#include #include #include "cv4003.h" #include "cv4003_ctrl.h" #include "cv4003_ex.h" #include "xmedia_isp.h" #define CV4003_NAME "CV4003" #define CV4003_SPECS_MAX_NUM 2 #ifdef __linux__ #define CV4003_ISP_DEFAULT_SUPPORT #endif #define CV4003_4M_BIT_RATE_LINEAR 1000 #define CV4003_1M_BIT_RATE_LINEAR 840 #define CV4003_REG_ADDR_STANDBY 0x3000 #define CV4003_RES_IS_1440P(w, h) ((w) == 2560 && (h) == 1440) #define CV4003_RES_IS_720P(w, h) ((w) == 1280 && (h) == 720) #define CV4003_ERR_MODE_PRINT(sns_attr) \ do { \ SENSOR_TRACE(MODULE_DBG_ERR, "Not support! Width:%d, Height:%d, WDRMode:%d\n", sns_attr->width, \ sns_attr->height, sns_attr->wdr_mode); \ } while (0) SENSOR_PRIORITY_DATA sensor_context *g_cv4003_ctx[XMEDIA_SENSOR_DEV_MAX_NUM] = { XMEDIA_NULL }; #define CV4003_SET_CONTEXT(dev, sns_ctx) g_cv4003_ctx[dev] = sns_ctx #define CV4003_GET_CONTEXT(dev, sns_ctx) sns_ctx = g_cv4003_ctx[dev] SENSOR_PRIORITY_DATA static xmedia_s32 g_cv4003_dev_map[XMEDIA_SENSOR_DEV_MAX_NUM] = { [0 ... XMEDIA_SENSOR_DEV_MAX_NUM - 1] = SENSOR_DEV_INVALID }; static xmedia_u32 g_cv4003_again[XMEDIA_SENSOR_DEV_MAX_NUM] = { 0 }; static xmedia_u16 g_cv4003_dgain[XMEDIA_SENSOR_DEV_MAX_NUM] = { 0 }; static xmedia_u16 g_cv4003_isp_dgain[XMEDIA_SENSOR_DEV_MAX_NUM] = { 0 }; static xmedia_u16 g_cv4003_init_time[XMEDIA_SENSOR_DEV_MAX_NUM] = { 0 }; static xmedia_u32 g_cv4003_exposure[XMEDIA_SENSOR_DEV_MAX_NUM] = { 0 }; static xmedia_u16 g_cv4003_sample_r_gain[XMEDIA_SENSOR_DEV_MAX_NUM] = { 0 }; static xmedia_u16 g_cv4003_sample_b_gain[XMEDIA_SENSOR_DEV_MAX_NUM] = { 0 }; static xmedia_u16 g_cv4003_wb_gain[XMEDIA_SENSOR_DEV_MAX_NUM][SENSOR_AWB_CHN_GIAN_MAX_NUM] = { { 0 } }; // awb static param for Fuji Lens New IR_Cut #define CV4003_CALIBRATE_STATIC_TEMP 5000 #define CV4003_CALIBRATE_STATIC_WB_R_GAIN 509 #define CV4003_CALIBRATE_STATIC_WB_GR_GAIN 256 #define CV4003_CALIBRATE_STATIC_WB_GB_GAIN 256 #define CV4003_CALIBRATE_STATIC_WB_B_GAIN 532 // Calibration results for Auto WB Planck #define CV4003_CALIBRATE_AWB_P1 66 #define CV4003_CALIBRATE_AWB_P2 44 #define CV4003_CALIBRATE_AWB_Q1 -146 #define CV4003_CALIBRATE_AWB_A1 221006 #define CV4003_CALIBRATE_AWB_B1 128 #define CV4003_CALIBRATE_AWB_C1 -168531 // Rgain and Bgain of the golden sample #define CV4003_GOLDEN_RGAIN 0 #define CV4003_GOLDEN_BGAIN 0 #define CV4003_FULL_LINES_MAX 0xFFFFF #define CV4003_GAIN_NODE_NUM 249 static xmedia_u32 g_cv4003_again_table[CV4003_GAIN_NODE_NUM] = { 1024, 1024, 1024, 1024, 1040, 1040, 1040, 1040, 1056, 1056, 1056, 1056, 1072, 1072, 1072, 1072, 1088, 1088, 1088, 1104, 1104, 1104, 1120, 1120, 1120, 1120, 1136, 1136, 1136, 1152, 1152, 1152, 1168, 1168, 1168, 1184, 1184, 1184, 1200, 1200, 1200, 1216, 1216, 1216, 1232, 1232, 1248, 1248, 1248, 1264, 1264, 1264, 1280, 1280, 1296, 1296, 1296, 1312, 1312, 1328, 1328, 1344, 1344, 1344, 1360, 1360, 1376, 1376, 1392, 1392, 1408, 1408, 1424, 1424, 1440, 1440, 1456, 1456, 1472, 1472, 1488, 1488, 1504, 1504, 1520, 1520, 1536, 1536, 1552, 1568, 1568, 1584, 1584, 1600, 1616, 1616, 1632, 1648, 1648, 1664, 1680, 1680, 1696, 1712, 1712, 1728, 1744, 1744, 1760, 1776, 1792, 1808, 1808, 1824, 1840, 1856, 1872, 1872, 1888, 1904, 1920, 1936, 1952, 1968, 1984, 2000, 2016, 2016, 2048, 2064, 2080, 2096, 2112, 2128, 2144, 2160, 2176, 2192, 2208, 2240, 2256, 2272, 2288, 2304, 2336, 2352, 2368, 2400, 2416, 2448, 2464, 2496, 2512, 2544, 2560, 2592, 2608, 2640, 2672, 2688, 2720, 2752, 2784, 2816, 2848, 2880, 2912, 2944, 2976, 3008, 3040, 3072, 3120, 3152, 3184, 3232, 3264, 3312, 3360, 3392, 3440, 3488, 3536, 3584, 3632, 3680, 3744, 3792, 3840, 3904, 3968, 4032, 4096, 4160, 4224, 4288, 4368, 4432, 4512, 4592, 4672, 4752, 4848, 4944, 5040, 5136, 5232, 5344, 5456, 5568, 5696, 5824, 5952, 6080, 6240, 6384, 6544, 6720, 6896, 7072, 7280, 7488, 7696, 7936, 8192, 8448, 8736, 9024, 9360, 9696, 10080, 10480, 10912, 11392, 11904, 12480, 13104, 13792, 14560, 15408, 16384, 17472, 18720, 20160, 21840, 23824, 26208, 29120, 32768 }; SENSOR_PRIORITY_RODATA static const xmedia_sensor_property g_cv4003_property[CV4003_SPECS_MAX_NUM] = { { // width, height, wdr_mode 2560, 1440, XMEDIA_VIDEO_WDR_MODE_NONE, // wdr_format, max_fps, input_clock XMEDIA_VIDEO_WDR_FMT_VC, 30, XMEDIA_SENSOR_CLOCK_FREQ_24MHZ, // output_intf, pixel_format, bit_width XMEDIA_INTF_TYPE_MIPI_CSI, XMEDIA_VIDEO_PIXEL_FMT_RAW, XMEDIA_VIDEO_DATA_WIDTH_10, // bayer_format - mirror&flip /mirror /flip /normal { XMEDIA_VIDEO_BAYER_FMT_BGGR, XMEDIA_VIDEO_BAYER_FMT_GRBG, XMEDIA_VIDEO_BAYER_FMT_GBRG, XMEDIA_VIDEO_BAYER_FMT_RGGB }, // vcid, bit_rate (TODO: bit_rate to be confirmed) { 0 }, CV4003_4M_BIT_RATE_LINEAR, }, { // width, height, wdr_mode 1280, 720, XMEDIA_VIDEO_WDR_MODE_NONE, // wdr_format, max_fps, input_clock XMEDIA_VIDEO_WDR_FMT_VC, 25, XMEDIA_SENSOR_CLOCK_FREQ_24MHZ, // output_intf, pixel_format, bit_width XMEDIA_INTF_TYPE_MIPI_CSI, XMEDIA_VIDEO_PIXEL_FMT_RAW, XMEDIA_VIDEO_DATA_WIDTH_10, // bayer_format - mirror&flip /mirror /flip /normal { XMEDIA_VIDEO_BAYER_FMT_BGGR, XMEDIA_VIDEO_BAYER_FMT_GRBG, XMEDIA_VIDEO_BAYER_FMT_GBRG, XMEDIA_VIDEO_BAYER_FMT_RGGB }, // vcid, bit_rate (TODO: bit_rate to be confirmed) { 0 }, CV4003_1M_BIT_RATE_LINEAR, }, }; SENSOR_PRIORITY_RODATA