]> Pileus Git - ~andy/linux/blob - drivers/net/wireless/mwifiex/scan.c
iwlagn: fix a race in the unmapping of the TFDs
[~andy/linux] / drivers / net / wireless / mwifiex / scan.c
1 /*
2  * Marvell Wireless LAN device driver: scan ioctl and command handling
3  *
4  * Copyright (C) 2011, Marvell International Ltd.
5  *
6  * This software file (the "File") is distributed by Marvell International
7  * Ltd. under the terms of the GNU General Public License Version 2, June 1991
8  * (the "License").  You may use, redistribute and/or modify this File in
9  * accordance with the terms and conditions of the License, a copy of which
10  * is available by writing to the Free Software Foundation, Inc.,
11  * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA or on the
12  * worldwide web at http://www.gnu.org/licenses/old-licenses/gpl-2.0.txt.
13  *
14  * THE FILE IS DISTRIBUTED AS-IS, WITHOUT WARRANTY OF ANY KIND, AND THE
15  * IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE
16  * ARE EXPRESSLY DISCLAIMED.  The License provides additional details about
17  * this warranty disclaimer.
18  */
19
20 #include "decl.h"
21 #include "ioctl.h"
22 #include "util.h"
23 #include "fw.h"
24 #include "main.h"
25 #include "11n.h"
26 #include "cfg80211.h"
27
28 /* The maximum number of channels the firmware can scan per command */
29 #define MWIFIEX_MAX_CHANNELS_PER_SPECIFIC_SCAN   14
30
31 #define MWIFIEX_CHANNELS_PER_SCAN_CMD            4
32
33 /* Memory needed to store a max sized Channel List TLV for a firmware scan */
34 #define CHAN_TLV_MAX_SIZE  (sizeof(struct mwifiex_ie_types_header)         \
35                                 + (MWIFIEX_MAX_CHANNELS_PER_SPECIFIC_SCAN     \
36                                 *sizeof(struct mwifiex_chan_scan_param_set)))
37
38 /* Memory needed to store supported rate */
39 #define RATE_TLV_MAX_SIZE   (sizeof(struct mwifiex_ie_types_rates_param_set) \
40                                 + HOSTCMD_SUPPORTED_RATES)
41
42 /* Memory needed to store a max number/size WildCard SSID TLV for a firmware
43         scan */
44 #define WILDCARD_SSID_TLV_MAX_SIZE  \
45         (MWIFIEX_MAX_SSID_LIST_LENGTH *                                 \
46                 (sizeof(struct mwifiex_ie_types_wildcard_ssid_params)   \
47                         + IEEE80211_MAX_SSID_LEN))
48
49 /* Maximum memory needed for a mwifiex_scan_cmd_config with all TLVs at max */
50 #define MAX_SCAN_CFG_ALLOC (sizeof(struct mwifiex_scan_cmd_config)        \
51                                 + sizeof(struct mwifiex_ie_types_num_probes)   \
52                                 + sizeof(struct mwifiex_ie_types_htcap)       \
53                                 + CHAN_TLV_MAX_SIZE                 \
54                                 + RATE_TLV_MAX_SIZE                 \
55                                 + WILDCARD_SSID_TLV_MAX_SIZE)
56
57
58 union mwifiex_scan_cmd_config_tlv {
59         /* Scan configuration (variable length) */
60         struct mwifiex_scan_cmd_config config;
61         /* Max allocated block */
62         u8 config_alloc_buf[MAX_SCAN_CFG_ALLOC];
63 };
64
65 enum cipher_suite {
66         CIPHER_SUITE_TKIP,
67         CIPHER_SUITE_CCMP,
68         CIPHER_SUITE_MAX
69 };
70 static u8 mwifiex_wpa_oui[CIPHER_SUITE_MAX][4] = {
71         { 0x00, 0x50, 0xf2, 0x02 },     /* TKIP */
72         { 0x00, 0x50, 0xf2, 0x04 },     /* AES  */
73 };
74 static u8 mwifiex_rsn_oui[CIPHER_SUITE_MAX][4] = {
75         { 0x00, 0x0f, 0xac, 0x02 },     /* TKIP */
76         { 0x00, 0x0f, 0xac, 0x04 },     /* AES  */
77 };
78
79 /*
80  * This function parses a given IE for a given OUI.
81  *
82  * This is used to parse a WPA/RSN IE to find if it has
83  * a given oui in PTK.
84  */
85 static u8
86 mwifiex_search_oui_in_ie(struct ie_body *iebody, u8 *oui)
87 {
88         u8 count;
89
90         count = iebody->ptk_cnt[0];
91
92         /* There could be multiple OUIs for PTK hence
93            1) Take the length.
94            2) Check all the OUIs for AES.
95            3) If one of them is AES then pass success. */
96         while (count) {
97                 if (!memcmp(iebody->ptk_body, oui, sizeof(iebody->ptk_body)))
98                         return MWIFIEX_OUI_PRESENT;
99
100                 --count;
101                 if (count)
102                         iebody = (struct ie_body *) ((u8 *) iebody +
103                                                 sizeof(iebody->ptk_body));
104         }
105
106         pr_debug("info: %s: OUI is not found in PTK\n", __func__);
107         return MWIFIEX_OUI_NOT_PRESENT;
108 }
109
110 /*
111  * This function checks if a given OUI is present in a RSN IE.
112  *
113  * The function first checks if a RSN IE is present or not in the
114  * BSS descriptor. It tries to locate the OUI only if such an IE is
115  * present.
116  */
117 static u8
118 mwifiex_is_rsn_oui_present(struct mwifiex_bssdescriptor *bss_desc, u32 cipher)
119 {
120         u8 *oui;
121         struct ie_body *iebody;
122         u8 ret = MWIFIEX_OUI_NOT_PRESENT;
123
124         if (((bss_desc->bcn_rsn_ie) && ((*(bss_desc->bcn_rsn_ie)).
125                                         ieee_hdr.element_id == WLAN_EID_RSN))) {
126                 iebody = (struct ie_body *)
127                          (((u8 *) bss_desc->bcn_rsn_ie->data) +
128                          RSN_GTK_OUI_OFFSET);
129                 oui = &mwifiex_rsn_oui[cipher][0];
130                 ret = mwifiex_search_oui_in_ie(iebody, oui);
131                 if (ret)
132                         return ret;
133         }
134         return ret;
135 }
136
137 /*
138  * This function checks if a given OUI is present in a WPA IE.
139  *
140  * The function first checks if a WPA IE is present or not in the
141  * BSS descriptor. It tries to locate the OUI only if such an IE is
142  * present.
143  */
144 static u8
145 mwifiex_is_wpa_oui_present(struct mwifiex_bssdescriptor *bss_desc, u32 cipher)
146 {
147         u8 *oui;
148         struct ie_body *iebody;
149         u8 ret = MWIFIEX_OUI_NOT_PRESENT;
150
151         if (((bss_desc->bcn_wpa_ie) && ((*(bss_desc->bcn_wpa_ie)).
152                                       vend_hdr.element_id == WLAN_EID_WPA))) {
153                 iebody = (struct ie_body *) bss_desc->bcn_wpa_ie->data;
154                 oui = &mwifiex_wpa_oui[cipher][0];
155                 ret = mwifiex_search_oui_in_ie(iebody, oui);
156                 if (ret)
157                         return ret;
158         }
159         return ret;
160 }
161
162 /*
163  * This function compares two SSIDs and checks if they match.
164  */
165 s32
166 mwifiex_ssid_cmp(struct mwifiex_802_11_ssid *ssid1,
167                  struct mwifiex_802_11_ssid *ssid2)
168 {
169         if (!ssid1 || !ssid2 || (ssid1->ssid_len != ssid2->ssid_len))
170                 return -1;
171         return memcmp(ssid1->ssid, ssid2->ssid, ssid1->ssid_len);
172 }
173
174 /*
175  * Sends IOCTL request to start a scan with user configurations.
176  *
177  * This function allocates the IOCTL request buffer, fills it
178  * with requisite parameters and calls the IOCTL handler.
179  *
180  * Upon completion, it also generates a wireless event to notify
181  * applications.
182  */
183 int mwifiex_set_user_scan_ioctl(struct mwifiex_private *priv,
184                                 struct mwifiex_user_scan_cfg *scan_req)
185 {
186         int status;
187
188         priv->adapter->cmd_wait_q.condition = false;
189
190         status = mwifiex_scan_networks(priv, scan_req);
191         if (!status)
192                 status = mwifiex_wait_queue_complete(priv->adapter);
193
194         return status;
195 }
196
197 /*
198  * This function checks if wapi is enabled in driver and scanned network is
199  * compatible with it.
200  */
201 static bool
202 mwifiex_is_network_compatible_for_wapi(struct mwifiex_private *priv,
203                                        struct mwifiex_bssdescriptor *bss_desc)
204 {
205         if (priv->sec_info.wapi_enabled &&
206             (bss_desc->bcn_wapi_ie &&
207              ((*(bss_desc->bcn_wapi_ie)).ieee_hdr.element_id ==
208                         WLAN_EID_BSS_AC_ACCESS_DELAY))) {
209                 return true;
210         }
211         return false;
212 }
213
214 /*
215  * This function checks if driver is configured with no security mode and
216  * scanned network is compatible with it.
217  */
218 static bool
219 mwifiex_is_network_compatible_for_no_sec(struct mwifiex_private *priv,
220                                        struct mwifiex_bssdescriptor *bss_desc)
221 {
222         if (priv->sec_info.wep_status == MWIFIEX_802_11_WEP_DISABLED
223             && !priv->sec_info.wpa_enabled && !priv->sec_info.wpa2_enabled
224             && ((!bss_desc->bcn_wpa_ie) ||
225                 ((*(bss_desc->bcn_wpa_ie)).vend_hdr.element_id !=
226             WLAN_EID_WPA))
227             && ((!bss_desc->bcn_rsn_ie) ||
228                 ((*(bss_desc->bcn_rsn_ie)).ieee_hdr.element_id !=
229             WLAN_EID_RSN))
230             && !priv->sec_info.encryption_mode
231             && !bss_desc->privacy) {
232                 return true;
233         }
234         return false;
235 }
236
237 /*
238  * This function checks if static WEP is enabled in driver and scanned network
239  * is compatible with it.
240  */
241 static bool
242 mwifiex_is_network_compatible_for_static_wep(struct mwifiex_private *priv,
243                                        struct mwifiex_bssdescriptor *bss_desc)
244 {
245         if (priv->sec_info.wep_status == MWIFIEX_802_11_WEP_ENABLED
246             && !priv->sec_info.wpa_enabled && !priv->sec_info.wpa2_enabled
247             && bss_desc->privacy) {
248                 return true;
249         }
250         return false;
251 }
252
253 /*
254  * This function checks if wpa is enabled in driver and scanned network is
255  * compatible with it.
256  */
257 static bool
258 mwifiex_is_network_compatible_for_wpa(struct mwifiex_private *priv,
259                                       struct mwifiex_bssdescriptor *bss_desc)
260 {
261         if (priv->sec_info.wep_status == MWIFIEX_802_11_WEP_DISABLED
262             && priv->sec_info.wpa_enabled && !priv->sec_info.wpa2_enabled
263             && ((bss_desc->bcn_wpa_ie) && ((*(bss_desc->bcn_wpa_ie)).vend_hdr.
