1 // SPDX-License-Identifier: GPL-2.0-only
3 * OmniVision ov9282 Camera Sensor Driver
5 * Copyright (C) 2021 Intel Corporation
7 #include <linux/unaligned.h>
10 #include <linux/delay.h>
11 #include <linux/i2c.h>
12 #include <linux/module.h>
13 #include <linux/pm_runtime.h>
14 #include <linux/regulator/consumer.h>
16 #include <media/v4l2-ctrls.h>
17 #include <media/v4l2-event.h>
18 #include <media/v4l2-fwnode.h>
19 #include <media/v4l2-subdev.h>
22 #define OV9282_REG_MODE_SELECT 0x0100
23 #define OV9282_MODE_STANDBY 0x00
24 #define OV9282_MODE_STREAMING 0x01
26 #define OV9282_REG_PLL_CTRL_0D 0x030d
27 #define OV9282_PLL_CTRL_0D_RAW8 0x60
28 #define OV9282_PLL_CTRL_0D_RAW10 0x50
30 #define OV9282_REG_TIMING_HTS 0x380c
31 #define OV9282_TIMING_HTS_MAX 0x7fff
34 #define OV9282_REG_LPFR 0x380e
37 #define OV9282_REG_ID 0x300a
38 #define OV9282_ID 0x9281
40 /* Exposure control */
41 #define OV9282_REG_EXPOSURE 0x3500
42 #define OV9282_EXPOSURE_MIN 1
43 #define OV9282_EXPOSURE_OFFSET 12
44 #define OV9282_EXPOSURE_STEP 1
45 #define OV9282_EXPOSURE_DEFAULT 0x0282
47 /* Analog gain control */
48 #define OV9282_REG_AGAIN 0x3509
49 #define OV9282_AGAIN_MIN 0x10
50 #define OV9282_AGAIN_MAX 0xff
51 #define OV9282_AGAIN_STEP 1
52 #define OV9282_AGAIN_DEFAULT 0x10
54 /* Group hold register */
55 #define OV9282_REG_HOLD 0x3308
57 #define OV9282_REG_ANA_CORE_2 0x3662
58 #define OV9282_ANA_CORE2_RAW8 0x07
59 #define OV9282_ANA_CORE2_RAW10 0x05
61 #define OV9282_REG_TIMING_FORMAT_1 0x3820
62 #define OV9282_REG_TIMING_FORMAT_2 0x3821
63 #define OV9282_FLIP_BIT BIT(2)
65 #define OV9282_REG_MIPI_CTRL00 0x4800
66 #define OV9282_GATED_CLOCK BIT(5)
68 /* Input clock rate */
69 #define OV9282_INCLK_RATE 24000000
71 /* CSI2 HW configuration */
72 #define OV9282_LINK_FREQ 400000000
73 #define OV9282_NUM_DATA_LANES 2
76 #define OV9282_PIXEL_RATE_10BIT (OV9282_LINK_FREQ * 2 * \
77 OV9282_NUM_DATA_LANES / 10)
78 #define OV9282_PIXEL_RATE_8BIT (OV9282_LINK_FREQ * 2 * \
79 OV9282_NUM_DATA_LANES / 8)
82 * OV9282 native and active pixel array size.
83 * 8 dummy rows/columns on each edge of a 1280x800 active array
85 #define OV9282_NATIVE_WIDTH 1296U
86 #define OV9282_NATIVE_HEIGHT 816U
87 #define OV9282_PIXEL_ARRAY_LEFT 8U
88 #define OV9282_PIXEL_ARRAY_TOP 8U
89 #define OV9282_PIXEL_ARRAY_WIDTH 1280U
90 #define OV9282_PIXEL_ARRAY_HEIGHT 800U
92 #define OV9282_REG_MIN 0x00
93 #define OV9282_REG_MAX 0xfffff
95 static const char * const ov9282_supply_names
[] = {
96 "avdd", /* Analog power */
97 "dovdd", /* Digital I/O power */
98 "dvdd", /* Digital core power */
101 #define OV9282_NUM_SUPPLIES ARRAY_SIZE(ov9282_supply_names)
104 * struct ov9282_reg - ov9282 sensor register
105 * @address: Register address
106 * @val: Register value
114 * struct ov9282_reg_list - ov9282 sensor register list
115 * @num_of_regs: Number of registers in the list
116 * @regs: Pointer to register list
118 struct ov9282_reg_list
{
120 const struct ov9282_reg
*regs
;
124 * struct ov9282_mode - ov9282 sensor mode structure
125 * @width: Frame width
126 * @height: Frame height
127 * @hblank_min: Minimum horizontal blanking in lines for non-continuous[0] and
128 * continuous[1] clock modes
129 * @vblank: Vertical blanking in lines
130 * @vblank_min: Minimum vertical blanking in lines
131 * @vblank_max: Maximum vertical blanking in lines
132 * @link_freq_idx: Link frequency index
133 * @crop: on-sensor cropping for this mode
134 * @reg_list: Register list for sensor mode
144 struct v4l2_rect crop
;
145 struct ov9282_reg_list reg_list
;
149 * struct ov9282 - ov9282 sensor device structure
150 * @dev: Pointer to generic device
151 * @sd: V4L2 sub-device
152 * @pad: Media pad. Only one pad supported
153 * @reset_gpio: Sensor reset gpio
154 * @inclk: Sensor input clock
155 * @supplies: Regulator supplies for the sensor
156 * @ctrl_handler: V4L2 control handler
157 * @link_freq_ctrl: Pointer to link frequency control
158 * @hblank_ctrl: Pointer to horizontal blanking control
159 * @vblank_ctrl: Pointer to vertical blanking control
160 * @exp_ctrl: Pointer to exposure control
161 * @again_ctrl: Pointer to analog gain control
162 * @pixel_rate: Pointer to pixel rate control
163 * @vblank: Vertical blanking in lines
164 * @noncontinuous_clock: Selection of CSI2 noncontinuous clock mode
165 * @cur_mode: Pointer to current selected sensor mode
166 * @code: Mbus code currently selected
167 * @mutex: Mutex for serializing sensor controls
171 struct v4l2_subdev sd
;
172 struct media_pad pad
;
173 struct gpio_desc
*reset_gpio
;
175 struct regulator_bulk_data supplies
[OV9282_NUM_SUPPLIES
];
176 struct v4l2_ctrl_handler ctrl_handler
;
177 struct v4l2_ctrl
*link_freq_ctrl
;
178 struct v4l2_ctrl
*hblank_ctrl
;
179 struct v4l2_ctrl
*vblank_ctrl
;
181 struct v4l2_ctrl
*exp_ctrl
;
182 struct v4l2_ctrl
*again_ctrl
;
184 struct v4l2_ctrl
*pixel_rate
;
186 bool noncontinuous_clock
;
187 const struct ov9282_mode
*cur_mode
;
192 static const s64 link_freq
[] = {
199 * Note: Do NOT include a software reset (0x0103, 0x01) in any of these
200 * register arrays as some settings are written as part of ov9282_power_on,
201 * and the reset will clear them.
