blob: dde55aecf1a0378e4cba16cfc225c602259c55ea [file] [log] [blame]
Jeff Johnson295189b2012-06-20 16:38:30 -07001/*
Jeff Johnson32d95a32012-09-10 13:15:23 -07002 * Copyright (c) 2012, The Linux Foundation. All rights reserved.
Jeff Johnson295189b2012-06-20 16:38:30 -07003 *
4 * Previously licensed under the ISC license by Qualcomm Atheros, Inc.
5 *
6 *
7 * Permission to use, copy, modify, and/or distribute this software for
8 * any purpose with or without fee is hereby granted, provided that the
9 * above copyright notice and this permission notice appear in all
10 * copies.
11 *
12 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL
13 * WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED
14 * WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE
15 * AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL
16 * DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR
17 * PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
18 * TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
19 * PERFORMANCE OF THIS SOFTWARE.
20 */
21
22/**========================================================================
23
24 \file wlan_hdd_cfg80211.c
25
26 \brief WLAN Host Device Driver implementation
27
28 Copyright 2008 (c) Qualcomm, Incorporated. All Rights Reserved.
29
30 Qualcomm Confidential and Proprietary.
31
32 ========================================================================*/
33
34/**=========================================================================
35
36 EDIT HISTORY FOR FILE
37
38
39 This section contains comments describing changes made to the module.
40 Notice that changes are listed in reverse chronological order.
41
42
43 $Header:$ $DateTime: $ $Author: $
44
45
46 when who what, where, why
47 -------- --- --------------------------------------------------------
48 21/12/09 Ashwani Created module.
49
50 07/06/10 Kumar Deepak Implemented cfg80211 callbacks for ANDROID
51 Ganesh K
52 ==========================================================================*/
53
54#ifdef CONFIG_CFG80211
55
56#include <linux/version.h>
57#include <linux/module.h>
58#include <linux/kernel.h>
59#include <linux/init.h>
60#include <linux/wireless.h>
61#include <wlan_hdd_includes.h>
62#include <net/arp.h>
63#include <net/cfg80211.h>
64#include <linux/wireless.h>
65#include <wlan_hdd_wowl.h>
66#include <aniGlobal.h>
67#include "ccmApi.h"
68#include "sirParams.h"
69#include "dot11f.h"
70#include "wlan_hdd_assoc.h"
71#include "wlan_hdd_wext.h"
72#include "sme_Api.h"
73#include "wlan_hdd_p2p.h"
74#include "wlan_hdd_cfg80211.h"
75#include "wlan_hdd_hostapd.h"
76#include "sapInternal.h"
77#include "wlan_hdd_softap_tx_rx.h"
78#include "wlan_hdd_main.h"
79#ifdef WLAN_BTAMP_FEATURE
80#include "bap_hdd_misc.h"
81#endif
82#include <qc_sap_ioctl.h>
83
84#define g_mode_rates_size (12)
85#define a_mode_rates_size (8)
86#define FREQ_BASE_80211G (2407)
87#define FREQ_BAND_DIFF_80211G (5)
Jeff Johnson04dd8a82012-06-29 20:41:40 -070088#define MAX_SCAN_SSID 9
Jeff Johnson295189b2012-06-20 16:38:30 -070089#define GET_IE_LEN_IN_BSS_DESC(lenInBss) ( lenInBss + sizeof(lenInBss) - \
90 ((int) OFFSET_OF( tSirBssDescription, ieFields)))
91
92#define HDD2GHZCHAN(freq, chan, flag) { \
93 .band = IEEE80211_BAND_2GHZ, \
94 .center_freq = (freq), \
95 .hw_value = (chan),\
96 .flags = (flag), \
97 .max_antenna_gain = 0 ,\
98 .max_power = 30, \
99}
100
101#define HDD5GHZCHAN(freq, chan, flag) { \
102 .band = IEEE80211_BAND_5GHZ, \
103 .center_freq = (freq), \
104 .hw_value = (chan),\
105 .flags = (flag), \
106 .max_antenna_gain = 0 ,\
107 .max_power = 30, \
108}
109
110#define HDD_G_MODE_RATETAB(rate, rate_id, flag)\
111{\
112 .bitrate = rate, \
113 .hw_value = rate_id, \
114 .flags = flag, \
115}
116
117static const u32 hdd_cipher_suites[] =
118{
119 WLAN_CIPHER_SUITE_WEP40,
120 WLAN_CIPHER_SUITE_WEP104,
121 WLAN_CIPHER_SUITE_TKIP,
122#ifdef FEATURE_WLAN_CCX
123#define WLAN_CIPHER_SUITE_KRK 0x004096ff /* use for KRK */
124 WLAN_CIPHER_SUITE_KRK,
125 WLAN_CIPHER_SUITE_CCMP,
126#else
127 WLAN_CIPHER_SUITE_CCMP,
128#endif
129#ifdef FEATURE_WLAN_WAPI
130 WLAN_CIPHER_SUITE_SMS4,
131#endif
132};
133
134static inline int is_broadcast_ether_addr(const u8 *addr)
135{
136 return ((addr[0] == 0xff) && (addr[1] == 0xff) && (addr[2] == 0xff) &&
137 (addr[3] == 0xff) && (addr[4] == 0xff) && (addr[5] == 0xff));
138}
139
140static struct ieee80211_channel hdd_channels_2_4_GHZ[] =
141{
142 HDD2GHZCHAN(2412, 1, 0) ,
143 HDD2GHZCHAN(2417, 2, 0) ,
144 HDD2GHZCHAN(2422, 3, 0) ,
145 HDD2GHZCHAN(2427, 4, 0) ,
146 HDD2GHZCHAN(2432, 5, 0) ,
147 HDD2GHZCHAN(2437, 6, 0) ,
148 HDD2GHZCHAN(2442, 7, 0) ,
149 HDD2GHZCHAN(2447, 8, 0) ,
150 HDD2GHZCHAN(2452, 9, 0) ,
151 HDD2GHZCHAN(2457, 10, 0) ,
152 HDD2GHZCHAN(2462, 11, 0) ,
153 HDD2GHZCHAN(2467, 12, 0) ,
154 HDD2GHZCHAN(2472, 13, 0) ,
155 HDD2GHZCHAN(2484, 14, 0) ,
156};
157
158#ifdef WLAN_FEATURE_P2P
159static struct ieee80211_channel hdd_social_channels_2_4_GHZ[] =
160{
161 HDD2GHZCHAN(2412, 1, 0) ,
162 HDD2GHZCHAN(2437, 6, 0) ,
163 HDD2GHZCHAN(2462, 11, 0) ,
164};
165#endif
166
167static struct ieee80211_channel hdd_channels_5_GHZ[] =
168{
Madan Mohan Koyyalamudic3a240c2012-09-28 15:34:08 -0700169 HDD5GHZCHAN(4920, 240, 0) ,
170 HDD5GHZCHAN(4940, 244, 0) ,
171 HDD5GHZCHAN(4960, 248, 0) ,
172 HDD5GHZCHAN(4980, 252, 0) ,
173 HDD5GHZCHAN(5040, 208, 0) ,
174 HDD5GHZCHAN(5060, 212, 0) ,
175 HDD5GHZCHAN(5080, 216, 0) ,
Jeff Johnson295189b2012-06-20 16:38:30 -0700176 HDD5GHZCHAN(5180, 36, 0) ,
177 HDD5GHZCHAN(5200, 40, 0) ,
178 HDD5GHZCHAN(5220, 44, 0) ,
179 HDD5GHZCHAN(5240, 48, 0) ,
180 HDD5GHZCHAN(5260, 52, 0) ,
181 HDD5GHZCHAN(5280, 56, 0) ,
182 HDD5GHZCHAN(5300, 60, 0) ,
183 HDD5GHZCHAN(5320, 64, 0) ,
184 HDD5GHZCHAN(5500,100, 0) ,
185 HDD5GHZCHAN(5520,104, 0) ,
186 HDD5GHZCHAN(5540,108, 0) ,
187 HDD5GHZCHAN(5560,112, 0) ,
188 HDD5GHZCHAN(5580,116, 0) ,
189 HDD5GHZCHAN(5600,120, 0) ,
190 HDD5GHZCHAN(5620,124, 0) ,
191 HDD5GHZCHAN(5640,128, 0) ,
192 HDD5GHZCHAN(5660,132, 0) ,
193 HDD5GHZCHAN(5680,136, 0) ,
194 HDD5GHZCHAN(5700,140, 0) ,
195 HDD5GHZCHAN(5745,149, 0) ,
196 HDD5GHZCHAN(5765,153, 0) ,
197 HDD5GHZCHAN(5785,157, 0) ,
198 HDD5GHZCHAN(5805,161, 0) ,
199 HDD5GHZCHAN(5825,165, 0) ,
200};
201
202static struct ieee80211_rate g_mode_rates[] =
203{
204 HDD_G_MODE_RATETAB(10, 0x1, 0),
205 HDD_G_MODE_RATETAB(20, 0x2, 0),
206 HDD_G_MODE_RATETAB(55, 0x4, 0),
207 HDD_G_MODE_RATETAB(110, 0x8, 0),
208 HDD_G_MODE_RATETAB(60, 0x10, 0),
209 HDD_G_MODE_RATETAB(90, 0x20, 0),
210 HDD_G_MODE_RATETAB(120, 0x40, 0),
211 HDD_G_MODE_RATETAB(180, 0x80, 0),
212 HDD_G_MODE_RATETAB(240, 0x100, 0),
213 HDD_G_MODE_RATETAB(360, 0x200, 0),
214 HDD_G_MODE_RATETAB(480, 0x400, 0),
215 HDD_G_MODE_RATETAB(540, 0x800, 0),
216};
217
218static struct ieee80211_rate a_mode_rates[] =
219{
220 HDD_G_MODE_RATETAB(60, 0x10, 0),
221 HDD_G_MODE_RATETAB(90, 0x20, 0),
222 HDD_G_MODE_RATETAB(120, 0x40, 0),
223 HDD_G_MODE_RATETAB(180, 0x80, 0),
224 HDD_G_MODE_RATETAB(240, 0x100, 0),
225 HDD_G_MODE_RATETAB(360, 0x200, 0),
226 HDD_G_MODE_RATETAB(480, 0x400, 0),
227 HDD_G_MODE_RATETAB(540, 0x800, 0),
228};
229
230static struct ieee80211_supported_band wlan_hdd_band_2_4_GHZ =
231{
232 .channels = hdd_channels_2_4_GHZ,
233 .n_channels = ARRAY_SIZE(hdd_channels_2_4_GHZ),
234 .band = IEEE80211_BAND_2GHZ,
235 .bitrates = g_mode_rates,
236 .n_bitrates = g_mode_rates_size,
237 .ht_cap.ht_supported = 1,
238 .ht_cap.cap = IEEE80211_HT_CAP_SGI_20
239 | IEEE80211_HT_CAP_GRN_FLD
240 | IEEE80211_HT_CAP_DSSSCCK40
241 | IEEE80211_HT_CAP_LSIG_TXOP_PROT,
242 .ht_cap.ampdu_factor = IEEE80211_HT_MAX_AMPDU_64K,
243 .ht_cap.ampdu_density = IEEE80211_HT_MPDU_DENSITY_16,
244 .ht_cap.mcs.rx_mask = { 0xff, 0, 0, 0, 0, 0, 0, 0, 0, 0, },
245 .ht_cap.mcs.rx_highest = cpu_to_le16( 72 ),
246 .ht_cap.mcs.tx_params = IEEE80211_HT_MCS_TX_DEFINED,
247};
248
249#ifdef WLAN_FEATURE_P2P
250static struct ieee80211_supported_band wlan_hdd_band_p2p_2_4_GHZ =
251{
252 .channels = hdd_social_channels_2_4_GHZ,
253 .n_channels = ARRAY_SIZE(hdd_social_channels_2_4_GHZ),
254 .band = IEEE80211_BAND_2GHZ,
255 .bitrates = g_mode_rates,
256 .n_bitrates = g_mode_rates_size,
257 .ht_cap.ht_supported = 1,
258 .ht_cap.cap = IEEE80211_HT_CAP_SGI_20
259 | IEEE80211_HT_CAP_GRN_FLD
260 | IEEE80211_HT_CAP_DSSSCCK40
261 | IEEE80211_HT_CAP_LSIG_TXOP_PROT,
262 .ht_cap.ampdu_factor = IEEE80211_HT_MAX_AMPDU_64K,
263 .ht_cap.ampdu_density = IEEE80211_HT_MPDU_DENSITY_16,
264 .ht_cap.mcs.rx_mask = { 0xff, 0, 0, 0, 0, 0, 0, 0, 0, 0, },
265 .ht_cap.mcs.rx_highest = cpu_to_le16( 72 ),
266 .ht_cap.mcs.tx_params = IEEE80211_HT_MCS_TX_DEFINED,
267};
268#endif
269
270static struct ieee80211_supported_band wlan_hdd_band_5_GHZ =
271{
272 .channels = hdd_channels_5_GHZ,
273 .n_channels = ARRAY_SIZE(hdd_channels_5_GHZ),
274 .band = IEEE80211_BAND_5GHZ,
275 .bitrates = a_mode_rates,
276 .n_bitrates = a_mode_rates_size,
277 .ht_cap.ht_supported = 1,
278 .ht_cap.cap = IEEE80211_HT_CAP_SGI_20
279 | IEEE80211_HT_CAP_GRN_FLD
280 | IEEE80211_HT_CAP_DSSSCCK40
281 | IEEE80211_HT_CAP_LSIG_TXOP_PROT
282 | IEEE80211_HT_CAP_SGI_40
283 | IEEE80211_HT_CAP_SUP_WIDTH_20_40,
284 .ht_cap.ampdu_factor = IEEE80211_HT_MAX_AMPDU_64K,
285 .ht_cap.ampdu_density = IEEE80211_HT_MPDU_DENSITY_16,
286 .ht_cap.mcs.rx_mask = { 0xff, 0, 0, 0, 0, 0, 0, 0, 0, 0, },
287 .ht_cap.mcs.rx_highest = cpu_to_le16( 72 ),
288 .ht_cap.mcs.tx_params = IEEE80211_HT_MCS_TX_DEFINED,
289};
290
291/* This structure contain information what kind of frame are expected in
292 TX/RX direction for each kind of interface */
293static const struct ieee80211_txrx_stypes
294wlan_hdd_txrx_stypes[NUM_NL80211_IFTYPES] = {
295 [NL80211_IFTYPE_STATION] = {
296 .tx = 0xffff,
297 .rx = BIT(SIR_MAC_MGMT_ACTION) |
298 BIT(SIR_MAC_MGMT_PROBE_REQ),
299 },
300 [NL80211_IFTYPE_AP] = {
301 .tx = 0xffff,
302 .rx = BIT(SIR_MAC_MGMT_ASSOC_REQ) |
303 BIT(SIR_MAC_MGMT_REASSOC_REQ) |
304 BIT(SIR_MAC_MGMT_PROBE_REQ) |
305 BIT(SIR_MAC_MGMT_DISASSOC) |
306 BIT(SIR_MAC_MGMT_AUTH) |
307 BIT(SIR_MAC_MGMT_DEAUTH) |
308 BIT(SIR_MAC_MGMT_ACTION),
309 },
310#ifdef WLAN_FEATURE_P2P
311 [NL80211_IFTYPE_P2P_CLIENT] = {
312 .tx = 0xffff,
313 .rx = BIT(SIR_MAC_MGMT_ACTION) |
314 BIT(SIR_MAC_MGMT_PROBE_REQ),
315 },
316 [NL80211_IFTYPE_P2P_GO] = {
317 /* This is also same as for SoftAP */
318 .tx = 0xffff,
319 .rx = BIT(SIR_MAC_MGMT_ASSOC_REQ) |
320 BIT(SIR_MAC_MGMT_REASSOC_REQ) |
321 BIT(SIR_MAC_MGMT_PROBE_REQ) |
322 BIT(SIR_MAC_MGMT_DISASSOC) |
323 BIT(SIR_MAC_MGMT_AUTH) |
324 BIT(SIR_MAC_MGMT_DEAUTH) |
325 BIT(SIR_MAC_MGMT_ACTION),
326 },
327#endif
328};
329
330static struct cfg80211_ops wlan_hdd_cfg80211_ops;
331
332/* Data rate 100KBPS based on IE Index */
333struct index_data_rate_type
334{
335 v_U8_t beacon_rate_index;
336 v_U16_t supported_rate[4];
337};
338
339/* 11B, 11G Rate table include Basic rate and Extended rate
340 The IDX field is the rate index
341 The HI field is the rate when RSSI is strong or being ignored
342 (in this case we report actual rate)
343 The MID field is the rate when RSSI is moderate
344 (in this case we cap 11b rates at 5.5 and 11g rates at 24)
345 The LO field is the rate when RSSI is low
346 (in this case we don't report rates, actual current rate used)
347 */
348static const struct
349{
350 v_U8_t beacon_rate_index;
351 v_U16_t supported_rate[3];
352} supported_data_rate[] =
353{
354/* IDX HI MID LO (RSSI-based index */
355 {2, { 10, 10, 0}},
356 {4, { 20, 20, 0}},
357 {11, { 55, 55, 0}},
358 {12, { 60, 60, 0}},
359 {18, { 90, 90, 0}},
360 {22, {110, 55, 0}},
361 {24, {120, 120, 0}},
362 {36, {180, 180, 0}},
363 {44, {220, 220, 0}},
364 {48, {240, 240, 0}},
365 {66, {330, 240, 0}},
366 {72, {360, 240, 0}},
367 {96, {480, 240, 0}},
368 {108, {540, 240, 0}}
369};
370
371/* MCS Based rate table */
372static struct index_data_rate_type supported_mcs_rate[] =
373{
374/* MCS L20 L40 S20 S40 */
375 {0, {65, 135, 72, 150}},
376 {1, {130, 270, 144, 300}},
377 {2, {195, 405, 217, 450}},
378 {3, {260, 540, 289, 600}},
379 {4, {390, 810, 433, 900}},
380 {5, {520, 1080, 578, 1200}},
381 {6, {585, 1215, 650, 1350}},
382 {7, {650, 1350, 722, 1500}}
383};
384
385extern struct net_device_ops net_ops_struct;
386
387/*
388 * FUNCTION: wlan_hdd_cfg80211_init
389 * This function is called by hdd_wlan_startup()
390 * during initialization.
391 * This function is used to initialize and register wiphy structure.
392 */
393struct wiphy *wlan_hdd_cfg80211_init(int priv_size)
394{
395 struct wiphy *wiphy;
396 ENTER();
397
398 /*
399 * Create wiphy device
400 */
401 wiphy = wiphy_new(&wlan_hdd_cfg80211_ops, priv_size);
402
403 if (!wiphy)
404 {
405 /* Print error and jump into err label and free the memory */
406 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: wiphy init failed", __func__);
407 return NULL;
408 }
409
410 return wiphy;
411}
412
413/*
414 * FUNCTION: wlan_hdd_cfg80211_update_band
415 * This function is called from the supplicant through a
416 * private ioctl to change the band value
417 */
418int wlan_hdd_cfg80211_update_band(struct wiphy *wiphy, eCsrBand eBand)
419{
Jeff Johnsone7245742012-09-05 17:12:55 -0700420 ENTER();
Jeff Johnson295189b2012-06-20 16:38:30 -0700421 switch(eBand)
422 {
423 case eCSR_BAND_24:
424 wiphy->bands[IEEE80211_BAND_2GHZ] = &wlan_hdd_band_2_4_GHZ;
425 wiphy->bands[IEEE80211_BAND_5GHZ] = NULL;
426 break;
427 case eCSR_BAND_5G:
Madan Mohan Koyyalamudi6f6390c2012-09-24 13:57:46 -0700428#ifdef WLAN_FEATURE_P2P
429 wiphy->bands[IEEE80211_BAND_2GHZ] = &wlan_hdd_band_p2p_2_4_GHZ;
430#else
Jeff Johnson295189b2012-06-20 16:38:30 -0700431 wiphy->bands[IEEE80211_BAND_2GHZ] = NULL;
Madan Mohan Koyyalamudi6f6390c2012-09-24 13:57:46 -0700432#endif
Jeff Johnson295189b2012-06-20 16:38:30 -0700433 wiphy->bands[IEEE80211_BAND_5GHZ] = &wlan_hdd_band_5_GHZ;
434 break;
435 case eCSR_BAND_ALL:
436 default:
437 wiphy->bands[IEEE80211_BAND_2GHZ] = &wlan_hdd_band_2_4_GHZ;
438 wiphy->bands[IEEE80211_BAND_5GHZ] = &wlan_hdd_band_5_GHZ;
439 }
440 return 0;
441}
442/*
443 * FUNCTION: wlan_hdd_cfg80211_init
444 * This function is called by hdd_wlan_startup()
445 * during initialization.
446 * This function is used to initialize and register wiphy structure.
447 */
448int wlan_hdd_cfg80211_register(struct device *dev,
449 struct wiphy *wiphy,
450 hdd_config_t *pCfg
451 )
452{
Jeff Johnsone7245742012-09-05 17:12:55 -0700453 ENTER();
454
Jeff Johnson295189b2012-06-20 16:38:30 -0700455 /* Now bind the underlying wlan device with wiphy */
456 set_wiphy_dev(wiphy, dev);
457
458 wiphy->mgmt_stypes = wlan_hdd_txrx_stypes;
459
Madan Mohan Koyyalamudi1b4afb02012-10-22 15:25:16 -0700460 wiphy->flags |= WIPHY_FLAG_CUSTOM_REGULATORY;
Jeff Johnson295189b2012-06-20 16:38:30 -0700461
Jeff Johnson04dd8a82012-06-29 20:41:40 -0700462#if (LINUX_VERSION_CODE >= KERNEL_VERSION(3,4,0))
Madan Mohan Koyyalamudi1b4afb02012-10-22 15:25:16 -0700463 wiphy->flags |= WIPHY_FLAG_HAVE_AP_SME
464 | WIPHY_FLAG_AP_PROBE_RESP_OFFLOAD
465 | WIPHY_FLAG_HAS_REMAIN_ON_CHANNEL
Jeff Johnsone7245742012-09-05 17:12:55 -0700466 | WIPHY_FLAG_OFFCHAN_TX;
Jeff Johnson04dd8a82012-06-29 20:41:40 -0700467#endif
Madan Mohan Koyyalamudic3a240c2012-09-28 15:34:08 -0700468 /* even with WIPHY_FLAG_CUSTOM_REGULATORY,
469 driver can still register regulatory callback and
470 it will get CRDA setting in wiphy->band[], but
471 driver need to determine what to do with both
472 regulatory settings */
473 wiphy->reg_notifier = wlan_hdd_crda_reg_notifier;
Jeff Johnson04dd8a82012-06-29 20:41:40 -0700474
Jeff Johnson295189b2012-06-20 16:38:30 -0700475 wiphy->max_scan_ssids = MAX_SCAN_SSID;
476
477 wiphy->max_scan_ie_len = 200 ; //TODO: define a macro
478
479 /* Supports STATION & AD-HOC modes right now */
480 wiphy->interface_modes = BIT(NL80211_IFTYPE_STATION)
481 | BIT(NL80211_IFTYPE_ADHOC)
482#ifdef WLAN_FEATURE_P2P
483 | BIT(NL80211_IFTYPE_P2P_CLIENT)
484 | BIT(NL80211_IFTYPE_P2P_GO)
485#endif
486 | BIT(NL80211_IFTYPE_AP);
487
488 /* Before registering we need to update the ht capabilitied based
489 * on ini values*/
490 if( !pCfg->ShortGI20MhzEnable )
491 {
492 wlan_hdd_band_2_4_GHZ.ht_cap.cap &= ~IEEE80211_HT_CAP_SGI_20;
493 wlan_hdd_band_5_GHZ.ht_cap.cap &= ~IEEE80211_HT_CAP_SGI_20;
494 wlan_hdd_band_p2p_2_4_GHZ.ht_cap.cap &= ~IEEE80211_HT_CAP_SGI_20;
495 }
496
497 if( !pCfg->ShortGI40MhzEnable )
498 {
499 wlan_hdd_band_5_GHZ.ht_cap.cap &= ~IEEE80211_HT_CAP_SGI_40;
500 }
501
502 if( !pCfg->nChannelBondingMode5GHz )
503 {
504 wlan_hdd_band_5_GHZ.ht_cap.cap &= ~IEEE80211_HT_CAP_SUP_WIDTH_20_40;
505 }
506
507 /*Initialize band capability*/
508 switch(pCfg->nBandCapability)
509 {
510 case eCSR_BAND_24:
511 wiphy->bands[IEEE80211_BAND_2GHZ] = &wlan_hdd_band_2_4_GHZ;
512 break;
513 case eCSR_BAND_5G:
514#ifdef WLAN_FEATURE_P2P
515 wiphy->bands[IEEE80211_BAND_2GHZ] = &wlan_hdd_band_p2p_2_4_GHZ;
516#endif
517 wiphy->bands[IEEE80211_BAND_5GHZ] = &wlan_hdd_band_5_GHZ;
518 break;
519 case eCSR_BAND_ALL:
520 default:
521 wiphy->bands[IEEE80211_BAND_2GHZ] = &wlan_hdd_band_2_4_GHZ;
522 wiphy->bands[IEEE80211_BAND_5GHZ] = &wlan_hdd_band_5_GHZ;
523 }
524 /*Initialise the supported cipher suite details*/
525 wiphy->cipher_suites = hdd_cipher_suites;
526 wiphy->n_cipher_suites = ARRAY_SIZE(hdd_cipher_suites);
527
528 /*signal strength in mBm (100*dBm) */
529 wiphy->signal_type = CFG80211_SIGNAL_TYPE_MBM;
530
531#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,38))
532#ifdef WLAN_FEATURE_P2P
533 wiphy->max_remain_on_channel_duration = 1000;
534#endif
535#endif
536
537 /* Register our wiphy dev with cfg80211 */
538 if (0 > wiphy_register(wiphy))
539 {
540 /* print eror */
541 hddLog(VOS_TRACE_LEVEL_ERROR,"%s: wiphy register failed", __func__);
542 return -EIO;
543 }
544
545 EXIT();
546 return 0;
547}
548
Madan Mohan Koyyalamudic3a240c2012-09-28 15:34:08 -0700549/* In this function we will try to get default country code from crda.
550 If the gCrdaDefaultCountryCode is configured in ini file,
551 we will try to call user space crda to get the regulatory settings for
552 that country. We will timeout if we can't get it from crda.
553 It's called by hdd_wlan_startup() after wlan_hdd_cfg80211_register.
554*/
555int wlan_hdd_get_crda_regd_entry(struct wiphy *wiphy, hdd_config_t *pCfg)
556{
557 hdd_context_t *pHddCtx = wiphy_priv(wiphy);
558 if (memcmp(pCfg->crdaDefaultCountryCode,
559 CFG_CRDA_DEFAULT_COUNTRY_CODE_DEFAULT , 2) != 0)
560 {
561 init_completion(&pHddCtx->driver_crda_req);
562 regulatory_hint(wiphy, pCfg->crdaDefaultCountryCode);
563 wait_for_completion_interruptible_timeout(&pHddCtx->driver_crda_req,
564 CRDA_WAIT_TIME);
565 }
566 return 0;
567}
568
Jeff Johnson295189b2012-06-20 16:38:30 -0700569/* In this function we will do all post VOS start initialization.
570 In this function we will register for all frame in which supplicant
571 is interested.
572*/
573void wlan_hdd_cfg80211_post_voss_start(hdd_adapter_t* pAdapter)
574{
575#ifdef WLAN_FEATURE_P2P
576 tHalHandle hHal = WLAN_HDD_GET_HAL_CTX(pAdapter);
577 /* Register for all P2P action, public action etc frames */
578 v_U16_t type = (SIR_MAC_MGMT_FRAME << 2) | ( SIR_MAC_MGMT_ACTION << 4);
579
Jeff Johnsone7245742012-09-05 17:12:55 -0700580 ENTER();
581
Jeff Johnson295189b2012-06-20 16:38:30 -0700582 /* Right now we are registering these frame when driver is getting
583 initialized. Once we will move to 2.6.37 kernel, in which we have
584 frame register ops, we will move this code as a part of that */
585 /* GAS Initial Request */
586 sme_RegisterMgmtFrame(hHal, pAdapter->sessionId, type,
587 (v_U8_t*)GAS_INITIAL_REQ, GAS_INITIAL_REQ_SIZE );
588
589 /* GAS Initial Response */
590 sme_RegisterMgmtFrame(hHal, pAdapter->sessionId, type,
591 (v_U8_t*)GAS_INITIAL_RSP, GAS_INITIAL_RSP_SIZE );
592
593 /* GAS Comeback Request */
594 sme_RegisterMgmtFrame(hHal, pAdapter->sessionId, type,
595 (v_U8_t*)GAS_COMEBACK_REQ, GAS_COMEBACK_REQ_SIZE );
596
597 /* GAS Comeback Response */
598 sme_RegisterMgmtFrame(hHal, pAdapter->sessionId, type,
599 (v_U8_t*)GAS_COMEBACK_RSP, GAS_COMEBACK_RSP_SIZE );
600
601 /* P2P Public Action */
602 sme_RegisterMgmtFrame(hHal, pAdapter->sessionId, type,
603 (v_U8_t*)P2P_PUBLIC_ACTION_FRAME,
604 P2P_PUBLIC_ACTION_FRAME_SIZE );
605
606 /* P2P Action */
607 sme_RegisterMgmtFrame(hHal, pAdapter->sessionId, type,
608 (v_U8_t*)P2P_ACTION_FRAME,
609 P2P_ACTION_FRAME_SIZE );
610#endif /* WLAN_FEATURE_P2P */
611}
612
613void wlan_hdd_cfg80211_pre_voss_stop(hdd_adapter_t* pAdapter)
614{
615#ifdef WLAN_FEATURE_P2P
616 tHalHandle hHal = WLAN_HDD_GET_HAL_CTX(pAdapter);
617 /* Register for all P2P action, public action etc frames */
618 v_U16_t type = (SIR_MAC_MGMT_FRAME << 2) | ( SIR_MAC_MGMT_ACTION << 4);
619
Jeff Johnsone7245742012-09-05 17:12:55 -0700620 ENTER();
621
Jeff Johnson295189b2012-06-20 16:38:30 -0700622 /* Right now we are registering these frame when driver is getting
623 initialized. Once we will move to 2.6.37 kernel, in which we have
624 frame register ops, we will move this code as a part of that */
625 /* GAS Initial Request */
626
627 sme_DeregisterMgmtFrame(hHal, pAdapter->sessionId, type,
628 (v_U8_t*)GAS_INITIAL_REQ, GAS_INITIAL_REQ_SIZE );
629
630 /* GAS Initial Response */
631 sme_DeregisterMgmtFrame(hHal, pAdapter->sessionId, type,
632 (v_U8_t*)GAS_INITIAL_RSP, GAS_INITIAL_RSP_SIZE );
633
634 /* GAS Comeback Request */
635 sme_DeregisterMgmtFrame(hHal, pAdapter->sessionId, type,
636 (v_U8_t*)GAS_COMEBACK_REQ, GAS_COMEBACK_REQ_SIZE );
637
638 /* GAS Comeback Response */
639 sme_DeregisterMgmtFrame(hHal, pAdapter->sessionId, type,
640 (v_U8_t*)GAS_COMEBACK_RSP, GAS_COMEBACK_RSP_SIZE );
641
642 /* P2P Public Action */
643 sme_DeregisterMgmtFrame(hHal, pAdapter->sessionId, type,
644 (v_U8_t*)P2P_PUBLIC_ACTION_FRAME,
645 P2P_PUBLIC_ACTION_FRAME_SIZE );
646
647 /* P2P Action */
648 sme_DeregisterMgmtFrame(hHal, pAdapter->sessionId, type,
649 (v_U8_t*)P2P_ACTION_FRAME,
650 P2P_ACTION_FRAME_SIZE );
651#endif /* WLAN_FEATURE_P2P */
652}
653
654#ifdef FEATURE_WLAN_WAPI
655void wlan_hdd_cfg80211_set_key_wapi(hdd_adapter_t* pAdapter, u8 key_index,
656 const u8 *mac_addr, u8 *key , int key_Len)
657{
658 hdd_station_ctx_t *pHddStaCtx = WLAN_HDD_GET_STATION_CTX_PTR(pAdapter);
659 tCsrRoamSetKey setKey;
660 v_BOOL_t isConnected = TRUE;
661 int status = 0;
662 v_U32_t roamId= 0xFF;
663 tANI_U8 *pKeyPtr = NULL;
664 int n = 0;
665
666 hddLog(VOS_TRACE_LEVEL_INFO, "%s: device_mode = %d\n",
667 __func__,pAdapter->device_mode);
668
669 setKey.keyId = key_index; // Store Key ID
670 setKey.encType = eCSR_ENCRYPT_TYPE_WPI; // SET WAPI Encryption
671 setKey.keyDirection = eSIR_TX_RX; // Key Directionn both TX and RX
672 setKey.paeRole = 0 ; // the PAE role
673 if (!mac_addr || is_broadcast_ether_addr(mac_addr))
674 {
675 vos_set_macaddr_broadcast( (v_MACADDR_t *)setKey.peerMac );
676 }
677 else
678 {
679 isConnected = hdd_connIsConnected(pHddStaCtx);
680 vos_mem_copy(setKey.peerMac,&pHddStaCtx->conn_info.bssId,WNI_CFG_BSSID_LEN);
681 }
682 setKey.keyLength = key_Len;
683 pKeyPtr = setKey.Key;
684 memcpy( pKeyPtr, key, key_Len);
685
686 hddLog(VOS_TRACE_LEVEL_INFO,"\n%s: WAPI KEY LENGTH:0x%04x",
687 __func__, key_Len);
688 for (n = 0 ; n < key_Len; n++)
689 hddLog(VOS_TRACE_LEVEL_INFO, "%s WAPI KEY Data[%d]:%02x ",
690 __func__,n,setKey.Key[n]);
691
692 pHddStaCtx->roam_info.roamingState = HDD_ROAM_STATE_SETTING_KEY;
693 if ( isConnected )
694 {
695 status= sme_RoamSetKey( WLAN_HDD_GET_HAL_CTX(pAdapter),
696 pAdapter->sessionId, &setKey, &roamId );
697 }
698 if ( status != 0 )
699 {
700 VOS_TRACE( VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
701 "[%4d] sme_RoamSetKey returned ERROR status= %d",
702 __LINE__, status );
703 pHddStaCtx->roam_info.roamingState = HDD_ROAM_STATE_NONE;
704 }
705}
706#endif /* FEATURE_WLAN_WAPI*/
707
708#if (LINUX_VERSION_CODE < KERNEL_VERSION(3,4,0))
709int wlan_hdd_cfg80211_alloc_new_beacon(hdd_adapter_t *pAdapter,
710 beacon_data_t **ppBeacon,
711 struct beacon_parameters *params)
Jeff Johnson04dd8a82012-06-29 20:41:40 -0700712#else
713int wlan_hdd_cfg80211_alloc_new_beacon(hdd_adapter_t *pAdapter,
714 beacon_data_t **ppBeacon,
715 struct cfg80211_beacon_data *params,
716 int dtim_period)
717#endif
Jeff Johnson295189b2012-06-20 16:38:30 -0700718{
719 int size;
720 beacon_data_t *beacon = NULL;
721 beacon_data_t *old = NULL;
722 int head_len,tail_len;
723
Jeff Johnsone7245742012-09-05 17:12:55 -0700724 ENTER();
Jeff Johnson295189b2012-06-20 16:38:30 -0700725 if (params->head && !params->head_len)
726 return -EINVAL;
727
728 old = pAdapter->sessionCtx.ap.beacon;
729
730 if (!params->head && !old)
731 return -EINVAL;
732
733 if (params->tail && !params->tail_len)
734 return -EINVAL;
735
736#if (LINUX_VERSION_CODE <= KERNEL_VERSION(2,6,38))
737 /* Kernel 3.0 is not updating dtim_period for set beacon */
738 if (!params->dtim_period)
739 return -EINVAL;
740#endif
741
742 if(params->head)
743 head_len = params->head_len;
744 else
745 head_len = old->head_len;
746
747 if(params->tail || !old)
748 tail_len = params->tail_len;
749 else
750 tail_len = old->tail_len;
751
752 size = sizeof(beacon_data_t) + head_len + tail_len;
753
754 beacon = kzalloc(size, GFP_KERNEL);
755
756 if( beacon == NULL )
757 return -ENOMEM;
758
Jeff Johnson04dd8a82012-06-29 20:41:40 -0700759#if (LINUX_VERSION_CODE < KERNEL_VERSION(3,4,0))
Jeff Johnson295189b2012-06-20 16:38:30 -0700760 if(params->dtim_period || !old )
761 beacon->dtim_period = params->dtim_period;
762 else
763 beacon->dtim_period = old->dtim_period;
Jeff Johnson04dd8a82012-06-29 20:41:40 -0700764#else
765 if(dtim_period || !old )
766 beacon->dtim_period = dtim_period;
767 else
768 beacon->dtim_period = old->dtim_period;
769#endif
Jeff Johnson295189b2012-06-20 16:38:30 -0700770
771 beacon->head = ((u8 *) beacon) + sizeof(beacon_data_t);
772 beacon->tail = beacon->head + head_len;
773 beacon->head_len = head_len;
774 beacon->tail_len = tail_len;
775
776 if(params->head) {
777 memcpy (beacon->head,params->head,beacon->head_len);
778 }
779 else {
780 if(old)
781 memcpy (beacon->head,old->head,beacon->head_len);
782 }
783
784 if(params->tail) {
785 memcpy (beacon->tail,params->tail,beacon->tail_len);
786 }
787 else {
788 if(old)
789 memcpy (beacon->tail,old->tail,beacon->tail_len);
790 }
791
792 *ppBeacon = beacon;
793
794 kfree(old);
795
796 return 0;
797
798}
Jeff Johnson295189b2012-06-20 16:38:30 -0700799
800v_U8_t* wlan_hdd_cfg80211_get_ie_ptr(v_U8_t *pIes, int length, v_U8_t eid)
801{
802 int left = length;
803 v_U8_t *ptr = pIes;
804 v_U8_t elem_id,elem_len;
805
806 while(left >= 2)
807 {
808 elem_id = ptr[0];
809 elem_len = ptr[1];
810 left -= 2;
811 if(elem_len > left)
812 {
813 hddLog(VOS_TRACE_LEVEL_FATAL,
Madan Mohan Koyyalamudi8bdd3112012-09-24 13:55:14 -0700814 FL("****Invalid IEs eid = %d elem_len=%d left=%d*****"),
Jeff Johnson295189b2012-06-20 16:38:30 -0700815 eid,elem_len,left);
816 return NULL;
817 }
818 if (elem_id == eid)
819 {
820 return ptr;
821 }
822
823 left -= elem_len;
824 ptr += (elem_len + 2);
825 }
826 return NULL;
827}
828
Jeff Johnson295189b2012-06-20 16:38:30 -0700829/* Check if rate is 11g rate or not */
830static int wlan_hdd_rate_is_11g(u8 rate)
831{
832 u8 gRateArray[8] = {12, 18, 24, 36, 48, 72, 96, 104}; /* actual rate * 2 */
833 u8 i;
834 for (i = 0; i < 8; i++)
835 {
836 if(rate == gRateArray[i])
837 return TRUE;
838 }
839 return FALSE;
840}
841
842/* Check for 11g rate and set proper 11g only mode */
843static void wlan_hdd_check_11gmode(u8 *pIe, u8* require_ht,
844 u8* pCheckRatesfor11g, eSapPhyMode* pSapHw_mode)
845{
846 u8 i, num_rates = pIe[0];
847
848 pIe += 1;
849 for ( i = 0; i < num_rates; i++)
850 {
851 if( *pCheckRatesfor11g && (TRUE == wlan_hdd_rate_is_11g(pIe[i] & RATE_MASK)))
852 {
853 /* If rate set have 11g rate than change the mode to 11G */
854 *pSapHw_mode = eSAP_DOT11_MODE_11g;
855 if (pIe[i] & BASIC_RATE_MASK)
856 {
857 /* If we have 11g rate as basic rate, it means mode
858 is 11g only mode.
