super.c 71.3 KB
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// SPDX-License-Identifier: GPL-2.0
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/*
 * bcache setup/teardown code, and some metadata io - read a superblock and
 * figure out what to do with it.
 *
 * Copyright 2010, 2011 Kent Overstreet <kent.overstreet@gmail.com>
 * Copyright 2012 Google, Inc.
 */

#include "bcache.h"
#include "btree.h"
#include "debug.h"
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#include "extents.h"
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#include "request.h"
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#include "writeback.h"
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#include "features.h"
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#include <linux/blkdev.h>
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#include <linux/debugfs.h>
#include <linux/genhd.h>
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#include <linux/idr.h>
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#include <linux/kthread.h>
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#include <linux/workqueue.h>
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#include <linux/module.h>
#include <linux/random.h>
#include <linux/reboot.h>
#include <linux/sysfs.h>

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unsigned int bch_cutoff_writeback;
unsigned int bch_cutoff_writeback_sync;

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static const char bcache_magic[] = {
	0xc6, 0x85, 0x73, 0xf6, 0x4e, 0x1a, 0x45, 0xca,
	0x82, 0x65, 0xf5, 0x7f, 0x48, 0xba, 0x6d, 0x81
};

static const char invalid_uuid[] = {
	0xa0, 0x3e, 0xf8, 0xed, 0x3e, 0xe1, 0xb8, 0x78,
	0xc8, 0x50, 0xfc, 0x5e, 0xcb, 0x16, 0xcd, 0x99
};

static struct kobject *bcache_kobj;
struct mutex bch_register_lock;
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bool bcache_is_reboot;
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LIST_HEAD(bch_cache_sets);
static LIST_HEAD(uncached_devices);

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static int bcache_major;
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static DEFINE_IDA(bcache_device_idx);
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static wait_queue_head_t unregister_wait;
struct workqueue_struct *bcache_wq;
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struct workqueue_struct *bch_journal_wq;
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#define BTREE_MAX_PAGES		(256 * 1024 / PAGE_SIZE)
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/* limitation of partitions number on single bcache device */
#define BCACHE_MINORS		128
/* limitation of bcache devices number on single system */
#define BCACHE_DEVICE_IDX_MAX	((1U << MINORBITS)/BCACHE_MINORS)
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/* Superblock */

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static unsigned int get_bucket_size(struct cache_sb *sb, struct cache_sb_disk *s)
{
	unsigned int bucket_size = le16_to_cpu(s->bucket_size);

	if (sb->version >= BCACHE_SB_VERSION_CDEV_WITH_FEATURES &&
	     bch_has_feature_large_bucket(sb))
		bucket_size |= le16_to_cpu(s->bucket_size_hi) << 16;

	return bucket_size;
}

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static const char *read_super_common(struct cache_sb *sb,  struct block_device *bdev,
				     struct cache_sb_disk *s)
{
	const char *err;
	unsigned int i;

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	sb->first_bucket= le16_to_cpu(s->first_bucket);
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	sb->nbuckets	= le64_to_cpu(s->nbuckets);
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	sb->bucket_size	= get_bucket_size(sb, s);
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	sb->nr_in_set	= le16_to_cpu(s->nr_in_set);
	sb->nr_this_dev	= le16_to_cpu(s->nr_this_dev);

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	err = "Too many journal buckets";
	if (sb->keys > SB_JOURNAL_BUCKETS)
		goto err;

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	err = "Too many buckets";
	if (sb->nbuckets > LONG_MAX)
		goto err;

	err = "Not enough buckets";
	if (sb->nbuckets < 1 << 7)
		goto err;

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	err = "Bad block size (not power of 2)";
	if (!is_power_of_2(sb->block_size))
		goto err;

	err = "Bad block size (larger than page size)";
	if (sb->block_size > PAGE_SECTORS)
		goto err;

	err = "Bad bucket size (not power of 2)";
	if (!is_power_of_2(sb->bucket_size))
		goto err;

	err = "Bad bucket size (smaller than page size)";
	if (sb->bucket_size < PAGE_SECTORS)
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		goto err;

	err = "Invalid superblock: device too small";
	if (get_capacity(bdev->bd_disk) <
	    sb->bucket_size * sb->nbuckets)
		goto err;

	err = "Bad UUID";
	if (bch_is_zero(sb->set_uuid, 16))
		goto err;

	err = "Bad cache device number in set";
	if (!sb->nr_in_set ||
	    sb->nr_in_set <= sb->nr_this_dev ||
	    sb->nr_in_set > MAX_CACHES_PER_SET)
		goto err;

	err = "Journal buckets not sequential";
	for (i = 0; i < sb->keys; i++)
		if (sb->d[i] != sb->first_bucket + i)
			goto err;

	err = "Too many journal buckets";
	if (sb->first_bucket + sb->keys > sb->nbuckets)
		goto err;

	err = "Invalid superblock: first bucket comes before end of super";
	if (sb->first_bucket * sb->bucket_size < 16)
		goto err;

	err = NULL;
err:
	return err;
}


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static const char *read_super(struct cache_sb *sb, struct block_device *bdev,
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			      struct cache_sb_disk **res)
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{
	const char *err;
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	struct cache_sb_disk *s;
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	struct page *page;
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	unsigned int i;
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	page = read_cache_page_gfp(bdev->bd_inode->i_mapping,
				   SB_OFFSET >> PAGE_SHIFT, GFP_KERNEL);
	if (IS_ERR(page))
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		return "IO error";
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	s = page_address(page) + offset_in_page(SB_OFFSET);
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	sb->offset		= le64_to_cpu(s->offset);
	sb->version		= le64_to_cpu(s->version);

	memcpy(sb->magic,	s->magic, 16);
	memcpy(sb->uuid,	s->uuid, 16);
	memcpy(sb->set_uuid,	s->set_uuid, 16);
	memcpy(sb->label,	s->label, SB_LABEL_SIZE);

	sb->flags		= le64_to_cpu(s->flags);
	sb->seq			= le64_to_cpu(s->seq);
	sb->last_mount		= le32_to_cpu(s->last_mount);
	sb->keys		= le16_to_cpu(s->keys);

	for (i = 0; i < SB_JOURNAL_BUCKETS; i++)
		sb->d[i] = le64_to_cpu(s->d[i]);

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	pr_debug("read sb version %llu, flags %llu, seq %llu, journal size %u\n",
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		 sb->version, sb->flags, sb->seq, sb->keys);

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	err = "Not a bcache superblock (bad offset)";
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	if (sb->offset != SB_SECTOR)
		goto err;

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	err = "Not a bcache superblock (bad magic)";
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	if (memcmp(sb->magic, bcache_magic, 16))
		goto err;

	err = "Bad checksum";
	if (s->csum != csum_set(s))
		goto err;

	err = "Bad UUID";
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	if (bch_is_zero(sb->uuid, 16))
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		goto err;

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	sb->block_size	= le16_to_cpu(s->block_size);

	err = "Superblock block size smaller than device block size";
	if (sb->block_size << 9 < bdev_logical_block_size(bdev))
		goto err;

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	switch (sb->version) {
	case BCACHE_SB_VERSION_BDEV:
		sb->data_offset	= BDEV_DATA_START_DEFAULT;
		break;
	case BCACHE_SB_VERSION_BDEV_WITH_OFFSET:
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	case BCACHE_SB_VERSION_BDEV_WITH_FEATURES:
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		sb->data_offset	= le64_to_cpu(s->data_offset);

		err = "Bad data offset";
		if (sb->data_offset < BDEV_DATA_START_DEFAULT)
			goto err;
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		break;
	case BCACHE_SB_VERSION_CDEV:
	case BCACHE_SB_VERSION_CDEV_WITH_UUID:
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		err = read_super_common(sb, bdev, s);
		if (err)
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			goto err;
		break;
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	case BCACHE_SB_VERSION_CDEV_WITH_FEATURES:
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		/*
		 * Feature bits are needed in read_super_common(),
		 * convert them firstly.
		 */
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		sb->feature_compat = le64_to_cpu(s->feature_compat);
		sb->feature_incompat = le64_to_cpu(s->feature_incompat);
		sb->feature_ro_compat = le64_to_cpu(s->feature_ro_compat);
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		err = read_super_common(sb, bdev, s);
		if (err)
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			goto err;
		break;
	default:
		err = "Unsupported superblock version";
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		goto err;
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	}

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	sb->last_mount = (u32)ktime_get_real_seconds();
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	*res = s;
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	return NULL;
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err:
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	put_page(page);
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	return err;
}

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static void write_bdev_super_endio(struct bio *bio)
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{
	struct cached_dev *dc = bio->bi_private;
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	if (bio->bi_status)
		bch_count_backing_io_errors(dc, bio);
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	closure_put(&dc->sb_write);
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}

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static void __write_super(struct cache_sb *sb, struct cache_sb_disk *out,
		struct bio *bio)
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{
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	unsigned int i;
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	bio->bi_opf = REQ_OP_WRITE | REQ_SYNC | REQ_META;
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	bio->bi_iter.bi_sector	= SB_SECTOR;
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	__bio_add_page(bio, virt_to_page(out), SB_SIZE,
			offset_in_page(out));
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	out->offset		= cpu_to_le64(sb->offset);

	memcpy(out->uuid,	sb->uuid, 16);
	memcpy(out->set_uuid,	sb->set_uuid, 16);
	memcpy(out->label,	sb->label, SB_LABEL_SIZE);

	out->flags		= cpu_to_le64(sb->flags);
	out->seq		= cpu_to_le64(sb->seq);

	out->last_mount		= cpu_to_le32(sb->last_mount);
	out->first_bucket	= cpu_to_le16(sb->first_bucket);
	out->keys		= cpu_to_le16(sb->keys);

	for (i = 0; i < sb->keys; i++)
		out->d[i] = cpu_to_le64(sb->d[i]);

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	if (sb->version >= BCACHE_SB_VERSION_CDEV_WITH_FEATURES) {
		out->feature_compat    = cpu_to_le64(sb->feature_compat);
		out->feature_incompat  = cpu_to_le64(sb->feature_incompat);
		out->feature_ro_compat = cpu_to_le64(sb->feature_ro_compat);
	}

	out->version		= cpu_to_le64(sb->version);
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	out->csum = csum_set(out);

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	pr_debug("ver %llu, flags %llu, seq %llu\n",
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		 sb->version, sb->flags, sb->seq);

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	submit_bio(bio);
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}

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static void bch_write_bdev_super_unlock(struct closure *cl)
{
	struct cached_dev *dc = container_of(cl, struct cached_dev, sb_write);

	up(&dc->sb_write_mutex);
}

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void bch_write_bdev_super(struct cached_dev *dc, struct closure *parent)
{
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	struct closure *cl = &dc->sb_write;
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	struct bio *bio = &dc->sb_bio;

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	down(&dc->sb_write_mutex);
	closure_init(cl, parent);
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	bio_init(bio, dc->sb_bv, 1);
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	bio_set_dev(bio, dc->bdev);
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	bio->bi_end_io	= write_bdev_super_endio;
	bio->bi_private = dc;

	closure_get(cl);
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	/* I/O request sent to backing device */
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	__write_super(&dc->sb, dc->sb_disk, bio);
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	closure_return_with_destructor(cl, bch_write_bdev_super_unlock);
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}

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static void write_super_endio(struct bio *bio)
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{
	struct cache *ca = bio->bi_private;

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	/* is_read = 0 */
	bch_count_io_errors(ca, bio->bi_status, 0,
			    "writing superblock");
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	closure_put(&ca->set->sb_write);
}

static void bcache_write_super_unlock(struct closure *cl)
{
	struct cache_set *c = container_of(cl, struct cache_set, sb_write);

	up(&c->sb_write_mutex);
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}

void bcache_write_super(struct cache_set *c)
{
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	struct closure *cl = &c->sb_write;
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	struct cache *ca = c->cache;
	struct bio *bio = &ca->sb_bio;
	unsigned int version = BCACHE_SB_VERSION_CDEV_WITH_UUID;
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	down(&c->sb_write_mutex);
	closure_init(cl, &c->cl);
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	c->sb.seq++;

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	if (c->sb.version > version)
		version = c->sb.version;

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	ca->sb.version		= version;
	ca->sb.seq		= c->sb.seq;
	ca->sb.last_mount	= c->sb.last_mount;
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	SET_CACHE_SYNC(&ca->sb, CACHE_SYNC(&c->sb));
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	bio_init(bio, ca->sb_bv, 1);
	bio_set_dev(bio, ca->bdev);
	bio->bi_end_io	= write_super_endio;
	bio->bi_private = ca;
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	closure_get(cl);
	__write_super(&ca->sb, ca->sb_disk, bio);
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	closure_return_with_destructor(cl, bcache_write_super_unlock);
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}

/* UUID io */

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static void uuid_endio(struct bio *bio)
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{
	struct closure *cl = bio->bi_private;
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	struct cache_set *c = container_of(cl, struct cache_set, uuid_write);
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	cache_set_err_on(bio->bi_status, c, "accessing uuids");
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	bch_bbio_free(bio, c);
	closure_put(cl);
}

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static void uuid_io_unlock(struct closure *cl)
{
	struct cache_set *c = container_of(cl, struct cache_set, uuid_write);

	up(&c->uuid_write_mutex);
}

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static void uuid_io(struct cache_set *c, int op, unsigned long op_flags,
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		    struct bkey *k, struct closure *parent)
{
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	struct closure *cl = &c->uuid_write;
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	struct uuid_entry *u;
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	unsigned int i;
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	char buf[80];
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	BUG_ON(!parent);
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	down(&c->uuid_write_mutex);
	closure_init(cl, parent);
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	for (i = 0; i < KEY_PTRS(k); i++) {
		struct bio *bio = bch_bbio_alloc(c);

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		bio->bi_opf = REQ_SYNC | REQ_META | op_flags;
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		bio->bi_iter.bi_size = KEY_SIZE(k) << 9;
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		bio->bi_end_io	= uuid_endio;
		bio->bi_private = cl;
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		bio_set_op_attrs(bio, op, REQ_SYNC|REQ_META|op_flags);
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		bch_bio_map(bio, c->uuids);
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		bch_submit_bbio(bio, c, k, i);

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		if (op != REQ_OP_WRITE)
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			break;
	}

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	bch_extent_to_text(buf, sizeof(buf), k);
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	pr_debug("%s UUIDs at %s\n", op == REQ_OP_WRITE ? "wrote" : "read", buf);
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	for (u = c->uuids; u < c->uuids + c->nr_uuids; u++)
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		if (!bch_is_zero(u->uuid, 16))
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			pr_debug("Slot %zi: %pU: %s: 1st: %u last: %u inv: %u\n",
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				 u - c->uuids, u->uuid, u->label,
				 u->first_reg, u->last_reg, u->invalidated);

