1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * A hwmon driver for ACPI 4.0 power meters
4 * Copyright (C) 2009 IBM
6 * Author: Darrick J. Wong <darrick.wong@oracle.com>
9 #include <linux/module.h>
10 #include <linux/hwmon.h>
11 #include <linux/hwmon-sysfs.h>
12 #include <linux/jiffies.h>
13 #include <linux/mutex.h>
14 #include <linux/dmi.h>
15 #include <linux/slab.h>
16 #include <linux/kdev_t.h>
17 #include <linux/sched.h>
18 #include <linux/time.h>
19 #include <linux/err.h>
20 #include <linux/acpi.h>
22 #define ACPI_POWER_METER_NAME "power_meter"
23 ACPI_MODULE_NAME(ACPI_POWER_METER_NAME
);
24 #define ACPI_POWER_METER_DEVICE_NAME "Power Meter"
25 #define ACPI_POWER_METER_CLASS "pwr_meter_resource"
27 #define NUM_SENSORS 17
29 #define POWER_METER_CAN_MEASURE (1 << 0)
30 #define POWER_METER_CAN_TRIP (1 << 1)
31 #define POWER_METER_CAN_CAP (1 << 2)
32 #define POWER_METER_CAN_NOTIFY (1 << 3)
33 #define POWER_METER_IS_BATTERY (1 << 8)
34 #define UNKNOWN_HYSTERESIS 0xFFFFFFFF
36 #define METER_NOTIFY_CONFIG 0x80
37 #define METER_NOTIFY_TRIP 0x81
38 #define METER_NOTIFY_CAP 0x82
39 #define METER_NOTIFY_CAPPING 0x83
40 #define METER_NOTIFY_INTERVAL 0x84
42 #define POWER_AVERAGE_NAME "power1_average"
43 #define POWER_CAP_NAME "power1_cap"
44 #define POWER_AVG_INTERVAL_NAME "power1_average_interval"
45 #define POWER_ALARM_NAME "power1_alarm"
47 static int cap_in_hardware
;
48 static bool force_cap_on
;
50 static int can_cap_in_hardware(void)
52 return force_cap_on
|| cap_in_hardware
;
55 static const struct acpi_device_id power_meter_ids
[] = {
59 MODULE_DEVICE_TABLE(acpi
, power_meter_ids
);
61 struct acpi_power_meter_capabilities
{
75 struct acpi_power_meter_resource
{
76 struct acpi_device
*acpi_dev
;
79 struct device
*hwmon_dev
;
80 struct acpi_power_meter_capabilities caps
;
81 acpi_string model_number
;
82 acpi_string serial_number
;
88 unsigned long sensors_last_updated
;
89 struct sensor_device_attribute sensors
[NUM_SENSORS
];
92 int num_domain_devices
;
93 struct acpi_device
**domain_devices
;
94 struct kobject
*holders_dir
;
97 struct sensor_template
{
99 ssize_t (*show
)(struct device
*dev
,
100 struct device_attribute
*devattr
,
102 ssize_t (*set
)(struct device
*dev
,
103 struct device_attribute
*devattr
,
104 const char *buf
, size_t count
);
108 /* Averaging interval */
109 static int update_avg_interval(struct acpi_power_meter_resource
*resource
)
111 unsigned long long data
;
114 status
= acpi_evaluate_integer(resource
->acpi_dev
->handle
, "_GAI",
116 if (ACPI_FAILURE(status
)) {
117 ACPI_EXCEPTION((AE_INFO
, status
, "Evaluating _GAI"));
121 resource
->avg_interval
= data
;
125 static ssize_t
show_avg_interval(struct device
*dev
,
126 struct device_attribute
*devattr
,
129 struct acpi_device
*acpi_dev
= to_acpi_device(dev
);
130 struct acpi_power_meter_resource
*resource
= acpi_dev
->driver_data
;
132 mutex_lock(&resource
->lock
);
133 update_avg_interval(resource
);
134 mutex_unlock(&resource
->lock
);
136 return sprintf(buf
, "%llu\n", resource
->avg_interval
);