264                                                 element_id == WLAN_EID_WPA))
265            /*
266             * Privacy bit may NOT be set in some APs like
267             * LinkSys WRT54G && bss_desc->privacy
268             */
269          ) {
270                 dev_dbg(priv->adapter->dev, "info: %s: WPA:"
271                         " wpa_ie=%#x wpa2_ie=%#x WEP=%s WPA=%s WPA2=%s "
272                         "EncMode=%#x privacy=%#x\n", __func__,
273                         (bss_desc->bcn_wpa_ie) ?
274                         (*(bss_desc->bcn_wpa_ie)).
275                         vend_hdr.element_id : 0,
276                         (bss_desc->bcn_rsn_ie) ?
277                         (*(bss_desc->bcn_rsn_ie)).
278                         ieee_hdr.element_id : 0,
279                         (priv->sec_info.wep_status ==
280                         MWIFIEX_802_11_WEP_ENABLED) ? "e" : "d",
281                         (priv->sec_info.wpa_enabled) ? "e" : "d",
282                         (priv->sec_info.wpa2_enabled) ? "e" : "d",
283                         priv->sec_info.encryption_mode,
284                         bss_desc->privacy);
285                 return true;
286         }
287         return false;
288 }
289
290 /*
291  * This function checks if wpa2 is enabled in driver and scanned network is
292  * compatible with it.
293  */
294 static bool
295 mwifiex_is_network_compatible_for_wpa2(struct mwifiex_private *priv,
296                                        struct mwifiex_bssdescriptor *bss_desc)
297 {
298         if (priv->sec_info.wep_status == MWIFIEX_802_11_WEP_DISABLED
299            && !priv->sec_info.wpa_enabled && priv->sec_info.wpa2_enabled
300            && ((bss_desc->bcn_rsn_ie) && ((*(bss_desc->bcn_rsn_ie)).ieee_hdr.
301                                                 element_id == WLAN_EID_RSN))
302            /*
303             * Privacy bit may NOT be set in some APs like
304             * LinkSys WRT54G && bss_desc->privacy
305             */
306          ) {
307                 dev_dbg(priv->adapter->dev, "info: %s: WPA2: "
308                         " wpa_ie=%#x wpa2_ie=%#x WEP=%s WPA=%s WPA2=%s "
309                         "EncMode=%#x privacy=%#x\n", __func__,
310                         (bss_desc->bcn_wpa_ie) ?
311                         (*(bss_desc->bcn_wpa_ie)).
312                         vend_hdr.element_id : 0,
313                         (bss_desc->bcn_rsn_ie) ?
314                         (*(bss_desc->bcn_rsn_ie)).
315                         ieee_hdr.element_id : 0,
316                         (priv->sec_info.wep_status ==
317                         MWIFIEX_802_11_WEP_ENABLED) ? "e" : "d",
318                         (priv->sec_info.wpa_enabled) ? "e" : "d",
319                         (priv->sec_info.wpa2_enabled) ? "e" : "d",
320                         priv->sec_info.encryption_mode,
321                         bss_desc->privacy);
322                 return true;
323         }
324         return false;
325 }
326
327 /*
328  * This function checks if adhoc AES is enabled in driver and scanned network is
329  * compatible with it.
330  */
331 static bool
332 mwifiex_is_network_compatible_for_adhoc_aes(struct mwifiex_private *priv,
333                                        struct mwifiex_bssdescriptor *bss_desc)
334 {
335         if (priv->sec_info.wep_status == MWIFIEX_802_11_WEP_DISABLED
336             && !priv->sec_info.wpa_enabled && !priv->sec_info.wpa2_enabled
337             && ((!bss_desc->bcn_wpa_ie) || ((*(bss_desc->bcn_wpa_ie)).vend_hdr.
338                    element_id != WLAN_EID_WPA))
339             && ((!bss_desc->bcn_rsn_ie) || ((*(bss_desc->bcn_rsn_ie)).ieee_hdr.
340                    element_id != WLAN_EID_RSN))
341             && !priv->sec_info.encryption_mode
342             && bss_desc->privacy) {
343                 return true;
344         }
345         return false;
346 }
347
348 /*
349  * This function checks if dynamic WEP is enabled in driver and scanned network
350  * is compatible with it.
351  */
352 static bool
353 mwifiex_is_network_compatible_for_dynamic_wep(struct mwifiex_private *priv,
354                                        struct mwifiex_bssdescriptor *bss_desc)
355 {
356         if (priv->sec_info.wep_status == MWIFIEX_802_11_WEP_DISABLED
357             && !priv->sec_info.wpa_enabled && !priv->sec_info.wpa2_enabled
358             && ((!bss_desc->bcn_wpa_ie) || ((*(bss_desc->bcn_wpa_ie)).vend_hdr.
359                    element_id != WLAN_EID_WPA))
360             && ((!bss_desc->bcn_rsn_ie) || ((*(bss_desc->bcn_rsn_ie)).ieee_hdr.
361                    element_id != WLAN_EID_RSN))
362             && priv->sec_info.encryption_mode
363             && bss_desc->privacy) {
364                 dev_dbg(priv->adapter->dev, "info: %s: dynamic "
365                         "WEP: wpa_ie=%#x wpa2_ie=%#x "
366                         "EncMode=%#x privacy=%#x\n",
367                         __func__,
368                         (bss_desc->bcn_wpa_ie) ?
369                         (*(bss_desc->bcn_wpa_ie)).
370                         vend_hdr.element_id : 0,
371                         (bss_desc->bcn_rsn_ie) ?
372                         (*(bss_desc->bcn_rsn_ie)).
373                         ieee_hdr.element_id : 0,
374                         priv->sec_info.encryption_mode,
375                         bss_desc->privacy);
376                 return true;
377         }
378         return false;
379 }
380
381 /*
382  * This function checks if a scanned network is compatible with the driver
383  * settings.
384  *
385  *   WEP     WPA    WPA2   ad-hoc encrypt                  Network
386  * enabled enabled enabled  AES    mode   Privacy WPA WPA2 Compatible
387  *    0       0       0      0     NONE      0     0   0   yes No security
388  *    0       1       0      0      x        1x    1   x   yes WPA (disable
389  *                                                         HT if no AES)
390  *    0       0       1      0      x        1x    x   1   yes WPA2 (disable
391  *                                                         HT if no AES)
392  *    0       0       0      1     NONE      1     0   0   yes Ad-hoc AES
393  *    1       0       0      0     NONE      1     0   0   yes Static WEP
394  *                                                         (disable HT)
395  *    0       0       0      0    !=NONE     1     0   0   yes Dynamic WEP
396  *
397  * Compatibility is not matched while roaming, except for mode.
398  */
399 static s32
400 mwifiex_is_network_compatible(struct mwifiex_private *priv,
401                               struct mwifiex_bssdescriptor *bss_desc, u32 mode)
402 {
403         struct mwifiex_adapter *adapter = priv->adapter;
404
405         bss_desc->disable_11n = false;
406
407         /* Don't check for compatibility if roaming */
408         if (priv->media_connected && (priv->bss_mode == NL80211_IFTYPE_STATION)
409             && (bss_desc->bss_mode == NL80211_IFTYPE_STATION))
410                 return 0;
411
412         if (priv->wps.session_enable) {
413                 dev_dbg(adapter->dev,
414                         "info: return success directly in WPS period\n");
415                 return 0;
416         }
417
418         if (mwifiex_is_network_compatible_for_wapi(priv, bss_desc)) {
419                 dev_dbg(adapter->dev, "info: return success for WAPI AP\n");
420                 return 0;
421         }
422
423         if (bss_desc->bss_mode == mode) {
424                 if (mwifiex_is_network_compatible_for_no_sec(priv, bss_desc)) {
425                         /* No security */
426                         return 0;
427                 } else if (mwifiex_is_network_compatible_for_static_wep(priv,
428                                                                 bss_desc)) {
429                         /* Static WEP enabled */
430                         dev_dbg(adapter->dev, "info: Disable 11n in WEP mode.\n");
431                         bss_desc->disable_11n = true;
432                         return 0;
433                 } else if (mwifiex_is_network_compatible_for_wpa(priv,
434                                                                  bss_desc)) {
435                         /* WPA enabled */
436                         if (((priv->adapter->config_bands & BAND_GN
437                               || priv->adapter->config_bands & BAND_AN)
438                               && bss_desc->bcn_ht_cap)
439                               && !mwifiex_is_wpa_oui_present(bss_desc,
440                                         CIPHER_SUITE_CCMP)) {
441
442                                 if (mwifiex_is_wpa_oui_present(bss_desc,
443                                             CIPHER_SUITE_TKIP)) {
444                                         dev_dbg(adapter->dev,
445                                                 "info: Disable 11n if AES "
446                                                 "is not supported by AP\n");
447                                         bss_desc->disable_11n = true;
448                                 } else {
449                                         return -1;
450                                 }
451                         }
452                         return 0;
453                 } else if (mwifiex_is_network_compatible_for_wpa2(priv,
454                                                         bss_desc)) {
455                         /* WPA2 enabled */
456                         if (((priv->adapter->config_bands & BAND_GN
457                               || priv->adapter->config_bands & BAND_AN)
458                               && bss_desc->bcn_ht_cap)
459                               && !mwifiex_is_rsn_oui_present(bss_desc,
460                                         CIPHER_SUITE_CCMP)) {
461
462                                 if (mwifiex_is_rsn_oui_present(bss_desc,
463                                             CIPHER_SUITE_TKIP)) {
464                                         dev_dbg(adapter->dev,
465                                                 "info: Disable 11n if AES "
466                                                 "is not supported by AP\n");
467                                         bss_desc->disable_11n = true;
468                                 } else {
469                                         return -1;
470                                 }
471                         }
472                         return 0;
473                 } else if (mwifiex_is_network_compatible_for_adhoc_aes(priv,
474                                                                 bss_desc)) {
475                         /* Ad-hoc AES enabled */
476                         return 0;
477                 } else if (mwifiex_is_network_compatible_for_dynamic_wep(priv,
478                                                         bss_desc)) {
479                         /* Dynamic WEP enabled */
480                         return 0;
481                 }
482
483                 /* Security doesn't match */
484                 dev_dbg(adapter->dev, "info: %s: failed: "
485                        "wpa_ie=%#x wpa2_ie=%#x WEP=%s WPA=%s WPA2=%s EncMode"
486                        "=%#x privacy=%#x\n",
487                        __func__,
488                        (bss_desc->bcn_wpa_ie) ?
489                        (*(bss_desc->bcn_wpa_ie)).vend_hdr.
490                        element_id : 0,
491                        (bss_desc->bcn_rsn_ie) ?
492                        (*(bss_desc->bcn_rsn_ie)).ieee_hdr.
493                        element_id : 0,
494                        (priv->sec_info.wep_status ==
495                                 MWIFIEX_802_11_WEP_ENABLED) ? "e" : "d",
496                        (priv->sec_info.wpa_enabled) ? "e" : "d",
497                        (priv->sec_info.wpa2_enabled) ? "e" : "d",
498                        priv->sec_info.encryption_mode, bss_desc->privacy);
499                 return -1;
500         }
501
502         /* Mode doesn't match */
503         return -1;
504 }
505
506 /*
507  * This function creates a channel list for the driver to scan, based
508  * on region/band information.
