4 * Copyright (c) 2004 Evgeniy Polyakov <johnpol@2ka.mipt.ru>
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2 of the License, or
10 * (at your option) any later version.
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
17 * You should have received a copy of the GNU General Public License
18 * along with this program; if not, write to the Free Software
19 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
22 #include <linux/delay.h>
23 #include <linux/kernel.h>
24 #include <linux/module.h>
25 #include <linux/moduleparam.h>
26 #include <linux/list.h>
27 #include <linux/interrupt.h>
28 #include <linux/spinlock.h>
29 #include <linux/timer.h>
30 #include <linux/device.h>
31 #include <linux/slab.h>
32 #include <linux/sched.h>
33 #include <linux/kthread.h>
35 #include <asm/atomic.h>
40 #include "w1_family.h"
41 #include "w1_netlink.h"
43 MODULE_LICENSE("GPL");
44 MODULE_AUTHOR("Evgeniy Polyakov <johnpol@2ka.mipt.ru>");
45 MODULE_DESCRIPTION("Driver for 1-wire Dallas network protocol.");
47 static int w1_timeout
= 10;
48 static int w1_control_timeout
= 1;
49 int w1_max_slave_count
= 10;
50 int w1_max_slave_ttl
= 10;
52 module_param_named(timeout
, w1_timeout
, int, 0);
53 module_param_named(control_timeout
, w1_control_timeout
, int, 0);
54 module_param_named(max_slave_count
, w1_max_slave_count
, int, 0);
55 module_param_named(slave_ttl
, w1_max_slave_ttl
, int, 0);
57 DEFINE_MUTEX(w1_mlock
);
58 LIST_HEAD(w1_masters
);
60 static struct task_struct
*w1_control_thread
;
62 static int w1_master_match(struct device
*dev
, struct device_driver
*drv
)
67 static int w1_master_probe(struct device
*dev
)
72 static void w1_master_release(struct device
*dev
)
74 struct w1_master
*md
= dev_to_w1_master(dev
);
76 dev_dbg(dev
, "%s: Releasing %s.\n", __func__
, md
->name
);
77 memset(md
, 0, sizeof(struct w1_master
) + sizeof(struct w1_bus_master
));
81 static void w1_slave_release(struct device
*dev
)
83 struct w1_slave
*sl
= dev_to_w1_slave(dev
);
85 printk("%s: Releasing %s.\n", __func__
, sl
->name
);
87 while (atomic_read(&sl
->refcnt
)) {
88 printk("Waiting for %s to become free: refcnt=%d.\n",
89 sl
->name
, atomic_read(&sl
->refcnt
));
90 if (msleep_interruptible(1000))
91 flush_signals(current
);
94 w1_family_put(sl
->family
);
95 sl
->master
->slave_count
--;
97 complete(&sl
->released
);
100 static ssize_t
w1_slave_read_name(struct device
*dev
, struct device_attribute
*attr
, char *buf
)
102 struct w1_slave
*sl
= dev_to_w1_slave(dev
);
104 return sprintf(buf
, "%s\n", sl
->name
);
107 static ssize_t
w1_slave_read_id(struct kobject
*kobj
, char *buf
, loff_t off
, size_t count
)
109 struct w1_slave
*sl
= kobj_to_w1_slave(kobj
);
117 memcpy(buf
, (u8
*)&sl
->reg_num
, count
);
123 static struct device_attribute w1_slave_attr_name
=
124 __ATTR(name
, S_IRUGO
, w1_slave_read_name
, NULL
);
126 static struct bin_attribute w1_slave_attr_bin_id
= {
130 .owner
= THIS_MODULE
,
133 .read
= w1_slave_read_id
,
138 static ssize_t
w1_default_write(struct kobject
*kobj
, char *buf
, loff_t off
, size_t count
)
140 struct w1_slave
*sl
= kobj_to_w1_slave(kobj
);
142 mutex_lock(&sl
->master
->mutex
);
143 if (w1_reset_select_slave(sl
)) {
148 w1_write_block(sl
->master
