• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 /*
2  * Generic SCSI-3 ALUA SCSI Device Handler
3  *
4  * Copyright (C) 2007-2010 Hannes Reinecke, SUSE Linux Products GmbH.
5  * All rights reserved.
6  *
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.
11  *
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.
16  *
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.
20  *
21  */
22 #include <linux/slab.h>
23 #include <linux/delay.h>
24 #include <linux/module.h>
25 #include <asm/unaligned.h>
26 #include <scsi/scsi.h>
27 #include <scsi/scsi_proto.h>
28 #include <scsi/scsi_dbg.h>
29 #include <scsi/scsi_eh.h>
30 #include <scsi/scsi_dh.h>
31 
32 #define ALUA_DH_NAME "alua"
33 #define ALUA_DH_VER "2.0"
34 
35 #define TPGS_SUPPORT_NONE		0x00
36 #define TPGS_SUPPORT_OPTIMIZED		0x01
37 #define TPGS_SUPPORT_NONOPTIMIZED	0x02
38 #define TPGS_SUPPORT_STANDBY		0x04
39 #define TPGS_SUPPORT_UNAVAILABLE	0x08
40 #define TPGS_SUPPORT_LBA_DEPENDENT	0x10
41 #define TPGS_SUPPORT_OFFLINE		0x40
42 #define TPGS_SUPPORT_TRANSITION		0x80
43 #define TPGS_SUPPORT_ALL		0xdf
44 
45 #define RTPG_FMT_MASK			0x70
46 #define RTPG_FMT_EXT_HDR		0x10
47 
48 #define TPGS_MODE_UNINITIALIZED		 -1
49 #define TPGS_MODE_NONE			0x0
50 #define TPGS_MODE_IMPLICIT		0x1
51 #define TPGS_MODE_EXPLICIT		0x2
52 
53 #define ALUA_RTPG_SIZE			128
54 #define ALUA_FAILOVER_TIMEOUT		60
55 #define ALUA_FAILOVER_RETRIES		5
56 #define ALUA_RTPG_DELAY_MSECS		5
57 #define ALUA_RTPG_RETRY_DELAY		2
58 
59 /* device handler flags */
60 #define ALUA_OPTIMIZE_STPG		0x01
61 #define ALUA_RTPG_EXT_HDR_UNSUPP	0x02
62 /* State machine flags */
63 #define ALUA_PG_RUN_RTPG		0x10
64 #define ALUA_PG_RUN_STPG		0x20
65 #define ALUA_PG_RUNNING			0x40
66 
67 static uint optimize_stpg;
68 module_param(optimize_stpg, uint, S_IRUGO|S_IWUSR);
69 MODULE_PARM_DESC(optimize_stpg, "Allow use of a non-optimized path, rather than sending a STPG, when implicit TPGS is supported (0=No,1=Yes). Default is 0.");
70 
71 static LIST_HEAD(port_group_list);
72 static DEFINE_SPINLOCK(port_group_lock);
73 static struct workqueue_struct *kaluad_wq;
74 
75 struct alua_port_group {
76 	struct kref		kref;
77 	struct rcu_head		rcu;
78 	struct list_head	node;
79 	struct list_head	dh_list;
80 	unsigned char		device_id_str[256];
81 	int			device_id_len;
82 	int			group_id;
83 	int			tpgs;
84 	int			state;
85 	int			pref;
86 	int			valid_states;
87 	unsigned		flags; /* used for optimizing STPG */
88 	unsigned char		transition_tmo;
89 	unsigned long		expiry;
90 	unsigned long		interval;
91 	struct delayed_work	rtpg_work;
92 	spinlock_t		lock;
93 	struct list_head	rtpg_list;
94 	struct scsi_device	*rtpg_sdev;
95 };
96 
97 struct alua_dh_data {
98 	struct list_head	node;
99 	struct alua_port_group __rcu *pg;
100 	int			group_id;
101 	spinlock_t		pg_lock;
102 	struct scsi_device	*sdev;
103 	int			init_error;
104 	struct mutex		init_mutex;
105 };
106 
107 struct alua_queue_data {
108 	struct list_head	entry;
109 	activate_complete	callback_fn;
110 	void			*callback_data;
111 };
112 
113 #define ALUA_POLICY_SWITCH_CURRENT	0
114 #define ALUA_POLICY_SWITCH_ALL		1
115 
116 static void alua_rtpg_work(struct work_struct *work);
117 static bool alua_rtpg_queue(struct alua_port_group *pg,
118 			    struct scsi_device *sdev,
119 			    struct alua_queue_data *qdata, bool force);
120 static void alua_check(struct scsi_device *sdev, bool force);
121 
release_port_group(struct kref * kref)122 static void release_port_group(struct kref *kref)
123 {
124 	struct alua_port_group *pg;
125 
126 	pg = container_of(kref, struct alua_port_group, kref);
127 	if (pg->rtpg_sdev)
128 		flush_delayed_work(&pg->rtpg_work);
129 	spin_lock(&port_group_lock);
130 	list_del(&pg->node);
131 	spin_unlock(&port_group_lock);
132 	kfree_rcu(pg, rcu);
133 }
134 
135 /*
136  * submit_rtpg - Issue a REPORT TARGET GROUP STATES command
137  * @sdev: sdev the command should be sent to
138  */
submit_rtpg(struct scsi_device * sdev,unsigned char * buff,int bufflen,struct scsi_sense_hdr * sshdr,int flags)139 static int submit_rtpg(struct scsi_device *sdev, unsigned char *buff,
140 		       int bufflen, struct scsi_sense_hdr *sshdr, int flags)
141 {
142 	u8 cdb[MAX_COMMAND_SIZE];
143 	int req_flags = REQ_FAILFAST_DEV | REQ_FAILFAST_TRANSPORT |
144 		REQ_FAILFAST_DRIVER;
145 
146 	/* Prepare the command. */
147 	memset(cdb, 0x0, MAX_COMMAND_SIZE);
148 	cdb[0] = MAINTENANCE_IN;
149 	if (!(flags & ALUA_RTPG_EXT_HDR_UNSUPP))
150 		cdb[1] = MI_REPORT_TARGET_PGS | MI_EXT_HDR_PARAM_FMT;
151 	else
152 		cdb[1] = MI_REPORT_TARGET_PGS;
153 	put_unaligned_be32(bufflen, &cdb[6]);
154 
155 	return scsi_execute(sdev, cdb, DMA_FROM_DEVICE, buff, bufflen, NULL,
156 			sshdr, ALUA_FAILOVER_TIMEOUT * HZ,
157 			ALUA_FAILOVER_RETRIES, req_flags, 0, NULL);
158 }
159 
160 /*
161  * submit_stpg - Issue a SET TARGET PORT GROUP command
162  *
163  * Currently we're only setting the current target port group state
164  * to 'active/optimized' and let the array firmware figure out
165  * the states of the remaining groups.
