xref: /openbmc/linux/drivers/scsi/scsi_sysfs.c (revision 711aab1d)
1 /*
2  * scsi_sysfs.c
3  *
4  * SCSI sysfs interface routines.
5  *
6  * Created to pull SCSI mid layer sysfs routines into one file.
7  */
8 
9 #include <linux/module.h>
10 #include <linux/slab.h>
11 #include <linux/init.h>
12 #include <linux/blkdev.h>
13 #include <linux/device.h>
14 #include <linux/pm_runtime.h>
15 
16 #include <scsi/scsi.h>
17 #include <scsi/scsi_device.h>
18 #include <scsi/scsi_host.h>
19 #include <scsi/scsi_tcq.h>
20 #include <scsi/scsi_dh.h>
21 #include <scsi/scsi_transport.h>
22 #include <scsi/scsi_driver.h>
23 
24 #include "scsi_priv.h"
25 #include "scsi_logging.h"
26 
27 static struct device_type scsi_dev_type;
28 
29 static const struct {
30 	enum scsi_device_state	value;
31 	char			*name;
32 } sdev_states[] = {
33 	{ SDEV_CREATED, "created" },
34 	{ SDEV_RUNNING, "running" },
35 	{ SDEV_CANCEL, "cancel" },
36 	{ SDEV_DEL, "deleted" },
37 	{ SDEV_QUIESCE, "quiesce" },
38 	{ SDEV_OFFLINE,	"offline" },
39 	{ SDEV_TRANSPORT_OFFLINE, "transport-offline" },
40 	{ SDEV_BLOCK,	"blocked" },
41 	{ SDEV_CREATED_BLOCK, "created-blocked" },
42 };
43 
44 const char *scsi_device_state_name(enum scsi_device_state state)
45 {
46 	int i;
47 	char *name = NULL;
48 
49 	for (i = 0; i < ARRAY_SIZE(sdev_states); i++) {
50 		if (sdev_states[i].value == state) {
51 			name = sdev_states[i].name;
52 			break;
53 		}
54 	}
55 	return name;
56 }
57 
58 static const struct {
59 	enum scsi_host_state	value;
60 	char			*name;
61 } shost_states[] = {
62 	{ SHOST_CREATED, "created" },
63 	{ SHOST_RUNNING, "running" },
64 	{ SHOST_CANCEL, "cancel" },
65 	{ SHOST_DEL, "deleted" },
66 	{ SHOST_RECOVERY, "recovery" },
67 	{ SHOST_CANCEL_RECOVERY, "cancel/recovery" },
68 	{ SHOST_DEL_RECOVERY, "deleted/recovery", },
69 };
70 const char *scsi_host_state_name(enum scsi_host_state state)
71 {
72 	int i;
73 	char *name = NULL;
74 
75 	for (i = 0; i < ARRAY_SIZE(shost_states); i++) {
76 		if (shost_states[i].value == state) {
77 			name = shost_states[i].name;
78 			break;
79 		}
80 	}
81 	return name;
82 }
83 
84 #ifdef CONFIG_SCSI_DH
85 static const struct {
86 	unsigned char	value;
87 	char		*name;
88 } sdev_access_states[] = {
89 	{ SCSI_ACCESS_STATE_OPTIMAL, "active/optimized" },
90 	{ SCSI_ACCESS_STATE_ACTIVE, "active/non-optimized" },
91 	{ SCSI_ACCESS_STATE_STANDBY, "standby" },
92 	{ SCSI_ACCESS_STATE_UNAVAILABLE, "unavailable" },
93 	{ SCSI_ACCESS_STATE_LBA, "lba-dependent" },
94 	{ SCSI_ACCESS_STATE_OFFLINE, "offline" },
95 	{ SCSI_ACCESS_STATE_TRANSITIONING, "transitioning" },
96 };
97 
98 static const char *scsi_access_state_name(unsigned char state)
99 {
100 	int i;
101 	char *name = NULL;
102 
103 	for (i = 0; i < ARRAY_SIZE(sdev_access_states); i++) {
104 		if (sdev_access_states[i].value == state) {
105 			name = sdev_access_states[i].name;
106 			break;
107 		}
108 	}
109 	return name;
110 }
111 #endif
112 
113 static int check_set(unsigned long long *val, char *src)
114 {
115 	char *last;
116 
117 	if (strcmp(src, "-") == 0) {
118 		*val = SCAN_WILD_CARD;
119 	} else {
120 		/*
121 		 * Doesn't check for int overflow
122 		 */
123 		*val = simple_strtoull(src, &last, 0);
124 		if (*last != '\0')
125 			return 1;
126 	}
127 	return 0;
128 }
129 
130 static int scsi_scan(struct Scsi_Host *shost, const char *str)
131 {
132 	char s1[15], s2[15], s3[17], junk;
133 	unsigned long long channel, id, lun;
134 	int res;
135 
136 	res = sscanf(str, "%10s %10s %16s %c", s1, s2, s3, &junk);
137 	if (res != 3)
138 		return -EINVAL;
139 	if (check_set(&channel, s1))
140 		return -EINVAL;
141 	if (check_set(&id, s2))
142 		return -EINVAL;
143 	if (check_set(&lun, s3))
144 		return -EINVAL;
145 	if (shost->transportt->user_scan)
146 		res = shost->transportt->user_scan(shost, channel, id, lun);
147 	else
148 		res = scsi_scan_host_selected(shost, channel, id, lun,
149 					      SCSI_SCAN_MANUAL);
150 	return res;
151 }
152 
153 /*
154  * shost_show_function: macro to create an attr function that can be used to
155  * show a non-bit field.
156  */
157 #define shost_show_function(name, field, format_string)			\
158 static ssize_t								\
159 show_##name (struct device *dev, struct device_attribute *attr, 	\
160 	     char *buf)							\
161 {									\
162 	struct Scsi_Host *shost = class_to_shost(dev);			\
163 	return snprintf (buf, 20, format_string, shost->field);		\
164 }
165 
166 /*
167  * shost_rd_attr: macro to create a function and attribute variable for a
168  * read only field.
169  */
170 #define shost_rd_attr2(name, field, format_string)			\
171 	shost_show_function(name, field, format_string)			\
172 static DEVICE_ATTR(name, S_IRUGO, show_##name, NULL);
173 
174 #define shost_rd_attr(field, format_string) \
175 shost_rd_attr2(field, field, format_string)
176 
177 /*
178  * Create the actual show/store functions and data structures.
