/* * ov23850.c - ov23850 sensor driver * * Copyright (c) 2013-2017, NVIDIA CORPORATION. All rights reserved. * * This program is free software; you can redistribute it and/or modify it * under the terms and conditions of the GNU General Public License, * version 2, as published by the Free Software Foundation. * * This program is distributed in the hope it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License * along with this program. If not, see . */ #include #include #include #include #include #include #include #include #include #include #include #include #include "ov23850_mode_tbls.h" #define CREATE_TRACE_POINTS #include #define OV23850_MAX_COARSE_DIFF 0x20 #define OV23850_GAIN_SHIFT 8 #define OV23850_MIN_GAIN (1 << OV23850_GAIN_SHIFT) #define OV23850_MAX_GAIN (16 << OV23850_GAIN_SHIFT) #define OV23850_MIN_FRAME_LENGTH (0x0) #define OV23850_MAX_FRAME_LENGTH (0x7fff) #define OV23850_MIN_EXPOSURE_COARSE (0x0002) #define OV23850_MAX_EXPOSURE_COARSE \ (OV23850_MAX_FRAME_LENGTH-OV23850_MAX_COARSE_DIFF) #define OV23850_DEFAULT_GAIN OV23850_MIN_GAIN #define OV23850_DEFAULT_FRAME_LENGTH (0x12C6) #define OV23850_DEFAULT_EXPOSURE_COARSE \ (OV23850_DEFAULT_FRAME_LENGTH-OV23850_MAX_COARSE_DIFF) #define OV23850_DEFAULT_MODE OV23850_MODE_5632X3168 #define OV23850_DEFAULT_WIDTH 5632 #define OV23850_DEFAULT_HEIGHT 3168 #define OV23850_DEFAULT_DATAFMT MEDIA_BUS_FMT_SBGGR10_1X10 #define OV23850_DEFAULT_CLK_FREQ 24000000 struct ov23850 { struct mutex ov23850_camera_lock; struct camera_common_power_rail power; int numctrls; struct v4l2_ctrl_handler ctrl_handler; #if 0 struct camera_common_eeprom_data eeprom[OV23850_EEPROM_NUM_BLOCKS]; u8 eeprom_buf[OV23850_EEPROM_SIZE]; #endif struct i2c_client *i2c_client; struct v4l2_subdev *subdev; struct media_pad pad; u32 frame_length; s32 group_hold_prev; bool group_hold_en; struct regmap *regmap; struct camera_common_data *s_data; struct camera_common_pdata *pdata; struct v4l2_ctrl *ctrls[]; }; static const struct regmap_config sensor_regmap_config = { .reg_bits = 16, .val_bits = 8, .cache_type = REGCACHE_RBTREE, }; static u16 ov23850_to_gain(u32 rep, int shift) { u16 gain; int gain_int; int gain_dec; int min_int = (1 << shift); int step = 1; int num_step; int i; if (rep < 0x0100) rep = 0x0100; else if (rep > 0x0F80) rep = 0x0F80; /* last 4 bit of rep is * decimal representation of gain */ gain_int = (int)(rep >> shift); gain_dec = (int)(rep & ~(0xffff << shift)); for (i = 1; gain_int >> i != 0; i++) ; step = step << (5 - i); num_step = gain_dec * step / min_int; gain = 16 * gain_int + 16 * num_step / step; return gain; } static int ov23850_s_ctrl(struct v4l2_ctrl *ctrl); static const struct v4l2_ctrl_ops ov23850_ctrl_ops = { .s_ctrl = ov23850_s_ctrl, }; static struct v4l2_ctrl_config ctrl_config_list[] = { /* Do not change the name field for the controls! */ { .ops = &ov23850_ctrl_ops, .id = TEGRA_CAMERA_CID_GAIN, .name = "Gain", .type = V4L2_CTRL_TYPE_INTEGER, .flags = V4L2_CTRL_FLAG_SLIDER, .min = OV23850_MIN_GAIN, .max = OV23850_MAX_GAIN, .def = OV23850_DEFAULT_GAIN, .step = 1, }, { .ops = &ov23850_ctrl_ops, .id = TEGRA_CAMERA_CID_FRAME_LENGTH, .name = "Frame Length", .type = V4L2_CTRL_TYPE_INTEGER, .flags = V4L2_CTRL_FLAG_SLIDER, .min = OV23850_MIN_FRAME_LENGTH, .max = OV23850_MAX_FRAME_LENGTH, .def = OV23850_DEFAULT_FRAME_LENGTH, .step = 1, }, { .ops = &ov23850_ctrl_ops, .id = TEGRA_CAMERA_CID_COARSE_TIME, .name = "Coarse Time", .type = V4L2_CTRL_TYPE_INTEGER, .flags = V4L2_CTRL_FLAG_SLIDER, .min = OV23850_MIN_EXPOSURE_COARSE, .max = OV23850_MAX_EXPOSURE_COARSE, .def = OV23850_DEFAULT_EXPOSURE_COARSE, .step = 1, }, { .ops = &ov23850_ctrl_ops, .id = TEGRA_CAMERA_CID_COARSE_TIME_SHORT, .name = "Coarse Time Short", .type = V4L2_CTRL_TYPE_INTEGER, .flags = V4L2_CTRL_FLAG_SLIDER, .min = OV23850_MIN_EXPOSURE_COARSE, .max = OV23850_MAX_EXPOSURE_COARSE, .def = OV23850_DEFAULT_EXPOSURE_COARSE, .step = 1, }, { .ops = &ov23850_ctrl_ops, .id = TEGRA_CAMERA_CID_GROUP_HOLD, .name = "Group Hold", .type = V4L2_CTRL_TYPE_INTEGER_MENU, .min = 0, .max = ARRAY_SIZE(switch_ctrl_qmenu) - 1, .menu_skip_mask = 0, .def = 0, .qmenu_int = switch_ctrl_qmenu, }, { .ops = &ov23850_ctrl_ops, .id = TEGRA_CAMERA_CID_HDR_EN, .name = "HDR enable", .type = V4L2_CTRL_TYPE_INTEGER_MENU, .min = 0, .max = 0, .menu_skip_mask = 0, .def = 0, .qmenu_int = switch_ctrl_qmenu, }, { .ops = &ov23850_ctrl_ops, .id = TEGRA_CAMERA_CID_EEPROM_DATA, .name = "EEPROM Data", .type = V4L2_CTRL_TYPE_STRING, .flags = V4L2_CTRL_FLAG_VOLATILE, .min = 0, .max = OV23850_EEPROM_STR_SIZE, .step = 2, }, { .ops = &ov23850_ctrl_ops, .id = TEGRA_CAMERA_CID_OTP_DATA, .name = "OTP Data", .type = V4L2_CTRL_TYPE_STRING, .flags = V4L2_CTRL_FLAG_READ_ONLY, .min = 0, .max = OV23850_OTP_STR_SIZE, .step = 2, }, { .ops = &ov23850_ctrl_ops, .id = TEGRA_CAMERA_CID_FUSE_ID, .name = "Fuse ID", .type = V4L2_CTRL_TYPE_STRING, .flags = V4L2_CTRL_FLAG_READ_ONLY, .min = 0, .max = OV23850_FUSE_ID_STR_SIZE, .step = 2, }, }; static inline void ov23850_get_frame_length_regs(ov23850_reg *regs, u32 frame_length) { regs->addr = OV23850_FRAME_LENGTH_ADDR_MSB; regs->val = (frame_length >> 8) & 0x7f; (regs + 1)->addr = OV23850_FRAME_LENGTH_ADDR_LSB; (regs + 1)->val = (frame_length) & 0xff; } static inline void ov23850_get_coarse_time_regs(ov23850_reg *regs, u32 coarse_time) { regs->addr = OV23850_COARSE_TIME_ADDR_MSB; regs->val = (coarse_time >> 8) & 0x7f; (regs + 1)->addr = OV23850_COARSE_TIME_ADDR_LSB; (regs + 1)->val = (coarse_time) & 0xff; } static inline void ov23850_get_coarse_time_short_regs(ov23850_reg *regs, u32 coarse_time) { regs->addr = OV23850_COARSE_TIME_SHORT_ADDR_MSB; regs->val = (coarse_time >> 8) & 0xff; (regs + 1)->addr = OV23850_COARSE_TIME_SHORT_ADDR_LSB; (regs + 1)->val = (coarse_time) & 0xff; } static inline void ov23850_get_gain_reg(ov23850_reg *regs, u16 gain) { regs->addr = OV23850_GAIN_ADDR_MSB; regs->val = (gain >> 8) & 0x07; (regs + 1)->addr = OV23850_GAIN_ADDR_LSB; (regs + 1)->val = (gain) & 0xff; } static inline void ov23850_get_gain_short_reg(ov23850_reg *regs, u16 gain) { regs->addr = OV23850_GAIN_SHORT_ADDR_MSB; regs->val = (gain >> 8) & 0x07; (regs + 1)->addr = OV23850_GAIN_SHORT_ADDR_LSB; (regs + 1)->val = (gain) & 0xff; } static int test_mode; module_param(test_mode, int, 0644); static inline int ov23850_read_reg(struct camera_common_data *s_data, u16 addr, u8 *val) { struct ov23850 *priv = (struct ov23850 *)s_data->priv; int err = 0; u32 reg_val = 0; err = regmap_read(priv->regmap, addr, ®_val); *val = reg_val & 0xFF; return err; } static int ov23850_write_reg(struct camera_common_data *s_data, u16 addr, u8 val) { int err; struct ov23850 *priv = (struct ov23850 *)s_data->priv; struct device *dev = &priv->i2c_client->dev; err = regmap_write(priv->regmap, addr, val); if (err) dev_err(dev, "%s: i2c write failed, %x = %x\n", __func__, addr, val); return err; } static int ov23850_write_table(struct ov23850 *priv, const ov23850_reg table[]) { return regmap_util_write_table_8(priv->regmap, table, NULL, 0, OV23850_TABLE_WAIT_MS, OV23850_TABLE_END); } static int ov23850_power_on(struct camera_common_data *s_data) { int err = 0; struct ov23850 *priv = (struct ov23850 *)s_data->priv; struct camera_common_power_rail *pw = &priv->power; struct device *dev = &priv->i2c_client->dev; dev_dbg(dev, "%s: power on\n", __func__); if (priv->pdata->power_on) { err = priv->pdata->power_on(pw); if (err) dev_err(dev, "%s failed.\n", __func__); else pw->state = SWITCH_ON; return err; } if (pw->reset_gpio) gpio_set_value(pw->reset_gpio, 0); if (pw->pwdn_gpio) gpio_set_value(pw->pwdn_gpio, 0); usleep_range(10, 20); if (pw->avdd) err = regulator_enable(pw->avdd); if (err) goto ov23850_avdd_fail; if (pw->dvdd) err = regulator_enable(pw->dvdd); if (err) goto ov23850_dvdd_fail; if (pw->iovdd) err = regulator_enable(pw->iovdd); if (err) goto ov23850_iovdd_fail; if (pw->vcmvdd) err = regulator_enable(pw->vcmvdd); if (err) goto ov23850_vcmvdd_fail; if (pw->pwdn_gpio) gpio_set_value(pw->pwdn_gpio, 1); if (pw->reset_gpio) gpio_set_value(pw->reset_gpio, 1); usleep_range(5350, 5360); /* 5ms + 8192 EXTCLK cycles */ pw->state = SWITCH_ON; return 0; ov23850_vcmvdd_fail: regulator_disable(pw->iovdd); ov23850_iovdd_fail: regulator_disable(pw->dvdd); ov23850_dvdd_fail: regulator_disable(pw->avdd); ov23850_avdd_fail: dev_err(dev, "%s failed.