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	closure_return_with_destructor(cl, uuid_io_unlock);
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}

static char *uuid_read(struct cache_set *c, struct jset *j, struct closure *cl)
{
	struct bkey *k = &j->uuid_bucket;

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	if (__bch_btree_ptr_invalid(c, k))
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		return "bad uuid pointer";

	bkey_copy(&c->uuid_bucket, k);
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	uuid_io(c, REQ_OP_READ, 0, k, cl);
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	if (j->version < BCACHE_JSET_VERSION_UUIDv1) {
		struct uuid_entry_v0	*u0 = (void *) c->uuids;
		struct uuid_entry	*u1 = (void *) c->uuids;
		int i;

		closure_sync(cl);

		/*
		 * Since the new uuid entry is bigger than the old, we have to
		 * convert starting at the highest memory address and work down
		 * in order to do it in place
		 */

		for (i = c->nr_uuids - 1;
		     i >= 0;
		     --i) {
			memcpy(u1[i].uuid,	u0[i].uuid, 16);
			memcpy(u1[i].label,	u0[i].label, 32);

			u1[i].first_reg		= u0[i].first_reg;
			u1[i].last_reg		= u0[i].last_reg;
			u1[i].invalidated	= u0[i].invalidated;

			u1[i].flags	= 0;
			u1[i].sectors	= 0;
		}
	}

	return NULL;
}

static int __uuid_write(struct cache_set *c)
{
	BKEY_PADDED(key) k;
	struct closure cl;
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	struct cache *ca;
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	unsigned int size;
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	closure_init_stack(&cl);
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	lockdep_assert_held(&bch_register_lock);

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	if (bch_bucket_alloc_set(c, RESERVE_BTREE, &k.key, true))
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		return 1;

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	size =  meta_bucket_pages(&c->sb) * PAGE_SECTORS;
	SET_KEY_SIZE(&k.key, size);
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	uuid_io(c, REQ_OP_WRITE, 0, &k.key, &cl);
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	closure_sync(&cl);

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	/* Only one bucket used for uuid write */
	ca = PTR_CACHE(c, &k.key, 0);
	atomic_long_add(ca->sb.bucket_size, &ca->meta_sectors_written);

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	bkey_copy(&c->uuid_bucket, &k.key);
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	bkey_put(c, &k.key);
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	return 0;
}

int bch_uuid_write(struct cache_set *c)
{
	int ret = __uuid_write(c);

	if (!ret)
		bch_journal_meta(c, NULL);

	return ret;
}

static struct uuid_entry *uuid_find(struct cache_set *c, const char *uuid)
{
	struct uuid_entry *u;

	for (u = c->uuids;
	     u < c->uuids + c->nr_uuids; u++)
		if (!memcmp(u->uuid, uuid, 16))
			return u;

	return NULL;
}

static struct uuid_entry *uuid_find_empty(struct cache_set *c)
{
	static const char zero_uuid[16] = "\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0";
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	return uuid_find(c, zero_uuid);
}

/*
 * Bucket priorities/gens:
 *
 * For each bucket, we store on disk its
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 *   8 bit gen
 *  16 bit priority
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 *
 * See alloc.c for an explanation of the gen. The priority is used to implement
 * lru (and in the future other) cache replacement policies; for most purposes
 * it's just an opaque integer.
 *
 * The gens and the priorities don't have a whole lot to do with each other, and
 * it's actually the gens that must be written out at specific times - it's no
 * big deal if the priorities don't get written, if we lose them we just reuse
 * buckets in suboptimal order.
 *
 * On disk they're stored in a packed array, and in as many buckets are required
 * to fit them all. The buckets we use to store them form a list; the journal
 * header points to the first bucket, the first bucket points to the second
 * bucket, et cetera.
 *
 * This code is used by the allocation code; periodically (whenever it runs out
 * of buckets to allocate from) the allocation code will invalidate some
 * buckets, but it can't use those buckets until their new gens are safely on
 * disk.
 */

559
static void prio_endio(struct bio *bio)
K
Kent Overstreet 已提交
560 561 562
{
	struct cache *ca = bio->bi_private;

563
	cache_set_err_on(bio->bi_status, ca->set, "accessing priorities");
K
Kent Overstreet 已提交
564 565 566 567
	bch_bbio_free(bio, ca->set);
	closure_put(&ca->prio);
}

M
Mike Christie 已提交
568 569
static void prio_io(struct cache *ca, uint64_t bucket, int op,
		    unsigned long op_flags)
K
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570 571 572 573 574 575
{
	struct closure *cl = &ca->prio;
	struct bio *bio = bch_bbio_alloc(ca->set);

	closure_init_stack(cl);

576
	bio->bi_iter.bi_sector	= bucket * ca->sb.bucket_size;
577
	bio_set_dev(bio, ca->bdev);
578
	bio->bi_iter.bi_size	= meta_bucket_bytes(&ca->sb);
K
Kent Overstreet 已提交
579 580 581

	bio->bi_end_io	= prio_endio;
	bio->bi_private = ca;
M
Mike Christie 已提交
582
	bio_set_op_attrs(bio, op, REQ_SYNC|REQ_META|op_flags);
583
	bch_bio_map(bio, ca->disk_buckets);
K
Kent Overstreet 已提交
584

585
	closure_bio_submit(ca->set, bio, &ca->prio);
K
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586 587 588
	closure_sync(cl);
}

589
int bch_prio_write(struct cache *ca, bool wait)
K
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590 591 592 593 594
{
	int i;
	struct bucket *b;
	struct closure cl;

595
	pr_debug("free_prio=%zu, free_none=%zu, free_inc=%zu\n",
596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611
		 fifo_used(&ca->free[RESERVE_PRIO]),
		 fifo_used(&ca->free[RESERVE_NONE]),
		 fifo_used(&ca->free_inc));

	/*
	 * Pre-check if there are enough free buckets. In the non-blocking
	 * scenario it's better to fail early rather than starting to allocate
	 * buckets and do a cleanup later in case of failure.
	 */
	if (!wait) {
		size_t avail = fifo_used(&ca->free[RESERVE_PRIO]) +
			       fifo_used(&ca->free[RESERVE_NONE]);
		if (prio_buckets(ca) > avail)
			return -ENOMEM;
	}

K
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612 613 614 615 616 617 618 619 620 621 622 623
	closure_init_stack(&cl);

	lockdep_assert_held(&ca->set->bucket_lock);

	ca->disk_buckets->seq++;

	atomic_long_add(ca->sb.bucket_size * prio_buckets(ca),
			&ca->meta_sectors_written);

	for (i = prio_buckets(ca) - 1; i >= 0; --i) {
		long bucket;
		struct prio_set *p = ca->disk_buckets;
K
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624 625
		struct bucket_disk *d = p->data;
		struct bucket_disk *end = d + prios_per_bucket(ca);
K
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626 627 628 629 630 631 632 633 634

		for (b = ca->buckets + i * prios_per_bucket(ca);
		     b < ca->buckets + ca->sb.nbuckets && d < end;
		     b++, d++) {
			d->prio = cpu_to_le16(b->prio);
			d->gen = b->gen;
		}

		p->next_bucket	= ca->prio_buckets[i + 1];
635
		p->magic	= pset_magic(&ca->sb);
636
		p->csum		= bch_crc64(&p->magic, meta_bucket_bytes(&ca->sb) - 8);
K
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637

638
		bucket = bch_bucket_alloc(ca, RESERVE_PRIO, wait);
K
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639 640 641
		BUG_ON(bucket == -1);

		mutex_unlock(&ca->set->bucket_lock);
M
Mike Christie 已提交
642
		prio_io(ca, bucket, REQ_OP_WRITE, 0);
K
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643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659
		mutex_lock(&ca->set->bucket_lock);

		ca->prio_buckets[i] = bucket;
		atomic_dec_bug(&ca->buckets[bucket].pin);
	}

	mutex_unlock(&ca->set->bucket_lock);

	bch_journal_meta(ca->set, &cl);
	closure_sync(&cl);

	mutex_lock(&ca->set->bucket_lock);

	/*
	 * Don't want the old priorities to get garbage collected until after we
	 * finish writing the new ones, and they're journalled
	 */
K
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660 661 662 663 664
	for (i = 0; i < prio_buckets(ca); i++) {
		if (ca->prio_last_buckets[i])
			__bch_bucket_free(ca,
				&ca->buckets[ca->prio_last_buckets[i]]);

K
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665
		ca->prio_last_buckets[i] = ca->prio_buckets[i];
K
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666
	}
667
	return 0;
K
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668 669
}

670
static int prio_read(struct cache *ca, uint64_t bucket)
K
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671 672 673 674
{
	struct prio_set *p = ca->disk_buckets;
	struct bucket_disk *d = p->data + prios_per_bucket(ca), *end = d;
	struct bucket *b;
675
	unsigned int bucket_nr = 0;
676
	int ret = -EIO;
K
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677 678 679 680 681 682 683 684 685

	for (b = ca->buckets;
	     b < ca->buckets + ca->sb.nbuckets;
	     b++, d++) {
		if (d == end) {
			ca->prio_buckets[bucket_nr] = bucket;
			ca->prio_last_buckets[bucket_nr] = bucket;
			bucket_nr++;

686
			prio_io(ca, bucket, REQ_OP_READ, 0);
K
Kent Overstreet 已提交
687

688
			if (p->csum !=
689
			    bch_crc64(&p->magic, meta_bucket_bytes(&ca->sb) - 8)) {
690
				pr_warn("bad csum reading priorities\n");
691 692
				goto out;
			}
K
Kent Overstreet 已提交
693

694
			if (p->magic != pset_magic(&ca->sb)) {
695
				pr_warn("bad magic reading priorities\n");
696 697
				goto out;
			}
K
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698 699 700 701 702 703

			bucket = p->next_bucket;
			d = p->data;
		}

		b->prio = le16_to_cpu(d->prio);
K
Kent Overstreet 已提交
704
		b->gen = b->last_gc = d->gen;
K
Kent Overstreet 已提交
705
	}
706 707 708 709

	ret = 0;
out:
	return ret;
K
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710 711 712 713 714 715 716
}

/* Bcache device */

static int open_dev(struct block_device *b, fmode_t mode)
{
	struct bcache_device *d = b->bd_disk->private_data;
717

718
	if (test_bit(BCACHE_DEV_CLOSING, &d->flags))
K
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719 720 721 722 723 724
		return -ENXIO;

	closure_get(&d->cl);
	return 0;
}

725
static void release_dev(struct gendisk *b, fmode_t mode)
K
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726 727
{
	struct bcache_device *d = b->private_data;
728

K
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729 730 731 732 733 734 735
	closure_put(&d->cl);
}

static int ioctl_dev(struct block_device *b, fmode_t mode,
		     unsigned int cmd, unsigned long arg)
{
	struct bcache_device *d = b->bd_disk->private_data;
736

K
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737 738 739
	return d->ioctl(d, mode, cmd, arg);
}

740 741 742 743 744 745 746 747 748 749
static const struct block_device_operations bcache_cached_ops = {
	.submit_bio	= cached_dev_submit_bio,
	.open		= open_dev,
	.release	= release_dev,
	.ioctl		= ioctl_dev,
	.owner		= THIS_MODULE,
};

static const struct block_device_operations bcache_flash_ops = {
	.submit_bio	= flash_dev_submit_bio,
K
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750 751 752 753 754 755 756 757
	.open		= open_dev,
	.release	= release_dev,
	.ioctl		= ioctl_dev,
	.owner		= THIS_MODULE,
};

void bcache_device_stop(struct bcache_device *d)
{
758
	if (!test_and_set_bit(BCACHE_DEV_CLOSING, &d->flags))
759 760 761 762 763
		/*
		 * closure_fn set to
		 * - cached device: cached_dev_flush()
		 * - flash dev: flash_dev_flush()
		 */
K
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764 765 766
		closure_queue(&d->cl);
}

767 768
static void bcache_device_unlink(struct bcache_device *d)
{
769
	lockdep_assert_held(&bch_register_lock);
770

771
	if (d->c && !test_and_set_bit(BCACHE_DEV_UNLINK_DONE, &d->flags)) {
C
Coly Li 已提交
772
		struct cache *ca = d->c->cache;
773

774 775 776
		sysfs_remove_link(&d->c->kobj, d->name);
		sysfs_remove_link(&d->kobj, "cache");

C
Coly Li 已提交
777
		bd_unlink_disk_holder(ca->bdev, d->disk);
778
	}
779 780 781 782 783
}

static void bcache_device_link(struct bcache_device *d, struct cache_set *c,
			       const char *name)
{
C
Coly Li 已提交
784
	struct cache *ca = c->cache;
785
	int ret;
786

C
Coly Li 已提交
787
	bd_link_disk_holder(ca->bdev, d->disk);
788 789 790 791

	snprintf(d->name, BCACHEDEVNAME_SIZE,
		 "%s%u", name, d->id);

792 793
	ret = sysfs_create_link(&d->kobj, &c->kobj, "cache");
	if (ret < 0)
794
		pr_err("Couldn't create device -> cache set symlink\n");
795 796 797

	ret = sysfs_create_link(&c->kobj, &d->kobj, d->name);
	if (ret < 0)
798
		pr_err("Couldn't create cache set -> device symlink\n");
799 800

	clear_bit(BCACHE_DEV_UNLINK_DONE, &d->flags);
801 802
}

K
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803 804 805 806
static void bcache_device_detach(struct bcache_device *d)
{
	lockdep_assert_held(&bch_register_lock);

807 808
	atomic_dec(&d->c->attached_dev_nr);

809
	if (test_bit(BCACHE_DEV_DETACHING, &d->flags)) {
K
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810 811 812 813
		struct uuid_entry *u = d->c->uuids + d->id;

		SET_UUID_FLASH_ONLY(u, 0);
		memcpy(u->uuid, invalid_uuid, 16);
814
		u->invalidated = cpu_to_le32((u32)ktime_get_real_seconds());
K
Kent Overstreet 已提交
815 816 817
		bch_uuid_write(d->c);
	}

818
	bcache_device_unlink(d);
819

K
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820 821 822 823 824 825
	d->c->devices[d->id] = NULL;
	closure_put(&d->c->caching);
	d->c = NULL;
}

static void bcache_device_attach(struct bcache_device *d, struct cache_set *c,
826
				 unsigned int id)
K
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827 828 829 830 831
{
	d->id = id;
	d->c = c;
	c->devices[id] = d;

832 833 834
	if (id >= c->devices_max_used)
		c->devices_max_used = id + 1;

K
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835 836 837
	closure_get(&c->caching);
}

838 839 840 841 842 843 844 845 846 847
static inline int first_minor_to_idx(int first_minor)
{
	return (first_minor/BCACHE_MINORS);
}

static inline int idx_to_first_minor(int idx)
{
	return (idx * BCACHE_MINORS);
}

K
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848 849
static void bcache_device_free(struct bcache_device *d)
{
850 851
	struct gendisk *disk = d->disk;

