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freebsd
GitHub Repository: freebsd/freebsd-src
Path: blob/main/sys/contrib/dev/rtw88/mac80211.c
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1
// SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause
2
/* Copyright(c) 2018-2019 Realtek Corporation
3
*/
4
5
#include "main.h"
6
#include "sec.h"
7
#include "tx.h"
8
#include "fw.h"
9
#include "mac.h"
10
#include "coex.h"
11
#include "ps.h"
12
#include "reg.h"
13
#include "bf.h"
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#include "debug.h"
15
#include "wow.h"
16
#include "sar.h"
17
18
static void rtw_ops_tx(struct ieee80211_hw *hw,
19
struct ieee80211_tx_control *control,
20
struct sk_buff *skb)
21
{
22
struct rtw_dev *rtwdev = hw->priv;
23
24
if (!test_bit(RTW_FLAG_RUNNING, rtwdev->flags)) {
25
ieee80211_free_txskb(hw, skb);
26
return;
27
}
28
29
rtw_tx(rtwdev, control, skb);
30
}
31
32
static void rtw_ops_wake_tx_queue(struct ieee80211_hw *hw,
33
struct ieee80211_txq *txq)
34
{
35
struct rtw_dev *rtwdev = hw->priv;
36
struct rtw_txq *rtwtxq = (struct rtw_txq *)txq->drv_priv;
37
38
if (!test_bit(RTW_FLAG_RUNNING, rtwdev->flags))
39
return;
40
41
spin_lock_bh(&rtwdev->txq_lock);
42
if (list_empty(&rtwtxq->list))
43
list_add_tail(&rtwtxq->list, &rtwdev->txqs);
44
spin_unlock_bh(&rtwdev->txq_lock);
45
46
/* ensure to dequeue EAPOL (4/4) at the right time */
47
if (txq->ac == IEEE80211_AC_VO)
48
__rtw_tx_work(rtwdev);
49
else
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queue_work(rtwdev->tx_wq, &rtwdev->tx_work);
51
}
52
53
static int rtw_ops_start(struct ieee80211_hw *hw)
54
{
55
struct rtw_dev *rtwdev = hw->priv;
56
int ret;
57
58
mutex_lock(&rtwdev->mutex);
59
ret = rtw_core_start(rtwdev);
60
mutex_unlock(&rtwdev->mutex);
61
62
return ret;
63
}
64
65
static void rtw_ops_stop(struct ieee80211_hw *hw, bool suspend)
66
{
67
struct rtw_dev *rtwdev = hw->priv;
68
69
mutex_lock(&rtwdev->mutex);
70
rtw_core_stop(rtwdev);
71
mutex_unlock(&rtwdev->mutex);
72
}
73
74
static int rtw_ops_config(struct ieee80211_hw *hw, int radio_idx, u32 changed)
75
{
76
struct rtw_dev *rtwdev = hw->priv;
77
int ret = 0;
78
79
/* let previous ips work finish to ensure we don't leave ips twice */
80
cancel_work_sync(&rtwdev->ips_work);
81
82
mutex_lock(&rtwdev->mutex);
83
84
rtw_leave_lps_deep(rtwdev);
85
86
if ((changed & IEEE80211_CONF_CHANGE_IDLE) &&
87
!(hw->conf.flags & IEEE80211_CONF_IDLE)) {
88
ret = rtw_leave_ips(rtwdev);
89
if (ret) {
90
rtw_err(rtwdev, "failed to leave idle state\n");
91
goto out;
92
}
93
}
94
95
if (changed & IEEE80211_CONF_CHANGE_CHANNEL)
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rtw_set_channel(rtwdev);
97
98
if ((changed & IEEE80211_CONF_CHANGE_IDLE) &&
99
(hw->conf.flags & IEEE80211_CONF_IDLE) &&
100
!test_bit(RTW_FLAG_SCANNING, rtwdev->flags))
101
rtw_enter_ips(rtwdev);
102
103
out:
104
mutex_unlock(&rtwdev->mutex);
105
return ret;
106
}
107
108
static const struct rtw_vif_port rtw_vif_port[] = {
109
[0] = {
110
.mac_addr = {.addr = 0x0610},
111
.bssid = {.addr = 0x0618},
112
.net_type = {.addr = 0x0100, .mask = 0x30000},
113
.aid = {.addr = 0x06a8, .mask = 0x7ff},
114
.bcn_ctrl = {.addr = 0x0550, .mask = 0xff},
115
},
116
[1] = {
117
.mac_addr = {.addr = 0x0700},
118
.bssid = {.addr = 0x0708},
119
.net_type = {.addr = 0x0100, .mask = 0xc0000},
120
.aid = {.addr = 0x0710, .mask = 0x7ff},
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.bcn_ctrl = {.addr = 0x0551, .mask = 0xff},
122
},
123
[2] = {
124
.mac_addr = {.addr = 0x1620},
125
.bssid = {.addr = 0x1628},
126
.net_type = {.addr = 0x1100, .mask = 0x3},
