ath6kl: add support for changing contry code
[deliverable/linux.git] / drivers / net / wireless / ath / ath6kl / wmi.h
1 /*
2 * Copyright (c) 2010-2011 Atheros Communications Inc.
3 * Copyright (c) 2011-2012 Qualcomm Atheros, Inc.
4 *
5 * Permission to use, copy, modify, and/or distribute this software for any
6 * purpose with or without fee is hereby granted, provided that the above
7 * copyright notice and this permission notice appear in all copies.
8 *
9 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
10 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
11 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
12 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
13 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
14 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
15 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
16 */
17
18 /*
19 * This file contains the definitions of the WMI protocol specified in the
20 * Wireless Module Interface (WMI). It includes definitions of all the
21 * commands and events. Commands are messages from the host to the WM.
22 * Events and Replies are messages from the WM to the host.
23 */
24
25 #ifndef WMI_H
26 #define WMI_H
27
28 #include <linux/ieee80211.h>
29
30 #include "htc.h"
31
32 #define HTC_PROTOCOL_VERSION 0x0002
33 #define WMI_PROTOCOL_VERSION 0x0002
34 #define WMI_CONTROL_MSG_MAX_LEN 256
35 #define is_ethertype(type_or_len) ((type_or_len) >= 0x0600)
36
37 #define IP_ETHERTYPE 0x0800
38
39 #define WMI_IMPLICIT_PSTREAM 0xFF
40 #define WMI_MAX_THINSTREAM 15
41
42 #define SSID_IE_LEN_INDEX 13
43
44 /* Host side link management data structures */
45 #define SIG_QUALITY_THRESH_LVLS 6
46 #define SIG_QUALITY_UPPER_THRESH_LVLS SIG_QUALITY_THRESH_LVLS
47 #define SIG_QUALITY_LOWER_THRESH_LVLS SIG_QUALITY_THRESH_LVLS
48
49 #define A_BAND_24GHZ 0
50 #define A_BAND_5GHZ 1
51 #define A_NUM_BANDS 2
52
53 /* in ms */
54 #define WMI_IMPLICIT_PSTREAM_INACTIVITY_INT 5000
55
56 /*
57 * There are no signed versions of __le16 and __le32, so for a temporary
58 * solution come up with our own version. The idea is from fs/ntfs/types.h.
59 *
60 * Use a_ prefix so that it doesn't conflict if we get proper support to
61 * linux/types.h.
62 */
63 typedef __s16 __bitwise a_sle16;
64 typedef __s32 __bitwise a_sle32;
65
66 static inline a_sle32 a_cpu_to_sle32(s32 val)
67 {
68 return (__force a_sle32) cpu_to_le32(val);
69 }
70
71 static inline s32 a_sle32_to_cpu(a_sle32 val)
72 {
73 return le32_to_cpu((__force __le32) val);
74 }
75
76 static inline a_sle16 a_cpu_to_sle16(s16 val)
77 {
78 return (__force a_sle16) cpu_to_le16(val);
79 }
80
81 static inline s16 a_sle16_to_cpu(a_sle16 val)
82 {
83 return le16_to_cpu((__force __le16) val);
84 }
85
86 struct sq_threshold_params {
87 s16 upper_threshold[SIG_QUALITY_UPPER_THRESH_LVLS];
88 s16 lower_threshold[SIG_QUALITY_LOWER_THRESH_LVLS];
89 u32 upper_threshold_valid_count;
90 u32 lower_threshold_valid_count;
91 u32 polling_interval;
92 u8 weight;
93 u8 last_rssi;
94 u8 last_rssi_poll_event;
95 };
96
97 struct wmi_data_sync_bufs {
98 u8 traffic_class;
99 struct sk_buff *skb;
100 };
101
102 /* WMM stream classes */
103 #define WMM_NUM_AC 4
104 #define WMM_AC_BE 0 /* best effort */
105 #define WMM_AC_BK 1 /* background */
106 #define WMM_AC_VI 2 /* video */
107 #define WMM_AC_VO 3 /* voice */
108
109 #define WMI_VOICE_USER_PRIORITY 0x7
110
111 struct wmi {
112 u16 stream_exist_for_ac[WMM_NUM_AC];
113 u8 fat_pipe_exist;
114 struct ath6kl *parent_dev;
115 u8 pwr_mode;
116
117 /* protects fat_pipe_exist and stream_exist_for_ac */
118 spinlock_t lock;
119 enum htc_endpoint_id ep_id;
120 struct sq_threshold_params
121 sq_threshld[SIGNAL_QUALITY_METRICS_NUM_MAX];
122 bool is_wmm_enabled;
123 u8 traffic_class;
124 bool is_probe_ssid;
125
126 u8 *last_mgmt_tx_frame;
127 size_t last_mgmt_tx_frame_len;
128 u8 saved_pwr_mode;
129 };
130
131 struct host_app_area {
132 __le32 wmi_protocol_ver;
133 } __packed;
134
135 enum wmi_msg_type {
136 DATA_MSGTYPE = 0x0,
137 CNTL_MSGTYPE,
138 SYNC_MSGTYPE,
139 OPT_MSGTYPE,
140 };
141
142 /*
143 * Macros for operating on WMI_DATA_HDR (info) field
144 */
145
146 #define WMI_DATA_HDR_MSG_TYPE_MASK 0x03
147 #define WMI_DATA_HDR_MSG_TYPE_SHIFT 0
148 #define WMI_DATA_HDR_UP_MASK 0x07
149 #define WMI_DATA_HDR_UP_SHIFT 2
150
151 /* In AP mode, the same bit (b5) is used to indicate Power save state in
152 * the Rx dir and More data bit state in the tx direction.
153 */
154 #define WMI_DATA_HDR_PS_MASK 0x1
155 #define WMI_DATA_HDR_PS_SHIFT 5
156
157 #define WMI_DATA_HDR_MORE 0x20
158
159 enum wmi_data_hdr_data_type {
160 WMI_DATA_HDR_DATA_TYPE_802_3 = 0,
161 WMI_DATA_HDR_DATA_TYPE_802_11,
162
163 /* used to be used for the PAL */
164 WMI_DATA_HDR_DATA_TYPE_ACL,
165 };
166
167 /* Bitmap of data header flags */
168 enum wmi_data_hdr_flags {
169 WMI_DATA_HDR_FLAGS_MORE = 0x1,
170 WMI_DATA_HDR_FLAGS_EOSP = 0x2,
171 WMI_DATA_HDR_FLAGS_UAPSD = 0x4,
172 };
173
174 #define WMI_DATA_HDR_DATA_TYPE_MASK 0x3
175 #define WMI_DATA_HDR_DATA_TYPE_SHIFT 6
176
177 /* Macros for operating on WMI_DATA_HDR (info2) field */
178 #define WMI_DATA_HDR_SEQNO_MASK 0xFFF
179 #define WMI_DATA_HDR_SEQNO_SHIFT 0
180
181 #define WMI_DATA_HDR_AMSDU_MASK 0x1
182 #define WMI_DATA_HDR_AMSDU_SHIFT 12
183
184 #define WMI_DATA_HDR_META_MASK 0x7
185 #define WMI_DATA_HDR_META_SHIFT 13
186
187 #define WMI_DATA_HDR_PAD_BEFORE_DATA_MASK 0xFF
188 #define WMI_DATA_HDR_PAD_BEFORE_DATA_SHIFT 0x8
189
190 /* Macros for operating on WMI_DATA_HDR (info3) field */
191 #define WMI_DATA_HDR_IF_IDX_MASK 0xF
192
193 #define WMI_DATA_HDR_TRIG 0x10
194 #define WMI_DATA_HDR_EOSP 0x10
195
196 struct wmi_data_hdr {
197 s8 rssi;
198
199 /*
200 * usage of 'info' field(8-bit):
201 *
202 * b1:b0 - WMI_MSG_TYPE
203 * b4:b3:b2 - UP(tid)
204 * b5 - Used in AP mode.
205 * More-data in tx dir, PS in rx.
206 * b7:b6 - Dot3 header(0),
207 * Dot11 Header(1),
208 * ACL data(2)
209 */
210 u8 info;
211
212 /*
213 * usage of 'info2' field(16-bit):
214 *
215 * b11:b0 - seq_no
216 * b12 - A-MSDU?
217 * b15:b13 - META_DATA_VERSION 0 - 7
218 */
219 __le16 info2;
220
221 /*
222 * usage of info3, 16-bit:
223 * b3:b0 - Interface index
224 * b4 - uAPSD trigger in rx & EOSP in tx
225 * b15:b5 - Reserved
226 */
227 __le16 info3;
228 } __packed;
229
230 static inline u8 wmi_data_hdr_get_up(struct wmi_data_hdr *dhdr)
231 {
232 return (dhdr->info >> WMI_DATA_HDR_UP_SHIFT) & WMI_DATA_HDR_UP_MASK;
233 }
234
235 static inline void wmi_data_hdr_set_up(struct wmi_data_hdr *dhdr,
236 u8 usr_pri)
237 {
238 dhdr->info &= ~(WMI_DATA_HDR_UP_MASK << WMI_DATA_HDR_UP_SHIFT);
239 dhdr->info |= usr_pri << WMI_DATA_HDR_UP_SHIFT;
240 }
241
242 static inline u8 wmi_data_hdr_get_dot11(struct wmi_data_hdr *dhdr)
243 {
244 u8 data_type;
245
246 data_type = (dhdr->info >> WMI_DATA_HDR_DATA_TYPE_SHIFT) &
247 WMI_DATA_HDR_DATA_TYPE_MASK;
248 return (data_type == WMI_DATA_HDR_DATA_TYPE_802_11);
249 }
250
251 static inline u16 wmi_data_hdr_get_seqno(struct wmi_data_hdr *dhdr)
252 {
253 return (le16_to_cpu(dhdr->info2) >> WMI_DATA_HDR_SEQNO_SHIFT) &
254 WMI_DATA_HDR_SEQNO_MASK;
255 }
256
257 static inline u8 wmi_data_hdr_is_amsdu(struct wmi_data_hdr *dhdr)
258 {
259 return (le16_to_cpu(dhdr->info2) >> WMI_DATA_HDR_AMSDU_SHIFT) &
260 WMI_DATA_HDR_AMSDU_MASK;
261 }
262
263 static inline u8 wmi_data_hdr_get_meta(struct wmi_data_hdr *dhdr)
264 {
265 return (le16_to_cpu(dhdr->info2) >> WMI_DATA_HDR_META_SHIFT) &
266 WMI_DATA_HDR_META_MASK;
267 }
268
269 static inline u8 wmi_data_hdr_get_if_idx(struct wmi_data_hdr *dhdr)
270 {
271 return le16_to_cpu(dhdr->info3) & WMI_DATA_HDR_IF_IDX_MASK;
272 }
273
274 /* Tx meta version definitions */
275 #define WMI_MAX_TX_META_SZ 12
276 #define WMI_META_VERSION_1 0x01
277 #define WMI_META_VERSION_2 0x02
278
279 /* Flag to signal to FW to calculate TCP checksum */
280 #define WMI_META_V2_FLAG_CSUM_OFFLOAD 0x01
281
282 struct wmi_tx_meta_v1 {
283 /* packet ID to identify the tx request */
284 u8 pkt_id;
285
286 /* rate policy to be used for the tx of this frame */
287 u8 rate_plcy_id;
288 } __packed;
289
290 struct wmi_tx_meta_v2 {
291 /*
292 * Offset from start of the WMI header for csum calculation to
293 * begin.
294 */
295 u8 csum_start;
296
297 /* offset from start of WMI header where final csum goes */
298 u8 csum_dest;
299
300 /* no of bytes over which csum is calculated */
301 u8 csum_flags;
302 } __packed;
303
304 struct wmi_rx_meta_v1 {
305 u8 status;
306
307 /* rate index mapped to rate at which this packet was received. */
308 u8 rix;
309
310 /* rssi of packet */
311 u8 rssi;
312
313 /* rf channel during packet reception */
314 u8 channel;
315
316 __le16 flags;
317 } __packed;
318
319 struct wmi_rx_meta_v2 {
320 __le16 csum;
321
322 /* bit 0 set -partial csum valid bit 1 set -test mode */
323 u8 csum_flags;
324 } __packed;
325
326 #define WMI_CMD_HDR_IF_ID_MASK 0xF
327
328 /* Control Path */
329 struct wmi_cmd_hdr {
330 __le16 cmd_id;
331
332 /* info1 - 16 bits
333 * b03:b00 - id
334 * b15:b04 - unused */
335 __le16 info1;
336
337 /* for alignment */
338 __le16 reserved;
339 } __packed;
340
341 static inline u8 wmi_cmd_hdr_get_if_idx(struct wmi_cmd_hdr *chdr)
342 {
343 return le16_to_cpu(chdr->info1) & WMI_CMD_HDR_IF_ID_MASK;
344 }
345
346 /* List of WMI commands */
347 enum wmi_cmd_id {
348 WMI_CONNECT_CMDID = 0x0001,
349 WMI_RECONNECT_CMDID,
350 WMI_DISCONNECT_CMDID,
351 WMI_SYNCHRONIZE_CMDID,
352 WMI_CREATE_PSTREAM_CMDID,
353 WMI_DELETE_PSTREAM_CMDID,
354 /* WMI_START_SCAN_CMDID is to be deprecated. Use
355 * WMI_BEGIN_SCAN_CMDID instead. The new cmd supports P2P mgmt
356 * operations using station interface.
