xref: /openbmc/linux/drivers/iio/adc/rn5t618-adc.c (revision 4f2c0a4acffbec01079c28f839422e64ddeff004)
187a25333SAndreas Kemnade // SPDX-License-Identifier: GPL-2.0+
287a25333SAndreas Kemnade /*
387a25333SAndreas Kemnade  * ADC driver for the RICOH RN5T618 power management chip family
487a25333SAndreas Kemnade  *
587a25333SAndreas Kemnade  * Copyright (C) 2019 Andreas Kemnade
687a25333SAndreas Kemnade  */
787a25333SAndreas Kemnade 
887a25333SAndreas Kemnade #include <linux/kernel.h>
987a25333SAndreas Kemnade #include <linux/device.h>
1087a25333SAndreas Kemnade #include <linux/errno.h>
1187a25333SAndreas Kemnade #include <linux/interrupt.h>
1287a25333SAndreas Kemnade #include <linux/init.h>
1387a25333SAndreas Kemnade #include <linux/module.h>
1487a25333SAndreas Kemnade #include <linux/mfd/rn5t618.h>
1587a25333SAndreas Kemnade #include <linux/platform_device.h>
1687a25333SAndreas Kemnade #include <linux/completion.h>
1787a25333SAndreas Kemnade #include <linux/regmap.h>
1887a25333SAndreas Kemnade #include <linux/iio/iio.h>
191a844ddfSAndreas Kemnade #include <linux/iio/driver.h>
201a844ddfSAndreas Kemnade #include <linux/iio/machine.h>
2187a25333SAndreas Kemnade #include <linux/slab.h>
2287a25333SAndreas Kemnade 
2387a25333SAndreas Kemnade #define RN5T618_ADC_CONVERSION_TIMEOUT   (msecs_to_jiffies(500))
2487a25333SAndreas Kemnade #define RN5T618_REFERENCE_VOLT 2500
2587a25333SAndreas Kemnade 
2687a25333SAndreas Kemnade /* mask for selecting channels for single conversion */
2787a25333SAndreas Kemnade #define RN5T618_ADCCNT3_CHANNEL_MASK 0x7
2887a25333SAndreas Kemnade /* average 4-time conversion mode */
2987a25333SAndreas Kemnade #define RN5T618_ADCCNT3_AVG BIT(3)
3087a25333SAndreas Kemnade /* set for starting a single conversion, gets cleared by hw when done */
3187a25333SAndreas Kemnade #define RN5T618_ADCCNT3_GODONE BIT(4)
3287a25333SAndreas Kemnade /* automatic conversion, period is in ADCCNT2, selected channels are
3387a25333SAndreas Kemnade  * in ADCCNT1
3487a25333SAndreas Kemnade  */
3587a25333SAndreas Kemnade #define RN5T618_ADCCNT3_AUTO BIT(5)
3687a25333SAndreas Kemnade #define RN5T618_ADCEND_IRQ BIT(0)
3787a25333SAndreas Kemnade 
3887a25333SAndreas Kemnade struct rn5t618_adc_data {
3987a25333SAndreas Kemnade 	struct device *dev;
4087a25333SAndreas Kemnade 	struct rn5t618 *rn5t618;
4187a25333SAndreas Kemnade 	struct completion conv_completion;
4287a25333SAndreas Kemnade 	int irq;
4387a25333SAndreas Kemnade };
4487a25333SAndreas Kemnade 
4587a25333SAndreas Kemnade enum rn5t618_channels {
4687a25333SAndreas Kemnade 	LIMMON = 0,
4787a25333SAndreas Kemnade 	VBAT,
4887a25333SAndreas Kemnade 	VADP,
4987a25333SAndreas Kemnade 	VUSB,
5087a25333SAndreas Kemnade 	VSYS,
5187a25333SAndreas Kemnade 	VTHM,
5287a25333SAndreas Kemnade 	AIN1,
5387a25333SAndreas Kemnade 	AIN0
