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Oskar Anderof5ce4a72013-05-03 10:58:00 +01001/*
2 * Copyright (C) 2013 Oskar Andero <oskar.andero@gmail.com>
Søren Andersenb12206e2014-10-08 20:42:00 +02003 * Copyright (C) 2014 Rose Technology
4 * Allan Bendorff Jensen <abj@rosetechnology.dk>
5 * Soren Andersen <san@rosetechnology.dk>
Oskar Anderof5ce4a72013-05-03 10:58:00 +01006 *
Søren Andersenb12206e2014-10-08 20:42:00 +02007 * Driver for following ADC chips from Microchip Technology's:
8 * 10 Bit converter
9 * MCP3001
10 * MCP3002
11 * MCP3004
12 * MCP3008
13 * ------------
14 * 12 bit converter
15 * MCP3201
16 * MCP3202
17 * MCP3204
18 * MCP3208
19 * ------------
20 *
Oskar Anderof5ce4a72013-05-03 10:58:00 +010021 * Datasheet can be found here:
Søren Andersenb12206e2014-10-08 20:42:00 +020022 * http://ww1.microchip.com/downloads/en/DeviceDoc/21293C.pdf mcp3001
23 * http://ww1.microchip.com/downloads/en/DeviceDoc/21294E.pdf mcp3002
24 * http://ww1.microchip.com/downloads/en/DeviceDoc/21295d.pdf mcp3004/08
25 * http://ww1.microchip.com/downloads/en/DeviceDoc/21290D.pdf mcp3201
26 * http://ww1.microchip.com/downloads/en/DeviceDoc/21034D.pdf mcp3202
27 * http://ww1.microchip.com/downloads/en/DeviceDoc/21298c.pdf mcp3204/08
Andrea Galbuseraf686a362015-07-14 15:36:21 +020028 * http://ww1.microchip.com/downloads/en/DeviceDoc/21700E.pdf mcp3301
Oskar Anderof5ce4a72013-05-03 10:58:00 +010029 *
30 * This program is free software; you can redistribute it and/or modify
31 * it under the terms of the GNU General Public License version 2 as
32 * published by the Free Software Foundation.
33 */
34
35#include <linux/err.h>
Søren Andersenb12206e2014-10-08 20:42:00 +020036#include <linux/delay.h>
Oskar Anderof5ce4a72013-05-03 10:58:00 +010037#include <linux/spi/spi.h>
38#include <linux/module.h>
39#include <linux/iio/iio.h>
40#include <linux/regulator/consumer.h>
41
Oskar Anderof5ce4a72013-05-03 10:58:00 +010042enum {
Søren Andersenb12206e2014-10-08 20:42:00 +020043 mcp3001,
44 mcp3002,
45 mcp3004,
46 mcp3008,
47 mcp3201,
48 mcp3202,
Oskar Anderof5ce4a72013-05-03 10:58:00 +010049 mcp3204,
50 mcp3208,
Andrea Galbuseraf686a362015-07-14 15:36:21 +020051 mcp3301,
Oskar Anderof5ce4a72013-05-03 10:58:00 +010052};
53
Søren Andersenb12206e2014-10-08 20:42:00 +020054struct mcp320x_chip_info {
55 const struct iio_chan_spec *channels;
56 unsigned int num_channels;
57 unsigned int resolution;
58};
59
Oskar Anderof5ce4a72013-05-03 10:58:00 +010060struct mcp320x {
61 struct spi_device *spi;
62 struct spi_message msg;
63 struct spi_transfer transfer[2];
64
Oskar Anderof5ce4a72013-05-03 10:58:00 +010065 struct regulator *reg;
66 struct mutex lock;
Søren Andersenb12206e2014-10-08 20:42:00 +020067 const struct mcp320x_chip_info *chip_info;
Michael Welling0e81bc92015-05-06 11:49:17 -050068
69 u8 tx_buf ____cacheline_aligned;
70 u8 rx_buf[2];
Oskar Anderof5ce4a72013-05-03 10:58:00 +010071};
72
Søren Andersenb12206e2014-10-08 20:42:00 +020073static int mcp320x_channel_to_tx_data(int device_index,
74 const unsigned int channel, bool differential)
75{
76 int start_bit = 1;
77
78 switch (device_index) {
Søren Andersenb12206e2014-10-08 20:42:00 +020079 case mcp3002:
