dm-raid1.c 44.2 KB
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/*
 * Copyright (C) 2003 Sistina Software Limited.
 *
 * This file is released under the GPL.
 */

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#include <linux/device-mapper.h>

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#include "dm-bio-list.h"
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#include "dm-bio-record.h"
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#include <linux/ctype.h>
#include <linux/init.h>
#include <linux/mempool.h>
#include <linux/module.h>
#include <linux/pagemap.h>
#include <linux/slab.h>
#include <linux/time.h>
#include <linux/vmalloc.h>
#include <linux/workqueue.h>
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#include <linux/log2.h>
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#include <linux/hardirq.h>
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#include <linux/dm-io.h>
#include <linux/dm-dirty-log.h>
#include <linux/dm-kcopyd.h>
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#define DM_MSG_PREFIX "raid1"
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#define DM_IO_PAGES 64
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#define DM_RAID1_HANDLE_ERRORS 0x01
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#define errors_handled(p)	((p)->features & DM_RAID1_HANDLE_ERRORS)
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static DECLARE_WAIT_QUEUE_HEAD(_kmirrord_recovery_stopped);
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/*-----------------------------------------------------------------
 * Region hash
 *
 * The mirror splits itself up into discrete regions.  Each
 * region can be in one of three states: clean, dirty,
 * nosync.  There is no need to put clean regions in the hash.
 *
 * In addition to being present in the hash table a region _may_
 * be present on one of three lists.
 *
 *   clean_regions: Regions on this list have no io pending to
 *   them, they are in sync, we are no longer interested in them,
 *   they are dull.  rh_update_states() will remove them from the
 *   hash table.
 *
 *   quiesced_regions: These regions have been spun down, ready
 *   for recovery.  rh_recovery_start() will remove regions from
 *   this list and hand them to kmirrord, which will schedule the
 *   recovery io with kcopyd.
 *
 *   recovered_regions: Regions that kcopyd has successfully
 *   recovered.  rh_update_states() will now schedule any delayed
 *   io, up the recovery_count, and remove the region from the
 *   hash.
 *
 * There are 2 locks:
 *   A rw spin lock 'hash_lock' protects just the hash table,
 *   this is never held in write mode from interrupt context,
 *   which I believe means that we only have to disable irqs when
 *   doing a write lock.
 *
 *   An ordinary spin lock 'region_lock' that protects the three
 *   lists in the region_hash, with the 'state', 'list' and
 *   'bhs_delayed' fields of the regions.  This is used from irq
 *   context, so all other uses will have to suspend local irqs.
 *---------------------------------------------------------------*/
struct mirror_set;
struct region_hash {
	struct mirror_set *ms;
	uint32_t region_size;
	unsigned region_shift;

	/* holds persistent region state */
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	struct dm_dirty_log *log;
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	/* hash table */
	rwlock_t hash_lock;
	mempool_t *region_pool;
	unsigned int mask;
	unsigned int nr_buckets;
	struct list_head *buckets;

	spinlock_t region_lock;
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	atomic_t recovery_in_flight;
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	struct semaphore recovery_count;
	struct list_head clean_regions;
	struct list_head quiesced_regions;
	struct list_head recovered_regions;
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	struct list_head failed_recovered_regions;
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};

enum {
	RH_CLEAN,
	RH_DIRTY,
	RH_NOSYNC,
	RH_RECOVERING
};

struct region {
	struct region_hash *rh;	/* FIXME: can we get rid of this ? */
	region_t key;
	int state;

	struct list_head hash_list;
	struct list_head list;

	atomic_t pending;
	struct bio_list delayed_bios;
};

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/*-----------------------------------------------------------------
 * Mirror set structures.
 *---------------------------------------------------------------*/
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enum dm_raid1_error {
	DM_RAID1_WRITE_ERROR,
	DM_RAID1_SYNC_ERROR,
	DM_RAID1_READ_ERROR
};

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struct mirror {
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	struct mirror_set *ms;
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	atomic_t error_count;
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	unsigned long error_type;
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	struct dm_dev *dev;
	sector_t offset;
};

struct mirror_set {
	struct dm_target *ti;
	struct list_head list;
	struct region_hash rh;
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	struct dm_kcopyd_client *kcopyd_client;
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	uint64_t features;
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	spinlock_t lock;	/* protects the lists */
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	struct bio_list reads;
	struct bio_list writes;
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	struct bio_list failures;
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	struct dm_io_client *io_client;
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	mempool_t *read_record_pool;
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	/* recovery */
	region_t nr_regions;
	int in_sync;
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	int log_failure;
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	atomic_t suspend;
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	atomic_t default_mirror;	/* Default mirror */
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	struct workqueue_struct *kmirrord_wq;
	struct work_struct kmirrord_work;
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	struct timer_list timer;
	unsigned long timer_pending;

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	struct work_struct trigger_event;
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	unsigned int nr_mirrors;
	struct mirror mirror[0];
};

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/*
 * Conversion fns
 */
static inline region_t bio_to_region(struct region_hash *rh, struct bio *bio)
{
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	return (bio->bi_sector - rh->ms->ti->begin) >> rh->region_shift;
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}

static inline sector_t region_to_sector(struct region_hash *rh, region_t region)
{
	return region << rh->region_shift;
}

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static void wake(struct mirror_set *ms)
{
	queue_work(ms->kmirrord_wq, &ms->kmirrord_work);
}

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static void delayed_wake_fn(unsigned long data)
{
	struct mirror_set *ms = (struct mirror_set *) data;

	clear_bit(0, &ms->timer_pending);
	wake(ms);
}

static void delayed_wake(struct mirror_set *ms)
{
	if (test_and_set_bit(0, &ms->timer_pending))
		return;

	ms->timer.expires = jiffies + HZ / 5;
	ms->timer.data = (unsigned long) ms;
	ms->timer.function = delayed_wake_fn;
	add_timer(&ms->timer);
}

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/* FIXME move this */
static void queue_bio(struct mirror_set *ms, struct bio *bio, int rw);

#define MIN_REGIONS 64
#define MAX_RECOVERY 1
static int rh_init(struct region_hash *rh, struct mirror_set *ms,
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		   struct dm_dirty_log *log, uint32_t region_size,
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		   region_t nr_regions)
{
	unsigned int nr_buckets, max_buckets;
	size_t i;

	/*
	 * Calculate a suitable number of buckets for our hash
	 * table.
	 */
	max_buckets = nr_regions >> 6;
	for (nr_buckets = 128u; nr_buckets < max_buckets; nr_buckets <<= 1)
		;
	nr_buckets >>= 1;

	rh->ms = ms;
	rh->log = log;
	rh->region_size = region_size;
	rh->region_shift = ffs(region_size) - 1;
	rwlock_init(&rh->hash_lock);
	rh->mask = nr_buckets - 1;
	rh->nr_buckets = nr_buckets;

	rh->buckets = vmalloc(nr_buckets * sizeof(*rh->buckets));
	if (!rh->buckets) {
		DMERR("unable to allocate region hash memory");
		return -ENOMEM;
	}

	for (i = 0; i < nr_buckets; i++)
		INIT_LIST_HEAD(rh->buckets + i);

	spin_lock_init(&rh->region_lock);
	sema_init(&rh->recovery_count, 0);
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	atomic_set(&rh->recovery_in_flight, 0);
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	INIT_LIST_HEAD(&rh->clean_regions);
	INIT_LIST_HEAD(&rh->quiesced_regions);
	INIT_LIST_HEAD(&rh->recovered_regions);
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	INIT_LIST_HEAD(&rh->failed_recovered_regions);
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	rh->region_pool = mempool_create_kmalloc_pool(MIN_REGIONS,
						      sizeof(struct region));
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	if (!rh->region_pool) {
		vfree(rh->buckets);
		rh->buckets = NULL;
		return -ENOMEM;
	}

	return 0;
}

static void rh_exit(struct region_hash *rh)
{
	unsigned int h;
	struct region *reg, *nreg;

