Merge remote-tracking branch 'md/for-next'
[deliverable/linux.git] / drivers / base / core.c
CommitLineData
1da177e4
LT
1/*
2 * drivers/base/core.c - core driver model code (device registration, etc)
3 *
4 * Copyright (c) 2002-3 Patrick Mochel
5 * Copyright (c) 2002-3 Open Source Development Labs
64bb5d2c
GKH
6 * Copyright (c) 2006 Greg Kroah-Hartman <gregkh@suse.de>
7 * Copyright (c) 2006 Novell, Inc.
1da177e4
LT
8 *
9 * This file is released under the GPLv2
10 *
11 */
12
1da177e4
LT
13#include <linux/device.h>
14#include <linux/err.h>
97badf87 15#include <linux/fwnode.h>
1da177e4
LT
16#include <linux/init.h>
17#include <linux/module.h>
18#include <linux/slab.h>
19#include <linux/string.h>
23681e47 20#include <linux/kdev_t.h>
116af378 21#include <linux/notifier.h>
07d57a32
GL
22#include <linux/of.h>
23#include <linux/of_device.h>
da231fd5 24#include <linux/genhd.h>
815d2d50 25#include <linux/kallsyms.h>
f75b1c60 26#include <linux/mutex.h>
af8db150 27#include <linux/pm_runtime.h>
c4e00daa 28#include <linux/netdevice.h>
63967685 29#include <linux/sysfs.h>
1da177e4
LT
30
31#include "base.h"
32#include "power/power.h"
33
e52eec13
AK
34#ifdef CONFIG_SYSFS_DEPRECATED
35#ifdef CONFIG_SYSFS_DEPRECATED_V2
36long sysfs_deprecated = 1;
37#else
38long sysfs_deprecated = 0;
39#endif
3454bf96 40static int __init sysfs_deprecated_setup(char *arg)
e52eec13 41{
34da5e67 42 return kstrtol(arg, 10, &sysfs_deprecated);
e52eec13
AK
43}
44early_param("sysfs.deprecated", sysfs_deprecated_setup);
45#endif
46
4a3ad20c
GKH
47int (*platform_notify)(struct device *dev) = NULL;
48int (*platform_notify_remove)(struct device *dev) = NULL;
e105b8bf
DW
49static struct kobject *dev_kobj;
50struct kobject *sysfs_dev_char_kobj;
51struct kobject *sysfs_dev_block_kobj;
1da177e4 52
5e33bc41
RW
53static DEFINE_MUTEX(device_hotplug_lock);
54
55void lock_device_hotplug(void)
56{
57 mutex_lock(&device_hotplug_lock);
58}
59
60void unlock_device_hotplug(void)
61{
62 mutex_unlock(&device_hotplug_lock);
63}
64
65int lock_device_hotplug_sysfs(void)
66{
67 if (mutex_trylock(&device_hotplug_lock))
68 return 0;
69
70 /* Avoid busy looping (5 ms of sleep should do). */
71 msleep(5);
72 return restart_syscall();
73}
74
4e886c29
GKH
75#ifdef CONFIG_BLOCK
76static inline int device_is_not_partition(struct device *dev)
77{
78 return !(dev->type == &part_type);
79}
80#else
81static inline int device_is_not_partition(struct device *dev)
82{
83 return 1;
84}
85#endif
1da177e4 86
3e95637a
AS
87/**
88 * dev_driver_string - Return a device's driver name, if at all possible
89 * @dev: struct device to get the name of
90 *
91 * Will return the device's driver's name if it is bound to a device. If
9169c012 92 * the device is not bound to a driver, it will return the name of the bus
3e95637a
AS
93 * it is attached to. If it is not attached to a bus either, an empty
94 * string will be returned.
95 */
bf9ca69f 96const char *dev_driver_string(const struct device *dev)
3e95637a 97{
3589972e
AS
98 struct device_driver *drv;
99
100 /* dev->driver can change to NULL underneath us because of unbinding,
101 * so be careful about accessing it. dev->bus and dev->class should
102 * never change once they are set, so they don't need special care.
103 */
104 drv = ACCESS_ONCE(dev->driver);
105 return drv ? drv->name :
a456b702
JD
106 (dev->bus ? dev->bus->name :
107 (dev->class ? dev->class->name : ""));
3e95637a 108}
310a922d 109EXPORT_SYMBOL(dev_driver_string);
3e95637a 110
1da177e4
LT
111#define to_dev_attr(_attr) container_of(_attr, struct device_attribute, attr)
112
4a3ad20c
GKH
113static ssize_t dev_attr_show(struct kobject *kobj, struct attribute *attr,
114 char *buf)
1da177e4 115{
4a3ad20c 116 struct device_attribute *dev_attr = to_dev_attr(attr);
b0d1f807 117 struct device *dev = kobj_to_dev(kobj);
4a0c20bf 118 ssize_t ret = -EIO;
1da177e4
LT
119
120 if (dev_attr->show)
54b6f35c 121 ret = dev_attr->show(dev, dev_attr, buf);
815d2d50 122 if (ret >= (ssize_t)PAGE_SIZE) {
53a9c87e
GKH
123 print_symbol("dev_attr_show: %s returned bad count\n",
124 (unsigned long)dev_attr->show);
815d2d50 125 }
1da177e4
LT
126 return ret;
127}
128
4a3ad20c
GKH
129static ssize_t dev_attr_store(struct kobject *kobj, struct attribute *attr,
130 const char *buf, size_t count)
1da177e4 131{
4a3ad20c 132 struct device_attribute *dev_attr = to_dev_attr(attr);
b0d1f807 133 struct device *dev = kobj_to_dev(kobj);
4a0c20bf 134 ssize_t ret = -EIO;
1da177e4
LT
135
136 if (dev_attr->store)
54b6f35c 137 ret = dev_attr->store(dev, dev_attr, buf, count);
1da177e4
LT
138 return ret;
139}
140
52cf25d0 141static const struct sysfs_ops dev_sysfs_ops = {
1da177e4
LT
142 .show = dev_attr_show,
143 .store = dev_attr_store,
144};
145
ca22e56d
KS
146#define to_ext_attr(x) container_of(x, struct dev_ext_attribute, attr)
147
148ssize_t device_store_ulong(struct device *dev,
149 struct device_attribute *attr,
150 const char *buf, size_t size)
151{
152 struct dev_ext_attribute *ea = to_ext_attr(attr);
153 char *end;
154 unsigned long new = simple_strtoul(buf, &end, 0);
155 if (end == buf)
156 return -EINVAL;
157 *(unsigned long *)(ea->var) = new;
158 /* Always return full write size even if we didn't consume all */
159 return size;
160}
161EXPORT_SYMBOL_GPL(device_store_ulong);
162
163ssize_t device_show_ulong(struct device *dev,
164 struct device_attribute *attr,
165 char *buf)
166{
167 struct dev_ext_attribute *ea = to_ext_attr(attr);
168 return snprintf(buf, PAGE_SIZE, "%lx\n", *(unsigned long *)(ea->var));
169}
170EXPORT_SYMBOL_GPL(device_show_ulong);
171
172ssize_t device_store_int(struct device *dev,
173 struct device_attribute *attr,
174 const char *buf, size_t size)
175{
176 struct dev_ext_attribute *ea = to_ext_attr(attr);
177 char *end;
178 long new = simple_strtol(buf, &end, 0);
179 if (end == buf || new > INT_MAX || new < INT_MIN)
180 return -EINVAL;
181 *(int *)(ea->var) = new;
182 /* Always return full write size even if we didn't consume all */
183 return size;
184}
185EXPORT_SYMBOL_GPL(device_store_int);
186
187ssize_t device_show_int(struct device *dev,
188 struct device_attribute *attr,
189 char *buf)
190{
191 struct dev_ext_attribute *ea = to_ext_attr(attr);
192
193 return snprintf(buf, PAGE_SIZE, "%d\n", *(int *)(ea->var));
194}
195EXPORT_SYMBOL_GPL(device_show_int);
1da177e4 196
91872392
BP
197ssize_t device_store_bool(struct device *dev, struct device_attribute *attr,
198 const char *buf, size_t size)
199{
200 struct dev_ext_attribute *ea = to_ext_attr(attr);
201
202 if (strtobool(buf, ea->var) < 0)
203 return -EINVAL;
204
205 return size;
206}
207EXPORT_SYMBOL_GPL(device_store_bool);
208
209ssize_t device_show_bool(struct device *dev, struct device_attribute *attr,
210 char *buf)
211{
212 struct dev_ext_attribute *ea = to_ext_attr(attr);
213
214 return snprintf(buf, PAGE_SIZE, "%d\n", *(bool *)(ea->var));
215}
216EXPORT_SYMBOL_GPL(device_show_bool);
217
1da177e4 218/**
f8878dcb
RD
219 * device_release - free device structure.
220 * @kobj: device's kobject.
1da177e4 221 *
f8878dcb
RD
222 * This is called once the reference count for the object
223 * reaches 0. We forward the call to the device's release
224 * method, which should handle actually freeing the structure.
1da177e4 225 */
4a3ad20c 226static void device_release(struct kobject *kobj)
1da177e4 227{
b0d1f807 228 struct device *dev = kobj_to_dev(kobj);
fb069a5d 229 struct device_private *p = dev->p;
1da177e4 230
a525a3dd
ML
231 /*
232 * Some platform devices are driven without driver attached
233 * and managed resources may have been acquired. Make sure
234 * all resources are released.
235 *
236 * Drivers still can add resources into device after device
237 * is deleted but alive, so release devres here to avoid
238 * possible memory leak.
