1 // SPDX-License-Identifier: GPL-2.0
3 * imx274.c - IMX274 CMOS Image Sensor driver
5 * Copyright (C) 2017, Leopard Imaging, Inc.
12 #include <linux/clk.h>
13 #include <linux/delay.h>
14 #include <linux/gpio.h>
15 #include <linux/gpio/consumer.h>
16 #include <linux/i2c.h>
17 #include <linux/init.h>
18 #include <linux/kernel.h>
19 #include <linux/module.h>
20 #include <linux/of_gpio.h>
21 #include <linux/pm_runtime.h>
22 #include <linux/regmap.h>
23 #include <linux/regulator/consumer.h>
24 #include <linux/slab.h>
25 #include <linux/v4l2-mediabus.h>
26 #include <linux/videodev2.h>
28 #include <media/v4l2-ctrls.h>
29 #include <media/v4l2-device.h>
30 #include <media/v4l2-subdev.h>
33 * See "SHR, SVR Setting" in datasheet
35 #define IMX274_DEFAULT_FRAME_LENGTH (4550)
36 #define IMX274_MAX_FRAME_LENGTH (0x000fffff)
39 * See "Frame Rate Adjustment" in datasheet
41 #define IMX274_PIXCLK_CONST1 (72000000)
42 #define IMX274_PIXCLK_CONST2 (1000000)
45 * The input gain is shifted by IMX274_GAIN_SHIFT to get
46 * decimal number. The real gain is
47 * (float)input_gain_value / (1 << IMX274_GAIN_SHIFT)
49 #define IMX274_GAIN_SHIFT (8)
50 #define IMX274_GAIN_SHIFT_MASK ((1 << IMX274_GAIN_SHIFT) - 1)
53 * See "Analog Gain" and "Digital Gain" in datasheet
55 * max gain is calculated based on IMX274_GAIN_REG_MAX
57 #define IMX274_GAIN_REG_MAX (1957)
58 #define IMX274_MIN_GAIN (0x01 << IMX274_GAIN_SHIFT)
59 #define IMX274_MAX_ANALOG_GAIN ((2048 << IMX274_GAIN_SHIFT)\
60 / (2048 - IMX274_GAIN_REG_MAX))
61 #define IMX274_MAX_DIGITAL_GAIN (8)
62 #define IMX274_DEF_GAIN (20 << IMX274_GAIN_SHIFT)
63 #define IMX274_GAIN_CONST (2048) /* for gain formula */
66 * 1 line time in us = (HMAX / 72), minimal is 4 lines
68 #define IMX274_MIN_EXPOSURE_TIME (4 * 260 / 72)
70 #define IMX274_MAX_WIDTH (3840)
71 #define IMX274_MAX_HEIGHT (2160)
72 #define IMX274_MAX_FRAME_RATE (120)
73 #define IMX274_MIN_FRAME_RATE (5)
74 #define IMX274_DEF_FRAME_RATE (60)
77 * register SHR is limited to (SVR value + 1) x VMAX value - 4
79 #define IMX274_SHR_LIMIT_CONST (4)
82 * Min and max sensor reset delay (microseconds)
84 #define IMX274_RESET_DELAY1 (2000)
85 #define IMX274_RESET_DELAY2 (2200)
88 * shift and mask constants
90 #define IMX274_SHIFT_8_BITS (8)
91 #define IMX274_SHIFT_16_BITS (16)
92 #define IMX274_MASK_LSB_2_BITS (0x03)
93 #define IMX274_MASK_LSB_3_BITS (0x07)
94 #define IMX274_MASK_LSB_4_BITS (0x0f)
95 #define IMX274_MASK_LSB_8_BITS (0x00ff)
97 #define DRIVER_NAME "IMX274"
100 * IMX274 register definitions
102 #define IMX274_SHR_REG_MSB 0x300D /* SHR */
103 #define IMX274_SHR_REG_LSB 0x300C /* SHR */
104 #define IMX274_SVR_REG_MSB 0x300F /* SVR */
105 #define IMX274_SVR_REG_LSB 0x300E /* SVR */
106 #define IMX274_HTRIM_EN_REG 0x3037
107 #define IMX274_HTRIM_START_REG_LSB 0x3038
108 #define IMX274_HTRIM_START_REG_MSB 0x3039
109 #define IMX274_HTRIM_END_REG_LSB 0x303A
110 #define IMX274_HTRIM_END_REG_MSB 0x303B
111 #define IMX274_VWIDCUTEN_REG 0x30DD
112 #define IMX274_VWIDCUT_REG_LSB 0x30DE
113 #define IMX274_VWIDCUT_REG_MSB 0x30DF
114 #define IMX274_VWINPOS_REG_LSB 0x30E0
115 #define IMX274_VWINPOS_REG_MSB 0x30E1
116 #define IMX274_WRITE_VSIZE_REG_LSB 0x3130
117 #define IMX274_WRITE_VSIZE_REG_MSB 0x3131
118 #define IMX274_Y_OUT_SIZE_REG_LSB 0x3132
119 #define IMX274_Y_OUT_SIZE_REG_MSB 0x3133
120 #define IMX274_VMAX_REG_1 0x30FA /* VMAX, MSB */
121 #define IMX274_VMAX_REG_2 0x30F9 /* VMAX */
122 #define IMX274_VMAX_REG_3 0x30F8 /* VMAX, LSB */
123 #define IMX274_HMAX_REG_MSB 0x30F7 /* HMAX */
124 #define IMX274_HMAX_REG_LSB 0x30F6 /* HMAX */
125 #define IMX274_ANALOG_GAIN_ADDR_LSB 0x300A /* ANALOG GAIN LSB */
126 #define IMX274_ANALOG_GAIN_ADDR_MSB 0x300B /* ANALOG GAIN MSB */
127 #define IMX274_DIGITAL_GAIN_REG 0x3012 /* Digital Gain */
128 #define IMX274_VFLIP_REG 0x301A /* VERTICAL FLIP */
129 #define IMX274_TEST_PATTERN_REG 0x303D /* TEST PATTERN */
130 #define IMX274_STANDBY_REG 0x3000 /* STANDBY */
132 #define IMX274_TABLE_WAIT_MS 0
133 #define IMX274_TABLE_END 1
135 /* regulator supplies */
136 static const char * const imx274_supply_names[] = {
137 "vddl", /* IF (1.2V) supply */
138 "vdig", /* Digital Core (1.8V) supply */
139 "vana", /* Analog (2.8V) supply */
142 #define IMX274_NUM_SUPPLIES ARRAY_SIZE(imx274_supply_names)
145 * imx274 I2C operation related structure
152 static const struct regmap_config imx274_regmap_config = {
155 .cache_type = REGCACHE_RBTREE,
159 * Parameters for each imx274 readout mode.
