mirror of https://github.com/OpenIPC/firmware.git
375 lines
10 KiB
C
375 lines
10 KiB
C
#include "xm_type.h"
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#include "xm_comm_isp.h"
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#include "xm_comm_sns.h"
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#include "xm_sns_ctrl.h"
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#include "mpi_isp.h"
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#include "mpi_ae.h"
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#include "mpi_awb.h"
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#include "xm_awb_comm.h"
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#include "xm_print.h"
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#include "XAx_cmos.h"
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#define STATIC static
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extern GAIN_MODE_DT gstGainModeDt;
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extern const ISP_CMOS_GAMMA_S gstIspGamma;
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extern XM_VOID XM_MPI_ISP_Memset(XM_U8 *pu8Addr,XM_U8 u8Ch, XM_U32 u32Num);
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#define HD3MP_25P_LINES (1584)
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static const ISP_CMOS_AGC_TABLE_S g_stIspAgcTable = {
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/* bvalid */
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1,
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/* 100, 200, 400, 800, 1600, 3200, 6400, 12800; 100, 200, 400, 800, 1600, 3200, 6400, 12800 */
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/* sharpen_D H */
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{0x30,0x2E,0x28,0x20,0x1c,0x10,0x04,0x04,0x04,0x04,0x04,0x04,0x04,0x04,0x04,0x04},
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/* sharpen_Ud M */
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{0x2E,0x2A,0x28,0x24,0x22,0x14,0x08,0x08,0x08,0x08,0x08,0x08,0x08,0x08,0x08,0x08},
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/* sharpen_Kd */
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{0x3E,0x3C,0x38,0x30,0x28,0x10,0x04,0x04,0x04,0x04,0x04,0x04,0x04,0x04,0x04,0x04},
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/* snr_thresh 2DNr */
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{0x00,0x01,0x06,0x08,0x18,0x30,0x40,0x40,0x48,0x48,0x48,0x48,0x48,0x48,0x48,0x48},
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/* snr_thresh 3DNr Tf */
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{0x02,0x04,0x06,0x08,0x10,0x14,0x16,0x18,0x1C,0x1C,0x1C,0x1C,0x1C,0x1C,0x1C,0x1C},
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/* snr_thresh 3DNr Sf */
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{0x01,0x02,0x08,0x0c,0x12,0x28,0x40,0x40,0x40,0x40,0x40,0x40,0x40,0x40,0x40,0x40},
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/* DyDpc_thresh */
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{0xB8,0xC0,0xD0,0xD4,0xD8,0xDC,0xE0,0xE0,0xF0,0xF0,0xF0,0xF0,0xF0,0xF0,0xF0,0xF0},
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/* saturation_strength */
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{0xA0,0xA0,0x9A,0x90,0x88,0x78,0x50,0x50,0x50,0x10,0x10,0x10,0x10,0x10,0x10,0x10},
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/* Blc */
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{0x46,0x46,0x46,0x46,0x46,0x44,0x40,0x40,0x40,0x40,0x40,0x40,0x40,0x40,0x40,0x40},
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/*Y_Tran gamma*/
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{0x34,0x34,0x34,0x35,0x35,0x35,0x30,0x30,0x26,0x26,0x26,0x26,0x26,0x26,0x26,0x26},
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};
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static XM_S32 cmos_get_isp_default(ISP_CMOS_DEFAULT_S *pstDef)
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{
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if (XM_NULL == pstDef)
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{
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ERR("null pointer when get isp default value!\n");
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return -1;
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}
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pstDef->stGamma.bValid = XM_TRUE;
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XM_MPI_ISP_Memncpy((XM_U8*)&pstDef->stGamma, (XM_U8*)&gstIspGamma, sizeof(ISP_CMOS_GAMMA_S));
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XM_MPI_ISP_Memncpy((XM_U8 *)&pstDef->stAgcTbl, (XM_U8 *)&g_stIspAgcTable, sizeof(ISP_CMOS_AGC_TABLE_S));
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return 0;
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}
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static XM_VOID cmos_set_pixel_detect(XM_BOOL bEnable)
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{
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return;
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}
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STATIC XM_S32 cmos_set_mirror_flip(XM_U8 u8Mirror,XM_U8 u8Flip)
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{
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XM_U32 u32Tmp1,u32Tmp2;
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XM_U16 u16OfstH,u16OfsV;
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u32Tmp1 = sensor_read_register(0x3221);
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u32Tmp2 = sensor_read_register(0x3220);
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u16OfstH = 0;
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u16OfsV = 0;
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if(u8Mirror)
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{
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u32Tmp1 |= 0x06;
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}
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else
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{
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u32Tmp1 &= ~0x06;
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}
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if(u8Flip)
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{
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u32Tmp2 |= 0x06;
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}
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else
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{
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u32Tmp2 &= ~0x06;
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}
