cpufreq: governor: initialize/destroy timer_mutex with 'shared'
[deliverable/linux.git] / drivers / cpufreq / cpufreq_ondemand.c
CommitLineData
1da177e4
LT
1/*
2 * drivers/cpufreq/cpufreq_ondemand.c
3 *
4 * Copyright (C) 2001 Russell King
5 * (C) 2003 Venkatesh Pallipadi <venkatesh.pallipadi@intel.com>.
6 * Jun Nakajima <jun.nakajima@intel.com>
7 *
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.
11 */
12
4471a34f
VK
13#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
14
5ff0a268 15#include <linux/cpu.h>
4471a34f 16#include <linux/percpu-defs.h>
4d5dcc42 17#include <linux/slab.h>
80800913 18#include <linux/tick.h>
4471a34f 19#include "cpufreq_governor.h"
1da177e4 20
06eb09d1 21/* On-demand governor macros */
1da177e4 22#define DEF_FREQUENCY_UP_THRESHOLD (80)
3f78a9f7
DN
23#define DEF_SAMPLING_DOWN_FACTOR (1)
24#define MAX_SAMPLING_DOWN_FACTOR (100000)
80800913 25#define MICRO_FREQUENCY_UP_THRESHOLD (95)
cef9615a 26#define MICRO_FREQUENCY_MIN_SAMPLE_RATE (10000)
c29f1403 27#define MIN_FREQUENCY_UP_THRESHOLD (11)
1da177e4
LT
28#define MAX_FREQUENCY_UP_THRESHOLD (100)
29
4471a34f 30static DEFINE_PER_CPU(struct od_cpu_dbs_info_s, od_cpu_dbs_info);
1da177e4 31
fb30809e
JS
32static struct od_ops od_ops;
33
3e33ee9e
FB
34#ifndef CONFIG_CPU_FREQ_DEFAULT_GOV_ONDEMAND
35static struct cpufreq_governor cpufreq_gov_ondemand;
36#endif
37
c2837558
JS
38static unsigned int default_powersave_bias;
39
4471a34f 40static void ondemand_powersave_bias_init_cpu(int cpu)
6b8fcd90 41{
4471a34f 42 struct od_cpu_dbs_info_s *dbs_info = &per_cpu(od_cpu_dbs_info, cpu);
6b8fcd90 43
4471a34f
VK
44 dbs_info->freq_table = cpufreq_frequency_get_table(cpu);
45 dbs_info->freq_lo = 0;
46}
6b8fcd90 47
4471a34f
VK
48/*
49 * Not all CPUs want IO time to be accounted as busy; this depends on how
50 * efficient idling at a higher frequency/voltage is.
51 * Pavel Machek says this is not so for various generations of AMD and old
52 * Intel systems.
06eb09d1 53 * Mike Chan (android.com) claims this is also not true for ARM.
4471a34f
VK
54 * Because of this, whitelist specific known (series) of CPUs by default, and
55 * leave all others up to the user.
56 */
57static int should_io_be_busy(void)
58{
59#if defined(CONFIG_X86)
60 /*
06eb09d1 61 * For Intel, Core 2 (model 15) and later have an efficient idle.
4471a34f
VK
62 */
63 if (boot_cpu_data.x86_vendor == X86_VENDOR_INTEL &&
64 boot_cpu_data.x86 == 6 &&
65 boot_cpu_data.x86_model >= 15)
66 return 1;
67#endif
68 return 0;
6b8fcd90
AV
69}
70
05ca0350
AS
71/*
72 * Find right freq to be set now with powersave_bias on.
73 * Returns the freq_hi to be used right now and will set freq_hi_jiffies,
74 * freq_lo, and freq_lo_jiffies in percpu area for averaging freqs.
