]> git.proxmox.com Git - mirror_ubuntu-hirsute-kernel.git/blame - drivers/w1/w1.c
Merge tag 'for-linus' of git://git.kernel.org/pub/scm/virt/kvm/kvm
[mirror_ubuntu-hirsute-kernel.git] / drivers / w1 / w1.c
CommitLineData
1da177e4 1/*
a8018766 2 * Copyright (c) 2004 Evgeniy Polyakov <zbr@ioremap.net>
7785925d 3 *
1da177e4
LT
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License as published by
6 * the Free Software Foundation; either version 2 of the License, or
7 * (at your option) any later version.
8 *
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
1da177e4
LT
13 */
14
15#include <linux/delay.h>
16#include <linux/kernel.h>
17#include <linux/module.h>
18#include <linux/moduleparam.h>
19#include <linux/list.h>
20#include <linux/interrupt.h>
21#include <linux/spinlock.h>
22#include <linux/timer.h>
23#include <linux/device.h>
24#include <linux/slab.h>
25#include <linux/sched.h>
674a396c 26#include <linux/kthread.h>
7dfb7103 27#include <linux/freezer.h>
2eb79548 28#include <linux/hwmon.h>
1da177e4 29
60063497 30#include <linux/atomic.h>
1da177e4 31
de0d6dbd 32#include "w1_internal.h"
1da177e4
LT
33#include "w1_netlink.h"
34
de0d6dbd
AD
35#define W1_FAMILY_DEFAULT 0
36
1da177e4 37static int w1_timeout = 10;
1da177e4 38module_param_named(timeout, w1_timeout, int, 0);
b3be177a 39MODULE_PARM_DESC(timeout, "time in seconds between automatic slave searches");
50fa2951
AD
40
41static int w1_timeout_us = 0;
c3098356 42module_param_named(timeout_us, w1_timeout_us, int, 0);
a46b195c
WY
43MODULE_PARM_DESC(timeout_us,
44 "time in microseconds between automatic slave searches");
50fa2951 45
b3be177a
DF
46/* A search stops when w1_max_slave_count devices have been found in that
47 * search. The next search will start over and detect the same set of devices
48 * on a static 1-wire bus. Memory is not allocated based on this number, just
49 * on the number of devices known to the kernel. Having a high number does not
50 * consume additional resources. As a special case, if there is only one
51 * device on the network and w1_max_slave_count is set to 1, the device id can
52 * be read directly skipping the normal slower search process.
53 */
50fa2951 54int w1_max_slave_count = 64;
1da177e4 55module_param_named(max_slave_count, w1_max_slave_count, int, 0);
b3be177a
DF
56MODULE_PARM_DESC(max_slave_count,
57 "maximum number of slaves detected in a search");
50fa2951
AD
58
59int w1_max_slave_ttl = 10;
1da177e4 60module_param_named(slave_ttl, w1_max_slave_ttl, int, 0);
b3be177a
DF
61MODULE_PARM_DESC(slave_ttl,
62 "Number of searches not seeing a slave before it will be removed");
1da177e4 63
abd52a13 64DEFINE_MUTEX(w1_mlock);
1da177e4
LT
65LIST_HEAD(w1_masters);
66
1da177e4
LT
67static int w1_master_match(struct device *dev, struct device_driver *drv)
68{
69 return 1;
70}
71
72static int w1_master_probe(struct device *dev)
73{
74 return -ENODEV;
75}
76
1da177e4
LT
77static void w1_master_release(struct device *dev)
78{
db2d0008 79 struct w1_master *md = dev_to_w1_master(dev);
3aca692d
EP
80
81 dev_dbg(dev, "%s: Releasing %s.\n", __func__, md->name);
3aca692d
EP
82 memset(md, 0, sizeof(struct w1_master) + sizeof(struct w1_bus_master));
83 kfree(md);
1da177e4
LT
84}
85
86static void w1_slave_release(struct device *dev)
87{
db2d0008 88 struct w1_slave *sl = dev_to_w1_slave(dev);
3aca692d 89
9fcbbac5 90 dev_dbg(dev, "%s: Releasing %s [%p]\n", __func__, sl->name, sl);
3aca692d
EP
91
92 w1_family_put(sl->family);
93 sl->master->slave_count--;
1da177e4
LT
94}
95
5b187b3c 96static ssize_t name_show(struct device *dev, struct device_attribute *attr, char *buf)
1da177e4 97{
3aca692d 98 struct w1_slave *sl = dev_to_w1_slave(dev);
d2a4ef6a 99
3aca692d 100 return sprintf(buf, "%s\n", sl->name);
1da177e4 101}
5b187b3c 102static DEVICE_ATTR_RO(name);
1da177e4 103
5b187b3c 104static ssize_t id_show(struct device *dev,
07e00341 105 struct device_attribute *attr, char *buf)
1da177e4 106{
07e00341
DF
107 struct w1_slave *sl = dev_to_w1_slave(dev);
108 ssize_t count = sizeof(sl->reg_num);
d2a4ef6a 109
07e00341 110 memcpy(buf, (u8 *)&sl->reg_num, count);
d2a4ef6a 111 return count;
3aca692d 112}
5b187b3c 113static DEVICE_ATTR_RO(id);
d2a4ef6a 114
5b187b3c
GKH
115static struct attribute *w1_slave_attrs[] = {
116 &dev_attr_name.attr,
117 &dev_attr_id.attr,
118 NULL,
119};
120ATTRIBUTE_GROUPS(w1_slave);
7785925d 121
d2a4ef6a 122/* Default family */
f522d239 123
36c27a65
GKH
124static ssize_t rw_write(struct file *filp, struct kobject *kobj,
125 struct bin_attribute *bin_attr, char *buf, loff_t off,
126 size_t count)
f522d239
EP
127{
128 struct w1_slave *sl = kobj_to_w1_slave(kobj);
129
abd52a13 130 mutex_lock(&sl->master->mutex);
f522d239
EP
131 if (w1_reset_select_slave(sl)) {
132 count = 0;
133 goto out_up;
134 }
135
136 w1_write_block(sl->master, buf, count);
137
138out_up:
abd52a13 139 mutex_unlock(&sl->master->mutex);
f522d239
EP
140 return count;
141}
142
36c27a65
GKH
143static ssize_t rw_read(struct file *filp, struct kobject *kobj,
144 struct bin_attribute *bin_attr, char *buf, loff_t off,
145 size_t count)
f522d239
EP
146{
147 struct w1_slave *sl = kobj_to_w1_slave(kobj);