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sensor_write_register(0x3221, u32Tmp1);
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sensor_write_register(0x3220, u32Tmp2);
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VI_WinSet(1, u8Mirror, u8Flip, u16OfstH, u16OfsV);
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return XM_SUCCESS;
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}
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STATIC XM_VOID cmos_again_calc_table(XM_U32 u32InTimes,AE_SENSOR_GAININFO_S *pstAeSnsGainInfo)
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{
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if(XM_NULL == pstAeSnsGainInfo)
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{
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ERR("null pointer when get ae sensor gain info value!\n");
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return;
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}
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pstAeSnsGainInfo->u32GainDb = u32InTimes;
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pstAeSnsGainInfo->u32SnsTimes = u32InTimes;
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return;
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}
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STATIC XM_VOID cmos_dgain_calc_table(XM_U32 u32InTimes,AE_SENSOR_GAININFO_S *pstAeSnsGainInfo)
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{
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if(XM_NULL == pstAeSnsGainInfo)
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{
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ERR("null pointer when get ae sensor gain info value!\n");
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return;
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}
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pstAeSnsGainInfo->u32GainDb = u32InTimes;
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pstAeSnsGainInfo->u32SnsTimes = u32InTimes;
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return;
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}
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static XM_S32 cmos_get_ae_default(AE_SENSOR_DEFAULT_S *pstAeSnsDft)
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{
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if (XM_NULL == pstAeSnsDft)
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{
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ERR("null pointer when get ae default value!\n");
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return -1;
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}
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pstAeSnsDft->u32FullLinesStd = HD3MP_25P_LINES;
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pstAeSnsDft->u8AeCompensation = 0x39;
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pstAeSnsDft->u32LinesPer500ms = pstAeSnsDft->u32FullLinesStd*25/2;
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pstAeSnsDft->u32FlickerFreq = 0;
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pstAeSnsDft->u32MaxIntTime = pstAeSnsDft->u32FullLinesStd-4;
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pstAeSnsDft->u32MinIntTime = 2;
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pstAeSnsDft->u32MaxAgain = 1984;// 124
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pstAeSnsDft->u32MinAgain = 16;
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pstAeSnsDft->u32MaxDgain = 32;
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pstAeSnsDft->u32MinDgain = 32;
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pstAeSnsDft->u32ISPDgainShift = 8;
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pstAeSnsDft->u32MaxISPDgain= 8 << pstAeSnsDft->u32ISPDgainShift;
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pstAeSnsDft->u32MinISPDgain= 1 << pstAeSnsDft->u32ISPDgainShift;
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pstAeSnsDft->bDelayCfg = XM_FALSE;
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return 0;
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}
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static XM_S32 cmos_get_sensor_max_resolution(ISP_CMOS_SENSOR_MAX_RESOLUTION *pstSensorMaxResolution)
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{
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if (XM_NULL == pstSensorMaxResolution)
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{
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ERR("null pointer when get sensor max resolution \n");
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return -1;
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}
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pstSensorMaxResolution->u32MaxWidth = 2048;
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pstSensorMaxResolution->u32MaxHeight = 1536;
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return 0;
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}
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STATIC XM_VOID cmos_inttime_update(XM_U32 u32IntTime)
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{
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XM_U32 u32Tmp;
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if(gu32ShutNow == u32IntTime) return;
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gu32ShutNow = u32IntTime;
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u32Tmp = ((u32IntTime&0x0ff0)>>4);
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sensor_write_register(0x3e01, u32Tmp);
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sensor_write_register(0x3e02, ((u32IntTime&0xf)<<4));
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return;
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}
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const static XM_U8 gau8Logic_sc3035[3][4] = {
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// 0x3630,0x3635,0x3620,0x3627
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{0xa9, 0x66, 0xd2, 0x02},
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{0x67, 0x64, 0xd2, 0x02},
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{0x67, 0x62, 0x63, 0x06}
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};
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const static XM_U16 gau16LogicAddr[4] = {
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0x3630,0x3635,0x3620,0x3627
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};
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static void gainLogic_sc3035(XM_U32 u32AllGain)
