xref: /openbmc/linux/drivers/net/phy/aquantia_hwmon.c (revision 234d79a5)
1fb470f70SHeiner Kallweit // SPDX-License-Identifier: GPL-2.0
2fb470f70SHeiner Kallweit /* HWMON driver for Aquantia PHY
3fb470f70SHeiner Kallweit  *
4fb470f70SHeiner Kallweit  * Author: Nikita Yushchenko <nikita.yoush@cogentembedded.com>
5fb470f70SHeiner Kallweit  * Author: Andrew Lunn <andrew@lunn.ch>
6fb470f70SHeiner Kallweit  * Author: Heiner Kallweit <hkallweit1@gmail.com>
7fb470f70SHeiner Kallweit  */
8fb470f70SHeiner Kallweit 
9fb470f70SHeiner Kallweit #include <linux/phy.h>
10fb470f70SHeiner Kallweit #include <linux/device.h>
11fb470f70SHeiner Kallweit #include <linux/ctype.h>
12fb470f70SHeiner Kallweit #include <linux/hwmon.h>
13fb470f70SHeiner Kallweit 
14fb470f70SHeiner Kallweit #include "aquantia.h"
15fb470f70SHeiner Kallweit 
16fb470f70SHeiner Kallweit /* Vendor specific 1, MDIO_MMD_VEND2 */
17fb470f70SHeiner Kallweit #define VEND1_THERMAL_PROV_HIGH_TEMP_FAIL	0xc421
18fb470f70SHeiner Kallweit #define VEND1_THERMAL_PROV_LOW_TEMP_FAIL	0xc422
19fb470f70SHeiner Kallweit #define VEND1_THERMAL_PROV_HIGH_TEMP_WARN	0xc423
20fb470f70SHeiner Kallweit #define VEND1_THERMAL_PROV_LOW_TEMP_WARN	0xc424
21fb470f70SHeiner Kallweit #define VEND1_THERMAL_STAT1			0xc820
22fb470f70SHeiner Kallweit #define VEND1_THERMAL_STAT2			0xc821
23fb470f70SHeiner Kallweit #define VEND1_THERMAL_STAT2_VALID		BIT(0)
24fb470f70SHeiner Kallweit #define VEND1_GENERAL_STAT1			0xc830
25fb470f70SHeiner Kallweit #define VEND1_GENERAL_STAT1_HIGH_TEMP_FAIL	BIT(14)
26fb470f70SHeiner Kallweit #define VEND1_GENERAL_STAT1_LOW_TEMP_FAIL	BIT(13)
27fb470f70SHeiner Kallweit #define VEND1_GENERAL_STAT1_HIGH_TEMP_WARN	BIT(12)
28fb470f70SHeiner Kallweit #define VEND1_GENERAL_STAT1_LOW_TEMP_WARN	BIT(11)
29fb470f70SHeiner Kallweit 
30fb470f70SHeiner Kallweit #if IS_REACHABLE(CONFIG_HWMON)
31fb470f70SHeiner Kallweit 
aqr_hwmon_is_visible(const void * data,enum hwmon_sensor_types type,u32 attr,int channel)32fb470f70SHeiner Kallweit static umode_t aqr_hwmon_is_visible(const void *data,
33fb470f70SHeiner Kallweit 				    enum hwmon_sensor_types type,
34fb470f70SHeiner Kallweit 				    u32 attr, int channel)
35fb470f70SHeiner Kallweit {
36fb470f70SHeiner Kallweit 	if (type != hwmon_temp)
37fb470f70SHeiner Kallweit 		return 0;
38fb470f70SHeiner Kallweit 
39fb470f70SHeiner Kallweit 	switch (attr) {
40fb470f70SHeiner Kallweit 	case hwmon_temp_input:
41fb470f70SHeiner Kallweit 	case hwmon_temp_min_alarm:
42fb470f70SHeiner Kallweit 	case hwmon_temp_max_alarm:
43fb470f70SHeiner Kallweit 	case hwmon_temp_lcrit_alarm:
44fb470f70SHeiner Kallweit 	case hwmon_temp_crit_alarm:
45fb470f70SHeiner Kallweit 		return 0444;
46fb470f70SHeiner Kallweit 	case hwmon_temp_min:
