mirror of
https://github.com/lwfinger/rtl8188eu.git
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6fa9ed423c
Signed-off-by: Larry Finger <Larry.Finger@lwfinger.net>
444 lines
19 KiB
C
444 lines
19 KiB
C
/******************************************************************************
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*
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* Copyright(c) 2013 Realtek Corporation. All rights reserved.
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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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* You should have received a copy of the GNU General Public License along with
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* this program; if not, write to the Free Software Foundation, Inc.,
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110, USA
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*
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*
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******************************************************************************/
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#ifndef __RTW_BTCOEX_H__
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#define __RTW_BTCOEX_H__
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#include <drv_types.h>
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/* For H2C: H2C_BT_MP_OPER. Return status definition to the user layer */
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typedef enum _BT_CTRL_STATUS {
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BT_STATUS_SUCCESS = 0x00, /* Success */
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BT_STATUS_BT_OP_SUCCESS = 0x01, /* bt fw op execution success */
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BT_STATUS_H2C_SUCCESS = 0x02, /* H2c success */
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BT_STATUS_H2C_FAIL = 0x03, /* H2c fail */
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BT_STATUS_H2C_LENGTH_EXCEEDED = 0x04, /* H2c command length exceeded */
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BT_STATUS_H2C_TIMTOUT = 0x05, /* H2c timeout */
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BT_STATUS_H2C_BT_NO_RSP = 0x06, /* H2c sent, bt no rsp */
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BT_STATUS_C2H_SUCCESS = 0x07, /* C2h success */
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BT_STATUS_C2H_REQNUM_MISMATCH = 0x08, /* bt fw wrong rsp */
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BT_STATUS_OPCODE_U_VERSION_MISMATCH = 0x08, /* Upper layer OP code version mismatch. */
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BT_STATUS_OPCODE_L_VERSION_MISMATCH = 0x0a, /* Lower layer OP code version mismatch. */
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BT_STATUS_UNKNOWN_OPCODE_U = 0x0b, /* Unknown Upper layer OP code */
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BT_STATUS_UNKNOWN_OPCODE_L = 0x0c, /* Unknown Lower layer OP code */
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BT_STATUS_PARAMETER_FORMAT_ERROR_U = 0x0d, /* Wrong parameters sent by upper layer. */
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BT_STATUS_PARAMETER_FORMAT_ERROR_L = 0x0e, /* bt fw parameter format is not consistency */
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BT_STATUS_PARAMETER_OUT_OF_RANGE_U = 0x0f, /* uppery layer parameter value is out of range */
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BT_STATUS_PARAMETER_OUT_OF_RANGE_L = 0x10, /* bt fw parameter value is out of range */
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BT_STATUS_UNKNOWN_STATUS_L = 0x11, /* bt returned an defined status code */
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BT_STATUS_UNKNOWN_STATUS_H = 0x12, /* driver need to do error handle or not handle-well. */
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BT_STATUS_WRONG_LEVEL = 0x13, /* should be under passive level */
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BT_STATUS_NOT_IMPLEMENT = 0x14, /* op code not implemented yet */
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BT_STATUS_BT_STACK_OP_SUCCESS = 0x15, /* bt stack op execution success */
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BT_STATUS_BT_STACK_NOT_SUPPORT = 0x16, /* stack version not support this. */
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BT_STATUS_BT_STACK_SEND_HCI_EVENT_FAIL = 0x17, /* send hci event fail */
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BT_STATUS_BT_STACK_NOT_BIND = 0x18, /* stack not bind wifi driver */
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BT_STATUS_BT_STACK_NO_RSP = 0x19, /* stack doesn't have any rsp. */
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BT_STATUS_MAX
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} BT_CTRL_STATUS, *PBT_CTRL_STATUS;
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typedef enum _BTCOEX_SUSPEND_STATE {
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BTCOEX_SUSPEND_STATE_RESUME = 0x0,
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BTCOEX_SUSPEND_STATE_SUSPEND = 0x1,
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BTCOEX_SUSPEND_STATE_SUSPEND_KEEP_ANT = 0x2,
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BTCOEX_SUSPEND_STATE_MAX
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} BTCOEX_SUSPEND_STATE, *PBTCOEX_SUSPEND_STATE;