357 */
358 WMI_START_SCAN_CMDID,
359 WMI_SET_SCAN_PARAMS_CMDID,
360 WMI_SET_BSS_FILTER_CMDID,
361 WMI_SET_PROBED_SSID_CMDID, /* 10 */
362 WMI_SET_LISTEN_INT_CMDID,
363 WMI_SET_BMISS_TIME_CMDID,
364 WMI_SET_DISC_TIMEOUT_CMDID,
365 WMI_GET_CHANNEL_LIST_CMDID,
366 WMI_SET_BEACON_INT_CMDID,
367 WMI_GET_STATISTICS_CMDID,
368 WMI_SET_CHANNEL_PARAMS_CMDID,
369 WMI_SET_POWER_MODE_CMDID,
370 WMI_SET_IBSS_PM_CAPS_CMDID,
371 WMI_SET_POWER_PARAMS_CMDID, /* 20 */
372 WMI_SET_POWERSAVE_TIMERS_POLICY_CMDID,
373 WMI_ADD_CIPHER_KEY_CMDID,
374 WMI_DELETE_CIPHER_KEY_CMDID,
375 WMI_ADD_KRK_CMDID,
376 WMI_DELETE_KRK_CMDID,
377 WMI_SET_PMKID_CMDID,
378 WMI_SET_TX_PWR_CMDID,
379 WMI_GET_TX_PWR_CMDID,
380 WMI_SET_ASSOC_INFO_CMDID,
381 WMI_ADD_BAD_AP_CMDID, /* 30 */
382 WMI_DELETE_BAD_AP_CMDID,
383 WMI_SET_TKIP_COUNTERMEASURES_CMDID,
384 WMI_RSSI_THRESHOLD_PARAMS_CMDID,
385 WMI_TARGET_ERROR_REPORT_BITMASK_CMDID,
386 WMI_SET_ACCESS_PARAMS_CMDID,
387 WMI_SET_RETRY_LIMITS_CMDID,
388 WMI_SET_OPT_MODE_CMDID,
389 WMI_OPT_TX_FRAME_CMDID,
390 WMI_SET_VOICE_PKT_SIZE_CMDID,
391 WMI_SET_MAX_SP_LEN_CMDID, /* 40 */
392 WMI_SET_ROAM_CTRL_CMDID,
393 WMI_GET_ROAM_TBL_CMDID,
394 WMI_GET_ROAM_DATA_CMDID,
395 WMI_ENABLE_RM_CMDID,
396 WMI_SET_MAX_OFFHOME_DURATION_CMDID,
397 WMI_EXTENSION_CMDID, /* Non-wireless extensions */
398 WMI_SNR_THRESHOLD_PARAMS_CMDID,
399 WMI_LQ_THRESHOLD_PARAMS_CMDID,
400 WMI_SET_LPREAMBLE_CMDID,
401 WMI_SET_RTS_CMDID, /* 50 */
402 WMI_CLR_RSSI_SNR_CMDID,
403 WMI_SET_FIXRATES_CMDID,
404 WMI_GET_FIXRATES_CMDID,
405 WMI_SET_AUTH_MODE_CMDID,
406 WMI_SET_REASSOC_MODE_CMDID,
407 WMI_SET_WMM_CMDID,
408 WMI_SET_WMM_TXOP_CMDID,
409 WMI_TEST_CMDID,
410
411 /* COEX AR6002 only */
412 WMI_SET_BT_STATUS_CMDID,
413 WMI_SET_BT_PARAMS_CMDID, /* 60 */
414
415 WMI_SET_KEEPALIVE_CMDID,
416 WMI_GET_KEEPALIVE_CMDID,
417 WMI_SET_APPIE_CMDID,
418 WMI_GET_APPIE_CMDID,
419 WMI_SET_WSC_STATUS_CMDID,
420
421 /* Wake on Wireless */
422 WMI_SET_HOST_SLEEP_MODE_CMDID,
423 WMI_SET_WOW_MODE_CMDID,
424 WMI_GET_WOW_LIST_CMDID,
425 WMI_ADD_WOW_PATTERN_CMDID,
426 WMI_DEL_WOW_PATTERN_CMDID, /* 70 */
427
428 WMI_SET_FRAMERATES_CMDID,
429 WMI_SET_AP_PS_CMDID,
430 WMI_SET_QOS_SUPP_CMDID,
431 WMI_SET_IE_CMDID,
432
433 /* WMI_THIN_RESERVED_... mark the start and end
434 * values for WMI_THIN_RESERVED command IDs. These
435 * command IDs can be found in wmi_thin.h */
436 WMI_THIN_RESERVED_START = 0x8000,
437 WMI_THIN_RESERVED_END = 0x8fff,
438
439 /* Developer commands starts at 0xF000 */
440 WMI_SET_BITRATE_CMDID = 0xF000,
441 WMI_GET_BITRATE_CMDID,
442 WMI_SET_WHALPARAM_CMDID,
443 WMI_SET_MAC_ADDRESS_CMDID,
444 WMI_SET_AKMP_PARAMS_CMDID,
445 WMI_SET_PMKID_LIST_CMDID,
446 WMI_GET_PMKID_LIST_CMDID,
447 WMI_ABORT_SCAN_CMDID,
448 WMI_SET_TARGET_EVENT_REPORT_CMDID,
449
450 /* Unused */
451 WMI_UNUSED1,
452 WMI_UNUSED2,
453
454 /* AP mode commands */
455 WMI_AP_HIDDEN_SSID_CMDID,
456 WMI_AP_SET_NUM_STA_CMDID,
457 WMI_AP_ACL_POLICY_CMDID,
458 WMI_AP_ACL_MAC_LIST_CMDID,
459 WMI_AP_CONFIG_COMMIT_CMDID,
460 WMI_AP_SET_MLME_CMDID,
461 WMI_AP_SET_PVB_CMDID,
462 WMI_AP_CONN_INACT_CMDID,
463 WMI_AP_PROT_SCAN_TIME_CMDID,
464 WMI_AP_SET_COUNTRY_CMDID,
465 WMI_AP_SET_DTIM_CMDID,
466 WMI_AP_MODE_STAT_CMDID,
467
468 WMI_SET_IP_CMDID,
469 WMI_SET_PARAMS_CMDID,
470 WMI_SET_MCAST_FILTER_CMDID,
471 WMI_DEL_MCAST_FILTER_CMDID,
472
473 WMI_ALLOW_AGGR_CMDID,
474 WMI_ADDBA_REQ_CMDID,
475 WMI_DELBA_REQ_CMDID,
476 WMI_SET_HT_CAP_CMDID,
477 WMI_SET_HT_OP_CMDID,
478 WMI_SET_TX_SELECT_RATES_CMDID,
479 WMI_SET_TX_SGI_PARAM_CMDID,
480 WMI_SET_RATE_POLICY_CMDID,
481
482 WMI_HCI_CMD_CMDID,
483 WMI_RX_FRAME_FORMAT_CMDID,
484 WMI_SET_THIN_MODE_CMDID,
485 WMI_SET_BT_WLAN_CONN_PRECEDENCE_CMDID,
486
487 WMI_AP_SET_11BG_RATESET_CMDID,
488 WMI_SET_PMK_CMDID,
489 WMI_MCAST_FILTER_CMDID,
490
491 /* COEX CMDID AR6003 */
492 WMI_SET_BTCOEX_FE_ANT_CMDID,
493 WMI_SET_BTCOEX_COLOCATED_BT_DEV_CMDID,
494 WMI_SET_BTCOEX_SCO_CONFIG_CMDID,
495 WMI_SET_BTCOEX_A2DP_CONFIG_CMDID,
496 WMI_SET_BTCOEX_ACLCOEX_CONFIG_CMDID,
497 WMI_SET_BTCOEX_BTINQUIRY_PAGE_CONFIG_CMDID,
498 WMI_SET_BTCOEX_DEBUG_CMDID,
499 WMI_SET_BTCOEX_BT_OPERATING_STATUS_CMDID,
500 WMI_GET_BTCOEX_STATS_CMDID,
501 WMI_GET_BTCOEX_CONFIG_CMDID,
502
503 WMI_SET_DFS_ENABLE_CMDID, /* F034 */
504 WMI_SET_DFS_MINRSSITHRESH_CMDID,
505 WMI_SET_DFS_MAXPULSEDUR_CMDID,
506 WMI_DFS_RADAR_DETECTED_CMDID,
507
508 /* P2P commands */
509 WMI_P2P_SET_CONFIG_CMDID, /* F038 */
510 WMI_WPS_SET_CONFIG_CMDID,
511 WMI_SET_REQ_DEV_ATTR_CMDID,
512 WMI_P2P_FIND_CMDID,
513 WMI_P2P_STOP_FIND_CMDID,
514 WMI_P2P_GO_NEG_START_CMDID,
515 WMI_P2P_LISTEN_CMDID,
516
517 WMI_CONFIG_TX_MAC_RULES_CMDID, /* F040 */
518 WMI_SET_PROMISCUOUS_MODE_CMDID,
519 WMI_RX_FRAME_FILTER_CMDID,
520 WMI_SET_CHANNEL_CMDID,
521
522 /* WAC commands */
523 WMI_ENABLE_WAC_CMDID,
524 WMI_WAC_SCAN_REPLY_CMDID,
525 WMI_WAC_CTRL_REQ_CMDID,
526 WMI_SET_DIV_PARAMS_CMDID,
527
528 WMI_GET_PMK_CMDID,
529 WMI_SET_PASSPHRASE_CMDID,
530 WMI_SEND_ASSOC_RES_CMDID,
531 WMI_SET_ASSOC_REQ_RELAY_CMDID,
532
533 /* ACS command, consists of sub-commands */
534 WMI_ACS_CTRL_CMDID,
535 WMI_SET_EXCESS_TX_RETRY_THRES_CMDID,
536 WMI_SET_TBD_TIME_CMDID, /*added for wmiconfig command for TBD */
537
538 /* Pktlog cmds */
539 WMI_PKTLOG_ENABLE_CMDID,
540 WMI_PKTLOG_DISABLE_CMDID,
541
542 /* More P2P Cmds */
543 WMI_P2P_GO_NEG_REQ_RSP_CMDID,
544 WMI_P2P_GRP_INIT_CMDID,
545 WMI_P2P_GRP_FORMATION_DONE_CMDID,
546 WMI_P2P_INVITE_CMDID,
547 WMI_P2P_INVITE_REQ_RSP_CMDID,
548 WMI_P2P_PROV_DISC_REQ_CMDID,
549 WMI_P2P_SET_CMDID,
550
551 WMI_GET_RFKILL_MODE_CMDID,
552 WMI_SET_RFKILL_MODE_CMDID,
553 WMI_AP_SET_APSD_CMDID,
554 WMI_AP_APSD_BUFFERED_TRAFFIC_CMDID,
555
556 WMI_P2P_SDPD_TX_CMDID, /* F05C */
557 WMI_P2P_STOP_SDPD_CMDID,
558 WMI_P2P_CANCEL_CMDID,
559 /* Ultra low power store / recall commands */
560 WMI_STORERECALL_CONFIGURE_CMDID,
561 WMI_STORERECALL_RECALL_CMDID,
562 WMI_STORERECALL_HOST_READY_CMDID,
563 WMI_FORCE_TARGET_ASSERT_CMDID,
564
565 WMI_SET_PROBED_SSID_EX_CMDID,
566 WMI_SET_NETWORK_LIST_OFFLOAD_CMDID,
567 WMI_SET_ARP_NS_OFFLOAD_CMDID,
568 WMI_ADD_WOW_EXT_PATTERN_CMDID,
569 WMI_GTK_OFFLOAD_OP_CMDID,
570 WMI_REMAIN_ON_CHNL_CMDID,
571 WMI_CANCEL_REMAIN_ON_CHNL_CMDID,
572 /* WMI_SEND_ACTION_CMDID is to be deprecated. Use
573 * WMI_SEND_MGMT_CMDID instead. The new cmd supports P2P mgmt
574 * operations using station interface.
