xref: /openbmc/linux/net/mac80211/debugfs_sta.c (revision 901b5732)
1 /*
2  * Copyright 2003-2005	Devicescape Software, Inc.
3  * Copyright (c) 2006	Jiri Benc <jbenc@suse.cz>
4  * Copyright 2007	Johannes Berg <johannes@sipsolutions.net>
5  * Copyright 2013-2014  Intel Mobile Communications GmbH
6  * Copyright(c) 2016 Intel Deutschland GmbH
7  * Copyright (C) 2018 - 2019 Intel Corporation
8  *
9  * This program is free software; you can redistribute it and/or modify
10  * it under the terms of the GNU General Public License version 2 as
11  * published by the Free Software Foundation.
12  */
13 
14 #include <linux/debugfs.h>
15 #include <linux/ieee80211.h>
16 #include "ieee80211_i.h"
17 #include "debugfs.h"
18 #include "debugfs_sta.h"
19 #include "sta_info.h"
20 #include "driver-ops.h"
21 
22 /* sta attributtes */
23 
24 #define STA_READ(name, field, format_string)				\
25 static ssize_t sta_ ##name## _read(struct file *file,			\
26 				   char __user *userbuf,		\
27 				   size_t count, loff_t *ppos)		\
28 {									\
29 	struct sta_info *sta = file->private_data;			\
30 	return mac80211_format_buffer(userbuf, count, ppos, 		\
31 				      format_string, sta->field);	\
32 }
33 #define STA_READ_D(name, field) STA_READ(name, field, "%d\n")
34 
35 #define STA_OPS(name)							\
36 static const struct file_operations sta_ ##name## _ops = {		\
37 	.read = sta_##name##_read,					\
38 	.open = simple_open,						\
39 	.llseek = generic_file_llseek,					\
40 }
41 
42 #define STA_OPS_RW(name)						\
43 static const struct file_operations sta_ ##name## _ops = {		\
44 	.read = sta_##name##_read,					\
45 	.write = sta_##name##_write,					\
46 	.open = simple_open,						\
47 	.llseek = generic_file_llseek,					\
48 }
49 
50 #define STA_FILE(name, field, format)					\
51 		STA_READ_##format(name, field)				\
52 		STA_OPS(name)
53 
54 STA_FILE(aid, sta.aid, D);
55 
56 static const char * const sta_flag_names[] = {
57 #define FLAG(F) [WLAN_STA_##F] = #F
58 	FLAG(AUTH),
59 	FLAG(ASSOC),
60 	FLAG(PS_STA),
61 	FLAG(AUTHORIZED),
62 	FLAG(SHORT_PREAMBLE),
63 	FLAG(WDS),
64 	FLAG(CLEAR_PS_FILT),
65 	FLAG(MFP),
66 	FLAG(BLOCK_BA),
67 	FLAG(PS_DRIVER),
68 	FLAG(PSPOLL),
69 	FLAG(TDLS_PEER),
70 	FLAG(TDLS_PEER_AUTH),
71 	FLAG(TDLS_INITIATOR),
72 	FLAG(TDLS_CHAN_SWITCH),
73 	FLAG(TDLS_OFF_CHANNEL),
74 	FLAG(TDLS_WIDER_BW),
75 	FLAG(UAPSD),
76 	FLAG(SP),
77 	FLAG(4ADDR_EVENT),
78 	FLAG(INSERTED),
79 	FLAG(RATE_CONTROL),
80 	FLAG(TOFFSET_KNOWN),
81 	FLAG(MPSP_OWNER),
82 	FLAG(MPSP_RECIPIENT),
83 	FLAG(PS_DELIVER),
84 #undef FLAG
85 };
86 
87 static ssize_t sta_flags_read(struct file *file, char __user *userbuf,
88 			      size_t count, loff_t *ppos)
89 {
90 	char buf[16 * NUM_WLAN_STA_FLAGS], *pos = buf;
91 	char *end = buf + sizeof(buf) - 1;
92 	struct sta_info *sta = file->private_data;
93 	unsigned int flg;
94 
95 	BUILD_BUG_ON(ARRAY_SIZE(sta_flag_names) != NUM_WLAN_STA_FLAGS);
96 
97 	for (flg = 0; flg < NUM_WLAN_STA_FLAGS; flg++) {
98 		if (test_sta_flag(sta, flg))
99 			pos += scnprintf(pos, end - pos, "%s\n",
100 					 sta_flag_names[flg]);
101 	}
102 
103 	return simple_read_from_buffer(userbuf, count, ppos, buf, strlen(buf));
104 }
105 STA_OPS(flags);
106 
107 static ssize_t sta_num_ps_buf_frames_read(struct file *file,
108 					  char __user *userbuf,
109 					  size_t count, loff_t *ppos)
110 {
111 	struct sta_info *sta = file->private_data;
112 	char buf[17*IEEE80211_NUM_ACS], *p = buf;
113 	int ac;
114 
115 	for (ac = 0; ac < IEEE80211_NUM_ACS; ac++)
116 		p += scnprintf(p, sizeof(buf)+buf-p, "AC%d: %d\n", ac,
117 			       skb_queue_len(&sta->ps_tx_buf[ac]) +
118 			       skb_queue_len(&sta->tx_filtered[ac]));
119 	return simple_read_from_buffer(userbuf, count, ppos, buf, p - buf);
120 }
121 STA_OPS(num_ps_buf_frames);
122 
123 static ssize_t sta_last_seq_ctrl_read(struct file *file, char __user *userbuf,
124 				      size_t count, loff_t *ppos)
125 {
126 	char buf[15*IEEE80211_NUM_TIDS], *p = buf;
127 	int i;
128 	struct sta_info *sta = file->private_data;
129 	for (i = 0; i < IEEE80211_NUM_TIDS; i++)
130 		p += scnprintf(p, sizeof(buf)+buf-p, "%x ",
131 			       le16_to_cpu(sta->last_seq_ctrl[i]));
132 	p += scnprintf(p, sizeof(buf)+buf-p, "\n");
133 	return simple_read_from_buffer(userbuf, count, ppos, buf, p - buf);
134 }
135 STA_OPS(last_seq_ctrl);
136 
137 #define AQM_TXQ_ENTRY_LEN 130
138 
139 static ssize_t sta_aqm_read(struct file *file, char __user *userbuf,
140 			size_t count, loff_t *ppos)
141 {
142 	struct sta_info *sta = file->private_data;
143 	struct ieee80211_local *local = sta->local;
144 	size_t bufsz = AQM_TXQ_ENTRY_LEN * (IEEE80211_NUM_TIDS + 2);