179  */
180 
181 static ssize_t
182 store_scan(struct device *dev, struct device_attribute *attr,
183 	   const char *buf, size_t count)
184 {
185 	struct Scsi_Host *shost = class_to_shost(dev);
186 	int res;
187 
188 	res = scsi_scan(shost, buf);
189 	if (res == 0)
190 		res = count;
191 	return res;
192 };
193 static DEVICE_ATTR(scan, S_IWUSR, NULL, store_scan);
194 
195 static ssize_t
196 store_shost_state(struct device *dev, struct device_attribute *attr,
197 		  const char *buf, size_t count)
198 {
199 	int i;
200 	struct Scsi_Host *shost = class_to_shost(dev);
201 	enum scsi_host_state state = 0;
202 
203 	for (i = 0; i < ARRAY_SIZE(shost_states); i++) {
204 		const int len = strlen(shost_states[i].name);
205 		if (strncmp(shost_states[i].name, buf, len) == 0 &&
206 		   buf[len] == '\n') {
207 			state = shost_states[i].value;
208 			break;
209 		}
210 	}
211 	if (!state)
212 		return -EINVAL;
213 
214 	if (scsi_host_set_state(shost, state))
215 		return -EINVAL;
216 	return count;
217 }
218 
219 static ssize_t
220 show_shost_state(struct device *dev, struct device_attribute *attr, char *buf)
221 {
222 	struct Scsi_Host *shost = class_to_shost(dev);
223 	const char *name = scsi_host_state_name(shost->shost_state);
224 
225 	if (!name)
226 		return -EINVAL;
227 
228 	return snprintf(buf, 20, "%s\n", name);
229 }
230 
231 /* DEVICE_ATTR(state) clashes with dev_attr_state for sdev */
232 static struct device_attribute dev_attr_hstate =
233 	__ATTR(state, S_IRUGO | S_IWUSR, show_shost_state, store_shost_state);
234 
235 static ssize_t
236 show_shost_mode(unsigned int mode, char *buf)
237 {
238 	ssize_t len = 0;
239 
240 	if (mode & MODE_INITIATOR)
241 		len = sprintf(buf, "%s", "Initiator");
242 
243 	if (mode & MODE_TARGET)
244 		len += sprintf(buf + len, "%s%s", len ? ", " : "", "Target");
245 
246 	len += sprintf(buf + len, "\n");
247 
248 	return len;
249 }
250 
251 static ssize_t
252 show_shost_supported_mode(struct device *dev, struct device_attribute *attr,
253 			  char *buf)
254 {
255 	struct Scsi_Host *shost = class_to_shost(dev);
256 	unsigned int supported_mode = shost->hostt->supported_mode;
257 
258 	if (supported_mode == MODE_UNKNOWN)
259 		/* by default this should be initiator */
260 		supported_mode = MODE_INITIATOR;
261 
262 	return show_shost_mode(supported_mode, buf);
263 }
264 
265 static DEVICE_ATTR(supported_mode, S_IRUGO | S_IWUSR, show_shost_supported_mode, NULL);
266 
267 static ssize_t
268 show_shost_active_mode(struct device *dev,
269 		       struct device_attribute *attr, char *buf)
270 {
271 	struct Scsi_Host *shost = class_to_shost(dev);
272 
273 	if (shost->active_mode == MODE_UNKNOWN)
274 		return snprintf(buf, 20, "unknown\n");
275 	else
276 		return show_shost_mode(shost->active_mode, buf);
277 }
278 
279 static DEVICE_ATTR(active_mode, S_IRUGO | S_IWUSR, show_shost_active_mode, NULL);
280 
281 static int check_reset_type(const char *str)
282 {
283 	if (sysfs_streq(str, "adapter"))
284 		return SCSI_ADAPTER_RESET;
285 	else if (sysfs_streq(str, "firmware"))
286 		return SCSI_FIRMWARE_RESET;
287 	else
288 		return 0;
289 }
290 
291 static ssize_t
292 store_host_reset(struct device *dev, struct device_attribute *attr,
293 		const char *buf, size_t count)
294 {
295 	struct Scsi_Host *shost = class_to_shost(dev);
296 	struct scsi_host_template *sht = shost->hostt;
297 	int ret = -EINVAL;
298 	int type;
299 
300 	type = check_reset_type(buf);
301 	if (!type)
302 		goto exit_store_host_reset;
303 
304 	if (sht->host_reset)
305 		ret = sht->host_reset(shost, type);
306 	else
307 		ret = -EOPNOTSUPP;
308 
309 exit_store_host_reset:
310 	if (ret == 0)
311 		ret = count;
312 	return ret;
313 }
314 
315 static DEVICE_ATTR(host_reset, S_IWUSR, NULL, store_host_reset);
316 
317 static ssize_t
318 show_shost_eh_deadline(struct device *dev,
319 		      struct device_attribute *attr, char *buf)
320 {
321 	struct Scsi_Host *shost = class_to_shost(dev);
322 
323 	if (shost->eh_deadline == -1)
324 		return snprintf(buf, strlen("off") + 2, "off\n");
325 	return sprintf(buf, "%u\n", shost->eh_deadline / HZ);
326 }
327 
328 static ssize_t
329 store_shost_eh_deadline(struct device *dev, struct device_attribute *attr,
330 		const char *buf, size_t count)
331 {
332 	struct Scsi_Host *shost = class_to_shost(dev);
333 	int ret = -EINVAL;
334 	unsigned long deadline, flags;
335 
336 	if (shost->transportt &&
337 	    (shost->transportt->eh_strategy_handler ||
338 	     !shost->hostt->eh_host_reset_handler))
339 		return ret;
340 
341 	if (!strncmp(buf, "off", strlen("off")))
342 		deadline = -1;
343 	else {
344 		ret = kstrtoul(buf, 10, &deadline);
345 		if (ret)
346 			return ret;
347 		if (deadline * HZ > UINT_MAX)
348 			return -EINVAL;
349 	}
350 
351 	spin_lock_irqsave(shost->host_lock, flags);
352 	if (scsi_host_in_recovery(shost))
353 		ret = -EBUSY;
354 	else {
355 		if (deadline == -1)
356 			shost->eh_deadline = -1;
357 		else
358 			shost->eh_deadline = deadline * HZ;
359 
360 		ret = count;
361 	}
362 	spin_unlock_irqrestore(shost->host_lock, flags);
363 
364 	return ret;
365 }
366 
367 static DEVICE_ATTR(eh_deadline, S_IRUGO | S_IWUSR, show_shost_eh_deadline, store_shost_eh_deadline);
368 
369 shost_rd_attr(use_blk_mq, "%d\n");
370 shost_rd_attr(unique_id, "%u\n");
371 shost_rd_attr(cmd_per_lun, "%hd\n");
372 shost_rd_attr(can_queue, "%hd\n");
373 shost_rd_attr(sg_tablesize, "%hu\n");
374 shost_rd_attr(sg_prot_tablesize, "%hu\n");
375 shost_rd_attr(unchecked_isa_dma, "%d\n");
376 shost_rd_attr(prot_capabilities, "%u\n");
377 shost_rd_attr(prot_guard_type, "%hd\n");
378 shost_rd_attr2(proc_name, hostt->proc_name, "%s\n");
379 
380 static ssize_t
381 show_host_busy(struct device *dev, struct device_attribute *attr, char *buf)
382 {
383 	struct Scsi_Host *shost = class_to_shost(dev);
384 	return snprintf(buf, 20, "%d\n", atomic_read(&shost->host_busy));
385 }
386 static DEVICE_ATTR(host_busy, S_IRUGO, show_host_busy, NULL);
387 
388 static struct attribute *scsi_sysfs_shost_attrs[] = {
389 	&dev_attr_use_blk_mq.attr,
390 	&dev_attr_unique_id.attr,
391 	&dev_attr_host_busy.attr,
392 	&dev_attr_cmd_per_lun.attr,
393 	&dev_attr_can_queue.attr,
394 	&dev_attr_sg_tablesize.attr,
395 	&dev_attr_sg_prot_tablesize.attr,
396 	&dev_attr_unchecked_isa_dma.attr,
397 	&dev_attr_proc_name.attr,
398 	&dev_attr_scan.attr,