166  */
submit_stpg(struct scsi_device * sdev,int group_id,struct scsi_sense_hdr * sshdr)167 static int submit_stpg(struct scsi_device *sdev, int group_id,
168 		       struct scsi_sense_hdr *sshdr)
169 {
170 	u8 cdb[MAX_COMMAND_SIZE];
171 	unsigned char stpg_data[8];
172 	int stpg_len = 8;
173 	int req_flags = REQ_FAILFAST_DEV | REQ_FAILFAST_TRANSPORT |
174 		REQ_FAILFAST_DRIVER;
175 
176 	/* Prepare the data buffer */
177 	memset(stpg_data, 0, stpg_len);
178 	stpg_data[4] = SCSI_ACCESS_STATE_OPTIMAL;
179 	put_unaligned_be16(group_id, &stpg_data[6]);
180 
181 	/* Prepare the command. */
182 	memset(cdb, 0x0, MAX_COMMAND_SIZE);
183 	cdb[0] = MAINTENANCE_OUT;
184 	cdb[1] = MO_SET_TARGET_PGS;
185 	put_unaligned_be32(stpg_len, &cdb[6]);
186 
187 	return scsi_execute(sdev, cdb, DMA_TO_DEVICE, stpg_data, stpg_len, NULL,
188 			sshdr, ALUA_FAILOVER_TIMEOUT * HZ,
189 			ALUA_FAILOVER_RETRIES, req_flags, 0, NULL);
190 }
191 
alua_find_get_pg(char * id_str,size_t id_size,int group_id)192 static struct alua_port_group *alua_find_get_pg(char *id_str, size_t id_size,
193 						int group_id)
194 {
195 	struct alua_port_group *pg;
196 
197 	if (!id_str || !id_size || !strlen(id_str))
198 		return NULL;
199 
200 	list_for_each_entry(pg, &port_group_list, node) {
201 		if (pg->group_id != group_id)
202 			continue;
203 		if (!pg->device_id_len || pg->device_id_len != id_size)
204 			continue;
205 		if (strncmp(pg->device_id_str, id_str, id_size))
206 			continue;
207 		if (!kref_get_unless_zero(&pg->kref))
208 			continue;
209 		return pg;
210 	}
211 
212 	return NULL;
213 }
214 
215 /*
216  * alua_alloc_pg - Allocate a new port_group structure
217  * @sdev: scsi device
218  * @group_id: port group id
219  * @tpgs: target port group settings
220  *
221  * Allocate a new port_group structure for a given
222  * device.
223  */
alua_alloc_pg(struct scsi_device * sdev,int group_id,int tpgs)224 static struct alua_port_group *alua_alloc_pg(struct scsi_device *sdev,
225 					     int group_id, int tpgs)
226 {
227 	struct alua_port_group *pg, *tmp_pg;
228 
229 	pg = kzalloc(sizeof(struct alua_port_group), GFP_KERNEL);
230 	if (!pg)
231 		return ERR_PTR(-ENOMEM);
232 
233 	pg->device_id_len = scsi_vpd_lun_id(sdev, pg->device_id_str,
234 					    sizeof(pg->device_id_str));
235 	if (pg->device_id_len <= 0) {
236 		/*
237 		 * TPGS supported but no device identification found.
238 		 * Generate private device identification.
239 		 */
240 		sdev_printk(KERN_INFO, sdev,
241 			    "%s: No device descriptors found\n",
242 			    ALUA_DH_NAME);
243 		pg->device_id_str[0] = '\0';
244 		pg->device_id_len = 0;
245 	}
246 	pg->group_id = group_id;
247 	pg->tpgs = tpgs;
248 	pg->state = SCSI_ACCESS_STATE_OPTIMAL;
249 	pg->valid_states = TPGS_SUPPORT_ALL;
250 	if (optimize_stpg)
251 		pg->flags |= ALUA_OPTIMIZE_STPG;
252 	kref_init(&pg->kref);
253 	INIT_DELAYED_WORK(&pg->rtpg_work, alua_rtpg_work);
254 	INIT_LIST_HEAD(&pg->rtpg_list);
255 	INIT_LIST_HEAD(&pg->node);
256 	INIT_LIST_HEAD(&pg->dh_list);
257 	spin_lock_init(&pg->lock);
258 
259 	spin_lock(&port_group_lock);
260 	tmp_pg = alua_find_get_pg(pg->device_id_str, pg->device_id_len,
261 				  group_id);
262 	if (tmp_pg) {
263 		spin_unlock(&port_group_lock);
264 		kfree(pg);
265 		return tmp_pg;
266 	}
267 
268 	list_add(&pg->node, &port_group_list);
269 	spin_unlock(&port_group_lock);
270 
271 	return pg;
272 }
273 
274 /*
275  * alua_check_tpgs - Evaluate TPGS setting
276  * @sdev: device to be checked
277  *
278  * Examine the TPGS setting of the sdev to find out if ALUA
279  * is supported.
280  */
alua_check_tpgs(struct scsi_device * sdev)281 static int alua_check_tpgs(struct scsi_device *sdev)
282 {
283 	int tpgs = TPGS_MODE_NONE;
284 
285 	/*
286 	 * ALUA support for non-disk devices is fraught with
287 	 * difficulties, so disable it for now.
288 	 */
289 	if (sdev->type != TYPE_DISK) {
290 		sdev_printk(KERN_INFO, sdev,
291 			    "%s: disable for non-disk devices\n",
292 			    ALUA_DH_NAME);
293 		return tpgs;
294 	}
295 
296 	tpgs = scsi_device_tpgs(sdev);
297 	switch (tpgs) {
298 	case TPGS_MODE_EXPLICIT|TPGS_MODE_IMPLICIT:
299 		sdev_printk(KERN_INFO, sdev,
300 			    "%s: supports implicit and explicit TPGS\n",
301 			    ALUA_DH_NAME);
302 		break;
303 	case TPGS_MODE_EXPLICIT:
304 		sdev_printk(KERN_INFO, sdev, "%s: supports explicit TPGS\n",
305 			    ALUA_DH_NAME);
306 		break;
307 	case TPGS_MODE_IMPLICIT:
308 		sdev_printk(KERN_INFO, sdev, "%s: supports implicit TPGS\n",
309 			    ALUA_DH_NAME);
310 		break;
311 	case TPGS_MODE_NONE:
312 		sdev_printk(KERN_INFO, sdev, "%s: not supported\n",
313 			    ALUA_DH_NAME);
314 		break;
315 	default:
316 		sdev_printk(KERN_INFO, sdev,
317 			    "%s: unsupported TPGS setting %d\n",
318 			    ALUA_DH_NAME, tpgs);
319 		tpgs = TPGS_MODE_NONE;
320 		break;
321 	}
322 
323 	return tpgs;
324 }
325 
326 /*
327  * alua_check_vpd - Evaluate INQUIRY vpd page 0x83
328  * @sdev: device to be checked
329  *
330  * Extract the relative target port and the target port group
331  * descriptor from the list of identificators.