K
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852 853
	lockdep_assert_held(&bch_register_lock);

854
	if (disk)
855
		pr_info("%s stopped\n", disk->disk_name);
856
	else
857
		pr_err("bcache device (NULL gendisk) stopped\n");
K
Kent Overstreet 已提交
858 859 860

	if (d->c)
		bcache_device_detach(d);
861 862

	if (disk) {
863 864 865
		bool disk_added = (disk->flags & GENHD_FL_UP) != 0;

		if (disk_added)
866 867 868 869 870
			del_gendisk(disk);

		if (disk->queue)
			blk_cleanup_queue(disk->queue);

871
		ida_simple_remove(&bcache_device_idx,
872
				  first_minor_to_idx(disk->first_minor));
873 874
		if (disk_added)
			put_disk(disk);
875
	}
K
Kent Overstreet 已提交
876

877
	bioset_exit(&d->bio_split);
878 879
	kvfree(d->full_dirty_stripes);
	kvfree(d->stripe_sectors_dirty);
K
Kent Overstreet 已提交
880 881 882 883

	closure_debug_destroy(&d->cl);
}

884
static int bcache_device_init(struct bcache_device *d, unsigned int block_size,
885 886
		sector_t sectors, struct block_device *cached_bdev,
		const struct block_device_operations *ops)
K
Kent Overstreet 已提交
887 888
{
	struct request_queue *q;
889 890
	const size_t max_stripes = min_t(size_t, INT_MAX,
					 SIZE_MAX / sizeof(atomic_t));
891
	uint64_t n;
892
	int idx;
893

894 895
	if (!d->stripe_size)
		d->stripe_size = 1 << 31;
896

897 898 899 900
	n = DIV_ROUND_UP_ULL(sectors, d->stripe_size);
	if (!n || n > max_stripes) {
		pr_err("nr_stripes too large or invalid: %llu (start sector beyond end of disk?)\n",
			n);
901
		return -ENOMEM;
902
	}
903
	d->nr_stripes = n;
904 905

	n = d->nr_stripes * sizeof(atomic_t);
906
	d->stripe_sectors_dirty = kvzalloc(n, GFP_KERNEL);
907 908
	if (!d->stripe_sectors_dirty)
		return -ENOMEM;
K
Kent Overstreet 已提交
909

910
	n = BITS_TO_LONGS(d->nr_stripes) * sizeof(unsigned long);
911
	d->full_dirty_stripes = kvzalloc(n, GFP_KERNEL);
912 913 914
	if (!d->full_dirty_stripes)
		return -ENOMEM;

915 916 917 918
	idx = ida_simple_get(&bcache_device_idx, 0,
				BCACHE_DEVICE_IDX_MAX, GFP_KERNEL);
	if (idx < 0)
		return idx;
919

920
	if (bioset_init(&d->bio_split, 4, offsetof(struct bbio, bio),
921 922 923 924 925 926
			BIOSET_NEED_BVECS|BIOSET_NEED_RESCUER))
		goto err;

	d->disk = alloc_disk(BCACHE_MINORS);
	if (!d->disk)
		goto err;
K
Kent Overstreet 已提交
927

928
	set_capacity(d->disk, sectors);
929
	snprintf(d->disk->disk_name, DISK_NAME_LEN, "bcache%i", idx);
K
Kent Overstreet 已提交
930 931

	d->disk->major		= bcache_major;
932
	d->disk->first_minor	= idx_to_first_minor(idx);
933
	d->disk->fops		= ops;
K
Kent Overstreet 已提交
934 935
	d->disk->private_data	= d;

936
	q = blk_alloc_queue(NUMA_NO_NODE);
937 938 939
	if (!q)
		return -ENOMEM;

K
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940 941 942 943 944
	d->disk->queue			= q;
	q->limits.max_hw_sectors	= UINT_MAX;
	q->limits.max_sectors		= UINT_MAX;
	q->limits.max_segment_size	= UINT_MAX;
	q->limits.max_segments		= BIO_MAX_PAGES;
945
	blk_queue_max_discard_sectors(q, UINT_MAX);
946
	q->limits.discard_granularity	= 512;
K
Kent Overstreet 已提交
947 948 949
	q->limits.io_min		= block_size;
	q->limits.logical_block_size	= block_size;
	q->limits.physical_block_size	= block_size;
950 951 952 953 954 955

	if (q->limits.logical_block_size > PAGE_SIZE && cached_bdev) {
		/*
		 * This should only happen with BCACHE_SB_VERSION_BDEV.
		 * Block/page size is checked for BCACHE_SB_VERSION_CDEV.
		 */
956
		pr_info("%s: sb/logical block size (%u) greater than page size (%lu) falling back to device logical block size (%u)\n",
957 958 959 960 961 962 963
			d->disk->disk_name, q->limits.logical_block_size,
			PAGE_SIZE, bdev_logical_block_size(cached_bdev));

		/* This also adjusts physical block size/min io size if needed */
		blk_queue_logical_block_size(q, bdev_logical_block_size(cached_bdev));
	}

964 965 966
	blk_queue_flag_set(QUEUE_FLAG_NONROT, d->disk->queue);
	blk_queue_flag_clear(QUEUE_FLAG_ADD_RANDOM, d->disk->queue);
	blk_queue_flag_set(QUEUE_FLAG_DISCARD, d->disk->queue);
K
Kent Overstreet 已提交
967

968
	blk_queue_write_cache(q, true, true);
969

K
Kent Overstreet 已提交
970
	return 0;
971 972 973 974 975

err:
	ida_simple_remove(&bcache_device_idx, idx);
	return -ENOMEM;

K
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976 977 978 979 980 981 982 983 984 985 986 987 988 989 990
}

/* Cached device */

static void calc_cached_dev_sectors(struct cache_set *c)
{
	uint64_t sectors = 0;
	struct cached_dev *dc;

	list_for_each_entry(dc, &c->cached_devs, list)
		sectors += bdev_sectors(dc->bdev);

	c->cached_dev_sectors = sectors;
}

991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009
#define BACKING_DEV_OFFLINE_TIMEOUT 5
static int cached_dev_status_update(void *arg)
{
	struct cached_dev *dc = arg;
	struct request_queue *q;

	/*
	 * If this delayed worker is stopping outside, directly quit here.
	 * dc->io_disable might be set via sysfs interface, so check it
	 * here too.
	 */
	while (!kthread_should_stop() && !dc->io_disable) {
		q = bdev_get_queue(dc->bdev);
		if (blk_queue_dying(q))
			dc->offline_seconds++;
		else
			dc->offline_seconds = 0;

		if (dc->offline_seconds >= BACKING_DEV_OFFLINE_TIMEOUT) {
1010
			pr_err("%s: device offline for %d seconds\n",
1011 1012
			       dc->backing_dev_name,
			       BACKING_DEV_OFFLINE_TIMEOUT);
1013 1014
			pr_err("%s: disable I/O request due to backing device offline\n",
			       dc->disk.name);
1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028
			dc->io_disable = true;
			/* let others know earlier that io_disable is true */
			smp_mb();
			bcache_device_stop(&dc->disk);
			break;
		}
		schedule_timeout_interruptible(HZ);
	}

	wait_for_kthread_stop();
	return 0;
}


1029
int bch_cached_dev_run(struct cached_dev *dc)
K
Kent Overstreet 已提交
1030 1031
{
	struct bcache_device *d = &dc->disk;
1032
	char *buf = kmemdup_nul(dc->sb.label, SB_LABEL_SIZE, GFP_KERNEL);
1033 1034 1035
	char *env[] = {
		"DRIVER=bcache",
		kasprintf(GFP_KERNEL, "CACHED_UUID=%pU", dc->sb.uuid),
1036
		kasprintf(GFP_KERNEL, "CACHED_LABEL=%s", buf ? : ""),
G
Gabriel de Perthuis 已提交
1037
		NULL,
1038
	};
K
Kent Overstreet 已提交
1039

1040
	if (dc->io_disable) {
1041
		pr_err("I/O disabled on cached dev %s\n",
1042
		       dc->backing_dev_name);
1043 1044 1045
		kfree(env[1]);
		kfree(env[2]);
		kfree(buf);
1046
		return -EIO;
1047
	}
1048

1049 1050 1051
	if (atomic_xchg(&dc->running, 1)) {
		kfree(env[1]);
		kfree(env[2]);
1052
		kfree(buf);
1053
		pr_info("cached dev %s is running already\n",
1054
		       dc->backing_dev_name);
1055
		return -EBUSY;
1056
	}
K
Kent Overstreet 已提交
1057 1058 1059 1060

	if (!d->c &&
	    BDEV_STATE(&dc->sb) != BDEV_STATE_NONE) {
		struct closure cl;
1061

K
Kent Overstreet 已提交
1062 1063 1064 1065 1066 1067 1068 1069
		closure_init_stack(&cl);

		SET_BDEV_STATE(&dc->sb, BDEV_STATE_STALE);
		bch_write_bdev_super(dc, &cl);
		closure_sync(&cl);
	}

	add_disk(d->disk);
1070
	bd_link_disk_holder(dc->bdev, dc->disk.disk);
C
Coly Li 已提交
1071 1072 1073 1074
	/*
	 * won't show up in the uevent file, use udevadm monitor -e instead
	 * only class / kset properties are persistent
	 */
K
Kent Overstreet 已提交
1075
	kobject_uevent_env(&disk_to_dev(d->disk)->kobj, KOBJ_CHANGE, env);
1076
	kfree(env[1]);
G
Gabriel de Perthuis 已提交
1077
	kfree(env[2]);
1078
	kfree(buf);
1079

K
Kent Overstreet 已提交
1080
	if (sysfs_create_link(&d->kobj, &disk_to_dev(d->disk)->kobj, "dev") ||
1081 1082
	    sysfs_create_link(&disk_to_dev(d->disk)->kobj,
			      &d->kobj, "bcache")) {
1083
		pr_err("Couldn't create bcache dev <-> disk sysfs symlinks\n");
1084 1085
		return -ENOMEM;
	}
1086 1087 1088 1089

	dc->status_update_thread = kthread_run(cached_dev_status_update,
					       dc, "bcache_status_update");
	if (IS_ERR(dc->status_update_thread)) {
1090
		pr_warn("failed to create bcache_status_update kthread, continue to run without monitoring backing device status\n");
1091
	}
1092 1093

	return 0;
K
Kent Overstreet 已提交
1094 1095
}

1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115
/*
 * If BCACHE_DEV_RATE_DW_RUNNING is set, it means routine of the delayed
 * work dc->writeback_rate_update is running. Wait until the routine
 * quits (BCACHE_DEV_RATE_DW_RUNNING is clear), then continue to
 * cancel it. If BCACHE_DEV_RATE_DW_RUNNING is not clear after time_out
 * seconds, give up waiting here and continue to cancel it too.
 */
static void cancel_writeback_rate_update_dwork(struct cached_dev *dc)
{
	int time_out = WRITEBACK_RATE_UPDATE_SECS_MAX * HZ;

	do {
		if (!test_bit(BCACHE_DEV_RATE_DW_RUNNING,
			      &dc->disk.flags))
			break;
		time_out--;
		schedule_timeout_interruptible(1);
	} while (time_out > 0);

	if (time_out == 0)
1116
		pr_warn("give up waiting for dc->writeback_write_update to quit\n");
1117 1118 1119 1120

	cancel_delayed_work_sync(&dc->writeback_rate_update);
}

K
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1121 1122 1123 1124
static void cached_dev_detach_finish(struct work_struct *w)
{
	struct cached_dev *dc = container_of(w, struct cached_dev, detach);
	struct closure cl;
1125

K
Kent Overstreet 已提交
1126 1127
	closure_init_stack(&cl);

1128
	BUG_ON(!test_bit(BCACHE_DEV_DETACHING, &dc->disk.flags));
1129
	BUG_ON(refcount_read(&dc->count));
K
Kent Overstreet 已提交
1130 1131


1132 1133 1134
	if (test_and_clear_bit(BCACHE_DEV_WB_RUNNING, &dc->disk.flags))
		cancel_writeback_rate_update_dwork(dc);

1135 1136 1137 1138 1139
	if (!IS_ERR_OR_NULL(dc->writeback_thread)) {
		kthread_stop(dc->writeback_thread);
		dc->writeback_thread = NULL;
	}

K
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1140 1141 1142 1143 1144 1145
	memset(&dc->sb.set_uuid, 0, 16);
	SET_BDEV_STATE(&dc->sb, BDEV_STATE_NONE);

	bch_write_bdev_super(dc, &cl);
	closure_sync(&cl);

1146 1147
	mutex_lock(&bch_register_lock);

1148
	calc_cached_dev_sectors(dc->disk.c);
K
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1149 1150 1151
	bcache_device_detach(&dc->disk);
	list_move(&dc->list, &uncached_devices);

1152
	clear_bit(BCACHE_DEV_DETACHING, &dc->disk.flags);
1153
	clear_bit(BCACHE_DEV_UNLINK_DONE, &dc->disk.flags);
1154

K
Kent Overstreet 已提交
1155 1156
	mutex_unlock(&bch_register_lock);

1157
	pr_info("Caching disabled for %s\n", dc->backing_dev_name);
K
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1158 1159 1160 1161 1162 1163 1164 1165 1166

	/* Drop ref we took in cached_dev_detach() */
	closure_put(&dc->disk.cl);
}

void bch_cached_dev_detach(struct cached_dev *dc)
{
	lockdep_assert_held(&bch_register_lock);

1167
	if (test_bit(BCACHE_DEV_CLOSING, &dc->disk.flags))
K
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1168 1169
		return;

1170
	if (test_and_set_bit(BCACHE_DEV_DETACHING, &dc->disk.flags))
K
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1171 1172 1173 1174 1175 1176 1177 1178 1179
		return;

	/*
	 * Block the device from being closed and freed until we're finished
	 * detaching
	 */
	closure_get(&dc->disk.cl);

	bch_writeback_queue(dc);
1180

K
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1181 1182 1183
	cached_dev_put(dc);
}

1184 1185
int bch_cached_dev_attach(struct cached_dev *dc, struct cache_set *c,
			  uint8_t *set_uuid)
K
Kent Overstreet 已提交
1186
{
1187
	uint32_t rtime = cpu_to_le32((u32)ktime_get_real_seconds());
K
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1188
	struct uuid_entry *u;
1189
	struct cached_dev *exist_dc, *t;
1190
	int ret = 0;
K
Kent Overstreet 已提交
1191