399 	&dev_attr_hstate.attr,
400 	&dev_attr_supported_mode.attr,
401 	&dev_attr_active_mode.attr,
402 	&dev_attr_prot_capabilities.attr,
403 	&dev_attr_prot_guard_type.attr,
404 	&dev_attr_host_reset.attr,
405 	&dev_attr_eh_deadline.attr,
406 	NULL
407 };
408 
409 static struct attribute_group scsi_shost_attr_group = {
410 	.attrs =	scsi_sysfs_shost_attrs,
411 };
412 
413 const struct attribute_group *scsi_sysfs_shost_attr_groups[] = {
414 	&scsi_shost_attr_group,
415 	NULL
416 };
417 
418 static void scsi_device_cls_release(struct device *class_dev)
419 {
420 	struct scsi_device *sdev;
421 
422 	sdev = class_to_sdev(class_dev);
423 	put_device(&sdev->sdev_gendev);
424 }
425 
426 static void scsi_device_dev_release_usercontext(struct work_struct *work)
427 {
428 	struct scsi_device *sdev;
429 	struct device *parent;
430 	struct list_head *this, *tmp;
431 	struct scsi_vpd *vpd_pg80 = NULL, *vpd_pg83 = NULL;
432 	unsigned long flags;
433 
434 	sdev = container_of(work, struct scsi_device, ew.work);
435 
436 	scsi_dh_release_device(sdev);
437 
438 	parent = sdev->sdev_gendev.parent;
439 
440 	spin_lock_irqsave(sdev->host->host_lock, flags);
441 	list_del(&sdev->siblings);
442 	list_del(&sdev->same_target_siblings);
443 	list_del(&sdev->starved_entry);
444 	spin_unlock_irqrestore(sdev->host->host_lock, flags);
445 
446 	cancel_work_sync(&sdev->event_work);
447 
448 	list_for_each_safe(this, tmp, &sdev->event_list) {
449 		struct scsi_event *evt;
450 
451 		evt = list_entry(this, struct scsi_event, node);
452 		list_del(&evt->node);
453 		kfree(evt);
454 	}
455 
456 	blk_put_queue(sdev->request_queue);
457 	/* NULL queue means the device can't be used */
458 	sdev->request_queue = NULL;
459 
460 	mutex_lock(&sdev->inquiry_mutex);
461 	rcu_swap_protected(sdev->vpd_pg80, vpd_pg80,
462 			   lockdep_is_held(&sdev->inquiry_mutex));
463 	rcu_swap_protected(sdev->vpd_pg83, vpd_pg83,
464 			   lockdep_is_held(&sdev->inquiry_mutex));
465 	mutex_unlock(&sdev->inquiry_mutex);
466 
467 	if (vpd_pg83)
468 		kfree_rcu(vpd_pg83, rcu);
469 	if (vpd_pg80)
470 		kfree_rcu(vpd_pg80, rcu);
471 	kfree(sdev->inquiry);
472 	kfree(sdev);
473 
474 	if (parent)
475 		put_device(parent);
476 }
477 
478 static void scsi_device_dev_release(struct device *dev)
479 {
480 	struct scsi_device *sdp = to_scsi_device(dev);
481 	execute_in_process_context(scsi_device_dev_release_usercontext,
482 				   &sdp->ew);
483 }
484 
485 static struct class sdev_class = {
486 	.name		= "scsi_device",
487 	.dev_release	= scsi_device_cls_release,
488 };
489 
490 /* all probing is done in the individual ->probe routines */
491 static int scsi_bus_match(struct device *dev, struct device_driver *gendrv)
492 {
493 	struct scsi_device *sdp;
494 
495 	if (dev->type != &scsi_dev_type)
496 		return 0;
497 
498 	sdp = to_scsi_device(dev);
499 	if (sdp->no_uld_attach)
500 		return 0;
501 	return (sdp->inq_periph_qual == SCSI_INQ_PQ_CON)? 1: 0;
502 }
503 
504 static int scsi_bus_uevent(struct device *dev, struct kobj_uevent_env *env)
505 {
506 	struct scsi_device *sdev;
507 
508 	if (dev->type != &scsi_dev_type)
509 		return 0;
510 
511 	sdev = to_scsi_device(dev);
512 
513 	add_uevent_var(env, "MODALIAS=" SCSI_DEVICE_MODALIAS_FMT, sdev->type);
514 	return 0;
515 }
516 
517 struct bus_type scsi_bus_type = {
518         .name		= "scsi",
519         .match		= scsi_bus_match,
520 	.uevent		= scsi_bus_uevent,
521 #ifdef CONFIG_PM
522 	.pm		= &scsi_bus_pm_ops,
523 #endif
524 };
525 EXPORT_SYMBOL_GPL(scsi_bus_type);
526 
527 int scsi_sysfs_register(void)
528 {
529 	int error;
530 
531 	error = bus_register(&scsi_bus_type);
532 	if (!error) {
533 		error = class_register(&sdev_class);
534 		if (error)
535 			bus_unregister(&scsi_bus_type);
536 	}
537 
538 	return error;
539 }
540 
541 void scsi_sysfs_unregister(void)
542 {
543 	class_unregister(&sdev_class);
544 	bus_unregister(&scsi_bus_type);
545 }
546 
547 /*
548  * sdev_show_function: macro to create an attr function that can be used to
549  * show a non-bit field.
550  */
551 #define sdev_show_function(field, format_string)				\
552 static ssize_t								\
553 sdev_show_##field (struct device *dev, struct device_attribute *attr,	\
554 		   char *buf)						\
555 {									\
556 	struct scsi_device *sdev;					\
557 	sdev = to_scsi_device(dev);					\
558 	return snprintf (buf, 20, format_string, sdev->field);		\
559 }									\
560 
561 /*
562  * sdev_rd_attr: macro to create a function and attribute variable for a
563  * read only field.
564  */
565 #define sdev_rd_attr(field, format_string)				\
566 	sdev_show_function(field, format_string)			\
567 static DEVICE_ATTR(field, S_IRUGO, sdev_show_##field, NULL);
568 
569 
570 /*
571  * sdev_rw_attr: create a function and attribute variable for a
572  * read/write field.
573  */
574 #define sdev_rw_attr(field, format_string)				\
575 	sdev_show_function(field, format_string)				\
576 									\
577 static ssize_t								\
578 sdev_store_##field (struct device *dev, struct device_attribute *attr,	\
579 		    const char *buf, size_t count)			\
580 {									\
581 	struct scsi_device *sdev;					\
582 	sdev = to_scsi_device(dev);					\
583 	sscanf (buf, format_string, &sdev->field);			\
584 	return count;							\
585 }									\
586 static DEVICE_ATTR(field, S_IRUGO | S_IWUSR, sdev_show_##field, sdev_store_##field);
587 
588 /* Currently we don't export bit fields, but we might in future,
589  * so leave this code in */
590 #if 0
591 /*
592  * sdev_rd_attr: create a function and attribute variable for a
593  * read/write bit field.
594  */
595 #define sdev_rw_attr_bit(field)						\
596 	sdev_show_function(field, "%d\n")					\
597 									\
598 static ssize_t								\
599 sdev_store_##field (struct device *dev, struct device_attribute *attr,	\
600 		    const char *buf, size_t count)			\
601 {									\
602 	int ret;							\
603 	struct scsi_device *sdev;					\
604 	ret = scsi_sdev_check_buf_bit(buf);				\
605 	if (ret >= 0)	{						\
606 		sdev = to_scsi_device(dev);				\
607 		sdev->field = ret;					\
608 		ret = count;						\
609 	}								\
610 	return ret;							\
611 }									\
612 static DEVICE_ATTR(field, S_IRUGO | S_IWUSR, sdev_show_##field, sdev_store_##field);
613 
614 /*
615  * scsi_sdev_check_buf_bit: return 0 if buf is "0", return 1 if buf is "1",
616  * else return -EINVAL.