127
.aid = {.addr = 0x1600, .mask = 0x7ff},
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.bcn_ctrl = {.addr = 0x0578, .mask = 0xff},
129
},
130
[3] = {
131
.mac_addr = {.addr = 0x1630},
132
.bssid = {.addr = 0x1638},
133
.net_type = {.addr = 0x1100, .mask = 0xc},
134
.aid = {.addr = 0x1604, .mask = 0x7ff},
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.bcn_ctrl = {.addr = 0x0579, .mask = 0xff},
136
},
137
[4] = {
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.mac_addr = {.addr = 0x1640},
139
.bssid = {.addr = 0x1648},
140
.net_type = {.addr = 0x1100, .mask = 0x30},
141
.aid = {.addr = 0x1608, .mask = 0x7ff},
142
.bcn_ctrl = {.addr = 0x057a, .mask = 0xff},
143
},
144
};
145
146
static int rtw_ops_add_interface(struct ieee80211_hw *hw,
147
struct ieee80211_vif *vif)
148
{
149
struct rtw_dev *rtwdev = hw->priv;
150
struct rtw_vif *rtwvif = (struct rtw_vif *)vif->drv_priv;
151
enum rtw_net_type net_type;
152
u32 config = 0;
153
u8 port;
154
u8 bcn_ctrl = 0;
155
156
if (rtw_fw_feature_check(&rtwdev->fw, FW_FEATURE_BCN_FILTER))
157
vif->driver_flags |= IEEE80211_VIF_BEACON_FILTER |
158
IEEE80211_VIF_SUPPORTS_CQM_RSSI;
159
rtwvif->stats.tx_unicast = 0;
160
rtwvif->stats.rx_unicast = 0;
161
rtwvif->stats.tx_cnt = 0;
162
rtwvif->stats.rx_cnt = 0;
163
rtwvif->scan_req = NULL;
164
memset(&rtwvif->bfee, 0, sizeof(struct rtw_bfee));
165
rtw_txq_init(rtwdev, vif->txq);
166
INIT_LIST_HEAD(&rtwvif->rsvd_page_list);
167
168
mutex_lock(&rtwdev->mutex);
169
170
rtwvif->mac_id = rtw_acquire_macid(rtwdev);
171
if (rtwvif->mac_id >= RTW_MAX_MAC_ID_NUM) {
172
mutex_unlock(&rtwdev->mutex);
173
return -ENOSPC;
174
}
175
176
port = find_first_zero_bit(rtwdev->hw_port, RTW_PORT_NUM);
177
if (port >= RTW_PORT_NUM) {
178
mutex_unlock(&rtwdev->mutex);
179
return -EINVAL;
180
}
181
set_bit(port, rtwdev->hw_port);
182
183
rtwvif->port = port;
184
rtwvif->conf = &rtw_vif_port[port];
185
rtw_leave_lps_deep(rtwdev);
186
187
switch (vif->type) {
188
case NL80211_IFTYPE_AP:
189
case NL80211_IFTYPE_MESH_POINT:
190
rtw_add_rsvd_page_bcn(rtwdev, rtwvif);
191
net_type = RTW_NET_AP_MODE;
192
bcn_ctrl = BIT_EN_BCN_FUNCTION | BIT_DIS_TSF_UDT;
193
break;
194
case NL80211_IFTYPE_ADHOC:
195
rtw_add_rsvd_page_bcn(rtwdev, rtwvif);
196
net_type = RTW_NET_AD_HOC;
197
bcn_ctrl = BIT_EN_BCN_FUNCTION | BIT_DIS_TSF_UDT;
198
break;
199
case NL80211_IFTYPE_STATION:
200
rtw_add_rsvd_page_sta(rtwdev, rtwvif);
201
net_type = RTW_NET_NO_LINK;
202
bcn_ctrl = BIT_EN_BCN_FUNCTION;
203
break;
204
default:
205
WARN_ON(1);
206
clear_bit(rtwvif->port, rtwdev->hw_port);
207
mutex_unlock(&rtwdev->mutex);
208
return -EINVAL;
209
}
210
211
ether_addr_copy(rtwvif->mac_addr, vif->addr);
212
config |= PORT_SET_MAC_ADDR;
213
rtwvif->net_type = net_type;
214
config |= PORT_SET_NET_TYPE;
215
rtwvif->bcn_ctrl = bcn_ctrl;
216
config |= PORT_SET_BCN_CTRL;
217
rtw_vif_port_config(rtwdev, rtwvif, config);
218
rtw_core_port_switch(rtwdev, vif);
219
rtw_recalc_lps(rtwdev, vif);
220
221
mutex_unlock(&rtwdev->mutex);
222
223
#if defined(__linux__)
224
rtw_dbg(rtwdev, RTW_DBG_STATE, "start vif %pM mac_id %d on port %d\n",
225
vif->addr, rtwvif->mac_id, rtwvif->port);
226
#elif defined(__FreeBSD__)
227
rtw_dbg(rtwdev, RTW_DBG_STATE, "start vif %6D mac_id %d on port %d\n",
228
vif->addr, ":", rtwvif->mac_id, rtwvif->port);
229
#endif
230
return 0;
231
}
232
233
static void rtw_ops_remove_interface(struct ieee80211_hw *hw,
234
struct ieee80211_vif *vif)
235
{
236
struct rtw_dev *rtwdev = hw->priv;
237
struct rtw_vif *rtwvif = (struct rtw_vif *)vif->drv_priv;
238
u32 config = 0;
239
240
#if defined(__linux__)
241