509  *
510  * This routine is used for any scan that is not provided with a
511  * specific channel list to scan.
512  */
513 static void
514 mwifiex_scan_create_channel_list(struct mwifiex_private *priv,
515                                 const struct mwifiex_user_scan_cfg
516                                 *user_scan_in,
517                                 struct mwifiex_chan_scan_param_set
518                                 *scan_chan_list,
519                                 u8 filtered_scan)
520 {
521         enum ieee80211_band band;
522         struct ieee80211_supported_band *sband;
523         struct ieee80211_channel *ch;
524         struct mwifiex_adapter *adapter = priv->adapter;
525         int chan_idx = 0, i;
526         u8 scan_type;
527
528         for (band = 0; (band < IEEE80211_NUM_BANDS) ; band++) {
529
530                 if (!priv->wdev->wiphy->bands[band])
531                         continue;
532
533                 sband = priv->wdev->wiphy->bands[band];
534
535                 for (i = 0; (i < sband->n_channels) ; i++) {
536                         ch = &sband->channels[i];
537                         if (ch->flags & IEEE80211_CHAN_DISABLED)
538                                 continue;
539                         scan_chan_list[chan_idx].radio_type = band;
540                         scan_type = ch->flags & IEEE80211_CHAN_PASSIVE_SCAN;
541                         if (user_scan_in &&
542                                 user_scan_in->chan_list[0].scan_time)
543                                 scan_chan_list[chan_idx].max_scan_time =
544                                         cpu_to_le16((u16) user_scan_in->
545                                         chan_list[0].scan_time);
546                         else if (scan_type == MWIFIEX_SCAN_TYPE_PASSIVE)
547                                 scan_chan_list[chan_idx].max_scan_time =
548                                         cpu_to_le16(adapter->passive_scan_time);
549                         else
550                                 scan_chan_list[chan_idx].max_scan_time =
551                                         cpu_to_le16(adapter->active_scan_time);
552                         if (scan_type == MWIFIEX_SCAN_TYPE_PASSIVE)
553                                 scan_chan_list[chan_idx].chan_scan_mode_bitmap
554                                         |= MWIFIEX_PASSIVE_SCAN;
555                         else
556                                 scan_chan_list[chan_idx].chan_scan_mode_bitmap
557                                         &= ~MWIFIEX_PASSIVE_SCAN;
558                         scan_chan_list[chan_idx].chan_number =
559                                                         (u32) ch->hw_value;
560                         if (filtered_scan) {
561                                 scan_chan_list[chan_idx].max_scan_time =
562                                 cpu_to_le16(adapter->specific_scan_time);
563                                 scan_chan_list[chan_idx].chan_scan_mode_bitmap
564                                         |= MWIFIEX_DISABLE_CHAN_FILT;
565                         }
566                         chan_idx++;
567                 }
568
569         }
570 }
571
572 /*
573  * This function constructs and sends multiple scan config commands to
574  * the firmware.
575  *
576  * Previous routines in the code flow have created a scan command configuration
577  * with any requested TLVs.  This function splits the channel TLV into maximum
578  * channels supported per scan lists and sends the portion of the channel TLV,
579  * along with the other TLVs, to the firmware.
580  */
581 static int
582 mwifiex_scan_channel_list(struct mwifiex_private *priv,
583                           u32 max_chan_per_scan, u8 filtered_scan,
584                           struct mwifiex_scan_cmd_config *scan_cfg_out,
585                           struct mwifiex_ie_types_chan_list_param_set
586                           *chan_tlv_out,
587                           struct mwifiex_chan_scan_param_set *scan_chan_list)
588 {
589         int ret = 0;
590         struct mwifiex_chan_scan_param_set *tmp_chan_list;
591         struct mwifiex_chan_scan_param_set *start_chan;
592
593         u32 tlv_idx;
594         u32 total_scan_time;
595         u32 done_early;
596
597         if (!scan_cfg_out || !chan_tlv_out || !scan_chan_list) {
598                 dev_dbg(priv->adapter->dev,
599                         "info: Scan: Null detect: %p, %p, %p\n",
600                        scan_cfg_out, chan_tlv_out, scan_chan_list);
601                 return -1;
602         }
603
604         chan_tlv_out->header.type = cpu_to_le16(TLV_TYPE_CHANLIST);
605
606         /* Set the temp channel struct pointer to the start of the desired
607            list */
608         tmp_chan_list = scan_chan_list;
609
610         /* Loop through the desired channel list, sending a new firmware scan
611            commands for each max_chan_per_scan channels (or for 1,6,11
612            individually if configured accordingly) */
613         while (tmp_chan_list->chan_number) {
614
615                 tlv_idx = 0;
616                 total_scan_time = 0;
617                 chan_tlv_out->header.len = 0;
618                 start_chan = tmp_chan_list;
619                 done_early = false;
620
621                 /*
622                  * Construct the Channel TLV for the scan command.  Continue to
623                  * insert channel TLVs until:
624                  *   - the tlv_idx hits the maximum configured per scan command
625                  *   - the next channel to insert is 0 (end of desired channel
626                  *     list)
627                  *   - done_early is set (controlling individual scanning of
628                  *     1,6,11)
629                  */
630                 while (tlv_idx < max_chan_per_scan
631                        && tmp_chan_list->chan_number && !done_early) {
632
633                         dev_dbg(priv->adapter->dev,
634                                 "info: Scan: Chan(%3d), Radio(%d),"
635                                 " Mode(%d, %d), Dur(%d)\n",
636                                tmp_chan_list->chan_number,
637                                tmp_chan_list->radio_type,
638                                tmp_chan_list->chan_scan_mode_bitmap
639                                & MWIFIEX_PASSIVE_SCAN,
640                                (tmp_chan_list->chan_scan_mode_bitmap
641                                & MWIFIEX_DISABLE_CHAN_FILT) >> 1,
642                                le16_to_cpu(tmp_chan_list->max_scan_time));
643
644                         /* Copy the current channel TLV to the command being
645                            prepared */
646                         memcpy(chan_tlv_out->chan_scan_param + tlv_idx,
647                                tmp_chan_list,
648                                sizeof(chan_tlv_out->chan_scan_param));
649
650                         /* Increment the TLV header length by the size
651                            appended */
652                         chan_tlv_out->header.len =
653                         cpu_to_le16(le16_to_cpu(chan_tlv_out->header.len) +
654                         (sizeof(chan_tlv_out->chan_scan_param)));
655
656                         /*
657                          * The tlv buffer length is set to the number of bytes
658                          * of the between the channel tlv pointer and the start
659                          * of the tlv buffer.  This compensates for any TLVs
660                          * that were appended before the channel list.
661                          */
662                         scan_cfg_out->tlv_buf_len = (u32) ((u8 *) chan_tlv_out -
663                                                         scan_cfg_out->tlv_buf);
664
665                         /* Add the size of the channel tlv header and the data
666                            length */
667                         scan_cfg_out->tlv_buf_len +=
668                                 (sizeof(chan_tlv_out->header)
669                                  + le16_to_cpu(chan_tlv_out->header.len));
670
671                         /* Increment the index to the channel tlv we are
672                            constructing */
673                         tlv_idx++;
674
675                         /* Count the total scan time per command */
676                         total_scan_time +=
677                                 le16_to_cpu(tmp_chan_list->max_scan_time);
678
679                         done_early = false;
680
681                         /* Stop the loop if the *current* channel is in the
682                            1,6,11 set and we are not filtering on a BSSID
683                            or SSID. */
684                         if (!filtered_scan && (tmp_chan_list->chan_number == 1
685                                 || tmp_chan_list->chan_number == 6
686                                 || tmp_chan_list->chan_number == 11))
687                                 done_early = true;
688
689                         /* Increment the tmp pointer to the next channel to
690                            be scanned */
691                         tmp_chan_list++;
692
693                         /* Stop the loop if the *next* channel is in the 1,6,11
694                            set.  This will cause it to be the only channel
695                            scanned on the next interation */
696                         if (!filtered_scan && (tmp_chan_list->chan_number == 1
697                                 || tmp_chan_list->chan_number == 6
698                                 || tmp_chan_list->chan_number == 11))
699                                 done_early = true;
700                 }
701
702                 /* The total scan time should be less than scan command timeout
703                    value */
704                 if (total_scan_time > MWIFIEX_MAX_TOTAL_SCAN_TIME) {
705                         dev_err(priv->adapter->dev, "total scan time %dms"
706                                 " is over limit (%dms), scan skipped\n",
707                                 total_scan_time, MWIFIEX_MAX_TOTAL_SCAN_TIME);
708                         ret = -1;
709                         break;
710                 }
711
712                 priv->adapter->scan_channels = start_chan;
713
714                 /* Send the scan command to the firmware with the specified
715                    cfg */
716                 ret = mwifiex_send_cmd_async(priv, HostCmd_CMD_802_11_SCAN,
717                                              HostCmd_ACT_GEN_SET, 0,
718                                              scan_cfg_out);
719                 if (ret)
720                         break;
721         }
722
723         if (ret)
724                 return -1;
725
726         return 0;
727 }
728
729 /*
730  * This function constructs a scan command configuration structure to use
731  * in scan commands.
732  *
733  * Application layer or other functions can invoke network scanning
734  * with a scan configuration supplied in a user scan configuration structure.
735  * This structure is used as the basis of one or many scan command configuration
736  * commands that are sent to the command processing module and eventually to the
737  * firmware.
738  *
739  * This function creates a scan command configuration structure  based on the
740  * following user supplied parameters (if present):
741  *      - SSID filter
742  *      - BSSID filter
743  *      - Number of Probes to be sent
744  *      - Channel list
745  *
746  * If the SSID or BSSID filter is not present, the filter is disabled/cleared.
747  * If the number of probes is not set, adapter default setting is used.