, buf
, count
);
151 mutex_unlock(&sl
->master
->mutex
);
155 static ssize_t
w1_default_read(struct kobject
*kobj
, char *buf
, loff_t off
, size_t count
)
157 struct w1_slave
*sl
= kobj_to_w1_slave(kobj
);
159 mutex_lock(&sl
->master
->mutex
);
160 w1_read_block(sl
->master
, buf
, count
);
161 mutex_unlock(&sl
->master
->mutex
);
165 static struct bin_attribute w1_default_attr
= {
168 .mode
= S_IRUGO
| S_IWUSR
,
169 .owner
= THIS_MODULE
,
172 .read
= w1_default_read
,
173 .write
= w1_default_write
,
176 static int w1_default_add_slave(struct w1_slave
*sl
)
178 return sysfs_create_bin_file(&sl
->dev
.kobj
, &w1_default_attr
);
181 static void w1_default_remove_slave(struct w1_slave
*sl
)
183 sysfs_remove_bin_file(&sl
->dev
.kobj
, &w1_default_attr
);
186 static struct w1_family_ops w1_default_fops
= {
187 .add_slave
= w1_default_add_slave
,
188 .remove_slave
= w1_default_remove_slave
,
191 static struct w1_family w1_default_family
= {
192 .fops
= &w1_default_fops
,
195 static int w1_uevent(struct device
*dev
, char **envp
, int num_envp
, char *buffer
, int buffer_size
);
197 static struct bus_type w1_bus_type
= {
199 .match
= w1_master_match
,
203 struct device_driver w1_master_driver
= {
204 .name
= "w1_master_driver",
206 .probe
= w1_master_probe
,
209 struct device w1_master_device
= {
212 .bus_id
= "w1 bus master",
213 .driver
= &w1_master_driver
,
214 .release
= &w1_master_release
217 static struct device_driver w1_slave_driver
= {
218 .name
= "w1_slave_driver",
223 struct device w1_slave_device
= {
226 .bus_id
= "w1 bus slave",
227 .driver
= &w1_slave_driver
,
228 .release
= &w1_slave_release
232 static ssize_t
w1_master_attribute_show_name(struct device
*dev
, struct device_attribute
*attr
, char *buf
)
234 struct w1_master
*md
= dev_to_w1_master(dev
);
237 mutex_lock(&md
->mutex
);
238 count
= sprintf(buf
, "%s\n", md
->name
);
239 mutex_unlock(&md
->mutex
);
244 static ssize_t
w1_master_attribute_store_search(struct device
* dev
,
245 struct device_attribute
*attr
,
246 const char * buf
, size_t count
)
248 struct w1_master
*md
= dev_to_w1_master(dev
);
250 mutex_lock(&md
->mutex
);
251 md
->search_count
= simple_strtol(buf
, NULL
, 0);
252 mutex_unlock(&md
->mutex
);
257 static ssize_t
w1_master_attribute_show_search(struct device
*dev
,
258 struct device_attribute
*attr
,
261 struct w1_master
*md
= dev_to_w1_master(dev
);
264 mutex_lock(&md
->mutex
);
265 count
= sprintf(buf
, "%d\n", md
->search_count
);
266 mutex_unlock(&md
->mutex
);
271 static ssize_t
w1_master_attribute_show_pointer(struct device
*dev
, struct device_attribute
*attr
, char *buf
)
273 struct w1_master
*md
= dev_to_w1_master(dev
);
276 mutex_lock(&md
->mutex
);
277 count
= sprintf(buf
, "0x%p\n", md
->bus_master
);
278 mutex_unlock(&md
->mutex
);
282 static ssize_t
w1_master_attribute_show_timeout(struct device
*dev
, struct device_attribute
*attr
, char *buf
)
285 count
= sprintf(buf
, "%d\n", w1_timeout
);
289 static ssize_t
w1_master_attribute_show_max_slave_count(struct device
*dev
, struct device_attribute
*attr
, char *buf
)
291 struct w1_master
*md
= dev_to_w1_master(dev
);
294 mutex_lock(&md
->mutex
);
295 count
= sprintf(buf
, "%d\n", md
->max_slave_count
);
296 mutex_unlock(&md
