xref: /OK3568_Linux_fs/external/rkwifibt/drivers/rtl8188fu/include/rtw_cmd.h (revision 4882a59341e53eb6f0b4789bf948001014eff981)
1 /******************************************************************************
2  *
3  * Copyright(c) 2007 - 2017 Realtek Corporation.
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_CMD_H_
16 #define __RTW_CMD_H_
17 
18 
19 #define C2H_MEM_SZ (16*1024)
20 
21 #define FREE_CMDOBJ_SZ	128
22 
23 #define MAX_CMDSZ	1536
24 #define MAX_RSPSZ	512
25 #define MAX_EVTSZ	1024
26 
27 #define CMDBUFF_ALIGN_SZ 512
28 
29 struct cmd_obj {
30 	_adapter *padapter;
31 	u16	cmdcode;
32 	u8	res;
33 	u8	*parmbuf;
34 	u32	cmdsz;
35 	u8	*rsp;
36 	u32	rspsz;
37 	struct submit_ctx *sctx;
38 	u8 no_io;
39 	/* _sema 	cmd_sem; */
40 	_list	list;
41 };
42 
43 /* cmd flags */
44 enum {
45 	RTW_CMDF_DIRECTLY = BIT0,
46 	RTW_CMDF_WAIT_ACK = BIT1,
47 };
48 
49 struct cmd_priv {
50 	_sema	cmd_queue_sema;
51 	/* _sema	cmd_done_sema; */
52 	_sema	start_cmdthread_sema;
53 
54 	_queue	cmd_queue;
55 	u8	cmd_seq;
56 	u8	*cmd_buf;	/* shall be non-paged, and 4 bytes aligned */
57 	u8	*cmd_allocated_buf;
58 	u8	*rsp_buf;	/* shall be non-paged, and 4 bytes aligned		 */
59 	u8	*rsp_allocated_buf;
60 	u32	cmd_issued_cnt;
61 	u32	cmd_done_cnt;
62 	u32	rsp_cnt;
63 	ATOMIC_T cmdthd_running;
64 	/* u8 cmdthd_running; */
65 
66 	_adapter *padapter;
67 	_mutex sctx_mutex;
68 };
69 
70 #ifdef CONFIG_EVENT_THREAD_MODE
71 struct evt_obj {
72 	u16	evtcode;
73 	u8	res;
74 	u8	*parmbuf;
75 	u32	evtsz;
76 	_list	list;
77 };
78 #endif
79 
80 struct	evt_priv {
81 #ifdef CONFIG_EVENT_THREAD_MODE
82 	_sema	evt_notify;
83 
84 	_queue	evt_queue;
85 #endif
86 
87 #ifdef CONFIG_FW_C2H_REG
88 	#define CONFIG_C2H_WK
89 #endif
90 
91 #ifdef CONFIG_C2H_WK
92 	_workitem c2h_wk;
93 	bool c2h_wk_alive;
94 	struct rtw_cbuf *c2h_queue;
95 	#define C2H_QUEUE_MAX_LEN 10
96 #endif
97 
98 #ifdef CONFIG_H2CLBK
99 	_sema	lbkevt_done;
100 	u8	lbkevt_limit;
101 	u8	lbkevt_num;
102 	u8	*cmdevt_parm;
103 #endif
104 	ATOMIC_T event_seq;
105 	u8	*evt_buf;	/* shall be non-paged, and 4 bytes aligned		 */
106 	u8	*evt_allocated_buf;
107 	u32	evt_done_cnt;
108 #if defined(CONFIG_SDIO_HCI) || defined(CONFIG_GSPI_HCI)
109 	u8	*c2h_mem;
110 	u8	*allocated_c2h_mem;
111 #endif
112 
113 };
114 
115 #define init_h2fwcmd_w_parm_no_rsp(pcmd, pparm, code) \
116 	do {\
117 		_rtw_init_listhead(&pcmd->list);\
118 		pcmd->cmdcode = code;\
119 		pcmd->parmbuf = (u8 *)(pparm);\
120 		pcmd->cmdsz = sizeof (*pparm);\
121 		pcmd->rsp = NULL;\
122 		pcmd->rspsz = 0;\
123 	} while (0)
124 
