ov534.c 27.7 KB
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/*
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 * ov534-ov772x gspca driver
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 *
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 * Copyright (C) 2008 Antonio Ospite <ospite@studenti.unina.it>
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 * Copyright (C) 2008 Jim Paris <jim@jtan.com>
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 * Copyright (C) 2009 Jean-Francois Moine http://moinejf.free.fr
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 *
 * Based on a prototype written by Mark Ferrell <majortrips@gmail.com>
 * USB protocol reverse engineered by Jim Paris <jim@jtan.com>
 * https://jim.sh/svn/jim/devl/playstation/ps3/eye/test/
 *
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 * PS3 Eye camera enhanced by Richard Kaswy http://kaswy.free.fr
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 * PS3 Eye camera, brightness, contrast, hue, AWB control added
 *	by Max Thrun <bear24rw@gmail.com>
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 *
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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
 */

#define MODULE_NAME "ov534"

#include "gspca.h"

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#define OV534_REG_ADDRESS	0xf1	/* sensor address */
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#define OV534_REG_SUBADDR	0xf2
#define OV534_REG_WRITE		0xf3
#define OV534_REG_READ		0xf4
#define OV534_REG_OPERATION	0xf5
#define OV534_REG_STATUS	0xf6

#define OV534_OP_WRITE_3	0x37
#define OV534_OP_WRITE_2	0x33
#define OV534_OP_READ_2		0xf9

#define CTRL_TIMEOUT 500

MODULE_AUTHOR("Antonio Ospite <ospite@studenti.unina.it>");
MODULE_DESCRIPTION("GSPCA/OV534 USB Camera Driver");
MODULE_LICENSE("GPL");

/* specific webcam descriptor */
struct sd {
	struct gspca_dev gspca_dev;	/* !! must be the first item */
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	__u32 last_pts;
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	u16 last_fid;
	u8 frame_rate;
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	u8 brightness;
	u8 contrast;
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	u8 gain;
	u8 exposure;
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	u8 hue;
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	u8 autogain;
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	u8 awb;
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	s8 sharpness;
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	u8 hflip;
	u8 vflip;
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};

