t613.c 35.0 KB
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/*
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 * T613 subdriver
 *
 * Copyright (C) 2010 Jean-Francois Moine (http://moinejf.free.fr)
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 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation; either version 2 of the License, or
 * any later version.
 *
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
 * GNU General Public License for more details.
 *
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write to the Free Software
 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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 *
 *Notes: * t613  + tas5130A
 *	* Focus to light do not balance well as in win.
 *	  Quality in win is not good, but its kinda better.
 *	 * Fix some "extraneous bytes", most of apps will show the image anyway
 *	 * Gamma table, is there, but its really doing something?
 *	 * 7~8 Fps, its ok, max on win its 10.
 *			Costantino Leandro
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 */

#define MODULE_NAME "t613"
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#include "gspca.h"

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#define V4L2_CID_EFFECTS (V4L2_CID_PRIVATE_BASE + 0)
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MODULE_AUTHOR("Leandro Costantino <le_costantino@pixartargentina.com.ar>");
MODULE_DESCRIPTION("GSPCA/T613 (JPEG Compliance) USB Camera Driver");
MODULE_LICENSE("GPL");

struct sd {
	struct gspca_dev gspca_dev;	/* !! must be the first item */

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	u8 brightness;
	u8 contrast;
	u8 colors;
	u8 autogain;
	u8 gamma;
	u8 sharpness;
	u8 freq;
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	u8 red_balance; /* split balance */
	u8 blue_balance;
	u8 global_gain; /* aka gain */
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	u8 awb; /* set default r/g/b and activate */
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	u8 mirror;
	u8 effect;

	u8 sensor;
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enum {
	SENSOR_OM6802,
	SENSOR_OTHER,
	SENSOR_TAS5130A,
	SENSOR_LT168G,		/* must verify if this is the actual model */
} sensors;
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};

/* V4L2 controls supported by the driver */
static int sd_setbrightness(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getbrightness(struct gspca_dev *gspca_dev, __s32 *val);
static int sd_setcontrast(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getcontrast(struct gspca_dev *gspca_dev, __s32 *val);
static int sd_setcolors(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getcolors(struct gspca_dev *gspca_dev, __s32 *val);
static int sd_setlowlight(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getlowlight(struct gspca_dev *gspca_dev, __s32 *val);
static int sd_setgamma(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getgamma(struct gspca_dev *gspca_dev, __s32 *val);
static int sd_setsharpness(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getsharpness(struct gspca_dev *gspca_dev, __s32 *val);
static int sd_setfreq(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getfreq(struct gspca_dev *gspca_dev, __s32 *val);
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static int sd_setawb(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getawb(struct gspca_dev *gspca_dev, __s32 *val);
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static int sd_setblue_balance(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getblue_balance(struct gspca_dev *gspca_dev, __s32 *val);
static int sd_setred_balance(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getred_balance(struct gspca_dev *gspca_dev, __s32 *val);
static int sd_setglobal_gain(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getglobal_gain(struct gspca_dev *gspca_dev, __s32 *val);

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static int sd_setmirror(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getmirror(struct gspca_dev *gspca_dev, __s32 *val);
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static int sd_seteffect(struct gspca_dev *gspca_dev, __s32 val);
static int sd_geteffect(struct gspca_dev *gspca_dev, __s32 *val);
static int sd_querymenu(struct gspca_dev *gspca_dev,
			struct v4l2_querymenu *menu);

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static const struct ctrl sd_ctrls[] = {
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	{
	 {
	  .id = V4L2_CID_BRIGHTNESS,
	  .type = V4L2_CTRL_TYPE_INTEGER,
	  .name = "Brightness",
	  .minimum = 0,
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	  .maximum = 14,
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	  .step = 1,
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#define BRIGHTNESS_DEF 8
	  .default_value = BRIGHTNESS_DEF,
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	  },
	 .set = sd_setbrightness,
	 .get = sd_getbrightness,
	 },
	{
	 {
	  .id = V4L2_CID_CONTRAST,
	  .type = V4L2_CTRL_TYPE_INTEGER,
	  .name = "Contrast",
	  .minimum = 0,
	  .maximum = 0x0d,
	  .step = 1,
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#define CONTRAST_DEF 0x07
	  .default_value = CONTRAST_DEF,
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	  },
	 .set = sd_setcontrast,
	 .get = sd_getcontrast,
	 },
	{
	 {
	  .id = V4L2_CID_SATURATION,
	  .type = V4L2_CTRL_TYPE_INTEGER,
	  .name = "Color",
	  .minimum = 0,
	  .maximum = 0x0f,
	  .step = 1,
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#define COLORS_DEF 0x05
	  .default_value = COLORS_DEF,
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	  },
	 .set = sd_setcolors,
	 .get = sd_getcolors,
	 },
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#define GAMMA_MAX 16
#define GAMMA_DEF 10
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	{
	 {
	  .id = V4L2_CID_GAMMA,	/* (gamma on win) */
	  .type = V4L2_CTRL_TYPE_INTEGER,
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	  .name = "Gamma",
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	  .minimum = 0,
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	  .maximum = GAMMA_MAX - 1,
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	  .step = 1,
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	  .default_value = GAMMA_DEF,
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	  },
	 .set = sd_setgamma,
	 .get = sd_getgamma,
	 },
	{
	 {
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	  .id = V4L2_CID_BACKLIGHT_COMPENSATION, /* Activa lowlight,
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				 * some apps dont bring up the
				 * backligth_compensation control) */
	  .type = V4L2_CTRL_TYPE_INTEGER,
	  .name = "Low Light",
	  .minimum = 0,
	  .maximum = 1,
	  .step = 1,
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#define AUTOGAIN_DEF 0x01
	  .default_value = AUTOGAIN_DEF,
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	  },
	 .set = sd_setlowlight,
	 .get = sd_getlowlight,
	 },
	{
	 {
	  .id = V4L2_CID_HFLIP,
	  .type = V4L2_CTRL_TYPE_BOOLEAN,
	  .name = "Mirror Image",
	  .minimum = 0,
	  .maximum = 1,
	  .step = 1,
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#define MIRROR_DEF 0
	  .default_value = MIRROR_DEF,
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	  },
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	 .set = sd_setmirror,
	 .get = sd_getmirror
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	},
	{
	 {
	  .id = V4L2_CID_POWER_LINE_FREQUENCY,
	  .type = V4L2_CTRL_TYPE_MENU,
	  .name = "Light Frequency Filter",
	  .minimum = 1,		/* 1 -> 0x50, 2->0x60 */
	  .maximum = 2,
	  .step = 1,
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#define FREQ_DEF 1
	  .default_value = FREQ_DEF,
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	  },
	 .set = sd_setfreq,
	 .get = sd_getfreq},

