mirror of
https://github.com/gnab/rtl8812au
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298 lines
9.0 KiB
C
298 lines
9.0 KiB
C
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/******************************************************************************
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*
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* Copyright(c) 2007 - 2011 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_BT_MP_H
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#define __RTW_BT_MP_H
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#if(MP_DRIVER == 1)
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#pragma pack(1)
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// definition for BT_UP_OP_BT_READY
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#define MP_BT_NOT_READY 0
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#define MP_BT_READY 1
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// definition for BT_UP_OP_BT_SET_MODE
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typedef enum _MP_BT_MODE{
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MP_BT_MODE_RF_TXRX_TEST_MODE = 0,
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MP_BT_MODE_BT20_DUT_TEST_MODE = 1,
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MP_BT_MODE_BT40_DIRECT_TEST_MODE = 2,
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MP_BT_MODE_CONNECT_TEST_MODE = 3,
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MP_BT_MODE_MAX
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}MP_BT_MODE,*PMP_BT_MODE;
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// definition for BT_UP_OP_BT_SET_TX_RX_PARAMETER
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typedef struct _BT_TXRX_PARAMETERS{
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u1Byte txrxChannel;
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u4Byte txrxTxPktCnt;
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u1Byte txrxTxPktInterval;
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u1Byte txrxPayloadType;
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u1Byte txrxPktType;
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u2Byte txrxPayloadLen;
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u4Byte txrxPktHeader;
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u1Byte txrxWhitenCoeff;
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u1Byte txrxBdaddr[6];
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u1Byte txrxTxGainIndex;
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} BT_TXRX_PARAMETERS, *PBT_TXRX_PARAMETERS;
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// txrxPktType
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typedef enum _MP_BT_PKT_TYPE{
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MP_BT_PKT_DH1 = 0,
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MP_BT_PKT_DH3 = 1,
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MP_BT_PKT_DH5 = 2,
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MP_BT_PKT_2DH1 = 3,
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MP_BT_PKT_2DH3 = 4,
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MP_BT_PKT_2DH5 = 5,
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MP_BT_PKT_3DH1 = 6,
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MP_BT_PKT_3DH3 = 7,
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MP_BT_PKT_3DH5 = 8,
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MP_BT_PKT_LE = 9,
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MP_BT_PKT_MAX
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}MP_BT_PKT_TYPE,*PMP_BT_PKT_TYPE;
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// txrxPayloadType
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typedef enum _MP_BT_PAYLOAD_TYPE{
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MP_BT_PAYLOAD_01010101 = 0,
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MP_BT_PAYLOAD_ALL_1 = 1,
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MP_BT_PAYLOAD_ALL_0 = 2,
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MP_BT_PAYLOAD_11110000 = 3,
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MP_BT_PAYLOAD_PRBS9 = 4,
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MP_BT_PAYLOAD_MAX
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}MP_BT_PAYLOAD_TYPE,*PMP_BT_PAYLOAD_TYPE;
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// definition for BT_UP_OP_BT_TEST_CTRL
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typedef enum _MP_BT_TEST_CTRL{
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MP_BT_TEST_STOP_ALL_TESTS = 0,
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MP_BT_TEST_START_RX_TEST = 1,
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MP_BT_TEST_START_PACKET_TX_TEST = 2,
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MP_BT_TEST_START_CONTINUOUS_TX_TEST = 3,
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MP_BT_TEST_START_INQUIRY_SCAN_TEST = 4,
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MP_BT_TEST_START_PAGE_SCAN_TEST = 5,
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MP_BT_TEST_START_INQUIRY_PAGE_SCAN_TEST = 6,
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MP_BT_TEST_START_LEGACY_CONNECT_TEST = 7,
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MP_BT_TEST_START_LE_CONNECT_TEST_INITIATOR = 8,
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MP_BT_TEST_START_LE_CONNECT_TEST_ADVERTISER = 9,
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MP_BT_TEST_MAX
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}MP_BT_TEST_CTRL,*PMP_BT_TEST_CTRL;
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typedef enum _RTL_EXT_C2H_EVT
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{
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EXT_C2H_WIFI_FW_ACTIVE_RSP = 0,
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EXT_C2H_TRIG_BY_BT_FW = 1,
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MAX_EXT_C2HEVENT
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}RTL_EXT_C2H_EVT;
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// 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_TIMTOUT = 0x03, // H2c timeout
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BT_STATUS_H2C_BT_NO_RSP = 0x04, // H2c sent, bt no rsp
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BT_STATUS_C2H_SUCCESS = 0x05, // C2h success
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BT_STATUS_C2H_REQNUM_MISMATCH = 0x06, // bt fw wrong rsp
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BT_STATUS_OPCODE_U_VERSION_MISMATCH = 0x07, // Upper layer OP code version mismatch.