239 */
240 devres_release_all(dev);
241
1da177e4
LT
242 if (dev->release)
243 dev->release(dev);
f9f852df
KS
244 else if (dev->type && dev->type->release)
245 dev->type->release(dev);
2620efef
GKH
246 else if (dev->class && dev->class->dev_release)
247 dev->class->dev_release(dev);
f810a5cf
AV
248 else
249 WARN(1, KERN_ERR "Device '%s' does not have a release() "
4a3ad20c 250 "function, it is broken and must be fixed.\n",
1e0b2cf9 251 dev_name(dev));
fb069a5d 252 kfree(p);
1da177e4
LT
253}
254
bc451f20
EB
255static const void *device_namespace(struct kobject *kobj)
256{
b0d1f807 257 struct device *dev = kobj_to_dev(kobj);
bc451f20
EB
258 const void *ns = NULL;
259
260 if (dev->class && dev->class->ns_type)
261 ns = dev->class->namespace(dev);
262
263 return ns;
264}
265
8f4afc41 266static struct kobj_type device_ktype = {
1da177e4
LT
267 .release = device_release,
268 .sysfs_ops = &dev_sysfs_ops,
bc451f20 269 .namespace = device_namespace,
1da177e4
LT
270};
271
272
312c004d 273static int dev_uevent_filter(struct kset *kset, struct kobject *kobj)
1da177e4
LT
274{
275 struct kobj_type *ktype = get_ktype(kobj);
276
8f4afc41 277 if (ktype == &device_ktype) {
b0d1f807 278 struct device *dev = kobj_to_dev(kobj);
1da177e4
LT
279 if (dev->bus)
280 return 1;
23681e47
GKH
281 if (dev->class)
282 return 1;
1da177e4
LT
283 }
284 return 0;
285}
286
312c004d 287static const char *dev_uevent_name(struct kset *kset, struct kobject *kobj)
1da177e4 288{
b0d1f807 289 struct device *dev = kobj_to_dev(kobj);
1da177e4 290
23681e47
GKH
291 if (dev->bus)
292 return dev->bus->name;
293 if (dev->class)
294 return dev->class->name;
295 return NULL;
1da177e4
LT
296}
297
7eff2e7a
KS
298static int dev_uevent(struct kset *kset, struct kobject *kobj,
299 struct kobj_uevent_env *env)
1da177e4 300{
b0d1f807 301 struct device *dev = kobj_to_dev(kobj);
1da177e4
LT
302 int retval = 0;
303
6fcf53ac 304 /* add device node properties if present */
23681e47 305 if (MAJOR(dev->devt)) {
6fcf53ac
KS
306 const char *tmp;
307 const char *name;
2c9ede55 308 umode_t mode = 0;
4e4098a3
GKH
309 kuid_t uid = GLOBAL_ROOT_UID;
310 kgid_t gid = GLOBAL_ROOT_GID;
6fcf53ac 311
7eff2e7a
KS
312 add_uevent_var(env, "MAJOR=%u", MAJOR(dev->devt));
313 add_uevent_var(env, "MINOR=%u", MINOR(dev->devt));
3c2670e6 314 name = device_get_devnode(dev, &mode, &uid, &gid, &tmp);
6fcf53ac
KS
315 if (name) {
316 add_uevent_var(env, "DEVNAME=%s", name);
e454cea2
KS
317 if (mode)
318 add_uevent_var(env, "DEVMODE=%#o", mode & 0777);
4e4098a3
GKH
319 if (!uid_eq(uid, GLOBAL_ROOT_UID))
320 add_uevent_var(env, "DEVUID=%u", from_kuid(&init_user_ns, uid));
321 if (!gid_eq(gid, GLOBAL_ROOT_GID))
322 add_uevent_var(env, "DEVGID=%u", from_kgid(&init_user_ns, gid));
3c2670e6 323 kfree(tmp);
6fcf53ac 324 }
23681e47
GKH
325 }
326
414264f9 327 if (dev->type && dev->type->name)
7eff2e7a 328 add_uevent_var(env, "DEVTYPE=%s", dev->type->name);
414264f9 329
239378f1 330 if (dev->driver)
7eff2e7a 331 add_uevent_var(env, "DRIVER=%s", dev->driver->name);
239378f1 332
07d57a32
GL
333 /* Add common DT information about the device */
334 of_device_uevent(dev, env);
335
7eff2e7a 336 /* have the bus specific function add its stuff */
312c004d 337 if (dev->bus && dev->bus->uevent) {
7eff2e7a 338 retval = dev->bus->uevent(dev, env);
f9f852df 339 if (retval)
7dc72b28 340 pr_debug("device: '%s': %s: bus uevent() returned %d\n",
1e0b2cf9 341 dev_name(dev), __func__, retval);
1da177e4
LT
342 }
343
7eff2e7a 344 /* have the class specific function add its stuff */
2620efef 345 if (dev->class && dev->class->dev_uevent) {
7eff2e7a 346 retval = dev->class->dev_uevent(dev, env);
f9f852df 347 if (retval)
7dc72b28 348 pr_debug("device: '%s': %s: class uevent() "
1e0b2cf9 349 "returned %d\n", dev_name(dev),
2b3a302a 350 __func__, retval);
f9f852df
KS
351 }
352
eef35c2d 353 /* have the device type specific function add its stuff */
f9f852df 354 if (dev->type && dev->type->uevent) {
7eff2e7a 355 retval = dev->type->uevent(dev, env);
f9f852df 356 if (retval)
7dc72b28 357 pr_debug("device: '%s': %s: dev_type uevent() "
1e0b2cf9 358 "returned %d\n", dev_name(dev),
2b3a302a 359 __func__, retval);
2620efef
GKH
360 }
361
1da177e4
LT
362 return retval;
363}
364
9cd43611 365static const struct kset_uevent_ops device_uevent_ops = {
312c004d
KS
366 .filter = dev_uevent_filter,
367 .name = dev_uevent_name,
368 .uevent = dev_uevent,
1da177e4
LT
369};
370
c5e064a6 371static ssize_t uevent_show(struct device *dev, struct device_attribute *attr,
16574dcc
KS
372 char *buf)
373{
374 struct kobject *top_kobj;
375 struct kset *kset;
7eff2e7a 376 struct kobj_uevent_env *env = NULL;
16574dcc
KS
377 int i;
378 size_t count = 0;
379 int retval;
380
381 /* search the kset, the device belongs to */
382 top_kobj = &dev->kobj;
5c5daf65
KS
383 while (!top_kobj->kset && top_kobj->parent)
384 top_kobj = top_kobj->parent;
16574dcc
KS
385 if (!top_kobj->kset)
386 goto out;
5c5daf65 387
16574dcc
KS
388 kset = top_kobj->kset;
389 if (!kset->uevent_ops || !kset->uevent_ops->uevent)
390 goto out;
391
392 /* respect filter */
393 if (kset->uevent_ops && kset->uevent_ops->filter)
394 if (!kset->uevent_ops->filter(kset, &dev->kobj))
395 goto out;
396
7eff2e7a
KS
397 env = kzalloc(sizeof(struct kobj_uevent_env), GFP_KERNEL);
398 if (!env)
c7308c81
GKH
399 return -ENOMEM;
400
16574dcc 401 /* let the kset specific function add its keys */
7eff2e7a 402 retval = kset->uevent_ops->uevent(kset, &dev->kobj, env);
16574dcc
KS
403 if (retval)
404 goto out;
405
406 /* copy keys to file */
7eff2e7a
KS
407 for (i = 0; i < env->envp_idx; i++)
408 count += sprintf(&buf[count], "%s\n", env->envp[i]);
16574dcc 409out:
7eff2e7a 410 kfree(env);
16574dcc
KS
411 return count;
412}
413
c5e064a6 414static ssize_t uevent_store(struct device *dev, struct device_attribute *attr,
a7fd6706
KS
415 const char *buf, size_t count)
416{
60a96a59
KS
417 enum kobject_action action;
418
3f5468c9 419 if (kobject_action_type(buf, count, &action) == 0)
60a96a59 420 kobject_uevent(&dev->kobj, action);
3f5468c9
KS
421 else
422 dev_err(dev, "uevent: unknown action-string\n");
a7fd6706
KS
423 return count;
424}
c5e064a6 425static DEVICE_ATTR_RW(uevent);
a7fd6706 426
c5e064a6 427static ssize_t online_show(struct device *dev, struct device_attribute *attr,
4f3549d7
RW
428 char *buf)
429{
430 bool val;
431
5e33bc41 432 device_lock(dev);
4f3549d7 433 val = !dev->offline;
5e33bc41 434 device_unlock(dev);
4f3549d7
RW
435 return sprintf(buf, "%u\n", val);
436}
437
c5e064a6 438static ssize_t online_store(struct device *dev, struct device_attribute *attr,
4f3549d7
RW
439 const char *buf, size_t count)
440{
441 bool val;
442 int ret;
443
444 ret = strtobool(buf, &val);
445 if (ret < 0)
446 return ret;
447
5e33bc41
RW
448 ret = lock_device_hotplug_sysfs();
449 if (ret)
450 return ret;
451
4f3549d7
RW
452 ret = val ? device_online(dev) : device_offline(dev);
453 unlock_device_hotplug();
454 return ret < 0 ? ret : count;
455}
c5e064a6 456static DEVICE_ATTR_RW(online);
4f3549d7 457
fa6fdb33 458int device_add_groups(struct device *dev, const struct attribute_group **groups)
621a1672 459{
3e9b2bae 460 return sysfs_create_groups(&dev->kobj, groups);
de0ff00d
GKH
461}
462
fa6fdb33
GKH
463void device_remove_groups(struct device *dev,
464 const struct attribute_group **groups)
de0ff00d 465{
3e9b2bae 466 sysfs_remove_groups(&dev->kobj, groups);
de0ff00d
GKH
467}
468
2620efef
GKH
469static int device_add_attrs(struct device *dev)
470{
471 struct class *class = dev->class;
aed65af1 472 const struct device_type *type = dev->type;
621a1672 473 int error;
2620efef 474
621a1672 475 if (class) {
d05a6f96 476 error = device_add_groups(dev, class->dev_groups);
f9f852df 477 if (error)
621a1672 478 return error;
2620efef 479 }
f9f852df 480
621a1672
DT
481 if (type) {
482 error = device_add_groups(dev, type->groups);
f9f852df 483 if (error)
a6b01ded 484 goto err_remove_class_groups;
f9f852df
KS
485 }
486
621a1672
DT
487 error = device_add_groups(dev, dev->groups);
488 if (error)
489 goto err_remove_type_groups;
490
4f3549d7 491 if (device_supports_offline(dev) && !dev->offline_disabled) {
c5e064a6 492 error = device_create_file(dev, &dev_attr_online);
4f3549d7 493 if (error)
ecfbf6fd 494 goto err_remove_dev_groups;
4f3549d7
RW
495 }
496
621a1672
DT
497 return 0;
498
ecfbf6fd
RW
499 err_remove_dev_groups:
500 device_remove_groups(dev, dev->groups);
621a1672
DT
501 err_remove_type_groups:
502 if (type)
503 device_remove_groups(dev, type->groups);
d05a6f96
GKH
504 err_remove_class_groups:
505 if (class)
506 device_remove_groups(dev, class->dev_groups);
621a1672 507
2620efef
GKH
508 return error;
509}
510
511static void device_remove_attrs(struct device *dev)
512{
513 struct class *class = dev->class;
aed65af1 514 const struct device_type *type = dev->type;
2620efef 515
c5e064a6 516 device_remove_file(dev, &dev_attr_online);
621a1672 517 device_remove_groups(dev, dev->groups);
f9f852df 518
621a1672
DT
519 if (type)
520 device_remove_groups(dev, type->groups);
521
a6b01ded 522 if (class)
d05a6f96 523 device_remove_groups(dev, class->dev_groups);
2620efef
GKH
524}
525
c5e064a6 526static ssize_t dev_show(struct device *dev, struct device_attribute *attr,
23681e47
GKH
527 char *buf)
528{
529 return print_dev_t(buf, dev->devt);
530}
c5e064a6 531static DEVICE_ATTR_RO(dev);
ad6a1e1c 532
ca22e56d 533/* /sys/devices/ */
881c6cfd 534struct kset *devices_kset;
1da177e4 535
52cdbdd4
GS
536/**
537 * devices_kset_move_before - Move device in the devices_kset's list.
538 * @deva: Device to move.
539 * @devb: Device @deva should come before.
540 */
541static void devices_kset_move_before(struct device *deva, struct device *devb)
542{
543 if (!devices_kset)
544 return;
545 pr_debug("devices_kset: Moving %s before %s\n",
546 dev_name(deva), dev_name(devb));
547 spin_lock(&devices_kset->list_lock);
548 list_move_tail(&deva->kobj.entry, &devb->kobj.entry);
549 spin_unlock(&devices_kset->list_lock);
550}
551
552/**
553 * devices_kset_move_after - Move device in the devices_kset's list.
554 * @deva: Device to move
555 * @devb: Device @deva should come after.
556 */
557static void devices_kset_move_after(struct device *deva, struct device *devb)
558{
559 if (!devices_kset)
560 return;
561 pr_debug("devices_kset: Moving %s after %s\n",
562 dev_name(deva), dev_name(devb));
563 spin_lock(&devices_kset->list_lock);
564 list_move(&deva->kobj.entry, &devb->kobj.entry);
565 spin_unlock(&devices_kset->list_lock);
566}
567
568/**
569 * devices_kset_move_last - move the device to the end of devices_kset's list.
