raid10.c 130.8 KB
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/*
 * raid10.c : Multiple Devices driver for Linux
 *
 * Copyright (C) 2000-2004 Neil Brown
 *
 * RAID-10 support for md.
 *
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 * Base on code in raid1.c.  See raid1.c for further copyright information.
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 *
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation; either version 2, or (at your option)
 * any later version.
 *
 * You should have received a copy of the GNU General Public License
 * (for example /usr/src/linux/COPYING); if not, write to the Free
 * Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
 */

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#include <linux/slab.h>
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#include <linux/delay.h>
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#include <linux/blkdev.h>
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#include <linux/module.h>
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#include <linux/seq_file.h>
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#include <linux/ratelimit.h>
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#include <linux/kthread.h>
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#include <trace/events/block.h>
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#include "md.h"
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#include "raid10.h"
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#include "raid0.h"
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#include "md-bitmap.h"
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/*
 * RAID10 provides a combination of RAID0 and RAID1 functionality.
 * The layout of data is defined by
 *    chunk_size
 *    raid_disks
 *    near_copies (stored in low byte of layout)
 *    far_copies (stored in second byte of layout)
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 *    far_offset (stored in bit 16 of layout )
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 *    use_far_sets (stored in bit 17 of layout )
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 *    use_far_sets_bugfixed (stored in bit 18 of layout )
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 *
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 * The data to be stored is divided into chunks using chunksize.  Each device
 * is divided into far_copies sections.   In each section, chunks are laid out
 * in a style similar to raid0, but near_copies copies of each chunk is stored
 * (each on a different drive).  The starting device for each section is offset
 * near_copies from the starting device of the previous section.  Thus there
 * are (near_copies * far_copies) of each chunk, and each is on a different
 * drive.  near_copies and far_copies must be at least one, and their product
 * is at most raid_disks.
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 *
 * If far_offset is true, then the far_copies are handled a bit differently.
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 * The copies are still in different stripes, but instead of being very far
 * apart on disk, there are adjacent stripes.
 *
 * The far and offset algorithms are handled slightly differently if
 * 'use_far_sets' is true.  In this case, the array's devices are grouped into
 * sets that are (near_copies * far_copies) in size.  The far copied stripes
 * are still shifted by 'near_copies' devices, but this shifting stays confined
 * to the set rather than the entire array.  This is done to improve the number
 * of device combinations that can fail without causing the array to fail.
 * Example 'far' algorithm w/o 'use_far_sets' (each letter represents a chunk
 * on a device):
 *    A B C D    A B C D E
 *      ...         ...
 *    D A B C    E A B C D
 * Example 'far' algorithm w/ 'use_far_sets' enabled (sets illustrated w/ []'s):
 *    [A B] [C D]    [A B] [C D E]
 *    |...| |...|    |...| | ... |
 *    [B A] [D C]    [B A] [E C D]
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 */

/*
 * Number of guaranteed r10bios in case of extreme VM load:
 */
#define	NR_RAID10_BIOS 256

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/* when we get a read error on a read-only array, we redirect to another
 * device without failing the first device, or trying to over-write to
 * correct the read error.  To keep track of bad blocks on a per-bio
 * level, we store IO_BLOCKED in the appropriate 'bios' pointer
 */
#define IO_BLOCKED ((struct bio *)1)
/* When we successfully write to a known bad-block, we need to remove the
 * bad-block marking which must be done from process context.  So we record
 * the success by setting devs[n].bio to IO_MADE_GOOD
 */
#define IO_MADE_GOOD ((struct bio *)2)

#define BIO_SPECIAL(bio) ((unsigned long)bio <= 2)

/* When there are this many requests queued to be written by
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 * the raid10 thread, we become 'congested' to provide back-pressure
 * for writeback.
 */
static int max_queued_requests = 1024;

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static void allow_barrier(struct r10conf *conf);
static void lower_barrier(struct r10conf *conf);
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static int _enough(struct r10conf *conf, int previous, int ignore);
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static int enough(struct r10conf *conf, int ignore);
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static sector_t reshape_request(struct mddev *mddev, sector_t sector_nr,
				int *skipped);
static void reshape_request_write(struct mddev *mddev, struct r10bio *r10_bio);
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static void end_reshape_write(struct bio *bio);
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static void end_reshape(struct r10conf *conf);
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#define raid10_log(md, fmt, args...)				\
	do { if ((md)->queue) blk_add_trace_msg((md)->queue, "raid10 " fmt, ##args); } while (0)

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#include "raid1-10.c"

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/*
 * for resync bio, r10bio pointer can be retrieved from the per-bio
 * 'struct resync_pages'.
 */
static inline struct r10bio *get_resync_r10bio(struct bio *bio)
{
	return get_resync_pages(bio)->raid_bio;
}

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static void * r10bio_pool_alloc(gfp_t gfp_flags, void *data)
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{
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	struct r10conf *conf = data;
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	int size = offsetof(struct r10bio, devs[conf->copies]);
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	/* allocate a r10bio with room for raid_disks entries in the
	 * bios array */
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	return kzalloc(size, gfp_flags);
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}

static void r10bio_pool_free(void *r10_bio, void *data)
{
	kfree(r10_bio);
}

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/* amount of memory to reserve for resync requests */
#define RESYNC_WINDOW (1024*1024)
/* maximum number of concurrent requests, memory permitting */
#define RESYNC_DEPTH (32*1024*1024/RESYNC_BLOCK_SIZE)
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/*
 * When performing a resync, we need to read and compare, so
 * we need as many pages are there are copies.
 * When performing a recovery, we need 2 bios, one for read,
 * one for write (we recover only one drive per r10buf)
 *
 */
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static void * r10buf_pool_alloc(gfp_t gfp_flags, void *data)
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{
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	struct r10conf *conf = data;
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	struct r10bio *r10_bio;
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	struct bio *bio;
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	int j;
	int nalloc, nalloc_rp;
	struct resync_pages *rps;
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	r10_bio = r10bio_pool_alloc(gfp_flags, conf);
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	if (!r10_bio)
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		return NULL;

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	if (test_bit(MD_RECOVERY_SYNC, &conf->mddev->recovery) ||
	    test_bit(MD_RECOVERY_RESHAPE, &conf->mddev->recovery))
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		nalloc = conf->copies; /* resync */
	else
		nalloc = 2; /* recovery */

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	/* allocate once for all bios */
	if (!conf->have_replacement)
		nalloc_rp = nalloc;
	else
		nalloc_rp = nalloc * 2;
	rps = kmalloc(sizeof(struct resync_pages) * nalloc_rp, gfp_flags);
	if (!rps)
		goto out_free_r10bio;

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	/*
	 * Allocate bios.
	 */
	for (j = nalloc ; j-- ; ) {
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		bio = bio_kmalloc(gfp_flags, RESYNC_PAGES);
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		if (!bio)
			goto out_free_bio;
		r10_bio->devs[j].bio = bio;
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		if (!conf->have_replacement)
			continue;
		bio = bio_kmalloc(gfp_flags, RESYNC_PAGES);
		if (!bio)
			goto out_free_bio;
		r10_bio->devs[j].repl_bio = bio;
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	}
	/*
	 * Allocate RESYNC_PAGES data pages and attach them
	 * where needed.
	 */
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	for (j = 0; j < nalloc; j++) {
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		struct bio *rbio = r10_bio->devs[j].repl_bio;
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		struct resync_pages *rp, *rp_repl;

		rp = &rps[j];
		if (rbio)
			rp_repl = &rps[nalloc + j];

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		bio = r10_bio->devs[j].bio;
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		if (!j || test_bit(MD_RECOVERY_SYNC,
				   &conf->mddev->recovery)) {
			if (resync_alloc_pages(rp, gfp_flags))
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				goto out_free_pages;
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		} else {
			memcpy(rp, &rps[0], sizeof(*rp));
			resync_get_all_pages(rp);
		}
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		rp->raid_bio = r10_bio;
		bio->bi_private = rp;
		if (rbio) {
			memcpy(rp_repl, rp, sizeof(*rp));
			rbio->bi_private = rp_repl;
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		}
	}

	return r10_bio;

out_free_pages:
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	while (--j >= 0)
		resync_free_pages(&rps[j * 2]);

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	j = 0;
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out_free_bio:
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	for ( ; j < nalloc; j++) {
		if (r10_bio->devs[j].bio)
			bio_put(r10_bio->devs[j].bio);
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		if (r10_bio->devs[j].repl_bio)
			bio_put(r10_bio->devs[j].repl_bio);
	}
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	kfree(rps);
out_free_r10bio:
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	r10bio_pool_free(r10_bio, conf);
	return NULL;
}

static void r10buf_pool_free(void *__r10_bio, void *data)
{
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	struct r10conf *conf = data;
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	struct r10bio *r10bio = __r10_bio;
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	int j;
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	struct resync_pages *rp = NULL;
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	for (j = conf->copies; j--; ) {
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		struct bio *bio = r10bio->devs[j].bio;
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		rp = get_resync_pages(bio);
		resync_free_pages(rp);
		bio_put(bio);

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		bio = r10bio->devs[j].repl_bio;
		if (bio)
			bio_put(bio);
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	}
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	/* resync pages array stored in the 1st bio's .bi_private */
	kfree(rp);

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	r10bio_pool_free(r10bio, conf);
}

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static void put_all_bios(struct r10conf *conf, struct r10bio *r10_bio)
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{
	int i;

	for (i = 0; i < conf->copies; i++) {
		struct bio **bio = & r10_bio->devs[i].bio;
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		if (!BIO_SPECIAL(*bio))
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			bio_put(*bio);
		*bio = NULL;
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		bio = &r10_bio->devs[i].repl_bio;
		if (r10_bio->read_slot < 0 && !BIO_SPECIAL(*bio))
			bio_put(*bio);
		*bio = NULL;
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	}
}

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static void free_r10bio(struct r10bio *r10_bio)
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{
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	struct r10conf *conf = r10_bio->mddev->private;
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	put_all_bios(conf, r10_bio);
	mempool_free(r10_bio, conf->r10bio_pool);
}

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static void put_buf(struct r10bio *r10_bio)
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{
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	struct r10conf *conf = r10_bio->mddev->private;
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	mempool_free(r10_bio, conf->r10buf_pool);

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	lower_barrier(conf);
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}

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static void reschedule_retry(struct r10bio *r10_bio)
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{
	unsigned long flags;
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	struct mddev *mddev = r10_bio->mddev;
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	struct r10conf *conf = mddev->private;
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	spin_lock_irqsave(&conf->device_lock, flags);
	list_add(&r10_bio->retry_list, &conf->retry_list);
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	conf->nr_queued ++;
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	spin_unlock_irqrestore(&conf->device_lock, flags);

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	/* wake up frozen array... */
	wake_up(&conf->wait_barrier);

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	md_wakeup_thread(mddev->thread);
}

/*
 * raid_end_bio_io() is called when we have finished servicing a mirrored
 * operation and are ready to return a success/failure code to the buffer
 * cache layer.
 */
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static void raid_end_bio_io(struct r10bio *r10_bio)
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{
	struct bio *bio = r10_bio->master_bio;
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	struct r10conf *conf = r10_bio->mddev->private;
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	if (!test_bit(R10BIO_Uptodate, &r10_bio->state))
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		bio->bi_status = BLK_STS_IOERR;
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	bio_endio(bio);
	/*
	 * Wake up any possible resync thread that waits for the device
	 * to go idle.
	 */
	allow_barrier(conf);

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	free_r10bio(r10_bio);
}

/*
 * Update disk head position estimator based on IRQ completion info.
 */
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static inline void update_head_pos(int slot, struct r10bio *r10_bio)
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{
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	struct r10conf *conf = r10_bio->mddev->private;
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	conf->mirrors[r10_bio->devs[slot].devnum].head_position =
		r10_bio->devs[slot].addr + (r10_bio->sectors);
}

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/*
 * Find the disk number which triggered given bio
 */
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static int find_bio_disk(struct r10conf *conf, struct r10bio *r10_bio,
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			 struct bio *bio, int *slotp, int *replp)
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{
	int slot;
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	int repl = 0;
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	for (slot = 0; slot < conf->copies; slot++) {
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		if (r10_bio->devs[slot].bio == bio)
			break;
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		if (r10_bio->devs[slot].repl_bio == bio) {
			repl = 1;
			break;
		}
	}
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	BUG_ON(slot == conf->copies);
	update_head_pos(slot, r10_bio);

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	if (slotp)
		*slotp = slot;
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	if (replp)
		*replp = repl;
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	return r10_bio->devs[slot].devnum;
}

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static void raid10_end_read_request(struct bio *bio)
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{
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	int uptodate = !bio->bi_status;
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	struct r10bio *r10_bio = bio->bi_private;
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	int slot;
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	struct md_rdev *rdev;
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	struct r10conf *conf = r10_bio->mddev->private;
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	slot = r10_bio->read_slot;
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	rdev = r10_bio->devs[slot].rdev;
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	/*
	 * this branch is our 'one mirror IO has finished' event handler:
	 */
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	update_head_pos(slot, r10_bio);

	if (uptodate) {
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		/*
		 * Set R10BIO_Uptodate in our master bio, so that
		 * we will return a good error code to the higher
		 * levels even if IO on some other mirrored buffer fails.
		 *
		 * The 'master' represents the composite IO operation to
		 * user-side. So if something waits for IO, then it will
		 * wait for the 'master' bio.
		 */
		set_bit(R10BIO_Uptodate, &r10_bio->state);
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	} else {
		/* If all other devices that store this block have
		 * failed, we want to return the error upwards rather
		 * than fail the last device.  Here we redefine
		 * "uptodate" to mean "Don't want to retry"
		 */
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		if (!_enough(conf, test_bit(R10BIO_Previous, &r10_bio->state),
			     rdev->raid_disk))
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			uptodate = 1;
	}
	if (uptodate) {
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		raid_end_bio_io(r10_bio);
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		rdev_dec_pending(rdev, conf->mddev);
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	} else {
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		/*
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		 * oops, read error - keep the refcount on the rdev
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		 */
		char b[BDEVNAME_SIZE];
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		pr_err_ratelimited("md/raid10:%s: %s: rescheduling sector %llu\n",
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				   mdname(conf->mddev),
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				   bdevname(rdev->bdev, b),
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				   (unsigned long long)r10_bio->sector);
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		set_bit(R10BIO_ReadError, &r10_bio->state);
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		reschedule_retry(r10_bio);
	}
}

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static void close_write(struct r10bio *r10_bio)
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{
	/* clear the bitmap if all writes complete successfully */
	bitmap_endwrite(r10_bio->mddev->bitmap, r10_bio->sector,
			r10_bio->sectors,
			!test_bit(R10BIO_Degraded, &r10_bio->state),
			0);
	md_write_end(r10_bio->mddev);
}

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static void one_write_done(struct r10bio *r10_bio)
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{
	if (atomic_dec_and_test(&r10_bio->remaining)) {
		if (test_bit(R10BIO_WriteError, &r10_bio->state))
			reschedule_retry(r10_bio);
		else {
			close_write(r10_bio);
			if (test_bit(R10BIO_MadeGood, &r10_bio->state))
				reschedule_retry(r10_bio);
			else
				raid_end_bio_io(r10_bio);
		}
	}
}

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static void raid10_end_write_request(struct bio *bio)
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{
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	struct r10bio *r10_bio = bio->bi_private;
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	int dev;
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	int dec_rdev = 1;
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	struct r10conf *conf = r10_bio->mddev->private;
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	int slot, repl;
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	struct md_rdev *rdev = NULL;
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	struct bio *to_put = NULL;
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	bool discard_error;

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	discard_error = bio->bi_status && bio_op(bio) == REQ_OP_DISCARD;
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	dev = find_bio_disk(conf, r10_bio, bio, &slot, &repl);
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	if (repl)
		rdev = conf->mirrors[dev].replacement;
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	if (!rdev) {
		smp_rmb();
		repl = 0;
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		rdev = conf->mirrors[dev].rdev;
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	}
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	/*
	 * this branch is our 'one mirror IO has finished' event handler:
	 */
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	if (bio->bi_status && !discard_error) {
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		if (repl)
			/* Never record new bad blocks to replacement,
			 * just fail it.
			 */
			md_error(rdev->mddev, rdev);
		else {
			set_bit(WriteErrorSeen,	&rdev->flags);
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			if (!test_and_set_bit(WantReplacement, &rdev->flags))
				set_bit(MD_RECOVERY_NEEDED,
					&rdev->mddev->recovery);
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			dec_rdev = 0;
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			if (test_bit(FailFast, &rdev->flags) &&
			    (bio->bi_opf & MD_FAILFAST)) {
				md_error(rdev->mddev, rdev);
				if (!test_bit(Faulty, &rdev->flags))
					/* This is the only remaining device,
					 * We need to retry the write without
					 * FailFast
					 */
					set_bit(R10BIO_WriteError, &r10_bio->state);
				else {
					r10_bio->devs[slot].bio = NULL;
					to_put = bio;
					dec_rdev = 1;
				}
			} else
				set_bit(R10BIO_WriteError, &r10_bio->state);
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		}
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	} else {
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		/*
		 * Set R10BIO_Uptodate in our master bio, so that
		 * we will return a good error code for to the higher
		 * levels even if IO on some other mirrored buffer fails.
		 *
		 * The 'master' represents the composite IO operation to
		 * user-side. So if something waits for IO, then it will
		 * wait for the 'master' bio.
		 */
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		sector_t first_bad;
		int bad_sectors;

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		/*
		 * Do not set R10BIO_Uptodate if the current device is
		 * rebuilding or Faulty. This is because we cannot use
		 * such device for properly reading the data back (we could
		 * potentially use it, if the current write would have felt
		 * before rdev->recovery_offset, but for simplicity we don't
		 * check this here.
		 */
		if (test_bit(In_sync, &rdev->flags) &&
		    !test_bit(Faulty, &rdev->flags))
			set_bit(R10BIO_Uptodate, &r10_bio->state);
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		/* Maybe we can clear some bad blocks. */
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		if (is_badblock(rdev,
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				r10_bio->devs[slot].addr,
				r10_bio->sectors,
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				&first_bad, &bad_sectors) && !discard_error) {
545
			bio_put(bio);
546 547 548 549
			if (repl)
				r10_bio->devs[slot].repl_bio = IO_MADE_GOOD;
			else
				r10_bio->devs[slot].bio = IO_MADE_GOOD;
550 551 552 553 554
			dec_rdev = 0;
			set_bit(R10BIO_MadeGood, &r10_bio->state);
		}
	}

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	/*
	 *
	 * Let's see if all mirrored write operations have finished
	 * already.
	 */
560
	one_write_done(r10_bio);
561
	if (dec_rdev)
562
		rdev_dec_pending(rdev, conf->mddev);
563 564
	if (to_put)
		bio_put(to_put);
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}

/*
 * RAID10 layout manager
L
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569
 * As well as the chunksize and raid_disks count, there are two
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 * parameters: near_copies and far_copies.
 * near_copies * far_copies must be <= raid_disks.
 * Normally one of these will be 1.
 * If both are 1, we get raid0.
 * If near_copies == raid_disks, we get raid1.
 *
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 * Chunks are laid out in raid0 style with near_copies copies of the
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 * first chunk, followed by near_copies copies of the next chunk and
 * so on.
 * If far_copies > 1, then after 1/far_copies of the array has been assigned
 * as described above, we start again with a device offset of near_copies.
 * So we effectively have another copy of the whole array further down all
 * the drives, but with blocks on different drives.
 * With this layout, and block is never stored twice on the one device.
 *
 * raid10_find_phys finds the sector offset of a given virtual sector
586
 * on each device that it is on.
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 *
 * raid10_find_virt does the reverse mapping, from a device and a
 * sector offset to a virtual address
 */

592
static void __raid10_find_phys(struct geom *geo, struct r10bio *r10bio)
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{
	int n,f;
	sector_t sector;
	sector_t chunk;
	sector_t stripe;
	int dev;
	int slot = 0;
600 601 602 603 604 605 606
	int last_far_set_start, last_far_set_size;

	last_far_set_start = (geo->raid_disks / geo->far_set_size) - 1;
	last_far_set_start *= geo->far_set_size;

	last_far_set_size = geo->far_set_size;
	last_far_set_size += (geo->raid_disks % geo->far_set_size);
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	/* now calculate first sector/dev */
609 610
	chunk = r10bio->sector >> geo->chunk_shift;
	sector = r10bio->sector & geo->chunk_mask;
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612
	chunk *= geo->near_copies;
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613
	stripe = chunk;
614 615 616
	dev = sector_div(stripe, geo->raid_disks);
	if (geo->far_offset)
		stripe *= geo->far_copies;
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617

618
	sector += stripe << geo->chunk_shift;
L
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619 620

	/* and calculate all the others */
621
	for (n = 0; n < geo->near_copies; n++) {
L
Linus Torvalds 已提交
622
		int d = dev;
623
		int set;
L
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624 625
		sector_t s = sector;
		r10bio->devs[slot].devnum = d;
626
		r10bio->devs[slot].addr = s;
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627 628
		slot++;

629
		for (f = 1; f < geo->far_copies; f++) {
630
			set = d / geo->far_set_size;
631
			d += geo->near_copies;
632

633 634 635 636 637 638 639 640 641
			if ((geo->raid_disks % geo->far_set_size) &&
			    (d > last_far_set_start)) {
				d -= last_far_set_start;
				d %= last_far_set_size;
				d += last_far_set_start;
			} else {
				d %= geo->far_set_size;
				d += geo->far_set_size * set;
			}
642
			s += geo->stride;
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643 644 645 646 647
			r10bio->devs[slot].devnum = d;
			r10bio->devs[slot].addr = s;
			slot++;
		}
		dev++;
648
		if (dev >= geo->raid_disks) {
L
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649
			dev = 0;
650
			sector += (geo->chunk_mask + 1);
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651 652
		}
	}
653 654 655 656 657 658 659 660 661 662 663 664 665 666 667
}

static void raid10_find_phys(struct r10conf *conf, struct r10bio *r10bio)
{
	struct geom *geo = &conf->geo;

	if (conf->reshape_progress != MaxSector &&
	    ((r10bio->sector >= conf->reshape_progress) !=
	     conf->mddev->reshape_backwards)) {
		set_bit(R10BIO_Previous, &r10bio->state);
		geo = &conf->prev;
	} else
		clear_bit(R10BIO_Previous, &r10bio->state);

	__raid10_find_phys(geo, r10bio);
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}

670
static sector_t raid10_find_virt(struct r10conf *conf, sector_t sector, int dev)
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{
	sector_t offset, chunk, vchunk;
673 674 675
	/* Never use conf->prev as this is only called during resync
	 * or recovery, so reshape isn't happening
	 */
676
	struct geom *geo = &conf->geo;
677 678
	int far_set_start = (dev / geo->far_set_size) * geo->far_set_size;
	int far_set_size = geo->far_set_size;
679 680 681 682 683 684 685 686 687 688 689 690
	int last_far_set_start;

	if (geo->raid_disks % geo->far_set_size) {
		last_far_set_start = (geo->raid_disks / geo->far_set_size) - 1;
		last_far_set_start *= geo->far_set_size;

		if (dev >= last_far_set_start) {
			far_set_size = geo->far_set_size;
			far_set_size += (geo->raid_disks % geo->far_set_size);
			far_set_start = last_far_set_start;
		}
	}
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691

692 693
	offset = sector & geo->chunk_mask;
	if (geo->far_offset) {
694
		int fc;
695 696 697
		chunk = sector >> geo->chunk_shift;
		fc = sector_div(chunk, geo->far_copies);
		dev -= fc * geo->near_copies;
698 699
		if (dev < far_set_start)
			dev += far_set_size;
700
	} else {
701 702
		while (sector >= geo->stride) {
			sector -= geo->stride;
703 704
			if (dev < (geo->near_copies + far_set_start))
				dev += far_set_size - geo->near_copies;
705
			else
706
				dev -= geo->near_copies;
707
		}
708
		chunk = sector >> geo->chunk_shift;
709
	}
710 711 712
	vchunk = chunk * geo->raid_disks + dev;
	sector_div(vchunk, geo->near_copies);
	return (vchunk << geo->chunk_shift) + offset;
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}

/*
 * This routine returns the disk from which the requested read should
 * be done. There is a per-array 'next expected sequential IO' sector
 * number - if this matches on the next IO then we use the last disk.
 * There is also a per-disk 'last know head position' sector that is
 * maintained from IRQ contexts, both the normal and the resync IO
 * completion handlers update this position correctly. If there is no
 * perfect sequential match then we pick the disk whose head is closest.
 *
 * If there are 2 mirrors in the same 2 devices, performance degrades
 * because position is mirror, not device based.
 *
 * The rdev for the device selected will have nr_pending incremented.
 */