47fb470f70SHeiner Kallweit 	case hwmon_temp_max:
48fb470f70SHeiner Kallweit 	case hwmon_temp_lcrit:
49fb470f70SHeiner Kallweit 	case hwmon_temp_crit:
50fb470f70SHeiner Kallweit 		return 0644;
51fb470f70SHeiner Kallweit 	default:
52fb470f70SHeiner Kallweit 		return 0;
53fb470f70SHeiner Kallweit 	}
54fb470f70SHeiner Kallweit }
55fb470f70SHeiner Kallweit 
aqr_hwmon_get(struct phy_device * phydev,int reg,long * value)56fb470f70SHeiner Kallweit static int aqr_hwmon_get(struct phy_device *phydev, int reg, long *value)
57fb470f70SHeiner Kallweit {
58fb470f70SHeiner Kallweit 	int temp = phy_read_mmd(phydev, MDIO_MMD_VEND1, reg);
59fb470f70SHeiner Kallweit 
60fb470f70SHeiner Kallweit 	if (temp < 0)
61fb470f70SHeiner Kallweit 		return temp;
62fb470f70SHeiner Kallweit 
63fb470f70SHeiner Kallweit 	/* 16 bit value is 2's complement with LSB = 1/256th degree Celsius */
64fb470f70SHeiner Kallweit 	*value = (s16)temp * 1000 / 256;
65fb470f70SHeiner Kallweit 
66fb470f70SHeiner Kallweit 	return 0;
67fb470f70SHeiner Kallweit }
68fb470f70SHeiner Kallweit 
aqr_hwmon_set(struct phy_device * phydev,int reg,long value)69fb470f70SHeiner Kallweit static int aqr_hwmon_set(struct phy_device *phydev, int reg, long value)
70fb470f70SHeiner Kallweit {
71fb470f70SHeiner Kallweit 	int temp;
72fb470f70SHeiner Kallweit 
73fb470f70SHeiner Kallweit 	if (value >= 128000 || value < -128000)
74fb470f70SHeiner Kallweit 		return -ERANGE;
75fb470f70SHeiner Kallweit 
76fb470f70SHeiner Kallweit 	temp = value * 256 / 1000;
77fb470f70SHeiner Kallweit 
78fb470f70SHeiner Kallweit 	/* temp is in s16 range and we're interested in lower 16 bits only */
79fb470f70SHeiner Kallweit 	return phy_write_mmd(phydev, MDIO_MMD_VEND1, reg, (u16)temp);
80fb470f70SHeiner Kallweit }
81fb470f70SHeiner Kallweit 
aqr_hwmon_test_bit(struct phy_device * phydev,int reg,int bit)82fb470f70SHeiner Kallweit static int aqr_hwmon_test_bit(struct phy_device *phydev, int reg, int bit)
83fb470f70SHeiner Kallweit {
84fb470f70SHeiner Kallweit 	int val = phy_read_mmd(phydev, MDIO_MMD_VEND1, reg);
85fb470f70SHeiner Kallweit 
86fb470f70SHeiner Kallweit 	if (val < 0)
87fb470f70SHeiner Kallweit 		return val;
88fb470f70SHeiner Kallweit 
89fb470f70SHeiner Kallweit 	return !!(val & bit);
90fb470f70SHeiner Kallweit }
91fb470f70SHeiner Kallweit 
aqr_hwmon_status1(struct phy_device * phydev,int bit,long * value)92fb470f70SHeiner Kallweit static int aqr_hwmon_status1(struct phy_device *phydev, int bit, long *value)
93fb470f70SHeiner Kallweit {
94fb470f70SHeiner Kallweit 	int val = aqr_hwmon_test_bit(phydev, VEND1_GENERAL_STAT1, bit);
95fb470f70SHeiner Kallweit 
96fb470f70SHeiner Kallweit 	if (val < 0)
97fb470f70SHeiner Kallweit 		return val;