161 * These are the values to configure the sensor in one of the
164 * @init_regs: registers to initialize the mode
165 * @wbin_ratio: width downscale factor (e.g. 3 for 1280; 3 = 3840/1280)
166 * @hbin_ratio: height downscale factor (e.g. 3 for 720; 3 = 2160/720)
167 * @min_frame_len: Minimum frame length for each mode (see "Frame Rate
168 * Adjustment (CSI-2)" in the datasheet)
169 * @min_SHR: Minimum SHR register value (see "Shutter Setting (CSI-2)" in the
171 * @max_fps: Maximum frames per second
172 * @nocpiop: Number of clocks per internal offset period (see "Integration Time
173 * in Each Readout Drive Mode (CSI-2)" in the datasheet)
176 const struct reg_8 *init_regs;
186 * imx274 test pattern related structure
189 TEST_PATTERN_DISABLED = 0,
190 TEST_PATTERN_ALL_000H,
191 TEST_PATTERN_ALL_FFFH,
192 TEST_PATTERN_ALL_555H,
193 TEST_PATTERN_ALL_AAAH,
194 TEST_PATTERN_VSP_5AH, /* VERTICAL STRIPE PATTERN 555H/AAAH */
195 TEST_PATTERN_VSP_A5H, /* VERTICAL STRIPE PATTERN AAAH/555H */
196 TEST_PATTERN_VSP_05H, /* VERTICAL STRIPE PATTERN 000H/555H */
197 TEST_PATTERN_VSP_50H, /* VERTICAL STRIPE PATTERN 555H/000H */
198 TEST_PATTERN_VSP_0FH, /* VERTICAL STRIPE PATTERN 000H/FFFH */
199 TEST_PATTERN_VSP_F0H, /* VERTICAL STRIPE PATTERN FFFH/000H */
200 TEST_PATTERN_H_COLOR_BARS,
201 TEST_PATTERN_V_COLOR_BARS,
204 static const char * const tp_qmenu[] = {
210 "Vertical Stripe (555h / AAAh)",
211 "Vertical Stripe (AAAh / 555h)",
212 "Vertical Stripe (000h / 555h)",
213 "Vertical Stripe (555h / 000h)",
214 "Vertical Stripe (000h / FFFh)",
215 "Vertical Stripe (FFFh / 000h)",
216 "Vertical Color Bars",
217 "Horizontal Color Bars",
221 * All-pixel scan mode (10-bit)
222 * imx274 mode1(refer to datasheet) register configuration with
223 * 3840x2160 resolution, raw10 data and mipi four lane output
225 static const struct reg_8 imx274_mode1_3840x2160_raw10[] = {
231 {0x3018, 0xA2}, /* output XVS, HVS */
257 {IMX274_TABLE_END, 0x00}
261 * Horizontal/vertical 2/2-line binning
262 * (Horizontal and vertical weightedbinning, 10-bit)
263 * imx274 mode3(refer to datasheet) register configuration with
264 * 1920x1080 resolution, raw10 data and mipi four lane output
266 static const struct reg_8 imx274_mode3_1920x1080_raw10[] = {
272 {0x3018, 0xA2}, /* output XVS, HVS */
298 {IMX274_TABLE_END, 0x00}
302 * Vertical 2/3 subsampling binning horizontal 3 binning
303 * imx274 mode5(refer to datasheet) register configuration with
304 * 1280x720 resolution, raw10 data and mipi four lane output
306 static const struct reg_8 imx274_mode5_1280x720_raw10[] = {
312 {0x3018, 0xA2}, /* output XVS, HVS */
338 {IMX274_TABLE_END, 0x00}
342 * Vertical 2/8 subsampling horizontal 3 binning
343 * imx274 mode6(refer to datasheet) register configuration with
344 * 1280x540 resolution, raw10 data and mipi four lane output
346 static const struct reg_8 imx274_mode6_1280x540_raw10[] = {
347 {0x3004, 0x04}, /* mode setting */
350 {0x3007, 0x02}, /* mode setting */
352 {0x3018, 0xA2}, /* output XVS, HVS */
355 {0x30E2, 0x04}, /* mode setting */
378 {IMX274_TABLE_END, 0x00}
382 * imx274 first step register configuration for
385 static const struct reg_8 imx274_start_1[] = {
386 {IMX274_STANDBY_REG, 0x12},
388 /* PLRD: clock settings */
399 {0x304C, 0x00}, /* PLSTMG01 */
426 {0x3304, 0x32}, /* PSMIPI1 */
435 {IMX274_TABLE_END, 0x00}
439 * imx274 second step register configuration for
442 static const struct reg_8 imx274_start_2[] = {
443 {IMX274_STANDBY_REG, 0x00},
444 {0x303E, 0x02}, /* SYS_MODE = 2 */
445 {IMX274_TABLE_END, 0x00}
449 * imx274 third step register configuration for
452 static const struct reg_8 imx274_start_3[] = {
454 {0x3018, 0xA2}, /* XHS VHS OUTPUT */
455 {IMX274_TABLE_END, 0x00}
459 * imx274 register configuration for stopping stream
461 static const struct reg_8 imx274_stop[] = {
462 {IMX274_STANDBY_REG, 0x01},
463 {IMX274_TABLE_END, 0x00}
467 * imx274 disable test pattern register configuration
469 static const struct reg_8 imx274_tp_disabled[] = {
474 {IMX274_TABLE_END, 0x00}
478 * imx274 test pattern register configuration
479 * reg 0x303D defines the test pattern modes
481 static const struct reg_8 imx274_tp_regs[] = {
487 {IMX274_TABLE_END, 0x00}
490 /* nocpiop happens to be the same number for the implemented modes */
491 static const struct imx274_mode imx274_modes[] = {
494 .wbin_ratio = 1, /* 3840 */
495 .hbin_ratio = 1, /* 2160 */
496 .init_regs = imx274_mode1_3840x2160_raw10,
497 .min_frame_len = 4550,
504 .wbin_ratio = 2, /* 1920 */
505 .hbin_ratio = 2, /* 1080 */
506 .init_regs = imx274_mode3_1920x1080_raw10,
507 .min_frame_len = 2310,
514 .wbin_ratio = 3, /* 1280 */
515 .hbin_ratio = 3, /* 720 */
516 .init_regs = imx274_mode5_1280x720_raw10,
517 .min_frame_len = 2310,
524 .wbin_ratio = 3, /* 1280 */
525 .hbin_ratio = 4, /* 540 */
526 .init_regs = imx274_mode6_1280x540_raw10,
527 .min_frame_len = 2310,
535 * struct imx274_ctrls - imx274 ctrl structure
536 * @handler: V4L2 ctrl handler structure
537 * @exposure: Pointer to expsure ctrl structure
538 * @gain: Pointer to gain ctrl structure
539 * @vflip: Pointer to vflip ctrl structure
540 * @test_pattern: Pointer to test pattern ctrl structure
542 struct imx274_ctrls {
543 struct v4l2_ctrl_handler handler;
544 struct v4l2_ctrl *exposure;
545 struct v4l2_ctrl *gain;
546 struct v4l2_ctrl *vflip;
547 struct v4l2_ctrl *test_pattern;
551 * struct stim274 - imx274 device structure
552 * @sd: V4L2 subdevice structure
553 * @pad: Media pad structure
554 * @client: Pointer to I2C client
555 * @ctrls: imx274 control structure
556 * @crop: rect to be captured
557 * @compose: compose rect, i.e. output resolution
558 * @format: V4L2 media bus frame format structure
559 * (width and height are in sync with the compose rect)
560 * @frame_rate: V4L2 frame rate structure
561 * @regmap: Pointer to regmap structure
562 * @reset_gpio: Pointer to reset gpio
563 * @supplies: List of analog and digital supply regulators
564 * @inck: Pointer to sensor input clock
565 * @lock: Mutex structure
566 * @mode: Parameters for the selected readout mode
569 struct v4l2_subdev sd;
570 struct media_pad pad;
571 struct i2c_client *client;
572 struct imx274_ctrls ctrls;
573 struct v4l2_rect crop;
574 struct v4l2_mbus_framefmt format;
575 struct v4l2_fract frame_interval;
576 struct regmap *regmap;
577 struct gpio_desc *reset_gpio;
578 struct regulator_bulk_data supplies[IMX274_NUM_SUPPLIES];
580 struct mutex lock; /* mutex lock for operations */
581 const struct imx274_mode *mode;
584 #define IMX274_ROUND(dim, step, flags) \
585 ((flags) & V4L2_SEL_FLAG_GE \
586 ? roundup((dim), (step)) \
587 : ((flags) & V4L2_SEL_FLAG_LE \
588 ? rounddown((dim), (step)) \
589 : rounddown((dim) + (step) / 2, (step))))
592 * Function declaration
594 static int imx274_set_gain(struct stimx274 *priv, struct v4l2_ctrl *ctrl);
595 static int imx274_set_exposure(struct stimx274 *priv, int val);
596 static int imx274_set_vflip(struct stimx274 *priv, int val);
597 static int imx274_set_test_pattern(struct stimx274 *priv, int val);
598 static int imx274_set_frame_interval(struct stimx274 *priv,
599 struct v4l2_fract frame_interval);
601 static inline void msleep_range(unsigned int delay_base)
603 usleep_range(delay_base * 1000, delay_base * 1000 + 500);
607 * v4l2_ctrl and v4l2_subdev related operations
609 static inline struct v4l2_subdev *ctrl_to_sd(struct v4l2_ctrl *ctrl)
611 return &container_of(ctrl->handler,
612 struct stimx274, ctrls.handler)->sd;
615 static inline struct stimx274 *to_imx274(struct v4l2_subdev *sd)
617 return container_of(sd, struct stimx274, sd);
621 * Writing a register table
623 * @priv: Pointer to device
624 * @table: Table containing register values (with optional delays)
626 * This is used to write register table into sensor's reg map.