75 */
fb30809e 76static unsigned int generic_powersave_bias_target(struct cpufreq_policy *policy,
4471a34f 77 unsigned int freq_next, unsigned int relation)
05ca0350
AS
78{
79 unsigned int freq_req, freq_reduc, freq_avg;
80 unsigned int freq_hi, freq_lo;
81 unsigned int index = 0;
82 unsigned int jiffies_total, jiffies_hi, jiffies_lo;
4471a34f 83 struct od_cpu_dbs_info_s *dbs_info = &per_cpu(od_cpu_dbs_info,
245b2e70 84 policy->cpu);
4d5dcc42
VK
85 struct dbs_data *dbs_data = policy->governor_data;
86 struct od_dbs_tuners *od_tuners = dbs_data->tuners;
05ca0350
AS
87
88 if (!dbs_info->freq_table) {
89 dbs_info->freq_lo = 0;
90 dbs_info->freq_lo_jiffies = 0;
91 return freq_next;
92 }
93
94 cpufreq_frequency_table_target(policy, dbs_info->freq_table, freq_next,
95 relation, &index);
96 freq_req = dbs_info->freq_table[index].frequency;
4d5dcc42 97 freq_reduc = freq_req * od_tuners->powersave_bias / 1000;
05ca0350
AS
98 freq_avg = freq_req - freq_reduc;
99
100 /* Find freq bounds for freq_avg in freq_table */
101 index = 0;
102 cpufreq_frequency_table_target(policy, dbs_info->freq_table, freq_avg,
103 CPUFREQ_RELATION_H, &index);
104 freq_lo = dbs_info->freq_table[index].frequency;
105 index = 0;
106 cpufreq_frequency_table_target(policy, dbs_info->freq_table, freq_avg,
107 CPUFREQ_RELATION_L, &index);
108 freq_hi = dbs_info->freq_table[index].frequency;
109
110 /* Find out how long we have to be in hi and lo freqs */
111 if (freq_hi == freq_lo) {
112 dbs_info->freq_lo = 0;
113 dbs_info->freq_lo_jiffies = 0;
114 return freq_lo;
115 }
4d5dcc42 116 jiffies_total = usecs_to_jiffies(od_tuners->sampling_rate);
05ca0350
AS
117 jiffies_hi = (freq_avg - freq_lo) * jiffies_total;
118 jiffies_hi += ((freq_hi - freq_lo) / 2);
119 jiffies_hi /= (freq_hi - freq_lo);
120 jiffies_lo = jiffies_total - jiffies_hi;
121 dbs_info->freq_lo = freq_lo;
122 dbs_info->freq_lo_jiffies = jiffies_lo;
123 dbs_info->freq_hi_jiffies = jiffies_hi;
124 return freq_hi;
125}
126
127static void ondemand_powersave_bias_init(void)
128{
129 int i;
130 for_each_online_cpu(i) {
5a75c828 131 ondemand_powersave_bias_init_cpu(i);
05ca0350
AS
132 }
133}
134
3a3e9e06 135static void dbs_freq_increase(struct cpufreq_policy *policy, unsigned int freq)
4471a34f 136{
3a3e9e06 137 struct dbs_data *dbs_data = policy->governor_data;
4d5dcc42
VK
138 struct od_dbs_tuners *od_tuners = dbs_data->tuners;
139
140 if (od_tuners->powersave_bias)
3a3e9e06 141 freq = od_ops.powersave_bias_target(policy, freq,
fb30809e 142 CPUFREQ_RELATION_H);
3a3e9e06 143 else if (policy->cur == policy->max)
4471a34f 144 return;
0e625ac1 145
3a3e9e06 146 __cpufreq_driver_target(policy, freq, od_tuners->powersave_bias ?
4471a34f
VK
147 CPUFREQ_RELATION_L : CPUFREQ_RELATION_H);
148}
149
150/*
151 * Every sampling_rate, we check, if current idle time is less than 20%
dfa5bb62
SK
152 * (default), then we try to increase frequency. Else, we adjust the frequency
153 * proportional to load.
