blob: aa739c497f2bcf6b9d73ae8c9bcbf9ccb3faf7ea [file] [log] [blame]
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +02001/*
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +02002 * AD5024, AD5025, AD5044, AD5045, AD5064, AD5064-1, AD5065, AD5628, AD5629R,
3 * AD5648, AD5666, AD5668, AD5669R Digital to analog converters driver
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +02004 *
5 * Copyright 2011 Analog Devices Inc.
6 *
7 * Licensed under the GPL-2.
8 */
9
10#include <linux/device.h>
11#include <linux/err.h>
12#include <linux/module.h>
13#include <linux/kernel.h>
14#include <linux/spi/spi.h>
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +020015#include <linux/i2c.h>
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +020016#include <linux/slab.h>
17#include <linux/sysfs.h>
18#include <linux/regulator/consumer.h>
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +020019#include <asm/unaligned.h>
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +020020
Jonathan Cameron06458e22012-04-25 15:54:58 +010021#include <linux/iio/iio.h>
22#include <linux/iio/sysfs.h>
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +020023
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +010024#define AD5064_MAX_DAC_CHANNELS 8
Lars-Peter Clausen83c169d2012-02-21 18:38:14 +010025#define AD5064_MAX_VREFS 4
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +020026
27#define AD5064_ADDR(x) ((x) << 20)
28#define AD5064_CMD(x) ((x) << 24)
29
30#define AD5064_ADDR_DAC(chan) (chan)
31#define AD5064_ADDR_ALL_DAC 0xF
32
33#define AD5064_CMD_WRITE_INPUT_N 0x0
34#define AD5064_CMD_UPDATE_DAC_N 0x1
35#define AD5064_CMD_WRITE_INPUT_N_UPDATE_ALL 0x2
36#define AD5064_CMD_WRITE_INPUT_N_UPDATE_N 0x3
37#define AD5064_CMD_POWERDOWN_DAC 0x4
38#define AD5064_CMD_CLEAR 0x5
39#define AD5064_CMD_LDAC_MASK 0x6
40#define AD5064_CMD_RESET 0x7
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +010041#define AD5064_CMD_CONFIG 0x8
42
43#define AD5064_CONFIG_DAISY_CHAIN_ENABLE BIT(1)
44#define AD5064_CONFIG_INT_VREF_ENABLE BIT(0)
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +020045
46#define AD5064_LDAC_PWRDN_NONE 0x0
47#define AD5064_LDAC_PWRDN_1K 0x1
48#define AD5064_LDAC_PWRDN_100K 0x2
49#define AD5064_LDAC_PWRDN_3STATE 0x3
50
51/**
52 * struct ad5064_chip_info - chip specific information
53 * @shared_vref: whether the vref supply is shared between channels
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +010054 * @internal_vref: internal reference voltage. 0 if the chip has no internal
55 * vref.
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +020056 * @channel: channel specification
Lars-Peter Clausen83c169d2012-02-21 18:38:14 +010057 * @num_channels: number of channels
58 */
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +020059
60struct ad5064_chip_info {
61 bool shared_vref;
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +010062 unsigned long internal_vref;
Lars-Peter Clausen83c169d2012-02-21 18:38:14 +010063 const struct iio_chan_spec *channels;
64 unsigned int num_channels;
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +020065};
66
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +020067struct ad5064_state;
68
69typedef int (*ad5064_write_func)(struct ad5064_state *st, unsigned int cmd,
70 unsigned int addr, unsigned int val);
71
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +020072/**
73 * struct ad5064_state - driver instance specific data
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +020074 * @dev: the device for this driver instance
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +020075 * @chip_info: chip model specific constants, available modes etc
76 * @vref_reg: vref supply regulators
77 * @pwr_down: whether channel is powered down
78 * @pwr_down_mode: channel's current power down mode
79 * @dac_cache: current DAC raw value (chip does not support readback)
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +010080 * @use_internal_vref: set to true if the internal reference voltage should be
81 * used.