rtw_dbg(rtwdev, RTW_DBG_STATE, "stop vif %pM mac_id %d on port %d\n",
242
vif->addr, rtwvif->mac_id, rtwvif->port);
243
#elif defined(__FreeBSD__)
244
rtw_dbg(rtwdev, RTW_DBG_STATE, "stop vif %6D mac_id %d on port %d\n",
245
vif->addr, ":", rtwvif->mac_id, rtwvif->port);
246
#endif
247
248
mutex_lock(&rtwdev->mutex);
249
250
rtw_leave_lps_deep(rtwdev);
251
252
rtw_txq_cleanup(rtwdev, vif->txq);
253
rtw_remove_rsvd_page(rtwdev, rtwvif);
254
255
eth_zero_addr(rtwvif->mac_addr);
256
config |= PORT_SET_MAC_ADDR;
257
rtwvif->net_type = RTW_NET_NO_LINK;
258
config |= PORT_SET_NET_TYPE;
259
rtwvif->bcn_ctrl = 0;
260
config |= PORT_SET_BCN_CTRL;
261
rtw_vif_port_config(rtwdev, rtwvif, config);
262
clear_bit(rtwvif->port, rtwdev->hw_port);
263
rtw_release_macid(rtwdev, rtwvif->mac_id);
264
rtw_recalc_lps(rtwdev, NULL);
265
266
mutex_unlock(&rtwdev->mutex);
267
}
268
269
static int rtw_ops_change_interface(struct ieee80211_hw *hw,
270
struct ieee80211_vif *vif,
271
enum nl80211_iftype type, bool p2p)
272
{
273
struct rtw_dev *rtwdev = hw->priv;
274
275
#if defined(__linux__)
276
rtw_dbg(rtwdev, RTW_DBG_STATE, "change vif %pM (%d)->(%d), p2p (%d)->(%d)\n",
277
vif->addr, vif->type, type, vif->p2p, p2p);
278
#elif defined(__FreeBSD__)
279
rtw_dbg(rtwdev, RTW_DBG_STATE, "change vif %6D (%d)->(%d), p2p (%d)->(%d)\n",
280
vif->addr, ":", vif->type, type, vif->p2p, p2p);
281
#endif
282
283
rtw_ops_remove_interface(hw, vif);
284
285
vif->type = type;
286
vif->p2p = p2p;
287
288
return rtw_ops_add_interface(hw, vif);
289
}
290
291
static void rtw_ops_configure_filter(struct ieee80211_hw *hw,
292
unsigned int changed_flags,
293
unsigned int *new_flags,
294
u64 multicast)
295
{
296
struct rtw_dev *rtwdev = hw->priv;
297
298
*new_flags &= FIF_ALLMULTI | FIF_OTHER_BSS | FIF_FCSFAIL |
299
FIF_BCN_PRBRESP_PROMISC;
300
301
mutex_lock(&rtwdev->mutex);
302
303
rtw_leave_lps_deep(rtwdev);
304
305
if (changed_flags & FIF_ALLMULTI) {
306
if (*new_flags & FIF_ALLMULTI)
307
rtwdev->hal.rcr |= BIT_AM;
308
else
309
rtwdev->hal.rcr &= ~(BIT_AM);
310
}
311
if (changed_flags & FIF_FCSFAIL) {
312
if (*new_flags & FIF_FCSFAIL)
313
rtwdev->hal.rcr |= BIT_ACRC32;
314
else
315
rtwdev->hal.rcr &= ~(BIT_ACRC32);
316
}
317
if (changed_flags & FIF_OTHER_BSS) {
318
if (*new_flags & FIF_OTHER_BSS)
319
rtwdev->hal.rcr |= BIT_AAP;
320
else
321
rtwdev->hal.rcr &= ~(BIT_AAP);
322
}
323
if (changed_flags & FIF_BCN_PRBRESP_PROMISC) {
324
if (*new_flags & FIF_BCN_PRBRESP_PROMISC)
325
rtwdev->hal.rcr &= ~(BIT_CBSSID_BCN | BIT_CBSSID_DATA);
326
else
327
rtwdev->hal.rcr |= BIT_CBSSID_BCN;
328
}
329
330
rtw_dbg(rtwdev, RTW_DBG_RX,
331
"config rx filter, changed=0x%08x, new=0x%08x, rcr=0x%08x\n",
332
changed_flags, *new_flags, rtwdev->hal.rcr);
333
334
rtw_write32(rtwdev, REG_RCR, rtwdev->hal.rcr);
335
336
mutex_unlock(&rtwdev->mutex);
337
}
338
339
/* Only have one group of EDCA parameters now */
340
static const u32 ac_to_edca_param[IEEE80211_NUM_ACS] = {
341
[IEEE80211_AC_VO] = REG_EDCA_VO_PARAM,
342
[IEEE80211_AC_VI] = REG_EDCA_VI_PARAM,
343
[IEEE80211_AC_BE] = REG_EDCA_BE_PARAM,
344
[IEEE80211_AC_BK] = REG_EDCA_BK_PARAM,
345
};
346
347
static u8 rtw_aifsn_to_aifs(struct rtw_dev *rtwdev,
348
struct rtw_vif *rtwvif, u8 aifsn)
349
{
350
struct ieee80211_vif *vif = rtwvif_to_vif(rtwvif);
351
u8 slot_time;
352
u8 sifs;
353
354
slot_time = vif->bss_conf.use_short_slot ? 9 : 20;
355
sifs = rtwdev->hal.current_band_type == RTW_BAND_5G ? 16 : 10;
356
357
return aifsn * slot_time + sifs;
358
}
359
360
static void __rtw_conf_tx(struct rtw_dev *rtwdev,
361
struct rtw_vif *rtwvif, u16 ac)
362
{
363
