iio: light: vcnl4000 add support for the VCNL4040 proximity and light sensor
The VCNL4040 is almost identical to the VCNL4200 as far as register layout goes but just need to check a different ID register location. Signed-off-by: Angus Ainslie (Purism) <angus@akkea.ca> Signed-off-by: Jonathan Cameron <Jonathan.Cameron@huawei.com>
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@ -1,8 +1,9 @@
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/*
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* vcnl4000.c - Support for Vishay VCNL4000/4010/4020/4200 combined ambient
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* vcnl4000.c - Support for Vishay VCNL4000/4010/4020/4040/4200 combined ambient
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* light and proximity sensor
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*
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* Copyright 2012 Peter Meerwald <pmeerw@pmeerw.net>
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* Copyright 2019 Pursim SPC
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*
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* This file is subject to the terms and conditions of version 2 of
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* the GNU General Public License. See the file COPYING in the main
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@ -10,13 +11,14 @@
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*
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* IIO driver for:
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* VCNL4000/10/20 (7-bit I2C slave address 0x13)
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* VCNL4040 (7-bit I2C slave address 0x60)
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* VCNL4200 (7-bit I2C slave address 0x51)
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*
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* TODO:
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* allow to adjust IR current
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* proximity threshold and event handling
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* periodic ALS/proximity measurement (VCNL4010/20)
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* interrupts (VCNL4010/20, VCNL4200)
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* interrupts (VCNL4010/20/40, VCNL4200)
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*/
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#include <linux/module.h>
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@ -30,6 +32,7 @@
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#define VCNL4000_DRV_NAME "vcnl4000"
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#define VCNL4000_PROD_ID 0x01
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#define VCNL4010_PROD_ID 0x02 /* for VCNL4020, VCNL4010 */
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#define VCNL4040_PROD_ID 0x86
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#define VCNL4200_PROD_ID 0x58
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#define VCNL4000_COMMAND 0x80 /* Command register */
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@ -49,6 +52,8 @@
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#define VCNL4200_AL_DATA 0x09 /* Ambient light data */
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#define VCNL4200_DEV_ID 0x0e /* Device ID, slave address and version */
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#define VCNL4040_DEV_ID 0x0c /* Device ID and version */
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/* Bit masks for COMMAND register */
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#define VCNL4000_AL_RDY BIT(6) /* ALS data ready? */
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#define VCNL4000_PS_RDY BIT(5) /* proximity data ready? */
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@ -58,6 +63,7 @@
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enum vcnl4000_device_ids {
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VCNL4000,
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VCNL4010,
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VCNL4040,
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VCNL4200,
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};
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@ -90,6 +96,7 @@ static const struct i2c_device_id vcnl4000_id[] = {
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{ "vcnl4000", VCNL4000 },
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{ "vcnl4010", VCNL4010 },
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{ "vcnl4020", VCNL4010 },
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{ "vcnl4040", VCNL4040 },
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{ "vcnl4200", VCNL4200 },
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{ }
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};
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@ -128,14 +135,26 @@ static int vcnl4000_init(struct vcnl4000_data *data)
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static int vcnl4200_init(struct vcnl4000_data *data)
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{
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int ret;
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int ret, id;
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ret = i2c_smbus_read_word_data(data->client, VCNL4200_DEV_ID);
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if (ret < 0)
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return ret;
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if ((ret & 0xff) != VCNL4200_PROD_ID)
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return -ENODEV;
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id = ret & 0xff;
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if (id != VCNL4200_PROD_ID) {
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ret = i2c_smbus_read_word_data(data->client, VCNL4040_DEV_ID);
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if (ret < 0)
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return ret;
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id = ret & 0xff;
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if (id != VCNL4040_PROD_ID)
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return -ENODEV;
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}
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dev_dbg(&data->client->dev, "device id 0x%x", id);
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data->rev = (ret >> 8) & 0xf;
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@ -150,9 +169,19 @@ static int vcnl4200_init(struct vcnl4000_data *data)
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data->al_scale = 24000;
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data->vcnl4200_al.reg = VCNL4200_AL_DATA;
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data->vcnl4200_ps.reg = VCNL4200_PS_DATA;
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/* Integration time is 50ms, but the experiments show 54ms in total. */
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data->vcnl4200_al.sampling_rate = ktime_set(0, 54000 * 1000);
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data->vcnl4200_ps.sampling_rate = ktime_set(0, 4200 * 1000);
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switch (id) {
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case VCNL4200_PROD_ID:
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/* Integration time is 50ms, but the experiments */
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/* show 54ms in total. */
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data->vcnl4200_al.sampling_rate = ktime_set(0, 54000 * 1000);
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data->vcnl4200_ps.sampling_rate = ktime_set(0, 4200 * 1000);
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break;
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case VCNL4040_PROD_ID:
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/* Integration time is 80ms, add 10ms. */
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data->vcnl4200_al.sampling_rate = ktime_set(0, 100000 * 1000);
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data->vcnl4200_ps.sampling_rate = ktime_set(0, 100000 * 1000);
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break;
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}
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data->vcnl4200_al.last_measurement = ktime_set(0, 0);
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data->vcnl4200_ps.last_measurement = ktime_set(0, 0);
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mutex_init(&data->vcnl4200_al.lock);
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@ -271,6 +300,12 @@ static const struct vcnl4000_chip_spec vcnl4000_chip_spec_cfg[] = {
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.measure_light = vcnl4000_measure_light,
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.measure_proximity = vcnl4000_measure_proximity,
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},
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[VCNL4040] = {
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.prod = "VCNL4040",
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.init = vcnl4200_init,
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.measure_light = vcnl4200_measure_light,
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.measure_proximity = vcnl4200_measure_proximity,
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},
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[VCNL4200] = {
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.prod = "VCNL4200",
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.init = vcnl4200_init,
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