748  */
749 static void
750 mwifiex_scan_setup_scan_config(struct mwifiex_private *priv,
751                                const struct mwifiex_user_scan_cfg *user_scan_in,
752                                struct mwifiex_scan_cmd_config *scan_cfg_out,
753                                struct mwifiex_ie_types_chan_list_param_set
754                                **chan_list_out,
755                                struct mwifiex_chan_scan_param_set
756                                *scan_chan_list,
757                                u8 *max_chan_per_scan, u8 *filtered_scan,
758                                u8 *scan_current_only)
759 {
760         struct mwifiex_adapter *adapter = priv->adapter;
761         struct mwifiex_ie_types_num_probes *num_probes_tlv;
762         struct mwifiex_ie_types_wildcard_ssid_params *wildcard_ssid_tlv;
763         struct mwifiex_ie_types_rates_param_set *rates_tlv;
764         const u8 zero_mac[ETH_ALEN] = { 0, 0, 0, 0, 0, 0 };
765         u8 *tlv_pos;
766         u32 num_probes;
767         u32 ssid_len;
768         u32 chan_idx;
769         u32 scan_type;
770         u16 scan_dur;
771         u8 channel;
772         u8 radio_type;
773         u32 ssid_idx;
774         u8 ssid_filter;
775         u8 rates[MWIFIEX_SUPPORTED_RATES];
776         u32 rates_size;
777         struct mwifiex_ie_types_htcap *ht_cap;
778
779         /* The tlv_buf_len is calculated for each scan command.  The TLVs added
780            in this routine will be preserved since the routine that sends the
781            command will append channelTLVs at *chan_list_out.  The difference
782            between the *chan_list_out and the tlv_buf start will be used to
783            calculate the size of anything we add in this routine. */
784         scan_cfg_out->tlv_buf_len = 0;
785
786         /* Running tlv pointer.  Assigned to chan_list_out at end of function
787            so later routines know where channels can be added to the command
788            buf */
789         tlv_pos = scan_cfg_out->tlv_buf;
790
791         /* Initialize the scan as un-filtered; the flag is later set to TRUE
792            below if a SSID or BSSID filter is sent in the command */
793         *filtered_scan = false;
794
795         /* Initialize the scan as not being only on the current channel.  If
796            the channel list is customized, only contains one channel, and is
797            the active channel, this is set true and data flow is not halted. */
798         *scan_current_only = false;
799
800         if (user_scan_in) {
801
802                 /* Default the ssid_filter flag to TRUE, set false under
803                    certain wildcard conditions and qualified by the existence
804                    of an SSID list before marking the scan as filtered */
805                 ssid_filter = true;
806
807                 /* Set the BSS type scan filter, use Adapter setting if
808                    unset */
809                 scan_cfg_out->bss_mode =
810                         (user_scan_in->bss_mode ? (u8) user_scan_in->
811                          bss_mode : (u8) adapter->scan_mode);
812
813                 /* Set the number of probes to send, use Adapter setting
814                    if unset */
815                 num_probes =
816                         (user_scan_in->num_probes ? user_scan_in->
817                          num_probes : adapter->scan_probes);
818
819                 /*
820                  * Set the BSSID filter to the incoming configuration,
821                  * if non-zero.  If not set, it will remain disabled
822                  * (all zeros).
823                  */
824                 memcpy(scan_cfg_out->specific_bssid,
825                        user_scan_in->specific_bssid,
826                        sizeof(scan_cfg_out->specific_bssid));
827
828                 for (ssid_idx = 0;
829                      ((ssid_idx < ARRAY_SIZE(user_scan_in->ssid_list))
830                       && (*user_scan_in->ssid_list[ssid_idx].ssid
831                           || user_scan_in->ssid_list[ssid_idx].max_len));
832                      ssid_idx++) {
833
834                         ssid_len = strlen(user_scan_in->ssid_list[ssid_idx].
835                                           ssid) + 1;
836
837                         wildcard_ssid_tlv =
838                                 (struct mwifiex_ie_types_wildcard_ssid_params *)
839                                 tlv_pos;
840                         wildcard_ssid_tlv->header.type =
841                                 cpu_to_le16(TLV_TYPE_WILDCARDSSID);
842                         wildcard_ssid_tlv->header.len = cpu_to_le16(
843                                 (u16) (ssid_len + sizeof(wildcard_ssid_tlv->
844                                                          max_ssid_length)));
845                         wildcard_ssid_tlv->max_ssid_length =
846                                 user_scan_in->ssid_list[ssid_idx].max_len;
847
848                         memcpy(wildcard_ssid_tlv->ssid,
849                                user_scan_in->ssid_list[ssid_idx].ssid,
850                                ssid_len);
851
852                         tlv_pos += (sizeof(wildcard_ssid_tlv->header)
853                                 + le16_to_cpu(wildcard_ssid_tlv->header.len));
854
855                         dev_dbg(adapter->dev, "info: scan: ssid_list[%d]: %s, %d\n",
856                                 ssid_idx, wildcard_ssid_tlv->ssid,
857                                 wildcard_ssid_tlv->max_ssid_length);
858
859                         /* Empty wildcard ssid with a maxlen will match many or
860                            potentially all SSIDs (maxlen == 32), therefore do
861                            not treat the scan as
862                            filtered. */
863                         if (!ssid_len && wildcard_ssid_tlv->max_ssid_length)
864                                 ssid_filter = false;
865
866                 }
867
868                 /*
869                  *  The default number of channels sent in the command is low to
870                  *  ensure the response buffer from the firmware does not
871                  *  truncate scan results.  That is not an issue with an SSID
872                  *  or BSSID filter applied to the scan results in the firmware.
873                  */
874                 if ((ssid_idx && ssid_filter)
875                     || memcmp(scan_cfg_out->specific_bssid, &zero_mac,
876                               sizeof(zero_mac)))
877                         *filtered_scan = true;
878         } else {
879                 scan_cfg_out->bss_mode = (u8) adapter->scan_mode;
880                 num_probes = adapter->scan_probes;
881         }
882
883         /*
884          *  If a specific BSSID or SSID is used, the number of channels in the
885          *  scan command will be increased to the absolute maximum.
886          */
887         if (*filtered_scan)
888                 *max_chan_per_scan = MWIFIEX_MAX_CHANNELS_PER_SPECIFIC_SCAN;
889         else
890                 *max_chan_per_scan = MWIFIEX_CHANNELS_PER_SCAN_CMD;
891
892         /* If the input config or adapter has the number of Probes set,
893            add tlv */
894         if (num_probes) {
895
896                 dev_dbg(adapter->dev, "info: scan: num_probes = %d\n",
897                                                 num_probes);
898
899                 num_probes_tlv = (struct mwifiex_ie_types_num_probes *) tlv_pos;
900                 num_probes_tlv->header.type = cpu_to_le16(TLV_TYPE_NUMPROBES);
901                 num_probes_tlv->header.len =
902                         cpu_to_le16(sizeof(num_probes_tlv->num_probes));
903                 num_probes_tlv->num_probes = cpu_to_le16((u16) num_probes);
904
905                 tlv_pos += sizeof(num_probes_tlv->header) +
906                         le16_to_cpu(num_probes_tlv->header.len);
907
908         }
909
910         /* Append rates tlv */
911         memset(rates, 0, sizeof(rates));
912
913         rates_size = mwifiex_get_supported_rates(priv, rates);
914
915         rates_tlv = (struct mwifiex_ie_types_rates_param_set *) tlv_pos;
916         rates_tlv->header.type = cpu_to_le16(WLAN_EID_SUPP_RATES);
917         rates_tlv->header.len = cpu_to_le16((u16) rates_size);
918         memcpy(rates_tlv->rates, rates, rates_size);
919         tlv_pos += sizeof(rates_tlv->header) + rates_size;
920
921         dev_dbg(adapter->dev, "info: SCAN_CMD: Rates size = %d\n", rates_size);
922
923         if (ISSUPP_11NENABLED(priv->adapter->fw_cap_info)
924             && (priv->adapter->config_bands & BAND_GN
925                 || priv->adapter->config_bands & BAND_AN)) {
926                 ht_cap = (struct mwifiex_ie_types_htcap *) tlv_pos;
927                 memset(ht_cap, 0, sizeof(struct mwifiex_ie_types_htcap));
928                 ht_cap->header.type = cpu_to_le16(WLAN_EID_HT_CAPABILITY);
929                 ht_cap->header.len =
930                                 cpu_to_le16(sizeof(struct ieee80211_ht_cap));
931                 radio_type =
932                         mwifiex_band_to_radio_type(priv->adapter->config_bands);
933                 mwifiex_fill_cap_info(priv, radio_type, ht_cap);
934                 tlv_pos += sizeof(struct mwifiex_ie_types_htcap);
935         }
936
937         /* Append vendor specific IE TLV */
938         mwifiex_cmd_append_vsie_tlv(priv, MWIFIEX_VSIE_MASK_SCAN, &tlv_pos);
939
940         /*
941          * Set the output for the channel TLV to the address in the tlv buffer
942          *   past any TLVs that were added in this function (SSID, num_probes).
943          *   Channel TLVs will be added past this for each scan command,
944          *   preserving the TLVs that were previously added.
945          */
946         *chan_list_out =
947                 (struct mwifiex_ie_types_chan_list_param_set *) tlv_pos;
948
949         if (user_scan_in && user_scan_in->chan_list[0].chan_number) {
950
951                 dev_dbg(adapter->dev, "info: Scan: Using supplied channel list\n");
952
953                 for (chan_idx = 0;
954                      chan_idx < MWIFIEX_USER_SCAN_CHAN_MAX
955                      && user_scan_in->chan_list[chan_idx].chan_number;
956                      chan_idx++) {
957
958                         channel = user_scan_in->chan_list[chan_idx].chan_number;
959                         (scan_chan_list + chan_idx)->chan_number = channel;
960
961                         radio_type =
962                                 user_scan_in->chan_list[chan_idx].radio_type;
963                         (scan_chan_list + chan_idx)->radio_type = radio_type;
964
965                         scan_type = user_scan_in->chan_list[chan_idx].scan_type;
966
967                         if (scan_type == MWIFIEX_SCAN_TYPE_PASSIVE)
968                                 (scan_chan_list +
969                                  chan_idx)->chan_scan_mode_bitmap
970                                         |= MWIFIEX_PASSIVE_SCAN;
971                         else
972                                 (scan_chan_list +
973                                  chan_idx)->chan_scan_mode_bitmap
974                                         &= ~MWIFIEX_PASSIVE_SCAN;
975
976                         if (user_scan_in->chan_list[chan_idx].scan_time) {
977                                 scan_dur = (u16) user_scan_in->
978                                         chan_list[chan_idx].scan_time;
979                         } else {
980                                 if (scan_type == MWIFIEX_SCAN_TYPE_PASSIVE)
981                                         scan_dur = adapter->passive_scan_time;
982                                 else if (*filtered_scan)
983                                         scan_dur = adapter->specific_scan_time;
984                                 else
985                                         scan_dur = adapter->active_scan_time;
986                         }
987
988                         (scan_chan_list + chan_idx)->min_scan_time =
989                                 cpu_to_le16(scan_dur);
990                         (scan_chan_list + chan_idx)->max_scan_time =
991                                 cpu_to_le16(scan_dur);
992                 }
993
994                 /* Check if we are only scanning the current channel */
995                 if ((chan_idx == 1)
996                     && (user_scan_in->chan_list[0].chan_number
997                         == priv->curr_bss_params.bss_descriptor.channel)) {
998                         *scan_current_only = true;
999                         dev_dbg(adapter->dev,
1000                                 "info: Scan: Scanning current channel only\n");
1001                 }
1002
1003         } else {
1004                 dev_dbg(adapter->dev,
1005                                 "info: Scan: Creating full region channel list\n");
1006                 mwifiex_scan_create_channel_list(priv, user_scan_in,
1007                                                  scan_chan_list,
1008                                                  *filtered_scan);
1009         }
1010 }
1011
1012 /*
1013  * This function inspects the scan response buffer for pointers to
1014  * expected TLVs.
1015  *
1016  * TLVs can be included at the end of the scan response BSS information.
1017  *
1018  * Data in the buffer is parsed pointers to TLVs that can potentially
1019  * be passed back in the response.
