2 * Copyright (C) 2015, SUSE
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License as published by
6 * the Free Software Foundation; either version 2, or (at your option)
12 #include <linux/module.h>
13 #include <linux/kthread.h>
14 #include <linux/dlm.h>
15 #include <linux/sched.h>
16 #include <linux/raid/md_p.h>
18 #include "md-bitmap.h"
19 #include "md-cluster.h"
22 #define NEW_DEV_TIMEOUT 5000
24 struct dlm_lock_resource {
27 char *name; /* lock name. */
28 uint32_t flags; /* flags to pass to dlm_lock() */
29 wait_queue_head_t sync_locking; /* wait queue for synchronized locking */
30 bool sync_locking_done;
31 void (*bast)(void *arg, int mode); /* blocking AST function pointer*/
32 struct mddev *mddev; /* pointing back to mddev. */
40 struct list_head list;
48 /* md_cluster_info flags */
49 #define MD_CLUSTER_WAITING_FOR_NEWDISK 1
50 #define MD_CLUSTER_SUSPEND_READ_BALANCING 2
51 #define MD_CLUSTER_BEGIN_JOIN_CLUSTER 3
53 /* Lock the send communication. This is done through
54 * bit manipulation as opposed to a mutex in order to
55 * accomodate lock and hold. See next comment.
57 #define MD_CLUSTER_SEND_LOCK 4
58 /* If cluster operations (such as adding a disk) must lock the
59 * communication channel, so as to perform extra operations
60 * (update metadata) and no other operation is allowed on the
61 * MD. Token needs to be locked and held until the operation
62 * completes witha md_update_sb(), which would eventually release
65 #define MD_CLUSTER_SEND_LOCKED_ALREADY 5
66 /* We should receive message after node joined cluster and
67 * set up all the related infos such as bitmap and personality */
68 #define MD_CLUSTER_ALREADY_IN_CLUSTER 6
69 #define MD_CLUSTER_PENDING_RECV_EVENT 7
70 #define MD_CLUSTER_HOLDING_MUTEX_FOR_RECVD 8
72 struct md_cluster_info {
73 struct mddev *mddev; /* the md device which md_cluster_info belongs to */
74 /* dlm lock space and resources for clustered raid. */
75 dlm_lockspace_t *lockspace;
77 struct completion completion;
78 struct mutex recv_mutex;
79 struct dlm_lock_resource *bitmap_lockres;
80 struct dlm_lock_resource **other_bitmap_lockres;
81 struct dlm_lock_resource *resync_lockres;
82 struct list_head suspend_list;
83 spinlock_t suspend_lock;
84 struct md_thread *recovery_thread;
85 unsigned long recovery_map;
86 /* communication loc resources */
87 struct dlm_lock_resource *ack_lockres;
88 struct dlm_lock_resource *message_lockres;
89 struct dlm_lock_resource *token_lockres;
90 struct dlm_lock_resource *no_new_dev_lockres;
91 struct md_thread *recv_thread;
92 struct completion newdisk_completion;
93 wait_queue_head_t wait;
95 /* record the region in RESYNCING message */
101 METADATA_UPDATED = 0,
113 /* TODO: Unionize this for smaller footprint */
120 static void sync_ast(void *arg)
122 struct dlm_lock_resource *res;
125 res->sync_locking_done = true;
126 wake_up(&res->sync_locking);
129 static int dlm_lock_sync(struct dlm_lock_resource *res, int mode)
133 ret = dlm_lock(res->ls, mode, &res->lksb,
134 res->flags, res->name, strlen(res->name),
135 0, sync_ast, res, res->bast);
138 wait_event(res->sync_locking, res->sync_locking_done);
139 res->sync_locking_done = false;
140 if (res->lksb.sb_status == 0)
142 return res->lksb.sb_status;
145 static int dlm_unlock_sync(struct dlm_lock_resource *res)
147 return dlm_lock_sync(res, DLM_LOCK_NL);
151 * An variation of dlm_lock_sync, which make lock request could
154 static int dlm_lock_sync_interruptible(struct dlm_lock_resource *res, int mode,
159 ret = dlm_lock(res->ls, mode, &res->lksb,
160 res->flags, res->name, strlen(res->name),
161 0, sync_ast, res, res->bast);
165 wait_event(res->sync_locking, res->sync_locking_done
166 || kthread_should_stop()
167 || test_bit(MD_CLOSING, &mddev->flags));
168 if (!res->sync_locking_done) {
170 * the convert queue contains the lock request when request is
171 * interrupted, and sync_ast could still be run, so need to
172 * cancel the request and reset completion
174 ret = dlm_unlock(res->ls, res->lksb.sb_lkid, DLM_LKF_CANCEL,
176 res->sync_locking_done = false;
177 if (unlikely(ret != 0))
178 pr_info("failed to cancel previous lock request "
179 "%s return %d\n", res->name, ret);
182 res->sync_locking_done = false;
183 if (res->lksb.sb_status == 0)
185 return res->lksb.sb_status;
188 static struct dlm_lock_resource *lockres_init(struct mddev *mddev,
189 char *name, void (*bastfn)(void *arg, int mode), int with_lvb)
191 struct dlm_lock_resource *res = NULL;
193 struct md_cluster_info *cinfo = mddev->cluster_info;
195 res = kzalloc(sizeof(struct dlm_lock_resource), GFP_KERNEL);
198 init_waitqueue_head(&res->sync_locking);
199 res->sync_locking_done = false;
200 res->ls = cinfo->lockspace;
202 res->mode = DLM_LOCK_IV;
203 namelen = strlen(name);
204 res->name = kzalloc(namelen + 1, GFP_KERNEL);
206 pr_err("md-cluster: Unable to allocate resource name for resource %s\n", name);
209 strlcpy(res->name, name, namelen + 1);
