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CommitLineData
1da177e4
LT
1/*
2 * linux/drivers/block/loop.c
3 *
4 * Written by Theodore Ts'o, 3/29/93
5 *
6 * Copyright 1993 by Theodore Ts'o. Redistribution of this file is
7 * permitted under the GNU General Public License.
8 *
9 * DES encryption plus some minor changes by Werner Almesberger, 30-MAY-1993
10 * more DES encryption plus IDEA encryption by Nicholas J. Leon, June 20, 1996
11 *
12 * Modularized and updated for 1.1.16 kernel - Mitch Dsouza 28th May 1994
13 * Adapted for 1.3.59 kernel - Andries Brouwer, 1 Feb 1996
14 *
15 * Fixed do_loop_request() re-entrancy - Vincent.Renardias@waw.com Mar 20, 1997
16 *
17 * Added devfs support - Richard Gooch <rgooch@atnf.csiro.au> 16-Jan-1998
18 *
19 * Handle sparse backing files correctly - Kenn Humborg, Jun 28, 1998
20 *
21 * Loadable modules and other fixes by AK, 1998
22 *
23 * Make real block number available to downstream transfer functions, enables
24 * CBC (and relatives) mode encryption requiring unique IVs per data block.
25 * Reed H. Petty, rhp@draper.net
26 *
27 * Maximum number of loop devices now dynamic via max_loop module parameter.
28 * Russell Kroll <rkroll@exploits.org> 19990701
29 *
30 * Maximum number of loop devices when compiled-in now selectable by passing
31 * max_loop=<1-255> to the kernel on boot.
96de0e25 32 * Erik I. Bolsø, <eriki@himolde.no>, Oct 31, 1999
1da177e4
LT
33 *
34 * Completely rewrite request handling to be make_request_fn style and
35 * non blocking, pushing work to a helper thread. Lots of fixes from
36 * Al Viro too.
37 * Jens Axboe <axboe@suse.de>, Nov 2000
38 *
39 * Support up to 256 loop devices
40 * Heinz Mauelshagen <mge@sistina.com>, Feb 2002
41 *
42 * Support for falling back on the write file operation when the address space
4e02ed4b 43 * operations write_begin is not available on the backing filesystem.
1da177e4
LT
44 * Anton Altaparmakov, 16 Feb 2005
45 *
46 * Still To Fix:
47 * - Advisory locking is ignored here.
48 * - Should use an own CAP_* category instead of CAP_SYS_ADMIN
49 *
50 */
51
1da177e4
LT
52#include <linux/module.h>
53#include <linux/moduleparam.h>
54#include <linux/sched.h>
55#include <linux/fs.h>
56#include <linux/file.h>
57#include <linux/stat.h>
58#include <linux/errno.h>
59#include <linux/major.h>
60#include <linux/wait.h>
61#include <linux/blkdev.h>
62#include <linux/blkpg.h>
63#include <linux/init.h>
1da177e4
LT
64#include <linux/swap.h>
65#include <linux/slab.h>
863d5b82 66#include <linux/compat.h>
1da177e4 67#include <linux/suspend.h>
83144186 68#include <linux/freezer.h>
2a48fc0a 69#include <linux/mutex.h>
1da177e4 70#include <linux/writeback.h>
1da177e4
LT
71#include <linux/completion.h>
72#include <linux/highmem.h>
6c997918 73#include <linux/kthread.h>
d6b29d7c 74#include <linux/splice.h>
ee862730 75#include <linux/sysfs.h>
770fe30a 76#include <linux/miscdevice.h>
dfaa2ef6 77#include <linux/falloc.h>
283e7e5d 78#include <linux/uio.h>
83a87611 79#include "loop.h"
1da177e4 80
7c0f6ba6 81#include <linux/uaccess.h>
1da177e4 82
34dd82af
KS
83static DEFINE_IDR(loop_index_idr);
84static DEFINE_MUTEX(loop_index_mutex);
1da177e4 85
476a4813
LV
86static int max_part;
87static int part_shift;
88
1da177e4
LT
89static int transfer_xor(struct loop_device *lo, int cmd,
90 struct page *raw_page, unsigned raw_off,
91 struct page *loop_page, unsigned loop_off,
92 int size, sector_t real_block)
93{
cfd8005c
CW
94 char *raw_buf = kmap_atomic(raw_page) + raw_off;
95 char *loop_buf = kmap_atomic(loop_page) + loop_off;
1da177e4
LT
96 char *in, *out, *key;
97 int i, keysize;
98
99 if (cmd == READ) {
100 in = raw_buf;
101 out = loop_buf;
102 } else {
103 in = loop_buf;
104 out = raw_buf;
105 }
106
107 key = lo->lo_encrypt_key;
108 keysize = lo->lo_encrypt_key_size;
109 for (i = 0; i < size; i++)
110 *out++ = *in++ ^ key[(i & 511) % keysize];
111
cfd8005c
CW
112 kunmap_atomic(loop_buf);
113 kunmap_atomic(raw_buf);
1da177e4
LT
114 cond_resched();
115 return 0;
116}
117
118static int xor_init(struct loop_device *lo, const struct loop_info64 *info)
119{
120 if (unlikely(info->lo_encrypt_key_size <= 0))
121 return -EINVAL;
122 return 0;
123}
124
125static struct loop_func_table none_funcs = {
126 .number = LO_CRYPT_NONE,
aa4d8616 127};
1da177e4
LT
128
129static struct loop_func_table xor_funcs = {
130 .number = LO_CRYPT_XOR,
131 .transfer = transfer_xor,
132 .init = xor_init
aa4d8616 133};
1da177e4
LT
134
135/* xfer_funcs[0] is special - its release function is never called */
136static struct loop_func_table *xfer_funcs[MAX_LO_CRYPT] = {
137 &none_funcs,
138 &xor_funcs
139};
140
7035b5df 141static loff_t get_size(loff_t offset, loff_t sizelimit, struct file *file)
1da177e4 142{
b7a1da69 143 loff_t loopsize;
1da177e4
LT
144
145 /* Compute loopsize in bytes */
b7a1da69
GC
146 loopsize = i_size_read(file->f_mapping->host);
147 if (offset > 0)
148 loopsize -= offset;
149 /* offset is beyond i_size, weird but possible */
7035b5df
DM
150 if (loopsize < 0)
151 return 0;
1da177e4 152
7035b5df
DM
153 if (sizelimit > 0 && sizelimit < loopsize)
154 loopsize = sizelimit;
1da177e4
LT
155 /*
156 * Unfortunately, if we want to do I/O on the device,
157 * the number of 512-byte sectors has to fit into a sector_t.
158 */
159 return loopsize >> 9;
160}
161
7035b5df
DM
162static loff_t get_loop_size(struct loop_device *lo, struct file *file)
163{
164 return get_size(lo->lo_offset, lo->lo_sizelimit, file);
165}
166
2e5ab5f3
ML
167static void __loop_update_dio(struct loop_device *lo, bool dio)
168{
169 struct file *file = lo->lo_backing_file;
170 struct address_space *mapping = file->f_mapping;
171 struct inode *inode = mapping->host;
172 unsigned short sb_bsize = 0;
173 unsigned dio_align = 0;
174 bool use_dio;
175
176 if (inode->i_sb->s_bdev) {
177 sb_bsize = bdev_logical_block_size(inode->i_sb->s_bdev);
178 dio_align = sb_bsize - 1;
179 }
180
181 /*
182 * We support direct I/O only if lo_offset is aligned with the
183 * logical I/O size of backing device, and the logical block
184 * size of loop is bigger than the backing device's and the loop
185 * needn't transform transfer.
186 *
187 * TODO: the above condition may be loosed in the future, and
188 * direct I/O may be switched runtime at that time because most
89d790ab 189 * of requests in sane applications should be PAGE_SIZE aligned
2e5ab5f3
ML
190 */
191 if (dio) {
192 if (queue_logical_block_size(lo->lo_queue) >= sb_bsize &&
193 !(lo->lo_offset & dio_align) &&
194 mapping->a_ops->direct_IO &&
195 !lo->transfer)
196 use_dio = true;
197 else
198 use_dio = false;
199 } else {
200 use_dio = false;
201 }
202
203 if (lo->use_dio == use_dio)
204 return;
205
206 /* flush dirty pages before changing direct IO */
207 vfs_fsync(file, 0);
208
209 /*
210 * The flag of LO_FLAGS_DIRECT_IO is handled similarly with
211 * LO_FLAGS_READ_ONLY, both are set from kernel, and losetup
212 * will get updated by ioctl(LOOP_GET_STATUS)
213 */
214 blk_mq_freeze_queue(lo->lo_queue);
215 lo->use_dio = use_dio;
216 if (use_dio)
217 lo->lo_flags |= LO_FLAGS_DIRECT_IO;
218 else
219 lo->lo_flags &= ~LO_FLAGS_DIRECT_IO;
220 blk_mq_unfreeze_queue(lo->lo_queue);
221}
222
1da177e4 223static int
7035b5df 224figure_loop_size(struct loop_device *lo, loff_t offset, loff_t sizelimit)
1da177e4 225{
7035b5df 226 loff_t size = get_size(offset, sizelimit, lo->lo_backing_file);
1da177e4 227 sector_t x = (sector_t)size;
7b0576a3 228 struct block_device *bdev = lo->lo_device;
1da177e4
LT
229
230 if (unlikely((loff_t)x != size))
231 return -EFBIG;
7035b5df
DM
232 if (lo->lo_offset != offset)
233 lo->lo_offset = offset;
234 if (lo->lo_sizelimit != sizelimit)
235 lo->lo_sizelimit = sizelimit;
73285082 236 set_capacity(lo->lo_disk, x);
7b0576a3
GC
237 bd_set_size(bdev, (loff_t)get_capacity(bdev->bd_disk) << 9);
238 /* let user-space know about the new size */
239 kobject_uevent(&disk_to_dev(bdev->bd_disk)->kobj, KOBJ_CHANGE);
7035b5df 240 return 0;
1da177e4
LT
241}
242
243static inline int
244lo_do_transfer(struct loop_device *lo, int cmd,
245 struct page *rpage, unsigned roffs,
246 struct page *lpage, unsigned loffs,
247 int size, sector_t rblock)
248{
aa4d8616
CH
249 int ret;
250
251 ret = lo->transfer(lo, cmd, rpage, roffs, lpage, loffs, size, rblock);
252 if (likely(!ret))
1da177e4
LT
253 return 0;
254
aa4d8616
CH
255 printk_ratelimited(KERN_ERR
256 "loop: Transfer error at byte offset %llu, length %i.\n",
257 (unsigned long long)rblock << 9, size);
258 return ret;
1da177e4
LT
259}
260
aa4d8616 261static int lo_write_bvec(struct file *file, struct bio_vec *bvec, loff_t *ppos)
1da177e4 262{
aa4d8616 263 struct iov_iter i;
1da177e4 264 ssize_t bw;
283e7e5d 265
aa4d8616 266 iov_iter_bvec(&i, ITER_BVEC, bvec, 1, bvec->bv_len);
1da177e4 267
03d95eb2 268 file_start_write(file);
aa4d8616 269 bw = vfs_iter_write(file, &i, ppos);
03d95eb2 270 file_end_write(file);
aa4d8616
CH
271
272 if (likely(bw == bvec->bv_len))
1da177e4 273 return 0;
aa4d8616
CH
274
275 printk_ratelimited(KERN_ERR
276 "loop: Write error at byte offset %llu, length %i.\n",
277 (unsigned long long)*ppos, bvec->bv_len);
1da177e4
LT
278 if (bw >= 0)
279 bw = -EIO;
280 return bw;
281}
282
aa4d8616
CH
283static int lo_write_simple(struct loop_device *lo, struct request *rq,
284 loff_t pos)
1da177e4 285{
aa4d8616
CH
286 struct bio_vec bvec;
287 struct req_iterator iter;
288 int ret = 0;
289
290 rq_for_each_segment(bvec, rq, iter) {
291 ret = lo_write_bvec(lo->lo_backing_file, &bvec, &pos);
292 if (ret < 0)
293 break;
294 cond_resched();
295 }
296
297 return ret;
1da177e4
LT
298}
299
aa4d8616 300/*
456be148
CH
301 * This is the slow, transforming version that needs to double buffer the
302 * data as it cannot do the transformations in place without having direct
303 * access to the destination pages of the backing file.
