dm-raid.c 116.1 KB
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/*
 * Copyright (C) 2010-2011 Neil Brown
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 * Copyright (C) 2010-2018 Red Hat, Inc. All rights reserved.
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 *
 * This file is released under the GPL.
 */

#include <linux/slab.h>
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#include <linux/module.h>
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#include "md.h"
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#include "raid1.h"
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#include "raid5.h"
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#include "raid10.h"
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#include "md-bitmap.h"
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#include <linux/device-mapper.h>

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#define DM_MSG_PREFIX "raid"
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#define	MAX_RAID_DEVICES	253 /* md-raid kernel limit */
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/*
 * Minimum sectors of free reshape space per raid device
 */
#define	MIN_FREE_RESHAPE_SPACE to_sector(4*4096)

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/*
 * Minimum journal space 4 MiB in sectors.
 */
#define	MIN_RAID456_JOURNAL_SPACE (4*2048)

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static bool devices_handle_discard_safely = false;

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/*
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 * The following flags are used by dm-raid.c to set up the array state.
 * They must be cleared before md_run is called.
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 */
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#define FirstUse 10		/* rdev flag */
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struct raid_dev {
	/*
	 * Two DM devices, one to hold metadata and one to hold the
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	 * actual data/parity.	The reason for this is to not confuse
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	 * ti->len and give more flexibility in altering size and
	 * characteristics.
	 *
	 * While it is possible for this device to be associated
	 * with a different physical device than the data_dev, it
	 * is intended for it to be the same.
	 *    |--------- Physical Device ---------|
	 *    |- meta_dev -|------ data_dev ------|
	 */
	struct dm_dev *meta_dev;
	struct dm_dev *data_dev;
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	struct md_rdev rdev;
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};

/*
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 * Bits for establishing rs->ctr_flags
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 *
 * 1 = no flag value
 * 2 = flag with value
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 */
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#define __CTR_FLAG_SYNC			0  /* 1 */ /* Not with raid0! */
#define __CTR_FLAG_NOSYNC		1  /* 1 */ /* Not with raid0! */
#define __CTR_FLAG_REBUILD		2  /* 2 */ /* Not with raid0! */
#define __CTR_FLAG_DAEMON_SLEEP		3  /* 2 */ /* Not with raid0! */
#define __CTR_FLAG_MIN_RECOVERY_RATE	4  /* 2 */ /* Not with raid0! */
#define __CTR_FLAG_MAX_RECOVERY_RATE	5  /* 2 */ /* Not with raid0! */
#define __CTR_FLAG_MAX_WRITE_BEHIND	6  /* 2 */ /* Only with raid1! */
#define __CTR_FLAG_WRITE_MOSTLY		7  /* 2 */ /* Only with raid1! */
#define __CTR_FLAG_STRIPE_CACHE		8  /* 2 */ /* Only with raid4/5/6! */
#define __CTR_FLAG_REGION_SIZE		9  /* 2 */ /* Not with raid0! */
#define __CTR_FLAG_RAID10_COPIES	10 /* 2 */ /* Only with raid10 */
#define __CTR_FLAG_RAID10_FORMAT	11 /* 2 */ /* Only with raid10 */
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/* New for v1.9.0 */
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#define __CTR_FLAG_DELTA_DISKS		12 /* 2 */ /* Only with reshapable raid1/4/5/6/10! */
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#define __CTR_FLAG_DATA_OFFSET		13 /* 2 */ /* Only with reshapable raid4/5/6/10! */
#define __CTR_FLAG_RAID10_USE_NEAR_SETS 14 /* 2 */ /* Only with raid10! */

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/* New for v1.10.0 */
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#define __CTR_FLAG_JOURNAL_DEV		15 /* 2 */ /* Only with raid4/5/6 (journal device)! */

/* New for v1.11.1 */
#define __CTR_FLAG_JOURNAL_MODE		16 /* 2 */ /* Only with raid4/5/6 (journal mode)! */
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/*
 * Flags for rs->ctr_flags field.
 */
#define CTR_FLAG_SYNC			(1 << __CTR_FLAG_SYNC)
#define CTR_FLAG_NOSYNC			(1 << __CTR_FLAG_NOSYNC)
#define CTR_FLAG_REBUILD		(1 << __CTR_FLAG_REBUILD)
#define CTR_FLAG_DAEMON_SLEEP		(1 << __CTR_FLAG_DAEMON_SLEEP)
#define CTR_FLAG_MIN_RECOVERY_RATE	(1 << __CTR_FLAG_MIN_RECOVERY_RATE)
#define CTR_FLAG_MAX_RECOVERY_RATE	(1 << __CTR_FLAG_MAX_RECOVERY_RATE)
#define CTR_FLAG_MAX_WRITE_BEHIND	(1 << __CTR_FLAG_MAX_WRITE_BEHIND)
#define CTR_FLAG_WRITE_MOSTLY		(1 << __CTR_FLAG_WRITE_MOSTLY)
#define CTR_FLAG_STRIPE_CACHE		(1 << __CTR_FLAG_STRIPE_CACHE)
#define CTR_FLAG_REGION_SIZE		(1 << __CTR_FLAG_REGION_SIZE)
#define CTR_FLAG_RAID10_COPIES		(1 << __CTR_FLAG_RAID10_COPIES)
#define CTR_FLAG_RAID10_FORMAT		(1 << __CTR_FLAG_RAID10_FORMAT)
#define CTR_FLAG_DELTA_DISKS		(1 << __CTR_FLAG_DELTA_DISKS)
#define CTR_FLAG_DATA_OFFSET		(1 << __CTR_FLAG_DATA_OFFSET)
#define CTR_FLAG_RAID10_USE_NEAR_SETS	(1 << __CTR_FLAG_RAID10_USE_NEAR_SETS)
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#define CTR_FLAG_JOURNAL_DEV		(1 << __CTR_FLAG_JOURNAL_DEV)
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#define CTR_FLAG_JOURNAL_MODE		(1 << __CTR_FLAG_JOURNAL_MODE)
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/*
 * Definitions of various constructor flags to
 * be used in checks of valid / invalid flags
 * per raid level.
 */
/* Define all any sync flags */
#define	CTR_FLAGS_ANY_SYNC		(CTR_FLAG_SYNC | CTR_FLAG_NOSYNC)

/* Define flags for options without argument (e.g. 'nosync') */
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#define	CTR_FLAG_OPTIONS_NO_ARGS	(CTR_FLAGS_ANY_SYNC | \
					 CTR_FLAG_RAID10_USE_NEAR_SETS)
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/* Define flags for options with one argument (e.g. 'delta_disks +2') */
#define CTR_FLAG_OPTIONS_ONE_ARG (CTR_FLAG_REBUILD | \
				  CTR_FLAG_WRITE_MOSTLY | \
				  CTR_FLAG_DAEMON_SLEEP | \
				  CTR_FLAG_MIN_RECOVERY_RATE | \
				  CTR_FLAG_MAX_RECOVERY_RATE | \
				  CTR_FLAG_MAX_WRITE_BEHIND | \
				  CTR_FLAG_STRIPE_CACHE | \
				  CTR_FLAG_REGION_SIZE | \
				  CTR_FLAG_RAID10_COPIES | \
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				  CTR_FLAG_RAID10_FORMAT | \
				  CTR_FLAG_DELTA_DISKS | \
				  CTR_FLAG_DATA_OFFSET)
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/* Valid options definitions per raid level... */

/* "raid0" does only accept data offset */
#define RAID0_VALID_FLAGS	(CTR_FLAG_DATA_OFFSET)

/* "raid1" does not accept stripe cache, data offset, delta_disks or any raid10 options */
#define RAID1_VALID_FLAGS	(CTR_FLAGS_ANY_SYNC | \
				 CTR_FLAG_REBUILD | \
				 CTR_FLAG_WRITE_MOSTLY | \
				 CTR_FLAG_DAEMON_SLEEP | \
				 CTR_FLAG_MIN_RECOVERY_RATE | \
				 CTR_FLAG_MAX_RECOVERY_RATE | \
				 CTR_FLAG_MAX_WRITE_BEHIND | \
				 CTR_FLAG_REGION_SIZE | \
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				 CTR_FLAG_DELTA_DISKS | \
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				 CTR_FLAG_DATA_OFFSET)
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/* "raid10" does not accept any raid1 or stripe cache options */
#define RAID10_VALID_FLAGS	(CTR_FLAGS_ANY_SYNC | \
				 CTR_FLAG_REBUILD | \
				 CTR_FLAG_DAEMON_SLEEP | \
				 CTR_FLAG_MIN_RECOVERY_RATE | \
				 CTR_FLAG_MAX_RECOVERY_RATE | \
				 CTR_FLAG_REGION_SIZE | \
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				 CTR_FLAG_RAID10_COPIES | \
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				 CTR_FLAG_RAID10_FORMAT | \
				 CTR_FLAG_DELTA_DISKS | \
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				 CTR_FLAG_DATA_OFFSET | \
				 CTR_FLAG_RAID10_USE_NEAR_SETS)
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/*
 * "raid4/5/6" do not accept any raid1 or raid10 specific options
 *
 * "raid6" does not accept "nosync", because it is not guaranteed
 * that both parity and q-syndrome are being written properly with
 * any writes
 */
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#define RAID45_VALID_FLAGS	(CTR_FLAGS_ANY_SYNC | \
				 CTR_FLAG_REBUILD | \
				 CTR_FLAG_DAEMON_SLEEP | \
				 CTR_FLAG_MIN_RECOVERY_RATE | \
				 CTR_FLAG_MAX_RECOVERY_RATE | \
				 CTR_FLAG_STRIPE_CACHE | \
				 CTR_FLAG_REGION_SIZE | \
				 CTR_FLAG_DELTA_DISKS | \
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				 CTR_FLAG_DATA_OFFSET | \
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				 CTR_FLAG_JOURNAL_DEV | \
				 CTR_FLAG_JOURNAL_MODE)
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#define RAID6_VALID_FLAGS	(CTR_FLAG_SYNC | \
				 CTR_FLAG_REBUILD | \
				 CTR_FLAG_DAEMON_SLEEP | \
				 CTR_FLAG_MIN_RECOVERY_RATE | \
				 CTR_FLAG_MAX_RECOVERY_RATE | \
				 CTR_FLAG_STRIPE_CACHE | \
				 CTR_FLAG_REGION_SIZE | \
				 CTR_FLAG_DELTA_DISKS | \
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				 CTR_FLAG_DATA_OFFSET | \
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				 CTR_FLAG_JOURNAL_DEV | \
				 CTR_FLAG_JOURNAL_MODE)
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/* ...valid options definitions per raid level */
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/*
 * Flags for rs->runtime_flags field
 * (RT_FLAG prefix meaning "runtime flag")
 *
 * These are all internal and used to define runtime state,
 * e.g. to prevent another resume from preresume processing
 * the raid set all over again.
 */
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#define RT_FLAG_RS_PRERESUMED		0
#define RT_FLAG_RS_RESUMED		1
#define RT_FLAG_RS_BITMAP_LOADED	2
#define RT_FLAG_UPDATE_SBS		3
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#define RT_FLAG_RESHAPE_RS		4
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#define RT_FLAG_RS_SUSPENDED		5
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#define RT_FLAG_RS_IN_SYNC		6
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#define RT_FLAG_RS_RESYNCING		7
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/* Array elements of 64 bit needed for rebuild/failed disk bits */
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#define DISKS_ARRAY_ELEMS ((MAX_RAID_DEVICES + (sizeof(uint64_t) * 8 - 1)) / sizeof(uint64_t) / 8)

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/*
 * raid set level, layout and chunk sectors backup/restore
 */
struct rs_layout {
	int new_level;
	int new_layout;
	int new_chunk_sectors;
};

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struct raid_set {
	struct dm_target *ti;

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	uint32_t stripe_cache_entries;
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	unsigned long ctr_flags;
	unsigned long runtime_flags;
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	uint64_t rebuild_disks[DISKS_ARRAY_ELEMS];
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	int raid_disks;
	int delta_disks;
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	int data_offset;
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	int raid10_copies;
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	int requested_bitmap_chunk_sectors;
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	struct mddev md;
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	struct raid_type *raid_type;
	struct dm_target_callbacks callbacks;

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	/* Optional raid4/5/6 journal device */
	struct journal_dev {
		struct dm_dev *dev;
		struct md_rdev rdev;
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		int mode;
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	} journal_dev;

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	struct raid_dev dev[0];
};

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static void rs_config_backup(struct raid_set *rs, struct rs_layout *l)
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{
	struct mddev *mddev = &rs->md;

	l->new_level = mddev->new_level;
	l->new_layout = mddev->new_layout;
	l->new_chunk_sectors = mddev->new_chunk_sectors;
}

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static void rs_config_restore(struct raid_set *rs, struct rs_layout *l)
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{
	struct mddev *mddev = &rs->md;

	mddev->new_level = l->new_level;
	mddev->new_layout = l->new_layout;
	mddev->new_chunk_sectors = l->new_chunk_sectors;
}

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/* raid10 algorithms (i.e. formats) */
#define	ALGORITHM_RAID10_DEFAULT	0
#define	ALGORITHM_RAID10_NEAR		1
#define	ALGORITHM_RAID10_OFFSET		2
#define	ALGORITHM_RAID10_FAR		3

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/* Supported raid types and properties. */
static struct raid_type {
	const char *name;		/* RAID algorithm. */
	const char *descr;		/* Descriptor text for logging. */
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	const unsigned int parity_devs;	/* # of parity devices. */
	const unsigned int minimal_devs;/* minimal # of devices in set. */
	const unsigned int level;	/* RAID level. */
	const unsigned int algorithm;	/* RAID algorithm. */
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} raid_types[] = {
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	{"raid0",	  "raid0 (striping)",			    0, 2, 0,  0 /* NONE */},
	{"raid1",	  "raid1 (mirroring)",			    0, 2, 1,  0 /* NONE */},
	{"raid10_far",	  "raid10 far (striped mirrors)",	    0, 2, 10, ALGORITHM_RAID10_FAR},
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	{"raid10_offset", "raid10 offset (striped mirrors)",	    0, 2, 10, ALGORITHM_RAID10_OFFSET},
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	{"raid10_near",	  "raid10 near (striped mirrors)",	    0, 2, 10, ALGORITHM_RAID10_NEAR},
	{"raid10",	  "raid10 (striped mirrors)",		    0, 2, 10, ALGORITHM_RAID10_DEFAULT},
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	{"raid4",	  "raid4 (dedicated first parity disk)",    1, 2, 5,  ALGORITHM_PARITY_0}, /* raid4 layout = raid5_0 */
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	{"raid5_n",	  "raid5 (dedicated last parity disk)",	    1, 2, 5,  ALGORITHM_PARITY_N},
	{"raid5_ls",	  "raid5 (left symmetric)",		    1, 2, 5,  ALGORITHM_LEFT_SYMMETRIC},
	{"raid5_rs",	  "raid5 (right symmetric)",		    1, 2, 5,  ALGORITHM_RIGHT_SYMMETRIC},
	{"raid5_la",	  "raid5 (left asymmetric)",		    1, 2, 5,  ALGORITHM_LEFT_ASYMMETRIC},
	{"raid5_ra",	  "raid5 (right asymmetric)",		    1, 2, 5,  ALGORITHM_RIGHT_ASYMMETRIC},
	{"raid6_zr",	  "raid6 (zero restart)",		    2, 4, 6,  ALGORITHM_ROTATING_ZERO_RESTART},
	{"raid6_nr",	  "raid6 (N restart)",			    2, 4, 6,  ALGORITHM_ROTATING_N_RESTART},
	{"raid6_nc",	  "raid6 (N continue)",			    2, 4, 6,  ALGORITHM_ROTATING_N_CONTINUE},
	{"raid6_n_6",	  "raid6 (dedicated parity/Q n/6)",	    2, 4, 6,  ALGORITHM_PARITY_N_6},
	{"raid6_ls_6",	  "raid6 (left symmetric dedicated Q 6)",   2, 4, 6,  ALGORITHM_LEFT_SYMMETRIC_6},
	{"raid6_rs_6",	  "raid6 (right symmetric dedicated Q 6)",  2, 4, 6,  ALGORITHM_RIGHT_SYMMETRIC_6},
	{"raid6_la_6",	  "raid6 (left asymmetric dedicated Q 6)",  2, 4, 6,  ALGORITHM_LEFT_ASYMMETRIC_6},
	{"raid6_ra_6",	  "raid6 (right asymmetric dedicated Q 6)", 2, 4, 6,  ALGORITHM_RIGHT_ASYMMETRIC_6}
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};

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/* True, if @v is in inclusive range [@min, @max] */
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static bool __within_range(long v, long min, long max)
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{
	return v >= min && v <= max;
}

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/* All table line arguments are defined here */
static struct arg_name_flag {
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	const unsigned long flag;
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	const char *name;
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} __arg_name_flags[] = {
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	{ CTR_FLAG_SYNC, "sync"},
	{ CTR_FLAG_NOSYNC, "nosync"},
	{ CTR_FLAG_REBUILD, "rebuild"},
	{ CTR_FLAG_DAEMON_SLEEP, "daemon_sleep"},
	{ CTR_FLAG_MIN_RECOVERY_RATE, "min_recovery_rate"},
	{ CTR_FLAG_MAX_RECOVERY_RATE, "max_recovery_rate"},
	{ CTR_FLAG_MAX_WRITE_BEHIND, "max_write_behind"},
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	{ CTR_FLAG_WRITE_MOSTLY, "write_mostly"},
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	{ CTR_FLAG_STRIPE_CACHE, "stripe_cache"},
	{ CTR_FLAG_REGION_SIZE, "region_size"},
	{ CTR_FLAG_RAID10_COPIES, "raid10_copies"},
	{ CTR_FLAG_RAID10_FORMAT, "raid10_format"},
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	{ CTR_FLAG_DATA_OFFSET, "data_offset"},
	{ CTR_FLAG_DELTA_DISKS, "delta_disks"},
	{ CTR_FLAG_RAID10_USE_NEAR_SETS, "raid10_use_near_sets"},
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	{ CTR_FLAG_JOURNAL_DEV, "journal_dev" },
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	{ CTR_FLAG_JOURNAL_MODE, "journal_mode" },
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};

/* Return argument name string for given @flag */
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static const char *dm_raid_arg_name_by_flag(const uint32_t flag)
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{
	if (hweight32(flag) == 1) {
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		struct arg_name_flag *anf = __arg_name_flags + ARRAY_SIZE(__arg_name_flags);
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		while (anf-- > __arg_name_flags)
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			if (flag & anf->flag)
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				return anf->name;

	} else
		DMERR("%s called with more than one flag!", __func__);

	return NULL;
}

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/* Define correlation of raid456 journal cache modes and dm-raid target line parameters */
static struct {
	const int mode;
	const char *param;
} _raid456_journal_mode[] = {
	{ R5C_JOURNAL_MODE_WRITE_THROUGH , "writethrough" },
	{ R5C_JOURNAL_MODE_WRITE_BACK    , "writeback" }
};

/* Return MD raid4/5/6 journal mode for dm @journal_mode one */
static int dm_raid_journal_mode_to_md(const char *mode)
{
	int m = ARRAY_SIZE(_raid456_journal_mode);

	while (m--)
		if (!strcasecmp(mode, _raid456_journal_mode[m].param))
			return _raid456_journal_mode[m].mode;

	return -EINVAL;
}

/* Return dm-raid raid4/5/6 journal mode string for @mode */
static const char *md_journal_mode_to_dm_raid(const int mode)
{
	int m = ARRAY_SIZE(_raid456_journal_mode);

	while (m--)
		if (mode == _raid456_journal_mode[m].mode)
			return _raid456_journal_mode[m].param;

	return "unknown";
}

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/*
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 * Bool helpers to test for various raid levels of a raid set.
 * It's level as reported by the superblock rather than
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 * the requested raid_type passed to the constructor.
 */
/* Return true, if raid set in @rs is raid0 */
static bool rs_is_raid0(struct raid_set *rs)
{
	return !rs->md.level;
}

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/* Return true, if raid set in @rs is raid1 */
static bool rs_is_raid1(struct raid_set *rs)
{
	return rs->md.level == 1;
}

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/* Return true, if raid set in @rs is raid10 */
static bool rs_is_raid10(struct raid_set *rs)
{
	return rs->md.level == 10;
}

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/* Return true, if raid set in @rs is level 6 */
static bool rs_is_raid6(struct raid_set *rs)
{
	return rs->md.level == 6;
}

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/* Return true, if raid set in @rs is level 4, 5 or 6 */
static bool rs_is_raid456(struct raid_set *rs)
{
	return __within_range(rs->md.level, 4, 6);
}

/* Return true, if raid set in @rs is reshapable */
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static bool __is_raid10_far(int layout);
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static bool rs_is_reshapable(struct raid_set *rs)
{
	return rs_is_raid456(rs) ||
	       (rs_is_raid10(rs) && !__is_raid10_far(rs->md.new_layout));
}

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/* Return true, if raid set in @rs is recovering */
static bool rs_is_recovering(struct raid_set *rs)
{
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	return rs->md.recovery_cp < rs->md.dev_sectors;
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}

/* Return true, if raid set in @rs is reshaping */
static bool rs_is_reshaping(struct raid_set *rs)
{
	return rs->md.reshape_position != MaxSector;
}

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/*
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 * bool helpers to test for various raid levels of a raid type @rt
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 */