/*
 * FIXME: possibly should rethink readbalancing and do it differently
 * depending on near_copies / far_copies geometry.
 */
734 735 736
static struct md_rdev *read_balance(struct r10conf *conf,
				    struct r10bio *r10_bio,
				    int *max_sectors)
L
Linus Torvalds 已提交
737
{
738
	const sector_t this_sector = r10_bio->sector;
N
NeilBrown 已提交
739
	int disk, slot;
740 741
	int sectors = r10_bio->sectors;
	int best_good_sectors;
N
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742
	sector_t new_distance, best_dist;
743
	struct md_rdev *best_rdev, *rdev = NULL;
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	int do_balance;
	int best_slot;
746
	struct geom *geo = &conf->geo;
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747 748 749

	raid10_find_phys(conf, r10_bio);
	rcu_read_lock();
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750
	best_slot = -1;
751
	best_rdev = NULL;
N
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752
	best_dist = MaxSector;
753
	best_good_sectors = 0;
N
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754
	do_balance = 1;
755
	clear_bit(R10BIO_FailFast, &r10_bio->state);
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756 757
	/*
	 * Check if we can balance. We can balance on the whole
758 759 760
	 * device if no resync is going on (recovery is ok), or below
	 * the resync window. We take the first readable disk when
	 * above the resync window.
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761
	 */
762 763 764 765 766
	if ((conf->mddev->recovery_cp < MaxSector
	     && (this_sector + sectors >= conf->next_resync)) ||
	    (mddev_is_clustered(conf->mddev) &&
	     md_cluster_ops->area_resyncing(conf->mddev, READ, this_sector,
					    this_sector + sectors)))
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767
		do_balance = 0;
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768

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769
	for (slot = 0; slot < conf->copies ; slot++) {
770 771 772 773
		sector_t first_bad;
		int bad_sectors;
		sector_t dev_sector;

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774 775
		if (r10_bio->devs[slot].bio == IO_BLOCKED)
			continue;
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776
		disk = r10_bio->devs[slot].devnum;
777 778 779 780
		rdev = rcu_dereference(conf->mirrors[disk].replacement);
		if (rdev == NULL || test_bit(Faulty, &rdev->flags) ||
		    r10_bio->devs[slot].addr + sectors > rdev->recovery_offset)
			rdev = rcu_dereference(conf->mirrors[disk].rdev);
781
		if (rdev == NULL ||
782
		    test_bit(Faulty, &rdev->flags))
783 784 785
			continue;
		if (!test_bit(In_sync, &rdev->flags) &&
		    r10_bio->devs[slot].addr + sectors > rdev->recovery_offset)
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			continue;

788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809
		dev_sector = r10_bio->devs[slot].addr;
		if (is_badblock(rdev, dev_sector, sectors,
				&first_bad, &bad_sectors)) {
			if (best_dist < MaxSector)
				/* Already have a better slot */
				continue;
			if (first_bad <= dev_sector) {
				/* Cannot read here.  If this is the
				 * 'primary' device, then we must not read
				 * beyond 'bad_sectors' from another device.
				 */
				bad_sectors -= (dev_sector - first_bad);
				if (!do_balance && sectors > bad_sectors)
					sectors = bad_sectors;
				if (best_good_sectors > sectors)
					best_good_sectors = sectors;
			} else {
				sector_t good_sectors =
					first_bad - dev_sector;
				if (good_sectors > best_good_sectors) {
					best_good_sectors = good_sectors;
					best_slot = slot;
810
					best_rdev = rdev;
811 812 813 814 815 816 817 818 819
				}
				if (!do_balance)
					/* Must read from here */
					break;
			}
			continue;
		} else
			best_good_sectors = sectors;

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820 821
		if (!do_balance)
			break;
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822

823 824 825
		if (best_slot >= 0)
			/* At least 2 disks to choose from so failfast is OK */
			set_bit(R10BIO_FailFast, &r10_bio->state);
826 827 828 829
		/* This optimisation is debatable, and completely destroys
		 * sequential read speed for 'far copies' arrays.  So only
		 * keep it for 'near' arrays, and review those later.
		 */
830
		if (geo->near_copies > 1 && !atomic_read(&rdev->nr_pending))
831
			new_distance = 0;
832 833

		/* for far > 1 always use the lowest address */
834
		else if (geo->far_copies > 1)
N
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835
			new_distance = r10_bio->devs[slot].addr;
836
		else
N
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837 838 839 840 841
			new_distance = abs(r10_bio->devs[slot].addr -
					   conf->mirrors[disk].head_position);
		if (new_distance < best_dist) {
			best_dist = new_distance;
			best_slot = slot;
842
			best_rdev = rdev;
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843 844
		}
	}
845
	if (slot >= conf->copies) {
N
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846
		slot = best_slot;
847 848
		rdev = best_rdev;
	}
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849

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850 851 852 853
	if (slot >= 0) {
		atomic_inc(&rdev->nr_pending);
		r10_bio->read_slot = slot;
	} else
854
		rdev = NULL;
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855
	rcu_read_unlock();
856
	*max_sectors = best_good_sectors;
L
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857

858
	return rdev;
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859 860
}

861
static int raid10_congested(struct mddev *mddev, int bits)
862
{
863
	struct r10conf *conf = mddev->private;
864 865
	int i, ret = 0;

866
	if ((bits & (1 << WB_async_congested)) &&
867 868 869
	    conf->pending_count >= max_queued_requests)
		return 1;

870
	rcu_read_lock();
871 872 873 874
	for (i = 0;
	     (i < conf->geo.raid_disks || i < conf->prev.raid_disks)
		     && ret == 0;
	     i++) {
875
		struct md_rdev *rdev = rcu_dereference(conf->mirrors[i].rdev);
876
		if (rdev && !test_bit(Faulty, &rdev->flags)) {
877
			struct request_queue *q = bdev_get_queue(rdev->bdev);
878

879
			ret |= bdi_congested(q->backing_dev_info, bits);
880 881 882 883 884 885
		}
	}
	rcu_read_unlock();
	return ret;
}

886
static void flush_pending_writes(struct r10conf *conf)
887 888 889 890 891 892 893 894 895
{
	/* Any writes that have been queued but are awaiting
	 * bitmap updates get flushed here.
	 */
	spin_lock_irq(&conf->device_lock);

	if (conf->pending_bio_list.head) {
		struct bio *bio;
		bio = bio_list_get(&conf->pending_bio_list);
896
		conf->pending_count = 0;
897 898 899 900
		spin_unlock_irq(&conf->device_lock);
		/* flush any pending bitmap writes to disk
		 * before proceeding w/ I/O */
		bitmap_unplug(conf->mddev->bitmap);
901
		wake_up(&conf->wait_barrier);
902 903 904

		while (bio) { /* submit pending writes */
			struct bio *next = bio->bi_next;
905
			struct md_rdev *rdev = (void*)bio->bi_disk;
906
			bio->bi_next = NULL;
907
			bio_set_dev(bio, rdev->bdev);
908
			if (test_bit(Faulty, &rdev->flags)) {
909
				bio_io_error(bio);
910
			} else if (unlikely((bio_op(bio) ==  REQ_OP_DISCARD) &&
911
					    !blk_queue_discard(bio->bi_disk->queue)))
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Shaohua Li 已提交
912
				/* Just ignore it */
913
				bio_endio(bio);
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Shaohua Li 已提交
914 915
			else
				generic_make_request(bio);
916 917 918 919 920
			bio = next;
		}
	} else
		spin_unlock_irq(&conf->device_lock);
}
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Jens Axboe 已提交
921

922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941
/* Barriers....
 * Sometimes we need to suspend IO while we do something else,
 * either some resync/recovery, or reconfigure the array.
 * To do this we raise a 'barrier'.
 * The 'barrier' is a counter that can be raised multiple times
 * to count how many activities are happening which preclude
 * normal IO.
 * We can only raise the barrier if there is no pending IO.
 * i.e. if nr_pending == 0.
 * We choose only to raise the barrier if no-one is waiting for the
 * barrier to go down.  This means that as soon as an IO request
 * is ready, no other operations which require a barrier will start
 * until the IO request has had a chance.
 *
 * So: regular IO calls 'wait_barrier'.  When that returns there
 *    is no backgroup IO happening,  It must arrange to call
 *    allow_barrier when it has finished its IO.
 * backgroup IO calls must call raise_barrier.  Once that returns
 *    there is no normal IO happeing.  It must arrange to call
 *    lower_barrier when the particular background IO completes.
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942 943
 */

944
static void raise_barrier(struct r10conf *conf, int force)
L
Linus Torvalds 已提交
945
{
946
	BUG_ON(force && !conf->barrier);
L
Linus Torvalds 已提交
947
	spin_lock_irq(&conf->resync_lock);
948

949 950
	/* Wait until no block IO is waiting (unless 'force') */
	wait_event_lock_irq(conf->wait_barrier, force || !conf->nr_waiting,
951
			    conf->resync_lock);
952 953 954 955

	/* block any new IO from starting */
	conf->barrier++;

N
NeilBrown 已提交
956
	/* Now wait for all pending IO to complete */
957
	wait_event_lock_irq(conf->wait_barrier,
958
			    !atomic_read(&conf->nr_pending) && conf->barrier < RESYNC_DEPTH,
959
			    conf->resync_lock);
960 961 962 963

	spin_unlock_irq(&conf->resync_lock);
}

964
static void lower_barrier(struct r10conf *conf)
965 966 967 968 969 970 971 972
{
	unsigned long flags;
	spin_lock_irqsave(&conf->resync_lock, flags);
	conf->barrier--;
	spin_unlock_irqrestore(&conf->resync_lock, flags);
	wake_up(&conf->wait_barrier);
}

973
static void wait_barrier(struct r10conf *conf)
974 975 976 977
{
	spin_lock_irq(&conf->resync_lock);
	if (conf->barrier) {
		conf->nr_waiting++;
978 979 980 981 982 983 984 985 986
		/* Wait for the barrier to drop.
		 * However if there are already pending
		 * requests (preventing the barrier from
		 * rising completely), and the
		 * pre-process bio queue isn't empty,
		 * then don't wait, as we need to empty
		 * that queue to get the nr_pending
		 * count down.
		 */
987
		raid10_log(conf->mddev, "wait barrier");
988 989
		wait_event_lock_irq(conf->wait_barrier,
				    !conf->barrier ||
990
				    (atomic_read(&conf->nr_pending) &&
991
				     current->bio_list &&
992 993
				     (!bio_list_empty(&current->bio_list[0]) ||
				      !bio_list_empty(&current->bio_list[1]))),
994
				    conf->resync_lock);
995
		conf->nr_waiting--;
996 997
		if (!conf->nr_waiting)
			wake_up(&conf->wait_barrier);
L
Linus Torvalds 已提交
998
	}
999
	atomic_inc(&conf->nr_pending);
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1000 1001 1002
	spin_unlock_irq(&conf->resync_lock);
}

1003
static void allow_barrier(struct r10conf *conf)
1004
{
1005 1006 1007
	if ((atomic_dec_and_test(&conf->nr_pending)) ||
			(conf->array_freeze_pending))
		wake_up(&conf->wait_barrier);
1008 1009
}

1010
static void freeze_array(struct r10conf *conf, int extra)
1011 1012
{
	/* stop syncio and normal IO and wait for everything to
N
NeilBrown 已提交
1013
	 * go quiet.
1014
	 * We increment barrier and nr_waiting, and then
1015
	 * wait until nr_pending match nr_queued+extra
1016 1017 1018 1019
	 * This is called in the context of one normal IO request
	 * that has failed. Thus any sync request that might be pending
	 * will be blocked by nr_pending, and we need to wait for
	 * pending IO requests to complete or be queued for re-try.
1020
	 * Thus the number queued (nr_queued) plus this request (extra)
1021 1022
	 * must match the number of pending IOs (nr_pending) before
	 * we continue.
1023 1024
	 */
	spin_lock_irq(&conf->resync_lock);
1025
	conf->array_freeze_pending++;
1026 1027
	conf->barrier++;
	conf->nr_waiting++;
1028
	wait_event_lock_irq_cmd(conf->wait_barrier,
1029
				atomic_read(&conf->nr_pending) == conf->nr_queued+extra,
1030 1031
				conf->resync_lock,
				flush_pending_writes(conf));
N
NeilBrown 已提交
1032

1033
	conf->array_freeze_pending--;
1034 1035 1036
	spin_unlock_irq(&conf->resync_lock);
}

1037
static void unfreeze_array(struct r10conf *conf)
1038 1039 1040 1041 1042 1043 1044 1045 1046
{
	/* reverse the effect of the freeze */
	spin_lock_irq(&conf->resync_lock);
	conf->barrier--;
	conf->nr_waiting--;
	wake_up(&conf->wait_barrier);
	spin_unlock_irq(&conf->resync_lock);
}

1047 1048 1049 1050 1051 1052 1053 1054 1055 1056
static sector_t choose_data_offset(struct r10bio *r10_bio,
				   struct md_rdev *rdev)
{
	if (!test_bit(MD_RECOVERY_RESHAPE, &rdev->mddev->recovery) ||
	    test_bit(R10BIO_Previous, &r10_bio->state))
		return rdev->data_offset;
	else
		return rdev->new_data_offset;
}

1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070
struct raid10_plug_cb {
	struct blk_plug_cb	cb;
	struct bio_list		pending;
	int			pending_cnt;
};

static void raid10_unplug(struct blk_plug_cb *cb, bool from_schedule)
{
	struct raid10_plug_cb *plug = container_of(cb, struct raid10_plug_cb,
						   cb);
	struct mddev *mddev = plug->cb.data;
	struct r10conf *conf = mddev->private;
	struct bio *bio;

1071
	if (from_schedule || current->bio_list) {
1072 1073 1074 1075
		spin_lock_irq(&conf->device_lock);
		bio_list_merge(&conf->pending_bio_list, &plug->pending);
		conf->pending_count += plug->pending_cnt;
		spin_unlock_irq(&conf->device_lock);
1076
		wake_up(&conf->wait_barrier);
1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088
		md_wakeup_thread(mddev->thread);
		kfree(plug);
		return;
	}

	/* we aren't scheduling, so we can do the write-out directly. */
	bio = bio_list_get(&plug->pending);
	bitmap_unplug(mddev->bitmap);
	wake_up(&conf->wait_barrier);

	while (bio) { /* submit pending writes */
		struct bio *next = bio->bi_next;
1089
		struct md_rdev *rdev = (void*)bio->bi_disk;
1090
		bio->bi_next = NULL;
1091
		bio_set_dev(bio, rdev->bdev);
1092
		if (test_bit(Faulty, &rdev->flags)) {
1093
			bio_io_error(bio);
1094
		} else if (unlikely((bio_op(bio) ==  REQ_OP_DISCARD) &&
1095
				    !blk_queue_discard(bio->bi_disk->queue)))
1096
			/* Just ignore it */
1097
			bio_endio(bio);
1098 1099
		else
			generic_make_request(bio);
1100 1101 1102 1103 1104
		bio = next;
	}
	kfree(plug);
}

1105 1106
static void raid10_read_request(struct mddev *mddev, struct bio *bio,
				struct r10bio *r10_bio)
L
Linus Torvalds 已提交
1107
{
1108
	struct r10conf *conf = mddev->private;
L
Linus Torvalds 已提交
1109
	struct bio *read_bio;
1110 1111 1112 1113 1114
	const int op = bio_op(bio);
	const unsigned long do_sync = (bio->bi_opf & REQ_SYNC);
	int max_sectors;
	sector_t sectors;
	struct md_rdev *rdev;
1115 1116 1117 1118
	char b[BDEVNAME_SIZE];
	int slot = r10_bio->read_slot;
	struct md_rdev *err_rdev = NULL;
	gfp_t gfp = GFP_NOIO;
1119

1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146
	if (r10_bio->devs[slot].rdev) {
		/*
		 * This is an error retry, but we cannot
		 * safely dereference the rdev in the r10_bio,
		 * we must use the one in conf.
		 * If it has already been disconnected (unlikely)
		 * we lose the device name in error messages.
		 */
		int disk;
		/*
		 * As we are blocking raid10, it is a little safer to
		 * use __GFP_HIGH.
		 */
		gfp = GFP_NOIO | __GFP_HIGH;

		rcu_read_lock();
		disk = r10_bio->devs[slot].devnum;
		err_rdev = rcu_dereference(conf->mirrors[disk].rdev);
		if (err_rdev)
			bdevname(err_rdev->bdev, b);
		else {
			strcpy(b, "???");
			/* This never gets dereferenced */
			err_rdev = r10_bio->devs[slot].rdev;
		}
		rcu_read_unlock();
	}
1147 1148 1149 1150 1151 1152 1153
	/*
	 * Register the new request and wait if the reconstruction
	 * thread has put up a bar for new requests.
	 * Continue immediately if no resync is active currently.
	 */
	wait_barrier(conf);

1154
	sectors = r10_bio->sectors;
1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172
	while (test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery) &&
	    bio->bi_iter.bi_sector < conf->reshape_progress &&
	    bio->bi_iter.bi_sector + sectors > conf->reshape_progress) {
		/*
		 * IO spans the reshape position.  Need to wait for reshape to
		 * pass
		 */
		raid10_log(conf->mddev, "wait reshape");
		allow_barrier(conf);
		wait_event(conf->wait_barrier,
			   conf->reshape_progress <= bio->bi_iter.bi_sector ||
			   conf->reshape_progress >= bio->bi_iter.bi_sector +
			   sectors);
		wait_barrier(conf);
	}

	rdev = read_balance(conf, r10_bio, &max_sectors);
	if (!rdev) {
1173 1174 1175 1176 1177
		if (err_rdev) {
			pr_crit_ratelimited("md/raid10:%s: %s: unrecoverable I/O read error for block %llu\n",
					    mdname(mddev), b,
					    (unsigned long long)r10_bio->sector);
		}
1178 1179 1180
		raid_end_bio_io(r10_bio);
		return;
	}
1181 1182 1183 1184 1185
	if (err_rdev)
		pr_err_ratelimited("md/raid10:%s: %s: redirecting sector %llu to another mirror\n",
				   mdname(mddev),
				   bdevname(rdev->bdev, b),
				   (unsigned long long)r10_bio->sector);
1186 1187
	if (max_sectors < bio_sectors(bio)) {
		struct bio *split = bio_split(bio, max_sectors,
1188
					      gfp, conf->bio_split);
1189 1190 1191 1192 1193 1194
		bio_chain(split, bio);
		generic_make_request(bio);
		bio = split;
		r10_bio->master_bio = bio;
		r10_bio->sectors = max_sectors;
	}
1195 1196
	slot = r10_bio->read_slot;

1197
	read_bio = bio_clone_fast(bio, gfp, mddev->bio_set);
1198 1199 1200 1201 1202 1203

	r10_bio->devs[slot].bio = read_bio;
	r10_bio->devs[slot].rdev = rdev;

	read_bio->bi_iter.bi_sector = r10_bio->devs[slot].addr +
		choose_data_offset(r10_bio, rdev);
1204
	bio_set_dev(read_bio, rdev->bdev);
1205 1206 1207 1208 1209 1210 1211 1212
	read_bio->bi_end_io = raid10_end_read_request;
	bio_set_op_attrs(read_bio, op, do_sync);
	if (test_bit(FailFast, &rdev->flags) &&
	    test_bit(R10BIO_FailFast, &r10_bio->state))
	        read_bio->bi_opf |= MD_FAILFAST;
	read_bio->bi_private = r10_bio;

	if (mddev->gendisk)
1213
	        trace_block_bio_remap(read_bio->bi_disk->queue,
1214 1215
	                              read_bio, disk_devt(mddev->gendisk),
	                              r10_bio->sector);
1216
	generic_make_request(read_bio);
1217 1218 1219
	return;
}

1220 1221
static void raid10_write_one_disk(struct mddev *mddev, struct r10bio *r10_bio,
				  struct bio *bio, bool replacement,
1222
				  int n_copy)
1223
{
M
Mike Christie 已提交
1224
	const int op = bio_op(bio);
J
Jens Axboe 已提交
1225 1226
	const unsigned long do_sync = (bio->bi_opf & REQ_SYNC);
	const unsigned long do_fua = (bio->bi_opf & REQ_FUA);
1227
	unsigned long flags;
1228 1229
	struct blk_plug_cb *cb;
	struct raid10_plug_cb *plug = NULL;
1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252
	struct r10conf *conf = mddev->private;
	struct md_rdev *rdev;
	int devnum = r10_bio->devs[n_copy].devnum;
	struct bio *mbio;

	if (replacement) {
		rdev = conf->mirrors[devnum].replacement;
		if (rdev == NULL) {
			/* Replacement just got moved to main 'rdev' */
			smp_mb();
			rdev = conf->mirrors[devnum].rdev;
		}
	} else
		rdev = conf->mirrors[devnum].rdev;

	mbio = bio_clone_fast(bio, GFP_NOIO, mddev->bio_set);
	if (replacement)
		r10_bio->devs[n_copy].repl_bio = mbio;
	else
		r10_bio->devs[n_copy].bio = mbio;

	mbio->bi_iter.bi_sector	= (r10_bio->devs[n_copy].addr +
				   choose_data_offset(r10_bio, rdev));
1253
	bio_set_dev(mbio, rdev->bdev);
1254 1255 1256 1257 1258 1259 1260 1261 1262
	mbio->bi_end_io	= raid10_end_write_request;
	bio_set_op_attrs(mbio, op, do_sync | do_fua);
	if (!replacement && test_bit(FailFast,
				     &conf->mirrors[devnum].rdev->flags)
			 && enough(conf, devnum))
		mbio->bi_opf |= MD_FAILFAST;
	mbio->bi_private = r10_bio;

	if (conf->mddev->gendisk)
1263
		trace_block_bio_remap(mbio->bi_disk->queue,
1264 1265 1266
				      mbio, disk_devt(conf->mddev->gendisk),
				      r10_bio->sector);
	/* flush_pending_writes() needs access to the rdev so...*/
1267
	mbio->bi_disk = (void *)rdev;
1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279

	atomic_inc(&r10_bio->remaining);

	cb = blk_check_plugged(raid10_unplug, mddev, sizeof(*plug));
	if (cb)
		plug = container_of(cb, struct raid10_plug_cb, cb);
	else
		plug = NULL;
	if (plug) {
		bio_list_add(&plug->pending, mbio);
		plug->pending_cnt++;
	} else {
1280
		spin_lock_irqsave(&conf->device_lock, flags);
1281 1282
		bio_list_add(&conf->pending_bio_list, mbio);
		conf->pending_count++;
1283
		spin_unlock_irqrestore(&conf->device_lock, flags);
1284
		md_wakeup_thread(mddev->thread);
1285
	}
1286 1287 1288 1289 1290 1291 1292 1293
}

static void raid10_write_request(struct mddev *mddev, struct bio *bio,
				 struct r10bio *r10_bio)
{
	struct r10conf *conf = mddev->private;
	int i;
	struct md_rdev *blocked_rdev;
1294
	sector_t sectors;
1295
	int max_sectors;
L
Linus Torvalds 已提交
1296

1297 1298 1299 1300 1301 1302 1303
	/*
	 * Register the new request and wait if the reconstruction
	 * thread has put up a bar for new requests.
	 * Continue immediately if no resync is active currently.
	 */
	wait_barrier(conf);

1304
	sectors = r10_bio->sectors;
N
NeilBrown 已提交
1305
	while (test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery) &&
1306 1307
	    bio->bi_iter.bi_sector < conf->reshape_progress &&
	    bio->bi_iter.bi_sector + sectors > conf->reshape_progress) {
1308 1309 1310
		/*
		 * IO spans the reshape position.  Need to wait for reshape to
		 * pass
N
NeilBrown 已提交
1311
		 */
1312
		raid10_log(conf->mddev, "wait reshape");
N
NeilBrown 已提交
1313 1314
		allow_barrier(conf);
		wait_event(conf->wait_barrier,
1315 1316 1317
			   conf->reshape_progress <= bio->bi_iter.bi_sector ||
			   conf->reshape_progress >= bio->bi_iter.bi_sector +
			   sectors);
N
NeilBrown 已提交
1318 1319
		wait_barrier(conf);
	}
1320

N
NeilBrown 已提交
1321 1322
	if (test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery) &&
	    (mddev->reshape_backwards
1323 1324 1325 1326
	     ? (bio->bi_iter.bi_sector < conf->reshape_safe &&
		bio->bi_iter.bi_sector + sectors > conf->reshape_progress)
	     : (bio->bi_iter.bi_sector + sectors > conf->reshape_safe &&
		bio->bi_iter.bi_sector < conf->reshape_progress))) {
N
NeilBrown 已提交
1327 1328
		/* Need to update reshape_position in metadata */
		mddev->reshape_position = conf->reshape_progress;
1329 1330
		set_mask_bits(&mddev->sb_flags, 0,
			      BIT(MD_SB_CHANGE_DEVS) | BIT(MD_SB_CHANGE_PENDING));
N
NeilBrown 已提交
1331
		md_wakeup_thread(mddev->thread);
1332
		raid10_log(conf->mddev, "wait reshape metadata");
N
NeilBrown 已提交
1333
		wait_event(mddev->sb_wait,
1334
			   !test_bit(MD_SB_CHANGE_PENDING, &mddev->sb_flags));
N
NeilBrown 已提交
1335 1336 1337 1338

		conf->reshape_safe = mddev->reshape_position;
	}

1339 1340
	if (conf->pending_count >= max_queued_requests) {
		md_wakeup_thread(mddev->thread);
1341
		raid10_log(mddev, "wait queued");
1342 1343 1344
		wait_event(conf->wait_barrier,
			   conf->pending_count < max_queued_requests);
	}
1345
	/* first select target devices under rcu_lock and
L
Linus Torvalds 已提交
1346 1347
	 * inc refcount on their rdev.  Record them by setting
	 * bios[x] to bio
1348 1349 1350 1351
	 * If there are known/acknowledged bad blocks on any device
	 * on which we have seen a write error, we want to avoid
	 * writing to those blocks.  This potentially requires several
	 * writes to write around the bad blocks.  Each set of writes
1352
	 * gets its own r10_bio with a set of bios attached.
L
Linus Torvalds 已提交
1353
	 */
N
NeilBrown 已提交
1354

