rbd.c 130.1 KB
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/*
   rbd.c -- Export ceph rados objects as a Linux block device


   based on drivers/block/osdblk.c:

   Copyright 2009 Red Hat, Inc.

   This program is free software; you can redistribute it and/or modify
   it under the terms of the GNU General Public License as published by
   the Free Software Foundation.

   This program is distributed in the hope that it will be useful,
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   GNU General Public License for more details.

   You should have received a copy of the GNU General Public License
   along with this program; see the file COPYING.  If not, write to
   the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.



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   For usage instructions, please refer to:
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                 Documentation/ABI/testing/sysfs-bus-rbd
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 */

#include <linux/ceph/libceph.h>
#include <linux/ceph/osd_client.h>
#include <linux/ceph/mon_client.h>
#include <linux/ceph/decode.h>
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#include <linux/parser.h>
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#include <linux/bsearch.h>
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#include <linux/kernel.h>
#include <linux/device.h>
#include <linux/module.h>
#include <linux/fs.h>
#include <linux/blkdev.h>
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#include <linux/slab.h>
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#include "rbd_types.h"

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#define RBD_DEBUG	/* Activate rbd_assert() calls */

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/*
 * The basic unit of block I/O is a sector.  It is interpreted in a
 * number of contexts in Linux (blk, bio, genhd), but the default is
 * universally 512 bytes.  These symbols are just slightly more
 * meaningful than the bare numbers they represent.
 */
#define	SECTOR_SHIFT	9
#define	SECTOR_SIZE	(1ULL << SECTOR_SHIFT)

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#define RBD_DRV_NAME "rbd"
#define RBD_DRV_NAME_LONG "rbd (rados block device)"
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#define RBD_MINORS_PER_MAJOR	256		/* max minors per blkdev */

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#define RBD_SNAP_DEV_NAME_PREFIX	"snap_"
#define RBD_MAX_SNAP_NAME_LEN	\
			(NAME_MAX - (sizeof (RBD_SNAP_DEV_NAME_PREFIX) - 1))

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#define RBD_MAX_SNAP_COUNT	510	/* allows max snapc to fit in 4KB */
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#define RBD_SNAP_HEAD_NAME	"-"

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#define	BAD_SNAP_INDEX	U32_MAX		/* invalid index into snap array */

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/* This allows a single page to hold an image name sent by OSD */
#define RBD_IMAGE_NAME_LEN_MAX	(PAGE_SIZE - sizeof (__le32) - 1)
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#define RBD_IMAGE_ID_LEN_MAX	64
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#define RBD_OBJ_PREFIX_LEN_MAX	64
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/* Feature bits */

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#define RBD_FEATURE_LAYERING	(1<<0)
#define RBD_FEATURE_STRIPINGV2	(1<<1)
#define RBD_FEATURES_ALL \
	    (RBD_FEATURE_LAYERING | RBD_FEATURE_STRIPINGV2)
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/* Features supported by this (client software) implementation. */

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#define RBD_FEATURES_SUPPORTED	(RBD_FEATURES_ALL)
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/*
 * An RBD device name will be "rbd#", where the "rbd" comes from
 * RBD_DRV_NAME above, and # is a unique integer identifier.
 * MAX_INT_FORMAT_WIDTH is used in ensuring DEV_NAME_LEN is big
 * enough to hold all possible device names.
 */
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#define DEV_NAME_LEN		32
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#define MAX_INT_FORMAT_WIDTH	((5 * sizeof (int)) / 2 + 1)
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/*
 * block device image metadata (in-memory version)
 */
struct rbd_image_header {
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	/* These six fields never change for a given rbd image */
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	char *object_prefix;
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	__u8 obj_order;
	__u8 crypt_type;
	__u8 comp_type;
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	u64 stripe_unit;
	u64 stripe_count;
	u64 features;		/* Might be changeable someday? */
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	/* The remaining fields need to be updated occasionally */
	u64 image_size;
	struct ceph_snap_context *snapc;
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	char *snap_names;	/* format 1 only */
	u64 *snap_sizes;	/* format 1 only */
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};

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/*
 * An rbd image specification.
 *
 * The tuple (pool_id, image_id, snap_id) is sufficient to uniquely
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 * identify an image.  Each rbd_dev structure includes a pointer to
 * an rbd_spec structure that encapsulates this identity.
 *
 * Each of the id's in an rbd_spec has an associated name.  For a
 * user-mapped image, the names are supplied and the id's associated
 * with them are looked up.  For a layered image, a parent image is
 * defined by the tuple, and the names are looked up.
 *
 * An rbd_dev structure contains a parent_spec pointer which is
 * non-null if the image it represents is a child in a layered
 * image.  This pointer will refer to the rbd_spec structure used
 * by the parent rbd_dev for its own identity (i.e., the structure
 * is shared between the parent and child).
 *
 * Since these structures are populated once, during the discovery
 * phase of image construction, they are effectively immutable so
 * we make no effort to synchronize access to them.
 *
 * Note that code herein does not assume the image name is known (it
 * could be a null pointer).
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 */
struct rbd_spec {
	u64		pool_id;
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	const char	*pool_name;
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	const char	*image_id;
	const char	*image_name;
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	u64		snap_id;
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	const char	*snap_name;
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	struct kref	kref;
};

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/*
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 * an instance of the client.  multiple devices may share an rbd client.
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 */
struct rbd_client {
	struct ceph_client	*client;
	struct kref		kref;
	struct list_head	node;
};

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struct rbd_img_request;
typedef void (*rbd_img_callback_t)(struct rbd_img_request *);

#define	BAD_WHICH	U32_MAX		/* Good which or bad which, which? */

struct rbd_obj_request;
typedef void (*rbd_obj_callback_t)(struct rbd_obj_request *);

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enum obj_request_type {
	OBJ_REQUEST_NODATA, OBJ_REQUEST_BIO, OBJ_REQUEST_PAGES
};
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enum obj_req_flags {
	OBJ_REQ_DONE,		/* completion flag: not done = 0, done = 1 */
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	OBJ_REQ_IMG_DATA,	/* object usage: standalone = 0, image = 1 */
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	OBJ_REQ_KNOWN,		/* EXISTS flag valid: no = 0, yes = 1 */
	OBJ_REQ_EXISTS,		/* target exists: no = 0, yes = 1 */
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};

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struct rbd_obj_request {
	const char		*object_name;
	u64			offset;		/* object start byte */
	u64			length;		/* bytes from offset */
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	unsigned long		flags;
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	/*
	 * An object request associated with an image will have its
	 * img_data flag set; a standalone object request will not.
	 *
	 * A standalone object request will have which == BAD_WHICH
	 * and a null obj_request pointer.
	 *
	 * An object request initiated in support of a layered image
	 * object (to check for its existence before a write) will
	 * have which == BAD_WHICH and a non-null obj_request pointer.
	 *
	 * Finally, an object request for rbd image data will have
	 * which != BAD_WHICH, and will have a non-null img_request
	 * pointer.  The value of which will be in the range
	 * 0..(img_request->obj_request_count-1).
	 */
	union {
		struct rbd_obj_request	*obj_request;	/* STAT op */
		struct {
			struct rbd_img_request	*img_request;
			u64			img_offset;
			/* links for img_request->obj_requests list */
			struct list_head	links;
		};
	};
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	u32			which;		/* posn image request list */

	enum obj_request_type	type;
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	union {
		struct bio	*bio_list;
		struct {
			struct page	**pages;
			u32		page_count;
		};
	};
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	struct page		**copyup_pages;
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	struct ceph_osd_request	*osd_req;

	u64			xferred;	/* bytes transferred */
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	int			result;
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	rbd_obj_callback_t	callback;
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	struct completion	completion;
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	struct kref		kref;
};

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enum img_req_flags {
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	IMG_REQ_WRITE,		/* I/O direction: read = 0, write = 1 */
	IMG_REQ_CHILD,		/* initiator: block = 0, child image = 1 */
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	IMG_REQ_LAYERED,	/* ENOENT handling: normal = 0, layered = 1 */
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};

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struct rbd_img_request {
	struct rbd_device	*rbd_dev;
	u64			offset;	/* starting image byte offset */
	u64			length;	/* byte count from offset */
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	unsigned long		flags;
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	union {
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		u64			snap_id;	/* for reads */
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		struct ceph_snap_context *snapc;	/* for writes */
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	};
	union {
		struct request		*rq;		/* block request */
		struct rbd_obj_request	*obj_request;	/* obj req initiator */
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	};
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	struct page		**copyup_pages;
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	spinlock_t		completion_lock;/* protects next_completion */
	u32			next_completion;
	rbd_img_callback_t	callback;
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	u64			xferred;/* aggregate bytes transferred */
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	int			result;	/* first nonzero obj_request result */
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	u32			obj_request_count;
	struct list_head	obj_requests;	/* rbd_obj_request structs */

	struct kref		kref;
};

#define for_each_obj_request(ireq, oreq) \
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	list_for_each_entry(oreq, &(ireq)->obj_requests, links)
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#define for_each_obj_request_from(ireq, oreq) \
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	list_for_each_entry_from(oreq, &(ireq)->obj_requests, links)
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#define for_each_obj_request_safe(ireq, oreq, n) \
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	list_for_each_entry_safe_reverse(oreq, n, &(ireq)->obj_requests, links)
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struct rbd_mapping {
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	u64                     size;
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	u64                     features;
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	bool			read_only;
};

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/*
 * a single device
 */
struct rbd_device {
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	int			dev_id;		/* blkdev unique id */
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	int			major;		/* blkdev assigned major */
	struct gendisk		*disk;		/* blkdev's gendisk and rq */

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	u32			image_format;	/* Either 1 or 2 */
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	struct rbd_client	*rbd_client;

	char			name[DEV_NAME_LEN]; /* blkdev name, e.g. rbd3 */

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	spinlock_t		lock;		/* queue, flags, open_count */
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	struct rbd_image_header	header;
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	unsigned long		flags;		/* possibly lock protected */
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	struct rbd_spec		*spec;
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	char			*header_name;
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	struct ceph_file_layout	layout;

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	struct ceph_osd_event   *watch_event;
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	struct rbd_obj_request	*watch_request;
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	struct rbd_spec		*parent_spec;
	u64			parent_overlap;
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	struct rbd_device	*parent;
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	/* protects updating the header */
	struct rw_semaphore     header_rwsem;
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	struct rbd_mapping	mapping;
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	struct list_head	node;
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	/* sysfs related */
	struct device		dev;
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	unsigned long		open_count;	/* protected by lock */
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};

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/*
 * Flag bits for rbd_dev->flags.  If atomicity is required,
 * rbd_dev->lock is used to protect access.
 *
 * Currently, only the "removing" flag (which is coupled with the
 * "open_count" field) requires atomic access.
 */
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enum rbd_dev_flags {
	RBD_DEV_FLAG_EXISTS,	/* mapped snapshot has not been deleted */
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	RBD_DEV_FLAG_REMOVING,	/* this mapping is being removed */
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};

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static DEFINE_MUTEX(ctl_mutex);	  /* Serialize open/close/setup/teardown */
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static LIST_HEAD(rbd_dev_list);    /* devices */
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static DEFINE_SPINLOCK(rbd_dev_list_lock);

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static LIST_HEAD(rbd_client_list);		/* clients */
static DEFINE_SPINLOCK(rbd_client_list_lock);
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/* Slab caches for frequently-allocated structures */

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static struct kmem_cache	*rbd_img_request_cache;
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static struct kmem_cache	*rbd_obj_request_cache;
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static struct kmem_cache	*rbd_segment_name_cache;
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static int rbd_img_request_submit(struct rbd_img_request *img_request);

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static void rbd_dev_device_release(struct device *dev);
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static ssize_t rbd_add(struct bus_type *bus, const char *buf,
		       size_t count);
static ssize_t rbd_remove(struct bus_type *bus, const char *buf,
			  size_t count);
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static int rbd_dev_image_probe(struct rbd_device *rbd_dev, bool read_only);
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static struct bus_attribute rbd_bus_attrs[] = {
	__ATTR(add, S_IWUSR, NULL, rbd_add),
	__ATTR(remove, S_IWUSR, NULL, rbd_remove),
	__ATTR_NULL
};

static struct bus_type rbd_bus_type = {
	.name		= "rbd",
	.bus_attrs	= rbd_bus_attrs,
};

static void rbd_root_dev_release(struct device *dev)
{
}

static struct device rbd_root_dev = {
	.init_name =    "rbd",
	.release =      rbd_root_dev_release,
};

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static __printf(2, 3)
void rbd_warn(struct rbd_device *rbd_dev, const char *fmt, ...)
{
	struct va_format vaf;
	va_list args;

	va_start(args, fmt);
	vaf.fmt = fmt;
	vaf.va = &args;

	if (!rbd_dev)
		printk(KERN_WARNING "%s: %pV\n", RBD_DRV_NAME, &vaf);
	else if (rbd_dev->disk)
		printk(KERN_WARNING "%s: %s: %pV\n",
			RBD_DRV_NAME, rbd_dev->disk->disk_name, &vaf);
	else if (rbd_dev->spec && rbd_dev->spec->image_name)
		printk(KERN_WARNING "%s: image %s: %pV\n",
			RBD_DRV_NAME, rbd_dev->spec->image_name, &vaf);
	else if (rbd_dev->spec && rbd_dev->spec->image_id)
		printk(KERN_WARNING "%s: id %s: %pV\n",
			RBD_DRV_NAME, rbd_dev->spec->image_id, &vaf);
	else	/* punt */
		printk(KERN_WARNING "%s: rbd_dev %p: %pV\n",
			RBD_DRV_NAME, rbd_dev, &vaf);
	va_end(args);
}

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#ifdef RBD_DEBUG
#define rbd_assert(expr)						\
		if (unlikely(!(expr))) {				\
			printk(KERN_ERR "\nAssertion failure in %s() "	\
						"at line %d:\n\n"	\
					"\trbd_assert(%s);\n\n",	\
					__func__, __LINE__, #expr);	\
			BUG();						\
		}
#else /* !RBD_DEBUG */
#  define rbd_assert(expr)	((void) 0)
#endif /* !RBD_DEBUG */
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static int rbd_img_obj_request_submit(struct rbd_obj_request *obj_request);
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static void rbd_img_parent_read(struct rbd_obj_request *obj_request);
static void rbd_dev_remove_parent(struct rbd_device *rbd_dev);
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static int rbd_dev_refresh(struct rbd_device *rbd_dev);
static int rbd_dev_v2_refresh(struct rbd_device *rbd_dev);
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static const char *rbd_dev_v2_snap_name(struct rbd_device *rbd_dev,
					u64 snap_id);
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static int _rbd_dev_v2_snap_size(struct rbd_device *rbd_dev, u64 snap_id,
				u8 *order, u64 *snap_size);
static int _rbd_dev_v2_snap_features(struct rbd_device *rbd_dev, u64 snap_id,
		u64 *snap_features);
static u64 rbd_snap_id_by_name(struct rbd_device *rbd_dev, const char *name);
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static int rbd_open(struct block_device *bdev, fmode_t mode)
{
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	struct rbd_device *rbd_dev = bdev->bd_disk->private_data;
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	bool removing = false;
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	if ((mode & FMODE_WRITE) && rbd_dev->mapping.read_only)
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		return -EROFS;

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	spin_lock_irq(&rbd_dev->lock);
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	if (test_bit(RBD_DEV_FLAG_REMOVING, &rbd_dev->flags))
		removing = true;
	else
		rbd_dev->open_count++;
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	spin_unlock_irq(&rbd_dev->lock);
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	if (removing)
		return -ENOENT;

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	mutex_lock_nested(&ctl_mutex, SINGLE_DEPTH_NESTING);
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	(void) get_device(&rbd_dev->dev);
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	set_device_ro(bdev, rbd_dev->mapping.read_only);
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	mutex_unlock(&ctl_mutex);
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	return 0;
}

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static int rbd_release(struct gendisk *disk, fmode_t mode)
{
	struct rbd_device *rbd_dev = disk->private_data;
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	unsigned long open_count_before;

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	spin_lock_irq(&rbd_dev->lock);
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	open_count_before = rbd_dev->open_count--;
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	spin_unlock_irq(&rbd_dev->lock);
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	rbd_assert(open_count_before > 0);
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	mutex_lock_nested(&ctl_mutex, SINGLE_DEPTH_NESTING);
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	put_device(&rbd_dev->dev);
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	mutex_unlock(&ctl_mutex);
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	return 0;
}

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static const struct block_device_operations rbd_bd_ops = {
	.owner			= THIS_MODULE,
	.open			= rbd_open,
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	.release		= rbd_release,
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};

/*
 * Initialize an rbd client instance.
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 * We own *ceph_opts.
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 */
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static struct rbd_client *rbd_client_create(struct ceph_options *ceph_opts)
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{
	struct rbd_client *rbdc;
	int ret = -ENOMEM;

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	dout("%s:\n", __func__);
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	rbdc = kmalloc(sizeof(struct rbd_client), GFP_KERNEL);
	if (!rbdc)
		goto out_opt;

	kref_init(&rbdc->kref);
	INIT_LIST_HEAD(&rbdc->node);

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	mutex_lock_nested(&ctl_mutex, SINGLE_DEPTH_NESTING);

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	rbdc->client = ceph_create_client(ceph_opts, rbdc, 0, 0);
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	if (IS_ERR(rbdc->client))
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		goto out_mutex;
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	ceph_opts = NULL; /* Now rbdc->client is responsible for ceph_opts */
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	ret = ceph_open_session(rbdc->client);
	if (ret < 0)
		goto out_err;

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	spin_lock(&rbd_client_list_lock);
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	list_add_tail(&rbdc->node, &rbd_client_list);
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	spin_unlock(&rbd_client_list_lock);
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	mutex_unlock(&ctl_mutex);
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	dout("%s: rbdc %p\n", __func__, rbdc);
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	return rbdc;

out_err:
	ceph_destroy_client(rbdc->client);
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out_mutex:
	mutex_unlock(&ctl_mutex);
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	kfree(rbdc);
out_opt:
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	if (ceph_opts)
		ceph_destroy_options(ceph_opts);
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	dout("%s: error %d\n", __func__, ret);

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	return ERR_PTR(ret);
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}

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static struct rbd_client *__rbd_get_client(struct rbd_client *rbdc)
{
	kref_get(&rbdc->kref);

	return rbdc;
}

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/*
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 * Find a ceph client with specific addr and configuration.  If
 * found, bump its reference count.
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 */
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static struct rbd_client *rbd_client_find(struct ceph_options *ceph_opts)
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{
	struct rbd_client *client_node;
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	bool found = false;
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	if (ceph_opts->flags & CEPH_OPT_NOSHARE)
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		return NULL;

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	spin_lock(&rbd_client_list_lock);
	list_for_each_entry(client_node, &rbd_client_list, node) {
		if (!ceph_compare_options(ceph_opts, client_node->client)) {
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			__rbd_get_client(client_node);

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			found = true;
			break;
		}
	}
	spin_unlock(&rbd_client_list_lock);

	return found ? client_node : NULL;
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}

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/*
 * mount options
 */
enum {
	Opt_last_int,
	/* int args above */
	Opt_last_string,
	/* string args above */
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	Opt_read_only,
	Opt_read_write,
	/* Boolean args above */
	Opt_last_bool,
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};

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static match_table_t rbd_opts_tokens = {
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	/* int args above */
	/* string args above */
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	{Opt_read_only, "read_only"},
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	{Opt_read_only, "ro"},		/* Alternate spelling */
	{Opt_read_write, "read_write"},
	{Opt_read_write, "rw"},		/* Alternate spelling */
	/* Boolean args above */
590 591 592
	{-1, NULL}
};

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struct rbd_options {
	bool	read_only;
};

#define RBD_READ_ONLY_DEFAULT	false

599 600
static int parse_rbd_opts_token(char *c, void *private)
{
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601
	struct rbd_options *rbd_opts = private;
602 603 604
	substring_t argstr[MAX_OPT_ARGS];
	int token, intval, ret;

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605
	token = match_token(c, rbd_opts_tokens, argstr);
606 607 608 609 610 611 612 613 614 615 616 617 618 619
	if (token < 0)
		return -EINVAL;

	if (token < Opt_last_int) {
		ret = match_int(&argstr[0], &intval);
		if (ret < 0) {
			pr_err("bad mount option arg (not int) "
			       "at '%s'\n", c);
			return ret;
		}
		dout("got int token %d val %d\n", token, intval);
	} else if (token > Opt_last_int && token < Opt_last_string) {
		dout("got string token %d val %s\n", token,
		     argstr[0].from);
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620 621
	} else if (token > Opt_last_string && token < Opt_last_bool) {
		dout("got Boolean token %d\n", token);
622 623 624 625 626
	} else {
		dout("got token %d\n", token);
	}

	switch (token) {
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627 628 629 630 631 632
	case Opt_read_only:
		rbd_opts->read_only = true;
		break;
	case Opt_read_write:
		rbd_opts->read_only = false;
		break;
633
	default:
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		rbd_assert(false);
		break;
636 637 638 639
	}
	return 0;
}

640 641 642 643
/*
 * Get a ceph client with specific addr and configuration, if one does
 * not exist create it.
 */
644
static struct rbd_client *rbd_get_client(struct ceph_options *ceph_opts)
645
{
646
	struct rbd_client *rbdc;
647

648
	rbdc = rbd_client_find(ceph_opts);
649
	if (rbdc)	/* using an existing client */
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650
		ceph_destroy_options(ceph_opts);
651
	else
652
		rbdc = rbd_client_create(ceph_opts);
653

654
	return rbdc;
655 656 657 658
}

/*
 * Destroy ceph client
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 *
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 * Caller must hold rbd_client_list_lock.
661 662 663 664 665
 */
static void rbd_client_release(struct kref *kref)
{
	struct rbd_client *rbdc = container_of(kref, struct rbd_client, kref);

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666
	dout("%s: rbdc %p\n", __func__, rbdc);
667
	spin_lock(&rbd_client_list_lock);
668
	list_del(&rbdc->node);
669
	spin_unlock(&rbd_client_list_lock);
670 671 672 673 674 675 676 677 678

	ceph_destroy_client(rbdc->client);
	kfree(rbdc);
}

/*
 * Drop reference to ceph client node. If it's not referenced anymore, release
 * it.
 */
679
static void rbd_put_client(struct rbd_client *rbdc)
680
{
681 682
	if (rbdc)
		kref_put(&rbdc->kref, rbd_client_release);
683 684
}

685 686 687 688 689
static bool rbd_image_format_valid(u32 image_format)
{
	return image_format == 1 || image_format == 2;
}

690 691
static bool rbd_dev_ondisk_valid(struct rbd_image_header_ondisk *ondisk)
{
692 693 694 695 696 697 698
	size_t size;
	u32 snap_count;

	/* The header has to start with the magic rbd header text */
	if (memcmp(&ondisk->text, RBD_HEADER_TEXT, sizeof (RBD_HEADER_TEXT)))
		return false;

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	/* The bio layer requires at least sector-sized I/O */

	if (ondisk->options.order < SECTOR_SHIFT)
		return false;

	/* If we use u64 in a few spots we may be able to loosen this */

	if (ondisk->options.order > 8 * sizeof (int) - 1)
		return false;

709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726
	/*
	 * The size of a snapshot header has to fit in a size_t, and
	 * that limits the number of snapshots.
	 */
	snap_count = le32_to_cpu(ondisk->snap_count);
	size = SIZE_MAX - sizeof (struct ceph_snap_context);
	if (snap_count > size / sizeof (__le64))
		return false;

	/*
	 * Not only that, but the size of the entire the snapshot
	 * header must also be representable in a size_t.
	 */
	size -= snap_count * sizeof (__le64);
	if ((u64) size < le64_to_cpu(ondisk->snap_names_len))
		return false;

	return true;
727 728
}

729
/*
730 731
 * Fill an rbd image header with information from the given format 1
 * on-disk header.
732 733
 */
static int rbd_header_from_disk(struct rbd_image_header *header,
734
				 struct rbd_image_header_ondisk *ondisk)
735
{
736 737 738 739 740
	bool first_time = header->object_prefix == NULL;
	struct ceph_snap_context *snapc;
	char *object_prefix = NULL;
	char *snap_names = NULL;
	u64 *snap_sizes = NULL;
741
	u32 snap_count;
742
	size_t size;
743
	int ret = -ENOMEM;
744
	u32 i;
745