	BUG_ON(!list_empty(&rh->quiesced_regions));
	for (h = 0; h < rh->nr_buckets; h++) {
		list_for_each_entry_safe(reg, nreg, rh->buckets + h, hash_list) {
			BUG_ON(atomic_read(&reg->pending));
			mempool_free(reg, rh->region_pool);
		}
	}

	if (rh->log)
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		dm_dirty_log_destroy(rh->log);
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	if (rh->region_pool)
		mempool_destroy(rh->region_pool);
	vfree(rh->buckets);
}

#define RH_HASH_MULT 2654435387U

static inline unsigned int rh_hash(struct region_hash *rh, region_t region)
{
	return (unsigned int) ((region * RH_HASH_MULT) >> 12) & rh->mask;
}

static struct region *__rh_lookup(struct region_hash *rh, region_t region)
{
	struct region *reg;

	list_for_each_entry (reg, rh->buckets + rh_hash(rh, region), hash_list)
		if (reg->key == region)
			return reg;

	return NULL;
}

static void __rh_insert(struct region_hash *rh, struct region *reg)
{
	unsigned int h = rh_hash(rh, reg->key);
	list_add(&reg->hash_list, rh->buckets + h);
}

static struct region *__rh_alloc(struct region_hash *rh, region_t region)
{
	struct region *reg, *nreg;

	read_unlock(&rh->hash_lock);
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	nreg = mempool_alloc(rh->region_pool, GFP_ATOMIC);
	if (unlikely(!nreg))
		nreg = kmalloc(sizeof(struct region), GFP_NOIO);
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	nreg->state = rh->log->type->in_sync(rh->log, region, 1) ?
		RH_CLEAN : RH_NOSYNC;
	nreg->rh = rh;
	nreg->key = region;

	INIT_LIST_HEAD(&nreg->list);

	atomic_set(&nreg->pending, 0);
	bio_list_init(&nreg->delayed_bios);
	write_lock_irq(&rh->hash_lock);

	reg = __rh_lookup(rh, region);
	if (reg)
		/* we lost the race */
		mempool_free(nreg, rh->region_pool);

	else {
		__rh_insert(rh, nreg);
		if (nreg->state == RH_CLEAN) {
			spin_lock(&rh->region_lock);
			list_add(&nreg->list, &rh->clean_regions);
			spin_unlock(&rh->region_lock);
		}
		reg = nreg;
	}
	write_unlock_irq(&rh->hash_lock);
	read_lock(&rh->hash_lock);

	return reg;
}

static inline struct region *__rh_find(struct region_hash *rh, region_t region)
{
	struct region *reg;

	reg = __rh_lookup(rh, region);
	if (!reg)
		reg = __rh_alloc(rh, region);

	return reg;
}

static int rh_state(struct region_hash *rh, region_t region, int may_block)
{
	int r;
	struct region *reg;

	read_lock(&rh->hash_lock);
	reg = __rh_lookup(rh, region);
	read_unlock(&rh->hash_lock);

	if (reg)
		return reg->state;

	/*
	 * The region wasn't in the hash, so we fall back to the
	 * dirty log.
	 */
	r = rh->log->type->in_sync(rh->log, region, may_block);

	/*
	 * Any error from the dirty log (eg. -EWOULDBLOCK) gets
	 * taken as a RH_NOSYNC
	 */
	return r == 1 ? RH_CLEAN : RH_NOSYNC;
}

static inline int rh_in_sync(struct region_hash *rh,
			     region_t region, int may_block)
{
	int state = rh_state(rh, region, may_block);
	return state == RH_CLEAN || state == RH_DIRTY;
}

static void dispatch_bios(struct mirror_set *ms, struct bio_list *bio_list)
{
	struct bio *bio;

	while ((bio = bio_list_pop(bio_list))) {
		queue_bio(ms, bio, WRITE);
	}
}

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static void complete_resync_work(struct region *reg, int success)
{
	struct region_hash *rh = reg->rh;

	rh->log->type->set_region_sync(rh->log, reg->key, success);
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	/*
	 * Dispatch the bios before we call 'wake_up_all'.
	 * This is important because if we are suspending,
	 * we want to know that recovery is complete and
	 * the work queue is flushed.  If we wake_up_all
	 * before we dispatch_bios (queue bios and call wake()),
	 * then we risk suspending before the work queue
	 * has been properly flushed.
	 */
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	dispatch_bios(rh->ms, &reg->delayed_bios);
	if (atomic_dec_and_test(&rh->recovery_in_flight))
		wake_up_all(&_kmirrord_recovery_stopped);
	up(&rh->recovery_count);
}

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static void rh_update_states(struct region_hash *rh)
{
	struct region *reg, *next;

	LIST_HEAD(clean);
	LIST_HEAD(recovered);
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	LIST_HEAD(failed_recovered);
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	/*
	 * Quickly grab the lists.
	 */
	write_lock_irq(&rh->hash_lock);
	spin_lock(&rh->region_lock);
	if (!list_empty(&rh->clean_regions)) {
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		list_splice_init(&rh->clean_regions, &clean);
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		list_for_each_entry(reg, &clean, list)
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			list_del(&reg->hash_list);
	}

	if (!list_empty(&rh->recovered_regions)) {
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		list_splice_init(&rh->recovered_regions, &recovered);
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		list_for_each_entry (reg, &recovered, list)
			list_del(&reg->hash_list);
	}
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	if (!list_empty(&rh->failed_recovered_regions)) {
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		list_splice_init(&rh->failed_recovered_regions,
				 &failed_recovered);
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		list_for_each_entry(reg, &failed_recovered, list)
			list_del(&reg->hash_list);
	}

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	spin_unlock(&rh->region_lock);
	write_unlock_irq(&rh->hash_lock);

	/*
	 * All the regions on the recovered and clean lists have
	 * now been pulled out of the system, so no need to do
	 * any more locking.
	 */
	list_for_each_entry_safe (reg, next, &recovered, list) {
		rh->log->type->clear_region(rh->log, reg->key);
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		complete_resync_work(reg, 1);
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		mempool_free(reg, rh->region_pool);
	}

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	list_for_each_entry_safe(reg, next, &failed_recovered, list) {
		complete_resync_work(reg, errors_handled(rh->ms) ? 0 : 1);
		mempool_free(reg, rh->region_pool);
	}

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	list_for_each_entry_safe(reg, next, &clean, list) {
		rh->log->type->clear_region(rh->log, reg->key);
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		mempool_free(reg, rh->region_pool);
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	}

	rh->log->type->flush(rh->log);
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}

static void rh_inc(struct region_hash *rh, region_t region)
{
	struct region *reg;

	read_lock(&rh->hash_lock);
	reg = __rh_find(rh, region);
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	spin_lock_irq(&rh->region_lock);
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	atomic_inc(&reg->pending);

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	if (reg->state == RH_CLEAN) {
		reg->state = RH_DIRTY;
		list_del_init(&reg->list);	/* take off the clean list */
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		spin_unlock_irq(&rh->region_lock);

		rh->log->type->mark_region(rh->log, reg->key);
	} else
		spin_unlock_irq(&rh->region_lock);

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	read_unlock(&rh->hash_lock);
}

static void rh_inc_pending(struct region_hash *rh, struct bio_list *bios)
{
	struct bio *bio;

	for (bio = bios->head; bio; bio = bio->bi_next)
		rh_inc(rh, bio_to_region(rh, bio));
}

static void rh_dec(struct region_hash *rh, region_t region)
{
	unsigned long flags;
	struct region *reg;
	int should_wake = 0;

	read_lock(&rh->hash_lock);
	reg = __rh_lookup(rh, region);
	read_unlock(&rh->hash_lock);

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	spin_lock_irqsave(&rh->region_lock, flags);
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	if (atomic_dec_and_test(&reg->pending)) {
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		/*
		 * There is no pending I/O for this region.
		 * We can move the region to corresponding list for next action.
		 * At this point, the region is not yet connected to any list.
		 *
		 * If the state is RH_NOSYNC, the region should be kept off
		 * from clean list.
		 * The hash entry for RH_NOSYNC will remain in memory
		 * until the region is recovered or the map is reloaded.
		 */

