1 // SPDX-License-Identifier: GPL-2.0 2 /* 3 * bio-integrity.c - bio data integrity extensions 4 * 5 * Copyright (C) 2007, 2008, 2009 Oracle Corporation 6 * Written by: Martin K. Petersen <martin.petersen@oracle.com> 7 */ 8 9 #include <linux/blk-integrity.h> 10 #include <linux/t10-pi.h> 11 #include "blk.h" 12 13 struct bio_integrity_alloc { 14 struct bio_integrity_payload bip; 15 struct bio_vec bvecs[]; 16 }; 17 18 static mempool_t integrity_buf_pool; 19 20 static bool bi_offload_capable(struct blk_integrity *bi) 21 { 22 return bi->metadata_size == bi->pi_tuple_size; 23 } 24 25 unsigned int __bio_integrity_action(struct bio *bio) 26 { 27 struct blk_integrity *bi = blk_get_integrity(bio->bi_bdev->bd_disk); 28 29 if (WARN_ON_ONCE(bio_has_crypt_ctx(bio))) 30 return 0; 31 32 switch (bio_op(bio)) { 33 case REQ_OP_READ: 34 if (bi->flags & BLK_INTEGRITY_NOVERIFY) { 35 if (bi_offload_capable(bi)) 36 return 0; 37 return BI_ACT_BUFFER; 38 } 39 return BI_ACT_BUFFER | BI_ACT_CHECK; 40 case REQ_OP_WRITE: 41 case REQ_OP_ZONE_APPEND: 42 /* 43 * Flush masquerading as write? 44 */ 45 if (!bio_sectors(bio)) 46 return 0; 47 48 /* 49 * Zero the memory allocated to not leak uninitialized kernel 50 * memory to disk for non-integrity metadata where nothing else 51 * initializes the memory. 52 */ 53 if (bi->flags & BLK_INTEGRITY_NOGENERATE) { 54 if (bi_offload_capable(bi)) 55 return 0; 56 return BI_ACT_BUFFER | BI_ACT_ZERO; 57 } 58 59 if (bi->metadata_size > bi->pi_tuple_size) 60 return BI_ACT_BUFFER | BI_ACT_CHECK | BI_ACT_ZERO; 61 return BI_ACT_BUFFER | BI_ACT_CHECK; 62 default: 63 return 0; 64 } 65 } 66 EXPORT_SYMBOL_GPL(__bio_integrity_action); 67 68 void bio_integrity_alloc_buf(struct bio *bio, gfp_t gfp, bool zero_buffer) 69 { 70 struct blk_integrity *bi = blk_get_integrity(bio->bi_bdev->bd_disk); 71 struct bio_integrity_payload *bip = bio_integrity(bio); 72 unsigned int len = bio_integrity_bytes(bi, bio_sectors(bio)); 73 void *buf; 74 75 buf = kmalloc(len, gfp | __GFP_NOWARN | (zero_buffer ? __GFP_ZERO : 0)); 76 if (unlikely(!buf)) { 77 struct page *page; 78 79 page = mempool_alloc(&integrity_buf_pool, gfp); 80 if (zero_buffer) 81 memset(page_address(page), 0, len); 82 bvec_set_page(&bip->bip_vec[0], page, len, 0); 83 bip->bip_flags |= BIP_MEMPOOL; 84 } else { 85 bvec_set_page(&bip->bip_vec[0], virt_to_page(buf), len, 86 offset_in_page(buf)); 87 } 88 89 bip->bip_vcnt = 1; 90 bip->bip_iter.bi_size = len; 91 } 92 93 void bio_integrity_free_buf(struct bio_integrity_payload *bip) 94 { 95 struct bio_vec *bv = &bip->bip_vec[0]; 96 97 if (bip->bip_flags & BIP_MEMPOOL) 98 mempool_free(bv->bv_page, &integrity_buf_pool); 99 else 100 kfree(bvec_virt(bv)); 101 } 102 103 void bio_integrity_setup_default(struct bio *bio) 104 { 105 struct blk_integrity *bi = blk_get_integrity(bio->bi_bdev->bd_disk); 106 struct bio_integrity_payload *bip = bio_integrity(bio); 107 108 bip_set_seed(bip, bio->bi_iter.bi_sector); 109 110 if (bi->csum_type) { 111 bip->bip_flags |= BIP_CHECK_GUARD; 112 if (bi->csum_type == BLK_INTEGRITY_CSUM_IP) 113 bip->bip_flags |= BIP_IP_CHECKSUM; 114 } 115 if (bi->flags & BLK_INTEGRITY_REF_TAG) 116 bip->bip_flags |= BIP_CHECK_REFTAG; 117 } 118 119 /** 120 * bio_integrity_free - Free bio integrity payload 121 * @bio: bio containing bip to be freed 122 * 123 * Description: Free the integrity portion of a bio. 124 */ 125 void bio_integrity_free(struct bio *bio) 126 { 127 kfree(bio_integrity(bio)); 128 bio->bi_integrity = NULL; 129 bio->bi_opf &= ~REQ_INTEGRITY; 130 } 131 132 void bio_integrity_init(struct bio *bio, struct bio_integrity_payload *bip, 133 struct bio_vec *bvecs, unsigned int nr_vecs) 134 { 135 memset(bip, 0, sizeof(*bip)); 136 bip->bip_max_vcnt = nr_vecs; 137 if (nr_vecs) 138 bip->bip_vec = bvecs; 139 140 bio->bi_integrity = bip; 141 bio->bi_opf |= REQ_INTEGRITY; 142 } 143 144 /** 145 * bio_integrity_alloc - Allocate integrity payload and attach it to bio 146 * @bio: bio to attach integrity metadata to 147 * @gfp_mask: Memory allocation mask 148 * @nr_vecs: Number of integrity metadata scatter-gather elements 149 * 150 * Description: This function prepares a bio for attaching integrity 151 * metadata. nr_vecs specifies the maximum number of pages containing 152 * integrity metadata that can be attached. 