746 747 748 749 750 751 752 753 754 755 756 757 758
	/* Allocate this now to avoid having to handle failure below */

	if (first_time) {
		size_t len;

		len = strnlen(ondisk->object_prefix,
				sizeof (ondisk->object_prefix));
		object_prefix = kmalloc(len + 1, GFP_KERNEL);
		if (!object_prefix)
			return -ENOMEM;
		memcpy(object_prefix, ondisk->object_prefix, len);
		object_prefix[len] = '\0';
	}
759

760
	/* Allocate the snapshot context and fill it in */
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762 763 764 765 766
	snap_count = le32_to_cpu(ondisk->snap_count);
	snapc = ceph_create_snap_context(snap_count, GFP_KERNEL);
	if (!snapc)
		goto out_err;
	snapc->seq = le64_to_cpu(ondisk->snap_seq);
767
	if (snap_count) {
768
		struct rbd_image_snap_ondisk *snaps;
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769 770
		u64 snap_names_len = le64_to_cpu(ondisk->snap_names_len);

771
		/* We'll keep a copy of the snapshot names... */
772

773 774 775 776
		if (snap_names_len > (u64)SIZE_MAX)
			goto out_2big;
		snap_names = kmalloc(snap_names_len, GFP_KERNEL);
		if (!snap_names)
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			goto out_err;

779
		/* ...as well as the array of their sizes. */
780

781
		size = snap_count * sizeof (*header->snap_sizes);
782 783
		snap_sizes = kmalloc(size, GFP_KERNEL);
		if (!snap_sizes)
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			goto out_err;
785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800

		/*
		 * Copy the names, and fill in each snapshot's id
		 * and size.
		 *
		 * Note that rbd_dev_v1_header_read() guarantees the
		 * ondisk buffer we're working with has
		 * snap_names_len bytes beyond the end of the
		 * snapshot id array, this memcpy() is safe.
		 */
		memcpy(snap_names, &ondisk->snaps[snap_count], snap_names_len);
		snaps = ondisk->snaps;
		for (i = 0; i < snap_count; i++) {
			snapc->snaps[i] = le64_to_cpu(snaps[i].id);
			snap_sizes[i] = le64_to_cpu(snaps[i].image_size);
		}
801
	}
802

803 804 805 806 807 808 809 810 811 812 813 814
	/* We won't fail any more, fill in the header */

	if (first_time) {
		header->object_prefix = object_prefix;
		header->obj_order = ondisk->options.order;
		header->crypt_type = ondisk->options.crypt_type;
		header->comp_type = ondisk->options.comp_type;
		/* The rest aren't used for format 1 images */
		header->stripe_unit = 0;
		header->stripe_count = 0;
		header->features = 0;
	}
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815

816
	/* The remaining fields always get updated (when we refresh) */
817

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	header->image_size = le64_to_cpu(ondisk->image_size);
819 820 821
	header->snapc = snapc;
	header->snap_names = snap_names;
	header->snap_sizes = snap_sizes;
822 823

	return 0;
824 825
out_2big:
	ret = -EIO;
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826
out_err:
827 828 829 830 831 832
	kfree(snap_sizes);
	kfree(snap_names);
	ceph_put_snap_context(snapc);
	kfree(object_prefix);

	return ret;
833 834
}

835 836 837 838 839 840 841 842 843 844 845 846 847 848 849
static const char *_rbd_dev_v1_snap_name(struct rbd_device *rbd_dev, u32 which)
{
	const char *snap_name;

	rbd_assert(which < rbd_dev->header.snapc->num_snaps);

	/* Skip over names until we find the one we are looking for */

	snap_name = rbd_dev->header.snap_names;
	while (which--)
		snap_name += strlen(snap_name) + 1;

	return kstrdup(snap_name, GFP_KERNEL);
}

850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873
/*
 * Snapshot id comparison function for use with qsort()/bsearch().
 * Note that result is for snapshots in *descending* order.
 */
static int snapid_compare_reverse(const void *s1, const void *s2)
{
	u64 snap_id1 = *(u64 *)s1;
	u64 snap_id2 = *(u64 *)s2;

	if (snap_id1 < snap_id2)
		return 1;
	return snap_id1 == snap_id2 ? 0 : -1;
}

/*
 * Search a snapshot context to see if the given snapshot id is
 * present.
 *
 * Returns the position of the snapshot id in the array if it's found,
 * or BAD_SNAP_INDEX otherwise.
 *
 * Note: The snapshot array is in kept sorted (by the osd) in
 * reverse order, highest snapshot id first.
 */
874 875 876
static u32 rbd_dev_snap_index(struct rbd_device *rbd_dev, u64 snap_id)
{
	struct ceph_snap_context *snapc = rbd_dev->header.snapc;
877
	u64 *found;
878

879 880
	found = bsearch(&snap_id, &snapc->snaps, snapc->num_snaps,
				sizeof (snap_id), snapid_compare_reverse);
881

882
	return found ? (u32)(found - &snapc->snaps[0]) : BAD_SNAP_INDEX;
883 884
}

885 886
static const char *rbd_dev_v1_snap_name(struct rbd_device *rbd_dev,
					u64 snap_id)
887
{
888
	u32 which;
889

890 891 892 893 894 895 896 897 898
	which = rbd_dev_snap_index(rbd_dev, snap_id);
	if (which == BAD_SNAP_INDEX)
		return NULL;

	return _rbd_dev_v1_snap_name(rbd_dev, which);
}

static const char *rbd_snap_name(struct rbd_device *rbd_dev, u64 snap_id)
{
899 900 901
	if (snap_id == CEPH_NOSNAP)
		return RBD_SNAP_HEAD_NAME;

902 903 904
	rbd_assert(rbd_image_format_valid(rbd_dev->image_format));
	if (rbd_dev->image_format == 1)
		return rbd_dev_v1_snap_name(rbd_dev, snap_id);
905

906
	return rbd_dev_v2_snap_name(rbd_dev, snap_id);
907 908
}

909 910
static int rbd_snap_size(struct rbd_device *rbd_dev, u64 snap_id,
				u64 *snap_size)
911
{
912 913 914 915 916
	rbd_assert(rbd_image_format_valid(rbd_dev->image_format));
	if (snap_id == CEPH_NOSNAP) {
		*snap_size = rbd_dev->header.image_size;
	} else if (rbd_dev->image_format == 1) {
		u32 which;
917

918 919 920
		which = rbd_dev_snap_index(rbd_dev, snap_id);
		if (which == BAD_SNAP_INDEX)
			return -ENOENT;
921

922 923 924 925 926 927 928 929 930 931 932 933
		*snap_size = rbd_dev->header.snap_sizes[which];
	} else {
		u64 size = 0;
		int ret;

		ret = _rbd_dev_v2_snap_size(rbd_dev, snap_id, NULL, &size);
		if (ret)
			return ret;

		*snap_size = size;
	}
	return 0;
934 935
}

936 937
static int rbd_snap_features(struct rbd_device *rbd_dev, u64 snap_id,
			u64 *snap_features)
938
{
939 940 941 942 943
	rbd_assert(rbd_image_format_valid(rbd_dev->image_format));
	if (snap_id == CEPH_NOSNAP) {
		*snap_features = rbd_dev->header.features;
	} else if (rbd_dev->image_format == 1) {
		*snap_features = 0;	/* No features for format 1 */
944
	} else {
945 946
		u64 features = 0;
		int ret;
947

948 949 950 951 952 953 954 955 956 957 958
		ret = _rbd_dev_v2_snap_features(rbd_dev, snap_id, &features);
		if (ret)
			return ret;

		*snap_features = features;
	}
	return 0;
}

static int rbd_dev_mapping_set(struct rbd_device *rbd_dev)
{
959
	u64 snap_id = rbd_dev->spec->snap_id;
960 961 962 963 964 965 966 967 968 969 970 971 972 973
	u64 size = 0;
	u64 features = 0;
	int ret;

	ret = rbd_snap_size(rbd_dev, snap_id, &size);
	if (ret)
		return ret;
	ret = rbd_snap_features(rbd_dev, snap_id, &features);
	if (ret)
		return ret;

	rbd_dev->mapping.size = size;
	rbd_dev->mapping.features = features;

974
	return 0;
975 976
}

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977 978 979 980 981 982
static void rbd_dev_mapping_clear(struct rbd_device *rbd_dev)
{
	rbd_dev->mapping.size = 0;
	rbd_dev->mapping.features = 0;
}

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983
static const char *rbd_segment_name(struct rbd_device *rbd_dev, u64 offset)
984
{
A
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985 986 987
	char *name;
	u64 segment;
	int ret;
988

989
	name = kmem_cache_alloc(rbd_segment_name_cache, GFP_NOIO);
A
Alex Elder 已提交
990 991 992
	if (!name)
		return NULL;
	segment = offset >> rbd_dev->header.obj_order;
A
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993
	ret = snprintf(name, MAX_OBJ_NAME_SIZE + 1, "%s.%012llx",
A
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994
			rbd_dev->header.object_prefix, segment);
A
Alex Elder 已提交
995
	if (ret < 0 || ret > MAX_OBJ_NAME_SIZE) {
A
Alex Elder 已提交
996 997 998 999 1000
		pr_err("error formatting segment name for #%llu (%d)\n",
			segment, ret);
		kfree(name);
		name = NULL;
	}
1001

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1002 1003
	return name;
}
1004

1005 1006 1007 1008 1009 1010 1011
static void rbd_segment_name_free(const char *name)
{
	/* The explicit cast here is needed to drop the const qualifier */

	kmem_cache_free(rbd_segment_name_cache, (void *)name);
}

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1012 1013 1014
static u64 rbd_segment_offset(struct rbd_device *rbd_dev, u64 offset)
{
	u64 segment_size = (u64) 1 << rbd_dev->header.obj_order;
1015

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1016 1017 1018 1019 1020 1021 1022 1023 1024 1025
	return offset & (segment_size - 1);
}

static u64 rbd_segment_length(struct rbd_device *rbd_dev,
				u64 offset, u64 length)
{
	u64 segment_size = (u64) 1 << rbd_dev->header.obj_order;

	offset &= segment_size - 1;

A
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1026
	rbd_assert(length <= U64_MAX - offset);
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1027 1028 1029 1030
	if (offset + length > segment_size)
		length = segment_size - offset;

	return length;
1031 1032
}

1033 1034 1035 1036 1037 1038 1039 1040
/*
 * returns the size of an object in the image
 */
static u64 rbd_obj_bytes(struct rbd_image_header *header)
{
	return 1 << header->obj_order;
}

1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073
/*
 * bio helpers
 */

static void bio_chain_put(struct bio *chain)
{
	struct bio *tmp;

	while (chain) {
		tmp = chain;
		chain = chain->bi_next;
		bio_put(tmp);
	}
}

/*
 * zeros a bio chain, starting at specific offset
 */
static void zero_bio_chain(struct bio *chain, int start_ofs)
{
	struct bio_vec *bv;
	unsigned long flags;
	void *buf;
	int i;
	int pos = 0;

	while (chain) {
		bio_for_each_segment(bv, chain, i) {
			if (pos + bv->bv_len > start_ofs) {
				int remainder = max(start_ofs - pos, 0);
				buf = bvec_kmap_irq(bv, &flags);
				memset(buf + remainder, 0,
				       bv->bv_len - remainder);
1074
				bvec_kunmap_irq(buf, &flags);
1075 1076 1077 1078 1079 1080 1081 1082
			}
			pos += bv->bv_len;
		}

		chain = chain->bi_next;
	}
}

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1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113
/*
 * similar to zero_bio_chain(), zeros data defined by a page array,
 * starting at the given byte offset from the start of the array and
 * continuing up to the given end offset.  The pages array is
 * assumed to be big enough to hold all bytes up to the end.
 */
static void zero_pages(struct page **pages, u64 offset, u64 end)
{
	struct page **page = &pages[offset >> PAGE_SHIFT];

	rbd_assert(end > offset);
	rbd_assert(end - offset <= (u64)SIZE_MAX);
	while (offset < end) {
		size_t page_offset;
		size_t length;
		unsigned long flags;
		void *kaddr;

		page_offset = (size_t)(offset & ~PAGE_MASK);
		length = min(PAGE_SIZE - page_offset, (size_t)(end - offset));
		local_irq_save(flags);
		kaddr = kmap_atomic(*page);
		memset(kaddr + page_offset, 0, length);
		kunmap_atomic(kaddr);
		local_irq_restore(flags);

		offset += length;
		page++;
	}
}

1114
/*
A
Alex Elder 已提交
1115 1116
 * Clone a portion of a bio, starting at the given byte offset
 * and continuing for the number of bytes indicated.
1117
 */
A
Alex Elder 已提交
1118 1119 1120 1121
static struct bio *bio_clone_range(struct bio *bio_src,
					unsigned int offset,
					unsigned int len,
					gfp_t gfpmask)
1122
{
A
Alex Elder 已提交
1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149
	struct bio_vec *bv;
	unsigned int resid;
	unsigned short idx;
	unsigned int voff;
	unsigned short end_idx;
	unsigned short vcnt;
	struct bio *bio;

	/* Handle the easy case for the caller */

	if (!offset && len == bio_src->bi_size)
		return bio_clone(bio_src, gfpmask);

	if (WARN_ON_ONCE(!len))
		return NULL;
	if (WARN_ON_ONCE(len > bio_src->bi_size))
		return NULL;
	if (WARN_ON_ONCE(offset > bio_src->bi_size - len))
		return NULL;

	/* Find first affected segment... */

	resid = offset;
	__bio_for_each_segment(bv, bio_src, idx, 0) {
		if (resid < bv->bv_len)
			break;
		resid -= bv->bv_len;
1150
	}
A
Alex Elder 已提交
1151
	voff = resid;
1152

A
Alex Elder 已提交
1153
	/* ...and the last affected segment */
1154

A
Alex Elder 已提交
1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167
	resid += len;
	__bio_for_each_segment(bv, bio_src, end_idx, idx) {
		if (resid <= bv->bv_len)
			break;
		resid -= bv->bv_len;
	}
	vcnt = end_idx - idx + 1;

	/* Build the clone */

	bio = bio_alloc(gfpmask, (unsigned int) vcnt);
	if (!bio)
		return NULL;	/* ENOMEM */
1168

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1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185
	bio->bi_bdev = bio_src->bi_bdev;
	bio->bi_sector = bio_src->bi_sector + (offset >> SECTOR_SHIFT);
	bio->bi_rw = bio_src->bi_rw;
	bio->bi_flags |= 1 << BIO_CLONED;

	/*
	 * Copy over our part of the bio_vec, then update the first
	 * and last (or only) entries.
	 */
	memcpy(&bio->bi_io_vec[0], &bio_src->bi_io_vec[idx],
			vcnt * sizeof (struct bio_vec));
	bio->bi_io_vec[0].bv_offset += voff;
	if (vcnt > 1) {
		bio->bi_io_vec[0].bv_len -= voff;
		bio->bi_io_vec[vcnt - 1].bv_len = resid;
	} else {
		bio->bi_io_vec[0].bv_len = len;
1186 1187
	}

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1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222
	bio->bi_vcnt = vcnt;
	bio->bi_size = len;
	bio->bi_idx = 0;

	return bio;
}

/*
 * Clone a portion of a bio chain, starting at the given byte offset
 * into the first bio in the source chain and continuing for the
 * number of bytes indicated.  The result is another bio chain of
 * exactly the given length, or a null pointer on error.
 *
 * The bio_src and offset parameters are both in-out.  On entry they
 * refer to the first source bio and the offset into that bio where
 * the start of data to be cloned is located.
 *
 * On return, bio_src is updated to refer to the bio in the source
 * chain that contains first un-cloned byte, and *offset will
 * contain the offset of that byte within that bio.
 */
static struct bio *bio_chain_clone_range(struct bio **bio_src,
					unsigned int *offset,
					unsigned int len,
					gfp_t gfpmask)
{
	struct bio *bi = *bio_src;
	unsigned int off = *offset;
	struct bio *chain = NULL;
	struct bio **end;

	/* Build up a chain of clone bios up to the limit */

	if (!bi || off >= bi->bi_size || !len)
		return NULL;		/* Nothing to clone */
1223

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	end = &chain;
	while (len) {
		unsigned int bi_size;
		struct bio *bio;

1229 1230
		if (!bi) {
			rbd_warn(NULL, "bio_chain exhausted with %u left", len);
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			goto out_err;	/* EINVAL; ran out of bio's */
1232
		}
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		bi_size = min_t(unsigned int, bi->bi_size - off, len);
		bio = bio_clone_range(bi, off, bi_size, gfpmask);
		if (!bio)
			goto out_err;	/* ENOMEM */

		*end = bio;
		end = &bio->bi_next;
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		off += bi_size;
		if (off == bi->bi_size) {
			bi = bi->bi_next;
			off = 0;
		}
		len -= bi_size;
	}
	*bio_src = bi;
	*offset = off;

	return chain;
out_err:
	bio_chain_put(chain);
1254 1255 1256 1257

	return NULL;
}

1258 1259 1260 1261 1262
/*
 * The default/initial value for all object request flags is 0.  For
 * each flag, once its value is set to 1 it is never reset to 0
 * again.
 */
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static void obj_request_img_data_set(struct rbd_obj_request *obj_request)
1264
{
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	if (test_and_set_bit(OBJ_REQ_IMG_DATA, &obj_request->flags)) {
1266 1267
		struct rbd_device *rbd_dev;

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		rbd_dev = obj_request->img_request->rbd_dev;
		rbd_warn(rbd_dev, "obj_request %p already marked img_data\n",
1270 1271 1272 1273
			obj_request);
	}
}

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static bool obj_request_img_data_test(struct rbd_obj_request *obj_request)
1275 1276
{
	smp_mb();
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	return test_bit(OBJ_REQ_IMG_DATA, &obj_request->flags) != 0;
1278 1279
}

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static void obj_request_done_set(struct rbd_obj_request *obj_request)
1281
{
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	if (test_and_set_bit(OBJ_REQ_DONE, &obj_request->flags)) {
		struct rbd_device *rbd_dev = NULL;
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		if (obj_request_img_data_test(obj_request))
			rbd_dev = obj_request->img_request->rbd_dev;
		rbd_warn(rbd_dev, "obj_request %p already marked done\n",
1288 1289 1290 1291
			obj_request);
	}
}

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static bool obj_request_done_test(struct rbd_obj_request *obj_request)
1293 1294
{
	smp_mb();
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	return test_bit(OBJ_REQ_DONE, &obj_request->flags) != 0;
1296 1297
}

1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328
/*
 * This sets the KNOWN flag after (possibly) setting the EXISTS
 * flag.  The latter is set based on the "exists" value provided.
 *
 * Note that for our purposes once an object exists it never goes
 * away again.  It's possible that the response from two existence
 * checks are separated by the creation of the target object, and
 * the first ("doesn't exist") response arrives *after* the second
 * ("does exist").  In that case we ignore the second one.
 */
static void obj_request_existence_set(struct rbd_obj_request *obj_request,
				bool exists)
{
	if (exists)
		set_bit(OBJ_REQ_EXISTS, &obj_request->flags);
	set_bit(OBJ_REQ_KNOWN, &obj_request->flags);
	smp_mb();
}

static bool obj_request_known_test(struct rbd_obj_request *obj_request)
{
	smp_mb();
	return test_bit(OBJ_REQ_KNOWN, &obj_request->flags) != 0;
}

static bool obj_request_exists_test(struct rbd_obj_request *obj_request)
{
	smp_mb();
	return test_bit(OBJ_REQ_EXISTS, &obj_request->flags) != 0;
}

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static void rbd_obj_request_get(struct rbd_obj_request *obj_request)
{
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	dout("%s: obj %p (was %d)\n", __func__, obj_request,
		atomic_read(&obj_request->kref.refcount));
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	kref_get(&obj_request->kref);
}

static void rbd_obj_request_destroy(struct kref *kref);
static void rbd_obj_request_put(struct rbd_obj_request *obj_request)
{
	rbd_assert(obj_request != NULL);
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	dout("%s: obj %p (was %d)\n", __func__, obj_request,
		atomic_read(&obj_request->kref.refcount));
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	kref_put(&obj_request->kref, rbd_obj_request_destroy);
}

static void rbd_img_request_get(struct rbd_img_request *img_request)
{
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	dout("%s: img %p (was %d)\n", __func__, img_request,
		atomic_read(&img_request->kref.refcount));
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	kref_get(&img_request->kref);
}

static void rbd_img_request_destroy(struct kref *kref);
static void rbd_img_request_put(struct rbd_img_request *img_request)
{
	rbd_assert(img_request != NULL);
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	dout("%s: img %p (was %d)\n", __func__, img_request,
		atomic_read(&img_request->kref.refcount));
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	kref_put(&img_request->kref, rbd_img_request_destroy);
}

static inline void rbd_img_obj_request_add(struct rbd_img_request *img_request,
					struct rbd_obj_request *obj_request)
{
1364 1365
	rbd_assert(obj_request->img_request == NULL);

1366
	/* Image request now owns object's original reference */
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	obj_request->img_request = img_request;
1368
	obj_request->which = img_request->obj_request_count;
1369 1370
	rbd_assert(!obj_request_img_data_test(obj_request));
	obj_request_img_data_set(obj_request);
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	rbd_assert(obj_request->which != BAD_WHICH);
1372 1373
	img_request->obj_request_count++;
	list_add_tail(&obj_request->links, &img_request->obj_requests);
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	dout("%s: img %p obj %p w=%u\n", __func__, img_request, obj_request,
		obj_request->which);
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}

static inline void rbd_img_obj_request_del(struct rbd_img_request *img_request,
					struct rbd_obj_request *obj_request)
{
	rbd_assert(obj_request->which != BAD_WHICH);
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	dout("%s: img %p obj %p w=%u\n", __func__, img_request, obj_request,
		obj_request->which);
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	list_del(&obj_request->links);
1386 1387 1388 1389
	rbd_assert(img_request->obj_request_count > 0);
	img_request->obj_request_count--;
	rbd_assert(obj_request->which == img_request->obj_request_count);
	obj_request->which = BAD_WHICH;
1390
	rbd_assert(obj_request_img_data_test(obj_request));
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	rbd_assert(obj_request->img_request == img_request);
	obj_request->img_request = NULL;
1393
	obj_request->callback = NULL;
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	rbd_obj_request_put(obj_request);
}

static bool obj_request_type_valid(enum obj_request_type type)
{
	switch (type) {
1400
	case OBJ_REQUEST_NODATA:
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	case OBJ_REQUEST_BIO:
1402
	case OBJ_REQUEST_PAGES:
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		return true;
	default:
		return false;
	}
}

static int rbd_obj_request_submit(struct ceph_osd_client *osdc,
				struct rbd_obj_request *obj_request)
{
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	dout("%s: osdc %p obj %p\n", __func__, osdc, obj_request);

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	return ceph_osdc_start_request(osdc, obj_request->osd_req, false);
}

static void rbd_img_request_complete(struct rbd_img_request *img_request)
{
1419

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	dout("%s: img %p\n", __func__, img_request);
1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436

	/*
	 * If no error occurred, compute the aggregate transfer
	 * count for the image request.  We could instead use
	 * atomic64_cmpxchg() to update it as each object request
	 * completes; not clear which way is better off hand.
	 */
	if (!img_request->result) {
		struct rbd_obj_request *obj_request;
		u64 xferred = 0;

		for_each_obj_request(img_request, obj_request)
			xferred += obj_request->xferred;
		img_request->xferred = xferred;
	}

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	if (img_request->callback)
		img_request->callback(img_request);
	else
		rbd_img_request_put(img_request);
}

1443 1444 1445 1446
/* Caller is responsible for rbd_obj_request_destroy(obj_request) */

static int rbd_obj_request_wait(struct rbd_obj_request *obj_request)
{
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	dout("%s: obj %p\n", __func__, obj_request);

1449 1450 1451
	return wait_for_completion_interruptible(&obj_request->completion);
}

