xref: /kernel/linux/linux-5.10/drivers/iio/dac/ad8801.c (revision 8c2ecf20)
18c2ecf20Sopenharmony_ci// SPDX-License-Identifier: GPL-2.0-only
28c2ecf20Sopenharmony_ci/*
38c2ecf20Sopenharmony_ci * IIO DAC driver for Analog Devices AD8801 DAC
48c2ecf20Sopenharmony_ci *
58c2ecf20Sopenharmony_ci * Copyright (C) 2016 Gwenhael Goavec-Merou
68c2ecf20Sopenharmony_ci */
78c2ecf20Sopenharmony_ci
88c2ecf20Sopenharmony_ci#include <linux/iio/iio.h>
98c2ecf20Sopenharmony_ci#include <linux/module.h>
108c2ecf20Sopenharmony_ci#include <linux/regulator/consumer.h>
118c2ecf20Sopenharmony_ci#include <linux/spi/spi.h>
128c2ecf20Sopenharmony_ci#include <linux/sysfs.h>
138c2ecf20Sopenharmony_ci
148c2ecf20Sopenharmony_ci#define AD8801_CFG_ADDR_OFFSET 8
158c2ecf20Sopenharmony_ci
168c2ecf20Sopenharmony_cienum ad8801_device_ids {
178c2ecf20Sopenharmony_ci	ID_AD8801,
188c2ecf20Sopenharmony_ci	ID_AD8803,
198c2ecf20Sopenharmony_ci};
208c2ecf20Sopenharmony_ci
218c2ecf20Sopenharmony_cistruct ad8801_state {
228c2ecf20Sopenharmony_ci	struct spi_device *spi;
238c2ecf20Sopenharmony_ci	unsigned char dac_cache[8]; /* Value write on each channel */
248c2ecf20Sopenharmony_ci	unsigned int vrefh_mv;
258c2ecf20Sopenharmony_ci	unsigned int vrefl_mv;
268c2ecf20Sopenharmony_ci	struct regulator *vrefh_reg;
278c2ecf20Sopenharmony_ci	struct regulator *vrefl_reg;
288c2ecf20Sopenharmony_ci
298c2ecf20Sopenharmony_ci	__be16 data ____cacheline_aligned;
308c2ecf20Sopenharmony_ci};
318c2ecf20Sopenharmony_ci
328c2ecf20Sopenharmony_cistatic int ad8801_spi_write(struct ad8801_state *state,
338c2ecf20Sopenharmony_ci	u8 channel, unsigned char value)
348c2ecf20Sopenharmony_ci{
358c2ecf20Sopenharmony_ci	state->data = cpu_to_be16((channel << AD8801_CFG_ADDR_OFFSET) | value);
368c2ecf20Sopenharmony_ci	return spi_write(state->spi, &state->data, sizeof(state->data));
378c2ecf20Sopenharmony_ci}
388c2ecf20Sopenharmony_ci
398c2ecf20Sopenharmony_cistatic int ad8801_write_raw(struct iio_dev *indio_dev,
408c2ecf20Sopenharmony_ci	struct iio_chan_spec const *chan, int val, int val2, long mask)
418c2ecf20Sopenharmony_ci{
428c2ecf20Sopenharmony_ci	struct ad8801_state *state = iio_priv(indio_dev);
438c2ecf20Sopenharmony_ci	int ret;
448c2ecf20Sopenharmony_ci
458c2ecf20Sopenharmony_ci	switch (mask) {
468c2ecf20Sopenharmony_ci	case IIO_CHAN_INFO_RAW:
478c2ecf20Sopenharmony_ci		if (val >= 256 || val < 0)
488c2ecf20Sopenharmony_ci			return -EINVAL;
498c2ecf20Sopenharmony_ci
508c2ecf20Sopenharmony_ci		ret = ad8801_spi_write(state, chan->channel, val);
518c2ecf20Sopenharmony_ci		if (ret == 0)
528c2ecf20Sopenharmony_ci			state->dac_cache[chan->channel] = val;
538c2ecf20Sopenharmony_ci		break;
548c2ecf20Sopenharmony_ci	default:
558c2ecf20Sopenharmony_ci		ret = -EINVAL;
568c2ecf20Sopenharmony_ci	}
578c2ecf20Sopenharmony_ci
588c2ecf20Sopenharmony_ci	return ret;