125 #define init_h2fwcmd_w_parm_no_parm_rsp(pcmd, code) \
126 	do {\
127 		_rtw_init_listhead(&pcmd->list);\
128 		pcmd->cmdcode = code;\
129 		pcmd->parmbuf = NULL;\
130 		pcmd->cmdsz = 0;\
131 		pcmd->rsp = NULL;\
132 		pcmd->rspsz = 0;\
133 	} while (0)
134 
135 struct P2P_PS_Offload_t {
136 	u8 Offload_En:1;
137 	u8 role:1; /* 1: Owner, 0: Client */
138 	u8 CTWindow_En:1;
139 	u8 NoA0_En:1;
140 	u8 NoA1_En:1;
141 	u8 AllStaSleep:1; /* Only valid in Owner */
142 	u8 discovery:1;
143 	u8 rsvd:1;
144 #ifdef CONFIG_P2P_PS_NOA_USE_MACID_SLEEP
145 	u8 p2p_macid:7;
146 	u8 disable_close_rf:1; /*1: not close RF but just pause p2p_macid when NoA duration*/
147 #endif /* CONFIG_P2P_PS_NOA_USE_MACID_SLEEP */
148 };
149 
150 struct P2P_PS_CTWPeriod_t {
151 	u8 CTWPeriod;	/* TU */
152 };
153 
154 #ifdef CONFIG_P2P_WOWLAN
155 
156 struct P2P_WoWlan_Offload_t {
157 	u8 Disconnect_Wkup_Drv:1;
158 	u8 role:2;
159 	u8 Wps_Config[2];
160 };
161 
162 #endif /* CONFIG_P2P_WOWLAN */
163 
164 extern u32 rtw_enqueue_cmd(struct cmd_priv *pcmdpriv, struct cmd_obj *obj);
165 extern struct cmd_obj *rtw_dequeue_cmd(struct cmd_priv *pcmdpriv);
166 extern void rtw_free_cmd_obj(struct cmd_obj *pcmd);
167 
168 #ifdef CONFIG_EVENT_THREAD_MODE
169 extern u32 rtw_enqueue_evt(struct evt_priv *pevtpriv, struct evt_obj *obj);
170 extern struct evt_obj *rtw_dequeue_evt(_queue *queue);
171 extern void rtw_free_evt_obj(struct evt_obj *pcmd);
172 #endif
173 
174 void rtw_stop_cmd_thread(_adapter *adapter);
175 thread_return rtw_cmd_thread(thread_context context);
176 
177 extern u32 rtw_init_cmd_priv(struct cmd_priv *pcmdpriv);
178 extern void rtw_free_cmd_priv(struct cmd_priv *pcmdpriv);
179 
180 extern u32 rtw_init_evt_priv(struct evt_priv *pevtpriv);
181 extern void rtw_free_evt_priv(struct evt_priv *pevtpriv);
182 extern void rtw_cmd_clr_isr(struct cmd_priv *pcmdpriv);
183 extern void rtw_evt_notify_isr(struct evt_priv *pevtpriv);
184 #ifdef CONFIG_P2P
185 u8 p2p_protocol_wk_cmd(_adapter *padapter, int intCmdType);
186 #endif /* CONFIG_P2P */
187 
188 #ifdef CONFIG_IOCTL_CFG80211
189 struct rtw_roch_parm {
190 	u64 cookie;
191 	struct wireless_dev *wdev;
192 	struct ieee80211_channel ch;
193 	enum nl80211_channel_type ch_type;
194 	unsigned int duration;
195 };
196 
197 u8 rtw_roch_cmd(_adapter *adapter
198 	, u64 cookie, struct wireless_dev *wdev
199 	, struct ieee80211_channel *ch, enum nl80211_channel_type ch_type
200 	, unsigned int duration
201 	, u8 flags
202 );
203 
204 u8 rtw_cancel_roch_cmd(_adapter *adapter, u64 cookie, struct wireless_dev *wdev, u8 flags);
205 