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#define SET_BT_MP_OPER_RET(OpCode, StatusCode) ((OpCode << 8) | StatusCode)
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#define GET_OP_CODE_FROM_BT_MP_OPER_RET(RetCode) ((RetCode & 0xF0) >> 8)
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#define GET_STATUS_CODE_FROM_BT_MP_OPER_RET(RetCode) (RetCode & 0x0F)
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#define CHECK_STATUS_CODE_FROM_BT_MP_OPER_RET(RetCode, StatusCode) (GET_STATUS_CODE_FROM_BT_MP_OPER_RET(RetCode) == StatusCode)
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#ifdef CONFIG_BT_COEXIST_SOCKET_TRX
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#define NETLINK_USER 31
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#define CONNECT_PORT 30000
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#define CONNECT_PORT_BT 30001
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#define KERNEL_SOCKET_OK 0x01
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#define NETLINK_SOCKET_OK 0x02
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#define OTHER 0
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#define RX_ATTEND_ACK 1
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#define RX_LEAVE_ACK 2
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#define RX_BT_LEAVE 3
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#define RX_INVITE_REQ 4
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#define RX_ATTEND_REQ 5
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#define RX_INVITE_RSP 6
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#define invite_req "INVITE_REQ"
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#define invite_rsp "INVITE_RSP"
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#define attend_req "ATTEND_REQ"
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#define attend_ack "ATTEND_ACK"
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#define wifi_leave "WIFI_LEAVE"
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#define leave_ack "LEAVE_ACK"
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#define bt_leave "BT_LEAVE"
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#define BT_INFO_NOTIFY_CMD 0x0106
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#define BT_INFO_LEN 8
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typedef struct _HCI_LINK_INFO {
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u2Byte ConnectHandle;
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u1Byte IncomingTrafficMode;
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u1Byte OutgoingTrafficMode;
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u1Byte BTProfile;
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u1Byte BTCoreSpec;
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s1Byte BT_RSSI;
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u1Byte TrafficProfile;
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u1Byte linkRole;
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} HCI_LINK_INFO, *PHCI_LINK_INFO;
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#define MAX_BT_ACL_LINK_NUM 8
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typedef struct _HCI_EXT_CONFIG {
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HCI_LINK_INFO aclLink[MAX_BT_ACL_LINK_NUM];
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u1Byte btOperationCode;
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u2Byte CurrentConnectHandle;
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u1Byte CurrentIncomingTrafficMode;
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u1Byte CurrentOutgoingTrafficMode;
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u1Byte NumberOfACL;
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u1Byte NumberOfSCO;
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u1Byte CurrentBTStatus;
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u2Byte HCIExtensionVer;
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BOOLEAN bEnableWifiScanNotify;
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} HCI_EXT_CONFIG, *PHCI_EXT_CONFIG;
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typedef struct _HCI_PHY_LINK_BSS_INFO {
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u2Byte bdCap; /* capability information */
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/* Qos related. Added by Annie, 2005-11-01. */
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/* BSS_QOS BssQos; */
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} HCI_PHY_LINK_BSS_INFO, *PHCI_PHY_LINK_BSS_INFO;
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typedef enum _BT_CONNECT_TYPE {
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BT_CONNECT_AUTH_REQ = 0x00,
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BT_CONNECT_AUTH_RSP = 0x01,
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BT_CONNECT_ASOC_REQ = 0x02,
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BT_CONNECT_ASOC_RSP = 0x03,
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BT_DISCONNECT = 0x04
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} BT_CONNECT_TYPE, *PBT_CONNECT_TYPE;
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typedef struct _PACKET_IRP_HCIEVENT_DATA {
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u8 EventCode;
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u8 Length; /* total cmd length = extension event length+1(extension event code length) */