	{
	 {
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	  .id =  V4L2_CID_AUTO_WHITE_BALANCE,
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	  .type = V4L2_CTRL_TYPE_INTEGER,
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	  .name = "Auto White Balance",
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	  .minimum = 0,
	  .maximum = 1,
	  .step = 1,
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#define AWB_DEF 0
	  .default_value = AWB_DEF,
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	  },
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	 .set = sd_setawb,
	 .get = sd_getawb
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	},
	{
	 {
	  .id = V4L2_CID_SHARPNESS,
	  .type = V4L2_CTRL_TYPE_INTEGER,
	  .name = "Sharpness",
	  .minimum = 0,
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	  .maximum = 15,
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	  .step = 1,
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#define SHARPNESS_DEF 0x06
	  .default_value = SHARPNESS_DEF,
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	  },
	 .set = sd_setsharpness,
	 .get = sd_getsharpness,
	 },
	{
	 {
	  .id = V4L2_CID_EFFECTS,
	  .type = V4L2_CTRL_TYPE_MENU,
	  .name = "Webcam Effects",
	  .minimum = 0,
	  .maximum = 4,
	  .step = 1,
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#define EFFECTS_DEF 0
	  .default_value = EFFECTS_DEF,
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	  },
	 .set = sd_seteffect,
	 .get = sd_geteffect
	},
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	{
	 {
	    .id      = V4L2_CID_BLUE_BALANCE,
	    .type    = V4L2_CTRL_TYPE_INTEGER,
	    .name    = "Blue Balance",
	    .minimum = 0x10,
	    .maximum = 0x40,
	    .step    = 1,
#define BLUE_BALANCE_DEF 0x20
	    .default_value = BLUE_BALANCE_DEF,
	 },
	.set = sd_setblue_balance,
	.get = sd_getblue_balance,
	},
	{
	 {
	    .id      = V4L2_CID_RED_BALANCE,
	    .type    = V4L2_CTRL_TYPE_INTEGER,
	    .name    = "Red Balance",
	    .minimum = 0x10,
	    .maximum = 0x40,
	    .step    = 1,
#define RED_BALANCE_DEF 0x20
	    .default_value = RED_BALANCE_DEF,
	 },
	.set = sd_setred_balance,
	.get = sd_getred_balance,
	},
	{
	 {
	    .id      = V4L2_CID_GAIN,
	    .type    = V4L2_CTRL_TYPE_INTEGER,
	    .name    = "Gain",
	    .minimum = 0x10,
	    .maximum = 0x40,
	    .step    = 1,
#define global_gain_DEF  0x20
	    .default_value = global_gain_DEF,
	 },
	.set = sd_setglobal_gain,
	.get = sd_getglobal_gain,
	},
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};

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static const struct v4l2_pix_format vga_mode_t16[] = {
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	{160, 120, V4L2_PIX_FMT_JPEG, V4L2_FIELD_NONE,
		.bytesperline = 160,
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		.sizeimage = 160 * 120 * 4 / 8 + 590,
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		.colorspace = V4L2_COLORSPACE_JPEG,
		.priv = 4},
	{176, 144, V4L2_PIX_FMT_JPEG, V4L2_FIELD_NONE,
		.bytesperline = 176,
		.sizeimage = 176 * 144 * 3 / 8 + 590,
		.colorspace = V4L2_COLORSPACE_JPEG,
		.priv = 3},
	{320, 240, V4L2_PIX_FMT_JPEG, V4L2_FIELD_NONE,
		.bytesperline = 320,
		.sizeimage = 320 * 240 * 3 / 8 + 590,
		.colorspace = V4L2_COLORSPACE_JPEG,
		.priv = 2},
	{352, 288, V4L2_PIX_FMT_JPEG, V4L2_FIELD_NONE,
		.bytesperline = 352,
		.sizeimage = 352 * 288 * 3 / 8 + 590,
		.colorspace = V4L2_COLORSPACE_JPEG,
		.priv = 1},
	{640, 480, V4L2_PIX_FMT_JPEG, V4L2_FIELD_NONE,
		.bytesperline = 640,
		.sizeimage = 640 * 480 * 3 / 8 + 590,
		.colorspace = V4L2_COLORSPACE_JPEG,
		.priv = 0},
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};

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/* sensor specific data */
struct additional_sensor_data {
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	const u8 n3[6];
	const u8 *n4, n4sz;
	const u8 reg80, reg8e;
	const u8 nset8[6];
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	const u8 data1[10];
	const u8 data2[9];
	const u8 data3[9];
	const u8 data5[6];
	const u8 stream[4];
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};