struct ieee80211_tx_queue_params *params = &rtwvif->tx_params[ac];
364
u32 edca_param = ac_to_edca_param[ac];
365
u8 ecw_max, ecw_min;
366
u8 aifs;
367
368
/* 2^ecw - 1 = cw; ecw = log2(cw + 1) */
369
ecw_max = ilog2(params->cw_max + 1);
370
ecw_min = ilog2(params->cw_min + 1);
371
aifs = rtw_aifsn_to_aifs(rtwdev, rtwvif, params->aifs);
372
rtw_write32_mask(rtwdev, edca_param, BIT_MASK_TXOP_LMT, params->txop);
373
rtw_write32_mask(rtwdev, edca_param, BIT_MASK_CWMAX, ecw_max);
374
rtw_write32_mask(rtwdev, edca_param, BIT_MASK_CWMIN, ecw_min);
375
rtw_write32_mask(rtwdev, edca_param, BIT_MASK_AIFS, aifs);
376
}
377
378
static void rtw_conf_tx(struct rtw_dev *rtwdev,
379
struct rtw_vif *rtwvif)
380
{
381
u16 ac;
382
383
for (ac = 0; ac < IEEE80211_NUM_ACS; ac++)
384
__rtw_conf_tx(rtwdev, rtwvif, ac);
385
}
386
387
static void rtw_ops_bss_info_changed(struct ieee80211_hw *hw,
388
struct ieee80211_vif *vif,
389
struct ieee80211_bss_conf *conf,
390
u64 changed)
391
{
392
struct rtw_dev *rtwdev = hw->priv;
393
struct rtw_vif *rtwvif = (struct rtw_vif *)vif->drv_priv;
394
struct rtw_coex *coex = &rtwdev->coex;
395
struct rtw_coex_stat *coex_stat = &coex->stat;
396
u32 config = 0;
397
398
mutex_lock(&rtwdev->mutex);
399
400
rtw_leave_lps_deep(rtwdev);
401
402
if (changed & BSS_CHANGED_ASSOC) {
403
rtw_vif_assoc_changed(rtwvif, conf);
404
if (vif->cfg.assoc) {
405
rtw_coex_connect_notify(rtwdev, COEX_ASSOCIATE_FINISH);
406
407
rtw_fw_download_rsvd_page(rtwdev);
408
rtw_send_rsvd_page_h2c(rtwdev);
409
rtw_fw_default_port(rtwdev, rtwvif);
410
rtw_coex_media_status_notify(rtwdev, vif->cfg.assoc);
411
if (rtw_bf_support)
412
rtw_bf_assoc(rtwdev, vif, conf);
413
414
rtw_set_ampdu_factor(rtwdev, vif, conf);
415
416
rtw_fw_beacon_filter_config(rtwdev, true, vif);
417
} else {
418
rtw_leave_lps(rtwdev);
419
rtw_bf_disassoc(rtwdev, vif, conf);
420
/* Abort ongoing scan if cancel_scan isn't issued
421
* when disconnected by peer
422
*/
423
if (test_bit(RTW_FLAG_SCANNING, rtwdev->flags))
424
rtw_hw_scan_abort(rtwdev);
425
426
}
427
428
config |= PORT_SET_NET_TYPE;
429
config |= PORT_SET_AID;
430
}
431
432
if (changed & BSS_CHANGED_BSSID) {
433
ether_addr_copy(rtwvif->bssid, conf->bssid);
434
config |= PORT_SET_BSSID;
435
if (!rtw_core_check_sta_active(rtwdev))
436
rtw_clear_op_chan(rtwdev);
437
else
438
rtw_store_op_chan(rtwdev, true);
439
}
440
441
if (changed & BSS_CHANGED_BEACON_INT) {
442
if (ieee80211_vif_type_p2p(vif) == NL80211_IFTYPE_STATION)
443
coex_stat->wl_beacon_interval = conf->beacon_int;
444
}
445
446
if (changed & BSS_CHANGED_BEACON) {
447
rtw_set_dtim_period(rtwdev, conf->dtim_period);
448
rtw_fw_download_rsvd_page(rtwdev);
449
rtw_send_rsvd_page_h2c(rtwdev);
450
}
451
452
if (changed & BSS_CHANGED_BEACON_ENABLED) {
453
if (conf->enable_beacon)
454
rtw_write32_set(rtwdev, REG_FWHW_TXQ_CTRL,
455
BIT_EN_BCNQ_DL);
456
else
457
rtw_write32_clr(rtwdev, REG_FWHW_TXQ_CTRL,
458
BIT_EN_BCNQ_DL);
459
}
460
if (changed & BSS_CHANGED_CQM)
461
rtw_fw_beacon_filter_config(rtwdev, true, vif);
462
463
if (changed & BSS_CHANGED_MU_GROUPS)
464
rtw_chip_set_gid_table(rtwdev, vif, conf);
465
466
if (changed & BSS_CHANGED_ERP_SLOT)
467
rtw_conf_tx(rtwdev, rtwvif);
468
469
if (changed & BSS_CHANGED_PS)
470
rtw_recalc_lps(rtwdev, NULL);
471
472
rtw_vif_port_config(rtwdev, rtwvif, config);
473
474
mutex_unlock(&rtwdev->mutex);
475
}
476
477
static int rtw_ops_start_ap(struct ieee80211_hw *hw,
478
struct ieee80211_vif *vif,
479
struct ieee80211_bss_conf *link_conf)
480
{
481
struct rtw_dev *rtwdev = hw->priv;
482
const struct rtw_chip_info *chip = rtwdev->chip;
483
484
mutex_lock(&rtwdev->mutex);
485