5487a25333SAndreas Kemnade };
5587a25333SAndreas Kemnade 
56*84cd574eSAndy Shevchenko static const struct u16_fract rn5t618_ratios[8] = {
5787a25333SAndreas Kemnade 	[LIMMON] = {50, 32}, /* measured across 20mOhm, amplified by 32 */
5887a25333SAndreas Kemnade 	[VBAT] = {2, 1},
5987a25333SAndreas Kemnade 	[VADP] = {3, 1},
6087a25333SAndreas Kemnade 	[VUSB] = {3, 1},
6187a25333SAndreas Kemnade 	[VSYS] = {3, 1},
6287a25333SAndreas Kemnade 	[VTHM] = {1, 1},
6387a25333SAndreas Kemnade 	[AIN1] = {1, 1},
6487a25333SAndreas Kemnade 	[AIN0] = {1, 1},
6587a25333SAndreas Kemnade };
6687a25333SAndreas Kemnade 
rn5t618_read_adc_reg(struct rn5t618 * rn5t618,int reg,u16 * val)6787a25333SAndreas Kemnade static int rn5t618_read_adc_reg(struct rn5t618 *rn5t618, int reg, u16 *val)
6887a25333SAndreas Kemnade {
6987a25333SAndreas Kemnade 	u8 data[2];
7087a25333SAndreas Kemnade 	int ret;
7187a25333SAndreas Kemnade 
7287a25333SAndreas Kemnade 	ret = regmap_bulk_read(rn5t618->regmap, reg, data, sizeof(data));
7387a25333SAndreas Kemnade 	if (ret < 0)
7487a25333SAndreas Kemnade 		return ret;
7587a25333SAndreas Kemnade 
7687a25333SAndreas Kemnade 	*val = (data[0] << 4) | (data[1] & 0xF);
7787a25333SAndreas Kemnade 
7887a25333SAndreas Kemnade 	return 0;
7987a25333SAndreas Kemnade }
8087a25333SAndreas Kemnade 
rn5t618_adc_irq(int irq,void * data)8187a25333SAndreas Kemnade static irqreturn_t rn5t618_adc_irq(int irq, void *data)
8287a25333SAndreas Kemnade {
8387a25333SAndreas Kemnade 	struct rn5t618_adc_data *adc = data;
8487a25333SAndreas Kemnade 	unsigned int r = 0;
8587a25333SAndreas Kemnade 	int ret;
8687a25333SAndreas Kemnade 
8787a25333SAndreas Kemnade 	/* clear low & high threshold irqs */
8887a25333SAndreas Kemnade 	regmap_write(adc->rn5t618->regmap, RN5T618_IR_ADC1, 0);
8987a25333SAndreas Kemnade 	regmap_write(adc->rn5t618->regmap, RN5T618_IR_ADC2, 0);
9087a25333SAndreas Kemnade 
9187a25333SAndreas Kemnade 	ret = regmap_read(adc->rn5t618->regmap, RN5T618_IR_ADC3, &r);
9287a25333SAndreas Kemnade 	if (ret < 0)
9387a25333SAndreas Kemnade 		dev_err(adc->dev, "failed to read IRQ status: %d\n", ret);
9487a25333SAndreas Kemnade 
9587a25333SAndreas Kemnade 	regmap_write(adc->rn5t618->regmap, RN5T618_IR_ADC3, 0);
9687a25333SAndreas Kemnade 
9787a25333SAndreas Kemnade 	if (r & RN5T618_ADCEND_IRQ)
9887a25333SAndreas Kemnade 		complete(&adc->conv_completion);
9987a25333SAndreas Kemnade 
10087a25333SAndreas Kemnade 	return IRQ_HANDLED;
10187a25333SAndreas Kemnade }
10287a25333SAndreas Kemnade 
rn5t618_adc_read(struct iio_dev * iio_dev,const struct iio_chan_spec * chan,int * val,int * val2,long mask)10387a25333SAndreas Kemnade static int rn5t618_adc_read(struct iio_dev *iio_dev,
10487a25333SAndreas Kemnade 			    const struct iio_chan_spec *chan,
10587a25333SAndreas Kemnade 			    int *val, int *val2, long mask)