575 */
576 WMI_SEND_ACTION_CMDID,
577 WMI_PROBE_REQ_REPORT_CMDID,
578 WMI_DISABLE_11B_RATES_CMDID,
579 WMI_SEND_PROBE_RESPONSE_CMDID,
580 WMI_GET_P2P_INFO_CMDID,
581 WMI_AP_JOIN_BSS_CMDID,
582
583 WMI_SMPS_ENABLE_CMDID,
584 WMI_SMPS_CONFIG_CMDID,
585 WMI_SET_RATECTRL_PARM_CMDID,
586 /* LPL specific commands*/
587 WMI_LPL_FORCE_ENABLE_CMDID,
588 WMI_LPL_SET_POLICY_CMDID,
589 WMI_LPL_GET_POLICY_CMDID,
590 WMI_LPL_GET_HWSTATE_CMDID,
591 WMI_LPL_SET_PARAMS_CMDID,
592 WMI_LPL_GET_PARAMS_CMDID,
593
594 WMI_SET_BUNDLE_PARAM_CMDID,
595
596 /*GreenTx specific commands*/
597
598 WMI_GREENTX_PARAMS_CMDID,
599
600 WMI_RTT_MEASREQ_CMDID,
601 WMI_RTT_CAPREQ_CMDID,
602 WMI_RTT_STATUSREQ_CMDID,
603
604 /* WPS Commands */
605 WMI_WPS_START_CMDID,
606 WMI_GET_WPS_STATUS_CMDID,
607
608 /* More P2P commands */
609 WMI_SET_NOA_CMDID,
610 WMI_GET_NOA_CMDID,
611 WMI_SET_OPPPS_CMDID,
612 WMI_GET_OPPPS_CMDID,
613 WMI_ADD_PORT_CMDID,
614 WMI_DEL_PORT_CMDID,
615
616 /* 802.11w cmd */
617 WMI_SET_RSN_CAP_CMDID,
618 WMI_GET_RSN_CAP_CMDID,
619 WMI_SET_IGTK_CMDID,
620
621 WMI_RX_FILTER_COALESCE_FILTER_OP_CMDID,
622 WMI_RX_FILTER_SET_FRAME_TEST_LIST_CMDID,
623
624 WMI_SEND_MGMT_CMDID,
625 WMI_BEGIN_SCAN_CMDID,
626
627 WMI_SET_BLACK_LIST,
628 WMI_SET_MCASTRATE,
629
630 WMI_STA_BMISS_ENHANCE_CMDID,
631
632 WMI_SET_REGDOMAIN_CMDID,
633
634 WMI_SET_RSSI_FILTER_CMDID,
635
636 WMI_SET_KEEP_ALIVE_EXT,
637
638 WMI_VOICE_DETECTION_ENABLE_CMDID,
639
640 WMI_SET_TXE_NOTIFY_CMDID,
641 };
642
643 enum wmi_mgmt_frame_type {
644 WMI_FRAME_BEACON = 0,
645 WMI_FRAME_PROBE_REQ,
646 WMI_FRAME_PROBE_RESP,
647 WMI_FRAME_ASSOC_REQ,
648 WMI_FRAME_ASSOC_RESP,
649 WMI_NUM_MGMT_FRAME
650 };
651
652 enum wmi_ie_field_type {
653 WMI_RSN_IE_CAPB = 0x1,
654 WMI_IE_FULL = 0xFF, /* indicats full IE */
655 };
656
657 /* WMI_CONNECT_CMDID */
658 enum network_type {
659 INFRA_NETWORK = 0x01,
660 ADHOC_NETWORK = 0x02,
661 ADHOC_CREATOR = 0x04,
662 AP_NETWORK = 0x10,
663 };
664
665 enum network_subtype {
666 SUBTYPE_NONE,
667 SUBTYPE_BT,
668 SUBTYPE_P2PDEV,
669 SUBTYPE_P2PCLIENT,
670 SUBTYPE_P2PGO,
671 };
672
673 enum dot11_auth_mode {
674 OPEN_AUTH = 0x01,
675 SHARED_AUTH = 0x02,
676
677 /* different from IEEE_AUTH_MODE definitions */
678 LEAP_AUTH = 0x04,
679 };
680
681 enum auth_mode {
682 NONE_AUTH = 0x01,
683 WPA_AUTH = 0x02,
684 WPA2_AUTH = 0x04,
685 WPA_PSK_AUTH = 0x08,
686 WPA2_PSK_AUTH = 0x10,
687 WPA_AUTH_CCKM = 0x20,
688 WPA2_AUTH_CCKM = 0x40,
689 };
690
691 #define WMI_MAX_KEY_INDEX 3
692
693 #define WMI_MAX_KEY_LEN 32
694
695 /*
696 * NB: these values are ordered carefully; there are lots of
697 * of implications in any reordering. In particular beware
698 * that 4 is not used to avoid conflicting with IEEE80211_F_PRIVACY.
699 */
700 #define ATH6KL_CIPHER_WEP 0
701 #define ATH6KL_CIPHER_TKIP 1
702 #define ATH6KL_CIPHER_AES_OCB 2
703 #define ATH6KL_CIPHER_AES_CCM 3
704 #define ATH6KL_CIPHER_CKIP 5
705 #define ATH6KL_CIPHER_CCKM_KRK 6
706 #define ATH6KL_CIPHER_NONE 7 /* pseudo value */
707
708 /*
709 * 802.11 rate set.
710 */
711 #define ATH6KL_RATE_MAXSIZE 15 /* max rates we'll handle */
712
713 #define ATH_OUI_TYPE 0x01
714 #define WPA_OUI_TYPE 0x01
715 #define WMM_PARAM_OUI_SUBTYPE 0x01
716 #define WMM_OUI_TYPE 0x02
717 #define WSC_OUT_TYPE 0x04
718
719 enum wmi_connect_ctrl_flags_bits {
720 CONNECT_ASSOC_POLICY_USER = 0x0001,
721 CONNECT_SEND_REASSOC = 0x0002,
722 CONNECT_IGNORE_WPAx_GROUP_CIPHER = 0x0004,
723 CONNECT_PROFILE_MATCH_DONE = 0x0008,
724 CONNECT_IGNORE_AAC_BEACON = 0x0010,
725 CONNECT_CSA_FOLLOW_BSS = 0x0020,
726 CONNECT_DO_WPA_OFFLOAD = 0x0040,
727 CONNECT_DO_NOT_DEAUTH = 0x0080,
728 CONNECT_WPS_FLAG = 0x0100,
729 };
730
731 struct wmi_connect_cmd {
732 u8 nw_type;
733 u8 dot11_auth_mode;
734 u8 auth_mode;
735 u8 prwise_crypto_type;
736 u8 prwise_crypto_len;
737 u8 grp_crypto_type;
738 u8 grp_crypto_len;
739 u8 ssid_len;
740 u8 ssid[IEEE80211_MAX_SSID_LEN];
741 __le16 ch;
742 u8 bssid[ETH_ALEN];
743 __le32 ctrl_flags;
744 u8 nw_subtype;
745 } __packed;
746
747 /* WMI_RECONNECT_CMDID */
748 struct wmi_reconnect_cmd {
749 /* channel hint */
750 __le16 channel;
751
752 /* mandatory if set */
753 u8 bssid[ETH_ALEN];
754 } __packed;
755
756 /* WMI_ADD_CIPHER_KEY_CMDID */
757 enum key_usage {
758 PAIRWISE_USAGE = 0x00,
759 GROUP_USAGE = 0x01,
760
761 /* default Tx Key - static WEP only */
762 TX_USAGE = 0x02,
763 };
764
765 /*
766 * Bit Flag
767 * Bit 0 - Initialise TSC - default is Initialize
768 */
769 #define KEY_OP_INIT_TSC 0x01
770 #define KEY_OP_INIT_RSC 0x02
771
772 /* default initialise the TSC & RSC */
773 #define KEY_OP_INIT_VAL 0x03
774 #define KEY_OP_VALID_MASK 0x03
775
776 struct wmi_add_cipher_key_cmd {
777 u8 key_index;
778 u8 key_type;
779
780 /* enum key_usage */
781 u8 key_usage;
782
783 u8 key_len;
784
785 /* key replay sequence counter */
786 u8 key_rsc[8];
787
788 u8 key[WLAN_MAX_KEY_LEN];
789
790 /* additional key control info */
791 u8 key_op_ctrl;
792
793 u8 key_mac_addr[ETH_ALEN];
794 } __packed;
795
796 /* WMI_DELETE_CIPHER_KEY_CMDID */
797 struct wmi_delete_cipher_key_cmd {
798 u8 key_index;
799 } __packed;
800
801 #define WMI_KRK_LEN 16
802
803 /* WMI_ADD_KRK_CMDID */
804 struct wmi_add_krk_cmd {
805 u8 krk[WMI_KRK_LEN];
806 } __packed;
807
808 /* WMI_SETPMKID_CMDID */
809
810 #define WMI_PMKID_LEN 16
811
812 enum pmkid_enable_flg {
813 PMKID_DISABLE = 0,
814 PMKID_ENABLE = 1,
815 };
816
817 struct wmi_setpmkid_cmd {
818 u8 bssid[ETH_ALEN];
819
820 /* enum pmkid_enable_flg */
821 u8 enable;
822
823 u8 pmkid[WMI_PMKID_LEN];
824 } __packed;
825
826 /* WMI_START_SCAN_CMD */
827 enum wmi_scan_type {
828 WMI_LONG_SCAN = 0,
829 WMI_SHORT_SCAN = 1,
830 };
831
832 struct wmi_supp_rates {
833 u8 nrates;
834 u8 rates[ATH6KL_RATE_MAXSIZE];
835 };
836
837 struct wmi_begin_scan_cmd {
838 __le32 force_fg_scan;
839
840 /* for legacy cisco AP compatibility */
841 __le32 is_legacy;
842
843 /* max duration in the home channel(msec) */
844 __le32 home_dwell_time;
845
846 /* time interval between scans (msec) */
847 __le32 force_scan_intvl;
848
849 /* no CCK rates */
850 __le32 no_cck;
851
852 /* enum wmi_scan_type */
853 u8 scan_type;
854
855 /* Supported rates to advertise in the probe request frames */
856 struct wmi_supp_rates supp_rates[IEEE80211_NUM_BANDS];
857
858 /* how many channels follow */
859 u8 num_ch;
860
861 /* channels in Mhz */
862 __le16 ch_list[1];
863 } __packed;
864
865 /* wmi_start_scan_cmd is to be deprecated. Use
866 * wmi_begin_scan_cmd instead. The new structure supports P2P mgmt
867 * operations using station interface.
868 */
869 struct wmi_start_scan_cmd {
870 __le32 force_fg_scan;
871
872 /* for legacy cisco AP compatibility */
873 __le32 is_legacy;
874
875 /* max duration in the home channel(msec) */
876 __le32 home_dwell_time;
877
878 /* time interval between scans (msec) */
879 __le32 force_scan_intvl;
880
881 /* enum wmi_scan_type */
882 u8 scan_type;
883
884 /* how many channels follow */
885 u8 num_ch;
886
887 /* channels in Mhz */
888 __le16 ch_list[1];
889 } __packed;
890
891 /*
892 * Warning: scan control flag value of 0xFF is used to disable
893 * all flags in WMI_SCAN_PARAMS_CMD. Do not add any more
894 * flags here
895 */
896 enum wmi_scan_ctrl_flags_bits {
897
898 /* set if can scan in the connect cmd */
899 CONNECT_SCAN_CTRL_FLAGS = 0x01,
900
901 /* set if scan for the SSID it is already connected to */
902 SCAN_CONNECTED_CTRL_FLAGS = 0x02,
903
904 /* set if enable active scan */
905 ACTIVE_SCAN_CTRL_FLAGS = 0x04,
906
907 /* set if enable roam scan when bmiss and lowrssi */
908 ROAM_SCAN_CTRL_FLAGS = 0x08,
909
910 /* set if follows customer BSSINFO reporting rule */
911 REPORT_BSSINFO_CTRL_FLAGS = 0x10,
912
913 /* if disabled, target doesn't scan after a disconnect event */
914 ENABLE_AUTO_CTRL_FLAGS = 0x20,
915
916 /*
917 * Scan complete event with canceled status will be generated when
918 * a scan is prempted before it gets completed.
919 */
920 ENABLE_SCAN_ABORT_EVENT = 0x40
921 };
922
923 struct wmi_scan_params_cmd {
924 /* sec */
925 __le16 fg_start_period;
926
927 /* sec */
928 __le16 fg_end_period;
929
930 /* sec */
931 __le16 bg_period;
932
933 /* msec */
934 __le16 maxact_chdwell_time;
935
936 /* msec */
937 __le16 pas_chdwell_time;
938
939 /* how many shorts scan for one long */
940 u8 short_scan_ratio;
941
942 u8 scan_ctrl_flags;
943
944 /* msec */
945 __le16 minact_chdwell_time;
946
947 /* max active scans per ssid */
948 __le16 maxact_scan_per_ssid;
949
950 /* msecs */
951 __le32 max_dfsch_act_time;
952 } __packed;
953
954 /* WMI_SET_BSS_FILTER_CMDID */
955 enum wmi_bss_filter {
956 /* no beacons forwarded */
957 NONE_BSS_FILTER = 0x0,
958
959 /* all beacons forwarded */
960 ALL_BSS_FILTER,
961
962 /* only beacons matching profile */
963 PROFILE_FILTER,
964
965 /* all but beacons matching profile */
966 ALL_BUT_PROFILE_FILTER,
967
968 /* only beacons matching current BSS */
969 CURRENT_BSS_FILTER,
970
971 /* all but beacons matching BSS */
972 ALL_BUT_BSS_FILTER,
973
974 /* beacons matching probed ssid */
975 PROBED_SSID_FILTER,
976
977 /* beacons matching matched ssid */
978 MATCHED_SSID_FILTER,
979
980 /* marker only */
981 LAST_BSS_FILTER,
982 };
983
984 struct wmi_bss_filter_cmd {
985 /* see, enum wmi_bss_filter */
986 u8 bss_filter;
987
988 /* for alignment */
989 u8 reserved1;
990
991 /* for alignment */
992 __le16 reserved2;
993
994 __le32 ie_mask;
995 } __packed;
996
997 /* WMI_SET_PROBED_SSID_CMDID */
998 #define MAX_PROBED_SSIDS 16
999
1000 enum wmi_ssid_flag {
1001 /* disables entry */
1002 DISABLE_SSID_FLAG = 0,
1003
1004 /* probes specified ssid */
1005 SPECIFIC_SSID_FLAG = 0x01,
1006
1007 /* probes for any ssid */
1008 ANY_SSID_FLAG = 0x02,
1009
1010 /* match for ssid */
1011 MATCH_SSID_FLAG = 0x08,
1012 };
1013
1014 struct wmi_probed_ssid_cmd {
1015 /* 0 to MAX_PROBED_SSIDS - 1 */
1016 u8 entry_index;
1017
1018 /* see, enum wmi_ssid_flg */
1019 u8 flag;
1020
1021 u8 ssid_len;
1022 u8 ssid[IEEE80211_MAX_SSID_LEN];
1023 } __packed;
1024
1025 /*
1026 * WMI_SET_LISTEN_INT_CMDID
1027 * The Listen interval is between 15 and 3000 TUs
1028 */
1029 struct wmi_listen_int_cmd {
1030 __le16 listen_intvl;
1031 __le16 num_beacons;
1032 } __packed;
1033
1034 /* WMI_SET_BMISS_TIME_CMDID */
1035 struct wmi_bmiss_time_cmd {
1036 __le16 bmiss_time;
1037 __le16 num_beacons;
1038 };
1039
1040 /* WMI_STA_ENHANCE_BMISS_CMDID */
1041 struct wmi_sta_bmiss_enhance_cmd {
1042 u8 enable;
1043 } __packed;
1044
1045 struct wmi_set_regdomain_cmd {
1046 u8 length;
1047 u8 iso_name[2];
1048 } __packed;
1049
1050 /* WMI_SET_POWER_MODE_CMDID */
1051 enum wmi_power_mode {
1052 REC_POWER = 0x01,
1053 MAX_PERF_POWER,
1054 };
1055
1056 struct wmi_power_mode_cmd {
1057 /* see, enum wmi_power_mode */
1058 u8 pwr_mode;
1059 } __packed;
1060
1061 /*
1062 * Policy to determnine whether power save failure event should be sent to
1063 * host during scanning
1064 */
1065 enum power_save_fail_event_policy {
1066 SEND_POWER_SAVE_FAIL_EVENT_ALWAYS = 1,
1067 IGNORE_PS_FAIL_DURING_SCAN = 2,
1068 };
1069
1070 struct wmi_power_params_cmd {
1071 /* msec */
1072 __le16 idle_period;
1073
1074 __le16 pspoll_number;
1075 __le16 dtim_policy;
1076 __le16 tx_wakeup_policy;
1077 __le16 num_tx_to_wakeup;
1078 __le16 ps_fail_event_policy;
1079 } __packed;
1080
1081 /*
1082 * Ratemask for below modes should be passed
1083 * to WMI_SET_TX_SELECT_RATES_CMDID.
