Merge tag 'xfs-6.2-merge-8' of git://git.kernel.org/pub/scm/fs/xfs/xfs-linux
[linux-block.git] / drivers / base / dd.c
CommitLineData
989d42e8 1// SPDX-License-Identifier: GPL-2.0
07e4a3e2 2/*
4a3ad20c 3 * drivers/base/dd.c - The core device/driver interactions.
07e4a3e2 4 *
4a3ad20c
GKH
5 * This file contains the (sometimes tricky) code that controls the
6 * interactions between devices and drivers, which primarily includes
7 * driver binding and unbinding.
07e4a3e2 8 *
4a3ad20c
GKH
9 * All of this code used to exist in drivers/base/bus.c, but was
10 * relocated to here in the name of compartmentalization (since it wasn't
11 * strictly code just for the 'struct bus_type'.
07e4a3e2 12 *
4a3ad20c
GKH
13 * Copyright (c) 2002-5 Patrick Mochel
14 * Copyright (c) 2002-3 Open Source Development Labs
b4028437
GKH
15 * Copyright (c) 2007-2009 Greg Kroah-Hartman <gregkh@suse.de>
16 * Copyright (c) 2007-2009 Novell Inc.
07e4a3e2 17 */
18
28af109a 19#include <linux/debugfs.h>
07e4a3e2 20#include <linux/device.h>
216773a7 21#include <linux/delay.h>
0a0f0d8b 22#include <linux/dma-map-ops.h>
1f5000bd 23#include <linux/init.h>
07e4a3e2 24#include <linux/module.h>
d779249e 25#include <linux/kthread.h>
735a7ffb 26#include <linux/wait.h>
216773a7 27#include <linux/async.h>
5e928f77 28#include <linux/pm_runtime.h>
ab78029e 29#include <linux/pinctrl/devinfo.h>
d090b70e 30#include <linux/slab.h>
07e4a3e2 31
32#include "base.h"
33#include "power/power.h"
34
d1c3414c
GL
35/*
36 * Deferred Probe infrastructure.
37 *
38 * Sometimes driver probe order matters, but the kernel doesn't always have
39 * dependency information which means some drivers will get probed before a
40 * resource it depends on is available. For example, an SDHCI driver may
41 * first need a GPIO line from an i2c GPIO controller before it can be
42 * initialized. If a required resource is not available yet, a driver can
43 * request probing to be deferred by returning -EPROBE_DEFER from its probe hook
44 *
45 * Deferred probe maintains two lists of devices, a pending list and an active
46 * list. A driver returning -EPROBE_DEFER causes the device to be added to the
47 * pending list. A successful driver probe will trigger moving all devices
48 * from the pending to the active list so that the workqueue will eventually
49 * retry them.
50 *
51 * The deferred_probe_mutex must be held any time the deferred_probe_*_list
ef8a3fd6 52 * of the (struct device*)->p->deferred_probe pointers are manipulated
d1c3414c
GL
53 */
54static DEFINE_MUTEX(deferred_probe_mutex);
55static LIST_HEAD(deferred_probe_pending_list);
56static LIST_HEAD(deferred_probe_active_list);
58b116bc 57static atomic_t deferred_trigger_count = ATOMIC_INIT(0);
25b4e70d 58static bool initcalls_done;
d1c3414c 59
1ea61b68
FT
60/* Save the async probe drivers' name from kernel cmdline */
61#define ASYNC_DRV_NAMES_MAX_LEN 256
62static char async_probe_drv_names[ASYNC_DRV_NAMES_MAX_LEN];
f79f662e 63static bool async_probe_default;
1ea61b68 64
013c074f
SG
65/*
66 * In some cases, like suspend to RAM or hibernation, It might be reasonable
67 * to prohibit probing of devices as it could be unsafe.
68 * Once defer_all_probes is true all drivers probes will be forcibly deferred.
69 */
70static bool defer_all_probes;
71
72a91f19
AF
72static void __device_set_deferred_probe_reason(const struct device *dev, char *reason)
73{
74 kfree(dev->p->deferred_probe_reason);
75 dev->p->deferred_probe_reason = reason;
76}
77
41575335 78/*
d1c3414c
GL
79 * deferred_probe_work_func() - Retry probing devices in the active list.
80 */
81static void deferred_probe_work_func(struct work_struct *work)
82{
83 struct device *dev;
ef8a3fd6 84 struct device_private *private;
d1c3414c
GL
85 /*
86 * This block processes every device in the deferred 'active' list.
87 * Each device is removed from the active list and passed to
88 * bus_probe_device() to re-attempt the probe. The loop continues
89 * until every device in the active list is removed and retried.
90 *
91 * Note: Once the device is removed from the list and the mutex is
92 * released, it is possible for the device get freed by another thread
93 * and cause a illegal pointer dereference. This code uses
94 * get/put_device() to ensure the device structure cannot disappear
95 * from under our feet.
96 */
97 mutex_lock(&deferred_probe_mutex);
98 while (!list_empty(&deferred_probe_active_list)) {
ef8a3fd6
GKH
99 private = list_first_entry(&deferred_probe_active_list,
100 typeof(*dev->p), deferred_probe);
101 dev = private->device;
102 list_del_init(&private->deferred_probe);
d1c3414c
GL
103
104 get_device(dev);
105
72a91f19 106 __device_set_deferred_probe_reason(dev, NULL);
f0acf637 107
8b0372a2
GKH
108 /*
109 * Drop the mutex while probing each device; the probe path may
110 * manipulate the deferred list
111 */
d1c3414c 112 mutex_unlock(&deferred_probe_mutex);
8153584e
MB
113
114 /*
115 * Force the device to the end of the dpm_list since
116 * the PM code assumes that the order we add things to
117 * the list is a good order for suspend but deferred
118 * probe makes that very unsafe.
119 */
494fd7b7 120 device_pm_move_to_tail(dev);
8153584e 121
d1c3414c 122 dev_dbg(dev, "Retrying from deferred list\n");
0a50f61c 123 bus_probe_device(dev);
d1c3414c
GL
124 mutex_lock(&deferred_probe_mutex);
125
126 put_device(dev);
127 }
128 mutex_unlock(&deferred_probe_mutex);
129}
130static DECLARE_WORK(deferred_probe_work, deferred_probe_work_func);
131
e7dd4010 132void driver_deferred_probe_add(struct device *dev)
d1c3414c 133{
f2db85b6
SK
134 if (!dev->can_match)
135 return;
136
d1c3414c 137 mutex_lock(&deferred_probe_mutex);
ef8a3fd6 138 if (list_empty(&dev->p->deferred_probe)) {
d1c3414c 139 dev_dbg(dev, "Added to deferred list\n");
1d29cfa5 140 list_add_tail(&dev->p->deferred_probe, &deferred_probe_pending_list);
d1c3414c
GL
141 }
142 mutex_unlock(&deferred_probe_mutex);
143}
144
145void driver_deferred_probe_del(struct device *dev)
146{
147 mutex_lock(&deferred_probe_mutex);
ef8a3fd6 148 if (!list_empty(&dev->p->deferred_probe)) {
d1c3414c 149 dev_dbg(dev, "Removed from deferred list\n");
ef8a3fd6 150 list_del_init(&dev->p->deferred_probe);
72a91f19 151 __device_set_deferred_probe_reason(dev, NULL);
d1c3414c
GL
152 }
153 mutex_unlock(&deferred_probe_mutex);
154}
155
90158138 156static bool driver_deferred_probe_enable;
d1c3414c
GL
157/**
158 * driver_deferred_probe_trigger() - Kick off re-probing deferred devices
159 *
160 * This functions moves all devices from the pending list to the active
161 * list and schedules the deferred probe workqueue to process them. It
162 * should be called anytime a driver is successfully bound to a device.