628 * Return: 0 on success, errors otherwise
630 static int imx274_write_table(struct stimx274 *priv, const struct reg_8 table[])
632 struct regmap *regmap = priv->regmap;
634 const struct reg_8 *next;
637 int range_start = -1;
640 int max_range_vals = ARRAY_SIZE(range_vals);
642 for (next = table;; next++) {
643 if ((next->addr != range_start + range_count) ||
644 (next->addr == IMX274_TABLE_END) ||
645 (next->addr == IMX274_TABLE_WAIT_MS) ||
646 (range_count == max_range_vals)) {
647 if (range_count == 1)
648 err = regmap_write(regmap,
649 range_start, range_vals[0]);
650 else if (range_count > 1)
651 err = regmap_bulk_write(regmap, range_start,
663 /* Handle special address values */
664 if (next->addr == IMX274_TABLE_END)
667 if (next->addr == IMX274_TABLE_WAIT_MS) {
668 msleep_range(next->val);
675 if (range_start == -1)
676 range_start = next->addr;
678 range_vals[range_count++] = val;
683 static inline int imx274_write_reg(struct stimx274 *priv, u16 addr, u8 val)
687 err = regmap_write(priv->regmap, addr, val);
689 dev_err(&priv->client->dev,
690 "%s : i2c write failed, %x = %x\n", __func__,
693 dev_dbg(&priv->client->dev,
694 "%s : addr 0x%x, val=0x%x\n", __func__,
700 * imx274_read_mbreg - Read a multibyte register.
702 * Uses a bulk read where possible.
704 * @priv: Pointer to device structure
705 * @addr: Address of the LSB register. Other registers must be
706 * consecutive, least-to-most significant.
707 * @val: Pointer to store the register value (cpu endianness)
708 * @nbytes: Number of bytes to read (range: [1..3]).
709 * Other bytes are zet to 0.
711 * Return: 0 on success, errors otherwise
713 static int imx274_read_mbreg(struct stimx274 *priv, u16 addr, u32 *val,
719 err = regmap_bulk_read(priv->regmap, addr, &val_le, nbytes);
721 dev_err(&priv->client->dev,
722 "%s : i2c bulk read failed, %x (%zu bytes)\n",
723 __func__, addr, nbytes);
725 *val = le32_to_cpu(val_le);
726 dev_dbg(&priv->client->dev,
727 "%s : addr 0x%x, val=0x%x (%zu bytes)\n",
728 __func__, addr, *val, nbytes);
735 * imx274_write_mbreg - Write a multibyte register.
737 * Uses a bulk write where possible.
739 * @priv: Pointer to device structure
740 * @addr: Address of the LSB register. Other registers must be
741 * consecutive, least-to-most significant.
742 * @val: Value to be written to the register (cpu endianness)
743 * @nbytes: Number of bytes to write (range: [1..3])
745 static int imx274_write_mbreg(struct stimx274 *priv, u16 addr, u32 val,
748 __le32 val_le = cpu_to_le32(val);
751 err = regmap_bulk_write(priv->regmap, addr, &val_le, nbytes);
753 dev_err(&priv->client->dev,
754 "%s : i2c bulk write failed, %x = %x (%zu bytes)\n",
755 __func__, addr, val, nbytes);
757 dev_dbg(&priv->client->dev,
758 "%s : addr 0x%x, val=0x%x (%zu bytes)\n",
759 __func__, addr, val, nbytes);
764 * Set mode registers to start stream.
765 * @priv: Pointer to device structure
767 * Return: 0 on success, errors otherwise
769 static int imx274_mode_regs(struct stimx274 *priv)
773 err = imx274_write_table(priv, imx274_start_1);
777 err = imx274_write_table(priv, priv->mode->init_regs);
783 * imx274_start_stream - Function for starting stream per mode index
784 * @priv: Pointer to device structure
786 * Return: 0 on success, errors otherwise
788 static int imx274_start_stream(struct stimx274 *priv)
792 err = __v4l2_ctrl_handler_setup(&priv->ctrls.handler);
794 dev_err(&priv->client->dev, "Error %d setup controls\n", err);
799 * Refer to "Standby Cancel Sequence when using CSI-2" in
800 * imx274 datasheet, it should wait 10ms or more here.
801 * give it 1 extra ms for margin
804 err = imx274_write_table(priv, imx274_start_2);
809 * Refer to "Standby Cancel Sequence when using CSI-2" in
810 * imx274 datasheet, it should wait 7ms or more here.
811 * give it 1 extra ms for margin
814 err = imx274_write_table(priv, imx274_start_3);
822 * imx274_reset - Function called to reset the sensor
823 * @priv: Pointer to device structure
824 * @rst: Input value for determining the sensor's end state after reset
826 * Set the senor in reset and then
827 * if rst = 0, keep it in reset;
828 * if rst = 1, bring it out of reset.
831 static void imx274_reset(struct stimx274 *priv, int rst)
833 gpiod_set_value_cansleep(priv->reset_gpio, 0);
834 usleep_range(IMX274_RESET_DELAY1, IMX274_RESET_DELAY2);
835 gpiod_set_value_cansleep(priv->reset_gpio, !!rst);
836 usleep_range(IMX274_RESET_DELAY1, IMX274_RESET_DELAY2);
839 static int imx274_power_on(struct device *dev)
841 struct i2c_client *client = to_i2c_client(dev);
842 struct v4l2_subdev *sd = i2c_get_clientdata(client);
843 struct stimx274 *imx274 = to_imx274(sd);
846 /* keep sensor in reset before power on */
847 imx274_reset(imx274, 0);
849 ret = clk_prepare_enable(imx274->inck);
851 dev_err(&imx274->client->dev,
852 "Failed to enable input clock: %d\n", ret);
856 ret = regulator_bulk_enable(IMX274_NUM_SUPPLIES, imx274->supplies);
858 dev_err(&imx274->client->dev,
859 "Failed to enable regulators: %d\n", ret);
864 imx274_reset(imx274, 1);
869 clk_disable_unprepare(imx274->inck);
873 static int imx274_power_off(struct device *dev)
875 struct i2c_client *client = to_i2c_client(dev);
876 struct v4l2_subdev *sd = i2c_get_clientdata(client);
877 struct stimx274 *imx274 = to_imx274(sd);
879 imx274_reset(imx274, 0);
881 regulator_bulk_disable(IMX274_NUM_SUPPLIES, imx274->supplies);
883 clk_disable_unprepare(imx274->inck);
888 static int imx274_regulators_get(struct device *dev, struct stimx274 *imx274)
892 for (i = 0; i < IMX274_NUM_SUPPLIES; i++)
893 imx274->supplies[i].supply = imx274_supply_names[i];
895 return devm_regulator_bulk_get(dev, IMX274_NUM_SUPPLIES,
900 * imx274_s_ctrl - This is used to set the imx274 V4L2 controls
901 * @ctrl: V4L2 control to be set
903 * This function is used to set the V4L2 controls for the imx274 sensor.
