xref: /openbmc/linux/drivers/hwmon/smpro-hwmon.c (revision 1ac731c529cd4d6adbce134754b51ff7d822b145)
17bce8981SQuan Nguyen // SPDX-License-Identifier: GPL-2.0-only
27bce8981SQuan Nguyen /*
37bce8981SQuan Nguyen  * Ampere Computing SoC's SMPro Hardware Monitoring Driver
47bce8981SQuan Nguyen  *
57bce8981SQuan Nguyen  * Copyright (c) 2022, Ampere Computing LLC
67bce8981SQuan Nguyen  */
77bce8981SQuan Nguyen #include <linux/bitfield.h>
87bce8981SQuan Nguyen #include <linux/bitops.h>
97bce8981SQuan Nguyen #include <linux/hwmon.h>
107bce8981SQuan Nguyen #include <linux/hwmon-sysfs.h>
117bce8981SQuan Nguyen #include <linux/kernel.h>
127bce8981SQuan Nguyen #include <linux/mod_devicetable.h>
137bce8981SQuan Nguyen #include <linux/module.h>
147bce8981SQuan Nguyen #include <linux/platform_device.h>
157bce8981SQuan Nguyen #include <linux/property.h>
167bce8981SQuan Nguyen #include <linux/regmap.h>
177bce8981SQuan Nguyen 
187bce8981SQuan Nguyen /* Logical Power Sensor Registers */
197bce8981SQuan Nguyen #define SOC_TEMP		0x10
207bce8981SQuan Nguyen #define SOC_VRD_TEMP		0x11
217bce8981SQuan Nguyen #define DIMM_VRD_TEMP		0x12
227bce8981SQuan Nguyen #define CORE_VRD_TEMP		0x13
237bce8981SQuan Nguyen #define CH0_DIMM_TEMP		0x14
247bce8981SQuan Nguyen #define CH1_DIMM_TEMP		0x15
257bce8981SQuan Nguyen #define CH2_DIMM_TEMP		0x16
267bce8981SQuan Nguyen #define CH3_DIMM_TEMP		0x17
277bce8981SQuan Nguyen #define CH4_DIMM_TEMP		0x18
287bce8981SQuan Nguyen #define CH5_DIMM_TEMP		0x19
297bce8981SQuan Nguyen #define CH6_DIMM_TEMP		0x1A
307bce8981SQuan Nguyen #define CH7_DIMM_TEMP		0x1B
317bce8981SQuan Nguyen #define RCA_VRD_TEMP		0x1C
327bce8981SQuan Nguyen 
337bce8981SQuan Nguyen #define CORE_VRD_PWR		0x20
347bce8981SQuan Nguyen #define SOC_PWR			0x21
357bce8981SQuan Nguyen #define DIMM_VRD1_PWR		0x22
367bce8981SQuan Nguyen #define DIMM_VRD2_PWR		0x23
377bce8981SQuan Nguyen #define CORE_VRD_PWR_MW		0x26
387bce8981SQuan Nguyen #define SOC_PWR_MW		0x27
397bce8981SQuan Nguyen #define DIMM_VRD1_PWR_MW	0x28
407bce8981SQuan Nguyen #define DIMM_VRD2_PWR_MW	0x29
417bce8981SQuan Nguyen #define RCA_VRD_PWR		0x2A
427bce8981SQuan Nguyen #define RCA_VRD_PWR_MW		0x2B
437bce8981SQuan Nguyen 
447bce8981SQuan Nguyen #define MEM_HOT_THRESHOLD	0x32
457bce8981SQuan Nguyen #define SOC_VR_HOT_THRESHOLD	0x33
467bce8981SQuan Nguyen #define CORE_VRD_VOLT		0x34
477bce8981SQuan Nguyen #define SOC_VRD_VOLT		0x35
487bce8981SQuan Nguyen #define DIMM_VRD1_VOLT		0x36
497bce8981SQuan Nguyen #define DIMM_VRD2_VOLT		0x37
507bce8981SQuan Nguyen #define RCA_VRD_VOLT		0x38
517bce8981SQuan Nguyen 
527bce8981SQuan Nguyen #define CORE_VRD_CURR		0x39
537bce8981SQuan Nguyen #define SOC_VRD_CURR		0x3A
547bce8981SQuan Nguyen #define DIMM_VRD1_CURR		0x3B
