2 * drivers/cpufreq/cpufreq_ondemand.c
4 * Copyright (C) 2001 Russell King
5 * (C) 2003 Venkatesh Pallipadi <venkatesh.pallipadi@intel.com>.
6 * Jun Nakajima <jun.nakajima@intel.com>
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License version 2 as
10 * published by the Free Software Foundation.
13 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
15 #include <linux/cpu.h>
16 #include <linux/percpu-defs.h>
17 #include <linux/slab.h>
18 #include <linux/tick.h>
19 #include <linux/sched/cpufreq.h>
21 #include "cpufreq_ondemand.h"
23 /* On-demand governor macros */
24 #define DEF_FREQUENCY_UP_THRESHOLD (80)
25 #define DEF_SAMPLING_DOWN_FACTOR (1)
26 #define MAX_SAMPLING_DOWN_FACTOR (100000)
27 #define MICRO_FREQUENCY_UP_THRESHOLD (95)
28 #define MICRO_FREQUENCY_MIN_SAMPLE_RATE (10000)
29 #define MIN_FREQUENCY_UP_THRESHOLD (1)
30 #define MAX_FREQUENCY_UP_THRESHOLD (100)
32 static struct od_ops od_ops
;
34 static unsigned int default_powersave_bias
;
37 * Not all CPUs want IO time to be accounted as busy; this depends on how
38 * efficient idling at a higher frequency/voltage is.
39 * Pavel Machek says this is not so for various generations of AMD and old
41 * Mike Chan (android.com) claims this is also not true for ARM.
42 * Because of this, whitelist specific known (series) of CPUs by default, and
43 * leave all others up to the user.
45 static int should_io_be_busy(void)
47 #if defined(CONFIG_X86)
49 * For Intel, Core 2 (model 15) and later have an efficient idle.
51 if (boot_cpu_data
.x86_vendor
== X86_VENDOR_INTEL
&&
52 boot_cpu_data
.x86
== 6 &&
53 boot_cpu_data
.x86_model
>= 15)
60 * Find right freq to be set now with powersave_bias on.
61 * Returns the freq_hi to be used right now and will set freq_hi_delay_us,
62 * freq_lo, and freq_lo_delay_us in percpu area for averaging freqs.
64 static unsigned int generic_powersave_bias_target(struct cpufreq_policy
*policy
,
65 unsigned int freq_next
, unsigned int relation
)
67 unsigned int freq_req
, freq_reduc
, freq_avg
;
68 unsigned int freq_hi
, freq_lo
;
70 unsigned int delay_hi_us
;
71 struct policy_dbs_info
*policy_dbs
= policy
->governor_data
;
72 struct od_policy_dbs_info
*dbs_info
= to_dbs_info(policy_dbs
);
73 struct dbs_data
*dbs_data
= policy_dbs
->dbs_data
;
74 struct od_dbs_tuners
*od_tuners
= dbs_data
->tuners
;
75 struct cpufreq_frequency_table
*freq_table
= policy
->freq_table
;
78 dbs_info
->freq_lo
= 0;
79 dbs_info
->freq_lo_delay_us
= 0;
83 index
= cpufreq_frequency_table_target(policy
, freq_next
, relation
);
84 freq_req
= freq_table
[index
].frequency
;
85 freq_reduc
= freq_req
* od_tuners
->powersave_bias
/ 1000;
86 freq_avg
= freq_req
- freq_reduc
;
88 /* Find freq bounds for freq_avg in freq_table */
89 index
= cpufreq_table_find_index_h(policy
, freq_avg
);
90 freq_lo
= freq_table
[index
].frequency
;
91 index
= cpufreq_table_find_index_l(policy
, freq_avg
);
92 freq_hi
= freq_table
[index
].frequency
;
94 /* Find out how long we have to be in hi and lo freqs */
95 if (freq_hi
== freq_lo
) {
96 dbs_info
->freq_lo
= 0;
97 dbs_info
->freq_lo_delay_us
= 0;
100 delay_hi_us
= (freq_avg
- freq_lo
) * dbs_data
->sampling_rate
;
101 delay_hi_us
+= (freq_hi
- freq_lo
) / 2;
102 delay_hi_us
/= freq_hi
- freq_lo
;
103 dbs_info
->freq_hi_delay_us
= delay_hi_us
;
104 dbs_info
->freq_lo
= freq_lo
;
105 dbs_info
->freq_lo_delay_us
= dbs_data
->sampling_rate
- delay_hi_us
;
109 static void ondemand_powersave_bias_init(struct cpufreq_policy
*policy
)
111 struct od_policy_dbs_info
*dbs_info
= to_dbs_info(policy
->governor_data
);
113 dbs_info
->freq_lo
= 0;
116 static void dbs_freq_increase(struct cpufreq_policy
*policy
, unsigned int freq
)
118 struct policy_dbs_info
*policy_dbs
= policy
->governor_data
;
119 struct dbs_data
*dbs_data
= policy_dbs
->dbs_data
;
120 struct od_dbs_tuners
*od_tuners
= dbs_data
->tuners
;
122 if (od_tuners
->powersave_bias
)
123 freq
= od_ops
.powersave_bias_target(policy
, freq
,
125 else if (policy
->cur
== policy
->max
)
128 __cpufreq_driver_target(policy
, freq
, od_tuners
->powersave_bias
?
