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/*
* 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>
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# include <linux/module.h>
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# include <media/soc_camera.h>
# include <media/soc_mediabus.h>
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# include <media/v4l2-subdev.h>
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# include <media/v4l2-chip-ident.h>
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# include <media/v4l2-ctrls.h>
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/*
* mt9m001 i2c address 0x5d
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* The platform has to define ctruct i2c_board_info objects and link to them
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* from struct soc_camera_link
*/
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/* mt9m001 selected register addresses */
# define MT9M001_CHIP_VERSION 0x00
# define MT9M001_ROW_START 0x01
# define MT9M001_COLUMN_START 0x02
# define MT9M001_WINDOW_HEIGHT 0x03
# define MT9M001_WINDOW_WIDTH 0x04
# define MT9M001_HORIZONTAL_BLANKING 0x05
# define MT9M001_VERTICAL_BLANKING 0x06
# define MT9M001_OUTPUT_CONTROL 0x07
# define MT9M001_SHUTTER_WIDTH 0x09
# define MT9M001_FRAME_RESTART 0x0b
# define MT9M001_SHUTTER_DELAY 0x0c
# define MT9M001_RESET 0x0d
# define MT9M001_READ_OPTIONS1 0x1e
# define MT9M001_READ_OPTIONS2 0x20
# define MT9M001_GLOBAL_GAIN 0x35
# define MT9M001_CHIP_ENABLE 0xF1
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# define MT9M001_MAX_WIDTH 1280
# define MT9M001_MAX_HEIGHT 1024
# define MT9M001_MIN_WIDTH 48
# define MT9M001_MIN_HEIGHT 32
# define MT9M001_COLUMN_SKIP 20
# define MT9M001_ROW_SKIP 12
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/* MT9M001 has only one fixed colorspace per pixelcode */
struct mt9m001_datafmt {
enum v4l2_mbus_pixelcode code ;
enum v4l2_colorspace colorspace ;
} ;
/* Find a data format by a pixel code in an array */
static const struct mt9m001_datafmt * mt9m001_find_datafmt (
enum v4l2_mbus_pixelcode code , const struct mt9m001_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 mt9m001_datafmt mt9m001_colour_fmts [ ] = {
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/*
* Order important : first natively supported ,
* second supported with a GPIO extender
*/
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{ V4L2_MBUS_FMT_SBGGR10_1X10 , V4L2_COLORSPACE_SRGB } ,
{ V4L2_MBUS_FMT_SBGGR8_1X8 , V4L2_COLORSPACE_SRGB } ,
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} ;
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static const struct mt9m001_datafmt mt9m001_monochrome_fmts [ ] = {
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/* Order important - see above */
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{ V4L2_MBUS_FMT_Y10_1X10 , V4L2_COLORSPACE_JPEG } ,
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{ V4L2_MBUS_FMT_Y8_1X8 , V4L2_COLORSPACE_JPEG } ,
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} ;
struct mt9m001 {
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struct v4l2_subdev subdev ;
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struct v4l2_ctrl_handler hdl ;
struct {
/* exposure/auto-exposure cluster */
struct v4l2_ctrl * autoexposure ;
struct v4l2_ctrl * exposure ;
} ;
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struct v4l2_rect rect ; /* Sensor window */
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const struct mt9m001_datafmt * fmt ;
const struct mt9m001_datafmt * fmts ;
int num_fmts ;
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int model ; /* V4L2_IDENT_MT9M001* codes from v4l2-chip-ident.h */
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unsigned int total_h ;
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unsigned short y_skip_top ; /* Lines to skip at the top */
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} ;
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static struct mt9m001 * to_mt9m001 ( const struct i2c_client * client )
{
return container_of ( i2c_get_clientdata ( client ) , struct mt9m001 , subdev ) ;
}
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static int reg_read ( struct i2c_client * client , const u8 reg )
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{
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return i2c_smbus_read_word_swapped ( client , reg ) ;
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}
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static int reg_write ( struct i2c_client * client , const u8 reg ,
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const u16 data )
{
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return i2c_smbus_write_word_swapped ( client , reg , data ) ;
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}
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static int reg_set ( struct i2c_client * client , const u8 reg ,
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const u16 data )
{
int ret ;
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ret = reg_read ( client , reg ) ;
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if ( ret < 0 )
return ret ;
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return reg_write ( client , reg , ret | data ) ;
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}
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static int reg_clear ( struct i2c_client * client , const u8 reg ,
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const u16 data )
{
int ret ;
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ret = reg_read ( client , reg ) ;
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if ( ret < 0 )
return ret ;
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return reg_write ( client , reg , ret & ~ data ) ;
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}
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static int mt9m001_init ( struct i2c_client * client )
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{
int ret ;
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dev_dbg ( & client - > dev , " %s \n " , __func__ ) ;
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/*
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* We don ' t know , whether platform provides reset , issue a soft reset
* too . This returns all registers to their default values .