203 static const struct ov9282_reg common_regs
[] = {
267 static struct ov9282_reg_list common_regs_list
= {
268 .num_of_regs
= ARRAY_SIZE(common_regs
),
272 #define MODE_1280_800 0
273 #define MODE_1280_720 1
274 #define MODE_640_400 2
276 #define DEFAULT_MODE MODE_1280_720
278 /* Sensor mode registers */
279 static const struct ov9282_reg mode_1280x800_regs
[] = {
310 static const struct ov9282_reg mode_1280x720_regs
[] = {
341 static const struct ov9282_reg mode_640x400_regs
[] = {
371 /* Supported sensor mode configurations */
372 static const struct ov9282_mode supported_modes
[] = {
376 .hblank_min
= { 250, 176 },
382 .left
= OV9282_PIXEL_ARRAY_LEFT
,
383 .top
= OV9282_PIXEL_ARRAY_TOP
,
388 .num_of_regs
= ARRAY_SIZE(mode_1280x800_regs
),
389 .regs
= mode_1280x800_regs
,
395 .hblank_min
= { 250, 176 },
402 * Note that this mode takes the top 720 lines from the
403 * 800 of the sensor. It does not take a middle crop.
405 .left
= OV9282_PIXEL_ARRAY_LEFT
,
406 .top
= OV9282_PIXEL_ARRAY_TOP
,
411 .num_of_regs
= ARRAY_SIZE(mode_1280x720_regs
),
412 .regs
= mode_1280x720_regs
,
418 .hblank_min
= { 890, 816 },
424 .left
= OV9282_PIXEL_ARRAY_LEFT
,
425 .top
= OV9282_PIXEL_ARRAY_TOP
,
430 .num_of_regs
= ARRAY_SIZE(mode_640x400_regs
),
431 .regs
= mode_640x400_regs
,
437 * to_ov9282() - ov9282 V4L2 sub-device to ov9282 device.
438 * @subdev: pointer to ov9282 V4L2 sub-device
440 * Return: pointer to ov9282 device
442 static inline struct ov9282
*to_ov9282(struct v4l2_subdev
*subdev
)
444 return container_of(subdev
, struct ov9282
, sd
);
448 * ov9282_read_reg() - Read registers.
449 * @ov9282: pointer to ov9282 device
450 * @reg: register address
451 * @len: length of bytes to read. Max supported bytes is 4
452 * @val: pointer to register value to be filled.
454 * Return: 0 if successful, error code otherwise.
456 static int ov9282_read_reg(struct ov9282
*ov9282
, u16 reg
, u32 len
, u32
*val
)
458 struct i2c_client
*client
= v4l2_get_subdevdata(&ov9282
->sd
);
459 struct i2c_msg msgs
[2] = {0};
460 u8 addr_buf
[2] = {0};
461 u8 data_buf
[4] = {0};
464 if (WARN_ON(len
> 4))
467 put_unaligned_be16(reg
, addr_buf
);
469 /* Write register address */
470 msgs
[0].addr
= client
->addr
;
472 msgs
[0].len
= ARRAY_SIZE(addr_buf
);
473 msgs
[0].buf
= addr_buf
;
475 /* Read data from register */
476 msgs
[1].addr
= client
->addr
;
477 msgs
[1].flags
= I2C_M_RD
;
479 msgs
[1].buf
= &data_buf
[4 - len
];
481 ret
= i2c_transfer(client
->adapter
, msgs
, ARRAY_SIZE(msgs
));
482 if (ret
!= ARRAY_SIZE(msgs
))
485 *val
= get_unaligned_be32(data_buf
);
491 * ov9282_write_reg() - Write register
492 * @ov9282: pointer to ov9282 device
493 * @reg: register address
494 * @len: length of bytes. Max supported bytes is 4
495 * @val: register value
497 * Return: 0 if successful, error code otherwise.
499 static int ov9282_write_reg(struct ov9282
*ov9282
, u16 reg
, u32 len
, u32 val
)
501 struct i2c_client
*client
= v4l2_get_subdevdata(&ov9282
->sd
);
504 if (WARN_ON(len
> 4))
507 put_unaligned_be16(reg
, buf
);
508 put_unaligned_be32(val
<< (8 * (4 - len
)), buf
+ 2);
509 if (i2c_master_send(client
, buf
, len
+ 2) != len
+ 2)
516 * ov9282_write_regs() - Write a list of registers
517 * @ov9282: pointer to ov9282 device
518 * @regs: list of registers to be written
519 * @len: length of registers array
521 * Return: 0 if successful, error code otherwise.