98fb470f70SHeiner Kallweit 
99fb470f70SHeiner Kallweit 	*value = val;
100fb470f70SHeiner Kallweit 
101fb470f70SHeiner Kallweit 	return 0;
102fb470f70SHeiner Kallweit }
103fb470f70SHeiner Kallweit 
aqr_hwmon_read(struct device * dev,enum hwmon_sensor_types type,u32 attr,int channel,long * value)104fb470f70SHeiner Kallweit static int aqr_hwmon_read(struct device *dev, enum hwmon_sensor_types type,
105fb470f70SHeiner Kallweit 			  u32 attr, int channel, long *value)
106fb470f70SHeiner Kallweit {
107fb470f70SHeiner Kallweit 	struct phy_device *phydev = dev_get_drvdata(dev);
108fb470f70SHeiner Kallweit 	int reg;
109fb470f70SHeiner Kallweit 
110fb470f70SHeiner Kallweit 	if (type != hwmon_temp)
111fb470f70SHeiner Kallweit 		return -EOPNOTSUPP;
112fb470f70SHeiner Kallweit 
113fb470f70SHeiner Kallweit 	switch (attr) {
114fb470f70SHeiner Kallweit 	case hwmon_temp_input:
115fb470f70SHeiner Kallweit 		reg = aqr_hwmon_test_bit(phydev, VEND1_THERMAL_STAT2,
116fb470f70SHeiner Kallweit 					 VEND1_THERMAL_STAT2_VALID);
117fb470f70SHeiner Kallweit 		if (reg < 0)
118fb470f70SHeiner Kallweit 			return reg;
119fb470f70SHeiner Kallweit 		if (!reg)
120fb470f70SHeiner Kallweit 			return -EBUSY;
121fb470f70SHeiner Kallweit 
122fb470f70SHeiner Kallweit 		return aqr_hwmon_get(phydev, VEND1_THERMAL_STAT1, value);
123fb470f70SHeiner Kallweit 
124fb470f70SHeiner Kallweit 	case hwmon_temp_lcrit:
125fb470f70SHeiner Kallweit 		return aqr_hwmon_get(phydev, VEND1_THERMAL_PROV_LOW_TEMP_FAIL,
126fb470f70SHeiner Kallweit 				     value);
127fb470f70SHeiner Kallweit 	case hwmon_temp_min:
128fb470f70SHeiner Kallweit 		return aqr_hwmon_get(phydev, VEND1_THERMAL_PROV_LOW_TEMP_WARN,
129fb470f70SHeiner Kallweit 				     value);
130fb470f70SHeiner Kallweit 	case hwmon_temp_max:
131fb470f70SHeiner Kallweit 		return aqr_hwmon_get(phydev, VEND1_THERMAL_PROV_HIGH_TEMP_WARN,
132fb470f70SHeiner Kallweit 				     value);
133fb470f70SHeiner Kallweit 	case hwmon_temp_crit:
134fb470f70SHeiner Kallweit 		return aqr_hwmon_get(phydev, VEND1_THERMAL_PROV_HIGH_TEMP_FAIL,
135fb470f70SHeiner Kallweit 				     value);
136fb470f70SHeiner Kallweit 	case hwmon_temp_lcrit_alarm:
137fb470f70SHeiner Kallweit 		return aqr_hwmon_status1(phydev,
138fb470f70SHeiner Kallweit 					 VEND1_GENERAL_STAT1_LOW_TEMP_FAIL,
139fb470f70SHeiner Kallweit 					 value);
140fb470f70SHeiner Kallweit 	case hwmon_temp_min_alarm:
141fb470f70SHeiner Kallweit 		return aqr_hwmon_status1(phydev,
142fb470f70SHeiner Kallweit 					 VEND1_GENERAL_STAT1_LOW_TEMP_WARN,
143fb470f70SHeiner Kallweit 					 value);
144fb470f70SHeiner Kallweit 	case hwmon_temp_max_alarm:
145fb470f70SHeiner Kallweit 		return aqr_hwmon_status1(phydev,
