Merge branch develop-3.10
[firefly-linux-kernel-4.4.55.git] / drivers / media / video / gc0309.c
index 0ee641e8c7cf4354f54c8deff4487f5e5ef6ba3e..7204463605d8d86a584d927e0a66cb2cca540836 100755 (executable)
+\r
+#include "generic_sensor.h"\r
+\r
 /*
-o* Driver for MT9M001 CMOS Image Sensor from Micron
- *
- * Copyright (C) 2008, Guennadi Liakhovetski <kernel@pengutronix.de>
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2 as
- * published by the Free Software Foundation.
- */
-
-#include <linux/videodev2.h>
-#include <linux/slab.h>
-#include <linux/i2c.h>
-#include <linux/log2.h>
-#include <linux/platform_device.h>
-#include <linux/delay.h>
-#include <linux/circ_buf.h>
-#include <linux/miscdevice.h>
-#include <media/v4l2-common.h>
-#include <media/v4l2-chip-ident.h>
-#include <media/soc_camera.h>
-#include <mach/rk29_camera.h>
-
-static int debug;
-module_param(debug, int, S_IRUGO|S_IWUSR);
-
-#define dprintk(level, fmt, arg...) do {                       \
-       if (debug >= level)                                     \
-       printk(KERN_WARNING fmt , ## arg); } while (0)
-
-#define SENSOR_TR(format, ...) printk(KERN_ERR format, ## __VA_ARGS__)
-#define SENSOR_DG(format, ...) dprintk(1, format, ## __VA_ARGS__)
-
-
-#define _CONS(a,b) a##b
-#define CONS(a,b) _CONS(a,b)
-
-#define __STR(x) #x
-#define _STR(x) __STR(x)
-#define STR(x) _STR(x)
-
-#define MIN(x,y)   ((x<y) ? x: y)
-#define MAX(x,y)    ((x>y) ? x: y)
-
-/* Sensor Driver Configuration */
-#define SENSOR_NAME RK29_CAM_SENSOR_GC0309
-#define SENSOR_V4L2_IDENT V4L2_IDENT_GC0309
-#define SENSOR_ID 0xa0
-#define SENSOR_MIN_WIDTH    176
-#define SENSOR_MIN_HEIGHT   144
-#define SENSOR_MAX_WIDTH    640
-#define SENSOR_MAX_HEIGHT   480
-#define SENSOR_INIT_WIDTH      640             /* Sensor pixel size for sensor_init_data array */
-#define SENSOR_INIT_HEIGHT  480
-#define SENSOR_INIT_WINSEQADR sensor_vga
-#define SENSOR_INIT_PIXFMT V4L2_MBUS_FMT_YUYV8_2X8
-
-#define CONFIG_SENSOR_WhiteBalance     1
-#define CONFIG_SENSOR_Brightness       0
-#define CONFIG_SENSOR_Contrast      0
-#define CONFIG_SENSOR_Saturation    0
-#define CONFIG_SENSOR_Effect        1 
-#define CONFIG_SENSOR_Scene         1
-#define CONFIG_SENSOR_DigitalZoom   0
-#define CONFIG_SENSOR_Focus         0
-#define CONFIG_SENSOR_Exposure      0
-#define CONFIG_SENSOR_Flash         0
-#define CONFIG_SENSOR_Mirror        0
-#define CONFIG_SENSOR_Flip          0
-
-#define CONFIG_SENSOR_I2C_SPEED     250000       /* Hz */
-/* Sensor write register continues by preempt_disable/preempt_enable for current process not be scheduled */
-#define CONFIG_SENSOR_I2C_NOSCHED   0
-#define CONFIG_SENSOR_I2C_RDWRCHK   0
-
-#define SENSOR_BUS_PARAM  (SOCAM_MASTER | SOCAM_PCLK_SAMPLE_RISING|\
-                          SOCAM_HSYNC_ACTIVE_HIGH | SOCAM_VSYNC_ACTIVE_HIGH |\
-                          SOCAM_DATA_ACTIVE_HIGH | SOCAM_DATAWIDTH_8  |SOCAM_MCLK_24MHZ)
-
-#define COLOR_TEMPERATURE_CLOUDY_DN  6500
-#define COLOR_TEMPERATURE_CLOUDY_UP    8000
-#define COLOR_TEMPERATURE_CLEARDAY_DN  5000
-#define COLOR_TEMPERATURE_CLEARDAY_UP    6500
-#define COLOR_TEMPERATURE_OFFICE_DN     3500
-#define COLOR_TEMPERATURE_OFFICE_UP     5000
-#define COLOR_TEMPERATURE_HOME_DN       2500
-#define COLOR_TEMPERATURE_HOME_UP       3500
-
-#define SENSOR_NAME_STRING(a) STR(CONS(SENSOR_NAME, a))
-#define SENSOR_NAME_VARFUN(a) CONS(SENSOR_NAME, a)
-
-#define SENSOR_AF_IS_ERR    (0x00<<0)
-#define SENSOR_AF_IS_OK                (0x01<<0)
-#define SENSOR_INIT_IS_ERR   (0x00<<28)
-#define SENSOR_INIT_IS_OK    (0x01<<28)
-
-struct reginfo
+*      Driver Version Note\r
+*v0.0.1: this driver is compatible with generic_sensor\r
+*v0.0.3:\r
+*        add sensor_focus_af_const_pause_usr_cb;\r
+*/\r
+static int version = KERNEL_VERSION(0,0,3);\r
+module_param(version, int, S_IRUGO);\r
+\r
+\r
+static int debug;\r
+module_param(debug, int, S_IRUGO|S_IWUSR);\r
+\r
+#define dprintk(level, fmt, arg...) do {                       \\r
+       if (debug >= level)                                     \\r
+       printk(KERN_WARNING fmt , ## arg); } while (0)\r
+\r
+/* Sensor Driver Configuration Begin */\r
+#define SENSOR_NAME RK29_CAM_SENSOR_GC0309\r
+#define SENSOR_V4L2_IDENT V4L2_IDENT_GC0309\r
+#define SENSOR_ID 0xa0\r
+#define SENSOR_BUS_PARAM                     (V4L2_MBUS_MASTER |\\r
+                                                                                                        V4L2_MBUS_PCLK_SAMPLE_RISING|V4L2_MBUS_HSYNC_ACTIVE_HIGH| V4L2_MBUS_VSYNC_ACTIVE_HIGH|\\r
+                                                                                                        V4L2_MBUS_DATA_ACTIVE_HIGH  |SOCAM_MCLK_24MHZ)\r
+#define SENSOR_PREVIEW_W                                        640\r
+#define SENSOR_PREVIEW_H                                        480\r
+#define SENSOR_PREVIEW_FPS                                      15000     // 15fps \r
+#define SENSOR_FULLRES_L_FPS                            7500      // 7.5fps\r
+#define SENSOR_FULLRES_H_FPS                            7500      // 7.5fps\r
+#define SENSOR_720P_FPS                                         0\r
+#define SENSOR_1080P_FPS                                        0\r
+\r
+#define SENSOR_REGISTER_LEN                             1                 // sensor register address bytes\r
+#define SENSOR_VALUE_LEN                                        1                 // sensor register value bytes\r
+static unsigned int SensorConfiguration = (CFG_WhiteBalance|CFG_Effect|CFG_Scene);     \r
+static unsigned int SensorChipID[] = {SENSOR_ID};\r
+/* Sensor Driver Configuration End */\r
+\r
+\r
+#define SENSOR_NAME_STRING(a) STR(CONS(SENSOR_NAME, a))\r
+#define SENSOR_NAME_VARFUN(a) CONS(SENSOR_NAME, a)\r
+\r
+#define SensorRegVal(a,b) CONS4(SensorReg,SENSOR_REGISTER_LEN,Val,SENSOR_VALUE_LEN)(a,b)\r
+#define sensor_write(client,reg,v) CONS4(sensor_write_reg,SENSOR_REGISTER_LEN,val,SENSOR_VALUE_LEN)(client,(reg),(v))\r
+#define sensor_read(client,reg,v) CONS4(sensor_read_reg,SENSOR_REGISTER_LEN,val,SENSOR_VALUE_LEN)(client,(reg),(v))\r
+#define sensor_write_array generic_sensor_write_array\r
+\r
+struct sensor_parameter\r
+{\r
+       unsigned int PreviewDummyPixels;\r
+       unsigned int CaptureDummyPixels;\r
+       unsigned int preview_exposure;\r
+       unsigned short int preview_line_width;\r
+       unsigned short int preview_gain;\r
+\r
+       unsigned short int PreviewPclk;\r
+       unsigned short int CapturePclk;\r
+       char awb[6];\r
+};\r
+\r
+struct specific_sensor{\r
+       struct generic_sensor common_sensor;\r
+       //define user data below\r
+       struct sensor_parameter parameter;\r
+\r
+};\r
+\r
+/*\r
+*  The follow setting need been filled.\r
+*  \r
+*  Must Filled:\r
+*  sensor_init_data :                          Sensor initial setting;\r
+*  sensor_fullres_lowfps_data :        Sensor full resolution setting with best auality, recommand for video;\r
+*  sensor_preview_data :                       Sensor preview resolution setting, recommand it is vga or svga;\r
+*  sensor_softreset_data :                     Sensor software reset register;\r
+*  sensor_check_id_data :                      Sensir chip id register;\r
+*\r
+*  Optional filled:\r
+*  sensor_fullres_highfps_data:        Sensor full resolution setting with high framerate, recommand for video;\r
+*  sensor_720p:                                        Sensor 720p setting, it is for video;\r
+*  sensor_1080p:                                       Sensor 1080p setting, it is for video;\r
+*\r
+*  :::::WARNING:::::\r
+*  The SensorEnd which is the setting end flag must be filled int the last of each setting;\r
+*/\r
+\r
+/* Sensor initial setting */\r
+static struct rk_sensor_reg sensor_init_data[] ={\r
+                 /*init registers code.*/\r
+#if 1\r
+               {0xfe,0x80},   // soft reset    \r
+               {0x1a,0x16},    \r
+               {0xd2,0x10},   // close AEC\r
+               {0x22,0x55},   // close AWB\r
+       \r
+               {0x5a,0x56}, \r
+               {0x5b,0x40},\r
+               {0x5c,0x4a},                    \r
+       \r
+               {0x22,0x57}, \r
+                       \r
+               {0x01,0xfa}, \r
+               {0x02,0x70}, \r
+               {0x0f,0x01}, \r
+       \r
+               {0xe2,0x00}, \r
+               {0xe3,0x64}, \r
+       \r
+               {0x03,0x01}, \r
+               {0x04,0x2c}, \r
+       \r
+               {0x05,0x00},\r
+               {0x06,0x00},\r
+               {0x07,0x00}, \r
+               {0x08,0x00}, \r
+               {0x09,0x01}, \r
+               {0x0a,0xe8}, \r
+               {0x0b,0x02}, \r
+               {0x0c,0x88}, \r
+               {0x0d,0x02}, \r
+               {0x0e,0x02}, \r
+               {0x10,0x22}, \r
+               {0x11,0x0d}, \r
+               {0x12,0x2a}, \r
+               {0x13,0x00}, \r
+               {0x14,0x13},\r
+               {0x15,0x0a}, \r
+               {0x16,0x05}, \r
+               {0x17,0x01}, \r
+       \r
+               {0x1b,0x03}, \r
+               {0x1c,0xc1}, \r
+               {0x1d,0x08}, \r
+               {0x1e,0x20},\r
+               {0x1f,0x16}, \r
+       \r
+               {0x20,0xff}, \r
+               {0x21,0xf8}, \r
+               {0x24,0xa2}, \r
+               {0x25,0x0f},\r
+               //output sync_mode\r
+               {0x26,0x03}, \r
+               {0x2f,0x01}, \r
+               /////////////////////////////////////////////////////////////////////\r
+               /////////////////////////// grab_t ////////////////////////////////\r
+               /////////////////////////////////////////////////////////////////////\r
+               {0x30,0xf7}, \r
+               {0x31,0x40},\r
+               {0x32,0x00}, \r
+               {0x39,0x04}, \r
+               {0x3a,0x20}, \r
+               {0x3b,0x20}, \r
+               {0x3c,0x02}, \r
+               {0x3d,0x02}, \r
+               {0x3e,0x02},\r
+               {0x3f,0x02}, \r
+               \r
+               //gain\r
+               {0x50,0x24}, \r
+               \r
+               {0x53,0x82}, \r
+               {0x54,0x80}, \r
+               {0x55,0x80}, \r
+               {0x56,0x82}, \r
+               \r
+               /////////////////////////////////////////////////////////////////////\r
+               /////////////////////////// LSC_t  ////////////////////////////////\r
+               /////////////////////////////////////////////////////////////////////\r
+               {0x8b,0x20}, \r
+               {0x8c,0x20}, \r
+               {0x8d,0x20}, \r
+               {0x8e,0x10}, \r
+               {0x8f,0x10}, \r
+               {0x90,0x10}, \r
+               {0x91,0x3c}, \r
+               {0x92,0x50}, \r
+               {0x5d,0x12}, \r
+               {0x5e,0x1a}, \r
+               {0x5f,0x24}, \r
+               /////////////////////////////////////////////////////////////////////\r
+               /////////////////////////// DNDD_t      ///////////////////////////////\r
+               /////////////////////////////////////////////////////////////////////\r
+               {0x60,0x07}, \r
+               {0x61,0x0e}, \r
+               {0x62,0x0c}, \r
+               {0x64,0x03}, \r
+               {0x66,0xe8}, \r
+               {0x67,0x86}, \r
+               {0x68,0xa2}, \r
+               \r
+               /////////////////////////////////////////////////////////////////////\r
+               /////////////////////////// asde_t ///////////////////////////////\r
+               /////////////////////////////////////////////////////////////////////\r
+               {0x69,0x20}, \r
+               {0x6a,0x0f}, \r
+               {0x6b,0x00}, \r
+               {0x6c,0x53}, \r
+               {0x6d,0x83}, \r
+               {0x6e,0xac}, \r
+               {0x6f,0xac}, \r
+               {0x70,0x15}, \r
+               {0x71,0x33}, \r
+               /////////////////////////////////////////////////////////////////////\r
+               /////////////////////////// eeintp_t///////////////////////////////\r
+               /////////////////////////////////////////////////////////////////////\r
+               {0x72,0xdc},  \r
+               {0x73,0x80},  \r
+               //for high resolution in light scene\r
+               {0x74,0x02}, \r
+               {0x75,0x3f}, \r
+               {0x76,0x02}, \r
+               {0x77,0x54}, \r
+               {0x78,0x88}, \r
+               {0x79,0x81}, \r
+               {0x7a,0x81}, \r
+               {0x7b,0x22}, \r
+               {0x7c,0xff},\r
+               \r
+               \r
+               /////////////////////////////////////////////////////////////////////\r
+               ///////////////////////////CC_t///////////////////////////////\r
+               /////////////////////////////////////////////////////////////////////\r
+               {0x93,0x45}, \r
+               {0x94,0x00}, \r
+               {0x95,0x00}, \r
+               {0x96,0x00}, \r
+               {0x97,0x45}, \r
+               {0x98,0xf0}, \r
+               {0x9c,0x00}, \r
+               {0x9d,0x03}, \r
+               {0x9e,0x00}, \r
+       \r
+               \r
+               \r
+               /////////////////////////////////////////////////////////////////////\r
+               ///////////////////////////YCP_t///////////////////////////////\r
+               /////////////////////////////////////////////////////////////////////\r
+               {0xb1,0x40}, \r
+               {0xb2,0x40}, \r
+               {0xb8,0x20}, \r
+               {0xbe,0x36}, \r
+               {0xbf,0x00}, \r
+               /////////////////////////////////////////////////////////////////////\r
+               ///////////////////////////AEC_t///////////////////////////////\r
+               /////////////////////////////////////////////////////////////////////\r
+               {0xd0,0xc9},  \r
+               {0xd1,0x10},  \r
+       //      {0xd2,0x90},  \r
+               {0xd3,0x80},  \r
+               {0xd5,0xf2}, \r
+               {0xd6,0x16},  \r
+               {0xdb,0x92}, \r
+               {0xdc,0xa5},  \r
+               {0xdf,0x23},   \r
+               {0xd9,0x00},  \r
+               {0xda,0x00},  \r
+               {0xe0,0x09},\r
+       \r
+               {0xec,0x20},  \r
+               {0xed,0x04},  \r
+               {0xee,0xa0},  \r
+               {0xef,0x40},  \r
+       \r
+               //Y_gamma\r
+               {0xc0,0x00},\r
+               {0xc1,0x0B},\r
+               {0xc2,0x15},\r
+               {0xc3,0x27},\r
+               {0xc4,0x39},\r
+               {0xc5,0x49},\r
+               {0xc6,0x5A},\r
+               {0xc7,0x6A},\r
+               {0xc8,0x89},\r
+               {0xc9,0xA8},\r
+               {0xca,0xC6},\r
+               {0xcb,0xE3},\r
+               {0xcc,0xFF},\r
+       \r
+               /////////////////////////////////////////////////////////////////\r
+               /////////////////////////// ABS_t ///////////////////////////////\r
+               /////////////////////////////////////////////////////////////////\r
+               {0xf0,0x02},\r