598c2ecf20Sopenharmony_ci}
608c2ecf20Sopenharmony_ci
618c2ecf20Sopenharmony_cistatic int ad8801_read_raw(struct iio_dev *indio_dev,
628c2ecf20Sopenharmony_ci	struct iio_chan_spec const *chan, int *val, int *val2, long info)
638c2ecf20Sopenharmony_ci{
648c2ecf20Sopenharmony_ci	struct ad8801_state *state = iio_priv(indio_dev);
658c2ecf20Sopenharmony_ci
668c2ecf20Sopenharmony_ci	switch (info) {
678c2ecf20Sopenharmony_ci	case IIO_CHAN_INFO_RAW:
688c2ecf20Sopenharmony_ci		*val = state->dac_cache[chan->channel];
698c2ecf20Sopenharmony_ci		return IIO_VAL_INT;
708c2ecf20Sopenharmony_ci	case IIO_CHAN_INFO_SCALE:
718c2ecf20Sopenharmony_ci		*val = state->vrefh_mv - state->vrefl_mv;
728c2ecf20Sopenharmony_ci		*val2 = 8;
738c2ecf20Sopenharmony_ci		return IIO_VAL_FRACTIONAL_LOG2;
748c2ecf20Sopenharmony_ci	case IIO_CHAN_INFO_OFFSET:
758c2ecf20Sopenharmony_ci		*val = state->vrefl_mv;
768c2ecf20Sopenharmony_ci		return IIO_VAL_INT;
778c2ecf20Sopenharmony_ci	default:
788c2ecf20Sopenharmony_ci		return -EINVAL;
798c2ecf20Sopenharmony_ci	}
808c2ecf20Sopenharmony_ci
818c2ecf20Sopenharmony_ci	return -EINVAL;
828c2ecf20Sopenharmony_ci}
838c2ecf20Sopenharmony_ci
848c2ecf20Sopenharmony_cistatic const struct iio_info ad8801_info = {
858c2ecf20Sopenharmony_ci	.read_raw = ad8801_read_raw,
868c2ecf20Sopenharmony_ci	.write_raw = ad8801_write_raw,
878c2ecf20Sopenharmony_ci};
888c2ecf20Sopenharmony_ci
898c2ecf20Sopenharmony_ci#define AD8801_CHANNEL(chan) {		\
908c2ecf20Sopenharmony_ci	.type = IIO_VOLTAGE,			\
918c2ecf20Sopenharmony_ci	.indexed = 1,				\
928c2ecf20Sopenharmony_ci	.output = 1,				\
938c2ecf20Sopenharmony_ci	.channel = chan,			\
948c2ecf20Sopenharmony_ci	.info_mask_separate = BIT(IIO_CHAN_INFO_RAW), \
958c2ecf20Sopenharmony_ci	.info_mask_shared_by_type = BIT(IIO_CHAN_INFO_SCALE) |	\
968c2ecf20Sopenharmony_ci		BIT(IIO_CHAN_INFO_OFFSET), \
978c2ecf20Sopenharmony_ci}
988c2ecf20Sopenharmony_ci
998c2ecf20Sopenharmony_cistatic const struct iio_chan_spec ad8801_channels[] = {
1008c2ecf20Sopenharmony_ci	AD8801_CHANNEL(0),
1018c2ecf20Sopenharmony_ci	AD8801_CHANNEL(1),
1028c2ecf20Sopenharmony_ci	AD8801_CHANNEL(2),
1038c2ecf20Sopenharmony_ci	AD8801_CHANNEL(3),
1048c2ecf20Sopenharmony_ci	AD8801_CHANNEL(4),
1058c2ecf20Sopenharmony_ci	AD8801_CHANNEL(5),
1068c2ecf20Sopenharmony_ci	AD8801_CHANNEL(6),
1078c2ecf20Sopenharmony_ci	AD8801_CHANNEL(7),
1088c2ecf20Sopenharmony_ci};
1098c2ecf20Sopenharmony_ci
1108c2ecf20Sopenharmony_cistatic int ad8801_probe(struct spi_device *spi)
1118c2ecf20Sopenharmony_ci{
1128c2ecf20Sopenharmony_ci	struct iio_dev *indio_dev;
1138c2ecf20Sopenharmony_ci	struct ad8801_state *state;
1148c2ecf20Sopenharmony_ci	const struct spi_device_id *id;
1158c2ecf20Sopenharmony_ci	int ret;
1168c2ecf20Sopenharmony_ci
1178c2ecf20Sopenharmony_ci	indio_dev = devm_iio_device_alloc(&spi->dev, sizeof(*state));
