2 * Driver for MT9T031 CMOS Image Sensor from Micron
4 * Copyright (C) 2008, Guennadi Liakhovetski, DENX Software Engineering <lg@denx.de>
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2 as
8 * published by the Free Software Foundation.
11 #include <linux/device.h>
12 #include <linux/i2c.h>
13 #include <linux/log2.h>
15 #include <linux/slab.h>
16 #include <linux/v4l2-mediabus.h>
17 #include <linux/videodev2.h>
18 #include <linux/module.h>
20 #include <media/soc_camera.h>
21 #include <media/v4l2-clk.h>
22 #include <media/v4l2-subdev.h>
23 #include <media/v4l2-ctrls.h>
26 * ATTENTION: this driver still cannot be used outside of the soc-camera
27 * framework because of its PM implementation, using the video_device node.
28 * If hardware becomes available for testing, alternative PM approaches shall
29 * be considered and tested.
33 * mt9t031 i2c address 0x5d
34 * The platform has to define struct i2c_board_info objects and link to them
35 * from struct soc_camera_host_desc
38 /* mt9t031 selected register addresses */
39 #define MT9T031_CHIP_VERSION 0x00
40 #define MT9T031_ROW_START 0x01
41 #define MT9T031_COLUMN_START 0x02
42 #define MT9T031_WINDOW_HEIGHT 0x03
43 #define MT9T031_WINDOW_WIDTH 0x04
44 #define MT9T031_HORIZONTAL_BLANKING 0x05
45 #define MT9T031_VERTICAL_BLANKING 0x06
46 #define MT9T031_OUTPUT_CONTROL 0x07
47 #define MT9T031_SHUTTER_WIDTH_UPPER 0x08
48 #define MT9T031_SHUTTER_WIDTH 0x09
49 #define MT9T031_PIXEL_CLOCK_CONTROL 0x0a
50 #define MT9T031_FRAME_RESTART 0x0b
51 #define MT9T031_SHUTTER_DELAY 0x0c
52 #define MT9T031_RESET 0x0d
53 #define MT9T031_READ_MODE_1 0x1e
54 #define MT9T031_READ_MODE_2 0x20
55 #define MT9T031_READ_MODE_3 0x21
56 #define MT9T031_ROW_ADDRESS_MODE 0x22
57 #define MT9T031_COLUMN_ADDRESS_MODE 0x23
58 #define MT9T031_GLOBAL_GAIN 0x35
59 #define MT9T031_CHIP_ENABLE 0xF8
61 #define MT9T031_MAX_HEIGHT 1536
62 #define MT9T031_MAX_WIDTH 2048
63 #define MT9T031_MIN_HEIGHT 2
64 #define MT9T031_MIN_WIDTH 18
65 #define MT9T031_HORIZONTAL_BLANK 142
66 #define MT9T031_VERTICAL_BLANK 25
67 #define MT9T031_COLUMN_SKIP 32
68 #define MT9T031_ROW_SKIP 20
71 struct v4l2_subdev subdev
;
72 struct v4l2_ctrl_handler hdl
;
74 /* exposure/auto-exposure cluster */
75 struct v4l2_ctrl
*autoexposure
;
76 struct v4l2_ctrl
*exposure
;
78 struct v4l2_rect rect
; /* Sensor window */
83 unsigned short y_skip_top
; /* Lines to skip at the top */
86 static struct mt9t031
*to_mt9t031(const struct i2c_client
*client
)
88 return container_of(i2c_get_clientdata(client
), struct mt9t031
, subdev
);
91 static int reg_read(struct i2c_client
*client
, const u8 reg
)
93 return i2c_smbus_read_word_swapped(client
, reg
);
96 static int reg_write(struct i2c_client
*client
, const u8 reg
,
99 return i2c_smbus_write_word_swapped(client
, reg
, data
);
102 static int reg_set(struct i2c_client
*client
, const u8 reg
,
107 ret
= reg_read(client
, reg
);
110 return reg_write(client
, reg
, ret
| data
);
113 static int reg_clear(struct i2c_client
*client
, const u8 reg
,
118 ret
= reg_read(client
, reg
);
121 return reg_write(client
, reg
, ret
& ~data
);