859 */
860 *pSapHw_mode = eSAP_DOT11_MODE_11g_ONLY;
861 *pCheckRatesfor11g = FALSE;
862 }
863 }
864 else if((BASIC_RATE_MASK | WLAN_BSS_MEMBERSHIP_SELECTOR_HT_PHY) == pIe[i])
865 {
866 *require_ht = TRUE;
867 }
868 }
869 return;
870}
871
872static void wlan_hdd_set_sapHwmode(hdd_adapter_t *pHostapdAdapter)
873{
874 tsap_Config_t *pConfig = &pHostapdAdapter->sessionCtx.ap.sapConfig;
875 beacon_data_t *pBeacon = pHostapdAdapter->sessionCtx.ap.beacon;
876 struct ieee80211_mgmt *pMgmt_frame = (struct ieee80211_mgmt*)pBeacon->head;
877 u8 checkRatesfor11g = TRUE;
878 u8 require_ht = FALSE;
879 u8 *pIe=NULL;
880
881 pConfig->SapHw_mode= eSAP_DOT11_MODE_11b;
882
883 pIe = wlan_hdd_cfg80211_get_ie_ptr(&pMgmt_frame->u.beacon.variable[0],
884 pBeacon->head_len, WLAN_EID_SUPP_RATES);
885 if (pIe != NULL)
886 {
887 pIe += 1;
888 wlan_hdd_check_11gmode(pIe, &require_ht, &checkRatesfor11g,
889 &pConfig->SapHw_mode);
890 }
891
892 pIe = wlan_hdd_cfg80211_get_ie_ptr(pBeacon->tail, pBeacon->tail_len,
893 WLAN_EID_EXT_SUPP_RATES);
894 if (pIe != NULL)
895 {
896
897 pIe += 1;
898 wlan_hdd_check_11gmode(pIe, &require_ht, &checkRatesfor11g,
899 &pConfig->SapHw_mode);
900 }
901
902 if( pConfig->channel > 14 )
903 {
904 pConfig->SapHw_mode= eSAP_DOT11_MODE_11a;
905 }
906
907 pIe = wlan_hdd_cfg80211_get_ie_ptr(pBeacon->tail, pBeacon->tail_len,
908 WLAN_EID_HT_CAPABILITY);
909
910 if(pIe)
911 {
912 pConfig->SapHw_mode= eSAP_DOT11_MODE_11n;
913 if(require_ht)
914 pConfig->SapHw_mode= eSAP_DOT11_MODE_11n_ONLY;
915 }
916}
917
Jeff Johnson04dd8a82012-06-29 20:41:40 -0700918#if (LINUX_VERSION_CODE < KERNEL_VERSION(3,4,0))
Jeff Johnson295189b2012-06-20 16:38:30 -0700919static int wlan_hdd_cfg80211_update_apies(hdd_adapter_t* pHostapdAdapter,
920 struct beacon_parameters *params)
Jeff Johnson04dd8a82012-06-29 20:41:40 -0700921#else
922static int wlan_hdd_cfg80211_update_apies(hdd_adapter_t* pHostapdAdapter,
923 struct cfg80211_beacon_data *params)
924#endif
Jeff Johnson295189b2012-06-20 16:38:30 -0700925{
926 v_U8_t *genie;
927 v_U8_t total_ielen = 0, ielen = 0;
928 v_U8_t *pIe = NULL;
929 v_U8_t addIE[1] = {0};
930 beacon_data_t *pBeacon = pHostapdAdapter->sessionCtx.ap.beacon;
Jeff Johnsone7245742012-09-05 17:12:55 -0700931 int ret = 0;
Jeff Johnson295189b2012-06-20 16:38:30 -0700932
933 genie = vos_mem_malloc(MAX_GENIE_LEN);
934
935 if(genie == NULL) {
936
937 return -ENOMEM;
938 }
939
940 pIe = wlan_hdd_get_wps_ie_ptr(pBeacon->tail, pBeacon->tail_len);
941
942 if(pIe)
943 {
944 /*Copy the wps IE*/
945 ielen = pIe[1] + 2;
946 if( ielen <=MAX_GENIE_LEN)
947 {
948 vos_mem_copy(genie, pIe, ielen);
949 }
950 else
951 {
952 hddLog( VOS_TRACE_LEVEL_ERROR, "**Wps Ie Length is too big***\n");
Jeff Johnsone7245742012-09-05 17:12:55 -0700953 ret = -EINVAL;
954 goto done;
Jeff Johnson295189b2012-06-20 16:38:30 -0700955 }
956 total_ielen = ielen;
957 }
958
959#ifdef WLAN_FEATURE_WFD
960 pIe = wlan_hdd_get_wfd_ie_ptr(pBeacon->tail,pBeacon->tail_len);
961
962 if(pIe)
963 {
964 ielen = pIe[1] + 2;
965 if(total_ielen + ielen <= MAX_GENIE_LEN) {
966 vos_mem_copy(&genie[total_ielen],pIe,(pIe[1] + 2));
967 }
968 else {
969 hddLog( VOS_TRACE_LEVEL_ERROR, "**Wps Ie + P2p Ie + Wfd Ie Length is too big***\n");
Jeff Johnsone7245742012-09-05 17:12:55 -0700970 ret = -EINVAL;
971 goto done;
Jeff Johnson295189b2012-06-20 16:38:30 -0700972 }
973 total_ielen += ielen;
974 }
975#endif
976
977#ifdef WLAN_FEATURE_P2P
978 pIe = wlan_hdd_get_p2p_ie_ptr(pBeacon->tail,pBeacon->tail_len);
979
980 if(pIe)
981 {
982 ielen = pIe[1] + 2;
983 if(total_ielen + ielen <= MAX_GENIE_LEN)
984 {
985 vos_mem_copy(&genie[total_ielen], pIe, (pIe[1] + 2));
986 }
987 else
988 {
989 hddLog( VOS_TRACE_LEVEL_ERROR,
990 "**Wps Ie+ P2pIE Length is too big***\n");
Jeff Johnsone7245742012-09-05 17:12:55 -0700991 ret = -EINVAL;
992 goto done;
Jeff Johnson295189b2012-06-20 16:38:30 -0700993 }
994 total_ielen += ielen;
995 }
996#endif
997
998 if (ccmCfgSetStr((WLAN_HDD_GET_CTX(pHostapdAdapter))->hHal,
999 WNI_CFG_PROBE_RSP_BCN_ADDNIE_DATA, genie, total_ielen, NULL,
1000 eANI_BOOLEAN_FALSE)==eHAL_STATUS_FAILURE)
1001 {
1002 hddLog(LOGE,
1003 "Could not pass on WNI_CFG_PROBE_RSP_BCN_ADDNIE_DATA to CCM");
Jeff Johnsone7245742012-09-05 17:12:55 -07001004 ret = -EINVAL;
1005 goto done;
Jeff Johnson295189b2012-06-20 16:38:30 -07001006 }
1007
1008 if (ccmCfgSetInt((WLAN_HDD_GET_CTX(pHostapdAdapter))->hHal,
1009 WNI_CFG_PROBE_RSP_BCN_ADDNIE_FLAG, 1,NULL,
1010 test_bit(SOFTAP_BSS_STARTED, &pHostapdAdapter->event_flags) ?
1011 eANI_BOOLEAN_TRUE : eANI_BOOLEAN_FALSE)
1012 ==eHAL_STATUS_FAILURE)
1013 {
1014 hddLog(LOGE,
1015 "Could not pass on WNI_CFG_PROBE_RSP_BCN_ADDNIE_FLAG to CCM");
Jeff Johnsone7245742012-09-05 17:12:55 -07001016 ret = -EINVAL;
1017 goto done;
Jeff Johnson295189b2012-06-20 16:38:30 -07001018 }
1019
1020 // Added for ProResp IE
1021 if ( (params->proberesp_ies != NULL) && (params->proberesp_ies_len != 0) )
1022 {
1023 u16 rem_probe_resp_ie_len = params->proberesp_ies_len;
1024 u8 probe_rsp_ie_len[3] = {0};
1025 u8 counter = 0;
1026 /* Check Probe Resp Length if it is greater then 255 then Store
1027 Probe Resp IEs into WNI_CFG_PROBE_RSP_ADDNIE_DATA1 &
1028 WNI_CFG_PROBE_RSP_ADDNIE_DATA2 CFG Variable As We are not able
1029 Store More then 255 bytes into One Variable.
1030 */
1031 while ((rem_probe_resp_ie_len > 0) && (counter < 3))
1032 {
1033 if (rem_probe_resp_ie_len > MAX_CFG_STRING_LEN)
1034 {
1035 probe_rsp_ie_len[counter++] = MAX_CFG_STRING_LEN;
1036 rem_probe_resp_ie_len -= MAX_CFG_STRING_LEN;
1037 }
1038 else
1039 {
1040 probe_rsp_ie_len[counter++] = rem_probe_resp_ie_len;
1041 rem_probe_resp_ie_len = 0;
1042 }
1043 }
1044
1045 rem_probe_resp_ie_len = 0;
1046
1047 if (probe_rsp_ie_len[0] > 0)
1048 {
1049 if (ccmCfgSetStr((WLAN_HDD_GET_CTX(pHostapdAdapter))->hHal,
1050 WNI_CFG_PROBE_RSP_ADDNIE_DATA1,
1051 (tANI_U8*)&params->proberesp_ies[rem_probe_resp_ie_len],
1052 probe_rsp_ie_len[0], NULL,
1053 eANI_BOOLEAN_FALSE) == eHAL_STATUS_FAILURE)
1054 {
1055 hddLog(LOGE,
1056 "Could not pass on WNI_CFG_PROBE_RSP_ADDNIE_DATA1 to CCM");
Jeff Johnsone7245742012-09-05 17:12:55 -07001057 ret = -EINVAL;
1058 goto done;
Jeff Johnson295189b2012-06-20 16:38:30 -07001059 }
1060 rem_probe_resp_ie_len += probe_rsp_ie_len[0];
1061 }
1062
1063 if (probe_rsp_ie_len[1] > 0)
1064 {
1065 if (ccmCfgSetStr((WLAN_HDD_GET_CTX(pHostapdAdapter))->hHal,
1066 WNI_CFG_PROBE_RSP_ADDNIE_DATA2,
1067 (tANI_U8*)&params->proberesp_ies[rem_probe_resp_ie_len],
1068 probe_rsp_ie_len[1], NULL,
1069 eANI_BOOLEAN_FALSE) == eHAL_STATUS_FAILURE)
1070 {
1071 hddLog(LOGE,
1072 "Could not pass on WNI_CFG_PROBE_RSP_ADDNIE_DATA2 to CCM");
Jeff Johnsone7245742012-09-05 17:12:55 -07001073 ret = -EINVAL;
1074 goto done;
Jeff Johnson295189b2012-06-20 16:38:30 -07001075 }
1076 rem_probe_resp_ie_len += probe_rsp_ie_len[1];
1077 }
1078
1079 if (probe_rsp_ie_len[2] > 0)
1080 {
1081 if (ccmCfgSetStr((WLAN_HDD_GET_CTX(pHostapdAdapter))->hHal,
1082 WNI_CFG_PROBE_RSP_ADDNIE_DATA3,
1083 (tANI_U8*)&params->proberesp_ies[rem_probe_resp_ie_len],
1084 probe_rsp_ie_len[2], NULL,
1085 eANI_BOOLEAN_FALSE) == eHAL_STATUS_FAILURE)
1086 {
1087 hddLog(LOGE,
1088 "Could not pass on WNI_CFG_PROBE_RSP_ADDNIE_DATA3 to CCM");
Jeff Johnsone7245742012-09-05 17:12:55 -07001089 ret = -EINVAL;
1090 goto done;
Jeff Johnson295189b2012-06-20 16:38:30 -07001091 }
1092 rem_probe_resp_ie_len += probe_rsp_ie_len[2];
1093 }
1094
1095 if (probe_rsp_ie_len[1] == 0 )
1096 {
1097 if ( eHAL_STATUS_FAILURE == ccmCfgSetStr((WLAN_HDD_GET_CTX(pHostapdAdapter))->hHal,
1098 WNI_CFG_PROBE_RSP_ADDNIE_DATA2, (tANI_U8*)addIE, 0, NULL,
1099 eANI_BOOLEAN_FALSE) )
1100 {
1101 hddLog(LOGE,
1102 "Could not pass on WNI_CFG_PROBE_RSP_ADDNIE_DATA2 to CCM\n");
1103 }
1104 }
1105
1106 if (probe_rsp_ie_len[2] == 0 )
1107 {
1108 if ( eHAL_STATUS_FAILURE == ccmCfgSetStr((WLAN_HDD_GET_CTX(pHostapdAdapter))->hHal,
1109 WNI_CFG_PROBE_RSP_ADDNIE_DATA3, (tANI_U8*)addIE, 0, NULL,
1110 eANI_BOOLEAN_FALSE) )
1111 {
1112 hddLog(LOGE,
1113 "Could not pass on WNI_CFG_PROBE_RSP_ADDNIE_DATA3 to CCM\n");
1114 }
1115 }
1116
1117 if (ccmCfgSetInt((WLAN_HDD_GET_CTX(pHostapdAdapter))->hHal,
1118 WNI_CFG_PROBE_RSP_ADDNIE_FLAG, 1,NULL,
1119 test_bit(SOFTAP_BSS_STARTED, &pHostapdAdapter->event_flags) ?
1120 eANI_BOOLEAN_TRUE : eANI_BOOLEAN_FALSE)
1121 == eHAL_STATUS_FAILURE)
1122 {
1123 hddLog(LOGE,
1124 "Could not pass on WNI_CFG_PROBE_RSP_ADDNIE_FLAG to CCM");
Jeff Johnsone7245742012-09-05 17:12:55 -07001125 ret = -EINVAL;
1126 goto done;
Jeff Johnson295189b2012-06-20 16:38:30 -07001127 }
1128 }
1129 else
1130 {
1131 // Reset WNI_CFG_PROBE_RSP Flags
1132 wlan_hdd_reset_prob_rspies(pHostapdAdapter);
1133
1134 hddLog(VOS_TRACE_LEVEL_INFO,
1135 "%s: No Probe Response IE received in set beacon",
1136 __func__);
1137 }
1138
1139 // Added for AssocResp IE
1140 if ( (params->assocresp_ies != NULL) && (params->assocresp_ies_len != 0) )
1141 {
1142 if (ccmCfgSetStr((WLAN_HDD_GET_CTX(pHostapdAdapter))->hHal,
1143 WNI_CFG_ASSOC_RSP_ADDNIE_DATA, (tANI_U8*)params->assocresp_ies,
1144 params->assocresp_ies_len, NULL,
1145 eANI_BOOLEAN_FALSE) == eHAL_STATUS_FAILURE)
1146 {
1147 hddLog(LOGE,
1148 "Could not pass on WNI_CFG_ASSOC_RSP_ADDNIE_DATA to CCM");
Jeff Johnsone7245742012-09-05 17:12:55 -07001149 ret = -EINVAL;
1150 goto done;
Jeff Johnson295189b2012-06-20 16:38:30 -07001151 }
1152
1153 if (ccmCfgSetInt((WLAN_HDD_GET_CTX(pHostapdAdapter))->hHal,
1154 WNI_CFG_ASSOC_RSP_ADDNIE_FLAG, 1, NULL,
1155 test_bit(SOFTAP_BSS_STARTED, &pHostapdAdapter->event_flags) ?
1156 eANI_BOOLEAN_TRUE : eANI_BOOLEAN_FALSE)
1157 == eHAL_STATUS_FAILURE)
1158 {
1159 hddLog(LOGE,
1160 "Could not pass on WNI_CFG_ASSOC_RSP_ADDNIE_FLAG to CCM");
Jeff Johnsone7245742012-09-05 17:12:55 -07001161 ret = -EINVAL;
1162 goto done;
Jeff Johnson295189b2012-06-20 16:38:30 -07001163 }
1164 }
1165 else
1166 {
1167 hddLog(VOS_TRACE_LEVEL_INFO,
1168 "%s: No Assoc Response IE received in set beacon",
1169 __func__);
1170
1171 if ( eHAL_STATUS_FAILURE == ccmCfgSetInt((WLAN_HDD_GET_CTX(pHostapdAdapter))->hHal,
1172 WNI_CFG_ASSOC_RSP_ADDNIE_FLAG, 0, NULL,
1173 eANI_BOOLEAN_FALSE) )
1174 {
1175 hddLog(LOGE,
1176 "Could not pass on WNI_CFG_ASSOC_RSP_ADDNIE_FLAG to CCM\n");
1177 }
1178 }
1179
Jeff Johnsone7245742012-09-05 17:12:55 -07001180done:
Jeff Johnson295189b2012-06-20 16:38:30 -07001181 vos_mem_free(genie);
1182 return 0;
1183}
Jeff Johnson295189b2012-06-20 16:38:30 -07001184
1185/*
1186 * FUNCTION: wlan_hdd_validate_operation_channel
1187 * called by wlan_hdd_cfg80211_start_bss() and
1188 * wlan_hdd_cfg80211_set_channel()
1189 * This function validates whether given channel is part of valid
1190 * channel list.
1191 */
1192static VOS_STATUS wlan_hdd_validate_operation_channel(hdd_adapter_t *pAdapter,int channel)
1193{
1194
1195 v_U32_t num_ch = 0;
1196 u8 valid_ch[WNI_CFG_VALID_CHANNEL_LIST_LEN];
1197 u32 indx = 0;
1198 tHalHandle hHal = WLAN_HDD_GET_HAL_CTX(pAdapter);
1199
1200 num_ch = WNI_CFG_VALID_CHANNEL_LIST_LEN;
1201
1202 if (0 != ccmCfgGetStr(hHal, WNI_CFG_VALID_CHANNEL_LIST,
1203 valid_ch, &num_ch))
1204 {
1205 hddLog(VOS_TRACE_LEVEL_ERROR,
1206 "%s: failed to get valid channel list\n", __func__);
1207 return VOS_STATUS_E_FAILURE;
1208 }
1209
1210 for (indx = 0; indx < num_ch; indx++)
1211 {
1212 if (channel == valid_ch[indx])
1213 {
1214 break;
1215 }
1216 }
1217
1218 if (indx >= num_ch)
1219 {
1220 hddLog(VOS_TRACE_LEVEL_ERROR,
1221 "%s: Invalid Channel [%d] \n", __func__, channel);
1222 return VOS_STATUS_E_FAILURE;
1223 }
1224 return VOS_STATUS_SUCCESS;
1225
1226}
1227
Jeff Johnson04dd8a82012-06-29 20:41:40 -07001228
Jeff Johnson295189b2012-06-20 16:38:30 -07001229#if (LINUX_VERSION_CODE < KERNEL_VERSION(3,4,0))
1230static int wlan_hdd_cfg80211_start_bss(hdd_adapter_t *pHostapdAdapter,
1231 struct beacon_parameters *params)
Jeff Johnson04dd8a82012-06-29 20:41:40 -07001232#else
1233static int wlan_hdd_cfg80211_start_bss(hdd_adapter_t *pHostapdAdapter,
1234 struct cfg80211_beacon_data *params,
1235 const u8 *ssid, size_t ssid_len,
1236 enum nl80211_hidden_ssid hidden_ssid)
1237#endif
Jeff Johnson295189b2012-06-20 16:38:30 -07001238{
1239 tsap_Config_t *pConfig;
1240 beacon_data_t *pBeacon = NULL;
1241 struct ieee80211_mgmt *pMgmt_frame;
1242 v_U8_t *pIe=NULL;
1243 v_U16_t capab_info;
1244 eCsrAuthType RSNAuthType;
1245 eCsrEncryptionType RSNEncryptType;
1246 eCsrEncryptionType mcRSNEncryptType;
1247 int status = VOS_STATUS_SUCCESS;
1248 tpWLAN_SAPEventCB pSapEventCallback;
1249 hdd_hostapd_state_t *pHostapdState;
1250 v_U8_t wpaRsnIEdata[(SIR_MAC_MAX_IE_LENGTH * 2)+4]; //Max ie length 255 * 2(WPA+RSN) + 2 bytes (vendor specific ID) * 2
1251 v_CONTEXT_t pVosContext = (WLAN_HDD_GET_CTX(pHostapdAdapter))->pvosContext;
1252 struct qc_mac_acl_entry *acl_entry = NULL;
1253 v_SINT_t i;
1254
1255 ENTER();
1256
1257 pHostapdState = WLAN_HDD_GET_HOSTAP_STATE_PTR(pHostapdAdapter);
1258
1259 pConfig = &pHostapdAdapter->sessionCtx.ap.sapConfig;
1260
1261 pBeacon = pHostapdAdapter->sessionCtx.ap.beacon;
1262
1263 pMgmt_frame = (struct ieee80211_mgmt*)pBeacon->head;
1264
1265 pConfig->beacon_int = pMgmt_frame->u.beacon.beacon_int;
1266
1267 //channel is already set in the set_channel Call back
1268 //pConfig->channel = pCommitConfig->channel;
1269
1270 /*Protection parameter to enable or disable*/
1271 pConfig->protEnabled =
1272 (WLAN_HDD_GET_CTX(pHostapdAdapter))->cfg_ini->apProtEnabled;
1273
1274 pConfig->dtim_period = pBeacon->dtim_period;
1275
1276 hddLog(VOS_TRACE_LEVEL_INFO_HIGH,"****pConfig->dtim_period=%d***\n",
1277 pConfig->dtim_period);
1278
1279
Jeff Johnson32d95a32012-09-10 13:15:23 -07001280 if (pHostapdAdapter->device_mode == WLAN_HDD_SOFTAP)
1281 {
1282 pIe = wlan_hdd_cfg80211_get_ie_ptr(pBeacon->tail, pBeacon->tail_len,
Jeff Johnson295189b2012-06-20 16:38:30 -07001283 WLAN_EID_COUNTRY);
Jeff Johnson32d95a32012-09-10 13:15:23 -07001284 if(pIe)
Jeff Johnson295189b2012-06-20 16:38:30 -07001285 {
Jeff Johnson32d95a32012-09-10 13:15:23 -07001286 tANI_BOOLEAN restartNeeded;
1287 tHalHandle hHal = WLAN_HDD_GET_HAL_CTX(pHostapdAdapter);
1288 pConfig->ieee80211d = 1;
1289 vos_mem_copy(pConfig->countryCode, &pIe[2], 3);
1290 sme_setRegInfo(hHal, pConfig->countryCode);
1291 sme_ResetCountryCodeInformation(hHal, &restartNeeded);
1292 /*
1293 * If auto channel is configured i.e. channel is 0,
1294 * so skip channel validation.
1295 */
1296 if( AUTO_CHANNEL_SELECT != pConfig->channel )
Jeff Johnson295189b2012-06-20 16:38:30 -07001297 {
Jeff Johnson32d95a32012-09-10 13:15:23 -07001298 if(VOS_STATUS_SUCCESS != wlan_hdd_validate_operation_channel(pHostapdAdapter,pConfig->channel))
1299 {
1300 hddLog(VOS_TRACE_LEVEL_ERROR,
1301 "%s: Invalid Channel [%d] \n", __func__, pConfig->channel);
1302 return -EINVAL;
1303 }
Jeff Johnson295189b2012-06-20 16:38:30 -07001304 }
Madan Mohan Koyyalamudi1bed5982012-10-22 14:38:06 -07001305 /*
1306 * Validate the given channel range for the given country code
1307 */
1308 else
1309 {
1310 hdd_config_t *hdd_pConfig= (WLAN_HDD_GET_CTX(pHostapdAdapter))->cfg_ini;
1311 WLANSAP_SetChannelRange(hHal,hdd_pConfig->apStartChannelNum,hdd_pConfig->apEndChannelNum,hdd_pConfig->apOperatingBand);
1312 }
Jeff Johnson295189b2012-06-20 16:38:30 -07001313 }
Jeff Johnson32d95a32012-09-10 13:15:23 -07001314 else
1315 {
1316 pConfig->ieee80211d = 0;
1317 }
Jeff Johnson295189b2012-06-20 16:38:30 -07001318 }
Jeff Johnson32d95a32012-09-10 13:15:23 -07001319 else
Jeff Johnson295189b2012-06-20 16:38:30 -07001320 {
1321 pConfig->ieee80211d = 0;
1322 }
1323 pConfig->authType = eSAP_AUTO_SWITCH;
1324
1325 capab_info = pMgmt_frame->u.beacon.capab_info;
1326
1327 pConfig->privacy = (pMgmt_frame->u.beacon.capab_info &
1328 WLAN_CAPABILITY_PRIVACY) ? VOS_TRUE : VOS_FALSE;
1329
1330 (WLAN_HDD_GET_AP_CTX_PTR(pHostapdAdapter))->uPrivacy = pConfig->privacy;
1331
1332 /*Set wps station to configured*/
1333 pIe = wlan_hdd_get_wps_ie_ptr(pBeacon->tail, pBeacon->tail_len);
1334
1335 if(pIe)
1336 {
1337 if(pIe[1] < (2 + WPS_OUI_TYPE_SIZE))
1338 {
1339 hddLog( VOS_TRACE_LEVEL_ERROR, "**Wps Ie Length is too small***\n");
1340 return -EINVAL;
1341 }
1342 else if(memcmp(&pIe[2], WPS_OUI_TYPE, WPS_OUI_TYPE_SIZE) == 0)
1343 {
Madan Mohan Koyyalamudi8bdd3112012-09-24 13:55:14 -07001344 hddLog( VOS_TRACE_LEVEL_INFO, "** WPS IE(len %d) ***", (pIe[1]+2));
Jeff Johnson295189b2012-06-20 16:38:30 -07001345 /* Check 15 bit of WPS IE as it contain information for wps state
1346 * WPS state
1347 */
1348 if(SAP_WPS_ENABLED_UNCONFIGURED == pIe[15])
1349 {
1350 pConfig->wps_state = SAP_WPS_ENABLED_UNCONFIGURED;
1351 } else if(SAP_WPS_ENABLED_CONFIGURED == pIe[15])
1352 {
1353 pConfig->wps_state = SAP_WPS_ENABLED_CONFIGURED;
1354 }
1355 }
1356 }
1357 else
1358 {
1359 pConfig->wps_state = SAP_WPS_DISABLED;
1360 }
1361 pConfig->fwdWPSPBCProbeReq = 1; // Forward WPS PBC probe request frame up
1362
1363 pConfig->RSNWPAReqIELength = 0;
1364 pConfig->pRSNWPAReqIE = NULL;
1365 pIe = wlan_hdd_cfg80211_get_ie_ptr(pBeacon->tail, pBeacon->tail_len,
1366 WLAN_EID_RSN);
1367 if(pIe && pIe[1])
1368 {
1369 pConfig->RSNWPAReqIELength = pIe[1] + 2;
1370 memcpy(&wpaRsnIEdata[0], pIe, pConfig->RSNWPAReqIELength);
1371 pConfig->pRSNWPAReqIE = &wpaRsnIEdata[0];
1372 /* The actual processing may eventually be more extensive than
1373 * this. Right now, just consume any PMKIDs that are sent in
1374 * by the app.
