc74d JB |
2071 | struct ieee80211_rts *rts) |
2072 | { | |
2073 | const struct ieee80211_hdr *hdr = frame; | |
e2ebc74d | 2074 | |
065e9605 HH |
2075 | rts->frame_control = |
2076 | cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_RTS); | |
32bfd35d JB |
2077 | rts->duration = ieee80211_rts_duration(hw, vif, frame_len, |
2078 | frame_txctl); | |
e2ebc74d JB |
2079 | memcpy(rts->ra, hdr->addr1, sizeof(rts->ra)); |
2080 | memcpy(rts->ta, hdr->addr2, sizeof(rts->ta)); | |
2081 | } | |
2082 | EXPORT_SYMBOL(ieee80211_rts_get); | |
2083 | ||
32bfd35d | 2084 | void ieee80211_ctstoself_get(struct ieee80211_hw *hw, struct ieee80211_vif *vif, |
e2ebc74d | 2085 | const void *frame, size_t frame_len, |
e039fa4a | 2086 | const struct ieee80211_tx_info *frame_txctl, |
e2ebc74d JB |
2087 | struct ieee80211_cts *cts) |
2088 | { | |
2089 | const struct ieee80211_hdr *hdr = frame; | |
e2ebc74d | 2090 | |
065e9605 HH |
2091 | cts->frame_control = |
2092 | cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_CTS); | |
32bfd35d JB |
2093 | cts->duration = ieee80211_ctstoself_duration(hw, vif, |
2094 | frame_len, frame_txctl); | |
e2ebc74d JB |
2095 | memcpy(cts->ra, hdr->addr1, sizeof(cts->ra)); |
2096 | } | |
2097 | EXPORT_SYMBOL(ieee80211_ctstoself_get); | |
2098 | ||
2099 | struct sk_buff * | |
32bfd35d | 2100 | ieee80211_get_buffered_bc(struct ieee80211_hw *hw, |
e039fa4a | 2101 | struct ieee80211_vif *vif) |
e2ebc74d JB |
2102 | { |
2103 | struct ieee80211_local *local = hw_to_local(hw); | |
747cf5e9 | 2104 | struct sk_buff *skb = NULL; |
e2ebc74d | 2105 | struct sta_info *sta; |
5cf121c3 | 2106 | struct ieee80211_tx_data tx; |
e2ebc74d JB |
2107 | struct ieee80211_sub_if_data *sdata; |
2108 | struct ieee80211_if_ap *bss = NULL; | |
5dfdaf58 | 2109 | struct beacon_data *beacon; |
e039fa4a | 2110 | struct ieee80211_tx_info *info; |
e2ebc74d | 2111 | |
32bfd35d | 2112 | sdata = vif_to_sdata(vif); |
747cf5e9 | 2113 | bss = &sdata->u.ap; |
5dfdaf58 JB |
2114 | |
2115 | if (!bss) | |
e2ebc74d JB |
2116 | return NULL; |
2117 | ||
5dfdaf58 JB |
2118 | rcu_read_lock(); |
2119 | beacon = rcu_dereference(bss->beacon); | |
2120 | ||
05c914fe | 2121 | if (sdata->vif.type != NL80211_IFTYPE_AP || !beacon || !beacon->head) |
747cf5e9 | 2122 | goto out; |
5dfdaf58 | 2123 | |
e2ebc74d | 2124 | if (bss->dtim_count != 0) |
747cf5e9 | 2125 | goto out; /* send buffered bc/mc only after DTIM beacon */ |
e039fa4a | 2126 | |
e2ebc74d JB |
2127 | while (1) { |
2128 | skb = skb_dequeue(&bss->ps_bc_buf); | |
2129 | if (!skb) | |
747cf5e9 | 2130 | goto out; |
e2ebc74d JB |
2131 | local->total_ps_buffered--; |
2132 | ||
2133 | if (!skb_queue_empty(&bss->ps_bc_buf) && skb->len >= 2) { | |
2134 | struct ieee80211_hdr *hdr = | |
2135 | (struct ieee80211_hdr *) skb->data; | |
2136 | /* more buffered multicast/broadcast frames ==> set | |
2137 | * MoreData flag in IEEE 802.11 header to inform PS | |
2138 | * STAs */ | |
2139 | hdr->frame_control |= | |
2140 | cpu_to_le16(IEEE80211_FCTL_MOREDATA); | |
2141 | } | |
2142 | ||
133b8226 | 2143 | if (!ieee80211_tx_prepare(local, &tx, skb)) |
e2ebc74d JB |
2144 | break; |
2145 | dev_kfree_skb_any(skb); | |
2146 | } | |
e039fa4a JB |
2147 | |
2148 | info = IEEE80211_SKB_CB(skb); | |
2149 | ||
e2ebc74d | 2150 | sta = tx.sta; |
5cf121c3 JB |
2151 | tx.flags |= IEEE80211_TX_PS_BUFFERED; |
2152 | tx.channel = local->hw.conf.channel; | |
e039fa4a | 2153 | info->band = tx.channel->band; |
e2ebc74d | 2154 | |
97b045d6 | 2155 | if (invoke_tx_handlers(&tx)) |
e2ebc74d | 2156 | skb = NULL; |
97b045d6 | 2157 | out: |
d0709a65 | 2158 | rcu_read_unlock(); |
e2ebc74d JB |
2159 | |
2160 | return skb; | |
2161 | } | |
2162 | EXPORT_SYMBOL(ieee80211_get_buffered_bc); |