211 res->lksb.sb_lvbptr = kzalloc(LVB_SIZE, GFP_KERNEL);
212 if (!res->lksb.sb_lvbptr) {
213 pr_err("md-cluster: Unable to allocate LVB for resource %s\n", name);
216 res->flags = DLM_LKF_VALBLK;
222 res->flags |= DLM_LKF_EXPEDITE;
224 ret = dlm_lock_sync(res, DLM_LOCK_NL);
226 pr_err("md-cluster: Unable to lock NL on new lock resource %s\n", name);
229 res->flags &= ~DLM_LKF_EXPEDITE;
230 res->flags |= DLM_LKF_CONVERT;
234 kfree(res->lksb.sb_lvbptr);
240 static void lockres_free(struct dlm_lock_resource *res)
248 * use FORCEUNLOCK flag, so we can unlock even the lock is on the
249 * waiting or convert queue
251 ret = dlm_unlock(res->ls, res->lksb.sb_lkid, DLM_LKF_FORCEUNLOCK,
253 if (unlikely(ret != 0))
254 pr_err("failed to unlock %s return %d\n", res->name, ret);
256 wait_event(res->sync_locking, res->sync_locking_done);
259 kfree(res->lksb.sb_lvbptr);
263 static void add_resync_info(struct dlm_lock_resource *lockres,
264 sector_t lo, sector_t hi)
266 struct resync_info *ri;
268 ri = (struct resync_info *)lockres->lksb.sb_lvbptr;
269 ri->lo = cpu_to_le64(lo);
270 ri->hi = cpu_to_le64(hi);
273 static struct suspend_info *read_resync_info(struct mddev *mddev, struct dlm_lock_resource *lockres)
275 struct resync_info ri;
276 struct suspend_info *s = NULL;
279 dlm_lock_sync(lockres, DLM_LOCK_CR);
280 memcpy(&ri, lockres->lksb.sb_lvbptr, sizeof(struct resync_info));
281 hi = le64_to_cpu(ri.hi);
283 s = kzalloc(sizeof(struct suspend_info), GFP_KERNEL);
287 s->lo = le64_to_cpu(ri.lo);
289 dlm_unlock_sync(lockres);
294 static void recover_bitmaps(struct md_thread *thread)
296 struct mddev *mddev = thread->mddev;
297 struct md_cluster_info *cinfo = mddev->cluster_info;
298 struct dlm_lock_resource *bm_lockres;
301 struct suspend_info *s, *tmp;
304 while (cinfo->recovery_map) {
305 slot = fls64((u64)cinfo->recovery_map) - 1;
307 snprintf(str, 64, "bitmap%04d", slot);
308 bm_lockres = lockres_init(mddev, str, NULL, 1);
310 pr_err("md-cluster: Cannot initialize bitmaps\n");
314 ret = dlm_lock_sync_interruptible(bm_lockres, DLM_LOCK_PW, mddev);
316 pr_err("md-cluster: Could not DLM lock %s: %d\n",
320 ret = md_bitmap_copy_from_slot(mddev, slot, &lo, &hi, true);
322 pr_err("md-cluster: Could not copy data from bitmap %d\n", slot);
326 /* Clear suspend_area associated with the bitmap */
327 spin_lock_irq(&cinfo->suspend_lock);
328 list_for_each_entry_safe(s, tmp, &cinfo->suspend_list, list)
329 if (slot == s->slot) {
333 spin_unlock_irq(&cinfo->suspend_lock);
336 if (lo < mddev->recovery_cp)
337 mddev->recovery_cp = lo;
338 /* wake up thread to continue resync in case resync
340 if (mddev->recovery_cp != MaxSector) {
342 * clear the REMOTE flag since we will launch
343 * resync thread in current node.
345 clear_bit(MD_RESYNCING_REMOTE,
347 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
348 md_wakeup_thread(mddev->thread);
352 lockres_free(bm_lockres);
353 clear_bit(slot, &cinfo->recovery_map);
357 static void recover_prep(void *arg)
359 struct mddev *mddev = arg;
360 struct md_cluster_info *cinfo = mddev->cluster_info;
361 set_bit(MD_CLUSTER_SUSPEND_READ_BALANCING, &cinfo->state);
364 static void __recover_slot(struct mddev *mddev, int slot)
366 struct md_cluster_info *cinfo = mddev->cluster_info;
368 set_bit(slot, &cinfo->recovery_map);
369 if (!cinfo->recovery_thread) {
370 cinfo->recovery_thread = md_register_thread(recover_bitmaps,
372 if (!cinfo->recovery_thread) {
373 pr_warn("md-cluster: Could not create recovery thread\n");
377 md_wakeup_thread(cinfo->recovery_thread);
380 static void recover_slot(void *arg, struct dlm_slot *slot)
382 struct mddev *mddev = arg;
383 struct md_cluster_info *cinfo = mddev->cluster_info;
385 pr_info("md-cluster: %s Node %d/%d down. My slot: %d. Initiating recovery.\n",
386 mddev->bitmap_info.cluster_name,
387 slot->nodeid, slot->slot,
389 /* deduct one since dlm slot starts from one while the num of
390 * cluster-md begins with 0 */
391 __recover_slot(mddev, slot->slot - 1);
394 static void recover_done(void *arg, struct dlm_slot *slots,
395 int num_slots, int our_slot,
398 struct mddev *mddev = arg;
399 struct md_cluster_info *cinfo = mddev->cluster_info;
401 cinfo->slot_number = our_slot;
402 /* completion is only need to be complete when node join cluster,
403 * it doesn't need to run during another node's failure */
404 if (test_bit(MD_CLUSTER_BEGIN_JOIN_CLUSTER, &cinfo->state)) {
405 complete(&cinfo->completion);
406 clear_bit(MD_CLUSTER_BEGIN_JOIN_CLUSTER, &cinfo->state);
408 clear_bit(MD_CLUSTER_SUSPEND_READ_BALANCING, &cinfo->state);
411 /* the ops is called when node join the cluster, and do lock recovery
412 * if node failure occurs */
413 static const struct dlm_lockspace_ops md_ls_ops = {
414 .recover_prep = recover_prep,
415 .recover_slot = recover_slot,
416 .recover_done = recover_done,
420 * The BAST function for the ack lock resource
421 * This function wakes up the receive thread in
422 * order to receive and process the message.
