xref: /OK3568_Linux_fs/kernel/drivers/net/wireless/nxp/mlan/mlan_11ac.c (revision 4882a59341e53eb6f0b4789bf948001014eff981)
1 /** @file mlan_11ac.c
2  *
3  *  @brief This file contains the functions for station ioctl.
4  *
5  *
6  *  Copyright 2011-2021 NXP
7  *
8  *  This software file (the File) is distributed by NXP
9  *  under the terms of the GNU General Public License Version 2, June 1991
10  *  (the License).  You may use, redistribute and/or modify the File in
11  *  accordance with the terms and conditions of the License, a copy of which
12  *  is available by writing to the Free Software Foundation, Inc.,
13  *  51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA or on the
14  *  worldwide web at http://www.gnu.org/licenses/old-licenses/gpl-2.0.txt.
15  *
16  *  THE FILE IS DISTRIBUTED AS-IS, WITHOUT WARRANTY OF ANY KIND, AND THE
17  *  IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE
18  *  ARE EXPRESSLY DISCLAIMED.  The License provides additional details about
19  *  this warranty disclaimer.
20  *
21  */
22 
23 #include "mlan.h"
24 #include "mlan_join.h"
25 #include "mlan_util.h"
26 #include "mlan_fw.h"
27 #include "mlan_main.h"
28 #include "mlan_wmm.h"
29 #include "mlan_11n.h"
30 #include "mlan_11ac.h"
31 
32 /********************************************************
33 			Local Variables
34 ********************************************************/
35 
36 /********************************************************
37 			Global Variables
38 ********************************************************/
39 
40 /********************************************************
41 			Local Functions
42 ********************************************************/
43 t_u16 wlan_convert_mcsmap_to_maxrate(mlan_private *priv, t_u16 bands,
44 				     t_u16 mcs_map);
45 /**
46  *  @brief determine the center frquency center index for bandwidth
47  *         of 80 MHz and 160 MHz
48  *
49  *  @param pmpriv       A pointer to mlan_private structure
50  *  @param band         band
51  *  @param pri_chan     primary channel
52  *  @param chan_bw      channel bandwidth
53  *
54  *  @return             channel center frequency center, if found; O, otherwise
55  */
56 
wlan_get_center_freq_idx(mlan_private * pmpriv,t_u16 band,t_u32 pri_chan,t_u8 chan_bw)57 t_u8 wlan_get_center_freq_idx(mlan_private *pmpriv, t_u16 band, t_u32 pri_chan,
58 			      t_u8 chan_bw)
59 {
60 	t_u8 center_freq_idx = 0;
61 
62 	if (band & BAND_AAC) {
63 		switch (pri_chan) {
64 		case 36:
65 		case 40:
66 		case 44:
67 		case 48:
68 			if (chan_bw == CHANNEL_BW_80MHZ) {
69 				center_freq_idx = 42;
70 				break;
71 			}
72 			/* fall through */
73 		case 52:
74 		case 56:
75 		case 60:
76 		case 64:
77 			if (chan_bw == CHANNEL_BW_80MHZ) {
78 				center_freq_idx = 58;
79 				break;
80 			} else if (chan_bw == CHANNEL_BW_160MHZ) {
81 				center_freq_idx = 50;
82 				break;
83 			}
84 			/* fall through */
85 		case 100:
86 		case 104:
87 		case 108:
88 		case 112:
89 			if (chan_bw == CHANNEL_BW_80MHZ) {
90 				center_freq_idx = 106;
91 				break;
92 			}
93 			/* fall through */
94 		case 116:
95 		case 120:
96 		case 124:
97 		case 128:
98 			if (chan_bw == CHANNEL_BW_80MHZ) {
99 				center_freq_idx = 122;
100 				break;
101 			} else if (chan_bw == CHANNEL_BW_160MHZ) {
102 				center_freq_idx = 114;
103 				break;
104 			}
105 			/* fall through */
106 		case 132:
107 		case 136:
108 		case 140:
109 		case 144:
110 			if (chan_bw == CHANNEL_BW_80MHZ) {
111 				center_freq_idx = 138;
112 				break;
113 			}
114 			/* fall through */
115 		case 149:
116 		case 153:
117 		case 157:
118 		case 161:
119 			if (chan_bw == CHANNEL_BW_80MHZ) {
120 				center_freq_idx = 155;
121 				break;
122 			}
123 			/* fall through */
124 		case 165:
125 		case 169:
126 		case 173:
127 		case 177:
128 			if (chan_bw == CHANNEL_BW_80MHZ) {
129 				center_freq_idx = 171;
130 				break;
131 			}
132 			/* fall through */
133 		case 184:
134 		case 188:
135 		case 192:
136 		case 196:
137 			if (chan_bw == CHANNEL_BW_80MHZ) {
138 				center_freq_idx = 190;
139 				break;
140 			}
141 			/* fall through */
142 		default: /* error. go to the default */
143 			center_freq_idx = 42;
144 		}
145 	}
146 	return center_freq_idx;
147 }
148 
149 /**
150  *  @brief This function gets the bitmap of nss which supports VHT mcs
151  *
152  *  @param mcs_map_set  VHT mcs map
153  *
154  *  @return             The bitmap of supported nss
155  */
wlan_get_nss_vht_mcs(t_u16 mcs_map_set)156 static t_u8 wlan_get_nss_vht_mcs(t_u16 mcs_map_set)
157 {
158 	t_u8 nss, nss_map = 0;
159 	for (nss = 1; nss <= 8; nss++) {
160 		if (GET_VHTNSSMCS(mcs_map_set, nss) != NO_NSS_SUPPORT)
161 			nss_map |= 1 << (nss - 1);
162 	}
163 	PRINTM(MCMND, "Supported nss bit map:0x%02x\n", nss_map);
164 	return nss_map;
165 }
166 
167 /**
168  *  @brief This function gets the bitmap of nss which supports VHT mcs
169  *
170  *  @param mcs_map_set  VHT mcs map
171  *
172  *  @return             The bitmap of supported nss
173  */
wlan_get_nss_num_vht_mcs(t_u16 mcs_map_set)174 static t_u8 wlan_get_nss_num_vht_mcs(t_u16 mcs_map_set)
175 {
176 	t_u8 nss, nss_num = 0;
177 	for (nss = 1; nss <= 8; nss++) {
178 		if (GET_VHTNSSMCS(mcs_map_set, nss) != NO_NSS_SUPPORT)
179 			nss_num++;
180 	}
181 	PRINTM(MCMND, "Supported nss:%d\n", nss_num);
182 	return nss_num;
183 }
184 
185 /**
186  *  @brief This function fills the cap info
187  *
188  *  @param priv         A pointer to mlan_private structure
189  *  @param pht_cap      A pointer to MrvlIETypes_HTCap_t structure
190  *  @param bands        Band configuration
191  *
192  *  @return             N/A
193  */
wlan_fill_cap_info(mlan_private * priv,VHT_capa_t * vht_cap,t_u16 bands)194 static void wlan_fill_cap_info(mlan_private *priv, VHT_capa_t *vht_cap,
195 			       t_u16 bands)
196 {
197 	t_u32 usr_dot_11ac_dev_cap;
198 	ENTER();
199 
200 	if (bands & BAND_A)
201 		usr_dot_11ac_dev_cap = priv->usr_dot_11ac_dev_cap_a;
202 	else
203 		usr_dot_11ac_dev_cap = priv->usr_dot_11ac_dev_cap_bg;
204 
205 	vht_cap->vht_cap_info = usr_dot_11ac_dev_cap;
206 
207 	RESET_VHTCAP_MAXMPDULEN(vht_cap->vht_cap_info);
208 	LEAVE();
209 }
210 
211 /**
212  *  @brief Set/get 11ac configuration
213  *
214  *  @param pmadapter    A pointer to mlan_adapter structure
215  *  @param pioctl_req   A pointer to ioctl request buffer
216  *
217  *  @return     MLAN_STATUS_PENDING --success, otherwise fail
218  */
wlan_11ac_ioctl_vhtcfg(pmlan_adapter pmadapter,pmlan_ioctl_req pioctl_req)219 static mlan_status wlan_11ac_ioctl_vhtcfg(pmlan_adapter pmadapter,
220 					  pmlan_ioctl_req pioctl_req)
221 {
222 	mlan_status ret = MLAN_STATUS_SUCCESS;
