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update nl80211.h
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748f8489 1#include <ctype.h>
51e9bd80
JB
2#include <netlink/attr.h>
3#include <errno.h>
4#include <stdbool.h>
3d1e8704 5#include "iw.h"
f5f7b1d0 6#include "nl80211.h"
3d1e8704 7
febeb0c0 8void mac_addr_n2a(char *mac_addr, unsigned char *arg)
3d1e8704 9{
53e5ce7a 10 int i, l;
3d1e8704
LCC
11
12 l = 0;
13 for (i = 0; i < ETH_ALEN ; i++) {
14 if (i == 0) {
53e5ce7a 15 sprintf(mac_addr+l, "%02x", arg[i]);
3d1e8704
LCC
16 l += 2;
17 } else {
53e5ce7a 18 sprintf(mac_addr+l, ":%02x", arg[i]);
3d1e8704
LCC
19 l += 3;
20 }
21 }
3d1e8704
LCC
22}
23
24int mac_addr_a2n(unsigned char *mac_addr, char *arg)
25{
26 int i;
27
28 for (i = 0; i < ETH_ALEN ; i++) {
29 int temp;
30 char *cp = strchr(arg, ':');
31 if (cp) {
32 *cp = 0;
33 cp++;
34 }
35 if (sscanf(arg, "%x", &temp) != 1)
36 return -1;
37 if (temp < 0 || temp > 255)
38 return -1;
39
40 mac_addr[i] = temp;
41 if (!cp)
42 break;
43 arg = cp;
44 }
45 if (i < ETH_ALEN - 1)
46 return -1;
47
48 return 0;
49}
541ef425 50
3ff24563
JB
51int parse_hex_mask(char *hexmask, unsigned char **result, size_t *result_len,
52 unsigned char **mask)
236d4191 53{
3ff24563
JB
54 size_t len = strlen(hexmask) / 2;
55 unsigned char *result_val;
56 unsigned char *result_mask = NULL;
57
236d4191
JB
58 int pos = 0;
59
3ff24563 60 *result_len = 0;
236d4191 61
3ff24563
JB
62 result_val = calloc(len + 2, 1);
63 if (!result_val)
64 goto error;
65 *result = result_val;
66 if (mask) {
67 result_mask = calloc(DIV_ROUND_UP(len, 8) + 2, 1);
68 if (!result_mask)
69 goto error;
70 *mask = result_mask;
71 }
236d4191
JB
72
73 while (1) {
3ff24563 74 char *cp = strchr(hexmask, ':');
236d4191
JB
75 if (cp) {
76 *cp = 0;
77 cp++;
78 }
236d4191 79
3ff24563
JB
80 if (result_mask && (strcmp(hexmask, "-") == 0 ||
81 strcmp(hexmask, "xx") == 0 ||
82 strcmp(hexmask, "--") == 0)) {
83 /* skip this byte and leave mask bit unset */
84 } else {
85 int temp, mask_pos;
86 char *end;
87
88 temp = strtoul(hexmask, &end, 16);
89 if (*end)
90 goto error;
91 if (temp < 0 || temp > 255)
92 goto error;
93 result_val[pos] = temp;
94
95 mask_pos = pos / 8;
96 if (result_mask)
97 result_mask[mask_pos] |= 1 << (pos % 8);
98 }
99
100 (*result_len)++;
101 pos++;
236d4191 102
236d4191
JB
103 if (!cp)
104 break;
3ff24563 105 hexmask = cp;
236d4191
JB
106 }
107
3ff24563 108 return 0;
236d4191 109 error:
3ff24563
JB
110 free(result_val);
111 free(result_mask);
112 return -1;
113}
114
115unsigned char *parse_hex(char *hex, size_t *outlen)
116{
117 unsigned char *result;
118
119 if (parse_hex_mask(hex, &result, outlen, NULL))
120 return NULL;
121 return result;
236d4191
JB
122}
123
541ef425
JB
124static const char *ifmodes[NL80211_IFTYPE_MAX + 1] = {
125 "unspecified",
126 "IBSS",
34e78ed0 127 "managed",
541ef425 128 "AP",