332  */
alua_check_vpd(struct scsi_device * sdev,struct alua_dh_data * h,int tpgs)333 static int alua_check_vpd(struct scsi_device *sdev, struct alua_dh_data *h,
334 			  int tpgs)
335 {
336 	int rel_port = -1, group_id;
337 	struct alua_port_group *pg, *old_pg = NULL;
338 	bool pg_updated = false;
339 	unsigned long flags;
340 
341 	group_id = scsi_vpd_tpg_id(sdev, &rel_port);
342 	if (group_id < 0) {
343 		/*
344 		 * Internal error; TPGS supported but required
345 		 * VPD identification descriptors not present.
346 		 * Disable ALUA support
347 		 */
348 		sdev_printk(KERN_INFO, sdev,
349 			    "%s: No target port descriptors found\n",
350 			    ALUA_DH_NAME);
351 		return SCSI_DH_DEV_UNSUPP;
352 	}
353 
354 	pg = alua_alloc_pg(sdev, group_id, tpgs);
355 	if (IS_ERR(pg)) {
356 		if (PTR_ERR(pg) == -ENOMEM)
357 			return SCSI_DH_NOMEM;
358 		return SCSI_DH_DEV_UNSUPP;
359 	}
360 	if (pg->device_id_len)
361 		sdev_printk(KERN_INFO, sdev,
362 			    "%s: device %s port group %x rel port %x\n",
363 			    ALUA_DH_NAME, pg->device_id_str,
364 			    group_id, rel_port);
365 	else
366 		sdev_printk(KERN_INFO, sdev,
367 			    "%s: port group %x rel port %x\n",
368 			    ALUA_DH_NAME, group_id, rel_port);
369 
370 	/* Check for existing port group references */
371 	spin_lock(&h->pg_lock);
372 	old_pg = rcu_dereference_protected(h->pg, lockdep_is_held(&h->pg_lock));
373 	if (old_pg != pg) {
374 		/* port group has changed. Update to new port group */
375 		if (h->pg) {
376 			spin_lock_irqsave(&old_pg->lock, flags);
377 			list_del_rcu(&h->node);
378 			spin_unlock_irqrestore(&old_pg->lock, flags);
379 		}
380 		rcu_assign_pointer(h->pg, pg);
381 		pg_updated = true;
382 	}
383 
384 	spin_lock_irqsave(&pg->lock, flags);
385 	if (pg_updated)
386 		list_add_rcu(&h->node, &pg->dh_list);
387 	spin_unlock_irqrestore(&pg->lock, flags);
388 
389 	alua_rtpg_queue(rcu_dereference_protected(h->pg,
390 						  lockdep_is_held(&h->pg_lock)),
391 			sdev, NULL, true);
392 	spin_unlock(&h->pg_lock);
393 
394 	if (old_pg)
395 		kref_put(&old_pg->kref, release_port_group);
396 
397 	return SCSI_DH_OK;
398 }
399 
print_alua_state(unsigned char state)400 static char print_alua_state(unsigned char state)
401 {
402 	switch (state) {
403 	case SCSI_ACCESS_STATE_OPTIMAL:
404 		return 'A';
405 	case SCSI_ACCESS_STATE_ACTIVE:
406 		return 'N';
407 	case SCSI_ACCESS_STATE_STANDBY:
408 		return 'S';
409 	case SCSI_ACCESS_STATE_UNAVAILABLE:
410 		return 'U';
411 	case SCSI_ACCESS_STATE_LBA:
412 		return 'L';
413 	case SCSI_ACCESS_STATE_OFFLINE:
414 		return 'O';
415 	case SCSI_ACCESS_STATE_TRANSITIONING:
416 		return 'T';
417 	default:
418 		return 'X';
419 	}
420 }
421 
alua_check_sense(struct scsi_device * sdev,struct scsi_sense_hdr * sense_hdr)422 static int alua_check_sense(struct scsi_device *sdev,
423 			    struct scsi_sense_hdr *sense_hdr)
424 {
425 	switch (sense_hdr->sense_key) {
426 	case NOT_READY:
427 		if (sense_hdr->asc == 0x04 && sense_hdr->ascq == 0x0a) {
428 			/*
429 			 * LUN Not Accessible - ALUA state transition
430 			 */
431 			alua_check(sdev, false);
432 			return NEEDS_RETRY;
433 		}
434 		break;
435 	case UNIT_ATTENTION:
436 		if (sense_hdr->asc == 0x29 && sense_hdr->ascq == 0x00) {
437 			/*
438 			 * Power On, Reset, or Bus Device Reset.
439 			 * Might have obscured a state transition,
440 			 * so schedule a recheck.
441 			 */
442 			alua_check(sdev, true);
443 			return ADD_TO_MLQUEUE;
444 		}
445 		if (sense_hdr->asc == 0x29 && sense_hdr->ascq == 0x04)
446 			/*
447 			 * Device internal reset
448 			 */
449 			return ADD_TO_MLQUEUE;
450 		if (sense_hdr->asc == 0x2a && sense_hdr->ascq == 0x01)
451 			/*
452 			 * Mode Parameters Changed
453 			 */
454 			return ADD_TO_MLQUEUE;
455 		if (sense_hdr->asc == 0x2a && sense_hdr->ascq == 0x06) {
456 			/*
457 			 * ALUA state changed
458 			 */
459 			alua_check(sdev, true);
460 			return ADD_TO_MLQUEUE;
461 		}
462 		if (sense_hdr->asc == 0x2a && sense_hdr->ascq == 0x07) {
463 			/*
464 			 * Implicit ALUA state transition failed
465 			 */
466 			alua_check(sdev, true);
467 			return ADD_TO_MLQUEUE;
468 		}
469 		if (sense_hdr->asc == 0x3f && sense_hdr->ascq == 0x03)
470 			/*
471 			 * Inquiry data has changed
472 			 */
473 			return ADD_TO_MLQUEUE;
474 		if (sense_hdr->asc == 0x3f && sense_hdr->ascq == 0x0e)
475 			/*
476 			 * REPORTED_LUNS_DATA_HAS_CHANGED is reported
477 			 * when switching controllers on targets like
478 			 * Intel Multi-Flex. We can just retry.
