1 // SPDX-License-Identifier: GPL-2.0-only
3 * Copyright (C) 2021 Microsoft Corporation
5 * Author: Tushar Sugandhi <tusharsu@linux.microsoft.com>
7 * Enables IMA measurements for DM targets
13 #include <linux/ima.h>
14 #include <linux/sched/mm.h>
15 #include <crypto/hash.h>
16 #include <linux/crypto.h>
17 #include <crypto/hash_info.h>
19 #define DM_MSG_PREFIX "ima"
22 * Internal function to prefix separator characters in input buffer with escape
23 * character, so that they don't interfere with the construction of key-value pairs,
24 * and clients can split the key1=val1,key2=val2,key3=val3; pairs properly.
26 static void fix_separator_chars(char **buf
)
31 for (i
= 0; i
< l
; i
++)
32 if ((*buf
)[i
] == '\\' || (*buf
)[i
] == ';' || (*buf
)[i
] == '=' || (*buf
)[i
] == ',')
38 for (i
= l
-1, j
= i
+sp
; i
>= 0; i
--) {
39 (*buf
)[j
--] = (*buf
)[i
];
40 if ((*buf
)[i
] == '\\' || (*buf
)[i
] == ';' || (*buf
)[i
] == '=' || (*buf
)[i
] == ',')
46 * Internal function to allocate memory for IMA measurements.
48 static void *dm_ima_alloc(size_t len
, gfp_t flags
, bool noio
)
50 unsigned int noio_flag
;
54 noio_flag
= memalloc_noio_save();
56 ptr
= kzalloc(len
, flags
);
59 memalloc_noio_restore(noio_flag
);
65 * Internal function to allocate and copy name and uuid for IMA measurements.
67 static int dm_ima_alloc_and_copy_name_uuid(struct mapped_device
*md
, char **dev_name
,
68 char **dev_uuid
, bool noio
)
71 *dev_name
= dm_ima_alloc(DM_NAME_LEN
*2, GFP_KERNEL
, noio
);
77 *dev_uuid
= dm_ima_alloc(DM_UUID_LEN
*2, GFP_KERNEL
, noio
);
83 r
= dm_copy_name_and_uuid(md
, *dev_name
, *dev_uuid
);
87 fix_separator_chars(dev_name
);
88 fix_separator_chars(dev_uuid
);
100 * Internal function to allocate and copy device data for IMA measurements.
102 static int dm_ima_alloc_and_copy_device_data(struct mapped_device
*md
, char **device_data
,
103 unsigned int num_targets
, bool noio
)
105 char *dev_name
= NULL
, *dev_uuid
= NULL
;
108 r
= dm_ima_alloc_and_copy_name_uuid(md
, &dev_name
, &dev_uuid
, noio
);
112 *device_data
= dm_ima_alloc(DM_IMA_DEVICE_BUF_LEN
, GFP_KERNEL
, noio
);
113 if (!(*device_data
)) {
118 scnprintf(*device_data
, DM_IMA_DEVICE_BUF_LEN
,
119 "name=%s,uuid=%s,major=%d,minor=%d,minor_count=%d,num_targets=%u;",
120 dev_name
, dev_uuid
, md
->disk
->major
, md
->disk
->first_minor
,
121 md
->disk
->minors
, num_targets
);
129 * Internal wrapper function to call IMA to measure DM data.
131 static void dm_ima_measure_data(const char *event_name
, const void *buf
, size_t buf_len
,
134 unsigned int noio_flag
;
137 noio_flag
= memalloc_noio_save();
139 ima_measure_critical_data(DM_NAME
, event_name
, buf
, buf_len
,
143 memalloc_noio_restore(noio_flag
);
147 * Internal function to allocate and copy current device capacity for IMA measurements.
149 static int dm_ima_alloc_and_copy_capacity_str(struct mapped_device
*md
, char **capacity_str
,
154 capacity
= get_capacity(md
->disk
);
156 *capacity_str
= dm_ima_alloc(DM_IMA_DEVICE_CAPACITY_BUF_LEN
, GFP_KERNEL
, noio
);
157 if (!(*capacity_str
))
160 scnprintf(*capacity_str
, DM_IMA_DEVICE_BUF_LEN
, "current_device_capacity=%llu;",
167 * Initialize/reset the dm ima related data structure variables.