34e78ed0 129 "AP/VLAN",
541ef425 130 "WDS",
34e78ed0 131 "monitor",
a4464243
JB
132 "mesh point",
133 "P2P-client",
134 "P2P-GO",
add40bbd 135 "P2P-device",
541ef425
JB
136};
137
138static char modebuf[100];
139
140const char *iftype_name(enum nl80211_iftype iftype)
141{
a66b3a35 142 if (iftype <= NL80211_IFTYPE_MAX && ifmodes[iftype])
541ef425
JB
143 return ifmodes[iftype];
144 sprintf(modebuf, "Unknown mode (%d)", iftype);
145 return modebuf;
146}
379f8397 147
9990c1e9 148static const char *commands[NL80211_CMD_MAX + 1] = {
02aef469
JB
149/*
150 * sed 's/^\tNL80211_CMD_//;t n;d;:n s%^\([^=]*\),.*%\t[NL80211_CMD_\1] = \"\L\1\",%;t;d' nl80211.h
151 */
152 [NL80211_CMD_UNSPEC] = "unspec",
06339499
JB
153 [NL80211_CMD_GET_WIPHY] = "get_wiphy",
154 [NL80211_CMD_SET_WIPHY] = "set_wiphy",
155 [NL80211_CMD_NEW_WIPHY] = "new_wiphy",
156 [NL80211_CMD_DEL_WIPHY] = "del_wiphy",
157 [NL80211_CMD_GET_INTERFACE] = "get_interface",
158 [NL80211_CMD_SET_INTERFACE] = "set_interface",
159 [NL80211_CMD_NEW_INTERFACE] = "new_interface",
160 [NL80211_CMD_DEL_INTERFACE] = "del_interface",
161 [NL80211_CMD_GET_KEY] = "get_key",
162 [NL80211_CMD_SET_KEY] = "set_key",
163 [NL80211_CMD_NEW_KEY] = "new_key",
164 [NL80211_CMD_DEL_KEY] = "del_key",
165 [NL80211_CMD_GET_BEACON] = "get_beacon",
166 [NL80211_CMD_SET_BEACON] = "set_beacon",
02aef469
JB
167 [NL80211_CMD_START_AP] = "start_ap",
168 [NL80211_CMD_STOP_AP] = "stop_ap",
06339499
JB
169 [NL80211_CMD_GET_STATION] = "get_station",
170 [NL80211_CMD_SET_STATION] = "set_station",
171 [NL80211_CMD_NEW_STATION] = "new_station",
172 [NL80211_CMD_DEL_STATION] = "del_station",
173 [NL80211_CMD_GET_MPATH] = "get_mpath",
174 [NL80211_CMD_SET_MPATH] = "set_mpath",
175 [NL80211_CMD_NEW_MPATH] = "new_mpath",
176 [NL80211_CMD_DEL_MPATH] = "del_mpath",
177 [NL80211_CMD_SET_BSS] = "set_bss",
178 [NL80211_CMD_SET_REG] = "set_reg",
02aef469
JB
179 [NL80211_CMD_REQ_SET_REG] = "req_set_reg",
180 [NL80211_CMD_GET_MESH_CONFIG] = "get_mesh_config",
181 [NL80211_CMD_SET_MESH_CONFIG] = "set_mesh_config",
06339499
JB
182 [NL80211_CMD_GET_REG] = "get_reg",
183 [NL80211_CMD_GET_SCAN] = "get_scan",
184 [NL80211_CMD_TRIGGER_SCAN] = "trigger_scan",
185 [NL80211_CMD_NEW_SCAN_RESULTS] = "new_scan_results",
186 [NL80211_CMD_SCAN_ABORTED] = "scan_aborted",
187 [NL80211_CMD_REG_CHANGE] = "reg_change",
188 [NL80211_CMD_AUTHENTICATE] = "authenticate",
189 [NL80211_CMD_ASSOCIATE] = "associate",
190 [NL80211_CMD_DEAUTHENTICATE] = "deauthenticate",
191 [NL80211_CMD_DISASSOCIATE] = "disassociate",
192 [NL80211_CMD_MICHAEL_MIC_FAILURE] = "michael_mic_failure",
193 [NL80211_CMD_REG_BEACON_HINT] = "reg_beacon_hint",
194 [NL80211_CMD_JOIN_IBSS] = "join_ibss",
195 [NL80211_CMD_LEAVE_IBSS] = "leave_ibss",
196 [NL80211_CMD_TESTMODE] = "testmode",
197 [NL80211_CMD_CONNECT] = "connect",
198 [NL80211_CMD_ROAM] = "roam",
199 [NL80211_CMD_DISCONNECT] = "disconnect",
