2 * Thermal throttle event support code (such as syslog messaging and rate
3 * limiting) that was factored out from x86_64 (mce_intel.c) and i386 (p4.c).
5 * This allows consistent reporting of CPU thermal throttle events.
7 * Maintains a counter in /sys that keeps track of the number of thermal
8 * events, such that the user knows how bad the thermal problem might be
9 * (since the logging to syslog and mcelog is rate limited).
11 * Author: Dmitriy Zavin (dmitriyz@google.com)
13 * Credits: Adapted from Zwane Mwaikambo's original code in mce_intel.c.
14 * Inspired by Ross Biro's and Al Borchers' counter code.
16 #include <linux/interrupt.h>
17 #include <linux/notifier.h>
18 #include <linux/jiffies.h>
19 #include <linux/kernel.h>
20 #include <linux/percpu.h>
21 #include <linux/export.h>
22 #include <linux/types.h>
23 #include <linux/init.h>
24 #include <linux/smp.h>
25 #include <linux/cpu.h>
27 #include <asm/processor.h>
33 /* How long to wait between reporting thermal events */
34 #define CHECK_INTERVAL (300 * HZ)
36 #define THERMAL_THROTTLING_EVENT 0
37 #define POWER_LIMIT_EVENT 1
40 * Current thermal event state:
42 struct _thermal_state
{
47 unsigned long last_count
;
50 struct thermal_state
{
51 struct _thermal_state core_throttle
;
52 struct _thermal_state core_power_limit
;
53 struct _thermal_state package_throttle
;
54 struct _thermal_state package_power_limit
;
55 struct _thermal_state core_thresh0
;
56 struct _thermal_state core_thresh1
;
59 /* Callback to handle core threshold interrupts */
60 int (*platform_thermal_notify
)(__u64 msr_val
);
61 EXPORT_SYMBOL(platform_thermal_notify
);
63 static DEFINE_PER_CPU(struct thermal_state
, thermal_state
);
65 static atomic_t therm_throt_en
= ATOMIC_INIT(0);
67 static u32 lvtthmr_init __read_mostly
;
70 #define define_therm_throt_device_one_ro(_name) \
71 static DEVICE_ATTR(_name, 0444, \
72 therm_throt_device_show_##_name, \
75 #define define_therm_throt_device_show_func(event, name) \
77 static ssize_t therm_throt_device_show_##event##_##name( \
79 struct device_attribute *attr, \
82 unsigned int cpu = dev->id; \
85 preempt_disable(); /* CPU hotplug */ \
86 if (cpu_online(cpu)) { \
87 ret = sprintf(buf, "%lu\n", \
88 per_cpu(thermal_state, cpu).event.name); \
96 define_therm_throt_device_show_func(core_throttle
, count
);
97 define_therm_throt_device_one_ro(core_throttle_count
);
99 define_therm_throt_device_show_func(core_power_limit
, count
);
100 define_therm_throt_device_one_ro(core_power_limit_count
);
102 define_therm_throt_device_show_func(package_throttle
, count
);
103 define_therm_throt_device_one_ro(package_throttle_count
);
105 define_therm_throt_device_show_func(package_power_limit
, count
);
106 define_therm_throt_device_one_ro(package_power_limit_count
);
108 static struct attribute
*thermal_throttle_attrs
[] = {
109 &dev_attr_core_throttle_count
.attr
,
113 static struct attribute_group thermal_attr_group
= {
114 .attrs
= thermal_throttle_attrs
,
115 .name
= "thermal_throttle"
117 #endif /* CONFIG_SYSFS */
120 #define PACKAGE_LEVEL 1
123 * therm_throt_process - Process thermal throttling event from interrupt
124 * @curr: Whether the condition is current or not (boolean), since the
125 * thermal interrupt normally gets called both when the thermal
126 * event begins and once the event has ended.
128 * This function is called by the thermal interrupt after the
129 * IRQ has been acknowledged.
131 * It will take care of rate limiting and printing messages to the syslog.
133 * Returns: 0 : Event should NOT be further logged, i.e. still in
134 * "timeout" from previous log message.
135 * 1 : Event should be logged further, and a message has been
136 * printed to the syslog.