557bce8981SQuan Nguyen #define DIMM_VRD2_CURR		0x3C
567bce8981SQuan Nguyen #define RCA_VRD_CURR		0x3D
577bce8981SQuan Nguyen 
587bce8981SQuan Nguyen struct smpro_hwmon {
597bce8981SQuan Nguyen 	struct regmap *regmap;
607bce8981SQuan Nguyen };
617bce8981SQuan Nguyen 
627bce8981SQuan Nguyen struct smpro_sensor {
637bce8981SQuan Nguyen 	const u8 reg;
647bce8981SQuan Nguyen 	const u8 reg_ext;
657bce8981SQuan Nguyen 	const char *label;
667bce8981SQuan Nguyen };
677bce8981SQuan Nguyen 
687bce8981SQuan Nguyen static const struct smpro_sensor temperature[] = {
697bce8981SQuan Nguyen 	{
707bce8981SQuan Nguyen 		.reg = SOC_TEMP,
717bce8981SQuan Nguyen 		.label = "temp1 SoC"
727bce8981SQuan Nguyen 	},
737bce8981SQuan Nguyen 	{
747bce8981SQuan Nguyen 		.reg = SOC_VRD_TEMP,
757bce8981SQuan Nguyen 		.reg_ext = SOC_VR_HOT_THRESHOLD,
767bce8981SQuan Nguyen 		.label = "temp2 SoC VRD"
777bce8981SQuan Nguyen 	},
787bce8981SQuan Nguyen 	{
797bce8981SQuan Nguyen 		.reg = DIMM_VRD_TEMP,
807bce8981SQuan Nguyen 		.label = "temp3 DIMM VRD"
817bce8981SQuan Nguyen 	},
827bce8981SQuan Nguyen 	{
837bce8981SQuan Nguyen 		.reg = CORE_VRD_TEMP,
847bce8981SQuan Nguyen 		.label = "temp4 CORE VRD"
857bce8981SQuan Nguyen 	},
867bce8981SQuan Nguyen 	{
877bce8981SQuan Nguyen 		.reg = CH0_DIMM_TEMP,
887bce8981SQuan Nguyen 		.reg_ext = MEM_HOT_THRESHOLD,
897bce8981SQuan Nguyen 		.label = "temp5 CH0 DIMM"
907bce8981SQuan Nguyen 	},
917bce8981SQuan Nguyen 	{
927bce8981SQuan Nguyen 		.reg = CH1_DIMM_TEMP,
937bce8981SQuan Nguyen 		.reg_ext = MEM_HOT_THRESHOLD,
947bce8981SQuan Nguyen 		.label = "temp6 CH1 DIMM"
957bce8981SQuan Nguyen 	},
967bce8981SQuan Nguyen 	{
977bce8981SQuan Nguyen 		.reg = CH2_DIMM_TEMP,
987bce8981SQuan Nguyen 		.reg_ext = MEM_HOT_THRESHOLD,
997bce8981SQuan Nguyen 		.label = "temp7 CH2 DIMM"
1007bce8981SQuan Nguyen 	},
1017bce8981SQuan Nguyen 	{
1027bce8981SQuan Nguyen 		.reg = CH3_DIMM_TEMP,
1037bce8981SQuan Nguyen 		.reg_ext = MEM_HOT_THRESHOLD,
1047bce8981SQuan Nguyen 		.label = "temp8 CH3 DIMM"
1057bce8981SQuan Nguyen 	},
1067bce8981SQuan Nguyen 	{
1077bce8981SQuan Nguyen 		.reg = CH4_DIMM_TEMP,
1087bce8981SQuan Nguyen 		.reg_ext = MEM_HOT_THRESHOLD,
1097bce8981SQuan Nguyen 		.label = "temp9 CH4 DIMM"
1107bce8981SQuan Nguyen 	},
1117bce8981SQuan Nguyen 	{
1127bce8981SQuan Nguyen 		.reg = CH5_DIMM_TEMP,
1137bce8981SQuan Nguyen 		.reg_ext = MEM_HOT_THRESHOLD,
1147bce8981SQuan Nguyen 		.label = "temp10 CH5 DIMM"
1157bce8981SQuan Nguyen 	},
1167bce8981SQuan Nguyen 	{
1177bce8981SQuan Nguyen 		.reg = CH6_DIMM_TEMP,
1187bce8981SQuan Nguyen 		.reg_ext = MEM_HOT_THRESHOLD,
1197bce8981SQuan Nguyen 		.label = "temp11 CH6 DIMM"
1207bce8981SQuan Nguyen 	},
1217bce8981SQuan Nguyen 	{
