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/*
* linux / drivers / cpufreq / cpufreq_userspace . c
*
* Copyright ( C ) 2001 Russell King
* ( C ) 2002 - 2004 Dominik Brodowski < linux @ brodo . de >
*
* 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 .
*
*/
# include <linux/kernel.h>
# include <linux/module.h>
# include <linux/smp.h>
# include <linux/init.h>
# include <linux/spinlock.h>
# include <linux/interrupt.h>
# include <linux/cpufreq.h>
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# include <linux/cpu.h>
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# include <linux/types.h>
# include <linux/fs.h>
# include <linux/sysfs.h>
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# include <linux/mutex.h>
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# include <asm/uaccess.h>
/**
* A few values needed by the userspace governor
*/
static unsigned int cpu_max_freq [ NR_CPUS ] ;
static unsigned int cpu_min_freq [ NR_CPUS ] ;
static unsigned int cpu_cur_freq [ NR_CPUS ] ; /* current CPU freq */
static unsigned int cpu_set_freq [ NR_CPUS ] ; /* CPU freq desired by userspace */
static unsigned int cpu_is_managed [ NR_CPUS ] ;
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static DEFINE_MUTEX ( userspace_mutex ) ;
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static int cpus_using_userspace_governor ;
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# define dprintk(msg...) cpufreq_debug_printk(CPUFREQ_DEBUG_GOVERNOR, "userspace", msg)
/* keep track of frequency transitions */
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static int
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userspace_cpufreq_notifier ( struct notifier_block * nb , unsigned long val ,
void * data )
{
struct cpufreq_freqs * freq = data ;
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if ( ! cpu_is_managed [ freq - > cpu ] )
return 0 ;
dprintk ( " saving cpu_cur_freq of cpu %u to be %u kHz \n " ,
freq - > cpu , freq - > new ) ;
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cpu_cur_freq [ freq - > cpu ] = freq - > new ;
return 0 ;
}
static struct notifier_block userspace_cpufreq_notifier_block = {
. notifier_call = userspace_cpufreq_notifier
} ;
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/**
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* cpufreq_set - set the CPU frequency
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* @ policy : pointer to policy struct where freq is being set
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* @ freq : target frequency in kHz
*
* Sets the CPU frequency to freq .
*/
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static int cpufreq_set ( struct cpufreq_policy * policy , unsigned int freq )
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{
int ret = - EINVAL ;
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dprintk ( " cpufreq_set for cpu %u, freq %u kHz \n " , policy - > cpu , freq ) ;
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mutex_lock ( & userspace_mutex ) ;
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if ( ! cpu_is_managed [ policy - > cpu ] )
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goto err ;
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cpu_set_freq [ policy - > cpu ] = freq ;
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if ( freq < cpu_min_freq [ policy - > cpu ] )
freq = cpu_min_freq [ policy - > cpu ] ;
if ( freq > cpu_max_freq [ policy - > cpu ] )
freq = cpu_max_freq [ policy - > cpu ] ;
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/*
* We ' re safe from concurrent calls to - > target ( ) here
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* as we hold the userspace_mutex lock . If we were calling
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* cpufreq_driver_target , a deadlock situation might occur :
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* A : cpufreq_set ( lock userspace_mutex ) - > cpufreq_driver_target ( lock policy - > lock )
* B : cpufreq_set_policy ( lock policy - > lock ) - > __cpufreq_governor - > cpufreq_governor_userspace ( lock userspace_mutex )
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*/
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ret = __cpufreq_driver_target ( policy , freq , CPUFREQ_RELATION_L ) ;
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err :
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mutex_unlock ( & userspace_mutex ) ;
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return ret ;
}
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static ssize_t show_speed ( struct cpufreq_policy * policy , char * buf )
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{