223 	mlan_private *pmpriv = pmadapter->priv[pioctl_req->bss_index];
224 	mlan_ds_11ac_cfg *cfg = MNULL;
225 	t_u16 cmd_action = 0;
226 	t_u32 usr_vht_cap_info = 0;
227 	t_u32 cfg_value = 0;
228 	t_u32 hw_value = 0;
229 	t_u8 nss = 0;
230 #if defined(PCIE9098) || defined(SD9098) || defined(USB9098) ||                \
231 	defined(PCIE9097) || defined(USB9097) || defined(SDNW62X) ||           \
232 	defined(PCIENW62X) || defined(USBNW62X) || defined(SD9097)
233 	t_u16 rx_nss = 0;
234 	t_u16 tx_nss = 0;
235 #endif
236 
237 	ENTER();
238 
239 #define VHT_CAP_INFO_BIT_FIELDS                                                \
240 	(MBIT(4) | MBIT(5) | MBIT(6) | MBIT(7) | MBIT(11) | MBIT(12) |         \
241 	 MBIT(19) | MBIT(20) | MBIT(21) | MBIT(22) | MBIT(28) | MBIT(29))
242 
243 	cfg = (mlan_ds_11ac_cfg *)pioctl_req->pbuf;
244 
245 	if (pioctl_req->action == MLAN_ACT_SET) {
246 		/** SET operation */
247 		/** validate the user input and correct it if necessary */
248 		if (pmpriv->bss_role == MLAN_BSS_ROLE_STA) {
249 			if (cfg->param.vht_cfg.txrx == 3) {
250 				PRINTM(MERROR,
251 				       "Configuration of VHT capabilities for TX/RX 3 is not supported in STA mode!\n");
252 				return MLAN_STATUS_FAILURE;
253 			}
254 		}
255 		if (pmpriv->bss_role == MLAN_BSS_ROLE_UAP) {
256 			if (cfg->param.vht_cfg.txrx != 3) {
257 				PRINTM(MERROR,
258 				       "Configuration of VHT capabilities for TX/RX %d is not supported in UAP mode!\n",
259 				       cfg->param.vht_cfg.txrx);
260 				return MLAN_STATUS_FAILURE;
261 			}
262 		}
263 		/** set bit fileds */
264 		usr_vht_cap_info = VHT_CAP_INFO_BIT_FIELDS &
265 				   cfg->param.vht_cfg.vht_cap_info &
266 				   pmadapter->hw_dot_11ac_dev_cap;
267 		/** set MAX MPDU LEN field (bit 0 - bit 1) */
268 		cfg_value =
269 			GET_VHTCAP_MAXMPDULEN(cfg->param.vht_cfg.vht_cap_info);
270 		hw_value =
271 			GET_VHTCAP_MAXMPDULEN(pmadapter->hw_dot_11ac_dev_cap);
272 		SET_VHTCAP_MAXMPDULEN(usr_vht_cap_info,
273 				      MIN(cfg_value, hw_value));
274 		/** set CHAN Width Set field (bit 2 - bit 3) */
275 		cfg_value = GET_VHTCAP_CHWDSET(cfg->param.vht_cfg.vht_cap_info);
276 		hw_value = GET_VHTCAP_CHWDSET(pmadapter->hw_dot_11ac_dev_cap);
277 		SET_VHTCAP_CHWDSET(usr_vht_cap_info, MIN(cfg_value, hw_value));
278 		/** set Rx STBC field (bit 8 - bit 10) */
279 		cfg_value = GET_VHTCAP_RXSTBC(cfg->param.vht_cfg.vht_cap_info);
280 		hw_value = GET_VHTCAP_RXSTBC(pmadapter->hw_dot_11ac_dev_cap);
281 		SET_VHTCAP_RXSTBC(usr_vht_cap_info, MIN(cfg_value, hw_value));
282 		/** set Steering Number of BFer Ant (bit 13 - bit 15) */
283 		cfg_value =
284 			GET_VHTCAP_SNBFERANT(cfg->param.vht_cfg.vht_cap_info);
285 		hw_value = GET_VHTCAP_SNBFERANT(pmadapter->hw_dot_11ac_dev_cap);
286 		SET_VHTCAP_SNBFERANT(usr_vht_cap_info,
287 				     MIN(cfg_value, hw_value));
288 		/** set Number of Sounding Dimension (bit 16 - bit 18) */
289 		cfg_value =
290 			GET_VHTCAP_NUMSNDDM(cfg->param.vht_cfg.vht_cap_info);
291 		hw_value = GET_VHTCAP_NUMSNDDM(pmadapter->hw_dot_11ac_dev_cap);
292 		SET_VHTCAP_NUMSNDDM(usr_vht_cap_info, MIN(cfg_value, hw_value));
293 		/** set Number of Max AMPDU Length Exponent (bit 23 - bit 25) */
294 		cfg_value = GET_VHTCAP_MAXAMPDULENEXP(
295 			cfg->param.vht_cfg.vht_cap_info);
296 		hw_value = GET_VHTCAP_MAXAMPDULENEXP(
297 			pmadapter->hw_dot_11ac_dev_cap);
298 		SET_VHTCAP_MAXAMPDULENEXP(usr_vht_cap_info,
299 					  MIN(cfg_value, hw_value));
300 		/** set VHT Link Adaptation Capable (bit 26 - bit 27) */
301 		cfg_value =
302 			GET_VHTCAP_LINKADPCAP(cfg->param.vht_cfg.vht_cap_info);
303 		hw_value =
304 			GET_VHTCAP_LINKADPCAP(pmadapter->hw_dot_11ac_dev_cap);
305 		SET_VHTCAP_LINKADPCAP(usr_vht_cap_info,
306 				      MIN(cfg_value, hw_value));
307 		/** update the user setting if it is beyond the hw capabiliteis
308 		 */
309 		cfg->param.vht_cfg.vht_cap_info = usr_vht_cap_info;
310 		PRINTM(MINFO, "Set: vht cap info  0x%x\n", usr_vht_cap_info);
311 
312 		/** update the RX MCS map */
313 		if (cfg->param.vht_cfg.txrx & MLAN_RADIO_RX) {
314 #if defined(PCIE9098) || defined(SD9098) || defined(USB9098) ||                \
315 	defined(PCIE9097) || defined(SD9097) || defined(USB9097) ||            \
316 	defined(SDNW62X) || defined(PCIENW62X) || defined(USBNW62X)
317 			if (IS_CARD9098(pmadapter->card_type) ||
318 			    IS_CARDNW62X(pmadapter->card_type) ||
319 			    IS_CARD9097(pmadapter->card_type)) {
320 				if (cfg->param.vht_cfg.band == BAND_SELECT_A) {
321 					rx_nss = GET_RXMCSSUPP(
322 						pmadapter->user_htstream >> 8);
323 					tx_nss =
324 						GET_TXMCSSUPP(
325 							pmadapter->user_htstream >>
326 							8) &
327 						0x0f;
328 				} else {
329 					rx_nss = GET_RXMCSSUPP(
330 						pmadapter->user_htstream);
331 					tx_nss =
332 						GET_TXMCSSUPP(
333 							pmadapter->user_htstream) &
334 						0x0f;
335 				}
336 			}
337 #endif
338 			/* use the previous user value */
339 			if (cfg->param.vht_cfg.vht_rx_mcs == 0xffffffff)
340 				cfg->param.vht_cfg.vht_rx_mcs = GET_VHTMCS(
341 					pmpriv->usr_dot_11ac_mcs_support);
342 			for (nss = 1; nss <= 8; nss++) {
343 				cfg_value = GET_VHTNSSMCS(
344 					cfg->param.vht_cfg.vht_rx_mcs, nss);
345 				hw_value = GET_DEVNSSRXMCS(
346 					pmadapter->hw_dot_11ac_mcs_support,
347 					nss);
348 #if defined(PCIE9098) || defined(SD9098) || defined(USB9098) ||                \
349 	defined(PCIE9097) || defined(SD9097) || defined(USB9097) ||            \
350 	defined(SDNW62X) || defined(PCIENW62X) || defined(USBNW62X)
351 				if ((rx_nss != 0) && (nss > rx_nss))
352 					cfg_value = NO_NSS_SUPPORT;
353 #endif
354 				if ((hw_value == NO_NSS_SUPPORT) ||
355 				    (cfg_value == NO_NSS_SUPPORT))
356 					SET_VHTNSSMCS(
357 						cfg->param.vht_cfg.vht_rx_mcs,
358 						nss, NO_NSS_SUPPORT);
359 				else
360 					SET_VHTNSSMCS(
361 						cfg->param.vht_cfg.vht_rx_mcs,
362 						nss, MIN(cfg_value, hw_value));
363 			}
364 			PRINTM(MINFO, "Set: vht rx mcs set 0x%08x\n",
365 			       cfg->param.vht_cfg.vht_rx_mcs);
366 			/* use the previous user value */
367 			if (cfg->param.vht_cfg.vht_tx_mcs == 0xffffffff)
368 				cfg->param.vht_cfg.vht_tx_mcs = GET_VHTMCS(
369 					pmpriv->usr_dot_11ac_mcs_support >> 16);
370 			for (nss = 1; nss <= 8; nss++) {
371 				cfg_value = GET_VHTNSSMCS(
372 					cfg->param.vht_cfg.vht_tx_mcs, nss);
373 				hw_value = GET_DEVNSSTXMCS(
374 					pmadapter->hw_dot_11ac_mcs_support,
375 					nss);
376 #if defined(PCIE9098) || defined(SD9098) || defined(USB9098) ||                \
377 	defined(PCIE9097) || defined(SD9097) || defined(USB9097) ||            \
378 	defined(SDNW62X) || defined(PCIENW62X) || defined(USBNW62X)
379 				if ((tx_nss != 0) && (nss > tx_nss))