rtw_write32_set(rtwdev, REG_TCR, BIT_TCR_UPDATE_HGQMD);
486
rtwdev->ap_active = true;
487
rtw_store_op_chan(rtwdev, true);
488
chip->ops->phy_calibration(rtwdev);
489
mutex_unlock(&rtwdev->mutex);
490
491
return 0;
492
}
493
494
static void rtw_ops_stop_ap(struct ieee80211_hw *hw,
495
struct ieee80211_vif *vif,
496
struct ieee80211_bss_conf *link_conf)
497
{
498
struct rtw_dev *rtwdev = hw->priv;
499
500
mutex_lock(&rtwdev->mutex);
501
rtw_write32_clr(rtwdev, REG_TCR, BIT_TCR_UPDATE_HGQMD);
502
rtwdev->ap_active = false;
503
if (!rtw_core_check_sta_active(rtwdev))
504
rtw_clear_op_chan(rtwdev);
505
mutex_unlock(&rtwdev->mutex);
506
}
507
508
static int rtw_ops_conf_tx(struct ieee80211_hw *hw,
509
struct ieee80211_vif *vif,
510
unsigned int link_id, u16 ac,
511
const struct ieee80211_tx_queue_params *params)
512
{
513
struct rtw_dev *rtwdev = hw->priv;
514
struct rtw_vif *rtwvif = (struct rtw_vif *)vif->drv_priv;
515
516
mutex_lock(&rtwdev->mutex);
517
518
rtw_leave_lps_deep(rtwdev);
519
520
rtwvif->tx_params[ac] = *params;
521
__rtw_conf_tx(rtwdev, rtwvif, ac);
522
523
mutex_unlock(&rtwdev->mutex);
524
525
return 0;
526
}
527
528
static int rtw_ops_sta_add(struct ieee80211_hw *hw,
529
struct ieee80211_vif *vif,
530
struct ieee80211_sta *sta)
531
{
532
struct rtw_dev *rtwdev = hw->priv;
533
int ret = 0;
534
535
mutex_lock(&rtwdev->mutex);
536
ret = rtw_sta_add(rtwdev, sta, vif);
537
mutex_unlock(&rtwdev->mutex);
538
539
return ret;
540
}
541
542
static int rtw_ops_sta_remove(struct ieee80211_hw *hw,
543
struct ieee80211_vif *vif,
544
struct ieee80211_sta *sta)
545
{
546
struct rtw_dev *rtwdev = hw->priv;
547
548
mutex_lock(&rtwdev->mutex);
549
rtw_fw_beacon_filter_config(rtwdev, false, vif);
550
rtw_sta_remove(rtwdev, sta, true);
551
mutex_unlock(&rtwdev->mutex);
552
553
return 0;
554
}
555
556
static int rtw_ops_set_tim(struct ieee80211_hw *hw, struct ieee80211_sta *sta,
557
bool set)
558
{
559
struct rtw_dev *rtwdev = hw->priv;
560
561
ieee80211_queue_work(hw, &rtwdev->update_beacon_work);
562
563
return 0;
564
}
565
566
static int rtw_ops_set_key(struct ieee80211_hw *hw, enum set_key_cmd cmd,
567
struct ieee80211_vif *vif, struct ieee80211_sta *sta,
568
struct ieee80211_key_conf *key)
569
{
570
struct rtw_dev *rtwdev = hw->priv;
571
struct rtw_sec_desc *sec = &rtwdev->sec;
572
u8 hw_key_type;
573
u8 hw_key_idx;
574
int ret = 0;
575
576
switch (key->cipher) {
577
case WLAN_CIPHER_SUITE_WEP40:
578
hw_key_type = RTW_CAM_WEP40;
579
break;
580
case WLAN_CIPHER_SUITE_WEP104:
581
hw_key_type = RTW_CAM_WEP104;
582
break;
583
case WLAN_CIPHER_SUITE_TKIP:
584
hw_key_type = RTW_CAM_TKIP;
585
key->flags |= IEEE80211_KEY_FLAG_GENERATE_MMIC;
586
break;
587
case WLAN_CIPHER_SUITE_CCMP:
588
hw_key_type = RTW_CAM_AES;
589
key->flags |= IEEE80211_KEY_FLAG_SW_MGMT_TX;
590
break;
591
case WLAN_CIPHER_SUITE_AES_CMAC:
592
case WLAN_CIPHER_SUITE_BIP_CMAC_256:
593
case WLAN_CIPHER_SUITE_BIP_GMAC_128:
594
case WLAN_CIPHER_SUITE_BIP_GMAC_256:
595
case WLAN_CIPHER_SUITE_CCMP_256:
596
case WLAN_CIPHER_SUITE_GCMP:
597
case WLAN_CIPHER_SUITE_GCMP_256:
598
/* suppress error messages */
599
return -EOPNOTSUPP;
600
default:
601
return -ENOTSUPP;
602
}
603
604
mutex_lock(&rtwdev->mutex);
605
606
rtw_leave_lps_deep(rtwdev);
607
608
if (key->flags & IEEE80211_KEY_FLAG_PAIRWISE) {
609
hw_key_idx = rtw_sec_get_free_cam(sec);
610
} else {
611
/* multiple interfaces? */
612
hw_key_idx = key->keyidx;
613
}
614
615
if (hw_key_idx > sec->total_cam_num) {
616
ret = -ENOSPC;
617
goto out;
618
}
619
620
switch (cmd) {
621
case SET_KEY:
622
/* need sw generated IV */
623
key->flags |= IEEE80211_KEY_FLAG_GENERATE_IV;