124 static int set_shutter(struct i2c_client
*client
, const u32 data
)
128 ret
= reg_write(client
, MT9T031_SHUTTER_WIDTH_UPPER
, data
>> 16);
131 ret
= reg_write(client
, MT9T031_SHUTTER_WIDTH
, data
& 0xffff);
136 static int get_shutter(struct i2c_client
*client
, u32
*data
)
140 ret
= reg_read(client
, MT9T031_SHUTTER_WIDTH_UPPER
);
144 ret
= reg_read(client
, MT9T031_SHUTTER_WIDTH
);
145 *data
|= ret
& 0xffff;
147 return ret
< 0 ? ret
: 0;
150 static int mt9t031_idle(struct i2c_client
*client
)
154 /* Disable chip output, synchronous option update */
155 ret
= reg_write(client
, MT9T031_RESET
, 1);
157 ret
= reg_write(client
, MT9T031_RESET
, 0);
159 ret
= reg_clear(client
, MT9T031_OUTPUT_CONTROL
, 2);
161 return ret
>= 0 ? 0 : -EIO
;
164 static int mt9t031_s_stream(struct v4l2_subdev
*sd
, int enable
)
166 struct i2c_client
*client
= v4l2_get_subdevdata(sd
);
170 /* Switch to master "normal" mode */
171 ret
= reg_set(client
, MT9T031_OUTPUT_CONTROL
, 2);
173 /* Stop sensor readout */
174 ret
= reg_clear(client
, MT9T031_OUTPUT_CONTROL
, 2);
182 /* target must be _even_ */
183 static u16
mt9t031_skip(s32
*source
, s32 target
, s32 max
)
187 if (*source
< target
+ target
/ 2) {
192 skip
= min(max
, *source
+ target
/ 2) / target
;
195 *source
= target
* skip
;
200 /* rect is the sensor rectangle, the caller guarantees parameter validity */
201 static int mt9t031_set_params(struct i2c_client
*client
,
202 struct v4l2_rect
*rect
, u16 xskip
, u16 yskip
)
204 struct mt9t031
*mt9t031
= to_mt9t031(client
);
207 const u16 hblank
= MT9T031_HORIZONTAL_BLANK
,
208 vblank
= MT9T031_VERTICAL_BLANK
;
210 xbin
= min(xskip
, (u16
)3);
211 ybin
= min(yskip
, (u16
)3);
214 * Could just do roundup(rect->left, [xy]bin * 2); but this is cheaper.
215 * There is always a valid suitably aligned value. The worst case is
216 * xbin = 3, width = 2048. Then we will start at 36, the last read out
217 * pixel will be 2083, which is < 2085 - first black pixel.
219 * MT9T031 datasheet imposes window left border alignment, depending on
220 * the selected xskip. Failing to conform to this requirement produces
221 * dark horizontal stripes in the image. However, even obeying to this
222 * requirement doesn't eliminate the stripes in all configurations. They
223 * appear "locally reproducibly," but can differ between tests under
224 * different lighting conditions.
234 rect
->left
= rect
->left
> roundup(MT9T031_COLUMN_SKIP
, 6) ?
235 (rect
->left
/ 6) * 6 : roundup(MT9T031_COLUMN_SKIP
, 6);
240 dev_dbg(&client
->dev
, "skip %u:%u, rect %ux%u@%u:%u\n",
241 xskip
, yskip
, rect
->width
, rect
->height
, rect
->left
, rect
->top
);
243 /* Disable register update, reconfigure atomically */
244 ret
= reg_set(client
, MT9T031_OUTPUT_CONTROL
, 1);
248 /* Blanking and start values - default... */
249 ret
= reg_write(client
, MT9T031_HORIZONTAL_BLANKING
, hblank
);
251 ret
= reg_write(client
, MT9T031_VERTICAL_BLANKING
, vblank
);
253 if (yskip
!= mt9t031
->yskip
|| xskip
!= mt9t031
->xskip
) {
254 /* Binning, skipping */
256 ret
= reg_write(client
, MT9T031_COLUMN_ADDRESS_MODE
,
257 ((xbin
- 1) << 4) | (xskip