169 void dm_ima_reset_data(struct mapped_device
*md
)
171 memset(&(md
->ima
), 0, sizeof(md
->ima
));
172 md
->ima
.dm_version_str_len
= strlen(DM_IMA_VERSION_STR
);
176 * Build up the IMA data for each target, and finally measure.
178 void dm_ima_measure_on_table_load(struct dm_table
*table
, unsigned int status_flags
)
180 size_t device_data_buf_len
, target_metadata_buf_len
, target_data_buf_len
, l
= 0;
181 char *target_metadata_buf
= NULL
, *target_data_buf
= NULL
, *digest_buf
= NULL
;
182 char *ima_buf
= NULL
, *device_data_buf
= NULL
;
183 int digest_size
, last_target_measured
= -1, r
;
184 status_type_t type
= STATUSTYPE_IMA
;
185 size_t cur_total_buf_len
= 0;
186 unsigned int num_targets
, i
;
187 SHASH_DESC_ON_STACK(shash
, NULL
);
188 struct crypto_shash
*tfm
= NULL
;
192 * In below hash_alg_prefix_len assignment +1 is for the additional char (':'),
193 * when prefixing the hash value with the hash algorithm name. e.g. sha256:<hash_value>.
195 const size_t hash_alg_prefix_len
= strlen(DM_IMA_TABLE_HASH_ALG
) + 1;
196 char table_load_event_name
[] = "dm_table_load";
198 ima_buf
= dm_ima_alloc(DM_IMA_MEASUREMENT_BUF_LEN
, GFP_KERNEL
, noio
);
202 target_metadata_buf
= dm_ima_alloc(DM_IMA_TARGET_METADATA_BUF_LEN
, GFP_KERNEL
, noio
);
203 if (!target_metadata_buf
)
206 target_data_buf
= dm_ima_alloc(DM_IMA_TARGET_DATA_BUF_LEN
, GFP_KERNEL
, noio
);
207 if (!target_data_buf
)
210 num_targets
= table
->num_targets
;
212 if (dm_ima_alloc_and_copy_device_data(table
->md
, &device_data_buf
, num_targets
, noio
))
215 tfm
= crypto_alloc_shash(DM_IMA_TABLE_HASH_ALG
, 0, 0);
220 digest_size
= crypto_shash_digestsize(tfm
);
221 digest
= dm_ima_alloc(digest_size
, GFP_KERNEL
, noio
);
225 r
= crypto_shash_init(shash
);
229 memcpy(ima_buf
+ l
, DM_IMA_VERSION_STR
, table
->md
->ima
.dm_version_str_len
);
230 l
+= table
->md
->ima
.dm_version_str_len
;
232 device_data_buf_len
= strlen(device_data_buf
);
233 memcpy(ima_buf
+ l
, device_data_buf
, device_data_buf_len
);
234 l
+= device_data_buf_len
;
236 for (i
= 0; i
< num_targets
; i
++) {
237 struct dm_target
*ti
= dm_table_get_target(table
, i
);
239 last_target_measured
= 0;
242 * First retrieve the target metadata.
244 scnprintf(target_metadata_buf
, DM_IMA_TARGET_METADATA_BUF_LEN
,
245 "target_index=%d,target_begin=%llu,target_len=%llu,",
246 i
, ti
->begin
, ti
->len
);
247 target_metadata_buf_len
= strlen(target_metadata_buf
);
250 * Then retrieve the actual target data.
252 if (ti
->type
->status
)
253 ti
->type
->status(ti
, type
, status_flags
, target_data_buf
,
254 DM_IMA_TARGET_DATA_BUF_LEN
);
256 target_data_buf
[0] = '\0';
258 target_data_buf_len
= strlen(target_data_buf
);
261 * Check if the total data can fit into the IMA buffer.
263 cur_total_buf_len
= l
+ target_metadata_buf_len
+ target_data_buf_len
;
266 * IMA measurements for DM targets are best-effort.
267 * If the total data buffered so far, including the current target,
268 * is too large to fit into DM_IMA_MEASUREMENT_BUF_LEN, measure what
269 * we have in the current buffer, and continue measuring the remaining
270 * targets by prefixing the device metadata again.