/* Return true, if raid type in @rt is raid0 */
static bool rt_is_raid0(struct raid_type *rt)
{
	return !rt->level;
}

/* Return true, if raid type in @rt is raid1 */
static bool rt_is_raid1(struct raid_type *rt)
{
	return rt->level == 1;
}

/* Return true, if raid type in @rt is raid10 */
static bool rt_is_raid10(struct raid_type *rt)
{
	return rt->level == 10;
}

/* Return true, if raid type in @rt is raid4/5 */
static bool rt_is_raid45(struct raid_type *rt)
{
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	return __within_range(rt->level, 4, 5);
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}

/* Return true, if raid type in @rt is raid6 */
static bool rt_is_raid6(struct raid_type *rt)
{
	return rt->level == 6;
}
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/* Return true, if raid type in @rt is raid4/5/6 */
static bool rt_is_raid456(struct raid_type *rt)
{
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	return __within_range(rt->level, 4, 6);
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}
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/* END: raid level bools */

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/* Return valid ctr flags for the raid level of @rs */
static unsigned long __valid_flags(struct raid_set *rs)
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{
	if (rt_is_raid0(rs->raid_type))
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		return RAID0_VALID_FLAGS;
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	else if (rt_is_raid1(rs->raid_type))
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		return RAID1_VALID_FLAGS;
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	else if (rt_is_raid10(rs->raid_type))
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		return RAID10_VALID_FLAGS;
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	else if (rt_is_raid45(rs->raid_type))
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		return RAID45_VALID_FLAGS;
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	else if (rt_is_raid6(rs->raid_type))
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		return RAID6_VALID_FLAGS;
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	return 0;
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}

/*
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 * Check for valid flags set on @rs
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 *
 * Has to be called after parsing of the ctr flags!
 */
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static int rs_check_for_valid_flags(struct raid_set *rs)
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{
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	if (rs->ctr_flags & ~__valid_flags(rs)) {
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		rs->ti->error = "Invalid flags combination";
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		return -EINVAL;
	}
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	return 0;
}

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/* MD raid10 bit definitions and helpers */
#define RAID10_OFFSET			(1 << 16) /* stripes with data copies area adjacent on devices */
#define RAID10_BROCKEN_USE_FAR_SETS	(1 << 17) /* Broken in raid10.c: use sets instead of whole stripe rotation */
#define RAID10_USE_FAR_SETS		(1 << 18) /* Use sets instead of whole stripe rotation */
#define RAID10_FAR_COPIES_SHIFT		8	  /* raid10 # far copies shift (2nd byte of layout) */

/* Return md raid10 near copies for @layout */
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static unsigned int __raid10_near_copies(int layout)
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{
	return layout & 0xFF;
}

/* Return md raid10 far copies for @layout */
M
Mike Snitzer 已提交
529
static unsigned int __raid10_far_copies(int layout)
530
{
M
Mike Snitzer 已提交
531
	return __raid10_near_copies(layout >> RAID10_FAR_COPIES_SHIFT);
532 533 534
}

/* Return true if md raid10 offset for @layout */
535
static bool __is_raid10_offset(int layout)
536
{
537
	return !!(layout & RAID10_OFFSET);
538 539 540
}

/* Return true if md raid10 near for @layout */
541
static bool __is_raid10_near(int layout)
542
{
M
Mike Snitzer 已提交
543
	return !__is_raid10_offset(layout) && __raid10_near_copies(layout) > 1;
544 545 546
}

/* Return true if md raid10 far for @layout */
547
static bool __is_raid10_far(int layout)
548
{
M
Mike Snitzer 已提交
549
	return !__is_raid10_offset(layout) && __raid10_far_copies(layout) > 1;
550 551 552 553
}

/* Return md raid10 layout string for @layout */
static const char *raid10_md_layout_to_format(int layout)
554 555
{
	/*
556 557 558
	 * Bit 16 stands for "offset"
	 * (i.e. adjacent stripes hold copies)
	 *
559 560
	 * Refer to MD's raid10.c for details
	 */
M
Mike Snitzer 已提交
561
	if (__is_raid10_offset(layout))
562 563
		return "offset";

M
Mike Snitzer 已提交
564
	if (__raid10_near_copies(layout) > 1)
565 566
		return "near";

567 568
	if (__raid10_far_copies(layout) > 1)
		return "far";
569

570
	return "unknown";
571 572
}

573
/* Return md raid10 algorithm for @name */
574
static int raid10_name_to_format(const char *name)
575 576 577 578 579 580 581 582 583 584 585 586 587
{
	if (!strcasecmp(name, "near"))
		return ALGORITHM_RAID10_NEAR;
	else if (!strcasecmp(name, "offset"))
		return ALGORITHM_RAID10_OFFSET;
	else if (!strcasecmp(name, "far"))
		return ALGORITHM_RAID10_FAR;

	return -EINVAL;
}

/* Return md raid10 copies for @layout */
static unsigned int raid10_md_layout_to_copies(int layout)
588
{
589
	return max(__raid10_near_copies(layout), __raid10_far_copies(layout));
590 591
}

592 593 594 595
/* Return md raid10 format id for @format string */
static int raid10_format_to_md_layout(struct raid_set *rs,
				      unsigned int algorithm,
				      unsigned int copies)
596
{
597
	unsigned int n = 1, f = 1, r = 0;
598

599 600 601 602 603 604 605 606 607 608
	/*
	 * MD resilienece flaw:
	 *
	 * enabling use_far_sets for far/offset formats causes copies
	 * to be colocated on the same devs together with their origins!
	 *
	 * -> disable it for now in the definition above
	 */
	if (algorithm == ALGORITHM_RAID10_DEFAULT ||
	    algorithm == ALGORITHM_RAID10_NEAR)
609
		n = copies;
610 611 612 613

	else if (algorithm == ALGORITHM_RAID10_OFFSET) {
		f = copies;
		r = RAID10_OFFSET;
614
		if (!test_bit(__CTR_FLAG_RAID10_USE_NEAR_SETS, &rs->ctr_flags))
615 616 617
			r |= RAID10_USE_FAR_SETS;

	} else if (algorithm == ALGORITHM_RAID10_FAR) {
618
		f = copies;
619
		r = !RAID10_OFFSET;
620
		if (!test_bit(__CTR_FLAG_RAID10_USE_NEAR_SETS, &rs->ctr_flags))
621
			r |= RAID10_USE_FAR_SETS;
622

623 624 625 626 627 628
	} else
		return -EINVAL;

	return r | (f << RAID10_FAR_COPIES_SHIFT) | n;
}
/* END: MD raid10 bit definitions and helpers */
629

630
/* Check for any of the raid10 algorithms */
631
static bool __got_raid10(struct raid_type *rtp, const int layout)
632 633 634 635 636
{
	if (rtp->level == 10) {
		switch (rtp->algorithm) {
		case ALGORITHM_RAID10_DEFAULT:
		case ALGORITHM_RAID10_NEAR:
M
Mike Snitzer 已提交
637
			return __is_raid10_near(layout);
638
		case ALGORITHM_RAID10_OFFSET:
M
Mike Snitzer 已提交
639
			return __is_raid10_offset(layout);
640
		case ALGORITHM_RAID10_FAR:
M
Mike Snitzer 已提交
641
			return __is_raid10_far(layout);
642 643 644 645
		default:
			break;
		}
	}
646

647
	return false;
648 649
}

650
/* Return raid_type for @name */
651
static struct raid_type *get_raid_type(const char *name)
N
NeilBrown 已提交
652
{
653
	struct raid_type *rtp = raid_types + ARRAY_SIZE(raid_types);
N
NeilBrown 已提交
654

655 656 657
	while (rtp-- > raid_types)
		if (!strcasecmp(rtp->name, name))
			return rtp;
N
NeilBrown 已提交
658 659 660 661

	return NULL;
}

662 663 664 665 666 667 668 669
/* Return raid_type for @name based derived from @level and @layout */
static struct raid_type *get_raid_type_by_ll(const int level, const int layout)
{
	struct raid_type *rtp = raid_types + ARRAY_SIZE(raid_types);

	while (rtp-- > raid_types) {
		/* RAID10 special checks based on @layout flags/properties */
		if (rtp->level == level &&
M
Mike Snitzer 已提交
670
		    (__got_raid10(rtp, layout) || rtp->algorithm == layout))
671 672 673 674 675 676
			return rtp;
	}

	return NULL;
}

677 678
/* Adjust rdev sectors */
static void rs_set_rdev_sectors(struct raid_set *rs)
679 680
{
	struct mddev *mddev = &rs->md;
681
	struct md_rdev *rdev;
682

683 684 685 686 687
	/*
	 * raid10 sets rdev->sector to the device size, which
	 * is unintended in case of out-of-place reshaping
	 */
	rdev_for_each(rdev, mddev)
688 689
		if (!test_bit(Journal, &rdev->flags))
			rdev->sectors = mddev->dev_sectors;
690
}
691

692 693 694 695 696 697 698 699
/*
 * Change bdev capacity of @rs in case of a disk add/remove reshape
 */
static void rs_set_capacity(struct raid_set *rs)
{
	struct gendisk *gendisk = dm_disk(dm_table_get_md(rs->ti->table));

	set_capacity(gendisk, rs->md.array_sectors);
700
	revalidate_disk(gendisk);
701 702
}

703 704 705 706 707 708 709 710 711 712 713 714 715
/*
 * Set the mddev properties in @rs to the current
 * ones retrieved from the freshest superblock
 */
static void rs_set_cur(struct raid_set *rs)
{
	struct mddev *mddev = &rs->md;

	mddev->new_level = mddev->level;
	mddev->new_layout = mddev->layout;
	mddev->new_chunk_sectors = mddev->chunk_sectors;
}

716 717 718 719 720 721 722 723 724 725 726
/*
 * Set the mddev properties in @rs to the new
 * ones requested by the ctr
 */
static void rs_set_new(struct raid_set *rs)
{
	struct mddev *mddev = &rs->md;

	mddev->level = mddev->new_level;
	mddev->layout = mddev->new_layout;
	mddev->chunk_sectors = mddev->new_chunk_sectors;
727
	mddev->raid_disks = rs->raid_disks;
728 729 730
	mddev->delta_disks = 0;
}

731
static struct raid_set *raid_set_alloc(struct dm_target *ti, struct raid_type *raid_type,
732
				       unsigned int raid_devs)
N
NeilBrown 已提交
733
{
734
	unsigned int i;
N
NeilBrown 已提交
735 736
	struct raid_set *rs;

737 738 739 740
	if (raid_devs <= raid_type->parity_devs) {
		ti->error = "Insufficient number of devices";
		return ERR_PTR(-EINVAL);
	}
N
NeilBrown 已提交
741

742
	rs = kzalloc(struct_size(rs, dev, raid_devs), GFP_KERNEL);
743 744 745 746
	if (!rs) {
		ti->error = "Cannot allocate raid context";
		return ERR_PTR(-ENOMEM);
	}
N
NeilBrown 已提交
747 748 749

	mddev_init(&rs->md);

750 751 752
	rs->raid_disks = raid_devs;
	rs->delta_disks = 0;

N
NeilBrown 已提交
753 754
	rs->ti = ti;
	rs->raid_type = raid_type;
755
	rs->stripe_cache_entries = 256;
N
NeilBrown 已提交
756 757 758 759 760 761
	rs->md.raid_disks = raid_devs;
	rs->md.level = raid_type->level;
	rs->md.new_level = rs->md.level;
	rs->md.layout = raid_type->algorithm;
	rs->md.new_layout = rs->md.layout;
	rs->md.delta_disks = 0;
762
	rs->md.recovery_cp = MaxSector;
N
NeilBrown 已提交
763 764 765 766 767 768 769 770 771 772

	for (i = 0; i < raid_devs; i++)
		md_rdev_init(&rs->dev[i].rdev);

	/*
	 * Remaining items to be initialized by further RAID params:
	 *  rs->md.persistent
	 *  rs->md.external
	 *  rs->md.chunk_sectors
	 *  rs->md.new_chunk_sectors
773
	 *  rs->md.dev_sectors
N
NeilBrown 已提交
774 775 776 777 778
	 */

	return rs;
}

779
/* Free all @rs allocations */
780
static void raid_set_free(struct raid_set *rs)
N
NeilBrown 已提交
781 782 783
{
	int i;

784 785 786 787 788
	if (rs->journal_dev.dev) {
		md_rdev_clear(&rs->journal_dev.rdev);
		dm_put_device(rs->ti, rs->journal_dev.dev);
	}

789
	for (i = 0; i < rs->raid_disks; i++) {
790 791
		if (rs->dev[i].meta_dev)
			dm_put_device(rs->ti, rs->dev[i].meta_dev);
792
		md_rdev_clear(&rs->dev[i].rdev);
N
NeilBrown 已提交
793 794
		if (rs->dev[i].data_dev)
			dm_put_device(rs->ti, rs->dev[i].data_dev);
795
	}
N
NeilBrown 已提交
796 797 798 799 800 801 802 803 804

	kfree(rs);
}

/*
 * For every device we have two words
 *  <meta_dev>: meta device name or '-' if missing
 *  <data_dev>: data device name or '-' if missing
 *
805 806 807 808 809 810 811 812 813
 * The following are permitted:
 *    - -
 *    - <data_dev>
 *    <meta_dev> <data_dev>
 *
 * The following is not allowed:
 *    <meta_dev> -
 *
 * This code parses those words.  If there is a failure,
814
 * the caller must use raid_set_free() to unwind the operations.
N
NeilBrown 已提交
815
 */
816
static int parse_dev_params(struct raid_set *rs, struct dm_arg_set *as)
N
NeilBrown 已提交
817 818 819 820
{
	int i;
	int rebuild = 0;
	int metadata_available = 0;
821
	int r = 0;
822
	const char *arg;
N
NeilBrown 已提交
823

824 825 826 827 828
	/* Put off the number of raid devices argument to get to dev pairs */
	arg = dm_shift_arg(as);
	if (!arg)
		return -EINVAL;

829
	for (i = 0; i < rs->raid_disks; i++) {
N
NeilBrown 已提交
830 831 832 833 834 835
		rs->dev[i].rdev.raid_disk = i;

		rs->dev[i].meta_dev = NULL;
		rs->dev[i].data_dev = NULL;

		/*
836 837
		 * There are no offsets initially.
		 * Out of place reshape will set them accordingly.
N
NeilBrown 已提交
838 839
		 */
		rs->dev[i].rdev.data_offset = 0;
840
		rs->dev[i].rdev.new_data_offset = 0;
N
NeilBrown 已提交
841 842
		rs->dev[i].rdev.mddev = &rs->md;

843 844 845 846 847
		arg = dm_shift_arg(as);
		if (!arg)
			return -EINVAL;

		if (strcmp(arg, "-")) {
848 849 850 851 852 853
			r = dm_get_device(rs->ti, arg, dm_table_get_mode(rs->ti->table),
					  &rs->dev[i].meta_dev);
			if (r) {
				rs->ti->error = "RAID metadata device lookup failure";
				return r;
			}
854 855

			rs->dev[i].rdev.sb_page = alloc_page(GFP_KERNEL);
856 857 858 859
			if (!rs->dev[i].rdev.sb_page) {
				rs->ti->error = "Failed to allocate superblock page";
				return -ENOMEM;
			}
N
NeilBrown 已提交
860 861
		}

862 863 864 865 866
		arg = dm_shift_arg(as);
		if (!arg)
			return -EINVAL;

		if (!strcmp(arg, "-")) {
N
NeilBrown 已提交
867
			if (!test_bit(In_sync, &rs->dev[i].rdev.flags) &&
868 869 870 871
			    (!rs->dev[i].rdev.recovery_offset)) {
				rs->ti->error = "Drive designated for rebuild not specified";
				return -EINVAL;
			}
N
NeilBrown 已提交
872

873 874 875 876
			if (rs->dev[i].meta_dev) {
				rs->ti->error = "No data device supplied with metadata device";
				return -EINVAL;
			}
877

N
NeilBrown 已提交
878 879 880
			continue;
		}

881 882 883 884 885 886
		r = dm_get_device(rs->ti, arg, dm_table_get_mode(rs->ti->table),
				  &rs->dev[i].data_dev);
		if (r) {
			rs->ti->error = "RAID device lookup failure";
			return r;
		}
N
NeilBrown 已提交
887

888 889 890 891
		if (rs->dev[i].meta_dev) {
			metadata_available = 1;
			rs->dev[i].rdev.meta_bdev = rs->dev[i].meta_dev->bdev;
		}
N
NeilBrown 已提交
892
		rs->dev[i].rdev.bdev = rs->dev[i].data_dev->bdev;
893
		list_add_tail(&rs->dev[i].rdev.same_set, &rs->md.disks);
N
NeilBrown 已提交
894 895 896 897
		if (!test_bit(In_sync, &rs->dev[i].rdev.flags))
			rebuild++;
	}

898 899 900
	if (rs->journal_dev.dev)
		list_add_tail(&rs->journal_dev.rdev.same_set, &rs->md.disks);

N
NeilBrown 已提交
901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916
	if (metadata_available) {
		rs->md.external = 0;
		rs->md.persistent = 1;
		rs->md.major_version = 2;
	} else if (rebuild && !rs->md.recovery_cp) {
		/*
		 * Without metadata, we will not be able to tell if the array
		 * is in-sync or not - we must assume it is not.  Therefore,
		 * it is impossible to rebuild a drive.
		 *
		 * Even if there is metadata, the on-disk information may
		 * indicate that the array is not in-sync and it will then
		 * fail at that time.
		 *
		 * User could specify 'nosync' option if desperate.
		 */
917 918
		rs->ti->error = "Unable to rebuild drive while array is not in-sync";
		return -EINVAL;
N
NeilBrown 已提交
919 920 921 922 923
	}

	return 0;
}

924 925 926 927 928 929 930 931 932 933 934 935 936 937
/*
 * validate_region_size
 * @rs
 * @region_size:  region size in sectors.  If 0, pick a size (4MiB default).
 *
 * Set rs->md.bitmap_info.chunksize (which really refers to 'region size').
 * Ensure that (ti->len/region_size < 2^21) - required by MD bitmap.
 *
 * Returns: 0 on success, -EINVAL on failure.
 */
static int validate_region_size(struct raid_set *rs, unsigned long region_size)
{
	unsigned long min_region_size = rs->ti->len / (1 << 21);

938 939 940
	if (rs_is_raid0(rs))
		return 0;

941 942
	if (!region_size) {
		/*
943
		 * Choose a reasonable default.	 All figures in sectors.
944 945
		 */
		if (min_region_size > (1 << 13)) {
946
			/* If not a power of 2, make it the next power of 2 */
947
			region_size = roundup_pow_of_two(min_region_size);
948 949 950 951 952 953 954 955 956 957
			DMINFO("Choosing default region size of %lu sectors",
			       region_size);
		} else {
			DMINFO("Choosing default region size of 4MiB");
			region_size = 1 << 13; /* sectors */
		}
	} else {
		/*
		 * Validate user-supplied value.
		 */
958 959 960 961
		if (region_size > rs->ti->len) {
			rs->ti->error = "Supplied region size is too large";
			return -EINVAL;
		}
962 963 964 965

		if (region_size < min_region_size) {
			DMERR("Supplied region_size (%lu sectors) below minimum (%lu)",
			      region_size, min_region_size);
966 967
			rs->ti->error = "Supplied region size is too small";
			return -EINVAL;
968 969
		}

970 971 972 973
		if (!is_power_of_2(region_size)) {
			rs->ti->error = "Region size is not a power of 2";
			return -EINVAL;
		}
974

975 976 977 978
		if (region_size < rs->md.chunk_sectors) {
			rs->ti->error = "Region size is smaller than the chunk size";
			return -EINVAL;
		}
979 980 981 982 983
	}

	/*
	 * Convert sectors to bytes.
	 */
984
	rs->md.bitmap_info.chunksize = to_bytes(region_size);
985 986 987 988

	return 0;
}

989
/*
990
 * validate_raid_redundancy
991 992
 * @rs
 *
993 994
 * Determine if there are enough devices in the array that haven't
 * failed (or are being rebuilt) to form a usable array.
995 996 997
 *
 * Returns: 0 on success, -EINVAL on failure.
 */
998
static int validate_raid_redundancy(struct raid_set *rs)
999
{
1000 1001 1002
	unsigned int i, rebuild_cnt = 0;
	unsigned int rebuilds_per_group = 0, copies;
	unsigned int group_size, last_group_start;
1003 1004

	for (i = 0; i < rs->md.raid_disks; i++)
1005 1006
		if (!test_bit(In_sync, &rs->dev[i].rdev.flags) ||
		    !rs->dev[i].rdev.sb_page)
1007 1008
			rebuild_cnt++;

1009
	switch (rs->md.level) {
1010 1011
	case 0:
		break;
1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022
	case 1:
		if (rebuild_cnt >= rs->md.raid_disks)
			goto too_many;
		break;
	case 4:
	case 5:
	case 6:
		if (rebuild_cnt > rs->raid_type->parity_devs)
			goto too_many;
		break;
	case 10:
1023
		copies = raid10_md_layout_to_copies(rs->md.new_layout);
1024 1025 1026 1027 1028
		if (copies < 2) {
			DMERR("Bogus raid10 data copies < 2!");
			return -EINVAL;
		}

1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041
		if (rebuild_cnt < copies)
			break;

