1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * Copyright (C) 2021 Microsoft Corporation 4 * 5 * Author: Tushar Sugandhi <tusharsu@linux.microsoft.com> 6 * 7 * Enables IMA measurements for DM targets 8 */ 9 10 #include "dm-core.h" 11 #include "dm-ima.h" 12 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> 18 19 #define DM_MSG_PREFIX "ima" 20 21 /* 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. 25 */ 26 static void fix_separator_chars(char **buf) 27 { 28 int l = strlen(*buf); 29 int i, j, sp = 0; 30 31 for (i = 0; i < l; i++) 32 if ((*buf)[i] == '\\' || (*buf)[i] == ';' || (*buf)[i] == '=' || (*buf)[i] == ',') 33 sp++; 34 35 if (!sp) 36 return; 37 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] == ',') 41 (*buf)[j--] = '\\'; 42 } 43 } 44 45 /* 46 * Internal function to allocate memory for IMA measurements. 47 */ 48 static void *dm_ima_alloc(size_t len, gfp_t flags, bool noio) 49 { 50 unsigned int noio_flag; 51 void *ptr; 52 53 if (noio) 54 noio_flag = memalloc_noio_save(); 55 56 ptr = kzalloc(len, flags); 57 58 if (noio) 59 memalloc_noio_restore(noio_flag); 60 61 return ptr; 62 } 63 64 /* 65 * Internal function to allocate and copy name and uuid for IMA measurements. 66 */ 67 static int dm_ima_alloc_and_copy_name_uuid(struct mapped_device *md, char **dev_name, 68 char **dev_uuid, bool noio) 69 { 70 int r; 71 *dev_name = dm_ima_alloc(DM_NAME_LEN*2, GFP_KERNEL, noio); 72 if (!(*dev_name)) { 73 r = -ENOMEM; 74 goto error; 75 } 76 77 *dev_uuid = dm_ima_alloc(DM_UUID_LEN*2, GFP_KERNEL, noio); 78 if (!(*dev_uuid)) { 79 r = -ENOMEM; 80 goto error; 81 } 82 83 r = dm_copy_name_and_uuid(md, *dev_name, *dev_uuid); 84 if (r) 85 goto error; 86 87 fix_separator_chars(dev_name); 88 fix_separator_chars(dev_uuid); 89 90 return 0; 91 error: 92 kfree(*dev_name); 93 kfree(*dev_uuid); 94 *dev_name = NULL; 95 *dev_uuid = NULL; 96 return r; 97 } 98 99 /* 100 * Internal function to allocate and copy device data for IMA measurements. 101 */ 102 static int dm_ima_alloc_and_copy_device_data(struct mapped_device *md, char **device_data, 103 unsigned int num_targets, bool noio) 104 { 105 char *dev_name = NULL, *dev_uuid = NULL; 106 int r; 107 108 r = dm_ima_alloc_and_copy_name_uuid(md, &dev_name, &dev_uuid, noio); 109 if (r) 110 return r; 111 112 *device_data = dm_ima_alloc(DM_IMA_DEVICE_BUF_LEN, GFP_KERNEL, noio); 113 if (!(*device_data)) { 114 r = -ENOMEM; 115 goto error; 116 } 117 118 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); 122 error: 123 kfree(dev_name); 124 kfree(dev_uuid); 125 return r; 126 } 127 128 /* 129 * Internal wrapper function to call IMA to measure DM data. 130 */ 131 static void dm_ima_measure_data(const char *event_name, const void *buf, size_t buf_len, 132 bool noio) 133 { 134 unsigned int noio_flag; 135 136 if (noio) 137 noio_flag = memalloc_noio_save(); 138 139 ima_measure_critical_data(DM_NAME, event_name, buf, buf_len, 140 false, NULL, 0); 141 142 if (noio) 143 memalloc_noio_restore(noio_flag); 144 } 145 146 /* 147 * Internal function to allocate and copy current device capacity for IMA measurements. 148 */ 149 static int dm_ima_alloc_and_copy_capacity_str(struct mapped_device *md, char **capacity_str, 150 bool noio) 151 { 152 sector_t capacity; 153 154 capacity = get_capacity(md->disk); 155 156 *capacity_str = dm_ima_alloc(DM_IMA_DEVICE_CAPACITY_BUF_LEN, GFP_KERNEL, noio); 157 if (!(*capacity_str)) 158 return -ENOMEM; 159 160 scnprintf(*capacity_str, DM_IMA_DEVICE_BUF_LEN, "current_device_capacity=%llu;", 161 capacity); 162 163 return 0; 164 } 165 166 /* 167 * Initialize/reset the dm ima related data structure variables. 