xref: /openbmc/linux/drivers/iio/adc/da9150-gpadc.c (revision fb6349ef)
12874c5fdSThomas Gleixner // SPDX-License-Identifier: GPL-2.0-or-later
2ed5f07b3SAdam Thomson /*
3ed5f07b3SAdam Thomson  * DA9150 GPADC Driver
4ed5f07b3SAdam Thomson  *
5ed5f07b3SAdam Thomson  * Copyright (c) 2014 Dialog Semiconductor
6ed5f07b3SAdam Thomson  *
7ed5f07b3SAdam Thomson  * Author: Adam Thomson <Adam.Thomson.Opensource@diasemi.com>
8ed5f07b3SAdam Thomson  */
9ed5f07b3SAdam Thomson 
10ed5f07b3SAdam Thomson #include <linux/kernel.h>
11ed5f07b3SAdam Thomson #include <linux/slab.h>
12ed5f07b3SAdam Thomson #include <linux/module.h>
13ed5f07b3SAdam Thomson #include <linux/platform_device.h>
14ed5f07b3SAdam Thomson #include <linux/interrupt.h>
15ed5f07b3SAdam Thomson #include <linux/mutex.h>
16ed5f07b3SAdam Thomson #include <linux/completion.h>
17ed5f07b3SAdam Thomson #include <linux/iio/iio.h>
18ed5f07b3SAdam Thomson #include <linux/iio/machine.h>
19ed5f07b3SAdam Thomson #include <linux/iio/driver.h>
20ed5f07b3SAdam Thomson #include <linux/mfd/da9150/core.h>
21ed5f07b3SAdam Thomson #include <linux/mfd/da9150/registers.h>
22ed5f07b3SAdam Thomson 
23ed5f07b3SAdam Thomson /* Channels */
24ed5f07b3SAdam Thomson enum da9150_gpadc_hw_channel {
25ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOA_2V = 0,
26ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOA_2V_,
27ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOB_2V,
28ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOB_2V_,
29ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOC_2V,
30ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOC_2V_,
31ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOD_2V,
32ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOD_2V_,
33ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_IBUS_SENSE,
34ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_IBUS_SENSE_,
35ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_VBUS_DIV,
36ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_VBUS_DIV_,
37ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_ID,
38ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_ID_,
39ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_VSYS,
40ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_VSYS_,
41ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOA_6V,
42ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOA_6V_,
43ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOB_6V,
44ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOB_6V_,
45ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOC_6V,
46ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOC_6V_,
47ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOD_6V,
48ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_GPIOD_6V_,
49ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_VBAT,
50ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_VBAT_,
51ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_TBAT,
52ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_TBAT_,
53ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_TJUNC_CORE,
54ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_TJUNC_CORE_,
55ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_TJUNC_OVP,
56ed5f07b3SAdam Thomson 	DA9150_GPADC_HW_CHAN_TJUNC_OVP_,
57ed5f07b3SAdam Thomson };
58ed5f07b3SAdam Thomson 
59ed5f07b3SAdam Thomson enum da9150_gpadc_channel {
60ed5f07b3SAdam Thomson 	DA9150_GPADC_CHAN_GPIOA = 0,
61ed5f07b3SAdam Thomson 	DA9150_GPADC_CHAN_GPIOB,
62ed5f07b3SAdam Thomson 	DA9150_GPADC_CHAN_GPIOC,
63ed5f07b3SAdam Thomson 	DA9150_GPADC_CHAN_GPIOD,
64ed5f07b3SAdam Thomson 	DA9150_GPADC_CHAN_IBUS,
65ed5f07b3SAdam Thomson 	DA9150_GPADC_CHAN_VBUS,
66ed5f07b3SAdam Thomson 	DA9150_GPADC_CHAN_VSYS,
67ed5f07b3SAdam Thomson 	DA9150_GPADC_CHAN_VBAT,
68ed5f07b3SAdam Thomson 	DA9150_GPADC_CHAN_TBAT,
69ed5f07b3SAdam Thomson 	DA9150_GPADC_CHAN_TJUNC_CORE,
70ed5f07b3SAdam Thomson 	DA9150_GPADC_CHAN_TJUNC_OVP,
71ed5f07b3SAdam Thomson };
72ed5f07b3SAdam Thomson 
73ed5f07b3SAdam Thomson /* Private data */
74ed5f07b3SAdam Thomson struct da9150_gpadc {
75ed5f07b3SAdam Thomson 	struct da9150 *da9150;
76ed5f07b3SAdam Thomson 	struct device *dev;
77ed5f07b3SAdam Thomson 
78ed5f07b3SAdam Thomson 	struct mutex lock;
79ed5f07b3SAdam Thomson 	struct completion complete;
80ed5f07b3SAdam Thomson };
81ed5f07b3SAdam Thomson 
82ed5f07b3SAdam Thomson 
da9150_gpadc_irq(int irq,void * data)83ed5f07b3SAdam Thomson static irqreturn_t da9150_gpadc_irq(int irq, void *data)
84ed5f07b3SAdam Thomson {
85ed5f07b3SAdam Thomson 
86ed5f07b3SAdam Thomson 	struct da9150_gpadc *gpadc = data;
87ed5f07b3SAdam Thomson 
88ed5f07b3SAdam Thomson 	complete(&gpadc->complete);
89ed5f07b3SAdam Thomson 
90ed5f07b3SAdam Thomson 	return IRQ_HANDLED;
91ed5f07b3SAdam Thomson }
92ed5f07b3SAdam Thomson 
da9150_gpadc_read_adc(struct da9150_gpadc * gpadc,int hw_chan)93ed5f07b3SAdam Thomson static int da9150_gpadc_read_adc(struct da9150_gpadc *gpadc, int hw_chan)
94ed5f07b3SAdam Thomson {
95ed5f07b3SAdam Thomson 	u8 result_regs[2];
96ed5f07b3SAdam Thomson 	int result;
97ed5f07b3SAdam Thomson 
98ed5f07b3SAdam Thomson 	mutex_lock(&gpadc->lock);
99ed5f07b3SAdam Thomson 
100ed5f07b3SAdam Thomson 	/* Set channel & enable measurement */
101ed5f07b3SAdam Thomson 	da9150_reg_write(gpadc->da9150, DA9150_GPADC_MAN,
102ed5f07b3SAdam Thomson 			 (DA9150_GPADC_EN_MASK |
103ed5f07b3SAdam Thomson 			  hw_chan << DA9150_GPADC_MUX_SHIFT));
104ed5f07b3SAdam Thomson 
105ed5f07b3SAdam Thomson 	/* Consume left-over completion from a previous timeout */
106ed5f07b3SAdam Thomson 	try_wait_for_completion(&gpadc->complete);
107ed5f07b3SAdam Thomson 
108ed5f07b3SAdam Thomson 	/* Check for actual completion */
109ed5f07b3SAdam Thomson 	wait_for_completion_timeout(&gpadc->complete, msecs_to_jiffies(5));
