forked from Minki/linux
5a0791d0f5
Device RTL8821AE is the first if the rtlwifi devices to implement 802.11ac capability. As a result, VHT rate descriptors are needed. In addition, the driver is converted to use the descriptors in rtlwifi. Signed-off-by: Larry Finger <Larry.Finger@lwfinger.net> Signed-off-by: Kalle Valo <kvalo@codeaurora.org>
397 lines
12 KiB
C
397 lines
12 KiB
C
/******************************************************************************
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*
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* Copyright(c) 2009-2010 Realtek Corporation.
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of version 2 of the GNU General Public License as
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* published by the Free Software Foundation.
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*
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* This program is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* The full GNU General Public License is included in this distribution in the
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* file called LICENSE.
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*
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* Contact Information:
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* wlanfae <wlanfae@realtek.com>
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* Realtek Corporation, No. 2, Innovation Road II, Hsinchu Science Park,
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* Hsinchu 300, Taiwan.
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*
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* Larry Finger <Larry.Finger@lwfinger.net>
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*
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*****************************************************************************/
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#ifndef __RTL8821AE_DEF_H__
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#define __RTL8821AE_DEF_H__
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/*--------------------------Define -------------------------------------------*/
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#define USE_SPECIFIC_FW_TO_SUPPORT_WOWLAN 1
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/* BIT 7 HT Rate*/
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/*TxHT = 0*/
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#define MGN_1M 0x02
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#define MGN_2M 0x04
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#define MGN_5_5M 0x0b
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#define MGN_11M 0x16
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#define MGN_6M 0x0c
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#define MGN_9M 0x12
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#define MGN_12M 0x18
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#define MGN_18M 0x24
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#define MGN_24M 0x30
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#define MGN_36M 0x48
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#define MGN_48M 0x60
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#define MGN_54M 0x6c
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/* TxHT = 1 */
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#define MGN_MCS0 0x80
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#define MGN_MCS1 0x81
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#define MGN_MCS2 0x82
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#define MGN_MCS3 0x83
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#define MGN_MCS4 0x84
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#define MGN_MCS5 0x85
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#define MGN_MCS6 0x86
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#define MGN_MCS7 0x87
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#define MGN_MCS8 0x88
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#define MGN_MCS9 0x89
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#define MGN_MCS10 0x8a
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#define MGN_MCS11 0x8b
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#define MGN_MCS12 0x8c
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#define MGN_MCS13 0x8d
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#define MGN_MCS14 0x8e
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#define MGN_MCS15 0x8f
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/* VHT rate */
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#define MGN_VHT1SS_MCS0 0x90
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#define MGN_VHT1SS_MCS1 0x91
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#define MGN_VHT1SS_MCS2 0x92
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#define MGN_VHT1SS_MCS3 0x93
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#define MGN_VHT1SS_MCS4 0x94
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#define MGN_VHT1SS_MCS5 0x95
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#define MGN_VHT1SS_MCS6 0x96
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#define MGN_VHT1SS_MCS7 0x97
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#define MGN_VHT1SS_MCS8 0x98
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#define MGN_VHT1SS_MCS9 0x99
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#define MGN_VHT2SS_MCS0 0x9a
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#define MGN_VHT2SS_MCS1 0x9b
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#define MGN_VHT2SS_MCS2 0x9c
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#define MGN_VHT2SS_MCS3 0x9d