58b116bc
GL
163 *
164 * Note, there is a race condition in multi-threaded probe. In the case where
165 * more than one device is probing at the same time, it is possible for one
166 * probe to complete successfully while another is about to defer. If the second
167 * depends on the first, then it will get put on the pending list after the
9ba8af66 168 * trigger event has already occurred and will be stuck there.
58b116bc
GL
169 *
170 * The atomic 'deferred_trigger_count' is used to determine if a successful
171 * trigger has occurred in the midst of probing a driver. If the trigger count
172 * changes in the midst of a probe, then deferred processing should be triggered
173 * again.
d1c3414c 174 */
2f8c3ae8 175void driver_deferred_probe_trigger(void)
96d8a916 176{
999032ec
SK
177 if (!driver_deferred_probe_enable)
178 return;
179
8b0372a2
GKH
180 /*
181 * A successful probe means that all the devices in the pending list
d1c3414c 182 * should be triggered to be reprobed. Move all the deferred devices
8b0372a2
GKH
183 * into the active list so they can be retried by the workqueue
184 */
d1c3414c 185 mutex_lock(&deferred_probe_mutex);
58b116bc 186 atomic_inc(&deferred_trigger_count);
d1c3414c
GL
187 list_splice_tail_init(&deferred_probe_pending_list,
188 &deferred_probe_active_list);
189 mutex_unlock(&deferred_probe_mutex);
190
8b0372a2
GKH
191 /*
192 * Kick the re-probe thread. It may already be scheduled, but it is
193 * safe to kick it again.
194 */
e611f8cd 195 queue_work(system_unbound_wq, &deferred_probe_work);
d1c3414c
GL
196}
197
013c074f 198/**
dbf03d65 199 * device_block_probing() - Block/defer device's probes
013c074f
SG
200 *
201 * It will disable probing of devices and defer their probes instead.
202 */
203void device_block_probing(void)
204{
205 defer_all_probes = true;
206 /* sync with probes to avoid races. */
207 wait_for_device_probe();
208}
209
210/**
211 * device_unblock_probing() - Unblock/enable device's probes
212 *
213 * It will restore normal behavior and trigger re-probing of deferred
214 * devices.
215 */
216void device_unblock_probing(void)
217{
218 defer_all_probes = false;
219 driver_deferred_probe_trigger();
220}
221
d090b70e
AH
222/**
223 * device_set_deferred_probe_reason() - Set defer probe reason message for device
224 * @dev: the pointer to the struct device
225 * @vaf: the pointer to va_format structure with message
226 */
227void device_set_deferred_probe_reason(const struct device *dev, struct va_format *vaf)
228{
229 const char *drv = dev_driver_string(dev);
72a91f19 230 char *reason;
d090b70e
AH
231
232 mutex_lock(&deferred_probe_mutex);
233
72a91f19
AF
234 reason = kasprintf(GFP_KERNEL, "%s: %pV", drv, vaf);
235 __device_set_deferred_probe_reason(dev, reason);
d090b70e
AH
236
237 mutex_unlock(&deferred_probe_mutex);
238}
239
28af109a
JMC
240/*
241 * deferred_devs_show() - Show the devices in the deferred probe pending list.
242 */
243static int deferred_devs_show(struct seq_file *s, void *data)
244{
245 struct device_private *curr;
246
247 mutex_lock(&deferred_probe_mutex);
248
249 list_for_each_entry(curr, &deferred_probe_pending_list, deferred_probe)
d090b70e
AH
250 seq_printf(s, "%s\t%s", dev_name(curr->device),
251 curr->device->p->deferred_probe_reason ?: "\n");
28af109a
JMC
252
253 mutex_unlock(&deferred_probe_mutex);
254
255 return 0;
256}
257DEFINE_SHOW_ATTRIBUTE(deferred_devs);
258
f516d01b
SK
259#ifdef CONFIG_MODULES
260int driver_deferred_probe_timeout = 10;
261#else
ce68929f 262int driver_deferred_probe_timeout;
f516d01b
SK
263#endif
264
64c775fb
JS
265EXPORT_SYMBOL_GPL(driver_deferred_probe_timeout);
266
25b4e70d
RH
267static int __init deferred_probe_timeout_setup(char *str)
268{
63c98047
MS
269 int timeout;
270
271 if (!kstrtoint(str, 10, &timeout))
64c775fb 272 driver_deferred_probe_timeout = timeout;
25b4e70d
RH
273 return 1;
274}
275__setup("deferred_probe_timeout=", deferred_probe_timeout_setup);
276
13a8e0f6
SK
277/**
278 * driver_deferred_probe_check_state() - Check deferred probe state
279 * @dev: device to check
280 *
281 * Return:
282 * * -ENODEV if initcalls have completed and modules are disabled.
283 * * -ETIMEDOUT if the deferred probe timeout was set and has expired
284 * and modules are enabled.
285 * * -EPROBE_DEFER in other cases.
286 *
287 * Drivers or subsystems can opt-in to calling this function instead of directly
288 * returning -EPROBE_DEFER.
289 */
290int driver_deferred_probe_check_state(struct device *dev)
291{
292 if (!IS_ENABLED(CONFIG_MODULES) && initcalls_done) {
293 dev_warn(dev, "ignoring dependency for device, assuming no driver\n");
294 return -ENODEV;
295 }
296
297 if (!driver_deferred_probe_timeout && initcalls_done) {
298 dev_warn(dev, "deferred probe timeout, ignoring dependency\n");
299 return -ETIMEDOUT;
300 }
301
302 return -EPROBE_DEFER;
303}
304EXPORT_SYMBOL_GPL(driver_deferred_probe_check_state);
305
25b4e70d
RH
306static void deferred_probe_timeout_work_func(struct work_struct *work)
307{
eed6e418 308 struct device_private *p;
25b4e70d 309
d46f3e3e
SK
310 fw_devlink_drivers_done();
311
13a8e0f6 312 driver_deferred_probe_timeout = 0;
25b4e70d
RH
313 driver_deferred_probe_trigger();
314 flush_work(&deferred_probe_work);
315
eed6e418
SK
316 mutex_lock(&deferred_probe_mutex);
317 list_for_each_entry(p, &deferred_probe_pending_list, deferred_probe)
318 dev_info(p->device, "deferred probe pending\n");
319 mutex_unlock(&deferred_probe_mutex);
25b4e70d
RH
320}
321static DECLARE_DELAYED_WORK(deferred_probe_timeout_work, deferred_probe_timeout_work_func);
322
2b28a1a8
SK
323void deferred_probe_extend_timeout(void)
324{
325 /*
326 * If the work hasn't been queued yet or if the work expired, don't
327 * start a new one.