523 static int ov9282_write_regs(struct ov9282
*ov9282
,
524 const struct ov9282_reg
*regs
, u32 len
)
529 for (i
= 0; i
< len
; i
++) {
530 ret
= ov9282_write_reg(ov9282
, regs
[i
].address
, 1, regs
[i
].val
);
539 * ov9282_update_controls() - Update control ranges based on streaming mode
540 * @ov9282: pointer to ov9282 device
541 * @mode: pointer to ov9282_mode sensor mode
542 * @fmt: pointer to the requested mode
544 * Return: 0 if successful, error code otherwise.
546 static int ov9282_update_controls(struct ov9282
*ov9282
,
547 const struct ov9282_mode
*mode
,
548 const struct v4l2_subdev_format
*fmt
)
554 ret
= __v4l2_ctrl_s_ctrl(ov9282
->link_freq_ctrl
, mode
->link_freq_idx
);
558 pixel_rate
= (fmt
->format
.code
== MEDIA_BUS_FMT_Y10_1X10
) ?
559 OV9282_PIXEL_RATE_10BIT
: OV9282_PIXEL_RATE_8BIT
;
560 ret
= __v4l2_ctrl_modify_range(ov9282
->pixel_rate
, pixel_rate
,
561 pixel_rate
, 1, pixel_rate
);
565 hblank_min
= mode
->hblank_min
[ov9282
->noncontinuous_clock
? 0 : 1];
566 ret
= __v4l2_ctrl_modify_range(ov9282
->hblank_ctrl
, hblank_min
,
567 OV9282_TIMING_HTS_MAX
- mode
->width
, 1,
572 return __v4l2_ctrl_modify_range(ov9282
->vblank_ctrl
, mode
->vblank_min
,
573 mode
->vblank_max
, 1, mode
->vblank
);
577 * ov9282_update_exp_gain() - Set updated exposure and gain
578 * @ov9282: pointer to ov9282 device
579 * @exposure: updated exposure value
580 * @gain: updated analog gain value
582 * Return: 0 if successful, error code otherwise.
584 static int ov9282_update_exp_gain(struct ov9282
*ov9282
, u32 exposure
, u32 gain
)
588 dev_dbg(ov9282
->dev
, "Set exp %u, analog gain %u",
591 ret
= ov9282_write_reg(ov9282
, OV9282_REG_HOLD
, 1, 1);
595 ret
= ov9282_write_reg(ov9282
, OV9282_REG_EXPOSURE
, 3, exposure
<< 4);
597 goto error_release_group_hold
;
599 ret
= ov9282_write_reg(ov9282
, OV9282_REG_AGAIN
, 1, gain
);
601 error_release_group_hold
:
602 ov9282_write_reg(ov9282
, OV9282_REG_HOLD
, 1, 0);
607 static int ov9282_set_ctrl_hflip(struct ov9282
*ov9282
, int value
)
610 int ret
= ov9282_read_reg(ov9282
, OV9282_REG_TIMING_FORMAT_2
, 1,
616 current_val
|= OV9282_FLIP_BIT
;
618 current_val
&= ~OV9282_FLIP_BIT
;
620 return ov9282_write_reg(ov9282
, OV9282_REG_TIMING_FORMAT_2
, 1,
624 static int ov9282_set_ctrl_vflip(struct ov9282
*ov9282
, int value
)
627 int ret
= ov9282_read_reg(ov9282
, OV9282_REG_TIMING_FORMAT_1
, 1,
633 current_val
|= OV9282_FLIP_BIT
;
635 current_val
&= ~OV9282_FLIP_BIT
;
637 return ov9282_write_reg(ov9282
, OV9282_REG_TIMING_FORMAT_1
, 1,
642 * ov9282_set_ctrl() - Set subdevice control
643 * @ctrl: pointer to v4l2_ctrl structure
645 * Supported controls:
647 * - cluster controls:
648 * - V4L2_CID_ANALOGUE_GAIN
649 * - V4L2_CID_EXPOSURE
651 * Return: 0 if successful, error code otherwise.
653 static int ov9282_set_ctrl(struct v4l2_ctrl
*ctrl
)
655 struct ov9282
*ov9282
=
656 container_of(ctrl
->handler
, struct ov9282
, ctrl_handler
);
663 case V4L2_CID_VBLANK
:
664 ov9282
->vblank
= ov9282
->vblank_ctrl
->val
;
666 dev_dbg(ov9282
->dev
, "Received vblank %u, new lpfr %u",
668 ov9282
->vblank
+ ov9282
->cur_mode
->height
);
670 ret
= __v4l2_ctrl_modify_range(ov9282
->exp_ctrl
,
673 ov9282
->cur_mode
->height
-
674 OV9282_EXPOSURE_OFFSET
,
675 1, OV9282_EXPOSURE_DEFAULT
);
679 /* Set controls only if sensor is in power on state */
680 if (!pm_runtime_get_if_in_use(ov9282
->dev
))
684 case V4L2_CID_EXPOSURE
:
685 exposure
= ctrl
->val
;
686 analog_gain
= ov9282
->again_ctrl
->val
;
688 dev_dbg(ov9282
->dev
, "Received exp %u, analog gain %u",
689 exposure
, analog_gain
);
691 ret
= ov9282_update_exp_gain(ov9282
, exposure
, analog_gain
);
693 case V4L2_CID_VBLANK
:
694 lpfr
= ov9282
->vblank
+ ov9282
->cur_mode
->height
;
695 ret
= ov9282_write_reg(ov9282
, OV9282_REG_LPFR
, 2, lpfr
);
698 ret
= ov9282_set_ctrl_hflip(ov9282
, ctrl
->val
);
701 ret
= ov9282_set_ctrl_vflip(ov9282
, ctrl
->val
);
703 case V4L2_CID_HBLANK
:
704 ret
= ov9282_write_reg(ov9282
, OV9282_REG_TIMING_HTS
, 2,
705 (ctrl
->val
+ ov9282
->cur_mode
->width
) >> 1);
708 dev_err(ov9282
->dev
, "Invalid control %d", ctrl
->id
);
712 pm_runtime_put(ov9282
->dev
);
717 /* V4l2 subdevice control ops*/
718 static const struct v4l2_ctrl_ops ov9282_ctrl_ops
= {
719 .s_ctrl
= ov9282_set_ctrl
,
723 * ov9282_enum_mbus_code() - Enumerate V4L2 sub-device mbus codes
724 * @sd: pointer to ov9282 V4L2 sub-device structure
725 * @sd_state: V4L2 sub-device configuration
726 * @code: V4L2 sub-device code enumeration need to be filled
728 * Return: 0 if successful, error code otherwise.
