staging: rtl8723au: Reduce number of duplicate defines for link state
[firefly-linux-kernel-4.4.55.git] / drivers / staging / rtl8723au / include / rtw_mlme_ext.h
1 /******************************************************************************
2  *
3  * Copyright(c) 2007 - 2011 Realtek Corporation. All rights reserved.
4  *
5  * This program is free software; you can redistribute it and/or modify it
6  * under the terms of version 2 of the GNU General Public License as
7  * published by the Free Software Foundation.
8  *
9  * This program is distributed in the hope that it will be useful, but WITHOUT
10  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11  * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
12  * more details.
13  *
14  ******************************************************************************/
15 #ifndef __RTW_MLME_EXT_H_
16 #define __RTW_MLME_EXT_H_
17
18 #include <osdep_service.h>
19 #include <drv_types.h>
20 #include <wlan_bssdef.h>
21
22
23 /*      Commented by Albert 20101105 */
24 /*      Increase the SURVEY_TO value from 100 to 150  ( 100ms to 150ms ) */
25 /*      The Realtek 8188CE SoftAP will spend around 100ms to send the probe response after receiving the probe request. */
26 /*      So, this driver tried to extend the dwell time for each scanning channel. */
27 /*      This will increase the chance to receive the probe response from SoftAP. */
28
29 #define SURVEY_TO               (100)
30 #define REAUTH_TO               (300) /* 50) */
31 #define REASSOC_TO              (300) /* 50) */
32 /* define DISCONNECT_TO (3000) */
33 #define ADDBA_TO                        (2000)
34
35 #define LINKED_TO (1) /* unit:2 sec, 1x2=2 sec */
36
37 #define REAUTH_LIMIT    (4)
38 #define REASSOC_LIMIT   (4)
39 #define READDBA_LIMIT   (2)
40
41 #define ROAMING_LIMIT   8
42
43 #define DYNAMIC_FUNC_DISABLE                    (0x0)
44
45 /*  ====== enum odm_ability ======== */
46 /*  BB ODM section BIT 0-15 */
47 #define DYNAMIC_BB_DIG                          BIT(0)
48 #define DYNAMIC_BB_RA_MASK                      BIT(1)
49 #define DYNAMIC_BB_DYNAMIC_TXPWR        BIT(2)
50 #define DYNAMIC_BB_BB_FA_CNT                    BIT(3)
51
52 #define         DYNAMIC_BB_RSSI_MONITOR         BIT(4)
53 #define         DYNAMIC_BB_CCK_PD                       BIT(5)
54 #define         DYNAMIC_BB_ANT_DIV                      BIT(6)
55 #define         DYNAMIC_BB_PWR_SAVE                     BIT(7)
56 #define         DYNAMIC_BB_PWR_TRAIN                    BIT(8)
57 #define         DYNAMIC_BB_RATE_ADAPTIVE                BIT(9)
58 #define         DYNAMIC_BB_PATH_DIV                     BIT(10)
59 #define         DYNAMIC_BB_PSD                          BIT(11)
60
61 /*  MAC DM section BIT 16-23 */
62 #define         DYNAMIC_MAC_struct edca_turboURBO               BIT(16)
63 #define         DYNAMIC_MAC_EARLY_MODE          BIT(17)
64
65 /*  RF ODM section BIT 24-31 */
66 #define         DYNAMIC_RF_TX_PWR_TRACK         BIT(24)
67 #define         DYNAMIC_RF_RX_GAIN_TRACK                BIT(25)
68 #define         DYNAMIC_RF_CALIBRATION          BIT(26)
69
70 #define         DYNAMIC_ALL_FUNC_ENABLE         0xFFFFFFF
71
72 #define _HW_STATE_NOLINK_               0x00
73 #define _HW_STATE_ADHOC_                0x01
74 #define _HW_STATE_STATION_      0x02
75 #define _HW_STATE_AP_                   0x03
