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1 /*
2 * Copyright 2002-2005, Instant802 Networks, Inc.
3 * Copyright 2005, Devicescape Software, Inc.
4 * Copyright 2006-2007 Jiri Benc <jbenc@suse.cz>
5 * Copyright 2007-2010 Johannes Berg <johannes@sipsolutions.net>
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 #ifndef IEEE80211_I_H
13 #define IEEE80211_I_H
14
15 #include <linux/kernel.h>
16 #include <linux/device.h>
17 #include <linux/if_ether.h>
18 #include <linux/interrupt.h>
19 #include <linux/list.h>
20 #include <linux/netdevice.h>
21 #include <linux/skbuff.h>
22 #include <linux/workqueue.h>
23 #include <linux/types.h>
24 #include <linux/spinlock.h>
25 #include <linux/etherdevice.h>
26 #include <linux/leds.h>
27 #include <linux/idr.h>
28 #include <net/ieee80211_radiotap.h>
29 #include <net/cfg80211.h>
30 #include <net/mac80211.h>
31 #include "key.h"
32 #include "sta_info.h"
33 #include "debug.h"
34
35 struct ieee80211_local;
36
37 /* Maximum number of broadcast/multicast frames to buffer when some of the
38 * associated stations are using power saving. */
39 #define AP_MAX_BC_BUFFER 128
40
41 /* Maximum number of frames buffered to all STAs, including multicast frames.
42 * Note: increasing this limit increases the potential memory requirement. Each
43 * frame can be up to about 2 kB long. */
44 #define TOTAL_MAX_TX_BUFFER 512
45
46 /* Required encryption head and tailroom */
47 #define IEEE80211_ENCRYPT_HEADROOM 8
48 #define IEEE80211_ENCRYPT_TAILROOM 18
49
50 /* IEEE 802.11 (Ch. 9.5 Defragmentation) requires support for concurrent
51 * reception of at least three fragmented frames. This limit can be increased
52 * by changing this define, at the cost of slower frame reassembly and
53 * increased memory use (about 2 kB of RAM per entry). */
54 #define IEEE80211_FRAGMENT_MAX 4
55
56 #define TU_TO_JIFFIES(x) (usecs_to_jiffies((x) * 1024))
57 #define TU_TO_EXP_TIME(x) (jiffies + TU_TO_JIFFIES(x))
58
59 /* power level hasn't been configured (or set to automatic) */
60 #define IEEE80211_UNSET_POWER_LEVEL INT_MIN
61
62 /*
63 * Some APs experience problems when working with U-APSD. Decrease the
64 * probability of that happening by using legacy mode for all ACs but VO.
65 * The AP that caused us trouble was a Cisco 4410N. It ignores our
66 * setting, and always treats non-VO ACs as legacy.
67 */
68 #define IEEE80211_DEFAULT_UAPSD_QUEUES \
69 IEEE80211_WMM_IE_STA_QOSINFO_AC_VO
70
71 #define IEEE80211_DEFAULT_MAX_SP_LEN \
72 IEEE80211_WMM_IE_STA_QOSINFO_SP_ALL
73
74 #define IEEE80211_DEAUTH_FRAME_LEN (24 /* hdr */ + 2 /* reason */)
75
76 struct ieee80211_fragment_entry {
77 unsigned long first_frag_time;
78 unsigned int seq;
79 unsigned int rx_queue;
80 unsigned int last_frag;
81 unsigned int extra_len;
82 struct sk_buff_head skb_list;
83 int ccmp; /* Whether fragments were encrypted with CCMP */
84 u8 last_pn[6]; /* PN of the last fragment if CCMP was used */
85 };
86
87
88 struct ieee80211_bss {
89 u32 device_ts_beacon, device_ts_presp;
90
91 bool wmm_used;
92 bool uapsd_supported;
93
94 #define IEEE80211_MAX_SUPP_RATES 32
95 u8 supp_rates[IEEE80211_MAX_SUPP_RATES];
96 size_t supp_rates_len;
97
98 /*
99 * During association, we save an ERP value from a probe response so
100 * that we can feed ERP info to the driver when handling the
101 * association completes. these fields probably won't be up-to-date
102 * otherwise, you probably don't want to use them.
103 */
104 bool has_erp_value;
105 u8 erp_value;
106
107 /* Keep track of the corruption of the last beacon/probe response. */
108 u8 corrupt_data;
109
110 /* Keep track of what bits of information we have valid info for. */
111 u8 valid_data;
112 };
113
114 /**
115 * enum ieee80211_corrupt_data_flags - BSS data corruption flags
116 * @IEEE80211_BSS_CORRUPT_BEACON: last beacon frame received was corrupted
117 * @IEEE80211_BSS_CORRUPT_PROBE_RESP: last probe response received was corrupted
118 *
119 * These are bss flags that are attached to a bss in the
120 * @corrupt_data field of &struct ieee80211_bss.
121 */
122 enum ieee80211_bss_corrupt_data_flags {
123 IEEE80211_BSS_CORRUPT_BEACON = BIT(0),
124 IEEE80211_BSS_CORRUPT_PROBE_RESP = BIT(1)
125 };
126
127 /**
128 * enum ieee80211_valid_data_flags - BSS valid data flags
129 * @IEEE80211_BSS_VALID_WMM: WMM/UAPSD data was gathered from non-corrupt IE
130 * @IEEE80211_BSS_VALID_RATES: Supported rates were gathered from non-corrupt IE
131 * @IEEE80211_BSS_VALID_ERP: ERP flag was gathered from non-corrupt IE
132 *
133 * These are bss flags that are attached to a bss in the
134 * @valid_data field of &struct ieee80211_bss. They show which parts
135 * of the data structure were recieved as a result of an un-corrupted
136 * beacon/probe response.
137 */
138 enum ieee80211_bss_valid_data_flags {
139 IEEE80211_BSS_VALID_WMM = BIT(1),
140 IEEE80211_BSS_VALID_RATES = BIT(2),
141 IEEE80211_BSS_VALID_ERP = BIT(3)
142 };
143
144 typedef unsigned __bitwise__ ieee80211_tx_result;
145 #define TX_CONTINUE ((__force ieee80211_tx_result) 0u)
146 #define TX_DROP ((__force ieee80211_tx_result) 1u)
147 #define TX_QUEUED ((__force ieee80211_tx_result) 2u)
148
149 #define IEEE80211_TX_UNICAST BIT(1)
150 #define IEEE80211_TX_PS_BUFFERED BIT(2)
151
152 struct ieee80211_tx_data {
153 struct sk_buff *skb;
154 struct sk_buff_head skbs;
155 struct ieee80211_local *local;
156 struct ieee80211_sub_if_data *sdata;
157 struct sta_info *sta;
158 struct ieee80211_key *key;
159
160 unsigned int flags;
161 };
162
163
164 typedef unsigned __bitwise__ ieee80211_rx_result;
165 #define RX_CONTINUE ((__force ieee80211_rx_result) 0u)
166 #define RX_DROP_UNUSABLE ((__force ieee80211_rx_result) 1u)
167 #define RX_DROP_MONITOR ((__force ieee80211_rx_result) 2u)
168 #define RX_QUEUED ((__force ieee80211_rx_result) 3u)
169
170 /**
171 * enum ieee80211_packet_rx_flags - packet RX flags
172 * @IEEE80211_RX_RA_MATCH: frame is destined to interface currently processed
173 * (incl. multicast frames)
174 * @IEEE80211_RX_FRAGMENTED: fragmented frame
175 * @IEEE80211_RX_AMSDU: a-MSDU packet
176 * @IEEE80211_RX_MALFORMED_ACTION_FRM: action frame is malformed
177 * @IEEE80211_RX_DEFERRED_RELEASE: frame was subjected to receive reordering
178 *
179 * These are per-frame flags that are attached to a frame in the
180 * @rx_flags field of &struct ieee80211_rx_status.
181 */
182 enum ieee80211_packet_rx_flags {
183 IEEE80211_RX_RA_MATCH = BIT(1),
184 IEEE80211_RX_FRAGMENTED = BIT(2),
185 IEEE80211_RX_AMSDU = BIT(3),
186 IEEE80211_RX_MALFORMED_ACTION_FRM = BIT(4),
187 IEEE80211_RX_DEFERRED_RELEASE = BIT(5),
188 };
189
190 /**
191 * enum ieee80211_rx_flags - RX data flags
192 *
193 * @IEEE80211_RX_CMNTR: received on cooked monitor already
194 * @IEEE80211_RX_BEACON_REPORTED: This frame was already reported
195 * to cfg80211_report_obss_beacon().
196 *
197 * These flags are used across handling multiple interfaces
198 * for a single frame.