139 static ssize_t
set_avg_interval(struct device
*dev
,
140 struct device_attribute
*devattr
,
141 const char *buf
, size_t count
)
143 struct acpi_device
*acpi_dev
= to_acpi_device(dev
);
144 struct acpi_power_meter_resource
*resource
= acpi_dev
->driver_data
;
145 union acpi_object arg0
= { ACPI_TYPE_INTEGER
};
146 struct acpi_object_list args
= { 1, &arg0
};
149 unsigned long long data
;
152 res
= kstrtoul(buf
, 10, &temp
);
156 if (temp
> resource
->caps
.max_avg_interval
||
157 temp
< resource
->caps
.min_avg_interval
)
159 arg0
.integer
.value
= temp
;
161 mutex_lock(&resource
->lock
);
162 status
= acpi_evaluate_integer(resource
->acpi_dev
->handle
, "_PAI",
164 if (!ACPI_FAILURE(status
))
165 resource
->avg_interval
= temp
;
166 mutex_unlock(&resource
->lock
);
168 if (ACPI_FAILURE(status
)) {
169 ACPI_EXCEPTION((AE_INFO
, status
, "Evaluating _PAI"));
173 /* _PAI returns 0 on success, nonzero otherwise */
181 static int update_cap(struct acpi_power_meter_resource
*resource
)
183 unsigned long long data
;
186 status
= acpi_evaluate_integer(resource
->acpi_dev
->handle
, "_GHL",
188 if (ACPI_FAILURE(status
)) {
189 ACPI_EXCEPTION((AE_INFO
, status
, "Evaluating _GHL"));
193 resource
->cap
= data
;
197 static ssize_t
show_cap(struct device
*dev
,
198 struct device_attribute
*devattr
,
201 struct acpi_device
*acpi_dev
= to_acpi_device(dev
);
202 struct acpi_power_meter_resource
*resource
= acpi_dev
->driver_data
;
204 mutex_lock(&resource
->lock
);
205 update_cap(resource
);
206 mutex_unlock(&resource
->lock
);
208 return sprintf(buf
, "%llu\n", resource
->cap
* 1000);
211 static ssize_t
set_cap(struct device
*dev
, struct device_attribute
*devattr
,
212 const char *buf
, size_t count
)
214 struct acpi_device
*acpi_dev
= to_acpi_device(dev
);
215 struct acpi_power_meter_resource
*resource
= acpi_dev
->driver_data
;
216 union acpi_object arg0
= { ACPI_TYPE_INTEGER
};
217 struct acpi_object_list args
= { 1, &arg0
};
220 unsigned long long data
;
223 res
= kstrtoul(buf
, 10, &temp
);
227 temp
= DIV_ROUND_CLOSEST(temp
, 1000);
228 if (temp
> resource
->caps
.max_cap
|| temp
< resource
->caps
.min_cap
)
230 arg0
.integer
.value
= temp
;
232 mutex_lock(&resource
->lock
);
233 status
= acpi_evaluate_integer(resource
->acpi_dev
->handle
, "_SHL",
235 if (!ACPI_FAILURE(status
))
236 resource
->cap
= temp
;
237 mutex_unlock(&resource
->lock
);
239 if (ACPI_FAILURE(status
)) {
240 ACPI_EXCEPTION((AE_INFO
, status
, "Evaluating _SHL"));
244 /* _SHL returns 0 on success, nonzero otherwise */
251 /* Power meter trip points */
252 static int set_acpi_trip(struct acpi_power_meter_resource
*resource
)
254 union acpi_object arg_objs
[] = {
258 struct acpi_object_list args
= { 2, arg_objs
};
259 unsigned long long data
;
262 /* Both trip levels must be set */
263 if (resource
->trip
[0] < 0 || resource
->trip
[1] < 0)
266 /* This driver stores min, max; ACPI wants max, min. */
267 arg_objs
[0].integer
.value
= resource
->trip
[1];
268 arg_objs
[1].integer
.value
= resource
->trip
[0];
270 status
