2 * perf_event_intel_rapl.c: support Intel RAPL energy consumption counters
3 * Copyright (C) 2013 Google, Inc., Stephane Eranian
5 * Intel RAPL interface is specified in the IA-32 Manual Vol3b
6 * section 14.7.1 (September 2013)
8 * RAPL provides more controls than just reporting energy consumption
9 * however here we only expose the 3 energy consumption free running
10 * counters (pp0, pkg, dram).
12 * Each of those counters increments in a power unit defined by the
13 * RAPL_POWER_UNIT MSR. On SandyBridge, this unit is 1/(2^16) Joules
16 * Counter to rapl events mappings:
18 * pp0 counter: consumption of all physical cores (power plane 0)
19 * event: rapl_energy_cores
22 * pkg counter: consumption of the whole processor package
23 * event: rapl_energy_pkg
26 * dram counter: consumption of the dram domain (servers only)
27 * event: rapl_energy_dram
30 * dram counter: consumption of the builtin-gpu domain (client only)
31 * event: rapl_energy_gpu
34 * We manage those counters as free running (read-only). They may be
35 * use simultaneously by other tools, such as turbostat.
37 * The events only support system-wide mode counting. There is no
38 * sampling support because it does not make sense and is not
39 * supported by the RAPL hardware.
41 * Because we want to avoid floating-point operations in the kernel,
42 * the events are all reported in fixed point arithmetic (32.32).
43 * Tools must adjust the counts to convert them to Watts using
44 * the duration of the measurement. Tools may use a function such as
45 * ldexp(raw_count, -32);
47 #include <linux/module.h>
48 #include <linux/slab.h>
49 #include <linux/perf_event.h>
50 #include <asm/cpu_device_id.h>
51 #include "perf_event.h"
54 * RAPL energy status counters
56 #define RAPL_IDX_PP0_NRG_STAT 0 /* all cores */
57 #define INTEL_RAPL_PP0 0x1 /* pseudo-encoding */
58 #define RAPL_IDX_PKG_NRG_STAT 1 /* entire package */
59 #define INTEL_RAPL_PKG 0x2 /* pseudo-encoding */
60 #define RAPL_IDX_RAM_NRG_STAT 2 /* DRAM */
61 #define INTEL_RAPL_RAM 0x3 /* pseudo-encoding */
62 #define RAPL_IDX_PP1_NRG_STAT 3 /* gpu */
63 #define INTEL_RAPL_PP1 0x4 /* pseudo-encoding */
65 #define NR_RAPL_DOMAINS 0x4
66 static const char *rapl_domain_names
[NR_RAPL_DOMAINS
] __initconst
= {
73 /* Clients have PP0, PKG */
74 #define RAPL_IDX_CLN (1<<RAPL_IDX_PP0_NRG_STAT|\
75 1<<RAPL_IDX_PKG_NRG_STAT|\
76 1<<RAPL_IDX_PP1_NRG_STAT)
78 /* Servers have PP0, PKG, RAM */
79 #define RAPL_IDX_SRV (1<<RAPL_IDX_PP0_NRG_STAT|\
80 1<<RAPL_IDX_PKG_NRG_STAT|\
81 1<<RAPL_IDX_RAM_NRG_STAT)
83 /* Servers have PP0, PKG, RAM, PP1 */
84 #define RAPL_IDX_HSW (1<<RAPL_IDX_PP0_NRG_STAT|\
85 1<<RAPL_IDX_PKG_NRG_STAT|\
86 1<<RAPL_IDX_RAM_NRG_STAT|\
87 1<<RAPL_IDX_PP1_NRG_STAT)
90 * event code: LSB 8 bits, passed in attr->config
91 * any other bit is reserved
93 #define RAPL_EVENT_MASK 0xFFULL
95 #define DEFINE_RAPL_FORMAT_ATTR(_var, _name, _format) \
96 static ssize_t __rapl_##_var##_show(struct kobject *kobj, \
97 struct kobj_attribute *attr, \