C
Coly Li 已提交
1192 1193
	if ((set_uuid && memcmp(set_uuid, c->set_uuid, 16)) ||
	    (!set_uuid && memcmp(dc->sb.set_uuid, c->set_uuid, 16)))
K
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1194 1195 1196
		return -ENOENT;

	if (dc->disk.c) {
1197
		pr_err("Can't attach %s: already attached\n",
1198
		       dc->backing_dev_name);
K
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1199 1200 1201 1202
		return -EINVAL;
	}

	if (test_bit(CACHE_SET_STOPPING, &c->flags)) {
1203
		pr_err("Can't attach %s: shutting down\n",
1204
		       dc->backing_dev_name);
K
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1205 1206 1207 1208 1209
		return -EINVAL;
	}

	if (dc->sb.block_size < c->sb.block_size) {
		/* Will die */
1210
		pr_err("Couldn't attach %s: block size less than set's block size\n",
1211
		       dc->backing_dev_name);
K
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1212 1213 1214
		return -EINVAL;
	}

1215 1216 1217
	/* Check whether already attached */
	list_for_each_entry_safe(exist_dc, t, &c->cached_devs, list) {
		if (!memcmp(dc->sb.uuid, exist_dc->sb.uuid, 16)) {
1218
			pr_err("Tried to attach %s but duplicate UUID already attached\n",
1219
				dc->backing_dev_name);
1220 1221 1222 1223 1224

			return -EINVAL;
		}
	}

K
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1225 1226 1227 1228 1229 1230
	u = uuid_find(c, dc->sb.uuid);

	if (u &&
	    (BDEV_STATE(&dc->sb) == BDEV_STATE_STALE ||
	     BDEV_STATE(&dc->sb) == BDEV_STATE_NONE)) {
		memcpy(u->uuid, invalid_uuid, 16);
1231
		u->invalidated = cpu_to_le32((u32)ktime_get_real_seconds());
K
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1232 1233 1234 1235 1236
		u = NULL;
	}

	if (!u) {
		if (BDEV_STATE(&dc->sb) == BDEV_STATE_DIRTY) {
1237
			pr_err("Couldn't find uuid for %s in set\n",
1238
			       dc->backing_dev_name);
K
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1239 1240 1241 1242 1243
			return -ENOENT;
		}

		u = uuid_find_empty(c);
		if (!u) {
1244
			pr_err("Not caching %s, no room for UUID\n",
1245
			       dc->backing_dev_name);
K
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1246 1247 1248 1249
			return -EINVAL;
		}
	}

C
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1250 1251 1252
	/*
	 * Deadlocks since we're called via sysfs...
	 * sysfs_remove_file(&dc->kobj, &sysfs_attach);
K
Kent Overstreet 已提交
1253 1254
	 */

1255
	if (bch_is_zero(u->uuid, 16)) {
K
Kent Overstreet 已提交
1256
		struct closure cl;
1257

K
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1258 1259 1260 1261 1262 1263 1264
		closure_init_stack(&cl);

		memcpy(u->uuid, dc->sb.uuid, 16);
		memcpy(u->label, dc->sb.label, SB_LABEL_SIZE);
		u->first_reg = u->last_reg = rtime;
		bch_uuid_write(c);

C
Coly Li 已提交
1265
		memcpy(dc->sb.set_uuid, c->set_uuid, 16);
K
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1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282
		SET_BDEV_STATE(&dc->sb, BDEV_STATE_CLEAN);

		bch_write_bdev_super(dc, &cl);
		closure_sync(&cl);
	} else {
		u->last_reg = rtime;
		bch_uuid_write(c);
	}

	bcache_device_attach(&dc->disk, c, u - c->uuids);
	list_move(&dc->list, &c->cached_devs);
	calc_cached_dev_sectors(c);

	/*
	 * dc->c must be set before dc->count != 0 - paired with the mb in
	 * cached_dev_get()
	 */
1283
	smp_wmb();
1284
	refcount_set(&dc->count, 1);
K
Kent Overstreet 已提交
1285

1286 1287 1288 1289
	/* Block writeback thread, but spawn it */
	down_write(&dc->writeback_lock);
	if (bch_cached_dev_writeback_start(dc)) {
		up_write(&dc->writeback_lock);
1290
		pr_err("Couldn't start writeback facilities for %s\n",
1291
		       dc->disk.disk->disk_name);
1292
		return -ENOMEM;
1293
	}
1294

K
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1295 1296 1297 1298 1299
	if (BDEV_STATE(&dc->sb) == BDEV_STATE_DIRTY) {
		atomic_set(&dc->has_dirty, 1);
		bch_writeback_queue(dc);
	}

1300 1301
	bch_sectors_dirty_init(&dc->disk);

1302 1303 1304
	ret = bch_cached_dev_run(dc);
	if (ret && (ret != -EBUSY)) {
		up_write(&dc->writeback_lock);
1305 1306 1307 1308 1309 1310 1311 1312
		/*
		 * bch_register_lock is held, bcache_device_stop() is not
		 * able to be directly called. The kthread and kworker
		 * created previously in bch_cached_dev_writeback_start()
		 * have to be stopped manually here.
		 */
		kthread_stop(dc->writeback_thread);
		cancel_writeback_rate_update_dwork(dc);
1313
		pr_err("Couldn't run cached device %s\n",
1314
		       dc->backing_dev_name);
1315 1316 1317
		return ret;
	}

1318
	bcache_device_link(&dc->disk, c, "bdev");
1319
	atomic_inc(&c->attached_dev_nr);
K
Kent Overstreet 已提交
1320

1321 1322 1323
	/* Allow the writeback thread to proceed */
	up_write(&dc->writeback_lock);

1324
	pr_info("Caching %s as %s on set %pU\n",
1325 1326
		dc->backing_dev_name,
		dc->disk.disk->disk_name,
C
Coly Li 已提交
1327
		dc->disk.c->set_uuid);
K
Kent Overstreet 已提交
1328 1329 1330
	return 0;
}

1331
/* when dc->disk.kobj released */
K
Kent Overstreet 已提交
1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343
void bch_cached_dev_release(struct kobject *kobj)
{
	struct cached_dev *dc = container_of(kobj, struct cached_dev,
					     disk.kobj);
	kfree(dc);
	module_put(THIS_MODULE);
}

static void cached_dev_free(struct closure *cl)
{
	struct cached_dev *dc = container_of(cl, struct cached_dev, disk.cl);

1344 1345 1346
	if (test_and_clear_bit(BCACHE_DEV_WB_RUNNING, &dc->disk.flags))
		cancel_writeback_rate_update_dwork(dc);

1347 1348
	if (!IS_ERR_OR_NULL(dc->writeback_thread))
		kthread_stop(dc->writeback_thread);
1349 1350
	if (!IS_ERR_OR_NULL(dc->status_update_thread))
		kthread_stop(dc->status_update_thread);
K
Kent Overstreet 已提交
1351

1352 1353
	mutex_lock(&bch_register_lock);

1354 1355
	if (atomic_read(&dc->running))
		bd_unlink_disk_holder(dc->bdev, dc->disk.disk);
K
Kent Overstreet 已提交
1356 1357 1358 1359 1360
	bcache_device_free(&dc->disk);
	list_del(&dc->list);

	mutex_unlock(&bch_register_lock);

1361 1362
	if (dc->sb_disk)
		put_page(virt_to_page(dc->sb_disk));
1363

1364
	if (!IS_ERR_OR_NULL(dc->bdev))
K
Kent Overstreet 已提交
1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376
		blkdev_put(dc->bdev, FMODE_READ|FMODE_WRITE|FMODE_EXCL);

	wake_up(&unregister_wait);

	kobject_put(&dc->disk.kobj);
}

static void cached_dev_flush(struct closure *cl)
{
	struct cached_dev *dc = container_of(cl, struct cached_dev, disk.cl);
	struct bcache_device *d = &dc->disk;

1377
	mutex_lock(&bch_register_lock);
1378
	bcache_device_unlink(d);
1379 1380
	mutex_unlock(&bch_register_lock);

K
Kent Overstreet 已提交
1381 1382 1383 1384 1385 1386
	bch_cache_accounting_destroy(&dc->accounting);
	kobject_del(&d->kobj);

	continue_at(cl, cached_dev_free, system_wq);
}

1387
static int cached_dev_init(struct cached_dev *dc, unsigned int block_size)
K
Kent Overstreet 已提交
1388
{
1389
	int ret;
K
Kent Overstreet 已提交
1390
	struct io *io;
1391
	struct request_queue *q = bdev_get_queue(dc->bdev);
K
Kent Overstreet 已提交
1392 1393 1394

	__module_get(THIS_MODULE);
	INIT_LIST_HEAD(&dc->list);
1395 1396
	closure_init(&dc->disk.cl, NULL);
	set_closure_fn(&dc->disk.cl, cached_dev_flush, system_wq);
K
Kent Overstreet 已提交
1397 1398
	kobject_init(&dc->disk.kobj, &bch_cached_dev_ktype);
	INIT_WORK(&dc->detach, cached_dev_detach_finish);
1399
	sema_init(&dc->sb_write_mutex, 1);
1400 1401 1402
	INIT_LIST_HEAD(&dc->io_lru);
	spin_lock_init(&dc->io_lock);
	bch_cache_accounting_init(&dc->accounting, &dc->disk.cl);
K
Kent Overstreet 已提交
1403 1404 1405 1406 1407 1408 1409 1410

	dc->sequential_cutoff		= 4 << 20;

	for (io = dc->io; io < dc->io + RECENT_IO; io++) {
		list_add(&io->lru, &dc->io_lru);
		hlist_add_head(&io->hash, dc->io_hash + RECENT_IO);
	}

1411 1412 1413 1414 1415 1416
	dc->disk.stripe_size = q->limits.io_opt >> 9;

	if (dc->disk.stripe_size)
		dc->partial_stripes_expensive =
			q->limits.raid_partial_stripes_expensive;

1417
	ret = bcache_device_init(&dc->disk, block_size,
1418
			 dc->bdev->bd_part->nr_sects - dc->sb.data_offset,
1419
			 dc->bdev, &bcache_cached_ops);
1420 1421 1422
	if (ret)
		return ret;

1423 1424
	blk_queue_io_opt(dc->disk.disk->queue,
		max(queue_io_opt(dc->disk.disk->queue), queue_io_opt(q)));
1425

1426 1427 1428
	atomic_set(&dc->io_errors, 0);
	dc->io_disable = false;
	dc->error_limit = DEFAULT_CACHED_DEV_ERROR_LIMIT;
1429 1430 1431
	/* default to auto */
	dc->stop_when_cache_set_failed = BCH_CACHED_DEV_STOP_AUTO;

1432 1433
	bch_cached_dev_request_init(dc);
	bch_cached_dev_writeback_init(dc);
K
Kent Overstreet 已提交
1434 1435 1436 1437 1438
	return 0;
}

/* Cached device - bcache superblock */

1439
static int register_bdev(struct cache_sb *sb, struct cache_sb_disk *sb_disk,
K
Kent Overstreet 已提交
1440 1441 1442 1443 1444
				 struct block_device *bdev,
				 struct cached_dev *dc)
{
	const char *err = "cannot allocate memory";
	struct cache_set *c;
1445
	int ret = -ENOMEM;
K
Kent Overstreet 已提交
1446

1447
	bdevname(bdev, dc->backing_dev_name);
K
Kent Overstreet 已提交
1448 1449 1450
	memcpy(&dc->sb, sb, sizeof(struct cache_sb));
	dc->bdev = bdev;
	dc->bdev->bd_holder = dc;
1451
	dc->sb_disk = sb_disk;
1452

1453 1454
	if (cached_dev_init(dc, sb->block_size << 9))
		goto err;
K
Kent Overstreet 已提交
1455 1456 1457 1458 1459 1460 1461 1462

	err = "error creating kobject";
	if (kobject_add(&dc->disk.kobj, &part_to_dev(bdev->bd_part)->kobj,
			"bcache"))
		goto err;
	if (bch_cache_accounting_add_kobjs(&dc->accounting, &dc->disk.kobj))
		goto err;

1463
	pr_info("registered backing device %s\n", dc->backing_dev_name);
1464

K
Kent Overstreet 已提交
1465
	list_add(&dc->list, &uncached_devices);
C
Coly Li 已提交
1466
	/* attach to a matched cache set if it exists */
K
Kent Overstreet 已提交
1467
	list_for_each_entry(c, &bch_cache_sets, list)
1468
		bch_cached_dev_attach(dc, c, NULL);
K
Kent Overstreet 已提交
1469 1470

	if (BDEV_STATE(&dc->sb) == BDEV_STATE_NONE ||
1471 1472 1473 1474 1475 1476
	    BDEV_STATE(&dc->sb) == BDEV_STATE_STALE) {
		err = "failed to run cached device";
		ret = bch_cached_dev_run(dc);
		if (ret)
			goto err;
	}
K
Kent Overstreet 已提交
1477

1478
	return 0;
K
Kent Overstreet 已提交
1479
err:
1480
	pr_notice("error %s: %s\n", dc->backing_dev_name, err);
1481
	bcache_device_stop(&dc->disk);
1482
	return ret;
K
Kent Overstreet 已提交
1483 1484 1485 1486
}

/* Flash only volumes */

1487
/* When d->kobj released */
K
Kent Overstreet 已提交
1488 1489 1490 1491 1492 1493 1494 1495 1496 1497
void bch_flash_dev_release(struct kobject *kobj)
{
	struct bcache_device *d = container_of(kobj, struct bcache_device,
					       kobj);
	kfree(d);
}

static void flash_dev_free(struct closure *cl)
{
	struct bcache_device *d = container_of(cl, struct bcache_device, cl);
1498

1499
	mutex_lock(&bch_register_lock);
1500 1501
	atomic_long_sub(bcache_dev_sectors_dirty(d),
			&d->c->flash_dev_dirty_sectors);
K
Kent Overstreet 已提交
1502
	bcache_device_free(d);
1503
	mutex_unlock(&bch_register_lock);
K
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1504 1505 1506 1507 1508 1509 1510
	kobject_put(&d->kobj);
}

static void flash_dev_flush(struct closure *cl)
{
	struct bcache_device *d = container_of(cl, struct bcache_device, cl);

1511
	mutex_lock(&bch_register_lock);
1512
	bcache_device_unlink(d);
1513
	mutex_unlock(&bch_register_lock);
K
Kent Overstreet 已提交
1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529
	kobject_del(&d->kobj);
	continue_at(cl, flash_dev_free, system_wq);
}

static int flash_dev_run(struct cache_set *c, struct uuid_entry *u)
{
	struct bcache_device *d = kzalloc(sizeof(struct bcache_device),
					  GFP_KERNEL);
	if (!d)
		return -ENOMEM;

	closure_init(&d->cl, NULL);
	set_closure_fn(&d->cl, flash_dev_flush, system_wq);

	kobject_init(&d->kobj, &bch_flash_dev_ktype);