206 u8 rtw_mgnt_tx_cmd(_adapter *adapter, u8 tx_ch, u8 no_cck, const u8 *buf, size_t len, int wait_ack, u8 flags);
207 struct mgnt_tx_parm {
208 	u8 tx_ch;
209 	u8 no_cck;
210 	const u8 *buf;
211 	size_t len;
212 	int wait_ack;
213 };
214 #endif
215 
216 enum rtw_drvextra_cmd_id {
217 	NONE_WK_CID,
218 	STA_MSTATUS_RPT_WK_CID,
219 	DYNAMIC_CHK_WK_CID,
220 	DM_CTRL_WK_CID,
221 	PBC_POLLING_WK_CID,
222 	POWER_SAVING_CTRL_WK_CID,/* IPS,AUTOSuspend */
223 	LPS_CTRL_WK_CID,
224 	ANT_SELECT_WK_CID,
225 	P2P_PS_WK_CID,
226 	P2P_PROTO_WK_CID,
227 	CHECK_HIQ_WK_CID,/* for softap mode, check hi queue if empty */
228 	C2H_WK_CID,
229 	RTP_TIMER_CFG_WK_CID,
230 	RESET_SECURITYPRIV, /* add for CONFIG_IEEE80211W, none 11w also can use */
231 	FREE_ASSOC_RESOURCES, /* add for CONFIG_IEEE80211W, none 11w also can use */
232 	DM_IN_LPS_WK_CID,
233 	DM_RA_MSK_WK_CID, /* add for STA update RAMask when bandwith change. */
234 	BEAMFORMING_WK_CID,
235 	LPS_CHANGE_DTIM_CID,
236 	BTINFO_WK_CID,
237 	BTC_REDUCE_WL_TXPWR_CID,
238 	DFS_RADAR_DETECT_WK_CID,
239 	DFS_RADAR_DETECT_EN_DEC_WK_CID,
240 	SESSION_TRACKER_WK_CID,
241 	EN_HW_UPDATE_TSF_WK_CID,
242 	PERIOD_TSF_UPDATE_END_WK_CID,
243 	TEST_H2C_CID,
244 	MP_CMD_WK_CID,
245 	CUSTOMER_STR_WK_CID,
246 #ifdef CONFIG_RTW_REPEATER_SON
247 	RSON_SCAN_WK_CID,
248 #endif
249 	ROCH_WK_CID,
250 	MGNT_TX_WK_CID,
251 	REQ_PER_CMD_WK_CID,
252 	SSMPS_WK_CID,
253 #ifdef CONFIG_CTRL_TXSS_BY_TP
254 	TXSS_WK_CID,
255 #endif
256 	AC_PARM_CMD_WK_CID,
257 #ifdef CONFIG_AP_MODE
258 	STOP_AP_WK_CID,
259 #endif
260 #ifdef CONFIG_RTW_TOKEN_BASED_XMIT
261 	TBTX_CONTROL_TX_WK_CID,
262 #endif
263 	MAX_WK_CID
264 };
265 
266 enum LPS_CTRL_TYPE {
267 	LPS_CTRL_SCAN = 0,
268 	LPS_CTRL_JOINBSS = 1,
269 	LPS_CTRL_CONNECT = 2,
270 	LPS_CTRL_DISCONNECT = 3,
271 	LPS_CTRL_SPECIAL_PACKET = 4,
272 	LPS_CTRL_LEAVE = 5,
273 	LPS_CTRL_TRAFFIC_BUSY = 6,
274 	LPS_CTRL_TX_TRAFFIC_LEAVE = 7,
275 	LPS_CTRL_RX_TRAFFIC_LEAVE = 8,
276 	LPS_CTRL_ENTER = 9,
277 	LPS_CTRL_LEAVE_CFG80211_PWRMGMT = 10,
278 	LPS_CTRL_LEAVE_SET_OPTION = 11,
279 };
280 
281 enum STAKEY_TYPE {
282 	GROUP_KEY		= 0,
283 	UNICAST_KEY		= 1,
284 	TDLS_KEY		= 2,
285 };
286 
287 enum RFINTFS {
288 	SWSI,
289 	HWSI,
290 	HWPI,
291 };
292 
293 
294 /*
295 Caller Mode: Infra, Ad-Hoc
296 
297 Notes: To join the specified bss
298 
299 Command Event Mode
300 
301 */
302 struct joinbss_parm {
303 	WLAN_BSSID_EX network;
304 };
305 
306 /*
307 Caller Mode: Infra, Ad-HoC(C)
308 
309 Notes: To disconnect the current associated BSS
310 
311 Command Mode
312 
313 */
314 struct disconnect_parm {
315 	u32 deauth_timeout_ms;
316 };
