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Amit Daniel Kachhap02361412012-08-16 17:11:40 +05301/*
2 * linux/drivers/thermal/cpu_cooling.c
3 *
4 * Copyright (C) 2012 Samsung Electronics Co., Ltd(http://www.samsung.com)
5 * Copyright (C) 2012 Amit Daniel <amit.kachhap@linaro.org>
6 *
Viresh Kumar73904cb2014-12-04 09:42:08 +05307 * Copyright (C) 2014 Viresh Kumar <viresh.kumar@linaro.org>
8 *
Amit Daniel Kachhap02361412012-08-16 17:11:40 +05309 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation; version 2 of the License.
13 *
14 * This program is distributed in the hope that it will be useful, but
15 * WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
17 * General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License along
20 * with this program; if not, write to the Free Software Foundation, Inc.,
21 * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
22 *
23 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
24 */
Amit Daniel Kachhap02361412012-08-16 17:11:40 +053025#include <linux/module.h>
26#include <linux/thermal.h>
Amit Daniel Kachhap02361412012-08-16 17:11:40 +053027#include <linux/cpufreq.h>
28#include <linux/err.h>
Matthew Wilcoxae606082016-12-21 09:47:05 -080029#include <linux/idr.h>
Javi Merinoc36cf072015-02-26 19:00:29 +000030#include <linux/pm_opp.h>
Amit Daniel Kachhap02361412012-08-16 17:11:40 +053031#include <linux/slab.h>
32#include <linux/cpu.h>
33#include <linux/cpu_cooling.h>
34
Javi Merino6828a472015-03-02 17:17:20 +000035#include <trace/events/thermal.h>
36
Viresh Kumar07d888d2014-12-04 09:41:49 +053037/*
38 * Cooling state <-> CPUFreq frequency
39 *
40 * Cooling states are translated to frequencies throughout this driver and this
41 * is the relation between them.
42 *
43 * Highest cooling state corresponds to lowest possible frequency.
44 *
45 * i.e.
46 * level 0 --> 1st Max Freq
47 * level 1 --> 2nd Max Freq
48 * ...
49 */
50
Amit Daniel Kachhap02361412012-08-16 17:11:40 +053051/**
Viresh Kumar349d39d2017-04-25 15:57:19 +053052 * struct freq_table - frequency table along with power entries
Javi Merinoc36cf072015-02-26 19:00:29 +000053 * @frequency: frequency in KHz
54 * @power: power in mW
55 *
56 * This structure is built when the cooling device registers and helps
Viresh Kumar349d39d2017-04-25 15:57:19 +053057 * in translating frequency to power and vice versa.
Javi Merinoc36cf072015-02-26 19:00:29 +000058 */
Viresh Kumar349d39d2017-04-25 15:57:19 +053059struct freq_table {
Javi Merinoc36cf072015-02-26 19:00:29 +000060 u32 frequency;
61 u32 power;
62};
63
64/**
Viresh Kumar81ee14d2017-04-25 15:57:20 +053065 * struct time_in_idle - Idle time stats
66 * @time: previous reading of the absolute time that this cpu was idle
67 * @timestamp: wall time of the last invocation of get_cpu_idle_time_us()
68 */
69struct time_in_idle {
70 u64 time;
71 u64 timestamp;
72};
73
74/**
Eduardo Valentin3b3c0742013-04-17 17:11:56 +000075 * struct cpufreq_cooling_device - data for cooling device with cpufreq
Amit Daniel Kachhap02361412012-08-16 17:11:40 +053076 * @id: unique integer value corresponding to each cpufreq_cooling_device
77 * registered.
Viresh Kumard72b4012017-04-25 15:57:24 +053078 * @last_load: load measured by the latest call to cpufreq_get_requested_power()
Amit Daniel Kachhap02361412012-08-16 17:11:40 +053079 * @cpufreq_state: integer value representing the current state of cpufreq
80 * cooling devices.
Viresh Kumar59f0d212015-07-30 12:40:33 +053081 * @clipped_freq: integer value representing the absolute value of the clipped
Amit Daniel Kachhap02361412012-08-16 17:11:40 +053082 * frequency.
Viresh Kumardcc6c7f2014-12-04 09:42:02 +053083 * @max_level: maximum cooling level. One less than total number of valid
84 * cpufreq frequencies.
Viresh Kumard72b4012017-04-25 15:57:24 +053085 * @freq_table: Freq table in descending order of frequencies
86 * @cdev: thermal_cooling_device pointer to keep track of the
87 * registered cooling device.
88 * @policy: cpufreq policy.
Javi Merinofc4de352014-12-15 16:55:52 +000089 * @node: list_head to link all cpufreq_cooling_device together.
Viresh Kumar81ee14d2017-04-25 15:57:20 +053090 * @idle_time: idle time stats
Javi Merinoc36cf072015-02-26 19:00:29 +000091 * @plat_get_static_power: callback to calculate the static power
Amit Daniel Kachhap02361412012-08-16 17:11:40 +053092 *
Viresh Kumarbeca6052014-12-04 09:41:48 +053093 * This structure is required for keeping information of each registered
94 * cpufreq_cooling_device.
Amit Daniel Kachhap02361412012-08-16 17:11:40 +053095 */
96struct cpufreq_cooling_device {
97 int id;
Viresh Kumard72b4012017-04-25 15:57:24 +053098 u32 last_load;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +053099 unsigned int cpufreq_state;
Viresh Kumar59f0d212015-07-30 12:40:33 +0530100 unsigned int clipped_freq;
Viresh Kumardcc6c7f2014-12-04 09:42:02 +0530101 unsigned int max_level;
Viresh Kumar349d39d2017-04-25 15:57:19 +0530102 struct freq_table *freq_table; /* In descending order */
Viresh Kumard72b4012017-04-25 15:57:24 +0530103 struct thermal_cooling_device *cdev;
104 struct cpufreq_policy *policy;
Yadwinder Singh Brar2dcd8512014-11-07 19:12:29 +0530105 struct list_head node;
Viresh Kumar81ee14d2017-04-25 15:57:20 +0530106 struct time_in_idle *idle_time;
Javi Merinoc36cf072015-02-26 19:00:29 +0000107 get_static_t plat_get_static_power;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530108};
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530109
Viresh Kumarfb8ea302017-04-25 15:57:09 +0530110static DEFINE_IDA(cpufreq_ida);
Russell King02373d72015-08-12 15:22:16 +0530111static DEFINE_MUTEX(cooling_list_lock);
Viresh Kumar1dea4322017-04-25 15:57:10 +0530112static LIST_HEAD(cpufreq_cdev_list);
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530113
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530114/* Below code defines functions to be used for cpufreq as cooling device */
115
116/**
Viresh Kumar4843c4a2014-12-04 09:42:07 +0530117 * get_level: Find the level for a particular frequency
Viresh Kumar1dea4322017-04-25 15:57:10 +0530118 * @cpufreq_cdev: cpufreq_cdev for which the property is required
Viresh Kumar4843c4a2014-12-04 09:42:07 +0530119 * @freq: Frequency
Eduardo Valentin82b9ee42013-04-17 17:12:00 +0000120 *
Viresh Kumarda27f692017-04-25 15:57:21 +0530121 * Return: level corresponding to the frequency.