- 1));
259 ret
= reg_write(client
, MT9T031_ROW_ADDRESS_MODE
,
260 ((ybin
- 1) << 4) | (yskip
- 1));
262 dev_dbg(&client
->dev
, "new physical left %u, top %u\n",
263 rect
->left
, rect
->top
);
266 * The caller provides a supported format, as guaranteed by
267 * .try_mbus_fmt(), soc_camera_s_crop() and soc_camera_cropcap()
270 ret
= reg_write(client
, MT9T031_COLUMN_START
, rect
->left
);
272 ret
= reg_write(client
, MT9T031_ROW_START
, rect
->top
);
274 ret
= reg_write(client
, MT9T031_WINDOW_WIDTH
, rect
->width
- 1);
276 ret
= reg_write(client
, MT9T031_WINDOW_HEIGHT
,
277 rect
->height
+ mt9t031
->y_skip_top
- 1);
278 if (ret
>= 0 && v4l2_ctrl_g_ctrl(mt9t031
->autoexposure
) == V4L2_EXPOSURE_AUTO
) {
279 mt9t031
->total_h
= rect
->height
+ mt9t031
->y_skip_top
+ vblank
;
281 ret
= set_shutter(client
, mt9t031
->total_h
);
284 /* Re-enable register update, commit all changes */
286 ret
= reg_clear(client
, MT9T031_OUTPUT_CONTROL
, 1);
289 mt9t031
->rect
= *rect
;
290 mt9t031
->xskip
= xskip
;
291 mt9t031
->yskip
= yskip
;
294 return ret
< 0 ? ret
: 0;
297 static int mt9t031_s_crop(struct v4l2_subdev
*sd
, const struct v4l2_crop
*a
)
299 struct v4l2_rect rect
= a
->c
;
300 struct i2c_client
*client
= v4l2_get_subdevdata(sd
);
301 struct mt9t031
*mt9t031
= to_mt9t031(client
);
303 rect
.width
= ALIGN(rect
.width
, 2);
304 rect
.height
= ALIGN(rect
.height
, 2);
306 soc_camera_limit_side(&rect
.left
, &rect
.width
,
307 MT9T031_COLUMN_SKIP
, MT9T031_MIN_WIDTH
, MT9T031_MAX_WIDTH
);
309 soc_camera_limit_side(&rect
.top
, &rect
.height
,
310 MT9T031_ROW_SKIP
, MT9T031_MIN_HEIGHT
, MT9T031_MAX_HEIGHT
);
312 return mt9t031_set_params(client
, &rect
, mt9t031
->xskip
, mt9t031
->yskip
);
315 static int mt9t031_g_crop(struct v4l2_subdev
*sd
, struct v4l2_crop
*a
)
317 struct i2c_client
*client
= v4l2_get_subdevdata(sd
);
318 struct mt9t031
*mt9t031
= to_mt9t031(client
);
320 a
->c
= mt9t031
->rect
;
321 a
->type
= V4L2_BUF_TYPE_VIDEO_CAPTURE
;
326 static int mt9t031_cropcap(struct v4l2_subdev
*sd
, struct v4l2_cropcap
*a
)
328 a
->bounds
.left
= MT9T031_COLUMN_SKIP
;
329 a
->bounds
.top
= MT9T031_ROW_SKIP
;
330 a
->bounds
.width
= MT9T031_MAX_WIDTH
;
331 a
->bounds
.height
= MT9T031_MAX_HEIGHT
;
332 a
->defrect
= a
->bounds
;
333 a
->type
= V4L2_BUF_TYPE_VIDEO_CAPTURE
;
334 a
->pixelaspect
.numerator
= 1;
335 a
->pixelaspect
.denominator
= 1;
340 static int mt9t031_g_fmt(struct v4l2_subdev
*sd
,
341 struct v4l2_mbus_framefmt
*mf
)
343 struct i2c_client
*client
= v4l2_get_subdevdata(sd
);
344 struct mt9t031
*mt9t031
= to_mt9t031(client
);
346 mf
->width
= mt9t031
->rect
.width
/ mt9t031
->xskip
;
347 mf
->height
= mt9t031
->rect
.height
/ mt9t031
->yskip
;
348 mf
->code
= V4L2_MBUS_FMT_SBGGR10_1X10
;
349 mf
->colorspace
= V4L2_COLORSPACE_SRGB
;
350 mf
->field
= V4L2_FIELD_NONE
;
355 static int mt9t031_s_fmt(struct v4l2_subdev
*sd
,
356 struct v4l2_mbus_framefmt
*mf
)
358 struct i2c_client
*client
= v4l2_get_subdevdata(sd
);
359 struct mt9t031
*mt9t031
= to_mt9t031(client
);
361 struct v4l2_rect rect
= mt9t031
->rect
;
364 * try_fmt has put width and height within limits.