317 
318 /*
319 Caller Mode: AP, Ad-HoC(M)
320 
321 Notes: To create a BSS
322 
323 Command Mode
324 */
325 struct createbss_parm {
326 	bool adhoc;
327 
328 	/* used by AP/Mesh mode now */
329 	u8 ifbmp;
330 	u8 excl_ifbmp;
331 	s16 req_ch;
332 	s8 req_bw;
333 	s8 req_offset;
334 };
335 
336 
337 struct	setopmode_parm {
338 	u8	mode;
339 	u8	rsvd[3];
340 };
341 
342 /*
343 Caller Mode: AP, Ad-HoC, Infra
344 
345 Notes: To ask RTL8711 performing site-survey
346 
347 Command-Event Mode
348 
349 */
350 
351 #define RTW_SSID_SCAN_AMOUNT 9 /* for WEXT_CSCAN_AMOUNT 9 */
352 #define RTW_CHANNEL_SCAN_AMOUNT (14+37)
353 struct sitesurvey_parm {
354 	sint scan_mode;	/* active: 1, passive: 0 */
355 	/* sint bsslimit;	// 1 ~ 48 */
356 	u8 ssid_num;
357 	u8 ch_num;
358 	NDIS_802_11_SSID ssid[RTW_SSID_SCAN_AMOUNT];
359 	struct rtw_ieee80211_channel ch[RTW_CHANNEL_SCAN_AMOUNT];
360 
361 	u32 token; 	/* 80211k use it to identify caller */
362 	u16 duration;	/* 0: use default, otherwise: channel scan time */
363 	u8 igi;		/* 0: use defalut */
364 	u8 bw;		/* 0: use default */
365 
366 	bool acs; /* aim to trigger channel selection when scan done */
367 };
368 
369 /*
370 Caller Mode: Any
371 
372 Notes: To set the auth type of RTL8711. open/shared/802.1x
373 
374 Command Mode
375 
376 */
377 struct setauth_parm {
378 	u8 mode;  /* 0: legacy open, 1: legacy shared 2: 802.1x */
379 	u8 _1x;   /* 0: PSK, 1: TLS */
380 	u8 rsvd[2];
381 };
382 
383 /*
384 Caller Mode: Infra
385 
386 a. algorithm: wep40, wep104, tkip & aes
387 b. keytype: grp key/unicast key
388 c. key contents
389 
390 when shared key ==> keyid is the camid
391 when 802.1x ==> keyid [0:1] ==> grp key
392 when 802.1x ==> keyid > 2 ==> unicast key
393 
394 */
395 struct setkey_parm {
396 	u8	algorithm;	/* encryption algorithm, could be none, wep40, TKIP, CCMP, wep104 */
397 	u8	keyid;
398 	u8	set_tx;		/* 1: main tx key for wep. 0: other key. */
399 	u8	key[32];	/* this could be 40 or 104 */
400 };
401 
402 /*
403 When in AP or Ad-Hoc mode, this is used to
404 allocate an sw/hw entry for a newly associated sta.
405 
406 Command
407 
408 when shared key ==> algorithm/keyid
409 
410 */
411 struct set_stakey_parm {
412 	u8 addr[ETH_ALEN];
413 	u8 algorithm;
414 	u8 keyid;
415 	u8 key[32];
416 	u8 gk;
417 };
418 
419 struct set_stakey_rsp {
420 	u8	addr[ETH_ALEN];
421 	u8	keyid;
422 	u8	rsvd;
423 };
424 
425 struct Tx_Beacon_param {
426 	WLAN_BSSID_EX network;
427 };
428 
429 /*
430 	Notes: This command is used for H2C/C2H loopback testing
431 
432 	mac[0] == 0
433 	==> CMD mode, return H2C_SUCCESS.