617  */
618 static int scsi_sdev_check_buf_bit(const char *buf)
619 {
620 	if ((buf[1] == '\0') || ((buf[1] == '\n') && (buf[2] == '\0'))) {
621 		if (buf[0] == '1')
622 			return 1;
623 		else if (buf[0] == '0')
624 			return 0;
625 		else
626 			return -EINVAL;
627 	} else
628 		return -EINVAL;
629 }
630 #endif
631 /*
632  * Create the actual show/store functions and data structures.
633  */
634 sdev_rd_attr (type, "%d\n");
635 sdev_rd_attr (scsi_level, "%d\n");
636 sdev_rd_attr (vendor, "%.8s\n");
637 sdev_rd_attr (model, "%.16s\n");
638 sdev_rd_attr (rev, "%.4s\n");
639 
640 static ssize_t
641 sdev_show_device_busy(struct device *dev, struct device_attribute *attr,
642 		char *buf)
643 {
644 	struct scsi_device *sdev = to_scsi_device(dev);
645 	return snprintf(buf, 20, "%d\n", atomic_read(&sdev->device_busy));
646 }
647 static DEVICE_ATTR(device_busy, S_IRUGO, sdev_show_device_busy, NULL);
648 
649 static ssize_t
650 sdev_show_device_blocked(struct device *dev, struct device_attribute *attr,
651 		char *buf)
652 {
653 	struct scsi_device *sdev = to_scsi_device(dev);
654 	return snprintf(buf, 20, "%d\n", atomic_read(&sdev->device_blocked));
655 }
656 static DEVICE_ATTR(device_blocked, S_IRUGO, sdev_show_device_blocked, NULL);
657 
658 /*
659  * TODO: can we make these symlinks to the block layer ones?
660  */
661 static ssize_t
662 sdev_show_timeout (struct device *dev, struct device_attribute *attr, char *buf)
663 {
664 	struct scsi_device *sdev;
665 	sdev = to_scsi_device(dev);
666 	return snprintf(buf, 20, "%d\n", sdev->request_queue->rq_timeout / HZ);
667 }
668 
669 static ssize_t
670 sdev_store_timeout (struct device *dev, struct device_attribute *attr,
671 		    const char *buf, size_t count)
672 {
673 	struct scsi_device *sdev;
674 	int timeout;
675 	sdev = to_scsi_device(dev);
676 	sscanf (buf, "%d\n", &timeout);
677 	blk_queue_rq_timeout(sdev->request_queue, timeout * HZ);
678 	return count;
679 }
680 static DEVICE_ATTR(timeout, S_IRUGO | S_IWUSR, sdev_show_timeout, sdev_store_timeout);
681 
682 static ssize_t
683 sdev_show_eh_timeout(struct device *dev, struct device_attribute *attr, char *buf)
684 {
685 	struct scsi_device *sdev;
686 	sdev = to_scsi_device(dev);
687 	return snprintf(buf, 20, "%u\n", sdev->eh_timeout / HZ);
688 }
689 
690 static ssize_t
691 sdev_store_eh_timeout(struct device *dev, struct device_attribute *attr,
692 		    const char *buf, size_t count)
693 {
694 	struct scsi_device *sdev;
695 	unsigned int eh_timeout;
696 	int err;
697 
698 	if (!capable(CAP_SYS_ADMIN))
699 		return -EACCES;
700 
701 	sdev = to_scsi_device(dev);
702 	err = kstrtouint(buf, 10, &eh_timeout);
703 	if (err)
704 		return err;
705 	sdev->eh_timeout = eh_timeout * HZ;
706 
707 	return count;
708 }
709 static DEVICE_ATTR(eh_timeout, S_IRUGO | S_IWUSR, sdev_show_eh_timeout, sdev_store_eh_timeout);
710 
711 static ssize_t
712 store_rescan_field (struct device *dev, struct device_attribute *attr,
713 		    const char *buf, size_t count)
714 {
715 	scsi_rescan_device(dev);
716 	return count;
717 }
718 static DEVICE_ATTR(rescan, S_IWUSR, NULL, store_rescan_field);
719 
720 static ssize_t
721 sdev_store_delete(struct device *dev, struct device_attribute *attr,
722 		  const char *buf, size_t count)
723 {
724 	if (device_remove_file_self(dev, attr))
725 		scsi_remove_device(to_scsi_device(dev));
726 	return count;
727 };
728 static DEVICE_ATTR(delete, S_IWUSR, NULL, sdev_store_delete);
729 
730 static ssize_t
731 store_state_field(struct device *dev, struct device_attribute *attr,
732 		  const char *buf, size_t count)
733 {
734 	int i, ret;
735 	struct scsi_device *sdev = to_scsi_device(dev);
736 	enum scsi_device_state state = 0;
737 
738 	for (i = 0; i < ARRAY_SIZE(sdev_states); i++) {
739 		const int len = strlen(sdev_states[i].name);
740 		if (strncmp(sdev_states[i].name, buf, len) == 0 &&
741 		   buf[len] == '\n') {
742 			state = sdev_states[i].value;
743 			break;
744 		}
745 	}
746 	if (!state)
747 		return -EINVAL;
748 
749 	mutex_lock(&sdev->state_mutex);
750 	ret = scsi_device_set_state(sdev, state);
751 	mutex_unlock(&sdev->state_mutex);
752 
753 	return ret == 0 ? count : -EINVAL;
754 }
755 
756 static ssize_t
757 show_state_field(struct device *dev, struct device_attribute *attr, char *buf)
758 {
759 	struct scsi_device *sdev = to_scsi_device(dev);
760 	const char *name = scsi_device_state_name(sdev->sdev_state);
761 
762 	if (!name)
763 		return -EINVAL;
764 
765 	return snprintf(buf, 20, "%s\n", name);
766 }
767 
768 static DEVICE_ATTR(state, S_IRUGO | S_IWUSR, show_state_field, store_state_field);
769 
770 static ssize_t
771 show_queue_type_field(struct device *dev, struct device_attribute *attr,
772 		      char *buf)
773 {
774 	struct scsi_device *sdev = to_scsi_device(dev);
775 	const char *name = "none";
776 
777 	if (sdev->simple_tags)
778 		name = "simple";
779 
780 	return snprintf(buf, 20, "%s\n", name);
781 }
782 
783 static ssize_t
784 store_queue_type_field(struct device *dev, struct device_attribute *attr,
785 		       const char *buf, size_t count)
786 {
787 	struct scsi_device *sdev = to_scsi_device(dev);
788 
789 	if (!sdev->tagged_supported)
790 		return -EINVAL;
791 
792 	sdev_printk(KERN_INFO, sdev,
793 		    "ignoring write to deprecated queue_type attribute");
794 	return count;
795 }
796 
797 static DEVICE_ATTR(queue_type, S_IRUGO | S_IWUSR, show_queue_type_field,
798 		   store_queue_type_field);
799 
800 #define sdev_vpd_pg_attr(_page)						\
801 static ssize_t							\
802 show_vpd_##_page(struct file *filp, struct kobject *kobj,	\
803 		 struct bin_attribute *bin_attr,			\
804 		 char *buf, loff_t off, size_t count)			\