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530122 */
Viresh Kumar1dea4322017-04-25 15:57:10 +0530123static unsigned long get_level(struct cpufreq_cooling_device *cpufreq_cdev,
Viresh Kumar4843c4a2014-12-04 09:42:07 +0530124 unsigned int freq)
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530125{
Viresh Kumarda27f692017-04-25 15:57:21 +0530126 struct freq_table *freq_table = cpufreq_cdev->freq_table;
Viresh Kumar4843c4a2014-12-04 09:42:07 +0530127 unsigned long level;
Eduardo Valentin79491e52013-04-17 17:11:59 +0000128
Viresh Kumarda27f692017-04-25 15:57:21 +0530129 for (level = 1; level <= cpufreq_cdev->max_level; level++)
130 if (freq > freq_table[level].frequency)
Viresh Kumar4843c4a2014-12-04 09:42:07 +0530131 break;
Zhang Ruia1167762014-01-02 11:57:48 +0800132
Viresh Kumarda27f692017-04-25 15:57:21 +0530133 return level - 1;
Zhang Ruifc35b352013-02-08 13:09:32 +0800134}
135
Eduardo Valentin44952d32013-04-17 17:12:05 +0000136/**
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530137 * cpufreq_thermal_notifier - notifier callback for cpufreq policy change.
138 * @nb: struct notifier_block * with callback info.
139 * @event: value showing cpufreq event for which this function invoked.
140 * @data: callback-specific data
Eduardo Valentinbab30552013-04-17 17:12:09 +0000141 *
Javi Merino9746b6e2014-06-25 18:11:17 +0100142 * Callback to hijack the notification on cpufreq policy transition.
Eduardo Valentinbab30552013-04-17 17:12:09 +0000143 * Every time there is a change in policy, we will intercept and
144 * update the cpufreq policy with thermal constraints.
145 *
146 * Return: 0 (success)
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530147 */
148static int cpufreq_thermal_notifier(struct notifier_block *nb,
Eduardo Valentin5fda7f62013-04-17 17:12:11 +0000149 unsigned long event, void *data)
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530150{
151 struct cpufreq_policy *policy = data;
Viresh Kumarabcbcc22015-07-30 12:40:34 +0530152 unsigned long clipped_freq;
Viresh Kumar1dea4322017-04-25 15:57:10 +0530153 struct cpufreq_cooling_device *cpufreq_cdev;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530154
Viresh Kumara24af232015-07-30 12:40:32 +0530155 if (event != CPUFREQ_ADJUST)
Javi Merinoc36cf072015-02-26 19:00:29 +0000156 return NOTIFY_DONE;
Viresh Kumara24af232015-07-30 12:40:32 +0530157
158 mutex_lock(&cooling_list_lock);
Viresh Kumar1dea4322017-04-25 15:57:10 +0530159 list_for_each_entry(cpufreq_cdev, &cpufreq_cdev_list, node) {
Viresh Kumarba76dd92017-04-25 15:57:18 +0530160 /*
161 * A new copy of the policy is sent to the notifier and can't
162 * compare that directly.
163 */
164 if (policy->cpu != cpufreq_cdev->policy->cpu)
Viresh Kumara24af232015-07-30 12:40:32 +0530165 continue;
166
Viresh Kumar1afb9c52015-07-30 12:40:35 +0530167 /*
168 * policy->max is the maximum allowed frequency defined by user
169 * and clipped_freq is the maximum that thermal constraints
170 * allow.
171 *
172 * If clipped_freq is lower than policy->max, then we need to
173 * readjust policy->max.
174 *
175 * But, if clipped_freq is greater than policy->max, we don't
176 * need to do anything.
177 */
Viresh Kumar1dea4322017-04-25 15:57:10 +0530178 clipped_freq = cpufreq_cdev->clipped_freq;
Viresh Kumara24af232015-07-30 12:40:32 +0530179
Viresh Kumar1afb9c52015-07-30 12:40:35 +0530180 if (policy->max > clipped_freq)
Viresh Kumarabcbcc22015-07-30 12:40:34 +0530181 cpufreq_verify_within_limits(policy, 0, clipped_freq);
Viresh Kumara24af232015-07-30 12:40:32 +0530182 break;
Yadwinder Singh Brar2dcd8512014-11-07 19:12:29 +0530183 }
Viresh Kumara24af232015-07-30 12:40:32 +0530184 mutex_unlock(&cooling_list_lock);
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530185
Javi Merinoc36cf072015-02-26 19:00:29 +0000186 return NOTIFY_OK;
187}
188
189/**
Viresh Kumar349d39d2017-04-25 15:57:19 +0530190 * update_freq_table() - Update the freq table with power numbers
191 * @cpufreq_cdev: the cpufreq cooling device in which to update the table
Javi Merinoc36cf072015-02-26 19:00:29 +0000192 * @capacitance: dynamic power coefficient for these cpus
193 *
Viresh Kumar349d39d2017-04-25 15:57:19 +0530194 * Update the freq table with power numbers. This table will be used in
195 * cpu_power_to_freq() and cpu_freq_to_power() to convert between power and
196 * frequency efficiently. Power is stored in mW, frequency in KHz. The
197 * resulting table is in descending order.
Javi Merinoc36cf072015-02-26 19:00:29 +0000198 *
Javi Merino459ac372015-08-17 19:21:42 +0100199 * Return: 0 on success, -EINVAL if there are no OPPs for any CPUs,
Viresh Kumar349d39d2017-04-25 15:57:19 +0530200 * or -ENOMEM if we run out of memory.
Javi Merinoc36cf072015-02-26 19:00:29 +0000201 */
Viresh Kumar349d39d2017-04-25 15:57:19 +0530202static int update_freq_table(struct cpufreq_cooling_device *cpufreq_cdev,
203 u32 capacitance)
Javi Merinoc36cf072015-02-26 19:00:29 +0000204{
Viresh Kumar349d39d2017-04-25 15:57:19 +0530205 struct freq_table *freq_table = cpufreq_cdev->freq_table;
Javi Merinoc36cf072015-02-26 19:00:29 +0000206 struct dev_pm_opp *opp;
207 struct device *dev = NULL;
Viresh Kumar349d39d2017-04-25 15:57:19 +0530208 int num_opps = 0, cpu = cpufreq_cdev->policy->cpu, i;
Javi Merinoc36cf072015-02-26 19:00:29 +0000209
Viresh Kumar02bacb22017-04-25 15:57:17 +0530210 dev = get_cpu_device(cpu);
211 if (unlikely(!dev)) {
212 dev_warn(&cpufreq_cdev->cdev->device,
213 "No cpu device for cpu %d\n", cpu);
214 return -ENODEV;
Javi Merinoc36cf072015-02-26 19:00:29 +0000215 }
216
Viresh Kumar02bacb22017-04-25 15:57:17 +0530217 num_opps = dev_pm_opp_get_opp_count(dev);
218 if (num_opps < 0)
219 return num_opps;
220
Viresh Kumar349d39d2017-04-25 15:57:19 +0530221 /*
222 * The cpufreq table is also built from the OPP table and so the count
223 * should match.
224 */
225 if (num_opps != cpufreq_cdev->max_level + 1) {
226 dev_warn(dev, "Number of OPPs not matching with max_levels\n");
Javi Merino459ac372015-08-17 19:21:42 +0100227 return -EINVAL;
Viresh Kumar349d39d2017-04-25 15:57:19 +0530228 }
Javi Merinoc36cf072015-02-26 19:00:29 +0000229
Viresh Kumar349d39d2017-04-25 15:57:19 +0530230 for (i = 0; i <= cpufreq_cdev->max_level; i++) {
231 unsigned long freq = freq_table[i].frequency * 1000;
232 u32 freq_mhz = freq_table[i].frequency / 1000;
Javi Merinoc36cf072015-02-26 19:00:29 +0000233 u64 power;
Viresh Kumar349d39d2017-04-25 15:57:19 +0530234 u32 voltage_mv;
Javi Merinoc36cf072015-02-26 19:00:29 +0000235
Viresh Kumar349d39d2017-04-25 15:57:19 +0530236 /*
237 * Find ceil frequency as 'freq' may be slightly lower than OPP
238 * freq due to truncation while converting to kHz.