/* V4L2 controls supported by the driver */
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static int sd_setgain(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getgain(struct gspca_dev *gspca_dev, __s32 *val);
static int sd_setexposure(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getexposure(struct gspca_dev *gspca_dev, __s32 *val);
static int sd_setautogain(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getautogain(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_sethflip(struct gspca_dev *gspca_dev, __s32 val);
static int sd_gethflip(struct gspca_dev *gspca_dev, __s32 *val);
static int sd_setvflip(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getvflip(struct gspca_dev *gspca_dev, __s32 *val);
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static int sd_sethue(struct gspca_dev *gspca_dev, __s32 val);
static int sd_gethue(struct gspca_dev *gspca_dev, __s32 *val);
static int sd_setawb(struct gspca_dev *gspca_dev, __s32 val);
static int sd_getawb(struct gspca_dev *gspca_dev, __s32 *val);
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);
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static const struct ctrl sd_ctrls[] = {
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    {							/* 0 */
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	{
		.id      = V4L2_CID_BRIGHTNESS,
		.type    = V4L2_CTRL_TYPE_INTEGER,
		.name    = "Brightness",
		.minimum = 0,
		.maximum = 255,
		.step    = 1,
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#define BRIGHTNESS_DEF 20
		.default_value = BRIGHTNESS_DEF,
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	},
	.set = sd_setbrightness,
	.get = sd_getbrightness,
    },
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    {							/* 1 */
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	{
		.id      = V4L2_CID_CONTRAST,
		.type    = V4L2_CTRL_TYPE_INTEGER,
		.name    = "Contrast",
		.minimum = 0,
		.maximum = 255,
		.step    = 1,
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#define CONTRAST_DEF 37
		.default_value = CONTRAST_DEF,
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	},
	.set = sd_setcontrast,
	.get = sd_getcontrast,
    },
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    {							/* 2 */
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	{
	    .id      = V4L2_CID_GAIN,
	    .type    = V4L2_CTRL_TYPE_INTEGER,
	    .name    = "Main Gain",
	    .minimum = 0,
	    .maximum = 63,
	    .step    = 1,
#define GAIN_DEF 20
	    .default_value = GAIN_DEF,
	},
	.set = sd_setgain,
	.get = sd_getgain,
    },
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    {							/* 3 */
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	{
	    .id      = V4L2_CID_EXPOSURE,
	    .type    = V4L2_CTRL_TYPE_INTEGER,
	    .name    = "Exposure",
	    .minimum = 0,
	    .maximum = 255,
	    .step    = 1,
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#define EXPO_DEF 120
	    .default_value = EXPO_DEF,
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	},
	.set = sd_setexposure,
	.get = sd_getexposure,
    },
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    {							/* 4 */
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	{
		.id      = V4L2_CID_HUE,
		.type    = V4L2_CTRL_TYPE_INTEGER,
		.name    = "Hue",
		.minimum = 0,
		.maximum = 255,
		.step    = 1,
#define HUE_DEF 143
		.default_value = HUE_DEF,
	},
	.set = sd_sethue,
	.get = sd_gethue,
    },
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    {							/* 5 */
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	{
	    .id      = V4L2_CID_AUTOGAIN,
	    .type    = V4L2_CTRL_TYPE_BOOLEAN,
	    .name    = "Autogain",
	    .minimum = 0,
	    .maximum = 1,
	    .step    = 1,
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#define AUTOGAIN_DEF 0
	    .default_value = AUTOGAIN_DEF,
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	},
	.set = sd_setautogain,
	.get = sd_getautogain,
    },
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#define AWB_IDX 6
    {							/* 6 */
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	{
		.id      = V4L2_CID_AUTO_WHITE_BALANCE,
		.type    = V4L2_CTRL_TYPE_BOOLEAN,
		.name    = "Auto White Balance",
		.minimum = 0,
		.maximum = 1,
		.step    = 1,
#define AWB_DEF 0
		.default_value = AWB_DEF,
	},
	.set = sd_setawb,
	.get = sd_getawb,
    },
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    {							/* 7 */
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	{
	    .id      = V4L2_CID_SHARPNESS,
	    .type    = V4L2_CTRL_TYPE_INTEGER,
	    .name    = "Sharpness",
	    .minimum = 0,
	    .maximum = 63,
	    .step    = 1,
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#define SHARPNESS_DEF 0
	    .default_value = SHARPNESS_DEF,
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	},
	.set = sd_setsharpness,
	.get = sd_getsharpness,
    },
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    {							/* 8 */
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	{
	    .id      = V4L2_CID_HFLIP,
	    .type    = V4L2_CTRL_TYPE_BOOLEAN,
	    .name    = "HFlip",
	    .minimum = 0,
	    .maximum = 1,
	    .step    = 1,
#define HFLIP_DEF 0
	    .default_value = HFLIP_DEF,
	},
	.set = sd_sethflip,
	.get = sd_gethflip,
    },
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    {							/* 9 */
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	{
	    .id      = V4L2_CID_VFLIP,
	    .type    = V4L2_CTRL_TYPE_BOOLEAN,
	    .name    = "VFlip",
	    .minimum = 0,
	    .maximum = 1,
	    .step    = 1,
#define VFLIP_DEF 0
	    .default_value = VFLIP_DEF,
	},
	.set = sd_setvflip,
	.get = sd_getvflip,
    },
};
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static const struct v4l2_pix_format ov772x_mode[] = {
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	{320, 240, V4L2_PIX_FMT_YUYV, V4L2_FIELD_NONE,
	 .bytesperline = 320 * 2,
	 .sizeimage = 320 * 240 * 2,
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	 .colorspace = V4L2_COLORSPACE_SRGB,
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	 .priv = 1},
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	{640, 480, V4L2_PIX_FMT_YUYV, V4L2_FIELD_NONE,
	 .bytesperline = 640 * 2,
	 .sizeimage = 640 * 480 * 2,
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	 .colorspace = V4L2_COLORSPACE_SRGB,
	 .priv = 0},
};

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static const u8 qvga_rates[] = {125, 100, 75, 60, 50, 40, 30};
static const u8 vga_rates[] = {60, 50, 40, 30, 15};

static const struct framerates ov772x_framerates[] = {
	{ /* 320x240 */
		.rates = qvga_rates,
		.nrates = ARRAY_SIZE(qvga_rates),
	},
	{ /* 640x480 */
		.rates = vga_rates,
		.nrates = ARRAY_SIZE(vga_rates),
	},
};

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static const u8 bridge_init[][2] = {
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	{ 0xc2, 0x0c },
	{ 0x88, 0xf8 },
	{ 0xc3, 0x69 },
	{ 0x89, 0xff },
	{ 0x76, 0x03 },
	{ 0x92, 0x01 },
	{ 0x93, 0x18 },
	{ 0x94, 0x10 },
	{ 0x95, 0x10 },
	{ 0xe2, 0x00 },
	{ 0xe7, 0x3e },

	{ 0x96, 0x00 },

	{ 0x97, 0x20 },
	{ 0x97, 0x20 },
	{ 0x97, 0x20 },
	{ 0x97, 0x0a },
	{ 0x97, 0x3f },
	{ 0x97, 0x4a },
	{ 0x97, 0x20 },
	{ 0x97, 0x15 },
	{ 0x97, 0x0b },

	{ 0x8e, 0x40 },
	{ 0x1f, 0x81 },
	{ 0x34, 0x05 },
	{ 0xe3, 0x04 },
	{ 0x88, 0x00 },
	{ 0x89, 0x00 },
	{ 0x76, 0x00 },
	{ 0xe7, 0x2e },
	{ 0x31, 0xf9 },
	{ 0x25, 0x42 },
	{ 0x21, 0xf0 },