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*/
ret = reg_write ( client , MT9M001_RESET , 1 ) ;
if ( ! ret )
ret = reg_write ( client , MT9M001_RESET , 0 ) ;
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/* Disable chip, synchronous option update */
if ( ! ret )
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ret = reg_write ( client , MT9M001_OUTPUT_CONTROL , 0 ) ;
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return ret ;
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}
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static int mt9m001_s_stream ( struct v4l2_subdev * sd , int enable )
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{
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struct i2c_client * client = v4l2_get_subdevdata ( sd ) ;
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/* Switch to master "normal" mode or stop sensor readout */
if ( reg_write ( client , MT9M001_OUTPUT_CONTROL , enable ? 2 : 0 ) < 0 )
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return - EIO ;
return 0 ;
}
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static int mt9m001_s_crop ( struct v4l2_subdev * sd , struct v4l2_crop * a )
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{
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struct i2c_client * client = v4l2_get_subdevdata ( sd ) ;
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struct mt9m001 * mt9m001 = to_mt9m001 ( client ) ;
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struct v4l2_rect rect = a - > c ;
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int ret ;
const u16 hblank = 9 , vblank = 25 ;
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if ( mt9m001 - > fmts = = mt9m001_colour_fmts )
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/*
* Bayer format - even number of rows for simplicity ,
* but let the user play with the top row .
*/
rect . height = ALIGN ( rect . height , 2 ) ;
/* Datasheet requirement: see register description */
rect . width = ALIGN ( rect . width , 2 ) ;
rect . left = ALIGN ( rect . left , 2 ) ;
soc_camera_limit_side ( & rect . left , & rect . width ,
MT9M001_COLUMN_SKIP , MT9M001_MIN_WIDTH , MT9M001_MAX_WIDTH ) ;
soc_camera_limit_side ( & rect . top , & rect . height ,
MT9M001_ROW_SKIP , MT9M001_MIN_HEIGHT , MT9M001_MAX_HEIGHT ) ;
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mt9m001 - > total_h = rect . height + mt9m001 - > y_skip_top + vblank ;
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/* Blanking and start values - default... */
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ret = reg_write ( client , MT9M001_HORIZONTAL_BLANKING , hblank ) ;
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if ( ! ret )
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ret = reg_write ( client , MT9M001_VERTICAL_BLANKING , vblank ) ;
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/*
* The caller provides a supported format , as verified per
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* call to . try_mbus_fmt ( )
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*/
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if ( ! ret )
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ret = reg_write ( client , MT9M001_COLUMN_START , rect . left ) ;
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if ( ! ret )
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ret = reg_write ( client , MT9M001_ROW_START , rect . top ) ;
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if ( ! ret )
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ret = reg_write ( client , MT9M001_WINDOW_WIDTH , rect . width - 1 ) ;
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if ( ! ret )
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ret = reg_write ( client , MT9M001_WINDOW_HEIGHT ,
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rect . height + mt9m001 - > y_skip_top - 1 ) ;
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if ( ! ret & & v4l2_ctrl_g_ctrl ( mt9m001 - > autoexposure ) = = V4L2_EXPOSURE_AUTO )
ret = reg_write ( client , MT9M001_SHUTTER_WIDTH , mt9m001 - > total_h ) ;
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if ( ! ret )
mt9m001 - > rect = rect ;
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return ret ;
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}
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static int mt9m001_g_crop ( struct v4l2_subdev * sd , struct v4l2_crop * a )
{
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struct i2c_client * client = v4l2_get_subdevdata ( sd ) ;
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struct mt9m001 * mt9m001 = to_mt9m001 ( client ) ;
a - > c = mt9m001 - > rect ;
a - > type = V4L2_BUF_TYPE_VIDEO_CAPTURE ;
return 0 ;
}
static int mt9m001_cropcap ( struct v4l2_subdev * sd , struct v4l2_cropcap * a )
{
a - > bounds . left = MT9M001_COLUMN_SKIP ;