= acpi_evaluate_integer(resource
->acpi_dev
->handle
, "_PTP",
272 if (ACPI_FAILURE(status
)) {
273 ACPI_EXCEPTION((AE_INFO
, status
, "Evaluating _PTP"));
277 /* _PTP returns 0 on success, nonzero otherwise */
284 static ssize_t
set_trip(struct device
*dev
, struct device_attribute
*devattr
,
285 const char *buf
, size_t count
)
287 struct sensor_device_attribute
*attr
= to_sensor_dev_attr(devattr
);
288 struct acpi_device
*acpi_dev
= to_acpi_device(dev
);
289 struct acpi_power_meter_resource
*resource
= acpi_dev
->driver_data
;
293 res
= kstrtoul(buf
, 10, &temp
);
297 temp
= DIV_ROUND_CLOSEST(temp
, 1000);
299 mutex_lock(&resource
->lock
);
300 resource
->trip
[attr
->index
- 7] = temp
;
301 res
= set_acpi_trip(resource
);
302 mutex_unlock(&resource
->lock
);
311 static int update_meter(struct acpi_power_meter_resource
*resource
)
313 unsigned long long data
;
315 unsigned long local_jiffies
= jiffies
;
317 if (time_before(local_jiffies
, resource
->sensors_last_updated
+
318 msecs_to_jiffies(resource
->caps
.sampling_time
)) &&
319 resource
->sensors_valid
)
322 status
= acpi_evaluate_integer(resource
->acpi_dev
->handle
, "_PMM",
324 if (ACPI_FAILURE(status
)) {
325 ACPI_EXCEPTION((AE_INFO
, status
, "Evaluating _PMM"));
329 resource
->power
= data
;
330 resource
->sensors_valid
= 1;
331 resource
->sensors_last_updated
= jiffies
;
335 static ssize_t
show_power(struct device
*dev
,
336 struct device_attribute
*devattr
,
339 struct acpi_device
*acpi_dev
= to_acpi_device(dev
);
340 struct acpi_power_meter_resource
*resource
= acpi_dev
->driver_data
;
342 mutex_lock(&resource
->lock
);
343 update_meter(resource
);
344 mutex_unlock(&resource
->lock
);
346 return sprintf(buf
, "%llu\n", resource
->power
* 1000);
350 static ssize_t
show_str(struct device
*dev
,
351 struct device_attribute
*devattr
,
354 struct sensor_device_attribute
*attr
= to_sensor_dev_attr(devattr
);
355 struct acpi_device
*acpi_dev
= to_acpi_device(dev
);
356 struct acpi_power_meter_resource
*resource
= acpi_dev
->driver_data
;
360 mutex_lock(&resource
->lock
);
361 switch (attr
->index
) {
363 val
= resource
->model_number
;
366 val
= resource
->serial_number
;
369 val
= resource
->oem_info
;
372 WARN(1, "Implementation error: unexpected attribute index %d\n",
377 ret
= sprintf(buf
, "%s\n", val
);
378 mutex_unlock(&resource
->lock
);
382 static ssize_t
show_val(struct device
*dev
,
383 struct device_attribute
*devattr
,
386 struct sensor_device_attribute
*attr
= to_sensor_dev_attr(devattr
);
387 struct acpi_device
*acpi_dev
= to_acpi_device(dev
);
388 struct acpi_power_meter_resource
*resource
= acpi_dev
->driver_data
;
391 switch (attr
->index
) {
393 val
= resource
->caps
.min_avg_interval
;
396 val
= resource
->caps
.max_avg_interval
;
399 val
= resource
->caps
.min_cap
* 1000;
402 val
= resource
->caps
.max_cap
* 1000;
405 if (resource
->caps
.hysteresis
== UNKNOWN_HYSTERESIS
)
406 return sprintf(buf
, "unknown\n");
408 val
= resource
->caps
.hysteresis
* 1000;
411 if (resource
->caps
.flags
& POWER_METER_IS_BATTERY