10687a25333SAndreas Kemnade {
10787a25333SAndreas Kemnade 	struct rn5t618_adc_data *adc = iio_priv(iio_dev);
10887a25333SAndreas Kemnade 	u16 raw;
10987a25333SAndreas Kemnade 	int ret;
11087a25333SAndreas Kemnade 
11187a25333SAndreas Kemnade 	if (mask == IIO_CHAN_INFO_SCALE) {
11287a25333SAndreas Kemnade 		*val = RN5T618_REFERENCE_VOLT *
11387a25333SAndreas Kemnade 		       rn5t618_ratios[chan->channel].numerator;
11487a25333SAndreas Kemnade 		*val2 = rn5t618_ratios[chan->channel].denominator * 4095;
11587a25333SAndreas Kemnade 
11687a25333SAndreas Kemnade 		return IIO_VAL_FRACTIONAL;
11787a25333SAndreas Kemnade 	}
11887a25333SAndreas Kemnade 
11987a25333SAndreas Kemnade 	/* select channel */
12087a25333SAndreas Kemnade 	ret = regmap_update_bits(adc->rn5t618->regmap, RN5T618_ADCCNT3,
12187a25333SAndreas Kemnade 				 RN5T618_ADCCNT3_CHANNEL_MASK,
12287a25333SAndreas Kemnade 				 chan->channel);
12387a25333SAndreas Kemnade 	if (ret < 0)
12487a25333SAndreas Kemnade 		return ret;
12587a25333SAndreas Kemnade 
12687a25333SAndreas Kemnade 	ret = regmap_write(adc->rn5t618->regmap, RN5T618_EN_ADCIR3,
12787a25333SAndreas Kemnade 			   RN5T618_ADCEND_IRQ);
12887a25333SAndreas Kemnade 	if (ret < 0)
12987a25333SAndreas Kemnade 		return ret;
13087a25333SAndreas Kemnade 
13187a25333SAndreas Kemnade 	ret = regmap_update_bits(adc->rn5t618->regmap, RN5T618_ADCCNT3,
13287a25333SAndreas Kemnade 				 RN5T618_ADCCNT3_AVG,
13387a25333SAndreas Kemnade 				 mask == IIO_CHAN_INFO_AVERAGE_RAW ?
13487a25333SAndreas Kemnade 				 RN5T618_ADCCNT3_AVG : 0);
13587a25333SAndreas Kemnade 	if (ret < 0)
13687a25333SAndreas Kemnade 		return ret;
13787a25333SAndreas Kemnade 
13887a25333SAndreas Kemnade 	init_completion(&adc->conv_completion);
13987a25333SAndreas Kemnade 	/* single conversion */
14087a25333SAndreas Kemnade 	ret = regmap_update_bits(adc->rn5t618->regmap, RN5T618_ADCCNT3,
14187a25333SAndreas Kemnade 				 RN5T618_ADCCNT3_GODONE,
14287a25333SAndreas Kemnade 				 RN5T618_ADCCNT3_GODONE);
14387a25333SAndreas Kemnade 	if (ret < 0)
14487a25333SAndreas Kemnade 		return ret;
14587a25333SAndreas Kemnade 
14687a25333SAndreas Kemnade 	ret = wait_for_completion_timeout(&adc->conv_completion,
14787a25333SAndreas Kemnade 					  RN5T618_ADC_CONVERSION_TIMEOUT);
14887a25333SAndreas Kemnade 	if (ret == 0) {
14987a25333SAndreas Kemnade 		dev_warn(adc->dev, "timeout waiting for adc result\n");
15087a25333SAndreas Kemnade 		return -ETIMEDOUT;
15187a25333SAndreas Kemnade 	}
15287a25333SAndreas Kemnade 
15387a25333SAndreas Kemnade 	ret = rn5t618_read_adc_reg(adc->rn5t618,
15487a25333SAndreas Kemnade 				   RN5T618_ILIMDATAH + 2 * chan->channel,
15587a25333SAndreas Kemnade 				   &raw);
15687a25333SAndreas Kemnade 	if (ret < 0)
15787a25333SAndreas Kemnade 		return ret;
15887a25333SAndreas Kemnade 
15987a25333SAndreas Kemnade 	*val = raw;
