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1 #ifndef __WINBOND_WBHAL_S_H
2 #define __WINBOND_WBHAL_S_H
3
4 #include <linux/types.h>
5
6 #include "linux/common.h"
7
8 //[20040722 WK]
9 #define HAL_LED_SET_MASK                0x001c  //20060901 Extend
10 #define HAL_LED_SET_SHIFT               2
11
12 //supported RF type
13 #define RF_MAXIM_2825           0
14 #define RF_MAXIM_2827           1
15 #define RF_MAXIM_2828           2
16 #define RF_MAXIM_2829           3
17 #define RF_MAXIM_V1                     15
18 #define RF_AIROHA_2230          16
19 #define RF_AIROHA_7230          17
20 #define RF_AIROHA_2230S         18      // 20060420 Add this
21 // #define RF_RFMD_2959         32      // 20060626 Remove all about RFMD
22 #define RF_WB_242                       33
23 #define RF_WB_242_1                     34      // 20060619.5 Add
24 #define RF_DECIDE_BY_INF        255
25
26 //----------------------------------------------------------------
27 // The follow define connect to upper layer
28 //      User must modify for connection between HAL and upper layer
29 //----------------------------------------------------------------
30
31
32
33
34 /////////////////////////////////////////////////////////////////////////////////////////////////////
35 //================================================================================================
36 // Common define
37 //================================================================================================
38 #define HAL_USB_MODE_BURST( _H )        (_H->SoftwareSet & 0x20 ) // Bit 5 20060901 Modify
39
40 // Scan interval
41 #define SCAN_MAX_CHNL_TIME                              (50)
42
43 // For TxL2 Frame typr recognise
44 #define FRAME_TYPE_802_3_DATA                   0
45 #define FRAME_TYPE_802_11_MANAGEMENT            1
46 #define FRAME_TYPE_802_11_MANAGEMENT_CHALLENGE  2
47 #define FRAME_TYPE_802_11_CONTROL               3
48 #define FRAME_TYPE_802_11_DATA                  4
49 #define FRAME_TYPE_PROMISCUOUS                  5
50
51 // The follow definition is used for convert the frame--------------------
52 #define DOT_11_SEQUENCE_OFFSET          22 //Sequence control offset
53 #define DOT_3_TYPE_OFFSET                       12
54 #define DOT_11_MAC_HEADER_SIZE          24
55 #define DOT_11_SNAP_SIZE                        6
56 #define DOT_11_TYPE_OFFSET                      30 //The start offset of 802.11 Frame. Type encapsulatuin.
57 #define DEFAULT_SIFSTIME                        10
58 #define DEFAULT_FRAGMENT_THRESHOLD              2346 // No fragment
59 #define DEFAULT_MSDU_LIFE_TIME                  0xffff
60
61 #define LONG_PREAMBLE_PLUS_PLCPHEADER_TIME                                              (144+48)
62 #define SHORT_PREAMBLE_PLUS_PLCPHEADER_TIME                                     (72+24)
63 #define PREAMBLE_PLUS_SIGNAL_PLUS_SIGNALEXTENSION                               (16+4+6)
64 #define Tsym 4
65
66 //  Frame Type of Bits (2, 3)---------------------------------------------
67 #define MAC_TYPE_MANAGEMENT                     0x00
68 #define MAC_TYPE_CONTROL                        0x04
69 #define MAC_TYPE_DATA                           0x08
70 #define MASK_FRAGMENT_NUMBER            0x000F
71 #define SEQUENCE_NUMBER_SHIFT           4
72
73 #define  HAL_WOL_TYPE_WAKEUP_FRAME              0x01
74 #define  HAL_WOL_TYPE_MAGIC_PACKET              0x02
75
76 // 20040106 ADDED
77 #define HAL_KEYTYPE_WEP40                       0
78 #define HAL_KEYTYPE_WEP104                      1
79 #define HAL_KEYTYPE_TKIP                        2 // 128 bit key
80 #define HAL_KEYTYPE_AES_CCMP                    3 // 128 bit key
81
82 // For VM state
83 enum {
84         VM_STOP = 0,
85         VM_RUNNING,
86         VM_COMPLETED
87 };
88
89 // Be used for 802.11 mac header
90 typedef struct _MAC_FRAME_CONTROL {
91         u8      mac_frame_info; // this is a combination of the protovl version, type and subtype
92         u8      to_ds:1;
93         u8      from_ds:1;
94         u8      more_frag:1;
95         u8      retry:1;
96         u8      pwr_mgt:1;
97         u8      more_data:1;
98         u8      WEP:1;
99         u8      order:1;
100 } MAC_FRAME_CONTROL, *PMAC_FRAME_CONTROL;
101
102 //-----------------------------------------------------
103 // Normal Key table format
104 //-----------------------------------------------------
105 // The order of KEY index is MAPPING_KEY_START_INDEX > GROUP_KEY_START_INDEX
106 #define MAX_KEY_TABLE                           24      // 24 entry for storing key data