	{ 0x1c, 0x00 },
	{ 0x1d, 0x40 },
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	{ 0x1d, 0x02 }, /* payload size 0x0200 * 4 = 2048 bytes */
	{ 0x1d, 0x00 }, /* payload size */
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	{ 0x1d, 0x02 }, /* frame size 0x025800 * 4 = 614400 */
	{ 0x1d, 0x58 }, /* frame size */
	{ 0x1d, 0x00 }, /* frame size */
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	{ 0x1c, 0x0a },
	{ 0x1d, 0x08 }, /* turn on UVC header */
	{ 0x1d, 0x0e }, /* .. */

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	{ 0x8d, 0x1c },
	{ 0x8e, 0x80 },
	{ 0xe5, 0x04 },

	{ 0xc0, 0x50 },
	{ 0xc1, 0x3c },
	{ 0xc2, 0x0c },
};
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static const u8 sensor_init[][2] = {
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	{ 0x12, 0x80 },
	{ 0x11, 0x01 },
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/*fixme: better have a delay?*/
	{ 0x11, 0x01 },
	{ 0x11, 0x01 },
	{ 0x11, 0x01 },
	{ 0x11, 0x01 },
	{ 0x11, 0x01 },
	{ 0x11, 0x01 },
	{ 0x11, 0x01 },
	{ 0x11, 0x01 },
	{ 0x11, 0x01 },
	{ 0x11, 0x01 },
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	{ 0x3d, 0x03 },
	{ 0x17, 0x26 },
	{ 0x18, 0xa0 },
	{ 0x19, 0x07 },
	{ 0x1a, 0xf0 },
	{ 0x32, 0x00 },
	{ 0x29, 0xa0 },
	{ 0x2c, 0xf0 },
	{ 0x65, 0x20 },
	{ 0x11, 0x01 },
	{ 0x42, 0x7f },
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	{ 0x63, 0xaa },		/* AWB - was e0 */
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	{ 0x64, 0xff },
	{ 0x66, 0x00 },
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	{ 0x13, 0xf0 },		/* com8 */
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	{ 0x0d, 0x41 },
	{ 0x0f, 0xc5 },
	{ 0x14, 0x11 },

	{ 0x22, 0x7f },
	{ 0x23, 0x03 },
	{ 0x24, 0x40 },
	{ 0x25, 0x30 },
	{ 0x26, 0xa1 },
	{ 0x2a, 0x00 },
	{ 0x2b, 0x00 },
	{ 0x6b, 0xaa },
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	{ 0x13, 0xff },		/* AWB */
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	{ 0x90, 0x05 },
	{ 0x91, 0x01 },
	{ 0x92, 0x03 },
	{ 0x93, 0x00 },
	{ 0x94, 0x60 },
	{ 0x95, 0x3c },
	{ 0x96, 0x24 },
	{ 0x97, 0x1e },
	{ 0x98, 0x62 },
	{ 0x99, 0x80 },
	{ 0x9a, 0x1e },
	{ 0x9b, 0x08 },
	{ 0x9c, 0x20 },
	{ 0x9e, 0x81 },

	{ 0xa6, 0x04 },
	{ 0x7e, 0x0c },
	{ 0x7f, 0x16 },
	{ 0x80, 0x2a },
	{ 0x81, 0x4e },
	{ 0x82, 0x61 },
	{ 0x83, 0x6f },
	{ 0x84, 0x7b },
	{ 0x85, 0x86 },
	{ 0x86, 0x8e },
	{ 0x87, 0x97 },
	{ 0x88, 0xa4 },
	{ 0x89, 0xaf },
	{ 0x8a, 0xc5 },
	{ 0x8b, 0xd7 },
	{ 0x8c, 0xe8 },
	{ 0x8d, 0x20 },

	{ 0x0c, 0x90 },

	{ 0x2b, 0x00 },
	{ 0x22, 0x7f },
	{ 0x23, 0x03 },
	{ 0x11, 0x01 },
	{ 0x0c, 0xd0 },
	{ 0x64, 0xff },
	{ 0x0d, 0x41 },

	{ 0x14, 0x41 },
	{ 0x0e, 0xcd },
	{ 0xac, 0xbf },
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	{ 0x8e, 0x00 },		/* De-noise threshold */
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	{ 0x0c, 0xd0 }
};
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static const u8 bridge_start_vga[][2] = {
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	{0x1c, 0x00},
	{0x1d, 0x40},
	{0x1d, 0x02},
	{0x1d, 0x00},
	{0x1d, 0x02},
	{0x1d, 0x58},
	{0x1d, 0x00},
	{0xc0, 0x50},
	{0xc1, 0x3c},
};
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static const u8 sensor_start_vga[][2] = {
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	{0x12, 0x00},
	{0x17, 0x26},
	{0x18, 0xa0},
	{0x19, 0x07},
	{0x1a, 0xf0},
	{0x29, 0xa0},
	{0x2c, 0xf0},
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	{0x65, 0x20},
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};
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static const u8 bridge_start_qvga[][2] = {
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	{0x1c, 0x00},
	{0x1d, 0x40},
	{0x1d, 0x02},
	{0x1d, 0x00},
	{0x1d, 0x01},
	{0x1d, 0x4b},
	{0x1d, 0x00},
	{0xc0, 0x28},
	{0xc1, 0x1e},
};
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static const u8 sensor_start_qvga[][2] = {
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	{0x12, 0x40},
	{0x17, 0x3f},
	{0x18, 0x50},
	{0x19, 0x03},
	{0x1a, 0x78},
	{0x29, 0x50},
	{0x2c, 0x78},
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	{0x65, 0x2f},
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};
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static void ov534_reg_write(struct gspca_dev *gspca_dev, u16 reg, u8 val)
{
	struct usb_device *udev = gspca_dev->dev;
	int ret;