80 case mcp3202:
81 return ((start_bit << 4) | (!differential << 3) |
82 (channel << 2));
83 case mcp3004:
84 case mcp3204:
85 case mcp3008:
86 case mcp3208:
87 return ((start_bit << 6) | (!differential << 5) |
88 (channel << 2));
89 default:
90 return -EINVAL;
91 }
92}
93
94static int mcp320x_adc_conversion(struct mcp320x *adc, u8 channel,
95 bool differential, int device_index)
Oskar Anderof5ce4a72013-05-03 10:58:00 +010096{
97 int ret;
98
Lukas Wunnerea910312017-09-09 20:32:41 +020099 memset(&adc->rx_buf, 0, sizeof(adc->rx_buf));
100 if (adc->chip_info->num_channels > 1)
101 adc->tx_buf = mcp320x_channel_to_tx_data(device_index, channel,
102 differential);
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100103
Lukas Wunnerea910312017-09-09 20:32:41 +0200104 ret = spi_sync(adc->spi, &adc->msg);
105 if (ret < 0)
106 return ret;
Søren Andersenb12206e2014-10-08 20:42:00 +0200107
108 switch (device_index) {
109 case mcp3001:
110 return (adc->rx_buf[0] << 5 | adc->rx_buf[1] >> 3);
111 case mcp3002:
112 case mcp3004:
113 case mcp3008:
114 return (adc->rx_buf[0] << 2 | adc->rx_buf[1] >> 6);
115 case mcp3201:
116 return (adc->rx_buf[0] << 7 | adc->rx_buf[1] >> 1);
117 case mcp3202:
118 case mcp3204:
119 case mcp3208:
120 return (adc->rx_buf[0] << 4 | adc->rx_buf[1] >> 4);
Andrea Galbuseraf686a362015-07-14 15:36:21 +0200121 case mcp3301:
122 return sign_extend32((adc->rx_buf[0] & 0x1f) << 8 | adc->rx_buf[1], 12);
Søren Andersenb12206e2014-10-08 20:42:00 +0200123 default:
124 return -EINVAL;
125 }
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100126}
127
128static int mcp320x_read_raw(struct iio_dev *indio_dev,
129 struct iio_chan_spec const *channel, int *val,
130 int *val2, long mask)
131{
132 struct mcp320x *adc = iio_priv(indio_dev);
133 int ret = -EINVAL;
Søren Andersenb12206e2014-10-08 20:42:00 +0200134 int device_index = 0;
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100135
136 mutex_lock(&adc->lock);
137
Søren Andersenb12206e2014-10-08 20:42:00 +0200138 device_index = spi_get_device_id(adc->spi)->driver_data;
139
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100140 switch (mask) {
141 case IIO_CHAN_INFO_RAW:
Søren Andersenb12206e2014-10-08 20:42:00 +0200142 ret = mcp320x_adc_conversion(adc, channel->address,
143 channel->differential, device_index);
144
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100145 if (ret < 0)
146 goto out;
147
148 *val = ret;
149 ret = IIO_VAL_INT;
150 break;
151
152 case IIO_CHAN_INFO_SCALE:
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100153 ret = regulator_get_voltage(adc->reg);
154 if (ret < 0)
155 goto out;
156
Søren Andersenb12206e2014-10-08 20:42:00 +0200157 /* convert regulator output voltage to mV */
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100158 *val = ret / 1000;
Søren Andersenb12206e2014-10-08 20:42:00 +0200159 *val2 = adc->chip_info->resolution;
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100160 ret = IIO_VAL_FRACTIONAL_LOG2;
161 break;
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100162 }
163
164out:
165 mutex_unlock(&adc->lock);
166
167 return ret;
168}
169
170#define MCP320X_VOLTAGE_CHANNEL(num) \
171 { \