107 #define GROUP_KEY_START_INDEX           4
108 #define MAPPING_KEY_START_INDEX         8
109 typedef struct _KEY_TABLE
110 {
111         u32     DW0_Valid:1;
112         u32     DW0_NullKey:1;
113         u32     DW0_Security_Mode:2;//0:WEP 40 bit 1:WEP 104 bit 2:TKIP 128 bit 3:CCMP 128 bit
114         u32     DW0_WEPON:1;
115         u32     DW0_RESERVED:11;
116         u32     DW0_Address1:16;
117
118         u32     DW1_Address2;
119
120         u32     DW2_RxSequenceCount1;
121
122         u32     DW3_RxSequenceCount2:16;
123         u32     DW3_RESERVED:16;
124
125         u32     DW4_TxSequenceCount1;
126
127         u32     DW5_TxSequenceCount2:16;
128         u32     DW5_RESERVED:16;
129
130 } KEY_TABLE, *PKEY_TABLE;
131
132 //--------------------------------------------------------
133 //                       Descriptor
134 //--------------------------------------------------------
135 #define MAX_DESCRIPTOR_BUFFER_INDEX     8       // Have to multiple of 2
136 //#define FLAG_ERROR_TX_MASK                    cpu_to_le32(0x000000bf) //20061009 marked by anson's endian
137 #define FLAG_ERROR_TX_MASK                      0x000000bf  //20061009 anson's endian
138 //#define FLAG_ERROR_RX_MASK                    0x00000c3f
139 //#define FLAG_ERROR_RX_MASK                    cpu_to_le32(0x0000083f) //20061009 marked by anson's endian
140                                                                         //Don't care replay error,
141                                                                                                 //it is handled by S/W
142 #define FLAG_ERROR_RX_MASK                      0x0000083f      //20060926 anson's endian
143
144 #define FLAG_BAND_RX_MASK                       0x10000000      //Bit 28
145
146 typedef struct _R00_DESCRIPTOR
147 {
148         union
149         {
150                 u32     value;
151                 #ifdef _BIG_ENDIAN_  //20060926 anson's endian
152                 struct
153                 {
154                         u32     R00_packet_or_buffer_status:1;
155                         u32     R00_packet_in_fifo:1;
156                         u32     R00_RESERVED:2;
157                         u32     R00_receive_byte_count:12;
158                         u32     R00_receive_time_index:16;
159                 };
160                 #else
161                 struct
162                 {
163                         u32     R00_receive_time_index:16;
164                         u32     R00_receive_byte_count:12;
165                         u32     R00_RESERVED:2;
166                         u32     R00_packet_in_fifo:1;
167                         u32     R00_packet_or_buffer_status:1;
168                 };
169                 #endif
170         };
171 } R00_DESCRIPTOR, *PR00_DESCRIPTOR;
172
173 typedef struct _T00_DESCRIPTOR
174 {
175         union
176         {
177                 u32     value;
178                 #ifdef _BIG_ENDIAN_  //20061009 anson's endian
179                 struct
180                 {
181                         u32     T00_first_mpdu:1; // for hardware use
182                         u32     T00_last_mpdu:1; // for hardware use
183                         u32     T00_IsLastMpdu:1;// 0: not   1:Yes for software used
184                         u32     T00_IgnoreResult:1;// The same mechanism with T00 setting. 050111 Modify for TS
185                         u32     T00_RESERVED_ID:2;//3 bit ID reserved
186                         u32     T00_tx_packet_id:4;//930519.4.e 930810.3.c
187                         u32     T00_RESERVED:4;
188                         u32     T00_header_length:6;
189                         u32     T00_frame_length:12;
190                 };
191                 #else
192                 struct
193                 {
194                         u32     T00_frame_length:12;
195                         u32     T00_header_length:6;
196                         u32     T00_RESERVED:4;
197                         u32     T00_tx_packet_id:4;//930519.4.e 930810.3.c
198                         u32     T00_RESERVED_ID:2;//3 bit ID reserved
199                         u32     T00_IgnoreResult:1;// The same mechanism with T00 setting. 050111 Modify for TS
200                         u32     T00_IsLastMpdu:1;// 0: not   1:Yes for software used
201                         u32     T00_last_mpdu:1; // for hardware use
202                         u32     T00_first_mpdu:1; // for hardware use
203                 };
204                 #endif
205         };
206 } T00_DESCRIPTOR, *PT00_DESCRIPTOR;
207