148
abd52a13 149 mutex_lock(&sl->master->mutex);
f522d239 150 w1_read_block(sl->master, buf, count);
abd52a13 151 mutex_unlock(&sl->master->mutex);
f522d239
EP
152 return count;
153}
154
36c27a65
GKH
155static BIN_ATTR_RW(rw, PAGE_SIZE);
156
157static struct bin_attribute *w1_slave_bin_attrs[] = {
158 &bin_attr_rw,
159 NULL,
f522d239
EP
160};
161
36c27a65
GKH
162static const struct attribute_group w1_slave_default_group = {
163 .bin_attrs = w1_slave_bin_attrs,
164};
f522d239 165
36c27a65
GKH
166static const struct attribute_group *w1_slave_default_groups[] = {
167 &w1_slave_default_group,
168 NULL,
169};
f522d239
EP
170
171static struct w1_family_ops w1_default_fops = {
36c27a65 172 .groups = w1_slave_default_groups,
f522d239
EP
173};
174
175static struct w1_family w1_default_family = {
176 .fops = &w1_default_fops,
177};
d2a4ef6a 178
7eff2e7a 179static int w1_uevent(struct device *dev, struct kobj_uevent_env *env);
7785925d 180
1da177e4
LT
181static struct bus_type w1_bus_type = {
182 .name = "w1",
183 .match = w1_master_match,
312c004d 184 .uevent = w1_uevent,
1da177e4
LT
185};
186
7f772ed8
EP
187struct device_driver w1_master_driver = {
188 .name = "w1_master_driver",
1da177e4
LT
189 .bus = &w1_bus_type,
190 .probe = w1_master_probe,
1da177e4
LT
191};
192
7f772ed8 193struct device w1_master_device = {
1da177e4
LT
194 .parent = NULL,
195 .bus = &w1_bus_type,
40f91de6 196 .init_name = "w1 bus master",
7f772ed8 197 .driver = &w1_master_driver,
1da177e4
LT
198 .release = &w1_master_release
199};
200
2c5bfdac 201static struct device_driver w1_slave_driver = {
7f772ed8
EP
202 .name = "w1_slave_driver",
203 .bus = &w1_bus_type,
204};
205
2c5bfdac 206#if 0
7f772ed8
EP
207struct device w1_slave_device = {
208 .parent = NULL,
209 .bus = &w1_bus_type,
40f91de6 210 .init_name = "w1 bus slave",
7f772ed8 211 .driver = &w1_slave_driver,
3aca692d 212 .release = &w1_slave_release
7f772ed8 213};
2c5bfdac 214#endif /* 0 */
7f772ed8 215
060b8845 216static ssize_t w1_master_attribute_show_name(struct device *dev, struct device_attribute *attr, char *buf)
1da177e4 217{
db2d0008 218 struct w1_master *md = dev_to_w1_master(dev);
1da177e4 219 ssize_t count;
7785925d 220
abd52a13 221 mutex_lock(&md->mutex);
1da177e4 222 count = sprintf(buf, "%s\n", md->name);
abd52a13 223 mutex_unlock(&md->mutex);
1da177e4
LT
224
225 return count;
226}
227
2a9d0c17
EP
228static ssize_t w1_master_attribute_store_search(struct device * dev,
229 struct device_attribute *attr,
230 const char * buf, size_t count)
231{
6a158c0d 232 long tmp;
db2d0008 233 struct w1_master *md = dev_to_w1_master(dev);
bf4228f0 234 int ret;
2a9d0c17 235
bf4228f0
JH
236 ret = kstrtol(buf, 0, &tmp);
237 if (ret)
238 return ret;
6a158c0d 239
abd52a13 240 mutex_lock(&md->mutex);
6a158c0d 241 md->search_count = tmp;
abd52a13 242 mutex_unlock(&md->mutex);
af8c7237
DF
243 /* Only wake if it is going to be searching. */
244 if (tmp)
245 wake_up_process(md->thread);
2a9d0c17
EP
246
247 return count;
248}
249
250static ssize_t w1_master_attribute_show_search(struct device *dev,
251 struct device_attribute *attr,
252 char *buf)
253{
db2d0008 254 struct w1_master *md = dev_to_w1_master(dev);
2a9d0c17
EP
255 ssize_t count;
256
abd52a13 257 mutex_lock(&md->mutex);
2a9d0c17 258 count = sprintf(buf, "%d\n", md->search_count);
abd52a13 259 mutex_unlock(&md->mutex);
2a9d0c17
EP
260
261 return count;
262}
263
6a158c0d
DF
264static ssize_t w1_master_attribute_store_pullup(struct device *dev,
265 struct device_attribute *attr,
266 const char *buf, size_t count)
267{
268 long tmp;
269 struct w1_master *md = dev_to_w1_master(dev);
bf4228f0 270 int ret;
6a158c0d 271
bf4228f0
JH
272 ret = kstrtol(buf, 0, &tmp);
273 if (ret)
274 return ret;
6a158c0d
DF
275
276 mutex_lock(&md->mutex);
277 md->enable_pullup = tmp;
278 mutex_unlock(&md->mutex);
6a158c0d
DF
279
280 return count;
281}
282
283static ssize_t w1_master_attribute_show_pullup(struct device *dev,
284 struct device_attribute *attr,
285 char *buf)
286{
287 struct w1_master *md = dev_to_w1_master(dev);
288 ssize_t count;
289
290 mutex_lock(&md->mutex);
291 count = sprintf(buf, "%d\n", md->enable_pullup);
292 mutex_unlock(&md->mutex);
293
294 return count;
295}
296
060b8845 297static ssize_t w1_master_attribute_show_pointer(struct device *dev, struct device_attribute *attr, char *buf)
1da177e4 298{
db2d0008 299 struct w1_master *md = dev_to_w1_master(dev);
1da177e4 300 ssize_t count;
7785925d 301
abd52a13 302 mutex_lock(&md->mutex);
1da177e4 303 count = sprintf(buf, "0x%p\n", md->bus_master);
abd52a13 304 mutex_unlock(&md->mutex);
1da177e4
LT
305 return count;
306}
307
060b8845 308static ssize_t w1_master_attribute_show_timeout(struct device *dev, struct device_attribute *attr, char *buf)
1da177e4
LT
309{
310 ssize_t count;
311 count = sprintf(buf, "%d\n", w1_timeout);
312 return count;
313}
314
c3098356
DK
315static ssize_t w1_master_attribute_show_timeout_us(struct device *dev,
316 struct device_attribute *attr, char *buf)
317{
318 ssize_t count;
319 count = sprintf(buf, "%d\n", w1_timeout_us);
320 return count;
321}
322
a1613056
DF