905 * Return: 0 on success, errors otherwise
907 static int imx274_s_ctrl(struct v4l2_ctrl *ctrl)
909 struct v4l2_subdev *sd = ctrl_to_sd(ctrl);
910 struct stimx274 *imx274 = to_imx274(sd);
913 if (!pm_runtime_get_if_in_use(&imx274->client->dev))
916 dev_dbg(&imx274->client->dev,
917 "%s : s_ctrl: %s, value: %d\n", __func__,
918 ctrl->name, ctrl->val);
921 case V4L2_CID_EXPOSURE:
922 dev_dbg(&imx274->client->dev,
923 "%s : set V4L2_CID_EXPOSURE\n", __func__);
924 ret = imx274_set_exposure(imx274, ctrl->val);
928 dev_dbg(&imx274->client->dev,
929 "%s : set V4L2_CID_GAIN\n", __func__);
930 ret = imx274_set_gain(imx274, ctrl);
934 dev_dbg(&imx274->client->dev,
935 "%s : set V4L2_CID_VFLIP\n", __func__);
936 ret = imx274_set_vflip(imx274, ctrl->val);
939 case V4L2_CID_TEST_PATTERN:
940 dev_dbg(&imx274->client->dev,
941 "%s : set V4L2_CID_TEST_PATTERN\n", __func__);
942 ret = imx274_set_test_pattern(imx274, ctrl->val);
946 pm_runtime_put(&imx274->client->dev);
951 static int imx274_binning_goodness(struct stimx274 *imx274,
953 int h, int ask_h, u32 flags)
955 struct device *dev = &imx274->client->dev;
956 const int goodness = 100000;
959 if (flags & V4L2_SEL_FLAG_GE) {
966 if (flags & V4L2_SEL_FLAG_LE) {
973 val -= abs(w - ask_w);
974 val -= abs(h - ask_h);
976 dev_dbg(dev, "%s: ask %dx%d, size %dx%d, goodness %d\n",
977 __func__, ask_w, ask_h, w, h, val);
983 * __imx274_change_compose - Helper function to change binning and set both
984 * compose and format.
986 * We have two entry points to change binning: set_fmt and
987 * set_selection(COMPOSE). Both have to compute the new output size
988 * and set it in both the compose rect and the frame format size. We
989 * also need to do the same things after setting cropping to restore
992 * This function contains the common code for these three cases, it
993 * has many arguments in order to accommodate the needs of all of
996 * Must be called with imx274->lock locked.
998 * @imx274: The device object
999 * @cfg: The pad config we are editing for TRY requests
1000 * @which: V4L2_SUBDEV_FORMAT_ACTIVE or V4L2_SUBDEV_FORMAT_TRY from the caller
1001 * @width: Input-output parameter: set to the desired width before
1002 * the call, contains the chosen value after returning successfully
1003 * @height: Input-output parameter for height (see @width)
1004 * @flags: Selection flags from struct v4l2_subdev_selection, or 0 if not
1005 * available (when called from set_fmt)
1007 static int __imx274_change_compose(struct stimx274 *imx274,
1008 struct v4l2_subdev_pad_config *cfg,
1014 struct device *dev = &imx274->client->dev;
1015 const struct v4l2_rect *cur_crop;
1016 struct v4l2_mbus_framefmt *tgt_fmt;
1018 const struct imx274_mode *best_mode = &imx274_modes[0];
1019 int best_goodness = INT_MIN;
1021 if (which == V4L2_SUBDEV_FORMAT_TRY) {
1022 cur_crop = &cfg->try_crop;
1023 tgt_fmt = &cfg->try_fmt;
1025 cur_crop = &imx274->crop;
1026 tgt_fmt = &imx274->format;
1029 for (i = 0; i < ARRAY_SIZE(imx274_modes); i++) {
1030 u8 wratio = imx274_modes[i].wbin_ratio;
1031 u8 hratio = imx274_modes[i].hbin_ratio;
1033 int goodness = imx274_binning_goodness(
1035 cur_crop->width / wratio, *width,
1036 cur_crop->height / hratio, *height,
1039 if (goodness >= best_goodness) {
1040 best_goodness = goodness;
1041 best_mode = &imx274_modes[i];
1045 *width = cur_crop->width / best_mode->wbin_ratio;
1046 *height = cur_crop->height / best_mode->hbin_ratio;
1048 if (which == V4L2_SUBDEV_FORMAT_ACTIVE)
1049 imx274->mode = best_mode;
1051 dev_dbg(dev, "%s: selected %ux%u binning\n",
1052 __func__, best_mode->wbin_ratio, best_mode->hbin_ratio);
1054 tgt_fmt->width = *width;
1055 tgt_fmt->height = *height;
1056 tgt_fmt->field = V4L2_FIELD_NONE;
1062 * imx274_get_fmt - Get the pad format
1063 * @sd: Pointer to V4L2 Sub device structure
1064 * @cfg: Pointer to sub device pad information structure
1065 * @fmt: Pointer to pad level media bus format
1067 * This function is used to get the pad format information.
1069 * Return: 0 on success
1071 static int imx274_get_fmt(struct v4l2_subdev *sd,
1072 struct v4l2_subdev_pad_config *cfg,
1073 struct v4l2_subdev_format *fmt)
1075 struct stimx274 *imx274 = to_imx274(sd);
1077 mutex_lock(&imx274->lock);
1078 fmt->format = imx274->format;
1079 mutex_unlock(&imx274->lock);
1084 * imx274_set_fmt - This is used to set the pad format
1085 * @sd: Pointer to V4L2 Sub device structure
1086 * @cfg: Pointer to sub device pad information structure
1087 * @format: Pointer to pad level media bus format
1089 * This function is used to set the pad format.