168 */ 169 void dm_ima_reset_data(struct mapped_device *md) 170 { 171 memset(&(md->ima), 0, sizeof(md->ima)); 172 md->ima.dm_version_str_len = strlen(DM_IMA_VERSION_STR); 173 } 174 175 /* 176 * Build up the IMA data for each target, and finally measure. 177 */ 178 void dm_ima_measure_on_table_load(struct dm_table *table, unsigned int status_flags) 179 { 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; 189 u8 *digest = NULL; 190 bool noio = false; 191 /* 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>. 194 */ 195 const size_t hash_alg_prefix_len = strlen(DM_IMA_TABLE_HASH_ALG) + 1; 196 char table_load_event_name[] = "dm_table_load"; 197 198 ima_buf = dm_ima_alloc(DM_IMA_MEASUREMENT_BUF_LEN, GFP_KERNEL, noio); 199 if (!ima_buf) 200 return; 201 202 target_metadata_buf = dm_ima_alloc(DM_IMA_TARGET_METADATA_BUF_LEN, GFP_KERNEL, noio); 203 if (!target_metadata_buf) 204 goto error; 205 206 target_data_buf = dm_ima_alloc(DM_IMA_TARGET_DATA_BUF_LEN, GFP_KERNEL, noio); 207 if (!target_data_buf) 208 goto error; 209 210 num_targets = table->num_targets; 211 212 if (dm_ima_alloc_and_copy_device_data(table->md, &device_data_buf, num_targets, noio)) 213 goto error; 214 215 tfm = crypto_alloc_shash(DM_IMA_TABLE_HASH_ALG, 0, 0); 216 if (IS_ERR(tfm)) 217 goto error; 218 219 shash->tfm = tfm; 220 digest_size = crypto_shash_digestsize(tfm); 221 digest = dm_ima_alloc(digest_size, GFP_KERNEL, noio); 222 if (!digest) 223 goto error; 224 225 r = crypto_shash_init(shash); 226 if (r) 227 goto error; 228 229 memcpy(ima_buf + l, DM_IMA_VERSION_STR, table->md->ima.dm_version_str_len); 230 l += table->md->ima.dm_version_str_len; 231 232 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; 235 236 for (i = 0; i < num_targets; i++) { 237 struct dm_target *ti = dm_table_get_target(table, i); 238 239 last_target_measured = 0; 240 241 /* 242 * First retrieve the target metadata. 243 */ 244 target_metadata_buf_len = 245 scnprintf(target_metadata_buf, 246 DM_IMA_TARGET_METADATA_BUF_LEN, 247 "target_index=%d,target_begin=%llu,target_len=%llu,", 248 i, ti->begin, ti->len); 249 250 /* 251 * Then retrieve the actual target data. 252 */ 253 if (ti->type->status) 254 ti->type->status(ti, type, status_flags, target_data_buf, 255 DM_IMA_TARGET_DATA_BUF_LEN); 256 else 257 target_data_buf[0] = '\0'; 258 259 target_data_buf_len = strlen(target_data_buf); 260 261 /* 262 * Check if the total data can fit into the IMA buffer. 263 */ 264 cur_total_buf_len = l + target_metadata_buf_len + target_data_buf_len; 265 266 /* 267 * IMA measurements for DM targets are best-effort. 268 * If the total data buffered so far, including the current target, 269 * is too large to fit into DM_IMA_MEASUREMENT_BUF_LEN, measure what 270 * we have in the current buffer, and continue measuring the remaining 271 * targets by prefixing the device metadata again. 272 */ 273 if (unlikely(cur_total_buf_len >= DM_IMA_MEASUREMENT_BUF_LEN)) { 274 dm_ima_measure_data(table_load_event_name, ima_buf, l, noio); 275 r = crypto_shash_update(shash, (const u8 *)ima_buf, l); 276 if (r < 0) 277 goto error; 278 279 memset(ima_buf, 0, DM_IMA_MEASUREMENT_BUF_LEN); 280 l = 0; 281 282 /* 283 * Each new "dm_table_load" entry in IMA log should have device data 284 * prefix, so that multiple records from the same "dm_table_load" for 285 * a given device can be linked together. 