323static ssize_t w1_master_attribute_store_max_slave_count(struct device *dev,
324 struct device_attribute *attr, const char *buf, size_t count)
325{
a7155f4e 326 int tmp;
a1613056
DF
327 struct w1_master *md = dev_to_w1_master(dev);
328
b9c11a23 329 if (kstrtoint(buf, 0, &tmp) || tmp < 1)
a1613056
DF
330 return -EINVAL;
331
332 mutex_lock(&md->mutex);
333 md->max_slave_count = tmp;
334 /* allow each time the max_slave_count is updated */
335 clear_bit(W1_WARN_MAX_COUNT, &md->flags);
336 mutex_unlock(&md->mutex);
337
338 return count;
339}
340
060b8845 341static ssize_t w1_master_attribute_show_max_slave_count(struct device *dev, struct device_attribute *attr, char *buf)
1da177e4 342{
db2d0008 343 struct w1_master *md = dev_to_w1_master(dev);
1da177e4 344 ssize_t count;
7785925d 345
abd52a13 346 mutex_lock(&md->mutex);
1da177e4 347 count = sprintf(buf, "%d\n", md->max_slave_count);
abd52a13 348 mutex_unlock(&md->mutex);
1da177e4
LT
349 return count;
350}
351
060b8845 352static ssize_t w1_master_attribute_show_attempts(struct device *dev, struct device_attribute *attr, char *buf)
1da177e4 353{
db2d0008 354 struct w1_master *md = dev_to_w1_master(dev);
1da177e4 355 ssize_t count;
7785925d 356
abd52a13 357 mutex_lock(&md->mutex);
1da177e4 358 count = sprintf(buf, "%lu\n", md->attempts);
abd52a13 359 mutex_unlock(&md->mutex);
1da177e4
LT
360 return count;
361}
362
060b8845 363static ssize_t w1_master_attribute_show_slave_count(struct device *dev, struct device_attribute *attr, char *buf)
1da177e4 364{
db2d0008 365 struct w1_master *md = dev_to_w1_master(dev);
1da177e4 366 ssize_t count;
7785925d 367
abd52a13 368 mutex_lock(&md->mutex);
1da177e4 369 count = sprintf(buf, "%d\n", md->slave_count);
abd52a13 370 mutex_unlock(&md->mutex);
1da177e4
LT
371 return count;
372}
373
9b467411
DF
374static ssize_t w1_master_attribute_show_slaves(struct device *dev,
375 struct device_attribute *attr, char *buf)
1da177e4 376{
db2d0008 377 struct w1_master *md = dev_to_w1_master(dev);
1da177e4 378 int c = PAGE_SIZE;
9fcbbac5
DF
379 struct list_head *ent, *n;
380 struct w1_slave *sl = NULL;
1da177e4 381
9fcbbac5 382 mutex_lock(&md->list_mutex);
1da177e4 383
9fcbbac5
DF
384 list_for_each_safe(ent, n, &md->slist) {
385 sl = list_entry(ent, struct w1_slave, w1_slave_entry);
1da177e4 386
9fcbbac5 387 c -= snprintf(buf + PAGE_SIZE - c, c, "%s\n", sl->name);
1da177e4 388 }
9fcbbac5
DF
389 if (!sl)
390 c -= snprintf(buf + PAGE_SIZE - c, c, "not found.\n");
1da177e4 391
9fcbbac5 392 mutex_unlock(&md->list_mutex);
1da177e4
LT
393
394 return PAGE_SIZE - c;
395}
396
9b467411
DF
397static ssize_t w1_master_attribute_show_add(struct device *dev,
398 struct device_attribute *attr, char *buf)
399{
400 int c = PAGE_SIZE;
401 c -= snprintf(buf+PAGE_SIZE - c, c,
402 "write device id xx-xxxxxxxxxxxx to add slave\n");
403 return PAGE_SIZE - c;
404}
405
406static int w1_atoreg_num(struct device *dev, const char *buf, size_t count,
407 struct w1_reg_num *rn)
408{
409 unsigned int family;
410 unsigned long long id;
411 int i;
412 u64 rn64_le;
413
414 /* The CRC value isn't read from the user because the sysfs directory
415 * doesn't include it and most messages from the bus search don't
416 * print it either. It would be unreasonable for the user to then
417 * provide it.
418 */
419 const char *error_msg = "bad slave string format, expecting "
420 "ff-dddddddddddd\n";
421
422 if (buf[2] != '-') {
423 dev_err(dev, "%s", error_msg);
424 return -EINVAL;
425 }
426 i = sscanf(buf, "%02x-%012llx", &family, &id);
427 if (i != 2) {
428 dev_err(dev, "%s", error_msg);
429 return -EINVAL;
430 }
431 rn->family = family;
432 rn->id = id;
433
434 rn64_le = cpu_to_le64(*(u64 *)rn);
435 rn->crc = w1_calc_crc8((u8 *)&rn64_le, 7);
436
437#if 0
438 dev_info(dev, "With CRC device is %02x.%012llx.%02x.\n",
439 rn->family, (unsigned long long)rn->id, rn->crc);
440#endif
441
442 return 0;
443}
444
445/* Searches the slaves in the w1_master and returns a pointer or NULL.
9fcbbac5 446 * Note: must not hold list_mutex
9b467411 447 */
70b34d2e 448struct w1_slave *w1_slave_search_device(struct w1_master *dev,
9b467411
DF
449 struct w1_reg_num *rn)
450{
451 struct w1_slave *sl;
9fcbbac5 452 mutex_lock(&dev->list_mutex);
9b467411
DF
453 list_for_each_entry(sl, &dev->slist, w1_slave_entry) {
454 if (sl->reg_num.family == rn->family &&
455 sl->reg_num.id == rn->id &&
456 sl->reg_num.crc == rn->crc) {
9fcbbac5 457 mutex_unlock(&dev->list_mutex);
9b467411
DF
458 return sl;
459 }
460 }
9fcbbac5 461 mutex_unlock(&dev->list_mutex);
9b467411
DF
462 return NULL;
463}
464
465static ssize_t w1_master_attribute_store_add(struct device *dev,
466 struct device_attribute *attr,
467 const char *buf, size_t count)
468{
469 struct w1_master *md = dev_to_w1_master(dev);
470 struct w1_reg_num rn;
471 struct w1_slave *sl;
472 ssize_t result = count;
473
474 if (w1_atoreg_num(dev, buf, count, &rn))
475 return -EINVAL;
476
477 mutex_lock(&md->mutex);
478 sl = w1_slave_search_device(md, &rn);
479 /* It would be nice to do a targeted search one the one-wire bus
480 * for the new device to see if it is out there or not. But the
481 * current search doesn't support that.