->mutex
);
300 static ssize_t
w1_master_attribute_show_attempts(struct device
*dev
, struct device_attribute
*attr
, char *buf
)
302 struct w1_master
*md
= dev_to_w1_master(dev
);
305 mutex_lock(&md
->mutex
);
306 count
= sprintf(buf
, "%lu\n", md
->attempts
);
307 mutex_unlock(&md
->mutex
);
311 static ssize_t
w1_master_attribute_show_slave_count(struct device
*dev
, struct device_attribute
*attr
, char *buf
)
313 struct w1_master
*md
= dev_to_w1_master(dev
);
316 mutex_lock(&md
->mutex
);
317 count
= sprintf(buf
, "%d\n", md
->slave_count
);
318 mutex_unlock(&md
->mutex
);
322 static ssize_t
w1_master_attribute_show_slaves(struct device
*dev
, struct device_attribute
*attr
, char *buf
)
324 struct w1_master
*md
= dev_to_w1_master(dev
);
327 mutex_lock(&md
->mutex
);
329 if (md
->slave_count
== 0)
330 c
-= snprintf(buf
+ PAGE_SIZE
- c
, c
, "not found.\n");
332 struct list_head
*ent
, *n
;
335 list_for_each_safe(ent
, n
, &md
->slist
) {
336 sl
= list_entry(ent
, struct w1_slave
, w1_slave_entry
);
338 c
-= snprintf(buf
+ PAGE_SIZE
- c
, c
, "%s\n", sl
->name
);
342 mutex_unlock(&md
->mutex
);
344 return PAGE_SIZE
- c
;
347 #define W1_MASTER_ATTR_RO(_name, _mode) \
348 struct device_attribute w1_master_attribute_##_name = \
349 __ATTR(w1_master_##_name, _mode, \
350 w1_master_attribute_show_##_name, NULL)
352 #define W1_MASTER_ATTR_RW(_name, _mode) \
353 struct device_attribute w1_master_attribute_##_name = \
354 __ATTR(w1_master_##_name, _mode, \
355 w1_master_attribute_show_##_name, \
356 w1_master_attribute_store_##_name)
358 static W1_MASTER_ATTR_RO(name
, S_IRUGO
);
359 static W1_MASTER_ATTR_RO(slaves
, S_IRUGO
);
360 static W1_MASTER_ATTR_RO(slave_count
, S_IRUGO
);
361 static W1_MASTER_ATTR_RO(max_slave_count
, S_IRUGO
);
362 static W1_MASTER_ATTR_RO(attempts
, S_IRUGO
);
363 static W1_MASTER_ATTR_RO(timeout
, S_IRUGO
);
364 static W1_MASTER_ATTR_RO(pointer
, S_IRUGO
);
365 static W1_MASTER_ATTR_RW(search
, S_IRUGO
| S_IWUGO
);
367 static struct attribute
*w1_master_default_attrs
[] = {
368 &w1_master_attribute_name
.attr
,
369 &w1_master_attribute_slaves
.attr
,
370 &w1_master_attribute_slave_count
.attr
,
371 &w1_master_attribute_max_slave_count
.attr
,
372 &w1_master_attribute_attempts
.attr
,
373 &w1_master_attribute_timeout
.attr
,
374 &w1_master_attribute_pointer
.attr
,
375 &w1_master_attribute_search
.attr
,
379 static struct attribute_group w1_master_defattr_group
= {
380 .attrs
= w1_master_default_attrs
,
383 int w1_create_master_attributes(struct w1_master
*master
)
385 return sysfs_create_group(&master
->dev
.kobj
, &w1_master_defattr_group
);
388 static void w1_destroy_master_attributes(struct w1_master
*master
)
390 sysfs_remove_group(&master
->dev
.kobj
, &w1_master_defattr_group
);
393 #ifdef CONFIG_HOTPLUG
394 static int w1_uevent(struct device
*dev
, char **envp
, int num_envp
, char *buffer
, int buffer_size
)
396 struct w1_master
*md
= NULL
;
397 struct w1_slave
*sl
= NULL
;
398 char *event_owner
, *name
;
399 int err
, cur_index
=0, cur_len
=0;
401 if (dev
->driver
== &w1_master_driver
) {
402 md
= container_of(dev
, struct w1_master
, dev
);
403 event_owner
= "master";
405 } else if (dev
->driver
== &w1_slave_driver
) {
406 sl
