2 * multipath.c : Multiple Devices driver for Linux
4 * Copyright (C) 1999, 2000, 2001 Ingo Molnar, Red Hat
6 * Copyright (C) 1996, 1997, 1998 Ingo Molnar, Miguel de Icaza, Gadi Oxman
8 * MULTIPATH management functions.
10 * derived from raid1.c.
12 * This program is free software; you can redistribute it and/or modify
13 * it under the terms of the GNU General Public License as published by
14 * the Free Software Foundation; either version 2, or (at your option)
17 * You should have received a copy of the GNU General Public License
18 * (for example /usr/src/linux/COPYING); if not, write to the Free
19 * Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
22 #include <linux/blkdev.h>
23 #include <linux/raid/md_u.h>
24 #include <linux/seq_file.h>
25 #include <linux/slab.h>
27 #include "multipath.h"
29 #define MAX_WORK_PER_DISK 128
31 #define NR_RESERVED_BUFS 32
34 static int multipath_map (multipath_conf_t
*conf
)
36 int i
, disks
= conf
->raid_disks
;
39 * Later we do read balancing on the read side
40 * now we use the first available disk.
44 for (i
= 0; i
< disks
; i
++) {
45 mdk_rdev_t
*rdev
= rcu_dereference(conf
->multipaths
[i
].rdev
);
46 if (rdev
&& test_bit(In_sync
, &rdev
->flags
)) {
47 atomic_inc(&rdev
->nr_pending
);
54 printk(KERN_ERR
"multipath_map(): no more operational IO paths?\n");
58 static void multipath_reschedule_retry (struct multipath_bh
*mp_bh
)
61 mddev_t
*mddev
= mp_bh
->mddev
;
62 multipath_conf_t
*conf
= mddev
->private;
64 spin_lock_irqsave(&conf
->device_lock
, flags
);
65 list_add(&mp_bh
->retry_list
, &conf
->retry_list
);
66 spin_unlock_irqrestore(&conf
->device_lock
, flags
);
67 md_wakeup_thread(mddev
->thread
);
72 * multipath_end_bh_io() is called when we have finished servicing a multipathed
73 * operation and are ready to return a success/failure code to the buffer
76 static void multipath_end_bh_io (struct multipath_bh
*mp_bh
, int err
)
78 struct bio
*bio
= mp_bh
->master_bio
;
79 multipath_conf_t
*conf
= mp_bh
->mddev
->private;
82 mempool_free(mp_bh
, conf
->pool
);
85 static void multipath_end_request(struct bio
*bio
, int error
)
87 int uptodate
= test_bit(BIO_UPTODATE
, &bio
->bi_flags
);
88 struct multipath_bh
*mp_bh
= bio
->bi_private
;
89 multipath_conf_t
*conf
= mp_bh
->mddev
->private;
90 mdk_rdev_t
*rdev
= conf
->multipaths
[mp_bh
->path
].rdev
;
93 multipath_end_bh_io(mp_bh
, 0);
94 else if (!(bio
->bi_rw
& REQ_RAHEAD
)) {
98 char b
[BDEVNAME_SIZE
];
99 md_error (mp_bh
->mddev
, rdev
);
100 printk(KERN_ERR
"multipath: %s: rescheduling sector %llu\n",
101 bdevname(rdev
->bdev
,b
),
102 (unsigned long long)bio
->bi_sector
);
103 multipath_reschedule_retry(mp_bh
);
105 multipath_end_bh_io(mp_bh
, error
);
106 rdev_dec_pending(rdev
, conf
->mddev
);
109 static int multipath_make_request(mddev_t
*mddev
, struct bio
* bio
)
111 multipath_conf_t
*conf
= mddev
->private;
112 struct multipath_bh
* mp_bh
;
113 struct multipath_info
*multipath
;
115 if (unlikely(bio
->bi_rw
& REQ_FLUSH
)) {
116 md_flush_request(mddev
, bio
);
120 mp_bh
= mempool_alloc(conf
->pool
, GFP_NOIO
);
122 mp_bh
->master_bio
= bio
;
123 mp_bh
->mddev
= mddev
;
125 mp_bh
->path
= multipath_map(conf
);
126 if (mp_bh
->path
< 0) {
127 bio_endio(bio
, -EIO
);
128 mempool_free(mp_bh
, conf
->pool
);
131 multipath
= conf
->multipaths
+ mp_bh
->path
;