129 CPUFREQ_RELATION_L
: CPUFREQ_RELATION_H
);
133 * Every sampling_rate, we check, if current idle time is less than 20%
134 * (default), then we try to increase frequency. Else, we adjust the frequency
135 * proportional to load.
137 static void od_update(struct cpufreq_policy
*policy
)
139 struct policy_dbs_info
*policy_dbs
= policy
->governor_data
;
140 struct od_policy_dbs_info
*dbs_info
= to_dbs_info(policy_dbs
);
141 struct dbs_data
*dbs_data
= policy_dbs
->dbs_data
;
142 struct od_dbs_tuners
*od_tuners
= dbs_data
->tuners
;
143 unsigned int load
= dbs_update(policy
);
145 dbs_info
->freq_lo
= 0;
147 /* Check for frequency increase */
148 if (load
> dbs_data
->up_threshold
) {
149 /* If switching to max speed, apply sampling_down_factor */
150 if (policy
->cur
< policy
->max
)
151 policy_dbs
->rate_mult
= dbs_data
->sampling_down_factor
;
152 dbs_freq_increase(policy
, policy
->max
);
154 /* Calculate the next frequency proportional to load */
155 unsigned int freq_next
, min_f
, max_f
;
157 min_f
= policy
->cpuinfo
.min_freq
;
158 max_f
= policy
->cpuinfo
.max_freq
;
159 freq_next
= min_f
+ load
* (max_f
- min_f
) / 100;
161 /* No longer fully busy, reset rate_mult */
162 policy_dbs
->rate_mult
= 1;
164 if (od_tuners
->powersave_bias
)
165 freq_next
= od_ops
.powersave_bias_target(policy
,
169 __cpufreq_driver_target(policy
, freq_next
, CPUFREQ_RELATION_C
);
173 static unsigned int od_dbs_update(struct cpufreq_policy
*policy
)
175 struct policy_dbs_info
*policy_dbs
= policy
->governor_data
;
176 struct dbs_data
*dbs_data
= policy_dbs
->dbs_data
;
177 struct od_policy_dbs_info
*dbs_info
= to_dbs_info(policy_dbs
);
178 int sample_type
= dbs_info
->sample_type
;
180 /* Common NORMAL_SAMPLE setup */
181 dbs_info
->sample_type
= OD_NORMAL_SAMPLE
;
183 * OD_SUB_SAMPLE doesn't make sense if sample_delay_ns is 0, so ignore
186 if (sample_type
== OD_SUB_SAMPLE
&& policy_dbs
->sample_delay_ns
> 0) {
187 __cpufreq_driver_target(policy
, dbs_info
->freq_lo
,
189 return dbs_info
->freq_lo_delay_us
;
194 if (dbs_info
->freq_lo
) {
195 /* Setup SUB_SAMPLE */
196 dbs_info
->sample_type
= OD_SUB_SAMPLE
;
197 return dbs_info
->freq_hi_delay_us
;
200 return dbs_data
->sampling_rate
* policy_dbs
->rate_mult
;
203 /************************** sysfs interface ************************/
204 static struct dbs_governor od_dbs_gov
;
206 static ssize_t
store_io_is_busy(struct gov_attr_set
*attr_set
, const char *buf
,
209 struct dbs_data
*dbs_data
= to_dbs_data(attr_set
);
213 ret
= sscanf(buf
, "%u", &input
);
216 dbs_data
->io_is_busy
= !!input
;
218 /* we need to re-evaluate prev_cpu_idle */
219 gov_update_cpu_data(dbs_data
);
224 static ssize_t
store_up_threshold(struct gov_attr_set
*attr_set
,
225 const char *buf
, size_t count
)
227 struct dbs_data
*dbs_data
= to_dbs_data(attr_set
);
230 ret
= sscanf(buf
, "%u", &input
);
232 if (ret
!= 1 || input
> MAX_FREQUENCY_UP_THRESHOLD
||
233 input
< MIN_FREQUENCY_UP_THRESHOLD