328 */
329 if (cancel_delayed_work(&deferred_probe_timeout_work)) {
330 schedule_delayed_work(&deferred_probe_timeout_work,
331 driver_deferred_probe_timeout * HZ);
332 pr_debug("Extended deferred probe timeout by %d secs\n",
333 driver_deferred_probe_timeout);
334 }
335}
336
d1c3414c
GL
337/**
338 * deferred_probe_initcall() - Enable probing of deferred devices
339 *
340 * We don't want to get in the way when the bulk of drivers are getting probed.
341 * Instead, this initcall makes sure that deferred probing is delayed until
342 * late_initcall time.
343 */
344static int deferred_probe_initcall(void)
345{
2942df67
GKH
346 debugfs_create_file("devices_deferred", 0444, NULL, NULL,
347 &deferred_devs_fops);
28af109a 348
d1c3414c
GL
349 driver_deferred_probe_enable = true;
350 driver_deferred_probe_trigger();
d72cca1e 351 /* Sort as many dependencies as possible before exiting initcalls */
2c507e46 352 flush_work(&deferred_probe_work);
25b4e70d
RH
353 initcalls_done = true;
354
d46f3e3e
SK
355 if (!IS_ENABLED(CONFIG_MODULES))
356 fw_devlink_drivers_done();
357
25b4e70d
RH
358 /*
359 * Trigger deferred probe again, this time we won't defer anything
360 * that is optional
361 */
362 driver_deferred_probe_trigger();
363 flush_work(&deferred_probe_work);
364
64c775fb 365 if (driver_deferred_probe_timeout > 0) {
25b4e70d 366 schedule_delayed_work(&deferred_probe_timeout_work,
64c775fb 367 driver_deferred_probe_timeout * HZ);
25b4e70d 368 }
d1c3414c
GL
369 return 0;
370}
371late_initcall(deferred_probe_initcall);
07e4a3e2 372
28af109a
JMC
373static void __exit deferred_probe_exit(void)
374{
2942df67 375 debugfs_remove_recursive(debugfs_lookup("devices_deferred", NULL));
28af109a
JMC
376}
377__exitcall(deferred_probe_exit);
378
6b9cb427
TV
379/**
380 * device_is_bound() - Check if device is bound to a driver
381 * @dev: device to check
382 *
383 * Returns true if passed device has already finished probing successfully
384 * against a driver.
385 *
386 * This function must be called with the device lock held.
387 */
388bool device_is_bound(struct device *dev)
389{
3ded9104 390 return dev->p && klist_node_attached(&dev->p->knode_driver);
6b9cb427
TV
391}
392
1901fb26 393static void driver_bound(struct device *dev)
07e4a3e2 394{
6b9cb427 395 if (device_is_bound(dev)) {
eb7fbc9f 396 pr_warn("%s: device %s already bound\n",
2b3a302a 397 __func__, kobject_name(&dev->kobj));
1901fb26 398 return;
f86db396 399 }
4c898c7f 400
94f8cc0e
FR
401 pr_debug("driver: '%s': %s: bound to device '%s'\n", dev->driver->name,
402 __func__, dev_name(dev));
116af378 403
fbb88fad 404 klist_add_tail(&dev->p->knode_driver, &dev->driver->p->klist_devices);
9ed98953 405 device_links_driver_bound(dev);
fbb88fad 406
aa8e54b5
TV
407 device_pm_check_callbacks(dev);
408
8b0372a2
GKH
409 /*
410 * Make sure the device is no longer in one of the deferred lists and
411 * kick off retrying all pending devices
412 */
d1c3414c
GL
413 driver_deferred_probe_del(dev);
414 driver_deferred_probe_trigger();
415
116af378 416 if (dev->bus)
c6f7e72a 417 blocking_notifier_call_chain(&dev->bus->p->bus_notifier,
116af378 418 BUS_NOTIFY_BOUND_DRIVER, dev);
1455cf8d
DT
419
420 kobject_uevent(&dev->kobj, KOBJ_BIND);
1901fb26
KS
421}
422
3c47d19f
AS
423static ssize_t coredump_store(struct device *dev, struct device_attribute *attr,
424 const char *buf, size_t count)
425{
426 device_lock(dev);
1fe56e0c 427 dev->driver->coredump(dev);
3c47d19f
AS
428 device_unlock(dev);
429
430 return count;
431}
432static DEVICE_ATTR_WO(coredump);
433
1901fb26
KS
434static int driver_sysfs_add(struct device *dev)
435{
436 int ret;
437
45daef0f
MD
438 if (dev->bus)
439 blocking_notifier_call_chain(&dev->bus->p->bus_notifier,
440 BUS_NOTIFY_BIND_DRIVER, dev);
441
e5dd1278 442 ret = sysfs_create_link(&dev->driver->p->kobj, &dev->kobj,
3c47d19f
AS
443 kobject_name(&dev->kobj));
444 if (ret)
445 goto fail;
446
447 ret = sysfs_create_link(&dev->kobj, &dev->driver->p->kobj,
448 "driver");
449 if (ret)
450 goto rm_dev;
451
d225ef6f
JJB
452 if (!IS_ENABLED(CONFIG_DEV_COREDUMP) || !dev->driver->coredump)
453 return 0;
454
455 ret = device_create_file(dev, &dev_attr_coredump);
456 if (!ret)
3c47d19f
AS
457 return 0;
458
459 sysfs_remove_link(&dev->kobj, "driver");
460
461rm_dev:
462 sysfs_remove_link(&dev->driver->p->kobj,
07e4a3e2 463 kobject_name(&dev->kobj));
3c47d19f
AS
464
465fail:
f86db396 466 return ret;
07e4a3e2 467}
468
1901fb26
KS
469static void driver_sysfs_remove(struct device *dev)
470{
471 struct device_driver *drv = dev->driver;
472
473 if (drv) {
3c47d19f
AS
474 if (drv->coredump)
475 device_remove_file(dev, &dev_attr_coredump);
e5dd1278 476 sysfs_remove_link(&drv->p->kobj, kobject_name(&dev->kobj));
1901fb26
KS
477 sysfs_remove_link(&dev->kobj, "driver");
478 }
479}
480
481/**
4a3ad20c
GKH
482 * device_bind_driver - bind a driver to one device.
483 * @dev: device.