145 	char *buf = kzalloc(bufsz, GFP_KERNEL), *p = buf;
146 	struct txq_info *txqi;
147 	ssize_t rv;
148 	int i;
149 
150 	if (!buf)
151 		return -ENOMEM;
152 
153 	spin_lock_bh(&local->fq.lock);
154 	rcu_read_lock();
155 
156 	p += scnprintf(p,
157 		       bufsz+buf-p,
158 		       "target %uus interval %uus ecn %s\n",
159 		       codel_time_to_us(sta->cparams.target),
160 		       codel_time_to_us(sta->cparams.interval),
161 		       sta->cparams.ecn ? "yes" : "no");
162 	p += scnprintf(p,
163 		       bufsz+buf-p,
164 		       "tid ac backlog-bytes backlog-packets new-flows drops marks overlimit collisions tx-bytes tx-packets flags\n");
165 
166 	for (i = 0; i < ARRAY_SIZE(sta->sta.txq); i++) {
167 		if (!sta->sta.txq[i])
168 			continue;
169 		txqi = to_txq_info(sta->sta.txq[i]);
170 		p += scnprintf(p, bufsz+buf-p,
171 			       "%d %d %u %u %u %u %u %u %u %u %u 0x%lx(%s%s%s)\n",
172 			       txqi->txq.tid,
173 			       txqi->txq.ac,
174 			       txqi->tin.backlog_bytes,
175 			       txqi->tin.backlog_packets,
176 			       txqi->tin.flows,
177 			       txqi->cstats.drop_count,
178 			       txqi->cstats.ecn_mark,
179 			       txqi->tin.overlimit,
180 			       txqi->tin.collisions,
181 			       txqi->tin.tx_bytes,
182 			       txqi->tin.tx_packets,
183 			       txqi->flags,
184 			       test_bit(IEEE80211_TXQ_STOP, &txqi->flags) ? "STOP" : "RUN",
185 			       test_bit(IEEE80211_TXQ_AMPDU, &txqi->flags) ? " AMPDU" : "",
186 			       test_bit(IEEE80211_TXQ_NO_AMSDU, &txqi->flags) ? " NO-AMSDU" : "");
187 	}
188 
189 	rcu_read_unlock();
190 	spin_unlock_bh(&local->fq.lock);
191 
192 	rv = simple_read_from_buffer(userbuf, count, ppos, buf, p - buf);
193 	kfree(buf);
194 	return rv;
195 }
196 STA_OPS(aqm);
197 
198 static ssize_t sta_airtime_read(struct file *file, char __user *userbuf,
199 				size_t count, loff_t *ppos)
200 {
201 	struct sta_info *sta = file->private_data;
202 	struct ieee80211_local *local = sta->sdata->local;
203 	size_t bufsz = 200;
204 	char *buf = kzalloc(bufsz, GFP_KERNEL), *p = buf;
205 	u64 rx_airtime = 0, tx_airtime = 0;
206 	s64 deficit[IEEE80211_NUM_ACS];
207 	ssize_t rv;
208 	int ac;
209 
210 	if (!buf)
211 		return -ENOMEM;
212 
213 	for (ac = 0; ac < IEEE80211_NUM_ACS; ac++) {
214 		spin_lock_bh(&local->active_txq_lock[ac]);
215 		rx_airtime += sta->airtime[ac].rx_airtime;
216 		tx_airtime += sta->airtime[ac].tx_airtime;
217 		deficit[ac] = sta->airtime[ac].deficit;
218 		spin_unlock_bh(&local->active_txq_lock[ac]);
219 	}
220 
221 	p += scnprintf(p, bufsz + buf - p,
222 		"RX: %llu us\nTX: %llu us\nWeight: %u\n"
223 		"Deficit: VO: %lld us VI: %lld us BE: %lld us BK: %lld us\n",
224 		rx_airtime,
225 		tx_airtime,
226 		sta->airtime_weight,
227 		deficit[0],
228 		deficit[1],
229 		deficit[2],
230 		deficit[3]);
231 
232 	rv = simple_read_from_buffer(userbuf, count, ppos, buf, p - buf);
233 	kfree(buf);
234 	return rv;
235 }
236 
237 static ssize_t sta_airtime_write(struct file *file, const char __user *userbuf,
238 				 size_t count, loff_t *ppos)
239 {
240 	struct sta_info *sta = file->private_data;
241 	struct ieee80211_local *local = sta->sdata->local;
242 	int ac;
243 
244 	for (ac = 0; ac < IEEE80211_NUM_ACS; ac++) {
245 		spin_lock_bh(&local->active_txq_lock[ac]);
246 		sta->airtime[ac].rx_airtime = 0;
247 		sta->airtime[ac].tx_airtime = 0;
248 		sta->airtime[ac].deficit = sta->airtime_weight;
249 		spin_unlock_bh(&local->active_txq_lock[ac]);
250 	}
251 
252 	return count;
253 }
254 STA_OPS_RW(airtime);
255 
256 static ssize_t sta_agg_status_read(struct file *file, char __user *userbuf,
257 					size_t count, loff_t *ppos)
258 {
259 	char buf[71 + IEEE80211_NUM_TIDS * 40], *p = buf;
260 	int i;
261 	struct sta_info *sta = file->private_data;
262 	struct tid_ampdu_rx *tid_rx;
263 	struct tid_ampdu_tx *tid_tx;
264 
265 	rcu_read_lock();
266 
267 	p += scnprintf(p, sizeof(buf) + buf - p, "next dialog_token: %#02x\n",
268 			sta->ampdu_mlme.dialog_token_allocator + 1);
269 	p += scnprintf(p, sizeof(buf) + buf - p,
270 		       "TID\t\tRX\tDTKN\tSSN\t\tTX\tDTKN\tpending\n");
271 
272 	for (i = 0; i < IEEE80211_NUM_TIDS; i++) {
273 		bool tid_rx_valid;
274 
275 		tid_rx = rcu_dereference(sta->ampdu_mlme.tid_rx[i]);
276 		tid_tx = rcu_dereference(sta->ampdu_mlme.tid_tx[i]);
277 		tid_rx_valid = test_bit(i, sta->ampdu_mlme.agg_session_valid);
278 
279 		p += scnprintf(p, sizeof(buf) + buf - p, "%02d", i);
280 		p += scnprintf(p, sizeof(buf) + buf - p, "\t\t%x",
281 			       tid_rx_valid);
282 		p += scnprintf(p, sizeof(buf) + buf - p, "\t%#.2x",
283 			       tid_rx_valid ?