16087a25333SAndreas Kemnade 
16187a25333SAndreas Kemnade 	return IIO_VAL_INT;
16287a25333SAndreas Kemnade }
16387a25333SAndreas Kemnade 
16487a25333SAndreas Kemnade static const struct iio_info rn5t618_adc_iio_info = {
16587a25333SAndreas Kemnade 	.read_raw = &rn5t618_adc_read,
16687a25333SAndreas Kemnade };
16787a25333SAndreas Kemnade 
16887a25333SAndreas Kemnade #define RN5T618_ADC_CHANNEL(_channel, _type, _name) { \
16987a25333SAndreas Kemnade 	.type = _type, \
17087a25333SAndreas Kemnade 	.channel = _channel, \
17187a25333SAndreas Kemnade 	.info_mask_separate = BIT(IIO_CHAN_INFO_RAW) | \
17287a25333SAndreas Kemnade 			      BIT(IIO_CHAN_INFO_AVERAGE_RAW) | \
17387a25333SAndreas Kemnade 			      BIT(IIO_CHAN_INFO_SCALE), \
17487a25333SAndreas Kemnade 	.datasheet_name = _name, \
17587a25333SAndreas Kemnade 	.indexed = 1. \
17687a25333SAndreas Kemnade }
17787a25333SAndreas Kemnade 
17887a25333SAndreas Kemnade static const struct iio_chan_spec rn5t618_adc_iio_channels[] = {
17987a25333SAndreas Kemnade 	RN5T618_ADC_CHANNEL(LIMMON, IIO_CURRENT, "LIMMON"),
18087a25333SAndreas Kemnade 	RN5T618_ADC_CHANNEL(VBAT, IIO_VOLTAGE, "VBAT"),
18187a25333SAndreas Kemnade 	RN5T618_ADC_CHANNEL(VADP, IIO_VOLTAGE, "VADP"),
18287a25333SAndreas Kemnade 	RN5T618_ADC_CHANNEL(VUSB, IIO_VOLTAGE, "VUSB"),
18387a25333SAndreas Kemnade 	RN5T618_ADC_CHANNEL(VSYS, IIO_VOLTAGE, "VSYS"),
18487a25333SAndreas Kemnade 	RN5T618_ADC_CHANNEL(VTHM, IIO_VOLTAGE, "VTHM"),
18587a25333SAndreas Kemnade 	RN5T618_ADC_CHANNEL(AIN1, IIO_VOLTAGE, "AIN1"),
18687a25333SAndreas Kemnade 	RN5T618_ADC_CHANNEL(AIN0, IIO_VOLTAGE, "AIN0")
18787a25333SAndreas Kemnade };
18887a25333SAndreas Kemnade 
1891a844ddfSAndreas Kemnade static struct iio_map rn5t618_maps[] = {
1901a844ddfSAndreas Kemnade 	IIO_MAP("VADP", "rn5t618-power", "vadp"),
1911a844ddfSAndreas Kemnade 	IIO_MAP("VUSB", "rn5t618-power", "vusb"),
1921a844ddfSAndreas Kemnade 	{ /* sentinel */ }
1931a844ddfSAndreas Kemnade };
1941a844ddfSAndreas Kemnade 
rn5t618_adc_probe(struct platform_device * pdev)19587a25333SAndreas Kemnade static int rn5t618_adc_probe(struct platform_device *pdev)
19687a25333SAndreas Kemnade {
19787a25333SAndreas Kemnade 	int ret;
19887a25333SAndreas Kemnade 	struct iio_dev *iio_dev;
19987a25333SAndreas Kemnade 	struct rn5t618_adc_data *adc;
20087a25333SAndreas Kemnade 	struct rn5t618 *rn5t618 = dev_get_drvdata(pdev->dev.parent);
20187a25333SAndreas Kemnade 
20287a25333SAndreas Kemnade 	iio_dev = devm_iio_device_alloc(&pdev->dev, sizeof(*adc));
20387a25333SAndreas Kemnade 	if (!iio_dev) {
20487a25333SAndreas Kemnade 		dev_err(&pdev->dev, "failed allocating iio device\n");
20587a25333SAndreas Kemnade 		return -ENOMEM;
20687a25333SAndreas Kemnade 	}
20787a25333SAndreas Kemnade 
20887a25333SAndreas Kemnade 	adc = iio_priv(iio_dev);
20987a25333SAndreas Kemnade 	adc->dev = &pdev->dev;
