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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_PWRCTRL_H_
16 #define __RTW_PWRCTRL_H_
17 
18 
19 #define FW_PWR0	0
20 #define FW_PWR1	1
21 #define FW_PWR2	2
22 #define FW_PWR3	3
23 
24 
25 #define HW_PWR0	7
26 #define HW_PWR1	6
27 #define HW_PWR2	2
28 #define HW_PWR3	0
29 #define HW_PWR4	8
30 
31 #define FW_PWRMSK	0x7
32 
33 
34 #define XMIT_ALIVE	BIT(0)
35 #define RECV_ALIVE	BIT(1)
36 #define CMD_ALIVE	BIT(2)
37 #define EVT_ALIVE	BIT(3)
38 #ifdef CONFIG_BT_COEXIST
39 #define BTCOEX_ALIVE	BIT(4)
40 #endif /* CONFIG_BT_COEXIST */
41 #define LPS_ALIVE	BIT(5)
42 
43 #ifdef CONFIG_WOWLAN
44 	#ifdef CONFIG_PLATFORM_ANDROID_INTEL_X86
45 		/* TCP/ICMP/UDP multicast with specific IP addr */
46 		#define DEFAULT_PATTERN_NUM 4
47 	#else
48 		/* TCP/ICMP */
49 		#define DEFAULT_PATTERN_NUM 3
50 	#endif
51 
52 #ifdef CONFIG_WOW_PATTERN_HW_CAM	/* Frame Mask Cam number for pattern match */
53 #define MAX_WKFM_CAM_NUM	12
54 #else
55 #define MAX_WKFM_CAM_NUM	16
56 #endif
57 
58 #define MAX_WKFM_SIZE	16 /* (16 bytes for WKFM bit mask, 16*8 = 128 bits) */
59 #define MAX_WKFM_PATTERN_SIZE	128
60 #define MAX_IN_PATTERN_SIZE		512
61 
62 /*
63  * MAX_WKFM_PATTERN_STR_LEN : the max. length of wow pattern string
64  *	e.g. echo 00:01:02:...:7f > /proc/net/rtl88x2bu/wlan0/wow_pattern_info
65  *	- each byte of pattern is represented as 2-bytes ascii : MAX_WKFM_PATTERN_SIZE * 2
66  *	- the number of common ':' in pattern string : MAX_WKFM_PATTERN_SIZE - 1
67  *	- 1 byte '\n'(0x0a) is generated at the end when we use echo command
68  *	so total max. length is (MAX_WKFM_PATTERN_SIZE * 3)
69  */
70 #define MAX_WKFM_PATTERN_STR_LEN (MAX_WKFM_PATTERN_SIZE * 3)
71 
72 #define WKFMCAM_ADDR_NUM 6
73 #define WKFMCAM_SIZE 24 /* each entry need 6*4 bytes */
74 enum pattern_type {
75 	PATTERN_BROADCAST = 0,
76 	PATTERN_MULTICAST,
77 	PATTERN_UNICAST,
78 	PATTERN_VALID,
79 	PATTERN_INVALID,
80 };
81 
82 typedef struct rtl_priv_pattern {
83 	int len;
84 	char content[MAX_WKFM_PATTERN_SIZE];
85 	char mask[MAX_WKFM_SIZE];
86 } rtl_priv_pattern_t;
87 
88 #endif /* CONFIG_WOWLAN */
89 
90 enum Power_Mgnt {
91 	PS_MODE_ACTIVE	= 0	,
92 	PS_MODE_MIN			,
93 	PS_MODE_MAX			,
94 	PS_MODE_DTIM			,	/* PS_MODE_SELF_DEFINED */
95 	PS_MODE_VOIP			,
96 	PS_MODE_UAPSD_WMM	,
97 	PS_MODE_UAPSD			,
98 	PS_MODE_IBSS			,
99 	PS_MODE_WWLAN		,
100 	PM_Radio_Off			,
101 	PM_Card_Disable		,
102 	PS_MODE_NUM,
103 };
104 
105 enum lps_level {
106 	LPS_NORMAL = 0,
107 	LPS_LCLK,
108 	LPS_PG,
109 	LPS_LEVEL_MAX,
110 };
111 
112 #ifdef CONFIG_PNO_SUPPORT
113 #define MAX_PNO_LIST_COUNT 16
114 #define MAX_SCAN_LIST_COUNT 14	/* 2.4G only */
115 #define MAX_HIDDEN_AP 8		/* 8 hidden AP */
116 #endif
117 
118 /*
119 	BIT[2:0] = HW state
120 	BIT[3] = Protocol PS state,   0: register active state , 1: register sleep state
121 	BIT[4] = sub-state
122 */
123 
124 #define PS_DPS				BIT(0)
125 #define PS_LCLK				(PS_DPS)
126 #define PS_RF_OFF			BIT(1)
127 #define PS_ALL_ON			BIT(2)
128 #define PS_ST_ACTIVE		BIT(3)
129 
130 #define PS_ISR_ENABLE		BIT(4)
131 #define PS_IMR_ENABLE		BIT(5)
132 #define PS_ACK				BIT(6)
133 #define PS_TOGGLE			BIT(7)