1188c2ecf20Sopenharmony_ci	if (indio_dev == NULL)
1198c2ecf20Sopenharmony_ci		return -ENOMEM;
1208c2ecf20Sopenharmony_ci
1218c2ecf20Sopenharmony_ci	state = iio_priv(indio_dev);
1228c2ecf20Sopenharmony_ci	state->spi = spi;
1238c2ecf20Sopenharmony_ci	id = spi_get_device_id(spi);
1248c2ecf20Sopenharmony_ci
1258c2ecf20Sopenharmony_ci	state->vrefh_reg = devm_regulator_get(&spi->dev, "vrefh");
1268c2ecf20Sopenharmony_ci	if (IS_ERR(state->vrefh_reg)) {
1278c2ecf20Sopenharmony_ci		dev_err(&spi->dev, "Vrefh regulator not specified\n");
1288c2ecf20Sopenharmony_ci		return PTR_ERR(state->vrefh_reg);
1298c2ecf20Sopenharmony_ci	}
1308c2ecf20Sopenharmony_ci
1318c2ecf20Sopenharmony_ci	ret = regulator_enable(state->vrefh_reg);
1328c2ecf20Sopenharmony_ci	if (ret) {
1338c2ecf20Sopenharmony_ci		dev_err(&spi->dev, "Failed to enable vrefh regulator: %d\n",
1348c2ecf20Sopenharmony_ci				ret);
1358c2ecf20Sopenharmony_ci		return ret;
1368c2ecf20Sopenharmony_ci	}
1378c2ecf20Sopenharmony_ci
1388c2ecf20Sopenharmony_ci	ret = regulator_get_voltage(state->vrefh_reg);
1398c2ecf20Sopenharmony_ci	if (ret < 0) {
1408c2ecf20Sopenharmony_ci		dev_err(&spi->dev, "Failed to read vrefh regulator: %d\n",
1418c2ecf20Sopenharmony_ci				ret);
1428c2ecf20Sopenharmony_ci		goto error_disable_vrefh_reg;
1438c2ecf20Sopenharmony_ci	}
1448c2ecf20Sopenharmony_ci	state->vrefh_mv = ret / 1000;
1458c2ecf20Sopenharmony_ci
1468c2ecf20Sopenharmony_ci	if (id->driver_data == ID_AD8803) {
1478c2ecf20Sopenharmony_ci		state->vrefl_reg = devm_regulator_get(&spi->dev, "vrefl");
1488c2ecf20Sopenharmony_ci		if (IS_ERR(state->vrefl_reg)) {
1498c2ecf20Sopenharmony_ci			dev_err(&spi->dev, "Vrefl regulator not specified\n");
1508c2ecf20Sopenharmony_ci			ret = PTR_ERR(state->vrefl_reg);
1518c2ecf20Sopenharmony_ci			goto error_disable_vrefh_reg;
1528c2ecf20Sopenharmony_ci		}
1538c2ecf20Sopenharmony_ci
1548c2ecf20Sopenharmony_ci		ret = regulator_enable(state->vrefl_reg);
1558c2ecf20Sopenharmony_ci		if (ret) {
1568c2ecf20Sopenharmony_ci			dev_err(&spi->dev, "Failed to enable vrefl regulator: %d\n",
1578c2ecf20Sopenharmony_ci					ret);
1588c2ecf20Sopenharmony_ci			goto error_disable_vrefh_reg;
1598c2ecf20Sopenharmony_ci		}
1608c2ecf20Sopenharmony_ci
1618c2ecf20Sopenharmony_ci		ret = regulator_get_voltage(state->vrefl_reg);
1628c2ecf20Sopenharmony_ci		if (ret < 0) {
1638c2ecf20Sopenharmony_ci			dev_err(&spi->dev, "Failed to read vrefl regulator: %d\n",
1648c2ecf20Sopenharmony_ci					ret);
1658c2ecf20Sopenharmony_ci			goto error_disable_vrefl_reg;
1668c2ecf20Sopenharmony_ci		}
1678c2ecf20Sopenharmony_ci		state->vrefl_mv = ret / 1000;
1688c2ecf20Sopenharmony_ci	} else {
1698c2ecf20Sopenharmony_ci		state->vrefl_mv = 0;
1708c2ecf20Sopenharmony_ci		state->vrefl_reg = NULL;
1718c2ecf20Sopenharmony_ci	}
1728c2ecf20Sopenharmony_ci