284 					sta->ampdu_mlme.tid_rx_token[i] : 0);
285 		p += scnprintf(p, sizeof(buf) + buf - p, "\t%#.3x",
286 				tid_rx ? tid_rx->ssn : 0);
287 
288 		p += scnprintf(p, sizeof(buf) + buf - p, "\t\t%x", !!tid_tx);
289 		p += scnprintf(p, sizeof(buf) + buf - p, "\t%#.2x",
290 				tid_tx ? tid_tx->dialog_token : 0);
291 		p += scnprintf(p, sizeof(buf) + buf - p, "\t%03d",
292 				tid_tx ? skb_queue_len(&tid_tx->pending) : 0);
293 		p += scnprintf(p, sizeof(buf) + buf - p, "\n");
294 	}
295 	rcu_read_unlock();
296 
297 	return simple_read_from_buffer(userbuf, count, ppos, buf, p - buf);
298 }
299 
300 static ssize_t sta_agg_status_write(struct file *file, const char __user *userbuf,
301 				    size_t count, loff_t *ppos)
302 {
303 	char _buf[25] = {}, *buf = _buf;
304 	struct sta_info *sta = file->private_data;
305 	bool start, tx;
306 	unsigned long tid;
307 	char *pos;
308 	int ret, timeout = 5000;
309 
310 	if (count > sizeof(_buf))
311 		return -EINVAL;
312 
313 	if (copy_from_user(buf, userbuf, count))
314 		return -EFAULT;
315 
316 	buf[sizeof(_buf) - 1] = '\0';
317 	pos = buf;
318 	buf = strsep(&pos, " ");
319 	if (!buf)
320 		return -EINVAL;
321 
322 	if (!strcmp(buf, "tx"))
323 		tx = true;
324 	else if (!strcmp(buf, "rx"))
325 		tx = false;
326 	else
327 		return -EINVAL;
328 
329 	buf = strsep(&pos, " ");
330 	if (!buf)
331 		return -EINVAL;
332 	if (!strcmp(buf, "start")) {
333 		start = true;
334 		if (!tx)
335 			return -EINVAL;
336 	} else if (!strcmp(buf, "stop")) {
337 		start = false;
338 	} else {
339 		return -EINVAL;
340 	}
341 
342 	buf = strsep(&pos, " ");
343 	if (!buf)
344 		return -EINVAL;
345 	if (sscanf(buf, "timeout=%d", &timeout) == 1) {
346 		buf = strsep(&pos, " ");
347 		if (!buf || !tx || !start)
348 			return -EINVAL;
349 	}
350 
351 	ret = kstrtoul(buf, 0, &tid);
352 	if (ret || tid >= IEEE80211_NUM_TIDS)
353 		return -EINVAL;
354 
355 	if (tx) {
356 		if (start)
357 			ret = ieee80211_start_tx_ba_session(&sta->sta, tid,
358 							    timeout);
359 		else
360 			ret = ieee80211_stop_tx_ba_session(&sta->sta, tid);
361 	} else {
362 		__ieee80211_stop_rx_ba_session(sta, tid, WLAN_BACK_RECIPIENT,
363 					       3, true);
364 		ret = 0;
365 	}
366 
367 	return ret ?: count;
368 }
369 STA_OPS_RW(agg_status);
370 
371 static ssize_t sta_ht_capa_read(struct file *file, char __user *userbuf,
372 				size_t count, loff_t *ppos)
373 {
374 #define PRINT_HT_CAP(_cond, _str) \
375 	do { \
376 	if (_cond) \
377 			p += scnprintf(p, sizeof(buf)+buf-p, "\t" _str "\n"); \
378 	} while (0)
379 	char buf[512], *p = buf;
380 	int i;
381 	struct sta_info *sta = file->private_data;
382 	struct ieee80211_sta_ht_cap *htc = &sta->sta.ht_cap;
383 
384 	p += scnprintf(p, sizeof(buf) + buf - p, "ht %ssupported\n",
385 			htc->ht_supported ? "" : "not ");
386 	if (htc->ht_supported) {
387 		p += scnprintf(p, sizeof(buf)+buf-p, "cap: %#.4x\n", htc->cap);
388 
389 		PRINT_HT_CAP((htc->cap & BIT(0)), "RX LDPC");
390 		PRINT_HT_CAP((htc->cap & BIT(1)), "HT20/HT40");
391 		PRINT_HT_CAP(!(htc->cap & BIT(1)), "HT20");
392 
393 		PRINT_HT_CAP(((htc->cap >> 2) & 0x3) == 0, "Static SM Power Save");
394 		PRINT_HT_CAP(((htc->cap >> 2) & 0x3) == 1, "Dynamic SM Power Save");
395 		PRINT_HT_CAP(((htc->cap >> 2) & 0x3) == 3, "SM Power Save disabled");
396 
397 		PRINT_HT_CAP((htc->cap & BIT(4)), "RX Greenfield");
398 		PRINT_HT_CAP((htc->cap & BIT(5)), "RX HT20 SGI");
399 		PRINT_HT_CAP((htc->cap & BIT(6)), "RX HT40 SGI");
400 		PRINT_HT_CAP((htc->cap & BIT(7)), "TX STBC");
401 
402 		PRINT_HT_CAP(((htc->cap >> 8) & 0x3) == 0, "No RX STBC");
403 		PRINT_HT_CAP(((htc->cap >> 8) & 0x3) == 1, "RX STBC 1-stream");
404 		PRINT_HT_CAP(((htc->cap >> 8) & 0x3) == 2, "RX STBC 2-streams");
405 		PRINT_HT_CAP(((htc->cap >> 8) & 0x3) == 3, "RX STBC 3-streams");
406 
407 		PRINT_HT_CAP((htc->cap & BIT(10)), "HT Delayed Block Ack");
408 
409 		PRINT_HT_CAP(!(htc->cap & BIT(11)), "Max AMSDU length: "
410 			     "3839 bytes");
411 		PRINT_HT_CAP((htc->cap & BIT(11)), "Max AMSDU length: "
412 			     "7935 bytes");
413 
414 		/*
415 		 * For beacons and probe response this would mean the BSS
416 		 * does or does not allow the usage of DSSS/CCK HT40.
417 		 * Otherwise it means the STA does or does not use
418 		 * DSSS/CCK HT40.