		/* do nothing for RH_NOSYNC */
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		if (reg->state == RH_RECOVERING) {
			list_add_tail(&reg->list, &rh->quiesced_regions);
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		} else if (reg->state == RH_DIRTY) {
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			reg->state = RH_CLEAN;
			list_add(&reg->list, &rh->clean_regions);
		}
		should_wake = 1;
	}
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	spin_unlock_irqrestore(&rh->region_lock, flags);
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	if (should_wake)
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		wake(rh->ms);
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}

/*
 * Starts quiescing a region in preparation for recovery.
 */
static int __rh_recovery_prepare(struct region_hash *rh)
{
	int r;
	struct region *reg;
	region_t region;

	/*
	 * Ask the dirty log what's next.
	 */
	r = rh->log->type->get_resync_work(rh->log, &region);
	if (r <= 0)
		return r;

	/*
	 * Get this region, and start it quiescing by setting the
	 * recovering flag.
	 */
	read_lock(&rh->hash_lock);
	reg = __rh_find(rh, region);
	read_unlock(&rh->hash_lock);

	spin_lock_irq(&rh->region_lock);
	reg->state = RH_RECOVERING;

	/* Already quiesced ? */
	if (atomic_read(&reg->pending))
		list_del_init(&reg->list);
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	else
		list_move(&reg->list, &rh->quiesced_regions);
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	spin_unlock_irq(&rh->region_lock);

	return 1;
}

static void rh_recovery_prepare(struct region_hash *rh)
{
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	/* Extra reference to avoid race with rh_stop_recovery */
	atomic_inc(&rh->recovery_in_flight);

	while (!down_trylock(&rh->recovery_count)) {
		atomic_inc(&rh->recovery_in_flight);
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		if (__rh_recovery_prepare(rh) <= 0) {
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			atomic_dec(&rh->recovery_in_flight);
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			up(&rh->recovery_count);
			break;
		}
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	}

	/* Drop the extra reference */
	if (atomic_dec_and_test(&rh->recovery_in_flight))
		wake_up_all(&_kmirrord_recovery_stopped);
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}

/*
 * Returns any quiesced regions.
 */
static struct region *rh_recovery_start(struct region_hash *rh)
{
	struct region *reg = NULL;

	spin_lock_irq(&rh->region_lock);
	if (!list_empty(&rh->quiesced_regions)) {
		reg = list_entry(rh->quiesced_regions.next,
				 struct region, list);
		list_del_init(&reg->list);	/* remove from the quiesced list */
	}
	spin_unlock_irq(&rh->region_lock);

	return reg;
}

static void rh_recovery_end(struct region *reg, int success)
{
	struct region_hash *rh = reg->rh;

	spin_lock_irq(&rh->region_lock);
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	if (success)
		list_add(&reg->list, &reg->rh->recovered_regions);
	else {
		reg->state = RH_NOSYNC;
		list_add(&reg->list, &reg->rh->failed_recovered_regions);
	}
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	spin_unlock_irq(&rh->region_lock);

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	wake(rh->ms);
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}

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static int rh_flush(struct region_hash *rh)
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{
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	return rh->log->type->flush(rh->log);
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}

static void rh_delay(struct region_hash *rh, struct bio *bio)
{
	struct region *reg;

	read_lock(&rh->hash_lock);
	reg = __rh_find(rh, bio_to_region(rh, bio));
	bio_list_add(&reg->delayed_bios, bio);
	read_unlock(&rh->hash_lock);
}

static void rh_stop_recovery(struct region_hash *rh)
{
	int i;

	/* wait for any recovering regions */
	for (i = 0; i < MAX_RECOVERY; i++)
		down(&rh->recovery_count);
}

static void rh_start_recovery(struct region_hash *rh)
{
	int i;

	for (i = 0; i < MAX_RECOVERY; i++)
		up(&rh->recovery_count);

670
	wake(rh->ms);
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}

673 674 675 676 677 678
#define MIN_READ_RECORDS 20
struct dm_raid1_read_record {
	struct mirror *m;
	struct dm_bio_details details;
};

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/*
 * Every mirror should look like this one.
 */
#define DEFAULT_MIRROR 0

/*
685 686
 * This is yucky.  We squirrel the mirror struct away inside
 * bi_next for read/write buffers.  This is safe since the bh
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 * doesn't get submitted to the lower levels of block layer.
 */
689
static struct mirror *bio_get_m(struct bio *bio)
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{
691
	return (struct mirror *) bio->bi_next;
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}

694
static void bio_set_m(struct bio *bio, struct mirror *m)
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{
696
	bio->bi_next = (struct bio *) m;
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}

699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769
static struct mirror *get_default_mirror(struct mirror_set *ms)
{
	return &ms->mirror[atomic_read(&ms->default_mirror)];
}

static void set_default_mirror(struct mirror *m)
{
	struct mirror_set *ms = m->ms;
	struct mirror *m0 = &(ms->mirror[0]);

	atomic_set(&ms->default_mirror, m - m0);
}

/* fail_mirror
 * @m: mirror device to fail
 * @error_type: one of the enum's, DM_RAID1_*_ERROR
 *
 * If errors are being handled, record the type of
 * error encountered for this device.  If this type
 * of error has already been recorded, we can return;
 * otherwise, we must signal userspace by triggering
 * an event.  Additionally, if the device is the
 * primary device, we must choose a new primary, but
 * only if the mirror is in-sync.
 *
 * This function must not block.
 */
static void fail_mirror(struct mirror *m, enum dm_raid1_error error_type)
{
	struct mirror_set *ms = m->ms;
	struct mirror *new;

	if (!errors_handled(ms))
		return;

	/*
	 * error_count is used for nothing more than a
	 * simple way to tell if a device has encountered
	 * errors.
	 */
	atomic_inc(&m->error_count);

	if (test_and_set_bit(error_type, &m->error_type))
		return;

	if (m != get_default_mirror(ms))
		goto out;

	if (!ms->in_sync) {
		/*
		 * Better to issue requests to same failing device
		 * than to risk returning corrupt data.
		 */
		DMERR("Primary mirror (%s) failed while out-of-sync: "
		      "Reads may fail.", m->dev->name);
		goto out;
	}

	for (new = ms->mirror; new < ms->mirror + ms->nr_mirrors; new++)
		if (!atomic_read(&new->error_count)) {
			set_default_mirror(new);
			break;
		}

	if (unlikely(new == ms->mirror + ms->nr_mirrors))
		DMWARN("All sides of mirror have failed.");

out:
	schedule_work(&ms->trigger_event);
}

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/*-----------------------------------------------------------------
 * Recovery.
 *
 * When a mirror is first activated we may find that some regions
 * are in the no-sync state.  We have to recover these by
 * recopying from the default mirror to all the others.
 *---------------------------------------------------------------*/
777
static void recovery_complete(int read_err, unsigned long write_err,
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			      void *context)
{
780 781 782
	struct region *reg = (struct region *)context;
	struct mirror_set *ms = reg->rh->ms;
	int m, bit = 0;
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784
	if (read_err) {
785 786
		/* Read error means the failure of default mirror. */
		DMERR_LIMIT("Unable to read primary mirror during recovery");
787 788
		fail_mirror(get_default_mirror(ms), DM_RAID1_SYNC_ERROR);
	}
789

790
	if (write_err) {
791
		DMERR_LIMIT("Write error during recovery (error = 0x%lx)",
792
			    write_err);
793 794 795 796 797 798 799 800 801 802 803 804 805
		/*
		 * Bits correspond to devices (excluding default mirror).
		 * The default mirror cannot change during recovery.
		 */
		for (m = 0; m < ms->nr_mirrors; m++) {
			if (&ms->mirror[m] == get_default_mirror(ms))
				continue;
			if (test_bit(bit, &write_err))
				fail_mirror(ms->mirror + m,
					    DM_RAID1_SYNC_ERROR);
			bit++;
		}
	}
806

807
	rh_recovery_end(reg, !(read_err || write_err));
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}

static int recover(struct mirror_set *ms, struct region *reg)
{
	int r;
	unsigned int i;
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	struct dm_io_region from, to[DM_KCOPYD_MAX_REGIONS], *dest;
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	struct mirror *m;
	unsigned long flags = 0;