424 static void ack_bast(void *arg, int mode)
426 struct dlm_lock_resource *res = arg;
427 struct md_cluster_info *cinfo = res->mddev->cluster_info;
429 if (mode == DLM_LOCK_EX) {
430 if (test_bit(MD_CLUSTER_ALREADY_IN_CLUSTER, &cinfo->state))
431 md_wakeup_thread(cinfo->recv_thread);
433 set_bit(MD_CLUSTER_PENDING_RECV_EVENT, &cinfo->state);
437 static void __remove_suspend_info(struct md_cluster_info *cinfo, int slot)
439 struct suspend_info *s, *tmp;
441 list_for_each_entry_safe(s, tmp, &cinfo->suspend_list, list)
442 if (slot == s->slot) {
449 static void remove_suspend_info(struct mddev *mddev, int slot)
451 struct md_cluster_info *cinfo = mddev->cluster_info;
452 mddev->pers->quiesce(mddev, 1);
453 spin_lock_irq(&cinfo->suspend_lock);
454 __remove_suspend_info(cinfo, slot);
455 spin_unlock_irq(&cinfo->suspend_lock);
456 mddev->pers->quiesce(mddev, 0);
460 static void process_suspend_info(struct mddev *mddev,
461 int slot, sector_t lo, sector_t hi)
463 struct md_cluster_info *cinfo = mddev->cluster_info;
464 struct suspend_info *s;
468 * clear the REMOTE flag since resync or recovery is finished
471 clear_bit(MD_RESYNCING_REMOTE, &mddev->recovery);
472 remove_suspend_info(mddev, slot);
473 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
474 md_wakeup_thread(mddev->thread);
479 * The bitmaps are not same for different nodes
480 * if RESYNCING is happening in one node, then
481 * the node which received the RESYNCING message
482 * probably will perform resync with the region
483 * [lo, hi] again, so we could reduce resync time
484 * a lot if we can ensure that the bitmaps among
485 * different nodes are match up well.
487 * sync_low/hi is used to record the region which
488 * arrived in the previous RESYNCING message,
490 * Call bitmap_sync_with_cluster to clear
491 * NEEDED_MASK and set RESYNC_MASK since
492 * resync thread is running in another node,
493 * so we don't need to do the resync again
494 * with the same section */
495 md_bitmap_sync_with_cluster(mddev, cinfo->sync_low, cinfo->sync_hi, lo, hi);
496 cinfo->sync_low = lo;
499 s = kzalloc(sizeof(struct suspend_info), GFP_KERNEL);
505 mddev->pers->quiesce(mddev, 1);
506 spin_lock_irq(&cinfo->suspend_lock);
507 /* Remove existing entry (if exists) before adding */
508 __remove_suspend_info(cinfo, slot);
509 list_add(&s->list, &cinfo->suspend_list);
510 spin_unlock_irq(&cinfo->suspend_lock);
511 mddev->pers->quiesce(mddev, 0);
514 static void process_add_new_disk(struct mddev *mddev, struct cluster_msg *cmsg)
517 struct md_cluster_info *cinfo = mddev->cluster_info;
518 char event_name[] = "EVENT=ADD_DEVICE";
520 char *envp[] = {event_name, disk_uuid, raid_slot, NULL};
523 len = snprintf(disk_uuid, 64, "DEVICE_UUID=");
524 sprintf(disk_uuid + len, "%pU", cmsg->uuid);
525 snprintf(raid_slot, 16, "RAID_DISK=%d", le32_to_cpu(cmsg->raid_slot));
526 pr_info("%s:%d Sending kobject change with %s and %s\n", __func__, __LINE__, disk_uuid, raid_slot);
527 init_completion(&cinfo->newdisk_completion);
528 set_bit(MD_CLUSTER_WAITING_FOR_NEWDISK, &cinfo->state);
529 kobject_uevent_env(&disk_to_dev(mddev->gendisk)->kobj, KOBJ_CHANGE, envp);
530 wait_for_completion_timeout(&cinfo->newdisk_completion,
532 clear_bit(MD_CLUSTER_WAITING_FOR_NEWDISK, &cinfo->state);
536 static void process_metadata_update(struct mddev *mddev, struct cluster_msg *msg)
539 struct md_cluster_info *cinfo = mddev->cluster_info;
540 mddev->good_device_nr = le32_to_cpu(msg->raid_slot);
542 dlm_lock_sync(cinfo->no_new_dev_lockres, DLM_LOCK_CR);
543 wait_event(mddev->thread->wqueue,
544 (got_lock = mddev_trylock(mddev)) ||
545 test_bit(MD_CLUSTER_HOLDING_MUTEX_FOR_RECVD, &cinfo->state));
546 md_reload_sb(mddev, mddev->good_device_nr);
551 static void process_remove_disk(struct mddev *mddev, struct cluster_msg *msg)
553 struct md_rdev *rdev;
556 rdev = md_find_rdev_nr_rcu(mddev, le32_to_cpu(msg->raid_slot));
558 set_bit(ClusterRemove, &rdev->flags);
559 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
560 md_wakeup_thread(mddev->thread);
563 pr_warn("%s: %d Could not find disk(%d) to REMOVE\n",
564 __func__, __LINE__, le32_to_cpu(msg->raid_slot));
568 static void process_readd_disk(struct mddev *mddev, struct cluster_msg *msg)
570 struct md_rdev *rdev;
573 rdev = md_find_rdev_nr_rcu(mddev, le32_to_cpu(msg->raid_slot));
574 if (rdev && test_bit(Faulty, &rdev->flags))
575 clear_bit(Faulty, &rdev->flags);
577 pr_warn("%s: %d Could not find disk(%d) which is faulty",
578 __func__, __LINE__, le32_to_cpu(msg->raid_slot));
582 static int process_recvd_msg(struct mddev *mddev, struct cluster_msg *msg)
586 if (WARN(mddev->cluster_info->slot_number - 1 == le32_to_cpu(msg->slot),
587 "node %d received it's own msg\n", le32_to_cpu(msg->slot)))
589 switch (le32_to_cpu(msg->type)) {
590 case METADATA_UPDATED:
591 process_metadata_update(mddev, msg);
593 case CHANGE_CAPACITY:
594 set_capacity(mddev->gendisk, mddev->array_sectors);
595 revalidate_disk(mddev->gendisk);