+               {0xf1,0x01},\r
+               {0xf2,0x00}, \r
+               {0xf3,0x30}, \r
+               \r
+               /////////////////////////////////////////////////////////////////\r
+               /////////////////////////// Measure Window ///////////////////////\r
+               /////////////////////////////////////////////////////////////////\r
+               {0xf7,0x04}, \r
+               {0xf8,0x02}, \r
+               {0xf9,0x9f},\r
+               {0xfa,0x78},\r
+       \r
+#else\r
+               {0xfe,0x80},   // soft reset    \r
+               \r
+               {0x1a,0x16},    \r
+               {0xd2,0x10},   // close AEC\r
+               {0x22,0x55},   // close AWB\r
+       \r
+               {0x5a,0x56}, \r
+               {0x5b,0x40},\r
+               {0x5c,0x4a},                    \r
+       \r
+               {0x22,0x57}, \r
+                       \r
+               {0x01,0xfa}, \r
+               {0x02,0x70}, \r
+               {0x0f,0x01}, \r
+       \r
+               {0xe2,0x00}, \r
+               {0xe3,0x64}, \r
+       \r
+               {0x03,0x01}, \r
+               {0x04,0x2c}, \r
+       \r
+       \r
+               {0x05,0x00},\r
+               {0x06,0x00},\r
+               {0x07,0x00}, \r
+               {0x08,0x00}, \r
+               {0x09,0x01}, \r
+               {0x0a,0xe8}, \r
+               {0x0b,0x02}, \r
+               {0x0c,0x88}, \r
+               {0x0d,0x02}, \r
+               {0x0e,0x02}, \r
+               {0x10,0x22}, \r
+               {0x11,0x0d}, \r
+               {0x12,0x2a}, \r
+               {0x13,0x00}, \r
+               \r
+               {0x15,0x0a}, \r
+               {0x16,0x05}, \r
+               {0x17,0x01}, \r
+       \r
+               {0x1b,0x03}, \r
+               {0x1c,0xc1}, \r
+               {0x1d,0x08}, \r
+               {0x1e,0x20},\r
+               {0x1f,0x16}, \r
+       \r
+               {0x20,0xff}, \r
+               {0x21,0xf8}, \r
+               {0x24,0xa2}, \r
+               {0x25,0x0f},\r
+               //output sync_mode\r
+               {0x26,0x03}, \r
+               {0x2f,0x01}, \r
+               /////////////////////////////////////////////////////////////////////\r
+               /////////////////////////// grab_t ////////////////////////////////\r
+               /////////////////////////////////////////////////////////////////////\r
+               {0x30,0xf7}, \r
+               {0x31,0x40},\r
+               {0x32,0x00}, \r
+               {0x39,0x04}, \r
+               {0x3a,0x20}, \r
+               {0x3b,0x20}, \r
+               {0x3c,0x02}, \r
+               {0x3d,0x02}, \r
+               {0x3e,0x02},\r
+               {0x3f,0x02}, \r
+               \r
+               //gain\r
+               {0x50,0x24}, \r
+                       \r
+               {0x53,0x82}, \r
+               {0x54,0x80}, \r
+               {0x55,0x80}, \r
+               {0x56,0x82}, \r
+               \r
+               /////////////////////////////////////////////////////////////////////\r
+               /////////////////////////// LSC_t  ////////////////////////////////\r
+               /////////////////////////////////////////////////////////////////////\r
+               {0x8b,0x20}, \r
+               {0x8c,0x20}, \r
+               {0x8d,0x20}, \r
+               {0x8e,0x10}, \r
+               {0x8f,0x10}, \r
+               {0x90,0x10}, \r
+               {0x91,0x3c}, \r
+               {0x92,0x50}, \r
+               {0x5d,0x12}, \r
+               {0x5e,0x1a}, \r
+               {0x5f,0x24}, \r
+               /////////////////////////////////////////////////////////////////////\r
+               /////////////////////////// DNDD_t      ///////////////////////////////\r
+               /////////////////////////////////////////////////////////////////////\r
+               {0x60,0x07}, \r
+               {0x61,0x0e}, \r
+               {0x62,0x0c}, \r
+               {0x64,0x03}, \r
+               {0x66,0xe8}, \r
+               {0x67,0x86}, \r
+               {0x68,0xa2}, \r
+               \r
+               /////////////////////////////////////////////////////////////////////\r
+               /////////////////////////// asde_t ///////////////////////////////\r
+               /////////////////////////////////////////////////////////////////////\r
+               {0x69,0x20}, \r
+               {0x6a,0x0f}, \r
+               {0x6b,0x00}, \r
+               {0x6c,0x53}, \r
+               {0x6d,0x83}, \r
+               {0x6e,0xac}, \r
+               {0x6f,0xac}, \r
+               {0x70,0x15}, \r
+               {0x71,0x33}, \r
+               /////////////////////////////////////////////////////////////////////\r
+               /////////////////////////// eeintp_t///////////////////////////////\r
+#endif\r
+               {0x23,0x00},\r
+               {0x2d,0x0a}, // 0x08\r
+               {0x20,0xff},\r
+               {0xd2,0x90},\r
+               {0x73,0x00},\r
+               {0x77,0x54},\r
+                               \r
+               {0xb3,0x40},\r
+               {0xb4,0x80},\r
+               {0xba,0x00},\r
+               {0xbb,0x00},\r
+       SensorEnd\r
+};\r
+/* Senor full resolution setting: recommand for capture */\r
+static struct rk_sensor_reg sensor_fullres_lowfps_data[] ={\r
+       SensorEnd\r
+\r
+};\r
+/* Senor full resolution setting: recommand for video */\r
+static struct rk_sensor_reg sensor_fullres_highfps_data[] ={\r
+       SensorEnd\r
+};\r
+/* Preview resolution setting*/\r
+static struct rk_sensor_reg sensor_preview_data[] =\r
+{\r
+       SensorEnd\r
+};\r
+/* 1280x720 */\r
+static struct rk_sensor_reg sensor_720p[]={\r
+       SensorEnd\r
+};\r
+\r
+/* 1920x1080 */\r
+static struct rk_sensor_reg sensor_1080p[]={\r
+       SensorEnd\r
+};\r
+\r
+\r
+static struct rk_sensor_reg sensor_softreset_data[]={\r
+       SensorRegVal(0xfe,80),\r
+       SensorWaitMs(5),\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_check_id_data[]={\r
+       SensorRegVal(0x00,0),\r
+       SensorEnd\r
+};\r
+/*\r
+*  The following setting must been filled, if the function is turn on by CONFIG_SENSOR_xxxx\r
+*/\r
+static struct rk_sensor_reg sensor_WhiteB_Auto[]=\r
+{\r
+       {0x5a,0x56}, //for AWB can adjust back\r
+       {0x5b,0x40},\r
+       {0x5c,0x4a},                    \r
+       {0x22,0x57},     // Enable AWB\r
+       SensorEnd\r
+};\r
+/* Cloudy Colour Temperature : 6500K - 8000K  */\r
+static struct rk_sensor_reg sensor_WhiteB_Cloudy[]=\r
+{\r
+       {0x22,0x55},   // Disable AWB \r
+       {0x5a,0x8c}, //WB_manual_gain \r
+       {0x5b,0x50},\r
+       {0x5c,0x40},\r
+       SensorEnd\r
+};\r
+/* ClearDay Colour Temperature : 5000K - 6500K */\r
+static struct rk_sensor_reg sensor_WhiteB_ClearDay[]=\r
+{\r
+       //Sunny\r
+       {0x22,0x55},   \r
+       {0x5a,0x74}, \r
+       {0x5b,0x52},\r
+       {0x5c,0x40},    \r
+       SensorEnd\r
+};\r
+/* Office Colour Temperature : 3500K - 5000K  */\r
+static struct rk_sensor_reg sensor_WhiteB_TungstenLamp1[]=\r
+{\r
+         //Incandescent\r
+       {0x22,0x55}, \r
+         {0x5a,0x48},\r
+         {0x5b,0x40},\r
+         {0x5c,0x5c},\r
+       SensorEnd\r
+\r
+};\r
+/* Home Colour Temperature : 2500K - 3500K     */\r
+static struct rk_sensor_reg sensor_WhiteB_TungstenLamp2[]=\r
+{\r
+       //fluorescent\r
+       {0x22,0x55},   \r
+       {0x5a,0x40},\r
+       {0x5b,0x42},\r
+       {0x5c,0x50},\r
+       SensorEnd\r
+};\r
+static struct rk_sensor_reg *sensor_WhiteBalanceSeqe[] = {sensor_WhiteB_Auto, sensor_WhiteB_TungstenLamp1,sensor_WhiteB_TungstenLamp2,\r
+       sensor_WhiteB_ClearDay, sensor_WhiteB_Cloudy,NULL,\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Brightness0[]=\r
+{\r
+       // Brightness -2\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Brightness1[]=\r
+{\r
+       // Brightness -1\r
+\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Brightness2[]=\r
+{\r
+       //      Brightness 0\r
+\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Brightness3[]=\r
+{\r
+       // Brightness +1\r
+\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Brightness4[]=\r
+{\r
+       //      Brightness +2\r
+\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Brightness5[]=\r
+{\r
+       //      Brightness +3\r
+\r
+       SensorEnd\r
+};\r
+static struct rk_sensor_reg *sensor_BrightnessSeqe[] = {sensor_Brightness0, sensor_Brightness1, sensor_Brightness2, sensor_Brightness3,\r
+       sensor_Brightness4, sensor_Brightness5,NULL,\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Effect_Normal[] =\r
+{\r
+       {0x23,0x00},\r
+       {0x2d,0x0a}, // 0x08\r
+       {0x20,0xff},\r
+       {0xd2,0x90},\r
+       {0x73,0x00},\r
+       {0x77,0x54},\r
+                       \r
+       {0xb3,0x40},\r
+       {0xb4,0x80},\r
+       {0xba,0x00},\r
+       {0xbb,0x00},\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Effect_WandB[] =\r
+{\r
+       {0x23,0x02},            \r
+       {0x2d,0x0a},\r
+       {0x20,0xbf},\r
+       {0xd2,0x10},\r
+       {0x73,0x01},\r
+       \r
+       {0x51,0x40},\r
+       {0x52,0x40},\r
+       {0xb3,0x60},\r
+       {0xb4,0x40},\r
+       {0xba,0x00},\r
+       {0xbb,0x00},\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Effect_Sepia[] =\r
+{\r
+       {0x23,0x02},            \r
+       {0x2d,0x0a},\r
+       {0x20,0xff},\r
+       {0xd2,0x90},\r
+       {0x73,0x00},\r
+       \r
+       {0xb3,0x40},\r
+       {0xb4,0x80},\r
+       {0xba,0xd0},\r
+       {0xbb,0x28},    \r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Effect_Negative[] =\r
+{\r
+       //Negative\r
+       {0x23,0x03},    \r
+       {0x2d,0x0a},\r
+       {0x20,0xff},\r
+       {0xd2,0x90},\r
+       {0x73,0x00},\r
+       \r
+       {0xb3,0x40},\r
+       {0xb4,0x80},\r
+       {0xba,0x00},\r
+       {0xbb,0x00},\r
+       SensorEnd\r
+};\r
+static struct rk_sensor_reg sensor_Effect_Bluish[] =\r
+{\r
+       //Bluish\r
+       {0x23,0x02},    \r
+       {0x2d,0x0a},\r
+       {0x20,0xff},\r
+       {0xd2,0x90},\r
+       {0x73,0x00},\r
+       \r
+       {0xb3,0x40},\r
+       {0xb4,0x80},\r
+       {0xba,0x50},\r
+       {0xbb,0xe0},\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Effect_Green[] =\r
+{\r
+       //Greenish\r
+       {0x23,0x02},    \r
+       {0x2d,0x0a},\r
+       {0x20,0xff},\r
+       {0xd2,0x90},\r
+       {0x77,0x88},\r
+       \r
+       {0xb3,0x40},\r
+       {0xb4,0x80},\r
+       {0xba,0xc0},\r
+       {0xbb,0xc0},\r
+       SensorEnd\r
+};\r
+#if 0\r
+static struct rk_sensor_reg sensor_Effect_Grayscale[]=\r
+{\r
+       {0x23,0x02},    \r
+       {0x2d,0x0a},\r
+       {0x20,0xff},\r
+       {0xd2,0x90},\r
+       {0x73,0x00},\r
+\r
+       {0xb3,0x40},\r
+       {0xb4,0x80},\r
+       {0xba,0x00},\r
+       {0xbb,0x00},\r
+       {0x00,0x00},\r
+       SensorEnd\r
+    \r
+};\r
+#endif\r
+static struct rk_sensor_reg *sensor_EffectSeqe[] = {sensor_Effect_Normal, sensor_Effect_WandB, sensor_Effect_Negative,sensor_Effect_Sepia,\r
+       sensor_Effect_Bluish, sensor_Effect_Green,NULL,\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Exposure0[]=\r
+{\r
+       //-3\r
+       {0xb5, 0xe8},\r
+               {0xd3, 0x38},\r
+\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Exposure1[]=\r
+{\r
+       //-2\r
+               {0xb5, 0xf0},\r
+               {0xd3, 0x40},\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Exposure2[]=\r
+{\r
+       //-1\r
+               {0xb5, 0xf8},\r
+               {0xd3, 0x48},\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Exposure3[]=\r
+{\r
+       //default\r
+               {0xb5, 0x00},\r
+               {0xd3, 0x50},\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Exposure4[]=\r
+{\r
+       // 1\r
+               {0xb5, 0x08},\r
+               {0xd3, 0x58},\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Exposure5[]=\r
+{\r
+       // 2\r
+               {0xb5, 0x10},\r
+               {0xd3, 0x60},\r
+\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Exposure6[]=\r
+{\r
+       // 3\r
+               {0xb5, 0x18},\r
+               {0xd3, 0x68},\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg *sensor_ExposureSeqe[] = {sensor_Exposure0, sensor_Exposure1, sensor_Exposure2, sensor_Exposure3,\r
+       sensor_Exposure4, sensor_Exposure5,sensor_Exposure6,NULL,\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Saturation0[]=\r
+{\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Saturation1[]=\r
+{\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Saturation2[]=\r
+{\r
+       SensorEnd\r
+};\r
+static struct rk_sensor_reg *sensor_SaturationSeqe[] = {sensor_Saturation0, sensor_Saturation1, sensor_Saturation2, NULL,};\r
+\r
+static struct rk_sensor_reg sensor_Contrast0[]=\r
+{\r
+\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Contrast1[]=\r
+{\r
+\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Contrast2[]=\r
+{\r
+\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Contrast3[]=\r
+{\r
+\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Contrast4[]=\r
+{\r
+\r
+       SensorEnd\r
+};\r
+\r
+\r
+static struct rk_sensor_reg sensor_Contrast5[]=\r
+{\r
+\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Contrast6[]=\r
+{\r
+\r
+       SensorEnd\r
+};\r
+static struct rk_sensor_reg *sensor_ContrastSeqe[] = {sensor_Contrast0, sensor_Contrast1, sensor_Contrast2, sensor_Contrast3,\r
+       sensor_Contrast4, sensor_Contrast5, sensor_Contrast6, NULL,\r
+};\r
+static struct rk_sensor_reg sensor_SceneAuto[] =\r
+{\r
+       {0xec, 0x20},\r
+       {0x20, 0x7f},  // close cc\r
+       {0x3c, 0x02},\r
+       {0x3d, 0x02},\r
+       {0x3e, 0x02},\r
+       {0x3f, 0x02},\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_SceneNight[] =\r
+{\r
+       //30fps ~ 5fps night mode for 60/50Hz light environment, 24Mhz clock input,36Mzh pclk\r
+         {0xec, 0x30},\r
+         {0x20, 0x5f},  // close cc\r
+         {0x3c, 0x08},\r
+         {0x3d, 0x08},\r
+         {0x3e, 0x08},\r
+         {0x3f, 0x08},\r
+       SensorEnd\r
+};\r
+static struct rk_sensor_reg *sensor_SceneSeqe[] = {sensor_SceneAuto, sensor_SceneNight,NULL,};\r
+\r
+static struct rk_sensor_reg sensor_Zoom0[] =\r
+{\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Zoom1[] =\r
+{\r
+       SensorEnd\r
+};\r
+\r
+static struct rk_sensor_reg sensor_Zoom2[] =\r
+{\r
+       SensorEnd\r
+};\r
+\r
+\r
+static struct rk_sensor_reg sensor_Zoom3[] =\r
+{\r
+       SensorEnd\r
+};\r
+static struct rk_sensor_reg *sensor_ZoomSeqe[] = {sensor_Zoom0, sensor_Zoom1, sensor_Zoom2, sensor_Zoom3, NULL,};\r
+\r
+/*\r
+* User could be add v4l2_querymenu in sensor_controls by new_usr_v4l2menu\r
+*/\r
+static struct v4l2_querymenu sensor_menus[] =\r
+{\r
+};\r
+/*\r
+* User could be add v4l2_queryctrl in sensor_controls by new_user_v4l2ctrl\r
+*/\r
+static struct sensor_v4l2ctrl_usr_s sensor_controls[] =\r
+{\r
+};\r
+\r
+//MUST define the current used format as the first item   \r
+static struct rk_sensor_datafmt sensor_colour_fmts[] = {\r
+       {V4L2_MBUS_FMT_YUYV8_2X8, V4L2_COLORSPACE_JPEG} \r
+};\r
+/*static struct soc_camera_ops sensor_ops;*/\r
+\r
+\r