380 					cfg_value = NO_NSS_SUPPORT;
381 #endif
382 				if ((hw_value == NO_NSS_SUPPORT) ||
383 				    (cfg_value == NO_NSS_SUPPORT))
384 					SET_VHTNSSMCS(
385 						cfg->param.vht_cfg.vht_tx_mcs,
386 						nss, NO_NSS_SUPPORT);
387 				else
388 					SET_VHTNSSMCS(
389 						cfg->param.vht_cfg.vht_tx_mcs,
390 						nss, MIN(cfg_value, hw_value));
391 			}
392 			PRINTM(MINFO, "Set: vht tx mcs set 0x%08x\n",
393 			       cfg->param.vht_cfg.vht_tx_mcs);
394 			if (!cfg->param.vht_cfg.skip_usr_11ac_mcs_cfg) {
395 				RESET_DEVRXMCSMAP(
396 					pmpriv->usr_dot_11ac_mcs_support);
397 				pmpriv->usr_dot_11ac_mcs_support |= GET_VHTMCS(
398 					cfg->param.vht_cfg.vht_rx_mcs);
399 				RESET_DEVTXMCSMAP(
400 					pmpriv->usr_dot_11ac_mcs_support);
401 				pmpriv->usr_dot_11ac_mcs_support |=
402 					(GET_VHTMCS(
403 						 cfg->param.vht_cfg.vht_tx_mcs)
404 					 << 16);
405 				PRINTM(MINFO, "Set: vht mcs set 0x%08x\n",
406 				       pmpriv->usr_dot_11ac_mcs_support);
407 			} else {
408 				PRINTM(MINFO,
409 				       "Skipped user 11ac mcs configuration\n");
410 				cfg->param.vht_cfg.skip_usr_11ac_mcs_cfg =
411 					MFALSE;
412 			}
413 		}
414 	}
415 
416 	if (pmpriv->bss_role == MLAN_BSS_ROLE_STA) {
417 		if (cfg->param.vht_cfg.txrx & MLAN_RADIO_RX) {
418 			/* maximum VHT configuration used in association */
419 			if (pioctl_req->action == MLAN_ACT_SET) {
420 				if (cfg->param.vht_cfg.band == BAND_SELECT_BG)
421 					pmpriv->usr_dot_11ac_dev_cap_bg =
422 						usr_vht_cap_info;
423 				else if (cfg->param.vht_cfg.band ==
424 					 BAND_SELECT_A)
425 					pmpriv->usr_dot_11ac_dev_cap_a =
426 						usr_vht_cap_info;
427 				else {
428 					pmpriv->usr_dot_11ac_dev_cap_bg =
429 						usr_vht_cap_info;
430 					pmpriv->usr_dot_11ac_dev_cap_a =
431 						usr_vht_cap_info;
432 				}
433 				pmpriv->usr_dot_11ac_bw =
434 					cfg->param.vht_cfg.bwcfg;
435 
436 			} else {
437 				/** GET operation */
438 				if (cfg->param.vht_cfg.band == BAND_SELECT_BG) {
439 					cfg->param.vht_cfg.vht_cap_info =
440 						pmpriv->usr_dot_11ac_dev_cap_bg;
441 					PRINTM(MINFO,
442 					       "Get: vht cap info for 2.4GHz 0x%x\n",
443 					       pmpriv->usr_dot_11ac_dev_cap_bg);
444 				} else if (cfg->param.vht_cfg.band ==
445 					   BAND_SELECT_A) {
446 					cfg->param.vht_cfg.vht_cap_info =
447 						pmpriv->usr_dot_11ac_dev_cap_a;
448 					PRINTM(MINFO,
449 					       "Get: vht cap info for 5GHz 0x%x\n",
450 					       pmpriv->usr_dot_11ac_dev_cap_a);
451 				} else {
452 					PRINTM(MINFO,
453 					       "Get: invalid band selection for vht cap info\n");
454 					ret = MLAN_STATUS_FAILURE;
455 				}
456 				cfg->param.vht_cfg.bwcfg =
457 					pmpriv->usr_dot_11ac_bw;
458 				cfg->param.vht_cfg.vht_rx_mcs = GET_DEVRXMCSMAP(
459 					pmpriv->usr_dot_11ac_mcs_support);
460 				cfg->param.vht_cfg.vht_tx_mcs = GET_DEVTXMCSMAP(
461 					pmpriv->usr_dot_11ac_mcs_support);
462 				cfg->param.vht_cfg.vht_rx_max_rate =
463 					wlan_convert_mcsmap_to_maxrate(
464 						pmpriv, cfg->param.vht_cfg.band,
465 						cfg->param.vht_cfg.vht_rx_mcs);
466 				cfg->param.vht_cfg.vht_tx_max_rate =
467 					wlan_convert_mcsmap_to_maxrate(
468 						pmpriv, cfg->param.vht_cfg.band,
469 						cfg->param.vht_cfg.vht_tx_mcs);
470 			}
471 			LEAVE();
472 			return ret;
473 		}
474 	}
475 
476 	if (pioctl_req->action == MLAN_ACT_SET)
477 		cmd_action = HostCmd_ACT_GEN_SET;
478 	else
479 		cmd_action = HostCmd_ACT_GEN_GET;
480 
481 	/* Send request to firmware */
482 	ret = wlan_prepare_cmd(pmpriv, HostCmd_CMD_11AC_CFG, cmd_action, 0,
483 			       (t_void *)pioctl_req,
484 			       (t_void *)&cfg->param.vht_cfg);
485 	if (ret == MLAN_STATUS_SUCCESS)
486 		ret = MLAN_STATUS_PENDING;
487 
488 	LEAVE();
489 	return ret;
490 }
491 
492 /**
493  *  @brief Get/Set Operating Mode Notification cfg
494  *
495  *  @param pmadapter    A pointer to mlan_adapter structure
496  *  @param pioctl_req   A pointer to ioctl request buffer
497  *
498  *  @return     MLAN_STATUS_SUCCESS --success, otherwise fail
499  */
wlan_11ac_ioctl_opermodecfg(pmlan_adapter pmadapter,pmlan_ioctl_req pioctl_req)500 static mlan_status wlan_11ac_ioctl_opermodecfg(pmlan_adapter pmadapter,
501 					       pmlan_ioctl_req pioctl_req)
502 {
503 	mlan_ds_11ac_cfg *cfg = MNULL;
504 	mlan_private *pmpriv = pmadapter->priv[pioctl_req->bss_index];
505 	t_u8 hw_bw_160or8080 = 0;
506 	t_u8 hw_rx_nss = 0;
507 
508 	ENTER();
509 
510 	cfg = (mlan_ds_11ac_cfg *)pioctl_req->pbuf;
511 	if (pioctl_req->action == MLAN_ACT_GET) {
512 		cfg->param.opermode_cfg.bw = pmpriv->usr_dot_11ac_opermode_bw;
513 		cfg->param.opermode_cfg.nss = pmpriv->usr_dot_11ac_opermode_nss;
514 	} else if (pioctl_req->action == MLAN_ACT_SET) {
515 		hw_bw_160or8080 =
516 			GET_VHTCAP_CHWDSET(pmadapter->hw_dot_11ac_dev_cap);
517 		hw_rx_nss = wlan_get_nss_num_vht_mcs(
518 			GET_DEVRXMCSMAP(pmadapter->hw_dot_11ac_mcs_support));
519 		if ((((cfg->param.opermode_cfg.bw - 1) > BW_80MHZ) &&
520 		     !hw_bw_160or8080) ||
521 		    (cfg->param.opermode_cfg.nss > hw_rx_nss)) {
522 			PRINTM(MERROR,
523 			       "bw or nss NOT supported. HW support bw_160or8080=%d rx_nss=%d.\n",
524 			       hw_bw_160or8080, hw_rx_nss);
525 			LEAVE();
526 			return MLAN_STATUS_FAILURE;
527 		}
528 		pmpriv->usr_dot_11ac_opermode_bw = cfg->param.opermode_cfg.bw;
529 		pmpriv->usr_dot_11ac_opermode_nss = cfg->param.opermode_cfg.nss;
530 	}
531 
532 	LEAVE();
533 	return MLAN_STATUS_SUCCESS;
534 }
535 
536 /**
537  *  @brief Get supported MCS set
538  *
539  *  @param pmadapter    A pointer to mlan_adapter structure
540  *  @param pioctl_req   A pointer to ioctl request buffer
541  *
542  *  @return     MLAN_STATUS_SUCCESS --success, otherwise fail
543  */
wlan_11ac_ioctl_supported_mcs_set(pmlan_adapter pmadapter,pmlan_ioctl_req pioctl_req)544 static mlan_status wlan_11ac_ioctl_supported_mcs_set(pmlan_adapter pmadapter,
545 						     pmlan_ioctl_req pioctl_req)
546 {
547 	/*mlan_ds_11ac_cfg *cfg= MNULL;*/
548 	/*int rx_mcs_supp;*/
549 	/*t_u8 mcs_set[NUM_MCS_SUPP];*/
550 
551 	ENTER();
552 #if 0
553 	if (pioctl_req->action == MLAN_ACT_SET) {
554 		PRINTM(MERROR, "Set operation is not supported\n");
555 		pioctl_req->status_code = MLAN_ERROR_IOCTL_INVALID;
556 		LEAVE();
557 		return MLAN_STATUS_FAILURE;
558 	}
559 	rx_mcs_supp = GET_11ACRXMCSSUPP(pmadapter->usr_dot_11ac_mcs_support);
560 	/* Set MCS */
561 	memset(pmadapter, (t_u8 *) mcs_set, 0xff, rx_mcs_supp);
562 	/* Clear all the other values */
563 	memset(pmadapter, (t_u8 *) &mcs_set[rx_mcs_supp], 0,
564 		NUM_MCS_FIELD - rx_mcs_supp);
565 	/* Set MCS32 with 40MHz support */
566 	if (ISSUPP_CHANWIDTH80(pmadapter->usr_dot_11ac_dev_cap_bg)