1355
	r10_bio->read_slot = -1; /* make sure repl_bio gets freed */
L
Linus Torvalds 已提交
1356
	raid10_find_phys(conf, r10_bio);
1357
retry_write:
1358
	blocked_rdev = NULL;
L
Linus Torvalds 已提交
1359
	rcu_read_lock();
1360 1361
	max_sectors = r10_bio->sectors;

L
Linus Torvalds 已提交
1362 1363
	for (i = 0;  i < conf->copies; i++) {
		int d = r10_bio->devs[i].devnum;
1364
		struct md_rdev *rdev = rcu_dereference(conf->mirrors[d].rdev);
1365 1366
		struct md_rdev *rrdev = rcu_dereference(
			conf->mirrors[d].replacement);
1367 1368
		if (rdev == rrdev)
			rrdev = NULL;
1369 1370 1371 1372 1373
		if (rdev && unlikely(test_bit(Blocked, &rdev->flags))) {
			atomic_inc(&rdev->nr_pending);
			blocked_rdev = rdev;
			break;
		}
1374 1375 1376 1377 1378
		if (rrdev && unlikely(test_bit(Blocked, &rrdev->flags))) {
			atomic_inc(&rrdev->nr_pending);
			blocked_rdev = rrdev;
			break;
		}
1379
		if (rdev && (test_bit(Faulty, &rdev->flags)))
1380
			rdev = NULL;
1381
		if (rrdev && (test_bit(Faulty, &rrdev->flags)))
1382 1383
			rrdev = NULL;

1384
		r10_bio->devs[i].bio = NULL;
1385
		r10_bio->devs[i].repl_bio = NULL;
1386 1387

		if (!rdev && !rrdev) {
1388
			set_bit(R10BIO_Degraded, &r10_bio->state);
1389 1390
			continue;
		}
1391
		if (rdev && test_bit(WriteErrorSeen, &rdev->flags)) {
1392 1393 1394 1395 1396
			sector_t first_bad;
			sector_t dev_sector = r10_bio->devs[i].addr;
			int bad_sectors;
			int is_bad;

1397
			is_bad = is_badblock(rdev, dev_sector, max_sectors,
1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430
					     &first_bad, &bad_sectors);
			if (is_bad < 0) {
				/* Mustn't write here until the bad block
				 * is acknowledged
				 */
				atomic_inc(&rdev->nr_pending);
				set_bit(BlockedBadBlocks, &rdev->flags);
				blocked_rdev = rdev;
				break;
			}
			if (is_bad && first_bad <= dev_sector) {
				/* Cannot write here at all */
				bad_sectors -= (dev_sector - first_bad);
				if (bad_sectors < max_sectors)
					/* Mustn't write more than bad_sectors
					 * to other devices yet
					 */
					max_sectors = bad_sectors;
				/* We don't set R10BIO_Degraded as that
				 * only applies if the disk is missing,
				 * so it might be re-added, and we want to
				 * know to recover this chunk.
				 * In this case the device is here, and the
				 * fact that this chunk is not in-sync is
				 * recorded in the bad block log.
				 */
				continue;
			}
			if (is_bad) {
				int good_sectors = first_bad - dev_sector;
				if (good_sectors < max_sectors)
					max_sectors = good_sectors;
			}
1431
		}
1432 1433 1434 1435
		if (rdev) {
			r10_bio->devs[i].bio = bio;
			atomic_inc(&rdev->nr_pending);
		}
1436 1437 1438 1439
		if (rrdev) {
			r10_bio->devs[i].repl_bio = bio;
			atomic_inc(&rrdev->nr_pending);
		}
L
Linus Torvalds 已提交
1440 1441 1442
	}
	rcu_read_unlock();

1443 1444 1445 1446 1447
	if (unlikely(blocked_rdev)) {
		/* Have to wait for this device to get unblocked, then retry */
		int j;
		int d;

1448
		for (j = 0; j < i; j++) {
1449 1450 1451 1452
			if (r10_bio->devs[j].bio) {
				d = r10_bio->devs[j].devnum;
				rdev_dec_pending(conf->mirrors[d].rdev, mddev);
			}
1453
			if (r10_bio->devs[j].repl_bio) {
1454
				struct md_rdev *rdev;
1455
				d = r10_bio->devs[j].devnum;
1456 1457 1458 1459 1460 1461 1462
				rdev = conf->mirrors[d].replacement;
				if (!rdev) {
					/* Race with remove_disk */
					smp_mb();
					rdev = conf->mirrors[d].rdev;
				}
				rdev_dec_pending(rdev, mddev);
1463 1464
			}
		}
1465
		allow_barrier(conf);
1466
		raid10_log(conf->mddev, "wait rdev %d blocked", blocked_rdev->raid_disk);
1467 1468 1469 1470 1471
		md_wait_for_blocked_rdev(blocked_rdev, mddev);
		wait_barrier(conf);
		goto retry_write;
	}

1472
	if (max_sectors < r10_bio->sectors)
1473
		r10_bio->sectors = max_sectors;
1474 1475 1476 1477 1478 1479 1480 1481

	if (r10_bio->sectors < bio_sectors(bio)) {
		struct bio *split = bio_split(bio, r10_bio->sectors,
					      GFP_NOIO, conf->bio_split);
		bio_chain(split, bio);
		generic_make_request(bio);
		bio = split;
		r10_bio->master_bio = bio;
1482 1483
	}

1484
	atomic_set(&r10_bio->remaining, 1);
1485
	bitmap_startwrite(mddev->bitmap, r10_bio->sector, r10_bio->sectors, 0);
1486

L
Linus Torvalds 已提交
1487
	for (i = 0; i < conf->copies; i++) {
1488
		if (r10_bio->devs[i].bio)
1489
			raid10_write_one_disk(mddev, r10_bio, bio, false, i);
1490
		if (r10_bio->devs[i].repl_bio)
1491
			raid10_write_one_disk(mddev, r10_bio, bio, true, i);
1492
	}
1493
	one_write_done(r10_bio);
K
Kent Overstreet 已提交
1494 1495
}

1496
static void __make_request(struct mddev *mddev, struct bio *bio, int sectors)
1497 1498 1499 1500 1501 1502 1503
{
	struct r10conf *conf = mddev->private;
	struct r10bio *r10_bio;

	r10_bio = mempool_alloc(conf->r10bio_pool, GFP_NOIO);

	r10_bio->master_bio = bio;
1504
	r10_bio->sectors = sectors;
1505 1506 1507 1508

	r10_bio->mddev = mddev;
	r10_bio->sector = bio->bi_iter.bi_sector;
	r10_bio->state = 0;
1509
	memset(r10_bio->devs, 0, sizeof(r10_bio->devs[0]) * conf->copies);
1510 1511 1512 1513 1514 1515 1516

	if (bio_data_dir(bio) == READ)
		raid10_read_request(mddev, bio, r10_bio);
	else
		raid10_write_request(mddev, bio, r10_bio);
}

1517
static bool raid10_make_request(struct mddev *mddev, struct bio *bio)
K
Kent Overstreet 已提交
1518 1519 1520 1521
{
	struct r10conf *conf = mddev->private;
	sector_t chunk_mask = (conf->geo.chunk_mask & conf->prev.chunk_mask);
	int chunk_sects = chunk_mask + 1;
1522
	int sectors = bio_sectors(bio);
K
Kent Overstreet 已提交
1523

J
Jens Axboe 已提交
1524
	if (unlikely(bio->bi_opf & REQ_PREFLUSH)) {
K
Kent Overstreet 已提交
1525
		md_flush_request(mddev, bio);
1526
		return true;
K
Kent Overstreet 已提交
1527 1528
	}

1529 1530 1531
	if (!md_write_start(mddev, bio))
		return false;

1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544
	/*
	 * If this request crosses a chunk boundary, we need to split
	 * it.
	 */
	if (unlikely((bio->bi_iter.bi_sector & chunk_mask) +
		     sectors > chunk_sects
		     && (conf->geo.near_copies < conf->geo.raid_disks
			 || conf->prev.near_copies <
			 conf->prev.raid_disks)))
		sectors = chunk_sects -
			(bio->bi_iter.bi_sector &
			 (chunk_sects - 1));
	__make_request(mddev, bio, sectors);
1545 1546 1547

	/* In case raid10d snuck in to freeze_array */
	wake_up(&conf->wait_barrier);
1548
	return true;
L
Linus Torvalds 已提交
1549 1550
}

S
Shaohua Li 已提交
1551
static void raid10_status(struct seq_file *seq, struct mddev *mddev)
L
Linus Torvalds 已提交
1552
{
1553
	struct r10conf *conf = mddev->private;
L
Linus Torvalds 已提交
1554 1555
	int i;

1556
	if (conf->geo.near_copies < conf->geo.raid_disks)
1557
		seq_printf(seq, " %dK chunks", mddev->chunk_sectors / 2);
1558 1559 1560 1561 1562
	if (conf->geo.near_copies > 1)
		seq_printf(seq, " %d near-copies", conf->geo.near_copies);
	if (conf->geo.far_copies > 1) {
		if (conf->geo.far_offset)
			seq_printf(seq, " %d offset-copies", conf->geo.far_copies);
1563
		else
1564
			seq_printf(seq, " %d far-copies", conf->geo.far_copies);
1565 1566
		if (conf->geo.far_set_size != conf->geo.raid_disks)
			seq_printf(seq, " %d devices per set", conf->geo.far_set_size);
1567
	}
1568 1569
	seq_printf(seq, " [%d/%d] [", conf->geo.raid_disks,
					conf->geo.raid_disks - mddev->degraded);
1570 1571 1572 1573 1574 1575
	rcu_read_lock();
	for (i = 0; i < conf->geo.raid_disks; i++) {
		struct md_rdev *rdev = rcu_dereference(conf->mirrors[i].rdev);
		seq_printf(seq, "%s", rdev && test_bit(In_sync, &rdev->flags) ? "U" : "_");
	}
	rcu_read_unlock();
L
Linus Torvalds 已提交
1576 1577 1578
	seq_printf(seq, "]");
}

1579 1580 1581 1582 1583
/* check if there are enough drives for
 * every block to appear on atleast one.
 * Don't consider the device numbered 'ignore'
 * as we might be about to remove it.
 */
1584
static int _enough(struct r10conf *conf, int previous, int ignore)
1585 1586
{
	int first = 0;
1587
	int has_enough = 0;
1588 1589 1590 1591 1592 1593 1594 1595
	int disks, ncopies;
	if (previous) {
		disks = conf->prev.raid_disks;
		ncopies = conf->prev.near_copies;
	} else {
		disks = conf->geo.raid_disks;
		ncopies = conf->geo.near_copies;
	}
1596

1597
	rcu_read_lock();
1598 1599 1600
	do {
		int n = conf->copies;
		int cnt = 0;
1601
		int this = first;
1602
		while (n--) {
1603 1604 1605 1606
			struct md_rdev *rdev;
			if (this != ignore &&
			    (rdev = rcu_dereference(conf->mirrors[this].rdev)) &&
			    test_bit(In_sync, &rdev->flags))
1607
				cnt++;
1608
			this = (this+1) % disks;
1609 1610
		}
		if (cnt == 0)
1611
			goto out;
1612
		first = (first + ncopies) % disks;
1613
	} while (first != 0);
1614 1615 1616 1617
	has_enough = 1;
out:
	rcu_read_unlock();
	return has_enough;
1618 1619
}

1620 1621
static int enough(struct r10conf *conf, int ignore)
{
1622 1623 1624 1625 1626 1627 1628
	/* when calling 'enough', both 'prev' and 'geo' must
	 * be stable.
	 * This is ensured if ->reconfig_mutex or ->device_lock
	 * is held.
	 */
	return _enough(conf, 0, ignore) &&
		_enough(conf, 1, ignore);
1629 1630
}

S
Shaohua Li 已提交
1631
static void raid10_error(struct mddev *mddev, struct md_rdev *rdev)
L
Linus Torvalds 已提交
1632 1633
{
	char b[BDEVNAME_SIZE];
1634
	struct r10conf *conf = mddev->private;
1635
	unsigned long flags;
L
Linus Torvalds 已提交
1636 1637 1638 1639 1640 1641 1642

	/*
	 * If it is not operational, then we have already marked it as dead
	 * else if it is the last working disks, ignore the error, let the
	 * next level up know.
	 * else mark the drive as failed
	 */
1643
	spin_lock_irqsave(&conf->device_lock, flags);
1644
	if (test_bit(In_sync, &rdev->flags)
1645
	    && !enough(conf, rdev->raid_disk)) {
L
Linus Torvalds 已提交
1646 1647 1648
		/*
		 * Don't fail the drive, just return an IO error.
		 */
1649
		spin_unlock_irqrestore(&conf->device_lock, flags);
L
Linus Torvalds 已提交
1650
		return;
1651
	}
1652
	if (test_and_clear_bit(In_sync, &rdev->flags))
L
Linus Torvalds 已提交
1653
		mddev->degraded++;
1654 1655 1656 1657
	/*
	 * If recovery is running, make sure it aborts.
	 */
	set_bit(MD_RECOVERY_INTR, &mddev->recovery);
1658
	set_bit(Blocked, &rdev->flags);
1659
	set_bit(Faulty, &rdev->flags);
1660 1661
	set_mask_bits(&mddev->sb_flags, 0,
		      BIT(MD_SB_CHANGE_DEVS) | BIT(MD_SB_CHANGE_PENDING));
1662
	spin_unlock_irqrestore(&conf->device_lock, flags);
N
NeilBrown 已提交
1663 1664 1665 1666
	pr_crit("md/raid10:%s: Disk failure on %s, disabling device.\n"
		"md/raid10:%s: Operation continuing on %d devices.\n",
		mdname(mddev), bdevname(rdev->bdev, b),
		mdname(mddev), conf->geo.raid_disks - mddev->degraded);
L
Linus Torvalds 已提交
1667 1668
}

1669
static void print_conf(struct r10conf *conf)
L
Linus Torvalds 已提交
1670 1671
{
	int i;
1672
	struct md_rdev *rdev;
L
Linus Torvalds 已提交
1673

N
NeilBrown 已提交
1674
	pr_debug("RAID10 conf printout:\n");
L
Linus Torvalds 已提交
1675
	if (!conf) {
N
NeilBrown 已提交
1676
		pr_debug("(!conf)\n");
L
Linus Torvalds 已提交
1677 1678
		return;
	}
N
NeilBrown 已提交
1679 1680
	pr_debug(" --- wd:%d rd:%d\n", conf->geo.raid_disks - conf->mddev->degraded,
		 conf->geo.raid_disks);
L
Linus Torvalds 已提交
1681

1682 1683
	/* This is only called with ->reconfix_mutex held, so
	 * rcu protection of rdev is not needed */
1684
	for (i = 0; i < conf->geo.raid_disks; i++) {
L
Linus Torvalds 已提交
1685
		char b[BDEVNAME_SIZE];
1686 1687
		rdev = conf->mirrors[i].rdev;
		if (rdev)
N
NeilBrown 已提交
1688 1689 1690 1691
			pr_debug(" disk %d, wo:%d, o:%d, dev:%s\n",
				 i, !test_bit(In_sync, &rdev->flags),
				 !test_bit(Faulty, &rdev->flags),
				 bdevname(rdev->bdev,b));
L
Linus Torvalds 已提交
1692 1693 1694
	}
}

1695
static void close_sync(struct r10conf *conf)
L
Linus Torvalds 已提交
1696
{
1697 1698
	wait_barrier(conf);
	allow_barrier(conf);
L
Linus Torvalds 已提交
1699 1700 1701 1702 1703

	mempool_destroy(conf->r10buf_pool);
	conf->r10buf_pool = NULL;
}

1704
static int raid10_spare_active(struct mddev *mddev)
L
Linus Torvalds 已提交
1705 1706
{
	int i;
1707
	struct r10conf *conf = mddev->private;
1708
	struct raid10_info *tmp;
1709 1710
	int count = 0;
	unsigned long flags;
L
Linus Torvalds 已提交
1711 1712 1713 1714 1715

	/*
	 * Find all non-in_sync disks within the RAID10 configuration
	 * and mark them in_sync
	 */
1716
	for (i = 0; i < conf->geo.raid_disks; i++) {
L
Linus Torvalds 已提交
1717
		tmp = conf->mirrors + i;
1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736
		if (tmp->replacement
		    && tmp->replacement->recovery_offset == MaxSector
		    && !test_bit(Faulty, &tmp->replacement->flags)
		    && !test_and_set_bit(In_sync, &tmp->replacement->flags)) {
			/* Replacement has just become active */
			if (!tmp->rdev
			    || !test_and_clear_bit(In_sync, &tmp->rdev->flags))
				count++;
			if (tmp->rdev) {
				/* Replaced device not technically faulty,
				 * but we need to be sure it gets removed
				 * and never re-added.
				 */
				set_bit(Faulty, &tmp->rdev->flags);
				sysfs_notify_dirent_safe(
					tmp->rdev->sysfs_state);
			}
			sysfs_notify_dirent_safe(tmp->replacement->sysfs_state);
		} else if (tmp->rdev
1737
			   && tmp->rdev->recovery_offset == MaxSector
1738 1739
			   && !test_bit(Faulty, &tmp->rdev->flags)
			   && !test_and_set_bit(In_sync, &tmp->rdev->flags)) {
1740
			count++;
1741
			sysfs_notify_dirent_safe(tmp->rdev->sysfs_state);
L
Linus Torvalds 已提交
1742 1743
		}
	}
1744 1745 1746
	spin_lock_irqsave(&conf->device_lock, flags);
	mddev->degraded -= count;
	spin_unlock_irqrestore(&conf->device_lock, flags);
L
Linus Torvalds 已提交
1747 1748

	print_conf(conf);
1749
	return count;
L
Linus Torvalds 已提交
1750 1751
}

1752
static int raid10_add_disk(struct mddev *mddev, struct md_rdev *rdev)
L
Linus Torvalds 已提交
1753
{
1754
	struct r10conf *conf = mddev->private;
1755
	int err = -EEXIST;
L
Linus Torvalds 已提交
1756
	int mirror;
1757
	int first = 0;
1758
	int last = conf->geo.raid_disks - 1;
L
Linus Torvalds 已提交
1759 1760 1761 1762 1763

	if (mddev->recovery_cp < MaxSector)
		/* only hot-add to in-sync arrays, as recovery is
		 * very different from resync
		 */
1764
		return -EBUSY;
1765
	if (rdev->saved_raid_disk < 0 && !_enough(conf, 1, -1))
1766
		return -EINVAL;
L
Linus Torvalds 已提交
1767

1768 1769 1770
	if (md_integrity_add_rdev(rdev, mddev))
		return -ENXIO;

N
NeilBrown 已提交
1771
	if (rdev->raid_disk >= 0)
1772
		first = last = rdev->raid_disk;
L
Linus Torvalds 已提交
1773

1774
	if (rdev->saved_raid_disk >= first &&
1775 1776 1777
	    conf->mirrors[rdev->saved_raid_disk].rdev == NULL)
		mirror = rdev->saved_raid_disk;
	else
1778
		mirror = first;
1779
	for ( ; mirror <= last ; mirror++) {
1780
		struct raid10_info *p = &conf->mirrors[mirror];
1781 1782
		if (p->recovery_disabled == mddev->recovery_disabled)
			continue;
1783 1784 1785 1786 1787 1788 1789 1790
		if (p->rdev) {
			if (!test_bit(WantReplacement, &p->rdev->flags) ||
			    p->replacement != NULL)
				continue;
			clear_bit(In_sync, &rdev->flags);
			set_bit(Replacement, &rdev->flags);
			rdev->raid_disk = mirror;
			err = 0;
1791 1792 1793
			if (mddev->gendisk)
				disk_stack_limits(mddev->gendisk, rdev->bdev,
						  rdev->data_offset << 9);
1794 1795 1796 1797
			conf->fullsync = 1;
			rcu_assign_pointer(p->replacement, rdev);
			break;
		}
L
Linus Torvalds 已提交
1798

1799 1800 1801
		if (mddev->gendisk)
			disk_stack_limits(mddev->gendisk, rdev->bdev,
					  rdev->data_offset << 9);
L
Linus Torvalds 已提交
1802

1803
		p->head_position = 0;
1804
		p->recovery_disabled = mddev->recovery_disabled - 1;
1805 1806 1807 1808 1809 1810 1811
		rdev->raid_disk = mirror;
		err = 0;
		if (rdev->saved_raid_disk != mirror)
			conf->fullsync = 1;
		rcu_assign_pointer(p->rdev, rdev);
		break;
	}
1812
	if (mddev->queue && blk_queue_discard(bdev_get_queue(rdev->bdev)))
S
Shaohua Li 已提交
1813 1814
		queue_flag_set_unlocked(QUEUE_FLAG_DISCARD, mddev->queue);

L
Linus Torvalds 已提交
1815
	print_conf(conf);
1816
	return err;
L
Linus Torvalds 已提交
1817 1818
}

1819
static int raid10_remove_disk(struct mddev *mddev, struct md_rdev *rdev)
L
Linus Torvalds 已提交
1820
{
1821
	struct r10conf *conf = mddev->private;
L
Linus Torvalds 已提交
1822
	int err = 0;
1823
	int number = rdev->raid_disk;
1824
	struct md_rdev **rdevp;
1825
	struct raid10_info *p = conf->mirrors + number;
L
Linus Torvalds 已提交
1826 1827

	print_conf(conf);
1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839
	if (rdev == p->rdev)
		rdevp = &p->rdev;
	else if (rdev == p->replacement)
		rdevp = &p->replacement;
	else
		return 0;

	if (test_bit(In_sync, &rdev->flags) ||
	    atomic_read(&rdev->nr_pending)) {
		err = -EBUSY;
		goto abort;
	}
1840
	/* Only remove non-faulty devices if recovery
1841 1842 1843 1844
	 * is not possible.
	 */
	if (!test_bit(Faulty, &rdev->flags) &&
	    mddev->recovery_disabled != p->recovery_disabled &&
1845
	    (!p->replacement || p->replacement == rdev) &&
1846
	    number < conf->geo.raid_disks &&
1847 1848 1849
	    enough(conf, -1)) {
		err = -EBUSY;
		goto abort;
L
Linus Torvalds 已提交
1850
	}
1851
	*rdevp = NULL;
1852 1853 1854 1855 1856 1857 1858 1859 1860 1861
	if (!test_bit(RemoveSynchronized, &rdev->flags)) {
		synchronize_rcu();
		if (atomic_read(&rdev->nr_pending)) {
			/* lost the race, try later */
			err = -EBUSY;
			*rdevp = rdev;
			goto abort;
		}
	}
	if (p->replacement) {
1862 1863 1864 1865 1866 1867 1868
		/* We must have just cleared 'rdev' */
		p->rdev = p->replacement;
		clear_bit(Replacement, &p->replacement->flags);
		smp_mb(); /* Make sure other CPUs may see both as identical
			   * but will never see neither -- if they are careful.
			   */
		p->replacement = NULL;
1869
	}
1870

1871
	clear_bit(WantReplacement, &rdev->flags);
1872 1873
	err = md_integrity_register(mddev);

L
Linus Torvalds 已提交
1874 1875 1876 1877 1878 1879
abort:

	print_conf(conf);
	return err;
}

1880
static void __end_sync_read(struct r10bio *r10_bio, struct bio *bio, int d)
L
Linus Torvalds 已提交
1881
{
1882
	struct r10conf *conf = r10_bio->mddev->private;
1883

1884
	if (!bio->bi_status)
1885
		set_bit(R10BIO_Uptodate, &r10_bio->state);
1886 1887 1888 1889
	else
		/* The write handler will notice the lack of
		 * R10BIO_Uptodate and record any errors etc
		 */
1890 1891
		atomic_add(r10_bio->sectors,
			   &conf->mirrors[d].rdev->corrected_errors);
L
Linus Torvalds 已提交
1892 1893 1894 1895

	/* for reconstruct, we always reschedule after a read.
	 * for resync, only after all reads
	 */
1896
	rdev_dec_pending(conf->mirrors[d].rdev, conf->mddev);
L
Linus Torvalds 已提交
1897 1898 1899 1900 1901 1902 1903 1904 1905
	if (test_bit(R10BIO_IsRecover, &r10_bio->state) ||
	    atomic_dec_and_test(&r10_bio->remaining)) {
		/* we have read all the blocks,
		 * do the comparison in process context in raid10d
		 */
		reschedule_retry(r10_bio);
	}
}