1375 * */
1376 status = hdd_softap_unpackIE(
1377 vos_get_context( VOS_MODULE_ID_SME, pVosContext),
1378 &RSNEncryptType,
1379 &mcRSNEncryptType,
1380 &RSNAuthType,
1381 pConfig->pRSNWPAReqIE[1]+2,
1382 pConfig->pRSNWPAReqIE );
1383
1384 if( VOS_STATUS_SUCCESS == status )
1385 {
1386 /* Now copy over all the security attributes you have
1387 * parsed out
1388 * */
1389 pConfig->RSNEncryptType = RSNEncryptType; // Use the cipher type in the RSN IE
1390 pConfig->mcRSNEncryptType = mcRSNEncryptType;
1391 (WLAN_HDD_GET_AP_CTX_PTR(pHostapdAdapter))->ucEncryptType
1392 = RSNEncryptType;
1393 hddLog( LOG1, FL("%s: CSR AuthType = %d, "
1394 "EncryptionType = %d mcEncryptionType = %d\n"),
1395 RSNAuthType, RSNEncryptType, mcRSNEncryptType);
1396 }
1397 }
1398
1399 pIe = wlan_hdd_get_vendor_oui_ie_ptr(WPA_OUI_TYPE, WPA_OUI_TYPE_SIZE,
1400 pBeacon->tail, pBeacon->tail_len);
1401
1402 if(pIe && pIe[1] && (pIe[0] == DOT11F_EID_WPA))
1403 {
1404 if (pConfig->pRSNWPAReqIE)
1405 {
1406 /*Mixed mode WPA/WPA2*/
1407 memcpy((&wpaRsnIEdata[0] + pConfig->RSNWPAReqIELength), pIe, pIe[1] + 2);
1408 pConfig->RSNWPAReqIELength += pIe[1] + 2;
1409 }
1410 else
1411 {
1412 pConfig->RSNWPAReqIELength = pIe[1] + 2;
1413 memcpy(&wpaRsnIEdata[0], pIe, pConfig->RSNWPAReqIELength);
1414 pConfig->pRSNWPAReqIE = &wpaRsnIEdata[0];
1415 status = hdd_softap_unpackIE(
1416 vos_get_context( VOS_MODULE_ID_SME, pVosContext),
1417 &RSNEncryptType,
1418 &mcRSNEncryptType,
1419 &RSNAuthType,
1420 pConfig->pRSNWPAReqIE[1]+2,
1421 pConfig->pRSNWPAReqIE );
1422
1423 if( VOS_STATUS_SUCCESS == status )
1424 {
1425 /* Now copy over all the security attributes you have
1426 * parsed out
1427 * */
1428 pConfig->RSNEncryptType = RSNEncryptType; // Use the cipher type in the RSN IE
1429 pConfig->mcRSNEncryptType = mcRSNEncryptType;
1430 (WLAN_HDD_GET_AP_CTX_PTR(pHostapdAdapter))->ucEncryptType
1431 = RSNEncryptType;
1432 hddLog( LOG1, FL("%s: CSR AuthType = %d, "
1433 "EncryptionType = %d mcEncryptionType = %d\n"),
1434 RSNAuthType, RSNEncryptType, mcRSNEncryptType);
1435 }
1436 }
1437 }
1438
1439 pConfig->SSIDinfo.ssidHidden = VOS_FALSE;
1440
Jeff Johnson04dd8a82012-06-29 20:41:40 -07001441#if (LINUX_VERSION_CODE < KERNEL_VERSION(3,4,0))
Jeff Johnson295189b2012-06-20 16:38:30 -07001442 if (params->ssid != NULL)
1443 {
1444 memcpy(pConfig->SSIDinfo.ssid.ssId, params->ssid, params->ssid_len);
1445 pConfig->SSIDinfo.ssid.length = params->ssid_len;
1446 if (params->hidden_ssid != NL80211_HIDDEN_SSID_NOT_IN_USE)
1447 pConfig->SSIDinfo.ssidHidden = VOS_TRUE;
1448 }
Jeff Johnson04dd8a82012-06-29 20:41:40 -07001449#else
1450 if (ssid != NULL)
1451 {
1452 memcpy(pConfig->SSIDinfo.ssid.ssId, ssid, ssid_len);
1453 pConfig->SSIDinfo.ssid.length = ssid_len;
1454 if (hidden_ssid != NL80211_HIDDEN_SSID_NOT_IN_USE)
1455 pConfig->SSIDinfo.ssidHidden = VOS_TRUE;
1456 }
1457#endif
1458
Jeff Johnson295189b2012-06-20 16:38:30 -07001459 vos_mem_copy(pConfig->self_macaddr.bytes,
1460 pHostapdAdapter->macAddressCurrent.bytes, sizeof(v_MACADDR_t));
1461
1462 /* default value */
1463 pConfig->SapMacaddr_acl = eSAP_ACCEPT_UNLESS_DENIED;
1464 pConfig->num_accept_mac = 0;
1465 pConfig->num_deny_mac = 0;
1466
1467 pIe = wlan_hdd_get_vendor_oui_ie_ptr(BLACKLIST_OUI_TYPE, WPA_OUI_TYPE_SIZE,
1468 pBeacon->tail, pBeacon->tail_len);
1469
1470 /* pIe for black list is following form:
1471 type : 1 byte
1472 length : 1 byte
1473 OUI : 4 bytes
1474 acl type : 1 byte
1475 no of mac addr in black list: 1 byte
1476 list of mac_acl_entries: variable, 6 bytes per mac address + sizeof(int) for vlan id
1477 */
1478 if ((pIe != NULL) && (pIe[1] != 0))
1479 {
1480 pConfig->SapMacaddr_acl = pIe[6];
1481 pConfig->num_deny_mac = pIe[7];
1482 hddLog(VOS_TRACE_LEVEL_INFO,"acl type = %d no deny mac = %d\n",
1483 pIe[6], pIe[7]);
1484 if (pConfig->num_deny_mac > MAX_MAC_ADDRESS_DENIED)
1485 pConfig->num_deny_mac = MAX_MAC_ADDRESS_DENIED;
1486 acl_entry = (struct qc_mac_acl_entry *)(pIe + 8);
1487 for (i = 0; i < pConfig->num_deny_mac; i++)
1488 {
1489 vos_mem_copy(&pConfig->deny_mac[i], acl_entry->addr, sizeof(qcmacaddr));
1490 acl_entry++;
1491 }
1492 }
1493 pIe = wlan_hdd_get_vendor_oui_ie_ptr(WHITELIST_OUI_TYPE, WPA_OUI_TYPE_SIZE,
1494 pBeacon->tail, pBeacon->tail_len);
1495
1496 /* pIe for white list is following form:
1497 type : 1 byte
1498 length : 1 byte
1499 OUI : 4 bytes
1500 acl type : 1 byte
1501 no of mac addr in white list: 1 byte
1502 list of mac_acl_entries: variable, 6 bytes per mac address + sizeof(int) for vlan id
1503 */
1504 if ((pIe != NULL) && (pIe[1] != 0))
1505 {
1506 pConfig->SapMacaddr_acl = pIe[6];
1507 pConfig->num_accept_mac = pIe[7];
1508 hddLog(VOS_TRACE_LEVEL_INFO,"acl type = %d no accept mac = %d\n",
1509 pIe[6], pIe[7]);
1510 if (pConfig->num_accept_mac > MAX_MAC_ADDRESS_ACCEPTED)
1511 pConfig->num_accept_mac = MAX_MAC_ADDRESS_ACCEPTED;
1512 acl_entry = (struct qc_mac_acl_entry *)(pIe + 8);
1513 for (i = 0; i < pConfig->num_accept_mac; i++)
1514 {
1515 vos_mem_copy(&pConfig->accept_mac[i], acl_entry->addr, sizeof(qcmacaddr));
1516 acl_entry++;
1517 }
1518 }
1519 wlan_hdd_set_sapHwmode(pHostapdAdapter);
1520
Jeff Johnsone7245742012-09-05 17:12:55 -07001521#ifdef WLAN_FEATURE_11AC
1522 if(((WLAN_HDD_GET_CTX(pHostapdAdapter))->cfg_ini->dot11Mode == eHDD_DOT11_MODE_AUTO) ||
1523 ((WLAN_HDD_GET_CTX(pHostapdAdapter))->cfg_ini->dot11Mode == eHDD_DOT11_MODE_11ac) ||
1524 ((WLAN_HDD_GET_CTX(pHostapdAdapter))->cfg_ini->dot11Mode == eHDD_DOT11_MODE_11ac_ONLY) )
1525 {
1526 pConfig->SapHw_mode = eSAP_DOT11_MODE_11ac;
1527 }
1528#endif
1529
Jeff Johnson295189b2012-06-20 16:38:30 -07001530 // ht_capab is not what the name conveys,this is used for protection bitmap
1531 pConfig->ht_capab =
1532 (WLAN_HDD_GET_CTX(pHostapdAdapter))->cfg_ini->apProtection;
1533
1534 if ( 0 != wlan_hdd_cfg80211_update_apies(pHostapdAdapter, params) )
1535 {
1536 hddLog(LOGE, FL("SAP Not able to set AP IEs"));
1537 return -EINVAL;
1538 }
1539
1540 //Uapsd Enabled Bit
1541 pConfig->UapsdEnable =
1542 (WLAN_HDD_GET_CTX(pHostapdAdapter))->cfg_ini->apUapsdEnabled;
1543 //Enable OBSS protection
1544 pConfig->obssProtEnabled =
1545 (WLAN_HDD_GET_CTX(pHostapdAdapter))->cfg_ini->apOBSSProtEnabled;
1546
1547 hddLog(LOGW, FL("SOftAP macaddress : "MAC_ADDRESS_STR"\n"),
1548 MAC_ADDR_ARRAY(pHostapdAdapter->macAddressCurrent.bytes));
1549 hddLog(LOGW,FL("ssid =%s\n"), pConfig->SSIDinfo.ssid.ssId);
1550 hddLog(LOGW,FL("beaconint=%d, channel=%d\n"), (int)pConfig->beacon_int,
1551 (int)pConfig->channel);
1552 hddLog(LOGW,FL("hw_mode=%x\n"), pConfig->SapHw_mode);
1553 hddLog(LOGW,FL("privacy=%d, authType=%d\n"), pConfig->privacy,
1554 pConfig->authType);
1555 hddLog(LOGW,FL("RSN/WPALen=%d, \n"),(int)pConfig->RSNWPAReqIELength);
1556 hddLog(LOGW,FL("Uapsd = %d\n"),pConfig->UapsdEnable);
1557 hddLog(LOGW,FL("ProtEnabled = %d, OBSSProtEnabled = %d\n"),
1558 pConfig->protEnabled, pConfig->obssProtEnabled);
1559
1560 if(test_bit(SOFTAP_BSS_STARTED, &pHostapdAdapter->event_flags))
1561 {
1562 //Bss already started. just return.
1563 //TODO Probably it should update some beacon params.
1564 hddLog( LOGE, "Bss Already started...Ignore the request");
1565 EXIT();
1566 return 0;
1567 }
1568
1569 pConfig->persona = pHostapdAdapter->device_mode;
1570
1571 pSapEventCallback = hdd_hostapd_SAPEventCB;
1572 if(WLANSAP_StartBss(pVosContext, pSapEventCallback, pConfig,
1573 (v_PVOID_t)pHostapdAdapter->dev) != VOS_STATUS_SUCCESS)
1574 {
1575 hddLog(LOGE,FL("SAP Start Bss fail\n"));
1576 return -EINVAL;
1577 }
1578
Madan Mohan Koyyalamudi8bdd3112012-09-24 13:55:14 -07001579 hddLog(LOG1,
Jeff Johnson295189b2012-06-20 16:38:30 -07001580 FL("Waiting for Scan to complete(auto mode) and BSS to start"));
1581
1582 status = vos_wait_single_event(&pHostapdState->vosEvent, 10000);
1583
1584 if (!VOS_IS_STATUS_SUCCESS(status))
1585 {
1586 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
1587 ("ERROR: HDD vos wait for single_event failed!!\n"));
1588 VOS_ASSERT(0);
1589 }
1590
1591 //Succesfully started Bss update the state bit.
1592 set_bit(SOFTAP_BSS_STARTED, &pHostapdAdapter->event_flags);
1593
Madan Mohan Koyyalamudi26bd7142012-10-30 18:14:19 -07001594#ifdef WLAN_FEATURE_P2P_DEBUG
1595 if (pHostapdAdapter->device_mode == WLAN_HDD_P2P_GO)
1596 {
1597 if(globalP2PConnectionStatus == P2P_GO_NEG_COMPLETED)
1598 {
1599 globalP2PConnectionStatus = P2P_GO_COMPLETED_STATE;
1600 hddLog(LOGE,"[P2P State] From Go nego completed to "
1601 "Non-autonomus Group started");
1602 }
1603 else if(globalP2PConnectionStatus == P2P_NOT_ACTIVE)
1604 {
1605 globalP2PConnectionStatus = P2P_GO_COMPLETED_STATE;
1606 hddLog(LOGE,"[P2P State] From Inactive to "
1607 "Autonomus Group started");
1608 }
1609 }
1610#endif
1611
Jeff Johnson295189b2012-06-20 16:38:30 -07001612 pHostapdState->bCommit = TRUE;
1613 EXIT();
1614
1615 return 0;
1616}
1617
Jeff Johnson04dd8a82012-06-29 20:41:40 -07001618#if (LINUX_VERSION_CODE < KERNEL_VERSION(3,4,0))
Jeff Johnson295189b2012-06-20 16:38:30 -07001619static int wlan_hdd_cfg80211_add_beacon(struct wiphy *wiphy,
1620 struct net_device *dev,
1621 struct beacon_parameters *params)
1622{
1623 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR(dev);
1624 int status=VOS_STATUS_SUCCESS;
1625
1626 ENTER();
1627
1628 hddLog(VOS_TRACE_LEVEL_INFO_HIGH, "device mode=%d\n",pAdapter->device_mode);
1629
Jeff Johnson04dd8a82012-06-29 20:41:40 -07001630 if ( (WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress )
1631 {
1632 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
1633 "%s:LOGP in Progress. Ignore!!!", __func__);
1634 return -EAGAIN;
1635 }
1636
Jeff Johnson295189b2012-06-20 16:38:30 -07001637 if ( (pAdapter->device_mode == WLAN_HDD_SOFTAP)
1638#ifdef WLAN_FEATURE_P2P
1639 || (pAdapter->device_mode == WLAN_HDD_P2P_GO)
1640#endif
1641 )
1642 {
1643 beacon_data_t *old,*new;
1644
1645 old = pAdapter->sessionCtx.ap.beacon;
1646
1647 if (old)
1648 return -EALREADY;
1649
1650 status = wlan_hdd_cfg80211_alloc_new_beacon(pAdapter,&new,params);
1651
1652 if(status != VOS_STATUS_SUCCESS)
1653 {
1654 hddLog(VOS_TRACE_LEVEL_FATAL,
1655 "%s:Error!!! Allocating the new beacon\n",__func__);
1656 return -EINVAL;
1657 }
1658
1659 pAdapter->sessionCtx.ap.beacon = new;
1660
1661 status = wlan_hdd_cfg80211_start_bss(pAdapter, params);
1662 }
1663
1664 EXIT();
1665 return status;
1666}
1667
1668static int wlan_hdd_cfg80211_set_beacon(struct wiphy *wiphy,
1669 struct net_device *dev,
1670 struct beacon_parameters *params)
1671{
1672 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR(dev);
1673 int status=VOS_STATUS_SUCCESS;
1674
1675 ENTER();
1676
1677 hddLog(VOS_TRACE_LEVEL_INFO, "%s: device_mode = %d\n",
1678 __func__,pAdapter->device_mode);
1679
Jeff Johnson04dd8a82012-06-29 20:41:40 -07001680 if ( (WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress )
1681 {
1682 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
1683 "%s:LOGP in Progress. Ignore!!!", __func__);
1684 return -EAGAIN;
1685 }
1686
Jeff Johnson295189b2012-06-20 16:38:30 -07001687 if ((pAdapter->device_mode == WLAN_HDD_SOFTAP)
1688#ifdef WLAN_FEATURE_P2P
1689 || (pAdapter->device_mode == WLAN_HDD_P2P_GO)
1690#endif
1691 )
1692 {
1693 beacon_data_t *old,*new;
1694
1695 old = pAdapter->sessionCtx.ap.beacon;
1696
1697 if (!old)
1698 return -ENOENT;
1699
1700 status = wlan_hdd_cfg80211_alloc_new_beacon(pAdapter,&new,params);
1701
1702 if(status != VOS_STATUS_SUCCESS) {
1703 hddLog(VOS_TRACE_LEVEL_FATAL,
1704 "%s: Error!!! Allocating the new beacon\n",__func__);
1705 return -EINVAL;
1706 }
1707
1708 pAdapter->sessionCtx.ap.beacon = new;
1709
1710 status = wlan_hdd_cfg80211_start_bss(pAdapter, params);
1711 }
1712
1713 EXIT();
1714 return status;
1715}
1716
Jeff Johnson04dd8a82012-06-29 20:41:40 -07001717#endif //(LINUX_VERSION_CODE < KERNEL_VERSION(3,4,0))
1718
1719#if (LINUX_VERSION_CODE < KERNEL_VERSION(3,4,0))
Jeff Johnson295189b2012-06-20 16:38:30 -07001720static int wlan_hdd_cfg80211_del_beacon(struct wiphy *wiphy,
1721 struct net_device *dev)
Jeff Johnson04dd8a82012-06-29 20:41:40 -07001722#else
1723static int wlan_hdd_cfg80211_stop_ap (struct wiphy *wiphy,
1724 struct net_device *dev)
1725#endif
Jeff Johnson295189b2012-06-20 16:38:30 -07001726{
1727 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR(dev);
Jeff Johnsone7245742012-09-05 17:12:55 -07001728 hdd_context_t *pHddCtx = NULL;
1729 hdd_scaninfo_t *pScanInfo = NULL;
1730 hdd_adapter_t *staAdapter = NULL;
Jeff Johnson295189b2012-06-20 16:38:30 -07001731 VOS_STATUS status = 0;
1732
1733 ENTER();
1734
1735 if (NULL == pAdapter)
1736 {
1737 VOS_TRACE( VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_FATAL,
1738 "%s: HDD adapter context is Null", __FUNCTION__);
1739 return -ENODEV;
1740 }
Madan Mohan Koyyalamudib2c36892012-10-18 20:52:38 -07001741 if ((WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress)
1742 {
1743 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
1744 "%s:LOGP in Progress. Ignore!!!", __func__);
1745 return -EAGAIN;
1746 }
Madan Mohan Koyyalamudi2a1ba772012-10-11 14:59:06 -07001747
1748 pHddCtx = (hdd_context_t*)pAdapter->pHddCtx;
1749 if (NULL == pHddCtx)
1750 {
1751 VOS_TRACE( VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_FATAL,
1752 "%s: HDD context is Null", __FUNCTION__);
1753 return -ENODEV;
1754 }
1755
1756 staAdapter = hdd_get_adapter(pAdapter->pHddCtx, WLAN_HDD_INFRA_STATION);
1757 if (NULL == staAdapter)
1758 {
1759 staAdapter = hdd_get_adapter(pAdapter->pHddCtx, WLAN_HDD_P2P_CLIENT);
1760 if (NULL == staAdapter)
1761 {
1762 VOS_TRACE( VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_FATAL,
1763 "%s: HDD adapter context is Null", __FUNCTION__);
1764 return -ENODEV;
1765 }
1766 }
1767
1768 pScanInfo = &pHddCtx->scan_info;
1769
Jeff Johnson295189b2012-06-20 16:38:30 -07001770 if ((WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress)
1771 {
1772 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_FATAL, "%s:LOGP in Progress. Ignore!!!",__func__);
1773 return -EAGAIN;
1774 }
1775
1776 pHddCtx = (hdd_context_t*)pAdapter->pHddCtx;
1777
1778 hddLog(VOS_TRACE_LEVEL_INFO, "%s: device_mode = %d\n",
1779 __func__,pAdapter->device_mode);
1780
Jeff Johnsone7245742012-09-05 17:12:55 -07001781 if ((pScanInfo != NULL) && pScanInfo->mScanPending)
1782 {
1783 INIT_COMPLETION(staAdapter->abortscan_event_var);
1784 hdd_abort_mac_scan(staAdapter->pHddCtx);
1785 status = wait_for_completion_interruptible_timeout(
1786 &staAdapter->abortscan_event_var,
1787 msecs_to_jiffies(WLAN_WAIT_TIME_ABORTSCAN));
1788 if (!status)
1789 {
1790 VOS_TRACE( VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_FATAL,
1791 "%s: Timeout occured while waiting for abortscan" ,
1792 __FUNCTION__);
1793 VOS_ASSERT(pScanInfo->mScanPending);
1794 return 0;
1795 }
1796 }
1797
Jeff Johnson295189b2012-06-20 16:38:30 -07001798 if ((pAdapter->device_mode == WLAN_HDD_SOFTAP)
1799#ifdef WLAN_FEATURE_P2P
1800 || (pAdapter->device_mode == WLAN_HDD_P2P_GO)
1801#endif
1802 )
1803 {
1804 beacon_data_t *old;
1805
1806 old = pAdapter->sessionCtx.ap.beacon;
1807
1808 if (!old)
1809 return -ENOENT;
1810
1811#ifdef CONFIG_CFG80211
1812 hdd_cleanup_actionframe(pHddCtx, pAdapter);
1813#endif
1814
1815 mutex_lock(&pHddCtx->sap_lock);
1816 if(test_bit(SOFTAP_BSS_STARTED, &pAdapter->event_flags))
1817 {
1818 if ( VOS_STATUS_SUCCESS == (status = WLANSAP_StopBss((WLAN_HDD_GET_CTX(pAdapter))->pvosContext) ) )
1819 {
1820 hdd_hostapd_state_t *pHostapdState = WLAN_HDD_GET_HOSTAP_STATE_PTR(pAdapter);
1821
1822 status = vos_wait_single_event(&pHostapdState->vosEvent, 10000);
1823
1824 if (!VOS_IS_STATUS_SUCCESS(status))
1825 {
1826 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
1827 ("ERROR: HDD vos wait for single_event failed!!\n"));
1828 VOS_ASSERT(0);
1829 }
1830 }
1831 clear_bit(SOFTAP_BSS_STARTED, &pAdapter->event_flags);
1832 }
1833 mutex_unlock(&pHddCtx->sap_lock);
1834
1835 if(status != VOS_STATUS_SUCCESS)
1836 {
1837 hddLog(VOS_TRACE_LEVEL_FATAL,
1838 "%s:Error!!! Stopping the BSS\n",__func__);
1839 return -EINVAL;
1840 }
1841
1842 if (ccmCfgSetInt((WLAN_HDD_GET_CTX(pAdapter))->hHal,
1843 WNI_CFG_PROBE_RSP_BCN_ADDNIE_FLAG, 0,NULL, eANI_BOOLEAN_FALSE)
1844 ==eHAL_STATUS_FAILURE)
1845 {
1846 hddLog(LOGE,
1847 "Could not pass on WNI_CFG_PROBE_RSP_BCN_ADDNIE_FLAG to CCM\n");
1848 }
1849
1850 if ( eHAL_STATUS_FAILURE == ccmCfgSetInt((WLAN_HDD_GET_CTX(pAdapter))->hHal,
1851 WNI_CFG_ASSOC_RSP_ADDNIE_FLAG, 0, NULL,
1852 eANI_BOOLEAN_FALSE) )
1853 {
1854 hddLog(LOGE,
1855 "Could not pass on WNI_CFG_ASSOC_RSP_ADDNIE_FLAG to CCM\n");
1856 }
1857
1858 // Reset WNI_CFG_PROBE_RSP Flags
1859 wlan_hdd_reset_prob_rspies(pAdapter);
1860
1861 pAdapter->sessionCtx.ap.beacon = NULL;
1862 kfree(old);
Madan Mohan Koyyalamudi26bd7142012-10-30 18:14:19 -07001863#ifdef WLAN_FEATURE_P2P_DEBUG
1864 if((pAdapter->device_mode == WLAN_HDD_P2P_GO) &&
1865 (globalP2PConnectionStatus == P2P_GO_COMPLETED_STATE))
1866 {
1867 hddLog(LOGE,"[P2P State] From GO completed to Inactive state "
1868 "GO got removed");
1869 globalP2PConnectionStatus = P2P_NOT_ACTIVE;
1870 }
1871#endif
Jeff Johnson295189b2012-06-20 16:38:30 -07001872 }
1873 EXIT();
1874 return status;
1875}
Jeff Johnson04dd8a82012-06-29 20:41:40 -07001876
1877#if (LINUX_VERSION_CODE > KERNEL_VERSION(3,3,0))
1878
1879static int wlan_hdd_cfg80211_start_ap(struct wiphy *wiphy,
1880 struct net_device *dev,
1881 struct cfg80211_ap_settings *params)
1882{
1883 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR(dev);
1884 int status = VOS_STATUS_SUCCESS;
1885
1886 ENTER();
1887
1888 hddLog(VOS_TRACE_LEVEL_INFO_HIGH, "device mode=%d\n", pAdapter->device_mode);
1889
Madan Mohan Koyyalamudib2c36892012-10-18 20:52:38 -07001890 if ((WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress)
1891 {
1892 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_FATAL, "%s:LOGP in Progress. Ignore!!!",__func__);
1893 return -EAGAIN;
1894 }
Jeff Johnson04dd8a82012-06-29 20:41:40 -07001895 if ((pAdapter->device_mode == WLAN_HDD_SOFTAP)
1896#ifdef WLAN_FEATURE_P2P
1897 || (pAdapter->device_mode == WLAN_HDD_P2P_GO)
1898#endif
1899 )
1900 {
1901 beacon_data_t *old,*new;
1902
1903 old = pAdapter->sessionCtx.ap.beacon;
1904
1905 if (old)
1906 return -EALREADY;
1907
1908 status = wlan_hdd_cfg80211_alloc_new_beacon(pAdapter, &new, &params->beacon, params->dtim_period);
1909
1910 if(status != VOS_STATUS_SUCCESS)
1911 {
1912 hddLog(VOS_TRACE_LEVEL_FATAL,
1913 "%s:Error!!! Allocating the new beacon\n",__func__);
1914 return -EINVAL;
1915 }
1916 pAdapter->sessionCtx.ap.beacon = new;
1917 status = wlan_hdd_cfg80211_start_bss(pAdapter, &params->beacon, params->ssid,
1918 params->ssid_len, params->hidden_ssid);
1919 }
1920
1921 EXIT();
1922 return status;
1923}
1924
1925
1926static int wlan_hdd_cfg80211_change_beacon(struct wiphy *wiphy,
1927 struct net_device *dev,
1928 struct cfg80211_beacon_data *params)
1929{
1930 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR(dev);
1931 int status=VOS_STATUS_SUCCESS;
1932
1933 ENTER();
1934
1935 hddLog(VOS_TRACE_LEVEL_INFO, "%s: device_mode = %d\n",
1936 __func__, pAdapter->device_mode);
Madan Mohan Koyyalamudib2c36892012-10-18 20:52:38 -07001937 if ((WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress)
1938 {
1939 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_FATAL, "%s:LOGP in Progress. Ignore!!!",__func__);
1940 return -EAGAIN;
1941 }
Jeff Johnson04dd8a82012-06-29 20:41:40 -07001942
1943 if ((pAdapter->device_mode == WLAN_HDD_SOFTAP)
1944#ifdef WLAN_FEATURE_P2P
1945 || (pAdapter->device_mode == WLAN_HDD_P2P_GO)
1946#endif
1947 )
1948 {
1949 beacon_data_t *old,*new;
1950
1951 old = pAdapter->sessionCtx.ap.beacon;
1952
1953 if (!old)
1954 return -ENOENT;
1955
1956 status = wlan_hdd_cfg80211_alloc_new_beacon(pAdapter, &new, params, 0);
1957
1958 if(status != VOS_STATUS_SUCCESS) {
1959 hddLog(VOS_TRACE_LEVEL_FATAL,
1960 "%s: Error!!! Allocating the new beacon\n",__func__);
1961 return -EINVAL;
1962 }
1963
1964 pAdapter->sessionCtx.ap.beacon = new;
1965
1966 status = wlan_hdd_cfg80211_start_bss(pAdapter, params, NULL, 0, 0);
1967 }
1968
1969 EXIT();
1970 return status;
1971}
1972
1973#endif //(LINUX_VERSION_CODE > KERNEL_VERSION(3,3,0))
1974
Jeff Johnson295189b2012-06-20 16:38:30 -07001975
1976static int wlan_hdd_cfg80211_change_bss (struct wiphy *wiphy,
1977 struct net_device *dev,
1978 struct bss_parameters *params)
1979{
1980 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR(dev);
1981
1982 ENTER();
1983
1984 hddLog(VOS_TRACE_LEVEL_INFO, "%s: device_mode = %d\n",
1985 __func__,pAdapter->device_mode);
1986
1987 if((pAdapter->device_mode == WLAN_HDD_SOFTAP)
1988#ifdef WLAN_FEATURE_P2P
1989 || (pAdapter->device_mode == WLAN_HDD_P2P_GO)
1990#endif
1991 )
1992 {
1993 /* ap_isolate == -1 means that in change bss, upper layer doesn't
1994 * want to update this parameter */
1995 if (-1 != params->ap_isolate)
1996 {
1997 pAdapter->sessionCtx.ap.apDisableIntraBssFwd = !!params->ap_isolate;
1998 }
1999 }
2000
2001 EXIT();
2002 return 0;
2003}
2004
2005/*
2006 * FUNCTION: wlan_hdd_cfg80211_change_iface
2007 * This function is used to set the interface type (INFRASTRUCTURE/ADHOC)
2008 */
2009int wlan_hdd_cfg80211_change_iface( struct wiphy *wiphy,
2010 struct net_device *ndev,
2011 enum nl80211_iftype type,
2012 u32 *flags,
2013 struct vif_params *params
2014 )
2015{
2016 struct wireless_dev *wdev;
2017 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR( ndev );
2018 hdd_context_t *pHddCtx = WLAN_HDD_GET_CTX( pAdapter );
Mohit Khanna0f232092012-09-11 14:46:08 -07002019 hdd_adapter_t *pP2pAdapter = NULL;
Jeff Johnson295189b2012-06-20 16:38:30 -07002020 tCsrRoamProfile *pRoamProfile = NULL;
2021 eCsrRoamBssType LastBSSType;
2022 hdd_config_t *pConfig = pHddCtx->cfg_ini;
2023 eMib_dot11DesiredBssType connectedBssType;
2024 VOS_STATUS status;
2025
2026 ENTER();
2027
2028 if ((WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress)
2029 {
2030 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_FATAL, "%s:LOGP in Progress. Ignore!!!",__func__);
2031 return -EAGAIN;
2032 }
2033
2034 hddLog(VOS_TRACE_LEVEL_INFO, "%s: device_mode = %d",
2035 __func__, pAdapter->device_mode);
2036
2037 wdev = ndev->ieee80211_ptr;
2038
2039#ifdef WLAN_BTAMP_FEATURE
2040 if((NL80211_IFTYPE_P2P_CLIENT == type)||
2041 (NL80211_IFTYPE_ADHOC == type)||
2042 (NL80211_IFTYPE_AP == type)||
2043 (NL80211_IFTYPE_P2P_GO == type))
2044 {
2045 pHddCtx->isAmpAllowed = VOS_FALSE;
2046 // stop AMP traffic
2047 status = WLANBAP_StopAmp();
2048 if(VOS_STATUS_SUCCESS != status )
2049 {
2050 pHddCtx->isAmpAllowed = VOS_TRUE;
2051 hddLog(VOS_TRACE_LEVEL_FATAL,
2052 "%s: Failed to stop AMP", __func__);
2053 return -EINVAL;
2054 }
2055 }
2056#endif //WLAN_BTAMP_FEATURE
2057 /* Reset the current device mode bit mask*/
2058 wlan_hdd_clear_concurrency_mode(pHddCtx, pAdapter->device_mode);
2059
2060 if( (pAdapter->device_mode == WLAN_HDD_INFRA_STATION)
2061#ifdef WLAN_FEATURE_P2P
2062 || (pAdapter->device_mode == WLAN_HDD_P2P_CLIENT)
Jeff Johnsone7245742012-09-05 17:12:55 -07002063 || (pAdapter->device_mode == WLAN_HDD_P2P_DEVICE)
Jeff Johnson295189b2012-06-20 16:38:30 -07002064#endif
2065 )
2066 {
2067 hdd_wext_state_t *pWextState = WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter);
2068 pRoamProfile = &pWextState->roamProfile;
2069 LastBSSType = pRoamProfile->BSSType;
2070
2071 switch (type)
2072 {
2073 case NL80211_IFTYPE_STATION:
2074#ifdef WLAN_FEATURE_P2P
2075 case NL80211_IFTYPE_P2P_CLIENT:
2076#endif
2077 hddLog(VOS_TRACE_LEVEL_INFO,
2078 "%s: setting interface Type to INFRASTRUCTURE", __func__);
2079 pRoamProfile->BSSType = eCSR_BSS_TYPE_INFRASTRUCTURE;
Jeff Johnsone7245742012-09-05 17:12:55 -07002080#ifdef WLAN_FEATURE_11AC
2081 if(pConfig->dot11Mode == eHDD_DOT11_MODE_AUTO)
2082 {
2083 pConfig->dot11Mode = eHDD_DOT11_MODE_11ac;
2084 }
2085#endif
2086 pRoamProfile->phyMode =
2087 hdd_cfg_xlate_to_csr_phy_mode(pConfig->dot11Mode);
Jeff Johnson295189b2012-06-20 16:38:30 -07002088 wdev->iftype = type;
2089#ifdef WLAN_FEATURE_P2P
2090 pAdapter->device_mode = (type == NL80211_IFTYPE_STATION) ?
2091 WLAN_HDD_INFRA_STATION: WLAN_HDD_P2P_CLIENT;
2092#endif
2093 break;
2094 case NL80211_IFTYPE_ADHOC:
2095 hddLog(VOS_TRACE_LEVEL_INFO,
2096 "%s: setting interface Type to ADHOC", __func__);
2097 pRoamProfile->BSSType = eCSR_BSS_TYPE_START_IBSS;
2098 pRoamProfile->phyMode =
2099 hdd_cfg_xlate_to_csr_phy_mode(pConfig->dot11Mode);
2100 wdev->iftype = type;
2101 break;
2102
2103 case NL80211_IFTYPE_AP:
2104#ifdef WLAN_FEATURE_P2P
2105 case NL80211_IFTYPE_P2P_GO:
2106#endif
2107 {
2108 hddLog(VOS_TRACE_LEVEL_INFO_HIGH,
2109 "%s: setting interface Type to %s", __func__,
2110 (type == NL80211_IFTYPE_AP) ? "SoftAP" : "P2pGo");
2111
Mohit Khanna0f232092012-09-11 14:46:08 -07002112 if (NL80211_IFTYPE_AP == type)
2113 {
2114 /* As Loading WLAN Driver one interface being created for p2p device
2115 * address. This will take one HW STA and the max number of clients
2116 * that can connect to softAP will be reduced by one. so while changing
2117 * the interface type to NL80211_IFTYPE_AP (SoftAP) remove p2p0
2118 * interface as it is not required in SoftAP mode.
2119 */
2120
2121 // Get P2P Adapter
2122 pP2pAdapter = hdd_get_adapter(pHddCtx, WLAN_HDD_P2P_DEVICE);
2123
2124 if (pP2pAdapter)
2125 {
2126 hdd_stop_adapter(pHddCtx, pP2pAdapter);
2127 hdd_deinit_adapter(pHddCtx, pP2pAdapter);
2128 hdd_close_adapter(pHddCtx, pP2pAdapter, VOS_TRUE);
2129 }
2130 }
2131
Jeff Johnson295189b2012-06-20 16:38:30 -07002132 //De-init the adapter.
2133 hdd_stop_adapter( pHddCtx, pAdapter );
2134 hdd_deinit_adapter( pHddCtx, pAdapter );
2135 memset(&pAdapter->sessionCtx, 0, sizeof(pAdapter->sessionCtx));
2136#ifdef WLAN_SOFTAP_FEATURE
2137#ifdef WLAN_FEATURE_P2P
2138 pAdapter->device_mode = (type == NL80211_IFTYPE_AP) ?