) {
237 dbs_data
->up_threshold
= input
;
241 static ssize_t
store_sampling_down_factor(struct gov_attr_set
*attr_set
,
242 const char *buf
, size_t count
)
244 struct dbs_data
*dbs_data
= to_dbs_data(attr_set
);
245 struct policy_dbs_info
*policy_dbs
;
248 ret
= sscanf(buf
, "%u", &input
);
250 if (ret
!= 1 || input
> MAX_SAMPLING_DOWN_FACTOR
|| input
< 1)
253 dbs_data
->sampling_down_factor
= input
;
255 /* Reset down sampling multiplier in case it was active */
256 list_for_each_entry(policy_dbs
, &attr_set
->policy_list
, list
) {
258 * Doing this without locking might lead to using different
259 * rate_mult values in od_update() and od_dbs_update().
261 mutex_lock(&policy_dbs
->update_mutex
);
262 policy_dbs
->rate_mult
= 1;
263 mutex_unlock(&policy_dbs
->update_mutex
);
269 static ssize_t
store_ignore_nice_load(struct gov_attr_set
*attr_set
,
270 const char *buf
, size_t count
)
272 struct dbs_data
*dbs_data
= to_dbs_data(attr_set
);
276 ret
= sscanf(buf
, "%u", &input
);
283 if (input
== dbs_data
->ignore_nice_load
) { /* nothing to do */
286 dbs_data
->ignore_nice_load
= input
;
288 /* we need to re-evaluate prev_cpu_idle */
289 gov_update_cpu_data(dbs_data
);
294 static ssize_t
store_powersave_bias(struct gov_attr_set
*attr_set
,
295 const char *buf
, size_t count
)
297 struct dbs_data
*dbs_data
= to_dbs_data(attr_set
);
298 struct od_dbs_tuners
*od_tuners
= dbs_data
->tuners
;
299 struct policy_dbs_info
*policy_dbs
;
302 ret
= sscanf(buf
, "%u", &input
);
310 od_tuners
->powersave_bias
= input
;
312 list_for_each_entry(policy_dbs
, &attr_set
->policy_list
, list
)
313 ondemand_powersave_bias_init(policy_dbs
->policy
);
318 gov_show_one_common(sampling_rate
);
319 gov_show_one_common(up_threshold
);
320 gov_show_one_common(sampling_down_factor
);
321 gov_show_one_common(ignore_nice_load
);
322 gov_show_one_common(io_is_busy
);
323 gov_show_one(od
, powersave_bias
);
325 gov_attr_rw(sampling_rate
);
326 gov_attr_rw(io_is_busy
);
327 gov_attr_rw(up_threshold
);
328 gov_attr_rw(sampling_down_factor
);
329 gov_attr_rw(ignore_nice_load
);
330 gov_attr_rw(powersave_bias
);
332 static struct attribute
*od_attributes
[] = {
335 &sampling_down_factor
.attr
,
336 &ignore_nice_load
.attr
,
337 &powersave_bias
.attr
,
342 /************************** sysfs end ************************/
344 static struct policy_dbs_info
*od_alloc(void)
346 struct od_policy_dbs_info
*dbs_info
;
348 dbs_info
= kzalloc(sizeof(*dbs_info
), GFP_KERNEL
);
349 return dbs_info
? &dbs_info
->policy_dbs
: NULL
;
352 static void od_free(struct policy_dbs_info
*policy_dbs
)
354 kfree(to_dbs_info(policy_dbs
));
357 static int od_init(struct dbs_data
*dbs_data
)
359 struct od_dbs_tuners
*tuners
;
363 tuners
= kzalloc(sizeof(*tuners
), GFP_KERNEL
);
368 idle_time
= get_cpu_idle_time_us(cpu
, NULL
);
370 if (idle_time
!= -1ULL) {
371 /* Idle micro accounting is supported. Use finer thresholds */
372 dbs_data
->up_threshold
= MICRO_FREQUENCY_UP_THRESHOLD