1901fb26 484 *
4a3ad20c
GKH
485 * Allow manual attachment of a driver to a device.
486 * Caller must have already set @dev->driver.
1901fb26 487 *
fe940d73
LW
488 * Note that this does not modify the bus reference count.
489 * Please verify that is accounted for before calling this.
490 * (It is ok to call with no other effort from a driver's probe() method.)
1901fb26 491 *
8e9394ce 492 * This function must be called with the device lock held.
0d9f837c
JG
493 *
494 * Callers should prefer to use device_driver_attach() instead.
1901fb26
KS
495 */
496int device_bind_driver(struct device *dev)
497{
cb986b74
CH
498 int ret;
499
500 ret = driver_sysfs_add(dev);
b6f617df
SK
501 if (!ret) {
502 device_links_force_bind(dev);
cb986b74 503 driver_bound(dev);
b6f617df 504 }
14b6257a
AS
505 else if (dev->bus)
506 blocking_notifier_call_chain(&dev->bus->p->bus_notifier,
507 BUS_NOTIFY_DRIVER_NOT_BOUND, dev);
cb986b74 508 return ret;
1901fb26 509}
4a3ad20c 510EXPORT_SYMBOL_GPL(device_bind_driver);
1901fb26 511
d779249e 512static atomic_t probe_count = ATOMIC_INIT(0);
735a7ffb
AM
513static DECLARE_WAIT_QUEUE_HEAD(probe_waitqueue);
514
8fd456ec
SK
515static ssize_t state_synced_show(struct device *dev,
516 struct device_attribute *attr, char *buf)
517{
518 bool val;
519
520 device_lock(dev);
521 val = dev->state_synced;
522 device_unlock(dev);
948b3edb 523
aa838896 524 return sysfs_emit(buf, "%u\n", val);
8fd456ec
SK
525}
526static DEVICE_ATTR_RO(state_synced);
527
9ad30721
RH
528static void device_unbind_cleanup(struct device *dev)
529{
530 devres_release_all(dev);
531 arch_teardown_dma_ops(dev);
532 kfree(dev->dma_range_map);
533 dev->dma_range_map = NULL;
534 dev->driver = NULL;
535 dev_set_drvdata(dev, NULL);
536 if (dev->pm_domain && dev->pm_domain->dismiss)
537 dev->pm_domain->dismiss(dev);
538 pm_runtime_reinit(dev);
539 dev_pm_set_driver_flags(dev, 0);
540}
e1499647 541
4b775aaf
RH
542static void device_remove(struct device *dev)
543{
544 device_remove_file(dev, &dev_attr_state_synced);
545 device_remove_groups(dev, dev->driver->dev_groups);
546
547 if (dev->bus && dev->bus->remove)
548 dev->bus->remove(dev);
549 else if (dev->driver->remove)
550 dev->driver->remove(dev);
551}
552
e1499647
CH
553static int call_driver_probe(struct device *dev, struct device_driver *drv)
554{
555 int ret = 0;
556
557 if (dev->bus->probe)
558 ret = dev->bus->probe(dev);
559 else if (drv->probe)
560 ret = drv->probe(dev);
561
562 switch (ret) {
563 case 0:
564 break;
565 case -EPROBE_DEFER:
566 /* Driver requested deferred probing */
567 dev_dbg(dev, "Driver %s requests probe deferral\n", drv->name);
568 break;
569 case -ENODEV:
570 case -ENXIO:
571 pr_debug("%s: probe of %s rejects match %d\n",
572 drv->name, dev_name(dev), ret);
573 break;
574 default:
575 /* driver matched but the probe failed */
576 pr_warn("%s: probe of %s failed with error %d\n",
577 drv->name, dev_name(dev), ret);
578 break;
579 }
580
581 return ret;
582}
583
21c7f30b 584static int really_probe(struct device *dev, struct device_driver *drv)
07e4a3e2 585{
c5f06274
RH
586 bool test_remove = IS_ENABLED(CONFIG_DEBUG_TEST_DRIVER_REMOVE) &&
587 !drv->suppress_bind_attrs;
2f8c3ae8 588 int ret, link_ret;
07e4a3e2 589
013c074f
SG
590 if (defer_all_probes) {
591 /*
592 * Value of defer_all_probes can be set only by
dbf03d65 593 * device_block_probing() which, in turn, will call
013c074f
SG
594 * wait_for_device_probe() right after that to avoid any races.
595 */
596 dev_dbg(dev, "Driver %s force probe deferral\n", drv->name);
45ddcb42 597 return -EPROBE_DEFER;
013c074f
SG
598 }
599
2f8c3ae8
SK
600 link_ret = device_links_check_suppliers(dev);
601 if (link_ret == -EPROBE_DEFER)
602 return link_ret;
9ed98953 603
7dc72b28 604 pr_debug("bus: '%s': %s: probing driver %s with device %s\n",
1e0b2cf9 605 drv->bus->name, __func__, drv->name, dev_name(dev));
7c35e699
GU
606 if (!list_empty(&dev->devres_head)) {
607 dev_crit(dev, "Resources present before probing\n");
b292b50b
TH
608 ret = -EBUSY;
609 goto done;
7c35e699 610 }
07e4a3e2 611
bea5b158 612re_probe:
07e4a3e2 613 dev->driver = drv;
ab78029e
LW
614
615 /* If using pinctrl, bind pins now before probing */
616 ret = pinctrl_bind_pins(dev);
617 if (ret)
14b6257a 618 goto pinctrl_bind_failed;
ab78029e 619
ccf640f4
CH
620 if (dev->bus->dma_configure) {
621 ret = dev->bus->dma_configure(dev);
622 if (ret)
00eb74ea 623 goto pinctrl_bind_failed;
ccf640f4 624 }
09515ef5 625
f04948de
ZL
626 ret = driver_sysfs_add(dev);
627 if (ret) {
eb7fbc9f
CJ
628 pr_err("%s: driver_sysfs_add(%s) failed\n",
629 __func__, dev_name(dev));
885e5025 630 goto sysfs_failed;
1901fb26
KS
631 }
632
e90d5532
RW
633 if (dev->pm_domain && dev->pm_domain->activate) {
634 ret = dev->pm_domain->activate(dev);
635 if (ret)
636 goto probe_failed;
637 }
638
45ddcb42
CH
639 ret = call_driver_probe(dev, drv);
640 if (ret) {
2f8c3ae8
SK
641 /*
642 * If fw_devlink_best_effort is active (denoted by -EAGAIN), the
643 * device might actually probe properly once some of its missing
644 * suppliers have probed. So, treat this as if the driver
645 * returned -EPROBE_DEFER.