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +020082 * @write: register write callback
83 * @data: i2c/spi transfer buffers
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +020084 */
85
86struct ad5064_state {
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +020087 struct device *dev;
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +020088 const struct ad5064_chip_info *chip_info;
Lars-Peter Clausen83c169d2012-02-21 18:38:14 +010089 struct regulator_bulk_data vref_reg[AD5064_MAX_VREFS];
90 bool pwr_down[AD5064_MAX_DAC_CHANNELS];
91 u8 pwr_down_mode[AD5064_MAX_DAC_CHANNELS];
92 unsigned int dac_cache[AD5064_MAX_DAC_CHANNELS];
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +010093 bool use_internal_vref;
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +020094
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +020095 ad5064_write_func write;
96
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +020097 /*
98 * DMA (thus cache coherency maintenance) requires the
99 * transfer buffers to live in their own cache lines.
100 */
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200101 union {
102 u8 i2c[3];
103 __be32 spi;
104 } data ____cacheline_aligned;
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200105};
106
107enum ad5064_type {
108 ID_AD5024,
Lars-Peter Clausenf8be4af2012-02-21 18:38:15 +0100109 ID_AD5025,
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200110 ID_AD5044,
Lars-Peter Clausenf8be4af2012-02-21 18:38:15 +0100111 ID_AD5045,
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200112 ID_AD5064,
113 ID_AD5064_1,
Lars-Peter Clausenf8be4af2012-02-21 18:38:15 +0100114 ID_AD5065,
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +0100115 ID_AD5628_1,
116 ID_AD5628_2,
117 ID_AD5648_1,
118 ID_AD5648_2,
Lars-Peter Clausen64f4eaa2012-02-21 18:38:17 +0100119 ID_AD5666_1,
120 ID_AD5666_2,
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +0100121 ID_AD5668_1,
122 ID_AD5668_2,
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200123};
124
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200125static int ad5064_i2c_write(struct ad5064_state *st, unsigned int cmd,
126 unsigned int addr, unsigned int val)
127{
128 struct i2c_client *i2c = to_i2c_client(st->dev);
129
130 st->data.i2c[0] = (cmd << 4) | addr;
131 put_unaligned_be16(val, &st->data.i2c[1]);
132 return i2c_master_send(i2c, st->data.i2c, 3);
133}
134
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200135static int ad5064_spi_write(struct ad5064_state *st, unsigned int cmd,
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200136 unsigned int addr, unsigned int val)
137{
138 struct spi_device *spi = to_spi_device(st->dev);
139
140 st->data.spi = cpu_to_be32(AD5064_CMD(cmd) | AD5064_ADDR(addr) | val);
141 return spi_write(spi, &st->data.spi, sizeof(st->data.spi));
142}
143
144static int ad5064_write(struct ad5064_state *st, unsigned int cmd,
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200145 unsigned int addr, unsigned int val, unsigned int shift)
146{
147 val <<= shift;
148
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200149 return st->write(st, cmd, addr, val);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200150}
151
152static int ad5064_sync_powerdown_mode(struct ad5064_state *st,
153 unsigned int channel)
154{
155 unsigned int val;
156 int ret;
157
158 val = (0x1 << channel);
159
160 if (st->pwr_down[channel])
161 val |= st->pwr_down_mode[channel] << 8;
162
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200163 ret = ad5064_write(st, AD5064_CMD_POWERDOWN_DAC, 0, val, 0);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200164
165 return ret;
166}
167
Lars-Peter Clausen26628f62012-06-04 11:36:12 +0200168static const char * const ad5064_powerdown_modes[] = {
169 "1kohm_to_gnd",
170 "100kohm_to_gnd",
171 "three_state",
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200172};
173
Lars-Peter Clausen26628f62012-06-04 11:36:12 +0200174static int ad5064_get_powerdown_mode(struct iio_dev *indio_dev,
175 const struct iio_chan_spec *chan)