134 
135 #define PS_STATE_MASK		(0x0F)
136 #define PS_STATE_HW_MASK	(0x07)
137 #define PS_SEQ_MASK			(0xc0)
138 
139 #define PS_STATE(x)		(PS_STATE_MASK & (x))
140 #define PS_STATE_HW(x)	(PS_STATE_HW_MASK & (x))
141 #define PS_SEQ(x)		(PS_SEQ_MASK & (x))
142 
143 #define PS_STATE_S0		(PS_DPS)
144 #define PS_STATE_S1		(PS_LCLK)
145 #define PS_STATE_S2		(PS_RF_OFF)
146 #define PS_STATE_S3		(PS_ALL_ON)
147 #define PS_STATE_S4		((PS_ST_ACTIVE) | (PS_ALL_ON))
148 
149 
150 #define PS_IS_RF_ON(x)	((x) & (PS_ALL_ON))
151 #define PS_IS_ACTIVE(x)	((x) & (PS_ST_ACTIVE))
152 #define CLR_PS_STATE(x)	((x) = ((x) & (0xF0)))
153 
154 
155 struct reportpwrstate_parm {
156 	unsigned char mode;
157 	unsigned char state; /* the CPWM value */
158 	unsigned short rsvd;
159 };
160 
161 
162 typedef _sema _pwrlock;
163 
164 
_init_pwrlock(_pwrlock * plock)165 __inline static void _init_pwrlock(_pwrlock *plock)
166 {
167 	_rtw_init_sema(plock, 1);
168 }
169 
_free_pwrlock(_pwrlock * plock)170 __inline static void _free_pwrlock(_pwrlock *plock)
171 {
172 	_rtw_free_sema(plock);
173 }
174 
175 
_enter_pwrlock(_pwrlock * plock)176 __inline static void _enter_pwrlock(_pwrlock *plock)
177 {
178 	_rtw_down_sema(plock);
179 }
180 
181 
_exit_pwrlock(_pwrlock * plock)182 __inline static void _exit_pwrlock(_pwrlock *plock)
183 {
184 	_rtw_up_sema(plock);
185 }
186 
187 #define LPS_DELAY_MS	1000 /* 1 sec */
188 
189 #define EXE_PWR_NONE	0x01
190 #define EXE_PWR_IPS		0x02
191 #define EXE_PWR_LPS		0x04
192 
193 /* RF state. */
194 typedef enum _rt_rf_power_state {
195 	rf_on,		/* RF is on after RFSleep or RFOff */
196 	rf_sleep,	/* 802.11 Power Save mode */
197 	rf_off,		/* HW/SW Radio OFF or Inactive Power Save */
198 	/* =====Add the new RF state above this line===== */
199 	rf_max
200 } rt_rf_power_state;
201 
202 /* ASPM OSC Control bit, added by Roger, 2013.03.29. */
203 #define	RT_PCI_ASPM_OSC_IGNORE		0	 /* PCI ASPM ignore OSC control in default */
204 #define	RT_PCI_ASPM_OSC_ENABLE		BIT0 /* PCI ASPM controlled by OS according to ACPI Spec 5.0 */
205 #define	RT_PCI_ASPM_OSC_DISABLE		BIT1 /* PCI ASPM controlled by driver or BIOS, i.e., force enable ASPM */
206 
207 
208 enum _PS_BBRegBackup_ {
209 	PSBBREG_RF0 = 0,
210 	PSBBREG_RF1,
211 	PSBBREG_RF2,
212 	PSBBREG_AFE0,
213 	PSBBREG_TOTALCNT
214 };
215 
216 enum { /* for ips_mode */
217 	IPS_NONE = 0,
218 	IPS_NORMAL,
219 	IPS_LEVEL_2,
220 	IPS_NUM
221 };
222 
223 /* Design for pwrctrl_priv.ips_deny, 32 bits for 32 reasons at most */
224 typedef enum _PS_DENY_REASON {
225 	PS_DENY_DRV_INITIAL = 0,
226 	PS_DENY_SCAN,
227 	PS_DENY_JOIN,
228 	PS_DENY_DISCONNECT,
229 	PS_DENY_SUSPEND,
230 	PS_DENY_IOCTL,
231 	PS_DENY_MGNT_TX,
232 	PS_DENY_MONITOR_MODE,
233 	PS_DENY_BEAMFORMING,		/* Beamforming */
234 	PS_DENY_DRV_REMOVE = 30,
235 	PS_DENY_OTHERS = 31
236 } PS_DENY_REASON;
237 
238 #ifdef CONFIG_WAR_OFFLOAD
239 /* only support mDNS V4/V6 rsp now */
240 enum {
241 	WAR_ARP_RSP_EN = 0x0000001,
242 	WAR_ICMPV6_NS_RSP_EN = 0x00000002,
243 	WAR_ICMPV4_ECHO_RSP_EN = 0x00000004,
244 	WAR_ICMPV6_ECHO_RSP_EN = 0x00000008,
245 	WAR_NETBIOS_RSP_EN = 0x00000010,
246 	WAR_LLMNR_V4_RSP_EN = 0x00000020,
247 	WAR_LLMNR_V6_RSP_EN = 0x00000040,