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u8 Data[1]; /* byte1 is extension event code */
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} rtw_HCI_event;
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struct btinfo_8761ATV {
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u8 cid;
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u8 len;
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u8 bConnection:1;
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u8 bSCOeSCO:1;
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u8 bInQPage:1;
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u8 bACLBusy:1;
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u8 bSCOBusy:1;
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u8 bHID:1;
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u8 bA2DP:1;
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u8 bFTP:1;
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u8 retry_cnt:4;
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u8 rsvd_34:1;
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u8 bPage:1;
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u8 TRxMask:1;
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u8 Sniff_attempt:1;
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u8 rssi;
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u8 A2dp_rate:1;
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u8 ReInit:1;
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u8 MaxPower:1;
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u8 bEnIgnoreWlanAct:1;
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u8 TxPowerLow:1;
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u8 TxPowerHigh:1;
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u8 eSCO_SCO:1;
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u8 Master_Slave:1;
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u8 ACL_TRx_TP_low;
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u8 ACL_TRx_TP_high;
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};
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#define HCIOPCODE(_OCF, _OGF) ((_OGF)<<10|(_OCF))
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#define HCIOPCODELOW(_OCF, _OGF) (u8)(HCIOPCODE(_OCF, _OGF) & 0x00ff)
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#define HCIOPCODEHIGHT(_OCF, _OGF) (u8)(HCIOPCODE(_OCF, _OGF)>>8)
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#define HCI_OGF(opCode) (unsigned char)((0xFC00 & (opCode)) >> 10)
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#define HCI_OCF(opCode) (0x3FF & (opCode))
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typedef enum _HCI_STATUS {
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HCI_STATUS_SUCCESS = 0x00, /* Success */
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HCI_STATUS_UNKNOW_HCI_CMD = 0x01, /* Unknown HCI Command */
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HCI_STATUS_UNKNOW_CONNECT_ID = 0X02, /* Unknown Connection Identifier */
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HCI_STATUS_HW_FAIL = 0X03, /* Hardware Failure */
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HCI_STATUS_PAGE_TIMEOUT = 0X04, /* Page Timeout */
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HCI_STATUS_AUTH_FAIL = 0X05, /* Authentication Failure */
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HCI_STATUS_PIN_OR_KEY_MISSING = 0X06, /* PIN or Key Missing */
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HCI_STATUS_MEM_CAP_EXCEED = 0X07, /* Memory Capacity Exceeded */
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HCI_STATUS_CONNECT_TIMEOUT = 0X08, /* Connection Timeout */
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HCI_STATUS_CONNECT_LIMIT = 0X09, /* Connection Limit Exceeded */
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HCI_STATUS_SYN_CONNECT_LIMIT = 0X0a, /* Synchronous Connection Limit To A Device Exceeded */
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HCI_STATUS_ACL_CONNECT_EXISTS = 0X0b, /* ACL Connection Already Exists */
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HCI_STATUS_CMD_DISALLOW = 0X0c, /* Command Disallowed */
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HCI_STATUS_CONNECT_RJT_LIMIT_RESOURCE = 0X0d, /* Connection Rejected due to Limited Resources */
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HCI_STATUS_CONNECT_RJT_SEC_REASON = 0X0e, /* Connection Rejected Due To Security Reasons */
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HCI_STATUS_CONNECT_RJT_UNACCEPT_BD_ADDR = 0X0f, /* Connection Rejected due to Unacceptable BD_ADDR */
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HCI_STATUS_CONNECT_ACCEPT_TIMEOUT = 0X10, /* Connection Accept Timeout Exceeded */
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HCI_STATUS_UNSUPPORT_FEATURE_PARA_VALUE = 0X11, /* Unsupported Feature or Parameter Value */
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HCI_STATUS_INVALID_HCI_CMD_PARA_VALUE = 0X12, /* Invalid HCI Command Parameters */
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HCI_STATUS_REMOTE_USER_TERMINATE_CONNECT = 0X13, /* Remote User Terminated Connection */
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HCI_STATUS_REMOTE_DEV_TERMINATE_LOW_RESOURCE = 0X14, /* Remote Device Terminated Connection due to Low Resources */