479 			 */
480 			return ADD_TO_MLQUEUE;
481 		break;
482 	}
483 
484 	return SCSI_RETURN_NOT_HANDLED;
485 }
486 
487 /*
488  * alua_tur - Send a TEST UNIT READY
489  * @sdev: device to which the TEST UNIT READY command should be send
490  *
491  * Send a TEST UNIT READY to @sdev to figure out the device state
492  * Returns SCSI_DH_RETRY if the sense code is NOT READY/ALUA TRANSITIONING,
493  * SCSI_DH_OK if no error occurred, and SCSI_DH_IO otherwise.
494  */
alua_tur(struct scsi_device * sdev)495 static int alua_tur(struct scsi_device *sdev)
496 {
497 	struct scsi_sense_hdr sense_hdr;
498 	int retval;
499 
500 	retval = scsi_test_unit_ready(sdev, ALUA_FAILOVER_TIMEOUT * HZ,
501 				      ALUA_FAILOVER_RETRIES, &sense_hdr);
502 	if (sense_hdr.sense_key == NOT_READY &&
503 	    sense_hdr.asc == 0x04 && sense_hdr.ascq == 0x0a)
504 		return SCSI_DH_RETRY;
505 	else if (retval)
506 		return SCSI_DH_IO;
507 	else
508 		return SCSI_DH_OK;
509 }
510 
511 /*
512  * alua_rtpg - Evaluate REPORT TARGET GROUP STATES
513  * @sdev: the device to be evaluated.
514  *
515  * Evaluate the Target Port Group State.
516  * Returns SCSI_DH_DEV_OFFLINED if the path is
517  * found to be unusable.
518  */
alua_rtpg(struct scsi_device * sdev,struct alua_port_group * pg)519 static int alua_rtpg(struct scsi_device *sdev, struct alua_port_group *pg)
520 {
521 	struct scsi_sense_hdr sense_hdr;
522 	struct alua_port_group *tmp_pg;
523 	int len, k, off, bufflen = ALUA_RTPG_SIZE;
524 	unsigned char *desc, *buff;
525 	unsigned err, retval;
526 	unsigned int tpg_desc_tbl_off;
527 	unsigned char orig_transition_tmo;
528 	unsigned long flags;
529 	bool transitioning_sense = false;
530 
531 	if (!pg->expiry) {
532 		unsigned long transition_tmo = ALUA_FAILOVER_TIMEOUT * HZ;
533 
534 		if (pg->transition_tmo)
535 			transition_tmo = pg->transition_tmo * HZ;
536 
537 		pg->expiry = round_jiffies_up(jiffies + transition_tmo);
538 	}
539 
540 	buff = kzalloc(bufflen, GFP_KERNEL);
541 	if (!buff)
542 		return SCSI_DH_DEV_TEMP_BUSY;
543 
544  retry:
545 	err = 0;
546 	retval = submit_rtpg(sdev, buff, bufflen, &sense_hdr, pg->flags);
547 
548 	if (retval) {
549 		/*
550 		 * Some (broken) implementations have a habit of returning
551 		 * an error during things like firmware update etc.
552 		 * But if the target only supports active/optimized there's
553 		 * not much we can do; it's not that we can switch paths
554 		 * or anything.
555 		 * So ignore any errors to avoid spurious failures during
556 		 * path failover.
557 		 */
558 		if ((pg->valid_states & ~TPGS_SUPPORT_OPTIMIZED) == 0) {
559 			sdev_printk(KERN_INFO, sdev,
560 				    "%s: ignoring rtpg result %d\n",
561 				    ALUA_DH_NAME, retval);
562 			kfree(buff);
563 			return SCSI_DH_OK;
564 		}
565 		if (!scsi_sense_valid(&sense_hdr)) {
566 			sdev_printk(KERN_INFO, sdev,
567 				    "%s: rtpg failed, result %d\n",
568 				    ALUA_DH_NAME, retval);
569 			kfree(buff);
570 			if (driver_byte(retval) == DRIVER_ERROR)
571 				return SCSI_DH_DEV_TEMP_BUSY;
572 			return SCSI_DH_IO;
573 		}
574 
575 		/*
576 		 * submit_rtpg() has failed on existing arrays
577 		 * when requesting extended header info, and
578 		 * the array doesn't support extended headers,
579 		 * even though it shouldn't according to T10.
580 		 * The retry without rtpg_ext_hdr_req set
581 		 * handles this.
582 		 */
583 		if (!(pg->flags & ALUA_RTPG_EXT_HDR_UNSUPP) &&
584 		    sense_hdr.sense_key == ILLEGAL_REQUEST &&
585 		    sense_hdr.asc == 0x24 && sense_hdr.ascq == 0) {
586 			pg->flags |= ALUA_RTPG_EXT_HDR_UNSUPP;
587 			goto retry;
588 		}
589 		/*
590 		 * If the array returns with 'ALUA state transition'
591 		 * sense code here it cannot return RTPG data during
592 		 * transition. So set the state to 'transitioning' directly.
593 		 */
594 		if (sense_hdr.sense_key == NOT_READY &&
595 		    sense_hdr.asc == 0x04 && sense_hdr.ascq == 0x0a) {
596 			transitioning_sense = true;
597 			goto skip_rtpg;
598 		}
599 		/*
600 		 * Retry on any other UNIT ATTENTION occurred.
