xref: /linux/drivers/iio/adc/ti-ads8688.c (revision b541eaff4917a7429cd0e83cb3962383276db357)
13e87e783SSean Nyekjaer /*
23e87e783SSean Nyekjaer  * Copyright (C) 2015 Prevas A/S
33e87e783SSean Nyekjaer  *
43e87e783SSean Nyekjaer  * This program is free software; you can redistribute it and/or modify
53e87e783SSean Nyekjaer  * it under the terms of the GNU General Public License version 2 as
63e87e783SSean Nyekjaer  * published by the Free Software Foundation.
73e87e783SSean Nyekjaer  */
83e87e783SSean Nyekjaer 
93e87e783SSean Nyekjaer #include <linux/device.h>
103e87e783SSean Nyekjaer #include <linux/kernel.h>
113e87e783SSean Nyekjaer #include <linux/slab.h>
123e87e783SSean Nyekjaer #include <linux/sysfs.h>
133e87e783SSean Nyekjaer #include <linux/spi/spi.h>
143e87e783SSean Nyekjaer #include <linux/regulator/consumer.h>
153e87e783SSean Nyekjaer #include <linux/err.h>
163e87e783SSean Nyekjaer #include <linux/module.h>
173e87e783SSean Nyekjaer #include <linux/of.h>
183e87e783SSean Nyekjaer 
193e87e783SSean Nyekjaer #include <linux/iio/iio.h>
203e87e783SSean Nyekjaer #include <linux/iio/sysfs.h>
213e87e783SSean Nyekjaer 
223e87e783SSean Nyekjaer #define ADS8688_CMD_REG(x)		(x << 8)
233e87e783SSean Nyekjaer #define ADS8688_CMD_REG_NOOP		0x00
243e87e783SSean Nyekjaer #define ADS8688_CMD_REG_RST		0x85
253e87e783SSean Nyekjaer #define ADS8688_CMD_REG_MAN_CH(chan)	(0xC0 | (4 * chan))
263e87e783SSean Nyekjaer #define ADS8688_CMD_DONT_CARE_BITS	16
273e87e783SSean Nyekjaer 
283e87e783SSean Nyekjaer #define ADS8688_PROG_REG(x)		(x << 9)
293e87e783SSean Nyekjaer #define ADS8688_PROG_REG_RANGE_CH(chan)	(0x05 + chan)
303e87e783SSean Nyekjaer #define ADS8688_PROG_WR_BIT		BIT(8)
313e87e783SSean Nyekjaer #define ADS8688_PROG_DONT_CARE_BITS	8
323e87e783SSean Nyekjaer 
333e87e783SSean Nyekjaer #define ADS8688_REG_PLUSMINUS25VREF	0
343e87e783SSean Nyekjaer #define ADS8688_REG_PLUSMINUS125VREF	1
353e87e783SSean Nyekjaer #define ADS8688_REG_PLUSMINUS0625VREF	2
363e87e783SSean Nyekjaer #define ADS8688_REG_PLUS25VREF		5
373e87e783SSean Nyekjaer #define ADS8688_REG_PLUS125VREF		6
383e87e783SSean Nyekjaer 
393e87e783SSean Nyekjaer #define ADS8688_VREF_MV			4096
403e87e783SSean Nyekjaer #define ADS8688_REALBITS		16
413e87e783SSean Nyekjaer 
423e87e783SSean Nyekjaer /*
433e87e783SSean Nyekjaer  * enum ads8688_range - ADS8688 reference voltage range
443e87e783SSean Nyekjaer  * @ADS8688_PLUSMINUS25VREF: Device is configured for input range ±2.5 * VREF
453e87e783SSean Nyekjaer  * @ADS8688_PLUSMINUS125VREF: Device is configured for input range ±1.25 * VREF
463e87e783SSean Nyekjaer  * @ADS8688_PLUSMINUS0625VREF: Device is configured for input range ±0.625 * VREF
473e87e783SSean Nyekjaer  * @ADS8688_PLUS25VREF: Device is configured for input range 0 - 2.5 * VREF
483e87e783SSean Nyekjaer  * @ADS8688_PLUS125VREF: Device is configured for input range 0 - 1.25 * VREF
493e87e783SSean Nyekjaer  */
503e87e783SSean Nyekjaer enum ads8688_range {
513e87e783SSean Nyekjaer 	ADS8688_PLUSMINUS25VREF,
523e87e783SSean Nyekjaer 	ADS8688_PLUSMINUS125VREF,