239 */
240 opp = dev_pm_opp_find_freq_ceil(dev, &freq);
241 if (IS_ERR(opp)) {
242 dev_err(dev, "failed to get opp for %lu frequency\n",
243 freq);
244 return -EINVAL;
Javi Merino459ac372015-08-17 19:21:42 +0100245 }
246
Javi Merinoc36cf072015-02-26 19:00:29 +0000247 voltage_mv = dev_pm_opp_get_voltage(opp) / 1000;
Viresh Kumar8a31d9d92017-01-23 10:11:47 +0530248 dev_pm_opp_put(opp);
Javi Merinoc36cf072015-02-26 19:00:29 +0000249
250 /*
251 * Do the multiplication with MHz and millivolt so as
252 * to not overflow.
253 */
254 power = (u64)capacitance * freq_mhz * voltage_mv * voltage_mv;
255 do_div(power, 1000000000);
256
Javi Merinoc36cf072015-02-26 19:00:29 +0000257 /* power is stored in mW */
Viresh Kumar349d39d2017-04-25 15:57:19 +0530258 freq_table[i].power = power;
Javi Merinoeba4f882015-08-17 19:21:43 +0100259 }
Javi Merinoc36cf072015-02-26 19:00:29 +0000260
Javi Merino459ac372015-08-17 19:21:42 +0100261 return 0;
Javi Merinoc36cf072015-02-26 19:00:29 +0000262}
263
Viresh Kumar1dea4322017-04-25 15:57:10 +0530264static u32 cpu_freq_to_power(struct cpufreq_cooling_device *cpufreq_cdev,
Javi Merinoc36cf072015-02-26 19:00:29 +0000265 u32 freq)
266{
267 int i;
Viresh Kumar349d39d2017-04-25 15:57:19 +0530268 struct freq_table *freq_table = cpufreq_cdev->freq_table;
Javi Merinoc36cf072015-02-26 19:00:29 +0000269
Viresh Kumar349d39d2017-04-25 15:57:19 +0530270 for (i = 1; i <= cpufreq_cdev->max_level; i++)
271 if (freq > freq_table[i].frequency)
Javi Merinoc36cf072015-02-26 19:00:29 +0000272 break;
273
Viresh Kumar349d39d2017-04-25 15:57:19 +0530274 return freq_table[i - 1].power;
Javi Merinoc36cf072015-02-26 19:00:29 +0000275}
276
Viresh Kumar1dea4322017-04-25 15:57:10 +0530277static u32 cpu_power_to_freq(struct cpufreq_cooling_device *cpufreq_cdev,
Javi Merinoc36cf072015-02-26 19:00:29 +0000278 u32 power)
279{
280 int i;
Viresh Kumar349d39d2017-04-25 15:57:19 +0530281 struct freq_table *freq_table = cpufreq_cdev->freq_table;
Javi Merinoc36cf072015-02-26 19:00:29 +0000282
Viresh Kumar349d39d2017-04-25 15:57:19 +0530283 for (i = 1; i <= cpufreq_cdev->max_level; i++)
284 if (power > freq_table[i].power)
Javi Merinoc36cf072015-02-26 19:00:29 +0000285 break;
286
Viresh Kumar349d39d2017-04-25 15:57:19 +0530287 return freq_table[i - 1].frequency;
Javi Merinoc36cf072015-02-26 19:00:29 +0000288}
289
290/**
291 * get_load() - get load for a cpu since last updated
Viresh Kumar1dea4322017-04-25 15:57:10 +0530292 * @cpufreq_cdev: &struct cpufreq_cooling_device for this cpu
Javi Merinoc36cf072015-02-26 19:00:29 +0000293 * @cpu: cpu number
Viresh Kumarba76dd92017-04-25 15:57:18 +0530294 * @cpu_idx: index of the cpu in time_in_idle*
Javi Merinoc36cf072015-02-26 19:00:29 +0000295 *
296 * Return: The average load of cpu @cpu in percentage since this
297 * function was last called.
298 */
Viresh Kumar1dea4322017-04-25 15:57:10 +0530299static u32 get_load(struct cpufreq_cooling_device *cpufreq_cdev, int cpu,
Javi Merinoa53b8392016-02-11 12:00:51 +0000300 int cpu_idx)
Javi Merinoc36cf072015-02-26 19:00:29 +0000301{
302 u32 load;
303 u64 now, now_idle, delta_time, delta_idle;
Viresh Kumar81ee14d2017-04-25 15:57:20 +0530304 struct time_in_idle *idle_time = &cpufreq_cdev->idle_time[cpu_idx];
Javi Merinoc36cf072015-02-26 19:00:29 +0000305
306 now_idle = get_cpu_idle_time(cpu, &now, 0);
Viresh Kumar81ee14d2017-04-25 15:57:20 +0530307 delta_idle = now_idle - idle_time->time;
308 delta_time = now - idle_time->timestamp;
Javi Merinoc36cf072015-02-26 19:00:29 +0000309
310 if (delta_time <= delta_idle)
311 load = 0;
312 else
313 load = div64_u64(100 * (delta_time - delta_idle), delta_time);
314
Viresh Kumar81ee14d2017-04-25 15:57:20 +0530315 idle_time->time = now_idle;
316 idle_time->timestamp = now;
Javi Merinoc36cf072015-02-26 19:00:29 +0000317
318 return load;
319}
320
321/**
322 * get_static_power() - calculate the static power consumed by the cpus
Viresh Kumar1dea4322017-04-25 15:57:10 +0530323 * @cpufreq_cdev: struct &cpufreq_cooling_device for this cpu cdev
Javi Merinoc36cf072015-02-26 19:00:29 +0000324 * @tz: thermal zone device in which we're operating
325 * @freq: frequency in KHz
326 * @power: pointer in which to store the calculated static power
327 *
328 * Calculate the static power consumed by the cpus described by
329 * @cpu_actor running at frequency @freq. This function relies on a
330 * platform specific function that should have been provided when the
331 * actor was registered. If it wasn't, the static power is assumed to
332 * be negligible. The calculated static power is stored in @power.
333 *
334 * Return: 0 on success, -E* on failure.