100 BUILD_BUG_ON(sizeof(_format) >= PAGE_SIZE); \
101 return sprintf(page, _format "\n"); \
103 static struct kobj_attribute format_attr_##_var = \
104 __ATTR(_name, 0444, __rapl_##_var##_show, NULL)
106 #define RAPL_EVENT_DESC(_name, _config) \
108 .attr = __ATTR(_name, 0444, rapl_event_show, NULL), \
112 #define RAPL_CNTR_WIDTH 32 /* 32-bit rapl counters */
114 #define RAPL_EVENT_ATTR_STR(_name, v, str) \
115 static struct perf_pmu_events_attr event_attr_##v = { \
116 .attr = __ATTR(_name, 0444, rapl_sysfs_show, NULL), \
123 int n_active
; /* number of active events */
124 struct list_head active_list
;
125 struct pmu
*pmu
; /* pointer to rapl_pmu_class */
126 ktime_t timer_interval
; /* in ktime_t unit */
127 struct hrtimer hrtimer
;
130 static int rapl_hw_unit
[NR_RAPL_DOMAINS
] __read_mostly
; /* 1/2^hw_unit Joule */
131 static struct pmu rapl_pmu_class
;
132 static cpumask_t rapl_cpu_mask
;
133 static int rapl_cntr_mask
;
135 static DEFINE_PER_CPU(struct rapl_pmu
*, rapl_pmu
);
136 static DEFINE_PER_CPU(struct rapl_pmu
*, rapl_pmu_to_free
);
138 static struct x86_pmu_quirk
*rapl_quirks
;
139 static inline u64
rapl_read_counter(struct perf_event
*event
)
142 rdmsrl(event
->hw
.event_base
, raw
);
146 #define rapl_add_quirk(func_) \
148 static struct x86_pmu_quirk __quirk __initdata = { \
151 __quirk.next = rapl_quirks; \
152 rapl_quirks = &__quirk; \
155 static inline u64
rapl_scale(u64 v
, int cfg
)
157 if (cfg
> NR_RAPL_DOMAINS
) {
158 pr_warn("invalid domain %d, failed to scale data\n", cfg
);
162 * scale delta to smallest unit (1/2^32)
163 * users must then scale back: count * 1/(1e9*2^32) to get Joules
164 * or use ldexp(count, -32).
165 * Watts = Joules/Time delta
167 return v
<< (32 - rapl_hw_unit
[cfg
- 1]);
170 static u64
rapl_event_update(struct perf_event
*event
)
172 struct hw_perf_event
*hwc
= &event
->hw
;
173 u64 prev_raw_count
, new_raw_count
;
175 int shift
= RAPL_CNTR_WIDTH
;
178 prev_raw_count
= local64_read(&hwc
->prev_count
);
179 rdmsrl(event
->hw
.event_base
, new_raw_count
);
181 if (local64_cmpxchg(&hwc
->prev_count
, prev_raw_count
,
182 new_raw_count
) != prev_raw_count
) {
188 * Now we have the new raw value and have updated the prev
189 * timestamp already. We can now calculate the elapsed delta
190 * (event-)time and add that to the generic event.
192 * Careful, not all hw sign-extends above the physical width
195 delta
= (new_raw_count
<< shift
) - (prev_raw_count
<< shift
);
198 sdelta
= rapl_scale(delta
, event
->hw
.config
);
200 local64_add(sdelta
, &event
->count
);
202 return new_raw_count
;
205 static void rapl_start_hrtimer(struct rapl_pmu
*pmu
)
207 __hrtimer_start_range_ns(&pmu
->hrtimer
,
208 pmu
->timer_interval
, 0,
209 HRTIMER_MODE_REL_PINNED
, 0);
212 static void rapl_stop_hrtimer(struct rapl_pmu
*pmu
)
214 hrtimer_cancel(&pmu
->hrtimer
);
217 static enum hrtimer_restart
rapl_hrtimer_handle(struct hrtimer
*hrtimer
)
219 struct rapl_pmu
*pmu
= __this_cpu_read(rapl_pmu
);
220 struct perf_event
*event
;