533e87e783SSean Nyekjaer 	ADS8688_PLUSMINUS0625VREF,
543e87e783SSean Nyekjaer 	ADS8688_PLUS25VREF,
553e87e783SSean Nyekjaer 	ADS8688_PLUS125VREF,
563e87e783SSean Nyekjaer };
573e87e783SSean Nyekjaer 
583e87e783SSean Nyekjaer struct ads8688_chip_info {
593e87e783SSean Nyekjaer 	const struct iio_chan_spec *channels;
603e87e783SSean Nyekjaer 	unsigned int num_channels;
613e87e783SSean Nyekjaer };
623e87e783SSean Nyekjaer 
633e87e783SSean Nyekjaer struct ads8688_state {
643e87e783SSean Nyekjaer 	struct mutex			lock;
653e87e783SSean Nyekjaer 	const struct ads8688_chip_info	*chip_info;
663e87e783SSean Nyekjaer 	struct spi_device		*spi;
673e87e783SSean Nyekjaer 	struct regulator		*reg;
683e87e783SSean Nyekjaer 	unsigned int			vref_mv;
693e87e783SSean Nyekjaer 	enum ads8688_range		range[8];
703e87e783SSean Nyekjaer 	union {
713e87e783SSean Nyekjaer 		__be32 d32;
723e87e783SSean Nyekjaer 		u8 d8[4];
733e87e783SSean Nyekjaer 	} data[2] ____cacheline_aligned;
743e87e783SSean Nyekjaer };
753e87e783SSean Nyekjaer 
763e87e783SSean Nyekjaer enum ads8688_id {
773e87e783SSean Nyekjaer 	ID_ADS8684,
783e87e783SSean Nyekjaer 	ID_ADS8688,
793e87e783SSean Nyekjaer };
803e87e783SSean Nyekjaer 
813e87e783SSean Nyekjaer struct ads8688_ranges {
823e87e783SSean Nyekjaer 	enum ads8688_range range;
833e87e783SSean Nyekjaer 	unsigned int scale;
843e87e783SSean Nyekjaer 	int offset;
853e87e783SSean Nyekjaer 	u8 reg;
863e87e783SSean Nyekjaer };
873e87e783SSean Nyekjaer 
883e87e783SSean Nyekjaer static const struct ads8688_ranges ads8688_range_def[5] = {
893e87e783SSean Nyekjaer 	{
903e87e783SSean Nyekjaer 		.range = ADS8688_PLUSMINUS25VREF,
913e87e783SSean Nyekjaer 		.scale = 76295,
923e87e783SSean Nyekjaer 		.offset = -(1 << (ADS8688_REALBITS - 1)),
933e87e783SSean Nyekjaer 		.reg = ADS8688_REG_PLUSMINUS25VREF,
943e87e783SSean Nyekjaer 	}, {
953e87e783SSean Nyekjaer 		.range = ADS8688_PLUSMINUS125VREF,
963e87e783SSean Nyekjaer 		.scale = 38148,
973e87e783SSean Nyekjaer 		.offset = -(1 << (ADS8688_REALBITS - 1)),
983e87e783SSean Nyekjaer 		.reg = ADS8688_REG_PLUSMINUS125VREF,
993e87e783SSean Nyekjaer 	}, {
1003e87e783SSean Nyekjaer 		.range = ADS8688_PLUSMINUS0625VREF,
1013e87e783SSean Nyekjaer 		.scale = 19074,
1023e87e783SSean Nyekjaer 		.offset = -(1 << (ADS8688_REALBITS - 1)),
1033e87e783SSean Nyekjaer 		.reg = ADS8688_REG_PLUSMINUS0625VREF,
1043e87e783SSean Nyekjaer 	}, {
1053e87e783SSean Nyekjaer 		.range = ADS8688_PLUS25VREF,
1063e87e783SSean Nyekjaer 		.scale = 38148,
1073e87e783SSean Nyekjaer 		.offset = 0,
1083e87e783SSean Nyekjaer 		.reg = ADS8688_REG_PLUS25VREF,
1093e87e783SSean Nyekjaer 	}, {
1103e87e783SSean Nyekjaer 		.range = ADS8688_PLUS125VREF,
1113e87e783SSean Nyekjaer 		.scale = 19074,
1123e87e783SSean Nyekjaer 		.offset = 0,
1133e87e783SSean Nyekjaer 		.reg = ADS8688_REG_PLUS125VREF,
1143e87e783SSean Nyekjaer 	}
1153e87e783SSean Nyekjaer };
1163e87e783SSean Nyekjaer 
1173e87e783SSean Nyekjaer static ssize_t ads8688_show_scales(struct device *dev,
1183e87e783SSean Nyekjaer 				   struct device_attribute *attr, char *buf)
1193e87e783SSean Nyekjaer {