134 mp_bh
->bio
.bi_sector
+= multipath
->rdev
->data_offset
;
135 mp_bh
->bio
.bi_bdev
= multipath
->rdev
->bdev
;
136 mp_bh
->bio
.bi_rw
|= REQ_FAILFAST_TRANSPORT
;
137 mp_bh
->bio
.bi_end_io
= multipath_end_request
;
138 mp_bh
->bio
.bi_private
= mp_bh
;
139 generic_make_request(&mp_bh
->bio
);
143 static void multipath_status (struct seq_file
*seq
, mddev_t
*mddev
)
145 multipath_conf_t
*conf
= mddev
->private;
148 seq_printf (seq
, " [%d/%d] [", conf
->raid_disks
,
149 conf
->working_disks
);
150 for (i
= 0; i
< conf
->raid_disks
; i
++)
151 seq_printf (seq
, "%s",
152 conf
->multipaths
[i
].rdev
&&
153 test_bit(In_sync
, &conf
->multipaths
[i
].rdev
->flags
) ? "U" : "_");
154 seq_printf (seq
, "]");
157 static int multipath_congested(void *data
, int bits
)
159 mddev_t
*mddev
= data
;
160 multipath_conf_t
*conf
= mddev
->private;
163 if (mddev_congested(mddev
, bits
))
167 for (i
= 0; i
< mddev
->raid_disks
; i
++) {
168 mdk_rdev_t
*rdev
= rcu_dereference(conf
->multipaths
[i
].rdev
);
169 if (rdev
&& !test_bit(Faulty
, &rdev
->flags
)) {
170 struct request_queue
*q
= bdev_get_queue(rdev
->bdev
);
172 ret
|= bdi_congested(&q
->backing_dev_info
, bits
);
173 /* Just like multipath_map, we just check the
174 * first available device
184 * Careful, this can execute in IRQ contexts as well!
186 static void multipath_error (mddev_t
*mddev
, mdk_rdev_t
*rdev
)
188 multipath_conf_t
*conf
= mddev
->private;
190 if (conf
->working_disks
<= 1) {
192 * Uh oh, we can do nothing if this is our last path, but
193 * first check if this is a queued request for a device
194 * which has just failed.
197 "multipath: only one IO path left and IO error.\n");
198 /* leave it active... it's all we have */
201 * Mark disk as unusable
203 if (!test_bit(Faulty
, &rdev
->flags
)) {
204 char b
[BDEVNAME_SIZE
];
205 clear_bit(In_sync
, &rdev
->flags
);
206 set_bit(Faulty
, &rdev
->flags
);
207 set_bit(MD_CHANGE_DEVS
, &mddev
->flags
);
208 conf
->working_disks
--;
210 printk(KERN_ALERT
"multipath: IO failure on %s,"
211 " disabling IO path.\n"
212 "multipath: Operation continuing"
213 " on %d IO paths.\n",
214 bdevname (rdev
->bdev
,b
),
215 conf
->working_disks
);
220 static void print_multipath_conf (multipath_conf_t
*conf
)
223 struct multipath_info
*tmp
;
225 printk("MULTIPATH conf printout:\n");
227 printk("(conf==NULL)\n");
230 printk(" --- wd:%d rd:%d\n", conf
->working_disks
,
233 for (i
= 0; i
< conf
->raid_disks
; i
++) {
234 char b
[BDEVNAME_SIZE
];
235 tmp
= conf
->multipaths
+ i
;
237 printk(" disk%d, o:%d, dev:%s\n",
238 i
,!test_bit(Faulty
, &tmp
->rdev
->flags
),
239 bdevname(tmp
->rdev
->bdev
,b
));
244 static int multipath_add_disk(mddev_t
*mddev
, mdk_rdev_t
*rdev
)
246 multipath_conf_t
*conf
= mddev
->private;
247 struct request_queue
*q
;
250 struct multipath_info
*p
;
252 int last
= mddev
->raid_disks
- 1;
254 if (rdev
->raid_disk
>= 0)
255 first
= last
= rdev
->raid_disk
;
257 print_multipath_conf(conf
);
259 for (path
= first
; path
<= last
; path
++)
260 if ((p
=conf
->multipaths
+path
)->rdev
== NULL
) {
261 q
= rdev
->bdev
->bd_disk
->queue
;
262 disk_stack_limits(mddev
->gendisk
, rdev
->bdev
,
263 rdev
->data_offset
<< 9);
265 /* as we don't honour merge_bvec_fn, we must never risk
266 * violating it, so limit ->max_segments to one, lying
267 * within a single page.