570 * @dev: device to move
571 */
572void devices_kset_move_last(struct device *dev)
573{
574 if (!devices_kset)
575 return;
576 pr_debug("devices_kset: Moving %s to end of list\n", dev_name(dev));
577 spin_lock(&devices_kset->list_lock);
578 list_move_tail(&dev->kobj.entry, &devices_kset->list);
579 spin_unlock(&devices_kset->list_lock);
580}
581
1da177e4 582/**
4a3ad20c
GKH
583 * device_create_file - create sysfs attribute file for device.
584 * @dev: device.
585 * @attr: device attribute descriptor.
1da177e4 586 */
26579ab7
PC
587int device_create_file(struct device *dev,
588 const struct device_attribute *attr)
1da177e4
LT
589{
590 int error = 0;
8f46baaa
FB
591
592 if (dev) {
593 WARN(((attr->attr.mode & S_IWUGO) && !attr->store),
97521978 594 "Attribute %s: write permission without 'store'\n",
595 attr->attr.name);
8f46baaa 596 WARN(((attr->attr.mode & S_IRUGO) && !attr->show),
97521978 597 "Attribute %s: read permission without 'show'\n",
598 attr->attr.name);
1da177e4 599 error = sysfs_create_file(&dev->kobj, &attr->attr);
8f46baaa
FB
600 }
601
1da177e4
LT
602 return error;
603}
86df2687 604EXPORT_SYMBOL_GPL(device_create_file);
1da177e4
LT
605
606/**
4a3ad20c
GKH
607 * device_remove_file - remove sysfs attribute file.
608 * @dev: device.
609 * @attr: device attribute descriptor.
1da177e4 610 */
26579ab7
PC
611void device_remove_file(struct device *dev,
612 const struct device_attribute *attr)
1da177e4 613{
0c98b19f 614 if (dev)
1da177e4 615 sysfs_remove_file(&dev->kobj, &attr->attr);
1da177e4 616}
86df2687 617EXPORT_SYMBOL_GPL(device_remove_file);
1da177e4 618
6b0afc2a
TH
619/**
620 * device_remove_file_self - remove sysfs attribute file from its own method.
621 * @dev: device.
622 * @attr: device attribute descriptor.
623 *
624 * See kernfs_remove_self() for details.
625 */
626bool device_remove_file_self(struct device *dev,
627 const struct device_attribute *attr)
628{
629 if (dev)
630 return sysfs_remove_file_self(&dev->kobj, &attr->attr);
631 else
632 return false;
633}
634EXPORT_SYMBOL_GPL(device_remove_file_self);
635
2589f188
GKH
636/**
637 * device_create_bin_file - create sysfs binary attribute file for device.
638 * @dev: device.
639 * @attr: device binary attribute descriptor.
640 */
66ecb92b
PC
641int device_create_bin_file(struct device *dev,
642 const struct bin_attribute *attr)
2589f188
GKH
643{
644 int error = -EINVAL;
645 if (dev)
646 error = sysfs_create_bin_file(&dev->kobj, attr);
647 return error;
648}
649EXPORT_SYMBOL_GPL(device_create_bin_file);
650
651/**
652 * device_remove_bin_file - remove sysfs binary attribute file
653 * @dev: device.
654 * @attr: device binary attribute descriptor.
655 */
66ecb92b
PC
656void device_remove_bin_file(struct device *dev,
657 const struct bin_attribute *attr)
2589f188
GKH
658{
659 if (dev)
660 sysfs_remove_bin_file(&dev->kobj, attr);
661}
662EXPORT_SYMBOL_GPL(device_remove_bin_file);
663
34bb61f9
JB
664static void klist_children_get(struct klist_node *n)
665{
f791b8c8
GKH
666 struct device_private *p = to_device_private_parent(n);
667 struct device *dev = p->device;
34bb61f9
JB
668
669 get_device(dev);
670}
671
672static void klist_children_put(struct klist_node *n)
673{
f791b8c8
GKH
674 struct device_private *p = to_device_private_parent(n);
675 struct device *dev = p->device;
34bb61f9
JB
676
677 put_device(dev);
678}
679
1da177e4 680/**
4a3ad20c
GKH
681 * device_initialize - init device structure.
682 * @dev: device.
1da177e4 683 *
5739411a
CH
684 * This prepares the device for use by other layers by initializing
685 * its fields.
4a3ad20c 686 * It is the first half of device_register(), if called by
5739411a
CH
687 * that function, though it can also be called separately, so one
688 * may use @dev's fields. In particular, get_device()/put_device()
689 * may be used for reference counting of @dev after calling this
690 * function.
691 *
b10d5efd
AS
692 * All fields in @dev must be initialized by the caller to 0, except
693 * for those explicitly set to some other value. The simplest
694 * approach is to use kzalloc() to allocate the structure containing
695 * @dev.
696 *
5739411a
CH
697 * NOTE: Use put_device() to give up your reference instead of freeing
698 * @dev directly once you have called this function.
1da177e4 699 */
1da177e4
LT
700void device_initialize(struct device *dev)
701{
881c6cfd 702 dev->kobj.kset = devices_kset;
f9cb074b 703 kobject_init(&dev->kobj, &device_ktype);
1da177e4 704 INIT_LIST_HEAD(&dev->dma_pools);
3142788b 705 mutex_init(&dev->mutex);
1704f47b 706 lockdep_set_novalidate_class(&dev->mutex);
9ac7849e
TH
707 spin_lock_init(&dev->devres_lock);
708 INIT_LIST_HEAD(&dev->devres_head);
3b98aeaf 709 device_pm_init(dev);
87348136 710 set_dev_node(dev, -1);
4a7cc831
JL
711#ifdef CONFIG_GENERIC_MSI_IRQ
712 INIT_LIST_HEAD(&dev->msi_list);
713#endif
1da177e4 714}
86df2687 715EXPORT_SYMBOL_GPL(device_initialize);
1da177e4 716
d73ce004 717struct kobject *virtual_device_parent(struct device *dev)
f0ee61a6 718{
86406245 719 static struct kobject *virtual_dir = NULL;
f0ee61a6 720
86406245 721 if (!virtual_dir)
4ff6abff 722 virtual_dir = kobject_create_and_add("virtual",
881c6cfd 723 &devices_kset->kobj);
f0ee61a6 724
86406245 725 return virtual_dir;
f0ee61a6
GKH
726}
727
bc451f20
EB
728struct class_dir {
729 struct kobject kobj;
730 struct class *class;
731};
732
733#define to_class_dir(obj) container_of(obj, struct class_dir, kobj)
734
735static void class_dir_release(struct kobject *kobj)
736{
737 struct class_dir *dir = to_class_dir(kobj);
738 kfree(dir);
739}
740
741static const
742struct kobj_ns_type_operations *class_dir_child_ns_type(struct kobject *kobj)
40fa5422 743{
bc451f20
EB
744 struct class_dir *dir = to_class_dir(kobj);
745 return dir->class->ns_type;
746}
747
748static struct kobj_type class_dir_ktype = {
749 .release = class_dir_release,
750 .sysfs_ops = &kobj_sysfs_ops,
751 .child_ns_type = class_dir_child_ns_type
752};
753
754static struct kobject *
755class_dir_create_and_add(struct class *class, struct kobject *parent_kobj)
756{
757 struct class_dir *dir;
43968d2f
GKH
758 int retval;
759
bc451f20
EB
760 dir = kzalloc(sizeof(*dir), GFP_KERNEL);
761 if (!dir)
762 return NULL;
763
764 dir->class = class;
765 kobject_init(&dir->kobj, &class_dir_ktype);
766
6b6e39a6 767 dir->kobj.kset = &class->p->glue_dirs;
bc451f20
EB
768
769 retval = kobject_add(&dir->kobj, parent_kobj, "%s", class->name);
770 if (retval < 0) {
771 kobject_put(&dir->kobj);
772 return NULL;
773 }
774 return &dir->kobj;
775}
776
e4a60d13 777static DEFINE_MUTEX(gdp_mutex);
bc451f20
EB
778
779static struct kobject *get_device_parent(struct device *dev,
780 struct device *parent)
781{
86406245
KS
782 if (dev->class) {
783 struct kobject *kobj = NULL;
784 struct kobject *parent_kobj;
785 struct kobject *k;
786
ead454fe 787#ifdef CONFIG_BLOCK
39aba963 788 /* block disks show up in /sys/block */
e52eec13 789 if (sysfs_deprecated && dev->class == &block_class) {
39aba963
KS
790 if (parent && parent->class == &block_class)
791 return &parent->kobj;
6b6e39a6 792 return &block_class.p->subsys.kobj;
39aba963 793 }
ead454fe 794#endif
e52eec13 795
86406245
KS
796 /*
797 * If we have no parent, we live in "virtual".
0f4dafc0
KS
798 * Class-devices with a non class-device as parent, live
799 * in a "glue" directory to prevent namespace collisions.