1084 * AR6003 has 32 bit mask for each modes.
1085 * First 12 bits for legacy rates, 13 to 20
1086 * bits for HT 20 rates and 21 to 28 bits for
1087 * HT 40 rates
1088 */
1089 enum wmi_mode_phy {
1090 WMI_RATES_MODE_11A = 0,
1091 WMI_RATES_MODE_11G,
1092 WMI_RATES_MODE_11B,
1093 WMI_RATES_MODE_11GONLY,
1094 WMI_RATES_MODE_11A_HT20,
1095 WMI_RATES_MODE_11G_HT20,
1096 WMI_RATES_MODE_11A_HT40,
1097 WMI_RATES_MODE_11G_HT40,
1098 WMI_RATES_MODE_MAX
1099 };
1100
1101 /* WMI_SET_TX_SELECT_RATES_CMDID */
1102 struct wmi_set_tx_select_rates32_cmd {
1103 __le32 ratemask[WMI_RATES_MODE_MAX];
1104 } __packed;
1105
1106 /* WMI_SET_TX_SELECT_RATES_CMDID */
1107 struct wmi_set_tx_select_rates64_cmd {
1108 __le64 ratemask[WMI_RATES_MODE_MAX];
1109 } __packed;
1110
1111 /* WMI_SET_DISC_TIMEOUT_CMDID */
1112 struct wmi_disc_timeout_cmd {
1113 /* seconds */
1114 u8 discon_timeout;
1115 } __packed;
1116
1117 enum dir_type {
1118 UPLINK_TRAFFIC = 0,
1119 DNLINK_TRAFFIC = 1,
1120 BIDIR_TRAFFIC = 2,
1121 };
1122
1123 enum voiceps_cap_type {
1124 DISABLE_FOR_THIS_AC = 0,
1125 ENABLE_FOR_THIS_AC = 1,
1126 ENABLE_FOR_ALL_AC = 2,
1127 };
1128
1129 enum traffic_type {
1130 TRAFFIC_TYPE_APERIODIC = 0,
1131 TRAFFIC_TYPE_PERIODIC = 1,
1132 };
1133
1134 /* WMI_SYNCHRONIZE_CMDID */
1135 struct wmi_sync_cmd {
1136 u8 data_sync_map;
1137 } __packed;
1138
1139 /* WMI_CREATE_PSTREAM_CMDID */
1140 struct wmi_create_pstream_cmd {
1141 /* msec */
1142 __le32 min_service_int;
1143
1144 /* msec */
1145 __le32 max_service_int;
1146
1147 /* msec */
1148 __le32 inactivity_int;
1149
1150 /* msec */
1151 __le32 suspension_int;
1152
1153 __le32 service_start_time;
1154
1155 /* in bps */
1156 __le32 min_data_rate;
1157
1158 /* in bps */
1159 __le32 mean_data_rate;
1160
1161 /* in bps */
1162 __le32 peak_data_rate;
1163
1164 __le32 max_burst_size;
1165 __le32 delay_bound;
1166
1167 /* in bps */
1168 __le32 min_phy_rate;
1169
1170 __le32 sba;
1171 __le32 medium_time;
1172
1173 /* in octects */
1174 __le16 nominal_msdu;
1175
1176 /* in octects */
1177 __le16 max_msdu;
1178
1179 u8 traffic_class;
1180
1181 /* see, enum dir_type */
1182 u8 traffic_direc;
1183
1184 u8 rx_queue_num;
1185
1186 /* see, enum traffic_type */
1187 u8 traffic_type;
1188
1189 /* see, enum voiceps_cap_type */
1190 u8 voice_psc_cap;
1191 u8 tsid;
1192
1193 /* 802.1D user priority */
1194 u8 user_pri;
1195
1196 /* nominal phy rate */
1197 u8 nominal_phy;
1198 } __packed;
1199
1200 /* WMI_DELETE_PSTREAM_CMDID */
1201 struct wmi_delete_pstream_cmd {
1202 u8 tx_queue_num;
1203 u8 rx_queue_num;
1204 u8 traffic_direc;
1205 u8 traffic_class;
1206 u8 tsid;
1207 } __packed;
1208
1209 /* WMI_SET_CHANNEL_PARAMS_CMDID */
1210 enum wmi_phy_mode {
1211 WMI_11A_MODE = 0x1,
1212 WMI_11G_MODE = 0x2,
1213 WMI_11AG_MODE = 0x3,
1214 WMI_11B_MODE = 0x4,
1215 WMI_11GONLY_MODE = 0x5,
1216 WMI_11G_HT20 = 0x6,
1217 };
1218
1219 #define WMI_MAX_CHANNELS 32
1220
1221 /*
1222 * WMI_RSSI_THRESHOLD_PARAMS_CMDID
1223 * Setting the polltime to 0 would disable polling. Threshold values are
1224 * in the ascending order, and should agree to:
1225 * (lowThreshold_lowerVal < lowThreshold_upperVal < highThreshold_lowerVal
1226 * < highThreshold_upperVal)
1227 */
1228
1229 struct wmi_rssi_threshold_params_cmd {
1230 /* polling time as a factor of LI */
1231 __le32 poll_time;
1232
1233 /* lowest of upper */
1234 a_sle16 thresh_above1_val;
1235
1236 a_sle16 thresh_above2_val;
1237 a_sle16 thresh_above3_val;
1238 a_sle16 thresh_above4_val;
1239 a_sle16 thresh_above5_val;
1240
1241 /* highest of upper */
1242 a_sle16 thresh_above6_val;
1243
1244 /* lowest of bellow */
1245 a_sle16 thresh_below1_val;
1246
1247 a_sle16 thresh_below2_val;
1248 a_sle16 thresh_below3_val;
1249 a_sle16 thresh_below4_val;
1250 a_sle16 thresh_below5_val;
1251
1252 /* highest of bellow */
1253 a_sle16 thresh_below6_val;
1254
1255 /* "alpha" */
1256 u8 weight;
1257
1258 u8 reserved[3];
1259 } __packed;
1260
1261 /*
1262 * WMI_SNR_THRESHOLD_PARAMS_CMDID
1263 * Setting the polltime to 0 would disable polling.
1264 */
1265
1266 struct wmi_snr_threshold_params_cmd {
1267 /* polling time as a factor of LI */
1268 __le32 poll_time;
1269
1270 /* "alpha" */
1271 u8 weight;
1272
1273 /* lowest of uppper */
1274 u8 thresh_above1_val;
1275
1276 u8 thresh_above2_val;
1277 u8 thresh_above3_val;
1278
1279 /* highest of upper */
1280 u8 thresh_above4_val;
1281
1282 /* lowest of bellow */
1283 u8 thresh_below1_val;
1284
1285 u8 thresh_below2_val;
1286 u8 thresh_below3_val;
1287
1288 /* highest of bellow */
1289 u8 thresh_below4_val;
1290
1291 u8 reserved[3];
1292 } __packed;
1293
1294 /* Don't report BSSs with signal (RSSI) below this threshold */
1295 struct wmi_set_rssi_filter_cmd {
1296 s8 rssi;
1297 } __packed;
1298
1299 enum wmi_preamble_policy {
1300 WMI_IGNORE_BARKER_IN_ERP = 0,
1301 WMI_FOLLOW_BARKER_IN_ERP,
1302 };
1303
1304 struct wmi_set_lpreamble_cmd {
1305 u8 status;
1306 u8 preamble_policy;
1307 } __packed;
1308
1309 struct wmi_set_rts_cmd {
1310 __le16 threshold;
1311 } __packed;
1312
1313 /* WMI_SET_TX_PWR_CMDID */
1314 struct wmi_set_tx_pwr_cmd {
1315 /* in dbM units */
1316 u8 dbM;
1317 } __packed;
1318
1319 struct wmi_tx_pwr_reply {
1320 /* in dbM units */
1321 u8 dbM;
1322 } __packed;
1323
1324 struct wmi_report_sleep_state_event {
1325 __le32 sleep_state;
1326 };
1327
1328 enum wmi_report_sleep_status {
1329 WMI_REPORT_SLEEP_STATUS_IS_DEEP_SLEEP = 0,
1330 WMI_REPORT_SLEEP_STATUS_IS_AWAKE
1331 };
1332 enum target_event_report_config {
1333 /* default */
1334 DISCONN_EVT_IN_RECONN = 0,
1335
1336 NO_DISCONN_EVT_IN_RECONN
1337 };
1338
1339 struct wmi_mcast_filter_cmd {
1340 u8 mcast_all_enable;
1341 } __packed;
1342
1343 #define ATH6KL_MCAST_FILTER_MAC_ADDR_SIZE 6
1344 struct wmi_mcast_filter_add_del_cmd {
1345 u8 mcast_mac[ATH6KL_MCAST_FILTER_MAC_ADDR_SIZE];
1346 } __packed;
1347
1348 struct wmi_set_htcap_cmd {
1349 u8 band;
1350 u8 ht_enable;
1351 u8 ht40_supported;
1352 u8 ht20_sgi;
1353 u8 ht40_sgi;
1354 u8 intolerant_40mhz;
1355 u8 max_ampdu_len_exp;
1356 } __packed;
1357
1358 /* Command Replies */
1359
1360 /* WMI_GET_CHANNEL_LIST_CMDID reply */
1361 struct wmi_channel_list_reply {
1362 u8 reserved;
1363
1364 /* number of channels in reply */
1365 u8 num_ch;
1366
1367 /* channel in Mhz */
1368 __le16 ch_list[1];
1369 } __packed;
1370
1371 /* List of Events (target to host) */
1372 enum wmi_event_id {
1373 WMI_READY_EVENTID = 0x1001,
1374 WMI_CONNECT_EVENTID,
1375 WMI_DISCONNECT_EVENTID,
1376 WMI_BSSINFO_EVENTID,
1377 WMI_CMDERROR_EVENTID,
1378 WMI_REGDOMAIN_EVENTID,
1379 WMI_PSTREAM_TIMEOUT_EVENTID,
1380 WMI_NEIGHBOR_REPORT_EVENTID,
1381 WMI_TKIP_MICERR_EVENTID,
1382 WMI_SCAN_COMPLETE_EVENTID, /* 0x100a */
1383 WMI_REPORT_STATISTICS_EVENTID,
1384 WMI_RSSI_THRESHOLD_EVENTID,
1385 WMI_ERROR_REPORT_EVENTID,
1386 WMI_OPT_RX_FRAME_EVENTID,
1387 WMI_REPORT_ROAM_TBL_EVENTID,
1388 WMI_EXTENSION_EVENTID,
1389 WMI_CAC_EVENTID,
1390 WMI_SNR_THRESHOLD_EVENTID,
1391 WMI_LQ_THRESHOLD_EVENTID,
1392 WMI_TX_RETRY_ERR_EVENTID, /* 0x1014 */
1393 WMI_REPORT_ROAM_DATA_EVENTID,
1394 WMI_TEST_EVENTID,
1395 WMI_APLIST_EVENTID,
1396 WMI_GET_WOW_LIST_EVENTID,
1397 WMI_GET_PMKID_LIST_EVENTID,
1398 WMI_CHANNEL_CHANGE_EVENTID,
1399 WMI_PEER_NODE_EVENTID,
1400 WMI_PSPOLL_EVENTID,
1401 WMI_DTIMEXPIRY_EVENTID,
1402 WMI_WLAN_VERSION_EVENTID,
1403 WMI_SET_PARAMS_REPLY_EVENTID,
1404 WMI_ADDBA_REQ_EVENTID, /*0x1020 */
1405 WMI_ADDBA_RESP_EVENTID,
1406 WMI_DELBA_REQ_EVENTID,
1407 WMI_TX_COMPLETE_EVENTID,
1408 WMI_HCI_EVENT_EVENTID,
1409 WMI_ACL_DATA_EVENTID,
1410 WMI_REPORT_SLEEP_STATE_EVENTID,
1411 WMI_REPORT_BTCOEX_STATS_EVENTID,
1412 WMI_REPORT_BTCOEX_CONFIG_EVENTID,
1413 WMI_GET_PMK_EVENTID,
1414
1415 /* DFS Events */
1416 WMI_DFS_HOST_ATTACH_EVENTID,
1417 WMI_DFS_HOST_INIT_EVENTID,
1418 WMI_DFS_RESET_DELAYLINES_EVENTID,
1419 WMI_DFS_RESET_RADARQ_EVENTID,
1420 WMI_DFS_RESET_AR_EVENTID,
1421 WMI_DFS_RESET_ARQ_EVENTID,