a - > bounds . top = MT9M001_ROW_SKIP ;
a - > bounds . width = MT9M001_MAX_WIDTH ;
a - > bounds . height = MT9M001_MAX_HEIGHT ;
a - > defrect = a - > bounds ;
a - > type = V4L2_BUF_TYPE_VIDEO_CAPTURE ;
a - > pixelaspect . numerator = 1 ;
a - > pixelaspect . denominator = 1 ;
return 0 ;
}
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static int mt9m001_g_fmt ( struct v4l2_subdev * sd ,
struct v4l2_mbus_framefmt * mf )
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{
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struct i2c_client * client = v4l2_get_subdevdata ( sd ) ;
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struct mt9m001 * mt9m001 = to_mt9m001 ( client ) ;
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mf - > width = mt9m001 - > rect . width ;
mf - > height = mt9m001 - > rect . height ;
mf - > code = mt9m001 - > fmt - > code ;
mf - > colorspace = mt9m001 - > fmt - > colorspace ;
mf - > field = V4L2_FIELD_NONE ;
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return 0 ;
}
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static int mt9m001_s_fmt ( struct v4l2_subdev * sd ,
struct v4l2_mbus_framefmt * mf )
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{
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struct i2c_client * client = v4l2_get_subdevdata ( sd ) ;
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struct mt9m001 * mt9m001 = to_mt9m001 ( client ) ;
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struct v4l2_crop a = {
. c = {
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. left = mt9m001 - > rect . left ,
. top = mt9m001 - > rect . top ,
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. width = mf - > width ,
. height = mf - > height ,
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} ,
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} ;
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int ret ;
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/* No support for scaling so far, just crop. TODO: use skipping */
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ret = mt9m001_s_crop ( sd , & a ) ;
if ( ! ret ) {
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mf - > width = mt9m001 - > rect . width ;
mf - > height = mt9m001 - > rect . height ;
mt9m001 - > fmt = mt9m001_find_datafmt ( mf - > code ,
mt9m001 - > fmts , mt9m001 - > num_fmts ) ;
mf - > colorspace = mt9m001 - > fmt - > colorspace ;
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}
return ret ;
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}
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static int mt9m001_try_fmt ( struct v4l2_subdev * sd ,
struct v4l2_mbus_framefmt * mf )
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{
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struct i2c_client * client = v4l2_get_subdevdata ( sd ) ;
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struct mt9m001 * mt9m001 = to_mt9m001 ( client ) ;
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const struct mt9m001_datafmt * fmt ;
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v4l_bound_align_image ( & mf - > width , MT9M001_MIN_WIDTH ,
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MT9M001_MAX_WIDTH , 1 ,
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& mf - > height , MT9M001_MIN_HEIGHT + mt9m001 - > y_skip_top ,
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MT9M001_MAX_HEIGHT + mt9m001 - > y_skip_top , 0 , 0 ) ;
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if ( mt9m001 - > fmts = = mt9m001_colour_fmts )
mf - > height = ALIGN ( mf - > height - 1 , 2 ) ;
fmt = mt9m001_find_datafmt ( mf - > code , mt9m001 - > fmts ,
mt9m001 - > num_fmts ) ;
if ( ! fmt ) {
fmt = mt9m001 - > fmt ;
mf - > code = fmt - > code ;
}
mf - > colorspace = fmt - > colorspace ;
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return 0 ;
}
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static int mt9m001_g_chip_ident ( struct v4l2_subdev * sd ,
struct v4l2_dbg_chip_ident * id )
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{
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struct i2c_client * client = v4l2_get_subdevdata ( sd ) ;
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struct mt9m001 * mt9m001 = to_mt9m001 ( client ) ;
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if ( id - > match . type ! = V4L2_CHIP_MATCH_I2C_ADDR )
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return - EINVAL ;
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if ( id - > match . addr ! = client - > addr )
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return - ENODEV ;
id - > ident = mt9m001 - > model ;
id - > revision = 0 ;
return 0 ;
}
# ifdef CONFIG_VIDEO_ADV_DEBUG
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static int mt9m001_g_register ( struct v4l2_subdev * sd ,
struct v4l2_dbg_register * reg )