624
key->hw_key_idx = hw_key_idx;
625
rtw_sec_write_cam(rtwdev, sec, sta, key,
626
hw_key_type, hw_key_idx);
627
break;
628
case DISABLE_KEY:
629
rtw_hci_flush_all_queues(rtwdev, false);
630
rtw_mac_flush_all_queues(rtwdev, false);
631
rtw_sec_clear_cam(rtwdev, sec, key->hw_key_idx);
632
break;
633
}
634
635
/* download new cam settings for PG to backup */
636
if (rtw_get_lps_deep_mode(rtwdev) == LPS_DEEP_MODE_PG)
637
rtw_fw_download_rsvd_page(rtwdev);
638
639
out:
640
mutex_unlock(&rtwdev->mutex);
641
642
return ret;
643
}
644
645
static int rtw_ops_ampdu_action(struct ieee80211_hw *hw,
646
struct ieee80211_vif *vif,
647
struct ieee80211_ampdu_params *params)
648
{
649
struct ieee80211_sta *sta = params->sta;
650
u16 tid = params->tid;
651
struct ieee80211_txq *txq = sta->txq[tid];
652
struct rtw_txq *rtwtxq = (struct rtw_txq *)txq->drv_priv;
653
654
switch (params->action) {
655
case IEEE80211_AMPDU_TX_START:
656
return IEEE80211_AMPDU_TX_START_IMMEDIATE;
657
case IEEE80211_AMPDU_TX_STOP_CONT:
658
case IEEE80211_AMPDU_TX_STOP_FLUSH:
659
case IEEE80211_AMPDU_TX_STOP_FLUSH_CONT:
660
clear_bit(RTW_TXQ_AMPDU, &rtwtxq->flags);
661
ieee80211_stop_tx_ba_cb_irqsafe(vif, sta->addr, tid);
662
break;
663
case IEEE80211_AMPDU_TX_OPERATIONAL:
664
set_bit(RTW_TXQ_AMPDU, &rtwtxq->flags);
665
break;
666
case IEEE80211_AMPDU_RX_START:
667
case IEEE80211_AMPDU_RX_STOP:
668
break;
669
default:
670
WARN_ON(1);
671
return -ENOTSUPP;
672
}
673
674
return 0;
675
}
676
677
static bool rtw_ops_can_aggregate_in_amsdu(struct ieee80211_hw *hw,
678
struct sk_buff *head,
679
struct sk_buff *skb)
680
{
681
struct rtw_dev *rtwdev = hw->priv;
682
struct rtw_hal *hal = &rtwdev->hal;
683
684
/* we don't want to enable TX AMSDU on 2.4G */
685
if (hal->current_band_type == RTW_BAND_2G)
686
return false;
687
688
return true;
689
}
690
691
static void rtw_ops_sw_scan_start(struct ieee80211_hw *hw,
692
struct ieee80211_vif *vif,
693
const u8 *mac_addr)
694
{
695
struct rtw_dev *rtwdev = hw->priv;
696
struct rtw_vif *rtwvif = (struct rtw_vif *)vif->drv_priv;
697
698
mutex_lock(&rtwdev->mutex);
699
rtw_core_scan_start(rtwdev, rtwvif, mac_addr, false);
700
mutex_unlock(&rtwdev->mutex);
701
}
702
703
static void rtw_ops_sw_scan_complete(struct ieee80211_hw *hw,
704
struct ieee80211_vif *vif)
705
{
706
struct rtw_dev *rtwdev = hw->priv;
707
708
mutex_lock(&rtwdev->mutex);
709
rtw_core_scan_complete(rtwdev, vif, false);
710
mutex_unlock(&rtwdev->mutex);
711
}
712
713
static void rtw_ops_mgd_prepare_tx(struct ieee80211_hw *hw,
714
struct ieee80211_vif *vif,
715
struct ieee80211_prep_tx_info *info)
716
{
717
struct rtw_dev *rtwdev = hw->priv;
718
719
mutex_lock(&rtwdev->mutex);
720
rtw_leave_lps_deep(rtwdev);
721
rtw_coex_connect_notify(rtwdev, COEX_ASSOCIATE_START);
722
rtw_chip_prepare_tx(rtwdev);
723
mutex_unlock(&rtwdev->mutex);
724
}
725
726
static int rtw_ops_set_rts_threshold(struct ieee80211_hw *hw, int radio_idx,
727
u32 value)
728
{
729
struct rtw_dev *rtwdev = hw->priv;
730
731
mutex_lock(&rtwdev->mutex);
732
rtwdev->rts_threshold = value;
733
mutex_unlock(&rtwdev->mutex);
734
735
return 0;
736
}
737
738
static void rtw_ops_sta_statistics(struct ieee80211_hw *hw,
739
struct ieee80211_vif *vif,
740
struct ieee80211_sta *sta,
741
struct station_info *sinfo)
742
{
743
struct rtw_sta_info *si = (struct rtw_sta_info *)sta->drv_priv;
744
745
sinfo->txrate = si->ra_report.txrate;
746
sinfo->filled |= BIT_ULL(NL80211_STA_INFO_TX_BITRATE);
747
}
748
749
static void rtw_ops_flush(struct ieee80211_hw *hw,
750
struct ieee80211_vif *vif,
751
u32 queues, bool drop)
752
{
753
struct rtw_dev *rtwdev = hw->priv;