		/*
		 * It is possible to have a higher rebuild count for RAID10,
		 * as long as the failed devices occur in different mirror
		 * groups (i.e. different stripes).
		 *
		 * When checking "near" format, make sure no adjacent devices
		 * have failed beyond what can be handled.  In addition to the
		 * simple case where the number of devices is a multiple of the
		 * number of copies, we must also handle cases where the number
		 * of devices is not a multiple of the number of copies.
1042 1043 1044
		 * E.g.	   dev1 dev2 dev3 dev4 dev5
		 *	    A	 A    B	   B	C
		 *	    C	 D    D	   E	E
1045
		 */
1046
		if (__is_raid10_near(rs->md.new_layout)) {
1047
			for (i = 0; i < rs->md.raid_disks; i++) {
1048 1049
				if (!(i % copies))
					rebuilds_per_group = 0;
1050
				if ((!rs->dev[i].rdev.sb_page ||
1051
				    !test_bit(In_sync, &rs->dev[i].rdev.flags)) &&
1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065
				    (++rebuilds_per_group >= copies))
					goto too_many;
			}
			break;
		}

		/*
		 * When checking "far" and "offset" formats, we need to ensure
		 * that the device that holds its copy is not also dead or
		 * being rebuilt.  (Note that "far" and "offset" formats only
		 * support two copies right now.  These formats also only ever
		 * use the 'use_far_sets' variant.)
		 *
		 * This check is somewhat complicated by the need to account
1066
		 * for arrays that are not a multiple of (far) copies.	This
1067 1068 1069 1070 1071 1072 1073 1074
		 * results in the need to treat the last (potentially larger)
		 * set differently.
		 */
		group_size = (rs->md.raid_disks / copies);
		last_group_start = (rs->md.raid_disks / group_size) - 1;
		last_group_start *= group_size;
		for (i = 0; i < rs->md.raid_disks; i++) {
			if (!(i % copies) && !(i > last_group_start))
1075
				rebuilds_per_group = 0;
1076 1077
			if ((!rs->dev[i].rdev.sb_page ||
			     !test_bit(In_sync, &rs->dev[i].rdev.flags)) &&
1078
			    (++rebuilds_per_group >= copies))
1079
					goto too_many;
1080 1081
		}
		break;
1082
	default:
1083 1084
		if (rebuild_cnt)
			return -EINVAL;
1085 1086 1087 1088 1089 1090 1091 1092
	}

	return 0;

too_many:
	return -EINVAL;
}

N
NeilBrown 已提交
1093 1094 1095 1096
/*
 * Possible arguments are...
 *	<chunk_size> [optional_args]
 *
J
Jonathan Brassow 已提交
1097 1098
 * Argument definitions
 *    <chunk_size>			The number of sectors per disk that
1099
 *					will form the "stripe"
J
Jonathan Brassow 已提交
1100
 *    [[no]sync]			Force or prevent recovery of the
1101
 *					entire array
N
NeilBrown 已提交
1102
 *    [rebuild <idx>]			Rebuild the drive indicated by the index
J
Jonathan Brassow 已提交
1103
 *    [daemon_sleep <ms>]		Time between bitmap daemon work to
1104
 *					clear bits
N
NeilBrown 已提交
1105 1106
 *    [min_recovery_rate <kB/sec/disk>]	Throttle RAID initialization
 *    [max_recovery_rate <kB/sec/disk>]	Throttle RAID initialization
1107
 *    [write_mostly <idx>]		Indicate a write mostly drive via index
N
NeilBrown 已提交
1108 1109
 *    [max_write_behind <sectors>]	See '-write-behind=' (man mdadm)
 *    [stripe_cache <sectors>]		Stripe cache size for higher RAIDs
1110
 *    [region_size <sectors>]		Defines granularity of bitmap
1111 1112
 *    [journal_dev <dev>]		raid4/5/6 journaling deviice
 *    					(i.e. write hole closing log)
1113 1114
 *
 * RAID10-only options:
1115
 *    [raid10_copies <# copies>]	Number of copies.  (Default: 2)
1116
 *    [raid10_format <near|far|offset>] Layout algorithm.  (Default: near)
N
NeilBrown 已提交
1117
 */
1118
static int parse_raid_params(struct raid_set *rs, struct dm_arg_set *as,
1119
			     unsigned int num_raid_params)
N
NeilBrown 已提交
1120
{
1121
	int value, raid10_format = ALGORITHM_RAID10_DEFAULT;
1122 1123 1124
	unsigned int raid10_copies = 2;
	unsigned int i, write_mostly = 0;
	unsigned int region_size = 0;
1125
	sector_t max_io_len;
1126
	const char *arg, *key;
1127
	struct raid_dev *rd;
1128
	struct raid_type *rt = rs->raid_type;
1129 1130 1131 1132

	arg = dm_shift_arg(as);
	num_raid_params--; /* Account for chunk_size argument */

1133
	if (kstrtoint(arg, 10, &value) < 0) {
1134 1135 1136
		rs->ti->error = "Bad numerical argument given for chunk_size";
		return -EINVAL;
	}
N
NeilBrown 已提交
1137 1138 1139

	/*
	 * First, parse the in-order required arguments
J
Jonathan Brassow 已提交
1140
	 * "chunk_size" is the only argument of this type.
N
NeilBrown 已提交
1141
	 */
1142
	if (rt_is_raid1(rt)) {
J
Jonathan Brassow 已提交
1143 1144 1145
		if (value)
			DMERR("Ignoring chunk size parameter for RAID 1");
		value = 0;
1146 1147 1148 1149 1150 1151 1152
	} else if (!is_power_of_2(value)) {
		rs->ti->error = "Chunk size must be a power of 2";
		return -EINVAL;
	} else if (value < 8) {
		rs->ti->error = "Chunk size value is too small";
		return -EINVAL;
	}
N
NeilBrown 已提交
1153 1154 1155 1156

	rs->md.new_chunk_sectors = rs->md.chunk_sectors = value;

	/*
1157 1158 1159 1160 1161
	 * We set each individual device as In_sync with a completed
	 * 'recovery_offset'.  If there has been a device failure or
	 * replacement then one of the following cases applies:
	 *
	 *   1) User specifies 'rebuild'.
1162
	 *	- Device is reset when param is read.
1163
	 *   2) A new device is supplied.
1164
	 *	- No matching superblock found, resets device.
1165
	 *   3) Device failure was transient and returns on reload.
1166
	 *	- Failure noticed, resets device for bitmap replay.
1167
	 *   4) Device hadn't completed recovery after previous failure.
1168
	 *	- Superblock is read and overrides recovery_offset.
1169 1170 1171
	 *
	 * What is found in the superblocks of the devices is always
	 * authoritative, unless 'rebuild' or '[no]sync' was specified.
N
NeilBrown 已提交
1172
	 */
1173
	for (i = 0; i < rs->raid_disks; i++) {
N
NeilBrown 已提交
1174
		set_bit(In_sync, &rs->dev[i].rdev.flags);
1175 1176
		rs->dev[i].rdev.recovery_offset = MaxSector;
	}
N
NeilBrown 已提交
1177

1178 1179 1180
	/*
	 * Second, parse the unordered optional arguments
	 */
N
NeilBrown 已提交
1181
	for (i = 0; i < num_raid_params; i++) {
1182
		key = dm_shift_arg(as);
1183 1184 1185 1186
		if (!key) {
			rs->ti->error = "Not enough raid parameters given";
			return -EINVAL;
		}
1187

1188
		if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_NOSYNC))) {
1189
			if (test_and_set_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags)) {
1190 1191 1192
				rs->ti->error = "Only one 'nosync' argument allowed";
				return -EINVAL;
			}
N
NeilBrown 已提交
1193 1194
			continue;
		}
1195
		if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_SYNC))) {
1196
			if (test_and_set_bit(__CTR_FLAG_SYNC, &rs->ctr_flags)) {
1197 1198 1199
				rs->ti->error = "Only one 'sync' argument allowed";
				return -EINVAL;
			}
1200 1201
			continue;
		}
1202
		if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_RAID10_USE_NEAR_SETS))) {
1203
			if (test_and_set_bit(__CTR_FLAG_RAID10_USE_NEAR_SETS, &rs->ctr_flags)) {
1204 1205 1206
				rs->ti->error = "Only one 'raid10_use_new_sets' argument allowed";
				return -EINVAL;
			}
N
NeilBrown 已提交
1207 1208 1209
			continue;
		}

1210 1211
		arg = dm_shift_arg(as);
		i++; /* Account for the argument pairs */
1212 1213 1214 1215
		if (!arg) {
			rs->ti->error = "Wrong number of raid parameters given";
			return -EINVAL;
		}
1216

1217 1218 1219
		/*
		 * Parameters that take a string value are checked here.
		 */
1220
		/* "raid10_format {near|offset|far} */
1221
		if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_RAID10_FORMAT))) {
1222
			if (test_and_set_bit(__CTR_FLAG_RAID10_FORMAT, &rs->ctr_flags)) {
1223 1224 1225 1226 1227 1228 1229
				rs->ti->error = "Only one 'raid10_format' argument pair allowed";
				return -EINVAL;
			}
			if (!rt_is_raid10(rt)) {
				rs->ti->error = "'raid10_format' is an invalid parameter for this RAID type";
				return -EINVAL;
			}
1230
			raid10_format = raid10_name_to_format(arg);
1231 1232 1233 1234
			if (raid10_format < 0) {
				rs->ti->error = "Invalid 'raid10_format' value given";
				return raid10_format;
			}
1235 1236 1237
			continue;
		}

1238
		/* "journal_dev <dev>" */
1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265
		if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_JOURNAL_DEV))) {
			int r;
			struct md_rdev *jdev;

			if (test_and_set_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags)) {
				rs->ti->error = "Only one raid4/5/6 set journaling device allowed";
				return -EINVAL;
			}
			if (!rt_is_raid456(rt)) {
				rs->ti->error = "'journal_dev' is an invalid parameter for this RAID type";
				return -EINVAL;
			}
			r = dm_get_device(rs->ti, arg, dm_table_get_mode(rs->ti->table),
					  &rs->journal_dev.dev);
			if (r) {
				rs->ti->error = "raid4/5/6 journal device lookup failure";
				return r;
			}
			jdev = &rs->journal_dev.rdev;
			md_rdev_init(jdev);
			jdev->mddev = &rs->md;
			jdev->bdev = rs->journal_dev.dev->bdev;
			jdev->sectors = to_sector(i_size_read(jdev->bdev->bd_inode));
			if (jdev->sectors < MIN_RAID456_JOURNAL_SPACE) {
				rs->ti->error = "No space for raid4/5/6 journal";
				return -ENOSPC;
			}
1266
			rs->journal_dev.mode = R5C_JOURNAL_MODE_WRITE_THROUGH;
1267 1268 1269 1270
			set_bit(Journal, &jdev->flags);
			continue;
		}

1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291
		/* "journal_mode <mode>" ("journal_dev" mandatory!) */
		if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_JOURNAL_MODE))) {
			int r;

			if (!test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags)) {
				rs->ti->error = "raid4/5/6 'journal_mode' is invalid without 'journal_dev'";
				return -EINVAL;
			}
			if (test_and_set_bit(__CTR_FLAG_JOURNAL_MODE, &rs->ctr_flags)) {
				rs->ti->error = "Only one raid4/5/6 'journal_mode' argument allowed";
				return -EINVAL;
			}
			r = dm_raid_journal_mode_to_md(arg);
			if (r < 0) {
				rs->ti->error = "Invalid 'journal_mode' argument";
				return r;
			}
			rs->journal_dev.mode = r;
			continue;
		}

1292 1293 1294
		/*
		 * Parameters with number values from here on.
		 */
1295
		if (kstrtoint(arg, 10, &value) < 0) {
1296 1297 1298
			rs->ti->error = "Bad numerical argument given in raid params";
			return -EINVAL;
		}
1299

1300
		if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_REBUILD))) {
1301 1302 1303 1304
			/*
			 * "rebuild" is being passed in by userspace to provide
			 * indexes of replaced devices and to set up additional
			 * devices on raid level takeover.
1305
			 */
1306
			if (!__within_range(value, 0, rs->raid_disks - 1)) {
1307 1308 1309
				rs->ti->error = "Invalid rebuild index given";
				return -EINVAL;
			}
1310

1311 1312 1313 1314
			if (test_and_set_bit(value, (void *) rs->rebuild_disks)) {
				rs->ti->error = "rebuild for this index already given";
				return -EINVAL;
			}
1315

1316 1317 1318 1319
			rd = rs->dev + value;
			clear_bit(In_sync, &rd->rdev.flags);
			clear_bit(Faulty, &rd->rdev.flags);
			rd->rdev.recovery_offset = 0;
1320
			set_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags);
1321
		} else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_WRITE_MOSTLY))) {
1322 1323 1324 1325
			if (!rt_is_raid1(rt)) {
				rs->ti->error = "write_mostly option is only valid for RAID1";
				return -EINVAL;
			}
1326

1327
			if (!__within_range(value, 0, rs->md.raid_disks - 1)) {
1328 1329 1330
				rs->ti->error = "Invalid write_mostly index given";
				return -EINVAL;
			}
N
NeilBrown 已提交
1331

1332
			write_mostly++;
1333
			set_bit(WriteMostly, &rs->dev[value].rdev.flags);
1334
			set_bit(__CTR_FLAG_WRITE_MOSTLY, &rs->ctr_flags);
1335
		} else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_MAX_WRITE_BEHIND))) {
1336 1337 1338 1339
			if (!rt_is_raid1(rt)) {
				rs->ti->error = "max_write_behind option is only valid for RAID1";
				return -EINVAL;
			}
1340

1341
			if (test_and_set_bit(__CTR_FLAG_MAX_WRITE_BEHIND, &rs->ctr_flags)) {
1342 1343 1344
				rs->ti->error = "Only one max_write_behind argument pair allowed";
				return -EINVAL;
			}
N
NeilBrown 已提交
1345 1346 1347 1348 1349

			/*
			 * In device-mapper, we specify things in sectors, but
			 * MD records this value in kB
			 */
1350
			if (value < 0 || value / 2 > COUNTER_MAX) {
1351 1352 1353
				rs->ti->error = "Max write-behind limit out of range";
				return -EINVAL;
			}
1354

1355
			rs->md.bitmap_info.max_write_behind = value / 2;
1356
		} else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_DAEMON_SLEEP))) {
1357
			if (test_and_set_bit(__CTR_FLAG_DAEMON_SLEEP, &rs->ctr_flags)) {
1358 1359 1360
				rs->ti->error = "Only one daemon_sleep argument pair allowed";
				return -EINVAL;
			}
1361
			if (value < 0) {
1362 1363 1364
				rs->ti->error = "daemon sleep period out of range";
				return -EINVAL;
			}
N
NeilBrown 已提交
1365
			rs->md.bitmap_info.daemon_sleep = value;
1366
		} else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_DATA_OFFSET))) {
1367
			/* Userspace passes new data_offset after having extended the the data image LV */
1368
			if (test_and_set_bit(__CTR_FLAG_DATA_OFFSET, &rs->ctr_flags)) {
1369 1370 1371
				rs->ti->error = "Only one data_offset argument pair allowed";
				return -EINVAL;
			}
1372
			/* Ensure sensible data offset */
1373 1374
			if (value < 0 ||
			    (value && (value < MIN_FREE_RESHAPE_SPACE || value % to_sector(PAGE_SIZE)))) {
1375 1376 1377
				rs->ti->error = "Bogus data_offset value";
				return -EINVAL;
			}
1378
			rs->data_offset = value;
1379
		} else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_DELTA_DISKS))) {
1380
			/* Define the +/-# of disks to add to/remove from the given raid set */
1381
			if (test_and_set_bit(__CTR_FLAG_DELTA_DISKS, &rs->ctr_flags)) {
1382 1383 1384
				rs->ti->error = "Only one delta_disks argument pair allowed";
				return -EINVAL;
			}
1385
			/* Ensure MAX_RAID_DEVICES and raid type minimal_devs! */
1386
			if (!__within_range(abs(value), 1, MAX_RAID_DEVICES - rt->minimal_devs)) {
1387 1388 1389
				rs->ti->error = "Too many delta_disk requested";
				return -EINVAL;
			}
1390 1391

			rs->delta_disks = value;
1392
		} else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_STRIPE_CACHE))) {
1393
			if (test_and_set_bit(__CTR_FLAG_STRIPE_CACHE, &rs->ctr_flags)) {
1394 1395 1396 1397 1398 1399 1400 1401
				rs->ti->error = "Only one stripe_cache argument pair allowed";
				return -EINVAL;
			}

			if (!rt_is_raid456(rt)) {
				rs->ti->error = "Inappropriate argument: stripe_cache";
				return -EINVAL;
			}
1402

1403 1404 1405 1406
			if (value < 0) {
				rs->ti->error = "Bogus stripe cache entries value";
				return -EINVAL;
			}
1407
			rs->stripe_cache_entries = value;
1408
		} else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_MIN_RECOVERY_RATE))) {
1409
			if (test_and_set_bit(__CTR_FLAG_MIN_RECOVERY_RATE, &rs->ctr_flags)) {
1410 1411 1412
				rs->ti->error = "Only one min_recovery_rate argument pair allowed";
				return -EINVAL;
			}
1413 1414

			if (value < 0) {
1415 1416 1417
				rs->ti->error = "min_recovery_rate out of range";
				return -EINVAL;
			}
1418
			rs->md.sync_speed_min = value;
1419
		} else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_MAX_RECOVERY_RATE))) {
1420
			if (test_and_set_bit(__CTR_FLAG_MAX_RECOVERY_RATE, &rs->ctr_flags)) {
1421 1422 1423
				rs->ti->error = "Only one max_recovery_rate argument pair allowed";
				return -EINVAL;
			}
1424 1425

			if (value < 0) {
1426 1427 1428
				rs->ti->error = "max_recovery_rate out of range";
				return -EINVAL;
			}
1429
			rs->md.sync_speed_max = value;
1430
		} else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_REGION_SIZE))) {
1431
			if (test_and_set_bit(__CTR_FLAG_REGION_SIZE, &rs->ctr_flags)) {
1432 1433 1434
				rs->ti->error = "Only one region_size argument pair allowed";
				return -EINVAL;
			}
1435

1436
			region_size = value;
1437
			rs->requested_bitmap_chunk_sectors = value;
1438
		} else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_RAID10_COPIES))) {
1439
			if (test_and_set_bit(__CTR_FLAG_RAID10_COPIES, &rs->ctr_flags)) {
1440 1441 1442
				rs->ti->error = "Only one raid10_copies argument pair allowed";
				return -EINVAL;
			}
1443

1444
			if (!__within_range(value, 2, rs->md.raid_disks)) {
1445 1446 1447
				rs->ti->error = "Bad value for 'raid10_copies'";
				return -EINVAL;
			}
1448

1449
			raid10_copies = value;
N
NeilBrown 已提交
1450 1451
		} else {
			DMERR("Unable to parse RAID parameter: %s", key);
1452 1453
			rs->ti->error = "Unable to parse RAID parameter";
			return -EINVAL;
N
NeilBrown 已提交
1454 1455 1456
		}
	}

1457 1458 1459 1460 1461 1462
	if (test_bit(__CTR_FLAG_SYNC, &rs->ctr_flags) &&
	    test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags)) {
		rs->ti->error = "sync and nosync are mutually exclusive";
		return -EINVAL;
	}

1463 1464 1465 1466 1467 1468 1469
	if (test_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags) &&
	    (test_bit(__CTR_FLAG_SYNC, &rs->ctr_flags) ||
	     test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags))) {
		rs->ti->error = "sync/nosync and rebuild are mutually exclusive";
		return -EINVAL;
	}

1470 1471 1472 1473 1474
	if (write_mostly >= rs->md.raid_disks) {
		rs->ti->error = "Can't set all raid1 devices to write_mostly";
		return -EINVAL;
	}

1475 1476 1477 1478 1479 1480
	if (rs->md.sync_speed_max &&
	    rs->md.sync_speed_min > rs->md.sync_speed_max) {
		rs->ti->error = "Bogus recovery rates";
		return -EINVAL;
	}

1481 1482 1483 1484
	if (validate_region_size(rs, region_size))
		return -EINVAL;

	if (rs->md.chunk_sectors)
1485
		max_io_len = rs->md.chunk_sectors;
1486
	else
1487
		max_io_len = region_size;
1488

1489 1490
	if (dm_set_target_max_io_len(rs->ti, max_io_len))
		return -EINVAL;
J
Jonathan Brassow 已提交
1491

1492
	if (rt_is_raid10(rt)) {
1493 1494 1495 1496
		if (raid10_copies > rs->md.raid_disks) {
			rs->ti->error = "Not enough devices to satisfy specification";
			return -EINVAL;
		}
1497

1498
		rs->md.new_layout = raid10_format_to_md_layout(rs, raid10_format, raid10_copies);
1499 1500 1501 1502
		if (rs->md.new_layout < 0) {
			rs->ti->error = "Error getting raid10 format";
			return rs->md.new_layout;
		}
1503 1504

		rt = get_raid_type_by_ll(10, rs->md.new_layout);
1505 1506 1507 1508
		if (!rt) {
			rs->ti->error = "Failed to recognize new raid10 layout";
			return -EINVAL;
		}
1509 1510 1511

		if ((rt->algorithm == ALGORITHM_RAID10_DEFAULT ||
		     rt->algorithm == ALGORITHM_RAID10_NEAR) &&
1512
		    test_bit(__CTR_FLAG_RAID10_USE_NEAR_SETS, &rs->ctr_flags)) {
1513 1514 1515 1516
			rs->ti->error = "RAID10 format 'near' and 'raid10_use_near_sets' are incompatible";
			return -EINVAL;
		}
	}
1517