224 return HRTIMER_NORESTART
;
226 spin_lock_irqsave(&pmu
->lock
, flags
);
228 list_for_each_entry(event
, &pmu
->active_list
, active_entry
) {
229 rapl_event_update(event
);
232 spin_unlock_irqrestore(&pmu
->lock
, flags
);
234 hrtimer_forward_now(hrtimer
, pmu
->timer_interval
);
236 return HRTIMER_RESTART
;
239 static void rapl_hrtimer_init(struct rapl_pmu
*pmu
)
241 struct hrtimer
*hr
= &pmu
->hrtimer
;
243 hrtimer_init(hr
, CLOCK_MONOTONIC
, HRTIMER_MODE_REL
);
244 hr
->function
= rapl_hrtimer_handle
;
247 static void __rapl_pmu_event_start(struct rapl_pmu
*pmu
,
248 struct perf_event
*event
)
250 if (WARN_ON_ONCE(!(event
->hw
.state
& PERF_HES_STOPPED
)))
255 list_add_tail(&event
->active_entry
, &pmu
->active_list
);
257 local64_set(&event
->hw
.prev_count
, rapl_read_counter(event
));
260 if (pmu
->n_active
== 1)
261 rapl_start_hrtimer(pmu
);
264 static void rapl_pmu_event_start(struct perf_event
*event
, int mode
)
266 struct rapl_pmu
*pmu
= __this_cpu_read(rapl_pmu
);
269 spin_lock_irqsave(&pmu
->lock
, flags
);
270 __rapl_pmu_event_start(pmu
, event
);
271 spin_unlock_irqrestore(&pmu
->lock
, flags
);
274 static void rapl_pmu_event_stop(struct perf_event
*event
, int mode
)
276 struct rapl_pmu
*pmu
= __this_cpu_read(rapl_pmu
);
277 struct hw_perf_event
*hwc
= &event
->hw
;
280 spin_lock_irqsave(&pmu
->lock
, flags
);
282 /* mark event as deactivated and stopped */
283 if (!(hwc
->state
& PERF_HES_STOPPED
)) {
284 WARN_ON_ONCE(pmu
->n_active
<= 0);
286 if (pmu
->n_active
== 0)
287 rapl_stop_hrtimer(pmu
);
289 list_del(&event
->active_entry
);
291 WARN_ON_ONCE(hwc
->state
& PERF_HES_STOPPED
);
292 hwc
->state
|= PERF_HES_STOPPED
;
295 /* check if update of sw counter is necessary */
296 if ((mode
& PERF_EF_UPDATE
) && !(hwc
->state
& PERF_HES_UPTODATE
)) {
298 * Drain the remaining delta count out of a event
299 * that we are disabling:
301 rapl_event_update(event
);
302 hwc
->state
|= PERF_HES_UPTODATE
;
305 spin_unlock_irqrestore(&pmu
->lock
, flags
);
308 static int rapl_pmu_event_add(struct perf_event
*event
, int mode
)
310 struct rapl_pmu
*pmu
= __this_cpu_read(rapl_pmu
);
311 struct hw_perf_event
*hwc
= &event
->hw
;
314 spin_lock_irqsave(&pmu
->lock
, flags
);
316 hwc
->state
= PERF_HES_UPTODATE
| PERF_HES_STOPPED
;
318 if (mode
& PERF_EF_START
)
319 __rapl_pmu_event_start(pmu
, event
);
321 spin_unlock_irqrestore(&pmu
->lock
, flags
);
326 static void rapl_pmu_event_del(struct perf_event
*event
, int flags
)
328 rapl_pmu_event_stop(event
, PERF_EF_UPDATE
);
331 static int rapl_pmu_event_init(struct perf_event
*event
)
333 u64 cfg
= event
->attr
.config
& RAPL_EVENT_MASK
;
334 int bit
, msr
, ret
= 0;
336 /* only look at RAPL events */
337 if (event
->attr
.type
!= rapl_pmu_class
.type
)
340 /* check only supported bits are set */
341 if (event
->attr
.config
& ~RAPL_EVENT_MASK
)
345 * check event is known (determines counter)
349 bit
= RAPL_IDX_PP0_NRG_STAT
;
350 msr
= MSR_PP0_ENERGY_STATUS
;
353 bit
= RAPL_IDX_PKG_NRG_STAT
;
354 msr
= MSR_PKG_ENERGY_STATUS