248 	WAR_SNMP_V4_RSP_EN = 0x00000080,
249 	WAR_SNMP_V6_RSP_EN = 0x00000100,
250 	WAR_SNMP_V4_WAKEUP_EN = 0x00000200,
251 	WAR_SNMP_V6_WAKEUP_EN = 0x00000400,
252 	WAR_SSDP_V4_WAKEUP_EN = 0x00000800,
253 	WAR_SSDP_V6_WAKEUP_EN = 0x00001000,
254 	WAR_WSD_V4_WAKEUP_EN = 0x00002000,
255 	WAR_WSD_V6_WAKEUP_EN = 0x00004000,
256 	WAR_SLP_V4_WAKEUP_EN = 0x00008000,
257 	WAR_SLP_V6_WAKEUP_EN = 0x00010000,
258 	WAR_MDNS_V4_RSP_EN = 0x00020000,
259 	WAR_MDNS_V6_RSP_EN = 0x00040000,
260 	WAR_DESIGNATED_MAC_EN = 0x00080000,
261 	WAR_LLTD_WAKEUP_EN = 0x00100000,
262 	WAR_ARP_WAKEUP_EN = 0x00200000,
263 	WAR_MAGIC_WAKEUP_EN = 0x00400000,
264 	WAR_MDNS_V4_WAKEUP_EN = 0x000800000,
265 	WAR_MDNS_V6_WAKEUP_EN = 0x001000000
266 };
267 
268 #endif /* CONFIG_WAR_OFFLOAD */
269 
270 #ifdef CONFIG_PNO_SUPPORT
271 typedef struct pno_nlo_info {
272 	u32 fast_scan_period;				/* Fast scan period */
273 	u8	ssid_num;				/* number of entry */
274 	u8	hidden_ssid_num;
275 	u32	slow_scan_period;			/* slow scan period */
276 	u32	fast_scan_iterations;			/* Fast scan iterations */
277 	u8	ssid_length[MAX_PNO_LIST_COUNT];	/* SSID Length Array */
278 	u8	ssid_cipher_info[MAX_PNO_LIST_COUNT];	/* Cipher information for security */
279 	u8	ssid_channel_info[MAX_PNO_LIST_COUNT];	/* channel information */
280 	u8	loc_probe_req[MAX_HIDDEN_AP];		/* loc_probeReq */
281 } pno_nlo_info_t;
282 
283 typedef struct pno_ssid {
284 	u32		SSID_len;
285 	u8		SSID[WLAN_SSID_MAXLEN];
286 } pno_ssid_t;
287 
288 typedef struct pno_ssid_list {
289 	pno_ssid_t	node[MAX_PNO_LIST_COUNT];
290 } pno_ssid_list_t;
291 
292 typedef struct pno_scan_channel_info {
293 	u8	channel;
294 	u8	tx_power;
295 	u8	timeout;
296 	u8	active;				/* set 1 means active scan, or pasivite scan. */
297 } pno_scan_channel_info_t;
298 
299 #ifndef RTW_HALMAC
300 typedef struct pno_scan_info {
301 	u8	enableRFE;			/* Enable RFE */
302 	u8	period_scan_time;		/* exclusive with fast_scan_period and slow_scan_period */
303 	u8	periodScan;			/* exclusive with fast_scan_period and slow_scan_period */
304 	u8	orig_80_offset;			/* original channel 80 offset */
305 	u8	orig_40_offset;			/* original channel 40 offset */
306 	u8	orig_bw;			/* original bandwidth */
307 	u8	orig_ch;			/* original channel */
308 	u8	channel_num;			/* number of channel */
309 	u64	rfe_type;			/* rfe_type && 0x00000000000000ff */
310 	pno_scan_channel_info_t ssid_channel_info[MAX_SCAN_LIST_COUNT];
311 } pno_scan_info_t;
312 #endif
313 #endif /* CONFIG_PNO_SUPPORT */
314 
315 #ifdef CONFIG_LPS_POFF
316 /* Driver context for LPS 32K Close IO Power */
317 typedef struct lps_poff_info {
318 	bool	bEn;
319 	u8	*pStaticFile;
320 	u8	*pDynamicFile;
321 	u32	ConfFileOffset;
322 	u32	tx_bndy_static;
323 	u32	tx_bndy_dynamic;
324 	u16	ConfLenForPTK;
325 	u16	ConfLenForGTK;
326 	ATOMIC_T bEnterPOFF;
327 	ATOMIC_T bTxBoundInProgress;
328 	ATOMIC_T bSetPOFFParm;
329 } lps_poff_info_t;
330 #endif /*CONFIG_LPS_POFF*/
331 
332 struct aoac_report {
333 	u8 iv[8];
334 	u8 replay_counter_eapol_key[8];
335 	u8 group_key[32];
336 	u8 key_index;
337 	u8 security_type;
338 	u8 wow_pattern_idx;
339 	u8 version_info;
340 	u8 rekey_ok:1;
341 	u8 dummy:7;