286 */ 287 memcpy(ima_buf + l, DM_IMA_VERSION_STR, table->md->ima.dm_version_str_len); 288 l += table->md->ima.dm_version_str_len; 289 290 memcpy(ima_buf + l, device_data_buf, device_data_buf_len); 291 l += device_data_buf_len; 292 293 /* 294 * If this iteration of the for loop turns out to be the last target 295 * in the table, dm_ima_measure_data("dm_table_load", ...) doesn't need 296 * to be called again, just the hash needs to be finalized. 297 * "last_target_measured" tracks this state. 298 */ 299 last_target_measured = 1; 300 } 301 302 /* 303 * Fill-in all the target metadata, so that multiple targets for the same 304 * device can be linked together. 305 */ 306 memcpy(ima_buf + l, target_metadata_buf, target_metadata_buf_len); 307 l += target_metadata_buf_len; 308 309 memcpy(ima_buf + l, target_data_buf, target_data_buf_len); 310 l += target_data_buf_len; 311 } 312 313 if (!last_target_measured) { 314 dm_ima_measure_data(table_load_event_name, ima_buf, l, noio); 315 316 r = crypto_shash_update(shash, (const u8 *)ima_buf, l); 317 if (r < 0) 318 goto error; 319 } 320 321 /* 322 * Finalize the table hash, and store it in table->md->ima.inactive_table.hash, 323 * so that the table data can be verified against the future device state change 324 * events, e.g. resume, rename, remove, table-clear etc. 325 */ 326 r = crypto_shash_final(shash, digest); 327 if (r < 0) 328 goto error; 329 330 digest_buf = dm_ima_alloc((digest_size*2) + hash_alg_prefix_len + 1, GFP_KERNEL, noio); 331 332 if (!digest_buf) 333 goto error; 334 335 snprintf(digest_buf, hash_alg_prefix_len + 1, "%s:", DM_IMA_TABLE_HASH_ALG); 336 337 for (i = 0; i < digest_size; i++) 338 snprintf((digest_buf + hash_alg_prefix_len + (i*2)), 3, "%02x", digest[i]); 339 340 if (table->md->ima.active_table.hash != table->md->ima.inactive_table.hash) 341 kfree(table->md->ima.inactive_table.hash); 342 343 table->md->ima.inactive_table.hash = digest_buf; 344 table->md->ima.inactive_table.hash_len = strlen(digest_buf); 345 table->md->ima.inactive_table.num_targets = num_targets; 346 347 if (table->md->ima.active_table.device_metadata != 348 table->md->ima.inactive_table.device_metadata) 349 kfree(table->md->ima.inactive_table.device_metadata); 350 351 table->md->ima.inactive_table.device_metadata = device_data_buf; 352 table->md->ima.inactive_table.device_metadata_len = device_data_buf_len; 353 354 goto exit; 355 error: 356 kfree(digest_buf); 357 kfree(device_data_buf); 358 exit: 359 kfree(digest); 360 if (tfm) 361 crypto_free_shash(tfm); 362 kfree(ima_buf); 363 kfree(target_metadata_buf); 364 kfree(target_data_buf); 365 } 366 367 /* 368 * Measure IMA data on device resume. 369 */ 370 void dm_ima_measure_on_device_resume(struct mapped_device *md, bool swap) 371 { 372 char *device_table_data, *dev_name = NULL, *dev_uuid = NULL, *capacity_str = NULL; 373 char active[] = "active_table_hash="; 374 unsigned int active_len = strlen(active), capacity_len = 0; 375 unsigned int l = 0; 376 bool noio = true; 377 bool nodata = true; 378 int r; 379 380 device_table_data = dm_ima_alloc(DM_IMA_DEVICE_BUF_LEN, GFP_KERNEL, noio); 381 if (!device_table_data) 382 return; 383 384 r = dm_ima_alloc_and_copy_capacity_str(md, &capacity_str, noio); 385 if (r) 386 goto error; 387 388 memcpy(device_table_data + l, DM_IMA_VERSION_STR, md->ima.dm_version_str_len); 389 l += md->ima.dm_version_str_len; 390 391 if (swap) { 392 if (md->ima.active_table.hash != md->ima.inactive_table.hash) 393 kfree(md->ima.active_table.hash); 394 395 md->ima.active_table.hash = NULL; 396 md->ima.active_table.hash_len = 0; 397 398 if (md->ima.active_table.device_metadata != 399 md->ima.inactive_table.device_metadata) 400 kfree(md->ima.active_table.device_metadata); 401 402 md->ima.active_table.device_metadata = NULL; 403 md->ima.active_table.device_metadata_len = 0; 404 md->ima.active_table.num_targets = 0; 405 406 if (md->ima.inactive_table.hash) { 407 md->ima.active_table.hash = md->ima.inactive_table.hash; 408 md->ima.active_table.hash_len = md->ima.inactive_table.hash_len; 409 md->ima.inactive_table.hash = NULL; 410 md->ima.inactive_table.hash_len = 0; 411 } 412 413 if (md->ima.inactive_table.device_metadata) { 414 md->ima.active_table.device_metadata = 415 md->ima.inactive_table.device_metadata; 416 md->ima.active_table.device_metadata_len = 417 md->ima.inactive_table.device_metadata_len; 418 md->ima.active_table.num_targets = md->ima.inactive_table.num_targets; 419 md->ima.inactive_table.device_metadata = NULL; 420 md->ima.inactive_table.device_metadata_len = 0; 421 md->ima.inactive_table.num_targets = 0; 422 } 423 } 424 425 if (md->ima.active_table.device_metadata) { 426 memcpy(device_table_data + l, md->ima.active_table.device_metadata, 427 md->ima.active_table.device_metadata_len); 428 l += md->ima.active_table.device_metadata_len; 429 430 nodata = false; 431 } 432 433 if (md->ima.active_table.hash) { 434 memcpy(device_table_data + l, active, active_len); 435 l += active_len; 436 437 memcpy(device_table_data + l, md->ima.active_table.hash, 438 md->ima.active_table.hash_len); 439 l += md->ima.active_table.hash_len; 440 441 memcpy(device_table_data + l, ";", 1); 442 l++; 443 444 nodata = false; 445 } 446 447 if (nodata) { 448 r = dm_ima_alloc_and_copy_name_uuid(md, &dev_name, &dev_uuid, noio); 449 if (r) 450 goto error; 451 452 l = scnprintf(device_table_data, DM_IMA_DEVICE_BUF_LEN, 453 "%sname=%s,uuid=%s;device_resume=no_data;", 454 DM_IMA_VERSION_STR, dev_name, dev_uuid); 455 } 456 457 capacity_len = strlen(capacity_str); 458 memcpy(device_table_data + l, capacity_str, capacity_len); 459 l += capacity_len; 460 461 dm_ima_measure_data("dm_device_resume", device_table_data, l, noio); 462 463 kfree(dev_name); 464 kfree(dev_uuid); 465 error: 466 kfree(capacity_str); 467 kfree(device_table_data); 468 } 469 470 /* 471 * Measure IMA data on remove. 472 */ 473 void dm_ima_measure_on_device_remove(struct mapped_device *md, bool remove_all) 474 { 475 char *device_table_data, *dev_name = NULL, *dev_uuid = NULL, *capacity_str = NULL; 476 char active_table_str[] = "active_table_hash="; 477 char inactive_table_str[] = "inactive_table_hash="; 478 char device_active_str[] = "device_active_metadata="; 479 char device_inactive_str[] = "device_inactive_metadata="; 480 char remove_all_str[] = "remove_all="; 481 unsigned int active_table_len = strlen(active_table_str); 482 unsigned int inactive_table_len = strlen(inactive_table_str); 483 unsigned int device_active_len = strlen(device_active_str); 484 unsigned int device_inactive_len = strlen(device_inactive_str); 485 unsigned int remove_all_len = strlen(remove_all_str); 486 unsigned int capacity_len = 0; 487 unsigned int l = 0; 488 bool noio = true; 489 bool nodata = true; 490 int r; 491 492 device_table_data = dm_ima_alloc(DM_IMA_DEVICE_BUF_LEN*2, GFP_KERNEL, noio); 493 if (!device_table_data) 494 goto exit; 495 496 r = dm_ima_alloc_and_copy_capacity_str(md, &capacity_str, noio); 497 if (r) { 498 kfree(device_table_data); 499 goto exit; 500 } 501 502 memcpy(device_table_data + l, DM_IMA_VERSION_STR, md->ima.dm_version_str_len); 503 l += md->ima.dm_version_str_len; 504 505 if (md->ima.active_table.device_metadata) { 506 memcpy(device_table_data + l, device_active_str, device_active_len); 507 l += device_active_len; 508 509 memcpy(device_table_data + l, md->ima.active_table.device_metadata, 