1422 WMI_DFS_SET_DUR_MULTIPLIER_EVENTID,
1423 WMI_DFS_SET_BANGRADAR_EVENTID,
1424 WMI_DFS_SET_DEBUGLEVEL_EVENTID,
1425 WMI_DFS_PHYERR_EVENTID,
1426
1427 /* CCX Evants */
1428 WMI_CCX_RM_STATUS_EVENTID,
1429
1430 /* P2P Events */
1431 WMI_P2P_GO_NEG_RESULT_EVENTID,
1432
1433 WMI_WAC_SCAN_DONE_EVENTID,
1434 WMI_WAC_REPORT_BSS_EVENTID,
1435 WMI_WAC_START_WPS_EVENTID,
1436 WMI_WAC_CTRL_REQ_REPLY_EVENTID,
1437
1438 WMI_REPORT_WMM_PARAMS_EVENTID,
1439 WMI_WAC_REJECT_WPS_EVENTID,
1440
1441 /* More P2P Events */
1442 WMI_P2P_GO_NEG_REQ_EVENTID,
1443 WMI_P2P_INVITE_REQ_EVENTID,
1444 WMI_P2P_INVITE_RCVD_RESULT_EVENTID,
1445 WMI_P2P_INVITE_SENT_RESULT_EVENTID,
1446 WMI_P2P_PROV_DISC_RESP_EVENTID,
1447 WMI_P2P_PROV_DISC_REQ_EVENTID,
1448
1449 /* RFKILL Events */
1450 WMI_RFKILL_STATE_CHANGE_EVENTID,
1451 WMI_RFKILL_GET_MODE_CMD_EVENTID,
1452
1453 WMI_P2P_START_SDPD_EVENTID,
1454 WMI_P2P_SDPD_RX_EVENTID,
1455
1456 WMI_SET_HOST_SLEEP_MODE_CMD_PROCESSED_EVENTID = 0x1047,
1457
1458 WMI_THIN_RESERVED_START_EVENTID = 0x8000,
1459 /* Events in this range are reserved for thinmode */
1460 WMI_THIN_RESERVED_END_EVENTID = 0x8fff,
1461
1462 WMI_SET_CHANNEL_EVENTID,
1463 WMI_ASSOC_REQ_EVENTID,
1464
1465 /* Generic ACS event */
1466 WMI_ACS_EVENTID,
1467 WMI_STORERECALL_STORE_EVENTID,
1468 WMI_WOW_EXT_WAKE_EVENTID,
1469 WMI_GTK_OFFLOAD_STATUS_EVENTID,
1470 WMI_NETWORK_LIST_OFFLOAD_EVENTID,
1471 WMI_REMAIN_ON_CHNL_EVENTID,
1472 WMI_CANCEL_REMAIN_ON_CHNL_EVENTID,
1473 WMI_TX_STATUS_EVENTID,
1474 WMI_RX_PROBE_REQ_EVENTID,
1475 WMI_P2P_CAPABILITIES_EVENTID,
1476 WMI_RX_ACTION_EVENTID,
1477 WMI_P2P_INFO_EVENTID,
1478
1479 /* WPS Events */
1480 WMI_WPS_GET_STATUS_EVENTID,
1481 WMI_WPS_PROFILE_EVENTID,
1482
1483 /* more P2P events */
1484 WMI_NOA_INFO_EVENTID,
1485 WMI_OPPPS_INFO_EVENTID,
1486 WMI_PORT_STATUS_EVENTID,
1487
1488 /* 802.11w */
1489 WMI_GET_RSN_CAP_EVENTID,
1490
1491 WMI_TXE_NOTIFY_EVENTID,
1492 };
1493
1494 struct wmi_ready_event_2 {
1495 __le32 sw_version;
1496 __le32 abi_version;
1497 u8 mac_addr[ETH_ALEN];
1498 u8 phy_cap;
1499 } __packed;
1500
1501 /* WMI_PHY_CAPABILITY */
1502 enum wmi_phy_cap {
1503 WMI_11A_CAP = 0x01,
1504 WMI_11G_CAP = 0x02,
1505 WMI_11AG_CAP = 0x03,
1506 WMI_11AN_CAP = 0x04,
1507 WMI_11GN_CAP = 0x05,
1508 WMI_11AGN_CAP = 0x06,
1509 };
1510
1511 /* Connect Event */
1512 struct wmi_connect_event {
1513 union {
1514 struct {
1515 __le16 ch;
1516 u8 bssid[ETH_ALEN];
1517 __le16 listen_intvl;
1518 __le16 beacon_intvl;
1519 __le32 nw_type;
1520 } sta;
1521 struct {
1522 u8 phymode;
1523 u8 aid;
1524 u8 mac_addr[ETH_ALEN];
1525 u8 auth;
1526 u8 keymgmt;
1527 __le16 cipher;
1528 u8 apsd_info;
1529 u8 unused[3];
1530 } ap_sta;
1531 struct {
1532 __le16 ch;
1533 u8 bssid[ETH_ALEN];
1534 u8 unused[8];
1535 } ap_bss;
1536 } u;
1537 u8 beacon_ie_len;
1538 u8 assoc_req_len;
1539 u8 assoc_resp_len;
1540 u8 assoc_info[1];
1541 } __packed;
1542
1543 /* Disconnect Event */
1544 enum wmi_disconnect_reason {
1545 NO_NETWORK_AVAIL = 0x01,
1546
1547 /* bmiss */
1548 LOST_LINK = 0x02,
1549
1550 DISCONNECT_CMD = 0x03,
1551 BSS_DISCONNECTED = 0x04,
1552 AUTH_FAILED = 0x05,
1553 ASSOC_FAILED = 0x06,
1554 NO_RESOURCES_AVAIL = 0x07,
1555 CSERV_DISCONNECT = 0x08,
1556 INVALID_PROFILE = 0x0a,
1557 DOT11H_CHANNEL_SWITCH = 0x0b,
1558 PROFILE_MISMATCH = 0x0c,
1559 CONNECTION_EVICTED = 0x0d,
1560 IBSS_MERGE = 0xe,
1561 };
1562
1563 /* AP mode disconnect proto_reasons */
1564 enum ap_disconnect_reason {
1565 WMI_AP_REASON_STA_LEFT = 101,
1566 WMI_AP_REASON_FROM_HOST = 102,
1567 WMI_AP_REASON_COMM_TIMEOUT = 103,
1568 WMI_AP_REASON_MAX_STA = 104,
1569 WMI_AP_REASON_ACL = 105,
1570 WMI_AP_REASON_STA_ROAM = 106,
1571 WMI_AP_REASON_DFS_CHANNEL = 107,
1572 };
1573
1574 #define ATH6KL_COUNTRY_RD_SHIFT 16
1575
1576 struct ath6kl_wmi_regdomain {
1577 __le32 reg_code;
1578 };
1579
1580 struct wmi_disconnect_event {
1581 /* reason code, see 802.11 spec. */
1582 __le16 proto_reason_status;
1583
1584 /* set if known */
1585 u8 bssid[ETH_ALEN];
1586
1587 /* see WMI_DISCONNECT_REASON */
1588 u8 disconn_reason;
1589
1590 u8 assoc_resp_len;
1591 u8 assoc_info[1];
1592 } __packed;
1593
1594 /*
1595 * BSS Info Event.
1596 * Mechanism used to inform host of the presence and characteristic of
1597 * wireless networks present. Consists of bss info header followed by
1598 * the beacon or probe-response frame body. The 802.11 header is no included.
1599 */
1600 enum wmi_bi_ftype {
1601 BEACON_FTYPE = 0x1,
1602 PROBERESP_FTYPE,
1603 ACTION_MGMT_FTYPE,
1604 PROBEREQ_FTYPE,
1605 };
1606
1607 #define DEF_LRSSI_SCAN_PERIOD 5
1608 #define DEF_LRSSI_ROAM_THRESHOLD 20
1609 #define DEF_LRSSI_ROAM_FLOOR 60
1610 #define DEF_SCAN_FOR_ROAM_INTVL 2
1611
1612 enum wmi_roam_ctrl {
1613 WMI_FORCE_ROAM = 1,
1614 WMI_SET_ROAM_MODE,
1615 WMI_SET_HOST_BIAS,
1616 WMI_SET_LRSSI_SCAN_PARAMS,
1617 };
1618
1619 enum wmi_roam_mode {
1620 WMI_DEFAULT_ROAM_MODE = 1, /* RSSI based roam */
1621 WMI_HOST_BIAS_ROAM_MODE = 2, /* Host bias based roam */
1622 WMI_LOCK_BSS_MODE = 3, /* Lock to the current BSS */
1623 };
1624
1625 struct bss_bias {
1626 u8 bssid[ETH_ALEN];
1627 s8 bias;
1628 } __packed;
1629
1630 struct bss_bias_info {
1631 u8 num_bss;
1632 struct bss_bias bss_bias[0];
1633 } __packed;
1634
1635 struct low_rssi_scan_params {
1636 __le16 lrssi_scan_period;
1637 a_sle16 lrssi_scan_threshold;
1638 a_sle16 lrssi_roam_threshold;
1639 u8 roam_rssi_floor;
1640 u8 reserved[1];
1641 } __packed;
1642
1643 struct roam_ctrl_cmd {
1644 union {
1645 u8 bssid[ETH_ALEN]; /* WMI_FORCE_ROAM */
1646 u8 roam_mode; /* WMI_SET_ROAM_MODE */
1647 struct bss_bias_info bss; /* WMI_SET_HOST_BIAS */
1648 struct low_rssi_scan_params params; /* WMI_SET_LRSSI_SCAN_PARAMS
1649 */
1650 } __packed info;
1651 u8 roam_ctrl;
1652 } __packed;
1653
1654 struct set_dtim_cmd {
1655 __le32 dtim_period;
1656 } __packed;
1657
1658 /* BSS INFO HDR version 2.0 */
1659 struct wmi_bss_info_hdr2 {
1660 __le16 ch; /* frequency in MHz */
1661
1662 /* see, enum wmi_bi_ftype */
1663 u8 frame_type;
1664
1665 u8 snr; /* note: rssi = snr - 95 dBm */
1666 u8 bssid[ETH_ALEN];
1667 __le16 ie_mask;
1668 } __packed;
1669
1670 /* Command Error Event */
1671 enum wmi_error_code {
1672 INVALID_PARAM = 0x01,
1673 ILLEGAL_STATE = 0x02,
1674 INTERNAL_ERROR = 0x03,
1675 };
1676
1677 struct wmi_cmd_error_event {
1678 __le16 cmd_id;
1679 u8 err_code;
1680 } __packed;
1681
1682 struct wmi_pstream_timeout_event {
1683 u8 tx_queue_num;
1684 u8 rx_queue_num;
1685 u8 traffic_direc;
1686 u8 traffic_class;
1687 } __packed;
1688
1689 /*
1690 * The WMI_NEIGHBOR_REPORT Event is generated by the target to inform
1691 * the host of BSS's it has found that matches the current profile.
1692 * It can be used by the host to cache PMKs and/to initiate pre-authentication
1693 * if the BSS supports it. The first bssid is always the current associated
1694 * BSS.
1695 * The bssid and bssFlags information repeats according to the number
1696 * or APs reported.
1697 */
1698 enum wmi_bss_flags {
1699 WMI_DEFAULT_BSS_FLAGS = 0x00,
1700 WMI_PREAUTH_CAPABLE_BSS = 0x01,
1701 WMI_PMKID_VALID_BSS = 0x02,
1702 };
1703
1704 struct wmi_neighbor_info {
1705 u8 bssid[ETH_ALEN];
1706 u8 bss_flags; /* enum wmi_bss_flags */
1707 } __packed;
1708
1709 struct wmi_neighbor_report_event {
1710 u8 num_neighbors;
1711 struct wmi_neighbor_info neighbor[0];
1712 } __packed;
1713
1714 /* TKIP MIC Error Event */
1715 struct wmi_tkip_micerr_event {
1716 u8 key_id;
1717 u8 is_mcast;
1718 } __packed;
1719
1720 enum wmi_scan_status {
1721 WMI_SCAN_STATUS_SUCCESS = 0,
1722 };
1723
1724 /* WMI_SCAN_COMPLETE_EVENTID */
1725 struct wmi_scan_complete_event {
1726 a_sle32 status;
1727 } __packed;
1728
1729 #define MAX_OPT_DATA_LEN 1400
1730
1731 /*
1732 * Special frame receive Event.
1733 * Mechanism used to inform host of the receiption of the special frames.
1734 * Consists of special frame info header followed by special frame body.
1735 * The 802.11 header is not included.
