2 * Copyright (C) 2003 Sistina Software (UK) Limited.
3 * Copyright (C) 2004, 2010-2011 Red Hat, Inc. All rights reserved.
5 * This file is released under the GPL.
8 #include <linux/device-mapper.h>
10 #include <linux/module.h>
11 #include <linux/init.h>
12 #include <linux/blkdev.h>
13 #include <linux/bio.h>
14 #include <linux/slab.h>
16 #define DM_MSG_PREFIX "flakey"
18 #define all_corrupt_bio_flags_match(bio, fc) \
19 (((bio)->bi_opf & (fc)->corrupt_bio_flags) == (fc)->corrupt_bio_flags)
22 * Flakey: Used for testing only, simulates intermittent,
23 * catastrophic device failure.
27 unsigned long start_time
;
30 unsigned down_interval
;
32 unsigned corrupt_bio_byte
;
33 unsigned corrupt_bio_rw
;
34 unsigned corrupt_bio_value
;
35 unsigned corrupt_bio_flags
;
38 enum feature_flag_bits
{
47 static int parse_features(struct dm_arg_set
*as
, struct flakey_c
*fc
,
54 static const struct dm_arg _args
[] = {
55 {0, 6, "Invalid number of feature args"},
56 {1, UINT_MAX
, "Invalid corrupt bio byte"},
57 {0, 255, "Invalid corrupt value to write into bio byte (0-255)"},
58 {0, UINT_MAX
, "Invalid corrupt bio flags mask"},
61 /* No feature arguments supplied. */
65 r
= dm_read_arg_group(_args
, as
, &argc
, &ti
->error
);
70 arg_name
= dm_shift_arg(as
);
76 if (!strcasecmp(arg_name
, "drop_writes")) {
77 if (test_and_set_bit(DROP_WRITES
, &fc
->flags
)) {
78 ti
->error
= "Feature drop_writes duplicated";
80 } else if (test_bit(ERROR_WRITES
, &fc
->flags
)) {
81 ti
->error
= "Feature drop_writes conflicts with feature error_writes";
91 if (!strcasecmp(arg_name
, "error_writes")) {
92 if (test_and_set_bit(ERROR_WRITES
, &fc
->flags
)) {
93 ti
->error
= "Feature error_writes duplicated";
96 } else if (test_bit(DROP_WRITES
, &fc
->flags
)) {
97 ti
->error
= "Feature error_writes conflicts with feature drop_writes";
105 * corrupt_bio_byte <Nth_byte> <direction> <value> <bio_flags>
107 if (!strcasecmp(arg_name
, "corrupt_bio_byte")) {
109 ti
->error
= "Feature corrupt_bio_byte requires parameters";
113 r
= dm_read_arg(_args
+ 1, as
, &fc
->corrupt_bio_byte
, &ti
->error
);
121 arg_name
= dm_shift_arg(as
);
122 if (!strcasecmp(arg_name
, "w"))
123 fc
->corrupt_bio_rw
= WRITE
;
124 else if (!strcasecmp(arg_name
, "r"))
125 fc
->corrupt_bio_rw
= READ
;
127 ti
->error
= "Invalid corrupt bio direction (r or w)";
133 * Value of byte (0-255) to write in place of correct one.
135 r
= dm_read_arg(_args
+ 2, as
, &fc
->corrupt_bio_value
, &ti
->error
);
141 * Only corrupt bios with these flags set.
143 r
= dm_read_arg(_args
+ 3, as
, &fc
->corrupt_bio_flags
, &ti
->error
);
151 ti
->error
= "Unrecognised flakey feature requested";
155 if (test_bit(DROP_WRITES
, &fc
->flags
) && (fc
->corrupt_bio_rw
== WRITE
)) {
156 ti
->error
= "drop_writes is incompatible with corrupt_bio_byte with the WRITE flag set";
159 } else if (test_bit(ERROR_WRITES
, &fc
->flags
) && (fc
->corrupt_bio_rw
== WRITE
)) {
160 ti
->error
= "error_writes is incompatible with corrupt_bio_byte with the WRITE flag set";
168 * Construct a flakey mapping:
169 * <dev_path> <offset> <up interval> <down interval> [<#feature args> [<arg>]*]
173 * [corrupt_bio_byte <Nth_byte> <direction> <value> <bio_flags>]
175 * Nth_byte starts from 1 for the first byte.
176 * Direction is r for READ or w for WRITE.
177 * bio_flags is ignored if 0.