1906 1907
static void end_sync_read(struct bio *bio)
{
1908
	struct r10bio *r10_bio = get_resync_r10bio(bio);
1909 1910 1911 1912 1913 1914 1915 1916
	struct r10conf *conf = r10_bio->mddev->private;
	int d = find_bio_disk(conf, r10_bio, bio, NULL, NULL);

	__end_sync_read(r10_bio, bio, d);
}

static void end_reshape_read(struct bio *bio)
{
1917
	/* reshape read bio isn't allocated from r10buf_pool */
1918 1919 1920 1921 1922
	struct r10bio *r10_bio = bio->bi_private;

	__end_sync_read(r10_bio, bio, r10_bio->read_slot);
}

1923
static void end_sync_request(struct r10bio *r10_bio)
L
Linus Torvalds 已提交
1924
{
1925
	struct mddev *mddev = r10_bio->mddev;
1926

L
Linus Torvalds 已提交
1927 1928 1929
	while (atomic_dec_and_test(&r10_bio->remaining)) {
		if (r10_bio->master_bio == NULL) {
			/* the primary of several recovery bios */
1930
			sector_t s = r10_bio->sectors;
1931 1932
			if (test_bit(R10BIO_MadeGood, &r10_bio->state) ||
			    test_bit(R10BIO_WriteError, &r10_bio->state))
1933 1934 1935
				reschedule_retry(r10_bio);
			else
				put_buf(r10_bio);
1936
			md_done_sync(mddev, s, 1);
L
Linus Torvalds 已提交
1937 1938
			break;
		} else {
1939
			struct r10bio *r10_bio2 = (struct r10bio *)r10_bio->master_bio;
1940 1941
			if (test_bit(R10BIO_MadeGood, &r10_bio->state) ||
			    test_bit(R10BIO_WriteError, &r10_bio->state))
1942 1943 1944
				reschedule_retry(r10_bio);
			else
				put_buf(r10_bio);
L
Linus Torvalds 已提交
1945 1946 1947 1948 1949
			r10_bio = r10_bio2;
		}
	}
}

1950
static void end_sync_write(struct bio *bio)
1951
{
1952
	struct r10bio *r10_bio = get_resync_r10bio(bio);
1953
	struct mddev *mddev = r10_bio->mddev;
1954
	struct r10conf *conf = mddev->private;
1955 1956 1957 1958
	int d;
	sector_t first_bad;
	int bad_sectors;
	int slot;
1959
	int repl;
1960
	struct md_rdev *rdev = NULL;
1961

1962 1963 1964
	d = find_bio_disk(conf, r10_bio, bio, &slot, &repl);
	if (repl)
		rdev = conf->mirrors[d].replacement;
1965
	else
1966
		rdev = conf->mirrors[d].rdev;
1967

1968
	if (bio->bi_status) {
1969 1970 1971 1972
		if (repl)
			md_error(mddev, rdev);
		else {
			set_bit(WriteErrorSeen, &rdev->flags);
1973 1974 1975
			if (!test_and_set_bit(WantReplacement, &rdev->flags))
				set_bit(MD_RECOVERY_NEEDED,
					&rdev->mddev->recovery);
1976 1977 1978
			set_bit(R10BIO_WriteError, &r10_bio->state);
		}
	} else if (is_badblock(rdev,
1979 1980 1981 1982 1983
			     r10_bio->devs[slot].addr,
			     r10_bio->sectors,
			     &first_bad, &bad_sectors))
		set_bit(R10BIO_MadeGood, &r10_bio->state);

1984
	rdev_dec_pending(rdev, mddev);
1985 1986 1987 1988

	end_sync_request(r10_bio);
}

L
Linus Torvalds 已提交
1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004
/*
 * Note: sync and recover and handled very differently for raid10
 * This code is for resync.
 * For resync, we read through virtual addresses and read all blocks.
 * If there is any error, we schedule a write.  The lowest numbered
 * drive is authoritative.
 * However requests come for physical address, so we need to map.
 * For every physical address there are raid_disks/copies virtual addresses,
 * which is always are least one, but is not necessarly an integer.
 * This means that a physical address can span multiple chunks, so we may
 * have to submit multiple io requests for a single sync request.
 */
/*
 * We check if all blocks are in-sync and only write to blocks that
 * aren't in sync
 */
2005
static void sync_request_write(struct mddev *mddev, struct r10bio *r10_bio)
L
Linus Torvalds 已提交
2006
{
2007
	struct r10conf *conf = mddev->private;
L
Linus Torvalds 已提交
2008 2009
	int i, first;
	struct bio *tbio, *fbio;
2010
	int vcnt;
2011
	struct page **tpages, **fpages;
L
Linus Torvalds 已提交
2012 2013 2014 2015 2016

	atomic_set(&r10_bio->remaining, 1);

	/* find the first device with a block */
	for (i=0; i<conf->copies; i++)
2017
		if (!r10_bio->devs[i].bio->bi_status)
L
Linus Torvalds 已提交
2018 2019 2020 2021 2022 2023 2024
			break;

	if (i == conf->copies)
		goto done;

	first = i;
	fbio = r10_bio->devs[i].bio;
2025 2026
	fbio->bi_iter.bi_size = r10_bio->sectors << 9;
	fbio->bi_iter.bi_idx = 0;
2027
	fpages = get_resync_pages(fbio)->pages;
L
Linus Torvalds 已提交
2028

2029
	vcnt = (r10_bio->sectors + (PAGE_SIZE >> 9) - 1) >> (PAGE_SHIFT - 9);
L
Linus Torvalds 已提交
2030
	/* now find blocks with errors */
2031 2032
	for (i=0 ; i < conf->copies ; i++) {
		int  j, d;
2033
		struct md_rdev *rdev;
2034
		struct resync_pages *rp;
L
Linus Torvalds 已提交
2035 2036

		tbio = r10_bio->devs[i].bio;
2037 2038 2039 2040

		if (tbio->bi_end_io != end_sync_read)
			continue;
		if (i == first)
L
Linus Torvalds 已提交
2041
			continue;
2042 2043

		tpages = get_resync_pages(tbio)->pages;
2044 2045
		d = r10_bio->devs[i].devnum;
		rdev = conf->mirrors[d].rdev;
2046
		if (!r10_bio->devs[i].bio->bi_status) {
2047 2048 2049 2050
			/* We know that the bi_io_vec layout is the same for
			 * both 'first' and 'i', so we just compare them.
			 * All vec entries are PAGE_SIZE;
			 */
2051 2052 2053 2054 2055
			int sectors = r10_bio->sectors;
			for (j = 0; j < vcnt; j++) {
				int len = PAGE_SIZE;
				if (sectors < (len / 512))
					len = sectors * 512;
2056 2057
				if (memcmp(page_address(fpages[j]),
					   page_address(tpages[j]),
2058
					   len))
2059
					break;
2060 2061
				sectors -= len/512;
			}
2062 2063
			if (j == vcnt)
				continue;
2064
			atomic64_add(r10_bio->sectors, &mddev->resync_mismatches);
2065 2066 2067
			if (test_bit(MD_RECOVERY_CHECK, &mddev->recovery))
				/* Don't fix anything. */
				continue;
2068 2069 2070 2071
		} else if (test_bit(FailFast, &rdev->flags)) {
			/* Just give up on this device */
			md_error(rdev->mddev, rdev);
			continue;
2072
		}
2073 2074
		/* Ok, we need to write this bio, either to correct an
		 * inconsistency or to correct an unreadable block.
L
Linus Torvalds 已提交
2075 2076 2077
		 * First we need to fixup bv_offset, bv_len and
		 * bi_vecs, as the read request might have corrupted these
		 */
2078
		rp = get_resync_pages(tbio);
K
Kent Overstreet 已提交
2079 2080
		bio_reset(tbio);

2081 2082
		md_bio_reset_resync_pages(tbio, rp, fbio->bi_iter.bi_size);

2083 2084
		rp->raid_bio = r10_bio;
		tbio->bi_private = rp;
2085
		tbio->bi_iter.bi_sector = r10_bio->devs[i].addr;
L
Linus Torvalds 已提交
2086
		tbio->bi_end_io = end_sync_write;
M
Mike Christie 已提交
2087
		bio_set_op_attrs(tbio, REQ_OP_WRITE, 0);
L
Linus Torvalds 已提交
2088

2089 2090
		bio_copy_data(tbio, fbio);

L
Linus Torvalds 已提交
2091 2092
		atomic_inc(&conf->mirrors[d].rdev->nr_pending);
		atomic_inc(&r10_bio->remaining);
2093
		md_sync_acct(conf->mirrors[d].rdev->bdev, bio_sectors(tbio));
L
Linus Torvalds 已提交
2094

2095 2096
		if (test_bit(FailFast, &conf->mirrors[d].rdev->flags))
			tbio->bi_opf |= MD_FAILFAST;
2097
		tbio->bi_iter.bi_sector += conf->mirrors[d].rdev->data_offset;
2098
		bio_set_dev(tbio, conf->mirrors[d].rdev->bdev);
L
Linus Torvalds 已提交
2099 2100 2101
		generic_make_request(tbio);
	}

2102 2103 2104 2105
	/* Now write out to any replacement devices
	 * that are active
	 */
	for (i = 0; i < conf->copies; i++) {
2106
		int d;
2107 2108 2109 2110 2111 2112

		tbio = r10_bio->devs[i].repl_bio;
		if (!tbio || !tbio->bi_end_io)
			continue;
		if (r10_bio->devs[i].bio->bi_end_io != end_sync_write
		    && r10_bio->devs[i].bio != fbio)
2113
			bio_copy_data(tbio, fbio);
2114 2115 2116
		d = r10_bio->devs[i].devnum;
		atomic_inc(&r10_bio->remaining);
		md_sync_acct(conf->mirrors[d].replacement->bdev,
2117
			     bio_sectors(tbio));
2118 2119 2120
		generic_make_request(tbio);
	}

L
Linus Torvalds 已提交
2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136 2137
done:
	if (atomic_dec_and_test(&r10_bio->remaining)) {
		md_done_sync(mddev, r10_bio->sectors, 1);
		put_buf(r10_bio);
	}
}

/*
 * Now for the recovery code.
 * Recovery happens across physical sectors.
 * We recover all non-is_sync drives by finding the virtual address of
 * each, and then choose a working drive that also has that virt address.
 * There is a separate r10_bio for each non-in_sync drive.
 * Only the first two slots are in use. The first for reading,
 * The second for writing.
 *
 */
2138
static void fix_recovery_read_error(struct r10bio *r10_bio)
2139 2140 2141 2142 2143 2144 2145 2146
{
	/* We got a read error during recovery.
	 * We repeat the read in smaller page-sized sections.
	 * If a read succeeds, write it to the new device or record
	 * a bad block if we cannot.
	 * If a read fails, record a bad block on both old and
	 * new devices.
	 */
2147
	struct mddev *mddev = r10_bio->mddev;
2148
	struct r10conf *conf = mddev->private;
2149 2150 2151 2152 2153 2154
	struct bio *bio = r10_bio->devs[0].bio;
	sector_t sect = 0;
	int sectors = r10_bio->sectors;
	int idx = 0;
	int dr = r10_bio->devs[0].devnum;
	int dw = r10_bio->devs[1].devnum;
2155
	struct page **pages = get_resync_pages(bio)->pages;
2156 2157 2158

	while (sectors) {
		int s = sectors;
2159
		struct md_rdev *rdev;
2160 2161 2162 2163 2164 2165 2166 2167 2168 2169 2170
		sector_t addr;
		int ok;

		if (s > (PAGE_SIZE>>9))
			s = PAGE_SIZE >> 9;

		rdev = conf->mirrors[dr].rdev;
		addr = r10_bio->devs[0].addr + sect,
		ok = sync_page_io(rdev,
				  addr,
				  s << 9,
2171
				  pages[idx],
M
Mike Christie 已提交
2172
				  REQ_OP_READ, 0, false);
2173 2174 2175 2176 2177 2178
		if (ok) {
			rdev = conf->mirrors[dw].rdev;
			addr = r10_bio->devs[1].addr + sect;
			ok = sync_page_io(rdev,
					  addr,
					  s << 9,
2179
					  pages[idx],
M
Mike Christie 已提交
2180
					  REQ_OP_WRITE, 0, false);
2181
			if (!ok) {
2182
				set_bit(WriteErrorSeen, &rdev->flags);
2183 2184 2185 2186 2187
				if (!test_and_set_bit(WantReplacement,
						      &rdev->flags))
					set_bit(MD_RECOVERY_NEEDED,
						&rdev->mddev->recovery);
			}
2188 2189 2190 2191 2192 2193 2194 2195 2196 2197
		}
		if (!ok) {
			/* We don't worry if we cannot set a bad block -
			 * it really is bad so there is no loss in not
			 * recording it yet
			 */
			rdev_set_badblocks(rdev, addr, s, 0);

			if (rdev != conf->mirrors[dw].rdev) {
				/* need bad block on destination too */
2198
				struct md_rdev *rdev2 = conf->mirrors[dw].rdev;
2199 2200 2201 2202
				addr = r10_bio->devs[1].addr + sect;
				ok = rdev_set_badblocks(rdev2, addr, s, 0);
				if (!ok) {
					/* just abort the recovery */
N
NeilBrown 已提交
2203 2204
					pr_notice("md/raid10:%s: recovery aborted due to read error\n",
						  mdname(mddev));
2205 2206 2207 2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219

					conf->mirrors[dw].recovery_disabled
						= mddev->recovery_disabled;
					set_bit(MD_RECOVERY_INTR,
						&mddev->recovery);
					break;
				}
			}
		}

		sectors -= s;
		sect += s;
		idx++;
	}
}
L
Linus Torvalds 已提交
2220

2221
static void recovery_request_write(struct mddev *mddev, struct r10bio *r10_bio)
L
Linus Torvalds 已提交
2222
{
2223
	struct r10conf *conf = mddev->private;
2224
	int d;
2225
	struct bio *wbio, *wbio2;
L
Linus Torvalds 已提交
2226

2227 2228 2229 2230 2231 2232
	if (!test_bit(R10BIO_Uptodate, &r10_bio->state)) {
		fix_recovery_read_error(r10_bio);
		end_sync_request(r10_bio);
		return;
	}

2233 2234
	/*
	 * share the pages with the first bio
L
Linus Torvalds 已提交
2235 2236 2237
	 * and submit the write request
	 */
	d = r10_bio->devs[1].devnum;
2238 2239
	wbio = r10_bio->devs[1].bio;
	wbio2 = r10_bio->devs[1].repl_bio;
2240 2241 2242 2243 2244 2245
	/* Need to test wbio2->bi_end_io before we call
	 * generic_make_request as if the former is NULL,
	 * the latter is free to free wbio2.
	 */
	if (wbio2 && !wbio2->bi_end_io)
		wbio2 = NULL;
2246 2247
	if (wbio->bi_end_io) {
		atomic_inc(&conf->mirrors[d].rdev->nr_pending);
2248
		md_sync_acct(conf->mirrors[d].rdev->bdev, bio_sectors(wbio));
2249 2250
		generic_make_request(wbio);
	}
2251
	if (wbio2) {
2252 2253
		atomic_inc(&conf->mirrors[d].replacement->nr_pending);
		md_sync_acct(conf->mirrors[d].replacement->bdev,
2254
			     bio_sectors(wbio2));
2255 2256
		generic_make_request(wbio2);
	}
L
Linus Torvalds 已提交
2257 2258
}

2259 2260 2261 2262 2263 2264
/*
 * Used by fix_read_error() to decay the per rdev read_errors.
 * We halve the read error count for every hour that has elapsed
 * since the last recorded read error.
 *
 */
2265
static void check_decay_read_errors(struct mddev *mddev, struct md_rdev *rdev)
2266
{
2267
	long cur_time_mon;
2268 2269 2270
	unsigned long hours_since_last;
	unsigned int read_errors = atomic_read(&rdev->read_errors);

2271
	cur_time_mon = ktime_get_seconds();
2272

2273
	if (rdev->last_read_error == 0) {
2274 2275 2276 2277 2278
		/* first time we've seen a read error */
		rdev->last_read_error = cur_time_mon;
		return;
	}

2279 2280
	hours_since_last = (long)(cur_time_mon -
			    rdev->last_read_error) / 3600;
2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294

	rdev->last_read_error = cur_time_mon;

	/*
	 * if hours_since_last is > the number of bits in read_errors
	 * just set read errors to 0. We do this to avoid
	 * overflowing the shift of read_errors by hours_since_last.
	 */
	if (hours_since_last >= 8 * sizeof(read_errors))
		atomic_set(&rdev->read_errors, 0);
	else
		atomic_set(&rdev->read_errors, read_errors >> hours_since_last);
}

2295
static int r10_sync_page_io(struct md_rdev *rdev, sector_t sector,
2296 2297 2298 2299 2300 2301 2302 2303
			    int sectors, struct page *page, int rw)
{
	sector_t first_bad;
	int bad_sectors;

	if (is_badblock(rdev, sector, sectors, &first_bad, &bad_sectors)
	    && (rw == READ || test_bit(WriteErrorSeen, &rdev->flags)))
		return -1;
M
Mike Christie 已提交
2304
	if (sync_page_io(rdev, sector, sectors << 9, page, rw, 0, false))
2305 2306
		/* success */
		return 1;
2307
	if (rw == WRITE) {
2308
		set_bit(WriteErrorSeen, &rdev->flags);
2309 2310 2311 2312
		if (!test_and_set_bit(WantReplacement, &rdev->flags))
			set_bit(MD_RECOVERY_NEEDED,
				&rdev->mddev->recovery);
	}
2313 2314 2315 2316 2317 2318
	/* need to record an error - either for the block or the device */
	if (!rdev_set_badblocks(rdev, sector, sectors, 0))
		md_error(rdev->mddev, rdev);
	return 0;
}

L
Linus Torvalds 已提交
2319 2320 2321 2322 2323
/*
 * This is a kernel thread which:
 *
 *	1.	Retries failed read operations on working mirrors.
 *	2.	Updates the raid superblock when problems encounter.
2324
 *	3.	Performs writes following reads for array synchronising.
L
Linus Torvalds 已提交
2325 2326
 */

2327
static void fix_read_error(struct r10conf *conf, struct mddev *mddev, struct r10bio *r10_bio)
2328 2329 2330
{
	int sect = 0; /* Offset from r10_bio->sector */
	int sectors = r10_bio->sectors;
2331
	struct md_rdev*rdev;
2332
	int max_read_errors = atomic_read(&mddev->max_corr_read_errors);
2333
	int d = r10_bio->devs[r10_bio->read_slot].devnum;
2334

2335 2336 2337 2338
	/* still own a reference to this rdev, so it cannot
	 * have been cleared recently.
	 */
	rdev = conf->mirrors[d].rdev;
2339

2340 2341 2342 2343
	if (test_bit(Faulty, &rdev->flags))
		/* drive has already been failed, just ignore any
		   more fix_read_error() attempts */
		return;
2344

2345 2346 2347 2348 2349
	check_decay_read_errors(mddev, rdev);
	atomic_inc(&rdev->read_errors);
	if (atomic_read(&rdev->read_errors) > max_read_errors) {
		char b[BDEVNAME_SIZE];
		bdevname(rdev->bdev, b);
2350

N
NeilBrown 已提交
2351 2352 2353 2354 2355
		pr_notice("md/raid10:%s: %s: Raid device exceeded read_error threshold [cur %d:max %d]\n",
			  mdname(mddev), b,
			  atomic_read(&rdev->read_errors), max_read_errors);
		pr_notice("md/raid10:%s: %s: Failing raid device\n",
			  mdname(mddev), b);
2356
		md_error(mddev, rdev);
2357
		r10_bio->devs[r10_bio->read_slot].bio = IO_BLOCKED;
2358
		return;
2359 2360
	}

2361 2362 2363 2364 2365 2366 2367 2368 2369 2370 2371
	while(sectors) {
		int s = sectors;
		int sl = r10_bio->read_slot;
		int success = 0;
		int start;

		if (s > (PAGE_SIZE>>9))
			s = PAGE_SIZE >> 9;

		rcu_read_lock();
		do {
2372 2373 2374
			sector_t first_bad;
			int bad_sectors;

2375
			d = r10_bio->devs[sl].devnum;
2376 2377
			rdev = rcu_dereference(conf->mirrors[d].rdev);
			if (rdev &&
2378
			    test_bit(In_sync, &rdev->flags) &&
2379
			    !test_bit(Faulty, &rdev->flags) &&
2380 2381
			    is_badblock(rdev, r10_bio->devs[sl].addr + sect, s,
					&first_bad, &bad_sectors) == 0) {
2382 2383
				atomic_inc(&rdev->nr_pending);
				rcu_read_unlock();
2384
				success = sync_page_io(rdev,
2385
						       r10_bio->devs[sl].addr +
J
Jonathan Brassow 已提交
2386
						       sect,
2387
						       s<<9,
M
Mike Christie 已提交
2388 2389
						       conf->tmppage,
						       REQ_OP_READ, 0, false);
2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400 2401
				rdev_dec_pending(rdev, mddev);
				rcu_read_lock();
				if (success)
					break;
			}
			sl++;
			if (sl == conf->copies)
				sl = 0;
		} while (!success && sl != r10_bio->read_slot);
		rcu_read_unlock();

		if (!success) {
2402 2403 2404 2405
			/* Cannot read from anywhere, just mark the block
			 * as bad on the first device to discourage future
			 * reads.
			 */
2406
			int dn = r10_bio->devs[r10_bio->read_slot].devnum;
2407 2408 2409 2410 2411 2412
			rdev = conf->mirrors[dn].rdev;

			if (!rdev_set_badblocks(
				    rdev,
				    r10_bio->devs[r10_bio->read_slot].addr
				    + sect,
2413
				    s, 0)) {
2414
				md_error(mddev, rdev);
2415 2416 2417
				r10_bio->devs[r10_bio->read_slot].bio
					= IO_BLOCKED;
			}
2418 2419 2420 2421 2422 2423 2424
			break;
		}

		start = sl;
		/* write it back and re-read */
		rcu_read_lock();
		while (sl != r10_bio->read_slot) {
2425
			char b[BDEVNAME_SIZE];
2426

2427 2428 2429 2430 2431
			if (sl==0)
				sl = conf->copies;
			sl--;
			d = r10_bio->devs[sl].devnum;
			rdev = rcu_dereference(conf->mirrors[d].rdev);
2432
			if (!rdev ||
2433
			    test_bit(Faulty, &rdev->flags) ||
2434 2435 2436 2437 2438
			    !test_bit(In_sync, &rdev->flags))
				continue;

			atomic_inc(&rdev->nr_pending);
			rcu_read_unlock();
2439 2440 2441
			if (r10_sync_page_io(rdev,
					     r10_bio->devs[sl].addr +
					     sect,
2442
					     s, conf->tmppage, WRITE)
2443 2444
			    == 0) {
				/* Well, this device is dead */
N
NeilBrown 已提交
2445 2446 2447 2448 2449 2450 2451 2452 2453 2454
				pr_notice("md/raid10:%s: read correction write failed (%d sectors at %llu on %s)\n",
					  mdname(mddev), s,
					  (unsigned long long)(
						  sect +
						  choose_data_offset(r10_bio,
								     rdev)),
					  bdevname(rdev->bdev, b));
				pr_notice("md/raid10:%s: %s: failing drive\n",
					  mdname(mddev),
					  bdevname(rdev->bdev, b));
2455
			}
2456 2457
			rdev_dec_pending(rdev, mddev);
			rcu_read_lock();
2458 2459 2460
		}
		sl = start;
		while (sl != r10_bio->read_slot) {
2461
			char b[BDEVNAME_SIZE];
2462

2463 2464 2465 2466 2467
			if (sl==0)
				sl = conf->copies;
			sl--;
			d = r10_bio->devs[sl].devnum;
			rdev = rcu_dereference(conf->mirrors[d].rdev);
2468
			if (!rdev ||
2469
			    test_bit(Faulty, &rdev->flags) ||
2470 2471
			    !test_bit(In_sync, &rdev->flags))
				continue;
2472

