loop.c 46.0 KB
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/*
 *  linux/drivers/block/loop.c
 *
 *  Written by Theodore Ts'o, 3/29/93
 *
 * Copyright 1993 by Theodore Ts'o.  Redistribution of this file is
 * permitted under the GNU General Public License.
 *
 * DES encryption plus some minor changes by Werner Almesberger, 30-MAY-1993
 * more DES encryption plus IDEA encryption by Nicholas J. Leon, June 20, 1996
 *
 * Modularized and updated for 1.1.16 kernel - Mitch Dsouza 28th May 1994
 * Adapted for 1.3.59 kernel - Andries Brouwer, 1 Feb 1996
 *
 * Fixed do_loop_request() re-entrancy - Vincent.Renardias@waw.com Mar 20, 1997
 *
 * Added devfs support - Richard Gooch <rgooch@atnf.csiro.au> 16-Jan-1998
 *
 * Handle sparse backing files correctly - Kenn Humborg, Jun 28, 1998
 *
 * Loadable modules and other fixes by AK, 1998
 *
 * Make real block number available to downstream transfer functions, enables
 * CBC (and relatives) mode encryption requiring unique IVs per data block.
 * Reed H. Petty, rhp@draper.net
 *
 * Maximum number of loop devices now dynamic via max_loop module parameter.
 * Russell Kroll <rkroll@exploits.org> 19990701
 *
 * Maximum number of loop devices when compiled-in now selectable by passing
 * max_loop=<1-255> to the kernel on boot.
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 * Erik I. Bolsø, <eriki@himolde.no>, Oct 31, 1999
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 *
 * Completely rewrite request handling to be make_request_fn style and
 * non blocking, pushing work to a helper thread. Lots of fixes from
 * Al Viro too.
 * Jens Axboe <axboe@suse.de>, Nov 2000
 *
 * Support up to 256 loop devices
 * Heinz Mauelshagen <mge@sistina.com>, Feb 2002
 *
 * Support for falling back on the write file operation when the address space
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 * operations write_begin is not available on the backing filesystem.
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 * Anton Altaparmakov, 16 Feb 2005
 *
 * Still To Fix:
 * - Advisory locking is ignored here.
 * - Should use an own CAP_* category instead of CAP_SYS_ADMIN
 *
 */

#include <linux/module.h>
#include <linux/moduleparam.h>
#include <linux/sched.h>
#include <linux/fs.h>
#include <linux/file.h>
#include <linux/stat.h>
#include <linux/errno.h>
#include <linux/major.h>
#include <linux/wait.h>
#include <linux/blkdev.h>
#include <linux/blkpg.h>
#include <linux/init.h>
#include <linux/swap.h>
#include <linux/slab.h>
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#include <linux/compat.h>
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#include <linux/suspend.h>
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#include <linux/freezer.h>
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#include <linux/mutex.h>
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#include <linux/writeback.h>
#include <linux/completion.h>
#include <linux/highmem.h>
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#include <linux/kthread.h>
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#include <linux/splice.h>
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#include <linux/sysfs.h>
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#include <linux/miscdevice.h>
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#include <linux/falloc.h>
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#include <linux/uio.h>
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#include "loop.h"
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#include <asm/uaccess.h>

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static DEFINE_IDR(loop_index_idr);
static DEFINE_MUTEX(loop_index_mutex);
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static int max_part;
static int part_shift;

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static int transfer_xor(struct loop_device *lo, int cmd,
			struct page *raw_page, unsigned raw_off,
			struct page *loop_page, unsigned loop_off,
			int size, sector_t real_block)
{
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	char *raw_buf = kmap_atomic(raw_page) + raw_off;
	char *loop_buf = kmap_atomic(loop_page) + loop_off;
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	char *in, *out, *key;
	int i, keysize;

	if (cmd == READ) {
		in = raw_buf;
		out = loop_buf;
	} else {
		in = loop_buf;
		out = raw_buf;
	}

	key = lo->lo_encrypt_key;
	keysize = lo->lo_encrypt_key_size;
	for (i = 0; i < size; i++)
		*out++ = *in++ ^ key[(i & 511) % keysize];

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	kunmap_atomic(loop_buf);
	kunmap_atomic(raw_buf);
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	cond_resched();
	return 0;
}

static int xor_init(struct loop_device *lo, const struct loop_info64 *info)
{
	if (unlikely(info->lo_encrypt_key_size <= 0))
		return -EINVAL;
	return 0;
}

static struct loop_func_table none_funcs = {
	.number = LO_CRYPT_NONE,
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}; 
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static struct loop_func_table xor_funcs = {
	.number = LO_CRYPT_XOR,
	.transfer = transfer_xor,
	.init = xor_init
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}; 
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/* xfer_funcs[0] is special - its release function is never called */
static struct loop_func_table *xfer_funcs[MAX_LO_CRYPT] = {
	&none_funcs,
	&xor_funcs
};

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static loff_t get_size(loff_t offset, loff_t sizelimit, struct file *file)
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{
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	loff_t loopsize;
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	/* Compute loopsize in bytes */
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	loopsize = i_size_read(file->f_mapping->host);
	if (offset > 0)
		loopsize -= offset;
	/* offset is beyond i_size, weird but possible */
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	if (loopsize < 0)
		return 0;
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	if (sizelimit > 0 && sizelimit < loopsize)
		loopsize = sizelimit;
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	/*
	 * Unfortunately, if we want to do I/O on the device,
	 * the number of 512-byte sectors has to fit into a sector_t.
	 */
	return loopsize >> 9;
}

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static loff_t get_loop_size(struct loop_device *lo, struct file *file)
{
	return get_size(lo->lo_offset, lo->lo_sizelimit, file);
}

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static int
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figure_loop_size(struct loop_device *lo, loff_t offset, loff_t sizelimit)
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{
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	loff_t size = get_size(offset, sizelimit, lo->lo_backing_file);
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	sector_t x = (sector_t)size;
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	struct block_device *bdev = lo->lo_device;
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	if (unlikely((loff_t)x != size))
		return -EFBIG;
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	if (lo->lo_offset != offset)
		lo->lo_offset = offset;
	if (lo->lo_sizelimit != sizelimit)
		lo->lo_sizelimit = sizelimit;
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	set_capacity(lo->lo_disk, x);
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	bd_set_size(bdev, (loff_t)get_capacity(bdev->bd_disk) << 9);
	/* let user-space know about the new size */
	kobject_uevent(&disk_to_dev(bdev->bd_disk)->kobj, KOBJ_CHANGE);
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	return 0;
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}

static inline int
lo_do_transfer(struct loop_device *lo, int cmd,
	       struct page *rpage, unsigned roffs,
	       struct page *lpage, unsigned loffs,
	       int size, sector_t rblock)
{
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	int ret;

	ret = lo->transfer(lo, cmd, rpage, roffs, lpage, loffs, size, rblock);
	if (likely(!ret))
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		return 0;

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	printk_ratelimited(KERN_ERR
		"loop: Transfer error at byte offset %llu, length %i.\n",
		(unsigned long long)rblock << 9, size);
	return ret;
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}

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static int lo_write_bvec(struct file *file, struct bio_vec *bvec, loff_t *ppos)
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{
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	struct iov_iter i;
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	ssize_t bw;
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	iov_iter_bvec(&i, ITER_BVEC, bvec, 1, bvec->bv_len);
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	file_start_write(file);
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	bw = vfs_iter_write(file, &i, ppos);
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	file_end_write(file);
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	if (likely(bw ==  bvec->bv_len))
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		return 0;
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	printk_ratelimited(KERN_ERR
		"loop: Write error at byte offset %llu, length %i.\n",
		(unsigned long long)*ppos, bvec->bv_len);
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	if (bw >= 0)
		bw = -EIO;
	return bw;
}

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static int lo_write_simple(struct loop_device *lo, struct request *rq,
		loff_t pos)
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{
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	struct bio_vec bvec;
	struct req_iterator iter;
	int ret = 0;

	rq_for_each_segment(bvec, rq, iter) {
		ret = lo_write_bvec(lo->lo_backing_file, &bvec, &pos);
		if (ret < 0)
			break;
		cond_resched();
	}

	return ret;
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}

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/*
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 * This is the slow, transforming version that needs to double buffer the
 * data as it cannot do the transformations in place without having direct
 * access to the destination pages of the backing file.
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 */
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static int lo_write_transfer(struct loop_device *lo, struct request *rq,
		loff_t pos)
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{
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	struct bio_vec bvec, b;
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	struct req_iterator iter;
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	struct page *page;
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	int ret = 0;
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	page = alloc_page(GFP_NOIO);
	if (unlikely(!page))
		return -ENOMEM;
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	rq_for_each_segment(bvec, rq, iter) {
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		ret = lo_do_transfer(lo, WRITE, page, 0, bvec.bv_page,
			bvec.bv_offset, bvec.bv_len, pos >> 9);
		if (unlikely(ret))
			break;

		b.bv_page = page;
		b.bv_offset = 0;
		b.bv_len = bvec.bv_len;
		ret = lo_write_bvec(lo->lo_backing_file, &b, &pos);
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		if (ret < 0)
			break;
	}
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	__free_page(page);
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	return ret;
}