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static const u8 n4_om6802[] = {
	0x09, 0x01, 0x12, 0x04, 0x66, 0x8a, 0x80, 0x3c,
	0x81, 0x22, 0x84, 0x50, 0x8a, 0x78, 0x8b, 0x68,
	0x8c, 0x88, 0x8e, 0x33, 0x8f, 0x24, 0xaa, 0xb1,
	0xa2, 0x60, 0xa5, 0x30, 0xa6, 0x3a, 0xa8, 0xe8,
	0xae, 0x05, 0xb1, 0x00, 0xbb, 0x04, 0xbc, 0x48,
	0xbe, 0x36, 0xc6, 0x88, 0xe9, 0x00, 0xc5, 0xc0,
	0x65, 0x0a, 0xbb, 0x86, 0xaf, 0x58, 0xb0, 0x68,
	0x87, 0x40, 0x89, 0x2b, 0x8d, 0xff, 0x83, 0x40,
	0xac, 0x84, 0xad, 0x86, 0xaf, 0x46
};
static const u8 n4_other[] = {
	0x66, 0x00, 0x7f, 0x00, 0x80, 0xac, 0x81, 0x69,
	0x84, 0x40, 0x85, 0x70, 0x86, 0x20, 0x8a, 0x68,
	0x8b, 0x58, 0x8c, 0x88, 0x8d, 0xff, 0x8e, 0xb8,
	0x8f, 0x28, 0xa2, 0x60, 0xa5, 0x40, 0xa8, 0xa8,
	0xac, 0x84, 0xad, 0x84, 0xae, 0x24, 0xaf, 0x56,
	0xb0, 0x68, 0xb1, 0x00, 0xb2, 0x88, 0xbb, 0xc5,
	0xbc, 0x4a, 0xbe, 0x36, 0xc2, 0x88, 0xc5, 0xc0,
	0xc6, 0xda, 0xe9, 0x26, 0xeb, 0x00
};
static const u8 n4_tas5130a[] = {
	0x80, 0x3c, 0x81, 0x68, 0x83, 0xa0, 0x84, 0x20,
	0x8a, 0x68, 0x8b, 0x58, 0x8c, 0x88, 0x8e, 0xb4,
	0x8f, 0x24, 0xa1, 0xb1, 0xa2, 0x30, 0xa5, 0x10,
	0xa6, 0x4a, 0xae, 0x03, 0xb1, 0x44, 0xb2, 0x08,
	0xb7, 0x06, 0xb9, 0xe7, 0xbb, 0xc4, 0xbc, 0x4a,
	0xbe, 0x36, 0xbf, 0xff, 0xc2, 0x88, 0xc5, 0xc8,
	0xc6, 0xda
};
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static const u8 n4_lt168g[] = {
	0x66, 0x01, 0x7f, 0x00, 0x80, 0x7c, 0x81, 0x28,
	0x83, 0x44, 0x84, 0x20, 0x86, 0x20, 0x8a, 0x70,
	0x8b, 0x58, 0x8c, 0x88, 0x8d, 0xa0, 0x8e, 0xb3,
	0x8f, 0x24, 0xa1, 0xb0, 0xa2, 0x38, 0xa5, 0x20,
	0xa6, 0x4a, 0xa8, 0xe8, 0xaf, 0x38, 0xb0, 0x68,
	0xb1, 0x44, 0xb2, 0x88, 0xbb, 0x86, 0xbd, 0x40,
	0xbe, 0x26, 0xc1, 0x05, 0xc2, 0x88, 0xc5, 0xc0,
	0xda, 0x8e, 0xdb, 0xca, 0xdc, 0xa8, 0xdd, 0x8c,
	0xde, 0x44, 0xdf, 0x0c, 0xe9, 0x80
};
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static const struct additional_sensor_data sensor_data[] = {
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[SENSOR_OM6802] = {
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	.n3 =
		{0x61, 0x68, 0x65, 0x0a, 0x60, 0x04},
	.n4 = n4_om6802,
	.n4sz = sizeof n4_om6802,
	.reg80 = 0x3c,
	.reg8e = 0x33,
	.nset8 = {0xa8, 0xf0, 0xc6, 0x88, 0xc0, 0x00},
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	.data1 =
		{0xc2, 0x28, 0x0f, 0x22, 0xcd, 0x27, 0x2c, 0x06,
		 0xb3, 0xfc},
	.data2 =
		{0x80, 0xff, 0xff, 0x80, 0xff, 0xff, 0x80, 0xff,
		 0xff},
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	.data3 =
		{0x80, 0xff, 0xff, 0x80, 0xff, 0xff, 0x80, 0xff,
		 0xff},
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	.data5 =	/* this could be removed later */
		{0x0c, 0x03, 0xab, 0x13, 0x81, 0x23},
	.stream =
		{0x0b, 0x04, 0x0a, 0x78},
    },
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[SENSOR_OTHER] = {
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	.n3 =
		{0x61, 0xc2, 0x65, 0x88, 0x60, 0x00},
	.n4 = n4_other,
	.n4sz = sizeof n4_other,
	.reg80 = 0xac,
	.reg8e = 0xb8,
	.nset8 = {0xa8, 0xa8, 0xc6, 0xda, 0xc0, 0x00},
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	.data1 =
		{0xc1, 0x48, 0x04, 0x1b, 0xca, 0x2e, 0x33, 0x3a,
		 0xe8, 0xfc},
	.data2 =
		{0x4e, 0x9c, 0xec, 0x40, 0x80, 0xc0, 0x48, 0x96,
		 0xd9},
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	.data3 =
		{0x4e, 0x9c, 0xec, 0x40, 0x80, 0xc0, 0x48, 0x96,
		 0xd9},
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	.data5 =
		{0x0c, 0x03, 0xab, 0x29, 0x81, 0x69},
	.stream =
		{0x0b, 0x04, 0x0a, 0x00},
    },
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[SENSOR_TAS5130A] = {
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	.n3 =
		{0x61, 0xc2, 0x65, 0x0d, 0x60, 0x08},
	.n4 = n4_tas5130a,
	.n4sz = sizeof n4_tas5130a,
	.reg80 = 0x3c,
	.reg8e = 0xb4,
	.nset8 = {0xa8, 0xf0, 0xc6, 0xda, 0xc0, 0x00},
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	.data1 =
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		{0xbb, 0x28, 0x10, 0x10, 0xbb, 0x28, 0x1e, 0x27,
		 0xc8, 0xfc},
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	.data2 =
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		{0x60, 0xa8, 0xe0, 0x60, 0xa8, 0xe0, 0x60, 0xa8,
		 0xe0},
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	.data3 =
		{0x60, 0xa8, 0xe0, 0x60, 0xa8, 0xe0, 0x60, 0xa8,
		 0xe0},
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	.data5 =
		{0x0c, 0x03, 0xab, 0x10, 0x81, 0x20},
	.stream =
		{0x0b, 0x04, 0x0a, 0x40},
    },
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[SENSOR_LT168G] = {
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	.n3 = {0x61, 0xc2, 0x65, 0x68, 0x60, 0x00},
	.n4 = n4_lt168g,
	.n4sz = sizeof n4_lt168g,
	.reg80 = 0x7c,
	.reg8e = 0xb3,
	.nset8 = {0xa8, 0xf0, 0xc6, 0xba, 0xc0, 0x00},
	.data1 = {0xc0, 0x38, 0x08, 0x10, 0xc0, 0x30, 0x10, 0x40,
		 0xb0, 0xf4},
	.data2 = {0x40, 0x80, 0xc0, 0x50, 0xa0, 0xf0, 0x53, 0xa6,
		 0xff},
	.data3 = {0x40, 0x80, 0xc0, 0x50, 0xa0, 0xf0, 0x53, 0xa6,
		 0xff},
	.data5 = {0x0c, 0x03, 0xab, 0x4b, 0x81, 0x2b},
	.stream = {0x0b, 0x04, 0x0a, 0x28},
    },
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};

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#define MAX_EFFECTS 7
/* easily done by soft, this table could be removed,
 * i keep it here just in case */
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static char *effects_control[MAX_EFFECTS] = {
	"Normal",
	"Emboss",		/* disabled */
	"Monochrome",
	"Sepia",
	"Sketch",
	"Sun Effect",		/* disabled */
	"Negative",
};
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static const u8 effects_table[MAX_EFFECTS][6] = {
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	{0xa8, 0xe8, 0xc6, 0xd2, 0xc0, 0x00},	/* Normal */
	{0xa8, 0xc8, 0xc6, 0x52, 0xc0, 0x04},	/* Repujar */
	{0xa8, 0xe8, 0xc6, 0xd2, 0xc0, 0x20},	/* Monochrome */
	{0xa8, 0xe8, 0xc6, 0xd2, 0xc0, 0x80},	/* Sepia */
	{0xa8, 0xc8, 0xc6, 0x52, 0xc0, 0x02},	/* Croquis */
	{0xa8, 0xc8, 0xc6, 0xd2, 0xc0, 0x10},	/* Sun Effect */
	{0xa8, 0xc8, 0xc6, 0xd2, 0xc0, 0x40},	/* Negative */
};