598 set_bit(MD_RESYNCING_REMOTE, &mddev->recovery);
599 process_suspend_info(mddev, le32_to_cpu(msg->slot),
600 le64_to_cpu(msg->low),
601 le64_to_cpu(msg->high));
604 process_add_new_disk(mddev, msg);
607 process_remove_disk(mddev, msg);
610 process_readd_disk(mddev, msg);
612 case BITMAP_NEEDS_SYNC:
613 __recover_slot(mddev, le32_to_cpu(msg->slot));
617 pr_warn("%s:%d Received unknown message from %d\n",
618 __func__, __LINE__, msg->slot);
624 * thread for receiving message
626 static void recv_daemon(struct md_thread *thread)
628 struct md_cluster_info *cinfo = thread->mddev->cluster_info;
629 struct dlm_lock_resource *ack_lockres = cinfo->ack_lockres;
630 struct dlm_lock_resource *message_lockres = cinfo->message_lockres;
631 struct cluster_msg msg;
634 mutex_lock(&cinfo->recv_mutex);
635 /*get CR on Message*/
636 if (dlm_lock_sync(message_lockres, DLM_LOCK_CR)) {
637 pr_err("md/raid1:failed to get CR on MESSAGE\n");
638 mutex_unlock(&cinfo->recv_mutex);
642 /* read lvb and wake up thread to process this message_lockres */
643 memcpy(&msg, message_lockres->lksb.sb_lvbptr, sizeof(struct cluster_msg));
644 ret = process_recvd_msg(thread->mddev, &msg);
648 /*release CR on ack_lockres*/
649 ret = dlm_unlock_sync(ack_lockres);
650 if (unlikely(ret != 0))
651 pr_info("unlock ack failed return %d\n", ret);
652 /*up-convert to PR on message_lockres*/
653 ret = dlm_lock_sync(message_lockres, DLM_LOCK_PR);
654 if (unlikely(ret != 0))
655 pr_info("lock PR on msg failed return %d\n", ret);
656 /*get CR on ack_lockres again*/
657 ret = dlm_lock_sync(ack_lockres, DLM_LOCK_CR);
658 if (unlikely(ret != 0))
659 pr_info("lock CR on ack failed return %d\n", ret);
661 /*release CR on message_lockres*/
662 ret = dlm_unlock_sync(message_lockres);
663 if (unlikely(ret != 0))
664 pr_info("unlock msg failed return %d\n", ret);
665 mutex_unlock(&cinfo->recv_mutex);
669 * Takes the lock on the TOKEN lock resource so no other
670 * node can communicate while the operation is underway.
672 static int lock_token(struct md_cluster_info *cinfo)
676 error = dlm_lock_sync(cinfo->token_lockres, DLM_LOCK_EX);
678 pr_err("md-cluster(%s:%d): failed to get EX on TOKEN (%d)\n",
679 __func__, __LINE__, error);
681 /* Lock the receive sequence */
682 mutex_lock(&cinfo->recv_mutex);
688 * Sets the MD_CLUSTER_SEND_LOCK bit to lock the send channel.
690 static int lock_comm(struct md_cluster_info *cinfo, bool mddev_locked)
693 struct mddev *mddev = cinfo->mddev;
696 * If resync thread run after raid1d thread, then process_metadata_update
697 * could not continue if raid1d held reconfig_mutex (and raid1d is blocked
698 * since another node already got EX on Token and waitting the EX of Ack),
699 * so let resync wake up thread in case flag is set.
701 if (mddev_locked && !test_bit(MD_CLUSTER_HOLDING_MUTEX_FOR_RECVD,
703 rv = test_and_set_bit_lock(MD_CLUSTER_HOLDING_MUTEX_FOR_RECVD,
706 md_wakeup_thread(mddev->thread);
710 wait_event(cinfo->wait,
711 !test_and_set_bit(MD_CLUSTER_SEND_LOCK, &cinfo->state));
712 rv = lock_token(cinfo);
714 clear_bit_unlock(MD_CLUSTER_HOLDING_MUTEX_FOR_RECVD, &cinfo->state);
718 static void unlock_comm(struct md_cluster_info *cinfo)
720 WARN_ON(cinfo->token_lockres->mode != DLM_LOCK_EX);
721 mutex_unlock(&cinfo->recv_mutex);
722 dlm_unlock_sync(cinfo->token_lockres);
723 clear_bit(MD_CLUSTER_SEND_LOCK, &cinfo->state);
724 wake_up(&cinfo->wait);
728 * This function performs the actual sending of the message. This function is
729 * usually called after performing the encompassing operation
731 * 1. Grabs the message lockresource in EX mode
732 * 2. Copies the message to the message LVB
733 * 3. Downconverts message lockresource to CW
734 * 4. Upconverts ack lock resource from CR to EX. This forces the BAST on other nodes
735 * and the other nodes read the message. The thread will wait here until all other
736 * nodes have released ack lock resource.
737 * 5. Downconvert ack lockresource to CR
739 static int __sendmsg(struct md_cluster_info *cinfo, struct cluster_msg *cmsg)
742 int slot = cinfo->slot_number - 1;
744 cmsg->slot = cpu_to_le32(slot);
745 /*get EX on Message*/
746 error = dlm_lock_sync(cinfo->message_lockres, DLM_LOCK_EX);
748 pr_err("md-cluster: failed to get EX on MESSAGE (%d)\n", error);
752 memcpy(cinfo->message_lockres->lksb.sb_lvbptr, (void *)cmsg,
753 sizeof(struct cluster_msg));
754 /*down-convert EX to CW on Message*/
755 error = dlm_lock_sync(cinfo->message_lockres, DLM_LOCK_CW);
757 pr_err("md-cluster: failed to convert EX to CW on MESSAGE(%d)\n",
762 /*up-convert CR to EX on Ack*/
763 error = dlm_lock_sync(cinfo->ack_lockres, DLM_LOCK_EX);
765 pr_err("md-cluster: failed to convert CR to EX on ACK(%d)\n",
770 /*down-convert EX to CR on Ack*/
771 error = dlm_lock_sync(cinfo->ack_lockres, DLM_LOCK_CR);
773 pr_err("md-cluster: failed to convert EX to CR on ACK(%d)\n",
779 error = dlm_unlock_sync(cinfo->message_lockres);
780 if (unlikely(error != 0)) {
781 pr_err("md-cluster: failed convert to NL on MESSAGE(%d)\n",