200 [NL80211_CMD_SET_WIPHY_NETNS] = "set_wiphy_netns",
201 [NL80211_CMD_GET_SURVEY] = "get_survey",
02aef469 202 [NL80211_CMD_NEW_SURVEY_RESULTS] = "new_survey_results",
06339499
JB
203 [NL80211_CMD_SET_PMKSA] = "set_pmksa",
204 [NL80211_CMD_DEL_PMKSA] = "del_pmksa",
205 [NL80211_CMD_FLUSH_PMKSA] = "flush_pmksa",
206 [NL80211_CMD_REMAIN_ON_CHANNEL] = "remain_on_channel",
207 [NL80211_CMD_CANCEL_REMAIN_ON_CHANNEL] = "cancel_remain_on_channel",
208 [NL80211_CMD_SET_TX_BITRATE_MASK] = "set_tx_bitrate_mask",
02aef469
JB
209 [NL80211_CMD_REGISTER_FRAME] = "register_frame",
210 [NL80211_CMD_FRAME] = "frame",
211 [NL80211_CMD_FRAME_TX_STATUS] = "frame_tx_status",
212 [NL80211_CMD_SET_POWER_SAVE] = "set_power_save",
213 [NL80211_CMD_GET_POWER_SAVE] = "get_power_save",
214 [NL80211_CMD_SET_CQM] = "set_cqm",
215 [NL80211_CMD_NOTIFY_CQM] = "notify_cqm",
7b96e9e2 216 [NL80211_CMD_SET_CHANNEL] = "set_channel",
dcf57038
JB
217 [NL80211_CMD_SET_WDS_PEER] = "set_wds_peer",
218 [NL80211_CMD_FRAME_WAIT_CANCEL] = "frame_wait_cancel",
219 [NL80211_CMD_JOIN_MESH] = "join_mesh",
220 [NL80211_CMD_LEAVE_MESH] = "leave_mesh",
02aef469
JB
221 [NL80211_CMD_UNPROT_DEAUTHENTICATE] = "unprot_deauthenticate",
222 [NL80211_CMD_UNPROT_DISASSOCIATE] = "unprot_disassociate",
223 [NL80211_CMD_NEW_PEER_CANDIDATE] = "new_peer_candidate",
224 [NL80211_CMD_GET_WOWLAN] = "get_wowlan",
225 [NL80211_CMD_SET_WOWLAN] = "set_wowlan",
226 [NL80211_CMD_START_SCHED_SCAN] = "start_sched_scan",
227 [NL80211_CMD_STOP_SCHED_SCAN] = "stop_sched_scan",
228 [NL80211_CMD_SCHED_SCAN_RESULTS] = "sched_scan_results",
229 [NL80211_CMD_SCHED_SCAN_STOPPED] = "sched_scan_stopped",
850ab15d 230 [NL80211_CMD_SET_REKEY_OFFLOAD] = "set_rekey_offload",
02aef469
JB
231 [NL80211_CMD_PMKSA_CANDIDATE] = "pmksa_candidate",
232 [NL80211_CMD_TDLS_OPER] = "tdls_oper",
233 [NL80211_CMD_TDLS_MGMT] = "tdls_mgmt",
234 [NL80211_CMD_UNEXPECTED_FRAME] = "unexpected_frame",
235 [NL80211_CMD_PROBE_CLIENT] = "probe_client",
236 [NL80211_CMD_REGISTER_BEACONS] = "register_beacons",
237 [NL80211_CMD_UNEXPECTED_4ADDR_FRAME] = "unexpected_4addr_frame",
238 [NL80211_CMD_SET_NOACK_MAP] = "set_noack_map",
239 [NL80211_CMD_CH_SWITCH_NOTIFY] = "ch_switch_notify",
65d07957
JB
240 [NL80211_CMD_START_P2P_DEVICE] = "start_p2p_device",
241 [NL80211_CMD_STOP_P2P_DEVICE] = "stop_p2p_device",
242 [NL80211_CMD_CONN_FAILED] = "conn_failed",
9990c1e9
MH
243};
244
245static char cmdbuf[100];
246
247const char *command_name(enum nl80211_commands cmd)
248{
73780397 249 if (cmd <= NL80211_CMD_MAX && commands[cmd])
9990c1e9
MH
250 return commands[cmd];
251 sprintf(cmdbuf, "Unknown command (%d)", cmd);
252 return cmdbuf;
253}
254
379f8397
JB
255int ieee80211_channel_to_frequency(int chan)
256{
257 if (chan < 14)
258 return 2407 + chan * 5;
259
260 if (chan == 14)
261 return 2484;
262