482 */
483 if (sl) {
484 dev_info(dev, "Device %s already exists\n", sl->name);
485 result = -EINVAL;
486 } else {
487 w1_attach_slave_device(md, &rn);
488 }
489 mutex_unlock(&md->mutex);
490
491 return result;
492}
493
494static ssize_t w1_master_attribute_show_remove(struct device *dev,
495 struct device_attribute *attr, char *buf)
496{
497 int c = PAGE_SIZE;
498 c -= snprintf(buf+PAGE_SIZE - c, c,
499 "write device id xx-xxxxxxxxxxxx to remove slave\n");
500 return PAGE_SIZE - c;
501}
502
503static ssize_t w1_master_attribute_store_remove(struct device *dev,
504 struct device_attribute *attr,
505 const char *buf, size_t count)
506{
507 struct w1_master *md = dev_to_w1_master(dev);
508 struct w1_reg_num rn;
509 struct w1_slave *sl;
510 ssize_t result = count;
511
512 if (w1_atoreg_num(dev, buf, count, &rn))
513 return -EINVAL;
514
515 mutex_lock(&md->mutex);
516 sl = w1_slave_search_device(md, &rn);
517 if (sl) {
9fcbbac5
DF
518 result = w1_slave_detach(sl);
519 /* refcnt 0 means it was detached in the call */
520 if (result == 0)
521 result = count;
9b467411
DF
522 } else {
523 dev_info(dev, "Device %02x-%012llx doesn't exists\n", rn.family,
524 (unsigned long long)rn.id);
525 result = -EINVAL;
526 }
527 mutex_unlock(&md->mutex);
528
529 return result;
530}
531
7785925d
EP
532#define W1_MASTER_ATTR_RO(_name, _mode) \
533 struct device_attribute w1_master_attribute_##_name = \
534 __ATTR(w1_master_##_name, _mode, \
535 w1_master_attribute_show_##_name, NULL)
536
2a9d0c17
EP
537#define W1_MASTER_ATTR_RW(_name, _mode) \
538 struct device_attribute w1_master_attribute_##_name = \
539 __ATTR(w1_master_##_name, _mode, \
540 w1_master_attribute_show_##_name, \
541 w1_master_attribute_store_##_name)
542
7785925d
EP
543static W1_MASTER_ATTR_RO(name, S_IRUGO);
544static W1_MASTER_ATTR_RO(slaves, S_IRUGO);
545static W1_MASTER_ATTR_RO(slave_count, S_IRUGO);
a1613056 546static W1_MASTER_ATTR_RW(max_slave_count, S_IRUGO | S_IWUSR | S_IWGRP);
7785925d
EP
547static W1_MASTER_ATTR_RO(attempts, S_IRUGO);
548static W1_MASTER_ATTR_RO(timeout, S_IRUGO);
c3098356 549static W1_MASTER_ATTR_RO(timeout_us, S_IRUGO);
7785925d 550static W1_MASTER_ATTR_RO(pointer, S_IRUGO);
12aa4c64
BS
551static W1_MASTER_ATTR_RW(search, S_IRUGO | S_IWUSR | S_IWGRP);
552static W1_MASTER_ATTR_RW(pullup, S_IRUGO | S_IWUSR | S_IWGRP);
553static W1_MASTER_ATTR_RW(add, S_IRUGO | S_IWUSR | S_IWGRP);
554static W1_MASTER_ATTR_RW(remove, S_IRUGO | S_IWUSR | S_IWGRP);
7785925d
EP
555
556static struct attribute *w1_master_default_attrs[] = {
557 &w1_master_attribute_name.attr,
558 &w1_master_attribute_slaves.attr,
559 &w1_master_attribute_slave_count.attr,
560 &w1_master_attribute_max_slave_count.attr,
561 &w1_master_attribute_attempts.attr,
562 &w1_master_attribute_timeout.attr,
c3098356 563 &w1_master_attribute_timeout_us.attr,
7785925d 564 &w1_master_attribute_pointer.attr,
2a9d0c17 565 &w1_master_attribute_search.attr,
6a158c0d 566 &w1_master_attribute_pullup.attr,
9b467411
DF
567 &w1_master_attribute_add.attr,
568 &w1_master_attribute_remove.attr,
7785925d 569 NULL
1da177e4
LT
570};
571
a890d56a 572static const struct attribute_group w1_master_defattr_group = {
7785925d 573 .attrs = w1_master_default_attrs,
1da177e4
LT
574};
575
7785925d
EP
576int w1_create_master_attributes(struct w1_master *master)
577{
578 return sysfs_create_group(&master->dev.kobj, &w1_master_defattr_group);
579}
580
c30c9b15 581void w1_destroy_master_attributes(struct w1_master *master)
7785925d
EP
582{
583 sysfs_remove_group(&master->dev.kobj, &w1_master_defattr_group);
584}
585
7eff2e7a 586static int w1_uevent(struct device *dev, struct kobj_uevent_env *env)
7f772ed8
EP
587{
588 struct w1_master *md = NULL;
589 struct w1_slave *sl = NULL;
590 char *event_owner, *name;
526be416 591 int err = 0;
7f772ed8
EP
592
593 if (dev->driver == &w1_master_driver) {
594 md = container_of(dev, struct w1_master, dev);
595 event_owner = "master";
596 name = md->name;
597 } else if (dev->driver == &w1_slave_driver) {
598 sl = container_of(dev, struct w1_slave, dev);
599 event_owner = "slave";
600 name = sl->name;
601 } else {
312c004d 602 dev_dbg(dev, "Unknown event.\n");
7f772ed8
EP
603 return -EINVAL;
604 }
605
c6976a4e 606 dev_dbg(dev, "Hotplug event for %s %s, bus_id=%s.\n",
40f91de6 607 event_owner, name, dev_name(dev));
7f772ed8
EP
608
609 if (dev->driver != &w1_slave_driver || !sl)
526be416 610 goto end;
7f772ed8 611
7eff2e7a 612 err = add_uevent_var(env, "W1_FID=%02X", sl->reg_num.family);
7f772ed8 613 if (err)
526be416 614 goto end;
7f772ed8 615
7eff2e7a
KS
616 err = add_uevent_var(env, "W1_SLAVE_ID=%024LX",
617 (unsigned long long)sl->reg_num.id);
526be416
DN
618end:
619 return err;
620}
7f772ed8 621
18d7f891 622static int w1_family_notify(unsigned long action, struct w1_slave *sl)
47eba33a 623{
36c27a65 624 struct w1_family_ops *fops;
47eba33a