365 * S_FMT: use binning and skipping for scaling
367 xskip
= mt9t031_skip(&rect
.width
, mf
->width
, MT9T031_MAX_WIDTH
);
368 yskip
= mt9t031_skip(&rect
.height
, mf
->height
, MT9T031_MAX_HEIGHT
);
370 mf
->code
= V4L2_MBUS_FMT_SBGGR10_1X10
;
371 mf
->colorspace
= V4L2_COLORSPACE_SRGB
;
373 /* mt9t031_set_params() doesn't change width and height */
374 return mt9t031_set_params(client
, &rect
, xskip
, yskip
);
378 * If a user window larger than sensor window is requested, we'll increase the
381 static int mt9t031_try_fmt(struct v4l2_subdev
*sd
,
382 struct v4l2_mbus_framefmt
*mf
)
384 v4l_bound_align_image(
385 &mf
->width
, MT9T031_MIN_WIDTH
, MT9T031_MAX_WIDTH
, 1,
386 &mf
->height
, MT9T031_MIN_HEIGHT
, MT9T031_MAX_HEIGHT
, 1, 0);
388 mf
->code
= V4L2_MBUS_FMT_SBGGR10_1X10
;
389 mf
->colorspace
= V4L2_COLORSPACE_SRGB
;
394 #ifdef CONFIG_VIDEO_ADV_DEBUG
395 static int mt9t031_g_register(struct v4l2_subdev
*sd
,
396 struct v4l2_dbg_register
*reg
)
398 struct i2c_client
*client
= v4l2_get_subdevdata(sd
);
404 reg
->val
= reg_read(client
, reg
->reg
);
406 if (reg
->val
> 0xffff)
412 static int mt9t031_s_register(struct v4l2_subdev
*sd
,
413 const struct v4l2_dbg_register
*reg
)
415 struct i2c_client
*client
= v4l2_get_subdevdata(sd
);
420 if (reg_write(client
, reg
->reg
, reg
->val
) < 0)
427 static int mt9t031_g_volatile_ctrl(struct v4l2_ctrl
*ctrl
)
429 struct mt9t031
*mt9t031
= container_of(ctrl
->handler
,
430 struct mt9t031
, hdl
);
431 const u32 shutter_max
= MT9T031_MAX_HEIGHT
+ MT9T031_VERTICAL_BLANK
;
435 case V4L2_CID_EXPOSURE_AUTO
:
436 min
= mt9t031
->exposure
->minimum
;
437 max
= mt9t031
->exposure
->maximum
;
438 mt9t031
->exposure
->val
=
439 (shutter_max
/ 2 + (mt9t031
->total_h
- 1) * (max
- min
))
446 static int mt9t031_s_ctrl(struct v4l2_ctrl
*ctrl
)
448 struct mt9t031
*mt9t031
= container_of(ctrl
->handler
,
449 struct mt9t031
, hdl
);
450 struct v4l2_subdev
*sd
= &mt9t031
->subdev
;
451 struct i2c_client
*client
= v4l2_get_subdevdata(sd
);
452 struct v4l2_ctrl
*exp
= mt9t031
->exposure
;
458 data
= reg_set(client
, MT9T031_READ_MODE_2
, 0x8000);
460 data
= reg_clear(client
, MT9T031_READ_MODE_2
, 0x8000);
466 data
= reg_set(client
, MT9T031_READ_MODE_2
, 0x4000);
468 data
= reg_clear(client
, MT9T031_READ_MODE_2
, 0x4000);
473 /* See Datasheet Table 7, Gain settings. */
474 if (ctrl
->val
<= ctrl
->default_value
) {
475 /* Pack it into 0..1 step 0.125, register values 0..8 */
476 unsigned long range
= ctrl
->default_value
- ctrl
->minimum
;
477 data
= ((ctrl
->val
- ctrl
->minimum
) * 8 + range
/ 2) / range
;
479 dev_dbg(&client
->dev
, "Setting gain %d\n", data
);
480 data
= reg_write(client
, MT9T031_GLOBAL_GAIN
, data
);
484 /* Pack it into 1.125..128 variable step, register values 9..0x7860 */
485 /* We assume qctrl->maximum - qctrl->default_value - 1 > 0 */
486 unsigned long range
= ctrl
->maximum
- ctrl
->default_value
- 1;
487 /* calculated gain: map 65..127 to 9..1024 step 0.125 */