)
417 if (resource
->power
> resource
->cap
)
424 if (resource
->trip
[attr
->index
- 7] < 0)
425 return sprintf(buf
, "unknown\n");
427 val
= resource
->trip
[attr
->index
- 7] * 1000;
430 WARN(1, "Implementation error: unexpected attribute index %d\n",
435 return sprintf(buf
, "%llu\n", val
);
438 static ssize_t
show_accuracy(struct device
*dev
,
439 struct device_attribute
*devattr
,
442 struct acpi_device
*acpi_dev
= to_acpi_device(dev
);
443 struct acpi_power_meter_resource
*resource
= acpi_dev
->driver_data
;
444 unsigned int acc
= resource
->caps
.accuracy
;
446 return sprintf(buf
, "%u.%u%%\n", acc
/ 1000, acc
% 1000);
449 static ssize_t
show_name(struct device
*dev
,
450 struct device_attribute
*devattr
,
453 return sprintf(buf
, "%s\n", ACPI_POWER_METER_NAME
);
456 #define RO_SENSOR_TEMPLATE(_label, _show, _index) \
463 #define RW_SENSOR_TEMPLATE(_label, _show, _set, _index) \
471 /* Sensor descriptions. If you add a sensor, update NUM_SENSORS above! */
472 static struct sensor_template meter_attrs
[] = {
473 RO_SENSOR_TEMPLATE(POWER_AVERAGE_NAME
, show_power
, 0),
474 RO_SENSOR_TEMPLATE("power1_accuracy", show_accuracy
, 0),
475 RO_SENSOR_TEMPLATE("power1_average_interval_min", show_val
, 0),
476 RO_SENSOR_TEMPLATE("power1_average_interval_max", show_val
, 1),
477 RO_SENSOR_TEMPLATE("power1_is_battery", show_val
, 5),
478 RW_SENSOR_TEMPLATE(POWER_AVG_INTERVAL_NAME
, show_avg_interval
,
479 set_avg_interval
, 0),
483 static struct sensor_template misc_cap_attrs
[] = {
484 RO_SENSOR_TEMPLATE("power1_cap_min", show_val
, 2),
485 RO_SENSOR_TEMPLATE("power1_cap_max", show_val
, 3),
486 RO_SENSOR_TEMPLATE("power1_cap_hyst", show_val
, 4),
487 RO_SENSOR_TEMPLATE(POWER_ALARM_NAME
, show_val
, 6),
491 static struct sensor_template ro_cap_attrs
[] = {
492 RO_SENSOR_TEMPLATE(POWER_CAP_NAME
, show_cap
, 0),
496 static struct sensor_template rw_cap_attrs
[] = {
497 RW_SENSOR_TEMPLATE(POWER_CAP_NAME
, show_cap
, set_cap
, 0),
501 static struct sensor_template trip_attrs
[] = {
502 RW_SENSOR_TEMPLATE("power1_average_min", show_val
, set_trip
, 7),
503 RW_SENSOR_TEMPLATE("power1_average_max", show_val
, set_trip
, 8),
507 static struct sensor_template misc_attrs
[] = {
508 RO_SENSOR_TEMPLATE("name", show_name
, 0),
509 RO_SENSOR_TEMPLATE("power1_model_number", show_str
, 0),
510 RO_SENSOR_TEMPLATE("power1_oem_info", show_str
, 2),
511 RO_SENSOR_TEMPLATE("power1_serial_number", show_str
, 1),
515 #undef RO_SENSOR_TEMPLATE
516 #undef RW_SENSOR_TEMPLATE
518 /* Read power domain data */
519 static void remove_domain_devices(struct acpi_power_meter_resource
*resource
)
523 if (!resource
->num_domain_devices
)
526 for (i
= 0; i
< resource
->num_domain_devices
; i
++) {
527 struct acpi_device
*obj
= resource
->domain_devices
[i
];
531 sysfs_remove_link(resource
->holders_dir
,
532 kobject_name(&obj
->dev
.kobj
));
533 put_device(&obj
->dev
);
536 kfree(resource
->domain_devices
);
537 kobject_put(resource
->holders_dir
);
538 resource
->num_domain_devices
= 0;
541 static int read_domain_devices(struct acpi_power_meter_resource