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{
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struct i2c_client * client = v4l2_get_subdevdata ( sd ) ;
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if ( reg - > match . type ! = V4L2_CHIP_MATCH_I2C_ADDR | | reg - > reg > 0xff )
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return - EINVAL ;
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if ( reg - > match . addr ! = client - > addr )
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return - ENODEV ;
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reg - > size = 2 ;
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reg - > val = reg_read ( client , reg - > reg ) ;
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if ( reg - > val > 0xffff )
return - EIO ;
return 0 ;
}
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static int mt9m001_s_register ( struct v4l2_subdev * sd ,
struct v4l2_dbg_register * reg )
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{
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struct i2c_client * client = v4l2_get_subdevdata ( sd ) ;
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if ( reg - > match . type ! = V4L2_CHIP_MATCH_I2C_ADDR | | reg - > reg > 0xff )
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return - EINVAL ;
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if ( reg - > match . addr ! = client - > addr )
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return - ENODEV ;
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if ( reg_write ( client , reg - > reg , reg - > val ) < 0 )
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return - EIO ;
return 0 ;
}
# endif
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static int mt9m001_g_volatile_ctrl ( struct v4l2_ctrl * ctrl )
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{
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struct mt9m001 * mt9m001 = container_of ( ctrl - > handler ,
struct mt9m001 , hdl ) ;
s32 min , max ;
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switch ( ctrl - > id ) {
case V4L2_CID_EXPOSURE_AUTO :
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min = mt9m001 - > exposure - > minimum ;
max = mt9m001 - > exposure - > maximum ;
mt9m001 - > exposure - > val =
( 524 + ( mt9m001 - > total_h - 1 ) * ( max - min ) ) / 1048 + min ;
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break ;
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}
return 0 ;
}
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static int mt9m001_s_ctrl ( struct v4l2_ctrl * ctrl )
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{
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struct mt9m001 * mt9m001 = container_of ( ctrl - > handler ,
struct mt9m001 , hdl ) ;
struct v4l2_subdev * sd = & mt9m001 - > subdev ;
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struct i2c_client * client = v4l2_get_subdevdata ( sd ) ;
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struct v4l2_ctrl * exp = mt9m001 - > exposure ;
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int data ;
switch ( ctrl - > id ) {
case V4L2_CID_VFLIP :
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if ( ctrl - > val )
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data = reg_set ( client , MT9M001_READ_OPTIONS2 , 0x8000 ) ;
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else
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data = reg_clear ( client , MT9M001_READ_OPTIONS2 , 0x8000 ) ;
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if ( data < 0 )
return - EIO ;
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return 0 ;
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case V4L2_CID_GAIN :
/* See Datasheet Table 7, Gain settings. */
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if ( ctrl - > val < = ctrl - > default_value ) {
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/* Pack it into 0..1 step 0.125, register values 0..8 */
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unsigned long range = ctrl - > default_value - ctrl - > minimum ;
data = ( ( ctrl - > val - ctrl - > minimum ) * 8 + range / 2 ) / range ;
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dev_dbg ( & client - > dev , " Setting gain %d \n " , data ) ;
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data = reg_write ( client , MT9M001_GLOBAL_GAIN , data ) ;
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if ( data < 0 )
return - EIO ;
} else {
/* Pack it into 1.125..15 variable step, register values 9..67 */
/* We assume qctrl->maximum - qctrl->default_value - 1 > 0 */
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unsigned long range = ctrl - > maximum - ctrl - > default_value - 1 ;
unsigned long gain = ( ( ctrl - > val - ctrl - > default_value - 1 ) *
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111 + range / 2 ) / range + 9 ;