\n", __func__); return -ENODEV; } static int ov23850_power_off(struct camera_common_data *s_data) { int err = 0; struct ov23850 *priv = (struct ov23850 *)s_data->priv; struct camera_common_power_rail *pw = &priv->power; struct device *dev = &priv->i2c_client->dev; dev_dbg(dev, "%s: power off\n", __func__); if (priv->pdata->power_off) { err = priv->pdata->power_off(pw); if (!err) goto power_off_done; else dev_err(dev, "%s failed.\n", __func__); return err; } usleep_range(1, 2); if (pw->reset_gpio) gpio_set_value(pw->reset_gpio, 0); if (pw->pwdn_gpio) gpio_set_value(pw->pwdn_gpio, 0); usleep_range(1, 2); if (pw->vcmvdd) regulator_disable(pw->vcmvdd); if (pw->iovdd) regulator_disable(pw->iovdd); if (pw->dvdd) regulator_disable(pw->dvdd); if (pw->avdd) regulator_disable(pw->avdd); power_off_done: pw->state = SWITCH_OFF; return 0; } static int ov23850_power_get(struct ov23850 *priv) { struct camera_common_power_rail *pw = &priv->power; struct camera_common_pdata *pdata = priv->pdata; struct device *dev = &priv->i2c_client->dev; const char *mclk_name; struct clk *parent; int err = 0; mclk_name = priv->pdata->mclk_name ? priv->pdata->mclk_name : "cam_mclk1"; pw->mclk = devm_clk_get(dev, mclk_name); if (IS_ERR(pw->mclk)) { dev_err(dev, "unable to get clock %s\n", mclk_name); return PTR_ERR(pw->mclk); } parent = devm_clk_get(dev, "pllp_grtba"); if (IS_ERR(parent)) dev_err(dev, "devm_clk_get failed for pllp_grtba"); else clk_set_parent(pw->mclk, parent); /* ananlog 2.7v */ err |= camera_common_regulator_get(dev, &pw->avdd, pdata->regulators.avdd); /* digital 1.2v */ err |= camera_common_regulator_get(dev, &pw->dvdd, pdata->regulators.dvdd); /* IO 1.8v */ err |= camera_common_regulator_get(dev, &pw->iovdd, pdata->regulators.iovdd); if (!err) { pw->reset_gpio = pdata->reset_gpio; pw->pwdn_gpio = pdata->pwdn_gpio; } pw->state = SWITCH_OFF; return err; } static int ov23850_set_gain(struct ov23850 *priv, s32 val); static int ov23850_set_frame_length(struct ov23850 *priv, s32 val); static int ov23850_set_coarse_time(struct ov23850 *priv, s32 val); static int ov23850_set_coarse_time_short(struct ov23850 *priv, s32 val); static int ov23850_s_stream(struct v4l2_subdev *sd, int enable) { struct i2c_client *client = v4l2_get_subdevdata(sd); struct camera_common_data *s_data = to_camera_common_data(&client->dev); struct ov23850 *priv = (struct ov23850 *)s_data->priv; struct v4l2_control control; int err; dev_dbg(&client->dev, "%s++\n", __func__); trace_ov23850_s_stream(sd->name, enable, s_data->mode); if (!enable) { err = ov23850_write_table(priv, mode_table[OV23850_MODE_STOP_STREAM]); if (err) return err; /* Wait for one frame to make sure sensor is set to * software standby in V-blank * * delay = frame length rows * Tline (10 us) */ usleep_range(priv->frame_length * 10, priv->frame_length * 10 + 1000); return 0; } err = ov23850_write_table(priv, mode_table[OV23850_MODE_COMMON]); if (err) goto exit; err = ov23850_write_table(priv, mode_table[s_data->mode]); if (err) goto exit; if (s_data->override_enable) { /* write list of override regs for the asking frame length, */ /* coarse integration time, and gain. */ control.id = TEGRA_CAMERA_CID_GAIN; err = v4l2_g_ctrl(&priv->ctrl_handler, &control); err |= ov23850_set_gain(priv, control.value); if (err) dev_dbg(&client->dev, "%s: error gain override\n", __func__); control.id = TEGRA_CAMERA_CID_FRAME_LENGTH; err = v4l2_g_ctrl(&priv->ctrl_handler, &control); err |= ov23850_set_frame_length(priv, control.value); if (err) dev_dbg(&client->dev, "%s: error frame length override\n", __func__); control.id = TEGRA_CAMERA_CID_COARSE_TIME; err = v4l2_g_ctrl(&priv->ctrl_handler, &control); err |= ov23850_set_coarse_time(priv, control.value); if (err) dev_dbg(&client->dev, "%s: error coarse time override\n", __func__); control.id = TEGRA_CAMERA_CID_COARSE_TIME_SHORT; err = v4l2_g_ctrl(&priv->ctrl_handler, &control); err |= ov23850_set_coarse_time_short(priv, control.value); if (err) dev_dbg(&client->dev, "%s: error coarse time short override\n", __func__); } err = ov23850_write_table(priv, mode_table[OV23850_MODE_START_STREAM]); if (err) goto exit; if (test_mode) err = ov23850_write_table(priv, mode_table[OV23850_MODE_TEST_PATTERN]); return 0; exit: dev_dbg(&client->dev, "%s: error setting stream\n", __func__); return err; } static int ov23850_g_input_status(struct v4l2_subdev *sd, u32 *status) { struct i2c_client *client = v4l2_get_subdevdata(sd); struct camera_common_data *s_data = to_camera_common_data(&client->dev); struct ov23850 *priv = (struct ov23850 *)s_data->priv; struct camera_common_power_rail *pw = &priv->power; *status = pw->state == SWITCH_ON; return 0; } static struct v4l2_subdev_video_ops ov23850_subdev_video_ops = { .s_stream = ov23850_s_stream, .g_mbus_config = camera_common_g_mbus_config, .g_input_status = ov23850_g_input_status, }; static struct v4l2_subdev_core_ops ov23850_subdev_core_ops = { .s_power = camera_common_s_power, }; static int ov23850_get_fmt(struct v4l2_subdev *sd, struct v4l2_subdev_pad_config *cfg, struct v4l2_subdev_format *format) { return camera_common_g_fmt(sd, &format->format); } static int ov23850_set_fmt(struct v4l2_subdev *sd, struct v4l2_subdev_pad_config *cfg, struct v4l2_subdev_format *format) { int ret; if (format->which == V4L2_SUBDEV_FORMAT_TRY) ret = camera_common_try_fmt(sd, &format->format); else ret = camera_common_s_fmt(sd, &format->format); return ret; } static struct v4l2_subdev_pad_ops ov23850_subdev_pad_ops = { .set_fmt = ov23850_set_fmt, .get_fmt = ov23850_get_fmt, .enum_mbus_code = camera_common_enum_mbus_code, .enum_frame_size = camera_common_enum_framesizes, .enum_frame_interval = camera_common_enum_frameintervals, }; static struct v4l2_subdev_ops ov23850_subdev_ops = { .core = &ov23850_subdev_core_ops, .video = &ov23850_subdev_video_ops, .pad = &ov23850_subdev_pad_ops, }; const static struct of_device_id ov23850_of_match[] = { { .compatible = "nvidia,ov23850", }, { }, }; static struct camera_common_sensor_ops ov23850_common_ops = { .power_on = ov23850_power_on, .power_off = ov23850_power_off, .write_reg = ov23850_write_reg, .read_reg = ov23850_read_reg, }; static int ov23850_set_group_hold(struct ov23850 *priv) { struct device *dev = &priv->i2c_client->dev; int err; int gh_prev = switch_ctrl_qmenu[priv->group_hold_prev]; if (priv->group_hold_en == true && gh_prev == SWITCH_OFF) { err = ov23850_write_reg(priv->s_data, OV23850_GROUP_HOLD_ADDR, 0x00); if (err) goto fail; priv->group_hold_prev = 1; } else if (priv->group_hold_en == false && gh_prev == SWITCH_ON) { err = ov23850_write_reg(priv->s_data, OV23850_GROUP_HOLD_ADDR, 0x10); err |= ov23850_write_reg(priv->s_data, OV23850_GROUP_HOLD_ADDR, 0xE0); if (err) goto fail; priv->group_hold_prev = 0; } return 0; fail: dev_dbg(dev, "%s: Group hold control error\n", __func__); return err; } static int ov23850_set_gain(struct ov23850 *priv, s32 val) { struct device *dev = &priv->i2c_client->dev; ov23850_reg reg_list[2]; ov23850_reg reg_list_short[2]; int err; u16 gain; int i = 0; /* translate value */ gain = ov23850_to_gain((u32)val, OV23850_GAIN_SHIFT); dev_dbg(dev, "%s: val: %d\n", __func__, gain); ov23850_get_gain_reg(reg_list, gain); ov23850_get_gain_short_reg(reg_list_short, gain); ov23850_set_group_hold(priv); /* writing long gain */ for (i = 0; i < 2; i++) { err = ov23850_write_reg(priv->s_data, reg_list[i].addr, reg_list[i].val); if (err) goto fail; } /* writing short gain */ for (i = 0; i < 2; i++) { err = ov23850_write_reg(priv->s_data, reg_list_short[i].addr, reg_list_short[i].val); if (err) goto fail; } return 