1227bce8981SQuan Nguyen 		.reg = CH7_DIMM_TEMP,
1237bce8981SQuan Nguyen 		.reg_ext = MEM_HOT_THRESHOLD,
1247bce8981SQuan Nguyen 		.label = "temp12 CH7 DIMM"
1257bce8981SQuan Nguyen 	},
1267bce8981SQuan Nguyen 	{
1277bce8981SQuan Nguyen 		.reg = RCA_VRD_TEMP,
1287bce8981SQuan Nguyen 		.label = "temp13 RCA VRD"
1297bce8981SQuan Nguyen 	},
1307bce8981SQuan Nguyen };
1317bce8981SQuan Nguyen 
1327bce8981SQuan Nguyen static const struct smpro_sensor voltage[] = {
1337bce8981SQuan Nguyen 	{
1347bce8981SQuan Nguyen 		.reg = CORE_VRD_VOLT,
1357bce8981SQuan Nguyen 		.label = "vout0 CORE VRD"
1367bce8981SQuan Nguyen 	},
1377bce8981SQuan Nguyen 	{
1387bce8981SQuan Nguyen 		.reg = SOC_VRD_VOLT,
1397bce8981SQuan Nguyen 		.label = "vout1 SoC VRD"
1407bce8981SQuan Nguyen 	},
1417bce8981SQuan Nguyen 	{
1427bce8981SQuan Nguyen 		.reg = DIMM_VRD1_VOLT,
1437bce8981SQuan Nguyen 		.label = "vout2 DIMM VRD1"
1447bce8981SQuan Nguyen 	},
1457bce8981SQuan Nguyen 	{
1467bce8981SQuan Nguyen 		.reg = DIMM_VRD2_VOLT,
1477bce8981SQuan Nguyen 		.label = "vout3 DIMM VRD2"
1487bce8981SQuan Nguyen 	},
1497bce8981SQuan Nguyen 	{
1507bce8981SQuan Nguyen 		.reg = RCA_VRD_VOLT,
1517bce8981SQuan Nguyen 		.label = "vout4 RCA VRD"
1527bce8981SQuan Nguyen 	},
1537bce8981SQuan Nguyen };
1547bce8981SQuan Nguyen 
1557bce8981SQuan Nguyen static const struct smpro_sensor curr_sensor[] = {
1567bce8981SQuan Nguyen 	{
1577bce8981SQuan Nguyen 		.reg = CORE_VRD_CURR,
1587bce8981SQuan Nguyen 		.label = "iout1 CORE VRD"
1597bce8981SQuan Nguyen 	},
1607bce8981SQuan Nguyen 	{
1617bce8981SQuan Nguyen 		.reg = SOC_VRD_CURR,
1627bce8981SQuan Nguyen 		.label = "iout2 SoC VRD"
1637bce8981SQuan Nguyen 	},
1647bce8981SQuan Nguyen 	{
1657bce8981SQuan Nguyen 		.reg = DIMM_VRD1_CURR,
1667bce8981SQuan Nguyen 		.label = "iout3 DIMM VRD1"
1677bce8981SQuan Nguyen 	},
1687bce8981SQuan Nguyen 	{
1697bce8981SQuan Nguyen 		.reg = DIMM_VRD2_CURR,
1707bce8981SQuan Nguyen 		.label = "iout4 DIMM VRD2"
1717bce8981SQuan Nguyen 	},
1727bce8981SQuan Nguyen 	{
1737bce8981SQuan Nguyen 		.reg = RCA_VRD_CURR,
1747bce8981SQuan Nguyen 		.label = "iout5 RCA VRD"
1757bce8981SQuan Nguyen 	},
1767bce8981SQuan Nguyen };
1777bce8981SQuan Nguyen 
1787bce8981SQuan Nguyen static const struct smpro_sensor power[] = {
1797bce8981SQuan Nguyen 	{
1807bce8981SQuan Nguyen 		.reg = CORE_VRD_PWR,
1817bce8981SQuan Nguyen 		.reg_ext = CORE_VRD_PWR_MW,
1827bce8981SQuan Nguyen 		.label = "power1 CORE VRD"
1837bce8981SQuan Nguyen 	},
1847bce8981SQuan Nguyen 	{
1857bce8981SQuan Nguyen 		.reg = SOC_PWR,
1867bce8981SQuan Nguyen 		.reg_ext = SOC_PWR_MW,
1877bce8981SQuan Nguyen 		.label = "power2 SoC"
1887bce8981SQuan Nguyen 	},
1897bce8981SQuan Nguyen 	{
1907bce8981SQuan Nguyen 		.reg = DIMM_VRD1_PWR,
