2 * sys.c - pseudo-bus for system 'devices' (cpus, PICs, timers, etc)
4 * Copyright (c) 2002-3 Patrick Mochel
5 * 2002-3 Open Source Development Lab
7 * This file is released under the GPLv2
9 * This exports a 'system' bus type.
10 * By default, a 'sys' bus gets added to the root of the system. There will
11 * always be core system devices. Devices can use sysdev_register() to
12 * add themselves as children of the system bus.
15 #include <linux/sysdev.h>
16 #include <linux/err.h>
17 #include <linux/module.h>
18 #include <linux/kernel.h>
19 #include <linux/init.h>
20 #include <linux/slab.h>
21 #include <linux/string.h>
23 #include <linux/device.h>
24 #include <linux/mutex.h>
28 #define to_sysdev(k) container_of(k, struct sys_device, kobj)
29 #define to_sysdev_attr(a) container_of(a, struct sysdev_attribute, attr)
33 sysdev_show(struct kobject
* kobj
, struct attribute
* attr
, char * buffer
)
35 struct sys_device
* sysdev
= to_sysdev(kobj
);
36 struct sysdev_attribute
* sysdev_attr
= to_sysdev_attr(attr
);
38 if (sysdev_attr
->show
)
39 return sysdev_attr
->show(sysdev
, buffer
);
45 sysdev_store(struct kobject
* kobj
, struct attribute
* attr
,
46 const char * buffer
, size_t count
)
48 struct sys_device
* sysdev
= to_sysdev(kobj
);
49 struct sysdev_attribute
* sysdev_attr
= to_sysdev_attr(attr
);
51 if (sysdev_attr
->store
)
52 return sysdev_attr
->store(sysdev
, buffer
, count
);
56 static struct sysfs_ops sysfs_ops
= {
58 .store
= sysdev_store
,
61 static struct kobj_type ktype_sysdev
= {
62 .sysfs_ops
= &sysfs_ops
,
66 int sysdev_create_file(struct sys_device
* s
, struct sysdev_attribute
* a
)
68 return sysfs_create_file(&s
->kobj
, &a
->attr
);
72 void sysdev_remove_file(struct sys_device
* s
, struct sysdev_attribute
* a
)
74 sysfs_remove_file(&s
->kobj
, &a
->attr
);
77 EXPORT_SYMBOL_GPL(sysdev_create_file
);
78 EXPORT_SYMBOL_GPL(sysdev_remove_file
);
80 #define to_sysdev_class(k) container_of(k, struct sysdev_class, kset.kobj)
81 #define to_sysdev_class_attr(a) container_of(a, \
82 struct sysdev_class_attribute, attr)
84 static ssize_t
sysdev_class_show(struct kobject
*kobj
, struct attribute
*attr
,
87 struct sysdev_class
* class = to_sysdev_class(kobj
);
88 struct sysdev_class_attribute
*class_attr
= to_sysdev_class_attr(attr
);
91 return class_attr
->show(class, buffer
);
95 static ssize_t
sysdev_class_store(struct kobject
*kobj
, struct attribute
*attr
,
96 const char *buffer
, size_t count
)
98 struct sysdev_class
* class = to_sysdev_class(kobj
);
99 struct sysdev_class_attribute
* class_attr
= to_sysdev_class_attr(attr
);
101 if (class_attr
->store
)
102 return class_attr
->store(class, buffer
, count
);
106 static struct sysfs_ops sysfs_class_ops
= {
107 .show
= sysdev_class_show
,
108 .store
= sysdev_class_store
,
111 static struct kobj_type ktype_sysdev_class
= {
112 .sysfs_ops
= &sysfs_class_ops
,
115 int sysdev_class_create_file(struct sysdev_class
*c
,
116 struct sysdev_class_attribute
*a
)
118 return sysfs_create_file(&c
->kset
.kobj
, &a
->attr
);
120 EXPORT_SYMBOL_GPL(sysdev_class_create_file
);
122 void sysdev_class_remove_file(struct sysdev_class
*c
,
123 struct sysdev_class_attribute
*a
)
125 sysfs_remove_file(&c
->kset
.kobj
, &a
->attr
);
127 EXPORT_SYMBOL_GPL(sysdev_class_remove_file
);
129 static struct kset
*system_kset
;
131 int sysdev_class_register(struct sysdev_class
* cls
)
133 pr_debug("Registering sysdev class '%s'\n",
134 kobject_name(&cls
->kset
.kobj
));
135 INIT_LIST_HEAD(&cls
->drivers
);
136 <<<<<<< HEAD
:drivers
/base
/sys
.c
138 memset(&cls
->kset
.kobj
, 0x00, sizeof(struct kobject
));
139 >>>>>>> 264e3e889d86e552b4191d69bb60f4f3b383135a
:drivers
/base
/sys
.c
140 cls
->kset
.kobj
.parent
= &system_kset
->kobj
;
141 cls
->kset
.kobj
.ktype
= &ktype_sysdev_class
;
142 cls
->kset
.kobj
.kset
= system_kset
;
143 kobject_set_name(&cls
->kset
.kobj
, cls
->name
);
144 return kset_register(&cls
->kset
);
147 void sysdev_class_unregister(struct sysdev_class
* cls
)
149 pr_debug("Unregistering sysdev class '%s'\n",
150 kobject_name(&cls
->kset
.kobj
));
151 kset_unregister(&cls
->kset
);
154 EXPORT_SYMBOL_GPL(sysdev_class_register
);
155 EXPORT_SYMBOL_GPL(sysdev_class_unregister
);
157 static DEFINE_MUTEX(sysdev_drivers_lock
);
160 * sysdev_driver_register - Register auxillary driver
161 * @cls: Device class driver belongs to.