86406245
KS
800 */
801 if (parent == NULL)
802 parent_kobj = virtual_device_parent(dev);
24b1442d 803 else if (parent->class && !dev->class->ns_type)
86406245
KS
804 return &parent->kobj;
805 else
806 parent_kobj = &parent->kobj;
807
77d3d7c1
TH
808 mutex_lock(&gdp_mutex);
809
86406245 810 /* find our class-directory at the parent and reference it */
6b6e39a6
KS
811 spin_lock(&dev->class->p->glue_dirs.list_lock);
812 list_for_each_entry(k, &dev->class->p->glue_dirs.list, entry)
86406245
KS
813 if (k->parent == parent_kobj) {
814 kobj = kobject_get(k);
815 break;
816 }
6b6e39a6 817 spin_unlock(&dev->class->p->glue_dirs.list_lock);
77d3d7c1
TH
818 if (kobj) {
819 mutex_unlock(&gdp_mutex);
86406245 820 return kobj;
77d3d7c1 821 }
86406245
KS
822
823 /* or create a new class-directory at the parent device */
bc451f20 824 k = class_dir_create_and_add(dev->class, parent_kobj);
0f4dafc0 825 /* do not emit an uevent for this simple "glue" directory */
77d3d7c1 826 mutex_unlock(&gdp_mutex);
43968d2f 827 return k;
86406245
KS
828 }
829
ca22e56d
KS
830 /* subsystems can specify a default root directory for their devices */
831 if (!parent && dev->bus && dev->bus->dev_root)
832 return &dev->bus->dev_root->kobj;
833
86406245 834 if (parent)
c744aeae
CH
835 return &parent->kobj;
836 return NULL;
837}
da231fd5 838
63b6971a 839static void cleanup_glue_dir(struct device *dev, struct kobject *glue_dir)
da231fd5 840{
0f4dafc0 841 /* see if we live in a "glue" directory */
c1fe539a 842 if (!glue_dir || !dev->class ||
6b6e39a6 843 glue_dir->kset != &dev->class->p->glue_dirs)
da231fd5
KS
844 return;
845
e4a60d13 846 mutex_lock(&gdp_mutex);
0f4dafc0 847 kobject_put(glue_dir);
e4a60d13 848 mutex_unlock(&gdp_mutex);
da231fd5 849}
63b6971a
CH
850
851static void cleanup_device_parent(struct device *dev)
852{
853 cleanup_glue_dir(dev, dev->kobj.parent);
854}
86406245 855
2ee97caf
CH
856static int device_add_class_symlinks(struct device *dev)
857{
5590f319 858 struct device_node *of_node = dev_of_node(dev);
2ee97caf
CH
859 int error;
860
5590f319
BH
861 if (of_node) {
862 error = sysfs_create_link(&dev->kobj, &of_node->kobj,"of_node");
863 if (error)
864 dev_warn(dev, "Error %d creating of_node link\n",error);
865 /* An error here doesn't warrant bringing down the device */
866 }
867
2ee97caf
CH
868 if (!dev->class)
869 return 0;
da231fd5 870
1fbfee6c 871 error = sysfs_create_link(&dev->kobj,
6b6e39a6 872 &dev->class->p->subsys.kobj,
2ee97caf
CH
873 "subsystem");
874 if (error)
5590f319 875 goto out_devnode;
da231fd5 876
4e886c29 877 if (dev->parent && device_is_not_partition(dev)) {
39aba963 878 error = sysfs_create_link(&dev->kobj, &dev->parent->kobj,
4f01a757
DT
879 "device");
880 if (error)
39aba963 881 goto out_subsys;
2ee97caf 882 }
2ee97caf 883
ead454fe 884#ifdef CONFIG_BLOCK
39aba963 885 /* /sys/block has directories and does not need symlinks */
e52eec13 886 if (sysfs_deprecated && dev->class == &block_class)
39aba963 887 return 0;
ead454fe 888#endif
39aba963 889
da231fd5 890 /* link in the class directory pointing to the device */
6b6e39a6 891 error = sysfs_create_link(&dev->class->p->subsys.kobj,
1e0b2cf9 892 &dev->kobj, dev_name(dev));
da231fd5 893 if (error)
39aba963 894 goto out_device;
da231fd5 895
da231fd5
KS
896 return 0;
897
39aba963
KS
898out_device:
899 sysfs_remove_link(&dev->kobj, "device");
da231fd5 900
2ee97caf
CH
901out_subsys:
902 sysfs_remove_link(&dev->kobj, "subsystem");
5590f319
BH
903out_devnode:
904 sysfs_remove_link(&dev->kobj, "of_node");
2ee97caf
CH
905 return error;
906}
907
908static void device_remove_class_symlinks(struct device *dev)
909{
5590f319
BH
910 if (dev_of_node(dev))
911 sysfs_remove_link(&dev->kobj, "of_node");
912
2ee97caf
CH
913 if (!dev->class)
914 return;
da231fd5 915
4e886c29 916 if (dev->parent && device_is_not_partition(dev))
da231fd5 917 sysfs_remove_link(&dev->kobj, "device");
2ee97caf 918 sysfs_remove_link(&dev->kobj, "subsystem");
ead454fe 919#ifdef CONFIG_BLOCK
e52eec13 920 if (sysfs_deprecated && dev->class == &block_class)
39aba963 921 return;
ead454fe 922#endif
6b6e39a6 923 sysfs_delete_link(&dev->class->p->subsys.kobj, &dev->kobj, dev_name(dev));
2ee97caf
CH
924}
925
413c239f
SR
926/**
927 * dev_set_name - set a device name
928 * @dev: device
46232366 929 * @fmt: format string for the device's name
413c239f
SR
930 */
931int dev_set_name(struct device *dev, const char *fmt, ...)
932{
933 va_list vargs;
1fa5ae85 934 int err;
413c239f
SR
935
936 va_start(vargs, fmt);
1fa5ae85 937 err = kobject_set_name_vargs(&dev->kobj, fmt, vargs);
413c239f 938 va_end(vargs);
1fa5ae85 939 return err;
413c239f
SR
940}
941EXPORT_SYMBOL_GPL(dev_set_name);
942
e105b8bf
DW
943/**
944 * device_to_dev_kobj - select a /sys/dev/ directory for the device
945 * @dev: device
946 *
947 * By default we select char/ for new entries. Setting class->dev_obj
948 * to NULL prevents an entry from being created. class->dev_kobj must
949 * be set (or cleared) before any devices are registered to the class
950 * otherwise device_create_sys_dev_entry() and
0d4e293c
PK
951 * device_remove_sys_dev_entry() will disagree about the presence of
952 * the link.
e105b8bf
DW
953 */
954static struct kobject *device_to_dev_kobj(struct device *dev)
955{
956 struct kobject *kobj;
957
958 if (dev->class)
959 kobj = dev->class->dev_kobj;
960 else
961 kobj = sysfs_dev_char_kobj;
962
963 return kobj;
964}
965
966static int device_create_sys_dev_entry(struct device *dev)
967{
968 struct kobject *kobj = device_to_dev_kobj(dev);
969 int error = 0;
970 char devt_str[15];
971
972 if (kobj) {
973 format_dev_t(devt_str, dev->devt);
974 error = sysfs_create_link(kobj, &dev->kobj, devt_str);
975 }
976
977 return error;
978}
979
980static void device_remove_sys_dev_entry(struct device *dev)
981{
982 struct kobject *kobj = device_to_dev_kobj(dev);
983 char devt_str[15];
984
985 if (kobj) {
986 format_dev_t(devt_str, dev->devt);
987 sysfs_remove_link(kobj, devt_str);
988 }
989}
990
b4028437
GKH
991int device_private_init(struct device *dev)
992{
993 dev->p = kzalloc(sizeof(*dev->p), GFP_KERNEL);
994 if (!dev->p)
995 return -ENOMEM;
996 dev->p->device = dev;
997 klist_init(&dev->p->klist_children, klist_children_get,
998 klist_children_put);
ef8a3fd6 999 INIT_LIST_HEAD(&dev->p->deferred_probe);
b4028437
GKH
1000 return 0;
1001}
1002
1da177e4 1003/**
4a3ad20c
GKH
1004 * device_add - add device to device hierarchy.
1005 * @dev: device.
1da177e4 1006 *
4a3ad20c
GKH
1007 * This is part 2 of device_register(), though may be called
1008 * separately _iff_ device_initialize() has been called separately.
1da177e4 1009 *
5739411a 1010 * This adds @dev to the kobject hierarchy via kobject_add(), adds it
4a3ad20c
GKH
1011 * to the global and sibling lists for the device, then
1012 * adds it to the other relevant subsystems of the driver model.
5739411a 1013 *
b10d5efd
AS
1014 * Do not call this routine or device_register() more than once for
1015 * any device structure. The driver model core is not designed to work
1016 * with devices that get unregistered and then spring back to life.
1017 * (Among other things, it's very hard to guarantee that all references
1018 * to the previous incarnation of @dev have been dropped.) Allocate
1019 * and register a fresh new struct device instead.
1020 *
5739411a
CH
1021 * NOTE: _Never_ directly free @dev after calling this function, even
1022 * if it returned an error! Always use put_device() to give up your
1023 * reference instead.
1da177e4
LT
1024 */
1025int device_add(struct device *dev)
1026{
1027 struct device *parent = NULL;
ca22e56d 1028 struct kobject *kobj;
c47ed219 1029 struct class_interface *class_intf;
c906a48a 1030 int error = -EINVAL;
775b64d2 1031
1da177e4 1032 dev = get_device(dev);
c906a48a
GKH
1033 if (!dev)
1034 goto done;
1035
fb069a5d 1036 if (!dev->p) {
b4028437
GKH
1037 error = device_private_init(dev);
1038 if (error)
1039 goto done;
fb069a5d 1040 }
fb069a5d 1041
1fa5ae85
KS
1042 /*
1043 * for statically allocated devices, which should all be converted
1044 * some day, we need to initialize the name. We prevent reading back
1045 * the name, and force the use of dev_name()
1046 */
1047 if (dev->init_name) {
acc0e90f 1048 dev_set_name(dev, "%s", dev->init_name);
1fa5ae85
KS
1049 dev->init_name = NULL;
1050 }
c906a48a 1051
ca22e56d
KS
1052 /* subsystems can specify simple device enumeration */
1053 if (!dev_name(dev) && dev->bus && dev->bus->dev_name)
1054 dev_set_name(dev, "%s%u", dev->bus->dev_name, dev->id);
1055
e6309e75
TG
1056 if (!dev_name(dev)) {
1057 error = -EINVAL;
5c8563d7 1058 goto name_error;
e6309e75 1059 }
1da177e4 1060
1e0b2cf9 1061 pr_debug("device: '%s': %s\n", dev_name(dev), __func__);
c205ef48 1062
1da177e4 1063 parent = get_device(dev->parent);
ca22e56d
KS
1064 kobj = get_device_parent(dev, parent);
1065 if (kobj)
1066 dev->kobj.parent = kobj;
1da177e4 1067
0d358f22 1068 /* use parent numa_node */
56f2de81 1069 if (parent && (dev_to_node(dev) == NUMA_NO_NODE))
0d358f22
YL
1070 set_dev_node(dev, dev_to_node(parent));
1071
1da177e4 1072 /* first, register with generic layer. */
8a577ffc
KS
1073 /* we require the name to be set before, and pass NULL */
1074 error = kobject_add(&dev->kobj, dev->kobj.parent, NULL);
40fa5422 1075 if (error)
1da177e4 1076 goto Error;
a7fd6706 1077
37022644
BW
1078 /* notify platform of device entry */
1079 if (platform_notify)
1080 platform_notify(dev);
1081
c5e064a6 1082 error = device_create_file(dev, &dev_attr_uevent);
a306eea4
CH
1083 if (error)
1084 goto attrError;
a7fd6706 1085
2ee97caf
CH
1086 error = device_add_class_symlinks(dev);
1087 if (error)
1088 goto SymlinkError;
dc0afa83
CH
1089 error = device_add_attrs(dev);
1090 if (error)
2620efef 1091 goto AttrsError;
dc0afa83
CH
1092 error = bus_add_device(dev);
1093 if (error)
1da177e4 1094 goto BusError;
3b98aeaf 1095 error = dpm_sysfs_add(dev);
57eee3d2 1096 if (error)
3b98aeaf
AS
1097 goto DPMError;
1098 device_pm_add(dev);
ec0676ee 1099
0cd75047
SK
1100 if (MAJOR(dev->devt)) {
1101 error = device_create_file(dev, &dev_attr_dev);
1102 if (error)
1103 goto DevAttrError;
1104
1105 error = device_create_sys_dev_entry(dev);
1106 if (error)
1107 goto SysEntryError;
1108
1109 devtmpfs_create_node(dev);
1110 }
1111
ec0676ee 1112 /* Notify clients of device addition. This call must come
268863f4 1113 * after dpm_sysfs_add() and before kobject_uevent().
ec0676ee
AS
1114 */
1115 if (dev->bus)
1116 blocking_notifier_call_chain(&dev->bus->p->bus_notifier,
1117 BUS_NOTIFY_ADD_DEVICE, dev);
1118
83b5fb4c 1119 kobject_uevent(&dev->kobj, KOBJ_ADD);
2023c610 1120 bus_probe_device(dev);
1da177e4 1121 if (parent)
f791b8c8
GKH
1122 klist_add_tail(&dev->p->knode_parent,
1123 &parent->p->klist_children);
1da177e4 1124
5d9fd169 1125 if (dev->class) {
ca22e56d 1126 mutex_lock(&dev->class->p->mutex);
c47ed219 1127 /* tie the class to the device */
5a3ceb86 1128 klist_add_tail(&dev->knode_class,
6b6e39a6 1129 &dev->class->p->klist_devices);
c47ed219
GKH
1130
1131 /* notify any interfaces that the device is here */
184f1f77 1132 list_for_each_entry(class_intf,
ca22e56d 1133 &dev->class->p->interfaces, node)
c47ed219
GKH
1134 if (class_intf->add_dev)
1135 class_intf->add_dev(dev, class_intf);
ca22e56d 1136 mutex_unlock(&dev->class->p->mutex);
5d9fd169 1137 }
c906a48a 1138done:
1da177e4
LT
1139 put_device(dev);
1140 return error;
0cd75047
SK
1141 SysEntryError:
1142 if (MAJOR(dev->devt))
1143 device_remove_file(dev, &dev_attr_dev);
1144 DevAttrError:
1145 device_pm_remove(dev);
1146 dpm_sysfs_remove(dev);
3b98aeaf 1147 DPMError:
57eee3d2
RW
1148 bus_remove_device(dev);
1149 BusError:
82f0cf9b 1150 device_remove_attrs(dev);
2620efef 1151 AttrsError:
2ee97caf
CH
1152 device_remove_class_symlinks(dev);
1153 SymlinkError:
c5e064a6 1154 device_remove_file(dev, &dev_attr_uevent);
23681e47 1155 attrError:
312c004d 1156 kobject_uevent(&dev->kobj, KOBJ_REMOVE);
1da177e4
LT
1157 kobject_del(&dev->kobj);
1158 Error:
63b6971a 1159 cleanup_device_parent(dev);
5f0163a5 1160 put_device(parent);
5c8563d7
KS
1161name_error:
1162 kfree(dev->p);
1163 dev->p = NULL;
c906a48a 1164 goto done;
1da177e4 1165}
86df2687 1166EXPORT_SYMBOL_GPL(device_add);
1da177e4 1167
1da177e4 1168/**
4a3ad20c
GKH
1169 * device_register - register a device with the system.