1020  */
1021 static void
1022 mwifiex_ret_802_11_scan_get_tlv_ptrs(struct mwifiex_adapter *adapter,
1023                                      struct mwifiex_ie_types_data *tlv,
1024                                      u32 tlv_buf_size, u32 req_tlv_type,
1025                                      struct mwifiex_ie_types_data **tlv_data)
1026 {
1027         struct mwifiex_ie_types_data *current_tlv;
1028         u32 tlv_buf_left;
1029         u32 tlv_type;
1030         u32 tlv_len;
1031
1032         current_tlv = tlv;
1033         tlv_buf_left = tlv_buf_size;
1034         *tlv_data = NULL;
1035
1036         dev_dbg(adapter->dev, "info: SCAN_RESP: tlv_buf_size = %d\n",
1037                                                 tlv_buf_size);
1038
1039         while (tlv_buf_left >= sizeof(struct mwifiex_ie_types_header)) {
1040
1041                 tlv_type = le16_to_cpu(current_tlv->header.type);
1042                 tlv_len = le16_to_cpu(current_tlv->header.len);
1043
1044                 if (sizeof(tlv->header) + tlv_len > tlv_buf_left) {
1045                         dev_err(adapter->dev, "SCAN_RESP: TLV buffer corrupt\n");
1046                         break;
1047                 }
1048
1049                 if (req_tlv_type == tlv_type) {
1050                         switch (tlv_type) {
1051                         case TLV_TYPE_TSFTIMESTAMP:
1052                                 dev_dbg(adapter->dev, "info: SCAN_RESP: TSF "
1053                                         "timestamp TLV, len = %d\n", tlv_len);
1054                                 *tlv_data = (struct mwifiex_ie_types_data *)
1055                                         current_tlv;
1056                                 break;
1057                         case TLV_TYPE_CHANNELBANDLIST:
1058                                 dev_dbg(adapter->dev, "info: SCAN_RESP: channel"
1059                                         " band list TLV, len = %d\n", tlv_len);
1060                                 *tlv_data = (struct mwifiex_ie_types_data *)
1061                                         current_tlv;
1062                                 break;
1063                         default:
1064                                 dev_err(adapter->dev,
1065                                         "SCAN_RESP: unhandled TLV = %d\n",
1066                                        tlv_type);
1067                                 /* Give up, this seems corrupted */
1068                                 return;
1069                         }
1070                 }
1071
1072                 if (*tlv_data)
1073                         break;
1074
1075
1076                 tlv_buf_left -= (sizeof(tlv->header) + tlv_len);
1077                 current_tlv =
1078                         (struct mwifiex_ie_types_data *) (current_tlv->data +
1079                                                           tlv_len);
1080
1081         }                       /* while */
1082 }
1083
1084 /*
1085  * This function parses provided beacon buffer and updates
1086  * respective fields in bss descriptor structure.
1087  */
1088 int
1089 mwifiex_update_bss_desc_with_ie(struct mwifiex_adapter *adapter,
1090                                 struct mwifiex_bssdescriptor *bss_entry,
1091                                 u8 *ie_buf, u32 ie_len)
1092 {
1093         int ret = 0;
1094         u8 element_id;
1095         struct ieee_types_fh_param_set *fh_param_set;
1096         struct ieee_types_ds_param_set *ds_param_set;
1097         struct ieee_types_cf_param_set *cf_param_set;
1098         struct ieee_types_ibss_param_set *ibss_param_set;
1099         u8 *current_ptr;
1100         u8 *rate;
1101         u8 element_len;
1102         u16 total_ie_len;
1103         u8 bytes_to_copy;
1104         u8 rate_size;
1105         u8 found_data_rate_ie;
1106         u32 bytes_left;
1107         struct ieee_types_vendor_specific *vendor_ie;
1108         const u8 wpa_oui[4] = { 0x00, 0x50, 0xf2, 0x01 };
1109         const u8 wmm_oui[4] = { 0x00, 0x50, 0xf2, 0x02 };
1110
1111         found_data_rate_ie = false;
1112         rate_size = 0;
1113         current_ptr = ie_buf;
1114         bytes_left = ie_len;
1115         bss_entry->beacon_buf = ie_buf;
1116         bss_entry->beacon_buf_size = ie_len;
1117
1118         /* Process variable IE */
1119         while (bytes_left >= 2) {
1120                 element_id = *current_ptr;
1121                 element_len = *(current_ptr + 1);
1122                 total_ie_len = element_len + sizeof(struct ieee_types_header);
1123
1124                 if (bytes_left < total_ie_len) {
1125                         dev_err(adapter->dev, "err: InterpretIE: in processing"
1126                                 " IE, bytes left < IE length\n");
1127                         return -1;
1128                 }
1129                 switch (element_id) {
1130                 case WLAN_EID_SSID:
1131                         bss_entry->ssid.ssid_len = element_len;
1132                         memcpy(bss_entry->ssid.ssid, (current_ptr + 2),
1133                                element_len);
1134                         dev_dbg(adapter->dev, "info: InterpretIE: ssid: "
1135                                               "%-32s\n", bss_entry->ssid.ssid);
1136                         break;
1137
1138                 case WLAN_EID_SUPP_RATES:
1139                         memcpy(bss_entry->data_rates, current_ptr + 2,
1140                                element_len);
1141                         memcpy(bss_entry->supported_rates, current_ptr + 2,
1142                                element_len);
1143                         rate_size = element_len;
1144                         found_data_rate_ie = true;
1145                         break;
1146
1147                 case WLAN_EID_FH_PARAMS:
1148                         fh_param_set =
1149                                 (struct ieee_types_fh_param_set *) current_ptr;
1150                         memcpy(&bss_entry->phy_param_set.fh_param_set,
1151                                fh_param_set,
1152                                sizeof(struct ieee_types_fh_param_set));
1153                         break;
1154
1155                 case WLAN_EID_DS_PARAMS:
1156                         ds_param_set =
1157                                 (struct ieee_types_ds_param_set *) current_ptr;
1158
1159                         bss_entry->channel = ds_param_set->current_chan;
1160
1161                         memcpy(&bss_entry->phy_param_set.ds_param_set,
1162                                ds_param_set,
1163                                sizeof(struct ieee_types_ds_param_set));
1164                         break;
1165
1166                 case WLAN_EID_CF_PARAMS:
1167                         cf_param_set =
1168                                 (struct ieee_types_cf_param_set *) current_ptr;
1169                         memcpy(&bss_entry->ss_param_set.cf_param_set,
1170                                cf_param_set,
1171                                sizeof(struct ieee_types_cf_param_set));
1172                         break;
1173
1174                 case WLAN_EID_IBSS_PARAMS:
1175                         ibss_param_set =
1176                                 (struct ieee_types_ibss_param_set *)
1177                                 current_ptr;
1178                         memcpy(&bss_entry->ss_param_set.ibss_param_set,
1179                                ibss_param_set,
1180                                sizeof(struct ieee_types_ibss_param_set));
1181                         break;
1182
1183                 case WLAN_EID_ERP_INFO:
1184                         bss_entry->erp_flags = *(current_ptr + 2);
1185                         break;
1186
1187                 case WLAN_EID_EXT_SUPP_RATES:
1188                         /*
1189                          * Only process extended supported rate
1190                          * if data rate is already found.
1191                          * Data rate IE should come before
1192                          * extended supported rate IE
1193                          */
1194                         if (found_data_rate_ie) {
1195                                 if ((element_len + rate_size) >
1196                                     MWIFIEX_SUPPORTED_RATES)
1197                                         bytes_to_copy =
1198                                                 (MWIFIEX_SUPPORTED_RATES -
1199                                                  rate_size);
1200                                 else
1201                                         bytes_to_copy = element_len;
1202
1203                                 rate = (u8 *) bss_entry->data_rates;
1204                                 rate += rate_size;
1205                                 memcpy(rate, current_ptr + 2, bytes_to_copy);
1206
1207                                 rate = (u8 *) bss_entry->supported_rates;
1208                                 rate += rate_size;
1209                                 memcpy(rate, current_ptr + 2, bytes_to_copy);
1210                         }
1211                         break;
1212
1213                 case WLAN_EID_VENDOR_SPECIFIC:
1214                         vendor_ie = (struct ieee_types_vendor_specific *)
1215                                         current_ptr;
1216
1217                         if (!memcmp
1218                             (vendor_ie->vend_hdr.oui, wpa_oui,
1219                              sizeof(wpa_oui))) {
1220                                 bss_entry->bcn_wpa_ie =
1221                                         (struct ieee_types_vendor_specific *)
1222                                         current_ptr;
1223                                 bss_entry->wpa_offset = (u16) (current_ptr -
1224                                                         bss_entry->beacon_buf);
1225                         } else if (!memcmp(vendor_ie->vend_hdr.oui, wmm_oui,
1226                                     sizeof(wmm_oui))) {
1227                                 if (total_ie_len ==
1228                                     sizeof(struct ieee_types_wmm_parameter)
1229                                     || total_ie_len ==
1230                                     sizeof(struct ieee_types_wmm_info))
1231                                         /*
1232                                          * Only accept and copy the WMM IE if
1233                                          * it matches the size expected for the
1234                                          * WMM Info IE or the WMM Parameter IE.
1235                                          */
1236                                         memcpy((u8 *) &bss_entry->wmm_ie,
1237                                                current_ptr, total_ie_len);
1238                         }
1239                         break;
1240                 case WLAN_EID_RSN:
1241                         bss_entry->bcn_rsn_ie =
1242                                 (struct ieee_types_generic *) current_ptr;
1243                         bss_entry->rsn_offset = (u16) (current_ptr -
1244                                                         bss_entry->beacon_buf);
1245                         break;
1246                 case WLAN_EID_BSS_AC_ACCESS_DELAY:
1247                         bss_entry->bcn_wapi_ie =
1248                                 (struct ieee_types_generic *) current_ptr;
1249                         bss_entry->wapi_offset = (u16) (current_ptr -
1250                                                         bss_entry->beacon_buf);
1251                         break;
1252                 case WLAN_EID_HT_CAPABILITY:
1253                         bss_entry->bcn_ht_cap = (struct ieee80211_ht_cap *)
1254                                         (current_ptr +
1255                                         sizeof(struct ieee_types_header));
1256                         bss_entry->ht_cap_offset = (u16) (current_ptr +
1257                                         sizeof(struct ieee_types_header) -
1258                                         bss_entry->beacon_buf);
1259                         break;
1260                 case WLAN_EID_HT_INFORMATION:
1261                         bss_entry->bcn_ht_info = (struct ieee80211_ht_info *)
1262                                         (current_ptr +
1263                                         sizeof(struct ieee_types_header));
1264                         bss_entry->ht_info_offset = (u16) (current_ptr +
1265                                         sizeof(struct ieee_types_header) -
1266                                         bss_entry->beacon_buf);
1267                         break;
1268                 case WLAN_EID_BSS_COEX_2040:
1269                         bss_entry->bcn_bss_co_2040 = (u8 *) (current_ptr +
1270                                         sizeof(struct ieee_types_header));
1271                         bss_entry->bss_co_2040_offset = (u16) (current_ptr +
1272                                         sizeof(struct ieee_types_header) -
1273                                                 bss_entry->beacon_buf);
1274                         break;
1275                 case WLAN_EID_EXT_CAPABILITY:
1276                         bss_entry->bcn_ext_cap = (u8 *) (current_ptr +
1277                                         sizeof(struct ieee_types_header));
1278                         bss_entry->ext_cap_offset = (u16) (current_ptr +
1279                                         sizeof(struct ieee_types_header) -
1280                                         bss_entry->beacon_buf);
1281                         break;
1282                 default:
1283                         break;
1284                 }
1285
1286                 current_ptr += element_len + 2;
1287
1288                 /* Need to account for IE ID and IE Len */
1289                 bytes_left -= (element_len + 2);
1290
1291         }       /* while (bytes_left > 2) */
1292         return ret;
1293 }
1294
1295 /*
1296  * This function converts radio type scan parameter to a band configuration
1297  * to be used in join command.