567 		|| ISSUPP_CHANWIDTH80(pmadapter->usr_dot_11ac_dev_cap_a)
568 	)
569 	SETHT_MCS32(mcs_set);
570 
571 	cfg = (mlan_ds_11ac_cfg *)pioctl_req->pbuf;
572 	memcpy_ext(pmadapter, cfg->param.supported_mcs_set, mcs_set,
573 		   NUM_MCS_SUPP, sizeof(cfg->param.supported_mcs_set));
574 
575 #endif
576 	LEAVE();
577 	return MLAN_STATUS_SUCCESS;
578 }
579 
580 /********************************************************
581 			Global Functions
582 ********************************************************/
583 
584 /**
585  *  @brief This function prints the 802.11ac device capability
586  *
587  *  @param pmadapter     A pointer to mlan_adapter structure
588  *  @param cap           Capability value
589  *
590  *  @return        N/A
591  */
wlan_show_dot11acdevcap(pmlan_adapter pmadapter,t_u32 cap)592 void wlan_show_dot11acdevcap(pmlan_adapter pmadapter, t_u32 cap)
593 {
594 	ENTER();
595 
596 	switch (GET_VHTCAP_MAXMPDULEN(cap)) {
597 	case 0x0:
598 		PRINTM(MINFO,
599 		       "GET_HW_SPEC: Maximum MPDU length = 3895 octets\n");
600 		break;
601 	case 0x1:
602 		PRINTM(MINFO,
603 		       "GET_HW_SPEC: Maximum MPDU length = 7991 octets\n");
604 		break;
605 	case 0x2:
606 		PRINTM(MINFO,
607 		       "GET_HW_SPEC: Maximum MPDU length = 11454 octets\n");
608 		break;
609 	default:
610 		PRINTM(MINFO, "Unsupport value\n");
611 		break;
612 	}
613 
614 	PRINTM(MINFO, "GET_HW_SPEC: HTC-VHT %s\n",
615 	       (ISSUPP_11ACVHTHTCVHT(cap) ? "supported" : "not supported"));
616 	PRINTM(MINFO, "GET_HW_SPEC: VHT TXOP PS %s\n",
617 	       (ISSUPP_11ACVHTTXOPPS(cap) ? "supported" : "not supported"));
618 	PRINTM(MINFO, "GET_HW_SPEC: MU RX beamformee %s\n",
619 	       (ISSUPP_11ACMURXBEAMFORMEE(cap) ? "supported" :
620 						 "not supported"));
621 	PRINTM(MINFO, "GET_HW_SPEC: MU TX beamformee %s\n",
622 	       (ISSUPP_11ACMUTXBEAMFORMEE(cap) ? "supported" :
623 						 "not supported"));
624 	PRINTM(MINFO, "GET_HW_SPEC: SU RX Beamformee %s\n",
625 	       (ISSUPP_11ACSUBEAMFORMEE(cap) ? "supported" : "not supported"));
626 	PRINTM(MINFO, "GET_HW_SPEC: SU TX Beamformer %s\n",
627 	       (ISSUPP_11ACSUBEAMFORMER(cap) ? "supported" : "not supported"));
628 	PRINTM(MINFO, "GET_HW_SPEC: Rx STBC %s\n",
629 	       (ISSUPP_11ACRXSTBC(cap) ? "supported" : "not supported"));
630 	PRINTM(MINFO, "GET_HW_SPEC: Tx STBC %s\n",
631 	       (ISSUPP_11ACTXSTBC(cap) ? "supported" : "not supported"));
632 	PRINTM(MINFO, "GET_HW_SPEC: Short GI %s for 160MHz BW\n",
633 	       (ISSUPP_11ACSGI160(cap) ? "supported" : "not supported"));
634 	PRINTM(MINFO, "GET_HW_SPEC: Short GI %s for 80MHz BW\n",
635 	       (ISSUPP_11ACSGI80(cap) ? "supported" : "not supported"));
636 	PRINTM(MINFO, "GET_HW_SPEC: LDPC coding %s\n",
637 	       (ISSUPP_11ACLDPC(cap) ? "supported" : "not supported"));
638 	PRINTM(MINFO, "GET_HW_SPEC: Channel BW 20/40/80/160/80+80 MHz %s\n",
639 	       (ISSUPP_11ACBW8080(cap) ? "supported" : "not supported"));
640 	PRINTM(MINFO, "GET_HW_SPEC: Channel BW 20/40/80/160 MHz %s\n",
641 	       (ISSUPP_11ACBW160(cap) ? "supported" : "not supported"));
642 
643 	LEAVE();
644 	return;
645 }
646 
647 /**
648  *  @brief This function prints the 802.11ac device MCS
649  *
650  *  @param pmadapter A pointer to mlan_adapter structure
651  *  @param support   Support value
652  *
653  *  @return        N/A
654  */
wlan_show_dot11acmcssupport(pmlan_adapter pmadapter,t_u32 support)655 void wlan_show_dot11acmcssupport(pmlan_adapter pmadapter, t_u32 support)
656 {
657 	ENTER();
658 
659 	PRINTM(MINFO, "GET_HW_SPEC: MCSs for %2dx%2d MIMO\n",
660 	       GET_DEVRXMCSMAP(support), GET_DEVTXMCSMAP(support));
661 
662 	LEAVE();
663 	return;
664 }
665 
666 /**
667  *  @brief This function converts the 2-bit MCS map to the highest long GI
668  *  VHT PPDU data rate
669  *
670  *  @param priv         A pointer to mlan_private structure
671  *  @param bands        Supported bands
672  *  @param mcs_map      2-bit MCS map
673  *
674  *  @return             the max data rate for long GI
675  */
wlan_convert_mcsmap_to_maxrate(mlan_private * priv,t_u16 bands,t_u16 mcs_map)676 t_u16 wlan_convert_mcsmap_to_maxrate(mlan_private *priv, t_u16 bands,
677 				     t_u16 mcs_map)
678 {
679 	t_u8 i;
680 	t_u8 nss;
681 	t_u8 max_mcs;
682 	t_u16 max_rate = 0;
683 	t_u32 usr_vht_cap_info = 0;
684 	t_u32 usr_dot_11n_dev_cap;
685 
686 	/* tables of the MCS map to the highest data rate (in Mbps)
687 	 * supported for long GI */
688 	t_u16 max_rate_lgi_20MHZ[8][3] = {
689 		{0x41, 0x4E, 0x0}, /* NSS = 1 */
690 		{0x82, 0x9C, 0x0}, /* NSS = 2 */
691 		{0xC3, 0xEA, 0x104}, /* NSS = 3 */
692 		{0x104, 0x138, 0x0}, /* NSS = 4 */
693 		{0x145, 0x186, 0x0}, /* NSS = 5 */
694 		{0x186, 0x1D4, 0x208}, /* NSS = 6 */
695 		{0x1C7, 0x222, 0x0}, /* NSS = 7 */
696 		{0x208, 0x270, 0x0} /* NSS = 8 */
697 	};
698 
699 	t_u16 max_rate_lgi_40MHZ[8][3] = {
700 		{0x87, 0xA2, 0xB4}, /* NSS = 1 */
701 		{0x10E, 0x144, 0x168}, /* NSS = 2 */
702 		{0x195, 0x1E6, 0x21C}, /* NSS = 3 */
703 		{0x21C, 0x288, 0x2D0}, /* NSS = 4 */
704 		{0x2A3, 0x32A, 0x384}, /* NSS = 5 */
705 		{0x32A, 0x3CC, 0x438}, /* NSS = 6 */
706 		{0x3B1, 0x46E, 0x4EC}, /* NSS = 7 */
707 		{0x438, 0x510, 0x5A0} /* NSS = 8 */
708 	};
709 
710 	t_u16 max_rate_lgi_80MHZ[8][3] = {
711 		{0x124, 0x15F, 0x186}, /* NSS = 1 */
712 		{0x249, 0x2BE, 0x30C}, /* NSS = 2 */
713 		{0x36D, 0x41D, 0x492}, /* NSS = 3 */
714 		{0x492, 0x57C, 0x618}, /* NSS = 4 */
715 		{0x5B6, 0x6DB, 0x79E}, /* NSS = 5 */
716 		{0x6DB, 0x83A, 0x0}, /* NSS = 6 */
717 		{0x7FF, 0x999, 0xAAA}, /* NSS = 7 */
718 		{0x924, 0xAF8, 0xC30} /* NSS = 8 */
719 	};
720 	t_u16 max_rate_lgi_160MHZ[8][3] = {
721 		{0x249, 0x2BE, 0x30C}, /* NSS = 1 */
722 		{0x492, 0x57C, 0x618}, /* NSS = 2 */
723 		{0x6DB, 0x83A, 0x0}, /* NSS = 3 */
724 		{0x924, 0xAF8, 0xC30}, /* NSS = 4 */
725 		{0xB6D, 0xDB6, 0xF3C}, /* NSS = 5 */
726 		{0xDB6, 0x1074, 0x1248}, /* NSS = 6 */
727 		{0xFFF, 0x1332, 0x1554}, /* NSS = 7 */
728 		{0x1248, 0x15F0, 0x1860} /* NSS = 8 */
729 	};
730 
731 	if (bands & BAND_AAC) {
732 		usr_vht_cap_info = priv->usr_dot_11ac_dev_cap_a;
733 		usr_dot_11n_dev_cap = priv->usr_dot_11n_dev_cap_a;
734 	} else {
735 		usr_vht_cap_info = priv->usr_dot_11ac_dev_cap_bg;
736 		usr_dot_11n_dev_cap = priv->usr_dot_11n_dev_cap_bg;
737 	}
738 
739 	/* find the max NSS supported */
740 	nss = 0;
741 	for (i = 0; i < 8; i++) {
742 		max_mcs = (mcs_map >> (2 * i)) & 0x3;
743 		if (max_mcs < 3)
744 			nss = i;
745 	}
746 
747 	max_mcs = (mcs_map >> (2 * nss)) & 0x3;
748 	/* if max_mcs is 3, nss must be 0 (SS = 1). Thus, max mcs is MCS 9*/
749 	if (max_mcs >= 3)
750 		max_mcs = 2;
751 
752 	if (GET_VHTCAP_CHWDSET(usr_vht_cap_info)) {
753 		/* support 160 MHz */