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100176{
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200177 struct ad5064_state *st = iio_priv(indio_dev);
178
Lars-Peter Clausen26628f62012-06-04 11:36:12 +0200179 return st->pwr_down_mode[chan->channel] - 1;
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200180}
181
Lars-Peter Clausen26628f62012-06-04 11:36:12 +0200182static int ad5064_set_powerdown_mode(struct iio_dev *indio_dev,
183 const struct iio_chan_spec *chan, unsigned int mode)
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200184{
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200185 struct ad5064_state *st = iio_priv(indio_dev);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200186 int ret;
187
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200188 mutex_lock(&indio_dev->mlock);
Lars-Peter Clausen26628f62012-06-04 11:36:12 +0200189 st->pwr_down_mode[chan->channel] = mode + 1;
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200190
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100191 ret = ad5064_sync_powerdown_mode(st, chan->channel);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200192 mutex_unlock(&indio_dev->mlock);
193
Lars-Peter Clausen26628f62012-06-04 11:36:12 +0200194 return ret;
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200195}
196
Lars-Peter Clausen26628f62012-06-04 11:36:12 +0200197static const struct iio_enum ad5064_powerdown_mode_enum = {
198 .items = ad5064_powerdown_modes,
199 .num_items = ARRAY_SIZE(ad5064_powerdown_modes),
200 .get = ad5064_get_powerdown_mode,
201 .set = ad5064_set_powerdown_mode,
202};
203
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100204static ssize_t ad5064_read_dac_powerdown(struct iio_dev *indio_dev,
Michael Hennerichfc6d1132012-04-27 10:58:36 +0200205 uintptr_t private, const struct iio_chan_spec *chan, char *buf)
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200206{
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200207 struct ad5064_state *st = iio_priv(indio_dev);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200208
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100209 return sprintf(buf, "%d\n", st->pwr_down[chan->channel]);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200210}
211
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100212static ssize_t ad5064_write_dac_powerdown(struct iio_dev *indio_dev,
Michael Hennerichfc6d1132012-04-27 10:58:36 +0200213 uintptr_t private, const struct iio_chan_spec *chan, const char *buf,
214 size_t len)
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200215{
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200216 struct ad5064_state *st = iio_priv(indio_dev);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200217 bool pwr_down;
218 int ret;
219
220 ret = strtobool(buf, &pwr_down);
221 if (ret)
222 return ret;
223
224 mutex_lock(&indio_dev->mlock);
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100225 st->pwr_down[chan->channel] = pwr_down;
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200226
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100227 ret = ad5064_sync_powerdown_mode(st, chan->channel);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200228 mutex_unlock(&indio_dev->mlock);
229 return ret ? ret : len;
230}
231
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +0100232static int ad5064_get_vref(struct ad5064_state *st,
233 struct iio_chan_spec const *chan)
234{
235 unsigned int i;
236
237 if (st->use_internal_vref)
238 return st->chip_info->internal_vref;
239
240 i = st->chip_info->shared_vref ? 0 : chan->channel;
241 return regulator_get_voltage(st->vref_reg[i].consumer);
242}
243
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200244static int ad5064_read_raw(struct iio_dev *indio_dev,
245 struct iio_chan_spec const *chan,
246 int *val,
247 int *val2,
248 long m)
249{
250 struct ad5064_state *st = iio_priv(indio_dev);
Dan Carpenter23a3b8c2011-10-29 10:20:42 +0300251 int scale_uv;
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200252