1da177e4 304 */
aa4d8616
CH
305static int lo_write_transfer(struct loop_device *lo, struct request *rq,
306 loff_t pos)
1da177e4 307{
aa4d8616 308 struct bio_vec bvec, b;
30112013 309 struct req_iterator iter;
aa4d8616 310 struct page *page;
7988613b 311 int ret = 0;
1da177e4 312
aa4d8616
CH
313 page = alloc_page(GFP_NOIO);
314 if (unlikely(!page))
315 return -ENOMEM;
456be148 316
30112013 317 rq_for_each_segment(bvec, rq, iter) {
aa4d8616
CH
318 ret = lo_do_transfer(lo, WRITE, page, 0, bvec.bv_page,
319 bvec.bv_offset, bvec.bv_len, pos >> 9);
320 if (unlikely(ret))
321 break;
322
323 b.bv_page = page;
324 b.bv_offset = 0;
325 b.bv_len = bvec.bv_len;
326 ret = lo_write_bvec(lo->lo_backing_file, &b, &pos);
1da177e4
LT
327 if (ret < 0)
328 break;
1da177e4 329 }
aa4d8616
CH
330
331 __free_page(page);
1da177e4 332 return ret;
1da177e4
LT
333}
334
aa4d8616
CH
335static int lo_read_simple(struct loop_device *lo, struct request *rq,
336 loff_t pos)
1da177e4 337{
aa4d8616
CH
338 struct bio_vec bvec;
339 struct req_iterator iter;
340 struct iov_iter i;
341 ssize_t len;
1da177e4 342
aa4d8616
CH
343 rq_for_each_segment(bvec, rq, iter) {
344 iov_iter_bvec(&i, ITER_BVEC, &bvec, 1, bvec.bv_len);
345 len = vfs_iter_read(lo->lo_backing_file, &i, &pos);
346 if (len < 0)
347 return len;
1da177e4 348
aa4d8616 349 flush_dcache_page(bvec.bv_page);
fd582140 350
aa4d8616
CH
351 if (len != bvec.bv_len) {
352 struct bio *bio;
1da177e4 353
aa4d8616
CH
354 __rq_for_each_bio(bio, rq)
355 zero_fill_bio(bio);
356 break;
357 }
358 cond_resched();
359 }
360
361 return 0;
fd582140
JA
362}
363
aa4d8616
CH
364static int lo_read_transfer(struct loop_device *lo, struct request *rq,
365 loff_t pos)
1da177e4 366{
aa4d8616
CH
367 struct bio_vec bvec, b;
368 struct req_iterator iter;
369 struct iov_iter i;
370 struct page *page;
371 ssize_t len;
372 int ret = 0;
1da177e4 373
aa4d8616
CH
374 page = alloc_page(GFP_NOIO);
375 if (unlikely(!page))
376 return -ENOMEM;
fd582140 377
aa4d8616
CH
378 rq_for_each_segment(bvec, rq, iter) {
379 loff_t offset = pos;
fd582140 380
aa4d8616
CH
381 b.bv_page = page;
382 b.bv_offset = 0;
383 b.bv_len = bvec.bv_len;
fd582140 384
aa4d8616
CH
385 iov_iter_bvec(&i, ITER_BVEC, &b, 1, b.bv_len);
386 len = vfs_iter_read(lo->lo_backing_file, &i, &pos);
387 if (len < 0) {
388 ret = len;
389 goto out_free_page;
390 }
1da177e4 391
aa4d8616
CH
392 ret = lo_do_transfer(lo, READ, page, 0, bvec.bv_page,
393 bvec.bv_offset, len, offset >> 9);
394 if (ret)
395 goto out_free_page;
1da177e4 396
aa4d8616 397 flush_dcache_page(bvec.bv_page);
306df071 398
aa4d8616 399 if (len != bvec.bv_len) {
30112013
ML
400 struct bio *bio;
401
402 __rq_for_each_bio(bio, rq)
403 zero_fill_bio(bio);
1da177e4 404 break;
306df071 405 }
1da177e4 406 }
aa4d8616
CH
407
408 ret = 0;
409out_free_page:
410 __free_page(page);
411 return ret;
1da177e4
LT
412}
413
cf655d95
ML
414static int lo_discard(struct loop_device *lo, struct request *rq, loff_t pos)
415{
416 /*
417 * We use punch hole to reclaim the free space used by the
418 * image a.k.a. discard. However we do not support discard if
419 * encryption is enabled, because it may give an attacker
420 * useful information.
421 */
422 struct file *file = lo->lo_backing_file;
423 int mode = FALLOC_FL_PUNCH_HOLE | FALLOC_FL_KEEP_SIZE;
424 int ret;
425
426 if ((!file->f_op->fallocate) || lo->lo_encrypt_key_size) {
427 ret = -EOPNOTSUPP;
428 goto out;
429 }
430
431 ret = file->f_op->fallocate(file, mode, pos, blk_rq_bytes(rq));
432 if (unlikely(ret && ret != -EINVAL && ret != -EOPNOTSUPP))
433 ret = -EIO;
434 out:
435 return ret;
436}
437
438static int lo_req_flush(struct loop_device *lo, struct request *rq)
439{
440 struct file *file = lo->lo_backing_file;
441 int ret = vfs_fsync(file, 0);
442 if (unlikely(ret && ret != -EINVAL))
443 ret = -EIO;
444
445 return ret;
446}
447
bc07c10a
ML
448static inline void handle_partial_read(struct loop_cmd *cmd, long bytes)
449{
a8ebb056 450 if (bytes < 0 || op_is_write(req_op(cmd->rq)))
bc07c10a
ML
451 return;
452
453 if (unlikely(bytes < blk_rq_bytes(cmd->rq))) {
454 struct bio *bio = cmd->rq->bio;
455
456 bio_advance(bio, bytes);
457 zero_fill_bio(bio);
458 }
459}
460
461static void lo_rw_aio_complete(struct kiocb *iocb, long ret, long ret2)
462{
463 struct loop_cmd *cmd = container_of(iocb, struct loop_cmd, iocb);
464 struct request *rq = cmd->rq;
465
466 handle_partial_read(cmd, ret);
467
468 if (ret > 0)
469 ret = 0;
470 else if (ret < 0)
471 ret = -EIO;
472
54ef2b96 473 blk_mq_complete_request(rq, ret);
bc07c10a
ML
474}
475
476static int lo_rw_aio(struct loop_device *lo, struct loop_cmd *cmd,
477 loff_t pos, bool rw)
478{
479 struct iov_iter iter;
480 struct bio_vec *bvec;
481 struct bio *bio = cmd->rq->bio;
482 struct file *file = lo->lo_backing_file;
483 int ret;
484
485 /* nomerge for loop request queue */
486 WARN_ON(cmd->rq->bio != cmd->rq->biotail);
487
488 bvec = __bvec_iter_bvec(bio->bi_io_vec, bio->bi_iter);
489 iov_iter_bvec(&iter, ITER_BVEC | rw, bvec,
490 bio_segments(bio), blk_rq_bytes(cmd->rq));
a7297a6a
ML
491 /*
492 * This bio may be started from the middle of the 'bvec'
493 * because of bio splitting, so offset from the bvec must
494 * be passed to iov iterator
495 */
496 iter.iov_offset = bio->bi_iter.bi_bvec_done;
bc07c10a
ML
497
498 cmd->iocb.ki_pos = pos;
499 cmd->iocb.ki_filp = file;
500 cmd->iocb.ki_complete = lo_rw_aio_complete;
501 cmd->iocb.ki_flags = IOCB_DIRECT;
502
503 if (rw == WRITE)
bb7462b6 504 ret = call_write_iter(file, &cmd->iocb, &iter);
bc07c10a 505 else
bb7462b6 506 ret = call_read_iter(file, &cmd->iocb, &iter);
bc07c10a
ML
507
508 if (ret != -EIOCBQUEUED)
509 cmd->iocb.ki_complete(&cmd->iocb, ret, 0);
510 return 0;
511}
512
c1c87c2b 513static int do_req_filebacked(struct loop_device *lo, struct request *rq)
bc07c10a
ML
514{
515 struct loop_cmd *cmd = blk_mq_rq_to_pdu(rq);
c1c87c2b 516 loff_t pos = ((loff_t) blk_rq_pos(rq) << 9) + lo->lo_offset;
bc07c10a
ML
517
518 /*
519 * lo_write_simple and lo_read_simple should have been covered
520 * by io submit style function like lo_rw_aio(), one blocker
521 * is that lo_read_simple() need to call flush_dcache_page after
522 * the page is written from kernel, and it isn't easy to handle
523 * this in io submit style function which submits all segments
524 * of the req at one time. And direct read IO doesn't need to
525 * run flush_dcache_page().