172 .type = IIO_VOLTAGE, \
173 .indexed = 1, \
174 .channel = (num), \
175 .address = (num), \
176 .info_mask_separate = BIT(IIO_CHAN_INFO_RAW), \
177 .info_mask_shared_by_type = BIT(IIO_CHAN_INFO_SCALE) \
178 }
179
Akinobu Mita4ea71e52016-01-08 00:40:30 +0900180#define MCP320X_VOLTAGE_CHANNEL_DIFF(chan1, chan2) \
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100181 { \
182 .type = IIO_VOLTAGE, \
183 .indexed = 1, \
Akinobu Mita4ea71e52016-01-08 00:40:30 +0900184 .channel = (chan1), \
185 .channel2 = (chan2), \
186 .address = (chan1), \
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100187 .differential = 1, \
188 .info_mask_separate = BIT(IIO_CHAN_INFO_RAW), \
189 .info_mask_shared_by_type = BIT(IIO_CHAN_INFO_SCALE) \
190 }
191
Søren Andersenb12206e2014-10-08 20:42:00 +0200192static const struct iio_chan_spec mcp3201_channels[] = {
Akinobu Mita4ea71e52016-01-08 00:40:30 +0900193 MCP320X_VOLTAGE_CHANNEL_DIFF(0, 1),
Søren Andersenb12206e2014-10-08 20:42:00 +0200194};
195
196static const struct iio_chan_spec mcp3202_channels[] = {
197 MCP320X_VOLTAGE_CHANNEL(0),
198 MCP320X_VOLTAGE_CHANNEL(1),
Akinobu Mita4ea71e52016-01-08 00:40:30 +0900199 MCP320X_VOLTAGE_CHANNEL_DIFF(0, 1),
200 MCP320X_VOLTAGE_CHANNEL_DIFF(1, 0),
Søren Andersenb12206e2014-10-08 20:42:00 +0200201};
202
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100203static const struct iio_chan_spec mcp3204_channels[] = {
204 MCP320X_VOLTAGE_CHANNEL(0),
205 MCP320X_VOLTAGE_CHANNEL(1),
206 MCP320X_VOLTAGE_CHANNEL(2),
207 MCP320X_VOLTAGE_CHANNEL(3),
Akinobu Mita4ea71e52016-01-08 00:40:30 +0900208 MCP320X_VOLTAGE_CHANNEL_DIFF(0, 1),
209 MCP320X_VOLTAGE_CHANNEL_DIFF(1, 0),
210 MCP320X_VOLTAGE_CHANNEL_DIFF(2, 3),
211 MCP320X_VOLTAGE_CHANNEL_DIFF(3, 2),
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100212};
213
214static const struct iio_chan_spec mcp3208_channels[] = {
215 MCP320X_VOLTAGE_CHANNEL(0),
216 MCP320X_VOLTAGE_CHANNEL(1),
217 MCP320X_VOLTAGE_CHANNEL(2),
218 MCP320X_VOLTAGE_CHANNEL(3),
219 MCP320X_VOLTAGE_CHANNEL(4),
220 MCP320X_VOLTAGE_CHANNEL(5),
221 MCP320X_VOLTAGE_CHANNEL(6),
222 MCP320X_VOLTAGE_CHANNEL(7),
Akinobu Mita4ea71e52016-01-08 00:40:30 +0900223 MCP320X_VOLTAGE_CHANNEL_DIFF(0, 1),
224 MCP320X_VOLTAGE_CHANNEL_DIFF(1, 0),
225 MCP320X_VOLTAGE_CHANNEL_DIFF(2, 3),
226 MCP320X_VOLTAGE_CHANNEL_DIFF(3, 2),
227 MCP320X_VOLTAGE_CHANNEL_DIFF(4, 5),
228 MCP320X_VOLTAGE_CHANNEL_DIFF(5, 4),
229 MCP320X_VOLTAGE_CHANNEL_DIFF(6, 7),
230 MCP320X_VOLTAGE_CHANNEL_DIFF(7, 6),
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100231};
232
233static const struct iio_info mcp320x_info = {
234 .read_raw = mcp320x_read_raw,
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100235};
236
Søren Andersenb12206e2014-10-08 20:42:00 +0200237static const struct mcp320x_chip_info mcp320x_chip_infos[] = {
238 [mcp3001] = {
239 .channels = mcp3201_channels,
240 .num_channels = ARRAY_SIZE(mcp3201_channels),
241 .resolution = 10
242 },
243 [mcp3002] = {
244 .channels = mcp3202_channels,
245 .num_channels = ARRAY_SIZE(mcp3202_channels),
246 .resolution = 10
247 },
248 [mcp3004] = {
249 .channels = mcp3204_channels,
250 .num_channels = ARRAY_SIZE(mcp3204_channels),