268 * (Note: it is very unlikely that a device with
269 * merge_bvec_fn will be involved in multipath.)
271 if (q
->merge_bvec_fn
) {
272 blk_queue_max_segments(mddev
->queue
, 1);
273 blk_queue_segment_boundary(mddev
->queue
,
274 PAGE_CACHE_SIZE
- 1);
277 conf
->working_disks
++;
279 rdev
->raid_disk
= path
;
280 set_bit(In_sync
, &rdev
->flags
);
281 rcu_assign_pointer(p
->rdev
, rdev
);
283 md_integrity_add_rdev(rdev
, mddev
);
287 print_multipath_conf(conf
);
292 static int multipath_remove_disk(mddev_t
*mddev
, int number
)
294 multipath_conf_t
*conf
= mddev
->private;
297 struct multipath_info
*p
= conf
->multipaths
+ number
;
299 print_multipath_conf(conf
);
303 if (test_bit(In_sync
, &rdev
->flags
) ||
304 atomic_read(&rdev
->nr_pending
)) {
305 printk(KERN_ERR
"hot-remove-disk, slot %d is identified"
306 " but is still operational!\n", number
);
312 if (atomic_read(&rdev
->nr_pending
)) {
313 /* lost the race, try later */
318 err
= md_integrity_register(mddev
);
322 print_multipath_conf(conf
);
329 * This is a kernel thread which:
331 * 1. Retries failed read operations on working multipaths.
332 * 2. Updates the raid superblock when problems encounter.
333 * 3. Performs writes following reads for array syncronising.
336 static void multipathd (mddev_t
*mddev
)
338 struct multipath_bh
*mp_bh
;
341 multipath_conf_t
*conf
= mddev
->private;
342 struct list_head
*head
= &conf
->retry_list
;
344 md_check_recovery(mddev
);
346 char b
[BDEVNAME_SIZE
];
347 spin_lock_irqsave(&conf
->device_lock
, flags
);
348 if (list_empty(head
))
350 mp_bh
= list_entry(head
->prev
, struct multipath_bh
, retry_list
);
351 list_del(head
->prev
);
352 spin_unlock_irqrestore(&conf
->device_lock
, flags
);
355 bio
->bi_sector
= mp_bh
->master_bio
->bi_sector
;
357 if ((mp_bh
->path
= multipath_map (conf
))<0) {
358 printk(KERN_ALERT
"multipath: %s: unrecoverable IO read"
359 " error for block %llu\n",
360 bdevname(bio
->bi_bdev
,b
),
361 (unsigned long long)bio
->bi_sector
);
362 multipath_end_bh_io(mp_bh
, -EIO
);
364 printk(KERN_ERR
"multipath: %s: redirecting sector %llu"
365 " to another IO path\n",
366 bdevname(bio
->bi_bdev
,b
),
367 (unsigned long long)bio
->bi_sector
);
368 *bio
= *(mp_bh
->master_bio
);
369 bio
->bi_sector
+= conf
->multipaths
[mp_bh
->path
].rdev
->data_offset
;
370 bio
->bi_bdev
= conf
->multipaths
[mp_bh
->path
].rdev
->bdev
;
371 bio
->bi_rw
|= REQ_FAILFAST_TRANSPORT
;
372 bio
->bi_end_io
= multipath_end_request
;
373 bio
->bi_private
= mp_bh
;
374 generic_make_request(bio
);
377 spin_unlock_irqrestore(&conf
->device_lock
, flags
);
380 static sector_t
multipath_size(mddev_t
*mddev
, sector_t sectors
, int raid_disks
)
382 WARN_ONCE(sectors
|| raid_disks
,
383 "%s does not support generic reshape\n", __func__
);
385 return mddev
->dev_sectors
;
388 static int multipath_run (mddev_t
*mddev
)
390 multipath_conf_t
*conf
;
392 struct multipath_info
*disk
;
395 if (md_check_no_bitmap(mddev
))
398 if (mddev
->level
!= LEVEL_MULTIPATH
) {
399 printk("multipath: %s: raid level not set to multipath IO (%d)\n",
400 mdname(mddev
), mddev
->level
);
404 * copy the already verified devices into our private MULTIPATH
405 * bookkeeping area. [whatever we allocate in multipath_run(),
406 * should be freed in multipath_stop()]
409 conf
= kzalloc(sizeof(multipath_conf_t
), GFP_KERNEL
);