	/* fill in the source */
819
	m = get_default_mirror(ms);
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	from.bdev = m->dev->bdev;
	from.sector = m->offset + region_to_sector(reg->rh, reg->key);
	if (reg->key == (ms->nr_regions - 1)) {
		/*
		 * The final region may be smaller than
		 * region_size.
		 */
		from.count = ms->ti->len & (reg->rh->region_size - 1);
		if (!from.count)
			from.count = reg->rh->region_size;
	} else
		from.count = reg->rh->region_size;

	/* fill in the destinations */
	for (i = 0, dest = to; i < ms->nr_mirrors; i++) {
835
		if (&ms->mirror[i] == get_default_mirror(ms))
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			continue;

		m = ms->mirror + i;
		dest->bdev = m->dev->bdev;
		dest->sector = m->offset + region_to_sector(reg->rh, reg->key);
		dest->count = from.count;
		dest++;
	}

	/* hand to kcopyd */
846 847 848
	if (!errors_handled(ms))
		set_bit(DM_KCOPYD_IGNORE_ERROR, &flags);

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	r = dm_kcopyd_copy(ms->kcopyd_client, &from, ms->nr_mirrors - 1, to,
			   flags, recovery_complete, reg);
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	return r;
}

static void do_recovery(struct mirror_set *ms)
{
	int r;
	struct region *reg;
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859
	struct dm_dirty_log *log = ms->rh.log;
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	/*
	 * Start quiescing some regions.
	 */
	rh_recovery_prepare(&ms->rh);

	/*
	 * Copy any already quiesced regions.
	 */
	while ((reg = rh_recovery_start(&ms->rh))) {
		r = recover(ms, reg);
		if (r)
			rh_recovery_end(reg, 0);
	}

	/*
	 * Update the in sync flag.
	 */
	if (!ms->in_sync &&
	    (log->type->get_sync_count(log) == ms->nr_regions)) {
		/* the sync is complete */
		dm_table_event(ms->ti->table);
		ms->in_sync = 1;
	}
}

/*-----------------------------------------------------------------
 * Reads
 *---------------------------------------------------------------*/
static struct mirror *choose_mirror(struct mirror_set *ms, sector_t sector)
{
891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918
	struct mirror *m = get_default_mirror(ms);

	do {
		if (likely(!atomic_read(&m->error_count)))
			return m;

		if (m-- == ms->mirror)
			m += ms->nr_mirrors;
	} while (m != get_default_mirror(ms));

	return NULL;
}

static int default_ok(struct mirror *m)
{
	struct mirror *default_mirror = get_default_mirror(m->ms);

	return !atomic_read(&default_mirror->error_count);
}

static int mirror_available(struct mirror_set *ms, struct bio *bio)
{
	region_t region = bio_to_region(&ms->rh, bio);

	if (ms->rh.log->type->in_sync(ms->rh.log, region, 0))
		return choose_mirror(ms,  bio->bi_sector) ? 1 : 0;

	return 0;
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}

/*
 * remap a buffer to a particular mirror.
 */
924 925 926 927 928 929
static sector_t map_sector(struct mirror *m, struct bio *bio)
{
	return m->offset + (bio->bi_sector - m->ms->ti->begin);
}

static void map_bio(struct mirror *m, struct bio *bio)
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{
	bio->bi_bdev = m->dev->bdev;
932 933 934
	bio->bi_sector = map_sector(m, bio);
}

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static void map_region(struct dm_io_region *io, struct mirror *m,
936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976
		       struct bio *bio)
{
	io->bdev = m->dev->bdev;
	io->sector = map_sector(m, bio);
	io->count = bio->bi_size >> 9;
}

/*-----------------------------------------------------------------
 * Reads
 *---------------------------------------------------------------*/
static void read_callback(unsigned long error, void *context)
{
	struct bio *bio = context;
	struct mirror *m;

	m = bio_get_m(bio);
	bio_set_m(bio, NULL);

	if (likely(!error)) {
		bio_endio(bio, 0);
		return;
	}

	fail_mirror(m, DM_RAID1_READ_ERROR);

	if (likely(default_ok(m)) || mirror_available(m->ms, bio)) {
		DMWARN_LIMIT("Read failure on mirror device %s.  "
			     "Trying alternative device.",
			     m->dev->name);
		queue_bio(m->ms, bio, bio_rw(bio));
		return;
	}

	DMERR_LIMIT("Read failure on mirror device %s.  Failing I/O.",
		    m->dev->name);
	bio_endio(bio, -EIO);
}

/* Asynchronous read. */
static void read_async_bio(struct mirror *m, struct bio *bio)
{
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Heinz Mauelshagen 已提交
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	struct dm_io_region io;
978 979 980 981 982 983 984 985 986 987 988 989
	struct dm_io_request io_req = {
		.bi_rw = READ,
		.mem.type = DM_IO_BVEC,
		.mem.ptr.bvec = bio->bi_io_vec + bio->bi_idx,
		.notify.fn = read_callback,
		.notify.context = bio,
		.client = m->ms->io_client,
	};

	map_region(&io, m, bio);
	bio_set_m(bio, m);
	(void) dm_io(&io_req, 1, &io, NULL);
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}

static void do_reads(struct mirror_set *ms, struct bio_list *reads)
{
	region_t region;
	struct bio *bio;
	struct mirror *m;

	while ((bio = bio_list_pop(reads))) {
		region = bio_to_region(&ms->rh, bio);
1000
		m = get_default_mirror(ms);
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		/*
		 * We can only read balance if the region is in sync.
		 */
1005
		if (likely(rh_in_sync(&ms->rh, region, 1)))
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			m = choose_mirror(ms, bio->bi_sector);
1007 1008
		else if (m && atomic_read(&m->error_count))
			m = NULL;
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1010 1011 1012 1013
		if (likely(m))
			read_async_bio(m, bio);
		else
			bio_endio(bio, -EIO);
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	}
}

/*-----------------------------------------------------------------
 * Writes.
 *
 * We do different things with the write io depending on the
 * state of the region that it's in:
 *
 * SYNC: 	increment pending, use kcopyd to write to *all* mirrors
 * RECOVERING:	delay the io until recovery completes
 * NOSYNC:	increment pending, just write to the default mirror
 *---------------------------------------------------------------*/
1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044

/* __bio_mark_nosync
 * @ms
 * @bio
 * @done
 * @error
 *
 * The bio was written on some mirror(s) but failed on other mirror(s).
 * We can successfully endio the bio but should avoid the region being
 * marked clean by setting the state RH_NOSYNC.
 *
 * This function is _not_ safe in interrupt context!
 */
static void __bio_mark_nosync(struct mirror_set *ms,
			      struct bio *bio, unsigned done, int error)
{
	unsigned long flags;
	struct region_hash *rh = &ms->rh;
H
Heinz Mauelshagen 已提交
1045
	struct dm_dirty_log *log = ms->rh.log;
1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079
	struct region *reg;
	region_t region = bio_to_region(rh, bio);
	int recovering = 0;

	/* We must inform the log that the sync count has changed. */
	log->type->set_region_sync(log, region, 0);
	ms->in_sync = 0;

	read_lock(&rh->hash_lock);
	reg = __rh_find(rh, region);
	read_unlock(&rh->hash_lock);

	/* region hash entry should exist because write was in-flight */
	BUG_ON(!reg);
	BUG_ON(!list_empty(&reg->list));

	spin_lock_irqsave(&rh->region_lock, flags);
	/*
	 * Possible cases:
	 *   1) RH_DIRTY
	 *   2) RH_NOSYNC: was dirty, other preceeding writes failed
	 *   3) RH_RECOVERING: flushing pending writes
	 * Either case, the region should have not been connected to list.
	 */
	recovering = (reg->state == RH_RECOVERING);
	reg->state = RH_NOSYNC;
	BUG_ON(!list_empty(&reg->list));
	spin_unlock_irqrestore(&rh->region_lock, flags);

	bio_endio(bio, error);
	if (recovering)
		complete_resync_work(reg, 0);
}

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static void write_callback(unsigned long error, void *context)
{
1082
	unsigned i, ret = 0;
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1083 1084
	struct bio *bio = (struct bio *) context;
	struct mirror_set *ms;
1085 1086 1087
	int uptodate = 0;
	int should_wake = 0;
	unsigned long flags;
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1089 1090
	ms = bio_get_m(bio)->ms;
	bio_set_m(bio, NULL);
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1091 1092 1093 1094 1095 1096 1097