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/*
 * The default/initial value for all image request flags is 0.  Each
 * is conditionally set to 1 at image request initialization time
 * and currently never change thereafter.
 */
static void img_request_write_set(struct rbd_img_request *img_request)
{
	set_bit(IMG_REQ_WRITE, &img_request->flags);
	smp_mb();
}

static bool img_request_write_test(struct rbd_img_request *img_request)
{
	smp_mb();
	return test_bit(IMG_REQ_WRITE, &img_request->flags) != 0;
}

1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480
static void img_request_child_set(struct rbd_img_request *img_request)
{
	set_bit(IMG_REQ_CHILD, &img_request->flags);
	smp_mb();
}

static bool img_request_child_test(struct rbd_img_request *img_request)
{
	smp_mb();
	return test_bit(IMG_REQ_CHILD, &img_request->flags) != 0;
}

1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492
static void img_request_layered_set(struct rbd_img_request *img_request)
{
	set_bit(IMG_REQ_LAYERED, &img_request->flags);
	smp_mb();
}

static bool img_request_layered_test(struct rbd_img_request *img_request)
{
	smp_mb();
	return test_bit(IMG_REQ_LAYERED, &img_request->flags) != 0;
}

1493 1494 1495
static void
rbd_img_obj_request_read_callback(struct rbd_obj_request *obj_request)
{
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	u64 xferred = obj_request->xferred;
	u64 length = obj_request->length;

1499 1500
	dout("%s: obj %p img %p result %d %llu/%llu\n", __func__,
		obj_request, obj_request->img_request, obj_request->result,
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		xferred, length);
1502 1503 1504 1505 1506 1507 1508
	/*
	 * ENOENT means a hole in the image.  We zero-fill the
	 * entire length of the request.  A short read also implies
	 * zero-fill to the end of the request.  Either way we
	 * update the xferred count to indicate the whole request
	 * was satisfied.
	 */
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	rbd_assert(obj_request->type != OBJ_REQUEST_NODATA);
1510
	if (obj_request->result == -ENOENT) {
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		if (obj_request->type == OBJ_REQUEST_BIO)
			zero_bio_chain(obj_request->bio_list, 0);
		else
			zero_pages(obj_request->pages, 0, length);
1515
		obj_request->result = 0;
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		obj_request->xferred = length;
	} else if (xferred < length && !obj_request->result) {
		if (obj_request->type == OBJ_REQUEST_BIO)
			zero_bio_chain(obj_request->bio_list, xferred);
		else
			zero_pages(obj_request->pages, xferred, length);
		obj_request->xferred = length;
1523 1524 1525 1526
	}
	obj_request_done_set(obj_request);
}

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static void rbd_obj_request_complete(struct rbd_obj_request *obj_request)
{
A
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1529 1530
	dout("%s: obj %p cb %p\n", __func__, obj_request,
		obj_request->callback);
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	if (obj_request->callback)
		obj_request->callback(obj_request);
1533 1534
	else
		complete_all(&obj_request->completion);
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1535 1536
}

1537
static void rbd_osd_trivial_callback(struct rbd_obj_request *obj_request)
1538 1539 1540 1541 1542
{
	dout("%s: obj %p\n", __func__, obj_request);
	obj_request_done_set(obj_request);
}

1543
static void rbd_osd_read_callback(struct rbd_obj_request *obj_request)
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1544
{
A
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1545
	struct rbd_img_request *img_request = NULL;
A
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1546
	struct rbd_device *rbd_dev = NULL;
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	bool layered = false;

	if (obj_request_img_data_test(obj_request)) {
		img_request = obj_request->img_request;
		layered = img_request && img_request_layered_test(img_request);
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		rbd_dev = img_request->rbd_dev;
A
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1553
	}
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1554 1555 1556 1557

	dout("%s: obj %p img %p result %d %llu/%llu\n", __func__,
		obj_request, img_request, obj_request->result,
		obj_request->xferred, obj_request->length);
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1558 1559
	if (layered && obj_request->result == -ENOENT &&
			obj_request->img_offset < rbd_dev->parent_overlap)
A
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1560 1561
		rbd_img_parent_read(obj_request);
	else if (img_request)
1562 1563 1564
		rbd_img_obj_request_read_callback(obj_request);
	else
		obj_request_done_set(obj_request);
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}

1567
static void rbd_osd_write_callback(struct rbd_obj_request *obj_request)
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1568
{
1569 1570 1571
	dout("%s: obj %p result %d %llu\n", __func__, obj_request,
		obj_request->result, obj_request->length);
	/*
A
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	 * There is no such thing as a successful short write.  Set
	 * it to our originally-requested length.
1574 1575
	 */
	obj_request->xferred = obj_request->length;
1576
	obj_request_done_set(obj_request);
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1577 1578
}

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/*
 * For a simple stat call there's nothing to do.  We'll do more if
 * this is part of a write sequence for a layered image.
 */
1583
static void rbd_osd_stat_callback(struct rbd_obj_request *obj_request)
A
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1584
{
A
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1585
	dout("%s: obj %p\n", __func__, obj_request);
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	obj_request_done_set(obj_request);
}

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static void rbd_osd_req_callback(struct ceph_osd_request *osd_req,
				struct ceph_msg *msg)
{
	struct rbd_obj_request *obj_request = osd_req->r_priv;
	u16 opcode;

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	dout("%s: osd_req %p msg %p\n", __func__, osd_req, msg);
A
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1596
	rbd_assert(osd_req == obj_request->osd_req);
A
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	if (obj_request_img_data_test(obj_request)) {
		rbd_assert(obj_request->img_request);
		rbd_assert(obj_request->which != BAD_WHICH);
	} else {
		rbd_assert(obj_request->which == BAD_WHICH);
	}
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1603

1604 1605
	if (osd_req->r_result < 0)
		obj_request->result = osd_req->r_result;
A
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1606

1607
	BUG_ON(osd_req->r_num_ops > 2);
A
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1608

1609 1610 1611 1612
	/*
	 * We support a 64-bit length, but ultimately it has to be
	 * passed to blk_end_request(), which takes an unsigned int.
	 */
1613
	obj_request->xferred = osd_req->r_reply_op_len[0];
A
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1614
	rbd_assert(obj_request->xferred < (u64)UINT_MAX);
1615
	opcode = osd_req->r_ops[0].op;
A
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1616 1617
	switch (opcode) {
	case CEPH_OSD_OP_READ:
1618
		rbd_osd_read_callback(obj_request);
A
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		break;
	case CEPH_OSD_OP_WRITE:
1621
		rbd_osd_write_callback(obj_request);
A
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1622
		break;
A
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1623
	case CEPH_OSD_OP_STAT:
1624
		rbd_osd_stat_callback(obj_request);
A
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1625
		break;
1626
	case CEPH_OSD_OP_CALL:
A
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1627
	case CEPH_OSD_OP_NOTIFY_ACK:
1628
	case CEPH_OSD_OP_WATCH:
1629
		rbd_osd_trivial_callback(obj_request);
1630
		break;
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1631 1632 1633 1634 1635 1636
	default:
		rbd_warn(NULL, "%s: unsupported op %hu\n",
			obj_request->object_name, (unsigned short) opcode);
		break;
	}

1637
	if (obj_request_done_test(obj_request))
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		rbd_obj_request_complete(obj_request);
}

1641
static void rbd_osd_req_format_read(struct rbd_obj_request *obj_request)
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1642 1643
{
	struct rbd_img_request *img_request = obj_request->img_request;
1644
	struct ceph_osd_request *osd_req = obj_request->osd_req;
1645
	u64 snap_id;
A
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1646

1647
	rbd_assert(osd_req != NULL);
A
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1648

1649
	snap_id = img_request ? img_request->snap_id : CEPH_NOSNAP;
1650
	ceph_osdc_build_request(osd_req, obj_request->offset,
1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665
			NULL, snap_id, NULL);
}

static void rbd_osd_req_format_write(struct rbd_obj_request *obj_request)
{
	struct rbd_img_request *img_request = obj_request->img_request;
	struct ceph_osd_request *osd_req = obj_request->osd_req;
	struct ceph_snap_context *snapc;
	struct timespec mtime = CURRENT_TIME;

	rbd_assert(osd_req != NULL);

	snapc = img_request ? img_request->snapc : NULL;
	ceph_osdc_build_request(osd_req, obj_request->offset,
			snapc, CEPH_NOSNAP, &mtime);
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}

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static struct ceph_osd_request *rbd_osd_req_create(
					struct rbd_device *rbd_dev,
					bool write_request,
A
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					struct rbd_obj_request *obj_request)
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{
	struct ceph_snap_context *snapc = NULL;
	struct ceph_osd_client *osdc;
	struct ceph_osd_request *osd_req;

1677 1678 1679
	if (obj_request_img_data_test(obj_request)) {
		struct rbd_img_request *img_request = obj_request->img_request;

A
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1680 1681 1682
		rbd_assert(write_request ==
				img_request_write_test(img_request));
		if (write_request)
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			snapc = img_request->snapc;
	}

	/* Allocate and initialize the request, for the single op */

	osdc = &rbd_dev->rbd_client->client->osdc;
	osd_req = ceph_osdc_alloc_request(osdc, snapc, 1, false, GFP_ATOMIC);
	if (!osd_req)
		return NULL;	/* ENOMEM */

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1693
	if (write_request)
A
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1694
		osd_req->r_flags = CEPH_OSD_FLAG_WRITE | CEPH_OSD_FLAG_ONDISK;
A
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	else
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1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709
		osd_req->r_flags = CEPH_OSD_FLAG_READ;

	osd_req->r_callback = rbd_osd_req_callback;
	osd_req->r_priv = obj_request;

	osd_req->r_oid_len = strlen(obj_request->object_name);
	rbd_assert(osd_req->r_oid_len < sizeof (osd_req->r_oid));
	memcpy(osd_req->r_oid, obj_request->object_name, osd_req->r_oid_len);

	osd_req->r_file_layout = rbd_dev->layout;	/* struct */

	return osd_req;
}

1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751
/*
 * Create a copyup osd request based on the information in the
 * object request supplied.  A copyup request has two osd ops,
 * a copyup method call, and a "normal" write request.
 */
static struct ceph_osd_request *
rbd_osd_req_create_copyup(struct rbd_obj_request *obj_request)
{
	struct rbd_img_request *img_request;
	struct ceph_snap_context *snapc;
	struct rbd_device *rbd_dev;
	struct ceph_osd_client *osdc;
	struct ceph_osd_request *osd_req;

	rbd_assert(obj_request_img_data_test(obj_request));
	img_request = obj_request->img_request;
	rbd_assert(img_request);
	rbd_assert(img_request_write_test(img_request));

	/* Allocate and initialize the request, for the two ops */

	snapc = img_request->snapc;
	rbd_dev = img_request->rbd_dev;
	osdc = &rbd_dev->rbd_client->client->osdc;
	osd_req = ceph_osdc_alloc_request(osdc, snapc, 2, false, GFP_ATOMIC);
	if (!osd_req)
		return NULL;	/* ENOMEM */

	osd_req->r_flags = CEPH_OSD_FLAG_WRITE | CEPH_OSD_FLAG_ONDISK;
	osd_req->r_callback = rbd_osd_req_callback;
	osd_req->r_priv = obj_request;

	osd_req->r_oid_len = strlen(obj_request->object_name);
	rbd_assert(osd_req->r_oid_len < sizeof (osd_req->r_oid));
	memcpy(osd_req->r_oid, obj_request->object_name, osd_req->r_oid_len);

	osd_req->r_file_layout = rbd_dev->layout;	/* struct */

	return osd_req;
}


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static void rbd_osd_req_destroy(struct ceph_osd_request *osd_req)
{
	ceph_osdc_put_request(osd_req);
}

/* object_name is assumed to be a non-null pointer and NUL-terminated */

static struct rbd_obj_request *rbd_obj_request_create(const char *object_name,
						u64 offset, u64 length,
						enum obj_request_type type)
{
	struct rbd_obj_request *obj_request;
	size_t size;
	char *name;

	rbd_assert(obj_request_type_valid(type));

	size = strlen(object_name) + 1;
1770 1771
	name = kmalloc(size, GFP_KERNEL);
	if (!name)
A
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1772 1773
		return NULL;

1774
	obj_request = kmem_cache_zalloc(rbd_obj_request_cache, GFP_KERNEL);
1775 1776 1777 1778 1779
	if (!obj_request) {
		kfree(name);
		return NULL;
	}

A
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1780 1781 1782
	obj_request->object_name = memcpy(name, object_name, size);
	obj_request->offset = offset;
	obj_request->length = length;
1783
	obj_request->flags = 0;
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1784 1785 1786
	obj_request->which = BAD_WHICH;
	obj_request->type = type;
	INIT_LIST_HEAD(&obj_request->links);
1787
	init_completion(&obj_request->completion);
A
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1788 1789
	kref_init(&obj_request->kref);

A
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1790 1791 1792
	dout("%s: \"%s\" %llu/%llu %d -> obj %p\n", __func__, object_name,
		offset, length, (int)type, obj_request);

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1793 1794 1795 1796 1797 1798 1799 1800 1801
	return obj_request;
}

static void rbd_obj_request_destroy(struct kref *kref)
{
	struct rbd_obj_request *obj_request;

	obj_request = container_of(kref, struct rbd_obj_request, kref);

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1802 1803
	dout("%s: obj %p\n", __func__, obj_request);

A
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1804 1805 1806 1807 1808 1809 1810 1811
	rbd_assert(obj_request->img_request == NULL);
	rbd_assert(obj_request->which == BAD_WHICH);

	if (obj_request->osd_req)
		rbd_osd_req_destroy(obj_request->osd_req);

	rbd_assert(obj_request_type_valid(obj_request->type));
	switch (obj_request->type) {
1812 1813
	case OBJ_REQUEST_NODATA:
		break;		/* Nothing to do */
A
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1814 1815 1816 1817
	case OBJ_REQUEST_BIO:
		if (obj_request->bio_list)
			bio_chain_put(obj_request->bio_list);
		break;
1818 1819 1820 1821 1822
	case OBJ_REQUEST_PAGES:
		if (obj_request->pages)
			ceph_release_page_vector(obj_request->pages,
						obj_request->page_count);
		break;
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1823 1824
	}

1825
	kfree(obj_request->object_name);
1826 1827
	obj_request->object_name = NULL;
	kmem_cache_free(rbd_obj_request_cache, obj_request);
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1828 1829 1830 1831 1832 1833 1834
}

/*
 * Caller is responsible for filling in the list of object requests
 * that comprises the image request, and the Linux request pointer
 * (if there is one).
 */
A
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1835 1836
static struct rbd_img_request *rbd_img_request_create(
					struct rbd_device *rbd_dev,
A
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1837
					u64 offset, u64 length,
1838 1839
					bool write_request,
					bool child_request)
A
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1840 1841 1842
{
	struct rbd_img_request *img_request;

1843
	img_request = kmem_cache_alloc(rbd_img_request_cache, GFP_ATOMIC);
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1844 1845 1846 1847 1848
	if (!img_request)
		return NULL;

	if (write_request) {
		down_read(&rbd_dev->header_rwsem);
1849
		ceph_get_snap_context(rbd_dev->header.snapc);
A
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1850 1851 1852 1853 1854 1855 1856
		up_read(&rbd_dev->header_rwsem);
	}

	img_request->rq = NULL;
	img_request->rbd_dev = rbd_dev;
	img_request->offset = offset;
	img_request->length = length;
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1857 1858 1859
	img_request->flags = 0;
	if (write_request) {
		img_request_write_set(img_request);
1860
		img_request->snapc = rbd_dev->header.snapc;
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1861
	} else {
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1862
		img_request->snap_id = rbd_dev->spec->snap_id;
A
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1863
	}
1864 1865
	if (child_request)
		img_request_child_set(img_request);
1866 1867
	if (rbd_dev->parent_spec)
		img_request_layered_set(img_request);
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1868 1869 1870
	spin_lock_init(&img_request->completion_lock);
	img_request->next_completion = 0;
	img_request->callback = NULL;
1871
	img_request->result = 0;
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1872 1873 1874 1875 1876 1877 1878
	img_request->obj_request_count = 0;
	INIT_LIST_HEAD(&img_request->obj_requests);
	kref_init(&img_request->kref);

	rbd_img_request_get(img_request);	/* Avoid a warning */
	rbd_img_request_put(img_request);	/* TEMPORARY */

A
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1879 1880 1881 1882
	dout("%s: rbd_dev %p %s %llu/%llu -> img %p\n", __func__, rbd_dev,
		write_request ? "write" : "read", offset, length,
		img_request);

A
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1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893
	return img_request;
}

static void rbd_img_request_destroy(struct kref *kref)
{
	struct rbd_img_request *img_request;
	struct rbd_obj_request *obj_request;
	struct rbd_obj_request *next_obj_request;

	img_request = container_of(kref, struct rbd_img_request, kref);

A
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1894 1895
	dout("%s: img %p\n", __func__, img_request);

A
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1896 1897
	for_each_obj_request_safe(img_request, obj_request, next_obj_request)
		rbd_img_obj_request_del(img_request, obj_request);
1898
	rbd_assert(img_request->obj_request_count == 0);
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1899

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	if (img_request_write_test(img_request))
1901
		ceph_put_snap_context(img_request->snapc);
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1902

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	if (img_request_child_test(img_request))
		rbd_obj_request_put(img_request->obj_request);

1906
	kmem_cache_free(rbd_img_request_cache, img_request);
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1907 1908
}

1909 1910
static bool rbd_img_obj_end_request(struct rbd_obj_request *obj_request)
{
1911
	struct rbd_img_request *img_request;
1912 1913
	unsigned int xferred;
	int result;
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1914
	bool more;
1915

1916 1917 1918
	rbd_assert(obj_request_img_data_test(obj_request));
	img_request = obj_request->img_request;

1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934
	rbd_assert(obj_request->xferred <= (u64)UINT_MAX);
	xferred = (unsigned int)obj_request->xferred;
	result = obj_request->result;
	if (result) {
		struct rbd_device *rbd_dev = img_request->rbd_dev;

		rbd_warn(rbd_dev, "%s %llx at %llx (%llx)\n",
			img_request_write_test(img_request) ? "write" : "read",
			obj_request->length, obj_request->img_offset,
			obj_request->offset);
		rbd_warn(rbd_dev, "  result %d xferred %x\n",
			result, xferred);
		if (!img_request->result)
			img_request->result = result;
	}

1935 1936 1937 1938 1939 1940 1941
	/* Image object requests don't own their page array */

	if (obj_request->type == OBJ_REQUEST_PAGES) {
		obj_request->pages = NULL;
		obj_request->page_count = 0;
	}

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1942 1943 1944 1945 1946 1947 1948 1949 1950
	if (img_request_child_test(img_request)) {
		rbd_assert(img_request->obj_request != NULL);
		more = obj_request->which < img_request->obj_request_count - 1;
	} else {
		rbd_assert(img_request->rq != NULL);
		more = blk_end_request(img_request->rq, result, xferred);
	}

	return more;
1951 1952
}

1953 1954 1955 1956 1957 1958
static void rbd_img_obj_callback(struct rbd_obj_request *obj_request)
{
	struct rbd_img_request *img_request;
	u32 which = obj_request->which;
	bool more = true;

1959
	rbd_assert(obj_request_img_data_test(obj_request));
1960 1961 1962 1963 1964 1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978
	img_request = obj_request->img_request;

	dout("%s: img %p obj %p\n", __func__, img_request, obj_request);
	rbd_assert(img_request != NULL);
	rbd_assert(img_request->obj_request_count > 0);
	rbd_assert(which != BAD_WHICH);
	rbd_assert(which < img_request->obj_request_count);
	rbd_assert(which >= img_request->next_completion);

	spin_lock_irq(&img_request->completion_lock);
	if (which != img_request->next_completion)
		goto out;

	for_each_obj_request_from(img_request, obj_request) {
		rbd_assert(more);
		rbd_assert(which < img_request->obj_request_count);

		if (!obj_request_done_test(obj_request))
			break;
1979
		more = rbd_img_obj_end_request(obj_request);
1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991
		which++;
	}

	rbd_assert(more ^ (which == img_request->obj_request_count));
	img_request->next_completion = which;
out:
	spin_unlock_irq(&img_request->completion_lock);

	if (!more)
		rbd_img_request_complete(img_request);
}

1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002
/*
 * Split up an image request into one or more object requests, each
 * to a different object.  The "type" parameter indicates whether
 * "data_desc" is the pointer to the head of a list of bio
 * structures, or the base of a page array.  In either case this
 * function assumes data_desc describes memory sufficient to hold
 * all data described by the image request.
 */
static int rbd_img_request_fill(struct rbd_img_request *img_request,
					enum obj_request_type type,
					void *data_desc)
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2003 2004 2005 2006
{
	struct rbd_device *rbd_dev = img_request->rbd_dev;
	struct rbd_obj_request *obj_request = NULL;
	struct rbd_obj_request *next_obj_request;
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2007
	bool write_request = img_request_write_test(img_request);
2008 2009 2010
	struct bio *bio_list;
	unsigned int bio_offset = 0;
	struct page **pages;
2011
	u64 img_offset;
A
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2012 2013 2014
	u64 resid;
	u16 opcode;

2015 2016
	dout("%s: img %p type %d data_desc %p\n", __func__, img_request,
		(int)type, data_desc);
A
Alex Elder 已提交
2017

A
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2018
	opcode = write_request ? CEPH_OSD_OP_WRITE : CEPH_OSD_OP_READ;
2019
	img_offset = img_request->offset;
A
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2020
	resid = img_request->length;
A
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2021
	rbd_assert(resid > 0);
2022 2023 2024 2025 2026 2027 2028 2029 2030

	if (type == OBJ_REQUEST_BIO) {
		bio_list = data_desc;
		rbd_assert(img_offset == bio_list->bi_sector << SECTOR_SHIFT);
	} else {
		rbd_assert(type == OBJ_REQUEST_PAGES);
		pages = data_desc;
	}

A
Alex Elder 已提交
2031
	while (resid) {
2032
		struct ceph_osd_request *osd_req;
A
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2033 2034 2035 2036
		const char *object_name;
		u64 offset;
		u64 length;

2037
		object_name = rbd_segment_name(rbd_dev, img_offset);
A
Alex Elder 已提交
2038 2039
		if (!object_name)
			goto out_unwind;
2040 2041
		offset = rbd_segment_offset(rbd_dev, img_offset);
		length = rbd_segment_length(rbd_dev, img_offset, resid);
A
Alex Elder 已提交
2042
		obj_request = rbd_obj_request_create(object_name,
2043
						offset, length, type);
2044 2045
		/* object request has its own copy of the object name */
		rbd_segment_name_free(object_name);
A
Alex Elder 已提交
2046 2047 2048
		if (!obj_request)
			goto out_unwind;

2049 2050 2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066 2067 2068 2069 2070
		if (type == OBJ_REQUEST_BIO) {
			unsigned int clone_size;

			rbd_assert(length <= (u64)UINT_MAX);
			clone_size = (unsigned int)length;
			obj_request->bio_list =
					bio_chain_clone_range(&bio_list,
								&bio_offset,
								clone_size,
								GFP_ATOMIC);
			if (!obj_request->bio_list)
				goto out_partial;
		} else {
			unsigned int page_count;

			obj_request->pages = pages;
			page_count = (u32)calc_pages_for(offset, length);
			obj_request->page_count = page_count;
			if ((offset + length) & ~PAGE_MASK)
				page_count--;	/* more on last page */
			pages += page_count;
		}
A
Alex Elder 已提交
2071

2072 2073 2074
		osd_req = rbd_osd_req_create(rbd_dev, write_request,
						obj_request);
		if (!osd_req)
A
Alex Elder 已提交
2075
			goto out_partial;
2076
		obj_request->osd_req = osd_req;
2077
		obj_request->callback = rbd_img_obj_callback;
A
Alex Elder 已提交
2078

2079 2080
		osd_req_op_extent_init(osd_req, 0, opcode, offset, length,
						0, 0);
2081 2082 2083 2084 2085 2086 2087
		if (type == OBJ_REQUEST_BIO)
			osd_req_op_extent_osd_data_bio(osd_req, 0,
					obj_request->bio_list, length);
		else
			osd_req_op_extent_osd_data_pages(osd_req, 0,
					obj_request->pages, length,
					offset & ~PAGE_MASK, false, false);
2088 2089 2090 2091 2092

		if (write_request)
			rbd_osd_req_format_write(obj_request);
		else
			rbd_osd_req_format_read(obj_request);
A
Alex Elder 已提交
2093