GKH
625 int err;
626
36c27a65 627 fops = sl->family->fops;
47eba33a 628
2962aece
HFV
629 if (!fops)
630 return 0;
631
47eba33a
GKH
632 switch (action) {
633 case BUS_NOTIFY_ADD_DEVICE:
47eba33a 634 /* if the family driver needs to initialize something... */
36c27a65
GKH
635 if (fops->add_slave) {
636 err = fops->add_slave(sl);
637 if (err < 0) {
638 dev_err(&sl->dev,
639 "add_slave() call failed. err=%d\n",
640 err);
641 return err;
642 }
643 }
644 if (fops->groups) {
645 err = sysfs_create_groups(&sl->dev.kobj, fops->groups);
646 if (err) {
647 dev_err(&sl->dev,
648 "sysfs group creation failed. err=%d\n",
649 err);
650 return err;
651 }
47eba33a 652 }
2eb79548
JRN
653 if (IS_REACHABLE(CONFIG_HWMON) && fops->chip_info) {
654 struct device *hwmon
655 = hwmon_device_register_with_info(&sl->dev,
656 "w1_slave_temp", sl,
657 fops->chip_info,
658 NULL);
659 if (IS_ERR(hwmon)) {
660 dev_warn(&sl->dev,
661 "could not create hwmon device\n");
662 } else {
663 sl->hwmon = hwmon;
664 }
665 }
47eba33a
GKH
666 break;
667 case BUS_NOTIFY_DEL_DEVICE:
2eb79548
JRN
668 if (IS_REACHABLE(CONFIG_HWMON) && fops->chip_info &&
669 sl->hwmon)
670 hwmon_device_unregister(sl->hwmon);
36c27a65 671 if (fops->remove_slave)
47eba33a 672 sl->family->fops->remove_slave(sl);
36c27a65
GKH
673 if (fops->groups)
674 sysfs_remove_groups(&sl->dev.kobj, fops->groups);
47eba33a
GKH
675 break;
676 }
677 return 0;
678}
679
1da177e4
LT
680static int __w1_attach_slave_device(struct w1_slave *sl)
681{
682 int err;
683
684 sl->dev.parent = &sl->master->dev;
7f772ed8 685 sl->dev.driver = &w1_slave_driver;
1da177e4
LT
686 sl->dev.bus = &w1_bus_type;
687 sl->dev.release = &w1_slave_release;
5b187b3c 688 sl->dev.groups = w1_slave_groups;
1da177e4 689
40f91de6 690 dev_set_name(&sl->dev, "%02x-%012llx",
6b729861
EP
691 (unsigned int) sl->reg_num.family,
692 (unsigned long long) sl->reg_num.id);
693 snprintf(&sl->name[0], sizeof(sl->name),
694 "%02x-%012llx",
695 (unsigned int) sl->reg_num.family,
696 (unsigned long long) sl->reg_num.id);
1da177e4 697
c6976a4e 698 dev_dbg(&sl->dev, "%s: registering %s as %p.\n", __func__,
40f91de6 699 dev_name(&sl->dev), sl);
1da177e4 700
18d7f891
DF
701 /* suppress for w1_family_notify before sending KOBJ_ADD */
702 dev_set_uevent_suppress(&sl->dev, true);
703
1da177e4
LT
704 err = device_register(&sl->dev);
705 if (err < 0) {
706 dev_err(&sl->dev,
6b729861 707 "Device registration [%s] failed. err=%d\n",
40f91de6 708 dev_name(&sl->dev), err);
0ec4eb71 709 put_device(&sl->dev);
1da177e4
LT
710 return err;
711 }
18d7f891 712 w1_family_notify(BUS_NOTIFY_ADD_DEVICE, sl);
1da177e4 713
47eba33a
GKH
714 dev_set_uevent_suppress(&sl->dev, false);
715 kobject_uevent(&sl->dev.kobj, KOBJ_ADD);
1da177e4 716
9fcbbac5 717 mutex_lock(&sl->master->list_mutex);
1da177e4 718 list_add_tail(&sl->w1_slave_entry, &sl->master->slist);
9fcbbac5 719 mutex_unlock(&sl->master->list_mutex);
1da177e4
LT
720
721 return 0;
722}
723
70b34d2e 724int w1_attach_slave_device(struct w1_master *dev, struct w1_reg_num *rn)
1da177e4
LT
725{
726 struct w1_slave *sl;
727 struct w1_family *f;
728 int err;
729 struct w1_netlink_msg msg;
730
dd00cc48 731 sl = kzalloc(sizeof(struct w1_slave), GFP_KERNEL);
1da177e4
LT
732 if (!sl) {
733 dev_err(&dev->dev,
734 "%s: failed to allocate new slave device.\n",
735 __func__);
736 return -ENOMEM;
737 }
738
1da177e4
LT
739
740 sl->owner = THIS_MODULE;
741 sl->master = dev;
bb670937 742 set_bit(W1_SLAVE_ACTIVE, &sl->flags);
1da177e4 743
12003375 744 memset(&msg, 0, sizeof(msg));
1da177e4 745 memcpy(&sl->reg_num, rn, sizeof(sl->reg_num));
9fcbbac5
DF
746 atomic_set(&sl->refcnt, 1);
747 atomic_inc(&sl->master->refcnt);
2c927c0c 748 dev->slave_count++;
f6887531
AW
749 dev_info(&dev->dev, "Attaching one wire slave %02x.%012llx crc %02x\n",
750 rn->family, (unsigned long long)rn->id, rn->crc);
1da177e4 751
bc04d76d
HFV
752 /* slave modules need to be loaded in a context with unlocked mutex */
753 mutex_unlock(&dev->mutex);
4b7e4f82 754 request_module("w1-family-0x%02x", rn->family);
bc04d76d 755 mutex_lock(&dev->mutex);
8d7bda51 756
1da177e4
LT
757 spin_lock(&w1_flock);
758 f = w1_family_registered(rn->family);
759 if (!f) {
99c5bfe9 760 f= &w1_default_family;
1da177e4
LT
761 dev_info(&dev->dev, "Family %x for %02x.%012llx.%02x is not registered.\n",
762 rn->family, rn->family,
763 (unsigned long long)rn->id, rn->crc);
1da177e4
LT
764 }
765 __w1_family_get(f);
766 spin_unlock(&w1_flock);
767
768 sl->family = f;
769
1da177e4
LT
770 err = __w1_attach_slave_device(sl);
771 if (err < 0) {
772 dev_err(&dev->dev, "%s: Attaching %s failed.\n", __func__,
773 sl->name);
2c927c0c 774 dev->slave_count--;
1da177e4 775 w1_family_put(sl->family);
d2ce4ea1 776 atomic_dec(&sl->master->refcnt);
1da177e4
LT
777 kfree(sl);
778 return err;
779 }
780
781 sl->ttl = dev->slave_ttl;
1da177e4 782