272 if (unlikely(cur_total_buf_len
>= DM_IMA_MEASUREMENT_BUF_LEN
)) {
273 dm_ima_measure_data(table_load_event_name
, ima_buf
, l
, noio
);
274 r
= crypto_shash_update(shash
, (const u8
*)ima_buf
, l
);
278 memset(ima_buf
, 0, DM_IMA_MEASUREMENT_BUF_LEN
);
282 * Each new "dm_table_load" entry in IMA log should have device data
283 * prefix, so that multiple records from the same "dm_table_load" for
284 * a given device can be linked together.
286 memcpy(ima_buf
+ l
, DM_IMA_VERSION_STR
, table
->md
->ima
.dm_version_str_len
);
287 l
+= table
->md
->ima
.dm_version_str_len
;
289 memcpy(ima_buf
+ l
, device_data_buf
, device_data_buf_len
);
290 l
+= device_data_buf_len
;
293 * If this iteration of the for loop turns out to be the last target
294 * in the table, dm_ima_measure_data("dm_table_load", ...) doesn't need
295 * to be called again, just the hash needs to be finalized.
296 * "last_target_measured" tracks this state.
298 last_target_measured
= 1;
302 * Fill-in all the target metadata, so that multiple targets for the same
303 * device can be linked together.
305 memcpy(ima_buf
+ l
, target_metadata_buf
, target_metadata_buf_len
);
306 l
+= target_metadata_buf_len
;
308 memcpy(ima_buf
+ l
, target_data_buf
, target_data_buf_len
);
309 l
+= target_data_buf_len
;
312 if (!last_target_measured
) {
313 dm_ima_measure_data(table_load_event_name
, ima_buf
, l
, noio
);
315 r
= crypto_shash_update(shash
, (const u8
*)ima_buf
, l
);
321 * Finalize the table hash, and store it in table->md->ima.inactive_table.hash,
322 * so that the table data can be verified against the future device state change
323 * events, e.g. resume, rename, remove, table-clear etc.
325 r
= crypto_shash_final(shash
, digest
);
329 digest_buf
= dm_ima_alloc((digest_size
*2) + hash_alg_prefix_len
+ 1, GFP_KERNEL
, noio
);
334 snprintf(digest_buf
, hash_alg_prefix_len
+ 1, "%s:", DM_IMA_TABLE_HASH_ALG
);
336 for (i
= 0; i
< digest_size
; i
++)
337 snprintf((digest_buf
+ hash_alg_prefix_len
+ (i
*2)), 3, "%02x", digest
[i
]);
339 if (table
->md
->ima
.active_table
.hash
!= table
->md
->ima
.inactive_table
.hash
)
340 kfree(table
->md
->ima
.inactive_table
.hash
);
342 table
->md
->ima
.inactive_table
.hash
= digest_buf
;
343 table
->md
->ima
.inactive_table
.hash_len
= strlen(digest_buf
);
344 table
->md
->ima
.inactive_table
.num_targets
= num_targets
;
346 if (table
->md
->ima
.active_table
.device_metadata
!=
347 table
->md
->ima
.inactive_table
.device_metadata
)
348 kfree(table
->md
->ima
.inactive_table
.device_metadata
);
350 table
->md
->ima
.inactive_table
.device_metadata
= device_data_buf
;
351 table
->md
->ima
.inactive_table
.device_metadata_len
= device_data_buf_len
;
356 kfree(device_data_buf
);
360 crypto_free_shash(tfm
);
362 kfree(target_metadata_buf
);
363 kfree(target_data_buf
);
367 * Measure IMA data on device resume.