138 static int therm_throt_process(bool new_event
, int event
, int level
)
140 struct _thermal_state
*state
;
141 unsigned int this_cpu
= smp_processor_id();
144 struct thermal_state
*pstate
= &per_cpu(thermal_state
, this_cpu
);
146 now
= get_jiffies_64();
147 if (level
== CORE_LEVEL
) {
148 if (event
== THERMAL_THROTTLING_EVENT
)
149 state
= &pstate
->core_throttle
;
150 else if (event
== POWER_LIMIT_EVENT
)
151 state
= &pstate
->core_power_limit
;
154 } else if (level
== PACKAGE_LEVEL
) {
155 if (event
== THERMAL_THROTTLING_EVENT
)
156 state
= &pstate
->package_throttle
;
157 else if (event
== POWER_LIMIT_EVENT
)
158 state
= &pstate
->package_power_limit
;
164 old_event
= state
->new_event
;
165 state
->new_event
= new_event
;
170 if (time_before64(now
, state
->next_check
) &&
171 state
->count
!= state
->last_count
)
174 state
->next_check
= now
+ CHECK_INTERVAL
;
175 state
->last_count
= state
->count
;
177 /* if we just entered the thermal event */
179 if (event
== THERMAL_THROTTLING_EVENT
)
180 printk(KERN_CRIT
"CPU%d: %s temperature above threshold, cpu clock throttled (total events = %lu)\n",
182 level
== CORE_LEVEL
? "Core" : "Package",
185 printk(KERN_CRIT
"CPU%d: %s power limit notification (total events = %lu)\n",
187 level
== CORE_LEVEL
? "Core" : "Package",
192 if (event
== THERMAL_THROTTLING_EVENT
)
193 printk(KERN_INFO
"CPU%d: %s temperature/speed normal\n",
195 level
== CORE_LEVEL
? "Core" : "Package");
197 printk(KERN_INFO
"CPU%d: %s power limit normal\n",
199 level
== CORE_LEVEL
? "Core" : "Package");
206 static int thresh_event_valid(int event
)
208 struct _thermal_state
*state
;
209 unsigned int this_cpu
= smp_processor_id();
210 struct thermal_state
*pstate
= &per_cpu(thermal_state
, this_cpu
);
211 u64 now
= get_jiffies_64();
213 state
= (event
== 0) ? &pstate
->core_thresh0
: &pstate
->core_thresh1
;
215 if (time_before64(now
, state
->next_check
))
218 state
->next_check
= now
+ CHECK_INTERVAL
;
223 /* Add/Remove thermal_throttle interface for CPU device: */
224 static __cpuinit
int thermal_throttle_add_dev(struct device
*dev
,
228 struct cpuinfo_x86
*c
= &cpu_data(cpu
);
230 err
= sysfs_create_group(&dev
->kobj
, &thermal_attr_group
);
234 if (cpu_has(c
, X86_FEATURE_PLN
))
235 err
= sysfs_add_file_to_group(&dev
->kobj
,
236 &dev_attr_core_power_limit_count
.attr
,
237 thermal_attr_group
.name
);
238 if (cpu_has(c
, X86_FEATURE_PTS
)) {
239 err
= sysfs_add_file_to_group(&dev
->kobj
,
240 &dev_attr_package_throttle_count
.attr
,
241 thermal_attr_group
.name
);
242 if (cpu_has(c
, X86_FEATURE_PLN
))
243 err
= sysfs_add_file_to_group(&dev
->kobj
,
244 &dev_attr_package_power_limit_count
.attr
,
245 thermal_attr_group
.name
);
251 static __cpuinit
void thermal_throttle_remove_dev(struct device
*dev
)
253 sysfs_remove_group(&dev
->kobj
, &thermal_attr_group
);
256 /* Mutex protecting device creation against CPU hotplug: */
257 static DEFINE_MUTEX(therm_cpu_lock
);
259 /* Get notified when a cpu comes on/off. Be hotplug friendly. */
261 thermal_throttle_cpu_callback(struct notifier_block
*nfb
,
262 unsigned long action
,
265 unsigned int cpu
= (unsigned long)hcpu
;
269 dev
= get_cpu_device(cpu
);
273 case CPU_UP_PREPARE_FROZEN
:
274 mutex_lock(&therm_cpu_lock
);
275 err
= thermal_throttle_add_dev(dev
, cpu
);
276 mutex_unlock(&therm_cpu_lock
);
279 case CPU_UP_CANCELED
:
280 case CPU_UP_CANCELED_FROZEN
:
282 case CPU_DEAD_FROZEN
:
283 mutex_lock(&therm_cpu_lock
);
284 thermal_throttle_remove_dev(dev
);