	/*
	 * NOTE: We don't decrement the pending count here,
	 * instead it is done by the targets endio function.
	 * This way we handle both writes to SYNC and NOSYNC
	 * regions with the same code.
	 */
1098 1099
	if (likely(!error))
		goto out;
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Linus Torvalds 已提交
1100

1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111
	for (i = 0; i < ms->nr_mirrors; i++)
		if (test_bit(i, &error))
			fail_mirror(ms->mirror + i, DM_RAID1_WRITE_ERROR);
		else
			uptodate = 1;

	if (unlikely(!uptodate)) {
		DMERR("All replicated volumes dead, failing I/O");
		/* None of the writes succeeded, fail the I/O. */
		ret = -EIO;
	} else if (errors_handled(ms)) {
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Linus Torvalds 已提交
1112
		/*
1113 1114 1115
		 * Need to raise event.  Since raising
		 * events can block, we need to do it in
		 * the main thread.
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Linus Torvalds 已提交
1116
		 */
1117 1118 1119 1120 1121 1122 1123 1124
		spin_lock_irqsave(&ms->lock, flags);
		if (!ms->failures.head)
			should_wake = 1;
		bio_list_add(&ms->failures, bio);
		spin_unlock_irqrestore(&ms->lock, flags);
		if (should_wake)
			wake(ms);
		return;
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Linus Torvalds 已提交
1125
	}
1126 1127
out:
	bio_endio(bio, ret);
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1128 1129 1130 1131 1132
}

static void do_write(struct mirror_set *ms, struct bio *bio)
{
	unsigned int i;
H
Heinz Mauelshagen 已提交
1133
	struct dm_io_region io[ms->nr_mirrors], *dest = io;
L
Linus Torvalds 已提交
1134
	struct mirror *m;
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Milan Broz 已提交
1135 1136 1137 1138 1139 1140 1141 1142
	struct dm_io_request io_req = {
		.bi_rw = WRITE,
		.mem.type = DM_IO_BVEC,
		.mem.ptr.bvec = bio->bi_io_vec + bio->bi_idx,
		.notify.fn = write_callback,
		.notify.context = bio,
		.client = ms->io_client,
	};
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Linus Torvalds 已提交
1143

1144 1145
	for (i = 0, m = ms->mirror; i < ms->nr_mirrors; i++, m++)
		map_region(dest++, m, bio);
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Linus Torvalds 已提交
1146

1147 1148 1149 1150 1151
	/*
	 * Use default mirror because we only need it to retrieve the reference
	 * to the mirror set in write_callback().
	 */
	bio_set_m(bio, get_default_mirror(ms));
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Milan Broz 已提交
1152 1153

	(void) dm_io(&io_req, ms->nr_mirrors, io, NULL);
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1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198
}

static void do_writes(struct mirror_set *ms, struct bio_list *writes)
{
	int state;
	struct bio *bio;
	struct bio_list sync, nosync, recover, *this_list = NULL;

	if (!writes->head)
		return;

	/*
	 * Classify each write.
	 */
	bio_list_init(&sync);
	bio_list_init(&nosync);
	bio_list_init(&recover);

	while ((bio = bio_list_pop(writes))) {
		state = rh_state(&ms->rh, bio_to_region(&ms->rh, bio), 1);
		switch (state) {
		case RH_CLEAN:
		case RH_DIRTY:
			this_list = &sync;
			break;

		case RH_NOSYNC:
			this_list = &nosync;
			break;

		case RH_RECOVERING:
			this_list = &recover;
			break;
		}

		bio_list_add(this_list, bio);
	}

	/*
	 * Increment the pending counts for any regions that will
	 * be written to (writes to recover regions are going to
	 * be delayed).
	 */
	rh_inc_pending(&ms->rh, &sync);
	rh_inc_pending(&ms->rh, &nosync);
J
Jonathan Brassow 已提交
1199
	ms->log_failure = rh_flush(&ms->rh) ? 1 : 0;
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1200 1201 1202 1203

	/*
	 * Dispatch io.
	 */
1204 1205 1206 1207
	if (unlikely(ms->log_failure)) {
		spin_lock_irq(&ms->lock);
		bio_list_merge(&ms->failures, &sync);
		spin_unlock_irq(&ms->lock);
M
Mikulas Patocka 已提交
1208
		wake(ms);
1209
	} else
J
Jonathan Brassow 已提交
1210
		while ((bio = bio_list_pop(&sync)))
1211
			do_write(ms, bio);
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1212 1213 1214 1215 1216

	while ((bio = bio_list_pop(&recover)))
		rh_delay(&ms->rh, bio);

	while ((bio = bio_list_pop(&nosync))) {
1217
		map_bio(get_default_mirror(ms), bio);
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1218 1219 1220 1221
		generic_make_request(bio);
	}
}

1222 1223 1224 1225 1226 1227 1228
static void do_failures(struct mirror_set *ms, struct bio_list *failures)
{
	struct bio *bio;

	if (!failures->head)
		return;

1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267
	if (!ms->log_failure) {
		while ((bio = bio_list_pop(failures)))
			__bio_mark_nosync(ms, bio, bio->bi_size, 0);
		return;
	}

	/*
	 * If the log has failed, unattempted writes are being
	 * put on the failures list.  We can't issue those writes
	 * until a log has been marked, so we must store them.
	 *
	 * If a 'noflush' suspend is in progress, we can requeue
	 * the I/O's to the core.  This give userspace a chance
	 * to reconfigure the mirror, at which point the core
	 * will reissue the writes.  If the 'noflush' flag is
	 * not set, we have no choice but to return errors.
	 *
	 * Some writes on the failures list may have been
	 * submitted before the log failure and represent a
	 * failure to write to one of the devices.  It is ok
	 * for us to treat them the same and requeue them
	 * as well.
	 */
	if (dm_noflush_suspending(ms->ti)) {
		while ((bio = bio_list_pop(failures)))
			bio_endio(bio, DM_ENDIO_REQUEUE);
		return;
	}

	if (atomic_read(&ms->suspend)) {
		while ((bio = bio_list_pop(failures)))
			bio_endio(bio, -EIO);
		return;
	}

	spin_lock_irq(&ms->lock);
	bio_list_merge(&ms->failures, failures);
	spin_unlock_irq(&ms->lock);

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Mikulas Patocka 已提交
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	delayed_wake(ms);
1269 1270 1271 1272 1273 1274 1275 1276 1277 1278
}

static void trigger_event(struct work_struct *work)
{
	struct mirror_set *ms =
		container_of(work, struct mirror_set, trigger_event);

	dm_table_event(ms->ti->table);
}

L
Linus Torvalds 已提交
1279 1280 1281
/*-----------------------------------------------------------------
 * kmirrord
 *---------------------------------------------------------------*/
M
Mikulas Patocka 已提交
1282
static void do_mirror(struct work_struct *work)
L
Linus Torvalds 已提交
1283
{
1284 1285
	struct mirror_set *ms =container_of(work, struct mirror_set,
					    kmirrord_work);
1286 1287
	struct bio_list reads, writes, failures;
	unsigned long flags;
L
Linus Torvalds 已提交
1288