2473 2474
			atomic_inc(&rdev->nr_pending);
			rcu_read_unlock();
2475 2476 2477
			switch (r10_sync_page_io(rdev,
					     r10_bio->devs[sl].addr +
					     sect,
2478
					     s, conf->tmppage,
2479 2480
						 READ)) {
			case 0:
2481
				/* Well, this device is dead */
N
NeilBrown 已提交
2482
				pr_notice("md/raid10:%s: unable to read back corrected sectors (%d sectors at %llu on %s)\n",
2483 2484
				       mdname(mddev), s,
				       (unsigned long long)(
2485 2486
					       sect +
					       choose_data_offset(r10_bio, rdev)),
2487
				       bdevname(rdev->bdev, b));
N
NeilBrown 已提交
2488
				pr_notice("md/raid10:%s: %s: failing drive\n",
2489 2490
				       mdname(mddev),
				       bdevname(rdev->bdev, b));
2491 2492
				break;
			case 1:
N
NeilBrown 已提交
2493
				pr_info("md/raid10:%s: read error corrected (%d sectors at %llu on %s)\n",
2494 2495
				       mdname(mddev), s,
				       (unsigned long long)(
2496 2497
					       sect +
					       choose_data_offset(r10_bio, rdev)),
2498 2499
				       bdevname(rdev->bdev, b));
				atomic_add(s, &rdev->corrected_errors);
2500
			}
2501 2502 2503

			rdev_dec_pending(rdev, mddev);
			rcu_read_lock();
2504 2505 2506 2507 2508 2509 2510 2511
		}
		rcu_read_unlock();

		sectors -= s;
		sect += s;
	}
}

2512
static int narrow_write_error(struct r10bio *r10_bio, int i)
2513 2514
{
	struct bio *bio = r10_bio->master_bio;
2515
	struct mddev *mddev = r10_bio->mddev;
2516
	struct r10conf *conf = mddev->private;
2517
	struct md_rdev *rdev = conf->mirrors[r10_bio->devs[i].devnum].rdev;
2518 2519 2520 2521 2522 2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533 2534 2535 2536 2537
	/* bio has the data to be written to slot 'i' where
	 * we just recently had a write error.
	 * We repeatedly clone the bio and trim down to one block,
	 * then try the write.  Where the write fails we record
	 * a bad block.
	 * It is conceivable that the bio doesn't exactly align with
	 * blocks.  We must handle this.
	 *
	 * We currently own a reference to the rdev.
	 */

	int block_sectors;
	sector_t sector;
	int sectors;
	int sect_to_write = r10_bio->sectors;
	int ok = 1;

	if (rdev->badblocks.shift < 0)
		return 0;

2538 2539
	block_sectors = roundup(1 << rdev->badblocks.shift,
				bdev_logical_block_size(rdev->bdev) >> 9);
2540 2541 2542 2543 2544 2545 2546
	sector = r10_bio->sector;
	sectors = ((r10_bio->sector + block_sectors)
		   & ~(sector_t)(block_sectors - 1))
		- sector;

	while (sect_to_write) {
		struct bio *wbio;
2547
		sector_t wsector;
2548 2549 2550
		if (sectors > sect_to_write)
			sectors = sect_to_write;
		/* Write at 'sector' for 'sectors' */
2551
		wbio = bio_clone_fast(bio, GFP_NOIO, mddev->bio_set);
2552
		bio_trim(wbio, sector - bio->bi_iter.bi_sector, sectors);
2553 2554 2555
		wsector = r10_bio->devs[i].addr + (sector - r10_bio->sector);
		wbio->bi_iter.bi_sector = wsector +
				   choose_data_offset(r10_bio, rdev);
2556
		bio_set_dev(wbio, rdev->bdev);
M
Mike Christie 已提交
2557
		bio_set_op_attrs(wbio, REQ_OP_WRITE, 0);
2558 2559

		if (submit_bio_wait(wbio) < 0)
2560
			/* Failure! */
2561
			ok = rdev_set_badblocks(rdev, wsector,
2562 2563 2564 2565 2566 2567 2568 2569 2570 2571 2572
						sectors, 0)
				&& ok;

		bio_put(wbio);
		sect_to_write -= sectors;
		sector += sectors;
		sectors = block_sectors;
	}
	return ok;
}

2573
static void handle_read_error(struct mddev *mddev, struct r10bio *r10_bio)
2574 2575 2576
{
	int slot = r10_bio->read_slot;
	struct bio *bio;
2577
	struct r10conf *conf = mddev->private;
2578
	struct md_rdev *rdev = r10_bio->devs[slot].rdev;
2579 2580 2581 2582 2583 2584 2585 2586 2587

	/* we got a read error. Maybe the drive is bad.  Maybe just
	 * the block and we can fix it.
	 * We freeze all other IO, and try reading the block from
	 * other devices.  When we find one, we re-write
	 * and check it that fixes the read error.
	 * This is all done synchronously while the array is
	 * frozen.
	 */
2588 2589 2590 2591
	bio = r10_bio->devs[slot].bio;
	bio_put(bio);
	r10_bio->devs[slot].bio = NULL;

2592 2593 2594
	if (mddev->ro)
		r10_bio->devs[slot].bio = IO_BLOCKED;
	else if (!test_bit(FailFast, &rdev->flags)) {
2595
		freeze_array(conf, 1);
2596 2597
		fix_read_error(conf, mddev, r10_bio);
		unfreeze_array(conf);
2598
	} else
2599
		md_error(mddev, rdev);
2600

2601
	rdev_dec_pending(rdev, mddev);
2602 2603 2604
	allow_barrier(conf);
	r10_bio->state = 0;
	raid10_read_request(mddev, r10_bio->master_bio, r10_bio);
2605 2606
}

2607
static void handle_write_completed(struct r10conf *conf, struct r10bio *r10_bio)
2608 2609 2610 2611
{
	/* Some sort of write request has finished and it
	 * succeeded in writing where we thought there was a
	 * bad block.  So forget the bad block.
2612 2613
	 * Or possibly if failed and we need to record
	 * a bad block.
2614 2615
	 */
	int m;
2616
	struct md_rdev *rdev;
2617 2618 2619

	if (test_bit(R10BIO_IsSync, &r10_bio->state) ||
	    test_bit(R10BIO_IsRecover, &r10_bio->state)) {
2620 2621 2622 2623 2624
		for (m = 0; m < conf->copies; m++) {
			int dev = r10_bio->devs[m].devnum;
			rdev = conf->mirrors[dev].rdev;
			if (r10_bio->devs[m].bio == NULL)
				continue;
2625
			if (!r10_bio->devs[m].bio->bi_status) {
2626 2627 2628
				rdev_clear_badblocks(
					rdev,
					r10_bio->devs[m].addr,
2629
					r10_bio->sectors, 0);
2630 2631 2632 2633 2634 2635
			} else {
				if (!rdev_set_badblocks(
					    rdev,
					    r10_bio->devs[m].addr,
					    r10_bio->sectors, 0))
					md_error(conf->mddev, rdev);
2636
			}
2637 2638 2639
			rdev = conf->mirrors[dev].replacement;
			if (r10_bio->devs[m].repl_bio == NULL)
				continue;
2640

2641
			if (!r10_bio->devs[m].repl_bio->bi_status) {
2642 2643 2644
				rdev_clear_badblocks(
					rdev,
					r10_bio->devs[m].addr,
2645
					r10_bio->sectors, 0);
2646 2647 2648 2649 2650 2651 2652
			} else {
				if (!rdev_set_badblocks(
					    rdev,
					    r10_bio->devs[m].addr,
					    r10_bio->sectors, 0))
					md_error(conf->mddev, rdev);
			}
2653
		}
2654 2655
		put_buf(r10_bio);
	} else {
2656
		bool fail = false;
2657 2658 2659 2660 2661
		for (m = 0; m < conf->copies; m++) {
			int dev = r10_bio->devs[m].devnum;
			struct bio *bio = r10_bio->devs[m].bio;
			rdev = conf->mirrors[dev].rdev;
			if (bio == IO_MADE_GOOD) {
2662 2663 2664
				rdev_clear_badblocks(
					rdev,
					r10_bio->devs[m].addr,
2665
					r10_bio->sectors, 0);
2666
				rdev_dec_pending(rdev, conf->mddev);
2667
			} else if (bio != NULL && bio->bi_status) {
2668
				fail = true;
2669 2670 2671 2672 2673 2674
				if (!narrow_write_error(r10_bio, m)) {
					md_error(conf->mddev, rdev);
					set_bit(R10BIO_Degraded,
						&r10_bio->state);
				}
				rdev_dec_pending(rdev, conf->mddev);
2675
			}
2676 2677
			bio = r10_bio->devs[m].repl_bio;
			rdev = conf->mirrors[dev].replacement;
2678
			if (rdev && bio == IO_MADE_GOOD) {
2679 2680 2681
				rdev_clear_badblocks(
					rdev,
					r10_bio->devs[m].addr,
2682
					r10_bio->sectors, 0);
2683 2684
				rdev_dec_pending(rdev, conf->mddev);
			}
2685
		}
2686 2687 2688
		if (fail) {
			spin_lock_irq(&conf->device_lock);
			list_add(&r10_bio->retry_list, &conf->bio_end_io_list);
2689
			conf->nr_queued++;
2690
			spin_unlock_irq(&conf->device_lock);
2691 2692 2693 2694 2695
			/*
			 * In case freeze_array() is waiting for condition
			 * nr_pending == nr_queued + extra to be true.
			 */
			wake_up(&conf->wait_barrier);
2696
			md_wakeup_thread(conf->mddev->thread);
2697 2698 2699 2700
		} else {
			if (test_bit(R10BIO_WriteError,
				     &r10_bio->state))
				close_write(r10_bio);
2701
			raid_end_bio_io(r10_bio);
2702
		}
2703 2704 2705
	}
}

S
Shaohua Li 已提交
2706
static void raid10d(struct md_thread *thread)
L
Linus Torvalds 已提交
2707
{
S
Shaohua Li 已提交
2708
	struct mddev *mddev = thread->mddev;
2709
	struct r10bio *r10_bio;
L
Linus Torvalds 已提交
2710
	unsigned long flags;
2711
	struct r10conf *conf = mddev->private;
L
Linus Torvalds 已提交
2712
	struct list_head *head = &conf->retry_list;
2713
	struct blk_plug plug;
L
Linus Torvalds 已提交
2714 2715 2716

	md_check_recovery(mddev);

2717
	if (!list_empty_careful(&conf->bio_end_io_list) &&
2718
	    !test_bit(MD_SB_CHANGE_PENDING, &mddev->sb_flags)) {
2719 2720
		LIST_HEAD(tmp);
		spin_lock_irqsave(&conf->device_lock, flags);
2721
		if (!test_bit(MD_SB_CHANGE_PENDING, &mddev->sb_flags)) {
2722 2723 2724 2725
			while (!list_empty(&conf->bio_end_io_list)) {
				list_move(conf->bio_end_io_list.prev, &tmp);
				conf->nr_queued--;
			}
2726 2727 2728
		}
		spin_unlock_irqrestore(&conf->device_lock, flags);
		while (!list_empty(&tmp)) {
2729 2730
			r10_bio = list_first_entry(&tmp, struct r10bio,
						   retry_list);
2731
			list_del(&r10_bio->retry_list);
2732 2733 2734 2735 2736 2737
			if (mddev->degraded)
				set_bit(R10BIO_Degraded, &r10_bio->state);

			if (test_bit(R10BIO_WriteError,
				     &r10_bio->state))
				close_write(r10_bio);
2738 2739 2740 2741
			raid_end_bio_io(r10_bio);
		}
	}

2742
	blk_start_plug(&plug);
L
Linus Torvalds 已提交
2743
	for (;;) {
2744

2745
		flush_pending_writes(conf);
2746

2747 2748 2749
		spin_lock_irqsave(&conf->device_lock, flags);
		if (list_empty(head)) {
			spin_unlock_irqrestore(&conf->device_lock, flags);
L
Linus Torvalds 已提交
2750
			break;
2751
		}
2752
		r10_bio = list_entry(head->prev, struct r10bio, retry_list);
L
Linus Torvalds 已提交
2753
		list_del(head->prev);
2754
		conf->nr_queued--;
L
Linus Torvalds 已提交
2755 2756 2757
		spin_unlock_irqrestore(&conf->device_lock, flags);

		mddev = r10_bio->mddev;
2758
		conf = mddev->private;
2759 2760
		if (test_bit(R10BIO_MadeGood, &r10_bio->state) ||
		    test_bit(R10BIO_WriteError, &r10_bio->state))
2761
			handle_write_completed(conf, r10_bio);
N
NeilBrown 已提交
2762 2763
		else if (test_bit(R10BIO_IsReshape, &r10_bio->state))
			reshape_request_write(mddev, r10_bio);
2764
		else if (test_bit(R10BIO_IsSync, &r10_bio->state))
L
Linus Torvalds 已提交
2765
			sync_request_write(mddev, r10_bio);
J
Jens Axboe 已提交
2766
		else if (test_bit(R10BIO_IsRecover, &r10_bio->state))
L
Linus Torvalds 已提交
2767
			recovery_request_write(mddev, r10_bio);
2768
		else if (test_bit(R10BIO_ReadError, &r10_bio->state))
2769
			handle_read_error(mddev, r10_bio);
2770 2771
		else
			WARN_ON_ONCE(1);
2772

N
NeilBrown 已提交
2773
		cond_resched();
2774
		if (mddev->sb_flags & ~(1<<MD_SB_CHANGE_PENDING))
2775
			md_check_recovery(mddev);
L
Linus Torvalds 已提交
2776
	}
2777
	blk_finish_plug(&plug);
L
Linus Torvalds 已提交
2778 2779
}

2780
static int init_resync(struct r10conf *conf)
L
Linus Torvalds 已提交
2781 2782
{
	int buffs;
2783
	int i;
L
Linus Torvalds 已提交
2784 2785

	buffs = RESYNC_WINDOW / RESYNC_BLOCK_SIZE;
2786
	BUG_ON(conf->r10buf_pool);
2787
	conf->have_replacement = 0;
2788
	for (i = 0; i < conf->geo.raid_disks; i++)
2789 2790
		if (conf->mirrors[i].replacement)
			conf->have_replacement = 1;
L
Linus Torvalds 已提交
2791 2792 2793 2794 2795 2796 2797
	conf->r10buf_pool = mempool_create(buffs, r10buf_pool_alloc, r10buf_pool_free, conf);
	if (!conf->r10buf_pool)
		return -ENOMEM;
	conf->next_resync = 0;
	return 0;
}

2798 2799 2800 2801 2802 2803 2804 2805 2806 2807 2808 2809 2810 2811 2812 2813 2814 2815 2816 2817 2818 2819 2820 2821 2822 2823 2824 2825 2826
static struct r10bio *raid10_alloc_init_r10buf(struct r10conf *conf)
{
	struct r10bio *r10bio = mempool_alloc(conf->r10buf_pool, GFP_NOIO);
	struct rsync_pages *rp;
	struct bio *bio;
	int nalloc;
	int i;

	if (test_bit(MD_RECOVERY_SYNC, &conf->mddev->recovery) ||
	    test_bit(MD_RECOVERY_RESHAPE, &conf->mddev->recovery))
		nalloc = conf->copies; /* resync */
	else
		nalloc = 2; /* recovery */

	for (i = 0; i < nalloc; i++) {
		bio = r10bio->devs[i].bio;
		rp = bio->bi_private;
		bio_reset(bio);
		bio->bi_private = rp;
		bio = r10bio->devs[i].repl_bio;
		if (bio) {
			rp = bio->bi_private;
			bio_reset(bio);
			bio->bi_private = rp;
		}
	}
	return r10bio;
}

L
Linus Torvalds 已提交
2827 2828 2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849 2850 2851 2852 2853 2854 2855 2856 2857 2858
/*
 * perform a "sync" on one "block"
 *
 * We need to make sure that no normal I/O request - particularly write
 * requests - conflict with active sync requests.
 *
 * This is achieved by tracking pending requests and a 'barrier' concept
 * that can be installed to exclude normal IO requests.
 *
 * Resync and recovery are handled very differently.
 * We differentiate by looking at MD_RECOVERY_SYNC in mddev->recovery.
 *
 * For resync, we iterate over virtual addresses, read all copies,
 * and update if there are differences.  If only one copy is live,
 * skip it.
 * For recovery, we iterate over physical addresses, read a good
 * value for each non-in_sync drive, and over-write.
 *
 * So, for recovery we may have several outstanding complex requests for a
 * given address, one for each out-of-sync device.  We model this by allocating
 * a number of r10_bio structures, one for each out-of-sync device.
 * As we setup these structures, we collect all bio's together into a list
 * which we then process collectively to add pages, and then process again
 * to pass to generic_make_request.
 *
 * The r10_bio structures are linked using a borrowed master_bio pointer.
 * This link is counted in ->remaining.  When the r10_bio that points to NULL
 * has its remaining count decremented to 0, the whole complex operation
 * is complete.
 *
 */

S
Shaohua Li 已提交
2859
static sector_t raid10_sync_request(struct mddev *mddev, sector_t sector_nr,
2860
			     int *skipped)
L
Linus Torvalds 已提交
2861
{
2862
	struct r10conf *conf = mddev->private;
2863
	struct r10bio *r10_bio;
L
Linus Torvalds 已提交
2864 2865 2866
	struct bio *biolist = NULL, *bio;
	sector_t max_sector, nr_sectors;
	int i;
2867
	int max_sync;
N
NeilBrown 已提交
2868
	sector_t sync_blocks;
L
Linus Torvalds 已提交
2869 2870
	sector_t sectors_skipped = 0;
	int chunks_skipped = 0;
2871
	sector_t chunk_mask = conf->geo.chunk_mask;
2872
	int page_idx = 0;
L
Linus Torvalds 已提交
2873 2874 2875

	if (!conf->r10buf_pool)
		if (init_resync(conf))
2876
			return 0;
L
Linus Torvalds 已提交
2877

2878 2879 2880 2881 2882 2883
	/*
	 * Allow skipping a full rebuild for incremental assembly
	 * of a clean array, like RAID1 does.
	 */
	if (mddev->bitmap == NULL &&
	    mddev->recovery_cp == MaxSector &&
2884 2885
	    mddev->reshape_position == MaxSector &&
	    !test_bit(MD_RECOVERY_SYNC, &mddev->recovery) &&
2886
	    !test_bit(MD_RECOVERY_REQUESTED, &mddev->recovery) &&
2887
	    !test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery) &&
2888 2889
	    conf->fullsync == 0) {
		*skipped = 1;
2890
		return mddev->dev_sectors - sector_nr;
2891 2892
	}

L
Linus Torvalds 已提交
2893
 skipped:
A
Andre Noll 已提交
2894
	max_sector = mddev->dev_sectors;
N
NeilBrown 已提交
2895 2896
	if (test_bit(MD_RECOVERY_SYNC, &mddev->recovery) ||
	    test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery))
L
Linus Torvalds 已提交
2897 2898
		max_sector = mddev->resync_max_sectors;
	if (sector_nr >= max_sector) {
2899 2900 2901 2902 2903 2904 2905 2906 2907
		/* If we aborted, we need to abort the
		 * sync on the 'current' bitmap chucks (there can
		 * be several when recovering multiple devices).
		 * as we may have started syncing it but not finished.
		 * We can find the current address in
		 * mddev->curr_resync, but for recovery,
		 * we need to convert that to several
		 * virtual addresses.
		 */
N
NeilBrown 已提交
2908 2909
		if (test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery)) {
			end_reshape(conf);
2910
			close_sync(conf);
N
NeilBrown 已提交
2911 2912 2913
			return 0;
		}

2914 2915 2916 2917
		if (mddev->curr_resync < max_sector) { /* aborted */
			if (test_bit(MD_RECOVERY_SYNC, &mddev->recovery))
				bitmap_end_sync(mddev->bitmap, mddev->curr_resync,
						&sync_blocks, 1);
2918
			else for (i = 0; i < conf->geo.raid_disks; i++) {
2919 2920 2921 2922 2923
				sector_t sect =
					raid10_find_virt(conf, mddev->curr_resync, i);
				bitmap_end_sync(mddev->bitmap, sect,
						&sync_blocks, 1);
			}
2924 2925 2926 2927 2928 2929 2930 2931
		} else {
			/* completed sync */
			if ((!mddev->bitmap || conf->fullsync)
			    && conf->have_replacement
			    && test_bit(MD_RECOVERY_SYNC, &mddev->recovery)) {
				/* Completed a full sync so the replacements
				 * are now fully recovered.
				 */
2932 2933 2934 2935 2936 2937 2938 2939
				rcu_read_lock();
				for (i = 0; i < conf->geo.raid_disks; i++) {
					struct md_rdev *rdev =
						rcu_dereference(conf->mirrors[i].replacement);
					if (rdev)
						rdev->recovery_offset = MaxSector;
				}
				rcu_read_unlock();
2940
			}
2941
			conf->fullsync = 0;
2942
		}
2943
		bitmap_close_sync(mddev->bitmap);
L
Linus Torvalds 已提交
2944
		close_sync(conf);
2945
		*skipped = 1;
L
Linus Torvalds 已提交
2946 2947
		return sectors_skipped;
	}
N
NeilBrown 已提交
2948 2949 2950 2951

	if (test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery))
		return reshape_request(mddev, sector_nr, skipped);

2952
	if (chunks_skipped >= conf->geo.raid_disks) {
L
Linus Torvalds 已提交
2953 2954 2955
		/* if there has been nothing to do on any drive,
		 * then there is nothing to do at all..
		 */
2956 2957
		*skipped = 1;
		return (max_sector - sector_nr) + sectors_skipped;
L
Linus Torvalds 已提交
2958 2959
	}

2960 2961 2962
	if (max_sector > mddev->resync_max)
		max_sector = mddev->resync_max; /* Don't do IO beyond here */

L
Linus Torvalds 已提交
2963 2964 2965
	/* make sure whole request will fit in a chunk - if chunks
	 * are meaningful
	 */
2966 2967 2968
	if (conf->geo.near_copies < conf->geo.raid_disks &&
	    max_sector > (sector_nr | chunk_mask))
		max_sector = (sector_nr | chunk_mask) + 1;
L
Linus Torvalds 已提交
2969

2970 2971 2972 2973 2974 2975 2976
	/*
	 * If there is non-resync activity waiting for a turn, then let it
	 * though before starting on this new sync request.
	 */
	if (conf->nr_waiting)
		schedule_timeout_uninterruptible(1);

L
Linus Torvalds 已提交
2977 2978
	/* Again, very different code for resync and recovery.
	 * Both must result in an r10bio with a list of bios that
2979
	 * have bi_end_io, bi_sector, bi_disk set,
L
Linus Torvalds 已提交
2980 2981 2982 2983 2984 2985 2986 2987 2988 2989 2990 2991
	 * and bi_private set to the r10bio.
	 * For recovery, we may actually create several r10bios
	 * with 2 bios in each, that correspond to the bios in the main one.
	 * In this case, the subordinate r10bios link back through a
	 * borrowed master_bio pointer, and the counter in the master
	 * includes a ref from each subordinate.
	 */
	/* First, we decide what to do and set ->bi_end_io
	 * To end_sync_read if we want to read, and
	 * end_sync_write if we will want to write.
	 */

2992
	max_sync = RESYNC_PAGES << (PAGE_SHIFT-9);
L
Linus Torvalds 已提交
2993 2994
	if (!test_bit(MD_RECOVERY_SYNC, &mddev->recovery)) {
		/* recovery... the complicated one */
2995
		int j;
L
Linus Torvalds 已提交
2996 2997
		r10_bio = NULL;

2998
		for (i = 0 ; i < conf->geo.raid_disks; i++) {
2999
			int still_degraded;
3000
			struct r10bio *rb2;
3001 3002
			sector_t sect;
			int must_sync;
3003
			int any_working;
3004
			struct raid10_info *mirror = &conf->mirrors[i];
3005
			struct md_rdev *mrdev, *mreplace;
3006

3007 3008 3009 3010 3011
			rcu_read_lock();
			mrdev = rcu_dereference(mirror->rdev);
			mreplace = rcu_dereference(mirror->replacement);

			if ((mrdev == NULL ||
3012
			     test_bit(Faulty, &mrdev->flags) ||
3013 3014 3015 3016
			     test_bit(In_sync, &mrdev->flags)) &&
			    (mreplace == NULL ||
			     test_bit(Faulty, &mreplace->flags))) {
				rcu_read_unlock();
3017
				continue;
3018
			}
L
Linus Torvalds 已提交
3019

3020 3021 3022 3023
			still_degraded = 0;
			/* want to reconstruct this device */
			rb2 = r10_bio;
			sect = raid10_find_virt(conf, sector_nr, i);
3024 3025 3026 3027
			if (sect >= mddev->resync_max_sectors) {
				/* last stripe is not complete - don't
				 * try to recover this sector.
				 */
3028
				rcu_read_unlock();
3029 3030
				continue;
			}
3031 3032
			if (mreplace && test_bit(Faulty, &mreplace->flags))
				mreplace = NULL;
3033 3034 3035
			/* Unless we are doing a full sync, or a replacement
			 * we only need to recover the block if it is set in
			 * the bitmap
3036 3037 3038 3039 3040 3041
			 */
			must_sync = bitmap_start_sync(mddev->bitmap, sect,
						      &sync_blocks, 1);
			if (sync_blocks < max_sync)
				max_sync = sync_blocks;
			if (!must_sync &&
3042
			    mreplace == NULL &&
3043 3044 3045 3046 3047
			    !conf->fullsync) {
				/* yep, skip the sync_blocks here, but don't assume
				 * that there will never be anything to do here
				 */
				chunks_skipped = -1;
3048
				rcu_read_unlock();
3049 3050
				continue;
			}
3051 3052 3053 3054
			atomic_inc(&mrdev->nr_pending);
			if (mreplace)
				atomic_inc(&mreplace->nr_pending);
			rcu_read_unlock();
3055