646 */
647 if (link_ret == -EAGAIN)
648 ret = -EPROBE_DEFER;
649
e1499647 650 /*
ef6dcbdd
CH
651 * Return probe errors as positive values so that the callers
652 * can distinguish them from other errors.
e1499647 653 */
45ddcb42 654 ret = -ret;
e1499647 655 goto probe_failed;
f86db396 656 }
1901fb26 657
f04948de
ZL
658 ret = device_add_groups(dev, drv->dev_groups);
659 if (ret) {
23b69044
DT
660 dev_err(dev, "device_add_groups() failed\n");
661 goto dev_groups_failed;
662 }
663
f04948de
ZL
664 if (dev_has_sync_state(dev)) {
665 ret = device_create_file(dev, &dev_attr_state_synced);
666 if (ret) {
667 dev_err(dev, "state_synced sysfs add failed\n");
668 goto dev_sysfs_state_synced_failed;
669 }
8fd456ec
SK
670 }
671
bea5b158
RH
672 if (test_remove) {
673 test_remove = false;
674
4b775aaf 675 device_remove(dev);
bea5b158 676 driver_sysfs_remove(dev);
9ad30721 677 device_unbind_cleanup(dev);
bea5b158
RH
678
679 goto re_probe;
680 }
681
ef0eebc0
DA
682 pinctrl_init_done(dev);
683
e90d5532
RW
684 if (dev->pm_domain && dev->pm_domain->sync)
685 dev->pm_domain->sync(dev);
686
1901fb26 687 driver_bound(dev);
7dc72b28 688 pr_debug("bus: '%s': %s: bound device %s to driver %s\n",
1e0b2cf9 689 drv->bus->name, __func__, dev_name(dev), drv->name);
d779249e 690 goto done;
0d3e5a2e 691
8fd456ec 692dev_sysfs_state_synced_failed:
23b69044 693dev_groups_failed:
4b775aaf 694 device_remove(dev);
d779249e 695probe_failed:
885e5025
LB
696 driver_sysfs_remove(dev);
697sysfs_failed:
14b6257a
AS
698 if (dev->bus)
699 blocking_notifier_call_chain(&dev->bus->p->bus_notifier,
700 BUS_NOTIFY_DRIVER_NOT_BOUND, dev);
25f3bcfc
LB
701 if (dev->bus && dev->bus->dma_cleanup)
702 dev->bus->dma_cleanup(dev);
14b6257a 703pinctrl_bind_failed:
9ed98953 704 device_links_no_driver(dev);
9ad30721 705 device_unbind_cleanup(dev);
d779249e 706done:
d779249e
GKH
707 return ret;
708}
709
0a50f61c
TP
710/*
711 * For initcall_debug, show the driver probe time.
712 */
713static int really_probe_debug(struct device *dev, struct device_driver *drv)
714{
e3aa745f 715 ktime_t calltime, rettime;
0a50f61c
TP
716 int ret;
717
718 calltime = ktime_get();
719 ret = really_probe(dev, drv);
720 rettime = ktime_get();
eb7fbc9f 721 pr_debug("probe of %s returned %d after %lld usecs\n",
e3aa745f 722 dev_name(dev), ret, ktime_us_delta(rettime, calltime));
0a50f61c
TP
723 return ret;
724}
725
d779249e
GKH
726/**
727 * driver_probe_done
728 * Determine if the probe sequence is finished or not.
729 *
730 * Should somehow figure out how to use a semaphore, not an atomic variable...
731 */
732int driver_probe_done(void)
733{
927f8287
AS
734 int local_probe_count = atomic_read(&probe_count);
735
736 pr_debug("%s: probe_count = %d\n", __func__, local_probe_count);
737 if (local_probe_count)
d779249e
GKH
738 return -EBUSY;
739 return 0;
740}
741
216773a7
AV
742/**
743 * wait_for_device_probe
744 * Wait for device probing to be completed.
216773a7 745 */
b23530eb 746void wait_for_device_probe(void)
216773a7 747{
013c074f 748 /* wait for the deferred probe workqueue to finish */
2c507e46 749 flush_work(&deferred_probe_work);
013c074f 750
216773a7 751 /* wait for the known devices to complete their probing */
b23530eb 752 wait_event(probe_waitqueue, atomic_read(&probe_count) == 0);
216773a7 753 async_synchronize_full();
216773a7 754}
d4d5291c 755EXPORT_SYMBOL_GPL(wait_for_device_probe);
216773a7 756
45ddcb42 757static int __driver_probe_device(struct device_driver *drv, struct device *dev)
d779249e 758{
d779249e
GKH
759 int ret = 0;
760
204db60c 761 if (dev->p->dead || !device_is_registered(dev))
f2eaae19 762 return -ENODEV;
204db60c
JG
763 if (dev->driver)
764 return -EBUSY;
d779249e 765
f2db85b6 766 dev->can_match = true;
7dc72b28 767 pr_debug("bus: '%s': %s: matched device %s with driver %s\n",
1e0b2cf9 768 drv->bus->name, __func__, dev_name(dev), drv->name);
d779249e 769
b06c0b2f 770 pm_runtime_get_suppliers(dev);
ddef08dd
RW
771 if (dev->parent)
772 pm_runtime_get_sync(dev->parent);
773
5e928f77 774 pm_runtime_barrier(dev);
0a50f61c
TP
775 if (initcall_debug)
776 ret = really_probe_debug(dev, drv);
777 else
778 ret = really_probe(dev, drv);
fa180eb4 779 pm_request_idle(dev);
d779249e 780
ddef08dd
RW
781 if (dev->parent)
782 pm_runtime_put(dev->parent);
783
b06c0b2f 784 pm_runtime_put_suppliers(dev);
0d3e5a2e 785 return ret;
07e4a3e2 786}
787
45ddcb42
CH
788/**
789 * driver_probe_device - attempt to bind device & driver together
790 * @drv: driver to bind a device to
791 * @dev: device to try to bind to the driver
792 *
793 * This function returns -ENODEV if the device is not registered, -EBUSY if it
794 * already has a driver, 0 if the device is bound successfully and a positive
795 * (inverted) error code for failures from the ->probe method.
796 *
797 * This function must be called with @dev lock held. When called for a
798 * USB interface, @dev->parent lock must be held as well.
799 *
800 * If the device has a parent, runtime-resume the parent before driver probing.