730 static int ov9282_enum_mbus_code(struct v4l2_subdev
*sd
,
731 struct v4l2_subdev_state
*sd_state
,
732 struct v4l2_subdev_mbus_code_enum
*code
)
734 switch (code
->index
) {
736 code
->code
= MEDIA_BUS_FMT_Y10_1X10
;
739 code
->code
= MEDIA_BUS_FMT_Y8_1X8
;
749 * ov9282_enum_frame_size() - Enumerate V4L2 sub-device frame sizes
750 * @sd: pointer to ov9282 V4L2 sub-device structure
751 * @sd_state: V4L2 sub-device configuration
752 * @fsize: V4L2 sub-device size enumeration need to be filled
754 * Return: 0 if successful, error code otherwise.
756 static int ov9282_enum_frame_size(struct v4l2_subdev
*sd
,
757 struct v4l2_subdev_state
*sd_state
,
758 struct v4l2_subdev_frame_size_enum
*fsize
)
760 if (fsize
->index
>= ARRAY_SIZE(supported_modes
))
763 if (fsize
->code
!= MEDIA_BUS_FMT_Y10_1X10
&&
764 fsize
->code
!= MEDIA_BUS_FMT_Y8_1X8
)
767 fsize
->min_width
= supported_modes
[fsize
->index
].width
;
768 fsize
->max_width
= fsize
->min_width
;
769 fsize
->min_height
= supported_modes
[fsize
->index
].height
;
770 fsize
->max_height
= fsize
->min_height
;
776 * ov9282_fill_pad_format() - Fill subdevice pad format
777 * from selected sensor mode
778 * @ov9282: pointer to ov9282 device
779 * @mode: pointer to ov9282_mode sensor mode
780 * @code: mbus code to be stored
781 * @fmt: V4L2 sub-device format need to be filled
783 static void ov9282_fill_pad_format(struct ov9282
*ov9282
,
784 const struct ov9282_mode
*mode
,
786 struct v4l2_subdev_format
*fmt
)
788 fmt
->format
.width
= mode
->width
;
789 fmt
->format
.height
= mode
->height
;
790 fmt
->format
.code
= code
;
791 fmt
->format
.field
= V4L2_FIELD_NONE
;
792 fmt
->format
.colorspace
= V4L2_COLORSPACE_RAW
;
793 fmt
->format
.ycbcr_enc
= V4L2_YCBCR_ENC_DEFAULT
;
794 fmt
->format
.quantization
= V4L2_QUANTIZATION_DEFAULT
;
795 fmt
->format
.xfer_func
= V4L2_XFER_FUNC_NONE
;
799 * ov9282_get_pad_format() - Get subdevice pad format
800 * @sd: pointer to ov9282 V4L2 sub-device structure
801 * @sd_state: V4L2 sub-device configuration
802 * @fmt: V4L2 sub-device format need to be set
804 * Return: 0 if successful, error code otherwise.
806 static int ov9282_get_pad_format(struct v4l2_subdev
*sd
,
807 struct v4l2_subdev_state
*sd_state
,
808 struct v4l2_subdev_format
*fmt
)
810 struct ov9282
*ov9282
= to_ov9282(sd
);
812 mutex_lock(&ov9282
->mutex
);
814 if (fmt
->which
== V4L2_SUBDEV_FORMAT_TRY
) {
815 struct v4l2_mbus_framefmt
*framefmt
;
817 framefmt
= v4l2_subdev_state_get_format(sd_state
, fmt
->pad
);
818 fmt
->format
= *framefmt
;
820 ov9282_fill_pad_format(ov9282
, ov9282
->cur_mode
, ov9282
->code
,
824 mutex_unlock(&ov9282
->mutex
);
830 * ov9282_set_pad_format() - Set subdevice pad format
831 * @sd: pointer to ov9282 V4L2 sub-device structure
832 * @sd_state: V4L2 sub-device configuration
833 * @fmt: V4L2 sub-device format need to be set
835 * Return: 0 if successful, error code otherwise.