1518
	rs->raid10_copies = raid10_copies;
1519

N
NeilBrown 已提交
1520 1521 1522 1523
	/* Assume there are no metadata devices until the drives are parsed */
	rs->md.persistent = 0;
	rs->md.external = 1;

1524
	/* Check, if any invalid ctr arguments have been passed in for the raid level */
1525
	return rs_check_for_valid_flags(rs);
N
NeilBrown 已提交
1526 1527
}

1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567
/* Set raid4/5/6 cache size */
static int rs_set_raid456_stripe_cache(struct raid_set *rs)
{
	int r;
	struct r5conf *conf;
	struct mddev *mddev = &rs->md;
	uint32_t min_stripes = max(mddev->chunk_sectors, mddev->new_chunk_sectors) / 2;
	uint32_t nr_stripes = rs->stripe_cache_entries;

	if (!rt_is_raid456(rs->raid_type)) {
		rs->ti->error = "Inappropriate raid level; cannot change stripe_cache size";
		return -EINVAL;
	}

	if (nr_stripes < min_stripes) {
		DMINFO("Adjusting requested %u stripe cache entries to %u to suit stripe size",
		       nr_stripes, min_stripes);
		nr_stripes = min_stripes;
	}

	conf = mddev->private;
	if (!conf) {
		rs->ti->error = "Cannot change stripe_cache size on inactive RAID set";
		return -EINVAL;
	}

	/* Try setting number of stripes in raid456 stripe cache */
	if (conf->min_nr_stripes != nr_stripes) {
		r = raid5_set_cache_size(mddev, nr_stripes);
		if (r) {
			rs->ti->error = "Failed to set raid4/5/6 stripe cache size";
			return r;
		}

		DMINFO("%u stripe cache entries", nr_stripes);
	}

	return 0;
}

1568 1569 1570 1571 1572 1573
/* Return # of data stripes as kept in mddev as of @rs (i.e. as of superblock) */
static unsigned int mddev_data_stripes(struct raid_set *rs)
{
	return rs->md.raid_disks - rs->raid_type->parity_devs;
}

1574 1575 1576 1577 1578 1579
/* Return # of data stripes of @rs (i.e. as of ctr) */
static unsigned int rs_data_stripes(struct raid_set *rs)
{
	return rs->raid_disks - rs->raid_type->parity_devs;
}

1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590
/*
 * Retrieve rdev->sectors from any valid raid device of @rs
 * to allow userpace to pass in arbitray "- -" device tupples.
 */
static sector_t __rdev_sectors(struct raid_set *rs)
{
	int i;

	for (i = 0; i < rs->md.raid_disks; i++) {
		struct md_rdev *rdev = &rs->dev[i].rdev;

1591 1592
		if (!test_bit(Journal, &rdev->flags) &&
		    rdev->bdev && rdev->sectors)
1593 1594 1595
			return rdev->sectors;
	}

1596
	return 0;
1597 1598
}

1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616
/* Check that calculated dev_sectors fits all component devices. */
static int _check_data_dev_sectors(struct raid_set *rs)
{
	sector_t ds = ~0;
	struct md_rdev *rdev;

	rdev_for_each(rdev, &rs->md)
		if (!test_bit(Journal, &rdev->flags) && rdev->bdev) {
			ds = min(ds, to_sector(i_size_read(rdev->bdev->bd_inode)));
			if (ds < rs->md.dev_sectors) {
				rs->ti->error = "Component device(s) too small";
				return -EINVAL;
			}
		}

	return 0;
}

1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640
/* Calculate the sectors per device and per array used for @rs */
static int rs_set_dev_and_array_sectors(struct raid_set *rs, bool use_mddev)
{
	int delta_disks;
	unsigned int data_stripes;
	struct mddev *mddev = &rs->md;
	struct md_rdev *rdev;
	sector_t array_sectors = rs->ti->len, dev_sectors = rs->ti->len;

	if (use_mddev) {
		delta_disks = mddev->delta_disks;
		data_stripes = mddev_data_stripes(rs);
	} else {
		delta_disks = rs->delta_disks;
		data_stripes = rs_data_stripes(rs);
	}

	/* Special raid1 case w/o delta_disks support (yet) */
	if (rt_is_raid1(rs->raid_type))
		;
	else if (rt_is_raid10(rs->raid_type)) {
		if (rs->raid10_copies < 2 ||
		    delta_disks < 0) {
			rs->ti->error = "Bogus raid10 data copies or delta disks";
1641
			return -EINVAL;
1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659
		}

		dev_sectors *= rs->raid10_copies;
		if (sector_div(dev_sectors, data_stripes))
			goto bad;

		array_sectors = (data_stripes + delta_disks) * dev_sectors;
		if (sector_div(array_sectors, rs->raid10_copies))
			goto bad;

	} else if (sector_div(dev_sectors, data_stripes))
		goto bad;

	else
		/* Striped layouts */
		array_sectors = (data_stripes + delta_disks) * dev_sectors;

	rdev_for_each(rdev, mddev)
1660 1661
		if (!test_bit(Journal, &rdev->flags))
			rdev->sectors = dev_sectors;
1662 1663 1664 1665

	mddev->array_sectors = array_sectors;
	mddev->dev_sectors = dev_sectors;

1666
	return _check_data_dev_sectors(rs);
1667 1668
bad:
	rs->ti->error = "Target length not divisible by number of data devices";
1669
	return -EINVAL;
1670 1671
}

1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702
/* Setup recovery on @rs */
static void __rs_setup_recovery(struct raid_set *rs, sector_t dev_sectors)
{
	/* raid0 does not recover */
	if (rs_is_raid0(rs))
		rs->md.recovery_cp = MaxSector;
	/*
	 * A raid6 set has to be recovered either
	 * completely or for the grown part to
	 * ensure proper parity and Q-Syndrome
	 */
	else if (rs_is_raid6(rs))
		rs->md.recovery_cp = dev_sectors;
	/*
	 * Other raid set types may skip recovery
	 * depending on the 'nosync' flag.
	 */
	else
		rs->md.recovery_cp = test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags)
				     ? MaxSector : dev_sectors;
}

/* Setup recovery on @rs based on raid type, device size and 'nosync' flag */
static void rs_setup_recovery(struct raid_set *rs, sector_t dev_sectors)
{
	if (!dev_sectors)
		/* New raid set or 'sync' flag provided */
		__rs_setup_recovery(rs, 0);
	else if (dev_sectors == MaxSector)
		/* Prevent recovery */
		__rs_setup_recovery(rs, MaxSector);
1703
	else if (__rdev_sectors(rs) < dev_sectors)
1704
		/* Grown raid set */
1705
		__rs_setup_recovery(rs, __rdev_sectors(rs));
1706 1707 1708 1709
	else
		__rs_setup_recovery(rs, MaxSector);
}

N
NeilBrown 已提交
1710 1711 1712 1713
static void do_table_event(struct work_struct *ws)
{
	struct raid_set *rs = container_of(ws, struct raid_set, md.event_work);

1714
	smp_rmb(); /* Make sure we access most actual mddev properties */
1715 1716 1717
	if (!rs_is_reshaping(rs)) {
		if (rs_is_raid10(rs))
			rs_set_rdev_sectors(rs);
1718
		rs_set_capacity(rs);
1719
	}
N
NeilBrown 已提交
1720 1721 1722 1723 1724 1725 1726
	dm_table_event(rs->ti->table);
}

static int raid_is_congested(struct dm_target_callbacks *cb, int bits)
{
	struct raid_set *rs = container_of(cb, struct raid_set, callbacks);

1727
	return mddev_congested(&rs->md, bits);
N
NeilBrown 已提交
1728 1729
}

1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740
/*
 * Make sure a valid takover (level switch) is being requested on @rs
 *
 * Conversions of raid sets from one MD personality to another
 * have to conform to restrictions which are enforced here.
 */
static int rs_check_takeover(struct raid_set *rs)
{
	struct mddev *mddev = &rs->md;
	unsigned int near_copies;

1741 1742 1743 1744 1745 1746 1747 1748 1749 1750
	if (rs->md.degraded) {
		rs->ti->error = "Can't takeover degraded raid set";
		return -EPERM;
	}

	if (rs_is_reshaping(rs)) {
		rs->ti->error = "Can't takeover reshaping raid set";
		return -EPERM;
	}

1751 1752 1753 1754 1755 1756 1757 1758 1759
	switch (mddev->level) {
	case 0:
		/* raid0 -> raid1/5 with one disk */
		if ((mddev->new_level == 1 || mddev->new_level == 5) &&
		    mddev->raid_disks == 1)
			return 0;

		/* raid0 -> raid10 */
		if (mddev->new_level == 10 &&
1760
		    !(rs->raid_disks % mddev->raid_disks))
1761 1762 1763
			return 0;

		/* raid0 with multiple disks -> raid4/5/6 */
1764
		if (__within_range(mddev->new_level, 4, 6) &&
1765 1766 1767 1768 1769 1770 1771 1772
		    mddev->new_layout == ALGORITHM_PARITY_N &&
		    mddev->raid_disks > 1)
			return 0;

		break;

	case 10:
		/* Can't takeover raid10_offset! */
M
Mike Snitzer 已提交
1773
		if (__is_raid10_offset(mddev->layout))
1774 1775
			break;

M
Mike Snitzer 已提交
1776
		near_copies = __raid10_near_copies(mddev->layout);
1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789

		/* raid10* -> raid0 */
		if (mddev->new_level == 0) {
			/* Can takeover raid10_near with raid disks divisable by data copies! */
			if (near_copies > 1 &&
			    !(mddev->raid_disks % near_copies)) {
				mddev->raid_disks /= near_copies;
				mddev->delta_disks = mddev->raid_disks;
				return 0;
			}

			/* Can takeover raid10_far */
			if (near_copies == 1 &&
M
Mike Snitzer 已提交
1790
			    __raid10_far_copies(mddev->layout) > 1)
1791 1792 1793 1794 1795 1796 1797
				return 0;

			break;
		}

		/* raid10_{near,far} -> raid1 */
		if (mddev->new_level == 1 &&
M
Mike Snitzer 已提交
1798
		    max(near_copies, __raid10_far_copies(mddev->layout)) == mddev->raid_disks)
1799 1800 1801
			return 0;

		/* raid10_{near,far} with 2 disks -> raid4/5 */
1802
		if (__within_range(mddev->new_level, 4, 5) &&
1803 1804 1805 1806 1807 1808
		    mddev->raid_disks == 2)
			return 0;
		break;

	case 1:
		/* raid1 with 2 disks -> raid4/5 */
1809
		if (__within_range(mddev->new_level, 4, 5) &&
1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835
		    mddev->raid_disks == 2) {
			mddev->degraded = 1;
			return 0;
		}

		/* raid1 -> raid0 */
		if (mddev->new_level == 0 &&
		    mddev->raid_disks == 1)
			return 0;

		/* raid1 -> raid10 */
		if (mddev->new_level == 10)
			return 0;
		break;

	case 4:
		/* raid4 -> raid0 */
		if (mddev->new_level == 0)
			return 0;

		/* raid4 -> raid1/5 with 2 disks */
		if ((mddev->new_level == 1 || mddev->new_level == 5) &&
		    mddev->raid_disks == 2)
			return 0;

		/* raid4 -> raid5/6 with parity N */
1836
		if (__within_range(mddev->new_level, 5, 6) &&
1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856
		    mddev->layout == ALGORITHM_PARITY_N)
			return 0;
		break;

	case 5:
		/* raid5 with parity N -> raid0 */
		if (mddev->new_level == 0 &&
		    mddev->layout == ALGORITHM_PARITY_N)
			return 0;

		/* raid5 with parity N -> raid4 */
		if (mddev->new_level == 4 &&
		    mddev->layout == ALGORITHM_PARITY_N)
			return 0;

		/* raid5 with 2 disks -> raid1/4/10 */
		if ((mddev->new_level == 1 || mddev->new_level == 4 || mddev->new_level == 10) &&
		    mddev->raid_disks == 2)
			return 0;

1857
		/* raid5_* ->  raid6_*_6 with Q-Syndrome N (e.g. raid5_ra -> raid6_ra_6 */
1858 1859
		if (mddev->new_level == 6 &&
		    ((mddev->layout == ALGORITHM_PARITY_N && mddev->new_layout == ALGORITHM_PARITY_N) ||
1860
		      __within_range(mddev->new_layout, ALGORITHM_LEFT_ASYMMETRIC_6, ALGORITHM_RIGHT_SYMMETRIC_6)))
1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874
			return 0;
		break;

	case 6:
		/* raid6 with parity N -> raid0 */
		if (mddev->new_level == 0 &&
		    mddev->layout == ALGORITHM_PARITY_N)
			return 0;

		/* raid6 with parity N -> raid4 */
		if (mddev->new_level == 4 &&
		    mddev->layout == ALGORITHM_PARITY_N)
			return 0;

1875
		/* raid6_*_n with Q-Syndrome N -> raid5_* */
1876 1877
		if (mddev->new_level == 5 &&
		    ((mddev->layout == ALGORITHM_PARITY_N && mddev->new_layout == ALGORITHM_PARITY_N) ||
1878
		     __within_range(mddev->new_layout, ALGORITHM_LEFT_ASYMMETRIC, ALGORITHM_RIGHT_SYMMETRIC)))
1879 1880 1881 1882 1883 1884
			return 0;

	default:
		break;
	}

1885 1886
	rs->ti->error = "takeover not possible";
	return -EINVAL;
1887 1888 1889 1890 1891 1892 1893 1894
}

/* True if @rs requested to be taken over */
static bool rs_takeover_requested(struct raid_set *rs)
{
	return rs->md.new_level != rs->md.level;
}

1895 1896 1897
/* True if @rs is requested to reshape by ctr */
static bool rs_reshape_requested(struct raid_set *rs)
{
1898
	bool change;
1899 1900
	struct mddev *mddev = &rs->md;

1901 1902 1903
	if (rs_takeover_requested(rs))
		return false;

H
Heinz Mauelshagen 已提交
1904
	if (rs_is_raid0(rs))
1905 1906
		return false;

1907 1908 1909 1910 1911
	change = mddev->new_layout != mddev->layout ||
		 mddev->new_chunk_sectors != mddev->chunk_sectors ||
		 rs->delta_disks;

	/* Historical case to support raid1 reshape without delta disks */
H
Heinz Mauelshagen 已提交
1912
	if (rs_is_raid1(rs)) {
1913 1914 1915
		if (rs->delta_disks)
			return !!rs->delta_disks;

1916 1917
		return !change &&
		       mddev->raid_disks != rs->raid_disks;
1918
	}
1919

H
Heinz Mauelshagen 已提交
1920
	if (rs_is_raid10(rs))
1921 1922 1923 1924 1925
		return change &&
		       !__is_raid10_far(mddev->new_layout) &&
		       rs->delta_disks >= 0;

	return change;
1926 1927
}

1928
/*  Features */
1929
#define	FEATURE_FLAG_SUPPORTS_V190	0x1 /* Supports extended superblock */
1930 1931 1932 1933 1934

/* State flags for sb->flags */
#define	SB_FLAG_RESHAPE_ACTIVE		0x1
#define	SB_FLAG_RESHAPE_BACKWARDS	0x2

1935 1936 1937 1938 1939 1940 1941
/*
 * This structure is never routinely used by userspace, unlike md superblocks.
 * Devices with this superblock should only ever be accessed via device-mapper.
 */
#define DM_RAID_MAGIC 0x64526D44
struct dm_raid_superblock {
	__le32 magic;		/* "DmRd" */
1942
	__le32 compat_features;	/* Used to indicate compatible features (like 1.9.0 ondisk metadata extension) */
1943

1944 1945
	__le32 num_devices;	/* Number of devices in this raid set. (Max 64) */
	__le32 array_position;	/* The position of this drive in the raid set */
1946 1947

	__le64 events;		/* Incremented by md when superblock updated */
1948
	__le64 failed_devices;	/* Pre 1.9.0 part of bit field of devices to */
1949
				/* indicate failures (see extension below) */
1950 1951 1952 1953 1954 1955 1956 1957

	/*
	 * This offset tracks the progress of the repair or replacement of
	 * an individual drive.
	 */
	__le64 disk_recovery_offset;

	/*
1958
	 * This offset tracks the progress of the initial raid set
1959 1960 1961 1962 1963
	 * synchronisation/parity calculation.
	 */
	__le64 array_resync_offset;

	/*
1964
	 * raid characteristics
1965 1966 1967 1968 1969
	 */
	__le32 level;
	__le32 layout;
	__le32 stripe_sectors;

1970
	/********************************************************************
1971
	 * BELOW FOLLOW V1.9.0 EXTENSIONS TO THE PRISTINE SUPERBLOCK FORMAT!!!
1972
	 *
1973
	 * FEATURE_FLAG_SUPPORTS_V190 in the compat_features member indicates that those exist
1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006
	 */

	__le32 flags; /* Flags defining array states for reshaping */

	/*
	 * This offset tracks the progress of a raid
	 * set reshape in order to be able to restart it
	 */
	__le64 reshape_position;

	/*
	 * These define the properties of the array in case of an interrupted reshape
	 */
	__le32 new_level;
	__le32 new_layout;
	__le32 new_stripe_sectors;
	__le32 delta_disks;

	__le64 array_sectors; /* Array size in sectors */

	/*
	 * Sector offsets to data on devices (reshaping).
	 * Needed to support out of place reshaping, thus
	 * not writing over any stripes whilst converting
	 * them from old to new layout
	 */
	__le64 data_offset;
	__le64 new_data_offset;

	__le64 sectors; /* Used device size in sectors */

	/*
	 * Additonal Bit field of devices indicating failures to support
2007
	 * up to 256 devices with the 1.9.0 on-disk metadata format
2008 2009 2010 2011 2012 2013
	 */
	__le64 extended_failed_devices[DISKS_ARRAY_ELEMS - 1];

	__le32 incompat_features;	/* Used to indicate any incompatible features */

	/* Always set rest up to logical block size to 0 when writing (see get_metadata_device() below). */
2014 2015
} __packed;

2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036
/*
 * Check for reshape constraints on raid set @rs:
 *
 * - reshape function non-existent
 * - degraded set
 * - ongoing recovery
 * - ongoing reshape
 *
 * Returns 0 if none or -EPERM if given constraint
 * and error message reference in @errmsg
 */
static int rs_check_reshape(struct raid_set *rs)
{
	struct mddev *mddev = &rs->md;

	if (!mddev->pers || !mddev->pers->check_reshape)
		rs->ti->error = "Reshape not supported";
	else if (mddev->degraded)
		rs->ti->error = "Can't reshape degraded raid set";
	else if (rs_is_recovering(rs))
		rs->ti->error = "Convert request on recovering raid set prohibited";
2037
	else if (rs_is_reshaping(rs))
2038
		rs->ti->error = "raid set already reshaping!";
2039 2040
	else if (!(rs_is_raid1(rs) || rs_is_raid10(rs) || rs_is_raid456(rs)))
		rs->ti->error = "Reshaping only supported for raid1/4/5/6/10";
2041 2042 2043 2044 2045 2046
	else
		return 0;

	return -EPERM;
}

2047
static int read_disk_sb(struct md_rdev *rdev, int size, bool force_reload)
2048 2049 2050
{
	BUG_ON(!rdev->sb_page);

2051
	if (rdev->sb_loaded && !force_reload)
2052 2053
		return 0;

2054 2055
	rdev->sb_loaded = 0;

2056
	if (!sync_page_io(rdev, 0, size, rdev->sb_page, REQ_OP_READ, 0, true)) {
2057 2058
		DMERR("Failed to read superblock of device at position %d",
		      rdev->raid_disk);
2059
		md_error(rdev->mddev, rdev);
2060 2061
		set_bit(Faulty, &rdev->flags);
		return -EIO;
2062 2063 2064 2065 2066 2067 2068
	}

	rdev->sb_loaded = 1;

	return 0;
}

2069 2070 2071 2072 2073
static void sb_retrieve_failed_devices(struct dm_raid_superblock *sb, uint64_t *failed_devices)
{
	failed_devices[0] = le64_to_cpu(sb->failed_devices);
	memset(failed_devices + 1, 0, sizeof(sb->extended_failed_devices));

2074
	if (le32_to_cpu(sb->compat_features) & FEATURE_FLAG_SUPPORTS_V190) {
2075 2076 2077 2078 2079 2080 2081
		int i = ARRAY_SIZE(sb->extended_failed_devices);

		while (i--)
			failed_devices[i+1] = le64_to_cpu(sb->extended_failed_devices[i]);
	}
}

2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094 2095
static void sb_update_failed_devices(struct dm_raid_superblock *sb, uint64_t *failed_devices)
{
	int i = ARRAY_SIZE(sb->extended_failed_devices);

	sb->failed_devices = cpu_to_le64(failed_devices[0]);
	while (i--)
		sb->extended_failed_devices[i] = cpu_to_le64(failed_devices[i+1]);
}