2139 WLAN_HDD_SOFTAP : WLAN_HDD_P2P_GO;
2140#else
2141 pAdapter->device_mode = WLAN_HDD_SOFTAP;
2142#endif
Jeff Johnson32d95a32012-09-10 13:15:23 -07002143
2144 //Disable BMPS and IMPS if enabled
2145 //before starting Go
2146 if(WLAN_HDD_P2P_GO == pAdapter->device_mode)
2147 {
2148 if(VOS_STATUS_E_FAILURE ==
2149 hdd_disable_bmps_imps(pHddCtx, WLAN_HDD_P2P_GO))
2150 {
2151 //Fail to Exit BMPS
2152 VOS_ASSERT(0);
2153 }
2154 }
2155
Madan Mohan Koyyalamudi3ff2a0b2012-10-15 14:33:46 -07002156 if ((WLAN_HDD_SOFTAP == pAdapter->device_mode) &&
2157 (pConfig->apRandomBssidEnabled))
2158 {
2159 /* To meet Android requirements create a randomized
2160 MAC address of the form 02:1A:11:Fx:xx:xx */
2161 get_random_bytes(&ndev->dev_addr[3], 3);
2162 ndev->dev_addr[0] = 0x02;
2163 ndev->dev_addr[1] = 0x1A;
2164 ndev->dev_addr[2] = 0x11;
2165 ndev->dev_addr[3] |= 0xF0;
2166 memcpy(pAdapter->macAddressCurrent.bytes, ndev->dev_addr,
2167 VOS_MAC_ADDR_SIZE);
2168 pr_info("wlan: Generated HotSpot BSSID "
2169 "%02x:%02x:%02x:%02x:%02x:%02x\n",
2170 ndev->dev_addr[0],
2171 ndev->dev_addr[1],
2172 ndev->dev_addr[2],
2173 ndev->dev_addr[3],
2174 ndev->dev_addr[4],
2175 ndev->dev_addr[5]);
2176 }
2177
Jeff Johnson295189b2012-06-20 16:38:30 -07002178 hdd_set_ap_ops( pAdapter->dev );
2179
2180 status = hdd_init_ap_mode(pAdapter);
2181 if(status != VOS_STATUS_SUCCESS)
2182 {
2183 hddLog(VOS_TRACE_LEVEL_FATAL,
2184 "%s: Error initializing the ap mode", __func__);
2185 return -EINVAL;
2186 }
2187 hdd_set_conparam(1);
2188
2189#endif
2190 /*interface type changed update in wiphy structure*/
2191 if(wdev)
2192 {
2193 wdev->iftype = type;
2194 pHddCtx->change_iface = type;
2195 }
2196 else
2197 {
2198 hddLog(VOS_TRACE_LEVEL_ERROR,
2199 "%s: ERROR !!!! Wireless dev is NULL", __func__);
2200 return -EINVAL;
2201 }
2202 goto done;
2203 }
2204
2205 default:
2206 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: Unsupported interface Type",
2207 __func__);
2208 return -EOPNOTSUPP;
2209 }
2210 }
2211 else if ( (pAdapter->device_mode == WLAN_HDD_SOFTAP)
2212#ifdef WLAN_FEATURE_P2P
2213 || (pAdapter->device_mode == WLAN_HDD_P2P_GO)
2214#endif
2215 )
2216 {
2217 switch(type)
2218 {
2219 case NL80211_IFTYPE_STATION:
2220#ifdef WLAN_FEATURE_P2P
2221 case NL80211_IFTYPE_P2P_CLIENT:
2222#endif
2223 case NL80211_IFTYPE_ADHOC:
Jeff Johnson32d95a32012-09-10 13:15:23 -07002224 hdd_stop_adapter( pHddCtx, pAdapter );
2225 hdd_deinit_adapter( pHddCtx, pAdapter );
Jeff Johnson295189b2012-06-20 16:38:30 -07002226 wdev->iftype = type;
2227#ifdef WLAN_FEATURE_P2P
2228 pAdapter->device_mode = (type == NL80211_IFTYPE_STATION) ?
2229 WLAN_HDD_INFRA_STATION: WLAN_HDD_P2P_CLIENT;
2230#endif
2231 hdd_set_conparam(0);
2232 pHddCtx->change_iface = type;
Jeff Johnson295189b2012-06-20 16:38:30 -07002233 memset(&pAdapter->sessionCtx, 0, sizeof(pAdapter->sessionCtx));
2234 hdd_set_station_ops( pAdapter->dev );
2235 status = hdd_init_station_mode( pAdapter );
2236 if( VOS_STATUS_SUCCESS != status )
2237 return -EOPNOTSUPP;
Jeff Johnsone7245742012-09-05 17:12:55 -07002238 /* In case of JB, for P2P-GO, only change interface will be called,
2239 * This is the right place to enable back bmps_imps()
2240 */
2241 hdd_enable_bmps_imps(pHddCtx);
Jeff Johnson295189b2012-06-20 16:38:30 -07002242 goto done;
2243 case NL80211_IFTYPE_AP:
2244#ifdef WLAN_FEATURE_P2P
2245 case NL80211_IFTYPE_P2P_GO:
2246#endif
2247 wdev->iftype = type;
2248#ifdef WLAN_FEATURE_P2P
2249 pAdapter->device_mode = (type == NL80211_IFTYPE_AP) ?
2250 WLAN_HDD_SOFTAP : WLAN_HDD_P2P_GO;
2251#endif
2252 goto done;
2253 default:
2254 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: Unsupported interface Type",
2255 __func__);
2256 return -EOPNOTSUPP;
2257
2258 }
2259
2260 }
2261 else
2262 {
2263 return -EOPNOTSUPP;
2264 }
2265
2266
2267 if(pRoamProfile)
2268 {
2269 if ( LastBSSType != pRoamProfile->BSSType )
2270 {
2271 /*interface type changed update in wiphy structure*/
2272 wdev->iftype = type;
2273
2274 /*the BSS mode changed, We need to issue disconnect
2275 if connected or in IBSS disconnect state*/
2276 if ( hdd_connGetConnectedBssType(
2277 WLAN_HDD_GET_STATION_CTX_PTR(pAdapter), &connectedBssType ) ||
2278 ( eCSR_BSS_TYPE_START_IBSS == LastBSSType ) )
2279 {
2280 /*need to issue a disconnect to CSR.*/
2281 INIT_COMPLETION(pAdapter->disconnect_comp_var);
2282 if( eHAL_STATUS_SUCCESS ==
2283 sme_RoamDisconnect( WLAN_HDD_GET_HAL_CTX(pAdapter),
2284 pAdapter->sessionId,
2285 eCSR_DISCONNECT_REASON_UNSPECIFIED ) )
2286 {
2287 wait_for_completion_interruptible_timeout(
2288 &pAdapter->disconnect_comp_var,
2289 msecs_to_jiffies(WLAN_WAIT_TIME_DISCONNECT));
2290 }
2291 }
2292 }
2293 }
2294
2295done:
2296 /*set bitmask based on updated value*/
2297 wlan_hdd_set_concurrency_mode(pHddCtx, pAdapter->device_mode);
2298#ifdef WLAN_BTAMP_FEATURE
2299 if((NL80211_IFTYPE_STATION == type) && (pHddCtx->concurrency_mode <= 1) &&
2300 (pHddCtx->no_of_sessions[WLAN_HDD_INFRA_STATION] <=1))
2301 {
2302 //we are ok to do AMP
2303 pHddCtx->isAmpAllowed = VOS_TRUE;
2304 }
2305#endif //WLAN_BTAMP_FEATURE
2306 EXIT();
2307 return 0;
2308}
2309
2310static int wlan_hdd_change_station(struct wiphy *wiphy,
2311 struct net_device *dev,
2312 u8 *mac,
2313 struct station_parameters *params)
2314{
2315 VOS_STATUS status = VOS_STATUS_SUCCESS;
2316 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR( dev );
2317 v_MACADDR_t STAMacAddress;
2318
Jeff Johnsone7245742012-09-05 17:12:55 -07002319 ENTER();
2320
Jeff Johnson04dd8a82012-06-29 20:41:40 -07002321 if ( (WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress )
2322 {
2323 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
2324 "%s:LOGP in Progress. Ignore!!!", __func__);
2325 return -EAGAIN;
2326 }
2327
Jeff Johnson295189b2012-06-20 16:38:30 -07002328 vos_mem_copy(STAMacAddress.bytes, mac, sizeof(v_MACADDR_t));
2329
2330 if ( ( pAdapter->device_mode == WLAN_HDD_SOFTAP )
2331#ifdef WLAN_FEATURE_P2P
2332 || ( pAdapter->device_mode == WLAN_HDD_P2P_GO )
2333#endif
2334 )
2335 {
2336 if(params->sta_flags_set & BIT(NL80211_STA_FLAG_AUTHORIZED))
2337 {
2338 status = hdd_softap_change_STA_state( pAdapter, &STAMacAddress,
2339 WLANTL_STA_AUTHENTICATED);
2340
2341 VOS_TRACE( VOS_MODULE_ID_HDD_SOFTAP, VOS_TRACE_LEVEL_ERROR,
2342 "%s: Station MAC address does not matching", __FUNCTION__);
2343 return -EINVAL;
2344 }
2345 }
2346
Jeff Johnsone7245742012-09-05 17:12:55 -07002347 EXIT();
Jeff Johnson295189b2012-06-20 16:38:30 -07002348 return status;
2349}
2350
2351/*
2352 * FUNCTION: wlan_hdd_cfg80211_get_ibss_peer_staidx
2353 * This function is used to get peer station index in IBSS mode
2354 */
2355static u8 wlan_hdd_cfg80211_get_ibss_peer_staidx(hdd_adapter_t* pAdapter)
2356{
2357 u8 idx = 0;
2358 u8 temp[VOS_MAC_ADDR_SIZE] = {0};
2359 ENTER();
2360 memset(temp, 0, VOS_MAC_ADDR_SIZE);
2361 for ( idx = 0; idx < HDD_MAX_NUM_IBSS_STA; idx++ )
2362 {
2363 if ( (0 !=
2364 (WLAN_HDD_GET_STATION_CTX_PTR(pAdapter))->conn_info.staId[idx])
2365 && memcmp((u8*)&(WLAN_HDD_GET_STATION_CTX_PTR(pAdapter))->conn_info.peerMacAddress[idx],
2366 temp, VOS_MAC_ADDR_SIZE)
2367 )
2368 {
2369 return idx;
2370 }
2371 }
2372 return idx;
2373}
2374
2375
2376/*
2377 * FUNCTION: wlan_hdd_cfg80211_add_key
2378 * This function is used to initialize the key information
2379 */
2380#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,38))
2381static int wlan_hdd_cfg80211_add_key( struct wiphy *wiphy,
2382 struct net_device *ndev,
2383 u8 key_index, bool pairwise,
2384 const u8 *mac_addr,
2385 struct key_params *params
2386 )
2387#else
2388static int wlan_hdd_cfg80211_add_key( struct wiphy *wiphy,
2389 struct net_device *ndev,
2390 u8 key_index, const u8 *mac_addr,
2391 struct key_params *params
2392 )
2393#endif
2394{
2395 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR( ndev );
2396 tCsrRoamSetKey setKey;
2397 u8 groupmacaddr[WNI_CFG_BSSID_LEN] = {0xFF,0xFF,0xFF,0xFF,0xFF,0xFF};
2398 int status = 0;
2399 v_U32_t roamId= 0xFF;
2400 v_CONTEXT_t pVosContext = (WLAN_HDD_GET_CTX(pAdapter))->pvosContext;
2401 hdd_hostapd_state_t *pHostapdState;
2402 VOS_STATUS vos_status;
2403
2404 ENTER();
2405
Jeff Johnson04dd8a82012-06-29 20:41:40 -07002406 if ( (WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress )
2407 {
2408 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
2409 "%s:LOGP in Progress. Ignore!!!", __func__);
2410 return -EAGAIN;
2411 }
2412
Jeff Johnson295189b2012-06-20 16:38:30 -07002413 hddLog(VOS_TRACE_LEVEL_INFO, "%s: device_mode = %d\n",
2414 __func__,pAdapter->device_mode);
2415
2416 if (CSR_MAX_NUM_KEY <= key_index)
2417 {
2418 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: Invalid key index %d", __func__,
2419 key_index);
2420
2421 return -EINVAL;
2422 }
2423
2424 hddLog(VOS_TRACE_LEVEL_INFO,
2425 "%s: called with key index = %d & key length %d",
2426 __func__, key_index, params->key_len);
2427
2428 /*extract key idx, key len and key*/
2429 vos_mem_zero(&setKey,sizeof(tCsrRoamSetKey));
2430 setKey.keyId = key_index;
2431 setKey.keyLength = params->key_len;
2432 vos_mem_copy(&setKey.Key[0],params->key, params->key_len);
2433
2434 switch (params->cipher)
2435 {
2436 case WLAN_CIPHER_SUITE_WEP40:
2437 setKey.encType = eCSR_ENCRYPT_TYPE_WEP40_STATICKEY;
2438 break;
2439
2440 case WLAN_CIPHER_SUITE_WEP104:
2441 setKey.encType = eCSR_ENCRYPT_TYPE_WEP104_STATICKEY;
2442 break;
2443
2444 case WLAN_CIPHER_SUITE_TKIP:
2445 {
2446 u8 *pKey = &setKey.Key[0];
2447 setKey.encType = eCSR_ENCRYPT_TYPE_TKIP;
2448
2449 vos_mem_zero(pKey, CSR_MAX_KEY_LEN);
2450
2451 /*Supplicant sends the 32bytes key in this order
2452
2453 |--------------|----------|----------|
2454 | Tk1 |TX-MIC | RX Mic |
2455 |--------------|----------|----------|
2456 <---16bytes---><--8bytes--><--8bytes-->
2457
2458 */
2459 /*Sme expects the 32 bytes key to be in the below order
2460
2461 |--------------|----------|----------|
2462 | Tk1 |RX-MIC | TX Mic |
2463 |--------------|----------|----------|
2464 <---16bytes---><--8bytes--><--8bytes-->
2465 */
2466 /* Copy the Temporal Key 1 (TK1) */
2467 vos_mem_copy(pKey, params->key,16);
2468
2469 /*Copy the rx mic first*/
2470 vos_mem_copy(&pKey[16],&params->key[24],8);
2471
2472 /*Copy the tx mic */
2473 vos_mem_copy(&pKey[24],&params->key[16],8);
2474
2475
2476 break;
2477 }
2478
2479 case WLAN_CIPHER_SUITE_CCMP:
2480 setKey.encType = eCSR_ENCRYPT_TYPE_AES;
2481 break;
2482
2483#ifdef FEATURE_WLAN_WAPI
2484 case WLAN_CIPHER_SUITE_SMS4:
2485 {
2486 vos_mem_zero(&setKey,sizeof(tCsrRoamSetKey));
2487 wlan_hdd_cfg80211_set_key_wapi(pAdapter, key_index, mac_addr,
2488 params->key, params->key_len);
2489 return 0;
2490 }
2491#endif
2492#ifdef FEATURE_WLAN_CCX
2493 case WLAN_CIPHER_SUITE_KRK:
2494 setKey.encType = eCSR_ENCRYPT_TYPE_KRK;
2495 break;
2496#endif
2497 default:
2498 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: unsupported cipher type %lu",
2499 __func__, params->cipher);
2500 return -EOPNOTSUPP;
2501 }
2502
2503 hddLog(VOS_TRACE_LEVEL_INFO_MED, "%s: encryption type %d",
2504 __func__, setKey.encType);
2505
2506
2507
2508 if ((pAdapter->device_mode == WLAN_HDD_SOFTAP)
2509#ifdef WLAN_FEATURE_P2P
2510 || (pAdapter->device_mode == WLAN_HDD_P2P_GO)
2511#endif
2512 )
2513 {
2514
2515
2516 if (
2517#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,38))
2518 (!pairwise)
2519#else
2520 (!mac_addr || is_broadcast_ether_addr(mac_addr))
2521#endif
2522 )
2523 {
2524 /* set group key*/
2525 VOS_TRACE( VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_INFO,
2526 "%s- %d: setting Broacast key",
2527 __func__, __LINE__);
2528 setKey.keyDirection = eSIR_RX_ONLY;
2529 vos_mem_copy(setKey.peerMac,groupmacaddr,WNI_CFG_BSSID_LEN);
2530 }
2531 else
2532 {
2533 /* set pairwise key*/
2534 VOS_TRACE( VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_INFO,
2535 "%s- %d: setting pairwise key",
2536 __func__, __LINE__);
2537 setKey.keyDirection = eSIR_TX_RX;
2538 vos_mem_copy(setKey.peerMac, mac_addr,WNI_CFG_BSSID_LEN);
2539 }
2540
2541 pHostapdState = WLAN_HDD_GET_HOSTAP_STATE_PTR(pAdapter);
2542 if( pHostapdState->bssState == BSS_START )
2543 {
2544 status = WLANSAP_SetKeySta( pVosContext, &setKey);
2545
2546 if ( status != eHAL_STATUS_SUCCESS )
2547 {
2548 VOS_TRACE( VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
2549 "[%4d] WLANSAP_SetKeySta returned ERROR status= %d",
2550 __LINE__, status );
2551 }
2552 }
2553
2554 /* Saving WEP keys */
2555 else if( eCSR_ENCRYPT_TYPE_WEP40_STATICKEY == setKey.encType ||
2556 eCSR_ENCRYPT_TYPE_WEP104_STATICKEY == setKey.encType )
2557 {
2558 //Save the wep key in ap context. Issue setkey after the BSS is started.
2559 hdd_ap_ctx_t *pAPCtx = WLAN_HDD_GET_AP_CTX_PTR(pAdapter);
2560 vos_mem_copy(&pAPCtx->wepKey[key_index], &setKey, sizeof(tCsrRoamSetKey));
2561 }
2562 else
2563 {
2564 //Save the key in ap context. Issue setkey after the BSS is started.
2565 hdd_ap_ctx_t *pAPCtx = WLAN_HDD_GET_AP_CTX_PTR(pAdapter);
2566 vos_mem_copy(&pAPCtx->groupKey, &setKey, sizeof(tCsrRoamSetKey));
2567 }
2568 }
2569 else if ( (pAdapter->device_mode == WLAN_HDD_INFRA_STATION)
2570#ifdef WLAN_FEATURE_P2P
2571 || (pAdapter->device_mode == WLAN_HDD_P2P_CLIENT)
2572#endif
2573 )
2574 {
2575 hdd_wext_state_t *pWextState = WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter);
2576 hdd_station_ctx_t *pHddStaCtx = WLAN_HDD_GET_STATION_CTX_PTR(pAdapter);
2577
2578 pWextState->roamProfile.Keys.KeyLength[key_index] = (u8)params->key_len;
2579
2580 vos_mem_copy(&pWextState->roamProfile.Keys.KeyMaterial[key_index][0],
2581 params->key, params->key_len);
2582
2583 pHddStaCtx->roam_info.roamingState = HDD_ROAM_STATE_SETTING_KEY;
2584
2585 if (!( ( IW_AUTH_KEY_MGMT_802_1X
2586 == (pWextState->authKeyMgmt & IW_AUTH_KEY_MGMT_802_1X))
2587 && (eCSR_AUTH_TYPE_OPEN_SYSTEM == pHddStaCtx->conn_info.authType)
2588 )
2589 &&
2590 ( (WLAN_CIPHER_SUITE_WEP40 == params->cipher)
2591 || (WLAN_CIPHER_SUITE_WEP104 == params->cipher)
2592 )
2593 )
2594 {
2595 /* in case of static WEP, macaddr/bssid is not coming from nl80211
2596 * interface, copy bssid for pairwise key and group macaddr for
2597 * group key initialization*/
2598
2599 tCsrRoamProfile *pRoamProfile = &pWextState->roamProfile;
2600
2601 pWextState->roamProfile.negotiatedUCEncryptionType =
2602 pHddStaCtx->conn_info.ucEncryptionType =
2603 ((WLAN_CIPHER_SUITE_WEP40 == params->cipher) ?
2604 eCSR_ENCRYPT_TYPE_WEP40_STATICKEY :
2605 eCSR_ENCRYPT_TYPE_WEP104_STATICKEY);
2606
2607
2608 hddLog(VOS_TRACE_LEVEL_INFO_MED,
2609 "%s: Negotiated encryption type %d", __func__,
2610 pWextState->roamProfile.negotiatedUCEncryptionType);
2611
2612 sme_SetCfgPrivacy((tpAniSirGlobal)WLAN_HDD_GET_HAL_CTX(pAdapter),
2613 &pWextState->roamProfile, true);
2614 setKey.keyLength = 0;
2615 setKey.keyDirection = eSIR_TX_RX;
2616
2617#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,38))
2618 if (pairwise)
2619 {
2620#endif
2621 if (mac_addr)
2622 {
2623 vos_mem_copy(setKey.peerMac, mac_addr,WNI_CFG_BSSID_LEN);
2624 }
2625 else
2626 {
2627 /* macaddr is NULL, set the peerMac to bssId in case of BSS,
2628 * and peerMacAddress in case of IBSS*/
2629 if (eCSR_BSS_TYPE_START_IBSS == pRoamProfile->BSSType)
2630 {
2631 u8 staidx = wlan_hdd_cfg80211_get_ibss_peer_staidx(pAdapter);
2632 if (HDD_MAX_NUM_IBSS_STA != staidx)
2633 {
2634 vos_mem_copy(setKey.peerMac,
2635 &pHddStaCtx->conn_info.peerMacAddress[staidx],
2636 WNI_CFG_BSSID_LEN);
2637
2638 }
2639 else
2640 {
2641 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: No peerMac found",
2642 __func__);
2643 return -EOPNOTSUPP;
2644 }
2645 }
2646 else
2647 {
2648 vos_mem_copy(setKey.peerMac,
2649 &pHddStaCtx->conn_info.bssId[0],
2650 WNI_CFG_BSSID_LEN);
2651 }
2652 }
2653#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,38))
2654 }
2655 else
2656 {
2657 /* set group key*/
2658 VOS_TRACE( VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_INFO,
2659 "%s- %d: setting Group key",
2660 __func__, __LINE__);
2661 setKey.keyDirection = eSIR_RX_ONLY;
2662 vos_mem_copy(setKey.peerMac, groupmacaddr, WNI_CFG_BSSID_LEN);
2663 }
2664#endif
2665 }
2666 else if (
2667#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,38))
2668 (!pairwise)
2669#else
2670 (!mac_addr || is_broadcast_ether_addr(mac_addr))
2671#endif
2672 )
2673 {
2674 /* set group key*/
2675 VOS_TRACE( VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_INFO,
2676 "%s- %d: setting Group key",
2677 __func__, __LINE__);
2678 setKey.keyDirection = eSIR_RX_ONLY;
2679 vos_mem_copy(setKey.peerMac,groupmacaddr,WNI_CFG_BSSID_LEN);
2680 }
2681 else
2682 {
2683 /* set pairwise key*/
2684 VOS_TRACE( VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_INFO,
2685 "%s- %d: setting pairwise key",
2686 __func__, __LINE__);
2687 setKey.keyDirection = eSIR_TX_RX;
2688 vos_mem_copy(setKey.peerMac, mac_addr,WNI_CFG_BSSID_LEN);
2689 }
2690
2691 hddLog(VOS_TRACE_LEVEL_INFO_MED,
2692 "%s: set key for peerMac %2x:%2x:%2x:%2x:%2x:%2x, direction %d",
2693 __func__, setKey.peerMac[0], setKey.peerMac[1],
2694 setKey.peerMac[2], setKey.peerMac[3],
2695 setKey.peerMac[4], setKey.peerMac[5],
2696 setKey.keyDirection);
2697
2698 vos_status = wlan_hdd_check_ula_done(pAdapter);
2699
2700 if ( vos_status != VOS_STATUS_SUCCESS )
2701 {
2702 VOS_TRACE( VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
2703 "[%4d] wlan_hdd_check_ula_done returned ERROR status= %d",
2704 __LINE__, vos_status );
2705
2706 pHddStaCtx->roam_info.roamingState = HDD_ROAM_STATE_NONE;
2707
2708 return -EINVAL;
2709
2710 }
2711
2712
2713 /* issue set key request to SME*/
2714 status = sme_RoamSetKey( WLAN_HDD_GET_HAL_CTX(pAdapter),
2715 pAdapter->sessionId, &setKey, &roamId );
2716
2717 if ( 0 != status )
2718 {
2719 hddLog(VOS_TRACE_LEVEL_ERROR,
2720 "%s: sme_RoamSetKey failed, returned %d", __func__, status);
2721 pHddStaCtx->roam_info.roamingState = HDD_ROAM_STATE_NONE;
2722 return -EINVAL;
2723 }
2724
2725
2726 /* in case of IBSS as there was no information available about WEP keys during
2727 * IBSS join, group key intialized with NULL key, so re-initialize group key
2728 * with correct value*/
2729 if ( (eCSR_BSS_TYPE_START_IBSS == pWextState->roamProfile.BSSType) &&
2730 !( ( IW_AUTH_KEY_MGMT_802_1X
2731 == (pWextState->authKeyMgmt & IW_AUTH_KEY_MGMT_802_1X))
2732 && (eCSR_AUTH_TYPE_OPEN_SYSTEM == pHddStaCtx->conn_info.authType)
2733 )
2734 &&
2735 ( (WLAN_CIPHER_SUITE_WEP40 == params->cipher)
2736 || (WLAN_CIPHER_SUITE_WEP104 == params->cipher)
2737 )
2738 )
2739 {
2740 setKey.keyDirection = eSIR_RX_ONLY;
2741 vos_mem_copy(setKey.peerMac,groupmacaddr,WNI_CFG_BSSID_LEN);
2742
2743 hddLog(VOS_TRACE_LEVEL_INFO_MED,
2744 "%s: set key peerMac %2x:%2x:%2x:%2x:%2x:%2x, direction %d",
2745 __func__, setKey.peerMac[0], setKey.peerMac[1],
2746 setKey.peerMac[2], setKey.peerMac[3],
2747 setKey.peerMac[4], setKey.peerMac[5],
2748 setKey.keyDirection);
2749
2750 status = sme_RoamSetKey( WLAN_HDD_GET_HAL_CTX(pAdapter),
2751 pAdapter->sessionId, &setKey, &roamId );
2752
2753 if ( 0 != status )
2754 {
2755 hddLog(VOS_TRACE_LEVEL_ERROR,
2756 "%s: sme_RoamSetKey failed for group key (IBSS), returned %d",
2757 __func__, status);
2758 pHddStaCtx->roam_info.roamingState = HDD_ROAM_STATE_NONE;
2759 return -EINVAL;
2760 }
2761 }
2762 }
2763
2764 return 0;
2765}
2766
2767/*
2768 * FUNCTION: wlan_hdd_cfg80211_get_key
2769 * This function is used to get the key information
2770 */
2771#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,38))
2772static int wlan_hdd_cfg80211_get_key(
2773 struct wiphy *wiphy,
2774 struct net_device *ndev,
2775 u8 key_index, bool pairwise,
2776 const u8 *mac_addr, void *cookie,
2777 void (*callback)(void *cookie, struct key_params*)
2778 )
2779#else
2780static int wlan_hdd_cfg80211_get_key(
2781 struct wiphy *wiphy,
2782 struct net_device *ndev,
2783 u8 key_index, const u8 *mac_addr, void *cookie,
2784 void (*callback)(void *cookie, struct key_params*)
2785 )
2786#endif
2787{
2788 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR( ndev );
2789 hdd_wext_state_t *pWextState= WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter);
2790 tCsrRoamProfile *pRoamProfile = &(pWextState->roamProfile);
2791 struct key_params params;
2792
2793 ENTER();
2794
2795 hddLog(VOS_TRACE_LEVEL_INFO, "%s: device_mode = %d\n",
2796 __func__,pAdapter->device_mode);
2797
2798 memset(&params, 0, sizeof(params));
2799
2800 if (CSR_MAX_NUM_KEY <= key_index)
2801 {
2802 return -EINVAL;
2803 }
2804
2805 switch(pRoamProfile->EncryptionType.encryptionType[0])
2806 {
2807 case eCSR_ENCRYPT_TYPE_NONE:
2808 params.cipher = IW_AUTH_CIPHER_NONE;
2809 break;
2810
2811 case eCSR_ENCRYPT_TYPE_WEP40_STATICKEY:
2812 case eCSR_ENCRYPT_TYPE_WEP40:
2813 params.cipher = WLAN_CIPHER_SUITE_WEP40;
2814 break;
2815
2816 case eCSR_ENCRYPT_TYPE_WEP104_STATICKEY:
2817 case eCSR_ENCRYPT_TYPE_WEP104:
2818 params.cipher = WLAN_CIPHER_SUITE_WEP104;
2819 break;
2820
2821 case eCSR_ENCRYPT_TYPE_TKIP:
2822 params.cipher = WLAN_CIPHER_SUITE_TKIP;
2823 break;
2824
2825 case eCSR_ENCRYPT_TYPE_AES:
2826 params.cipher = WLAN_CIPHER_SUITE_AES_CMAC;
2827 break;
2828
2829 default:
2830 params.cipher = IW_AUTH_CIPHER_NONE;
2831 break;
2832 }
2833
2834 params.key_len = pRoamProfile->Keys.KeyLength[key_index];
2835 params.seq_len = 0;
2836 params.seq = NULL;
2837 params.key = &pRoamProfile->Keys.KeyMaterial[key_index][0];
2838 callback(cookie, &params);
2839 return 0;
2840}
2841
2842/*
2843 * FUNCTION: wlan_hdd_cfg80211_del_key
2844 * This function is used to delete the key information
2845 */
2846#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,38))
2847static int wlan_hdd_cfg80211_del_key( struct wiphy *wiphy,
2848 struct net_device *ndev,
2849 u8 key_index,
2850 bool pairwise,
2851 const u8 *mac_addr
2852 )
2853#else
2854static int wlan_hdd_cfg80211_del_key( struct wiphy *wiphy,
2855 struct net_device *ndev,
2856 u8 key_index,
2857 const u8 *mac_addr
2858 )
2859#endif
2860{
2861 int status = 0;
2862
2863 //This code needs to be revisited. There is sme_removeKey API, we should
2864 //plan to use that. After the change to use correct index in setkey,
2865 //it is observed that this is invalidating peer
2866 //key index whenever re-key is done. This is affecting data link.
2867 //It should be ok to ignore del_key.