12003375 783 memcpy(msg.id.id, rn, sizeof(msg.id));
1da177e4
LT
784 msg.type = W1_SLAVE_ADD;
785 w1_netlink_send(dev, &msg);
786
787 return 0;
788}
789
9fcbbac5 790int w1_unref_slave(struct w1_slave *sl)
1da177e4 791{
9fcbbac5
DF
792 struct w1_master *dev = sl->master;
793 int refcnt;
794 mutex_lock(&dev->list_mutex);
795 refcnt = atomic_sub_return(1, &sl->refcnt);
796 if (refcnt == 0) {
797 struct w1_netlink_msg msg;
798
799 dev_dbg(&sl->dev, "%s: detaching %s [%p].\n", __func__,
800 sl->name, sl);
801
802 list_del(&sl->w1_slave_entry);
803
804 memset(&msg, 0, sizeof(msg));
805 memcpy(msg.id.id, &sl->reg_num, sizeof(msg.id));
806 msg.type = W1_SLAVE_REMOVE;
807 w1_netlink_send(sl->master, &msg);
808
18d7f891 809 w1_family_notify(BUS_NOTIFY_DEL_DEVICE, sl);
9fcbbac5
DF
810 device_unregister(&sl->dev);
811 #ifdef DEBUG
812 memset(sl, 0, sizeof(*sl));
813 #endif
814 kfree(sl);
815 }
816 atomic_dec(&dev->refcnt);
817 mutex_unlock(&dev->list_mutex);
818 return refcnt;
819}
1da177e4 820
9fcbbac5
DF
821int w1_slave_detach(struct w1_slave *sl)
822{
823 /* Only detach a slave once as it decreases the refcnt each time. */
824 int destroy_now;
825 mutex_lock(&sl->master->list_mutex);
826 destroy_now = !test_bit(W1_SLAVE_DETACH, &sl->flags);
827 set_bit(W1_SLAVE_DETACH, &sl->flags);
828 mutex_unlock(&sl->master->list_mutex);
829
830 if (destroy_now)
831 destroy_now = !w1_unref_slave(sl);
832 return destroy_now ? 0 : -EBUSY;
1da177e4
LT
833}
834
12003375
EP
835struct w1_master *w1_search_master_id(u32 id)
836{
837 struct w1_master *dev;
838 int found = 0;
839
abd52a13 840 mutex_lock(&w1_mlock);
12003375
EP
841 list_for_each_entry(dev, &w1_masters, w1_master_entry) {
842 if (dev->id == id) {
843 found = 1;
844 atomic_inc(&dev->refcnt);
845 break;
846 }
847 }
abd52a13 848 mutex_unlock(&w1_mlock);
12003375
EP
849
850 return (found)?dev:NULL;
851}
852
853struct w1_slave *w1_search_slave(struct w1_reg_num *id)
854{
855 struct w1_master *dev;
856 struct w1_slave *sl = NULL;
857 int found = 0;
858
abd52a13 859 mutex_lock(&w1_mlock);
12003375 860 list_for_each_entry(dev, &w1_masters, w1_master_entry) {
9fcbbac5 861 mutex_lock(&dev->list_mutex);
12003375
EP
862 list_for_each_entry(sl, &dev->slist, w1_slave_entry) {
863 if (sl->reg_num.family == id->family &&
864 sl->reg_num.id == id->id &&
865 sl->reg_num.crc == id->crc) {
866 found = 1;
867 atomic_inc(&dev->refcnt);
868 atomic_inc(&sl->refcnt);
869 break;
870 }
871 }
9fcbbac5 872 mutex_unlock(&dev->list_mutex);
12003375
EP
873
874 if (found)
875 break;
876 }
abd52a13 877 mutex_unlock(&w1_mlock);
12003375
EP
878
879 return (found)?sl:NULL;
880}
881
c30c9b15 882void w1_reconnect_slaves(struct w1_family *f, int attach)
6adf87bd 883{
c30c9b15 884 struct w1_slave *sl, *sln;
6adf87bd
EP
885 struct w1_master *dev;
886
abd52a13 887 mutex_lock(&w1_mlock);
6adf87bd 888 list_for_each_entry(dev, &w1_masters, w1_master_entry) {
c30c9b15
DF
889 dev_dbg(&dev->dev, "Reconnecting slaves in device %s "
890 "for family %02x.\n", dev->name, f->fid);
891 mutex_lock(&dev->mutex);
9fcbbac5 892 mutex_lock(&dev->list_mutex);
c30c9b15
DF
893 list_for_each_entry_safe(sl, sln, &dev->slist, w1_slave_entry) {
894 /* If it is a new family, slaves with the default
895 * family driver and are that family will be
896 * connected. If the family is going away, devices
897 * matching that family are reconneced.
898 */
899 if ((attach && sl->family->fid == W1_FAMILY_DEFAULT
900 && sl->reg_num.family == f->fid) ||
901 (!attach && sl->family->fid == f->fid)) {
902 struct w1_reg_num rn;
903
9fcbbac5 904 mutex_unlock(&dev->list_mutex);
c30c9b15 905 memcpy(&rn, &sl->reg_num, sizeof(rn));
9fcbbac5
DF
906 /* If it was already in use let the automatic
907 * scan pick it up again later.
908 */
909 if (!w1_slave_detach(sl))
910 w1_attach_slave_device(dev, &rn);
911 mutex_lock(&dev->list_mutex);
c30c9b15
DF
912 }
913 }
914 dev_dbg(&dev->dev, "Reconnecting slaves in device %s "
915 "has been finished.\n", dev->name);
9fcbbac5 916 mutex_unlock(&dev->list_mutex);
c30c9b15 917 mutex_unlock(&dev->mutex);
6adf87bd 918 }
abd52a13 919 mutex_unlock(&w1_mlock);
6adf87bd
EP
920}
921
963bb101 922void w1_slave_found(struct w1_master *dev, u64 rn)
1da177e4 923{
1da177e4 924 struct w1_slave *sl;
1da177e4 925 struct w1_reg_num *tmp;
0e65f828 926 u64 rn_le = cpu_to_le64(rn);
1da177e4 927
c30c9b15 928 atomic_inc(&dev->refcnt);
7785925d 929
1da177e4
LT
930 tmp = (struct w1_reg_num *) &rn;
931
cd7b28d3
DF
932 sl = w1_slave_search_device(dev, tmp);
933 if (sl) {
bb670937 934 set_bit(W1_SLAVE_ACTIVE, &sl->flags);
cd7b28d3
DF
935 } else {
936 if (rn && tmp->crc == w1_calc_crc8((u8 *)&rn_le, 7))
937 w1_attach_slave_device(dev, tmp);
1da177e4 938 }
7785925d 939
1da177e4
LT
940 atomic_dec(&dev->refcnt);
941}
942
6b729861 943/**
b3be177a
DF
944 * w1_search() - Performs a ROM Search & registers any devices found.