if ( gain < = 32 )
data = gain ;
else if ( gain < = 64 )
data = ( ( gain - 32 ) * 16 + 16 ) / 32 + 80 ;
else
data = ( ( gain - 64 ) * 7 + 28 ) / 56 + 96 ;
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dev_dbg ( & client - > dev , " Setting gain from %d to %d \n " ,
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reg_read ( client , MT9M001_GLOBAL_GAIN ) , data ) ;
data = reg_write ( client , MT9M001_GLOBAL_GAIN , data ) ;
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if ( data < 0 )
return - EIO ;
}
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return 0 ;
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case V4L2_CID_EXPOSURE_AUTO :
if ( ctrl - > val = = V4L2_EXPOSURE_MANUAL ) {
unsigned long range = exp - > maximum - exp - > minimum ;
unsigned long shutter = ( ( exp - > val - exp - > minimum ) * 1048 +
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range / 2 ) / range + 1 ;
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dev_dbg ( & client - > dev ,
" Setting shutter width from %d to %lu \n " ,
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reg_read ( client , MT9M001_SHUTTER_WIDTH ) , shutter ) ;
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if ( reg_write ( client , MT9M001_SHUTTER_WIDTH , shutter ) < 0 )
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return - EIO ;
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} else {
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const u16 vblank = 25 ;
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mt9m001 - > total_h = mt9m001 - > rect . height +
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mt9m001 - > y_skip_top + vblank ;
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if ( reg_write ( client , MT9M001_SHUTTER_WIDTH , mt9m001 - > total_h ) < 0 )
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return - EIO ;
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}
return 0 ;
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}
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return - EINVAL ;
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}
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/*
* 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
*/
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static int mt9m001_video_probe ( struct soc_camera_link * icl ,
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struct i2c_client * client )
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{
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struct mt9m001 * mt9m001 = to_mt9m001 ( client ) ;
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s32 data ;
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unsigned long flags ;
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int ret ;
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/* Enable the chip */
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data = reg_write ( client , MT9M001_CHIP_ENABLE , 1 ) ;
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dev_dbg ( & client - > dev , " write: %d \n " , data ) ;
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/* Read out the chip version register */
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data = reg_read ( client , MT9M001_CHIP_VERSION ) ;
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/* must be 0x8411 or 0x8421 for colour sensor and 8431 for bw */
switch ( data ) {
case 0x8411 :
case 0x8421 :
mt9m001 - > model = V4L2_IDENT_MT9M001C12ST ;
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mt9m001 - > fmts = mt9m001_colour_fmts ;
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break ;
case 0x8431 :
mt9m001 - > model = V4L2_IDENT_MT9M001C12STM ;
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mt9m001 - > fmts = mt9m001_monochrome_fmts ;
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break ;
default :
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dev_err ( & client - > dev ,
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" No MT9M001 chip detected, register read %x \n " , data ) ;
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return - ENODEV ;
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}
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mt9m001 - > num_fmts = 0 ;
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/*
* This is a 10 bit sensor , so by default we only allow 10 bit .
* The platform may support different bus widths due to
* different routing of the data lines .
*/
if ( icl - > query_bus_param )
flags = icl - > query_bus_param ( icl ) ;
else
flags = SOCAM_DATAWIDTH_10 ;
if ( flags & SOCAM_DATAWIDTH_10 )
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mt9m001 - > num_fmts + + ;
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else
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mt9m001 - > fmts + + ;