110ed5f07b3SAdam Thomson 
111ed5f07b3SAdam Thomson 	/* Read result and status from device */
112ed5f07b3SAdam Thomson 	da9150_bulk_read(gpadc->da9150, DA9150_GPADC_RES_A, 2, result_regs);
113ed5f07b3SAdam Thomson 
114ed5f07b3SAdam Thomson 	mutex_unlock(&gpadc->lock);
115ed5f07b3SAdam Thomson 
116ed5f07b3SAdam Thomson 	/* Check to make sure device really has completed reading */
117ed5f07b3SAdam Thomson 	if (result_regs[1] & DA9150_GPADC_RUN_MASK) {
118ed5f07b3SAdam Thomson 		dev_err(gpadc->dev, "Timeout on channel %d of GPADC\n",
119ed5f07b3SAdam Thomson 			hw_chan);
120ed5f07b3SAdam Thomson 		return -ETIMEDOUT;
121ed5f07b3SAdam Thomson 	}
122ed5f07b3SAdam Thomson 
123ed5f07b3SAdam Thomson 	/* LSBs - 2 bits */
124ed5f07b3SAdam Thomson 	result = (result_regs[1] & DA9150_GPADC_RES_L_MASK) >>
125ed5f07b3SAdam Thomson 		 DA9150_GPADC_RES_L_SHIFT;
126ed5f07b3SAdam Thomson 	/* MSBs - 8 bits */
127ed5f07b3SAdam Thomson 	result |= result_regs[0] << DA9150_GPADC_RES_L_BITS;
128ed5f07b3SAdam Thomson 
129ed5f07b3SAdam Thomson 	return result;
130ed5f07b3SAdam Thomson }
131ed5f07b3SAdam Thomson 
da9150_gpadc_gpio_6v_voltage_now(int raw_val)132ed5f07b3SAdam Thomson static inline int da9150_gpadc_gpio_6v_voltage_now(int raw_val)
133ed5f07b3SAdam Thomson {
134ed5f07b3SAdam Thomson 	/* Convert to mV */
135ed5f07b3SAdam Thomson 	return (6 * ((raw_val * 1000) + 500)) / 1024;
136ed5f07b3SAdam Thomson }
137ed5f07b3SAdam Thomson 
da9150_gpadc_ibus_current_avg(int raw_val)138ed5f07b3SAdam Thomson static inline int da9150_gpadc_ibus_current_avg(int raw_val)
139ed5f07b3SAdam Thomson {
140ed5f07b3SAdam Thomson 	/* Convert to mA */
141ed5f07b3SAdam Thomson 	return (4 * ((raw_val * 1000) + 500)) / 2048;
142ed5f07b3SAdam Thomson }
143ed5f07b3SAdam Thomson 
da9150_gpadc_vbus_21v_voltage_now(int raw_val)144ed5f07b3SAdam Thomson static inline int da9150_gpadc_vbus_21v_voltage_now(int raw_val)
145ed5f07b3SAdam Thomson {
146ed5f07b3SAdam Thomson 	/* Convert to mV */
147ed5f07b3SAdam Thomson 	return (21 * ((raw_val * 1000) + 500)) / 1024;
148ed5f07b3SAdam Thomson }
149ed5f07b3SAdam Thomson 
da9150_gpadc_vsys_6v_voltage_now(int raw_val)150ed5f07b3SAdam Thomson static inline int da9150_gpadc_vsys_6v_voltage_now(int raw_val)
151ed5f07b3SAdam Thomson {
152ed5f07b3SAdam Thomson 	/* Convert to mV */
153ed5f07b3SAdam Thomson 	return (3 * ((raw_val * 1000) + 500)) / 512;
154ed5f07b3SAdam Thomson }
155ed5f07b3SAdam Thomson 
da9150_gpadc_read_processed(struct da9150_gpadc * gpadc,int channel,int hw_chan,int * val)156ed5f07b3SAdam Thomson static int da9150_gpadc_read_processed(struct da9150_gpadc *gpadc, int channel,
157ed5f07b3SAdam Thomson 				       int hw_chan, int *val)
158ed5f07b3SAdam Thomson {
159ed5f07b3SAdam Thomson 	int raw_val;
160ed5f07b3SAdam Thomson 
161ed5f07b3SAdam Thomson 	raw_val = da9150_gpadc_read_adc(gpadc, hw_chan);
162ed5f07b3SAdam Thomson 	if (raw_val < 0)