4471a34f 154 */
dfa5bb62 155static void od_check_cpu(int cpu, unsigned int load)
1da177e4 156{
4471a34f 157 struct od_cpu_dbs_info_s *dbs_info = &per_cpu(od_cpu_dbs_info, cpu);
44152cb8 158 struct cpufreq_policy *policy = dbs_info->cdbs.shared->policy;
4d5dcc42
VK
159 struct dbs_data *dbs_data = policy->governor_data;
160 struct od_dbs_tuners *od_tuners = dbs_data->tuners;
4471a34f
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161
162 dbs_info->freq_lo = 0;
163
164 /* Check for frequency increase */
dfa5bb62 165 if (load > od_tuners->up_threshold) {
4471a34f
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166 /* If switching to max speed, apply sampling_down_factor */
167 if (policy->cur < policy->max)
168 dbs_info->rate_mult =
4d5dcc42 169 od_tuners->sampling_down_factor;
4471a34f 170 dbs_freq_increase(policy, policy->max);
dfa5bb62
SK
171 } else {
172 /* Calculate the next frequency proportional to load */
6393d6a1
SK
173 unsigned int freq_next, min_f, max_f;
174
175 min_f = policy->cpuinfo.min_freq;
176 max_f = policy->cpuinfo.max_freq;
177 freq_next = min_f + load * (max_f - min_f) / 100;
4471a34f
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178
179 /* No longer fully busy, reset rate_mult */
180 dbs_info->rate_mult = 1;
181
4d5dcc42 182 if (!od_tuners->powersave_bias) {
4471a34f 183 __cpufreq_driver_target(policy, freq_next,
6393d6a1 184 CPUFREQ_RELATION_C);
fb30809e 185 return;
4471a34f 186 }
fb30809e
JS
187
188 freq_next = od_ops.powersave_bias_target(policy, freq_next,
189 CPUFREQ_RELATION_L);
6393d6a1 190 __cpufreq_driver_target(policy, freq_next, CPUFREQ_RELATION_C);
4471a34f 191 }
1da177e4
LT
192}
193
affde5d0 194static unsigned int od_dbs_timer(struct cpufreq_policy *policy, bool modify_all)
4471a34f 195{
affde5d0 196 struct dbs_data *dbs_data = policy->governor_data;
44152cb8 197 unsigned int cpu = policy->cpu;
43e0ee36 198 struct od_cpu_dbs_info_s *dbs_info = &per_cpu(od_cpu_dbs_info,
4447266b 199 cpu);
4d5dcc42 200 struct od_dbs_tuners *od_tuners = dbs_data->tuners;
43e0ee36 201 int delay = 0, sample_type = dbs_info->sample_type;
4447266b 202
43e0ee36 203 if (!modify_all)
9d445920 204 goto max_delay;
1da177e4 205
4471a34f 206 /* Common NORMAL_SAMPLE setup */
43e0ee36 207 dbs_info->sample_type = OD_NORMAL_SAMPLE;
4471a34f 208 if (sample_type == OD_SUB_SAMPLE) {
43e0ee36
VK
209 delay = dbs_info->freq_lo_jiffies;
210 __cpufreq_driver_target(policy, dbs_info->freq_lo,
42994af6 211 CPUFREQ_RELATION_H);
4471a34f 212 } else {
9d445920 213 dbs_check_cpu(dbs_data, cpu);
43e0ee36 214 if (dbs_info->freq_lo) {
4471a34f 215 /* Setup timer for SUB_SAMPLE */
43e0ee36
VK
216 dbs_info->sample_type = OD_SUB_SAMPLE;
217 delay = dbs_info->freq_hi_jiffies;
4471a34f
VK
218 }
219 }
220
9d445920
VK
221max_delay:
222 if (!delay)
223 delay = delay_for_sampling_rate(od_tuners->sampling_rate
43e0ee36 224 * dbs_info->rate_mult);
9d445920 225
43e0ee36 226 return delay;
da53d61e
FB
227}
228
4471a34f 229/************************** sysfs interface ************************/
4d5dcc42 230static struct common_dbs_data od_dbs_cdata;
1da177e4 231
fd0ef7a0
MH
232/**
233 * update_sampling_rate - update sampling rate effective immediately if needed.
234 * @new_rate: new sampling rate
235 *
06eb09d1 236 * If new rate is smaller than the old, simply updating
4471a34f
VK
237 * dbs_tuners_int.sampling_rate might not be appropriate. For example, if the
238 * original sampling_rate was 1 second and the requested new sampling rate is 10
239 * ms because the user needs immediate reaction from ondemand governor, but not
240 * sure if higher frequency will be required or not, then, the governor may
241 * change the sampling rate too late; up to 1 second later. Thus, if we are
242 * reducing the sampling rate, we need to make the new value effective
243 * immediately.
fd0ef7a0 244 */
4d5dcc42
VK
245static void update_sampling_rate(struct dbs_data *dbs_data,
246 unsigned int new_rate)
fd0ef7a0 247{
4d5dcc42 248 struct od_dbs_tuners *od_tuners = dbs_data->tuners;
fd0ef7a0
MH
249 int cpu;
250
4d5dcc42
VK
251 od_tuners->sampling_rate = new_rate = max(new_rate,
252 dbs_data->min_sampling_rate);
fd0ef7a0 253
e128c864
VK
254 /*
255 * Lock governor so that governor start/stop can't execute in parallel.