199 */
200 enum ieee80211_rx_flags {
201 IEEE80211_RX_CMNTR = BIT(0),
202 IEEE80211_RX_BEACON_REPORTED = BIT(1),
203 };
204
205 struct ieee80211_rx_data {
206 struct sk_buff *skb;
207 struct ieee80211_local *local;
208 struct ieee80211_sub_if_data *sdata;
209 struct sta_info *sta;
210 struct ieee80211_key *key;
211
212 unsigned int flags;
213
214 /*
215 * Index into sequence numbers array, 0..16
216 * since the last (16) is used for non-QoS,
217 * will be 16 on non-QoS frames.
218 */
219 int seqno_idx;
220
221 /*
222 * Index into the security IV/PN arrays, 0..16
223 * since the last (16) is used for CCMP-encrypted
224 * management frames, will be set to 16 on mgmt
225 * frames and 0 on non-QoS frames.
226 */
227 int security_idx;
228
229 u32 tkip_iv32;
230 u16 tkip_iv16;
231 };
232
233 struct beacon_data {
234 u8 *head, *tail;
235 int head_len, tail_len;
236 struct rcu_head rcu_head;
237 };
238
239 struct probe_resp {
240 struct rcu_head rcu_head;
241 int len;
242 u8 data[0];
243 };
244
245 struct ps_data {
246 /* yes, this looks ugly, but guarantees that we can later use
247 * bitmap_empty :)
248 * NB: don't touch this bitmap, use sta_info_{set,clear}_tim_bit */
249 u8 tim[sizeof(unsigned long) * BITS_TO_LONGS(IEEE80211_MAX_AID + 1)];
250 struct sk_buff_head bc_buf;
251 atomic_t num_sta_ps; /* number of stations in PS mode */
252 int dtim_count;
253 bool dtim_bc_mc;
254 };
255
256 struct ieee80211_if_ap {
257 struct beacon_data __rcu *beacon;
258 struct probe_resp __rcu *probe_resp;
259
260 struct list_head vlans;
261
262 struct ps_data ps;
263 atomic_t num_mcast_sta; /* number of stations receiving multicast */
264 };
265
266 struct ieee80211_if_wds {
267 struct sta_info *sta;
268 u8 remote_addr[ETH_ALEN];
269 };
270
271 struct ieee80211_if_vlan {
272 struct list_head list;
273
274 /* used for all tx if the VLAN is configured to 4-addr mode */
275 struct sta_info __rcu *sta;
276 };
277
278 struct mesh_stats {
279 __u32 fwded_mcast; /* Mesh forwarded multicast frames */
280 __u32 fwded_unicast; /* Mesh forwarded unicast frames */
281 __u32 fwded_frames; /* Mesh total forwarded frames */
282 __u32 dropped_frames_ttl; /* Not transmitted since mesh_ttl == 0*/
283 __u32 dropped_frames_no_route; /* Not transmitted, no route found */
284 __u32 dropped_frames_congestion;/* Not forwarded due to congestion */
285 };
286
287 #define PREQ_Q_F_START 0x1
288 #define PREQ_Q_F_REFRESH 0x2
289 struct mesh_preq_queue {
290 struct list_head list;
291 u8 dst[ETH_ALEN];
292 u8 flags;
293 };
294
295 #if HZ/100 == 0
296 #define IEEE80211_ROC_MIN_LEFT 1
297 #else
298 #define IEEE80211_ROC_MIN_LEFT (HZ/100)
299 #endif
300
301 struct ieee80211_roc_work {
302 struct list_head list;
303 struct list_head dependents;
304
305 struct delayed_work work;
306
307 struct ieee80211_sub_if_data *sdata;
308
309 struct ieee80211_channel *chan;
310
311 bool started, abort, hw_begun, notified;
312
313 unsigned long hw_start_time;
314
315 u32 duration, req_duration;
316 struct sk_buff *frame;
317 u64 cookie, mgmt_tx_cookie;
318 enum ieee80211_roc_type type;
319 };
320
321 /* flags used in struct ieee80211_if_managed.flags */
322 enum ieee80211_sta_flags {
323 IEEE80211_STA_BEACON_POLL = BIT(0),
324 IEEE80211_STA_CONNECTION_POLL = BIT(1),
325 IEEE80211_STA_CONTROL_PORT = BIT(2),
326 IEEE80211_STA_DISABLE_HT = BIT(4),
327 IEEE80211_STA_CSA_RECEIVED = BIT(5),
328 IEEE80211_STA_MFP_ENABLED = BIT(6),
329 IEEE80211_STA_UAPSD_ENABLED = BIT(7),
330 IEEE80211_STA_NULLFUNC_ACKED = BIT(8),
331 IEEE80211_STA_RESET_SIGNAL_AVE = BIT(9),
332 IEEE80211_STA_DISABLE_40MHZ = BIT(10),
333 IEEE80211_STA_DISABLE_VHT = BIT(11),
334 IEEE80211_STA_DISABLE_80P80MHZ = BIT(12),
335 IEEE80211_STA_DISABLE_160MHZ = BIT(13),
336 };
337
338 struct ieee80211_mgd_auth_data {
339 struct cfg80211_bss *bss;
340 unsigned long timeout;
341 int tries;
342 u16 algorithm, expected_transaction;
343
344 u8 key[WLAN_KEY_LEN_WEP104];
345 u8 key_len, key_idx;
346 bool done;
347 bool timeout_started;
348
349 u16 sae_trans, sae_status;
350 size_t data_len;
351 u8 data[];
352 };
353
354 struct ieee80211_mgd_assoc_data {
355 struct cfg80211_bss *bss;
356 const u8 *supp_rates;
357
358 unsigned long timeout;
359 int tries;
360
361 u16 capability;
362 u8 prev_bssid[ETH_ALEN];
363 u8 ssid[IEEE80211_MAX_SSID_LEN];
364 u8 ssid_len;
365 u8 supp_rates_len;
366 bool wmm, uapsd;
367 bool have_beacon, need_beacon;
368 bool synced;
369 bool timeout_started;
370
371 u8 ap_ht_param;
372
373 struct ieee80211_vht_cap ap_vht_cap;
374
375 size_t ie_len;
376 u8 ie[];
377 };
378
379 struct ieee80211_if_managed {
380 struct timer_list timer;
381 struct timer_list conn_mon_timer;
382 struct timer_list bcn_mon_timer;
383 struct timer_list chswitch_timer;
384 struct work_struct monitor_work;
385 struct work_struct chswitch_work;
386 struct work_struct beacon_connection_loss_work;
387 struct work_struct csa_connection_drop_work;
388
389 unsigned long beacon_timeout;
390 unsigned long probe_timeout;
391 int probe_send_count;
392 bool nullfunc_failed;
393 bool connection_loss;
394
395 struct mutex mtx;
396 struct cfg80211_bss *associated;
397 struct ieee80211_mgd_auth_data *auth_data;
398 struct ieee80211_mgd_assoc_data *assoc_data;
399
400 u8 bssid[ETH_ALEN];
401
402 u16 aid;
403
404 bool powersave; /* powersave requested for this iface */
405 bool broken_ap; /* AP is broken -- turn off powersave */
406 u8 dtim_period;
407 enum ieee80211_smps_mode req_smps, /* requested smps mode */
408 driver_smps_mode; /* smps mode request */
409
410 struct work_struct request_smps_work;
411
412 unsigned int flags;
413
414 bool beacon_crc_valid;
415 u32 beacon_crc;
416
417 bool status_acked;
418 bool status_received;
419 __le16 status_fc;
420
421 enum {
422 IEEE80211_MFP_DISABLED,
423 IEEE80211_MFP_OPTIONAL,
424 IEEE80211_MFP_REQUIRED
425 } mfp; /* management frame protection */
426
427 /*
428 * Bitmask of enabled u-apsd queues,
429 * IEEE80211_WMM_IE_STA_QOSINFO_AC_BE & co. Needs a new association
430 * to take effect.
431 */
432 unsigned int uapsd_queues;
433
434 /*
435 * Maximum number of buffered frames AP can deliver during a
436 * service period, IEEE80211_WMM_IE_STA_QOSINFO_SP_ALL or similar.
437 * Needs a new association to take effect.
438 */
439 unsigned int uapsd_max_sp_len;
440
441 int wmm_last_param_set;
442
443 u8 use_4addr;
444
445 s16 p2p_noa_index;
446
447 /* Signal strength from the last Beacon frame in the current BSS. */
448 int last_beacon_signal;
449
450 /*
451 * Weighted average of the signal strength from Beacon frames in the
452 * current BSS. This is in units of 1/16 of the signal unit to maintain
453 * accuracy and to speed up calculations, i.e., the value need to be
454 * divided by 16 to get the actual value.
455 */
456 int ave_beacon_signal;
457
458 /*
459 * Number of Beacon frames used in ave_beacon_signal. This can be used
460 * to avoid generating less reliable cqm events that would be based
461 * only on couple of received frames.