801 */
802static int driver_probe_device(struct device_driver *drv, struct device *dev)
803{
804 int trigger_count = atomic_read(&deferred_trigger_count);
805 int ret;
806
807 atomic_inc(&probe_count);
808 ret = __driver_probe_device(drv, dev);
809 if (ret == -EPROBE_DEFER || ret == EPROBE_DEFER) {
810 driver_deferred_probe_add(dev);
811
812 /*
813 * Did a trigger occur while probing? Need to re-trigger if yes
814 */
815 if (trigger_count != atomic_read(&deferred_trigger_count) &&
816 !defer_all_probes)
817 driver_deferred_probe_trigger();
818 }
819 atomic_dec(&probe_count);
820 wake_up_all(&probe_waitqueue);
821 return ret;
822}
823
1ea61b68
FT
824static inline bool cmdline_requested_async_probing(const char *drv_name)
825{
f79f662e
SK
826 bool async_drv;
827
828 async_drv = parse_option_str(async_probe_drv_names, drv_name);
829
830 return (async_probe_default != async_drv);
1ea61b68
FT
831}
832
833/* The option format is "driver_async_probe=drv_name1,drv_name2,..." */
834static int __init save_async_options(char *buf)
835{
836 if (strlen(buf) >= ASYNC_DRV_NAMES_MAX_LEN)
eb7fbc9f 837 pr_warn("Too long list of driver names for 'driver_async_probe'!\n");
1ea61b68 838
07b7b883 839 strscpy(async_probe_drv_names, buf, ASYNC_DRV_NAMES_MAX_LEN);
f79f662e
SK
840 async_probe_default = parse_option_str(async_probe_drv_names, "*");
841
f2aad547 842 return 1;
1ea61b68
FT
843}
844__setup("driver_async_probe=", save_async_options);
845
765230b5 846bool driver_allows_async_probing(struct device_driver *drv)
2287c322 847{
d173a137
LR
848 switch (drv->probe_type) {
849 case PROBE_PREFER_ASYNCHRONOUS:
f2411da7
LR
850 return true;
851
d173a137
LR
852 case PROBE_FORCE_SYNCHRONOUS:
853 return false;
854
855 default:
1ea61b68
FT
856 if (cmdline_requested_async_probing(drv->name))
857 return true;
858
80c6e146 859 if (module_requested_async_probing(drv->owner))
d173a137 860 return true;
f2411da7 861
d173a137
LR
862 return false;
863 }
765230b5
DT
864}
865
866struct device_attach_data {
867 struct device *dev;
868
869 /*
b4ae8c2f 870 * Indicates whether we are considering asynchronous probing or
765230b5
DT
871 * not. Only initial binding after device or driver registration
872 * (including deferral processing) may be done asynchronously, the
873 * rest is always synchronous, as we expect it is being done by
874 * request from userspace.
875 */
876 bool check_async;
877
878 /*
879 * Indicates if we are binding synchronous or asynchronous drivers.
880 * When asynchronous probing is enabled we'll execute 2 passes
881 * over drivers: first pass doing synchronous probing and second
882 * doing asynchronous probing (if synchronous did not succeed -
883 * most likely because there was no driver requiring synchronous
884 * probing - and we found asynchronous driver during first pass).
885 * The 2 passes are done because we can't shoot asynchronous
886 * probe for given device and driver from bus_for_each_drv() since
887 * driver pointer is not guaranteed to stay valid once
888 * bus_for_each_drv() iterates to the next driver on the bus.
889 */
890 bool want_async;
891
892 /*
893 * We'll set have_async to 'true' if, while scanning for matching
894 * driver, we'll encounter one that requests asynchronous probing.
895 */
896 bool have_async;
897};
898
899static int __device_attach_driver(struct device_driver *drv, void *_data)
900{
901 struct device_attach_data *data = _data;
902 struct device *dev = data->dev;
903 bool async_allowed;
656b8035 904 int ret;
765230b5 905
656b8035
TV
906 ret = driver_match_device(drv, dev);
907 if (ret == 0) {
908 /* no match */
49b420a1 909 return 0;
656b8035
TV
910 } else if (ret == -EPROBE_DEFER) {
911 dev_dbg(dev, "Device match requests probe deferral\n");
f2db85b6 912 dev->can_match = true;
656b8035 913 driver_deferred_probe_add(dev);
25e9fbf0
IM
914 /*
915 * Device can't match with a driver right now, so don't attempt
916 * to match or bind with other drivers on the bus.
917 */
918 return ret;
656b8035 919 } else if (ret < 0) {
eb7fbc9f 920 dev_dbg(dev, "Bus failed to match device: %d\n", ret);
656b8035
TV
921 return ret;
922 } /* ret > 0 means positive match */
49b420a1 923
765230b5
DT
924 async_allowed = driver_allows_async_probing(drv);
925
926 if (async_allowed)
927 data->have_async = true;
928
929 if (data->check_async && async_allowed != data->want_async)
930 return 0;
931
ef6dcbdd
CH
932 /*
933 * Ignore errors returned by ->probe so that the next driver can try
934 * its luck.
935 */
936 ret = driver_probe_device(drv, dev);
937 if (ret < 0)
938 return ret;
939 return ret == 0;
2287c322 940}
941
765230b5
DT
942static void __device_attach_async_helper(void *_dev, async_cookie_t cookie)
943{
944 struct device *dev = _dev;
945 struct device_attach_data data = {
946 .dev = dev,
947 .check_async = true,
948 .want_async = true,
949 };
950
951 device_lock(dev);
952
3451a495
AD
953 /*
954 * Check if device has already been removed or claimed. This may
955 * happen with driver loading, device discovery/registration,
956 * and deferred probe processing happens all at once with
957 * multiple threads.
958 */
959 if (dev->p->dead || dev->driver)
960 goto out_unlock;
961
ddef08dd
RW
962 if (dev->parent)
963 pm_runtime_get_sync(dev->parent);
964
765230b5
DT
965 bus_for_each_drv(dev->bus, NULL, &data, __device_attach_driver);
966 dev_dbg(dev, "async probe completed\n");
967
968 pm_request_idle(dev);
969
ddef08dd
RW
970 if (dev->parent)
971 pm_runtime_put(dev->parent);
3451a495 972out_unlock:
765230b5
DT
973 device_unlock(dev);
974
975 put_device(dev);
976}
977
802a87fd 978static int __device_attach(struct device *dev, bool allow_async)
07e4a3e2 979{
0d3e5a2e 980 int ret = 0;
b232b02b 981 bool async = false;
0d3e5a2e 982
8e9394ce 983 device_lock(dev);
65488832
LW
984 if (dev->p->dead) {
985 goto out_unlock;
986 } else if (dev->driver) {
6b9cb427 987 if (device_is_bound(dev)) {
8497d6a2
SO
988 ret = 1;
989 goto out_unlock;
990 }
f86db396
AM
991 ret = device_bind_driver(dev);
992 if (ret == 0)
993 ret = 1;
c6a46696
CH
994 else {
995 dev->driver = NULL;
996 ret = 0;
997 }
21c7f30b 998 } else {
765230b5
DT
999 struct device_attach_data data = {
1000 .dev = dev,
1001 .check_async = allow_async,
1002 .want_async = false,
1003 };
1004
ddef08dd
RW
1005 if (dev->parent)
1006 pm_runtime_get_sync(dev->parent);
1007
765230b5
DT
1008 ret = bus_for_each_drv(dev->bus, NULL, &data,
1009 __device_attach_driver);
1010 if (!ret && allow_async && data.have_async) {
1011 /*
1012 * If we could not find appropriate driver
1013 * synchronously and we are allowed to do
1014 * async probes and there are drivers that
1015 * want to probe asynchronously, we'll
1016 * try them.