1170 * @dev: pointer to the device structure
1da177e4 1171 *
4a3ad20c
GKH
1172 * This happens in two clean steps - initialize the device
1173 * and add it to the system. The two steps can be called
1174 * separately, but this is the easiest and most common.
1175 * I.e. you should only call the two helpers separately if
1176 * have a clearly defined need to use and refcount the device
1177 * before it is added to the hierarchy.
5739411a 1178 *
b10d5efd
AS
1179 * For more information, see the kerneldoc for device_initialize()
1180 * and device_add().
1181 *
5739411a
CH
1182 * NOTE: _Never_ directly free @dev after calling this function, even
1183 * if it returned an error! Always use put_device() to give up the
1184 * reference initialized in this function instead.
1da177e4 1185 */
1da177e4
LT
1186int device_register(struct device *dev)
1187{
1188 device_initialize(dev);
1189 return device_add(dev);
1190}
86df2687 1191EXPORT_SYMBOL_GPL(device_register);
1da177e4 1192
1da177e4 1193/**
4a3ad20c
GKH
1194 * get_device - increment reference count for device.
1195 * @dev: device.
1da177e4 1196 *
4a3ad20c
GKH
1197 * This simply forwards the call to kobject_get(), though
1198 * we do take care to provide for the case that we get a NULL
1199 * pointer passed in.
1da177e4 1200 */
4a3ad20c 1201struct device *get_device(struct device *dev)
1da177e4 1202{
b0d1f807 1203 return dev ? kobj_to_dev(kobject_get(&dev->kobj)) : NULL;
1da177e4 1204}
86df2687 1205EXPORT_SYMBOL_GPL(get_device);
1da177e4 1206
1da177e4 1207/**
4a3ad20c
GKH
1208 * put_device - decrement reference count.
1209 * @dev: device in question.
1da177e4 1210 */
4a3ad20c 1211void put_device(struct device *dev)
1da177e4 1212{
edfaa7c3 1213 /* might_sleep(); */
1da177e4
LT
1214 if (dev)
1215 kobject_put(&dev->kobj);
1216}
86df2687 1217EXPORT_SYMBOL_GPL(put_device);
1da177e4 1218
1da177e4 1219/**
4a3ad20c
GKH
1220 * device_del - delete device from system.
1221 * @dev: device.
1da177e4 1222 *
4a3ad20c
GKH
1223 * This is the first part of the device unregistration
1224 * sequence. This removes the device from the lists we control
1225 * from here, has it removed from the other driver model
1226 * subsystems it was added to in device_add(), and removes it
1227 * from the kobject hierarchy.
1da177e4 1228 *
4a3ad20c
GKH
1229 * NOTE: this should be called manually _iff_ device_add() was
1230 * also called manually.
1da177e4 1231 */
4a3ad20c 1232void device_del(struct device *dev)
1da177e4 1233{
4a3ad20c 1234 struct device *parent = dev->parent;
c47ed219 1235 struct class_interface *class_intf;
1da177e4 1236
ec0676ee
AS
1237 /* Notify clients of device removal. This call must come
1238 * before dpm_sysfs_remove().
1239 */
1240 if (dev->bus)
1241 blocking_notifier_call_chain(&dev->bus->p->bus_notifier,
1242 BUS_NOTIFY_DEL_DEVICE, dev);
3b98aeaf 1243 dpm_sysfs_remove(dev);
1da177e4 1244 if (parent)
f791b8c8 1245 klist_del(&dev->p->knode_parent);
e105b8bf 1246 if (MAJOR(dev->devt)) {
2b2af54a 1247 devtmpfs_delete_node(dev);
e105b8bf 1248 device_remove_sys_dev_entry(dev);
c5e064a6 1249 device_remove_file(dev, &dev_attr_dev);
e105b8bf 1250 }
b9d9c82b 1251 if (dev->class) {
da231fd5 1252 device_remove_class_symlinks(dev);
99ef3ef8 1253
ca22e56d 1254 mutex_lock(&dev->class->p->mutex);
c47ed219 1255 /* notify any interfaces that the device is now gone */
184f1f77 1256 list_for_each_entry(class_intf,
ca22e56d 1257 &dev->class->p->interfaces, node)
c47ed219
GKH
1258 if (class_intf->remove_dev)
1259 class_intf->remove_dev(dev, class_intf);
1260 /* remove the device from the class list */
5a3ceb86 1261 klist_del(&dev->knode_class);
ca22e56d 1262 mutex_unlock(&dev->class->p->mutex);
b9d9c82b 1263 }
c5e064a6 1264 device_remove_file(dev, &dev_attr_uevent);
2620efef 1265 device_remove_attrs(dev);
28953533 1266 bus_remove_device(dev);
4b6d1f12 1267 device_pm_remove(dev);
d1c3414c 1268 driver_deferred_probe_del(dev);
478573c9 1269 device_remove_properties(dev);
1da177e4
LT
1270
1271 /* Notify the platform of the removal, in case they
1272 * need to do anything...
1273 */
1274 if (platform_notify_remove)
1275 platform_notify_remove(dev);
599bad38
JR
1276 if (dev->bus)
1277 blocking_notifier_call_chain(&dev->bus->p->bus_notifier,
1278 BUS_NOTIFY_REMOVED_DEVICE, dev);
312c004d 1279 kobject_uevent(&dev->kobj, KOBJ_REMOVE);
da231fd5 1280 cleanup_device_parent(dev);
1da177e4 1281 kobject_del(&dev->kobj);
da231fd5 1282 put_device(parent);
1da177e4 1283}
86df2687 1284EXPORT_SYMBOL_GPL(device_del);
1da177e4
LT
1285
1286/**
4a3ad20c
GKH
1287 * device_unregister - unregister device from system.
1288 * @dev: device going away.
1da177e4 1289 *
4a3ad20c
GKH
1290 * We do this in two parts, like we do device_register(). First,
1291 * we remove it from all the subsystems with device_del(), then
1292 * we decrement the reference count via put_device(). If that
1293 * is the final reference count, the device will be cleaned up
1294 * via device_release() above. Otherwise, the structure will
1295 * stick around until the final reference to the device is dropped.
1da177e4 1296 */
4a3ad20c 1297void device_unregister(struct device *dev)
1da177e4 1298{
1e0b2cf9 1299 pr_debug("device: '%s': %s\n", dev_name(dev), __func__);
1da177e4
LT
1300 device_del(dev);
1301 put_device(dev);
1302}
86df2687 1303EXPORT_SYMBOL_GPL(device_unregister);
1da177e4 1304
3d060aeb
AS
1305static struct device *prev_device(struct klist_iter *i)
1306{
1307 struct klist_node *n = klist_prev(i);
1308 struct device *dev = NULL;
1309 struct device_private *p;
1310
1311 if (n) {
1312 p = to_device_private_parent(n);
1313 dev = p->device;
1314 }
1315 return dev;
1316}
1317
4a3ad20c 1318static struct device *next_device(struct klist_iter *i)
36239577 1319{
4a3ad20c 1320 struct klist_node *n = klist_next(i);
f791b8c8
GKH
1321 struct device *dev = NULL;
1322 struct device_private *p;
1323
1324 if (n) {
1325 p = to_device_private_parent(n);
1326 dev = p->device;
1327 }
1328 return dev;
36239577 1329}
1330
6fcf53ac 1331/**
e454cea2 1332 * device_get_devnode - path of device node file
6fcf53ac 1333 * @dev: device
e454cea2 1334 * @mode: returned file access mode
3c2670e6
KS
1335 * @uid: returned file owner
1336 * @gid: returned file group
6fcf53ac
KS
1337 * @tmp: possibly allocated string
1338 *
1339 * Return the relative path of a possible device node.
1340 * Non-default names may need to allocate a memory to compose
1341 * a name. This memory is returned in tmp and needs to be
1342 * freed by the caller.
1343 */
e454cea2 1344const char *device_get_devnode(struct device *dev,
4e4098a3 1345 umode_t *mode, kuid_t *uid, kgid_t *gid,
3c2670e6 1346 const char **tmp)
6fcf53ac
KS
1347{
1348 char *s;
1349
1350 *tmp = NULL;
1351
1352 /* the device type may provide a specific name */
e454cea2 1353 if (dev->type && dev->type->devnode)
3c2670e6 1354 *tmp = dev->type->devnode(dev, mode, uid, gid);
6fcf53ac
KS
1355 if (*tmp)
1356 return *tmp;
1357
1358 /* the class may provide a specific name */
e454cea2
KS
1359 if (dev->class && dev->class->devnode)
1360 *tmp = dev->class->devnode(dev, mode);
6fcf53ac
KS
1361 if (*tmp)
1362 return *tmp;
1363
1364 /* return name without allocation, tmp == NULL */
1365 if (strchr(dev_name(dev), '!') == NULL)
1366 return dev_name(dev);
1367
1368 /* replace '!' in the name with '/' */
a29fd614
RV
1369 s = kstrdup(dev_name(dev), GFP_KERNEL);
1370 if (!s)
6fcf53ac 1371 return NULL;
a29fd614
RV
1372 strreplace(s, '!', '/');
1373 return *tmp = s;
6fcf53ac
KS
1374}
1375
1da177e4 1376/**
4a3ad20c
GKH
1377 * device_for_each_child - device child iterator.
1378 * @parent: parent struct device.
4a3ad20c 1379 * @fn: function to be called for each device.
f8878dcb 1380 * @data: data for the callback.
1da177e4 1381 *
4a3ad20c
GKH
1382 * Iterate over @parent's child devices, and call @fn for each,
1383 * passing it @data.
1da177e4 1384 *
4a3ad20c
GKH
1385 * We check the return of @fn each time. If it returns anything
1386 * other than 0, we break out and return that value.
1da177e4 1387 */
4a3ad20c
GKH
1388int device_for_each_child(struct device *parent, void *data,
1389 int (*fn)(struct device *dev, void *data))
1da177e4 1390{
36239577 1391 struct klist_iter i;
4a3ad20c 1392 struct device *child;
1da177e4
LT
1393 int error = 0;
1394
014c90db
GKH
1395 if (!parent->p)
1396 return 0;
1397
f791b8c8 1398 klist_iter_init(&parent->p->klist_children, &i);
36239577 1399 while ((child = next_device(&i)) && !error)
1400 error = fn(child, data);
1401 klist_iter_exit(&i);
1da177e4
LT
1402 return error;
1403}
86df2687 1404EXPORT_SYMBOL_GPL(device_for_each_child);
1da177e4 1405
3d060aeb
AS
1406/**
1407 * device_for_each_child_reverse - device child iterator in reversed order.