526 */
c1c87c2b
CH
527 switch (req_op(rq)) {
528 case REQ_OP_FLUSH:
529 return lo_req_flush(lo, rq);
530 case REQ_OP_DISCARD:
19372e27 531 case REQ_OP_WRITE_ZEROES:
c1c87c2b
CH
532 return lo_discard(lo, rq, pos);
533 case REQ_OP_WRITE:
534 if (lo->transfer)
535 return lo_write_transfer(lo, rq, pos);
536 else if (cmd->use_aio)
537 return lo_rw_aio(lo, cmd, pos, WRITE);
af65aa8e 538 else
c1c87c2b
CH
539 return lo_write_simple(lo, rq, pos);
540 case REQ_OP_READ:
aa4d8616 541 if (lo->transfer)
c1c87c2b
CH
542 return lo_read_transfer(lo, rq, pos);
543 else if (cmd->use_aio)
544 return lo_rw_aio(lo, cmd, pos, READ);
aa4d8616 545 else
c1c87c2b
CH
546 return lo_read_simple(lo, rq, pos);
547 default:
548 WARN_ON_ONCE(1);
549 return -EIO;
550 break;
aa4d8616 551 }
1da177e4
LT
552}
553
1da177e4
LT
554struct switch_request {
555 struct file *file;
556 struct completion wait;
557};
558
2e5ab5f3
ML
559static inline void loop_update_dio(struct loop_device *lo)
560{
561 __loop_update_dio(lo, io_is_direct(lo->lo_backing_file) |
562 lo->use_dio);
563}
564
1da177e4 565/*
b5dd2f60 566 * Do the actual switch; called from the BIO completion routine
1da177e4 567 */
b5dd2f60 568static void do_loop_switch(struct loop_device *lo, struct switch_request *p)
1da177e4 569{
b5dd2f60
ML
570 struct file *file = p->file;
571 struct file *old_file = lo->lo_backing_file;
572 struct address_space *mapping;
35a82d1a 573
b5dd2f60
ML
574 /* if no new file, only flush of queued bios requested */
575 if (!file)
576 return;
1da177e4 577
b5dd2f60
ML
578 mapping = file->f_mapping;
579 mapping_set_gfp_mask(old_file->f_mapping, lo->old_gfp_mask);
580 lo->lo_backing_file = file;
581 lo->lo_blocksize = S_ISBLK(mapping->host->i_mode) ?
582 mapping->host->i_bdev->bd_block_size : PAGE_SIZE;
583 lo->old_gfp_mask = mapping_gfp_mask(mapping);
584 mapping_set_gfp_mask(mapping, lo->old_gfp_mask & ~(__GFP_IO|__GFP_FS));
2e5ab5f3 585 loop_update_dio(lo);
1da177e4
LT
586}
587
588/*
589 * loop_switch performs the hard work of switching a backing store.
590 * First it needs to flush existing IO, it does this by sending a magic
591 * BIO down the pipe. The completion of this BIO does the actual switch.
592 */
593static int loop_switch(struct loop_device *lo, struct file *file)
594{
595 struct switch_request w;
b5dd2f60 596
1da177e4 597 w.file = file;
b5dd2f60
ML
598
599 /* freeze queue and wait for completion of scheduled requests */
600 blk_mq_freeze_queue(lo->lo_queue);
601
602 /* do the switch action */
603 do_loop_switch(lo, &w);
604
605 /* unfreeze */
606 blk_mq_unfreeze_queue(lo->lo_queue);
607
1da177e4
LT
608 return 0;
609}
610
14f27939
MB
611/*
612 * Helper to flush the IOs in loop, but keeping loop thread running
613 */
614static int loop_flush(struct loop_device *lo)
615{
14f27939
MB
616 return loop_switch(lo, NULL);
617}
618
06f0e9e6
ML
619static void loop_reread_partitions(struct loop_device *lo,
620 struct block_device *bdev)
621{
622 int rc;
623
624 /*
625 * bd_mutex has been held already in release path, so don't
626 * acquire it if this function is called in such case.
627 *
628 * If the reread partition isn't from release path, lo_refcnt
629 * must be at least one and it can only become zero when the
630 * current holder is released.
631 */
632 if (!atomic_read(&lo->lo_refcnt))
633 rc = __blkdev_reread_part(bdev);
634 else
635 rc = blkdev_reread_part(bdev);
636 if (rc)
637 pr_warn("%s: partition scan of loop%d (%s) failed (rc=%d)\n",
638 __func__, lo->lo_number, lo->lo_file_name, rc);
639}
640
1da177e4
LT
641/*
642 * loop_change_fd switched the backing store of a loopback device to
643 * a new file. This is useful for operating system installers to free up
644 * the original file and in High Availability environments to switch to
645 * an alternative location for the content in case of server meltdown.
646 * This can only work if the loop device is used read-only, and if the
647 * new backing store is the same size and type as the old backing store.
648 */
bb214884
AV
649static int loop_change_fd(struct loop_device *lo, struct block_device *bdev,
650 unsigned int arg)
1da177e4
LT
651{
652 struct file *file, *old_file;
653 struct inode *inode;
654 int error;
655
656 error = -ENXIO;
657 if (lo->lo_state != Lo_bound)
658 goto out;
659
660 /* the loop device has to be read-only */
661 error = -EINVAL;
662 if (!(lo->lo_flags & LO_FLAGS_READ_ONLY))
663 goto out;
664
665 error = -EBADF;
666 file = fget(arg);
667 if (!file)
668 goto out;
669
670 inode = file->f_mapping->host;
671 old_file = lo->lo_backing_file;
672
673 error = -EINVAL;
674
675 if (!S_ISREG(inode->i_mode) && !S_ISBLK(inode->i_mode))
676 goto out_putf;
677
1da177e4
LT
678 /* size of the new backing store needs to be the same */
679 if (get_loop_size(lo, file) != get_loop_size(lo, old_file))
680 goto out_putf;
681
682 /* and ... switch */
683 error = loop_switch(lo, file);
684 if (error)
685 goto out_putf;
686
687 fput(old_file);
e03c8dd1 688 if (lo->lo_flags & LO_FLAGS_PARTSCAN)
06f0e9e6 689 loop_reread_partitions(lo, bdev);
1da177e4
LT
690 return 0;
691
692 out_putf:
693 fput(file);
694 out:
695 return error;
696}
697
698static inline int is_loop_device(struct file *file)
699{
700 struct inode *i = file->f_mapping->host;
701
702 return i && S_ISBLK(i->i_mode) && MAJOR(i->i_rdev) == LOOP_MAJOR;
703}
704
ee862730
MB
705/* loop sysfs attributes */
706
707static ssize_t loop_attr_show(struct device *dev, char *page,
708 ssize_t (*callback)(struct loop_device *, char *))
709{
34dd82af
KS
710 struct gendisk *disk = dev_to_disk(dev);
711 struct loop_device *lo = disk->private_data;
ee862730 712
34dd82af 713 return callback(lo, page);
ee862730
MB
714}
715
716#define LOOP_ATTR_RO(_name) \
717static ssize_t loop_attr_##_name##_show(struct loop_device *, char *); \
718static ssize_t loop_attr_do_show_##_name(struct device *d, \
719 struct device_attribute *attr, char *b) \
720{ \
721 return loop_attr_show(d, b, loop_attr_##_name##_show); \
722} \
723static struct device_attribute loop_attr_##_name = \
724 __ATTR(_name, S_IRUGO, loop_attr_do_show_##_name, NULL);
725
726static ssize_t loop_attr_backing_file_show(struct loop_device *lo, char *buf)
727{
728 ssize_t ret;
729 char *p = NULL;
730
05eb0f25 731 spin_lock_irq(&lo->lo_lock);
ee862730 732 if (lo->lo_backing_file)
9bf39ab2 733 p = file_path(lo->lo_backing_file, buf, PAGE_SIZE - 1);
05eb0f25 734 spin_unlock_irq(&lo->lo_lock);
ee862730
MB
735
736 if (IS_ERR_OR_NULL(p))
737 ret = PTR_ERR(p);
738 else {
739 ret = strlen(p);
740 memmove(buf, p, ret);
741 buf[ret++] = '\n';
742 buf[ret] = 0;
743 }
744
745 return ret;
746}
747
748static ssize_t loop_attr_offset_show(struct loop_device *lo, char *buf)
749{
750 return sprintf(buf, "%llu\n", (unsigned long long)lo->lo_offset);
751}
752
753static ssize_t loop_attr_sizelimit_show(struct loop_device *lo, char *buf)
754{
755 return sprintf(buf, "%llu\n", (unsigned long long)lo->lo_sizelimit);
756}
757
758static ssize_t loop_attr_autoclear_show(struct loop_device *lo, char *buf)
759{
760 int autoclear = (lo->lo_flags & LO_FLAGS_AUTOCLEAR);
761
762 return sprintf(buf, "%s\n", autoclear ? "1" : "0");
763}
764
e03c8dd1
KS
765static ssize_t loop_attr_partscan_show(struct loop_device *lo, char *buf)
766{
767 int partscan = (lo->lo_flags & LO_FLAGS_PARTSCAN);
768
769 return sprintf(buf, "%s\n", partscan ? "1" : "0");
770}
771
2e5ab5f3
ML
772static ssize_t loop_attr_dio_show(struct loop_device *lo, char *buf)
773{
774 int dio = (lo->lo_flags & LO_FLAGS_DIRECT_IO);
775
776 return sprintf(buf, "%s\n", dio ? "1" : "0");
777}
778
ee862730
MB
779LOOP_ATTR_RO(backing_file);
780LOOP_ATTR_RO(offset);
781LOOP_ATTR_RO(sizelimit);
782LOOP_ATTR_RO(autoclear);
e03c8dd1 783LOOP_ATTR_RO(partscan);
2e5ab5f3 784LOOP_ATTR_RO(dio);
ee862730
MB
785
786static struct attribute *loop_attrs[] = {
787 &loop_attr_backing_file.attr,
788 &loop_attr_offset.attr,
789 &loop_attr_sizelimit.attr,
790 &loop_attr_autoclear.attr,
e03c8dd1 791 &loop_attr_partscan.attr,
2e5ab5f3 792 &loop_attr_dio.attr,
ee862730
MB
793 NULL,
794};
795
796static struct attribute_group loop_attribute_group = {
797 .name = "loop",
798 .attrs= loop_attrs,
799};
800
801static int loop_sysfs_init(struct loop_device *lo)
802{
803 return sysfs_create_group(&disk_to_dev(lo->lo_disk)->kobj,
804 &loop_attribute_group);
805}
806
807static void loop_sysfs_exit(struct loop_device *lo)
808{
809 sysfs_remove_group(&disk_to_dev(lo->lo_disk)->kobj,
810 &loop_attribute_group);
811}
812
dfaa2ef6
LC
813static void loop_config_discard(struct loop_device *lo)
814{
815 struct file *file = lo->lo_backing_file;
816 struct inode *inode = file->f_mapping->host;
817 struct request_queue *q = lo->lo_queue;
818
819 /*
820 * We use punch hole to reclaim the free space used by the
12a64d2f 821 * image a.k.a. discard. However we do not support discard if
dfaa2ef6
LC
822 * encryption is enabled, because it may give an attacker
823 * useful information.