	PDEBUG(D_USBO, "reg=0x%04x, val=0%02x", reg, val);
	gspca_dev->usb_buf[0] = val;
	ret = usb_control_msg(udev,
			      usb_sndctrlpipe(udev, 0),
			      0x01,
			      USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
			      0x00, reg, gspca_dev->usb_buf, 1, CTRL_TIMEOUT);
	if (ret < 0)
		PDEBUG(D_ERR, "write failed");
}

static u8 ov534_reg_read(struct gspca_dev *gspca_dev, u16 reg)
{
	struct usb_device *udev = gspca_dev->dev;
	int ret;

	ret = usb_control_msg(udev,
			      usb_rcvctrlpipe(udev, 0),
			      0x01,
			      USB_DIR_IN | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
			      0x00, reg, gspca_dev->usb_buf, 1, CTRL_TIMEOUT);
	PDEBUG(D_USBI, "reg=0x%04x, data=0x%02x", reg, gspca_dev->usb_buf[0]);
	if (ret < 0)
		PDEBUG(D_ERR, "read failed");
	return gspca_dev->usb_buf[0];
}

/* Two bits control LED: 0x21 bit 7 and 0x23 bit 7.
 * (direction and output)? */
static void ov534_set_led(struct gspca_dev *gspca_dev, int status)
{
	u8 data;

	PDEBUG(D_CONF, "led status: %d", status);

	data = ov534_reg_read(gspca_dev, 0x21);
	data |= 0x80;
	ov534_reg_write(gspca_dev, 0x21, data);

	data = ov534_reg_read(gspca_dev, 0x23);
	if (status)
		data |= 0x80;
	else
		data &= ~0x80;

	ov534_reg_write(gspca_dev, 0x23, data);

	if (!status) {
		data = ov534_reg_read(gspca_dev, 0x21);
		data &= ~0x80;
		ov534_reg_write(gspca_dev, 0x21, data);
	}
}

static int sccb_check_status(struct gspca_dev *gspca_dev)
{
	u8 data;
	int i;

	for (i = 0; i < 5; i++) {
		data = ov534_reg_read(gspca_dev, OV534_REG_STATUS);

		switch (data) {
		case 0x00:
			return 1;
		case 0x04:
			return 0;
		case 0x03:
			break;
		default:
			PDEBUG(D_ERR, "sccb status 0x%02x, attempt %d/5",
			       data, i + 1);
		}
	}
	return 0;
}

static void sccb_reg_write(struct gspca_dev *gspca_dev, u8 reg, u8 val)
{
	PDEBUG(D_USBO, "reg: 0x%02x, val: 0x%02x", reg, val);
	ov534_reg_write(gspca_dev, OV534_REG_SUBADDR, reg);
	ov534_reg_write(gspca_dev, OV534_REG_WRITE, val);
	ov534_reg_write(gspca_dev, OV534_REG_OPERATION, OV534_OP_WRITE_3);

	if (!sccb_check_status(gspca_dev))
		PDEBUG(D_ERR, "sccb_reg_write failed");
}

static u8 sccb_reg_read(struct gspca_dev *gspca_dev, u16 reg)
{
	ov534_reg_write(gspca_dev, OV534_REG_SUBADDR, reg);
	ov534_reg_write(gspca_dev, OV534_REG_OPERATION, OV534_OP_WRITE_2);
	if (!sccb_check_status(gspca_dev))
		PDEBUG(D_ERR, "sccb_reg_read failed 1");

	ov534_reg_write(gspca_dev, OV534_REG_OPERATION, OV534_OP_READ_2);
	if (!sccb_check_status(gspca_dev))
		PDEBUG(D_ERR, "sccb_reg_read failed 2");

	return ov534_reg_read(gspca_dev, OV534_REG_READ);
}

/* output a bridge sequence (reg - val) */
static void reg_w_array(struct gspca_dev *gspca_dev,
			const u8 (*data)[2], int len)
{
	while (--len >= 0) {
		ov534_reg_write(gspca_dev, (*data)[0], (*data)[1]);
		data++;
	}
}

