2 * sysfs.c - sysfs support
4 * (C) 2006-2007 Shaohua Li <shaohua.li@intel.com>
6 * This code is licenced under the GPL.
9 #include <linux/kernel.h>
10 #include <linux/cpuidle.h>
11 #include <linux/sysfs.h>
12 #include <linux/cpu.h>
16 static unsigned int sysfs_switch
;
17 static int __init
cpuidle_sysfs_setup(char *unused
)
22 __setup("cpuidle_sysfs_switch", cpuidle_sysfs_setup
);
24 static ssize_t
show_available_governors(struct sysdev_class
*class,
25 struct sysdev_class_attribute
*attr
,
29 struct cpuidle_governor
*tmp
;
31 mutex_lock(&cpuidle_lock
);
32 list_for_each_entry(tmp
, &cpuidle_governors
, governor_list
) {
33 if (i
>= (ssize_t
) ((PAGE_SIZE
/sizeof(char)) - CPUIDLE_NAME_LEN
- 2))
35 i
+= scnprintf(&buf
[i
], CPUIDLE_NAME_LEN
, "%s ", tmp
->name
);
39 i
+= sprintf(&buf
[i
], "\n");
40 mutex_unlock(&cpuidle_lock
);
44 static ssize_t
show_current_driver(struct sysdev_class
*class,
45 struct sysdev_class_attribute
*attr
,
50 spin_lock(&cpuidle_driver_lock
);
51 if (cpuidle_curr_driver
)
52 ret
= sprintf(buf
, "%s\n", cpuidle_curr_driver
->name
);
54 ret
= sprintf(buf
, "none\n");
55 spin_unlock(&cpuidle_driver_lock
);
60 static ssize_t
show_current_governor(struct sysdev_class
*class,
61 struct sysdev_class_attribute
*attr
,
66 mutex_lock(&cpuidle_lock
);
67 if (cpuidle_curr_governor
)
68 ret
= sprintf(buf
, "%s\n", cpuidle_curr_governor
->name
);
70 ret
= sprintf(buf
, "none\n");
71 mutex_unlock(&cpuidle_lock
);
76 static ssize_t
store_current_governor(struct sysdev_class
*class,
77 struct sysdev_class_attribute
*attr
,
78 const char *buf
, size_t count
)
80 char gov_name
[CPUIDLE_NAME_LEN
];
83 struct cpuidle_governor
*gov
;
85 if (!len
|| len
>= sizeof(gov_name
))
88 memcpy(gov_name
, buf
, len
);
90 if (gov_name
[len
- 1] == '\n')
91 gov_name
[--len
] = '\0';
93 mutex_lock(&cpuidle_lock
);
95 list_for_each_entry(gov
, &cpuidle_governors
, governor_list
) {
96 if (strlen(gov
->name
) == len
&& !strcmp(gov
->name
, gov_name
)) {
97 ret
= cpuidle_switch_governor(gov
);
102 mutex_unlock(&cpuidle_lock
);
110 static SYSDEV_CLASS_ATTR(current_driver
, 0444, show_current_driver
, NULL
);
111 static SYSDEV_CLASS_ATTR(current_governor_ro
, 0444, show_current_governor
,
114 static struct attribute
*cpuclass_default_attrs
[] = {
115 &attr_current_driver
.attr
,
116 &attr_current_governor_ro
.attr
,
120 static SYSDEV_CLASS_ATTR(available_governors
, 0444, show_available_governors
,
122 static SYSDEV_CLASS_ATTR(current_governor
, 0644, show_current_governor
,
123 store_current_governor
);
125 static struct attribute
*cpuclass_switch_attrs
[] = {
126 &attr_available_governors
.attr
,
127 &attr_current_driver
.attr
,
128 &attr_current_governor
.attr
,
132 static struct attribute_group cpuclass_attr_group
= {
133 .attrs
= cpuclass_default_attrs
,
138 * cpuidle_add_class_sysfs - add CPU global sysfs attributes
140 int cpuidle_add_class_sysfs(struct sysdev_class
*cls
)
143 cpuclass_attr_group
.attrs
= cpuclass_switch_attrs
;
145 return sysfs_create_group(&cls
->kset
.kobj
, &cpuclass_attr_group
);
149 * cpuidle_remove_class_sysfs - remove CPU global sysfs attributes