824 */
825 if ((!file->f_op->fallocate) ||
826 lo->lo_encrypt_key_size) {
827 q->limits.discard_granularity = 0;
828 q->limits.discard_alignment = 0;
2bb4cd5c 829 blk_queue_max_discard_sectors(q, 0);
19372e27 830 blk_queue_max_write_zeroes_sectors(q, 0);
dfaa2ef6
LC
831 queue_flag_clear_unlocked(QUEUE_FLAG_DISCARD, q);
832 return;
833 }
834
835 q->limits.discard_granularity = inode->i_sb->s_blocksize;
dfaf3c03 836 q->limits.discard_alignment = 0;
2bb4cd5c 837 blk_queue_max_discard_sectors(q, UINT_MAX >> 9);
19372e27 838 blk_queue_max_write_zeroes_sectors(q, UINT_MAX >> 9);
dfaa2ef6
LC
839 queue_flag_set_unlocked(QUEUE_FLAG_DISCARD, q);
840}
841
e03a3d7a
ML
842static void loop_unprepare_queue(struct loop_device *lo)
843{
3989144f 844 kthread_flush_worker(&lo->worker);
e03a3d7a
ML
845 kthread_stop(lo->worker_task);
846}
847
848static int loop_prepare_queue(struct loop_device *lo)
849{
3989144f 850 kthread_init_worker(&lo->worker);
e03a3d7a
ML
851 lo->worker_task = kthread_run(kthread_worker_fn,
852 &lo->worker, "loop%d", lo->lo_number);
853 if (IS_ERR(lo->worker_task))
854 return -ENOMEM;
855 set_user_nice(lo->worker_task, MIN_NICE);
856 return 0;
857}
858
bb214884 859static int loop_set_fd(struct loop_device *lo, fmode_t mode,
1da177e4
LT
860 struct block_device *bdev, unsigned int arg)
861{
862 struct file *file, *f;
863 struct inode *inode;
864 struct address_space *mapping;
865 unsigned lo_blocksize;
866 int lo_flags = 0;
867 int error;
868 loff_t size;
869
870 /* This is safe, since we have a reference from open(). */
871 __module_get(THIS_MODULE);
872
873 error = -EBADF;
874 file = fget(arg);
875 if (!file)
876 goto out;
877
878 error = -EBUSY;
879 if (lo->lo_state != Lo_unbound)
880 goto out_putf;
881
882 /* Avoid recursion */
883 f = file;
884 while (is_loop_device(f)) {
885 struct loop_device *l;
886
bb214884 887 if (f->f_mapping->host->i_bdev == bdev)
1da177e4
LT
888 goto out_putf;
889
890 l = f->f_mapping->host->i_bdev->bd_disk->private_data;
891 if (l->lo_state == Lo_unbound) {
892 error = -EINVAL;
893 goto out_putf;
894 }
895 f = l->lo_backing_file;
896 }
897
898 mapping = file->f_mapping;
899 inode = mapping->host;
900
1da177e4 901 error = -EINVAL;
456be148
CH
902 if (!S_ISREG(inode->i_mode) && !S_ISBLK(inode->i_mode))
903 goto out_putf;
1da177e4 904
456be148 905 if (!(file->f_mode & FMODE_WRITE) || !(mode & FMODE_WRITE) ||
283e7e5d 906 !file->f_op->write_iter)
456be148 907 lo_flags |= LO_FLAGS_READ_ONLY;
ba52de12 908
456be148
CH
909 lo_blocksize = S_ISBLK(inode->i_mode) ?
910 inode->i_bdev->bd_block_size : PAGE_SIZE;
1da177e4 911
456be148 912 error = -EFBIG;
1da177e4 913 size = get_loop_size(lo, file);
456be148 914 if ((loff_t)(sector_t)size != size)
1da177e4 915 goto out_putf;
e03a3d7a
ML
916 error = loop_prepare_queue(lo);
917 if (error)
f4aa4c7b 918 goto out_putf;
1da177e4 919
456be148 920 error = 0;
1da177e4
LT
921
922 set_device_ro(bdev, (lo_flags & LO_FLAGS_READ_ONLY) != 0);
923
2e5ab5f3 924 lo->use_dio = false;
1da177e4
LT
925 lo->lo_blocksize = lo_blocksize;
926 lo->lo_device = bdev;
927 lo->lo_flags = lo_flags;
928 lo->lo_backing_file = file;
aa4d8616 929 lo->transfer = NULL;
1da177e4
LT
930 lo->ioctl = NULL;
931 lo->lo_sizelimit = 0;
932 lo->old_gfp_mask = mapping_gfp_mask(mapping);
933 mapping_set_gfp_mask(mapping, lo->old_gfp_mask & ~(__GFP_IO|__GFP_FS));
934
68db1961 935 if (!(lo_flags & LO_FLAGS_READ_ONLY) && file->f_op->fsync)
21d0727f 936 blk_queue_write_cache(lo->lo_queue, true, false);
68db1961 937
2e5ab5f3 938 loop_update_dio(lo);
73285082 939 set_capacity(lo->lo_disk, size);
1da177e4 940 bd_set_size(bdev, size << 9);
ee862730 941 loop_sysfs_init(lo);
c3473c63
DZ
942 /* let user-space know about the new size */
943 kobject_uevent(&disk_to_dev(bdev->bd_disk)->kobj, KOBJ_CHANGE);
1da177e4
LT
944
945 set_blocksize(bdev, lo_blocksize);
946
6c997918 947 lo->lo_state = Lo_bound;
e03c8dd1
KS
948 if (part_shift)
949 lo->lo_flags |= LO_FLAGS_PARTSCAN;
950 if (lo->lo_flags & LO_FLAGS_PARTSCAN)
06f0e9e6 951 loop_reread_partitions(lo, bdev);
c1681bf8
AP
952
953 /* Grab the block_device to prevent its destruction after we
954 * put /dev/loopXX inode. Later in loop_clr_fd() we bdput(bdev).
955 */
956 bdgrab(bdev);
1da177e4
LT
957 return 0;
958
959 out_putf:
960 fput(file);
961 out:
962 /* This is safe: open() is still holding a reference. */
963 module_put(THIS_MODULE);
964 return error;
965}
966
967static int
968loop_release_xfer(struct loop_device *lo)
969{
970 int err = 0;
971 struct loop_func_table *xfer = lo->lo_encryption;
972
973 if (xfer) {
974 if (xfer->release)
975 err = xfer->release(lo);
976 lo->transfer = NULL;
977 lo->lo_encryption = NULL;
978 module_put(xfer->owner);
979 }
980 return err;
981}
982
983static int
984loop_init_xfer(struct loop_device *lo, struct loop_func_table *xfer,
985 const struct loop_info64 *i)
986{
987 int err = 0;
988
989 if (xfer) {
990 struct module *owner = xfer->owner;
991
992 if (!try_module_get(owner))
993 return -EINVAL;
994 if (xfer->init)
995 err = xfer->init(lo, i);
996 if (err)
997 module_put(owner);
998 else
999 lo->lo_encryption = xfer;
1000 }
1001 return err;
1002}
1003
4c823cc3 1004static int loop_clr_fd(struct loop_device *lo)
1da177e4
LT
1005{
1006 struct file *filp = lo->lo_backing_file;
b4e3ca1a 1007 gfp_t gfp = lo->old_gfp_mask;
4c823cc3 1008 struct block_device *bdev = lo->lo_device;
1da177e4
LT
1009
1010 if (lo->lo_state != Lo_bound)
1011 return -ENXIO;
1012
a1ecac3b
DC
1013 /*
1014 * If we've explicitly asked to tear down the loop device,
1015 * and it has an elevated reference count, set it for auto-teardown when
1016 * the last reference goes away. This stops $!~#$@ udev from
1017 * preventing teardown because it decided that it needs to run blkid on
1018 * the loopback device whenever they appear. xfstests is notorious for
1019 * failing tests because blkid via udev races with a losetup
1020 * <dev>/do something like mkfs/losetup -d <dev> causing the losetup -d
1021 * command to fail with EBUSY.
1022 */
f8933667 1023 if (atomic_read(&lo->lo_refcnt) > 1) {
a1ecac3b
DC
1024 lo->lo_flags |= LO_FLAGS_AUTOCLEAR;
1025 mutex_unlock(&lo->lo_ctl_mutex);
1026 return 0;
1027 }
1da177e4
LT
1028
1029 if (filp == NULL)
1030 return -EINVAL;
1031
f8933667
ML
1032 /* freeze request queue during the transition */
1033 blk_mq_freeze_queue(lo->lo_queue);
1034
1da177e4
LT
1035 spin_lock_irq(&lo->lo_lock);
1036 lo->lo_state = Lo_rundown;
1da177e4 1037 lo->lo_backing_file = NULL;
05eb0f25 1038 spin_unlock_irq(&lo->lo_lock);
1da177e4
LT
1039
1040 loop_release_xfer(lo);
1041 lo->transfer = NULL;
1042 lo->ioctl = NULL;
1043 lo->lo_device = NULL;
1044 lo->lo_encryption = NULL;
1045 lo->lo_offset = 0;
1046 lo->lo_sizelimit = 0;
1047 lo->lo_encrypt_key_size = 0;
1da177e4
LT
1048 memset(lo->lo_encrypt_key, 0, LO_KEY_SIZE);
1049 memset(lo->lo_crypt_name, 0, LO_NAME_SIZE);
1050 memset(lo->lo_file_name, 0, LO_NAME_SIZE);
c1681bf8
AP
1051 if (bdev) {
1052 bdput(bdev);
bb214884 1053 invalidate_bdev(bdev);
c1681bf8 1054 }
73285082 1055 set_capacity(lo->lo_disk, 0);
51a0bb0c 1056 loop_sysfs_exit(lo);
c3473c63 1057 if (bdev) {
bb214884 1058 bd_set_size(bdev, 0);
c3473c63
DZ
1059 /* let user-space know about this change */
1060 kobject_uevent(&disk_to_dev(bdev->bd_disk)->kobj, KOBJ_CHANGE);
1061 }
1da177e4
LT
1062 mapping_set_gfp_mask(filp->f_mapping, gfp);
1063 lo->lo_state = Lo_unbound;
1da177e4
LT
1064 /* This is safe: open() is still holding a reference. */
1065 module_put(THIS_MODULE);
f8933667
ML
1066 blk_mq_unfreeze_queue(lo->lo_queue);
1067
c2fccc1c 1068 if (lo->lo_flags & LO_FLAGS_PARTSCAN && bdev)
06f0e9e6 1069 loop_reread_partitions(lo, bdev);
e03c8dd1
KS
1070 lo->lo_flags = 0;
1071 if (!part_shift)
1072 lo->lo_disk->flags |= GENHD_FL_NO_PART_SCAN;
e03a3d7a 1073 loop_unprepare_queue(lo);
f028f3b2
NK
1074 mutex_unlock(&lo->lo_ctl_mutex);
1075 /*
1076 * Need not hold lo_ctl_mutex to fput backing file.