1917bce8981SQuan Nguyen 		.reg_ext = DIMM_VRD1_PWR_MW,
1927bce8981SQuan Nguyen 		.label = "power3 DIMM VRD1"
1937bce8981SQuan Nguyen 	},
1947bce8981SQuan Nguyen 	{
1957bce8981SQuan Nguyen 		.reg = DIMM_VRD2_PWR,
1967bce8981SQuan Nguyen 		.reg_ext = DIMM_VRD2_PWR_MW,
1977bce8981SQuan Nguyen 		.label = "power4 DIMM VRD2"
1987bce8981SQuan Nguyen 	},
1997bce8981SQuan Nguyen 	{
2007bce8981SQuan Nguyen 		.reg = RCA_VRD_PWR,
2017bce8981SQuan Nguyen 		.reg_ext = RCA_VRD_PWR_MW,
2027bce8981SQuan Nguyen 		.label = "power5 RCA VRD"
2037bce8981SQuan Nguyen 	},
2047bce8981SQuan Nguyen };
2057bce8981SQuan Nguyen 
smpro_read_temp(struct device * dev,u32 attr,int channel,long * val)2067bce8981SQuan Nguyen static int smpro_read_temp(struct device *dev, u32 attr, int channel, long *val)
2077bce8981SQuan Nguyen {
2087bce8981SQuan Nguyen 	struct smpro_hwmon *hwmon = dev_get_drvdata(dev);
2097bce8981SQuan Nguyen 	unsigned int value;
2107bce8981SQuan Nguyen 	int ret;
2117bce8981SQuan Nguyen 
2127bce8981SQuan Nguyen 	switch (attr) {
2137bce8981SQuan Nguyen 	case hwmon_temp_input:
2147bce8981SQuan Nguyen 		ret = regmap_read(hwmon->regmap, temperature[channel].reg, &value);
2157bce8981SQuan Nguyen 		if (ret)
2167bce8981SQuan Nguyen 			return ret;
2177bce8981SQuan Nguyen 		break;
2187bce8981SQuan Nguyen 	case hwmon_temp_crit:
2197bce8981SQuan Nguyen 		ret = regmap_read(hwmon->regmap, temperature[channel].reg_ext, &value);
2207bce8981SQuan Nguyen 		if (ret)
2217bce8981SQuan Nguyen 			return ret;
2227bce8981SQuan Nguyen 		break;
2237bce8981SQuan Nguyen 	default:
2247bce8981SQuan Nguyen 		return -EOPNOTSUPP;
2257bce8981SQuan Nguyen 	}
2267bce8981SQuan Nguyen 
2277bce8981SQuan Nguyen 	*val = sign_extend32(value, 8) * 1000;
2287bce8981SQuan Nguyen 	return 0;
2297bce8981SQuan Nguyen }
2307bce8981SQuan Nguyen 
smpro_read_in(struct device * dev,u32 attr,int channel,long * val)2317bce8981SQuan Nguyen static int smpro_read_in(struct device *dev, u32 attr, int channel, long *val)
2327bce8981SQuan Nguyen {
2337bce8981SQuan Nguyen 	struct smpro_hwmon *hwmon = dev_get_drvdata(dev);
2347bce8981SQuan Nguyen 	unsigned int value;
2357bce8981SQuan Nguyen 	int ret;
2367bce8981SQuan Nguyen 
2377bce8981SQuan Nguyen 	switch (attr) {
2387bce8981SQuan Nguyen 	case hwmon_in_input:
2397bce8981SQuan Nguyen 		ret = regmap_read(hwmon->regmap, voltage[channel].reg, &value);
2407bce8981SQuan Nguyen 		if (ret < 0)
2417bce8981SQuan Nguyen 			return ret;
2427bce8981SQuan Nguyen 		/* 15-bit value in 1mV */
2437bce8981SQuan Nguyen 		*val = value & 0x7fff;
2447bce8981SQuan Nguyen 		return 0;
2457bce8981SQuan Nguyen 	default:
2467bce8981SQuan Nguyen 		return -EOPNOTSUPP;
2477bce8981SQuan Nguyen 	}
2487bce8981SQuan Nguyen }