783 /* in case the message can't be released due to some reason */
790 static int sendmsg(struct md_cluster_info *cinfo, struct cluster_msg *cmsg,
795 ret = lock_comm(cinfo, mddev_locked);
797 ret = __sendmsg(cinfo, cmsg);
803 static int gather_all_resync_info(struct mddev *mddev, int total_slots)
805 struct md_cluster_info *cinfo = mddev->cluster_info;
807 struct dlm_lock_resource *bm_lockres;
808 struct suspend_info *s;
813 for (i = 0; i < total_slots; i++) {
814 memset(str, '\0', 64);
815 snprintf(str, 64, "bitmap%04d", i);
816 bm_lockres = lockres_init(mddev, str, NULL, 1);
819 if (i == (cinfo->slot_number - 1)) {
820 lockres_free(bm_lockres);
824 bm_lockres->flags |= DLM_LKF_NOQUEUE;
825 ret = dlm_lock_sync(bm_lockres, DLM_LOCK_PW);
826 if (ret == -EAGAIN) {
827 s = read_resync_info(mddev, bm_lockres);
829 pr_info("%s:%d Resync[%llu..%llu] in progress on %d\n",
831 (unsigned long long) s->lo,
832 (unsigned long long) s->hi, i);
833 spin_lock_irq(&cinfo->suspend_lock);
835 list_add(&s->list, &cinfo->suspend_list);
836 spin_unlock_irq(&cinfo->suspend_lock);
839 lockres_free(bm_lockres);
843 lockres_free(bm_lockres);
847 /* Read the disk bitmap sb and check if it needs recovery */
848 ret = md_bitmap_copy_from_slot(mddev, i, &lo, &hi, false);
850 pr_warn("md-cluster: Could not gather bitmaps from slot %d", i);
851 lockres_free(bm_lockres);
854 if ((hi > 0) && (lo < mddev->recovery_cp)) {
855 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
856 mddev->recovery_cp = lo;
857 md_check_recovery(mddev);
860 lockres_free(bm_lockres);
866 static int join(struct mddev *mddev, int nodes)
868 struct md_cluster_info *cinfo;
872 cinfo = kzalloc(sizeof(struct md_cluster_info), GFP_KERNEL);
876 INIT_LIST_HEAD(&cinfo->suspend_list);
877 spin_lock_init(&cinfo->suspend_lock);
878 init_completion(&cinfo->completion);
879 set_bit(MD_CLUSTER_BEGIN_JOIN_CLUSTER, &cinfo->state);
880 init_waitqueue_head(&cinfo->wait);
881 mutex_init(&cinfo->recv_mutex);
883 mddev->cluster_info = cinfo;
884 cinfo->mddev = mddev;
887 sprintf(str, "%pU", mddev->uuid);
888 ret = dlm_new_lockspace(str, mddev->bitmap_info.cluster_name,
889 DLM_LSFL_FS, LVB_SIZE,
890 &md_ls_ops, mddev, &ops_rv, &cinfo->lockspace);
893 wait_for_completion(&cinfo->completion);
894 if (nodes < cinfo->slot_number) {
895 pr_err("md-cluster: Slot allotted(%d) is greater than available slots(%d).",
896 cinfo->slot_number, nodes);
900 /* Initiate the communication resources */
902 cinfo->recv_thread = md_register_thread(recv_daemon, mddev, "cluster_recv");
903 if (!cinfo->recv_thread) {
904 pr_err("md-cluster: cannot allocate memory for recv_thread!\n");
907 cinfo->message_lockres = lockres_init(mddev, "message", NULL, 1);
908 if (!cinfo->message_lockres)
910 cinfo->token_lockres = lockres_init(mddev, "token", NULL, 0);
911 if (!cinfo->token_lockres)
913 cinfo->no_new_dev_lockres = lockres_init(mddev, "no-new-dev", NULL, 0);
914 if (!cinfo->no_new_dev_lockres)
917 ret = dlm_lock_sync(cinfo->token_lockres, DLM_LOCK_EX);
920 pr_err("md-cluster: can't join cluster to avoid lock issue\n");
923 cinfo->ack_lockres = lockres_init(mddev, "ack", ack_bast, 0);
924 if (!cinfo->ack_lockres) {
928 /* get sync CR lock on ACK. */
929 if (dlm_lock_sync(cinfo->ack_lockres, DLM_LOCK_CR))
930 pr_err("md-cluster: failed to get a sync CR lock on ACK!(%d)\n",
932 dlm_unlock_sync(cinfo->token_lockres);
933 /* get sync CR lock on no-new-dev. */
934 if (dlm_lock_sync(cinfo->no_new_dev_lockres, DLM_LOCK_CR))
935 pr_err("md-cluster: failed to get a sync CR lock on no-new-dev!(%d)\n", ret);
938 pr_info("md-cluster: Joined cluster %s slot %d\n", str, cinfo->slot_number);
939 snprintf(str, 64, "bitmap%04d", cinfo->slot_number - 1);
940 cinfo->bitmap_lockres = lockres_init(mddev, str, NULL, 1);
941 if (!cinfo->bitmap_lockres) {
945 if (dlm_lock_sync(cinfo->bitmap_lockres, DLM_LOCK_PW)) {
946 pr_err("Failed to get bitmap lock\n");
951 cinfo->resync_lockres = lockres_init(mddev, "resync", NULL, 0);
952 if (!cinfo->resync_lockres) {
959 set_bit(MD_CLUSTER_HOLDING_MUTEX_FOR_RECVD, &cinfo->state);
960 md_unregister_thread(&cinfo->recovery_thread);
961 md_unregister_thread(&cinfo->recv_thread);
962 lockres_free(cinfo->message_lockres);
963 lockres_free(cinfo->token_lockres);
964 lockres_free(cinfo->ack_lockres);
965 lockres_free(cinfo->no_new_dev_lockres);
966 lockres_free(cinfo->resync_lockres);
967 lockres_free(cinfo->bitmap_lockres);
968 if (cinfo->lockspace)
969 dlm_release_lockspace(cinfo->lockspace, 2);
970 mddev->cluster_info = NULL;
975 static void load_bitmaps(struct mddev *mddev, int total_slots)
977 struct md_cluster_info *cinfo = mddev->cluster_info;
979 /* load all the node's bitmap info for resync */
980 if (gather_all_resync_info(mddev, total_slots))
981 pr_err("md-cluster: failed to gather all resyn infos\n");
982 set_bit(MD_CLUSTER_ALREADY_IN_CLUSTER, &cinfo->state);
983 /* wake up recv thread in case something need to be handled */