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static int lo_read_simple(struct loop_device *lo, struct request *rq,
		loff_t pos)
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{
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	struct bio_vec bvec;
	struct req_iterator iter;
	struct iov_iter i;
	ssize_t len;
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	rq_for_each_segment(bvec, rq, iter) {
		iov_iter_bvec(&i, ITER_BVEC, &bvec, 1, bvec.bv_len);
		len = vfs_iter_read(lo->lo_backing_file, &i, &pos);
		if (len < 0)
			return len;
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		flush_dcache_page(bvec.bv_page);
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		if (len != bvec.bv_len) {
			struct bio *bio;
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			__rq_for_each_bio(bio, rq)
				zero_fill_bio(bio);
			break;
		}
		cond_resched();
	}

	return 0;
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}

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static int lo_read_transfer(struct loop_device *lo, struct request *rq,
		loff_t pos)
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{
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	struct bio_vec bvec, b;
	struct req_iterator iter;
	struct iov_iter i;
	struct page *page;
	ssize_t len;
	int ret = 0;
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	page = alloc_page(GFP_NOIO);
	if (unlikely(!page))
		return -ENOMEM;
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	rq_for_each_segment(bvec, rq, iter) {
		loff_t offset = pos;
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		b.bv_page = page;
		b.bv_offset = 0;
		b.bv_len = bvec.bv_len;
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		iov_iter_bvec(&i, ITER_BVEC, &b, 1, b.bv_len);
		len = vfs_iter_read(lo->lo_backing_file, &i, &pos);
		if (len < 0) {
			ret = len;
			goto out_free_page;
		}
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		ret = lo_do_transfer(lo, READ, page, 0, bvec.bv_page,
			bvec.bv_offset, len, offset >> 9);
		if (ret)
			goto out_free_page;
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		flush_dcache_page(bvec.bv_page);
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		if (len != bvec.bv_len) {
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			struct bio *bio;

			__rq_for_each_bio(bio, rq)
				zero_fill_bio(bio);
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			break;
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		}
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	}
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	ret = 0;
out_free_page:
	__free_page(page);
	return ret;
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}

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static int lo_discard(struct loop_device *lo, struct request *rq, loff_t pos)
{
	/*
	 * We use punch hole to reclaim the free space used by the
	 * image a.k.a. discard. However we do not support discard if
	 * encryption is enabled, because it may give an attacker
	 * useful information.
	 */
	struct file *file = lo->lo_backing_file;
	int mode = FALLOC_FL_PUNCH_HOLE | FALLOC_FL_KEEP_SIZE;
	int ret;

	if ((!file->f_op->fallocate) || lo->lo_encrypt_key_size) {
		ret = -EOPNOTSUPP;
		goto out;
	}

	ret = file->f_op->fallocate(file, mode, pos, blk_rq_bytes(rq));
	if (unlikely(ret && ret != -EINVAL && ret != -EOPNOTSUPP))
		ret = -EIO;
 out:
	return ret;
}

static int lo_req_flush(struct loop_device *lo, struct request *rq)
{
	struct file *file = lo->lo_backing_file;
	int ret = vfs_fsync(file, 0);
	if (unlikely(ret && ret != -EINVAL))
		ret = -EIO;

	return ret;
}

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static int do_req_filebacked(struct loop_device *lo, struct request *rq)
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{
	loff_t pos;
	int ret;

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	pos = ((loff_t) blk_rq_pos(rq) << 9) + lo->lo_offset;
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	if (rq->cmd_flags & REQ_WRITE) {
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		if (rq->cmd_flags & REQ_FLUSH)
			ret = lo_req_flush(lo, rq);
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		else if (rq->cmd_flags & REQ_DISCARD)
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			ret = lo_discard(lo, rq, pos);
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		else if (lo->transfer)
			ret = lo_write_transfer(lo, rq, pos);
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		else
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			ret = lo_write_simple(lo, rq, pos);

	} else {
		if (lo->transfer)
			ret = lo_read_transfer(lo, rq, pos);
		else
			ret = lo_read_simple(lo, rq, pos);
	}
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	return ret;
}

struct switch_request {
	struct file *file;
	struct completion wait;
};

/*
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 * Do the actual switch; called from the BIO completion routine
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 */
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static void do_loop_switch(struct loop_device *lo, struct switch_request *p)
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{
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	struct file *file = p->file;
	struct file *old_file = lo->lo_backing_file;
	struct address_space *mapping;
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	/* if no new file, only flush of queued bios requested */
	if (!file)
		return;
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	mapping = file->f_mapping;
	mapping_set_gfp_mask(old_file->f_mapping, lo->old_gfp_mask);
	lo->lo_backing_file = file;
	lo->lo_blocksize = S_ISBLK(mapping->host->i_mode) ?
		mapping->host->i_bdev->bd_block_size : PAGE_SIZE;
	lo->old_gfp_mask = mapping_gfp_mask(mapping);
	mapping_set_gfp_mask(mapping, lo->old_gfp_mask & ~(__GFP_IO|__GFP_FS));
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}

/*
 * loop_switch performs the hard work of switching a backing store.
 * First it needs to flush existing IO, it does this by sending a magic
 * BIO down the pipe. The completion of this BIO does the actual switch.
 */
static int loop_switch(struct loop_device *lo, struct file *file)
{
	struct switch_request w;
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	w.file = file;
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	/* freeze queue and wait for completion of scheduled requests */
	blk_mq_freeze_queue(lo->lo_queue);

	/* do the switch action */
	do_loop_switch(lo, &w);

	/* unfreeze */
	blk_mq_unfreeze_queue(lo->lo_queue);

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	return 0;
}

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/*
 * Helper to flush the IOs in loop, but keeping loop thread running
 */
static int loop_flush(struct loop_device *lo)
{
	return loop_switch(lo, NULL);
}

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static void loop_reread_partitions(struct loop_device *lo,
				   struct block_device *bdev)
{
	int rc;

	/*
	 * bd_mutex has been held already in release path, so don't
	 * acquire it if this function is called in such case.
	 *
	 * If the reread partition isn't from release path, lo_refcnt
	 * must be at least one and it can only become zero when the
	 * current holder is released.
	 */
	if (!atomic_read(&lo->lo_refcnt))
		rc = __blkdev_reread_part(bdev);
	else
		rc = blkdev_reread_part(bdev);
	if (rc)
		pr_warn("%s: partition scan of loop%d (%s) failed (rc=%d)\n",
			__func__, lo->lo_number, lo->lo_file_name, rc);
}

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/*
 * loop_change_fd switched the backing store of a loopback device to
 * a new file. This is useful for operating system installers to free up
 * the original file and in High Availability environments to switch to
 * an alternative location for the content in case of server meltdown.
 * This can only work if the loop device is used read-only, and if the
 * new backing store is the same size and type as the old backing store.
 */
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static int loop_change_fd(struct loop_device *lo, struct block_device *bdev,
			  unsigned int arg)
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{
	struct file	*file, *old_file;
	struct inode	*inode;
	int		error;

	error = -ENXIO;
	if (lo->lo_state != Lo_bound)
		goto out;

	/* the loop device has to be read-only */
	error = -EINVAL;
	if (!(lo->lo_flags & LO_FLAGS_READ_ONLY))
		goto out;

	error = -EBADF;
	file = fget(arg);
	if (!file)
		goto out;

	inode = file->f_mapping->host;
	old_file = lo->lo_backing_file;

	error = -EINVAL;

	if (!S_ISREG(inode->i_mode) && !S_ISBLK(inode->i_mode))
		goto out_putf;

	/* size of the new backing store needs to be the same */
	if (get_loop_size(lo, file) != get_loop_size(lo, old_file))
		goto out_putf;