*resource
)
545 struct acpi_buffer buffer
= { ACPI_ALLOCATE_BUFFER
, NULL
};
546 union acpi_object
*pss
;
549 status
= acpi_evaluate_object(resource
->acpi_dev
->handle
, "_PMD", NULL
,
551 if (ACPI_FAILURE(status
)) {
552 ACPI_EXCEPTION((AE_INFO
, status
, "Evaluating _PMD"));
556 pss
= buffer
.pointer
;
558 pss
->type
!= ACPI_TYPE_PACKAGE
) {
559 dev_err(&resource
->acpi_dev
->dev
, ACPI_POWER_METER_NAME
560 "Invalid _PMD data\n");
565 if (!pss
->package
.count
)
568 resource
->domain_devices
= kcalloc(pss
->package
.count
,
569 sizeof(struct acpi_device
*),
571 if (!resource
->domain_devices
) {
576 resource
->holders_dir
= kobject_create_and_add("measures",
577 &resource
->acpi_dev
->dev
.kobj
);
578 if (!resource
->holders_dir
) {
583 resource
->num_domain_devices
= pss
->package
.count
;
585 for (i
= 0; i
< pss
->package
.count
; i
++) {
586 struct acpi_device
*obj
;
587 union acpi_object
*element
= &(pss
->package
.elements
[i
]);
589 /* Refuse non-references */
590 if (element
->type
!= ACPI_TYPE_LOCAL_REFERENCE
)
593 /* Create a symlink to domain objects */
594 resource
->domain_devices
[i
] = NULL
;
595 if (acpi_bus_get_device(element
->reference
.handle
,
596 &resource
->domain_devices
[i
]))
599 obj
= resource
->domain_devices
[i
];
600 get_device(&obj
->dev
);
602 res
= sysfs_create_link(resource
->holders_dir
, &obj
->dev
.kobj
,
603 kobject_name(&obj
->dev
.kobj
));
605 put_device(&obj
->dev
);
606 resource
->domain_devices
[i
] = NULL
;
614 kfree(resource
->domain_devices
);
616 kfree(buffer
.pointer
);
620 /* Registration and deregistration */
621 static int register_attrs(struct acpi_power_meter_resource
*resource
,
622 struct sensor_template
*attrs
)
624 struct device
*dev
= &resource
->acpi_dev
->dev
;
625 struct sensor_device_attribute
*sensors
=
626 &resource
->sensors
[resource
->num_sensors
];
629 while (attrs
->label
) {
630 sensors
->dev_attr
.attr
.name
= attrs
->label
;
631 sensors
->dev_attr
.attr
.mode
= 0444;
632 sensors
->dev_attr
.show
= attrs
->show
;
633 sensors
->index
= attrs
->index
;
636 sensors
->dev_attr
.attr
.mode
|= 0200;
637 sensors
->dev_attr
.store
= attrs
->set
;
640 sysfs_attr_init(&sensors
->dev_attr
.attr
);
641 res
= device_create_file(dev
, &sensors
->dev_attr
);
643 sensors
->dev_attr
.attr
.name
= NULL
;
647 resource
->num_sensors
++;
655 static void remove_attrs(struct acpi_power_meter_resource
*resource
)
659 for (i
= 0; i
< resource
->num_sensors
; i
++) {
660 if (!resource
->sensors
[i
].dev_attr
.attr
.name
)
662 device_remove_file(&resource
->acpi_dev
->dev
,
663 &resource
->sensors
[i
].dev_attr
);
666 remove_domain_devices(resource
);
668 resource
->num_sensors
= 0;
671 static int setup_attrs(struct acpi_power_meter_resource
*resource
)
675 res
= read_domain_devices(resource
);
679 if (resource
->caps
.flags
& POWER_METER_CAN_MEASURE
) {
680 res
= register_attrs(resource
, meter_attrs
);
685 if (resource
->caps
.flags
& POWER_METER_CAN_CAP
) {
686 if (!can_cap_in_hardware()) {
687 dev_warn(&resource