251 .resolution = 10
252 },
253 [mcp3008] = {
254 .channels = mcp3208_channels,
255 .num_channels = ARRAY_SIZE(mcp3208_channels),
256 .resolution = 10
257 },
258 [mcp3201] = {
259 .channels = mcp3201_channels,
260 .num_channels = ARRAY_SIZE(mcp3201_channels),
261 .resolution = 12
262 },
263 [mcp3202] = {
264 .channels = mcp3202_channels,
265 .num_channels = ARRAY_SIZE(mcp3202_channels),
266 .resolution = 12
267 },
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100268 [mcp3204] = {
269 .channels = mcp3204_channels,
Søren Andersenb12206e2014-10-08 20:42:00 +0200270 .num_channels = ARRAY_SIZE(mcp3204_channels),
271 .resolution = 12
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100272 },
273 [mcp3208] = {
274 .channels = mcp3208_channels,
Søren Andersenb12206e2014-10-08 20:42:00 +0200275 .num_channels = ARRAY_SIZE(mcp3208_channels),
276 .resolution = 12
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100277 },
Andrea Galbuseraf686a362015-07-14 15:36:21 +0200278 [mcp3301] = {
279 .channels = mcp3201_channels,
280 .num_channels = ARRAY_SIZE(mcp3201_channels),
281 .resolution = 13
282 },
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100283};
284
285static int mcp320x_probe(struct spi_device *spi)
286{
287 struct iio_dev *indio_dev;
288 struct mcp320x *adc;
Søren Andersenb12206e2014-10-08 20:42:00 +0200289 const struct mcp320x_chip_info *chip_info;
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100290 int ret;
291
Sachin Kamata726dea2013-07-23 09:58:00 +0100292 indio_dev = devm_iio_device_alloc(&spi->dev, sizeof(*adc));
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100293 if (!indio_dev)
294 return -ENOMEM;
295
296 adc = iio_priv(indio_dev);
297 adc->spi = spi;
298
299 indio_dev->dev.parent = &spi->dev;
Matt Ranostayb541eaf2016-07-02 17:26:33 -0700300 indio_dev->dev.of_node = spi->dev.of_node;
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100301 indio_dev->name = spi_get_device_id(spi)->name;
302 indio_dev->modes = INDIO_DIRECT_MODE;
303 indio_dev->info = &mcp320x_info;
304
Søren Andersenb12206e2014-10-08 20:42:00 +0200305 chip_info = &mcp320x_chip_infos[spi_get_device_id(spi)->driver_data];
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100306 indio_dev->channels = chip_info->channels;
307 indio_dev->num_channels = chip_info->num_channels;
308
Manfred Schlaegl41be6a02015-07-10 22:55:30 +0200309 adc->chip_info = chip_info;
310
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100311 adc->transfer[0].tx_buf = &adc->tx_buf;
312 adc->transfer[0].len = sizeof(adc->tx_buf);
313 adc->transfer[1].rx_buf = adc->rx_buf;
314 adc->transfer[1].len = sizeof(adc->rx_buf);
Lukas Wunnerea910312017-09-09 20:32:41 +0200315 if (chip_info->num_channels == 1)
316 /* single-channel converters are rx only (no MOSI pin) */
317 spi_message_init_with_transfers(&adc->msg,
318 &adc->transfer[1], 1);
319 else
320 spi_message_init_with_transfers(&adc->msg, adc->transfer,
321 ARRAY_SIZE(adc->transfer));
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100322
Sachin Kamata726dea2013-07-23 09:58:00 +0100323 adc->reg = devm_regulator_get(&spi->dev, "vref");
324 if (IS_ERR(adc->reg))
325 return PTR_ERR(adc->reg);