805 {									\
806 	struct device *dev = container_of(kobj, struct device, kobj);	\
807 	struct scsi_device *sdev = to_scsi_device(dev);			\
808 	struct scsi_vpd *vpd_page;					\
809 	int ret = -EINVAL;						\
810 									\
811 	rcu_read_lock();						\
812 	vpd_page = rcu_dereference(sdev->vpd_##_page);			\
813 	if (vpd_page)							\
814 		ret = memory_read_from_buffer(buf, count, &off,		\
815 				vpd_page->data, vpd_page->len);		\
816 	rcu_read_unlock();						\
817 	return ret;							\
818 }									\
819 static struct bin_attribute dev_attr_vpd_##_page = {		\
820 	.attr =	{.name = __stringify(vpd_##_page), .mode = S_IRUGO },	\
821 	.size = 0,							\
822 	.read = show_vpd_##_page,					\
823 };
824 
825 sdev_vpd_pg_attr(pg83);
826 sdev_vpd_pg_attr(pg80);
827 
828 static ssize_t show_inquiry(struct file *filep, struct kobject *kobj,
829 			    struct bin_attribute *bin_attr,
830 			    char *buf, loff_t off, size_t count)
831 {
832 	struct device *dev = container_of(kobj, struct device, kobj);
833 	struct scsi_device *sdev = to_scsi_device(dev);
834 
835 	if (!sdev->inquiry)
836 		return -EINVAL;
837 
838 	return memory_read_from_buffer(buf, count, &off, sdev->inquiry,
839 				       sdev->inquiry_len);
840 }
841 
842 static struct bin_attribute dev_attr_inquiry = {
843 	.attr = {
844 		.name = "inquiry",
845 		.mode = S_IRUGO,
846 	},
847 	.size = 0,
848 	.read = show_inquiry,
849 };
850 
851 static ssize_t
852 show_iostat_counterbits(struct device *dev, struct device_attribute *attr,
853 			char *buf)
854 {
855 	return snprintf(buf, 20, "%d\n", (int)sizeof(atomic_t) * 8);
856 }
857 
858 static DEVICE_ATTR(iocounterbits, S_IRUGO, show_iostat_counterbits, NULL);
859 
860 #define show_sdev_iostat(field)						\
861 static ssize_t								\
862 show_iostat_##field(struct device *dev, struct device_attribute *attr,	\
863 		    char *buf)						\
864 {									\
865 	struct scsi_device *sdev = to_scsi_device(dev);			\
866 	unsigned long long count = atomic_read(&sdev->field);		\
867 	return snprintf(buf, 20, "0x%llx\n", count);			\
868 }									\
869 static DEVICE_ATTR(field, S_IRUGO, show_iostat_##field, NULL)
870 
871 show_sdev_iostat(iorequest_cnt);
872 show_sdev_iostat(iodone_cnt);
873 show_sdev_iostat(ioerr_cnt);
874 
875 static ssize_t
876 sdev_show_modalias(struct device *dev, struct device_attribute *attr, char *buf)
877 {
878 	struct scsi_device *sdev;
879 	sdev = to_scsi_device(dev);
880 	return snprintf (buf, 20, SCSI_DEVICE_MODALIAS_FMT "\n", sdev->type);
881 }
882 static DEVICE_ATTR(modalias, S_IRUGO, sdev_show_modalias, NULL);
883 
884 #define DECLARE_EVT_SHOW(name, Cap_name)				\
885 static ssize_t								\
886 sdev_show_evt_##name(struct device *dev, struct device_attribute *attr,	\
887 		     char *buf)						\
888 {									\
889 	struct scsi_device *sdev = to_scsi_device(dev);			\
890 	int val = test_bit(SDEV_EVT_##Cap_name, sdev->supported_events);\
891 	return snprintf(buf, 20, "%d\n", val);				\
892 }
893 
894 #define DECLARE_EVT_STORE(name, Cap_name)				\
895 static ssize_t								\
896 sdev_store_evt_##name(struct device *dev, struct device_attribute *attr,\
897 		      const char *buf, size_t count)			\
898 {									\
899 	struct scsi_device *sdev = to_scsi_device(dev);			\
900 	int val = simple_strtoul(buf, NULL, 0);				\
901 	if (val == 0)							\
902 		clear_bit(SDEV_EVT_##Cap_name, sdev->supported_events);	\
903 	else if (val == 1)						\
904 		set_bit(SDEV_EVT_##Cap_name, sdev->supported_events);	\
905 	else								\
906 		return -EINVAL;						\
907 	return count;							\
908 }
909 
910 #define DECLARE_EVT(name, Cap_name)					\
911 	DECLARE_EVT_SHOW(name, Cap_name)				\
912 	DECLARE_EVT_STORE(name, Cap_name)				\
913 	static DEVICE_ATTR(evt_##name, S_IRUGO, sdev_show_evt_##name,	\
914 			   sdev_store_evt_##name);
915 #define REF_EVT(name) &dev_attr_evt_##name.attr
916 
917 DECLARE_EVT(media_change, MEDIA_CHANGE)
918 DECLARE_EVT(inquiry_change_reported, INQUIRY_CHANGE_REPORTED)
919 DECLARE_EVT(capacity_change_reported, CAPACITY_CHANGE_REPORTED)
920 DECLARE_EVT(soft_threshold_reached, SOFT_THRESHOLD_REACHED_REPORTED)
921 DECLARE_EVT(mode_parameter_change_reported, MODE_PARAMETER_CHANGE_REPORTED)
922 DECLARE_EVT(lun_change_reported, LUN_CHANGE_REPORTED)
923 
924 static ssize_t
925 sdev_store_queue_depth(struct device *dev, struct device_attribute *attr,
926 		       const char *buf, size_t count)
927 {
928 	int depth, retval;
929 	struct scsi_device *sdev = to_scsi_device(dev);
930 	struct scsi_host_template *sht = sdev->host->hostt;
931 
932 	if (!sht->change_queue_depth)
933 		return -EINVAL;
934 
935 	depth = simple_strtoul(buf, NULL, 0);
936 
937 	if (depth < 1 || depth > sdev->host->can_queue)
938 		return -EINVAL;
939 
940 	retval = sht->change_queue_depth(sdev, depth);
941 	if (retval < 0)
942 		return retval;
943 
944 	sdev->max_queue_depth = sdev->queue_depth;
945 
946 	return count;
947 }
948 sdev_show_function(queue_depth, "%d\n");
949 
950 static DEVICE_ATTR(queue_depth, S_IRUGO | S_IWUSR, sdev_show_queue_depth,
951 		   sdev_store_queue_depth);
952 
953 static ssize_t
954 sdev_show_wwid(struct device *dev, struct device_attribute *attr,
955 		    char *buf)
956 {
957 	struct scsi_device *sdev = to_scsi_device(dev);
958 	ssize_t count;
959 
960 	count = scsi_vpd_lun_id(sdev, buf, PAGE_SIZE);
961 	if (count > 0) {
962 		buf[count] = '\n';
963 		count++;
964 	}
965 	return count;
966 }
967 static DEVICE_ATTR(wwid, S_IRUGO, sdev_show_wwid, NULL);
968 
969 #ifdef CONFIG_SCSI_DH
970 static ssize_t
971 sdev_show_dh_state(struct device *dev, struct device_attribute *attr,
972 		   char *buf)
973 {
974 	struct scsi_device *sdev = to_scsi_device(dev);