754
755
mutex_lock(&rtwdev->mutex);
756
rtw_leave_lps_deep(rtwdev);
757
758
rtw_hci_flush_queues(rtwdev, queues, drop);
759
rtw_mac_flush_queues(rtwdev, queues, drop);
760
mutex_unlock(&rtwdev->mutex);
761
}
762
763
struct rtw_iter_bitrate_mask_data {
764
struct rtw_dev *rtwdev;
765
struct ieee80211_vif *vif;
766
const struct cfg80211_bitrate_mask *mask;
767
};
768
769
static void rtw_ra_mask_info_update_iter(void *data, struct ieee80211_sta *sta)
770
{
771
struct rtw_iter_bitrate_mask_data *br_data = data;
772
struct rtw_sta_info *si = (struct rtw_sta_info *)sta->drv_priv;
773
774
if (si->vif != br_data->vif)
775
return;
776
777
/* free previous mask setting */
778
kfree(si->mask);
779
si->mask = kmemdup(br_data->mask, sizeof(struct cfg80211_bitrate_mask),
780
GFP_ATOMIC);
781
if (!si->mask) {
782
si->use_cfg_mask = false;
783
return;
784
}
785
786
si->use_cfg_mask = true;
787
rtw_update_sta_info(br_data->rtwdev, si, true);
788
}
789
790
static void rtw_ra_mask_info_update(struct rtw_dev *rtwdev,
791
struct ieee80211_vif *vif,
792
const struct cfg80211_bitrate_mask *mask)
793
{
794
struct rtw_iter_bitrate_mask_data br_data;
795
796
br_data.rtwdev = rtwdev;
797
br_data.vif = vif;
798
br_data.mask = mask;
799
rtw_iterate_stas(rtwdev, rtw_ra_mask_info_update_iter, &br_data);
800
}
801
802
static int rtw_ops_set_bitrate_mask(struct ieee80211_hw *hw,
803
struct ieee80211_vif *vif,
804
const struct cfg80211_bitrate_mask *mask)
805
{
806
struct rtw_dev *rtwdev = hw->priv;
807
808
mutex_lock(&rtwdev->mutex);
809
rtw_ra_mask_info_update(rtwdev, vif, mask);
810
mutex_unlock(&rtwdev->mutex);
811
812
return 0;
813
}
814
815
static int rtw_ops_set_antenna(struct ieee80211_hw *hw,
816
int radio_idx,
817
u32 tx_antenna,
818
u32 rx_antenna)
819
{
820
struct rtw_dev *rtwdev = hw->priv;
821
const struct rtw_chip_info *chip = rtwdev->chip;
822
int ret;
823
824
if (!chip->ops->set_antenna)
825
return -EOPNOTSUPP;
826
827
mutex_lock(&rtwdev->mutex);
828
ret = chip->ops->set_antenna(rtwdev, -1, tx_antenna, rx_antenna);
829
mutex_unlock(&rtwdev->mutex);
830
831
return ret;
832
}
833
834
static int rtw_ops_get_antenna(struct ieee80211_hw *hw,
835
int radio_idx,
836
u32 *tx_antenna,
837
u32 *rx_antenna)
838
{
839
struct rtw_dev *rtwdev = hw->priv;
840
struct rtw_hal *hal = &rtwdev->hal;
841
842
*tx_antenna = hal->antenna_tx;
843
*rx_antenna = hal->antenna_rx;
844
845
return 0;
846
}
847
848
#ifdef CONFIG_PM
849
static int rtw_ops_suspend(struct ieee80211_hw *hw,
850
struct cfg80211_wowlan *wowlan)
851
{
852
struct rtw_dev *rtwdev = hw->priv;
853
int ret;
854
855
mutex_lock(&rtwdev->mutex);
856
ret = rtw_wow_suspend(rtwdev, wowlan);
857
if (ret)
858
rtw_err(rtwdev, "failed to suspend for wow %d\n", ret);
859
mutex_unlock(&rtwdev->mutex);
860
861
return ret ? 1 : 0;
862
}
863
864
static int rtw_ops_resume(struct ieee80211_hw *hw)
865
{
866
struct rtw_dev *rtwdev = hw->priv;
867
int ret;
868
869
mutex_lock(&rtwdev->mutex);
870
ret = rtw_wow_resume(rtwdev);
871
if (ret)
872
rtw_err(rtwdev, "failed to resume for wow %d\n", ret);
873
mutex_unlock(&rtwdev->mutex);
874
875
return ret ? 1 : 0;
876
}
877
878
static void rtw_ops_set_wakeup(struct ieee80211_hw *hw, bool enabled)
879
{
880
struct rtw_dev *rtwdev = hw->priv;
881
882
device_set_wakeup_enable(rtwdev->dev, enabled);
883
}
884
#endif
885
886
static void rtw_reconfig_complete(struct ieee80211_hw *hw,
887
enum ieee80211_reconfig_type reconfig_type)
888
{
889
struct rtw_dev *rtwdev = hw->priv;
890
891
mutex_lock(&rtwdev->mutex);
892
if (reconfig_type == IEEE80211_RECONFIG_TYPE_RESTART)
893
clear_bit(RTW_FLAG_RESTARTING, rtwdev->flags);