253 switch (m) {
Jonathan Cameron09f4eb42012-04-15 17:41:19 +0100254 case IIO_CHAN_INFO_RAW:
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200255 *val = st->dac_cache[chan->channel];
256 return IIO_VAL_INT;
Jonathan Cameronc8a9f802011-10-26 17:41:36 +0100257 case IIO_CHAN_INFO_SCALE:
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +0100258 scale_uv = ad5064_get_vref(st, chan);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200259 if (scale_uv < 0)
260 return scale_uv;
261
262 scale_uv = (scale_uv * 100) >> chan->scan_type.realbits;
263 *val = scale_uv / 100000;
264 *val2 = (scale_uv % 100000) * 10;
265 return IIO_VAL_INT_PLUS_MICRO;
266 default:
267 break;
268 }
269 return -EINVAL;
270}
271
272static int ad5064_write_raw(struct iio_dev *indio_dev,
273 struct iio_chan_spec const *chan, int val, int val2, long mask)
274{
275 struct ad5064_state *st = iio_priv(indio_dev);
276 int ret;
277
278 switch (mask) {
Jonathan Cameron09f4eb42012-04-15 17:41:19 +0100279 case IIO_CHAN_INFO_RAW:
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200280 if (val > (1 << chan->scan_type.realbits) || val < 0)
281 return -EINVAL;
282
283 mutex_lock(&indio_dev->mlock);
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200284 ret = ad5064_write(st, AD5064_CMD_WRITE_INPUT_N_UPDATE_N,
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200285 chan->address, val, chan->scan_type.shift);
286 if (ret == 0)
287 st->dac_cache[chan->channel] = val;
288 mutex_unlock(&indio_dev->mlock);
289 break;
290 default:
291 ret = -EINVAL;
292 }
293
294 return ret;
295}
296
297static const struct iio_info ad5064_info = {
298 .read_raw = ad5064_read_raw,
299 .write_raw = ad5064_write_raw,
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200300 .driver_module = THIS_MODULE,
301};
302
Lars-Peter Clausen26628f62012-06-04 11:36:12 +0200303static const struct iio_chan_spec_ext_info ad5064_ext_info[] = {
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100304 {
305 .name = "powerdown",
306 .read = ad5064_read_dac_powerdown,
307 .write = ad5064_write_dac_powerdown,
308 },
Lars-Peter Clausen26628f62012-06-04 11:36:12 +0200309 IIO_ENUM("powerdown_mode", false, &ad5064_powerdown_mode_enum),
310 IIO_ENUM_AVAILABLE("powerdown_mode", &ad5064_powerdown_mode_enum),
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100311 { },
312};
313
314#define AD5064_CHANNEL(chan, bits) { \
315 .type = IIO_VOLTAGE, \
316 .indexed = 1, \
317 .output = 1, \
318 .channel = (chan), \
Jonathan Cameron09f4eb42012-04-15 17:41:19 +0100319 .info_mask = IIO_CHAN_INFO_RAW_SEPARATE_BIT | \
320 IIO_CHAN_INFO_SCALE_SEPARATE_BIT, \
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100321 .address = AD5064_ADDR_DAC(chan), \
322 .scan_type = IIO_ST('u', (bits), 16, 20 - (bits)), \
323 .ext_info = ad5064_ext_info, \
324}
325
Lars-Peter Clausen83c169d2012-02-21 18:38:14 +0100326#define DECLARE_AD5064_CHANNELS(name, bits) \
327const struct iio_chan_spec name[] = { \
328 AD5064_CHANNEL(0, bits), \
329 AD5064_CHANNEL(1, bits), \
330 AD5064_CHANNEL(2, bits), \
331 AD5064_CHANNEL(3, bits), \
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +0100332 AD5064_CHANNEL(4, bits), \
333 AD5064_CHANNEL(5, bits), \
334 AD5064_CHANNEL(6, bits), \
335 AD5064_CHANNEL(7, bits), \
Lars-Peter Clausen83c169d2012-02-21 18:38:14 +0100336}
337
338static DECLARE_AD5064_CHANNELS(ad5024_channels, 12);
339static DECLARE_AD5064_CHANNELS(ad5044_channels, 14);
340static DECLARE_AD5064_CHANNELS(ad5064_channels, 16);
341
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100342static const struct ad5064_chip_info ad5064_chip_info_tbl[] = {
343 [ID_AD5024] = {
344 .shared_vref = false,
Lars-Peter Clausen83c169d2012-02-21 18:38:14 +0100345 .channels = ad5024_channels,
346 .num_channels = 4,
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100347 },
Lars-Peter Clausenf8be4af2012-02-21 18:38:15 +0100348 [ID_AD5025] = {
349 .shared_vref = false,
350 .channels = ad5024_channels,
351 .num_channels = 2,
352 },