2497bce8981SQuan Nguyen 
smpro_read_curr(struct device * dev,u32 attr,int channel,long * val)2507bce8981SQuan Nguyen static int smpro_read_curr(struct device *dev, u32 attr, int channel, long *val)
2517bce8981SQuan Nguyen {
2527bce8981SQuan Nguyen 	struct smpro_hwmon *hwmon = dev_get_drvdata(dev);
2537bce8981SQuan Nguyen 	unsigned int value;
2547bce8981SQuan Nguyen 	int ret;
2557bce8981SQuan Nguyen 
2567bce8981SQuan Nguyen 	switch (attr) {
2577bce8981SQuan Nguyen 	case hwmon_curr_input:
2587bce8981SQuan Nguyen 		ret = regmap_read(hwmon->regmap, curr_sensor[channel].reg, &value);
2597bce8981SQuan Nguyen 		if (ret < 0)
2607bce8981SQuan Nguyen 			return ret;
2617bce8981SQuan Nguyen 		/* Scale reported by the hardware is 1mA */
2627bce8981SQuan Nguyen 		*val = value & 0x7fff;
2637bce8981SQuan Nguyen 		return 0;
2647bce8981SQuan Nguyen 	default:
2657bce8981SQuan Nguyen 		return -EOPNOTSUPP;
2667bce8981SQuan Nguyen 	}
2677bce8981SQuan Nguyen }
2687bce8981SQuan Nguyen 
smpro_read_power(struct device * dev,u32 attr,int channel,long * val_pwr)2697bce8981SQuan Nguyen static int smpro_read_power(struct device *dev, u32 attr, int channel, long *val_pwr)
2707bce8981SQuan Nguyen {
2717bce8981SQuan Nguyen 	struct smpro_hwmon *hwmon = dev_get_drvdata(dev);
2727bce8981SQuan Nguyen 	unsigned int val = 0, val_mw = 0;
2737bce8981SQuan Nguyen 	int ret;
2747bce8981SQuan Nguyen 
2757bce8981SQuan Nguyen 	switch (attr) {
2767bce8981SQuan Nguyen 	case hwmon_power_input:
2777bce8981SQuan Nguyen 		ret = regmap_read(hwmon->regmap, power[channel].reg, &val);
2787bce8981SQuan Nguyen 		if (ret)
2797bce8981SQuan Nguyen 			return ret;
2807bce8981SQuan Nguyen 
2817bce8981SQuan Nguyen 		ret = regmap_read(hwmon->regmap, power[channel].reg_ext, &val_mw);
2827bce8981SQuan Nguyen 		if (ret)
2837bce8981SQuan Nguyen 			return ret;
2847bce8981SQuan Nguyen 		/* 10-bit value */
2857bce8981SQuan Nguyen 		*val_pwr = (val & 0x3ff) * 1000000 + (val_mw & 0x3ff) * 1000;
2867bce8981SQuan Nguyen 		return 0;
2877bce8981SQuan Nguyen 
2887bce8981SQuan Nguyen 	default:
2897bce8981SQuan Nguyen 		return -EOPNOTSUPP;
2907bce8981SQuan Nguyen 	}
2917bce8981SQuan Nguyen }
2927bce8981SQuan Nguyen 
smpro_read(struct device * dev,enum hwmon_sensor_types type,u32 attr,int channel,long * val)2937bce8981SQuan Nguyen static int smpro_read(struct device *dev, enum hwmon_sensor_types type,
2947bce8981SQuan Nguyen 		      u32 attr, int channel, long *val)
2957bce8981SQuan Nguyen {
2967bce8981SQuan Nguyen 	switch (type) {
2977bce8981SQuan Nguyen 	case hwmon_temp:
2987bce8981SQuan Nguyen 		return smpro_read_temp(dev, attr, channel, val);
2997bce8981SQuan Nguyen 	case hwmon_in:
3007bce8981SQuan Nguyen 		return smpro_read_in(dev, attr, channel, val);