;
357 bit
= RAPL_IDX_RAM_NRG_STAT
;
358 msr
= MSR_DRAM_ENERGY_STATUS
;
361 bit
= RAPL_IDX_PP1_NRG_STAT
;
362 msr
= MSR_PP1_ENERGY_STATUS
;
367 /* check event supported */
368 if (!(rapl_cntr_mask
& (1 << bit
)))
371 /* unsupported modes and filters */
372 if (event
->attr
.exclude_user
||
373 event
->attr
.exclude_kernel
||
374 event
->attr
.exclude_hv
||
375 event
->attr
.exclude_idle
||
376 event
->attr
.exclude_host
||
377 event
->attr
.exclude_guest
||
378 event
->attr
.sample_period
) /* no sampling */
381 /* must be done before validate_group */
382 event
->hw
.event_base
= msr
;
383 event
->hw
.config
= cfg
;
389 static void rapl_pmu_event_read(struct perf_event
*event
)
391 rapl_event_update(event
);
394 static ssize_t
rapl_get_attr_cpumask(struct device
*dev
,
395 struct device_attribute
*attr
, char *buf
)
397 return cpumap_print_to_pagebuf(true, buf
, &rapl_cpu_mask
);
400 static DEVICE_ATTR(cpumask
, S_IRUGO
, rapl_get_attr_cpumask
, NULL
);
402 static struct attribute
*rapl_pmu_attrs
[] = {
403 &dev_attr_cpumask
.attr
,
407 static struct attribute_group rapl_pmu_attr_group
= {
408 .attrs
= rapl_pmu_attrs
,
411 static ssize_t
rapl_sysfs_show(struct device
*dev
,
412 struct device_attribute
*attr
,
415 struct perf_pmu_events_attr
*pmu_attr
= \
416 container_of(attr
, struct perf_pmu_events_attr
, attr
);
418 if (pmu_attr
->event_str
)
419 return sprintf(page
, "%s", pmu_attr
->event_str
);
424 RAPL_EVENT_ATTR_STR(energy
-cores
, rapl_cores
, "event=0x01");
425 RAPL_EVENT_ATTR_STR(energy
-pkg
, rapl_pkg
, "event=0x02");
426 RAPL_EVENT_ATTR_STR(energy
-ram
, rapl_ram
, "event=0x03");
427 RAPL_EVENT_ATTR_STR(energy
-gpu
, rapl_gpu
, "event=0x04");
429 RAPL_EVENT_ATTR_STR(energy
-cores
.unit
, rapl_cores_unit
, "Joules");
430 RAPL_EVENT_ATTR_STR(energy
-pkg
.unit
, rapl_pkg_unit
, "Joules");
431 RAPL_EVENT_ATTR_STR(energy
-ram
.unit
, rapl_ram_unit
, "Joules");
432 RAPL_EVENT_ATTR_STR(energy
-gpu
.unit
, rapl_gpu_unit
, "Joules");
435 * we compute in 0.23 nJ increments regardless of MSR
437 RAPL_EVENT_ATTR_STR(energy
-cores
.scale
, rapl_cores_scale
, "2.3283064365386962890625e-10");
438 RAPL_EVENT_ATTR_STR(energy
-pkg
.scale
, rapl_pkg_scale
, "2.3283064365386962890625e-10");
439 RAPL_EVENT_ATTR_STR(energy
-ram
.scale
, rapl_ram_scale
, "2.3283064365386962890625e-10");
440 RAPL_EVENT_ATTR_STR(energy
-gpu
.scale
, rapl_gpu_scale
, "2.3283064365386962890625e-10");
442 static struct attribute
*rapl_events_srv_attr
[] = {
443 EVENT_PTR(rapl_cores
),
447 EVENT_PTR(rapl_cores_unit
),
448 EVENT_PTR(rapl_pkg_unit
),
449 EVENT_PTR(rapl_ram_unit
),
451 EVENT_PTR(rapl_cores_scale
),
452 EVENT_PTR(rapl_pkg_scale
),
453 EVENT_PTR(rapl_ram_scale
),
457 static struct attribute
*rapl_events_cln_attr
[] = {
458 EVENT_PTR(rapl_cores
),
462 EVENT_PTR(rapl_cores_unit
),
463 EVENT_PTR(rapl_pkg_unit
),
464 EVENT_PTR(rapl_gpu_unit
),
466 EVENT_PTR(rapl_cores_scale
),
467 EVENT_PTR(rapl_pkg_scale
),
468 EVENT_PTR(rapl_gpu_scale
),
472 static struct attribute