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100353 [ID_AD5044] = {
354 .shared_vref = false,
Lars-Peter Clausen83c169d2012-02-21 18:38:14 +0100355 .channels = ad5044_channels,
356 .num_channels = 4,
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100357 },
Lars-Peter Clausenf8be4af2012-02-21 18:38:15 +0100358 [ID_AD5045] = {
359 .shared_vref = false,
360 .channels = ad5044_channels,
361 .num_channels = 2,
362 },
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100363 [ID_AD5064] = {
364 .shared_vref = false,
Lars-Peter Clausen83c169d2012-02-21 18:38:14 +0100365 .channels = ad5064_channels,
366 .num_channels = 4,
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100367 },
368 [ID_AD5064_1] = {
369 .shared_vref = true,
Lars-Peter Clausen83c169d2012-02-21 18:38:14 +0100370 .channels = ad5064_channels,
371 .num_channels = 4,
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100372 },
Lars-Peter Clausenf8be4af2012-02-21 18:38:15 +0100373 [ID_AD5065] = {
374 .shared_vref = false,
375 .channels = ad5064_channels,
376 .num_channels = 2,
377 },
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +0100378 [ID_AD5628_1] = {
379 .shared_vref = true,
380 .internal_vref = 2500000,
381 .channels = ad5024_channels,
382 .num_channels = 8,
383 },
384 [ID_AD5628_2] = {
385 .shared_vref = true,
386 .internal_vref = 5000000,
387 .channels = ad5024_channels,
388 .num_channels = 8,
389 },
390 [ID_AD5648_1] = {
391 .shared_vref = true,
392 .internal_vref = 2500000,
393 .channels = ad5044_channels,
394 .num_channels = 8,
395 },
396 [ID_AD5648_2] = {
397 .shared_vref = true,
398 .internal_vref = 5000000,
399 .channels = ad5044_channels,
400 .num_channels = 8,
401 },
Lars-Peter Clausen64f4eaa2012-02-21 18:38:17 +0100402 [ID_AD5666_1] = {
403 .shared_vref = true,
404 .internal_vref = 2500000,
405 .channels = ad5064_channels,
406 .num_channels = 4,
407 },
408 [ID_AD5666_2] = {
409 .shared_vref = true,
410 .internal_vref = 5000000,
411 .channels = ad5064_channels,
412 .num_channels = 4,
413 },
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +0100414 [ID_AD5668_1] = {
415 .shared_vref = true,
416 .internal_vref = 2500000,
417 .channels = ad5064_channels,
418 .num_channels = 8,
419 },
420 [ID_AD5668_2] = {
421 .shared_vref = true,
422 .internal_vref = 5000000,
423 .channels = ad5064_channels,
424 .num_channels = 8,
425 },
Lars-Peter Clausen1d0d8792012-02-21 18:38:13 +0100426};
427
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200428static inline unsigned int ad5064_num_vref(struct ad5064_state *st)
429{
Lars-Peter Clausen83c169d2012-02-21 18:38:14 +0100430 return st->chip_info->shared_vref ? 1 : st->chip_info->num_channels;
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200431}
432
433static const char * const ad5064_vref_names[] = {
434 "vrefA",
435 "vrefB",
436 "vrefC",
437 "vrefD",
438};
439
440static const char * const ad5064_vref_name(struct ad5064_state *st,
441 unsigned int vref)
442{
443 return st->chip_info->shared_vref ? "vref" : ad5064_vref_names[vref];
444}
445
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200446static int __devinit ad5064_probe(struct device *dev, enum ad5064_type type,
447 const char *name, ad5064_write_func write)
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200448{
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200449 struct iio_dev *indio_dev;
450 struct ad5064_state *st;
451 unsigned int i;
452 int ret;
453
Lars-Peter Clausen7cbb7532012-04-26 13:35:01 +0200454 indio_dev = iio_device_alloc(sizeof(*st));
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200455 if (indio_dev == NULL)
456 return -ENOMEM;
457
458 st = iio_priv(indio_dev);
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200459 dev_set_drvdata(dev, indio_dev);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200460
461 st->chip_info = &ad5064_chip_info_tbl[type];
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200462 st->dev = dev;
463 st->write = write;
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200464
465 for (i = 0; i < ad5064_num_vref(st); ++i)