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static const u8 gamma_table[GAMMA_MAX][17] = {
	{0x00, 0x3e, 0x69, 0x85, 0x95, 0xa1, 0xae, 0xb9,	/* 0 */
	 0xc2, 0xcb, 0xd4, 0xdb, 0xe3, 0xea, 0xf1, 0xf8,
	 0xff},
	{0x00, 0x33, 0x5a, 0x75, 0x85, 0x93, 0xa1, 0xad,	/* 1 */
	 0xb7, 0xc2, 0xcb, 0xd4, 0xde, 0xe7, 0xf0, 0xf7,
	 0xff},
	{0x00, 0x2f, 0x51, 0x6b, 0x7c, 0x8a, 0x99, 0xa6,	/* 2 */
	 0xb1, 0xbc, 0xc6, 0xd0, 0xdb, 0xe4, 0xed, 0xf6,
	 0xff},
	{0x00, 0x29, 0x48, 0x60, 0x72, 0x81, 0x90, 0x9e,	/* 3 */
	 0xaa, 0xb5, 0xbf, 0xcb, 0xd6, 0xe1, 0xeb, 0xf5,
	 0xff},
	{0x00, 0x23, 0x3f, 0x55, 0x68, 0x77, 0x86, 0x95,	/* 4 */
	 0xa2, 0xad, 0xb9, 0xc6, 0xd2, 0xde, 0xe9, 0xf4,
	 0xff},
	{0x00, 0x1b, 0x33, 0x48, 0x59, 0x69, 0x79, 0x87,	/* 5 */
	 0x96, 0xa3, 0xb1, 0xbe, 0xcc, 0xda, 0xe7, 0xf3,
	 0xff},
	{0x00, 0x02, 0x10, 0x20, 0x32, 0x40, 0x57, 0x67,	/* 6 */
	 0x77, 0x88, 0x99, 0xaa, 0xbb, 0xcc, 0xdd, 0xee,
	 0xff},
	{0x00, 0x02, 0x14, 0x26, 0x38, 0x4a, 0x60, 0x70,	/* 7 */
	 0x80, 0x90, 0xa0, 0xb0, 0xc0, 0xd0, 0xe0, 0xf0,
	 0xff},
	{0x00, 0x10, 0x22, 0x35, 0x47, 0x5a, 0x69, 0x79,	/* 8 */
	 0x88, 0x97, 0xa7, 0xb6, 0xc4, 0xd3, 0xe0, 0xf0,
	 0xff},
	{0x00, 0x10, 0x26, 0x40, 0x54, 0x65, 0x75, 0x84,	/* 9 */
	 0x93, 0xa1, 0xb0, 0xbd, 0xca, 0xd6, 0xe0, 0xf0,
	 0xff},
	{0x00, 0x18, 0x2b, 0x44, 0x60, 0x70, 0x80, 0x8e,	/* 10 */
	 0x9c, 0xaa, 0xb7, 0xc4, 0xd0, 0xd8, 0xe2, 0xf0,
	 0xff},
509
	{0x00, 0x1a, 0x34, 0x52, 0x66, 0x7e, 0x8d, 0x9b,	/* 11 */
510 511 512 513 514 515 516 517 518 519 520 521 522 523
	 0xa8, 0xb4, 0xc0, 0xcb, 0xd6, 0xe1, 0xeb, 0xf5,
	 0xff},
	{0x00, 0x3f, 0x5a, 0x6e, 0x7f, 0x8e, 0x9c, 0xa8,	/* 12 */
	 0xb4, 0xbf, 0xc9, 0xd3, 0xdc, 0xe5, 0xee, 0xf6,
	 0xff},
	{0x00, 0x54, 0x6f, 0x83, 0x93, 0xa0, 0xad, 0xb7,	/* 13 */
	 0xc2, 0xcb, 0xd4, 0xdc, 0xe4, 0xeb, 0xf2, 0xf9,
	 0xff},
	{0x00, 0x6e, 0x88, 0x9a, 0xa8, 0xb3, 0xbd, 0xc6,	/* 14 */
	 0xcf, 0xd6, 0xdd, 0xe3, 0xe9, 0xef, 0xf4, 0xfa,
	 0xff},
	{0x00, 0x93, 0xa8, 0xb7, 0xc1, 0xca, 0xd2, 0xd8,	/* 15 */
	 0xde, 0xe3, 0xe8, 0xed, 0xf1, 0xf5, 0xf8, 0xfc,
	 0xff}
524 525
};

526
static const u8 tas5130a_sensor_init[][8] = {
527 528 529 530 531
	{0x62, 0x08, 0x63, 0x70, 0x64, 0x1d, 0x60, 0x09},
	{0x62, 0x20, 0x63, 0x01, 0x64, 0x02, 0x60, 0x09},
	{0x62, 0x07, 0x63, 0x03, 0x64, 0x00, 0x60, 0x09},
};

532
static u8 sensor_reset[] = {0x61, 0x68, 0x62, 0xff, 0x60, 0x07};
533

534
/* read 1 byte */
535 536
static u8 reg_r(struct gspca_dev *gspca_dev,
		   u16 index)
537
{
538 539
	usb_control_msg(gspca_dev->dev,
			usb_rcvctrlpipe(gspca_dev->dev, 0),
540 541 542
			0,		/* request */
			USB_DIR_IN | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
			0,		/* value */
543 544 545
			index,
			gspca_dev->usb_buf, 1, 500);
	return gspca_dev->usb_buf[0];
546 547
}

548
static void reg_w(struct gspca_dev *gspca_dev,
549
		  u16 index)
550 551 552 553
{
	usb_control_msg(gspca_dev->dev,
			usb_sndctrlpipe(gspca_dev->dev, 0),
			0,
554
			USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
555 556 557 558
			0, index,
			NULL, 0, 500);
}

559
static void reg_w_buf(struct gspca_dev *gspca_dev,
560
		  const u8 *buffer, u16 len)
561
{
562
	if (len <= USB_BUF_SZ) {
563 564 565
		memcpy(gspca_dev->usb_buf, buffer, len);
		usb_control_msg(gspca_dev->dev,
				usb_sndctrlpipe(gspca_dev->dev, 0),
566
				0,
567
			   USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
568
				0x01, 0,
569
				gspca_dev->usb_buf, len, 500);
570
	} else {
571
		u8 *tmpbuf;
572 573

		tmpbuf = kmalloc(len, GFP_KERNEL);
574 575 576 577
		if (!tmpbuf) {
			err("Out of memory");
			return;
		}
578
		memcpy(tmpbuf, buffer, len);
579 580
		usb_control_msg(gspca_dev->dev,
				usb_sndctrlpipe(gspca_dev->dev, 0),
581
				0,
582
			   USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
583
				0x01, 0,
584 585 586
				tmpbuf, len, 500);
		kfree(tmpbuf);
	}
587 588
}

589 590 591 592 593 594 595 596
/* write values to consecutive registers */
static void reg_w_ixbuf(struct gspca_dev *gspca_dev,
			u8 reg,
			const u8 *buffer, u16 len)
{
	int i;
	u8 *p, *tmpbuf;

597
	if (len * 2 <= USB_BUF_SZ) {
598
		p = tmpbuf = gspca_dev->usb_buf;
599
	} else {
600
		p = tmpbuf = kmalloc(len * 2, GFP_KERNEL);
601 602 603 604 605
		if (!tmpbuf) {
			err("Out of memory");
			return;
		}
	}
606 607 608 609 610 611 612 613 614 615 616 617 618 619 620
	i = len;
	while (--i >= 0) {
		*p++ = reg++;
		*p++ = *buffer++;
	}
	usb_control_msg(gspca_dev->dev,
			usb_sndctrlpipe(gspca_dev->dev, 0),
			0,
			USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
			0x01, 0,
			tmpbuf, len * 2, 500);
	if (len * 2 > USB_BUF_SZ)
		kfree(tmpbuf);
}