/*
 * Synchronize the superblock members with the raid set properties
 *
 * All superblock data is little endian.
 */
2096
static void super_sync(struct mddev *mddev, struct md_rdev *rdev)
2097
{
2098 2099 2100
	bool update_failed_devices = false;
	unsigned int i;
	uint64_t failed_devices[DISKS_ARRAY_ELEMS];
2101
	struct dm_raid_superblock *sb;
2102
	struct raid_set *rs = container_of(mddev, struct raid_set, md);
2103

2104 2105 2106 2107 2108 2109
	/* No metadata device, no superblock */
	if (!rdev->meta_bdev)
		return;

	BUG_ON(!rdev->sb_page);

2110 2111
	sb = page_address(rdev->sb_page);

2112
	sb_retrieve_failed_devices(sb, failed_devices);
2113

2114 2115 2116 2117 2118 2119 2120 2121
	for (i = 0; i < rs->raid_disks; i++)
		if (!rs->dev[i].data_dev || test_bit(Faulty, &rs->dev[i].rdev.flags)) {
			update_failed_devices = true;
			set_bit(i, (void *) failed_devices);
		}

	if (update_failed_devices)
		sb_update_failed_devices(sb, failed_devices);
2122 2123

	sb->magic = cpu_to_le32(DM_RAID_MAGIC);
2124
	sb->compat_features = cpu_to_le32(FEATURE_FLAG_SUPPORTS_V190);
2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136

	sb->num_devices = cpu_to_le32(mddev->raid_disks);
	sb->array_position = cpu_to_le32(rdev->raid_disk);

	sb->events = cpu_to_le64(mddev->events);

	sb->disk_recovery_offset = cpu_to_le64(rdev->recovery_offset);
	sb->array_resync_offset = cpu_to_le64(mddev->recovery_cp);

	sb->level = cpu_to_le32(mddev->level);
	sb->layout = cpu_to_le32(mddev->layout);
	sb->stripe_sectors = cpu_to_le32(mddev->chunk_sectors);
2137

2138 2139 2140 2141 2142
	/********************************************************************
	 * BELOW FOLLOW V1.9.0 EXTENSIONS TO THE PRISTINE SUPERBLOCK FORMAT!!!
	 *
	 * FEATURE_FLAG_SUPPORTS_V190 in the compat_features member indicates that those exist
	 */
2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156
	sb->new_level = cpu_to_le32(mddev->new_level);
	sb->new_layout = cpu_to_le32(mddev->new_layout);
	sb->new_stripe_sectors = cpu_to_le32(mddev->new_chunk_sectors);

	sb->delta_disks = cpu_to_le32(mddev->delta_disks);

	smp_rmb(); /* Make sure we access most recent reshape position */
	sb->reshape_position = cpu_to_le64(mddev->reshape_position);
	if (le64_to_cpu(sb->reshape_position) != MaxSector) {
		/* Flag ongoing reshape */
		sb->flags |= cpu_to_le32(SB_FLAG_RESHAPE_ACTIVE);

		if (mddev->delta_disks < 0 || mddev->reshape_backwards)
			sb->flags |= cpu_to_le32(SB_FLAG_RESHAPE_BACKWARDS);
2157 2158 2159 2160
	} else {
		/* Clear reshape flags */
		sb->flags &= ~(cpu_to_le32(SB_FLAG_RESHAPE_ACTIVE|SB_FLAG_RESHAPE_BACKWARDS));
	}
2161 2162 2163 2164 2165

	sb->array_sectors = cpu_to_le64(mddev->array_sectors);
	sb->data_offset = cpu_to_le64(rdev->data_offset);
	sb->new_data_offset = cpu_to_le64(rdev->new_data_offset);
	sb->sectors = cpu_to_le64(rdev->sectors);
2166
	sb->incompat_features = cpu_to_le32(0);
2167 2168 2169

	/* Zero out the rest of the payload after the size of the superblock */
	memset(sb + 1, 0, rdev->sb_size - sizeof(*sb));
2170 2171 2172 2173 2174 2175 2176 2177 2178 2179
}

/*
 * super_load
 *
 * This function creates a superblock if one is not found on the device
 * and will decide which superblock to use if there's a choice.
 *
 * Return: 1 if use rdev, 0 if use refdev, -Exxx otherwise
 */
2180
static int super_load(struct md_rdev *rdev, struct md_rdev *refdev)
2181
{
2182
	int r;
2183 2184 2185 2186
	struct dm_raid_superblock *sb;
	struct dm_raid_superblock *refsb;
	uint64_t events_sb, events_refsb;

2187
	r = read_disk_sb(rdev, rdev->sb_size, false);
2188 2189
	if (r)
		return r;
2190 2191

	sb = page_address(rdev->sb_page);
2192 2193 2194 2195 2196 2197 2198 2199

	/*
	 * Two cases that we want to write new superblocks and rebuild:
	 * 1) New device (no matching magic number)
	 * 2) Device specified for rebuild (!In_sync w/ offset == 0)
	 */
	if ((sb->magic != cpu_to_le32(DM_RAID_MAGIC)) ||
	    (!test_bit(In_sync, &rdev->flags) && !rdev->recovery_offset)) {
2200 2201 2202
		super_sync(rdev->mddev, rdev);

		set_bit(FirstUse, &rdev->flags);
2203
		sb->compat_features = cpu_to_le32(FEATURE_FLAG_SUPPORTS_V190);
2204 2205

		/* Force writing of superblocks to disk */
2206
		set_bit(MD_SB_CHANGE_DEVS, &rdev->mddev->sb_flags);
2207 2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222

		/* Any superblock is better than none, choose that if given */
		return refdev ? 0 : 1;
	}

	if (!refdev)
		return 1;

	events_sb = le64_to_cpu(sb->events);

	refsb = page_address(refdev->sb_page);
	events_refsb = le64_to_cpu(refsb->events);

	return (events_sb > events_refsb) ? 1 : 0;
}

2223
static int super_init_validation(struct raid_set *rs, struct md_rdev *rdev)
2224 2225
{
	int role;
2226 2227
	unsigned int d;
	struct mddev *mddev = &rs->md;
2228
	uint64_t events_sb;
2229
	uint64_t failed_devices[DISKS_ARRAY_ELEMS];
2230
	struct dm_raid_superblock *sb;
2231
	uint32_t new_devs = 0, rebuild_and_new = 0, rebuilds = 0;
N
NeilBrown 已提交
2232
	struct md_rdev *r;
2233 2234 2235 2236 2237 2238 2239 2240 2241 2242
	struct dm_raid_superblock *sb2;

	sb = page_address(rdev->sb_page);
	events_sb = le64_to_cpu(sb->events);

	/*
	 * Initialise to 1 if this is a new superblock.
	 */
	mddev->events = events_sb ? : 1;

2243 2244
	mddev->reshape_position = MaxSector;

2245 2246 2247 2248 2249
	mddev->raid_disks = le32_to_cpu(sb->num_devices);
	mddev->level = le32_to_cpu(sb->level);
	mddev->layout = le32_to_cpu(sb->layout);
	mddev->chunk_sectors = le32_to_cpu(sb->stripe_sectors);

2250
	/*
2251 2252
	 * Reshaping is supported, e.g. reshape_position is valid
	 * in superblock and superblock content is authoritative.
2253
	 */
2254
	if (le32_to_cpu(sb->compat_features) & FEATURE_FLAG_SUPPORTS_V190) {
2255 2256 2257 2258 2259 2260 2261 2262
		/* Superblock is authoritative wrt given raid set layout! */
		mddev->new_level = le32_to_cpu(sb->new_level);
		mddev->new_layout = le32_to_cpu(sb->new_layout);
		mddev->new_chunk_sectors = le32_to_cpu(sb->new_stripe_sectors);
		mddev->delta_disks = le32_to_cpu(sb->delta_disks);
		mddev->array_sectors = le64_to_cpu(sb->array_sectors);

		/* raid was reshaping and got interrupted */
2263 2264
		if (le32_to_cpu(sb->flags) & SB_FLAG_RESHAPE_ACTIVE) {
			if (test_bit(__CTR_FLAG_DELTA_DISKS, &rs->ctr_flags)) {
2265 2266 2267
				DMERR("Reshape requested but raid set is still reshaping");
				return -EINVAL;
			}
2268

2269
			if (mddev->delta_disks < 0 ||
2270
			    (!mddev->delta_disks && (le32_to_cpu(sb->flags) & SB_FLAG_RESHAPE_BACKWARDS)))
2271 2272 2273 2274 2275 2276 2277 2278 2279 2280
				mddev->reshape_backwards = 1;
			else
				mddev->reshape_backwards = 0;

			mddev->reshape_position = le64_to_cpu(sb->reshape_position);
			rs->raid_type = get_raid_type_by_ll(mddev->level, mddev->layout);
		}

	} else {
		/*
2281
		 * No takeover/reshaping, because we don't have the extended v1.9.0 metadata
2282
		 */
2283 2284
		struct raid_type *rt_cur = get_raid_type_by_ll(mddev->level, mddev->layout);
		struct raid_type *rt_new = get_raid_type_by_ll(mddev->new_level, mddev->new_layout);
2285

2286 2287 2288 2289 2290 2291 2292 2293 2294 2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316
		if (rs_takeover_requested(rs)) {
			if (rt_cur && rt_new)
				DMERR("Takeover raid sets from %s to %s not yet supported by metadata. (raid level change)",
				      rt_cur->name, rt_new->name);
			else
				DMERR("Takeover raid sets not yet supported by metadata. (raid level change)");
			return -EINVAL;
		} else if (rs_reshape_requested(rs)) {
			DMERR("Reshaping raid sets not yet supported by metadata. (raid layout change keeping level)");
			if (mddev->layout != mddev->new_layout) {
				if (rt_cur && rt_new)
					DMERR("	 current layout %s vs new layout %s",
					      rt_cur->name, rt_new->name);
				else
					DMERR("	 current layout 0x%X vs new layout 0x%X",
					      le32_to_cpu(sb->layout), mddev->new_layout);
			}
			if (mddev->chunk_sectors != mddev->new_chunk_sectors)
				DMERR("	 current stripe sectors %u vs new stripe sectors %u",
				      mddev->chunk_sectors, mddev->new_chunk_sectors);
			if (rs->delta_disks)
				DMERR("	 current %u disks vs new %u disks",
				      mddev->raid_disks, mddev->raid_disks + rs->delta_disks);
			if (rs_is_raid10(rs)) {
				DMERR("	 Old layout: %s w/ %u copies",
				      raid10_md_layout_to_format(mddev->layout),
				      raid10_md_layout_to_copies(mddev->layout));
				DMERR("	 New layout: %s w/ %u copies",
				      raid10_md_layout_to_format(mddev->new_layout),
				      raid10_md_layout_to_copies(mddev->new_layout));
			}
2317 2318 2319
			return -EINVAL;
		}

2320
		DMINFO("Discovered old metadata format; upgrading to extended metadata format");
2321 2322
	}

2323
	if (!test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags))
2324 2325 2326 2327 2328
		mddev->recovery_cp = le64_to_cpu(sb->array_resync_offset);

	/*
	 * During load, we set FirstUse if a new superblock was written.
	 * There are two reasons we might not have a superblock:
2329
	 * 1) The raid set is brand new - in which case, all of the
2330
	 *    devices must have their In_sync bit set.	Also,
2331
	 *    recovery_cp must be 0, unless forced.
2332
	 * 2) This is a new device being added to an old raid set
2333 2334 2335
	 *    and the new device needs to be rebuilt - in which
	 *    case the In_sync bit will /not/ be set and
	 *    recovery_cp must be MaxSector.
2336 2337 2338 2339
	 * 3) This is/are a new device(s) being added to an old
	 *    raid set during takeover to a higher raid level
	 *    to provide capacity for redundancy or during reshape
	 *    to add capacity to grow the raid set.
2340
	 */
2341
	d = 0;
N
NeilBrown 已提交
2342
	rdev_for_each(r, mddev) {
2343 2344 2345
		if (test_bit(Journal, &rdev->flags))
			continue;

2346 2347 2348
		if (test_bit(FirstUse, &r->flags))
			new_devs++;

2349
		if (!test_bit(In_sync, &r->flags)) {
2350 2351
			DMINFO("Device %d specified for rebuild; clearing superblock",
				r->raid_disk);
2352
			rebuilds++;
2353 2354 2355 2356 2357 2358

			if (test_bit(FirstUse, &r->flags))
				rebuild_and_new++;
		}

		d++;
2359 2360
	}

2361 2362 2363 2364 2365 2366
	if (new_devs == rs->raid_disks || !rebuilds) {
		/* Replace a broken device */
		if (new_devs == 1 && !rs->delta_disks)
			;
		if (new_devs == rs->raid_disks) {
			DMINFO("Superblocks created for new raid set");
2367
			set_bit(MD_ARRAY_FIRST_USE, &mddev->flags);
2368 2369
		} else if (new_devs != rebuilds &&
			   new_devs != rs->delta_disks) {
2370 2371
			DMERR("New device injected into existing raid set without "
			      "'delta_disks' or 'rebuild' parameter specified");
2372 2373
			return -EINVAL;
		}
2374 2375 2376 2377
	} else if (new_devs && new_devs != rebuilds) {
		DMERR("%u 'rebuild' devices cannot be injected into"
		      " a raid set with %u other first-time devices",
		      rebuilds, new_devs);
2378
		return -EINVAL;
2379 2380 2381 2382 2383
	} else if (rebuilds) {
		if (rebuild_and_new && rebuilds != rebuild_and_new) {
			DMERR("new device%s provided without 'rebuild'",
			      new_devs > 1 ? "s" : "");
			return -EINVAL;
2384
		} else if (!test_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags) && rs_is_recovering(rs)) {
2385 2386 2387
			DMERR("'rebuild' specified while raid set is not in-sync (recovery_cp=%llu)",
			      (unsigned long long) mddev->recovery_cp);
			return -EINVAL;
2388 2389 2390
		} else if (rs_is_reshaping(rs)) {
			DMERR("'rebuild' specified while raid set is being reshaped (reshape_position=%llu)",
			      (unsigned long long) mddev->reshape_position);
2391 2392
			return -EINVAL;
		}
2393 2394 2395 2396 2397 2398
	}

	/*
	 * Now we set the Faulty bit for those devices that are
	 * recorded in the superblock as failed.
	 */
2399
	sb_retrieve_failed_devices(sb, failed_devices);
N
NeilBrown 已提交
2400
	rdev_for_each(r, mddev) {
2401 2402
		if (test_bit(Journal, &rdev->flags) ||
		    !r->sb_page)
2403 2404 2405
			continue;
		sb2 = page_address(r->sb_page);
		sb2->failed_devices = 0;
2406
		memset(sb2->extended_failed_devices, 0, sizeof(sb2->extended_failed_devices));
2407 2408 2409 2410 2411 2412

		/*
		 * Check for any device re-ordering.
		 */
		if (!test_bit(FirstUse, &r->flags) && (r->raid_disk >= 0)) {
			role = le32_to_cpu(sb2->array_position);
2413 2414 2415
			if (role < 0)
				continue;

2416
			if (role != r->raid_disk) {
2417
				if (rs_is_raid10(rs) && __is_raid10_near(mddev->layout)) {
M
Mike Snitzer 已提交
2418
					if (mddev->raid_disks % __raid10_near_copies(mddev->layout) ||
2419 2420 2421 2422 2423
					    rs->raid_disks % rs->raid10_copies) {
						rs->ti->error =
							"Cannot change raid10 near set to odd # of devices!";
						return -EINVAL;
					}
2424 2425 2426 2427

					sb2->array_position = cpu_to_le32(r->raid_disk);

				} else if (!(rs_is_raid10(rs) && rt_is_raid0(rs->raid_type)) &&
2428 2429 2430 2431 2432
					   !(rs_is_raid0(rs) && rt_is_raid10(rs->raid_type)) &&
					   !rt_is_raid1(rs->raid_type)) {
					rs->ti->error = "Cannot change device positions in raid set";
					return -EINVAL;
				}
2433

2434
				DMINFO("raid device #%d now at position #%d", role, r->raid_disk);
2435 2436 2437 2438 2439 2440
			}

			/*
			 * Partial recovery is performed on
			 * returning failed devices.
			 */
2441
			if (test_bit(role, (void *) failed_devices))
2442 2443 2444 2445 2446 2447 2448
				set_bit(Faulty, &r->flags);
		}
	}

	return 0;
}

2449
static int super_validate(struct raid_set *rs, struct md_rdev *rdev)
2450
{
2451
	struct mddev *mddev = &rs->md;
2452 2453
	struct dm_raid_superblock *sb;

2454
	if (rs_is_raid0(rs) || !rdev->sb_page || rdev->raid_disk < 0)
2455 2456 2457
		return 0;

	sb = page_address(rdev->sb_page);
2458 2459 2460 2461 2462

	/*
	 * If mddev->events is not set, we know we have not yet initialized
	 * the array.
	 */
2463
	if (!mddev->events && super_init_validation(rs, rdev))
2464 2465
		return -EINVAL;

2466 2467
	if (le32_to_cpu(sb->compat_features) &&
	    le32_to_cpu(sb->compat_features) != FEATURE_FLAG_SUPPORTS_V190) {
2468 2469 2470 2471 2472
		rs->ti->error = "Unable to assemble array: Unknown flag(s) in compatible feature flags";
		return -EINVAL;
	}

	if (sb->incompat_features) {
2473
		rs->ti->error = "Unable to assemble array: No incompatible feature flags supported yet";
2474 2475 2476
		return -EINVAL;
	}

2477
	/* Enable bitmap creation for RAID levels != 0 */
2478
	mddev->bitmap_info.offset = rt_is_raid0(rs->raid_type) ? 0 : to_sector(4096);
2479
	mddev->bitmap_info.default_offset = mddev->bitmap_info.offset;
2480

2481
	if (!test_and_clear_bit(FirstUse, &rdev->flags)) {
2482 2483 2484 2485 2486 2487 2488 2489
		/*
		 * Retrieve rdev size stored in superblock to be prepared for shrink.
		 * Check extended superblock members are present otherwise the size
		 * will not be set!
		 */
		if (le32_to_cpu(sb->compat_features) & FEATURE_FLAG_SUPPORTS_V190)
			rdev->sectors = le64_to_cpu(sb->sectors);

2490
		rdev->recovery_offset = le64_to_cpu(sb->disk_recovery_offset);
2491 2492 2493 2494 2495 2496
		if (rdev->recovery_offset == MaxSector)
			set_bit(In_sync, &rdev->flags);
		/*
		 * If no reshape in progress -> we're recovering single
		 * disk(s) and have to set the device(s) to out-of-sync
		 */
2497
		else if (!rs_is_reshaping(rs))
2498
			clear_bit(In_sync, &rdev->flags); /* Mandatory for recovery */
2499 2500 2501 2502 2503
	}

	/*
	 * If a device comes back, set it as not In_sync and no longer faulty.
	 */
2504 2505
	if (test_and_clear_bit(Faulty, &rdev->flags)) {
		rdev->recovery_offset = 0;
2506 2507 2508 2509
		clear_bit(In_sync, &rdev->flags);
		rdev->saved_raid_disk = rdev->raid_disk;
	}

2510 2511 2512
	/* Reshape support -> restore repective data offsets */
	rdev->data_offset = le64_to_cpu(sb->data_offset);
	rdev->new_data_offset = le64_to_cpu(sb->new_data_offset);
2513 2514 2515 2516 2517 2518 2519 2520 2521

	return 0;
}

/*
 * Analyse superblocks and select the freshest.
 */
static int analyse_superblocks(struct dm_target *ti, struct raid_set *rs)
{
2522
	int r;
2523
	struct md_rdev *rdev, *freshest;
2524
	struct mddev *mddev = &rs->md;
2525 2526

	freshest = NULL;
2527
	rdev_for_each(rdev, mddev) {
2528 2529 2530
		if (test_bit(Journal, &rdev->flags))
			continue;

2531 2532 2533 2534 2535 2536 2537 2538 2539 2540 2541
		if (!rdev->meta_bdev)
			continue;

		/* Set superblock offset/size for metadata device. */
		rdev->sb_start = 0;
		rdev->sb_size = bdev_logical_block_size(rdev->meta_bdev);
		if (rdev->sb_size < sizeof(struct dm_raid_superblock) || rdev->sb_size > PAGE_SIZE) {
			DMERR("superblock size of a logical block is no longer valid");
			return -EINVAL;
		}

2542
		/*
H
Heinz Mauelshagen 已提交
2543
		 * Skipping super_load due to CTR_FLAG_SYNC will cause
2544
		 * the array to undergo initialization again as
2545
		 * though it were new.	This is the intended effect
2546 2547
		 * of the "sync" directive.
		 *
2548 2549
		 * With reshaping capability added, we must ensure that
		 * that the "sync" directive is disallowed during the reshape.
2550
		 */
2551
		if (test_bit(__CTR_FLAG_SYNC, &rs->ctr_flags))
2552 2553
			continue;

2554
		r = super_load(rdev, freshest);
2555

2556
		switch (r) {
2557 2558 2559 2560 2561 2562
		case 1:
			freshest = rdev;
			break;
		case 0:
			break;
		default:
2563
			/* This is a failure to read the superblock from the metadata device. */
2564 2565 2566 2567 2568 2569 2570
			/*
			 * We have to keep any raid0 data/metadata device pairs or
			 * the MD raid0 personality will fail to start the array.
			 */
			if (rs_is_raid0(rs))
				continue;