*rapl_events_hsw_attr
[] = {
473 EVENT_PTR(rapl_cores
),
478 EVENT_PTR(rapl_cores_unit
),
479 EVENT_PTR(rapl_pkg_unit
),
480 EVENT_PTR(rapl_gpu_unit
),
481 EVENT_PTR(rapl_ram_unit
),
483 EVENT_PTR(rapl_cores_scale
),
484 EVENT_PTR(rapl_pkg_scale
),
485 EVENT_PTR(rapl_gpu_scale
),
486 EVENT_PTR(rapl_ram_scale
),
490 static struct attribute_group rapl_pmu_events_group
= {
492 .attrs
= NULL
, /* patched at runtime */
495 DEFINE_RAPL_FORMAT_ATTR(event
, event
, "config:0-7");
496 static struct attribute
*rapl_formats_attr
[] = {
497 &format_attr_event
.attr
,
501 static struct attribute_group rapl_pmu_format_group
= {
503 .attrs
= rapl_formats_attr
,
506 const struct attribute_group
*rapl_attr_groups
[] = {
507 &rapl_pmu_attr_group
,
508 &rapl_pmu_format_group
,
509 &rapl_pmu_events_group
,
513 static struct pmu rapl_pmu_class
= {
514 .attr_groups
= rapl_attr_groups
,
515 .task_ctx_nr
= perf_invalid_context
, /* system-wide only */
516 .event_init
= rapl_pmu_event_init
,
517 .add
= rapl_pmu_event_add
, /* must have */
518 .del
= rapl_pmu_event_del
, /* must have */
519 .start
= rapl_pmu_event_start
,
520 .stop
= rapl_pmu_event_stop
,
521 .read
= rapl_pmu_event_read
,
524 static void rapl_cpu_exit(int cpu
)
526 struct rapl_pmu
*pmu
= per_cpu(rapl_pmu
, cpu
);
527 int i
, phys_id
= topology_physical_package_id(cpu
);
530 /* find a new cpu on same package */
531 for_each_online_cpu(i
) {
534 if (phys_id
== topology_physical_package_id(i
)) {
540 * clear cpu from cpumask
541 * if was set in cpumask and still some cpu on package,
542 * then move to new cpu
544 if (cpumask_test_and_clear_cpu(cpu
, &rapl_cpu_mask
) && target
>= 0)
545 cpumask_set_cpu(target
, &rapl_cpu_mask
);
547 WARN_ON(cpumask_empty(&rapl_cpu_mask
));
549 * migrate events and context to new cpu
552 perf_pmu_migrate_context(pmu
->pmu
, cpu
, target
);
554 /* cancel overflow polling timer for CPU */
555 rapl_stop_hrtimer(pmu
);
558 static void rapl_cpu_init(int cpu
)
560 int i
, phys_id
= topology_physical_package_id(cpu
);
562 /* check if phys_is is already covered */
563 for_each_cpu(i
, &rapl_cpu_mask
) {
564 if (phys_id
== topology_physical_package_id(i
))
567 /* was not found, so add it */
568 cpumask_set_cpu(cpu
, &rapl_cpu_mask
);
571 static __init
void rapl_hsw_server_quirk(void)
574 * DRAM domain on HSW server has fixed energy unit which can be
575 * different than the unit from power unit MSR.
576 * "Intel Xeon Processor E5-1600 and E5-2600 v3 Product Families, V2
577 * of 2. Datasheet, September 2014, Reference Number: 330784-001 "
579 rapl_hw_unit
[RAPL_IDX_RAM_NRG_STAT
] = 16;
582 static int rapl_cpu_prepare(int cpu
)
584 struct rapl_pmu
*pmu
= per_cpu(rapl_pmu
, cpu
);
585 int phys_id
= topology_physical_package_id(cpu
);
594 pmu
= kzalloc_node(sizeof(*pmu
), GFP_KERNEL
, cpu_to_node(cpu
));
597 spin_lock_init(&pmu
->lock
);
599 INIT_LIST_HEAD(&pmu
->active_list
);
601 pmu
->pmu
= &rapl_pmu_class
;
604 * use reference of 200W for scaling the timeout
605 * to avoid missing counter overflows.