1736 */
1737 struct wmi_opt_rx_info_hdr {
1738 __le16 ch;
1739 u8 frame_type;
1740 s8 snr;
1741 u8 src_addr[ETH_ALEN];
1742 u8 bssid[ETH_ALEN];
1743 } __packed;
1744
1745 /* Reporting statistic */
1746 struct tx_stats {
1747 __le32 pkt;
1748 __le32 byte;
1749 __le32 ucast_pkt;
1750 __le32 ucast_byte;
1751 __le32 mcast_pkt;
1752 __le32 mcast_byte;
1753 __le32 bcast_pkt;
1754 __le32 bcast_byte;
1755 __le32 rts_success_cnt;
1756 __le32 pkt_per_ac[4];
1757 __le32 err_per_ac[4];
1758
1759 __le32 err;
1760 __le32 fail_cnt;
1761 __le32 retry_cnt;
1762 __le32 mult_retry_cnt;
1763 __le32 rts_fail_cnt;
1764 a_sle32 ucast_rate;
1765 } __packed;
1766
1767 struct rx_stats {
1768 __le32 pkt;
1769 __le32 byte;
1770 __le32 ucast_pkt;
1771 __le32 ucast_byte;
1772 __le32 mcast_pkt;
1773 __le32 mcast_byte;
1774 __le32 bcast_pkt;
1775 __le32 bcast_byte;
1776 __le32 frgment_pkt;
1777
1778 __le32 err;
1779 __le32 crc_err;
1780 __le32 key_cache_miss;
1781 __le32 decrypt_err;
1782 __le32 dupl_frame;
1783 a_sle32 ucast_rate;
1784 } __packed;
1785
1786 struct tkip_ccmp_stats {
1787 __le32 tkip_local_mic_fail;
1788 __le32 tkip_cnter_measures_invoked;
1789 __le32 tkip_replays;
1790 __le32 tkip_fmt_err;
1791 __le32 ccmp_fmt_err;
1792 __le32 ccmp_replays;
1793 } __packed;
1794
1795 struct pm_stats {
1796 __le32 pwr_save_failure_cnt;
1797 __le16 stop_tx_failure_cnt;
1798 __le16 atim_tx_failure_cnt;
1799 __le16 atim_rx_failure_cnt;
1800 __le16 bcn_rx_failure_cnt;
1801 } __packed;
1802
1803 struct cserv_stats {
1804 __le32 cs_bmiss_cnt;
1805 __le32 cs_low_rssi_cnt;
1806 __le16 cs_connect_cnt;
1807 __le16 cs_discon_cnt;
1808 a_sle16 cs_ave_beacon_rssi;
1809 __le16 cs_roam_count;
1810 a_sle16 cs_rssi;
1811 u8 cs_snr;
1812 u8 cs_ave_beacon_snr;
1813 u8 cs_last_roam_msec;
1814 } __packed;
1815
1816 struct wlan_net_stats {
1817 struct tx_stats tx;
1818 struct rx_stats rx;
1819 struct tkip_ccmp_stats tkip_ccmp_stats;
1820 } __packed;
1821
1822 struct arp_stats {
1823 __le32 arp_received;
1824 __le32 arp_matched;
1825 __le32 arp_replied;
1826 } __packed;
1827
1828 struct wlan_wow_stats {
1829 __le32 wow_pkt_dropped;
1830 __le16 wow_evt_discarded;
1831 u8 wow_host_pkt_wakeups;
1832 u8 wow_host_evt_wakeups;
1833 } __packed;
1834
1835 struct wmi_target_stats {
1836 __le32 lq_val;
1837 a_sle32 noise_floor_calib;
1838 struct pm_stats pm_stats;
1839 struct wlan_net_stats stats;
1840 struct wlan_wow_stats wow_stats;
1841 struct arp_stats arp_stats;
1842 struct cserv_stats cserv_stats;
1843 } __packed;
1844
1845 /*
1846 * WMI_RSSI_THRESHOLD_EVENTID.
1847 * Indicate the RSSI events to host. Events are indicated when we breach a
1848 * thresold value.
1849 */
1850 enum wmi_rssi_threshold_val {
1851 WMI_RSSI_THRESHOLD1_ABOVE = 0,
1852 WMI_RSSI_THRESHOLD2_ABOVE,
1853 WMI_RSSI_THRESHOLD3_ABOVE,
1854 WMI_RSSI_THRESHOLD4_ABOVE,
1855 WMI_RSSI_THRESHOLD5_ABOVE,
1856 WMI_RSSI_THRESHOLD6_ABOVE,
1857 WMI_RSSI_THRESHOLD1_BELOW,
1858 WMI_RSSI_THRESHOLD2_BELOW,
1859 WMI_RSSI_THRESHOLD3_BELOW,
1860 WMI_RSSI_THRESHOLD4_BELOW,
1861 WMI_RSSI_THRESHOLD5_BELOW,
1862 WMI_RSSI_THRESHOLD6_BELOW
1863 };
1864
1865 struct wmi_rssi_threshold_event {
1866 a_sle16 rssi;
1867 u8 range;
1868 } __packed;
1869
1870 enum wmi_snr_threshold_val {
1871 WMI_SNR_THRESHOLD1_ABOVE = 1,
1872 WMI_SNR_THRESHOLD1_BELOW,
1873 WMI_SNR_THRESHOLD2_ABOVE,
1874 WMI_SNR_THRESHOLD2_BELOW,
1875 WMI_SNR_THRESHOLD3_ABOVE,
1876 WMI_SNR_THRESHOLD3_BELOW,
1877 WMI_SNR_THRESHOLD4_ABOVE,
1878 WMI_SNR_THRESHOLD4_BELOW
1879 };
1880
1881 struct wmi_snr_threshold_event {
1882 /* see, enum wmi_snr_threshold_val */
1883 u8 range;
1884
1885 u8 snr;
1886 } __packed;
1887
1888 /* WMI_REPORT_ROAM_TBL_EVENTID */
1889 #define MAX_ROAM_TBL_CAND 5
1890
1891 struct wmi_bss_roam_info {
1892 a_sle32 roam_util;
1893 u8 bssid[ETH_ALEN];
1894 s8 rssi;
1895 s8 rssidt;
1896 s8 last_rssi;
1897 s8 util;
1898 s8 bias;
1899
1900 /* for alignment */
1901 u8 reserved;
1902 } __packed;
1903
1904 struct wmi_target_roam_tbl {
1905 __le16 roam_mode;
1906 __le16 num_entries;
1907 struct wmi_bss_roam_info info[];
1908 } __packed;
1909
1910 /* WMI_CAC_EVENTID */
1911 enum cac_indication {
1912 CAC_INDICATION_ADMISSION = 0x00,
1913 CAC_INDICATION_ADMISSION_RESP = 0x01,
1914 CAC_INDICATION_DELETE = 0x02,
1915 CAC_INDICATION_NO_RESP = 0x03,
1916 };
1917
1918 #define WMM_TSPEC_IE_LEN 63
1919
1920 struct wmi_cac_event {
1921 u8 ac;
1922 u8 cac_indication;
1923 u8 status_code;
1924 u8 tspec_suggestion[WMM_TSPEC_IE_LEN];
1925 } __packed;
1926
1927 /* WMI_APLIST_EVENTID */
1928
1929 enum aplist_ver {
1930 APLIST_VER1 = 1,
1931 };
1932
1933 struct wmi_ap_info_v1 {
1934 u8 bssid[ETH_ALEN];
1935 __le16 channel;
1936 } __packed;
1937
1938 union wmi_ap_info {
1939 struct wmi_ap_info_v1 ap_info_v1;
1940 } __packed;
1941
1942 struct wmi_aplist_event {
1943 u8 ap_list_ver;
1944 u8 num_ap;
1945 union wmi_ap_info ap_list[1];
1946 } __packed;
1947
1948 /* Developer Commands */
1949
1950 /*
1951 * WMI_SET_BITRATE_CMDID
1952 *
1953 * Get bit rate cmd uses same definition as set bit rate cmd
1954 */
1955 enum wmi_bit_rate {
1956 RATE_AUTO = -1,
1957 RATE_1Mb = 0,
1958 RATE_2Mb = 1,
1959 RATE_5_5Mb = 2,
1960 RATE_11Mb = 3,
1961 RATE_6Mb = 4,
1962 RATE_9Mb = 5,
1963 RATE_12Mb = 6,
1964 RATE_18Mb = 7,
1965 RATE_24Mb = 8,
1966 RATE_36Mb = 9,
1967 RATE_48Mb = 10,
1968 RATE_54Mb = 11,
1969 RATE_MCS_0_20 = 12,
1970 RATE_MCS_1_20 = 13,
1971 RATE_MCS_2_20 = 14,
1972 RATE_MCS_3_20 = 15,
1973 RATE_MCS_4_20 = 16,
1974 RATE_MCS_5_20 = 17,
1975 RATE_MCS_6_20 = 18,
1976 RATE_MCS_7_20 = 19,
1977 RATE_MCS_0_40 = 20,
1978 RATE_MCS_1_40 = 21,
1979 RATE_MCS_2_40 = 22,
1980 RATE_MCS_3_40 = 23,
1981 RATE_MCS_4_40 = 24,
1982 RATE_MCS_5_40 = 25,
1983 RATE_MCS_6_40 = 26,
1984 RATE_MCS_7_40 = 27,
1985 };
1986
1987 struct wmi_bit_rate_reply {
1988 /* see, enum wmi_bit_rate */
1989 s8 rate_index;
1990 } __packed;
1991
1992 /*
1993 * WMI_SET_FIXRATES_CMDID
1994 *
1995 * Get fix rates cmd uses same definition as set fix rates cmd
1996 */
1997 struct wmi_fix_rates_reply {
1998 /* see wmi_bit_rate */
1999 __le32 fix_rate_mask;
2000 } __packed;
2001
2002 enum roam_data_type {
2003 /* get the roam time data */
2004 ROAM_DATA_TIME = 1,
2005 };
2006
2007 struct wmi_target_roam_time {
2008 __le32 disassoc_time;
2009 __le32 no_txrx_time;
2010 __le32 assoc_time;
2011 __le32 allow_txrx_time;
2012 u8 disassoc_bssid[ETH_ALEN];
2013 s8 disassoc_bss_rssi;
2014 u8 assoc_bssid[ETH_ALEN];
2015 s8 assoc_bss_rssi;
2016 } __packed;
2017
2018 enum wmi_txop_cfg {
2019 WMI_TXOP_DISABLED = 0,
2020 WMI_TXOP_ENABLED
2021 };
2022
2023 struct wmi_set_wmm_txop_cmd {
2024 u8 txop_enable;
2025 } __packed;
2026
2027 struct wmi_set_keepalive_cmd {
2028 u8 keep_alive_intvl;
2029 } __packed;
2030
2031 struct wmi_get_keepalive_cmd {
2032 __le32 configured;
2033 u8 keep_alive_intvl;
2034 } __packed;
2035
2036 struct wmi_set_appie_cmd {
2037 u8 mgmt_frm_type; /* enum wmi_mgmt_frame_type */
2038 u8 ie_len;
2039 u8 ie_info[0];
2040 } __packed;
2041
2042 struct wmi_set_ie_cmd {
2043 u8 ie_id;
2044 u8 ie_field; /* enum wmi_ie_field_type */
2045 u8 ie_len;
2046 u8 reserved;
2047 u8 ie_info[0];
2048 } __packed;
2049
2050 /* Notify the WSC registration status to the target */
2051 #define WSC_REG_ACTIVE 1
2052 #define WSC_REG_INACTIVE 0
2053
2054 #define WOW_MAX_FILTERS_PER_LIST 4
2055 #define WOW_PATTERN_SIZE 64
2056 #define WOW_MASK_SIZE 64
2057
2058 #define MAC_MAX_FILTERS_PER_LIST 4
2059
2060 struct wow_filter {
2061 u8 wow_valid_filter;
2062 u8 wow_filter_id;
2063 u8 wow_filter_size;
2064 u8 wow_filter_offset;
2065 u8 wow_filter_mask[WOW_MASK_SIZE];
2066 u8 wow_filter_pattern[WOW_PATTERN_SIZE];
2067 } __packed;
2068
2069 #define MAX_IP_ADDRS 2
2070
2071 struct wmi_set_ip_cmd {
2072 /* IP in network byte order */
2073 __be32 ips[MAX_IP_ADDRS];
2074 } __packed;
2075
2076 enum ath6kl_wow_filters {
2077 WOW_FILTER_SSID = BIT(1),
2078 WOW_FILTER_OPTION_MAGIC_PACKET = BIT(2),
2079 WOW_FILTER_OPTION_EAP_REQ = BIT(3),
2080 WOW_FILTER_OPTION_PATTERNS = BIT(4),
2081 WOW_FILTER_OPTION_OFFLOAD_ARP = BIT(5),
2082 WOW_FILTER_OPTION_OFFLOAD_NS = BIT(6),
2083 WOW_FILTER_OPTION_OFFLOAD_GTK = BIT(7),
2084 WOW_FILTER_OPTION_8021X_4WAYHS = BIT(8),
2085 WOW_FILTER_OPTION_NLO_DISCVRY = BIT(9),
2086 WOW_FILTER_OPTION_NWK_DISASSOC = BIT(10),
2087 WOW_FILTER_OPTION_GTK_ERROR = BIT(11),
2088 WOW_FILTER_OPTION_TEST_MODE = BIT(15),
2089 };
2090
2091 enum ath6kl_host_mode {
2092 ATH6KL_HOST_MODE_AWAKE,
2093 ATH6KL_HOST_MODE_ASLEEP,
2094 };
2095
2096 struct wmi_set_host_sleep_mode_cmd {
2097 __le32 awake;
2098 __le32 asleep;
2099 } __packed;
2100
2101 enum ath6kl_wow_mode {
2102 ATH6KL_WOW_MODE_DISABLE,
2103 ATH6KL_WOW_MODE_ENABLE,
2104 };
2105
2106 struct wmi_set_wow_mode_cmd {
2107 __le32 enable_wow;
2108 __le32 filter;
2109 __le16 host_req_delay;
2110 } __packed;
2111
2112 struct wmi_add_wow_pattern_cmd {
2113 u8 filter_list_id;
2114 u8 filter_size;
2115 u8 filter_offset;
2116 u8 filter[0];
2117 } __packed;
2118
2119 struct wmi_del_wow_pattern_cmd {
2120 __le16 filter_list_id;
2121 __le16 filter_id;
2122 } __packed;
2123
2124 /* WMI_SET_TXE_NOTIFY_CMDID */
2125 struct wmi_txe_notify_cmd {
2126 __le32 rate;
2127 __le32 pkts;
2128 __le32 intvl;
2129 } __packed;
2130
2131 /* WMI_TXE_NOTIFY_EVENTID */
2132 struct wmi_txe_notify_event {
2133 __le32 rate;
2134 __le32 pkts;
2135 } __packed;
2136
2137 /* WMI_SET_AKMP_PARAMS_CMD */
2138
2139 struct wmi_pmkid {
2140 u8 pmkid[WMI_PMKID_LEN];
2141 } __packed;
2142
2143 /* WMI_GET_PMKID_LIST_CMD Reply */
2144 struct wmi_pmkid_list_reply {
2145 __le32 num_pmkid;
2146 u8 bssid_list[ETH_ALEN][1];
2147 struct wmi_pmkid pmkid_list[1];
2148 } __packed;
2149
2150 /* WMI_ADDBA_REQ_EVENTID */
2151 struct wmi_addba_req_event {
2152 u8 tid;
2153 u8 win_sz;
2154 __le16 st_seq_no;
2155
2156 /* f/w response for ADDBA Req; OK (0) or failure (!=0) */
2157 u8 status;
2158 } __packed;
2159
2160 /* WMI_ADDBA_RESP_EVENTID */
2161 struct wmi_addba_resp_event {
2162 u8 tid;
2163
2164 /* OK (0), failure (!=0) */
2165 u8 status;
2166
2167 /* three values: not supported(0), 3839, 8k */
2168 __le16 amsdu_sz;
2169 } __packed;
2170
2171 /* WMI_DELBA_EVENTID
2172 * f/w received a DELBA for peer and processed it.