static const xmedia_sensor_capability g_cv4003_capability = { .max_width = 2560, .max_height = 1440, .max_fps = 30, .output_intf = XMEDIA_INTF_TYPE_MIPI_CSI, .init_mclk = XMEDIA_SENSOR_CLOCK_FREQ_24MHZ, .wdr_mode = XMEDIA_VIDEO_WDR_MODE_NONE, .wdr_format = XMEDIA_VIDEO_WDR_FMT_VC, .bit_width = XMEDIA_VIDEO_DATA_WIDTH_10, .reset_time = 200, // TODO: 待后续确认复位所需时间 .slave_mode_supported = XMEDIA_FALSE, .mipi_lanes_supported = XMEDIA_SENSOR_MIPI_LANES_2L, .standby_info = { .standby_supported = XMEDIA_TRUE, .addr_byte_num = CV4003_ADDR_BYTE, .data_byte_num = CV4003_DATA_BYTE, .standby_reg_num = 1, .standby_reg_addr = { CV4003_REG_ADDR_STANDBY }, .standby_reg_data = { 0x01 }, .resume_reg_num = 1, .resume_reg_addr = { CV4003_REG_ADDR_STANDBY }, .resume_reg_data = { 0x00 }, }, }; SENSOR_PRIORITY_FUNC static xmedia_s32 cv4003_ctx_init(xmedia_u32 dev) { sensor_context *cv4003_ctx = XMEDIA_NULL; CV4003_GET_CONTEXT(dev, cv4003_ctx); if (cv4003_ctx != XMEDIA_NULL) { SENSOR_TRACE(MODULE_DBG_ERR, " sensor-[%d] ctx already malloc!\n", dev); return XMEDIA_ERRCODE_EXIST; } cv4003_ctx = (sensor_context *)malloc(sizeof(sensor_context)); if (cv4003_ctx == XMEDIA_NULL) { SENSOR_TRACE(MODULE_DBG_ERR, " sensor-[%d] ctx malloc memory failed!\n", dev); return XMEDIA_ERRCODE_NOT_ENOUGH_MEMORY; } memset(cv4003_ctx, 0, sizeof(sensor_context)); cv4003_ctx->i2c_addr = CV4003_I2C_ADDR; cv4003_ctx->lanes = XMEDIA_SENSOR_MIPI_LANES_2L; cv4003_ctx->work_mode = XMEDIA_SENSOR_WORK_MODE_NORMAL; cv4003_ctx->bus_info.i2c_dev = SENSOR_I2C_INVALID; cv4003_ctx->size.width = 2560; cv4003_ctx->size.height = 1440; cv4003_ctx->fps = g_cv4003_property[0].max_fps; cv4003_ctx->wdr_mode = XMEDIA_VIDEO_WDR_MODE_NONE; cv4003_ctx->img_mode = CV4003_4M_LINEAR_MODE; cv4003_ctx->fl_std = CV4003_VMAX_4M_LINEAR; cv4003_ctx->fl[SENSOR_CUR_FRAME] = CV4003_VMAX_4M_LINEAR; cv4003_ctx->fl[SENSOR_PRE_FRAME] = CV4003_VMAX_4M_LINEAR; CV4003_SET_CONTEXT(dev, cv4003_ctx); return XMEDIA_SUCCESS; } static xmedia_void cv4003_ctx_exit(xmedia_u32 dev) { sensor_context *cv4003_ctx = XMEDIA_NULL; CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_FREE(cv4003_ctx); CV4003_SET_CONTEXT(dev, XMEDIA_NULL); } SENSOR_PRIORITY_FUNC static xmedia_s32 cv4003_get_property(xmedia_u32 dev, xmedia_sensor_property *property) { xmedia_u8 i; sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(property); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); for (i = 0; i < CV4003_SPECS_MAX_NUM; i++) { if (g_cv4003_property[i].width == cv4003_ctx->size.width && g_cv4003_property[i].height == cv4003_ctx->size.height && g_cv4003_property[i].wdr_mode == cv4003_ctx->wdr_mode) { memcpy(property, &g_cv4003_property[i], sizeof(xmedia_sensor_property)); return XMEDIA_SUCCESS; } } SENSOR_TRACE(MODULE_DBG_ERR, "Not support! Width: %d, Height: %d, Wdr_mode: %d !\n", cv4003_ctx->size.width, cv4003_ctx->size.height, cv4003_ctx->wdr_mode); return XMEDIA_ERRCODE_NOT_SUPPORT; } static xmedia_s32 cv4003_set_work_mode(xmedia_u32 dev, xmedia_sensor_work_mode work_mode) { sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); if (work_mode != XMEDIA_SENSOR_WORK_MODE_NORMAL) { SENSOR_TRACE(MODULE_DBG_ERR, "Sensor work mode param invalid!\n"); return XMEDIA_ERRCODE_NOT_SUPPORT; } cv4003_ctx->work_mode = work_mode; return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_set_mipi_lanes(xmedia_u32 dev, xmedia_sensor_mipi_lanes mipi_lanes) { sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); if (mipi_lanes != XMEDIA_SENSOR_MIPI_LANES_2L) { SENSOR_TRACE(MODULE_DBG_ERR, "No support mipi lanes [%d]! \n", mipi_lanes); return XMEDIA_ERRCODE_NOT_SUPPORT; } cv4003_ctx->lanes = mipi_lanes; return XMEDIA_SUCCESS; } SENSOR_PRIORITY_FUNC static xmedia_s32 cv4003_set_bus_info(xmedia_u32 dev, const xmedia_sensor_commbus *sns_bus_info) { sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(sns_bus_info); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); if (sns_bus_info->type == XMEDIA_SENSOR_BUS_TYPE_I2C) { cv4003_ctx->bus_info.i2c_dev = sns_bus_info->i2c_dev; } else if (sns_bus_info->type == XMEDIA_SENSOR_BUS_TYPE_SPI) { cv4003_ctx->bus_info.spi_info.spi_dev = sns_bus_info->spi_info.spi_dev; cv4003_ctx->bus_info.spi_info.spi_cs = sns_bus_info->spi_info.spi_cs; } else { SENSOR_TRACE(MODULE_DBG_ERR, "Not support [%d], the value of bus type is {%d-i2c, %d-spi}, please check input type!