837 static int ov9282_set_pad_format(struct v4l2_subdev
*sd
,
838 struct v4l2_subdev_state
*sd_state
,
839 struct v4l2_subdev_format
*fmt
)
841 struct ov9282
*ov9282
= to_ov9282(sd
);
842 const struct ov9282_mode
*mode
;
846 mutex_lock(&ov9282
->mutex
);
848 mode
= v4l2_find_nearest_size(supported_modes
,
849 ARRAY_SIZE(supported_modes
),
853 if (fmt
->format
.code
== MEDIA_BUS_FMT_Y8_1X8
)
854 code
= MEDIA_BUS_FMT_Y8_1X8
;
856 code
= MEDIA_BUS_FMT_Y10_1X10
;
858 ov9282_fill_pad_format(ov9282
, mode
, code
, fmt
);
860 if (fmt
->which
== V4L2_SUBDEV_FORMAT_TRY
) {
861 struct v4l2_mbus_framefmt
*framefmt
;
863 framefmt
= v4l2_subdev_state_get_format(sd_state
, fmt
->pad
);
864 *framefmt
= fmt
->format
;
866 ret
= ov9282_update_controls(ov9282
, mode
, fmt
);
868 ov9282
->cur_mode
= mode
;
873 mutex_unlock(&ov9282
->mutex
);
879 * ov9282_init_state() - Initialize sub-device state
880 * @sd: pointer to ov9282 V4L2 sub-device structure
881 * @sd_state: V4L2 sub-device configuration
883 * Return: 0 if successful, error code otherwise.
885 static int ov9282_init_state(struct v4l2_subdev
*sd
,
886 struct v4l2_subdev_state
*sd_state
)
888 struct ov9282
*ov9282
= to_ov9282(sd
);
889 struct v4l2_subdev_format fmt
= { 0 };
891 fmt
.which
= sd_state
? V4L2_SUBDEV_FORMAT_TRY
: V4L2_SUBDEV_FORMAT_ACTIVE
;
892 ov9282_fill_pad_format(ov9282
, &supported_modes
[DEFAULT_MODE
],
895 return ov9282_set_pad_format(sd
, sd_state
, &fmt
);
898 static const struct v4l2_rect
*
899 __ov9282_get_pad_crop(struct ov9282
*ov9282
,
900 struct v4l2_subdev_state
*sd_state
,
901 unsigned int pad
, enum v4l2_subdev_format_whence which
)
904 case V4L2_SUBDEV_FORMAT_TRY
:
905 return v4l2_subdev_state_get_crop(sd_state
, pad
);
906 case V4L2_SUBDEV_FORMAT_ACTIVE
:
907 return &ov9282
->cur_mode
->crop
;
913 static int ov9282_get_selection(struct v4l2_subdev
*sd
,
914 struct v4l2_subdev_state
*sd_state
,
915 struct v4l2_subdev_selection
*sel
)
917 switch (sel
->target
) {
918 case V4L2_SEL_TGT_CROP
: {
919 struct ov9282
*ov9282
= to_ov9282(sd
);
921 mutex_lock(&ov9282
->mutex
);
922 sel
->r
= *__ov9282_get_pad_crop(ov9282
, sd_state
, sel
->pad
,
924 mutex_unlock(&ov9282
->mutex
);
929 case V4L2_SEL_TGT_NATIVE_SIZE
:
932 sel
->r
.width
= OV9282_NATIVE_WIDTH
;
933 sel
->r
.height
= OV9282_NATIVE_HEIGHT
;
937 case V4L2_SEL_TGT_CROP_DEFAULT
:
938 case V4L2_SEL_TGT_CROP_BOUNDS
:
939 sel
->r
.top
= OV9282_PIXEL_ARRAY_TOP
;
940 sel
->r
.left
= OV9282_PIXEL_ARRAY_LEFT
;
941 sel
->r
.width
= OV9282_PIXEL_ARRAY_WIDTH
;
942 sel
->r
.height
= OV9282_PIXEL_ARRAY_HEIGHT
;
951 * ov9282_start_streaming() - Start sensor stream
952 * @ov9282: pointer to ov9282 device
954 * Return: 0 if successful, error code otherwise.
956 static int ov9282_start_streaming(struct ov9282
*ov9282
)
958 const struct ov9282_reg bitdepth_regs
[2][2] = {
960 {OV9282_REG_PLL_CTRL_0D
, OV9282_PLL_CTRL_0D_RAW10
},
961 {OV9282_REG_ANA_CORE_2
, OV9282_ANA_CORE2_RAW10
},
963 {OV9282_REG_PLL_CTRL_0D
, OV9282_PLL_CTRL_0D_RAW8
},
964 {OV9282_REG_ANA_CORE_2
, OV9282_ANA_CORE2_RAW8
},
967 const struct ov9282_reg_list
*reg_list
;
971 /* Write common registers */
972 ret
= ov9282_write_regs(ov9282
, common_regs_list
.regs
,
973 common_regs_list
.num_of_regs
);
975 dev_err(ov9282
->dev
, "fail to write common registers");
979 bitdepth_index
= ov9282
->code
== MEDIA_BUS_FMT_Y10_1X10
? 0 : 1;
980 ret
= ov9282_write_regs(ov9282
, bitdepth_regs
[bitdepth_index
], 2);
982 dev_err(ov9282
->dev
, "fail to write bitdepth regs");
986 /* Write sensor mode registers */
987 reg_list
= &ov9282
->cur_mode
->reg_list
;
988 ret
= ov9282_write_regs(ov9282
, reg_list
->regs
, reg_list
->num_of_regs
);
990 dev_err(ov9282
->dev
, "fail to write initial registers");
994 /* Setup handler will write actual exposure and gain */
995 ret
= __v4l2_ctrl_handler_setup(ov9282
->sd
.ctrl_handler
);
997 dev_err(ov9282
->dev
, "fail to setup handler");
1001 /* Start streaming */
1002 ret
= ov9282_write_reg(ov9282
, OV9282_REG_MODE_SELECT
,
1003 1, OV9282_MODE_STREAMING
);
1005 dev_err(ov9282
->dev
, "fail to start streaming");
1013 * ov9282_stop_streaming() - Stop sensor stream
1014 * @ov9282: pointer to ov9282 device
1016 * Return: 0 if successful, error code otherwise.