2173 * Host is notified of this
2174 */
2175 struct wmi_delba_event {
2176 u8 tid;
2177 u8 is_peer_initiator;
2178 __le16 reason_code;
2179 } __packed;
2180
2181 #define PEER_NODE_JOIN_EVENT 0x00
2182 #define PEER_NODE_LEAVE_EVENT 0x01
2183 #define PEER_FIRST_NODE_JOIN_EVENT 0x10
2184 #define PEER_LAST_NODE_LEAVE_EVENT 0x11
2185
2186 struct wmi_peer_node_event {
2187 u8 event_code;
2188 u8 peer_mac_addr[ETH_ALEN];
2189 } __packed;
2190
2191 /* Transmit complete event data structure(s) */
2192
2193 /* version 1 of tx complete msg */
2194 struct tx_complete_msg_v1 {
2195 #define TX_COMPLETE_STATUS_SUCCESS 0
2196 #define TX_COMPLETE_STATUS_RETRIES 1
2197 #define TX_COMPLETE_STATUS_NOLINK 2
2198 #define TX_COMPLETE_STATUS_TIMEOUT 3
2199 #define TX_COMPLETE_STATUS_OTHER 4
2200
2201 u8 status;
2202
2203 /* packet ID to identify parent packet */
2204 u8 pkt_id;
2205
2206 /* rate index on successful transmission */
2207 u8 rate_idx;
2208
2209 /* number of ACK failures in tx attempt */
2210 u8 ack_failures;
2211 } __packed;
2212
2213 struct wmi_tx_complete_event {
2214 /* no of tx comp msgs following this struct */
2215 u8 num_msg;
2216
2217 /* length in bytes for each individual msg following this struct */
2218 u8 msg_len;
2219
2220 /* version of tx complete msg data following this struct */
2221 u8 msg_type;
2222
2223 /* individual messages follow this header */
2224 u8 reserved;
2225 } __packed;
2226
2227 /*
2228 * ------- AP Mode definitions --------------
2229 */
2230
2231 /*
2232 * !!! Warning !!!
2233 * -Changing the following values needs compilation of both driver and firmware
2234 */
2235 #define AP_MAX_NUM_STA 10
2236
2237 /* Spl. AID used to set DTIM flag in the beacons */
2238 #define MCAST_AID 0xFF
2239
2240 #define DEF_AP_COUNTRY_CODE "US "
2241
2242 /* Used with WMI_AP_SET_NUM_STA_CMDID */
2243
2244 /*
2245 * Used with WMI_AP_SET_MLME_CMDID
2246 */
2247
2248 /* MLME Commands */
2249 #define WMI_AP_MLME_ASSOC 1 /* associate station */
2250 #define WMI_AP_DISASSOC 2 /* disassociate station */
2251 #define WMI_AP_DEAUTH 3 /* deauthenticate station */
2252 #define WMI_AP_MLME_AUTHORIZE 4 /* authorize station */
2253 #define WMI_AP_MLME_UNAUTHORIZE 5 /* unauthorize station */
2254
2255 struct wmi_ap_set_mlme_cmd {
2256 u8 mac[ETH_ALEN];
2257 __le16 reason; /* 802.11 reason code */
2258 u8 cmd; /* operation to perform (WMI_AP_*) */
2259 } __packed;
2260
2261 struct wmi_ap_set_pvb_cmd {
2262 __le32 flag;
2263 __le16 rsvd;
2264 __le16 aid;
2265 } __packed;
2266
2267 struct wmi_rx_frame_format_cmd {
2268 /* version of meta data for rx packets <0 = default> (0-7 = valid) */
2269 u8 meta_ver;
2270
2271 /*
2272 * 1 == leave .11 header intact,
2273 * 0 == replace .11 header with .3 <default>
2274 */
2275 u8 dot11_hdr;
2276
2277 /*
2278 * 1 == defragmentation is performed by host,
2279 * 0 == performed by target <default>
2280 */
2281 u8 defrag_on_host;
2282
2283 /* for alignment */
2284 u8 reserved[1];
2285 } __packed;
2286
2287 struct wmi_ap_hidden_ssid_cmd {
2288 u8 hidden_ssid;
2289 } __packed;
2290
2291 struct wmi_set_inact_period_cmd {
2292 __le32 inact_period;
2293 u8 num_null_func;
2294 } __packed;
2295
2296 /* AP mode events */
2297 struct wmi_ap_set_apsd_cmd {
2298 u8 enable;
2299 } __packed;
2300
2301 enum wmi_ap_apsd_buffered_traffic_flags {
2302 WMI_AP_APSD_NO_DELIVERY_FRAMES = 0x1,
2303 };
2304
2305 struct wmi_ap_apsd_buffered_traffic_cmd {
2306 __le16 aid;
2307 __le16 bitmap;
2308 __le32 flags;
2309 } __packed;
2310
2311 /* WMI_PS_POLL_EVENT */
2312 struct wmi_pspoll_event {
2313 __le16 aid;
2314 } __packed;
2315
2316 struct wmi_per_sta_stat {
2317 __le32 tx_bytes;
2318 __le32 tx_pkts;
2319 __le32 tx_error;
2320 __le32 tx_discard;
2321 __le32 rx_bytes;
2322 __le32 rx_pkts;
2323 __le32 rx_error;
2324 __le32 rx_discard;
2325 __le32 aid;
2326 } __packed;
2327
2328 struct wmi_ap_mode_stat {
2329 __le32 action;
2330 struct wmi_per_sta_stat sta[AP_MAX_NUM_STA + 1];
2331 } __packed;
2332
2333 /* End of AP mode definitions */
2334
2335 struct wmi_remain_on_chnl_cmd {
2336 __le32 freq;
2337 __le32 duration;
2338 } __packed;
2339
2340 /* wmi_send_action_cmd is to be deprecated. Use
2341 * wmi_send_mgmt_cmd instead. The new structure supports P2P mgmt
2342 * operations using station interface.
2343 */
2344 struct wmi_send_action_cmd {
2345 __le32 id;
2346 __le32 freq;
2347 __le32 wait;
2348 __le16 len;
2349 u8 data[0];
2350 } __packed;
2351
2352 struct wmi_send_mgmt_cmd {
2353 __le32 id;
2354 __le32 freq;
2355 __le32 wait;
2356 __le32 no_cck;
2357 __le16 len;
2358 u8 data[0];
2359 } __packed;
2360
2361 struct wmi_tx_status_event {
2362 __le32 id;
2363 u8 ack_status;
2364 } __packed;
2365
2366 struct wmi_probe_req_report_cmd {
2367 u8 enable;
2368 } __packed;
2369
2370 struct wmi_disable_11b_rates_cmd {
2371 u8 disable;
2372 } __packed;
2373
2374 struct wmi_set_appie_extended_cmd {
2375 u8 role_id;
2376 u8 mgmt_frm_type;
2377 u8 ie_len;
2378 u8 ie_info[0];
2379 } __packed;
2380
2381 struct wmi_remain_on_chnl_event {
2382 __le32 freq;
2383 __le32 duration;
2384 } __packed;
2385
2386 struct wmi_cancel_remain_on_chnl_event {
2387 __le32 freq;
2388 __le32 duration;
2389 u8 status;
2390 } __packed;
2391
2392 struct wmi_rx_action_event {
2393 __le32 freq;
2394 __le16 len;
2395 u8 data[0];
2396 } __packed;
2397
2398 struct wmi_p2p_capabilities_event {
2399 __le16 len;
2400 u8 data[0];
2401 } __packed;
2402
2403 struct wmi_p2p_rx_probe_req_event {
2404 __le32 freq;
2405 __le16 len;
2406 u8 data[0];
2407 } __packed;
2408
2409 #define P2P_FLAG_CAPABILITIES_REQ (0x00000001)
2410 #define P2P_FLAG_MACADDR_REQ (0x00000002)
2411 #define P2P_FLAG_HMODEL_REQ (0x00000002)
2412
2413 struct wmi_get_p2p_info {
2414 __le32 info_req_flags;
2415 } __packed;
2416
2417 struct wmi_p2p_info_event {
2418 __le32 info_req_flags;
2419 __le16 len;
2420 u8 data[0];
2421 } __packed;
2422
2423 struct wmi_p2p_capabilities {
2424 u8 go_power_save;
2425 } __packed;
2426
2427 struct wmi_p2p_macaddr {
2428 u8 mac_addr[ETH_ALEN];
2429 } __packed;
2430
2431 struct wmi_p2p_hmodel {
2432 u8 p2p_model;
2433 } __packed;
2434
2435 struct wmi_p2p_probe_response_cmd {
2436 __le32 freq;
2437 u8 destination_addr[ETH_ALEN];
2438 __le16 len;
2439 u8 data[0];
2440 } __packed;
2441
2442 /* Extended WMI (WMIX)
2443 *
2444 * Extended WMIX commands are encapsulated in a WMI message with
2445 * cmd=WMI_EXTENSION_CMD.
2446 *
2447 * Extended WMI commands are those that are needed during wireless
2448 * operation, but which are not really wireless commands. This allows,
2449 * for instance, platform-specific commands. Extended WMI commands are
2450 * embedded in a WMI command message with WMI_COMMAND_ID=WMI_EXTENSION_CMDID.
2451 * Extended WMI events are similarly embedded in a WMI event message with
2452 * WMI_EVENT_ID=WMI_EXTENSION_EVENTID.