369 void dm_ima_measure_on_device_resume(struct mapped_device
*md
, bool swap
)
371 char *device_table_data
, *dev_name
= NULL
, *dev_uuid
= NULL
, *capacity_str
= NULL
;
372 char active
[] = "active_table_hash=";
373 unsigned int active_len
= strlen(active
), capacity_len
= 0;
379 device_table_data
= dm_ima_alloc(DM_IMA_DEVICE_BUF_LEN
, GFP_KERNEL
, noio
);
380 if (!device_table_data
)
383 r
= dm_ima_alloc_and_copy_capacity_str(md
, &capacity_str
, noio
);
387 memcpy(device_table_data
+ l
, DM_IMA_VERSION_STR
, md
->ima
.dm_version_str_len
);
388 l
+= md
->ima
.dm_version_str_len
;
391 if (md
->ima
.active_table
.hash
!= md
->ima
.inactive_table
.hash
)
392 kfree(md
->ima
.active_table
.hash
);
394 md
->ima
.active_table
.hash
= NULL
;
395 md
->ima
.active_table
.hash_len
= 0;
397 if (md
->ima
.active_table
.device_metadata
!=
398 md
->ima
.inactive_table
.device_metadata
)
399 kfree(md
->ima
.active_table
.device_metadata
);
401 md
->ima
.active_table
.device_metadata
= NULL
;
402 md
->ima
.active_table
.device_metadata_len
= 0;
403 md
->ima
.active_table
.num_targets
= 0;
405 if (md
->ima
.inactive_table
.hash
) {
406 md
->ima
.active_table
.hash
= md
->ima
.inactive_table
.hash
;
407 md
->ima
.active_table
.hash_len
= md
->ima
.inactive_table
.hash_len
;
408 md
->ima
.inactive_table
.hash
= NULL
;
409 md
->ima
.inactive_table
.hash_len
= 0;
412 if (md
->ima
.inactive_table
.device_metadata
) {
413 md
->ima
.active_table
.device_metadata
=
414 md
->ima
.inactive_table
.device_metadata
;
415 md
->ima
.active_table
.device_metadata_len
=
416 md
->ima
.inactive_table
.device_metadata_len
;
417 md
->ima
.active_table
.num_targets
= md
->ima
.inactive_table
.num_targets
;
418 md
->ima
.inactive_table
.device_metadata
= NULL
;
419 md
->ima
.inactive_table
.device_metadata_len
= 0;
420 md
->ima
.inactive_table
.num_targets
= 0;
424 if (md
->ima
.active_table
.device_metadata
) {
425 memcpy(device_table_data
+ l
, md
->ima
.active_table
.device_metadata
,
426 md
->ima
.active_table
.device_metadata_len
);
427 l
+= md
->ima
.active_table
.device_metadata_len
;
432 if (md
->ima
.active_table
.hash
) {
433 memcpy(device_table_data
+ l
, active
, active_len
);
436 memcpy(device_table_data
+ l
, md
->ima
.active_table
.hash
,
437 md
->ima
.active_table
.hash_len
);
438 l
+= md
->ima
.active_table
.hash_len
;
440 memcpy(device_table_data
+ l
, ";", 1);
447 r
= dm_ima_alloc_and_copy_name_uuid(md
, &dev_name
, &dev_uuid
, noio
);
451 scnprintf(device_table_data
, DM_IMA_DEVICE_BUF_LEN
,
452 "%sname=%s,uuid=%s;device_resume=no_data;",
453 DM_IMA_VERSION_STR
, dev_name
, dev_uuid
);
454 l
= strlen(device_table_data
);
458 capacity_len
= strlen(capacity_str
);
459 memcpy(device_table_data
+ l
, capacity_str
, capacity_len
);
462 dm_ima_measure_data("dm_device_resume", device_table_data
, l
, noio
);
468 kfree(device_table_data
);
472 * Measure IMA data on remove.
474 void dm_ima_measure_on_device_remove(struct mapped_device
*md
, bool remove_all
)
476 char *device_table_data
, *dev_name
= NULL
, *dev_uuid
= NULL
, *capacity_str
= NULL
;
477 char active_table_str
[] = "active_table_hash=";
478 char inactive_table_str
[] = "inactive_table_hash=";
479 char device_active_str
[] = "device_active_metadata=";
480 char device_inactive_str
[] = "device_inactive_metadata=";
481 char remove_all_str