601 		 */
602 		if (sense_hdr.sense_key == UNIT_ATTENTION)
603 			err = SCSI_DH_RETRY;
604 		if (err == SCSI_DH_RETRY &&
605 		    pg->expiry != 0 && time_before(jiffies, pg->expiry)) {
606 			sdev_printk(KERN_ERR, sdev, "%s: rtpg retry\n",
607 				    ALUA_DH_NAME);
608 			scsi_print_sense_hdr(sdev, ALUA_DH_NAME, &sense_hdr);
609 			kfree(buff);
610 			return err;
611 		}
612 		sdev_printk(KERN_ERR, sdev, "%s: rtpg failed\n",
613 			    ALUA_DH_NAME);
614 		scsi_print_sense_hdr(sdev, ALUA_DH_NAME, &sense_hdr);
615 		kfree(buff);
616 		pg->expiry = 0;
617 		return SCSI_DH_IO;
618 	}
619 
620 	len = get_unaligned_be32(&buff[0]) + 4;
621 
622 	if (len > bufflen) {
623 		/* Resubmit with the correct length */
624 		kfree(buff);
625 		bufflen = len;
626 		buff = kmalloc(bufflen, GFP_KERNEL);
627 		if (!buff) {
628 			sdev_printk(KERN_WARNING, sdev,
629 				    "%s: kmalloc buffer failed\n",__func__);
630 			/* Temporary failure, bypass */
631 			pg->expiry = 0;
632 			return SCSI_DH_DEV_TEMP_BUSY;
633 		}
634 		goto retry;
635 	}
636 
637 	orig_transition_tmo = pg->transition_tmo;
638 	if ((buff[4] & RTPG_FMT_MASK) == RTPG_FMT_EXT_HDR && buff[5] != 0)
639 		pg->transition_tmo = buff[5];
640 	else
641 		pg->transition_tmo = ALUA_FAILOVER_TIMEOUT;
642 
643 	if (orig_transition_tmo != pg->transition_tmo) {
644 		sdev_printk(KERN_INFO, sdev,
645 			    "%s: transition timeout set to %d seconds\n",
646 			    ALUA_DH_NAME, pg->transition_tmo);
647 		pg->expiry = jiffies + pg->transition_tmo * HZ;
648 	}
649 
650 	if ((buff[4] & RTPG_FMT_MASK) == RTPG_FMT_EXT_HDR)
651 		tpg_desc_tbl_off = 8;
652 	else
653 		tpg_desc_tbl_off = 4;
654 
655 	for (k = tpg_desc_tbl_off, desc = buff + tpg_desc_tbl_off;
656 	     k < len;
657 	     k += off, desc += off) {
658 		u16 group_id = get_unaligned_be16(&desc[2]);
659 
660 		spin_lock_irqsave(&port_group_lock, flags);
661 		tmp_pg = alua_find_get_pg(pg->device_id_str, pg->device_id_len,
662 					  group_id);
663 		spin_unlock_irqrestore(&port_group_lock, flags);
664 		if (tmp_pg) {
665 			if (spin_trylock_irqsave(&tmp_pg->lock, flags)) {
666 				if ((tmp_pg == pg) ||
667 				    !(tmp_pg->flags & ALUA_PG_RUNNING)) {
668 					struct alua_dh_data *h;
669 
670 					tmp_pg->state = desc[0] & 0x0f;
671 					tmp_pg->pref = desc[0] >> 7;
672 					rcu_read_lock();
673 					list_for_each_entry_rcu(h,
674 						&tmp_pg->dh_list, node) {
675 						/* h->sdev should always be valid */
676 						BUG_ON(!h->sdev);
677 						h->sdev->access_state = desc[0];
678 					}
679 					rcu_read_unlock();
680 				}
681 				if (tmp_pg == pg)
682 					tmp_pg->valid_states = desc[1];
683 				spin_unlock_irqrestore(&tmp_pg->lock, flags);
684 			}
685 			kref_put(&tmp_pg->kref, release_port_group);
686 		}
687 		off = 8 + (desc[7] * 4);
688 	}
689 
690  skip_rtpg:
691 	spin_lock_irqsave(&pg->lock, flags);
692 	if (transitioning_sense)
693 		pg->state = SCSI_ACCESS_STATE_TRANSITIONING;
694 
695 	sdev_printk(KERN_INFO, sdev,
696 		    "%s: port group %02x state %c %s supports %c%c%c%c%c%c%c\n",
697 		    ALUA_DH_NAME, pg->group_id, print_alua_state(pg->state),
698 		    pg->pref ? "preferred" : "non-preferred",
699 		    pg->valid_states&TPGS_SUPPORT_TRANSITION?'T':'t',
700 		    pg->valid_states&TPGS_SUPPORT_OFFLINE?'O':'o',
701 		    pg->valid_states&TPGS_SUPPORT_LBA_DEPENDENT?'L':'l',
702 		    pg->valid_states&TPGS_SUPPORT_UNAVAILABLE?'U':'u',
703 		    pg->valid_states&TPGS_SUPPORT_STANDBY?'S':'s',
704 		    pg->valid_states&TPGS_SUPPORT_NONOPTIMIZED?'N':'n',
705 		    pg->valid_states&TPGS_SUPPORT_OPTIMIZED?'A':'a');
706 
707 	switch (pg->state) {
708 	case SCSI_ACCESS_STATE_TRANSITIONING:
709 		if (time_before(jiffies, pg->expiry)) {
710 			/* State transition, retry */
711 			pg->interval = ALUA_RTPG_RETRY_DELAY;
712 			err = SCSI_DH_RETRY;
713 		} else {
714 			struct alua_dh_data *h;
715 
716 			/* Transitioning time exceeded, set port to standby */
717 			err = SCSI_DH_IO;
718 			pg->state = SCSI_ACCESS_STATE_STANDBY;
719 			pg->expiry = 0;
720 			rcu_read_lock();
721 			list_for_each_entry_rcu(h, &pg->dh_list, node) {
722 				BUG_ON(!h->sdev);
723 				h->sdev->access_state =
724 					(pg->state & SCSI_ACCESS_STATE_MASK);
725 				if (pg->pref)
726 					h->sdev->access_state |=
727 						SCSI_ACCESS_STATE_PREFERRED;
728 			}
729 			rcu_read_unlock();
730 		}
731 		break;
732 	case SCSI_ACCESS_STATE_OFFLINE:
733 		/* Path unusable */
734 		err = SCSI_DH_DEV_OFFLINED;
735 		pg->expiry = 0;
736 		break;
737 	default:
738 		/* Useable path if active */
739 		err = SCSI_DH_OK;
740 		pg->expiry = 0;
741 		break;
742 	}
743 	spin_unlock_irqrestore(&pg->lock, flags);
744 	kfree(buff);
745 	return err;
746 }
747 
748 /*
749  * alua_stpg - Issue a SET TARGET PORT GROUP command
750  *
751  * Issue a SET TARGET PORT GROUP command and evaluate the
752  * response. Returns SCSI_DH_RETRY per default to trigger
753  * a re-evaluation of the target group state or SCSI_DH_OK
754  * if no further action needs to be taken.