419 		 */
420 		PRINT_HT_CAP((htc->cap & BIT(12)), "DSSS/CCK HT40");
421 		PRINT_HT_CAP(!(htc->cap & BIT(12)), "No DSSS/CCK HT40");
422 
423 		/* BIT(13) is reserved */
424 
425 		PRINT_HT_CAP((htc->cap & BIT(14)), "40 MHz Intolerant");
426 
427 		PRINT_HT_CAP((htc->cap & BIT(15)), "L-SIG TXOP protection");
428 
429 		p += scnprintf(p, sizeof(buf)+buf-p, "ampdu factor/density: %d/%d\n",
430 				htc->ampdu_factor, htc->ampdu_density);
431 		p += scnprintf(p, sizeof(buf)+buf-p, "MCS mask:");
432 
433 		for (i = 0; i < IEEE80211_HT_MCS_MASK_LEN; i++)
434 			p += scnprintf(p, sizeof(buf)+buf-p, " %.2x",
435 					htc->mcs.rx_mask[i]);
436 		p += scnprintf(p, sizeof(buf)+buf-p, "\n");
437 
438 		/* If not set this is meaningless */
439 		if (le16_to_cpu(htc->mcs.rx_highest)) {
440 			p += scnprintf(p, sizeof(buf)+buf-p,
441 				       "MCS rx highest: %d Mbps\n",
442 				       le16_to_cpu(htc->mcs.rx_highest));
443 		}
444 
445 		p += scnprintf(p, sizeof(buf)+buf-p, "MCS tx params: %x\n",
446 				htc->mcs.tx_params);
447 	}
448 
449 	return simple_read_from_buffer(userbuf, count, ppos, buf, p - buf);
450 }
451 STA_OPS(ht_capa);
452 
453 static ssize_t sta_vht_capa_read(struct file *file, char __user *userbuf,
454 				 size_t count, loff_t *ppos)
455 {
456 	char buf[512], *p = buf;
457 	struct sta_info *sta = file->private_data;
458 	struct ieee80211_sta_vht_cap *vhtc = &sta->sta.vht_cap;
459 
460 	p += scnprintf(p, sizeof(buf) + buf - p, "VHT %ssupported\n",
461 			vhtc->vht_supported ? "" : "not ");
462 	if (vhtc->vht_supported) {
463 		p += scnprintf(p, sizeof(buf) + buf - p, "cap: %#.8x\n",
464 			       vhtc->cap);
465 #define PFLAG(a, b)							\
466 		do {							\
467 			if (vhtc->cap & IEEE80211_VHT_CAP_ ## a)	\
468 				p += scnprintf(p, sizeof(buf) + buf - p, \
469 					       "\t\t%s\n", b);		\
470 		} while (0)
471 
472 		switch (vhtc->cap & 0x3) {
473 		case IEEE80211_VHT_CAP_MAX_MPDU_LENGTH_3895:
474 			p += scnprintf(p, sizeof(buf) + buf - p,
475 				       "\t\tMAX-MPDU-3895\n");
476 			break;
477 		case IEEE80211_VHT_CAP_MAX_MPDU_LENGTH_7991:
478 			p += scnprintf(p, sizeof(buf) + buf - p,
479 				       "\t\tMAX-MPDU-7991\n");
480 			break;
481 		case IEEE80211_VHT_CAP_MAX_MPDU_LENGTH_11454:
482 			p += scnprintf(p, sizeof(buf) + buf - p,
483 				       "\t\tMAX-MPDU-11454\n");
484 			break;
485 		default:
486 			p += scnprintf(p, sizeof(buf) + buf - p,
487 				       "\t\tMAX-MPDU-UNKNOWN\n");
488 		}
489 		switch (vhtc->cap & IEEE80211_VHT_CAP_SUPP_CHAN_WIDTH_MASK) {
490 		case 0:
491 			p += scnprintf(p, sizeof(buf) + buf - p,
492 				       "\t\t80Mhz\n");
493 			break;
494 		case IEEE80211_VHT_CAP_SUPP_CHAN_WIDTH_160MHZ:
495 			p += scnprintf(p, sizeof(buf) + buf - p,
496 				       "\t\t160Mhz\n");
497 			break;
498 		case IEEE80211_VHT_CAP_SUPP_CHAN_WIDTH_160_80PLUS80MHZ:
499 			p += scnprintf(p, sizeof(buf) + buf - p,
500 				       "\t\t80+80Mhz\n");
501 			break;
502 		default:
503 			p += scnprintf(p, sizeof(buf) + buf - p,
504 				       "\t\tUNKNOWN-MHZ: 0x%x\n",
505 				       (vhtc->cap >> 2) & 0x3);
506 		}
507 		PFLAG(RXLDPC, "RXLDPC");
508 		PFLAG(SHORT_GI_80, "SHORT-GI-80");
509 		PFLAG(SHORT_GI_160, "SHORT-GI-160");
510 		PFLAG(TXSTBC, "TXSTBC");
511 		p += scnprintf(p, sizeof(buf) + buf - p,
512 			       "\t\tRXSTBC_%d\n", (vhtc->cap >> 8) & 0x7);
513 		PFLAG(SU_BEAMFORMER_CAPABLE, "SU-BEAMFORMER-CAPABLE");
514 		PFLAG(SU_BEAMFORMEE_CAPABLE, "SU-BEAMFORMEE-CAPABLE");
515 		p += scnprintf(p, sizeof(buf) + buf - p,
516 			"\t\tBEAMFORMEE-STS: 0x%x\n",
517 			(vhtc->cap & IEEE80211_VHT_CAP_BEAMFORMEE_STS_MASK) >>
518 			IEEE80211_VHT_CAP_BEAMFORMEE_STS_SHIFT);
519 		p += scnprintf(p, sizeof(buf) + buf - p,
520 			"\t\tSOUNDING-DIMENSIONS: 0x%x\n",
521 			(vhtc->cap & IEEE80211_VHT_CAP_SOUNDING_DIMENSIONS_MASK)
522 			>> IEEE80211_VHT_CAP_SOUNDING_DIMENSIONS_SHIFT);
523 		PFLAG(MU_BEAMFORMER_CAPABLE, "MU-BEAMFORMER-CAPABLE");
524 		PFLAG(MU_BEAMFORMEE_CAPABLE, "MU-BEAMFORMEE-CAPABLE");
525 		PFLAG(VHT_TXOP_PS, "TXOP-PS");
526 		PFLAG(HTC_VHT, "HTC-VHT");
527 		p += scnprintf(p, sizeof(buf) + buf - p,
528 			"\t\tMPDU-LENGTH-EXPONENT: 0x%x\n",
529 			(vhtc->cap & IEEE80211_VHT_CAP_MAX_A_MPDU_LENGTH_EXPONENT_MASK) >>
530 			IEEE80211_VHT_CAP_MAX_A_MPDU_LENGTH_EXPONENT_SHIFT);
531 		PFLAG(VHT_LINK_ADAPTATION_VHT_UNSOL_MFB,
532 		      "LINK-ADAPTATION-VHT-UNSOL-MFB");
533 		p += scnprintf(p, sizeof(buf) + buf - p,