[] = "remove_all=";
482 unsigned int active_table_len
= strlen(active_table_str
);
483 unsigned int inactive_table_len
= strlen(inactive_table_str
);
484 unsigned int device_active_len
= strlen(device_active_str
);
485 unsigned int device_inactive_len
= strlen(device_inactive_str
);
486 unsigned int remove_all_len
= strlen(remove_all_str
);
487 unsigned int capacity_len
= 0;
493 device_table_data
= dm_ima_alloc(DM_IMA_DEVICE_BUF_LEN
*2, GFP_KERNEL
, noio
);
494 if (!device_table_data
)
497 r
= dm_ima_alloc_and_copy_capacity_str(md
, &capacity_str
, noio
);
499 kfree(device_table_data
);
503 memcpy(device_table_data
+ l
, DM_IMA_VERSION_STR
, md
->ima
.dm_version_str_len
);
504 l
+= md
->ima
.dm_version_str_len
;
506 if (md
->ima
.active_table
.device_metadata
) {
507 memcpy(device_table_data
+ l
, device_active_str
, device_active_len
);
508 l
+= device_active_len
;
510 memcpy(device_table_data
+ l
, md
->ima
.active_table
.device_metadata
,
511 md
->ima
.active_table
.device_metadata_len
);
512 l
+= md
->ima
.active_table
.device_metadata_len
;
517 if (md
->ima
.inactive_table
.device_metadata
) {
518 memcpy(device_table_data
+ l
, device_inactive_str
, device_inactive_len
);
519 l
+= device_inactive_len
;
521 memcpy(device_table_data
+ l
, md
->ima
.inactive_table
.device_metadata
,
522 md
->ima
.inactive_table
.device_metadata_len
);
523 l
+= md
->ima
.inactive_table
.device_metadata_len
;
528 if (md
->ima
.active_table
.hash
) {
529 memcpy(device_table_data
+ l
, active_table_str
, active_table_len
);
530 l
+= active_table_len
;
532 memcpy(device_table_data
+ l
, md
->ima
.active_table
.hash
,
533 md
->ima
.active_table
.hash_len
);
534 l
+= md
->ima
.active_table
.hash_len
;
536 memcpy(device_table_data
+ l
, ",", 1);
542 if (md
->ima
.inactive_table
.hash
) {
543 memcpy(device_table_data
+ l
, inactive_table_str
, inactive_table_len
);
544 l
+= inactive_table_len
;
546 memcpy(device_table_data
+ l
, md
->ima
.inactive_table
.hash
,
547 md
->ima
.inactive_table
.hash_len
);
548 l
+= md
->ima
.inactive_table
.hash_len
;
550 memcpy(device_table_data
+ l
, ",", 1);
556 * In case both active and inactive tables, and corresponding
557 * device metadata is cleared/missing - record the name and uuid
558 * in IMA measurements.
561 if (dm_ima_alloc_and_copy_name_uuid(md
, &dev_name
, &dev_uuid
, noio
))
564 scnprintf(device_table_data
, DM_IMA_DEVICE_BUF_LEN
,
565 "%sname=%s,uuid=%s;device_remove=no_data;",
566 DM_IMA_VERSION_STR
, dev_name
, dev_uuid
);
567 l
= strlen(device_table_data
);
570 memcpy(device_table_data
+ l
, remove_all_str
, remove_all_len
);
572 memcpy(device_table_data
+ l
, remove_all
? "y;" : "n;", 2);
575 capacity_len
= strlen(capacity_str
);
576 memcpy(device_table_data
+ l
, capacity_str
, capacity_len
);
579 dm_ima_measure_data("dm_device_remove", device_table_data
, l
, noio
);
582 kfree(device_table_data
);
585 kfree(md
->ima
.active_table
.device_metadata
);
587 if (md
->ima
.active_table
.device_metadata
!=
588 md
->ima
.inactive_table
.device_metadata
)
589 kfree(md
->ima
.inactive_table
.device_metadata
);
591 kfree(md
->ima
.active_table
.hash
);
593 if (md
->ima
.active_table
.hash
!= md
->ima
.inactive_table
.hash
)
594 kfree(md
->ima
.inactive_table
.hash
);
596 dm_ima_reset_data(md
);
603 * Measure ima data on table clear.