285 mutex_unlock(&therm_cpu_lock
);
288 return notifier_from_errno(err
);
291 static struct notifier_block thermal_throttle_cpu_notifier __cpuinitdata
=
293 .notifier_call
= thermal_throttle_cpu_callback
,
296 static __init
int thermal_throttle_init_device(void)
298 unsigned int cpu
= 0;
301 if (!atomic_read(&therm_throt_en
))
304 register_hotcpu_notifier(&thermal_throttle_cpu_notifier
);
306 #ifdef CONFIG_HOTPLUG_CPU
307 mutex_lock(&therm_cpu_lock
);
309 /* connect live CPUs to sysfs */
310 for_each_online_cpu(cpu
) {
311 err
= thermal_throttle_add_dev(get_cpu_device(cpu
), cpu
);
314 #ifdef CONFIG_HOTPLUG_CPU
315 mutex_unlock(&therm_cpu_lock
);
320 device_initcall(thermal_throttle_init_device
);
322 #endif /* CONFIG_SYSFS */
324 static void notify_thresholds(__u64 msr_val
)
326 /* check whether the interrupt handler is defined;
327 * otherwise simply return
329 if (!platform_thermal_notify
)
332 /* lower threshold reached */
333 if ((msr_val
& THERM_LOG_THRESHOLD0
) && thresh_event_valid(0))
334 platform_thermal_notify(msr_val
);
335 /* higher threshold reached */
336 if ((msr_val
& THERM_LOG_THRESHOLD1
) && thresh_event_valid(1))
337 platform_thermal_notify(msr_val
);
340 /* Thermal transition interrupt handler */
341 static void intel_thermal_interrupt(void)
345 rdmsrl(MSR_IA32_THERM_STATUS
, msr_val
);
347 /* Check for violation of core thermal thresholds*/
348 notify_thresholds(msr_val
);
350 if (therm_throt_process(msr_val
& THERM_STATUS_PROCHOT
,
351 THERMAL_THROTTLING_EVENT
,
353 mce_log_therm_throt_event(msr_val
);
355 if (this_cpu_has(X86_FEATURE_PLN
))
356 therm_throt_process(msr_val
& THERM_STATUS_POWER_LIMIT
,
360 if (this_cpu_has(X86_FEATURE_PTS
)) {
361 rdmsrl(MSR_IA32_PACKAGE_THERM_STATUS
, msr_val
);
362 therm_throt_process(msr_val
& PACKAGE_THERM_STATUS_PROCHOT
,
363 THERMAL_THROTTLING_EVENT
,
365 if (this_cpu_has(X86_FEATURE_PLN
))
366 therm_throt_process(msr_val
&
367 PACKAGE_THERM_STATUS_POWER_LIMIT
,
373 static void unexpected_thermal_interrupt(void)
375 printk(KERN_ERR
"CPU%d: Unexpected LVT thermal interrupt!\n",
379 static void (*smp_thermal_vector
)(void) = unexpected_thermal_interrupt
;
381 asmlinkage
void smp_thermal_interrupt(struct pt_regs
*regs
)
385 inc_irq_stat(irq_thermal_count
);
386 smp_thermal_vector();
388 /* Ack only at the end to avoid potential reentry */
392 /* Thermal monitoring depends on APIC, ACPI and clock modulation */
393 static int intel_thermal_supported(struct cpuinfo_x86
*c
)
397 if (!cpu_has(c
, X86_FEATURE_ACPI
) || !cpu_has(c
, X86_FEATURE_ACC
))
402 void __init
mcheck_intel_therm_init(void)
405 * This function is only called on boot CPU. Save the init thermal
406 * LVT value on BSP and use that value to restore APs' thermal LVT
407 * entry BIOS programmed later
409 if (intel_thermal_supported(&boot_cpu_data
))
410 lvtthmr_init
= apic_read(APIC_LVTTHMR
);
413 void intel_init_thermal(struct cpuinfo_x86
*c
)
415 unsigned int cpu
= smp_processor_id();
419 if (!intel_thermal_supported(c
))
423 * First check if its enabled already, in which case there might
424 * be some SMM goo which handles it, so we can't even put a handler
425 * since it might be delivered via SMI already:
427 rdmsr(MSR_IA32_MISC_ENABLE
, l
, h
);
431 * The initial value of thermal LVT entries on all APs always reads
432 * 0x10000 because APs are woken up by BSP issuing INIT-SIPI-SIPI
433 * sequence to them and LVT registers are reset to 0s except for
434 * the mask bits which are set to 1s when APs receive INIT IPI.
