xref: /openbmc/linux/drivers/hwmon/ltc4261.c (revision decb23dc)
1e5f5c99aSGuenter Roeck /*
2e5f5c99aSGuenter Roeck  * Driver for Linear Technology LTC4261 I2C Negative Voltage Hot Swap Controller
3e5f5c99aSGuenter Roeck  *
4e5f5c99aSGuenter Roeck  * Copyright (C) 2010 Ericsson AB.
5e5f5c99aSGuenter Roeck  *
6e5f5c99aSGuenter Roeck  * Derived from:
7e5f5c99aSGuenter Roeck  *
8e5f5c99aSGuenter Roeck  *  Driver for Linear Technology LTC4245 I2C Multiple Supply Hot Swap Controller
9e5f5c99aSGuenter Roeck  *  Copyright (C) 2008 Ira W. Snyder <iws@ovro.caltech.edu>
10e5f5c99aSGuenter Roeck  *
11e5f5c99aSGuenter Roeck  * Datasheet: http://cds.linear.com/docs/Datasheet/42612fb.pdf
12e5f5c99aSGuenter Roeck  *
13e5f5c99aSGuenter Roeck  * This program is free software; you can redistribute it and/or modify
14e5f5c99aSGuenter Roeck  * it under the terms of the GNU General Public License as published by
15e5f5c99aSGuenter Roeck  * the Free Software Foundation; either version 2 of the License, or
16e5f5c99aSGuenter Roeck  * (at your option) any later version.
17e5f5c99aSGuenter Roeck  *
18e5f5c99aSGuenter Roeck  * This program is distributed in the hope that it will be useful,
19e5f5c99aSGuenter Roeck  * but WITHOUT ANY WARRANTY; without even the implied warranty of
20e5f5c99aSGuenter Roeck  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
21e5f5c99aSGuenter Roeck  * GNU General Public License for more details.
22e5f5c99aSGuenter Roeck  *
23e5f5c99aSGuenter Roeck  * You should have received a copy of the GNU General Public License
24e5f5c99aSGuenter Roeck  * along with this program; if not, write to the Free Software
25e5f5c99aSGuenter Roeck  * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
26e5f5c99aSGuenter Roeck  */
27e5f5c99aSGuenter Roeck 
28e5f5c99aSGuenter Roeck #include <linux/kernel.h>
29e5f5c99aSGuenter Roeck #include <linux/module.h>
30e5f5c99aSGuenter Roeck #include <linux/init.h>
31e5f5c99aSGuenter Roeck #include <linux/err.h>
32e5f5c99aSGuenter Roeck #include <linux/slab.h>
33e5f5c99aSGuenter Roeck #include <linux/i2c.h>
34e5f5c99aSGuenter Roeck #include <linux/hwmon.h>
35e5f5c99aSGuenter Roeck #include <linux/hwmon-sysfs.h>
36dcd8f392SJean Delvare #include <linux/jiffies.h>
37e5f5c99aSGuenter Roeck 
38e5f5c99aSGuenter Roeck /* chip registers */
39e5f5c99aSGuenter Roeck #define LTC4261_STATUS	0x00	/* readonly */
40e5f5c99aSGuenter Roeck #define LTC4261_FAULT	0x01
41e5f5c99aSGuenter Roeck #define LTC4261_ALERT	0x02
42e5f5c99aSGuenter Roeck #define LTC4261_CONTROL	0x03
43e5f5c99aSGuenter Roeck #define LTC4261_SENSE_H	0x04
44e5f5c99aSGuenter Roeck #define LTC4261_SENSE_L	0x05
45e5f5c99aSGuenter Roeck #define LTC4261_ADIN2_H	0x06
46e5f5c99aSGuenter Roeck #define LTC4261_ADIN2_L	0x07
47e5f5c99aSGuenter Roeck #define LTC4261_ADIN_H	0x08
48e5f5c99aSGuenter Roeck #define LTC4261_ADIN_L	0x09
49e5f5c99aSGuenter Roeck 
50e5f5c99aSGuenter Roeck /*
51e5f5c99aSGuenter Roeck  * Fault register bits
52e5f5c99aSGuenter Roeck  */
53e5f5c99aSGuenter Roeck #define FAULT_OV	(1<<0)
54e5f5c99aSGuenter Roeck #define FAULT_UV	(1<<1)
55e5f5c99aSGuenter Roeck #define FAULT_OC	(1<<2)
56e5f5c99aSGuenter Roeck 
57e5f5c99aSGuenter Roeck struct ltc4261_data {