+/*\r
+**********************************************************\r
+* Following is local code:\r
+* \r
+* Please codeing your program here \r
+**********************************************************\r
+*/\r
+/*\r
+**********************************************************\r
+* Following is callback\r
+* If necessary, you could coding these callback\r
+**********************************************************\r
+*/\r
+/*\r
+* the function is called in open sensor  \r
+*/\r
+static int sensor_activate_cb(struct i2c_client *client)\r
+{\r
+       \r
+       return 0;\r
+}\r
+/*\r
+* the function is called in close sensor\r
+*/\r
+static int sensor_deactivate_cb(struct i2c_client *client)\r
+{\r
+       \r
+       return 0;\r
+}\r
+/*\r
+* the function is called before sensor register setting in VIDIOC_S_FMT  \r
+*/\r
+static int sensor_s_fmt_cb_th(struct i2c_client *client,struct v4l2_mbus_framefmt *mf, bool capture)\r
+{\r
+\r
+       return 0;\r
+}\r
+/*\r
+* the function is called after sensor register setting finished in VIDIOC_S_FMT  \r
+*/\r
+static int sensor_s_fmt_cb_bh (struct i2c_client *client,struct v4l2_mbus_framefmt *mf, bool capture)\r
+{\r
+       return 0;\r
+}\r
+static int sensor_try_fmt_cb_th(struct i2c_client *client,struct v4l2_mbus_framefmt *mf)\r
+{\r
+       return 0;\r
+}\r
+\r
+static int sensor_softrest_usr_cb(struct i2c_client *client,struct rk_sensor_reg *series)\r
+{\r
+       \r
+       return 0;\r
+}\r
+static int sensor_check_id_usr_cb(struct i2c_client *client,struct rk_sensor_reg *series)\r
+{\r
+       return 0;\r
+}\r
+static int sensor_suspend(struct soc_camera_device *icd, pm_message_t pm_msg)\r
+{\r
+       //struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));\r
+               \r
+       if (pm_msg.event == PM_EVENT_SUSPEND) {\r
+               SENSOR_DG("Suspend");\r
+               \r
+       } else {\r
+               SENSOR_TR("pm_msg.event(0x%x) != PM_EVENT_SUSPEND\n",pm_msg.event);\r
+               return -EINVAL;\r
+       }\r
+       return 0;\r
+}\r
+\r
+static int sensor_resume(struct soc_camera_device *icd)\r
+{\r
+\r
+       SENSOR_DG("Resume");\r
+\r
+       return 0;\r
+\r
+}\r
+static int sensor_mirror_cb (struct i2c_client *client, int mirror)\r
+{\r
+       char val;\r
+       int err = 0;\r
+       SENSOR_DG("mirror: %d",mirror);\r
+       if (mirror) {\r
+                       sensor_write(client, 0xfe, 0);\r
+                       err = sensor_read(client, 0x14, &val);\r
+                       if (err == 0) {\r
+                               if((val & 0x1) == 0)\r
+                                       err = sensor_write(client, 0x14, (val |0x1));\r
+                               else \r
+                                       err = sensor_write(client, 0x14, (val & 0xfe));\r
+                       }\r
+               } else {\r
+                       //do nothing\r
+               }\r
+\r
+       return err;    \r
+}\r
+/*\r
+* the function is v4l2 control V4L2_CID_HFLIP callback \r
+*/\r
+static int sensor_v4l2ctrl_mirror_cb(struct soc_camera_device *icd, struct sensor_v4l2ctrl_info_s *ctrl_info, \r
+                                                                                                        struct v4l2_ext_control *ext_ctrl)\r
+{\r
+       struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));\r
+\r
+       if (sensor_mirror_cb(client,ext_ctrl->value) != 0)\r
+               SENSOR_TR("sensor_mirror failed, value:0x%x",ext_ctrl->value);\r
+       \r
+       SENSOR_DG("sensor_mirror success, value:0x%x",ext_ctrl->value);\r
+       return 0;\r
+}\r
+\r
+static int sensor_flip_cb(struct i2c_client *client, int flip)\r
+{\r
+       char val;\r
+       int err = 0;    \r
+       SENSOR_DG("flip: %d",flip);\r
+       if (flip) {\r
+               sensor_write(client, 0xfe, 0);\r
+               err = sensor_read(client, 0x14, &val);\r
+               if (err == 0) {\r
+                       if((val & 0x2) == 0)\r
+                               err = sensor_write(client, 0x14, (val |0x2));\r
+                       else \r
+                               err = sensor_write(client, 0x14, (val & 0xfc));\r
+               }\r
+       } else {\r
+               //do nothing\r
+       }\r
+\r
+       return err;    \r
+}\r
+/*\r
+* the function is v4l2 control V4L2_CID_VFLIP callback \r
+*/\r
+static int sensor_v4l2ctrl_flip_cb(struct soc_camera_device *icd, struct sensor_v4l2ctrl_info_s *ctrl_info, \r
+                                                                                                        struct v4l2_ext_control *ext_ctrl)\r
+{\r
+       struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));\r
+\r
+       if (sensor_flip_cb(client,ext_ctrl->value) != 0)\r
+               SENSOR_TR("sensor_flip failed, value:0x%x",ext_ctrl->value);\r
+       \r
+       SENSOR_DG("sensor_flip success, value:0x%x",ext_ctrl->value);\r
+       return 0;\r
+}\r
+/*\r
+* the functions are focus callbacks\r
+*/\r
+static int sensor_focus_init_usr_cb(struct i2c_client *client){\r
+       return 0;\r
+}\r
+\r
+static int sensor_focus_af_single_usr_cb(struct i2c_client *client){\r
+       return 0;\r
+}\r
+\r
+static int sensor_focus_af_near_usr_cb(struct i2c_client *client){\r
+       return 0;\r
+}\r
+\r
+static int sensor_focus_af_far_usr_cb(struct i2c_client *client){\r
+       return 0;\r
+}\r
+\r
+static int sensor_focus_af_specialpos_usr_cb(struct i2c_client *client,int pos){\r
+       return 0;\r
+}\r
+\r
+static int sensor_focus_af_const_usr_cb(struct i2c_client *client){\r
+       return 0;\r
+}\r
+static int sensor_focus_af_const_pause_usr_cb(struct i2c_client *client)
 {
-    u8 reg;
-    u8 val;
-};
-
-/* init SVGA preview */
-static struct reginfo sensor_init_data[] =
-{
-         /*init registers code.*/
-#if 1
-       {0xfe,0x80},   // soft reset    
-                       
-       {0x1a,0x16},    
-       {0xd2,0x10},   // close AEC
-       {0x22,0x55},   // close AWB
-
-       {0x5a,0x56}, 
-       {0x5b,0x40},
-       {0x5c,0x4a},                    
-
-       {0x22,0x57}, 
-               
-       {0x01,0xfa}, 
-       {0x02,0x70}, 
-       {0x0f,0x01}, 
-
-       {0xe2,0x00}, 
-       {0xe3,0x64}, 
-
-       {0x03,0x01}, 
-       {0x04,0x2c}, 
-
-       {0x05,0x00},
-       {0x06,0x00},
-       {0x07,0x00}, 
-       {0x08,0x00}, 
-       {0x09,0x01}, 
-       {0x0a,0xe8}, 
-       {0x0b,0x02}, 
-       {0x0c,0x88}, 
-       {0x0d,0x02}, 
-       {0x0e,0x02}, 
-       {0x10,0x22}, 
-       {0x11,0x0d}, 
-       {0x12,0x2a}, 
-       {0x13,0x00}, 
-       {0x14,0x11},    
-       {0x15,0x0a}, 
-       {0x16,0x05}, 
-       {0x17,0x01}, 
-
-       {0x1b,0x03}, 
-       {0x1c,0xc1}, 
-       {0x1d,0x08}, 
-       {0x1e,0x20},
-       {0x1f,0x16}, 
-
-       {0x20,0xff}, 
-       {0x21,0xf8}, 
-       {0x24,0xa0}, 
-       {0x25,0x0f},
-       //output sync_mode
-       {0x26,0x03}, 
-       {0x2f,0x01}, 
-       /////////////////////////////////////////////////////////////////////
-       /////////////////////////// grab_t ////////////////////////////////
-       /////////////////////////////////////////////////////////////////////
-       {0x30,0xf7}, 
-       {0x31,0x40},
-       {0x32,0x00}, 
-       {0x39,0x04}, 
-       {0x3a,0x20}, 
-       {0x3b,0x20}, 
-       {0x3c,0x02}, 
-       {0x3d,0x02}, 
-       {0x3e,0x02},
-       {0x3f,0x02}, 
-       
-       //gain
-       {0x50,0x24}, 
-       
-       {0x53,0x82}, 
-       {0x54,0x80}, 
-       {0x55,0x80}, 
-       {0x56,0x82}, 
-       
-       /////////////////////////////////////////////////////////////////////
-       /////////////////////////// LSC_t  ////////////////////////////////
-       /////////////////////////////////////////////////////////////////////
-       {0x8b,0x20}, 
-       {0x8c,0x20}, 
-       {0x8d,0x20}, 
-       {0x8e,0x10}, 
-       {0x8f,0x10}, 
-       {0x90,0x10}, 
-       {0x91,0x3c}, 
-       {0x92,0x50}, 
-       {0x5d,0x12}, 
-       {0x5e,0x1a}, 
-       {0x5f,0x24}, 
-       /////////////////////////////////////////////////////////////////////
-       /////////////////////////// DNDD_t  ///////////////////////////////
-       /////////////////////////////////////////////////////////////////////
-       {0x60,0x07}, 
-       {0x61,0x0e}, 
-       {0x62,0x0c}, 
-       {0x64,0x03}, 
-       {0x66,0xe8}, 
-       {0x67,0x86}, 
-       {0x68,0xa2}, 
-       
-       /////////////////////////////////////////////////////////////////////
-       /////////////////////////// asde_t ///////////////////////////////
-       /////////////////////////////////////////////////////////////////////
-       {0x69,0x20}, 
-       {0x6a,0x0f}, 
-       {0x6b,0x00}, 
-       {0x6c,0x53}, 
-       {0x6d,0x83}, 
-       {0x6e,0xac}, 
-       {0x6f,0xac}, 
-       {0x70,0x15}, 
-       {0x71,0x33}, 
-       /////////////////////////////////////////////////////////////////////
-       /////////////////////////// eeintp_t///////////////////////////////
-       /////////////////////////////////////////////////////////////////////
-       {0x72,0xdc},  
-       {0x73,0x80},  
-       //for high resolution in light scene
-       {0x74,0x02}, 
-       {0x75,0x3f}, 
-       {0x76,0x02}, 
-       {0x77,0x54}, 
-       {0x78,0x88}, 
-       {0x79,0x81}, 
-       {0x7a,0x81}, 
-       {0x7b,0x22}, 
-       {0x7c,0xff},
-       
-       
-       /////////////////////////////////////////////////////////////////////
-       ///////////////////////////CC_t///////////////////////////////
-       /////////////////////////////////////////////////////////////////////
-       {0x93,0x45}, 
-       {0x94,0x00}, 
-       {0x95,0x00}, 
-       {0x96,0x00}, 
-       {0x97,0x45}, 
-       {0x98,0xf0}, 
-       {0x9c,0x00}, 
-       {0x9d,0x03}, 
-       {0x9e,0x00}, 
-
-       
-       
-       /////////////////////////////////////////////////////////////////////
-       ///////////////////////////YCP_t///////////////////////////////
-       /////////////////////////////////////////////////////////////////////
-       {0xb1,0x40}, 
-       {0xb2,0x40}, 
-       {0xb8,0x20}, 
-       {0xbe,0x36}, 
-       {0xbf,0x00}, 
-       /////////////////////////////////////////////////////////////////////
-       ///////////////////////////AEC_t///////////////////////////////
-       /////////////////////////////////////////////////////////////////////
-       {0xd0,0xc9},  
-       {0xd1,0x10},  
-//     {0xd2,0x90},  
-       {0xd3,0x80},  
-       {0xd5,0xf2}, 
-       {0xd6,0x16},  
-       {0xdb,0x92}, 
-       {0xdc,0xa5},  
-       {0xdf,0x23},   
-       {0xd9,0x00},  
-       {0xda,0x00},  
-       {0xe0,0x09},
-
-       {0xec,0x20},  
-       {0xed,0x04},  
-       {0xee,0xa0},  
-       {0xef,0x40},  
-
-       //Y_gamma
-       {0xc0,0x00},
-       {0xc1,0x0B},
-       {0xc2,0x15},
-       {0xc3,0x27},
-       {0xc4,0x39},
-       {0xc5,0x49},
-       {0xc6,0x5A},
-       {0xc7,0x6A},
-       {0xc8,0x89},
-       {0xc9,0xA8},
-       {0xca,0xC6},
-       {0xcb,0xE3},
-       {0xcc,0xFF},
-
-       /////////////////////////////////////////////////////////////////
-       /////////////////////////// ABS_t ///////////////////////////////
-       /////////////////////////////////////////////////////////////////
-       {0xf0,0x02},
-       {0xf1,0x01},
-       {0xf2,0x00}, 
-       {0xf3,0x30}, 
-       
-       /////////////////////////////////////////////////////////////////
-       /////////////////////////// Measure Window ///////////////////////
-       /////////////////////////////////////////////////////////////////
-       {0xf7,0x04}, 
-       {0xf8,0x02}, 
-       {0xf9,0x9f},
-       {0xfa,0x78},
-
-#else
-       {0xfe,0x80},   // soft reset    
-       
-       {0x1a,0x16},    
-       {0xd2,0x10},   // close AEC
-       {0x22,0x55},   // close AWB
-
-       {0x5a,0x56}, 
-       {0x5b,0x40},
-       {0x5c,0x4a},                    
-
-       {0x22,0x57}, 
-               
-       {0x01,0xfa}, 
-       {0x02,0x70}, 
-       {0x0f,0x01}, 
-
-       {0xe2,0x00}, 
-       {0xe3,0x64}, 
-
-       {0x03,0x01}, 
-       {0x04,0x2c}, 
-
-
-       {0x05,0x00},
-       {0x06,0x00},
-       {0x07,0x00}, 
-       {0x08,0x00}, 
-       {0x09,0x01}, 
-       {0x0a,0xe8}, 
-       {0x0b,0x02}, 
-       {0x0c,0x88}, 
-       {0x0d,0x02}, 
-       {0x0e,0x02}, 
-       {0x10,0x22}, 
-       {0x11,0x0d}, 
-       {0x12,0x2a}, 
-       {0x13,0x00}, 
-       
-       {0x15,0x0a}, 
-       {0x16,0x05}, 
-       {0x17,0x01}, 
-
-       {0x1b,0x03}, 
-       {0x1c,0xc1}, 
-       {0x1d,0x08}, 
-       {0x1e,0x20},
-       {0x1f,0x16}, 
-
-       {0x20,0xff}, 
-       {0x21,0xf8}, 
-       {0x24,0xa2}, 
-       {0x25,0x0f},
-       //output sync_mode
-       {0x26,0x03}, 
-       {0x2f,0x01}, 
-       /////////////////////////////////////////////////////////////////////
-       /////////////////////////// grab_t ////////////////////////////////
-       /////////////////////////////////////////////////////////////////////
-       {0x30,0xf7}, 
-       {0x31,0x40},
-       {0x32,0x00}, 
-       {0x39,0x04}, 
-       {0x3a,0x20}, 
-       {0x3b,0x20}, 
-       {0x3c,0x02}, 
-       {0x3d,0x02}, 
-       {0x3e,0x02},
-       {0x3f,0x02}, 
-       
-       //gain
-       {0x50,0x24}, 
-               
-       {0x53,0x82}, 
-       {0x54,0x80}, 
-       {0x55,0x80}, 
-       {0x56,0x82}, 
-       
-       /////////////////////////////////////////////////////////////////////
-       /////////////////////////// LSC_t  ////////////////////////////////
-       /////////////////////////////////////////////////////////////////////
-       {0x8b,0x20}, 
-       {0x8c,0x20}, 
-       {0x8d,0x20}, 
-       {0x8e,0x10}, 
-       {0x8f,0x10}, 
-       {0x90,0x10}, 
-       {0x91,0x3c}, 
-       {0x92,0x50}, 
-       {0x5d,0x12}, 
-       {0x5e,0x1a}, 
-       {0x5f,0x24}, 
-       /////////////////////////////////////////////////////////////////////
-       /////////////////////////// DNDD_t  ///////////////////////////////
-       /////////////////////////////////////////////////////////////////////
-       {0x60,0x07}, 
-       {0x61,0x0e}, 
-       {0x62,0x0c}, 
-       {0x64,0x03}, 
-       {0x66,0xe8}, 
-       {0x67,0x86}, 
-       {0x68,0xa2}, 
-       
-       /////////////////////////////////////////////////////////////////////
-       /////////////////////////// asde_t ///////////////////////////////
-       /////////////////////////////////////////////////////////////////////
-       {0x69,0x20}, 
-       {0x6a,0x0f}, 
-       {0x6b,0x00}, 
-       {0x6c,0x53}, 
-       {0x6d,0x83}, 
-       {0x6e,0xac}, 
-       {0x6f,0xac}, 
-       {0x70,0x15}, 
-       {0x71,0x33}, 
-       /////////////////////////////////////////////////////////////////////
-       /////////////////////////// eeintp_t///////////////////////////////
-#endif
-       {0x23,0x00},
-       {0x2d,0x0a}, // 0x08
-       {0x20,0xff},
-       {0xd2,0x90},
-       {0x73,0x00},
-       {0x77,0x54},
-                       
-       {0xb3,0x40},
-       {0xb4,0x80},
-       {0xba,0x00},
-       {0xbb,0x00},
-    {0x00,0x00}
-};
-
-
-/* 640X480 VGA */
-static struct reginfo sensor_vga[] =
-{