945 * @dev: The master device to search
946 * @search_type: W1_SEARCH to search all devices, or W1_ALARM_SEARCH
947 * to return only devices in the alarmed state
948 * @cb: Function to call when a device is found
949 *
6b729861
EP
950 * The 1-wire search is a simple binary tree search.
951 * For each bit of the address, we read two bits and write one bit.
952 * The bit written will put to sleep all devies that don't match that bit.
953 * When the two reads differ, the direction choice is obvious.
954 * When both bits are 0, we must choose a path to take.
955 * When we can scan all 64 bits without having to choose a path, we are done.
956 *
957 * See "Application note 187 1-wire search algorithm" at www.maxim-ic.com
958 *
6b729861 959 */
12003375 960void w1_search(struct w1_master *dev, u8 search_type, w1_slave_found_callback cb)
1da177e4 961{
6b729861
EP
962 u64 last_rn, rn, tmp64;
963 int i, slave_count = 0;
964 int last_zero, last_device;
965 int search_bit, desc_bit;
966 u8 triplet_ret = 0;
1da177e4 967
6b729861 968 search_bit = 0;
3c6955e5
DF
969 rn = dev->search_id;
970 last_rn = 0;
6b729861
EP
971 last_device = 0;
972 last_zero = -1;
1da177e4
LT
973
974 desc_bit = 64;
975
6b729861
EP
976 while ( !last_device && (slave_count++ < dev->max_slave_count) ) {
977 last_rn = rn;
1da177e4
LT
978 rn = 0;
979
1da177e4
LT
980 /*
981 * Reset bus and all 1-wire device state machines
982 * so they can respond to our requests.
983 *
984 * Return 0 - device(s) present, 1 - no devices present.
985 */
b02f8bed 986 mutex_lock(&dev->bus_mutex);
1da177e4 987 if (w1_reset_bus(dev)) {
b02f8bed 988 mutex_unlock(&dev->bus_mutex);
2da5bf80 989 dev_dbg(&dev->dev, "No devices present on the wire.\n");
1da177e4
LT
990 break;
991 }
992
c9cbf558
EP
993 /* Do fast search on single slave bus */
994 if (dev->max_slave_count == 1) {
b02f8bed 995 int rv;
c9cbf558 996 w1_write_8(dev, W1_READ_ROM);
b02f8bed
N
997 rv = w1_read_block(dev, (u8 *)&rn, 8);
998 mutex_unlock(&dev->bus_mutex);
c9cbf558 999
b02f8bed 1000 if (rv == 8 && rn)
c9cbf558
EP
1001 cb(dev, rn);
1002
1003 break;
1004 }
1005
6b729861 1006 /* Start the search */
12003375 1007 w1_write_8(dev, search_type);
1da177e4 1008 for (i = 0; i < 64; ++i) {
6b729861
EP
1009 /* Determine the direction/search bit */
1010 if (i == desc_bit)
1011 search_bit = 1; /* took the 0 path last time, so take the 1 path */
1012 else if (i > desc_bit)
1013 search_bit = 0; /* take the 0 path on the next branch */
1da177e4 1014 else
6b729861 1015 search_bit = ((last_rn >> i) & 0x1);
1da177e4 1016
b3be177a 1017 /* Read two bits and write one bit */
6b729861
EP
1018 triplet_ret = w1_triplet(dev, search_bit);
1019
1020 /* quit if no device responded */
1021 if ( (triplet_ret & 0x03) == 0x03 )
1022 break;
1da177e4 1023
6b729861
EP
1024 /* If both directions were valid, and we took the 0 path... */
1025 if (triplet_ret == 0)
1026 last_zero = i;
1da177e4 1027
6b729861
EP
1028 /* extract the direction taken & update the device number */
1029 tmp64 = (triplet_ret >> 2);
1030 rn |= (tmp64 << i);
0d671b27 1031
42105698 1032 if (test_bit(W1_ABORT_SEARCH, &dev->flags)) {
b02f8bed 1033 mutex_unlock(&dev->bus_mutex);
7dc8f527 1034 dev_dbg(&dev->dev, "Abort w1_search\n");
0d671b27
DF
1035 return;
1036 }
6b729861 1037 }
b02f8bed 1038 mutex_unlock(&dev->bus_mutex);
7785925d 1039
6b729861 1040 if ( (triplet_ret & 0x03) != 0x03 ) {
3c6955e5 1041 if ((desc_bit == last_zero) || (last_zero < 0)) {
6b729861 1042 last_device = 1;
3c6955e5
DF
1043 dev->search_id = 0;
1044 } else {
1045 dev->search_id = rn;
1046 }
6b729861 1047 desc_bit = last_zero;
c30c9b15 1048 cb(dev, rn);
6b729861 1049 }
a1613056
DF
1050
1051 if (!last_device && slave_count == dev->max_slave_count &&
1052 !test_bit(W1_WARN_MAX_COUNT, &dev->flags)) {
3c6955e5
DF
1053 /* Only max_slave_count will be scanned in a search,
1054 * but it will start where it left off next search
1055 * until all ids are identified and then it will start
1056 * over. A continued search will report the previous
1057 * last id as the first id (provided it is still on the
1058 * bus).
1059 */
a1613056 1060 dev_info(&dev->dev, "%s: max_slave_count %d reached, "
3c6955e5 1061 "will continue next search.\n", __func__,
a1613056
DF
1062 dev->max_slave_count);
1063 set_bit(W1_WARN_MAX_COUNT, &dev->flags);
1064 }
1da177e4
LT
1065 }
1066}
1067
963bb101
DF
1068void w1_search_process_cb(struct w1_master *dev, u8 search_type,
1069 w1_slave_found_callback cb)
12003375
EP
1070{
1071 struct w1_slave *sl, *sln;
1072
9fcbbac5 1073 mutex_lock(&dev->list_mutex);
12003375 1074 list_for_each_entry(sl, &dev->slist, w1_slave_entry)
bb670937 1075 clear_bit(W1_SLAVE_ACTIVE, &sl->flags);
9fcbbac5 1076 mutex_unlock(&dev->list_mutex);
12003375 1077
963bb101 1078 w1_search_devices(dev, search_type, cb);
12003375 1079
9fcbbac5 1080 mutex_lock(&dev->list_mutex);
12003375 1081 list_for_each_entry_safe(sl, sln, &dev->slist, w1_slave_entry) {
9fcbbac5
DF
1082 if (!test_bit(W1_SLAVE_ACTIVE, &sl->flags) && !--sl->ttl) {
1083 mutex_unlock(&dev->list_mutex);
12003375 1084 w1_slave_detach(sl);
9fcbbac5
DF
1085 mutex_lock(&dev->list_mutex);
1086 }
bb670937 1087 else if (test_bit(W1_SLAVE_ACTIVE, &sl->flags))
12003375
EP
1088 sl->ttl = dev->slave_ttl;
1089 }
9fcbbac5 1090 mutex_unlock(&dev->list_mutex);
12003375
EP
1091
1092 if (dev->search_count > 0)
1093 dev->search_count--;
1094}
1095
963bb101
DF
1096static void w1_search_process(struct w1_master *dev, u8 search_type)
1097{
1098 w1_search_process_cb(dev, search_type, w1_slave_found);
1099}
1100
b3be177a
DF
1101/**
1102 * w1_process_callbacks() - execute each dev->async_list callback entry
1103 * @dev: w1_master device
1104 *
a0f10464
AK
1105 * The w1 master list_mutex must be held.