984 if (test_and_clear_bit(MD_CLUSTER_PENDING_RECV_EVENT, &cinfo->state))
985 md_wakeup_thread(cinfo->recv_thread);
988 static void resync_bitmap(struct mddev *mddev)
990 struct md_cluster_info *cinfo = mddev->cluster_info;
991 struct cluster_msg cmsg = {0};
994 cmsg.type = cpu_to_le32(BITMAP_NEEDS_SYNC);
995 err = sendmsg(cinfo, &cmsg, 1);
997 pr_err("%s:%d: failed to send BITMAP_NEEDS_SYNC message (%d)\n",
998 __func__, __LINE__, err);
1001 static void unlock_all_bitmaps(struct mddev *mddev);
1002 static int leave(struct mddev *mddev)
1004 struct md_cluster_info *cinfo = mddev->cluster_info;
1009 /* BITMAP_NEEDS_SYNC message should be sent when node
1010 * is leaving the cluster with dirty bitmap, also we
1011 * can only deliver it when dlm connection is available */
1012 if (cinfo->slot_number > 0 && mddev->recovery_cp != MaxSector)
1013 resync_bitmap(mddev);
1015 set_bit(MD_CLUSTER_HOLDING_MUTEX_FOR_RECVD, &cinfo->state);
1016 md_unregister_thread(&cinfo->recovery_thread);
1017 md_unregister_thread(&cinfo->recv_thread);
1018 lockres_free(cinfo->message_lockres);
1019 lockres_free(cinfo->token_lockres);
1020 lockres_free(cinfo->ack_lockres);
1021 lockres_free(cinfo->no_new_dev_lockres);
1022 lockres_free(cinfo->resync_lockres);
1023 lockres_free(cinfo->bitmap_lockres);
1024 unlock_all_bitmaps(mddev);
1025 dlm_release_lockspace(cinfo->lockspace, 2);
1030 /* slot_number(): Returns the MD slot number to use
1031 * DLM starts the slot numbers from 1, wheras cluster-md
1032 * wants the number to be from zero, so we deduct one
1034 static int slot_number(struct mddev *mddev)
1036 struct md_cluster_info *cinfo = mddev->cluster_info;
1038 return cinfo->slot_number - 1;
1042 * Check if the communication is already locked, else lock the communication
1044 * If it is already locked, token is in EX mode, and hence lock_token()
1045 * should not be called.
1047 static int metadata_update_start(struct mddev *mddev)
1049 struct md_cluster_info *cinfo = mddev->cluster_info;
1053 * metadata_update_start is always called with the protection of
1054 * reconfig_mutex, so set WAITING_FOR_TOKEN here.
1056 ret = test_and_set_bit_lock(MD_CLUSTER_HOLDING_MUTEX_FOR_RECVD,
1059 md_wakeup_thread(mddev->thread);
1061 wait_event(cinfo->wait,
1062 !test_and_set_bit(MD_CLUSTER_SEND_LOCK, &cinfo->state) ||
1063 test_and_clear_bit(MD_CLUSTER_SEND_LOCKED_ALREADY, &cinfo->state));
1065 /* If token is already locked, return 0 */
1066 if (cinfo->token_lockres->mode == DLM_LOCK_EX) {
1067 clear_bit_unlock(MD_CLUSTER_HOLDING_MUTEX_FOR_RECVD, &cinfo->state);
1071 ret = lock_token(cinfo);
1072 clear_bit_unlock(MD_CLUSTER_HOLDING_MUTEX_FOR_RECVD, &cinfo->state);
1076 static int metadata_update_finish(struct mddev *mddev)
1078 struct md_cluster_info *cinfo = mddev->cluster_info;
1079 struct cluster_msg cmsg;
1080 struct md_rdev *rdev;
1084 memset(&cmsg, 0, sizeof(cmsg));
1085 cmsg.type = cpu_to_le32(METADATA_UPDATED);
1086 /* Pick up a good active device number to send.
1088 rdev_for_each(rdev, mddev)
1089 if (rdev->raid_disk > -1 && !test_bit(Faulty, &rdev->flags)) {
1090 raid_slot = rdev->desc_nr;
1093 if (raid_slot >= 0) {
1094 cmsg.raid_slot = cpu_to_le32(raid_slot);
1095 ret = __sendmsg(cinfo, &cmsg);
1097 pr_warn("md-cluster: No good device id found to send\n");
1098 clear_bit(MD_CLUSTER_SEND_LOCKED_ALREADY, &cinfo->state);
1103 static void metadata_update_cancel(struct mddev *mddev)
1105 struct md_cluster_info *cinfo = mddev->cluster_info;
1106 clear_bit(MD_CLUSTER_SEND_LOCKED_ALREADY, &cinfo->state);
1111 * return 0 if all the bitmaps have the same sync_size
1113 static int cluster_check_sync_size(struct mddev *mddev)
1117 unsigned long my_sync_size, sync_size = 0;
1118 int node_num = mddev->bitmap_info.nodes;
1119 int current_slot = md_cluster_ops->slot_number(mddev);
1120 struct bitmap *bitmap = mddev->bitmap;
1122 struct dlm_lock_resource *bm_lockres;
1124 sb = kmap_atomic(bitmap->storage.sb_page);
1125 my_sync_size = sb->sync_size;
1128 for (i = 0; i < node_num; i++) {
1129 if (i == current_slot)
1132 bitmap = get_bitmap_from_slot(mddev, i);
1133 if (IS_ERR(bitmap)) {
1134 pr_err("can't get bitmap from slot %d\n", i);
1139 * If we can hold the bitmap lock of one node then
1140 * the slot is not occupied, update the sb.
1142 snprintf(str, 64, "bitmap%04d", i);
1143 bm_lockres = lockres_init(mddev, str, NULL, 1);
1145 pr_err("md-cluster: Cannot initialize %s\n", str);
1146 md_bitmap_free(bitmap);
1149 bm_lockres->flags |= DLM_LKF_NOQUEUE;
1150 rv = dlm_lock_sync(bm_lockres, DLM_LOCK_PW);
1152 md_bitmap_update_sb(bitmap);
1153 lockres_free(bm_lockres);
1155 sb = kmap_atomic(bitmap->storage.sb_page);
1157 sync_size = sb->sync_size;
1158 else if (sync_size != sb->sync_size) {
1160 md_bitmap_free(bitmap);
1164 md_bitmap_free(bitmap);
1167 return (my_sync_size == sync_size) ? 0 : -1;
1171 * Update the size for cluster raid is a little more complex, we perform it
1173 * 1. hold token lock and update superblock in initiator node.