621
static void om6802_sensor_init(struct gspca_dev *gspca_dev)
622 623
{
	int i;
624 625 626 627
	const u8 *p;
	u8 byte;
	u8 val[6] = {0x62, 0, 0x64, 0, 0x60, 0x05};
	static const u8 sensor_init[] = {
628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644
		0xdf, 0x6d,
		0xdd, 0x18,
		0x5a, 0xe0,
		0x5c, 0x07,
		0x5d, 0xb0,
		0x5e, 0x1e,
		0x60, 0x71,
		0xef, 0x00,
		0xe9, 0x00,
		0xea, 0x00,
		0x90, 0x24,
		0x91, 0xb2,
		0x82, 0x32,
		0xfd, 0x41,
		0x00			/* table end */
	};

645
	reg_w_buf(gspca_dev, sensor_reset, sizeof sensor_reset);
646
	msleep(100);
647
	i = 4;
648
	while (--i > 0) {
649 650 651 652 653 654 655 656 657 658 659
		byte = reg_r(gspca_dev, 0x0060);
		if (!(byte & 0x01))
			break;
		msleep(100);
	}
	byte = reg_r(gspca_dev, 0x0063);
	if (byte != 0x17) {
		err("Bad sensor reset %02x", byte);
		/* continue? */
	}

660 661 662 663 664 665
	p = sensor_init;
	while (*p != 0) {
		val[1] = *p++;
		val[3] = *p++;
		if (*p == 0)
			reg_w(gspca_dev, 0x3c80);
666
		reg_w_buf(gspca_dev, val, sizeof val);
667 668 669 670 671 672 673 674
		i = 4;
		while (--i >= 0) {
			msleep(15);
			byte = reg_r(gspca_dev, 0x60);
			if (!(byte & 0x01))
				break;
		}
	}
675 676
	msleep(15);
	reg_w(gspca_dev, 0x3c80);
677 678
}

679 680 681 682 683 684 685 686 687 688 689 690
/* this function is called at probe time */
static int sd_config(struct gspca_dev *gspca_dev,
		     const struct usb_device_id *id)
{
	struct sd *sd = (struct sd *) gspca_dev;
	struct cam *cam;

	cam = &gspca_dev->cam;

	cam->cam_mode = vga_mode_t16;
	cam->nmodes = ARRAY_SIZE(vga_mode_t16);

691 692 693
	sd->brightness = BRIGHTNESS_DEF;
	sd->contrast = CONTRAST_DEF;
	sd->colors = COLORS_DEF;
694
	sd->gamma = GAMMA_DEF;
695 696 697
	sd->autogain = AUTOGAIN_DEF;
	sd->mirror = MIRROR_DEF;
	sd->freq = FREQ_DEF;
698
	sd->awb = AWB_DEF;
699 700
	sd->sharpness = SHARPNESS_DEF;
	sd->effect = EFFECTS_DEF;
701 702 703 704
	sd->red_balance = RED_BALANCE_DEF;
	sd->blue_balance = BLUE_BALANCE_DEF;
	sd->global_gain = global_gain_DEF;

705 706 707
	return 0;
}

708 709 710 711
static void setbrightness(struct gspca_dev *gspca_dev)
{
	struct sd *sd = (struct sd *) gspca_dev;
	unsigned int brightness;
712
	u8 set6[4] = { 0x8f, 0x24, 0xc3, 0x00 };
713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728

	brightness = sd->brightness;
	if (brightness < 7) {
		set6[1] = 0x26;
		set6[3] = 0x70 - brightness * 0x10;
	} else {
		set6[3] = 0x00 + ((brightness - 7) * 0x10);
	}

	reg_w_buf(gspca_dev, set6, sizeof set6);
}

static void setcontrast(struct gspca_dev *gspca_dev)
{
	struct sd *sd = (struct sd *) gspca_dev;
	unsigned int contrast = sd->contrast;
729
	u16 reg_to_write;
730 731 732 733 734 735 736 737 738 739 740 741

	if (contrast < 7)
		reg_to_write = 0x8ea9 - contrast * 0x200;
	else
		reg_to_write = 0x00a9 + (contrast - 7) * 0x200;

	reg_w(gspca_dev, reg_to_write);
}

static void setcolors(struct gspca_dev *gspca_dev)
{
	struct sd *sd = (struct sd *) gspca_dev;
742
	u16 reg_to_write;
743 744 745 746 747

	reg_to_write = 0x80bb + sd->colors * 0x100;	/* was 0xc0 */
	reg_w(gspca_dev, reg_to_write);
}

748 749 750 751 752
static void setgamma(struct gspca_dev *gspca_dev)
{
	struct sd *sd = (struct sd *) gspca_dev;

	PDEBUG(D_CONF, "Gamma: %d", sd->gamma);
753 754
	reg_w_ixbuf(gspca_dev, 0x90,
		gamma_table[sd->gamma], sizeof gamma_table[0]);
755
}
756 757
static void setglobalgain(struct gspca_dev *gspca_dev)
{
758

759 760 761 762 763 764 765
	struct sd *sd = (struct sd *) gspca_dev;
	reg_w(gspca_dev, (sd->red_balance  << 8) + 0x87);
	reg_w(gspca_dev, (sd->blue_balance << 8) + 0x88);
	reg_w(gspca_dev, (sd->global_gain  << 8) + 0x89);
}

/* Generic fnc for r/b balance, exposure and whitebalance */
766
static void setawb(struct gspca_dev *gspca_dev)
767 768 769
{
	struct sd *sd = (struct sd *) gspca_dev;

770 771
	/* on awb leave defaults values */
	if (sd->awb) {
772 773 774 775 776 777 778 779 780 781 782 783
		reg_w(gspca_dev, 0x3c80);
	} else {
		reg_w(gspca_dev, 0x3880);
		/* shoud we wait here.. */
		/* update and reset 'global gain' with webcam parameters */
		sd->red_balance = reg_r(gspca_dev, 0x0087);
		sd->blue_balance = reg_r(gspca_dev, 0x0088);
		sd->global_gain = reg_r(gspca_dev, 0x0089);
		setglobalgain(gspca_dev);
	}

}
784 785 786 787

static void setsharpness(struct gspca_dev *gspca_dev)
{
	struct sd *sd = (struct sd *) gspca_dev;
788
	u16 reg_to_write;
789 790 791 792 793 794

	reg_to_write = 0x0aa6 + 0x1000 * sd->sharpness;

	reg_w(gspca_dev, reg_to_write);
}

795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826
static void setfreq(struct gspca_dev *gspca_dev)
{
	struct sd *sd = (struct sd *) gspca_dev;
	u8 reg66;
	u8 freq[4] = { 0x66, 0x00, 0xa8, 0xe8 };

	switch (sd->sensor) {
	case SENSOR_LT168G:
		if (sd->freq != 0)
			freq[3] = 0xa8;
		reg66 = 0x41;
		break;
	case SENSOR_OM6802:
		reg66 = 0xca;
		break;
	default:
		reg66 = 0x40;
		break;
	}
	switch (sd->freq) {
	case 0:				/* no flicker */
		freq[3] = 0xf0;
		break;
	case 2:				/* 60Hz */
		reg66 &= ~0x40;
		break;
	}
	freq[1] = reg66;

	reg_w_buf(gspca_dev, freq, sizeof freq);
}

827 828
/* this function is called at probe and resume time */
static int sd_init(struct gspca_dev *gspca_dev)
829 830 831 832 833
{
	/* some of this registers are not really neded, because
	 * they are overriden by setbrigthness, setcontrast, etc,
	 * but wont hurt anyway, and can help someone with similar webcam
	 * to see the initial parameters.*/
834
	struct sd *sd = (struct sd *) gspca_dev;
835
	const struct additional_sensor_data *sensor;
836
	int i;
837
	u16 sensor_id;
838
	u8 test_byte = 0;
839