1289
	spin_lock_irqsave(&ms->lock, flags);
L
Linus Torvalds 已提交
1290 1291
	reads = ms->reads;
	writes = ms->writes;
1292
	failures = ms->failures;
L
Linus Torvalds 已提交
1293 1294
	bio_list_init(&ms->reads);
	bio_list_init(&ms->writes);
1295 1296
	bio_list_init(&ms->failures);
	spin_unlock_irqrestore(&ms->lock, flags);
L
Linus Torvalds 已提交
1297 1298 1299 1300 1301

	rh_update_states(&ms->rh);
	do_recovery(ms);
	do_reads(ms, &reads);
	do_writes(ms, &writes);
1302
	do_failures(ms, &failures);
M
Mikulas Patocka 已提交
1303 1304

	dm_table_unplug_all(ms->ti->table);
L
Linus Torvalds 已提交
1305 1306
}

1307

L
Linus Torvalds 已提交
1308 1309 1310 1311 1312 1313
/*-----------------------------------------------------------------
 * Target functions
 *---------------------------------------------------------------*/
static struct mirror_set *alloc_context(unsigned int nr_mirrors,
					uint32_t region_size,
					struct dm_target *ti,
H
Heinz Mauelshagen 已提交
1314
					struct dm_dirty_log *dl)
L
Linus Torvalds 已提交
1315 1316 1317 1318 1319 1320
{
	size_t len;
	struct mirror_set *ms = NULL;

	len = sizeof(*ms) + (sizeof(ms->mirror[0]) * nr_mirrors);

1321
	ms = kzalloc(len, GFP_KERNEL);
L
Linus Torvalds 已提交
1322
	if (!ms) {
1323
		ti->error = "Cannot allocate mirror context";
L
Linus Torvalds 已提交
1324 1325 1326 1327 1328 1329 1330 1331 1332
		return NULL;
	}

	spin_lock_init(&ms->lock);

	ms->ti = ti;
	ms->nr_mirrors = nr_mirrors;
	ms->nr_regions = dm_sector_div_up(ti->len, region_size);
	ms->in_sync = 0;
1333 1334
	ms->log_failure = 0;
	atomic_set(&ms->suspend, 0);
1335
	atomic_set(&ms->default_mirror, DEFAULT_MIRROR);
L
Linus Torvalds 已提交
1336

1337 1338 1339 1340 1341 1342 1343 1344 1345
	len = sizeof(struct dm_raid1_read_record);
	ms->read_record_pool = mempool_create_kmalloc_pool(MIN_READ_RECORDS,
							   len);
	if (!ms->read_record_pool) {
		ti->error = "Error creating mirror read_record_pool";
		kfree(ms);
		return NULL;
	}

M
Milan Broz 已提交
1346 1347 1348
	ms->io_client = dm_io_client_create(DM_IO_PAGES);
	if (IS_ERR(ms->io_client)) {
		ti->error = "Error creating dm_io client";
1349
		mempool_destroy(ms->read_record_pool);
M
Milan Broz 已提交
1350 1351 1352 1353
		kfree(ms);
 		return NULL;
	}

L
Linus Torvalds 已提交
1354
	if (rh_init(&ms->rh, ms, dl, region_size, ms->nr_regions)) {
1355
		ti->error = "Error creating dirty region hash";
D
Dmitry Monakhov 已提交
1356
		dm_io_client_destroy(ms->io_client);
1357
		mempool_destroy(ms->read_record_pool);
L
Linus Torvalds 已提交
1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370
		kfree(ms);
		return NULL;
	}

	return ms;
}

static void free_context(struct mirror_set *ms, struct dm_target *ti,
			 unsigned int m)
{
	while (m--)
		dm_put_device(ti, ms->mirror[m].dev);

M
Milan Broz 已提交
1371
	dm_io_client_destroy(ms->io_client);
L
Linus Torvalds 已提交
1372
	rh_exit(&ms->rh);
1373
	mempool_destroy(ms->read_record_pool);
L
Linus Torvalds 已提交
1374 1375 1376 1377 1378
	kfree(ms);
}

static inline int _check_region_size(struct dm_target *ti, uint32_t size)
{
V
vignesh babu 已提交
1379
	return !(size % (PAGE_SIZE >> 9) || !is_power_of_2(size) ||
L
Linus Torvalds 已提交
1380 1381 1382 1383 1384 1385
		 size > ti->len);
}

static int get_mirror(struct mirror_set *ms, struct dm_target *ti,
		      unsigned int mirror, char **argv)
{
A
Andrew Morton 已提交
1386
	unsigned long long offset;
L
Linus Torvalds 已提交
1387

A
Andrew Morton 已提交
1388
	if (sscanf(argv[1], "%llu", &offset) != 1) {
1389
		ti->error = "Invalid offset";
L
Linus Torvalds 已提交
1390 1391 1392 1393 1394 1395
		return -EINVAL;
	}

	if (dm_get_device(ti, argv[0], offset, ti->len,
			  dm_table_get_mode(ti->table),
			  &ms->mirror[mirror].dev)) {
1396
		ti->error = "Device lookup failure";
L
Linus Torvalds 已提交
1397 1398 1399
		return -ENXIO;
	}

1400
	ms->mirror[mirror].ms = ms;
1401 1402
	atomic_set(&(ms->mirror[mirror].error_count), 0);
	ms->mirror[mirror].error_type = 0;
L
Linus Torvalds 已提交
1403 1404 1405 1406 1407 1408 1409 1410
	ms->mirror[mirror].offset = offset;

	return 0;
}

/*
 * Create dirty log: log_type #log_params <log_params>
 */
H
Heinz Mauelshagen 已提交
1411
static struct dm_dirty_log *create_dirty_log(struct dm_target *ti,
L
Linus Torvalds 已提交
1412 1413 1414 1415
					  unsigned int argc, char **argv,
					  unsigned int *args_used)
{
	unsigned int param_count;
H
Heinz Mauelshagen 已提交
1416
	struct dm_dirty_log *dl;
L
Linus Torvalds 已提交
1417 1418

	if (argc < 2) {
1419
		ti->error = "Insufficient mirror log arguments";
L
Linus Torvalds 已提交
1420 1421 1422 1423
		return NULL;
	}

	if (sscanf(argv[1], "%u", &param_count) != 1) {
1424
		ti->error = "Invalid mirror log argument count";
L
Linus Torvalds 已提交
1425 1426 1427 1428 1429 1430
		return NULL;
	}

	*args_used = 2 + param_count;

	if (argc < *args_used) {
1431
		ti->error = "Insufficient mirror log arguments";
L
Linus Torvalds 已提交
1432 1433 1434
		return NULL;
	}

H
Heinz Mauelshagen 已提交
1435
	dl = dm_dirty_log_create(argv[0], ti, param_count, argv + 2);
L
Linus Torvalds 已提交
1436
	if (!dl) {
1437
		ti->error = "Error creating mirror dirty log";
L
Linus Torvalds 已提交
1438 1439 1440 1441
		return NULL;
	}

	if (!_check_region_size(ti, dl->type->get_region_size(dl))) {
1442
		ti->error = "Invalid region size";
H
Heinz Mauelshagen 已提交
1443
		dm_dirty_log_destroy(dl);
L
Linus Torvalds 已提交
1444 1445 1446 1447 1448 1449
		return NULL;
	}

	return dl;
}

1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486
static int parse_features(struct mirror_set *ms, unsigned argc, char **argv,
			  unsigned *args_used)
{
	unsigned num_features;
	struct dm_target *ti = ms->ti;

	*args_used = 0;

	if (!argc)
		return 0;

	if (sscanf(argv[0], "%u", &num_features) != 1) {
		ti->error = "Invalid number of features";
		return -EINVAL;
	}

	argc--;
	argv++;
	(*args_used)++;

	if (num_features > argc) {
		ti->error = "Not enough arguments to support feature count";
		return -EINVAL;
	}

	if (!strcmp("handle_errors", argv[0]))
		ms->features |= DM_RAID1_HANDLE_ERRORS;
	else {
		ti->error = "Unrecognised feature requested";
		return -EINVAL;
	}