2094
		obj_request->img_offset = img_offset;
A
Alex Elder 已提交
2095 2096
		rbd_img_obj_request_add(img_request, obj_request);

2097
		img_offset += length;
A
Alex Elder 已提交
2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111
		resid -= length;
	}

	return 0;

out_partial:
	rbd_obj_request_put(obj_request);
out_unwind:
	for_each_obj_request_safe(img_request, obj_request, next_obj_request)
		rbd_obj_request_put(obj_request);

	return -ENOMEM;
}

2112 2113 2114 2115 2116 2117 2118 2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147
static void
rbd_img_obj_copyup_callback(struct rbd_obj_request *obj_request)
{
	struct rbd_img_request *img_request;
	struct rbd_device *rbd_dev;
	u64 length;
	u32 page_count;

	rbd_assert(obj_request->type == OBJ_REQUEST_BIO);
	rbd_assert(obj_request_img_data_test(obj_request));
	img_request = obj_request->img_request;
	rbd_assert(img_request);

	rbd_dev = img_request->rbd_dev;
	rbd_assert(rbd_dev);
	length = (u64)1 << rbd_dev->header.obj_order;
	page_count = (u32)calc_pages_for(0, length);

	rbd_assert(obj_request->copyup_pages);
	ceph_release_page_vector(obj_request->copyup_pages, page_count);
	obj_request->copyup_pages = NULL;

	/*
	 * We want the transfer count to reflect the size of the
	 * original write request.  There is no such thing as a
	 * successful short write, so if the request was successful
	 * we can just set it to the originally-requested length.
	 */
	if (!obj_request->result)
		obj_request->xferred = obj_request->length;

	/* Finish up with the normal image object callback */

	rbd_img_obj_callback(obj_request);
}

2148 2149 2150 2151
static void
rbd_img_obj_parent_read_full_callback(struct rbd_img_request *img_request)
{
	struct rbd_obj_request *orig_request;
2152 2153 2154
	struct ceph_osd_request *osd_req;
	struct ceph_osd_client *osdc;
	struct rbd_device *rbd_dev;
2155 2156 2157 2158 2159 2160 2161 2162 2163 2164 2165 2166 2167 2168 2169
	struct page **pages;
	int result;
	u64 obj_size;
	u64 xferred;

	rbd_assert(img_request_child_test(img_request));

	/* First get what we need from the image request */

	pages = img_request->copyup_pages;
	rbd_assert(pages != NULL);
	img_request->copyup_pages = NULL;

	orig_request = img_request->obj_request;
	rbd_assert(orig_request != NULL);
2170
	rbd_assert(orig_request->type == OBJ_REQUEST_BIO);
2171 2172 2173 2174
	result = img_request->result;
	obj_size = img_request->length;
	xferred = img_request->xferred;

2175 2176 2177 2178
	rbd_dev = img_request->rbd_dev;
	rbd_assert(rbd_dev);
	rbd_assert(obj_size == (u64)1 << rbd_dev->header.obj_order);

2179 2180
	rbd_img_request_put(img_request);

2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192
	if (result)
		goto out_err;

	/* Allocate the new copyup osd request for the original request */

	result = -ENOMEM;
	rbd_assert(!orig_request->osd_req);
	osd_req = rbd_osd_req_create_copyup(orig_request);
	if (!osd_req)
		goto out_err;
	orig_request->osd_req = osd_req;
	orig_request->copyup_pages = pages;
2193

2194
	/* Initialize the copyup op */
2195

2196 2197 2198
	osd_req_op_cls_init(osd_req, 0, CEPH_OSD_OP_CALL, "rbd", "copyup");
	osd_req_op_cls_request_data_pages(osd_req, 0, pages, obj_size, 0,
						false, false);
2199

2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223
	/* Then the original write request op */

	osd_req_op_extent_init(osd_req, 1, CEPH_OSD_OP_WRITE,
					orig_request->offset,
					orig_request->length, 0, 0);
	osd_req_op_extent_osd_data_bio(osd_req, 1, orig_request->bio_list,
					orig_request->length);

	rbd_osd_req_format_write(orig_request);

	/* All set, send it off. */

	orig_request->callback = rbd_img_obj_copyup_callback;
	osdc = &rbd_dev->rbd_client->client->osdc;
	result = rbd_obj_request_submit(osdc, orig_request);
	if (!result)
		return;
out_err:
	/* Record the error code and complete the request */

	orig_request->result = result;
	orig_request->xferred = 0;
	obj_request_done_set(orig_request);
	rbd_obj_request_complete(orig_request);
2224 2225 2226 2227 2228 2229 2230 2231 2232 2233 2234 2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258
}

/*
 * Read from the parent image the range of data that covers the
 * entire target of the given object request.  This is used for
 * satisfying a layered image write request when the target of an
 * object request from the image request does not exist.
 *
 * A page array big enough to hold the returned data is allocated
 * and supplied to rbd_img_request_fill() as the "data descriptor."
 * When the read completes, this page array will be transferred to
 * the original object request for the copyup operation.
 *
 * If an error occurs, record it as the result of the original
 * object request and mark it done so it gets completed.
 */
static int rbd_img_obj_parent_read_full(struct rbd_obj_request *obj_request)
{
	struct rbd_img_request *img_request = NULL;
	struct rbd_img_request *parent_request = NULL;
	struct rbd_device *rbd_dev;
	u64 img_offset;
	u64 length;
	struct page **pages = NULL;
	u32 page_count;
	int result;

	rbd_assert(obj_request_img_data_test(obj_request));
	rbd_assert(obj_request->type == OBJ_REQUEST_BIO);

	img_request = obj_request->img_request;
	rbd_assert(img_request != NULL);
	rbd_dev = img_request->rbd_dev;
	rbd_assert(rbd_dev->parent != NULL);

2259 2260 2261 2262 2263 2264 2265 2266 2267
	/*
	 * First things first.  The original osd request is of no
	 * use to use any more, we'll need a new one that can hold
	 * the two ops in a copyup request.  We'll get that later,
	 * but for now we can release the old one.
	 */
	rbd_osd_req_destroy(obj_request->osd_req);
	obj_request->osd_req = NULL;

2268 2269 2270 2271 2272 2273 2274
	/*
	 * Determine the byte range covered by the object in the
	 * child image to which the original request was to be sent.
	 */
	img_offset = obj_request->img_offset - obj_request->offset;
	length = (u64)1 << rbd_dev->header.obj_order;

A
Alex Elder 已提交
2275 2276 2277 2278 2279 2280 2281 2282 2283 2284
	/*
	 * There is no defined parent data beyond the parent
	 * overlap, so limit what we read at that boundary if
	 * necessary.
	 */
	if (img_offset + length > rbd_dev->parent_overlap) {
		rbd_assert(img_offset < rbd_dev->parent_overlap);
		length = rbd_dev->parent_overlap - img_offset;
	}

2285 2286 2287 2288 2289 2290 2291 2292 2293 2294 2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319 2320 2321 2322 2323 2324 2325 2326 2327 2328 2329 2330
	/*
	 * Allocate a page array big enough to receive the data read
	 * from the parent.
	 */
	page_count = (u32)calc_pages_for(0, length);
	pages = ceph_alloc_page_vector(page_count, GFP_KERNEL);
	if (IS_ERR(pages)) {
		result = PTR_ERR(pages);
		pages = NULL;
		goto out_err;
	}

	result = -ENOMEM;
	parent_request = rbd_img_request_create(rbd_dev->parent,
						img_offset, length,
						false, true);
	if (!parent_request)
		goto out_err;
	rbd_obj_request_get(obj_request);
	parent_request->obj_request = obj_request;

	result = rbd_img_request_fill(parent_request, OBJ_REQUEST_PAGES, pages);
	if (result)
		goto out_err;
	parent_request->copyup_pages = pages;

	parent_request->callback = rbd_img_obj_parent_read_full_callback;
	result = rbd_img_request_submit(parent_request);
	if (!result)
		return 0;

	parent_request->copyup_pages = NULL;
	parent_request->obj_request = NULL;
	rbd_obj_request_put(obj_request);
out_err:
	if (pages)
		ceph_release_page_vector(pages, page_count);
	if (parent_request)
		rbd_img_request_put(parent_request);
	obj_request->result = result;
	obj_request->xferred = 0;
	obj_request_done_set(obj_request);

	return result;
}

2331 2332 2333 2334 2335 2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370
static void rbd_img_obj_exists_callback(struct rbd_obj_request *obj_request)
{
	struct rbd_obj_request *orig_request;
	int result;

	rbd_assert(!obj_request_img_data_test(obj_request));

	/*
	 * All we need from the object request is the original
	 * request and the result of the STAT op.  Grab those, then
	 * we're done with the request.
	 */
	orig_request = obj_request->obj_request;
	obj_request->obj_request = NULL;
	rbd_assert(orig_request);
	rbd_assert(orig_request->img_request);

	result = obj_request->result;
	obj_request->result = 0;

	dout("%s: obj %p for obj %p result %d %llu/%llu\n", __func__,
		obj_request, orig_request, result,
		obj_request->xferred, obj_request->length);
	rbd_obj_request_put(obj_request);

	rbd_assert(orig_request);
	rbd_assert(orig_request->img_request);

	/*
	 * Our only purpose here is to determine whether the object
	 * exists, and we don't want to treat the non-existence as
	 * an error.  If something else comes back, transfer the
	 * error to the original request and complete it now.
	 */
	if (!result) {
		obj_request_existence_set(orig_request, true);
	} else if (result == -ENOENT) {
		obj_request_existence_set(orig_request, false);
	} else if (result) {
		orig_request->result = result;
2371
		goto out;
2372 2373 2374 2375 2376 2377
	}

	/*
	 * Resubmit the original request now that we have recorded
	 * whether the target object exists.
	 */
2378
	orig_request->result = rbd_img_obj_request_submit(orig_request);
2379
out:
2380 2381 2382 2383 2384 2385 2386 2387 2388 2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400 2401 2402 2403 2404 2405 2406 2407 2408 2409 2410 2411 2412 2413 2414 2415 2416 2417 2418 2419 2420 2421 2422 2423 2424 2425 2426 2427 2428 2429 2430
	if (orig_request->result)
		rbd_obj_request_complete(orig_request);
	rbd_obj_request_put(orig_request);
}

static int rbd_img_obj_exists_submit(struct rbd_obj_request *obj_request)
{
	struct rbd_obj_request *stat_request;
	struct rbd_device *rbd_dev;
	struct ceph_osd_client *osdc;
	struct page **pages = NULL;
	u32 page_count;
	size_t size;
	int ret;

	/*
	 * The response data for a STAT call consists of:
	 *     le64 length;
	 *     struct {
	 *         le32 tv_sec;
	 *         le32 tv_nsec;
	 *     } mtime;
	 */
	size = sizeof (__le64) + sizeof (__le32) + sizeof (__le32);
	page_count = (u32)calc_pages_for(0, size);
	pages = ceph_alloc_page_vector(page_count, GFP_KERNEL);
	if (IS_ERR(pages))
		return PTR_ERR(pages);

	ret = -ENOMEM;
	stat_request = rbd_obj_request_create(obj_request->object_name, 0, 0,
							OBJ_REQUEST_PAGES);
	if (!stat_request)
		goto out;

	rbd_obj_request_get(obj_request);
	stat_request->obj_request = obj_request;
	stat_request->pages = pages;
	stat_request->page_count = page_count;

	rbd_assert(obj_request->img_request);
	rbd_dev = obj_request->img_request->rbd_dev;
	stat_request->osd_req = rbd_osd_req_create(rbd_dev, false,
						stat_request);
	if (!stat_request->osd_req)
		goto out;
	stat_request->callback = rbd_img_obj_exists_callback;

	osd_req_op_init(stat_request->osd_req, 0, CEPH_OSD_OP_STAT);
	osd_req_op_raw_data_in_pages(stat_request->osd_req, 0, pages, size, 0,
					false, false);
2431
	rbd_osd_req_format_read(stat_request);
2432 2433 2434 2435 2436 2437 2438 2439 2440 2441

	osdc = &rbd_dev->rbd_client->client->osdc;
	ret = rbd_obj_request_submit(osdc, stat_request);
out:
	if (ret)
		rbd_obj_request_put(obj_request);

	return ret;
}

2442 2443 2444
static int rbd_img_obj_request_submit(struct rbd_obj_request *obj_request)
{
	struct rbd_img_request *img_request;
A
Alex Elder 已提交
2445
	struct rbd_device *rbd_dev;
2446
	bool known;
2447 2448 2449 2450 2451

	rbd_assert(obj_request_img_data_test(obj_request));

	img_request = obj_request->img_request;
	rbd_assert(img_request);
A
Alex Elder 已提交
2452
	rbd_dev = img_request->rbd_dev;
2453 2454

	/*
A
Alex Elder 已提交
2455 2456 2457 2458 2459 2460 2461 2462
	 * Only writes to layered images need special handling.
	 * Reads and non-layered writes are simple object requests.
	 * Layered writes that start beyond the end of the overlap
	 * with the parent have no parent data, so they too are
	 * simple object requests.  Finally, if the target object is
	 * known to already exist, its parent data has already been
	 * copied, so a write to the object can also be handled as a
	 * simple object request.
2463 2464 2465
	 */
	if (!img_request_write_test(img_request) ||
		!img_request_layered_test(img_request) ||
A
Alex Elder 已提交
2466
		rbd_dev->parent_overlap <= obj_request->img_offset ||
2467 2468
		((known = obj_request_known_test(obj_request)) &&
			obj_request_exists_test(obj_request))) {
2469 2470 2471 2472 2473 2474 2475 2476 2477 2478 2479

		struct rbd_device *rbd_dev;
		struct ceph_osd_client *osdc;

		rbd_dev = obj_request->img_request->rbd_dev;
		osdc = &rbd_dev->rbd_client->client->osdc;

		return rbd_obj_request_submit(osdc, obj_request);
	}

	/*
2480 2481 2482 2483
	 * It's a layered write.  The target object might exist but
	 * we may not know that yet.  If we know it doesn't exist,
	 * start by reading the data for the full target object from
	 * the parent so we can use it for a copyup to the target.
2484
	 */
2485 2486 2487 2488
	if (known)
		return rbd_img_obj_parent_read_full(obj_request);

	/* We don't know whether the target exists.  Go find out. */
2489 2490 2491 2492

	return rbd_img_obj_exists_submit(obj_request);
}

A
Alex Elder 已提交
2493 2494 2495
static int rbd_img_request_submit(struct rbd_img_request *img_request)
{
	struct rbd_obj_request *obj_request;
2496
	struct rbd_obj_request *next_obj_request;
A
Alex Elder 已提交
2497

A
Alex Elder 已提交
2498
	dout("%s: img %p\n", __func__, img_request);
2499
	for_each_obj_request_safe(img_request, obj_request, next_obj_request) {
A
Alex Elder 已提交
2500 2501
		int ret;

2502
		ret = rbd_img_obj_request_submit(obj_request);
A
Alex Elder 已提交
2503 2504 2505 2506 2507 2508
		if (ret)
			return ret;
	}

	return 0;
}
A
Alex Elder 已提交
2509 2510 2511 2512

static void rbd_img_parent_read_callback(struct rbd_img_request *img_request)
{
	struct rbd_obj_request *obj_request;
A
Alex Elder 已提交
2513 2514
	struct rbd_device *rbd_dev;
	u64 obj_end;
A
Alex Elder 已提交
2515 2516 2517 2518

	rbd_assert(img_request_child_test(img_request));

	obj_request = img_request->obj_request;
A
Alex Elder 已提交
2519 2520 2521
	rbd_assert(obj_request);
	rbd_assert(obj_request->img_request);

A
Alex Elder 已提交
2522
	obj_request->result = img_request->result;
A
Alex Elder 已提交
2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533 2534 2535 2536 2537 2538 2539 2540 2541
	if (obj_request->result)
		goto out;

	/*
	 * We need to zero anything beyond the parent overlap
	 * boundary.  Since rbd_img_obj_request_read_callback()
	 * will zero anything beyond the end of a short read, an
	 * easy way to do this is to pretend the data from the
	 * parent came up short--ending at the overlap boundary.
	 */
	rbd_assert(obj_request->img_offset < U64_MAX - obj_request->length);
	obj_end = obj_request->img_offset + obj_request->length;
	rbd_dev = obj_request->img_request->rbd_dev;
	if (obj_end > rbd_dev->parent_overlap) {
		u64 xferred = 0;

		if (obj_request->img_offset < rbd_dev->parent_overlap)
			xferred = rbd_dev->parent_overlap -
					obj_request->img_offset;
A
Alex Elder 已提交
2542

A
Alex Elder 已提交
2543 2544 2545 2546 2547
		obj_request->xferred = min(img_request->xferred, xferred);
	} else {
		obj_request->xferred = img_request->xferred;
	}
out:
2548
	rbd_img_request_put(img_request);
A
Alex Elder 已提交
2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563 2564 2565 2566 2567 2568 2569 2570 2571 2572 2573 2574 2575 2576 2577
	rbd_img_obj_request_read_callback(obj_request);
	rbd_obj_request_complete(obj_request);
}

static void rbd_img_parent_read(struct rbd_obj_request *obj_request)
{
	struct rbd_device *rbd_dev;
	struct rbd_img_request *img_request;
	int result;

	rbd_assert(obj_request_img_data_test(obj_request));
	rbd_assert(obj_request->img_request != NULL);
	rbd_assert(obj_request->result == (s32) -ENOENT);
	rbd_assert(obj_request->type == OBJ_REQUEST_BIO);

	rbd_dev = obj_request->img_request->rbd_dev;
	rbd_assert(rbd_dev->parent != NULL);
	/* rbd_read_finish(obj_request, obj_request->length); */
	img_request = rbd_img_request_create(rbd_dev->parent,
						obj_request->img_offset,
						obj_request->length,
						false, true);
	result = -ENOMEM;
	if (!img_request)
		goto out_err;

	rbd_obj_request_get(obj_request);
	img_request->obj_request = obj_request;

2578 2579
	result = rbd_img_request_fill(img_request, OBJ_REQUEST_BIO,
					obj_request->bio_list);
A
Alex Elder 已提交
2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590 2591 2592 2593 2594 2595
	if (result)
		goto out_err;

	img_request->callback = rbd_img_parent_read_callback;
	result = rbd_img_request_submit(img_request);
	if (result)
		goto out_err;

	return;
out_err:
	if (img_request)
		rbd_img_request_put(img_request);
	obj_request->result = result;
	obj_request->xferred = 0;
	obj_request_done_set(obj_request);
}
A
Alex Elder 已提交
2596

A
Alex Elder 已提交
2597
static int rbd_obj_notify_ack(struct rbd_device *rbd_dev, u64 notify_id)
A
Alex Elder 已提交
2598 2599
{
	struct rbd_obj_request *obj_request;
2600
	struct ceph_osd_client *osdc = &rbd_dev->rbd_client->client->osdc;
A
Alex Elder 已提交
2601 2602 2603 2604 2605 2606 2607 2608
	int ret;

	obj_request = rbd_obj_request_create(rbd_dev->header_name, 0, 0,
							OBJ_REQUEST_NODATA);
	if (!obj_request)
		return -ENOMEM;

	ret = -ENOMEM;
A
Alex Elder 已提交
2609
	obj_request->osd_req = rbd_osd_req_create(rbd_dev, false, obj_request);
A
Alex Elder 已提交
2610 2611
	if (!obj_request->osd_req)
		goto out;
2612
	obj_request->callback = rbd_obj_request_put;
A
Alex Elder 已提交
2613

2614
	osd_req_op_watch_init(obj_request->osd_req, 0, CEPH_OSD_OP_NOTIFY_ACK,
A
Alex Elder 已提交
2615
					notify_id, 0, 0);
2616
	rbd_osd_req_format_read(obj_request);
A
Alex Elder 已提交
2617

A
Alex Elder 已提交
2618 2619
	ret = rbd_obj_request_submit(osdc, obj_request);
out:
A
Alex Elder 已提交
2620 2621
	if (ret)
		rbd_obj_request_put(obj_request);
A
Alex Elder 已提交
2622 2623 2624 2625 2626 2627 2628

	return ret;
}

static void rbd_watch_cb(u64 ver, u64 notify_id, u8 opcode, void *data)
{
	struct rbd_device *rbd_dev = (struct rbd_device *)data;
2629
	int ret;
A
Alex Elder 已提交
2630 2631 2632 2633

	if (!rbd_dev)
		return;

A
Alex Elder 已提交
2634
	dout("%s: \"%s\" notify_id %llu opcode %u\n", __func__,
A
Alex Elder 已提交
2635 2636
		rbd_dev->header_name, (unsigned long long)notify_id,
		(unsigned int)opcode);
2637 2638 2639
	ret = rbd_dev_refresh(rbd_dev);
	if (ret)
		rbd_warn(rbd_dev, ": header refresh error (%d)\n", ret);
A
Alex Elder 已提交
2640

A
Alex Elder 已提交
2641
	rbd_obj_notify_ack(rbd_dev, notify_id);
A
Alex Elder 已提交
2642 2643
}

2644 2645 2646 2647 2648 2649 2650 2651 2652 2653 2654 2655 2656 2657
/*
 * Request sync osd watch/unwatch.  The value of "start" determines
 * whether a watch request is being initiated or torn down.
 */
static int rbd_dev_header_watch_sync(struct rbd_device *rbd_dev, int start)
{
	struct ceph_osd_client *osdc = &rbd_dev->rbd_client->client->osdc;
	struct rbd_obj_request *obj_request;
	int ret;

	rbd_assert(start ^ !!rbd_dev->watch_event);
	rbd_assert(start ^ !!rbd_dev->watch_request);

	if (start) {
2658
		ret = ceph_osdc_create_event(osdc, rbd_watch_cb, rbd_dev,
2659 2660 2661
						&rbd_dev->watch_event);
		if (ret < 0)
			return ret;
2662
		rbd_assert(rbd_dev->watch_event != NULL);
2663 2664 2665 2666 2667 2668 2669 2670
	}

	ret = -ENOMEM;
	obj_request = rbd_obj_request_create(rbd_dev->header_name, 0, 0,
							OBJ_REQUEST_NODATA);
	if (!obj_request)
		goto out_cancel;

A
Alex Elder 已提交
2671 2672 2673 2674
	obj_request->osd_req = rbd_osd_req_create(rbd_dev, true, obj_request);
	if (!obj_request->osd_req)
		goto out_cancel;

2675
	if (start)
2676
		ceph_osdc_set_request_linger(osdc, obj_request->osd_req);
2677
	else
2678
		ceph_osdc_unregister_linger_request(osdc,
2679
					rbd_dev->watch_request->osd_req);
2680 2681

	osd_req_op_watch_init(obj_request->osd_req, 0, CEPH_OSD_OP_WATCH,
2682
				rbd_dev->watch_event->cookie, 0, start);
2683
	rbd_osd_req_format_write(obj_request);
2684

2685 2686 2687 2688 2689 2690 2691 2692 2693 2694
	ret = rbd_obj_request_submit(osdc, obj_request);
	if (ret)
		goto out_cancel;
	ret = rbd_obj_request_wait(obj_request);
	if (ret)
		goto out_cancel;
	ret = obj_request->result;
	if (ret)
		goto out_cancel;