754 		max_rate = max_rate_lgi_160MHZ[nss][max_mcs];
755 		if (max_mcs >= 1 && max_rate == 0)
756 			/* MCS9 is not supported in NSS6 */
757 			max_rate = max_rate_lgi_160MHZ[nss][max_mcs - 1];
758 
759 	} else {
760 		if (priv->usr_dot_11ac_bw == BW_FOLLOW_VHTCAP) {
761 			max_rate = max_rate_lgi_80MHZ[nss][max_mcs];
762 			if (max_mcs >= 1 && max_rate == 0)
763 				/* MCS9 is not supported in NSS3 */
764 				max_rate = max_rate_lgi_80MHZ[nss][max_mcs - 1];
765 		} else {
766 			if (ISSUPP_CHANWIDTH40(usr_dot_11n_dev_cap)) {
767 				max_rate = max_rate_lgi_40MHZ[nss][max_mcs];
768 			} else {
769 				max_rate = max_rate_lgi_20MHZ[nss][max_mcs];
770 				/* MCS9 is not supported in NSS1/2/4/5/7/8 */
771 				if (max_mcs >= 1 && max_rate == 0)
772 					max_rate =
773 						max_rate_lgi_20MHZ[nss]
774 								  [max_mcs - 1];
775 			}
776 		}
777 	}
778 	PRINTM(MCMND, "max_rate=%dM\n", max_rate);
779 	return max_rate;
780 }
781 
782 /**
783  *  @brief This function fills the VHT cap tlv out put format is LE, not CPU
784  *
785  *  @param priv         A pointer to mlan_private structure
786  *  @param pvht_cap      A pointer to MrvlIETypes_HTCap_t structure
787  *  @param bands        Band configuration
788  *  @param flag         TREU--pvht_cap has the setting for resp
789  *                      MFALSE -- pvht_cap is clean
790  *  @param bw_80p80     TRUE -- enable 80p80
791  *  @return             N/A
792  */
wlan_fill_vht_cap_tlv(mlan_private * priv,MrvlIETypes_VHTCap_t * pvht_cap,t_u16 bands,t_u8 flag,t_u8 bw_80p80)793 void wlan_fill_vht_cap_tlv(mlan_private *priv, MrvlIETypes_VHTCap_t *pvht_cap,
794 			   t_u16 bands, t_u8 flag, t_u8 bw_80p80)
795 {
796 	t_u16 mcs_map_user = 0;
797 	t_u16 mcs_map_resp = 0;
798 	t_u16 mcs_map_result = 0;
799 	t_u16 mcs_user = 0;
800 	t_u16 mcs_resp = 0;
801 	t_u16 nss;
802 #if defined(PCIE9098) || defined(SD9098) || defined(USB9098) ||                \
803 	defined(PCIE9097) || defined(SD9097) || defined(USB9097) ||            \
804 	defined(SDNW62X) || defined(PCIENW62X) || defined(USBNW62X)
805 	t_u16 rx_nss = 0, tx_nss = 0;
806 #endif
807 	ENTER();
808 
809 	/* Fill VHT cap info */
810 	wlan_fill_cap_info(priv, &pvht_cap->vht_cap, bands);
811 	/* clear 80p80 in vht_cap_info */
812 	if (!bw_80p80)
813 		pvht_cap->vht_cap.vht_cap_info &= ~(MBIT(2) | MBIT(3));
814 	pvht_cap->vht_cap.vht_cap_info =
815 		wlan_cpu_to_le32(pvht_cap->vht_cap.vht_cap_info);
816 
817 	/* Fill VHT MCS Set */
818 	/* rx MCS Set, find the minimum of the user rx mcs and ap rx mcs*/
819 	mcs_map_resp = mcs_map_user =
820 		GET_DEVRXMCSMAP(priv->usr_dot_11ac_mcs_support);
821 	if (flag)
822 		mcs_map_resp =
823 			wlan_le16_to_cpu(pvht_cap->vht_cap.mcs_sets.rx_mcs_map);
824 #if defined(PCIE9098) || defined(SD9098) || defined(USB9098) ||                \
825 	defined(PCIE9097) || defined(SD9097) || defined(USB9097) ||            \
826 	defined(SDNW62X) || defined(PCIENW62X) || defined(USBNW62X)
827 	if (IS_CARD9098(priv->adapter->card_type) ||
828 	    IS_CARDNW62X(priv->adapter->card_type) ||
829 	    IS_CARD9097(priv->adapter->card_type)) {
830 		if (bands & BAND_A) {
831 			rx_nss = GET_RXMCSSUPP(priv->adapter->user_htstream >>
832 					       8);
833 			tx_nss = GET_TXMCSSUPP(priv->adapter->user_htstream >>
834 					       8) &
835 				 0x0f;
836 		} else {
837 			rx_nss = GET_RXMCSSUPP(priv->adapter->user_htstream);
838 			tx_nss = GET_TXMCSSUPP(priv->adapter->user_htstream) &
839 				 0x0f;
840 		}
841 		/** force 1x1 when enable 80P80 */
842 		if (bw_80p80)
843 			rx_nss = tx_nss = 1;
844 	}
845 #endif
846 	mcs_map_result = 0;
847 	for (nss = 1; nss <= 8; nss++) {
848 		mcs_user = GET_VHTNSSMCS(mcs_map_user, nss);
849 		mcs_resp = GET_VHTNSSMCS(mcs_map_resp, nss);
850 #if defined(PCIE9098) || defined(SD9098) || defined(USB9098) ||                \
851 	defined(PCIE9097) || defined(SD9097) || defined(USB9097) ||            \
852 	defined(SDNW62X) || defined(PCIENW62X) || defined(USBNW62X)
853 		if ((rx_nss != 0) && (nss > rx_nss))
854 			mcs_user = NO_NSS_SUPPORT;
855 #endif
856 		if ((mcs_user == NO_NSS_SUPPORT) ||
857 		    (mcs_resp == NO_NSS_SUPPORT))
858 			SET_VHTNSSMCS(mcs_map_result, nss, NO_NSS_SUPPORT);
859 		else
860 			SET_VHTNSSMCS(mcs_map_result, nss,
861 				      MIN(mcs_user, mcs_resp));
862 	}
863 	/* rx MCS map */
864 	pvht_cap->vht_cap.mcs_sets.rx_mcs_map =
865 		wlan_cpu_to_le16(mcs_map_result);
866 
867 	/* rx highest rate */
868 	pvht_cap->vht_cap.mcs_sets.rx_max_rate =
869 		wlan_convert_mcsmap_to_maxrate(priv, bands, mcs_map_result);
870 	pvht_cap->vht_cap.mcs_sets.rx_max_rate =
871 		wlan_cpu_to_le16(pvht_cap->vht_cap.mcs_sets.rx_max_rate);
872 
873 	/* tx MCS Set find the minimum of the user tx mcs and ap tx mcs */
874 	mcs_map_resp = mcs_map_user =
875 		GET_DEVTXMCSMAP(priv->usr_dot_11ac_mcs_support);
876 	if (flag)
877 		mcs_map_resp =
878 			wlan_le16_to_cpu(pvht_cap->vht_cap.mcs_sets.tx_mcs_map);
879 	mcs_map_result = 0;
880 	for (nss = 1; nss <= 8; nss++) {
881 		mcs_user = GET_VHTNSSMCS(mcs_map_user, nss);
882 		mcs_resp = GET_VHTNSSMCS(mcs_map_resp, nss);
883 #if defined(PCIE9098) || defined(SD9098) || defined(USB9098) ||                \
884 	defined(PCIE9097) || defined(SD9097) || defined(USB9097) ||            \
885 	defined(SDNW62X) || defined(PCIENW62X) || defined(USBNW62X)
886 		if ((tx_nss != 0) && (nss > tx_nss))
887 			mcs_user = NO_NSS_SUPPORT;
888 #endif
889 		if ((mcs_user == NO_NSS_SUPPORT) ||
890 		    (mcs_resp == NO_NSS_SUPPORT))
891 			SET_VHTNSSMCS(mcs_map_result, nss, NO_NSS_SUPPORT);
892 		else
893 			SET_VHTNSSMCS(mcs_map_result, nss,
894 				      MIN(mcs_user, mcs_resp));
895 	}
896 
897 	/* tx MCS map */
898 	pvht_cap->vht_cap.mcs_sets.tx_mcs_map =
899 		wlan_cpu_to_le16(mcs_map_result);
900 	/* tx highest rate */
901 	pvht_cap->vht_cap.mcs_sets.tx_max_rate =
902 		wlan_convert_mcsmap_to_maxrate(priv, bands, mcs_map_result);
903 	pvht_cap->vht_cap.mcs_sets.tx_max_rate =
904 		wlan_cpu_to_le16(pvht_cap->vht_cap.mcs_sets.tx_max_rate);
905 
906 	LEAVE();
907 	return;
908 }
909 
910 /**
911  *  @brief This function fills the VHT cap tlv out put format is CPU
912  *
913  *  @param priv         A pointer to mlan_private structure
914  *  @param pvht_cap      A pointer to MrvlIETypes_HTCap_t structure
915  *  @param bands        Band configuration
916  *
917  *  @return             N/A
918  */
wlan_fill_vht_cap_ie(mlan_private * priv,IEEEtypes_VHTCap_t * pvht_cap,t_u16 bands)919 void wlan_fill_vht_cap_ie(mlan_private *priv, IEEEtypes_VHTCap_t *pvht_cap,
920 			  t_u16 bands)
921 {
922 	ENTER();
923 
924 	pvht_cap->ieee_hdr.element_id = VHT_CAPABILITY;
925 	pvht_cap->ieee_hdr.len = sizeof(VHT_capa_t);
926 