3017bce8981SQuan Nguyen 	case hwmon_power:
3027bce8981SQuan Nguyen 		return smpro_read_power(dev, attr, channel, val);
3037bce8981SQuan Nguyen 	case hwmon_curr:
3047bce8981SQuan Nguyen 		return smpro_read_curr(dev, attr, channel, val);
3057bce8981SQuan Nguyen 	default:
3067bce8981SQuan Nguyen 		return -EOPNOTSUPP;
3077bce8981SQuan Nguyen 	}
3087bce8981SQuan Nguyen }
3097bce8981SQuan Nguyen 
smpro_read_string(struct device * dev,enum hwmon_sensor_types type,u32 attr,int channel,const char ** str)3107bce8981SQuan Nguyen static int smpro_read_string(struct device *dev, enum hwmon_sensor_types type,
3117bce8981SQuan Nguyen 			     u32 attr, int channel, const char **str)
3127bce8981SQuan Nguyen {
3137bce8981SQuan Nguyen 	switch (type) {
3147bce8981SQuan Nguyen 	case hwmon_temp:
3157bce8981SQuan Nguyen 		switch (attr) {
3167bce8981SQuan Nguyen 		case hwmon_temp_label:
3177bce8981SQuan Nguyen 			*str = temperature[channel].label;
3187bce8981SQuan Nguyen 			return 0;
3197bce8981SQuan Nguyen 		default:
3207bce8981SQuan Nguyen 			break;
3217bce8981SQuan Nguyen 		}
3227bce8981SQuan Nguyen 		break;
3237bce8981SQuan Nguyen 
3247bce8981SQuan Nguyen 	case hwmon_in:
3257bce8981SQuan Nguyen 		switch (attr) {
3267bce8981SQuan Nguyen 		case hwmon_in_label:
3277bce8981SQuan Nguyen 			*str = voltage[channel].label;
3287bce8981SQuan Nguyen 			return 0;
3297bce8981SQuan Nguyen 		default:
3307bce8981SQuan Nguyen 			break;
3317bce8981SQuan Nguyen 		}
3327bce8981SQuan Nguyen 		break;
3337bce8981SQuan Nguyen 
3347bce8981SQuan Nguyen 	case hwmon_curr:
3357bce8981SQuan Nguyen 		switch (attr) {
3367bce8981SQuan Nguyen 		case hwmon_curr_label:
3377bce8981SQuan Nguyen 			*str = curr_sensor[channel].label;
3387bce8981SQuan Nguyen 			return 0;
3397bce8981SQuan Nguyen 		default:
3407bce8981SQuan Nguyen 			break;
3417bce8981SQuan Nguyen 		}
3427bce8981SQuan Nguyen 		break;
3437bce8981SQuan Nguyen 
3447bce8981SQuan Nguyen 	case hwmon_power:
3457bce8981SQuan Nguyen 		switch (attr) {
3467bce8981SQuan Nguyen 		case hwmon_power_label:
3477bce8981SQuan Nguyen 			*str = power[channel].label;
3487bce8981SQuan Nguyen 			return 0;
3497bce8981SQuan Nguyen 		default:
3507bce8981SQuan Nguyen 			break;
3517bce8981SQuan Nguyen 		}
3527bce8981SQuan Nguyen 		break;
3537bce8981SQuan Nguyen 	default:
3547bce8981SQuan Nguyen 		break;
3557bce8981SQuan Nguyen 	}
3567bce8981SQuan Nguyen 
3577bce8981SQuan Nguyen 	return -EOPNOTSUPP;
3587bce8981SQuan Nguyen }
3597bce8981SQuan Nguyen 
smpro_is_visible(const void * data,enum hwmon_sensor_types type,u32 attr,int channel)3607bce8981SQuan Nguyen static umode_t smpro_is_visible(const void *data, enum hwmon_sensor_types type,
3617bce8981SQuan Nguyen 				u32 attr, int channel)