->acpi_dev
->dev
,
688 "Ignoring unsafe software power cap!\n");
689 goto skip_unsafe_cap
;
692 if (resource
->caps
.configurable_cap
)
693 res
= register_attrs(resource
, rw_cap_attrs
);
695 res
= register_attrs(resource
, ro_cap_attrs
);
700 res
= register_attrs(resource
, misc_cap_attrs
);
706 if (resource
->caps
.flags
& POWER_METER_CAN_TRIP
) {
707 res
= register_attrs(resource
, trip_attrs
);
712 res
= register_attrs(resource
, misc_attrs
);
718 remove_attrs(resource
);
722 static void free_capabilities(struct acpi_power_meter_resource
*resource
)
727 str
= &resource
->model_number
;
728 for (i
= 0; i
< 3; i
++, str
++) {
734 static int read_capabilities(struct acpi_power_meter_resource
*resource
)
738 struct acpi_buffer buffer
= { ACPI_ALLOCATE_BUFFER
, NULL
};
739 struct acpi_buffer state
= { 0, NULL
};
740 struct acpi_buffer format
= { sizeof("NNNNNNNNNNN"), "NNNNNNNNNNN" };
741 union acpi_object
*pss
;
745 status
= acpi_evaluate_object(resource
->acpi_dev
->handle
, "_PMC", NULL
,
747 if (ACPI_FAILURE(status
)) {
748 ACPI_EXCEPTION((AE_INFO
, status
, "Evaluating _PMC"));
752 pss
= buffer
.pointer
;
754 pss
->type
!= ACPI_TYPE_PACKAGE
||
755 pss
->package
.count
!= 14) {
756 dev_err(&resource
->acpi_dev
->dev
, ACPI_POWER_METER_NAME
757 "Invalid _PMC data\n");
762 /* Grab all the integer data at once */
763 state
.length
= sizeof(struct acpi_power_meter_capabilities
);
764 state
.pointer
= &resource
->caps
;
766 status
= acpi_extract_package(pss
, &format
, &state
);
767 if (ACPI_FAILURE(status
)) {
768 ACPI_EXCEPTION((AE_INFO
, status
, "Invalid data"));
773 if (resource
->caps
.units
) {
774 dev_err(&resource
->acpi_dev
->dev
, ACPI_POWER_METER_NAME
775 "Unknown units %llu.\n",
776 resource
->caps
.units
);
781 /* Grab the string data */
782 str
= &resource
->model_number
;
784 for (i
= 11; i
< 14; i
++) {
785 union acpi_object
*element
= &(pss
->package
.elements
[i
]);
787 if (element
->type
!= ACPI_TYPE_STRING
) {
792 *str
= kcalloc(element
->string
.length
+ 1, sizeof(u8
),
799 strncpy(*str
, element
->string
.pointer
, element
->string
.length
);
803 dev_info(&resource
->acpi_dev
->dev
, "Found ACPI power meter.\n");
806 free_capabilities(resource
);
808 kfree(buffer
.pointer
);
812 /* Handle ACPI event notifications */
813 static void acpi_power_meter_notify(struct acpi_device
*device
, u32 event
)
815 struct acpi_power_meter_resource
*resource
;
818 if (!device
|| !acpi_driver_data(device
))
821 resource
= acpi_driver_data(device
);
824 case METER_NOTIFY_CONFIG
:
825 mutex_lock(&resource
->lock
);
826 free_capabilities(resource
);
827 res
= read_capabilities(resource
);
828 mutex_unlock(&resource
->lock
);
832 remove_attrs(resource
);
833 setup_attrs(resource
);
835 case METER_NOTIFY_TRIP
:
836 sysfs_notify(&device
->dev
.kobj
, NULL
, POWER_AVERAGE_NAME
);
838 case METER_NOTIFY_CAP
:
839 sysfs_notify(&device
->dev
.kobj
, NULL
, POWER_CAP_NAME
);
841 case METER_NOTIFY_INTERVAL
:
842 sysfs_notify(&device
->dev
.kobj
, NULL
, POWER_AVG_INTERVAL_NAME
);