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#define MGN_VHT2SS_MCS4 0x9e
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#define MGN_VHT2SS_MCS5 0x9f
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#define MGN_VHT2SS_MCS6 0xa0
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#define MGN_VHT2SS_MCS7 0xa1
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#define MGN_VHT2SS_MCS8 0xa2
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#define MGN_VHT2SS_MCS9 0xa3
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#define MGN_VHT3SS_MCS0 0xa4
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#define MGN_VHT3SS_MCS1 0xa5
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#define MGN_VHT3SS_MCS2 0xa6
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#define MGN_VHT3SS_MCS3 0xa7
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#define MGN_VHT3SS_MCS4 0xa8
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#define MGN_VHT3SS_MCS5 0xa9
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#define MGN_VHT3SS_MCS6 0xaa
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#define MGN_VHT3SS_MCS7 0xab
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#define MGN_VHT3SS_MCS8 0xac
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#define MGN_VHT3SS_MCS9 0xad
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#define MGN_MCS0_SG 0xc0
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#define MGN_MCS1_SG 0xc1
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#define MGN_MCS2_SG 0xc2
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#define MGN_MCS3_SG 0xc3
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#define MGN_MCS4_SG 0xc4
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#define MGN_MCS5_SG 0xc5
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#define MGN_MCS6_SG 0xc6
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#define MGN_MCS7_SG 0xc7
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#define MGN_MCS8_SG 0xc8
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#define MGN_MCS9_SG 0xc9
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#define MGN_MCS10_SG 0xca
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#define MGN_MCS11_SG 0xcb
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#define MGN_MCS12_SG 0xcc
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#define MGN_MCS13_SG 0xcd
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#define MGN_MCS14_SG 0xce
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#define MGN_MCS15_SG 0xcf
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#define MGN_UNKNOWN 0xff
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/* 30 ms */
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#define WIFI_NAV_UPPER_US 30000
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#define HAL_92C_NAV_UPPER_UNIT 128
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#define HAL_RETRY_LIMIT_INFRA 48
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#define HAL_RETRY_LIMIT_AP_ADHOC 7
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#define RESET_DELAY_8185 20
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#define RT_IBSS_INT_MASKS (IMR_BCNINT | IMR_TBDOK | IMR_TBDER)
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#define RT_AC_INT_MASKS (IMR_VIDOK | IMR_VODOK | IMR_BEDOK|IMR_BKDOK)
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#define NUM_OF_FIRMWARE_QUEUE 10
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#define NUM_OF_PAGES_IN_FW 0x100
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#define NUM_OF_PAGE_IN_FW_QUEUE_BK 0x07
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#define NUM_OF_PAGE_IN_FW_QUEUE_BE 0x07
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#define NUM_OF_PAGE_IN_FW_QUEUE_VI 0x07
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#define NUM_OF_PAGE_IN_FW_QUEUE_VO 0x07
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#define NUM_OF_PAGE_IN_FW_QUEUE_HCCA 0x0
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#define NUM_OF_PAGE_IN_FW_QUEUE_CMD 0x0
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#define NUM_OF_PAGE_IN_FW_QUEUE_MGNT 0x02
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#define NUM_OF_PAGE_IN_FW_QUEUE_HIGH 0x02
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#define NUM_OF_PAGE_IN_FW_QUEUE_BCN 0x2
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#define NUM_OF_PAGE_IN_FW_QUEUE_PUB 0xA1
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#define NUM_OF_PAGE_IN_FW_QUEUE_BK_DTM 0x026
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#define NUM_OF_PAGE_IN_FW_QUEUE_BE_DTM 0x048
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#define NUM_OF_PAGE_IN_FW_QUEUE_VI_DTM 0x048
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#define NUM_OF_PAGE_IN_FW_QUEUE_VO_DTM 0x026
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#define NUM_OF_PAGE_IN_FW_QUEUE_PUB_DTM 0x00
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#define MAX_RX_DMA_BUFFER_SIZE 0x3E80
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#define MAX_LINES_HWCONFIG_TXT 1000
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#define MAX_BYTES_LINE_HWCONFIG_TXT 256
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#define SW_THREE_WIRE 0
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#define HW_THREE_WIRE 2
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#define BT_DEMO_BOARD 0
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#define BT_QA_BOARD 1
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#define BT_FPGA 2
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#define HAL_PRIME_CHNL_OFFSET_DONT_CARE 0
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#define HAL_PRIME_CHNL_OFFSET_LOWER 1