488 unsigned long gain
= ((ctrl
->val
- ctrl
->default_value
- 1) *
489 1015 + range
/ 2) / range
+ 9;
491 if (gain
<= 32) /* calculated gain 9..32 -> 9..32 */
493 else if (gain
<= 64) /* calculated gain 33..64 -> 0x51..0x60 */
494 data
= ((gain
- 32) * 16 + 16) / 32 + 80;
496 /* calculated gain 65..1024 -> (1..120) << 8 + 0x60 */
497 data
= (((gain
- 64 + 7) * 32) & 0xff00) | 0x60;
499 dev_dbg(&client
->dev
, "Set gain from 0x%x to 0x%x\n",
500 reg_read(client
, MT9T031_GLOBAL_GAIN
), data
);
501 data
= reg_write(client
, MT9T031_GLOBAL_GAIN
, data
);
507 case V4L2_CID_EXPOSURE_AUTO
:
508 if (ctrl
->val
== V4L2_EXPOSURE_MANUAL
) {
509 unsigned int range
= exp
->maximum
- exp
->minimum
;
510 unsigned int shutter
= ((exp
->val
- exp
->minimum
) * 1048 +
511 range
/ 2) / range
+ 1;
514 get_shutter(client
, &old
);
515 dev_dbg(&client
->dev
, "Set shutter from %u to %u\n",
517 if (set_shutter(client
, shutter
) < 0)
520 const u16 vblank
= MT9T031_VERTICAL_BLANK
;
521 mt9t031
->total_h
= mt9t031
->rect
.height
+
522 mt9t031
->y_skip_top
+ vblank
;
524 if (set_shutter(client
, mt9t031
->total_h
) < 0)
536 * This function does nothing for now but must be present for pm to work
538 static int mt9t031_runtime_suspend(struct device
*dev
)
545 * COLUMN_ADDRESS_MODE and ROW_ADDRESS_MODE are not rewritten if unchanged
546 * they are however changed at reset if the platform hook is present
547 * thus we rewrite them with the values stored by the driver
549 static int mt9t031_runtime_resume(struct device
*dev
)
551 struct video_device
*vdev
= to_video_device(dev
);
552 struct v4l2_subdev
*sd
= soc_camera_vdev_to_subdev(vdev
);
553 struct i2c_client
*client
= v4l2_get_subdevdata(sd
);
554 struct mt9t031
*mt9t031
= to_mt9t031(client
);
559 xbin
= min(mt9t031
->xskip
, (u16
)3);
560 ybin
= min(mt9t031
->yskip
, (u16
)3);
562 ret
= reg_write(client
, MT9T031_COLUMN_ADDRESS_MODE
,
563 ((xbin
- 1) << 4) | (mt9t031
->xskip
- 1));
567 ret
= reg_write(client
, MT9T031_ROW_ADDRESS_MODE
,
568 ((ybin
- 1) << 4) | (mt9t031
->yskip
- 1));
575 static const struct dev_pm_ops mt9t031_dev_pm_ops
= {
576 .runtime_suspend
= mt9t031_runtime_suspend
,
577 .runtime_resume
= mt9t031_runtime_resume
,
580 static struct device_type mt9t031_dev_type
= {
582 .pm
= &mt9t031_dev_pm_ops
,
585 static int mt9t031_s_power(struct v4l2_subdev
*sd
, int on
)
587 struct i2c_client
*client
= v4l2_get_subdevdata(sd
);
588 struct soc_camera_subdev_desc
*ssdd
= soc_camera_i2c_to_desc(client
);
589 struct video_device
*vdev
= soc_camera_i2c_to_vdev(client
);
590 struct mt9t031
*mt9t031
= to_mt9t031(client
);
594 ret
= soc_camera_power_on(&client
->dev
, ssdd
, mt9t031
->clk
);
598 /* Not needed during probing, when vdev isn't available yet */
599 vdev
->dev
.type
= &mt9t031_dev_type
;
602 vdev
->dev
.type
= NULL
;
603 soc_camera_power_off(&client
->dev
, ssdd
, mt9t031
->clk
);
610 * Interface active, can use i2c. If it fails, it can indeed mean, that