434 	The following condition must be ture under CMD mode
435 		mac[1] == mac[4], mac[2] == mac[3], mac[0]=mac[5]= 0;
436 		s0 == 0x1234, s1 == 0xabcd, w0 == 0x78563412, w1 == 0x5aa5def7;
437 		s2 == (b1 << 8 | b0);
438 
439 	mac[0] == 1
440 	==> CMD_RSP mode, return H2C_SUCCESS_RSP
441 
442 	The rsp layout shall be:
443 	rsp:			parm:
444 		mac[0]  =   mac[5];
445 		mac[1]  =   mac[4];
446 		mac[2]  =   mac[3];
447 		mac[3]  =   mac[2];
448 		mac[4]  =   mac[1];
449 		mac[5]  =   mac[0];
450 		s0		=   s1;
451 		s1		=   swap16(s0);
452 		w0		=	swap32(w1);
453 		b0		=	b1
454 		s2		=	s0 + s1
455 		b1		=	b0
456 		w1		=	w0
457 
458 	mac[0] ==	2
459 	==> CMD_EVENT mode, return	H2C_SUCCESS
460 	The event layout shall be:
461 	event:			parm:
462 		mac[0]  =   mac[5];
463 		mac[1]  =   mac[4];
464 		mac[2]  =   event's sequence number, starting from 1 to parm's marc[3]
465 		mac[3]  =   mac[2];
466 		mac[4]  =   mac[1];
467 		mac[5]  =   mac[0];
468 		s0		=   swap16(s0) - event.mac[2];
469 		s1		=   s1 + event.mac[2];
470 		w0		=	swap32(w0);
471 		b0		=	b1
472 		s2		=	s0 + event.mac[2]
473 		b1		=	b0
474 		w1		=	swap32(w1) - event.mac[2];
475 
476 		parm->mac[3] is the total event counts that host requested.
477 
478 
479 	event will be the same with the cmd's param.
480 
481 */
482 
483 #ifdef CONFIG_H2CLBK
484 
485 struct seth2clbk_parm {
486 	u8 mac[6];
487 	u16	s0;
488 	u16	s1;
489 	u32	w0;
490 	u8	b0;
491 	u16  s2;
492 	u8	b1;
493 	u32	w1;
494 };
495 
496 struct geth2clbk_parm {
497 	u32 rsv;
498 };
499 
500 struct geth2clbk_rsp {
501 	u8	mac[6];
502 	u16	s0;
503 	u16	s1;
504 	u32	w0;
505 	u8	b0;
506 	u16	s2;
507 	u8	b1;
508 	u32	w1;
509 };
510 
511 #endif	/* CONFIG_H2CLBK */
512 
513 /* CMD param Formart for driver extra cmd handler */
514 struct drvextra_cmd_parm {
515 	int ec_id; /* extra cmd id */
516 	int type; /* Can use this field as the type id or command size */
517 	int size; /* buffer size */
518 	unsigned char *pbuf;
519 };
520 
521 /*------------------- Below are used for RF/BB tunning ---------------------*/
522 struct addBaReq_parm {
523 	unsigned int tid;
524 	u8	addr[ETH_ALEN];
525 };
526 
527 struct addBaRsp_parm {
528 	unsigned int tid;
529 	unsigned int start_seq;
530 	u8 addr[ETH_ALEN];
531 	u8 status;
532 	u8 size;
533 };
534 
535 struct set_ch_parm {
536 	u8 ch;
537 	u8 bw;
538 	u8 ch_offset;
539 };
540 
541 struct SetChannelPlan_param {
542 	const struct country_chplan *country_ent;
543 	u8 channel_plan;
544 };
545 
546 struct LedBlink_param {
547 	void *pLed;
548 };
549 
550 struct TDLSoption_param {
551 	u8 addr[ETH_ALEN];
552 	u8 option;
553 };
554 
555 struct RunInThread_param {
556 	void (*func)(void *);
557 	void *context;
558 };
559 
560 
561 #define GEN_CMD_CODE(cmd)	cmd ## _CMD_
562 
563 
564 /*
565 
566 Result:
567 0x00: success
568 0x01: sucess, and check Response.
569 0x02: cmd ignored due to duplicated sequcne number
570 0x03: cmd dropped due to invalid cmd code
571 0x04: reserved.