-       //{0x45 , 0x0f}, //output enable
-       {0x15 , 0x0a}, //output enable
-       {0x0,0x0}
-};
-
-/* 352X288 CIF */
-static struct reginfo sensor_cif[] =
-{};
-
-/* 320*240 QVGA */
-static  struct reginfo sensor_qvga[] =
-{};
-
-/* 176X144 QCIF*/
-static struct reginfo sensor_qcif[] =
-{};
-
-
-static  struct reginfo sensor_ClrFmt_YUYV[]=
-{
-    {0x24,0xa2}, 
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_ClrFmt_UYVY[]=
-{
-    {0x24,0xa0}, 
-    {0x00, 0x00}
-};
-
-#if CONFIG_SENSOR_WhiteBalance
-static  struct reginfo sensor_WhiteB_Auto[]=
-{
-       {0x5a,0x56}, //for AWB can adjust back
-       {0x5b,0x40},
-       {0x5c,0x4a},                    
-       {0x22,0x57},     // Enable AWB
-       {0x00, 0x00}
-};
-/* Cloudy Colour Temperature : 6500K - 8000K  */
-static  struct reginfo sensor_WhiteB_Cloudy[]=
-{
-       {0x22,0x55},   // Disable AWB 
-       {0x5a,0x8c}, //WB_manual_gain 
-       {0x5b,0x50},
-       {0x5c,0x40},
-       {0x00, 0x00}
-};
-/* ClearDay Colour Temperature : 5000K - 6500K  */
-static  struct reginfo sensor_WhiteB_ClearDay[]=
-{
-    //Sunny
-       {0x22,0x55},   
-       {0x5a,0x74}, 
-       {0x5b,0x52},
-       {0x5c,0x40},    
-       {0x00, 0x00}
-};
-/* Office Colour Temperature : 3500K - 5000K  */
-static  struct reginfo sensor_WhiteB_Incandescent[]=
-{
-    //Incandescent
-       {0x22,0x55}, 
-       {0x5a,0x48},
-       {0x5b,0x40},
-       {0x5c,0x5c},
-       {0x00, 0x00}
-
-};
-/* Home Colour Temperature : 2500K - 3500K  */
-static  struct reginfo sensor_WhiteB_Fluorescent[]=
-{
-    //fluorescent
-       {0x22,0x55},   
-       {0x5a,0x40},
-       {0x5b,0x42},
-       {0x5c,0x50},
-       {0x00, 0x00}
-};
-static struct reginfo *sensor_WhiteBalanceSeqe[] = {sensor_WhiteB_Auto, sensor_WhiteB_Incandescent,sensor_WhiteB_Fluorescent,
-    sensor_WhiteB_ClearDay, sensor_WhiteB_Cloudy,NULL,
-};
-#endif
-
-#if CONFIG_SENSOR_Brightness
-static  struct reginfo sensor_Brightness0[]=
-{
-    // Brightness -2
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Brightness1[]=
-{
-    // Brightness -1
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Brightness2[]=
-{
-    //  Brightness 0
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Brightness3[]=
-{
-    // Brightness +1
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Brightness4[]=
-{
-    //  Brightness +2
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Brightness5[]=
-{
-    //  Brightness +3
-
-    {0x00, 0x00}
-};
-static struct reginfo *sensor_BrightnessSeqe[] = {sensor_Brightness0, sensor_Brightness1, sensor_Brightness2, sensor_Brightness3,
-    sensor_Brightness4, sensor_Brightness5,NULL,
-};
-
-#endif
-
-#if CONFIG_SENSOR_Effect
-static  struct reginfo sensor_Effect_Normal[] =
-{
-       {0x23,0x00},
-       {0x2d,0x0a}, // 0x08
-       {0x20,0xff},
-       {0xd2,0x90},
-       {0x73,0x00},
-       {0x77,0x54},
-                       
-       {0xb3,0x40},
-       {0xb4,0x80},
-       {0xba,0x00},
-       {0xbb,0x00},
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Effect_WandB[] =
-{
-       {0x23,0x02},            
-       {0x2d,0x0a},
-       {0x20,0xbf},
-       {0xd2,0x10},
-       {0x73,0x01},
-
-       {0x51,0x40},
-       {0x52,0x40},
-       {0xb3,0x60},
-       {0xb4,0x40},
-       {0xba,0x00},
-       {0xbb,0x00},
-       {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Effect_Sepia[] =
-{
-       {0x23,0x02},            
-       {0x2d,0x0a},
-       {0x20,0xff},
-       {0xd2,0x90},
-       {0x73,0x00},
-
-       {0xb3,0x40},
-       {0xb4,0x80},
-       {0xba,0xd0},
-       {0xbb,0x28},    
-       {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Effect_Negative[] =
-{
-    //Negative
-       {0x23,0x03},    
-       {0x2d,0x0a},
-       {0x20,0xff},
-       {0xd2,0x90},
-       {0x73,0x00},
-
-       {0xb3,0x40},
-       {0xb4,0x80},
-       {0xba,0x00},
-       {0xbb,0x00},
-       {0x00, 0x00}
-};
-static  struct reginfo sensor_Effect_Bluish[] =
-{
-    // Bluish
-       {0x23,0x02},    
-       {0x2d,0x0a},
-       {0x20,0xff},
-       {0xd2,0x90},
-       {0x73,0x00},
-
-       {0xb3,0x40},
-       {0xb4,0x80},
-       {0xba,0x50},
-       {0xbb,0xe0},
-       {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Effect_Green[] =
-{
-    //  Greenish
-       {0x23,0x02},    
-       {0x2d,0x0a},
-       {0x20,0xff},
-       {0xd2,0x90},
-       {0x77,0x88},
-
-       {0xb3,0x40},
-       {0xb4,0x80},
-       {0xba,0xc0},
-       {0xbb,0xc0},
-       {0x00, 0x00}
-};
-
-
-static struct reginfo sensor_Effect_Grayscale[]=
-{
-       {0x23,0x02},    
-       {0x2d,0x0a},
-       {0x20,0xff},
-       {0xd2,0x90},
-       {0x73,0x00},
-
-       {0xb3,0x40},
-       {0xb4,0x80},
-       {0xba,0x00},
-       {0xbb,0x00},
-       {0x00, 0x00}
-};
-
-static struct reginfo *sensor_EffectSeqe[] = {sensor_Effect_Normal, sensor_Effect_WandB, sensor_Effect_Negative,sensor_Effect_Sepia,
-    sensor_Effect_Bluish, sensor_Effect_Green,sensor_Effect_Grayscale,NULL,
-};
-#endif
-#if CONFIG_SENSOR_Exposure
-static  struct reginfo sensor_Exposure0[]=
-{
-    //-3
-
-};
-
-static  struct reginfo sensor_Exposure1[]=
-{
-    //-2
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Exposure2[]=
-{
-    //-0.3EV
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Exposure3[]=
-{
-    //default
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Exposure4[]=
-{
-    // 1
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Exposure5[]=
-{
-    // 2
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Exposure6[]=
-{
-    // 3
-
-    {0x00, 0x00}
-};
-
-static struct reginfo *sensor_ExposureSeqe[] = {sensor_Exposure0, sensor_Exposure1, sensor_Exposure2, sensor_Exposure3,
-    sensor_Exposure4, sensor_Exposure5,sensor_Exposure6,NULL,
-};
-#endif
-#if CONFIG_SENSOR_Saturation
-static  struct reginfo sensor_Saturation0[]=
-{
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Saturation1[]=
-{
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Saturation2[]=
-{
-
-    {0x00, 0x00}
-};
-static struct reginfo *sensor_SaturationSeqe[] = {sensor_Saturation0, sensor_Saturation1, sensor_Saturation2, NULL,};
-
-#endif
-#if CONFIG_SENSOR_Contrast
-static  struct reginfo sensor_Contrast0[]=
-{
-    //Contrast -3
-  
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Contrast1[]=
-{
-    //Contrast -2
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Contrast2[]=
-{
-    // Contrast -1
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Contrast3[]=
-{
-    //Contrast 0
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Contrast4[]=
-{
-    //Contrast +1
-
-    {0x00, 0x00}
-};
-
-
-static  struct reginfo sensor_Contrast5[]=
-{
-    //Contrast +2
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_Contrast6[]=
-{
-    //Contrast +3
-
-    {0x00, 0x00}
-};
-static struct reginfo *sensor_ContrastSeqe[] = {sensor_Contrast0, sensor_Contrast1, sensor_Contrast2, sensor_Contrast3,
-    sensor_Contrast4, sensor_Contrast5, sensor_Contrast6, NULL,
-};
-
-#endif
-#if CONFIG_SENSOR_Mirror
-static  struct reginfo sensor_MirrorOn[]=
-{
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_MirrorOff[]=
-{
-
-    {0x00, 0x00}
-};
-static struct reginfo *sensor_MirrorSeqe[] = {sensor_MirrorOff, sensor_MirrorOn,NULL,};
-#endif
-#if CONFIG_SENSOR_Flip
-static  struct reginfo sensor_FlipOn[]=
-{
-
-    {0x00, 0x00}
-};
-
-static  struct reginfo sensor_FlipOff[]=
-{
-
-    {0x00, 0x00}
-};
-static struct reginfo *sensor_FlipSeqe[] = {sensor_FlipOff, sensor_FlipOn,NULL,};
-
-#endif
-#if CONFIG_SENSOR_Scene
-static  struct reginfo sensor_SceneAuto[] =
-{
-#if 0                           /* ddl@rock-chips.com : */
-    {0x3014, 0x04},
-    {0x3015, 0x00},
-    {0x302e, 0x00},
-    {0x302d, 0x00},
-    {0x00, 0x00}
-#else
-       {0xec  ,0x20},
-       {0x20  ,0x7f},  // close cc
-       {0x3c  ,0x02},
-       {0x3d  ,0x02},
-       {0x3e  ,0x02},
-       {0x3f  ,0x02},
-       {0x00, 0x00}
-#endif
-};
-
-static  struct reginfo sensor_SceneNight[] =
-{
-#if 1
-    //30fps ~ 5fps night mode for 60/50Hz light environment, 24Mhz clock input,36Mzh pclk
-       {0xec  ,0x30},
-       {0x20  ,0x5f},  // close cc
-       {0x3c  ,0x08},
-       {0x3d  ,0x08},
-       {0x3e  ,0x08},
-       {0x3f  ,0x08},
-       {0x00, 0x00}
-#else
-    //15fps ~ 5fps night mode for 60/50Hz light environment, 24Mhz clock input,18Mhz pclk
-    {0x300e, 0x34},
-    {0x3011, 0x01},
-    {0x302c, 0x00},
-    {0x3071, 0x00},
-    {0x3070, 0x5d},
-    {0x301c, 0x05},
-    {0x3073, 0x00},
-    {0x3072, 0x4d},
-    {0x301d, 0x07},
-    {0x3014, 0x0c},
-    {0x3015, 0x50},
-    {0x302e, 0x00},
-    {0x302d, 0x00},
-#endif
-};
-static struct reginfo *sensor_SceneSeqe[] = {sensor_SceneAuto, sensor_SceneNight,NULL,};
-
-#endif
-#if CONFIG_SENSOR_DigitalZoom
-static struct reginfo sensor_Zoom0[] =
-{
-    {0x0, 0x0},
-};
-
-static struct reginfo sensor_Zoom1[] =
-{
-     {0x0, 0x0},
-};
-
-static struct reginfo sensor_Zoom2[] =
-{
-    {0x0, 0x0},
-};
-
-
-static struct reginfo sensor_Zoom3[] =
-{
-    {0x0, 0x0},
-};
-static struct reginfo *sensor_ZoomSeqe[] = {sensor_Zoom0, sensor_Zoom1, sensor_Zoom2, sensor_Zoom3, NULL,};
-#endif
-static const struct v4l2_querymenu sensor_menus[] =
-{
-       #if CONFIG_SENSOR_WhiteBalance
-    { .id = V4L2_CID_DO_WHITE_BALANCE,  .index = 0,  .name = "auto",  .reserved = 0, }, {  .id = V4L2_CID_DO_WHITE_BALANCE,  .index = 1, .name = "incandescent",  .reserved = 0,},
-    { .id = V4L2_CID_DO_WHITE_BALANCE,  .index = 2,  .name = "fluorescent", .reserved = 0,}, {  .id = V4L2_CID_DO_WHITE_BALANCE, .index = 3,  .name = "daylight", .reserved = 0,},
-    { .id = V4L2_CID_DO_WHITE_BALANCE,  .index = 4,  .name = "cloudy-daylight", .reserved = 0,},
-    #endif
-
-       #if CONFIG_SENSOR_Effect
-    { .id = V4L2_CID_EFFECT,  .index = 0,  .name = "none",  .reserved = 0, }, {  .id = V4L2_CID_EFFECT,  .index = 1, .name = "mono",  .reserved = 0,},
-    { .id = V4L2_CID_EFFECT,  .index = 2,  .name = "negative", .reserved = 0,}, {  .id = V4L2_CID_EFFECT, .index = 3,  .name = "sepia", .reserved = 0,},
-    { .id = V4L2_CID_EFFECT,  .index = 4, .name = "posterize", .reserved = 0,} ,{ .id = V4L2_CID_EFFECT,  .index = 5,  .name = "aqua", .reserved = 0,},
-    { .id = V4L2_CID_EFFECT,  .index = 6,  .name = "grayscale", .reserved = 0,},
-    #endif
-
-       #if CONFIG_SENSOR_Scene
-    { .id = V4L2_CID_SCENE,  .index = 0, .name = "auto", .reserved = 0,} ,{ .id = V4L2_CID_SCENE,  .index = 1,  .name = "night", .reserved = 0,},
-    #endif
-
-       #if CONFIG_SENSOR_Flash
-    { .id = V4L2_CID_FLASH,  .index = 0,  .name = "off",  .reserved = 0, }, {  .id = V4L2_CID_FLASH,  .index = 1, .name = "auto",  .reserved = 0,},
-    { .id = V4L2_CID_FLASH,  .index = 2,  .name = "on", .reserved = 0,}, {  .id = V4L2_CID_FLASH, .index = 3,  .name = "torch", .reserved = 0,},
-    #endif
-};
-
-static const struct v4l2_queryctrl sensor_controls[] =
-{
-       #if CONFIG_SENSOR_WhiteBalance
-    {
-        .id            = V4L2_CID_DO_WHITE_BALANCE,
-        .type          = V4L2_CTRL_TYPE_MENU,
-        .name          = "White Balance Control",
-        .minimum       = 0,
-        .maximum       = 4,
-        .step          = 1,
-        .default_value = 0,
-    },
-    #endif
-
-       #if CONFIG_SENSOR_Brightness
-       {
-        .id            = V4L2_CID_BRIGHTNESS,
-        .type          = V4L2_CTRL_TYPE_INTEGER,
-        .name          = "Brightness Control",
-        .minimum       = -3,
-        .maximum       = 2,
-        .step          = 1,
-        .default_value = 0,
-    },
-    #endif
-
-       #if CONFIG_SENSOR_Effect
-       {
-        .id            = V4L2_CID_EFFECT,
-        .type          = V4L2_CTRL_TYPE_MENU,
-        .name          = "Effect Control",
-        .minimum       = 0,
-        .maximum       = 6,
-        .step          = 1,
-        .default_value = 0,
-    },
-       #endif
-
-       #if CONFIG_SENSOR_Exposure
-       {
-        .id            = V4L2_CID_EXPOSURE,
-        .type          = V4L2_CTRL_TYPE_INTEGER,
-        .name          = "Exposure Control",
-        .minimum       = 0,
-        .maximum       = 6,
-        .step          = 1,
-        .default_value = 0,
-    },
-       #endif
-
-       #if CONFIG_SENSOR_Saturation
-       {
-        .id            = V4L2_CID_SATURATION,
-        .type          = V4L2_CTRL_TYPE_INTEGER,
-        .name          = "Saturation Control",
-        .minimum       = 0,
-        .maximum       = 2,
-        .step          = 1,
-        .default_value = 0,
-    },
-    #endif
-
-       #if CONFIG_SENSOR_Contrast
-       {
-        .id            = V4L2_CID_CONTRAST,
-        .type          = V4L2_CTRL_TYPE_INTEGER,
-        .name          = "Contrast Control",
-        .minimum       = -3,
-        .maximum       = 3,
-        .step          = 1,
-        .default_value = 0,
-    },
-       #endif
-
-       #if CONFIG_SENSOR_Mirror
-       {
-        .id            = V4L2_CID_HFLIP,
-        .type          = V4L2_CTRL_TYPE_BOOLEAN,
-        .name          = "Mirror Control",
-        .minimum       = 0,
-        .maximum       = 1,
-        .step          = 1,
-        .default_value = 1,
-    },
-    #endif
-
-       #if CONFIG_SENSOR_Flip
-       {
-        .id            = V4L2_CID_VFLIP,
-        .type          = V4L2_CTRL_TYPE_BOOLEAN,
-        .name          = "Flip Control",
-        .minimum       = 0,
-        .maximum       = 1,
-        .step          = 1,
-        .default_value = 1,
-    },
-    #endif
-
-       #if CONFIG_SENSOR_Scene
-    {
-        .id            = V4L2_CID_SCENE,
-        .type          = V4L2_CTRL_TYPE_MENU,
-        .name          = "Scene Control",
-        .minimum       = 0,
-        .maximum       = 1,
-        .step          = 1,
-        .default_value = 0,
-    },
-    #endif
-
-       #if CONFIG_SENSOR_DigitalZoom
-    {
-        .id            = V4L2_CID_ZOOM_RELATIVE,
-        .type          = V4L2_CTRL_TYPE_INTEGER,
-        .name          = "DigitalZoom Control",
-        .minimum       = -1,
-        .maximum       = 1,
-        .step          = 1,
-        .default_value = 0,
-    }, {
-        .id            = V4L2_CID_ZOOM_ABSOLUTE,
-        .type          = V4L2_CTRL_TYPE_INTEGER,
-        .name          = "DigitalZoom Control",
-        .minimum       = 0,
-        .maximum       = 3,
-        .step          = 1,
-        .default_value = 0,
-    },
-    #endif
-
-       #if CONFIG_SENSOR_Focus
-       {
-        .id            = V4L2_CID_FOCUS_RELATIVE,
-        .type          = V4L2_CTRL_TYPE_INTEGER,
-        .name          = "Focus Control",
-        .minimum       = -1,
-        .maximum       = 1,
-        .step          = 1,
-        .default_value = 0,
-    }, {
-        .id            = V4L2_CID_FOCUS_ABSOLUTE,
-        .type          = V4L2_CTRL_TYPE_INTEGER,
-        .name          = "Focus Control",
-        .minimum       = 0,
-        .maximum       = 255,
-        .step          = 1,
-        .default_value = 125,
-    },
-    #endif
-
-       #if CONFIG_SENSOR_Flash
-       {
-        .id            = V4L2_CID_FLASH,
-        .type          = V4L2_CTRL_TYPE_MENU,