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if ( flags & SOCAM_DATAWIDTH_8 )
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mt9m001 - > num_fmts + + ;
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mt9m001 - > fmt = & mt9m001 - > fmts [ 0 ] ;
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dev_info ( & client - > dev , " Detected a MT9M001 chip ID %x (%s) \n " , data ,
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data = = 0x8431 ? " C12STM " : " C12ST " ) ;
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ret = mt9m001_init ( client ) ;
if ( ret < 0 )
dev_err ( & client - > dev , " Failed to initialise the camera \n " ) ;
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/* mt9m001_init() has reset the chip, returning registers to defaults */
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return v4l2_ctrl_handler_setup ( & mt9m001 - > hdl ) ;
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}
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static void mt9m001_video_remove ( struct soc_camera_link * icl )
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{
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if ( icl - > free_bus )
icl - > free_bus ( icl ) ;
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}
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static int mt9m001_g_skip_top_lines ( struct v4l2_subdev * sd , u32 * lines )
{
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struct i2c_client * client = v4l2_get_subdevdata ( sd ) ;
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struct mt9m001 * mt9m001 = to_mt9m001 ( client ) ;
* lines = mt9m001 - > y_skip_top ;
return 0 ;
}
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static const struct v4l2_ctrl_ops mt9m001_ctrl_ops = {
. g_volatile_ctrl = mt9m001_g_volatile_ctrl ,
. s_ctrl = mt9m001_s_ctrl ,
} ;
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static struct v4l2_subdev_core_ops mt9m001_subdev_core_ops = {
. g_chip_ident = mt9m001_g_chip_ident ,
# ifdef CONFIG_VIDEO_ADV_DEBUG
. g_register = mt9m001_g_register ,
. s_register = mt9m001_s_register ,
# endif
} ;
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static int mt9m001_enum_fmt ( struct v4l2_subdev * sd , unsigned int index ,
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enum v4l2_mbus_pixelcode * code )
{
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struct i2c_client * client = v4l2_get_subdevdata ( sd ) ;
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struct mt9m001 * mt9m001 = to_mt9m001 ( client ) ;
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if ( index > = mt9m001 - > num_fmts )
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return - EINVAL ;
* code = mt9m001 - > fmts [ index ] . code ;
return 0 ;
}
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static int mt9m001_g_mbus_config ( struct v4l2_subdev * sd ,
struct v4l2_mbus_config * cfg )
{
struct i2c_client * client = v4l2_get_subdevdata ( sd ) ;
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struct soc_camera_link * icl = soc_camera_i2c_to_link ( client ) ;
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/* MT9M001 has all capture_format parameters fixed */
cfg - > flags = V4L2_MBUS_PCLK_SAMPLE_FALLING |
V4L2_MBUS_HSYNC_ACTIVE_HIGH | V4L2_MBUS_VSYNC_ACTIVE_HIGH |
V4L2_MBUS_DATA_ACTIVE_HIGH | V4L2_MBUS_MASTER ;
cfg - > type = V4L2_MBUS_PARALLEL ;
cfg - > flags = soc_camera_apply_board_flags ( icl , cfg ) ;
return 0 ;
}
static int mt9m001_s_mbus_config ( struct v4l2_subdev * sd ,
const struct v4l2_mbus_config * cfg )
{
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const struct i2c_client * client = v4l2_get_subdevdata ( sd ) ;
struct soc_camera_link * icl = soc_camera_i2c_to_link ( client ) ;
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struct mt9m001 * mt9m001 = to_mt9m001 ( client ) ;
unsigned int bps = soc_mbus_get_fmtdesc ( mt9m001 - > fmt - > code ) - > bits_per_sample ;
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if ( icl - > set_bus_param )
return icl - > set_bus_param ( icl , 1 < < ( bps - 1 ) ) ;
/*
* Without board specific bus width settings we only support the
* sensors native bus width
*/
return bps = = 10 ? 0 : - EINVAL ;
}
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static struct v4l2_subdev_video_ops mt9m001_subdev_video_ops = {
. s_stream = mt9m001_s_stream ,
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. s_mbus_fmt = mt9m001_s_fmt ,
. g_mbus_fmt = mt9m001_g_fmt ,
. try_mbus_fmt = mt9m001_try_fmt ,
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. s_crop = mt9m001_s_crop ,
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. g_crop = mt9m001_g_crop ,
. cropcap = mt9m001_cropcap ,
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. enum_mbus_fmt = mt9m001_enum_fmt ,
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. g_mbus_config = mt9m001_g_mbus_config ,
. s_mbus_config = mt9m001_s_mbus_config ,