572 
573 */
574 
575 #define H2C_RSP_OFFSET			512
576 
577 #define H2C_SUCCESS			0x00
578 #define H2C_SUCCESS_RSP			0x01
579 #define H2C_DUPLICATED			0x02
580 #define H2C_DROPPED			0x03
581 #define H2C_PARAMETERS_ERROR		0x04
582 #define H2C_REJECTED			0x05
583 #define H2C_CMD_OVERFLOW		0x06
584 #define H2C_RESERVED			0x07
585 #define H2C_ENQ_HEAD			0x08
586 #define H2C_ENQ_HEAD_FAIL		0x09
587 #define H2C_CMD_FAIL			0x0A
588 
589 void rtw_init_sitesurvey_parm(_adapter *padapter, struct sitesurvey_parm *pparm);
590 u8 rtw_sitesurvey_cmd(_adapter *padapter, struct sitesurvey_parm *pparm);
591 #ifdef CONFIG_AP_MODE
592 u8 rtw_create_ibss_cmd(_adapter *adapter, int flags);
593 u8 rtw_startbss_cmd(_adapter *adapter, int flags);
594 #endif
595 
596 #define REQ_CH_NONE		-1
597 #define REQ_CH_INT_INFO	-2
598 #define REQ_BW_NONE		-1
599 #define REQ_BW_ORI		-2
600 #define REQ_OFFSET_NONE	-1
601 
602 struct sta_info;
603 extern u8 rtw_setstakey_cmd(_adapter  *padapter, struct sta_info *sta, u8 key_type, bool enqueue);
604 extern u8 rtw_clearstakey_cmd(_adapter *padapter, struct sta_info *sta, u8 enqueue);
605 
606 extern u8 rtw_joinbss_cmd(_adapter  *padapter, struct wlan_network *pnetwork);
607 u8 rtw_disassoc_cmd(_adapter *padapter, u32 deauth_timeout_ms, int flags);
608 #ifdef CONFIG_AP_MODE
609 u8 rtw_change_bss_chbw_cmd(_adapter *adapter, int flags
610 	, u8 ifbmp, u8 excl_ifbmp, s16 req_ch, s8 req_bw, s8 req_offset);
611 u8 rtw_stop_ap_cmd(_adapter *adapter, u8 flags);
612 #endif
613 #ifdef CONFIG_RTW_TOKEN_BASED_XMIT
614 u8 rtw_tx_control_cmd(_adapter *adapter);
615 #endif
616 extern u8 rtw_setopmode_cmd(_adapter  *padapter, NDIS_802_11_NETWORK_INFRASTRUCTURE networktype, u8 flags);
617 
618 extern u8 rtw_addbareq_cmd(_adapter *padapter, u8 tid, u8 *addr);
619 extern u8 rtw_addbarsp_cmd(_adapter *padapter, u8 *addr, u16 tid, u8 status, u8 size, u16 start_seq);
620 /* add for CONFIG_IEEE80211W, none 11w also can use */
621 extern u8 rtw_reset_securitypriv_cmd(_adapter *padapter);
622 extern u8 rtw_free_assoc_resources_cmd(_adapter *padapter, u8 lock_scanned_queue, int flags);
623 extern u8 rtw_dynamic_chk_wk_cmd(_adapter *adapter);
624 
625 u8 rtw_lps_ctrl_wk_cmd(_adapter *padapter, u8 lps_ctrl_type, u8 flags);
626 u8 rtw_lps_ctrl_leave_set_level_cmd(_adapter *adapter, u8 lps_level, u8 flags);
627 #ifdef CONFIG_LPS_1T1R
628 u8 rtw_lps_ctrl_leave_set_1t1r_cmd(_adapter *adapter, u8 lps_1t1r, u8 flags);
629 #endif
630 u8 rtw_dm_in_lps_wk_cmd(_adapter *padapter);
631 u8 rtw_lps_change_dtim_cmd(_adapter *padapter, u8 dtim);
632 
633 #if (RATE_ADAPTIVE_SUPPORT == 1)
634 u8 rtw_rpt_timer_cfg_cmd(_adapter *padapter, u16 minRptTime);
635 #endif
636 
637 #ifdef CONFIG_ANTENNA_DIVERSITY