462 */
463 unsigned int count_beacon_signal;
464
465 /*
466 * Last Beacon frame signal strength average (ave_beacon_signal / 16)
467 * that triggered a cqm event. 0 indicates that no event has been
468 * generated for the current association.
469 */
470 int last_cqm_event_signal;
471
472 /*
473 * State variables for keeping track of RSSI of the AP currently
474 * connected to and informing driver when RSSI has gone
475 * below/above a certain threshold.
476 */
477 int rssi_min_thold, rssi_max_thold;
478 int last_ave_beacon_signal;
479
480 struct ieee80211_ht_cap ht_capa; /* configured ht-cap over-rides */
481 struct ieee80211_ht_cap ht_capa_mask; /* Valid parts of ht_capa */
482 struct ieee80211_vht_cap vht_capa; /* configured VHT overrides */
483 struct ieee80211_vht_cap vht_capa_mask; /* Valid parts of vht_capa */
484 };
485
486 struct ieee80211_if_ibss {
487 struct timer_list timer;
488
489 struct mutex mtx;
490
491 unsigned long last_scan_completed;
492
493 u32 basic_rates;
494
495 bool fixed_bssid;
496 bool fixed_channel;
497 bool privacy;
498
499 bool control_port;
500 unsigned int auth_frame_registrations;
501
502 u8 bssid[ETH_ALEN] __aligned(2);
503 u8 ssid[IEEE80211_MAX_SSID_LEN];
504 u8 ssid_len, ie_len;
505 u8 *ie;
506 struct ieee80211_channel *channel;
507 enum nl80211_channel_type channel_type;
508
509 unsigned long ibss_join_req;
510 /* probe response/beacon for IBSS */
511 struct beacon_data __rcu *presp;
512
513 spinlock_t incomplete_lock;
514 struct list_head incomplete_stations;
515
516 enum {
517 IEEE80211_IBSS_MLME_SEARCH,
518 IEEE80211_IBSS_MLME_JOINED,
519 } state;
520 };
521
522 /**
523 * struct ieee80211_mesh_sync_ops - Extensible synchronization framework interface
524 *
525 * these declarations define the interface, which enables
526 * vendor-specific mesh synchronization
527 *
528 */
529 struct ieee802_11_elems;
530 struct ieee80211_mesh_sync_ops {
531 void (*rx_bcn_presp)(struct ieee80211_sub_if_data *sdata,
532 u16 stype,
533 struct ieee80211_mgmt *mgmt,
534 struct ieee802_11_elems *elems,
535 struct ieee80211_rx_status *rx_status);
536 void (*adjust_tbtt)(struct ieee80211_sub_if_data *sdata);
537 /* add other framework functions here */
538 };
539
540 struct ieee80211_if_mesh {
541 struct timer_list housekeeping_timer;
542 struct timer_list mesh_path_timer;
543 struct timer_list mesh_path_root_timer;
544
545 unsigned long wrkq_flags;
546
547 u8 mesh_id[IEEE80211_MAX_MESH_ID_LEN];
548 size_t mesh_id_len;
549 /* Active Path Selection Protocol Identifier */
550 u8 mesh_pp_id;
551 /* Active Path Selection Metric Identifier */
552 u8 mesh_pm_id;
553 /* Congestion Control Mode Identifier */
554 u8 mesh_cc_id;
555 /* Synchronization Protocol Identifier */
556 u8 mesh_sp_id;
557 /* Authentication Protocol Identifier */
558 u8 mesh_auth_id;
559 /* Local mesh Sequence Number */
560 u32 sn;
561 /* Last used PREQ ID */
562 u32 preq_id;
563 atomic_t mpaths;
564 /* Timestamp of last SN update */
565 unsigned long last_sn_update;
566 /* Time when it's ok to send next PERR */
567 unsigned long next_perr;
568 /* Timestamp of last PREQ sent */
569 unsigned long last_preq;
570 struct mesh_rmc *rmc;
571 spinlock_t mesh_preq_queue_lock;
572 struct mesh_preq_queue preq_queue;
573 int preq_queue_len;
574 struct mesh_stats mshstats;
575 struct mesh_config mshcfg;
576 atomic_t estab_plinks;
577 u32 mesh_seqnum;
578 bool accepting_plinks;
579 int num_gates;
580 struct beacon_data __rcu *beacon;
581 /* just protects beacon updates for now */
582 struct mutex mtx;
583 const u8 *ie;
584 u8 ie_len;
585 enum {
586 IEEE80211_MESH_SEC_NONE = 0x0,
587 IEEE80211_MESH_SEC_AUTHED = 0x1,
588 IEEE80211_MESH_SEC_SECURED = 0x2,
589 } security;
590 bool user_mpm;
591 /* Extensible Synchronization Framework */
592 const struct ieee80211_mesh_sync_ops *sync_ops;
593 s64 sync_offset_clockdrift_max;
594 spinlock_t sync_offset_lock;
595 bool adjusting_tbtt;
596 /* mesh power save */
597 enum nl80211_mesh_power_mode nonpeer_pm;
598 int ps_peers_light_sleep;
599 int ps_peers_deep_sleep;
600 struct ps_data ps;
601 };
602
603 #ifdef CONFIG_MAC80211_MESH
604 #define IEEE80211_IFSTA_MESH_CTR_INC(msh, name) \
605 do { (msh)->mshstats.name++; } while (0)
606 #else
607 #define IEEE80211_IFSTA_MESH_CTR_INC(msh, name) \
608 do { } while (0)
609 #endif
610
611 /**
612 * enum ieee80211_sub_if_data_flags - virtual interface flags
613 *
614 * @IEEE80211_SDATA_ALLMULTI: interface wants all multicast packets
615 * @IEEE80211_SDATA_PROMISC: interface is promisc
616 * @IEEE80211_SDATA_OPERATING_GMODE: operating in G-only mode
617 * @IEEE80211_SDATA_DONT_BRIDGE_PACKETS: bridge packets between
618 * associated stations and deliver multicast frames both
619 * back to wireless media and to the local net stack.
620 * @IEEE80211_SDATA_DISCONNECT_RESUME: Disconnect after resume.
621 * @IEEE80211_SDATA_IN_DRIVER: indicates interface was added to driver
622 */
623 enum ieee80211_sub_if_data_flags {
624 IEEE80211_SDATA_ALLMULTI = BIT(0),
625 IEEE80211_SDATA_PROMISC = BIT(1),
626 IEEE80211_SDATA_OPERATING_GMODE = BIT(2),
627 IEEE80211_SDATA_DONT_BRIDGE_PACKETS = BIT(3),
628 IEEE80211_SDATA_DISCONNECT_RESUME = BIT(4),
629 IEEE80211_SDATA_IN_DRIVER = BIT(5),
630 };
631
632 /**
633 * enum ieee80211_sdata_state_bits - virtual interface state bits
634 * @SDATA_STATE_RUNNING: virtual interface is up & running; this
635 * mirrors netif_running() but is separate for interface type
636 * change handling while the interface is up
637 * @SDATA_STATE_OFFCHANNEL: This interface is currently in offchannel
638 * mode, so queues are stopped
639 * @SDATA_STATE_OFFCHANNEL_BEACON_STOPPED: Beaconing was stopped due
640 * to offchannel, reset when offchannel returns
641 */
642 enum ieee80211_sdata_state_bits {
643 SDATA_STATE_RUNNING,
644 SDATA_STATE_OFFCHANNEL,
645 SDATA_STATE_OFFCHANNEL_BEACON_STOPPED,
646 };
647
648 /**
649 * enum ieee80211_chanctx_mode - channel context configuration mode
650 *
651 * @IEEE80211_CHANCTX_SHARED: channel context may be used by
652 * multiple interfaces
653 * @IEEE80211_CHANCTX_EXCLUSIVE: channel context can be used
654 * only by a single interface. This can be used for example for
655 * non-fixed channel IBSS.