= container_of(dev
, struct w1_slave
, dev
);
407 event_owner
= "slave";
410 dev_dbg(dev
, "Unknown event.\n");
414 dev_dbg(dev
, "Hotplug event for %s %s, bus_id=%s.\n", event_owner
, name
, dev
->bus_id
);
416 if (dev
->driver
!= &w1_slave_driver
|| !sl
)
419 err
= add_uevent_var(envp
, num_envp
, &cur_index
, buffer
, buffer_size
, &cur_len
, "W1_FID=%02X", sl
->reg_num
.family
);
423 err
= add_uevent_var(envp
, num_envp
, &cur_index
, buffer
, buffer_size
, &cur_len
, "W1_SLAVE_ID=%024LX", (u64
)sl
->reg_num
.id
);
430 static int w1_uevent(struct device
*dev
, char **envp
, int num_envp
, char *buffer
, int buffer_size
)
436 static int __w1_attach_slave_device(struct w1_slave
*sl
)
440 sl
->dev
.parent
= &sl
->master
->dev
;
441 sl
->dev
.driver
= &w1_slave_driver
;
442 sl
->dev
.bus
= &w1_bus_type
;
443 sl
->dev
.release
= &w1_slave_release
;
445 snprintf(&sl
->dev
.bus_id
[0], sizeof(sl
->dev
.bus_id
),
447 (unsigned int) sl
->reg_num
.family
,
448 (unsigned long long) sl
->reg_num
.id
);
449 snprintf(&sl
->name
[0], sizeof(sl
->name
),
451 (unsigned int) sl
->reg_num
.family
,
452 (unsigned long long) sl
->reg_num
.id
);
454 dev_dbg(&sl
->dev
, "%s: registering %s as %p.\n", __func__
, &sl
->dev
.bus_id
[0]);
456 err
= device_register(&sl
->dev
);
459 "Device registration [%s] failed. err=%d\n",
460 sl
->dev
.bus_id
, err
);
464 /* Create "name" entry */
465 err
= device_create_file(&sl
->dev
, &w1_slave_attr_name
);
468 "sysfs file creation for [%s] failed. err=%d\n",
469 sl
->dev
.bus_id
, err
);
473 /* Create "id" entry */
474 err
= sysfs_create_bin_file(&sl
->dev
.kobj
, &w1_slave_attr_bin_id
);
477 "sysfs file creation for [%s] failed. err=%d\n",
478 sl
->dev
.bus_id
, err
);
482 /* if the family driver needs to initialize something... */
483 if (sl
->family
->fops
&& sl
->family
->fops
->add_slave
&&
484 ((err
= sl
->family
->fops
->add_slave(sl
)) < 0)) {
486 "sysfs file creation for [%s] failed. err=%d\n",
487 sl
->dev
.bus_id
, err
);
491 list_add_tail(&sl
->w1_slave_entry
, &sl
->master
->slist
);
496 sysfs_remove_bin_file(&sl
->dev
.kobj
, &w1_slave_attr_bin_id
);
498 device_remove_file(&sl
->dev
, &w1_slave_attr_name
);
500 device_unregister(&sl
->dev
);
504 static int w1_attach_slave_device(struct w1_master
*dev
, struct w1_reg_num
*rn
)
509 struct w1_netlink_msg msg
;
511 sl
= kmalloc(sizeof(struct w1_slave
), GFP_KERNEL
);
514 "%s: failed to allocate new slave device.\n",
519 memset(sl
, 0, sizeof(*sl
));
521 sl
->owner
= THIS_MODULE
;
523 set_bit(W1_SLAVE_ACTIVE
, (long *)&sl
->flags
);
525 memset(&msg
, 0, sizeof(msg
));
526 memcpy(&sl
->reg_num
, rn
, sizeof(sl
->reg_num
));
527 atomic_set(&sl
->refcnt
, 0);
528 init_completion(&sl
->released
);
530 spin_lock(&w1_flock
);
531 f
= w1_family_registered(rn
->family
);
533 f
= &w1_default_family
;
534 dev_info(&dev
->dev
, "Family %x for %02x.%012llx.%02x is not registered.\n",
535 rn
->family
, rn
->family
,
536 (unsigned long long)rn
->id
, rn
->crc
);
539 spin_unlock(&w1_flock
);
544 err
= __w1_attach_slave_device(sl
);
546 dev_err(&dev
->dev
, "%s: Attaching %s failed.\n", __func__
,
548 w1_family_put(sl
->family
);
553 sl
->ttl
= dev
->slave_ttl
;
556 memcpy(msg
.id
.id
, rn
, sizeof(msg