1077 * Calling fput holding lo_ctl_mutex triggers a circular
1078 * lock dependency possibility warning as fput can take
1079 * bd_mutex which is usually taken before lo_ctl_mutex.
1080 */
1081 fput(filp);
1da177e4
LT
1082 return 0;
1083}
1084
1085static int
1086loop_set_status(struct loop_device *lo, const struct loop_info64 *info)
1087{
1088 int err;
1089 struct loop_func_table *xfer;
e4849737 1090 kuid_t uid = current_uid();
1da177e4 1091
b0fafa81 1092 if (lo->lo_encrypt_key_size &&
e4849737 1093 !uid_eq(lo->lo_key_owner, uid) &&
1da177e4
LT
1094 !capable(CAP_SYS_ADMIN))
1095 return -EPERM;
1096 if (lo->lo_state != Lo_bound)
1097 return -ENXIO;
1098 if ((unsigned int) info->lo_encrypt_key_size > LO_KEY_SIZE)
1099 return -EINVAL;
1100
ecdd0959
ML
1101 /* I/O need to be drained during transfer transition */
1102 blk_mq_freeze_queue(lo->lo_queue);
1103
1da177e4
LT
1104 err = loop_release_xfer(lo);
1105 if (err)
ecdd0959 1106 goto exit;
1da177e4
LT
1107
1108 if (info->lo_encrypt_type) {
1109 unsigned int type = info->lo_encrypt_type;
1110
1111 if (type >= MAX_LO_CRYPT)
1112 return -EINVAL;
1113 xfer = xfer_funcs[type];
1114 if (xfer == NULL)
1115 return -EINVAL;
1116 } else
1117 xfer = NULL;
1118
1119 err = loop_init_xfer(lo, xfer, info);
1120 if (err)
ecdd0959 1121 goto exit;
1da177e4
LT
1122
1123 if (lo->lo_offset != info->lo_offset ||
7b0576a3 1124 lo->lo_sizelimit != info->lo_sizelimit)
ecdd0959
ML
1125 if (figure_loop_size(lo, info->lo_offset, info->lo_sizelimit)) {
1126 err = -EFBIG;
1127 goto exit;
1128 }
541c742a 1129
dfaa2ef6 1130 loop_config_discard(lo);
1da177e4
LT
1131
1132 memcpy(lo->lo_file_name, info->lo_file_name, LO_NAME_SIZE);
1133 memcpy(lo->lo_crypt_name, info->lo_crypt_name, LO_NAME_SIZE);
1134 lo->lo_file_name[LO_NAME_SIZE-1] = 0;
1135 lo->lo_crypt_name[LO_NAME_SIZE-1] = 0;
1136
1137 if (!xfer)
1138 xfer = &none_funcs;
1139 lo->transfer = xfer->transfer;
1140 lo->ioctl = xfer->ioctl;
1141
96c58655
DW
1142 if ((lo->lo_flags & LO_FLAGS_AUTOCLEAR) !=
1143 (info->lo_flags & LO_FLAGS_AUTOCLEAR))
1144 lo->lo_flags ^= LO_FLAGS_AUTOCLEAR;
1145
1da177e4
LT
1146 lo->lo_encrypt_key_size = info->lo_encrypt_key_size;
1147 lo->lo_init[0] = info->lo_init[0];
1148 lo->lo_init[1] = info->lo_init[1];
1149 if (info->lo_encrypt_key_size) {
1150 memcpy(lo->lo_encrypt_key, info->lo_encrypt_key,
1151 info->lo_encrypt_key_size);
b0fafa81 1152 lo->lo_key_owner = uid;
aa4d8616 1153 }
1da177e4 1154
2e5ab5f3
ML
1155 /* update dio if lo_offset or transfer is changed */
1156 __loop_update_dio(lo, lo->use_dio);
1157
ecdd0959
ML
1158 exit:
1159 blk_mq_unfreeze_queue(lo->lo_queue);
e02898b4
OS
1160
1161 if (!err && (info->lo_flags & LO_FLAGS_PARTSCAN) &&
1162 !(lo->lo_flags & LO_FLAGS_PARTSCAN)) {
1163 lo->lo_flags |= LO_FLAGS_PARTSCAN;
1164 lo->lo_disk->flags &= ~GENHD_FL_NO_PART_SCAN;
1165 loop_reread_partitions(lo, lo->lo_device);
1166 }
1167
ecdd0959 1168 return err;
1da177e4
LT
1169}
1170
1171static int
1172loop_get_status(struct loop_device *lo, struct loop_info64 *info)
1173{
1174 struct file *file = lo->lo_backing_file;
1175 struct kstat stat;
1176 int error;
1177
1178 if (lo->lo_state != Lo_bound)
1179 return -ENXIO;
a528d35e
DH
1180 error = vfs_getattr(&file->f_path, &stat,
1181 STATX_INO, AT_STATX_SYNC_AS_STAT);
1da177e4
LT
1182 if (error)
1183 return error;
1184 memset(info, 0, sizeof(*info));
1185 info->lo_number = lo->lo_number;
1186 info->lo_device = huge_encode_dev(stat.dev);
1187 info->lo_inode = stat.ino;
1188 info->lo_rdevice = huge_encode_dev(lo->lo_device ? stat.rdev : stat.dev);
1189 info->lo_offset = lo->lo_offset;
1190 info->lo_sizelimit = lo->lo_sizelimit;
1191 info->lo_flags = lo->lo_flags;
1192 memcpy(info->lo_file_name, lo->lo_file_name, LO_NAME_SIZE);
1193 memcpy(info->lo_crypt_name, lo->lo_crypt_name, LO_NAME_SIZE);
1194 info->lo_encrypt_type =
1195 lo->lo_encryption ? lo->lo_encryption->number : 0;
1196 if (lo->lo_encrypt_key_size && capable(CAP_SYS_ADMIN)) {
1197 info->lo_encrypt_key_size = lo->lo_encrypt_key_size;
1198 memcpy(info->lo_encrypt_key, lo->lo_encrypt_key,
1199 lo->lo_encrypt_key_size);
1200 }
1201 return 0;
1202}
1203
1204static void
1205loop_info64_from_old(const struct loop_info *info, struct loop_info64 *info64)
1206{
1207 memset(info64, 0, sizeof(*info64));
1208 info64->lo_number = info->lo_number;
1209 info64->lo_device = info->lo_device;
1210 info64->lo_inode = info->lo_inode;
1211 info64->lo_rdevice = info->lo_rdevice;
1212 info64->lo_offset = info->lo_offset;
1213 info64->lo_sizelimit = 0;
1214 info64->lo_encrypt_type = info->lo_encrypt_type;
1215 info64->lo_encrypt_key_size = info->lo_encrypt_key_size;
1216 info64->lo_flags = info->lo_flags;
1217 info64->lo_init[0] = info->lo_init[0];
1218 info64->lo_init[1] = info->lo_init[1];
1219 if (info->lo_encrypt_type == LO_CRYPT_CRYPTOAPI)
1220 memcpy(info64->lo_crypt_name, info->lo_name, LO_NAME_SIZE);
1221 else
1222 memcpy(info64->lo_file_name, info->lo_name, LO_NAME_SIZE);
1223 memcpy(info64->lo_encrypt_key, info->lo_encrypt_key, LO_KEY_SIZE);
1224}
1225
1226static int
1227loop_info64_to_old(const struct loop_info64 *info64, struct loop_info *info)
1228{
1229 memset(info, 0, sizeof(*info));
1230 info->lo_number = info64->lo_number;
1231 info->lo_device = info64->lo_device;
1232 info->lo_inode = info64->lo_inode;
1233 info->lo_rdevice = info64->lo_rdevice;
1234 info->lo_offset = info64->lo_offset;
1235 info->lo_encrypt_type = info64->lo_encrypt_type;
1236 info->lo_encrypt_key_size = info64->lo_encrypt_key_size;
1237 info->lo_flags = info64->lo_flags;
1238 info->lo_init[0] = info64->lo_init[0];
1239 info->lo_init[1] = info64->lo_init[1];
1240 if (info->lo_encrypt_type == LO_CRYPT_CRYPTOAPI)
1241 memcpy(info->lo_name, info64->lo_crypt_name, LO_NAME_SIZE);
1242 else
1243 memcpy(info->lo_name, info64->lo_file_name, LO_NAME_SIZE);
1244 memcpy(info->lo_encrypt_key, info64->lo_encrypt_key, LO_KEY_SIZE);
1245
1246 /* error in case values were truncated */
1247 if (info->lo_device != info64->lo_device ||
1248 info->lo_rdevice != info64->lo_rdevice ||
1249 info->lo_inode != info64->lo_inode ||
1250 info->lo_offset != info64->lo_offset)
1251 return -EOVERFLOW;
1252
1253 return 0;
1254}
1255
1256static int
1257loop_set_status_old(struct loop_device *lo, const struct loop_info __user *arg)
1258{
1259 struct loop_info info;
1260 struct loop_info64 info64;
1261
1262 if (copy_from_user(&info, arg, sizeof (struct loop_info)))
1263 return -EFAULT;
1264 loop_info64_from_old(&info, &info64);
1265 return loop_set_status(lo, &info64);
1266}
1267
1268static int
1269loop_set_status64(struct loop_device *lo, const struct loop_info64 __user *arg)
1270{
1271 struct loop_info64 info64;
1272
1273 if (copy_from_user(&info64, arg, sizeof (struct loop_info64)))
1274 return -EFAULT;
1275 return loop_set_status(lo, &info64);
1276}
1277
1278static int
1279loop_get_status_old(struct loop_device *lo, struct loop_info __user *arg) {
1280 struct loop_info info;
1281 struct loop_info64 info64;
1282 int err = 0;
1283
1284 if (!arg)
1285 err = -EINVAL;
1286 if (!err)
1287 err = loop_get_status(lo, &info64);
1288 if (!err)
1289 err = loop_info64_to_old(&info64, &info);
1290 if (!err && copy_to_user(arg, &info, sizeof(info)))
1291 err = -EFAULT;
1292
1293 return err;
1294}
1295
1296static int
1297loop_get_status64(struct loop_device *lo, struct loop_info64 __user *arg) {
1298 struct loop_info64 info64;
1299 int err = 0;
1300
1301 if (!arg)
1302 err = -EINVAL;
1303 if (!err)
1304 err = loop_get_status(lo, &info64);
1305 if (!err && copy_to_user(arg, &info64, sizeof(info64)))
1306 err = -EFAULT;
1307
1308 return err;
1309}
1310
53d66608
O
1311static int loop_set_capacity(struct loop_device *lo, struct block_device *bdev)
1312{
53d66608 1313 if (unlikely(lo->lo_state != Lo_bound))
7b0576a3 1314 return -ENXIO;
53d66608 1315
7b0576a3 1316 return figure_loop_size(lo, lo->lo_offset, lo->lo_sizelimit);
53d66608
O
1317}
1318
ab1cb278
ML
1319static int loop_set_dio(struct loop_device *lo, unsigned long arg)
1320{
1321 int error = -ENXIO;
1322 if (lo->lo_state != Lo_bound)
1323 goto out;