;
374 dbs_data
->up_threshold
= DEF_FREQUENCY_UP_THRESHOLD
;
377 dbs_data
->sampling_down_factor
= DEF_SAMPLING_DOWN_FACTOR
;
378 dbs_data
->ignore_nice_load
= 0;
379 tuners
->powersave_bias
= default_powersave_bias
;
380 dbs_data
->io_is_busy
= should_io_be_busy();
382 dbs_data
->tuners
= tuners
;
386 static void od_exit(struct dbs_data
*dbs_data
)
388 kfree(dbs_data
->tuners
);
391 static void od_start(struct cpufreq_policy
*policy
)
393 struct od_policy_dbs_info
*dbs_info
= to_dbs_info(policy
->governor_data
);
395 dbs_info
->sample_type
= OD_NORMAL_SAMPLE
;
396 ondemand_powersave_bias_init(policy
);
399 static struct od_ops od_ops
= {
400 .powersave_bias_target
= generic_powersave_bias_target
,
403 static struct dbs_governor od_dbs_gov
= {
404 .gov
= CPUFREQ_DBS_GOVERNOR_INITIALIZER("ondemand"),
405 .kobj_type
= { .default_attrs
= od_attributes
},
406 .gov_dbs_update
= od_dbs_update
,
414 #define CPU_FREQ_GOV_ONDEMAND (&od_dbs_gov.gov)
416 static void od_set_powersave_bias(unsigned int powersave_bias
)
421 default_powersave_bias
= powersave_bias
;
422 cpumask_clear(&done
);
425 for_each_online_cpu(cpu
) {
426 struct cpufreq_policy
*policy
;
427 struct policy_dbs_info
*policy_dbs
;
428 struct dbs_data
*dbs_data
;
429 struct od_dbs_tuners
*od_tuners
;
431 if (cpumask_test_cpu(cpu
, &done
))
434 policy
= cpufreq_cpu_get_raw(cpu
);
435 if (!policy
|| policy
->governor
!= CPU_FREQ_GOV_ONDEMAND
)
438 policy_dbs
= policy
->governor_data
;
442 cpumask_or(&done
, &done
, policy
->cpus
);
444 dbs_data
= policy_dbs
->dbs_data
;
445 od_tuners
= dbs_data
->tuners
;
446 od_tuners
->powersave_bias
= default_powersave_bias
;
451 void od_register_powersave_bias_handler(unsigned int (*f
)
452 (struct cpufreq_policy
*, unsigned int, unsigned int),
453 unsigned int powersave_bias
)
455 od_ops
.powersave_bias_target
= f
;
456 od_set_powersave_bias(powersave_bias
);
458 EXPORT_SYMBOL_GPL(od_register_powersave_bias_handler
);
460 void od_unregister_powersave_bias_handler(void)
462 od_ops
.powersave_bias_target
= generic_powersave_bias_target
;
463 od_set_powersave_bias(0);
465 EXPORT_SYMBOL_GPL(od_unregister_powersave_bias_handler
);
467 static int __init
cpufreq_gov_dbs_init(void)
469 return cpufreq_register_governor(CPU_FREQ_GOV_ONDEMAND
);
472 static void __exit
cpufreq_gov_dbs_exit(void)
474 cpufreq_unregister_governor(CPU_FREQ_GOV_ONDEMAND
);
477 MODULE_AUTHOR("Venkatesh Pallipadi <venkatesh.pallipadi@intel.com>");
478 MODULE_AUTHOR("Alexey Starikovskiy <alexey.y.starikovskiy@intel.com>");
479 MODULE_DESCRIPTION("'cpufreq_ondemand' - A dynamic cpufreq governor for "
480 "Low Latency Frequency Transition capable processors");
481 MODULE_LICENSE("GPL");
483 #ifdef CONFIG_CPU_FREQ_DEFAULT_GOV_ONDEMAND
484 struct cpufreq_governor
*cpufreq_default_governor(void)
486 return CPU_FREQ_GOV_ONDEMAND
;
489 fs_initcall(cpufreq_gov_dbs_init
);
491 module_init(cpufreq_gov_dbs_init
);
493 module_exit(cpufreq_gov_dbs_exit
);