	/* and ... switch */
	error = loop_switch(lo, file);
	if (error)
		goto out_putf;

	fput(old_file);
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	if (lo->lo_flags & LO_FLAGS_PARTSCAN)
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		loop_reread_partitions(lo, bdev);
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	return 0;

 out_putf:
	fput(file);
 out:
	return error;
}

static inline int is_loop_device(struct file *file)
{
	struct inode *i = file->f_mapping->host;

	return i && S_ISBLK(i->i_mode) && MAJOR(i->i_rdev) == LOOP_MAJOR;
}

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/* loop sysfs attributes */

static ssize_t loop_attr_show(struct device *dev, char *page,
			      ssize_t (*callback)(struct loop_device *, char *))
{
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	struct gendisk *disk = dev_to_disk(dev);
	struct loop_device *lo = disk->private_data;
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	return callback(lo, page);
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}

#define LOOP_ATTR_RO(_name)						\
static ssize_t loop_attr_##_name##_show(struct loop_device *, char *);	\
static ssize_t loop_attr_do_show_##_name(struct device *d,		\
				struct device_attribute *attr, char *b)	\
{									\
	return loop_attr_show(d, b, loop_attr_##_name##_show);		\
}									\
static struct device_attribute loop_attr_##_name =			\
	__ATTR(_name, S_IRUGO, loop_attr_do_show_##_name, NULL);

static ssize_t loop_attr_backing_file_show(struct loop_device *lo, char *buf)
{
	ssize_t ret;
	char *p = NULL;

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	spin_lock_irq(&lo->lo_lock);
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	if (lo->lo_backing_file)
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		p = file_path(lo->lo_backing_file, buf, PAGE_SIZE - 1);
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	spin_unlock_irq(&lo->lo_lock);
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	if (IS_ERR_OR_NULL(p))
		ret = PTR_ERR(p);
	else {
		ret = strlen(p);
		memmove(buf, p, ret);
		buf[ret++] = '\n';
		buf[ret] = 0;
	}

	return ret;
}

static ssize_t loop_attr_offset_show(struct loop_device *lo, char *buf)
{
	return sprintf(buf, "%llu\n", (unsigned long long)lo->lo_offset);
}

static ssize_t loop_attr_sizelimit_show(struct loop_device *lo, char *buf)
{
	return sprintf(buf, "%llu\n", (unsigned long long)lo->lo_sizelimit);
}

static ssize_t loop_attr_autoclear_show(struct loop_device *lo, char *buf)
{
	int autoclear = (lo->lo_flags & LO_FLAGS_AUTOCLEAR);

	return sprintf(buf, "%s\n", autoclear ? "1" : "0");
}

623 624 625 626 627 628 629
static ssize_t loop_attr_partscan_show(struct loop_device *lo, char *buf)
{
	int partscan = (lo->lo_flags & LO_FLAGS_PARTSCAN);

	return sprintf(buf, "%s\n", partscan ? "1" : "0");
}

630 631 632 633
LOOP_ATTR_RO(backing_file);
LOOP_ATTR_RO(offset);
LOOP_ATTR_RO(sizelimit);
LOOP_ATTR_RO(autoclear);
634
LOOP_ATTR_RO(partscan);
635 636 637 638 639 640

static struct attribute *loop_attrs[] = {
	&loop_attr_backing_file.attr,
	&loop_attr_offset.attr,
	&loop_attr_sizelimit.attr,
	&loop_attr_autoclear.attr,
641
	&loop_attr_partscan.attr,
642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661
	NULL,
};

static struct attribute_group loop_attribute_group = {
	.name = "loop",
	.attrs= loop_attrs,
};

static int loop_sysfs_init(struct loop_device *lo)
{
	return sysfs_create_group(&disk_to_dev(lo->lo_disk)->kobj,
				  &loop_attribute_group);
}

static void loop_sysfs_exit(struct loop_device *lo)
{
	sysfs_remove_group(&disk_to_dev(lo->lo_disk)->kobj,
			   &loop_attribute_group);
}

662 663 664 665 666 667 668 669
static void loop_config_discard(struct loop_device *lo)
{
	struct file *file = lo->lo_backing_file;
	struct inode *inode = file->f_mapping->host;
	struct request_queue *q = lo->lo_queue;

	/*
	 * We use punch hole to reclaim the free space used by the
670
	 * image a.k.a. discard. However we do not support discard if
671 672 673 674 675 676 677
	 * encryption is enabled, because it may give an attacker
	 * useful information.
	 */
	if ((!file->f_op->fallocate) ||
	    lo->lo_encrypt_key_size) {
		q->limits.discard_granularity = 0;
		q->limits.discard_alignment = 0;
678
		blk_queue_max_discard_sectors(q, 0);
679 680 681 682 683 684
		q->limits.discard_zeroes_data = 0;
		queue_flag_clear_unlocked(QUEUE_FLAG_DISCARD, q);
		return;
	}

	q->limits.discard_granularity = inode->i_sb->s_blocksize;
685
	q->limits.discard_alignment = 0;
686
	blk_queue_max_discard_sectors(q, UINT_MAX >> 9);
687 688 689 690
	q->limits.discard_zeroes_data = 1;
	queue_flag_set_unlocked(QUEUE_FLAG_DISCARD, q);
}

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static int loop_set_fd(struct loop_device *lo, fmode_t mode,
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		       struct block_device *bdev, unsigned int arg)
{
	struct file	*file, *f;
	struct inode	*inode;
	struct address_space *mapping;
	unsigned lo_blocksize;
	int		lo_flags = 0;
	int		error;
	loff_t		size;

	/* This is safe, since we have a reference from open(). */
	__module_get(THIS_MODULE);

	error = -EBADF;
	file = fget(arg);
	if (!file)
		goto out;

	error = -EBUSY;
	if (lo->lo_state != Lo_unbound)
		goto out_putf;

	/* Avoid recursion */
	f = file;
	while (is_loop_device(f)) {
		struct loop_device *l;

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		if (f->f_mapping->host->i_bdev == bdev)
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			goto out_putf;

		l = f->f_mapping->host->i_bdev->bd_disk->private_data;
		if (l->lo_state == Lo_unbound) {
			error = -EINVAL;
			goto out_putf;
		}
		f = l->lo_backing_file;
	}

	mapping = file->f_mapping;
	inode = mapping->host;

	error = -EINVAL;
734 735
	if (!S_ISREG(inode->i_mode) && !S_ISBLK(inode->i_mode))
		goto out_putf;
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737
	if (!(file->f_mode & FMODE_WRITE) || !(mode & FMODE_WRITE) ||
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	    !file->f_op->write_iter)
739
		lo_flags |= LO_FLAGS_READ_ONLY;
740

741 742
	lo_blocksize = S_ISBLK(inode->i_mode) ?
		inode->i_bdev->bd_block_size : PAGE_SIZE;
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744
	error = -EFBIG;
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	size = get_loop_size(lo, file);
746
	if ((loff_t)(sector_t)size != size)
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		goto out_putf;
748 749
	error = -ENOMEM;
	lo->wq = alloc_workqueue("kloopd%d",
750
			WQ_MEM_RECLAIM | WQ_HIGHPRI | WQ_UNBOUND, 16,
751 752 753
			lo->lo_number);
	if (!lo->wq)
		goto out_putf;
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755
	error = 0;
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	set_device_ro(bdev, (lo_flags & LO_FLAGS_READ_ONLY) != 0);

	lo->lo_blocksize = lo_blocksize;
	lo->lo_device = bdev;
	lo->lo_flags = lo_flags;
	lo->lo_backing_file = file;
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	lo->transfer = NULL;
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	lo->ioctl = NULL;
	lo->lo_sizelimit = 0;
	lo->old_gfp_mask = mapping_gfp_mask(mapping);
	mapping_set_gfp_mask(mapping, lo->old_gfp_mask & ~(__GFP_IO|__GFP_FS));

769
	if (!(lo_flags & LO_FLAGS_READ_ONLY) && file->f_op->fsync)
770
		blk_queue_flush(lo->lo_queue, REQ_FLUSH);
771

772
	set_capacity(lo->lo_disk, size);
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	bd_set_size(bdev, size << 9);
774
	loop_sysfs_init(lo);
775 776
	/* let user-space know about the new size */
	kobject_uevent(&disk_to_dev(bdev->bd_disk)->kobj, KOBJ_CHANGE);
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	set_blocksize(bdev, lo_blocksize);

780
	lo->lo_state = Lo_bound;
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	if (part_shift)
		lo->lo_flags |= LO_FLAGS_PARTSCAN;
	if (lo->lo_flags & LO_FLAGS_PARTSCAN)
784
		loop_reread_partitions(lo, bdev);
785 786 787 788 789