2453 */
2454 struct wmix_cmd_hdr {
2455 __le32 cmd_id;
2456 } __packed;
2457
2458 enum wmix_command_id {
2459 WMIX_DSETOPEN_REPLY_CMDID = 0x2001,
2460 WMIX_DSETDATA_REPLY_CMDID,
2461 WMIX_GPIO_OUTPUT_SET_CMDID,
2462 WMIX_GPIO_INPUT_GET_CMDID,
2463 WMIX_GPIO_REGISTER_SET_CMDID,
2464 WMIX_GPIO_REGISTER_GET_CMDID,
2465 WMIX_GPIO_INTR_ACK_CMDID,
2466 WMIX_HB_CHALLENGE_RESP_CMDID,
2467 WMIX_DBGLOG_CFG_MODULE_CMDID,
2468 WMIX_PROF_CFG_CMDID, /* 0x200a */
2469 WMIX_PROF_ADDR_SET_CMDID,
2470 WMIX_PROF_START_CMDID,
2471 WMIX_PROF_STOP_CMDID,
2472 WMIX_PROF_COUNT_GET_CMDID,
2473 };
2474
2475 enum wmix_event_id {
2476 WMIX_DSETOPENREQ_EVENTID = 0x3001,
2477 WMIX_DSETCLOSE_EVENTID,
2478 WMIX_DSETDATAREQ_EVENTID,
2479 WMIX_GPIO_INTR_EVENTID,
2480 WMIX_GPIO_DATA_EVENTID,
2481 WMIX_GPIO_ACK_EVENTID,
2482 WMIX_HB_CHALLENGE_RESP_EVENTID,
2483 WMIX_DBGLOG_EVENTID,
2484 WMIX_PROF_COUNT_EVENTID,
2485 };
2486
2487 /*
2488 * ------Error Detection support-------
2489 */
2490
2491 /*
2492 * WMIX_HB_CHALLENGE_RESP_CMDID
2493 * Heartbeat Challenge Response command
2494 */
2495 struct wmix_hb_challenge_resp_cmd {
2496 __le32 cookie;
2497 __le32 source;
2498 } __packed;
2499
2500 struct ath6kl_wmix_dbglog_cfg_module_cmd {
2501 __le32 valid;
2502 __le32 config;
2503 } __packed;
2504
2505 /* End of Extended WMI (WMIX) */
2506
2507 enum wmi_sync_flag {
2508 NO_SYNC_WMIFLAG = 0,
2509
2510 /* transmit all queued data before cmd */
2511 SYNC_BEFORE_WMIFLAG,
2512
2513 /* any new data waits until cmd execs */
2514 SYNC_AFTER_WMIFLAG,
2515
2516 SYNC_BOTH_WMIFLAG,
2517
2518 /* end marker */
2519 END_WMIFLAG
2520 };
2521
2522 enum htc_endpoint_id ath6kl_wmi_get_control_ep(struct wmi *wmi);
2523 void ath6kl_wmi_set_control_ep(struct wmi *wmi, enum htc_endpoint_id ep_id);
2524 int ath6kl_wmi_dix_2_dot3(struct wmi *wmi, struct sk_buff *skb);
2525 int ath6kl_wmi_data_hdr_add(struct wmi *wmi, struct sk_buff *skb,
2526 u8 msg_type, u32 flags,
2527 enum wmi_data_hdr_data_type data_type,
2528 u8 meta_ver, void *tx_meta_info, u8 if_idx);
2529
2530 int ath6kl_wmi_dot11_hdr_remove(struct wmi *wmi, struct sk_buff *skb);
2531 int ath6kl_wmi_dot3_2_dix(struct sk_buff *skb);
2532 int ath6kl_wmi_implicit_create_pstream(struct wmi *wmi, u8 if_idx,
2533 struct sk_buff *skb, u32 layer2_priority,
2534 bool wmm_enabled, u8 *ac);
2535
2536 int ath6kl_wmi_control_rx(struct wmi *wmi, struct sk_buff *skb);
2537
2538 int ath6kl_wmi_cmd_send(struct wmi *wmi, u8 if_idx, struct sk_buff *skb,
2539 enum wmi_cmd_id cmd_id, enum wmi_sync_flag sync_flag);
2540
2541 int ath6kl_wmi_connect_cmd(struct wmi *wmi, u8 if_idx,
2542 enum network_type nw_type,
2543 enum dot11_auth_mode dot11_auth_mode,
2544 enum auth_mode auth_mode,
2545 enum crypto_type pairwise_crypto,
2546 u8 pairwise_crypto_len,
2547 enum crypto_type group_crypto,
2548 u8 group_crypto_len, int ssid_len, u8 *ssid,
2549 u8 *bssid, u16 channel, u32 ctrl_flags,
2550 u8 nw_subtype);
2551
2552 int ath6kl_wmi_reconnect_cmd(struct wmi *wmi, u8 if_idx, u8 *bssid,
2553 u16 channel);
2554 int ath6kl_wmi_disconnect_cmd(struct wmi *wmi, u8 if_idx);
2555
2556 int ath6kl_wmi_beginscan_cmd(struct wmi *wmi, u8 if_idx,
2557 enum wmi_scan_type scan_type,
2558 u32 force_fgscan, u32 is_legacy,
2559 u32 home_dwell_time, u32 force_scan_interval,
2560 s8 num_chan, u16 *ch_list, u32 no_cck,
2561 u32 *rates);
2562
2563 int ath6kl_wmi_scanparams_cmd(struct wmi *wmi, u8 if_idx, u16 fg_start_sec,
2564 u16 fg_end_sec, u16 bg_sec,
2565 u16 minact_chdw_msec, u16 maxact_chdw_msec,
2566 u16 pas_chdw_msec, u8 short_scan_ratio,
2567 u8 scan_ctrl_flag, u32 max_dfsch_act_time,
2568 u16 maxact_scan_per_ssid);
2569 int ath6kl_wmi_bssfilter_cmd(struct wmi *wmi, u8 if_idx, u8 filter,
2570 u32 ie_mask);
2571 int ath6kl_wmi_probedssid_cmd(struct wmi *wmi, u8 if_idx, u8 index, u8 flag,
2572 u8 ssid_len, u8 *ssid);
2573 int ath6kl_wmi_listeninterval_cmd(struct wmi *wmi, u8 if_idx,
2574 u16 listen_interval,
2575 u16 listen_beacons);
2576 int ath6kl_wmi_bmisstime_cmd(struct wmi *wmi, u8 if_idx,
2577 u16 bmiss_time, u16 num_beacons);
2578 int ath6kl_wmi_powermode_cmd(struct wmi *wmi, u8 if_idx, u8 pwr_mode);
2579 int ath6kl_wmi_pmparams_cmd(struct wmi *wmi, u8 if_idx, u16 idle_period,
2580 u16 ps_poll_num, u16 dtim_policy,
2581 u16 tx_wakup_policy, u16 num_tx_to_wakeup,
2582 u16 ps_fail_event_policy);
2583 int ath6kl_wmi_create_pstream_cmd(struct wmi *wmi, u8 if_idx,
2584 struct wmi_create_pstream_cmd *pstream);
2585 int ath6kl_wmi_delete_pstream_cmd(struct wmi *wmi, u8 if_idx, u8 traffic_class,
2586 u8 tsid);
2587 int ath6kl_wmi_disctimeout_cmd(struct wmi *wmi, u8 if_idx, u8 timeout);
2588
2589 int ath6kl_wmi_set_rts_cmd(struct wmi *wmi, u16 threshold);
2590 int ath6kl_wmi_set_lpreamble_cmd(struct wmi *wmi, u8 if_idx, u8 status,
2591 u8 preamble_policy);
2592
2593 int ath6kl_wmi_get_challenge_resp_cmd(struct wmi *wmi, u32 cookie, u32 source);
2594 int ath6kl_wmi_config_debug_module_cmd(struct wmi *wmi, u32 valid, u32 config);
2595
2596 int ath6kl_wmi_get_stats_cmd(struct wmi *wmi, u8 if_idx);
2597 int ath6kl_wmi_addkey_cmd(struct wmi *wmi, u8 if_idx, u8 key_index,
2598 enum crypto_type key_type,
2599 u8 key_usage, u8 key_len,
2600 u8 *key_rsc, unsigned int key_rsc_len,
2601 u8 *key_material,
2602 u8 key_op_ctrl, u8 *mac_addr,
2603 enum wmi_sync_flag sync_flag);
2604 int ath6kl_wmi_add_krk_cmd(struct wmi *wmi, u8 if_idx, u8 *krk);
2605 int ath6kl_wmi_deletekey_cmd(struct wmi *wmi, u8 if_idx, u8 key_index);
2606 int ath6kl_wmi_setpmkid_cmd(struct wmi *wmi, u8 if_idx, const u8 *bssid,
2607 const u8 *pmkid, bool set);
2608 int ath6kl_wmi_set_tx_pwr_cmd(struct wmi *wmi, u8 if_idx, u8 dbM);
2609 int ath6kl_wmi_get_tx_pwr_cmd(struct wmi *wmi, u8 if_idx);
2610 int ath6kl_wmi_get_roam_tbl_cmd(struct wmi *wmi);
2611
2612 int ath6kl_wmi_set_wmm_txop(struct wmi *wmi, u8 if_idx, enum wmi_txop_cfg cfg);
2613 int ath6kl_wmi_set_keepalive_cmd(struct wmi *wmi, u8 if_idx,
2614 u8 keep_alive_intvl);
2615 int ath6kl_wmi_set_htcap_cmd(struct wmi *wmi, u8 if_idx,
2616 enum ieee80211_band band,
2617 struct ath6kl_htcap *htcap);
2618 int ath6kl_wmi_test_cmd(struct wmi *wmi, void *buf, size_t len);
2619
2620 s32 ath6kl_wmi_get_rate(s8 rate_index);
2621
2622 int ath6kl_wmi_set_ip_cmd(struct wmi *wmi, u8 if_idx,
2623 __be32 ips0, __be32 ips1);
2624 int ath6kl_wmi_set_host_sleep_mode_cmd(struct wmi *wmi, u8 if_idx,
2625 enum ath6kl_host_mode host_mode);
2626 int ath6kl_wmi_set_bitrate_mask(struct wmi *wmi, u8 if_idx,
2627 const struct cfg80211_bitrate_mask *mask);
2628 int ath6kl_wmi_set_wow_mode_cmd(struct wmi *wmi, u8 if_idx,
2629 enum ath6kl_wow_mode wow_mode,
2630 u32 filter, u16 host_req_delay);
2631 int ath6kl_wmi_add_wow_pattern_cmd(struct wmi *wmi, u8 if_idx,
2632 u8 list_id, u8 filter_size,
2633 u8 filter_offset, const u8 *filter,
2634 const u8 *mask);
2635 int ath6kl_wmi_del_wow_pattern_cmd(struct wmi *wmi, u8 if_idx,
2636 u16 list_id, u16 filter_id);
2637 int ath6kl_wmi_set_rssi_filter_cmd(struct wmi *wmi, u8 if_idx, s8 rssi);
2638 int ath6kl_wmi_set_roam_lrssi_cmd(struct wmi *wmi, u8 lrssi);
2639 int ath6kl_wmi_ap_set_dtim_cmd(struct wmi *wmi, u8 if_idx, u32 dtim_period);
2640 int ath6kl_wmi_force_roam_cmd(struct wmi *wmi, const u8 *bssid);
2641 int ath6kl_wmi_set_roam_mode_cmd(struct wmi *wmi, enum wmi_roam_mode mode);
2642 int ath6kl_wmi_mcast_filter_cmd(struct wmi *wmi, u8 if_idx, bool mc_all_on);
2643 int ath6kl_wmi_add_del_mcast_filter_cmd(struct wmi *wmi, u8 if_idx,
2644 u8 *filter, bool add_filter);
2645 int ath6kl_wmi_sta_bmiss_enhance_cmd(struct wmi *wmi, u8 if_idx, bool enable);
2646 int ath6kl_wmi_set_txe_notify(struct wmi *wmi, u8 idx,
2647 u32 rate, u32 pkts, u32 intvl);
2648 int ath6kl_wmi_set_regdomain_cmd(struct wmi *wmi, const char *alpha2);
2649
2650 /* AP mode uAPSD */
2651 int ath6kl_wmi_ap_set_apsd(struct wmi *wmi, u8 if_idx, u8 enable);
2652
2653 int ath6kl_wmi_set_apsd_bfrd_traf(struct wmi *wmi,
2654 u8 if_idx, u16 aid,
2655 u16 bitmap, u32 flags);
2656
2657 u8 ath6kl_wmi_get_traffic_class(u8 user_priority);
2658
2659 u8 ath6kl_wmi_determine_user_priority(u8 *pkt, u32 layer2_pri);
2660 /* AP mode */
2661 int ath6kl_wmi_ap_hidden_ssid(struct wmi *wmi, u8 if_idx, bool enable);
2662 int ath6kl_wmi_ap_profile_commit(struct wmi *wmip, u8 if_idx,
2663 struct wmi_connect_cmd *p);
2664
2665 int ath6kl_wmi_ap_set_mlme(struct wmi *wmip, u8 if_idx, u8 cmd,
2666 const u8 *mac, u16 reason);
2667
2668 int ath6kl_wmi_set_pvb_cmd(struct wmi *wmi, u8 if_idx, u16 aid, bool flag);
2669
2670 int ath6kl_wmi_set_rx_frame_format_cmd(struct wmi *wmi, u8 if_idx,
2671 u8 rx_meta_version,
2672 bool rx_dot11_hdr, bool defrag_on_host);
2673
2674 int ath6kl_wmi_set_appie_cmd(struct wmi *wmi, u8 if_idx, u8 mgmt_frm_type,
2675 const u8 *ie, u8 ie_len);
2676
2677 int ath6kl_wmi_set_ie_cmd(struct wmi *wmi, u8 if_idx, u8 ie_id, u8 ie_field,
2678 const u8 *ie_info, u8 ie_len);
2679
2680 /* P2P */
2681 int ath6kl_wmi_disable_11b_rates_cmd(struct wmi *wmi, bool disable);
2682
2683 int ath6kl_wmi_remain_on_chnl_cmd(struct wmi *wmi, u8 if_idx, u32 freq,
2684 u32 dur);
2685
2686 int ath6kl_wmi_send_mgmt_cmd(struct wmi *wmi, u8 if_idx, u32 id, u32 freq,
2687 u32 wait, const u8 *data, u16 data_len,
2688 u32 no_cck);
2689
2690 int ath6kl_wmi_send_probe_response_cmd(struct wmi *wmi, u8 if_idx, u32 freq,
2691 const u8 *dst, const u8 *data,
2692 u16 data_len);
2693
2694 int ath6kl_wmi_probe_report_req_cmd(struct wmi *wmi, u8 if_idx, bool enable);
2695
2696 int ath6kl_wmi_info_req_cmd(struct wmi *wmi, u8 if_idx, u32 info_req_flags);
2697
2698 int ath6kl_wmi_cancel_remain_on_chnl_cmd(struct wmi *wmi, u8 if_idx);
2699
2700 int ath6kl_wmi_set_appie_cmd(struct wmi *wmi, u8 if_idx, u8 mgmt_frm_type,
2701 const u8 *ie, u8 ie_len);
2702
2703 int ath6kl_wmi_set_inact_period(struct wmi *wmi, u8 if_idx, int inact_timeout);
2704
2705 void ath6kl_wmi_sscan_timer(unsigned long ptr);
2706
2707 struct ath6kl_vif *ath6kl_get_vif_by_index(struct ath6kl *ar, u8 if_idx);
2708 void *ath6kl_wmi_init(struct ath6kl *devt);
2709 void ath6kl_wmi_shutdown(struct wmi *wmi);
2710 void ath6kl_wmi_reset(struct wmi *wmi);
2711
2712 #endif /* WMI_H */
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