.id
));
557 msg
.type
= W1_SLAVE_ADD
;
558 w1_netlink_send(dev
, &msg
);
563 static void w1_slave_detach(struct w1_slave
*sl
)
565 struct w1_netlink_msg msg
;
567 dev_dbg(&sl
->dev
, "%s: detaching %s [%p].\n", __func__
, sl
->name
, sl
);
569 list_del(&sl
->w1_slave_entry
);
571 if (sl
->family
->fops
&& sl
->family
->fops
->remove_slave
)
572 sl
->family
->fops
->remove_slave(sl
);
574 memset(&msg
, 0, sizeof(msg
));
575 memcpy(msg
.id
.id
, &sl
->reg_num
, sizeof(msg
.id
));
576 msg
.type
= W1_SLAVE_REMOVE
;
577 w1_netlink_send(sl
->master
, &msg
);
579 sysfs_remove_bin_file(&sl
->dev
.kobj
, &w1_slave_attr_bin_id
);
580 device_remove_file(&sl
->dev
, &w1_slave_attr_name
);
581 device_unregister(&sl
->dev
);
583 wait_for_completion(&sl
->released
);
587 static struct w1_master
*w1_search_master(void *data
)
589 struct w1_master
*dev
;
592 mutex_lock(&w1_mlock
);
593 list_for_each_entry(dev
, &w1_masters
, w1_master_entry
) {
594 if (dev
->bus_master
->data
== data
) {
596 atomic_inc(&dev
->refcnt
);
600 mutex_unlock(&w1_mlock
);
602 return (found
)?dev
:NULL
;
605 struct w1_master
*w1_search_master_id(u32 id
)
607 struct w1_master
*dev
;
610 mutex_lock(&w1_mlock
);
611 list_for_each_entry(dev
, &w1_masters
, w1_master_entry
) {
614 atomic_inc(&dev
->refcnt
);
618 mutex_unlock(&w1_mlock
);
620 return (found
)?dev
:NULL
;
623 struct w1_slave
*w1_search_slave(struct w1_reg_num
*id
)
625 struct w1_master
*dev
;
626 struct w1_slave
*sl
= NULL
;
629 mutex_lock(&w1_mlock
);
630 list_for_each_entry(dev
, &w1_masters
, w1_master_entry
) {
631 mutex_lock(&dev
->mutex
);
632 list_for_each_entry(sl
, &dev
->slist
, w1_slave_entry
) {
633 if (sl
->reg_num
.family
== id
->family
&&
634 sl
->reg_num
.id
== id
->id
&&
635 sl
->reg_num
.crc
== id
->crc
) {
637 atomic_inc(&dev
->refcnt
);
638 atomic_inc(&sl
->refcnt
);
642 mutex_unlock(&dev
->mutex
);
647 mutex_unlock(&w1_mlock
);
649 return (found
)?sl
:NULL
;
652 void w1_reconnect_slaves(struct w1_family
*f
)
654 struct w1_master
*dev
;
656 mutex_lock(&w1_mlock
);
657 list_for_each_entry(dev
, &w1_masters
, w1_master_entry
) {
658 dev_dbg(&dev
->dev
, "Reconnecting slaves in %s into new family %02x.\n",
660 set_bit(W1_MASTER_NEED_RECONNECT
, &dev
->flags
);
662 mutex_unlock(&w1_mlock
);
665 static void w1_slave_found(void *data
, u64 rn
)
669 struct list_head
*ent
;
670 struct w1_reg_num
*tmp
;
671 int family_found
= 0;
672 struct w1_master
*dev
;
673 u64 rn_le
= cpu_to_le64(rn
);
675 dev
= w1_search_master(data
);
677 printk(KERN_ERR
"Failed to find w1 master device for data %p, "
678 "it is impossible.\n", data
);
682 tmp
= (struct w1_reg_num
*) &rn
;
685 list_for_each(ent
, &dev
->slist
) {
687 sl
= list_entry(ent
, struct w1_slave
, w1_slave_entry
);
689 if (sl
->reg_num
.family
== tmp
->family
&&
690 sl
->reg_num
.id
== tmp
->id
&&
691 sl
->reg_num
.crc
== tmp
->crc
) {
692 set_bit(W1_SLAVE_ACTIVE
, (long *)&sl
->flags
);
694 } else if (sl
->reg_num
.family
== tmp
->family
) {
702 if (slave_count
== dev
->slave_count
&&
703 rn
&& ((rn
>> 56) & 0xff) == w1_calc_crc8((u8
*)&rn_le
, 7)) {
704 w1_attach_slave_device(dev
, tmp
);
707 atomic_dec(&dev
->refcnt
);
711 * Performs a ROM Search & registers any devices found.