5838f150feSGuenter Roeck 	struct i2c_client *client;
59e5f5c99aSGuenter Roeck 
60e5f5c99aSGuenter Roeck 	struct mutex update_lock;
61e5f5c99aSGuenter Roeck 	bool valid;
62e5f5c99aSGuenter Roeck 	unsigned long last_updated;	/* in jiffies */
63e5f5c99aSGuenter Roeck 
64e5f5c99aSGuenter Roeck 	/* Registers */
65e5f5c99aSGuenter Roeck 	u8 regs[10];
66e5f5c99aSGuenter Roeck };
67e5f5c99aSGuenter Roeck 
68e5f5c99aSGuenter Roeck static struct ltc4261_data *ltc4261_update_device(struct device *dev)
69e5f5c99aSGuenter Roeck {
7038f150feSGuenter Roeck 	struct ltc4261_data *data = dev_get_drvdata(dev);
7138f150feSGuenter Roeck 	struct i2c_client *client = data->client;
72e5f5c99aSGuenter Roeck 	struct ltc4261_data *ret = data;
73e5f5c99aSGuenter Roeck 
74e5f5c99aSGuenter Roeck 	mutex_lock(&data->update_lock);
75e5f5c99aSGuenter Roeck 
76e5f5c99aSGuenter Roeck 	if (time_after(jiffies, data->last_updated + HZ / 4) || !data->valid) {
77e5f5c99aSGuenter Roeck 		int i;
78e5f5c99aSGuenter Roeck 
79e5f5c99aSGuenter Roeck 		/* Read registers -- 0x00 to 0x09 */
80e5f5c99aSGuenter Roeck 		for (i = 0; i < ARRAY_SIZE(data->regs); i++) {
81e5f5c99aSGuenter Roeck 			int val;
82e5f5c99aSGuenter Roeck 
83e5f5c99aSGuenter Roeck 			val = i2c_smbus_read_byte_data(client, i);
84e5f5c99aSGuenter Roeck 			if (unlikely(val < 0)) {
85e5f5c99aSGuenter Roeck 				dev_dbg(dev,
8669f8b741SGuenter Roeck 					"Failed to read ADC value: error %d\n",
87e5f5c99aSGuenter Roeck 					val);
88e5f5c99aSGuenter Roeck 				ret = ERR_PTR(val);
89aac9fe9bSFrans Meulenbroeks 				data->valid = 0;
90e5f5c99aSGuenter Roeck 				goto abort;
91e5f5c99aSGuenter Roeck 			}
92e5f5c99aSGuenter Roeck 			data->regs[i] = val;
93e5f5c99aSGuenter Roeck 		}
94e5f5c99aSGuenter Roeck 		data->last_updated = jiffies;
95e5f5c99aSGuenter Roeck 		data->valid = 1;
96e5f5c99aSGuenter Roeck 	}
97e5f5c99aSGuenter Roeck abort:
98e5f5c99aSGuenter Roeck 	mutex_unlock(&data->update_lock);
99e5f5c99aSGuenter Roeck 	return ret;
100e5f5c99aSGuenter Roeck }
101e5f5c99aSGuenter Roeck 
102e5f5c99aSGuenter Roeck /* Return the voltage from the given register in mV or mA */
103e5f5c99aSGuenter Roeck static int ltc4261_get_value(struct ltc4261_data *data, u8 reg)
104e5f5c99aSGuenter Roeck {
105e5f5c99aSGuenter Roeck 	u32 val;
106e5f5c99aSGuenter Roeck 
107e5f5c99aSGuenter Roeck 	val = (data->regs[reg] << 2) + (data->regs[reg + 1] >> 6);
108e5f5c99aSGuenter Roeck 
109e5f5c99aSGuenter Roeck 	switch (reg) {
110e5f5c99aSGuenter Roeck 	case LTC4261_ADIN_H:
111e5f5c99aSGuenter Roeck 	case LTC4261_ADIN2_H:
112e5f5c99aSGuenter Roeck 		/* 2.5mV resolution. Convert to mV. */
113e5f5c99aSGuenter Roeck 		val = val * 25 / 10;
114e5f5c99aSGuenter Roeck 		break;
115e5f5c99aSGuenter Roeck 	case LTC4261_SENSE_H:
116e5f5c99aSGuenter Roeck 		/*
117e5f5c99aSGuenter Roeck 		 * 62.5uV resolution. Convert to current as measured with
118e5f5c99aSGuenter Roeck 		 * an 1 mOhm sense resistor, in mA. If a different sense
119e5f5c99aSGuenter Roeck 		 * resistor is installed, calculate the actual current by
120e5f5c99aSGuenter Roeck 		 * dividing the reported current by the sense resistor value
121e5f5c99aSGuenter Roeck 		 * in mOhm.