2868#if 0
2869 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR( ndev );
2870 v_CONTEXT_t pVosContext = (WLAN_HDD_GET_CTX(pAdapter))->pvosContext;
2871 u8 groupmacaddr[WNI_CFG_BSSID_LEN] = {0xFF,0xFF,0xFF,0xFF,0xFF,0xFF};
2872 tCsrRoamSetKey setKey;
2873 v_U32_t roamId= 0xFF;
2874
2875 ENTER();
2876
2877 hddLog(VOS_TRACE_LEVEL_INFO_HIGH, "%s: device_mode = %d\n",
2878 __func__,pAdapter->device_mode);
2879
2880 if (CSR_MAX_NUM_KEY <= key_index)
2881 {
2882 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: Invalid key index %d", __func__,
2883 key_index);
2884
2885 return -EINVAL;
2886 }
2887
2888 vos_mem_zero(&setKey,sizeof(tCsrRoamSetKey));
2889 setKey.keyId = key_index;
2890
2891 if (mac_addr)
2892 vos_mem_copy(setKey.peerMac, mac_addr,WNI_CFG_BSSID_LEN);
2893 else
2894 vos_mem_copy(setKey.peerMac, groupmacaddr, WNI_CFG_BSSID_LEN);
2895
2896 setKey.encType = eCSR_ENCRYPT_TYPE_NONE;
2897
2898 if ((pAdapter->device_mode == WLAN_HDD_SOFTAP)
2899#ifdef WLAN_FEATURE_P2P
2900 || (pAdapter->device_mode == WLAN_HDD_P2P_GO)
2901#endif
2902 )
2903 {
2904
2905 hdd_hostapd_state_t *pHostapdState =
2906 WLAN_HDD_GET_HOSTAP_STATE_PTR(pAdapter);
2907 if( pHostapdState->bssState == BSS_START)
2908 {
2909 status = WLANSAP_SetKeySta( pVosContext, &setKey);
2910
2911 if ( status != eHAL_STATUS_SUCCESS )
2912 {
2913 VOS_TRACE( VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
2914 "[%4d] WLANSAP_SetKeySta returned ERROR status= %d",
2915 __LINE__, status );
2916 }
2917 }
2918 }
2919 else if ( (pAdapter->device_mode == WLAN_HDD_INFRA_STATION)
2920#ifdef WLAN_FEATURE_P2P
2921 || (pAdapter->device_mode == WLAN_HDD_P2P_CLIENT)
2922#endif
2923 )
2924 {
2925 hdd_station_ctx_t *pHddStaCtx = WLAN_HDD_GET_STATION_CTX_PTR(pAdapter);
2926
2927 pHddStaCtx->roam_info.roamingState = HDD_ROAM_STATE_SETTING_KEY;
2928
2929 hddLog(VOS_TRACE_LEVEL_INFO_MED,
2930 "%s: delete key for peerMac %2x:%2x:%2x:%2x:%2x:%2x",
2931 __func__, setKey.peerMac[0], setKey.peerMac[1],
2932 setKey.peerMac[2], setKey.peerMac[3],
2933 setKey.peerMac[4], setKey.peerMac[5]);
2934 if(pAdapter->sessionCtx.station.conn_info.connState ==
2935 eConnectionState_Associated)
2936 {
2937 status = sme_RoamSetKey( WLAN_HDD_GET_HAL_CTX(pAdapter),
2938 pAdapter->sessionId, &setKey, &roamId );
2939
2940 if ( 0 != status )
2941 {
2942 hddLog(VOS_TRACE_LEVEL_ERROR,
2943 "%s: sme_RoamSetKey failure, returned %d",
2944 __func__, status);
2945 pHddStaCtx->roam_info.roamingState = HDD_ROAM_STATE_NONE;
2946 return -EINVAL;
2947 }
2948 }
2949 }
2950#endif
Jeff Johnsone7245742012-09-05 17:12:55 -07002951 EXIT();
Jeff Johnson295189b2012-06-20 16:38:30 -07002952 return status;
2953}
2954
2955/*
2956 * FUNCTION: wlan_hdd_cfg80211_set_default_key
2957 * This function is used to set the default tx key index
2958 */
2959#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,38))
2960static int wlan_hdd_cfg80211_set_default_key( struct wiphy *wiphy,
2961 struct net_device *ndev,
2962 u8 key_index,
2963 bool unicast, bool multicast)
2964#else
2965static int wlan_hdd_cfg80211_set_default_key( struct wiphy *wiphy,
2966 struct net_device *ndev,
2967 u8 key_index)
2968#endif
2969{
2970 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR( ndev );
2971 hdd_wext_state_t *pWextState = WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter);
2972 int status = 0;
2973 hdd_station_ctx_t *pHddStaCtx = WLAN_HDD_GET_STATION_CTX_PTR(pAdapter);
2974
2975 ENTER();
2976
2977 hddLog(VOS_TRACE_LEVEL_INFO, "%s: device_mode = %d key_index = %d \n",
2978 __func__,pAdapter->device_mode, key_index);
2979
2980 if (CSR_MAX_NUM_KEY <= key_index)
2981 {
2982 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: Invalid key index %d", __func__,
2983 key_index);
2984
2985 return -EINVAL;
2986 }
2987
Jeff Johnson04dd8a82012-06-29 20:41:40 -07002988 if ( (WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress )
2989 {
2990 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
2991 "%s:LOGP in Progress. Ignore!!!", __func__);
2992 return -EAGAIN;
2993 }
Jeff Johnson295189b2012-06-20 16:38:30 -07002994
2995 if ((pAdapter->device_mode == WLAN_HDD_INFRA_STATION)
2996#ifdef WLAN_FEATURE_P2P
2997 || (pAdapter->device_mode == WLAN_HDD_P2P_CLIENT)
2998#endif
2999 )
3000 {
3001 if ( (key_index != pWextState->roamProfile.Keys.defaultIndex) &&
3002 (eCSR_ENCRYPT_TYPE_TKIP !=
3003 pWextState->roamProfile.EncryptionType.encryptionType[0]) &&
3004 (eCSR_ENCRYPT_TYPE_AES !=
3005 pWextState->roamProfile.EncryptionType.encryptionType[0])
3006 )
3007 {
3008 /* if default key index is not same as previous one,
3009 * then update the default key index */
3010
3011 tCsrRoamSetKey setKey;
3012 v_U32_t roamId= 0xFF;
3013 tCsrKeys *Keys = &pWextState->roamProfile.Keys;
3014
3015 hddLog(VOS_TRACE_LEVEL_INFO_HIGH, "%s: default tx key index %d",
3016 __func__, key_index);
3017
3018 Keys->defaultIndex = (u8)key_index;
3019 vos_mem_zero(&setKey,sizeof(tCsrRoamSetKey));
3020 setKey.keyId = key_index;
3021 setKey.keyLength = Keys->KeyLength[key_index];
3022
3023 vos_mem_copy(&setKey.Key[0],
3024 &Keys->KeyMaterial[key_index][0],
3025 Keys->KeyLength[key_index]);
3026
3027 setKey.keyDirection = eSIR_TX_ONLY;
3028
3029 vos_mem_copy(setKey.peerMac,
3030 &pHddStaCtx->conn_info.bssId[0],
3031 WNI_CFG_BSSID_LEN);
3032
3033 setKey.encType =
3034 pWextState->roamProfile.EncryptionType.encryptionType[0];
3035
3036 /* issue set key request */
3037 status = sme_RoamSetKey( WLAN_HDD_GET_HAL_CTX(pAdapter),
3038 pAdapter->sessionId, &setKey, &roamId );
3039
3040 if ( 0 != status )
3041 {
3042 hddLog(VOS_TRACE_LEVEL_ERROR,
3043 "%s: sme_RoamSetKey failed, returned %d", __func__,
3044 status);
3045 return -EINVAL;
3046 }
3047 }
3048 }
3049
3050 /* In SoftAp mode setting key direction for default mode */
3051 else if ( WLAN_HDD_SOFTAP == pAdapter->device_mode )
3052 {
3053 if ( (eCSR_ENCRYPT_TYPE_TKIP !=
3054 pWextState->roamProfile.EncryptionType.encryptionType[0]) &&
3055 (eCSR_ENCRYPT_TYPE_AES !=
3056 pWextState->roamProfile.EncryptionType.encryptionType[0])
3057 )
3058 {
3059 /* Saving key direction for default key index to TX default */
3060 hdd_ap_ctx_t *pAPCtx = WLAN_HDD_GET_AP_CTX_PTR(pAdapter);
3061 pAPCtx->wepKey[key_index].keyDirection = eSIR_TX_DEFAULT;
3062 }
3063 }
3064
3065 return status;
3066}
3067
3068/**
3069 * FUNCTION: wlan_hdd_cfg80211_set_channel
3070 * This function is used to set the channel number
3071 */
3072int wlan_hdd_cfg80211_set_channel( struct wiphy *wiphy, struct net_device *dev,
3073 struct ieee80211_channel *chan,
3074 enum nl80211_channel_type channel_type
3075 )
3076{
3077 v_U32_t num_ch = 0;
3078 u32 channel = 0;
3079 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR( dev );
3080 int freq = chan->center_freq; /* freq is in MHZ */
3081
3082 ENTER();
3083
3084 hddLog(VOS_TRACE_LEVEL_INFO,
3085 "%s: device_mode = %d freq = %d \n",__func__,
3086 pAdapter->device_mode, chan->center_freq);
Madan Mohan Koyyalamudib2c36892012-10-18 20:52:38 -07003087 if ((WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress)
3088 {
3089 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_FATAL, "%s:LOGP in Progress. Ignore!!!",__func__);
3090 return -EAGAIN;
3091 }
Jeff Johnson295189b2012-06-20 16:38:30 -07003092
3093 /*
3094 * Do freq to chan conversion
3095 * TODO: for 11a
3096 */
3097
3098 channel = ieee80211_frequency_to_channel(freq);
3099
3100 /* Check freq range */
3101 if ((WNI_CFG_CURRENT_CHANNEL_STAMIN > channel) ||
3102 (WNI_CFG_CURRENT_CHANNEL_STAMAX < channel))
3103 {
3104 hddLog(VOS_TRACE_LEVEL_ERROR,
3105 "%s: Channel [%d] is outside valid range from %d to %d\n",
3106 __func__, channel, WNI_CFG_CURRENT_CHANNEL_STAMIN,
3107 WNI_CFG_CURRENT_CHANNEL_STAMAX);
3108 return -EINVAL;
3109 }
3110
3111 num_ch = WNI_CFG_VALID_CHANNEL_LIST_LEN;
3112
3113 if ((WLAN_HDD_SOFTAP != pAdapter->device_mode)
3114#ifdef WLAN_FEATURE_P2P
3115 && (WLAN_HDD_P2P_GO != pAdapter->device_mode)
3116#endif
3117 )
3118 {
3119 if(VOS_STATUS_SUCCESS != wlan_hdd_validate_operation_channel(pAdapter,channel))
3120 {
3121 hddLog(VOS_TRACE_LEVEL_ERROR,
3122 "%s: Invalid Channel [%d] \n", __func__, channel);
3123 return -EINVAL;
3124 }
3125 hddLog(VOS_TRACE_LEVEL_INFO_HIGH,
3126 "%s: set channel to [%d] for device mode =%d",
3127 __func__, channel,pAdapter->device_mode);
3128 }
3129 if( (pAdapter->device_mode == WLAN_HDD_INFRA_STATION)
3130#ifdef WLAN_FEATURE_P2P
3131 || (pAdapter->device_mode == WLAN_HDD_P2P_CLIENT)
3132#endif
3133 )
3134 {
3135 hdd_wext_state_t *pWextState = WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter);
3136 tCsrRoamProfile * pRoamProfile = &pWextState->roamProfile;
3137 hdd_station_ctx_t *pHddStaCtx = WLAN_HDD_GET_STATION_CTX_PTR(pAdapter);
3138
3139 if (eConnectionState_IbssConnected == pHddStaCtx->conn_info.connState)
3140 {
3141 /* Link is up then return cant set channel*/
3142 hddLog( VOS_TRACE_LEVEL_ERROR,
3143 "%s: IBSS Associated, can't set the channel\n", __func__);
3144 return -EINVAL;
3145 }
3146
3147 num_ch = pRoamProfile->ChannelInfo.numOfChannels = 1;
3148 pHddStaCtx->conn_info.operationChannel = channel;
3149 pRoamProfile->ChannelInfo.ChannelList =
3150 &pHddStaCtx->conn_info.operationChannel;
3151 }
3152 else if ((pAdapter->device_mode == WLAN_HDD_SOFTAP)
3153#ifdef WLAN_FEATURE_P2P
3154 || (pAdapter->device_mode == WLAN_HDD_P2P_GO)
3155#endif
3156 )
3157 {
3158 (WLAN_HDD_GET_AP_CTX_PTR(pAdapter))->sapConfig.channel = channel;
3159
3160 if ( WLAN_HDD_SOFTAP == pAdapter->device_mode )
3161 {
3162 hdd_config_t *cfg_param = (WLAN_HDD_GET_CTX(pAdapter))->cfg_ini;
3163
3164 /* If auto channel selection is configured as enable/ 1 then ignore
3165 channel set by supplicant
3166 */
3167 if ( cfg_param->apAutoChannelSelection )
3168 {
3169 (WLAN_HDD_GET_AP_CTX_PTR(pAdapter))->sapConfig.channel = AUTO_CHANNEL_SELECT;
3170
3171 hddLog(VOS_TRACE_LEVEL_INFO_HIGH,
3172 "%s: set channel to auto channel (0) for device mode =%d",
3173 __func__, pAdapter->device_mode);
3174 }
3175 }
3176 }
3177 else
3178 {
3179 hddLog(VOS_TRACE_LEVEL_FATAL,
3180 "%s: Invalid device mode failed to set valid channel", __func__);
3181 return -EINVAL;
3182 }
3183 EXIT();
3184 return 0;
3185}
3186
3187
3188
3189/*
3190 * FUNCTION: wlan_hdd_cfg80211_inform_bss
3191 * This function is used to inform the BSS details to nl80211 interface.
3192 */
3193static struct cfg80211_bss* wlan_hdd_cfg80211_inform_bss(
3194 hdd_adapter_t *pAdapter, tCsrRoamConnectedProfile *roamProfile)
3195{
3196 struct net_device *dev = pAdapter->dev;
3197 struct wireless_dev *wdev = dev->ieee80211_ptr;
3198 struct wiphy *wiphy = wdev->wiphy;
3199 tSirBssDescription *pBssDesc = roamProfile->pBssDesc;
3200 int chan_no;
3201 int ie_length;
3202 const char *ie;
3203 unsigned int freq;
3204 struct ieee80211_channel *chan;
3205 int rssi = 0;
3206 struct cfg80211_bss *bss = NULL;
3207
3208 ENTER();
3209
3210 if( NULL == pBssDesc )
3211 {
3212 hddLog(VOS_TRACE_LEVEL_FATAL, "%s: pBssDesc is NULL\n", __func__);
3213 return bss;
3214 }
3215
3216 chan_no = pBssDesc->channelId;
3217 ie_length = GET_IE_LEN_IN_BSS_DESC( pBssDesc->length );
3218 ie = ((ie_length != 0) ? (const char *)&pBssDesc->ieFields: NULL);
3219
3220 if( NULL == ie )
3221 {
3222 hddLog(VOS_TRACE_LEVEL_FATAL, "%s: IE of BSS descriptor is NULL\n", __func__);
3223 return bss;
3224 }
3225
3226#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,38))
3227 if (chan_no <= ARRAY_SIZE(hdd_channels_2_4_GHZ))
3228 {
3229 freq = ieee80211_channel_to_frequency(chan_no, IEEE80211_BAND_2GHZ);
3230 }
3231 else
3232 {
3233 freq = ieee80211_channel_to_frequency(chan_no, IEEE80211_BAND_5GHZ);
3234 }
3235#else
3236 freq = ieee80211_channel_to_frequency(chan_no);
3237#endif
3238
3239 chan = __ieee80211_get_channel(wiphy, freq);
3240
3241 bss = cfg80211_get_bss(wiphy, chan, pBssDesc->bssId,
3242 &roamProfile->SSID.ssId[0], roamProfile->SSID.length,
3243 WLAN_CAPABILITY_ESS, WLAN_CAPABILITY_ESS);
3244 if (bss == NULL)
3245 {
3246 rssi = (VOS_MIN ((pBssDesc->rssi + pBssDesc->sinr), 0))*100;
3247
3248 return (cfg80211_inform_bss(wiphy, chan, pBssDesc->bssId,
3249 le64_to_cpu(*(__le64 *)pBssDesc->timeStamp),
3250 pBssDesc->capabilityInfo,
3251 pBssDesc->beaconInterval, ie, ie_length,
3252 rssi, GFP_KERNEL ));
3253}
3254 else
3255 {
3256 return bss;
3257 }
3258}
3259
3260
3261
3262/*
3263 * FUNCTION: wlan_hdd_cfg80211_inform_bss_frame
3264 * This function is used to inform the BSS details to nl80211 interface.
3265 */
3266struct cfg80211_bss*
3267wlan_hdd_cfg80211_inform_bss_frame( hdd_adapter_t *pAdapter,
3268 tSirBssDescription *bss_desc
3269 )
3270{
3271 /*
3272 cfg80211_inform_bss() is not updating ie field of bss entry, if entry
3273 already exists in bss data base of cfg80211 for that particular BSS ID.
3274 Using cfg80211_inform_bss_frame to update the bss entry instead of
3275 cfg80211_inform_bss, But this call expects mgmt packet as input. As of
3276 now there is no possibility to get the mgmt(probe response) frame from PE,
3277 converting bss_desc to ieee80211_mgmt(probe response) and passing to
3278 cfg80211_inform_bss_frame.
3279 */
3280 struct net_device *dev = pAdapter->dev;
3281 struct wireless_dev *wdev = dev->ieee80211_ptr;
3282 struct wiphy *wiphy = wdev->wiphy;
3283 int chan_no = bss_desc->channelId;
3284 int ie_length = GET_IE_LEN_IN_BSS_DESC( bss_desc->length );
3285 const char *ie =
3286 ((ie_length != 0) ? (const char *)&bss_desc->ieFields: NULL);
3287 unsigned int freq;
3288 struct ieee80211_channel *chan;
3289 struct ieee80211_mgmt *mgmt =
3290 kzalloc((sizeof (struct ieee80211_mgmt) + ie_length), GFP_KERNEL);
3291 struct cfg80211_bss *bss_status = NULL;
3292 size_t frame_len = sizeof (struct ieee80211_mgmt) + ie_length;
3293 int rssi = 0;
Jeff Johnsone7245742012-09-05 17:12:55 -07003294#ifdef WLAN_OPEN_SOURCE
3295 struct timespec ts;
3296#endif
Jeff Johnson295189b2012-06-20 16:38:30 -07003297
3298 ENTER();
3299
3300 memcpy(mgmt->bssid, bss_desc->bssId, ETH_ALEN);
Jeff Johnsone7245742012-09-05 17:12:55 -07003301
3302#ifdef WLAN_OPEN_SOURCE
3303 /* Android does not want the timestamp from the frame.
3304 Instead it wants a monotonic increasing value */
3305 get_monotonic_boottime(&ts);
3306 mgmt->u.probe_resp.timestamp =
3307 ((u64)ts.tv_sec * 1000000) + (ts.tv_nsec / 1000);
3308#else
3309 /* keep old behavior for non-open source (for now) */
Jeff Johnson295189b2012-06-20 16:38:30 -07003310 memcpy(&mgmt->u.probe_resp.timestamp, bss_desc->timeStamp,
3311 sizeof (bss_desc->timeStamp));
Jeff Johnsone7245742012-09-05 17:12:55 -07003312
3313#endif
3314
Jeff Johnson295189b2012-06-20 16:38:30 -07003315 mgmt->u.probe_resp.beacon_int = bss_desc->beaconInterval;
3316 mgmt->u.probe_resp.capab_info = bss_desc->capabilityInfo;
3317 memcpy(mgmt->u.probe_resp.variable, ie, ie_length);
3318
3319 mgmt->frame_control |=
3320 (u16)(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_PROBE_RESP);
3321
3322#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,38))
3323 if (chan_no <= ARRAY_SIZE(hdd_channels_2_4_GHZ) &&
3324 (wiphy->bands[IEEE80211_BAND_2GHZ] != NULL))
3325 {
3326 freq = ieee80211_channel_to_frequency(chan_no, IEEE80211_BAND_2GHZ);
3327 }
3328 else if ((chan_no > ARRAY_SIZE(hdd_channels_2_4_GHZ)) &&
3329 (wiphy->bands[IEEE80211_BAND_5GHZ] != NULL))
3330
3331 {
3332 freq = ieee80211_channel_to_frequency(chan_no, IEEE80211_BAND_5GHZ);
3333 }
3334 else
3335 {
3336 kfree(mgmt);
3337 return NULL;
3338 }
3339#else
3340 freq = ieee80211_channel_to_frequency(chan_no);
3341#endif
3342 chan = __ieee80211_get_channel(wiphy, freq);
3343
3344 /*To keep the rssi icon of the connected AP in the scan window
3345 *and the rssi icon of the wireless networks in sync
3346 * */
3347 if (( eConnectionState_Associated ==
3348 pAdapter->sessionCtx.station.conn_info.connState ) &&
3349 ( VOS_TRUE == vos_mem_compare(bss_desc->bssId,
3350 pAdapter->sessionCtx.station.conn_info.bssId,
3351 WNI_CFG_BSSID_LEN)))
3352 {
3353 /* supplicant takes the signal strength in terms of mBm(100*dBm) */
3354 rssi = (pAdapter->rssi * 100);
3355 }
3356 else
3357 {
3358 rssi = (VOS_MIN ((bss_desc->rssi + bss_desc->sinr), 0))*100;
3359 }
3360
3361 bss_status = cfg80211_inform_bss_frame(wiphy, chan, mgmt,
3362 frame_len, rssi, GFP_KERNEL);
3363 kfree(mgmt);
3364 return bss_status;
3365}
3366
3367/*
3368 * FUNCTION: wlan_hdd_cfg80211_update_bss_db
3369 * This function is used to update the BSS data base of CFG8011
3370 */
3371struct cfg80211_bss* wlan_hdd_cfg80211_update_bss_db( hdd_adapter_t *pAdapter,
3372 tCsrRoamInfo *pRoamInfo
3373 )
3374{
3375 tCsrRoamConnectedProfile roamProfile;
3376 tHalHandle hHal = WLAN_HDD_GET_HAL_CTX(pAdapter);
3377 struct cfg80211_bss *bss = NULL;
3378
3379 ENTER();
3380
3381 memset(&roamProfile, 0, sizeof(tCsrRoamConnectedProfile));
3382 sme_RoamGetConnectProfile(hHal, pAdapter->sessionId, &roamProfile);
3383
3384 if (NULL != roamProfile.pBssDesc)
3385 {
3386 bss = wlan_hdd_cfg80211_inform_bss(pAdapter,
3387 &roamProfile);
3388
3389 if (NULL == bss)
3390 {
3391 hddLog(VOS_TRACE_LEVEL_INFO, "%s: cfg80211_inform_bss return NULL",
3392 __func__);
3393 }
3394
3395 sme_RoamFreeConnectProfile(hHal, &roamProfile);
3396 }
3397 else
3398 {
3399 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: roamProfile.pBssDesc is NULL",
3400 __func__);
3401 }
3402 return bss;
3403}
3404
3405/*
3406 * FUNCTION: wlan_hdd_cfg80211_update_bss
3407 */
3408static int wlan_hdd_cfg80211_update_bss( struct wiphy *wiphy,
3409 hdd_adapter_t *pAdapter
3410 )
3411{
3412 tHalHandle hHal = WLAN_HDD_GET_HAL_CTX(pAdapter);
3413 tCsrScanResultInfo *pScanResult;
3414 eHalStatus status = 0;
3415 tScanResultHandle pResult;
3416 struct cfg80211_bss *bss_status = NULL;
3417
3418 ENTER();
3419
3420 if ((WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress)
3421 {
3422 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_FATAL, "%s:LOGP in Progress. Ignore!!!",__func__);
3423 return -EAGAIN;
3424 }
3425
3426 /*
3427 * start getting scan results and populate cgf80211 BSS database
3428 */
3429 status = sme_ScanGetResult(hHal, pAdapter->sessionId, NULL, &pResult);
3430
3431 /* no scan results */
3432 if (NULL == pResult)
3433 {
3434 hddLog(VOS_TRACE_LEVEL_INFO, "%s: No scan result\n", __func__);
3435 return status;
3436 }
3437
3438 pScanResult = sme_ScanResultGetFirst(hHal, pResult);
3439
3440 while (pScanResult)
3441 {
3442 /*
3443 * cfg80211_inform_bss() is not updating ie field of bss entry, if
3444 * entry already exists in bss data base of cfg80211 for that
3445 * particular BSS ID. Using cfg80211_inform_bss_frame to update the
3446 * bss entry instead of cfg80211_inform_bss, But this call expects
3447 * mgmt packet as input. As of now there is no possibility to get
3448 * the mgmt(probe response) frame from PE, converting bss_desc to
3449 * ieee80211_mgmt(probe response) and passing to c
3450 * fg80211_inform_bss_frame.
3451 * */
3452
3453 bss_status = wlan_hdd_cfg80211_inform_bss_frame(pAdapter,
3454 &pScanResult->BssDescriptor);
3455
3456
3457 if (NULL == bss_status)
3458 {
3459 hddLog(VOS_TRACE_LEVEL_INFO,
3460 "%s: NULL returned by cfg80211_inform_bss\n", __func__);
3461 }
3462 else
3463 {
3464 cfg80211_put_bss(bss_status);
3465 }
3466
3467 pScanResult = sme_ScanResultGetNext(hHal, pResult);
3468 }
3469
3470 sme_ScanResultPurge(hHal, pResult);
3471
3472 return 0;
3473}
3474
Jeff Johnson04dd8a82012-06-29 20:41:40 -07003475void
3476hddPrintMacAddr(tCsrBssid macAddr, tANI_U8 logLevel)
3477{
3478 VOS_TRACE(VOS_MODULE_ID_HDD, logLevel,
Madan Mohan Koyyalamudic75be962012-10-18 19:19:03 -07003479 "%02X:%02X:%02X:%02X:%02X:%02X\n",
3480 macAddr[0], macAddr[1], macAddr[2], macAddr[3], macAddr[4],
3481 macAddr[5]);
Jeff Johnson04dd8a82012-06-29 20:41:40 -07003482} /****** end hddPrintMacAddr() ******/
3483
3484void
Madan Mohan Koyyalamudic75be962012-10-18 19:19:03 -07003485hddPrintPmkId(tANI_U8 *pmkId, tANI_U8 logLevel)
Jeff Johnson04dd8a82012-06-29 20:41:40 -07003486{
3487 VOS_TRACE(VOS_MODULE_ID_HDD, logLevel,
Madan Mohan Koyyalamudic75be962012-10-18 19:19:03 -07003488 "%02X:%02X:%02X:%02X:%02X:%02X:%02X:%02X:%02X:%02X:%02X:%02X:%02X:%02X:%02X:%02X\n",
3489 pmkId[0], pmkId[1], pmkId[2], pmkId[3], pmkId[4],
3490 pmkId[5], pmkId[6], pmkId[7], pmkId[8], pmkId[9], pmkId[10],
3491 pmkId[11], pmkId[12], pmkId[13], pmkId[14], pmkId[15]);
Jeff Johnson04dd8a82012-06-29 20:41:40 -07003492} /****** end hddPrintPmkId() ******/
3493
3494//hddPrintMacAddr(tCsrBssid macAddr, tANI_U8 logLevel);
3495//hddPrintMacAddr(macAddr, VOS_TRACE_LEVEL_FATAL);
3496
3497//void sirDumpBuf(tpAniSirGlobal pMac, tANI_U8 modId, tANI_U32 level, tANI_U8 *buf, tANI_U32 size);
3498//sirDumpBuf(pMac, VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_FATAL, pmkid, 16);
3499
3500#define dump_bssid(bssid) \
3501 { \
Jeff Johnsone7245742012-09-05 17:12:55 -07003502 hddLog(VOS_TRACE_LEVEL_INFO, "BSSID (MAC) address:\t"); \
3503 hddPrintMacAddr(bssid, VOS_TRACE_LEVEL_INFO);\
3504 hddLog(VOS_TRACE_LEVEL_INFO, "\n"); \
Jeff Johnson04dd8a82012-06-29 20:41:40 -07003505 }
3506
3507#define dump_pmkid(pMac, pmkid) \
3508 { \
Jeff Johnsone7245742012-09-05 17:12:55 -07003509 hddLog(VOS_TRACE_LEVEL_INFO, "PMKSA-ID:\t"); \
3510 hddPrintPmkId(pmkid, VOS_TRACE_LEVEL_INFO);\
3511 hddLog(VOS_TRACE_LEVEL_INFO, "\n"); \
Jeff Johnson04dd8a82012-06-29 20:41:40 -07003512 }
3513
Madan Mohan Koyyalamudi1b4afb02012-10-22 15:25:16 -07003514#if defined(FEATURE_WLAN_LFR) && (LINUX_VERSION_CODE >= KERNEL_VERSION(3,4,0))
Jeff Johnson04dd8a82012-06-29 20:41:40 -07003515/*
3516 * FUNCTION: wlan_hdd_cfg80211_pmksa_candidate_notify
3517 * This function is used to notify the supplicant of a new PMKSA candidate.
3518 */
3519int wlan_hdd_cfg80211_pmksa_candidate_notify(
3520 hdd_adapter_t *pAdapter, tCsrRoamInfo *pRoamInfo,
3521 int index, bool preauth )
3522{
Jeff Johnsone7245742012-09-05 17:12:55 -07003523#ifdef FEATURE_WLAN_OKC
Jeff Johnson04dd8a82012-06-29 20:41:40 -07003524 struct net_device *dev = pAdapter->dev;
3525
3526 ENTER();
Jeff Johnsone7245742012-09-05 17:12:55 -07003527 hddLog(VOS_TRACE_LEVEL_INFO, "%s is going to notify supplicant of:", __func__);
Jeff Johnson04dd8a82012-06-29 20:41:40 -07003528
3529 if( NULL == pRoamInfo )
3530 {
3531 hddLog(VOS_TRACE_LEVEL_FATAL, "%s: pRoamInfo is NULL\n", __func__);
3532 return -EINVAL;
3533 }
3534
3535 dump_bssid(pRoamInfo->bssid);
3536 cfg80211_pmksa_candidate_notify(dev, index,
3537 pRoamInfo->bssid, preauth, GFP_KERNEL);
Jeff Johnsone7245742012-09-05 17:12:55 -07003538#endif /* FEATURE_WLAN_OKC */
Jeff Johnson04dd8a82012-06-29 20:41:40 -07003539 return 0;
3540}
3541#endif //FEATURE_WLAN_LFR
3542
Jeff Johnson295189b2012-06-20 16:38:30 -07003543/*
3544 * FUNCTION: hdd_cfg80211_scan_done_callback
3545 * scanning callback function, called after finishing scan
3546 *
3547 */
3548static eHalStatus hdd_cfg80211_scan_done_callback(tHalHandle halHandle,
3549 void *pContext, tANI_U32 scanId, eCsrScanStatus status)
3550{
3551 struct net_device *dev = (struct net_device *) pContext;
3552 //struct wireless_dev *wdev = dev->ieee80211_ptr;
3553 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR( dev );
Madan Mohan Koyyalamudi2a1ba772012-10-11 14:59:06 -07003554 hdd_context_t *pHddCtx = WLAN_HDD_GET_CTX(pAdapter);
3555 hdd_scaninfo_t *pScanInfo = &pHddCtx->scan_info;
Jeff Johnson295189b2012-06-20 16:38:30 -07003556 struct cfg80211_scan_request *req = NULL;
3557 int ret = 0;
3558
3559 ENTER();
3560
3561 hddLog(VOS_TRACE_LEVEL_INFO,
3562 "%s called with halHandle = %p, pContext = %p,"
3563 "scanID = %d, returned status = %d\n",
3564 __func__, halHandle, pContext, (int) scanId, (int) status);
3565
3566 //Block on scan req completion variable. Can't wait forever though.
3567 ret = wait_for_completion_interruptible_timeout(
3568 &pScanInfo->scan_req_completion_event,
3569 msecs_to_jiffies(WLAN_WAIT_TIME_SCAN_REQ));
3570 if (!ret)
3571 {
3572 VOS_ASSERT(pScanInfo->mScanPending);
Jeff Johnsone7245742012-09-05 17:12:55 -07003573 goto allow_suspend;
Jeff Johnson295189b2012-06-20 16:38:30 -07003574 }
3575
3576 if(pScanInfo->mScanPending != VOS_TRUE)
3577 {
3578 VOS_ASSERT(pScanInfo->mScanPending);
Jeff Johnsone7245742012-09-05 17:12:55 -07003579 goto allow_suspend;
Jeff Johnson295189b2012-06-20 16:38:30 -07003580 }
3581
3582 /* Check the scanId */
3583 if (pScanInfo->scanId != scanId)
3584 {
3585 hddLog(VOS_TRACE_LEVEL_INFO,
3586 "%s called with mismatched scanId pScanInfo->scanId = %d "
3587 "scanId = %d \n", __func__, (int) pScanInfo->scanId,
3588 (int) scanId);
3589 }
3590
Jeff Johnson295189b2012-06-20 16:38:30 -07003591 ret = wlan_hdd_cfg80211_update_bss((WLAN_HDD_GET_CTX(pAdapter))->wiphy,
3592 pAdapter);
3593
3594 if (0 > ret)
3595 hddLog(VOS_TRACE_LEVEL_INFO, "%s: NO SCAN result", __func__);
3596
3597
3598 /* If any client wait scan result through WEXT
3599 * send scan done event to client */
Madan Mohan Koyyalamudi2a1ba772012-10-11 14:59:06 -07003600 if (pHddCtx->scan_info.waitScanResult)
Jeff Johnson295189b2012-06-20 16:38:30 -07003601 {
3602 /* The other scan request waiting for current scan finish
3603 * Send event to notify current scan finished */
Madan Mohan Koyyalamudi2a1ba772012-10-11 14:59:06 -07003604 if(WEXT_SCAN_PENDING_DELAY == pHddCtx->scan_info.scan_pending_option)
Jeff Johnson295189b2012-06-20 16:38:30 -07003605 {
Madan Mohan Koyyalamudi2a1ba772012-10-11 14:59:06 -07003606 vos_event_set(&pHddCtx->scan_info.scan_finished_event);
Jeff Johnson295189b2012-06-20 16:38:30 -07003607 }
3608 /* Send notify to WEXT client */
Madan Mohan Koyyalamudi2a1ba772012-10-11 14:59:06 -07003609 else if(WEXT_SCAN_PENDING_PIGGYBACK == pHddCtx->scan_info.scan_pending_option)
Jeff Johnson295189b2012-06-20 16:38:30 -07003610 {
3611 struct net_device *dev = pAdapter->dev;
3612 union iwreq_data wrqu;
3613 int we_event;
3614 char *msg;
3615
3616 memset(&wrqu, '\0', sizeof(wrqu));
3617 we_event = SIOCGIWSCAN;
3618 msg = NULL;
3619 wireless_send_event(dev, we_event, &wrqu, msg);
3620 }
3621 }
Madan Mohan Koyyalamudi2a1ba772012-10-11 14:59:06 -07003622 pHddCtx->scan_info.waitScanResult = FALSE;
Jeff Johnson295189b2012-06-20 16:38:30 -07003623
3624 /* Get the Scan Req */
3625 req = pAdapter->request;
3626
3627 if (!req)
3628 {
3629 hddLog(VOS_TRACE_LEVEL_ERROR, "request is became NULL\n");
Madan Mohan Koyyalamudi9f5a10c2012-09-28 14:46:16 -07003630 pScanInfo->mScanPending = VOS_FALSE;
Jeff Johnsone7245742012-09-05 17:12:55 -07003631 goto allow_suspend;
Jeff Johnson295189b2012-06-20 16:38:30 -07003632 }
3633
3634 /*
3635 * setting up 0, just in case.
3636 */
3637 req->n_ssids = 0;
3638 req->n_channels = 0;
3639 req->ie = 0;
3640
Jeff Johnson295189b2012-06-20 16:38:30 -07003641 pAdapter->request = NULL;
Jeff Johnsone7245742012-09-05 17:12:55 -07003642 /* Scan is no longer pending */
3643 pScanInfo->mScanPending = VOS_FALSE;
Jeff Johnson295189b2012-06-20 16:38:30 -07003644
Madan Mohan Koyyalamudib764bf82012-10-11 16:38:51 -07003645 /*
3646 * cfg80211_scan_done informing NL80211 about completion
3647 * of scanning
3648 */
3649 cfg80211_scan_done(req, false);
Madan Mohan Koyyalamudi070e8702012-10-24 14:31:17 -07003650 complete(&pAdapter->abortscan_event_var);
Jeff Johnson295189b2012-06-20 16:38:30 -07003651#ifdef WLAN_FEATURE_P2P
3652 /* Flush out scan result after p2p_serach is done */
Jeff Johnsone7245742012-09-05 17:12:55 -07003653 if(pScanInfo->flushP2pScanResults)
Jeff Johnson295189b2012-06-20 16:38:30 -07003654 {
3655 tANI_U8 sessionId = pAdapter->sessionId;
Jeff Johnson295189b2012-06-20 16:38:30 -07003656 sme_ScanFlushResult(WLAN_HDD_GET_HAL_CTX(pAdapter), sessionId);
Jeff Johnsone7245742012-09-05 17:12:55 -07003657 pScanInfo->flushP2pScanResults = 0;
Jeff Johnson295189b2012-06-20 16:38:30 -07003658 }
3659#endif
3660
Jeff Johnsone7245742012-09-05 17:12:55 -07003661allow_suspend:
Madan Mohan Koyyalamudi9f5a10c2012-09-28 14:46:16 -07003662 /* release the wake lock at the end of the scan*/
3663 hdd_allow_suspend();
Jeff Johnsone7245742012-09-05 17:12:55 -07003664
Madan Mohan Koyyalamudi10d83a92012-09-28 15:47:05 -07003665 /* Acquire wakelock to handle the case where APP's tries to suspend
3666 * immediatly after the driver gets connect request(i.e after scan)
3667 * from supplicant, this result in app's is suspending and not able
3668 * to process the connect request to AP */
3669 hdd_allow_suspend_timeout(100);
3670
Jeff Johnson295189b2012-06-20 16:38:30 -07003671 EXIT();
3672 return 0;
3673}
3674
3675/*
3676 * FUNCTION: wlan_hdd_cfg80211_scan
3677 * this scan respond to scan trigger and update cfg80211 scan database
3678 * later, scan dump command can be used to recieve scan results
3679 */
3680int wlan_hdd_cfg80211_scan( struct wiphy *wiphy, struct net_device *dev,
3681 struct cfg80211_scan_request *request)
3682{
3683 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR( dev );
3684 hdd_context_t *pHddCtx = WLAN_HDD_GET_CTX( pAdapter );
3685 hdd_wext_state_t *pwextBuf = WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter);
3686 hdd_config_t *cfg_param = (WLAN_HDD_GET_CTX(pAdapter))->cfg_ini;
3687 tCsrScanRequest scanRequest;
3688 tANI_U8 *channelList = NULL, i;
3689 v_U32_t scanId = 0;
3690 int status = 0;
Madan Mohan Koyyalamudi2a1ba772012-10-11 14:59:06 -07003691 hdd_scaninfo_t *pScanInfo = &pHddCtx->scan_info;
Jeff Johnson295189b2012-06-20 16:38:30 -07003692#ifdef WLAN_FEATURE_P2P
3693 v_U8_t* pP2pIe = NULL;
3694#endif
3695
3696 ENTER();
3697
3698 hddLog(VOS_TRACE_LEVEL_INFO, "%s: device_mode = %d\n",
3699 __func__,pAdapter->device_mode);
3700#ifdef WLAN_BTAMP_FEATURE
3701 //Scan not supported when AMP traffic is on.