1530
	if (bcache_device_init(d, block_bytes(c), u->sectors,
1531
			NULL, &bcache_flash_ops))
K
Kent Overstreet 已提交
1532 1533 1534
		goto err;

	bcache_device_attach(d, c, u - c->uuids);
1535
	bch_sectors_dirty_init(d);
K
Kent Overstreet 已提交
1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555
	bch_flash_dev_request_init(d);
	add_disk(d->disk);

	if (kobject_add(&d->kobj, &disk_to_dev(d->disk)->kobj, "bcache"))
		goto err;

	bcache_device_link(d, c, "volume");

	return 0;
err:
	kobject_put(&d->kobj);
	return -ENOMEM;
}

static int flash_devs_run(struct cache_set *c)
{
	int ret = 0;
	struct uuid_entry *u;

	for (u = c->uuids;
1556
	     u < c->uuids + c->nr_uuids && !ret;
K
Kent Overstreet 已提交
1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570
	     u++)
		if (UUID_FLASH_ONLY(u))
			ret = flash_dev_run(c, u);

	return ret;
}

int bch_flash_dev_create(struct cache_set *c, uint64_t size)
{
	struct uuid_entry *u;

	if (test_bit(CACHE_SET_STOPPING, &c->flags))
		return -EINTR;

1571 1572 1573
	if (!test_bit(CACHE_SET_RUNNING, &c->flags))
		return -EPERM;

K
Kent Overstreet 已提交
1574 1575
	u = uuid_find_empty(c);
	if (!u) {
1576
		pr_err("Can't create volume, no room for UUID\n");
K
Kent Overstreet 已提交
1577 1578 1579 1580 1581
		return -EINVAL;
	}

	get_random_bytes(u->uuid, 16);
	memset(u->label, 0, 32);
1582
	u->first_reg = u->last_reg = cpu_to_le32((u32)ktime_get_real_seconds());
K
Kent Overstreet 已提交
1583 1584 1585 1586 1587 1588 1589 1590 1591

	SET_UUID_FLASH_ONLY(u, 1);
	u->sectors = size >> 9;

	bch_uuid_write(c);

	return flash_dev_run(c, u);
}

1592 1593 1594 1595 1596 1597 1598 1599 1600 1601
bool bch_cached_dev_error(struct cached_dev *dc)
{
	if (!dc || test_bit(BCACHE_DEV_CLOSING, &dc->disk.flags))
		return false;

	dc->io_disable = true;
	/* make others know io_disable is true earlier */
	smp_mb();

	pr_err("stop %s: too many IO errors on backing device %s\n",
1602
	       dc->disk.disk->disk_name, dc->backing_dev_name);
1603 1604 1605 1606 1607

	bcache_device_stop(&dc->disk);
	return true;
}

K
Kent Overstreet 已提交
1608 1609 1610 1611 1612
/* Cache set */

__printf(2, 3)
bool bch_cache_set_error(struct cache_set *c, const char *fmt, ...)
{
1613
	struct va_format vaf;
K
Kent Overstreet 已提交
1614 1615
	va_list args;

1616 1617
	if (c->on_error != ON_ERROR_PANIC &&
	    test_bit(CACHE_SET_STOPPING, &c->flags))
K
Kent Overstreet 已提交
1618 1619
		return false;

1620
	if (test_and_set_bit(CACHE_SET_IO_DISABLE, &c->flags))
1621
		pr_info("CACHE_SET_IO_DISABLE already set\n");
1622

C
Coly Li 已提交
1623 1624 1625 1626
	/*
	 * XXX: we can be called from atomic context
	 * acquire_console_sem();
	 */
K
Kent Overstreet 已提交
1627 1628 1629

	va_start(args, fmt);

1630 1631 1632 1633
	vaf.fmt = fmt;
	vaf.va = &args;

	pr_err("error on %pU: %pV, disabling caching\n",
C
Coly Li 已提交
1634
	       c->set_uuid, &vaf);
1635 1636

	va_end(args);
K
Kent Overstreet 已提交
1637

1638 1639 1640
	if (c->on_error == ON_ERROR_PANIC)
		panic("panic forced after error\n");

K
Kent Overstreet 已提交
1641 1642 1643 1644
	bch_cache_set_unregister(c);
	return true;
}

1645
/* When c->kobj released */
K
Kent Overstreet 已提交
1646 1647 1648
void bch_cache_set_release(struct kobject *kobj)
{
	struct cache_set *c = container_of(kobj, struct cache_set, kobj);
1649

K
Kent Overstreet 已提交
1650 1651 1652 1653 1654 1655 1656 1657 1658
	kfree(c);
	module_put(THIS_MODULE);
}

static void cache_set_free(struct closure *cl)
{
	struct cache_set *c = container_of(cl, struct cache_set, cl);
	struct cache *ca;

1659
	debugfs_remove(c->debug);
K
Kent Overstreet 已提交
1660 1661 1662 1663 1664

	bch_open_buckets_free(c);
	bch_btree_cache_free(c);
	bch_journal_free(c);

1665
	mutex_lock(&bch_register_lock);
C
Coly Li 已提交
1666 1667 1668 1669 1670 1671
	ca = c->cache;
	if (ca) {
		ca->set = NULL;
		c->cache = NULL;
		kobject_put(&ca->kobj);
	}
K
Kent Overstreet 已提交
1672

1673
	bch_bset_sort_state_free(&c->sort);
1674
	free_pages((unsigned long) c->uuids, ilog2(meta_bucket_pages(&c->sb)));
K
Kent Overstreet 已提交
1675

1676 1677
	if (c->moving_gc_wq)
		destroy_workqueue(c->moving_gc_wq);
1678 1679 1680 1681
	bioset_exit(&c->bio_split);
	mempool_exit(&c->fill_iter);
	mempool_exit(&c->bio_meta);
	mempool_exit(&c->search);
K
Kent Overstreet 已提交
1682 1683 1684 1685 1686
	kfree(c->devices);

	list_del(&c->list);
	mutex_unlock(&bch_register_lock);

C
Coly Li 已提交
1687
	pr_info("Cache set %pU unregistered\n", c->set_uuid);
K
Kent Overstreet 已提交
1688 1689 1690 1691 1692 1693 1694 1695 1696
	wake_up(&unregister_wait);

	closure_debug_destroy(&c->cl);
	kobject_put(&c->kobj);
}

static void cache_set_flush(struct closure *cl)
{
	struct cache_set *c = container_of(cl, struct cache_set, caching);
C
Coly Li 已提交
1697
	struct cache *ca = c->cache;
K
Kent Overstreet 已提交
1698 1699 1700 1701 1702 1703 1704
	struct btree *b;

	bch_cache_accounting_destroy(&c->accounting);

	kobject_put(&c->internal);
	kobject_del(&c->kobj);

1705
	if (!IS_ERR_OR_NULL(c->gc_thread))
K
Kent Overstreet 已提交
1706 1707
		kthread_stop(c->gc_thread);

K
Kent Overstreet 已提交
1708 1709 1710
	if (!IS_ERR_OR_NULL(c->root))
		list_add(&c->root->list, &c->btree_cache);

1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721
	/*
	 * Avoid flushing cached nodes if cache set is retiring
	 * due to too many I/O errors detected.
	 */
	if (!test_bit(CACHE_SET_IO_DISABLE, &c->flags))
		list_for_each_entry(b, &c->btree_cache, list) {
			mutex_lock(&b->write_lock);
			if (btree_node_dirty(b))
				__bch_btree_node_write(b, NULL);
			mutex_unlock(&b->write_lock);
		}
K
Kent Overstreet 已提交
1722

C
Coly Li 已提交
1723 1724
	if (ca->alloc_thread)
		kthread_stop(ca->alloc_thread);
1725

1726 1727 1728 1729 1730
	if (c->journal.cur) {
		cancel_delayed_work_sync(&c->journal.work);
		/* flush last journal entry if needed */
		c->journal.work.work.func(&c->journal.work.work);
	}
K
Kent Overstreet 已提交
1731

K
Kent Overstreet 已提交
1732 1733 1734
	closure_return(cl);
}

1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755
/*
 * This function is only called when CACHE_SET_IO_DISABLE is set, which means
 * cache set is unregistering due to too many I/O errors. In this condition,
 * the bcache device might be stopped, it depends on stop_when_cache_set_failed
 * value and whether the broken cache has dirty data:
 *
 * dc->stop_when_cache_set_failed    dc->has_dirty   stop bcache device
 *  BCH_CACHED_STOP_AUTO               0               NO
 *  BCH_CACHED_STOP_AUTO               1               YES
 *  BCH_CACHED_DEV_STOP_ALWAYS         0               YES
 *  BCH_CACHED_DEV_STOP_ALWAYS         1               YES
 *
 * The expected behavior is, if stop_when_cache_set_failed is configured to
 * "auto" via sysfs interface, the bcache device will not be stopped if the
 * backing device is clean on the broken cache device.
 */
static void conditional_stop_bcache_device(struct cache_set *c,
					   struct bcache_device *d,
					   struct cached_dev *dc)
{
	if (dc->stop_when_cache_set_failed == BCH_CACHED_DEV_STOP_ALWAYS) {
1756
		pr_warn("stop_when_cache_set_failed of %s is \"always\", stop it for failed cache set %pU.\n",
C
Coly Li 已提交
1757
			d->disk->disk_name, c->set_uuid);
1758 1759 1760 1761 1762 1763
		bcache_device_stop(d);
	} else if (atomic_read(&dc->has_dirty)) {
		/*
		 * dc->stop_when_cache_set_failed == BCH_CACHED_STOP_AUTO
		 * and dc->has_dirty == 1
		 */
1764
		pr_warn("stop_when_cache_set_failed of %s is \"auto\" and cache is dirty, stop it to avoid potential data corruption.\n",
1765
			d->disk->disk_name);
1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780
		/*
		 * There might be a small time gap that cache set is
		 * released but bcache device is not. Inside this time
		 * gap, regular I/O requests will directly go into
		 * backing device as no cache set attached to. This
		 * behavior may also introduce potential inconsistence
		 * data in writeback mode while cache is dirty.
		 * Therefore before calling bcache_device_stop() due
		 * to a broken cache device, dc->io_disable should be
		 * explicitly set to true.
		 */
		dc->io_disable = true;
		/* make others know io_disable is true earlier */
		smp_mb();
		bcache_device_stop(d);
1781 1782 1783 1784 1785
	} else {
		/*
		 * dc->stop_when_cache_set_failed == BCH_CACHED_STOP_AUTO
		 * and dc->has_dirty == 0
		 */
1786
		pr_warn("stop_when_cache_set_failed of %s is \"auto\" and cache is clean, keep it alive.\n",
1787 1788 1789 1790
			d->disk->disk_name);
	}
}

K
Kent Overstreet 已提交
1791 1792 1793
static void __cache_set_unregister(struct closure *cl)
{
	struct cache_set *c = container_of(cl, struct cache_set, caching);
K
Kent Overstreet 已提交
1794
	struct cached_dev *dc;
1795
	struct bcache_device *d;
K
Kent Overstreet 已提交
1796 1797 1798 1799
	size_t i;

	mutex_lock(&bch_register_lock);

1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812
	for (i = 0; i < c->devices_max_used; i++) {
		d = c->devices[i];
		if (!d)
			continue;

		if (!UUID_FLASH_ONLY(&c->uuids[i]) &&
		    test_bit(CACHE_SET_UNREGISTERING, &c->flags)) {
			dc = container_of(d, struct cached_dev, disk);
			bch_cached_dev_detach(dc);
			if (test_bit(CACHE_SET_IO_DISABLE, &c->flags))
				conditional_stop_bcache_device(c, d, dc);
		} else {
			bcache_device_stop(d);
K
Kent Overstreet 已提交
1813
		}
1814
	}
K
Kent Overstreet 已提交
1815 1816 1817 1818 1819 1820 1821 1822 1823

	mutex_unlock(&bch_register_lock);

	continue_at(cl, cache_set_flush, system_wq);
}

void bch_cache_set_stop(struct cache_set *c)
{
	if (!test_and_set_bit(CACHE_SET_STOPPING, &c->flags))
1824
		/* closure_fn set to __cache_set_unregister() */
K
Kent Overstreet 已提交
1825 1826 1827 1828 1829 1830 1831 1832 1833 1834
		closure_queue(&c->caching);
}

void bch_cache_set_unregister(struct cache_set *c)
{
	set_bit(CACHE_SET_UNREGISTERING, &c->flags);
	bch_cache_set_stop(c);
}

#define alloc_bucket_pages(gfp, c)			\
1835
	((void *) __get_free_pages(__GFP_ZERO|__GFP_COMP|gfp, ilog2(bucket_pages(c))))
K
Kent Overstreet 已提交
1836

1837 1838
#define alloc_meta_bucket_pages(gfp, sb)		\
	((void *) __get_free_pages(__GFP_ZERO|__GFP_COMP|gfp, ilog2(meta_bucket_pages(sb))))
K
Kent Overstreet 已提交
1839 1840 1841 1842 1843

struct cache_set *bch_cache_set_alloc(struct cache_sb *sb)
{
	int iter_size;
	struct cache_set *c = kzalloc(sizeof(struct cache_set), GFP_KERNEL);
1844

K
Kent Overstreet 已提交
1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863
	if (!c)
		return NULL;

	__module_get(THIS_MODULE);
	closure_init(&c->cl, NULL);
	set_closure_fn(&c->cl, cache_set_free, system_wq);

	closure_init(&c->caching, &c->cl);
	set_closure_fn(&c->caching, __cache_set_unregister, system_wq);

	/* Maybe create continue_at_noreturn() and use it here? */
	closure_set_stopped(&c->cl);
	closure_put(&c->cl);

	kobject_init(&c->kobj, &bch_cache_set_ktype);
	kobject_init(&c->internal, &bch_cache_set_internal_ktype);

	bch_cache_accounting_init(&c->accounting, &c->cl);

C
Coly Li 已提交
1864
	memcpy(c->set_uuid, sb->set_uuid, 16);
K
Kent Overstreet 已提交
1865 1866 1867 1868
	c->sb.block_size	= sb->block_size;
	c->sb.bucket_size	= sb->bucket_size;
	c->sb.nr_in_set		= sb->nr_in_set;
	c->sb.last_mount	= sb->last_mount;
1869 1870 1871 1872 1873 1874 1875
	c->sb.version		= sb->version;
	if (c->sb.version >= BCACHE_SB_VERSION_CDEV_WITH_FEATURES) {
		c->sb.feature_compat = sb->feature_compat;
		c->sb.feature_ro_compat = sb->feature_ro_compat;
		c->sb.feature_incompat = sb->feature_incompat;
	}

K
Kent Overstreet 已提交
1876 1877
	c->bucket_bits		= ilog2(sb->bucket_size);
	c->block_bits		= ilog2(sb->block_size);
1878
	c->nr_uuids		= meta_bucket_bytes(&c->sb) / sizeof(struct uuid_entry);
1879
	c->devices_max_used	= 0;
1880
	atomic_set(&c->attached_dev_nr, 0);
1881
	c->btree_pages		= meta_bucket_pages(&c->sb);
K
Kent Overstreet 已提交
1882 1883 1884 1885
	if (c->btree_pages > BTREE_MAX_PAGES)
		c->btree_pages = max_t(int, c->btree_pages / 4,
				       BTREE_MAX_PAGES);