1018 static int ov9282_stop_streaming(struct ov9282
*ov9282
)
1020 return ov9282_write_reg(ov9282
, OV9282_REG_MODE_SELECT
,
1021 1, OV9282_MODE_STANDBY
);
1025 * ov9282_set_stream() - Enable sensor streaming
1026 * @sd: pointer to ov9282 subdevice
1027 * @enable: set to enable sensor streaming
1029 * Return: 0 if successful, error code otherwise.
1031 static int ov9282_set_stream(struct v4l2_subdev
*sd
, int enable
)
1033 struct ov9282
*ov9282
= to_ov9282(sd
);
1036 mutex_lock(&ov9282
->mutex
);
1039 ret
= pm_runtime_resume_and_get(ov9282
->dev
);
1043 ret
= ov9282_start_streaming(ov9282
);
1045 goto error_power_off
;
1047 ov9282_stop_streaming(ov9282
);
1048 pm_runtime_put(ov9282
->dev
);
1051 mutex_unlock(&ov9282
->mutex
);
1056 pm_runtime_put(ov9282
->dev
);
1058 mutex_unlock(&ov9282
->mutex
);
1064 * ov9282_detect() - Detect ov9282 sensor
1065 * @ov9282: pointer to ov9282 device
1067 * Return: 0 if successful, -EIO if sensor id does not match
1069 static int ov9282_detect(struct ov9282
*ov9282
)
1074 ret
= ov9282_read_reg(ov9282
, OV9282_REG_ID
, 2, &val
);
1078 if (val
!= OV9282_ID
) {
1079 dev_err(ov9282
->dev
, "chip id mismatch: %x!=%x",
1087 static int ov9282_configure_regulators(struct ov9282
*ov9282
)
1091 for (i
= 0; i
< OV9282_NUM_SUPPLIES
; i
++)
1092 ov9282
->supplies
[i
].supply
= ov9282_supply_names
[i
];
1094 return devm_regulator_bulk_get(ov9282
->dev
,
1095 OV9282_NUM_SUPPLIES
,
1100 * ov9282_parse_hw_config() - Parse HW configuration and check if supported
1101 * @ov9282: pointer to ov9282 device
1103 * Return: 0 if successful, error code otherwise.
1105 static int ov9282_parse_hw_config(struct ov9282
*ov9282
)
1107 struct fwnode_handle
*fwnode
= dev_fwnode(ov9282
->dev
);
1108 struct v4l2_fwnode_endpoint bus_cfg
= {
1109 .bus_type
= V4L2_MBUS_CSI2_DPHY
1111 struct fwnode_handle
*ep
;
1119 /* Request optional reset pin */
1120 ov9282
->reset_gpio
= devm_gpiod_get_optional(ov9282
->dev
, "reset",
1122 if (IS_ERR(ov9282
->reset_gpio
)) {
1123 dev_err(ov9282
->dev
, "failed to get reset gpio %ld",
1124 PTR_ERR(ov9282
->reset_gpio
));
1125 return PTR_ERR(ov9282
->reset_gpio
);
1128 /* Get sensor input clock */
1129 ov9282
->inclk
= devm_clk_get(ov9282
->dev
, NULL
);
1130 if (IS_ERR(ov9282
->inclk
)) {
1131 dev_err(ov9282
->dev
, "could not get inclk");
1132 return PTR_ERR(ov9282
->inclk
);
1135 ret
= ov9282_configure_regulators(ov9282
);
1137 return dev_err_probe(ov9282
->dev
, ret
,
1138 "Failed to get power regulators\n");
1140 rate
= clk_get_rate(ov9282
->inclk
);
1141 if (rate
!= OV9282_INCLK_RATE
) {
1142 dev_err(ov9282
->dev
, "inclk frequency mismatch");
1146 ep
= fwnode_graph_get_next_endpoint(fwnode
, NULL
);
1150 ret
= v4l2_fwnode_endpoint_alloc_parse(ep
, &bus_cfg
);
1151 fwnode_handle_put(ep
);
1155 ov9282
->noncontinuous_clock
=
1156 bus_cfg
.bus
.mipi_csi2
.flags
& V4L2_MBUS_CSI2_NONCONTINUOUS_CLOCK
;
1158 if (bus_cfg
.bus
.mipi_csi2
.num_data_lanes
!= OV9282_NUM_DATA_LANES
) {
1159 dev_err(ov9282
->dev
,
1160 "number of CSI2 data lanes %d is not supported",
1161 bus_cfg
.bus
.mipi_csi2
.num_data_lanes
);
1163 goto done_endpoint_free
;
1166 if (!bus_cfg
.nr_of_link_frequencies
) {
1167 dev_err(ov9282
->dev
, "no link frequencies defined");
1169 goto done_endpoint_free
;
1172 for (i
= 0; i
< bus_cfg
.nr_of_link_frequencies
; i
++)
1173 if (bus_cfg
.link_frequencies
[i
] == OV9282_LINK_FREQ
)
1174 goto done_endpoint_free
;
1179 v4l2_fwnode_endpoint_free(&bus_cfg
);
1184 /* V4l2 subdevice ops */
1185 static const struct v4l2_subdev_core_ops ov9282_core_ops
= {
1186 .subscribe_event
= v4l2_ctrl_subdev_subscribe_event
,
1187 .unsubscribe_event
= v4l2_event_subdev_unsubscribe
,
1190 static const struct v4l2_subdev_video_ops ov9282_video_ops
= {
1191 .s_stream
= ov9282_set_stream
,
1194 static const struct v4l2_subdev_pad_ops ov9282_pad_ops
= {
1195 .enum_mbus_code
= ov9282_enum_mbus_code
,
1196 .enum_frame_size
= ov9282_enum_frame_size
,
1197 .get_fmt
= ov9282_get_pad_format
,
1198 .set_fmt
= ov9282_set_pad_format
,
1199 .get_selection
= ov9282_get_selection
,
1202 static const struct v4l2_subdev_ops ov9282_subdev_ops
= {
1203 .core
= &ov9282_core_ops
,
1204 .video
= &ov9282_video_ops
,
1205 .pad
= &ov9282_pad_ops
,
1208 static const struct v4l2_subdev_internal_ops ov9282_internal_ops
= {
1209 .init_state
= ov9282_init_state
,
1213 * ov9282_power_on() - Sensor power on sequence
1214 * @dev: pointer to i2c device
1216 * Return: 0 if successful, error code otherwise.