	/* Grab the block_device to prevent its destruction after we
	 * put /dev/loopXX inode. Later in loop_clr_fd() we bdput(bdev).
	 */
	bdgrab(bdev);
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	return 0;

 out_putf:
	fput(file);
 out:
	/* This is safe: open() is still holding a reference. */
	module_put(THIS_MODULE);
	return error;
}

static int
loop_release_xfer(struct loop_device *lo)
{
	int err = 0;
	struct loop_func_table *xfer = lo->lo_encryption;

	if (xfer) {
		if (xfer->release)
			err = xfer->release(lo);
		lo->transfer = NULL;
		lo->lo_encryption = NULL;
		module_put(xfer->owner);
	}
	return err;
}

static int
loop_init_xfer(struct loop_device *lo, struct loop_func_table *xfer,
	       const struct loop_info64 *i)
{
	int err = 0;

	if (xfer) {
		struct module *owner = xfer->owner;

		if (!try_module_get(owner))
			return -EINVAL;
		if (xfer->init)
			err = xfer->init(lo, i);
		if (err)
			module_put(owner);
		else
			lo->lo_encryption = xfer;
	}
	return err;
}

837
static int loop_clr_fd(struct loop_device *lo)
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{
	struct file *filp = lo->lo_backing_file;
840
	gfp_t gfp = lo->old_gfp_mask;
841
	struct block_device *bdev = lo->lo_device;
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	if (lo->lo_state != Lo_bound)
		return -ENXIO;

846 847 848 849 850 851 852 853 854 855
	/*
	 * If we've explicitly asked to tear down the loop device,
	 * and it has an elevated reference count, set it for auto-teardown when
	 * the last reference goes away. This stops $!~#$@ udev from
	 * preventing teardown because it decided that it needs to run blkid on
	 * the loopback device whenever they appear. xfstests is notorious for
	 * failing tests because blkid via udev races with a losetup
	 * <dev>/do something like mkfs/losetup -d <dev> causing the losetup -d
	 * command to fail with EBUSY.
	 */
856
	if (atomic_read(&lo->lo_refcnt) > 1) {
857 858 859 860
		lo->lo_flags |= LO_FLAGS_AUTOCLEAR;
		mutex_unlock(&lo->lo_ctl_mutex);
		return 0;
	}
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	if (filp == NULL)
		return -EINVAL;

865 866 867
	/* freeze request queue during the transition */
	blk_mq_freeze_queue(lo->lo_queue);

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	spin_lock_irq(&lo->lo_lock);
	lo->lo_state = Lo_rundown;
	lo->lo_backing_file = NULL;
871
	spin_unlock_irq(&lo->lo_lock);
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	loop_release_xfer(lo);
	lo->transfer = NULL;
	lo->ioctl = NULL;
	lo->lo_device = NULL;
	lo->lo_encryption = NULL;
	lo->lo_offset = 0;
	lo->lo_sizelimit = 0;
	lo->lo_encrypt_key_size = 0;
	memset(lo->lo_encrypt_key, 0, LO_KEY_SIZE);
	memset(lo->lo_crypt_name, 0, LO_NAME_SIZE);
	memset(lo->lo_file_name, 0, LO_NAME_SIZE);
884 885
	if (bdev) {
		bdput(bdev);
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		invalidate_bdev(bdev);
887
	}
888
	set_capacity(lo->lo_disk, 0);
889
	loop_sysfs_exit(lo);
890
	if (bdev) {
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		bd_set_size(bdev, 0);
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		/* let user-space know about this change */
		kobject_uevent(&disk_to_dev(bdev->bd_disk)->kobj, KOBJ_CHANGE);
	}
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	mapping_set_gfp_mask(filp->f_mapping, gfp);
	lo->lo_state = Lo_unbound;
	/* This is safe: open() is still holding a reference. */
	module_put(THIS_MODULE);
899 900
	blk_mq_unfreeze_queue(lo->lo_queue);

901
	if (lo->lo_flags & LO_FLAGS_PARTSCAN && bdev)
902
		loop_reread_partitions(lo, bdev);
903 904 905
	lo->lo_flags = 0;
	if (!part_shift)
		lo->lo_disk->flags |= GENHD_FL_NO_PART_SCAN;
906 907
	destroy_workqueue(lo->wq);
	lo->wq = NULL;
908 909 910 911 912 913 914 915
	mutex_unlock(&lo->lo_ctl_mutex);
	/*
	 * Need not hold lo_ctl_mutex to fput backing file.
	 * Calling fput holding lo_ctl_mutex triggers a circular
	 * lock dependency possibility warning as fput can take
	 * bd_mutex which is usually taken before lo_ctl_mutex.
	 */
	fput(filp);
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	return 0;
}

static int
loop_set_status(struct loop_device *lo, const struct loop_info64 *info)
{
	int err;
	struct loop_func_table *xfer;
924
	kuid_t uid = current_uid();
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926
	if (lo->lo_encrypt_key_size &&
927
	    !uid_eq(lo->lo_key_owner, uid) &&
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	    !capable(CAP_SYS_ADMIN))
		return -EPERM;
	if (lo->lo_state != Lo_bound)
		return -ENXIO;
	if ((unsigned int) info->lo_encrypt_key_size > LO_KEY_SIZE)
		return -EINVAL;

	err = loop_release_xfer(lo);
	if (err)
		return err;

	if (info->lo_encrypt_type) {
		unsigned int type = info->lo_encrypt_type;

		if (type >= MAX_LO_CRYPT)
			return -EINVAL;
		xfer = xfer_funcs[type];
		if (xfer == NULL)
			return -EINVAL;
	} else
		xfer = NULL;

	err = loop_init_xfer(lo, xfer, info);
	if (err)
		return err;

	if (lo->lo_offset != info->lo_offset ||
955
	    lo->lo_sizelimit != info->lo_sizelimit)
956
		if (figure_loop_size(lo, info->lo_offset, info->lo_sizelimit))
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			return -EFBIG;
958

959
	loop_config_discard(lo);
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	memcpy(lo->lo_file_name, info->lo_file_name, LO_NAME_SIZE);
	memcpy(lo->lo_crypt_name, info->lo_crypt_name, LO_NAME_SIZE);
	lo->lo_file_name[LO_NAME_SIZE-1] = 0;
	lo->lo_crypt_name[LO_NAME_SIZE-1] = 0;

	if (!xfer)
		xfer = &none_funcs;
	lo->transfer = xfer->transfer;
	lo->ioctl = xfer->ioctl;

971 972 973 974
	if ((lo->lo_flags & LO_FLAGS_AUTOCLEAR) !=
	     (info->lo_flags & LO_FLAGS_AUTOCLEAR))
		lo->lo_flags ^= LO_FLAGS_AUTOCLEAR;

975 976 977 978
	if ((info->lo_flags & LO_FLAGS_PARTSCAN) &&
	     !(lo->lo_flags & LO_FLAGS_PARTSCAN)) {
		lo->lo_flags |= LO_FLAGS_PARTSCAN;
		lo->lo_disk->flags &= ~GENHD_FL_NO_PART_SCAN;
979
		loop_reread_partitions(lo, lo->lo_device);
980 981
	}

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	lo->lo_encrypt_key_size = info->lo_encrypt_key_size;
	lo->lo_init[0] = info->lo_init[0];
	lo->lo_init[1] = info->lo_init[1];
	if (info->lo_encrypt_key_size) {
		memcpy(lo->lo_encrypt_key, info->lo_encrypt_key,
		       info->lo_encrypt_key_size);
988
		lo->lo_key_owner = uid;
989
	}
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	return 0;
}

static int
loop_get_status(struct loop_device *lo, struct loop_info64 *info)
{
	struct file *file = lo->lo_backing_file;
	struct kstat stat;
	int error;

	if (lo->lo_state != Lo_bound)
		return -ENXIO;
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	error = vfs_getattr(&file->f_path, &stat);
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	if (error)
		return error;
	memset(info, 0, sizeof(*info));
	info->lo_number = lo->lo_number;
	info->lo_device = huge_encode_dev(stat.dev);
	info->lo_inode = stat.ino;
	info->lo_rdevice = huge_encode_dev(lo->lo_device ? stat.rdev : stat.dev);
	info->lo_offset = lo->lo_offset;
	info->lo_sizelimit = lo->lo_sizelimit;
	info->lo_flags = lo->lo_flags;
	memcpy(info->lo_file_name, lo->lo_file_name, LO_NAME_SIZE);
	memcpy(info->lo_crypt_name, lo->lo_crypt_name, LO_NAME_SIZE);
	info->lo_encrypt_type =
		lo->lo_encryption ? lo->lo_encryption->number : 0;
	if (lo->lo_encrypt_key_size && capable(CAP_SYS_ADMIN)) {
		info->lo_encrypt_key_size = lo->lo_encrypt_key_size;
		memcpy(info->lo_encrypt_key, lo->lo_encrypt_key,
		       lo->lo_encrypt_key_size);
	}
	return 0;
}