163ed5f07b3SAdam Thomson 		return raw_val;
164ed5f07b3SAdam Thomson 
165ed5f07b3SAdam Thomson 	switch (channel) {
166ed5f07b3SAdam Thomson 	case DA9150_GPADC_CHAN_GPIOA:
167ed5f07b3SAdam Thomson 	case DA9150_GPADC_CHAN_GPIOB:
168ed5f07b3SAdam Thomson 	case DA9150_GPADC_CHAN_GPIOC:
169ed5f07b3SAdam Thomson 	case DA9150_GPADC_CHAN_GPIOD:
170ed5f07b3SAdam Thomson 		*val = da9150_gpadc_gpio_6v_voltage_now(raw_val);
171ed5f07b3SAdam Thomson 		break;
172ed5f07b3SAdam Thomson 	case DA9150_GPADC_CHAN_IBUS:
173ed5f07b3SAdam Thomson 		*val = da9150_gpadc_ibus_current_avg(raw_val);
174ed5f07b3SAdam Thomson 		break;
175ed5f07b3SAdam Thomson 	case DA9150_GPADC_CHAN_VBUS:
176ed5f07b3SAdam Thomson 		*val = da9150_gpadc_vbus_21v_voltage_now(raw_val);
177ed5f07b3SAdam Thomson 		break;
178ed5f07b3SAdam Thomson 	case DA9150_GPADC_CHAN_VSYS:
179ed5f07b3SAdam Thomson 		*val = da9150_gpadc_vsys_6v_voltage_now(raw_val);
180ed5f07b3SAdam Thomson 		break;
181ed5f07b3SAdam Thomson 	default:
182ed5f07b3SAdam Thomson 		/* No processing for other channels so return raw value */
183ed5f07b3SAdam Thomson 		*val = raw_val;
184ed5f07b3SAdam Thomson 		break;
185ed5f07b3SAdam Thomson 	}
186ed5f07b3SAdam Thomson 
187ed5f07b3SAdam Thomson 	return IIO_VAL_INT;
188ed5f07b3SAdam Thomson }
189ed5f07b3SAdam Thomson 
da9150_gpadc_read_scale(int channel,int * val,int * val2)190ed5f07b3SAdam Thomson static int da9150_gpadc_read_scale(int channel, int *val, int *val2)
191ed5f07b3SAdam Thomson {
192ed5f07b3SAdam Thomson 	switch (channel) {
193ed5f07b3SAdam Thomson 	case DA9150_GPADC_CHAN_VBAT:
194ed5f07b3SAdam Thomson 		*val = 2932;
195ed5f07b3SAdam Thomson 		*val2 = 1000;
196ed5f07b3SAdam Thomson 		return IIO_VAL_FRACTIONAL;
197ed5f07b3SAdam Thomson 	case DA9150_GPADC_CHAN_TJUNC_CORE:
198ed5f07b3SAdam Thomson 	case DA9150_GPADC_CHAN_TJUNC_OVP:
199ed5f07b3SAdam Thomson 		*val = 1000000;
200ed5f07b3SAdam Thomson 		*val2 = 4420;
201ed5f07b3SAdam Thomson 		return IIO_VAL_FRACTIONAL;
202ed5f07b3SAdam Thomson 	default:
203ed5f07b3SAdam Thomson 		return -EINVAL;
204ed5f07b3SAdam Thomson 	}
205ed5f07b3SAdam Thomson }
206ed5f07b3SAdam Thomson 
da9150_gpadc_read_offset(int channel,int * val)207ed5f07b3SAdam Thomson static int da9150_gpadc_read_offset(int channel, int *val)
208ed5f07b3SAdam Thomson {
209ed5f07b3SAdam Thomson 	switch (channel) {
210ed5f07b3SAdam Thomson 	case DA9150_GPADC_CHAN_VBAT:
211ed5f07b3SAdam Thomson 		*val = 1500000 / 2932;
212ed5f07b3SAdam Thomson 		return IIO_VAL_INT;
213ed5f07b3SAdam Thomson 	case DA9150_GPADC_CHAN_TJUNC_CORE:
214ed5f07b3SAdam Thomson 	case DA9150_GPADC_CHAN_TJUNC_OVP:
215ed5f07b3SAdam Thomson 		*val = -144;
216ed5f07b3SAdam Thomson 		return IIO_VAL_INT;
217ed5f07b3SAdam Thomson 	default:
218ed5f07b3SAdam Thomson 		return -EINVAL;
219ed5f07b3SAdam Thomson 	}
220ed5f07b3SAdam Thomson }
221ed5f07b3SAdam Thomson 