76
77
78 #define         _1M_RATE_       0
79 #define         _2M_RATE_       1
80 #define         _5M_RATE_       2
81 #define         _11M_RATE_      3
82 #define         _6M_RATE_       4
83 #define         _9M_RATE_       5
84 #define         _12M_RATE_      6
85 #define         _18M_RATE_      7
86 #define         _24M_RATE_      8
87 #define         _36M_RATE_      9
88 #define         _48M_RATE_      10
89 #define         _54M_RATE_      11
90
91
92 extern unsigned char WMM_OUI23A[];
93 extern unsigned char WPS_OUI23A[];
94 extern unsigned char WFD_OUI23A[];
95 extern unsigned char P2P_OUI23A[];
96
97 extern unsigned char WMM_INFO_OUI23A[];
98 extern unsigned char WMM_PARA_OUI23A[];
99
100
101 /*  */
102 /*  Channel Plan Type. */
103 /*  Note: */
104 /*      We just add new channel plan when the new channel plan is different from any of the following */
105 /*      channel plan. */
106 /*      If you just wnat to customize the acitions(scan period or join actions) about one of the channel plan, */
107 /*      customize them in struct rt_channel_info in the RT_CHANNEL_LIST. */
108 /*  */
109 enum  { /* _RT_CHANNEL_DOMAIN */
110         /*  old channel plan mapping ===== */
111         RT_CHANNEL_DOMAIN_FCC = 0x00,
112         RT_CHANNEL_DOMAIN_IC = 0x01,
113         RT_CHANNEL_DOMAIN_ETSI = 0x02,
114         RT_CHANNEL_DOMAIN_SPAIN = 0x03,
115         RT_CHANNEL_DOMAIN_FRANCE = 0x04,
116         RT_CHANNEL_DOMAIN_MKK = 0x05,
117         RT_CHANNEL_DOMAIN_MKK1 = 0x06,
118         RT_CHANNEL_DOMAIN_ISRAEL = 0x07,
119         RT_CHANNEL_DOMAIN_TELEC = 0x08,
120         RT_CHANNEL_DOMAIN_GLOBAL_DOAMIN = 0x09,
121         RT_CHANNEL_DOMAIN_WORLD_WIDE_13 = 0x0A,
122         RT_CHANNEL_DOMAIN_TAIWAN = 0x0B,
123         RT_CHANNEL_DOMAIN_CHINA = 0x0C,
124         RT_CHANNEL_DOMAIN_SINGAPORE_INDIA_MEXICO = 0x0D,
125         RT_CHANNEL_DOMAIN_KOREA = 0x0E,
126         RT_CHANNEL_DOMAIN_TURKEY = 0x0F,
127         RT_CHANNEL_DOMAIN_JAPAN = 0x10,
128         RT_CHANNEL_DOMAIN_FCC_NO_DFS = 0x11,
129         RT_CHANNEL_DOMAIN_JAPAN_NO_DFS = 0x12,
130         RT_CHANNEL_DOMAIN_WORLD_WIDE_5G = 0x13,
131         RT_CHANNEL_DOMAIN_TAIWAN_NO_DFS = 0x14,
132
133         /*  new channel plan mapping, (2GDOMAIN_5GDOMAIN) ===== */
134         RT_CHANNEL_DOMAIN_WORLD_NULL = 0x20,
135         RT_CHANNEL_DOMAIN_ETSI1_NULL = 0x21,
136         RT_CHANNEL_DOMAIN_FCC1_NULL = 0x22,
137         RT_CHANNEL_DOMAIN_MKK1_NULL = 0x23,
138         RT_CHANNEL_DOMAIN_ETSI2_NULL = 0x24,
139         RT_CHANNEL_DOMAIN_FCC1_FCC1 = 0x25,
140         RT_CHANNEL_DOMAIN_WORLD_ETSI1 = 0x26,
141         RT_CHANNEL_DOMAIN_MKK1_MKK1 = 0x27,
142         RT_CHANNEL_DOMAIN_WORLD_KCC1 = 0x28,
143         RT_CHANNEL_DOMAIN_WORLD_FCC2 = 0x29,
144         RT_CHANNEL_DOMAIN_WORLD_FCC3 = 0x30,
145         RT_CHANNEL_DOMAIN_WORLD_FCC4 = 0x31,
146         RT_CHANNEL_DOMAIN_WORLD_FCC5 = 0x32,
147         RT_CHANNEL_DOMAIN_WORLD_FCC6 = 0x33,
148         RT_CHANNEL_DOMAIN_FCC1_FCC7 = 0x34,
149         RT_CHANNEL_DOMAIN_WORLD_ETSI2 = 0x35,
150         RT_CHANNEL_DOMAIN_WORLD_ETSI3 = 0x36,
151         RT_CHANNEL_DOMAIN_MKK1_MKK2 = 0x37,
152         RT_CHANNEL_DOMAIN_MKK1_MKK3 = 0x38,
153         RT_CHANNEL_DOMAIN_FCC1_NCC1 = 0x39,
154         RT_CHANNEL_DOMAIN_FCC1_NCC2 = 0x40,
155         RT_CHANNEL_DOMAIN_GLOBAL_DOAMIN_2G = 0x41,