\n", sns_bus_info->type, XMEDIA_SENSOR_BUS_TYPE_I2C, XMEDIA_SENSOR_BUS_TYPE_SPI); return XMEDIA_ERRCODE_NOT_SUPPORT; } return XMEDIA_SUCCESS; } // one i2c dev shared by multiple sensors static xmedia_s32 cv4003_set_dev_addr(xmedia_u32 dev, xmedia_u32 slave_addr) { xmedia_s32 ret; sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); cv4003_ctx->i2c_addr = slave_addr; ret = cv4003_set_slave_addr(dev, slave_addr); SENSOR_CHECK_RET_RETURN(ret); return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_get_dev_addr(xmedia_u32 dev, xmedia_u32 *slave_addr) { sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(slave_addr); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); *slave_addr = cv4003_ctx->i2c_addr; return XMEDIA_SUCCESS; } SENSOR_PRIORITY_FUNC static xmedia_s32 cv4003_init(xmedia_u32 dev, xmedia_sensor_init_mode init_mode) { xmedia_s32 ret; sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); cv4003_ctx->init_mode = init_mode; ret = cv4003_i2c_init(dev, cv4003_ctx->bus_info.i2c_dev, cv4003_ctx->i2c_addr); SENSOR_CHECK_RET_RETURN(ret); cv4003_ctx->init = XMEDIA_TRUE; #ifdef USE_PREROLL_INFO ret = cv4003_preroll_720p_write_cis2psram_init(dev); SENSOR_CHECK_RET_RETURN(ret); #endif return XMEDIA_SUCCESS; } SENSOR_PRIORITY_FUNC static xmedia_s32 cv4003_exit(xmedia_u32 dev) { xmedia_s32 ret; sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); ret = cv4003_i2c_exit(dev); SENSOR_CHECK_RET_RETURN(ret); cv4003_ctx->init = XMEDIA_FALSE; return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_mirror(xmedia_u32 dev, xmedia_bool mirror_en) { xmedia_s32 ret; sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); cv4003_ctx->mirror_en = mirror_en; ret = cv4003_set_mirror_flip(dev, mirror_en, cv4003_ctx->flip_en); SENSOR_CHECK_RET_RETURN(ret); return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_flip(xmedia_u32 dev, xmedia_bool flip_en) { xmedia_s32 ret; sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); cv4003_ctx->flip_en = flip_en; ret = cv4003_set_mirror_flip(dev, cv4003_ctx->mirror_en, flip_en); SENSOR_CHECK_RET_RETURN(ret); return XMEDIA_SUCCESS; } SENSOR_PRIORITY_FUNC static xmedia_s32 cv4003_set_image_mode(sensor_context *cv4003_ctx, xmedia_u8 *image_mode, const xmedia_sensor_attr *sns_attr) { SENSOR_CHECK_PTR_RETURN(image_mode); if (cv4003_ctx->wdr_mode == XMEDIA_VIDEO_WDR_MODE_NONE) { if (CV4003_RES_IS_1440P(sns_attr->width, sns_attr->height)) { *image_mode = CV4003_4M_LINEAR_MODE; cv4003_ctx->fl_std = CV4003_VMAX_4M_LINEAR; } else if(CV4003_RES_IS_720P(sns_attr->width, sns_attr->height)){ *image_mode = CV4003_1M_LINEAR_MODE; cv4003_ctx->fl_std = CV4003_VMAX_1M_LINEAR; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].reg_num = 0; }else { CV4003_ERR_MODE_PRINT(sns_attr); return XMEDIA_ERRCODE_NOT_SUPPORT; } } else { CV4003_ERR_MODE_PRINT(sns_attr); return XMEDIA_ERRCODE_NOT_SUPPORT; } cv4003_ctx->size.width = sns_attr->width; cv4003_ctx->size.height = sns_attr->height; return XMEDIA_SUCCESS; } SENSOR_PRIORITY_FUNC static xmedia_s32 cv4003_set_wdr_mode(xmedia_u32 dev, xmedia_u8 wdr_mode) { sensor_context *cv4003_ctx = XMEDIA_NULL; CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); switch (wdr_mode) { case XMEDIA_VIDEO_WDR_MODE_NONE: cv4003_ctx->wdr_mode = XMEDIA_VIDEO_WDR_MODE_NONE; SENSOR_PRINT("linear mode\n"); break; default: SENSOR_TRACE(MODULE_DBG_ERR, "NOT support this mode!\n"); return XMEDIA_ERRCODE_NOT_SUPPORT; } memset(cv4003_ctx->wdr_int_time, 0, sizeof(cv4003_ctx->wdr_int_time)); return XMEDIA_SUCCESS; } SENSOR_PRIORITY_FUNC static xmedia_void cv4003_init_common_reg_info(sensor_context *cv4003_ctx) { cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_EXP_L].delay_frame_num = 2; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_EXP_L].reg_addr = CV4003_REG_ADDR_EXP_L; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_EXP_M].delay_frame_num = 2; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_EXP_M].reg_addr = CV4003_REG_ADDR_EXP_M; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_EXP_H].delay_frame_num = 2; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_EXP_H].reg_addr = CV4003_REG_ADDR_EXP_H; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_AGAIN].delay_frame_num = 2; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_AGAIN].reg_addr = CV4003_REG_ADDR_AGAIN; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_DGAIN_L].delay_frame_num = 2; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_DGAIN_L].reg_addr = CV4003_REG_ADDR_DGAIN_L; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_DGAIN_H].delay_frame_num = 2; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_DGAIN_H].reg_addr = CV4003_REG_ADDR_DGAIN_H; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_VMAX_L].delay_frame_num = 2; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_VMAX_L].reg_addr = CV4003_REG_ADDR_VMAX_L; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_VMAX_M].delay_frame_num = 2; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_VMAX_M].reg_addr = CV4003_REG_ADDR_VMAX_M; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_VMAX_H].delay_frame_num = 2; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_VMAX_H].reg_addr = CV4003_REG_ADDR_VMAX_H; return; } SENSOR_PRIORITY_FUNC static xmedia_s32 cv4003_init_reg_info(xmedia_u32 dev) { xmedia_u32 i; sensor_context *cv4003_ctx = XMEDIA_NULL; CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); cv4003_ctx->regs_info[SENSOR_CUR_FRAME].com_bus.i2c_dev = cv4003_ctx->bus_info.i2c_dev; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].cfg_to_valid_delay_max = 2; // maximum delay valid frames cv4003_ctx->regs_info[SENSOR_CUR_FRAME].reg_num = CV4003_REG_MAX_NUM; for (i = 0; i < cv4003_ctx->regs_info[SENSOR_CUR_FRAME].reg_num; i++) { cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[i].update = XMEDIA_TRUE; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[i].dev_addr = cv4003_ctx->i2c_addr; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[i].addr_byte_num = CV4003_ADDR_BYTE; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[i].data_byte_num = CV4003_DATA_BYTE; } // init general register - The registers should init both in linear and 2to1 wdr mode cv4003_init_common_reg_info(cv4003_ctx); return XMEDIA_SUCCESS; } SENSOR_PRIORITY_FUNC static xmedia_s32 cv4003_set_attr(xmedia_u32 dev, const xmedia_sensor_attr *sns_attr) { xmedia_s32 ret; sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(sns_attr); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); // Set wdr mode ret = cv4003_set_wdr_mode(dev, sns_attr->wdr_mode); SENSOR_CHECK_RET_RETURN(ret); // Set image mode ret = cv4003_set_image_mode(cv4003_ctx, &cv4003_ctx->img_mode, sns_attr); SENSOR_CHECK_RET_RETURN(ret); cv4003_ctx->fl[SENSOR_CUR_FRAME] = cv4003_ctx->fl_std; cv4003_ctx->fl[SENSOR_PRE_FRAME] = cv4003_ctx->fl[SENSOR_CUR_FRAME]; ret = cv4003_init_reg_info(dev); SENSOR_CHECK_RET_RETURN(ret); return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_get_isp_default(xmedia_u32 dev, xmedia_sensor_isp_default *isp_default) { SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(isp_default); sensor_context *cv4003_ctx = XMEDIA_NULL; CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); memset(isp_default, 0, sizeof(xmedia_sensor_isp_default)); #ifdef CV4003_ISP_DEFAULT_SUPPORT isp_default->blc = XMEDIA_NULL; isp_default->bnr = &g_cv4003_bnr; isp_default->clut_attr = XMEDIA_NULL; isp_default->crosstalk = XMEDIA_NULL; isp_default->csc = XMEDIA_NULL; isp_default->dehaze = XMEDIA_NULL; isp_default->demosaic = XMEDIA_NULL; isp_default->dpc_dynamic = XMEDIA_NULL; isp_default->dpc_static = XMEDIA_NULL; isp_default->expander = XMEDIA_NULL; isp_default->fpn = XMEDIA_NULL; isp_default->gamma = XMEDIA_NULL; isp_default->gcac = XMEDIA_NULL; isp_default->hlc = XMEDIA_NULL; isp_default->lce = XMEDIA_NULL; isp_default->mlsc_attr = XMEDIA_NULL; isp_default->mlsc_lut = XMEDIA_NULL; isp_default->radial_crop = XMEDIA_NULL; isp_default->rgbir = XMEDIA_NULL; isp_default->rlsc_attr = XMEDIA_NULL; isp_default->rlsc_lut = XMEDIA_NULL; isp_default->sharpen = XMEDIA_NULL; isp_default->stnr = XMEDIA_NULL; isp_default->wdr = XMEDIA_NULL; switch(cv4003_ctx->wdr_mode) { case XMEDIA_VIDEO_WDR_MODE_NONE: isp_default->drc = XMEDIA_NULL; break; case XMEDIA_VIDEO_WDR_MODE_2TO1_LINE: isp_default->drc = XMEDIA_NULL; break; default: SENSOR_TRACE(MODULE_DBG_ERR, "Not support mode: %d\n", cv4003_ctx->wdr_mode); return XMEDIA_ERRCODE_NOT_SUPPORT; } return XMEDIA_SUCCESS; #else SENSOR_TRACE(MODULE_DBG_WARN, "Not support isp getting default param from cv4003!\n "); return XMEDIA_ERRCODE_NOT_SUPPORT; #endif } static xmedia_s32 cv4003_get_isp_black_level(xmedia_u32 dev, xmedia_sensor_black_level *black_level) { sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(black_level); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); // Don't need to update black level when iso change black_level->update = XMEDIA_FALSE; if (cv4003_ctx->wdr_mode == XMEDIA_VIDEO_WDR_MODE_NONE) { black_level->black_level[XMEDIA_SENSOR_BAYER_CHN_R] = 256; black_level->black_level[XMEDIA_SENSOR_BAYER_CHN_GR] = 256; black_level->black_level[XMEDIA_SENSOR_BAYER_CHN_GB] = 256; black_level->black_level[XMEDIA_SENSOR_BAYER_CHN_B] = 256; } return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_get_reg_info(xmedia_u32 dev, xmedia_sensor_regs_info *sns_regs_info) { xmedia_s32 i; sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(sns_regs_info); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); for (i = 0; i < cv4003_ctx->regs_info[SENSOR_CUR_FRAME].reg_num; i++) { if (cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[i].data == cv4003_ctx->regs_info[SENSOR_PRE_FRAME].i2c_data[i].data) { cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[i].update = XMEDIA_FALSE; } else { cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[i].update = XMEDIA_TRUE; } } memcpy(sns_regs_info, &cv4003_ctx->regs_info[SENSOR_CUR_FRAME], sizeof(xmedia_sensor_regs_info)); memcpy(&cv4003_ctx->regs_info[SENSOR_PRE_FRAME], &cv4003_ctx->regs_info[SENSOR_CUR_FRAME], sizeof(xmedia_sensor_regs_info)); cv4003_ctx->fl[SENSOR_PRE_FRAME] = cv4003_ctx->fl[SENSOR_CUR_FRAME]; return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_get_bayer_pattern(xmedia_u32 dev, xmedia_video_bayer_format *bayer_pattern) { xmedia_u8 i; xmedia_sensor_mirror_flip_type type; sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(bayer_pattern); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); if (cv4003_ctx->mirror_en && cv4003_ctx->flip_en) { type = XMEDIA_SENSOR_MIRROR_FLIP_TYPE_MIRROR_FLIP; } else if (cv4003_ctx->mirror_en && (!cv4003_ctx->flip_en)) { type = XMEDIA_SENSOR_MIRROR_FLIP_TYPE_MIRROR; } else if ((!cv4003_ctx->mirror_en) && cv4003_ctx->flip_en) { type = XMEDIA_SENSOR_MIRROR_FLIP_TYPE_FLIP; } else { type = XMEDIA_SENSOR_MIRROR_FLIP_TYPE_NORMAL; } for (i = 0; i < CV4003_SPECS_MAX_NUM; i++) { if (g_cv4003_property[i].width == cv4003_ctx->size.width && g_cv4003_property[i].height == cv4003_ctx->size.height && g_cv4003_property[i].wdr_mode == cv4003_ctx->wdr_mode) { *bayer_pattern = g_cv4003_property[i].bayer_format[type]; break; } } if (i >= CV4003_SPECS_MAX_NUM) { *bayer_pattern = XMEDIA_VIDEO_BAYER_MAX; SENSOR_TRACE(MODULE_DBG_ERR, "ERR! Get bayer pattern failed!