656 */
657 enum ieee80211_chanctx_mode {
658 IEEE80211_CHANCTX_SHARED,
659 IEEE80211_CHANCTX_EXCLUSIVE
660 };
661
662 struct ieee80211_chanctx {
663 struct list_head list;
664 struct rcu_head rcu_head;
665
666 enum ieee80211_chanctx_mode mode;
667 int refcount;
668 bool driver_present;
669
670 struct ieee80211_chanctx_conf conf;
671 };
672
673 struct ieee80211_sub_if_data {
674 struct list_head list;
675
676 struct wireless_dev wdev;
677
678 /* keys */
679 struct list_head key_list;
680
681 /* count for keys needing tailroom space allocation */
682 int crypto_tx_tailroom_needed_cnt;
683 int crypto_tx_tailroom_pending_dec;
684 struct delayed_work dec_tailroom_needed_wk;
685
686 struct net_device *dev;
687 struct ieee80211_local *local;
688
689 unsigned int flags;
690
691 unsigned long state;
692
693 int drop_unencrypted;
694
695 char name[IFNAMSIZ];
696
697 /* Fragment table for host-based reassembly */
698 struct ieee80211_fragment_entry fragments[IEEE80211_FRAGMENT_MAX];
699 unsigned int fragment_next;
700
701 /* TID bitmap for NoAck policy */
702 u16 noack_map;
703
704 /* bit field of ACM bits (BIT(802.1D tag)) */
705 u8 wmm_acm;
706
707 struct ieee80211_key __rcu *keys[NUM_DEFAULT_KEYS + NUM_DEFAULT_MGMT_KEYS];
708 struct ieee80211_key __rcu *default_unicast_key;
709 struct ieee80211_key __rcu *default_multicast_key;
710 struct ieee80211_key __rcu *default_mgmt_key;
711
712 u16 sequence_number;
713 __be16 control_port_protocol;
714 bool control_port_no_encrypt;
715
716 struct ieee80211_tx_queue_params tx_conf[IEEE80211_NUM_ACS];
717
718 /* used to reconfigure hardware SM PS */
719 struct work_struct recalc_smps;
720
721 struct work_struct work;
722 struct sk_buff_head skb_queue;
723
724 u8 needed_rx_chains;
725 enum ieee80211_smps_mode smps_mode;
726
727 int user_power_level; /* in dBm */
728 int ap_power_level; /* in dBm */
729
730 bool radar_required;
731 struct delayed_work dfs_cac_timer_work;
732
733 /*
734 * AP this belongs to: self in AP mode and
735 * corresponding AP in VLAN mode, NULL for
736 * all others (might be needed later in IBSS)
737 */
738 struct ieee80211_if_ap *bss;
739
740 /* bitmap of allowed (non-MCS) rate indexes for rate control */
741 u32 rc_rateidx_mask[IEEE80211_NUM_BANDS];
742 u8 rc_rateidx_mcs_mask[IEEE80211_NUM_BANDS][IEEE80211_HT_MCS_MASK_LEN];
743
744 union {
745 struct ieee80211_if_ap ap;
746 struct ieee80211_if_wds wds;
747 struct ieee80211_if_vlan vlan;
748 struct ieee80211_if_managed mgd;
749 struct ieee80211_if_ibss ibss;
750 struct ieee80211_if_mesh mesh;
751 u32 mntr_flags;
752 } u;
753
754 spinlock_t cleanup_stations_lock;
755 struct list_head cleanup_stations;
756 struct work_struct cleanup_stations_wk;
757
758 #ifdef CONFIG_MAC80211_DEBUGFS
759 struct {
760 struct dentry *subdir_stations;
761 struct dentry *default_unicast_key;
762 struct dentry *default_multicast_key;
763 struct dentry *default_mgmt_key;
764 } debugfs;
765 #endif
766
767 /* must be last, dynamically sized area in this! */
768 struct ieee80211_vif vif;
769 };
770
771 static inline
772 struct ieee80211_sub_if_data *vif_to_sdata(struct ieee80211_vif *p)
773 {
774 return container_of(p, struct ieee80211_sub_if_data, vif);
775 }
776
777 static inline enum ieee80211_band
778 ieee80211_get_sdata_band(struct ieee80211_sub_if_data *sdata)
779 {
780 enum ieee80211_band band = IEEE80211_BAND_2GHZ;
781 struct ieee80211_chanctx_conf *chanctx_conf;
782
783 rcu_read_lock();
784 chanctx_conf = rcu_dereference(sdata->vif.chanctx_conf);
785 if (!WARN_ON(!chanctx_conf))
786 band = chanctx_conf->def.chan->band;
787 rcu_read_unlock();
788
789 return band;
790 }
791
792 enum sdata_queue_type {
793 IEEE80211_SDATA_QUEUE_TYPE_FRAME = 0,
794 IEEE80211_SDATA_QUEUE_AGG_START = 1,
795 IEEE80211_SDATA_QUEUE_AGG_STOP = 2,
796 };
797
798 enum {
799 IEEE80211_RX_MSG = 1,
800 IEEE80211_TX_STATUS_MSG = 2,
801 };
802
803 enum queue_stop_reason {
804 IEEE80211_QUEUE_STOP_REASON_DRIVER,
805 IEEE80211_QUEUE_STOP_REASON_PS,
806 IEEE80211_QUEUE_STOP_REASON_CSA,
807 IEEE80211_QUEUE_STOP_REASON_AGGREGATION,
808 IEEE80211_QUEUE_STOP_REASON_SUSPEND,
809 IEEE80211_QUEUE_STOP_REASON_SKB_ADD,
810 IEEE80211_QUEUE_STOP_REASON_OFFCHANNEL,
811 IEEE80211_QUEUE_STOP_REASON_FLUSH,
812 };
813
814 #ifdef CONFIG_MAC80211_LEDS
815 struct tpt_led_trigger {
816 struct led_trigger trig;
817 char name[32];
818 const struct ieee80211_tpt_blink *blink_table;
819 unsigned int blink_table_len;
820 struct timer_list timer;
821 unsigned long prev_traffic;
822 unsigned long tx_bytes, rx_bytes;
823 unsigned int active, want;
824 bool running;
825 };
826 #endif
827
828 /**
829 * mac80211 scan flags - currently active scan mode
830 *
831 * @SCAN_SW_SCANNING: We're currently in the process of scanning but may as
832 * well be on the operating channel
833 * @SCAN_HW_SCANNING: The hardware is scanning for us, we have no way to
834 * determine if we are on the operating channel or not
835 * @SCAN_ONCHANNEL_SCANNING: Do a software scan on only the current operating
836 * channel. This should not interrupt normal traffic.
837 * @SCAN_COMPLETED: Set for our scan work function when the driver reported
838 * that the scan completed.
839 * @SCAN_ABORTED: Set for our scan work function when the driver reported
840 * a scan complete for an aborted scan.
841 */
842 enum {
843 SCAN_SW_SCANNING,
844 SCAN_HW_SCANNING,
845 SCAN_ONCHANNEL_SCANNING,
846 SCAN_COMPLETED,
847 SCAN_ABORTED,
848 };
849
850 /**
851 * enum mac80211_scan_state - scan state machine states
852 *
853 * @SCAN_DECISION: Main entry point to the scan state machine, this state
854 * determines if we should keep on scanning or switch back to the
855 * operating channel
856 * @SCAN_SET_CHANNEL: Set the next channel to be scanned
857 * @SCAN_SEND_PROBE: Send probe requests and wait for probe responses
858 * @SCAN_SUSPEND: Suspend the scan and go back to operating channel to
859 * send out data
860 * @SCAN_RESUME: Resume the scan and scan the next channel
861 * @SCAN_ABORT: Abort the scan and go back to operating channel
862 */
863 enum mac80211_scan_state {
864 SCAN_DECISION,
865 SCAN_SET_CHANNEL,
866 SCAN_SEND_PROBE,
867 SCAN_SUSPEND,
868 SCAN_RESUME,
869 SCAN_ABORT,
870 };
871
872 struct ieee80211_local {
873 /* embed the driver visible part.
874 * don't cast (use the static inlines below), but we keep
875 * it first anyway so they become a no-op */
876 struct ieee80211_hw hw;
877
878 const struct ieee80211_ops *ops;
879
880 /*
881 * private workqueue to mac80211. mac80211 makes this accessible
882 * via ieee80211_queue_work()
883 */
884 struct workqueue_struct *workqueue;
885
886 unsigned long queue_stop_reasons[IEEE80211_MAX_QUEUES];
887 /* also used to protect ampdu_ac_queue and amdpu_ac_stop_refcnt */
888 spinlock_t queue_stop_reason_lock;
889
890 int open_count;
891 int monitors, cooked_mntrs;
892 /* number of interfaces with corresponding FIF_ flags */
893 int fif_fcsfail, fif_plcpfail, fif_control, fif_other_bss, fif_pspoll,
894 fif_probe_req;
895 int probe_req_reg;
896 unsigned int filter_flags; /* FIF_* */
897
898 bool wiphy_ciphers_allocated;
899
900 bool use_chanctx;
901
902 /* protects the aggregated multicast list and filter calls */
903 spinlock_t filter_lock;
904
905 /* used for uploading changed mc list */
906 struct work_struct reconfig_filter;
907
908 /* aggregated multicast list */
909 struct netdev_hw_addr_list mc_list;
910
911 bool tim_in_locked_section; /* see ieee80211_beacon_get() */
912
913 /*
914 * suspended is true if we finished all the suspend _and_ we have
915 * not yet come up from resume. This is to be used by mac80211
916 * to ensure driver sanity during suspend and mac80211's own
917 * sanity. It can eventually be used for WoW as well.