151 void cpuidle_remove_class_sysfs(struct sysdev_class
*cls
)
153 sysfs_remove_group(&cls
->kset
.kobj
, &cpuclass_attr_group
);
156 struct cpuidle_attr
{
157 struct attribute attr
;
158 ssize_t (*show
)(struct cpuidle_device
*, char *);
159 ssize_t (*store
)(struct cpuidle_device
*, const char *, size_t count
);
162 #define define_one_ro(_name, show) \
163 static struct cpuidle_attr attr_##_name = __ATTR(_name, 0444, show, NULL)
164 #define define_one_rw(_name, show, store) \
165 static struct cpuidle_attr attr_##_name = __ATTR(_name, 0644, show, store)
167 #define kobj_to_cpuidledev(k) container_of(k, struct cpuidle_device, kobj)
168 #define attr_to_cpuidleattr(a) container_of(a, struct cpuidle_attr, attr)
169 static ssize_t
cpuidle_show(struct kobject
* kobj
, struct attribute
* attr
,char * buf
)
172 struct cpuidle_device
*dev
= kobj_to_cpuidledev(kobj
);
173 struct cpuidle_attr
* cattr
= attr_to_cpuidleattr(attr
);
176 mutex_lock(&cpuidle_lock
);
177 ret
= cattr
->show(dev
, buf
);
178 mutex_unlock(&cpuidle_lock
);
183 static ssize_t
cpuidle_store(struct kobject
* kobj
, struct attribute
* attr
,
184 const char * buf
, size_t count
)
187 struct cpuidle_device
*dev
= kobj_to_cpuidledev(kobj
);
188 struct cpuidle_attr
* cattr
= attr_to_cpuidleattr(attr
);
191 mutex_lock(&cpuidle_lock
);
192 ret
= cattr
->store(dev
, buf
, count
);
193 mutex_unlock(&cpuidle_lock
);
198 static const struct sysfs_ops cpuidle_sysfs_ops
= {
199 .show
= cpuidle_show
,
200 .store
= cpuidle_store
,
203 static void cpuidle_sysfs_release(struct kobject
*kobj
)
205 struct cpuidle_device
*dev
= kobj_to_cpuidledev(kobj
);
207 complete(&dev
->kobj_unregister
);
210 static struct kobj_type ktype_cpuidle
= {
211 .sysfs_ops
= &cpuidle_sysfs_ops
,
212 .release
= cpuidle_sysfs_release
,
215 struct cpuidle_state_attr
{
216 struct attribute attr
;
217 ssize_t (*show
)(struct cpuidle_state
*, char *);
218 ssize_t (*store
)(struct cpuidle_state
*, const char *, size_t);
221 #define define_one_state_ro(_name, show) \
222 static struct cpuidle_state_attr attr_##_name = __ATTR(_name, 0444, show, NULL)
224 #define define_show_state_function(_name) \
225 static ssize_t show_state_##_name(struct cpuidle_state *state, char *buf) \
227 return sprintf(buf, "%u\n", state->_name);\
230 #define define_show_state_ull_function(_name) \
231 static ssize_t show_state_##_name(struct cpuidle_state *state, char *buf) \
233 return sprintf(buf, "%llu\n", state->_name);\
236 #define define_show_state_str_function(_name) \
237 static ssize_t show_state_##_name(struct cpuidle_state *state, char *buf) \
239 if (state->_name[0] == '\0')\
240 return sprintf(buf, "<null>\n");\
241 return sprintf(buf, "%s\n", state->_name);\
244 define_show_state_function(exit_latency
)
245 define_show_state_function(power_usage
)
246 define_show_state_ull_function(usage
)
247 define_show_state_ull_function(time
)
248 define_show_state_str_function(name
)
249 define_show_state_str_function(desc
)
251 define_one_state_ro(name
, show_state_name
);
252 define_one_state_ro(desc
, show_state_desc
);
253 define_one_state_ro(latency
, show_state_exit_latency