1017 */
1018 dev_dbg(dev, "scheduling asynchronous probe\n");
1019 get_device(dev);
b232b02b 1020 async = true;
765230b5
DT
1021 } else {
1022 pm_request_idle(dev);
1023 }
ddef08dd
RW
1024
1025 if (dev->parent)
1026 pm_runtime_put(dev->parent);
21c7f30b 1027 }
8497d6a2 1028out_unlock:
8e9394ce 1029 device_unlock(dev);
b232b02b
ZW
1030 if (async)
1031 async_schedule_dev(__device_attach_async_helper, dev);
0d3e5a2e 1032 return ret;
2287c322 1033}
765230b5
DT
1034
1035/**
1036 * device_attach - try to attach device to a driver.
1037 * @dev: device.
1038 *
1039 * Walk the list of drivers that the bus has and call
1040 * driver_probe_device() for each pair. If a compatible
1041 * pair is found, break out and return.
1042 *
1043 * Returns 1 if the device was bound to a driver;
1044 * 0 if no matching driver was found;
1045 * -ENODEV if the device is not registered.
1046 *
1047 * When called for a USB interface, @dev->parent lock must be held.
1048 */
1049int device_attach(struct device *dev)
1050{
1051 return __device_attach(dev, false);
1052}
4a3ad20c 1053EXPORT_SYMBOL_GPL(device_attach);
2287c322 1054
765230b5
DT
1055void device_initial_probe(struct device *dev)
1056{
1057 __device_attach(dev, true);
1058}
1059
ed88747c
AD
1060/*
1061 * __device_driver_lock - acquire locks needed to manipulate dev->drv
1062 * @dev: Device we will update driver info for
1063 * @parent: Parent device. Needed if the bus requires parent lock
1064 *
1065 * This function will take the required locks for manipulating dev->drv.
1066 * Normally this will just be the @dev lock, but when called for a USB
1067 * interface, @parent lock will be held as well.
1068 */
1069static void __device_driver_lock(struct device *dev, struct device *parent)
1070{
1071 if (parent && dev->bus->need_parent_lock)
1072 device_lock(parent);
1073 device_lock(dev);
1074}
1075
1076/*
1077 * __device_driver_unlock - release locks needed to manipulate dev->drv
1078 * @dev: Device we will update driver info for
1079 * @parent: Parent device. Needed if the bus requires parent lock
1080 *
1081 * This function will release the required locks for manipulating dev->drv.
b4ae8c2f 1082 * Normally this will just be the @dev lock, but when called for a
ed88747c
AD
1083 * USB interface, @parent lock will be released as well.
1084 */
1085static void __device_driver_unlock(struct device *dev, struct device *parent)
1086{
1087 device_unlock(dev);
1088 if (parent && dev->bus->need_parent_lock)
1089 device_unlock(parent);
1090}
1091
1092/**
1093 * device_driver_attach - attach a specific driver to a specific device
1094 * @drv: Driver to attach
1095 * @dev: Device to attach it to
1096 *
1097 * Manually attach driver to a device. Will acquire both @dev lock and
ef6dcbdd 1098 * @dev->parent lock if needed. Returns 0 on success, -ERR on failure.
ed88747c
AD
1099 */
1100int device_driver_attach(struct device_driver *drv, struct device *dev)
1101{
204db60c 1102 int ret;
ed88747c
AD
1103
1104 __device_driver_lock(dev, dev->parent);
45ddcb42 1105 ret = __driver_probe_device(drv, dev);
ed88747c
AD
1106 __device_driver_unlock(dev, dev->parent);
1107
ef6dcbdd
CH
1108 /* also return probe errors as normal negative errnos */
1109 if (ret > 0)
1110 ret = -ret;
45ddcb42
CH
1111 if (ret == -EPROBE_DEFER)
1112 return -EAGAIN;
ed88747c
AD
1113 return ret;
1114}
0d9f837c 1115EXPORT_SYMBOL_GPL(device_driver_attach);
ed88747c 1116
ef0ff683
AD
1117static void __driver_attach_async_helper(void *_dev, async_cookie_t cookie)
1118{
1119 struct device *dev = _dev;
1120 struct device_driver *drv;
204db60c 1121 int ret;
ef0ff683
AD
1122
1123 __device_driver_lock(dev, dev->parent);
ef0ff683 1124 drv = dev->p->async_driver;
84e7c678 1125 dev->p->async_driver = NULL;
204db60c 1126 ret = driver_probe_device(drv, dev);
ef0ff683
AD
1127 __device_driver_unlock(dev, dev->parent);
1128
1129 dev_dbg(dev, "driver %s async attach completed: %d\n", drv->name, ret);
1130
1131 put_device(dev);
1132}
1133
4a3ad20c 1134static int __driver_attach(struct device *dev, void *data)
2287c322 1135{
4a3ad20c 1136 struct device_driver *drv = data;
70fe7583 1137 bool async = false;
656b8035 1138 int ret;
0d3e5a2e
PM
1139
1140 /*
1141 * Lock device and try to bind to it. We drop the error
1142 * here and always return 0, because we need to keep trying
1143 * to bind to devices and some drivers will return an error
1144 * simply if it didn't support the device.
1145 *
1146 * driver_probe_device() will spit a warning if there
1147 * is an error.
1148 */
1149
656b8035
TV
1150 ret = driver_match_device(drv, dev);
1151 if (ret == 0) {
1152 /* no match */
6cd49586 1153 return 0;
656b8035
TV
1154 } else if (ret == -EPROBE_DEFER) {
1155 dev_dbg(dev, "Device match requests probe deferral\n");
f2db85b6 1156 dev->can_match = true;
656b8035 1157 driver_deferred_probe_add(dev);
25e9fbf0
IM
1158 /*
1159 * Driver could not match with device, but may match with
1160 * another device on the bus.
1161 */
1162 return 0;
656b8035 1163 } else if (ret < 0) {
eb7fbc9f 1164 dev_dbg(dev, "Bus failed to match device: %d\n", ret);
656b8035
TV
1165 return ret;
1166 } /* ret > 0 means positive match */
6cd49586 1167
ef0ff683
AD
1168 if (driver_allows_async_probing(drv)) {
1169 /*
1170 * Instead of probing the device synchronously we will
1171 * probe it asynchronously to allow for more parallelism.
1172 *
1173 * We only take the device lock here in order to guarantee
1174 * that the dev->driver and async_driver fields are protected
1175 */
1176 dev_dbg(dev, "probing driver %s asynchronously\n", drv->name);
1177 device_lock(dev);
84e7c678 1178 if (!dev->driver && !dev->p->async_driver) {
ef0ff683
AD
1179 get_device(dev);
1180 dev->p->async_driver = drv;
70fe7583 1181 async = true;
ef0ff683
AD
1182 }
1183 device_unlock(dev);
70fe7583
ZW
1184 if (async)
1185 async_schedule_dev(__driver_attach_async_helper, dev);
ef0ff683
AD
1186 return 0;
1187 }
1188
ef6dcbdd
CH
1189 __device_driver_lock(dev, dev->parent);
1190 driver_probe_device(drv, dev);
1191 __device_driver_unlock(dev, dev->parent);
0d3e5a2e 1192
07e4a3e2 1193 return 0;
1194}
1195
1196/**
4a3ad20c
GKH
1197 * driver_attach - try to bind driver to devices.