208 typedef struct _R01_DESCRIPTOR
209 {
210         union
211         {
212                 u32     value;
213                 #ifdef _BIG_ENDIAN_ //20060926 add by anson's endian
214                 struct
215                 {
216                         u32     R01_RESERVED:3;
217                         u32     R01_mod_type:1;
218                         u32     R01_pre_type:1;
219                         u32     R01_data_rate:3;
220                         u32     R01_AGC_state:8;
221                         u32     R01_LNA_state:2;
222                         u32     R01_decryption_method:2;
223                         u32     R01_mic_error:1;
224                         u32     R01_replay:1;
225                         u32     R01_broadcast_frame:1;
226                         u32     R01_multicast_frame:1;
227                         u32     R01_directed_frame:1;
228                         u32     R01_receive_frame_antenna_selection:1;
229                         u32     R01_frame_receive_during_atim_window:1;
230                         u32     R01_protocol_version_error:1;
231                         u32     R01_authentication_frame_icv_error:1;
232                         u32     R01_null_key_to_authentication_frame:1;
233                         u32     R01_icv_error:1;
234                         u32     R01_crc_error:1;
235                 };
236                 #else
237                 struct
238                 {
239                         u32     R01_crc_error:1;
240                         u32     R01_icv_error:1;
241                         u32     R01_null_key_to_authentication_frame:1;
242                         u32     R01_authentication_frame_icv_error:1;
243                         u32     R01_protocol_version_error:1;
244                         u32     R01_frame_receive_during_atim_window:1;
245                         u32     R01_receive_frame_antenna_selection:1;
246                         u32     R01_directed_frame:1;
247                         u32     R01_multicast_frame:1;
248                         u32     R01_broadcast_frame:1;
249                         u32     R01_replay:1;
250                         u32     R01_mic_error:1;
251                         u32     R01_decryption_method:2;
252                         u32     R01_LNA_state:2;
253                         u32     R01_AGC_state:8;
254                         u32     R01_data_rate:3;
255                         u32     R01_pre_type:1;
256                         u32     R01_mod_type:1;
257                         u32     R01_RESERVED:3;
258                 };
259                 #endif
260         };
261 } R01_DESCRIPTOR, *PR01_DESCRIPTOR;
262
263 typedef struct _T01_DESCRIPTOR
264 {
265         union
266         {
267                 u32     value;
268                 #ifdef _BIG_ENDIAN_ //20061009 anson's endian
269                 struct
270                 {
271                         u32     T01_rts_cts_duration:16;
272                         u32     T01_fall_back_rate:3;
273                         u32     T01_add_rts:1;
274                         u32     T01_add_cts:1;
275                         u32     T01_modulation_type:1;
276                         u32     T01_plcp_header_length:1;
277                         u32     T01_transmit_rate:3;
278                         u32     T01_wep_id:2;
279                         u32     T01_add_challenge_text:1;
280                         u32     T01_inhibit_crc:1;
281                         u32     T01_loop_back_wep_mode:1;
282                         u32     T01_retry_abort_ebable:1;
283                 };
284                 #else
285                 struct
286                 {
287                         u32     T01_retry_abort_ebable:1;
288                         u32     T01_loop_back_wep_mode:1;
289                         u32     T01_inhibit_crc:1;
290                         u32     T01_add_challenge_text:1;
291                         u32     T01_wep_id:2;
292                         u32     T01_transmit_rate:3;
293                         u32     T01_plcp_header_length:1;
294                         u32     T01_modulation_type:1;
295                         u32     T01_add_cts:1;
296                         u32     T01_add_rts:1;
297                         u32     T01_fall_back_rate:3;
298                         u32     T01_rts_cts_duration:16;
299                 };
300                 #endif
301         };
302 } T01_DESCRIPTOR, *PT01_DESCRIPTOR;
303
304 typedef struct _T02_DESCRIPTOR
305 {
306         union
307         {