);
254 define_one_state_ro(power
, show_state_power_usage
);
255 define_one_state_ro(usage
, show_state_usage
);
256 define_one_state_ro(time
, show_state_time
);
258 static struct attribute
*cpuidle_state_default_attrs
[] = {
268 #define kobj_to_state_obj(k) container_of(k, struct cpuidle_state_kobj, kobj)
269 #define kobj_to_state(k) (kobj_to_state_obj(k)->state)
270 #define attr_to_stateattr(a) container_of(a, struct cpuidle_state_attr, attr)
271 static ssize_t
cpuidle_state_show(struct kobject
* kobj
,
272 struct attribute
* attr
,char * buf
)
275 struct cpuidle_state
*state
= kobj_to_state(kobj
);
276 struct cpuidle_state_attr
* cattr
= attr_to_stateattr(attr
);
279 ret
= cattr
->show(state
, buf
);
284 static const struct sysfs_ops cpuidle_state_sysfs_ops
= {
285 .show
= cpuidle_state_show
,
288 static void cpuidle_state_sysfs_release(struct kobject
*kobj
)
290 struct cpuidle_state_kobj
*state_obj
= kobj_to_state_obj(kobj
);
292 complete(&state_obj
->kobj_unregister
);
295 static struct kobj_type ktype_state_cpuidle
= {
296 .sysfs_ops
= &cpuidle_state_sysfs_ops
,
297 .default_attrs
= cpuidle_state_default_attrs
,
298 .release
= cpuidle_state_sysfs_release
,
301 static void inline cpuidle_free_state_kobj(struct cpuidle_device
*device
, int i
)
303 kobject_put(&device
->kobjs
[i
]->kobj
);
304 wait_for_completion(&device
->kobjs
[i
]->kobj_unregister
);
305 kfree(device
->kobjs
[i
]);
306 device
->kobjs
[i
] = NULL
;
310 * cpuidle_add_driver_sysfs - adds driver-specific sysfs attributes
311 * @device: the target device
313 int cpuidle_add_state_sysfs(struct cpuidle_device
*device
)
315 int i
, ret
= -ENOMEM
;
316 struct cpuidle_state_kobj
*kobj
;
318 /* state statistics */
319 for (i
= 0; i
< device
->state_count
; i
++) {
320 kobj
= kzalloc(sizeof(struct cpuidle_state_kobj
), GFP_KERNEL
);
323 kobj
->state
= &device
->states
[i
];
324 init_completion(&kobj
->kobj_unregister
);
326 ret
= kobject_init_and_add(&kobj
->kobj
, &ktype_state_cpuidle
, &device
->kobj
,
332 kobject_uevent(&kobj
->kobj
, KOBJ_ADD
);
333 device
->kobjs
[i
] = kobj
;
339 for (i
= i
- 1; i
>= 0; i
--)
340 cpuidle_free_state_kobj(device
, i
);
345 * cpuidle_remove_driver_sysfs - removes driver-specific sysfs attributes
346 * @device: the target device
348 void cpuidle_remove_state_sysfs(struct cpuidle_device
*device
)
352 for (i
= 0; i
< device
->state_count
; i
++)
353 cpuidle_free_state_kobj(device
, i
);
357 * cpuidle_add_sysfs - creates a sysfs instance for the target device
358 * @sysdev: the target device
360 int cpuidle_add_sysfs(struct sys_device
*sysdev
)
362 int cpu
= sysdev
->id
;
363 struct cpuidle_device
*dev
;
366 dev
= per_cpu(cpuidle_devices
, cpu
);
367 error
= kobject_init_and_add(&dev
->kobj
, &ktype_cpuidle
, &sysdev
->kobj
,
370 kobject_uevent(&dev
->kobj
, KOBJ_ADD
);
375 * cpuidle_remove_sysfs - deletes a sysfs instance on the target device
376 * @sysdev: the target device
378 void cpuidle_remove_sysfs(struct sys_device
*sysdev
)
380 int cpu
= sysdev
->id
;
381 struct cpuidle_device
*dev
;
383 dev
= per_cpu(cpuidle_devices
, cpu
);
384 kobject_put(&dev
->kobj
);