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#define HAL_PRIME_CHNL_OFFSET_UPPER 2
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#define MAX_H2C_QUEUE_NUM 10
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#define RX_MPDU_QUEUE 0
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#define RX_CMD_QUEUE 1
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#define RX_MAX_QUEUE 2
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#define AC2QUEUEID(_AC) (_AC)
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#define MAX_RX_DMA_BUFFER_SIZE_8812 0x3E80
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#define C2H_RX_CMD_HDR_LEN 8
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#define GET_C2H_CMD_CMD_LEN(__prxhdr) \
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LE_BITS_TO_4BYTE((__prxhdr), 0, 16)
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#define GET_C2H_CMD_ELEMENT_ID(__prxhdr) \
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LE_BITS_TO_4BYTE((__prxhdr), 16, 8)
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#define GET_C2H_CMD_CMD_SEQ(__prxhdr) \
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LE_BITS_TO_4BYTE((__prxhdr), 24, 7)
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#define GET_C2H_CMD_CONTINUE(__prxhdr) \
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LE_BITS_TO_4BYTE((__prxhdr), 31, 1)
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#define GET_C2H_CMD_CONTENT(__prxhdr) \
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((u8 *)(__prxhdr) + C2H_RX_CMD_HDR_LEN)
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#define GET_C2H_CMD_FEEDBACK_ELEMENT_ID(__pcmdfbhdr) \
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LE_BITS_TO_4BYTE((__pcmdfbhdr), 0, 8)
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#define GET_C2H_CMD_FEEDBACK_CCX_LEN(__pcmdfbhdr) \
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LE_BITS_TO_4BYTE((__pcmdfbhdr), 8, 8)
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#define GET_C2H_CMD_FEEDBACK_CCX_CMD_CNT(__pcmdfbhdr) \
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LE_BITS_TO_4BYTE((__pcmdfbhdr), 16, 16)
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#define GET_C2H_CMD_FEEDBACK_CCX_MAC_ID(__pcmdfbhdr) \
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LE_BITS_TO_4BYTE(((__pcmdfbhdr) + 4), 0, 5)
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#define GET_C2H_CMD_FEEDBACK_CCX_VALID(__pcmdfbhdr) \
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LE_BITS_TO_4BYTE(((__pcmdfbhdr) + 4), 7, 1)
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#define GET_C2H_CMD_FEEDBACK_CCX_RETRY_CNT(__pcmdfbhdr) \
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LE_BITS_TO_4BYTE(((__pcmdfbhdr) + 4), 8, 5)
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#define GET_C2H_CMD_FEEDBACK_CCX_TOK(__pcmdfbhdr) \
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LE_BITS_TO_4BYTE(((__pcmdfbhdr) + 4), 15, 1)
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#define GET_C2H_CMD_FEEDBACK_CCX_QSEL(__pcmdfbhdr) \
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LE_BITS_TO_4BYTE(((__pcmdfbhdr) + 4), 16, 4)
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#define GET_C2H_CMD_FEEDBACK_CCX_SEQ(__pcmdfbhdr) \
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LE_BITS_TO_4BYTE(((__pcmdfbhdr) + 4), 20, 12)
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#define CHIP_BONDING_IDENTIFIER(_value) (((_value)>>22)&0x3)
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#define CHIP_8812 BIT(2)
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#define CHIP_8821 (BIT(0)|BIT(2))
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#define CHIP_8821A (BIT(0)|BIT(2))
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#define NORMAL_CHIP BIT(3)
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#define RF_TYPE_1T1R (~(BIT(4)|BIT(5)|BIT(6)))
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#define RF_TYPE_1T2R BIT(4)
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#define RF_TYPE_2T2R BIT(5)
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#define CHIP_VENDOR_UMC BIT(7)
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#define B_CUT_VERSION BIT(12)
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#define C_CUT_VERSION BIT(13)
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#define D_CUT_VERSION ((BIT(12)|BIT(13)))
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#define E_CUT_VERSION BIT(14)
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#define RF_RL_ID (BIT(31)|BIT(30)|BIT(29)|BIT(28))
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enum version_8821ae {
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VERSION_TEST_CHIP_1T1R_8812 = 0x0004,
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VERSION_TEST_CHIP_2T2R_8812 = 0x0024,
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VERSION_NORMAL_TSMC_CHIP_1T1R_8812 = 0x100c,
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VERSION_NORMAL_TSMC_CHIP_2T2R_8812 = 0x102c,
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VERSION_NORMAL_TSMC_CHIP_1T1R_8812_C_CUT = 0x200c,
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VERSION_NORMAL_TSMC_CHIP_2T2R_8812_C_CUT = 0x202c,
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VERSION_TEST_CHIP_8821 = 0x0005,
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VERSION_NORMAL_TSMC_CHIP_8821 = 0x000d,
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VERSION_NORMAL_TSMC_CHIP_8821_B_CUT = 0x100d,
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VERSION_UNKNOWN = 0xFF,
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};
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enum vht_data_sc {
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VHT_DATA_SC_DONOT_CARE = 0,