611 * this wasn't our capture interface, so, we wait for the right one
613 static int mt9t031_video_probe(struct i2c_client
*client
)
615 struct mt9t031
*mt9t031
= to_mt9t031(client
);
619 ret
= mt9t031_s_power(&mt9t031
->subdev
, 1);
623 ret
= mt9t031_idle(client
);
625 dev_err(&client
->dev
, "Failed to initialise the camera\n");
629 /* Read out the chip version register */
630 data
= reg_read(client
, MT9T031_CHIP_VERSION
);
636 dev_err(&client
->dev
,
637 "No MT9T031 chip detected, register read %x\n", data
);
642 dev_info(&client
->dev
, "Detected a MT9T031 chip ID %x\n", data
);
644 ret
= v4l2_ctrl_handler_setup(&mt9t031
->hdl
);
647 mt9t031_s_power(&mt9t031
->subdev
, 0);
652 static int mt9t031_g_skip_top_lines(struct v4l2_subdev
*sd
, u32
*lines
)
654 struct i2c_client
*client
= v4l2_get_subdevdata(sd
);
655 struct mt9t031
*mt9t031
= to_mt9t031(client
);
657 *lines
= mt9t031
->y_skip_top
;
662 static const struct v4l2_ctrl_ops mt9t031_ctrl_ops
= {
663 .g_volatile_ctrl
= mt9t031_g_volatile_ctrl
,
664 .s_ctrl
= mt9t031_s_ctrl
,
667 static struct v4l2_subdev_core_ops mt9t031_subdev_core_ops
= {
668 .s_power
= mt9t031_s_power
,
669 #ifdef CONFIG_VIDEO_ADV_DEBUG
670 .g_register
= mt9t031_g_register
,
671 .s_register
= mt9t031_s_register
,
675 static int mt9t031_enum_fmt(struct v4l2_subdev
*sd
, unsigned int index
,
676 enum v4l2_mbus_pixelcode
*code
)
681 *code
= V4L2_MBUS_FMT_SBGGR10_1X10
;
685 static int mt9t031_g_mbus_config(struct v4l2_subdev
*sd
,
686 struct v4l2_mbus_config
*cfg
)
688 struct i2c_client
*client
= v4l2_get_subdevdata(sd
);
689 struct soc_camera_subdev_desc
*ssdd
= soc_camera_i2c_to_desc(client
);
691 cfg
->flags
= V4L2_MBUS_MASTER
| V4L2_MBUS_PCLK_SAMPLE_RISING
|
692 V4L2_MBUS_PCLK_SAMPLE_FALLING
| V4L2_MBUS_HSYNC_ACTIVE_HIGH
|
693 V4L2_MBUS_VSYNC_ACTIVE_HIGH
| V4L2_MBUS_DATA_ACTIVE_HIGH
;
694 cfg
->type
= V4L2_MBUS_PARALLEL
;
695 cfg
->flags
= soc_camera_apply_board_flags(ssdd
, cfg
);
700 static int mt9t031_s_mbus_config(struct v4l2_subdev
*sd
,
701 const struct v4l2_mbus_config
*cfg
)
703 struct i2c_client
*client
= v4l2_get_subdevdata(sd
);
704 struct soc_camera_subdev_desc
*ssdd
= soc_camera_i2c_to_desc(client
);
706 if (soc_camera_apply_board_flags(ssdd
, cfg
) &
707 V4L2_MBUS_PCLK_SAMPLE_FALLING
)
708 return reg_clear(client
, MT9T031_PIXEL_CLOCK_CONTROL
, 0x8000);
710 return reg_set(client
, MT9T031_PIXEL_CLOCK_CONTROL
, 0x8000);
713 static struct v4l2_subdev_video_ops mt9t031_subdev_video_ops
= {
714 .s_stream
= mt9t031_s_stream
,
715 .s_mbus_fmt
= mt9t031_s_fmt
,
716 .g_mbus_fmt
= mt9t031_g_fmt
,
717 .try_mbus_fmt
= mt9t031_try_fmt
,
718 .s_crop
= mt9t031_s_crop
,
719 .g_crop
= mt9t031_g_crop
,
720 .cropcap
= mt9t031_cropcap
,
721 .enum_mbus_fmt
= mt9t031_enum_fmt
,
722 .g_mbus_config
= mt9t031_g_mbus_config
,
723 .s_mbus_config
= mt9t031_s_mbus_config
,
726 static struct v4l2_subdev_sensor_ops mt9t031_subdev_sensor_ops
= {