1091 * Return: 0 on success
1093 static int imx274_set_fmt(struct v4l2_subdev *sd,
1094 struct v4l2_subdev_pad_config *cfg,
1095 struct v4l2_subdev_format *format)
1097 struct v4l2_mbus_framefmt *fmt = &format->format;
1098 struct stimx274 *imx274 = to_imx274(sd);
1101 mutex_lock(&imx274->lock);
1103 err = __imx274_change_compose(imx274, cfg, format->which,
1104 &fmt->width, &fmt->height, 0);
1110 * __imx274_change_compose already set width and height in the
1111 * applicable format, but we need to keep all other format
1112 * values, so do a full copy here
1114 fmt->field = V4L2_FIELD_NONE;
1115 if (format->which == V4L2_SUBDEV_FORMAT_TRY)
1116 cfg->try_fmt = *fmt;
1118 imx274->format = *fmt;
1121 mutex_unlock(&imx274->lock);
1126 static int imx274_get_selection(struct v4l2_subdev *sd,
1127 struct v4l2_subdev_pad_config *cfg,
1128 struct v4l2_subdev_selection *sel)
1130 struct stimx274 *imx274 = to_imx274(sd);
1131 const struct v4l2_rect *src_crop;
1132 const struct v4l2_mbus_framefmt *src_fmt;
1138 if (sel->target == V4L2_SEL_TGT_CROP_BOUNDS) {
1141 sel->r.width = IMX274_MAX_WIDTH;
1142 sel->r.height = IMX274_MAX_HEIGHT;
1146 if (sel->which == V4L2_SUBDEV_FORMAT_TRY) {
1147 src_crop = &cfg->try_crop;
1148 src_fmt = &cfg->try_fmt;
1150 src_crop = &imx274->crop;
1151 src_fmt = &imx274->format;
1154 mutex_lock(&imx274->lock);
1156 switch (sel->target) {
1157 case V4L2_SEL_TGT_CROP:
1160 case V4L2_SEL_TGT_COMPOSE_BOUNDS:
1163 sel->r.width = src_crop->width;
1164 sel->r.height = src_crop->height;
1166 case V4L2_SEL_TGT_COMPOSE:
1169 sel->r.width = src_fmt->width;
1170 sel->r.height = src_fmt->height;
1176 mutex_unlock(&imx274->lock);
1181 static int imx274_set_selection_crop(struct stimx274 *imx274,
1182 struct v4l2_subdev_pad_config *cfg,
1183 struct v4l2_subdev_selection *sel)
1185 struct v4l2_rect *tgt_crop;
1186 struct v4l2_rect new_crop;
1190 * h_step could be 12 or 24 depending on the binning. But we
1191 * won't know the binning until we choose the mode later in
1192 * __imx274_change_compose(). Thus let's be safe and use the
1193 * most conservative value in all cases.
1195 const u32 h_step = 24;
1197 new_crop.width = min_t(u32,
1198 IMX274_ROUND(sel->r.width, h_step, sel->flags),
1201 /* Constraint: HTRIMMING_END - HTRIMMING_START >= 144 */
1202 if (new_crop.width < 144)
1203 new_crop.width = 144;
1205 new_crop.left = min_t(u32,
1206 IMX274_ROUND(sel->r.left, h_step, 0),
1207 IMX274_MAX_WIDTH - new_crop.width);
1209 new_crop.height = min_t(u32,
1210 IMX274_ROUND(sel->r.height, 2, sel->flags),
1213 new_crop.top = min_t(u32, IMX274_ROUND(sel->r.top, 2, 0),
1214 IMX274_MAX_HEIGHT - new_crop.height);
1218 if (sel->which == V4L2_SUBDEV_FORMAT_TRY)
1219 tgt_crop = &cfg->try_crop;
1221 tgt_crop = &imx274->crop;
1223 mutex_lock(&imx274->lock);
1225 size_changed = (new_crop.width != tgt_crop->width ||
1226 new_crop.height != tgt_crop->height);
1228 /* __imx274_change_compose needs the new size in *tgt_crop */
1229 *tgt_crop = new_crop;
1231 /* if crop size changed then reset the output image size */
1233 __imx274_change_compose(imx274, cfg, sel->which,
1234 &new_crop.width, &new_crop.height,
1237 mutex_unlock(&imx274->lock);
1242 static int imx274_set_selection(struct v4l2_subdev *sd,
1243 struct v4l2_subdev_pad_config *cfg,
1244 struct v4l2_subdev_selection *sel)
1246 struct stimx274 *imx274 = to_imx274(sd);
1251 if (sel->target == V4L2_SEL_TGT_CROP)
1252 return imx274_set_selection_crop(imx274, cfg, sel);
1254 if (sel->target == V4L2_SEL_TGT_COMPOSE) {
1257 mutex_lock(&imx274->lock);
1258 err = __imx274_change_compose(imx274, cfg, sel->which,
1259 &sel->r.width, &sel->r.height,
1261 mutex_unlock(&imx274->lock);
1264 * __imx274_change_compose already set width and
1265 * height in set->r, we still need to set top-left
1278 static int imx274_apply_trimming(struct stimx274 *imx274)
1289 h_start = imx274->crop.left + 12;
1290 h_end = h_start + imx274->crop.width;
1292 /* Use the minimum allowed value of HMAX */
1293 /* Note: except in mode 1, (width / 16 + 23) is always < hmax_min */
1294 /* Note: 260 is the minimum HMAX in all implemented modes */
1295 hmax = max_t(u32, 260, (imx274->crop.width) / 16 + 23);
1297 /* invert v_pos if VFLIP */
1298 v_pos = imx274->ctrls.vflip->cur.val ?
1299 (-imx274->crop.top / 2) : (imx274->crop.top / 2);
1300 v_cut = (IMX274_MAX_HEIGHT - imx274->crop.height) / 2;
1301 write_v_size = imx274->crop.height + 22;
1302 y_out_size = imx274->crop.height;
1304 err = imx274_write_mbreg(imx274, IMX274_HMAX_REG_LSB, hmax, 2);
1306 err = imx274_write_mbreg(imx274, IMX274_HTRIM_EN_REG, 1, 1);
1308 err = imx274_write_mbreg(imx274, IMX274_HTRIM_START_REG_LSB,
1311 err = imx274_write_mbreg(imx274, IMX274_HTRIM_END_REG_LSB,
1314 err = imx274_write_mbreg(imx274, IMX274_VWIDCUTEN_REG, 1, 1);
1316 err = imx274_write_mbreg(imx274, IMX274_VWIDCUT_REG_LSB,
1319 err = imx274_write_mbreg(imx274, IMX274_VWINPOS_REG_LSB,
1322 err = imx274_write_mbreg(imx274, IMX274_WRITE_VSIZE_REG_LSB,
1325 err = imx274_write_mbreg(imx274, IMX274_Y_OUT_SIZE_REG_LSB,
1332 * imx274_g_frame_interval - Get the frame interval
1333 * @sd: Pointer to V4L2 Sub device structure
1334 * @fi: Pointer to V4l2 Sub device frame interval structure
1336 * This function is used to get the frame interval.
1338 * Return: 0 on success
1340 static int imx274_g_frame_interval(struct v4l2_subdev *sd,
1341 struct v4l2_subdev_frame_interval *fi)
1343 struct stimx274 *imx274 = to_imx274(sd);
1345 fi->interval = imx274->frame_interval;
1346 dev_dbg(&imx274->client->dev, "%s frame rate = %d / %d\n",
1347 __func__, imx274->frame_interval.numerator,
1348 imx274->frame_interval.denominator);
1354 * imx274_s_frame_interval - Set the frame interval
1355 * @sd: Pointer to V4L2 Sub device structure
1356 * @fi: Pointer to V4l2 Sub device frame interval structure
1358 * This function is used to set the frame intervavl.