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{
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static XM_U8 su8Idx = 0xFF;//[bit0~bit3]:Vstd [bit4~bit7]:Agc
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XM_U8 u8Idx2,u8i;
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u32AllGain = u32AllGain/64; // *1024->*16
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if(u32AllGain<32)
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u8Idx2 = 0;
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else if(u32AllGain<256)
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u8Idx2 = 1;
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else
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u8Idx2 = 2;
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if( ((su8Idx>>4)&0x0F) != u8Idx2)
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{
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su8Idx = ((u8Idx2&0x0F)<<4);
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for(u8i=0; u8i<4; u8i ++)
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{
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sensor_write_register((XM_U32)gau16LogicAddr[u8i], (XM_U32)gau8Logic_sc3035[u8Idx2][u8i]);
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}
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}
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}
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STATIC XM_VOID cmos_gains_update(XM_U32 u32Again, XM_U32 u32Dgain)
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{
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static XM_U32 su32AGain = 0xFFFFFFF;
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static XM_U32 su32DGain = 0xFFFFFFF;
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XM_U32 u32AllGain;
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u32AllGain = u32Again;
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if((su32AGain != u32Again) || (su32DGain != u32Dgain))
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{
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su32AGain = u32Again;
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su32DGain = u32Dgain;
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// 1. Logic
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gainLogic_sc3035(u32AllGain);
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// 2.GainUpdate
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sensor_write_register(0x3e08, (u32Again>>8)&0xFF);
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sensor_write_register(0x3e09, u32Again&0xFF);
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}
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return;
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}
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/* the function of sensor set fps */
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STATIC XM_VOID cmos_fps_set(XM_U8 u8Fps, AE_SENSOR_DEFAULT_S *pstAeSnsDft)
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{
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XM_U32 u32Tmp;
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switch(u8Fps)
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{
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case 30:
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// Change the frame rate via changing the vertical blanking
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u32Tmp = 2500;
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break;
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case 25:
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default:
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// Change the frame rate via changing the vertical blanking
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u32Tmp = 3000;
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break;
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}
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if(pstAeSnsDft != NULL)
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{
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pstAeSnsDft->u32FullLinesStd = HD3MP_25P_LINES;
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pstAeSnsDft->u32MaxIntTime = pstAeSnsDft->u32FullLinesStd-gu8MaxShutterOfst;
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pstAeSnsDft->u32LinesPer500ms = pstAeSnsDft->u32FullLinesStd * u8Fps / 2;
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}
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u32Tmp = u32Tmp>>1;
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sensor_write_register(0x320c, (u32Tmp>>8)&0xFF);
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sensor_write_register(0x320d, u32Tmp&0xFF);
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return;
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}
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static XM_VOID cmos_slow_framerate_set(XM_U16 u16FullLines, AE_SENSOR_DEFAULT_S *pstAeSnsDft)
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{
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return ;
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static XM_U16 preU16FullLine = 0xffff;
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if(preU16FullLine == u16FullLines)
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return;
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preU16FullLine = u16FullLines;
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u16FullLines = (u16FullLines>=4096)?4000:u16FullLines;
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pstAeSnsDft->u32MaxIntTime = u16FullLines - gu8MaxShutterOfst;
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SysDelay_ms(100);
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if(gu32ShutNow>pstAeSnsDft->u32MaxIntTime)
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{
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cmos_inttime_update(pstAeSnsDft->u32MaxIntTime);
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}
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sensor_write_register(0x320e, (u16FullLines&0xff00)>>8);
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sensor_write_register(0x320f, u16FullLines&0xff);
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XM_MPI_MIPI_RefreshFV(0, (XM_U32)u16FullLines);
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}
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/****************************************************************************
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* AWB