164 * @drv is inserted into @cls->drivers to be
165 * called on each operation on devices of that class. The refcount
166 * of @cls is incremented.
169 int sysdev_driver_register(struct sysdev_class
*cls
, struct sysdev_driver
*drv
)
173 mutex_lock(&sysdev_drivers_lock
);
174 if (cls
&& kset_get(&cls
->kset
)) {
175 list_add_tail(&drv
->entry
, &cls
->drivers
);
177 /* If devices of this class already exist, tell the driver */
179 struct sys_device
*dev
;
180 list_for_each_entry(dev
, &cls
->kset
.list
, kobj
.entry
)
185 printk(KERN_ERR
"%s: invalid device class\n", __FUNCTION__
);
188 mutex_unlock(&sysdev_drivers_lock
);
194 * sysdev_driver_unregister - Remove an auxillary driver.
195 * @cls: Class driver belongs to.
198 void sysdev_driver_unregister(struct sysdev_class
* cls
,
199 struct sysdev_driver
* drv
)
201 mutex_lock(&sysdev_drivers_lock
);
202 list_del_init(&drv
->entry
);
205 struct sys_device
*dev
;
206 list_for_each_entry(dev
, &cls
->kset
.list
, kobj
.entry
)
209 kset_put(&cls
->kset
);
211 mutex_unlock(&sysdev_drivers_lock
);
214 EXPORT_SYMBOL_GPL(sysdev_driver_register
);
215 EXPORT_SYMBOL_GPL(sysdev_driver_unregister
);
220 * sysdev_register - add a system device to the tree
221 * @sysdev: device in question
224 int sysdev_register(struct sys_device
* sysdev
)
227 struct sysdev_class
* cls
= sysdev
->cls
;
232 pr_debug("Registering sys device '%s'\n", kobject_name(&sysdev
->kobj
));
234 <<<<<<< HEAD
:drivers
/base
/sys
.c
236 /* initialize the kobject to 0, in case it had previously been used */
237 memset(&sysdev
->kobj
, 0x00, sizeof(struct kobject
));
239 >>>>>>> 264e3e889d86e552b4191d69bb60f4f3b383135a
:drivers
/base
/sys
.c
240 /* Make sure the kset is set */
241 sysdev
->kobj
.kset
= &cls
->kset
;
243 /* Register the object */
244 error
= kobject_init_and_add(&sysdev
->kobj
, &ktype_sysdev
, NULL
,
245 "%s%d", kobject_name(&cls
->kset
.kobj
),
249 struct sysdev_driver
* drv
;
251 mutex_lock(&sysdev_drivers_lock
);
252 /* Generic notification is implicit, because it's that
253 * code that should have called us.
256 /* Notify class auxillary drivers */
257 list_for_each_entry(drv
, &cls
->drivers
, entry
) {
261 mutex_unlock(&sysdev_drivers_lock
);
263 kobject_uevent(&sysdev
->kobj
, KOBJ_ADD
);
267 void sysdev_unregister(struct sys_device
* sysdev
)
269 struct sysdev_driver
* drv
;
271 mutex_lock(&sysdev_drivers_lock
);
272 list_for_each_entry(drv
, &sysdev
->cls
->drivers
, entry
) {
276 mutex_unlock(&sysdev_drivers_lock
);
278 kobject_put(&sysdev
->kobj
);
284 * sysdev_shutdown - Shut down all system devices.
286 * Loop over each class of system devices, and the devices in each
287 * of those classes. For each device, we call the shutdown method for
288 * each driver registered for the device - the auxillaries,
289 * and the class driver.
291 * Note: The list is iterated in reverse order, so that we shut down
292 * child devices before we shut down thier parents. The list ordering
293 * is guaranteed by virtue of the fact that child devices are registered
294 * after their parents.