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HCI_STATUS_REMOTE_DEV_TERMINATE_CONNECT_POWER_OFF = 0X15, /* Remote Device Terminated Connection due to Power Off */
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HCI_STATUS_CONNECT_TERMINATE_LOCAL_HOST = 0X16, /* Connection Terminated By Local Host */
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HCI_STATUS_REPEATE_ATTEMPT = 0X17, /* Repeated Attempts */
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HCI_STATUS_PAIR_NOT_ALLOW = 0X18, /* Pairing Not Allowed */
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HCI_STATUS_UNKNOW_LMP_PDU = 0X19, /* Unknown LMP PDU */
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HCI_STATUS_UNSUPPORT_REMOTE_LMP_FEATURE = 0X1a, /* Unsupported Remote Feature / Unsupported LMP Feature */
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HCI_STATUS_SOC_OFFSET_REJECT = 0X1b, /* SCO Offset Rejected */
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HCI_STATUS_SOC_INTERVAL_REJECT = 0X1c, /* SCO Interval Rejected */
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HCI_STATUS_SOC_AIR_MODE_REJECT = 0X1d, /* SCO Air Mode Rejected */
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HCI_STATUS_INVALID_LMP_PARA = 0X1e, /* Invalid LMP Parameters */
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HCI_STATUS_UNSPECIFIC_ERROR = 0X1f, /* Unspecified Error */
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HCI_STATUS_UNSUPPORT_LMP_PARA_VALUE = 0X20, /* Unsupported LMP Parameter Value */
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HCI_STATUS_ROLE_CHANGE_NOT_ALLOW = 0X21, /* Role Change Not Allowed */
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HCI_STATUS_LMP_RESPONSE_TIMEOUT = 0X22, /* LMP Response Timeout */
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HCI_STATUS_LMP_ERROR_TRANSACTION_COLLISION = 0X23, /* LMP Error Transaction Collision */
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HCI_STATUS_LMP_PDU_NOT_ALLOW = 0X24, /* LMP PDU Not Allowed */
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HCI_STATUS_ENCRYPTION_MODE_NOT_ALLOW = 0X25, /* Encryption Mode Not Acceptable */
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HCI_STATUS_LINK_KEY_CAN_NOT_CHANGE = 0X26, /* Link Key Can Not be Changed */
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HCI_STATUS_REQUEST_QOS_NOT_SUPPORT = 0X27, /* Requested QoS Not Supported */
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HCI_STATUS_INSTANT_PASSED = 0X28, /* Instant Passed */
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HCI_STATUS_PAIRING_UNIT_KEY_NOT_SUPPORT = 0X29, /* Pairing With Unit Key Not Supported */
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HCI_STATUS_DIFFERENT_TRANSACTION_COLLISION = 0X2a, /* Different Transaction Collision */
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HCI_STATUS_RESERVE_1 = 0X2b, /* Reserved */
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HCI_STATUS_QOS_UNACCEPT_PARA = 0X2c, /* QoS Unacceptable Parameter */
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HCI_STATUS_QOS_REJECT = 0X2d, /* QoS Rejected */
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HCI_STATUS_CHNL_CLASSIFICATION_NOT_SUPPORT = 0X2e, /* Channel Classification Not Supported */
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HCI_STATUS_INSUFFICIENT_SECURITY = 0X2f, /* Insufficient Security */
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HCI_STATUS_PARA_OUT_OF_RANGE = 0x30, /* Parameter Out Of Mandatory Range */
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HCI_STATUS_RESERVE_2 = 0X31, /* Reserved */
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HCI_STATUS_ROLE_SWITCH_PENDING = 0X32, /* Role Switch Pending */
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HCI_STATUS_RESERVE_3 = 0X33, /* Reserved */
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HCI_STATUS_RESERVE_SOLT_VIOLATION = 0X34, /* Reserved Slot Violation */
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HCI_STATUS_ROLE_SWITCH_FAIL = 0X35, /* Role Switch Failed */
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HCI_STATUS_EXTEND_INQUIRY_RSP_TOO_LARGE = 0X36, /* Extended Inquiry Response Too Large */
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HCI_STATUS_SEC_SIMPLE_PAIRING_NOT_SUPPORT = 0X37, /* Secure Simple Pairing Not Supported By Host. */
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HCI_STATUS_HOST_BUSY_PAIRING = 0X38, /* Host Busy - Pairing */
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HCI_STATUS_CONNECT_REJ_NOT_SUIT_CHNL_FOUND = 0X39, /* Connection Rejected due to No Suitable Channel Found */
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HCI_STATUS_CONTROLLER_BUSY = 0X3a /* CONTROLLER BUSY */
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} RTW_HCI_STATUS;
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#define HCI_EVENT_COMMAND_COMPLETE 0x0e
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#define OGF_EXTENSION 0X3f
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typedef enum HCI_EXTENSION_COMMANDS {
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HCI_SET_ACL_LINK_DATA_FLOW_MODE = 0x0010,
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HCI_SET_ACL_LINK_STATUS = 0x0020,
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HCI_SET_SCO_LINK_STATUS = 0x0030,
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HCI_SET_RSSI_VALUE = 0x0040,