1886
	sema_init(&c->sb_write_mutex, 1);
1887
	mutex_init(&c->bucket_lock);
1888
	init_waitqueue_head(&c->btree_cache_wait);
1889
	spin_lock_init(&c->btree_cannibalize_lock);
1890
	init_waitqueue_head(&c->bucket_wait);
1891
	init_waitqueue_head(&c->gc_wait);
1892
	sema_init(&c->uuid_write_mutex, 1);
1893 1894 1895 1896

	spin_lock_init(&c->btree_gc_time.lock);
	spin_lock_init(&c->btree_split_time.lock);
	spin_lock_init(&c->btree_read_time.lock);
1897

K
Kent Overstreet 已提交
1898 1899 1900 1901 1902 1903 1904 1905 1906
	bch_moving_init_cache_set(c);

	INIT_LIST_HEAD(&c->list);
	INIT_LIST_HEAD(&c->cached_devs);
	INIT_LIST_HEAD(&c->btree_cache);
	INIT_LIST_HEAD(&c->btree_cache_freeable);
	INIT_LIST_HEAD(&c->btree_cache_freed);
	INIT_LIST_HEAD(&c->data_buckets);

1907
	iter_size = ((meta_bucket_pages(sb) * PAGE_SECTORS) / sb->block_size + 1) *
K
Kent Overstreet 已提交
1908 1909
		sizeof(struct btree_iter_set);

1910 1911 1912 1913 1914 1915 1916 1917 1918
	c->devices = kcalloc(c->nr_uuids, sizeof(void *), GFP_KERNEL);
	if (!c->devices)
		goto err;

	if (mempool_init_slab_pool(&c->search, 32, bch_search_cache))
		goto err;

	if (mempool_init_kmalloc_pool(&c->bio_meta, 2,
			sizeof(struct bbio) +
1919
			sizeof(struct bio_vec) * meta_bucket_pages(&c->sb)))
1920 1921 1922 1923 1924 1925 1926 1927 1928
		goto err;

	if (mempool_init_kmalloc_pool(&c->fill_iter, 1, iter_size))
		goto err;

	if (bioset_init(&c->bio_split, 4, offsetof(struct bbio, bio),
			BIOSET_NEED_BVECS|BIOSET_NEED_RESCUER))
		goto err;

1929
	c->uuids = alloc_meta_bucket_pages(GFP_KERNEL, &c->sb);
1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946
	if (!c->uuids)
		goto err;

	c->moving_gc_wq = alloc_workqueue("bcache_gc", WQ_MEM_RECLAIM, 0);
	if (!c->moving_gc_wq)
		goto err;

	if (bch_journal_alloc(c))
		goto err;

	if (bch_btree_cache_alloc(c))
		goto err;

	if (bch_open_buckets_alloc(c))
		goto err;

	if (bch_bset_sort_state_init(&c->sort, ilog2(c->btree_pages)))
K
Kent Overstreet 已提交
1947 1948 1949 1950
		goto err;

	c->congested_read_threshold_us	= 2000;
	c->congested_write_threshold_us	= 20000;
C
Coly Li 已提交
1951
	c->error_limit	= DEFAULT_IO_ERROR_LIMIT;
1952
	c->idle_max_writeback_rate_enabled = 1;
1953
	WARN_ON(test_and_clear_bit(CACHE_SET_IO_DISABLE, &c->flags));
K
Kent Overstreet 已提交
1954 1955 1956 1957 1958 1959 1960

	return c;
err:
	bch_cache_set_unregister(c);
	return NULL;
}

1961
static int run_cache_set(struct cache_set *c)
K
Kent Overstreet 已提交
1962 1963 1964
{
	const char *err = "cannot allocate memory";
	struct cached_dev *dc, *t;
C
Coly Li 已提交
1965
	struct cache *ca = c->cache;
K
Kent Overstreet 已提交
1966
	struct closure cl;
1967 1968
	LIST_HEAD(journal);
	struct journal_replay *l;
K
Kent Overstreet 已提交
1969

K
Kent Overstreet 已提交
1970
	closure_init_stack(&cl);
K
Kent Overstreet 已提交
1971

C
Coly Li 已提交
1972
	c->nbuckets = ca->sb.nbuckets;
1973
	set_gc_sectors(c);
K
Kent Overstreet 已提交
1974 1975 1976 1977 1978 1979

	if (CACHE_SYNC(&c->sb)) {
		struct bkey *k;
		struct jset *j;

		err = "cannot allocate memory for journal";
K
Kent Overstreet 已提交
1980
		if (bch_journal_read(c, &journal))
K
Kent Overstreet 已提交
1981 1982
			goto err;

1983
		pr_debug("btree_journal_read() done\n");
K
Kent Overstreet 已提交
1984 1985 1986 1987 1988 1989 1990 1991

		err = "no journal entries found";
		if (list_empty(&journal))
			goto err;

		j = &list_entry(journal.prev, struct journal_replay, list)->j;

		err = "IO error reading priorities";
C
Coly Li 已提交
1992 1993
		if (prio_read(ca, j->prio_bucket[ca->sb.nr_this_dev]))
			goto err;
K
Kent Overstreet 已提交
1994 1995 1996 1997 1998 1999 2000 2001 2002 2003

		/*
		 * If prio_read() fails it'll call cache_set_error and we'll
		 * tear everything down right away, but if we perhaps checked
		 * sooner we could avoid journal replay.
		 */

		k = &j->btree_root;

		err = "bad btree root";
2004
		if (__bch_btree_ptr_invalid(c, k))
K
Kent Overstreet 已提交
2005 2006 2007
			goto err;

		err = "error reading btree root";
2008 2009 2010
		c->root = bch_btree_node_get(c, NULL, k,
					     j->btree_level,
					     true, NULL);
K
Kent Overstreet 已提交
2011 2012 2013 2014 2015 2016
		if (IS_ERR_OR_NULL(c->root))
			goto err;

		list_del_init(&c->root->list);
		rw_unlock(true, c->root);

K
Kent Overstreet 已提交
2017
		err = uuid_read(c, j, &cl);
K
Kent Overstreet 已提交
2018 2019 2020 2021
		if (err)
			goto err;

		err = "error in recovery";
K
Kent Overstreet 已提交
2022
		if (bch_btree_check(c))
K
Kent Overstreet 已提交
2023 2024 2025
			goto err;

		bch_journal_mark(c, &journal);
K
Kent Overstreet 已提交
2026
		bch_initial_gc_finish(c);
2027
		pr_debug("btree_check() done\n");
K
Kent Overstreet 已提交
2028 2029 2030 2031 2032 2033 2034 2035

		/*
		 * bcache_journal_next() can't happen sooner, or
		 * btree_gc_finish() will give spurious errors about last_gc >
		 * gc_gen - this is a hack but oh well.
		 */
		bch_journal_next(&c->journal);

2036
		err = "error starting allocator thread";
C
Coly Li 已提交
2037 2038
		if (bch_cache_allocator_start(ca))
			goto err;
K
Kent Overstreet 已提交
2039 2040 2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052

		/*
		 * First place it's safe to allocate: btree_check() and
		 * btree_gc_finish() have to run before we have buckets to
		 * allocate, and bch_bucket_alloc_set() might cause a journal
		 * entry to be written so bcache_journal_next() has to be called
		 * first.
		 *
		 * If the uuids were in the old format we have to rewrite them
		 * before the next journal entry is written:
		 */
		if (j->version < BCACHE_JSET_VERSION_UUID)
			__uuid_write(c);

2053 2054 2055
		err = "bcache: replay journal failed";
		if (bch_journal_replay(c, &journal))
			goto err;
K
Kent Overstreet 已提交
2056
	} else {
C
Coly Li 已提交
2057
		unsigned int j;
K
Kent Overstreet 已提交
2058

C
Coly Li 已提交
2059 2060 2061
		pr_notice("invalidating existing data\n");
		ca->sb.keys = clamp_t(int, ca->sb.nbuckets >> 7,
					2, SB_JOURNAL_BUCKETS);
K
Kent Overstreet 已提交
2062

C
Coly Li 已提交
2063 2064
		for (j = 0; j < ca->sb.keys; j++)
			ca->sb.d[j] = ca->sb.first_bucket + j;
K
Kent Overstreet 已提交
2065

K
Kent Overstreet 已提交
2066
		bch_initial_gc_finish(c);
K
Kent Overstreet 已提交
2067

2068
		err = "error starting allocator thread";
C
Coly Li 已提交
2069 2070
		if (bch_cache_allocator_start(ca))
			goto err;
K
Kent Overstreet 已提交
2071 2072

		mutex_lock(&c->bucket_lock);
C
Coly Li 已提交
2073
		bch_prio_write(ca, true);
K
Kent Overstreet 已提交
2074 2075 2076 2077
		mutex_unlock(&c->bucket_lock);

		err = "cannot allocate new UUID bucket";
		if (__uuid_write(c))
K
Kent Overstreet 已提交
2078
			goto err;
K
Kent Overstreet 已提交
2079 2080

		err = "cannot allocate new btree root";
2081
		c->root = __bch_btree_node_alloc(c, NULL, 0, true, NULL);
K
Kent Overstreet 已提交
2082
		if (IS_ERR_OR_NULL(c->root))
K
Kent Overstreet 已提交
2083
			goto err;
K
Kent Overstreet 已提交
2084

K
Kent Overstreet 已提交
2085
		mutex_lock(&c->root->write_lock);
K
Kent Overstreet 已提交
2086
		bkey_copy_key(&c->root->key, &MAX_KEY);
K
Kent Overstreet 已提交
2087
		bch_btree_node_write(c->root, &cl);
K
Kent Overstreet 已提交
2088
		mutex_unlock(&c->root->write_lock);
K
Kent Overstreet 已提交
2089 2090 2091 2092 2093 2094 2095 2096 2097 2098 2099 2100

		bch_btree_set_root(c->root);
		rw_unlock(true, c->root);

		/*
		 * We don't want to write the first journal entry until
		 * everything is set up - fortunately journal entries won't be
		 * written until the SET_CACHE_SYNC() here:
		 */
		SET_CACHE_SYNC(&c->sb, true);

		bch_journal_next(&c->journal);
K
Kent Overstreet 已提交
2101
		bch_journal_meta(c, &cl);
K
Kent Overstreet 已提交
2102 2103
	}

K
Kent Overstreet 已提交
2104 2105 2106 2107
	err = "error starting gc thread";
	if (bch_gc_thread_start(c))
		goto err;

K
Kent Overstreet 已提交
2108
	closure_sync(&cl);
2109
	c->sb.last_mount = (u32)ktime_get_real_seconds();
K
Kent Overstreet 已提交
2110 2111 2112
	bcache_write_super(c);

	list_for_each_entry_safe(dc, t, &uncached_devices, list)
2113
		bch_cached_dev_attach(dc, c, NULL);
K
Kent Overstreet 已提交
2114 2115 2116

	flash_devs_run(c);

2117
	set_bit(CACHE_SET_RUNNING, &c->flags);
2118
	return 0;
K
Kent Overstreet 已提交
2119
err:
2120 2121 2122 2123 2124 2125
	while (!list_empty(&journal)) {
		l = list_first_entry(&journal, struct journal_replay, list);
		list_del(&l->list);
		kfree(l);
	}

K
Kent Overstreet 已提交
2126
	closure_sync(&cl);
2127

2128
	bch_cache_set_error(c, "%s", err);
2129 2130

	return -EIO;
K
Kent Overstreet 已提交
2131 2132 2133 2134 2135
}

static bool can_attach_cache(struct cache *ca, struct cache_set *c)
{
	return ca->sb.block_size	== c->sb.block_size &&
2136
		ca->sb.bucket_size	== c->sb.bucket_size &&
K
Kent Overstreet 已提交
2137 2138 2139 2140 2141 2142 2143 2144 2145 2146
		ca->sb.nr_in_set	== c->sb.nr_in_set;
}

static const char *register_cache_set(struct cache *ca)
{
	char buf[12];
	const char *err = "cannot allocate memory";
	struct cache_set *c;

	list_for_each_entry(c, &bch_cache_sets, list)
C
Coly Li 已提交
2147
		if (!memcmp(c->set_uuid, ca->sb.set_uuid, 16)) {
2148
			if (c->cache)
K
Kent Overstreet 已提交
2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163 2164
				return "duplicate cache set member";

			if (!can_attach_cache(ca, c))
				return "cache sb does not match set";

			if (!CACHE_SYNC(&ca->sb))
				SET_CACHE_SYNC(&c->sb, false);

			goto found;
		}

	c = bch_cache_set_alloc(&ca->sb);
	if (!c)
		return err;

	err = "error creating kobject";
C
Coly Li 已提交
2165
	if (kobject_add(&c->kobj, bcache_kobj, "%pU", c->set_uuid) ||
K
Kent Overstreet 已提交
2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180
	    kobject_add(&c->internal, &c->kobj, "internal"))
		goto err;

	if (bch_cache_accounting_add_kobjs(&c->accounting, &c->kobj))
		goto err;

	bch_debug_init_cache_set(c);

	list_add(&c->list, &bch_cache_sets);
found:
	sprintf(buf, "cache%i", ca->sb.nr_this_dev);
	if (sysfs_create_link(&ca->kobj, &c->kobj, "set") ||
	    sysfs_create_link(&c->kobj, &ca->kobj, buf))
		goto err;

2181 2182 2183 2184 2185 2186 2187 2188
	/*
	 * A special case is both ca->sb.seq and c->sb.seq are 0,
	 * such condition happens on a new created cache device whose
	 * super block is never flushed yet. In this case c->sb.version
	 * and other members should be updated too, otherwise we will
	 * have a mistaken super block version in cache set.
	 */
	if (ca->sb.seq > c->sb.seq || c->sb.seq == 0) {
K
Kent Overstreet 已提交
2189
		c->sb.version		= ca->sb.version;
C
Coly Li 已提交
2190
		memcpy(c->set_uuid, ca->sb.set_uuid, 16);
K
Kent Overstreet 已提交
2191 2192
		c->sb.flags             = ca->sb.flags;
		c->sb.seq		= ca->sb.seq;
2193
		pr_debug("set version = %llu\n", c->sb.version);
K
Kent Overstreet 已提交
2194 2195
	}

2196
	kobject_get(&ca->kobj);
K
Kent Overstreet 已提交
2197
	ca->set = c;
2198
	ca->set->cache = ca;
K
Kent Overstreet 已提交
2199