1298  */
1299 static u8
1300 mwifiex_radio_type_to_band(u8 radio_type)
1301 {
1302         switch (radio_type) {
1303         case HostCmd_SCAN_RADIO_TYPE_A:
1304                 return BAND_A;
1305         case HostCmd_SCAN_RADIO_TYPE_BG:
1306         default:
1307                 return BAND_G;
1308         }
1309 }
1310
1311 /*
1312  * This is an internal function used to start a scan based on an input
1313  * configuration.
1314  *
1315  * This uses the input user scan configuration information when provided in
1316  * order to send the appropriate scan commands to firmware to populate or
1317  * update the internal driver scan table.
1318  */
1319 int mwifiex_scan_networks(struct mwifiex_private *priv,
1320                           const struct mwifiex_user_scan_cfg *user_scan_in)
1321 {
1322         int ret = 0;
1323         struct mwifiex_adapter *adapter = priv->adapter;
1324         struct cmd_ctrl_node *cmd_node;
1325         union mwifiex_scan_cmd_config_tlv *scan_cfg_out;
1326         struct mwifiex_ie_types_chan_list_param_set *chan_list_out;
1327         u32 buf_size;
1328         struct mwifiex_chan_scan_param_set *scan_chan_list;
1329         u8 filtered_scan;
1330         u8 scan_current_chan_only;
1331         u8 max_chan_per_scan;
1332         unsigned long flags;
1333
1334         if (adapter->scan_processing) {
1335                 dev_dbg(adapter->dev, "cmd: Scan already in process...\n");
1336                 return ret;
1337         }
1338
1339         spin_lock_irqsave(&adapter->mwifiex_cmd_lock, flags);
1340         adapter->scan_processing = true;
1341         spin_unlock_irqrestore(&adapter->mwifiex_cmd_lock, flags);
1342
1343         if (priv->scan_block) {
1344                 dev_dbg(adapter->dev,
1345                         "cmd: Scan is blocked during association...\n");
1346                 return ret;
1347         }
1348
1349         scan_cfg_out = kzalloc(sizeof(union mwifiex_scan_cmd_config_tlv),
1350                                         GFP_KERNEL);
1351         if (!scan_cfg_out) {
1352                 dev_err(adapter->dev, "failed to alloc scan_cfg_out\n");
1353                 return -ENOMEM;
1354         }
1355
1356         buf_size = sizeof(struct mwifiex_chan_scan_param_set) *
1357                         MWIFIEX_USER_SCAN_CHAN_MAX;
1358         scan_chan_list = kzalloc(buf_size, GFP_KERNEL);
1359         if (!scan_chan_list) {
1360                 dev_err(adapter->dev, "failed to alloc scan_chan_list\n");
1361                 kfree(scan_cfg_out);
1362                 return -ENOMEM;
1363         }
1364
1365         mwifiex_scan_setup_scan_config(priv, user_scan_in,
1366                                        &scan_cfg_out->config, &chan_list_out,
1367                                        scan_chan_list, &max_chan_per_scan,
1368                                        &filtered_scan, &scan_current_chan_only);
1369
1370         ret = mwifiex_scan_channel_list(priv, max_chan_per_scan, filtered_scan,
1371                                         &scan_cfg_out->config, chan_list_out,
1372                                         scan_chan_list);
1373
1374         /* Get scan command from scan_pending_q and put to cmd_pending_q */
1375         if (!ret) {
1376                 spin_lock_irqsave(&adapter->scan_pending_q_lock, flags);
1377                 if (!list_empty(&adapter->scan_pending_q)) {
1378                         cmd_node = list_first_entry(&adapter->scan_pending_q,
1379                                                 struct cmd_ctrl_node, list);
1380                         list_del(&cmd_node->list);
1381                         spin_unlock_irqrestore(&adapter->scan_pending_q_lock,
1382                                                                         flags);
1383                         mwifiex_insert_cmd_to_pending_q(adapter, cmd_node,
1384                                                         true);
1385                 } else {
1386                         spin_unlock_irqrestore(&adapter->scan_pending_q_lock,
1387                                                flags);
1388                 }
1389         } else {
1390                 spin_lock_irqsave(&adapter->mwifiex_cmd_lock, flags);
1391                 adapter->scan_processing = true;
1392                 spin_unlock_irqrestore(&adapter->mwifiex_cmd_lock, flags);
1393         }
1394
1395         kfree(scan_cfg_out);
1396         kfree(scan_chan_list);
1397         return ret;
1398 }
1399
1400 /*
1401  * This function prepares a scan command to be sent to the firmware.
1402  *
1403  * This uses the scan command configuration sent to the command processing
1404  * module in command preparation stage to configure a scan command structure
1405  * to send to firmware.
1406  *
1407  * The fixed fields specifying the BSS type and BSSID filters as well as a
1408  * variable number/length of TLVs are sent in the command to firmware.
1409  *
1410  * Preparation also includes -
1411  *      - Setting command ID, and proper size
1412  *      - Ensuring correct endian-ness
1413  */
1414 int mwifiex_cmd_802_11_scan(struct host_cmd_ds_command *cmd,
1415                             struct mwifiex_scan_cmd_config *scan_cfg)
1416 {
1417         struct host_cmd_ds_802_11_scan *scan_cmd = &cmd->params.scan;
1418
1419         /* Set fixed field variables in scan command */
1420         scan_cmd->bss_mode = scan_cfg->bss_mode;
1421         memcpy(scan_cmd->bssid, scan_cfg->specific_bssid,
1422                sizeof(scan_cmd->bssid));
1423         memcpy(scan_cmd->tlv_buffer, scan_cfg->tlv_buf, scan_cfg->tlv_buf_len);
1424
1425         cmd->command = cpu_to_le16(HostCmd_CMD_802_11_SCAN);
1426
1427         /* Size is equal to the sizeof(fixed portions) + the TLV len + header */
1428         cmd->size = cpu_to_le16((u16) (sizeof(scan_cmd->bss_mode)
1429                                           + sizeof(scan_cmd->bssid)
1430                                           + scan_cfg->tlv_buf_len + S_DS_GEN));
1431
1432         return 0;
1433 }
1434
1435 /*
1436  * This function checks compatibility of requested network with current
1437  * driver settings.
1438  */
1439 int mwifiex_check_network_compatibility(struct mwifiex_private *priv,
1440                                         struct mwifiex_bssdescriptor *bss_desc)
1441 {
1442         int ret = -1;
1443
1444         if (!bss_desc)
1445                 return -1;
1446
1447         if ((mwifiex_get_cfp_by_band_and_channel_from_cfg80211(priv,
1448                         (u8) bss_desc->bss_band, (u16) bss_desc->channel))) {
1449                 switch (priv->bss_mode) {
1450                 case NL80211_IFTYPE_STATION:
1451                 case NL80211_IFTYPE_ADHOC:
1452                         ret = mwifiex_is_network_compatible(priv, bss_desc,
1453                                                             priv->bss_mode);
1454                         if (ret)
1455                                 dev_err(priv->adapter->dev, "cannot find ssid "
1456                                         "%s\n", bss_desc->ssid.ssid);
1457                                 break;
1458                 default:
1459                                 ret = 0;
1460                 }
1461         }
1462
1463         return ret;
1464 }
1465
1466 static int
1467 mwifiex_update_curr_bss_params(struct mwifiex_private *priv, u8 *bssid,
1468                                s32 rssi, const u8 *ie_buf, size_t ie_len,
1469                                u16 beacon_period, u16 cap_info_bitmap, u8 band)
1470 {
1471         struct mwifiex_bssdescriptor *bss_desc = NULL;
1472         int ret;
1473         unsigned long flags;
1474         u8 *beacon_ie;
1475
1476         /* Allocate and fill new bss descriptor */
1477         bss_desc = kzalloc(sizeof(struct mwifiex_bssdescriptor),
1478                         GFP_KERNEL);
1479         if (!bss_desc) {
1480                 dev_err(priv->adapter->dev, " failed to alloc bss_desc\n");
1481                 return -ENOMEM;
1482         }
1483
1484         beacon_ie = kmemdup(ie_buf, ie_len, GFP_KERNEL);
1485         if (!beacon_ie) {
1486                 dev_err(priv->adapter->dev, " failed to alloc beacon_ie\n");
1487                 return -ENOMEM;
1488         }
1489
1490         ret = mwifiex_fill_new_bss_desc(priv, bssid, rssi, beacon_ie,
1491                                         ie_len, beacon_period,
1492                                         cap_info_bitmap, band, bss_desc);
1493         if (ret)
1494                 goto done;
1495
1496         ret = mwifiex_check_network_compatibility(priv, bss_desc);
1497         if (ret)
1498                 goto done;
1499
1500         /* Update current bss descriptor parameters */
1501         spin_lock_irqsave(&priv->curr_bcn_buf_lock, flags);
1502         priv->curr_bss_params.bss_descriptor.bcn_wpa_ie = NULL;
1503         priv->curr_bss_params.bss_descriptor.wpa_offset = 0;
1504         priv->curr_bss_params.bss_descriptor.bcn_rsn_ie = NULL;
1505         priv->curr_bss_params.bss_descriptor.rsn_offset = 0;
1506         priv->curr_bss_params.bss_descriptor.bcn_wapi_ie = NULL;
1507         priv->curr_bss_params.bss_descriptor.wapi_offset = 0;
1508         priv->curr_bss_params.bss_descriptor.bcn_ht_cap = NULL;
1509         priv->curr_bss_params.bss_descriptor.ht_cap_offset =
1510                 0;
1511         priv->curr_bss_params.bss_descriptor.bcn_ht_info = NULL;
1512         priv->curr_bss_params.bss_descriptor.ht_info_offset =
1513                 0;
1514         priv->curr_bss_params.bss_descriptor.bcn_bss_co_2040 =
1515                 NULL;
1516         priv->curr_bss_params.bss_descriptor.
1517                 bss_co_2040_offset = 0;
1518         priv->curr_bss_params.bss_descriptor.bcn_ext_cap = NULL;
1519         priv->curr_bss_params.bss_descriptor.ext_cap_offset = 0;
1520         priv->curr_bss_params.bss_descriptor.beacon_buf = NULL;
1521         priv->curr_bss_params.bss_descriptor.beacon_buf_size =
1522                 0;
1523
1524         /* Make a copy of current BSSID descriptor */
1525         memcpy(&priv->curr_bss_params.bss_descriptor, bss_desc,
1526                 sizeof(priv->curr_bss_params.bss_descriptor));
1527         mwifiex_save_curr_bcn(priv);
1528         spin_unlock_irqrestore(&priv->curr_bcn_buf_lock, flags);
1529
1530 done:
1531         kfree(bss_desc);
1532         kfree(beacon_ie);
1533         return 0;
1534 }
1535
1536 static void mwifiex_free_bss_priv(struct cfg80211_bss *bss)
1537 {
1538         kfree(bss->priv);
1539 }
1540
1541 /*
1542  * This function handles the command response of scan.