2695 2696 2697 2698 2699 2700 2701 2702 2703 2704 2705 2706 2707 2708 2709 2710 2711 2712
	/*
	 * A watch request is set to linger, so the underlying osd
	 * request won't go away until we unregister it.  We retain
	 * a pointer to the object request during that time (in
	 * rbd_dev->watch_request), so we'll keep a reference to
	 * it.  We'll drop that reference (below) after we've
	 * unregistered it.
	 */
	if (start) {
		rbd_dev->watch_request = obj_request;

		return 0;
	}

	/* We have successfully torn down the watch request */

	rbd_obj_request_put(rbd_dev->watch_request);
	rbd_dev->watch_request = NULL;
2713 2714 2715 2716 2717 2718 2719 2720 2721 2722
out_cancel:
	/* Cancel the event if we're tearing down, or on error */
	ceph_osdc_cancel_event(rbd_dev->watch_event);
	rbd_dev->watch_event = NULL;
	if (obj_request)
		rbd_obj_request_put(obj_request);

	return ret;
}

2723
/*
2724 2725
 * Synchronous osd object method call.  Returns the number of bytes
 * returned in the outbound buffer, or a negative error code.
2726 2727 2728 2729 2730
 */
static int rbd_obj_method_sync(struct rbd_device *rbd_dev,
			     const char *object_name,
			     const char *class_name,
			     const char *method_name,
2731
			     const void *outbound,
2732
			     size_t outbound_size,
2733
			     void *inbound,
2734
			     size_t inbound_size)
2735
{
2736
	struct ceph_osd_client *osdc = &rbd_dev->rbd_client->client->osdc;
2737 2738 2739 2740 2741 2742
	struct rbd_obj_request *obj_request;
	struct page **pages;
	u32 page_count;
	int ret;

	/*
2743 2744 2745 2746 2747
	 * Method calls are ultimately read operations.  The result
	 * should placed into the inbound buffer provided.  They
	 * also supply outbound data--parameters for the object
	 * method.  Currently if this is present it will be a
	 * snapshot id.
2748
	 */
2749
	page_count = (u32)calc_pages_for(0, inbound_size);
2750 2751 2752 2753 2754
	pages = ceph_alloc_page_vector(page_count, GFP_KERNEL);
	if (IS_ERR(pages))
		return PTR_ERR(pages);

	ret = -ENOMEM;
2755
	obj_request = rbd_obj_request_create(object_name, 0, inbound_size,
2756 2757 2758 2759 2760 2761 2762
							OBJ_REQUEST_PAGES);
	if (!obj_request)
		goto out;

	obj_request->pages = pages;
	obj_request->page_count = page_count;

A
Alex Elder 已提交
2763
	obj_request->osd_req = rbd_osd_req_create(rbd_dev, false, obj_request);
2764 2765 2766
	if (!obj_request->osd_req)
		goto out;

2767
	osd_req_op_cls_init(obj_request->osd_req, 0, CEPH_OSD_OP_CALL,
2768 2769 2770 2771 2772 2773 2774 2775 2776 2777 2778 2779 2780
					class_name, method_name);
	if (outbound_size) {
		struct ceph_pagelist *pagelist;

		pagelist = kmalloc(sizeof (*pagelist), GFP_NOFS);
		if (!pagelist)
			goto out;

		ceph_pagelist_init(pagelist);
		ceph_pagelist_append(pagelist, outbound, outbound_size);
		osd_req_op_cls_request_data_pagelist(obj_request->osd_req, 0,
						pagelist);
	}
2781 2782
	osd_req_op_cls_response_data_pages(obj_request->osd_req, 0,
					obj_request->pages, inbound_size,
2783
					0, false, false);
2784
	rbd_osd_req_format_read(obj_request);
A
Alex Elder 已提交
2785

2786 2787 2788 2789 2790 2791 2792 2793 2794 2795
	ret = rbd_obj_request_submit(osdc, obj_request);
	if (ret)
		goto out;
	ret = rbd_obj_request_wait(obj_request);
	if (ret)
		goto out;

	ret = obj_request->result;
	if (ret < 0)
		goto out;
2796 2797 2798

	rbd_assert(obj_request->xferred < (u64)INT_MAX);
	ret = (int)obj_request->xferred;
2799
	ceph_copy_from_page_vector(pages, inbound, 0, obj_request->xferred);
2800 2801 2802 2803 2804 2805 2806 2807 2808
out:
	if (obj_request)
		rbd_obj_request_put(obj_request);
	else
		ceph_release_page_vector(pages, page_count);

	return ret;
}

A
Alex Elder 已提交
2809
static void rbd_request_fn(struct request_queue *q)
A
Alex Elder 已提交
2810
		__releases(q->queue_lock) __acquires(q->queue_lock)
A
Alex Elder 已提交
2811 2812 2813 2814 2815 2816 2817 2818 2819 2820 2821 2822 2823 2824 2825
{
	struct rbd_device *rbd_dev = q->queuedata;
	bool read_only = rbd_dev->mapping.read_only;
	struct request *rq;
	int result;

	while ((rq = blk_fetch_request(q))) {
		bool write_request = rq_data_dir(rq) == WRITE;
		struct rbd_img_request *img_request;
		u64 offset;
		u64 length;

		/* Ignore any non-FS requests that filter through. */

		if (rq->cmd_type != REQ_TYPE_FS) {
A
Alex Elder 已提交
2826 2827 2828 2829 2830 2831 2832 2833 2834 2835 2836 2837 2838
			dout("%s: non-fs request type %d\n", __func__,
				(int) rq->cmd_type);
			__blk_end_request_all(rq, 0);
			continue;
		}

		/* Ignore/skip any zero-length requests */

		offset = (u64) blk_rq_pos(rq) << SECTOR_SHIFT;
		length = (u64) blk_rq_bytes(rq);

		if (!length) {
			dout("%s: zero-length request\n", __func__);
A
Alex Elder 已提交
2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849 2850 2851 2852 2853
			__blk_end_request_all(rq, 0);
			continue;
		}

		spin_unlock_irq(q->queue_lock);

		/* Disallow writes to a read-only device */

		if (write_request) {
			result = -EROFS;
			if (read_only)
				goto end_request;
			rbd_assert(rbd_dev->spec->snap_id == CEPH_NOSNAP);
		}

2854 2855 2856 2857 2858 2859 2860 2861
		/*
		 * Quit early if the mapped snapshot no longer
		 * exists.  It's still possible the snapshot will
		 * have disappeared by the time our request arrives
		 * at the osd, but there's no sense in sending it if
		 * we already know.
		 */
		if (!test_bit(RBD_DEV_FLAG_EXISTS, &rbd_dev->flags)) {
A
Alex Elder 已提交
2862 2863 2864 2865 2866 2867 2868
			dout("request for non-existent snapshot");
			rbd_assert(rbd_dev->spec->snap_id != CEPH_NOSNAP);
			result = -ENXIO;
			goto end_request;
		}

		result = -EINVAL;
A
Alex Elder 已提交
2869 2870 2871
		if (offset && length > U64_MAX - offset + 1) {
			rbd_warn(rbd_dev, "bad request range (%llu~%llu)\n",
				offset, length);
A
Alex Elder 已提交
2872
			goto end_request;	/* Shouldn't happen */
A
Alex Elder 已提交
2873
		}
A
Alex Elder 已提交
2874

2875 2876 2877 2878 2879 2880 2881
		result = -EIO;
		if (offset + length > rbd_dev->mapping.size) {
			rbd_warn(rbd_dev, "beyond EOD (%llu~%llu > %llu)\n",
				offset, length, rbd_dev->mapping.size);
			goto end_request;
		}

A
Alex Elder 已提交
2882 2883
		result = -ENOMEM;
		img_request = rbd_img_request_create(rbd_dev, offset, length,
2884
							write_request, false);
A
Alex Elder 已提交
2885 2886 2887 2888 2889
		if (!img_request)
			goto end_request;

		img_request->rq = rq;

2890 2891
		result = rbd_img_request_fill(img_request, OBJ_REQUEST_BIO,
						rq->bio);
A
Alex Elder 已提交
2892 2893 2894 2895 2896 2897 2898
		if (!result)
			result = rbd_img_request_submit(img_request);
		if (result)
			rbd_img_request_put(img_request);
end_request:
		spin_lock_irq(q->queue_lock);
		if (result < 0) {
2899 2900 2901 2902
			rbd_warn(rbd_dev, "%s %llx at %llx result %d\n",
				write_request ? "write" : "read",
				length, offset, result);

A
Alex Elder 已提交
2903 2904 2905 2906 2907
			__blk_end_request_all(rq, result);
		}
	}
}

2908 2909 2910
/*
 * a queue callback. Makes sure that we don't create a bio that spans across
 * multiple osd objects. One exception would be with a single page bios,
A
Alex Elder 已提交
2911
 * which we handle later at bio_chain_clone_range()
2912 2913 2914 2915 2916
 */
static int rbd_merge_bvec(struct request_queue *q, struct bvec_merge_data *bmd,
			  struct bio_vec *bvec)
{
	struct rbd_device *rbd_dev = q->queuedata;
A
Alex Elder 已提交
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 2943 2944 2945 2946 2947 2948 2949 2950 2951
	sector_t sector_offset;
	sector_t sectors_per_obj;
	sector_t obj_sector_offset;
	int ret;

	/*
	 * Find how far into its rbd object the partition-relative
	 * bio start sector is to offset relative to the enclosing
	 * device.
	 */
	sector_offset = get_start_sect(bmd->bi_bdev) + bmd->bi_sector;
	sectors_per_obj = 1 << (rbd_dev->header.obj_order - SECTOR_SHIFT);
	obj_sector_offset = sector_offset & (sectors_per_obj - 1);

	/*
	 * Compute the number of bytes from that offset to the end
	 * of the object.  Account for what's already used by the bio.
	 */
	ret = (int) (sectors_per_obj - obj_sector_offset) << SECTOR_SHIFT;
	if (ret > bmd->bi_size)
		ret -= bmd->bi_size;
	else
		ret = 0;

	/*
	 * Don't send back more than was asked for.  And if the bio
	 * was empty, let the whole thing through because:  "Note
	 * that a block device *must* allow a single page to be
	 * added to an empty bio."
	 */
	rbd_assert(bvec->bv_len <= PAGE_SIZE);
	if (ret > (int) bvec->bv_len || !bmd->bi_size)
		ret = (int) bvec->bv_len;

	return ret;
2952 2953 2954 2955 2956 2957 2958 2959 2960
}

static void rbd_free_disk(struct rbd_device *rbd_dev)
{
	struct gendisk *disk = rbd_dev->disk;

	if (!disk)
		return;

2961 2962
	rbd_dev->disk = NULL;
	if (disk->flags & GENHD_FL_UP) {
2963
		del_gendisk(disk);
2964 2965 2966
		if (disk->queue)
			blk_cleanup_queue(disk->queue);
	}
2967 2968 2969
	put_disk(disk);
}

2970 2971
static int rbd_obj_read_sync(struct rbd_device *rbd_dev,
				const char *object_name,
2972
				u64 offset, u64 length, void *buf)
2973 2974

{
2975
	struct ceph_osd_client *osdc = &rbd_dev->rbd_client->client->osdc;
2976 2977 2978
	struct rbd_obj_request *obj_request;
	struct page **pages = NULL;
	u32 page_count;
2979
	size_t size;
2980 2981 2982 2983 2984 2985 2986 2987 2988
	int ret;

	page_count = (u32) calc_pages_for(offset, length);
	pages = ceph_alloc_page_vector(page_count, GFP_KERNEL);
	if (IS_ERR(pages))
		ret = PTR_ERR(pages);

	ret = -ENOMEM;
	obj_request = rbd_obj_request_create(object_name, offset, length,
2989
							OBJ_REQUEST_PAGES);
2990 2991 2992 2993 2994 2995
	if (!obj_request)
		goto out;

	obj_request->pages = pages;
	obj_request->page_count = page_count;

A
Alex Elder 已提交
2996
	obj_request->osd_req = rbd_osd_req_create(rbd_dev, false, obj_request);
2997 2998 2999
	if (!obj_request->osd_req)
		goto out;

3000 3001
	osd_req_op_extent_init(obj_request->osd_req, 0, CEPH_OSD_OP_READ,
					offset, length, 0, 0);
3002
	osd_req_op_extent_osd_data_pages(obj_request->osd_req, 0,
3003
					obj_request->pages,
3004 3005 3006
					obj_request->length,
					obj_request->offset & ~PAGE_MASK,
					false, false);
3007
	rbd_osd_req_format_read(obj_request);
A
Alex Elder 已提交
3008

3009 3010 3011 3012 3013 3014 3015 3016 3017 3018
	ret = rbd_obj_request_submit(osdc, obj_request);
	if (ret)
		goto out;
	ret = rbd_obj_request_wait(obj_request);
	if (ret)
		goto out;

	ret = obj_request->result;
	if (ret < 0)
		goto out;
3019 3020 3021

	rbd_assert(obj_request->xferred <= (u64) SIZE_MAX);
	size = (size_t) obj_request->xferred;
3022
	ceph_copy_from_page_vector(pages, buf, 0, size);
3023 3024
	rbd_assert(size <= (size_t)INT_MAX);
	ret = (int)size;
3025 3026 3027 3028 3029 3030 3031 3032 3033
out:
	if (obj_request)
		rbd_obj_request_put(obj_request);
	else
		ceph_release_page_vector(pages, page_count);

	return ret;
}

3034
/*
3035 3036 3037 3038 3039 3040 3041 3042
 * Read the complete header for the given rbd device.
 *
 * Returns a pointer to a dynamically-allocated buffer containing
 * the complete and validated header.  Caller can pass the address
 * of a variable that will be filled in with the version of the
 * header object at the time it was read.
 *
 * Returns a pointer-coded errno if a failure occurs.
3043
 */
3044
static struct rbd_image_header_ondisk *
3045
rbd_dev_v1_header_read(struct rbd_device *rbd_dev)
3046
{
3047
	struct rbd_image_header_ondisk *ondisk = NULL;
3048
	u32 snap_count = 0;
3049 3050 3051
	u64 names_size = 0;
	u32 want_count;
	int ret;
3052

A
Alex Elder 已提交
3053
	/*
3054 3055 3056 3057 3058
	 * The complete header will include an array of its 64-bit
	 * snapshot ids, followed by the names of those snapshots as
	 * a contiguous block of NUL-terminated strings.  Note that
	 * the number of snapshots could change by the time we read
	 * it in, in which case we re-read it.
A
Alex Elder 已提交
3059
	 */
3060 3061 3062 3063 3064 3065 3066 3067 3068 3069 3070 3071
	do {
		size_t size;

		kfree(ondisk);

		size = sizeof (*ondisk);
		size += snap_count * sizeof (struct rbd_image_snap_ondisk);
		size += names_size;
		ondisk = kmalloc(size, GFP_KERNEL);
		if (!ondisk)
			return ERR_PTR(-ENOMEM);

3072
		ret = rbd_obj_read_sync(rbd_dev, rbd_dev->header_name,
3073
				       0, size, ondisk);
3074 3075
		if (ret < 0)
			goto out_err;
A
Alex Elder 已提交
3076
		if ((size_t)ret < size) {
3077
			ret = -ENXIO;
A
Alex Elder 已提交
3078 3079
			rbd_warn(rbd_dev, "short header read (want %zd got %d)",
				size, ret);
3080 3081 3082 3083
			goto out_err;
		}
		if (!rbd_dev_ondisk_valid(ondisk)) {
			ret = -ENXIO;
A
Alex Elder 已提交
3084
			rbd_warn(rbd_dev, "invalid header");
3085
			goto out_err;
3086
		}
3087

3088 3089 3090 3091
		names_size = le64_to_cpu(ondisk->snap_names_len);
		want_count = snap_count;
		snap_count = le32_to_cpu(ondisk->snap_count);
	} while (snap_count != want_count);
A
Alex Elder 已提交
3092

3093
	return ondisk;
A
Alex Elder 已提交
3094

3095 3096 3097 3098 3099 3100 3101 3102 3103 3104 3105 3106 3107 3108
out_err:
	kfree(ondisk);

	return ERR_PTR(ret);
}

/*
 * reload the ondisk the header
 */
static int rbd_read_header(struct rbd_device *rbd_dev,
			   struct rbd_image_header *header)
{
	struct rbd_image_header_ondisk *ondisk;
	int ret;
3109

3110
	ondisk = rbd_dev_v1_header_read(rbd_dev);
3111 3112 3113 3114 3115 3116
	if (IS_ERR(ondisk))
		return PTR_ERR(ondisk);
	ret = rbd_header_from_disk(header, ondisk);
	kfree(ondisk);

	return ret;
3117 3118 3119 3120 3121
}

/*
 * only read the first part of the ondisk header, without the snaps info
 */
A
Alex Elder 已提交
3122
static int rbd_dev_v1_refresh(struct rbd_device *rbd_dev)
3123 3124 3125 3126
{
	int ret;
	struct rbd_image_header h;

3127
	memset(&h, 0, sizeof (h));
3128 3129 3130 3131
	ret = rbd_read_header(rbd_dev, &h);
	if (ret < 0)
		return ret;

3132 3133
	down_write(&rbd_dev->header_rwsem);

A
Alex Elder 已提交
3134 3135
	/* Update image size, and check for resize of mapped image */
	rbd_dev->header.image_size = h.image_size;
A
Alex Elder 已提交
3136 3137 3138
	if (rbd_dev->spec->snap_id == CEPH_NOSNAP)
		if (rbd_dev->mapping.size != rbd_dev->header.image_size)
			rbd_dev->mapping.size = rbd_dev->header.image_size;
3139

3140
	/* rbd_dev->header.object_prefix shouldn't change */
3141
	kfree(rbd_dev->header.snap_sizes);
3142
	kfree(rbd_dev->header.snap_names);
3143
	/* osd requests may still refer to snapc */
3144
	ceph_put_snap_context(rbd_dev->header.snapc);
3145

3146
	rbd_dev->header.image_size = h.image_size;
3147 3148 3149
	rbd_dev->header.snapc = h.snapc;
	rbd_dev->header.snap_names = h.snap_names;
	rbd_dev->header.snap_sizes = h.snap_sizes;
3150
	/* Free the extra copy of the object prefix */
A
Alex Elder 已提交
3151 3152
	if (strcmp(rbd_dev->header.object_prefix, h.object_prefix))
		rbd_warn(rbd_dev, "object prefix changed (ignoring)");
3153 3154
	kfree(h.object_prefix);

3155
	up_write(&rbd_dev->header_rwsem);
3156

3157
	return ret;
3158 3159
}

3160 3161 3162 3163 3164 3165 3166 3167 3168 3169 3170 3171 3172 3173 3174 3175 3176 3177 3178
/*
 * Clear the rbd device's EXISTS flag if the snapshot it's mapped to
 * has disappeared from the (just updated) snapshot context.
 */
static void rbd_exists_validate(struct rbd_device *rbd_dev)
{
	u64 snap_id;

	if (!test_bit(RBD_DEV_FLAG_EXISTS, &rbd_dev->flags))
		return;

	snap_id = rbd_dev->spec->snap_id;
	if (snap_id == CEPH_NOSNAP)
		return;

	if (rbd_dev_snap_index(rbd_dev, snap_id) == BAD_SNAP_INDEX)
		clear_bit(RBD_DEV_FLAG_EXISTS, &rbd_dev->flags);
}

A
Alex Elder 已提交
3179
static int rbd_dev_refresh(struct rbd_device *rbd_dev)
A
Alex Elder 已提交
3180
{
3181
	u64 mapping_size;
A
Alex Elder 已提交
3182 3183
	int ret;

A
Alex Elder 已提交
3184
	rbd_assert(rbd_image_format_valid(rbd_dev->image_format));
3185
	mapping_size = rbd_dev->mapping.size;
A
Alex Elder 已提交
3186
	mutex_lock_nested(&ctl_mutex, SINGLE_DEPTH_NESTING);
A
Alex Elder 已提交
3187
	if (rbd_dev->image_format == 1)
A
Alex Elder 已提交
3188
		ret = rbd_dev_v1_refresh(rbd_dev);
A
Alex Elder 已提交
3189
	else
A
Alex Elder 已提交
3190
		ret = rbd_dev_v2_refresh(rbd_dev);
3191 3192 3193 3194

	/* If it's a mapped snapshot, validate its EXISTS flag */

	rbd_exists_validate(rbd_dev);
A
Alex Elder 已提交
3195
	mutex_unlock(&ctl_mutex);
3196 3197 3198 3199 3200 3201
	if (mapping_size != rbd_dev->mapping.size) {
		sector_t size;

		size = (sector_t)rbd_dev->mapping.size / SECTOR_SIZE;
		dout("setting size to %llu sectors", (unsigned long long)size);
		set_capacity(rbd_dev->disk, size);
A
Alex Elder 已提交
3202
		revalidate_disk(rbd_dev->disk);
3203
	}
A
Alex Elder 已提交
3204 3205 3206 3207

	return ret;
}

3208 3209 3210 3211
static int rbd_init_disk(struct rbd_device *rbd_dev)
{
	struct gendisk *disk;
	struct request_queue *q;
A
Alex Elder 已提交
3212
	u64 segment_size;
3213 3214 3215 3216

	/* create gendisk info */
	disk = alloc_disk(RBD_MINORS_PER_MAJOR);
	if (!disk)
A
Alex Elder 已提交
3217
		return -ENOMEM;
3218

A
Alex Elder 已提交
3219
	snprintf(disk->disk_name, sizeof(disk->disk_name), RBD_DRV_NAME "%d",
A
Alex Elder 已提交
3220
		 rbd_dev->dev_id);
3221 3222 3223 3224 3225
	disk->major = rbd_dev->major;
	disk->first_minor = 0;
	disk->fops = &rbd_bd_ops;
	disk->private_data = rbd_dev;

A
Alex Elder 已提交
3226
	q = blk_init_queue(rbd_request_fn, &rbd_dev->lock);
3227 3228
	if (!q)
		goto out_disk;
3229

A
Alex Elder 已提交
3230 3231 3232
	/* We use the default size, but let's be explicit about it. */
	blk_queue_physical_block_size(q, SECTOR_SIZE);

3233
	/* set io sizes to object size */
A
Alex Elder 已提交
3234 3235 3236 3237 3238
	segment_size = rbd_obj_bytes(&rbd_dev->header);
	blk_queue_max_hw_sectors(q, segment_size / SECTOR_SIZE);
	blk_queue_max_segment_size(q, segment_size);
	blk_queue_io_min(q, segment_size);
	blk_queue_io_opt(q, segment_size);
3239

3240 3241 3242 3243 3244 3245 3246 3247 3248 3249
	blk_queue_merge_bvec(q, rbd_merge_bvec);
	disk->queue = q;

	q->queuedata = rbd_dev;

	rbd_dev->disk = disk;

	return 0;
out_disk:
	put_disk(disk);
A
Alex Elder 已提交
3250 3251

	return -ENOMEM;
3252 3253
}

3254 3255 3256 3257
/*
  sysfs
*/

A
Alex Elder 已提交
3258 3259 3260 3261 3262
static struct rbd_device *dev_to_rbd_dev(struct device *dev)
{
	return container_of(dev, struct rbd_device, dev);
}

3263 3264 3265
static ssize_t rbd_size_show(struct device *dev,
			     struct device_attribute *attr, char *buf)
{
A
Alex Elder 已提交
3266
	struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
3267

A
Alex Elder 已提交
3268 3269
	return sprintf(buf, "%llu\n",
		(unsigned long long)rbd_dev->mapping.size);
3270 3271
}

A
Alex Elder 已提交
3272 3273 3274 3275 3276 3277 3278 3279 3280 3281
/*
 * Note this shows the features for whatever's mapped, which is not
 * necessarily the base image.
 */
static ssize_t rbd_features_show(struct device *dev,
			     struct device_attribute *attr, char *buf)
{
	struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);

	return sprintf(buf, "0x%016llx\n",
A
Alex Elder 已提交
3282
			(unsigned long long)rbd_dev->mapping.features);
A
Alex Elder 已提交
3283 3284
}

3285 3286 3287
static ssize_t rbd_major_show(struct device *dev,
			      struct device_attribute *attr, char *buf)
{
A
Alex Elder 已提交
3288
	struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
3289

A
Alex Elder 已提交
3290 3291 3292 3293 3294
	if (rbd_dev->major)
		return sprintf(buf, "%d\n", rbd_dev->major);

	return sprintf(buf, "(none)\n");

3295 3296 3297 3298
}

static ssize_t rbd_client_id_show(struct device *dev,
				  struct device_attribute *attr, char *buf)
3299
{
A
Alex Elder 已提交
3300
	struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
3301

3302 3303
	return sprintf(buf, "client%lld\n",
			ceph_client_id(rbd_dev->rbd_client->client));
3304 3305
}

3306 3307
static ssize_t rbd_pool_show(struct device *dev,
			     struct device_attribute *attr, char *buf)
3308
{
A
Alex Elder 已提交
3309
	struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
3310

