Power management fixes for 5.16-rc2
- Fix system suspend handling in DTPM when it is enabled, but not actually used (Daniel Lezcano). - Describe the new cpufreq callback for Energy Model registration and explain the "advanced" and "simple" EM variants in the EM documentation (Lukasz Luba). -----BEGIN PGP SIGNATURE----- iQJGBAABCAAwFiEE4fcc61cGeeHD/fCwgsRv/nhiVHEFAmGWrY8SHHJqd0Byand5 c29ja2kubmV0AAoJEILEb/54YlRxKvQP/AxYRH0APEoHn99kGeWWbFWcGz2ZXmuH BSdqu6zo/RUBvBkLjBxCKXq28Ns6lL2tOuAU8/zCnARiZm2Ojt/7OrdaY7FwPvqI cM5z1Tzas9/bfzNlPOjfyeQhbBlx7fR4CPo+8mrMSDflN8kHVXMJl2g/5N0pgl1V YmnMvHwx44Zqz3L6hUc5PPDyAaX2aUNBpmL7FZXTGT20g4E2jdNXr+m8LW6Yytd8 kU1Zg2yhT7PWnSuyY47Gosojl6Pe3c1bPCVjiy9MH7Kf/r6l0dVHI8rz27fO0rNZ kMigOMJGtGZxy9wER92KNZA0ZQXJv24XjNL3aOYfoOUJB4FOyDummAw6+y9dk2DY SoyT7vidwgBpEXit5bIDD/VOBx7GRU3gLT7Fdj1fzRd1ecypFVZdvQZPfySJf7BB 3PZciecND5EQ7ADWP5yjotvJHJZdQ+DR5BuQ3t+okAmTFUROKrx+E+4dgdA3c9aM ITqzYPn2yPmT6vq57ttXR61EhfB0Q/cLUYhYkdZQwzg1OFyJgiuRdfwggxO/e8aq mR2YHfjAAhSqIKyqNzZOnm1sdTFTLd93/O9c+RaJyKOK7mDSYeVupfphuIVgj4G8 9GylOwkCnm/MJRiE+cb2xXhf8ucAUTS3bjmQau5XdBNEsb1PATES1QoGE7wNYpnc enFRHiYbJttM =zSux -----END PGP SIGNATURE----- Merge tag 'pm-5.16-rc2' of git://git.kernel.org/pub/scm/linux/kernel/git/rafael/linux-pm Pull power management fixes from Rafael Wysocki: "These fix a system-wide suspend issue in the DTPM framework and improve the Energy Model documentation. Specifics: - Fix system suspend handling in DTPM when it is enabled, but not actually used (Daniel Lezcano) - Describe the new cpufreq callback for Energy Model registration and explain the "advanced" and "simple" EM variants in the EM documentation (Lukasz Luba)" * tag 'pm-5.16-rc2' of git://git.kernel.org/pub/scm/linux/kernel/git/rafael/linux-pm: Documentation: power: Describe 'advanced' and 'simple' EM models Documentation: power: Add description about new callback for EM registration powercap: DTPM: Fix suspend failure and kernel warning
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@ -84,6 +84,16 @@ CONFIG_ENERGY_MODEL must be enabled to use the EM framework.
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2.2 Registration of performance domains
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^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
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Registration of 'advanced' EM
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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The 'advanced' EM gets it's name due to the fact that the driver is allowed
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to provide more precised power model. It's not limited to some implemented math
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formula in the framework (like it's in 'simple' EM case). It can better reflect
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the real power measurements performed for each performance state. Thus, this
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registration method should be preferred in case considering EM static power
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(leakage) is important.
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Drivers are expected to register performance domains into the EM framework by
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calling the following API::
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@ -103,6 +113,18 @@ to: return warning/error, stop working or panic.
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See Section 3. for an example of driver implementing this
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callback, or Section 2.4 for further documentation on this API
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Registration of 'simple' EM
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~~~~~~~~~~~~~~~~~~~~~~~~~~~
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The 'simple' EM is registered using the framework helper function
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cpufreq_register_em_with_opp(). It implements a power model which is tight to
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math formula::
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Power = C * V^2 * f
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The EM which is registered using this method might not reflect correctly the
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physics of a real device, e.g. when static power (leakage) is important.
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2.3 Accessing performance domains
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^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
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@ -138,6 +160,10 @@ or in Section 2.4
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3. Example driver
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-----------------
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The CPUFreq framework supports dedicated callback for registering
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the EM for a given CPU(s) 'policy' object: cpufreq_driver::register_em().
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That callback has to be implemented properly for a given driver,
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because the framework would call it at the right time during setup.
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This section provides a simple example of a CPUFreq driver registering a
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performance domain in the Energy Model framework using the (fake) 'foo'
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protocol. The driver implements an est_power() function to be provided to the
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@ -167,25 +193,22 @@ EM framework::
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20 return 0;
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21 }
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22
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23 static int foo_cpufreq_init(struct cpufreq_policy *policy)
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23 static void foo_cpufreq_register_em(struct cpufreq_policy *policy)
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24 {
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25 struct em_data_callback em_cb = EM_DATA_CB(est_power);
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26 struct device *cpu_dev;
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27 int nr_opp, ret;
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27 int nr_opp;
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28
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29 cpu_dev = get_cpu_device(cpumask_first(policy->cpus));
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30
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31 /* Do the actual CPUFreq init work ... */
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32 ret = do_foo_cpufreq_init(policy);
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33 if (ret)
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34 return ret;
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35
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36 /* Find the number of OPPs for this policy */
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37 nr_opp = foo_get_nr_opp(policy);
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31 /* Find the number of OPPs for this policy */
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32 nr_opp = foo_get_nr_opp(policy);
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33
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34 /* And register the new performance domain */
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35 em_dev_register_perf_domain(cpu_dev, nr_opp, &em_cb, policy->cpus,
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36 true);
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37 }
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38
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39 /* And register the new performance domain */
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40 em_dev_register_perf_domain(cpu_dev, nr_opp, &em_cb, policy->cpus,
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41 true);
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42
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43 return 0;
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44 }
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39 static struct cpufreq_driver foo_cpufreq_driver = {
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40 .register_em = foo_cpufreq_register_em,
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41 };
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@ -166,16 +166,13 @@ static struct dtpm_ops dtpm_ops = {
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static int cpuhp_dtpm_cpu_offline(unsigned int cpu)
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{
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struct em_perf_domain *pd;
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struct dtpm_cpu *dtpm_cpu;
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pd = em_cpu_get(cpu);
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if (!pd)
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return -EINVAL;
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dtpm_cpu = per_cpu(dtpm_per_cpu, cpu);
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if (dtpm_cpu)
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dtpm_update_power(&dtpm_cpu->dtpm);
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return dtpm_update_power(&dtpm_cpu->dtpm);
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return 0;
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}
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static int cpuhp_dtpm_cpu_online(unsigned int cpu)
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