156         /*  Add new channel plan above this line=============== */
157         RT_CHANNEL_DOMAIN_MAX,
158         RT_CHANNEL_DOMAIN_REALTEK_DEFINE = 0x7F,
159 };
160
161 enum { /* _RT_CHANNEL_DOMAIN_2G */
162         RT_CHANNEL_DOMAIN_2G_WORLD = 0x00,              /* Worldwird 13 */
163         RT_CHANNEL_DOMAIN_2G_ETSI1 = 0x01,              /* Europe */
164         RT_CHANNEL_DOMAIN_2G_FCC1 = 0x02,               /* US */
165         RT_CHANNEL_DOMAIN_2G_MKK1 = 0x03,               /* Japan */
166         RT_CHANNEL_DOMAIN_2G_ETSI2 = 0x04,              /* France */
167         RT_CHANNEL_DOMAIN_2G_NULL = 0x05,
168         /*  Add new channel plan above this line=============== */
169         RT_CHANNEL_DOMAIN_2G_MAX,
170 };
171
172 enum { /* _RT_CHANNEL_DOMAIN_5G */
173         RT_CHANNEL_DOMAIN_5G_NULL = 0x00,
174         RT_CHANNEL_DOMAIN_5G_ETSI1 = 0x01,              /* Europe */
175         RT_CHANNEL_DOMAIN_5G_ETSI2 = 0x02,              /* Australia, New Zealand */
176         RT_CHANNEL_DOMAIN_5G_ETSI3 = 0x03,              /* Russia */
177         RT_CHANNEL_DOMAIN_5G_FCC1 = 0x04,               /* US */
178         RT_CHANNEL_DOMAIN_5G_FCC2 = 0x05,               /* FCC o/w DFS Channels */
179         RT_CHANNEL_DOMAIN_5G_FCC3 = 0x06,               /* India, Mexico */
180         RT_CHANNEL_DOMAIN_5G_FCC4 = 0x07,               /* Venezuela */
181         RT_CHANNEL_DOMAIN_5G_FCC5 = 0x08,               /* China */
182         RT_CHANNEL_DOMAIN_5G_FCC6 = 0x09,               /* Israel */
183         RT_CHANNEL_DOMAIN_5G_FCC7_IC1 = 0x0A,   /* US, Canada */
184         RT_CHANNEL_DOMAIN_5G_KCC1 = 0x0B,               /* Korea */
185         RT_CHANNEL_DOMAIN_5G_MKK1 = 0x0C,               /* Japan */
186         RT_CHANNEL_DOMAIN_5G_MKK2 = 0x0D,               /* Japan (W52, W53) */
187         RT_CHANNEL_DOMAIN_5G_MKK3 = 0x0E,               /* Japan (W56) */
188         RT_CHANNEL_DOMAIN_5G_NCC1 = 0x0F,               /* Taiwan */
189         RT_CHANNEL_DOMAIN_5G_NCC2 = 0x10,               /* Taiwan o/w DFS */
190         /*  Add new channel plan above this line=============== */
191         /*  Driver Self Defined ===== */
192         RT_CHANNEL_DOMAIN_5G_FCC = 0x11,
193         RT_CHANNEL_DOMAIN_5G_JAPAN_NO_DFS = 0x12,
194         RT_CHANNEL_DOMAIN_5G_FCC4_NO_DFS = 0x13,
195         RT_CHANNEL_DOMAIN_5G_MAX,
196 };
197
198 #define rtw_is_channel_plan_valid(chplan) (chplan<RT_CHANNEL_DOMAIN_MAX || chplan == RT_CHANNEL_DOMAIN_REALTEK_DEFINE)
199
200 struct rt_channel_plan {
201         unsigned char   Channel[MAX_CHANNEL_NUM];
202         unsigned char   Len;
203 };
204
205 struct rt_channel_plan_2g {
206         unsigned char   Channel[MAX_CHANNEL_NUM_2G];
207         unsigned char   Len;
208 };
209
210 struct rt_channel_plan_5g {
211         unsigned char   Channel[MAX_CHANNEL_NUM_5G];
212         unsigned char   Len;
213 };
214
215 struct rt_channel_plan_map {
216         unsigned char   Index2G;
217         unsigned char   Index5G;
218 };
219
220 enum Associated_AP {
221         atherosAP       = 0,
222         broadcomAP      = 1,
223         ciscoAP         = 2,
224         marvellAP       = 3,
225         ralinkAP        = 4,
226         realtekAP       = 5,
227         airgocapAP      = 6,
228         unknownAP       = 7,
229         maxAP,
230 };
231
232 enum { /* HT_IOT_PEER_E */
233         HT_IOT_PEER_UNKNOWN             = 0,