2571
			/*
2572 2573 2574 2575 2576 2577
			 * We keep the dm_devs to be able to emit the device tuple
			 * properly on the table line in raid_status() (rather than
			 * mistakenly acting as if '- -' got passed into the constructor).
			 *
			 * The rdev has to stay on the same_set list to allow for
			 * the attempt to restore faulty devices on second resume.
2578
			 */
2579 2580
			rdev->raid_disk = rdev->saved_raid_disk = -1;
			break;
2581 2582 2583 2584 2585 2586 2587 2588 2589 2590
		}
	}

	if (!freshest)
		return 0;

	/*
	 * Validation of the freshest device provides the source of
	 * validation for the remaining devices.
	 */
2591 2592
	rs->ti->error = "Unable to assemble array: Invalid superblocks";
	if (super_validate(rs, freshest))
2593
		return -EINVAL;
2594

2595 2596 2597 2598 2599
	if (validate_raid_redundancy(rs)) {
		rs->ti->error = "Insufficient redundancy to activate array";
		return -EINVAL;
	}

N
NeilBrown 已提交
2600
	rdev_for_each(rdev, mddev)
2601 2602 2603
		if (!test_bit(Journal, &rdev->flags) &&
		    rdev != freshest &&
		    super_validate(rs, rdev))
2604 2605 2606 2607
			return -EINVAL;
	return 0;
}

2608 2609 2610 2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623 2624 2625 2626 2627 2628
/*
 * Adjust data_offset and new_data_offset on all disk members of @rs
 * for out of place reshaping if requested by contructor
 *
 * We need free space at the beginning of each raid disk for forward
 * and at the end for backward reshapes which userspace has to provide
 * via remapping/reordering of space.
 */
static int rs_adjust_data_offsets(struct raid_set *rs)
{
	sector_t data_offset = 0, new_data_offset = 0;
	struct md_rdev *rdev;

	/* Constructor did not request data offset change */
	if (!test_bit(__CTR_FLAG_DATA_OFFSET, &rs->ctr_flags)) {
		if (!rs_is_reshapable(rs))
			goto out;

		return 0;
	}

2629
	/* HM FIXME: get In_Sync raid_dev? */
2630 2631 2632 2633 2634 2635 2636 2637 2638 2639 2640 2641 2642 2643 2644 2645 2646 2647 2648 2649 2650 2651 2652 2653 2654 2655 2656 2657 2658 2659 2660 2661 2662 2663 2664 2665 2666 2667 2668 2669
	rdev = &rs->dev[0].rdev;

	if (rs->delta_disks < 0) {
		/*
		 * Removing disks (reshaping backwards):
		 *
		 * - before reshape: data is at offset 0 and free space
		 *		     is at end of each component LV
		 *
		 * - after reshape: data is at offset rs->data_offset != 0 on each component LV
		 */
		data_offset = 0;
		new_data_offset = rs->data_offset;

	} else if (rs->delta_disks > 0) {
		/*
		 * Adding disks (reshaping forwards):
		 *
		 * - before reshape: data is at offset rs->data_offset != 0 and
		 *		     free space is at begin of each component LV
		 *
		 * - after reshape: data is at offset 0 on each component LV
		 */
		data_offset = rs->data_offset;
		new_data_offset = 0;

	} else {
		/*
		 * User space passes in 0 for data offset after having removed reshape space
		 *
		 * - or - (data offset != 0)
		 *
		 * Changing RAID layout or chunk size -> toggle offsets
		 *
		 * - before reshape: data is at offset rs->data_offset 0 and
		 *		     free space is at end of each component LV
		 *		     -or-
		 *                   data is at offset rs->data_offset != 0 and
		 *		     free space is at begin of each component LV
		 *
2670 2671
		 * - after reshape: data is at offset 0 if it was at offset != 0
		 *                  or at offset != 0 if it was at offset 0
2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682 2683
		 *                  on each component LV
		 *
		 */
		data_offset = rs->data_offset ? rdev->data_offset : 0;
		new_data_offset = data_offset ? 0 : rs->data_offset;
		set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags);
	}

	/*
	 * Make sure we got a minimum amount of free sectors per device
	 */
	if (rs->data_offset &&
2684
	    to_sector(i_size_read(rdev->bdev->bd_inode)) - rs->md.dev_sectors < MIN_FREE_RESHAPE_SPACE) {
2685 2686 2687 2688 2689
		rs->ti->error = data_offset ? "No space for forward reshape" :
					      "No space for backward reshape";
		return -ENOSPC;
	}
out:
2690 2691 2692 2693 2694 2695 2696
	/*
	 * Raise recovery_cp in case data_offset != 0 to
	 * avoid false recovery positives in the constructor.
	 */
	if (rs->md.recovery_cp < rs->md.dev_sectors)
		rs->md.recovery_cp += rs->dev[0].rdev.data_offset;

2697
	/* Adjust data offsets on all rdevs but on any raid4/5/6 journal device */
2698
	rdev_for_each(rdev, &rs->md) {
2699 2700 2701 2702
		if (!test_bit(Journal, &rdev->flags)) {
			rdev->data_offset = data_offset;
			rdev->new_data_offset = new_data_offset;
		}
2703 2704 2705 2706 2707
	}

	return 0;
}

2708
/* Userpace reordered disks -> adjust raid_disk indexes in @rs */
M
Mike Snitzer 已提交
2709
static void __reorder_raid_disk_indexes(struct raid_set *rs)
2710 2711 2712 2713 2714
{
	int i = 0;
	struct md_rdev *rdev;

	rdev_for_each(rdev, &rs->md) {
2715 2716 2717 2718
		if (!test_bit(Journal, &rdev->flags)) {
			rdev->raid_disk = i++;
			rdev->saved_raid_disk = rdev->new_raid_disk = -1;
		}
2719 2720 2721 2722 2723 2724 2725 2726 2727 2728 2729 2730 2731 2732
	}
}

/*
 * Setup @rs for takeover by a different raid level
 */
static int rs_setup_takeover(struct raid_set *rs)
{
	struct mddev *mddev = &rs->md;
	struct md_rdev *rdev;
	unsigned int d = mddev->raid_disks = rs->raid_disks;
	sector_t new_data_offset = rs->dev[0].rdev.data_offset ? 0 : rs->data_offset;

	if (rt_is_raid10(rs->raid_type)) {
H
Heinz Mauelshagen 已提交
2733
		if (rs_is_raid0(rs)) {
2734
			/* Userpace reordered disks -> adjust raid_disk indexes */
M
Mike Snitzer 已提交
2735
			__reorder_raid_disk_indexes(rs);
2736 2737 2738 2739

			/* raid0 -> raid10_far layout */
			mddev->layout = raid10_format_to_md_layout(rs, ALGORITHM_RAID10_FAR,
								   rs->raid10_copies);
H
Heinz Mauelshagen 已提交
2740
		} else if (rs_is_raid1(rs))
2741 2742 2743
			/* raid1 -> raid10_near layout */
			mddev->layout = raid10_format_to_md_layout(rs, ALGORITHM_RAID10_NEAR,
								   rs->raid_disks);
2744
		else
2745 2746 2747 2748 2749 2750 2751 2752 2753 2754 2755 2756 2757 2758 2759 2760 2761 2762 2763 2764 2765 2766 2767 2768
			return -EINVAL;

	}

	clear_bit(MD_ARRAY_FIRST_USE, &mddev->flags);
	mddev->recovery_cp = MaxSector;

	while (d--) {
		rdev = &rs->dev[d].rdev;

		if (test_bit(d, (void *) rs->rebuild_disks)) {
			clear_bit(In_sync, &rdev->flags);
			clear_bit(Faulty, &rdev->flags);
			mddev->recovery_cp = rdev->recovery_offset = 0;
			/* Bitmap has to be created when we do an "up" takeover */
			set_bit(MD_ARRAY_FIRST_USE, &mddev->flags);
		}

		rdev->new_data_offset = new_data_offset;
	}

	return 0;
}

2769 2770 2771 2772 2773 2774 2775 2776 2777 2778 2779 2780 2781 2782 2783 2784 2785 2786 2787 2788 2789 2790 2791 2792 2793 2794 2795 2796 2797 2798 2799 2800 2801 2802 2803
/* Prepare @rs for reshape */
static int rs_prepare_reshape(struct raid_set *rs)
{
	bool reshape;
	struct mddev *mddev = &rs->md;

	if (rs_is_raid10(rs)) {
		if (rs->raid_disks != mddev->raid_disks &&
		    __is_raid10_near(mddev->layout) &&
		    rs->raid10_copies &&
		    rs->raid10_copies != __raid10_near_copies(mddev->layout)) {
			/*
			 * raid disk have to be multiple of data copies to allow this conversion,
			 *
			 * This is actually not a reshape it is a
			 * rebuild of any additional mirrors per group
			 */
			if (rs->raid_disks % rs->raid10_copies) {
				rs->ti->error = "Can't reshape raid10 mirror groups";
				return -EINVAL;
			}

			/* Userpace reordered disks to add/remove mirrors -> adjust raid_disk indexes */
			__reorder_raid_disk_indexes(rs);
			mddev->layout = raid10_format_to_md_layout(rs, ALGORITHM_RAID10_NEAR,
								   rs->raid10_copies);
			mddev->new_layout = mddev->layout;
			reshape = false;
		} else
			reshape = true;

	} else if (rs_is_raid456(rs))
		reshape = true;

	else if (rs_is_raid1(rs)) {
2804 2805 2806 2807 2808 2809 2810 2811 2812
		if (rs->delta_disks) {
			/* Process raid1 via delta_disks */
			mddev->degraded = rs->delta_disks < 0 ? -rs->delta_disks : rs->delta_disks;
			reshape = true;
		} else {
			/* Process raid1 without delta_disks */
			mddev->raid_disks = rs->raid_disks;
			reshape = false;
		}
2813 2814 2815 2816 2817 2818 2819 2820
	} else {
		rs->ti->error = "Called with bogus raid type";
		return -EINVAL;
	}

	if (reshape) {
		set_bit(RT_FLAG_RESHAPE_RS, &rs->runtime_flags);
		set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags);
2821 2822
	} else if (mddev->raid_disks < rs->raid_disks)
		/* Create new superblocks and bitmaps, if any new disks */
2823 2824 2825 2826 2827
		set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags);

	return 0;
}

2828 2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844
/* Get reshape sectors from data_offsets or raid set */
static sector_t _get_reshape_sectors(struct raid_set *rs)
{
	struct md_rdev *rdev;
	sector_t reshape_sectors = 0;

	rdev_for_each(rdev, &rs->md)
		if (!test_bit(Journal, &rdev->flags)) {
			reshape_sectors = (rdev->data_offset > rdev->new_data_offset) ?
					rdev->data_offset - rdev->new_data_offset :
					rdev->new_data_offset - rdev->data_offset;
			break;
		}

	return max(reshape_sectors, (sector_t) rs->data_offset);
}

2845 2846 2847 2848 2849 2850 2851 2852 2853 2854 2855
/*
 *
 * - change raid layout
 * - change chunk size
 * - add disks
 * - remove disks
 */
static int rs_setup_reshape(struct raid_set *rs)
{
	int r = 0;
	unsigned int cur_raid_devs, d;
2856
	sector_t reshape_sectors = _get_reshape_sectors(rs);
2857 2858 2859 2860 2861 2862 2863 2864 2865 2866 2867 2868 2869 2870 2871 2872
	struct mddev *mddev = &rs->md;
	struct md_rdev *rdev;

	mddev->delta_disks = rs->delta_disks;
	cur_raid_devs = mddev->raid_disks;

	/* Ignore impossible layout change whilst adding/removing disks */
	if (mddev->delta_disks &&
	    mddev->layout != mddev->new_layout) {
		DMINFO("Ignoring invalid layout change with delta_disks=%d", rs->delta_disks);
		mddev->new_layout = mddev->layout;
	}

	/*
	 * Adjust array size:
	 *
2873
	 * - in case of adding disk(s), array size has
2874 2875 2876 2877 2878
	 *   to grow after the disk adding reshape,
	 *   which'll hapen in the event handler;
	 *   reshape will happen forward, so space has to
	 *   be available at the beginning of each disk
	 *
2879
	 * - in case of removing disk(s), array size
2880 2881 2882 2883 2884 2885
	 *   has to shrink before starting the reshape,
	 *   which'll happen here;
	 *   reshape will happen backward, so space has to
	 *   be available at the end of each disk
	 *
	 * - data_offset and new_data_offset are
2886
	 *   adjusted for aforementioned out of place
2887 2888
	 *   reshaping based on userspace passing in
	 *   the "data_offset <sectors>" key/value
2889
	 *   pair via the constructor
2890 2891 2892 2893 2894 2895 2896 2897 2898 2899 2900 2901 2902 2903 2904 2905 2906
	 */

	/* Add disk(s) */
	if (rs->delta_disks > 0) {
		/* Prepare disks for check in raid4/5/6/10 {check|start}_reshape */
		for (d = cur_raid_devs; d < rs->raid_disks; d++) {
			rdev = &rs->dev[d].rdev;
			clear_bit(In_sync, &rdev->flags);

			/*
			 * save_raid_disk needs to be -1, or recovery_offset will be set to 0
			 * by md, which'll store that erroneously in the superblock on reshape
			 */
			rdev->saved_raid_disk = -1;
			rdev->raid_disk = d;

			rdev->sectors = mddev->dev_sectors;
2907
			rdev->recovery_offset = rs_is_raid1(rs) ? 0 : MaxSector;
2908 2909
		}

2910
		mddev->reshape_backwards = 0; /* adding disk(s) -> forward reshape */
2911 2912 2913 2914 2915 2916 2917 2918 2919 2920 2921 2922 2923 2924 2925 2926 2927 2928 2929 2930 2931 2932 2933 2934 2935 2936 2937 2938 2939 2940 2941 2942

	/* Remove disk(s) */
	} else if (rs->delta_disks < 0) {
		r = rs_set_dev_and_array_sectors(rs, true);
		mddev->reshape_backwards = 1; /* removing disk(s) -> backward reshape */

	/* Change layout and/or chunk size */
	} else {
		/*
		 * Reshape layout (e.g. raid5_ls -> raid5_n) and/or chunk size:
		 *
		 * keeping number of disks and do layout change ->
		 *
		 * toggle reshape_backward depending on data_offset:
		 *
		 * - free space upfront -> reshape forward
		 *
		 * - free space at the end -> reshape backward
		 *
		 *
		 * This utilizes free reshape space avoiding the need
		 * for userspace to move (parts of) LV segments in
		 * case of layout/chunksize change  (for disk
		 * adding/removing reshape space has to be at
		 * the proper address (see above with delta_disks):
		 *
		 * add disk(s)   -> begin
		 * remove disk(s)-> end
		 */
		mddev->reshape_backwards = rs->dev[0].rdev.data_offset ? 0 : 1;
	}

2943 2944 2945 2946 2947 2948 2949 2950 2951
	/*
	 * Adjust device size for forward reshape
	 * because md_finish_reshape() reduces it.
	 */
	if (!mddev->reshape_backwards)
		rdev_for_each(rdev, &rs->md)
			if (!test_bit(Journal, &rdev->flags))
				rdev->sectors += reshape_sectors;

2952 2953 2954
	return r;
}

2955
/*
2956 2957
 * Enable/disable discard support on RAID set depending on
 * RAID level and discard properties of underlying RAID members.
2958
 */
2959
static void configure_discard_support(struct raid_set *rs)
2960
{
2961 2962
	int i;
	bool raid456;
2963
	struct dm_target *ti = rs->ti;
2964

2965 2966 2967
	/*
	 * XXX: RAID level 4,5,6 require zeroing for safety.
	 */
H
Heinz Mauelshagen 已提交
2968
	raid456 = rs_is_raid456(rs);
2969

2970
	for (i = 0; i < rs->raid_disks; i++) {
2971
		struct request_queue *q;
2972

2973 2974 2975 2976
		if (!rs->dev[i].rdev.bdev)
			continue;

		q = bdev_get_queue(rs->dev[i].rdev.bdev);
2977 2978 2979 2980 2981 2982 2983 2984 2985 2986 2987 2988
		if (!q || !blk_queue_discard(q))
			return;

		if (raid456) {
			if (!devices_handle_discard_safely) {
				DMERR("raid456 discard support disabled due to discard_zeroes_data uncertainty.");
				DMERR("Set dm-raid.devices_handle_discard_safely=Y to override.");
				return;
			}
		}
	}

2989 2990
	/*
	 * RAID1 and RAID10 personalities require bio splitting,
2991
	 * RAID0/4/5/6 don't and process large discard bios properly.
2992
	 */
H
Heinz Mauelshagen 已提交
2993
	ti->split_discard_bios = !!(rs_is_raid1(rs) || rs_is_raid10(rs));
2994 2995 2996
	ti->num_discard_bios = 1;
}

N
NeilBrown 已提交
2997
/*
2998
 * Construct a RAID0/1/10/4/5/6 mapping:
N
NeilBrown 已提交
2999
 * Args:
3000 3001
 *	<raid_type> <#raid_params> <raid_params>{0,}	\
 *	<#raid_devs> [<meta_dev1> <dev1>]{1,}
N
NeilBrown 已提交
3002
 *
3003
 * <raid_params> varies by <raid_type>.	 See 'parse_raid_params' for
N
NeilBrown 已提交
3004
 * details on possible <raid_params>.
3005 3006 3007 3008
 *
 * Userspace is free to initialize the metadata devices, hence the superblocks to
 * enforce recreation based on the passed in table parameters.
 *
N
NeilBrown 已提交
3009
 */
3010
static int raid_ctr(struct dm_target *ti, unsigned int argc, char **argv)
N
NeilBrown 已提交
3011
{
3012
	int r;
3013
	bool resize = false;
N
NeilBrown 已提交
3014
	struct raid_type *rt;
3015
	unsigned int num_raid_params, num_raid_devs;
3016
	sector_t calculated_dev_sectors, rdev_sectors, reshape_sectors;
N
NeilBrown 已提交
3017
	struct raid_set *rs = NULL;
3018
	const char *arg;
3019
	struct rs_layout rs_layout;
3020 3021 3022 3023 3024 3025 3026 3027
	struct dm_arg_set as = { argc, argv }, as_nrd;
	struct dm_arg _args[] = {
		{ 0, as.argc, "Cannot understand number of raid parameters" },
		{ 1, 254, "Cannot understand number of raid devices parameters" }
	};

	/* Must have <raid_type> */
	arg = dm_shift_arg(&as);
3028 3029 3030 3031
	if (!arg) {
		ti->error = "No arguments";
		return -EINVAL;
	}
N
NeilBrown 已提交
3032

3033
	rt = get_raid_type(arg);
3034 3035 3036 3037
	if (!rt) {
		ti->error = "Unrecognised raid_type";
		return -EINVAL;
	}
N
NeilBrown 已提交
3038

3039 3040
	/* Must have <#raid_params> */
	if (dm_read_arg_group(_args, &as, &num_raid_params, &ti->error))
3041
		return -EINVAL;
N
NeilBrown 已提交
3042

3043 3044 3045 3046 3047
	/* number of raid device tupples <meta_dev data_dev> */
	as_nrd = as;
	dm_consume_args(&as_nrd, num_raid_params);
	_args[1].max = (as_nrd.argc - 1) / 2;
	if (dm_read_arg(_args + 1, &as_nrd, &num_raid_devs, &ti->error))
3048
		return -EINVAL;
N
NeilBrown 已提交
3049

3050
	if (!__within_range(num_raid_devs, 1, MAX_RAID_DEVICES)) {
3051 3052 3053
		ti->error = "Invalid number of supplied raid devices";
		return -EINVAL;
	}
3054

3055
	rs = raid_set_alloc(ti, rt, num_raid_devs);
N
NeilBrown 已提交
3056 3057 3058
	if (IS_ERR(rs))
		return PTR_ERR(rs);

3059
	r = parse_raid_params(rs, &as, num_raid_params);
3060
	if (r)
N
NeilBrown 已提交
3061 3062
		goto bad;

3063
	r = parse_dev_params(rs, &as);
3064
	if (r)
N
NeilBrown 已提交
3065 3066
		goto bad;

3067
	rs->md.sync_super = super_sync;
3068

3069 3070 3071 3072 3073 3074
	/*
	 * Calculate ctr requested array and device sizes to allow
	 * for superblock analysis needing device sizes defined.
	 *
	 * Any existing superblock will overwrite the array and device sizes
	 */
3075 3076
	r = rs_set_dev_and_array_sectors(rs, false);
	if (r)
3077
		goto bad;
3078

3079
	calculated_dev_sectors = rs->md.dev_sectors;
3080

3081 3082 3083 3084 3085
	/*
	 * Backup any new raid set level, layout, ...
	 * requested to be able to compare to superblock
	 * members for conversion decisions.
	 */
3086
	rs_config_backup(rs, &rs_layout);
3087

3088 3089
	r = analyse_superblocks(ti, rs);
	if (r)
3090 3091
		goto bad;

3092 3093 3094 3095 3096 3097 3098
	rdev_sectors = __rdev_sectors(rs);
	if (!rdev_sectors) {
		ti->error = "Invalid rdev size";
		r = -EINVAL;
		goto bad;
	}

3099 3100 3101 3102

	reshape_sectors = _get_reshape_sectors(rs);
	if (calculated_dev_sectors != rdev_sectors)
		resize = calculated_dev_sectors != (reshape_sectors ? rdev_sectors - reshape_sectors : rdev_sectors);
3103