-        .name          = "Flash Control",
-        .minimum       = 0,
-        .maximum       = 3,
-        .step          = 1,
-        .default_value = 0,
-    },
-       #endif
-};
-
-static int sensor_probe(struct i2c_client *client, const struct i2c_device_id *did);
-static int sensor_video_probe(struct soc_camera_device *icd, struct i2c_client *client);
-static int sensor_g_control(struct v4l2_subdev *sd, struct v4l2_control *ctrl);
-static int sensor_s_control(struct v4l2_subdev *sd, struct v4l2_control *ctrl);
-static int sensor_g_ext_controls(struct v4l2_subdev *sd,  struct v4l2_ext_controls *ext_ctrl);
-static int sensor_s_ext_controls(struct v4l2_subdev *sd,  struct v4l2_ext_controls *ext_ctrl);
-static int sensor_suspend(struct soc_camera_device *icd, pm_message_t pm_msg);
-static int sensor_resume(struct soc_camera_device *icd);
-static int sensor_set_bus_param(struct soc_camera_device *icd,unsigned long flags);
-static unsigned long sensor_query_bus_param(struct soc_camera_device *icd);
-static int sensor_set_effect(struct soc_camera_device *icd, const struct v4l2_queryctrl *qctrl, int value);
-static int sensor_set_whiteBalance(struct soc_camera_device *icd, const struct v4l2_queryctrl *qctrl, int value);
-static int sensor_deactivate(struct i2c_client *client);
-
-static struct soc_camera_ops sensor_ops =
-{
-    .suspend                     = sensor_suspend,
-    .resume                       = sensor_resume,
-    .set_bus_param             = sensor_set_bus_param,
-    .query_bus_param   = sensor_query_bus_param,
-    .controls          = sensor_controls,
-    .menus                         = sensor_menus,
-    .num_controls              = ARRAY_SIZE(sensor_controls),
-    .num_menus         = ARRAY_SIZE(sensor_menus),
-};
-
-/* only one fixed colorspace per pixelcode */
-struct sensor_datafmt {
-       enum v4l2_mbus_pixelcode code;
-       enum v4l2_colorspace colorspace;
-};
-
-/* Find a data format by a pixel code in an array */
-static const struct sensor_datafmt *sensor_find_datafmt(
-       enum v4l2_mbus_pixelcode code, const struct sensor_datafmt *fmt,
-       int n)
-{
-       int i;
-       for (i = 0; i < n; i++)
-               if (fmt[i].code == code)
-                       return fmt + i;
-
-       return NULL;
-}
-
-static const struct sensor_datafmt sensor_colour_fmts[] = {
-    {V4L2_MBUS_FMT_UYVY8_2X8, V4L2_COLORSPACE_JPEG},
-    {V4L2_MBUS_FMT_YUYV8_2X8, V4L2_COLORSPACE_JPEG}    
-};
-
-typedef struct sensor_info_priv_s
-{
-    int whiteBalance;
-    int brightness;
-    int contrast;
-    int saturation;
-    int effect;
-    int scene;
-    int digitalzoom;
-    int focus;
-    int flash;
-    int exposure;
-       bool snap2preview;
-       bool video2preview;
-    unsigned char mirror;                                        /* HFLIP */
-    unsigned char flip;                                          /* VFLIP */
-    unsigned int winseqe_cur_addr;
-    struct sensor_datafmt fmt;
-    unsigned int funmodule_state;
-} sensor_info_priv_t;
-
-struct sensor
-{
-    struct v4l2_subdev subdev;
-    struct i2c_client *client;
-    sensor_info_priv_t info_priv;
-    int model; /* V4L2_IDENT_OV* codes from v4l2-chip-ident.h */
-#if CONFIG_SENSOR_I2C_NOSCHED
-       atomic_t tasklock_cnt;
-#endif
-       struct rk29camera_platform_data *sensor_io_request;
-    struct rk29camera_gpio_res *sensor_gpio_res;
-};
-
-static struct sensor* to_sensor(const struct i2c_client *client)
-{
-    return container_of(i2c_get_clientdata(client), struct sensor, subdev);
-}
-
-static int sensor_task_lock(struct i2c_client *client, int lock)
-{
-#if CONFIG_SENSOR_I2C_NOSCHED
-       int cnt = 3;
-    struct sensor *sensor = to_sensor(client);
-
-       if (lock) {
-               if (atomic_read(&sensor->tasklock_cnt) == 0) {
-                       while ((atomic_read(&client->adapter->bus_lock.count) < 1) && (cnt>0)) {
-                               SENSOR_TR("\n %s will obtain i2c in atomic, but i2c bus is locked! Wait...\n",SENSOR_NAME_STRING());
-                               msleep(35);
-                               cnt--;
-                       }
-                       if ((atomic_read(&client->adapter->bus_lock.count) < 1) && (cnt<=0)) {
-                               SENSOR_TR("\n %s obtain i2c fail in atomic!!\n",SENSOR_NAME_STRING());
-                               goto sensor_task_lock_err;
-                       }
-                       preempt_disable();
-               }
-
-               atomic_add(1, &sensor->tasklock_cnt);
-       } else {
-               if (atomic_read(&sensor->tasklock_cnt) > 0) {
-                       atomic_sub(1, &sensor->tasklock_cnt);
-
-                       if (atomic_read(&sensor->tasklock_cnt) == 0)
-                               preempt_enable();
-               }
-       }
-       return 0;
-sensor_task_lock_err:
-       return -1;  
-#else
     return 0;
-#endif
-
-}
-
-#if 0
-/* sensor register */
-static int sensor_read(struct i2c_client *client, u8 reg, u8 *val)
-{
-       int ret = 0;
-
-       ret = i2c_master_reg8_recv(client, reg, val, 1,  CONFIG_SENSOR_I2C_SPEED);
-
-       return (ret > 0)? 0 : ret;
-}
-
-static int sensor_write(struct i2c_client *client, u8 reg, u8 val)
-{
-       int ret = 0;
-       
-       ret = i2c_master_reg8_send(client, reg, &val, 1, CONFIG_SENSOR_I2C_SPEED);
-
-       return (ret > 0)? 0 : ret;
-}
-#else
-static int sensor_write(struct i2c_client *client, u8 reg, u8 val)
-{
-    int err,cnt;
-    u8 buf[2];
-    struct i2c_msg msg[1];
-
-    buf[0] = reg;
-    buf[1] = val;
-
-       if (reg == 0xfe)
-               mdelay(10);
-       
-    msg->addr = client->addr;
-    msg->flags = client->flags;
-    msg->buf = buf;
-    msg->len = sizeof(buf);
-    msg->scl_rate = CONFIG_SENSOR_I2C_SPEED;         /* ddl@rock-chips.com : 100kHz */
-    msg->read_type = 0;               /* fpga i2c:0==I2C_NORMAL : direct use number not enum for don't want include spi_fpga.h */
-
-    cnt = 3;
-    err = -EAGAIN;
-
-    while ((cnt-- > 0) && (err < 0)) {                       /* ddl@rock-chips.com :  Transfer again if transent is failed   */
-        err = i2c_transfer(client->adapter, msg, 1);
-
-        if (err >= 0) {
-            return 0;
-        } else {
-            SENSOR_TR("\n %s write reg(0x%x, val:0x%x) failed, try to write again!\n",SENSOR_NAME_STRING(),reg, val);
-            udelay(10);
-        }
-    }
-
-    return err;
-}
-
-/* sensor register read */
-static int sensor_read(struct i2c_client *client, u8 reg, u8 *val)
-{
-    int err,cnt;
-    u8 buf[1];
-    struct i2c_msg msg[2];
-
-    buf[0] = reg ;
-
-    msg[0].addr = client->addr;
-    msg[0].flags = client->flags;
-    msg[0].buf = buf;
-    msg[0].len = sizeof(buf);
-    msg[0].scl_rate = CONFIG_SENSOR_I2C_SPEED;       /* ddl@rock-chips.com : 100kHz */
-    msg[0].read_type = 2;   /* fpga i2c:0==I2C_NO_STOP : direct use number not enum for don't want include spi_fpga.h */
-
-    msg[1].addr = client->addr;
-    msg[1].flags = client->flags|I2C_M_RD;
-    msg[1].buf = buf;
-    msg[1].len = 1;
-    msg[1].scl_rate = CONFIG_SENSOR_I2C_SPEED;                       /* ddl@rock-chips.com : 100kHz */
-    msg[1].read_type = 2;                             /* fpga i2c:0==I2C_NO_STOP : direct use number not enum for don't want include spi_fpga.h */
-
-    cnt = 3;
-    err = -EAGAIN;
-    while ((cnt-- > 0) && (err < 0)) {                       /* ddl@rock-chips.com :  Transfer again if transent is failed   */
-        err = i2c_transfer(client->adapter, msg, 2);
-
-        if (err >= 0) {
-            *val = buf[0];
-            return 0;
-        } else {
-               SENSOR_TR("\n %s read reg(0x%x val:0x%x) failed, try to read again! \n",SENSOR_NAME_STRING(),reg, *val);
-            udelay(10);
-        }
-    }
-
-    return err;
-}
-
-#endif
-
-/* write a array of registers  */
-static int sensor_write_array(struct i2c_client *client, struct reginfo *regarray)
-{
-    int err = 0, cnt;
-    int i = 0;
-#if CONFIG_SENSOR_I2C_RDWRCHK    
-       int j = 0;
-       char valchk;
-#endif
-
-       cnt = 0;
-       if (sensor_task_lock(client, 1) < 0)
-               goto sensor_write_array_end;
-    while (regarray[i].reg != 0)
-    {
-        err = sensor_write(client, regarray[i].reg, regarray[i].val);
-        if (err < 0)
-        {
-            if (cnt-- > 0) {
-                           SENSOR_TR("%s..write failed current reg:0x%x, Write array again !\n", SENSOR_NAME_STRING(),regarray[i].reg);
-                               i = 0;
-                               continue;
-            } else {
-                SENSOR_TR("%s..write array failed!!!\n", SENSOR_NAME_STRING());
-                err = -EPERM;
-                               goto sensor_write_array_end;
-            }
-        } else {
-        #if CONFIG_SENSOR_I2C_RDWRCHK
-                       //mdelay(5);
-                       sensor_read(client, regarray[i].reg, &valchk);
-                       if (valchk != regarray[i].val)
-                               SENSOR_TR("%s Reg:0x%x write(0x%x, 0x%x) fail\n",SENSOR_NAME_STRING(), regarray[i].reg, regarray[i].val, valchk);
-               #endif
-        }
-        i++;
-    }
-
-sensor_write_array_end:
-       sensor_task_lock(client,0);
-       return err;
-}
-#if CONFIG_SENSOR_I2C_RDWRCHK
-static int sensor_readchk_array(struct i2c_client *client, struct reginfo *regarray)
-{
-    int cnt;
-    int i = 0;
-       char valchk;
-
-       cnt = 0;
-       valchk = 0;
-    while (regarray[i].reg != 0)
-    {
-               sensor_read(client, regarray[i].reg, &valchk);
-               if (valchk != regarray[i].val)
-                       SENSOR_TR("%s Reg:0x%x read(0x%x, 0x%x) error\n",SENSOR_NAME_STRING(), regarray[i].reg, regarray[i].val, valchk);
-
-        i++;
-    }
-    return 0;
-}
-#endif
-static int sensor_ioctrl(struct soc_camera_device *icd,enum rk29sensor_power_cmd cmd, int on)
-{
-       struct soc_camera_link *icl = to_soc_camera_link(icd);
-       int ret = 0;
-
-    SENSOR_DG("%s %s  cmd(%d) on(%d)\n",SENSOR_NAME_STRING(),__FUNCTION__,cmd,on);
-       switch (cmd)
-       {
-               case Sensor_PowerDown:
-               {
-                       if (icl->powerdown) {
-                               ret = icl->powerdown(icd->pdev, on);
-                               if (ret == RK29_CAM_IO_SUCCESS) {
-                                       if (on == 0) {
-                                               mdelay(2);
-                                               if (icl->reset)
-                                                       icl->reset(icd->pdev);
-                                       }
-                               } else if (ret == RK29_CAM_EIO_REQUESTFAIL) {
-                                       ret = -ENODEV;
-                                       goto sensor_power_end;
-                               }
-                       }
-                       break;
-               }
-               case Sensor_Flash:
-               {
-                       struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));
-               struct sensor *sensor = to_sensor(client);
-
-                       if (sensor->sensor_io_request && sensor->sensor_io_request->sensor_ioctrl) {
-                               sensor->sensor_io_request->sensor_ioctrl(icd->pdev,Cam_Flash, on);
-                       }
-            break;
-               }
-               default:
-               {
-                       SENSOR_TR("%s %s cmd(0x%x) is unknown!",SENSOR_NAME_STRING(),__FUNCTION__,cmd);
-                       break;
-               }
-       }
-sensor_power_end:
-       return ret;
-}
-static int sensor_init(struct v4l2_subdev *sd, u32 val)
-{
-    struct i2c_client *client = v4l2_get_subdevdata(sd);
-    struct soc_camera_device *icd = client->dev.platform_data;
-    struct sensor *sensor = to_sensor(client);
-       const struct v4l2_queryctrl *qctrl;
-    const struct sensor_datafmt *fmt;
-    char value;
-    int ret;
-
-       if (sensor_ioctrl(icd, Sensor_PowerDown, 0) < 0) {
-               ret = -ENODEV;
-               goto sensor_INIT_ERR;
-       }
-
-    /* soft reset */
-       if (sensor_task_lock(client,1)<0)
-               goto sensor_INIT_ERR;
-    ret = sensor_write(client, 0xfe, 0x80);
-    if (ret != 0)
-    {
-        SENSOR_TR("%s soft reset sensor failed\n",SENSOR_NAME_STRING());
-        ret = -ENODEV;
-               goto sensor_INIT_ERR;
-    }
-
-    mdelay(5);  //delay 5 microseconds
-       /* check if it is an sensor sensor */
-    ret = sensor_read(client, 0x00, &value);
-    if (ret != 0) {
-        SENSOR_TR("read chip id high byte failed\n");
-        ret = -ENODEV;
-        goto sensor_INIT_ERR;
-    }
-
-    if (value == SENSOR_ID) {
-        sensor->model = SENSOR_V4L2_IDENT;
-    } else {
-        SENSOR_TR("error: %s mismatched   pid = 0x%x\n", SENSOR_NAME_STRING(), value);
-        ret = -ENODEV;
-        goto sensor_INIT_ERR;
-    }
-
-    ret = sensor_write_array(client, sensor_init_data);
-    if (ret != 0)
-    {
-        SENSOR_TR("error: %s initial failed\n",SENSOR_NAME_STRING());
-        goto sensor_INIT_ERR;
-    }
-       sensor_task_lock(client,0);
-    
-    sensor->info_priv.winseqe_cur_addr  = (int)SENSOR_INIT_WINSEQADR;
-    fmt = sensor_find_datafmt(SENSOR_INIT_PIXFMT,sensor_colour_fmts, ARRAY_SIZE(sensor_colour_fmts));
-    if (!fmt) {
-        SENSOR_TR("error: %s initial array colour fmts is not support!!",SENSOR_NAME_STRING());
-        ret = -EINVAL;
-        goto sensor_INIT_ERR;
-    }
-       sensor->info_priv.fmt = *fmt;
-
-    /* sensor sensor information for initialization  */
-       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_DO_WHITE_BALANCE);
-       if (qctrl)
-       sensor->info_priv.whiteBalance = qctrl->default_value;
-       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_BRIGHTNESS);
-       if (qctrl)
-       sensor->info_priv.brightness = qctrl->default_value;
-       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_EFFECT);
-       if (qctrl)
-       sensor->info_priv.effect = qctrl->default_value;
-       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_EXPOSURE);
-       if (qctrl)
-        sensor->info_priv.exposure = qctrl->default_value;
-
-       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_SATURATION);
-       if (qctrl)
-        sensor->info_priv.saturation = qctrl->default_value;
-       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_CONTRAST);
-       if (qctrl)
-        sensor->info_priv.contrast = qctrl->default_value;
-       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_HFLIP);
-       if (qctrl)
-        sensor->info_priv.mirror = qctrl->default_value;
-       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_VFLIP);
-       if (qctrl)
-        sensor->info_priv.flip = qctrl->default_value;
-       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_SCENE);
-       if (qctrl)
-        sensor->info_priv.scene = qctrl->default_value;
-       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_ZOOM_ABSOLUTE);
-       if (qctrl)