844 case METER_NOTIFY_CAPPING
:
845 sysfs_notify(&device
->dev
.kobj
, NULL
, POWER_ALARM_NAME
);
846 dev_info(&device
->dev
, "Capping in progress.\n");
849 WARN(1, "Unexpected event %d\n", event
);
853 acpi_bus_generate_netlink_event(ACPI_POWER_METER_CLASS
,
854 dev_name(&device
->dev
), event
, 0);
857 static int acpi_power_meter_add(struct acpi_device
*device
)
860 struct acpi_power_meter_resource
*resource
;
865 resource
= kzalloc(sizeof(struct acpi_power_meter_resource
),
870 resource
->sensors_valid
= 0;
871 resource
->acpi_dev
= device
;
872 mutex_init(&resource
->lock
);
873 strcpy(acpi_device_name(device
), ACPI_POWER_METER_DEVICE_NAME
);
874 strcpy(acpi_device_class(device
), ACPI_POWER_METER_CLASS
);
875 device
->driver_data
= resource
;
877 res
= read_capabilities(resource
);
881 resource
->trip
[0] = resource
->trip
[1] = -1;
883 res
= setup_attrs(resource
);
885 goto exit_free_capability
;
887 resource
->hwmon_dev
= hwmon_device_register(&device
->dev
);
888 if (IS_ERR(resource
->hwmon_dev
)) {
889 res
= PTR_ERR(resource
->hwmon_dev
);
897 remove_attrs(resource
);
898 exit_free_capability
:
899 free_capabilities(resource
);
906 static int acpi_power_meter_remove(struct acpi_device
*device
)
908 struct acpi_power_meter_resource
*resource
;
910 if (!device
|| !acpi_driver_data(device
))
913 resource
= acpi_driver_data(device
);
914 hwmon_device_unregister(resource
->hwmon_dev
);
916 remove_attrs(resource
);
917 free_capabilities(resource
);
923 #ifdef CONFIG_PM_SLEEP
925 static int acpi_power_meter_resume(struct device
*dev
)
927 struct acpi_power_meter_resource
*resource
;
932 resource
= acpi_driver_data(to_acpi_device(dev
));
936 free_capabilities(resource
);
937 read_capabilities(resource
);
942 #endif /* CONFIG_PM_SLEEP */
944 static SIMPLE_DEV_PM_OPS(acpi_power_meter_pm
, NULL
, acpi_power_meter_resume
);
946 static struct acpi_driver acpi_power_meter_driver
= {
947 .name
= "power_meter",
948 .class = ACPI_POWER_METER_CLASS
,
949 .ids
= power_meter_ids
,
951 .add
= acpi_power_meter_add
,
952 .remove
= acpi_power_meter_remove
,
953 .notify
= acpi_power_meter_notify
,
955 .drv
.pm
= &acpi_power_meter_pm
,
958 /* Module init/exit routines */
959 static int __init
enable_cap_knobs(const struct dmi_system_id
*d
)
965 static const struct dmi_system_id pm_dmi_table
[] __initconst
= {
967 enable_cap_knobs
, "IBM Active Energy Manager",
969 DMI_MATCH(DMI_SYS_VENDOR
, "IBM")
975 static int __init
acpi_power_meter_init(void)
982 dmi_check_system(pm_dmi_table
);
984 result
= acpi_bus_register_driver(&acpi_power_meter_driver
);
991 static void __exit
acpi_power_meter_exit(void)
993 acpi_bus_unregister_driver(&acpi_power_meter_driver
);
996 MODULE_AUTHOR("Darrick J. Wong <darrick.wong@oracle.com>");
997 MODULE_DESCRIPTION("ACPI 4.0 power meter driver");
998 MODULE_LICENSE("GPL");
1000 module_param(force_cap_on
, bool, 0644);
1001 MODULE_PARM_DESC(force_cap_on
, "Enable power cap even it is unsafe to do so.");
1003 module_init(acpi_power_meter_init
);
1004 module_exit(acpi_power_meter_exit
);