256 */
257 mutex_lock(&od_dbs_cdata.mutex);
258
fd0ef7a0
MH
259 for_each_online_cpu(cpu) {
260 struct cpufreq_policy *policy;
4471a34f 261 struct od_cpu_dbs_info_s *dbs_info;
e128c864
VK
262 struct cpu_dbs_info *cdbs;
263 struct cpu_common_dbs_info *shared;
fd0ef7a0
MH
264 unsigned long next_sampling, appointed_at;
265
e128c864
VK
266 dbs_info = &per_cpu(od_cpu_dbs_info, cpu);
267 cdbs = &dbs_info->cdbs;
268 shared = cdbs->shared;
269
270 /*
271 * A valid shared and shared->policy means governor hasn't
272 * stopped or exited yet.
273 */
274 if (!shared || !shared->policy)
fd0ef7a0 275 continue;
e128c864
VK
276
277 policy = shared->policy;
278
279 /*
280 * Update sampling rate for CPUs whose policy is governed by
281 * dbs_data. In case of governor_per_policy, only a single
282 * policy will be governed by dbs_data, otherwise there can be
283 * multiple policies that are governed by the same dbs_data.
284 */
285 if (dbs_data != policy->governor_data)
3e33ee9e 286 continue;
fd0ef7a0 287
4471a34f 288 next_sampling = jiffies + usecs_to_jiffies(new_rate);
386d46e6 289 appointed_at = dbs_info->cdbs.dwork.timer.expires;
fd0ef7a0
MH
290
291 if (time_before(next_sampling, appointed_at)) {
386d46e6 292 cancel_delayed_work_sync(&dbs_info->cdbs.dwork);
fd0ef7a0 293
44152cb8 294 gov_queue_work(dbs_data, policy,
42994af6 295 usecs_to_jiffies(new_rate), true);
fd0ef7a0
MH
296
297 }
fd0ef7a0 298 }
e128c864
VK
299
300 mutex_unlock(&od_dbs_cdata.mutex);
fd0ef7a0
MH
301}
302
4d5dcc42
VK
303static ssize_t store_sampling_rate(struct dbs_data *dbs_data, const char *buf,
304 size_t count)
1da177e4
LT
305{
306 unsigned int input;
307 int ret;
ffac80e9 308 ret = sscanf(buf, "%u", &input);
5a75c828 309 if (ret != 1)
310 return -EINVAL;
4d5dcc42
VK
311
312 update_sampling_rate(dbs_data, input);
1da177e4
LT
313 return count;
314}
315
4d5dcc42
VK
316static ssize_t store_io_is_busy(struct dbs_data *dbs_data, const char *buf,
317 size_t count)
19379b11 318{
4d5dcc42 319 struct od_dbs_tuners *od_tuners = dbs_data->tuners;
19379b11
AV
320 unsigned int input;
321 int ret;
9366d840 322 unsigned int j;
19379b11
AV
323
324 ret = sscanf(buf, "%u", &input);
325 if (ret != 1)
326 return -EINVAL;
4d5dcc42 327 od_tuners->io_is_busy = !!input;
9366d840
SK
328
329 /* we need to re-evaluate prev_cpu_idle */
330 for_each_online_cpu(j) {
331 struct od_cpu_dbs_info_s *dbs_info = &per_cpu(od_cpu_dbs_info,
332 j);
333 dbs_info->cdbs.prev_cpu_idle = get_cpu_idle_time(j,
334 &dbs_info->cdbs.prev_cpu_wall, od_tuners->io_is_busy);
335 }
19379b11
AV
336 return count;
337}
338
4d5dcc42
VK
339static ssize_t store_up_threshold(struct dbs_data *dbs_data, const char *buf,
340 size_t count)
1da177e4 341{
4d5dcc42 342 struct od_dbs_tuners *od_tuners = dbs_data->tuners;
1da177e4
LT
343 unsigned int input;
344 int ret;
ffac80e9 345 ret = sscanf(buf, "%u", &input);
1da177e4 346
32ee8c3e 347 if (ret != 1 || input > MAX_FREQUENCY_UP_THRESHOLD ||
c29f1403 348 input < MIN_FREQUENCY_UP_THRESHOLD) {
1da177e4
LT
349 return -EINVAL;
350 }
4bd4e428 351
4d5dcc42 352 od_tuners->up_threshold = input;
1da177e4
LT
353 return count;
354}
355
4d5dcc42
VK
356static ssize_t store_sampling_down_factor(struct dbs_data *dbs_data,
357 const char *buf, size_t count)
3f78a9f7 358{
4d5dcc42 359 struct od_dbs_tuners *od_tuners = dbs_data->tuners;