-        sensor->info_priv.digitalzoom = qctrl->default_value;
-
-    /* ddl@rock-chips.com : if sensor support auto focus and flash, programer must run focus and flash code  */
-       #if CONFIG_SENSOR_Focus
-    //sensor_set_focus();
-    qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_FOCUS_ABSOLUTE);
-       if (qctrl)
-        sensor->info_priv.focus = qctrl->default_value;
-       #endif
-
-       #if CONFIG_SENSOR_Flash 
-       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_FLASH);
-       if (qctrl)
-        sensor->info_priv.flash = qctrl->default_value;
-    #endif
-
-    SENSOR_DG("\n%s..%s.. icd->width = %d.. icd->height %d\n",SENSOR_NAME_STRING(),((val == 0)?__FUNCTION__:"sensor_reinit"),icd->user_width,icd->user_height);
-    sensor->info_priv.funmodule_state |= SENSOR_INIT_IS_OK;
-    return 0;
-sensor_INIT_ERR:
-    sensor->info_priv.funmodule_state &= ~SENSOR_INIT_IS_OK;
-       sensor_task_lock(client,0);
-       sensor_deactivate(client);
-    return ret;
-}
-
-static int sensor_deactivate(struct i2c_client *client)
-{
-       struct soc_camera_device *icd = client->dev.platform_data;
-    struct sensor *sensor = to_sensor(client);
-       SENSOR_DG("\n%s..%s.. Enter\n",SENSOR_NAME_STRING(),__FUNCTION__);
-
-       /* ddl@rock-chips.com : all sensor output pin must change to input for other sensor */
-       sensor_ioctrl(icd, Sensor_PowerDown, 1);
-    msleep(100); 
-
-       /* ddl@rock-chips.com : sensor config init width , because next open sensor quickly(soc_camera_open -> Try to configure with default parameters) */
-       icd->user_width = SENSOR_INIT_WIDTH;
-    icd->user_height = SENSOR_INIT_HEIGHT;
-    sensor->info_priv.funmodule_state &= ~SENSOR_INIT_IS_OK;
-       
-       return 0;
-}
-
-static  struct reginfo sensor_power_down_sequence[]=
-{
-    {0x00,0x00}
-};
-static int sensor_suspend(struct soc_camera_device *icd, pm_message_t pm_msg)
-{
-    int ret;
-    struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));
-
-    if (pm_msg.event == PM_EVENT_SUSPEND) {
-        SENSOR_DG("\n %s Enter Suspend.. \n", SENSOR_NAME_STRING());
-        ret = sensor_write_array(client, sensor_power_down_sequence) ;
-        if (ret != 0) {
-            SENSOR_TR("\n %s..%s WriteReg Fail.. \n", SENSOR_NAME_STRING(),__FUNCTION__);
-            return ret;
-        } else {
-            ret = sensor_ioctrl(icd, Sensor_PowerDown, 1);
-            if (ret < 0) {
-                           SENSOR_TR("\n %s suspend fail for turn on power!\n", SENSOR_NAME_STRING());
-                return -EINVAL;
-            }
-        }
-    } else {
-        SENSOR_TR("\n %s cann't suppout Suspend..\n",SENSOR_NAME_STRING());
-        return -EINVAL;
-    }
-    return 0;
-}
-
-static int sensor_resume(struct soc_camera_device *icd)
-{
-       int ret;
-
-    ret = sensor_ioctrl(icd, Sensor_PowerDown, 0);
-    if (ret < 0) {
-               SENSOR_TR("\n %s resume fail for turn on power!\n", SENSOR_NAME_STRING());
-        return -EINVAL;
-    }
-
-       SENSOR_DG("\n %s Enter Resume.. \n", SENSOR_NAME_STRING());
-
-    return 0;
-
-}
-
-static int sensor_set_bus_param(struct soc_camera_device *icd,
-                                unsigned long flags)
-{
-
-    return 0;
-}
-
-static unsigned long sensor_query_bus_param(struct soc_camera_device *icd)
-{
-    struct soc_camera_link *icl = to_soc_camera_link(icd);
-    unsigned long flags = SENSOR_BUS_PARAM;
-
-    return soc_camera_apply_sensor_flags(icl, flags);
-}
-
-static int sensor_g_fmt(struct v4l2_subdev *sd, struct v4l2_mbus_framefmt *mf)
-{
-    struct i2c_client *client = v4l2_get_subdevdata(sd);
-    struct soc_camera_device *icd = client->dev.platform_data;
-    struct sensor *sensor = to_sensor(client);
-
-    mf->width  = icd->user_width;
-       mf->height      = icd->user_height;
-       mf->code        = sensor->info_priv.fmt.code;
-       mf->colorspace  = sensor->info_priv.fmt.colorspace;
-       mf->field       = V4L2_FIELD_NONE;
-
-    return 0;
-}
-static bool sensor_fmt_capturechk(struct v4l2_subdev *sd, struct v4l2_mbus_framefmt *mf)
-{
-    bool ret = false;
-
-       if ((mf->width == 1024) && (mf->height == 768)) {
-               ret = true;
-       } else if ((mf->width == 1280) && (mf->height == 1024)) {
-               ret = true;
-       } else if ((mf->width == 1600) && (mf->height == 1200)) {
-               ret = true;
-       } else if ((mf->width == 2048) && (mf->height == 1536)) {
-               ret = true;
-       } else if ((mf->width == 2592) && (mf->height == 1944)) {
-               ret = true;
-       }
-
-       if (ret == true)
-               SENSOR_DG("%s %dx%d is capture format\n", __FUNCTION__, mf->width, mf->height);
-       return ret;
-}
-
-static bool sensor_fmt_videochk(struct v4l2_subdev *sd, struct v4l2_mbus_framefmt *mf)
-{
-    bool ret = false;
-
-       if ((mf->width == 1280) && (mf->height == 720)) {
-               ret = true;
-       } else if ((mf->width == 1920) && (mf->height == 1080)) {
-               ret = true;
-       }
-
-       if (ret == true)
-               SENSOR_DG("%s %dx%d is video format\n", __FUNCTION__, mf->width, mf->height);
-       return ret;
-}
-static int sensor_s_fmt(struct v4l2_subdev *sd, struct v4l2_mbus_framefmt *mf)
-{
-    struct i2c_client *client = v4l2_get_subdevdata(sd);
-    const struct sensor_datafmt *fmt;
-    struct sensor *sensor = to_sensor(client);
-       const struct v4l2_queryctrl *qctrl;
-       struct soc_camera_device *icd = client->dev.platform_data;
-    struct reginfo *winseqe_set_addr=NULL;
-    int ret=0, set_w,set_h;
-
-       fmt = sensor_find_datafmt(mf->code, sensor_colour_fmts,
-                                  ARRAY_SIZE(sensor_colour_fmts));
-       if (!fmt) {
-        ret = -EINVAL;
-        goto sensor_s_fmt_end;
-    }
-
-       if (sensor->info_priv.fmt.code != mf->code) {
-               switch (mf->code)
-               {
-                       case V4L2_MBUS_FMT_YUYV8_2X8:
-                       {
-                               winseqe_set_addr = sensor_ClrFmt_YUYV;
-                               break;
-                       }
-                       case V4L2_MBUS_FMT_UYVY8_2X8:
-                       {
-                               winseqe_set_addr = sensor_ClrFmt_UYVY;
-                               break;
-                       }
-                       default:
-                               break;
-               }
-               if (winseqe_set_addr != NULL) {
-            sensor_write_array(client, winseqe_set_addr);
-                       sensor->info_priv.fmt.code = mf->code;
-            sensor->info_priv.fmt.colorspace= mf->colorspace;            
-                       SENSOR_DG("%s v4l2_mbus_code:%d set success!\n", SENSOR_NAME_STRING(),mf->code);
-               } else {
-                       SENSOR_TR("%s v4l2_mbus_code:%d is invalidate!\n", SENSOR_NAME_STRING(),mf->code);
-               }
-       }
-
-    set_w = mf->width;
-    set_h = mf->height;
-
-       if (((set_w <= 176) && (set_h <= 144)) && sensor_qcif[0].reg)
-       {
-               winseqe_set_addr = sensor_qcif;
-        set_w = 176;
-        set_h = 144;
-       }
-       else if (((set_w <= 320) && (set_h <= 240)) && sensor_qvga[0].reg)
-    {
-        winseqe_set_addr = sensor_qvga;
-        set_w = 320;
-        set_h = 240;
-    }
-    else if (((set_w <= 352) && (set_h<= 288)) && sensor_cif[0].reg)
-    {
-        winseqe_set_addr = sensor_cif;
-        set_w = 352;
-        set_h = 288;
-    }
-    else if (((set_w <= 640) && (set_h <= 480)) && sensor_vga[0].reg)
-    {
-        winseqe_set_addr = sensor_vga;
-        set_w = 640;
-        set_h = 480;
-    }
-    
-    else
-    {
-        winseqe_set_addr = SENSOR_INIT_WINSEQADR;               /* ddl@rock-chips.com : Sensor output smallest size if  isn't support app  */
-        set_w = SENSOR_INIT_WIDTH;
-        set_h = SENSOR_INIT_HEIGHT;
-               SENSOR_TR("\n %s..%s Format is Invalidate. pix->width = %d.. pix->height = %d\n",SENSOR_NAME_STRING(),__FUNCTION__,mf->width,mf->height);
-    }
-
-       if ((int)winseqe_set_addr  != sensor->info_priv.winseqe_cur_addr) {
-        #if CONFIG_SENSOR_Flash
-        if (sensor_fmt_capturechk(sd,mf) == true) {      /* ddl@rock-chips.com : Capture */
-            if ((sensor->info_priv.flash == 1) || (sensor->info_priv.flash == 2)) {
-                sensor_ioctrl(icd, Sensor_Flash, Flash_On);
-                SENSOR_DG("%s flash on in capture!\n", SENSOR_NAME_STRING());
-            }           
-        } else {                                        /* ddl@rock-chips.com : Video */
-            if ((sensor->info_priv.flash == 1) || (sensor->info_priv.flash == 2)) {
-                sensor_ioctrl(icd, Sensor_Flash, Flash_Off);
-                SENSOR_DG("%s flash off in preivew!\n", SENSOR_NAME_STRING());
-            }
-        }
-        #endif
-               ret |= sensor_write_array(client, winseqe_set_addr);
-               if (ret != 0) {
-                       SENSOR_TR("%s set format capability failed\n", SENSOR_NAME_STRING());
-            #if CONFIG_SENSOR_Flash
-            if (sensor_fmt_capturechk(sd,mf) == true) {
-                if ((sensor->info_priv.flash == 1) || (sensor->info_priv.flash == 2)) {
-                    sensor_ioctrl(icd, Sensor_Flash, Flash_Off);
-                    SENSOR_TR("%s Capture format set fail, flash off !\n", SENSOR_NAME_STRING());
-                }
-            }
-            #endif
-                       goto sensor_s_fmt_end;
-               }
-
-               sensor->info_priv.winseqe_cur_addr  = (int)winseqe_set_addr;
-
-               if (sensor_fmt_capturechk(sd,mf) == true) {                                 /* ddl@rock-chips.com : Capture */
-                       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_EFFECT);
-                       sensor_set_effect(icd, qctrl,sensor->info_priv.effect);
-                       if (sensor->info_priv.whiteBalance != 0) {
-                               qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_DO_WHITE_BALANCE);
-                               sensor_set_whiteBalance(icd, qctrl,sensor->info_priv.whiteBalance);
-                       }
-                       sensor->info_priv.snap2preview = true;
-               } else if (sensor_fmt_videochk(sd,mf) == true) {                        /* ddl@rock-chips.com : Video */
-                       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_EFFECT);
-                       sensor_set_effect(icd, qctrl,sensor->info_priv.effect);
-                       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_DO_WHITE_BALANCE);
-                       sensor_set_whiteBalance(icd, qctrl,sensor->info_priv.whiteBalance);
-                       sensor->info_priv.video2preview = true;
-               } else if ((sensor->info_priv.snap2preview == true) || (sensor->info_priv.video2preview == true)) {
-                       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_EFFECT);
-                       sensor_set_effect(icd, qctrl,sensor->info_priv.effect);
-                       qctrl = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_DO_WHITE_BALANCE);
-                       sensor_set_whiteBalance(icd, qctrl,sensor->info_priv.whiteBalance);
-                       sensor->info_priv.video2preview = false;
-                       sensor->info_priv.snap2preview = false;
-               }
-        SENSOR_DG("\n%s..%s.. icd->width = %d.. icd->height %d\n",SENSOR_NAME_STRING(),__FUNCTION__,set_w,set_h);
-    } else {
-        SENSOR_DG("\n %s .. Current Format is validate. icd->width = %d.. icd->height %d\n",SENSOR_NAME_STRING(),set_w,set_h);
-    }
-
-       mf->width = set_w;
-    mf->height = set_h;
-
-sensor_s_fmt_end:
-    return ret;
-}
-
-static int sensor_try_fmt(struct v4l2_subdev *sd, struct v4l2_mbus_framefmt *mf)
-{
-    struct i2c_client *client = v4l2_get_subdevdata(sd);
-    struct sensor *sensor = to_sensor(client);
-    const struct sensor_datafmt *fmt;
-    int ret = 0,set_w,set_h;
-   
-       fmt = sensor_find_datafmt(mf->code, sensor_colour_fmts,
-                                  ARRAY_SIZE(sensor_colour_fmts));
-       if (fmt == NULL) {
-               fmt = &sensor->info_priv.fmt;
-        mf->code = fmt->code;
-       } 
-
-    if (mf->height > SENSOR_MAX_HEIGHT)
-        mf->height = SENSOR_MAX_HEIGHT;
-    else if (mf->height < SENSOR_MIN_HEIGHT)
-        mf->height = SENSOR_MIN_HEIGHT;
-
-    if (mf->width > SENSOR_MAX_WIDTH)
-        mf->width = SENSOR_MAX_WIDTH;
-    else if (mf->width < SENSOR_MIN_WIDTH)
-        mf->width = SENSOR_MIN_WIDTH;
-
-    set_w = mf->width;
-    set_h = mf->height;
-
-       if (((set_w <= 176) && (set_h <= 144)) && sensor_qcif[0].reg)
-       {
-        set_w = 176;
-        set_h = 144;
-       }
-       else if (((set_w <= 320) && (set_h <= 240)) && sensor_qvga[0].reg)
-    {
-        set_w = 320;
-        set_h = 240;
-    }
-    else if (((set_w <= 352) && (set_h<= 288)) && sensor_cif[0].reg)
-    {
-        set_w = 352;
-        set_h = 288;
-    }
-    else if (((set_w <= 640) && (set_h <= 480)) && sensor_vga[0].reg)
-    {
-        set_w = 640;
-        set_h = 480;
-    }
-    
-    else
-    {
-        set_w = SENSOR_INIT_WIDTH;
-        set_h = SENSOR_INIT_HEIGHT;
-    }    
-    mf->width = set_w;
-    mf->height = set_h; 
-    mf->colorspace = fmt->colorspace;
-    
-    return ret;
-}
-
- static int sensor_g_chip_ident(struct v4l2_subdev *sd, struct v4l2_dbg_chip_ident *id)
-{
-    struct i2c_client *client = v4l2_get_subdevdata(sd);
-
-    if (id->match.type != V4L2_CHIP_MATCH_I2C_ADDR)
-        return -EINVAL;
-
-    if (id->match.addr != client->addr)
-        return -ENODEV;
-
-    id->ident = SENSOR_V4L2_IDENT;      /* ddl@rock-chips.com :  Return OV2655  identifier */
-    id->revision = 0;
-
-    return 0;
-}
-#if CONFIG_SENSOR_Brightness
-static int sensor_set_brightness(struct soc_camera_device *icd, const struct v4l2_queryctrl *qctrl, int value)
-{
-    struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));
-
-    if ((value >= qctrl->minimum) && (value <= qctrl->maximum))
-    {
-        if (sensor_BrightnessSeqe[value - qctrl->minimum] != NULL)
-        {
-            if (sensor_write_array(client, sensor_BrightnessSeqe[value - qctrl->minimum]) != 0)
-            {
-                SENSOR_TR("%s..%s WriteReg Fail.. \n",SENSOR_NAME_STRING(), __FUNCTION__);
-                return -EINVAL;
-            }
-            SENSOR_DG("%s..%s : %x\n",SENSOR_NAME_STRING(),__FUNCTION__, value);
-            return 0;
-        }
-    }
-       SENSOR_TR("\n %s..%s valure = %d is invalidate..    \n",SENSOR_NAME_STRING(),__FUNCTION__,value);
-    return -EINVAL;
-}
-#endif
-#if CONFIG_SENSOR_Effect
-static int sensor_set_effect(struct soc_camera_device *icd, const struct v4l2_queryctrl *qctrl, int value)
-{
-    struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));
-
-    if ((value >= qctrl->minimum) && (value <= qctrl->maximum))
-    {
-        if (sensor_EffectSeqe[value - qctrl->minimum] != NULL)
-        {