342 	u8 reserved[3];
343 	u8 rxptk_iv[8];
344 	u8 rxgtk_iv[4][8];
345 };
346 
347 #ifdef CONFIG_WAR_OFFLOAD
348 
349 struct war_ipv4_fmt {
350 	u32 ip_addr[4];
351 	u32 ip_subnet[4];
352 	u32 ip_gateway[4];
353 };
354 
355 struct war_ipv6_fmt {
356 	u8 ipv6_addr[8][16];
357 };
358 
359 #if defined(CONFIG_OFFLOAD_MDNS_V4) || defined(CONFIG_OFFLOAD_MDNS_V6)
360 /* limitation of mDNS parameter : length and number */
361 #define MAX_MDNS_SERVICE_NAME_LEN 15
362 #define MAX_MDNS_TRANS_LEN 4 /* _tcp or _udp */
363 #define MAX_MDNS_DOMAIN_LEN 5 /* local only for mdns */
364 #define MAX_MDNS_MACHINE_NAME_LEN (63+1) /* +1 for the length byte used by the DNS format */
365 #define MAX_MDNS_TARGET_LEN 63
366 #define MAX_MDNS_DOMAIN_NAME_LEN 63
367 #define MAX_MDNS_TXT_LEN 1536
368 #define MAX_MDNS_TXT_SINGLE_LEN 255
369 
370 
371 #define MAX_MDNS_SERVICE_NUM 10
372 #define MAX_MDNS_TXT_NUM 8
373 #define MAX_MDNS_MACHINE_NAME_NUM 3
374 
375 /* for monitor rsvd page using */
376 #define MAX_MDNS_PARA_SIZE 1700 // 14*128 = 1792
377 #define MAX_MDNS_TXT_TOTAL_SIZE 10*MAX_MDNS_TXT_LEN
378 #define MAX_MDNS_RSP_PKT_SIZE 760   //  6*128 = 768
379 
380 #define RTW_MDNS_SRV_INFO(sname, sname_len, tname, tname_len, dname, dname_len, port0, port1, ttlv, tar, tar_len, idx) \
381 	{ .service=sname, .service_len=sname_len, .transport=tname, .transport_len=tname_len, \
382 	  .domain=dname , .domain_len=dname_len , .port[0]=port0, .port[1]=port1, .ttl=ttlv, \
383 	  .target=tar, .target_len=tar_len, .txt_rsp_idx=idx }
384 
385 
386 struct war_mdns_service_info {
387 	u8  service[MAX_MDNS_SERVICE_NAME_LEN+1];
388 	u8  service_len;
389 	u8  transport[MAX_MDNS_TRANS_LEN+1];
390 	u8  transport_len;
391 	u8  domain[MAX_MDNS_DOMAIN_LEN+1];
392 	u8  domain_len;
393 	u8  port[2];
394 	u32 ttl;
395 	u8  target[MAX_MDNS_TARGET_LEN+1];
396 	u8  target_len;
397 	s8  txt_rsp_idx;
398 };
399 
400 struct war_mdns_machine_name {
401 	u8  name[MAX_MDNS_MACHINE_NAME_LEN];
402 	u8  name_len;
403 };
404 
405 struct war_mdns_txt_rsp {
406 	u8  txt[MAX_MDNS_TXT_LEN];
407 	u16  txt_len;
408 };
409 #endif
410 #endif /* CONFIG_WAR_OFFLOAD */
411 
412 
413 struct rsvd_page_cache_t;
414 
415 struct pwrctrl_priv {
416 	_pwrlock	lock;
417 	_pwrlock	check_32k_lock;
418 	volatile u8 rpwm; /* requested power state for fw */
419 	volatile u8 cpwm; /* fw current power state. updated when 1. read from HCPWM 2. driver lowers power level */
420 	volatile u8 tog; /* toggling */
421 	volatile u8 cpwm_tog; /* toggling */
422 	u8 rpwm_retry;
423 
424 	u8	pwr_mode;
425 	u8	smart_ps;
426 	u8	bcn_ant_mode;
427 	u8	dtim;
428 #ifdef CONFIG_LPS_CHK_BY_TP
429 	u8	lps_chk_by_tp;
430 	u16	lps_tx_tp_th;/*Mbps*/
431 	u16	lps_rx_tp_th;/*Mbps*/
432 	u16	lps_bi_tp_th;/*Mbps*//*TRX TP*/
433 	int	lps_chk_cnt_th;
434 	int	lps_chk_cnt;
435 	u32	lps_tx_pkts;
436 	u32	lps_rx_pkts;
437 
438 #endif
439 
440 #ifdef CONFIG_WMMPS_STA
441 	u8 wmm_smart_ps;
442 #endif /* CONFIG_WMMPS_STA */
443 
444 	u32	alives;
445 	_workitem cpwm_event;
446 	_workitem dma_event; /*for handle un-synchronized tx dma*/
447 #ifdef CONFIG_LPS_RPWM_TIMER
448 	u8 brpwmtimeout;
449 	_workitem rpwmtimeoutwi;
450 	_timer pwr_rpwm_timer;