234         HT_IOT_PEER_REALTEK             = 1,
235         HT_IOT_PEER_REALTEK_92SE        = 2,
236         HT_IOT_PEER_BROADCOM            = 3,
237         HT_IOT_PEER_RALINK              = 4,
238         HT_IOT_PEER_ATHEROS             = 5,
239         HT_IOT_PEER_CISCO               = 6,
240         HT_IOT_PEER_MERU                = 7,
241         HT_IOT_PEER_MARVELL             = 8,
242         HT_IOT_PEER_REALTEK_SOFTAP      = 9,/*  peer is RealTek SOFT_AP, by Bohn, 2009.12.17 */
243         HT_IOT_PEER_SELF_SOFTAP         = 10, /*  Self is SoftAP */
244         HT_IOT_PEER_AIRGO               = 11,
245         HT_IOT_PEER_INTEL               = 12,
246         HT_IOT_PEER_RTK_APCLIENT        = 13,
247         HT_IOT_PEER_REALTEK_81XX        = 14,
248         HT_IOT_PEER_REALTEK_WOW         = 15,
249         HT_IOT_PEER_TENDA               = 16,
250         HT_IOT_PEER_MAX                 = 17
251 };
252
253 enum SCAN_STATE {
254         SCAN_DISABLE = 0,
255         SCAN_START = 1,
256         SCAN_TXNULL = 2,
257         SCAN_PROCESS = 3,
258         SCAN_COMPLETE = 4,
259         SCAN_STATE_MAX,
260 };
261
262 struct mlme_handler {
263         char *str;
264         int (*func)(struct rtw_adapter *padapter, struct recv_frame *precv_frame);
265 };
266
267 struct action_handler {
268         unsigned int   num;
269         char* str;
270         int (*func)(struct rtw_adapter *padapter, struct recv_frame *precv_frame);
271 };
272
273 struct  ss_res
274 {
275         int     state;
276         int     bss_cnt;
277         int     channel_idx;
278         int     scan_mode;
279         u8 ssid_num;
280         u8 ch_num;
281         struct cfg80211_ssid ssid[RTW_SSID_SCAN_AMOUNT];
282         struct rtw_ieee80211_channel ch[RTW_CHANNEL_SCAN_AMOUNT];
283 };
284
285 #define WIFI_FW_AUTH_NULL                       0x00000100
286 #define WIFI_FW_AUTH_STATE                      0x00000200
287 #define WIFI_FW_AUTH_SUCCESS                    0x00000400
288
289 #define WIFI_FW_ASSOC_STATE                     0x00002000
290 #define WIFI_FW_ASSOC_SUCCESS           0x00004000
291
292 #define WIFI_FW_LINKING_STATE           (WIFI_FW_AUTH_NULL | WIFI_FW_AUTH_STATE | WIFI_FW_AUTH_SUCCESS |WIFI_FW_ASSOC_STATE)
293
294 struct FW_Sta_Info {
295         struct sta_info *psta;
296         u32     status;
297         u32     rx_pkt;
298         u32     retry;
299         unsigned char SupportedRates[NDIS_802_11_LENGTH_RATES_EX];
300 };
301
302 /*
303  * Usage:
304  * When one iface acted as AP mode and the other iface is STA mode and scanning,
305  * it should switch back to AP's operating channel periodically.
306  * Parameters info:
307  * When the driver scanned RTW_SCAN_NUM_OF_CH channels, it would switch back to AP's operating channel for
308  * RTW_STAY_AP_CH_MILLISECOND * SURVEY_TO milliseconds.
309  * Example:
310  * For chip supports 2.4G + 5GHz and AP mode is operating in channel 1,
311  * RTW_SCAN_NUM_OF_CH is 8, RTW_STAY_AP_CH_MILLISECOND is 3 and SURVEY_TO is 100.
312  * When it's STA mode gets set_scan command,
313  * it would
314  * 1. Doing the scan on channel 1.2.3.4.5.6.7.8
315  * 2. Back to channel 1 for 300 milliseconds
316  * 3. Go through doing site survey on channel 9.10.11.36.40.44.48.52
317  * 4. Back to channel 1 for 300 milliseconds
318  * 5. ... and so on, till survey done.