3056
			r10_bio = raid10_alloc_init_r10buf(conf);
3057
			r10_bio->state = 0;
3058 3059
			raise_barrier(conf, rb2 != NULL);
			atomic_set(&r10_bio->remaining, 0);
3060

3061 3062 3063 3064 3065 3066
			r10_bio->master_bio = (struct bio*)rb2;
			if (rb2)
				atomic_inc(&rb2->remaining);
			r10_bio->mddev = mddev;
			set_bit(R10BIO_IsRecover, &r10_bio->state);
			r10_bio->sector = sect;
L
Linus Torvalds 已提交
3067

3068 3069 3070 3071 3072
			raid10_find_phys(conf, r10_bio);

			/* Need to check if the array will still be
			 * degraded
			 */
3073 3074 3075 3076 3077
			rcu_read_lock();
			for (j = 0; j < conf->geo.raid_disks; j++) {
				struct md_rdev *rdev = rcu_dereference(
					conf->mirrors[j].rdev);
				if (rdev == NULL || test_bit(Faulty, &rdev->flags)) {
3078
					still_degraded = 1;
3079
					break;
L
Linus Torvalds 已提交
3080
				}
3081
			}
3082 3083 3084 3085

			must_sync = bitmap_start_sync(mddev->bitmap, sect,
						      &sync_blocks, still_degraded);

3086
			any_working = 0;
3087
			for (j=0; j<conf->copies;j++) {
3088
				int k;
3089
				int d = r10_bio->devs[j].devnum;
3090
				sector_t from_addr, to_addr;
3091 3092
				struct md_rdev *rdev =
					rcu_dereference(conf->mirrors[d].rdev);
3093 3094
				sector_t sector, first_bad;
				int bad_sectors;
3095 3096
				if (!rdev ||
				    !test_bit(In_sync, &rdev->flags))
3097 3098
					continue;
				/* This is where we read from */
3099
				any_working = 1;
3100 3101 3102 3103 3104 3105 3106 3107 3108 3109 3110 3111 3112 3113
				sector = r10_bio->devs[j].addr;

				if (is_badblock(rdev, sector, max_sync,
						&first_bad, &bad_sectors)) {
					if (first_bad > sector)
						max_sync = first_bad - sector;
					else {
						bad_sectors -= (sector
								- first_bad);
						if (max_sync > bad_sectors)
							max_sync = bad_sectors;
						continue;
					}
				}
3114 3115 3116 3117
				bio = r10_bio->devs[0].bio;
				bio->bi_next = biolist;
				biolist = bio;
				bio->bi_end_io = end_sync_read;
M
Mike Christie 已提交
3118
				bio_set_op_attrs(bio, REQ_OP_READ, 0);
3119 3120
				if (test_bit(FailFast, &rdev->flags))
					bio->bi_opf |= MD_FAILFAST;
3121
				from_addr = r10_bio->devs[j].addr;
3122 3123
				bio->bi_iter.bi_sector = from_addr +
					rdev->data_offset;
3124
				bio_set_dev(bio, rdev->bdev);
3125 3126
				atomic_inc(&rdev->nr_pending);
				/* and we write to 'i' (if not in_sync) */
3127 3128 3129 3130 3131

				for (k=0; k<conf->copies; k++)
					if (r10_bio->devs[k].devnum == i)
						break;
				BUG_ON(k == conf->copies);
3132
				to_addr = r10_bio->devs[k].addr;
3133
				r10_bio->devs[0].devnum = d;
3134
				r10_bio->devs[0].addr = from_addr;
3135
				r10_bio->devs[1].devnum = i;
3136
				r10_bio->devs[1].addr = to_addr;
3137

3138
				if (!test_bit(In_sync, &mrdev->flags)) {
3139 3140 3141 3142
					bio = r10_bio->devs[1].bio;
					bio->bi_next = biolist;
					biolist = bio;
					bio->bi_end_io = end_sync_write;
M
Mike Christie 已提交
3143
					bio_set_op_attrs(bio, REQ_OP_WRITE, 0);
3144
					bio->bi_iter.bi_sector = to_addr
3145
						+ mrdev->data_offset;
3146
					bio_set_dev(bio, mrdev->bdev);
3147 3148 3149 3150 3151 3152 3153 3154
					atomic_inc(&r10_bio->remaining);
				} else
					r10_bio->devs[1].bio->bi_end_io = NULL;

				/* and maybe write to replacement */
				bio = r10_bio->devs[1].repl_bio;
				if (bio)
					bio->bi_end_io = NULL;
3155
				/* Note: if mreplace != NULL, then bio
3156 3157 3158 3159 3160 3161 3162
				 * cannot be NULL as r10buf_pool_alloc will
				 * have allocated it.
				 * So the second test here is pointless.
				 * But it keeps semantic-checkers happy, and
				 * this comment keeps human reviewers
				 * happy.
				 */
3163 3164
				if (mreplace == NULL || bio == NULL ||
				    test_bit(Faulty, &mreplace->flags))
3165 3166 3167 3168
					break;
				bio->bi_next = biolist;
				biolist = bio;
				bio->bi_end_io = end_sync_write;
M
Mike Christie 已提交
3169
				bio_set_op_attrs(bio, REQ_OP_WRITE, 0);
3170
				bio->bi_iter.bi_sector = to_addr +
3171
					mreplace->data_offset;
3172
				bio_set_dev(bio, mreplace->bdev);
3173
				atomic_inc(&r10_bio->remaining);
3174 3175
				break;
			}
3176
			rcu_read_unlock();
3177
			if (j == conf->copies) {
3178 3179 3180 3181 3182 3183 3184 3185 3186 3187
				/* Cannot recover, so abort the recovery or
				 * record a bad block */
				if (any_working) {
					/* problem is that there are bad blocks
					 * on other device(s)
					 */
					int k;
					for (k = 0; k < conf->copies; k++)
						if (r10_bio->devs[k].devnum == i)
							break;
3188
					if (!test_bit(In_sync,
3189
						      &mrdev->flags)
3190
					    && !rdev_set_badblocks(
3191
						    mrdev,
3192 3193 3194
						    r10_bio->devs[k].addr,
						    max_sync, 0))
						any_working = 0;
3195
					if (mreplace &&
3196
					    !rdev_set_badblocks(
3197
						    mreplace,
3198 3199 3200 3201 3202 3203 3204
						    r10_bio->devs[k].addr,
						    max_sync, 0))
						any_working = 0;
				}
				if (!any_working)  {
					if (!test_and_set_bit(MD_RECOVERY_INTR,
							      &mddev->recovery))
N
NeilBrown 已提交
3205
						pr_warn("md/raid10:%s: insufficient working devices for recovery.\n",
3206
						       mdname(mddev));
3207
					mirror->recovery_disabled
3208 3209
						= mddev->recovery_disabled;
				}
3210 3211 3212 3213
				put_buf(r10_bio);
				if (rb2)
					atomic_dec(&rb2->remaining);
				r10_bio = rb2;
3214 3215 3216
				rdev_dec_pending(mrdev, mddev);
				if (mreplace)
					rdev_dec_pending(mreplace, mddev);
3217
				break;
L
Linus Torvalds 已提交
3218
			}
3219 3220 3221
			rdev_dec_pending(mrdev, mddev);
			if (mreplace)
				rdev_dec_pending(mreplace, mddev);
3222 3223 3224 3225 3226 3227 3228 3229 3230 3231 3232 3233 3234 3235 3236 3237 3238
			if (r10_bio->devs[0].bio->bi_opf & MD_FAILFAST) {
				/* Only want this if there is elsewhere to
				 * read from. 'j' is currently the first
				 * readable copy.
				 */
				int targets = 1;
				for (; j < conf->copies; j++) {
					int d = r10_bio->devs[j].devnum;
					if (conf->mirrors[d].rdev &&
					    test_bit(In_sync,
						      &conf->mirrors[d].rdev->flags))
						targets++;
				}
				if (targets == 1)
					r10_bio->devs[0].bio->bi_opf
						&= ~MD_FAILFAST;
			}
3239
		}
L
Linus Torvalds 已提交
3240 3241
		if (biolist == NULL) {
			while (r10_bio) {
3242 3243
				struct r10bio *rb2 = r10_bio;
				r10_bio = (struct r10bio*) rb2->master_bio;
L
Linus Torvalds 已提交
3244 3245 3246 3247 3248 3249 3250 3251
				rb2->master_bio = NULL;
				put_buf(rb2);
			}
			goto giveup;
		}
	} else {
		/* resync. Schedule a read for every block at this virt offset */
		int count = 0;
3252

3253
		bitmap_cond_end_sync(mddev->bitmap, sector_nr, 0);
3254

3255 3256
		if (!bitmap_start_sync(mddev->bitmap, sector_nr,
				       &sync_blocks, mddev->degraded) &&
3257 3258
		    !conf->fullsync && !test_bit(MD_RECOVERY_REQUESTED,
						 &mddev->recovery)) {
3259 3260 3261 3262 3263 3264
			/* We can skip this block */
			*skipped = 1;
			return sync_blocks + sectors_skipped;
		}
		if (sync_blocks < max_sync)
			max_sync = sync_blocks;
3265
		r10_bio = raid10_alloc_init_r10buf(conf);
3266
		r10_bio->state = 0;
L
Linus Torvalds 已提交
3267 3268 3269

		r10_bio->mddev = mddev;
		atomic_set(&r10_bio->remaining, 0);
3270 3271
		raise_barrier(conf, 0);
		conf->next_resync = sector_nr;
L
Linus Torvalds 已提交
3272 3273 3274 3275 3276

		r10_bio->master_bio = NULL;
		r10_bio->sector = sector_nr;
		set_bit(R10BIO_IsSync, &r10_bio->state);
		raid10_find_phys(conf, r10_bio);
3277
		r10_bio->sectors = (sector_nr | chunk_mask) - sector_nr + 1;
L
Linus Torvalds 已提交
3278

3279
		for (i = 0; i < conf->copies; i++) {
L
Linus Torvalds 已提交
3280
			int d = r10_bio->devs[i].devnum;
3281 3282
			sector_t first_bad, sector;
			int bad_sectors;
3283
			struct md_rdev *rdev;
3284

3285 3286 3287
			if (r10_bio->devs[i].repl_bio)
				r10_bio->devs[i].repl_bio->bi_end_io = NULL;

L
Linus Torvalds 已提交
3288
			bio = r10_bio->devs[i].bio;
3289
			bio->bi_status = BLK_STS_IOERR;
3290 3291 3292 3293
			rcu_read_lock();
			rdev = rcu_dereference(conf->mirrors[d].rdev);
			if (rdev == NULL || test_bit(Faulty, &rdev->flags)) {
				rcu_read_unlock();
L
Linus Torvalds 已提交
3294
				continue;
3295
			}
3296
			sector = r10_bio->devs[i].addr;
3297
			if (is_badblock(rdev, sector, max_sync,
3298 3299 3300 3301 3302 3303
					&first_bad, &bad_sectors)) {
				if (first_bad > sector)
					max_sync = first_bad - sector;
				else {
					bad_sectors -= (sector - first_bad);
					if (max_sync > bad_sectors)
3304
						max_sync = bad_sectors;
3305
					rcu_read_unlock();
3306 3307 3308
					continue;
				}
			}
3309
			atomic_inc(&rdev->nr_pending);
L
Linus Torvalds 已提交
3310 3311 3312 3313
			atomic_inc(&r10_bio->remaining);
			bio->bi_next = biolist;
			biolist = bio;
			bio->bi_end_io = end_sync_read;
M
Mike Christie 已提交
3314
			bio_set_op_attrs(bio, REQ_OP_READ, 0);
3315
			if (test_bit(FailFast, &rdev->flags))
3316
				bio->bi_opf |= MD_FAILFAST;
3317
			bio->bi_iter.bi_sector = sector + rdev->data_offset;
3318
			bio_set_dev(bio, rdev->bdev);
L
Linus Torvalds 已提交
3319
			count++;
3320

3321 3322 3323
			rdev = rcu_dereference(conf->mirrors[d].replacement);
			if (rdev == NULL || test_bit(Faulty, &rdev->flags)) {
				rcu_read_unlock();
3324
				continue;
3325 3326
			}
			atomic_inc(&rdev->nr_pending);
3327 3328 3329

			/* Need to set up for writing to the replacement */
			bio = r10_bio->devs[i].repl_bio;
3330
			bio->bi_status = BLK_STS_IOERR;
3331 3332 3333 3334 3335

			sector = r10_bio->devs[i].addr;
			bio->bi_next = biolist;
			biolist = bio;
			bio->bi_end_io = end_sync_write;
M
Mike Christie 已提交
3336
			bio_set_op_attrs(bio, REQ_OP_WRITE, 0);
3337
			if (test_bit(FailFast, &rdev->flags))
3338
				bio->bi_opf |= MD_FAILFAST;
3339
			bio->bi_iter.bi_sector = sector + rdev->data_offset;
3340
			bio_set_dev(bio, rdev->bdev);
3341
			count++;
3342
			rcu_read_unlock();
L
Linus Torvalds 已提交
3343 3344 3345 3346 3347 3348
		}

		if (count < 2) {
			for (i=0; i<conf->copies; i++) {
				int d = r10_bio->devs[i].devnum;
				if (r10_bio->devs[i].bio->bi_end_io)
3349 3350
					rdev_dec_pending(conf->mirrors[d].rdev,
							 mddev);
3351 3352 3353 3354 3355
				if (r10_bio->devs[i].repl_bio &&
				    r10_bio->devs[i].repl_bio->bi_end_io)
					rdev_dec_pending(
						conf->mirrors[d].replacement,
						mddev);
L
Linus Torvalds 已提交
3356 3357 3358 3359 3360 3361 3362 3363
			}
			put_buf(r10_bio);
			biolist = NULL;
			goto giveup;
		}
	}

	nr_sectors = 0;
3364 3365
	if (sector_nr + max_sync < max_sector)
		max_sector = sector_nr + max_sync;
L
Linus Torvalds 已提交
3366 3367 3368 3369 3370 3371 3372 3373
	do {
		struct page *page;
		int len = PAGE_SIZE;
		if (sector_nr + (len>>9) > max_sector)
			len = (max_sector - sector_nr) << 9;
		if (len == 0)
			break;
		for (bio= biolist ; bio ; bio=bio->bi_next) {
3374
			struct resync_pages *rp = get_resync_pages(bio);
3375
			page = resync_fetch_page(rp, page_idx);
3376 3377 3378 3379 3380
			/*
			 * won't fail because the vec table is big enough
			 * to hold all these pages
			 */
			bio_add_page(bio, page, len, 0);
L
Linus Torvalds 已提交
3381 3382 3383
		}
		nr_sectors += len>>9;
		sector_nr += len>>9;
3384
	} while (++page_idx < RESYNC_PAGES);
L
Linus Torvalds 已提交
3385 3386 3387 3388 3389 3390 3391
	r10_bio->sectors = nr_sectors;

	while (biolist) {
		bio = biolist;
		biolist = biolist->bi_next;

		bio->bi_next = NULL;
3392
		r10_bio = get_resync_r10bio(bio);
L
Linus Torvalds 已提交
3393 3394 3395
		r10_bio->sectors = nr_sectors;

		if (bio->bi_end_io == end_sync_read) {
3396
			md_sync_acct_bio(bio, nr_sectors);
3397
			bio->bi_status = 0;
L
Linus Torvalds 已提交
3398 3399 3400 3401
			generic_make_request(bio);
		}
	}

3402 3403 3404 3405 3406 3407
	if (sectors_skipped)
		/* pretend they weren't skipped, it makes
		 * no important difference in this case
		 */
		md_done_sync(mddev, sectors_skipped, 1);

L
Linus Torvalds 已提交
3408 3409 3410
	return sectors_skipped + nr_sectors;
 giveup:
	/* There is nowhere to write, so all non-sync
3411 3412
	 * drives must be failed or in resync, all drives
	 * have a bad block, so try the next chunk...
L
Linus Torvalds 已提交
3413
	 */
3414 3415 3416 3417
	if (sector_nr + max_sync < max_sector)
		max_sector = sector_nr + max_sync;

	sectors_skipped += (max_sector - sector_nr);
L
Linus Torvalds 已提交
3418 3419 3420 3421 3422
	chunks_skipped ++;
	sector_nr = max_sector;
	goto skipped;
}

3423
static sector_t
3424
raid10_size(struct mddev *mddev, sector_t sectors, int raid_disks)
3425 3426
{
	sector_t size;
3427
	struct r10conf *conf = mddev->private;
3428 3429

	if (!raid_disks)
N
NeilBrown 已提交
3430 3431
		raid_disks = min(conf->geo.raid_disks,
				 conf->prev.raid_disks);
3432
	if (!sectors)
3433
		sectors = conf->dev_sectors;
3434

3435 3436
	size = sectors >> conf->geo.chunk_shift;
	sector_div(size, conf->geo.far_copies);
3437
	size = size * raid_disks;
3438
	sector_div(size, conf->geo.near_copies);
3439

3440
	return size << conf->geo.chunk_shift;
3441 3442
}

3443 3444 3445 3446 3447 3448 3449
static void calc_sectors(struct r10conf *conf, sector_t size)
{
	/* Calculate the number of sectors-per-device that will
	 * actually be used, and set conf->dev_sectors and
	 * conf->stride
	 */

3450 3451 3452 3453
	size = size >> conf->geo.chunk_shift;
	sector_div(size, conf->geo.far_copies);
	size = size * conf->geo.raid_disks;
	sector_div(size, conf->geo.near_copies);
3454 3455 3456 3457 3458 3459 3460
	/* 'size' is now the number of chunks in the array */
	/* calculate "used chunks per device" */
	size = size * conf->copies;

	/* We need to round up when dividing by raid_disks to
	 * get the stride size.
	 */
3461
	size = DIV_ROUND_UP_SECTOR_T(size, conf->geo.raid_disks);
3462

3463
	conf->dev_sectors = size << conf->geo.chunk_shift;
3464

3465 3466
	if (conf->geo.far_offset)
		conf->geo.stride = 1 << conf->geo.chunk_shift;
3467
	else {
3468 3469
		sector_div(size, conf->geo.far_copies);
		conf->geo.stride = size << conf->geo.chunk_shift;
3470 3471
	}
}
3472

3473 3474 3475 3476 3477 3478 3479 3480 3481 3482 3483 3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494 3495 3496
enum geo_type {geo_new, geo_old, geo_start};
static int setup_geo(struct geom *geo, struct mddev *mddev, enum geo_type new)
{
	int nc, fc, fo;
	int layout, chunk, disks;
	switch (new) {
	case geo_old:
		layout = mddev->layout;
		chunk = mddev->chunk_sectors;
		disks = mddev->raid_disks - mddev->delta_disks;
		break;
	case geo_new:
		layout = mddev->new_layout;
		chunk = mddev->new_chunk_sectors;
		disks = mddev->raid_disks;
		break;
	default: /* avoid 'may be unused' warnings */
	case geo_start: /* new when starting reshape - raid_disks not
			 * updated yet. */
		layout = mddev->new_layout;
		chunk = mddev->new_chunk_sectors;
		disks = mddev->raid_disks + mddev->delta_disks;
		break;
	}
3497
	if (layout >> 19)
3498 3499 3500 3501 3502 3503 3504 3505 3506 3507 3508
		return -1;
	if (chunk < (PAGE_SIZE >> 9) ||
	    !is_power_of_2(chunk))
		return -2;
	nc = layout & 255;
	fc = (layout >> 8) & 255;
	fo = layout & (1<<16);
	geo->raid_disks = disks;
	geo->near_copies = nc;
	geo->far_copies = fc;
	geo->far_offset = fo;
3509 3510 3511 3512 3513 3514 3515 3516 3517 3518 3519 3520 3521 3522 3523 3524
	switch (layout >> 17) {
	case 0:	/* original layout.  simple but not always optimal */
		geo->far_set_size = disks;
		break;
	case 1: /* "improved" layout which was buggy.  Hopefully no-one is
		 * actually using this, but leave code here just in case.*/
		geo->far_set_size = disks/fc;
		WARN(geo->far_set_size < fc,
		     "This RAID10 layout does not provide data safety - please backup and create new array\n");
		break;
	case 2: /* "improved" layout fixed to match documentation */
		geo->far_set_size = fc * nc;
		break;
	default: /* Not a valid layout */
		return -1;
	}
3525 3526 3527 3528 3529
	geo->chunk_mask = chunk - 1;
	geo->chunk_shift = ffz(~chunk);
	return nc*fc;
}

3530
static struct r10conf *setup_conf(struct mddev *mddev)
L
Linus Torvalds 已提交
3531
{
3532
	struct r10conf *conf = NULL;
3533
	int err = -EINVAL;
3534 3535 3536 3537
	struct geom geo;
	int copies;

	copies = setup_geo(&geo, mddev, geo_new);
L
Linus Torvalds 已提交
3538

3539
	if (copies == -2) {
N
NeilBrown 已提交
3540 3541
		pr_warn("md/raid10:%s: chunk size must be at least PAGE_SIZE(%ld) and be a power of 2.\n",
			mdname(mddev), PAGE_SIZE);
3542
		goto out;
L
Linus Torvalds 已提交
3543
	}
3544

3545
	if (copies < 2 || copies > mddev->raid_disks) {
N
NeilBrown 已提交
3546 3547
		pr_warn("md/raid10:%s: unsupported raid10 layout: 0x%8x\n",
			mdname(mddev), mddev->new_layout);
L
Linus Torvalds 已提交
3548 3549
		goto out;
	}
3550 3551

	err = -ENOMEM;
3552
	conf = kzalloc(sizeof(struct r10conf), GFP_KERNEL);
3553
	if (!conf)
L
Linus Torvalds 已提交
3554
		goto out;
3555

N
NeilBrown 已提交
3556
	/* FIXME calc properly */
3557
	conf->mirrors = kzalloc(sizeof(struct raid10_info)*(mddev->raid_disks +
3558
							    max(0,-mddev->delta_disks)),
3559 3560 3561
				GFP_KERNEL);
	if (!conf->mirrors)
		goto out;
3562 3563 3564

	conf->tmppage = alloc_page(GFP_KERNEL);
	if (!conf->tmppage)
3565 3566
		goto out;

3567 3568
	conf->geo = geo;
	conf->copies = copies;
3569 3570 3571 3572 3573
	conf->r10bio_pool = mempool_create(NR_RAID10_BIOS, r10bio_pool_alloc,
					   r10bio_pool_free, conf);
	if (!conf->r10bio_pool)
		goto out;

3574
	conf->bio_split = bioset_create(BIO_POOL_SIZE, 0, 0);
3575 3576 3577
	if (!conf->bio_split)
		goto out;

3578
	calc_sectors(conf, mddev->dev_sectors);
N
NeilBrown 已提交
3579 3580 3581 3582 3583 3584 3585 3586 3587 3588 3589 3590 3591 3592 3593
	if (mddev->reshape_position == MaxSector) {
		conf->prev = conf->geo;
		conf->reshape_progress = MaxSector;
	} else {
		if (setup_geo(&conf->prev, mddev, geo_old) != conf->copies) {
			err = -EINVAL;
			goto out;
		}
		conf->reshape_progress = mddev->reshape_position;
		if (conf->prev.far_offset)
			conf->prev.stride = 1 << conf->prev.chunk_shift;
		else
			/* far_copies must be 1 */
			conf->prev.stride = conf->dev_sectors;
	}
3594
	conf->reshape_safe = conf->reshape_progress;
3595
	spin_lock_init(&conf->device_lock);
3596
	INIT_LIST_HEAD(&conf->retry_list);
3597
	INIT_LIST_HEAD(&conf->bio_end_io_list);
3598 3599 3600

	spin_lock_init(&conf->resync_lock);
	init_waitqueue_head(&conf->wait_barrier);
3601
	atomic_set(&conf->nr_pending, 0);
3602

3603
	conf->thread = md_register_thread(raid10d, mddev, "raid10");
3604 3605 3606 3607 3608 3609 3610 3611
	if (!conf->thread)
		goto out;

	conf->mddev = mddev;
	return conf;

 out:
	if (conf) {
3612
		mempool_destroy(conf->r10bio_pool);
3613 3614
		kfree(conf->mirrors);
		safe_put_page(conf->tmppage);
3615 3616
		if (conf->bio_split)
			bioset_free(conf->bio_split);
3617 3618 3619 3620 3621
		kfree(conf);
	}
	return ERR_PTR(err);
}

S
Shaohua Li 已提交
3622
static int raid10_run(struct mddev *mddev)
3623
{
3624
	struct r10conf *conf;
3625
	int i, disk_idx, chunk_size;
3626
	struct raid10_info *disk;
3627
	struct md_rdev *rdev;
3628
	sector_t size;
N
NeilBrown 已提交
3629 3630
	sector_t min_offset_diff = 0;
	int first = 1;
S
Shaohua Li 已提交
3631
	bool discard_supported = false;
3632