3f78a9f7
DN
360 unsigned int input, j;
361 int ret;
362 ret = sscanf(buf, "%u", &input);
363
364 if (ret != 1 || input > MAX_SAMPLING_DOWN_FACTOR || input < 1)
365 return -EINVAL;
4d5dcc42 366 od_tuners->sampling_down_factor = input;
3f78a9f7
DN
367
368 /* Reset down sampling multiplier in case it was active */
369 for_each_online_cpu(j) {
4471a34f
VK
370 struct od_cpu_dbs_info_s *dbs_info = &per_cpu(od_cpu_dbs_info,
371 j);
3f78a9f7
DN
372 dbs_info->rate_mult = 1;
373 }
3f78a9f7
DN
374 return count;
375}
376
6c4640c3
VK
377static ssize_t store_ignore_nice_load(struct dbs_data *dbs_data,
378 const char *buf, size_t count)
3d5ee9e5 379{
4d5dcc42 380 struct od_dbs_tuners *od_tuners = dbs_data->tuners;
3d5ee9e5
DJ
381 unsigned int input;
382 int ret;
383
384 unsigned int j;
32ee8c3e 385
ffac80e9 386 ret = sscanf(buf, "%u", &input);
2b03f891 387 if (ret != 1)
3d5ee9e5
DJ
388 return -EINVAL;
389
2b03f891 390 if (input > 1)
3d5ee9e5 391 input = 1;
32ee8c3e 392
6c4640c3 393 if (input == od_tuners->ignore_nice_load) { /* nothing to do */
3d5ee9e5
DJ
394 return count;
395 }
6c4640c3 396 od_tuners->ignore_nice_load = input;
3d5ee9e5 397
ccb2fe20 398 /* we need to re-evaluate prev_cpu_idle */
dac1c1a5 399 for_each_online_cpu(j) {
4471a34f 400 struct od_cpu_dbs_info_s *dbs_info;
245b2e70 401 dbs_info = &per_cpu(od_cpu_dbs_info, j);
4471a34f 402 dbs_info->cdbs.prev_cpu_idle = get_cpu_idle_time(j,
9366d840 403 &dbs_info->cdbs.prev_cpu_wall, od_tuners->io_is_busy);
6c4640c3 404 if (od_tuners->ignore_nice_load)
4471a34f
VK
405 dbs_info->cdbs.prev_cpu_nice =
406 kcpustat_cpu(j).cpustat[CPUTIME_NICE];
1ca3abdb 407
3d5ee9e5 408 }
3d5ee9e5
DJ
409 return count;
410}
411
4d5dcc42
VK
412static ssize_t store_powersave_bias(struct dbs_data *dbs_data, const char *buf,
413 size_t count)
05ca0350 414{
4d5dcc42 415 struct od_dbs_tuners *od_tuners = dbs_data->tuners;
05ca0350
AS
416 unsigned int input;
417 int ret;
418 ret = sscanf(buf, "%u", &input);
419
420 if (ret != 1)
421 return -EINVAL;
422
423 if (input > 1000)
424 input = 1000;
425
4d5dcc42 426 od_tuners->powersave_bias = input;
05ca0350 427 ondemand_powersave_bias_init();
05ca0350
AS
428 return count;
429}
430
4d5dcc42
VK
431show_store_one(od, sampling_rate);
432show_store_one(od, io_is_busy);
433show_store_one(od, up_threshold);
434show_store_one(od, sampling_down_factor);
6c4640c3 435show_store_one(od, ignore_nice_load);
4d5dcc42
VK
436show_store_one(od, powersave_bias);
437declare_show_sampling_rate_min(od);
438
439gov_sys_pol_attr_rw(sampling_rate);
440gov_sys_pol_attr_rw(io_is_busy);
441gov_sys_pol_attr_rw(up_threshold);
442gov_sys_pol_attr_rw(sampling_down_factor);
6c4640c3 443gov_sys_pol_attr_rw(ignore_nice_load);
4d5dcc42
VK
444gov_sys_pol_attr_rw(powersave_bias);
445gov_sys_pol_attr_ro(sampling_rate_min);
446
447static struct attribute *dbs_attributes_gov_sys[] = {
448 &sampling_rate_min_gov_sys.attr,
449 &sampling_rate_gov_sys.attr,
450 &up_threshold_gov_sys.attr,
451 &sampling_down_factor_gov_sys.attr,
6c4640c3 452 &ignore_nice_load_gov_sys.attr,
4d5dcc42
VK
453 &powersave_bias_gov_sys.attr,
454 &io_is_busy_gov_sys.attr,
1da177e4
LT
455 NULL
456};
457
4d5dcc42
VK
458static struct attribute_group od_attr_group_gov_sys = {
459 .attrs = dbs_attributes_gov_sys,
460 .name = "ondemand",
461};