3702 if( VOS_TRUE == WLANBAP_AmpSessionOn() )
3703 {
3704 hddLog(VOS_TRACE_LEVEL_ERROR,
3705 "%s: No scanning when AMP is on", __func__);
3706 return -EOPNOTSUPP;
3707 }
3708#endif
3709 //Scan on any other interface is not supported.
3710 if( pAdapter->device_mode == WLAN_HDD_SOFTAP )
3711 {
3712 hddLog(VOS_TRACE_LEVEL_ERROR,
3713 "%s: Not scanning on device_mode = %d",
3714 __func__, pAdapter->device_mode);
3715 return -EOPNOTSUPP;
3716 }
3717
3718 if (TRUE == pScanInfo->mScanPending)
3719 {
3720 hddLog(VOS_TRACE_LEVEL_INFO, "%s: mScanPending is TRUE", __func__);
3721 return -EBUSY;
3722 }
3723
3724 if ((WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress)
3725 {
3726 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_FATAL,
3727 "%s:LOGP in Progress. Ignore!!!", __func__);
3728 return -EAGAIN;
3729 }
3730
Mohit Khanna6c52bbf2012-09-11 15:10:12 -07003731 if ((WLAN_HDD_GET_CTX(pAdapter))->isLoadUnloadInProgress)
3732 {
3733 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_FATAL,
3734 "%s:Unloading/Loading in Progress. Ignore!!!", __func__);
3735 return -EAGAIN;
3736 }
Jeff Johnson32d95a32012-09-10 13:15:23 -07003737 //Don't Allow Scan and return busy if Remain On
3738 //Channel and action frame is pending
3739 //Otherwise Cancel Remain On Channel and allow Scan
3740 //If no action frame pending
3741 if(0 != wlan_hdd_check_remain_on_channel(pAdapter))
3742 {
3743 hddLog(VOS_TRACE_LEVEL_INFO, "%s: Remain On Channel Pending", __func__);
3744 return -EBUSY;
3745 }
3746
Jeff Johnson295189b2012-06-20 16:38:30 -07003747 if (mutex_lock_interruptible(&pHddCtx->tmInfo.tmOperationLock))
3748 {
3749 VOS_TRACE(VOS_MODULE_ID_HDD,VOS_TRACE_LEVEL_ERROR,
3750 "%s: Aquire lock fail", __func__);
3751 return -EAGAIN;
3752 }
3753 if (TRUE == pHddCtx->tmInfo.tmAction.enterImps)
3754 {
3755 hddLog(VOS_TRACE_LEVEL_WARN,
3756 "%s: MAX TM Level Scan not allowed", __func__);
3757 mutex_unlock(&pHddCtx->tmInfo.tmOperationLock);
3758 return -EBUSY;
3759 }
3760 mutex_unlock(&pHddCtx->tmInfo.tmOperationLock);
3761
3762 vos_mem_zero( &scanRequest, sizeof(scanRequest));
3763
3764 if (NULL != request)
3765 {
3766 hddLog(VOS_TRACE_LEVEL_INFO, "scan request for ssid = %d",
3767 (int)request->n_ssids);
3768
3769 /* Even though supplicant doesn't provide any SSIDs, n_ssids is set to 1.
3770 * Becasue of this, driver is assuming that this is not wildcard scan and so
3771 * is not aging out the scan results.
3772 */
Jeff Johnson32d95a32012-09-10 13:15:23 -07003773 if (request->ssids && '\0' == request->ssids->ssid[0])
Jeff Johnson295189b2012-06-20 16:38:30 -07003774 {
3775 request->n_ssids = 0;
3776 }
3777
Madan Mohan Koyyalamudic75be962012-10-18 19:19:03 -07003778 if ((request->ssids) && (0 < request->n_ssids))
Jeff Johnson295189b2012-06-20 16:38:30 -07003779 {
3780 tCsrSSIDInfo *SsidInfo;
3781 int j;
3782 scanRequest.SSIDs.numOfSSIDs = request->n_ssids;
3783 /* Allocate num_ssid tCsrSSIDInfo structure */
3784 SsidInfo = scanRequest.SSIDs.SSIDList =
3785 ( tCsrSSIDInfo *)vos_mem_malloc(
3786 request->n_ssids*sizeof(tCsrSSIDInfo));
3787
3788 if(NULL == scanRequest.SSIDs.SSIDList)
3789 {
3790 hddLog(VOS_TRACE_LEVEL_ERROR,
3791 "memory alloc failed SSIDInfo buffer");
3792 return -ENOMEM;
3793 }
3794
3795 /* copy all the ssid's and their length */
3796 for(j = 0; j < request->n_ssids; j++, SsidInfo++)
3797 {
3798 /* get the ssid length */
3799 SsidInfo->SSID.length = request->ssids[j].ssid_len;
3800 vos_mem_copy(SsidInfo->SSID.ssId, &request->ssids[j].ssid[0],
3801 SsidInfo->SSID.length);
3802 SsidInfo->SSID.ssId[SsidInfo->SSID.length] = '\0';
3803 hddLog(VOS_TRACE_LEVEL_INFO_HIGH, "SSID number %d: %s",
3804 j, SsidInfo->SSID.ssId);
3805 }
3806 /* set the scan type to active */
3807 scanRequest.scanType = eSIR_ACTIVE_SCAN;
3808 }
3809 else if(WLAN_HDD_P2P_GO == pAdapter->device_mode)
3810 {
3811 /* set the scan type to active */
3812 scanRequest.scanType = eSIR_ACTIVE_SCAN;
3813 }
3814 else
3815 {
3816 /*Set the scan type to default type, in this case it is ACTIVE*/
3817 scanRequest.scanType = pScanInfo->scan_mode;
3818 }
3819 scanRequest.minChnTime = cfg_param->nActiveMinChnTime;
3820 scanRequest.maxChnTime = cfg_param->nActiveMaxChnTime;
3821 }
3822 else
3823 {
3824 /* set the scan type to active */
3825 scanRequest.scanType = eSIR_ACTIVE_SCAN;
3826 vos_mem_set( scanRequest.bssid, sizeof( tCsrBssid ), 0xff );
3827
3828 /* set min and max channel time to zero */
3829 scanRequest.minChnTime = 0;
3830 scanRequest.maxChnTime = 0;
3831 }
3832
3833 /* set BSSType to default type */
3834 scanRequest.BSSType = eCSR_BSS_TYPE_ANY;
3835
3836 /*TODO: scan the requested channels only*/
3837
3838 /*Right now scanning all the channels */
3839 if( request )
3840 {
3841 if( request->n_channels )
3842 {
3843 channelList = vos_mem_malloc( request->n_channels );
3844 if( NULL == channelList )
3845 {
3846 status = -ENOMEM;
3847 goto free_mem;
3848 }
3849
3850 for( i = 0 ; i < request->n_channels ; i++ )
3851 channelList[i] = request->channels[i]->hw_value;
3852 }
3853
3854 scanRequest.ChannelInfo.numOfChannels = request->n_channels;
3855 scanRequest.ChannelInfo.ChannelList = channelList;
3856
3857 /* set requestType to full scan */
3858 scanRequest.requestType = eCSR_SCAN_REQUEST_FULL_SCAN;
3859
3860 if( request->ie_len )
3861 {
3862 /* save this for future association (join requires this) */
3863 memset( &pScanInfo->scanAddIE, 0, sizeof(pScanInfo->scanAddIE) );
3864 memcpy( pScanInfo->scanAddIE.addIEdata, request->ie, request->ie_len);
3865 pScanInfo->scanAddIE.length = request->ie_len;
3866
3867 if((WLAN_HDD_INFRA_STATION == pAdapter->device_mode) ||
Jeff Johnsone7245742012-09-05 17:12:55 -07003868 (WLAN_HDD_P2P_CLIENT == pAdapter->device_mode) ||
3869 (WLAN_HDD_P2P_DEVICE == pAdapter->device_mode)
Jeff Johnson295189b2012-06-20 16:38:30 -07003870 )
3871 {
3872 pwextBuf->roamProfile.pAddIEScan = pScanInfo->scanAddIE.addIEdata;
3873 pwextBuf->roamProfile.nAddIEScanLength = pScanInfo->scanAddIE.length;
3874 }
3875
3876 scanRequest.uIEFieldLen = pScanInfo->scanAddIE.length;
3877 scanRequest.pIEField = pScanInfo->scanAddIE.addIEdata;
3878
3879#ifdef WLAN_FEATURE_P2P
3880 pP2pIe = wlan_hdd_get_p2p_ie_ptr((v_U8_t*)request->ie,
3881 request->ie_len);
3882 if (pP2pIe != NULL)
3883 {
Madan Mohan Koyyalamudi26bd7142012-10-30 18:14:19 -07003884#ifdef WLAN_FEATURE_P2P_DEBUG
3885 if (((globalP2PConnectionStatus == P2P_GO_NEG_COMPLETED) ||
3886 (globalP2PConnectionStatus == P2P_GO_NEG_PROCESS)) &&
3887 (WLAN_HDD_P2P_CLIENT == pAdapter->device_mode))
3888 {
3889 globalP2PConnectionStatus = P2P_CLIENT_CONNECTING_STATE_1;
3890 hddLog(VOS_TRACE_LEVEL_ERROR,"[P2P State] Changing state from "
3891 "Go nego completed to Connection is started");
3892 hddLog(VOS_TRACE_LEVEL_ERROR,"[P2P]P2P Scanning is started "
3893 "for 8way Handshake");
3894 }
3895 else if((globalP2PConnectionStatus == P2P_CLIENT_DISCONNECTED_STATE) &&
3896 (WLAN_HDD_P2P_CLIENT == pAdapter->device_mode))
3897 {
3898 globalP2PConnectionStatus = P2P_CLIENT_CONNECTING_STATE_2;
3899 hddLog(VOS_TRACE_LEVEL_ERROR,"[P2P State] Changing state from "
3900 "Disconnected state to Connection is started");
3901 hddLog(VOS_TRACE_LEVEL_ERROR,"[P2P]P2P Scanning is started "
3902 "for 4way Handshake");
3903 }
3904#endif
3905
Jeff Johnsone7245742012-09-05 17:12:55 -07003906 /* no_cck will be set during p2p find to disable 11b rates */
3907 if(TRUE == request->no_cck)
Jeff Johnson295189b2012-06-20 16:38:30 -07003908 {
3909 tANI_U8 sessionId = pAdapter->sessionId;
3910 hddLog(VOS_TRACE_LEVEL_INFO,
3911 "%s: This is a P2P Search", __func__);
3912 scanRequest.p2pSearch = 1;
Jeff Johnsone7245742012-09-05 17:12:55 -07003913
3914 /* Flush the scan results only for P2P search.
3915 P2P search happens on 3 social channels (1, 6, 11) */
3916 if( request->n_channels == WLAN_HDD_P2P_SOCIAL_CHANNELS )
3917 {
3918 pScanInfo->flushP2pScanResults = 1;
Madan Mohan Koyyalamudia3fcf142012-10-18 15:01:20 -07003919 sme_ScanFlushP2PResult( WLAN_HDD_GET_HAL_CTX(pAdapter),
Jeff Johnsone7245742012-09-05 17:12:55 -07003920 sessionId );
Madan Mohan Koyyalamudi1b1d9e82012-10-21 11:38:33 -07003921 /* set requestType to P2P Discovery */
3922 scanRequest.requestType = eCSR_SCAN_P2P_DISCOVERY;
Jeff Johnsone7245742012-09-05 17:12:55 -07003923 }
3924
3925 /*
3926 Skip Dfs Channel in case of P2P Search
3927 if it is set in ini file
3928 */
3929 if(cfg_param->skipDfsChnlInP2pSearch)
3930 {
3931 scanRequest.skipDfsChnlInP2pSearch = 1;
3932 }
3933 else
3934 {
3935 scanRequest.skipDfsChnlInP2pSearch = 0;
3936 }
Jeff Johnson295189b2012-06-20 16:38:30 -07003937
Jeff Johnson295189b2012-06-20 16:38:30 -07003938 }
3939 }
3940#endif
3941 }
3942 }
3943
3944 INIT_COMPLETION(pScanInfo->scan_req_completion_event);
3945
Madan Mohan Koyyalamudi9f5a10c2012-09-28 14:46:16 -07003946 /* acquire the wakelock to avoid the apps suspend during the scan. To
3947 * address the following issues.
3948 * 1) Disconnected scenario: we are not allowing the suspend as WLAN is not in
3949 * BMPS/IMPS this result in android trying to suspend aggressively and backing off
3950 * for long time, this result in apps running at full power for long time.
3951 * 2) Connected scenario: If we allow the suspend during the scan, RIVA will
3952 * be stuck in full power because of resume BMPS
3953 */
3954 hdd_prevent_suspend();
Jeff Johnsone7245742012-09-05 17:12:55 -07003955
3956 status = sme_ScanRequest( WLAN_HDD_GET_HAL_CTX(pAdapter),
Jeff Johnson295189b2012-06-20 16:38:30 -07003957 pAdapter->sessionId, &scanRequest, &scanId,
3958 &hdd_cfg80211_scan_done_callback, dev );
Jeff Johnsone7245742012-09-05 17:12:55 -07003959
Jeff Johnson295189b2012-06-20 16:38:30 -07003960 if (eHAL_STATUS_SUCCESS != status)
3961 {
3962 hddLog(VOS_TRACE_LEVEL_ERROR,
3963 "%s: sme_ScanRequest returned error %d", __func__, status);
3964 complete(&pScanInfo->scan_req_completion_event);
Madan Mohan Koyyalamudi3b230fe2012-10-18 14:46:32 -07003965 if(eHAL_STATUS_RESOURCES == status)
3966 {
Madan Mohan Koyyalamudia3fcf142012-10-18 15:01:20 -07003967 hddLog(VOS_TRACE_LEVEL_INFO, "%s: HO is in progress.So defer the scan by informing busy",__func__);
Madan Mohan Koyyalamudi3b230fe2012-10-18 14:46:32 -07003968 status = -EBUSY;
3969 } else {
3970 status = -EIO;
3971 }
Madan Mohan Koyyalamudi9f5a10c2012-09-28 14:46:16 -07003972 hdd_allow_suspend();
Jeff Johnson295189b2012-06-20 16:38:30 -07003973 goto free_mem;
3974 }
3975
3976 pScanInfo->mScanPending = TRUE;
3977 pAdapter->request = request;
3978 pScanInfo->scanId = scanId;
3979
3980 complete(&pScanInfo->scan_req_completion_event);
3981
3982free_mem:
3983 if( scanRequest.SSIDs.SSIDList )
3984 {
3985 vos_mem_free(scanRequest.SSIDs.SSIDList);
3986 }
3987
3988 if( channelList )
3989 vos_mem_free( channelList );
3990
3991 EXIT();
3992
3993 return status;
3994}
3995
3996/*
3997 * FUNCTION: wlan_hdd_cfg80211_connect_start
3998 * This function is used to start the association process
3999 */
4000int wlan_hdd_cfg80211_connect_start( hdd_adapter_t *pAdapter,
Jeff Johnson32d95a32012-09-10 13:15:23 -07004001 const u8 *ssid, size_t ssid_len, const u8 *bssid, u8 operatingChannel)
Jeff Johnson295189b2012-06-20 16:38:30 -07004002{
4003 int status = 0;
4004 hdd_wext_state_t *pWextState;
4005 v_U32_t roamId;
4006 tCsrRoamProfile *pRoamProfile;
4007 eMib_dot11DesiredBssType connectedBssType;
4008 eCsrAuthType RSNAuthType;
4009
4010 ENTER();
4011
4012 pWextState = WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter);
4013
4014 if (SIR_MAC_MAX_SSID_LENGTH < ssid_len)
4015 {
4016 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: wrong SSID len", __func__);
4017 return -EINVAL;
4018 }
4019
4020 pRoamProfile = &pWextState->roamProfile;
4021
4022 if (pRoamProfile)
4023 {
Jeff Johnsone7245742012-09-05 17:12:55 -07004024 int ret = 0;
4025 hdd_station_ctx_t *pHddStaCtx;
4026 pHddStaCtx = WLAN_HDD_GET_STATION_CTX_PTR(pAdapter);
4027 hdd_connGetConnectedBssType(pHddStaCtx,&connectedBssType );
4028
4029 if((eMib_dot11DesiredBssType_independent == connectedBssType) ||
4030 (eConnectionState_Associated == pHddStaCtx->conn_info.connState) ||
4031 (eConnectionState_IbssConnected == pHddStaCtx->conn_info.connState))
Jeff Johnson295189b2012-06-20 16:38:30 -07004032 {
4033 /* Issue disconnect to CSR */
4034 INIT_COMPLETION(pAdapter->disconnect_comp_var);
4035 if( eHAL_STATUS_SUCCESS ==
4036 sme_RoamDisconnect( WLAN_HDD_GET_HAL_CTX(pAdapter),
4037 pAdapter->sessionId,
4038 eCSR_DISCONNECT_REASON_UNSPECIFIED ) )
4039 {
Jeff Johnsone7245742012-09-05 17:12:55 -07004040 ret = wait_for_completion_interruptible_timeout(
4041 &pAdapter->disconnect_comp_var,
4042 msecs_to_jiffies(WLAN_WAIT_TIME_DISCONNECT));
4043 if (0 == ret)
4044 {
4045 VOS_ASSERT(0);
4046 }
4047 }
4048 }
4049 else if(eConnectionState_Disconnecting == pHddStaCtx->conn_info.connState)
4050 {
4051 ret = wait_for_completion_interruptible_timeout(
4052 &pAdapter->disconnect_comp_var,
4053 msecs_to_jiffies(WLAN_WAIT_TIME_DISCONNECT));
4054 if (0 == ret)
4055 {
4056 VOS_ASSERT(0);
Jeff Johnson295189b2012-06-20 16:38:30 -07004057 }
4058 }
4059
4060 if (HDD_WMM_USER_MODE_NO_QOS ==
4061 (WLAN_HDD_GET_CTX(pAdapter))->cfg_ini->WmmMode)
4062 {
4063 /*QoS not enabled in cfg file*/
4064 pRoamProfile->uapsd_mask = 0;
4065 }
4066 else
4067 {
4068 /*QoS enabled, update uapsd mask from cfg file*/
4069 pRoamProfile->uapsd_mask =
4070 (WLAN_HDD_GET_CTX(pAdapter))->cfg_ini->UapsdMask;
4071 }
4072
4073 pRoamProfile->SSIDs.numOfSSIDs = 1;
4074 pRoamProfile->SSIDs.SSIDList->SSID.length = ssid_len;
4075 vos_mem_zero(pRoamProfile->SSIDs.SSIDList->SSID.ssId,
4076 sizeof(pRoamProfile->SSIDs.SSIDList->SSID.ssId));
4077 vos_mem_copy((void *)(pRoamProfile->SSIDs.SSIDList->SSID.ssId),
4078 ssid, ssid_len);
4079
4080 if (bssid)
4081 {
4082 pRoamProfile->BSSIDs.numOfBSSIDs = 1;
4083 vos_mem_copy((void *)(pRoamProfile->BSSIDs.bssid), bssid,
4084 WNI_CFG_BSSID_LEN);
4085 /* Save BSSID in seperate variable as well, as RoamProfile
4086 BSSID is getting zeroed out in the association process. And in
4087 case of join failure we should send valid BSSID to supplicant
4088 */
4089 vos_mem_copy((void *)(pWextState->req_bssId), bssid,
4090 WNI_CFG_BSSID_LEN);
4091 }
4092
4093 if ((IW_AUTH_WPA_VERSION_WPA == pWextState->wpaVersion) ||
4094 (IW_AUTH_WPA_VERSION_WPA2 == pWextState->wpaVersion))
4095 {
4096 /*set gen ie*/
4097 hdd_SetGENIEToCsr(pAdapter, &RSNAuthType);
4098 /*set auth*/
4099 hdd_set_csr_auth_type(pAdapter, RSNAuthType);
4100 }
4101 else if ( (pWextState->roamProfile.AuthType.authType[0] ==
4102 eCSR_AUTH_TYPE_OPEN_SYSTEM)
4103 && ((pWextState->roamProfile.EncryptionType.encryptionType[0] ==
4104 eCSR_ENCRYPT_TYPE_WEP40_STATICKEY)
4105 || (pWextState->roamProfile.EncryptionType.encryptionType[0] ==
4106 eCSR_ENCRYPT_TYPE_WEP104_STATICKEY))
4107 )
4108 {
4109 /*Android UI not having any option to configure the Authentication type to OPEN/SHARED;
4110 * The authentication type will be always eCSR_AUTH_TYPE_OPEN_SYSTEM when WEP is used
4111 * Use eCSR_AUTH_TYPE_AUTOSWITCH when WEP encryption used*/
4112 (WLAN_HDD_GET_STATION_CTX_PTR(pAdapter))->conn_info.authType =
4113 eCSR_AUTH_TYPE_AUTOSWITCH;
4114 pWextState->roamProfile.AuthType.authType[0] =
4115 (WLAN_HDD_GET_STATION_CTX_PTR(pAdapter))->conn_info.authType;
4116 }
4117#ifdef FEATURE_WLAN_WAPI
4118 if (pAdapter->wapi_info.nWapiMode)
4119 {
4120 hddLog(LOG1, "%s: Setting WAPI AUTH Type and Encryption Mode values", __FUNCTION__);
4121 switch (pAdapter->wapi_info.wapiAuthMode)
4122 {
4123 case WAPI_AUTH_MODE_PSK:
4124 {
4125 hddLog(LOG1, "%s: WAPI AUTH TYPE: PSK: %d", __FUNCTION__,
4126 pAdapter->wapi_info.wapiAuthMode);
4127 pRoamProfile->AuthType.authType[0] = eCSR_AUTH_TYPE_WAPI_WAI_PSK;
4128 break;
4129 }
4130 case WAPI_AUTH_MODE_CERT:
4131 {
4132 hddLog(LOG1, "%s: WAPI AUTH TYPE: CERT: %d", __FUNCTION__,
4133 pAdapter->wapi_info.wapiAuthMode);
4134 pRoamProfile->AuthType.authType[0] = eCSR_AUTH_TYPE_WAPI_WAI_CERTIFICATE;
4135 break;
4136 }
4137 } // End of switch
4138 if ( pAdapter->wapi_info.wapiAuthMode == WAPI_AUTH_MODE_PSK ||
4139 pAdapter->wapi_info.wapiAuthMode == WAPI_AUTH_MODE_CERT)
4140 {
4141 hddLog(LOG1, "%s: WAPI PAIRWISE/GROUP ENCRYPTION: WPI", __FUNCTION__);
4142 pRoamProfile->AuthType.numEntries = 1;
4143 pRoamProfile->EncryptionType.numEntries = 1;
4144 pRoamProfile->EncryptionType.encryptionType[0] = eCSR_ENCRYPT_TYPE_WPI;
4145 pRoamProfile->mcEncryptionType.numEntries = 1;
4146 pRoamProfile->mcEncryptionType.encryptionType[0] = eCSR_ENCRYPT_TYPE_WPI;
4147 }
4148 }
4149#endif /* FEATURE_WLAN_WAPI */
4150 pRoamProfile->csrPersona = pAdapter->device_mode;
4151
Jeff Johnson32d95a32012-09-10 13:15:23 -07004152 if( operatingChannel )
4153 {
4154 pRoamProfile->ChannelInfo.ChannelList = &operatingChannel;
4155 pRoamProfile->ChannelInfo.numOfChannels = 1;
4156 }
4157
Jeff Johnson295189b2012-06-20 16:38:30 -07004158 status = sme_RoamConnect( WLAN_HDD_GET_HAL_CTX(pAdapter),
4159 pAdapter->sessionId, pRoamProfile, &roamId);
4160
Jeff Johnson32d95a32012-09-10 13:15:23 -07004161 pRoamProfile->ChannelInfo.ChannelList = NULL;
Jeff Johnson295189b2012-06-20 16:38:30 -07004162 pRoamProfile->ChannelInfo.numOfChannels = 0;
4163 }
4164 else
4165 {
4166 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: No valid Roam profile", __func__);
4167 return -EINVAL;
4168 }
4169 EXIT();
4170 return status;
4171}
4172
4173/*
4174 * FUNCTION: wlan_hdd_set_cfg80211_auth_type
4175 * This function is used to set the authentication type (OPEN/SHARED).
4176 *
4177 */
4178static int wlan_hdd_cfg80211_set_auth_type(hdd_adapter_t *pAdapter,
4179 enum nl80211_auth_type auth_type)
4180{
4181 hdd_wext_state_t *pWextState = WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter);
4182 hdd_station_ctx_t *pHddStaCtx = WLAN_HDD_GET_STATION_CTX_PTR(pAdapter);
4183
4184 ENTER();
4185
4186 /*set authentication type*/
4187 switch (auth_type)
4188 {
4189 case NL80211_AUTHTYPE_OPEN_SYSTEM:
4190 case NL80211_AUTHTYPE_AUTOMATIC:
4191 hddLog(VOS_TRACE_LEVEL_INFO,
4192 "%s: set authentication type to OPEN", __func__);
4193 pHddStaCtx->conn_info.authType = eCSR_AUTH_TYPE_OPEN_SYSTEM;
4194 break;
4195
4196 case NL80211_AUTHTYPE_SHARED_KEY:
4197 hddLog(VOS_TRACE_LEVEL_INFO,
4198 "%s: set authentication type to SHARED", __func__);
4199 pHddStaCtx->conn_info.authType = eCSR_AUTH_TYPE_SHARED_KEY;
4200 break;
4201#ifdef FEATURE_WLAN_CCX
4202 case NL80211_AUTHTYPE_NETWORK_EAP:
4203 hddLog(VOS_TRACE_LEVEL_INFO,
4204 "%s: set authentication type to CCKM WPA", __func__);
4205 pHddStaCtx->conn_info.authType = eCSR_AUTH_TYPE_CCKM_WPA;//eCSR_AUTH_TYPE_CCKM_RSN needs to be handled as well if required.
4206 break;
4207#endif
4208
4209
4210 default:
4211 hddLog(VOS_TRACE_LEVEL_ERROR,
4212 "%s: Unsupported authentication type %d", __func__,
4213 auth_type);
4214 pHddStaCtx->conn_info.authType = eCSR_AUTH_TYPE_UNKNOWN;
4215 return -EINVAL;
4216 }
4217
4218 pWextState->roamProfile.AuthType.authType[0] =
4219 pHddStaCtx->conn_info.authType;
4220 return 0;
4221}
4222
4223/*
4224 * FUNCTION: wlan_hdd_set_akm_suite
4225 * This function is used to set the key mgmt type(PSK/8021x).
4226 *
4227 */
4228static int wlan_hdd_set_akm_suite( hdd_adapter_t *pAdapter,
4229 u32 key_mgmt
4230 )
4231{
4232 hdd_wext_state_t *pWextState = WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter);
4233 ENTER();
4234
4235 /*set key mgmt type*/
4236 switch(key_mgmt)
4237 {
4238 case WLAN_AKM_SUITE_PSK:
4239 hddLog(VOS_TRACE_LEVEL_INFO, "%s: setting key mgmt type to PSK",
4240 __func__);
4241 pWextState->authKeyMgmt |= IW_AUTH_KEY_MGMT_PSK;
4242 break;
4243
4244 case WLAN_AKM_SUITE_8021X:
4245 hddLog(VOS_TRACE_LEVEL_INFO, "%s: setting key mgmt type to 8021x",
4246 __func__);
4247 pWextState->authKeyMgmt |= IW_AUTH_KEY_MGMT_802_1X;
4248 break;
4249#ifdef FEATURE_WLAN_CCX
4250#define WLAN_AKM_SUITE_CCKM 0x00409600 /* Should be in ieee802_11_defs.h */
4251#define IW_AUTH_KEY_MGMT_CCKM 8 /* Should be in linux/wireless.h */
4252 case WLAN_AKM_SUITE_CCKM:
4253 hddLog(VOS_TRACE_LEVEL_INFO, "%s: setting key mgmt type to CCKM",
4254 __func__);
4255 pWextState->authKeyMgmt |= IW_AUTH_KEY_MGMT_CCKM;
4256 break;
4257#endif
4258
4259 default:
4260 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: Unsupported key mgmt type %d",
4261 __func__, key_mgmt);
4262 return -EINVAL;
4263
4264 }
4265 return 0;
4266}
4267
4268/*
4269 * FUNCTION: wlan_hdd_cfg80211_set_cipher
4270 * This function is used to set the encryption type
4271 * (NONE/WEP40/WEP104/TKIP/CCMP).
4272 */
4273static int wlan_hdd_cfg80211_set_cipher( hdd_adapter_t *pAdapter,
4274 u32 cipher,
4275 bool ucast
4276 )
4277{
4278 eCsrEncryptionType encryptionType = eCSR_ENCRYPT_TYPE_NONE;
4279 hdd_wext_state_t *pWextState = WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter);
4280 hdd_station_ctx_t *pHddStaCtx = WLAN_HDD_GET_STATION_CTX_PTR(pAdapter);
4281
4282 ENTER();
4283
4284 if (!cipher)
4285 {
4286 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: received cipher %d - considering none",
4287 __func__, cipher);
4288 encryptionType = eCSR_ENCRYPT_TYPE_NONE;
4289 }
4290 else
4291 {
4292
4293 /*set encryption method*/
4294 switch (cipher)
4295 {
4296 case IW_AUTH_CIPHER_NONE:
4297 encryptionType = eCSR_ENCRYPT_TYPE_NONE;
4298 break;
4299
4300 case WLAN_CIPHER_SUITE_WEP40:
4301 if ((IW_AUTH_KEY_MGMT_802_1X == pWextState->authKeyMgmt) &&
4302 (eCSR_AUTH_TYPE_OPEN_SYSTEM == pHddStaCtx->conn_info.authType))
4303 encryptionType = eCSR_ENCRYPT_TYPE_WEP40;
4304 else
4305 encryptionType = eCSR_ENCRYPT_TYPE_WEP40_STATICKEY;
4306 break;
4307
4308 case WLAN_CIPHER_SUITE_WEP104:
4309 if ((IW_AUTH_KEY_MGMT_802_1X == pWextState->authKeyMgmt) &&
4310 (eCSR_AUTH_TYPE_OPEN_SYSTEM == pHddStaCtx->conn_info.authType))
4311 encryptionType = eCSR_ENCRYPT_TYPE_WEP104;
4312 else
4313 encryptionType = eCSR_ENCRYPT_TYPE_WEP104_STATICKEY;
4314 break;
4315
4316 case WLAN_CIPHER_SUITE_TKIP:
4317 encryptionType = eCSR_ENCRYPT_TYPE_TKIP;
4318 break;
4319
4320 case WLAN_CIPHER_SUITE_CCMP:
4321 encryptionType = eCSR_ENCRYPT_TYPE_AES;
4322 break;
4323#ifdef FEATURE_WLAN_WAPI
4324 case WLAN_CIPHER_SUITE_SMS4:
4325 encryptionType = eCSR_ENCRYPT_TYPE_WPI;
4326 break;
4327#endif
4328
4329#ifdef FEATURE_WLAN_CCX
4330 case WLAN_CIPHER_SUITE_KRK:
4331 encryptionType = eCSR_ENCRYPT_TYPE_KRK;
4332 break;
4333#endif
4334 default:
4335 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: Unsupported cipher type %d",
4336 __func__, cipher);
4337 return -EOPNOTSUPP;
4338 }
4339 }
4340
4341 if (ucast)
4342 {
4343 hddLog(VOS_TRACE_LEVEL_INFO, "%s: setting unicast cipher type to %d",
4344 __func__, encryptionType);
4345 pHddStaCtx->conn_info.ucEncryptionType = encryptionType;
4346 pWextState->roamProfile.EncryptionType.numEntries = 1;
4347 pWextState->roamProfile.EncryptionType.encryptionType[0] =
4348 encryptionType;
4349 }
4350 else
4351 {
4352 hddLog(VOS_TRACE_LEVEL_INFO, "%s: setting mcast cipher type to %d",
4353 __func__, encryptionType);
4354 pHddStaCtx->conn_info.mcEncryptionType = encryptionType;
4355 pWextState->roamProfile.mcEncryptionType.numEntries = 1;
4356 pWextState->roamProfile.mcEncryptionType.encryptionType[0] = encryptionType;
4357 }
4358
4359 return 0;
4360}
4361
4362
4363/*
4364 * FUNCTION: wlan_hdd_cfg80211_set_ie
4365 * This function is used to parse WPA/RSN IE's.