1203e87e783SSean Nyekjaer 	struct ads8688_state *st = iio_priv(dev_to_iio_dev(dev));
1213e87e783SSean Nyekjaer 
1223e87e783SSean Nyekjaer 	return sprintf(buf, "0.%09u 0.%09u 0.%09u\n",
1233e87e783SSean Nyekjaer 		       ads8688_range_def[0].scale * st->vref_mv,
1243e87e783SSean Nyekjaer 		       ads8688_range_def[1].scale * st->vref_mv,
1253e87e783SSean Nyekjaer 		       ads8688_range_def[2].scale * st->vref_mv);
1263e87e783SSean Nyekjaer }
1273e87e783SSean Nyekjaer 
1283e87e783SSean Nyekjaer static ssize_t ads8688_show_offsets(struct device *dev,
1293e87e783SSean Nyekjaer 				    struct device_attribute *attr, char *buf)
1303e87e783SSean Nyekjaer {
1313e87e783SSean Nyekjaer 	return sprintf(buf, "%d %d\n", ads8688_range_def[0].offset,
1323e87e783SSean Nyekjaer 		       ads8688_range_def[3].offset);
1333e87e783SSean Nyekjaer }
1343e87e783SSean Nyekjaer 
1353e87e783SSean Nyekjaer static IIO_DEVICE_ATTR(in_voltage_scale_available, S_IRUGO,
1363e87e783SSean Nyekjaer 		       ads8688_show_scales, NULL, 0);
1373e87e783SSean Nyekjaer static IIO_DEVICE_ATTR(in_voltage_offset_available, S_IRUGO,
1383e87e783SSean Nyekjaer 		       ads8688_show_offsets, NULL, 0);
1393e87e783SSean Nyekjaer 
1403e87e783SSean Nyekjaer static struct attribute *ads8688_attributes[] = {
1413e87e783SSean Nyekjaer 	&iio_dev_attr_in_voltage_scale_available.dev_attr.attr,
1423e87e783SSean Nyekjaer 	&iio_dev_attr_in_voltage_offset_available.dev_attr.attr,
1433e87e783SSean Nyekjaer 	NULL,
1443e87e783SSean Nyekjaer };
1453e87e783SSean Nyekjaer 
1463e87e783SSean Nyekjaer static const struct attribute_group ads8688_attribute_group = {
1473e87e783SSean Nyekjaer 	.attrs = ads8688_attributes,
1483e87e783SSean Nyekjaer };
1493e87e783SSean Nyekjaer 
1503e87e783SSean Nyekjaer #define ADS8688_CHAN(index)					\
1513e87e783SSean Nyekjaer {								\
1523e87e783SSean Nyekjaer 	.type = IIO_VOLTAGE,					\
1533e87e783SSean Nyekjaer 	.indexed = 1,						\
1543e87e783SSean Nyekjaer 	.channel = index,					\
1553e87e783SSean Nyekjaer 	.info_mask_separate = BIT(IIO_CHAN_INFO_RAW)		\
1563e87e783SSean Nyekjaer 			      | BIT(IIO_CHAN_INFO_SCALE)	\
1573e87e783SSean Nyekjaer 			      | BIT(IIO_CHAN_INFO_OFFSET),	\
1583e87e783SSean Nyekjaer }
1593e87e783SSean Nyekjaer 
1603e87e783SSean Nyekjaer static const struct iio_chan_spec ads8684_channels[] = {
1613e87e783SSean Nyekjaer 	ADS8688_CHAN(0),
1623e87e783SSean Nyekjaer 	ADS8688_CHAN(1),
1633e87e783SSean Nyekjaer 	ADS8688_CHAN(2),
1643e87e783SSean Nyekjaer 	ADS8688_CHAN(3),
1653e87e783SSean Nyekjaer };
1663e87e783SSean Nyekjaer 
1673e87e783SSean Nyekjaer static const struct iio_chan_spec ads8688_channels[] = {
1683e87e783SSean Nyekjaer 	ADS8688_CHAN(0),
1693e87e783SSean Nyekjaer 	ADS8688_CHAN(1),
1703e87e783SSean Nyekjaer 	ADS8688_CHAN(2),
1713e87e783SSean Nyekjaer 	ADS8688_CHAN(3),
1723e87e783SSean Nyekjaer 	ADS8688_CHAN(4),
1733e87e783SSean Nyekjaer 	ADS8688_CHAN(5),
1743e87e783SSean Nyekjaer 	ADS8688_CHAN(6),
1753e87e783SSean Nyekjaer 	ADS8688_CHAN(7),
1763e87e783SSean Nyekjaer };
1773e87e783SSean Nyekjaer 