1198 * @drv: driver.
07e4a3e2 1199 *
4a3ad20c
GKH
1200 * Walk the list of devices that the bus has on it and try to
1201 * match the driver with each one. If driver_probe_device()
1202 * returns 0 and the @dev->driver is set, we've found a
1203 * compatible pair.
07e4a3e2 1204 */
4a3ad20c 1205int driver_attach(struct device_driver *drv)
07e4a3e2 1206{
f86db396 1207 return bus_for_each_dev(drv->bus, NULL, drv, __driver_attach);
07e4a3e2 1208}
4a3ad20c 1209EXPORT_SYMBOL_GPL(driver_attach);
07e4a3e2 1210
ab71c6f0 1211/*
8e9394ce
GKH
1212 * __device_release_driver() must be called with @dev lock held.
1213 * When called for a USB interface, @dev->parent lock must be held as well.
07e4a3e2 1214 */
9ed98953 1215static void __device_release_driver(struct device *dev, struct device *parent)
07e4a3e2 1216{
4a3ad20c 1217 struct device_driver *drv;
07e4a3e2 1218
ef2c5174 1219 drv = dev->driver;
c95a6b05 1220 if (drv) {
9226c504
RW
1221 pm_runtime_get_sync(dev);
1222
9ed98953 1223 while (device_links_busy(dev)) {
ed88747c 1224 __device_driver_unlock(dev, parent);
9ed98953
RW
1225
1226 device_links_unbind_consumers(dev);
9ed98953 1227
ed88747c 1228 __device_driver_lock(dev, parent);
9ed98953
RW
1229 /*
1230 * A concurrent invocation of the same function might
1231 * have released the driver successfully while this one
1232 * was waiting, so check for that.
1233 */
9226c504
RW
1234 if (dev->driver != drv) {
1235 pm_runtime_put(dev);
9ed98953 1236 return;
9226c504 1237 }
9ed98953
RW
1238 }
1239
1901fb26 1240 driver_sysfs_remove(dev);
0d3e5a2e 1241
116af378 1242 if (dev->bus)
c6f7e72a 1243 blocking_notifier_call_chain(&dev->bus->p->bus_notifier,
116af378
BH
1244 BUS_NOTIFY_UNBIND_DRIVER,
1245 dev);
1246
baab52de 1247 pm_runtime_put_sync(dev);
e1866b33 1248
4b775aaf 1249 device_remove(dev);
9ed98953 1250
25f3bcfc
LB
1251 if (dev->bus && dev->bus->dma_cleanup)
1252 dev->bus->dma_cleanup(dev);
1253
9ed98953 1254 device_links_driver_cleanup(dev);
9ad30721 1255 device_unbind_cleanup(dev);
e90d5532 1256
8940b4f3 1257 klist_remove(&dev->p->knode_driver);
aa8e54b5 1258 device_pm_check_callbacks(dev);
309b7d60
JR
1259 if (dev->bus)
1260 blocking_notifier_call_chain(&dev->bus->p->bus_notifier,
1261 BUS_NOTIFY_UNBOUND_DRIVER,
1262 dev);
1455cf8d
DT
1263
1264 kobject_uevent(&dev->kobj, KOBJ_UNBIND);
0d3e5a2e 1265 }
07e4a3e2 1266}
1267
9ed98953
RW
1268void device_release_driver_internal(struct device *dev,
1269 struct device_driver *drv,
1270 struct device *parent)
4bdb3550 1271{
ed88747c 1272 __device_driver_lock(dev, parent);
4bdb3550 1273
4bdb3550 1274 if (!drv || drv == dev->driver)
9ed98953 1275 __device_release_driver(dev, parent);
4bdb3550 1276
ed88747c 1277 __device_driver_unlock(dev, parent);
4bdb3550
RW
1278}
1279
ab71c6f0 1280/**
4a3ad20c
GKH
1281 * device_release_driver - manually detach device from driver.
1282 * @dev: device.
ab71c6f0 1283 *
4a3ad20c 1284 * Manually detach device from driver.
8e9394ce 1285 * When called for a USB interface, @dev->parent lock must be held.
9ed98953
RW
1286 *
1287 * If this function is to be called with @dev->parent lock held, ensure that
1288 * the device's consumers are unbound in advance or that their locks can be
1289 * acquired under the @dev->parent lock.
ab71c6f0 1290 */
4a3ad20c 1291void device_release_driver(struct device *dev)
94e7b1c5 1292{
c95a6b05
AS
1293 /*
1294 * If anyone calls device_release_driver() recursively from
1295 * within their ->remove callback for the same device, they
1296 * will deadlock right here.
1297 */
4bdb3550 1298 device_release_driver_internal(dev, NULL, NULL);
94e7b1c5 1299}
4a3ad20c 1300EXPORT_SYMBOL_GPL(device_release_driver);
c95a6b05 1301
ed88747c
AD
1302/**
1303 * device_driver_detach - detach driver from a specific device
1304 * @dev: device to detach driver from
1305 *
1306 * Detach driver from device. Will acquire both @dev lock and @dev->parent
1307 * lock if needed.
1308 */
1309void device_driver_detach(struct device *dev)
1310{
1311 device_release_driver_internal(dev, NULL, dev->parent);
1312}
1313
07e4a3e2 1314/**
1315 * driver_detach - detach driver from all devices it controls.
1316 * @drv: driver.
1317 */
4a3ad20c 1318void driver_detach(struct device_driver *drv)
07e4a3e2 1319{
8940b4f3 1320 struct device_private *dev_prv;
4a3ad20c 1321 struct device *dev;
c95a6b05 1322
c37d721c
AD
1323 if (driver_allows_async_probing(drv))
1324 async_synchronize_full();
1325
c95a6b05 1326 for (;;) {
e5dd1278
GKH
1327 spin_lock(&drv->p->klist_devices.k_lock);
1328 if (list_empty(&drv->p->klist_devices.k_list)) {
1329 spin_unlock(&drv->p->klist_devices.k_lock);
c95a6b05
AS
1330 break;
1331 }
a3a87d66 1332 dev_prv = list_last_entry(&drv->p->klist_devices.k_list,
8940b4f3
GKH
1333 struct device_private,
1334 knode_driver.n_node);
1335 dev = dev_prv->device;
c95a6b05 1336 get_device(dev);
e5dd1278 1337 spin_unlock(&drv->p->klist_devices.k_lock);
4bdb3550 1338 device_release_driver_internal(dev, drv, dev->parent);
c95a6b05
AS
1339 put_device(dev);
1340 }
07e4a3e2 1341}