3311
	return sprintf(buf, "%s\n", rbd_dev->spec->pool_name);
3312 3313
}

3314 3315 3316 3317 3318
static ssize_t rbd_pool_id_show(struct device *dev,
			     struct device_attribute *attr, char *buf)
{
	struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);

3319
	return sprintf(buf, "%llu\n",
A
Alex Elder 已提交
3320
			(unsigned long long) rbd_dev->spec->pool_id);
3321 3322
}

3323 3324 3325
static ssize_t rbd_name_show(struct device *dev,
			     struct device_attribute *attr, char *buf)
{
A
Alex Elder 已提交
3326
	struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
3327

A
Alex Elder 已提交
3328 3329 3330 3331
	if (rbd_dev->spec->image_name)
		return sprintf(buf, "%s\n", rbd_dev->spec->image_name);

	return sprintf(buf, "(unknown)\n");
3332 3333
}

A
Alex Elder 已提交
3334 3335 3336 3337 3338
static ssize_t rbd_image_id_show(struct device *dev,
			     struct device_attribute *attr, char *buf)
{
	struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);

3339
	return sprintf(buf, "%s\n", rbd_dev->spec->image_id);
A
Alex Elder 已提交
3340 3341
}

A
Alex Elder 已提交
3342 3343 3344 3345
/*
 * Shows the name of the currently-mapped snapshot (or
 * RBD_SNAP_HEAD_NAME for the base image).
 */
3346 3347 3348 3349
static ssize_t rbd_snap_show(struct device *dev,
			     struct device_attribute *attr,
			     char *buf)
{
A
Alex Elder 已提交
3350
	struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
3351

3352
	return sprintf(buf, "%s\n", rbd_dev->spec->snap_name);
3353 3354
}

3355 3356 3357 3358 3359 3360 3361 3362 3363 3364 3365 3366 3367 3368 3369 3370 3371 3372 3373 3374 3375 3376 3377 3378 3379 3380 3381 3382 3383 3384 3385 3386 3387 3388 3389 3390 3391 3392 3393 3394 3395 3396 3397
/*
 * For an rbd v2 image, shows the pool id, image id, and snapshot id
 * for the parent image.  If there is no parent, simply shows
 * "(no parent image)".
 */
static ssize_t rbd_parent_show(struct device *dev,
			     struct device_attribute *attr,
			     char *buf)
{
	struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
	struct rbd_spec *spec = rbd_dev->parent_spec;
	int count;
	char *bufp = buf;

	if (!spec)
		return sprintf(buf, "(no parent image)\n");

	count = sprintf(bufp, "pool_id %llu\npool_name %s\n",
			(unsigned long long) spec->pool_id, spec->pool_name);
	if (count < 0)
		return count;
	bufp += count;

	count = sprintf(bufp, "image_id %s\nimage_name %s\n", spec->image_id,
			spec->image_name ? spec->image_name : "(unknown)");
	if (count < 0)
		return count;
	bufp += count;

	count = sprintf(bufp, "snap_id %llu\nsnap_name %s\n",
			(unsigned long long) spec->snap_id, spec->snap_name);
	if (count < 0)
		return count;
	bufp += count;

	count = sprintf(bufp, "overlap %llu\n", rbd_dev->parent_overlap);
	if (count < 0)
		return count;
	bufp += count;

	return (ssize_t) (bufp - buf);
}

3398 3399 3400 3401 3402
static ssize_t rbd_image_refresh(struct device *dev,
				 struct device_attribute *attr,
				 const char *buf,
				 size_t size)
{
A
Alex Elder 已提交
3403
	struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
3404
	int ret;
3405

A
Alex Elder 已提交
3406
	ret = rbd_dev_refresh(rbd_dev);
3407 3408
	if (ret)
		rbd_warn(rbd_dev, ": manual header refresh error (%d)\n", ret);
3409 3410

	return ret < 0 ? ret : size;
3411
}
3412

3413
static DEVICE_ATTR(size, S_IRUGO, rbd_size_show, NULL);
A
Alex Elder 已提交
3414
static DEVICE_ATTR(features, S_IRUGO, rbd_features_show, NULL);
3415 3416 3417
static DEVICE_ATTR(major, S_IRUGO, rbd_major_show, NULL);
static DEVICE_ATTR(client_id, S_IRUGO, rbd_client_id_show, NULL);
static DEVICE_ATTR(pool, S_IRUGO, rbd_pool_show, NULL);
3418
static DEVICE_ATTR(pool_id, S_IRUGO, rbd_pool_id_show, NULL);
3419
static DEVICE_ATTR(name, S_IRUGO, rbd_name_show, NULL);
A
Alex Elder 已提交
3420
static DEVICE_ATTR(image_id, S_IRUGO, rbd_image_id_show, NULL);
3421 3422
static DEVICE_ATTR(refresh, S_IWUSR, NULL, rbd_image_refresh);
static DEVICE_ATTR(current_snap, S_IRUGO, rbd_snap_show, NULL);
3423
static DEVICE_ATTR(parent, S_IRUGO, rbd_parent_show, NULL);
3424 3425 3426

static struct attribute *rbd_attrs[] = {
	&dev_attr_size.attr,
A
Alex Elder 已提交
3427
	&dev_attr_features.attr,
3428 3429 3430
	&dev_attr_major.attr,
	&dev_attr_client_id.attr,
	&dev_attr_pool.attr,
3431
	&dev_attr_pool_id.attr,
3432
	&dev_attr_name.attr,
A
Alex Elder 已提交
3433
	&dev_attr_image_id.attr,
3434
	&dev_attr_current_snap.attr,
3435
	&dev_attr_parent.attr,
3436 3437 3438 3439 3440 3441 3442 3443 3444 3445 3446 3447 3448 3449 3450 3451 3452 3453 3454 3455 3456 3457 3458
	&dev_attr_refresh.attr,
	NULL
};

static struct attribute_group rbd_attr_group = {
	.attrs = rbd_attrs,
};

static const struct attribute_group *rbd_attr_groups[] = {
	&rbd_attr_group,
	NULL
};

static void rbd_sysfs_dev_release(struct device *dev)
{
}

static struct device_type rbd_device_type = {
	.name		= "rbd",
	.groups		= rbd_attr_groups,
	.release	= rbd_sysfs_dev_release,
};

3459 3460 3461 3462 3463 3464 3465 3466 3467 3468 3469 3470 3471 3472 3473 3474 3475 3476 3477 3478 3479 3480 3481 3482 3483 3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494 3495
static struct rbd_spec *rbd_spec_get(struct rbd_spec *spec)
{
	kref_get(&spec->kref);

	return spec;
}

static void rbd_spec_free(struct kref *kref);
static void rbd_spec_put(struct rbd_spec *spec)
{
	if (spec)
		kref_put(&spec->kref, rbd_spec_free);
}

static struct rbd_spec *rbd_spec_alloc(void)
{
	struct rbd_spec *spec;

	spec = kzalloc(sizeof (*spec), GFP_KERNEL);
	if (!spec)
		return NULL;
	kref_init(&spec->kref);

	return spec;
}

static void rbd_spec_free(struct kref *kref)
{
	struct rbd_spec *spec = container_of(kref, struct rbd_spec, kref);

	kfree(spec->pool_name);
	kfree(spec->image_id);
	kfree(spec->image_name);
	kfree(spec->snap_name);
	kfree(spec);
}

A
Alex Elder 已提交
3496
static struct rbd_device *rbd_dev_create(struct rbd_client *rbdc,
3497 3498 3499 3500 3501 3502 3503 3504 3505
				struct rbd_spec *spec)
{
	struct rbd_device *rbd_dev;

	rbd_dev = kzalloc(sizeof (*rbd_dev), GFP_KERNEL);
	if (!rbd_dev)
		return NULL;

	spin_lock_init(&rbd_dev->lock);
3506
	rbd_dev->flags = 0;
3507 3508 3509 3510 3511 3512
	INIT_LIST_HEAD(&rbd_dev->node);
	init_rwsem(&rbd_dev->header_rwsem);

	rbd_dev->spec = spec;
	rbd_dev->rbd_client = rbdc;

3513 3514 3515 3516 3517 3518 3519
	/* Initialize the layout used for all rbd requests */

	rbd_dev->layout.fl_stripe_unit = cpu_to_le32(1 << RBD_MAX_OBJ_ORDER);
	rbd_dev->layout.fl_stripe_count = cpu_to_le32(1);
	rbd_dev->layout.fl_object_size = cpu_to_le32(1 << RBD_MAX_OBJ_ORDER);
	rbd_dev->layout.fl_pg_pool = cpu_to_le32((u32) spec->pool_id);

3520 3521 3522 3523 3524 3525 3526 3527 3528 3529
	return rbd_dev;
}

static void rbd_dev_destroy(struct rbd_device *rbd_dev)
{
	rbd_put_client(rbd_dev->rbd_client);
	rbd_spec_put(rbd_dev->spec);
	kfree(rbd_dev);
}

3530 3531 3532 3533 3534 3535 3536 3537 3538 3539 3540 3541 3542 3543 3544
/*
 * Get the size and object order for an image snapshot, or if
 * snap_id is CEPH_NOSNAP, gets this information for the base
 * image.
 */
static int _rbd_dev_v2_snap_size(struct rbd_device *rbd_dev, u64 snap_id,
				u8 *order, u64 *snap_size)
{
	__le64 snapid = cpu_to_le64(snap_id);
	int ret;
	struct {
		u8 order;
		__le64 size;
	} __attribute__ ((packed)) size_buf = { 0 };

3545
	ret = rbd_obj_method_sync(rbd_dev, rbd_dev->header_name,
3546
				"rbd", "get_size",
3547
				&snapid, sizeof (snapid),
3548
				&size_buf, sizeof (size_buf));
3549
	dout("%s: rbd_obj_method_sync returned %d\n", __func__, ret);
3550 3551
	if (ret < 0)
		return ret;
3552 3553
	if (ret < sizeof (size_buf))
		return -ERANGE;
3554

3555 3556
	if (order)
		*order = size_buf.order;
3557 3558 3559
	*snap_size = le64_to_cpu(size_buf.size);

	dout("  snap_id 0x%016llx order = %u, snap_size = %llu\n",
3560 3561
		(unsigned long long)snap_id, (unsigned int)*order,
		(unsigned long long)*snap_size);
3562 3563 3564 3565 3566 3567 3568 3569 3570 3571 3572

	return 0;
}

static int rbd_dev_v2_image_size(struct rbd_device *rbd_dev)
{
	return _rbd_dev_v2_snap_size(rbd_dev, CEPH_NOSNAP,
					&rbd_dev->header.obj_order,
					&rbd_dev->header.image_size);
}

3573 3574 3575 3576 3577 3578 3579 3580 3581 3582
static int rbd_dev_v2_object_prefix(struct rbd_device *rbd_dev)
{
	void *reply_buf;
	int ret;
	void *p;

	reply_buf = kzalloc(RBD_OBJ_PREFIX_LEN_MAX, GFP_KERNEL);
	if (!reply_buf)
		return -ENOMEM;

3583
	ret = rbd_obj_method_sync(rbd_dev, rbd_dev->header_name,
3584
				"rbd", "get_object_prefix", NULL, 0,
3585
				reply_buf, RBD_OBJ_PREFIX_LEN_MAX);
3586
	dout("%s: rbd_obj_method_sync returned %d\n", __func__, ret);
3587 3588 3589 3590 3591
	if (ret < 0)
		goto out;

	p = reply_buf;
	rbd_dev->header.object_prefix = ceph_extract_encoded_string(&p,
3592 3593
						p + ret, NULL, GFP_NOIO);
	ret = 0;
3594 3595 3596 3597 3598 3599 3600 3601 3602 3603 3604 3605 3606

	if (IS_ERR(rbd_dev->header.object_prefix)) {
		ret = PTR_ERR(rbd_dev->header.object_prefix);
		rbd_dev->header.object_prefix = NULL;
	} else {
		dout("  object_prefix = %s\n", rbd_dev->header.object_prefix);
	}
out:
	kfree(reply_buf);

	return ret;
}

3607 3608 3609 3610 3611 3612 3613
static int _rbd_dev_v2_snap_features(struct rbd_device *rbd_dev, u64 snap_id,
		u64 *snap_features)
{
	__le64 snapid = cpu_to_le64(snap_id);
	struct {
		__le64 features;
		__le64 incompat;
3614
	} __attribute__ ((packed)) features_buf = { 0 };
A
Alex Elder 已提交
3615
	u64 incompat;
3616 3617
	int ret;

3618
	ret = rbd_obj_method_sync(rbd_dev, rbd_dev->header_name,
3619
				"rbd", "get_features",
3620
				&snapid, sizeof (snapid),
3621
				&features_buf, sizeof (features_buf));
3622
	dout("%s: rbd_obj_method_sync returned %d\n", __func__, ret);
3623 3624
	if (ret < 0)
		return ret;
3625 3626
	if (ret < sizeof (features_buf))
		return -ERANGE;
A
Alex Elder 已提交
3627 3628

	incompat = le64_to_cpu(features_buf.incompat);
A
Alex Elder 已提交
3629
	if (incompat & ~RBD_FEATURES_SUPPORTED)
A
Alex Elder 已提交
3630
		return -ENXIO;
A
Alex Elder 已提交
3631

3632 3633 3634
	*snap_features = le64_to_cpu(features_buf.features);

	dout("  snap_id 0x%016llx features = 0x%016llx incompat = 0x%016llx\n",
3635 3636 3637
		(unsigned long long)snap_id,
		(unsigned long long)*snap_features,
		(unsigned long long)le64_to_cpu(features_buf.incompat));
3638 3639 3640 3641 3642 3643 3644 3645 3646 3647

	return 0;
}

static int rbd_dev_v2_features(struct rbd_device *rbd_dev)
{
	return _rbd_dev_v2_snap_features(rbd_dev, CEPH_NOSNAP,
						&rbd_dev->header.features);
}

3648 3649 3650 3651 3652 3653 3654 3655 3656 3657 3658 3659 3660 3661 3662 3663 3664 3665 3666 3667 3668 3669 3670 3671 3672 3673 3674
static int rbd_dev_v2_parent_info(struct rbd_device *rbd_dev)
{
	struct rbd_spec *parent_spec;
	size_t size;
	void *reply_buf = NULL;
	__le64 snapid;
	void *p;
	void *end;
	char *image_id;
	u64 overlap;
	int ret;

	parent_spec = rbd_spec_alloc();
	if (!parent_spec)
		return -ENOMEM;

	size = sizeof (__le64) +				/* pool_id */
		sizeof (__le32) + RBD_IMAGE_ID_LEN_MAX +	/* image_id */
		sizeof (__le64) +				/* snap_id */
		sizeof (__le64);				/* overlap */
	reply_buf = kmalloc(size, GFP_KERNEL);
	if (!reply_buf) {
		ret = -ENOMEM;
		goto out_err;
	}

	snapid = cpu_to_le64(CEPH_NOSNAP);
3675
	ret = rbd_obj_method_sync(rbd_dev, rbd_dev->header_name,
3676
				"rbd", "get_parent",
3677
				&snapid, sizeof (snapid),
3678
				reply_buf, size);
3679
	dout("%s: rbd_obj_method_sync returned %d\n", __func__, ret);
3680 3681 3682 3683
	if (ret < 0)
		goto out_err;

	p = reply_buf;
3684 3685
	end = reply_buf + ret;
	ret = -ERANGE;
3686 3687 3688 3689
	ceph_decode_64_safe(&p, end, parent_spec->pool_id, out_err);
	if (parent_spec->pool_id == CEPH_NOPOOL)
		goto out;	/* No parent?  No problem. */

3690 3691 3692
	/* The ceph file layout needs to fit pool id in 32 bits */

	ret = -EIO;
A
Alex Elder 已提交
3693 3694 3695
	if (parent_spec->pool_id > (u64)U32_MAX) {
		rbd_warn(NULL, "parent pool id too large (%llu > %u)\n",
			(unsigned long long)parent_spec->pool_id, U32_MAX);
3696
		goto out_err;
A
Alex Elder 已提交
3697
	}
3698

A
Alex Elder 已提交
3699
	image_id = ceph_extract_encoded_string(&p, end, NULL, GFP_KERNEL);
3700 3701 3702 3703 3704 3705 3706 3707 3708 3709 3710 3711 3712 3713 3714 3715 3716 3717 3718 3719
	if (IS_ERR(image_id)) {
		ret = PTR_ERR(image_id);
		goto out_err;
	}
	parent_spec->image_id = image_id;
	ceph_decode_64_safe(&p, end, parent_spec->snap_id, out_err);
	ceph_decode_64_safe(&p, end, overlap, out_err);

	rbd_dev->parent_overlap = overlap;
	rbd_dev->parent_spec = parent_spec;
	parent_spec = NULL;	/* rbd_dev now owns this */
out:
	ret = 0;
out_err:
	kfree(reply_buf);
	rbd_spec_put(parent_spec);

	return ret;
}

3720 3721 3722 3723 3724 3725 3726 3727 3728 3729 3730 3731 3732 3733 3734
static int rbd_dev_v2_striping_info(struct rbd_device *rbd_dev)
{
	struct {
		__le64 stripe_unit;
		__le64 stripe_count;
	} __attribute__ ((packed)) striping_info_buf = { 0 };
	size_t size = sizeof (striping_info_buf);
	void *p;
	u64 obj_size;
	u64 stripe_unit;
	u64 stripe_count;
	int ret;

	ret = rbd_obj_method_sync(rbd_dev, rbd_dev->header_name,
				"rbd", "get_stripe_unit_count", NULL, 0,
3735
				(char *)&striping_info_buf, size);
3736 3737 3738 3739 3740 3741 3742 3743 3744 3745 3746 3747 3748 3749 3750 3751 3752 3753 3754 3755 3756 3757 3758 3759 3760 3761 3762 3763
	dout("%s: rbd_obj_method_sync returned %d\n", __func__, ret);
	if (ret < 0)
		return ret;
	if (ret < size)
		return -ERANGE;

	/*
	 * We don't actually support the "fancy striping" feature
	 * (STRIPINGV2) yet, but if the striping sizes are the
	 * defaults the behavior is the same as before.  So find
	 * out, and only fail if the image has non-default values.
	 */
	ret = -EINVAL;
	obj_size = (u64)1 << rbd_dev->header.obj_order;
	p = &striping_info_buf;
	stripe_unit = ceph_decode_64(&p);
	if (stripe_unit != obj_size) {
		rbd_warn(rbd_dev, "unsupported stripe unit "
				"(got %llu want %llu)",
				stripe_unit, obj_size);
		return -EINVAL;
	}
	stripe_count = ceph_decode_64(&p);
	if (stripe_count != 1) {
		rbd_warn(rbd_dev, "unsupported stripe count "
				"(got %llu want 1)", stripe_count);
		return -EINVAL;
	}
3764 3765
	rbd_dev->header.stripe_unit = stripe_unit;
	rbd_dev->header.stripe_count = stripe_count;
3766 3767 3768 3769

	return 0;
}

3770 3771 3772 3773 3774 3775 3776 3777 3778 3779 3780 3781 3782 3783
static char *rbd_dev_image_name(struct rbd_device *rbd_dev)
{
	size_t image_id_size;
	char *image_id;
	void *p;
	void *end;
	size_t size;
	void *reply_buf = NULL;
	size_t len = 0;
	char *image_name = NULL;
	int ret;

	rbd_assert(!rbd_dev->spec->image_name);

A
Alex Elder 已提交
3784 3785
	len = strlen(rbd_dev->spec->image_id);
	image_id_size = sizeof (__le32) + len;
3786 3787 3788 3789 3790
	image_id = kmalloc(image_id_size, GFP_KERNEL);
	if (!image_id)
		return NULL;

	p = image_id;
3791
	end = image_id + image_id_size;
3792
	ceph_encode_string(&p, end, rbd_dev->spec->image_id, (u32)len);
3793 3794 3795 3796 3797 3798

	size = sizeof (__le32) + RBD_IMAGE_NAME_LEN_MAX;
	reply_buf = kmalloc(size, GFP_KERNEL);
	if (!reply_buf)
		goto out;

3799
	ret = rbd_obj_method_sync(rbd_dev, RBD_DIRECTORY,
3800 3801
				"rbd", "dir_get_name",
				image_id, image_id_size,
3802
				reply_buf, size);
3803 3804 3805
	if (ret < 0)
		goto out;
	p = reply_buf;
3806 3807
	end = reply_buf + ret;

3808 3809 3810 3811 3812 3813 3814 3815 3816 3817 3818 3819
	image_name = ceph_extract_encoded_string(&p, end, &len, GFP_KERNEL);
	if (IS_ERR(image_name))
		image_name = NULL;
	else
		dout("%s: name is %s len is %zd\n", __func__, image_name, len);
out:
	kfree(reply_buf);
	kfree(image_id);

	return image_name;
}

3820 3821 3822 3823 3824 3825 3826 3827 3828 3829 3830 3831 3832 3833 3834 3835 3836 3837 3838 3839 3840 3841 3842 3843 3844 3845 3846 3847 3848 3849 3850 3851 3852 3853 3854 3855 3856 3857 3858 3859 3860 3861 3862 3863 3864 3865 3866 3867 3868 3869
static u64 rbd_v1_snap_id_by_name(struct rbd_device *rbd_dev, const char *name)
{
	struct ceph_snap_context *snapc = rbd_dev->header.snapc;
	const char *snap_name;
	u32 which = 0;

	/* Skip over names until we find the one we are looking for */

	snap_name = rbd_dev->header.snap_names;
	while (which < snapc->num_snaps) {
		if (!strcmp(name, snap_name))
			return snapc->snaps[which];
		snap_name += strlen(snap_name) + 1;
		which++;
	}
	return CEPH_NOSNAP;
}

static u64 rbd_v2_snap_id_by_name(struct rbd_device *rbd_dev, const char *name)
{
	struct ceph_snap_context *snapc = rbd_dev->header.snapc;
	u32 which;
	bool found = false;
	u64 snap_id;

	for (which = 0; !found && which < snapc->num_snaps; which++) {
		const char *snap_name;

		snap_id = snapc->snaps[which];
		snap_name = rbd_dev_v2_snap_name(rbd_dev, snap_id);
		if (IS_ERR(snap_name))
			break;
		found = !strcmp(name, snap_name);
		kfree(snap_name);
	}
	return found ? snap_id : CEPH_NOSNAP;
}

/*
 * Assumes name is never RBD_SNAP_HEAD_NAME; returns CEPH_NOSNAP if
 * no snapshot by that name is found, or if an error occurs.
 */
static u64 rbd_snap_id_by_name(struct rbd_device *rbd_dev, const char *name)
{
	if (rbd_dev->image_format == 1)
		return rbd_v1_snap_id_by_name(rbd_dev, name);

	return rbd_v2_snap_id_by_name(rbd_dev, name);
}

3870
/*
3871 3872 3873 3874 3875 3876
 * When an rbd image has a parent image, it is identified by the
 * pool, image, and snapshot ids (not names).  This function fills
 * in the names for those ids.  (It's OK if we can't figure out the
 * name for an image id, but the pool and snapshot ids should always
 * exist and have names.)  All names in an rbd spec are dynamically
 * allocated.
3877 3878 3879 3880
 *
 * When an image being mapped (not a parent) is probed, we have the
 * pool name and pool id, image name and image id, and the snapshot
 * name.  The only thing we're missing is the snapshot id.
3881
 */
3882
static int rbd_dev_spec_update(struct rbd_device *rbd_dev)
3883
{
3884 3885 3886 3887 3888
	struct ceph_osd_client *osdc = &rbd_dev->rbd_client->client->osdc;
	struct rbd_spec *spec = rbd_dev->spec;
	const char *pool_name;
	const char *image_name;
	const char *snap_name;
3889 3890
	int ret;

3891 3892 3893 3894
	/*
	 * An image being mapped will have the pool name (etc.), but
	 * we need to look up the snapshot id.
	 */
3895 3896
	if (spec->pool_name) {
		if (strcmp(spec->snap_name, RBD_SNAP_HEAD_NAME)) {
3897
			u64 snap_id;
3898