1783e87e783SSean Nyekjaer static int ads8688_prog_write(struct iio_dev *indio_dev, unsigned int addr,
1793e87e783SSean Nyekjaer 			      unsigned int val)
1803e87e783SSean Nyekjaer {
1813e87e783SSean Nyekjaer 	struct ads8688_state *st = iio_priv(indio_dev);
1823e87e783SSean Nyekjaer 	u32 tmp;
1833e87e783SSean Nyekjaer 
1843e87e783SSean Nyekjaer 	tmp = ADS8688_PROG_REG(addr) | ADS8688_PROG_WR_BIT | val;
1853e87e783SSean Nyekjaer 	tmp <<= ADS8688_PROG_DONT_CARE_BITS;
1863e87e783SSean Nyekjaer 	st->data[0].d32 = cpu_to_be32(tmp);
1873e87e783SSean Nyekjaer 
1883e87e783SSean Nyekjaer 	return spi_write(st->spi, &st->data[0].d8[1], 3);
1893e87e783SSean Nyekjaer }
1903e87e783SSean Nyekjaer 
1913e87e783SSean Nyekjaer static int ads8688_reset(struct iio_dev *indio_dev)
1923e87e783SSean Nyekjaer {
1933e87e783SSean Nyekjaer 	struct ads8688_state *st = iio_priv(indio_dev);
1943e87e783SSean Nyekjaer 	u32 tmp;
1953e87e783SSean Nyekjaer 
1963e87e783SSean Nyekjaer 	tmp = ADS8688_CMD_REG(ADS8688_CMD_REG_RST);
1973e87e783SSean Nyekjaer 	tmp <<= ADS8688_CMD_DONT_CARE_BITS;
1983e87e783SSean Nyekjaer 	st->data[0].d32 = cpu_to_be32(tmp);
1993e87e783SSean Nyekjaer 
2003e87e783SSean Nyekjaer 	return spi_write(st->spi, &st->data[0].d8[0], 4);
2013e87e783SSean Nyekjaer }
2023e87e783SSean Nyekjaer 
2033e87e783SSean Nyekjaer static int ads8688_read(struct iio_dev *indio_dev, unsigned int chan)
2043e87e783SSean Nyekjaer {
2053e87e783SSean Nyekjaer 	struct ads8688_state *st = iio_priv(indio_dev);
2063e87e783SSean Nyekjaer 	int ret;
2073e87e783SSean Nyekjaer 	u32 tmp;
2083e87e783SSean Nyekjaer 	struct spi_transfer t[] = {
2093e87e783SSean Nyekjaer 		{
2103e87e783SSean Nyekjaer 			.tx_buf = &st->data[0].d8[0],
2113e87e783SSean Nyekjaer 			.len = 4,
2123e87e783SSean Nyekjaer 			.cs_change = 1,
2133e87e783SSean Nyekjaer 		}, {
2143e87e783SSean Nyekjaer 			.tx_buf = &st->data[1].d8[0],
2153e87e783SSean Nyekjaer 			.rx_buf = &st->data[1].d8[0],
2163e87e783SSean Nyekjaer 			.len = 4,
2173e87e783SSean Nyekjaer 		},
2183e87e783SSean Nyekjaer 	};
2193e87e783SSean Nyekjaer 
2203e87e783SSean Nyekjaer 	tmp = ADS8688_CMD_REG(ADS8688_CMD_REG_MAN_CH(chan));
2213e87e783SSean Nyekjaer 	tmp <<= ADS8688_CMD_DONT_CARE_BITS;
2223e87e783SSean Nyekjaer 	st->data[0].d32 = cpu_to_be32(tmp);
2233e87e783SSean Nyekjaer 
2243e87e783SSean Nyekjaer 	tmp = ADS8688_CMD_REG(ADS8688_CMD_REG_NOOP);
2253e87e783SSean Nyekjaer 	tmp <<= ADS8688_CMD_DONT_CARE_BITS;
2263e87e783SSean Nyekjaer 	st->data[1].d32 = cpu_to_be32(tmp);
2273e87e783SSean Nyekjaer 
2283e87e783SSean Nyekjaer 	ret = spi_sync_transfer(st->spi, t, ARRAY_SIZE(t));
2293e87e783SSean Nyekjaer 	if (ret < 0)
2303e87e783SSean Nyekjaer 		return ret;
2313e87e783SSean Nyekjaer 
2323e87e783SSean Nyekjaer 	return be32_to_cpu(st->data[1].d32) & 0xffff;
2333e87e783SSean Nyekjaer }
2343e87e783SSean Nyekjaer 
2353e87e783SSean Nyekjaer static int ads8688_read_raw(struct iio_dev *indio_dev,
2363e87e783SSean Nyekjaer 			    struct iio_chan_spec const *chan,
2373e87e783SSean Nyekjaer 			    int *val, int *val2, long m)
2383e87e783SSean Nyekjaer {