static void
loop_info64_from_old(const struct loop_info *info, struct loop_info64 *info64)
{
	memset(info64, 0, sizeof(*info64));
	info64->lo_number = info->lo_number;
	info64->lo_device = info->lo_device;
	info64->lo_inode = info->lo_inode;
	info64->lo_rdevice = info->lo_rdevice;
	info64->lo_offset = info->lo_offset;
	info64->lo_sizelimit = 0;
	info64->lo_encrypt_type = info->lo_encrypt_type;
	info64->lo_encrypt_key_size = info->lo_encrypt_key_size;
	info64->lo_flags = info->lo_flags;
	info64->lo_init[0] = info->lo_init[0];
	info64->lo_init[1] = info->lo_init[1];
	if (info->lo_encrypt_type == LO_CRYPT_CRYPTOAPI)
		memcpy(info64->lo_crypt_name, info->lo_name, LO_NAME_SIZE);
	else
		memcpy(info64->lo_file_name, info->lo_name, LO_NAME_SIZE);
	memcpy(info64->lo_encrypt_key, info->lo_encrypt_key, LO_KEY_SIZE);
}

static int
loop_info64_to_old(const struct loop_info64 *info64, struct loop_info *info)
{
	memset(info, 0, sizeof(*info));
	info->lo_number = info64->lo_number;
	info->lo_device = info64->lo_device;
	info->lo_inode = info64->lo_inode;
	info->lo_rdevice = info64->lo_rdevice;
	info->lo_offset = info64->lo_offset;
	info->lo_encrypt_type = info64->lo_encrypt_type;
	info->lo_encrypt_key_size = info64->lo_encrypt_key_size;
	info->lo_flags = info64->lo_flags;
	info->lo_init[0] = info64->lo_init[0];
	info->lo_init[1] = info64->lo_init[1];
	if (info->lo_encrypt_type == LO_CRYPT_CRYPTOAPI)
		memcpy(info->lo_name, info64->lo_crypt_name, LO_NAME_SIZE);
	else
		memcpy(info->lo_name, info64->lo_file_name, LO_NAME_SIZE);
	memcpy(info->lo_encrypt_key, info64->lo_encrypt_key, LO_KEY_SIZE);

	/* error in case values were truncated */
	if (info->lo_device != info64->lo_device ||
	    info->lo_rdevice != info64->lo_rdevice ||
	    info->lo_inode != info64->lo_inode ||
	    info->lo_offset != info64->lo_offset)
		return -EOVERFLOW;

	return 0;
}

static int
loop_set_status_old(struct loop_device *lo, const struct loop_info __user *arg)
{
	struct loop_info info;
	struct loop_info64 info64;

	if (copy_from_user(&info, arg, sizeof (struct loop_info)))
		return -EFAULT;
	loop_info64_from_old(&info, &info64);
	return loop_set_status(lo, &info64);
}

static int
loop_set_status64(struct loop_device *lo, const struct loop_info64 __user *arg)
{
	struct loop_info64 info64;

	if (copy_from_user(&info64, arg, sizeof (struct loop_info64)))
		return -EFAULT;
	return loop_set_status(lo, &info64);
}

static int
loop_get_status_old(struct loop_device *lo, struct loop_info __user *arg) {
	struct loop_info info;
	struct loop_info64 info64;
	int err = 0;

	if (!arg)
		err = -EINVAL;
	if (!err)
		err = loop_get_status(lo, &info64);
	if (!err)
		err = loop_info64_to_old(&info64, &info);
	if (!err && copy_to_user(arg, &info, sizeof(info)))
		err = -EFAULT;

	return err;
}

static int
loop_get_status64(struct loop_device *lo, struct loop_info64 __user *arg) {
	struct loop_info64 info64;
	int err = 0;

	if (!arg)
		err = -EINVAL;
	if (!err)
		err = loop_get_status(lo, &info64);
	if (!err && copy_to_user(arg, &info64, sizeof(info64)))
		err = -EFAULT;

	return err;
}

1133 1134 1135
static int loop_set_capacity(struct loop_device *lo, struct block_device *bdev)
{
	if (unlikely(lo->lo_state != Lo_bound))
1136
		return -ENXIO;
1137

1138
	return figure_loop_size(lo, lo->lo_offset, lo->lo_sizelimit);
1139 1140
}

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Al Viro 已提交
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static int lo_ioctl(struct block_device *bdev, fmode_t mode,
L
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	unsigned int cmd, unsigned long arg)
{
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	struct loop_device *lo = bdev->bd_disk->private_data;
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	int err;

1147
	mutex_lock_nested(&lo->lo_ctl_mutex, 1);
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	switch (cmd) {
	case LOOP_SET_FD:
A
Al Viro 已提交
1150
		err = loop_set_fd(lo, mode, bdev, arg);
L
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1151 1152
		break;
	case LOOP_CHANGE_FD:
A
Al Viro 已提交
1153
		err = loop_change_fd(lo, bdev, arg);
L
Linus Torvalds 已提交
1154 1155
		break;
	case LOOP_CLR_FD:
1156
		/* loop_clr_fd would have unlocked lo_ctl_mutex on success */
1157
		err = loop_clr_fd(lo);
1158 1159
		if (!err)
			goto out_unlocked;
L
Linus Torvalds 已提交
1160 1161
		break;
	case LOOP_SET_STATUS:
1162 1163 1164 1165
		err = -EPERM;
		if ((mode & FMODE_WRITE) || capable(CAP_SYS_ADMIN))
			err = loop_set_status_old(lo,
					(struct loop_info __user *)arg);
L
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1166 1167 1168 1169 1170
		break;
	case LOOP_GET_STATUS:
		err = loop_get_status_old(lo, (struct loop_info __user *) arg);
		break;
	case LOOP_SET_STATUS64:
1171 1172 1173 1174
		err = -EPERM;
		if ((mode & FMODE_WRITE) || capable(CAP_SYS_ADMIN))
			err = loop_set_status64(lo,
					(struct loop_info64 __user *) arg);
L
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1175 1176 1177 1178
		break;
	case LOOP_GET_STATUS64:
		err = loop_get_status64(lo, (struct loop_info64 __user *) arg);
		break;
1179 1180 1181 1182 1183
	case LOOP_SET_CAPACITY:
		err = -EPERM;
		if ((mode & FMODE_WRITE) || capable(CAP_SYS_ADMIN))
			err = loop_set_capacity(lo, bdev);
		break;
L
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1184 1185 1186
	default:
		err = lo->ioctl ? lo->ioctl(lo, cmd, arg) : -EINVAL;
	}
1187
	mutex_unlock(&lo->lo_ctl_mutex);
1188 1189

out_unlocked:
L
Linus Torvalds 已提交
1190 1191 1192
	return err;
}

1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213
#ifdef CONFIG_COMPAT
struct compat_loop_info {
	compat_int_t	lo_number;      /* ioctl r/o */
	compat_dev_t	lo_device;      /* ioctl r/o */
	compat_ulong_t	lo_inode;       /* ioctl r/o */
	compat_dev_t	lo_rdevice;     /* ioctl r/o */
	compat_int_t	lo_offset;
	compat_int_t	lo_encrypt_type;
	compat_int_t	lo_encrypt_key_size;    /* ioctl w/o */
	compat_int_t	lo_flags;       /* ioctl r/o */
	char		lo_name[LO_NAME_SIZE];
	unsigned char	lo_encrypt_key[LO_KEY_SIZE]; /* ioctl w/o */
	compat_ulong_t	lo_init[2];
	char		reserved[4];
};