335 */
Viresh Kumar1dea4322017-04-25 15:57:10 +0530336static int get_static_power(struct cpufreq_cooling_device *cpufreq_cdev,
Javi Merinoc36cf072015-02-26 19:00:29 +0000337 struct thermal_zone_device *tz, unsigned long freq,
338 u32 *power)
339{
340 struct dev_pm_opp *opp;
341 unsigned long voltage;
Viresh Kumar53ca1ec2017-04-25 15:57:22 +0530342 struct cpufreq_policy *policy = cpufreq_cdev->policy;
343 struct cpumask *cpumask = policy->related_cpus;
Javi Merinoc36cf072015-02-26 19:00:29 +0000344 unsigned long freq_hz = freq * 1000;
Viresh Kumar53ca1ec2017-04-25 15:57:22 +0530345 struct device *dev;
Javi Merinoc36cf072015-02-26 19:00:29 +0000346
Viresh Kumar53ca1ec2017-04-25 15:57:22 +0530347 if (!cpufreq_cdev->plat_get_static_power) {
Javi Merinoc36cf072015-02-26 19:00:29 +0000348 *power = 0;
349 return 0;
350 }
351
Viresh Kumar53ca1ec2017-04-25 15:57:22 +0530352 dev = get_cpu_device(policy->cpu);
353 WARN_ON(!dev);
354
355 opp = dev_pm_opp_find_freq_exact(dev, freq_hz, true);
Viresh Kumar3ea32172017-02-07 09:40:05 +0530356 if (IS_ERR(opp)) {
Viresh Kumar53ca1ec2017-04-25 15:57:22 +0530357 dev_warn_ratelimited(dev, "Failed to find OPP for frequency %lu: %ld\n",
Viresh Kumar3ea32172017-02-07 09:40:05 +0530358 freq_hz, PTR_ERR(opp));
359 return -EINVAL;
360 }
361
Javi Merinoc36cf072015-02-26 19:00:29 +0000362 voltage = dev_pm_opp_get_voltage(opp);
Viresh Kumar8a31d9d92017-01-23 10:11:47 +0530363 dev_pm_opp_put(opp);
Javi Merinoc36cf072015-02-26 19:00:29 +0000364
365 if (voltage == 0) {
Viresh Kumar53ca1ec2017-04-25 15:57:22 +0530366 dev_err_ratelimited(dev, "Failed to get voltage for frequency %lu\n",
Viresh Kumar3ea32172017-02-07 09:40:05 +0530367 freq_hz);
Javi Merinoc36cf072015-02-26 19:00:29 +0000368 return -EINVAL;
369 }
370
Viresh Kumar1dea4322017-04-25 15:57:10 +0530371 return cpufreq_cdev->plat_get_static_power(cpumask, tz->passive_delay,
372 voltage, power);
Javi Merinoc36cf072015-02-26 19:00:29 +0000373}
374
375/**
376 * get_dynamic_power() - calculate the dynamic power
Viresh Kumar1dea4322017-04-25 15:57:10 +0530377 * @cpufreq_cdev: &cpufreq_cooling_device for this cdev
Javi Merinoc36cf072015-02-26 19:00:29 +0000378 * @freq: current frequency
379 *
380 * Return: the dynamic power consumed by the cpus described by
Viresh Kumar1dea4322017-04-25 15:57:10 +0530381 * @cpufreq_cdev.
Javi Merinoc36cf072015-02-26 19:00:29 +0000382 */
Viresh Kumar1dea4322017-04-25 15:57:10 +0530383static u32 get_dynamic_power(struct cpufreq_cooling_device *cpufreq_cdev,
Javi Merinoc36cf072015-02-26 19:00:29 +0000384 unsigned long freq)
385{
386 u32 raw_cpu_power;
387
Viresh Kumar1dea4322017-04-25 15:57:10 +0530388 raw_cpu_power = cpu_freq_to_power(cpufreq_cdev, freq);
389 return (raw_cpu_power * cpufreq_cdev->last_load) / 100;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530390}
391
Eduardo Valentin1b9e3522013-04-17 17:12:02 +0000392/* cpufreq cooling device callback functions are defined below */
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530393
394/**
395 * cpufreq_get_max_state - callback function to get the max cooling state.
396 * @cdev: thermal cooling device pointer.
397 * @state: fill this variable with the max cooling state.
Eduardo Valentin62c00422013-04-17 17:12:12 +0000398 *
399 * Callback for the thermal cooling device to return the cpufreq
400 * max cooling state.
401 *
402 * Return: 0 on success, an error code otherwise.
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530403 */
404static int cpufreq_get_max_state(struct thermal_cooling_device *cdev,
405 unsigned long *state)
406{
Viresh Kumar1dea4322017-04-25 15:57:10 +0530407 struct cpufreq_cooling_device *cpufreq_cdev = cdev->devdata;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530408
Viresh Kumar1dea4322017-04-25 15:57:10 +0530409 *state = cpufreq_cdev->max_level;
Viresh Kumardcc6c7f2014-12-04 09:42:02 +0530410 return 0;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530411}
412
413/**
414 * cpufreq_get_cur_state - callback function to get the current cooling state.
415 * @cdev: thermal cooling device pointer.
416 * @state: fill this variable with the current cooling state.
Eduardo Valentin36725522013-04-17 17:12:13 +0000417 *
418 * Callback for the thermal cooling device to return the cpufreq
419 * current cooling state.
420 *
421 * Return: 0 on success, an error code otherwise.
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530422 */
423static int cpufreq_get_cur_state(struct thermal_cooling_device *cdev,
424 unsigned long *state)
425{
Viresh Kumar1dea4322017-04-25 15:57:10 +0530426 struct cpufreq_cooling_device *cpufreq_cdev = cdev->devdata;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530427
Viresh Kumar1dea4322017-04-25 15:57:10 +0530428 *state = cpufreq_cdev->cpufreq_state;
Eduardo Valentin79491e52013-04-17 17:11:59 +0000429
hongbo.zhang160b7d82012-10-30 17:48:59 +0100430 return 0;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530431}
432
433/**
434 * cpufreq_set_cur_state - callback function to set the current cooling state.
435 * @cdev: thermal cooling device pointer.
436 * @state: set this variable to the current cooling state.
Eduardo Valentin56e05fd2013-04-17 17:12:14 +0000437 *
438 * Callback for the thermal cooling device to change the cpufreq
439 * current cooling state.
440 *
441 * Return: 0 on success, an error code otherwise.
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530442 */
443static int cpufreq_set_cur_state(struct thermal_cooling_device *cdev,
444 unsigned long state)
445{
Viresh Kumar1dea4322017-04-25 15:57:10 +0530446 struct cpufreq_cooling_device *cpufreq_cdev = cdev->devdata;
Viresh Kumar5194fe42014-12-04 09:42:00 +0530447 unsigned int clip_freq;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530448
Viresh Kumar4843c4a2014-12-04 09:42:07 +0530449 /* Request state should be less than max_level */
Viresh Kumar1dea4322017-04-25 15:57:10 +0530450 if (WARN_ON(state > cpufreq_cdev->max_level))
Viresh Kumar4843c4a2014-12-04 09:42:07 +0530451 return -EINVAL;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530452
Viresh Kumar5194fe42014-12-04 09:42:00 +0530453 /* Check if the old cooling action is same as new cooling action */
Viresh Kumar1dea4322017-04-25 15:57:10 +0530454 if (cpufreq_cdev->cpufreq_state == state)
Viresh Kumar5194fe42014-12-04 09:42:00 +0530455 return 0;
456
Viresh Kumar349d39d2017-04-25 15:57:19 +0530457 clip_freq = cpufreq_cdev->freq_table[state].frequency;
Viresh Kumar1dea4322017-04-25 15:57:10 +0530458 cpufreq_cdev->cpufreq_state = state;
459 cpufreq_cdev->clipped_freq = clip_freq;
Viresh Kumar5194fe42014-12-04 09:42:00 +0530460
Viresh Kumarba76dd92017-04-25 15:57:18 +0530461 cpufreq_update_policy(cpufreq_cdev->policy->cpu);
Viresh Kumar5194fe42014-12-04 09:42:00 +0530462
463 return 0;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530464}
465
Javi Merinoc36cf072015-02-26 19:00:29 +0000466/**
467 * cpufreq_get_requested_power() - get the current power
468 * @cdev: &thermal_cooling_device pointer
469 * @tz: a valid thermal zone device pointer
470 * @power: pointer in which to store the resulting power
471 *
472 * Calculate the current power consumption of the cpus in milliwatts
473 * and store it in @power. This function should actually calculate
474 * the requested power, but it's hard to get the frequency that
475 * cpufreq would have assigned if there were no thermal limits.