462
463static struct attribute *dbs_attributes_gov_pol[] = {
464 &sampling_rate_min_gov_pol.attr,
465 &sampling_rate_gov_pol.attr,
466 &up_threshold_gov_pol.attr,
467 &sampling_down_factor_gov_pol.attr,
6c4640c3 468 &ignore_nice_load_gov_pol.attr,
4d5dcc42
VK
469 &powersave_bias_gov_pol.attr,
470 &io_is_busy_gov_pol.attr,
471 NULL
472};
473
474static struct attribute_group od_attr_group_gov_pol = {
475 .attrs = dbs_attributes_gov_pol,
1da177e4
LT
476 .name = "ondemand",
477};
478
479/************************** sysfs end ************************/
480
8e0484d2 481static int od_init(struct dbs_data *dbs_data, bool notify)
4d5dcc42
VK
482{
483 struct od_dbs_tuners *tuners;
484 u64 idle_time;
485 int cpu;
486
d5b73cd8 487 tuners = kzalloc(sizeof(*tuners), GFP_KERNEL);
4d5dcc42
VK
488 if (!tuners) {
489 pr_err("%s: kzalloc failed\n", __func__);
490 return -ENOMEM;
491 }
492
493 cpu = get_cpu();
494 idle_time = get_cpu_idle_time_us(cpu, NULL);
495 put_cpu();
496 if (idle_time != -1ULL) {
497 /* Idle micro accounting is supported. Use finer thresholds */
498 tuners->up_threshold = MICRO_FREQUENCY_UP_THRESHOLD;
4d5dcc42
VK
499 /*
500 * In nohz/micro accounting case we set the minimum frequency
501 * not depending on HZ, but fixed (very low). The deferred
502 * timer might skip some samples if idle/sleeping as needed.
503 */
504 dbs_data->min_sampling_rate = MICRO_FREQUENCY_MIN_SAMPLE_RATE;
505 } else {
506 tuners->up_threshold = DEF_FREQUENCY_UP_THRESHOLD;
4d5dcc42
VK
507
508 /* For correct statistics, we need 10 ticks for each measure */
509 dbs_data->min_sampling_rate = MIN_SAMPLING_RATE_RATIO *
510 jiffies_to_usecs(10);
511 }
512
513 tuners->sampling_down_factor = DEF_SAMPLING_DOWN_FACTOR;
6c4640c3 514 tuners->ignore_nice_load = 0;
c2837558 515 tuners->powersave_bias = default_powersave_bias;
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516 tuners->io_is_busy = should_io_be_busy();
517
518 dbs_data->tuners = tuners;
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519 return 0;
520}
521
8e0484d2 522static void od_exit(struct dbs_data *dbs_data, bool notify)
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523{
524 kfree(dbs_data->tuners);
525}
526
4471a34f 527define_get_cpu_dbs_routines(od_cpu_dbs_info);
6b8fcd90 528
4471a34f 529static struct od_ops od_ops = {
4471a34f 530 .powersave_bias_init_cpu = ondemand_powersave_bias_init_cpu,
fb30809e 531 .powersave_bias_target = generic_powersave_bias_target,
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532 .freq_increase = dbs_freq_increase,
533};
2f8a835c 534
4d5dcc42 535static struct common_dbs_data od_dbs_cdata = {
4471a34f 536 .governor = GOV_ONDEMAND,
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537 .attr_group_gov_sys = &od_attr_group_gov_sys,
538 .attr_group_gov_pol = &od_attr_group_gov_pol,
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539 .get_cpu_cdbs = get_cpu_cdbs,
540 .get_cpu_dbs_info_s = get_cpu_dbs_info_s,
541 .gov_dbs_timer = od_dbs_timer,
542 .gov_check_cpu = od_check_cpu,
543 .gov_ops = &od_ops,
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544 .init = od_init,
545 .exit = od_exit,
732b6d61 546 .mutex = __MUTEX_INITIALIZER(od_dbs_cdata.mutex),
4471a34f 547};
1da177e4 548
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549static void od_set_powersave_bias(unsigned int powersave_bias)