4366 */
4367int wlan_hdd_cfg80211_set_ie( hdd_adapter_t *pAdapter,
4368 u8 *ie,
4369 size_t ie_len
4370 )
4371{
4372 hdd_wext_state_t *pWextState = WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter);
4373 u8 *genie = ie;
4374 v_U16_t remLen = ie_len;
4375#ifdef FEATURE_WLAN_WAPI
4376 v_U32_t akmsuite[MAX_NUM_AKM_SUITES];
4377 u16 *tmp;
4378 v_U16_t akmsuiteCount;
4379 int *akmlist;
4380#endif
4381 ENTER();
4382
4383 /* clear previous assocAddIE */
4384 pWextState->assocAddIE.length = 0;
4385 pWextState->roamProfile.bWPSAssociation = VOS_FALSE;
4386
4387 while (remLen >= 2)
4388 {
4389 v_U16_t eLen = 0;
4390 v_U8_t elementId;
4391 elementId = *genie++;
4392 eLen = *genie++;
4393 remLen -= 2;
4394
4395 hddLog(VOS_TRACE_LEVEL_INFO, "%s: IE[0x%X], LEN[%d]\n",
4396 __func__, elementId, eLen);
4397
4398 switch ( elementId )
4399 {
4400 case DOT11F_EID_WPA:
Madan Mohan Koyyalamudief3b66e2012-10-11 14:29:42 -07004401 if (4 > eLen) /* should have at least OUI which is 4 bytes so extra 2 bytes not needed */
Jeff Johnson295189b2012-06-20 16:38:30 -07004402 {
4403 hddLog(VOS_TRACE_LEVEL_ERROR,
4404 "%s: Invalid WPA IE", __func__);
4405 return -EINVAL;
4406 }
4407 else if (0 == memcmp(&genie[0], "\x00\x50\xf2\x04", 4))
4408 {
4409 v_U16_t curAddIELen = pWextState->assocAddIE.length;
4410 hddLog (VOS_TRACE_LEVEL_INFO, "%s Set WPS IE(len %d)",
4411 __func__, eLen + 2);
4412
4413 if( SIR_MAC_MAX_IE_LENGTH < (pWextState->assocAddIE.length + eLen) )
4414 {
4415 hddLog(VOS_TRACE_LEVEL_FATAL, "Cannot accomadate assocAddIE. "
4416 "Need bigger buffer space\n");
4417 VOS_ASSERT(0);
4418 return -ENOMEM;
4419 }
4420 // WSC IE is saved to Additional IE ; it should be accumulated to handle WPS IE + P2P IE
4421 memcpy( pWextState->assocAddIE.addIEdata + curAddIELen, genie - 2, eLen + 2);
4422 pWextState->assocAddIE.length += eLen + 2;
4423
4424 pWextState->roamProfile.bWPSAssociation = VOS_TRUE;
4425 pWextState->roamProfile.pAddIEAssoc = pWextState->assocAddIE.addIEdata;
4426 pWextState->roamProfile.nAddIEAssocLength = pWextState->assocAddIE.length;
4427 }
4428 else if (0 == memcmp(&genie[0], "\x00\x50\xf2", 3))
4429 {
4430 hddLog (VOS_TRACE_LEVEL_INFO, "%s Set WPA IE (len %d)",__func__, eLen + 2);
4431 memset( pWextState->WPARSNIE, 0, MAX_WPA_RSN_IE_LEN );
4432 memcpy( pWextState->WPARSNIE, genie - 2, (eLen + 2) /*ie_len*/);
4433 pWextState->roamProfile.pWPAReqIE = pWextState->WPARSNIE;
4434 pWextState->roamProfile.nWPAReqIELength = eLen + 2;//ie_len;
4435 }
4436#ifdef WLAN_FEATURE_P2P
4437 else if ( (0 == memcmp(&genie[0], P2P_OUI_TYPE,
4438 P2P_OUI_TYPE_SIZE))
4439 /*Consider P2P IE, only for P2P Client */
4440 && (WLAN_HDD_P2P_CLIENT == pAdapter->device_mode) )
4441 {
4442 v_U16_t curAddIELen = pWextState->assocAddIE.length;
4443 hddLog (VOS_TRACE_LEVEL_INFO, "%s Set P2P IE(len %d)",
4444 __func__, eLen + 2);
4445
4446 if( SIR_MAC_MAX_IE_LENGTH < (pWextState->assocAddIE.length + eLen) )
4447 {
4448 hddLog(VOS_TRACE_LEVEL_FATAL, "Cannot accomadate assocAddIE "
4449 "Need bigger buffer space\n");
4450 VOS_ASSERT(0);
4451 return -ENOMEM;
4452 }
4453 // P2P IE is saved to Additional IE ; it should be accumulated to handle WPS IE + P2P IE
4454 memcpy( pWextState->assocAddIE.addIEdata + curAddIELen, genie - 2, eLen + 2);
4455 pWextState->assocAddIE.length += eLen + 2;
4456
4457 pWextState->roamProfile.pAddIEAssoc = pWextState->assocAddIE.addIEdata;
4458 pWextState->roamProfile.nAddIEAssocLength = pWextState->assocAddIE.length;
4459 }
4460#endif
4461#ifdef WLAN_FEATURE_WFD
4462 else if ( (0 == memcmp(&genie[0], WFD_OUI_TYPE,
4463 WFD_OUI_TYPE_SIZE))
4464 /*Consider WFD IE, only for P2P Client */
4465 && (WLAN_HDD_P2P_CLIENT == pAdapter->device_mode) )
4466 {
4467 v_U16_t curAddIELen = pWextState->assocAddIE.length;
4468 hddLog (VOS_TRACE_LEVEL_INFO, "%s Set WFD IE(len %d)",
4469 __func__, eLen + 2);
4470
4471 if( SIR_MAC_MAX_IE_LENGTH < (pWextState->assocAddIE.length + eLen) )
4472 {
4473 hddLog(VOS_TRACE_LEVEL_FATAL, "Cannot accomadate assocAddIE "
4474 "Need bigger buffer space\n");
4475 VOS_ASSERT(0);
4476 return -ENOMEM;
4477 }
4478 // WFD IE is saved to Additional IE ; it should be accumulated to handle
4479 // WPS IE + P2P IE + WFD IE
4480 memcpy( pWextState->assocAddIE.addIEdata + curAddIELen, genie - 2, eLen + 2);
4481 pWextState->assocAddIE.length += eLen + 2;
4482
4483 pWextState->roamProfile.pAddIEAssoc = pWextState->assocAddIE.addIEdata;
4484 pWextState->roamProfile.nAddIEAssocLength = pWextState->assocAddIE.length;
4485 }
4486#endif
Madan Mohan Koyyalamudief3b66e2012-10-11 14:29:42 -07004487 /* Appending HS 2.0 Indication Element in Assiciation Request */
4488 else if ( (0 == memcmp(&genie[0], HS20_OUI_TYPE,
Madan Mohan Koyyalamudi1bed5982012-10-22 14:38:06 -07004489 HS20_OUI_TYPE_SIZE)) )
4490 {
4491 v_U16_t curAddIELen = pWextState->assocAddIE.length;
4492 hddLog (VOS_TRACE_LEVEL_INFO, "%s Set HS20 IE(len %d)",
4493 __func__, eLen + 2);
Madan Mohan Koyyalamudief3b66e2012-10-11 14:29:42 -07004494
Madan Mohan Koyyalamudi1bed5982012-10-22 14:38:06 -07004495 if( SIR_MAC_MAX_IE_LENGTH < (pWextState->assocAddIE.length + eLen) )
4496 {
4497 hddLog(VOS_TRACE_LEVEL_FATAL, "Cannot accomadate assocAddIE "
4498 "Need bigger buffer space\n");
4499 VOS_ASSERT(0);
4500 return -ENOMEM;
4501 }
4502 memcpy( pWextState->assocAddIE.addIEdata + curAddIELen, genie - 2, eLen + 2);
4503 pWextState->assocAddIE.length += eLen + 2;
Madan Mohan Koyyalamudief3b66e2012-10-11 14:29:42 -07004504
Madan Mohan Koyyalamudi1bed5982012-10-22 14:38:06 -07004505 pWextState->roamProfile.pAddIEAssoc = pWextState->assocAddIE.addIEdata;
4506 pWextState->roamProfile.nAddIEAssocLength = pWextState->assocAddIE.length;
4507 }
Madan Mohan Koyyalamudief3b66e2012-10-11 14:29:42 -07004508
Jeff Johnson295189b2012-06-20 16:38:30 -07004509 break;
4510 case DOT11F_EID_RSN:
4511 hddLog (VOS_TRACE_LEVEL_INFO, "%s Set RSN IE(len %d)",__func__, eLen + 2);
4512 memset( pWextState->WPARSNIE, 0, MAX_WPA_RSN_IE_LEN );
4513 memcpy( pWextState->WPARSNIE, genie - 2, (eLen + 2)/*ie_len*/);
4514 pWextState->roamProfile.pRSNReqIE = pWextState->WPARSNIE;
4515 pWextState->roamProfile.nRSNReqIELength = eLen + 2; //ie_len;
4516 break;
Madan Mohan Koyyalamudief3b66e2012-10-11 14:29:42 -07004517 /* Appending Extended Capabilities with Interworking bit set in Assoc Req */
4518 case DOT11F_EID_EXTCAP:
4519 {
4520 v_U16_t curAddIELen = pWextState->assocAddIE.length;
4521 hddLog (VOS_TRACE_LEVEL_INFO, "%s Set Extended CAPS IE(len %d)",
4522 __func__, eLen + 2);
4523
4524 if( SIR_MAC_MAX_IE_LENGTH < (pWextState->assocAddIE.length + eLen) )
4525 {
4526 hddLog(VOS_TRACE_LEVEL_FATAL, "Cannot accomadate assocAddIE "
4527 "Need bigger buffer space\n");
4528 VOS_ASSERT(0);
4529 return -ENOMEM;
4530 }
4531 memcpy( pWextState->assocAddIE.addIEdata + curAddIELen, genie - 2, eLen + 2);
4532 pWextState->assocAddIE.length += eLen + 2;
4533
4534 pWextState->roamProfile.pAddIEAssoc = pWextState->assocAddIE.addIEdata;
4535 pWextState->roamProfile.nAddIEAssocLength = pWextState->assocAddIE.length;
4536 break;
4537 }
Jeff Johnson295189b2012-06-20 16:38:30 -07004538#ifdef FEATURE_WLAN_WAPI
4539 case WLAN_EID_WAPI:
4540 pAdapter->wapi_info.nWapiMode = 1; //Setting WAPI Mode to ON=1
4541 hddLog(VOS_TRACE_LEVEL_INFO,"WAPI MODE IS %lu \n",
4542 pAdapter->wapi_info.nWapiMode);
4543 tmp = (u16 *)ie;
4544 tmp = tmp + 2; // Skip element Id and Len, Version
4545 akmsuiteCount = WPA_GET_LE16(tmp);
4546 tmp = tmp + 1;
4547 akmlist = (int *)(tmp);
4548 if(akmsuiteCount <= MAX_NUM_AKM_SUITES)
4549 {
4550 memcpy(akmsuite, akmlist, (4*akmsuiteCount));
4551 }
4552 else
4553 {
4554 hddLog(VOS_TRACE_LEVEL_FATAL, "Invalid akmSuite count\n");
4555 VOS_ASSERT(0);
4556 return -EINVAL;
4557 }
4558
4559 if (WAPI_PSK_AKM_SUITE == akmsuite[0])
4560 {
4561 hddLog(VOS_TRACE_LEVEL_INFO, "%s: WAPI AUTH MODE SET TO PSK",
4562 __FUNCTION__);
4563 pAdapter->wapi_info.wapiAuthMode = WAPI_AUTH_MODE_PSK;
4564 }
4565 if (WAPI_CERT_AKM_SUITE == akmsuite[0])
4566 {
4567 hddLog(VOS_TRACE_LEVEL_INFO, "%s: WAPI AUTH MODE SET TO CERTIFICATE",
4568 __FUNCTION__);
4569 pAdapter->wapi_info.wapiAuthMode = WAPI_AUTH_MODE_CERT;
4570 }
4571 break;
4572#endif
4573 default:
4574 hddLog (VOS_TRACE_LEVEL_ERROR,
4575 "%s Set UNKNOWN IE %X", __func__, elementId);
Madan Mohan Koyyalamudief3b66e2012-10-11 14:29:42 -07004576 /* when Unknown IE is received we should break and continue
4577 * to the next IE in the buffer instead we were returning
4578 * so changing this to break */
4579 break;
Jeff Johnson295189b2012-06-20 16:38:30 -07004580 }
4581 genie += eLen;
4582 remLen -= eLen;
4583 }
4584 EXIT();
4585 return 0;
4586}
4587
4588/*
4589 * FUNCTION: wlan_hdd_cfg80211_set_privacy
4590 * This function is used to initialize the security
4591 * parameters during connect operation.
4592 */
4593int wlan_hdd_cfg80211_set_privacy( hdd_adapter_t *pAdapter,
4594 struct cfg80211_connect_params *req
4595 )
4596{
4597 int status = 0;
4598 hdd_wext_state_t *pWextState = WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter);
4599 ENTER();
4600
4601 /*set wpa version*/
4602 pWextState->wpaVersion = IW_AUTH_WPA_VERSION_DISABLED;
4603
4604 if (req->crypto.wpa_versions)
4605 {
4606 if ( (NL80211_WPA_VERSION_1 == req->crypto.wpa_versions)
4607 && ( (req->ie_len)
4608 && (0 == memcmp( &req->ie[2], "\x00\x50\xf2",3) ) ) )
4609 // Make sure that it is including a WPA IE.
4610 /* Currently NL is putting WPA version 1 even for open,
4611 * since p2p ie is also put in same buffer.
4612 * */
4613 {
4614 pWextState->wpaVersion = IW_AUTH_WPA_VERSION_WPA;
4615 }
4616 else if (NL80211_WPA_VERSION_2 == req->crypto.wpa_versions)
4617 {
4618 pWextState->wpaVersion = IW_AUTH_WPA_VERSION_WPA2;
4619 }
4620 }
4621
4622 hddLog(VOS_TRACE_LEVEL_INFO, "%s: set wpa version to %d", __func__,
4623 pWextState->wpaVersion);
4624
4625 /*set authentication type*/
4626 status = wlan_hdd_cfg80211_set_auth_type(pAdapter, req->auth_type);
4627
4628 if (0 > status)
4629 {
4630 hddLog(VOS_TRACE_LEVEL_ERROR,
4631 "%s: failed to set authentication type ", __func__);
4632 return status;
4633 }
4634
4635 /*set key mgmt type*/
4636 if (req->crypto.n_akm_suites)
4637 {
4638 status = wlan_hdd_set_akm_suite(pAdapter, req->crypto.akm_suites[0]);
4639 if (0 > status)
4640 {
4641 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: failed to set akm suite",
4642 __func__);
4643 return status;
4644 }
4645 }
4646
4647 /*set pairwise cipher type*/
4648 if (req->crypto.n_ciphers_pairwise)
4649 {
4650 status = wlan_hdd_cfg80211_set_cipher(pAdapter,
4651 req->crypto.ciphers_pairwise[0], true);
4652 if (0 > status)
4653 {
4654 hddLog(VOS_TRACE_LEVEL_ERROR,
4655 "%s: failed to set unicast cipher type", __func__);
4656 return status;
4657 }
4658 }
4659 else
4660 {
4661 /*Reset previous cipher suite to none*/
4662 status = wlan_hdd_cfg80211_set_cipher(pAdapter, 0, true);
4663 if (0 > status)
4664 {
4665 hddLog(VOS_TRACE_LEVEL_ERROR,
4666 "%s: failed to set unicast cipher type", __func__);
4667 return status;
4668 }
4669 }
4670
4671 /*set group cipher type*/
4672 status = wlan_hdd_cfg80211_set_cipher(pAdapter, req->crypto.cipher_group,
4673 false);
4674
4675 if (0 > status)
4676 {
4677 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: failed to set mcast cipher type",
4678 __func__);
4679 return status;
4680 }
4681
4682 /*parse WPA/RSN IE, and set the correspoing fileds in Roam profile*/
4683 if (req->ie_len)
4684 {
4685 status = wlan_hdd_cfg80211_set_ie(pAdapter, req->ie, req->ie_len);
4686 if ( 0 > status)
4687 {
4688 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: failed to parse the WPA/RSN IE",
4689 __func__);
4690 return status;
4691 }
4692 }
4693
4694 /*incase of WEP set default key information*/
4695 if (req->key && req->key_len)
4696 {
4697 if ( (WLAN_CIPHER_SUITE_WEP40 == req->crypto.ciphers_pairwise[0])
4698 || (WLAN_CIPHER_SUITE_WEP104 == req->crypto.ciphers_pairwise[0])
4699 )
4700 {
4701 if ( IW_AUTH_KEY_MGMT_802_1X
4702 == (pWextState->authKeyMgmt & IW_AUTH_KEY_MGMT_802_1X ))
4703 {
4704 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: Dynamic WEP not supported",
4705 __func__);
4706 return -EOPNOTSUPP;
4707 }
4708 else
4709 {
4710 u8 key_len = req->key_len;
4711 u8 key_idx = req->key_idx;
4712
4713 if ((eCSR_SECURITY_WEP_KEYSIZE_MAX_BYTES >= key_len)
4714 && (CSR_MAX_NUM_KEY > key_idx)
4715 )
4716 {
4717 hddLog(VOS_TRACE_LEVEL_INFO,
4718 "%s: setting default wep key, key_idx = %hu key_len %hu",
4719 __func__, key_idx, key_len);
4720 vos_mem_copy(
4721 &pWextState->roamProfile.Keys.KeyMaterial[key_idx][0],
4722 req->key, key_len);
4723 pWextState->roamProfile.Keys.KeyLength[key_idx] =
4724 (u8)key_len;
4725 pWextState->roamProfile.Keys.defaultIndex = (u8)key_idx;
4726 }
4727 }
4728 }
4729 }
4730
4731 return status;
4732}
4733
4734/*
4735 * FUNCTION: wlan_hdd_cfg80211_set_privacy
4736 * This function is used to initialize the security
4737 * parameters during connect operation.
4738 */
4739static int wlan_hdd_cfg80211_connect( struct wiphy *wiphy,
4740 struct net_device *ndev,
4741 struct cfg80211_connect_params *req
4742 )
4743{
4744 int status = 0;
4745 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR( ndev );
4746 VOS_STATUS exitbmpsStatus = VOS_STATUS_E_INVAL;
4747 hdd_context_t *pHddCtx = NULL;
4748
4749 ENTER();
4750
4751 hddLog(VOS_TRACE_LEVEL_INFO,
4752 "%s: device_mode = %d\n",__func__,pAdapter->device_mode);
4753
4754 if ( (WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress )
4755 {
4756 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
4757 "%s:LOGP in Progress. Ignore!!!", __func__);
4758 return -EAGAIN;
4759 }
4760
4761#ifdef WLAN_BTAMP_FEATURE
4762 //Infra connect not supported when AMP traffic is on.
4763 if( VOS_TRUE == WLANBAP_AmpSessionOn() )
4764 {
4765 hddLog(VOS_TRACE_LEVEL_ERROR,
4766 "%s: No connection when AMP is on", __func__);
4767 return -1;
4768 }
4769#endif
4770 /*initialise security parameters*/
4771 status = wlan_hdd_cfg80211_set_privacy(pAdapter, req);
4772
4773 if ( 0 > status)
4774 {
4775 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: failed to set security params",
4776 __func__);
4777 return status;
4778 }
4779
4780 //If Device Mode is Station Concurrent Sessions Exit BMps
4781 //P2P Mode will be taken care in Open/close adaptor
4782 if((WLAN_HDD_INFRA_STATION == pAdapter->device_mode) &&
4783 (vos_concurrent_sessions_running()))
4784 {
4785 v_CONTEXT_t pVosContext = vos_get_global_context( VOS_MODULE_ID_HDD, NULL );
4786
4787 if (NULL != pVosContext)
4788 {
4789 pHddCtx = vos_get_context( VOS_MODULE_ID_HDD, pVosContext);
4790 if(NULL != pHddCtx)
4791 {
4792 exitbmpsStatus = hdd_disable_bmps_imps(pHddCtx, WLAN_HDD_INFRA_STATION);
4793 }
4794 }
4795 }
4796
Mohit Khanna765234a2012-09-11 15:08:35 -07004797 if ( req->channel )
4798 {
4799 status = wlan_hdd_cfg80211_connect_start(pAdapter, req->ssid,
4800 req->ssid_len, req->bssid,
4801 req->channel->hw_value);
4802 }
4803 else
4804 {
4805 status = wlan_hdd_cfg80211_connect_start(pAdapter, req->ssid,
4806 req->ssid_len, req->bssid,
4807 0);
4808 }
Jeff Johnson295189b2012-06-20 16:38:30 -07004809
4810 if (0 > status)
4811 {
4812 //ReEnable BMPS if disabled
4813 if((VOS_STATUS_SUCCESS == exitbmpsStatus) &&
4814 (NULL != pHddCtx))
4815 {
4816 //ReEnable Bmps and Imps back
4817 hdd_enable_bmps_imps(pHddCtx);
4818 }
4819
4820 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: connect failed", __func__);
4821 return status;
4822 }
4823 (WLAN_HDD_GET_CTX(pAdapter))->isAmpAllowed = VOS_FALSE;
4824 EXIT();
4825 return status;
4826}
4827
4828
4829/*
4830 * FUNCTION: wlan_hdd_cfg80211_disconnect
4831 * This function is used to issue a disconnect request to SME
4832 */
4833static int wlan_hdd_cfg80211_disconnect( struct wiphy *wiphy,
4834 struct net_device *dev,
4835 u16 reason
4836 )
4837{
4838 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR( dev );
4839 tCsrRoamProfile *pRoamProfile =
4840 &(WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter))->roamProfile;
4841 int status = 0;
4842 hdd_station_ctx_t *pHddStaCtx = WLAN_HDD_GET_STATION_CTX_PTR(pAdapter);
4843
4844 ENTER();
4845
4846 hddLog(VOS_TRACE_LEVEL_INFO, "%s: device_mode = %d\n",
4847 __func__,pAdapter->device_mode);
4848
4849 hddLog(VOS_TRACE_LEVEL_INFO, "%s: Disconnect called with reason code %d",
4850 __func__, reason);
4851
4852 if ((WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress)
4853 {
4854 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
4855 "%s:LOGP in Progress. Ignore!!!",__func__);
4856 return -EAGAIN;
4857 }
4858 if (NULL != pRoamProfile)
4859 {
4860 /*issue disconnect request to SME, if station is in connected state*/
4861 if (pHddStaCtx->conn_info.connState == eConnectionState_Associated)
4862 {
4863 eCsrRoamDisconnectReason reasonCode =
4864 eCSR_DISCONNECT_REASON_UNSPECIFIED;
4865 switch(reason)
4866 {
4867 case WLAN_REASON_MIC_FAILURE:
4868 reasonCode = eCSR_DISCONNECT_REASON_MIC_ERROR;
4869 break;
4870
4871 case WLAN_REASON_DISASSOC_DUE_TO_INACTIVITY:
4872 case WLAN_REASON_DISASSOC_AP_BUSY:
4873 case WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA:
4874 reasonCode = eCSR_DISCONNECT_REASON_DISASSOC;
4875 break;
4876
4877 case WLAN_REASON_PREV_AUTH_NOT_VALID:
4878 case WLAN_REASON_CLASS2_FRAME_FROM_NONAUTH_STA:
4879 reasonCode = eCSR_DISCONNECT_REASON_DEAUTH;
4880 break;
4881
4882 case WLAN_REASON_DEAUTH_LEAVING:
4883 default:
4884 reasonCode = eCSR_DISCONNECT_REASON_UNSPECIFIED;
4885 break;
4886 }
4887 pHddStaCtx->conn_info.connState = eConnectionState_NotConnected;
4888 (WLAN_HDD_GET_CTX(pAdapter))->isAmpAllowed = VOS_TRUE;
4889 INIT_COMPLETION(pAdapter->disconnect_comp_var);
4890
4891 /*issue disconnect*/
4892 status = sme_RoamDisconnect( WLAN_HDD_GET_HAL_CTX(pAdapter),
4893 pAdapter->sessionId, reasonCode);
4894
4895 if ( 0 != status)
4896 {
4897 hddLog(VOS_TRACE_LEVEL_ERROR,
4898 "%s csrRoamDisconnect failure, returned %d \n",
4899 __func__, (int)status );
4900 return -EINVAL;
4901 }
4902
4903 wait_for_completion_interruptible_timeout(
4904 &pAdapter->disconnect_comp_var,
4905 msecs_to_jiffies(WLAN_WAIT_TIME_DISCONNECT));
4906
4907
4908 /*stop tx queues*/
4909 netif_tx_disable(dev);
4910 netif_carrier_off(dev);
4911 }
4912 }
4913 else
4914 {
4915 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: No valid roam profile", __func__);
4916 }
4917
4918 return status;
4919}
4920
4921/*
4922 * FUNCTION: wlan_hdd_cfg80211_set_privacy_ibss
4923 * This function is used to initialize the security
4924 * settings in IBSS mode.
4925 */
4926static int wlan_hdd_cfg80211_set_privacy_ibss(
4927 hdd_adapter_t *pAdapter,
4928 struct cfg80211_ibss_params *params
4929 )
4930{
4931 int status = 0;
4932 hdd_wext_state_t *pWextState = WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter);
4933 eCsrEncryptionType encryptionType = eCSR_ENCRYPT_TYPE_NONE;
4934 hdd_station_ctx_t *pHddStaCtx = WLAN_HDD_GET_STATION_CTX_PTR(pAdapter);
4935
4936 ENTER();
4937
4938 pWextState->wpaVersion = IW_AUTH_WPA_VERSION_DISABLED;
4939
4940 if (params->ie_len && ( NULL != params->ie) )
4941 {
4942 if (WLAN_EID_RSN == params->ie[0])
4943 {
4944 pWextState->wpaVersion = IW_AUTH_WPA_VERSION_WPA2;
4945 encryptionType = eCSR_ENCRYPT_TYPE_AES;
4946 }
4947 else
4948 {
4949 pWextState->wpaVersion = IW_AUTH_WPA_VERSION_WPA;
4950 encryptionType = eCSR_ENCRYPT_TYPE_TKIP;
4951 }
4952 status = wlan_hdd_cfg80211_set_ie(pAdapter, params->ie, params->ie_len);
4953
4954 if (0 > status)
4955 {
4956 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: failed to parse WPA/RSN IE",
4957 __func__);
4958 return status;
4959 }
4960 }
4961
4962 pWextState->roamProfile.AuthType.authType[0] =
4963 pHddStaCtx->conn_info.authType =
4964 eCSR_AUTH_TYPE_OPEN_SYSTEM;
4965
4966 if (params->privacy)
4967 {
4968 /* Security enabled IBSS, At this time there is no information available
4969 * about the security paramters, so initialise the encryption type to
4970 * eCSR_ENCRYPT_TYPE_WEP40_STATICKEY.
4971 * The correct security parameters will be updated later in
4972 * wlan_hdd_cfg80211_add_key */
4973 /* Hal expects encryption type to be set inorder
4974 *enable privacy bit in beacons */
4975
4976 encryptionType = eCSR_ENCRYPT_TYPE_WEP40_STATICKEY;
4977 }
4978
4979 pHddStaCtx->conn_info.ucEncryptionType = encryptionType;
4980 pWextState->roamProfile.EncryptionType.numEntries = 1;
4981 pWextState->roamProfile.EncryptionType.encryptionType[0] = encryptionType;
4982
4983 return status;
4984}
4985
4986/*
4987 * FUNCTION: wlan_hdd_cfg80211_join_ibss
4988 * This function is used to create/join an IBSS
4989 */
4990static int wlan_hdd_cfg80211_join_ibss( struct wiphy *wiphy,
4991 struct net_device *dev,
4992 struct cfg80211_ibss_params *params
4993 )
4994{
4995 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR( dev );
4996 hdd_wext_state_t *pWextState = WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter);
4997 tCsrRoamProfile *pRoamProfile;
4998 int status;
4999 hdd_station_ctx_t *pHddStaCtx = WLAN_HDD_GET_STATION_CTX_PTR(pAdapter);
5000
5001 ENTER();
5002
5003 hddLog(VOS_TRACE_LEVEL_INFO,
5004 "%s: device_mode = %d\n",__func__,pAdapter->device_mode);
5005
5006 if ( (WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress )
5007 {
5008 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
5009 "%s:LOGP in Progress. Ignore!!!", __func__);
5010 return -EAGAIN;
5011 }
5012
5013 if (NULL == pWextState)
5014 {
5015 hddLog (VOS_TRACE_LEVEL_ERROR, "%s ERROR: Data Storage Corruption\n",
5016 __func__);
5017 return -EIO;
5018 }
5019
5020 pRoamProfile = &pWextState->roamProfile;
5021
5022 if ( eCSR_BSS_TYPE_START_IBSS != pRoamProfile->BSSType )
5023 {
5024 hddLog (VOS_TRACE_LEVEL_ERROR,
5025 "%s Interface type is not set to IBSS \n", __func__);
5026 return -EINVAL;
5027 }
5028
5029 /* Set Channel */
5030 if (NULL != params->channel)
5031 {
5032 u8 channelNum;
5033 if (IEEE80211_BAND_5GHZ == params->channel->band)
5034 {
5035 hddLog(VOS_TRACE_LEVEL_ERROR,
5036 "%s: IBSS join is called with unsupported band %d",
5037 __func__, params->channel->band);
5038 return -EOPNOTSUPP;
5039 }
5040
5041 /* Get channel number */
5042 channelNum =
5043 ieee80211_frequency_to_channel(params->channel->center_freq);
5044
5045 /*TODO: use macro*/
5046 if (14 >= channelNum)
5047 {
5048 v_U32_t numChans = WNI_CFG_VALID_CHANNEL_LIST_LEN;
5049 v_U8_t validChan[WNI_CFG_VALID_CHANNEL_LIST_LEN];
5050 tHalHandle hHal = WLAN_HDD_GET_HAL_CTX(pAdapter);
5051 int indx;
5052
5053 if (0 != ccmCfgGetStr(hHal, WNI_CFG_VALID_CHANNEL_LIST,
5054 validChan, &numChans))
5055 {
5056 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: No valid channel list",
5057 __func__);
5058 return -EOPNOTSUPP;
5059 }
5060
5061 for (indx = 0; indx < numChans; indx++)
5062 {
5063 if (channelNum == validChan[indx])
5064 {
5065 break;
5066 }
5067 }
5068 if (indx >= numChans)
5069 {
5070 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: Not valid Channel %d",
5071 __func__, channelNum);
5072 return -EINVAL;
5073 }
5074 /* Set the Operational Channel */
5075 hddLog(VOS_TRACE_LEVEL_INFO_HIGH, "%s: set channel %d", __func__,
5076 channelNum);
5077 pRoamProfile->ChannelInfo.numOfChannels = 1;
5078 pHddStaCtx->conn_info.operationChannel = channelNum;
5079 pRoamProfile->ChannelInfo.ChannelList =
5080 &pHddStaCtx->conn_info.operationChannel;
5081 }
5082 else
5083 {
5084 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: Not valid Channel %hu",
5085 __func__, channelNum);
5086 return -EINVAL;
5087 }
5088 }
5089
5090 /* Initialize security parameters */
5091 status = wlan_hdd_cfg80211_set_privacy_ibss(pAdapter, params);
5092 if (status < 0)
5093 {
5094 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: failed to set security parameters",
5095 __func__);
5096 return status;
5097 }
5098
5099 /* Issue connect start */
5100 status = wlan_hdd_cfg80211_connect_start(pAdapter, params->ssid,
Jeff Johnson32d95a32012-09-10 13:15:23 -07005101 params->ssid_len, params->bssid, 0);
Jeff Johnson295189b2012-06-20 16:38:30 -07005102
5103 if (0 > status)
5104 {
5105 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: connect failed", __func__);
5106 return status;
5107 }
5108
5109 return 0;
5110}
5111
5112/*
5113 * FUNCTION: wlan_hdd_cfg80211_leave_ibss
5114 * This function is used to leave an IBSS
5115 */
5116static int wlan_hdd_cfg80211_leave_ibss( struct wiphy *wiphy,
5117 struct net_device *dev
5118 )
5119{
5120 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR( dev );
5121 hdd_wext_state_t *pWextState = WLAN_HDD_GET_WEXT_STATE_PTR(pAdapter);
5122 tCsrRoamProfile *pRoamProfile;
5123
5124 ENTER();
5125
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005126 if ( (WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress )
5127 {
5128 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
5129 "%s:LOGP in Progress. Ignore!!!", __func__);
5130 return -EAGAIN;
5131 }
5132
Jeff Johnson295189b2012-06-20 16:38:30 -07005133 hddLog(VOS_TRACE_LEVEL_INFO, "%s: device_mode = %d\n",__func__,pAdapter->device_mode);
5134 if (NULL == pWextState)
5135 {
5136 hddLog (VOS_TRACE_LEVEL_ERROR, "%s ERROR: Data Storage Corruption\n",
5137 __func__);
5138 return -EIO;
5139 }
5140
5141 pRoamProfile = &pWextState->roamProfile;
5142
5143 /* Issue disconnect only if interface type is set to IBSS */
5144 if (eCSR_BSS_TYPE_START_IBSS != pRoamProfile->BSSType)
5145 {
5146 hddLog (VOS_TRACE_LEVEL_ERROR, "%s: BSS Type is not set to IBSS",
5147 __func__);
5148 return -EINVAL;
5149 }
5150
5151 /* Issue Disconnect request */
5152 INIT_COMPLETION(pAdapter->disconnect_comp_var);
5153 sme_RoamDisconnect( WLAN_HDD_GET_HAL_CTX(pAdapter), pAdapter->sessionId,
5154 eCSR_DISCONNECT_REASON_IBSS_LEAVE);
5155
5156 return 0;
5157}
5158
5159/*
5160 * FUNCTION: wlan_hdd_cfg80211_set_wiphy_params
5161 * This function is used to set the phy parameters
5162 * (RTS Threshold/FRAG Threshold/Retry Count etc ...)
5163 */
5164static int wlan_hdd_cfg80211_set_wiphy_params(struct wiphy *wiphy,
5165 u32 changed)
5166{
5167 hdd_context_t *pHddCtx = wiphy_priv(wiphy);
5168 tHalHandle hHal = pHddCtx->hHal;
5169
5170 ENTER();
5171
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005172 if ( pHddCtx->isLogpInProgress )
5173 {
5174 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
5175 "%s:LOGP in Progress. Ignore!!!", __func__);
5176 return -EAGAIN;
5177 }
5178
Jeff Johnson295189b2012-06-20 16:38:30 -07005179 if (changed & WIPHY_PARAM_RTS_THRESHOLD)
5180 {
5181 u16 rts_threshold = (wiphy->rts_threshold == -1) ?
5182 WNI_CFG_RTS_THRESHOLD_STAMAX :
5183 wiphy->rts_threshold;
5184
5185 if ((WNI_CFG_RTS_THRESHOLD_STAMIN > rts_threshold) ||
5186 (WNI_CFG_RTS_THRESHOLD_STAMAX < rts_threshold))
5187 {
5188 hddLog(VOS_TRACE_LEVEL_ERROR,
5189 "%s: Invalid RTS Threshold value %hu",
5190 __func__, rts_threshold);
5191 return -EINVAL;
5192 }
5193
5194 if (0 != ccmCfgSetInt(hHal, WNI_CFG_RTS_THRESHOLD,
5195 rts_threshold, ccmCfgSetCallback,
5196 eANI_BOOLEAN_TRUE))
5197 {
5198 hddLog(VOS_TRACE_LEVEL_ERROR,
5199 "%s: ccmCfgSetInt failed for rts_threshold value %hu",
5200 __func__, rts_threshold);
5201 return -EIO;
5202 }
5203
5204 hddLog(VOS_TRACE_LEVEL_INFO_MED, "%s: set rts threshold %hu", __func__,
5205 rts_threshold);
5206 }
5207
5208 if (changed & WIPHY_PARAM_FRAG_THRESHOLD)
5209 {
5210 u16 frag_threshold = (wiphy->frag_threshold == -1) ?
5211 WNI_CFG_FRAGMENTATION_THRESHOLD_STAMAX :
5212 wiphy->frag_threshold;
5213
5214 if ((WNI_CFG_FRAGMENTATION_THRESHOLD_STAMIN > frag_threshold)||
5215 (WNI_CFG_FRAGMENTATION_THRESHOLD_STAMAX < frag_threshold) )
5216 {
5217 hddLog(VOS_TRACE_LEVEL_ERROR,
5218 "%s: Invalid frag_threshold value %hu", __func__,
5219 frag_threshold);
5220 return -EINVAL;
5221 }
5222
5223 if (0 != ccmCfgSetInt(hHal, WNI_CFG_FRAGMENTATION_THRESHOLD,
5224 frag_threshold, ccmCfgSetCallback,
5225 eANI_BOOLEAN_TRUE))
5226 {
5227 hddLog(VOS_TRACE_LEVEL_ERROR,
5228 "%s: ccmCfgSetInt failed for frag_threshold value %hu",
5229 __func__, frag_threshold);
5230 return -EIO;
5231 }
5232
5233 hddLog(VOS_TRACE_LEVEL_INFO_MED, "%s: set frag threshold %hu", __func__,
5234 frag_threshold);
5235 }
5236
5237 if ((changed & WIPHY_PARAM_RETRY_SHORT)
5238 || (changed & WIPHY_PARAM_RETRY_LONG))
5239 {
5240 u8 retry_value = (changed & WIPHY_PARAM_RETRY_SHORT) ?