\n"); return XMEDIA_ERRCODE_NOT_SUPPORT; } return XMEDIA_SUCCESS; } SENSOR_PRIORITY_FUNC static xmedia_s32 cv4003_get_capability(xmedia_sensor_capability *capability) { SENSOR_CHECK_PTR_RETURN(capability); memcpy(capability, &g_cv4003_capability, sizeof(xmedia_sensor_capability)); return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_set_ae_wdr_attr(xmedia_u32 dev, xmedia_isp_ae_wdr_mode ae_wdr_mode) { sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); if (ae_wdr_mode >= XMEDIA_ISP_AE_WDR_MODE_MAX) { SENSOR_TRACE(MODULE_DBG_ERR, "Not supported AE wdr mode!\n"); return XMEDIA_ERRCODE_NOT_SUPPORT; } cv4003_ctx->ae_wdr_mode = ae_wdr_mode; return XMEDIA_SUCCESS; } // 用户期望第一帧生效的参数,且AE/AWB头几帧计算的基础 static xmedia_s32 cv4003_set_init_param(xmedia_u32 dev, const xmedia_sensor_init_param *init_param) { SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(init_param); g_cv4003_again[dev] = init_param->again; g_cv4003_dgain[dev] = init_param->dgain; g_cv4003_isp_dgain[dev] = init_param->ispdgain; g_cv4003_init_time[dev] = init_param->exp_time; g_cv4003_exposure[dev] = init_param->exposure; g_cv4003_sample_r_gain[dev] = init_param->sample_rgain; g_cv4003_sample_b_gain[dev] = init_param->sample_bgain; g_cv4003_wb_gain[dev][SENSOR_AWB_CHN_GIAN_R] = init_param->wb_rgain; g_cv4003_wb_gain[dev][SENSOR_AWB_CHN_GIAN_G] = init_param->wb_ggain; g_cv4003_wb_gain[dev][SENSOR_AWB_CHN_GIAN_B] = init_param->wb_bgain; return XMEDIA_SUCCESS; } xmedia_s32 cv4003_get_max_fps(xmedia_u8 img_mode, xmedia_float *max_fps) { switch (img_mode) { case CV4003_4M_LINEAR_MODE: *max_fps = 30; break; case CV4003_1M_LINEAR_MODE: *max_fps = 120; break; default: SENSOR_TRACE(MODULE_DBG_ERR, "Not support img mode: %d\n", img_mode); return XMEDIA_ERRCODE_NOT_SUPPORT; } return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_get_ae_common_default(xmedia_u32 dev, sensor_context *sns_ctx, xmedia_isp_ae_sensor_default *ae_sns_dft) { ae_sns_dft->flicker_freq = 50 * 256; ae_sns_dft->full_lines = sns_ctx->fl_std; ae_sns_dft->full_lines_std = sns_ctx->fl_std; ae_sns_dft->full_lines_max = CV4003_FULL_LINES_MAX; ae_sns_dft->lines_per_500ms = (sns_ctx->fl_std * 30) / 2; ae_sns_dft->hmax_times = (1000000000) / (sns_ctx->fl_std * 30); ae_sns_dft->again_accu.accu_type = XMEDIA_ISP_AE_ACCURACY_TYPE_TABLE; ae_sns_dft->again_accu.accuracy = 1; ae_sns_dft->dgain_accu.accu_type = XMEDIA_ISP_AE_ACCURACY_TYPE_LINEAR; ae_sns_dft->dgain_accu.accuracy = 0.015625; ae_sns_dft->ispdgain_shift = 8; ae_sns_dft->min_ispdgain_target = 1 << ae_sns_dft->ispdgain_shift; ae_sns_dft->max_ispdgain_target = 100 << ae_sns_dft->ispdgain_shift; ae_sns_dft->ispdgain_sep_thd = 16 << ae_sns_dft->ispdgain_shift; memcpy(&ae_sns_dft->piris_attr, &g_cv4003_piris_attr, sizeof(xmedia_isp_piris_attr)); ae_sns_dft->max_iris_f_no = XMEDIA_ISP_IRIS_F_NO_1_0; ae_sns_dft->min_iris_f_no = XMEDIA_ISP_IRIS_F_NO_32_0; ae_sns_dft->ae_route_ex_valid = XMEDIA_FALSE; ae_sns_dft->ae_route_attr.total_num = 0; ae_sns_dft->ae_ext_route_attr.total_num = 0; return XMEDIA_SUCCESS; } static xmedia_void cv4003_get_ae_linear_default(xmedia_u32 dev, sensor_context *sns_ctx, xmedia_isp_ae_sensor_default *ae_sns_dft) { ae_sns_dft->int_time_accu.accu_type = XMEDIA_ISP_AE_ACCURACY_TYPE_LINEAR; ae_sns_dft->int_time_accu.accuracy = 2; ae_sns_dft->int_time_accu.offset = 0; ae_sns_dft->max_again = 32768; ae_sns_dft->min_again = 1024; ae_sns_dft->max_again_target = ae_sns_dft->max_again; ae_sns_dft->min_again_target = ae_sns_dft->min_again; ae_sns_dft->max_dgain = 512; ae_sns_dft->min_dgain = 64; ae_sns_dft->max_dgain_target = ae_sns_dft->max_dgain; ae_sns_dft->min_dgain_target = ae_sns_dft->min_dgain; ae_sns_dft->ae_compensation = 0x38; ae_sns_dft->ae_exp_mode = XMEDIA_ISP_AE_STRATEGY_EXP_HIGHLIGHT_PRIOR; ae_sns_dft->init_exposure = g_cv4003_exposure[dev] ? g_cv4003_exposure[dev] : 148859; ae_sns_dft->max_int_time = sns_ctx->fl_std - CV4003_EXP_OFFSET_LINEAR; ae_sns_dft->min_int_time = 2; ae_sns_dft->max_int_time_target = 65535; ae_sns_dft->min_int_time_target = 2; return; } static xmedia_s32 cv4003_get_ae_default(xmedia_u32 dev, xmedia_isp_ae_sensor_default *ae_sns_dft) { xmedia_s32 ret; sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(ae_sns_dft); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); memset(ae_sns_dft, 0, sizeof(xmedia_isp_ae_sensor_default)); ret = cv4003_get_ae_common_default(dev, cv4003_ctx, ae_sns_dft); SENSOR_CHECK_RET_RETURN(ret); switch (cv4003_ctx->wdr_mode) { case XMEDIA_VIDEO_WDR_MODE_NONE: cv4003_get_ae_linear_default(dev, cv4003_ctx, ae_sns_dft); break; default: SENSOR_TRACE(MODULE_DBG_ERR, "No support %d ! \n", cv4003_ctx->wdr_mode); return XMEDIA_ERRCODE_NOT_SUPPORT; } return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_get_min_fps(xmedia_u8 img_mode, xmedia_float *min_fps) { switch (img_mode) { case CV4003_4M_LINEAR_MODE: case CV4003_1M_LINEAR_MODE: *min_fps = 2.75; break; default: SENSOR_TRACE(MODULE_DBG_ERR, "Not