918 */
919 bool suspended;
920
921 /*
922 * Resuming is true while suspended, but when we're reprogramming the
923 * hardware -- at that time it's allowed to use ieee80211_queue_work()
924 * again even though some other parts of the stack are still suspended
925 * and we still drop received frames to avoid waking the stack.
926 */
927 bool resuming;
928
929 /*
930 * quiescing is true during the suspend process _only_ to
931 * ease timer cancelling etc.
932 */
933 bool quiescing;
934
935 /* device is started */
936 bool started;
937
938 /* device is during a HW reconfig */
939 bool in_reconfig;
940
941 /* wowlan is enabled -- don't reconfig on resume */
942 bool wowlan;
943
944 /* DFS/radar detection is enabled */
945 bool radar_detect_enabled;
946 struct work_struct radar_detected_work;
947
948 /* number of RX chains the hardware has */
949 u8 rx_chains;
950
951 int tx_headroom; /* required headroom for hardware/radiotap */
952
953 /* Tasklet and skb queue to process calls from IRQ mode. All frames
954 * added to skb_queue will be processed, but frames in
955 * skb_queue_unreliable may be dropped if the total length of these
956 * queues increases over the limit. */
957 #define IEEE80211_IRQSAFE_QUEUE_LIMIT 128
958 struct tasklet_struct tasklet;
959 struct sk_buff_head skb_queue;
960 struct sk_buff_head skb_queue_unreliable;
961
962 spinlock_t rx_path_lock;
963
964 /* Station data */
965 /*
966 * The mutex only protects the list, hash table and
967 * counter, reads are done with RCU.
968 */
969 struct mutex sta_mtx;
970 spinlock_t tim_lock;
971 unsigned long num_sta;
972 struct list_head sta_list;
973 struct sta_info __rcu *sta_hash[STA_HASH_SIZE];
974 struct timer_list sta_cleanup;
975 int sta_generation;
976
977 struct sk_buff_head pending[IEEE80211_MAX_QUEUES];
978 struct tasklet_struct tx_pending_tasklet;
979
980 atomic_t agg_queue_stop[IEEE80211_MAX_QUEUES];
981
982 /* number of interfaces with corresponding IFF_ flags */
983 atomic_t iff_allmultis, iff_promiscs;
984
985 struct rate_control_ref *rate_ctrl;
986
987 struct crypto_cipher *wep_tx_tfm;
988 struct crypto_cipher *wep_rx_tfm;
989 u32 wep_iv;
990
991 /* see iface.c */
992 struct list_head interfaces;
993 struct mutex iflist_mtx;
994
995 /*
996 * Key mutex, protects sdata's key_list and sta_info's
997 * key pointers (write access, they're RCU.)
998 */
999 struct mutex key_mtx;
1000
1001 /* mutex for scan and work locking */
1002 struct mutex mtx;
1003
1004 /* Scanning and BSS list */
1005 unsigned long scanning;
1006 struct cfg80211_ssid scan_ssid;
1007 struct cfg80211_scan_request *int_scan_req;
1008 struct cfg80211_scan_request *scan_req, *hw_scan_req;
1009 struct ieee80211_channel *scan_channel;
1010 enum ieee80211_band hw_scan_band;
1011 int scan_channel_idx;
1012 int scan_ies_len;
1013 int hw_scan_ies_bufsize;
1014
1015 struct work_struct sched_scan_stopped_work;
1016 struct ieee80211_sub_if_data __rcu *sched_scan_sdata;
1017
1018 unsigned long leave_oper_channel_time;
1019 enum mac80211_scan_state next_scan_state;
1020 struct delayed_work scan_work;
1021 struct ieee80211_sub_if_data __rcu *scan_sdata;
1022 struct ieee80211_channel *csa_channel;
1023 /* For backward compatibility only -- do not use */
1024 struct cfg80211_chan_def _oper_chandef;
1025
1026 /* Temporary remain-on-channel for off-channel operations */
1027 struct ieee80211_channel *tmp_channel;
1028
1029 /* channel contexts */
1030 struct list_head chanctx_list;
1031 struct mutex chanctx_mtx;
1032
1033 /* SNMP counters */
1034 /* dot11CountersTable */
1035 u32 dot11TransmittedFragmentCount;
1036 u32 dot11MulticastTransmittedFrameCount;
1037 u32 dot11FailedCount;
1038 u32 dot11RetryCount;
1039 u32 dot11MultipleRetryCount;
1040 u32 dot11FrameDuplicateCount;
1041 u32 dot11ReceivedFragmentCount;
1042 u32 dot11MulticastReceivedFrameCount;
1043 u32 dot11TransmittedFrameCount;
1044
1045 #ifdef CONFIG_MAC80211_LEDS
1046 int tx_led_counter, rx_led_counter;
1047 struct led_trigger *tx_led, *rx_led, *assoc_led, *radio_led;
1048 struct tpt_led_trigger *tpt_led_trigger;
1049 char tx_led_name[32], rx_led_name[32],
1050 assoc_led_name[32], radio_led_name[32];
1051 #endif
1052
1053 #ifdef CONFIG_MAC80211_DEBUG_COUNTERS
1054 /* TX/RX handler statistics */
1055 unsigned int tx_handlers_drop;
1056 unsigned int tx_handlers_queued;
1057 unsigned int tx_handlers_drop_unencrypted;
1058 unsigned int tx_handlers_drop_fragment;
1059 unsigned int tx_handlers_drop_wep;
1060 unsigned int tx_handlers_drop_not_assoc;
1061 unsigned int tx_handlers_drop_unauth_port;
1062 unsigned int rx_handlers_drop;
1063 unsigned int rx_handlers_queued;
1064 unsigned int rx_handlers_drop_nullfunc;
1065 unsigned int rx_handlers_drop_defrag;
1066 unsigned int rx_handlers_drop_short;
1067 unsigned int tx_expand_skb_head;
1068 unsigned int tx_expand_skb_head_cloned;
1069 unsigned int rx_expand_skb_head;
1070 unsigned int rx_expand_skb_head2;
1071 unsigned int rx_handlers_fragments;
1072 unsigned int tx_status_drop;
1073 #define I802_DEBUG_INC(c) (c)++
1074 #else /* CONFIG_MAC80211_DEBUG_COUNTERS */
1075 #define I802_DEBUG_INC(c) do { } while (0)
1076 #endif /* CONFIG_MAC80211_DEBUG_COUNTERS */
1077
1078
1079 int total_ps_buffered; /* total number of all buffered unicast and
1080 * multicast packets for power saving stations
1081 */
1082
1083 bool pspolling;
1084 bool offchannel_ps_enabled;
1085 /*
1086 * PS can only be enabled when we have exactly one managed
1087 * interface (and monitors) in PS, this then points there.
1088 */
1089 struct ieee80211_sub_if_data *ps_sdata;
1090 struct work_struct dynamic_ps_enable_work;
1091 struct work_struct dynamic_ps_disable_work;
1092 struct timer_list dynamic_ps_timer;
1093 struct notifier_block network_latency_notifier;
1094 struct notifier_block ifa_notifier;
1095 struct notifier_block ifa6_notifier;
1096
1097 /*
1098 * The dynamic ps timeout configured from user space via WEXT -
1099 * this will override whatever chosen by mac80211 internally.