451 #endif /* CONFIG_LPS_RPWM_TIMER */
452 	u8	bpower_saving; /* for LPS/IPS */
453 
454 	u8	b_hw_radio_off;
455 	u8	reg_rfoff;
456 	u8	reg_pdnmode; /* powerdown mode */
457 	u32	rfoff_reason;
458 
459 	uint	ips_enter_cnts;
460 	uint	ips_leave_cnts;
461 	uint	lps_enter_cnts;
462 	uint	lps_leave_cnts;
463 
464 	u8	ips_mode;
465 	u8	ips_org_mode;
466 	u8	ips_mode_req; /* used to accept the mode setting request, will update to ipsmode later */
467 	uint bips_processing;
468 	systime ips_deny_time; /* will deny IPS when system time is smaller than this */
469 	u8 pre_ips_type;/* 0: default flow, 1: carddisbale flow */
470 
471 	/* ps_deny: if 0, power save is free to go; otherwise deny all kinds of power save. */
472 	/* Use PS_DENY_REASON to decide reason. */
473 	/* Don't access this variable directly without control function, */
474 	/* and this variable should be protected by lock. */
475 	u32 ps_deny;
476 
477 	u8 ps_processing; /* temporarily used to mark whether in rtw_ps_processor */
478 
479 	u8 fw_psmode_iface_id;
480 	u8	bLeisurePs;
481 	u8	LpsIdleCount;
482 	u8	power_mgnt;
483 	u8	org_power_mgnt;
484 	u8	bFwCurrentInPSMode;
485 	systime	lps_deny_time; /* will deny LPS when system time is smaller than this */
486 	s32		pnp_current_pwr_state;
487 	u8		pnp_bstop_trx;
488 	u8		bInSuspend;
489 #ifdef CONFIG_BT_COEXIST
490 	u8		bAutoResume;
491 	u8		autopm_cnt;
492 #endif
493 	u8		bSupportRemoteWakeup;
494 	u8		wowlan_wake_reason;
495 	u8		wowlan_last_wake_reason;
496 	u8		wowlan_ap_mode;
497 	u8		wowlan_mode;
498 	u8		wowlan_p2p_mode;
499 	u8		wowlan_pno_enable;
500 	u8		wowlan_in_resume;
501 
502 #ifdef CONFIG_GPIO_WAKEUP
503 	u8		is_high_active;
504 	u8		wowlan_gpio_index;
505 	u8		wowlan_gpio_output_state;
506 #endif /* CONFIG_GPIO_WAKEUP */
507 	u8		hst2dev_high_active;
508 #ifdef CONFIG_WOWLAN
509 	bool		default_patterns_en;
510 #ifdef CONFIG_IPV6
511 	u8		wowlan_ns_offload_en;
512 #endif /*CONFIG_IPV6*/
513 	u8		wowlan_txpause_status;
514 	u8		wowlan_pattern_idx;
515 	u64		wowlan_fw_iv;
516 	struct rtl_priv_pattern	patterns[MAX_WKFM_CAM_NUM];
517 #ifdef CONFIG_WOW_PATTERN_IN_TXFIFO
518 	u8		pattern_rsvd_page_loc;
519 #endif
520 #ifdef CONFIG_PNO_SUPPORT
521 	u8		pno_inited;
522 	pno_nlo_info_t	*pnlo_info;
523 	#ifndef RTW_HALMAC
524 	pno_scan_info_t	*pscan_info;
525 	#endif
526 	pno_ssid_list_t	*pno_ssid_list;
527 #endif /* CONFIG_PNO_SUPPORT */
528 #ifdef CONFIG_WOW_PATTERN_HW_CAM
529 	_mutex	wowlan_pattern_cam_mutex;
530 #endif
531 	u8		wowlan_aoac_rpt_loc;
532 	struct aoac_report wowlan_aoac_rpt;
533 	u8		wowlan_power_mgmt;
534 	u8		wowlan_lps_level;
535 	#ifdef CONFIG_LPS_1T1R
536 	u8		wowlan_lps_1t1r;
537 	#endif
538 
539 	#ifdef CONFIG_WOW_KEEP_ALIVE_PATTERN
540 	/*data 0,rsv page location*/
541 	u8		wowlan_keep_alive_mode;
542 	u8		keep_alive_pattern_loc;
543 	/*data 1 ,cam id, rx udp packet*/
544 	u8		wowlan_keep_alive_ack_index;
545 	/*data 2 ,cam id, pattern match packet*/
546 	u8		wowlan_wake_pattern_index;
547 	/*data3,unit: TBTT*/
548 	u16		wowlan_keep_alive_period;
549 	/*data4,unit: TBTT*/
550 	u8		wowlan_keep_alive_retry_interval;
551 	/*data5*/
552 	u8		wowlan_keep_alive_retry_counter;
553 	/*from echo*/