550{
551 struct cpufreq_policy *policy;
552 struct dbs_data *dbs_data;
553 struct od_dbs_tuners *od_tuners;
554 unsigned int cpu;
555 cpumask_t done;
556
c2837558 557 default_powersave_bias = powersave_bias;
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558 cpumask_clear(&done);
559
560 get_online_cpus();
561 for_each_online_cpu(cpu) {
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562 struct cpu_common_dbs_info *shared;
563
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564 if (cpumask_test_cpu(cpu, &done))
565 continue;
566
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567 shared = per_cpu(od_cpu_dbs_info, cpu).cdbs.shared;
568 if (!shared)
c2837558 569 continue;
fb30809e 570
44152cb8 571 policy = shared->policy;
fb30809e 572 cpumask_or(&done, &done, policy->cpus);
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JS
573
574 if (policy->governor != &cpufreq_gov_ondemand)
575 continue;
576
577 dbs_data = policy->governor_data;
578 od_tuners = dbs_data->tuners;
579 od_tuners->powersave_bias = default_powersave_bias;
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580 }
581 put_online_cpus();
582}
583
584void od_register_powersave_bias_handler(unsigned int (*f)
585 (struct cpufreq_policy *, unsigned int, unsigned int),
586 unsigned int powersave_bias)
587{
588 od_ops.powersave_bias_target = f;
589 od_set_powersave_bias(powersave_bias);
590}
591EXPORT_SYMBOL_GPL(od_register_powersave_bias_handler);
592
593void od_unregister_powersave_bias_handler(void)
594{
595 od_ops.powersave_bias_target = generic_powersave_bias_target;
596 od_set_powersave_bias(0);
597}
598EXPORT_SYMBOL_GPL(od_unregister_powersave_bias_handler);
599
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600static int od_cpufreq_governor_dbs(struct cpufreq_policy *policy,
601 unsigned int event)
1da177e4 602{
4d5dcc42 603 return cpufreq_governor_dbs(policy, &od_dbs_cdata, event);
1da177e4
LT
604}
605
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606#ifndef CONFIG_CPU_FREQ_DEFAULT_GOV_ONDEMAND
607static
19379b11 608#endif
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609struct cpufreq_governor cpufreq_gov_ondemand = {
610 .name = "ondemand",
611 .governor = od_cpufreq_governor_dbs,
612 .max_transition_latency = TRANSITION_LATENCY_LIMIT,
613 .owner = THIS_MODULE,
614};
1da177e4 615
1da177e4
LT
616static int __init cpufreq_gov_dbs_init(void)
617{
57df5573 618 return cpufreq_register_governor(&cpufreq_gov_ondemand);
1da177e4
LT
619}
620
621static void __exit cpufreq_gov_dbs_exit(void)
622{
1c256245 623 cpufreq_unregister_governor(&cpufreq_gov_ondemand);
1da177e4
LT
624}
625
ffac80e9
VP
626MODULE_AUTHOR("Venkatesh Pallipadi <venkatesh.pallipadi@intel.com>");
627MODULE_AUTHOR("Alexey Starikovskiy <alexey.y.starikovskiy@intel.com>");
628MODULE_DESCRIPTION("'cpufreq_ondemand' - A dynamic cpufreq governor for "
2b03f891 629 "Low Latency Frequency Transition capable processors");
ffac80e9 630MODULE_LICENSE("GPL");
1da177e4 631
6915719b
JW
632#ifdef CONFIG_CPU_FREQ_DEFAULT_GOV_ONDEMAND
633fs_initcall(cpufreq_gov_dbs_init);
634#else
1da177e4 635module_init(cpufreq_gov_dbs_init);
6915719b 636#endif
1da177e4 637module_exit(cpufreq_gov_dbs_exit);
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