840
	static const u8 read_indexs[] =
841
		{ 0x0a, 0x0b, 0x66, 0x80, 0x81, 0x8e, 0x8f, 0xa5,
842 843
		  0xa6, 0xa8, 0xbb, 0xbc, 0xc6, 0x00 };
	static const u8 n1[] =
844
			{0x08, 0x03, 0x09, 0x03, 0x12, 0x04};
845
	static const u8 n2[] =
846 847
			{0x08, 0x00};

848 849
	sensor_id = (reg_r(gspca_dev, 0x06) << 8)
			| reg_r(gspca_dev, 0x07);
850
	switch (sensor_id & 0xff0f) {
851
	case 0x0801:
852
		PDEBUG(D_PROBE, "sensor tas5130a");
853
		sd->sensor = SENSOR_TAS5130A;
854
		break;
855 856 857 858
	case 0x0802:
		PDEBUG(D_PROBE, "sensor lt168g");
		sd->sensor = SENSOR_LT168G;
		break;
859
	case 0x0803:
860
		PDEBUG(D_PROBE, "sensor 'other'");
861 862 863
		sd->sensor = SENSOR_OTHER;
		break;
	case 0x0807:
864
		PDEBUG(D_PROBE, "sensor om6802");
865 866 867
		sd->sensor = SENSOR_OM6802;
		break;
	default:
868
		PDEBUG(D_ERR|D_PROBE, "unknown sensor %04x", sensor_id);
869
		return -EINVAL;
870 871
	}

872
	if (sd->sensor == SENSOR_OM6802) {
873 874 875 876 877 878 879 880 881 882 883
		reg_w_buf(gspca_dev, n1, sizeof n1);
		i = 5;
		while (--i >= 0) {
			reg_w_buf(gspca_dev, sensor_reset, sizeof sensor_reset);
			test_byte = reg_r(gspca_dev, 0x0063);
			msleep(100);
			if (test_byte == 0x17)
				break;		/* OK */
		}
		if (i < 0) {
			err("Bad sensor reset %02x", test_byte);
884
			return -EIO;
885 886
		}
		reg_w_buf(gspca_dev, n2, sizeof n2);
887
	}
888

889
	i = 0;
890
	while (read_indexs[i] != 0x00) {
891 892
		test_byte = reg_r(gspca_dev, read_indexs[i]);
		PDEBUG(D_STREAM, "Reg 0x%02x = 0x%02x", read_indexs[i],
893 894 895 896
		       test_byte);
		i++;
	}

897 898 899
	sensor = &sensor_data[sd->sensor];
	reg_w_buf(gspca_dev, sensor->n3, sizeof sensor->n3);
	reg_w_buf(gspca_dev, sensor->n4, sensor->n4sz);
900

901 902 903 904 905 906 907
	if (sd->sensor == SENSOR_LT168G) {
		test_byte = reg_r(gspca_dev, 0x80);
		PDEBUG(D_STREAM, "Reg 0x%02x = 0x%02x", 0x80,
		       test_byte);
		reg_w(gspca_dev, 0x6c80);
	}

908 909 910
	reg_w_ixbuf(gspca_dev, 0xd0, sensor->data1, sizeof sensor->data1);
	reg_w_ixbuf(gspca_dev, 0xc7, sensor->data2, sizeof sensor->data2);
	reg_w_ixbuf(gspca_dev, 0xe0, sensor->data3, sizeof sensor->data3);
911

912 913 914
	reg_w(gspca_dev, (sensor->reg80 << 8) + 0x80);
	reg_w(gspca_dev, (sensor->reg80 << 8) + 0x80);
	reg_w(gspca_dev, (sensor->reg8e << 8) + 0x8e);
915

916 917
	setbrightness(gspca_dev);
	setcontrast(gspca_dev);
918
	setgamma(gspca_dev);
919 920
	setcolors(gspca_dev);
	setsharpness(gspca_dev);
921
	setawb(gspca_dev);
922
	setfreq(gspca_dev);
923

924
	reg_w(gspca_dev, 0x2087);	/* tied to white balance? */
925 926 927
	reg_w(gspca_dev, 0x2088);
	reg_w(gspca_dev, 0x2089);

928 929 930 931
	reg_w_buf(gspca_dev, sensor->data4, sizeof sensor->data4);
	reg_w_buf(gspca_dev, sensor->data5, sizeof sensor->data5);
	reg_w_buf(gspca_dev, sensor->nset8, sizeof sensor->nset8);
	reg_w_buf(gspca_dev, sensor->stream, sizeof sensor->stream);
932

933 934 935 936 937 938 939
	if (sd->sensor == SENSOR_LT168G) {
		test_byte = reg_r(gspca_dev, 0x80);
		PDEBUG(D_STREAM, "Reg 0x%02x = 0x%02x", 0x80,
		       test_byte);
		reg_w(gspca_dev, 0x6c80);
	}

940 941 942
	reg_w_ixbuf(gspca_dev, 0xd0, sensor->data1, sizeof sensor->data1);
	reg_w_ixbuf(gspca_dev, 0xc7, sensor->data2, sizeof sensor->data2);
	reg_w_ixbuf(gspca_dev, 0xe0, sensor->data3, sizeof sensor->data3);
943

944 945 946
	return 0;
}

947
static void setmirror(struct gspca_dev *gspca_dev)
948 949
{
	struct sd *sd = (struct sd *) gspca_dev;
950
	u8 hflipcmd[8] =
951
		{0x62, 0x07, 0x63, 0x03, 0x64, 0x00, 0x60, 0x09};
952

953
	if (sd->mirror)
954
		hflipcmd[3] = 0x01;
955

956
	reg_w_buf(gspca_dev, hflipcmd, sizeof hflipcmd);
957 958 959 960 961 962
}

static void seteffect(struct gspca_dev *gspca_dev)
{
	struct sd *sd = (struct sd *) gspca_dev;

963 964
	reg_w_buf(gspca_dev, effects_table[sd->effect],
				sizeof effects_table[0]);
965 966 967 968 969 970 971
	if (sd->effect == 1 || sd->effect == 5) {
		PDEBUG(D_CONF,
		       "This effect have been disabled for webcam \"safety\"");
		return;
	}

	if (sd->effect == 1 || sd->effect == 4)
972
		reg_w(gspca_dev, 0x4aa6);
973
	else
974
		reg_w(gspca_dev, 0xfaa6);
975 976
}