605 void dm_ima_measure_on_table_clear(struct mapped_device
*md
, bool new_map
)
607 unsigned int l
= 0, capacity_len
= 0;
608 char *device_table_data
= NULL
, *dev_name
= NULL
, *dev_uuid
= NULL
, *capacity_str
= NULL
;
609 char inactive_str
[] = "inactive_table_hash=";
610 unsigned int inactive_len
= strlen(inactive_str
);
615 device_table_data
= dm_ima_alloc(DM_IMA_DEVICE_BUF_LEN
, GFP_KERNEL
, noio
);
616 if (!device_table_data
)
619 r
= dm_ima_alloc_and_copy_capacity_str(md
, &capacity_str
, noio
);
623 memcpy(device_table_data
+ l
, DM_IMA_VERSION_STR
, md
->ima
.dm_version_str_len
);
624 l
+= md
->ima
.dm_version_str_len
;
626 if (md
->ima
.inactive_table
.device_metadata_len
&&
627 md
->ima
.inactive_table
.hash_len
) {
628 memcpy(device_table_data
+ l
, md
->ima
.inactive_table
.device_metadata
,
629 md
->ima
.inactive_table
.device_metadata_len
);
630 l
+= md
->ima
.inactive_table
.device_metadata_len
;
632 memcpy(device_table_data
+ l
, inactive_str
, inactive_len
);
635 memcpy(device_table_data
+ l
, md
->ima
.inactive_table
.hash
,
636 md
->ima
.inactive_table
.hash_len
);
638 l
+= md
->ima
.inactive_table
.hash_len
;
640 memcpy(device_table_data
+ l
, ";", 1);
647 if (dm_ima_alloc_and_copy_name_uuid(md
, &dev_name
, &dev_uuid
, noio
))
650 scnprintf(device_table_data
, DM_IMA_DEVICE_BUF_LEN
,
651 "%sname=%s,uuid=%s;table_clear=no_data;",
652 DM_IMA_VERSION_STR
, dev_name
, dev_uuid
);
653 l
= strlen(device_table_data
);
656 capacity_len
= strlen(capacity_str
);
657 memcpy(device_table_data
+ l
, capacity_str
, capacity_len
);
660 dm_ima_measure_data("dm_table_clear", device_table_data
, l
, noio
);
663 if (md
->ima
.inactive_table
.hash
&&
664 md
->ima
.inactive_table
.hash
!= md
->ima
.active_table
.hash
)
665 kfree(md
->ima
.inactive_table
.hash
);
667 md
->ima
.inactive_table
.hash
= NULL
;
668 md
->ima
.inactive_table
.hash_len
= 0;
670 if (md
->ima
.inactive_table
.device_metadata
&&
671 md
->ima
.inactive_table
.device_metadata
!= md
->ima
.active_table
.device_metadata
)
672 kfree(md
->ima
.inactive_table
.device_metadata
);
674 md
->ima
.inactive_table
.device_metadata
= NULL
;
675 md
->ima
.inactive_table
.device_metadata_len
= 0;
676 md
->ima
.inactive_table
.num_targets
= 0;
678 if (md
->ima
.active_table
.hash
) {
679 md
->ima
.inactive_table
.hash
= md
->ima
.active_table
.hash
;
680 md
->ima
.inactive_table
.hash_len
= md
->ima
.active_table
.hash_len
;
683 if (md
->ima
.active_table
.device_metadata
) {
684 md
->ima
.inactive_table
.device_metadata
=
685 md
->ima
.active_table
.device_metadata
;
686 md
->ima
.inactive_table
.device_metadata_len
=
687 md
->ima
.active_table
.device_metadata_len
;
688 md
->ima
.inactive_table
.num_targets
=
689 md
->ima
.active_table
.num_targets
;
698 kfree(device_table_data
);
702 * Measure IMA data on device rename.
704 void dm_ima_measure_on_device_rename(struct mapped_device
*md
)
706 char *old_device_data
= NULL
, *new_device_data
= NULL
, *combined_device_data
= NULL
;
707 char *new_dev_name
= NULL
, *new_dev_uuid
= NULL
, *capacity_str
= NULL
;
711 if (dm_ima_alloc_and_copy_device_data(md
, &new_device_data
,
712 md
->ima
.active_table
.num_targets
, noio
))
715 if (dm_ima_alloc_and_copy_name_uuid(md
, &new_dev_name
, &new_dev_uuid
, noio
))
718 combined_device_data
= dm_ima_alloc(DM_IMA_DEVICE_BUF_LEN
* 2, GFP_KERNEL
, noio
);
719 if (!combined_device_data
)
722 r
= dm_ima_alloc_and_copy_capacity_str(md
, &capacity_str
, noio
);
726 old_device_data
= md
->ima
.active_table
.device_metadata
;
728 md
->ima
.active_table
.device_metadata
= new_device_data
;
729 md
->ima
.active_table
.device_metadata_len
= strlen(new_device_data
);
731 scnprintf(combined_device_data
, DM_IMA_DEVICE_BUF_LEN
* 2,
732 "%s%snew_name=%s,new_uuid=%s;%s", DM_IMA_VERSION_STR
, old_device_data
,
733 new_dev_name
, new_dev_uuid
, capacity_str
);
735 dm_ima_measure_data("dm_device_rename", combined_device_data
, strlen(combined_device_data
),
741 kfree(new_device_data
);
744 kfree(combined_device_data
);
745 kfree(old_device_data
);