2200 2201 2202
	err = "failed to run cache set";
	if (run_cache_set(c) < 0)
		goto err;
K
Kent Overstreet 已提交
2203 2204 2205 2206 2207 2208 2209 2210 2211

	return NULL;
err:
	bch_cache_set_unregister(c);
	return err;
}

/* Cache device */

2212
/* When ca->kobj released */
K
Kent Overstreet 已提交
2213 2214 2215
void bch_cache_release(struct kobject *kobj)
{
	struct cache *ca = container_of(kobj, struct cache, kobj);
2216
	unsigned int i;
K
Kent Overstreet 已提交
2217

2218
	if (ca->set) {
2219 2220
		BUG_ON(ca->set->cache != ca);
		ca->set->cache = NULL;
2221
	}
K
Kent Overstreet 已提交
2222

2223
	free_pages((unsigned long) ca->disk_buckets, ilog2(meta_bucket_pages(&ca->sb)));
K
Kent Overstreet 已提交
2224 2225 2226 2227 2228
	kfree(ca->prio_buckets);
	vfree(ca->buckets);

	free_heap(&ca->heap);
	free_fifo(&ca->free_inc);
2229 2230 2231

	for (i = 0; i < RESERVE_NR; i++)
		free_fifo(&ca->free[i]);
K
Kent Overstreet 已提交
2232

2233 2234
	if (ca->sb_disk)
		put_page(virt_to_page(ca->sb_disk));
K
Kent Overstreet 已提交
2235

2236
	if (!IS_ERR_OR_NULL(ca->bdev))
K
Kent Overstreet 已提交
2237 2238 2239 2240 2241 2242
		blkdev_put(ca->bdev, FMODE_READ|FMODE_WRITE|FMODE_EXCL);

	kfree(ca);
	module_put(THIS_MODULE);
}

2243
static int cache_alloc(struct cache *ca)
K
Kent Overstreet 已提交
2244 2245
{
	size_t free;
2246
	size_t btree_buckets;
K
Kent Overstreet 已提交
2247
	struct bucket *b;
2248 2249
	int ret = -ENOMEM;
	const char *err = NULL;
K
Kent Overstreet 已提交
2250 2251 2252 2253

	__module_get(THIS_MODULE);
	kobject_init(&ca->kobj, &bch_cache_ktype);

2254
	bio_init(&ca->journal.bio, ca->journal.bio.bi_inline_vecs, 8);
K
Kent Overstreet 已提交
2255

2256 2257 2258 2259 2260 2261 2262 2263 2264 2265
	/*
	 * when ca->sb.njournal_buckets is not zero, journal exists,
	 * and in bch_journal_replay(), tree node may split,
	 * so bucket of RESERVE_BTREE type is needed,
	 * the worst situation is all journal buckets are valid journal,
	 * and all the keys need to replay,
	 * so the number of  RESERVE_BTREE type buckets should be as much
	 * as journal buckets
	 */
	btree_buckets = ca->sb.njournal_buckets ?: 8;
2266
	free = roundup_pow_of_two(ca->sb.nbuckets) >> 10;
2267 2268 2269 2270 2271
	if (!free) {
		ret = -EPERM;
		err = "ca->sb.nbuckets is too small";
		goto err_free;
	}
K
Kent Overstreet 已提交
2272

2273 2274 2275 2276 2277 2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294 2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319
	if (!init_fifo(&ca->free[RESERVE_BTREE], btree_buckets,
						GFP_KERNEL)) {
		err = "ca->free[RESERVE_BTREE] alloc failed";
		goto err_btree_alloc;
	}

	if (!init_fifo_exact(&ca->free[RESERVE_PRIO], prio_buckets(ca),
							GFP_KERNEL)) {
		err = "ca->free[RESERVE_PRIO] alloc failed";
		goto err_prio_alloc;
	}

	if (!init_fifo(&ca->free[RESERVE_MOVINGGC], free, GFP_KERNEL)) {
		err = "ca->free[RESERVE_MOVINGGC] alloc failed";
		goto err_movinggc_alloc;
	}

	if (!init_fifo(&ca->free[RESERVE_NONE], free, GFP_KERNEL)) {
		err = "ca->free[RESERVE_NONE] alloc failed";
		goto err_none_alloc;
	}

	if (!init_fifo(&ca->free_inc, free << 2, GFP_KERNEL)) {
		err = "ca->free_inc alloc failed";
		goto err_free_inc_alloc;
	}

	if (!init_heap(&ca->heap, free << 3, GFP_KERNEL)) {
		err = "ca->heap alloc failed";
		goto err_heap_alloc;
	}

	ca->buckets = vzalloc(array_size(sizeof(struct bucket),
			      ca->sb.nbuckets));
	if (!ca->buckets) {
		err = "ca->buckets alloc failed";
		goto err_buckets_alloc;
	}

	ca->prio_buckets = kzalloc(array3_size(sizeof(uint64_t),
				   prio_buckets(ca), 2),
				   GFP_KERNEL);
	if (!ca->prio_buckets) {
		err = "ca->prio_buckets alloc failed";
		goto err_prio_buckets_alloc;
	}

2320
	ca->disk_buckets = alloc_meta_bucket_pages(GFP_KERNEL, &ca->sb);
2321 2322 2323 2324
	if (!ca->disk_buckets) {
		err = "ca->disk_buckets alloc failed";
		goto err_disk_buckets_alloc;
	}
K
Kent Overstreet 已提交
2325 2326 2327 2328 2329 2330

	ca->prio_last_buckets = ca->prio_buckets + prio_buckets(ca);

	for_each_bucket(b, ca)
		atomic_set(&b->pin, 0);
	return 0;
2331 2332 2333 2334 2335 2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346 2347 2348

err_disk_buckets_alloc:
	kfree(ca->prio_buckets);
err_prio_buckets_alloc:
	vfree(ca->buckets);
err_buckets_alloc:
	free_heap(&ca->heap);
err_heap_alloc:
	free_fifo(&ca->free_inc);
err_free_inc_alloc:
	free_fifo(&ca->free[RESERVE_NONE]);
err_none_alloc:
	free_fifo(&ca->free[RESERVE_MOVINGGC]);
err_movinggc_alloc:
	free_fifo(&ca->free[RESERVE_PRIO]);
err_prio_alloc:
	free_fifo(&ca->free[RESERVE_BTREE]);
err_btree_alloc:
2349
err_free:
2350 2351
	module_put(THIS_MODULE);
	if (err)
2352
		pr_notice("error %s: %s\n", ca->cache_dev_name, err);
2353
	return ret;
K
Kent Overstreet 已提交
2354 2355
}

2356
static int register_cache(struct cache_sb *sb, struct cache_sb_disk *sb_disk,
2357
				struct block_device *bdev, struct cache *ca)
K
Kent Overstreet 已提交
2358
{
2359
	const char *err = NULL; /* must be set for any error case */
2360
	int ret = 0;
K
Kent Overstreet 已提交
2361

2362
	bdevname(bdev, ca->cache_dev_name);
2363
	memcpy(&ca->sb, sb, sizeof(struct cache_sb));
K
Kent Overstreet 已提交
2364 2365
	ca->bdev = bdev;
	ca->bdev->bd_holder = ca;
2366
	ca->sb_disk = sb_disk;
2367

2368
	if (blk_queue_discard(bdev_get_queue(bdev)))
K
Kent Overstreet 已提交
2369 2370
		ca->discard = CACHE_DISCARD(&ca->sb);

2371
	ret = cache_alloc(ca);
2372
	if (ret != 0) {
2373 2374 2375 2376 2377 2378
		/*
		 * If we failed here, it means ca->kobj is not initialized yet,
		 * kobject_put() won't be called and there is no chance to
		 * call blkdev_put() to bdev in bch_cache_release(). So we
		 * explicitly call blkdev_put() here.
		 */
2379
		blkdev_put(bdev, FMODE_READ|FMODE_WRITE|FMODE_EXCL);
2380 2381
		if (ret == -ENOMEM)
			err = "cache_alloc(): -ENOMEM";
2382 2383
		else if (ret == -EPERM)
			err = "cache_alloc(): cache device is too small";
2384 2385
		else
			err = "cache_alloc(): unknown error";
2386
		goto err;
2387
	}
2388

2389 2390 2391
	if (kobject_add(&ca->kobj,
			&part_to_dev(bdev->bd_part)->kobj,
			"bcache")) {
2392 2393 2394 2395
		err = "error calling kobject_add";
		ret = -ENOMEM;
		goto out;
	}
K
Kent Overstreet 已提交
2396

2397
	mutex_lock(&bch_register_lock);
K
Kent Overstreet 已提交
2398
	err = register_cache_set(ca);
2399 2400
	mutex_unlock(&bch_register_lock);

2401 2402 2403 2404
	if (err) {
		ret = -ENODEV;
		goto out;
	}
K
Kent Overstreet 已提交
2405

2406
	pr_info("registered cache device %s\n", ca->cache_dev_name);
2407

2408 2409
out:
	kobject_put(&ca->kobj);
2410

K
Kent Overstreet 已提交
2411
err:
2412
	if (err)
2413
		pr_notice("error %s: %s\n", ca->cache_dev_name, err);
2414 2415

	return ret;
K
Kent Overstreet 已提交
2416 2417 2418 2419
}

/* Global interfaces/init */

2420 2421
static ssize_t register_bcache(struct kobject *k, struct kobj_attribute *attr,
			       const char *buffer, size_t size);
2422 2423 2424
static ssize_t bch_pending_bdevs_cleanup(struct kobject *k,
					 struct kobj_attribute *attr,
					 const char *buffer, size_t size);
K
Kent Overstreet 已提交
2425 2426 2427

kobj_attribute_write(register,		register_bcache);
kobj_attribute_write(register_quiet,	register_bcache);
2428
kobj_attribute_write(pendings_cleanup,	bch_pending_bdevs_cleanup);
K
Kent Overstreet 已提交
2429

2430 2431
static bool bch_is_open_backing(struct block_device *bdev)
{
2432 2433 2434 2435 2436 2437 2438 2439 2440 2441 2442 2443 2444
	struct cache_set *c, *tc;
	struct cached_dev *dc, *t;

	list_for_each_entry_safe(c, tc, &bch_cache_sets, list)
		list_for_each_entry_safe(dc, t, &c->cached_devs, list)
			if (dc->bdev == bdev)
				return true;
	list_for_each_entry_safe(dc, t, &uncached_devices, list)
		if (dc->bdev == bdev)
			return true;
	return false;
}

2445 2446
static bool bch_is_open_cache(struct block_device *bdev)
{
2447 2448
	struct cache_set *c, *tc;

C
Coly Li 已提交
2449 2450 2451 2452 2453 2454 2455
	list_for_each_entry_safe(c, tc, &bch_cache_sets, list) {
		struct cache *ca = c->cache;

		if (ca->bdev == bdev)
			return true;
	}

2456 2457 2458
	return false;
}

2459 2460
static bool bch_is_open(struct block_device *bdev)
{
2461 2462 2463
	return bch_is_open_cache(bdev) || bch_is_open_backing(bdev);
}

2464
struct async_reg_args {
2465
	struct delayed_work reg_work;
2466 2467 2468 2469 2470 2471 2472 2473 2474 2475
	char *path;
	struct cache_sb *sb;
	struct cache_sb_disk *sb_disk;
	struct block_device *bdev;
};

static void register_bdev_worker(struct work_struct *work)
{
	int fail = false;
	struct async_reg_args *args =
2476
		container_of(work, struct async_reg_args, reg_work.work);
2477 2478 2479 2480 2481 2482 2483 2484 2485 2486 2487 2488 2489 2490 2491 2492 2493 2494 2495 2496 2497 2498 2499 2500 2501 2502 2503 2504 2505
	struct cached_dev *dc;

	dc = kzalloc(sizeof(*dc), GFP_KERNEL);
	if (!dc) {
		fail = true;
		put_page(virt_to_page(args->sb_disk));
		blkdev_put(args->bdev, FMODE_READ | FMODE_WRITE | FMODE_EXCL);
		goto out;
	}

	mutex_lock(&bch_register_lock);
	if (register_bdev(args->sb, args->sb_disk, args->bdev, dc) < 0)
		fail = true;
	mutex_unlock(&bch_register_lock);

out:
	if (fail)
		pr_info("error %s: fail to register backing device\n",
			args->path);
	kfree(args->sb);
	kfree(args->path);
	kfree(args);
	module_put(THIS_MODULE);
}

static void register_cache_worker(struct work_struct *work)
{
	int fail = false;
	struct async_reg_args *args =
2506
		container_of(work, struct async_reg_args, reg_work.work);
2507 2508 2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533
	struct cache *ca;

	ca = kzalloc(sizeof(*ca), GFP_KERNEL);
	if (!ca) {
		fail = true;
		put_page(virt_to_page(args->sb_disk));
		blkdev_put(args->bdev, FMODE_READ | FMODE_WRITE | FMODE_EXCL);
		goto out;
	}

	/* blkdev_put() will be called in bch_cache_release() */
	if (register_cache(args->sb, args->sb_disk, args->bdev, ca) != 0)
		fail = true;

out:
	if (fail)
		pr_info("error %s: fail to register cache device\n",
			args->path);
	kfree(args->sb);
	kfree(args->path);
	kfree(args);
	module_put(THIS_MODULE);
}

static void register_device_aync(struct async_reg_args *args)
{
	if (SB_IS_BDEV(args->sb))
2534
		INIT_DELAYED_WORK(&args->reg_work, register_bdev_worker);
2535
	else
2536
		INIT_DELAYED_WORK(&args->reg_work, register_cache_worker);
2537

2538 2539
	/* 10 jiffies is enough for a delay */
	queue_delayed_work(system_wq, &args->reg_work, 10);
2540 2541
}

K
Kent Overstreet 已提交
2542 2543 2544
static ssize_t register_bcache(struct kobject *k, struct kobj_attribute *attr,
			       const char *buffer, size_t size)
{
2545
	const char *err;
2546
	char *path = NULL;
2547
	struct cache_sb *sb;
2548
	struct cache_sb_disk *sb_disk;
2549
	struct block_device *bdev;
2550
	ssize_t ret;
2551 2552 2553 2554 2555
	bool async_registration = false;

#ifdef CONFIG_BCACHE_ASYNC_REGISTRATION
	async_registration = true;
#endif
K
Kent Overstreet 已提交
2556

2557
	ret = -EBUSY;
2558
	err = "failed to reference bcache module";
K
Kent Overstreet 已提交
2559
	if (!try_module_get(THIS_MODULE))
2560
		goto out;
K
Kent Overstreet 已提交
2561

2562 2563
	/* For latest state of bcache_is_reboot */
	smp_mb();
2564
	err = "bcache is in reboot";
2565
	if (bcache_is_reboot)
2566
		goto out_module_put;
2567