1408 * @parent: parent struct device.
1409 * @fn: function to be called for each device.
1410 * @data: data for the callback.
1411 *
1412 * Iterate over @parent's child devices, and call @fn for each,
1413 * passing it @data.
1414 *
1415 * We check the return of @fn each time. If it returns anything
1416 * other than 0, we break out and return that value.
1417 */
1418int device_for_each_child_reverse(struct device *parent, void *data,
1419 int (*fn)(struct device *dev, void *data))
1420{
1421 struct klist_iter i;
1422 struct device *child;
1423 int error = 0;
1424
1425 if (!parent->p)
1426 return 0;
1427
1428 klist_iter_init(&parent->p->klist_children, &i);
1429 while ((child = prev_device(&i)) && !error)
1430 error = fn(child, data);
1431 klist_iter_exit(&i);
1432 return error;
1433}
1434EXPORT_SYMBOL_GPL(device_for_each_child_reverse);
1435
5ab69981
CH
1436/**
1437 * device_find_child - device iterator for locating a particular device.
1438 * @parent: parent struct device
5ab69981 1439 * @match: Callback function to check device
f8878dcb 1440 * @data: Data to pass to match function
5ab69981
CH
1441 *
1442 * This is similar to the device_for_each_child() function above, but it
1443 * returns a reference to a device that is 'found' for later use, as
1444 * determined by the @match callback.
1445 *
1446 * The callback should return 0 if the device doesn't match and non-zero
1447 * if it does. If the callback returns non-zero and a reference to the
1448 * current device can be obtained, this function will return to the caller
1449 * and not iterate over any more devices.
a4e2400a
FV
1450 *
1451 * NOTE: you will need to drop the reference with put_device() after use.
5ab69981 1452 */
4a3ad20c
GKH
1453struct device *device_find_child(struct device *parent, void *data,
1454 int (*match)(struct device *dev, void *data))
5ab69981
CH
1455{
1456 struct klist_iter i;
1457 struct device *child;
1458
1459 if (!parent)
1460 return NULL;
1461
f791b8c8 1462 klist_iter_init(&parent->p->klist_children, &i);
5ab69981
CH
1463 while ((child = next_device(&i)))
1464 if (match(child, data) && get_device(child))
1465 break;
1466 klist_iter_exit(&i);
1467 return child;
1468}
86df2687 1469EXPORT_SYMBOL_GPL(device_find_child);
5ab69981 1470
1da177e4
LT
1471int __init devices_init(void)
1472{
881c6cfd
GKH
1473 devices_kset = kset_create_and_add("devices", &device_uevent_ops, NULL);
1474 if (!devices_kset)
1475 return -ENOMEM;
e105b8bf
DW
1476 dev_kobj = kobject_create_and_add("dev", NULL);
1477 if (!dev_kobj)
1478 goto dev_kobj_err;
1479 sysfs_dev_block_kobj = kobject_create_and_add("block", dev_kobj);
1480 if (!sysfs_dev_block_kobj)
1481 goto block_kobj_err;
1482 sysfs_dev_char_kobj = kobject_create_and_add("char", dev_kobj);
1483 if (!sysfs_dev_char_kobj)
1484 goto char_kobj_err;
1485
881c6cfd 1486 return 0;
e105b8bf
DW
1487
1488 char_kobj_err:
1489 kobject_put(sysfs_dev_block_kobj);
1490 block_kobj_err:
1491 kobject_put(dev_kobj);
1492 dev_kobj_err:
1493 kset_unregister(devices_kset);
1494 return -ENOMEM;
1da177e4
LT
1495}
1496
4f3549d7
RW
1497static int device_check_offline(struct device *dev, void *not_used)
1498{
1499 int ret;
1500
1501 ret = device_for_each_child(dev, NULL, device_check_offline);
1502 if (ret)
1503 return ret;
1504
1505 return device_supports_offline(dev) && !dev->offline ? -EBUSY : 0;
1506}
1507
1508/**
1509 * device_offline - Prepare the device for hot-removal.
1510 * @dev: Device to be put offline.
1511 *
1512 * Execute the device bus type's .offline() callback, if present, to prepare
1513 * the device for a subsequent hot-removal. If that succeeds, the device must
1514 * not be used until either it is removed or its bus type's .online() callback
1515 * is executed.
1516 *
1517 * Call under device_hotplug_lock.
1518 */
1519int device_offline(struct device *dev)
1520{
1521 int ret;
1522
1523 if (dev->offline_disabled)
1524 return -EPERM;
1525
1526 ret = device_for_each_child(dev, NULL, device_check_offline);
1527 if (ret)
1528 return ret;
1529
1530 device_lock(dev);
1531 if (device_supports_offline(dev)) {
1532 if (dev->offline) {
1533 ret = 1;
1534 } else {
1535 ret = dev->bus->offline(dev);
1536 if (!ret) {
1537 kobject_uevent(&dev->kobj, KOBJ_OFFLINE);
1538 dev->offline = true;
1539 }
1540 }
1541 }
1542 device_unlock(dev);
1543
1544 return ret;
1545}
1546
1547/**
1548 * device_online - Put the device back online after successful device_offline().
1549 * @dev: Device to be put back online.
1550 *
1551 * If device_offline() has been successfully executed for @dev, but the device
1552 * has not been removed subsequently, execute its bus type's .online() callback
1553 * to indicate that the device can be used again.
1554 *
1555 * Call under device_hotplug_lock.
1556 */
1557int device_online(struct device *dev)
1558{
1559 int ret = 0;
1560
1561 device_lock(dev);
1562 if (device_supports_offline(dev)) {
1563 if (dev->offline) {
1564 ret = dev->bus->online(dev);
1565 if (!ret) {
1566 kobject_uevent(&dev->kobj, KOBJ_ONLINE);
1567 dev->offline = false;
1568 }
1569 } else {
1570 ret = 1;
1571 }
1572 }
1573 device_unlock(dev);
1574
1575 return ret;
1576}
1577
7f100d15 1578struct root_device {
0aa0dc41
MM
1579 struct device dev;
1580 struct module *owner;
1581};
1582
93058424 1583static inline struct root_device *to_root_device(struct device *d)
481e2079
FW
1584{
1585 return container_of(d, struct root_device, dev);
1586}
0aa0dc41
MM
1587
1588static void root_device_release(struct device *dev)
1589{
1590 kfree(to_root_device(dev));
1591}
1592
1593/**
1594 * __root_device_register - allocate and register a root device
1595 * @name: root device name
1596 * @owner: owner module of the root device, usually THIS_MODULE
1597 *
1598 * This function allocates a root device and registers it
1599 * using device_register(). In order to free the returned
1600 * device, use root_device_unregister().
1601 *
1602 * Root devices are dummy devices which allow other devices
1603 * to be grouped under /sys/devices. Use this function to
1604 * allocate a root device and then use it as the parent of
1605 * any device which should appear under /sys/devices/{name}
1606 *
1607 * The /sys/devices/{name} directory will also contain a
1608 * 'module' symlink which points to the @owner directory
1609 * in sysfs.
1610 *
f0eae0ed
JN
1611 * Returns &struct device pointer on success, or ERR_PTR() on error.
1612 *
0aa0dc41
MM
1613 * Note: You probably want to use root_device_register().
1614 */
1615struct device *__root_device_register(const char *name, struct module *owner)
1616{
1617 struct root_device *root;
1618 int err = -ENOMEM;
1619
1620 root = kzalloc(sizeof(struct root_device), GFP_KERNEL);
1621 if (!root)
1622 return ERR_PTR(err);
1623
acc0e90f 1624 err = dev_set_name(&root->dev, "%s", name);
0aa0dc41
MM
1625 if (err) {
1626 kfree(root);
1627 return ERR_PTR(err);
1628 }
1629
1630 root->dev.release = root_device_release;
1631
1632 err = device_register(&root->dev);
1633 if (err) {
1634 put_device(&root->dev);
1635 return ERR_PTR(err);
1636 }
1637
1d9e882b 1638#ifdef CONFIG_MODULES /* gotta find a "cleaner" way to do this */
0aa0dc41
MM
1639 if (owner) {
1640 struct module_kobject *mk = &owner->mkobj;
1641
1642 err = sysfs_create_link(&root->dev.kobj, &mk->kobj, "module");
1643 if (err) {
1644 device_unregister(&root->dev);
1645 return ERR_PTR(err);
1646 }
1647 root->owner = owner;
1648 }
1649#endif
1650
1651 return &root->dev;
1652}
1653EXPORT_SYMBOL_GPL(__root_device_register);
1654
1655/**
1656 * root_device_unregister - unregister and free a root device
7cbcf225 1657 * @dev: device going away
0aa0dc41
MM
1658 *
1659 * This function unregisters and cleans up a device that was created by
1660 * root_device_register().
1661 */
1662void root_device_unregister(struct device *dev)
1663{
1664 struct root_device *root = to_root_device(dev);
1665
1666 if (root->owner)
1667 sysfs_remove_link(&root->dev.kobj, "module");
1668
1669 device_unregister(dev);
1670}
1671EXPORT_SYMBOL_GPL(root_device_unregister);
1672
23681e47
GKH
1673
1674static void device_create_release(struct device *dev)
1675{
1e0b2cf9 1676 pr_debug("device: '%s': %s\n", dev_name(dev), __func__);
23681e47
GKH
1677 kfree(dev);
1678}
1679
39ef3112
GR
1680static struct device *
1681device_create_groups_vargs(struct class *class, struct device *parent,
1682 dev_t devt, void *drvdata,
1683 const struct attribute_group **groups,
1684 const char *fmt, va_list args)
23681e47 1685{
23681e47
GKH
1686 struct device *dev = NULL;
1687 int retval = -ENODEV;
1688
1689 if (class == NULL || IS_ERR(class))
1690 goto error;
23681e47
GKH
1691
1692 dev = kzalloc(sizeof(*dev), GFP_KERNEL);
1693 if (!dev) {
1694 retval = -ENOMEM;
1695 goto error;
1696 }
1697
bbc780f8 1698 device_initialize(dev);
23681e47
GKH
1699 dev->devt = devt;
1700 dev->class = class;
1701 dev->parent = parent;
39ef3112 1702 dev->groups = groups;
23681e47 1703 dev->release = device_create_release;
8882b394 1704 dev_set_drvdata(dev, drvdata);
23681e47 1705
1fa5ae85
KS
1706 retval = kobject_set_name_vargs(&dev->kobj, fmt, args);
1707 if (retval)
1708 goto error;
1709
bbc780f8 1710 retval = device_add(dev);
23681e47
GKH
1711 if (retval)
1712 goto error;
1713
23681e47
GKH
1714 return dev;
1715
1716error:
286661b3 1717 put_device(dev);
23681e47
GKH
1718 return ERR_PTR(retval);
1719}
39ef3112
GR
1720
1721/**
1722 * device_create_vargs - creates a device and registers it with sysfs
1723 * @class: pointer to the struct class that this device should be registered to
1724 * @parent: pointer to the parent struct device of this new device, if any
1725 * @devt: the dev_t for the char device to be added
1726 * @drvdata: the data to be added to the device for callbacks
1727 * @fmt: string for the device's name
1728 * @args: va_list for the device's name
1729 *
1730 * This function can be used by char device classes. A struct device
1731 * will be created in sysfs, registered to the specified class.