297 void sysdev_shutdown(void)
299 struct sysdev_class
* cls
;
301 pr_debug("Shutting Down System Devices\n");
303 mutex_lock(&sysdev_drivers_lock
);
304 list_for_each_entry_reverse(cls
, &system_kset
->list
, kset
.kobj
.entry
) {
305 struct sys_device
* sysdev
;
307 pr_debug("Shutting down type '%s':\n",
308 kobject_name(&cls
->kset
.kobj
));
310 list_for_each_entry(sysdev
, &cls
->kset
.list
, kobj
.entry
) {
311 struct sysdev_driver
* drv
;
312 pr_debug(" %s\n", kobject_name(&sysdev
->kobj
));
314 /* Call auxillary drivers first */
315 list_for_each_entry(drv
, &cls
->drivers
, entry
) {
317 drv
->shutdown(sysdev
);
320 /* Now call the generic one */
322 cls
->shutdown(sysdev
);
325 mutex_unlock(&sysdev_drivers_lock
);
328 static void __sysdev_resume(struct sys_device
*dev
)
330 struct sysdev_class
*cls
= dev
->cls
;
331 struct sysdev_driver
*drv
;
333 /* First, call the class-specific one */
337 /* Call auxillary drivers next. */
338 list_for_each_entry(drv
, &cls
->drivers
, entry
) {
345 * sysdev_suspend - Suspend all system devices.
346 * @state: Power state to enter.
348 * We perform an almost identical operation as sys_device_shutdown()
349 * above, though calling ->suspend() instead. Interrupts are disabled
350 * when this called. Devices are responsible for both saving state and
351 * quiescing or powering down the device.
353 * This is only called by the device PM core, so we let them handle
354 * all synchronization.
357 int sysdev_suspend(pm_message_t state
)
359 struct sysdev_class
* cls
;
360 struct sys_device
*sysdev
, *err_dev
;
361 struct sysdev_driver
*drv
, *err_drv
;
364 pr_debug("Suspending System Devices\n");
366 list_for_each_entry_reverse(cls
, &system_kset
->list
, kset
.kobj
.entry
) {
367 pr_debug("Suspending type '%s':\n",
368 kobject_name(&cls
->kset
.kobj
));
370 list_for_each_entry(sysdev
, &cls
->kset
.list
, kobj
.entry
) {
371 pr_debug(" %s\n", kobject_name(&sysdev
->kobj
));
373 /* Call auxillary drivers first */
374 list_for_each_entry(drv
, &cls
->drivers
, entry
) {
376 ret
= drv
->suspend(sysdev
, state
);
382 /* Now call the generic one */
384 ret
= cls
->suspend(sysdev
, state
);
391 /* resume current sysdev */
394 printk(KERN_ERR
"Class suspend failed for %s\n",
395 kobject_name(&sysdev
->kobj
));
399 printk(KERN_ERR
"Class driver suspend failed for %s\n",
400 kobject_name(&sysdev
->kobj
));
401 list_for_each_entry(err_drv
, &cls
->drivers
, entry
) {
405 err_drv
->resume(sysdev
);
408 /* resume other sysdevs in current class */
409 list_for_each_entry(err_dev
, &cls
->kset
.list
, kobj
.entry
) {
410 if (err_dev
== sysdev
)
412 pr_debug(" %s\n", kobject_name(&err_dev
->kobj
));
413 __sysdev_resume(err_dev
);
416 /* resume other classes */
417 list_for_each_entry_continue(cls
, &system_kset
->list
, kset
.kobj
.entry
) {
418 list_for_each_entry(err_dev
, &cls
->kset
.list
, kobj
.entry
) {
419 pr_debug(" %s\n", kobject_name(&err_dev
->kobj
));
420 __sysdev_resume(err_dev
);
428 * sysdev_resume - Bring system devices back to life.
430 * Similar to sys_device_suspend(), but we iterate the list forwards
431 * to guarantee that parent devices are resumed before their children.
433 * Note: Interrupts are disabled when called.
436 int sysdev_resume(void)
438 struct sysdev_class
* cls
;
440 pr_debug("Resuming System Devices\n");
442 list_for_each_entry(cls
, &system_kset
->list
, kset
.kobj
.entry
) {
443 struct sys_device
* sysdev
;
445 pr_debug("Resuming type '%s':\n",
446 kobject_name(&cls
->kset
.kobj
));
448 list_for_each_entry(sysdev
, &cls
->kset
.list
, kobj
.entry
) {
449 pr_debug(" %s\n", kobject_name(&sysdev
->kobj
));
451 __sysdev_resume(sysdev
);
458 int __init
system_bus_init(void)
460 system_kset
= kset_create_and_add("system", NULL
, &devices_kset
->kobj
);
466 EXPORT_SYMBOL_GPL(sysdev_register
);
467 EXPORT_SYMBOL_GPL(sysdev_unregister
);