263 /* FIXME: dot11ChannelStartingFactor (802.11-2007 17.3.8.3.2) */
264 return (chan + 1000) * 5;
265}
266
267int ieee80211_frequency_to_channel(int freq)
268{
269 if (freq == 2484)
270 return 14;
271
272 if (freq < 2484)
273 return (freq - 2407) / 5;
274
275 /* FIXME: dot11ChannelStartingFactor (802.11-2007 17.3.8.3.2) */
d56e86bc
VK
276 if (freq < 45000)
277 return freq/5 - 1000;
278
279 if (freq >= 58320 && freq <= 64800)
280 return (freq - 56160) / 2160;
281
282 return 0;
379f8397 283}
748f8489
JB
284
285void print_ssid_escaped(const uint8_t len, const uint8_t *data)
286{
287 int i;
288
289 for (i = 0; i < len; i++) {
3f612733 290 if (isprint(data[i]) && data[i] != ' ' && data[i] != '\\')
748f8489 291 printf("%c", data[i]);
3f612733
JB
292 else if (data[i] == ' ' &&
293 (i != 0 && i != len -1))
294 printf(" ");
748f8489
JB
295 else
296 printf("\\x%.2x", data[i]);
297 }
298}
51e9bd80
JB
299
300static int hex2num(char digit)
301{
302 if (!isxdigit(digit))
303 return -1;
304 if (isdigit(digit))
305 return digit - '0';
306 return tolower(digit) - 'a' + 10;
307}
308
309static int hex2byte(char *hex)
310{
311 int d1, d2;
312
313 d1 = hex2num(hex[0]);
314 if (d1 < 0)
315 return -1;
316 d2 = hex2num(hex[1]);
317 if (d2 < 0)
318 return -1;
319 return (d1 << 4) | d2;
320}
321
322static char *hex2bin(char *hex, char *buf)
323{
324 char *result = buf;
325 int d;
326
327 while (hex[0]) {
328 d = hex2byte(hex);
329 if (d < 0)
330 return NULL;
331 buf[0] = d;
332 buf++;
333 hex += 2;
334 }
335
336 return result;
337}
338
339int parse_keys(struct nl_msg *msg, char **argv, int argc)
340{
341 struct nlattr *keys;
342 int i = 0;
041581ce 343 bool have_default = false;
51e9bd80
JB
344 char keybuf[13];
345
346 if (!argc)
347 return 1;
348
349 NLA_PUT_FLAG(msg, NL80211_ATTR_PRIVACY);
350
351 keys = nla_nest_start(msg, NL80211_ATTR_KEYS);
352 if (!keys)
353 return -ENOBUFS;
354
355 do {
356 char *arg = *argv;
357 int pos = 0, keylen;
358 struct nlattr *key = nla_nest_start(msg, ++i);
359 char *keydata;
360
361 if (!key)
362 return -ENOBUFS;
363
364 if (arg[pos] == 'd') {
365 NLA_PUT_FLAG(msg, NL80211_KEY_DEFAULT);
366 pos++;
367 if (arg[pos] == ':')
368 pos++;
041581ce 369 have_default = true;
51e9bd80
JB
370 }
371
372 if (!isdigit(arg[pos]))
373 goto explain;
374 NLA_PUT_U8(msg, NL80211_KEY_IDX, arg[pos++] - '0');
375 if (arg[pos++] != ':')
376 goto explain;
377 keydata = arg + pos;
378 switch (strlen(keydata)) {
379 case 10:
380 keydata = hex2bin(keydata, keybuf);
381 case 5:
382 NLA_PUT_U32(msg, NL80211_KEY_CIPHER, 0x000FAC01);
383 keylen = 5;
384 break;
385 case 26:
386 keydata = hex2bin(keydata, keybuf);
387 case 13:
388 NLA_PUT_U32(msg, NL80211_KEY_CIPHER, 0x000FAC05);
389 keylen = 13;
390 break;
391 default:
392 goto explain;
393 }
394
395 if (!keydata)
396 goto explain;
397
398 NLA_PUT(msg, NL80211_KEY_DATA, keylen, keydata);
399
51e9bd80
JB
400 argv++;