1732 *
1733 * A "dev" file will be created, showing the dev_t for the device, if
1734 * the dev_t is not 0,0.
1735 * If a pointer to a parent struct device is passed in, the newly created
1736 * struct device will be a child of that device in sysfs.
1737 * The pointer to the struct device will be returned from the call.
1738 * Any further sysfs files that might be required can be created using this
1739 * pointer.
1740 *
1741 * Returns &struct device pointer on success, or ERR_PTR() on error.
1742 *
1743 * Note: the struct class passed to this function must have previously
1744 * been created with a call to class_create().
1745 */
1746struct device *device_create_vargs(struct class *class, struct device *parent,
1747 dev_t devt, void *drvdata, const char *fmt,
1748 va_list args)
1749{
1750 return device_create_groups_vargs(class, parent, devt, drvdata, NULL,
1751 fmt, args);
1752}
8882b394
GKH
1753EXPORT_SYMBOL_GPL(device_create_vargs);
1754
1755/**
4e106739 1756 * device_create - creates a device and registers it with sysfs
8882b394
GKH
1757 * @class: pointer to the struct class that this device should be registered to
1758 * @parent: pointer to the parent struct device of this new device, if any
1759 * @devt: the dev_t for the char device to be added
1760 * @drvdata: the data to be added to the device for callbacks
1761 * @fmt: string for the device's name
1762 *
1763 * This function can be used by char device classes. A struct device
1764 * will be created in sysfs, registered to the specified class.
1765 *
1766 * A "dev" file will be created, showing the dev_t for the device, if
1767 * the dev_t is not 0,0.
1768 * If a pointer to a parent struct device is passed in, the newly created
1769 * struct device will be a child of that device in sysfs.
1770 * The pointer to the struct device will be returned from the call.
1771 * Any further sysfs files that might be required can be created using this
1772 * pointer.
1773 *
f0eae0ed
JN
1774 * Returns &struct device pointer on success, or ERR_PTR() on error.
1775 *
8882b394
GKH
1776 * Note: the struct class passed to this function must have previously
1777 * been created with a call to class_create().
1778 */
4e106739
GKH
1779struct device *device_create(struct class *class, struct device *parent,
1780 dev_t devt, void *drvdata, const char *fmt, ...)
8882b394
GKH
1781{
1782 va_list vargs;
1783 struct device *dev;
1784
1785 va_start(vargs, fmt);
1786 dev = device_create_vargs(class, parent, devt, drvdata, fmt, vargs);
1787 va_end(vargs);
1788 return dev;
1789}
4e106739 1790EXPORT_SYMBOL_GPL(device_create);
8882b394 1791
39ef3112
GR
1792/**
1793 * device_create_with_groups - creates a device and registers it with sysfs
1794 * @class: pointer to the struct class that this device should be registered to
1795 * @parent: pointer to the parent struct device of this new device, if any
1796 * @devt: the dev_t for the char device to be added
1797 * @drvdata: the data to be added to the device for callbacks
1798 * @groups: NULL-terminated list of attribute groups to be created
1799 * @fmt: string for the device's name
1800 *
1801 * This function can be used by char device classes. A struct device
1802 * will be created in sysfs, registered to the specified class.
1803 * Additional attributes specified in the groups parameter will also
1804 * be created automatically.
1805 *
1806 * A "dev" file will be created, showing the dev_t for the device, if
1807 * the dev_t is not 0,0.
1808 * If a pointer to a parent struct device is passed in, the newly created
1809 * struct device will be a child of that device in sysfs.
1810 * The pointer to the struct device will be returned from the call.
1811 * Any further sysfs files that might be required can be created using this
1812 * pointer.
1813 *
1814 * Returns &struct device pointer on success, or ERR_PTR() on error.
1815 *
1816 * Note: the struct class passed to this function must have previously
1817 * been created with a call to class_create().
1818 */
1819struct device *device_create_with_groups(struct class *class,
1820 struct device *parent, dev_t devt,
1821 void *drvdata,
1822 const struct attribute_group **groups,
1823 const char *fmt, ...)
1824{
1825 va_list vargs;
1826 struct device *dev;
1827
1828 va_start(vargs, fmt);
1829 dev = device_create_groups_vargs(class, parent, devt, drvdata, groups,
1830 fmt, vargs);
1831 va_end(vargs);
1832 return dev;
1833}
1834EXPORT_SYMBOL_GPL(device_create_with_groups);
1835
9f3b795a 1836static int __match_devt(struct device *dev, const void *data)
23681e47 1837{
9f3b795a 1838 const dev_t *devt = data;
23681e47 1839
cd35449b 1840 return dev->devt == *devt;
775b64d2
RW
1841}
1842
1843/**
1844 * device_destroy - removes a device that was created with device_create()
1845 * @class: pointer to the struct class that this device was registered with
1846 * @devt: the dev_t of the device that was previously registered
1847 *
1848 * This call unregisters and cleans up a device that was created with a
1849 * call to device_create().
1850 */
1851void device_destroy(struct class *class, dev_t devt)
1852{
1853 struct device *dev;
23681e47 1854
695794ae 1855 dev = class_find_device(class, NULL, &devt, __match_devt);
cd35449b
DY
1856 if (dev) {
1857 put_device(dev);
23681e47 1858 device_unregister(dev);
cd35449b 1859 }
23681e47
GKH
1860}
1861EXPORT_SYMBOL_GPL(device_destroy);
a2de48ca
GKH
1862
1863/**
1864 * device_rename - renames a device
1865 * @dev: the pointer to the struct device to be renamed
1866 * @new_name: the new name of the device
030c1d2b
EB
1867 *
1868 * It is the responsibility of the caller to provide mutual
1869 * exclusion between two different calls of device_rename
1870 * on the same device to ensure that new_name is valid and
1871 * won't conflict with other devices.
c6c0ac66 1872 *
a5462516
TT
1873 * Note: Don't call this function. Currently, the networking layer calls this
1874 * function, but that will change. The following text from Kay Sievers offers
1875 * some insight:
1876 *
1877 * Renaming devices is racy at many levels, symlinks and other stuff are not
1878 * replaced atomically, and you get a "move" uevent, but it's not easy to
1879 * connect the event to the old and new device. Device nodes are not renamed at
1880 * all, there isn't even support for that in the kernel now.
1881 *
1882 * In the meantime, during renaming, your target name might be taken by another
1883 * driver, creating conflicts. Or the old name is taken directly after you
1884 * renamed it -- then you get events for the same DEVPATH, before you even see
1885 * the "move" event. It's just a mess, and nothing new should ever rely on
1886 * kernel device renaming. Besides that, it's not even implemented now for
1887 * other things than (driver-core wise very simple) network devices.
1888 *
1889 * We are currently about to change network renaming in udev to completely
1890 * disallow renaming of devices in the same namespace as the kernel uses,
1891 * because we can't solve the problems properly, that arise with swapping names
1892 * of multiple interfaces without races. Means, renaming of eth[0-9]* will only
1893 * be allowed to some other name than eth[0-9]*, for the aforementioned
1894 * reasons.
1895 *
1896 * Make up a "real" name in the driver before you register anything, or add
1897 * some other attributes for userspace to find the device, or use udev to add
1898 * symlinks -- but never rename kernel devices later, it's a complete mess. We
1899 * don't even want to get into that and try to implement the missing pieces in
1900 * the core. We really have other pieces to fix in the driver core mess. :)
a2de48ca 1901 */
6937e8f8 1902int device_rename(struct device *dev, const char *new_name)
a2de48ca 1903{
4b30ee58 1904 struct kobject *kobj = &dev->kobj;
2ee97caf 1905 char *old_device_name = NULL;
a2de48ca
GKH
1906 int error;
1907
1908 dev = get_device(dev);
1909 if (!dev)
1910 return -EINVAL;
1911
69df7533 1912 dev_dbg(dev, "renaming to %s\n", new_name);
a2de48ca 1913
1fa5ae85 1914 old_device_name = kstrdup(dev_name(dev), GFP_KERNEL);
2ee97caf
CH
1915 if (!old_device_name) {
1916 error = -ENOMEM;
1917 goto out;
a2de48ca 1918 }
a2de48ca 1919
f349cf34 1920 if (dev->class) {
4b30ee58
TH
1921 error = sysfs_rename_link_ns(&dev->class->p->subsys.kobj,
1922 kobj, old_device_name,
1923 new_name, kobject_namespace(kobj));
f349cf34
EB
1924 if (error)
1925 goto out;
1926 }
39aba963 1927
4b30ee58 1928 error = kobject_rename(kobj, new_name);
1fa5ae85 1929 if (error)
2ee97caf 1930 goto out;
a2de48ca 1931
2ee97caf 1932out:
a2de48ca
GKH
1933 put_device(dev);
1934
2ee97caf 1935 kfree(old_device_name);
a2de48ca
GKH
1936
1937 return error;
1938}
a2807dbc 1939EXPORT_SYMBOL_GPL(device_rename);
8a82472f
CH
1940
1941static int device_move_class_links(struct device *dev,
1942 struct device *old_parent,
1943 struct device *new_parent)
1944{
f7f3461d 1945 int error = 0;
8a82472f 1946
f7f3461d
GKH
1947 if (old_parent)
1948 sysfs_remove_link(&dev->kobj, "device");
1949 if (new_parent)
1950 error = sysfs_create_link(&dev->kobj, &new_parent->kobj,
1951 "device");
1952 return error;
8a82472f
CH
1953}
1954
1955/**
1956 * device_move - moves a device to a new parent
1957 * @dev: the pointer to the struct device to be moved
c744aeae 1958 * @new_parent: the new parent of the device (can by NULL)
ffa6a705 1959 * @dpm_order: how to reorder the dpm_list
8a82472f 1960 */
ffa6a705
CH
1961int device_move(struct device *dev, struct device *new_parent,
1962 enum dpm_order dpm_order)
8a82472f
CH
1963{
1964 int error;
1965 struct device *old_parent;
c744aeae 1966 struct kobject *new_parent_kobj;
8a82472f
CH
1967
1968 dev = get_device(dev);
1969 if (!dev)
1970 return -EINVAL;
1971
ffa6a705 1972 device_pm_lock();
8a82472f 1973 new_parent = get_device(new_parent);
4a3ad20c 1974 new_parent_kobj = get_device_parent(dev, new_parent);
63b6971a 1975
1e0b2cf9
KS
1976 pr_debug("device: '%s': %s: moving to '%s'\n", dev_name(dev),
1977 __func__, new_parent ? dev_name(new_parent) : "<NULL>");
c744aeae 1978 error = kobject_move(&dev->kobj, new_parent_kobj);
8a82472f 1979 if (error) {
63b6971a 1980 cleanup_glue_dir(dev, new_parent_kobj);
8a82472f
CH
1981 put_device(new_parent);
1982 goto out;
1983 }
1984 old_parent = dev->parent;
1985 dev->parent = new_parent;
1986 if (old_parent)
f791b8c8 1987 klist_remove(&dev->p->knode_parent);
0d358f22 1988 if (new_parent) {
f791b8c8
GKH
1989 klist_add_tail(&dev->p->knode_parent,
1990 &new_parent->p->klist_children);
0d358f22
YL
1991 set_dev_node(dev, dev_to_node(new_parent));
1992 }
1993
bdd4034d
RV
1994 if (dev->class) {
1995 error = device_move_class_links(dev, old_parent, new_parent);
1996 if (error) {
1997 /* We ignore errors on cleanup since we're hosed anyway... */
1998 device_move_class_links(dev, new_parent, old_parent);
1999 if (!kobject_move(&dev->kobj, &old_parent->kobj)) {
2000 if (new_parent)
2001 klist_remove(&dev->p->knode_parent);
2002 dev->parent = old_parent;
2003 if (old_parent) {
2004 klist_add_tail(&dev->p->knode_parent,
2005 &old_parent->p->klist_children);
2006 set_dev_node(dev, dev_to_node(old_parent));
2007 }
0d358f22 2008 }
bdd4034d
RV
2009 cleanup_glue_dir(dev, new_parent_kobj);
2010 put_device(new_parent);
2011 goto out;
8a82472f 2012 }
8a82472f 2013 }
ffa6a705
CH
2014 switch (dpm_order) {
2015 case DPM_ORDER_NONE:
2016 break;
2017 case DPM_ORDER_DEV_AFTER_PARENT:
2018 device_pm_move_after(dev, new_parent);
52cdbdd4 2019 devices_kset_move_after(dev, new_parent);
ffa6a705
CH
2020 break;
2021 case DPM_ORDER_PARENT_BEFORE_DEV:
2022 device_pm_move_before(new_parent, dev);
52cdbdd4 2023 devices_kset_move_before(new_parent, dev);
ffa6a705
CH
2024 break;
2025 case DPM_ORDER_DEV_LAST:
2026 device_pm_move_last(dev);
52cdbdd4 2027 devices_kset_move_last(dev);
ffa6a705
CH
2028 break;
2029 }
bdd4034d 2030
8a82472f
CH
2031 put_device(old_parent);
2032out:
ffa6a705 2033 device_pm_unlock();
8a82472f
CH
2034 put_device(dev);
2035 return error;
2036}
8a82472f 2037EXPORT_SYMBOL_GPL(device_move);
37b0c020
GKH
2038
2039/**
2040 * device_shutdown - call ->shutdown() on each device to shutdown.