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****************************************************************************/
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static const ISP_COLORMATRIX_AUTO_S g_stAwbCcm =
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{
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5000,
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{
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0x000,356, -135, 35,
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0x000,-59, 327, -12,
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0x000, 5, -145, 396//0x000, -35, -130, 421
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},
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4000,
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{
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0x000,327, -130,59,
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0x000,-70,281,45,
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0x000,-39,-233,528
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},
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2800,
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{
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0x000, 287,-86,55,
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0x000,-87,269,74,
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0x000, -115,-369,740
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}
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};
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static const ISP_AWB_CALIBRATION_V2_S gstAwbCal = {
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{0, 0, 4096, 2602, 3773, 1836, 1107, 4096},
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{4096, 3420, 0, 0, 3625, 2345, 4096, 1355},
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{-1150, -4096, -1687, -4096, -4096, -4096, -2524, -2972},
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213,
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0, 1908, 0, 3281,
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{0, 1073, 1314, 1642, 1752, 1900, 2145, 2166, 3281, 0, 0, 0, 0, 0, 0, 0},
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{2000, 2150, 2800, 4000, 4150, 5000, 6500, 7500, 12000, 0, 0, 0, 0, 0, 0, 0},
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{1386, 1024, 1400, 0}
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};
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static XM_S32 cmos_get_awb_default(AWB_SENSOR_DEFAULT_S *pstAwbSnsDft)
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{
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if(XM_NULL == pstAwbSnsDft)
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{
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ERR("null pointer when get awb default value!\n");
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return XM_FAILURE;
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}
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XM_MPI_ISP_Memset((XM_U8*)pstAwbSnsDft, 0, sizeof(AWB_SENSOR_DEFAULT_S));
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pstAwbSnsDft->pstRbTable = (const AWB_COEF_TABLE_S*)(&gstAwbCal);
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// CCM
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XM_MPI_ISP_Memncpy((XM_U8*)&(pstAwbSnsDft->stCcm), (XM_U8*)&g_stAwbCcm, sizeof(ISP_COLORMATRIX_AUTO_S));
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return XM_SUCCESS;
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}
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XM_S32 cmos_init_sensor_exp_function_sc3035(ISP_SENSOR_EXP_FUNC_S *pstSensorExpFunc)
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{
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// XM_MPI_ISP_Memset((char *)pstSensorExpFunc, 0, sizeof(ISP_SENSOR_EXP_FUNC_S));
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pstSensorExpFunc->pfn_cmos_sensor_init = NULL;
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pstSensorExpFunc->pfn_cmos_get_isp_default = cmos_get_isp_default;//cmos_get_isp_default;
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pstSensorExpFunc->pfn_cmos_set_pixel_detect = cmos_set_pixel_detect;
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pstSensorExpFunc->pfn_cmos_get_sensor_max_resolution = cmos_get_sensor_max_resolution;//cmos_get_sensor_max_resolution;
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pstSensorExpFunc->pfn_cmos_set_mirror_flip = cmos_set_mirror_flip;
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return 0;
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}
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XM_S32 cmos_init_ae_exp_function_sc3035(AE_SENSOR_EXP_FUNC_S *pstExpFuncs)
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{
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// XM_MPI_ISP_Memset((char *)pstExpFuncs, 0, sizeof(AE_SENSOR_EXP_FUNC_S));
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pstExpFuncs->pfn_cmos_fps_get = NULL;
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pstExpFuncs->pfn_cmos_get_ae_default = cmos_get_ae_default;
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pstExpFuncs->pfn_cmos_fps_set = cmos_fps_set;
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pstExpFuncs->pfn_cmos_slow_framerate_set= cmos_slow_framerate_set;
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pstExpFuncs->pfn_cmos_inttime_update = cmos_inttime_update;
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pstExpFuncs->pfn_cmos_gains_update = cmos_gains_update;
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pstExpFuncs->pfn_cmos_again_calc_table = cmos_again_calc_table;
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pstExpFuncs->pfn_cmos_dgain_calc_table = cmos_dgain_calc_table;
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pstExpFuncs->pfn_cmos_shut_calc_table = NULL;
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return 0;
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}
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XM_S32 cmos_init_awb_exp_function_sc3035(AWB_SENSOR_EXP_FUNC_S *pstExpFuncs)
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{
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XM_MPI_ISP_Memset((XM_U8*)pstExpFuncs, 0, sizeof(AWB_SENSOR_EXP_FUNC_S));
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pstExpFuncs->pfn_cmos_get_awb_default = cmos_get_awb_default;
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return 0;
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}
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