1218 static int ov9282_power_on(struct device
*dev
)
1220 struct v4l2_subdev
*sd
= dev_get_drvdata(dev
);
1221 struct ov9282
*ov9282
= to_ov9282(sd
);
1224 ret
= regulator_bulk_enable(OV9282_NUM_SUPPLIES
, ov9282
->supplies
);
1226 dev_err(dev
, "Failed to enable regulators\n");
1230 usleep_range(400, 600);
1232 gpiod_set_value_cansleep(ov9282
->reset_gpio
, 1);
1234 ret
= clk_prepare_enable(ov9282
->inclk
);
1236 dev_err(ov9282
->dev
, "fail to enable inclk");
1240 usleep_range(400, 600);
1242 ret
= ov9282_write_reg(ov9282
, OV9282_REG_MIPI_CTRL00
, 1,
1243 ov9282
->noncontinuous_clock
?
1244 OV9282_GATED_CLOCK
: 0);
1246 dev_err(ov9282
->dev
, "fail to write MIPI_CTRL00");
1253 clk_disable_unprepare(ov9282
->inclk
);
1255 gpiod_set_value_cansleep(ov9282
->reset_gpio
, 0);
1257 regulator_bulk_disable(OV9282_NUM_SUPPLIES
, ov9282
->supplies
);
1263 * ov9282_power_off() - Sensor power off sequence
1264 * @dev: pointer to i2c device
1266 * Return: 0 if successful, error code otherwise.
1268 static int ov9282_power_off(struct device
*dev
)
1270 struct v4l2_subdev
*sd
= dev_get_drvdata(dev
);
1271 struct ov9282
*ov9282
= to_ov9282(sd
);
1273 gpiod_set_value_cansleep(ov9282
->reset_gpio
, 0);
1275 clk_disable_unprepare(ov9282
->inclk
);
1277 regulator_bulk_disable(OV9282_NUM_SUPPLIES
, ov9282
->supplies
);
1283 * ov9282_init_controls() - Initialize sensor subdevice controls
1284 * @ov9282: pointer to ov9282 device
1286 * Return: 0 if successful, error code otherwise.
1288 static int ov9282_init_controls(struct ov9282
*ov9282
)
1290 struct v4l2_ctrl_handler
*ctrl_hdlr
= &ov9282
->ctrl_handler
;
1291 const struct ov9282_mode
*mode
= ov9282
->cur_mode
;
1292 struct v4l2_fwnode_device_properties props
;
1297 ret
= v4l2_ctrl_handler_init(ctrl_hdlr
, 10);
1301 /* Serialize controls with sensor device */
1302 ctrl_hdlr
->lock
= &ov9282
->mutex
;
1304 /* Initialize exposure and gain */
1305 lpfr
= mode
->vblank
+ mode
->height
;
1306 ov9282
->exp_ctrl
= v4l2_ctrl_new_std(ctrl_hdlr
,
1309 OV9282_EXPOSURE_MIN
,
1310 lpfr
- OV9282_EXPOSURE_OFFSET
,
1311 OV9282_EXPOSURE_STEP
,
1312 OV9282_EXPOSURE_DEFAULT
);
1314 ov9282
->again_ctrl
= v4l2_ctrl_new_std(ctrl_hdlr
,
1316 V4L2_CID_ANALOGUE_GAIN
,
1320 OV9282_AGAIN_DEFAULT
);
1322 v4l2_ctrl_cluster(2, &ov9282
->exp_ctrl
);
1324 ov9282
->vblank_ctrl
= v4l2_ctrl_new_std(ctrl_hdlr
,
1331 v4l2_ctrl_new_std(ctrl_hdlr
, &ov9282_ctrl_ops
, V4L2_CID_VFLIP
,
1334 v4l2_ctrl_new_std(ctrl_hdlr
, &ov9282_ctrl_ops
, V4L2_CID_HFLIP
,
1337 /* Read only controls */
1338 ov9282
->pixel_rate
= v4l2_ctrl_new_std(ctrl_hdlr
, &ov9282_ctrl_ops
,
1339 V4L2_CID_PIXEL_RATE
,
1340 OV9282_PIXEL_RATE_10BIT
,
1341 OV9282_PIXEL_RATE_10BIT
, 1,
1342 OV9282_PIXEL_RATE_10BIT
);
1344 ov9282
->link_freq_ctrl
= v4l2_ctrl_new_int_menu(ctrl_hdlr
,
1347 ARRAY_SIZE(link_freq
) -
1349 mode
->link_freq_idx
,
1351 if (ov9282
->link_freq_ctrl
)
1352 ov9282
->link_freq_ctrl
->flags
|= V4L2_CTRL_FLAG_READ_ONLY
;
1354 hblank_min
= mode
->hblank_min
[ov9282
->noncontinuous_clock
? 0 : 1];
1355 ov9282
->hblank_ctrl
= v4l2_ctrl_new_std(ctrl_hdlr
,
1359 OV9282_TIMING_HTS_MAX
- mode
->width
,
1362 ret
= v4l2_fwnode_device_parse(ov9282
->dev
, &props
);
1364 /* Failure sets ctrl_hdlr->error, which we check afterwards anyway */
1365 v4l2_ctrl_new_fwnode_properties(ctrl_hdlr
, &ov9282_ctrl_ops
,
1369 if (ctrl_hdlr
->error
|| ret
) {
1370 dev_err(ov9282
->dev
, "control init failed: %d",
1372 v4l2_ctrl_handler_free(ctrl_hdlr
);
1373 return ctrl_hdlr
->error
;
1376 ov9282
->sd
.ctrl_handler
= ctrl_hdlr
;
1382 * ov9282_probe() - I2C client device binding
1383 * @client: pointer to i2c client device
1385 * Return: 0 if successful, error code otherwise.