2041 */
2042void device_shutdown(void)
2043{
f123db8e 2044 struct device *dev, *parent;
6245838f
HD
2045
2046 spin_lock(&devices_kset->list_lock);
2047 /*
2048 * Walk the devices list backward, shutting down each in turn.
2049 * Beware that device unplug events may also start pulling
2050 * devices offline, even as the system is shutting down.
2051 */
2052 while (!list_empty(&devices_kset->list)) {
2053 dev = list_entry(devices_kset->list.prev, struct device,
2054 kobj.entry);
d1c6c030
ML
2055
2056 /*
2057 * hold reference count of device's parent to
2058 * prevent it from being freed because parent's
2059 * lock is to be held
2060 */
f123db8e 2061 parent = get_device(dev->parent);
6245838f
HD
2062 get_device(dev);
2063 /*
2064 * Make sure the device is off the kset list, in the
2065 * event that dev->*->shutdown() doesn't remove it.
2066 */
2067 list_del_init(&dev->kobj.entry);
2068 spin_unlock(&devices_kset->list_lock);
fe6b91f4 2069
d1c6c030 2070 /* hold lock to avoid race with probe/release */
f123db8e
BL
2071 if (parent)
2072 device_lock(parent);
d1c6c030
ML
2073 device_lock(dev);
2074
fe6b91f4
AS
2075 /* Don't allow any more runtime suspends */
2076 pm_runtime_get_noresume(dev);
2077 pm_runtime_barrier(dev);
37b0c020 2078
37b0c020 2079 if (dev->bus && dev->bus->shutdown) {
0246c4fa
SL
2080 if (initcall_debug)
2081 dev_info(dev, "shutdown\n");
37b0c020
GKH
2082 dev->bus->shutdown(dev);
2083 } else if (dev->driver && dev->driver->shutdown) {
0246c4fa
SL
2084 if (initcall_debug)
2085 dev_info(dev, "shutdown\n");
37b0c020
GKH
2086 dev->driver->shutdown(dev);
2087 }
d1c6c030
ML
2088
2089 device_unlock(dev);
f123db8e
BL
2090 if (parent)
2091 device_unlock(parent);
d1c6c030 2092
6245838f 2093 put_device(dev);
f123db8e 2094 put_device(parent);
6245838f
HD
2095
2096 spin_lock(&devices_kset->list_lock);
37b0c020 2097 }
6245838f 2098 spin_unlock(&devices_kset->list_lock);
37b0c020 2099}
99bcf217
JP
2100
2101/*
2102 * Device logging functions
2103 */
2104
2105#ifdef CONFIG_PRINTK
666f355f
JP
2106static int
2107create_syslog_header(const struct device *dev, char *hdr, size_t hdrlen)
99bcf217 2108{
c4e00daa 2109 const char *subsys;
798efc60 2110 size_t pos = 0;
99bcf217 2111
c4e00daa
KS
2112 if (dev->class)
2113 subsys = dev->class->name;
2114 else if (dev->bus)
2115 subsys = dev->bus->name;
2116 else
798efc60 2117 return 0;
c4e00daa 2118
798efc60 2119 pos += snprintf(hdr + pos, hdrlen - pos, "SUBSYSTEM=%s", subsys);
655e5b7c
BH
2120 if (pos >= hdrlen)
2121 goto overflow;
c4e00daa
KS
2122
2123 /*
2124 * Add device identifier DEVICE=:
2125 * b12:8 block dev_t
2126 * c127:3 char dev_t
2127 * n8 netdev ifindex
2128 * +sound:card0 subsystem:devname
2129 */
2130 if (MAJOR(dev->devt)) {
2131 char c;
2132
2133 if (strcmp(subsys, "block") == 0)
2134 c = 'b';
2135 else
2136 c = 'c';
798efc60
JP
2137 pos++;
2138 pos += snprintf(hdr + pos, hdrlen - pos,
2139 "DEVICE=%c%u:%u",
2140 c, MAJOR(dev->devt), MINOR(dev->devt));
c4e00daa
KS
2141 } else if (strcmp(subsys, "net") == 0) {
2142 struct net_device *net = to_net_dev(dev);
2143
798efc60
JP
2144 pos++;
2145 pos += snprintf(hdr + pos, hdrlen - pos,
2146 "DEVICE=n%u", net->ifindex);
c4e00daa 2147 } else {
798efc60
JP
2148 pos++;
2149 pos += snprintf(hdr + pos, hdrlen - pos,
2150 "DEVICE=+%s:%s", subsys, dev_name(dev));
c4e00daa 2151 }
af7f2158 2152
655e5b7c
BH
2153 if (pos >= hdrlen)
2154 goto overflow;
2155
798efc60 2156 return pos;
655e5b7c
BH
2157
2158overflow:
2159 dev_WARN(dev, "device/subsystem name too long");
2160 return 0;
798efc60 2161}
798efc60 2162
05e4e5b8
JP
2163int dev_vprintk_emit(int level, const struct device *dev,
2164 const char *fmt, va_list args)
2165{
2166 char hdr[128];
2167 size_t hdrlen;
2168
2169 hdrlen = create_syslog_header(dev, hdr, sizeof(hdr));
2170
2171 return vprintk_emit(0, level, hdrlen ? hdr : NULL, hdrlen, fmt, args);
2172}
2173EXPORT_SYMBOL(dev_vprintk_emit);
2174
2175int dev_printk_emit(int level, const struct device *dev, const char *fmt, ...)
2176{
2177 va_list args;
2178 int r;
2179
2180 va_start(args, fmt);
2181
2182 r = dev_vprintk_emit(level, dev, fmt, args);
2183
2184 va_end(args);
2185
2186 return r;
2187}
2188EXPORT_SYMBOL(dev_printk_emit);
2189
d1f1052c 2190static void __dev_printk(const char *level, const struct device *dev,
798efc60
JP
2191 struct va_format *vaf)
2192{
d1f1052c
JP
2193 if (dev)
2194 dev_printk_emit(level[1] - '0', dev, "%s %s: %pV",
2195 dev_driver_string(dev), dev_name(dev), vaf);
2196 else
2197 printk("%s(NULL device *): %pV", level, vaf);
99bcf217
JP
2198}
2199
d1f1052c
JP
2200void dev_printk(const char *level, const struct device *dev,
2201 const char *fmt, ...)
99bcf217
JP
2202{
2203 struct va_format vaf;
2204 va_list args;
99bcf217
JP
2205
2206 va_start(args, fmt);
2207
2208 vaf.fmt = fmt;
2209 vaf.va = &args;
2210
d1f1052c 2211 __dev_printk(level, dev, &vaf);
798efc60 2212
99bcf217 2213 va_end(args);
99bcf217
JP
2214}
2215EXPORT_SYMBOL(dev_printk);
2216
2217#define define_dev_printk_level(func, kern_level) \
d1f1052c 2218void func(const struct device *dev, const char *fmt, ...) \
99bcf217
JP
2219{ \
2220 struct va_format vaf; \
2221 va_list args; \
99bcf217
JP
2222 \
2223 va_start(args, fmt); \
2224 \
2225 vaf.fmt = fmt; \
2226 vaf.va = &args; \
2227 \
d1f1052c 2228 __dev_printk(kern_level, dev, &vaf); \
798efc60 2229 \
99bcf217 2230 va_end(args); \
99bcf217
JP
2231} \
2232EXPORT_SYMBOL(func);
2233
2234define_dev_printk_level(dev_emerg, KERN_EMERG);
2235define_dev_printk_level(dev_alert, KERN_ALERT);
2236define_dev_printk_level(dev_crit, KERN_CRIT);
2237define_dev_printk_level(dev_err, KERN_ERR);
2238define_dev_printk_level(dev_warn, KERN_WARNING);
2239define_dev_printk_level(dev_notice, KERN_NOTICE);
2240define_dev_printk_level(_dev_info, KERN_INFO);
2241
2242#endif
97badf87
RW
2243
2244static inline bool fwnode_is_primary(struct fwnode_handle *fwnode)
2245{
2246 return fwnode && !IS_ERR(fwnode->secondary);
2247}
2248
2249/**
2250 * set_primary_fwnode - Change the primary firmware node of a given device.
2251 * @dev: Device to handle.
2252 * @fwnode: New primary firmware node of the device.
2253 *
2254 * Set the device's firmware node pointer to @fwnode, but if a secondary
2255 * firmware node of the device is present, preserve it.
2256 */
2257void set_primary_fwnode(struct device *dev, struct fwnode_handle *fwnode)
2258{
2259 if (fwnode) {
2260 struct fwnode_handle *fn = dev->fwnode;
2261
2262 if (fwnode_is_primary(fn))
2263 fn = fn->secondary;
2264
55f89a8a
MW
2265 if (fn) {
2266 WARN_ON(fwnode->secondary);
2267 fwnode->secondary = fn;
2268 }
97badf87
RW
2269 dev->fwnode = fwnode;
2270 } else {
2271 dev->fwnode = fwnode_is_primary(dev->fwnode) ?
2272 dev->fwnode->secondary : NULL;
2273 }
2274}
2275EXPORT_SYMBOL_GPL(set_primary_fwnode);
2276
2277/**
2278 * set_secondary_fwnode - Change the secondary firmware node of a given device.
2279 * @dev: Device to handle.
2280 * @fwnode: New secondary firmware node of the device.
2281 *
2282 * If a primary firmware node of the device is present, set its secondary
2283 * pointer to @fwnode. Otherwise, set the device's firmware node pointer to
2284 * @fwnode.
2285 */
2286void set_secondary_fwnode(struct device *dev, struct fwnode_handle *fwnode)
2287{
2288 if (fwnode)
2289 fwnode->secondary = ERR_PTR(-ENODEV);
2290
2291 if (fwnode_is_primary(dev->fwnode))
2292 dev->fwnode->secondary = fwnode;
2293 else
2294 dev->fwnode = fwnode;
2295}
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