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cpufreq: intel_pstate: Proportional algorithm for Atom
The PID algorithm used by the intel_pstate driver tends to drive performance to the minimum for workloads with utilization below the setpoint, which is undesirable, so replace it with a modified "proportional" algorithm on Atom. The new algorithm will set the new P-state to be 1.25 times the available maximum times the (frequency-invariant) utilization during the previous sampling period except when the target P-state computed this way is lower than the average P-state during the previous sampling period. In the latter case, it will increase the target by 50% of the difference between it and the average P-state to prevent performance from dropping down too fast in some cases. Signed-off-by: Rafael J. Wysocki <rafael.j.wysocki@intel.com> Tested-by: Srinivas Pandruvada <srinivas.pandruvada@linux.intel.com>
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@ -1232,6 +1232,7 @@ static inline int32_t get_target_pstate_use_cpu_load(struct cpudata *cpu)
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{
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struct sample *sample = &cpu->sample;
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int32_t busy_frac, boost;
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int target, avg_pstate;
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busy_frac = div_fp(sample->mperf, sample->tsc);
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@ -1242,7 +1243,26 @@ static inline int32_t get_target_pstate_use_cpu_load(struct cpudata *cpu)
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busy_frac = boost;
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sample->busy_scaled = busy_frac * 100;
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return get_avg_pstate(cpu) - pid_calc(&cpu->pid, sample->busy_scaled);
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target = limits->no_turbo || limits->turbo_disabled ?
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cpu->pstate.max_pstate : cpu->pstate.turbo_pstate;
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target += target >> 2;
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target = mul_fp(target, busy_frac);
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if (target < cpu->pstate.min_pstate)
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target = cpu->pstate.min_pstate;
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/*
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* If the average P-state during the previous cycle was higher than the
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* current target, add 50% of the difference to the target to reduce
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* possible performance oscillations and offset possible performance
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* loss related to moving the workload from one CPU to another within
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* a package/module.
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*/
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avg_pstate = get_avg_pstate(cpu);
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if (avg_pstate > target)
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target += (avg_pstate - target) >> 1;
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return target;
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}
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static inline int32_t get_target_pstate_use_performance(struct cpudata *cpu)
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