554 	u8		keep_alive_pattern[WLAN_MAX_KEEP_ALIVE_IE_LEN];
555 	u32		keep_alive_pattern_len;
556 	#endif /*CONFIG_WOW_KEEP_ALIVE_PATTERN*/
557 
558 #ifdef CONFIG_WAR_OFFLOAD
559 	u8		wowlan_war_offload_mode;
560 	u32 	wowlan_war_offload_ctrl;
561 	struct war_ipv4_fmt wowlan_war_offload_ipv4;
562 	struct war_ipv6_fmt wowlan_war_offload_ipv6;
563 	u8		wowlan_war_offload_mac[6];
564 #if defined(CONFIG_OFFLOAD_MDNS_V4) || defined(CONFIG_OFFLOAD_MDNS_V6)
565 	struct war_mdns_machine_name wowlan_war_offload_mdns_mnane[MAX_MDNS_MACHINE_NAME_NUM];
566 	struct war_mdns_service_info wowlan_war_offload_mdns_service[MAX_MDNS_SERVICE_NUM];
567 	struct war_mdns_txt_rsp 	 wowlan_war_offload_mdns_txt_rsp[MAX_MDNS_TXT_NUM];
568 	u8	   wowlan_war_offload_mdns_mnane_num;
569 	u8	   wowlan_war_offload_mdns_service_info_num;
570 	u8	   wowlan_war_offload_mdns_txt_rsp_num;
571 	u8	   wowlan_war_offload_mdns_domain_name[MAX_MDNS_DOMAIN_NAME_LEN+1];
572 	u8	   wowlan_war_offload_mdns_domain_name_len;
573 	u32    wowlan_war_offload_mdns_para_cur_size;
574 	u32    wowlan_war_offload_mdns_rsp_cur_size;
575 #endif /* CONFIG_OFFLOAD_MDNS_V4 || CONFIG_OFFLOAD_MDNS_V6 */
576 #endif /* CONFIG_WAR_OFFLOAD */
577 #endif /* CONFIG_WOWLAN */
578 	_timer	pwr_state_check_timer;
579 	int		pwr_state_check_interval;
580 	u8		pwr_state_check_cnts;
581 
582 
583 	rt_rf_power_state	rf_pwrstate;/* cur power state, only for IPS */
584 	/* rt_rf_power_state	current_rfpwrstate; */
585 	rt_rf_power_state	change_rfpwrstate;
586 
587 	u8		bHWPowerdown; /* power down mode selection. 0:radio off, 1:power down */
588 	u8		bHWPwrPindetect; /* come from registrypriv.hwpwrp_detect. enable power down function. 0:disable, 1:enable */
589 	u8		bkeepfwalive;
590 	u8		brfoffbyhw;
591 	unsigned long PS_BBRegBackup[PSBBREG_TOTALCNT];
592 
593 #ifdef CONFIG_RESUME_IN_WORKQUEUE
594 	struct workqueue_struct *rtw_workqueue;
595 	_workitem resume_work;
596 #endif
597 
598 #ifdef CONFIG_HAS_EARLYSUSPEND
599 	struct early_suspend early_suspend;
600 	u8 do_late_resume;
601 #endif /* CONFIG_HAS_EARLYSUSPEND */
602 
603 #ifdef CONFIG_ANDROID_POWER
604 	android_early_suspend_t early_suspend;
605 	u8 do_late_resume;
606 #endif
607 
608 #ifdef CONFIG_LPS_POFF
609 	lps_poff_info_t	*plps_poff_info;
610 #endif
611 	u8 lps_level_bk;
612 	u8 lps_level; /*LPS_NORMAL,LPA_CG,LPS_PG*/
613 #ifdef CONFIG_LPS_1T1R
614 	u8 lps_1t1r_bk;
615 	u8 lps_1t1r;
616 #endif
617 #ifdef CONFIG_LPS_PG
618 	struct rsvd_page_cache_t lpspg_info;
619 #ifdef CONFIG_RTL8822C
620 	struct rsvd_page_cache_t lpspg_dpk_info;
621 	struct rsvd_page_cache_t lpspg_iqk_info;
622 #endif
623 #endif
624 	u8 current_lps_hw_port_id;
625 
626 #ifdef CONFIG_RTW_CFGVENDOR_LLSTATS
627 	systime radio_on_start_time;
628 	systime pwr_saving_start_time;
629 	u32 pwr_saving_time;
630 	u32 on_time;
631 	u32 tx_time;
632 	u32 rx_time;
633 #endif /* CONFIG_RTW_CFGVENDOR_LLSTATS */
634 
635 #ifdef CONFIG_LPS_ACK
636 	struct submit_ctx lps_ack_sctx;
637 	s8 lps_ack_status;
638 	_mutex lps_ack_mutex;
639 #endif /* CONFIG_LPS_ACK */
640 };
641 
642 #define rtw_get_ips_mode_req(pwrctl) \
643 	(pwrctl)->ips_mode_req
644 
645 #define rtw_ips_mode_req(pwrctl, ips_mode) \