1387 static int ov9282_probe(struct i2c_client
*client
)
1389 struct ov9282
*ov9282
;
1392 ov9282
= devm_kzalloc(&client
->dev
, sizeof(*ov9282
), GFP_KERNEL
);
1396 ov9282
->dev
= &client
->dev
;
1398 /* Initialize subdev */
1399 v4l2_i2c_subdev_init(&ov9282
->sd
, client
, &ov9282_subdev_ops
);
1400 ov9282
->sd
.internal_ops
= &ov9282_internal_ops
;
1401 v4l2_i2c_subdev_set_name(&ov9282
->sd
, client
,
1402 device_get_match_data(ov9282
->dev
), NULL
);
1404 ret
= ov9282_parse_hw_config(ov9282
);
1406 dev_err(ov9282
->dev
, "HW configuration is not supported");
1410 mutex_init(&ov9282
->mutex
);
1412 ret
= ov9282_power_on(ov9282
->dev
);
1414 dev_err(ov9282
->dev
, "failed to power-on the sensor");
1415 goto error_mutex_destroy
;
1418 /* Check module identity */
1419 ret
= ov9282_detect(ov9282
);
1421 dev_err(ov9282
->dev
, "failed to find sensor: %d", ret
);
1422 goto error_power_off
;
1425 /* Set default mode to first mode */
1426 ov9282
->cur_mode
= &supported_modes
[DEFAULT_MODE
];
1427 ov9282
->code
= MEDIA_BUS_FMT_Y10_1X10
;
1428 ov9282
->vblank
= ov9282
->cur_mode
->vblank
;
1430 ret
= ov9282_init_controls(ov9282
);
1432 dev_err(ov9282
->dev
, "failed to init controls: %d", ret
);
1433 goto error_power_off
;
1436 /* Initialize subdev */
1437 ov9282
->sd
.flags
|= V4L2_SUBDEV_FL_HAS_DEVNODE
|
1438 V4L2_SUBDEV_FL_HAS_EVENTS
;
1439 ov9282
->sd
.entity
.function
= MEDIA_ENT_F_CAM_SENSOR
;
1441 /* Initialize source pad */
1442 ov9282
->pad
.flags
= MEDIA_PAD_FL_SOURCE
;
1443 ret
= media_entity_pads_init(&ov9282
->sd
.entity
, 1, &ov9282
->pad
);
1445 dev_err(ov9282
->dev
, "failed to init entity pads: %d", ret
);
1446 goto error_handler_free
;
1449 ret
= v4l2_async_register_subdev_sensor(&ov9282
->sd
);
1451 dev_err(ov9282
->dev
,
1452 "failed to register async subdev: %d", ret
);
1453 goto error_media_entity
;
1456 pm_runtime_set_active(ov9282
->dev
);
1457 pm_runtime_enable(ov9282
->dev
);
1458 pm_runtime_idle(ov9282
->dev
);
1463 media_entity_cleanup(&ov9282
->sd
.entity
);
1465 v4l2_ctrl_handler_free(ov9282
->sd
.ctrl_handler
);
1467 ov9282_power_off(ov9282
->dev
);
1468 error_mutex_destroy
:
1469 mutex_destroy(&ov9282
->mutex
);
1475 * ov9282_remove() - I2C client device unbinding
1476 * @client: pointer to I2C client device
1478 * Return: 0 if successful, error code otherwise.
1480 static void ov9282_remove(struct i2c_client
*client
)
1482 struct v4l2_subdev
*sd
= i2c_get_clientdata(client
);
1483 struct ov9282
*ov9282
= to_ov9282(sd
);
1485 v4l2_async_unregister_subdev(sd
);
1486 media_entity_cleanup(&sd
->entity
);
1487 v4l2_ctrl_handler_free(sd
->ctrl_handler
);
1489 pm_runtime_disable(&client
->dev
);
1490 if (!pm_runtime_status_suspended(&client
->dev
))
1491 ov9282_power_off(&client
->dev
);
1492 pm_runtime_set_suspended(&client
->dev
);
1494 mutex_destroy(&ov9282
->mutex
);
1497 static const struct dev_pm_ops ov9282_pm_ops
= {
1498 SET_RUNTIME_PM_OPS(ov9282_power_off
, ov9282_power_on
, NULL
)
1501 static const struct of_device_id ov9282_of_match
[] = {
1502 { .compatible
= "ovti,ov9281", .data
= "ov9281" },
1503 { .compatible
= "ovti,ov9282", .data
= "ov9282" },
1507 MODULE_DEVICE_TABLE(of
, ov9282_of_match
);
1509 static struct i2c_driver ov9282_driver
= {
1510 .probe
= ov9282_probe
,
1511 .remove
= ov9282_remove
,
1514 .pm
= &ov9282_pm_ops
,
1515 .of_match_table
= ov9282_of_match
,
1519 module_i2c_driver(ov9282_driver
);
1521 MODULE_DESCRIPTION("OmniVision ov9282 sensor driver");
1522 MODULE_LICENSE("GPL");