146fb470f70SHeiner Kallweit 					 VEND1_GENERAL_STAT1_HIGH_TEMP_WARN,
147fb470f70SHeiner Kallweit 					 value);
148fb470f70SHeiner Kallweit 	case hwmon_temp_crit_alarm:
149fb470f70SHeiner Kallweit 		return aqr_hwmon_status1(phydev,
150fb470f70SHeiner Kallweit 					 VEND1_GENERAL_STAT1_HIGH_TEMP_FAIL,
151fb470f70SHeiner Kallweit 					 value);
152fb470f70SHeiner Kallweit 	default:
153fb470f70SHeiner Kallweit 		return -EOPNOTSUPP;
154fb470f70SHeiner Kallweit 	}
155fb470f70SHeiner Kallweit }
156fb470f70SHeiner Kallweit 
aqr_hwmon_write(struct device * dev,enum hwmon_sensor_types type,u32 attr,int channel,long value)157fb470f70SHeiner Kallweit static int aqr_hwmon_write(struct device *dev, enum hwmon_sensor_types type,
158fb470f70SHeiner Kallweit 			   u32 attr, int channel, long value)
159fb470f70SHeiner Kallweit {
160fb470f70SHeiner Kallweit 	struct phy_device *phydev = dev_get_drvdata(dev);
161fb470f70SHeiner Kallweit 
162fb470f70SHeiner Kallweit 	if (type != hwmon_temp)
163fb470f70SHeiner Kallweit 		return -EOPNOTSUPP;
164fb470f70SHeiner Kallweit 
165fb470f70SHeiner Kallweit 	switch (attr) {
166fb470f70SHeiner Kallweit 	case hwmon_temp_lcrit:
167fb470f70SHeiner Kallweit 		return aqr_hwmon_set(phydev, VEND1_THERMAL_PROV_LOW_TEMP_FAIL,
168fb470f70SHeiner Kallweit 				     value);
169fb470f70SHeiner Kallweit 	case hwmon_temp_min:
170fb470f70SHeiner Kallweit 		return aqr_hwmon_set(phydev, VEND1_THERMAL_PROV_LOW_TEMP_WARN,
171fb470f70SHeiner Kallweit 				     value);
172fb470f70SHeiner Kallweit 	case hwmon_temp_max:
173fb470f70SHeiner Kallweit 		return aqr_hwmon_set(phydev, VEND1_THERMAL_PROV_HIGH_TEMP_WARN,
174fb470f70SHeiner Kallweit 				     value);
175fb470f70SHeiner Kallweit 	case hwmon_temp_crit:
176fb470f70SHeiner Kallweit 		return aqr_hwmon_set(phydev, VEND1_THERMAL_PROV_HIGH_TEMP_FAIL,
177fb470f70SHeiner Kallweit 				     value);
178fb470f70SHeiner Kallweit 	default:
179fb470f70SHeiner Kallweit 		return -EOPNOTSUPP;
180fb470f70SHeiner Kallweit 	}
181fb470f70SHeiner Kallweit }
182fb470f70SHeiner Kallweit 
183fb470f70SHeiner Kallweit static const struct hwmon_ops aqr_hwmon_ops = {
184fb470f70SHeiner Kallweit 	.is_visible = aqr_hwmon_is_visible,
185fb470f70SHeiner Kallweit 	.read = aqr_hwmon_read,
186fb470f70SHeiner Kallweit 	.write = aqr_hwmon_write,
187fb470f70SHeiner Kallweit };
188fb470f70SHeiner Kallweit 
189fb470f70SHeiner Kallweit static u32 aqr_hwmon_chip_config[] = {
190fb470f70SHeiner Kallweit 	HWMON_C_REGISTER_TZ,
191fb470f70SHeiner Kallweit 	0,
192fb470f70SHeiner Kallweit };
193fb470f70SHeiner Kallweit 
194fb470f70SHeiner Kallweit static const struct hwmon_channel_info aqr_hwmon_chip = {
195fb470f70SHeiner Kallweit 	.type = hwmon_chip,
196fb470f70SHeiner Kallweit 	.config = aqr_hwmon_chip_config,