466 st->vref_reg[i].supply = ad5064_vref_name(st, i);
467
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200468 ret = regulator_bulk_get(dev, ad5064_num_vref(st),
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200469 st->vref_reg);
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +0100470 if (ret) {
471 if (!st->chip_info->internal_vref)
472 goto error_free;
473 st->use_internal_vref = true;
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200474 ret = ad5064_write(st, AD5064_CMD_CONFIG, 0,
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +0100475 AD5064_CONFIG_INT_VREF_ENABLE, 0);
476 if (ret) {
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200477 dev_err(dev, "Failed to enable internal vref: %d\n",
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +0100478 ret);
479 goto error_free;
480 }
481 } else {
482 ret = regulator_bulk_enable(ad5064_num_vref(st), st->vref_reg);
483 if (ret)
484 goto error_free_reg;
485 }
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200486
Lars-Peter Clausen83c169d2012-02-21 18:38:14 +0100487 for (i = 0; i < st->chip_info->num_channels; ++i) {
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200488 st->pwr_down_mode[i] = AD5064_LDAC_PWRDN_1K;
489 st->dac_cache[i] = 0x8000;
490 }
491
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200492 indio_dev->dev.parent = dev;
493 indio_dev->name = name;
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200494 indio_dev->info = &ad5064_info;
495 indio_dev->modes = INDIO_DIRECT_MODE;
Lars-Peter Clausen83c169d2012-02-21 18:38:14 +0100496 indio_dev->channels = st->chip_info->channels;
497 indio_dev->num_channels = st->chip_info->num_channels;
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200498
499 ret = iio_device_register(indio_dev);
500 if (ret)
501 goto error_disable_reg;
502
503 return 0;
504
505error_disable_reg:
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +0100506 if (!st->use_internal_vref)
507 regulator_bulk_disable(ad5064_num_vref(st), st->vref_reg);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200508error_free_reg:
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +0100509 if (!st->use_internal_vref)
510 regulator_bulk_free(ad5064_num_vref(st), st->vref_reg);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200511error_free:
Lars-Peter Clausen7cbb7532012-04-26 13:35:01 +0200512 iio_device_free(indio_dev);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200513
514 return ret;
515}
516
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200517static int __devexit ad5064_remove(struct device *dev)
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200518{
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200519 struct iio_dev *indio_dev = dev_get_drvdata(dev);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200520 struct ad5064_state *st = iio_priv(indio_dev);
521
522 iio_device_unregister(indio_dev);
523
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +0100524 if (!st->use_internal_vref) {
525 regulator_bulk_disable(ad5064_num_vref(st), st->vref_reg);
526 regulator_bulk_free(ad5064_num_vref(st), st->vref_reg);
527 }
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200528
Lars-Peter Clausen7cbb7532012-04-26 13:35:01 +0200529 iio_device_free(indio_dev);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200530
531 return 0;
532}
533
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200534#if IS_ENABLED(CONFIG_SPI_MASTER)
535
536static int __devinit ad5064_spi_probe(struct spi_device *spi)
537{
538 const struct spi_device_id *id = spi_get_device_id(spi);
539
540 return ad5064_probe(&spi->dev, id->driver_data, id->name,
541 ad5064_spi_write);
542}
543
544static int __devexit ad5064_spi_remove(struct spi_device *spi)
545{
546 return ad5064_remove(&spi->dev);
547}
548
549static const struct spi_device_id ad5064_spi_ids[] = {
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200550 {"ad5024", ID_AD5024},
Lars-Peter Clausenf8be4af2012-02-21 18:38:15 +0100551 {"ad5025", ID_AD5025},