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VHT_DATA_SC_20_UPPER_OF_80MHZ = 1,
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VHT_DATA_SC_20_LOWER_OF_80MHZ = 2,
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VHT_DATA_SC_20_UPPERST_OF_80MHZ = 3,
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VHT_DATA_SC_20_LOWEST_OF_80MHZ = 4,
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VHT_DATA_SC_20_RECV1 = 5,
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VHT_DATA_SC_20_RECV2 = 6,
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VHT_DATA_SC_20_RECV3 = 7,
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VHT_DATA_SC_20_RECV4 = 8,
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VHT_DATA_SC_40_UPPER_OF_80MHZ = 9,
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VHT_DATA_SC_40_LOWER_OF_80MHZ = 10,
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};
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/* MASK */
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#define IC_TYPE_MASK (BIT(0)|BIT(1)|BIT(2))
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#define CHIP_TYPE_MASK BIT(3)
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#define RF_TYPE_MASK (BIT(4)|BIT(5)|BIT(6))
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#define MANUFACTUER_MASK BIT(7)
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#define ROM_VERSION_MASK (BIT(11)|BIT(10)|BIT(9)|BIT(8))
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#define CUT_VERSION_MASK (BIT(15)|BIT(14)|BIT(13)|BIT(12))
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/* Get element */
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#define GET_CVID_IC_TYPE(version) ((version) & IC_TYPE_MASK)
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#define GET_CVID_CHIP_TYPE(version) ((version) & CHIP_TYPE_MASK)
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#define GET_CVID_RF_TYPE(version) ((version) & RF_TYPE_MASK)
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#define GET_CVID_MANUFACTUER(version) ((version) & MANUFACTUER_MASK)
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#define GET_CVID_ROM_VERSION(version) ((version) & ROM_VERSION_MASK)
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#define GET_CVID_CUT_VERSION(version) ((version) & CUT_VERSION_MASK)
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#define IS_1T1R(version) ((GET_CVID_RF_TYPE(version)) ? false : true)
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#define IS_1T2R(version) ((GET_CVID_RF_TYPE(version) == RF_TYPE_1T2R)\
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? true : false)
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#define IS_2T2R(version) ((GET_CVID_RF_TYPE(version) == RF_TYPE_2T2R)\
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? true : false)
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#define IS_8812_SERIES(version) ((GET_CVID_IC_TYPE(version) == CHIP_8812) ? \
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true : false)
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#define IS_8821_SERIES(version) ((GET_CVID_IC_TYPE(version) == CHIP_8821) ? \
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true : false)
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#define IS_VENDOR_8812A_TEST_CHIP(version) ((IS_8812_SERIES(version)) ? \
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((IS_NORMAL_CHIP(version)) ? \
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false : true) : false)
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#define IS_VENDOR_8812A_MP_CHIP(version) ((IS_8812_SERIES(version)) ? \
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((IS_NORMAL_CHIP(version)) ? \
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true : false) : false)
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#define IS_VENDOR_8812A_C_CUT(version) ((IS_8812_SERIES(version)) ? \
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((GET_CVID_CUT_VERSION(version) == \
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C_CUT_VERSION) ? \
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true : false) : false)
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#define IS_VENDOR_8821A_TEST_CHIP(version) ((IS_8821_SERIES(version)) ? \
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((IS_NORMAL_CHIP(version)) ? \
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false : true) : false)
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#define IS_VENDOR_8821A_MP_CHIP(version) ((IS_8821_SERIES(version)) ? \
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((IS_NORMAL_CHIP(version)) ? \
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true : false) : false)
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#define IS_VENDOR_8821A_B_CUT(version) ((IS_8821_SERIES(version)) ? \
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((GET_CVID_CUT_VERSION(version) == \
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B_CUT_VERSION) ? \
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true : false) : false)
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enum board_type {
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ODM_BOARD_DEFAULT = 0, /* The DEFAULT case. */
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ODM_BOARD_MINICARD = BIT(0), /* 0 = non-mini card, 1 = mini card. */
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ODM_BOARD_SLIM = BIT(1), /* 0 = non-slim card, 1 = slim card */
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ODM_BOARD_BT = BIT(2), /* 0 = without BT card, 1 = with BT */
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ODM_BOARD_EXT_PA = BIT(3), /* 1 = existing 2G ext-PA */
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ODM_BOARD_EXT_LNA = BIT(4), /* 1 = existing 2G ext-LNA */