2393e87e783SSean Nyekjaer 	int ret, offset;
2403e87e783SSean Nyekjaer 	unsigned long scale_mv;
2413e87e783SSean Nyekjaer 
2423e87e783SSean Nyekjaer 	struct ads8688_state *st = iio_priv(indio_dev);
2433e87e783SSean Nyekjaer 
2443e87e783SSean Nyekjaer 	mutex_lock(&st->lock);
2453e87e783SSean Nyekjaer 	switch (m) {
2463e87e783SSean Nyekjaer 	case IIO_CHAN_INFO_RAW:
2473e87e783SSean Nyekjaer 		ret = ads8688_read(indio_dev, chan->channel);
2483e87e783SSean Nyekjaer 		mutex_unlock(&st->lock);
2493e87e783SSean Nyekjaer 		if (ret < 0)
2503e87e783SSean Nyekjaer 			return ret;
2513e87e783SSean Nyekjaer 		*val = ret;
2523e87e783SSean Nyekjaer 		return IIO_VAL_INT;
2533e87e783SSean Nyekjaer 	case IIO_CHAN_INFO_SCALE:
2543e87e783SSean Nyekjaer 		scale_mv = st->vref_mv;
2553e87e783SSean Nyekjaer 		scale_mv *= ads8688_range_def[st->range[chan->channel]].scale;
2563e87e783SSean Nyekjaer 		*val = 0;
2573e87e783SSean Nyekjaer 		*val2 = scale_mv;
2583e87e783SSean Nyekjaer 		mutex_unlock(&st->lock);
2593e87e783SSean Nyekjaer 		return IIO_VAL_INT_PLUS_NANO;
2603e87e783SSean Nyekjaer 	case IIO_CHAN_INFO_OFFSET:
2613e87e783SSean Nyekjaer 		offset = ads8688_range_def[st->range[chan->channel]].offset;
2623e87e783SSean Nyekjaer 		*val = offset;
2633e87e783SSean Nyekjaer 		mutex_unlock(&st->lock);
2643e87e783SSean Nyekjaer 		return IIO_VAL_INT;
2653e87e783SSean Nyekjaer 	}
2663e87e783SSean Nyekjaer 	mutex_unlock(&st->lock);
2673e87e783SSean Nyekjaer 
2683e87e783SSean Nyekjaer 	return -EINVAL;
2693e87e783SSean Nyekjaer }
2703e87e783SSean Nyekjaer 
2713e87e783SSean Nyekjaer static int ads8688_write_reg_range(struct iio_dev *indio_dev,
2723e87e783SSean Nyekjaer 				   struct iio_chan_spec const *chan,
2733e87e783SSean Nyekjaer 				   enum ads8688_range range)
2743e87e783SSean Nyekjaer {
2753e87e783SSean Nyekjaer 	unsigned int tmp;
2763e87e783SSean Nyekjaer 	int ret;
2773e87e783SSean Nyekjaer 
2783e87e783SSean Nyekjaer 	tmp = ADS8688_PROG_REG_RANGE_CH(chan->channel);
2793e87e783SSean Nyekjaer 	ret = ads8688_prog_write(indio_dev, tmp, range);
2803e87e783SSean Nyekjaer 
2813e87e783SSean Nyekjaer 	return ret;
2823e87e783SSean Nyekjaer }
2833e87e783SSean Nyekjaer 
2843e87e783SSean Nyekjaer static int ads8688_write_raw(struct iio_dev *indio_dev,
2853e87e783SSean Nyekjaer 			     struct iio_chan_spec const *chan,
2863e87e783SSean Nyekjaer 			     int val, int val2, long mask)
2873e87e783SSean Nyekjaer {
2883e87e783SSean Nyekjaer 	struct ads8688_state *st = iio_priv(indio_dev);
2893e87e783SSean Nyekjaer 	unsigned int scale = 0;
2903e87e783SSean Nyekjaer 	int ret = -EINVAL, i, offset = 0;
2913e87e783SSean Nyekjaer 
2923e87e783SSean Nyekjaer 	mutex_lock(&st->lock);
2933e87e783SSean Nyekjaer 	switch (mask) {
2943e87e783SSean Nyekjaer 	case IIO_CHAN_INFO_SCALE:
2953e87e783SSean Nyekjaer 		/* If the offset is 0 the ±2.5 * VREF mode is not available */
2963e87e783SSean Nyekjaer 		offset = ads8688_range_def[st->range[chan->channel]].offset;
2973e87e783SSean Nyekjaer 		if (offset == 0 && val2 == ads8688_range_def[0].scale * st->vref_mv) {
2983e87e783SSean Nyekjaer 			mutex_unlock(&st->lock);