1100 */
1101 int dynamic_ps_forced_timeout;
1102
1103 int user_power_level; /* in dBm, for all interfaces */
1104
1105 enum ieee80211_smps_mode smps_mode;
1106
1107 struct work_struct restart_work;
1108
1109 #ifdef CONFIG_MAC80211_DEBUGFS
1110 struct local_debugfsdentries {
1111 struct dentry *rcdir;
1112 struct dentry *keys;
1113 } debugfs;
1114 #endif
1115
1116 /*
1117 * Remain-on-channel support
1118 */
1119 struct list_head roc_list;
1120 struct work_struct hw_roc_start, hw_roc_done;
1121 unsigned long hw_roc_start_time;
1122 u64 roc_cookie_counter;
1123
1124 struct idr ack_status_frames;
1125 spinlock_t ack_status_lock;
1126
1127 struct ieee80211_sub_if_data __rcu *p2p_sdata;
1128
1129 /* virtual monitor interface */
1130 struct ieee80211_sub_if_data __rcu *monitor_sdata;
1131 struct cfg80211_chan_def monitor_chandef;
1132 };
1133
1134 static inline struct ieee80211_sub_if_data *
1135 IEEE80211_DEV_TO_SUB_IF(struct net_device *dev)
1136 {
1137 return netdev_priv(dev);
1138 }
1139
1140 static inline struct ieee80211_sub_if_data *
1141 IEEE80211_WDEV_TO_SUB_IF(struct wireless_dev *wdev)
1142 {
1143 return container_of(wdev, struct ieee80211_sub_if_data, wdev);
1144 }
1145
1146 /* this struct represents 802.11n's RA/TID combination */
1147 struct ieee80211_ra_tid {
1148 u8 ra[ETH_ALEN];
1149 u16 tid;
1150 };
1151
1152 /* Parsed Information Elements */
1153 struct ieee802_11_elems {
1154 const u8 *ie_start;
1155 size_t total_len;
1156
1157 /* pointers to IEs */
1158 const u8 *ssid;
1159 const u8 *supp_rates;
1160 const u8 *ds_params;
1161 const struct ieee80211_tim_ie *tim;
1162 const u8 *challenge;
1163 const u8 *rsn;
1164 const u8 *erp_info;
1165 const u8 *ext_supp_rates;
1166 const u8 *wmm_info;
1167 const u8 *wmm_param;
1168 const struct ieee80211_ht_cap *ht_cap_elem;
1169 const struct ieee80211_ht_operation *ht_operation;
1170 const struct ieee80211_vht_cap *vht_cap_elem;
1171 const struct ieee80211_vht_operation *vht_operation;
1172 const struct ieee80211_meshconf_ie *mesh_config;
1173 const u8 *mesh_id;
1174 const u8 *peering;
1175 const __le16 *awake_window;
1176 const u8 *preq;
1177 const u8 *prep;
1178 const u8 *perr;
1179 const struct ieee80211_rann_ie *rann;
1180 const struct ieee80211_channel_sw_ie *ch_switch_ie;
1181 const u8 *country_elem;
1182 const u8 *pwr_constr_elem;
1183 const u8 *timeout_int;
1184 const u8 *opmode_notif;
1185
1186 /* length of them, respectively */
1187 u8 ssid_len;
1188 u8 supp_rates_len;
1189 u8 tim_len;
1190 u8 challenge_len;
1191 u8 rsn_len;
1192 u8 ext_supp_rates_len;
1193 u8 wmm_info_len;
1194 u8 wmm_param_len;
1195 u8 mesh_id_len;
1196 u8 peering_len;
1197 u8 preq_len;
1198 u8 prep_len;
1199 u8 perr_len;
1200 u8 country_elem_len;
1201 u8 timeout_int_len;
1202
1203 /* whether a parse error occurred while retrieving these elements */
1204 bool parse_error;
1205 };
1206
1207 static inline struct ieee80211_local *hw_to_local(
1208 struct ieee80211_hw *hw)
1209 {
1210 return container_of(hw, struct ieee80211_local, hw);
1211 }
1212
1213
1214 static inline int ieee80211_bssid_match(const u8 *raddr, const u8 *addr)
1215 {
1216 return ether_addr_equal(raddr, addr) ||
1217 is_broadcast_ether_addr(raddr);
1218 }
1219
1220 static inline bool
1221 ieee80211_have_rx_timestamp(struct ieee80211_rx_status *status)
1222 {
1223 WARN_ON_ONCE(status->flag & RX_FLAG_MACTIME_START &&
1224 status->flag & RX_FLAG_MACTIME_END);
1225 return status->flag & (RX_FLAG_MACTIME_START | RX_FLAG_MACTIME_END);
1226 }
1227
1228 u64 ieee80211_calculate_rx_timestamp(struct ieee80211_local *local,
1229 struct ieee80211_rx_status *status,
1230 unsigned int mpdu_len,
1231 unsigned int mpdu_offset);
1232 int ieee80211_hw_config(struct ieee80211_local *local, u32 changed);
1233 void ieee80211_tx_set_protected(struct ieee80211_tx_data *tx);
1234 void ieee80211_bss_info_change_notify(struct ieee80211_sub_if_data *sdata,
1235 u32 changed);
1236 void ieee80211_configure_filter(struct ieee80211_local *local);
1237 u32 ieee80211_reset_erp_info(struct ieee80211_sub_if_data *sdata);
1238
1239 /* STA code */
1240 void ieee80211_sta_setup_sdata(struct ieee80211_sub_if_data *sdata);
1241 int ieee80211_mgd_auth(struct ieee80211_sub_if_data *sdata,
1242 struct cfg80211_auth_request *req);
1243 int ieee80211_mgd_assoc(struct ieee80211_sub_if_data *sdata,
1244 struct cfg80211_assoc_request *req);
1245 int ieee80211_mgd_deauth(struct ieee80211_sub_if_data *sdata,
1246 struct cfg80211_deauth_request *req);
1247 int ieee80211_mgd_disassoc(struct ieee80211_sub_if_data *sdata,
1248 struct cfg80211_disassoc_request *req);
1249 void ieee80211_send_pspoll(struct ieee80211_local *local,
1250 struct ieee80211_sub_if_data *sdata);
1251 void ieee80211_recalc_ps(struct ieee80211_local *local, s32 latency);
1252 void ieee80211_recalc_ps_vif(struct ieee80211_sub_if_data *sdata);
1253 int ieee80211_max_network_latency(struct notifier_block *nb,
1254 unsigned long data, void *dummy);
1255 int ieee80211_set_arp_filter(struct ieee80211_sub_if_data *sdata);
1256 void
1257 ieee80211_sta_process_chanswitch(struct ieee80211_sub_if_data *sdata,
1258 const struct ieee80211_channel_sw_ie *sw_elem,
1259 struct ieee80211_bss *bss, u64 timestamp);
1260 void ieee80211_sta_work(struct ieee80211_sub_if_data *sdata);
1261 void ieee80211_sta_rx_queued_mgmt(struct ieee80211_sub_if_data *sdata,
1262 struct sk_buff *skb);
1263 void ieee80211_sta_reset_beacon_monitor(struct ieee80211_sub_if_data *sdata);
1264 void ieee80211_sta_reset_conn_monitor(struct ieee80211_sub_if_data *sdata);
1265 void ieee80211_mgd_stop(struct ieee80211_sub_if_data *sdata);
1266 void ieee80211_mgd_conn_tx_status(struct ieee80211_sub_if_data *sdata,
1267 __le16 fc, bool acked);
1268
1269 /* IBSS code */
1270 void ieee80211_ibss_notify_scan_completed(struct ieee80211_local *local);
1271 void ieee80211_ibss_setup_sdata(struct ieee80211_sub_if_data *sdata);
1272 void ieee80211_ibss_rx_no_sta(struct ieee80211_sub_if_data *sdata,
1273 const u8 *bssid, const u8 *addr, u32 supp_rates);
1274 int ieee80211_ibss_join(struct ieee80211_sub_if_data *sdata,
1275 struct cfg80211_ibss_params *params);
1276 int ieee80211_ibss_leave(struct ieee80211_sub_if_data *sdata);
1277 void ieee80211_ibss_work(struct ieee80211_sub_if_data *sdata);
1278 void ieee80211_ibss_rx_queued_mgmt(struct ieee80211_sub_if_data *sdata,
1279 struct sk_buff *skb);
1280
1281 /* mesh code */
1282 void ieee80211_mesh_work(struct ieee80211_sub_if_data *sdata);
1283 void ieee80211_mesh_rx_queued_mgmt(struct ieee80211_sub_if_data *sdata,
1284 struct sk_buff *skb);
1285
1286 /* scan/BSS handling */
1287 void ieee80211_scan_work(struct work_struct *work);
1288 int ieee80211_request_ibss_scan(struct ieee80211_sub_if_data *sdata,
1289 const u8 *ssid, u8 ssid_len,
1290 struct ieee80211_channel *chan);
1291 int ieee80211_request_scan(struct ieee80211_sub_if_data *sdata,
1292 struct cfg80211_scan_request *req);
1293 void ieee80211_scan_cancel(struct ieee80211_local *local);
1294 void ieee80211_run_deferred_scan(struct ieee80211_local *local);
1295 void ieee80211_scan_rx(struct ieee80211_local *local, struct sk_buff *skb);