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ODM_BOARD_EXT_TRSW = BIT(5), /* 1 = existing ext-TRSW */
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ODM_BOARD_EXT_PA_5G = BIT(6), /* 1 = existing 5G ext-PA */
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ODM_BOARD_EXT_LNA_5G = BIT(7), /* 1 = existing 5G ext-LNA */
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};
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enum rf_optype {
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RF_OP_BY_SW_3WIRE = 0,
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RF_OP_BY_FW,
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RF_OP_MAX
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};
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enum rf_power_state {
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RF_ON,
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RF_OFF,
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RF_SLEEP,
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RF_SHUT_DOWN,
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};
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enum power_save_mode {
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POWER_SAVE_MODE_ACTIVE,
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POWER_SAVE_MODE_SAVE,
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};
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enum power_polocy_config {
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POWERCFG_MAX_POWER_SAVINGS,
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POWERCFG_GLOBAL_POWER_SAVINGS,
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POWERCFG_LOCAL_POWER_SAVINGS,
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POWERCFG_LENOVO,
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};
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enum interface_select_pci {
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INTF_SEL1_MINICARD = 0,
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INTF_SEL0_PCIE = 1,
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INTF_SEL2_RSV = 2,
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INTF_SEL3_RSV = 3,
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};
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enum hal_fw_c2h_cmd_id {
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HAL_FW_C2H_CMD_READ_MACREG = 0,
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HAL_FW_C2H_CMD_READ_BBREG = 1,
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HAL_FW_C2H_CMD_READ_RFREG = 2,
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HAL_FW_C2H_CMD_READ_EEPROM = 3,
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HAL_FW_C2H_CMD_READ_EFUSE = 4,
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HAL_FW_C2H_CMD_READ_CAM = 5,
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HAL_FW_C2H_CMD_GET_BASICRATE = 6,
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HAL_FW_C2H_CMD_GET_DATARATE = 7,
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HAL_FW_C2H_CMD_SURVEY = 8,
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HAL_FW_C2H_CMD_SURVEYDONE = 9,
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HAL_FW_C2H_CMD_JOINBSS = 10,
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HAL_FW_C2H_CMD_ADDSTA = 11,
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HAL_FW_C2H_CMD_DELSTA = 12,
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HAL_FW_C2H_CMD_ATIMDONE = 13,
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HAL_FW_C2H_CMD_TX_REPORT = 14,
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HAL_FW_C2H_CMD_CCX_REPORT = 15,
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HAL_FW_C2H_CMD_DTM_REPORT = 16,
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HAL_FW_C2H_CMD_TX_RATE_STATISTICS = 17,
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HAL_FW_C2H_CMD_C2HLBK = 18,
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HAL_FW_C2H_CMD_C2HDBG = 19,
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HAL_FW_C2H_CMD_C2HFEEDBACK = 20,
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HAL_FW_C2H_CMD_MAX
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};
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enum rtl_desc_qsel {
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QSLT_BK = 0x2,
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QSLT_BE = 0x0,
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QSLT_VI = 0x5,
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QSLT_VO = 0x7,
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QSLT_BEACON = 0x10,
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QSLT_HIGH = 0x11,
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QSLT_MGNT = 0x12,
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QSLT_CMD = 0x13,
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};
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enum rx_packet_type {
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NORMAL_RX,
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TX_REPORT1,
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TX_REPORT2,
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HIS_REPORT,
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C2H_PACKET,
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};
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struct phy_sts_cck_8821ae_t {
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u8 adc_pwdb_X[4];
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u8 sq_rpt;
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u8 cck_agc_rpt;
|
|
};
|
|
|
|
struct h2c_cmd_8821ae {
|
|
u8 element_id;
|
|
u32 cmd_len;
|
|
u8 *p_cmdbuffer;
|
|
};
|
|
|
|
#endif
|