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HCI_SET_CURRENT_BLUETOOTH_STATUS = 0x0041,
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/* The following is for RTK8723 */
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HCI_EXTENSION_VERSION_NOTIFY = 0x0100,
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HCI_LINK_STATUS_NOTIFY = 0x0101,
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HCI_BT_OPERATION_NOTIFY = 0x0102,
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HCI_ENABLE_WIFI_SCAN_NOTIFY = 0x0103,
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HCI_QUERY_RF_STATUS = 0x0104,
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HCI_BT_ABNORMAL_NOTIFY = 0x0105,
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HCI_BT_INFO_NOTIFY = 0x0106,
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HCI_BT_COEX_NOTIFY = 0x0107,
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HCI_BT_PATCH_VERSION_NOTIFY = 0x0108,
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HCI_BT_AFH_MAP_NOTIFY = 0x0109,
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HCI_BT_REGISTER_VALUE_NOTIFY = 0x010a,
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/* The following is for IVT */
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HCI_WIFI_CURRENT_CHANNEL = 0x0300,
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HCI_WIFI_CURRENT_BANDWIDTH = 0x0301,
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HCI_WIFI_CONNECTION_STATUS = 0x0302
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} RTW_HCI_EXT_CMD;
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#define HCI_EVENT_EXTENSION_RTK 0xfe
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typedef enum HCI_EXTENSION_EVENT_RTK {
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HCI_EVENT_EXT_WIFI_SCAN_NOTIFY = 0x01,
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HCI_EVENT_EXT_WIFI_RF_STATUS_NOTIFY = 0x02,
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HCI_EVENT_EXT_BT_INFO_CONTROL = 0x03,
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HCI_EVENT_EXT_BT_COEX_CONTROL = 0x04
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} RTW_HCI_EXT_EVENT;
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typedef enum _BT_TRAFFIC_MODE {
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BT_MOTOR_EXT_BE = 0x00, /* Best Effort. Default. for HCRP, PAN, SDP, RFCOMM-based profiles like FTP,OPP, SPP, DUN, etc. */
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BT_MOTOR_EXT_GUL = 0x01, /* Guaranteed Latency. This type of traffic is used e.g. for HID and AVRCP. */
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BT_MOTOR_EXT_GUB = 0X02, /* Guaranteed Bandwidth. */
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BT_MOTOR_EXT_GULB = 0X03 /* Guaranteed Latency and Bandwidth. for A2DP and VDP. */
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} BT_TRAFFIC_MODE;
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typedef enum _BT_TRAFFIC_MODE_PROFILE {
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BT_PROFILE_NONE,
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BT_PROFILE_A2DP,
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BT_PROFILE_PAN ,
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BT_PROFILE_HID,
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BT_PROFILE_SCO
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} BT_TRAFFIC_MODE_PROFILE;
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typedef enum _HCI_EXT_BT_OPERATION {
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HCI_BT_OP_NONE = 0x0,
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HCI_BT_OP_INQUIRY_START = 0x1,
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HCI_BT_OP_INQUIRY_FINISH = 0x2,
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HCI_BT_OP_PAGING_START = 0x3,
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HCI_BT_OP_PAGING_SUCCESS = 0x4,
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HCI_BT_OP_PAGING_UNSUCCESS = 0x5,
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HCI_BT_OP_PAIRING_START = 0x6,
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HCI_BT_OP_PAIRING_FINISH = 0x7,
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HCI_BT_OP_BT_DEV_ENABLE = 0x8,
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HCI_BT_OP_BT_DEV_DISABLE = 0x9,
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HCI_BT_OP_MAX
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} HCI_EXT_BT_OPERATION, *PHCI_EXT_BT_OPERATION;
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typedef struct _BT_MGNT {
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BOOLEAN bBTConnectInProgress;
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BOOLEAN bLogLinkInProgress;
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BOOLEAN bPhyLinkInProgress;
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BOOLEAN bPhyLinkInProgressStartLL;
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u1Byte BtCurrentPhyLinkhandle;
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u2Byte BtCurrentLogLinkhandle;
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u1Byte CurrentConnectEntryNum;
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u1Byte DisconnectEntryNum;
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u1Byte CurrentBTConnectionCnt;
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BT_CONNECT_TYPE BTCurrentConnectType;