401 argc--;
041581ce
JB
402
403 /* one key should be TX key */
404 if (!have_default && !argc)
405 NLA_PUT_FLAG(msg, NL80211_KEY_DEFAULT);
406
407 nla_nest_end(msg, key);
51e9bd80
JB
408 } while (argc);
409
410 nla_nest_end(msg, keys);
411
412 return 0;
413 nla_put_failure:
414 return -ENOBUFS;
415 explain:
416 fprintf(stderr, "key must be [d:]index:data where\n"
417 " 'd:' means default (transmit) key\n"
418 " 'index:' is a single digit (0-3)\n"
419 " 'data' must be 5 or 13 ascii chars\n"
420 " or 10 or 26 hex digits\n"
421 "for example: d:2:6162636465 is the same as d:2:abcde\n");
422 return 2;
423}
deb3501c 424
7ddfb679 425static void print_mcs_index(const __u8 *mcs)
deb3501c 426{
9fea9777 427 int mcs_bit, prev_bit = -2, prev_cont = 0;
04953e90
JB
428
429 for (mcs_bit = 0; mcs_bit <= 76; mcs_bit++) {
430 unsigned int mcs_octet = mcs_bit/8;
431 unsigned int MCS_RATE_BIT = 1 << mcs_bit % 8;
432 bool mcs_rate_idx_set;
433
434 mcs_rate_idx_set = !!(mcs[mcs_octet] & MCS_RATE_BIT);
435
436 if (!mcs_rate_idx_set)
437 continue;
438
439 if (prev_bit != mcs_bit - 1) {
440 if (prev_bit != -2)
441 printf("%d, ", prev_bit);
442 else
443 printf(" ");
444 printf("%d", mcs_bit);
445 prev_cont = 0;
446 } else if (!prev_cont) {
447 printf("-");
448 prev_cont = 1;
449 }
450
451 prev_bit = mcs_bit;
452 }
deb3501c 453
04953e90
JB
454 if (prev_cont)
455 printf("%d", prev_bit);
456 printf("\n");
deb3501c 457}
0950993f
LR
458
459/*
460 * There are only 4 possible values, we just use a case instead of computing it,
461 * but technically this can also be computed through the formula:
462 *
463 * Max AMPDU length = (2 ^ (13 + exponent)) - 1 bytes
464 */
465static __u32 compute_ampdu_length(__u8 exponent)
466{
467 switch (exponent) {
468 case 0: return 8191; /* (2 ^(13 + 0)) -1 */
469 case 1: return 16383; /* (2 ^(13 + 1)) -1 */
470 case 2: return 32767; /* (2 ^(13 + 2)) -1 */
471 case 3: return 65535; /* (2 ^(13 + 3)) -1 */
472 default: return 0;
473 }
474}
475
476static const char *print_ampdu_space(__u8 space)
477{
478 switch (space) {
479 case 0: return "No restriction";
480 case 1: return "1/4 usec";
481 case 2: return "1/2 usec";
482 case 3: return "1 usec";
483 case 4: return "2 usec";
484 case 5: return "4 usec";
485 case 6: return "8 usec";
486 case 7: return "16 usec";
487 default:
7ae93cd5 488 return "BUG (spacing more than 3 bits!)";
0950993f
LR
489 }
490}
491
492void print_ampdu_length(__u8 exponent)
493{
04953e90 494 __u32 max_ampdu_length;
0950993f
LR
495
496 max_ampdu_length = compute_ampdu_length(exponent);
497
498 if (max_ampdu_length) {
499 printf("\t\tMaximum RX AMPDU length %d bytes (exponent: 0x0%02x)\n",
500 max_ampdu_length, exponent);
3f362f8b 501 } else {
0950993f
LR
502 printf("\t\tMaximum RX AMPDU length: unrecognized bytes "
503 "(exponent: %d)\n", exponent);
504 }
505}
506
507void print_ampdu_spacing(__u8 spacing)