1324
1325 __loop_update_dio(lo, !!arg);
1326 if (lo->use_dio == !!arg)
1327 return 0;
1328 error = -EINVAL;
1329 out:
1330 return error;
1331}
1332
bb214884 1333static int lo_ioctl(struct block_device *bdev, fmode_t mode,
1da177e4
LT
1334 unsigned int cmd, unsigned long arg)
1335{
bb214884 1336 struct loop_device *lo = bdev->bd_disk->private_data;
1da177e4
LT
1337 int err;
1338
f028f3b2 1339 mutex_lock_nested(&lo->lo_ctl_mutex, 1);
1da177e4
LT
1340 switch (cmd) {
1341 case LOOP_SET_FD:
bb214884 1342 err = loop_set_fd(lo, mode, bdev, arg);
1da177e4
LT
1343 break;
1344 case LOOP_CHANGE_FD:
bb214884 1345 err = loop_change_fd(lo, bdev, arg);
1da177e4
LT
1346 break;
1347 case LOOP_CLR_FD:
f028f3b2 1348 /* loop_clr_fd would have unlocked lo_ctl_mutex on success */
4c823cc3 1349 err = loop_clr_fd(lo);
f028f3b2
NK
1350 if (!err)
1351 goto out_unlocked;
1da177e4
LT
1352 break;
1353 case LOOP_SET_STATUS:
7035b5df
DM
1354 err = -EPERM;
1355 if ((mode & FMODE_WRITE) || capable(CAP_SYS_ADMIN))
1356 err = loop_set_status_old(lo,
1357 (struct loop_info __user *)arg);
1da177e4
LT
1358 break;
1359 case LOOP_GET_STATUS:
1360 err = loop_get_status_old(lo, (struct loop_info __user *) arg);
1361 break;
1362 case LOOP_SET_STATUS64:
7035b5df
DM
1363 err = -EPERM;
1364 if ((mode & FMODE_WRITE) || capable(CAP_SYS_ADMIN))
1365 err = loop_set_status64(lo,
1366 (struct loop_info64 __user *) arg);
1da177e4
LT
1367 break;
1368 case LOOP_GET_STATUS64:
1369 err = loop_get_status64(lo, (struct loop_info64 __user *) arg);
1370 break;
53d66608
O
1371 case LOOP_SET_CAPACITY:
1372 err = -EPERM;
1373 if ((mode & FMODE_WRITE) || capable(CAP_SYS_ADMIN))
1374 err = loop_set_capacity(lo, bdev);
1375 break;
ab1cb278
ML
1376 case LOOP_SET_DIRECT_IO:
1377 err = -EPERM;
1378 if ((mode & FMODE_WRITE) || capable(CAP_SYS_ADMIN))
1379 err = loop_set_dio(lo, arg);
1380 break;
1da177e4
LT
1381 default:
1382 err = lo->ioctl ? lo->ioctl(lo, cmd, arg) : -EINVAL;
1383 }
f85221dd 1384 mutex_unlock(&lo->lo_ctl_mutex);
f028f3b2
NK
1385
1386out_unlocked:
1da177e4
LT
1387 return err;
1388}
1389
863d5b82
DH
1390#ifdef CONFIG_COMPAT
1391struct compat_loop_info {
1392 compat_int_t lo_number; /* ioctl r/o */
1393 compat_dev_t lo_device; /* ioctl r/o */
1394 compat_ulong_t lo_inode; /* ioctl r/o */
1395 compat_dev_t lo_rdevice; /* ioctl r/o */
1396 compat_int_t lo_offset;
1397 compat_int_t lo_encrypt_type;
1398 compat_int_t lo_encrypt_key_size; /* ioctl w/o */
1399 compat_int_t lo_flags; /* ioctl r/o */
1400 char lo_name[LO_NAME_SIZE];
1401 unsigned char lo_encrypt_key[LO_KEY_SIZE]; /* ioctl w/o */
1402 compat_ulong_t lo_init[2];
1403 char reserved[4];
1404};
1405
1406/*
1407 * Transfer 32-bit compatibility structure in userspace to 64-bit loop info
1408 * - noinlined to reduce stack space usage in main part of driver
1409 */
1410static noinline int
ba674cfc 1411loop_info64_from_compat(const struct compat_loop_info __user *arg,
863d5b82
DH
1412 struct loop_info64 *info64)
1413{
1414 struct compat_loop_info info;
1415
1416 if (copy_from_user(&info, arg, sizeof(info)))
1417 return -EFAULT;
1418
1419 memset(info64, 0, sizeof(*info64));
1420 info64->lo_number = info.lo_number;
1421 info64->lo_device = info.lo_device;
1422 info64->lo_inode = info.lo_inode;
1423 info64->lo_rdevice = info.lo_rdevice;
1424 info64->lo_offset = info.lo_offset;
1425 info64->lo_sizelimit = 0;
1426 info64->lo_encrypt_type = info.lo_encrypt_type;
1427 info64->lo_encrypt_key_size = info.lo_encrypt_key_size;
1428 info64->lo_flags = info.lo_flags;
1429 info64->lo_init[0] = info.lo_init[0];
1430 info64->lo_init[1] = info.lo_init[1];
1431 if (info.lo_encrypt_type == LO_CRYPT_CRYPTOAPI)
1432 memcpy(info64->lo_crypt_name, info.lo_name, LO_NAME_SIZE);
1433 else
1434 memcpy(info64->lo_file_name, info.lo_name, LO_NAME_SIZE);
1435 memcpy(info64->lo_encrypt_key, info.lo_encrypt_key, LO_KEY_SIZE);
1436 return 0;
1437}
1438
1439/*
1440 * Transfer 64-bit loop info to 32-bit compatibility structure in userspace
1441 * - noinlined to reduce stack space usage in main part of driver
1442 */
1443static noinline int
1444loop_info64_to_compat(const struct loop_info64 *info64,
1445 struct compat_loop_info __user *arg)
1446{
1447 struct compat_loop_info info;
1448
1449 memset(&info, 0, sizeof(info));
1450 info.lo_number = info64->lo_number;
1451 info.lo_device = info64->lo_device;
1452 info.lo_inode = info64->lo_inode;
1453 info.lo_rdevice = info64->lo_rdevice;
1454 info.lo_offset = info64->lo_offset;
1455 info.lo_encrypt_type = info64->lo_encrypt_type;
1456 info.lo_encrypt_key_size = info64->lo_encrypt_key_size;
1457 info.lo_flags = info64->lo_flags;
1458 info.lo_init[0] = info64->lo_init[0];
1459 info.lo_init[1] = info64->lo_init[1];
1460 if (info.lo_encrypt_type == LO_CRYPT_CRYPTOAPI)
1461 memcpy(info.lo_name, info64->lo_crypt_name, LO_NAME_SIZE);
1462 else
1463 memcpy(info.lo_name, info64->lo_file_name, LO_NAME_SIZE);
1464 memcpy(info.lo_encrypt_key, info64->lo_encrypt_key, LO_KEY_SIZE);
1465
1466 /* error in case values were truncated */
1467 if (info.lo_device != info64->lo_device ||
1468 info.lo_rdevice != info64->lo_rdevice ||
1469 info.lo_inode != info64->lo_inode ||
1470 info.lo_offset != info64->lo_offset ||
1471 info.lo_init[0] != info64->lo_init[0] ||
1472 info.lo_init[1] != info64->lo_init[1])
1473 return -EOVERFLOW;
1474
1475 if (copy_to_user(arg, &info, sizeof(info)))
1476 return -EFAULT;
1477 return 0;
1478}
1479
1480static int
1481loop_set_status_compat(struct loop_device *lo,
1482 const struct compat_loop_info __user *arg)
1483{
1484 struct loop_info64 info64;
1485 int ret;
1486
1487 ret = loop_info64_from_compat(arg, &info64);
1488 if (ret < 0)
1489 return ret;
1490 return loop_set_status(lo, &info64);
1491}
1492
1493static int
1494loop_get_status_compat(struct loop_device *lo,
1495 struct compat_loop_info __user *arg)
1496{
1497 struct loop_info64 info64;
1498 int err = 0;
1499
1500 if (!arg)
1501 err = -EINVAL;
1502 if (!err)
1503 err = loop_get_status(lo, &info64);
1504 if (!err)
1505 err = loop_info64_to_compat(&info64, arg);
1506 return err;
1507}
1508
bb214884
AV
1509static int lo_compat_ioctl(struct block_device *bdev, fmode_t mode,
1510 unsigned int cmd, unsigned long arg)
863d5b82 1511{
bb214884 1512 struct loop_device *lo = bdev->bd_disk->private_data;
863d5b82
DH
1513 int err;
1514
863d5b82
DH
1515 switch(cmd) {
1516 case LOOP_SET_STATUS:
1517 mutex_lock(&lo->lo_ctl_mutex);
1518 err = loop_set_status_compat(
1519 lo, (const struct compat_loop_info __user *) arg);
1520 mutex_unlock(&lo->lo_ctl_mutex);
1521 break;
1522 case LOOP_GET_STATUS:
1523 mutex_lock(&lo->lo_ctl_mutex);
1524 err = loop_get_status_compat(
1525 lo, (struct compat_loop_info __user *) arg);
1526 mutex_unlock(&lo->lo_ctl_mutex);
1527 break;
53d66608 1528 case LOOP_SET_CAPACITY:
863d5b82
DH
1529 case LOOP_CLR_FD:
1530 case LOOP_GET_STATUS64:
1531 case LOOP_SET_STATUS64:
1532 arg = (unsigned long) compat_ptr(arg);
1533 case LOOP_SET_FD:
1534 case LOOP_CHANGE_FD:
bb214884 1535 err = lo_ioctl(bdev, mode, cmd, arg);
863d5b82
DH
1536 break;
1537 default:
1538 err = -ENOIOCTLCMD;
1539 break;
1540 }
863d5b82
DH
1541 return err;
1542}
1543#endif
1544
bb214884 1545static int lo_open(struct block_device *bdev, fmode_t mode)
1da177e4 1546{
770fe30a
KS
1547 struct loop_device *lo;
1548 int err = 0;
1549
1550 mutex_lock(&loop_index_mutex);
1551 lo = bdev->bd_disk->private_data;
1552 if (!lo) {
1553 err = -ENXIO;
1554 goto out;
1555 }
1da177e4 1556
f8933667 1557 atomic_inc(&lo->lo_refcnt);
770fe30a
KS
1558out:
1559 mutex_unlock(&loop_index_mutex);
1560 return err;
1da177e4
LT
1561}
1562
db2a144b 1563static void lo_release(struct gendisk *disk, fmode_t mode)
1da177e4 1564{
bb214884 1565 struct loop_device *lo = disk->private_data;
ffcd7dca 1566 int err;
1da177e4 1567
f8933667
ML
1568 if (atomic_dec_return(&lo->lo_refcnt))
1569 return;
14f27939 1570
f8933667 1571 mutex_lock(&lo->lo_ctl_mutex);
14f27939
MB
1572 if (lo->lo_flags & LO_FLAGS_AUTOCLEAR) {
1573 /*
1574 * In autoclear mode, stop the loop thread
1575 * and remove configuration after last close.