/* output a sensor sequence (reg - val) */
static void sccb_w_array(struct gspca_dev *gspca_dev,
			const u8 (*data)[2], int len)
{
	while (--len >= 0) {
		if ((*data)[0] != 0xff) {
			sccb_reg_write(gspca_dev, (*data)[0], (*data)[1]);
		} else {
			sccb_reg_read(gspca_dev, (*data)[1]);
			sccb_reg_write(gspca_dev, 0xff, 0x00);
		}
		data++;
	}
}

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/* ov772x specific controls */
static void set_frame_rate(struct gspca_dev *gspca_dev)
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{
	struct sd *sd = (struct sd *) gspca_dev;
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	int i;
	struct rate_s {
		u8 fps;
		u8 r11;
		u8 r0d;
		u8 re5;
	};
	const struct rate_s *r;
	static const struct rate_s rate_0[] = {	/* 640x480 */
		{60, 0x01, 0xc1, 0x04},
		{50, 0x01, 0x41, 0x02},
		{40, 0x02, 0xc1, 0x04},
		{30, 0x04, 0x81, 0x02},
		{15, 0x03, 0x41, 0x04},
	};
	static const struct rate_s rate_1[] = {	/* 320x240 */
		{125, 0x02, 0x81, 0x02},
		{100, 0x02, 0xc1, 0x04},
		{75, 0x03, 0xc1, 0x04},
		{60, 0x04, 0xc1, 0x04},
		{50, 0x02, 0x41, 0x04},
		{40, 0x03, 0x41, 0x04},
		{30, 0x04, 0x41, 0x04},
	};

	if (gspca_dev->cam.cam_mode[gspca_dev->curr_mode].priv == 0) {
		r = rate_0;
		i = ARRAY_SIZE(rate_0);
	} else {
		r = rate_1;
		i = ARRAY_SIZE(rate_1);
	}
	while (--i > 0) {
		if (sd->frame_rate >= r->fps)
			break;
		r++;
	}

	sccb_reg_write(gspca_dev, 0x11, r->r11);
	sccb_reg_write(gspca_dev, 0x0d, r->r0d);
	ov534_reg_write(gspca_dev, 0xe5, r->re5);

	PDEBUG(D_PROBE, "frame_rate: %d", r->fps);
}

640
static void setbrightness(struct gspca_dev *gspca_dev)
641 642 643 644 645 646
{
	struct sd *sd = (struct sd *) gspca_dev;

	sccb_reg_write(gspca_dev, 0x9B, sd->brightness);
}

647
static void setcontrast(struct gspca_dev *gspca_dev)
648 649 650 651 652 653
{
	struct sd *sd = (struct sd *) gspca_dev;

	sccb_reg_write(gspca_dev, 0x9C, sd->contrast);
}

654 655 656 657
static void setgain(struct gspca_dev *gspca_dev)
{
	struct sd *sd = (struct sd *) gspca_dev;
	u8 val;
658

659 660 661 662
	val = sd->gain;
	switch (val & 0x30) {
	case 0x00:
		val &= 0x0f;
663
		break;
664 665 666
	case 0x10:
		val &= 0x0f;
		val |= 0x30;
667
		break;
668 669 670
	case 0x20:
		val &= 0x0f;
		val |= 0x70;
671
		break;
672 673 674 675
	default:
/*	case 0x30: */
		val &= 0x0f;
		val |= 0xf0;
676 677
		break;
	}
678 679 680
	sccb_reg_write(gspca_dev, 0x00, val);
}

681
static void setexposure(struct gspca_dev *gspca_dev)
682 683 684 685 686 687 688 689 690
{
	struct sd *sd = (struct sd *) gspca_dev;
	u8 val;

	val = sd->exposure;
	sccb_reg_write(gspca_dev, 0x08, val >> 7);
	sccb_reg_write(gspca_dev, 0x10, val << 1);
}

691 692 693 694 695 696 697
static void sethue(struct gspca_dev *gspca_dev)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sccb_reg_write(gspca_dev, 0x01, sd->hue);
}

698
static void setautogain(struct gspca_dev *gspca_dev)
699 700 701 702 703 704 705 706 707 708 709 710 711 712
{
	struct sd *sd = (struct sd *) gspca_dev;

	if (sd->autogain) {
		sccb_reg_write(gspca_dev, 0x13, 0xf7); /* AGC,AEC,AWB ON */
		sccb_reg_write(gspca_dev, 0x64,
				sccb_reg_read(gspca_dev, 0x64) | 0x03);
	} else {
		sccb_reg_write(gspca_dev, 0x13, 0xf0); /* AGC,AEC,AWB OFF */
		sccb_reg_write(gspca_dev, 0x64,
				sccb_reg_read(gspca_dev, 0x64) & 0xfc);
	}
}

713 714 715 716 717 718 719 720 721 722
static void setawb(struct gspca_dev *gspca_dev)
{
	struct sd *sd = (struct sd *) gspca_dev;

	if (sd->awb)
		sccb_reg_write(gspca_dev, 0x63, 0xe0);	/* AWB on */
	else
		sccb_reg_write(gspca_dev, 0x63, 0xaa);	/* AWB off */
}