410 mddev
->private = conf
;
413 "multipath: couldn't allocate memory for %s\n",
418 conf
->multipaths
= kzalloc(sizeof(struct multipath_info
)*mddev
->raid_disks
,
420 if (!conf
->multipaths
) {
422 "multipath: couldn't allocate memory for %s\n",
427 conf
->working_disks
= 0;
428 list_for_each_entry(rdev
, &mddev
->disks
, same_set
) {
429 disk_idx
= rdev
->raid_disk
;
431 disk_idx
>= mddev
->raid_disks
)
434 disk
= conf
->multipaths
+ disk_idx
;
436 disk_stack_limits(mddev
->gendisk
, rdev
->bdev
,
437 rdev
->data_offset
<< 9);
439 /* as we don't honour merge_bvec_fn, we must never risk
440 * violating it, not that we ever expect a device with
441 * a merge_bvec_fn to be involved in multipath */
442 if (rdev
->bdev
->bd_disk
->queue
->merge_bvec_fn
) {
443 blk_queue_max_segments(mddev
->queue
, 1);
444 blk_queue_segment_boundary(mddev
->queue
,
445 PAGE_CACHE_SIZE
- 1);
448 if (!test_bit(Faulty
, &rdev
->flags
))
449 conf
->working_disks
++;
452 conf
->raid_disks
= mddev
->raid_disks
;
454 spin_lock_init(&conf
->device_lock
);
455 INIT_LIST_HEAD(&conf
->retry_list
);
457 if (!conf
->working_disks
) {
458 printk(KERN_ERR
"multipath: no operational IO paths for %s\n",
462 mddev
->degraded
= conf
->raid_disks
- conf
->working_disks
;
464 conf
->pool
= mempool_create_kmalloc_pool(NR_RESERVED_BUFS
,
465 sizeof(struct multipath_bh
));
466 if (conf
->pool
== NULL
) {
468 "multipath: couldn't allocate memory for %s\n",
474 mddev
->thread
= md_register_thread(multipathd
, mddev
, NULL
);
475 if (!mddev
->thread
) {
476 printk(KERN_ERR
"multipath: couldn't allocate thread"
477 " for %s\n", mdname(mddev
));
483 "multipath: array %s active with %d out of %d IO paths\n",
484 mdname(mddev
), conf
->working_disks
, mddev
->raid_disks
);
486 * Ok, everything is just fine now
488 md_set_array_sectors(mddev
, multipath_size(mddev
, 0, 0));
490 mddev
->queue
->backing_dev_info
.congested_fn
= multipath_congested
;
491 mddev
->queue
->backing_dev_info
.congested_data
= mddev
;
493 if (md_integrity_register(mddev
))
500 mempool_destroy(conf
->pool
);
501 kfree(conf
->multipaths
);
503 mddev
->private = NULL
;
509 static int multipath_stop (mddev_t
*mddev
)
511 multipath_conf_t
*conf
= mddev
->private;
513 md_unregister_thread(mddev
->thread
);
514 mddev
->thread
= NULL
;
515 blk_sync_queue(mddev
->queue
); /* the unplug fn references 'conf'*/
516 mempool_destroy(conf
->pool
);
517 kfree(conf
->multipaths
);
519 mddev
->private = NULL
;
523 static struct mdk_personality multipath_personality
=
526 .level
= LEVEL_MULTIPATH
,
527 .owner
= THIS_MODULE
,
528 .make_request
= multipath_make_request
,
529 .run
= multipath_run
,
530 .stop
= multipath_stop
,
531 .status
= multipath_status
,
532 .error_handler
= multipath_error
,
533 .hot_add_disk
= multipath_add_disk
,
534 .hot_remove_disk
= multipath_remove_disk
,
535 .size
= multipath_size
,
538 static int __init
multipath_init (void)
540 return register_md_personality (&multipath_personality
);
543 static void __exit
multipath_exit (void)
545 unregister_md_personality (&multipath_personality
);
548 module_init(multipath_init
);
549 module_exit(multipath_exit
);
550 MODULE_LICENSE("GPL");
551 MODULE_DESCRIPTION("simple multi-path personality for MD");
552 MODULE_ALIAS("md-personality-7"); /* MULTIPATH */
553 MODULE_ALIAS("md-multipath");
554 MODULE_ALIAS("md-level--4");