0; fail: dev_dbg(dev, "%s: GAIN control error\n", __func__); return err; } static int ov23850_set_frame_length(struct ov23850 *priv, s32 val) { struct device *dev = &priv->i2c_client->dev; ov23850_reg reg_list[2]; int err; u32 frame_length; int i = 0; frame_length = val; dev_dbg(dev, "%s: val: %d\n", __func__, frame_length); ov23850_get_frame_length_regs(reg_list, frame_length); ov23850_set_group_hold(priv); for (i = 0; i < 2; i++) { err = ov23850_write_reg(priv->s_data, reg_list[i].addr, reg_list[i].val); if (err) goto fail; } priv->frame_length = frame_length; return 0; fail: dev_dbg(dev, "%s: FRAME_LENGTH control error\n", __func__); return err; } static int ov23850_set_coarse_time(struct ov23850 *priv, s32 val) { struct device *dev = &priv->i2c_client->dev; ov23850_reg reg_list[2]; int err; u32 coarse_time; int i = 0; coarse_time = val; dev_dbg(dev, "%s: val: %d\n", __func__, coarse_time); ov23850_get_coarse_time_regs(reg_list, coarse_time); ov23850_set_group_hold(priv); for (i = 0; i < 2; i++) { err = ov23850_write_reg(priv->s_data, reg_list[i].addr, reg_list[i].val); if (err) goto fail; } return 0; fail: dev_dbg(dev, "%s: COARSE_TIME control error\n", __func__); return err; } static int ov23850_set_coarse_time_short(struct ov23850 *priv, s32 val) { struct device *dev = &priv->i2c_client->dev; ov23850_reg reg_list[2]; int err; struct v4l2_control hdr_control; int hdr_en; u32 coarse_time_short; int i = 0; /* check hdr enable ctrl */ hdr_control.id = TEGRA_CAMERA_CID_HDR_EN; err = camera_common_g_ctrl(priv->s_data, &hdr_control); if (err < 0) { dev_err(dev, "could not find device ctrl.\n"); return err; } hdr_en = switch_ctrl_qmenu[hdr_control.value]; if (hdr_en == SWITCH_OFF) return 0; coarse_time_short = val; dev_dbg(dev, "%s: val: %d\n", __func__, coarse_time_short); ov23850_get_coarse_time_short_regs(reg_list, coarse_time_short); ov23850_set_group_hold(priv); for (i = 0; i < 2; i++) { err = ov23850_write_reg(priv->s_data, reg_list[i].addr, reg_list[i].val); if (err) goto fail; } return 0; fail: dev_dbg(dev, "%s: COARSE_TIME_SHORT control error\n", __func__); return err; } #if 0 static int ov23850_eeprom_device_release(struct ov23850 *priv) { int i; for (i = 0; i < OV23850_EEPROM_NUM_BLOCKS; i++) { if (priv->eeprom[i].i2c_client != NULL) { i2c_unregister_device(priv->eeprom[i].i2c_client); priv->eeprom[i].i2c_client = NULL; } } return 0; } static int ov23850_eeprom_device_init(struct ov23850 *priv) { char *dev_name = "eeprom_ov23850"; static struct regmap_config eeprom_regmap_config = { .reg_bits = 8, .val_bits = 8, }; int i; int err; for (i = 0; i < OV23850_EEPROM_NUM_BLOCKS; i++) { priv->eeprom[i].adap = i2c_get_adapter( priv->i2c_client->adapter->nr); memset(&priv->eeprom[i].brd, 0, sizeof(priv->eeprom[i].brd)); strncpy(priv->eeprom[i].brd.type, dev_name, sizeof(priv->eeprom[i].brd.type)); priv->eeprom[i].brd.addr = OV23850_EEPROM_ADDRESS + i; priv->eeprom[i].i2c_client = i2c_new_device( priv->eeprom[i].adap, &priv->eeprom[i].brd); priv->eeprom[i].regmap = devm_regmap_init_i2c( priv->eeprom[i].i2c_client, &eeprom_regmap_config); if (IS_ERR(priv->eeprom[i].regmap)) { err = PTR_ERR(priv->eeprom[i].regmap); ov23850_eeprom_device_release(priv); return err; } } return 0; } static int ov23850_read_eeprom(struct ov23850 *priv) { int err, i; struct v4l2_ctrl *ctrl; ctrl = v4l2_ctrl_find(&priv->ctrl_handler, TEGRA_CAMERA_CID_EEPROM_DATA); if (!ctrl) { dev_err(&priv->i2c_client->dev, "could not find device ctrl.