	(*args_used)++;

	return 0;
}

L
Linus Torvalds 已提交
1487 1488 1489 1490 1491
/*
 * Construct a mirror mapping:
 *
 * log_type #log_params <log_params>
 * #mirrors [mirror_path offset]{2,}
1492
 * [#features <features>]
L
Linus Torvalds 已提交
1493 1494 1495
 *
 * log_type is "core" or "disk"
 * #log_params is between 1 and 3
1496 1497
 *
 * If present, features must be "handle_errors".
L
Linus Torvalds 已提交
1498 1499 1500 1501 1502 1503
 */
static int mirror_ctr(struct dm_target *ti, unsigned int argc, char **argv)
{
	int r;
	unsigned int nr_mirrors, m, args_used;
	struct mirror_set *ms;
H
Heinz Mauelshagen 已提交
1504
	struct dm_dirty_log *dl;
L
Linus Torvalds 已提交
1505 1506 1507 1508 1509 1510 1511 1512 1513

	dl = create_dirty_log(ti, argc, argv, &args_used);
	if (!dl)
		return -EINVAL;

	argv += args_used;
	argc -= args_used;

	if (!argc || sscanf(argv[0], "%u", &nr_mirrors) != 1 ||
H
Heinz Mauelshagen 已提交
1514
	    nr_mirrors < 2 || nr_mirrors > DM_KCOPYD_MAX_REGIONS + 1) {
1515
		ti->error = "Invalid number of mirrors";
H
Heinz Mauelshagen 已提交
1516
		dm_dirty_log_destroy(dl);
L
Linus Torvalds 已提交
1517 1518 1519 1520 1521
		return -EINVAL;
	}

	argv++, argc--;

1522 1523
	if (argc < nr_mirrors * 2) {
		ti->error = "Too few mirror arguments";
H
Heinz Mauelshagen 已提交
1524
		dm_dirty_log_destroy(dl);
L
Linus Torvalds 已提交
1525 1526 1527 1528 1529
		return -EINVAL;
	}

	ms = alloc_context(nr_mirrors, dl->type->get_region_size(dl), ti, dl);
	if (!ms) {
H
Heinz Mauelshagen 已提交
1530
		dm_dirty_log_destroy(dl);
L
Linus Torvalds 已提交
1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545
		return -ENOMEM;
	}

	/* Get the mirror parameter sets */
	for (m = 0; m < nr_mirrors; m++) {
		r = get_mirror(ms, ti, m, argv);
		if (r) {
			free_context(ms, ti, m);
			return r;
		}
		argv += 2;
		argc -= 2;
	}

	ti->private = ms;
1546
 	ti->split_io = ms->rh.region_size;
L
Linus Torvalds 已提交
1547

1548 1549 1550
	ms->kmirrord_wq = create_singlethread_workqueue("kmirrord");
	if (!ms->kmirrord_wq) {
		DMERR("couldn't start kmirrord");
D
Dmitry Monakhov 已提交
1551 1552
		r = -ENOMEM;
		goto err_free_context;
1553 1554
	}
	INIT_WORK(&ms->kmirrord_work, do_mirror);
M
Mikulas Patocka 已提交
1555 1556
	init_timer(&ms->timer);
	ms->timer_pending = 0;
1557
	INIT_WORK(&ms->trigger_event, trigger_event);
1558

1559
	r = parse_features(ms, argc, argv, &args_used);
D
Dmitry Monakhov 已提交
1560 1561
	if (r)
		goto err_destroy_wq;
1562 1563 1564 1565

	argv += args_used;
	argc -= args_used;

1566 1567 1568 1569 1570 1571 1572 1573 1574
	/*
	 * Any read-balancing addition depends on the
	 * DM_RAID1_HANDLE_ERRORS flag being present.
	 * This is because the decision to balance depends
	 * on the sync state of a region.  If the above
	 * flag is not present, we ignore errors; and
	 * the sync state may be inaccurate.
	 */

1575 1576
	if (argc) {
		ti->error = "Too many mirror arguments";
D
Dmitry Monakhov 已提交
1577 1578
		r = -EINVAL;
		goto err_destroy_wq;
1579 1580
	}

H
Heinz Mauelshagen 已提交
1581
	r = dm_kcopyd_client_create(DM_IO_PAGES, &ms->kcopyd_client);
D
Dmitry Monakhov 已提交
1582 1583
	if (r)
		goto err_destroy_wq;
L
Linus Torvalds 已提交
1584

1585
	wake(ms);
L
Linus Torvalds 已提交
1586
	return 0;
D
Dmitry Monakhov 已提交
1587 1588 1589 1590 1591 1592

err_destroy_wq:
	destroy_workqueue(ms->kmirrord_wq);
err_free_context:
	free_context(ms, ti, ms->nr_mirrors);
	return r;
L
Linus Torvalds 已提交
1593 1594 1595 1596 1597 1598
}

static void mirror_dtr(struct dm_target *ti)
{
	struct mirror_set *ms = (struct mirror_set *) ti->private;

M
Mikulas Patocka 已提交
1599
	del_timer_sync(&ms->timer);
1600
	flush_workqueue(ms->kmirrord_wq);
H
Heinz Mauelshagen 已提交
1601
	dm_kcopyd_client_destroy(ms->kcopyd_client);
1602
	destroy_workqueue(ms->kmirrord_wq);
L
Linus Torvalds 已提交
1603 1604 1605 1606 1607
	free_context(ms, ti, ms->nr_mirrors);
}

static void queue_bio(struct mirror_set *ms, struct bio *bio, int rw)
{
1608
	unsigned long flags;
L
Linus Torvalds 已提交
1609 1610 1611 1612
	int should_wake = 0;
	struct bio_list *bl;

	bl = (rw == WRITE) ? &ms->writes : &ms->reads;
1613
	spin_lock_irqsave(&ms->lock, flags);
L
Linus Torvalds 已提交
1614 1615
	should_wake = !(bl->head);
	bio_list_add(bl, bio);
1616
	spin_unlock_irqrestore(&ms->lock, flags);
L
Linus Torvalds 已提交
1617 1618

	if (should_wake)
1619
		wake(ms);
L
Linus Torvalds 已提交
1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630
}

/*
 * Mirror mapping function
 */
static int mirror_map(struct dm_target *ti, struct bio *bio,
		      union map_info *map_context)
{
	int r, rw = bio_rw(bio);
	struct mirror *m;
	struct mirror_set *ms = ti->private;
1631
	struct dm_raid1_read_record *read_record = NULL;
L
Linus Torvalds 已提交
1632 1633

	if (rw == WRITE) {
1634 1635
		/* Save region for mirror_end_io() handler */
		map_context->ll = bio_to_region(&ms->rh, bio);
L
Linus Torvalds 已提交
1636
		queue_bio(ms, bio, rw);
1637
		return DM_MAPIO_SUBMITTED;
L
Linus Torvalds 已提交
1638 1639 1640 1641 1642 1643 1644 1645
	}

	r = ms->rh.log->type->in_sync(ms->rh.log,
				      bio_to_region(&ms->rh, bio), 0);
	if (r < 0 && r != -EWOULDBLOCK)
		return r;

	/*
1646
	 * If region is not in-sync queue the bio.
L
Linus Torvalds 已提交
1647
	 */
1648 1649 1650
	if (!r || (r == -EWOULDBLOCK)) {
		if (rw == READA)
			return -EWOULDBLOCK;
L
Linus Torvalds 已提交
1651 1652

		queue_bio(ms, bio, rw);
1653
		return DM_MAPIO_SUBMITTED;
L
Linus Torvalds 已提交
1654 1655
	}

1656 1657 1658 1659
	/*
	 * The region is in-sync and we can perform reads directly.
	 * Store enough information so we can retry if it fails.
	 */
L
Linus Torvalds 已提交
1660
	m = choose_mirror(ms, bio->bi_sector);
1661
	if (unlikely(!m))
L
Linus Torvalds 已提交
1662 1663
		return -EIO;

1664 1665 1666 1667 1668 1669 1670 1671 1672
	read_record = mempool_alloc(ms->read_record_pool, GFP_NOIO);
	if (likely(read_record)) {
		dm_bio_record(&read_record->details, bio);
		map_context->ptr = read_record;
		read_record->m = m;
	}

	map_bio(m, bio);