534 			"\t\tLINK-ADAPTATION-VHT-MRQ-MFB: 0x%x\n",
535 			(vhtc->cap & IEEE80211_VHT_CAP_VHT_LINK_ADAPTATION_VHT_MRQ_MFB) >> 26);
536 		PFLAG(RX_ANTENNA_PATTERN, "RX-ANTENNA-PATTERN");
537 		PFLAG(TX_ANTENNA_PATTERN, "TX-ANTENNA-PATTERN");
538 
539 		p += scnprintf(p, sizeof(buf)+buf-p, "RX MCS: %.4x\n",
540 			       le16_to_cpu(vhtc->vht_mcs.rx_mcs_map));
541 		if (vhtc->vht_mcs.rx_highest)
542 			p += scnprintf(p, sizeof(buf)+buf-p,
543 				       "MCS RX highest: %d Mbps\n",
544 				       le16_to_cpu(vhtc->vht_mcs.rx_highest));
545 		p += scnprintf(p, sizeof(buf)+buf-p, "TX MCS: %.4x\n",
546 			       le16_to_cpu(vhtc->vht_mcs.tx_mcs_map));
547 		if (vhtc->vht_mcs.tx_highest)
548 			p += scnprintf(p, sizeof(buf)+buf-p,
549 				       "MCS TX highest: %d Mbps\n",
550 				       le16_to_cpu(vhtc->vht_mcs.tx_highest));
551 #undef PFLAG
552 	}
553 
554 	return simple_read_from_buffer(userbuf, count, ppos, buf, p - buf);
555 }
556 STA_OPS(vht_capa);
557 
558 static ssize_t sta_he_capa_read(struct file *file, char __user *userbuf,
559 				size_t count, loff_t *ppos)
560 {
561 	char *buf, *p;
562 	size_t buf_sz = PAGE_SIZE;
563 	struct sta_info *sta = file->private_data;
564 	struct ieee80211_sta_he_cap *hec = &sta->sta.he_cap;
565 	struct ieee80211_he_mcs_nss_supp *nss = &hec->he_mcs_nss_supp;
566 	u8 ppe_size;
567 	u8 *cap;
568 	int i;
569 	ssize_t ret;
570 
571 	buf = kmalloc(buf_sz, GFP_KERNEL);
572 	if (!buf)
573 		return -ENOMEM;
574 	p = buf;
575 
576 	p += scnprintf(p, buf_sz + buf - p, "HE %ssupported\n",
577 		       hec->has_he ? "" : "not ");
578 	if (!hec->has_he)
579 		goto out;
580 
581 	cap = hec->he_cap_elem.mac_cap_info;
582 	p += scnprintf(p, buf_sz + buf - p,
583 		       "MAC-CAP: %#.2x %#.2x %#.2x %#.2x %#.2x %#.2x\n",
584 		       cap[0], cap[1], cap[2], cap[3], cap[4], cap[5]);
585 
586 #define PRINT(fmt, ...)							\
587 	p += scnprintf(p, buf_sz + buf - p, "\t\t" fmt "\n",		\
588 		       ##__VA_ARGS__)
589 
590 #define PFLAG(t, n, a, b)						\
591 	do {								\
592 		if (cap[n] & IEEE80211_HE_##t##_CAP##n##_##a)		\
593 			PRINT("%s", b);					\
594 	} while (0)
595 
596 #define PFLAG_RANGE(t, i, n, s, m, off, fmt)				\
597 	do {								\
598 		u8 msk = IEEE80211_HE_##t##_CAP##i##_##n##_MASK;	\
599 		u8 idx = ((cap[i] & msk) >> (ffs(msk) - 1)) + off;	\
600 		PRINT(fmt, (s << idx) + (m * idx));			\
601 	} while (0)
602 
603 #define PFLAG_RANGE_DEFAULT(t, i, n, s, m, off, fmt, a, b)		\
604 	do {								\
605 		if (cap[i] == IEEE80211_HE_##t ##_CAP##i##_##n##_##a) {	\
606 			PRINT("%s", b);					\
607 			break;						\
608 		}							\
609 		PFLAG_RANGE(t, i, n, s, m, off, fmt);			\
610 	} while (0)
611 
612 	PFLAG(MAC, 0, HTC_HE, "HTC-HE");
613 	PFLAG(MAC, 0, TWT_REQ, "TWT-REQ");
614 	PFLAG(MAC, 0, TWT_RES, "TWT-RES");
615 	PFLAG_RANGE_DEFAULT(MAC, 0, DYNAMIC_FRAG, 0, 1, 0,
616 			    "DYNAMIC-FRAG-LEVEL-%d", NOT_SUPP, "NOT-SUPP");
617 	PFLAG_RANGE_DEFAULT(MAC, 0, MAX_NUM_FRAG_MSDU, 1, 0, 0,
618 			    "MAX-NUM-FRAG-MSDU-%d", UNLIMITED, "UNLIMITED");
619 
620 	PFLAG_RANGE_DEFAULT(MAC, 1, MIN_FRAG_SIZE, 128, 0, -1,
621 			    "MIN-FRAG-SIZE-%d", UNLIMITED, "UNLIMITED");
622 	PFLAG_RANGE_DEFAULT(MAC, 1, TF_MAC_PAD_DUR, 0, 8, 0,
623 			    "TF-MAC-PAD-DUR-%dUS", MASK, "UNKNOWN");
624 	PFLAG_RANGE(MAC, 1, MULTI_TID_AGG_RX_QOS, 0, 1, 1,
625 		    "MULTI-TID-AGG-RX-QOS-%d");
626 
627 	if (cap[0] & IEEE80211_HE_MAC_CAP0_HTC_HE) {
628 		switch (((cap[2] << 1) | (cap[1] >> 7)) & 0x3) {
629 		case 0:
630 			PRINT("LINK-ADAPTATION-NO-FEEDBACK");
631 			break;
632 		case 1:
633 			PRINT("LINK-ADAPTATION-RESERVED");
634 			break;
635 		case 2:
636 			PRINT("LINK-ADAPTATION-UNSOLICITED-FEEDBACK");
637 			break;
638 		case 3:
639 			PRINT("LINK-ADAPTATION-BOTH");
640 			break;
641 		}
642 	}
643 
644 	PFLAG(MAC, 2, ALL_ACK, "ALL-ACK");
645 	PFLAG(MAC, 2, TRS, "TRS");
646 	PFLAG(MAC, 2, BSR, "BSR");
647 	PFLAG(MAC, 2, BCAST_TWT, "BCAST-TWT");
648 	PFLAG(MAC, 2, 32BIT_BA_BITMAP, "32BIT-BA-BITMAP");
649 	PFLAG(MAC, 2, MU_CASCADING, "MU-CASCADING");
650 	PFLAG(MAC, 2, ACK_EN, "ACK-EN");
651 
652 	PFLAG(MAC, 3, OMI_CONTROL, "OMI-CONTROL");
653 	PFLAG(MAC, 3, OFDMA_RA, "OFDMA-RA");
654 
655 	switch (cap[3] & IEEE80211_HE_MAC_CAP3_MAX_AMPDU_LEN_EXP_MASK) {
656 	case IEEE80211_HE_MAC_CAP3_MAX_AMPDU_LEN_EXP_USE_VHT:
657 		PRINT("MAX-AMPDU-LEN-EXP-USE-VHT");
658 		break;
659 	case IEEE80211_HE_MAC_CAP3_MAX_AMPDU_LEN_EXP_VHT_1:
660 		PRINT("MAX-AMPDU-LEN-EXP-VHT-1");