319  */
320
321 struct mlme_ext_info
322 {
323         u32     state;
324         u32     reauth_count;
325         u32     reassoc_count;
326         u32     link_count;
327         u32     auth_seq;
328         u32     auth_algo;      /*  802.11 auth, could be open, shared, auto */
329         u32     authModeToggle;
330         u32     enc_algo;/* encrypt algorithm; */
331         u32     key_index;      /*  this is only valid for legendary wep, 0~3 for key id. */
332         u32     iv;
333         u8      chg_txt[128];
334         u16     aid;
335         u16     bcn_interval;
336         u16     capability;
337         u8      assoc_AP_vendor;
338         u8      slotTime;
339         u8      preamble_mode;
340         u8      WMM_enable;
341         u8      ERP_enable;
342         u8      ERP_IE;
343         u8      HT_enable;
344         u8      HT_caps_enable;
345         u8      HT_info_enable;
346         u8      HT_protection;
347         u8      turboMode_cts2self;
348         u8      turboMode_rtsen;
349         u8      SM_PS;
350         u8      ADDBA_retry_count;
351         u8      dialogToken;
352         /*  Accept ADDBA Request */
353         bool bAcceptAddbaReq;
354         u8      bwmode_updated;
355         u8      hidden_ssid_mode;
356
357         struct ADDBA_request            ADDBA_req;
358         struct WMM_para_element WMM_param;
359         struct ieee80211_ht_cap ht_cap;
360         struct ieee80211_ht_operation HT_info;
361         struct wlan_bssid_ex                    network;/* join network or bss_network, if in ap mode, it is the same to cur_network.network */
362         struct FW_Sta_Info              FW_sta_info[NUM_STA];
363 };
364
365 /*  The channel information about this channel including joining, scanning, and power constraints. */
366 struct rt_channel_info {
367         u8              ChannelNum;             /*  The channel number. */
368         enum rt_scan_type ScanType;             /*  Scan type such as passive or active scan. */
369 };
370
371 int rtw_ch_set_search_ch23a(struct rt_channel_info *ch_set, const u32 ch);
372
373 /*  P2P_MAX_REG_CLASSES - Maximum number of regulatory classes */
374 #define P2P_MAX_REG_CLASSES 10
375
376 /*  P2P_MAX_REG_CLASS_CHANNELS - Maximum number of channels per regulatory class */
377 #define P2P_MAX_REG_CLASS_CHANNELS 20
378
379 /*   struct p2p_channels - List of supported channels */
380 struct p2p_channels {
381         /*  struct p2p_reg_class - Supported regulatory class */
382         struct p2p_reg_class {
383                 /*  reg_class - Regulatory class (IEEE 802.11-2007, Annex J) */
384                 u8 reg_class;
385
386                 /*  channel - Supported channels */
387                 u8 channel[P2P_MAX_REG_CLASS_CHANNELS];
388
389                 /*  channels - Number of channel entries in use */
390                 size_t channels;
391         } reg_class[P2P_MAX_REG_CLASSES];
392
393         /*  reg_classes - Number of reg_class entries in use */
394         size_t reg_classes;
395 };
396
397 struct p2p_oper_class_map {
398         enum hw_mode {IEEE80211G,IEEE80211A} mode;
399         u8 op_class;
400         u8 min_chan;
401         u8 max_chan;
402         u8 inc;
403         enum {
404                 BW20, BW40PLUS, BW40MINUS
405         } bw;
406 };
407
408 struct mlme_ext_priv {
409         struct rtw_adapter      *padapter;
410         u8      mlmeext_init;
411         atomic_t                event_seq;
412         u16     mgnt_seq;
413
414         /* struct fw_priv       fwpriv; */
415
416         unsigned char   cur_channel;
417         unsigned char   cur_bwmode;
418         unsigned char   cur_ch_offset;/* PRIME_CHNL_OFFSET */
419         unsigned char   cur_wireless_mode;      /*  NETWORK_TYPE */
420
421         unsigned char   max_chan_nums;
422         struct rt_channel_info          channel_set[MAX_CHANNEL_NUM];
423         struct p2p_channels channel_list;
424         unsigned char   basicrate[NumRates];
425         unsigned char   datarate[NumRates];
426
427         struct ss_res           sitesurvey_res;
428         struct mlme_ext_info    mlmext_info;/* for sta/adhoc mode, including current scanning/connecting/connected related info. */