476 * Instead, we calculate the current power on the assumption that the
477 * immediate future will look like the immediate past.
478 *
479 * We use the current frequency and the average load since this
480 * function was last called. In reality, there could have been
481 * multiple opps since this function was last called and that affects
482 * the load calculation. While it's not perfectly accurate, this
483 * simplification is good enough and works. REVISIT this, as more
484 * complex code may be needed if experiments show that it's not
485 * accurate enough.
486 *
487 * Return: 0 on success, -E* if getting the static power failed.
488 */
489static int cpufreq_get_requested_power(struct thermal_cooling_device *cdev,
490 struct thermal_zone_device *tz,
491 u32 *power)
492{
493 unsigned long freq;
Javi Merino6828a472015-03-02 17:17:20 +0000494 int i = 0, cpu, ret;
Javi Merinoc36cf072015-02-26 19:00:29 +0000495 u32 static_power, dynamic_power, total_load = 0;
Viresh Kumar1dea4322017-04-25 15:57:10 +0530496 struct cpufreq_cooling_device *cpufreq_cdev = cdev->devdata;
Viresh Kumarba76dd92017-04-25 15:57:18 +0530497 struct cpufreq_policy *policy = cpufreq_cdev->policy;
Javi Merino6828a472015-03-02 17:17:20 +0000498 u32 *load_cpu = NULL;
Javi Merinoc36cf072015-02-26 19:00:29 +0000499
Viresh Kumarba76dd92017-04-25 15:57:18 +0530500 freq = cpufreq_quick_get(policy->cpu);
Javi Merinoc36cf072015-02-26 19:00:29 +0000501
Javi Merino6828a472015-03-02 17:17:20 +0000502 if (trace_thermal_power_cpu_get_power_enabled()) {
Viresh Kumarba76dd92017-04-25 15:57:18 +0530503 u32 ncpus = cpumask_weight(policy->related_cpus);
Javi Merino6828a472015-03-02 17:17:20 +0000504
Vaishali Thakkara71544c2015-08-19 11:52:19 +0530505 load_cpu = kcalloc(ncpus, sizeof(*load_cpu), GFP_KERNEL);
Javi Merino6828a472015-03-02 17:17:20 +0000506 }
507
Viresh Kumarba76dd92017-04-25 15:57:18 +0530508 for_each_cpu(cpu, policy->related_cpus) {
Javi Merinoc36cf072015-02-26 19:00:29 +0000509 u32 load;
510
511 if (cpu_online(cpu))
Viresh Kumar1dea4322017-04-25 15:57:10 +0530512 load = get_load(cpufreq_cdev, cpu, i);
Javi Merinoc36cf072015-02-26 19:00:29 +0000513 else
514 load = 0;
515
516 total_load += load;
Javi Merino6828a472015-03-02 17:17:20 +0000517 if (trace_thermal_power_cpu_limit_enabled() && load_cpu)
518 load_cpu[i] = load;
519
520 i++;
Javi Merinoc36cf072015-02-26 19:00:29 +0000521 }
522
Viresh Kumar1dea4322017-04-25 15:57:10 +0530523 cpufreq_cdev->last_load = total_load;
Javi Merinoc36cf072015-02-26 19:00:29 +0000524
Viresh Kumar1dea4322017-04-25 15:57:10 +0530525 dynamic_power = get_dynamic_power(cpufreq_cdev, freq);
526 ret = get_static_power(cpufreq_cdev, tz, freq, &static_power);
Javi Merino6828a472015-03-02 17:17:20 +0000527 if (ret) {
Vaishali Thakkara71544c2015-08-19 11:52:19 +0530528 kfree(load_cpu);
Javi Merinoc36cf072015-02-26 19:00:29 +0000529 return ret;
Javi Merino6828a472015-03-02 17:17:20 +0000530 }
531
532 if (load_cpu) {
Viresh Kumarba76dd92017-04-25 15:57:18 +0530533 trace_thermal_power_cpu_get_power(policy->related_cpus, freq,
534 load_cpu, i, dynamic_power,
535 static_power);
Javi Merino6828a472015-03-02 17:17:20 +0000536
Vaishali Thakkara71544c2015-08-19 11:52:19 +0530537 kfree(load_cpu);
Javi Merino6828a472015-03-02 17:17:20 +0000538 }
Javi Merinoc36cf072015-02-26 19:00:29 +0000539
540 *power = static_power + dynamic_power;
541 return 0;
542}
543
544/**
545 * cpufreq_state2power() - convert a cpu cdev state to power consumed
546 * @cdev: &thermal_cooling_device pointer
547 * @tz: a valid thermal zone device pointer
548 * @state: cooling device state to be converted
549 * @power: pointer in which to store the resulting power
550 *
551 * Convert cooling device state @state into power consumption in
552 * milliwatts assuming 100% load. Store the calculated power in
553 * @power.
554 *
555 * Return: 0 on success, -EINVAL if the cooling device state could not
556 * be converted into a frequency or other -E* if there was an error
557 * when calculating the static power.
558 */
559static int cpufreq_state2power(struct thermal_cooling_device *cdev,
560 struct thermal_zone_device *tz,
561 unsigned long state, u32 *power)
562{
563 unsigned int freq, num_cpus;
Javi Merinoc36cf072015-02-26 19:00:29 +0000564 u32 static_power, dynamic_power;
565 int ret;
Viresh Kumar1dea4322017-04-25 15:57:10 +0530566 struct cpufreq_cooling_device *cpufreq_cdev = cdev->devdata;
Javi Merinoc36cf072015-02-26 19:00:29 +0000567
Viresh Kumarcb1b6312017-04-25 15:57:23 +0530568 /* Request state should be less than max_level */
569 if (WARN_ON(state > cpufreq_cdev->max_level))
570 return -EINVAL;
571
Viresh Kumarba76dd92017-04-25 15:57:18 +0530572 num_cpus = cpumask_weight(cpufreq_cdev->policy->cpus);
Javi Merinoc36cf072015-02-26 19:00:29 +0000573
Viresh Kumar349d39d2017-04-25 15:57:19 +0530574 freq = cpufreq_cdev->freq_table[state].frequency;
Viresh Kumar1dea4322017-04-25 15:57:10 +0530575 dynamic_power = cpu_freq_to_power(cpufreq_cdev, freq) * num_cpus;
576 ret = get_static_power(cpufreq_cdev, tz, freq, &static_power);
Javi Merinoc36cf072015-02-26 19:00:29 +0000577 if (ret)
Viresh Kumarba76dd92017-04-25 15:57:18 +0530578 return ret;
Javi Merinoc36cf072015-02-26 19:00:29 +0000579
580 *power = static_power + dynamic_power;
Arnd Bergmannd9cc34a2017-02-02 15:46:26 +0100581 return ret;
Javi Merinoc36cf072015-02-26 19:00:29 +0000582}
583
584/**
585 * cpufreq_power2state() - convert power to a cooling device state
586 * @cdev: &thermal_cooling_device pointer
587 * @tz: a valid thermal zone device pointer
588 * @power: power in milliwatts to be converted
589 * @state: pointer in which to store the resulting state
590 *
591 * Calculate a cooling device state for the cpus described by @cdev
592 * that would allow them to consume at most @power mW and store it in
593 * @state. Note that this calculation depends on external factors
594 * such as the cpu load or the current static power. Calling this
595 * function with the same power as input can yield different cooling
596 * device states depending on those external factors.