1360 * Return: 0 on success
1362 static int imx274_s_frame_interval(struct v4l2_subdev *sd,
1363 struct v4l2_subdev_frame_interval *fi)
1365 struct stimx274 *imx274 = to_imx274(sd);
1366 struct v4l2_ctrl *ctrl = imx274->ctrls.exposure;
1370 mutex_lock(&imx274->lock);
1371 ret = imx274_set_frame_interval(imx274, fi->interval);
1374 fi->interval = imx274->frame_interval;
1377 * exposure time range is decided by frame interval
1378 * need to update it after frame interval changes
1380 min = IMX274_MIN_EXPOSURE_TIME;
1381 max = fi->interval.numerator * 1000000
1382 / fi->interval.denominator;
1384 ret = __v4l2_ctrl_modify_range(ctrl, min, max, 1, def);
1386 dev_err(&imx274->client->dev,
1387 "Exposure ctrl range update failed\n");
1391 /* update exposure time accordingly */
1392 imx274_set_exposure(imx274, ctrl->val);
1394 dev_dbg(&imx274->client->dev, "set frame interval to %uus\n",
1395 fi->interval.numerator * 1000000
1396 / fi->interval.denominator);
1400 mutex_unlock(&imx274->lock);
1406 * imx274_load_default - load default control values
1407 * @priv: Pointer to device structure
1409 * Return: 0 on success, errors otherwise
1411 static void imx274_load_default(struct stimx274 *priv)
1413 /* load default control values */
1414 priv->frame_interval.numerator = 1;
1415 priv->frame_interval.denominator = IMX274_DEF_FRAME_RATE;
1416 priv->ctrls.exposure->val = 1000000 / IMX274_DEF_FRAME_RATE;
1417 priv->ctrls.gain->val = IMX274_DEF_GAIN;
1418 priv->ctrls.vflip->val = 0;
1419 priv->ctrls.test_pattern->val = TEST_PATTERN_DISABLED;
1423 * imx274_s_stream - It is used to start/stop the streaming.
1424 * @sd: V4L2 Sub device
1425 * @on: Flag (True / False)
1427 * This function controls the start or stop of streaming for the
1430 * Return: 0 on success, errors otherwise
1432 static int imx274_s_stream(struct v4l2_subdev *sd, int on)
1434 struct stimx274 *imx274 = to_imx274(sd);
1437 dev_dbg(&imx274->client->dev, "%s : %s, mode index = %td\n", __func__,
1438 on ? "Stream Start" : "Stream Stop",
1439 imx274->mode - &imx274_modes[0]);
1441 mutex_lock(&imx274->lock);
1444 ret = pm_runtime_get_sync(&imx274->client->dev);
1446 pm_runtime_put_noidle(&imx274->client->dev);
1447 mutex_unlock(&imx274->lock);
1451 /* load mode registers */
1452 ret = imx274_mode_regs(imx274);
1456 ret = imx274_apply_trimming(imx274);
1461 * update frame rate & expsoure. if the last mode is different,
1462 * HMAX could be changed. As the result, frame rate & exposure
1464 * gain is not affected.
1466 ret = imx274_set_frame_interval(imx274,
1467 imx274->frame_interval);
1472 ret = imx274_start_stream(imx274);
1477 ret = imx274_write_table(imx274, imx274_stop);
1481 pm_runtime_put(&imx274->client->dev);
1484 mutex_unlock(&imx274->lock);
1485 dev_dbg(&imx274->client->dev, "%s : Done\n", __func__);
1489 pm_runtime_put(&imx274->client->dev);
1490 mutex_unlock(&imx274->lock);
1491 dev_err(&imx274->client->dev, "s_stream failed\n");
1496 * imx274_get_frame_length - Function for obtaining current frame length
1497 * @priv: Pointer to device structure
1498 * @val: Pointer to obainted value
1500 * frame_length = vmax x (svr + 1), in unit of hmax.
1502 * Return: 0 on success
1504 static int imx274_get_frame_length(struct stimx274 *priv, u32 *val)
1510 err = imx274_read_mbreg(priv, IMX274_SVR_REG_LSB, &svr, 2);
1514 err = imx274_read_mbreg(priv, IMX274_VMAX_REG_3, &vmax, 3);
1518 *val = vmax * (svr + 1);
1523 dev_err(&priv->client->dev, "%s error = %d\n", __func__, err);
1527 static int imx274_clamp_coarse_time(struct stimx274 *priv, u32 *val,
1532 err = imx274_get_frame_length(priv, frame_length);
1536 if (*frame_length < priv->mode->min_frame_len)
1537 *frame_length = priv->mode->min_frame_len;
1539 *val = *frame_length - *val; /* convert to raw shr */
1540 if (*val > *frame_length - IMX274_SHR_LIMIT_CONST)
1541 *val = *frame_length - IMX274_SHR_LIMIT_CONST;
1542 else if (*val < priv->mode->min_SHR)
1543 *val = priv->mode->min_SHR;
1549 * imx274_set_digital gain - Function called when setting digital gain
1550 * @priv: Pointer to device structure
1551 * @dgain: Value of digital gain.
1553 * Digital gain has only 4 steps: 1x, 2x, 4x, and 8x
1555 * Return: 0 on success
1557 static int imx274_set_digital_gain(struct stimx274 *priv, u32 dgain)
1561 reg_val = ffs(dgain);
1566 reg_val = clamp(reg_val, (u8)0, (u8)3);
1568 return imx274_write_reg(priv, IMX274_DIGITAL_GAIN_REG,
1569 reg_val & IMX274_MASK_LSB_4_BITS);
1573 * imx274_set_gain - Function called when setting gain
1574 * @priv: Pointer to device structure
1575 * @val: Value of gain. the real value = val << IMX274_GAIN_SHIFT;
1576 * @ctrl: v4l2 control pointer
1578 * Set the gain based on input value.
1579 * The caller should hold the mutex lock imx274->lock if necessary
1581 * Return: 0 on success
1583 static int imx274_set_gain(struct stimx274 *priv, struct v4l2_ctrl *ctrl)
1586 u32 gain, analog_gain, digital_gain, gain_reg;
1588 gain = (u32)(ctrl->val);
1590 dev_dbg(&priv->client->dev,
1591 "%s : input gain = %d.%d\n", __func__,
1592 gain >> IMX274_GAIN_SHIFT,
1593 ((gain & IMX274_GAIN_SHIFT_MASK) * 100) >> IMX274_GAIN_SHIFT);
1595 if (gain > IMX274_MAX_DIGITAL_GAIN * IMX274_MAX_ANALOG_GAIN)
1596 gain = IMX274_MAX_DIGITAL_GAIN * IMX274_MAX_ANALOG_GAIN;
1597 else if (gain < IMX274_MIN_GAIN)
1598 gain = IMX274_MIN_GAIN;
1600 if (gain <= IMX274_MAX_ANALOG_GAIN)
1602 else if (gain <= IMX274_MAX_ANALOG_GAIN * 2)
1604 else if (gain <= IMX274_MAX_ANALOG_GAIN * 4)
1607 digital_gain = IMX274_MAX_DIGITAL_GAIN;
1609 analog_gain = gain / digital_gain;
1611 dev_dbg(&priv->client->dev,
1612 "%s : digital gain = %d, analog gain = %d.%d\n",
1613 __func__, digital_gain, analog_gain >> IMX274_GAIN_SHIFT,
1614 ((analog_gain & IMX274_GAIN_SHIFT_MASK) * 100)
1615 >> IMX274_GAIN_SHIFT);
1617 err = imx274_set_digital_gain(priv, digital_gain);
1621 /* convert to register value, refer to imx274 datasheet */
1622 gain_reg = (u32)IMX274_GAIN_CONST -
1623 (IMX274_GAIN_CONST << IMX274_GAIN_SHIFT) / analog_gain;
1624 if (gain_reg > IMX274_GAIN_REG_MAX)
1625 gain_reg = IMX274_GAIN_REG_MAX;
1627 err = imx274_write_mbreg(priv, IMX274_ANALOG_GAIN_ADDR_LSB, gain_reg,
1632 if (IMX274_GAIN_CONST - gain_reg == 0) {
1637 /* convert register value back to gain value */
1638 ctrl->val = (IMX274_GAIN_CONST << IMX274_GAIN_SHIFT)
1639 / (IMX274_GAIN_CONST - gain_reg) * digital_gain;
1641 dev_dbg(&priv->client->dev,
1642 "%s : GAIN control success, gain_reg = %d, new gain = %d\n",
1643 __func__, gain_reg, ctrl->val);
1648 dev_err(&priv->client->dev, "%s error = %d\n", __func__, err);
1653 * imx274_set_coarse_time - Function called when setting SHR value
1654 * @priv: Pointer to device structure
1655 * @val: Value for exposure time in number of line_length, or [HMAX]
1657 * Set SHR value based on input value.