1673
	return DM_MAPIO_REMAPPED;
L
Linus Torvalds 已提交
1674 1675 1676 1677 1678 1679 1680
}

static int mirror_end_io(struct dm_target *ti, struct bio *bio,
			 int error, union map_info *map_context)
{
	int rw = bio_rw(bio);
	struct mirror_set *ms = (struct mirror_set *) ti->private;
1681 1682 1683
	struct mirror *m = NULL;
	struct dm_bio_details *bd = NULL;
	struct dm_raid1_read_record *read_record = map_context->ptr;
L
Linus Torvalds 已提交
1684 1685 1686 1687

	/*
	 * We need to dec pending if this was a write.
	 */
1688 1689 1690 1691
	if (rw == WRITE) {
		rh_dec(&ms->rh, map_context->ll);
		return error;
	}
L
Linus Torvalds 已提交
1692

1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705
	if (error == -EOPNOTSUPP)
		goto out;

	if ((error == -EWOULDBLOCK) && bio_rw_ahead(bio))
		goto out;

	if (unlikely(error)) {
		if (!read_record) {
			/*
			 * There wasn't enough memory to record necessary
			 * information for a retry or there was no other
			 * mirror in-sync.
			 */
A
Adrian Bunk 已提交
1706
			DMERR_LIMIT("Mirror read failed.");
1707 1708
			return -EIO;
		}
A
Adrian Bunk 已提交
1709 1710 1711

		m = read_record->m;

1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739
		DMERR("Mirror read failed from %s. Trying alternative device.",
		      m->dev->name);

		fail_mirror(m, DM_RAID1_READ_ERROR);

		/*
		 * A failed read is requeued for another attempt using an intact
		 * mirror.
		 */
		if (default_ok(m) || mirror_available(ms, bio)) {
			bd = &read_record->details;

			dm_bio_restore(bd, bio);
			mempool_free(read_record, ms->read_record_pool);
			map_context->ptr = NULL;
			queue_bio(ms, bio, rw);
			return 1;
		}
		DMERR("All replicated volumes dead, failing I/O");
	}

out:
	if (read_record) {
		mempool_free(read_record, ms->read_record_pool);
		map_context->ptr = NULL;
	}

	return error;
L
Linus Torvalds 已提交
1740 1741
}

1742
static void mirror_presuspend(struct dm_target *ti)
L
Linus Torvalds 已提交
1743 1744
{
	struct mirror_set *ms = (struct mirror_set *) ti->private;
H
Heinz Mauelshagen 已提交
1745
	struct dm_dirty_log *log = ms->rh.log;
L
Linus Torvalds 已提交
1746

1747 1748 1749 1750 1751 1752
	atomic_set(&ms->suspend, 1);

	/*
	 * We must finish up all the work that we've
	 * generated (i.e. recovery work).
	 */
L
Linus Torvalds 已提交
1753
	rh_stop_recovery(&ms->rh);
1754 1755 1756 1757

	wait_event(_kmirrord_recovery_stopped,
		   !atomic_read(&ms->rh.recovery_in_flight));

1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773
	if (log->type->presuspend && log->type->presuspend(log))
		/* FIXME: need better error handling */
		DMWARN("log presuspend failed");

	/*
	 * Now that recovery is complete/stopped and the
	 * delayed bios are queued, we need to wait for
	 * the worker thread to complete.  This way,
	 * we know that all of our I/O has been pushed.
	 */
	flush_workqueue(ms->kmirrord_wq);
}

static void mirror_postsuspend(struct dm_target *ti)
{
	struct mirror_set *ms = ti->private;
H
Heinz Mauelshagen 已提交
1774
	struct dm_dirty_log *log = ms->rh.log;
1775

J
Jonathan Brassow 已提交
1776
	if (log->type->postsuspend && log->type->postsuspend(log))
L
Linus Torvalds 已提交
1777
		/* FIXME: need better error handling */
1778
		DMWARN("log postsuspend failed");
L
Linus Torvalds 已提交
1779 1780 1781 1782
}

static void mirror_resume(struct dm_target *ti)
{
1783
	struct mirror_set *ms = ti->private;
H
Heinz Mauelshagen 已提交
1784
	struct dm_dirty_log *log = ms->rh.log;
1785 1786

	atomic_set(&ms->suspend, 0);
L
Linus Torvalds 已提交
1787 1788 1789 1790 1791 1792
	if (log->type->resume && log->type->resume(log))
		/* FIXME: need better error handling */
		DMWARN("log resume failed");
	rh_start_recovery(&ms->rh);
}

J
Jonathan Brassow 已提交
1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816
/*
 * device_status_char
 * @m: mirror device/leg we want the status of
 *
 * We return one character representing the most severe error
 * we have encountered.
 *    A => Alive - No failures
 *    D => Dead - A write failure occurred leaving mirror out-of-sync
 *    S => Sync - A sychronization failure occurred, mirror out-of-sync
 *    R => Read - A read failure occurred, mirror data unaffected
 *
 * Returns: <char>
 */
static char device_status_char(struct mirror *m)
{
	if (!atomic_read(&(m->error_count)))
		return 'A';

	return (test_bit(DM_RAID1_WRITE_ERROR, &(m->error_type))) ? 'D' :
		(test_bit(DM_RAID1_SYNC_ERROR, &(m->error_type))) ? 'S' :
		(test_bit(DM_RAID1_READ_ERROR, &(m->error_type))) ? 'R' : 'U';
}


L
Linus Torvalds 已提交
1817 1818 1819
static int mirror_status(struct dm_target *ti, status_type_t type,
			 char *result, unsigned int maxlen)
{
J
Jonathan E Brassow 已提交
1820
	unsigned int m, sz = 0;
L
Linus Torvalds 已提交
1821
	struct mirror_set *ms = (struct mirror_set *) ti->private;
H
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	struct dm_dirty_log *log = ms->rh.log;
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	char buffer[ms->nr_mirrors + 1];
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	switch (type) {
	case STATUSTYPE_INFO:
		DMEMIT("%d ", ms->nr_mirrors);
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		for (m = 0; m < ms->nr_mirrors; m++) {
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			DMEMIT("%s ", ms->mirror[m].dev->name);
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			buffer[m] = device_status_char(&(ms->mirror[m]));
		}
		buffer[m] = '\0';
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		DMEMIT("%llu/%llu 1 %s ",
		      (unsigned long long)log->type->get_sync_count(ms->rh.log),
		      (unsigned long long)ms->nr_regions, buffer);
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		sz += log->type->status(ms->rh.log, type, result+sz, maxlen-sz);
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		break;

	case STATUSTYPE_TABLE:
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		sz = log->type->status(ms->rh.log, type, result, maxlen);
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1845
		DMEMIT("%d", ms->nr_mirrors);
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		for (m = 0; m < ms->nr_mirrors; m++)
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			DMEMIT(" %s %llu", ms->mirror[m].dev->name,
1848
			       (unsigned long long)ms->mirror[m].offset);
1849 1850 1851

		if (ms->features & DM_RAID1_HANDLE_ERRORS)
			DMEMIT(" 1 handle_errors");
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	}

	return 0;
}

static struct target_type mirror_target = {
	.name	 = "mirror",
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	.version = {1, 0, 20},
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	.module	 = THIS_MODULE,
	.ctr	 = mirror_ctr,
	.dtr	 = mirror_dtr,
	.map	 = mirror_map,
	.end_io	 = mirror_end_io,
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	.presuspend = mirror_presuspend,
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	.postsuspend = mirror_postsuspend,
	.resume	 = mirror_resume,
	.status	 = mirror_status,
};

static int __init dm_mirror_init(void)
{
	int r;

	r = dm_register_target(&mirror_target);
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	if (r < 0)
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		DMERR("Failed to register mirror target");
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	return r;
}

static void __exit dm_mirror_exit(void)
{
	int r;

	r = dm_unregister_target(&mirror_target);
	if (r < 0)
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		DMERR("unregister failed %d", r);
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}

/* Module hooks */
module_init(dm_mirror_init);
module_exit(dm_mirror_exit);

MODULE_DESCRIPTION(DM_NAME " mirror target");
MODULE_AUTHOR("Joe Thornber");
MODULE_LICENSE("GPL");