21087a25333SAndreas Kemnade 	adc->rn5t618 = rn5t618;
21187a25333SAndreas Kemnade 
21287a25333SAndreas Kemnade 	if (rn5t618->irq_data)
21387a25333SAndreas Kemnade 		adc->irq = regmap_irq_get_virq(rn5t618->irq_data,
21487a25333SAndreas Kemnade 					       RN5T618_IRQ_ADC);
21587a25333SAndreas Kemnade 
21687a25333SAndreas Kemnade 	if (adc->irq <= 0) {
21787a25333SAndreas Kemnade 		dev_err(&pdev->dev, "get virq failed\n");
21887a25333SAndreas Kemnade 		return -EINVAL;
21987a25333SAndreas Kemnade 	}
22087a25333SAndreas Kemnade 
22187a25333SAndreas Kemnade 	init_completion(&adc->conv_completion);
22287a25333SAndreas Kemnade 
22387a25333SAndreas Kemnade 	iio_dev->name = dev_name(&pdev->dev);
22487a25333SAndreas Kemnade 	iio_dev->info = &rn5t618_adc_iio_info;
22587a25333SAndreas Kemnade 	iio_dev->modes = INDIO_DIRECT_MODE;
22687a25333SAndreas Kemnade 	iio_dev->channels = rn5t618_adc_iio_channels;
22787a25333SAndreas Kemnade 	iio_dev->num_channels = ARRAY_SIZE(rn5t618_adc_iio_channels);
22887a25333SAndreas Kemnade 
22987a25333SAndreas Kemnade 	/* stop any auto-conversion */
23087a25333SAndreas Kemnade 	ret = regmap_write(rn5t618->regmap, RN5T618_ADCCNT3, 0);
23187a25333SAndreas Kemnade 	if (ret < 0)
23287a25333SAndreas Kemnade 		return ret;
23387a25333SAndreas Kemnade 
23487a25333SAndreas Kemnade 	platform_set_drvdata(pdev, iio_dev);
23587a25333SAndreas Kemnade 
23687a25333SAndreas Kemnade 	ret = devm_request_threaded_irq(adc->dev, adc->irq, NULL,
23787a25333SAndreas Kemnade 					rn5t618_adc_irq,
23887a25333SAndreas Kemnade 					IRQF_ONESHOT, dev_name(adc->dev),
23987a25333SAndreas Kemnade 					adc);
24087a25333SAndreas Kemnade 	if (ret < 0) {
24187a25333SAndreas Kemnade 		dev_err(adc->dev, "request irq %d failed: %d\n", adc->irq, ret);
24287a25333SAndreas Kemnade 		return ret;
24387a25333SAndreas Kemnade 	}
24487a25333SAndreas Kemnade 
245bdf48481SAlexandru Ardelean 	ret = devm_iio_map_array_register(adc->dev, iio_dev, rn5t618_maps);
2461a844ddfSAndreas Kemnade 	if (ret < 0)
2471a844ddfSAndreas Kemnade 		return ret;
2481a844ddfSAndreas Kemnade 
24987a25333SAndreas Kemnade 	return devm_iio_device_register(adc->dev, iio_dev);
25087a25333SAndreas Kemnade }
25187a25333SAndreas Kemnade 
25287a25333SAndreas Kemnade static struct platform_driver rn5t618_adc_driver = {
25387a25333SAndreas Kemnade 	.driver = {
25487a25333SAndreas Kemnade 		.name   = "rn5t618-adc",
25587a25333SAndreas Kemnade 	},
25687a25333SAndreas Kemnade 	.probe = rn5t618_adc_probe,
25787a25333SAndreas Kemnade };
25887a25333SAndreas Kemnade 
25987a25333SAndreas Kemnade module_platform_driver(rn5t618_adc_driver);
26087a25333SAndreas Kemnade MODULE_ALIAS("platform:rn5t618-adc");
26187a25333SAndreas Kemnade MODULE_DESCRIPTION("RICOH RN5T618 ADC driver");
26287a25333SAndreas Kemnade MODULE_LICENSE("GPL");
263