3627bce8981SQuan Nguyen {
3637bce8981SQuan Nguyen 	const struct smpro_hwmon *hwmon = data;
3647bce8981SQuan Nguyen 	unsigned int value;
3657bce8981SQuan Nguyen 	int ret;
3667bce8981SQuan Nguyen 
3677bce8981SQuan Nguyen 	switch (type) {
3687bce8981SQuan Nguyen 	case hwmon_temp:
3697bce8981SQuan Nguyen 		switch (attr) {
3707bce8981SQuan Nguyen 		case hwmon_temp_input:
3717bce8981SQuan Nguyen 		case hwmon_temp_label:
3727bce8981SQuan Nguyen 		case hwmon_temp_crit:
3737bce8981SQuan Nguyen 			ret = regmap_read(hwmon->regmap, temperature[channel].reg, &value);
3747bce8981SQuan Nguyen 			if (ret || value == 0xFFFF)
3757bce8981SQuan Nguyen 				return 0;
3767bce8981SQuan Nguyen 			break;
3779e913888SNathan Chancellor 		default:
3789e913888SNathan Chancellor 			break;
3797bce8981SQuan Nguyen 		}
3809e913888SNathan Chancellor 		break;
3817bce8981SQuan Nguyen 	default:
3827bce8981SQuan Nguyen 		break;
3837bce8981SQuan Nguyen 	}
3847bce8981SQuan Nguyen 
3857bce8981SQuan Nguyen 	return 0444;
3867bce8981SQuan Nguyen }
3877bce8981SQuan Nguyen 
388*d302988cSKrzysztof Kozlowski static const struct hwmon_channel_info * const smpro_info[] = {
3897bce8981SQuan Nguyen 	HWMON_CHANNEL_INFO(temp,
3907bce8981SQuan Nguyen 			   HWMON_T_INPUT | HWMON_T_LABEL,
3917bce8981SQuan Nguyen 			   HWMON_T_INPUT | HWMON_T_LABEL | HWMON_T_CRIT,
3927bce8981SQuan Nguyen 			   HWMON_T_INPUT | HWMON_T_LABEL,
3937bce8981SQuan Nguyen 			   HWMON_T_INPUT | HWMON_T_LABEL,
3947bce8981SQuan Nguyen 			   HWMON_T_INPUT | HWMON_T_LABEL | HWMON_T_CRIT,
3957bce8981SQuan Nguyen 			   HWMON_T_INPUT | HWMON_T_LABEL | HWMON_T_CRIT,
3967bce8981SQuan Nguyen 			   HWMON_T_INPUT | HWMON_T_LABEL | HWMON_T_CRIT,
3977bce8981SQuan Nguyen 			   HWMON_T_INPUT | HWMON_T_LABEL | HWMON_T_CRIT,
3987bce8981SQuan Nguyen 			   HWMON_T_INPUT | HWMON_T_LABEL | HWMON_T_CRIT,
3997bce8981SQuan Nguyen 			   HWMON_T_INPUT | HWMON_T_LABEL | HWMON_T_CRIT,
4007bce8981SQuan Nguyen 			   HWMON_T_INPUT | HWMON_T_LABEL | HWMON_T_CRIT,
4017bce8981SQuan Nguyen 			   HWMON_T_INPUT | HWMON_T_LABEL | HWMON_T_CRIT,
4027bce8981SQuan Nguyen 			   HWMON_T_INPUT | HWMON_T_LABEL),
4037bce8981SQuan Nguyen 	HWMON_CHANNEL_INFO(in,
4047bce8981SQuan Nguyen 			   HWMON_I_INPUT | HWMON_I_LABEL,
4057bce8981SQuan Nguyen 			   HWMON_I_INPUT | HWMON_I_LABEL,
4067bce8981SQuan Nguyen 			   HWMON_I_INPUT | HWMON_I_LABEL,
4077bce8981SQuan Nguyen 			   HWMON_I_INPUT | HWMON_I_LABEL,
4087bce8981SQuan Nguyen 			   HWMON_I_INPUT | HWMON_I_LABEL),
4097bce8981SQuan Nguyen 	HWMON_CHANNEL_INFO(power,
4107bce8981SQuan Nguyen 			   HWMON_P_INPUT | HWMON_P_LABEL,
4117bce8981SQuan Nguyen 			   HWMON_P_INPUT | HWMON_P_LABEL,
4127bce8981SQuan Nguyen 			   HWMON_P_INPUT | HWMON_P_LABEL,