support img mode: %d\n", img_mode); return XMEDIA_ERRCODE_NOT_SUPPORT; } return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_get_vmax(xmedia_u8 img_mode, xmedia_u32 *vmax) { switch (img_mode) { case CV4003_4M_LINEAR_MODE: *vmax = CV4003_VMAX_4M_LINEAR; break; case CV4003_1M_LINEAR_MODE: *vmax = CV4003_VMAX_1M_LINEAR; break; default: SENSOR_TRACE(MODULE_DBG_ERR, "Not support img mode: %d\n", img_mode); return XMEDIA_ERRCODE_NOT_SUPPORT; } return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_get_min_fps_vmax(xmedia_u8 img_mode, xmedia_u32 *vmax) { xmedia_float max_fps; xmedia_float min_fps; xmedia_u32 vmax_max_fps; xmedia_s32 ret; ret = cv4003_get_max_fps(img_mode, &max_fps); SENSOR_CHECK_RET_RETURN(ret); ret = cv4003_get_min_fps(img_mode, &min_fps); SENSOR_CHECK_RET_RETURN(ret); ret = cv4003_get_vmax(img_mode, &vmax_max_fps); SENSOR_CHECK_RET_RETURN(ret); *vmax = vmax_max_fps * max_fps / min_fps; return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_set_fps(xmedia_u32 dev, xmedia_float fps, xmedia_isp_ae_sensor_default *ae_sns_dft) { xmedia_s32 ret; xmedia_u32 lines; xmedia_float max_fps, min_fps; xmedia_u32 vmax; sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(ae_sns_dft); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); ret = cv4003_get_vmax(cv4003_ctx->img_mode, &lines); SENSOR_CHECK_RET_RETURN(ret); ret = cv4003_get_max_fps(cv4003_ctx->img_mode, &max_fps); SENSOR_CHECK_RET_RETURN(ret); ret = cv4003_get_min_fps(cv4003_ctx->img_mode, &min_fps); SENSOR_CHECK_RET_RETURN(ret); if ((fps > max_fps) || (fps < min_fps)) { SENSOR_TRACE(MODULE_DBG_ERR, "not support fps: %f\n", fps); return XMEDIA_ERRCODE_NOT_SUPPORT; } vmax = lines * max_fps / SENSOR_DIV_0_TO_1_FLOAT(fps); cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_VMAX_L].data = SENSOR_LOW_8BITS(vmax); cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_VMAX_M].data = SENSOR_HIGH_8BITS(vmax); cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_VMAX_H].data = ((vmax)&0xFF0000)>>16; cv4003_ctx->fl_std = vmax; cv4003_ctx->fl[SENSOR_CUR_FRAME] = cv4003_ctx->fl_std; cv4003_ctx->fps = fps; ae_sns_dft->fps = fps; ae_sns_dft->full_lines_std = cv4003_ctx->fl_std; ae_sns_dft->max_int_time = cv4003_ctx->fl_std - CV4003_EXP_OFFSET_LINEAR; ae_sns_dft->full_lines = cv4003_ctx->fl[SENSOR_CUR_FRAME]; SENSOR_PRINT("dev[%d]-cv4003 set fps = %f\n", dev, ae_sns_dft->fps); return XMEDIA_SUCCESS; } /* * 线性:full_lines, AE期望的曝光时间, VMAX = full_lines + EXP_OFFSET_LINEAR * 2TO1 WDR: full_lines, AE期望的长帧+短帧的曝光时间, VMAX = full_lines + EXP_OFFSET_WDR * 注意:2to1 wdr模式下,曝光比和ae wdr mode 由AE传入,调用本接口前,AE需先调用cv4003_get_max_inttime */ static xmedia_s32 cv4003_set_slow_framerate(xmedia_u32 dev, xmedia_u32 full_lines, xmedia_isp_ae_sensor_default *ae_sns_dft) { sensor_context *cv4003_ctx = XMEDIA_NULL; xmedia_u32 lines_max; xmedia_float min_fps; xmedia_u32 vmax; xmedia_s32 ret; SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(ae_sns_dft); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); if (cv4003_ctx->work_mode != XMEDIA_SENSOR_WORK_MODE_NORMAL) { SENSOR_TRACE(MODULE_DBG_ERR, "work mode[%d] param invalid!\n", cv4003_ctx->work_mode); return XMEDIA_ERRCODE_NOT_SUPPORT; } ret = cv4003_get_min_fps(cv4003_ctx->img_mode, &min_fps); SENSOR_CHECK_RET_RETURN(ret); ret = cv4003_get_min_fps_vmax(cv4003_ctx->img_mode, &lines_max); SENSOR_CHECK_RET_RETURN(ret); vmax = full_lines; vmax = SENSOR_MIN(vmax, lines_max); cv4003_ctx->fl[SENSOR_CUR_FRAME] = vmax; cv4003_ctx->fps = min_fps * lines_max / vmax; cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_VMAX_L].data = SENSOR_LOW_8BITS(vmax); cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_VMAX_M].data = SENSOR_HIGH_8BITS(vmax); cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_VMAX_H].data = ((vmax & 0xFF0000) >> 16); ae_sns_dft->full_lines = cv4003_ctx->fl[SENSOR_CUR_FRAME]; ae_sns_dft->max_int_time = cv4003_ctx->fl[SENSOR_CUR_FRAME] - CV4003_EXP_OFFSET_LINEAR; SENSOR_PRINT("dev[%d]-cv4003 set fps = %f\n", dev, cv4003_ctx->fps); return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_update_inttime(xmedia_u32 dev, xmedia_u32 int_time) { sensor_context *cv4003_ctx = XMEDIA_NULL; xmedia_u32 value; SENSOR_CHECK_DEV_RETURN(dev); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); value = (int_time > cv4003_ctx->fl_std)? cv4003_ctx->fl_std : (cv4003_ctx->fl_std - int_time); value = (value > (cv4003_ctx->fl_std - 2)) ? (cv4003_ctx->fl_std - 2) : value; value = value / 2 * 2; value = (value < 6)? 