da9150_gpadc_read_raw(struct iio_dev * indio_dev,struct iio_chan_spec const * chan,int * val,int * val2,long mask)222ed5f07b3SAdam Thomson static int da9150_gpadc_read_raw(struct iio_dev *indio_dev,
223ed5f07b3SAdam Thomson 				 struct iio_chan_spec const *chan,
224ed5f07b3SAdam Thomson 				 int *val, int *val2, long mask)
225ed5f07b3SAdam Thomson {
226ed5f07b3SAdam Thomson 	struct da9150_gpadc *gpadc = iio_priv(indio_dev);
227ed5f07b3SAdam Thomson 
228ed5f07b3SAdam Thomson 	if ((chan->channel < DA9150_GPADC_CHAN_GPIOA) ||
229ed5f07b3SAdam Thomson 	    (chan->channel > DA9150_GPADC_CHAN_TJUNC_OVP))
230ed5f07b3SAdam Thomson 		return -EINVAL;
231ed5f07b3SAdam Thomson 
232ed5f07b3SAdam Thomson 	switch (mask) {
233ed5f07b3SAdam Thomson 	case IIO_CHAN_INFO_RAW:
234ed5f07b3SAdam Thomson 	case IIO_CHAN_INFO_PROCESSED:
235ed5f07b3SAdam Thomson 		return da9150_gpadc_read_processed(gpadc, chan->channel,
236ed5f07b3SAdam Thomson 						   chan->address, val);
237ed5f07b3SAdam Thomson 	case IIO_CHAN_INFO_SCALE:
238ed5f07b3SAdam Thomson 		return da9150_gpadc_read_scale(chan->channel, val, val2);
239ed5f07b3SAdam Thomson 	case IIO_CHAN_INFO_OFFSET:
240ed5f07b3SAdam Thomson 		return da9150_gpadc_read_offset(chan->channel, val);
241ed5f07b3SAdam Thomson 	default:
242ed5f07b3SAdam Thomson 		return -EINVAL;
243ed5f07b3SAdam Thomson 	}
244ed5f07b3SAdam Thomson }
245ed5f07b3SAdam Thomson 
246ed5f07b3SAdam Thomson static const struct iio_info da9150_gpadc_info = {
247ed5f07b3SAdam Thomson 	.read_raw = &da9150_gpadc_read_raw,
248ed5f07b3SAdam Thomson };
249ed5f07b3SAdam Thomson 
250ed5f07b3SAdam Thomson #define DA9150_GPADC_CHANNEL(_id, _hw_id, _type, chan_info,	\
251ed5f07b3SAdam Thomson 			     _ext_name) {			\
252ed5f07b3SAdam Thomson 	.type = _type,						\
253ed5f07b3SAdam Thomson 	.indexed = 1,						\
254ed5f07b3SAdam Thomson 	.channel = DA9150_GPADC_CHAN_##_id,			\
255ed5f07b3SAdam Thomson 	.address = DA9150_GPADC_HW_CHAN_##_hw_id,		\
256ed5f07b3SAdam Thomson 	.info_mask_separate = chan_info,			\
257ed5f07b3SAdam Thomson 	.extend_name = _ext_name,				\
258ed5f07b3SAdam Thomson 	.datasheet_name = #_id,					\
259ed5f07b3SAdam Thomson }
260ed5f07b3SAdam Thomson 
261ed5f07b3SAdam Thomson #define DA9150_GPADC_CHANNEL_RAW(_id, _hw_id, _type, _ext_name)	\
262ed5f07b3SAdam Thomson 	DA9150_GPADC_CHANNEL(_id, _hw_id, _type,		\
263ed5f07b3SAdam Thomson 			     BIT(IIO_CHAN_INFO_RAW), _ext_name)
264ed5f07b3SAdam Thomson 
265ed5f07b3SAdam Thomson #define DA9150_GPADC_CHANNEL_SCALED(_id, _hw_id, _type, _ext_name)	\
266ed5f07b3SAdam Thomson 	DA9150_GPADC_CHANNEL(_id, _hw_id, _type,			\
267ed5f07b3SAdam Thomson 			     BIT(IIO_CHAN_INFO_RAW) |			\
268ed5f07b3SAdam Thomson 			     BIT(IIO_CHAN_INFO_SCALE) |			\
269ed5f07b3SAdam Thomson 			     BIT(IIO_CHAN_INFO_OFFSET),			\
270ed5f07b3SAdam Thomson 			     _ext_name)
271ed5f07b3SAdam Thomson 
272ed5f07b3SAdam Thomson #define DA9150_GPADC_CHANNEL_PROCESSED(_id, _hw_id, _type, _ext_name)	\