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return sprintf ( buf , " %u \n " , cpu_cur_freq [ policy - > cpu ] ) ;
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}
static int cpufreq_governor_userspace ( struct cpufreq_policy * policy ,
unsigned int event )
{
unsigned int cpu = policy - > cpu ;
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int rc = 0 ;
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switch ( event ) {
case CPUFREQ_GOV_START :
if ( ! cpu_online ( cpu ) )
return - EINVAL ;
BUG_ON ( ! policy - > cur ) ;
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mutex_lock ( & userspace_mutex ) ;
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if ( cpus_using_userspace_governor = = 0 ) {
cpufreq_register_notifier (
& userspace_cpufreq_notifier_block ,
CPUFREQ_TRANSITION_NOTIFIER ) ;
}
cpus_using_userspace_governor + + ;
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cpu_is_managed [ cpu ] = 1 ;
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cpu_min_freq [ cpu ] = policy - > min ;
cpu_max_freq [ cpu ] = policy - > max ;
cpu_cur_freq [ cpu ] = policy - > cur ;
cpu_set_freq [ cpu ] = policy - > cur ;
dprintk ( " managing cpu %u started (%u - %u kHz, currently %u kHz) \n " , cpu , cpu_min_freq [ cpu ] , cpu_max_freq [ cpu ] , cpu_cur_freq [ cpu ] ) ;
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mutex_unlock ( & userspace_mutex ) ;
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break ;
case CPUFREQ_GOV_STOP :
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mutex_lock ( & userspace_mutex ) ;
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cpus_using_userspace_governor - - ;
if ( cpus_using_userspace_governor = = 0 ) {
cpufreq_unregister_notifier (
& userspace_cpufreq_notifier_block ,
CPUFREQ_TRANSITION_NOTIFIER ) ;
}
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cpu_is_managed [ cpu ] = 0 ;
cpu_min_freq [ cpu ] = 0 ;
cpu_max_freq [ cpu ] = 0 ;
cpu_set_freq [ cpu ] = 0 ;
dprintk ( " managing cpu %u stopped \n " , cpu ) ;
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mutex_unlock ( & userspace_mutex ) ;
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break ;
case CPUFREQ_GOV_LIMITS :
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mutex_lock ( & userspace_mutex ) ;
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dprintk ( " limit event for cpu %u: %u - %u kHz, "
" currently %u kHz, last set to %u kHz \n " ,
cpu , policy - > min , policy - > max ,
cpu_cur_freq [ cpu ] , cpu_set_freq [ cpu ] ) ;
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if ( policy - > max < cpu_set_freq [ cpu ] ) {
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__cpufreq_driver_target ( policy , policy - > max ,
CPUFREQ_RELATION_H ) ;
}
else if ( policy - > min > cpu_set_freq [ cpu ] ) {
__cpufreq_driver_target ( policy , policy - > min ,
CPUFREQ_RELATION_L ) ;
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}
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else {
__cpufreq_driver_target ( policy , cpu_set_freq [ cpu ] ,
CPUFREQ_RELATION_L ) ;
}
cpu_min_freq [ cpu ] = policy - > min ;
cpu_max_freq [ cpu ] = policy - > max ;
cpu_cur_freq [ cpu ] = policy - > cur ;
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mutex_unlock ( & userspace_mutex ) ;
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break ;
}
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return rc ;
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}
struct cpufreq_governor cpufreq_gov_userspace = {
. name = " userspace " ,
. governor = cpufreq_governor_userspace ,
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. store_setspeed = cpufreq_set ,
. show_setspeed = show_speed ,
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. owner = THIS_MODULE ,
} ;
EXPORT_SYMBOL ( cpufreq_gov_userspace ) ;
static int __init cpufreq_gov_userspace_init ( void )
{
return cpufreq_register_governor ( & cpufreq_gov_userspace ) ;
}
static void __exit cpufreq_gov_userspace_exit ( void )
{
cpufreq_unregister_governor ( & cpufreq_gov_userspace ) ;
}
MODULE_AUTHOR ( " Dominik Brodowski <linux@brodo.de>, Russell King <rmk@arm.linux.org.uk> " ) ;
MODULE_DESCRIPTION ( " CPUfreq policy governor 'userspace' " ) ;
MODULE_LICENSE ( " GPL " ) ;
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# ifdef CONFIG_CPU_FREQ_DEFAULT_GOV_USERSPACE
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fs_initcall ( cpufreq_gov_userspace_init ) ;
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# else
module_init ( cpufreq_gov_userspace_init ) ;
# endif
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module_exit ( cpufreq_gov_userspace_exit ) ;