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MStar hereby reserves the // rights to any and all damages, losses, costs and expenses resulting therefrom. // //////////////////////////////////////////////////////////////////////////////// #ifndef _HAL_DMD_COMMON_H_ #define _HAL_DMD_COMMON_H_ #define MBRegBase 0x112600UL //Demod MailBox #define VDMcuBase 0x103400UL //DmdMCU51 (40-4F) #define DMDMcuBase 0x103480UL #define XDMIU_REG_BASE 0x1d00 #define BACKEND_REG_BASE 0x1f00 #define TOP_REG_BASE 0x2000 #define TDP_REG_BASE 0x2100 #define FDP_REG_BASE 0x2200 #define ISDBT_FDPE_REG_BASE 0x1600 #define FEC_REG_BASE 0x2300 #define TDF_REG_BASE 0x2800 #define TDFE_REG_BASE 0x2900 #define TDFE2_REG_BASE 0x2a00 #define DTOP_REG_BASE 0x2e00 #define T2TDP_REG_BASE 0x3000 #define T2FDP_REG_BASE 0x3100 #define T2FEC_REG_BASE 0x3300 #define DVBTM_REG_BASE 0x3400 #define T2L1_REG_BASE 0x2b00 #define T2SNR_REG_BASE 0x2c00 #define T2DJB_REG_BASE 0x2d00 #define REG_CMD_CTRL MBRegBase + 0x1C #define REG_DTA_CTRL MBRegBase + 0x1D #define REG_CMD_ADDR MBRegBase + 0x1E #define REG_CMD_DATA MBRegBase + 0x1F #define _REG_START REG_CMD_CTRL #define _REG_END REG_CMD_CTRL #define _REG_DRQ REG_DTA_CTRL #define _REG_FSM REG_CMD_CTRL #define _REG_ERR REG_DTA_CTRL #define _BIT_START ((BIT_(1))) #define _BIT_END ((BIT_(0))) #define _BIT_DRQ ((BIT_(0))) #define _BIT_FSM ((BIT_(3))) #define _BIT_ERR ((BIT_(7))) typedef struct _s_MDRV_DMD_INTERFACE_FUNCTION { MS_BOOL (*MDrv_DMD_WriteReg)(MS_U32 u32Reg, MS_U8 u8Value); MS_BOOL (*MDrv_DMD_ReadReg)(MS_U32 u32Reg, MS_U8 *u8Value); MS_BOOL (*MDrv_DMD_WriteRegs)(MS_U32 u32Reg, MS_U8 *u8Value, MS_U8 u8Length); MS_BOOL (*MDrv_DMD_I2C_Channel_Change)(MS_U8 ch_num); MS_BOOL (*MDrv_DMD_I2C_Channel_Set)(MS_U8 ch_num); float (*Log10Approx)(float flt_x); }s_MDRV_DMD_INTERFACE_FUNCTION; MS_BOOL HAL_DMD_RegInit (void); MS_U8 HAL_DMD_RIU_ReadByte(MS_U32 u32Addr); MS_U8 HAL_DMD_RIU_ReadRegBit(MS_U32 u32Addr, MS_U8 u8Mask); MS_U16 HAL_DMD_RIU_Read2Byte(MS_U32 u32Addr); void HAL_DMD_RIU_WriteByte(MS_U32 u32Addr, MS_U8 u8Value); void HAL_DMD_RIU_WriteRegBit(MS_U32 u32Addr, MS_BOOL bEnable, MS_U8 u8Mask); void HAL_DMD_RIU_WriteByteMask(MS_U32 u32Addr, MS_U8 u8Value, MS_U8 u8Mask); void HAL_DMD_RIU_Write2Byte(MS_U32 u32Addr, MS_U16 u16Value); //waiting add MS_BOOL HAL_DMD_IFAGC_RegRead(MS_U8 *ifagc_reg, MS_U8 *ifagc_reg_lsb, MS_U16 *ifagc_err); /* MS_BOOL HAL_DMD_GetRFLevel(float *fRFPowerDbmResult, float fRFPowerDbm, MS_U8 u8SarValue, DMD_RFAGC_SSI *pRfagcSsi, MS_U16 u16RfagcSsi_Size, DMD_IFAGC_SSI *pIfagcSsi_HiRef, MS_U16 u16IfagcSsi_HiRef_Size, DMD_IFAGC_SSI *pIfagcSsi_LoRef, MS_U16 u16IfagcSsi_LoRef_Size, DMD_IFAGC_ERR *pIfagcErr_LoRef, MS_U16 u16IfagcErr_LoRef_Size, DMD_IFAGC_ERR *pIfagcErr_HiRef, MS_U16 u16IfagcErr_HiRef_Size); */ void HAL_DMD_GetNordigSSI(float fPrel, MS_U16 *strength); void HAL_DMD_IFAGC_TS_Tristate(MS_BOOL bEnable); void HAL_DMD_TS1_Tristate(MS_BOOL bEnable); MS_BOOL HAL_DMD_TS_GetClockRate(float *fTS_CLK); void HAL_DMD_RFAGC_Tristate(MS_BOOL bEnable); void HAL_DMD_IFAGC_Tristate(MS_BOOL bEnable); MS_BOOL HAL_DMD_ADC_IQ_Switch(MS_U8 u8ADCIQMode, MS_U8 u8PadSel, MS_BOOL bPGAEnable, MS_U8 u8PGAGain); MS_BOOL HAL_DMD_TSO_Clk_Control(MS_U8 *u8cmd_array); //float Log10Approx(float flt_x); MS_U8 HAL_DMD_IIC_ReadByte(MS_U16 u16SlaveAddr, MS_U32 u32Addr, MS_U8 *pu8Data); MS_U8 HAL_DMD_IIC_WriteByte(MS_U16 u16SlaveAddr, MS_U32 u32Addr, MS_U8 u8Data); MS_U8 HAL_DMD_IIC_WriteBytes(MS_U16 u16SlaveAddr, MS_U32 u32Addr, MS_U8 *u8Data, MS_U8 u8Len); MS_BOOL HAL_DMD_I2C_Channel_Change(MS_U16 u16SlaveAddr, MS_U8 ch_num); MS_BOOL HAL_DMD_I2C_Channel_Set(MS_U16 u16SlaveAddr, MS_U8 ch_num); #endif