273ed5f07b3SAdam Thomson 	DA9150_GPADC_CHANNEL(_id, _hw_id, _type,			\
274ed5f07b3SAdam Thomson 			     BIT(IIO_CHAN_INFO_PROCESSED), _ext_name)
275ed5f07b3SAdam Thomson 
276ed5f07b3SAdam Thomson /* Supported channels */
277ed5f07b3SAdam Thomson static const struct iio_chan_spec da9150_gpadc_channels[] = {
278ed5f07b3SAdam Thomson 	DA9150_GPADC_CHANNEL_PROCESSED(GPIOA, GPIOA_6V, IIO_VOLTAGE, NULL),
279ed5f07b3SAdam Thomson 	DA9150_GPADC_CHANNEL_PROCESSED(GPIOB, GPIOB_6V, IIO_VOLTAGE, NULL),
280ed5f07b3SAdam Thomson 	DA9150_GPADC_CHANNEL_PROCESSED(GPIOC, GPIOC_6V, IIO_VOLTAGE, NULL),
281ed5f07b3SAdam Thomson 	DA9150_GPADC_CHANNEL_PROCESSED(GPIOD, GPIOD_6V, IIO_VOLTAGE, NULL),
282ed5f07b3SAdam Thomson 	DA9150_GPADC_CHANNEL_PROCESSED(IBUS, IBUS_SENSE, IIO_CURRENT, "ibus"),
283ed5f07b3SAdam Thomson 	DA9150_GPADC_CHANNEL_PROCESSED(VBUS, VBUS_DIV_, IIO_VOLTAGE, "vbus"),
284ed5f07b3SAdam Thomson 	DA9150_GPADC_CHANNEL_PROCESSED(VSYS, VSYS, IIO_VOLTAGE, "vsys"),
285ed5f07b3SAdam Thomson 	DA9150_GPADC_CHANNEL_SCALED(VBAT, VBAT, IIO_VOLTAGE, "vbat"),
286ed5f07b3SAdam Thomson 	DA9150_GPADC_CHANNEL_RAW(TBAT, TBAT, IIO_VOLTAGE, "tbat"),
287ed5f07b3SAdam Thomson 	DA9150_GPADC_CHANNEL_SCALED(TJUNC_CORE, TJUNC_CORE, IIO_TEMP,
288ed5f07b3SAdam Thomson 				    "tjunc_core"),
289ed5f07b3SAdam Thomson 	DA9150_GPADC_CHANNEL_SCALED(TJUNC_OVP, TJUNC_OVP, IIO_TEMP,
290ed5f07b3SAdam Thomson 				    "tjunc_ovp"),
291ed5f07b3SAdam Thomson };
292ed5f07b3SAdam Thomson 
293ed5f07b3SAdam Thomson /* Default maps used by da9150-charger */
294ed5f07b3SAdam Thomson static struct iio_map da9150_gpadc_default_maps[] = {
295ed5f07b3SAdam Thomson 	{
296ed5f07b3SAdam Thomson 		.consumer_dev_name = "da9150-charger",
297ed5f07b3SAdam Thomson 		.consumer_channel = "CHAN_IBUS",
298ed5f07b3SAdam Thomson 		.adc_channel_label = "IBUS",
299ed5f07b3SAdam Thomson 	},
300ed5f07b3SAdam Thomson 	{
301ed5f07b3SAdam Thomson 		.consumer_dev_name = "da9150-charger",
302ed5f07b3SAdam Thomson 		.consumer_channel = "CHAN_VBUS",
303ed5f07b3SAdam Thomson 		.adc_channel_label = "VBUS",
304ed5f07b3SAdam Thomson 	},
305ed5f07b3SAdam Thomson 	{
306ed5f07b3SAdam Thomson 		.consumer_dev_name = "da9150-charger",
307ed5f07b3SAdam Thomson 		.consumer_channel = "CHAN_TJUNC",
308ed5f07b3SAdam Thomson 		.adc_channel_label = "TJUNC_CORE",
309ed5f07b3SAdam Thomson 	},
310ed5f07b3SAdam Thomson 	{
311ed5f07b3SAdam Thomson 		.consumer_dev_name = "da9150-charger",
312ed5f07b3SAdam Thomson 		.consumer_channel = "CHAN_VBAT",
313ed5f07b3SAdam Thomson 		.adc_channel_label = "VBAT",
314ed5f07b3SAdam Thomson 	},
315ed5f07b3SAdam Thomson 	{},
316ed5f07b3SAdam Thomson };
317ed5f07b3SAdam Thomson 
da9150_gpadc_probe(struct platform_device * pdev)318ed5f07b3SAdam Thomson static int da9150_gpadc_probe(struct platform_device *pdev)
319ed5f07b3SAdam Thomson {