3899 3900
			snap_id = rbd_snap_id_by_name(rbd_dev, spec->snap_name);
			if (snap_id == CEPH_NOSNAP)
3901
				return -ENOENT;
3902
			spec->snap_id = snap_id;
3903
		} else {
3904
			spec->snap_id = CEPH_NOSNAP;
3905 3906 3907 3908
		}

		return 0;
	}
3909

3910
	/* Get the pool name; we have to make our own copy of this */
3911

3912 3913 3914
	pool_name = ceph_pg_pool_name_by_id(osdc->osdmap, spec->pool_id);
	if (!pool_name) {
		rbd_warn(rbd_dev, "no pool with id %llu", spec->pool_id);
3915 3916
		return -EIO;
	}
3917 3918
	pool_name = kstrdup(pool_name, GFP_KERNEL);
	if (!pool_name)
3919 3920 3921 3922
		return -ENOMEM;

	/* Fetch the image name; tolerate failure here */

3923 3924
	image_name = rbd_dev_image_name(rbd_dev);
	if (!image_name)
A
Alex Elder 已提交
3925
		rbd_warn(rbd_dev, "unable to get image name");
3926

3927
	/* Look up the snapshot name, and make a copy */
3928

3929 3930 3931
	snap_name = rbd_snap_name(rbd_dev, spec->snap_id);
	if (!snap_name) {
		ret = -ENOMEM;
3932
		goto out_err;
3933 3934 3935 3936 3937
	}

	spec->pool_name = pool_name;
	spec->image_name = image_name;
	spec->snap_name = snap_name;
3938 3939 3940

	return 0;
out_err:
3941 3942
	kfree(image_name);
	kfree(pool_name);
3943 3944 3945 3946

	return ret;
}

A
Alex Elder 已提交
3947
static int rbd_dev_v2_snap_context(struct rbd_device *rbd_dev)
3948 3949 3950 3951 3952 3953 3954 3955 3956 3957 3958 3959 3960 3961 3962 3963 3964 3965 3966 3967 3968 3969 3970
{
	size_t size;
	int ret;
	void *reply_buf;
	void *p;
	void *end;
	u64 seq;
	u32 snap_count;
	struct ceph_snap_context *snapc;
	u32 i;

	/*
	 * We'll need room for the seq value (maximum snapshot id),
	 * snapshot count, and array of that many snapshot ids.
	 * For now we have a fixed upper limit on the number we're
	 * prepared to receive.
	 */
	size = sizeof (__le64) + sizeof (__le32) +
			RBD_MAX_SNAP_COUNT * sizeof (__le64);
	reply_buf = kzalloc(size, GFP_KERNEL);
	if (!reply_buf)
		return -ENOMEM;

3971
	ret = rbd_obj_method_sync(rbd_dev, rbd_dev->header_name,
3972
				"rbd", "get_snapcontext", NULL, 0,
3973
				reply_buf, size);
3974
	dout("%s: rbd_obj_method_sync returned %d\n", __func__, ret);
3975 3976 3977 3978
	if (ret < 0)
		goto out;

	p = reply_buf;
3979 3980
	end = reply_buf + ret;
	ret = -ERANGE;
3981 3982 3983 3984 3985 3986 3987 3988 3989 3990 3991 3992 3993 3994 3995 3996
	ceph_decode_64_safe(&p, end, seq, out);
	ceph_decode_32_safe(&p, end, snap_count, out);

	/*
	 * Make sure the reported number of snapshot ids wouldn't go
	 * beyond the end of our buffer.  But before checking that,
	 * make sure the computed size of the snapshot context we
	 * allocate is representable in a size_t.
	 */
	if (snap_count > (SIZE_MAX - sizeof (struct ceph_snap_context))
				 / sizeof (u64)) {
		ret = -EINVAL;
		goto out;
	}
	if (!ceph_has_room(&p, end, snap_count * sizeof (__le64)))
		goto out;
3997
	ret = 0;
3998

3999
	snapc = ceph_create_snap_context(snap_count, GFP_KERNEL);
4000 4001 4002 4003 4004 4005 4006 4007
	if (!snapc) {
		ret = -ENOMEM;
		goto out;
	}
	snapc->seq = seq;
	for (i = 0; i < snap_count; i++)
		snapc->snaps[i] = ceph_decode_64(&p);

4008
	ceph_put_snap_context(rbd_dev->header.snapc);
4009 4010 4011
	rbd_dev->header.snapc = snapc;

	dout("  snap context seq = %llu, snap_count = %u\n",
4012
		(unsigned long long)seq, (unsigned int)snap_count);
4013 4014 4015
out:
	kfree(reply_buf);

4016
	return ret;
4017 4018
}

4019 4020
static const char *rbd_dev_v2_snap_name(struct rbd_device *rbd_dev,
					u64 snap_id)
A
Alex Elder 已提交
4021 4022 4023
{
	size_t size;
	void *reply_buf;
4024
	__le64 snapid;
A
Alex Elder 已提交
4025 4026 4027 4028 4029 4030 4031 4032 4033 4034
	int ret;
	void *p;
	void *end;
	char *snap_name;

	size = sizeof (__le32) + RBD_MAX_SNAP_NAME_LEN;
	reply_buf = kmalloc(size, GFP_KERNEL);
	if (!reply_buf)
		return ERR_PTR(-ENOMEM);

4035
	snapid = cpu_to_le64(snap_id);
4036
	ret = rbd_obj_method_sync(rbd_dev, rbd_dev->header_name,
A
Alex Elder 已提交
4037
				"rbd", "get_snapshot_name",
4038
				&snapid, sizeof (snapid),
4039
				reply_buf, size);
4040
	dout("%s: rbd_obj_method_sync returned %d\n", __func__, ret);
4041 4042
	if (ret < 0) {
		snap_name = ERR_PTR(ret);
A
Alex Elder 已提交
4043
		goto out;
4044
	}
A
Alex Elder 已提交
4045 4046

	p = reply_buf;
4047
	end = reply_buf + ret;
A
Alex Elder 已提交
4048
	snap_name = ceph_extract_encoded_string(&p, end, NULL, GFP_KERNEL);
4049
	if (IS_ERR(snap_name))
A
Alex Elder 已提交
4050 4051
		goto out;

4052
	dout("  snap_id 0x%016llx snap_name = %s\n",
4053
		(unsigned long long)snap_id, snap_name);
A
Alex Elder 已提交
4054 4055 4056
out:
	kfree(reply_buf);

4057
	return snap_name;
A
Alex Elder 已提交
4058 4059
}

A
Alex Elder 已提交
4060
static int rbd_dev_v2_refresh(struct rbd_device *rbd_dev)
A
Alex Elder 已提交
4061 4062 4063 4064 4065 4066 4067 4068
{
	int ret;

	down_write(&rbd_dev->header_rwsem);

	ret = rbd_dev_v2_image_size(rbd_dev);
	if (ret)
		goto out;
A
Alex Elder 已提交
4069 4070 4071
	if (rbd_dev->spec->snap_id == CEPH_NOSNAP)
		if (rbd_dev->mapping.size != rbd_dev->header.image_size)
			rbd_dev->mapping.size = rbd_dev->header.image_size;
A
Alex Elder 已提交
4072

A
Alex Elder 已提交
4073
	ret = rbd_dev_v2_snap_context(rbd_dev);
A
Alex Elder 已提交
4074 4075 4076 4077 4078 4079 4080 4081 4082
	dout("rbd_dev_v2_snap_context returned %d\n", ret);
	if (ret)
		goto out;
out:
	up_write(&rbd_dev->header_rwsem);

	return ret;
}

4083 4084 4085
static int rbd_bus_add_dev(struct rbd_device *rbd_dev)
{
	struct device *dev;
4086
	int ret;
4087 4088 4089

	mutex_lock_nested(&ctl_mutex, SINGLE_DEPTH_NESTING);

4090
	dev = &rbd_dev->dev;
4091 4092 4093
	dev->bus = &rbd_bus_type;
	dev->type = &rbd_device_type;
	dev->parent = &rbd_root_dev;
4094
	dev->release = rbd_dev_device_release;
A
Alex Elder 已提交
4095
	dev_set_name(dev, "%d", rbd_dev->dev_id);
4096 4097 4098
	ret = device_register(dev);

	mutex_unlock(&ctl_mutex);
4099

4100
	return ret;
4101 4102
}

4103 4104 4105 4106 4107
static void rbd_bus_del_dev(struct rbd_device *rbd_dev)
{
	device_unregister(&rbd_dev->dev);
}

A
Alex Elder 已提交
4108
static atomic64_t rbd_dev_id_max = ATOMIC64_INIT(0);
4109 4110

/*
4111 4112
 * Get a unique rbd identifier for the given new rbd_dev, and add
 * the rbd_dev to the global list.  The minimum rbd id is 1.
4113
 */
A
Alex Elder 已提交
4114
static void rbd_dev_id_get(struct rbd_device *rbd_dev)
4115
{
A
Alex Elder 已提交
4116
	rbd_dev->dev_id = atomic64_inc_return(&rbd_dev_id_max);
4117 4118 4119 4120

	spin_lock(&rbd_dev_list_lock);
	list_add_tail(&rbd_dev->node, &rbd_dev_list);
	spin_unlock(&rbd_dev_list_lock);
A
Alex Elder 已提交
4121 4122
	dout("rbd_dev %p given dev id %llu\n", rbd_dev,
		(unsigned long long) rbd_dev->dev_id);
4123
}
4124

4125
/*
4126 4127
 * Remove an rbd_dev from the global list, and record that its
 * identifier is no longer in use.
4128
 */
A
Alex Elder 已提交
4129
static void rbd_dev_id_put(struct rbd_device *rbd_dev)
4130
{
4131
	struct list_head *tmp;
A
Alex Elder 已提交
4132
	int rbd_id = rbd_dev->dev_id;
4133 4134
	int max_id;

A
Alex Elder 已提交
4135
	rbd_assert(rbd_id > 0);
4136

A
Alex Elder 已提交
4137 4138
	dout("rbd_dev %p released dev id %llu\n", rbd_dev,
		(unsigned long long) rbd_dev->dev_id);
4139 4140
	spin_lock(&rbd_dev_list_lock);
	list_del_init(&rbd_dev->node);
4141 4142 4143 4144 4145

	/*
	 * If the id being "put" is not the current maximum, there
	 * is nothing special we need to do.
	 */
A
Alex Elder 已提交
4146
	if (rbd_id != atomic64_read(&rbd_dev_id_max)) {
4147 4148 4149 4150 4151 4152 4153 4154 4155 4156 4157 4158 4159 4160
		spin_unlock(&rbd_dev_list_lock);
		return;
	}

	/*
	 * We need to update the current maximum id.  Search the
	 * list to find out what it is.  We're more likely to find
	 * the maximum at the end, so search the list backward.
	 */
	max_id = 0;
	list_for_each_prev(tmp, &rbd_dev_list) {
		struct rbd_device *rbd_dev;

		rbd_dev = list_entry(tmp, struct rbd_device, node);
A
Alex Elder 已提交
4161 4162
		if (rbd_dev->dev_id > max_id)
			max_id = rbd_dev->dev_id;
4163
	}
4164
	spin_unlock(&rbd_dev_list_lock);
4165

4166
	/*
A
Alex Elder 已提交
4167
	 * The max id could have been updated by rbd_dev_id_get(), in
4168 4169 4170
	 * which case it now accurately reflects the new maximum.
	 * Be careful not to overwrite the maximum value in that
	 * case.
4171
	 */
A
Alex Elder 已提交
4172 4173
	atomic64_cmpxchg(&rbd_dev_id_max, rbd_id, max_id);
	dout("  max dev id has been reset\n");
4174 4175
}

4176 4177 4178
/*
 * Skips over white space at *buf, and updates *buf to point to the
 * first found non-space character (if any). Returns the length of
A
Alex Elder 已提交
4179 4180
 * the token (string of non-white space characters) found.  Note
 * that *buf must be terminated with '\0'.
4181 4182 4183 4184 4185 4186 4187 4188 4189 4190 4191 4192 4193 4194 4195 4196 4197
 */
static inline size_t next_token(const char **buf)
{
        /*
        * These are the characters that produce nonzero for
        * isspace() in the "C" and "POSIX" locales.
        */
        const char *spaces = " \f\n\r\t\v";

        *buf += strspn(*buf, spaces);	/* Find start of token */

	return strcspn(*buf, spaces);   /* Return token length */
}

/*
 * Finds the next token in *buf, and if the provided token buffer is
 * big enough, copies the found token into it.  The result, if
A
Alex Elder 已提交
4198 4199
 * copied, is guaranteed to be terminated with '\0'.  Note that *buf
 * must be terminated with '\0' on entry.
4200 4201 4202 4203 4204
 *
 * Returns the length of the token found (not including the '\0').
 * Return value will be 0 if no token is found, and it will be >=
 * token_size if the token would not fit.
 *
A
Alex Elder 已提交
4205
 * The *buf pointer will be updated to point beyond the end of the
4206 4207 4208 4209 4210 4211 4212 4213 4214 4215 4216 4217 4218 4219 4220 4221 4222 4223 4224
 * found token.  Note that this occurs even if the token buffer is
 * too small to hold it.
 */
static inline size_t copy_token(const char **buf,
				char *token,
				size_t token_size)
{
        size_t len;

	len = next_token(buf);
	if (len < token_size) {
		memcpy(token, *buf, len);
		*(token + len) = '\0';
	}
	*buf += len;

        return len;
}

A
Alex Elder 已提交
4225 4226 4227 4228 4229 4230 4231 4232 4233 4234 4235 4236 4237 4238 4239 4240 4241 4242 4243 4244 4245 4246
/*
 * Finds the next token in *buf, dynamically allocates a buffer big
 * enough to hold a copy of it, and copies the token into the new
 * buffer.  The copy is guaranteed to be terminated with '\0'.  Note
 * that a duplicate buffer is created even for a zero-length token.
 *
 * Returns a pointer to the newly-allocated duplicate, or a null
 * pointer if memory for the duplicate was not available.  If
 * the lenp argument is a non-null pointer, the length of the token
 * (not including the '\0') is returned in *lenp.
 *
 * If successful, the *buf pointer will be updated to point beyond
 * the end of the found token.
 *
 * Note: uses GFP_KERNEL for allocation.
 */
static inline char *dup_token(const char **buf, size_t *lenp)
{
	char *dup;
	size_t len;

	len = next_token(buf);
A
Alex Elder 已提交
4247
	dup = kmemdup(*buf, len + 1, GFP_KERNEL);
A
Alex Elder 已提交
4248 4249 4250 4251 4252 4253 4254 4255 4256 4257 4258
	if (!dup)
		return NULL;
	*(dup + len) = '\0';
	*buf += len;

	if (lenp)
		*lenp = len;

	return dup;
}

4259
/*
4260 4261 4262 4263
 * Parse the options provided for an "rbd add" (i.e., rbd image
 * mapping) request.  These arrive via a write to /sys/bus/rbd/add,
 * and the data written is passed here via a NUL-terminated buffer.
 * Returns 0 if successful or an error code otherwise.
A
Alex Elder 已提交
4264
 *
4265 4266 4267 4268 4269 4270 4271 4272 4273 4274 4275 4276 4277 4278 4279 4280 4281 4282 4283 4284 4285 4286 4287 4288 4289 4290 4291 4292 4293 4294 4295 4296 4297 4298
 * The information extracted from these options is recorded in
 * the other parameters which return dynamically-allocated
 * structures:
 *  ceph_opts
 *      The address of a pointer that will refer to a ceph options
 *      structure.  Caller must release the returned pointer using
 *      ceph_destroy_options() when it is no longer needed.
 *  rbd_opts
 *	Address of an rbd options pointer.  Fully initialized by
 *	this function; caller must release with kfree().
 *  spec
 *	Address of an rbd image specification pointer.  Fully
 *	initialized by this function based on parsed options.
 *	Caller must release with rbd_spec_put().
 *
 * The options passed take this form:
 *  <mon_addrs> <options> <pool_name> <image_name> [<snap_id>]
 * where:
 *  <mon_addrs>
 *      A comma-separated list of one or more monitor addresses.
 *      A monitor address is an ip address, optionally followed
 *      by a port number (separated by a colon).
 *        I.e.:  ip1[:port1][,ip2[:port2]...]
 *  <options>
 *      A comma-separated list of ceph and/or rbd options.
 *  <pool_name>
 *      The name of the rados pool containing the rbd image.
 *  <image_name>
 *      The name of the image in that pool to map.
 *  <snap_id>
 *      An optional snapshot id.  If provided, the mapping will
 *      present data from the image at the time that snapshot was
 *      created.  The image head is used if no snapshot id is
 *      provided.  Snapshot mappings are always read-only.
4299
 */
4300
static int rbd_add_parse_args(const char *buf,
4301
				struct ceph_options **ceph_opts,
4302 4303
				struct rbd_options **opts,
				struct rbd_spec **rbd_spec)
4304
{
A
Alex Elder 已提交
4305
	size_t len;
4306
	char *options;
4307
	const char *mon_addrs;
4308
	char *snap_name;
4309
	size_t mon_addrs_size;
4310
	struct rbd_spec *spec = NULL;
4311
	struct rbd_options *rbd_opts = NULL;
4312
	struct ceph_options *copts;
4313
	int ret;
4314 4315 4316

	/* The first four tokens are required */

4317
	len = next_token(&buf);
4318 4319 4320 4321
	if (!len) {
		rbd_warn(NULL, "no monitor address(es) provided");
		return -EINVAL;
	}
4322
	mon_addrs = buf;
4323
	mon_addrs_size = len + 1;
4324
	buf += len;
4325

4326
	ret = -EINVAL;
4327 4328
	options = dup_token(&buf, NULL);
	if (!options)
4329
		return -ENOMEM;
4330 4331 4332 4333
	if (!*options) {
		rbd_warn(NULL, "no options provided");
		goto out_err;
	}
4334

4335 4336
	spec = rbd_spec_alloc();
	if (!spec)
4337
		goto out_mem;
4338 4339 4340 4341

	spec->pool_name = dup_token(&buf, NULL);
	if (!spec->pool_name)
		goto out_mem;
4342 4343 4344 4345
	if (!*spec->pool_name) {
		rbd_warn(NULL, "no pool name provided");
		goto out_err;
	}
4346

A
Alex Elder 已提交
4347
	spec->image_name = dup_token(&buf, NULL);
4348
	if (!spec->image_name)
4349
		goto out_mem;
4350 4351 4352 4353
	if (!*spec->image_name) {
		rbd_warn(NULL, "no image name provided");
		goto out_err;
	}
4354

4355 4356 4357 4358
	/*
	 * Snapshot name is optional; default is to use "-"
	 * (indicating the head/no snapshot).
	 */
4359
	len = next_token(&buf);
4360
	if (!len) {
4361 4362
		buf = RBD_SNAP_HEAD_NAME; /* No snapshot supplied */
		len = sizeof (RBD_SNAP_HEAD_NAME) - 1;
4363
	} else if (len > RBD_MAX_SNAP_NAME_LEN) {
4364
		ret = -ENAMETOOLONG;
4365
		goto out_err;
4366
	}
4367 4368
	snap_name = kmemdup(buf, len + 1, GFP_KERNEL);
	if (!snap_name)
4369
		goto out_mem;
4370 4371
	*(snap_name + len) = '\0';
	spec->snap_name = snap_name;
A
Alex Elder 已提交
4372

4373
	/* Initialize all rbd options to the defaults */
4374

4375 4376 4377 4378 4379
	rbd_opts = kzalloc(sizeof (*rbd_opts), GFP_KERNEL);
	if (!rbd_opts)
		goto out_mem;

	rbd_opts->read_only = RBD_READ_ONLY_DEFAULT;
A
Alex Elder 已提交
4380

4381
	copts = ceph_parse_options(options, mon_addrs,
4382
					mon_addrs + mon_addrs_size - 1,
4383
					parse_rbd_opts_token, rbd_opts);
4384 4385
	if (IS_ERR(copts)) {
		ret = PTR_ERR(copts);
4386 4387
		goto out_err;
	}
4388 4389 4390
	kfree(options);

	*ceph_opts = copts;
4391
	*opts = rbd_opts;
4392
	*rbd_spec = spec;
4393

4394
	return 0;
4395
out_mem:
4396
	ret = -ENOMEM;
A
Alex Elder 已提交
4397
out_err:
4398 4399
	kfree(rbd_opts);
	rbd_spec_put(spec);
4400
	kfree(options);
A
Alex Elder 已提交
4401

4402
	return ret;
4403 4404
}

A
Alex Elder 已提交
4405 4406 4407 4408 4409 4410 4411 4412 4413 4414 4415 4416 4417 4418 4419 4420 4421 4422 4423 4424
/*
 * An rbd format 2 image has a unique identifier, distinct from the
 * name given to it by the user.  Internally, that identifier is
 * what's used to specify the names of objects related to the image.
 *
 * A special "rbd id" object is used to map an rbd image name to its
 * id.  If that object doesn't exist, then there is no v2 rbd image
 * with the supplied name.
 *
 * This function will record the given rbd_dev's image_id field if
 * it can be determined, and in that case will return 0.  If any
 * errors occur a negative errno will be returned and the rbd_dev's
 * image_id field will be unchanged (and should be NULL).
 */
static int rbd_dev_image_id(struct rbd_device *rbd_dev)
{
	int ret;
	size_t size;
	char *object_name;
	void *response;
4425
	char *image_id;
4426

A
Alex Elder 已提交
4427 4428 4429
	/*
	 * When probing a parent image, the image id is already
	 * known (and the image name likely is not).  There's no
4430 4431
	 * need to fetch the image id again in this case.  We
	 * do still need to set the image format though.
A
Alex Elder 已提交
4432
	 */
4433 4434 4435
	if (rbd_dev->spec->image_id) {
		rbd_dev->image_format = *rbd_dev->spec->image_id ? 2 : 1;

A
Alex Elder 已提交
4436
		return 0;
4437
	}
A
Alex Elder 已提交
4438

A
Alex Elder 已提交
4439 4440 4441 4442
	/*
	 * First, see if the format 2 image id file exists, and if
	 * so, get the image's persistent id from it.
	 */
A
Alex Elder 已提交
4443
	size = sizeof (RBD_ID_PREFIX) + strlen(rbd_dev->spec->image_name);
A
Alex Elder 已提交
4444 4445 4446
	object_name = kmalloc(size, GFP_NOIO);
	if (!object_name)
		return -ENOMEM;
4447
	sprintf(object_name, "%s%s", RBD_ID_PREFIX, rbd_dev->spec->image_name);
A
Alex Elder 已提交
4448 4449 4450 4451 4452 4453 4454 4455 4456 4457 4458
	dout("rbd id object name is %s\n", object_name);

	/* Response will be an encoded string, which includes a length */

	size = sizeof (__le32) + RBD_IMAGE_ID_LEN_MAX;
	response = kzalloc(size, GFP_NOIO);
	if (!response) {
		ret = -ENOMEM;
		goto out;
	}

4459 4460
	/* If it doesn't exist we'll assume it's a format 1 image */

4461
	ret = rbd_obj_method_sync(rbd_dev, object_name,
4462
				"rbd", "get_id", NULL, 0,
4463
				response, RBD_IMAGE_ID_LEN_MAX);
4464
	dout("%s: rbd_obj_method_sync returned %d\n", __func__, ret);
4465 4466 4467 4468 4469 4470 4471 4472 4473
	if (ret == -ENOENT) {
		image_id = kstrdup("", GFP_KERNEL);
		ret = image_id ? 0 : -ENOMEM;
		if (!ret)
			rbd_dev->image_format = 1;
	} else if (ret > sizeof (__le32)) {
		void *p = response;

		image_id = ceph_extract_encoded_string(&p, p + ret,
A
Alex Elder 已提交
4474
						NULL, GFP_NOIO);
4475 4476 4477
		ret = IS_ERR(image_id) ? PTR_ERR(image_id) : 0;
		if (!ret)
			rbd_dev->image_format = 2;
A
Alex Elder 已提交
4478
	} else {
4479 4480 4481 4482 4483 4484
		ret = -EINVAL;
	}

	if (!ret) {
		rbd_dev->spec->image_id = image_id;
		dout("image_id is %s\n", image_id);
A
Alex Elder 已提交
4485 4486 4487 4488 4489 4490 4491 4492
	}
out:
	kfree(response);
	kfree(object_name);

	return ret;
}

A
Alex Elder 已提交
4493 4494 4495 4496 4497 4498 4499 4500 4501 4502 4503 4504 4505 4506
/* Undo whatever state changes are made by v1 or v2 image probe */

static void rbd_dev_unprobe(struct rbd_device *rbd_dev)
{
	struct rbd_image_header	*header;

	rbd_dev_remove_parent(rbd_dev);
	rbd_spec_put(rbd_dev->parent_spec);
	rbd_dev->parent_spec = NULL;
	rbd_dev->parent_overlap = 0;