1659 * Return: 0 on success
1661 static int imx274_set_coarse_time(struct stimx274 *priv, u32 *val)
1664 u32 coarse_time, frame_length;
1668 /* convert exposure_time to appropriate SHR value */
1669 err = imx274_clamp_coarse_time(priv, &coarse_time, &frame_length);
1673 err = imx274_write_mbreg(priv, IMX274_SHR_REG_LSB, coarse_time, 2);
1677 *val = frame_length - coarse_time;
1681 dev_err(&priv->client->dev, "%s error = %d\n", __func__, err);
1686 * imx274_set_exposure - Function called when setting exposure time
1687 * @priv: Pointer to device structure
1688 * @val: Variable for exposure time, in the unit of micro-second
1690 * Set exposure time based on input value.
1691 * The caller should hold the mutex lock imx274->lock if necessary
1693 * Return: 0 on success
1695 static int imx274_set_exposure(struct stimx274 *priv, int val)
1699 u32 coarse_time; /* exposure time in unit of line (HMAX)*/
1701 dev_dbg(&priv->client->dev,
1702 "%s : EXPOSURE control input = %d\n", __func__, val);
1704 /* step 1: convert input exposure_time (val) into number of 1[HMAX] */
1706 err = imx274_read_mbreg(priv, IMX274_HMAX_REG_LSB, &hmax, 2);
1715 coarse_time = (IMX274_PIXCLK_CONST1 / IMX274_PIXCLK_CONST2 * val
1716 - priv->mode->nocpiop) / hmax;
1718 /* step 2: convert exposure_time into SHR value */
1721 err = imx274_set_coarse_time(priv, &coarse_time);
1725 priv->ctrls.exposure->val =
1726 (coarse_time * hmax + priv->mode->nocpiop)
1727 / (IMX274_PIXCLK_CONST1 / IMX274_PIXCLK_CONST2);
1729 dev_dbg(&priv->client->dev,
1730 "%s : EXPOSURE control success\n", __func__);
1734 dev_err(&priv->client->dev, "%s error = %d\n", __func__, err);
1740 * imx274_set_vflip - Function called when setting vertical flip
1741 * @priv: Pointer to device structure
1742 * @val: Value for vflip setting
1744 * Set vertical flip based on input value.
1745 * val = 0: normal, no vertical flip
1746 * val = 1: vertical flip enabled
1747 * The caller should hold the mutex lock imx274->lock if necessary
1749 * Return: 0 on success
1751 static int imx274_set_vflip(struct stimx274 *priv, int val)
1755 err = imx274_write_reg(priv, IMX274_VFLIP_REG, val);
1757 dev_err(&priv->client->dev, "VFLIP control error\n");
1761 dev_dbg(&priv->client->dev,
1762 "%s : VFLIP control success\n", __func__);
1768 * imx274_set_test_pattern - Function called when setting test pattern
1769 * @priv: Pointer to device structure
1770 * @val: Variable for test pattern
1772 * Set to different test patterns based on input value.
1774 * Return: 0 on success
1776 static int imx274_set_test_pattern(struct stimx274 *priv, int val)
1780 if (val == TEST_PATTERN_DISABLED) {
1781 err = imx274_write_table(priv, imx274_tp_disabled);
1782 } else if (val <= TEST_PATTERN_V_COLOR_BARS) {
1783 err = imx274_write_reg(priv, IMX274_TEST_PATTERN_REG, val - 1);
1785 err = imx274_write_table(priv, imx274_tp_regs);
1791 dev_dbg(&priv->client->dev,
1792 "%s : TEST PATTERN control success\n", __func__);
1794 dev_err(&priv->client->dev, "%s error = %d\n", __func__, err);
1800 * imx274_set_frame_length - Function called when setting frame length
1801 * @priv: Pointer to device structure
1802 * @val: Variable for frame length (= VMAX, i.e. vertical drive period length)
1804 * Set frame length based on input value.
1806 * Return: 0 on success
1808 static int imx274_set_frame_length(struct stimx274 *priv, u32 val)
1813 dev_dbg(&priv->client->dev, "%s : input length = %d\n",
1816 frame_length = (u32)val;
1818 err = imx274_write_mbreg(priv, IMX274_VMAX_REG_3, frame_length, 3);
1825 dev_err(&priv->client->dev, "%s error = %d\n", __func__, err);
1830 * imx274_set_frame_interval - Function called when setting frame interval
1831 * @priv: Pointer to device structure
1832 * @frame_interval: Variable for frame interval
1834 * Change frame interval by updating VMAX value
1835 * The caller should hold the mutex lock imx274->lock if necessary
1837 * Return: 0 on success
1839 static int imx274_set_frame_interval(struct stimx274 *priv,
1840 struct v4l2_fract frame_interval)
1843 u32 frame_length, req_frame_rate;
1847 dev_dbg(&priv->client->dev, "%s: input frame interval = %d / %d",
1848 __func__, frame_interval.numerator,
1849 frame_interval.denominator);
1851 if (frame_interval.numerator == 0 || frame_interval.denominator == 0) {
1852 frame_interval.denominator = IMX274_DEF_FRAME_RATE;
1853 frame_interval.numerator = 1;
1856 req_frame_rate = (u32)(frame_interval.denominator
1857 / frame_interval.numerator);
1859 /* boundary check */
1860 if (req_frame_rate > priv->mode->max_fps) {
1861 frame_interval.numerator = 1;
1862 frame_interval.denominator = priv->mode->max_fps;
1863 } else if (req_frame_rate < IMX274_MIN_FRAME_RATE) {
1864 frame_interval.numerator = 1;
1865 frame_interval.denominator = IMX274_MIN_FRAME_RATE;
1869 * VMAX = 1/frame_rate x 72M / (SVR+1) / HMAX
1870 * frame_length (i.e. VMAX) = (frame_interval) x 72M /(SVR+1) / HMAX
1873 err = imx274_read_mbreg(priv, IMX274_SVR_REG_LSB, &svr, 2);
1877 dev_dbg(&priv->client->dev,
1878 "%s : register SVR = %d\n", __func__, svr);
1880 err = imx274_read_mbreg(priv, IMX274_HMAX_REG_LSB, &hmax, 2);
1884 dev_dbg(&priv->client->dev,
1885 "%s : register HMAX = %d\n", __func__, hmax);
1887 if (hmax == 0 || frame_interval.denominator == 0) {
1892 frame_length = IMX274_PIXCLK_CONST1 / (svr + 1) / hmax
1893 * frame_interval.numerator
1894 / frame_interval.denominator;
1896 err = imx274_set_frame_length(priv, frame_length);
1900 priv->frame_interval = frame_interval;
1904 dev_err(&priv->client->dev, "%s error = %d\n", __func__, err);
1908 static const struct v4l2_subdev_pad_ops imx274_pad_ops = {
1909 .get_fmt = imx274_get_fmt,