308                 u32     value;
309                 #ifdef _BIG_ENDIAN_  //20061009 add by anson's endian
310                 struct
311                 {
312                         u32     T02_IsLastMpdu:1;// The same mechanism with T00 setting
313                         u32     T02_IgnoreResult:1;// The same mechanism with T00 setting. 050111 Modify for TS
314                         u32     T02_RESERVED_ID:2;// The same mechanism with T00 setting
315                         u32     T02_Tx_PktID:4;
316                         u32     T02_MPDU_Cnt:4;
317                         u32     T02_RTS_Cnt:4;
318                         u32     T02_RESERVED:7;
319                         u32     T02_transmit_complete:1;
320                         u32     T02_transmit_abort_due_to_TBTT:1;
321                         u32     T02_effective_transmission_rate:1;
322                         u32     T02_transmit_without_encryption_due_to_wep_on_false:1;
323                         u32     T02_discard_due_to_null_wep_key:1;
324                         u32     T02_RESERVED_1:1;
325                         u32     T02_out_of_MaxTxMSDULiftTime:1;
326                         u32     T02_transmit_abort:1;
327                         u32     T02_transmit_fail:1;
328                 };
329                 #else
330                 struct
331                 {
332                         u32     T02_transmit_fail:1;
333                         u32     T02_transmit_abort:1;
334                         u32     T02_out_of_MaxTxMSDULiftTime:1;
335                         u32     T02_RESERVED_1:1;
336                         u32     T02_discard_due_to_null_wep_key:1;
337                         u32     T02_transmit_without_encryption_due_to_wep_on_false:1;
338                         u32     T02_effective_transmission_rate:1;
339                         u32     T02_transmit_abort_due_to_TBTT:1;
340                         u32     T02_transmit_complete:1;
341                         u32     T02_RESERVED:7;
342                         u32     T02_RTS_Cnt:4;
343                         u32     T02_MPDU_Cnt:4;
344                         u32     T02_Tx_PktID:4;
345                         u32     T02_RESERVED_ID:2;// The same mechanism with T00 setting
346                         u32     T02_IgnoreResult:1;// The same mechanism with T00 setting. 050111 Modify for TS
347                         u32     T02_IsLastMpdu:1;// The same mechanism with T00 setting
348                 };
349                 #endif
350         };
351 } T02_DESCRIPTOR, *PT02_DESCRIPTOR;
352
353 typedef struct _DESCRIPTOR {            // Skip length = 8 DWORD
354         // ID for descriptor ---, The field doesn't be cleard in the operation of Descriptor definition
355         u8      Descriptor_ID;
356         //----------------------The above region doesn't be cleared by DESCRIPTOR_RESET------
357         u8      RESERVED[3];
358
359         u16     FragmentThreshold;
360         u8      InternalUsed;//Only can be used by operation of descriptor definition
361         u8      Type;// 0: 802.3        1:802.11 data frame     2:802.11 management frame
362
363         u8      PreambleMode;// 0: short 1:long
364         u8      TxRate;
365         u8      FragmentCount;
366         u8      EapFix; // For speed up key install
367
368         // For R00 and T00 ----------------------------------------------
369         union
370         {
371                 R00_DESCRIPTOR  R00;
372                 T00_DESCRIPTOR  T00;
373         };
374
375         // For R01 and T01 ----------------------------------------------
376         union
377         {
378                 R01_DESCRIPTOR  R01;
379                 T01_DESCRIPTOR  T01;
380         };
381
382         // For R02 and T02 ----------------------------------------------
383         union
384         {
385                 u32                     R02;
386                 T02_DESCRIPTOR  T02;
387         };
388
389         // For R03 and T03 ----------------------------------------------
390         // For software used
391         union
392         {
393                 u32     R03;
394                 u32     T03;
395                 struct
396                 {
397                         u8      buffer_number;
398                         u8      buffer_start_index;
399                         u16     buffer_total_size;
400                 };
401         };
402
403         // For storing the buffer
404         u16     buffer_size[ MAX_DESCRIPTOR_BUFFER_INDEX ];
405         void*   buffer_address[ MAX_DESCRIPTOR_BUFFER_INDEX ];//931130.4.q