429                                                      /* for ap mode, network includes ap's cap_info */
430         struct timer_list               survey_timer;
431         struct timer_list               link_timer;
432         u16                     chan_scan_time;
433
434         u8      scan_abort;
435         u8      tx_rate; /*  TXRATE when USERATE is set. */
436
437         u32     retry; /* retry for issue probereq */
438
439         u64 TSFValue;
440
441         unsigned char bstart_bss;
442         u8 update_channel_plan_by_ap_done;
443         /* recv_decache check for Action_public frame */
444         u8 action_public_dialog_token;
445         u16      action_public_rxseq;
446         u8 active_keep_alive_check;
447 };
448
449 int init_mlme_ext_priv23a(struct rtw_adapter* padapter);
450 int init_hw_mlme_ext23a(struct rtw_adapter *padapter);
451 void free_mlme_ext_priv23a (struct mlme_ext_priv *pmlmeext);
452 void init_mlme_ext_timer23a(struct rtw_adapter *padapter);
453 void init_addba_retry_timer23a(struct sta_info *psta);
454 struct xmit_frame *alloc_mgtxmitframe23a(struct xmit_priv *pxmitpriv);
455
456 unsigned char networktype_to_raid23a(unsigned char network_type);
457 u8 judge_network_type23a(struct rtw_adapter *padapter, unsigned char *rate,
458                       int ratelen);
459 void get_rate_set23a(struct rtw_adapter *padapter, unsigned char *pbssrate,
460                   int *bssrate_len);
461 void UpdateBrateTbl23a(struct rtw_adapter *padapter,u8 *mBratesOS);
462 void Update23aTblForSoftAP(u8 *bssrateset, u32 bssratelen);
463
464 u8 rtw_get_oper_ch23a(struct rtw_adapter *adapter);
465 void rtw_set_oper_ch23a(struct rtw_adapter *adapter, u8 ch);
466 u8 rtw_get_oper_bw23a(struct rtw_adapter *adapter);
467 void rtw_set_oper_bw23a(struct rtw_adapter *adapter, u8 bw);
468 u8 rtw_get_oper_ch23aoffset(struct rtw_adapter *adapter);
469 void rtw_set_oper_ch23aoffset23a(struct rtw_adapter *adapter, u8 offset);
470
471 void set_channel_bwmode23a(struct rtw_adapter *padapter, unsigned char channel,
472                         unsigned char channel_offset, unsigned short bwmode);
473 void SelectChannel23a(struct rtw_adapter *padapter, unsigned char channel);
474
475 unsigned int decide_wait_for_beacon_timeout23a(unsigned int bcn_interval);
476
477 void clear_cam_entry23a(struct rtw_adapter *padapter, u8 entry);
478
479 void invalidate_cam_all23a(struct rtw_adapter *padapter);
480
481 int allocate_fw_sta_entry23a(struct rtw_adapter *padapter);
482 void flush_all_cam_entry23a(struct rtw_adapter *padapter);
483
484 bool IsLegal5GChannel(struct rtw_adapter *Adapter, u8 channel);
485
486 void update_network23a(struct wlan_bssid_ex *dst, struct wlan_bssid_ex *src,
487                     struct rtw_adapter *padapter, bool update_ie);
488
489 u8 *get_my_bssid23a(struct wlan_bssid_ex *pnetwork);
490
491 bool is_client_associated_to_ap23a(struct rtw_adapter *padapter);
492 bool is_client_associated_to_ibss23a(struct rtw_adapter *padapter);
493 bool is_IBSS_empty23a(struct rtw_adapter *padapter);
494
495 unsigned char check_assoc_AP23a(u8 *pframe, uint len);
496
497 int WMM_param_handler23a(struct rtw_adapter *padapter, const u8 *p);
498 void WMMOnAssocRsp23a(struct rtw_adapter *padapter);
499
500 void HT_caps_handler23a(struct rtw_adapter *padapter, const u8 *p);
501 void HT_info_handler23a(struct rtw_adapter *padapter, const u8 *p);
502 void HTOnAssocRsp23a(struct rtw_adapter *padapter);
503
504 void ERP_IE_handler23a(struct rtw_adapter *padapter, const u8 *p);
505 void VCS_update23a(struct rtw_adapter *padapter, struct sta_info *psta);
506
507 void update_beacon23a_info(struct rtw_adapter *padapter,
508                            struct ieee80211_mgmt *mgmt, uint len,
509                            struct sta_info *psta);
510 int rtw_check_bcn_info23a(struct rtw_adapter *Adapter,
511                           struct ieee80211_mgmt *mgmt, u32 packet_len);
512 void update_IOT_info23a(struct rtw_adapter *padapter);
513 void update_capinfo23a(struct rtw_adapter *Adapter, u16 updateCap);
514 void update_wireless_mode23a(struct rtw_adapter * padapter);
515 void update_tx_basic_rate23a(struct rtw_adapter *padapter, u8 modulation);