-            if (sensor_write_array(client, sensor_EffectSeqe[value - qctrl->minimum]) != 0)
-            {
-                SENSOR_TR("%s..%s WriteReg Fail.. \n",SENSOR_NAME_STRING(), __FUNCTION__);
-                return -EINVAL;
-            }
-            SENSOR_DG("%s..%s : %x\n",SENSOR_NAME_STRING(),__FUNCTION__, value);
-            return 0;
-        }
-    }
-       SENSOR_TR("\n %s..%s valure = %d is invalidate..    \n",SENSOR_NAME_STRING(),__FUNCTION__,value);
-    return -EINVAL;
-}
-#endif
-#if CONFIG_SENSOR_Exposure
-static int sensor_set_exposure(struct soc_camera_device *icd, const struct v4l2_queryctrl *qctrl, int value)
-{
-    struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));
-
-    if ((value >= qctrl->minimum) && (value <= qctrl->maximum))
-    {
-        if (sensor_ExposureSeqe[value - qctrl->minimum] != NULL)
-        {
-            if (sensor_write_array(client, sensor_ExposureSeqe[value - qctrl->minimum]) != 0)
-            {
-                SENSOR_TR("%s..%s WriteReg Fail.. \n",SENSOR_NAME_STRING(), __FUNCTION__);
-                return -EINVAL;
-            }
-            SENSOR_DG("%s..%s : %x\n",SENSOR_NAME_STRING(),__FUNCTION__, value);
-            return 0;
-        }
-    }
-       SENSOR_TR("\n %s..%s valure = %d is invalidate..    \n",SENSOR_NAME_STRING(),__FUNCTION__,value);
-    return -EINVAL;
-}
-#endif
-#if CONFIG_SENSOR_Saturation
-static int sensor_set_saturation(struct soc_camera_device *icd, const struct v4l2_queryctrl *qctrl, int value)
-{
-    struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));
-
-    if ((value >= qctrl->minimum) && (value <= qctrl->maximum))
-    {
-        if (sensor_SaturationSeqe[value - qctrl->minimum] != NULL)
-        {
-            if (sensor_write_array(client, sensor_SaturationSeqe[value - qctrl->minimum]) != 0)
-            {
-                SENSOR_TR("%s..%s WriteReg Fail.. \n",SENSOR_NAME_STRING(), __FUNCTION__);
-                return -EINVAL;
-            }
-            SENSOR_DG("%s..%s : %x\n",SENSOR_NAME_STRING(),__FUNCTION__, value);
-            return 0;
-        }
-    }
-    SENSOR_TR("\n %s..%s valure = %d is invalidate..    \n",SENSOR_NAME_STRING(),__FUNCTION__,value);
-    return -EINVAL;
-}
-#endif
-#if CONFIG_SENSOR_Contrast
-static int sensor_set_contrast(struct soc_camera_device *icd, const struct v4l2_queryctrl *qctrl, int value)
-{
-    struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));
-
-    if ((value >= qctrl->minimum) && (value <= qctrl->maximum))
-    {
-        if (sensor_ContrastSeqe[value - qctrl->minimum] != NULL)
-        {
-            if (sensor_write_array(client, sensor_ContrastSeqe[value - qctrl->minimum]) != 0)
-            {
-                SENSOR_TR("%s..%s WriteReg Fail.. \n",SENSOR_NAME_STRING(), __FUNCTION__);
-                return -EINVAL;
-            }
-            SENSOR_DG("%s..%s : %x\n",SENSOR_NAME_STRING(),__FUNCTION__, value);
-            return 0;
-        }
-    }
-    SENSOR_TR("\n %s..%s valure = %d is invalidate..    \n",SENSOR_NAME_STRING(),__FUNCTION__,value);
-    return -EINVAL;
-}
-#endif
-#if CONFIG_SENSOR_Mirror
-static int sensor_set_mirror(struct soc_camera_device *icd, const struct v4l2_queryctrl *qctrl, int value)
-{
-    struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));
-
-    if ((value >= qctrl->minimum) && (value <= qctrl->maximum))
-    {
-        if (sensor_MirrorSeqe[value - qctrl->minimum] != NULL)
-        {
-            if (sensor_write_array(client, sensor_MirrorSeqe[value - qctrl->minimum]) != 0)
-            {
-                SENSOR_TR("%s..%s WriteReg Fail.. \n",SENSOR_NAME_STRING(), __FUNCTION__);
-                return -EINVAL;
-            }
-            SENSOR_DG("%s..%s : %x\n",SENSOR_NAME_STRING(),__FUNCTION__, value);
-            return 0;
-        }
-    }
-    SENSOR_TR("\n %s..%s valure = %d is invalidate..    \n",SENSOR_NAME_STRING(),__FUNCTION__,value);
-    return -EINVAL;
-}
-#endif
-#if CONFIG_SENSOR_Flip
-static int sensor_set_flip(struct soc_camera_device *icd, const struct v4l2_queryctrl *qctrl, int value)
-{
-    struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));
-
-    if ((value >= qctrl->minimum) && (value <= qctrl->maximum))
-    {
-        if (sensor_FlipSeqe[value - qctrl->minimum] != NULL)
-        {
-            if (sensor_write_array(client, sensor_FlipSeqe[value - qctrl->minimum]) != 0)
-            {
-                SENSOR_TR("%s..%s WriteReg Fail.. \n",SENSOR_NAME_STRING(), __FUNCTION__);
-                return -EINVAL;
-            }
-            SENSOR_DG("%s..%s : %x\n",SENSOR_NAME_STRING(),__FUNCTION__, value);
-            return 0;
-        }
-    }
-    SENSOR_TR("\n %s..%s valure = %d is invalidate..    \n",SENSOR_NAME_STRING(),__FUNCTION__,value);
-    return -EINVAL;
-}
-#endif
-#if CONFIG_SENSOR_Scene
-static int sensor_set_scene(struct soc_camera_device *icd, const struct v4l2_queryctrl *qctrl, int value)
-{
-    struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));
-
-    if ((value >= qctrl->minimum) && (value <= qctrl->maximum))
-    {
-        if (sensor_SceneSeqe[value - qctrl->minimum] != NULL)
-        {
-            if (sensor_write_array(client, sensor_SceneSeqe[value - qctrl->minimum]) != 0)
-            {
-                SENSOR_TR("%s..%s WriteReg Fail.. \n",SENSOR_NAME_STRING(), __FUNCTION__);
-                return -EINVAL;
-            }
-            SENSOR_DG("%s..%s : %x\n",SENSOR_NAME_STRING(),__FUNCTION__, value);
-            return 0;
-        }
-    }
-    SENSOR_TR("\n %s..%s valure = %d is invalidate..    \n",SENSOR_NAME_STRING(),__FUNCTION__,value);
-    return -EINVAL;
-}
-#endif
-#if CONFIG_SENSOR_WhiteBalance
-static int sensor_set_whiteBalance(struct soc_camera_device *icd, const struct v4l2_queryctrl *qctrl, int value)
-{
-    struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));
-
-    if ((value >= qctrl->minimum) && (value <= qctrl->maximum))
-    {
-        if (sensor_WhiteBalanceSeqe[value - qctrl->minimum] != NULL)
-        {
-            if (sensor_write_array(client, sensor_WhiteBalanceSeqe[value - qctrl->minimum]) != 0)
-            {
-                SENSOR_TR("%s..%s WriteReg Fail.. \n",SENSOR_NAME_STRING(), __FUNCTION__);
-                return -EINVAL;
-            }
-            SENSOR_DG("%s..%s : %x\n",SENSOR_NAME_STRING(),__FUNCTION__, value);
-            return 0;
-        }
-    }
-       SENSOR_TR("\n %s..%s valure = %d is invalidate..    \n",SENSOR_NAME_STRING(),__FUNCTION__,value);
-    return -EINVAL;
-}
-#endif
-#if CONFIG_SENSOR_DigitalZoom
-static int sensor_set_digitalzoom(struct soc_camera_device *icd, const struct v4l2_queryctrl *qctrl, int *value)
-{
-    struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));
-    struct sensor *sensor = to_sensor(client);
-       const struct v4l2_queryctrl *qctrl_info;
-    int digitalzoom_cur, digitalzoom_total;
-
-       qctrl_info = soc_camera_find_qctrl(&sensor_ops, V4L2_CID_ZOOM_ABSOLUTE);
-       if (qctrl_info)
-               return -EINVAL;
-
-    digitalzoom_cur = sensor->info_priv.digitalzoom;
-    digitalzoom_total = qctrl_info->maximum;
-
-    if ((value > 0) && (digitalzoom_cur >= digitalzoom_total))
-    {
-        SENSOR_TR("%s digitalzoom is maximum - %x\n", SENSOR_NAME_STRING(), digitalzoom_cur);
-        return -EINVAL;
-    }
-
-    if  ((value < 0) && (digitalzoom_cur <= qctrl_info->minimum))
-    {
-        SENSOR_TR("%s digitalzoom is minimum - %x\n", SENSOR_NAME_STRING(), digitalzoom_cur);
-        return -EINVAL;
-    }
-
-    if ((value > 0) && ((digitalzoom_cur + value) > digitalzoom_total))
-    {
-        value = digitalzoom_total - digitalzoom_cur;
-    }
-
-    if ((value < 0) && ((digitalzoom_cur + value) < 0))
-    {
-        value = 0 - digitalzoom_cur;
-    }
-
-    digitalzoom_cur += value;
-
-    if (sensor_ZoomSeqe[digitalzoom_cur] != NULL)
-    {
-        if (sensor_write_array(client, sensor_ZoomSeqe[digitalzoom_cur]) != 0)
-        {
-            SENSOR_TR("%s..%s WriteReg Fail.. \n",SENSOR_NAME_STRING(), __FUNCTION__);
-            return -EINVAL;
-        }
-        SENSOR_DG("%s..%s : %x\n",SENSOR_NAME_STRING(),__FUNCTION__, value);
-        return 0;
-    }
-
-    return -EINVAL;
-}
-#endif
-#if CONFIG_SENSOR_Flash
-static int sensor_set_flash(struct soc_camera_device *icd, const struct v4l2_queryctrl *qctrl, int value)
-{    
-    if ((value >= qctrl->minimum) && (value <= qctrl->maximum)) {
-        if (value == 3) {       /* ddl@rock-chips.com: torch */
-            sensor_ioctrl(icd, Sensor_Flash, Flash_Torch);   /* Flash On */
-        } else {
-            sensor_ioctrl(icd, Sensor_Flash, Flash_Off);
-        }
-        SENSOR_DG("%s..%s : %x\n",SENSOR_NAME_STRING(),__FUNCTION__, value);
-        return 0;
-    }
-    
-       SENSOR_TR("\n %s..%s valure = %d is invalidate..    \n",SENSOR_NAME_STRING(),__FUNCTION__,value);
-    return -EINVAL;
-}
-#endif
-
-static int sensor_g_control(struct v4l2_subdev *sd, struct v4l2_control *ctrl)
-{
-    struct i2c_client *client = v4l2_get_subdevdata(sd);
-    struct sensor *sensor = to_sensor(client);
-    const struct v4l2_queryctrl *qctrl;
-
-    qctrl = soc_camera_find_qctrl(&sensor_ops, ctrl->id);
-
-    if (!qctrl)
-    {
-        SENSOR_TR("\n %s ioctrl id = %d  is invalidate \n", SENSOR_NAME_STRING(), ctrl->id);
-        return -EINVAL;
-    }
-
-    switch (ctrl->id)
-    {
-        case V4L2_CID_BRIGHTNESS:
-            {
-                ctrl->value = sensor->info_priv.brightness;
-                break;
-            }
-        case V4L2_CID_SATURATION:
-            {
-                ctrl->value = sensor->info_priv.saturation;
-                break;
-            }
-        case V4L2_CID_CONTRAST:
-            {
-                ctrl->value = sensor->info_priv.contrast;
-                break;
-            }
-        case V4L2_CID_DO_WHITE_BALANCE:
-            {
-                ctrl->value = sensor->info_priv.whiteBalance;
-                break;
-            }
-        case V4L2_CID_EXPOSURE:
-            {
-                ctrl->value = sensor->info_priv.exposure;
-                break;
-            }
-        case V4L2_CID_HFLIP:
-            {
-                ctrl->value = sensor->info_priv.mirror;
-                break;
-            }
-        case V4L2_CID_VFLIP:
-            {
-                ctrl->value = sensor->info_priv.flip;
-                break;
-            }
-        default :
-                break;
-    }
-    return 0;
-}
-
-
-
-static int sensor_s_control(struct v4l2_subdev *sd, struct v4l2_control *ctrl)
-{
-    struct i2c_client *client = v4l2_get_subdevdata(sd);
-    struct sensor *sensor = to_sensor(client);
-    struct soc_camera_device *icd = client->dev.platform_data;
-    const struct v4l2_queryctrl *qctrl;
-
-
-    qctrl = soc_camera_find_qctrl(&sensor_ops, ctrl->id);
-
-    if (!qctrl)
-    {
-        SENSOR_TR("\n %s ioctrl id = %d  is invalidate \n", SENSOR_NAME_STRING(), ctrl->id);
-        return -EINVAL;
-    }
-
-    switch (ctrl->id)
-    {
-#if CONFIG_SENSOR_Brightness
-        case V4L2_CID_BRIGHTNESS:
-            {
-                if (ctrl->value != sensor->info_priv.brightness)
-                {
-                    if (sensor_set_brightness(icd, qctrl,ctrl->value) != 0)
-                    {
-                        return -EINVAL;
-                    }
-                    sensor->info_priv.brightness = ctrl->value;
-                }
-                break;
-            }
-#endif
-#if CONFIG_SENSOR_Exposure
-        case V4L2_CID_EXPOSURE:
-            {
-                if (ctrl->value != sensor->info_priv.exposure)
-                {
-                    if (sensor_set_exposure(icd, qctrl,ctrl->value) != 0)
-                    {
-                        return -EINVAL;
-                    }
-                    sensor->info_priv.exposure = ctrl->value;
-                }
-                break;
-            }
-#endif
-#if CONFIG_SENSOR_Saturation
-        case V4L2_CID_SATURATION:
-            {
-                if (ctrl->value != sensor->info_priv.saturation)
-                {
-                    if (sensor_set_saturation(icd, qctrl,ctrl->value) != 0)
-                    {
-                        return -EINVAL;
-                    }
-                    sensor->info_priv.saturation = ctrl->value;
-                }
-                break;
-            }
-#endif
-#if CONFIG_SENSOR_Contrast
-        case V4L2_CID_CONTRAST:
-            {
-                if (ctrl->value != sensor->info_priv.contrast)
-                {
-                    if (sensor_set_contrast(icd, qctrl,ctrl->value) != 0)
-                    {
-                        return -EINVAL;
-                    }
-                    sensor->info_priv.contrast = ctrl->value;
-                }
-                break;
-            }
-#endif
-#if CONFIG_SENSOR_WhiteBalance
-        case V4L2_CID_DO_WHITE_BALANCE:
-            {
-                if (ctrl->value != sensor->info_priv.whiteBalance)
-                {
-                    if (sensor_set_whiteBalance(icd, qctrl,ctrl->value) != 0)
-                    {
-                        return -EINVAL;
-                    }
-                    sensor->info_priv.whiteBalance = ctrl->value;
-                }
-                break;
-            }
-#endif
-#if CONFIG_SENSOR_Mirror
-        case V4L2_CID_HFLIP:
-            {
-                if (ctrl->value != sensor->info_priv.mirror)
-                {
-                    if (sensor_set_mirror(icd, qctrl,ctrl->value) != 0)
-                        return -EINVAL;
-                    sensor->info_priv.mirror = ctrl->value;
-                }
-                break;
-            }
-#endif
-#if CONFIG_SENSOR_Flip
-        case V4L2_CID_VFLIP:
-            {
-                if (ctrl->value != sensor->info_priv.flip)
-                {
-                    if (sensor_set_flip(icd, qctrl,ctrl->value) != 0)
-                        return -EINVAL;
-                    sensor->info_priv.flip = ctrl->value;
-                }
-                break;
-            }
-#endif
-        default:
-            break;
-    }
-
-    return 0;
-}
-static int sensor_g_ext_control(struct soc_camera_device *icd , struct v4l2_ext_control *ext_ctrl)
-{
-    const struct v4l2_queryctrl *qctrl;
-    struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));
-    struct sensor *sensor = to_sensor(client);
-
-    qctrl = soc_camera_find_qctrl(&sensor_ops, ext_ctrl->id);
-
-    if (!qctrl)
-    {
-        SENSOR_TR("\n %s ioctrl id = %d  is invalidate \n", SENSOR_NAME_STRING(), ext_ctrl->id);
-        return -EINVAL;
-    }
-
-    switch (ext_ctrl->id)
-    {
-        case V4L2_CID_SCENE:
-            {
-                ext_ctrl->value = sensor->info_priv.scene;
-                break;
-            }
-        case V4L2_CID_EFFECT:
-            {
-                ext_ctrl->value = sensor->info_priv.effect;
-                break;
-            }
-        case V4L2_CID_ZOOM_ABSOLUTE:
-            {
-                ext_ctrl->value = sensor->info_priv.digitalzoom;
-                break;
-            }