1576 */
4c823cc3 1577 err = loop_clr_fd(lo);
ffcd7dca 1578 if (!err)
db2a144b 1579 return;
14f27939
MB
1580 } else {
1581 /*
1582 * Otherwise keep thread (if running) and config,
1583 * but flush possible ongoing bios in thread.
1584 */
1585 loop_flush(lo);
1586 }
96c58655 1587
f85221dd 1588 mutex_unlock(&lo->lo_ctl_mutex);
1da177e4
LT
1589}
1590
83d5cde4 1591static const struct block_device_operations lo_fops = {
1da177e4 1592 .owner = THIS_MODULE,
bb214884
AV
1593 .open = lo_open,
1594 .release = lo_release,
1595 .ioctl = lo_ioctl,
863d5b82 1596#ifdef CONFIG_COMPAT
bb214884 1597 .compat_ioctl = lo_compat_ioctl,
863d5b82 1598#endif
1da177e4
LT
1599};
1600
1601/*
1602 * And now the modules code and kernel interface.
1603 */
73285082 1604static int max_loop;
ac04fee0 1605module_param(max_loop, int, S_IRUGO);
a47653fc 1606MODULE_PARM_DESC(max_loop, "Maximum number of loop devices");
ac04fee0 1607module_param(max_part, int, S_IRUGO);
476a4813 1608MODULE_PARM_DESC(max_part, "Maximum number of partitions per loop device");
1da177e4
LT
1609MODULE_LICENSE("GPL");
1610MODULE_ALIAS_BLOCKDEV_MAJOR(LOOP_MAJOR);
1611
1612int loop_register_transfer(struct loop_func_table *funcs)
1613{
1614 unsigned int n = funcs->number;
1615
1616 if (n >= MAX_LO_CRYPT || xfer_funcs[n])
1617 return -EINVAL;
1618 xfer_funcs[n] = funcs;
1619 return 0;
1620}
1621
34dd82af
KS
1622static int unregister_transfer_cb(int id, void *ptr, void *data)
1623{
1624 struct loop_device *lo = ptr;
1625 struct loop_func_table *xfer = data;
1626
1627 mutex_lock(&lo->lo_ctl_mutex);
1628 if (lo->lo_encryption == xfer)
1629 loop_release_xfer(lo);
1630 mutex_unlock(&lo->lo_ctl_mutex);
1631 return 0;
1632}
1633
1da177e4
LT
1634int loop_unregister_transfer(int number)
1635{
1636 unsigned int n = number;
1da177e4
LT
1637 struct loop_func_table *xfer;
1638
1639 if (n == 0 || n >= MAX_LO_CRYPT || (xfer = xfer_funcs[n]) == NULL)
1640 return -EINVAL;
1641
1642 xfer_funcs[n] = NULL;
34dd82af 1643 idr_for_each(&loop_index_idr, &unregister_transfer_cb, xfer);
1da177e4
LT
1644 return 0;
1645}
1646
1647EXPORT_SYMBOL(loop_register_transfer);
1648EXPORT_SYMBOL(loop_unregister_transfer);
1649
b5dd2f60
ML
1650static int loop_queue_rq(struct blk_mq_hw_ctx *hctx,
1651 const struct blk_mq_queue_data *bd)
1652{
1653 struct loop_cmd *cmd = blk_mq_rq_to_pdu(bd->rq);
f4aa4c7b 1654 struct loop_device *lo = cmd->rq->q->queuedata;
b5dd2f60
ML
1655
1656 blk_mq_start_request(bd->rq);
1657
f4aa4c7b 1658 if (lo->lo_state != Lo_bound)
b4a567e8 1659 return BLK_MQ_RQ_QUEUE_ERROR;
f4aa4c7b 1660
f0225cac
CH
1661 switch (req_op(cmd->rq)) {
1662 case REQ_OP_FLUSH:
1663 case REQ_OP_DISCARD:
19372e27 1664 case REQ_OP_WRITE_ZEROES:
bc07c10a 1665 cmd->use_aio = false;
f0225cac
CH
1666 break;
1667 default:
1668 cmd->use_aio = lo->use_dio;
1669 break;
1670 }
bc07c10a 1671
3989144f 1672 kthread_queue_work(&lo->worker, &cmd->work);
b5dd2f60
ML
1673
1674 return BLK_MQ_RQ_QUEUE_OK;
1675}
1676
1677static void loop_handle_cmd(struct loop_cmd *cmd)
1678{
a8ebb056 1679 const bool write = op_is_write(req_op(cmd->rq));
b5dd2f60 1680 struct loop_device *lo = cmd->rq->q->queuedata;
f4829a9b 1681 int ret = 0;
b5dd2f60 1682
f4829a9b
CH
1683 if (write && (lo->lo_flags & LO_FLAGS_READ_ONLY)) {
1684 ret = -EIO;
b5dd2f60 1685 goto failed;
f4829a9b 1686 }
b5dd2f60 1687
30112013 1688 ret = do_req_filebacked(lo, cmd->rq);
b5dd2f60 1689 failed:
bc07c10a
ML
1690 /* complete non-aio request */
1691 if (!cmd->use_aio || ret)
54ef2b96 1692 blk_mq_complete_request(cmd->rq, ret ? -EIO : 0);
b5dd2f60
ML
1693}
1694
e03a3d7a 1695static void loop_queue_work(struct kthread_work *work)
b5dd2f60
ML
1696{
1697 struct loop_cmd *cmd =
e03a3d7a 1698 container_of(work, struct loop_cmd, work);
b5dd2f60
ML
1699
1700 loop_handle_cmd(cmd);
1701}
1702
1703static int loop_init_request(void *data, struct request *rq,
1704 unsigned int hctx_idx, unsigned int request_idx,
1705 unsigned int numa_node)
1706{
1707 struct loop_cmd *cmd = blk_mq_rq_to_pdu(rq);
1708
1709 cmd->rq = rq;
3989144f 1710 kthread_init_work(&cmd->work, loop_queue_work);
b5dd2f60
ML
1711
1712 return 0;
1713}
1714
f363b089 1715static const struct blk_mq_ops loop_mq_ops = {
b5dd2f60 1716 .queue_rq = loop_queue_rq,
b5dd2f60
ML
1717 .init_request = loop_init_request,
1718};
1719
34dd82af 1720static int loop_add(struct loop_device **l, int i)
73285082
KC
1721{
1722 struct loop_device *lo;
1723 struct gendisk *disk;
34dd82af 1724 int err;
73285082 1725
68d740d7 1726 err = -ENOMEM;
73285082 1727 lo = kzalloc(sizeof(*lo), GFP_KERNEL);
68d740d7 1728 if (!lo)
73285082 1729 goto out;
34dd82af 1730
ef7e7c82
MP
1731 lo->lo_state = Lo_unbound;
1732
c718aa65 1733 /* allocate id, if @id >= 0, we're requesting that specific id */
34dd82af 1734 if (i >= 0) {
c718aa65
TH
1735 err = idr_alloc(&loop_index_idr, lo, i, i + 1, GFP_KERNEL);
1736 if (err == -ENOSPC)
34dd82af 1737 err = -EEXIST;
34dd82af 1738 } else {
c718aa65 1739 err = idr_alloc(&loop_index_idr, lo, 0, 0, GFP_KERNEL);
34dd82af
KS
1740 }
1741 if (err < 0)
1742 goto out_free_dev;
c718aa65 1743 i = err;
73285082 1744
183cfb57 1745 err = -ENOMEM;
b5dd2f60
ML
1746 lo->tag_set.ops = &loop_mq_ops;
1747 lo->tag_set.nr_hw_queues = 1;
1748 lo->tag_set.queue_depth = 128;
1749 lo->tag_set.numa_node = NUMA_NO_NODE;
1750 lo->tag_set.cmd_size = sizeof(struct loop_cmd);
1751 lo->tag_set.flags = BLK_MQ_F_SHOULD_MERGE | BLK_MQ_F_SG_MERGE;
1752 lo->tag_set.driver_data = lo;
1753
1754 err = blk_mq_alloc_tag_set(&lo->tag_set);
1755 if (err)
3ec981e3 1756 goto out_free_idr;
73285082 1757
b5dd2f60
ML
1758 lo->lo_queue = blk_mq_init_queue(&lo->tag_set);
1759 if (IS_ERR_OR_NULL(lo->lo_queue)) {
1760 err = PTR_ERR(lo->lo_queue);
1761 goto out_cleanup_tags;
1762 }
ef7e7c82
MP
1763 lo->lo_queue->queuedata = lo;
1764
5b5e20f4
ML
1765 /*
1766 * It doesn't make sense to enable merge because the I/O
1767 * submitted to backing file is handled page by page.
1768 */
1769 queue_flag_set_unlocked(QUEUE_FLAG_NOMERGES, lo->lo_queue);
1770
7a649737 1771 err = -ENOMEM;
476a4813 1772 disk = lo->lo_disk = alloc_disk(1 << part_shift);
73285082
KC
1773 if (!disk)
1774 goto out_free_queue;
1775
e03c8dd1
KS
1776 /*
1777 * Disable partition scanning by default. The in-kernel partition
1778 * scanning can be requested individually per-device during its
1779 * setup. Userspace can always add and remove partitions from all
1780 * devices. The needed partition minors are allocated from the
1781 * extended minor space, the main loop device numbers will continue
1782 * to match the loop minors, regardless of the number of partitions
1783 * used.
1784 *
1785 * If max_part is given, partition scanning is globally enabled for
1786 * all loop devices. The minors for the main loop devices will be
1787 * multiples of max_part.