638 extern  u8 rtw_antenna_select_cmd(_adapter *padapter, u8 antenna, u8 enqueue);
639 #endif
640 
641 u8 rtw_dm_ra_mask_wk_cmd(_adapter *padapter, u8 *psta);
642 
643 extern u8 rtw_ps_cmd(_adapter *padapter);
644 
645 #if CONFIG_DFS
646 void rtw_dfs_ch_switch_hdl(struct dvobj_priv *dvobj);
647 #endif
648 
649 #ifdef CONFIG_AP_MODE
650 u8 rtw_chk_hi_queue_cmd(_adapter *padapter);
651 #ifdef CONFIG_DFS_MASTER
652 u8 rtw_dfs_rd_cmd(_adapter *adapter, bool enqueue);
653 void rtw_dfs_rd_timer_hdl(void *ctx);
654 void rtw_dfs_rd_en_decision(_adapter *adapter, u8 mlme_act, u8 excl_ifbmp);
655 u8 rtw_dfs_rd_en_decision_cmd(_adapter *adapter);
656 #endif /* CONFIG_DFS_MASTER */
657 #endif /* CONFIG_AP_MODE */
658 
659 #ifdef CONFIG_BT_COEXIST
660 u8 rtw_btinfo_cmd(PADAPTER padapter, u8 *pbuf, u16 length);
661 u8 rtw_btc_reduce_wl_txpwr_cmd(_adapter *adapter, u32 val);
662 #endif
663 
664 u8 rtw_test_h2c_cmd(_adapter *adapter, u8 *buf, u8 len);
665 
666 u8 rtw_enable_hw_update_tsf_cmd(_adapter *padapter);
667 u8 rtw_periodic_tsf_update_end_cmd(_adapter *adapter);
668 
669 u8 rtw_set_chbw_cmd(_adapter *padapter, u8 ch, u8 bw, u8 ch_offset, u8 flags);
670 u8 rtw_iqk_cmd(_adapter *padapter, u8 flags);
671 
672 u8 rtw_set_chplan_cmd(_adapter *adapter, int flags, u8 chplan, u8 swconfig);
673 u8 rtw_set_country_cmd(_adapter *adapter, int flags, const char *country_code, u8 swconfig);
674 
675 extern u8 rtw_led_blink_cmd(_adapter *padapter, void *pLed);
676 extern u8 rtw_set_csa_cmd(_adapter *adapter);
677 extern u8 rtw_tdls_cmd(_adapter *padapter, u8 *addr, u8 option);
678 
679 u8 rtw_mp_cmd(_adapter *adapter, u8 mp_cmd_id, u8 flags);
680 
681 #ifdef CONFIG_RTW_CUSTOMER_STR
682 u8 rtw_customer_str_req_cmd(_adapter *adapter);
683 u8 rtw_customer_str_write_cmd(_adapter *adapter, const u8 *cstr);
684 #endif
685 
686 #ifdef CONFIG_FW_C2H_REG
687 u8 rtw_c2h_reg_wk_cmd(_adapter *adapter, u8 *c2h_evt);
688 #endif
689 #ifdef CONFIG_FW_C2H_PKT
690 u8 rtw_c2h_packet_wk_cmd(_adapter *adapter, u8 *c2h_evt, u16 length);
691 #endif
692 
693 #ifdef CONFIG_RTW_REPEATER_SON
694 #define RSON_SCAN_PROCESS		10
695 #define RSON_SCAN_DISABLE		11
696 u8 rtw_rson_scan_wk_cmd(_adapter *adapter, int op);
697 #endif
698 
699 u8 rtw_run_in_thread_cmd(_adapter *adapter, void (*func)(void *), void *context);
700 u8 rtw_run_in_thread_cmd_wait(_adapter *adapter, void (*func)(void *), void *context, s32 timeout_ms);
701 
702 struct ssmps_cmd_parm {
703 	struct sta_info *sta;
704 	u8 smps;
705 };
706 u8 rtw_ssmps_wk_cmd(_adapter *adapter, struct sta_info *sta, u8 smps, u8 enqueue);
707 
708 u8 session_tracker_chk_cmd(_adapter *adapter, struct sta_info *sta);
709 u8 session_tracker_add_cmd(_adapter *adapter, struct sta_info *sta, u8 *local_naddr, u8 *local_port, u8 *remote_naddr, u8 *remote_port);