4137bce8981SQuan Nguyen 			   HWMON_P_INPUT | HWMON_P_LABEL,
4147bce8981SQuan Nguyen 			   HWMON_P_INPUT | HWMON_P_LABEL),
4157bce8981SQuan Nguyen 	HWMON_CHANNEL_INFO(curr,
4167bce8981SQuan Nguyen 			   HWMON_C_INPUT | HWMON_C_LABEL,
4177bce8981SQuan Nguyen 			   HWMON_C_INPUT | HWMON_C_LABEL,
4187bce8981SQuan Nguyen 			   HWMON_C_INPUT | HWMON_C_LABEL,
4197bce8981SQuan Nguyen 			   HWMON_C_INPUT | HWMON_C_LABEL,
4207bce8981SQuan Nguyen 			   HWMON_C_INPUT | HWMON_C_LABEL),
4217bce8981SQuan Nguyen 	NULL
4227bce8981SQuan Nguyen };
4237bce8981SQuan Nguyen 
4247bce8981SQuan Nguyen static const struct hwmon_ops smpro_hwmon_ops = {
4257bce8981SQuan Nguyen 	.is_visible = smpro_is_visible,
4267bce8981SQuan Nguyen 	.read = smpro_read,
4277bce8981SQuan Nguyen 	.read_string = smpro_read_string,
4287bce8981SQuan Nguyen };
4297bce8981SQuan Nguyen 
4307bce8981SQuan Nguyen static const struct hwmon_chip_info smpro_chip_info = {
4317bce8981SQuan Nguyen 	.ops = &smpro_hwmon_ops,
4327bce8981SQuan Nguyen 	.info = smpro_info,
4337bce8981SQuan Nguyen };
4347bce8981SQuan Nguyen 
smpro_hwmon_probe(struct platform_device * pdev)4357bce8981SQuan Nguyen static int smpro_hwmon_probe(struct platform_device *pdev)
4367bce8981SQuan Nguyen {
4377bce8981SQuan Nguyen 	struct smpro_hwmon *hwmon;
4387bce8981SQuan Nguyen 	struct device *hwmon_dev;
4397bce8981SQuan Nguyen 
4407bce8981SQuan Nguyen 	hwmon = devm_kzalloc(&pdev->dev, sizeof(struct smpro_hwmon), GFP_KERNEL);
4417bce8981SQuan Nguyen 	if (!hwmon)
4427bce8981SQuan Nguyen 		return -ENOMEM;
4437bce8981SQuan Nguyen 
4447bce8981SQuan Nguyen 	hwmon->regmap = dev_get_regmap(pdev->dev.parent, NULL);
4457bce8981SQuan Nguyen 	if (!hwmon->regmap)
4467bce8981SQuan Nguyen 		return -ENODEV;
4477bce8981SQuan Nguyen 
4487bce8981SQuan Nguyen 	hwmon_dev = devm_hwmon_device_register_with_info(&pdev->dev, "smpro_hwmon",
4497bce8981SQuan Nguyen 							 hwmon, &smpro_chip_info, NULL);
4507bce8981SQuan Nguyen 
4517bce8981SQuan Nguyen 	return PTR_ERR_OR_ZERO(hwmon_dev);
4527bce8981SQuan Nguyen }
4537bce8981SQuan Nguyen 
4547bce8981SQuan Nguyen static struct platform_driver smpro_hwmon_driver = {
4557bce8981SQuan Nguyen 	.probe		= smpro_hwmon_probe,
4567bce8981SQuan Nguyen 	.driver = {
4577bce8981SQuan Nguyen 		.name	= "smpro-hwmon",
4587bce8981SQuan Nguyen 	},
4597bce8981SQuan Nguyen };
4607bce8981SQuan Nguyen 
4617bce8981SQuan Nguyen module_platform_driver(smpro_hwmon_driver);
4627bce8981SQuan Nguyen 
4637bce8981SQuan Nguyen MODULE_AUTHOR("Thu Nguyen <thu@os.amperecomputing.com>");
4647bce8981SQuan Nguyen MODULE_AUTHOR("Quan Nguyen <quan@os.amperecomputing.com>");
4657bce8981SQuan Nguyen MODULE_DESCRIPTION("Ampere Altra SMPro hwmon driver");
4667bce8981SQuan Nguyen MODULE_LICENSE("GPL");
467