	/* Free dynamic fields from the header, then zero it out */

	header = &rbd_dev->header;
4507
	ceph_put_snap_context(header->snapc);
A
Alex Elder 已提交
4508 4509 4510 4511 4512 4513
	kfree(header->snap_sizes);
	kfree(header->snap_names);
	kfree(header->object_prefix);
	memset(header, 0, sizeof (*header));
}

4514 4515 4516 4517 4518 4519 4520 4521 4522
static int rbd_dev_v1_probe(struct rbd_device *rbd_dev)
{
	int ret;

	/* Populate rbd image metadata */

	ret = rbd_read_header(rbd_dev, &rbd_dev->header);
	if (ret < 0)
		goto out_err;
4523 4524 4525 4526 4527 4528

	/* Version 1 images have no parent (no layering) */

	rbd_dev->parent_spec = NULL;
	rbd_dev->parent_overlap = 0;

4529 4530 4531 4532 4533 4534 4535 4536
	dout("discovered version 1 image, header name is %s\n",
		rbd_dev->header_name);

	return 0;

out_err:
	kfree(rbd_dev->header_name);
	rbd_dev->header_name = NULL;
4537 4538
	kfree(rbd_dev->spec->image_id);
	rbd_dev->spec->image_id = NULL;
4539 4540 4541 4542 4543 4544

	return ret;
}

static int rbd_dev_v2_probe(struct rbd_device *rbd_dev)
{
4545
	int ret;
4546

4547
	ret = rbd_dev_v2_image_size(rbd_dev);
4548
	if (ret)
4549 4550 4551 4552 4553
		goto out_err;

	/* Get the object prefix (a.k.a. block_name) for the image */

	ret = rbd_dev_v2_object_prefix(rbd_dev);
4554
	if (ret)
4555 4556
		goto out_err;

A
Alex Elder 已提交
4557
	/* Get the and check features for the image */
4558 4559

	ret = rbd_dev_v2_features(rbd_dev);
4560
	if (ret)
4561
		goto out_err;
4562

4563 4564 4565 4566
	/* If the image supports layering, get the parent info */

	if (rbd_dev->header.features & RBD_FEATURE_LAYERING) {
		ret = rbd_dev_v2_parent_info(rbd_dev);
4567
		if (ret)
4568
			goto out_err;
4569
		/*
4570 4571 4572 4573 4574
		 * Print a warning if this image has a parent.
		 * Don't print it if the image now being probed
		 * is itself a parent.  We can tell at this point
		 * because we won't know its pool name yet (just its
		 * pool id).
4575
		 */
4576
		if (rbd_dev->parent_spec && rbd_dev->spec->pool_name)
4577 4578
			rbd_warn(rbd_dev, "WARNING: kernel layering "
					"is EXPERIMENTAL!");
4579 4580
	}

4581 4582 4583 4584 4585 4586 4587 4588
	/* If the image supports fancy striping, get its parameters */

	if (rbd_dev->header.features & RBD_FEATURE_STRIPINGV2) {
		ret = rbd_dev_v2_striping_info(rbd_dev);
		if (ret < 0)
			goto out_err;
	}

4589 4590 4591 4592
	/* crypto and compression type aren't (yet) supported for v2 images */

	rbd_dev->header.crypt_type = 0;
	rbd_dev->header.comp_type = 0;
4593

4594 4595
	/* Get the snapshot context, plus the header version */

A
Alex Elder 已提交
4596
	ret = rbd_dev_v2_snap_context(rbd_dev);
4597 4598
	if (ret)
		goto out_err;
4599

4600 4601 4602
	dout("discovered version 2 image, header name is %s\n",
		rbd_dev->header_name);

A
Alex Elder 已提交
4603
	return 0;
4604
out_err:
4605 4606 4607
	rbd_dev->parent_overlap = 0;
	rbd_spec_put(rbd_dev->parent_spec);
	rbd_dev->parent_spec = NULL;
4608 4609
	kfree(rbd_dev->header_name);
	rbd_dev->header_name = NULL;
4610 4611
	kfree(rbd_dev->header.object_prefix);
	rbd_dev->header.object_prefix = NULL;
4612 4613

	return ret;
4614 4615
}

4616
static int rbd_dev_probe_parent(struct rbd_device *rbd_dev)
A
Alex Elder 已提交
4617
{
4618
	struct rbd_device *parent = NULL;
4619 4620 4621 4622 4623 4624 4625 4626 4627 4628 4629 4630 4631 4632 4633 4634 4635 4636 4637
	struct rbd_spec *parent_spec;
	struct rbd_client *rbdc;
	int ret;

	if (!rbd_dev->parent_spec)
		return 0;
	/*
	 * We need to pass a reference to the client and the parent
	 * spec when creating the parent rbd_dev.  Images related by
	 * parent/child relationships always share both.
	 */
	parent_spec = rbd_spec_get(rbd_dev->parent_spec);
	rbdc = __rbd_get_client(rbd_dev->rbd_client);

	ret = -ENOMEM;
	parent = rbd_dev_create(rbdc, parent_spec);
	if (!parent)
		goto out_err;

4638
	ret = rbd_dev_image_probe(parent, true);
4639 4640 4641 4642 4643 4644 4645 4646 4647 4648 4649 4650 4651 4652 4653 4654 4655 4656
	if (ret < 0)
		goto out_err;
	rbd_dev->parent = parent;

	return 0;
out_err:
	if (parent) {
		rbd_spec_put(rbd_dev->parent_spec);
		kfree(rbd_dev->header_name);
		rbd_dev_destroy(parent);
	} else {
		rbd_put_client(rbdc);
		rbd_spec_put(parent_spec);
	}

	return ret;
}

4657
static int rbd_dev_device_setup(struct rbd_device *rbd_dev)
4658
{
A
Alex Elder 已提交
4659
	int ret;
A
Alex Elder 已提交
4660

A
Alex Elder 已提交
4661 4662 4663 4664 4665 4666 4667 4668 4669 4670 4671 4672 4673 4674 4675 4676 4677 4678 4679 4680 4681
	/* generate unique id: find highest unique id, add one */
	rbd_dev_id_get(rbd_dev);

	/* Fill in the device name, now that we have its id. */
	BUILD_BUG_ON(DEV_NAME_LEN
			< sizeof (RBD_DRV_NAME) + MAX_INT_FORMAT_WIDTH);
	sprintf(rbd_dev->name, "%s%d", RBD_DRV_NAME, rbd_dev->dev_id);

	/* Get our block major device number. */

	ret = register_blkdev(0, rbd_dev->name);
	if (ret < 0)
		goto err_out_id;
	rbd_dev->major = ret;

	/* Set up the blkdev mapping. */

	ret = rbd_init_disk(rbd_dev);
	if (ret)
		goto err_out_blkdev;

4682
	ret = rbd_dev_mapping_set(rbd_dev);
A
Alex Elder 已提交
4683 4684
	if (ret)
		goto err_out_disk;
4685 4686 4687 4688 4689
	set_capacity(rbd_dev->disk, rbd_dev->mapping.size / SECTOR_SIZE);

	ret = rbd_bus_add_dev(rbd_dev);
	if (ret)
		goto err_out_mapping;
A
Alex Elder 已提交
4690 4691 4692

	/* Everything's ready.  Announce the disk to the world. */

4693
	set_bit(RBD_DEV_FLAG_EXISTS, &rbd_dev->flags);
A
Alex Elder 已提交
4694 4695 4696 4697 4698 4699
	add_disk(rbd_dev->disk);

	pr_info("%s: added with size 0x%llx\n", rbd_dev->disk->disk_name,
		(unsigned long long) rbd_dev->mapping.size);

	return ret;
4700

4701 4702
err_out_mapping:
	rbd_dev_mapping_clear(rbd_dev);
A
Alex Elder 已提交
4703 4704 4705 4706 4707 4708
err_out_disk:
	rbd_free_disk(rbd_dev);
err_out_blkdev:
	unregister_blkdev(rbd_dev->major, rbd_dev->name);
err_out_id:
	rbd_dev_id_put(rbd_dev);
A
Alex Elder 已提交
4709
	rbd_dev_mapping_clear(rbd_dev);
A
Alex Elder 已提交
4710 4711 4712 4713

	return ret;
}

A
Alex Elder 已提交
4714 4715 4716 4717 4718 4719 4720 4721 4722 4723 4724 4725 4726 4727 4728 4729 4730 4731 4732 4733 4734 4735 4736 4737 4738 4739 4740
static int rbd_dev_header_name(struct rbd_device *rbd_dev)
{
	struct rbd_spec *spec = rbd_dev->spec;
	size_t size;

	/* Record the header object name for this rbd image. */

	rbd_assert(rbd_image_format_valid(rbd_dev->image_format));

	if (rbd_dev->image_format == 1)
		size = strlen(spec->image_name) + sizeof (RBD_SUFFIX);
	else
		size = sizeof (RBD_HEADER_PREFIX) + strlen(spec->image_id);

	rbd_dev->header_name = kmalloc(size, GFP_KERNEL);
	if (!rbd_dev->header_name)
		return -ENOMEM;

	if (rbd_dev->image_format == 1)
		sprintf(rbd_dev->header_name, "%s%s",
			spec->image_name, RBD_SUFFIX);
	else
		sprintf(rbd_dev->header_name, "%s%s",
			RBD_HEADER_PREFIX, spec->image_id);
	return 0;
}

4741 4742
static void rbd_dev_image_release(struct rbd_device *rbd_dev)
{
A
Alex Elder 已提交
4743 4744 4745 4746 4747 4748
	int ret;

	rbd_dev_unprobe(rbd_dev);
	ret = rbd_dev_header_watch_sync(rbd_dev, 0);
	if (ret)
		rbd_warn(rbd_dev, "failed to cancel watch event (%d)\n", ret);
4749
	kfree(rbd_dev->header_name);
A
Alex Elder 已提交
4750 4751 4752 4753 4754
	rbd_dev->header_name = NULL;
	rbd_dev->image_format = 0;
	kfree(rbd_dev->spec->image_id);
	rbd_dev->spec->image_id = NULL;

4755 4756 4757
	rbd_dev_destroy(rbd_dev);
}

4758 4759 4760 4761 4762
/*
 * Probe for the existence of the header object for the given rbd
 * device.  For format 2 images this includes determining the image
 * id.
 */
4763
static int rbd_dev_image_probe(struct rbd_device *rbd_dev, bool read_only)
4764 4765
{
	int ret;
4766
	int tmp;
4767 4768 4769 4770 4771 4772 4773 4774

	/*
	 * Get the id from the image id object.  If it's not a
	 * format 2 image, we'll get ENOENT back, and we'll assume
	 * it's a format 1 image.
	 */
	ret = rbd_dev_image_id(rbd_dev);
	if (ret)
4775 4776 4777 4778
		return ret;
	rbd_assert(rbd_dev->spec->image_id);
	rbd_assert(rbd_image_format_valid(rbd_dev->image_format));

A
Alex Elder 已提交
4779 4780 4781 4782
	ret = rbd_dev_header_name(rbd_dev);
	if (ret)
		goto err_out_format;

4783 4784 4785 4786
	ret = rbd_dev_header_watch_sync(rbd_dev, 1);
	if (ret)
		goto out_header_name;

4787
	if (rbd_dev->image_format == 1)
4788 4789 4790
		ret = rbd_dev_v1_probe(rbd_dev);
	else
		ret = rbd_dev_v2_probe(rbd_dev);
4791
	if (ret)
4792
		goto err_out_watch;
A
Alex Elder 已提交
4793

4794 4795
	ret = rbd_dev_spec_update(rbd_dev);
	if (ret)
A
Alex Elder 已提交
4796
		goto err_out_probe;
4797

4798 4799 4800 4801 4802 4803
	/* If we are mapping a snapshot it must be marked read-only */

	if (rbd_dev->spec->snap_id != CEPH_NOSNAP)
		read_only = true;
	rbd_dev->mapping.read_only = read_only;

4804
	ret = rbd_dev_probe_parent(rbd_dev);
A
Alex Elder 已提交
4805 4806
	if (!ret)
		return 0;
A
Alex Elder 已提交
4807

A
Alex Elder 已提交
4808 4809
err_out_probe:
	rbd_dev_unprobe(rbd_dev);
4810 4811 4812 4813
err_out_watch:
	tmp = rbd_dev_header_watch_sync(rbd_dev, 0);
	if (tmp)
		rbd_warn(rbd_dev, "unable to tear down watch request\n");
A
Alex Elder 已提交
4814 4815 4816 4817 4818
out_header_name:
	kfree(rbd_dev->header_name);
	rbd_dev->header_name = NULL;
err_out_format:
	rbd_dev->image_format = 0;
4819 4820 4821 4822 4823
	kfree(rbd_dev->spec->image_id);
	rbd_dev->spec->image_id = NULL;

	dout("probe failed, returning %d\n", ret);

4824 4825 4826
	return ret;
}

4827 4828 4829
static ssize_t rbd_add(struct bus_type *bus,
		       const char *buf,
		       size_t count)
4830
{
4831
	struct rbd_device *rbd_dev = NULL;
4832
	struct ceph_options *ceph_opts = NULL;
4833
	struct rbd_options *rbd_opts = NULL;
4834
	struct rbd_spec *spec = NULL;
4835
	struct rbd_client *rbdc;
4836
	struct ceph_osd_client *osdc;
4837
	bool read_only;
4838
	int rc = -ENOMEM;
4839 4840 4841 4842 4843

	if (!try_module_get(THIS_MODULE))
		return -ENODEV;

	/* parse add command */
4844
	rc = rbd_add_parse_args(buf, &ceph_opts, &rbd_opts, &spec);
4845
	if (rc < 0)
4846
		goto err_out_module;
4847 4848 4849
	read_only = rbd_opts->read_only;
	kfree(rbd_opts);
	rbd_opts = NULL;	/* done with this */
4850

4851 4852 4853
	rbdc = rbd_get_client(ceph_opts);
	if (IS_ERR(rbdc)) {
		rc = PTR_ERR(rbdc);
4854
		goto err_out_args;
4855
	}
4856
	ceph_opts = NULL;	/* rbd_dev client now owns this */
4857 4858

	/* pick the pool */
4859
	osdc = &rbdc->client->osdc;
4860
	rc = ceph_pg_poolid_by_name(osdc->osdmap, spec->pool_name);
4861 4862
	if (rc < 0)
		goto err_out_client;
A
Alex Elder 已提交
4863
	spec->pool_id = (u64)rc;
4864

4865 4866
	/* The ceph file layout needs to fit pool id in 32 bits */

A
Alex Elder 已提交
4867 4868 4869
	if (spec->pool_id > (u64)U32_MAX) {
		rbd_warn(NULL, "pool id too large (%llu > %u)\n",
				(unsigned long long)spec->pool_id, U32_MAX);
4870 4871 4872 4873
		rc = -EIO;
		goto err_out_client;
	}

4874
	rbd_dev = rbd_dev_create(rbdc, spec);
4875 4876
	if (!rbd_dev)
		goto err_out_client;
4877 4878
	rbdc = NULL;		/* rbd_dev now owns this */
	spec = NULL;		/* rbd_dev now owns this */
4879

4880
	rc = rbd_dev_image_probe(rbd_dev, read_only);
4881
	if (rc < 0)
4882
		goto err_out_rbd_dev;
4883

4884 4885 4886 4887 4888
	rc = rbd_dev_device_setup(rbd_dev);
	if (!rc)
		return count;

	rbd_dev_image_release(rbd_dev);
4889 4890
err_out_rbd_dev:
	rbd_dev_destroy(rbd_dev);
4891
err_out_client:
4892
	rbd_put_client(rbdc);
4893
err_out_args:
4894 4895
	if (ceph_opts)
		ceph_destroy_options(ceph_opts);
4896
	kfree(rbd_opts);
4897
	rbd_spec_put(spec);
4898 4899
err_out_module:
	module_put(THIS_MODULE);
4900

4901
	dout("Error adding device %s\n", buf);
4902

A
Alex Elder 已提交
4903
	return (ssize_t)rc;
4904 4905
}

A
Alex Elder 已提交
4906
static struct rbd_device *__rbd_get_dev(unsigned long dev_id)
4907 4908 4909 4910
{
	struct list_head *tmp;
	struct rbd_device *rbd_dev;

4911
	spin_lock(&rbd_dev_list_lock);
4912 4913
	list_for_each(tmp, &rbd_dev_list) {
		rbd_dev = list_entry(tmp, struct rbd_device, node);
A
Alex Elder 已提交
4914
		if (rbd_dev->dev_id == dev_id) {
4915
			spin_unlock(&rbd_dev_list_lock);
4916
			return rbd_dev;
4917
		}
4918
	}
4919
	spin_unlock(&rbd_dev_list_lock);
4920 4921 4922
	return NULL;
}

4923
static void rbd_dev_device_release(struct device *dev)
4924
{
A
Alex Elder 已提交
4925
	struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
4926 4927

	rbd_free_disk(rbd_dev);
4928
	clear_bit(RBD_DEV_FLAG_EXISTS, &rbd_dev->flags);
A
Alex Elder 已提交
4929
	rbd_dev_mapping_clear(rbd_dev);
4930
	unregister_blkdev(rbd_dev->major, rbd_dev->name);
4931
	rbd_dev->major = 0;
A
Alex Elder 已提交
4932
	rbd_dev_id_put(rbd_dev);
A
Alex Elder 已提交
4933
	rbd_dev_mapping_clear(rbd_dev);
4934 4935
}

4936 4937
static void rbd_dev_remove_parent(struct rbd_device *rbd_dev)
{
A
Alex Elder 已提交
4938
	while (rbd_dev->parent) {
4939 4940 4941 4942 4943 4944 4945 4946 4947 4948 4949 4950
		struct rbd_device *first = rbd_dev;
		struct rbd_device *second = first->parent;
		struct rbd_device *third;

		/*
		 * Follow to the parent with no grandparent and
		 * remove it.
		 */
		while (second && (third = second->parent)) {
			first = second;
			second = third;
		}
A
Alex Elder 已提交
4951
		rbd_assert(second);
4952
		rbd_dev_image_release(second);
A
Alex Elder 已提交
4953 4954 4955 4956
		first->parent = NULL;
		first->parent_overlap = 0;

		rbd_assert(first->parent_spec);
4957 4958 4959 4960 4961
		rbd_spec_put(first->parent_spec);
		first->parent_spec = NULL;
	}
}

4962 4963 4964
static ssize_t rbd_remove(struct bus_type *bus,
			  const char *buf,
			  size_t count)
4965 4966
{
	struct rbd_device *rbd_dev = NULL;
4967
	int target_id;
4968
	unsigned long ul;
4969
	int ret;
4970

4971 4972 4973
	ret = strict_strtoul(buf, 10, &ul);
	if (ret)
		return ret;
4974 4975 4976 4977 4978 4979 4980 4981 4982 4983 4984 4985

	/* convert to int; abort if we lost anything in the conversion */
	target_id = (int) ul;
	if (target_id != ul)
		return -EINVAL;

	mutex_lock_nested(&ctl_mutex, SINGLE_DEPTH_NESTING);

	rbd_dev = __rbd_get_dev(target_id);
	if (!rbd_dev) {
		ret = -ENOENT;
		goto done;
4986 4987
	}

4988
	spin_lock_irq(&rbd_dev->lock);
4989
	if (rbd_dev->open_count)
4990
		ret = -EBUSY;
4991 4992
	else
		set_bit(RBD_DEV_FLAG_REMOVING, &rbd_dev->flags);
4993
	spin_unlock_irq(&rbd_dev->lock);
4994
	if (ret < 0)
4995
		goto done;
4996
	ret = count;
A
Alex Elder 已提交
4997
	rbd_bus_del_dev(rbd_dev);
4998
	rbd_dev_image_release(rbd_dev);
A
Alex Elder 已提交
4999
	module_put(THIS_MODULE);
5000 5001
done:
	mutex_unlock(&ctl_mutex);
A
Alex Elder 已提交
5002

5003 5004 5005 5006 5007
	return ret;
}

/*
 * create control files in sysfs
5008
 * /sys/bus/rbd/...
5009 5010 5011
 */
static int rbd_sysfs_init(void)
{
5012
	int ret;
5013

5014
	ret = device_register(&rbd_root_dev);
A
Alex Elder 已提交
5015
	if (ret < 0)
5016
		return ret;
5017

5018 5019 5020
	ret = bus_register(&rbd_bus_type);
	if (ret < 0)
		device_unregister(&rbd_root_dev);
5021 5022 5023 5024 5025 5026

	return ret;
}

static void rbd_sysfs_cleanup(void)
{
5027
	bus_unregister(&rbd_bus_type);
5028
	device_unregister(&rbd_root_dev);
5029 5030
}

5031 5032 5033 5034 5035 5036 5037
static int rbd_slab_init(void)
{
	rbd_assert(!rbd_img_request_cache);
	rbd_img_request_cache = kmem_cache_create("rbd_img_request",
					sizeof (struct rbd_img_request),
					__alignof__(struct rbd_img_request),
					0, NULL);
5038 5039 5040 5041 5042 5043 5044 5045
	if (!rbd_img_request_cache)
		return -ENOMEM;

	rbd_assert(!rbd_obj_request_cache);
	rbd_obj_request_cache = kmem_cache_create("rbd_obj_request",
					sizeof (struct rbd_obj_request),
					__alignof__(struct rbd_obj_request),
					0, NULL);
5046 5047 5048 5049 5050 5051 5052
	if (!rbd_obj_request_cache)
		goto out_err;

	rbd_assert(!rbd_segment_name_cache);
	rbd_segment_name_cache = kmem_cache_create("rbd_segment_name",
					MAX_OBJ_NAME_SIZE + 1, 1, 0, NULL);
	if (rbd_segment_name_cache)
5053
		return 0;
5054 5055 5056 5057 5058
out_err:
	if (rbd_obj_request_cache) {
		kmem_cache_destroy(rbd_obj_request_cache);
		rbd_obj_request_cache = NULL;
	}
5059

5060 5061 5062
	kmem_cache_destroy(rbd_img_request_cache);
	rbd_img_request_cache = NULL;

5063 5064 5065 5066 5067
	return -ENOMEM;
}

static void rbd_slab_exit(void)
{
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	rbd_assert(rbd_segment_name_cache);
	kmem_cache_destroy(rbd_segment_name_cache);
	rbd_segment_name_cache = NULL;

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	rbd_assert(rbd_obj_request_cache);
	kmem_cache_destroy(rbd_obj_request_cache);
	rbd_obj_request_cache = NULL;

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	rbd_assert(rbd_img_request_cache);
	kmem_cache_destroy(rbd_img_request_cache);
	rbd_img_request_cache = NULL;
}

A
Alex Elder 已提交
5081
static int __init rbd_init(void)
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{
	int rc;

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	if (!libceph_compatible(NULL)) {
		rbd_warn(NULL, "libceph incompatibility (quitting)");

		return -EINVAL;
	}
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	rc = rbd_slab_init();
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	if (rc)
		return rc;
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	rc = rbd_sysfs_init();
	if (rc)
		rbd_slab_exit();
	else
		pr_info("loaded " RBD_DRV_NAME_LONG "\n");

	return rc;
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}

A
Alex Elder 已提交
5102
static void __exit rbd_exit(void)
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{
	rbd_sysfs_cleanup();
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	rbd_slab_exit();
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}

module_init(rbd_init);
module_exit(rbd_exit);

MODULE_AUTHOR("Sage Weil <sage@newdream.net>");
MODULE_AUTHOR("Yehuda Sadeh <yehuda@hq.newdream.net>");
MODULE_DESCRIPTION("rados block device");

/* following authorship retained from original osdblk.c */
MODULE_AUTHOR("Jeff Garzik <jeff@garzik.org>");

MODULE_LICENSE("GPL");