646 	(pwrctl)->ips_mode_req = (ips_mode)
647 
648 #define RTW_PWR_STATE_CHK_INTERVAL 2000
649 
650 #define _rtw_set_pwr_state_check_timer(pwrctl, ms) \
651 	do { \
652 		/*RTW_INFO("%s _rtw_set_pwr_state_check_timer(%p, %d)\n", __FUNCTION__, (pwrctl), (ms));*/ \
653 		_set_timer(&(pwrctl)->pwr_state_check_timer, (ms)); \
654 	} while (0)
655 
656 #define rtw_set_pwr_state_check_timer(pwrctl) \
657 	_rtw_set_pwr_state_check_timer((pwrctl), (pwrctl)->pwr_state_check_interval)
658 
659 extern void rtw_init_pwrctrl_priv(_adapter *adapter);
660 extern void rtw_free_pwrctrl_priv(_adapter *adapter);
661 
662 #ifdef CONFIG_LPS_LCLK
663 s32 rtw_register_task_alive(PADAPTER, u32 task);
664 void rtw_unregister_task_alive(PADAPTER, u32 task);
665 extern s32 rtw_register_tx_alive(PADAPTER padapter);
666 extern void rtw_unregister_tx_alive(PADAPTER padapter);
667 extern s32 rtw_register_rx_alive(PADAPTER padapter);
668 extern void rtw_unregister_rx_alive(PADAPTER padapter);
669 extern s32 rtw_register_cmd_alive(PADAPTER padapter);
670 extern void rtw_unregister_cmd_alive(PADAPTER padapter);
671 extern s32 rtw_register_evt_alive(PADAPTER padapter);
672 extern void rtw_unregister_evt_alive(PADAPTER padapter);
673 extern void cpwm_int_hdl(PADAPTER padapter, struct reportpwrstate_parm *preportpwrstate);
674 extern void LPS_Leave_check(PADAPTER padapter);
675 void rtw_set_lps_lclk(_adapter *padapter, u8 enable);
676 #endif
677 
678 extern void LeaveAllPowerSaveMode(PADAPTER Adapter);
679 extern void LeaveAllPowerSaveModeDirect(PADAPTER Adapter);
680 #ifdef CONFIG_IPS
681 void _ips_enter(_adapter *padapter);
682 void ips_enter(_adapter *padapter);
683 int _ips_leave(_adapter *padapter);
684 int ips_leave(_adapter *padapter);
685 #endif
686 
687 void rtw_ps_processor(_adapter *padapter);
688 
689 #ifdef SUPPORT_HW_RFOFF_DETECTED
690 rt_rf_power_state RfOnOffDetect(PADAPTER pAdapter);
691 #endif
692 
693 
694 #ifdef DBG_CHECK_FW_PS_STATE
695 int rtw_fw_ps_state(PADAPTER padapter);
696 #endif
697 
698 #ifdef CONFIG_LPS
699 extern const char * const LPS_CTRL_PHYDM;
700 void LPS_Enter(PADAPTER padapter, const char *msg);
701 void LPS_Leave(PADAPTER padapter, const char *msg);
702 void rtw_exec_lps(_adapter *padapter, u8 ps_mode);
703 void rtw_lps_rfon_ctrl(_adapter *padapter, u8 rfon_ctrl);
704 #ifdef CONFIG_CHECK_LEAVE_LPS
705 #ifdef CONFIG_LPS_CHK_BY_TP
706 void traffic_check_for_leave_lps_by_tp(PADAPTER padapter, u8 tx, struct sta_info *sta);
707 #endif
708 void traffic_check_for_leave_lps(PADAPTER padapter, u8 tx, u32 tx_packets);
709 #endif /*CONFIG_CHECK_LEAVE_LPS*/
710 void rtw_set_ps_mode(PADAPTER padapter, u8 ps_mode, u8 smart_ps, u8 bcn_ant_mode, const char *msg);
711 void rtw_set_fw_in_ips_mode(PADAPTER padapter, u8 enable);
712 u8 rtw_set_rpwm(_adapter *padapter, u8 val8);
713 #ifdef CONFIG_WOWLAN
714 void rtw_wow_lps_level_decide(_adapter *adapter, u8 wow_en);
715 #endif /* CONFIG_WOWLAN */
716 #endif /* CONFIG_LPS */
717 
718 #ifdef CONFIG_RESUME_IN_WORKQUEUE
719 void rtw_resume_in_workqueue(struct pwrctrl_priv *pwrpriv);
720 #endif /* CONFIG_RESUME_IN_WORKQUEUE */
721 
722 #if defined(CONFIG_HAS_EARLYSUSPEND) || defined(CONFIG_ANDROID_POWER)