1738c2ecf20Sopenharmony_ci	spi_set_drvdata(spi, indio_dev);
1748c2ecf20Sopenharmony_ci	indio_dev->info = &ad8801_info;
1758c2ecf20Sopenharmony_ci	indio_dev->modes = INDIO_DIRECT_MODE;
1768c2ecf20Sopenharmony_ci	indio_dev->channels = ad8801_channels;
1778c2ecf20Sopenharmony_ci	indio_dev->num_channels = ARRAY_SIZE(ad8801_channels);
1788c2ecf20Sopenharmony_ci	indio_dev->name = id->name;
1798c2ecf20Sopenharmony_ci
1808c2ecf20Sopenharmony_ci	ret = iio_device_register(indio_dev);
1818c2ecf20Sopenharmony_ci	if (ret) {
1828c2ecf20Sopenharmony_ci		dev_err(&spi->dev, "Failed to register iio device: %d\n",
1838c2ecf20Sopenharmony_ci				ret);
1848c2ecf20Sopenharmony_ci		goto error_disable_vrefl_reg;
1858c2ecf20Sopenharmony_ci	}
1868c2ecf20Sopenharmony_ci
1878c2ecf20Sopenharmony_ci	return 0;
1888c2ecf20Sopenharmony_ci
1898c2ecf20Sopenharmony_cierror_disable_vrefl_reg:
1908c2ecf20Sopenharmony_ci	if (state->vrefl_reg)
1918c2ecf20Sopenharmony_ci		regulator_disable(state->vrefl_reg);
1928c2ecf20Sopenharmony_cierror_disable_vrefh_reg:
1938c2ecf20Sopenharmony_ci	regulator_disable(state->vrefh_reg);
1948c2ecf20Sopenharmony_ci	return ret;
1958c2ecf20Sopenharmony_ci}
1968c2ecf20Sopenharmony_ci
1978c2ecf20Sopenharmony_cistatic int ad8801_remove(struct spi_device *spi)
1988c2ecf20Sopenharmony_ci{
1998c2ecf20Sopenharmony_ci	struct iio_dev *indio_dev = spi_get_drvdata(spi);
2008c2ecf20Sopenharmony_ci	struct ad8801_state *state = iio_priv(indio_dev);
2018c2ecf20Sopenharmony_ci
2028c2ecf20Sopenharmony_ci	iio_device_unregister(indio_dev);
2038c2ecf20Sopenharmony_ci	if (state->vrefl_reg)
2048c2ecf20Sopenharmony_ci		regulator_disable(state->vrefl_reg);
2058c2ecf20Sopenharmony_ci	regulator_disable(state->vrefh_reg);
2068c2ecf20Sopenharmony_ci
2078c2ecf20Sopenharmony_ci	return 0;
2088c2ecf20Sopenharmony_ci}
2098c2ecf20Sopenharmony_ci
2108c2ecf20Sopenharmony_cistatic const struct spi_device_id ad8801_ids[] = {
2118c2ecf20Sopenharmony_ci	{"ad8801", ID_AD8801},
2128c2ecf20Sopenharmony_ci	{"ad8803", ID_AD8803},
2138c2ecf20Sopenharmony_ci	{}
2148c2ecf20Sopenharmony_ci};
2158c2ecf20Sopenharmony_ciMODULE_DEVICE_TABLE(spi, ad8801_ids);
2168c2ecf20Sopenharmony_ci
2178c2ecf20Sopenharmony_cistatic struct spi_driver ad8801_driver = {
2188c2ecf20Sopenharmony_ci	.driver = {
2198c2ecf20Sopenharmony_ci		.name	= "ad8801",
2208c2ecf20Sopenharmony_ci	},
2218c2ecf20Sopenharmony_ci	.probe		= ad8801_probe,
2228c2ecf20Sopenharmony_ci	.remove		= ad8801_remove,
2238c2ecf20Sopenharmony_ci	.id_table	= ad8801_ids,
2248c2ecf20Sopenharmony_ci};
2258c2ecf20Sopenharmony_cimodule_spi_driver(ad8801_driver);
2268c2ecf20Sopenharmony_ci
2278c2ecf20Sopenharmony_ciMODULE_AUTHOR("Gwenhael Goavec-Merou <gwenhael.goavec-merou@trabucayre.com>");
2288c2ecf20Sopenharmony_ciMODULE_DESCRIPTION("Analog Devices AD8801/AD8803 DAC");
2298c2ecf20Sopenharmony_ciMODULE_LICENSE("GPL v2");
230