320ed5f07b3SAdam Thomson 	struct device *dev = &pdev->dev;
321ed5f07b3SAdam Thomson 	struct da9150 *da9150 = dev_get_drvdata(dev->parent);
322ed5f07b3SAdam Thomson 	struct da9150_gpadc *gpadc;
323ed5f07b3SAdam Thomson 	struct iio_dev *indio_dev;
324ed5f07b3SAdam Thomson 	int irq, ret;
325ed5f07b3SAdam Thomson 
326ed5f07b3SAdam Thomson 	indio_dev = devm_iio_device_alloc(dev, sizeof(*gpadc));
327ed5f07b3SAdam Thomson 	if (!indio_dev) {
328ed5f07b3SAdam Thomson 		dev_err(&pdev->dev, "Failed to allocate IIO device\n");
329ed5f07b3SAdam Thomson 		return -ENOMEM;
330ed5f07b3SAdam Thomson 	}
331ed5f07b3SAdam Thomson 	gpadc = iio_priv(indio_dev);
332ed5f07b3SAdam Thomson 
333ed5f07b3SAdam Thomson 	gpadc->da9150 = da9150;
334ed5f07b3SAdam Thomson 	gpadc->dev = dev;
335ed5f07b3SAdam Thomson 	mutex_init(&gpadc->lock);
336ed5f07b3SAdam Thomson 	init_completion(&gpadc->complete);
337ed5f07b3SAdam Thomson 
338ed5f07b3SAdam Thomson 	irq = platform_get_irq_byname(pdev, "GPADC");
3397c279229SStephen Boyd 	if (irq < 0)
340ed5f07b3SAdam Thomson 		return irq;
341ed5f07b3SAdam Thomson 
342ed5f07b3SAdam Thomson 	ret = devm_request_threaded_irq(dev, irq, NULL, da9150_gpadc_irq,
343ed5f07b3SAdam Thomson 					IRQF_ONESHOT, "GPADC", gpadc);
344ed5f07b3SAdam Thomson 	if (ret) {
345ed5f07b3SAdam Thomson 		dev_err(dev, "Failed to request IRQ %d: %d\n", irq, ret);
346ed5f07b3SAdam Thomson 		return ret;
347ed5f07b3SAdam Thomson 	}
348ed5f07b3SAdam Thomson 
349*fb6349efSAlexandru Ardelean 	ret = devm_iio_map_array_register(&pdev->dev, indio_dev, da9150_gpadc_default_maps);
350ed5f07b3SAdam Thomson 	if (ret) {
351ed5f07b3SAdam Thomson 		dev_err(dev, "Failed to register IIO maps: %d\n", ret);
352ed5f07b3SAdam Thomson 		return ret;
353ed5f07b3SAdam Thomson 	}
354ed5f07b3SAdam Thomson 
355ed5f07b3SAdam Thomson 	indio_dev->name = dev_name(dev);
356ed5f07b3SAdam Thomson 	indio_dev->info = &da9150_gpadc_info;
357ed5f07b3SAdam Thomson 	indio_dev->modes = INDIO_DIRECT_MODE;
358ed5f07b3SAdam Thomson 	indio_dev->channels = da9150_gpadc_channels;
359ed5f07b3SAdam Thomson 	indio_dev->num_channels = ARRAY_SIZE(da9150_gpadc_channels);
360ed5f07b3SAdam Thomson 
361*fb6349efSAlexandru Ardelean 	return devm_iio_device_register(&pdev->dev, indio_dev);
362ed5f07b3SAdam Thomson }
363ed5f07b3SAdam Thomson 
364ed5f07b3SAdam Thomson static struct platform_driver da9150_gpadc_driver = {
365ed5f07b3SAdam Thomson 	.driver = {
366ed5f07b3SAdam Thomson 		.name = "da9150-gpadc",
367ed5f07b3SAdam Thomson 	},
368ed5f07b3SAdam Thomson 	.probe = da9150_gpadc_probe,
369ed5f07b3SAdam Thomson };
370ed5f07b3SAdam Thomson 
371ed5f07b3SAdam Thomson module_platform_driver(da9150_gpadc_driver);
372ed5f07b3SAdam Thomson 
373ed5f07b3SAdam Thomson MODULE_DESCRIPTION("GPADC Driver for DA9150");
374ed5f07b3SAdam Thomson MODULE_AUTHOR("Adam Thomson <Adam.Thomson.Opensource@diasemi.com>");
375ed5f07b3SAdam Thomson MODULE_LICENSE("GPL");
376