975 
976 	if (!sdev->handler)
977 		return snprintf(buf, 20, "detached\n");
978 
979 	return snprintf(buf, 20, "%s\n", sdev->handler->name);
980 }
981 
982 static ssize_t
983 sdev_store_dh_state(struct device *dev, struct device_attribute *attr,
984 		    const char *buf, size_t count)
985 {
986 	struct scsi_device *sdev = to_scsi_device(dev);
987 	int err = -EINVAL;
988 
989 	if (sdev->sdev_state == SDEV_CANCEL ||
990 	    sdev->sdev_state == SDEV_DEL)
991 		return -ENODEV;
992 
993 	if (!sdev->handler) {
994 		/*
995 		 * Attach to a device handler
996 		 */
997 		err = scsi_dh_attach(sdev->request_queue, buf);
998 	} else if (!strncmp(buf, "activate", 8)) {
999 		/*
1000 		 * Activate a device handler
1001 		 */
1002 		if (sdev->handler->activate)
1003 			err = sdev->handler->activate(sdev, NULL, NULL);
1004 		else
1005 			err = 0;
1006 	} else if (!strncmp(buf, "detach", 6)) {
1007 		/*
1008 		 * Detach from a device handler
1009 		 */
1010 		sdev_printk(KERN_WARNING, sdev,
1011 			    "can't detach handler %s.\n",
1012 			    sdev->handler->name);
1013 		err = -EINVAL;
1014 	}
1015 
1016 	return err < 0 ? err : count;
1017 }
1018 
1019 static DEVICE_ATTR(dh_state, S_IRUGO | S_IWUSR, sdev_show_dh_state,
1020 		   sdev_store_dh_state);
1021 
1022 static ssize_t
1023 sdev_show_access_state(struct device *dev,
1024 		       struct device_attribute *attr,
1025 		       char *buf)
1026 {
1027 	struct scsi_device *sdev = to_scsi_device(dev);
1028 	unsigned char access_state;
1029 	const char *access_state_name;
1030 
1031 	if (!sdev->handler)
1032 		return -EINVAL;
1033 
1034 	access_state = (sdev->access_state & SCSI_ACCESS_STATE_MASK);
1035 	access_state_name = scsi_access_state_name(access_state);
1036 
1037 	return sprintf(buf, "%s\n",
1038 		       access_state_name ? access_state_name : "unknown");
1039 }
1040 static DEVICE_ATTR(access_state, S_IRUGO, sdev_show_access_state, NULL);
1041 
1042 static ssize_t
1043 sdev_show_preferred_path(struct device *dev,
1044 			 struct device_attribute *attr,
1045 			 char *buf)
1046 {
1047 	struct scsi_device *sdev = to_scsi_device(dev);
1048 
1049 	if (!sdev->handler)
1050 		return -EINVAL;
1051 
1052 	if (sdev->access_state & SCSI_ACCESS_STATE_PREFERRED)
1053 		return sprintf(buf, "1\n");
1054 	else
1055 		return sprintf(buf, "0\n");
1056 }
1057 static DEVICE_ATTR(preferred_path, S_IRUGO, sdev_show_preferred_path, NULL);
1058 #endif
1059 
1060 static ssize_t
1061 sdev_show_queue_ramp_up_period(struct device *dev,
1062 			       struct device_attribute *attr,
1063 			       char *buf)
1064 {
1065 	struct scsi_device *sdev;
1066 	sdev = to_scsi_device(dev);
1067 	return snprintf(buf, 20, "%u\n",
1068 			jiffies_to_msecs(sdev->queue_ramp_up_period));
1069 }
1070 
1071 static ssize_t
1072 sdev_store_queue_ramp_up_period(struct device *dev,
1073 				struct device_attribute *attr,
1074 				const char *buf, size_t count)
1075 {
1076 	struct scsi_device *sdev = to_scsi_device(dev);
1077 	unsigned int period;
1078 
1079 	if (kstrtouint(buf, 10, &period))
1080 		return -EINVAL;
1081 
1082 	sdev->queue_ramp_up_period = msecs_to_jiffies(period);
1083 	return count;
1084 }
1085 
1086 static DEVICE_ATTR(queue_ramp_up_period, S_IRUGO | S_IWUSR,
1087 		   sdev_show_queue_ramp_up_period,
1088 		   sdev_store_queue_ramp_up_period);
1089 
1090 static umode_t scsi_sdev_attr_is_visible(struct kobject *kobj,
1091 					 struct attribute *attr, int i)
1092 {
1093 	struct device *dev = container_of(kobj, struct device, kobj);
1094 	struct scsi_device *sdev = to_scsi_device(dev);
1095 
1096 
1097 	if (attr == &dev_attr_queue_depth.attr &&
1098 	    !sdev->host->hostt->change_queue_depth)
1099 		return S_IRUGO;
1100 
1101 	if (attr == &dev_attr_queue_ramp_up_period.attr &&
1102 	    !sdev->host->hostt->change_queue_depth)
1103 		return 0;
1104 
1105 #ifdef CONFIG_SCSI_DH
1106 	if (attr == &dev_attr_access_state.attr &&
1107 	    !sdev->handler)
1108 		return 0;
1109 	if (attr == &dev_attr_preferred_path.attr &&
1110 	    !sdev->handler)
1111 		return 0;
1112 #endif
1113 	return attr->mode;
1114 }
1115 
1116 static umode_t scsi_sdev_bin_attr_is_visible(struct kobject *kobj,
1117 					     struct bin_attribute *attr, int i)
1118 {
1119 	struct device *dev = container_of(kobj, struct device, kobj);
1120 	struct scsi_device *sdev = to_scsi_device(dev);
1121 
1122 
1123 	if (attr == &dev_attr_vpd_pg80 && !sdev->vpd_pg80)
1124 		return 0;
1125 
1126 	if (attr == &dev_attr_vpd_pg83 && !sdev->vpd_pg83)
1127 		return 0;
1128 
1129 	return S_IRUGO;
1130 }
1131 
1132 /* Default template for device attributes.  May NOT be modified */
1133 static struct attribute *scsi_sdev_attrs[] = {
1134 	&dev_attr_device_blocked.attr,
1135 	&dev_attr_type.attr,
1136 	&dev_attr_scsi_level.attr,
1137 	&dev_attr_device_busy.attr,
1138 	&dev_attr_vendor.attr,
1139 	&dev_attr_model.attr,
1140 	&dev_attr_rev.attr,
1141 	&dev_attr_rescan.attr,
1142 	&dev_attr_delete.attr,
1143 	&dev_attr_state.attr,
1144 	&dev_attr_timeout.attr,
1145 	&dev_attr_eh_timeout.attr,
1146 	&dev_attr_iocounterbits.attr,
1147 	&dev_attr_iorequest_cnt.attr,
1148 	&dev_attr_iodone_cnt.attr,
1149 	&dev_attr_ioerr_cnt.attr,
1150 	&dev_attr_modalias.attr,
1151 	&dev_attr_queue_depth.attr,
1152 	&dev_attr_queue_type.attr,
1153 	&dev_attr_wwid.attr,
1154 #ifdef CONFIG_SCSI_DH
1155 	&dev_attr_dh_state.attr,
1156 	&dev_attr_access_state.attr,
1157 	&dev_attr_preferred_path.attr,
1158 #endif
1159 	&dev_attr_queue_ramp_up_period.attr,
1160 	REF_EVT(media_change),
1161 	REF_EVT(inquiry_change_reported),
1162 	REF_EVT(capacity_change_reported),
1163 	REF_EVT(soft_threshold_reached),
1164 	REF_EVT(mode_parameter_change_reported),