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100326
327 ret = regulator_enable(adc->reg);
328 if (ret < 0)
Sachin Kamata726dea2013-07-23 09:58:00 +0100329 return ret;
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100330
331 mutex_init(&adc->lock);
332
333 ret = iio_device_register(indio_dev);
334 if (ret < 0)
335 goto reg_disable;
336
337 return 0;
338
339reg_disable:
340 regulator_disable(adc->reg);
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100341
342 return ret;
343}
344
345static int mcp320x_remove(struct spi_device *spi)
346{
347 struct iio_dev *indio_dev = spi_get_drvdata(spi);
348 struct mcp320x *adc = iio_priv(indio_dev);
349
350 iio_device_unregister(indio_dev);
351 regulator_disable(adc->reg);
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100352
353 return 0;
354}
355
Søren Andersenb12206e2014-10-08 20:42:00 +0200356#if defined(CONFIG_OF)
357static const struct of_device_id mcp320x_dt_ids[] = {
Javier Martinez Canillas0d0e5382015-10-14 14:54:39 +0200358 /* NOTE: The use of compatibles with no vendor prefix is deprecated. */
Lukas Wunner35ed9fb2017-09-09 20:32:41 +0200359 { .compatible = "mcp3001" },
360 { .compatible = "mcp3002" },
361 { .compatible = "mcp3004" },
362 { .compatible = "mcp3008" },
363 { .compatible = "mcp3201" },
364 { .compatible = "mcp3202" },
365 { .compatible = "mcp3204" },
366 { .compatible = "mcp3208" },
367 { .compatible = "mcp3301" },
368 { .compatible = "microchip,mcp3001" },
369 { .compatible = "microchip,mcp3002" },
370 { .compatible = "microchip,mcp3004" },
371 { .compatible = "microchip,mcp3008" },
372 { .compatible = "microchip,mcp3201" },
373 { .compatible = "microchip,mcp3202" },
374 { .compatible = "microchip,mcp3204" },
375 { .compatible = "microchip,mcp3208" },
376 { .compatible = "microchip,mcp3301" },
377 { }
Søren Andersenb12206e2014-10-08 20:42:00 +0200378};
379MODULE_DEVICE_TABLE(of, mcp320x_dt_ids);
380#endif
381
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100382static const struct spi_device_id mcp320x_id[] = {
Søren Andersenb12206e2014-10-08 20:42:00 +0200383 { "mcp3001", mcp3001 },
384 { "mcp3002", mcp3002 },
385 { "mcp3004", mcp3004 },
386 { "mcp3008", mcp3008 },
387 { "mcp3201", mcp3201 },
388 { "mcp3202", mcp3202 },
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100389 { "mcp3204", mcp3204 },
390 { "mcp3208", mcp3208 },
Andrea Galbuseraf686a362015-07-14 15:36:21 +0200391 { "mcp3301", mcp3301 },
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100392 { }
393};
394MODULE_DEVICE_TABLE(spi, mcp320x_id);
395
396static struct spi_driver mcp320x_driver = {
397 .driver = {
398 .name = "mcp320x",
Javier Martinez Canillasab6ff6c2015-08-20 09:07:26 +0200399 .of_match_table = of_match_ptr(mcp320x_dt_ids),
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100400 },
401 .probe = mcp320x_probe,
402 .remove = mcp320x_remove,
403 .id_table = mcp320x_id,
404};
405module_spi_driver(mcp320x_driver);
406
407MODULE_AUTHOR("Oskar Andero <oskar.andero@gmail.com>");
Søren Andersenb12206e2014-10-08 20:42:00 +0200408MODULE_DESCRIPTION("Microchip Technology MCP3x01/02/04/08");
Oskar Anderof5ce4a72013-05-03 10:58:00 +0100409MODULE_LICENSE("GPL v2");