\n"); return -EINVAL; } for (i = 0; i < OV23850_EEPROM_NUM_BLOCKS; i++) { err = regmap_bulk_read(priv->eeprom[i].regmap, 0, &priv->eeprom_buf[i * OV23850_EEPROM_BLOCK_SIZE], OV23850_EEPROM_BLOCK_SIZE); if (err) return err; } for (i = 0; i < OV23850_EEPROM_SIZE; i++) sprintf(&ctrl->p_new.p_char[i*2], "%02x", priv->eeprom_buf[i]); return 0; } static int ov23850_write_eeprom(struct ov23850 *priv, char *string) { struct device *dev = &priv->i2c_client->dev; int err; int i; u8 curr[3]; unsigned long data; for (i = 0; i < OV23850_EEPROM_SIZE; i++) { curr[0] = string[i*2]; curr[1] = string[i*2+1]; curr[2] = '\0'; err = kstrtol(curr, 16, &data); if (err) { dev_err(dev, "invalid eeprom string\n"); return -EINVAL; } priv->eeprom_buf[i] = (u8)data; err = regmap_write(priv->eeprom[i >> 8].regmap, i & 0xFF, (u8)data); if (err) return err; msleep(20); } return 0; } #endif static int ov23850_read_otp_manual(struct ov23850 *priv, u8 *buf, u16 addr_start, u16 addr_end) { struct device *dev = &priv->i2c_client->dev; u8 status; int i; int err; int size = addr_end - addr_start + 1; u8 isp; u16 addr_start_capped = addr_start; if (addr_start > 0x6A00) addr_start_capped = 0x69FF; usleep_range(10000, 11000); err = ov23850_write_table(priv, mode_table[OV23850_MODE_START_STREAM]); if (err) return err; err = ov23850_read_reg(priv->s_data, OV23850_OTP_ISP_CTRL_ADDR, &isp); if (err) return err; err = ov23850_write_reg(priv->s_data, OV23850_OTP_ISP_CTRL_ADDR, isp & 0xfe); if (err) return err; err = ov23850_write_reg(priv->s_data, OV23850_OTP_MODE_CTRL_ADDR, 0x40); if (err) return err; err = ov23850_write_reg(priv->s_data, OV23850_OTP_START_REG_ADDR_MSB, (addr_start_capped >> 8) & 0xff); if (err) return err; err = ov23850_write_reg(priv->s_data, OV23850_OTP_START_REG_ADDR_LSB, addr_start_capped & 0xff); if (err) return err; err = ov23850_write_reg(priv->s_data, OV23850_OTP_END_REG_ADDR_MSB, (addr_end >> 8) & 0xff); if (err) return err; err = ov23850_write_reg(priv->s_data, OV23850_OTP_END_REG_ADDR_LSB, addr_end & 0xff); if (err) return err; err = ov23850_write_reg(priv->s_data, OV23850_OTP_LOAD_CTRL_ADDR, 0x01); if (err) return err; usleep_range(10000, 11000); for (i = 0; i < size; i++) { err = ov23850_read_reg(priv->s_data, addr_start + i, &buf[i]); if (err) return err; err = ov23850_read_reg(priv->s_data, OV23850_OTP_LOAD_CTRL_ADDR, &status); if (err) return err; if (status & OV23850_OTP_RD_BUSY_MASK) { dev_err(dev, "another OTP read in progress\n"); return err; } else if (status & OV23850_OTP_BIST_ERROR_MASK) { dev_err(dev, "fuse id read error\n"); return err; } } err = ov23850_write_table(priv, mode_table[OV23850_MODE_STOP_STREAM]); if (err) return err; err = ov23850_read_reg(priv->s_data, OV23850_OTP_ISP_CTRL_ADDR, &isp); if (err) return err; err = ov23850_write_reg(priv->s_data, OV23850_OTP_ISP_CTRL_ADDR, isp | 0x01); if (err) return err; return 0; } static int ov23850_otp_setup(struct ov23850 *priv) { struct device *dev = &priv->i2c_client->dev; int err; int i; struct v4l2_ctrl *ctrl; u8 otp_buf[OV23850_OTP_SIZE]; err = ov23850_read_otp_manual(priv, otp_buf, OV23850_OTP_START_ADDR, OV23850_OTP_END_ADDR); if (err) return -ENODEV; ctrl = v4l2_ctrl_find(&priv->ctrl_handler, TEGRA_CAMERA_CID_OTP_DATA); if (!ctrl) { dev_err(dev, "could not find device ctrl.\n"); return -EINVAL; } for (i = 0; i < OV23850_OTP_SIZE; i++) sprintf(&ctrl->p_new.p_char[i*2], "%02x", otp_buf[i]); ctrl->p_cur.p_char = ctrl->p_new.p_char; return 0; } static int ov23850_fuse_id_setup(struct ov23850 *priv) { struct device *dev = &priv->i2c_client->dev; int err; int i; struct v4l2_ctrl *ctrl; u8 fuse_id[OV23850_FUSE_ID_SIZE]; err = ov23850_read_otp_manual(priv, fuse_id, OV23850_FUSE_ID_OTP_START_ADDR, OV23850_FUSE_ID_OTP_END_ADDR); if (err) return -ENODEV; ctrl = v4l2_ctrl_find(&priv->ctrl_handler, TEGRA_CAMERA_CID_FUSE_ID); if (!ctrl) { dev_err(dev, "could not find device ctrl.\n"); return -EINVAL; } for (i = 0; i < OV23850_FUSE_ID_SIZE; i++) sprintf(&ctrl->p_new.p_char[i*2], "%02x", fuse_id[i]); ctrl->p_cur.p_char = ctrl->p_new.p_char; return 0; } static int ov23850_s_ctrl(struct v4l2_ctrl *ctrl) { struct ov23850 *priv = container_of(ctrl->handler, struct ov23850, ctrl_handler); struct device *dev = &priv->i2c_client->dev; int err = 0; if (priv->power.state == SWITCH_OFF) return 0; switch (ctrl->id) { case TEGRA_CAMERA_CID_GAIN: err = ov23850_set_gain(priv, ctrl->val); break; case TEGRA_CAMERA_CID_FRAME_LENGTH: err = ov23850_set_frame_length(priv, ctrl->val); break; case TEGRA_CAMERA_CID_COARSE_TIME: err = ov23850_set_coarse_time(priv, ctrl->val); break; case TEGRA_CAMERA_CID_COARSE_TIME_SHORT: err = ov23850_set_coarse_time_short(priv, ctrl->val); break; case TEGRA_CAMERA_CID_GROUP_HOLD: if (switch_ctrl_qmenu[ctrl->val] == SWITCH_ON) { priv->group_hold_en = true; } else { priv->group_hold_en = false; err = ov23850_set_group_hold(priv); } break; case TEGRA_CAMERA_CID_HDR_EN: break; default: dev_err(dev, "%s: unknown ctrl id.