508{
3f362f8b
NB
509 printf("\t\tMinimum RX AMPDU time spacing: %s (0x%02x)\n",
510 print_ampdu_space(spacing), spacing);
0950993f 511}
357c1a5d
LR
512
513void print_ht_capability(__u16 cap)
514{
515#define PRINT_HT_CAP(_cond, _str) \
516 do { \
517 if (_cond) \
518 printf("\t\t\t" _str "\n"); \
519 } while (0)
520
521 printf("\t\tCapabilities: 0x%02x\n", cap);
522
028c0de5 523 PRINT_HT_CAP((cap & BIT(0)), "RX LDPC");
357c1a5d
LR
524 PRINT_HT_CAP((cap & BIT(1)), "HT20/HT40");
525 PRINT_HT_CAP(!(cap & BIT(1)), "HT20");
526
527 PRINT_HT_CAP(((cap >> 2) & 0x3) == 0, "Static SM Power Save");
528 PRINT_HT_CAP(((cap >> 2) & 0x3) == 1, "Dynamic SM Power Save");
529 PRINT_HT_CAP(((cap >> 2) & 0x3) == 3, "SM Power Save disabled");
530
531 PRINT_HT_CAP((cap & BIT(4)), "RX Greenfield");
532 PRINT_HT_CAP((cap & BIT(5)), "RX HT20 SGI");
533 PRINT_HT_CAP((cap & BIT(6)), "RX HT40 SGI");
534 PRINT_HT_CAP((cap & BIT(7)), "TX STBC");
535
536 PRINT_HT_CAP(((cap >> 8) & 0x3) == 0, "No RX STBC");
537 PRINT_HT_CAP(((cap >> 8) & 0x3) == 1, "RX STBC 1-stream");
538 PRINT_HT_CAP(((cap >> 8) & 0x3) == 2, "RX STBC 2-streams");
539 PRINT_HT_CAP(((cap >> 8) & 0x3) == 3, "RX STBC 3-streams");
540
541 PRINT_HT_CAP((cap & BIT(10)), "HT Delayed Block Ack");
542
c79c7464
CL
543 PRINT_HT_CAP(!(cap & BIT(11)), "Max AMSDU length: 3839 bytes");
544 PRINT_HT_CAP((cap & BIT(11)), "Max AMSDU length: 7935 bytes");
357c1a5d
LR
545
546 /*
547 * For beacons and probe response this would mean the BSS
548 * does or does not allow the usage of DSSS/CCK HT40.
549 * Otherwise it means the STA does or does not use
550 * DSSS/CCK HT40.
551 */
552 PRINT_HT_CAP((cap & BIT(12)), "DSSS/CCK HT40");
553 PRINT_HT_CAP(!(cap & BIT(12)), "No DSSS/CCK HT40");
554
555 /* BIT(13) is reserved */
556
557 PRINT_HT_CAP((cap & BIT(14)), "40 MHz Intolerant");
558
559 PRINT_HT_CAP((cap & BIT(15)), "L-SIG TXOP protection");
560#undef PRINT_HT_CAP
561}
7ddfb679
JB
562
563void print_ht_mcs(const __u8 *mcs)
564{
565 /* As defined in 7.3.2.57.4 Supported MCS Set field */
566 unsigned int tx_max_num_spatial_streams, max_rx_supp_data_rate;
567 bool tx_mcs_set_defined, tx_mcs_set_equal, tx_unequal_modulation;
568
569 max_rx_supp_data_rate = ((mcs[10] >> 8) & ((mcs[11] & 0x3) << 8));
570 tx_mcs_set_defined = !!(mcs[12] & (1 << 0));
571 tx_mcs_set_equal = !(mcs[12] & (1 << 1));
572 tx_max_num_spatial_streams = ((mcs[12] >> 2) & 3) + 1;
573 tx_unequal_modulation = !!(mcs[12] & (1 << 4));
574
575 if (max_rx_supp_data_rate)
576 printf("\t\tHT Max RX data rate: %d Mbps\n", max_rx_supp_data_rate);
577 /* XXX: else see 9.6.0e.5.3 how to get this I think */
578
579 if (tx_mcs_set_defined) {
580 if (tx_mcs_set_equal) {
2a79feb0 581 printf("\t\tHT TX/RX MCS rate indexes supported:");
7ddfb679
JB
582 print_mcs_index(mcs);
583 } else {
584 printf("\t\tHT RX MCS rate indexes supported:");
585 print_mcs_index(mcs);