3633 3634 3635
	if (mddev_init_writes_pending(mddev) < 0)
		return -ENOMEM;

3636 3637 3638 3639 3640 3641 3642 3643 3644 3645 3646 3647 3648
	if (mddev->private == NULL) {
		conf = setup_conf(mddev);
		if (IS_ERR(conf))
			return PTR_ERR(conf);
		mddev->private = conf;
	}
	conf = mddev->private;
	if (!conf)
		goto out;

	mddev->thread = conf->thread;
	conf->thread = NULL;

3649
	chunk_size = mddev->chunk_sectors << 9;
3650
	if (mddev->queue) {
S
Shaohua Li 已提交
3651 3652
		blk_queue_max_discard_sectors(mddev->queue,
					      mddev->chunk_sectors);
3653
		blk_queue_max_write_same_sectors(mddev->queue, 0);
3654
		blk_queue_max_write_zeroes_sectors(mddev->queue, 0);
3655 3656 3657 3658 3659 3660 3661
		blk_queue_io_min(mddev->queue, chunk_size);
		if (conf->geo.raid_disks % conf->geo.near_copies)
			blk_queue_io_opt(mddev->queue, chunk_size * conf->geo.raid_disks);
		else
			blk_queue_io_opt(mddev->queue, chunk_size *
					 (conf->geo.raid_disks / conf->geo.near_copies));
	}
3662

N
NeilBrown 已提交
3663
	rdev_for_each(rdev, mddev) {
N
NeilBrown 已提交
3664
		long long diff;
3665

L
Linus Torvalds 已提交
3666
		disk_idx = rdev->raid_disk;
3667 3668 3669 3670
		if (disk_idx < 0)
			continue;
		if (disk_idx >= conf->geo.raid_disks &&
		    disk_idx >= conf->prev.raid_disks)
L
Linus Torvalds 已提交
3671 3672 3673
			continue;
		disk = conf->mirrors + disk_idx;

3674 3675 3676 3677 3678 3679 3680 3681 3682
		if (test_bit(Replacement, &rdev->flags)) {
			if (disk->replacement)
				goto out_free_conf;
			disk->replacement = rdev;
		} else {
			if (disk->rdev)
				goto out_free_conf;
			disk->rdev = rdev;
		}
N
NeilBrown 已提交
3683 3684 3685 3686 3687 3688 3689
		diff = (rdev->new_data_offset - rdev->data_offset);
		if (!mddev->reshape_backwards)
			diff = -diff;
		if (diff < 0)
			diff = 0;
		if (first || diff < min_offset_diff)
			min_offset_diff = diff;
3690

3691 3692 3693
		if (mddev->gendisk)
			disk_stack_limits(mddev->gendisk, rdev->bdev,
					  rdev->data_offset << 9);
L
Linus Torvalds 已提交
3694 3695

		disk->head_position = 0;
S
Shaohua Li 已提交
3696 3697 3698

		if (blk_queue_discard(bdev_get_queue(rdev->bdev)))
			discard_supported = true;
3699
		first = 0;
L
Linus Torvalds 已提交
3700
	}
N
NeilBrown 已提交
3701

3702 3703 3704 3705 3706 3707 3708 3709
	if (mddev->queue) {
		if (discard_supported)
			queue_flag_set_unlocked(QUEUE_FLAG_DISCARD,
						mddev->queue);
		else
			queue_flag_clear_unlocked(QUEUE_FLAG_DISCARD,
						  mddev->queue);
	}
3710
	/* need to check that every block has at least one working mirror */
3711
	if (!enough(conf, -1)) {
N
NeilBrown 已提交
3712
		pr_err("md/raid10:%s: not enough operational mirrors.\n",
3713
		       mdname(mddev));
L
Linus Torvalds 已提交
3714 3715 3716
		goto out_free_conf;
	}

N
NeilBrown 已提交
3717 3718 3719 3720 3721 3722
	if (conf->reshape_progress != MaxSector) {
		/* must ensure that shape change is supported */
		if (conf->geo.far_copies != 1 &&
		    conf->geo.far_offset == 0)
			goto out_free_conf;
		if (conf->prev.far_copies != 1 &&
3723
		    conf->prev.far_offset == 0)
N
NeilBrown 已提交
3724 3725 3726
			goto out_free_conf;
	}

L
Linus Torvalds 已提交
3727
	mddev->degraded = 0;
3728 3729 3730 3731
	for (i = 0;
	     i < conf->geo.raid_disks
		     || i < conf->prev.raid_disks;
	     i++) {
L
Linus Torvalds 已提交
3732 3733 3734

		disk = conf->mirrors + i;

3735 3736 3737 3738 3739 3740 3741
		if (!disk->rdev && disk->replacement) {
			/* The replacement is all we have - use it */
			disk->rdev = disk->replacement;
			disk->replacement = NULL;
			clear_bit(Replacement, &disk->rdev->flags);
		}

3742
		if (!disk->rdev ||
3743
		    !test_bit(In_sync, &disk->rdev->flags)) {
L
Linus Torvalds 已提交
3744 3745
			disk->head_position = 0;
			mddev->degraded++;
3746 3747
			if (disk->rdev &&
			    disk->rdev->saved_raid_disk < 0)
3748
				conf->fullsync = 1;
L
Linus Torvalds 已提交
3749
		}
3750
		disk->recovery_disabled = mddev->recovery_disabled - 1;
L
Linus Torvalds 已提交
3751 3752
	}

3753
	if (mddev->recovery_cp != MaxSector)
N
NeilBrown 已提交
3754 3755 3756
		pr_notice("md/raid10:%s: not clean -- starting background reconstruction\n",
			  mdname(mddev));
	pr_info("md/raid10:%s: active with %d out of %d devices\n",
3757 3758
		mdname(mddev), conf->geo.raid_disks - mddev->degraded,
		conf->geo.raid_disks);
L
Linus Torvalds 已提交
3759 3760 3761
	/*
	 * Ok, everything is just fine now
	 */
3762 3763 3764 3765
	mddev->dev_sectors = conf->dev_sectors;
	size = raid10_size(mddev, 0, 0);
	md_set_array_sectors(mddev, size);
	mddev->resync_max_sectors = size;
3766
	set_bit(MD_FAILFAST_SUPPORTED, &mddev->flags);
L
Linus Torvalds 已提交
3767

3768
	if (mddev->queue) {
3769
		int stripe = conf->geo.raid_disks *
3770
			((mddev->chunk_sectors << 9) / PAGE_SIZE);
3771 3772 3773 3774 3775

		/* Calculate max read-ahead size.
		 * We need to readahead at least twice a whole stripe....
		 * maybe...
		 */
3776
		stripe /= conf->geo.near_copies;
3777 3778
		if (mddev->queue->backing_dev_info->ra_pages < 2 * stripe)
			mddev->queue->backing_dev_info->ra_pages = 2 * stripe;
L
Linus Torvalds 已提交
3779 3780
	}

3781 3782 3783
	if (md_integrity_register(mddev))
		goto out_free_conf;

N
NeilBrown 已提交
3784 3785 3786 3787 3788 3789 3790 3791 3792 3793
	if (conf->reshape_progress != MaxSector) {
		unsigned long before_length, after_length;

		before_length = ((1 << conf->prev.chunk_shift) *
				 conf->prev.far_copies);
		after_length = ((1 << conf->geo.chunk_shift) *
				conf->geo.far_copies);

		if (max(before_length, after_length) > min_offset_diff) {
			/* This cannot work */
N
NeilBrown 已提交
3794
			pr_warn("md/raid10: offset difference not enough to continue reshape\n");
N
NeilBrown 已提交
3795 3796 3797 3798 3799 3800 3801 3802 3803 3804 3805 3806
			goto out_free_conf;
		}
		conf->offset_diff = min_offset_diff;

		clear_bit(MD_RECOVERY_SYNC, &mddev->recovery);
		clear_bit(MD_RECOVERY_CHECK, &mddev->recovery);
		set_bit(MD_RECOVERY_RESHAPE, &mddev->recovery);
		set_bit(MD_RECOVERY_RUNNING, &mddev->recovery);
		mddev->sync_thread = md_register_thread(md_do_sync, mddev,
							"reshape");
	}

L
Linus Torvalds 已提交
3807 3808 3809
	return 0;

out_free_conf:
3810
	md_unregister_thread(&mddev->thread);
3811
	mempool_destroy(conf->r10bio_pool);
3812
	safe_put_page(conf->tmppage);
3813
	kfree(conf->mirrors);
L
Linus Torvalds 已提交
3814 3815 3816 3817 3818 3819
	kfree(conf);
	mddev->private = NULL;
out:
	return -EIO;
}

N
NeilBrown 已提交
3820
static void raid10_free(struct mddev *mddev, void *priv)
L
Linus Torvalds 已提交
3821
{
N
NeilBrown 已提交
3822
	struct r10conf *conf = priv;
L
Linus Torvalds 已提交
3823

3824
	mempool_destroy(conf->r10bio_pool);
3825
	safe_put_page(conf->tmppage);
3826
	kfree(conf->mirrors);
3827 3828
	kfree(conf->mirrors_old);
	kfree(conf->mirrors_new);
3829 3830
	if (conf->bio_split)
		bioset_free(conf->bio_split);
L
Linus Torvalds 已提交
3831 3832 3833
	kfree(conf);
}

3834
static void raid10_quiesce(struct mddev *mddev, int quiesce)
3835
{
3836
	struct r10conf *conf = mddev->private;
3837

3838
	if (quiesce)
3839
		raise_barrier(conf, 0);
3840
	else
3841 3842
		lower_barrier(conf);
}
L
Linus Torvalds 已提交
3843

3844 3845 3846 3847 3848 3849 3850 3851 3852 3853 3854 3855 3856 3857 3858 3859 3860
static int raid10_resize(struct mddev *mddev, sector_t sectors)
{
	/* Resize of 'far' arrays is not supported.
	 * For 'near' and 'offset' arrays we can set the
	 * number of sectors used to be an appropriate multiple
	 * of the chunk size.
	 * For 'offset', this is far_copies*chunksize.
	 * For 'near' the multiplier is the LCM of
	 * near_copies and raid_disks.
	 * So if far_copies > 1 && !far_offset, fail.
	 * Else find LCM(raid_disks, near_copy)*far_copies and
	 * multiply by chunk_size.  Then round to this number.
	 * This is mostly done by raid10_size()
	 */
	struct r10conf *conf = mddev->private;
	sector_t oldsize, size;

3861 3862 3863
	if (mddev->reshape_position != MaxSector)
		return -EBUSY;

3864
	if (conf->geo.far_copies > 1 && !conf->geo.far_offset)
3865 3866 3867 3868
		return -EINVAL;

	oldsize = raid10_size(mddev, 0, 0);
	size = raid10_size(mddev, sectors, 0);
3869 3870
	if (mddev->external_size &&
	    mddev->array_sectors > size)
3871
		return -EINVAL;
3872 3873 3874 3875 3876 3877
	if (mddev->bitmap) {
		int ret = bitmap_resize(mddev->bitmap, size, 0, 0);
		if (ret)
			return ret;
	}
	md_set_array_sectors(mddev, size);
3878 3879 3880 3881 3882
	if (sectors > mddev->dev_sectors &&
	    mddev->recovery_cp > oldsize) {
		mddev->recovery_cp = oldsize;
		set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
	}
3883 3884
	calc_sectors(conf, sectors);
	mddev->dev_sectors = conf->dev_sectors;
3885 3886 3887 3888
	mddev->resync_max_sectors = size;
	return 0;
}

3889
static void *raid10_takeover_raid0(struct mddev *mddev, sector_t size, int devs)
3890
{
3891
	struct md_rdev *rdev;
3892
	struct r10conf *conf;
3893 3894

	if (mddev->degraded > 0) {
N
NeilBrown 已提交
3895 3896
		pr_warn("md/raid10:%s: Error: degraded raid0!\n",
			mdname(mddev));
3897 3898
		return ERR_PTR(-EINVAL);
	}
3899
	sector_div(size, devs);
3900 3901 3902 3903 3904 3905 3906 3907 3908 3909

	/* Set new parameters */
	mddev->new_level = 10;
	/* new layout: far_copies = 1, near_copies = 2 */
	mddev->new_layout = (1<<8) + 2;
	mddev->new_chunk_sectors = mddev->chunk_sectors;
	mddev->delta_disks = mddev->raid_disks;
	mddev->raid_disks *= 2;
	/* make sure it will be not marked as dirty */
	mddev->recovery_cp = MaxSector;
3910
	mddev->dev_sectors = size;
3911 3912

	conf = setup_conf(mddev);
3913
	if (!IS_ERR(conf)) {
N
NeilBrown 已提交
3914
		rdev_for_each(rdev, mddev)
3915
			if (rdev->raid_disk >= 0) {
3916
				rdev->new_raid_disk = rdev->raid_disk * 2;
3917 3918
				rdev->sectors = size;
			}
3919 3920 3921
		conf->barrier = 1;
	}

3922 3923 3924
	return conf;
}

3925
static void *raid10_takeover(struct mddev *mddev)
3926
{
3927
	struct r0conf *raid0_conf;
3928 3929 3930 3931 3932 3933

	/* raid10 can take over:
	 *  raid0 - providing it has only two drives
	 */
	if (mddev->level == 0) {
		/* for raid0 takeover only one zone is supported */
3934 3935
		raid0_conf = mddev->private;
		if (raid0_conf->nr_strip_zones > 1) {
N
NeilBrown 已提交
3936 3937
			pr_warn("md/raid10:%s: cannot takeover raid 0 with more than one zone.\n",
				mdname(mddev));
3938 3939
			return ERR_PTR(-EINVAL);
		}
3940 3941 3942
		return raid10_takeover_raid0(mddev,
			raid0_conf->strip_zone->zone_end,
			raid0_conf->strip_zone->nb_dev);
3943 3944 3945 3946
	}
	return ERR_PTR(-EINVAL);
}

N
NeilBrown 已提交
3947 3948 3949 3950 3951 3952 3953 3954 3955 3956 3957 3958 3959 3960 3961 3962 3963 3964 3965 3966 3967 3968 3969 3970 3971 3972 3973 3974 3975 3976 3977 3978 3979 3980 3981 3982 3983 3984 3985 3986 3987
static int raid10_check_reshape(struct mddev *mddev)
{
	/* Called when there is a request to change
	 * - layout (to ->new_layout)
	 * - chunk size (to ->new_chunk_sectors)
	 * - raid_disks (by delta_disks)
	 * or when trying to restart a reshape that was ongoing.
	 *
	 * We need to validate the request and possibly allocate
	 * space if that might be an issue later.
	 *
	 * Currently we reject any reshape of a 'far' mode array,
	 * allow chunk size to change if new is generally acceptable,
	 * allow raid_disks to increase, and allow
	 * a switch between 'near' mode and 'offset' mode.
	 */
	struct r10conf *conf = mddev->private;
	struct geom geo;

	if (conf->geo.far_copies != 1 && !conf->geo.far_offset)
		return -EINVAL;

	if (setup_geo(&geo, mddev, geo_start) != conf->copies)
		/* mustn't change number of copies */
		return -EINVAL;
	if (geo.far_copies > 1 && !geo.far_offset)
		/* Cannot switch to 'far' mode */
		return -EINVAL;

	if (mddev->array_sectors & geo.chunk_mask)
			/* not factor of array size */
			return -EINVAL;

	if (!enough(conf, -1))
		return -EINVAL;

	kfree(conf->mirrors_new);
	conf->mirrors_new = NULL;
	if (mddev->delta_disks > 0) {
		/* allocate new 'mirrors' list */
		conf->mirrors_new = kzalloc(
3988
			sizeof(struct raid10_info)
N
NeilBrown 已提交
3989 3990 3991 3992 3993 3994 3995 3996 3997 3998 3999 4000 4001 4002 4003 4004 4005 4006 4007 4008 4009 4010 4011 4012 4013 4014 4015 4016 4017 4018 4019 4020 4021 4022 4023 4024 4025 4026 4027 4028 4029 4030 4031 4032 4033 4034 4035 4036 4037 4038 4039 4040 4041 4042 4043 4044 4045 4046 4047 4048 4049 4050 4051 4052 4053 4054 4055 4056 4057 4058 4059 4060 4061 4062 4063 4064 4065 4066 4067 4068 4069 4070 4071 4072 4073
			*(mddev->raid_disks +
			  mddev->delta_disks),
			GFP_KERNEL);
		if (!conf->mirrors_new)
			return -ENOMEM;
	}
	return 0;
}

/*
 * Need to check if array has failed when deciding whether to:
 *  - start an array
 *  - remove non-faulty devices
 *  - add a spare
 *  - allow a reshape
 * This determination is simple when no reshape is happening.
 * However if there is a reshape, we need to carefully check
 * both the before and after sections.
 * This is because some failed devices may only affect one
 * of the two sections, and some non-in_sync devices may
 * be insync in the section most affected by failed devices.
 */
static int calc_degraded(struct r10conf *conf)
{
	int degraded, degraded2;
	int i;

	rcu_read_lock();
	degraded = 0;
	/* 'prev' section first */
	for (i = 0; i < conf->prev.raid_disks; i++) {
		struct md_rdev *rdev = rcu_dereference(conf->mirrors[i].rdev);
		if (!rdev || test_bit(Faulty, &rdev->flags))
			degraded++;
		else if (!test_bit(In_sync, &rdev->flags))
			/* When we can reduce the number of devices in
			 * an array, this might not contribute to
			 * 'degraded'.  It does now.
			 */
			degraded++;
	}
	rcu_read_unlock();
	if (conf->geo.raid_disks == conf->prev.raid_disks)
		return degraded;
	rcu_read_lock();
	degraded2 = 0;
	for (i = 0; i < conf->geo.raid_disks; i++) {
		struct md_rdev *rdev = rcu_dereference(conf->mirrors[i].rdev);
		if (!rdev || test_bit(Faulty, &rdev->flags))
			degraded2++;
		else if (!test_bit(In_sync, &rdev->flags)) {
			/* If reshape is increasing the number of devices,
			 * this section has already been recovered, so
			 * it doesn't contribute to degraded.
			 * else it does.
			 */
			if (conf->geo.raid_disks <= conf->prev.raid_disks)
				degraded2++;
		}
	}
	rcu_read_unlock();
	if (degraded2 > degraded)
		return degraded2;
	return degraded;
}

static int raid10_start_reshape(struct mddev *mddev)
{
	/* A 'reshape' has been requested. This commits
	 * the various 'new' fields and sets MD_RECOVER_RESHAPE
	 * This also checks if there are enough spares and adds them
	 * to the array.
	 * We currently require enough spares to make the final
	 * array non-degraded.  We also require that the difference
	 * between old and new data_offset - on each device - is
	 * enough that we never risk over-writing.
	 */

	unsigned long before_length, after_length;
	sector_t min_offset_diff = 0;
	int first = 1;
	struct geom new;
	struct r10conf *conf = mddev->private;
	struct md_rdev *rdev;
	int spares = 0;
4074
	int ret;
N
NeilBrown 已提交
4075 4076 4077 4078 4079 4080 4081 4082 4083 4084 4085 4086 4087 4088 4089 4090 4091 4092 4093 4094 4095 4096 4097 4098 4099

	if (test_bit(MD_RECOVERY_RUNNING, &mddev->recovery))
		return -EBUSY;

	if (setup_geo(&new, mddev, geo_start) != conf->copies)
		return -EINVAL;

	before_length = ((1 << conf->prev.chunk_shift) *
			 conf->prev.far_copies);
	after_length = ((1 << conf->geo.chunk_shift) *
			conf->geo.far_copies);

	rdev_for_each(rdev, mddev) {
		if (!test_bit(In_sync, &rdev->flags)
		    && !test_bit(Faulty, &rdev->flags))
			spares++;
		if (rdev->raid_disk >= 0) {
			long long diff = (rdev->new_data_offset
					  - rdev->data_offset);
			if (!mddev->reshape_backwards)
				diff = -diff;
			if (diff < 0)
				diff = 0;
			if (first || diff < min_offset_diff)
				min_offset_diff = diff;
4100
			first = 0;
N
NeilBrown 已提交
4101 4102 4103 4104 4105 4106 4107 4108 4109 4110 4111 4112 4113
		}
	}

	if (max(before_length, after_length) > min_offset_diff)
		return -EINVAL;

	if (spares < mddev->delta_disks)
		return -EINVAL;

	conf->offset_diff = min_offset_diff;
	spin_lock_irq(&conf->device_lock);
	if (conf->mirrors_new) {
		memcpy(conf->mirrors_new, conf->mirrors,
4114
		       sizeof(struct raid10_info)*conf->prev.raid_disks);
N
NeilBrown 已提交
4115
		smp_mb();
4116
		kfree(conf->mirrors_old);
N
NeilBrown 已提交
4117 4118 4119 4120 4121 4122 4123 4124 4125 4126
		conf->mirrors_old = conf->mirrors;
		conf->mirrors = conf->mirrors_new;
		conf->mirrors_new = NULL;
	}
	setup_geo(&conf->geo, mddev, geo_start);
	smp_mb();
	if (mddev->reshape_backwards) {
		sector_t size = raid10_size(mddev, 0, 0);
		if (size < mddev->array_sectors) {
			spin_unlock_irq(&conf->device_lock);
N
NeilBrown 已提交
4127 4128
			pr_warn("md/raid10:%s: array size must be reduce before number of disks\n",
				mdname(mddev));
N
NeilBrown 已提交
4129 4130 4131 4132 4133 4134
			return -EINVAL;
		}
		mddev->resync_max_sectors = size;
		conf->reshape_progress = size;
	} else
		conf->reshape_progress = 0;
4135
	conf->reshape_safe = conf->reshape_progress;
N
NeilBrown 已提交
4136 4137
	spin_unlock_irq(&conf->device_lock);

4138 4139 4140 4141 4142 4143 4144 4145
	if (mddev->delta_disks && mddev->bitmap) {
		ret = bitmap_resize(mddev->bitmap,
				    raid10_size(mddev, 0,
						conf->geo.raid_disks),
				    0, 0);
		if (ret)
			goto abort;
	}
N
NeilBrown 已提交
4146 4147 4148 4149 4150 4151 4152 4153 4154 4155 4156 4157 4158 4159 4160 4161 4162 4163 4164 4165 4166 4167 4168 4169 4170 4171 4172 4173 4174
	if (mddev->delta_disks > 0) {
		rdev_for_each(rdev, mddev)
			if (rdev->raid_disk < 0 &&
			    !test_bit(Faulty, &rdev->flags)) {
				if (raid10_add_disk(mddev, rdev) == 0) {
					if (rdev->raid_disk >=
					    conf->prev.raid_disks)
						set_bit(In_sync, &rdev->flags);
					else
						rdev->recovery_offset = 0;

					if (sysfs_link_rdev(mddev, rdev))
						/* Failure here  is OK */;
				}
			} else if (rdev->raid_disk >= conf->prev.raid_disks
				   && !test_bit(Faulty, &rdev->flags)) {
				/* This is a spare that was manually added */
				set_bit(In_sync, &rdev->flags);
			}
	}
	/* When a reshape changes the number of devices,
	 * ->degraded is measured against the larger of the
	 * pre and  post numbers.
	 */
	spin_lock_irq(&conf->device_lock);
	mddev->degraded = calc_degraded(conf);
	spin_unlock_irq(&conf->device_lock);
	mddev->raid_disks = conf->geo.raid_disks;
	mddev->reshape_position = conf->reshape_progress;
4175
	set_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags);
N
NeilBrown 已提交
4176 4177 4178

	clear_bit(MD_RECOVERY_SYNC, &mddev->recovery);
	clear_bit(MD_RECOVERY_CHECK, &mddev->recovery);
4179
	clear_bit(MD_RECOVERY_DONE, &mddev->recovery);
N
NeilBrown 已提交
4180 4181 4182 4183 4184 4185
	set_bit(MD_RECOVERY_RESHAPE, &mddev->recovery);
	set_bit(MD_RECOVERY_RUNNING, &mddev->recovery);

	mddev->sync_thread = md_register_thread(md_do_sync, mddev,
						"reshape");
	if (!mddev->sync_thread) {
4186 4187
		ret = -EAGAIN;
		goto abort;
N
NeilBrown 已提交
4188 4189 4190 4191 4192
	}
	conf->reshape_checkpoint = jiffies;
	md_wakeup_thread(mddev->sync_thread);
	md_new_event(mddev);
	return 0;
4193 4194 4195 4196 4197 4198 4199 4200 4201 4202

abort:
	mddev->recovery = 0;
	spin_lock_irq(&conf->device_lock);
	conf->geo = conf->prev;
	mddev->raid_disks = conf->geo.raid_disks;
	rdev_for_each(rdev, mddev)
		rdev->new_data_offset = rdev->data_offset;
	smp_wmb();
	conf->reshape_progress = MaxSector;
4203
	conf->reshape_safe = MaxSector;
4204 4205 4206
	mddev->reshape_position = MaxSector;
	spin_unlock_irq(&conf->device_lock);
	return ret;
N
NeilBrown 已提交
4207 4208 4209 4210 4211 4212 4213 4214 4215 4216 4217 4218 4219 4220 4221 4222 4223 4224 4225 4226 4227 4228 4229 4230 4231 4232 4233 4234 4235 4236 4237 4238 4239 4240 4241 4242 4243 4244 4245 4246
}