406
407 } DESCRIPTOR, *PDESCRIPTOR;
408
409
410 #define DEFAULT_NULL_PACKET_COUNT               180000  //20060828.1 Add. 180 seconds
411
412 #define MAX_TXVGA_EEPROM        9       //How many word(u16) of EEPROM will be used for TxVGA
413 #define MAX_RF_PARAMETER        32
414
415 typedef struct _TXVGA_FOR_50 {
416         u8      ChanNo;
417         u8      TxVgaValue;
418 } TXVGA_FOR_50;
419
420
421 //=====================================================================
422 // Device related include
423 //=====================================================================
424
425 #include "linux/wbusb_s.h"
426 #include "linux/wb35reg_s.h"
427 #include "linux/wb35tx_s.h"
428 #include "linux/wb35rx_s.h"
429
430
431 // For Hal using ==================================================================
432 typedef struct _HW_DATA_T
433 {
434         // For compatible with 33
435         u32     revision;
436         u32     BB3c_cal; // The value for Tx calibration comes from EEPROM
437         u32     BB54_cal; // The value for Rx calibration comes from EEPROM
438
439
440         // For surprise remove
441         u32     SurpriseRemove; // 0: Normal 1: Surprise remove
442         u8      InitialResource;
443         u8      IsKeyPreSet;
444         u8      CalOneTime; // 20060630.1
445
446         u8      VCO_trim;
447
448         // For Fix 1'st DMA bug
449         u32     FragCount;
450         u32     DMAFix; //V1_DMA_FIX The variable can be removed if driver want to save mem space for V2.
451
452         //=======================================================================================
453         // For USB driver, hal need more variables. Due to
454         //      1. NDIS-WDM operation
455         //      2. The SME, MLME and OLD MDS need adapter structure, but the driver under HAL doesn't
456         //              have that parameter when receiving and indicating packet.
457         //              The MDS must input the adapter pointer as the second parameter of hal_init_hardware.
458         //              The function usage is different than PCI driver.
459         //=======================================================================================
460         void* adapter;
461
462         //===============================================
463         // Definition for MAC address
464         //===============================================
465         u8              PermanentMacAddress[ETH_LENGTH_OF_ADDRESS + 2]; // The Enthernet addr that are stored in EEPROM.  + 2 to 8-byte alignment
466         u8              CurrentMacAddress[ETH_LENGTH_OF_ADDRESS + 2]; // The Enthernet addr that are in used.  + 2 to 8-byte alignment
467
468         //=====================================================================
469         // Definition for 802.11
470         //=====================================================================
471         u8      *bssid_pointer; // Used by hal_get_bssid for return value
472         u8      bssid[8];// Only 6 byte will be used. 8 byte is required for read buffer
473         u8      ssid[32];// maximum ssid length is 32 byte
474
475         u16     AID;
476         u8      ssid_length;
477         u8      Channel;
478
479         u16     ListenInterval;
480         u16     CapabilityInformation;
481
482         u16     BeaconPeriod;
483         u16     ProbeDelay;
484
485         u8      bss_type;// 0: IBSS_NET or 1:ESS_NET
486         u8      preamble;// 0: short preamble, 1: long preamble
487         u8      slot_time_select;// 9 or 20 value
488         u8      phy_type;// Phy select
489
490         u32     phy_para[MAX_RF_PARAMETER];
491         u32     phy_number;
492
493         u32     CurrentRadioSw; // 20060320.2 0:On 1:Off
494         u32     CurrentRadioHw; // 20060825 0:On 1:Off
495
496         u8      *power_save_point;  // Used by hal_get_power_save_mode for return value
497         u8      cwmin;
498         u8      desired_power_save;
499         u8      dtim;// Is running dtim
500         u8      mapping_key_replace_index;//In Key table, the next index be replaced 931130.4.r
501
502         u16     MaxReceiveLifeTime;
503         u16     FragmentThreshold;
504         u16     FragmentThreshold_tmp;
505         u16     cwmax;
506
507         u8      Key_slot[MAX_KEY_TABLE][8]; //Ownership record for key slot. For Alignment
508         u32     Key_content[MAX_KEY_TABLE][12]; // 10DW for each entry + 2 for burst command( Off and On valid bit)
509         u8      CurrentDefaultKeyIndex;