723
static void setsharpness(struct gspca_dev *gspca_dev)
724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754
{
	struct sd *sd = (struct sd *) gspca_dev;
	u8 val;

	val = sd->sharpness;
	sccb_reg_write(gspca_dev, 0x91, val);	/* vga noise */
	sccb_reg_write(gspca_dev, 0x8e, val);	/* qvga noise */
}

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

	if (sd->hflip == 0)
		sccb_reg_write(gspca_dev, 0x0c,
				sccb_reg_read(gspca_dev, 0x0c) | 0x40);
	else
		sccb_reg_write(gspca_dev, 0x0c,
				sccb_reg_read(gspca_dev, 0x0c) & 0xbf);
}

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

	if (sd->vflip == 0)
		sccb_reg_write(gspca_dev, 0x0c,
				sccb_reg_read(gspca_dev, 0x0c) | 0x80);
	else
		sccb_reg_write(gspca_dev, 0x0c,
				sccb_reg_read(gspca_dev, 0x0c) & 0x7f);
755
}
756 757 758 759 760

/* this function is called at probe time */
static int sd_config(struct gspca_dev *gspca_dev,
		     const struct usb_device_id *id)
{
761
	struct sd *sd = (struct sd *) gspca_dev;
762 763 764 765
	struct cam *cam;

	cam = &gspca_dev->cam;

766 767
	cam->cam_mode = ov772x_mode;
	cam->nmodes = ARRAY_SIZE(ov772x_mode);
768
	cam->mode_framerates = ov772x_framerates;
769

770 771 772
	cam->bulk = 1;
	cam->bulk_size = 16384;
	cam->bulk_nurbs = 2;
773

774
	sd->frame_rate = 30;
775

776 777 778 779 780 781 782
	sd->brightness = BRIGHTNESS_DEF;
	sd->contrast = CONTRAST_DEF;
	sd->gain = GAIN_DEF;
	sd->exposure = EXPO_DEF;
	sd->hue = HUE_DEF;
#if AUTOGAIN_DEF != 0
	sd->autogain = AUTOGAIN_DEF;
783
#else
784
	gspca_dev->ctrl_inac |= (1 << AWB_IDX);
785 786
#endif
#if AWB_DEF != 0
787
	sd->awb = AWB_DEF
788
#endif
789 790
#if SHARPNESS_DEF != 0
	sd->sharpness = SHARPNESS_DEF;
791
#endif
792
#if HFLIP_DEF != 0
793
	sd->hflip = HFLIP_DEF;
794 795
#endif
#if VFLIP_DEF != 0
796
	sd->vflip = VFLIP_DEF;
797
#endif
798

799 800 801 802 803 804
	return 0;
}

/* this function is called at probe and resume time */
static int sd_init(struct gspca_dev *gspca_dev)
{
805 806 807 808 809 810 811 812
	u16 sensor_id;

	/* reset bridge */
	ov534_reg_write(gspca_dev, 0xe7, 0x3a);
	ov534_reg_write(gspca_dev, 0xe0, 0x08);
	msleep(100);

	/* initialize the sensor address */
813
	ov534_reg_write(gspca_dev, OV534_REG_ADDRESS, 0x42);
814 815 816 817 818 819 820 821 822 823 824 825 826

	/* reset sensor */
	sccb_reg_write(gspca_dev, 0x12, 0x80);
	msleep(10);

	/* probe the sensor */
	sccb_reg_read(gspca_dev, 0x0a);
	sensor_id = sccb_reg_read(gspca_dev, 0x0a) << 8;
	sccb_reg_read(gspca_dev, 0x0b);
	sensor_id |= sccb_reg_read(gspca_dev, 0x0b);
	PDEBUG(D_PROBE, "Sensor ID: %04x", sensor_id);

	/* initialize */
827 828 829 830 831 832 833 834
	reg_w_array(gspca_dev, bridge_init,
			ARRAY_SIZE(bridge_init));
	ov534_set_led(gspca_dev, 1);
	sccb_w_array(gspca_dev, sensor_init,
			ARRAY_SIZE(sensor_init));
	ov534_reg_write(gspca_dev, 0xe0, 0x09);
	ov534_set_led(gspca_dev, 0);
	set_frame_rate(gspca_dev);
835 836 837 838

	return 0;
}

839
static int sd_start(struct gspca_dev *gspca_dev)
840
{
841
	int mode;
842

843 844
	mode = gspca_dev->cam.cam_mode[gspca_dev->curr_mode].priv;
	if (mode != 0) {	/* 320x240 */
845 846 847 848
		reg_w_array(gspca_dev, bridge_start_qvga,
				ARRAY_SIZE(bridge_start_qvga));
		sccb_w_array(gspca_dev, sensor_start_qvga,
				ARRAY_SIZE(sensor_start_qvga));
849
	} else {		/* 640x480 */
850 851 852 853
		reg_w_array(gspca_dev, bridge_start_vga,
				ARRAY_SIZE(bridge_start_vga));
		sccb_w_array(gspca_dev, sensor_start_vga,
				ARRAY_SIZE(sensor_start_vga));
854
	}
855
	set_frame_rate(gspca_dev);
856