/* Calculate the last device-address that could contain
 * any block from the chunk that includes the array-address 's'
 * and report the next address.
 * i.e. the address returned will be chunk-aligned and after
 * any data that is in the chunk containing 's'.
 */
static sector_t last_dev_address(sector_t s, struct geom *geo)
{
	s = (s | geo->chunk_mask) + 1;
	s >>= geo->chunk_shift;
	s *= geo->near_copies;
	s = DIV_ROUND_UP_SECTOR_T(s, geo->raid_disks);
	s *= geo->far_copies;
	s <<= geo->chunk_shift;
	return s;
}

/* Calculate the first device-address that could contain
 * any block from the chunk that includes the array-address 's'.
 * This too will be the start of a chunk
 */
static sector_t first_dev_address(sector_t s, struct geom *geo)
{
	s >>= geo->chunk_shift;
	s *= geo->near_copies;
	sector_div(s, geo->raid_disks);
	s *= geo->far_copies;
	s <<= geo->chunk_shift;
	return s;
}

static sector_t reshape_request(struct mddev *mddev, sector_t sector_nr,
				int *skipped)
{
	/* We simply copy at most one chunk (smallest of old and new)
	 * at a time, possibly less if that exceeds RESYNC_PAGES,
	 * or we hit a bad block or something.
	 * This might mean we pause for normal IO in the middle of
4247
	 * a chunk, but that is not a problem as mddev->reshape_position
N
NeilBrown 已提交
4248 4249 4250 4251 4252 4253 4254 4255 4256 4257 4258 4259 4260 4261 4262 4263 4264 4265 4266 4267 4268 4269 4270
	 * can record any location.
	 *
	 * If we will want to write to a location that isn't
	 * yet recorded as 'safe' (i.e. in metadata on disk) then
	 * we need to flush all reshape requests and update the metadata.
	 *
	 * When reshaping forwards (e.g. to more devices), we interpret
	 * 'safe' as the earliest block which might not have been copied
	 * down yet.  We divide this by previous stripe size and multiply
	 * by previous stripe length to get lowest device offset that we
	 * cannot write to yet.
	 * We interpret 'sector_nr' as an address that we want to write to.
	 * From this we use last_device_address() to find where we might
	 * write to, and first_device_address on the  'safe' position.
	 * If this 'next' write position is after the 'safe' position,
	 * we must update the metadata to increase the 'safe' position.
	 *
	 * When reshaping backwards, we round in the opposite direction
	 * and perform the reverse test:  next write position must not be
	 * less than current safe position.
	 *
	 * In all this the minimum difference in data offsets
	 * (conf->offset_diff - always positive) allows a bit of slack,
4271
	 * so next can be after 'safe', but not by more than offset_diff
N
NeilBrown 已提交
4272 4273 4274 4275 4276 4277 4278 4279 4280 4281 4282 4283 4284 4285 4286 4287 4288 4289 4290
	 *
	 * We need to prepare all the bios here before we start any IO
	 * to ensure the size we choose is acceptable to all devices.
	 * The means one for each copy for write-out and an extra one for
	 * read-in.
	 * We store the read-in bio in ->master_bio and the others in
	 * ->devs[x].bio and ->devs[x].repl_bio.
	 */
	struct r10conf *conf = mddev->private;
	struct r10bio *r10_bio;
	sector_t next, safe, last;
	int max_sectors;
	int nr_sectors;
	int s;
	struct md_rdev *rdev;
	int need_flush = 0;
	struct bio *blist;
	struct bio *bio, *read_bio;
	int sectors_done = 0;
4291
	struct page **pages;
N
NeilBrown 已提交
4292 4293 4294 4295 4296 4297 4298 4299 4300 4301 4302 4303 4304 4305 4306 4307 4308 4309 4310 4311 4312 4313 4314 4315 4316 4317 4318 4319 4320 4321 4322 4323 4324 4325 4326 4327 4328 4329 4330 4331 4332 4333 4334 4335 4336 4337 4338 4339 4340 4341 4342 4343 4344 4345 4346 4347 4348 4349 4350 4351 4352 4353 4354 4355 4356 4357 4358 4359 4360 4361 4362 4363 4364 4365 4366 4367 4368 4369 4370

	if (sector_nr == 0) {
		/* If restarting in the middle, skip the initial sectors */
		if (mddev->reshape_backwards &&
		    conf->reshape_progress < raid10_size(mddev, 0, 0)) {
			sector_nr = (raid10_size(mddev, 0, 0)
				     - conf->reshape_progress);
		} else if (!mddev->reshape_backwards &&
			   conf->reshape_progress > 0)
			sector_nr = conf->reshape_progress;
		if (sector_nr) {
			mddev->curr_resync_completed = sector_nr;
			sysfs_notify(&mddev->kobj, NULL, "sync_completed");
			*skipped = 1;
			return sector_nr;
		}
	}

	/* We don't use sector_nr to track where we are up to
	 * as that doesn't work well for ->reshape_backwards.
	 * So just use ->reshape_progress.
	 */
	if (mddev->reshape_backwards) {
		/* 'next' is the earliest device address that we might
		 * write to for this chunk in the new layout
		 */
		next = first_dev_address(conf->reshape_progress - 1,
					 &conf->geo);

		/* 'safe' is the last device address that we might read from
		 * in the old layout after a restart
		 */
		safe = last_dev_address(conf->reshape_safe - 1,
					&conf->prev);

		if (next + conf->offset_diff < safe)
			need_flush = 1;

		last = conf->reshape_progress - 1;
		sector_nr = last & ~(sector_t)(conf->geo.chunk_mask
					       & conf->prev.chunk_mask);
		if (sector_nr + RESYNC_BLOCK_SIZE/512 < last)
			sector_nr = last + 1 - RESYNC_BLOCK_SIZE/512;
	} else {
		/* 'next' is after the last device address that we
		 * might write to for this chunk in the new layout
		 */
		next = last_dev_address(conf->reshape_progress, &conf->geo);

		/* 'safe' is the earliest device address that we might
		 * read from in the old layout after a restart
		 */
		safe = first_dev_address(conf->reshape_safe, &conf->prev);

		/* Need to update metadata if 'next' might be beyond 'safe'
		 * as that would possibly corrupt data
		 */
		if (next > safe + conf->offset_diff)
			need_flush = 1;

		sector_nr = conf->reshape_progress;
		last  = sector_nr | (conf->geo.chunk_mask
				     & conf->prev.chunk_mask);

		if (sector_nr + RESYNC_BLOCK_SIZE/512 <= last)
			last = sector_nr + RESYNC_BLOCK_SIZE/512 - 1;
	}

	if (need_flush ||
	    time_after(jiffies, conf->reshape_checkpoint + 10*HZ)) {
		/* Need to update reshape_position in metadata */
		wait_barrier(conf);
		mddev->reshape_position = conf->reshape_progress;
		if (mddev->reshape_backwards)
			mddev->curr_resync_completed = raid10_size(mddev, 0, 0)
				- conf->reshape_progress;
		else
			mddev->curr_resync_completed = conf->reshape_progress;
		conf->reshape_checkpoint = jiffies;
4371
		set_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags);
N
NeilBrown 已提交
4372
		md_wakeup_thread(mddev->thread);
4373
		wait_event(mddev->sb_wait, mddev->sb_flags == 0 ||
4374 4375 4376 4377 4378
			   test_bit(MD_RECOVERY_INTR, &mddev->recovery));
		if (test_bit(MD_RECOVERY_INTR, &mddev->recovery)) {
			allow_barrier(conf);
			return sectors_done;
		}
N
NeilBrown 已提交
4379 4380 4381 4382 4383 4384
		conf->reshape_safe = mddev->reshape_position;
		allow_barrier(conf);
	}

read_more:
	/* Now schedule reads for blocks from sector_nr to last */
4385
	r10_bio = raid10_alloc_init_r10buf(conf);
4386
	r10_bio->state = 0;
N
NeilBrown 已提交
4387 4388 4389 4390 4391 4392 4393 4394 4395 4396 4397 4398 4399 4400
	raise_barrier(conf, sectors_done != 0);
	atomic_set(&r10_bio->remaining, 0);
	r10_bio->mddev = mddev;
	r10_bio->sector = sector_nr;
	set_bit(R10BIO_IsReshape, &r10_bio->state);
	r10_bio->sectors = last - sector_nr + 1;
	rdev = read_balance(conf, r10_bio, &max_sectors);
	BUG_ON(!test_bit(R10BIO_Previous, &r10_bio->state));

	if (!rdev) {
		/* Cannot read from here, so need to record bad blocks
		 * on all the target devices.
		 */
		// FIXME
4401
		mempool_free(r10_bio, conf->r10buf_pool);
N
NeilBrown 已提交
4402 4403 4404 4405 4406 4407
		set_bit(MD_RECOVERY_INTR, &mddev->recovery);
		return sectors_done;
	}

	read_bio = bio_alloc_mddev(GFP_KERNEL, RESYNC_PAGES, mddev);

4408
	bio_set_dev(read_bio, rdev->bdev);
4409
	read_bio->bi_iter.bi_sector = (r10_bio->devs[r10_bio->read_slot].addr
N
NeilBrown 已提交
4410 4411
			       + rdev->data_offset);
	read_bio->bi_private = r10_bio;
4412
	read_bio->bi_end_io = end_reshape_read;
M
Mike Christie 已提交
4413
	bio_set_op_attrs(read_bio, REQ_OP_READ, 0);
4414
	read_bio->bi_flags &= (~0UL << BIO_RESET_BITS);
4415
	read_bio->bi_status = 0;
N
NeilBrown 已提交
4416
	read_bio->bi_vcnt = 0;
4417
	read_bio->bi_iter.bi_size = 0;
N
NeilBrown 已提交
4418 4419 4420 4421 4422 4423 4424 4425 4426
	r10_bio->master_bio = read_bio;
	r10_bio->read_slot = r10_bio->devs[r10_bio->read_slot].devnum;

	/* Now find the locations in the new layout */
	__raid10_find_phys(&conf->geo, r10_bio);

	blist = read_bio;
	read_bio->bi_next = NULL;

4427
	rcu_read_lock();
N
NeilBrown 已提交
4428 4429 4430 4431 4432
	for (s = 0; s < conf->copies*2; s++) {
		struct bio *b;
		int d = r10_bio->devs[s/2].devnum;
		struct md_rdev *rdev2;
		if (s&1) {
4433
			rdev2 = rcu_dereference(conf->mirrors[d].replacement);
N
NeilBrown 已提交
4434 4435
			b = r10_bio->devs[s/2].repl_bio;
		} else {
4436
			rdev2 = rcu_dereference(conf->mirrors[d].rdev);
N
NeilBrown 已提交
4437 4438 4439 4440
			b = r10_bio->devs[s/2].bio;
		}
		if (!rdev2 || test_bit(Faulty, &rdev2->flags))
			continue;
K
Kent Overstreet 已提交
4441

4442
		bio_set_dev(b, rdev2->bdev);
4443 4444
		b->bi_iter.bi_sector = r10_bio->devs[s/2].addr +
			rdev2->new_data_offset;
N
NeilBrown 已提交
4445
		b->bi_end_io = end_reshape_write;
M
Mike Christie 已提交
4446
		bio_set_op_attrs(b, REQ_OP_WRITE, 0);
N
NeilBrown 已提交
4447 4448 4449 4450 4451 4452 4453
		b->bi_next = blist;
		blist = b;
	}

	/* Now add as many pages as possible to all of these bios. */

	nr_sectors = 0;
4454
	pages = get_resync_pages(r10_bio->devs[0].bio)->pages;
N
NeilBrown 已提交
4455
	for (s = 0 ; s < max_sectors; s += PAGE_SIZE >> 9) {
4456
		struct page *page = pages[s / (PAGE_SIZE >> 9)];
N
NeilBrown 已提交
4457 4458 4459 4460
		int len = (max_sectors - s) << 9;
		if (len > PAGE_SIZE)
			len = PAGE_SIZE;
		for (bio = blist; bio ; bio = bio->bi_next) {
4461 4462 4463 4464 4465
			/*
			 * won't fail because the vec table is big enough
			 * to hold all these pages
			 */
			bio_add_page(bio, page, len, 0);
N
NeilBrown 已提交
4466 4467 4468 4469
		}
		sector_nr += len >> 9;
		nr_sectors += len >> 9;
	}
4470
	rcu_read_unlock();
N
NeilBrown 已提交
4471 4472 4473
	r10_bio->sectors = nr_sectors;

	/* Now submit the read */
4474
	md_sync_acct_bio(read_bio, r10_bio->sectors);
N
NeilBrown 已提交
4475 4476 4477 4478 4479 4480 4481 4482 4483 4484 4485 4486 4487 4488 4489 4490 4491 4492 4493 4494 4495 4496 4497 4498 4499 4500 4501 4502 4503 4504 4505 4506 4507 4508 4509 4510 4511 4512 4513 4514 4515 4516 4517 4518 4519 4520 4521
	atomic_inc(&r10_bio->remaining);
	read_bio->bi_next = NULL;
	generic_make_request(read_bio);
	sector_nr += nr_sectors;
	sectors_done += nr_sectors;
	if (sector_nr <= last)
		goto read_more;

	/* Now that we have done the whole section we can
	 * update reshape_progress
	 */
	if (mddev->reshape_backwards)
		conf->reshape_progress -= sectors_done;
	else
		conf->reshape_progress += sectors_done;

	return sectors_done;
}

static void end_reshape_request(struct r10bio *r10_bio);
static int handle_reshape_read_error(struct mddev *mddev,
				     struct r10bio *r10_bio);
static void reshape_request_write(struct mddev *mddev, struct r10bio *r10_bio)
{
	/* Reshape read completed.  Hopefully we have a block
	 * to write out.
	 * If we got a read error then we do sync 1-page reads from
	 * elsewhere until we find the data - or give up.
	 */
	struct r10conf *conf = mddev->private;
	int s;

	if (!test_bit(R10BIO_Uptodate, &r10_bio->state))
		if (handle_reshape_read_error(mddev, r10_bio) < 0) {
			/* Reshape has been aborted */
			md_done_sync(mddev, r10_bio->sectors, 0);
			return;
		}

	/* We definitely have the data in the pages, schedule the
	 * writes.
	 */
	atomic_set(&r10_bio->remaining, 1);
	for (s = 0; s < conf->copies*2; s++) {
		struct bio *b;
		int d = r10_bio->devs[s/2].devnum;
		struct md_rdev *rdev;
4522
		rcu_read_lock();
N
NeilBrown 已提交
4523
		if (s&1) {
4524
			rdev = rcu_dereference(conf->mirrors[d].replacement);
N
NeilBrown 已提交
4525 4526
			b = r10_bio->devs[s/2].repl_bio;
		} else {
4527
			rdev = rcu_dereference(conf->mirrors[d].rdev);
N
NeilBrown 已提交
4528 4529
			b = r10_bio->devs[s/2].bio;
		}
4530 4531
		if (!rdev || test_bit(Faulty, &rdev->flags)) {
			rcu_read_unlock();
N
NeilBrown 已提交
4532
			continue;
4533
		}
N
NeilBrown 已提交
4534
		atomic_inc(&rdev->nr_pending);
4535
		rcu_read_unlock();
4536
		md_sync_acct_bio(b, r10_bio->sectors);
N
NeilBrown 已提交
4537 4538 4539 4540 4541 4542 4543 4544 4545 4546 4547 4548 4549 4550 4551 4552 4553
		atomic_inc(&r10_bio->remaining);
		b->bi_next = NULL;
		generic_make_request(b);
	}
	end_reshape_request(r10_bio);
}

static void end_reshape(struct r10conf *conf)
{
	if (test_bit(MD_RECOVERY_INTR, &conf->mddev->recovery))
		return;

	spin_lock_irq(&conf->device_lock);
	conf->prev = conf->geo;
	md_finish_reshape(conf->mddev);
	smp_wmb();
	conf->reshape_progress = MaxSector;
4554
	conf->reshape_safe = MaxSector;
N
NeilBrown 已提交
4555 4556 4557 4558 4559 4560 4561 4562 4563
	spin_unlock_irq(&conf->device_lock);

	/* read-ahead size must cover two whole stripes, which is
	 * 2 * (datadisks) * chunksize where 'n' is the number of raid devices
	 */
	if (conf->mddev->queue) {
		int stripe = conf->geo.raid_disks *
			((conf->mddev->chunk_sectors << 9) / PAGE_SIZE);
		stripe /= conf->geo.near_copies;
4564 4565
		if (conf->mddev->queue->backing_dev_info->ra_pages < 2 * stripe)
			conf->mddev->queue->backing_dev_info->ra_pages = 2 * stripe;
N
NeilBrown 已提交
4566 4567 4568 4569 4570 4571 4572 4573 4574 4575
	}
	conf->fullsync = 0;
}

static int handle_reshape_read_error(struct mddev *mddev,
				     struct r10bio *r10_bio)
{
	/* Use sync reads to get the blocks from somewhere else */
	int sectors = r10_bio->sectors;
	struct r10conf *conf = mddev->private;
M
Matthias Kaehlcke 已提交
4576
	struct r10bio *r10b;
N
NeilBrown 已提交
4577 4578
	int slot = 0;
	int idx = 0;
4579 4580
	struct page **pages;

M
Matthias Kaehlcke 已提交
4581 4582 4583 4584 4585 4586 4587
	r10b = kmalloc(sizeof(*r10b) +
	       sizeof(struct r10dev) * conf->copies, GFP_NOIO);
	if (!r10b) {
		set_bit(MD_RECOVERY_INTR, &mddev->recovery);
		return -ENOMEM;
	}

4588 4589
	/* reshape IOs share pages from .devs[0].bio */
	pages = get_resync_pages(r10_bio->devs[0].bio)->pages;
N
NeilBrown 已提交
4590

4591 4592
	r10b->sector = r10_bio->sector;
	__raid10_find_phys(&conf->prev, r10b);
N
NeilBrown 已提交
4593 4594 4595 4596 4597 4598 4599 4600 4601

	while (sectors) {
		int s = sectors;
		int success = 0;
		int first_slot = slot;

		if (s > (PAGE_SIZE >> 9))
			s = PAGE_SIZE >> 9;

4602
		rcu_read_lock();
N
NeilBrown 已提交
4603
		while (!success) {
4604
			int d = r10b->devs[slot].devnum;
4605
			struct md_rdev *rdev = rcu_dereference(conf->mirrors[d].rdev);
N
NeilBrown 已提交
4606 4607 4608 4609 4610 4611
			sector_t addr;
			if (rdev == NULL ||
			    test_bit(Faulty, &rdev->flags) ||
			    !test_bit(In_sync, &rdev->flags))
				goto failed;

4612
			addr = r10b->devs[slot].addr + idx * PAGE_SIZE;
4613 4614
			atomic_inc(&rdev->nr_pending);
			rcu_read_unlock();
N
NeilBrown 已提交
4615 4616 4617
			success = sync_page_io(rdev,
					       addr,
					       s << 9,
4618
					       pages[idx],
M
Mike Christie 已提交
4619
					       REQ_OP_READ, 0, false);
4620 4621
			rdev_dec_pending(rdev, mddev);
			rcu_read_lock();
N
NeilBrown 已提交
4622 4623 4624 4625 4626 4627 4628 4629 4630
			if (success)
				break;
		failed:
			slot++;
			if (slot >= conf->copies)
				slot = 0;
			if (slot == first_slot)
				break;
		}
4631
		rcu_read_unlock();
N
NeilBrown 已提交
4632 4633 4634 4635
		if (!success) {
			/* couldn't read this block, must give up */
			set_bit(MD_RECOVERY_INTR,
				&mddev->recovery);
M
Matthias Kaehlcke 已提交
4636
			kfree(r10b);
N
NeilBrown 已提交
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			return -EIO;
		}
		sectors -= s;
		idx++;
	}
M
Matthias Kaehlcke 已提交
4642
	kfree(r10b);
N
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	return 0;
}

4646
static void end_reshape_write(struct bio *bio)
N
NeilBrown 已提交
4647
{
4648
	struct r10bio *r10_bio = get_resync_r10bio(bio);
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	struct mddev *mddev = r10_bio->mddev;
	struct r10conf *conf = mddev->private;
	int d;
	int slot;
	int repl;
	struct md_rdev *rdev = NULL;

	d = find_bio_disk(conf, r10_bio, bio, &slot, &repl);
	if (repl)
		rdev = conf->mirrors[d].replacement;
	if (!rdev) {
		smp_mb();
		rdev = conf->mirrors[d].rdev;
	}

4664
	if (bio->bi_status) {
N
NeilBrown 已提交
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		/* FIXME should record badblock */
		md_error(mddev, rdev);
	}

	rdev_dec_pending(rdev, mddev);
	end_reshape_request(r10_bio);
}

static void end_reshape_request(struct r10bio *r10_bio)
{
	if (!atomic_dec_and_test(&r10_bio->remaining))
		return;
	md_done_sync(r10_bio->mddev, r10_bio->sectors, 1);
	bio_put(r10_bio->master_bio);
	put_buf(r10_bio);
}

static void raid10_finish_reshape(struct mddev *mddev)
{
	struct r10conf *conf = mddev->private;

	if (test_bit(MD_RECOVERY_INTR, &mddev->recovery))
		return;

	if (mddev->delta_disks > 0) {
		sector_t size = raid10_size(mddev, 0, 0);
		md_set_array_sectors(mddev, size);
		if (mddev->recovery_cp > mddev->resync_max_sectors) {
			mddev->recovery_cp = mddev->resync_max_sectors;
			set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
		}
		mddev->resync_max_sectors = size;
4697 4698 4699 4700
		if (mddev->queue) {
			set_capacity(mddev->gendisk, mddev->array_sectors);
			revalidate_disk(mddev->gendisk);
		}
4701 4702
	} else {
		int d;
4703
		rcu_read_lock();
4704 4705 4706
		for (d = conf->geo.raid_disks ;
		     d < conf->geo.raid_disks - mddev->delta_disks;
		     d++) {
4707
			struct md_rdev *rdev = rcu_dereference(conf->mirrors[d].rdev);
4708 4709
			if (rdev)
				clear_bit(In_sync, &rdev->flags);
4710
			rdev = rcu_dereference(conf->mirrors[d].replacement);
4711 4712 4713
			if (rdev)
				clear_bit(In_sync, &rdev->flags);
		}
4714
		rcu_read_unlock();
N
NeilBrown 已提交
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	}
	mddev->layout = mddev->new_layout;
	mddev->chunk_sectors = 1 << conf->geo.chunk_shift;
	mddev->reshape_position = MaxSector;
	mddev->delta_disks = 0;
	mddev->reshape_backwards = 0;
}

4723
static struct md_personality raid10_personality =
L
Linus Torvalds 已提交
4724 4725
{
	.name		= "raid10",
4726
	.level		= 10,
L
Linus Torvalds 已提交
4727
	.owner		= THIS_MODULE,
S
Shaohua Li 已提交
4728 4729
	.make_request	= raid10_make_request,
	.run		= raid10_run,
N
NeilBrown 已提交
4730
	.free		= raid10_free,
S
Shaohua Li 已提交
4731 4732
	.status		= raid10_status,
	.error_handler	= raid10_error,
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Linus Torvalds 已提交
4733 4734 4735
	.hot_add_disk	= raid10_add_disk,
	.hot_remove_disk= raid10_remove_disk,
	.spare_active	= raid10_spare_active,
S
Shaohua Li 已提交
4736
	.sync_request	= raid10_sync_request,
4737
	.quiesce	= raid10_quiesce,
4738
	.size		= raid10_size,
4739
	.resize		= raid10_resize,
4740
	.takeover	= raid10_takeover,
N
NeilBrown 已提交
4741 4742 4743
	.check_reshape	= raid10_check_reshape,
	.start_reshape	= raid10_start_reshape,
	.finish_reshape	= raid10_finish_reshape,
4744
	.congested	= raid10_congested,
L
Linus Torvalds 已提交
4745 4746 4747 4748
};

static int __init raid_init(void)
{
4749
	return register_md_personality(&raid10_personality);
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Linus Torvalds 已提交
4750 4751 4752 4753
}

static void raid_exit(void)
{
4754
	unregister_md_personality(&raid10_personality);
L
Linus Torvalds 已提交
4755 4756 4757 4758 4759
}

module_init(raid_init);
module_exit(raid_exit);
MODULE_LICENSE("GPL");
4760
MODULE_DESCRIPTION("RAID10 (striped mirror) personality for MD");
L
Linus Torvalds 已提交
4761
MODULE_ALIAS("md-personality-9"); /* RAID10 */
4762
MODULE_ALIAS("md-raid10");
4763
MODULE_ALIAS("md-level-10");
4764 4765

module_param(max_queued_requests, int, S_IRUGO|S_IWUSR);