1174 * 2. send METADATA_UPDATED msg to other nodes.
1175 * 3. The initiator node continues to check each bitmap's sync_size, if all
1176 * bitmaps have the same value of sync_size, then we can set capacity and
1177 * let other nodes to perform it. If one node can't update sync_size
1178 * accordingly, we need to revert to previous value.
1180 static void update_size(struct mddev *mddev, sector_t old_dev_sectors)
1182 struct md_cluster_info *cinfo = mddev->cluster_info;
1183 struct cluster_msg cmsg;
1184 struct md_rdev *rdev;
1188 md_update_sb(mddev, 1);
1189 if (lock_comm(cinfo, 1)) {
1190 pr_err("%s: lock_comm failed\n", __func__);
1194 memset(&cmsg, 0, sizeof(cmsg));
1195 cmsg.type = cpu_to_le32(METADATA_UPDATED);
1196 rdev_for_each(rdev, mddev)
1197 if (rdev->raid_disk >= 0 && !test_bit(Faulty, &rdev->flags)) {
1198 raid_slot = rdev->desc_nr;
1201 if (raid_slot >= 0) {
1202 cmsg.raid_slot = cpu_to_le32(raid_slot);
1204 * We can only change capiticy after all the nodes can do it,
1205 * so need to wait after other nodes already received the msg
1206 * and handled the change
1208 ret = __sendmsg(cinfo, &cmsg);
1210 pr_err("%s:%d: failed to send METADATA_UPDATED msg\n",
1211 __func__, __LINE__);
1216 pr_err("md-cluster: No good device id found to send\n");
1222 * check the sync_size from other node's bitmap, if sync_size
1223 * have already updated in other nodes as expected, send an
1224 * empty metadata msg to permit the change of capacity
1226 if (cluster_check_sync_size(mddev) == 0) {
1227 memset(&cmsg, 0, sizeof(cmsg));
1228 cmsg.type = cpu_to_le32(CHANGE_CAPACITY);
1229 ret = __sendmsg(cinfo, &cmsg);
1231 pr_err("%s:%d: failed to send CHANGE_CAPACITY msg\n",
1232 __func__, __LINE__);
1233 set_capacity(mddev->gendisk, mddev->array_sectors);
1234 revalidate_disk(mddev->gendisk);
1236 /* revert to previous sectors */
1237 ret = mddev->pers->resize(mddev, old_dev_sectors);
1239 revalidate_disk(mddev->gendisk);
1240 ret = __sendmsg(cinfo, &cmsg);
1242 pr_err("%s:%d: failed to send METADATA_UPDATED msg\n",
1243 __func__, __LINE__);
1248 static int resync_start(struct mddev *mddev)
1250 struct md_cluster_info *cinfo = mddev->cluster_info;
1251 return dlm_lock_sync_interruptible(cinfo->resync_lockres, DLM_LOCK_EX, mddev);
1254 static int resync_info_update(struct mddev *mddev, sector_t lo, sector_t hi)
1256 struct md_cluster_info *cinfo = mddev->cluster_info;
1257 struct resync_info ri;
1258 struct cluster_msg cmsg = {0};
1260 /* do not send zero again, if we have sent before */
1262 memcpy(&ri, cinfo->bitmap_lockres->lksb.sb_lvbptr, sizeof(struct resync_info));
1263 if (le64_to_cpu(ri.hi) == 0)
1267 add_resync_info(cinfo->bitmap_lockres, lo, hi);
1268 /* Re-acquire the lock to refresh LVB */
1269 dlm_lock_sync(cinfo->bitmap_lockres, DLM_LOCK_PW);
1270 cmsg.type = cpu_to_le32(RESYNCING);
1271 cmsg.low = cpu_to_le64(lo);
1272 cmsg.high = cpu_to_le64(hi);
1275 * mddev_lock is held if resync_info_update is called from
1276 * resync_finish (md_reap_sync_thread -> resync_finish)
1278 if (lo == 0 && hi == 0)
1279 return sendmsg(cinfo, &cmsg, 1);
1281 return sendmsg(cinfo, &cmsg, 0);
1284 static int resync_finish(struct mddev *mddev)
1286 struct md_cluster_info *cinfo = mddev->cluster_info;
1289 clear_bit(MD_RESYNCING_REMOTE, &mddev->recovery);
1292 * If resync thread is interrupted so we can't say resync is finished,
1293 * another node will launch resync thread to continue.
1295 if (!test_bit(MD_CLOSING, &mddev->flags))
1296 ret = resync_info_update(mddev, 0, 0);
1297 dlm_unlock_sync(cinfo->resync_lockres);
1301 static int area_resyncing(struct mddev *mddev, int direction,
1302 sector_t lo, sector_t hi)
1304 struct md_cluster_info *cinfo = mddev->cluster_info;
1306 struct suspend_info *s;
1308 if ((direction == READ) &&
1309 test_bit(MD_CLUSTER_SUSPEND_READ_BALANCING, &cinfo->state))
1312 spin_lock_irq(&cinfo->suspend_lock);
1313 if (list_empty(&cinfo->suspend_list))
1315 list_for_each_entry(s, &cinfo->suspend_list, list)
1316 if (hi > s->lo && lo < s->hi) {
1321 spin_unlock_irq(&cinfo->suspend_lock);
1325 /* add_new_disk() - initiates a disk add
1326 * However, if this fails before writing md_update_sb(),
1327 * add_new_disk_cancel() must be called to release token lock
1329 static int add_new_disk(struct mddev *mddev, struct md_rdev *rdev)
1331 struct md_cluster_info *cinfo = mddev->cluster_info;
1332 struct cluster_msg cmsg;
1334 struct mdp_superblock_1 *sb = page_address(rdev->sb_page);
1335 char *uuid = sb->device_uuid;
1337 memset(&cmsg, 0, sizeof(cmsg));
1338 cmsg.type = cpu_to_le32(NEWDISK);
1339 memcpy(cmsg.uuid, uuid, 16);
1340 cmsg.raid_slot = cpu_to_le32(rdev->desc_nr);
1341 if (lock_comm(cinfo, 1))
1343 ret = __sendmsg(cinfo, &cmsg);
1348 cinfo->no_new_dev_lockres->flags |= DLM_LKF_NOQUEUE;
1349 ret = dlm_lock_sync(cinfo->no_new_dev_lockres, DLM_LOCK_EX);
1350 cinfo->no_new_dev_lockres->flags &= ~DLM_LKF_NOQUEUE;
1351 /* Some node does not "see" the device */
1357 dlm_lock_sync(cinfo->no_new_dev_lockres, DLM_LOCK_CR);
1358 /* Since MD_CHANGE_DEVS will be set in add_bound_rdev which
1359 * will run soon after add_new_disk, the below path will be
1361 * md_wakeup_thread(mddev->thread)
1362 * -> conf->thread (raid1d)
1363 * -> md_check_recovery -> md_update_sb
1364 * -> metadata_update_start/finish
1365 * MD_CLUSTER_SEND_LOCKED_ALREADY will be cleared eventually.