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BT_CONNECT_TYPE BTReceiveConnectPkt;
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u1Byte BTAuthCount;
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u1Byte BTAsocCount;
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BOOLEAN bStartSendSupervisionPkt;
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BOOLEAN BtOperationOn;
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BOOLEAN BTNeedAMPStatusChg;
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BOOLEAN JoinerNeedSendAuth;
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HCI_PHY_LINK_BSS_INFO bssDesc;
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HCI_EXT_CONFIG ExtConfig;
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BOOLEAN bNeedNotifyAMPNoCap;
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BOOLEAN bCreateSpportQos;
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BOOLEAN bSupportProfile;
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u1Byte BTChannel;
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BOOLEAN CheckChnlIsSuit;
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BOOLEAN bBtScan;
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BOOLEAN btLogoTest;
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BOOLEAN bRfStatusNotified;
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BOOLEAN bBtRsvedPageDownload;
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} BT_MGNT, *PBT_MGNT;
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struct bt_coex_info {
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/* For Kernel Socket */
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struct socket *udpsock;
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struct sockaddr_in wifi_sockaddr; /*wifi socket*/
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struct sockaddr_in bt_sockaddr;/* BT socket */
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struct sock *sk_store;/*back up socket for UDP RX int*/
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/* store which socket is OK */
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u8 sock_open;
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u8 BT_attend;
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u8 is_exist; /* socket exist */
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BT_MGNT BtMgnt;
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struct workqueue_struct *btcoex_wq;
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struct delayed_work recvmsg_work;
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};
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#endif /* CONFIG_BT_COEXIST_SOCKET_TRX */
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#define PACKET_NORMAL 0
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#define PACKET_DHCP 1
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#define PACKET_ARP 2
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#define PACKET_EAPOL 3
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void rtw_btcoex_Initialize(PADAPTER);
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void rtw_btcoex_PowerOnSetting(PADAPTER padapter);
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void rtw_btcoex_PreLoadFirmware(PADAPTER padapter);
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void rtw_btcoex_HAL_Initialize(PADAPTER padapter, u8 bWifiOnly);
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void rtw_btcoex_IpsNotify(PADAPTER, u8 type);
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void rtw_btcoex_LpsNotify(PADAPTER, u8 type);
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void rtw_btcoex_ScanNotify(PADAPTER, u8 type);
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void rtw_btcoex_ConnectNotify(PADAPTER, u8 action);
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void rtw_btcoex_MediaStatusNotify(PADAPTER, u8 mediaStatus);
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void rtw_btcoex_SpecialPacketNotify(PADAPTER, u8 pktType);
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void rtw_btcoex_IQKNotify(PADAPTER padapter, u8 state);
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void rtw_btcoex_BtInfoNotify(PADAPTER, u8 length, u8 *tmpBuf);
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void rtw_btcoex_BtMpRptNotify(PADAPTER, u8 length, u8 *tmpBuf);
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void rtw_btcoex_SuspendNotify(PADAPTER, u8 state);
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void rtw_btcoex_HaltNotify(PADAPTER);
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void rtw_btcoex_switchband_notify(u8 under_scan, u8 band_type);
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void rtw_btcoex_SwitchBtTRxMask(PADAPTER);
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void rtw_btcoex_Switch(PADAPTER, u8 enable);
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u8 rtw_btcoex_IsBtDisabled(PADAPTER);
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void rtw_btcoex_Handler(PADAPTER);
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s32 rtw_btcoex_IsBTCoexRejectAMPDU(PADAPTER padapter);
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s32 rtw_btcoex_IsBTCoexCtrlAMPDUSize(PADAPTER);
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u32 rtw_btcoex_GetAMPDUSize(PADAPTER);
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void rtw_btcoex_SetManualControl(PADAPTER, u8 bmanual);