122e5f5c99aSGuenter Roeck 		 */
123e5f5c99aSGuenter Roeck 		val = val * 625 / 10;
124e5f5c99aSGuenter Roeck 		break;
125e5f5c99aSGuenter Roeck 	default:
126e5f5c99aSGuenter Roeck 		/* If we get here, the developer messed up */
127e5f5c99aSGuenter Roeck 		WARN_ON_ONCE(1);
128e5f5c99aSGuenter Roeck 		val = 0;
129e5f5c99aSGuenter Roeck 		break;
130e5f5c99aSGuenter Roeck 	}
131e5f5c99aSGuenter Roeck 
132e5f5c99aSGuenter Roeck 	return val;
133e5f5c99aSGuenter Roeck }
134e5f5c99aSGuenter Roeck 
135decb23dcSGuenter Roeck static ssize_t ltc4261_value_show(struct device *dev,
136e5f5c99aSGuenter Roeck 				  struct device_attribute *da, char *buf)
137e5f5c99aSGuenter Roeck {
138e5f5c99aSGuenter Roeck 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
139e5f5c99aSGuenter Roeck 	struct ltc4261_data *data = ltc4261_update_device(dev);
140e5f5c99aSGuenter Roeck 	int value;
141e5f5c99aSGuenter Roeck 
142e5f5c99aSGuenter Roeck 	if (IS_ERR(data))
143e5f5c99aSGuenter Roeck 		return PTR_ERR(data);
144e5f5c99aSGuenter Roeck 
145e5f5c99aSGuenter Roeck 	value = ltc4261_get_value(data, attr->index);
146e5f5c99aSGuenter Roeck 	return snprintf(buf, PAGE_SIZE, "%d\n", value);
147e5f5c99aSGuenter Roeck }
148e5f5c99aSGuenter Roeck 
149decb23dcSGuenter Roeck static ssize_t ltc4261_bool_show(struct device *dev,
150e5f5c99aSGuenter Roeck 				 struct device_attribute *da, char *buf)
151e5f5c99aSGuenter Roeck {
152e5f5c99aSGuenter Roeck 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
153e5f5c99aSGuenter Roeck 	struct ltc4261_data *data = ltc4261_update_device(dev);
154e5f5c99aSGuenter Roeck 	u8 fault;
155e5f5c99aSGuenter Roeck 
156e5f5c99aSGuenter Roeck 	if (IS_ERR(data))
157e5f5c99aSGuenter Roeck 		return PTR_ERR(data);
158e5f5c99aSGuenter Roeck 
159e5f5c99aSGuenter Roeck 	fault = data->regs[LTC4261_FAULT] & attr->index;
160e5f5c99aSGuenter Roeck 	if (fault)		/* Clear reported faults in chip register */
16138f150feSGuenter Roeck 		i2c_smbus_write_byte_data(data->client, LTC4261_FAULT, ~fault);
162e5f5c99aSGuenter Roeck 
163e5f5c99aSGuenter Roeck 	return snprintf(buf, PAGE_SIZE, "%d\n", fault ? 1 : 0);
164e5f5c99aSGuenter Roeck }
165e5f5c99aSGuenter Roeck 
166e5f5c99aSGuenter Roeck /*
167e5f5c99aSGuenter Roeck  * Input voltages.