1788 *
1789 * Note: Global-for-all-devices, set-only-at-init, read-only module
1790 * parameteters like 'max_loop' and 'max_part' make things needlessly
1791 * complicated, are too static, inflexible and may surprise
1792 * userspace tools. Parameters like this in general should be avoided.
1793 */
1794 if (!part_shift)
1795 disk->flags |= GENHD_FL_NO_PART_SCAN;
1796 disk->flags |= GENHD_FL_EXT_DEVT;
73285082 1797 mutex_init(&lo->lo_ctl_mutex);
f8933667 1798 atomic_set(&lo->lo_refcnt, 0);
73285082 1799 lo->lo_number = i;
73285082
KC
1800 spin_lock_init(&lo->lo_lock);
1801 disk->major = LOOP_MAJOR;
476a4813 1802 disk->first_minor = i << part_shift;
73285082
KC
1803 disk->fops = &lo_fops;
1804 disk->private_data = lo;
1805 disk->queue = lo->lo_queue;
1806 sprintf(disk->disk_name, "loop%d", i);
34dd82af
KS
1807 add_disk(disk);
1808 *l = lo;
1809 return lo->lo_number;
73285082
KC
1810
1811out_free_queue:
1812 blk_cleanup_queue(lo->lo_queue);
b5dd2f60
ML
1813out_cleanup_tags:
1814 blk_mq_free_tag_set(&lo->tag_set);
3ec981e3
MP
1815out_free_idr:
1816 idr_remove(&loop_index_idr, i);
73285082
KC
1817out_free_dev:
1818 kfree(lo);
1819out:
34dd82af 1820 return err;
73285082
KC
1821}
1822
34dd82af 1823static void loop_remove(struct loop_device *lo)
1da177e4 1824{
73285082 1825 blk_cleanup_queue(lo->lo_queue);
6cd18e71 1826 del_gendisk(lo->lo_disk);
b5dd2f60 1827 blk_mq_free_tag_set(&lo->tag_set);
73285082 1828 put_disk(lo->lo_disk);
73285082
KC
1829 kfree(lo);
1830}
1da177e4 1831
770fe30a
KS
1832static int find_free_cb(int id, void *ptr, void *data)
1833{
1834 struct loop_device *lo = ptr;
1835 struct loop_device **l = data;
1836
1837 if (lo->lo_state == Lo_unbound) {
1838 *l = lo;
1839 return 1;
1840 }
1841 return 0;
1842}
1843
34dd82af 1844static int loop_lookup(struct loop_device **l, int i)
a47653fc
KC
1845{
1846 struct loop_device *lo;
34dd82af 1847 int ret = -ENODEV;
a47653fc 1848
770fe30a
KS
1849 if (i < 0) {
1850 int err;
1851
1852 err = idr_for_each(&loop_index_idr, &find_free_cb, &lo);
1853 if (err == 1) {
1854 *l = lo;
1855 ret = lo->lo_number;
1856 }
1857 goto out;
a47653fc
KC
1858 }
1859
770fe30a 1860 /* lookup and return a specific i */
34dd82af 1861 lo = idr_find(&loop_index_idr, i);
a47653fc 1862 if (lo) {
34dd82af
KS
1863 *l = lo;
1864 ret = lo->lo_number;
a47653fc 1865 }
770fe30a 1866out:
34dd82af 1867 return ret;
a47653fc
KC
1868}
1869
73285082
KC
1870static struct kobject *loop_probe(dev_t dev, int *part, void *data)
1871{
705962cc 1872 struct loop_device *lo;
07002e99 1873 struct kobject *kobj;
34dd82af 1874 int err;
73285082 1875
34dd82af
KS
1876 mutex_lock(&loop_index_mutex);
1877 err = loop_lookup(&lo, MINOR(dev) >> part_shift);
1878 if (err < 0)
1879 err = loop_add(&lo, MINOR(dev) >> part_shift);
1880 if (err < 0)
a207f593 1881 kobj = NULL;
34dd82af
KS
1882 else
1883 kobj = get_disk(lo->lo_disk);
1884 mutex_unlock(&loop_index_mutex);
73285082
KC
1885
1886 *part = 0;
07002e99 1887 return kobj;
73285082
KC
1888}
1889
770fe30a
KS
1890static long loop_control_ioctl(struct file *file, unsigned int cmd,
1891 unsigned long parm)
1892{
1893 struct loop_device *lo;
1894 int ret = -ENOSYS;
1895
1896 mutex_lock(&loop_index_mutex);
1897 switch (cmd) {
1898 case LOOP_CTL_ADD:
1899 ret = loop_lookup(&lo, parm);
1900 if (ret >= 0) {
1901 ret = -EEXIST;
1902 break;
1903 }
1904 ret = loop_add(&lo, parm);
1905 break;
1906 case LOOP_CTL_REMOVE:
1907 ret = loop_lookup(&lo, parm);
1908 if (ret < 0)
1909 break;
1910 mutex_lock(&lo->lo_ctl_mutex);
1911 if (lo->lo_state != Lo_unbound) {
1912 ret = -EBUSY;
1913 mutex_unlock(&lo->lo_ctl_mutex);
1914 break;
1915 }
f8933667 1916 if (atomic_read(&lo->lo_refcnt) > 0) {
770fe30a
KS
1917 ret = -EBUSY;
1918 mutex_unlock(&lo->lo_ctl_mutex);
1919 break;
1920 }
1921 lo->lo_disk->private_data = NULL;
1922 mutex_unlock(&lo->lo_ctl_mutex);
1923 idr_remove(&loop_index_idr, lo->lo_number);
1924 loop_remove(lo);
1925 break;
1926 case LOOP_CTL_GET_FREE:
1927 ret = loop_lookup(&lo, -1);
1928 if (ret >= 0)
1929 break;
1930 ret = loop_add(&lo, -1);
1931 }
1932 mutex_unlock(&loop_index_mutex);
1933
1934 return ret;
1935}
1936
1937static const struct file_operations loop_ctl_fops = {
1938 .open = nonseekable_open,
1939 .unlocked_ioctl = loop_control_ioctl,
1940 .compat_ioctl = loop_control_ioctl,
1941 .owner = THIS_MODULE,
1942 .llseek = noop_llseek,
1943};
1944
1945static struct miscdevice loop_misc = {
1946 .minor = LOOP_CTRL_MINOR,
1947 .name = "loop-control",
1948 .fops = &loop_ctl_fops,
1949};
1950
1951MODULE_ALIAS_MISCDEV(LOOP_CTRL_MINOR);
1952MODULE_ALIAS("devname:loop-control");
1953
73285082
KC
1954static int __init loop_init(void)
1955{
a47653fc
KC
1956 int i, nr;
1957 unsigned long range;
34dd82af 1958 struct loop_device *lo;
770fe30a 1959 int err;
a47653fc 1960
770fe30a
KS
1961 err = misc_register(&loop_misc);
1962 if (err < 0)
1963 return err;
476a4813
LV
1964
1965 part_shift = 0;
ac04fee0 1966 if (max_part > 0) {
476a4813
LV
1967 part_shift = fls(max_part);
1968
ac04fee0
NK
1969 /*
1970 * Adjust max_part according to part_shift as it is exported
1971 * to user space so that user can decide correct minor number
1972 * if [s]he want to create more devices.
1973 *
1974 * Note that -1 is required because partition 0 is reserved
1975 * for the whole disk.
1976 */
1977 max_part = (1UL << part_shift) - 1;
1978 }
1979
b1a66504
GC
1980 if ((1UL << part_shift) > DISK_MAX_PARTS) {
1981 err = -EINVAL;
1982 goto misc_out;
1983 }
78f4bb36 1984
b1a66504
GC
1985 if (max_loop > 1UL << (MINORBITS - part_shift)) {
1986 err = -EINVAL;
1987 goto misc_out;
1988 }
1da177e4 1989
d134b00b
KS
1990 /*
1991 * If max_loop is specified, create that many devices upfront.
1992 * This also becomes a hard limit. If max_loop is not specified,
1993 * create CONFIG_BLK_DEV_LOOP_MIN_COUNT loop devices at module
1994 * init time. Loop devices can be requested on-demand with the
1995 * /dev/loop-control interface, or be instantiated by accessing
1996 * a 'dead' device node.
1997 */
73285082 1998 if (max_loop) {
a47653fc 1999 nr = max_loop;
a1c15c59 2000 range = max_loop << part_shift;
a47653fc 2001 } else {
d134b00b 2002 nr = CONFIG_BLK_DEV_LOOP_MIN_COUNT;
a1c15c59 2003 range = 1UL << MINORBITS;
a47653fc
KC
2004 }
2005
b1a66504
GC
2006 if (register_blkdev(LOOP_MAJOR, "loop")) {
2007 err = -EIO;
2008 goto misc_out;
2009 }
1da177e4 2010
a47653fc
KC
2011 blk_register_region(MKDEV(LOOP_MAJOR, 0), range,
2012 THIS_MODULE, loop_probe, NULL, NULL);
2013
d134b00b 2014 /* pre-create number of devices given by config or max_loop */
34dd82af
KS
2015 mutex_lock(&loop_index_mutex);
2016 for (i = 0; i < nr; i++)
2017 loop_add(&lo, i);
2018 mutex_unlock(&loop_index_mutex);
2019
73285082 2020 printk(KERN_INFO "loop: module loaded\n");
1da177e4 2021 return 0;
b1a66504
GC
2022
2023misc_out:
2024 misc_deregister(&loop_misc);
2025 return err;
34dd82af 2026}
a47653fc 2027
34dd82af
KS
2028static int loop_exit_cb(int id, void *ptr, void *data)
2029{
2030 struct loop_device *lo = ptr;
a47653fc 2031
34dd82af
KS
2032 loop_remove(lo);
2033 return 0;
1da177e4
LT
2034}
2035
73285082 2036static void __exit loop_exit(void)
1da177e4 2037{
a47653fc 2038 unsigned long range;
1da177e4 2039
a1c15c59 2040 range = max_loop ? max_loop << part_shift : 1UL << MINORBITS;
a47653fc 2041
34dd82af 2042 idr_for_each(&loop_index_idr, &loop_exit_cb, NULL);
34dd82af 2043 idr_destroy(&loop_index_idr);
73285082 2044
a47653fc 2045 blk_unregister_region(MKDEV(LOOP_MAJOR, 0), range);
00d59405 2046 unregister_blkdev(LOOP_MAJOR, "loop");
770fe30a
KS
2047
2048 misc_deregister(&loop_misc);
1da177e4
LT
2049}
2050
2051module_init(loop_init);
2052module_exit(loop_exit);
2053
2054#ifndef MODULE
2055static int __init max_loop_setup(char *str)
2056{
2057 max_loop = simple_strtol(str, NULL, 0);
2058 return 1;
2059}
2060
2061__setup("max_loop=", max_loop_setup);
2062#endif