927 	/* Fill VHT cap info */
928 	wlan_fill_cap_info(priv, &pvht_cap->vht_cap, bands);
929 
930 	/* rx MCS map */
931 	pvht_cap->vht_cap.mcs_sets.rx_mcs_map =
932 		GET_DEVRXMCSMAP(priv->usr_dot_11ac_mcs_support);
933 
934 	/* rx highest rate */
935 	pvht_cap->vht_cap.mcs_sets.rx_max_rate = wlan_convert_mcsmap_to_maxrate(
936 		priv, bands, pvht_cap->vht_cap.mcs_sets.rx_mcs_map);
937 
938 	/* tx MCS map */
939 	pvht_cap->vht_cap.mcs_sets.tx_mcs_map =
940 		GET_DEVTXMCSMAP(priv->usr_dot_11ac_mcs_support);
941 	/* tx highest rate */
942 	pvht_cap->vht_cap.mcs_sets.tx_max_rate = wlan_convert_mcsmap_to_maxrate(
943 		priv, bands, pvht_cap->vht_cap.mcs_sets.tx_mcs_map);
944 
945 	LEAVE();
946 	return;
947 }
948 
949 /*
950  *  @brief This function check if AP is in 11ac mode
951  *
952  *  @param priv         A pointer to mlan_private structure
953  *
954  *  @return             MTRUE/MFALSE
955  */
wlan_is_ap_in_11ac_mode(mlan_private * priv)956 t_u8 wlan_is_ap_in_11ac_mode(mlan_private *priv)
957 {
958 	BSSDescriptor_t *pbss_desc;
959 	IEEEtypes_VHTOprat_t *vht_oprat = MNULL;
960 	pbss_desc = &priv->curr_bss_params.bss_descriptor;
961 	vht_oprat = pbss_desc->pvht_oprat;
962 	if (!pbss_desc->pvht_cap)
963 		return MFALSE;
964 	if (vht_oprat && (vht_oprat->ieee_hdr.element_id == VHT_OPERATION)) {
965 		if (vht_oprat->chan_width == VHT_OPER_CHWD_20_40MHZ)
966 			return MFALSE;
967 		else
968 			return MTRUE;
969 	} else
970 		return MFALSE;
971 }
972 
973 /**
974  *  @brief This function fills the VHTOperation ie out put format is CPU
975  *
976  *  @param priv         A pointer to mlan_private structure
977  *  @param vht_oprat    A pointer to IEEEtypes_VHTOprat_t structure
978  *  @param sta_ptr      A pointer to sta_node
979  *
980  *  @return             N/A
981  */
wlan_fill_tdls_vht_oprat_ie(mlan_private * priv,IEEEtypes_VHTOprat_t * vht_oprat,sta_node * sta_ptr)982 void wlan_fill_tdls_vht_oprat_ie(mlan_private *priv,
983 				 IEEEtypes_VHTOprat_t *vht_oprat,
984 				 sta_node *sta_ptr)
985 {
986 	t_u8 supp_chwd_set;
987 	t_u8 peer_supp_chwd_set;
988 	t_u8 ap_supp_chwd_set;
989 	t_u32 usr_vht_cap_info;
990 
991 	t_u16 mcs_map_user = 0;
992 	t_u16 mcs_map_resp = 0;
993 	t_u16 mcs_map_result = 0;
994 	t_u16 mcs_user = 0;
995 	t_u16 mcs_resp = 0;
996 	t_u16 nss;
997 	t_u8 chan_bw = 0;
998 	BSSDescriptor_t *pbss_desc;
999 	IEEEtypes_VHTCap_t *pvht_cap = &sta_ptr->vht_cap;
1000 	IEEEtypes_VHTCap_t *ap_vht_cap = MNULL;
1001 	ENTER();
1002 
1003 	pbss_desc = &priv->curr_bss_params.bss_descriptor;
1004 
1005 	/* Check if AP is in 11ac mode */
1006 	if (MFALSE == wlan_is_ap_in_11ac_mode(priv)) {
1007 		if (sta_ptr->ExtCap.ieee_hdr.element_id != EXT_CAPABILITY) {
1008 			PRINTM(MMSG, "No Peer's Ext_cap info\n");
1009 			return;
1010 		}
1011 		if (!ISSUPP_EXTCAP_TDLS_WIDER_BANDWIDTH(
1012 			    sta_ptr->ExtCap.ext_cap)) {
1013 			PRINTM(MMSG,
1014 			       "Peer don't support Wider Bandwitch in Ext_cap\n");
1015 			return;
1016 		}
1017 	} else {
1018 		ap_vht_cap = pbss_desc->pvht_cap;
1019 	}
1020 
1021 	vht_oprat->ieee_hdr.element_id = VHT_OPERATION;
1022 	vht_oprat->ieee_hdr.len =
1023 		sizeof(IEEEtypes_VHTOprat_t) - sizeof(IEEEtypes_Header_t);
1024 
1025 	if (pbss_desc->bss_band & BAND_A)
1026 		usr_vht_cap_info = priv->usr_dot_11ac_dev_cap_a;
1027 	else
1028 		usr_vht_cap_info = priv->usr_dot_11ac_dev_cap_bg;
1029 
1030 	/* find the minmum bandwith between AP/TDLS peers */
1031 	supp_chwd_set = GET_VHTCAP_CHWDSET(usr_vht_cap_info);
1032 	peer_supp_chwd_set = GET_VHTCAP_CHWDSET(pvht_cap->vht_cap.vht_cap_info);
1033 	supp_chwd_set = MIN(supp_chwd_set, peer_supp_chwd_set);
1034 
1035 	/* We need check AP's bandwidth when TDLS_WIDER_BANDWIDTH is off */
1036 	if (ap_vht_cap &&
1037 	    !ISSUPP_EXTCAP_TDLS_WIDER_BANDWIDTH(sta_ptr->ExtCap.ext_cap)) {
1038 		ap_supp_chwd_set =
1039 			GET_VHTCAP_CHWDSET(ap_vht_cap->vht_cap.vht_cap_info);
1040 		supp_chwd_set = MIN(supp_chwd_set, ap_supp_chwd_set);
1041 	}
1042 	switch (supp_chwd_set) {
1043 	case VHT_CAP_CHWD_80MHZ:
1044 		vht_oprat->chan_width = VHT_OPER_CHWD_80MHZ;
1045 		break;
1046 	case VHT_CAP_CHWD_160MHZ:
1047 		vht_oprat->chan_width = VHT_OPER_CHWD_160MHZ;
1048 		break;
1049 	case VHT_CAP_CHWD_80_80MHZ:
1050 		vht_oprat->chan_width = VHT_OPER_CHWD_80_80MHZ;
1051 		break;
1052 	}
1053 
1054 	/* Fill BASIC VHT MCS and NSS Set */
1055 	/* rx MCS Set, find the minimum of the user rx mcs and peer rx mcs*/
1056 	mcs_map_user = GET_DEVRXMCSMAP(priv->usr_dot_11ac_mcs_support);
1057 	mcs_map_resp = pvht_cap->vht_cap.mcs_sets.rx_mcs_map;
1058 	mcs_map_result = 0;
1059 	for (nss = 1; nss <= 8; nss++) {
1060 		mcs_user = GET_VHTNSSMCS(mcs_map_user, nss);
1061 		mcs_resp = GET_VHTNSSMCS(mcs_map_resp, nss);
1062 		if ((mcs_user == NO_NSS_SUPPORT) ||
1063 		    (mcs_resp == NO_NSS_SUPPORT))
1064 			SET_VHTNSSMCS(mcs_map_result, nss, NO_NSS_SUPPORT);
1065 		else
1066 			SET_VHTNSSMCS(mcs_map_result, nss,
1067 				      MIN(mcs_user, mcs_resp));
1068 	}
1069 	/* Basic MCS map */
1070 	vht_oprat->basic_MCS_map = mcs_map_result;
1071 	switch (vht_oprat->chan_width) {
1072 	case VHT_OPER_CHWD_80MHZ:
1073 		chan_bw = CHANNEL_BW_80MHZ;
1074 		break;
1075 	case VHT_OPER_CHWD_160MHZ:
1076 		chan_bw = CHANNEL_BW_160MHZ;
1077 		break;
1078 	case VHT_OPER_CHWD_80_80MHZ:
1079 		chan_bw = CHANNEL_BW_80MHZ;
1080 		break;
1081 	}
1082 	vht_oprat->chan_center_freq_1 = wlan_get_center_freq_idx(
1083 		priv, BAND_AAC, pbss_desc->channel, chan_bw);
1084 
1085 	LEAVE();
1086 	return;
1087 }
1088 
1089 /**
1090  *  @brief This function would check whether support 80+80Mhz
1091  *
1092  *  @param pmpriv A pointer to mlan_private structure
1093  *  @param pbss_desc   A pointer to BSSDescriptor_t structure
1094  *
1095  *  @return  ret  suport 80+80Mhz or not
1096  */
wlan_is_80_80_support(mlan_private * pmpriv,BSSDescriptor_t * pbss_desc)1097 t_u8 wlan_is_80_80_support(mlan_private *pmpriv, BSSDescriptor_t *pbss_desc)
1098 {
1099 	t_u8 ret = MFALSE;
1100 #if defined(PCIE9098) || defined(SD9098) || defined(USB9098) ||                \
1101 	defined(PCIE9097) || defined(SD9097) || defined(USB9097) ||            \
1102 	defined(SDNW62X) || defined(PCIENW62X) || defined(USBNW62X)
1103 	t_u16 rx_nss = 0, tx_nss = 0;
1104 	IEEEtypes_VHTCap_t *pvht_cap = pbss_desc->pvht_cap;
1105 	MrvlIEtypes_He_cap_t *phecap = MNULL;
1106 	IEEEtypes_HECap_t *pBsshecap = MNULL;
1107 #endif
1108 
1109 	ENTER();
1110 
1111 #if defined(PCIE9098) || defined(SD9098) || defined(USB9098) ||                \
1112 	defined(PCIE9097) || defined(SD9097) || defined(USB9097) ||            \
1113 	defined(SDNW62X) || defined(PCIENW62X) || defined(USBNW62X)
1114 	if (!IS_CARD9098(pmpriv->adapter->card_type) &&