712 * The 1-wire search is a simple binary tree search.
713 * For each bit of the address, we read two bits and write one bit.
714 * The bit written will put to sleep all devies that don't match that bit.
715 * When the two reads differ, the direction choice is obvious.
716 * When both bits are 0, we must choose a path to take.
717 * When we can scan all 64 bits without having to choose a path, we are done.
719 * See "Application note 187 1-wire search algorithm" at www.maxim-ic.com
721 * @dev The master device to search
722 * @cb Function to call when a device is found
724 void w1_search(struct w1_master
*dev
, u8 search_type
, w1_slave_found_callback cb
)
726 u64 last_rn
, rn
, tmp64
;
727 int i
, slave_count
= 0;
728 int last_zero
, last_device
;
729 int search_bit
, desc_bit
;
739 while ( !last_device
&& (slave_count
++ < dev
->max_slave_count
) ) {
744 * Reset bus and all 1-wire device state machines
745 * so they can respond to our requests.
747 * Return 0 - device(s) present, 1 - no devices present.
749 if (w1_reset_bus(dev
)) {
750 dev_dbg(&dev
->dev
, "No devices present on the wire.\n");
754 /* Start the search */
755 w1_write_8(dev
, search_type
);
756 for (i
= 0; i
< 64; ++i
) {
757 /* Determine the direction/search bit */
759 search_bit
= 1; /* took the 0 path last time, so take the 1 path */
760 else if (i
> desc_bit
)
761 search_bit
= 0; /* take the 0 path on the next branch */
763 search_bit
= ((last_rn
>> i
) & 0x1);
765 /** Read two bits and write one bit */
766 triplet_ret
= w1_triplet(dev
, search_bit
);
768 /* quit if no device responded */
769 if ( (triplet_ret
& 0x03) == 0x03 )
772 /* If both directions were valid, and we took the 0 path... */
773 if (triplet_ret
== 0)
776 /* extract the direction taken & update the device number */
777 tmp64
= (triplet_ret
>> 2);
781 if ( (triplet_ret
& 0x03) != 0x03 ) {
782 if ( (desc_bit
== last_zero
) || (last_zero
< 0))
784 desc_bit
= last_zero
;
785 cb(dev
->bus_master
->data
, rn
);
790 static int w1_control(void *data
)
792 struct w1_slave
*sl
, *sln
;
793 struct w1_master
*dev
, *n
;
794 int have_to_wait
= 0;
796 while (!kthread_should_stop() || have_to_wait
) {
800 msleep_interruptible(w1_control_timeout
* 1000);
802 list_for_each_entry_safe(dev
, n
, &w1_masters
, w1_master_entry
) {
803 if (!kthread_should_stop() && !dev
->flags
)
806 * Little race: we can create thread but not set the flag.
807 * Get a chance for external process to set flag up.