977 978 979 980
/* Is this really needed?
 * i added some module parameters for test with some users */
static void poll_sensor(struct gspca_dev *gspca_dev)
{
981
	static const u8 poll1[] =
982 983 984 985
		{0x67, 0x05, 0x68, 0x81, 0x69, 0x80, 0x6a, 0x82,
		 0x6b, 0x68, 0x6c, 0x69, 0x72, 0xd9, 0x73, 0x34,
		 0x74, 0x32, 0x75, 0x92, 0x76, 0x00, 0x09, 0x01,
		 0x60, 0x14};
986
	static const u8 poll2[] =
987 988
		{0x67, 0x02, 0x68, 0x71, 0x69, 0x72, 0x72, 0xa9,
		 0x73, 0x02, 0x73, 0x02, 0x60, 0x14};
989
	static const u8 poll3[] =
990
		{0x87, 0x3f, 0x88, 0x20, 0x89, 0x2d};
991
	static const u8 poll4[] =
992 993 994 995
		{0xa6, 0x0a, 0xea, 0xcf, 0xbe, 0x26, 0xb1, 0x5f,
		 0xa1, 0xb1, 0xda, 0x6b, 0xdb, 0x98, 0xdf, 0x0c,
		 0xc2, 0x80, 0xc3, 0x10};

996 997 998 999 1000
	PDEBUG(D_STREAM, "[Sensor requires polling]");
	reg_w_buf(gspca_dev, poll1, sizeof poll1);
	reg_w_buf(gspca_dev, poll2, sizeof poll2);
	reg_w_buf(gspca_dev, poll3, sizeof poll3);
	reg_w_buf(gspca_dev, poll4, sizeof poll4);
1001 1002
}

1003 1004 1005
static int sd_start(struct gspca_dev *gspca_dev)
{
	struct sd *sd = (struct sd *) gspca_dev;
1006
	const struct additional_sensor_data *sensor;
1007
	int i, mode;
1008 1009 1010
	u8 t2[] = { 0x07, 0x00, 0x0d, 0x60, 0x0e, 0x80 };
	static const u8 t3[] =
		{ 0x07, 0x00, 0x88, 0x02, 0x06, 0x00, 0xe7, 0x01 };
1011

1012
	mode = gspca_dev->cam.cam_mode[gspca_dev->curr_mode].priv;
1013
	switch (mode) {
1014 1015
	case 0:		/* 640x480 (0x00) */
		break;
1016 1017 1018 1019 1020 1021 1022 1023 1024
	case 1:		/* 352x288 */
		t2[1] = 0x40;
		break;
	case 2:		/* 320x240 */
		t2[1] = 0x10;
		break;
	case 3:		/* 176x144 */
		t2[1] = 0x50;
		break;
1025 1026
	default:
/*	case 4:		 * 160x120 */
1027 1028 1029 1030
		t2[1] = 0x20;
		break;
	}

1031 1032 1033 1034
	switch (sd->sensor) {
	case SENSOR_OM6802:
		om6802_sensor_init(gspca_dev);
		break;
1035
	case SENSOR_TAS5130A:
1036
		i = 0;
1037
		for (;;) {
1038
			reg_w_buf(gspca_dev, tas5130a_sensor_init[i],
1039
					 sizeof tas5130a_sensor_init[0]);
1040 1041
			if (i >= ARRAY_SIZE(tas5130a_sensor_init) - 1)
				break;
1042 1043 1044 1045
			i++;
		}
		reg_w(gspca_dev, 0x3c80);
		/* just in case and to keep sync with logs (for mine) */
1046
		reg_w_buf(gspca_dev, tas5130a_sensor_init[i],
1047 1048
				 sizeof tas5130a_sensor_init[0]);
		reg_w(gspca_dev, 0x3c80);
1049
		break;
1050
	}
1051
	sensor = &sensor_data[sd->sensor];
1052
	setfreq(gspca_dev);
1053
	reg_r(gspca_dev, 0x0012);
1054
	reg_w_buf(gspca_dev, t2, sizeof t2);
1055
	reg_w_ixbuf(gspca_dev, 0xb3, t3, sizeof t3);
1056
	reg_w(gspca_dev, 0x0013);
1057
	msleep(15);
1058 1059 1060 1061 1062
	reg_w_buf(gspca_dev, sensor->stream, sizeof sensor->stream);
	reg_w_buf(gspca_dev, sensor->stream, sizeof sensor->stream);

	if (sd->sensor == SENSOR_OM6802)
		poll_sensor(gspca_dev);
1063

1064 1065 1066
	return 0;
}

1067 1068 1069 1070 1071 1072 1073 1074
static void sd_stopN(struct gspca_dev *gspca_dev)
{
	struct sd *sd = (struct sd *) gspca_dev;

	reg_w_buf(gspca_dev, sensor_data[sd->sensor].stream,
			sizeof sensor_data[sd->sensor].stream);
	reg_w_buf(gspca_dev, sensor_data[sd->sensor].stream,
			sizeof sensor_data[sd->sensor].stream);
1075
	if (sd->sensor == SENSOR_OM6802) {
1076 1077 1078
		msleep(20);
		reg_w(gspca_dev, 0x0309);
	}
1079 1080
}

1081
static void sd_pkt_scan(struct gspca_dev *gspca_dev,
1082
			u8 *data,			/* isoc packet */
1083 1084
			int len)			/* iso packet length */
{
1085
	static u8 ffd9[] = { 0xff, 0xd9 };
1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098

	if (data[0] == 0x5a) {
		/* Control Packet, after this came the header again,
		 * but extra bytes came in the packet before this,
		 * sometimes an EOF arrives, sometimes not... */
		return;
	}
	data += 2;
	len -= 2;
	if (data[0] == 0xff && data[1] == 0xd8) {
		/* extra bytes....., could be processed too but would be
		 * a waste of time, right now leave the application and
		 * libjpeg do it for ourserlves.. */
1099
		gspca_frame_add(gspca_dev, LAST_PACKET,
1100
					ffd9, 2);
1101
		gspca_frame_add(gspca_dev, FIRST_PACKET, data, len);
1102 1103 1104 1105 1106 1107 1108 1109
		return;
	}

	if (data[len - 2] == 0xff && data[len - 1] == 0xd9) {
		/* Just in case, i have seen packets with the marker,
		 * other's do not include it... */
		len -= 2;
	}
1110
	gspca_frame_add(gspca_dev, INTER_PACKET, data, len);
1111 1112
}

1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171

static int sd_setblue_balance(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->blue_balance = val;
	if (gspca_dev->streaming)
		reg_w(gspca_dev, (val << 8) + 0x88);
	return 0;
}

static int sd_getblue_balance(struct gspca_dev *gspca_dev, __s32 *val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	*val = sd->blue_balance;
	return 0;
}

static int sd_setred_balance(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->red_balance = val;
	if (gspca_dev->streaming)
		reg_w(gspca_dev, (val << 8) + 0x87);

	return 0;
}

static int sd_getred_balance(struct gspca_dev *gspca_dev, __s32 *val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	*val = sd->red_balance;
	return 0;
}



static int sd_setglobal_gain(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->global_gain = val;
	if (gspca_dev->streaming)
		setglobalgain(gspca_dev);

	return 0;
}

static int sd_getglobal_gain(struct gspca_dev *gspca_dev, __s32 *val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	*val = sd->global_gain;
	return 0;
}