2993e87e783SSean Nyekjaer 			return -EINVAL;
3003e87e783SSean Nyekjaer 		}
3013e87e783SSean Nyekjaer 
3023e87e783SSean Nyekjaer 		/* Lookup new mode */
3033e87e783SSean Nyekjaer 		for (i = 0; i < ARRAY_SIZE(ads8688_range_def); i++)
3043e87e783SSean Nyekjaer 			if (val2 == ads8688_range_def[i].scale * st->vref_mv &&
3053e87e783SSean Nyekjaer 			    offset == ads8688_range_def[i].offset) {
3063e87e783SSean Nyekjaer 				ret = ads8688_write_reg_range(indio_dev, chan,
3073e87e783SSean Nyekjaer 					ads8688_range_def[i].reg);
3083e87e783SSean Nyekjaer 				break;
3093e87e783SSean Nyekjaer 			}
3103e87e783SSean Nyekjaer 		break;
3113e87e783SSean Nyekjaer 	case IIO_CHAN_INFO_OFFSET:
3123e87e783SSean Nyekjaer 		/*
3133e87e783SSean Nyekjaer 		 * There are only two available offsets:
3143e87e783SSean Nyekjaer 		 * 0 and -(1 << (ADS8688_REALBITS - 1))
3153e87e783SSean Nyekjaer 		 */
3163e87e783SSean Nyekjaer 		if (!(ads8688_range_def[0].offset == val ||
3173e87e783SSean Nyekjaer 		    ads8688_range_def[3].offset == val)) {
3183e87e783SSean Nyekjaer 			mutex_unlock(&st->lock);
3193e87e783SSean Nyekjaer 			return -EINVAL;
3203e87e783SSean Nyekjaer 		}
3213e87e783SSean Nyekjaer 
3223e87e783SSean Nyekjaer 		/*
3233e87e783SSean Nyekjaer 		 * If the device are in ±2.5 * VREF mode, it's not allowed to
3243e87e783SSean Nyekjaer 		 * switch to a mode where the offset is 0
3253e87e783SSean Nyekjaer 		 */
3263e87e783SSean Nyekjaer 		if (val == 0 &&
3273e87e783SSean Nyekjaer 		    st->range[chan->channel] == ADS8688_PLUSMINUS25VREF) {
3283e87e783SSean Nyekjaer 			mutex_unlock(&st->lock);
3293e87e783SSean Nyekjaer 			return -EINVAL;
3303e87e783SSean Nyekjaer 		}
3313e87e783SSean Nyekjaer 
3323e87e783SSean Nyekjaer 		scale = ads8688_range_def[st->range[chan->channel]].scale;
3333e87e783SSean Nyekjaer 
3343e87e783SSean Nyekjaer 		/* Lookup new mode */
3353e87e783SSean Nyekjaer 		for (i = 0; i < ARRAY_SIZE(ads8688_range_def); i++)
3363e87e783SSean Nyekjaer 			if (val == ads8688_range_def[i].offset &&
3373e87e783SSean Nyekjaer 			    scale == ads8688_range_def[i].scale) {
3383e87e783SSean Nyekjaer 				ret = ads8688_write_reg_range(indio_dev, chan,
3393e87e783SSean Nyekjaer 					ads8688_range_def[i].reg);
3403e87e783SSean Nyekjaer 				break;
3413e87e783SSean Nyekjaer 			}
3423e87e783SSean Nyekjaer 		break;
3433e87e783SSean Nyekjaer 	}
3443e87e783SSean Nyekjaer 
3453e87e783SSean Nyekjaer 	if (!ret)
3463e87e783SSean Nyekjaer 		st->range[chan->channel] = ads8688_range_def[i].range;
3473e87e783SSean Nyekjaer 
3483e87e783SSean Nyekjaer 	mutex_unlock(&st->lock);
3493e87e783SSean Nyekjaer 
3503e87e783SSean Nyekjaer 	return ret;
3513e87e783SSean Nyekjaer }
3523e87e783SSean Nyekjaer 
3533e87e783SSean Nyekjaer static int ads8688_write_raw_get_fmt(struct iio_dev *indio_dev,
3543e87e783SSean Nyekjaer 				     struct iio_chan_spec const *chan,
3553e87e783SSean Nyekjaer 				     long mask)
3563e87e783SSean Nyekjaer {
3573e87e783SSean Nyekjaer 	switch (mask) {
3583e87e783SSean Nyekjaer 	case IIO_CHAN_INFO_SCALE:
3593e87e783SSean Nyekjaer 		return IIO_VAL_INT_PLUS_NANO;