1115 	    !IS_CARDNW62X(pmpriv->adapter->card_type) &&
1116 	    !IS_CARD9097(pmpriv->adapter->card_type))
1117 		return ret;
1118 	/** check band A */
1119 	if (!(pbss_desc->bss_band & BAND_A))
1120 		return ret;
1121 
1122 	/** check band A antenna setting */
1123 	rx_nss = GET_RXMCSSUPP(pmpriv->adapter->user_htstream >> 8);
1124 	tx_nss = GET_TXMCSSUPP(pmpriv->adapter->user_htstream >> 8) & 0x0f;
1125 	/** check if support 2*2 */
1126 	if (rx_nss != 2 || tx_nss != 2)
1127 		return ret;
1128 	/** check if AP support AC 80P80 */
1129 	if (ISSUPP_11ACBW8080(pmpriv->usr_dot_11ac_dev_cap_a) && pvht_cap &&
1130 	    ISSUPP_11ACBW8080(pvht_cap->vht_cap.vht_cap_info))
1131 		ret = MTRUE;
1132 	/** check if AP support AX 80P80 */
1133 	if (pbss_desc->phe_cap) {
1134 		pBsshecap = (IEEEtypes_HECap_t *)pbss_desc->phe_cap;
1135 		phecap = (MrvlIEtypes_He_cap_t *)pmpriv->user_he_cap;
1136 		if (ret && (phecap->he_phy_cap[0] & MBIT(4)) &&
1137 		    (pBsshecap->he_phy_cap[0] & MBIT(4)))
1138 			ret = MTRUE;
1139 		else
1140 			ret = MFALSE;
1141 	}
1142 #endif
1143 	LEAVE();
1144 	return ret;
1145 }
1146 
1147 /**
1148  *  @brief This function append the 802_11N tlv
1149  *
1150  *  @param pmpriv       A pointer to mlan_private structure
1151  *  @param pbss_desc    A pointer to BSSDescriptor_t structure
1152  *  @param ppbuffer     A Pointer to command buffer pointer
1153  *
1154  *  @return bytes added to the buffer
1155  */
wlan_cmd_append_11ac_tlv(mlan_private * pmpriv,BSSDescriptor_t * pbss_desc,t_u8 ** ppbuffer)1156 int wlan_cmd_append_11ac_tlv(mlan_private *pmpriv, BSSDescriptor_t *pbss_desc,
1157 			     t_u8 **ppbuffer)
1158 {
1159 	pmlan_adapter pmadapter = pmpriv->adapter;
1160 	MrvlIETypes_VHTCap_t *pvht_cap;
1161 	MrvlIETypes_OperModeNtf_t *pmrvl_oper_mode;
1162 	t_u16 mcs_map_user = 0;
1163 	t_u16 nss;
1164 	int ret_len = 0;
1165 	t_u8 bw_80p80 = MFALSE;
1166 #if defined(PCIE9098) || defined(SD9098) || defined(USB9098) ||                \
1167 	defined(PCIE9097) || defined(USB9097) || defined(SDNW62X) ||           \
1168 	defined(PCIENW62X) || defined(USBNW62X) || defined(SD9097)
1169 	t_u16 rx_nss = 0;
1170 #endif
1171 
1172 	ENTER();
1173 
1174 	/* Null Checks */
1175 	if (ppbuffer == MNULL) {
1176 		LEAVE();
1177 		return 0;
1178 	}
1179 	if (*ppbuffer == MNULL) {
1180 		LEAVE();
1181 		return 0;
1182 	}
1183 
1184 	/* VHT Capabilities IE */
1185 	if (pbss_desc->pvht_cap &&
1186 	    wlan_get_nss_vht_mcs(
1187 		    pbss_desc->pvht_cap->vht_cap.mcs_sets.rx_mcs_map)) {
1188 		pvht_cap = (MrvlIETypes_VHTCap_t *)*ppbuffer;
1189 		memset(pmadapter, pvht_cap, 0, sizeof(MrvlIETypes_VHTCap_t));
1190 		pvht_cap->header.type = wlan_cpu_to_le16(VHT_CAPABILITY);
1191 		pvht_cap->header.len = sizeof(VHT_capa_t);
1192 		memcpy_ext(pmadapter,
1193 			   (t_u8 *)pvht_cap + sizeof(MrvlIEtypesHeader_t),
1194 			   (t_u8 *)pbss_desc->pvht_cap +
1195 				   sizeof(IEEEtypes_Header_t),
1196 			   pvht_cap->header.len, sizeof(VHT_capa_t));
1197 		bw_80p80 = wlan_is_80_80_support(pmpriv, pbss_desc);
1198 		wlan_fill_vht_cap_tlv(pmpriv, pvht_cap, pbss_desc->bss_band,
1199 				      MFALSE, bw_80p80);
1200 
1201 		HEXDUMP("VHT_CAPABILITIES IE", (t_u8 *)pvht_cap,
1202 			sizeof(MrvlIETypes_VHTCap_t));
1203 		*ppbuffer += sizeof(MrvlIETypes_VHTCap_t);
1204 		ret_len += sizeof(MrvlIETypes_VHTCap_t);
1205 		pvht_cap->header.len = wlan_cpu_to_le16(pvht_cap->header.len);
1206 	} else {
1207 		LEAVE();
1208 		return 0;
1209 	}
1210 
1211 	/* Operating Mode Notification IE */
1212 	pmrvl_oper_mode = (MrvlIETypes_OperModeNtf_t *)*ppbuffer;
1213 	memset(pmadapter, pmrvl_oper_mode, 0,
1214 	       sizeof(MrvlIETypes_OperModeNtf_t));
1215 	pmrvl_oper_mode->header.type = wlan_cpu_to_le16(OPER_MODE_NTF);
1216 	pmrvl_oper_mode->header.len = sizeof(t_u8);
1217 
1218 	if (pmpriv->usr_dot_11ac_opermode_bw ||
1219 	    pmpriv->usr_dot_11ac_opermode_nss) {
1220 		pmrvl_oper_mode->oper_mode |=
1221 			(pmpriv->usr_dot_11ac_opermode_nss - 1) << 4;
1222 		pmrvl_oper_mode->oper_mode |=
1223 			pmpriv->usr_dot_11ac_opermode_bw - 1;
1224 		if (pbss_desc->bss_band & BAND_G) {
1225 			if (!(IS_OPER_MODE_20M(pmrvl_oper_mode->oper_mode))) {
1226 				if (pbss_desc->pht_cap->ht_cap.ht_cap_info &
1227 				    MBIT(1))
1228 					SET_OPER_MODE_40M(
1229 						pmrvl_oper_mode->oper_mode);
1230 				else
1231 					SET_OPER_MODE_20M(
1232 						pmrvl_oper_mode->oper_mode);
1233 			}
1234 		}
1235 	} else {
1236 		/** set default bandwidth:80M*/
1237 		SET_OPER_MODE_80M(pmrvl_oper_mode->oper_mode);
1238 #if defined(PCIE9098) || defined(SD9098) || defined(USB9098) ||                \
1239 	defined(PCIE9097) || defined(SD9097) || defined(USB9097) ||            \
1240 	defined(SDNW62X) || defined(PCIENW62X) || defined(USBNW62X)
1241 		if (IS_CARD9098(pmadapter->card_type) ||
1242 		    IS_CARDNW62X(pmadapter->card_type) ||
1243 		    IS_CARD9097(pmadapter->card_type)) {
1244 			if (pbss_desc->bss_band & BAND_A)
1245 				rx_nss = GET_RXMCSSUPP(
1246 					pmadapter->user_htstream >> 8);
1247 			else
1248 				rx_nss =
1249 					GET_RXMCSSUPP(pmadapter->user_htstream);
1250 		}
1251 #endif
1252 		mcs_map_user =
1253 			GET_DEVRXMCSMAP(pmpriv->usr_dot_11ac_mcs_support);
1254 		nss = wlan_get_nss_num_vht_mcs(mcs_map_user);
1255 
1256 #if defined(PCIE9098) || defined(SD9098) || defined(USB9098) ||                \
1257 	defined(PCIE9097) || defined(SD9097) || defined(USB9097) ||            \
1258 	defined(SDNW62X) || defined(PCIENW62X) || defined(USBNW62X)
1259 		if (IS_CARD9098(pmadapter->card_type) ||
1260 		    IS_CARDNW62X(pmadapter->card_type) ||
1261 		    IS_CARD9097(pmadapter->card_type)) {
1262 			PRINTM(MCMND, "rx_nss=%d nss=%d\n", rx_nss, nss);
1263 			nss = MIN(rx_nss, nss);
1264 		}
1265 #endif
1266 
1267 		pmrvl_oper_mode->oper_mode |= (nss - 1) << 4;
1268 
1269 		switch (pbss_desc->curr_bandwidth) {
1270 		case BW_20MHZ:
1271 			SET_OPER_MODE_20M(pmrvl_oper_mode->oper_mode);
1272 			break;
1273 		case BW_40MHZ:
1274 			SET_OPER_MODE_40M(pmrvl_oper_mode->oper_mode);
1275 			break;
1276 		case BW_80MHZ:
1277 		default:
1278 			break;
1279 		}
1280 	}
1281 	HEXDUMP("OPER MODE NTF IE", (t_u8 *)pmrvl_oper_mode,
1282 		sizeof(MrvlIETypes_OperModeNtf_t));
1283 	*ppbuffer += sizeof(MrvlIETypes_OperModeNtf_t);
1284 	ret_len += sizeof(MrvlIETypes_OperModeNtf_t);
1285 	pmrvl_oper_mode->header.len =
1286 		wlan_cpu_to_le16(pmrvl_oper_mode->header.len);
1287 
1288 	LEAVE();
1289 	return ret_len;
1290 }
1291 
1292 /**
1293  *  @brief 11ac configuration handler
1294  *
1295  *  @param pmadapter    A pointer to mlan_adapter structure
1296  *  @param pioctl_req   A pointer to ioctl request buffer
1297  *