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} ;
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static struct v4l2_subdev_sensor_ops mt9m001_subdev_sensor_ops = {
. g_skip_top_lines = mt9m001_g_skip_top_lines ,
} ;
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static struct v4l2_subdev_ops mt9m001_subdev_ops = {
. core = & mt9m001_subdev_core_ops ,
. video = & mt9m001_subdev_video_ops ,
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. sensor = & mt9m001_subdev_sensor_ops ,
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} ;
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static int mt9m001_probe ( struct i2c_client * client ,
const struct i2c_device_id * did )
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{
struct mt9m001 * mt9m001 ;
struct i2c_adapter * adapter = to_i2c_adapter ( client - > dev . parent ) ;
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struct soc_camera_link * icl = soc_camera_i2c_to_link ( client ) ;
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int ret ;
if ( ! icl ) {
dev_err ( & client - > dev , " MT9M001 driver needs platform data \n " ) ;
return - EINVAL ;
}
if ( ! i2c_check_functionality ( adapter , I2C_FUNC_SMBUS_WORD_DATA ) ) {
dev_warn ( & adapter - > dev ,
" I2C-Adapter doesn't support I2C_FUNC_SMBUS_WORD \n " ) ;
return - EIO ;
}
mt9m001 = kzalloc ( sizeof ( struct mt9m001 ) , GFP_KERNEL ) ;
if ( ! mt9m001 )
return - ENOMEM ;
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v4l2_i2c_subdev_init ( & mt9m001 - > subdev , client , & mt9m001_subdev_ops ) ;
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v4l2_ctrl_handler_init ( & mt9m001 - > hdl , 4 ) ;
v4l2_ctrl_new_std ( & mt9m001 - > hdl , & mt9m001_ctrl_ops ,
V4L2_CID_VFLIP , 0 , 1 , 1 , 0 ) ;
v4l2_ctrl_new_std ( & mt9m001 - > hdl , & mt9m001_ctrl_ops ,
V4L2_CID_GAIN , 0 , 127 , 1 , 64 ) ;
mt9m001 - > exposure = v4l2_ctrl_new_std ( & mt9m001 - > hdl , & mt9m001_ctrl_ops ,
V4L2_CID_EXPOSURE , 1 , 255 , 1 , 255 ) ;
/*
* Simulated autoexposure . If enabled , we calculate shutter width
* ourselves in the driver based on vertical blanking and frame width
*/
mt9m001 - > autoexposure = v4l2_ctrl_new_std_menu ( & mt9m001 - > hdl ,
& mt9m001_ctrl_ops , V4L2_CID_EXPOSURE_AUTO , 1 , 0 ,
V4L2_EXPOSURE_AUTO ) ;
mt9m001 - > subdev . ctrl_handler = & mt9m001 - > hdl ;
if ( mt9m001 - > hdl . error ) {
int err = mt9m001 - > hdl . error ;
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2011-09-07 13:04:30 +04:00
kfree ( mt9m001 ) ;
return err ;
}
v4l2_ctrl_auto_cluster ( 2 , & mt9m001 - > autoexposure ,
V4L2_EXPOSURE_MANUAL , true ) ;
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2011-09-07 13:04:30 +04:00
/* Second stage probe - when a capture adapter is there */
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mt9m001 - > y_skip_top = 0 ;
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mt9m001 - > rect . left = MT9M001_COLUMN_SKIP ;
mt9m001 - > rect . top = MT9M001_ROW_SKIP ;
mt9m001 - > rect . width = MT9M001_MAX_WIDTH ;
mt9m001 - > rect . height = MT9M001_MAX_HEIGHT ;
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ret = mt9m001_video_probe ( icl , client ) ;
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if ( ret ) {
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v4l2_ctrl_handler_free ( & mt9m001 - > hdl ) ;
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kfree ( mt9m001 ) ;
}
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return ret ;
}
static int mt9m001_remove ( struct i2c_client * client )
{
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struct mt9m001 * mt9m001 = to_mt9m001 ( client ) ;
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struct soc_camera_link * icl = soc_camera_i2c_to_link ( client ) ;
2008-04-22 21:42:04 +04:00
2011-09-07 13:04:30 +04:00
v4l2_device_unregister_subdev ( & mt9m001 - > subdev ) ;
v4l2_ctrl_handler_free ( & mt9m001 - > hdl ) ;
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mt9m001_video_remove ( icl ) ;
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kfree ( mt9m001 ) ;
return 0 ;
}
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static const struct i2c_device_id mt9m001_id [ ] = {
{ " mt9m001 " , 0 } ,
{ }
} ;
MODULE_DEVICE_TABLE ( i2c , mt9m001_id ) ;
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static struct i2c_driver mt9m001_i2c_driver = {
. driver = {
. name = " mt9m001 " ,
} ,
. probe = mt9m001_probe ,
. remove = mt9m001_remove ,
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. id_table = mt9m001_id ,
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} ;
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module_i2c_driver ( mt9m001_i2c_driver ) ;
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MODULE_DESCRIPTION ( " Micron MT9M001 Camera driver " ) ;
MODULE_AUTHOR ( " Guennadi Liakhovetski <kernel@pengutronix.de> " ) ;
MODULE_LICENSE ( " GPL " ) ;