661 		break;
662 	case IEEE80211_HE_MAC_CAP3_MAX_AMPDU_LEN_EXP_VHT_2:
663 		PRINT("MAX-AMPDU-LEN-EXP-VHT-2");
664 		break;
665 	case IEEE80211_HE_MAC_CAP3_MAX_AMPDU_LEN_EXP_RESERVED:
666 		PRINT("MAX-AMPDU-LEN-EXP-RESERVED");
667 		break;
668 	}
669 
670 	PFLAG(MAC, 3, AMSDU_FRAG, "AMSDU-FRAG");
671 	PFLAG(MAC, 3, FLEX_TWT_SCHED, "FLEX-TWT-SCHED");
672 	PFLAG(MAC, 3, RX_CTRL_FRAME_TO_MULTIBSS, "RX-CTRL-FRAME-TO-MULTIBSS");
673 
674 	PFLAG(MAC, 4, BSRP_BQRP_A_MPDU_AGG, "BSRP-BQRP-A-MPDU-AGG");
675 	PFLAG(MAC, 4, QTP, "QTP");
676 	PFLAG(MAC, 4, BQR, "BQR");
677 	PFLAG(MAC, 4, SRP_RESP, "SRP-RESP");
678 	PFLAG(MAC, 4, NDP_FB_REP, "NDP-FB-REP");
679 	PFLAG(MAC, 4, OPS, "OPS");
680 	PFLAG(MAC, 4, AMDSU_IN_AMPDU, "AMSDU-IN-AMPDU");
681 
682 	PRINT("MULTI-TID-AGG-TX-QOS-%d", ((cap[5] << 1) | (cap[4] >> 7)) & 0x7);
683 
684 	PFLAG(MAC, 5, SUBCHAN_SELECVITE_TRANSMISSION,
685 	      "SUBCHAN-SELECVITE-TRANSMISSION");
686 	PFLAG(MAC, 5, UL_2x996_TONE_RU, "UL-2x996-TONE-RU");
687 	PFLAG(MAC, 5, OM_CTRL_UL_MU_DATA_DIS_RX, "OM-CTRL-UL-MU-DATA-DIS-RX");
688 	PFLAG(MAC, 5, HE_DYNAMIC_SM_PS, "HE-DYNAMIC-SM-PS");
689 	PFLAG(MAC, 5, PUNCTURED_SOUNDING, "PUNCTURED-SOUNDING");
690 	PFLAG(MAC, 5, HT_VHT_TRIG_FRAME_RX, "HT-VHT-TRIG-FRAME-RX");
691 
692 	cap = hec->he_cap_elem.phy_cap_info;
693 	p += scnprintf(p, buf_sz + buf - p,
694 		       "PHY CAP: %#.2x %#.2x %#.2x %#.2x %#.2x %#.2x %#.2x %#.2x %#.2x %#.2x %#.2x\n",
695 		       cap[0], cap[1], cap[2], cap[3], cap[4], cap[5], cap[6],
696 		       cap[7], cap[8], cap[9], cap[10]);
697 
698 	PFLAG(PHY, 0, CHANNEL_WIDTH_SET_40MHZ_IN_2G,
699 	      "CHANNEL-WIDTH-SET-40MHZ-IN-2G");
700 	PFLAG(PHY, 0, CHANNEL_WIDTH_SET_40MHZ_80MHZ_IN_5G,
701 	      "CHANNEL-WIDTH-SET-40MHZ-80MHZ-IN-5G");
702 	PFLAG(PHY, 0, CHANNEL_WIDTH_SET_160MHZ_IN_5G,
703 	      "CHANNEL-WIDTH-SET-160MHZ-IN-5G");
704 	PFLAG(PHY, 0, CHANNEL_WIDTH_SET_80PLUS80_MHZ_IN_5G,
705 	      "CHANNEL-WIDTH-SET-80PLUS80-MHZ-IN-5G");
706 	PFLAG(PHY, 0, CHANNEL_WIDTH_SET_RU_MAPPING_IN_2G,
707 	      "CHANNEL-WIDTH-SET-RU-MAPPING-IN-2G");
708 	PFLAG(PHY, 0, CHANNEL_WIDTH_SET_RU_MAPPING_IN_5G,
709 	      "CHANNEL-WIDTH-SET-RU-MAPPING-IN-5G");
710 
711 	switch (cap[1] & IEEE80211_HE_PHY_CAP1_PREAMBLE_PUNC_RX_MASK) {
712 	case IEEE80211_HE_PHY_CAP1_PREAMBLE_PUNC_RX_80MHZ_ONLY_SECOND_20MHZ:
713 		PRINT("PREAMBLE-PUNC-RX-80MHZ-ONLY-SECOND-20MHZ");
714 		break;
715 	case IEEE80211_HE_PHY_CAP1_PREAMBLE_PUNC_RX_80MHZ_ONLY_SECOND_40MHZ:
716 		PRINT("PREAMBLE-PUNC-RX-80MHZ-ONLY-SECOND-40MHZ");
717 		break;
718 	case IEEE80211_HE_PHY_CAP1_PREAMBLE_PUNC_RX_160MHZ_ONLY_SECOND_20MHZ:
719 		PRINT("PREAMBLE-PUNC-RX-160MHZ-ONLY-SECOND-20MHZ");
720 		break;
721 	case IEEE80211_HE_PHY_CAP1_PREAMBLE_PUNC_RX_160MHZ_ONLY_SECOND_40MHZ:
722 		PRINT("PREAMBLE-PUNC-RX-160MHZ-ONLY-SECOND-40MHZ");
723 		break;
724 	}
725 
726 	PFLAG(PHY, 1, DEVICE_CLASS_A,
727 	      "IEEE80211-HE-PHY-CAP1-DEVICE-CLASS-A");
728 	PFLAG(PHY, 1, LDPC_CODING_IN_PAYLOAD,
729 	      "LDPC-CODING-IN-PAYLOAD");
730 	PFLAG(PHY, 1, HE_LTF_AND_GI_FOR_HE_PPDUS_0_8US,
731 	      "HY-CAP1-HE-LTF-AND-GI-FOR-HE-PPDUS-0-8US");
732 	PRINT("MIDAMBLE-RX-MAX-NSTS-%d", ((cap[2] << 1) | (cap[1] >> 7)) & 0x3);
733 
734 	PFLAG(PHY, 2, NDP_4x_LTF_AND_3_2US, "NDP-4X-LTF-AND-3-2US");
735 	PFLAG(PHY, 2, STBC_TX_UNDER_80MHZ, "STBC-TX-UNDER-80MHZ");
736 	PFLAG(PHY, 2, STBC_RX_UNDER_80MHZ, "STBC-RX-UNDER-80MHZ");
737 	PFLAG(PHY, 2, DOPPLER_TX, "DOPPLER-TX");
738 	PFLAG(PHY, 2, DOPPLER_RX, "DOPPLER-RX");
739 	PFLAG(PHY, 2, UL_MU_FULL_MU_MIMO, "UL-MU-FULL-MU-MIMO");
740 	PFLAG(PHY, 2, UL_MU_PARTIAL_MU_MIMO, "UL-MU-PARTIAL-MU-MIMO");
741 
742 	switch (cap[3] & IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_TX_MASK) {
743 	case IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_TX_NO_DCM:
744 		PRINT("DCM-MAX-CONST-TX-NO-DCM");
745 		break;
746 	case IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_TX_BPSK:
747 		PRINT("DCM-MAX-CONST-TX-BPSK");
748 		break;
749 	case IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_TX_QPSK:
750 		PRINT("DCM-MAX-CONST-TX-QPSK");
751 		break;
752 	case IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_TX_16_QAM:
753 		PRINT("DCM-MAX-CONST-TX-16-QAM");
754 		break;
755 	}
756 
757 	PFLAG(PHY, 3, DCM_MAX_TX_NSS_1, "DCM-MAX-TX-NSS-1");
758 	PFLAG(PHY, 3, DCM_MAX_TX_NSS_2, "DCM-MAX-TX-NSS-2");
759 
760 	switch (cap[3] & IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_RX_MASK) {