755  */
alua_stpg(struct scsi_device * sdev,struct alua_port_group * pg)756 static unsigned alua_stpg(struct scsi_device *sdev, struct alua_port_group *pg)
757 {
758 	int retval;
759 	struct scsi_sense_hdr sense_hdr;
760 
761 	if (!(pg->tpgs & TPGS_MODE_EXPLICIT)) {
762 		/* Only implicit ALUA supported, retry */
763 		return SCSI_DH_RETRY;
764 	}
765 	switch (pg->state) {
766 	case SCSI_ACCESS_STATE_OPTIMAL:
767 		return SCSI_DH_OK;
768 	case SCSI_ACCESS_STATE_ACTIVE:
769 		if ((pg->flags & ALUA_OPTIMIZE_STPG) &&
770 		    !pg->pref &&
771 		    (pg->tpgs & TPGS_MODE_IMPLICIT))
772 			return SCSI_DH_OK;
773 		break;
774 	case SCSI_ACCESS_STATE_STANDBY:
775 	case SCSI_ACCESS_STATE_UNAVAILABLE:
776 		break;
777 	case SCSI_ACCESS_STATE_OFFLINE:
778 		return SCSI_DH_IO;
779 	case SCSI_ACCESS_STATE_TRANSITIONING:
780 		break;
781 	default:
782 		sdev_printk(KERN_INFO, sdev,
783 			    "%s: stpg failed, unhandled TPGS state %d",
784 			    ALUA_DH_NAME, pg->state);
785 		return SCSI_DH_NOSYS;
786 	}
787 	retval = submit_stpg(sdev, pg->group_id, &sense_hdr);
788 
789 	if (retval) {
790 		if (!scsi_sense_valid(&sense_hdr)) {
791 			sdev_printk(KERN_INFO, sdev,
792 				    "%s: stpg failed, result %d",
793 				    ALUA_DH_NAME, retval);
794 			if (driver_byte(retval) == DRIVER_ERROR)
795 				return SCSI_DH_DEV_TEMP_BUSY;
796 		} else {
797 			sdev_printk(KERN_INFO, sdev, "%s: stpg failed\n",
798 				    ALUA_DH_NAME);
799 			scsi_print_sense_hdr(sdev, ALUA_DH_NAME, &sense_hdr);
800 		}
801 	}
802 	/* Retry RTPG */
803 	return SCSI_DH_RETRY;
804 }
805 
alua_rtpg_work(struct work_struct * work)806 static void alua_rtpg_work(struct work_struct *work)
807 {
808 	struct alua_port_group *pg =
809 		container_of(work, struct alua_port_group, rtpg_work.work);
810 	struct scsi_device *sdev;
811 	LIST_HEAD(qdata_list);
812 	int err = SCSI_DH_OK;
813 	struct alua_queue_data *qdata, *tmp;
814 	unsigned long flags;
815 
816 	spin_lock_irqsave(&pg->lock, flags);
817 	sdev = pg->rtpg_sdev;
818 	if (!sdev) {
819 		WARN_ON(pg->flags & ALUA_PG_RUN_RTPG);
820 		WARN_ON(pg->flags & ALUA_PG_RUN_STPG);
821 		spin_unlock_irqrestore(&pg->lock, flags);
822 		kref_put(&pg->kref, release_port_group);
823 		return;
824 	}
825 	pg->flags |= ALUA_PG_RUNNING;
826 	if (pg->flags & ALUA_PG_RUN_RTPG) {
827 		int state = pg->state;
828 
829 		pg->flags &= ~ALUA_PG_RUN_RTPG;
830 		spin_unlock_irqrestore(&pg->lock, flags);
831 		if (state == SCSI_ACCESS_STATE_TRANSITIONING) {
832 			if (alua_tur(sdev) == SCSI_DH_RETRY) {
833 				spin_lock_irqsave(&pg->lock, flags);
834 				pg->flags &= ~ALUA_PG_RUNNING;
835 				pg->flags |= ALUA_PG_RUN_RTPG;
836 				if (!pg->interval)
837 					pg->interval = ALUA_RTPG_RETRY_DELAY;
838 				spin_unlock_irqrestore(&pg->lock, flags);
839 				queue_delayed_work(kaluad_wq, &pg->rtpg_work,
840 						   pg->interval * HZ);
841 				return;
842 			}
843 			/* Send RTPG on failure or if TUR indicates SUCCESS */
844 		}
845 		err = alua_rtpg(sdev, pg);
846 		spin_lock_irqsave(&pg->lock, flags);
847 		if (err == SCSI_DH_RETRY || pg->flags & ALUA_PG_RUN_RTPG) {
848 			pg->flags &= ~ALUA_PG_RUNNING;
849 			if (!pg->interval && !(pg->flags & ALUA_PG_RUN_RTPG))
850 				pg->interval = ALUA_RTPG_RETRY_DELAY;
851 			pg->flags |= ALUA_PG_RUN_RTPG;
852 			spin_unlock_irqrestore(&pg->lock, flags);
853 			queue_delayed_work(kaluad_wq, &pg->rtpg_work,
854 					   pg->interval * HZ);
855 			return;
856 		}
857 		if (err != SCSI_DH_OK)
858 			pg->flags &= ~ALUA_PG_RUN_STPG;
859 	}
860 	if (pg->flags & ALUA_PG_RUN_STPG) {
861 		pg->flags &= ~ALUA_PG_RUN_STPG;
862 		spin_unlock_irqrestore(&pg->lock, flags);
863 		err = alua_stpg(sdev, pg);
864 		spin_lock_irqsave(&pg->lock, flags);
865 		if (err == SCSI_DH_RETRY || pg->flags & ALUA_PG_RUN_RTPG) {
866 			pg->flags |= ALUA_PG_RUN_RTPG;
867 			pg->interval = 0;
868 			pg->flags &= ~ALUA_PG_RUNNING;
869 			spin_unlock_irqrestore(&pg->lock, flags);
870 			queue_delayed_work(kaluad_wq, &pg->rtpg_work,
871 					   pg->interval * HZ);
872 			return;
873 		}
874 	}
875 
876 	list_splice_init(&pg->rtpg_list, &qdata_list);
877 	pg->rtpg_sdev = NULL;
878 	spin_unlock_irqrestore(&pg->lock, flags);
879 
880 	list_for_each_entry_safe(qdata, tmp, &qdata_list, entry) {
881 		list_del(&qdata->entry);
882 		if (qdata->callback_fn)
883 			qdata->callback_fn(qdata->callback_data, err);
884 		kfree(qdata);
885 	}
886 	spin_lock_irqsave(&pg->lock, flags);
887 	pg->flags &= ~ALUA_PG_RUNNING;
888 	spin_unlock_irqrestore(&pg->lock, flags);
889 	scsi_device_put(sdev);
890 	kref_put(&pg->kref, release_port_group);
891 }
892 
893 /**
894  * alua_rtpg_queue() - cause RTPG to be submitted asynchronously
895  * @pg: ALUA port group associated with @sdev.