510         u32     CurrentDefaultKeyLength;
511
512         //========================================================================
513         // Variable for each module
514         //========================================================================
515         WBUSB           WbUsb; // Need WbUsb.h
516         struct wb35_reg reg; // Need Wb35Reg.h
517         WB35TX          Wb35Tx; // Need Wb35Tx.h
518         WB35RX          Wb35Rx; // Need Wb35Rx.h
519
520         struct timer_list       LEDTimer;// For LED
521
522         u32             LEDpoint;// For LED
523
524     u32         dto_tx_retry_count;         // LA20040210_DTO kevin
525     u32         dto_tx_frag_count;          // LA20040210_DTO kevin
526     u32         rx_ok_count[13];    // index=0: total rx ok
527     //u32         rx_ok_bytes[13];    // index=0, total rx ok bytes
528     u32         rx_err_count[13];   // index=0: total rx err
529
530         //for Tx debug
531         u32                     tx_TBTT_start_count;
532         u32                     tx_ETR_count;
533         u32                     tx_WepOn_false_count;
534         u32                     tx_Null_key_count;
535         u32                     tx_retry_count[8];
536
537         u8              PowerIndexFromEEPROM; // For 2412MHz
538         u8              power_index;
539         u8              IsWaitJoinComplete;     // TRUE: set join request
540         u8              band;
541
542         u16             SoftwareSet;
543         u16             Reserved_s;
544
545         u32             IsInitOK; // 0: Driver starting   1: Driver init OK
546
547         // For Phy calibration
548     s32         iq_rsdl_gain_tx_d2;
549     s32         iq_rsdl_phase_tx_d2;
550         u32             txvga_setting_for_cal; // 20060703.1 Add
551
552         u8              TxVgaSettingInEEPROM[ (((MAX_TXVGA_EEPROM*2)+3) & ~0x03) ]; // 20060621 For backup EEPROM value
553         u8              TxVgaFor24[16]; // Max is 14, 2 for alignment
554         TXVGA_FOR_50    TxVgaFor50[36]; // 35 channels in 5G. 35x2 = 70 byte. 2 for alignments
555
556         u16             Scan_Interval;
557         u16             RESERVED6;
558
559         // LED control
560         u32             LED_control;
561                 // LED_control 4 byte: Gray_Led_1[3]            Gray_Led_0[2]           Led[1]                  Led[0]
562                 // Gray_Led
563                 //              For Led gray setting
564                 // Led
565                 //              0: normal control, LED behavior will decide by EEPROM setting
566                 //              1: Turn off specific LED
567                 //              2: Always on specific LED
568                 //              3: slow blinking specific LED
569                 //              4: fast blinking specific LED
570                 //              5: WPS led control is set. Led0 is Red, Led1 id Green
571                 //                      Led[1] is parameter for WPS LED mode
572                 //                               // 1:InProgress  2: Error 3: Session overlap 4: Success 20061108 control
573
574         u32             LED_LinkOn;             //Turn LED on control
575         u32             LED_Scanning;   // Let LED in scan process control
576         u32             LED_Blinking; // Temp variable for shining
577         u32             RxByteCountLast;
578         u32             TxByteCountLast;
579
580         atomic_t        SurpriseRemoveCount;
581
582         // For global timer
583         u32             time_count;//TICK_TIME_100ms 1 = 100ms
584
585         // For error recover
586         u32             HwStop;
587
588         // 20060828.1 for avoid AP disconnect
589         u32             NullPacketCount;
590
591 } hw_data_t, *phw_data_t;
592
593 // The mapping of Rx and Tx descriptor field
594 typedef struct _HAL_RATE
595 {
596         // DSSS
597         u32     RESERVED_0;
598         u32   NumRate2MS;
599         u32   NumRate55MS;
600         u32   NumRate11MS;
601
602         u32     RESERVED_1[4];
603
604         u32   NumRate1M;
605         u32   NumRate2ML;
606         u32   NumRate55ML;
607         u32   NumRate11ML;
608
609         u32     RESERVED_2[4];
610
611         // OFDM
612         u32   NumRate6M;
613         u32   NumRate9M;
614         u32   NumRate12M;
615         u32   NumRate18M;
616         u32   NumRate24M;
617         u32   NumRate36M;
618         u32   NumRate48M;
619         u32   NumRate54M;
620 } HAL_RATE, *PHAL_RATE;
621
622 #endif