1296
1297 void ieee80211_mlme_notify_scan_completed(struct ieee80211_local *local);
1298 struct ieee80211_bss *
1299 ieee80211_bss_info_update(struct ieee80211_local *local,
1300 struct ieee80211_rx_status *rx_status,
1301 struct ieee80211_mgmt *mgmt,
1302 size_t len,
1303 struct ieee802_11_elems *elems,
1304 struct ieee80211_channel *channel);
1305 void ieee80211_rx_bss_put(struct ieee80211_local *local,
1306 struct ieee80211_bss *bss);
1307
1308 /* scheduled scan handling */
1309 int ieee80211_request_sched_scan_start(struct ieee80211_sub_if_data *sdata,
1310 struct cfg80211_sched_scan_request *req);
1311 int ieee80211_request_sched_scan_stop(struct ieee80211_sub_if_data *sdata);
1312 void ieee80211_sched_scan_stopped_work(struct work_struct *work);
1313
1314 /* off-channel helpers */
1315 void ieee80211_offchannel_stop_vifs(struct ieee80211_local *local);
1316 void ieee80211_offchannel_return(struct ieee80211_local *local);
1317 void ieee80211_roc_setup(struct ieee80211_local *local);
1318 void ieee80211_start_next_roc(struct ieee80211_local *local);
1319 void ieee80211_roc_purge(struct ieee80211_sub_if_data *sdata);
1320 void ieee80211_roc_notify_destroy(struct ieee80211_roc_work *roc);
1321 void ieee80211_sw_roc_work(struct work_struct *work);
1322 void ieee80211_handle_roc_started(struct ieee80211_roc_work *roc);
1323
1324 /* interface handling */
1325 int ieee80211_iface_init(void);
1326 void ieee80211_iface_exit(void);
1327 int ieee80211_if_add(struct ieee80211_local *local, const char *name,
1328 struct wireless_dev **new_wdev, enum nl80211_iftype type,
1329 struct vif_params *params);
1330 int ieee80211_if_change_type(struct ieee80211_sub_if_data *sdata,
1331 enum nl80211_iftype type);
1332 void ieee80211_if_remove(struct ieee80211_sub_if_data *sdata);
1333 void ieee80211_remove_interfaces(struct ieee80211_local *local);
1334 void ieee80211_recalc_idle(struct ieee80211_local *local);
1335 void ieee80211_adjust_monitor_flags(struct ieee80211_sub_if_data *sdata,
1336 const int offset);
1337 int ieee80211_do_open(struct wireless_dev *wdev, bool coming_up);
1338 void ieee80211_sdata_stop(struct ieee80211_sub_if_data *sdata);
1339
1340 bool __ieee80211_recalc_txpower(struct ieee80211_sub_if_data *sdata);
1341 void ieee80211_recalc_txpower(struct ieee80211_sub_if_data *sdata);
1342
1343 static inline bool ieee80211_sdata_running(struct ieee80211_sub_if_data *sdata)
1344 {
1345 return test_bit(SDATA_STATE_RUNNING, &sdata->state);
1346 }
1347
1348 /* tx handling */
1349 void ieee80211_clear_tx_pending(struct ieee80211_local *local);
1350 void ieee80211_tx_pending(unsigned long data);
1351 netdev_tx_t ieee80211_monitor_start_xmit(struct sk_buff *skb,
1352 struct net_device *dev);
1353 netdev_tx_t ieee80211_subif_start_xmit(struct sk_buff *skb,
1354 struct net_device *dev);
1355 void ieee80211_purge_tx_queue(struct ieee80211_hw *hw,
1356 struct sk_buff_head *skbs);
1357
1358 /* HT */
1359 void ieee80211_apply_htcap_overrides(struct ieee80211_sub_if_data *sdata,
1360 struct ieee80211_sta_ht_cap *ht_cap);
1361 bool ieee80211_ht_cap_ie_to_sta_ht_cap(struct ieee80211_sub_if_data *sdata,
1362 struct ieee80211_supported_band *sband,
1363 const struct ieee80211_ht_cap *ht_cap_ie,
1364 struct sta_info *sta);
1365 void ieee80211_send_delba(struct ieee80211_sub_if_data *sdata,
1366 const u8 *da, u16 tid,
1367 u16 initiator, u16 reason_code);
1368 int ieee80211_send_smps_action(struct ieee80211_sub_if_data *sdata,
1369 enum ieee80211_smps_mode smps, const u8 *da,
1370 const u8 *bssid);
1371 void ieee80211_request_smps_work(struct work_struct *work);
1372
1373 void ___ieee80211_stop_rx_ba_session(struct sta_info *sta, u16 tid,
1374 u16 initiator, u16 reason, bool stop);
1375 void __ieee80211_stop_rx_ba_session(struct sta_info *sta, u16 tid,
1376 u16 initiator, u16 reason, bool stop);
1377 void ieee80211_sta_tear_down_BA_sessions(struct sta_info *sta,
1378 enum ieee80211_agg_stop_reason reason);
1379 void ieee80211_process_delba(struct ieee80211_sub_if_data *sdata,
1380 struct sta_info *sta,
1381 struct ieee80211_mgmt *mgmt, size_t len);
1382 void ieee80211_process_addba_resp(struct ieee80211_local *local,
1383 struct sta_info *sta,
1384 struct ieee80211_mgmt *mgmt,
1385 size_t len);
1386 void ieee80211_process_addba_request(struct ieee80211_local *local,
1387 struct sta_info *sta,
1388 struct ieee80211_mgmt *mgmt,
1389 size_t len);
1390
1391 int __ieee80211_stop_tx_ba_session(struct sta_info *sta, u16 tid,
1392 enum ieee80211_agg_stop_reason reason);
1393 int ___ieee80211_stop_tx_ba_session(struct sta_info *sta, u16 tid,
1394 enum ieee80211_agg_stop_reason reason);
1395 void ieee80211_start_tx_ba_cb(struct ieee80211_vif *vif, u8 *ra, u16 tid);
1396 void ieee80211_stop_tx_ba_cb(struct ieee80211_vif *vif, u8 *ra, u8 tid);
1397 void ieee80211_ba_session_work(struct work_struct *work);
1398 void ieee80211_tx_ba_session_handle_start(struct sta_info *sta, int tid);
1399 void ieee80211_release_reorder_timeout(struct sta_info *sta, int tid);
1400
1401 u8 ieee80211_mcs_to_chains(const struct ieee80211_mcs_info *mcs);
1402
1403 /* VHT */
1404 void
1405 ieee80211_vht_cap_ie_to_sta_vht_cap(struct ieee80211_sub_if_data *sdata,
1406 struct ieee80211_supported_band *sband,
1407 const struct ieee80211_vht_cap *vht_cap_ie,
1408 struct sta_info *sta);
1409 enum ieee80211_sta_rx_bandwidth ieee80211_sta_cur_vht_bw(struct sta_info *sta);
1410 void ieee80211_sta_set_rx_nss(struct sta_info *sta);
1411 void ieee80211_vht_handle_opmode(struct ieee80211_sub_if_data *sdata,
1412 struct sta_info *sta, u8 opmode,
1413 enum ieee80211_band band, bool nss_only);
1414 void ieee80211_apply_vhtcap_overrides(struct ieee80211_sub_if_data *sdata,
1415 struct ieee80211_sta_vht_cap *vht_cap);
1416
1417 /* Spectrum management */
1418 void ieee80211_process_measurement_req(struct ieee80211_sub_if_data *sdata,
1419 struct ieee80211_mgmt *mgmt,
1420 size_t len);
1421
1422 /* Suspend/resume and hw reconfiguration */
1423 int ieee80211_reconfig(struct ieee80211_local *local);
1424 void ieee80211_stop_device(struct ieee80211_local *local);
1425
1426 int __ieee80211_suspend(struct ieee80211_hw *hw,
1427 struct cfg80211_wowlan *wowlan);
1428
1429 static inline int __ieee80211_resume(struct ieee80211_hw *hw)
1430 {
1431 struct ieee80211_local *local = hw_to_local(hw);
1432
1433 WARN(test_bit(SCAN_HW_SCANNING, &local->scanning),
1434 "%s: resume with hardware scan still in progress\n",
1435 wiphy_name(hw->wiphy));
1436
1437 return ieee80211_reconfig(hw_to_local(hw));
1438 }
1439
1440 /* utility functions/constants */
1441 extern void *mac80211_wiphy_privid; /* for wiphy privid */
1442 u8 *ieee80211_get_bssid(struct ieee80211_hdr *hdr, size_t len,
1443 enum nl80211_iftype type);
1444 int ieee80211_frame_duration(enum ieee80211_band band, size_t len,
1445 int rate, int erp, int short_preamble);
1446 void mac80211_ev_michael_mic_failure(struct ieee80211_sub_if_data *sdata, int keyidx,
1447 struct ieee80211_hdr *hdr, const u8 *tsc,
1448 gfp_t gfp);
1449 void ieee80211_set_wmm_default(struct ieee80211_sub_if_data *sdata,
1450 bool bss_notify);