435 * If BIOS takes over the thermal interrupt and sets its interrupt
436 * delivery mode to SMI (not fixed), it restores the value that the
437 * BIOS has programmed on AP based on BSP's info we saved since BIOS
438 * is always setting the same value for all threads/cores.
440 if ((h
& APIC_DM_FIXED_MASK
) != APIC_DM_FIXED
)
441 apic_write(APIC_LVTTHMR
, lvtthmr_init
);
444 if ((l
& MSR_IA32_MISC_ENABLE_TM1
) && (h
& APIC_DM_SMI
)) {
446 "CPU%d: Thermal monitoring handled by SMI\n", cpu
);
450 /* Check whether a vector already exists */
451 if (h
& APIC_VECTOR_MASK
) {
453 "CPU%d: Thermal LVT vector (%#x) already installed\n",
454 cpu
, (h
& APIC_VECTOR_MASK
));
458 /* early Pentium M models use different method for enabling TM2 */
459 if (cpu_has(c
, X86_FEATURE_TM2
)) {
460 if (c
->x86
== 6 && (c
->x86_model
== 9 || c
->x86_model
== 13)) {
461 rdmsr(MSR_THERM2_CTL
, l
, h
);
462 if (l
& MSR_THERM2_CTL_TM_SELECT
)
464 } else if (l
& MSR_IA32_MISC_ENABLE_TM2
)
468 /* We'll mask the thermal vector in the lapic till we're ready: */
469 h
= THERMAL_APIC_VECTOR
| APIC_DM_FIXED
| APIC_LVT_MASKED
;
470 apic_write(APIC_LVTTHMR
, h
);
472 rdmsr(MSR_IA32_THERM_INTERRUPT
, l
, h
);
473 if (cpu_has(c
, X86_FEATURE_PLN
))
474 wrmsr(MSR_IA32_THERM_INTERRUPT
,
475 l
| (THERM_INT_LOW_ENABLE
476 | THERM_INT_HIGH_ENABLE
| THERM_INT_PLN_ENABLE
), h
);
478 wrmsr(MSR_IA32_THERM_INTERRUPT
,
479 l
| (THERM_INT_LOW_ENABLE
| THERM_INT_HIGH_ENABLE
), h
);
481 if (cpu_has(c
, X86_FEATURE_PTS
)) {
482 rdmsr(MSR_IA32_PACKAGE_THERM_INTERRUPT
, l
, h
);
483 if (cpu_has(c
, X86_FEATURE_PLN
))
484 wrmsr(MSR_IA32_PACKAGE_THERM_INTERRUPT
,
485 l
| (PACKAGE_THERM_INT_LOW_ENABLE
486 | PACKAGE_THERM_INT_HIGH_ENABLE
487 | PACKAGE_THERM_INT_PLN_ENABLE
), h
);
489 wrmsr(MSR_IA32_PACKAGE_THERM_INTERRUPT
,
490 l
| (PACKAGE_THERM_INT_LOW_ENABLE
491 | PACKAGE_THERM_INT_HIGH_ENABLE
), h
);
494 smp_thermal_vector
= intel_thermal_interrupt
;
496 rdmsr(MSR_IA32_MISC_ENABLE
, l
, h
);
497 wrmsr(MSR_IA32_MISC_ENABLE
, l
| MSR_IA32_MISC_ENABLE_TM1
, h
);
499 /* Unmask the thermal vector: */
500 l
= apic_read(APIC_LVTTHMR
);
501 apic_write(APIC_LVTTHMR
, l
& ~APIC_LVT_MASKED
);
503 printk_once(KERN_INFO
"CPU0: Thermal monitoring enabled (%s)\n",
504 tm2
? "TM2" : "TM1");
506 /* enable thermal throttle processing */
507 atomic_set(&therm_throt_en
, 1);