168e5f5c99aSGuenter Roeck  */
169decb23dcSGuenter Roeck static SENSOR_DEVICE_ATTR_RO(in1_input, ltc4261_value, LTC4261_ADIN_H);
170decb23dcSGuenter Roeck static SENSOR_DEVICE_ATTR_RO(in2_input, ltc4261_value, LTC4261_ADIN2_H);
171e5f5c99aSGuenter Roeck 
172e5f5c99aSGuenter Roeck /*
173e5f5c99aSGuenter Roeck  * Voltage alarms. The chip has only one set of voltage alarm status bits,
174e5f5c99aSGuenter Roeck  * triggered by input voltage alarms. In many designs, those alarms are
175e5f5c99aSGuenter Roeck  * associated with the ADIN2 sensor, due to the proximity of the ADIN2 pin
176e5f5c99aSGuenter Roeck  * to the OV pin. ADIN2 is, however, not available on all chip variants.
177e5f5c99aSGuenter Roeck  * To ensure that the alarm condition is reported to the user, report it
178e5f5c99aSGuenter Roeck  * with both voltage sensors.
179e5f5c99aSGuenter Roeck  */
180decb23dcSGuenter Roeck static SENSOR_DEVICE_ATTR_RO(in1_min_alarm, ltc4261_bool, FAULT_UV);
181decb23dcSGuenter Roeck static SENSOR_DEVICE_ATTR_RO(in1_max_alarm, ltc4261_bool, FAULT_OV);
182decb23dcSGuenter Roeck static SENSOR_DEVICE_ATTR_RO(in2_min_alarm, ltc4261_bool, FAULT_UV);
183decb23dcSGuenter Roeck static SENSOR_DEVICE_ATTR_RO(in2_max_alarm, ltc4261_bool, FAULT_OV);
184e5f5c99aSGuenter Roeck 
185e5f5c99aSGuenter Roeck /* Currents (via sense resistor) */
186decb23dcSGuenter Roeck static SENSOR_DEVICE_ATTR_RO(curr1_input, ltc4261_value, LTC4261_SENSE_H);
187e5f5c99aSGuenter Roeck 
188e5f5c99aSGuenter Roeck /* Overcurrent alarm */
189decb23dcSGuenter Roeck static SENSOR_DEVICE_ATTR_RO(curr1_max_alarm, ltc4261_bool, FAULT_OC);
190e5f5c99aSGuenter Roeck 
19138f150feSGuenter Roeck static struct attribute *ltc4261_attrs[] = {
192e5f5c99aSGuenter Roeck 	&sensor_dev_attr_in1_input.dev_attr.attr,
193e5f5c99aSGuenter Roeck 	&sensor_dev_attr_in1_min_alarm.dev_attr.attr,
194e5f5c99aSGuenter Roeck 	&sensor_dev_attr_in1_max_alarm.dev_attr.attr,
195e5f5c99aSGuenter Roeck 	&sensor_dev_attr_in2_input.dev_attr.attr,
196e5f5c99aSGuenter Roeck 	&sensor_dev_attr_in2_min_alarm.dev_attr.attr,
197e5f5c99aSGuenter Roeck 	&sensor_dev_attr_in2_max_alarm.dev_attr.attr,
198e5f5c99aSGuenter Roeck 
199e5f5c99aSGuenter Roeck 	&sensor_dev_attr_curr1_input.dev_attr.attr,
200e5f5c99aSGuenter Roeck 	&sensor_dev_attr_curr1_max_alarm.dev_attr.attr,
201e5f5c99aSGuenter Roeck 
202e5f5c99aSGuenter Roeck 	NULL,
203e5f5c99aSGuenter Roeck };
20438f150feSGuenter Roeck ATTRIBUTE_GROUPS(ltc4261);
205e5f5c99aSGuenter Roeck 
206e5f5c99aSGuenter Roeck static int ltc4261_probe(struct i2c_client *client,