1165 	REF_EVT(lun_change_reported),
1166 	NULL
1167 };
1168 
1169 static struct bin_attribute *scsi_sdev_bin_attrs[] = {
1170 	&dev_attr_vpd_pg83,
1171 	&dev_attr_vpd_pg80,
1172 	&dev_attr_inquiry,
1173 	NULL
1174 };
1175 static struct attribute_group scsi_sdev_attr_group = {
1176 	.attrs =	scsi_sdev_attrs,
1177 	.bin_attrs =	scsi_sdev_bin_attrs,
1178 	.is_visible =	scsi_sdev_attr_is_visible,
1179 	.is_bin_visible = scsi_sdev_bin_attr_is_visible,
1180 };
1181 
1182 static const struct attribute_group *scsi_sdev_attr_groups[] = {
1183 	&scsi_sdev_attr_group,
1184 	NULL
1185 };
1186 
1187 static int scsi_target_add(struct scsi_target *starget)
1188 {
1189 	int error;
1190 
1191 	if (starget->state != STARGET_CREATED)
1192 		return 0;
1193 
1194 	error = device_add(&starget->dev);
1195 	if (error) {
1196 		dev_err(&starget->dev, "target device_add failed, error %d\n", error);
1197 		return error;
1198 	}
1199 	transport_add_device(&starget->dev);
1200 	starget->state = STARGET_RUNNING;
1201 
1202 	pm_runtime_set_active(&starget->dev);
1203 	pm_runtime_enable(&starget->dev);
1204 	device_enable_async_suspend(&starget->dev);
1205 
1206 	return 0;
1207 }
1208 
1209 /**
1210  * scsi_sysfs_add_sdev - add scsi device to sysfs
1211  * @sdev:	scsi_device to add
1212  *
1213  * Return value:
1214  * 	0 on Success / non-zero on Failure
1215  **/
1216 int scsi_sysfs_add_sdev(struct scsi_device *sdev)
1217 {
1218 	int error, i;
1219 	struct request_queue *rq = sdev->request_queue;
1220 	struct scsi_target *starget = sdev->sdev_target;
1221 
1222 	error = scsi_target_add(starget);
1223 	if (error)
1224 		return error;
1225 
1226 	transport_configure_device(&starget->dev);
1227 
1228 	device_enable_async_suspend(&sdev->sdev_gendev);
1229 	scsi_autopm_get_target(starget);
1230 	pm_runtime_set_active(&sdev->sdev_gendev);
1231 	pm_runtime_forbid(&sdev->sdev_gendev);
1232 	pm_runtime_enable(&sdev->sdev_gendev);
1233 	scsi_autopm_put_target(starget);
1234 
1235 	scsi_autopm_get_device(sdev);
1236 
1237 	error = scsi_dh_add_device(sdev);
1238 	if (error)
1239 		/*
1240 		 * device_handler is optional, so any error can be ignored
1241 		 */
1242 		sdev_printk(KERN_INFO, sdev,
1243 				"failed to add device handler: %d\n", error);
1244 
1245 	error = device_add(&sdev->sdev_gendev);
1246 	if (error) {
1247 		sdev_printk(KERN_INFO, sdev,
1248 				"failed to add device: %d\n", error);
1249 		scsi_dh_remove_device(sdev);
1250 		return error;
1251 	}
1252 
1253 	device_enable_async_suspend(&sdev->sdev_dev);
1254 	error = device_add(&sdev->sdev_dev);
1255 	if (error) {
1256 		sdev_printk(KERN_INFO, sdev,
1257 				"failed to add class device: %d\n", error);
1258 		scsi_dh_remove_device(sdev);
1259 		device_del(&sdev->sdev_gendev);
1260 		return error;
1261 	}
1262 	transport_add_device(&sdev->sdev_gendev);
1263 	sdev->is_visible = 1;
1264 
1265 	error = bsg_register_queue(rq, &sdev->sdev_gendev, NULL, NULL);
1266 
1267 	if (error)
1268 		/* we're treating error on bsg register as non-fatal,
1269 		 * so pretend nothing went wrong */
1270 		sdev_printk(KERN_INFO, sdev,
1271 			    "Failed to register bsg queue, errno=%d\n", error);
1272 
1273 	/* add additional host specific attributes */
1274 	if (sdev->host->hostt->sdev_attrs) {
1275 		for (i = 0; sdev->host->hostt->sdev_attrs[i]; i++) {
1276 			error = device_create_file(&sdev->sdev_gendev,
1277 					sdev->host->hostt->sdev_attrs[i]);
1278 			if (error)
1279 				return error;
1280 		}
1281 	}
1282 
1283 	scsi_autopm_put_device(sdev);
1284 	return error;
1285 }
1286 
1287 void __scsi_remove_device(struct scsi_device *sdev)
1288 {
1289 	struct device *dev = &sdev->sdev_gendev;
1290 	int res;
1291 
1292 	/*
1293 	 * This cleanup path is not reentrant and while it is impossible
1294 	 * to get a new reference with scsi_device_get() someone can still
1295 	 * hold a previously acquired one.
1296 	 */
1297 	if (sdev->sdev_state == SDEV_DEL)
1298 		return;
1299 
1300 	if (sdev->is_visible) {
1301 		/*
1302 		 * If scsi_internal_target_block() is running concurrently,
1303 		 * wait until it has finished before changing the device state.
1304 		 */
1305 		mutex_lock(&sdev->state_mutex);
1306 		/*
1307 		 * If blocked, we go straight to DEL and restart the queue so
1308 		 * any commands issued during driver shutdown (like sync
1309 		 * cache) are errored immediately.
1310 		 */
1311 		res = scsi_device_set_state(sdev, SDEV_CANCEL);
1312 		if (res != 0) {
1313 			res = scsi_device_set_state(sdev, SDEV_DEL);
1314 			if (res == 0)
1315 				scsi_start_queue(sdev);
1316 		}
1317 		mutex_unlock(&sdev->state_mutex);
1318 
1319 		if (res != 0)
1320 			return;
1321 
1322 		bsg_unregister_queue(sdev->request_queue);
1323 		device_unregister(&sdev->sdev_dev);
1324 		transport_remove_device(dev);
1325 		scsi_dh_remove_device(sdev);
1326 		device_del(dev);
1327 	} else
1328 		put_device(&sdev->sdev_dev);
1329 
1330 	/*
1331 	 * Stop accepting new requests and wait until all queuecommand() and
1332 	 * scsi_run_queue() invocations have finished before tearing down the
1333 	 * device.
1334 	 */
1335 	mutex_lock(&sdev->state_mutex);
1336 	scsi_device_set_state(sdev, SDEV_DEL);
1337 	mutex_unlock(&sdev->state_mutex);
1338 
1339 	blk_cleanup_queue(sdev->request_queue);
1340 	cancel_work_sync(&sdev->requeue_work);
1341 
1342 	if (sdev->host->hostt->slave_destroy)
1343 		sdev->host->hostt->slave_destroy(sdev);
1344 	transport_destroy_device(dev);
1345 
1346 	/*
1347 	 * Paired with the kref_get() in scsi_sysfs_initialize().  We have
1348 	 * remoed sysfs visibility from the device, so make the target
1349 	 * invisible if this was the last device underneath it.