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BT_STATUS_OPCODE_L_VERSION_MISMATCH = 0x08, // Lower layer OP code version mismatch.
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BT_STATUS_UNKNOWN_OPCODE_U = 0x09, // Unknown Upper layer OP code
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BT_STATUS_UNKNOWN_OPCODE_L = 0x0a, // Unknown Lower layer OP code
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BT_STATUS_PARAMETER_FORMAT_ERROR_U = 0x0b, // Wrong parameters sent by upper layer.
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BT_STATUS_PARAMETER_FORMAT_ERROR_L = 0x0c, // bt fw parameter format is not consistency
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BT_STATUS_PARAMETER_OUT_OF_RANGE_U = 0x0d, // uppery layer parameter value is out of range
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BT_STATUS_PARAMETER_OUT_OF_RANGE_L = 0x0e, // bt fw parameter value is out of range
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BT_STATUS_UNKNOWN_STATUS_L = 0x0f, // bt returned an defined status code
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BT_STATUS_UNKNOWN_STATUS_H = 0x10, // driver need to do error handle or not handle-well.
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BT_STATUS_WRONG_LEVEL = 0x11, // should be under passive level
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BT_STATUS_MAX
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}BT_CTRL_STATUS,*PBT_CTRL_STATUS;
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// OP codes definition between the user layer and driver
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typedef enum _BT_CTRL_OPCODE_UPPER{
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BT_UP_OP_BT_READY = 0x00,
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BT_UP_OP_BT_SET_MODE = 0x01,
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BT_UP_OP_BT_SET_TX_RX_PARAMETER = 0x02,
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BT_UP_OP_BT_SET_GENERAL = 0x03,
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BT_UP_OP_BT_GET_GENERAL = 0x04,
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BT_UP_OP_BT_TEST_CTRL = 0x05,
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BT_UP_OP_TEST_BT = 0x06,
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BT_UP_OP_MAX
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}BT_CTRL_OPCODE_UPPER,*PBT_CTRL_OPCODE_UPPER;
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typedef enum _BT_SET_GENERAL{
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BT_GSET_REG = 0x00,
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BT_GSET_RESET = 0x01,
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BT_GSET_TARGET_BD_ADDR = 0x02,
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BT_GSET_TX_PWR_FINETUNE = 0x03,
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BT_GSET_UPDATE_BT_PATCH = 0x04,
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BT_GSET_MAX
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}BT_SET_GENERAL,*PBT_SET_GENERAL;
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typedef enum _BT_GET_GENERAL{
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BT_GGET_REG = 0x00,
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BT_GGET_STATUS = 0x01,
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BT_GGET_REPORT = 0x02,
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BT_GGET_MAX
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}BT_GET_GENERAL,*PBT_GET_GENERAL;
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// definition for BT_UP_OP_BT_SET_GENERAL
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typedef enum _BT_REG_TYPE{
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BT_REG_RF = 0,
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BT_REG_MODEM = 1,
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BT_REG_BLUEWIZE = 2,
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BT_REG_VENDOR = 3,
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BT_REG_LE = 4,
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BT_REG_MAX
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}BT_REG_TYPE,*PBT_REG_TYPE;
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// definition for BT_UP_OP_BT_GET_GENERAL
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typedef enum _BT_REPORT_TYPE{
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BT_REPORT_RX_PACKET_CNT = 0,
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BT_REPORT_RX_ERROR_BITS = 1,
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BT_REPORT_RSSI = 2,
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BT_REPORT_CFO_HDR_QUALITY = 3,
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BT_REPORT_CONNECT_TARGET_BD_ADDR = 4,
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BT_REPORT_MAX
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}BT_REPORT_TYPE,*PBT_REPORT_TYPE;
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VOID
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MPTBT_Test(
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IN PADAPTER Adapter,
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IN u1Byte opCode,
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IN u1Byte byte1,
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IN u1Byte byte2,
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IN u1Byte byte3
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);
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NDIS_STATUS
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MPTBT_SendOidBT(
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IN PADAPTER pAdapter,
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IN PVOID InformationBuffer,
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IN ULONG InformationBufferLength,
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OUT PULONG BytesRead,
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OUT PULONG BytesNeeded
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);
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VOID
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MPTBT_FwC2hBtMpCtrl(
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PADAPTER Adapter,
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pu1Byte tmpBuf,