1106 *
b3be177a
DF
1107 * Return: 1 if there were commands to executed 0 otherwise
1108 */
9fcbbac5
DF
1109int w1_process_callbacks(struct w1_master *dev)
1110{
1111 int ret = 0;
1112 struct w1_async_cmd *async_cmd, *async_n;
1113
1114 /* The list can be added to in another thread, loop until it is empty */
1115 while (!list_empty(&dev->async_list)) {
1116 list_for_each_entry_safe(async_cmd, async_n, &dev->async_list,
1117 async_entry) {
1118 /* drop the lock, if it is a search it can take a long
1119 * time */
1120 mutex_unlock(&dev->list_mutex);
1121 async_cmd->cb(dev, async_cmd);
1122 ret = 1;
1123 mutex_lock(&dev->list_mutex);
1124 }
1125 }
1126 return ret;
1127}
1128
1da177e4
LT
1129int w1_process(void *data)
1130{
1131 struct w1_master *dev = (struct w1_master *) data;
3c52e4e6
DF
1132 /* As long as w1_timeout is only set by a module parameter the sleep
1133 * time can be calculated in jiffies once.
1134 */
c3098356
DK
1135 const unsigned long jtime =
1136 usecs_to_jiffies(w1_timeout * 1000000 + w1_timeout_us);
9fcbbac5
DF
1137 /* remainder if it woke up early */
1138 unsigned long jremain = 0;
1da177e4 1139
9fcbbac5
DF
1140 for (;;) {
1141
1142 if (!jremain && dev->search_count) {
01e14d6d
DF
1143 mutex_lock(&dev->mutex);
1144 w1_search_process(dev, W1_SEARCH);
1145 mutex_unlock(&dev->mutex);
1146 }
1147
9fcbbac5
DF
1148 mutex_lock(&dev->list_mutex);
1149 /* Note, w1_process_callback drops the lock while processing,
1150 * but locks it again before returning.
1151 */
1152 if (!w1_process_callbacks(dev) && jremain) {
1153 /* a wake up is either to stop the thread, process
1154 * callbacks, or search, it isn't process callbacks, so
1155 * schedule a search.
1156 */
1157 jremain = 1;
1158 }
1159
3c52e4e6
DF
1160 __set_current_state(TASK_INTERRUPTIBLE);
1161
9fcbbac5
DF
1162 /* hold list_mutex until after interruptible to prevent loosing
1163 * the wakeup signal when async_cmd is added.
1164 */
1165 mutex_unlock(&dev->list_mutex);
1166
3c52e4e6
DF
1167 if (kthread_should_stop())
1168 break;
1169
1170 /* Only sleep when the search is active. */
9fcbbac5
DF
1171 if (dev->search_count) {
1172 if (!jremain)
1173 jremain = jtime;
1174 jremain = schedule_timeout(jremain);
1175 }
3c52e4e6
DF
1176 else
1177 schedule();
1da177e4
LT
1178 }
1179
1180 atomic_dec(&dev->refcnt);
1da177e4
LT
1181
1182 return 0;
1183}
1184
73a98fce 1185static int __init w1_init(void)
1da177e4
LT
1186{
1187 int retval;
1188
fdc9167a 1189 pr_info("Driver for 1-wire Dallas network protocol.\n");
1da177e4 1190
12003375
EP
1191 w1_init_netlink();
1192
1da177e4
LT
1193 retval = bus_register(&w1_bus_type);
1194 if (retval) {
fdc9167a 1195 pr_err("Failed to register bus. err=%d.\n", retval);
1da177e4
LT
1196 goto err_out_exit_init;
1197 }
1198
7f772ed8 1199 retval = driver_register(&w1_master_driver);
1da177e4 1200 if (retval) {
fdc9167a 1201 pr_err("Failed to register master driver. err=%d.\n",
1da177e4
LT
1202 retval);
1203 goto err_out_bus_unregister;
1204 }
1205
7f772ed8
EP
1206 retval = driver_register(&w1_slave_driver);
1207 if (retval) {
fdc9167a 1208 pr_err("Failed to register slave driver. err=%d.\n",
7f772ed8
EP
1209 retval);
1210 goto err_out_master_unregister;
1211 }
1212
1da177e4
LT
1213 return 0;
1214
c30c9b15
DF
1215#if 0
1216/* For undoing the slave register if there was a step after it. */
7f772ed8
EP
1217err_out_slave_unregister:
1218 driver_unregister(&w1_slave_driver);
c30c9b15 1219#endif
7f772ed8
EP
1220
1221err_out_master_unregister:
1222 driver_unregister(&w1_master_driver);
1da177e4
LT
1223
1224err_out_bus_unregister:
1225 bus_unregister(&w1_bus_type);
1226
1227err_out_exit_init:
1228 return retval;
1229}
1230
73a98fce 1231static void __exit w1_fini(void)
1da177e4
LT
1232{
1233 struct w1_master *dev;
1da177e4 1234
c30c9b15 1235 /* Set netlink removal messages and some cleanup */
7785925d 1236 list_for_each_entry(dev, &w1_masters, w1_master_entry)
1da177e4 1237 __w1_remove_master_device(dev);
1da177e4 1238
12003375
EP
1239 w1_fini_netlink();
1240
7f772ed8
EP
1241 driver_unregister(&w1_slave_driver);
1242 driver_unregister(&w1_master_driver);
1da177e4
LT
1243 bus_unregister(&w1_bus_type);
1244}
1245
1246module_init(w1_init);
1247module_exit(w1_fini);
50fa2951
AD
1248
1249MODULE_AUTHOR("Evgeniy Polyakov <zbr@ioremap.net>");
1250MODULE_DESCRIPTION("Driver for 1-wire Dallas network protocol.");
1251MODULE_LICENSE("GPL");