5241 wiphy->retry_short :
5242 wiphy->retry_long;
5243
5244 if ((WNI_CFG_LONG_RETRY_LIMIT_STAMIN > retry_value) ||
5245 (WNI_CFG_LONG_RETRY_LIMIT_STAMAX < retry_value))
5246 {
5247 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: Invalid Retry count %hu",
5248 __func__, retry_value);
5249 return -EINVAL;
5250 }
5251
5252 if (changed & WIPHY_PARAM_RETRY_SHORT)
5253 {
5254 if (0 != ccmCfgSetInt(hHal, WNI_CFG_LONG_RETRY_LIMIT,
5255 retry_value, ccmCfgSetCallback,
5256 eANI_BOOLEAN_TRUE))
5257 {
5258 hddLog(VOS_TRACE_LEVEL_ERROR,
5259 "%s: ccmCfgSetInt failed for long retry count %hu",
5260 __func__, retry_value);
5261 return -EIO;
5262 }
5263 hddLog(VOS_TRACE_LEVEL_INFO_MED, "%s: set long retry count %hu",
5264 __func__, retry_value);
5265 }
5266 else if (changed & WIPHY_PARAM_RETRY_SHORT)
5267 {
5268 if (0 != ccmCfgSetInt(hHal, WNI_CFG_SHORT_RETRY_LIMIT,
5269 retry_value, ccmCfgSetCallback,
5270 eANI_BOOLEAN_TRUE))
5271 {
5272 hddLog(VOS_TRACE_LEVEL_ERROR,
5273 "%s: ccmCfgSetInt failed for short retry count %hu",
5274 __func__, retry_value);
5275 return -EIO;
5276 }
5277 hddLog(VOS_TRACE_LEVEL_INFO_MED, "%s: set short retry count %hu",
5278 __func__, retry_value);
5279 }
5280 }
5281
5282 return 0;
5283}
5284
5285/*
5286 * FUNCTION: wlan_hdd_cfg80211_set_txpower
5287 * This function is used to set the txpower
5288 */
5289static int wlan_hdd_cfg80211_set_txpower(struct wiphy *wiphy,
5290#if LINUX_VERSION_CODE <= KERNEL_VERSION(2,6,35)
5291 enum tx_power_setting type,
5292#else
5293 enum nl80211_tx_power_setting type,
5294#endif
5295 int dbm)
5296{
5297 hdd_context_t *pHddCtx = (hdd_context_t*) wiphy_priv(wiphy);
5298 tHalHandle hHal = pHddCtx->hHal;
5299 tSirMacAddr bssid = {0xFF,0xFF,0xFF,0xFF,0xFF,0xFF};
5300 tSirMacAddr selfMac = {0xFF,0xFF,0xFF,0xFF,0xFF,0xFF};
5301
5302 ENTER();
5303
5304 if (0 != ccmCfgSetInt(hHal, WNI_CFG_CURRENT_TX_POWER_LEVEL,
5305 dbm, ccmCfgSetCallback,
5306 eANI_BOOLEAN_TRUE))
5307 {
5308 hddLog(VOS_TRACE_LEVEL_ERROR,
5309 "%s: ccmCfgSetInt failed for tx power %hu", __func__, dbm);
5310 return -EIO;
5311 }
5312
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005313 if ( pHddCtx->isLogpInProgress )
5314 {
5315 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
5316 "%s:LOGP in Progress. Ignore!!!", __func__);
5317 return -EAGAIN;
5318 }
5319
Jeff Johnson295189b2012-06-20 16:38:30 -07005320 hddLog(VOS_TRACE_LEVEL_INFO_MED, "%s: set tx power level %d dbm", __func__,
5321 dbm);
5322
5323 switch(type)
5324 {
5325 case NL80211_TX_POWER_AUTOMATIC: /*automatically determine transmit power*/
5326 /* Fall through */
5327 case NL80211_TX_POWER_LIMITED: /*limit TX power by the mBm parameter*/
5328 if( sme_SetMaxTxPower(hHal, bssid, selfMac, dbm) != eHAL_STATUS_SUCCESS )
5329 {
5330 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: Setting maximum tx power failed",
5331 __func__);
5332 return -EIO;
5333 }
5334 break;
5335 case NL80211_TX_POWER_FIXED: /*fix TX power to the mBm parameter*/
5336 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: NL80211_TX_POWER_FIXED not supported",
5337 __func__);
5338 return -EOPNOTSUPP;
5339 break;
5340 default:
5341 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: Invalid power setting type %d",
5342 __func__, type);
5343 return -EIO;
5344 }
5345
5346 return 0;
5347}
5348
5349/*
5350 * FUNCTION: wlan_hdd_cfg80211_get_txpower
5351 * This function is used to read the txpower
5352 */
5353static int wlan_hdd_cfg80211_get_txpower(struct wiphy *wiphy, int *dbm)
5354{
5355
5356 hdd_adapter_t *pAdapter;
5357 hdd_context_t *pHddCtx = (hdd_context_t*) wiphy_priv(wiphy);
5358
Jeff Johnsone7245742012-09-05 17:12:55 -07005359 ENTER();
5360
Jeff Johnson295189b2012-06-20 16:38:30 -07005361 if (NULL == pHddCtx)
5362 {
5363 hddLog(VOS_TRACE_LEVEL_FATAL,"%s: HDD context is Null",__func__);
5364 *dbm = 0;
5365 return -ENOENT;
5366 }
5367
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005368 if ( pHddCtx->isLogpInProgress )
5369 {
5370 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
5371 "%s:LOGP in Progress. Ignore!!!", __func__);
5372 return -EAGAIN;
5373 }
5374
Jeff Johnson295189b2012-06-20 16:38:30 -07005375 pAdapter = hdd_get_adapter(pHddCtx, WLAN_HDD_INFRA_STATION);
5376 if (NULL == pAdapter)
5377 {
5378 hddLog(VOS_TRACE_LEVEL_FATAL, "%s: Not in station context " ,__func__);
5379 return -ENOENT;
5380 }
5381
5382 wlan_hdd_get_classAstats(pAdapter);
5383 *dbm = pAdapter->hdd_stats.ClassA_stat.max_pwr;
5384
Jeff Johnsone7245742012-09-05 17:12:55 -07005385 EXIT();
Jeff Johnson295189b2012-06-20 16:38:30 -07005386 return 0;
5387}
5388
5389static int wlan_hdd_cfg80211_get_station(struct wiphy *wiphy, struct net_device *dev,
5390 u8* mac, struct station_info *sinfo)
5391{
5392 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR( dev );
5393 hdd_station_ctx_t *pHddStaCtx = WLAN_HDD_GET_STATION_CTX_PTR(pAdapter);
5394 int ssidlen = pHddStaCtx->conn_info.SSID.SSID.length;
5395 tANI_U8 rate_flags;
5396
5397 hdd_context_t *pHddCtx = (hdd_context_t*) wiphy_priv(wiphy);
5398 hdd_config_t *pCfg = pHddCtx->cfg_ini;
5399 tHalHandle hHal = WLAN_HDD_GET_HAL_CTX(pAdapter);
5400
5401 tANI_U8 OperationalRates[CSR_DOT11_SUPPORTED_RATES_MAX];
5402 tANI_U32 ORLeng = CSR_DOT11_SUPPORTED_RATES_MAX;
5403 tANI_U8 ExtendedRates[CSR_DOT11_EXTENDED_SUPPORTED_RATES_MAX];
5404 tANI_U32 ERLeng = CSR_DOT11_EXTENDED_SUPPORTED_RATES_MAX;
5405 tANI_U8 MCSRates[SIZE_OF_BASIC_MCS_SET];
5406 tANI_U32 MCSLeng = SIZE_OF_BASIC_MCS_SET;
5407 tANI_U16 maxRate = 0;
5408 tANI_U16 myRate;
5409 tANI_U16 currentRate = 0;
5410 tANI_U8 maxSpeedMCS = 0;
5411 tANI_U8 maxMCSIdx = 0;
5412 tANI_U8 rateFlag = 1;
5413 tANI_U8 i, j, rssidx;
Madan Mohan Koyyalamudic75be962012-10-18 19:19:03 -07005414 tANI_U16 temp;
Jeff Johnson295189b2012-06-20 16:38:30 -07005415
Jeff Johnsone7245742012-09-05 17:12:55 -07005416 ENTER();
5417
Jeff Johnson295189b2012-06-20 16:38:30 -07005418 if ((eConnectionState_Associated != pHddStaCtx->conn_info.connState) ||
5419 (0 == ssidlen))
5420 {
5421 hddLog(VOS_TRACE_LEVEL_INFO, "%s: Not associated or"
5422 " Invalid ssidlen, %d", __func__, ssidlen);
5423 /*To keep GUI happy*/
5424 return 0;
5425 }
5426
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005427 if ( (WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress )
5428 {
5429 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
5430 "%s:LOGP in Progress. Ignore!!!", __func__);
5431 return -EAGAIN;
5432 }
5433
Jeff Johnson295189b2012-06-20 16:38:30 -07005434 wlan_hdd_get_rssi(pAdapter, &sinfo->signal);
5435 sinfo->filled |= STATION_INFO_SIGNAL;
5436
Madan Mohan Koyyalamudi4d4d2812012-09-24 14:08:29 -07005437 wlan_hdd_get_station_stats(pAdapter);
Jeff Johnson295189b2012-06-20 16:38:30 -07005438 rate_flags = pAdapter->hdd_stats.ClassA_stat.tx_rate_flags;
5439
5440 //convert to the UI units of 100kbps
5441 myRate = pAdapter->hdd_stats.ClassA_stat.tx_rate * 5;
5442
5443#ifdef LINKSPEED_DEBUG_ENABLED
5444 pr_info("RSSI %d, RLMS %u, rate %d, rssi high %d, rssi low %d\n",
5445 sinfo->signal,
5446 pCfg->reportMaxLinkSpeed,
5447 myRate,
5448 (int) pCfg->linkSpeedRssiHigh,
5449 (int) pCfg->linkSpeedRssiLow);
5450#endif //LINKSPEED_DEBUG_ENABLED
5451
5452 if (eHDD_LINK_SPEED_REPORT_ACTUAL != pCfg->reportMaxLinkSpeed)
5453 {
5454 // we do not want to necessarily report the current speed
5455 if (eHDD_LINK_SPEED_REPORT_MAX == pCfg->reportMaxLinkSpeed)
5456 {
5457 // report the max possible speed
5458 rssidx = 0;
5459 }
5460 else if (eHDD_LINK_SPEED_REPORT_MAX_SCALED == pCfg->reportMaxLinkSpeed)
5461 {
5462 // report the max possible speed with RSSI scaling
5463 if (sinfo->signal >= pCfg->linkSpeedRssiHigh)
5464 {
5465 // report the max possible speed
5466 rssidx = 0;
5467 }
5468 else if (sinfo->signal >= pCfg->linkSpeedRssiLow)
5469 {
5470 // report middle speed
5471 rssidx = 1;
5472 }
5473 else
5474 {
5475 // report actual speed
5476 rssidx = 2;
5477 }
5478 }
5479 else
5480 {
5481 // unknown, treat as eHDD_LINK_SPEED_REPORT_MAX
5482 hddLog(VOS_TRACE_LEVEL_ERROR,
5483 "%s: Invalid value for reportMaxLinkSpeed: %u",
5484 __func__, pCfg->reportMaxLinkSpeed);
5485 rssidx = 0;
5486 }
5487
5488 maxRate = 0;
5489
5490 /* Get Basic Rate Set */
5491 ccmCfgGetStr(hHal, WNI_CFG_OPERATIONAL_RATE_SET, OperationalRates, &ORLeng);
5492 for (i = 0; i < ORLeng; i++)
5493 {
Jeff Johnsone7245742012-09-05 17:12:55 -07005494 for (j = 0; j < (sizeof(supported_data_rate) / sizeof(supported_data_rate[0])); j ++)
Jeff Johnson295189b2012-06-20 16:38:30 -07005495 {
5496 /* Validate Rate Set */
5497 if (supported_data_rate[j].beacon_rate_index == (OperationalRates[i] & 0x7F))
5498 {
5499 currentRate = supported_data_rate[j].supported_rate[rssidx];
5500 break;
5501 }
5502 }
5503 /* Update MAX rate */
5504 maxRate = (currentRate > maxRate)?currentRate:maxRate;
5505 }
5506
5507 /* Get Extended Rate Set */
5508 ccmCfgGetStr(hHal, WNI_CFG_EXTENDED_OPERATIONAL_RATE_SET, ExtendedRates, &ERLeng);
5509 for (i = 0; i < ERLeng; i++)
5510 {
Jeff Johnsone7245742012-09-05 17:12:55 -07005511 for (j = 0; j < (sizeof(supported_data_rate) / sizeof(supported_data_rate[0])); j ++)
Jeff Johnson295189b2012-06-20 16:38:30 -07005512 {
5513 if (supported_data_rate[j].beacon_rate_index == (ExtendedRates[i] & 0x7F))
5514 {
5515 currentRate = supported_data_rate[j].supported_rate[rssidx];
5516 break;
5517 }
5518 }
5519 /* Update MAX rate */
5520 maxRate = (currentRate > maxRate)?currentRate:maxRate;
5521 }
5522
5523 /* Get MCS Rate Set -- but only if we are connected at MCS
5524 rates or if we are always reporting max speed or if we have
5525 good rssi */
5526 if ((0 == rssidx) || !(rate_flags & eHAL_TX_RATE_LEGACY))
5527 {
5528 ccmCfgGetStr(hHal, WNI_CFG_CURRENT_MCS_SET, MCSRates, &MCSLeng);
5529 rateFlag = 0;
5530 if (rate_flags & eHAL_TX_RATE_HT40)
5531 {
5532 rateFlag |= 1;
5533 }
5534 if (rate_flags & eHAL_TX_RATE_SGI)
5535 {
5536 rateFlag |= 2;
5537 }
5538
5539 for (i = 0; i < MCSLeng; i++)
5540 {
Madan Mohan Koyyalamudic75be962012-10-18 19:19:03 -07005541 temp = sizeof(supported_mcs_rate) / sizeof(supported_mcs_rate[0]);
5542 for (j = 0; j < temp; j++)
Jeff Johnson295189b2012-06-20 16:38:30 -07005543 {
5544 if (supported_mcs_rate[j].beacon_rate_index == MCSRates[i])
5545 {
5546 currentRate = supported_mcs_rate[j].supported_rate[rateFlag];
5547 break;
5548 }
5549 }
Madan Mohan Koyyalamudic75be962012-10-18 19:19:03 -07005550 if ((j < temp) && (currentRate > maxRate))
Jeff Johnson295189b2012-06-20 16:38:30 -07005551 {
5552 maxRate = currentRate;
5553 maxSpeedMCS = 1;
5554 maxMCSIdx = supported_mcs_rate[j].beacon_rate_index;
5555 }
5556 }
5557 }
5558
5559 // make sure we report a value at least as big as our current rate
5560 if (maxRate < myRate)
5561 {
5562 maxRate = myRate;
5563 if (rate_flags & eHAL_TX_RATE_LEGACY)
5564 {
5565 maxSpeedMCS = 0;
5566 }
5567 else
5568 {
5569 maxSpeedMCS = 1;
5570 maxMCSIdx = pAdapter->hdd_stats.ClassA_stat.mcs_index;
5571 }
5572 }
5573
5574 if (!maxSpeedMCS)
5575 {
5576 sinfo->txrate.legacy = maxRate;
5577#ifdef LINKSPEED_DEBUG_ENABLED
5578 pr_info("Reporting legacy rate %d\n", sinfo->txrate.legacy);
5579#endif //LINKSPEED_DEBUG_ENABLED
5580 }
5581 else
5582 {
5583 sinfo->txrate.mcs = maxMCSIdx;
5584 sinfo->txrate.flags |= RATE_INFO_FLAGS_MCS;
5585 if (rate_flags & eHAL_TX_RATE_SGI)
5586 {
5587 sinfo->txrate.flags |= RATE_INFO_FLAGS_SHORT_GI;
5588 }
5589 if (rate_flags & eHAL_TX_RATE_HT40)
5590 {
5591 sinfo->txrate.flags |= RATE_INFO_FLAGS_40_MHZ_WIDTH;
5592 }
5593#ifdef LINKSPEED_DEBUG_ENABLED
5594 pr_info("Reporting MCS rate %d flags %x\n",
5595 sinfo->txrate.mcs,
5596 sinfo->txrate.flags );
5597#endif //LINKSPEED_DEBUG_ENABLED
5598 }
5599 }
5600 else
5601 {
5602 // report current rate instead of max rate
5603
5604 if (rate_flags & eHAL_TX_RATE_LEGACY)
5605 {
5606 //provide to the UI in units of 100kbps
5607 sinfo->txrate.legacy = myRate;
5608#ifdef LINKSPEED_DEBUG_ENABLED
5609 pr_info("Reporting actual legacy rate %d\n", sinfo->txrate.legacy);
5610#endif //LINKSPEED_DEBUG_ENABLED
5611 }
5612 else
5613 {
5614 //must be MCS
5615 sinfo->txrate.mcs = pAdapter->hdd_stats.ClassA_stat.mcs_index;
5616 sinfo->txrate.flags |= RATE_INFO_FLAGS_MCS;
5617 if (rate_flags & eHAL_TX_RATE_SGI)
5618 {
5619 sinfo->txrate.flags |= RATE_INFO_FLAGS_SHORT_GI;
5620 }
5621 if (rate_flags & eHAL_TX_RATE_HT40)
5622 {
5623 sinfo->txrate.flags |= RATE_INFO_FLAGS_40_MHZ_WIDTH;
5624 }
5625#ifdef LINKSPEED_DEBUG_ENABLED
5626 pr_info("Reporting actual MCS rate %d flags %x\n",
5627 sinfo->txrate.mcs,
5628 sinfo->txrate.flags );
5629#endif //LINKSPEED_DEBUG_ENABLED
5630 }
5631 }
5632 sinfo->filled |= STATION_INFO_TX_BITRATE;
5633
Madan Mohan Koyyalamudi4d4d2812012-09-24 14:08:29 -07005634 sinfo->tx_packets =
5635 pAdapter->hdd_stats.summary_stat.tx_frm_cnt[0] +
5636 pAdapter->hdd_stats.summary_stat.tx_frm_cnt[1] +
5637 pAdapter->hdd_stats.summary_stat.tx_frm_cnt[2] +
5638 pAdapter->hdd_stats.summary_stat.tx_frm_cnt[3];
5639
5640 sinfo->tx_retries =
5641 pAdapter->hdd_stats.summary_stat.retry_cnt[0] +
5642 pAdapter->hdd_stats.summary_stat.retry_cnt[1] +
5643 pAdapter->hdd_stats.summary_stat.retry_cnt[2] +
5644 pAdapter->hdd_stats.summary_stat.retry_cnt[3];
5645
5646 sinfo->tx_failed =
5647 pAdapter->hdd_stats.summary_stat.fail_cnt[0] +
5648 pAdapter->hdd_stats.summary_stat.fail_cnt[1] +
5649 pAdapter->hdd_stats.summary_stat.fail_cnt[2] +
5650 pAdapter->hdd_stats.summary_stat.fail_cnt[3];
5651
5652 sinfo->filled |=
5653 STATION_INFO_TX_PACKETS |
5654 STATION_INFO_TX_RETRIES |
5655 STATION_INFO_TX_FAILED;
5656
5657 EXIT();
5658 return 0;
Jeff Johnson295189b2012-06-20 16:38:30 -07005659}
5660
5661static int wlan_hdd_cfg80211_set_power_mgmt(struct wiphy *wiphy,
5662 struct net_device *dev, bool mode, v_SINT_t timeout)
5663{
5664 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR(dev);
5665 VOS_STATUS vos_status;
5666
Jeff Johnsone7245742012-09-05 17:12:55 -07005667 ENTER();
5668
Jeff Johnson295189b2012-06-20 16:38:30 -07005669 if (NULL == pAdapter)
5670 {
5671 hddLog(VOS_TRACE_LEVEL_ERROR, "%s: Adapter is NULL\n", __func__);
5672 return -ENODEV;
5673 }
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005674 if ( (WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress )
5675 {
5676 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
5677 "%s:LOGP in Progress. Ignore!!!", __func__);
5678 return -EAGAIN;
5679 }
Jeff Johnson295189b2012-06-20 16:38:30 -07005680
5681 /**The get power cmd from the supplicant gets updated by the nl only
5682 *on successful execution of the function call
5683 *we are oppositely mapped w.r.t mode in the driver
5684 **/
5685 vos_status = wlan_hdd_enter_bmps(pAdapter, !mode);
5686
Jeff Johnsone7245742012-09-05 17:12:55 -07005687 EXIT();
Jeff Johnson295189b2012-06-20 16:38:30 -07005688 if (VOS_STATUS_E_FAILURE == vos_status)
5689 {
5690 return -EINVAL;
5691 }
5692 return 0;
5693}
5694
5695
5696#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,38))
5697static int wlan_hdd_set_default_mgmt_key(struct wiphy *wiphy,
5698 struct net_device *netdev,
5699 u8 key_index)
5700{
Jeff Johnsone7245742012-09-05 17:12:55 -07005701 ENTER();
Jeff Johnson295189b2012-06-20 16:38:30 -07005702 return 0;
5703}
5704#endif //LINUX_VERSION_CODE
5705
5706#if (LINUX_VERSION_CODE >= KERNEL_VERSION(3,4,0))
5707static int wlan_hdd_set_txq_params(struct wiphy *wiphy,
5708 struct net_device *dev,
5709 struct ieee80211_txq_params *params)
5710{
Jeff Johnsone7245742012-09-05 17:12:55 -07005711 ENTER();
Jeff Johnson295189b2012-06-20 16:38:30 -07005712 return 0;
5713}
5714#elif (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,38))
5715static int wlan_hdd_set_txq_params(struct wiphy *wiphy,
5716 struct ieee80211_txq_params *params)
5717{
Jeff Johnsone7245742012-09-05 17:12:55 -07005718 ENTER();
Jeff Johnson295189b2012-06-20 16:38:30 -07005719 return 0;
5720}
5721#endif //LINUX_VERSION_CODE
5722
5723static int wlan_hdd_cfg80211_del_station(struct wiphy *wiphy,
5724 struct net_device *dev, u8 *mac)
5725{
5726 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR(dev);
5727
Jeff Johnsone7245742012-09-05 17:12:55 -07005728 ENTER();
Jeff Johnson295189b2012-06-20 16:38:30 -07005729 if ( NULL == pAdapter || NULL == pAdapter->pHddCtx)
5730 {
5731 hddLog(VOS_TRACE_LEVEL_FATAL, "%s: Invalid Adapter or HDD Context " ,__func__);
5732 return -EINVAL;
5733 }
5734
5735 if (((hdd_context_t*)pAdapter->pHddCtx)->isLoadUnloadInProgress)
5736 {
5737 hddLog( LOGE,
5738 "%s: Wlan Load/Unload is in progress", __func__);
5739 return -EBUSY;
5740 }
5741
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005742 if ( (WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress )
5743 {
5744 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
5745 "%s:LOGP in Progress. Ignore!!!", __func__);
5746 return -EAGAIN;
5747 }
5748
Jeff Johnson295189b2012-06-20 16:38:30 -07005749 if ( (WLAN_HDD_SOFTAP == pAdapter->device_mode)
5750#ifdef WLAN_FEATURE_P2P
5751 || (WLAN_HDD_P2P_GO == pAdapter->device_mode)
5752#endif
5753 )
5754 {
5755 if( NULL == mac )
5756 {
5757 v_U16_t i;
5758 for(i = 0; i < WLAN_MAX_STA_COUNT; i++)
5759 {
5760 if(pAdapter->aStaInfo[i].isUsed)
5761 {
5762 u8 *macAddr = pAdapter->aStaInfo[i].macAddrSTA.bytes;
5763 hddLog(VOS_TRACE_LEVEL_INFO,
5764 "%s: Delete STA with MAC::"
5765 "%02x:%02x:%02x:%02x:%02x:%02x",
5766 __func__,
5767 macAddr[0], macAddr[1], macAddr[2],
5768 macAddr[3], macAddr[4], macAddr[5]);
5769 hdd_softap_sta_deauth(pAdapter, macAddr);
5770 }
5771 }
5772 }
5773 else
5774 {
5775 hddLog(VOS_TRACE_LEVEL_INFO,
5776 "%s: Delete STA with MAC::"
5777 "%02x:%02x:%02x:%02x:%02x:%02x",
5778 __func__,
5779 mac[0], mac[1], mac[2],
5780 mac[3], mac[4], mac[5]);
5781 hdd_softap_sta_deauth(pAdapter, mac);
5782 }
5783 }
5784
5785 EXIT();
5786
5787 return 0;
5788}
5789
5790static int wlan_hdd_cfg80211_add_station(struct wiphy *wiphy,
5791 struct net_device *dev, u8 *mac, struct station_parameters *params)
5792{
5793 // TODO: Implement this later.
Jeff Johnsone7245742012-09-05 17:12:55 -07005794 ENTER();
Jeff Johnson295189b2012-06-20 16:38:30 -07005795 return 0;
5796}
5797
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005798
5799#ifdef FEATURE_WLAN_LFR
5800static int wlan_hdd_cfg80211_set_pmksa(struct wiphy *wiphy, struct net_device *dev,
Jeff Johnsond13512a2012-07-17 11:42:19 -07005801 struct cfg80211_pmksa *pmksa)
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005802{
5803#define MAX_PMKSAIDS_IN_CACHE 8
5804 static tPmkidCacheInfo PMKIDCache[MAX_PMKSAIDS_IN_CACHE]; // HDD Local cache
Madan Mohan Koyyalamudidfd6aa82012-10-18 20:18:43 -07005805 static tANI_U32 i; // HDD Local Cache index
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005806 tANI_U32 j=0;
5807 hdd_adapter_t *pAdapter = WLAN_HDD_GET_PRIV_PTR(dev);
5808 tHalHandle halHandle;
5809 eHalStatus result;
5810 tANI_U8 BSSIDMatched = 0;
5811
Jeff Johnsone7245742012-09-05 17:12:55 -07005812 ENTER();
5813
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005814 // Validate pAdapter
5815 if ( NULL == pAdapter || NULL == pAdapter->pHddCtx)
5816 {
5817 hddLog(VOS_TRACE_LEVEL_FATAL, "%s: Invalid Adapter or HDD Context " ,__func__);
5818 return -EINVAL;
5819 }
5820
5821 if (((hdd_context_t*)pAdapter->pHddCtx)->isLoadUnloadInProgress)
5822 {
5823 hddLog( LOGE,
5824 "%s: Wlan Load/Unload is in progress", __func__);
5825 return -EBUSY;
5826 }
5827
5828 if ( (WLAN_HDD_GET_CTX(pAdapter))->isLogpInProgress )
5829 {
5830 VOS_TRACE(VOS_MODULE_ID_HDD, VOS_TRACE_LEVEL_ERROR,
5831 "%s:LOGP in Progress. Ignore!!!", __func__);
5832 return -EAGAIN;
5833 }
5834
5835 // Retrieve halHandle
5836 halHandle = WLAN_HDD_GET_HAL_CTX(pAdapter);
5837
5838 for (j = 0; j < i; j++)
5839 {
5840 if(vos_mem_compare(PMKIDCache[j].BSSID,
5841 pmksa->bssid, WNI_CFG_BSSID_LEN))
5842 {
5843 /* BSSID matched previous entry. Overwrite it. */
5844 BSSIDMatched = 1;
5845 vos_mem_copy(PMKIDCache[j].BSSID,
5846 pmksa->bssid, WNI_CFG_BSSID_LEN);
5847 vos_mem_copy(PMKIDCache[j].PMKID,
5848 pmksa->pmkid,
5849 CSR_RSN_PMKID_SIZE);
5850 hddLog(VOS_TRACE_LEVEL_FATAL, "%s: Reusing cache entry %d.",
5851 __FUNCTION__, j );
5852 dump_bssid(pmksa->bssid);
5853 dump_pmkid(halHandle, pmksa->pmkid);
5854 break;
5855 }
5856 }
5857
Madan Mohan Koyyalamudic4b317d2012-10-18 19:43:08 -07005858 /* Check we compared all entries,if then take the first slot now */
5859 if(j == MAX_PMKSAIDS_IN_CACHE) i=0;
5860
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005861 if (!BSSIDMatched)
5862 {
5863 // Now, we DON'T have a BSSID match, so take a new entry in the cache.
5864 vos_mem_copy(PMKIDCache[i].BSSID,
5865 pmksa->bssid, ETHER_ADDR_LEN);
5866 vos_mem_copy(PMKIDCache[i].PMKID,
5867 pmksa->pmkid,
5868 CSR_RSN_PMKID_SIZE);
5869 hddLog(VOS_TRACE_LEVEL_FATAL, "%s: Adding a new cache entry %d.",
5870 __FUNCTION__, i );
5871 dump_bssid(pmksa->bssid);
5872 dump_pmkid(halHandle, pmksa->pmkid);
5873 // Increment the HDD Local Cache index
5874 // The "i=0" doesn't work for the call to sme_RoamSetPMKIDCache() - LFR FIXME
5875 if (i<=(MAX_PMKSAIDS_IN_CACHE-1)) i++; else i=0;
5876 }
5877
5878
5879 // Calling csrRoamSetPMKIDCache to configure the PMKIDs into the cache
5880 //hddLog(LOG1, FL("%s: Calling csrRoamSetPMKIDCache with %d cache entries."),
5881 // __FUNCTION__, i );
5882 hddLog(VOS_TRACE_LEVEL_FATAL, "%s: Calling csrRoamSetPMKIDCache with %d cache entries.",
5883 __FUNCTION__, i );
5884 // Finally set the PMKSA ID Cache in CSR
5885 result = sme_RoamSetPMKIDCache(halHandle,pAdapter->sessionId,
5886 PMKIDCache,
5887 i );
5888 return 0;
5889}
5890
5891
5892static int wlan_hdd_cfg80211_del_pmksa(struct wiphy *wiphy, struct net_device *dev,
Jeff Johnsond13512a2012-07-17 11:42:19 -07005893 struct cfg80211_pmksa *pmksa)
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005894{
Jeff Johnsone7245742012-09-05 17:12:55 -07005895 ENTER();
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005896 // TODO: Implement this later.
5897 return 0;
5898}
5899
5900static int wlan_hdd_cfg80211_flush_pmksa(struct wiphy *wiphy, struct net_device *dev)
5901{
Jeff Johnsone7245742012-09-05 17:12:55 -07005902 ENTER();
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005903 // TODO: Implement this later.
5904 return 0;
5905}
5906#endif
5907
5908
Jeff Johnson295189b2012-06-20 16:38:30 -07005909/* cfg80211_ops */
5910static struct cfg80211_ops wlan_hdd_cfg80211_ops =
5911{
5912 .add_virtual_intf = wlan_hdd_add_virtual_intf,
5913 .del_virtual_intf = wlan_hdd_del_virtual_intf,
5914 .change_virtual_intf = wlan_hdd_cfg80211_change_iface,
5915 .change_station = wlan_hdd_change_station,
5916#if (LINUX_VERSION_CODE < KERNEL_VERSION(3,4,0))
5917 .add_beacon = wlan_hdd_cfg80211_add_beacon,
5918 .del_beacon = wlan_hdd_cfg80211_del_beacon,
5919 .set_beacon = wlan_hdd_cfg80211_set_beacon,
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005920#else
5921 .start_ap = wlan_hdd_cfg80211_start_ap,
5922 .change_beacon = wlan_hdd_cfg80211_change_beacon,
5923 .stop_ap = wlan_hdd_cfg80211_stop_ap,
Jeff Johnson295189b2012-06-20 16:38:30 -07005924#endif
5925 .change_bss = wlan_hdd_cfg80211_change_bss,
5926 .add_key = wlan_hdd_cfg80211_add_key,
5927 .get_key = wlan_hdd_cfg80211_get_key,
5928 .del_key = wlan_hdd_cfg80211_del_key,
5929 .set_default_key = wlan_hdd_cfg80211_set_default_key,
5930 .set_channel = wlan_hdd_cfg80211_set_channel,
5931 .scan = wlan_hdd_cfg80211_scan,
5932 .connect = wlan_hdd_cfg80211_connect,
5933 .disconnect = wlan_hdd_cfg80211_disconnect,
5934 .join_ibss = wlan_hdd_cfg80211_join_ibss,
5935 .leave_ibss = wlan_hdd_cfg80211_leave_ibss,
5936 .set_wiphy_params = wlan_hdd_cfg80211_set_wiphy_params,
5937 .set_tx_power = wlan_hdd_cfg80211_set_txpower,
5938 .get_tx_power = wlan_hdd_cfg80211_get_txpower,
5939#ifdef WLAN_FEATURE_P2P
5940 .remain_on_channel = wlan_hdd_cfg80211_remain_on_channel,
5941 .cancel_remain_on_channel = wlan_hdd_cfg80211_cancel_remain_on_channel,
5942 .mgmt_tx = wlan_hdd_action,
5943#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,38))
5944 .mgmt_tx_cancel_wait = wlan_hdd_cfg80211_mgmt_tx_cancel_wait,
5945 .set_default_mgmt_key = wlan_hdd_set_default_mgmt_key,
5946 .set_txq_params = wlan_hdd_set_txq_params,
5947#endif
5948#endif
5949 .get_station = wlan_hdd_cfg80211_get_station,
5950 .set_power_mgmt = wlan_hdd_cfg80211_set_power_mgmt,
5951 .del_station = wlan_hdd_cfg80211_del_station,
Jeff Johnson04dd8a82012-06-29 20:41:40 -07005952 .add_station = wlan_hdd_cfg80211_add_station,
5953#ifdef FEATURE_WLAN_LFR
5954 .set_pmksa = wlan_hdd_cfg80211_set_pmksa,
5955 .del_pmksa = wlan_hdd_cfg80211_del_pmksa,
5956 .flush_pmksa = wlan_hdd_cfg80211_flush_pmksa,
5957#endif
Jeff Johnson295189b2012-06-20 16:38:30 -07005958};
5959
5960#endif // CONFIG_CFG80211