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u1Byte length
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);
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void MPh2c_timeout_handle(void *FunctionContext);
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VOID mptbt_BtControlProcess(
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PADAPTER Adapter,
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PVOID pInBuf
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);
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#define BT_H2C_MAX_RETRY 1
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#define BT_MAX_C2H_LEN 20
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typedef struct _BT_REQ_CMD{
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UCHAR opCodeVer;
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UCHAR OpCode;
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USHORT paraLength;
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UCHAR pParamStart[100];
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} BT_REQ_CMD, *PBT_REQ_CMD;
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typedef struct _BT_RSP_CMD{
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USHORT status;
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USHORT paraLength;
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UCHAR pParamStart[100];
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} BT_RSP_CMD, *PBT_RSP_CMD;
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typedef struct _BT_H2C{
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u1Byte opCodeVer:4;
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u1Byte reqNum:4;
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u1Byte opCode;
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u1Byte buf[100];
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}BT_H2C, *PBT_H2C;
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typedef struct _BT_EXT_C2H{
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u1Byte extendId;
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u1Byte statusCode:4;
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u1Byte retLen:4;
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u1Byte opCodeVer:4;
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u1Byte reqNum:4;
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u1Byte buf[100];
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}BT_EXT_C2H, *PBT_EXT_C2H;
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typedef enum _BT_OPCODE_STATUS{
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BT_OP_STATUS_SUCCESS = 0x00, // Success
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BT_OP_STATUS_VERSION_MISMATCH = 0x01,
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BT_OP_STATUS_UNKNOWN_OPCODE = 0x02,
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BT_OP_STATUS_ERROR_PARAMETER = 0x03,
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BT_OP_STATUS_MAX
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}BT_OPCODE_STATUS,*PBT_OPCODE_STATUS;
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//OP codes definition between driver and bt fw
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typedef enum _BT_CTRL_OPCODE_LOWER{
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BT_LO_OP_GET_BT_VERSION = 0x00,
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BT_LO_OP_RESET = 0x01,
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BT_LO_OP_TEST_CTRL = 0x02,
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BT_LO_OP_SET_BT_MODE = 0x03,
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BT_LO_OP_SET_CHNL_TX_GAIN = 0x04,
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BT_LO_OP_SET_PKT_TYPE_LEN = 0x05,
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BT_LO_OP_SET_PKT_CNT_L_PL_TYPE = 0x06,
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BT_LO_OP_SET_PKT_CNT_H_PKT_INTV = 0x07,
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BT_LO_OP_SET_PKT_HEADER = 0x08,
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BT_LO_OP_SET_WHITENCOEFF = 0x09,
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BT_LO_OP_SET_BD_ADDR_L = 0x0a,
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BT_LO_OP_SET_BD_ADDR_H = 0x0b,
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BT_LO_OP_WRITE_REG_ADDR = 0x0c,
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BT_LO_OP_WRITE_REG_VALUE = 0x0d,
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BT_LO_OP_GET_BT_STATUS = 0x0e,
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BT_LO_OP_GET_BD_ADDR_L = 0x0f,
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BT_LO_OP_GET_BD_ADDR_H = 0x10,
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BT_LO_OP_READ_REG = 0x11,
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BT_LO_OP_SET_TARGET_BD_ADDR_L = 0x12,
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BT_LO_OP_SET_TARGET_BD_ADDR_H = 0x13,
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BT_LO_OP_SET_TX_POWER_CALIBRATION = 0x14,
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BT_LO_OP_GET_RX_PKT_CNT_L = 0x15,
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BT_LO_OP_GET_RX_PKT_CNT_H = 0x16,
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BT_LO_OP_GET_RX_ERROR_BITS_L = 0x17,
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BT_LO_OP_GET_RX_ERROR_BITS_H = 0x18,
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BT_LO_OP_GET_RSSI = 0x19,
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BT_LO_OP_GET_CFO_HDR_QUALITY_L = 0x1a,
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BT_LO_OP_GET_CFO_HDR_QUALITY_H = 0x1b,
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BT_LO_OP_GET_TARGET_BD_ADDR_L = 0x1c,
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BT_LO_OP_GET_TARGET_BD_ADDR_H = 0x1d,
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BT_LO_OP_MAX
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}BT_CTRL_OPCODE_LOWER,*PBT_CTRL_OPCODE_LOWER;
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#endif /* #if(MP_DRIVER == 1) */
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#endif // #ifndef __INC_MPT_BT_H
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