896  * @sdev: SCSI device for which to submit an RTPG.
897  * @qdata: Information about the callback to invoke after the RTPG.
898  * @force: Whether or not to submit an RTPG if a work item that will submit an
899  *         RTPG already has been scheduled.
900  *
901  * Returns true if and only if alua_rtpg_work() will be called asynchronously.
902  * That function is responsible for calling @qdata->fn().
903  */
alua_rtpg_queue(struct alua_port_group * pg,struct scsi_device * sdev,struct alua_queue_data * qdata,bool force)904 static bool alua_rtpg_queue(struct alua_port_group *pg,
905 			    struct scsi_device *sdev,
906 			    struct alua_queue_data *qdata, bool force)
907 {
908 	int start_queue = 0;
909 	unsigned long flags;
910 	if (WARN_ON_ONCE(!pg) || scsi_device_get(sdev))
911 		return false;
912 
913 	spin_lock_irqsave(&pg->lock, flags);
914 	if (qdata) {
915 		list_add_tail(&qdata->entry, &pg->rtpg_list);
916 		pg->flags |= ALUA_PG_RUN_STPG;
917 		force = true;
918 	}
919 	if (pg->rtpg_sdev == NULL) {
920 		pg->interval = 0;
921 		pg->flags |= ALUA_PG_RUN_RTPG;
922 		kref_get(&pg->kref);
923 		pg->rtpg_sdev = sdev;
924 		start_queue = 1;
925 	} else if (!(pg->flags & ALUA_PG_RUN_RTPG) && force) {
926 		pg->flags |= ALUA_PG_RUN_RTPG;
927 		/* Do not queue if the worker is already running */
928 		if (!(pg->flags & ALUA_PG_RUNNING)) {
929 			kref_get(&pg->kref);
930 			start_queue = 1;
931 		}
932 	}
933 
934 	spin_unlock_irqrestore(&pg->lock, flags);
935 
936 	if (start_queue) {
937 		if (queue_delayed_work(kaluad_wq, &pg->rtpg_work,
938 				msecs_to_jiffies(ALUA_RTPG_DELAY_MSECS)))
939 			sdev = NULL;
940 		else
941 			kref_put(&pg->kref, release_port_group);
942 	}
943 	if (sdev)
944 		scsi_device_put(sdev);
945 
946 	return true;
947 }
948 
949 /*
950  * alua_initialize - Initialize ALUA state
951  * @sdev: the device to be initialized
952  *
953  * For the prep_fn to work correctly we have
954  * to initialize the ALUA state for the device.
955  */
alua_initialize(struct scsi_device * sdev,struct alua_dh_data * h)956 static int alua_initialize(struct scsi_device *sdev, struct alua_dh_data *h)
957 {
958 	int err = SCSI_DH_DEV_UNSUPP, tpgs;
959 
960 	mutex_lock(&h->init_mutex);
961 	tpgs = alua_check_tpgs(sdev);
962 	if (tpgs != TPGS_MODE_NONE)
963 		err = alua_check_vpd(sdev, h, tpgs);
964 	h->init_error = err;
965 	mutex_unlock(&h->init_mutex);
966 	return err;
967 }
968 /*
969  * alua_set_params - set/unset the optimize flag
970  * @sdev: device on the path to be activated
971  * params - parameters in the following format
972  *      "no_of_params\0param1\0param2\0param3\0...\0"
973  * For example, to set the flag pass the following parameters
974  * from multipath.conf
975  *     hardware_handler        "2 alua 1"
976  */
alua_set_params(struct scsi_device * sdev,const char * params)977 static int alua_set_params(struct scsi_device *sdev, const char *params)
978 {
979 	struct alua_dh_data *h = sdev->handler_data;
980 	struct alua_port_group *pg = NULL;
981 	unsigned int optimize = 0, argc;
982 	const char *p = params;
983 	int result = SCSI_DH_OK;
984 	unsigned long flags;
985 
986 	if ((sscanf(params, "%u", &argc) != 1) || (argc != 1))
987 		return -EINVAL;
988 
989 	while (*p++)
990 		;
991 	if ((sscanf(p, "%u", &optimize) != 1) || (optimize > 1))
992 		return -EINVAL;
993 
994 	rcu_read_lock();
995 	pg = rcu_dereference(h->pg);
996 	if (!pg) {
997 		rcu_read_unlock();
998 		return -ENXIO;
999 	}
1000 	spin_lock_irqsave(&pg->lock, flags);
1001 	if (optimize)
1002 		pg->flags |= ALUA_OPTIMIZE_STPG;
1003 	else
1004 		pg->flags &= ~ALUA_OPTIMIZE_STPG;
1005 	spin_unlock_irqrestore(&pg->lock, flags);
1006 	rcu_read_unlock();
1007 
1008 	return result;
1009 }
1010 
1011 /*
1012  * alua_activate - activate a path
1013  * @sdev: device on the path to be activated
1014  *
1015  * We're currently switching the port group to be activated only and
1016  * let the array figure out the rest.
1017  * There may be other arrays which require us to switch all port groups
1018  * based on a certain policy. But until we actually encounter them it
1019  * should be okay.