606 * 200W = 200 Joules/sec
607 * divide interval by 2 to avoid lockstep (2 * 100)
608 * if hw unit is 32, then we use 2 ms 1/200/2
610 if (rapl_hw_unit
[0] < 32)
611 ms
= (1000 / (2 * 100)) * (1ULL << (32 - rapl_hw_unit
[0] - 1));
615 pmu
->timer_interval
= ms_to_ktime(ms
);
617 rapl_hrtimer_init(pmu
);
619 /* set RAPL pmu for this cpu for now */
620 per_cpu(rapl_pmu
, cpu
) = pmu
;
621 per_cpu(rapl_pmu_to_free
, cpu
) = NULL
;
626 static void rapl_cpu_kfree(int cpu
)
628 struct rapl_pmu
*pmu
= per_cpu(rapl_pmu_to_free
, cpu
);
632 per_cpu(rapl_pmu_to_free
, cpu
) = NULL
;
635 static int rapl_cpu_dying(int cpu
)
637 struct rapl_pmu
*pmu
= per_cpu(rapl_pmu
, cpu
);
642 per_cpu(rapl_pmu
, cpu
) = NULL
;
644 per_cpu(rapl_pmu_to_free
, cpu
) = pmu
;
649 static int rapl_cpu_notifier(struct notifier_block
*self
,
650 unsigned long action
, void *hcpu
)
652 unsigned int cpu
= (long)hcpu
;
654 switch (action
& ~CPU_TASKS_FROZEN
) {
656 rapl_cpu_prepare(cpu
);
661 case CPU_UP_CANCELED
:
669 case CPU_DOWN_PREPARE
:
679 static int rapl_check_hw_unit(void)
681 u64 msr_rapl_power_unit_bits
;
684 /* protect rdmsrl() to handle virtualization */
685 if (rdmsrl_safe(MSR_RAPL_POWER_UNIT
, &msr_rapl_power_unit_bits
))
687 for (i
= 0; i
< NR_RAPL_DOMAINS
; i
++)
688 rapl_hw_unit
[i
] = (msr_rapl_power_unit_bits
>> 8) & 0x1FULL
;
693 static const struct x86_cpu_id rapl_cpu_match
[] = {
694 [0] = { .vendor
= X86_VENDOR_INTEL
, .family
= 6 },
698 static int __init
rapl_pmu_init(void)
700 struct rapl_pmu
*pmu
;
702 struct x86_pmu_quirk
*quirk
;
706 * check for Intel processor family 6
708 if (!x86_match_cpu(rapl_cpu_match
))
711 /* check supported CPU */
712 switch (boot_cpu_data
.x86_model
) {
713 case 42: /* Sandy Bridge */
714 case 58: /* Ivy Bridge */
715 rapl_cntr_mask
= RAPL_IDX_CLN
;
716 rapl_pmu_events_group
.attrs
= rapl_events_cln_attr
;
718 case 63: /* Haswell-Server */
719 rapl_add_quirk(rapl_hsw_server_quirk
);
720 rapl_cntr_mask
= RAPL_IDX_SRV
;
721 rapl_pmu_events_group
.attrs
= rapl_events_srv_attr
;
723 case 60: /* Haswell */
724 case 69: /* Haswell-Celeron */
725 case 61: /* Broadwell */
726 rapl_cntr_mask
= RAPL_IDX_HSW
;
727 rapl_pmu_events_group
.attrs
= rapl_events_hsw_attr
;
729 case 45: /* Sandy Bridge-EP */
730 case 62: /* IvyTown */
731 rapl_cntr_mask
= RAPL_IDX_SRV
;
732 rapl_pmu_events_group
.attrs
= rapl_events_srv_attr
;
739 ret
= rapl_check_hw_unit();
743 /* run cpu model quirks */
744 for (quirk
= rapl_quirks
; quirk
; quirk
= quirk
->next
)
746 cpu_notifier_register_begin();
748 for_each_online_cpu(cpu
) {
749 ret
= rapl_cpu_prepare(cpu
);
755 __perf_cpu_notifier(rapl_cpu_notifier
);
757 ret
= perf_pmu_register(&rapl_pmu_class
, "power", -1);
759 pr_info("RAPL PMU detected, registration failed (%d), RAPL PMU disabled\n", ret
);
760 cpu_notifier_register_done();
764 pmu
= __this_cpu_read(rapl_pmu
);
766 pr_info("RAPL PMU detected,"
767 " API unit is 2^-32 Joules,"
769 " %llu ms ovfl timer\n",
770 hweight32(rapl_cntr_mask
),
771 ktime_to_ms(pmu
->timer_interval
));
772 for (i
= 0; i
< NR_RAPL_DOMAINS
; i
++) {
773 if (rapl_cntr_mask
& (1 << i
)) {
774 pr_info("hw unit of domain %s 2^-%d Joules\n",
775 rapl_domain_names
[i
], rapl_hw_unit
[i
]);
779 cpu_notifier_register_done();
783 device_initcall(rapl_pmu_init
);