-        case V4L2_CID_ZOOM_RELATIVE:
-            {
-                return -EINVAL;
-            }
-        case V4L2_CID_FOCUS_ABSOLUTE:
-            {
-                ext_ctrl->value = sensor->info_priv.focus;
-                break;
-            }
-        case V4L2_CID_FOCUS_RELATIVE:
-            {
-                return -EINVAL;
-            }
-        case V4L2_CID_FLASH:
-            {
-                ext_ctrl->value = sensor->info_priv.flash;
-                break;
-            }
-        default :
-            break;
-    }
-    return 0;
-}
-static int sensor_s_ext_control(struct soc_camera_device *icd, struct v4l2_ext_control *ext_ctrl)
-{
-    const struct v4l2_queryctrl *qctrl;
-    struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));
-    struct sensor *sensor = to_sensor(client);
-    int val_offset;
-
-    qctrl = soc_camera_find_qctrl(&sensor_ops, ext_ctrl->id);
-
-    if (!qctrl)
-    {
-        SENSOR_TR("\n %s ioctrl id = %d  is invalidate \n", SENSOR_NAME_STRING(), ext_ctrl->id);
-        return -EINVAL;
-    }
-
-       val_offset = 0;
-    switch (ext_ctrl->id)
-    {
-#if CONFIG_SENSOR_Scene
-        case V4L2_CID_SCENE:
-            {
-                if (ext_ctrl->value != sensor->info_priv.scene)
-                {
-                    if (sensor_set_scene(icd, qctrl,ext_ctrl->value) != 0)
-                        return -EINVAL;
-                    sensor->info_priv.scene = ext_ctrl->value;
-                }
-                break;
-            }
-#endif
-#if CONFIG_SENSOR_Effect
-        case V4L2_CID_EFFECT:
-            {
-                if (ext_ctrl->value != sensor->info_priv.effect)
-                {
-                    if (sensor_set_effect(icd, qctrl,ext_ctrl->value) != 0)
-                        return -EINVAL;
-                    sensor->info_priv.effect= ext_ctrl->value;
-                }
-                break;
-            }
-#endif
-#if CONFIG_SENSOR_DigitalZoom
-        case V4L2_CID_ZOOM_ABSOLUTE:
-            {
-                if ((ext_ctrl->value < qctrl->minimum) || (ext_ctrl->value > qctrl->maximum))
-                    return -EINVAL;
-
-                if (ext_ctrl->value != sensor->info_priv.digitalzoom)
-                {
-                    val_offset = ext_ctrl->value -sensor->info_priv.digitalzoom;
-
-                    if (sensor_set_digitalzoom(icd, qctrl,&val_offset) != 0)
-                        return -EINVAL;
-                    sensor->info_priv.digitalzoom += val_offset;
-
-                    SENSOR_DG("%s digitalzoom is %x\n",SENSOR_NAME_STRING(),  sensor->info_priv.digitalzoom);
-                }
-
-                break;
-            }
-        case V4L2_CID_ZOOM_RELATIVE:
-            {
-                if (ext_ctrl->value)
-                {
-                    if (sensor_set_digitalzoom(icd, qctrl,&ext_ctrl->value) != 0)
-                        return -EINVAL;
-                    sensor->info_priv.digitalzoom += ext_ctrl->value;
-
-                    SENSOR_DG("%s digitalzoom is %x\n", SENSOR_NAME_STRING(), sensor->info_priv.digitalzoom);
-                }
-                break;
-            }
-#endif
-#if CONFIG_SENSOR_Focus
-        case V4L2_CID_FOCUS_ABSOLUTE:
-            {
-                if ((ext_ctrl->value < qctrl->minimum) || (ext_ctrl->value > qctrl->maximum))
-                    return -EINVAL;
-
-                if (ext_ctrl->value != sensor->info_priv.focus)
-                {
-                    val_offset = ext_ctrl->value -sensor->info_priv.focus;
-
-                    sensor->info_priv.focus += val_offset;
-                }
-
-                break;
-            }
-        case V4L2_CID_FOCUS_RELATIVE:
-            {
-                if (ext_ctrl->value)
-                {
-                    sensor->info_priv.focus += ext_ctrl->value;
-
-                    SENSOR_DG("%s focus is %x\n", SENSOR_NAME_STRING(), sensor->info_priv.focus);
-                }
-                break;
-            }
-#endif
-#if CONFIG_SENSOR_Flash
-        case V4L2_CID_FLASH:
-            {
-                if (sensor_set_flash(icd, qctrl,ext_ctrl->value) != 0)
-                    return -EINVAL;
-                sensor->info_priv.flash = ext_ctrl->value;
-
-                SENSOR_DG("%s flash is %x\n",SENSOR_NAME_STRING(), sensor->info_priv.flash);
-                break;
-            }
-#endif
-        default:
-            break;
-    }
-
-    return 0;
-}
-
-static int sensor_g_ext_controls(struct v4l2_subdev *sd, struct v4l2_ext_controls *ext_ctrl)
-{
-    struct i2c_client *client = v4l2_get_subdevdata(sd);
-    struct soc_camera_device *icd = client->dev.platform_data;
-    int i, error_cnt=0, error_idx=-1;
-
-
-    for (i=0; i<ext_ctrl->count; i++) {
-        if (sensor_g_ext_control(icd, &ext_ctrl->controls[i]) != 0) {
-            error_cnt++;
-            error_idx = i;
-        }
-    }
-
-    if (error_cnt > 1)
-        error_idx = ext_ctrl->count;
-
-    if (error_idx != -1) {
-        ext_ctrl->error_idx = error_idx;
-        return -EINVAL;
-    } else {
-        return 0;
-    }
-}
-
-static int sensor_s_ext_controls(struct v4l2_subdev *sd, struct v4l2_ext_controls *ext_ctrl)
-{
-    struct i2c_client *client = v4l2_get_subdevdata(sd);
-    struct soc_camera_device *icd = client->dev.platform_data;
-    int i, error_cnt=0, error_idx=-1;
-
-
-    for (i=0; i<ext_ctrl->count; i++) {
-        if (sensor_s_ext_control(icd, &ext_ctrl->controls[i]) != 0) {
-            error_cnt++;
-            error_idx = i;
-        }
-    }
-
-    if (error_cnt > 1)
-        error_idx = ext_ctrl->count;
-
-    if (error_idx != -1) {
-        ext_ctrl->error_idx = error_idx;
-        return -EINVAL;
-    } else {
-        return 0;
-    }
-}
-
-/* Interface active, can use i2c. If it fails, it can indeed mean, that
- * this wasn't our capture interface, so, we wait for the right one */
-static int sensor_video_probe(struct soc_camera_device *icd,
-                              struct i2c_client *client)
-{
-    char value;
-    int ret;
-    struct sensor *sensor = to_sensor(client);
-
-    /* We must have a parent by now. And it cannot be a wrong one.
-     * So this entire test is completely redundant. */
-    if (!icd->dev.parent ||
-           to_soc_camera_host(icd->dev.parent)->nr != icd->iface)
-               return -ENODEV;
-
-       if (sensor_ioctrl(icd, Sensor_PowerDown, 0) < 0) {
-               ret = -ENODEV;
-               goto sensor_video_probe_err;
-       }
-
-    /* soft reset */
-    ret = sensor_write(client, 0xfe, 0x80);
-    if (ret != 0)
-    {
-        SENSOR_TR("soft reset %s failed\n",SENSOR_NAME_STRING());
-        return -ENODEV;
-    }
-    mdelay(5);          //delay 5 microseconds
-
-    /* check if it is an sensor sensor */
-    ret = sensor_read(client, 0x00, &value);
-    if (ret != 0) {
-        SENSOR_TR("read chip id high byte failed\n");
-        ret = -ENODEV;
-        goto sensor_video_probe_err;
-    }
-
-    if (value == SENSOR_ID) {
-        sensor->model = SENSOR_V4L2_IDENT;
-               SENSOR_TR("chip id:0x%x\n",value);
-    } else {
-        SENSOR_TR("error: %s mismatched   pid = 0x%x\n", SENSOR_NAME_STRING(), value);
-        ret = -ENODEV;
-        goto sensor_video_probe_err;
-    }
-
-    return 0;
-
-sensor_video_probe_err:
-
-    return ret;
-}
-static long sensor_ioctl(struct v4l2_subdev *sd, unsigned int cmd, void *arg)
-{
-       struct i2c_client *client = v4l2_get_subdevdata(sd);
-    struct soc_camera_device *icd = client->dev.platform_data;
-    struct sensor *sensor = to_sensor(client);
-    int ret = 0;
-#if CONFIG_SENSOR_Flash        
-    int i;
-#endif
-    
-       SENSOR_DG("\n%s..%s..cmd:%x \n",SENSOR_NAME_STRING(),__FUNCTION__,cmd);
-       switch (cmd)
-       {
-               case RK29_CAM_SUBDEV_DEACTIVATE:
-               {
-                       sensor_deactivate(client);
-                       break;
-               }
-
-               case RK29_CAM_SUBDEV_IOREQUEST:
-               {
-                       sensor->sensor_io_request = (struct rk29camera_platform_data*)arg;           
-            if (sensor->sensor_io_request != NULL) { 
-                sensor->sensor_gpio_res = NULL;
-                for (i=0; i<RK29_CAM_SUPPORT_NUMS;i++) {
-                    if (sensor->sensor_io_request->gpio_res[i].dev_name && 
-                        (strcmp(sensor->sensor_io_request->gpio_res[i].dev_name, dev_name(icd->pdev)) == 0)) {
-                        sensor->sensor_gpio_res = (struct rk29camera_gpio_res*)&sensor->sensor_io_request->gpio_res[i];
-                    }
-                }
-                if (sensor->sensor_gpio_res == NULL) {
-                    SENSOR_TR("%s %s obtain gpio resource failed when RK29_CAM_SUBDEV_IOREQUEST \n",SENSOR_NAME_STRING(),__FUNCTION__);
-                    ret = -EINVAL;
-                    goto sensor_ioctl_end;
-                }
-            } else {
-                SENSOR_TR("%s %s RK29_CAM_SUBDEV_IOREQUEST fail\n",SENSOR_NAME_STRING(),__FUNCTION__);
-                ret = -EINVAL;
-                goto sensor_ioctl_end;
-            }
-            /* ddl@rock-chips.com : if gpio_flash havn't been set in board-xxx.c, sensor driver must notify is not support flash control 
-               for this project */
-            #if CONFIG_SENSOR_Flash    
-               if (sensor->sensor_gpio_res) { 
-                if (sensor->sensor_gpio_res->gpio_flash == INVALID_GPIO) {
-                    for (i = 0; i < icd->ops->num_controls; i++) {
-                               if (V4L2_CID_FLASH == icd->ops->controls[i].id) {
-                                       memset((char*)&icd->ops->controls[i],0x00,sizeof(struct v4l2_queryctrl));                                       
-                               }
-                    }
-                    sensor->info_priv.flash = 0xff;
-                    SENSOR_DG("%s flash gpio is invalidate!\n",SENSOR_NAME_STRING());
-                }
-               }
-            #endif
-                       break;
-               }
-               default:
-               {
-                       SENSOR_TR("%s %s cmd(0x%x) is unknown !\n",SENSOR_NAME_STRING(),__FUNCTION__,cmd);
-                       break;
-               }
-       }
-sensor_ioctl_end:
-       return ret;
-
-}
-static int sensor_enum_fmt(struct v4l2_subdev *sd, unsigned int index,
-                           enum v4l2_mbus_pixelcode *code)
-{
-       if (index >= ARRAY_SIZE(sensor_colour_fmts))
-               return -EINVAL;
-
-       *code = sensor_colour_fmts[index].code;
-       return 0;
-}
-static struct v4l2_subdev_core_ops sensor_subdev_core_ops = {
-       .init           = sensor_init,
-       .g_ctrl         = sensor_g_control,
-       .s_ctrl         = sensor_s_control,
-       .g_ext_ctrls          = sensor_g_ext_controls,
-       .s_ext_ctrls          = sensor_s_ext_controls,
-       .g_chip_ident   = sensor_g_chip_ident,
-       .ioctl = sensor_ioctl,
-};
-
-static struct v4l2_subdev_video_ops sensor_subdev_video_ops = {
-       .s_mbus_fmt     = sensor_s_fmt,
-       .g_mbus_fmt     = sensor_g_fmt,
-       .try_mbus_fmt   = sensor_try_fmt,
-       .enum_mbus_fmt  = sensor_enum_fmt,
-};
-
-static struct v4l2_subdev_ops sensor_subdev_ops = {
-       .core   = &sensor_subdev_core_ops,
-       .video = &sensor_subdev_video_ops,
-};
-
-static int sensor_probe(struct i2c_client *client,
-                        const struct i2c_device_id *did)
-{
-    struct sensor *sensor;
-    struct soc_camera_device *icd = client->dev.platform_data;
-    struct i2c_adapter *adapter = to_i2c_adapter(client->dev.parent);
-    struct soc_camera_link *icl;
-    int ret;
-
-    SENSOR_DG("\n%s..%s..%d..\n",__FUNCTION__,__FILE__,__LINE__);
-    if (!icd) {
-        dev_err(&client->dev, "%s: missing soc-camera data!\n",SENSOR_NAME_STRING());
-        return -EINVAL;
-    }
-
-    icl = to_soc_camera_link(icd);
-    if (!icl) {
-        dev_err(&client->dev, "%s driver needs platform data\n", SENSOR_NAME_STRING());
-        return -EINVAL;
-    }
-
-    if (!i2c_check_functionality(adapter, I2C_FUNC_I2C)) {
-        dev_warn(&adapter->dev,
-                "I2C-Adapter doesn't support I2C_FUNC_I2C\n");
-        return -EIO;
-    }
-
-    sensor = kzalloc(sizeof(struct sensor), GFP_KERNEL);
-    if (!sensor)
-        return -ENOMEM;
-
-    v4l2_i2c_subdev_init(&sensor->subdev, client, &sensor_subdev_ops);
-
-    /* Second stage probe - when a capture adapter is there */
-    icd->ops           = &sensor_ops;
-
-    sensor->info_priv.fmt = sensor_colour_fmts[0];
-    
-       #if CONFIG_SENSOR_I2C_NOSCHED
-       atomic_set(&sensor->tasklock_cnt,0);
-       #endif
-
-    ret = sensor_video_probe(icd, client);
-    if (ret < 0) {
-        icd->ops = NULL;
-        i2c_set_clientdata(client, NULL);
-        kfree(sensor);
-               sensor = NULL;
-    }
-    SENSOR_DG("\n%s..%s..%d  ret = %x \n",__FUNCTION__,__FILE__,__LINE__,ret);
-    return ret;
-}
-
-static int sensor_remove(struct i2c_client *client)
-{
-    struct sensor *sensor = to_sensor(client);
-    struct soc_camera_device *icd = client->dev.platform_data;
-
-    icd->ops = NULL;
-    i2c_set_clientdata(client, NULL);
-    client->driver = NULL;
-    kfree(sensor);
-       sensor = NULL;
-    return 0;
-}
-
-static const struct i2c_device_id sensor_id[] = {
-       {SENSOR_NAME_STRING(), 0 },
-       { }
-};
-MODULE_DEVICE_TABLE(i2c, sensor_id);
-
-static struct i2c_driver sensor_i2c_driver = {
-       .driver = {
-               .name = SENSOR_NAME_STRING(),
-       },
-       .probe          = sensor_probe,
-       .remove         = sensor_remove,
-       .id_table       = sensor_id,
-};
-
-static int __init sensor_mod_init(void)
-{
-    SENSOR_DG("\n%s..%s.. \n",__FUNCTION__,SENSOR_NAME_STRING());
-    return i2c_add_driver(&sensor_i2c_driver);
-}
-
-static void __exit sensor_mod_exit(void)
-{
-    i2c_del_driver(&sensor_i2c_driver);
-}
-
-device_initcall_sync(sensor_mod_init);
-module_exit(sensor_mod_exit);
-
-MODULE_DESCRIPTION(SENSOR_NAME_STRING(Camera sensor driver));
-MODULE_AUTHOR("ddl <kernel@rock-chips>");
-MODULE_LICENSE("GPL");
-
-
-
+}\r
+static int sensor_focus_af_close_usr_cb(struct i2c_client *client){\r
+       return 0;\r
+}\r
+\r
+static int sensor_focus_af_zoneupdate_usr_cb(struct i2c_client *client, int *zone_tm_pos)\r
+{\r
+       return 0;\r
+}\r
+\r
+/*\r
+face defect call back\r
+*/\r
+static int     sensor_face_detect_usr_cb(struct i2c_client *client,int on){\r
+       return 0;\r
+}\r
+\r
+/*\r
+*      The function can been run in sensor_init_parametres which run in sensor_probe, so user can do some\r
+* initialization in the function. \r
+*/\r
+static void sensor_init_parameters_user(struct specific_sensor* spsensor,struct soc_camera_device *icd)\r
+{\r
+       return;\r
+}\r
+\r
+/*\r
+* :::::WARNING:::::\r
+* It is not allowed to modify the following code\r
+*/\r
+\r
+sensor_init_parameters_default_code();\r
+\r
+sensor_v4l2_struct_initialization();\r
+\r
+sensor_probe_default_code();\r
+\r
+sensor_remove_default_code();\r
+\r
+sensor_driver_default_module_code();\r
+\r
+\r
+\r
+\r