723 bool rtw_is_earlysuspend_registered(struct pwrctrl_priv *pwrpriv);
724 bool rtw_is_do_late_resume(struct pwrctrl_priv *pwrpriv);
725 void rtw_set_do_late_resume(struct pwrctrl_priv *pwrpriv, bool enable);
726 void rtw_register_early_suspend(struct pwrctrl_priv *pwrpriv);
727 void rtw_unregister_early_suspend(struct pwrctrl_priv *pwrpriv);
728 #else
729 #define rtw_is_earlysuspend_registered(pwrpriv) _FALSE
730 #define rtw_is_do_late_resume(pwrpriv) _FALSE
731 #define rtw_set_do_late_resume(pwrpriv, enable) do {} while (0)
732 #define rtw_register_early_suspend(pwrpriv) do {} while (0)
733 #define rtw_unregister_early_suspend(pwrpriv) do {} while (0)
734 #endif /* CONFIG_HAS_EARLYSUSPEND || CONFIG_ANDROID_POWER */
735 
736 u8 rtw_interface_ps_func(_adapter *padapter, HAL_INTF_PS_FUNC efunc_id, u8 *val);
737 void rtw_set_ips_deny(_adapter *padapter, u32 ms);
738 int _rtw_pwr_wakeup(_adapter *padapter, u32 ips_deffer_ms, const char *caller);
739 #define rtw_pwr_wakeup(adapter) _rtw_pwr_wakeup(adapter, RTW_PWR_STATE_CHK_INTERVAL, __FUNCTION__)
740 #define rtw_pwr_wakeup_ex(adapter, ips_deffer_ms) _rtw_pwr_wakeup(adapter, ips_deffer_ms, __FUNCTION__)
741 int rtw_pm_set_ips(_adapter *padapter, u8 mode);
742 int rtw_pm_set_lps(_adapter *padapter, u8 mode);
743 int rtw_pm_set_lps_level(_adapter *padapter, u8 level);
744 #ifdef CONFIG_LPS_1T1R
745 int rtw_pm_set_lps_1t1r(_adapter *padapter, u8 en);
746 #endif
747 void rtw_set_lps_deny(_adapter *adapter, u32 ms);
748 #ifdef CONFIG_WOWLAN
749 int rtw_pm_set_wow_lps(_adapter *padapter, u8 mode);
750 int rtw_pm_set_wow_lps_level(_adapter *padapter, u8 level);
751 #ifdef CONFIG_LPS_1T1R
752 int rtw_pm_set_wow_lps_1t1r(_adapter *padapter, u8 en);
753 #endif
754 #endif /* CONFIG_WOWLAN */
755 
756 void rtw_ps_deny(PADAPTER padapter, PS_DENY_REASON reason);
757 void rtw_ps_deny_cancel(PADAPTER padapter, PS_DENY_REASON reason);
758 u32 rtw_ps_deny_get(PADAPTER padapter);
759 
760 #if defined(CONFIG_WOWLAN)
761 void rtw_get_current_ip_address(PADAPTER padapter, u8 *pcurrentip);
762 void rtw_get_sec_iv(PADAPTER padapter, u8 *pcur_dot11txpn, u8 *StaAddr);
763 bool rtw_wowlan_parser_pattern_cmd(u8 *input, char *pattern,
764 				int *pattern_len, char *bit_mask);
765 void rtw_wow_pattern_sw_reset(_adapter *adapter);
766 u8 rtw_set_default_pattern(_adapter *adapter);
767 void rtw_wow_pattern_sw_dump(_adapter *adapter);
768 #ifdef CONFIG_WAR_OFFLOAD
769 #if defined(CONFIG_OFFLOAD_MDNS_V4) || defined(CONFIG_OFFLOAD_MDNS_V6)
770 void rtw_wow_war_mdns_dump_buf(struct seq_file *m, u8 *title, u8 *buf, u32 len);
771 void rtw_wow_war_mdns_dump_txt(struct seq_file *m, u8 *title, u8 *buf, u32 len);
772 bool rtw_wow_war_mdns_parser_pattern(u8 *input, char *target, u32 *target_len, u32 max_len);
773 void rtw_wow_war_mdns_parms_reset(_adapter *adapter, u8 is_set_default);
774 #endif /* defined(CONFIG_OFFLOAD_MDNS_V4) || defined(CONFIG_OFFLOAD_MDNS_V6) */
775 #endif /* CONFIG_WAR_OFFLOAD */
776 
777 #endif /* CONFIG_WOWLAN */
778 void rtw_ssmps_enter(_adapter *adapter, struct sta_info *sta);
779 void rtw_ssmps_leave(_adapter *adapter, struct sta_info *sta);
780 #endif /* __RTL871X_PWRCTRL_H_ */
781