597 *
598 * Return: 0 on success, -ENODEV if no cpus are online or -EINVAL if
599 * the calculated frequency could not be converted to a valid state.
600 * The latter should not happen unless the frequencies available to
601 * cpufreq have changed since the initialization of the cpu cooling
602 * device.
603 */
604static int cpufreq_power2state(struct thermal_cooling_device *cdev,
605 struct thermal_zone_device *tz, u32 power,
606 unsigned long *state)
607{
Viresh Kumarba76dd92017-04-25 15:57:18 +0530608 unsigned int cur_freq, target_freq;
Javi Merinoc36cf072015-02-26 19:00:29 +0000609 int ret;
610 s32 dyn_power;
611 u32 last_load, normalised_power, static_power;
Viresh Kumar1dea4322017-04-25 15:57:10 +0530612 struct cpufreq_cooling_device *cpufreq_cdev = cdev->devdata;
Viresh Kumarba76dd92017-04-25 15:57:18 +0530613 struct cpufreq_policy *policy = cpufreq_cdev->policy;
Javi Merinoc36cf072015-02-26 19:00:29 +0000614
Viresh Kumarba76dd92017-04-25 15:57:18 +0530615 cur_freq = cpufreq_quick_get(policy->cpu);
Viresh Kumar1dea4322017-04-25 15:57:10 +0530616 ret = get_static_power(cpufreq_cdev, tz, cur_freq, &static_power);
Javi Merinoc36cf072015-02-26 19:00:29 +0000617 if (ret)
618 return ret;
619
620 dyn_power = power - static_power;
621 dyn_power = dyn_power > 0 ? dyn_power : 0;
Viresh Kumar1dea4322017-04-25 15:57:10 +0530622 last_load = cpufreq_cdev->last_load ?: 1;
Javi Merinoc36cf072015-02-26 19:00:29 +0000623 normalised_power = (dyn_power * 100) / last_load;
Viresh Kumar1dea4322017-04-25 15:57:10 +0530624 target_freq = cpu_power_to_freq(cpufreq_cdev, normalised_power);
Javi Merinoc36cf072015-02-26 19:00:29 +0000625
Viresh Kumar3e08b2d2017-04-25 15:57:12 +0530626 *state = get_level(cpufreq_cdev, target_freq);
Viresh Kumarba76dd92017-04-25 15:57:18 +0530627 trace_thermal_power_cpu_limit(policy->related_cpus, target_freq, *state,
628 power);
Javi Merinoc36cf072015-02-26 19:00:29 +0000629 return 0;
630}
631
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530632/* Bind cpufreq callbacks to thermal cooling device ops */
Brendan Jackmana305a432016-08-17 16:14:59 +0100633
Javi Merinoc36cf072015-02-26 19:00:29 +0000634static struct thermal_cooling_device_ops cpufreq_cooling_ops = {
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530635 .get_max_state = cpufreq_get_max_state,
636 .get_cur_state = cpufreq_get_cur_state,
637 .set_cur_state = cpufreq_set_cur_state,
638};
639
Brendan Jackmana305a432016-08-17 16:14:59 +0100640static struct thermal_cooling_device_ops cpufreq_power_cooling_ops = {
641 .get_max_state = cpufreq_get_max_state,
642 .get_cur_state = cpufreq_get_cur_state,
643 .set_cur_state = cpufreq_set_cur_state,
644 .get_requested_power = cpufreq_get_requested_power,
645 .state2power = cpufreq_state2power,
646 .power2state = cpufreq_power2state,
647};
648
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530649/* Notifier for cpufreq policy change */
650static struct notifier_block thermal_cpufreq_notifier_block = {
651 .notifier_call = cpufreq_thermal_notifier,
652};
653
Viresh Kumarf6859012014-12-04 09:42:06 +0530654static unsigned int find_next_max(struct cpufreq_frequency_table *table,
655 unsigned int prev_max)
656{
657 struct cpufreq_frequency_table *pos;
658 unsigned int max = 0;
659
660 cpufreq_for_each_valid_entry(pos, table) {
661 if (pos->frequency > max && pos->frequency < prev_max)
662 max = pos->frequency;
663 }
664
665 return max;
666}
667
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530668/**
Eduardo Valentin39d99cf2013-09-12 19:26:45 -0400669 * __cpufreq_cooling_register - helper function to create cpufreq cooling device
670 * @np: a valid struct device_node to the cooling device device tree node
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530671 * @policy: cpufreq policy
Viresh Kumar405fb822014-12-04 09:41:55 +0530672 * Normally this should be same as cpufreq policy->related_cpus.
Javi Merinoc36cf072015-02-26 19:00:29 +0000673 * @capacitance: dynamic power coefficient for these cpus
674 * @plat_static_func: function to calculate the static power consumed by these
675 * cpus (optional)
Eduardo Valentin12cb08b2013-04-17 17:12:15 +0000676 *
677 * This interface function registers the cpufreq cooling device with the name
678 * "thermal-cpufreq-%x". This api can support multiple instances of cpufreq
Eduardo Valentin39d99cf2013-09-12 19:26:45 -0400679 * cooling devices. It also gives the opportunity to link the cooling device
680 * with a device tree node, in order to bind it via the thermal DT code.
Eduardo Valentin12cb08b2013-04-17 17:12:15 +0000681 *
682 * Return: a valid struct thermal_cooling_device pointer on success,
683 * on failure, it returns a corresponding ERR_PTR().