/*
 * Transfer 32-bit compatibility structure in userspace to 64-bit loop info
 * - noinlined to reduce stack space usage in main part of driver
 */
static noinline int
A
Al Viro 已提交
1214
loop_info64_from_compat(const struct compat_loop_info __user *arg,
1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311
			struct loop_info64 *info64)
{
	struct compat_loop_info info;

	if (copy_from_user(&info, arg, sizeof(info)))
		return -EFAULT;

	memset(info64, 0, sizeof(*info64));
	info64->lo_number = info.lo_number;
	info64->lo_device = info.lo_device;
	info64->lo_inode = info.lo_inode;
	info64->lo_rdevice = info.lo_rdevice;
	info64->lo_offset = info.lo_offset;
	info64->lo_sizelimit = 0;
	info64->lo_encrypt_type = info.lo_encrypt_type;
	info64->lo_encrypt_key_size = info.lo_encrypt_key_size;
	info64->lo_flags = info.lo_flags;
	info64->lo_init[0] = info.lo_init[0];
	info64->lo_init[1] = info.lo_init[1];
	if (info.lo_encrypt_type == LO_CRYPT_CRYPTOAPI)
		memcpy(info64->lo_crypt_name, info.lo_name, LO_NAME_SIZE);
	else
		memcpy(info64->lo_file_name, info.lo_name, LO_NAME_SIZE);
	memcpy(info64->lo_encrypt_key, info.lo_encrypt_key, LO_KEY_SIZE);
	return 0;
}

/*
 * Transfer 64-bit loop info to 32-bit compatibility structure in userspace
 * - noinlined to reduce stack space usage in main part of driver
 */
static noinline int
loop_info64_to_compat(const struct loop_info64 *info64,
		      struct compat_loop_info __user *arg)
{
	struct compat_loop_info info;

	memset(&info, 0, sizeof(info));
	info.lo_number = info64->lo_number;
	info.lo_device = info64->lo_device;
	info.lo_inode = info64->lo_inode;
	info.lo_rdevice = info64->lo_rdevice;
	info.lo_offset = info64->lo_offset;
	info.lo_encrypt_type = info64->lo_encrypt_type;
	info.lo_encrypt_key_size = info64->lo_encrypt_key_size;
	info.lo_flags = info64->lo_flags;
	info.lo_init[0] = info64->lo_init[0];
	info.lo_init[1] = info64->lo_init[1];
	if (info.lo_encrypt_type == LO_CRYPT_CRYPTOAPI)
		memcpy(info.lo_name, info64->lo_crypt_name, LO_NAME_SIZE);
	else
		memcpy(info.lo_name, info64->lo_file_name, LO_NAME_SIZE);
	memcpy(info.lo_encrypt_key, info64->lo_encrypt_key, LO_KEY_SIZE);

	/* error in case values were truncated */
	if (info.lo_device != info64->lo_device ||
	    info.lo_rdevice != info64->lo_rdevice ||
	    info.lo_inode != info64->lo_inode ||
	    info.lo_offset != info64->lo_offset ||
	    info.lo_init[0] != info64->lo_init[0] ||
	    info.lo_init[1] != info64->lo_init[1])
		return -EOVERFLOW;

	if (copy_to_user(arg, &info, sizeof(info)))
		return -EFAULT;
	return 0;
}

static int
loop_set_status_compat(struct loop_device *lo,
		       const struct compat_loop_info __user *arg)
{
	struct loop_info64 info64;
	int ret;

	ret = loop_info64_from_compat(arg, &info64);
	if (ret < 0)
		return ret;
	return loop_set_status(lo, &info64);
}

static int
loop_get_status_compat(struct loop_device *lo,
		       struct compat_loop_info __user *arg)
{
	struct loop_info64 info64;
	int err = 0;

	if (!arg)
		err = -EINVAL;
	if (!err)
		err = loop_get_status(lo, &info64);
	if (!err)
		err = loop_info64_to_compat(&info64, arg);
	return err;
}

A
Al Viro 已提交
1312 1313
static int lo_compat_ioctl(struct block_device *bdev, fmode_t mode,
			   unsigned int cmd, unsigned long arg)
1314
{
A
Al Viro 已提交
1315
	struct loop_device *lo = bdev->bd_disk->private_data;
1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330
	int err;

	switch(cmd) {
	case LOOP_SET_STATUS:
		mutex_lock(&lo->lo_ctl_mutex);
		err = loop_set_status_compat(
			lo, (const struct compat_loop_info __user *) arg);
		mutex_unlock(&lo->lo_ctl_mutex);
		break;
	case LOOP_GET_STATUS:
		mutex_lock(&lo->lo_ctl_mutex);
		err = loop_get_status_compat(
			lo, (struct compat_loop_info __user *) arg);
		mutex_unlock(&lo->lo_ctl_mutex);
		break;
1331
	case LOOP_SET_CAPACITY:
1332 1333 1334 1335 1336 1337
	case LOOP_CLR_FD:
	case LOOP_GET_STATUS64:
	case LOOP_SET_STATUS64:
		arg = (unsigned long) compat_ptr(arg);
	case LOOP_SET_FD:
	case LOOP_CHANGE_FD:
A
Al Viro 已提交
1338
		err = lo_ioctl(bdev, mode, cmd, arg);
1339 1340 1341 1342 1343 1344 1345 1346 1347
		break;
	default:
		err = -ENOIOCTLCMD;
		break;
	}
	return err;
}
#endif

A
Al Viro 已提交
1348
static int lo_open(struct block_device *bdev, fmode_t mode)
L
Linus Torvalds 已提交
1349
{
1350 1351 1352 1353 1354 1355 1356 1357 1358
	struct loop_device *lo;
	int err = 0;

	mutex_lock(&loop_index_mutex);
	lo = bdev->bd_disk->private_data;
	if (!lo) {
		err = -ENXIO;
		goto out;
	}
L
Linus Torvalds 已提交
1359

1360
	atomic_inc(&lo->lo_refcnt);
1361 1362 1363
out:
	mutex_unlock(&loop_index_mutex);
	return err;
L
Linus Torvalds 已提交
1364 1365
}

1366
static void lo_release(struct gendisk *disk, fmode_t mode)
L
Linus Torvalds 已提交
1367
{
A
Al Viro 已提交
1368
	struct loop_device *lo = disk->private_data;
1369
	int err;
L
Linus Torvalds 已提交
1370

1371 1372
	if (atomic_dec_return(&lo->lo_refcnt))
		return;
1373

1374
	mutex_lock(&lo->lo_ctl_mutex);
1375 1376 1377 1378 1379
	if (lo->lo_flags & LO_FLAGS_AUTOCLEAR) {
		/*
		 * In autoclear mode, stop the loop thread
		 * and remove configuration after last close.
		 */
1380
		err = loop_clr_fd(lo);
1381
		if (!err)
1382
			return;
1383 1384 1385 1386 1387 1388 1389
	} else {
		/*
		 * Otherwise keep thread (if running) and config,
		 * but flush possible ongoing bios in thread.
		 */
		loop_flush(lo);
	}
1390

1391
	mutex_unlock(&lo->lo_ctl_mutex);
L
Linus Torvalds 已提交
1392 1393
}

1394
static const struct block_device_operations lo_fops = {
L
Linus Torvalds 已提交
1395
	.owner =	THIS_MODULE,
A
Al Viro 已提交
1396 1397 1398
	.open =		lo_open,
	.release =	lo_release,
	.ioctl =	lo_ioctl,
1399
#ifdef CONFIG_COMPAT
A
Al Viro 已提交
1400
	.compat_ioctl =	lo_compat_ioctl,
1401
#endif
L
Linus Torvalds 已提交
1402 1403 1404 1405 1406
};

/*
 * And now the modules code and kernel interface.
 */
1407
static int max_loop;
N
Namhyung Kim 已提交
1408
module_param(max_loop, int, S_IRUGO);
K
Ken Chen 已提交
1409
MODULE_PARM_DESC(max_loop, "Maximum number of loop devices");
N
Namhyung Kim 已提交
1410
module_param(max_part, int, S_IRUGO);
1411
MODULE_PARM_DESC(max_part, "Maximum number of partitions per loop device");
L
Linus Torvalds 已提交
1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424
MODULE_LICENSE("GPL");
MODULE_ALIAS_BLOCKDEV_MAJOR(LOOP_MAJOR);

int loop_register_transfer(struct loop_func_table *funcs)
{
	unsigned int n = funcs->number;

	if (n >= MAX_LO_CRYPT || xfer_funcs[n])
		return -EINVAL;
	xfer_funcs[n] = funcs;
	return 0;
}

1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436
static int unregister_transfer_cb(int id, void *ptr, void *data)
{
	struct loop_device *lo = ptr;
	struct loop_func_table *xfer = data;

	mutex_lock(&lo->lo_ctl_mutex);
	if (lo->lo_encryption == xfer)
		loop_release_xfer(lo);
	mutex_unlock(&lo->lo_ctl_mutex);
	return 0;
}