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200552 {"ad5044", ID_AD5044},
Lars-Peter Clausenf8be4af2012-02-21 18:38:15 +0100553 {"ad5045", ID_AD5045},
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200554 {"ad5064", ID_AD5064},
555 {"ad5064-1", ID_AD5064_1},
Lars-Peter Clausenf8be4af2012-02-21 18:38:15 +0100556 {"ad5065", ID_AD5065},
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +0100557 {"ad5628-1", ID_AD5628_1},
558 {"ad5628-2", ID_AD5628_2},
559 {"ad5648-1", ID_AD5648_1},
560 {"ad5648-2", ID_AD5648_2},
Lars-Peter Clausen64f4eaa2012-02-21 18:38:17 +0100561 {"ad5666-1", ID_AD5666_1},
562 {"ad5666-2", ID_AD5666_2},
Lars-Peter Clausenbb92ff32012-02-21 18:38:16 +0100563 {"ad5668-1", ID_AD5668_1},
564 {"ad5668-2", ID_AD5668_2},
565 {"ad5668-3", ID_AD5668_2}, /* similar enough to ad5668-2 */
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200566 {}
567};
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200568MODULE_DEVICE_TABLE(spi, ad5064_spi_ids);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200569
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200570static struct spi_driver ad5064_spi_driver = {
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200571 .driver = {
572 .name = "ad5064",
573 .owner = THIS_MODULE,
574 },
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200575 .probe = ad5064_spi_probe,
576 .remove = __devexit_p(ad5064_spi_remove),
577 .id_table = ad5064_spi_ids,
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200578};
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200579
580static int __init ad5064_spi_register_driver(void)
581{
582 return spi_register_driver(&ad5064_spi_driver);
583}
584
585static void __exit ad5064_spi_unregister_driver(void)
586{
587 spi_unregister_driver(&ad5064_spi_driver);
588}
589
590#else
591
592static inline int ad5064_spi_register_driver(void) { return 0; }
593static inline void ad5064_spi_unregister_driver(void) { }
594
595#endif
596
597#if IS_ENABLED(CONFIG_I2C)
598
599static int __devinit ad5064_i2c_probe(struct i2c_client *i2c,
600 const struct i2c_device_id *id)
601{
602 return ad5064_probe(&i2c->dev, id->driver_data, id->name,
603 ad5064_i2c_write);
604}
605
606static int __devexit ad5064_i2c_remove(struct i2c_client *i2c)
607{
608 return ad5064_remove(&i2c->dev);
609}
610
611static const struct i2c_device_id ad5064_i2c_ids[] = {
612 {"ad5629-1", ID_AD5628_1},
613 {"ad5629-2", ID_AD5628_2},
614 {"ad5629-3", ID_AD5628_2}, /* similar enough to ad5629-2 */
615 {"ad5669-1", ID_AD5668_1},
616 {"ad5669-2", ID_AD5668_2},
617 {"ad5669-3", ID_AD5668_2}, /* similar enough to ad5669-2 */
618 {}
619};
620MODULE_DEVICE_TABLE(i2c, ad5064_i2c_ids);
621
622static struct i2c_driver ad5064_i2c_driver = {
623 .driver = {
624 .name = "ad5064",
625 .owner = THIS_MODULE,
626 },
627 .probe = ad5064_i2c_probe,
628 .remove = __devexit_p(ad5064_i2c_remove),
629 .id_table = ad5064_i2c_ids,
630};
631
632static int __init ad5064_i2c_register_driver(void)
633{
634 return i2c_add_driver(&ad5064_i2c_driver);
635}
636
637static void __exit ad5064_i2c_unregister_driver(void)
638{
639 i2c_del_driver(&ad5064_i2c_driver);
640}
641
642#else
643
644static inline int ad5064_i2c_register_driver(void) { return 0; }
645static inline void ad5064_i2c_unregister_driver(void) { }
646
647#endif
648
649static int __init ad5064_init(void)
650{
651 int ret;
652
653 ret = ad5064_spi_register_driver();
654 if (ret)
655 return ret;
656
657 ret = ad5064_i2c_register_driver();
658 if (ret) {
659 ad5064_spi_unregister_driver();
660 return ret;
661 }
662
663 return 0;
664}
665module_init(ad5064_init);
666
667static void __exit ad5064_exit(void)
668{
669 ad5064_i2c_unregister_driver();
670 ad5064_spi_unregister_driver();
671}
672module_exit(ad5064_exit);
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200673
674MODULE_AUTHOR("Lars-Peter Clausen <lars@metafoo.de>");
Lars-Peter Clausen6a17a072012-06-26 11:04:36 +0200675MODULE_DESCRIPTION("Analog Devices AD5024 and similar multi-channel DACs");
Lars-Peter Clausenfcf265d2011-10-18 09:33:03 +0200676MODULE_LICENSE("GPL v2");