207e5f5c99aSGuenter Roeck 			 const struct i2c_device_id *id)
208e5f5c99aSGuenter Roeck {
209e5f5c99aSGuenter Roeck 	struct i2c_adapter *adapter = client->adapter;
21038f150feSGuenter Roeck 	struct device *dev = &client->dev;
211e5f5c99aSGuenter Roeck 	struct ltc4261_data *data;
21238f150feSGuenter Roeck 	struct device *hwmon_dev;
213e5f5c99aSGuenter Roeck 
214e5f5c99aSGuenter Roeck 	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
215e5f5c99aSGuenter Roeck 		return -ENODEV;
216e5f5c99aSGuenter Roeck 
217e5f5c99aSGuenter Roeck 	if (i2c_smbus_read_byte_data(client, LTC4261_STATUS) < 0) {
21838f150feSGuenter Roeck 		dev_err(dev, "Failed to read status register\n");
219e5f5c99aSGuenter Roeck 		return -ENODEV;
220e5f5c99aSGuenter Roeck 	}
221e5f5c99aSGuenter Roeck 
22238f150feSGuenter Roeck 	data = devm_kzalloc(dev, sizeof(*data), GFP_KERNEL);
22336839287SGuenter Roeck 	if (!data)
22436839287SGuenter Roeck 		return -ENOMEM;
225e5f5c99aSGuenter Roeck 
22638f150feSGuenter Roeck 	data->client = client;
227e5f5c99aSGuenter Roeck 	mutex_init(&data->update_lock);
228e5f5c99aSGuenter Roeck 
229e5f5c99aSGuenter Roeck 	/* Clear faults */
230e5f5c99aSGuenter Roeck 	i2c_smbus_write_byte_data(client, LTC4261_FAULT, 0x00);
231e5f5c99aSGuenter Roeck 
23238f150feSGuenter Roeck 	hwmon_dev = devm_hwmon_device_register_with_groups(dev, client->name,
23338f150feSGuenter Roeck 							   data,
23438f150feSGuenter Roeck 							   ltc4261_groups);
2352a253c47SFengguang Wu 	return PTR_ERR_OR_ZERO(hwmon_dev);
236e5f5c99aSGuenter Roeck }
237e5f5c99aSGuenter Roeck 
238e5f5c99aSGuenter Roeck static const struct i2c_device_id ltc4261_id[] = {
239e5f5c99aSGuenter Roeck 	{"ltc4261", 0},
240e5f5c99aSGuenter Roeck 	{}
241e5f5c99aSGuenter Roeck };
242e5f5c99aSGuenter Roeck 
243e5f5c99aSGuenter Roeck MODULE_DEVICE_TABLE(i2c, ltc4261_id);
244e5f5c99aSGuenter Roeck 
245e5f5c99aSGuenter Roeck /* This is the driver that will be inserted */
246e5f5c99aSGuenter Roeck static struct i2c_driver ltc4261_driver = {
247e5f5c99aSGuenter Roeck 	.driver = {
248e5f5c99aSGuenter Roeck 		   .name = "ltc4261",
249e5f5c99aSGuenter Roeck 		   },
250e5f5c99aSGuenter Roeck 	.probe = ltc4261_probe,
251e5f5c99aSGuenter Roeck 	.id_table = ltc4261_id,
252e5f5c99aSGuenter Roeck };
253e5f5c99aSGuenter Roeck 
254f0967eeaSAxel Lin module_i2c_driver(ltc4261_driver);
255e5f5c99aSGuenter Roeck 
256bb9a80e5SGuenter Roeck MODULE_AUTHOR("Guenter Roeck <linux@roeck-us.net>");
257e5f5c99aSGuenter Roeck MODULE_DESCRIPTION("LTC4261 driver");
258e5f5c99aSGuenter Roeck MODULE_LICENSE("GPL");
259