761 	case IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_RX_NO_DCM:
762 		PRINT("DCM-MAX-CONST-RX-NO-DCM");
763 		break;
764 	case IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_RX_BPSK:
765 		PRINT("DCM-MAX-CONST-RX-BPSK");
766 		break;
767 	case IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_RX_QPSK:
768 		PRINT("DCM-MAX-CONST-RX-QPSK");
769 		break;
770 	case IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_RX_16_QAM:
771 		PRINT("DCM-MAX-CONST-RX-16-QAM");
772 		break;
773 	}
774 
775 	PFLAG(PHY, 3, DCM_MAX_RX_NSS_1, "DCM-MAX-RX-NSS-1");
776 	PFLAG(PHY, 3, DCM_MAX_RX_NSS_2, "DCM-MAX-RX-NSS-2");
777 	PFLAG(PHY, 3, RX_HE_MU_PPDU_FROM_NON_AP_STA,
778 	      "RX-HE-MU-PPDU-FROM-NON-AP-STA");
779 	PFLAG(PHY, 3, SU_BEAMFORMER, "SU-BEAMFORMER");
780 
781 	PFLAG(PHY, 4, SU_BEAMFORMEE, "SU-BEAMFORMEE");
782 	PFLAG(PHY, 4, MU_BEAMFORMER, "MU-BEAMFORMER");
783 
784 	PFLAG_RANGE(PHY, 4, BEAMFORMEE_MAX_STS_UNDER_80MHZ, 0, 1, 4,
785 		    "BEAMFORMEE-MAX-STS-UNDER-%d");
786 	PFLAG_RANGE(PHY, 4, BEAMFORMEE_MAX_STS_ABOVE_80MHZ, 0, 1, 4,
787 		    "BEAMFORMEE-MAX-STS-ABOVE-%d");
788 
789 	PFLAG_RANGE(PHY, 5, BEAMFORMEE_NUM_SND_DIM_UNDER_80MHZ, 0, 1, 1,
790 		    "NUM-SND-DIM-UNDER-80MHZ-%d");
791 	PFLAG_RANGE(PHY, 5, BEAMFORMEE_NUM_SND_DIM_ABOVE_80MHZ, 0, 1, 1,
792 		    "NUM-SND-DIM-ABOVE-80MHZ-%d");
793 	PFLAG(PHY, 5, NG16_SU_FEEDBACK, "NG16-SU-FEEDBACK");
794 	PFLAG(PHY, 5, NG16_MU_FEEDBACK, "NG16-MU-FEEDBACK");
795 
796 	PFLAG(PHY, 6, CODEBOOK_SIZE_42_SU, "CODEBOOK-SIZE-42-SU");
797 	PFLAG(PHY, 6, CODEBOOK_SIZE_75_MU, "CODEBOOK-SIZE-75-MU");
798 	PFLAG(PHY, 6, TRIG_SU_BEAMFORMER_FB, "TRIG-SU-BEAMFORMER-FB");
799 	PFLAG(PHY, 6, TRIG_MU_BEAMFORMER_FB, "TRIG-MU-BEAMFORMER-FB");
800 	PFLAG(PHY, 6, TRIG_CQI_FB, "TRIG-CQI-FB");
801 	PFLAG(PHY, 6, PARTIAL_BW_EXT_RANGE, "PARTIAL-BW-EXT-RANGE");
802 	PFLAG(PHY, 6, PARTIAL_BANDWIDTH_DL_MUMIMO,
803 	      "PARTIAL-BANDWIDTH-DL-MUMIMO");
804 	PFLAG(PHY, 6, PPE_THRESHOLD_PRESENT, "PPE-THRESHOLD-PRESENT");
805 
806 	PFLAG(PHY, 7, SRP_BASED_SR, "SRP-BASED-SR");
807 	PFLAG(PHY, 7, POWER_BOOST_FACTOR_AR, "POWER-BOOST-FACTOR-AR");
808 	PFLAG(PHY, 7, HE_SU_MU_PPDU_4XLTF_AND_08_US_GI,
809 	      "HE-SU-MU-PPDU-4XLTF-AND-08-US-GI");
810 	PFLAG_RANGE(PHY, 7, MAX_NC, 0, 1, 1, "MAX-NC-%d");
811 	PFLAG(PHY, 7, STBC_TX_ABOVE_80MHZ, "STBC-TX-ABOVE-80MHZ");
812 	PFLAG(PHY, 7, STBC_RX_ABOVE_80MHZ, "STBC-RX-ABOVE-80MHZ");
813 
814 	PFLAG(PHY, 8, HE_ER_SU_PPDU_4XLTF_AND_08_US_GI,
815 	      "HE-ER-SU-PPDU-4XLTF-AND-08-US-GI");
816 	PFLAG(PHY, 8, 20MHZ_IN_40MHZ_HE_PPDU_IN_2G,
817 	      "20MHZ-IN-40MHZ-HE-PPDU-IN-2G");
818 	PFLAG(PHY, 8, 20MHZ_IN_160MHZ_HE_PPDU, "20MHZ-IN-160MHZ-HE-PPDU");
819 	PFLAG(PHY, 8, 80MHZ_IN_160MHZ_HE_PPDU, "80MHZ-IN-160MHZ-HE-PPDU");
820 	PFLAG(PHY, 8, HE_ER_SU_1XLTF_AND_08_US_GI,
821 	      "HE-ER-SU-1XLTF-AND-08-US-GI");
822 	PFLAG(PHY, 8, MIDAMBLE_RX_TX_2X_AND_1XLTF,
823 	      "MIDAMBLE-RX-TX-2X-AND-1XLTF");
824 
825 	switch (cap[8] & IEEE80211_HE_PHY_CAP8_DCM_MAX_RU_MASK) {
826 	case IEEE80211_HE_PHY_CAP8_DCM_MAX_RU_242:
827 		PRINT("DCM-MAX-RU-242");
828 		break;
829 	case IEEE80211_HE_PHY_CAP8_DCM_MAX_RU_484:
830 		PRINT("DCM-MAX-RU-484");
831 		break;
832 	case IEEE80211_HE_PHY_CAP8_DCM_MAX_RU_996:
833 		PRINT("DCM-MAX-RU-996");
834 		break;
835 	case IEEE80211_HE_PHY_CAP8_DCM_MAX_RU_2x996:
836 		PRINT("DCM-MAX-RU-2x996");
837 		break;
838 	}
839 
840 	PFLAG(PHY, 9, LONGER_THAN_16_SIGB_OFDM_SYM,
841 	      "LONGER-THAN-16-SIGB-OFDM-SYM");
842 	PFLAG(PHY, 9, NON_TRIGGERED_CQI_FEEDBACK,
843 	      "NON-TRIGGERED-CQI-FEEDBACK");
844 	PFLAG(PHY, 9, TX_1024_QAM_LESS_THAN_242_TONE_RU,
845 	      "TX-1024-QAM-LESS-THAN-242-TONE-RU");
846 	PFLAG(PHY, 9, RX_1024_QAM_LESS_THAN_242_TONE_RU,
847 	      "RX-1024-QAM-LESS-THAN-242-TONE-RU");
848 	PFLAG(PHY, 9, RX_FULL_BW_SU_USING_MU_WITH_COMP_SIGB,
849 	      "RX-FULL-BW-SU-USING-MU-WITH-COMP-SIGB");
850 	PFLAG(PHY, 9, RX_FULL_BW_SU_USING_MU_WITH_NON_COMP_SIGB,
851 	      "RX-FULL-BW-SU-USING-MU-WITH-NON-COMP-SIGB");
852 
853 	switch (cap[9] & IEEE80211_HE_PHY_CAP9_NOMIMAL_PKT_PADDING_MASK) {
854 	case IEEE80211_HE_PHY_CAP9_NOMIMAL_PKT_PADDING_0US:
855 		PRINT("NOMINAL-PACKET-PADDING-0US");
856 		break;
857 	case IEEE80211_HE_PHY_CAP9_NOMIMAL_PKT_PADDING_8US:
858 		PRINT("NOMINAL-PACKET-PADDING-8US");
859 		break;
860 	case IEEE80211_HE_PHY_CAP9_NOMIMAL_PKT_PADDING_16US:
861 		PRINT("NOMINAL-PACKET-PADDING-16US");
862 		break;