L
Linus Torvalds 已提交
1437 1438 1439 1440 1441 1442 1443 1444 1445
int loop_unregister_transfer(int number)
{
	unsigned int n = number;
	struct loop_func_table *xfer;

	if (n == 0 || n >= MAX_LO_CRYPT || (xfer = xfer_funcs[n]) == NULL)
		return -EINVAL;

	xfer_funcs[n] = NULL;
1446
	idr_for_each(&loop_index_idr, &unregister_transfer_cb, xfer);
L
Linus Torvalds 已提交
1447 1448 1449 1450 1451 1452
	return 0;
}

EXPORT_SYMBOL(loop_register_transfer);
EXPORT_SYMBOL(loop_unregister_transfer);

1453 1454 1455 1456
static int loop_queue_rq(struct blk_mq_hw_ctx *hctx,
		const struct blk_mq_queue_data *bd)
{
	struct loop_cmd *cmd = blk_mq_rq_to_pdu(bd->rq);
1457
	struct loop_device *lo = cmd->rq->q->queuedata;
1458 1459 1460

	blk_mq_start_request(bd->rq);

1461 1462 1463
	if (lo->lo_state != Lo_bound)
		return -EIO;

1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476
	if (cmd->rq->cmd_flags & REQ_WRITE) {
		struct loop_device *lo = cmd->rq->q->queuedata;
		bool need_sched = true;

		spin_lock_irq(&lo->lo_lock);
		if (lo->write_started)
			need_sched = false;
		else
			lo->write_started = true;
		list_add_tail(&cmd->list, &lo->write_cmd_head);
		spin_unlock_irq(&lo->lo_lock);

		if (need_sched)
1477
			queue_work(lo->wq, &lo->write_work);
1478
	} else {
1479
		queue_work(lo->wq, &cmd->read_work);
1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493
	}

	return BLK_MQ_RQ_QUEUE_OK;
}

static void loop_handle_cmd(struct loop_cmd *cmd)
{
	const bool write = cmd->rq->cmd_flags & REQ_WRITE;
	struct loop_device *lo = cmd->rq->q->queuedata;
	int ret = -EIO;

	if (write && (lo->lo_flags & LO_FLAGS_READ_ONLY))
		goto failed;

M
Ming Lei 已提交
1494
	ret = do_req_filebacked(lo, cmd->rq);
1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552

 failed:
	if (ret)
		cmd->rq->errors = -EIO;
	blk_mq_complete_request(cmd->rq);
}

static void loop_queue_write_work(struct work_struct *work)
{
	struct loop_device *lo =
		container_of(work, struct loop_device, write_work);
	LIST_HEAD(cmd_list);

	spin_lock_irq(&lo->lo_lock);
 repeat:
	list_splice_init(&lo->write_cmd_head, &cmd_list);
	spin_unlock_irq(&lo->lo_lock);

	while (!list_empty(&cmd_list)) {
		struct loop_cmd *cmd = list_first_entry(&cmd_list,
				struct loop_cmd, list);
		list_del_init(&cmd->list);
		loop_handle_cmd(cmd);
	}

	spin_lock_irq(&lo->lo_lock);
	if (!list_empty(&lo->write_cmd_head))
		goto repeat;
	lo->write_started = false;
	spin_unlock_irq(&lo->lo_lock);
}

static void loop_queue_read_work(struct work_struct *work)
{
	struct loop_cmd *cmd =
		container_of(work, struct loop_cmd, read_work);

	loop_handle_cmd(cmd);
}

static int loop_init_request(void *data, struct request *rq,
		unsigned int hctx_idx, unsigned int request_idx,
		unsigned int numa_node)
{
	struct loop_cmd *cmd = blk_mq_rq_to_pdu(rq);

	cmd->rq = rq;
	INIT_WORK(&cmd->read_work, loop_queue_read_work);

	return 0;
}

static struct blk_mq_ops loop_mq_ops = {
	.queue_rq       = loop_queue_rq,
	.map_queue      = blk_mq_map_queue,
	.init_request	= loop_init_request,
};

1553
static int loop_add(struct loop_device **l, int i)
1554 1555 1556
{
	struct loop_device *lo;
	struct gendisk *disk;
1557
	int err;
1558

1559
	err = -ENOMEM;
1560
	lo = kzalloc(sizeof(*lo), GFP_KERNEL);
1561
	if (!lo)
1562
		goto out;
1563

1564 1565
	lo->lo_state = Lo_unbound;

T
Tejun Heo 已提交
1566
	/* allocate id, if @id >= 0, we're requesting that specific id */
1567
	if (i >= 0) {
T
Tejun Heo 已提交
1568 1569
		err = idr_alloc(&loop_index_idr, lo, i, i + 1, GFP_KERNEL);
		if (err == -ENOSPC)
1570 1571
			err = -EEXIST;
	} else {
T
Tejun Heo 已提交
1572
		err = idr_alloc(&loop_index_idr, lo, 0, 0, GFP_KERNEL);
1573 1574 1575
	}
	if (err < 0)
		goto out_free_dev;
T
Tejun Heo 已提交
1576
	i = err;
1577

1578
	err = -ENOMEM;
1579 1580 1581 1582 1583 1584 1585 1586 1587 1588
	lo->tag_set.ops = &loop_mq_ops;
	lo->tag_set.nr_hw_queues = 1;
	lo->tag_set.queue_depth = 128;
	lo->tag_set.numa_node = NUMA_NO_NODE;
	lo->tag_set.cmd_size = sizeof(struct loop_cmd);
	lo->tag_set.flags = BLK_MQ_F_SHOULD_MERGE | BLK_MQ_F_SG_MERGE;
	lo->tag_set.driver_data = lo;

	err = blk_mq_alloc_tag_set(&lo->tag_set);
	if (err)
1589
		goto out_free_idr;
1590

1591 1592 1593 1594 1595
	lo->lo_queue = blk_mq_init_queue(&lo->tag_set);
	if (IS_ERR_OR_NULL(lo->lo_queue)) {
		err = PTR_ERR(lo->lo_queue);
		goto out_cleanup_tags;
	}
1596 1597
	lo->lo_queue->queuedata = lo;

1598 1599 1600 1601 1602 1603
	/*
	 * It doesn't make sense to enable merge because the I/O
	 * submitted to backing file is handled page by page.
	 */
	queue_flag_set_unlocked(QUEUE_FLAG_NOMERGES, lo->lo_queue);

1604 1605 1606
	INIT_LIST_HEAD(&lo->write_cmd_head);
	INIT_WORK(&lo->write_work, loop_queue_write_work);

1607
	disk = lo->lo_disk = alloc_disk(1 << part_shift);
1608 1609 1610
	if (!disk)
		goto out_free_queue;

1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631
	/*
	 * Disable partition scanning by default. The in-kernel partition
	 * scanning can be requested individually per-device during its
	 * setup. Userspace can always add and remove partitions from all
	 * devices. The needed partition minors are allocated from the
	 * extended minor space, the main loop device numbers will continue
	 * to match the loop minors, regardless of the number of partitions
	 * used.
	 *
	 * If max_part is given, partition scanning is globally enabled for
	 * all loop devices. The minors for the main loop devices will be
	 * multiples of max_part.
	 *
	 * Note: Global-for-all-devices, set-only-at-init, read-only module
	 * parameteters like 'max_loop' and 'max_part' make things needlessly
	 * complicated, are too static, inflexible and may surprise
	 * userspace tools. Parameters like this in general should be avoided.
	 */
	if (!part_shift)
		disk->flags |= GENHD_FL_NO_PART_SCAN;
	disk->flags |= GENHD_FL_EXT_DEVT;
1632
	mutex_init(&lo->lo_ctl_mutex);
1633
	atomic_set(&lo->lo_refcnt, 0);
1634 1635 1636
	lo->lo_number		= i;
	spin_lock_init(&lo->lo_lock);
	disk->major		= LOOP_MAJOR;
1637
	disk->first_minor	= i << part_shift;
1638 1639 1640 1641
	disk->fops		= &lo_fops;
	disk->private_data	= lo;
	disk->queue		= lo->lo_queue;
	sprintf(disk->disk_name, "loop%d", i);
1642 1643 1644
	add_disk(disk);
	*l = lo;
	return lo->lo_number;
1645 1646 1647

out_free_queue:
	blk_cleanup_queue(lo->lo_queue);
1648 1649
out_cleanup_tags:
	blk_mq_free_tag_set(&lo->tag_set);
1650 1651
out_free_idr:
	idr_remove(&loop_index_idr, i);
1652 1653 1654
out_free_dev:
	kfree(lo);
out:
1655
	return err;
1656 1657
}