1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184
static int sd_setbrightness(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->brightness = val;
	if (gspca_dev->streaming)
		setbrightness(gspca_dev);
	return 0;
}

static int sd_getbrightness(struct gspca_dev *gspca_dev, __s32 *val)
{
	struct sd *sd = (struct sd *) gspca_dev;
1185

1186 1187 1188 1189
	*val = sd->brightness;
	return *val;
}

1190
static int sd_setawb(struct gspca_dev *gspca_dev, __s32 val)
1191 1192 1193
{
	struct sd *sd = (struct sd *) gspca_dev;

1194
	sd->awb = val;
1195
	if (gspca_dev->streaming)
1196
		setawb(gspca_dev);
1197 1198 1199
	return 0;
}

1200
static int sd_getawb(struct gspca_dev *gspca_dev, __s32 *val)
1201 1202 1203
{
	struct sd *sd = (struct sd *) gspca_dev;

1204
	*val = sd->awb;
1205 1206 1207
	return *val;
}

1208
static int sd_setmirror(struct gspca_dev *gspca_dev, __s32 val)
1209 1210 1211 1212 1213
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->mirror = val;
	if (gspca_dev->streaming)
1214
		setmirror(gspca_dev);
1215 1216 1217
	return 0;
}

1218
static int sd_getmirror(struct gspca_dev *gspca_dev, __s32 *val)
1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292
{
	struct sd *sd = (struct sd *) gspca_dev;

	*val = sd->mirror;
	return *val;
}

static int sd_seteffect(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->effect = val;
	if (gspca_dev->streaming)
		seteffect(gspca_dev);
	return 0;
}

static int sd_geteffect(struct gspca_dev *gspca_dev, __s32 *val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	*val = sd->effect;
	return *val;
}

static int sd_setcontrast(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->contrast = val;
	if (gspca_dev->streaming)
		setcontrast(gspca_dev);
	return 0;
}

static int sd_getcontrast(struct gspca_dev *gspca_dev, __s32 *val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	*val = sd->contrast;
	return *val;
}

static int sd_setcolors(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->colors = val;
	if (gspca_dev->streaming)
		setcolors(gspca_dev);
	return 0;
}

static int sd_getcolors(struct gspca_dev *gspca_dev, __s32 *val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	*val = sd->colors;
	return 0;
}

static int sd_setgamma(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->gamma = val;
	if (gspca_dev->streaming)
		setgamma(gspca_dev);
	return 0;
}

static int sd_getgamma(struct gspca_dev *gspca_dev, __s32 *val)
{
	struct sd *sd = (struct sd *) gspca_dev;
1293

1294 1295 1296 1297 1298 1299 1300 1301 1302 1303
	*val = sd->gamma;
	return 0;
}

static int sd_setfreq(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->freq = val;
	if (gspca_dev->streaming)
1304
		setfreq(gspca_dev);
1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340
	return 0;
}

static int sd_getfreq(struct gspca_dev *gspca_dev, __s32 *val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	*val = sd->freq;
	return 0;
}

static int sd_setsharpness(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->sharpness = val;
	if (gspca_dev->streaming)
		setsharpness(gspca_dev);
	return 0;
}

static int sd_getsharpness(struct gspca_dev *gspca_dev, __s32 *val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	*val = sd->sharpness;
	return 0;
}

/* Low Light set  here......*/
static int sd_setlowlight(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->autogain = val;
	if (val != 0)
1341
		reg_w(gspca_dev, 0xf48e);
1342
	else
1343
		reg_w(gspca_dev, 0xb48e);
1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361
	return 0;
}

static int sd_getlowlight(struct gspca_dev *gspca_dev, __s32 *val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	*val = sd->autogain;
	return 0;
}

static int sd_querymenu(struct gspca_dev *gspca_dev,
			struct v4l2_querymenu *menu)
{
	switch (menu->id) {
	case V4L2_CID_POWER_LINE_FREQUENCY:
		switch (menu->index) {
		case 1:		/* V4L2_CID_POWER_LINE_FREQUENCY_50HZ */
1362
			strcpy((char *) menu->name, "50 Hz");
1363 1364
			return 0;
		case 2:		/* V4L2_CID_POWER_LINE_FREQUENCY_60HZ */
1365
			strcpy((char *) menu->name, "60 Hz");
1366 1367 1368 1369
			return 0;
		}
		break;
	case V4L2_CID_EFFECTS:
1370 1371
		if ((unsigned) menu->index < ARRAY_SIZE(effects_control)) {
			strncpy((char *) menu->name,
1372 1373
				effects_control[menu->index],
				sizeof menu->name);
1374 1375
			return 0;
		}
1376 1377
		break;
	}
1378
	return -EINVAL;
1379 1380 1381
}

/* sub-driver description */
1382
static const struct sd_desc sd_desc = {
1383 1384 1385 1386
	.name = MODULE_NAME,
	.ctrls = sd_ctrls,
	.nctrls = ARRAY_SIZE(sd_ctrls),
	.config = sd_config,
1387
	.init = sd_init,
1388
	.start = sd_start,
1389
	.stopN = sd_stopN,
1390 1391 1392 1393 1394
	.pkt_scan = sd_pkt_scan,
	.querymenu = sd_querymenu,
};

/* -- module initialisation -- */
1395
static const __devinitdata struct usb_device_id device_table[] = {
1396
	{USB_DEVICE(0x17a1, 0x0128)},
1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413
	{}
};
MODULE_DEVICE_TABLE(usb, device_table);

/* -- device connect -- */
static int sd_probe(struct usb_interface *intf,
		    const struct usb_device_id *id)
{
	return gspca_dev_probe(intf, id, &sd_desc, sizeof(struct sd),
			       THIS_MODULE);
}

static struct usb_driver sd_driver = {
	.name = MODULE_NAME,
	.id_table = device_table,
	.probe = sd_probe,
	.disconnect = gspca_disconnect,
1414 1415 1416 1417
#ifdef CONFIG_PM
	.suspend = gspca_suspend,
	.resume = gspca_resume,
#endif
1418 1419 1420 1421 1422
};

/* -- module insert / remove -- */
static int __init sd_mod_init(void)
{
1423 1424 1425
	int ret;
	ret = usb_register(&sd_driver);
	if (ret < 0)
1426
		return ret;
1427
	PDEBUG(D_PROBE, "registered");
1428 1429 1430 1431 1432 1433 1434 1435 1436 1437
	return 0;
}
static void __exit sd_mod_exit(void)
{
	usb_deregister(&sd_driver);
	PDEBUG(D_PROBE, "deregistered");
}

module_init(sd_mod_init);
module_exit(sd_mod_exit);