179 static int flakey_ctr(struct dm_target
*ti
, unsigned int argc
, char **argv
)
181 static const struct dm_arg _args
[] = {
182 {0, UINT_MAX
, "Invalid up interval"},
183 {0, UINT_MAX
, "Invalid down interval"},
188 unsigned long long tmpll
;
189 struct dm_arg_set as
;
197 ti
->error
= "Invalid argument count";
201 fc
= kzalloc(sizeof(*fc
), GFP_KERNEL
);
203 ti
->error
= "Cannot allocate context";
206 fc
->start_time
= jiffies
;
208 devname
= dm_shift_arg(&as
);
211 if (sscanf(dm_shift_arg(&as
), "%llu%c", &tmpll
, &dummy
) != 1) {
212 ti
->error
= "Invalid device sector";
217 r
= dm_read_arg(_args
, &as
, &fc
->up_interval
, &ti
->error
);
221 r
= dm_read_arg(_args
, &as
, &fc
->down_interval
, &ti
->error
);
225 if (!(fc
->up_interval
+ fc
->down_interval
)) {
226 ti
->error
= "Total (up + down) interval is zero";
231 if (fc
->up_interval
+ fc
->down_interval
< fc
->up_interval
) {
232 ti
->error
= "Interval overflow";
237 r
= parse_features(&as
, fc
, ti
);
241 r
= dm_get_device(ti
, devname
, dm_table_get_mode(ti
->table
), &fc
->dev
);
243 ti
->error
= "Device lookup failed";
247 ti
->num_flush_bios
= 1;
248 ti
->num_discard_bios
= 1;
249 ti
->per_io_data_size
= sizeof(struct per_bio_data
);
258 static void flakey_dtr(struct dm_target
*ti
)
260 struct flakey_c
*fc
= ti
->private;
262 dm_put_device(ti
, fc
->dev
);
266 static sector_t
flakey_map_sector(struct dm_target
*ti
, sector_t bi_sector
)
268 struct flakey_c
*fc
= ti
->private;
270 return fc
->start
+ dm_target_offset(ti
, bi_sector
);
273 static void flakey_map_bio(struct dm_target
*ti
, struct bio
*bio
)
275 struct flakey_c
*fc
= ti
->private;
277 bio_set_dev(bio
, fc
->dev
->bdev
);
278 if (bio_sectors(bio
) || bio_op(bio
) == REQ_OP_ZONE_RESET
)
279 bio
->bi_iter
.bi_sector
=
280 flakey_map_sector(ti
, bio
->bi_iter
.bi_sector
);
283 static void corrupt_bio_data(struct bio
*bio
, struct flakey_c
*fc
)
285 unsigned bio_bytes
= bio_cur_bytes(bio
);
286 char *data
= bio_data(bio
);
289 * Overwrite the Nth byte of the data returned.
291 if (data
&& bio_bytes
>= fc
->corrupt_bio_byte
) {
292 data
[fc
->corrupt_bio_byte
- 1] = fc
->corrupt_bio_value
;
294 DMDEBUG("Corrupting data bio=%p by writing %u to byte %u "
295 "(rw=%c bi_opf=%u bi_sector=%llu cur_bytes=%u)\n",
296 bio
, fc
->corrupt_bio_value
, fc
->corrupt_bio_byte
,
297 (bio_data_dir(bio
) == WRITE
) ? 'w' : 'r', bio
->bi_opf
,
298 (unsigned long long)bio
->bi_iter
.bi_sector
, bio_bytes
);
302 static int flakey_map(struct dm_target
*ti
, struct bio
*bio
)
304 struct flakey_c
*fc
= ti
->private;
306 struct per_bio_data
*pb
= dm_per_bio_data(bio
, sizeof(struct per_bio_data
));
307 pb
->bio_submitted
= false;
309 /* Do not fail reset zone */
310 if (bio_op(bio
) == REQ_OP_ZONE_RESET
)
313 /* We need to remap reported zones, so remember the BIO iter */
314 if (bio_op(bio
) == REQ_OP_ZONE_REPORT
)
318 elapsed
= (jiffies
- fc
->start_time
) / HZ
;
319 if (elapsed
% (fc
->up_interval
+ fc
->down_interval
) >= fc
->up_interval
) {
321 * Flag this bio as submitted while down.
323 pb
->bio_submitted
= true;
326 * Error reads if neither corrupt_bio_byte or drop_writes or error_writes are set.
327 * Otherwise, flakey_end_io() will decide if the reads should be modified.
329 if (bio_data_dir(bio
) == READ
) {
330 if (!fc
->corrupt_bio_byte
&& !test_bit(DROP_WRITES
, &fc
->flags
) &&
331 !test_bit(ERROR_WRITES
, &fc
->flags
))
332 return DM_MAPIO_KILL
;
337 * Drop or error writes?
339 if (test_bit(DROP_WRITES
, &fc
->flags
)) {
341 return DM_MAPIO_SUBMITTED
;
343 else if (test_bit(ERROR_WRITES
, &fc
->flags
)) {
345 return DM_MAPIO_SUBMITTED
;
349 * Corrupt matching writes.