1543  *
1544  * The response buffer for the scan command has the following
1545  * memory layout:
1546  *
1547  *      .-------------------------------------------------------------.
1548  *      |  Header (4 * sizeof(t_u16)):  Standard command response hdr |
1549  *      .-------------------------------------------------------------.
1550  *      |  BufSize (t_u16) : sizeof the BSS Description data          |
1551  *      .-------------------------------------------------------------.
1552  *      |  NumOfSet (t_u8) : Number of BSS Descs returned             |
1553  *      .-------------------------------------------------------------.
1554  *      |  BSSDescription data (variable, size given in BufSize)      |
1555  *      .-------------------------------------------------------------.
1556  *      |  TLV data (variable, size calculated using Header->Size,    |
1557  *      |            BufSize and sizeof the fixed fields above)       |
1558  *      .-------------------------------------------------------------.
1559  */
1560 int mwifiex_ret_802_11_scan(struct mwifiex_private *priv,
1561                             struct host_cmd_ds_command *resp)
1562 {
1563         int ret = 0;
1564         struct mwifiex_adapter *adapter = priv->adapter;
1565         struct cmd_ctrl_node *cmd_node;
1566         struct host_cmd_ds_802_11_scan_rsp *scan_rsp;
1567         struct mwifiex_ie_types_data *tlv_data;
1568         struct mwifiex_ie_types_tsf_timestamp *tsf_tlv;
1569         u8 *bss_info;
1570         u32 scan_resp_size;
1571         u32 bytes_left;
1572         u32 idx;
1573         u32 tlv_buf_size;
1574         struct mwifiex_chan_freq_power *cfp;
1575         struct mwifiex_ie_types_chan_band_list_param_set *chan_band_tlv;
1576         struct chan_band_param_set *chan_band;
1577         u8 is_bgscan_resp;
1578         unsigned long flags;
1579         struct cfg80211_bss *bss;
1580
1581         is_bgscan_resp = (le16_to_cpu(resp->command)
1582                 == HostCmd_CMD_802_11_BG_SCAN_QUERY);
1583         if (is_bgscan_resp)
1584                 scan_rsp = &resp->params.bg_scan_query_resp.scan_resp;
1585         else
1586                 scan_rsp = &resp->params.scan_resp;
1587
1588
1589         if (scan_rsp->number_of_sets > MWIFIEX_MAX_AP) {
1590                 dev_err(adapter->dev, "SCAN_RESP: too many AP returned (%d)\n",
1591                        scan_rsp->number_of_sets);
1592                 ret = -1;
1593                 goto done;
1594         }
1595
1596         bytes_left = le16_to_cpu(scan_rsp->bss_descript_size);
1597         dev_dbg(adapter->dev, "info: SCAN_RESP: bss_descript_size %d\n",
1598                                                 bytes_left);
1599
1600         scan_resp_size = le16_to_cpu(resp->size);
1601
1602         dev_dbg(adapter->dev,
1603                 "info: SCAN_RESP: returned %d APs before parsing\n",
1604                scan_rsp->number_of_sets);
1605
1606         bss_info = scan_rsp->bss_desc_and_tlv_buffer;
1607
1608         /*
1609          * The size of the TLV buffer is equal to the entire command response
1610          *   size (scan_resp_size) minus the fixed fields (sizeof()'s), the
1611          *   BSS Descriptions (bss_descript_size as bytesLef) and the command
1612          *   response header (S_DS_GEN)
1613          */
1614         tlv_buf_size = scan_resp_size - (bytes_left
1615                                          + sizeof(scan_rsp->bss_descript_size)
1616                                          + sizeof(scan_rsp->number_of_sets)
1617                                          + S_DS_GEN);
1618
1619         tlv_data = (struct mwifiex_ie_types_data *) (scan_rsp->
1620                                                  bss_desc_and_tlv_buffer +
1621                                                  bytes_left);
1622
1623         /* Search the TLV buffer space in the scan response for any valid
1624            TLVs */
1625         mwifiex_ret_802_11_scan_get_tlv_ptrs(adapter, tlv_data, tlv_buf_size,
1626                                              TLV_TYPE_TSFTIMESTAMP,
1627                                              (struct mwifiex_ie_types_data **)
1628                                              &tsf_tlv);
1629
1630         /* Search the TLV buffer space in the scan response for any valid
1631            TLVs */
1632         mwifiex_ret_802_11_scan_get_tlv_ptrs(adapter, tlv_data, tlv_buf_size,
1633                                              TLV_TYPE_CHANNELBANDLIST,
1634                                              (struct mwifiex_ie_types_data **)
1635                                              &chan_band_tlv);
1636
1637         for (idx = 0; idx < scan_rsp->number_of_sets && bytes_left; idx++) {
1638                 u8 bssid[ETH_ALEN];
1639                 s32 rssi;
1640                 const u8 *ie_buf;
1641                 size_t ie_len;
1642                 int channel = -1;
1643                 u64 network_tsf = 0;
1644                 u16 beacon_size = 0;
1645                 u32 curr_bcn_bytes;
1646                 u32 freq;
1647                 u16 beacon_period;
1648                 u16 cap_info_bitmap;
1649                 u8 *current_ptr;
1650                 struct mwifiex_bcn_param *bcn_param;
1651
1652                 if (bytes_left >= sizeof(beacon_size)) {
1653                         /* Extract & convert beacon size from command buffer */
1654                         memcpy(&beacon_size, bss_info, sizeof(beacon_size));
1655                         bytes_left -= sizeof(beacon_size);
1656                         bss_info += sizeof(beacon_size);
1657                 }
1658
1659                 if (!beacon_size || beacon_size > bytes_left) {
1660                         bss_info += bytes_left;
1661                         bytes_left = 0;
1662                         return -1;
1663                 }
1664
1665                 /* Initialize the current working beacon pointer for this BSS
1666                  * iteration */
1667                 current_ptr = bss_info;
1668
1669                 /* Advance the return beacon pointer past the current beacon */
1670                 bss_info += beacon_size;
1671                 bytes_left -= beacon_size;
1672
1673                 curr_bcn_bytes = beacon_size;
1674
1675                 /*
1676                  * First 5 fields are bssid, RSSI, time stamp, beacon interval,
1677                  *   and capability information
1678                  */
1679                 if (curr_bcn_bytes < sizeof(struct mwifiex_bcn_param)) {
1680                         dev_err(adapter->dev, "InterpretIE: not enough bytes left\n");
1681                         continue;
1682                 }
1683                 bcn_param = (struct mwifiex_bcn_param *)current_ptr;
1684                 current_ptr += sizeof(*bcn_param);
1685                 curr_bcn_bytes -= sizeof(*bcn_param);
1686
1687                 memcpy(bssid, bcn_param->bssid, ETH_ALEN);
1688
1689                 rssi = (s32) (bcn_param->rssi);
1690                 dev_dbg(adapter->dev, "info: InterpretIE: RSSI=%02X\n",
1691                                         rssi);
1692
1693                 beacon_period = le16_to_cpu(bcn_param->beacon_period);
1694
1695                 cap_info_bitmap = le16_to_cpu(bcn_param->cap_info_bitmap);
1696                 dev_dbg(adapter->dev, "info: InterpretIE: capabilities=0x%X\n",
1697                                 cap_info_bitmap);
1698
1699                 /* Rest of the current buffer are IE's */
1700                 ie_buf = current_ptr;
1701                 ie_len = curr_bcn_bytes;
1702                 dev_dbg(adapter->dev, "info: InterpretIE: IELength for this AP"
1703                                       " = %d\n", curr_bcn_bytes);
1704
1705                 while (curr_bcn_bytes >= sizeof(struct ieee_types_header)) {
1706                         u8 element_id, element_len;
1707
1708                         element_id = *current_ptr;
1709                         element_len = *(current_ptr + 1);
1710                         if (curr_bcn_bytes < element_len +
1711                                         sizeof(struct ieee_types_header)) {
1712                                 dev_err(priv->adapter->dev, "%s: in processing"
1713                                         " IE, bytes left < IE length\n",
1714                                         __func__);
1715                                 goto done;
1716                         }
1717                         if (element_id == WLAN_EID_DS_PARAMS) {
1718                                 channel = *(u8 *) (current_ptr +
1719                                         sizeof(struct ieee_types_header));
1720                                 break;
1721                         }
1722
1723                         current_ptr += element_len +
1724                                         sizeof(struct ieee_types_header);
1725                         curr_bcn_bytes -= element_len +
1726                                         sizeof(struct ieee_types_header);
1727                 }
1728
1729                 /*
1730                  * If the TSF TLV was appended to the scan results, save this
1731                  * entry's TSF value in the networkTSF field.The networkTSF is
1732                  * the firmware's TSF value at the time the beacon or probe
1733                  * response was received.
1734                  */
1735                 if (tsf_tlv)
1736                         memcpy(&network_tsf,
1737                                         &tsf_tlv->tsf_data[idx * TSF_DATA_SIZE],
1738                                         sizeof(network_tsf));
1739
1740                 if (channel != -1) {
1741                         struct ieee80211_channel *chan;
1742                         u8 band;
1743
1744                         band = BAND_G;
1745                         if (chan_band_tlv) {
1746                                 chan_band =
1747                                         &chan_band_tlv->chan_band_param[idx];
1748                                 band = mwifiex_radio_type_to_band(
1749                                                 chan_band->radio_type
1750                                                 & (BIT(0) | BIT(1)));
1751                         }
1752
1753                         cfp = mwifiex_get_cfp_by_band_and_channel_from_cfg80211(
1754                                                 priv, (u8)band, (u16)channel);
1755
1756                         freq = cfp ? cfp->freq : 0;
1757
1758                         chan = ieee80211_get_channel(priv->wdev->wiphy, freq);
1759
1760                         if (chan && !(chan->flags & IEEE80211_CHAN_DISABLED)) {
1761                                 bss = cfg80211_inform_bss(priv->wdev->wiphy,
1762                                               chan, bssid, network_tsf,
1763                                               cap_info_bitmap, beacon_period,
1764                                               ie_buf, ie_len, rssi, GFP_KERNEL);
1765                                 *(u8 *)bss->priv = band;
1766                                 bss->free_priv = mwifiex_free_bss_priv;
1767
1768                                 if (priv->media_connected && !memcmp(bssid,
1769                                         priv->curr_bss_params.bss_descriptor
1770                                                      .mac_address, ETH_ALEN))
1771                                         mwifiex_update_curr_bss_params(priv,
1772                                                         bssid, rssi, ie_buf,
1773                                                         ie_len, beacon_period,
1774                                                         cap_info_bitmap, band);
1775                         }
1776                 } else {
1777                         dev_dbg(adapter->dev, "missing BSS channel IE\n");
1778                 }
1779         }
1780
1781         spin_lock_irqsave(&adapter->scan_pending_q_lock, flags);
1782         if (list_empty(&adapter->scan_pending_q)) {
1783                 spin_unlock_irqrestore(&adapter->scan_pending_q_lock, flags);
1784                 spin_lock_irqsave(&adapter->mwifiex_cmd_lock, flags);
1785                 adapter->scan_processing = false;
1786                 spin_unlock_irqrestore(&adapter->mwifiex_cmd_lock, flags);
1787
1788                 /* Need to indicate IOCTL complete */
1789                 if (adapter->curr_cmd->wait_q_enabled) {
1790                         adapter->cmd_wait_q.status = 0;
1791                         mwifiex_complete_cmd(adapter);
1792                 }
1793                 if (priv->report_scan_result)
1794                         priv->report_scan_result = false;
1795                 if (priv->scan_pending_on_block) {
1796                         priv->scan_pending_on_block = false;
1797                         up(&priv->async_sem);
1798                 }
1799
1800         } else {
1801                 /* Get scan command from scan_pending_q and put to
1802                    cmd_pending_q */
1803                 cmd_node = list_first_entry(&adapter->scan_pending_q,
1804                                             struct cmd_ctrl_node, list);
1805                 list_del(&cmd_node->list);
1806                 spin_unlock_irqrestore(&adapter->scan_pending_q_lock, flags);
1807
1808                 mwifiex_insert_cmd_to_pending_q(adapter, cmd_node, true);
1809         }
1810
1811 done:
1812         return ret;
1813 }
1814
1815 /*
1816  * This function prepares command for background scan query.