1658
static void loop_remove(struct loop_device *lo)
L
Linus Torvalds 已提交
1659
{
1660
	blk_cleanup_queue(lo->lo_queue);
1661
	del_gendisk(lo->lo_disk);
1662
	blk_mq_free_tag_set(&lo->tag_set);
1663 1664 1665
	put_disk(lo->lo_disk);
	kfree(lo);
}
L
Linus Torvalds 已提交
1666

1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678
static int find_free_cb(int id, void *ptr, void *data)
{
	struct loop_device *lo = ptr;
	struct loop_device **l = data;

	if (lo->lo_state == Lo_unbound) {
		*l = lo;
		return 1;
	}
	return 0;
}

1679
static int loop_lookup(struct loop_device **l, int i)
K
Ken Chen 已提交
1680 1681
{
	struct loop_device *lo;
1682
	int ret = -ENODEV;
K
Ken Chen 已提交
1683

1684 1685 1686 1687 1688 1689 1690 1691 1692
	if (i < 0) {
		int err;

		err = idr_for_each(&loop_index_idr, &find_free_cb, &lo);
		if (err == 1) {
			*l = lo;
			ret = lo->lo_number;
		}
		goto out;
K
Ken Chen 已提交
1693 1694
	}

1695
	/* lookup and return a specific i */
1696
	lo = idr_find(&loop_index_idr, i);
K
Ken Chen 已提交
1697
	if (lo) {
1698 1699
		*l = lo;
		ret = lo->lo_number;
K
Ken Chen 已提交
1700
	}
1701
out:
1702
	return ret;
K
Ken Chen 已提交
1703 1704
}

1705 1706
static struct kobject *loop_probe(dev_t dev, int *part, void *data)
{
A
Al Viro 已提交
1707
	struct loop_device *lo;
1708
	struct kobject *kobj;
1709
	int err;
1710

1711 1712 1713 1714 1715
	mutex_lock(&loop_index_mutex);
	err = loop_lookup(&lo, MINOR(dev) >> part_shift);
	if (err < 0)
		err = loop_add(&lo, MINOR(dev) >> part_shift);
	if (err < 0)
1716
		kobj = NULL;
1717 1718 1719
	else
		kobj = get_disk(lo->lo_disk);
	mutex_unlock(&loop_index_mutex);
1720 1721

	*part = 0;
1722
	return kobj;
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
static long loop_control_ioctl(struct file *file, unsigned int cmd,
			       unsigned long parm)
{
	struct loop_device *lo;
	int ret = -ENOSYS;

	mutex_lock(&loop_index_mutex);
	switch (cmd) {
	case LOOP_CTL_ADD:
		ret = loop_lookup(&lo, parm);
		if (ret >= 0) {
			ret = -EEXIST;
			break;
		}
		ret = loop_add(&lo, parm);
		break;
	case LOOP_CTL_REMOVE:
		ret = loop_lookup(&lo, parm);
		if (ret < 0)
			break;
		mutex_lock(&lo->lo_ctl_mutex);
		if (lo->lo_state != Lo_unbound) {
			ret = -EBUSY;
			mutex_unlock(&lo->lo_ctl_mutex);
			break;
		}
1751
		if (atomic_read(&lo->lo_refcnt) > 0) {
1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788
			ret = -EBUSY;
			mutex_unlock(&lo->lo_ctl_mutex);
			break;
		}
		lo->lo_disk->private_data = NULL;
		mutex_unlock(&lo->lo_ctl_mutex);
		idr_remove(&loop_index_idr, lo->lo_number);
		loop_remove(lo);
		break;
	case LOOP_CTL_GET_FREE:
		ret = loop_lookup(&lo, -1);
		if (ret >= 0)
			break;
		ret = loop_add(&lo, -1);
	}
	mutex_unlock(&loop_index_mutex);

	return ret;
}

static const struct file_operations loop_ctl_fops = {
	.open		= nonseekable_open,
	.unlocked_ioctl	= loop_control_ioctl,
	.compat_ioctl	= loop_control_ioctl,
	.owner		= THIS_MODULE,
	.llseek		= noop_llseek,
};

static struct miscdevice loop_misc = {
	.minor		= LOOP_CTRL_MINOR,
	.name		= "loop-control",
	.fops		= &loop_ctl_fops,
};

MODULE_ALIAS_MISCDEV(LOOP_CTRL_MINOR);
MODULE_ALIAS("devname:loop-control");

1789 1790
static int __init loop_init(void)
{
K
Ken Chen 已提交
1791 1792
	int i, nr;
	unsigned long range;
1793
	struct loop_device *lo;
1794
	int err;
K
Ken Chen 已提交
1795

1796 1797 1798
	err = misc_register(&loop_misc);
	if (err < 0)
		return err;
1799 1800

	part_shift = 0;
N
Namhyung Kim 已提交
1801
	if (max_part > 0) {
1802 1803
		part_shift = fls(max_part);

N
Namhyung Kim 已提交
1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814
		/*
		 * Adjust max_part according to part_shift as it is exported
		 * to user space so that user can decide correct minor number
		 * if [s]he want to create more devices.
		 *
		 * Note that -1 is required because partition 0 is reserved
		 * for the whole disk.
		 */
		max_part = (1UL << part_shift) - 1;
	}

1815 1816 1817 1818
	if ((1UL << part_shift) > DISK_MAX_PARTS) {
		err = -EINVAL;
		goto misc_out;
	}
1819

1820 1821 1822 1823
	if (max_loop > 1UL << (MINORBITS - part_shift)) {
		err = -EINVAL;
		goto misc_out;
	}
L
Linus Torvalds 已提交
1824

1825 1826 1827 1828 1829 1830 1831 1832
	/*
	 * If max_loop is specified, create that many devices upfront.
	 * This also becomes a hard limit. If max_loop is not specified,
	 * create CONFIG_BLK_DEV_LOOP_MIN_COUNT loop devices at module
	 * init time. Loop devices can be requested on-demand with the
	 * /dev/loop-control interface, or be instantiated by accessing
	 * a 'dead' device node.
	 */
1833
	if (max_loop) {
K
Ken Chen 已提交
1834
		nr = max_loop;
1835
		range = max_loop << part_shift;
K
Ken Chen 已提交
1836
	} else {
1837
		nr = CONFIG_BLK_DEV_LOOP_MIN_COUNT;
1838
		range = 1UL << MINORBITS;
K
Ken Chen 已提交
1839 1840
	}

1841 1842 1843 1844
	if (register_blkdev(LOOP_MAJOR, "loop")) {
		err = -EIO;
		goto misc_out;
	}
L
Linus Torvalds 已提交
1845

K
Ken Chen 已提交
1846 1847 1848
	blk_register_region(MKDEV(LOOP_MAJOR, 0), range,
				  THIS_MODULE, loop_probe, NULL, NULL);

1849
	/* pre-create number of devices given by config or max_loop */
1850 1851 1852 1853 1854
	mutex_lock(&loop_index_mutex);
	for (i = 0; i < nr; i++)
		loop_add(&lo, i);
	mutex_unlock(&loop_index_mutex);

1855
	printk(KERN_INFO "loop: module loaded\n");
L
Linus Torvalds 已提交
1856
	return 0;
1857 1858 1859 1860

misc_out:
	misc_deregister(&loop_misc);
	return err;
1861
}
K
Ken Chen 已提交
1862

1863 1864 1865
static int loop_exit_cb(int id, void *ptr, void *data)
{
	struct loop_device *lo = ptr;
K
Ken Chen 已提交
1866

1867 1868
	loop_remove(lo);
	return 0;
L
Linus Torvalds 已提交
1869 1870
}

1871
static void __exit loop_exit(void)
L
Linus Torvalds 已提交
1872
{
K
Ken Chen 已提交
1873
	unsigned long range;
L
Linus Torvalds 已提交
1874

1875
	range = max_loop ? max_loop << part_shift : 1UL << MINORBITS;
K
Ken Chen 已提交
1876

1877 1878
	idr_for_each(&loop_index_idr, &loop_exit_cb, NULL);
	idr_destroy(&loop_index_idr);
1879

K
Ken Chen 已提交
1880
	blk_unregister_region(MKDEV(LOOP_MAJOR, 0), range);
1881
	unregister_blkdev(LOOP_MAJOR, "loop");
1882 1883

	misc_deregister(&loop_misc);
L
Linus Torvalds 已提交
1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897
}

module_init(loop_init);
module_exit(loop_exit);

#ifndef MODULE
static int __init max_loop_setup(char *str)
{
	max_loop = simple_strtol(str, NULL, 0);
	return 1;
}

__setup("max_loop=", max_loop_setup);
#endif