1367 * For other failure cases, metadata_update_cancel and
1368 * add_new_disk_cancel also clear below bit as well.
1370 set_bit(MD_CLUSTER_SEND_LOCKED_ALREADY, &cinfo->state);
1371 wake_up(&cinfo->wait);
1376 static void add_new_disk_cancel(struct mddev *mddev)
1378 struct md_cluster_info *cinfo = mddev->cluster_info;
1379 clear_bit(MD_CLUSTER_SEND_LOCKED_ALREADY, &cinfo->state);
1383 static int new_disk_ack(struct mddev *mddev, bool ack)
1385 struct md_cluster_info *cinfo = mddev->cluster_info;
1387 if (!test_bit(MD_CLUSTER_WAITING_FOR_NEWDISK, &cinfo->state)) {
1388 pr_warn("md-cluster(%s): Spurious cluster confirmation\n", mdname(mddev));
1393 dlm_unlock_sync(cinfo->no_new_dev_lockres);
1394 complete(&cinfo->newdisk_completion);
1398 static int remove_disk(struct mddev *mddev, struct md_rdev *rdev)
1400 struct cluster_msg cmsg = {0};
1401 struct md_cluster_info *cinfo = mddev->cluster_info;
1402 cmsg.type = cpu_to_le32(REMOVE);
1403 cmsg.raid_slot = cpu_to_le32(rdev->desc_nr);
1404 return sendmsg(cinfo, &cmsg, 1);
1407 static int lock_all_bitmaps(struct mddev *mddev)
1409 int slot, my_slot, ret, held = 1, i = 0;
1411 struct md_cluster_info *cinfo = mddev->cluster_info;
1413 cinfo->other_bitmap_lockres =
1414 kcalloc(mddev->bitmap_info.nodes - 1,
1415 sizeof(struct dlm_lock_resource *), GFP_KERNEL);
1416 if (!cinfo->other_bitmap_lockres) {
1417 pr_err("md: can't alloc mem for other bitmap locks\n");
1421 my_slot = slot_number(mddev);
1422 for (slot = 0; slot < mddev->bitmap_info.nodes; slot++) {
1423 if (slot == my_slot)
1426 memset(str, '\0', 64);
1427 snprintf(str, 64, "bitmap%04d", slot);
1428 cinfo->other_bitmap_lockres[i] = lockres_init(mddev, str, NULL, 1);
1429 if (!cinfo->other_bitmap_lockres[i])
1432 cinfo->other_bitmap_lockres[i]->flags |= DLM_LKF_NOQUEUE;
1433 ret = dlm_lock_sync(cinfo->other_bitmap_lockres[i], DLM_LOCK_PW);
1442 static void unlock_all_bitmaps(struct mddev *mddev)
1444 struct md_cluster_info *cinfo = mddev->cluster_info;
1447 /* release other node's bitmap lock if they are existed */
1448 if (cinfo->other_bitmap_lockres) {
1449 for (i = 0; i < mddev->bitmap_info.nodes - 1; i++) {
1450 if (cinfo->other_bitmap_lockres[i]) {
1451 lockres_free(cinfo->other_bitmap_lockres[i]);
1454 kfree(cinfo->other_bitmap_lockres);
1455 cinfo->other_bitmap_lockres = NULL;
1459 static int gather_bitmaps(struct md_rdev *rdev)
1463 struct cluster_msg cmsg = {0};
1464 struct mddev *mddev = rdev->mddev;
1465 struct md_cluster_info *cinfo = mddev->cluster_info;
1467 cmsg.type = cpu_to_le32(RE_ADD);
1468 cmsg.raid_slot = cpu_to_le32(rdev->desc_nr);
1469 err = sendmsg(cinfo, &cmsg, 1);
1473 for (sn = 0; sn < mddev->bitmap_info.nodes; sn++) {
1474 if (sn == (cinfo->slot_number - 1))
1476 err = md_bitmap_copy_from_slot(mddev, sn, &lo, &hi, false);
1478 pr_warn("md-cluster: Could not gather bitmaps from slot %d", sn);
1481 if ((hi > 0) && (lo < mddev->recovery_cp))
1482 mddev->recovery_cp = lo;
1488 static struct md_cluster_operations cluster_ops = {
1491 .slot_number = slot_number,
1492 .resync_start = resync_start,
1493 .resync_finish = resync_finish,
1494 .resync_info_update = resync_info_update,
1495 .metadata_update_start = metadata_update_start,
1496 .metadata_update_finish = metadata_update_finish,
1497 .metadata_update_cancel = metadata_update_cancel,
1498 .area_resyncing = area_resyncing,
1499 .add_new_disk = add_new_disk,
1500 .add_new_disk_cancel = add_new_disk_cancel,
1501 .new_disk_ack = new_disk_ack,
1502 .remove_disk = remove_disk,
1503 .load_bitmaps = load_bitmaps,
1504 .gather_bitmaps = gather_bitmaps,
1505 .lock_all_bitmaps = lock_all_bitmaps,
1506 .unlock_all_bitmaps = unlock_all_bitmaps,
1507 .update_size = update_size,
1510 static int __init cluster_init(void)
1512 pr_warn("md-cluster: support raid1 and raid10 (limited support)\n");
1513 pr_info("Registering Cluster MD functions\n");
1514 register_md_cluster_operations(&cluster_ops, THIS_MODULE);
1518 static void cluster_exit(void)
1520 unregister_md_cluster_operations();
1523 module_init(cluster_init);
1524 module_exit(cluster_exit);
1525 MODULE_AUTHOR("SUSE");
1526 MODULE_LICENSE("GPL");
1527 MODULE_DESCRIPTION("Clustering support for MD");