857
	setautogain(gspca_dev);
858
	setawb(gspca_dev);
859
	setgain(gspca_dev);
860
	sethue(gspca_dev);
861 862 863 864
	setexposure(gspca_dev);
	setbrightness(gspca_dev);
	setcontrast(gspca_dev);
	setsharpness(gspca_dev);
865 866 867 868 869
	setvflip(gspca_dev);
	sethflip(gspca_dev);

	ov534_set_led(gspca_dev, 1);
	ov534_reg_write(gspca_dev, 0xe0, 0x00);
870 871 872
	return 0;
}

873
static void sd_stopN(struct gspca_dev *gspca_dev)
874 875 876 877 878
{
	ov534_reg_write(gspca_dev, 0xe0, 0x09);
	ov534_set_led(gspca_dev, 0);
}

879 880 881 882 883 884 885 886 887 888
/* Values for bmHeaderInfo (Video and Still Image Payload Headers, 2.4.3.3) */
#define UVC_STREAM_EOH	(1 << 7)
#define UVC_STREAM_ERR	(1 << 6)
#define UVC_STREAM_STI	(1 << 5)
#define UVC_STREAM_RES	(1 << 4)
#define UVC_STREAM_SCR	(1 << 3)
#define UVC_STREAM_PTS	(1 << 2)
#define UVC_STREAM_EOF	(1 << 1)
#define UVC_STREAM_FID	(1 << 0)

889 890
static void sd_pkt_scan(struct gspca_dev *gspca_dev,
			u8 *data, int len)
891
{
892
	struct sd *sd = (struct sd *) gspca_dev;
893
	__u32 this_pts;
894
	u16 this_fid;
895 896
	int remaining_len = len;

897
	do {
898
		len = min(remaining_len, 2048);
899

900 901 902 903
		/* Payloads are prefixed with a UVC-style header.  We
		   consider a frame to start when the FID toggles, or the PTS
		   changes.  A frame ends when EOF is set, and we've received
		   the correct number of bytes. */
904

905 906 907 908 909
		/* Verify UVC header.  Header length is always 12 */
		if (data[0] != 12 || len < 12) {
			PDEBUG(D_PACK, "bad header");
			goto discard;
		}
910

911 912 913 914 915
		/* Check errors */
		if (data[1] & UVC_STREAM_ERR) {
			PDEBUG(D_PACK, "payload error");
			goto discard;
		}
916

917 918 919
		/* Extract PTS and FID */
		if (!(data[1] & UVC_STREAM_PTS)) {
			PDEBUG(D_PACK, "PTS not present");
920 921
			goto discard;
		}
922 923 924
		this_pts = (data[5] << 24) | (data[4] << 16)
						| (data[3] << 8) | data[2];
		this_fid = (data[1] & UVC_STREAM_FID) ? 1 : 0;
925

926 927
		/* If PTS or FID has changed, start a new frame. */
		if (this_pts != sd->last_pts || this_fid != sd->last_fid) {
928
			if (gspca_dev->last_packet_type == INTER_PACKET)
929 930
				gspca_frame_add(gspca_dev, LAST_PACKET,
						NULL, 0);
931 932
			sd->last_pts = this_pts;
			sd->last_fid = this_fid;
933
			gspca_frame_add(gspca_dev, FIRST_PACKET,
934 935
					data + 12, len - 12);
		/* If this packet is marked as EOF, end the frame */
936
		} else if (data[1] & UVC_STREAM_EOF) {
937 938
			struct gspca_frame *frame;

939
			sd->last_pts = 0;
940 941 942
			frame = gspca_get_i_frame(gspca_dev);
			if (frame == NULL)
				goto discard;
943
			if (frame->data_end - frame->data + (len - 12) !=
944
			    gspca_dev->width * gspca_dev->height * 2) {
945
				PDEBUG(D_PACK, "wrong sized frame");
946 947
				goto discard;
			}
948 949
			gspca_frame_add(gspca_dev, LAST_PACKET,
					data + 12, len - 12);
950 951 952
		} else {

			/* Add the data from this payload */
953 954
			gspca_frame_add(gspca_dev, INTER_PACKET,
					data + 12, len - 12);
955
		}
956

957 958
		/* Done this payload */
		goto scan_next;
959 960

discard:
961
		/* Discard data until a new frame starts. */
962
		gspca_dev->last_packet_type = DISCARD_PACKET;
963 964 965 966 967

scan_next:
		remaining_len -= len;
		data += len;
	} while (remaining_len > 0);
968 969
}

970
/* controls */
971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993
static int sd_setgain(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->gain = val;
	if (gspca_dev->streaming)
		setgain(gspca_dev);
	return 0;
}

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

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

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

	sd->exposure = val;
994 995
	if (gspca_dev->streaming)
		setexposure(gspca_dev);
996 997 998 999 1000 1001 1002 1003 1004 1005 1006
	return 0;
}