1910 .set_fmt = imx274_set_fmt,
1911 .get_selection = imx274_get_selection,
1912 .set_selection = imx274_set_selection,
1915 static const struct v4l2_subdev_video_ops imx274_video_ops = {
1916 .g_frame_interval = imx274_g_frame_interval,
1917 .s_frame_interval = imx274_s_frame_interval,
1918 .s_stream = imx274_s_stream,
1921 static const struct v4l2_subdev_ops imx274_subdev_ops = {
1922 .pad = &imx274_pad_ops,
1923 .video = &imx274_video_ops,
1926 static const struct v4l2_ctrl_ops imx274_ctrl_ops = {
1927 .s_ctrl = imx274_s_ctrl,
1930 static const struct of_device_id imx274_of_id_table[] = {
1931 { .compatible = "sony,imx274" },
1934 MODULE_DEVICE_TABLE(of, imx274_of_id_table);
1936 static const struct i2c_device_id imx274_id[] = {
1940 MODULE_DEVICE_TABLE(i2c, imx274_id);
1942 static int imx274_probe(struct i2c_client *client)
1944 struct v4l2_subdev *sd;
1945 struct stimx274 *imx274;
1948 /* initialize imx274 */
1949 imx274 = devm_kzalloc(&client->dev, sizeof(*imx274), GFP_KERNEL);
1953 mutex_init(&imx274->lock);
1955 imx274->inck = devm_clk_get_optional(&client->dev, "inck");
1956 if (IS_ERR(imx274->inck))
1957 return PTR_ERR(imx274->inck);
1959 ret = imx274_regulators_get(&client->dev, imx274);
1961 dev_err(&client->dev,
1962 "Failed to get power regulators, err: %d\n", ret);
1966 /* initialize format */
1967 imx274->mode = &imx274_modes[0];
1968 imx274->crop.width = IMX274_MAX_WIDTH;
1969 imx274->crop.height = IMX274_MAX_HEIGHT;
1970 imx274->format.width = imx274->crop.width / imx274->mode->wbin_ratio;
1971 imx274->format.height = imx274->crop.height / imx274->mode->hbin_ratio;
1972 imx274->format.field = V4L2_FIELD_NONE;
1973 imx274->format.code = MEDIA_BUS_FMT_SRGGB10_1X10;
1974 imx274->format.colorspace = V4L2_COLORSPACE_SRGB;
1975 imx274->frame_interval.numerator = 1;
1976 imx274->frame_interval.denominator = IMX274_DEF_FRAME_RATE;
1978 /* initialize regmap */
1979 imx274->regmap = devm_regmap_init_i2c(client, &imx274_regmap_config);
1980 if (IS_ERR(imx274->regmap)) {
1981 dev_err(&client->dev,
1982 "regmap init failed: %ld\n", PTR_ERR(imx274->regmap));
1987 /* initialize subdevice */
1988 imx274->client = client;
1990 v4l2_i2c_subdev_init(sd, client, &imx274_subdev_ops);
1991 sd->flags |= V4L2_SUBDEV_FL_HAS_DEVNODE | V4L2_SUBDEV_FL_HAS_EVENTS;
1993 /* initialize subdev media pad */
1994 imx274->pad.flags = MEDIA_PAD_FL_SOURCE;
1995 sd->entity.function = MEDIA_ENT_F_CAM_SENSOR;
1996 ret = media_entity_pads_init(&sd->entity, 1, &imx274->pad);
1998 dev_err(&client->dev,
1999 "%s : media entity init Failed %d\n", __func__, ret);
2003 /* initialize sensor reset gpio */
2004 imx274->reset_gpio = devm_gpiod_get_optional(&client->dev, "reset",
2006 if (IS_ERR(imx274->reset_gpio)) {
2007 if (PTR_ERR(imx274->reset_gpio) != -EPROBE_DEFER)
2008 dev_err(&client->dev, "Reset GPIO not setup in DT");
2009 ret = PTR_ERR(imx274->reset_gpio);
2013 /* power on the sensor */
2014 ret = imx274_power_on(&client->dev);
2016 dev_err(&client->dev,
2017 "%s : imx274 power on failed\n", __func__);
2021 /* initialize controls */
2022 ret = v4l2_ctrl_handler_init(&imx274->ctrls.handler, 4);
2024 dev_err(&client->dev,
2025 "%s : ctrl handler init Failed\n", __func__);
2029 imx274->ctrls.handler.lock = &imx274->lock;
2031 /* add new controls */
2032 imx274->ctrls.test_pattern = v4l2_ctrl_new_std_menu_items(
2033 &imx274->ctrls.handler, &imx274_ctrl_ops,
2034 V4L2_CID_TEST_PATTERN,
2035 ARRAY_SIZE(tp_qmenu) - 1, 0, 0, tp_qmenu);
2037 imx274->ctrls.gain = v4l2_ctrl_new_std(
2038 &imx274->ctrls.handler,
2040 V4L2_CID_GAIN, IMX274_MIN_GAIN,
2041 IMX274_MAX_DIGITAL_GAIN * IMX274_MAX_ANALOG_GAIN, 1,
2044 imx274->ctrls.exposure = v4l2_ctrl_new_std(
2045 &imx274->ctrls.handler,
2047 V4L2_CID_EXPOSURE, IMX274_MIN_EXPOSURE_TIME,
2048 1000000 / IMX274_DEF_FRAME_RATE, 1,
2049 IMX274_MIN_EXPOSURE_TIME);
2051 imx274->ctrls.vflip = v4l2_ctrl_new_std(
2052 &imx274->ctrls.handler,
2054 V4L2_CID_VFLIP, 0, 1, 1, 0);
2056 imx274->sd.ctrl_handler = &imx274->ctrls.handler;
2057 if (imx274->ctrls.handler.error) {
2058 ret = imx274->ctrls.handler.error;
2062 /* load default control values */
2063 imx274_load_default(imx274);
2065 /* register subdevice */
2066 ret = v4l2_async_register_subdev(sd);
2068 dev_err(&client->dev,
2069 "%s : v4l2_async_register_subdev failed %d\n",
2074 pm_runtime_set_active(&client->dev);
2075 pm_runtime_enable(&client->dev);
2076 pm_runtime_idle(&client->dev);
2078 dev_info(&client->dev, "imx274 : imx274 probe success !\n");
2082 v4l2_ctrl_handler_free(&imx274->ctrls.handler);
2084 imx274_power_off(&client->dev);
2086 media_entity_cleanup(&sd->entity);
2088 mutex_destroy(&imx274->lock);
2092 static int imx274_remove(struct i2c_client *client)
2094 struct v4l2_subdev *sd = i2c_get_clientdata(client);
2095 struct stimx274 *imx274 = to_imx274(sd);
2097 pm_runtime_disable(&client->dev);
2098 if (!pm_runtime_status_suspended(&client->dev))
2099 imx274_power_off(&client->dev);
2100 pm_runtime_set_suspended(&client->dev);
2102 v4l2_async_unregister_subdev(sd);
2103 v4l2_ctrl_handler_free(&imx274->ctrls.handler);
2105 media_entity_cleanup(&sd->entity);
2106 mutex_destroy(&imx274->lock);
2110 static const struct dev_pm_ops imx274_pm_ops = {
2111 SET_RUNTIME_PM_OPS(imx274_power_off, imx274_power_on, NULL)
2114 static struct i2c_driver imx274_i2c_driver = {
2116 .name = DRIVER_NAME,
2117 .pm = &imx274_pm_ops,
2118 .of_match_table = imx274_of_id_table,
2120 .probe_new = imx274_probe,
2121 .remove = imx274_remove,
2122 .id_table = imx274_id,
2125 module_i2c_driver(imx274_i2c_driver);
2128 MODULE_DESCRIPTION("IMX274 CMOS Image Sensor driver");
2129 MODULE_LICENSE("GPL v2");