1350 	 */
1351 	scsi_target_reap(scsi_target(sdev));
1352 
1353 	put_device(dev);
1354 }
1355 
1356 /**
1357  * scsi_remove_device - unregister a device from the scsi bus
1358  * @sdev:	scsi_device to unregister
1359  **/
1360 void scsi_remove_device(struct scsi_device *sdev)
1361 {
1362 	struct Scsi_Host *shost = sdev->host;
1363 
1364 	mutex_lock(&shost->scan_mutex);
1365 	__scsi_remove_device(sdev);
1366 	mutex_unlock(&shost->scan_mutex);
1367 }
1368 EXPORT_SYMBOL(scsi_remove_device);
1369 
1370 static void __scsi_remove_target(struct scsi_target *starget)
1371 {
1372 	struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
1373 	unsigned long flags;
1374 	struct scsi_device *sdev;
1375 
1376 	spin_lock_irqsave(shost->host_lock, flags);
1377  restart:
1378 	list_for_each_entry(sdev, &shost->__devices, siblings) {
1379 		if (sdev->channel != starget->channel ||
1380 		    sdev->id != starget->id ||
1381 		    scsi_device_get(sdev))
1382 			continue;
1383 		spin_unlock_irqrestore(shost->host_lock, flags);
1384 		scsi_remove_device(sdev);
1385 		scsi_device_put(sdev);
1386 		spin_lock_irqsave(shost->host_lock, flags);
1387 		goto restart;
1388 	}
1389 	spin_unlock_irqrestore(shost->host_lock, flags);
1390 }
1391 
1392 /**
1393  * scsi_remove_target - try to remove a target and all its devices
1394  * @dev: generic starget or parent of generic stargets to be removed
1395  *
1396  * Note: This is slightly racy.  It is possible that if the user
1397  * requests the addition of another device then the target won't be
1398  * removed.
1399  */
1400 void scsi_remove_target(struct device *dev)
1401 {
1402 	struct Scsi_Host *shost = dev_to_shost(dev->parent);
1403 	struct scsi_target *starget;
1404 	unsigned long flags;
1405 
1406 restart:
1407 	spin_lock_irqsave(shost->host_lock, flags);
1408 	list_for_each_entry(starget, &shost->__targets, siblings) {
1409 		if (starget->state == STARGET_DEL ||
1410 		    starget->state == STARGET_REMOVE ||
1411 		    starget->state == STARGET_CREATED_REMOVE)
1412 			continue;
1413 		if (starget->dev.parent == dev || &starget->dev == dev) {
1414 			kref_get(&starget->reap_ref);
1415 			if (starget->state == STARGET_CREATED)
1416 				starget->state = STARGET_CREATED_REMOVE;
1417 			else
1418 				starget->state = STARGET_REMOVE;
1419 			spin_unlock_irqrestore(shost->host_lock, flags);
1420 			__scsi_remove_target(starget);
1421 			scsi_target_reap(starget);
1422 			goto restart;
1423 		}
1424 	}
1425 	spin_unlock_irqrestore(shost->host_lock, flags);
1426 }
1427 EXPORT_SYMBOL(scsi_remove_target);
1428 
1429 int scsi_register_driver(struct device_driver *drv)
1430 {
1431 	drv->bus = &scsi_bus_type;
1432 
1433 	return driver_register(drv);
1434 }
1435 EXPORT_SYMBOL(scsi_register_driver);
1436 
1437 int scsi_register_interface(struct class_interface *intf)
1438 {
1439 	intf->class = &sdev_class;
1440 
1441 	return class_interface_register(intf);
1442 }
1443 EXPORT_SYMBOL(scsi_register_interface);
1444 
1445 /**
1446  * scsi_sysfs_add_host - add scsi host to subsystem
1447  * @shost:     scsi host struct to add to subsystem
1448  **/
1449 int scsi_sysfs_add_host(struct Scsi_Host *shost)
1450 {
1451 	int error, i;
1452 
1453 	/* add host specific attributes */
1454 	if (shost->hostt->shost_attrs) {
1455 		for (i = 0; shost->hostt->shost_attrs[i]; i++) {
1456 			error = device_create_file(&shost->shost_dev,
1457 					shost->hostt->shost_attrs[i]);
1458 			if (error)
1459 				return error;
1460 		}
1461 	}
1462 
1463 	transport_register_device(&shost->shost_gendev);
1464 	transport_configure_device(&shost->shost_gendev);
1465 	return 0;
1466 }
1467 
1468 static struct device_type scsi_dev_type = {
1469 	.name =		"scsi_device",
1470 	.release =	scsi_device_dev_release,
1471 	.groups =	scsi_sdev_attr_groups,
1472 };
1473 
1474 void scsi_sysfs_device_initialize(struct scsi_device *sdev)
1475 {
1476 	unsigned long flags;
1477 	struct Scsi_Host *shost = sdev->host;
1478 	struct scsi_target  *starget = sdev->sdev_target;
1479 
1480 	device_initialize(&sdev->sdev_gendev);
1481 	sdev->sdev_gendev.bus = &scsi_bus_type;
1482 	sdev->sdev_gendev.type = &scsi_dev_type;
1483 	dev_set_name(&sdev->sdev_gendev, "%d:%d:%d:%llu",
1484 		     sdev->host->host_no, sdev->channel, sdev->id, sdev->lun);
1485 
1486 	device_initialize(&sdev->sdev_dev);
1487 	sdev->sdev_dev.parent = get_device(&sdev->sdev_gendev);
1488 	sdev->sdev_dev.class = &sdev_class;
1489 	dev_set_name(&sdev->sdev_dev, "%d:%d:%d:%llu",
1490 		     sdev->host->host_no, sdev->channel, sdev->id, sdev->lun);
1491 	/*
1492 	 * Get a default scsi_level from the target (derived from sibling
1493 	 * devices).  This is the best we can do for guessing how to set
1494 	 * sdev->lun_in_cdb for the initial INQUIRY command.  For LUN 0 the
1495 	 * setting doesn't matter, because all the bits are zero anyway.
1496 	 * But it does matter for higher LUNs.
1497 	 */
1498 	sdev->scsi_level = starget->scsi_level;
1499 	if (sdev->scsi_level <= SCSI_2 &&
1500 			sdev->scsi_level != SCSI_UNKNOWN &&
1501 			!shost->no_scsi2_lun_in_cdb)
1502 		sdev->lun_in_cdb = 1;
1503 
1504 	transport_setup_device(&sdev->sdev_gendev);
1505 	spin_lock_irqsave(shost->host_lock, flags);
1506 	list_add_tail(&sdev->same_target_siblings, &starget->devices);
1507 	list_add_tail(&sdev->siblings, &shost->__devices);
1508 	spin_unlock_irqrestore(shost->host_lock, flags);
1509 	/*
1510 	 * device can now only be removed via __scsi_remove_device() so hold
1511 	 * the target.  Target will be held in CREATED state until something
1512 	 * beneath it becomes visible (in which case it moves to RUNNING)
1513 	 */
1514 	kref_get(&starget->reap_ref);
1515 }
1516 
1517 int scsi_is_sdev_device(const struct device *dev)
1518 {
1519 	return dev->type == &scsi_dev_type;
1520 }
1521 EXPORT_SYMBOL(scsi_is_sdev_device);
1522 
1523 /* A blank transport template that is used in drivers that don't
1524  * yet implement Transport Attributes */
1525 struct scsi_transport_template blank_transport_template = { { { {NULL, }, }, }, };
1526