Server : Apache/2.4.18 (Ubuntu) System : Linux canvaswebdesign 3.13.0-71-generic #114-Ubuntu SMP Tue Dec 1 02:34:22 UTC 2015 x86_64 User : oppastar ( 1041) PHP Version : 7.0.33-0ubuntu0.16.04.15 Disable Function : pcntl_alarm,pcntl_fork,pcntl_waitpid,pcntl_wait,pcntl_wifexited,pcntl_wifstopped,pcntl_wifsignaled,pcntl_wifcontinued,pcntl_wexitstatus,pcntl_wtermsig,pcntl_wstopsig,pcntl_signal,pcntl_signal_dispatch,pcntl_get_last_error,pcntl_strerror,pcntl_sigprocmask,pcntl_sigwaitinfo,pcntl_sigtimedwait,pcntl_exec,pcntl_getpriority,pcntl_setpriority, Directory : /usr/src/linux-headers-4.4.0-138/include/linux/ |
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/* * devfreq_cooling: Thermal cooling device implementation for devices using * devfreq * * Copyright (C) 2014-2015 ARM Limited * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed "as is" WITHOUT ANY WARRANTY of any * kind, whether express or implied; without even the implied warranty * of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. */ #ifndef __DEVFREQ_COOLING_H__ #define __DEVFREQ_COOLING_H__ #include <linux/devfreq.h> #include <linux/thermal.h> #ifdef CONFIG_DEVFREQ_THERMAL /** * struct devfreq_cooling_power - Devfreq cooling power ops * @get_static_power: Take voltage, in mV, and return the static power * in mW. If NULL, the static power is assumed * to be 0. * @get_dynamic_power: Take voltage, in mV, and frequency, in HZ, and * return the dynamic power draw in mW. If NULL, * a simple power model is used. * @dyn_power_coeff: Coefficient for the simple dynamic power model in * mW/(MHz mV mV). * If get_dynamic_power() is NULL, then the * dynamic power is calculated as * @dyn_power_coeff * frequency * voltage^2 */ struct devfreq_cooling_power { unsigned long (*get_static_power)(unsigned long voltage); unsigned long (*get_dynamic_power)(unsigned long freq, unsigned long voltage); unsigned long dyn_power_coeff; }; struct thermal_cooling_device * of_devfreq_cooling_register_power(struct device_node *np, struct devfreq *df, struct devfreq_cooling_power *dfc_power); struct thermal_cooling_device * of_devfreq_cooling_register(struct device_node *np, struct devfreq *df); struct thermal_cooling_device *devfreq_cooling_register(struct devfreq *df); void devfreq_cooling_unregister(struct thermal_cooling_device *dfc); #else /* !CONFIG_DEVFREQ_THERMAL */ struct thermal_cooling_device * of_devfreq_cooling_register_power(struct device_node *np, struct devfreq *df, struct devfreq_cooling_power *dfc_power) { return ERR_PTR(-EINVAL); } static inline struct thermal_cooling_device * of_devfreq_cooling_register(struct device_node *np, struct devfreq *df) { return ERR_PTR(-EINVAL); } static inline struct thermal_cooling_device * devfreq_cooling_register(struct devfreq *df) { return ERR_PTR(-EINVAL); } static inline void devfreq_cooling_unregister(struct thermal_cooling_device *dfc) { } #endif /* CONFIG_DEVFREQ_THERMAL */ #endif /* __DEVFREQ_COOLING_H__ */