894
mutex_unlock(&rtwdev->mutex);
895
}
896
897
static int rtw_ops_hw_scan(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
898
struct ieee80211_scan_request *req)
899
{
900
struct rtw_dev *rtwdev = hw->priv;
901
int ret;
902
903
if (!rtw_fw_feature_check(&rtwdev->fw, FW_FEATURE_SCAN_OFFLOAD))
904
return 1;
905
906
if (test_bit(RTW_FLAG_SCANNING, rtwdev->flags))
907
return -EBUSY;
908
909
mutex_lock(&rtwdev->mutex);
910
rtw_hw_scan_start(rtwdev, vif, req);
911
ret = rtw_hw_scan_offload(rtwdev, vif, true);
912
if (ret) {
913
rtw_hw_scan_abort(rtwdev);
914
rtw_err(rtwdev, "HW scan failed with status: %d\n", ret);
915
}
916
mutex_unlock(&rtwdev->mutex);
917
918
return ret;
919
}
920
921
static void rtw_ops_cancel_hw_scan(struct ieee80211_hw *hw,
922
struct ieee80211_vif *vif)
923
{
924
struct rtw_dev *rtwdev = hw->priv;
925
926
if (!rtw_fw_feature_check(&rtwdev->fw, FW_FEATURE_SCAN_OFFLOAD))
927
return;
928
929
if (!test_bit(RTW_FLAG_SCANNING, rtwdev->flags))
930
return;
931
932
mutex_lock(&rtwdev->mutex);
933
rtw_hw_scan_abort(rtwdev);
934
mutex_unlock(&rtwdev->mutex);
935
}
936
937
static int rtw_ops_set_sar_specs(struct ieee80211_hw *hw,
938
const struct cfg80211_sar_specs *sar)
939
{
940
struct rtw_dev *rtwdev = hw->priv;
941
942
mutex_lock(&rtwdev->mutex);
943
rtw_set_sar_specs(rtwdev, sar);
944
mutex_unlock(&rtwdev->mutex);
945
946
return 0;
947
}
948
949
static void rtw_ops_sta_rc_update(struct ieee80211_hw *hw,
950
struct ieee80211_vif *vif,
951
struct ieee80211_link_sta *link_sta,
952
u32 changed)
953
{
954
struct ieee80211_sta *sta = link_sta->sta;
955
struct rtw_dev *rtwdev = hw->priv;
956
struct rtw_sta_info *si = (struct rtw_sta_info *)sta->drv_priv;
957
958
if (changed & IEEE80211_RC_BW_CHANGED)
959
ieee80211_queue_work(rtwdev->hw, &si->rc_work);
960
}
961
962
const struct ieee80211_ops rtw_ops = {
963
.add_chanctx = ieee80211_emulate_add_chanctx,
964
.remove_chanctx = ieee80211_emulate_remove_chanctx,
965
.change_chanctx = ieee80211_emulate_change_chanctx,
966
.switch_vif_chanctx = ieee80211_emulate_switch_vif_chanctx,
967
.tx = rtw_ops_tx,
968
.wake_tx_queue = rtw_ops_wake_tx_queue,
969
.start = rtw_ops_start,
970
.stop = rtw_ops_stop,
971
.config = rtw_ops_config,
972
.add_interface = rtw_ops_add_interface,
973
.remove_interface = rtw_ops_remove_interface,
974
.change_interface = rtw_ops_change_interface,
975
.configure_filter = rtw_ops_configure_filter,
976
.bss_info_changed = rtw_ops_bss_info_changed,
977
.start_ap = rtw_ops_start_ap,
978
.stop_ap = rtw_ops_stop_ap,
979
.conf_tx = rtw_ops_conf_tx,
980
.sta_add = rtw_ops_sta_add,
981
.sta_remove = rtw_ops_sta_remove,
982
.set_tim = rtw_ops_set_tim,
983
.set_key = rtw_ops_set_key,
984
.ampdu_action = rtw_ops_ampdu_action,
985
.can_aggregate_in_amsdu = rtw_ops_can_aggregate_in_amsdu,
986
.sw_scan_start = rtw_ops_sw_scan_start,
987
.sw_scan_complete = rtw_ops_sw_scan_complete,
988
.mgd_prepare_tx = rtw_ops_mgd_prepare_tx,
989
.set_rts_threshold = rtw_ops_set_rts_threshold,
990
.sta_statistics = rtw_ops_sta_statistics,
991
.flush = rtw_ops_flush,
992
.set_bitrate_mask = rtw_ops_set_bitrate_mask,
993
.set_antenna = rtw_ops_set_antenna,
994
.get_antenna = rtw_ops_get_antenna,
995
.reconfig_complete = rtw_reconfig_complete,
996
.hw_scan = rtw_ops_hw_scan,
997
.cancel_hw_scan = rtw_ops_cancel_hw_scan,
998
.link_sta_rc_update = rtw_ops_sta_rc_update,
999
.set_sar_specs = rtw_ops_set_sar_specs,
1000
#ifdef CONFIG_PM
1001
.suspend = rtw_ops_suspend,
1002
.resume = rtw_ops_resume,
1003
.set_wakeup = rtw_ops_set_wakeup,
1004
#endif
1005
};
1006
EXPORT_SYMBOL(rtw_ops);
1007
1008