2568 2569
	ret = -ENOMEM;
	err = "cannot allocate memory";
2570 2571
	path = kstrndup(buffer, size, GFP_KERNEL);
	if (!path)
2572
		goto out_module_put;
2573 2574 2575

	sb = kmalloc(sizeof(struct cache_sb), GFP_KERNEL);
	if (!sb)
2576
		goto out_free_path;
K
Kent Overstreet 已提交
2577

2578
	ret = -EINVAL;
K
Kent Overstreet 已提交
2579 2580 2581 2582
	err = "failed to open device";
	bdev = blkdev_get_by_path(strim(path),
				  FMODE_READ|FMODE_WRITE|FMODE_EXCL,
				  sb);
2583
	if (IS_ERR(bdev)) {
2584 2585
		if (bdev == ERR_PTR(-EBUSY)) {
			bdev = lookup_bdev(strim(path));
2586
			mutex_lock(&bch_register_lock);
2587 2588 2589 2590
			if (!IS_ERR(bdev) && bch_is_open(bdev))
				err = "device already registered";
			else
				err = "device busy";
2591
			mutex_unlock(&bch_register_lock);
J
Jan Kara 已提交
2592 2593
			if (!IS_ERR(bdev))
				bdput(bdev);
2594
			if (attr == &ksysfs_register_quiet)
2595
				goto done;
2596
		}
2597
		goto out_free_sb;
2598 2599 2600 2601
	}

	err = "failed to set blocksize";
	if (set_blocksize(bdev, 4096))
2602
		goto out_blkdev_put;
K
Kent Overstreet 已提交
2603

2604
	err = read_super(sb, bdev, &sb_disk);
K
Kent Overstreet 已提交
2605
	if (err)
2606
		goto out_blkdev_put;
K
Kent Overstreet 已提交
2607

2608
	err = "failed to register device";
2609 2610

	if (async_registration) {
2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623 2624 2625 2626 2627 2628 2629
		/* register in asynchronous way */
		struct async_reg_args *args =
			kzalloc(sizeof(struct async_reg_args), GFP_KERNEL);

		if (!args) {
			ret = -ENOMEM;
			err = "cannot allocate memory";
			goto out_put_sb_page;
		}

		args->path	= path;
		args->sb	= sb;
		args->sb_disk	= sb_disk;
		args->bdev	= bdev;
		register_device_aync(args);
		/* No wait and returns to user space */
		goto async_done;
	}

2630
	if (SB_IS_BDEV(sb)) {
K
Kent Overstreet 已提交
2631
		struct cached_dev *dc = kzalloc(sizeof(*dc), GFP_KERNEL);
2632

2633
		if (!dc)
2634
			goto out_put_sb_page;
K
Kent Overstreet 已提交
2635

2636
		mutex_lock(&bch_register_lock);
2637
		ret = register_bdev(sb, sb_disk, bdev, dc);
2638
		mutex_unlock(&bch_register_lock);
2639
		/* blkdev_put() will be called in cached_dev_free() */
2640 2641
		if (ret < 0)
			goto out_free_sb;
K
Kent Overstreet 已提交
2642 2643
	} else {
		struct cache *ca = kzalloc(sizeof(*ca), GFP_KERNEL);
2644

2645
		if (!ca)
2646
			goto out_put_sb_page;
K
Kent Overstreet 已提交
2647

2648
		/* blkdev_put() will be called in bch_cache_release() */
2649
		if (register_cache(sb, sb_disk, bdev, ca) != 0)
2650
			goto out_free_sb;
K
Kent Overstreet 已提交
2651
	}
2652 2653

done:
K
Kent Overstreet 已提交
2654 2655 2656
	kfree(sb);
	kfree(path);
	module_put(THIS_MODULE);
2657
async_done:
2658 2659 2660
	return size;

out_put_sb_page:
2661
	put_page(virt_to_page(sb_disk));
2662
out_blkdev_put:
2663
	blkdev_put(bdev, FMODE_READ | FMODE_WRITE | FMODE_EXCL);
2664 2665 2666 2667
out_free_sb:
	kfree(sb);
out_free_path:
	kfree(path);
2668
	path = NULL;
2669 2670 2671
out_module_put:
	module_put(THIS_MODULE);
out:
2672
	pr_info("error %s: %s\n", path?path:"", err);
2673
	return ret;
K
Kent Overstreet 已提交
2674 2675
}

2676 2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688 2689 2690 2691 2692 2693 2694 2695 2696 2697 2698 2699 2700 2701 2702 2703 2704

struct pdev {
	struct list_head list;
	struct cached_dev *dc;
};

static ssize_t bch_pending_bdevs_cleanup(struct kobject *k,
					 struct kobj_attribute *attr,
					 const char *buffer,
					 size_t size)
{
	LIST_HEAD(pending_devs);
	ssize_t ret = size;
	struct cached_dev *dc, *tdc;
	struct pdev *pdev, *tpdev;
	struct cache_set *c, *tc;

	mutex_lock(&bch_register_lock);
	list_for_each_entry_safe(dc, tdc, &uncached_devices, list) {
		pdev = kmalloc(sizeof(struct pdev), GFP_KERNEL);
		if (!pdev)
			break;
		pdev->dc = dc;
		list_add(&pdev->list, &pending_devs);
	}

	list_for_each_entry_safe(pdev, tpdev, &pending_devs, list) {
		list_for_each_entry_safe(c, tc, &bch_cache_sets, list) {
			char *pdev_set_uuid = pdev->dc->sb.set_uuid;
C
Coly Li 已提交
2705
			char *set_uuid = c->set_uuid;
2706 2707 2708 2709 2710 2711 2712 2713 2714 2715 2716

			if (!memcmp(pdev_set_uuid, set_uuid, 16)) {
				list_del(&pdev->list);
				kfree(pdev);
				break;
			}
		}
	}
	mutex_unlock(&bch_register_lock);

	list_for_each_entry_safe(pdev, tpdev, &pending_devs, list) {
2717
		pr_info("delete pdev %p\n", pdev);
2718 2719 2720 2721 2722 2723 2724 2725
		list_del(&pdev->list);
		bcache_device_stop(&pdev->dc->disk);
		kfree(pdev);
	}

	return ret;
}

K
Kent Overstreet 已提交
2726 2727
static int bcache_reboot(struct notifier_block *n, unsigned long code, void *x)
{
2728 2729 2730
	if (bcache_is_reboot)
		return NOTIFY_DONE;

K
Kent Overstreet 已提交
2731 2732 2733 2734 2735 2736 2737 2738 2739 2740 2741 2742
	if (code == SYS_DOWN ||
	    code == SYS_HALT ||
	    code == SYS_POWER_OFF) {
		DEFINE_WAIT(wait);
		unsigned long start = jiffies;
		bool stopped = false;

		struct cache_set *c, *tc;
		struct cached_dev *dc, *tdc;

		mutex_lock(&bch_register_lock);

2743 2744 2745 2746 2747 2748 2749 2750 2751 2752 2753
		if (bcache_is_reboot)
			goto out;

		/* New registration is rejected since now */
		bcache_is_reboot = true;
		/*
		 * Make registering caller (if there is) on other CPU
		 * core know bcache_is_reboot set to true earlier
		 */
		smp_mb();

K
Kent Overstreet 已提交
2754 2755 2756 2757
		if (list_empty(&bch_cache_sets) &&
		    list_empty(&uncached_devices))
			goto out;

2758 2759
		mutex_unlock(&bch_register_lock);

2760
		pr_info("Stopping all devices:\n");
K
Kent Overstreet 已提交
2761

2762 2763 2764 2765 2766 2767 2768 2769 2770 2771 2772 2773 2774 2775
		/*
		 * The reason bch_register_lock is not held to call
		 * bch_cache_set_stop() and bcache_device_stop() is to
		 * avoid potential deadlock during reboot, because cache
		 * set or bcache device stopping process will acqurie
		 * bch_register_lock too.
		 *
		 * We are safe here because bcache_is_reboot sets to
		 * true already, register_bcache() will reject new
		 * registration now. bcache_is_reboot also makes sure
		 * bcache_reboot() won't be re-entered on by other thread,
		 * so there is no race in following list iteration by
		 * list_for_each_entry_safe().
		 */
K
Kent Overstreet 已提交
2776 2777 2778 2779 2780 2781
		list_for_each_entry_safe(c, tc, &bch_cache_sets, list)
			bch_cache_set_stop(c);

		list_for_each_entry_safe(dc, tdc, &uncached_devices, list)
			bcache_device_stop(&dc->disk);

C
Coly Li 已提交
2782 2783 2784 2785 2786 2787 2788

		/*
		 * Give an early chance for other kthreads and
		 * kworkers to stop themselves
		 */
		schedule();

K
Kent Overstreet 已提交
2789 2790
		/* What's a condition variable? */
		while (1) {
C
Coly Li 已提交
2791
			long timeout = start + 10 * HZ - jiffies;
K
Kent Overstreet 已提交
2792

C
Coly Li 已提交
2793
			mutex_lock(&bch_register_lock);
K
Kent Overstreet 已提交
2794 2795 2796 2797 2798 2799 2800 2801 2802 2803 2804 2805 2806 2807 2808 2809
			stopped = list_empty(&bch_cache_sets) &&
				list_empty(&uncached_devices);

			if (timeout < 0 || stopped)
				break;

			prepare_to_wait(&unregister_wait, &wait,
					TASK_UNINTERRUPTIBLE);

			mutex_unlock(&bch_register_lock);
			schedule_timeout(timeout);
		}

		finish_wait(&unregister_wait, &wait);

		if (stopped)
2810
			pr_info("All devices stopped\n");
K
Kent Overstreet 已提交
2811
		else
2812
			pr_notice("Timeout waiting for devices to be closed\n");
K
Kent Overstreet 已提交
2813 2814 2815 2816 2817 2818 2819 2820 2821 2822 2823 2824 2825 2826 2827 2828 2829 2830 2831 2832
out:
		mutex_unlock(&bch_register_lock);
	}

	return NOTIFY_DONE;
}

static struct notifier_block reboot = {
	.notifier_call	= bcache_reboot,
	.priority	= INT_MAX, /* before any real devices */
};

static void bcache_exit(void)
{
	bch_debug_exit();
	bch_request_exit();
	if (bcache_kobj)
		kobject_put(bcache_kobj);
	if (bcache_wq)
		destroy_workqueue(bcache_wq);
2833 2834 2835
	if (bch_journal_wq)
		destroy_workqueue(bch_journal_wq);

2836 2837
	if (bcache_major)
		unregister_blkdev(bcache_major, "bcache");
K
Kent Overstreet 已提交
2838
	unregister_reboot_notifier(&reboot);
2839
	mutex_destroy(&bch_register_lock);
K
Kent Overstreet 已提交
2840 2841
}

2842 2843 2844 2845 2846 2847
/* Check and fixup module parameters */
static void check_module_parameters(void)
{
	if (bch_cutoff_writeback_sync == 0)
		bch_cutoff_writeback_sync = CUTOFF_WRITEBACK_SYNC;
	else if (bch_cutoff_writeback_sync > CUTOFF_WRITEBACK_SYNC_MAX) {
2848
		pr_warn("set bch_cutoff_writeback_sync (%u) to max value %u\n",
2849 2850 2851 2852 2853 2854 2855
			bch_cutoff_writeback_sync, CUTOFF_WRITEBACK_SYNC_MAX);
		bch_cutoff_writeback_sync = CUTOFF_WRITEBACK_SYNC_MAX;
	}

	if (bch_cutoff_writeback == 0)
		bch_cutoff_writeback = CUTOFF_WRITEBACK;
	else if (bch_cutoff_writeback > CUTOFF_WRITEBACK_MAX) {
2856
		pr_warn("set bch_cutoff_writeback (%u) to max value %u\n",
2857 2858 2859 2860 2861
			bch_cutoff_writeback, CUTOFF_WRITEBACK_MAX);
		bch_cutoff_writeback = CUTOFF_WRITEBACK_MAX;
	}

	if (bch_cutoff_writeback > bch_cutoff_writeback_sync) {
2862
		pr_warn("set bch_cutoff_writeback (%u) to %u\n",
2863 2864 2865 2866 2867
			bch_cutoff_writeback, bch_cutoff_writeback_sync);
		bch_cutoff_writeback = bch_cutoff_writeback_sync;
	}
}

K
Kent Overstreet 已提交
2868 2869 2870 2871 2872
static int __init bcache_init(void)
{
	static const struct attribute *files[] = {
		&ksysfs_register.attr,
		&ksysfs_register_quiet.attr,
2873
		&ksysfs_pendings_cleanup.attr,
K
Kent Overstreet 已提交
2874 2875 2876
		NULL
	};

2877 2878
	check_module_parameters();

K
Kent Overstreet 已提交
2879 2880 2881 2882 2883
	mutex_init(&bch_register_lock);
	init_waitqueue_head(&unregister_wait);
	register_reboot_notifier(&reboot);

	bcache_major = register_blkdev(0, "bcache");
2884 2885
	if (bcache_major < 0) {
		unregister_reboot_notifier(&reboot);
2886
		mutex_destroy(&bch_register_lock);
K
Kent Overstreet 已提交
2887
		return bcache_major;
2888
	}
K
Kent Overstreet 已提交
2889

2890 2891 2892 2893
	bcache_wq = alloc_workqueue("bcache", WQ_MEM_RECLAIM, 0);
	if (!bcache_wq)
		goto err;

2894 2895 2896 2897
	bch_journal_wq = alloc_workqueue("bch_journal", WQ_MEM_RECLAIM, 0);
	if (!bch_journal_wq)
		goto err;

2898 2899 2900 2901 2902
	bcache_kobj = kobject_create_and_add("bcache", fs_kobj);
	if (!bcache_kobj)
		goto err;

	if (bch_request_init() ||
2903
	    sysfs_create_files(bcache_kobj, files))
K
Kent Overstreet 已提交
2904 2905
		goto err;

2906
	bch_debug_init();
2907 2908
	closure_debug_init();

2909 2910
	bcache_is_reboot = false;

K
Kent Overstreet 已提交
2911 2912 2913 2914 2915 2916
	return 0;
err:
	bcache_exit();
	return -ENOMEM;
}

2917 2918 2919
/*
 * Module hooks
 */
K
Kent Overstreet 已提交
2920 2921
module_exit(bcache_exit);
module_init(bcache_init);
2922

2923 2924 2925 2926 2927 2928
module_param(bch_cutoff_writeback, uint, 0);
MODULE_PARM_DESC(bch_cutoff_writeback, "threshold to cutoff writeback");

module_param(bch_cutoff_writeback_sync, uint, 0);
MODULE_PARM_DESC(bch_cutoff_writeback_sync, "hard threshold to cutoff writeback");

2929 2930 2931
MODULE_DESCRIPTION("Bcache: a Linux block layer cache");
MODULE_AUTHOR("Kent Overstreet <kent.overstreet@gmail.com>");
MODULE_LICENSE("GPL");