863 	}
864 
865 #undef PFLAG_RANGE_DEFAULT
866 #undef PFLAG_RANGE
867 #undef PFLAG
868 
869 #define PRINT_NSS_SUPP(f, n)						\
870 	do {								\
871 		int _i;							\
872 		u16 v = le16_to_cpu(nss->f);				\
873 		p += scnprintf(p, buf_sz + buf - p, n ": %#.4x\n", v);	\
874 		for (_i = 0; _i < 8; _i += 2) {				\
875 			switch ((v >> _i) & 0x3) {			\
876 			case 0:						\
877 				PRINT(n "-%d-SUPPORT-0-7", _i / 2);	\
878 				break;					\
879 			case 1:						\
880 				PRINT(n "-%d-SUPPORT-0-9", _i / 2);	\
881 				break;					\
882 			case 2:						\
883 				PRINT(n "-%d-SUPPORT-0-11", _i / 2);	\
884 				break;					\
885 			case 3:						\
886 				PRINT(n "-%d-NOT-SUPPORTED", _i / 2);	\
887 				break;					\
888 			}						\
889 		}							\
890 	} while (0)
891 
892 	PRINT_NSS_SUPP(rx_mcs_80, "RX-MCS-80");
893 	PRINT_NSS_SUPP(tx_mcs_80, "TX-MCS-80");
894 
895 	if (cap[0] & IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_160MHZ_IN_5G) {
896 		PRINT_NSS_SUPP(rx_mcs_160, "RX-MCS-160");
897 		PRINT_NSS_SUPP(tx_mcs_160, "TX-MCS-160");
898 	}
899 
900 	if (cap[0] &
901 	    IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_80PLUS80_MHZ_IN_5G) {
902 		PRINT_NSS_SUPP(rx_mcs_80p80, "RX-MCS-80P80");
903 		PRINT_NSS_SUPP(tx_mcs_80p80, "TX-MCS-80P80");
904 	}
905 
906 #undef PRINT_NSS_SUPP
907 #undef PRINT
908 
909 	if (!(cap[6] & IEEE80211_HE_PHY_CAP6_PPE_THRESHOLD_PRESENT))
910 		goto out;
911 
912 	p += scnprintf(p, buf_sz + buf - p, "PPE-THRESHOLDS: %#.2x",
913 		       hec->ppe_thres[0]);
914 
915 	ppe_size = ieee80211_he_ppe_size(hec->ppe_thres[0], cap);
916 	for (i = 1; i < ppe_size; i++) {
917 		p += scnprintf(p, buf_sz + buf - p, " %#.2x",
918 			       hec->ppe_thres[i]);
919 	}
920 	p += scnprintf(p, buf_sz + buf - p, "\n");
921 
922 out:
923 	ret = simple_read_from_buffer(userbuf, count, ppos, buf, p - buf);
924 	kfree(buf);
925 	return ret;
926 }
927 STA_OPS(he_capa);
928 
929 #define DEBUGFS_ADD(name) \
930 	debugfs_create_file(#name, 0400, \
931 		sta->debugfs_dir, sta, &sta_ ##name## _ops);
932 
933 #define DEBUGFS_ADD_COUNTER(name, field)				\
934 	if (sizeof(sta->field) == sizeof(u32))				\
935 		debugfs_create_u32(#name, 0400, sta->debugfs_dir,	\
936 			(u32 *) &sta->field);				\
937 	else								\
938 		debugfs_create_u64(#name, 0400, sta->debugfs_dir,	\
939 			(u64 *) &sta->field);
940 
941 void ieee80211_sta_debugfs_add(struct sta_info *sta)
942 {
943 	struct ieee80211_local *local = sta->local;
944 	struct ieee80211_sub_if_data *sdata = sta->sdata;
945 	struct dentry *stations_dir = sta->sdata->debugfs.subdir_stations;
946 	u8 mac[3*ETH_ALEN];
947 
948 	if (!stations_dir)
949 		return;
950 
951 	snprintf(mac, sizeof(mac), "%pM", sta->sta.addr);
952 
953 	/*
954 	 * This might fail due to a race condition:
955 	 * When mac80211 unlinks a station, the debugfs entries
956 	 * remain, but it is already possible to link a new
957 	 * station with the same address which triggers adding
958 	 * it to debugfs; therefore, if the old station isn't
959 	 * destroyed quickly enough the old station's debugfs
960 	 * dir might still be around.
961 	 */
962 	sta->debugfs_dir = debugfs_create_dir(mac, stations_dir);
963 	if (!sta->debugfs_dir)
964 		return;
965 
966 	DEBUGFS_ADD(flags);
967 	DEBUGFS_ADD(aid);
968 	DEBUGFS_ADD(num_ps_buf_frames);
969 	DEBUGFS_ADD(last_seq_ctrl);
970 	DEBUGFS_ADD(agg_status);
971 	DEBUGFS_ADD(ht_capa);
972 	DEBUGFS_ADD(vht_capa);
973 	DEBUGFS_ADD(he_capa);
974 
975 	DEBUGFS_ADD_COUNTER(rx_duplicates, rx_stats.num_duplicates);
976 	DEBUGFS_ADD_COUNTER(rx_fragments, rx_stats.fragments);
977 	DEBUGFS_ADD_COUNTER(tx_filtered, status_stats.filtered);
978 
979 	if (local->ops->wake_tx_queue)
980 		DEBUGFS_ADD(aqm);
981 
982 	if (wiphy_ext_feature_isset(local->hw.wiphy,
983 				    NL80211_EXT_FEATURE_AIRTIME_FAIRNESS))
984 		DEBUGFS_ADD(airtime);
985 
986 	if (sizeof(sta->driver_buffered_tids) == sizeof(u32))
987 		debugfs_create_x32("driver_buffered_tids", 0400,
988 				   sta->debugfs_dir,
989 				   (u32 *)&sta->driver_buffered_tids);
990 	else
991 		debugfs_create_x64("driver_buffered_tids", 0400,
992 				   sta->debugfs_dir,
993 				   (u64 *)&sta->driver_buffered_tids);
994 
995 	drv_sta_add_debugfs(local, sdata, &sta->sta, sta->debugfs_dir);
996 }
997 
998 void ieee80211_sta_debugfs_remove(struct sta_info *sta)
999 {
1000 	debugfs_remove_recursive(sta->debugfs_dir);
1001 	sta->debugfs_dir = NULL;
1002 }
1003