727 .g_skip_top_lines
= mt9t031_g_skip_top_lines
,
730 static struct v4l2_subdev_ops mt9t031_subdev_ops
= {
731 .core
= &mt9t031_subdev_core_ops
,
732 .video
= &mt9t031_subdev_video_ops
,
733 .sensor
= &mt9t031_subdev_sensor_ops
,
736 static int mt9t031_probe(struct i2c_client
*client
,
737 const struct i2c_device_id
*did
)
739 struct mt9t031
*mt9t031
;
740 struct soc_camera_subdev_desc
*ssdd
= soc_camera_i2c_to_desc(client
);
741 struct i2c_adapter
*adapter
= to_i2c_adapter(client
->dev
.parent
);
745 dev_err(&client
->dev
, "MT9T031 driver needs platform data\n");
749 if (!i2c_check_functionality(adapter
, I2C_FUNC_SMBUS_WORD_DATA
)) {
750 dev_warn(&adapter
->dev
,
751 "I2C-Adapter doesn't support I2C_FUNC_SMBUS_WORD\n");
755 mt9t031
= devm_kzalloc(&client
->dev
, sizeof(struct mt9t031
), GFP_KERNEL
);
759 v4l2_i2c_subdev_init(&mt9t031
->subdev
, client
, &mt9t031_subdev_ops
);
760 v4l2_ctrl_handler_init(&mt9t031
->hdl
, 5);
761 v4l2_ctrl_new_std(&mt9t031
->hdl
, &mt9t031_ctrl_ops
,
762 V4L2_CID_VFLIP
, 0, 1, 1, 0);
763 v4l2_ctrl_new_std(&mt9t031
->hdl
, &mt9t031_ctrl_ops
,
764 V4L2_CID_HFLIP
, 0, 1, 1, 0);
765 v4l2_ctrl_new_std(&mt9t031
->hdl
, &mt9t031_ctrl_ops
,
766 V4L2_CID_GAIN
, 0, 127, 1, 64);
769 * Simulated autoexposure. If enabled, we calculate shutter width
770 * ourselves in the driver based on vertical blanking and frame width
772 mt9t031
->autoexposure
= v4l2_ctrl_new_std_menu(&mt9t031
->hdl
,
773 &mt9t031_ctrl_ops
, V4L2_CID_EXPOSURE_AUTO
, 1, 0,
775 mt9t031
->exposure
= v4l2_ctrl_new_std(&mt9t031
->hdl
, &mt9t031_ctrl_ops
,
776 V4L2_CID_EXPOSURE
, 1, 255, 1, 255);
778 mt9t031
->subdev
.ctrl_handler
= &mt9t031
->hdl
;
779 if (mt9t031
->hdl
.error
)
780 return mt9t031
->hdl
.error
;
782 v4l2_ctrl_auto_cluster(2, &mt9t031
->autoexposure
,
783 V4L2_EXPOSURE_MANUAL
, true);
785 mt9t031
->y_skip_top
= 0;
786 mt9t031
->rect
.left
= MT9T031_COLUMN_SKIP
;
787 mt9t031
->rect
.top
= MT9T031_ROW_SKIP
;
788 mt9t031
->rect
.width
= MT9T031_MAX_WIDTH
;
789 mt9t031
->rect
.height
= MT9T031_MAX_HEIGHT
;
794 mt9t031
->clk
= v4l2_clk_get(&client
->dev
, "mclk");
795 if (IS_ERR(mt9t031
->clk
)) {
796 ret
= PTR_ERR(mt9t031
->clk
);
800 ret
= mt9t031_video_probe(client
);
802 v4l2_clk_put(mt9t031
->clk
);
804 v4l2_ctrl_handler_free(&mt9t031
->hdl
);
810 static int mt9t031_remove(struct i2c_client
*client
)
812 struct mt9t031
*mt9t031
= to_mt9t031(client
);
814 v4l2_clk_put(mt9t031
->clk
);
815 v4l2_device_unregister_subdev(&mt9t031
->subdev
);
816 v4l2_ctrl_handler_free(&mt9t031
->hdl
);
821 static const struct i2c_device_id mt9t031_id
[] = {
825 MODULE_DEVICE_TABLE(i2c
, mt9t031_id
);
827 static struct i2c_driver mt9t031_i2c_driver
= {
831 .probe
= mt9t031_probe
,
832 .remove
= mt9t031_remove
,
833 .id_table
= mt9t031_id
,
836 module_i2c_driver(mt9t031_i2c_driver
);
838 MODULE_DESCRIPTION("Micron MT9T031 Camera driver");
839 MODULE_AUTHOR("Guennadi Liakhovetski <lg@denx.de>");
840 MODULE_LICENSE("GPL v2");