710 u8 session_tracker_del_cmd(_adapter *adapter, struct sta_info *sta, u8 *local_naddr, u8 *local_port, u8 *remote_naddr, u8 *remote_port);
711 
712 u8 set_txq_params_cmd(_adapter *adapter, u32 ac_parm, u8 ac_type);
713 
714 #if defined(CONFIG_RTW_MESH) && defined(RTW_PER_CMD_SUPPORT_FW)
715 u8 rtw_req_per_cmd(_adapter * adapter);
716 #endif
717 #ifdef CONFIG_RTW_TOKEN_BASED_XMIT
718 u8 rtw_tbtx_chk_cmd(_adapter *adapter);
719 u8 rtw_tbtx_token_dispatch_cmd(_adapter *adapter);
720 #endif
721 #ifdef CONFIG_CTRL_TXSS_BY_TP
722 struct txss_cmd_parm {
723 	struct sta_info *sta;
724 	bool tx_1ss;
725 };
726 
727 void rtw_ctrl_txss_update_mimo_type(_adapter *adapter, struct sta_info *sta);
728 u8 rtw_ctrl_txss(_adapter *adapter, struct sta_info *sta, bool tx_1ss);
729 void rtw_ctrl_tx_ss_by_tp(_adapter *adapter, u8 from_timer);
730 
731 #ifdef DBG_CTRL_TXSS
732 void dbg_ctrl_txss(_adapter *adapter, bool tx_1ss);
733 #endif
734 #endif
735 
736 u8 rtw_drvextra_cmd_hdl(_adapter *padapter, unsigned char *pbuf);
737 
738 extern void rtw_survey_cmd_callback(_adapter  *padapter, struct cmd_obj *pcmd);
739 extern void rtw_disassoc_cmd_callback(_adapter  *padapter, struct cmd_obj *pcmd);
740 extern void rtw_joinbss_cmd_callback(_adapter  *padapter, struct cmd_obj *pcmd);
741 void rtw_create_ibss_post_hdl(_adapter *padapter, int status);
742 extern void rtw_readtssi_cmdrsp_callback(_adapter	*padapter,  struct cmd_obj *pcmd);
743 
744 extern void rtw_setstaKey_cmdrsp_callback(_adapter  *padapter,  struct cmd_obj *pcmd);
745 extern void rtw_getrttbl_cmdrsp_callback(_adapter  *padapter,  struct cmd_obj *pcmd);
746 
747 enum rtw_cmd_id {
748 	CMD_JOINBSS, /*0*/
749 	CMD_DISCONNECT, /*1*/
750 	CMD_CREATE_BSS,/*2*/
751 	CMD_SET_OPMODE, /*3*/
752 	CMD_SITE_SURVEY, /*4*/
753 	CMD_SET_AUTH, /*5*/
754 	CMD_SET_KEY, /*6*/
755 	CMD_SET_STAKEY, /*7*/
756 	CMD_ADD_BAREQ, /*8*/
757 	CMD_SET_CHANNEL, /*9*/
758 	CMD_TX_BEACON, /*10*/
759 	CMD_SET_MLME_EVT, /*11*/
760 	CMD_SET_DRV_EXTRA, /*12*/
761 	CMD_SET_CHANPLAN, /*13*/
762 	CMD_LEDBLINK, /*14*/
763 	CMD_SET_CHANSWITCH, /*15*/
764 	CMD_TDLS, /*16*/
765 	CMD_CHK_BMCSLEEPQ,  /*17*/
766 	CMD_RUN_INTHREAD, /*18*/
767 	CMD_ADD_BARSP, /*19*/
768 	CMD_RM_POST_EVENT, /*20*/
769 	CMD_SET_MESH_PLINK_STATE, /* 21 */
770 	CMD_DO_IQK, /* 22 */
771 	CMD_ID_MAX
772 };
773 
774 #define CMD_FMT "cmd=%d,%d,%d"
775 #define CMD_ARG(cmd) \
776 	(cmd)->cmdcode, \
777 	(cmd)->cmdcode == CMD_SET_DRV_EXTRA ? ((struct drvextra_cmd_parm *)(cmd)->parmbuf)->ec_id : ((cmd)->cmdcode == CMD_SET_MLME_EVT ? ((struct rtw_evt_header *)(cmd)->parmbuf)->id : 0), \
778 	(cmd)->cmdcode == CMD_SET_DRV_EXTRA ? ((struct drvextra_cmd_parm *)(cmd)->parmbuf)->type : 0
779 
780 #endif /* _CMD_H_ */
781