1298  *  @return     MLAN_STATUS_SUCCESS --success, otherwise fail
1299  */
wlan_11ac_cfg_ioctl(pmlan_adapter pmadapter,pmlan_ioctl_req pioctl_req)1300 mlan_status wlan_11ac_cfg_ioctl(pmlan_adapter pmadapter,
1301 				pmlan_ioctl_req pioctl_req)
1302 {
1303 	mlan_status status = MLAN_STATUS_SUCCESS;
1304 	mlan_ds_11ac_cfg *cfg = MNULL;
1305 
1306 	ENTER();
1307 
1308 	if (pioctl_req->buf_len < sizeof(mlan_ds_11ac_cfg)) {
1309 		PRINTM(MINFO, "MLAN bss IOCTL length is too short.\n");
1310 		pioctl_req->data_read_written = 0;
1311 		pioctl_req->buf_len_needed = sizeof(mlan_ds_11ac_cfg);
1312 		pioctl_req->status_code = MLAN_ERROR_INVALID_PARAMETER;
1313 		LEAVE();
1314 		return MLAN_STATUS_RESOURCE;
1315 	}
1316 	cfg = (mlan_ds_11ac_cfg *)pioctl_req->pbuf;
1317 	switch (cfg->sub_command) {
1318 	case MLAN_OID_11AC_VHT_CFG:
1319 		status = wlan_11ac_ioctl_vhtcfg(pmadapter, pioctl_req);
1320 		break;
1321 	case MLAN_OID_11AC_CFG_SUPPORTED_MCS_SET:
1322 		status = wlan_11ac_ioctl_supported_mcs_set(pmadapter,
1323 							   pioctl_req);
1324 		break;
1325 	case MLAN_OID_11AC_OPERMODE_CFG:
1326 		status = wlan_11ac_ioctl_opermodecfg(pmadapter, pioctl_req);
1327 		break;
1328 	default:
1329 		pioctl_req->status_code = MLAN_ERROR_IOCTL_INVALID;
1330 		status = MLAN_STATUS_FAILURE;
1331 		break;
1332 	}
1333 	LEAVE();
1334 	return status;
1335 }
1336 
1337 /**
1338  *  @brief This function prepares 11ac cfg command
1339  *
1340  *  @param pmpriv       A pointer to mlan_private structure
1341  *  @param cmd      A pointer to HostCmd_DS_COMMAND structure
1342  *  @param cmd_action   the action: GET or SET
1343  *  @param pdata_buf    A pointer to data buffer
1344  *  @return         MLAN_STATUS_SUCCESS
1345  */
wlan_cmd_11ac_cfg(pmlan_private pmpriv,HostCmd_DS_COMMAND * cmd,t_u16 cmd_action,t_void * pdata_buf)1346 mlan_status wlan_cmd_11ac_cfg(pmlan_private pmpriv, HostCmd_DS_COMMAND *cmd,
1347 			      t_u16 cmd_action, t_void *pdata_buf)
1348 {
1349 	pmlan_adapter pmadapter = pmpriv->adapter;
1350 	HostCmd_DS_11AC_CFG *vhtcfg = &cmd->params.vhtcfg;
1351 	mlan_ds_11ac_vht_cfg *vht_cfg = (mlan_ds_11ac_vht_cfg *)pdata_buf;
1352 
1353 	ENTER();
1354 	cmd->command = wlan_cpu_to_le16(HostCmd_CMD_11AC_CFG);
1355 	cmd->size = wlan_cpu_to_le16(sizeof(HostCmd_DS_11AC_CFG) + S_DS_GEN);
1356 	vhtcfg->action = wlan_cpu_to_le16(cmd_action);
1357 	vhtcfg->band_config = vht_cfg->band & 0xFF;
1358 	// block user enable 80MHZ
1359 	if (IS_FW_SUPPORT_NO_80MHZ(pmadapter))
1360 		vht_cfg->bwcfg = 0;
1361 
1362 	vhtcfg->misc_config = vht_cfg->txrx & 0x3;
1363 	if (vhtcfg->misc_config != 2)
1364 		vhtcfg->misc_config |= (vht_cfg->bwcfg << 2);
1365 
1366 	vhtcfg->vht_cap_info = wlan_cpu_to_le32(vht_cfg->vht_cap_info);
1367 	vht_cfg->vht_rx_mcs = wlan_cpu_to_le32(vht_cfg->vht_rx_mcs);
1368 	memcpy_ext(pmadapter, &vhtcfg->vht_supp_mcs_set[0],
1369 		   &vht_cfg->vht_rx_mcs, sizeof(t_u32), sizeof(t_u32));
1370 	vht_cfg->vht_tx_mcs = wlan_cpu_to_le32(vht_cfg->vht_tx_mcs);
1371 	memcpy_ext(pmadapter, &vhtcfg->vht_supp_mcs_set[4],
1372 		   &vht_cfg->vht_tx_mcs, sizeof(t_u32), sizeof(t_u32));
1373 	LEAVE();
1374 	return MLAN_STATUS_SUCCESS;
1375 }
1376 
1377 /**
1378  *  @brief This function handles the command response of 11accfg
1379  *
1380  *  @param pmpriv       A pointer to mlan_private structure
1381  *  @param resp         A pointer to HostCmd_DS_COMMAND
1382  *  @param pioctl_buf   A pointer to mlan_ioctl_req structure
1383  *
1384  *  @return        MLAN_STATUS_SUCCESS
1385  */
wlan_ret_11ac_cfg(pmlan_private pmpriv,HostCmd_DS_COMMAND * resp,mlan_ioctl_req * pioctl_buf)1386 mlan_status wlan_ret_11ac_cfg(pmlan_private pmpriv, HostCmd_DS_COMMAND *resp,
1387 			      mlan_ioctl_req *pioctl_buf)
1388 {
1389 	pmlan_adapter pmadapter = pmpriv->adapter;
1390 	mlan_ds_11ac_cfg *cfg = MNULL;
1391 	HostCmd_DS_11AC_CFG *vhtcfg = &resp->params.vhtcfg;
1392 
1393 	ENTER();
1394 	if (pioctl_buf &&
1395 	    (wlan_le16_to_cpu(vhtcfg->action) == HostCmd_ACT_GEN_GET)) {
1396 		cfg = (mlan_ds_11ac_cfg *)pioctl_buf->pbuf;
1397 		cfg->param.vht_cfg.band = vhtcfg->band_config;
1398 		cfg->param.vht_cfg.txrx = vhtcfg->misc_config & 0x03;
1399 		if (cfg->param.vht_cfg.txrx & 0x1)
1400 			cfg->param.vht_cfg.bwcfg =
1401 				(vhtcfg->misc_config & 0x04) >> 2;
1402 		else
1403 			cfg->param.vht_cfg.bwcfg = 0;
1404 
1405 		cfg->param.vht_cfg.vht_cap_info =
1406 			wlan_le32_to_cpu(vhtcfg->vht_cap_info);
1407 		memcpy_ext(pmadapter, &cfg->param.vht_cfg.vht_rx_mcs,
1408 			   &vhtcfg->vht_supp_mcs_set[0], sizeof(t_u32),
1409 			   sizeof(t_u32));
1410 		cfg->param.vht_cfg.vht_rx_mcs =
1411 			wlan_le32_to_cpu(cfg->param.vht_cfg.vht_rx_mcs);
1412 		memcpy_ext(pmadapter, &cfg->param.vht_cfg.vht_tx_mcs,
1413 			   &vhtcfg->vht_supp_mcs_set[4], sizeof(t_u32),
1414 			   sizeof(t_u32));
1415 		cfg->param.vht_cfg.vht_tx_mcs =
1416 			wlan_le32_to_cpu(cfg->param.vht_cfg.vht_tx_mcs);
1417 		cfg->param.vht_cfg.vht_rx_max_rate =
1418 			wlan_convert_mcsmap_to_maxrate(
1419 				pmpriv, cfg->param.vht_cfg.band,
1420 				cfg->param.vht_cfg.vht_rx_mcs);
1421 		cfg->param.vht_cfg.vht_tx_max_rate =
1422 			wlan_convert_mcsmap_to_maxrate(
1423 				pmpriv, cfg->param.vht_cfg.band,
1424 				cfg->param.vht_cfg.vht_tx_mcs);
1425 	}
1426 	LEAVE();
1427 	return MLAN_STATUS_SUCCESS;
1428 }
1429 
wlan_update_11ac_cap(mlan_private * pmpriv)1430 void wlan_update_11ac_cap(mlan_private *pmpriv)
1431 {
1432 	mlan_adapter *pmadapter = pmpriv->adapter;
1433 
1434 	pmpriv->usr_dot_11ac_mcs_support = pmadapter->hw_dot_11ac_mcs_support;
1435 	pmpriv->usr_dot_11ac_dev_cap_bg =
1436 		pmadapter->hw_dot_11ac_dev_cap &
1437 		~DEFALUT_11AC_CAP_BEAMFORMING_RESET_MASK;
1438 	pmpriv->usr_dot_11ac_dev_cap_a =
1439 		pmadapter->hw_dot_11ac_dev_cap &
1440 		~DEFALUT_11AC_CAP_BEAMFORMING_RESET_MASK;
1441 	pmpriv->usr_dot_11ac_bw = BW_FOLLOW_VHTCAP;
1442 }
1443 
1444 /**
1445  *  @brief This function check if 11AC is allowed in bandcfg
1446  *
1447  *  @param pmpriv       A pointer to mlan_private structure
1448  *  @param bss_band     bss band
1449  *
1450  *  @return 0--not allowed, other value allowed
1451  */
wlan_11ac_bandconfig_allowed(mlan_private * pmpriv,t_u16 bss_band)1452 t_u8 wlan_11ac_bandconfig_allowed(mlan_private *pmpriv, t_u16 bss_band)
1453 {
1454 	if (pmpriv->bss_mode == MLAN_BSS_MODE_IBSS) {
1455 		if (bss_band & BAND_G)
1456 			return (pmpriv->adapter->adhoc_start_band & BAND_GAC);
1457 		else if (bss_band & BAND_A)
1458 			return (pmpriv->adapter->adhoc_start_band & BAND_AAC);
1459 	} else {
1460 		if (bss_band & BAND_G)
1461 			return (pmpriv->config_bands & BAND_GAC);
1462 		else if (bss_band & BAND_A)
1463 			return (pmpriv->config_bands & BAND_AAC);
1464 	}
1465 	return 0;
1466 }
1467