351 if (fc
->corrupt_bio_byte
&& (fc
->corrupt_bio_rw
== WRITE
)) {
352 if (all_corrupt_bio_flags_match(bio
, fc
))
353 corrupt_bio_data(bio
, fc
);
358 * By default, error all I/O.
360 return DM_MAPIO_KILL
;
364 flakey_map_bio(ti
, bio
);
366 return DM_MAPIO_REMAPPED
;
369 static int flakey_end_io(struct dm_target
*ti
, struct bio
*bio
,
372 struct flakey_c
*fc
= ti
->private;
373 struct per_bio_data
*pb
= dm_per_bio_data(bio
, sizeof(struct per_bio_data
));
375 if (bio_op(bio
) == REQ_OP_ZONE_RESET
)
376 return DM_ENDIO_DONE
;
378 if (bio_op(bio
) == REQ_OP_ZONE_REPORT
) {
379 dm_remap_zone_report(ti
, bio
, fc
->start
);
380 return DM_ENDIO_DONE
;
383 if (!*error
&& pb
->bio_submitted
&& (bio_data_dir(bio
) == READ
)) {
384 if (fc
->corrupt_bio_byte
&& (fc
->corrupt_bio_rw
== READ
) &&
385 all_corrupt_bio_flags_match(bio
, fc
)) {
387 * Corrupt successful matching READs while in down state.
389 corrupt_bio_data(bio
, fc
);
391 } else if (!test_bit(DROP_WRITES
, &fc
->flags
) &&
392 !test_bit(ERROR_WRITES
, &fc
->flags
)) {
394 * Error read during the down_interval if drop_writes
395 * and error_writes were not configured.
397 *error
= BLK_STS_IOERR
;
401 return DM_ENDIO_DONE
;
404 static void flakey_status(struct dm_target
*ti
, status_type_t type
,
405 unsigned status_flags
, char *result
, unsigned maxlen
)
408 struct flakey_c
*fc
= ti
->private;
409 unsigned drop_writes
, error_writes
;
412 case STATUSTYPE_INFO
:
416 case STATUSTYPE_TABLE
:
417 DMEMIT("%s %llu %u %u ", fc
->dev
->name
,
418 (unsigned long long)fc
->start
, fc
->up_interval
,
421 drop_writes
= test_bit(DROP_WRITES
, &fc
->flags
);
422 error_writes
= test_bit(ERROR_WRITES
, &fc
->flags
);
423 DMEMIT("%u ", drop_writes
+ error_writes
+ (fc
->corrupt_bio_byte
> 0) * 5);
426 DMEMIT("drop_writes ");
427 else if (error_writes
)
428 DMEMIT("error_writes ");
430 if (fc
->corrupt_bio_byte
)
431 DMEMIT("corrupt_bio_byte %u %c %u %u ",
432 fc
->corrupt_bio_byte
,
433 (fc
->corrupt_bio_rw
== WRITE
) ? 'w' : 'r',
434 fc
->corrupt_bio_value
, fc
->corrupt_bio_flags
);
440 static int flakey_prepare_ioctl(struct dm_target
*ti
,
441 struct block_device
**bdev
, fmode_t
*mode
)
443 struct flakey_c
*fc
= ti
->private;
445 *bdev
= fc
->dev
->bdev
;
448 * Only pass ioctls through if the device sizes match exactly.
451 ti
->len
!= i_size_read((*bdev
)->bd_inode
) >> SECTOR_SHIFT
)
456 static int flakey_iterate_devices(struct dm_target
*ti
, iterate_devices_callout_fn fn
, void *data
)
458 struct flakey_c
*fc
= ti
->private;
460 return fn(ti
, fc
->dev
, fc
->start
, ti
->len
, data
);
463 static struct target_type flakey_target
= {
465 .version
= {1, 5, 0},
466 #ifdef CONFIG_BLK_DEV_ZONED
467 .features
= DM_TARGET_ZONED_HM
,
469 .module
= THIS_MODULE
,
473 .end_io
= flakey_end_io
,
474 .status
= flakey_status
,
475 .prepare_ioctl
= flakey_prepare_ioctl
,
476 .iterate_devices
= flakey_iterate_devices
,
479 static int __init
dm_flakey_init(void)
481 int r
= dm_register_target(&flakey_target
);
484 DMERR("register failed %d", r
);
489 static void __exit
dm_flakey_exit(void)
491 dm_unregister_target(&flakey_target
);
495 module_init(dm_flakey_init
);
496 module_exit(dm_flakey_exit
);
498 MODULE_DESCRIPTION(DM_NAME
" flakey target");
499 MODULE_AUTHOR("Joe Thornber <dm-devel@redhat.com>");
500 MODULE_LICENSE("GPL");