586
587 if (tx_unequal_modulation)
588 printf("\t\tTX unequal modulation supported\n");
589 else
590 printf("\t\tTX unequal modulation not supported\n");
591
592 printf("\t\tHT TX Max spatial streams: %d\n",
593 tx_max_num_spatial_streams);
594
595 printf("\t\tHT TX MCS rate indexes supported may differ\n");
596 }
597 } else {
598 printf("\t\tHT RX MCS rate indexes supported:");
599 print_mcs_index(mcs);
089bb35d 600 printf("\t\tHT TX MCS rate indexes are undefined\n");
7ddfb679
JB
601 }
602}
54eb1613
JB
603
604void print_vht_info(__u32 capa, const __u8 *mcs)
605{
606 __u16 tmp;
607 int i;
608
609 printf("\t\tVHT Capabilities (0x%.8x):\n", capa);
610
611#define PRINT_VHT_CAPA(_bit, _str) \
612 do { \
613 if (capa & BIT(_bit)) \
614 printf("\t\t\t" _str "\n"); \
615 } while (0)
616
617 printf("\t\t\tMax MPDU length: ");
618 switch (capa & 3) {
619 case 0: printf("3895\n"); break;
620 case 1: printf("7991\n"); break;
621 case 2: printf("11454\n"); break;
622 case 3: printf("(reserved)\n");
623 }
624 printf("\t\t\tSupported Channel Width: ");
625 switch ((capa >> 2) & 3) {
626 case 0: printf("neither 160 nor 80+80\n"); break;
627 case 1: printf("160 MHz\n"); break;
628 case 2: printf("160 MHz, 80+80 MHz\n"); break;
629 case 3: printf("(reserved)\n");
630 }
631 PRINT_VHT_CAPA(4, "RX LDPC");
632 PRINT_VHT_CAPA(5, "short GI (80 MHz)");
633 PRINT_VHT_CAPA(6, "short GI (160/80+80 MHz)");
634 PRINT_VHT_CAPA(7, "TX STBC");
635 /* RX STBC */
636 PRINT_VHT_CAPA(11, "SU Beamformer");
637 PRINT_VHT_CAPA(12, "SU Beamformee");
638 /* compressed steering */
639 /* # of sounding dimensions */
640 PRINT_VHT_CAPA(19, "MU Beamformer");
641 PRINT_VHT_CAPA(20, "MU Beamformee");
642 PRINT_VHT_CAPA(21, "VHT TXOP PS");
643 PRINT_VHT_CAPA(22, "+HTC-VHT");
644 /* max A-MPDU */
645 /* VHT link adaptation */
646 PRINT_VHT_CAPA(29, "RX antenna pattern consistency");
647 PRINT_VHT_CAPA(30, "TX antenna pattern consistency");
648
649 printf("\t\tVHT RX MCS set:\n");
650 tmp = mcs[0] | (mcs[1] << 8);
651 for (i = 1; i <= 8; i++) {
652 printf("\t\t\t%d streams: ", i);
653 switch ((tmp >> ((i-1)*2) ) & 3) {
654 case 0: printf("MCS 0-7\n"); break;
655 case 1: printf("MCS 0-8\n"); break;
656 case 2: printf("MCS 0-9\n"); break;
657 case 3: printf("not supported\n"); break;
658 }
659 }
660 tmp = mcs[2] | (mcs[3] << 8);
661 printf("\t\tVHT RX highest supported: %d Mbps\n", tmp & 0x1fff);
662
663 printf("\t\tVHT TX MCS set:\n");
664 tmp = mcs[4] | (mcs[5] << 8);
665 for (i = 1; i <= 8; i++) {
666 printf("\t\t\t%d streams: ", i);
667 switch ((tmp >> ((i-1)*2) ) & 3) {
668 case 0: printf("MCS 0-7\n"); break;
669 case 1: printf("MCS 0-8\n"); break;
670 case 2: printf("MCS 0-9\n"); break;
671 case 3: printf("not supported\n"); break;
672 }
673 }
674 tmp = mcs[6] | (mcs[7] << 8);
675 printf("\t\tVHT TX highest supported: %d Mbps\n", tmp & 0x1fff);
676}