1451 void ieee80211_xmit(struct ieee80211_sub_if_data *sdata, struct sk_buff *skb,
1452 enum ieee80211_band band);
1453
1454 void __ieee80211_tx_skb_tid_band(struct ieee80211_sub_if_data *sdata,
1455 struct sk_buff *skb, int tid,
1456 enum ieee80211_band band);
1457
1458 static inline void
1459 ieee80211_tx_skb_tid_band(struct ieee80211_sub_if_data *sdata,
1460 struct sk_buff *skb, int tid,
1461 enum ieee80211_band band)
1462 {
1463 rcu_read_lock();
1464 __ieee80211_tx_skb_tid_band(sdata, skb, tid, band);
1465 rcu_read_unlock();
1466 }
1467
1468 static inline void ieee80211_tx_skb_tid(struct ieee80211_sub_if_data *sdata,
1469 struct sk_buff *skb, int tid)
1470 {
1471 struct ieee80211_chanctx_conf *chanctx_conf;
1472
1473 rcu_read_lock();
1474 chanctx_conf = rcu_dereference(sdata->vif.chanctx_conf);
1475 if (WARN_ON(!chanctx_conf)) {
1476 rcu_read_unlock();
1477 kfree_skb(skb);
1478 return;
1479 }
1480
1481 __ieee80211_tx_skb_tid_band(sdata, skb, tid,
1482 chanctx_conf->def.chan->band);
1483 rcu_read_unlock();
1484 }
1485
1486 static inline void ieee80211_tx_skb(struct ieee80211_sub_if_data *sdata,
1487 struct sk_buff *skb)
1488 {
1489 /* Send all internal mgmt frames on VO. Accordingly set TID to 7. */
1490 ieee80211_tx_skb_tid(sdata, skb, 7);
1491 }
1492
1493 void ieee802_11_parse_elems(u8 *start, size_t len,
1494 struct ieee802_11_elems *elems);
1495 u32 ieee802_11_parse_elems_crc(u8 *start, size_t len,
1496 struct ieee802_11_elems *elems,
1497 u64 filter, u32 crc);
1498 u32 ieee80211_mandatory_rates(struct ieee80211_local *local,
1499 enum ieee80211_band band);
1500
1501 void ieee80211_dynamic_ps_enable_work(struct work_struct *work);
1502 void ieee80211_dynamic_ps_disable_work(struct work_struct *work);
1503 void ieee80211_dynamic_ps_timer(unsigned long data);
1504 void ieee80211_send_nullfunc(struct ieee80211_local *local,
1505 struct ieee80211_sub_if_data *sdata,
1506 int powersave);
1507 void ieee80211_sta_rx_notify(struct ieee80211_sub_if_data *sdata,
1508 struct ieee80211_hdr *hdr);
1509 void ieee80211_sta_tx_notify(struct ieee80211_sub_if_data *sdata,
1510 struct ieee80211_hdr *hdr, bool ack);
1511
1512 void ieee80211_wake_queues_by_reason(struct ieee80211_hw *hw,
1513 unsigned long queues,
1514 enum queue_stop_reason reason);
1515 void ieee80211_stop_queues_by_reason(struct ieee80211_hw *hw,
1516 unsigned long queues,
1517 enum queue_stop_reason reason);
1518 void ieee80211_wake_queue_by_reason(struct ieee80211_hw *hw, int queue,
1519 enum queue_stop_reason reason);
1520 void ieee80211_stop_queue_by_reason(struct ieee80211_hw *hw, int queue,
1521 enum queue_stop_reason reason);
1522 void ieee80211_propagate_queue_wake(struct ieee80211_local *local, int queue);
1523 void ieee80211_add_pending_skb(struct ieee80211_local *local,
1524 struct sk_buff *skb);
1525 void ieee80211_add_pending_skbs_fn(struct ieee80211_local *local,
1526 struct sk_buff_head *skbs,
1527 void (*fn)(void *data), void *data);
1528 static inline void ieee80211_add_pending_skbs(struct ieee80211_local *local,
1529 struct sk_buff_head *skbs)
1530 {
1531 ieee80211_add_pending_skbs_fn(local, skbs, NULL, NULL);
1532 }
1533 void ieee80211_flush_queues(struct ieee80211_local *local,
1534 struct ieee80211_sub_if_data *sdata);
1535
1536 void ieee80211_send_auth(struct ieee80211_sub_if_data *sdata,
1537 u16 transaction, u16 auth_alg, u16 status,
1538 const u8 *extra, size_t extra_len, const u8 *bssid,
1539 const u8 *da, const u8 *key, u8 key_len, u8 key_idx,
1540 u32 tx_flags);
1541 void ieee80211_send_deauth_disassoc(struct ieee80211_sub_if_data *sdata,
1542 const u8 *bssid, u16 stype, u16 reason,
1543 bool send_frame, u8 *frame_buf);
1544 int ieee80211_build_preq_ies(struct ieee80211_local *local, u8 *buffer,
1545 size_t buffer_len, const u8 *ie, size_t ie_len,
1546 enum ieee80211_band band, u32 rate_mask,
1547 u8 channel);
1548 struct sk_buff *ieee80211_build_probe_req(struct ieee80211_sub_if_data *sdata,
1549 u8 *dst, u32 ratemask,
1550 struct ieee80211_channel *chan,
1551 const u8 *ssid, size_t ssid_len,
1552 const u8 *ie, size_t ie_len,
1553 bool directed);
1554 void ieee80211_send_probe_req(struct ieee80211_sub_if_data *sdata, u8 *dst,
1555 const u8 *ssid, size_t ssid_len,
1556 const u8 *ie, size_t ie_len,
1557 u32 ratemask, bool directed, u32 tx_flags,
1558 struct ieee80211_channel *channel, bool scan);
1559
1560 void ieee80211_sta_def_wmm_params(struct ieee80211_sub_if_data *sdata,
1561 const size_t supp_rates_len,
1562 const u8 *supp_rates);
1563 u32 ieee80211_sta_get_rates(struct ieee80211_local *local,
1564 struct ieee802_11_elems *elems,
1565 enum ieee80211_band band, u32 *basic_rates);
1566 int __ieee80211_request_smps(struct ieee80211_sub_if_data *sdata,
1567 enum ieee80211_smps_mode smps_mode);
1568 void ieee80211_recalc_smps(struct ieee80211_sub_if_data *sdata);
1569
1570 size_t ieee80211_ie_split(const u8 *ies, size_t ielen,
1571 const u8 *ids, int n_ids, size_t offset);
1572 size_t ieee80211_ie_split_vendor(const u8 *ies, size_t ielen, size_t offset);
1573 u8 *ieee80211_ie_build_ht_cap(u8 *pos, struct ieee80211_sta_ht_cap *ht_cap,
1574 u16 cap);
1575 u8 *ieee80211_ie_build_ht_oper(u8 *pos, struct ieee80211_sta_ht_cap *ht_cap,
1576 const struct cfg80211_chan_def *chandef,
1577 u16 prot_mode);
1578 u8 *ieee80211_ie_build_vht_cap(u8 *pos, struct ieee80211_sta_vht_cap *vht_cap,
1579 u32 cap);
1580 int ieee80211_add_srates_ie(struct ieee80211_sub_if_data *sdata,
1581 struct sk_buff *skb, bool need_basic,
1582 enum ieee80211_band band);
1583 int ieee80211_add_ext_srates_ie(struct ieee80211_sub_if_data *sdata,
1584 struct sk_buff *skb, bool need_basic,
1585 enum ieee80211_band band);
1586
1587 /* channel management */
1588 void ieee80211_ht_oper_to_chandef(struct ieee80211_channel *control_chan,
1589 const struct ieee80211_ht_operation *ht_oper,
1590 struct cfg80211_chan_def *chandef);
1591
1592 int __must_check
1593 ieee80211_vif_use_channel(struct ieee80211_sub_if_data *sdata,
1594 const struct cfg80211_chan_def *chandef,
1595 enum ieee80211_chanctx_mode mode);
1596 int __must_check
1597 ieee80211_vif_change_bandwidth(struct ieee80211_sub_if_data *sdata,
1598 const struct cfg80211_chan_def *chandef,
1599 u32 *changed);
1600 void ieee80211_vif_release_channel(struct ieee80211_sub_if_data *sdata);
1601 void ieee80211_vif_vlan_copy_chanctx(struct ieee80211_sub_if_data *sdata);
1602 void ieee80211_vif_copy_chanctx_to_vlans(struct ieee80211_sub_if_data *sdata,
1603 bool clear);
1604
1605 void ieee80211_recalc_smps_chanctx(struct ieee80211_local *local,
1606 struct ieee80211_chanctx *chanctx);
1607 void ieee80211_recalc_radar_chanctx(struct ieee80211_local *local,
1608 struct ieee80211_chanctx *chanctx);
1609
1610 void ieee80211_dfs_cac_timer(unsigned long data);
1611 void ieee80211_dfs_cac_timer_work(struct work_struct *work);
1612 void ieee80211_dfs_cac_cancel(struct ieee80211_local *local);
1613 void ieee80211_dfs_radar_detected_work(struct work_struct *work);
1614
1615 #ifdef CONFIG_MAC80211_NOINLINE
1616 #define debug_noinline noinline
1617 #else
1618 #define debug_noinline
1619 #endif
1620
1621 #endif /* IEEE80211_I_H */