\n", __func__); return -EINVAL; } return err; } static int ov23850_ctrls_init(struct ov23850 *priv) { struct i2c_client *client = priv->i2c_client; struct v4l2_ctrl *ctrl; int numctrls; int err; int i; dev_dbg(&client->dev, "%s++\n", __func__); numctrls = ARRAY_SIZE(ctrl_config_list); v4l2_ctrl_handler_init(&priv->ctrl_handler, numctrls); for (i = 0; i < numctrls; i++) { ctrl = v4l2_ctrl_new_custom(&priv->ctrl_handler, &ctrl_config_list[i], NULL); if (ctrl == NULL) { dev_err(&client->dev, "Failed to init %s ctrl\n", ctrl_config_list[i].name); continue; } if (ctrl_config_list[i].type == V4L2_CTRL_TYPE_STRING && ctrl_config_list[i].flags & V4L2_CTRL_FLAG_READ_ONLY) { ctrl->p_new.p_char = devm_kzalloc(&client->dev, ctrl_config_list[i].max + 1, GFP_KERNEL); } priv->ctrls[i] = ctrl; } priv->numctrls = numctrls; priv->subdev->ctrl_handler = &priv->ctrl_handler; if (priv->ctrl_handler.error) { dev_err(&client->dev, "Error %d adding controls\n", priv->ctrl_handler.error); err = priv->ctrl_handler.error; goto error; } err = v4l2_ctrl_handler_setup(&priv->ctrl_handler); if (err) { dev_err(&client->dev, "Error %d setting default controls\n", err); goto error; } err = camera_common_s_power(priv->subdev, true); if (err) { dev_err(&client->dev, "Error %d during power on\n", err); err = -ENODEV; goto error; } err = ov23850_otp_setup(priv); if (err) { dev_err(&client->dev, "Error %d reading otp data\n", err); goto error_hw; } err = ov23850_fuse_id_setup(priv); if (err) { dev_err(&client->dev, "Error %d reading fuse id data\n", err); goto error_hw; } camera_common_s_power(priv->subdev, false); return 0; error_hw: camera_common_s_power(priv->subdev, false); error: v4l2_ctrl_handler_free(&priv->ctrl_handler); return err; } MODULE_DEVICE_TABLE(of, ov23850_of_match); static struct camera_common_pdata *ov23850_parse_dt(struct i2c_client *client) { struct device_node *np = client->dev.of_node; struct camera_common_pdata *board_priv_pdata; const struct of_device_id *match; int gpio; int err; match = of_match_device(ov23850_of_match, &client->dev); if (!match) { dev_err(&client->dev, "Failed to find matching dt id\n"); return NULL; } board_priv_pdata = devm_kzalloc(&client->dev, sizeof(*board_priv_pdata), GFP_KERNEL); err = of_property_read_string(np, "mclk", &board_priv_pdata->mclk_name); if (err) { dev_err(&client->dev, "mclk not in DT\n"); goto error; } gpio = of_get_named_gpio(np, "pwdn-gpios", 0); if (gpio < 0) { dev_err(&client->dev, "pwdn gpios not in DT\n"); goto error; } board_priv_pdata->pwdn_gpio = (unsigned int)gpio; gpio = of_get_named_gpio(np, "reset-gpios", 0); if (gpio < 0) { dev_err(&client->dev, "reset gpios not in DT\n"); goto error; } board_priv_pdata->reset_gpio = (unsigned int)gpio; err = of_property_read_string(np, "avdd-reg", &board_priv_pdata->regulators.avdd); if (err) { dev_err(&client->dev, "avdd-reg not in DT\n"); goto error; } err = of_property_read_string(np, "dvdd-reg", &board_priv_pdata->regulators.dvdd); if (err) { dev_err(&client->dev, "dvdd-reg not in DT\n"); goto error; } err = of_property_read_string(np, "iovdd-reg", &board_priv_pdata->regulators.iovdd); if (err) { dev_err(&client->dev, "iovdd-reg not in DT\n"); goto error; } err = of_property_read_string(np, "vcmvdd-reg", &board_priv_pdata->regulators.vcmvdd); if (err) { dev_err(&client->dev, "vcmdd-reg not in DT\n"); goto error; } return board_priv_pdata; error: devm_kfree(&client->dev, board_priv_pdata); return NULL; } static int ov23850_open(struct v4l2_subdev *sd, struct