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u8 rtw_btcoex_1Ant(PADAPTER);
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u8 rtw_btcoex_IsBtControlLps(PADAPTER);
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u8 rtw_btcoex_IsLpsOn(PADAPTER);
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u8 rtw_btcoex_RpwmVal(PADAPTER);
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u8 rtw_btcoex_LpsVal(PADAPTER);
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u32 rtw_btcoex_GetRaMask(PADAPTER);
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void rtw_btcoex_RecordPwrMode(PADAPTER, u8 *pCmdBuf, u8 cmdLen);
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void rtw_btcoex_DisplayBtCoexInfo(PADAPTER, u8 *pbuf, u32 bufsize);
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void rtw_btcoex_SetDBG(PADAPTER, u32 *pDbgModule);
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u32 rtw_btcoex_GetDBG(PADAPTER, u8 *pStrBuf, u32 bufSize);
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u8 rtw_btcoex_IncreaseScanDeviceNum(PADAPTER);
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u8 rtw_btcoex_IsBtLinkExist(PADAPTER);
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void rtw_btcoex_pta_off_on_notify(PADAPTER padapter, u8 bBTON);
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#ifdef CONFIG_BT_COEXIST_SOCKET_TRX
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void rtw_btcoex_SetBtPatchVersion(PADAPTER padapter, u16 btHciVer, u16 btPatchVer);
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void rtw_btcoex_SetHciVersion(PADAPTER padapter, u16 hciVersion);
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void rtw_btcoex_StackUpdateProfileInfo(void);
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void rtw_btcoex_init_socket(_adapter *padapter);
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void rtw_btcoex_close_socket(_adapter *padapter);
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void rtw_btcoex_dump_tx_msg(u8 *tx_msg, u8 len, u8 *msg_name);
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u8 rtw_btcoex_sendmsgbysocket(_adapter *padapter, u8 *msg, u8 msg_size, bool force);
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u8 rtw_btcoex_create_kernel_socket(_adapter *padapter);
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void rtw_btcoex_close_kernel_socket(_adapter *padapter);
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void rtw_btcoex_recvmsgbysocket(void *data);
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u16 rtw_btcoex_parse_recv_data(u8 *msg, u8 msg_size);
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u8 rtw_btcoex_btinfo_cmd(PADAPTER padapter, u8 *pbuf, u16 length);
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void rtw_btcoex_parse_hci_cmd(_adapter *padapter, u8 *cmd, u16 len);
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void rtw_btcoex_SendEventExtBtCoexControl(PADAPTER Adapter, u8 bNeedDbgRsp, u8 dataLen, void *pData);
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void rtw_btcoex_SendEventExtBtInfoControl(PADAPTER Adapter, u8 dataLen, void *pData);
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void rtw_btcoex_SendScanNotify(PADAPTER padapter, u8 scanType);
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#define BT_SendEventExtBtCoexControl(Adapter, bNeedDbgRsp, dataLen, pData) rtw_btcoex_SendEventExtBtCoexControl(Adapter, bNeedDbgRsp, dataLen, pData)
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#define BT_SendEventExtBtInfoControl(Adapter, dataLen, pData) rtw_btcoex_SendEventExtBtInfoControl(Adapter, dataLen, pData)
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#endif /* CONFIG_BT_COEXIST_SOCKET_TRX */
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u16 rtw_btcoex_btreg_read(PADAPTER padapter, u8 type, u16 addr, u32 *data);
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u16 rtw_btcoex_btreg_write(PADAPTER padapter, u8 type, u16 addr, u16 val);
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u8 rtw_btcoex_get_bt_coexist(PADAPTER padapter);
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u8 rtw_btcoex_get_chip_type(PADAPTER padapter);
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u8 rtw_btcoex_get_pg_ant_num(PADAPTER padapter);
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u8 rtw_btcoex_get_pg_single_ant_path(PADAPTER padapter);
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u8 rtw_btcoex_get_pg_rfe_type(PADAPTER padapter);
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u8 rtw_btcoex_is_tfbga_package_type(PADAPTER padapter);
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u8 rtw_btcoex_get_ant_div_cfg(PADAPTER padapter);
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/* ==================================================
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* Below Functions are called by BT-Coex
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* ================================================== */
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void rtw_btcoex_rx_ampdu_apply(PADAPTER);
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void rtw_btcoex_LPS_Enter(PADAPTER);
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void rtw_btcoex_LPS_Leave(PADAPTER);
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#endif /* __RTW_BTCOEX_H__ */
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