510 md->ima.active_table.device_metadata_len); 511 l += md->ima.active_table.device_metadata_len; 512 513 nodata = false; 514 } 515 516 if (md->ima.inactive_table.device_metadata) { 517 memcpy(device_table_data + l, device_inactive_str, device_inactive_len); 518 l += device_inactive_len; 519 520 memcpy(device_table_data + l, md->ima.inactive_table.device_metadata, 521 md->ima.inactive_table.device_metadata_len); 522 l += md->ima.inactive_table.device_metadata_len; 523 524 nodata = false; 525 } 526 527 if (md->ima.active_table.hash) { 528 memcpy(device_table_data + l, active_table_str, active_table_len); 529 l += active_table_len; 530 531 memcpy(device_table_data + l, md->ima.active_table.hash, 532 md->ima.active_table.hash_len); 533 l += md->ima.active_table.hash_len; 534 535 memcpy(device_table_data + l, ",", 1); 536 l++; 537 538 nodata = false; 539 } 540 541 if (md->ima.inactive_table.hash) { 542 memcpy(device_table_data + l, inactive_table_str, inactive_table_len); 543 l += inactive_table_len; 544 545 memcpy(device_table_data + l, md->ima.inactive_table.hash, 546 md->ima.inactive_table.hash_len); 547 l += md->ima.inactive_table.hash_len; 548 549 memcpy(device_table_data + l, ",", 1); 550 l++; 551 552 nodata = false; 553 } 554 /* 555 * In case both active and inactive tables, and corresponding 556 * device metadata is cleared/missing - record the name and uuid 557 * in IMA measurements. 558 */ 559 if (nodata) { 560 if (dm_ima_alloc_and_copy_name_uuid(md, &dev_name, &dev_uuid, noio)) 561 goto error; 562 563 l = scnprintf(device_table_data, DM_IMA_DEVICE_BUF_LEN, 564 "%sname=%s,uuid=%s;device_remove=no_data;", 565 DM_IMA_VERSION_STR, dev_name, dev_uuid); 566 } 567 568 memcpy(device_table_data + l, remove_all_str, remove_all_len); 569 l += remove_all_len; 570 memcpy(device_table_data + l, remove_all ? "y;" : "n;", 2); 571 l += 2; 572 573 capacity_len = strlen(capacity_str); 574 memcpy(device_table_data + l, capacity_str, capacity_len); 575 l += capacity_len; 576 577 dm_ima_measure_data("dm_device_remove", device_table_data, l, noio); 578 579 error: 580 kfree(device_table_data); 581 kfree(capacity_str); 582 exit: 583 kfree(md->ima.active_table.device_metadata); 584 585 if (md->ima.active_table.device_metadata != 586 md->ima.inactive_table.device_metadata) 587 kfree(md->ima.inactive_table.device_metadata); 588 589 kfree(md->ima.active_table.hash); 590 591 if (md->ima.active_table.hash != md->ima.inactive_table.hash) 592 kfree(md->ima.inactive_table.hash); 593 594 dm_ima_reset_data(md); 595 596 kfree(dev_name); 597 kfree(dev_uuid); 598 } 599 600 /* 601 * Measure ima data on table clear. 602 */ 603 void dm_ima_measure_on_table_clear(struct mapped_device *md, bool new_map) 604 { 605 unsigned int l = 0, capacity_len = 0; 606 char *device_table_data = NULL, *dev_name = NULL, *dev_uuid = NULL, *capacity_str = NULL; 607 char inactive_str[] = "inactive_table_hash="; 608 unsigned int inactive_len = strlen(inactive_str); 609 bool noio = true; 610 bool nodata = true; 611 int r; 612 613 device_table_data = dm_ima_alloc(DM_IMA_DEVICE_BUF_LEN, GFP_KERNEL, noio); 614 if (!device_table_data) 615 return; 616 617 r = dm_ima_alloc_and_copy_capacity_str(md, &capacity_str, noio); 618 if (r) 619 goto error1; 620 621 memcpy(device_table_data + l, DM_IMA_VERSION_STR, md->ima.dm_version_str_len); 622 l += md->ima.dm_version_str_len; 623 624 if (md->ima.inactive_table.device_metadata_len && 625 md->ima.inactive_table.hash_len) { 626 memcpy(device_table_data + l, md->ima.inactive_table.device_metadata, 627 md->ima.inactive_table.device_metadata_len); 