v4l2_subdev_fh *fh) { struct i2c_client *client = v4l2_get_subdevdata(sd); dev_dbg(&client->dev, "%s:\n", __func__); return 0; } static const struct v4l2_subdev_internal_ops ov23850_subdev_internal_ops = { .open = ov23850_open, }; static const struct media_entity_operations ov23850_media_ops = { .link_validate = v4l2_subdev_link_validate, }; static int ov23850_probe(struct i2c_client *client, const struct i2c_device_id *id) { struct camera_common_data *common_data; struct ov23850 *priv; int err; dev_info(&client->dev, "probing v4l2 sensor\n"); common_data = devm_kzalloc(&client->dev, sizeof(struct camera_common_data), GFP_KERNEL); priv = devm_kzalloc(&client->dev, sizeof(struct ov23850) + sizeof(struct v4l2_ctrl *) * ARRAY_SIZE(ctrl_config_list), GFP_KERNEL); priv->regmap = devm_regmap_init_i2c(client, &sensor_regmap_config); if (IS_ERR(priv->regmap)) { dev_err(&client->dev, "regmap init failed: %ld\n", PTR_ERR(priv->regmap)); return -ENODEV; } priv->pdata = ov23850_parse_dt(client); if (!priv->pdata) { dev_err(&client->dev, "unable to get platform data\n"); return -EFAULT; } common_data->ops = &ov23850_common_ops; common_data->ctrl_handler = &priv->ctrl_handler; common_data->dev = &client->dev; common_data->frmfmt = &ov23850_frmfmt[0]; common_data->colorfmt = camera_common_find_datafmt( OV23850_DEFAULT_DATAFMT); common_data->power = &priv->power; common_data->ctrls = priv->ctrls; common_data->priv = (void *)priv; common_data->numctrls = ARRAY_SIZE(ctrl_config_list); common_data->numfmts = ARRAY_SIZE(ov23850_frmfmt); common_data->def_mode = OV23850_DEFAULT_MODE; common_data->def_width = OV23850_DEFAULT_WIDTH; common_data->def_height = OV23850_DEFAULT_HEIGHT; common_data->fmt_width = common_data->def_width; common_data->fmt_height = common_data->def_height; common_data->def_clk_freq = OV23850_DEFAULT_CLK_FREQ; priv->i2c_client = client; priv->s_data = common_data; priv->subdev = &common_data->subdev; priv->subdev->dev = &client->dev; priv->s_data->dev = &client->dev; priv->group_hold_prev = 0; err = ov23850_power_get(priv); if (err) return err; err = camera_common_initialize(common_data, "ov23850"); if (err) { dev_err(&client->dev, "Failed to initialize ov23850\n"); return err; } v4l2_i2c_subdev_init(&common_data->subdev, client, &ov23850_subdev_ops); err = ov23850_ctrls_init(priv); if (err) return err; #if 0 /* eeprom interface */ err = ov23850_eeprom_device_init(priv); if (err) dev_err(&client->dev, "Failed to allocate eeprom register map: %d\n", err); #endif priv->subdev->internal_ops = &ov23850_subdev_internal_ops; priv->subdev->flags |= V4L2_SUBDEV_FL_HAS_DEVNODE | V4L2_SUBDEV_FL_HAS_EVENTS; #if defined(CONFIG_MEDIA_CONTROLLER) priv->pad.flags = MEDIA_PAD_FL_SOURCE; priv->subdev->entity.ops = &ov23850_media_ops; err = tegra_media_entity_init(&priv->subdev->entity, 1, &priv->pad, true, true); if (err < 0) { dev_err(&client->dev, "unable to init media entity\n"); return err; } #endif err = v4l2_async_register_subdev(priv->subdev); if (err) return err; dev_info(&client->dev, "Detected OV23850 sensor\n"); return 0; } static int ov23850_remove(struct i2c_client *client) { struct camera_common_data *s_data = to_camera_common_data(&client->dev); struct ov23850 *priv = (struct ov23850 *)s_data->priv; v4l2_async_unregister_subdev(priv->subdev); #if defined(CONFIG_MEDIA_CONTROLLER) media_entity_cleanup(&priv->subdev->entity); #endif v4l2_ctrl_handler_free(&priv->ctrl_handler); camera_common_cleanup(s_data); return 0; } static const struct i2c_device_id ov23850_id[] = { { "ov23850", 0 }, { } }; MODULE_DEVICE_TABLE(i2c, ov23850_id); static struct i2c_driver ov23850_i2c_driver = { .driver = { .name = "ov23850", .owner = THIS_MODULE, .of_match_table = of_match_ptr(ov23850_of_match), }, .probe = ov23850_probe, .remove = ov23850_remove, .id_table = ov23850_id, }; module_i2c_driver(ov23850_i2c_driver); MODULE_DESCRIPTION("I2C driver for OmniVision OV23850"); MODULE_AUTHOR("David Wang "); MODULE_LICENSE("GPL v2");