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

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

1007 1008 1009 1010 1011
static int sd_setbrightness(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->brightness = val;
1012 1013
	if (gspca_dev->streaming)
		setbrightness(gspca_dev);
1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029
	return 0;
}

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

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

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

	sd->contrast = val;
1030 1031
	if (gspca_dev->streaming)
		setcontrast(gspca_dev);
1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060
	return 0;
}

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

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

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

	sd->hue = val;
	if (gspca_dev->streaming)
		sethue(gspca_dev);
	return 0;
}

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

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

1061 1062 1063 1064 1065
static int sd_setautogain(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->autogain = val;
1066

1067
	if (gspca_dev->streaming) {
1068 1069 1070 1071 1072 1073 1074 1075

		/* the auto white balance control works only
		 * when auto gain is set */
		if (val)
			gspca_dev->ctrl_inac &= ~(1 << AWB_IDX);
		else
			gspca_dev->ctrl_inac |= (1 << AWB_IDX);
		setautogain(gspca_dev);
1076
	}
1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087
	return 0;
}

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

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

1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105
static int sd_setawb(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->awb = val;
	if (gspca_dev->streaming)
		setawb(gspca_dev);
	return 0;
}

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

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

1106 1107 1108 1109 1110
static int sd_setsharpness(struct gspca_dev *gspca_dev, __s32 val)
{
	struct sd *sd = (struct sd *) gspca_dev;

	sd->sharpness = val;
1111 1112
	if (gspca_dev->streaming)
		setsharpness(gspca_dev);
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
	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;
}

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

	sd->hflip = val;
	if (gspca_dev->streaming)
		sethflip(gspca_dev);
	return 0;
}

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

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

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

	sd->vflip = val;
	if (gspca_dev->streaming)
		setvflip(gspca_dev);
	return 0;
}

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

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

1160
/* get stream parameters (framerate) */
1161 1162
static int sd_get_streamparm(struct gspca_dev *gspca_dev,
			     struct v4l2_streamparm *parm)
1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178
{
	struct v4l2_captureparm *cp = &parm->parm.capture;
	struct v4l2_fract *tpf = &cp->timeperframe;
	struct sd *sd = (struct sd *) gspca_dev;

	if (parm->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
		return -EINVAL;

	cp->capability |= V4L2_CAP_TIMEPERFRAME;
	tpf->numerator = 1;
	tpf->denominator = sd->frame_rate;

	return 0;
}

/* set stream parameters (framerate) */
1179 1180
static int sd_set_streamparm(struct gspca_dev *gspca_dev,
			     struct v4l2_streamparm *parm)
1181 1182 1183 1184 1185 1186 1187 1188 1189 1190
{
	struct v4l2_captureparm *cp = &parm->parm.capture;
	struct v4l2_fract *tpf = &cp->timeperframe;
	struct sd *sd = (struct sd *) gspca_dev;

	if (parm->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
		return -EINVAL;

	/* Set requested framerate */
	sd->frame_rate = tpf->denominator / tpf->numerator;
1191
	if (gspca_dev->streaming)
1192
		set_frame_rate(gspca_dev);
1193 1194 1195 1196 1197 1198 1199 1200

	/* Return the actual framerate */
	tpf->numerator = 1;
	tpf->denominator = sd->frame_rate;

	return 0;
}

1201
/* sub-driver description */
1202
static const struct sd_desc sd_desc = {
1203
	.name     = MODULE_NAME,
1204 1205
	.ctrls    = sd_ctrls,
	.nctrls   = ARRAY_SIZE(sd_ctrls),
1206 1207
	.config   = sd_config,
	.init     = sd_init,
1208 1209
	.start    = sd_start,
	.stopN    = sd_stopN,
1210 1211 1212 1213 1214
	.pkt_scan = sd_pkt_scan,
	.get_streamparm = sd_get_streamparm,
	.set_streamparm = sd_set_streamparm,
};

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/* -- module initialisation -- */
static const __devinitdata struct usb_device_id device_table[] = {
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	{USB_DEVICE(0x1415, 0x2000)},
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	{}
};

MODULE_DEVICE_TABLE(usb, device_table);

/* -- device connect -- */
static int sd_probe(struct usb_interface *intf, const struct usb_device_id *id)
{
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	return gspca_dev_probe(intf, id, &sd_desc, sizeof(struct sd),
1227
				THIS_MODULE);
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}

static struct usb_driver sd_driver = {
	.name       = MODULE_NAME,
	.id_table   = device_table,
	.probe      = sd_probe,
	.disconnect = gspca_disconnect,
#ifdef CONFIG_PM
	.suspend    = gspca_suspend,
	.resume     = gspca_resume,
#endif
};

/* -- module insert / remove -- */
static int __init sd_mod_init(void)
{
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	int ret;
1245

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	ret = usb_register(&sd_driver);
	if (ret < 0)
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		return ret;
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	PDEBUG(D_PROBE, "registered");
	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);