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530684 */
Eduardo Valentin39d99cf2013-09-12 19:26:45 -0400685static struct thermal_cooling_device *
686__cpufreq_cooling_register(struct device_node *np,
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530687 struct cpufreq_policy *policy, u32 capacitance,
Javi Merinoc36cf072015-02-26 19:00:29 +0000688 get_static_t plat_static_func)
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530689{
Viresh Kumar04bdbdf2017-04-25 15:57:11 +0530690 struct thermal_cooling_device *cdev;
Viresh Kumar1dea4322017-04-25 15:57:10 +0530691 struct cpufreq_cooling_device *cpufreq_cdev;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530692 char dev_name[THERMAL_NAME_LENGTH];
Javi Merinoc36cf072015-02-26 19:00:29 +0000693 unsigned int freq, i, num_cpus;
Viresh Kumar405fb822014-12-04 09:41:55 +0530694 int ret;
Brendan Jackmana305a432016-08-17 16:14:59 +0100695 struct thermal_cooling_device_ops *cooling_ops;
Matthew Wilcox088db932017-03-10 18:33:28 +0000696 bool first;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530697
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530698 if (IS_ERR_OR_NULL(policy)) {
699 pr_err("%s: cpufreq policy isn't valid: %p", __func__, policy);
700 return ERR_PTR(-EINVAL);
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530701 }
Eduardo Valentin0f1be512014-12-04 09:41:43 +0530702
Viresh Kumar55d85292017-04-25 15:57:15 +0530703 i = cpufreq_table_count_valid_entries(policy);
704 if (!i) {
705 pr_debug("%s: CPUFreq table not found or has no valid entries\n",
706 __func__);
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530707 return ERR_PTR(-ENODEV);
Viresh Kumarf8bfc112016-06-03 10:58:47 +0530708 }
709
Viresh Kumar1dea4322017-04-25 15:57:10 +0530710 cpufreq_cdev = kzalloc(sizeof(*cpufreq_cdev), GFP_KERNEL);
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530711 if (!cpufreq_cdev)
712 return ERR_PTR(-ENOMEM);
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530713
Viresh Kumarb12b6512017-04-25 15:57:16 +0530714 cpufreq_cdev->policy = policy;
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530715 num_cpus = cpumask_weight(policy->related_cpus);
Viresh Kumar81ee14d2017-04-25 15:57:20 +0530716 cpufreq_cdev->idle_time = kcalloc(num_cpus,
717 sizeof(*cpufreq_cdev->idle_time),
718 GFP_KERNEL);
719 if (!cpufreq_cdev->idle_time) {
Viresh Kumar04bdbdf2017-04-25 15:57:11 +0530720 cdev = ERR_PTR(-ENOMEM);
Javi Merinoc36cf072015-02-26 19:00:29 +0000721 goto free_cdev;
722 }
723
Viresh Kumar55d85292017-04-25 15:57:15 +0530724 /* max_level is an index, not a counter */
725 cpufreq_cdev->max_level = i - 1;
Viresh Kumardcc6c7f2014-12-04 09:42:02 +0530726
Viresh Kumarf19b1a12017-05-23 12:33:06 +0530727 cpufreq_cdev->freq_table = kmalloc_array(i,
728 sizeof(*cpufreq_cdev->freq_table),
729 GFP_KERNEL);
Viresh Kumar1dea4322017-04-25 15:57:10 +0530730 if (!cpufreq_cdev->freq_table) {
Viresh Kumar04bdbdf2017-04-25 15:57:11 +0530731 cdev = ERR_PTR(-ENOMEM);
Viresh Kumar81ee14d2017-04-25 15:57:20 +0530732 goto free_idle_time;
Viresh Kumarf6859012014-12-04 09:42:06 +0530733 }
734
Matthew Wilcoxae606082016-12-21 09:47:05 -0800735 ret = ida_simple_get(&cpufreq_ida, 0, 0, GFP_KERNEL);
736 if (ret < 0) {
Viresh Kumar04bdbdf2017-04-25 15:57:11 +0530737 cdev = ERR_PTR(ret);
Viresh Kumar349d39d2017-04-25 15:57:19 +0530738 goto free_table;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530739 }
Viresh Kumar1dea4322017-04-25 15:57:10 +0530740 cpufreq_cdev->id = ret;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530741
Viresh Kumar349d39d2017-04-25 15:57:19 +0530742 snprintf(dev_name, sizeof(dev_name), "thermal-cpufreq-%d",
743 cpufreq_cdev->id);
744
Viresh Kumarf6859012014-12-04 09:42:06 +0530745 /* Fill freq-table in descending order of frequencies */
Viresh Kumar1dea4322017-04-25 15:57:10 +0530746 for (i = 0, freq = -1; i <= cpufreq_cdev->max_level; i++) {
Viresh Kumar55d85292017-04-25 15:57:15 +0530747 freq = find_next_max(policy->freq_table, freq);
Viresh Kumar349d39d2017-04-25 15:57:19 +0530748 cpufreq_cdev->freq_table[i].frequency = freq;
Viresh Kumarf6859012014-12-04 09:42:06 +0530749
750 /* Warn for duplicate entries */
751 if (!freq)
752 pr_warn("%s: table has duplicate entries\n", __func__);
753 else
754 pr_debug("%s: freq:%u KHz\n", __func__, freq);
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530755 }
Viresh Kumarf6859012014-12-04 09:42:06 +0530756
Viresh Kumar349d39d2017-04-25 15:57:19 +0530757 if (capacitance) {
758 cpufreq_cdev->plat_get_static_power = plat_static_func;
759
760 ret = update_freq_table(cpufreq_cdev, capacitance);
761 if (ret) {
762 cdev = ERR_PTR(ret);
763 goto remove_ida;
764 }
765
766 cooling_ops = &cpufreq_power_cooling_ops;
767 } else {
768 cooling_ops = &cpufreq_cooling_ops;
769 }
Lukasz Lubaf840ab12016-05-31 11:32:02 +0100770
Viresh Kumar04bdbdf2017-04-25 15:57:11 +0530771 cdev = thermal_of_cooling_device_register(np, dev_name, cpufreq_cdev,
772 cooling_ops);
773 if (IS_ERR(cdev))
Matthew Wilcoxae606082016-12-21 09:47:05 -0800774 goto remove_ida;
Lukasz Lubaf840ab12016-05-31 11:32:02 +0100775
Viresh Kumar349d39d2017-04-25 15:57:19 +0530776 cpufreq_cdev->clipped_freq = cpufreq_cdev->freq_table[0].frequency;
Viresh Kumar04bdbdf2017-04-25 15:57:11 +0530777 cpufreq_cdev->cdev = cdev;
Viresh Kumar92e615e2014-12-04 09:41:51 +0530778
Russell King02373d72015-08-12 15:22:16 +0530779 mutex_lock(&cooling_list_lock);
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530780 /* Register the notifier for first cpufreq cooling device */
Viresh Kumar1dea4322017-04-25 15:57:10 +0530781 first = list_empty(&cpufreq_cdev_list);
782 list_add(&cpufreq_cdev->node, &cpufreq_cdev_list);
Matthew Wilcox088db932017-03-10 18:33:28 +0000783 mutex_unlock(&cooling_list_lock);
784
785 if (first)
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530786 cpufreq_register_notifier(&thermal_cpufreq_notifier_block,
Eduardo Valentin5fda7f62013-04-17 17:12:11 +0000787 CPUFREQ_POLICY_NOTIFIER);
Eduardo Valentin79491e52013-04-17 17:11:59 +0000788
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530789 return cdev;
Viresh Kumar730abe02014-12-04 09:41:58 +0530790
Matthew Wilcoxae606082016-12-21 09:47:05 -0800791remove_ida:
Viresh Kumar1dea4322017-04-25 15:57:10 +0530792 ida_simple_remove(&cpufreq_ida, cpufreq_cdev->id);
Viresh Kumarf6859012014-12-04 09:42:06 +0530793free_table:
Viresh Kumar1dea4322017-04-25 15:57:10 +0530794 kfree(cpufreq_cdev->freq_table);
Viresh Kumar81ee14d2017-04-25 15:57:20 +0530795free_idle_time:
796 kfree(cpufreq_cdev->idle_time);
Viresh Kumar730abe02014-12-04 09:41:58 +0530797free_cdev:
Viresh Kumar1dea4322017-04-25 15:57:10 +0530798 kfree(cpufreq_cdev);
Viresh Kumar04bdbdf2017-04-25 15:57:11 +0530799 return cdev;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530800}
Eduardo Valentin39d99cf2013-09-12 19:26:45 -0400801
802/**
803 * cpufreq_cooling_register - function to create cpufreq cooling device.
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530804 * @policy: cpufreq policy
Eduardo Valentin39d99cf2013-09-12 19:26:45 -0400805 *
806 * This interface function registers the cpufreq cooling device with the name
807 * "thermal-cpufreq-%x". This api can support multiple instances of cpufreq
808 * cooling devices.
809 *
810 * Return: a valid struct thermal_cooling_device pointer on success,
811 * on failure, it returns a corresponding ERR_PTR().