N
NeilBrown 已提交
3104 3105
	INIT_WORK(&rs->md.event_work, do_table_event);
	ti->private = rs;
3106
	ti->num_flush_bios = 1;
N
NeilBrown 已提交
3107

3108
	/* Restore any requested new layout for conversion decision */
3109
	rs_config_restore(rs, &rs_layout);
3110

3111 3112 3113 3114 3115 3116
	/*
	 * Now that we have any superblock metadata available,
	 * check for new, recovering, reshaping, to be taken over,
	 * to be reshaped or an existing, unchanged raid set to
	 * run in sequence.
	 */
3117
	if (test_bit(MD_ARRAY_FIRST_USE, &rs->md.flags)) {
3118 3119 3120 3121
		/* A new raid6 set has to be recovered to ensure proper parity and Q-Syndrome */
		if (rs_is_raid6(rs) &&
		    test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags)) {
			ti->error = "'nosync' not allowed for new raid6 set";
3122 3123
			r = -EINVAL;
			goto bad;
3124 3125
		}
		rs_setup_recovery(rs, 0);
3126 3127 3128
		set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags);
		rs_set_new(rs);
	} else if (rs_is_recovering(rs)) {
3129 3130 3131 3132 3133
		/* Rebuild particular devices */
		if (test_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags)) {
			set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags);
			rs_setup_recovery(rs, MaxSector);
		}
3134
		/* A recovering raid set may be resized */
3135 3136 3137 3138 3139
		; /* skip setup rs */
	} else if (rs_is_reshaping(rs)) {
		/* Have to reject size change request during reshape */
		if (resize) {
			ti->error = "Can't resize a reshaping raid set";
3140 3141
			r = -EPERM;
			goto bad;
3142
		}
3143
		/* skip setup rs */
3144
	} else if (rs_takeover_requested(rs)) {
3145 3146
		if (rs_is_reshaping(rs)) {
			ti->error = "Can't takeover a reshaping raid set";
3147 3148
			r = -EPERM;
			goto bad;
3149 3150
		}

3151 3152 3153 3154 3155 3156 3157
		/* We can't takeover a journaled raid4/5/6 */
		if (test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags)) {
			ti->error = "Can't takeover a journaled raid4/5/6 set";
			r = -EPERM;
			goto bad;
		}

3158
		/*
3159
		 * If a takeover is needed, userspace sets any additional
3160 3161 3162
		 * devices to rebuild and we can check for a valid request here.
		 *
		 * If acceptible, set the level to the new requested
3163 3164
		 * one, prohibit requesting recovery, allow the raid
		 * set to run and store superblocks during resume.
3165
		 */
3166 3167
		r = rs_check_takeover(rs);
		if (r)
3168
			goto bad;
3169 3170 3171

		r = rs_setup_takeover(rs);
		if (r)
3172
			goto bad;
3173

3174
		set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags);
3175
		/* Takeover ain't recovery, so disable recovery */
3176
		rs_setup_recovery(rs, MaxSector);
3177
		rs_set_new(rs);
3178
	} else if (rs_reshape_requested(rs)) {
3179 3180 3181 3182 3183 3184 3185 3186 3187 3188 3189 3190
		/*
		 * No need to check for 'ongoing' takeover here, because takeover
		 * is an instant operation as oposed to an ongoing reshape.
		 */

		/* We can't reshape a journaled raid4/5/6 */
		if (test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags)) {
			ti->error = "Can't reshape a journaled raid4/5/6 set";
			r = -EPERM;
			goto bad;
		}

3191 3192 3193 3194 3195 3196 3197 3198 3199 3200 3201 3202
		/* Out-of-place space has to be available to allow for a reshape unless raid1! */
		if (reshape_sectors || rs_is_raid1(rs)) {
			/*
			  * We can only prepare for a reshape here, because the
			  * raid set needs to run to provide the repective reshape
			  * check functions via its MD personality instance.
			  *
			  * So do the reshape check after md_run() succeeded.
			  */
			r = rs_prepare_reshape(rs);
			if (r)
				return r;
3203

3204 3205 3206
			/* Reshaping ain't recovery, so disable recovery */
			rs_setup_recovery(rs, MaxSector);
		}
3207
		rs_set_cur(rs);
3208 3209
	} else {
		/* May not set recovery when a device rebuild is requested */
3210 3211 3212 3213 3214
		if (test_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags)) {
			rs_setup_recovery(rs, MaxSector);
			set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags);
		} else
			rs_setup_recovery(rs, test_bit(__CTR_FLAG_SYNC, &rs->ctr_flags) ?
3215 3216
					      0 : (resize ? calculated_dev_sectors : MaxSector));
		rs_set_cur(rs);
3217
	}
3218

3219 3220 3221
	/* If constructor requested it, change data and new_data offsets */
	r = rs_adjust_data_offsets(rs);
	if (r)
3222
		goto bad;
3223

3224 3225 3226
	/* Start raid set read-only and assumed clean to change in raid_resume() */
	rs->md.ro = 1;
	rs->md.in_sync = 1;
3227 3228

	/* Keep array frozen */
3229
	set_bit(MD_RECOVERY_FROZEN, &rs->md.recovery);
3230

3231 3232
	/* Has to be held on running the array */
	mddev_lock_nointr(&rs->md);
3233
	r = md_run(&rs->md);
N
NeilBrown 已提交
3234
	rs->md.in_sync = 0; /* Assume already marked dirty */
3235
	if (r) {
3236 3237
		ti->error = "Failed to run raid array";
		mddev_unlock(&rs->md);
N
NeilBrown 已提交
3238 3239 3240
		goto bad;
	}

3241 3242 3243 3244 3245 3246 3247 3248
	r = md_start(&rs->md);

	if (r) {
		ti->error = "Failed to start raid array";
		mddev_unlock(&rs->md);
		goto bad_md_start;
	}

N
NeilBrown 已提交
3249 3250 3251
	rs->callbacks.congested_fn = raid_is_congested;
	dm_table_add_target_callbacks(ti->table, &rs->callbacks);

3252
	/* If raid4/5/6 journal mode explicitly requested (only possible with journal dev) -> set it */
3253 3254 3255 3256 3257 3258 3259 3260 3261
	if (test_bit(__CTR_FLAG_JOURNAL_MODE, &rs->ctr_flags)) {
		r = r5c_journal_mode_set(&rs->md, rs->journal_dev.mode);
		if (r) {
			ti->error = "Failed to set raid4/5/6 journal mode";
			mddev_unlock(&rs->md);
			goto bad_journal_mode_set;
		}
	}

J
Jonathan Brassow 已提交
3262
	mddev_suspend(&rs->md);
3263
	set_bit(RT_FLAG_RS_SUSPENDED, &rs->runtime_flags);
3264 3265 3266 3267 3268 3269 3270 3271 3272 3273 3274 3275

	/* Try to adjust the raid4/5/6 stripe cache size to the stripe size */
	if (rs_is_raid456(rs)) {
		r = rs_set_raid456_stripe_cache(rs);
		if (r)
			goto bad_stripe_cache;
	}

	/* Now do an early reshape check */
	if (test_bit(RT_FLAG_RESHAPE_RS, &rs->runtime_flags)) {
		r = rs_check_reshape(rs);
		if (r)
3276
			goto bad_check_reshape;
3277 3278 3279 3280

		/* Restore new, ctr requested layout to perform check */
		rs_config_restore(rs, &rs_layout);

3281 3282 3283 3284 3285 3286
		if (rs->md.pers->start_reshape) {
			r = rs->md.pers->check_reshape(&rs->md);
			if (r) {
				ti->error = "Reshape check failed";
				goto bad_check_reshape;
			}
3287 3288 3289
		}
	}

3290 3291 3292
	/* Disable/enable discard support on raid set. */
	configure_discard_support(rs);

3293
	mddev_unlock(&rs->md);
N
NeilBrown 已提交
3294 3295
	return 0;

3296
bad_md_start:
3297
bad_journal_mode_set:
3298 3299
bad_stripe_cache:
bad_check_reshape:
3300
	md_stop(&rs->md);
N
NeilBrown 已提交
3301
bad:
3302
	raid_set_free(rs);
N
NeilBrown 已提交
3303

3304
	return r;
N
NeilBrown 已提交
3305 3306 3307 3308 3309 3310 3311 3312
}

static void raid_dtr(struct dm_target *ti)
{
	struct raid_set *rs = ti->private;

	list_del_init(&rs->callbacks.list);
	md_stop(&rs->md);
3313
	raid_set_free(rs);
N
NeilBrown 已提交
3314 3315
}

M
Mikulas Patocka 已提交
3316
static int raid_map(struct dm_target *ti, struct bio *bio)
N
NeilBrown 已提交
3317 3318
{
	struct raid_set *rs = ti->private;
3319
	struct mddev *mddev = &rs->md;
N
NeilBrown 已提交
3320

3321 3322 3323 3324 3325
	/*
	 * If we're reshaping to add disk(s)), ti->len and
	 * mddev->array_sectors will differ during the process
	 * (ti->len > mddev->array_sectors), so we have to requeue
	 * bios with addresses > mddev->array_sectors here or
3326
	 * there will occur accesses past EOD of the component
3327 3328 3329 3330 3331
	 * data images thus erroring the raid set.
	 */
	if (unlikely(bio_end_sector(bio) > mddev->array_sectors))
		return DM_MAPIO_REQUEUE;

3332
	md_handle_request(mddev, bio);
N
NeilBrown 已提交
3333 3334 3335 3336

	return DM_MAPIO_SUBMITTED;
}

3337 3338 3339 3340 3341 3342 3343 3344 3345 3346 3347 3348 3349 3350 3351 3352 3353 3354 3355 3356
/* Return sync state string for @state */
enum sync_state { st_frozen, st_reshape, st_resync, st_check, st_repair, st_recover, st_idle };
static const char *sync_str(enum sync_state state)
{
	/* Has to be in above sync_state order! */
	static const char *sync_strs[] = {
		"frozen",
		"reshape",
		"resync",
		"check",
		"repair",
		"recover",
		"idle"
	};

	return __within_range(state, 0, ARRAY_SIZE(sync_strs) - 1) ? sync_strs[state] : "undef";
};

/* Return enum sync_state for @mddev derived from @recovery flags */
static const enum sync_state decipher_sync_action(struct mddev *mddev, unsigned long recovery)
3357
{
3358
	if (test_bit(MD_RECOVERY_FROZEN, &recovery))
3359
		return st_frozen;
3360

3361
	/* The MD sync thread can be done with io or be interrupted but still be running */
3362 3363 3364
	if (!test_bit(MD_RECOVERY_DONE, &recovery) &&
	    (test_bit(MD_RECOVERY_RUNNING, &recovery) ||
	     (!mddev->ro && test_bit(MD_RECOVERY_NEEDED, &recovery)))) {
3365
		if (test_bit(MD_RECOVERY_RESHAPE, &recovery))
3366
			return st_reshape;
3367

3368 3369
		if (test_bit(MD_RECOVERY_SYNC, &recovery)) {
			if (!test_bit(MD_RECOVERY_REQUESTED, &recovery))
3370 3371 3372 3373
				return st_resync;
			if (test_bit(MD_RECOVERY_CHECK, &recovery))
				return st_check;
			return st_repair;
3374 3375
		}

3376
		if (test_bit(MD_RECOVERY_RECOVER, &recovery))
3377 3378 3379 3380
			return st_recover;

		if (mddev->reshape_position != MaxSector)
			return st_reshape;
3381 3382
	}

3383
	return st_idle;
3384 3385
}

3386
/*
3387
 * Return status string for @rdev
3388 3389 3390
 *
 * Status characters:
 *
3391
 *  'D' = Dead/Failed raid set component or raid4/5/6 journal device
3392 3393
 *  'a' = Alive but not in-sync raid set component _or_ alive raid4/5/6 'write_back' journal device
 *  'A' = Alive and in-sync raid set component _or_ alive raid4/5/6 'write_through' journal device
3394
 *  '-' = Non-existing device (i.e. uspace passed '- -' into the ctr)
3395
 */
3396
static const char *__raid_dev_status(struct raid_set *rs, struct md_rdev *rdev)
N
NeilBrown 已提交
3397
{
3398 3399 3400
	if (!rdev->bdev)
		return "-";
	else if (test_bit(Faulty, &rdev->flags))
3401
		return "D";
3402
	else if (test_bit(Journal, &rdev->flags))
3403
		return (rs->journal_dev.mode == R5C_JOURNAL_MODE_WRITE_THROUGH) ? "A" : "a";
3404 3405 3406
	else if (test_bit(RT_FLAG_RS_RESYNCING, &rs->runtime_flags) ||
		 (!test_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags) &&
		  !test_bit(In_sync, &rdev->flags)))
3407 3408 3409 3410
		return "a";
	else
		return "A";
}
N
NeilBrown 已提交
3411

3412
/* Helper to return resync/reshape progress for @rs and runtime flags for raid set in sync / resynching */
3413
static sector_t rs_get_progress(struct raid_set *rs, unsigned long recovery,
3414
				sector_t resync_max_sectors)
3415
{
3416
	sector_t r;
3417
	enum sync_state state;
3418
	struct mddev *mddev = &rs->md;
N
NeilBrown 已提交
3419

3420
	clear_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags);
3421
	clear_bit(RT_FLAG_RS_RESYNCING, &rs->runtime_flags);
3422 3423 3424

	if (rs_is_raid0(rs)) {
		r = resync_max_sectors;
3425
		set_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags);
3426 3427

	} else {
3428 3429 3430
		state = decipher_sync_action(mddev, recovery);

		if (state == st_idle && !test_bit(MD_RECOVERY_INTR, &recovery))
3431
			r = mddev->recovery_cp;
3432 3433
		else
			r = mddev->curr_resync_completed;
3434

3435
		if (state == st_idle && r >= resync_max_sectors) {
3436 3437 3438
			/*
			 * Sync complete.
			 */
3439 3440 3441 3442
			/* In case we have finished recovering, the array is in sync. */
			if (test_bit(MD_RECOVERY_RECOVER, &recovery))
				set_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags);

3443
		} else if (state == st_recover)
3444 3445 3446 3447 3448
			/*
			 * In case we are recovering, the array is not in sync
			 * and health chars should show the recovering legs.
			 */
			;
3449
		else if (state == st_resync)
3450 3451 3452 3453 3454 3455
			/*
			 * If "resync" is occurring, the raid set
			 * is or may be out of sync hence the health
			 * characters shall be 'a'.
			 */
			set_bit(RT_FLAG_RS_RESYNCING, &rs->runtime_flags);
3456
		else if (state == st_reshape)
3457 3458 3459 3460 3461 3462 3463
			/*
			 * If "reshape" is occurring, the raid set
			 * is or may be out of sync hence the health
			 * characters shall be 'a'.
			 */
			set_bit(RT_FLAG_RS_RESYNCING, &rs->runtime_flags);

3464
		else if (state == st_check || state == st_repair)
3465 3466 3467 3468 3469
			/*
			 * If "check" or "repair" is occurring, the raid set has
			 * undergone an initial sync and the health characters
			 * should not be 'a' anymore.
			 */
3470
			set_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags);
3471

3472
		else {
3473
			struct md_rdev *rdev;
3474

3475 3476
			/*
			 * We are idle and recovery is needed, prevent 'A' chars race
3477
			 * caused by components still set to in-sync by constructor.
3478 3479 3480 3481
			 */
			if (test_bit(MD_RECOVERY_NEEDED, &recovery))
				set_bit(RT_FLAG_RS_RESYNCING, &rs->runtime_flags);

3482 3483
			/*
			 * The raid set may be doing an initial sync, or it may
3484
			 * be rebuilding individual components.	 If all the
3485 3486 3487
			 * devices are In_sync, then it is the raid set that is
			 * being initialized.
			 */
3488
			set_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags);
3489
			rdev_for_each(rdev, mddev)
3490
				if (!test_bit(Journal, &rdev->flags) &&
3491 3492 3493 3494
				    !test_bit(In_sync, &rdev->flags)) {
					clear_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags);
					break;
				}
3495
		}
3496 3497
	}

3498
	return min(r, resync_max_sectors);
3499 3500 3501
}

/* Helper to return @dev name or "-" if !@dev */
M
Mike Snitzer 已提交
3502
static const char *__get_dev_name(struct dm_dev *dev)
3503 3504 3505 3506 3507 3508 3509 3510 3511 3512
{
	return dev ? dev->name : "-";
}

static void raid_status(struct dm_target *ti, status_type_t type,
			unsigned int status_flags, char *result, unsigned int maxlen)
{
	struct raid_set *rs = ti->private;
	struct mddev *mddev = &rs->md;
	struct r5conf *conf = mddev->private;
3513
	int i, max_nr_stripes = conf ? conf->max_nr_stripes : 0;
3514
	unsigned long recovery;
3515 3516
	unsigned int raid_param_cnt = 1; /* at least 1 for chunksize */
	unsigned int sz = 0;
3517
	unsigned int rebuild_disks;
3518 3519 3520 3521 3522 3523 3524 3525 3526 3527 3528 3529
	unsigned int write_mostly_params = 0;
	sector_t progress, resync_max_sectors, resync_mismatches;
	const char *sync_action;
	struct raid_type *rt;

	switch (type) {
	case STATUSTYPE_INFO:
		/* *Should* always succeed */
		rt = get_raid_type_by_ll(mddev->new_level, mddev->new_layout);
		if (!rt)
			return;

3530
		DMEMIT("%s %d ", rt->name, mddev->raid_disks);
3531 3532 3533

		/* Access most recent mddev properties for status output */
		smp_rmb();
3534
		recovery = rs->md.recovery;
3535
		/* Get sensible max sectors even if raid set not yet started */
3536
		resync_max_sectors = test_bit(RT_FLAG_RS_PRERESUMED, &rs->runtime_flags) ?
3537
				      mddev->resync_max_sectors : mddev->dev_sectors;
3538
		progress = rs_get_progress(rs, recovery, resync_max_sectors);
3539
		resync_mismatches = (mddev->last_sync_action && !strcasecmp(mddev->last_sync_action, "check")) ?
3540
				    atomic64_read(&mddev->resync_mismatches) : 0;
3541
		sync_action = sync_str(decipher_sync_action(&rs->md, recovery));
3542

3543 3544
		/* HM FIXME: do we want another state char for raid0? It shows 'D'/'A'/'-' now */
		for (i = 0; i < rs->raid_disks; i++)
3545
			DMEMIT(__raid_dev_status(rs, &rs->dev[i].rdev));
N
NeilBrown 已提交
3546

3547
		/*
3548
		 * In-sync/Reshape ratio:
3549
		 *  The in-sync ratio shows the progress of:
3550 3551
		 *   - Initializing the raid set
		 *   - Rebuilding a subset of devices of the raid set
3552 3553
		 *  The user can distinguish between the two by referring
		 *  to the status characters.
3554 3555 3556 3557
		 *
		 *  The reshape ratio shows the progress of
		 *  changing the raid layout or the number of
		 *  disks of a raid set
3558
		 */
3559 3560
		DMEMIT(" %llu/%llu", (unsigned long long) progress,
				     (unsigned long long) resync_max_sectors);
N
NeilBrown 已提交
3561

3562
		/*
3563 3564
		 * v1.5.0+:
		 *
3565
		 * Sync action:
3566
		 *   See Documentation/device-mapper/dm-raid.txt for
3567 3568
		 *   information on each of these states.
		 */
3569
		DMEMIT(" %s", sync_action);
3570 3571

		/*
3572 3573
		 * v1.5.0+:
		 *
3574 3575
		 * resync_mismatches/mismatch_cnt
		 *   This field shows the number of discrepancies found when
3576
		 *   performing a "check" of the raid set.
3577
		 */
3578
		DMEMIT(" %llu", (unsigned long long) resync_mismatches);
N
NeilBrown 已提交
3579

3580
		/*
3581
		 * v1.9.0+:
3582 3583 3584 3585 3586 3587 3588 3589 3590
		 *
		 * data_offset (needed for out of space reshaping)
		 *   This field shows the data offset into the data
		 *   image LV where the first stripes data starts.
		 *
		 * We keep data_offset equal on all raid disks of the set,
		 * so retrieving it from the first raid disk is sufficient.
		 */
		DMEMIT(" %llu", (unsigned long long) rs->dev[0].rdev.data_offset);
3591 3592 3593 3594 3595

		/*
		 * v1.10.0+:
		 */
		DMEMIT(" %s", test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags) ?
3596
			      __raid_dev_status(rs, &rs->journal_dev.rdev) : "-");
3597
		break;
N
NeilBrown 已提交
3598

3599 3600 3601 3602
	case STATUSTYPE_TABLE:
		/* Report the table line string you would use to construct this raid set */

		/* Calculate raid parameter count */
3603 3604
		for (i = 0; i < rs->raid_disks; i++)
			if (test_bit(WriteMostly, &rs->dev[i].rdev.flags))
3605
				write_mostly_params += 2;
3606 3607
		rebuild_disks = memweight(rs->rebuild_disks, DISKS_ARRAY_ELEMS * sizeof(*rs->rebuild_disks));
		raid_param_cnt += rebuild_disks * 2 +
3608 3609
				  write_mostly_params +
				  hweight32(rs->ctr_flags & CTR_FLAG_OPTIONS_NO_ARGS) +
3610
				  hweight32(rs->ctr_flags & CTR_FLAG_OPTIONS_ONE_ARG) * 2 +
3611 3612
				  (test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags) ? 2 : 0) +
				  (test_bit(__CTR_FLAG_JOURNAL_MODE, &rs->ctr_flags) ? 2 : 0);
3613