6: value; if (cv4003_ctx->wdr_mode == XMEDIA_VIDEO_WDR_MODE_NONE) { cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_EXP_L].data = SENSOR_LOW_8BITS(value); cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_EXP_M].data = SENSOR_HIGH_8BITS(value); cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_EXP_H].data = ((value)&0xFF0000)>>16; } return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_calc_again(xmedia_u32 dev, xmedia_u32 *again_lin, xmedia_u32 *again_db) { xmedia_s32 i; SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(again_lin); SENSOR_CHECK_PTR_RETURN(again_db); if (*again_lin >= g_cv4003_again_table[CV4003_GAIN_NODE_NUM - 1]) { *again_lin = g_cv4003_again_table[CV4003_GAIN_NODE_NUM - 1]; *again_db = CV4003_GAIN_NODE_NUM - 1; return XMEDIA_SUCCESS; } for (i = 1; i < CV4003_GAIN_NODE_NUM; i++) { if (*again_lin < g_cv4003_again_table[i]) { *again_lin = g_cv4003_again_table[i - 1]; *again_db = i - 1; break; } } return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_calc_dgain(xmedia_u32 dev, xmedia_u32 *dgain_lin, xmedia_u32 *dgain_db) { xmedia_u32 dgain, dgain_reg; SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(dgain_lin); SENSOR_CHECK_PTR_RETURN(dgain_db); dgain = *dgain_lin; dgain_reg = dgain / 16; *dgain_lin = dgain_reg * 16; *dgain_db = dgain_reg ; return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_update_gains(xmedia_u32 dev, xmedia_u32 again, xmedia_u32 dgain) { sensor_context *cv4003_ctx = XMEDIA_NULL; CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_AGAIN].data = SENSOR_LOW_8BITS(again); cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_DGAIN_L].data = SENSOR_LOW_8BITS(dgain); cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[CV4003_REG_DGAIN_H].data = SENSOR_HIGH_8BITS(dgain); return XMEDIA_SUCCESS; } // line wdr模式下,根据AE期望曝光比,返回不同模式下长短帧的最大/最小曝光时间 static xmedia_s32 cv4003_get_max_inttime(xmedia_u32 dev, xmedia_sensor_ae_inttime_attr *inttime_attr) { SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(inttime_attr); return XMEDIA_SUCCESS; } // AWB static xmedia_s32 cv4003_get_awb_default(xmedia_u32 dev, xmedia_isp_awb_sensor_default *awb_sns_dft) { sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(awb_sns_dft); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); memset(awb_sns_dft, 0, sizeof(xmedia_isp_awb_sensor_default)); awb_sns_dft->wb_ref_temp = CV4003_CALIBRATE_STATIC_TEMP; // wb_ref_temp 5000 awb_sns_dft->gain_offset[XMEDIA_SENSOR_BAYER_CHN_R] = CV4003_CALIBRATE_STATIC_WB_R_GAIN; awb_sns_dft->gain_offset[XMEDIA_SENSOR_BAYER_CHN_GR] = CV4003_CALIBRATE_STATIC_WB_GR_GAIN; awb_sns_dft->gain_offset[XMEDIA_SENSOR_BAYER_CHN_GB] = CV4003_CALIBRATE_STATIC_WB_GB_GAIN; awb_sns_dft->gain_offset[XMEDIA_SENSOR_BAYER_CHN_B] = CV4003_CALIBRATE_STATIC_WB_B_GAIN; // 0 ~ 6: point index on the awb curve param awb_sns_dft->wb_para[0] = CV4003_CALIBRATE_AWB_P1; awb_sns_dft->wb_para[1] = CV4003_CALIBRATE_AWB_P2; awb_sns_dft->wb_para[2] = CV4003_CALIBRATE_AWB_Q1; awb_sns_dft->wb_para[3] = CV4003_CALIBRATE_AWB_A1; awb_sns_dft->wb_para[4] = CV4003_CALIBRATE_AWB_B1; awb_sns_dft->wb_para[5] = CV4003_CALIBRATE_AWB_C1; awb_sns_dft->golden_rgain = CV4003_GOLDEN_RGAIN; awb_sns_dft->golden_bgain = CV4003_GOLDEN_BGAIN; awb_sns_dft->awb_runinterval = 2; switch (cv4003_ctx->wdr_mode) { case XMEDIA_VIDEO_WDR_MODE_NONE: memcpy(&awb_sns_dft->ccm, &g_cv4003_awb_ccm, sizeof(xmedia_isp_awb_ccm)); memcpy(&awb_sns_dft->agc_tbl, &g_cv4003_awb_agc_table, sizeof(xmedia_isp_awb_agc_table)); break; default: SENSOR_TRACE(MODULE_DBG_ERR, "No support %d ! \n", cv4003_ctx->wdr_mode); return XMEDIA_ERRCODE_NOT_SUPPORT; } awb_sns_dft->init_rgain = g_cv4003_wb_gain[dev][SENSOR_AWB_CHN_GIAN_R]; awb_sns_dft->init_ggain = g_cv4003_wb_gain[dev][SENSOR_AWB_CHN_GIAN_G]; awb_sns_dft->init_bgain = g_cv4003_wb_gain[dev][SENSOR_AWB_CHN_GIAN_B]; awb_sns_dft->sample_rgain = g_cv4003_sample_r_gain[dev]; awb_sns_dft->sample_bgain = g_cv4003_sample_b_gain[dev]; return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_standby(xmedia_u32 dev) { xmedia_s32 ret; SENSOR_CHECK_DEV_RETURN(dev); ret = cv4003_write_reg(dev, CV4003_REG_ADDR_STANDBY, 0x01); SENSOR_CHECK_RET_RETURN(ret); return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_resume(xmedia_u32 dev) { xmedia_s32 ret; SENSOR_CHECK_DEV_RETURN(dev); ret = cv4003_write_reg(dev, CV4003_REG_ADDR_STANDBY, 0x00); SENSOR_CHECK_RET_RETURN(ret); return XMEDIA_SUCCESS; } SENSOR_PRIORITY_FUNC static xmedia_s32 cv4003_config_init_param(xmedia_u32 dev) { xmedia_u32 i; sensor_context *cv4003_ctx = XMEDIA_NULL; xmedia_s32 ret = XMEDIA_SUCCESS; xmedia_u32 reg_data_sum = 0; CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); // exceptional process for AE unregister for (i = 0; i < cv4003_ctx->regs_info[SENSOR_CUR_FRAME].reg_num; i++) { reg_data_sum += cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[i].data; } if (reg_data_sum == 0) { return XMEDIA_SUCCESS; } for (i = 0; i < cv4003_ctx->regs_info[SENSOR_CUR_FRAME].reg_num; i++) { ret |= cv4003_write_reg(dev, cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[i].reg_addr, cv4003_ctx->regs_info[SENSOR_CUR_FRAME].i2c_data[i].data); } if (ret != XMEDIA_SUCCESS) { SENSOR_TRACE(MODULE_DBG_ERR, "sensor dev[%d] config init param failed!\n", dev); } return XMEDIA_SUCCESS; } SENSOR_PRIORITY_FUNC static xmedia_s32 cv4003_start(xmedia_u32 dev) { xmedia_s32 ret; sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); if (cv4003_ctx->init_mode == XMEDIA_SENSOR_INIT_MODE_NORMAL) { ret = cv4003_init_image(dev, cv4003_ctx->img_mode); SENSOR_CHECK_RET_RETURN(ret); } ret = cv4003_config_init_param(dev); SENSOR_CHECK_RET_RETURN(ret); ret = cv4003_set_mirror_flip(dev, cv4003_ctx->mirror_en, cv4003_ctx->flip_en); SENSOR_CHECK_RET_RETURN(ret); return XMEDIA_SUCCESS; } static xmedia_s32 cv4003_stop(xmedia_u32 dev) { xmedia_s32 ret; SENSOR_CHECK_DEV_RETURN(dev); ret = cv4003_standby(dev); SENSOR_CHECK_RET_RETURN(ret); return XMEDIA_SUCCESS; } SENSOR_PRIORITY_FUNC static xmedia_s32 cv4003_search_dev(xmedia_u32 pipe, xmedia_u32 *dev) { xmedia_u32 index; SENSOR_CHECK_PTR_RETURN(dev); for (index = 0; index < XMEDIA_SENSOR_DEV_MAX_NUM; index++) { if (g_cv4003_dev_map[index] == SENSOR_DEV_INVALID) { g_cv4003_dev_map[index] = pipe; *dev = index; return XMEDIA_SUCCESS; } } SENSOR_TRACE(MODULE_DBG_ERR, "all sensor dev are registered!