809 if (!dev
->initialized
) {
814 if (kthread_should_stop() || test_bit(W1_MASTER_NEED_EXIT
, &dev
->flags
)) {
815 set_bit(W1_MASTER_NEED_EXIT
, &dev
->flags
);
817 mutex_lock(&w1_mlock
);
818 list_del(&dev
->w1_master_entry
);
819 mutex_unlock(&w1_mlock
);
821 mutex_lock(&dev
->mutex
);
822 list_for_each_entry_safe(sl
, sln
, &dev
->slist
, w1_slave_entry
) {
825 w1_destroy_master_attributes(dev
);
826 mutex_unlock(&dev
->mutex
);
827 atomic_dec(&dev
->refcnt
);
831 if (test_bit(W1_MASTER_NEED_RECONNECT
, &dev
->flags
)) {
832 dev_dbg(&dev
->dev
, "Reconnecting slaves in device %s.\n", dev
->name
);
833 mutex_lock(&dev
->mutex
);
834 list_for_each_entry_safe(sl
, sln
, &dev
->slist
, w1_slave_entry
) {
835 if (sl
->family
->fid
== W1_FAMILY_DEFAULT
) {
836 struct w1_reg_num rn
;
838 memcpy(&rn
, &sl
->reg_num
, sizeof(rn
));
841 w1_attach_slave_device(dev
, &rn
);
844 dev_dbg(&dev
->dev
, "Reconnecting slaves in device %s has been finished.\n", dev
->name
);
845 clear_bit(W1_MASTER_NEED_RECONNECT
, &dev
->flags
);
846 mutex_unlock(&dev
->mutex
);
854 void w1_search_process(struct w1_master
*dev
, u8 search_type
)
856 struct w1_slave
*sl
, *sln
;
858 list_for_each_entry(sl
, &dev
->slist
, w1_slave_entry
)
859 clear_bit(W1_SLAVE_ACTIVE
, (long *)&sl
->flags
);
861 w1_search_devices(dev
, search_type
, w1_slave_found
);
863 list_for_each_entry_safe(sl
, sln
, &dev
->slist
, w1_slave_entry
) {
864 if (!test_bit(W1_SLAVE_ACTIVE
, (unsigned long *)&sl
->flags
) && !--sl
->ttl
) {
868 } else if (test_bit(W1_SLAVE_ACTIVE
, (unsigned long *)&sl
->flags
))
869 sl
->ttl
= dev
->slave_ttl
;
872 if (dev
->search_count
> 0)
876 int w1_process(void *data
)
878 struct w1_master
*dev
= (struct w1_master
*) data
;
880 while (!kthread_should_stop() && !test_bit(W1_MASTER_NEED_EXIT
, &dev
->flags
)) {
882 msleep_interruptible(w1_timeout
* 1000);
884 if (kthread_should_stop() || test_bit(W1_MASTER_NEED_EXIT
, &dev
->flags
))
887 if (!dev
->initialized
)
890 if (dev
->search_count
== 0)
893 mutex_lock(&dev
->mutex
);
894 w1_search_process(dev
, W1_SEARCH
);
895 mutex_unlock(&dev
->mutex
);
898 atomic_dec(&dev
->refcnt
);
903 static int w1_init(void)
907 printk(KERN_INFO
"Driver for 1-wire Dallas network protocol.\n");
911 retval
= bus_register(&w1_bus_type
);
913 printk(KERN_ERR
"Failed to register bus. err=%d.\n", retval
);
914 goto err_out_exit_init
;
917 retval
= driver_register(&w1_master_driver
);
920 "Failed to register master driver. err=%d.\n",
922 goto err_out_bus_unregister
;
925 retval
= driver_register(&w1_slave_driver
);
928 "Failed to register master driver. err=%d.\n",
930 goto err_out_master_unregister
;
933 w1_control_thread
= kthread_run(w1_control
, NULL
, "w1_control");
934 if (IS_ERR(w1_control_thread
)) {
935 retval
= PTR_ERR(w1_control_thread
);
936 printk(KERN_ERR
"Failed to create control thread. err=%d\n",
938 goto err_out_slave_unregister
;
943 err_out_slave_unregister
:
944 driver_unregister(&w1_slave_driver
);
946 err_out_master_unregister
:
947 driver_unregister(&w1_master_driver
);
949 err_out_bus_unregister
:
950 bus_unregister(&w1_bus_type
);
956 static void w1_fini(void)
958 struct w1_master
*dev
;
960 list_for_each_entry(dev
, &w1_masters
, w1_master_entry
)
961 __w1_remove_master_device(dev
);
965 kthread_stop(w1_control_thread
);
967 driver_unregister(&w1_slave_driver
);
968 driver_unregister(&w1_master_driver
);
969 bus_unregister(&w1_bus_type
);
972 module_init(w1_init
);
973 module_exit(w1_fini
);