3614
		/* Emit table line */
3615
		/* This has to be in the documented order for userspace! */
3616
		DMEMIT("%s %u %u", rs->raid_type->name, raid_param_cnt, mddev->new_chunk_sectors);
3617
		if (test_bit(__CTR_FLAG_SYNC, &rs->ctr_flags))
3618
			DMEMIT(" %s", dm_raid_arg_name_by_flag(CTR_FLAG_SYNC));
3619 3620
		if (test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags))
			DMEMIT(" %s", dm_raid_arg_name_by_flag(CTR_FLAG_NOSYNC));
3621 3622 3623 3624 3625
		if (rebuild_disks)
			for (i = 0; i < rs->raid_disks; i++)
				if (test_bit(rs->dev[i].rdev.raid_disk, (void *) rs->rebuild_disks))
					DMEMIT(" %s %u", dm_raid_arg_name_by_flag(CTR_FLAG_REBUILD),
							 rs->dev[i].rdev.raid_disk);
3626 3627 3628 3629 3630 3631 3632 3633 3634
		if (test_bit(__CTR_FLAG_DAEMON_SLEEP, &rs->ctr_flags))
			DMEMIT(" %s %lu", dm_raid_arg_name_by_flag(CTR_FLAG_DAEMON_SLEEP),
					  mddev->bitmap_info.daemon_sleep);
		if (test_bit(__CTR_FLAG_MIN_RECOVERY_RATE, &rs->ctr_flags))
			DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_MIN_RECOVERY_RATE),
					 mddev->sync_speed_min);
		if (test_bit(__CTR_FLAG_MAX_RECOVERY_RATE, &rs->ctr_flags))
			DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_MAX_RECOVERY_RATE),
					 mddev->sync_speed_max);
3635 3636 3637 3638 3639
		if (write_mostly_params)
			for (i = 0; i < rs->raid_disks; i++)
				if (test_bit(WriteMostly, &rs->dev[i].rdev.flags))
					DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_WRITE_MOSTLY),
					       rs->dev[i].rdev.raid_disk);
3640
		if (test_bit(__CTR_FLAG_MAX_WRITE_BEHIND, &rs->ctr_flags))
3641
			DMEMIT(" %s %lu", dm_raid_arg_name_by_flag(CTR_FLAG_MAX_WRITE_BEHIND),
3642
					  mddev->bitmap_info.max_write_behind);
3643 3644 3645 3646 3647 3648 3649 3650 3651 3652 3653 3654 3655 3656 3657 3658 3659 3660
		if (test_bit(__CTR_FLAG_STRIPE_CACHE, &rs->ctr_flags))
			DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_STRIPE_CACHE),
					 max_nr_stripes);
		if (test_bit(__CTR_FLAG_REGION_SIZE, &rs->ctr_flags))
			DMEMIT(" %s %llu", dm_raid_arg_name_by_flag(CTR_FLAG_REGION_SIZE),
					   (unsigned long long) to_sector(mddev->bitmap_info.chunksize));
		if (test_bit(__CTR_FLAG_RAID10_COPIES, &rs->ctr_flags))
			DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_RAID10_COPIES),
					 raid10_md_layout_to_copies(mddev->layout));
		if (test_bit(__CTR_FLAG_RAID10_FORMAT, &rs->ctr_flags))
			DMEMIT(" %s %s", dm_raid_arg_name_by_flag(CTR_FLAG_RAID10_FORMAT),
					 raid10_md_layout_to_format(mddev->layout));
		if (test_bit(__CTR_FLAG_DELTA_DISKS, &rs->ctr_flags))
			DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_DELTA_DISKS),
					 max(rs->delta_disks, mddev->delta_disks));
		if (test_bit(__CTR_FLAG_DATA_OFFSET, &rs->ctr_flags))
			DMEMIT(" %s %llu", dm_raid_arg_name_by_flag(CTR_FLAG_DATA_OFFSET),
					   (unsigned long long) rs->data_offset);
3661 3662 3663
		if (test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags))
			DMEMIT(" %s %s", dm_raid_arg_name_by_flag(CTR_FLAG_JOURNAL_DEV),
					__get_dev_name(rs->journal_dev.dev));
3664 3665 3666
		if (test_bit(__CTR_FLAG_JOURNAL_MODE, &rs->ctr_flags))
			DMEMIT(" %s %s", dm_raid_arg_name_by_flag(CTR_FLAG_JOURNAL_MODE),
					 md_journal_mode_to_dm_raid(rs->journal_dev.mode));
3667
		DMEMIT(" %d", rs->raid_disks);
3668 3669 3670
		for (i = 0; i < rs->raid_disks; i++)
			DMEMIT(" %s %s", __get_dev_name(rs->dev[i].meta_dev),
					 __get_dev_name(rs->dev[i].data_dev));
N
NeilBrown 已提交
3671 3672 3673
	}
}

3674 3675
static int raid_message(struct dm_target *ti, unsigned int argc, char **argv,
			char *result, unsigned maxlen)
3676 3677 3678 3679 3680 3681 3682 3683 3684 3685 3686 3687 3688 3689 3690 3691 3692 3693 3694 3695 3696
{
	struct raid_set *rs = ti->private;
	struct mddev *mddev = &rs->md;

	if (!mddev->pers || !mddev->pers->sync_request)
		return -EINVAL;

	if (!strcasecmp(argv[0], "frozen"))
		set_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
	else
		clear_bit(MD_RECOVERY_FROZEN, &mddev->recovery);

	if (!strcasecmp(argv[0], "idle") || !strcasecmp(argv[0], "frozen")) {
		if (mddev->sync_thread) {
			set_bit(MD_RECOVERY_INTR, &mddev->recovery);
			md_reap_sync_thread(mddev);
		}
	} else if (test_bit(MD_RECOVERY_RUNNING, &mddev->recovery) ||
		   test_bit(MD_RECOVERY_NEEDED, &mddev->recovery))
		return -EBUSY;
	else if (!strcasecmp(argv[0], "resync"))
3697 3698
		; /* MD_RECOVERY_NEEDED set below */
	else if (!strcasecmp(argv[0], "recover"))
3699
		set_bit(MD_RECOVERY_RECOVER, &mddev->recovery);
3700
	else {
3701
		if (!strcasecmp(argv[0], "check")) {
3702
			set_bit(MD_RECOVERY_CHECK, &mddev->recovery);
3703 3704 3705
			set_bit(MD_RECOVERY_REQUESTED, &mddev->recovery);
			set_bit(MD_RECOVERY_SYNC, &mddev->recovery);
		} else if (!strcasecmp(argv[0], "repair")) {
3706 3707 3708
			set_bit(MD_RECOVERY_REQUESTED, &mddev->recovery);
			set_bit(MD_RECOVERY_SYNC, &mddev->recovery);
		} else
3709 3710 3711 3712 3713 3714 3715
			return -EINVAL;
	}
	if (mddev->ro == 2) {
		/* A write to sync_action is enough to justify
		 * canceling read-auto mode
		 */
		mddev->ro = 0;
3716
		if (!mddev->suspended && mddev->sync_thread)
3717 3718 3719
			md_wakeup_thread(mddev->sync_thread);
	}
	set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
3720
	if (!mddev->suspended && mddev->thread)
3721 3722 3723 3724 3725 3726 3727
		md_wakeup_thread(mddev->thread);

	return 0;
}

static int raid_iterate_devices(struct dm_target *ti,
				iterate_devices_callout_fn fn, void *data)
N
NeilBrown 已提交
3728 3729
{
	struct raid_set *rs = ti->private;
3730
	unsigned int i;
3731
	int r = 0;
N
NeilBrown 已提交
3732

3733
	for (i = 0; !r && i < rs->md.raid_disks; i++)
N
NeilBrown 已提交
3734
		if (rs->dev[i].data_dev)
3735
			r = fn(ti,
N
NeilBrown 已提交
3736 3737 3738 3739 3740
				 rs->dev[i].data_dev,
				 0, /* No offset on data devs */
				 rs->md.dev_sectors,
				 data);

3741
	return r;
N
NeilBrown 已提交
3742 3743 3744 3745 3746
}

static void raid_io_hints(struct dm_target *ti, struct queue_limits *limits)
{
	struct raid_set *rs = ti->private;
3747
	unsigned int chunk_size = to_bytes(rs->md.chunk_sectors);
N
NeilBrown 已提交
3748 3749

	blk_limits_io_min(limits, chunk_size);
3750
	blk_limits_io_opt(limits, chunk_size * mddev_data_stripes(rs));
N
NeilBrown 已提交
3751 3752 3753 3754 3755 3756
}

static void raid_postsuspend(struct dm_target *ti)
{
	struct raid_set *rs = ti->private;

3757
	if (!test_and_set_bit(RT_FLAG_RS_SUSPENDED, &rs->runtime_flags)) {
3758 3759 3760 3761
		/* Writes have to be stopped before suspending to avoid deadlocks. */
		if (!test_bit(MD_RECOVERY_FROZEN, &rs->md.recovery))
			md_stop_writes(&rs->md);

3762
		mddev_lock_nointr(&rs->md);
3763
		mddev_suspend(&rs->md);
3764 3765
		mddev_unlock(&rs->md);
	}
N
NeilBrown 已提交
3766 3767
}

3768
static void attempt_restore_of_faulty_devices(struct raid_set *rs)
N
NeilBrown 已提交
3769
{
3770
	int i;
3771
	uint64_t cleared_failed_devices[DISKS_ARRAY_ELEMS];
3772
	unsigned long flags;
3773
	bool cleared = false;
3774
	struct dm_raid_superblock *sb;
3775
	struct mddev *mddev = &rs->md;
3776
	struct md_rdev *r;
N
NeilBrown 已提交
3777

3778 3779 3780 3781 3782 3783
	/* RAID personalities have to provide hot add/remove methods or we need to bail out. */
	if (!mddev->pers || !mddev->pers->hot_add_disk || !mddev->pers->hot_remove_disk)
		return;

	memset(cleared_failed_devices, 0, sizeof(cleared_failed_devices));

3784
	for (i = 0; i < mddev->raid_disks; i++) {
3785
		r = &rs->dev[i].rdev;
3786 3787 3788 3789
		/* HM FIXME: enhance journal device recovery processing */
		if (test_bit(Journal, &r->flags))
			continue;

3790 3791
		if (test_bit(Faulty, &r->flags) &&
		    r->meta_bdev && !read_disk_sb(r, r->sb_size, true)) {
3792 3793 3794
			DMINFO("Faulty %s device #%d has readable super block."
			       "  Attempting to revive it.",
			       rs->raid_type->name, i);
3795 3796 3797 3798 3799

			/*
			 * Faulty bit may be set, but sometimes the array can
			 * be suspended before the personalities can respond
			 * by removing the device from the array (i.e. calling
3800
			 * 'hot_remove_disk').	If they haven't yet removed
3801 3802 3803 3804
			 * the failed device, its 'raid_disk' number will be
			 * '>= 0' - meaning we must call this function
			 * ourselves.
			 */
3805
			flags = r->flags;
3806 3807 3808 3809 3810 3811 3812 3813 3814 3815
			clear_bit(In_sync, &r->flags); /* Mandatory for hot remove. */
			if (r->raid_disk >= 0) {
				if (mddev->pers->hot_remove_disk(mddev, r)) {
					/* Failed to revive this device, try next */
					r->flags = flags;
					continue;
				}
			} else
				r->raid_disk = r->saved_raid_disk = i;

3816 3817
			clear_bit(Faulty, &r->flags);
			clear_bit(WriteErrorSeen, &r->flags);
3818

3819
			if (mddev->pers->hot_add_disk(mddev, r)) {
3820 3821
				/* Failed to revive this device, try next */
				r->raid_disk = r->saved_raid_disk = -1;
3822 3823
				r->flags = flags;
			} else {
3824
				clear_bit(In_sync, &r->flags);
3825
				r->recovery_offset = 0;
3826 3827
				set_bit(i, (void *) cleared_failed_devices);
				cleared = true;
3828 3829 3830
			}
		}
	}
3831 3832 3833 3834 3835

	/* If any failed devices could be cleared, update all sbs failed_devices bits */
	if (cleared) {
		uint64_t failed_devices[DISKS_ARRAY_ELEMS];

3836
		rdev_for_each(r, &rs->md) {
3837 3838 3839
			if (test_bit(Journal, &r->flags))
				continue;

3840
			sb = page_address(r->sb_page);
3841 3842 3843 3844 3845 3846
			sb_retrieve_failed_devices(sb, failed_devices);

			for (i = 0; i < DISKS_ARRAY_ELEMS; i++)
				failed_devices[i] &= ~cleared_failed_devices[i];

			sb_update_failed_devices(sb, failed_devices);
3847 3848 3849 3850
		}
	}
}

M
Mike Snitzer 已提交
3851
static int __load_dirty_region_bitmap(struct raid_set *rs)
3852 3853 3854 3855 3856
{
	int r = 0;

	/* Try loading the bitmap unless "raid0", which does not have one */
	if (!rs_is_raid0(rs) &&
3857
	    !test_and_set_bit(RT_FLAG_RS_BITMAP_LOADED, &rs->runtime_flags)) {
3858
		r = md_bitmap_load(&rs->md);
3859 3860 3861 3862 3863 3864 3865
		if (r)
			DMERR("Failed to load bitmap");
	}

	return r;
}

3866 3867 3868 3869 3870 3871
/* Enforce updating all superblocks */
static void rs_update_sbs(struct raid_set *rs)
{
	struct mddev *mddev = &rs->md;
	int ro = mddev->ro;

3872
	set_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags);
3873 3874 3875 3876 3877
	mddev->ro = 0;
	md_update_sb(mddev, 1);
	mddev->ro = ro;
}

3878 3879 3880 3881 3882 3883 3884 3885 3886 3887 3888 3889 3890
/*
 * Reshape changes raid algorithm of @rs to new one within personality
 * (e.g. raid6_zr -> raid6_nc), changes stripe size, adds/removes
 * disks from a raid set thus growing/shrinking it or resizes the set
 *
 * Call mddev_lock_nointr() before!
 */
static int rs_start_reshape(struct raid_set *rs)
{
	int r;
	struct mddev *mddev = &rs->md;
	struct md_personality *pers = mddev->pers;

3891 3892 3893
	/* Don't allow the sync thread to work until the table gets reloaded. */
	set_bit(MD_RECOVERY_WAIT, &mddev->recovery);

3894 3895 3896 3897 3898 3899 3900 3901 3902 3903 3904 3905 3906 3907 3908 3909 3910 3911 3912 3913 3914 3915 3916 3917 3918 3919 3920
	r = rs_setup_reshape(rs);
	if (r)
		return r;

	/*
	 * Check any reshape constraints enforced by the personalility
	 *
	 * May as well already kick the reshape off so that * pers->start_reshape() becomes optional.
	 */
	r = pers->check_reshape(mddev);
	if (r) {
		rs->ti->error = "pers->check_reshape() failed";
		return r;
	}

	/*
	 * Personality may not provide start reshape method in which
	 * case check_reshape above has already covered everything
	 */
	if (pers->start_reshape) {
		r = pers->start_reshape(mddev);
		if (r) {
			rs->ti->error = "pers->start_reshape() failed";
			return r;
		}
	}

3921 3922 3923 3924 3925 3926
	/*
	 * Now reshape got set up, update superblocks to
	 * reflect the fact so that a table reload will
	 * access proper superblock content in the ctr.
	 */
	rs_update_sbs(rs);
3927 3928 3929 3930

	return 0;
}

3931 3932
static int raid_preresume(struct dm_target *ti)
{
3933
	int r;
3934 3935 3936
	struct raid_set *rs = ti->private;
	struct mddev *mddev = &rs->md;

3937
	/* This is a resume after a suspend of the set -> it's already started. */
3938
	if (test_and_set_bit(RT_FLAG_RS_PRERESUMED, &rs->runtime_flags))
3939 3940 3941 3942
		return 0;

	/*
	 * The superblocks need to be updated on disk if the
3943 3944 3945
	 * array is new or new devices got added (thus zeroed
	 * out by userspace) or __load_dirty_region_bitmap
	 * will overwrite them in core with old data or fail.
3946
	 */
3947 3948
	if (test_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags))
		rs_update_sbs(rs);
3949 3950

	/* Load the bitmap from disk unless raid0 */
3951 3952 3953 3954
	r = __load_dirty_region_bitmap(rs);
	if (r)
		return r;

3955
	/* Resize bitmap to adjust to changed region size (aka MD bitmap chunksize) */
3956
	if (test_bit(RT_FLAG_RS_BITMAP_LOADED, &rs->runtime_flags) && mddev->bitmap &&
3957
	    mddev->bitmap_info.chunksize != to_bytes(rs->requested_bitmap_chunk_sectors)) {
3958 3959
		r = md_bitmap_resize(mddev->bitmap, mddev->dev_sectors,
				     to_bytes(rs->requested_bitmap_chunk_sectors), 0);
3960 3961 3962 3963
		if (r)
			DMERR("Failed to resize bitmap");
	}

3964 3965 3966 3967 3968 3969 3970 3971
	/* Check for any resize/reshape on @rs and adjust/initiate */
	/* Be prepared for mddev_resume() in raid_resume() */
	set_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
	if (mddev->recovery_cp && mddev->recovery_cp < MaxSector) {
		set_bit(MD_RECOVERY_SYNC, &mddev->recovery);
		mddev->resync_min = mddev->recovery_cp;
	}

3972
	/* Check for any reshape request unless new raid set */
3973
	if (test_bit(RT_FLAG_RESHAPE_RS, &rs->runtime_flags)) {
3974
		/* Initiate a reshape. */
3975
		rs_set_rdev_sectors(rs);
3976 3977 3978 3979 3980 3981 3982 3983 3984
		mddev_lock_nointr(mddev);
		r = rs_start_reshape(rs);
		mddev_unlock(mddev);
		if (r)
			DMWARN("Failed to check/start reshape, continuing without change");
		r = 0;
	}

	return r;
3985 3986
}

3987 3988 3989
static void raid_resume(struct dm_target *ti)
{
	struct raid_set *rs = ti->private;
3990
	struct mddev *mddev = &rs->md;
3991

3992
	if (test_and_set_bit(RT_FLAG_RS_RESUMED, &rs->runtime_flags)) {
3993 3994 3995 3996 3997 3998
		/*
		 * A secondary resume while the device is active.
		 * Take this opportunity to check whether any failed
		 * devices are reachable again.
		 */
		attempt_restore_of_faulty_devices(rs);
3999
	}
4000

4001
	if (test_and_clear_bit(RT_FLAG_RS_SUSPENDED, &rs->runtime_flags)) {
4002 4003 4004 4005
		/* Only reduce raid set size before running a disk removing reshape. */
		if (mddev->delta_disks < 0)
			rs_set_capacity(rs);

4006
		mddev_lock_nointr(mddev);
4007
		clear_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
4008 4009
		mddev->ro = 0;
		mddev->in_sync = 0;
4010
		mddev_resume(mddev);
4011 4012
		mddev_unlock(mddev);
	}
N
NeilBrown 已提交
4013 4014 4015 4016
}

static struct target_type raid_target = {
	.name = "raid",
4017
	.version = {1, 14, 0},
N
NeilBrown 已提交
4018 4019 4020 4021 4022
	.module = THIS_MODULE,
	.ctr = raid_ctr,
	.dtr = raid_dtr,
	.map = raid_map,
	.status = raid_status,
4023
	.message = raid_message,
N
NeilBrown 已提交
4024 4025 4026
	.iterate_devices = raid_iterate_devices,
	.io_hints = raid_io_hints,
	.postsuspend = raid_postsuspend,
4027
	.preresume = raid_preresume,
N
NeilBrown 已提交
4028 4029 4030 4031 4032
	.resume = raid_resume,
};

static int __init dm_raid_init(void)
{
4033 4034 4035 4036
	DMINFO("Loading target version %u.%u.%u",
	       raid_target.version[0],
	       raid_target.version[1],
	       raid_target.version[2]);
N
NeilBrown 已提交
4037 4038 4039 4040 4041 4042 4043 4044 4045 4046 4047
	return dm_register_target(&raid_target);
}

static void __exit dm_raid_exit(void)
{
	dm_unregister_target(&raid_target);
}

module_init(dm_raid_init);
module_exit(dm_raid_exit);

4048 4049 4050 4051
module_param(devices_handle_discard_safely, bool, 0644);
MODULE_PARM_DESC(devices_handle_discard_safely,
		 "Set to Y if all devices in each array reliably return zeroes on reads from discarded regions");

4052 4053
MODULE_DESCRIPTION(DM_NAME " raid0/1/10/4/5/6 target");
MODULE_ALIAS("dm-raid0");
4054 4055
MODULE_ALIAS("dm-raid1");
MODULE_ALIAS("dm-raid10");
N
NeilBrown 已提交
4056 4057 4058 4059
MODULE_ALIAS("dm-raid4");
MODULE_ALIAS("dm-raid5");
MODULE_ALIAS("dm-raid6");
MODULE_AUTHOR("Neil Brown <dm-devel@redhat.com>");
4060
MODULE_AUTHOR("Heinz Mauelshagen <dm-devel@redhat.com>");
N
NeilBrown 已提交
4061
MODULE_LICENSE("GPL");