3603e87e783SSean Nyekjaer 	case IIO_CHAN_INFO_OFFSET:
3613e87e783SSean Nyekjaer 		return IIO_VAL_INT;
3623e87e783SSean Nyekjaer 	}
3633e87e783SSean Nyekjaer 
3643e87e783SSean Nyekjaer 	return -EINVAL;
3653e87e783SSean Nyekjaer }
3663e87e783SSean Nyekjaer 
3673e87e783SSean Nyekjaer static const struct iio_info ads8688_info = {
3683e87e783SSean Nyekjaer 	.read_raw = &ads8688_read_raw,
3693e87e783SSean Nyekjaer 	.write_raw = &ads8688_write_raw,
3703e87e783SSean Nyekjaer 	.write_raw_get_fmt = &ads8688_write_raw_get_fmt,
3713e87e783SSean Nyekjaer 	.attrs = &ads8688_attribute_group,
3723e87e783SSean Nyekjaer 	.driver_module = THIS_MODULE,
3733e87e783SSean Nyekjaer };
3743e87e783SSean Nyekjaer 
3753e87e783SSean Nyekjaer static const struct ads8688_chip_info ads8688_chip_info_tbl[] = {
3763e87e783SSean Nyekjaer 	[ID_ADS8684] = {
3773e87e783SSean Nyekjaer 		.channels = ads8684_channels,
3783e87e783SSean Nyekjaer 		.num_channels = ARRAY_SIZE(ads8684_channels),
3793e87e783SSean Nyekjaer 	},
3803e87e783SSean Nyekjaer 	[ID_ADS8688] = {
3813e87e783SSean Nyekjaer 		.channels = ads8688_channels,
3823e87e783SSean Nyekjaer 		.num_channels = ARRAY_SIZE(ads8688_channels),
3833e87e783SSean Nyekjaer 	},
3843e87e783SSean Nyekjaer };
3853e87e783SSean Nyekjaer 
3863e87e783SSean Nyekjaer static int ads8688_probe(struct spi_device *spi)
3873e87e783SSean Nyekjaer {
3883e87e783SSean Nyekjaer 	struct ads8688_state *st;
3893e87e783SSean Nyekjaer 	struct iio_dev *indio_dev;
3903e87e783SSean Nyekjaer 	int ret;
3913e87e783SSean Nyekjaer 
3923e87e783SSean Nyekjaer 	indio_dev = devm_iio_device_alloc(&spi->dev, sizeof(*st));
3933e87e783SSean Nyekjaer 	if (indio_dev == NULL)
3943e87e783SSean Nyekjaer 		return -ENOMEM;
3953e87e783SSean Nyekjaer 
3963e87e783SSean Nyekjaer 	st = iio_priv(indio_dev);
3973e87e783SSean Nyekjaer 
3983e87e783SSean Nyekjaer 	st->reg = devm_regulator_get_optional(&spi->dev, "vref");
3993e87e783SSean Nyekjaer 	if (!IS_ERR(st->reg)) {
4003e87e783SSean Nyekjaer 		ret = regulator_enable(st->reg);
4013e87e783SSean Nyekjaer 		if (ret)
4023e87e783SSean Nyekjaer 			return ret;
4033e87e783SSean Nyekjaer 
4043e87e783SSean Nyekjaer 		ret = regulator_get_voltage(st->reg);
4053e87e783SSean Nyekjaer 		if (ret < 0)
4063e87e783SSean Nyekjaer 			goto error_out;
4073e87e783SSean Nyekjaer 
4083e87e783SSean Nyekjaer 		st->vref_mv = ret / 1000;
4093e87e783SSean Nyekjaer 	} else {
4103e87e783SSean Nyekjaer 		/* Use internal reference */
4113e87e783SSean Nyekjaer 		st->vref_mv = ADS8688_VREF_MV;
4123e87e783SSean Nyekjaer 	}
4133e87e783SSean Nyekjaer 
4143e87e783SSean Nyekjaer 	st->chip_info =	&ads8688_chip_info_tbl[spi_get_device_id(spi)->driver_data];
4153e87e783SSean Nyekjaer 
4163e87e783SSean Nyekjaer 	spi->mode = SPI_MODE_1;
4173e87e783SSean Nyekjaer 
4183e87e783SSean Nyekjaer 	spi_set_drvdata(spi, indio_dev);
4193e87e783SSean Nyekjaer 
4203e87e783SSean Nyekjaer 	st->spi = spi;
4213e87e783SSean Nyekjaer 
4223e87e783SSean Nyekjaer 	indio_dev->name = spi_get_device_id(spi)->name;
4233e87e783SSean Nyekjaer 	indio_dev->dev.parent = &spi->dev;