812 */
813struct thermal_cooling_device *
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530814cpufreq_cooling_register(struct cpufreq_policy *policy)
Eduardo Valentin39d99cf2013-09-12 19:26:45 -0400815{
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530816 return __cpufreq_cooling_register(NULL, policy, 0, NULL);
Eduardo Valentin39d99cf2013-09-12 19:26:45 -0400817}
Eduardo Valentin243dbd92013-04-17 17:11:57 +0000818EXPORT_SYMBOL_GPL(cpufreq_cooling_register);
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530819
820/**
Eduardo Valentin39d99cf2013-09-12 19:26:45 -0400821 * of_cpufreq_cooling_register - function to create cpufreq cooling device.
822 * @np: a valid struct device_node to the cooling device device tree node
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530823 * @policy: cpufreq policy
Eduardo Valentin39d99cf2013-09-12 19:26:45 -0400824 *
825 * This interface function registers the cpufreq cooling device with the name
826 * "thermal-cpufreq-%x". This api can support multiple instances of cpufreq
827 * cooling devices. Using this API, the cpufreq cooling device will be
828 * linked to the device tree node provided.
829 *
830 * Return: a valid struct thermal_cooling_device pointer on success,
831 * on failure, it returns a corresponding ERR_PTR().
832 */
833struct thermal_cooling_device *
834of_cpufreq_cooling_register(struct device_node *np,
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530835 struct cpufreq_policy *policy)
Eduardo Valentin39d99cf2013-09-12 19:26:45 -0400836{
837 if (!np)
838 return ERR_PTR(-EINVAL);
839
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530840 return __cpufreq_cooling_register(np, policy, 0, NULL);
Eduardo Valentin39d99cf2013-09-12 19:26:45 -0400841}
842EXPORT_SYMBOL_GPL(of_cpufreq_cooling_register);
843
844/**
Javi Merinoc36cf072015-02-26 19:00:29 +0000845 * cpufreq_power_cooling_register() - create cpufreq cooling device with power extensions
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530846 * @policy: cpufreq policy
Javi Merinoc36cf072015-02-26 19:00:29 +0000847 * @capacitance: dynamic power coefficient for these cpus
848 * @plat_static_func: function to calculate the static power consumed by these
849 * cpus (optional)
850 *
851 * This interface function registers the cpufreq cooling device with
852 * the name "thermal-cpufreq-%x". This api can support multiple
853 * instances of cpufreq cooling devices. Using this function, the
854 * cooling device will implement the power extensions by using a
855 * simple cpu power model. The cpus must have registered their OPPs
856 * using the OPP library.
857 *
858 * An optional @plat_static_func may be provided to calculate the
859 * static power consumed by these cpus. If the platform's static
860 * power consumption is unknown or negligible, make it NULL.
861 *
862 * Return: a valid struct thermal_cooling_device pointer on success,
863 * on failure, it returns a corresponding ERR_PTR().
864 */
865struct thermal_cooling_device *
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530866cpufreq_power_cooling_register(struct cpufreq_policy *policy, u32 capacitance,
Javi Merinoc36cf072015-02-26 19:00:29 +0000867 get_static_t plat_static_func)
868{
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530869 return __cpufreq_cooling_register(NULL, policy, capacitance,
Javi Merinoc36cf072015-02-26 19:00:29 +0000870 plat_static_func);
871}
872EXPORT_SYMBOL(cpufreq_power_cooling_register);
873
874/**
875 * of_cpufreq_power_cooling_register() - create cpufreq cooling device with power extensions
876 * @np: a valid struct device_node to the cooling device device tree node
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530877 * @policy: cpufreq policy
Javi Merinoc36cf072015-02-26 19:00:29 +0000878 * @capacitance: dynamic power coefficient for these cpus
879 * @plat_static_func: function to calculate the static power consumed by these
880 * cpus (optional)
881 *
882 * This interface function registers the cpufreq cooling device with
883 * the name "thermal-cpufreq-%x". This api can support multiple
884 * instances of cpufreq cooling devices. Using this API, the cpufreq
885 * cooling device will be linked to the device tree node provided.
886 * Using this function, the cooling device will implement the power
887 * extensions by using a simple cpu power model. The cpus must have
888 * registered their OPPs using the OPP library.
889 *
890 * An optional @plat_static_func may be provided to calculate the
891 * static power consumed by these cpus. If the platform's static
892 * power consumption is unknown or negligible, make it NULL.
893 *
894 * Return: a valid struct thermal_cooling_device pointer on success,
895 * on failure, it returns a corresponding ERR_PTR().
896 */
897struct thermal_cooling_device *
898of_cpufreq_power_cooling_register(struct device_node *np,
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530899 struct cpufreq_policy *policy,
Javi Merinoc36cf072015-02-26 19:00:29 +0000900 u32 capacitance,
901 get_static_t plat_static_func)
902{
903 if (!np)
904 return ERR_PTR(-EINVAL);
905
Viresh Kumar4d753aa2017-04-25 15:57:14 +0530906 return __cpufreq_cooling_register(np, policy, capacitance,
Javi Merinoc36cf072015-02-26 19:00:29 +0000907 plat_static_func);
908}
909EXPORT_SYMBOL(of_cpufreq_power_cooling_register);
910
911/**
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530912 * cpufreq_cooling_unregister - function to remove cpufreq cooling device.
913 * @cdev: thermal cooling device pointer.
Eduardo Valentin135266b2013-04-17 17:12:16 +0000914 *
915 * This interface function unregisters the "thermal-cpufreq-%x" cooling device.
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530916 */
917void cpufreq_cooling_unregister(struct thermal_cooling_device *cdev)
918{
Viresh Kumar1dea4322017-04-25 15:57:10 +0530919 struct cpufreq_cooling_device *cpufreq_cdev;
Matthew Wilcox088db932017-03-10 18:33:28 +0000920 bool last;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530921
Eduardo Valentin50e66c72013-08-15 10:54:46 -0400922 if (!cdev)
923 return;
924
Viresh Kumar1dea4322017-04-25 15:57:10 +0530925 cpufreq_cdev = cdev->devdata;
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530926
Matthew Wilcoxae606082016-12-21 09:47:05 -0800927 mutex_lock(&cooling_list_lock);
Viresh Kumar1dea4322017-04-25 15:57:10 +0530928 list_del(&cpufreq_cdev->node);
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530929 /* Unregister the notifier for the last cpufreq cooling device */
Viresh Kumar1dea4322017-04-25 15:57:10 +0530930 last = list_empty(&cpufreq_cdev_list);
Matthew Wilcox088db932017-03-10 18:33:28 +0000931 mutex_unlock(&cooling_list_lock);
932
933 if (last)
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530934 cpufreq_unregister_notifier(&thermal_cpufreq_notifier_block,
Eduardo Valentin5fda7f62013-04-17 17:12:11 +0000935 CPUFREQ_POLICY_NOTIFIER);
Russell King02373d72015-08-12 15:22:16 +0530936
Viresh Kumar04bdbdf2017-04-25 15:57:11 +0530937 thermal_cooling_device_unregister(cpufreq_cdev->cdev);
Viresh Kumar1dea4322017-04-25 15:57:10 +0530938 ida_simple_remove(&cpufreq_ida, cpufreq_cdev->id);
Viresh Kumar81ee14d2017-04-25 15:57:20 +0530939 kfree(cpufreq_cdev->idle_time);
Viresh Kumar1dea4322017-04-25 15:57:10 +0530940 kfree(cpufreq_cdev->freq_table);
941 kfree(cpufreq_cdev);
Amit Daniel Kachhap02361412012-08-16 17:11:40 +0530942}
Eduardo Valentin243dbd92013-04-17 17:11:57 +0000943EXPORT_SYMBOL_GPL(cpufreq_cooling_unregister);