1020  */
alua_activate(struct scsi_device * sdev,activate_complete fn,void * data)1021 static int alua_activate(struct scsi_device *sdev,
1022 			activate_complete fn, void *data)
1023 {
1024 	struct alua_dh_data *h = sdev->handler_data;
1025 	int err = SCSI_DH_OK;
1026 	struct alua_queue_data *qdata;
1027 	struct alua_port_group *pg;
1028 
1029 	qdata = kzalloc(sizeof(*qdata), GFP_KERNEL);
1030 	if (!qdata) {
1031 		err = SCSI_DH_RES_TEMP_UNAVAIL;
1032 		goto out;
1033 	}
1034 	qdata->callback_fn = fn;
1035 	qdata->callback_data = data;
1036 
1037 	mutex_lock(&h->init_mutex);
1038 	rcu_read_lock();
1039 	pg = rcu_dereference(h->pg);
1040 	if (!pg || !kref_get_unless_zero(&pg->kref)) {
1041 		rcu_read_unlock();
1042 		kfree(qdata);
1043 		err = h->init_error;
1044 		mutex_unlock(&h->init_mutex);
1045 		goto out;
1046 	}
1047 	rcu_read_unlock();
1048 	mutex_unlock(&h->init_mutex);
1049 
1050 	if (alua_rtpg_queue(pg, sdev, qdata, true))
1051 		fn = NULL;
1052 	else
1053 		err = SCSI_DH_DEV_OFFLINED;
1054 	kref_put(&pg->kref, release_port_group);
1055 out:
1056 	if (fn)
1057 		fn(data, err);
1058 	return 0;
1059 }
1060 
1061 /*
1062  * alua_check - check path status
1063  * @sdev: device on the path to be checked
1064  *
1065  * Check the device status
1066  */
alua_check(struct scsi_device * sdev,bool force)1067 static void alua_check(struct scsi_device *sdev, bool force)
1068 {
1069 	struct alua_dh_data *h = sdev->handler_data;
1070 	struct alua_port_group *pg;
1071 
1072 	rcu_read_lock();
1073 	pg = rcu_dereference(h->pg);
1074 	if (!pg || !kref_get_unless_zero(&pg->kref)) {
1075 		rcu_read_unlock();
1076 		return;
1077 	}
1078 	rcu_read_unlock();
1079 
1080 	alua_rtpg_queue(pg, sdev, NULL, force);
1081 	kref_put(&pg->kref, release_port_group);
1082 }
1083 
1084 /*
1085  * alua_prep_fn - request callback
1086  *
1087  * Fail I/O to all paths not in state
1088  * active/optimized or active/non-optimized.
1089  */
alua_prep_fn(struct scsi_device * sdev,struct request * req)1090 static int alua_prep_fn(struct scsi_device *sdev, struct request *req)
1091 {
1092 	struct alua_dh_data *h = sdev->handler_data;
1093 	struct alua_port_group *pg;
1094 	unsigned char state = SCSI_ACCESS_STATE_OPTIMAL;
1095 	int ret = BLKPREP_OK;
1096 
1097 	rcu_read_lock();
1098 	pg = rcu_dereference(h->pg);
1099 	if (pg)
1100 		state = pg->state;
1101 	rcu_read_unlock();
1102 	if (state == SCSI_ACCESS_STATE_TRANSITIONING)
1103 		ret = BLKPREP_DEFER;
1104 	else if (state != SCSI_ACCESS_STATE_OPTIMAL &&
1105 		 state != SCSI_ACCESS_STATE_ACTIVE &&
1106 		 state != SCSI_ACCESS_STATE_LBA) {
1107 		ret = BLKPREP_KILL;
1108 		req->rq_flags |= RQF_QUIET;
1109 	}
1110 	return ret;
1111 
1112 }
1113 
alua_rescan(struct scsi_device * sdev)1114 static void alua_rescan(struct scsi_device *sdev)
1115 {
1116 	struct alua_dh_data *h = sdev->handler_data;
1117 
1118 	alua_initialize(sdev, h);
1119 }
1120 
1121 /*
1122  * alua_bus_attach - Attach device handler
1123  * @sdev: device to be attached to
1124  */
alua_bus_attach(struct scsi_device * sdev)1125 static int alua_bus_attach(struct scsi_device *sdev)
1126 {
1127 	struct alua_dh_data *h;
1128 	int err;
1129 
1130 	h = kzalloc(sizeof(*h) , GFP_KERNEL);
1131 	if (!h)
1132 		return SCSI_DH_NOMEM;
1133 	spin_lock_init(&h->pg_lock);
1134 	rcu_assign_pointer(h->pg, NULL);
1135 	h->init_error = SCSI_DH_OK;
1136 	h->sdev = sdev;
1137 	INIT_LIST_HEAD(&h->node);
1138 
1139 	mutex_init(&h->init_mutex);
1140 	err = alua_initialize(sdev, h);
1141 	if (err != SCSI_DH_OK && err != SCSI_DH_DEV_OFFLINED)
1142 		goto failed;
1143 
1144 	sdev->handler_data = h;
1145 	return SCSI_DH_OK;
1146 failed:
1147 	kfree(h);
1148 	return err;
1149 }
1150 
1151 /*
1152  * alua_bus_detach - Detach device handler
1153  * @sdev: device to be detached from
1154  */
alua_bus_detach(struct scsi_device * sdev)1155 static void alua_bus_detach(struct scsi_device *sdev)
1156 {
1157 	struct alua_dh_data *h = sdev->handler_data;
1158 	struct alua_port_group *pg;
1159 
1160 	spin_lock(&h->pg_lock);
1161 	pg = rcu_dereference_protected(h->pg, lockdep_is_held(&h->pg_lock));
1162 	rcu_assign_pointer(h->pg, NULL);
1163 	h->sdev = NULL;
1164 	spin_unlock(&h->pg_lock);
1165 	if (pg) {
1166 		spin_lock_irq(&pg->lock);
1167 		list_del_rcu(&h->node);
1168 		spin_unlock_irq(&pg->lock);
1169 		kref_put(&pg->kref, release_port_group);
1170 	}
1171 	sdev->handler_data = NULL;
1172 	kfree(h);
1173 }
1174 
1175 static struct scsi_device_handler alua_dh = {
1176 	.name = ALUA_DH_NAME,
1177 	.module = THIS_MODULE,
1178 	.attach = alua_bus_attach,
1179 	.detach = alua_bus_detach,
1180 	.prep_fn = alua_prep_fn,
1181 	.check_sense = alua_check_sense,
1182 	.activate = alua_activate,
1183 	.rescan = alua_rescan,
1184 	.set_params = alua_set_params,
1185 };
1186 
alua_init(void)1187 static int __init alua_init(void)
1188 {
1189 	int r;
1190 
1191 	kaluad_wq = alloc_workqueue("kaluad", WQ_MEM_RECLAIM, 0);
1192 	if (!kaluad_wq)
1193 		return -ENOMEM;
1194 
1195 	r = scsi_register_device_handler(&alua_dh);
1196 	if (r != 0) {
1197 		printk(KERN_ERR "%s: Failed to register scsi device handler",
1198 			ALUA_DH_NAME);
1199 		destroy_workqueue(kaluad_wq);
1200 	}
1201 	return r;
1202 }
1203 
alua_exit(void)1204 static void __exit alua_exit(void)
1205 {
1206 	scsi_unregister_device_handler(&alua_dh);
1207 	destroy_workqueue(kaluad_wq);
1208 }
1209 
1210 module_init(alua_init);
1211 module_exit(alua_exit);
1212 
1213 MODULE_DESCRIPTION("DM Multipath ALUA support");
1214 MODULE_AUTHOR("Hannes Reinecke <hare@suse.de>");
1215 MODULE_LICENSE("GPL");
1216 MODULE_VERSION(ALUA_DH_VER);
1217