628 l += md->ima.inactive_table.device_metadata_len; 629 630 memcpy(device_table_data + l, inactive_str, inactive_len); 631 l += inactive_len; 632 633 memcpy(device_table_data + l, md->ima.inactive_table.hash, 634 md->ima.inactive_table.hash_len); 635 636 l += md->ima.inactive_table.hash_len; 637 638 memcpy(device_table_data + l, ";", 1); 639 l++; 640 641 nodata = false; 642 } 643 644 if (nodata) { 645 if (dm_ima_alloc_and_copy_name_uuid(md, &dev_name, &dev_uuid, noio)) 646 goto error2; 647 648 l = scnprintf(device_table_data, DM_IMA_DEVICE_BUF_LEN, 649 "%sname=%s,uuid=%s;table_clear=no_data;", 650 DM_IMA_VERSION_STR, dev_name, dev_uuid); 651 } 652 653 capacity_len = strlen(capacity_str); 654 memcpy(device_table_data + l, capacity_str, capacity_len); 655 l += capacity_len; 656 657 dm_ima_measure_data("dm_table_clear", device_table_data, l, noio); 658 659 if (new_map) { 660 if (md->ima.inactive_table.hash && 661 md->ima.inactive_table.hash != md->ima.active_table.hash) 662 kfree(md->ima.inactive_table.hash); 663 664 md->ima.inactive_table.hash = NULL; 665 md->ima.inactive_table.hash_len = 0; 666 667 if (md->ima.inactive_table.device_metadata && 668 md->ima.inactive_table.device_metadata != md->ima.active_table.device_metadata) 669 kfree(md->ima.inactive_table.device_metadata); 670 671 md->ima.inactive_table.device_metadata = NULL; 672 md->ima.inactive_table.device_metadata_len = 0; 673 md->ima.inactive_table.num_targets = 0; 674 675 if (md->ima.active_table.hash) { 676 md->ima.inactive_table.hash = md->ima.active_table.hash; 677 md->ima.inactive_table.hash_len = md->ima.active_table.hash_len; 678 } 679 680 if (md->ima.active_table.device_metadata) { 681 md->ima.inactive_table.device_metadata = 682 md->ima.active_table.device_metadata; 683 md->ima.inactive_table.device_metadata_len = 684 md->ima.active_table.device_metadata_len; 685 md->ima.inactive_table.num_targets = 686 md->ima.active_table.num_targets; 687 } 688 } 689 690 kfree(dev_name); 691 kfree(dev_uuid); 692 error2: 693 kfree(capacity_str); 694 error1: 695 kfree(device_table_data); 696 } 697 698 /* 699 * Measure IMA data on device rename. 700 */ 701 void dm_ima_measure_on_device_rename(struct mapped_device *md) 702 { 703 char *old_device_data = NULL, *new_device_data = NULL, *combined_device_data = NULL; 704 char *new_dev_name = NULL, *new_dev_uuid = NULL, *capacity_str = NULL; 705 bool noio = true; 706 int r, len; 707 708 if (dm_ima_alloc_and_copy_device_data(md, &new_device_data, 709 md->ima.active_table.num_targets, noio)) 710 return; 711 712 if (dm_ima_alloc_and_copy_name_uuid(md, &new_dev_name, &new_dev_uuid, noio)) 713 goto error; 714 715 combined_device_data = dm_ima_alloc(DM_IMA_DEVICE_BUF_LEN * 2, GFP_KERNEL, noio); 716 if (!combined_device_data) 717 goto error; 718 719 r = dm_ima_alloc_and_copy_capacity_str(md, &capacity_str, noio); 720 if (r) 721 goto error; 722 723 old_device_data = md->ima.active_table.device_metadata; 724 725 md->ima.active_table.device_metadata = new_device_data; 726 md->ima.active_table.device_metadata_len = strlen(new_device_data); 727 728 len = scnprintf(combined_device_data, DM_IMA_DEVICE_BUF_LEN * 2, 729 "%s%snew_name=%s,new_uuid=%s;%s", DM_IMA_VERSION_STR, old_device_data, 730 new_dev_name, new_dev_uuid, capacity_str); 731 732 dm_ima_measure_data("dm_device_rename", combined_device_data, len, noio); 733 734 goto exit; 735 736 error: 737 kfree(new_device_data); 738 exit: 739 kfree(capacity_str); 740 kfree(combined_device_data); 741 kfree(old_device_data); 742 kfree(new_dev_name); 743 kfree(new_dev_uuid); 744 } 745