516 void update_bmc_sta_support_rate23a(struct rtw_adapter *padapter, u32 mac_id);
517 int update_sta_support_rate23a(struct rtw_adapter *padapter, u8* pvar_ie,
518                             uint var_ie_len, int cam_idx);
519
520 /* for sta/adhoc mode */
521 void update_sta_info23a(struct rtw_adapter *padapter, struct sta_info *psta);
522 unsigned int update_basic_rate23a(unsigned char *ptn, unsigned int ptn_sz);
523 unsigned int update_supported_rate23a(unsigned char *ptn, unsigned int ptn_sz);
524 unsigned int update_MSC_rate23a(struct ieee80211_ht_cap *ht_cap);
525 void Update_RA_Entry23a(struct rtw_adapter *padapter, struct sta_info *psta);
526 void set_sta_rate23a(struct rtw_adapter *padapter, struct sta_info *psta);
527
528 int receive_disconnect23a(struct rtw_adapter *padapter,
529                           unsigned char *MacAddr, unsigned short reason);
530
531 unsigned char get_highest_rate_idx23a(u32 mask);
532 int support_short_GI23a(struct rtw_adapter *padapter,
533                         struct ieee80211_ht_cap *ht_cap);
534 bool is_ap_in_tkip23a(struct rtw_adapter *padapter);
535 bool is_ap_in_wep23a(struct rtw_adapter *padapter);
536 bool should_forbid_n_rate23a(struct rtw_adapter *padapter);
537
538 void report_join_res23a(struct rtw_adapter *padapter, int res);
539 void report_survey_event23a(struct rtw_adapter *padapter,
540                          struct recv_frame *precv_frame);
541 void report_surveydone_event23a(struct rtw_adapter *padapter);
542 void report_del_sta_event23a(struct rtw_adapter *padapter,
543                           unsigned char *MacAddr, unsigned short reason);
544 void report_add_sta_event23a(struct rtw_adapter *padapter,
545                           unsigned char *MacAddr, int cam_idx);
546
547 int set_tx_beacon_cmd23a(struct rtw_adapter*padapter);
548 unsigned int setup_beacon_frame(struct rtw_adapter *padapter,
549                                 unsigned char *beacon_frame);
550 void update_mgnt_tx_rate23a(struct rtw_adapter *padapter, u8 rate);
551 void update_mgntframe_attrib23a(struct rtw_adapter *padapter,
552                              struct pkt_attrib *pattrib);
553 void dump_mgntframe23a(struct rtw_adapter *padapter,
554                     struct xmit_frame *pmgntframe);
555 s32 dump_mgntframe23a_and_wait(struct rtw_adapter *padapter,
556                             struct xmit_frame *pmgntframe, int timeout_ms);
557 s32 dump_mgntframe23a_and_wait_ack23a(struct rtw_adapter *padapter,
558                                 struct xmit_frame *pmgntframe);
559
560 void issue_beacon23a(struct rtw_adapter *padapter, int timeout_ms);
561 int issue_nulldata23a(struct rtw_adapter *padapter, unsigned char *da,
562                    unsigned int power_mode, int try_cnt, int wait_ms);
563 int issue_qos_nulldata23a(struct rtw_adapter *padapter, unsigned char *da, u16 tid,
564                        int try_cnt, int wait_ms);
565 int issue_deauth23a(struct rtw_adapter *padapter, unsigned char *da,
566                  unsigned short reason);
567 void issue_action_spct_ch_switch23a(struct rtw_adapter *padapter, u8 *ra,
568                                  u8 new_ch, u8 ch_offset);
569 void issue_action_BA23a(struct rtw_adapter *padapter,
570                         const unsigned char *raddr,
571                         unsigned char action, unsigned short status);
572 int send_delba23a(struct rtw_adapter *padapter, u8 initiator, u8 *addr);
573 int send_beacon23a(struct rtw_adapter *padapter);
574
575 void mlmeext_joinbss_event_callback23a(struct rtw_adapter *padapter, int join_res);
576 void mlmeext_sta_del_event_callback23a(struct rtw_adapter *padapter);
577 void mlmeext_sta_add_event_callback23a(struct rtw_adapter *padapter, struct sta_info *psta);
578
579 void linked_status_chk23a(struct rtw_adapter *padapter);
580
581 #define set_survey_timer(mlmeext, ms) \
582         /*DBG_8723A("%s set_survey_timer(%p, %d)\n", __func__, (mlmeext), (ms));*/ \
583         mod_timer(&mlmeext->survey_timer, jiffies + msecs_to_jiffies(ms));
584
585 #define set_link_timer(mlmeext, ms) \
586         /*DBG_8723A("%s set_link_timer(%p, %d)\n", __func__, (mlmeext), (ms));*/ \