424*b541eaffSMatt Ranostay 	indio_dev->dev.of_node = spi->dev.of_node;
4253e87e783SSean Nyekjaer 	indio_dev->modes = INDIO_DIRECT_MODE;
4263e87e783SSean Nyekjaer 	indio_dev->channels = st->chip_info->channels;
4273e87e783SSean Nyekjaer 	indio_dev->num_channels = st->chip_info->num_channels;
4283e87e783SSean Nyekjaer 	indio_dev->info = &ads8688_info;
4293e87e783SSean Nyekjaer 
4303e87e783SSean Nyekjaer 	ads8688_reset(indio_dev);
4313e87e783SSean Nyekjaer 
4323e87e783SSean Nyekjaer 	mutex_init(&st->lock);
4333e87e783SSean Nyekjaer 
4343e87e783SSean Nyekjaer 	ret = iio_device_register(indio_dev);
4353e87e783SSean Nyekjaer 	if (ret)
4363e87e783SSean Nyekjaer 		goto error_out;
4373e87e783SSean Nyekjaer 
4383e87e783SSean Nyekjaer 	return 0;
4393e87e783SSean Nyekjaer 
4403e87e783SSean Nyekjaer error_out:
4413e87e783SSean Nyekjaer 	if (!IS_ERR_OR_NULL(st->reg))
4423e87e783SSean Nyekjaer 		regulator_disable(st->reg);
4433e87e783SSean Nyekjaer 
4443e87e783SSean Nyekjaer 	return ret;
4453e87e783SSean Nyekjaer }
4463e87e783SSean Nyekjaer 
4473e87e783SSean Nyekjaer static int ads8688_remove(struct spi_device *spi)
4483e87e783SSean Nyekjaer {
4493e87e783SSean Nyekjaer 	struct iio_dev *indio_dev = spi_get_drvdata(spi);
4503e87e783SSean Nyekjaer 	struct ads8688_state *st = iio_priv(indio_dev);
4513e87e783SSean Nyekjaer 
4523e87e783SSean Nyekjaer 	iio_device_unregister(indio_dev);
4533e87e783SSean Nyekjaer 
4543e87e783SSean Nyekjaer 	if (!IS_ERR_OR_NULL(st->reg))
4553e87e783SSean Nyekjaer 		regulator_disable(st->reg);
4563e87e783SSean Nyekjaer 
4573e87e783SSean Nyekjaer 	return 0;
4583e87e783SSean Nyekjaer }
4593e87e783SSean Nyekjaer 
4603e87e783SSean Nyekjaer static const struct spi_device_id ads8688_id[] = {
4613e87e783SSean Nyekjaer 	{"ads8684", ID_ADS8684},
4623e87e783SSean Nyekjaer 	{"ads8688", ID_ADS8688},
4633e87e783SSean Nyekjaer 	{}
4643e87e783SSean Nyekjaer };
4653e87e783SSean Nyekjaer MODULE_DEVICE_TABLE(spi, ads8688_id);
4663e87e783SSean Nyekjaer 
4673e87e783SSean Nyekjaer static const struct of_device_id ads8688_of_match[] = {
4683e87e783SSean Nyekjaer 	{ .compatible = "ti,ads8684" },
4693e87e783SSean Nyekjaer 	{ .compatible = "ti,ads8688" },
4703e87e783SSean Nyekjaer 	{ }
4713e87e783SSean Nyekjaer };
4723e87e783SSean Nyekjaer MODULE_DEVICE_TABLE(of, ads8688_of_match);
4733e87e783SSean Nyekjaer 
4743e87e783SSean Nyekjaer static struct spi_driver ads8688_driver = {
4753e87e783SSean Nyekjaer 	.driver = {
4763e87e783SSean Nyekjaer 		.name	= "ads8688",
4773e87e783SSean Nyekjaer 		.owner	= THIS_MODULE,
4783e87e783SSean Nyekjaer 	},
4793e87e783SSean Nyekjaer 	.probe		= ads8688_probe,
4803e87e783SSean Nyekjaer 	.remove		= ads8688_remove,
4813e87e783SSean Nyekjaer 	.id_table	= ads8688_id,
4823e87e783SSean Nyekjaer };
4833e87e783SSean Nyekjaer module_spi_driver(ads8688_driver);
4843e87e783SSean Nyekjaer 
4853e87e783SSean Nyekjaer MODULE_AUTHOR("Sean Nyekjaer <sean.nyekjaer@prevas.dk>");
4863e87e783SSean Nyekjaer MODULE_DESCRIPTION("Texas Instruments ADS8688 driver");
4873e87e783SSean Nyekjaer MODULE_LICENSE("GPL v2");
488