197fb470f70SHeiner Kallweit };
198fb470f70SHeiner Kallweit 
199fb470f70SHeiner Kallweit static u32 aqr_hwmon_temp_config[] = {
200fb470f70SHeiner Kallweit 	HWMON_T_INPUT |
201fb470f70SHeiner Kallweit 	HWMON_T_MAX | HWMON_T_MIN |
202fb470f70SHeiner Kallweit 	HWMON_T_MAX_ALARM | HWMON_T_MIN_ALARM |
203fb470f70SHeiner Kallweit 	HWMON_T_CRIT | HWMON_T_LCRIT |
204fb470f70SHeiner Kallweit 	HWMON_T_CRIT_ALARM | HWMON_T_LCRIT_ALARM,
205fb470f70SHeiner Kallweit 	0,
206fb470f70SHeiner Kallweit };
207fb470f70SHeiner Kallweit 
208fb470f70SHeiner Kallweit static const struct hwmon_channel_info aqr_hwmon_temp = {
209fb470f70SHeiner Kallweit 	.type = hwmon_temp,
210fb470f70SHeiner Kallweit 	.config = aqr_hwmon_temp_config,
211fb470f70SHeiner Kallweit };
212fb470f70SHeiner Kallweit 
213*234d79a5SKrzysztof Kozlowski static const struct hwmon_channel_info * const aqr_hwmon_info[] = {
214fb470f70SHeiner Kallweit 	&aqr_hwmon_chip,
215fb470f70SHeiner Kallweit 	&aqr_hwmon_temp,
216fb470f70SHeiner Kallweit 	NULL,
217fb470f70SHeiner Kallweit };
218fb470f70SHeiner Kallweit 
219fb470f70SHeiner Kallweit static const struct hwmon_chip_info aqr_hwmon_chip_info = {
220fb470f70SHeiner Kallweit 	.ops = &aqr_hwmon_ops,
221fb470f70SHeiner Kallweit 	.info = aqr_hwmon_info,
222fb470f70SHeiner Kallweit };
223fb470f70SHeiner Kallweit 
aqr_hwmon_probe(struct phy_device * phydev)224fb470f70SHeiner Kallweit int aqr_hwmon_probe(struct phy_device *phydev)
225fb470f70SHeiner Kallweit {
226fb470f70SHeiner Kallweit 	struct device *dev = &phydev->mdio.dev;
227fb470f70SHeiner Kallweit 	struct device *hwmon_dev;
228fb470f70SHeiner Kallweit 	char *hwmon_name;
229fb470f70SHeiner Kallweit 	int i, j;
230fb470f70SHeiner Kallweit 
231fb470f70SHeiner Kallweit 	hwmon_name = devm_kstrdup(dev, dev_name(dev), GFP_KERNEL);
232fb470f70SHeiner Kallweit 	if (!hwmon_name)
233fb470f70SHeiner Kallweit 		return -ENOMEM;
234fb470f70SHeiner Kallweit 
235fb470f70SHeiner Kallweit 	for (i = j = 0; hwmon_name[i]; i++) {
236fb470f70SHeiner Kallweit 		if (isalnum(hwmon_name[i])) {
237fb470f70SHeiner Kallweit 			if (i != j)
238fb470f70SHeiner Kallweit 				hwmon_name[j] = hwmon_name[i];
239fb470f70SHeiner Kallweit 			j++;
240fb470f70SHeiner Kallweit 		}
241fb470f70SHeiner Kallweit 	}
242fb470f70SHeiner Kallweit 	hwmon_name[j] = '\0';
243fb470f70SHeiner Kallweit 
244fb470f70SHeiner Kallweit 	hwmon_dev = devm_hwmon_device_register_with_info(dev, hwmon_name,
245fb470f70SHeiner Kallweit 					phydev, &aqr_hwmon_chip_info, NULL);
246fb470f70SHeiner Kallweit 
247fb470f70SHeiner Kallweit 	return PTR_ERR_OR_ZERO(hwmon_dev);
248fb470f70SHeiner Kallweit }
249fb470f70SHeiner Kallweit 
250fb470f70SHeiner Kallweit #endif
251