587         mod_timer(&mlmeext->link_timer, jiffies + msecs_to_jiffies(ms));
588
589 int cckrates_included23a(unsigned char *rate, int ratelen);
590 int cckratesonly_included23a(unsigned char *rate, int ratelen);
591
592 void process_addba_req23a(struct rtw_adapter *padapter, u8 *paddba_req, u8 *addr);
593
594 void correct_TSF23a(struct rtw_adapter *padapter, struct mlme_ext_priv *pmlmeext);
595
596 struct cmd_hdl {
597         uint    parmsize;
598         int (*h2cfuns)(struct rtw_adapter *padapter, const u8 *pbuf);
599 };
600
601
602 int read_macreg_hdl(struct rtw_adapter *padapter, u8 *pbuf);
603 int write_macreg_hdl(struct rtw_adapter *padapter, u8 *pbuf);
604 int read_bbreg_hdl(struct rtw_adapter *padapter, u8 *pbuf);
605 int write_bbreg_hdl(struct rtw_adapter *padapter, u8 *pbuf);
606 int read_rfreg_hdl(struct rtw_adapter *padapter, u8 *pbuf);
607 int write_rfreg_hdl(struct rtw_adapter *padapter, u8 *pbuf);
608
609
610 int NULL_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
611 int join_cmd_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
612 int disconnect_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
613 int createbss_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
614 int setopmode_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
615 int sitesurvey_cmd_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
616 int setauth_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
617 int setkey_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
618 int set_stakey_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
619 int set_assocsta_hdl(struct rtw_adapter *padapter, const u8 *pbuf);
620 int del_assocsta_hdl(struct rtw_adapter *padapter, const u8 *pbuf);
621 int add_ba_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
622
623 int mlme_evt_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
624 int h2c_msg_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
625 int tx_beacon_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
626 int set_ch_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
627 int set_chplan_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
628 int led_blink_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
629 int set_csa_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);       /* Kurt: Handling DFS channel switch announcement ie. */
630 int tdls_hdl23a(struct rtw_adapter *padapter, const u8 *pbuf);
631
632 #define GEN_DRV_CMD_HANDLER(size, cmd)  {size, &cmd ## _hdl23a},
633 #define GEN_MLME_EXT_HANDLER(size, cmd) {size, cmd},
634
635 struct C2HEvent_Header {
636 #ifdef __LITTLE_ENDIAN
637
638         unsigned int len:16;
639         unsigned int ID:8;
640         unsigned int seq:8;
641
642 #elif defined(__BIG_ENDIAN)
643
644         unsigned int seq:8;
645         unsigned int ID:8;
646         unsigned int len:16;
647
648 #else
649
650 #  error "Must be LITTLE or BIG Endian"
651
652 #endif
653
654         unsigned int rsvd;
655 };
656
657 enum rtw_c2h_event {
658         GEN_EVT_CODE(_Read_MACREG) = 0, /*0*/
659         GEN_EVT_CODE(_Read_BBREG),
660         GEN_EVT_CODE(_Read_RFREG),
661         GEN_EVT_CODE(_Read_EEPROM),
662         GEN_EVT_CODE(_Read_EFUSE),
663         GEN_EVT_CODE(_Read_CAM),                        /*5*/
664         GEN_EVT_CODE(_Get_BasicRate),
665         GEN_EVT_CODE(_Get_DataRate),
666         GEN_EVT_CODE(_Survey),   /*8*/
667         GEN_EVT_CODE(_SurveyDone),       /*9*/
668
669         GEN_EVT_CODE(_JoinBss) , /*10*/
670         GEN_EVT_CODE(_AddSTA),
671         GEN_EVT_CODE(_DelSTA),
672         GEN_EVT_CODE(_AtimDone) ,
673         GEN_EVT_CODE(_TX_Report),
674         GEN_EVT_CODE(_CCX_Report),                      /*15*/
675         GEN_EVT_CODE(_DTM_Report),
676         GEN_EVT_CODE(_TX_Rate_Statistics),
677         GEN_EVT_CODE(_C2HLBK),
678         GEN_EVT_CODE(_FWDBG),
679         GEN_EVT_CODE(_C2HFEEDBACK),               /*20*/
680         GEN_EVT_CODE(_ADDBA),
681         GEN_EVT_CODE(_C2HBCN),
682         GEN_EVT_CODE(_ReportPwrState),          /* filen: only for PCIE, USB */
683         GEN_EVT_CODE(_CloseRF),                         /* filen: only for PCIE, work around ASPM */
684         MAX_C2HEVT
685 };
686
687 #endif