1817  *
1818  * Preparation includes -
1819  *      - Setting command ID and proper size
1820  *      - Setting background scan flush parameter
1821  *      - Ensuring correct endian-ness
1822  */
1823 int mwifiex_cmd_802_11_bg_scan_query(struct host_cmd_ds_command *cmd)
1824 {
1825         struct host_cmd_ds_802_11_bg_scan_query *bg_query =
1826                 &cmd->params.bg_scan_query;
1827
1828         cmd->command = cpu_to_le16(HostCmd_CMD_802_11_BG_SCAN_QUERY);
1829         cmd->size = cpu_to_le16(sizeof(struct host_cmd_ds_802_11_bg_scan_query)
1830                                 + S_DS_GEN);
1831
1832         bg_query->flush = 1;
1833
1834         return 0;
1835 }
1836
1837 /*
1838  * This function inserts scan command node to the scan pending queue.
1839  */
1840 void
1841 mwifiex_queue_scan_cmd(struct mwifiex_private *priv,
1842                        struct cmd_ctrl_node *cmd_node)
1843 {
1844         struct mwifiex_adapter *adapter = priv->adapter;
1845         unsigned long flags;
1846
1847         cmd_node->wait_q_enabled = true;
1848         spin_lock_irqsave(&adapter->scan_pending_q_lock, flags);
1849         list_add_tail(&cmd_node->list, &adapter->scan_pending_q);
1850         spin_unlock_irqrestore(&adapter->scan_pending_q_lock, flags);
1851 }
1852
1853 /*
1854  * This function sends a scan command for all available channels to the
1855  * firmware, filtered on a specific SSID.
1856  */
1857 static int mwifiex_scan_specific_ssid(struct mwifiex_private *priv,
1858                                       struct mwifiex_802_11_ssid *req_ssid)
1859 {
1860         struct mwifiex_adapter *adapter = priv->adapter;
1861         int ret = 0;
1862         struct mwifiex_user_scan_cfg *scan_cfg;
1863
1864         if (!req_ssid)
1865                 return -1;
1866
1867         if (adapter->scan_processing) {
1868                 dev_dbg(adapter->dev, "cmd: Scan already in process...\n");
1869                 return ret;
1870         }
1871
1872         if (priv->scan_block) {
1873                 dev_dbg(adapter->dev,
1874                         "cmd: Scan is blocked during association...\n");
1875                 return ret;
1876         }
1877
1878         scan_cfg = kzalloc(sizeof(struct mwifiex_user_scan_cfg), GFP_KERNEL);
1879         if (!scan_cfg) {
1880                 dev_err(adapter->dev, "failed to alloc scan_cfg\n");
1881                 return -ENOMEM;
1882         }
1883
1884         memcpy(scan_cfg->ssid_list[0].ssid, req_ssid->ssid,
1885                req_ssid->ssid_len);
1886
1887         ret = mwifiex_scan_networks(priv, scan_cfg);
1888
1889         kfree(scan_cfg);
1890         return ret;
1891 }
1892
1893 /*
1894  * Sends IOCTL request to start a scan.
1895  *
1896  * This function allocates the IOCTL request buffer, fills it
1897  * with requisite parameters and calls the IOCTL handler.
1898  *
1899  * Scan command can be issued for both normal scan and specific SSID
1900  * scan, depending upon whether an SSID is provided or not.
1901  */
1902 int mwifiex_request_scan(struct mwifiex_private *priv,
1903                          struct mwifiex_802_11_ssid *req_ssid)
1904 {
1905         int ret;
1906
1907         if (down_interruptible(&priv->async_sem)) {
1908                 dev_err(priv->adapter->dev, "%s: acquire semaphore\n",
1909                                                 __func__);
1910                 return -1;
1911         }
1912         priv->scan_pending_on_block = true;
1913
1914         priv->adapter->cmd_wait_q.condition = false;
1915
1916         if (req_ssid && req_ssid->ssid_len != 0)
1917                 /* Specific SSID scan */
1918                 ret = mwifiex_scan_specific_ssid(priv, req_ssid);
1919         else
1920                 /* Normal scan */
1921                 ret = mwifiex_scan_networks(priv, NULL);
1922
1923         if (!ret)
1924                 ret = mwifiex_wait_queue_complete(priv->adapter);
1925
1926         if (ret == -1) {
1927                 priv->scan_pending_on_block = false;
1928                 up(&priv->async_sem);
1929         }
1930
1931         return ret;
1932 }
1933
1934 /*
1935  * This function appends the vendor specific IE TLV to a buffer.
1936  */
1937 int
1938 mwifiex_cmd_append_vsie_tlv(struct mwifiex_private *priv,
1939                             u16 vsie_mask, u8 **buffer)
1940 {
1941         int id, ret_len = 0;
1942         struct mwifiex_ie_types_vendor_param_set *vs_param_set;
1943
1944         if (!buffer)
1945                 return 0;
1946         if (!(*buffer))
1947                 return 0;
1948
1949         /*
1950          * Traverse through the saved vendor specific IE array and append
1951          * the selected(scan/assoc/adhoc) IE as TLV to the command
1952          */
1953         for (id = 0; id < MWIFIEX_MAX_VSIE_NUM; id++) {
1954                 if (priv->vs_ie[id].mask & vsie_mask) {
1955                         vs_param_set =
1956                                 (struct mwifiex_ie_types_vendor_param_set *)
1957                                 *buffer;
1958                         vs_param_set->header.type =
1959                                 cpu_to_le16(TLV_TYPE_PASSTHROUGH);
1960                         vs_param_set->header.len =
1961                                 cpu_to_le16((((u16) priv->vs_ie[id].ie[1])
1962                                 & 0x00FF) + 2);
1963                         memcpy(vs_param_set->ie, priv->vs_ie[id].ie,
1964                                le16_to_cpu(vs_param_set->header.len));
1965                         *buffer += le16_to_cpu(vs_param_set->header.len) +
1966                                    sizeof(struct mwifiex_ie_types_header);
1967                         ret_len += le16_to_cpu(vs_param_set->header.len) +
1968                                    sizeof(struct mwifiex_ie_types_header);
1969                 }
1970         }
1971         return ret_len;
1972 }
1973
1974 /*
1975  * This function saves a beacon buffer of the current BSS descriptor.
1976  *
1977  * The current beacon buffer is saved so that it can be restored in the
1978  * following cases that makes the beacon buffer not to contain the current
1979  * ssid's beacon buffer.
1980  *      - The current ssid was not found somehow in the last scan.
1981  *      - The current ssid was the last entry of the scan table and overloaded.
1982  */
1983 void
1984 mwifiex_save_curr_bcn(struct mwifiex_private *priv)
1985 {
1986         struct mwifiex_bssdescriptor *curr_bss =
1987                 &priv->curr_bss_params.bss_descriptor;
1988
1989         if (!curr_bss->beacon_buf_size)
1990                 return;
1991
1992         /* allocate beacon buffer at 1st time; or if it's size has changed */
1993         if (!priv->curr_bcn_buf ||
1994                         priv->curr_bcn_size != curr_bss->beacon_buf_size) {
1995                 priv->curr_bcn_size = curr_bss->beacon_buf_size;
1996
1997                 kfree(priv->curr_bcn_buf);
1998                 priv->curr_bcn_buf = kmalloc(curr_bss->beacon_buf_size,
1999                                                 GFP_KERNEL);
2000                 if (!priv->curr_bcn_buf) {
2001                         dev_err(priv->adapter->dev,
2002                                         "failed to alloc curr_bcn_buf\n");
2003                         return;
2004                 }
2005         }
2006
2007         memcpy(priv->curr_bcn_buf, curr_bss->beacon_buf,
2008                 curr_bss->beacon_buf_size);
2009         dev_dbg(priv->adapter->dev, "info: current beacon saved %d\n",
2010                 priv->curr_bcn_size);
2011
2012         curr_bss->beacon_buf = priv->curr_bcn_buf;
2013
2014         /* adjust the pointers in the current BSS descriptor */
2015         if (curr_bss->bcn_wpa_ie)
2016                 curr_bss->bcn_wpa_ie =
2017                         (struct ieee_types_vendor_specific *)
2018                         (curr_bss->beacon_buf +
2019                          curr_bss->wpa_offset);
2020
2021         if (curr_bss->bcn_rsn_ie)
2022                 curr_bss->bcn_rsn_ie = (struct ieee_types_generic *)
2023                         (curr_bss->beacon_buf +
2024                          curr_bss->rsn_offset);
2025
2026         if (curr_bss->bcn_ht_cap)
2027                 curr_bss->bcn_ht_cap = (struct ieee80211_ht_cap *)
2028                         (curr_bss->beacon_buf +
2029                          curr_bss->ht_cap_offset);
2030
2031         if (curr_bss->bcn_ht_info)
2032                 curr_bss->bcn_ht_info = (struct ieee80211_ht_info *)
2033                         (curr_bss->beacon_buf +
2034                          curr_bss->ht_info_offset);
2035
2036         if (curr_bss->bcn_bss_co_2040)
2037                 curr_bss->bcn_bss_co_2040 =
2038                         (u8 *) (curr_bss->beacon_buf +
2039                                         curr_bss->bss_co_2040_offset);
2040
2041         if (curr_bss->bcn_ext_cap)
2042                 curr_bss->bcn_ext_cap = (u8 *) (curr_bss->beacon_buf +
2043                                 curr_bss->ext_cap_offset);
2044 }
2045
2046 /*
2047  * This function frees the current BSS descriptor beacon buffer.
2048  */
2049 void
2050 mwifiex_free_curr_bcn(struct mwifiex_private *priv)
2051 {
2052         kfree(priv->curr_bcn_buf);
2053         priv->curr_bcn_buf = NULL;
2054 }