\n"); return XMEDIA_ERRCODE_BINDED; } SENSOR_PRIORITY_FUNC static xmedia_s32 cv4003_match_dev(xmedia_u32 pipe, xmedia_u32 *dev) { xmedia_u32 index; SENSOR_CHECK_PTR_RETURN(dev); for (index = 0; index < XMEDIA_SENSOR_DEV_MAX_NUM; index++) { if (g_cv4003_dev_map[index] == pipe) { *dev = index; return XMEDIA_SUCCESS; } } SENSOR_TRACE(MODULE_DBG_ERR, "There is no sensor dev to match pipe[%d]!\n", pipe); return XMEDIA_ERRCODE_NOT_BIND; } static xmedia_s32 cv4003_get_fps(xmedia_u32 dev, xmedia_float *fps, xmedia_float *min_fps, xmedia_float *max_fps) { xmedia_s32 ret; sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_DEV_RETURN(dev); SENSOR_CHECK_PTR_RETURN(fps); SENSOR_CHECK_PTR_RETURN(min_fps); SENSOR_CHECK_PTR_RETURN(max_fps); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); ret = cv4003_get_min_fps(cv4003_ctx->img_mode, min_fps); SENSOR_CHECK_RET_RETURN(ret); ret = cv4003_get_max_fps(cv4003_ctx->img_mode, max_fps); SENSOR_CHECK_RET_RETURN(ret); *fps = cv4003_ctx->fps; return XMEDIA_SUCCESS; } SENSOR_PRIORITY_FUNC static xmedia_s32 cv4003_init_register_func(xmedia_sensor_register_info *info) { SENSOR_CHECK_PTR_RETURN(info); memcpy(info->sensor_name, CV4003_NAME, sizeof(CV4003_NAME)); // Called by user info->isp_func.pfn_sensor_get_property = cv4003_get_property; info->isp_func.pfn_sensor_set_work_mode = cv4003_set_work_mode; info->isp_func.pfn_sensor_set_mipi_lanes = cv4003_set_mipi_lanes; info->isp_func.pfn_sensor_mirror = cv4003_mirror; info->isp_func.pfn_sensor_flip = cv4003_flip; info->isp_func.pfn_sensor_set_bus_info = cv4003_set_bus_info; info->isp_func.pfn_sensor_set_dev_addr = cv4003_set_dev_addr; info->isp_func.pfn_sensor_set_init_param = cv4003_set_init_param; info->isp_func.pfn_sensor_start = cv4003_start; info->isp_func.pfn_sensor_stop = cv4003_stop; info->isp_func.pfn_sensor_standby = cv4003_standby; info->isp_func.pfn_sensor_resume = cv4003_resume; info->isp_func.pfn_sensor_write_reg = cv4003_write_reg; info->isp_func.pfn_sensor_read_reg = cv4003_read_reg; info->isp_func.pfn_sensor_init = cv4003_init; info->isp_func.pfn_sensor_exit = cv4003_exit; info->isp_func.pfn_sensor_set_attr = cv4003_set_attr; // called by ISP info->isp_func.pfn_sensor_get_isp_default = cv4003_get_isp_default; info->isp_func.pfn_sensor_get_isp_black_level = cv4003_get_isp_black_level; info->isp_func.pfn_sensor_get_reg_info = cv4003_get_reg_info; info->isp_func.pfn_sensor_get_bayer_pattern = cv4003_get_bayer_pattern; info->isp_func.pfn_sensor_get_capability = cv4003_get_capability; info->isp_func.pfn_sensor_get_dev_addr = cv4003_get_dev_addr; info->isp_func.pfn_sensor_get_fps = cv4003_get_fps; // AE info->ae_func.pfn_sensor_get_ae_default = cv4003_get_ae_default; info->ae_func.pfn_sensor_set_fps = cv4003_set_fps; info->ae_func.pfn_sensor_set_slow_framerate = cv4003_set_slow_framerate; info->ae_func.pfn_sensor_get_max_inttime = cv4003_get_max_inttime; info->ae_func.pfn_sensor_update_inttime = cv4003_update_inttime; info->ae_func.pfn_sensor_calc_again = cv4003_calc_again; info->ae_func.pfn_sensor_calc_dgain = cv4003_calc_dgain; info->ae_func.pfn_sensor_update_gains = cv4003_update_gains; info->ae_func.pfn_sensor_set_ae_wdr_attr = cv4003_set_ae_wdr_attr; // AWB info->awb_func.pfn_sensor_get_awb_default = cv4003_get_awb_default; return XMEDIA_SUCCESS; } SENSOR_PRIORITY_FUNC xmedia_s32 cv4003_register(xmedia_u32 pipe) { xmedia_s32 ret; xmedia_u32 dev; xmedia_sensor_register_info info; SENSOR_CHECK_PIPE_RETURN(pipe); ret = cv4003_search_dev(pipe, &dev); SENSOR_CHECK_RET_RETURN(ret); ret = cv4003_ctx_init(dev); SENSOR_CHECK_RET_RETURN(ret); memset(&info, 0, sizeof(xmedia_sensor_register_info)); info.dev_id = dev; ret = cv4003_init_register_func(&info); SENSOR_CHECK_RET_RETURN(ret); ret = xmedia_isp_register_sensor(pipe, &info); if (ret != XMEDIA_SUCCESS) { SENSOR_TRACE(MODULE_DBG_ERR, "CV4003 register failed! error code = %d.\n", ret); return ret; } return XMEDIA_SUCCESS; } xmedia_s32 cv4003_unregister(xmedia_u32 pipe) { xmedia_s32 ret; xmedia_u32 dev; sensor_context *cv4003_ctx = XMEDIA_NULL; SENSOR_CHECK_PIPE_RETURN(pipe); ret = cv4003_match_dev(pipe, &dev); SENSOR_CHECK_RET_RETURN(ret); CV4003_GET_CONTEXT(dev, cv4003_ctx); SENSOR_CHECK_PTR_RETURN(cv4003_ctx); if (cv4003_ctx->init == XMEDIA_TRUE) { SENSOR_PRINT("Operation not allowed, please EXIT at first!\n"); return XMEDIA_ERRCODE_NOT_PERMITTED; } ret = xmedia_isp_unregister_sensor(pipe, dev); if (ret != XMEDIA_SUCCESS) { SENSOR_TRACE(MODULE_DBG_ERR, "CV4003 unregister function failed!\n"); return ret; } cv4003_ctx_exit(dev); g_cv4003_dev_map[dev] = SENSOR_DEV_INVALID; return XMEDIA_SUCCESS; }