153 */ 154 struct bio_integrity_payload *bio_integrity_alloc(struct bio *bio, 155 gfp_t gfp_mask, 156 unsigned int nr_vecs) 157 { 158 struct bio_integrity_alloc *bia; 159 160 if (WARN_ON_ONCE(bio_has_crypt_ctx(bio))) 161 return ERR_PTR(-EOPNOTSUPP); 162 163 bia = kmalloc_flex(*bia, bvecs, nr_vecs, gfp_mask); 164 if (unlikely(!bia)) 165 return ERR_PTR(-ENOMEM); 166 bio_integrity_init(bio, &bia->bip, bia->bvecs, nr_vecs); 167 return &bia->bip; 168 } 169 EXPORT_SYMBOL(bio_integrity_alloc); 170 171 static void bio_integrity_unpin_bvec(struct bio_vec *bv, int nr_vecs) 172 { 173 int i; 174 175 for (i = 0; i < nr_vecs; i++) 176 unpin_user_page(bv[i].bv_page); 177 } 178 179 static void bio_integrity_uncopy_user(struct bio_integrity_payload *bip) 180 { 181 unsigned short orig_nr_vecs = bip->bip_max_vcnt - 1; 182 struct bio_vec *orig_bvecs = &bip->bip_vec[1]; 183 struct bio_vec *bounce_bvec = &bip->bip_vec[0]; 184 size_t bytes = bounce_bvec->bv_len; 185 struct iov_iter orig_iter; 186 int ret; 187 188 iov_iter_bvec(&orig_iter, ITER_DEST, orig_bvecs, orig_nr_vecs, bytes); 189 ret = copy_to_iter(bvec_virt(bounce_bvec), bytes, &orig_iter); 190 WARN_ON_ONCE(ret != bytes); 191 192 bio_integrity_unpin_bvec(orig_bvecs, orig_nr_vecs); 193 } 194 195 /** 196 * bio_integrity_unmap_user - Unmap user integrity payload 197 * @bio: bio containing bip to be unmapped 198 * 199 * Unmap the user mapped integrity portion of a bio. 200 */ 201 void bio_integrity_unmap_user(struct bio *bio) 202 { 203 struct bio_integrity_payload *bip = bio_integrity(bio); 204 205 if (bip->bip_flags & BIP_COPY_USER) { 206 if (bio_data_dir(bio) == READ) 207 bio_integrity_uncopy_user(bip); 208 kfree(bvec_virt(bip->bip_vec)); 209 return; 210 } 211 212 bio_integrity_unpin_bvec(bip->bip_vec, bip->bip_max_vcnt); 213 } 214 215 /** 216 * bio_integrity_add_page - Attach integrity metadata 217 * @bio: bio to update 218 * @page: page containing integrity metadata 219 * @len: number of bytes of integrity metadata in page 220 * @offset: start offset within page 221 * 222 * Description: Attach a page containing integrity metadata to bio. 223 */ 224 int bio_integrity_add_page(struct bio *bio, struct page *page, 225 unsigned int len, unsigned int offset) 226 { 227 struct request_queue *q = bdev_get_queue(bio->bi_bdev); 228 struct bio_integrity_payload *bip = bio_integrity(bio); 229 230 if (bip->bip_vcnt > 0) { 231 struct bio_vec *bv = &bip->bip_vec[bip->bip_vcnt - 1]; 232 233 if (!zone_device_pages_compatible(bv->bv_page, page)) 234 return 0; 235 if (zone_device_pages_have_same_pgmap(bv->bv_page, page) && 236 bvec_try_merge_hw_page(q, bv, page, len, offset)) { 237 bip->bip_iter.bi_size += len; 238 return len; 239 } 240 241 if (bip->bip_vcnt >= 242 min(bip->bip_max_vcnt, queue_max_integrity_segments(q))) 243 return 0; 244 245 /* 246 * If the queue doesn't support SG gaps and adding this segment 247 * would create a gap, disallow it. 248 */ 249 if (bvec_gap_to_prev(&q->limits, bv, offset)) 250 return 0; 251 } 252 253 bvec_set_page(&bip->bip_vec[bip->bip_vcnt], page, len, offset); 254 bip->bip_vcnt++; 255 bip->bip_iter.bi_size += len; 256 257 return len; 258 } 259 EXPORT_SYMBOL(bio_integrity_add_page); 260 261 static int bio_integrity_copy_user(struct bio *bio, struct bio_vec *bvec, 262 int nr_vecs, unsigned int len) 263 { 264 bool write = op_is_write(bio_op(bio)); 265 struct bio_integrity_payload *bip; 266 struct iov_iter iter; 267 void *buf; 268 int ret; 269 270 buf = kmalloc(len, GFP_KERNEL); 271 if (!buf) 272 return -ENOMEM; 273 274 if (write) { 275 iov_iter_bvec(&iter, ITER_SOURCE, bvec, nr_vecs, len); 276 if (!copy_from_iter_full(buf, len, &iter)) { 277 ret = -EFAULT; 278 goto free_buf; 279 } 280 281 bip = bio_integrity_alloc(bio, GFP_KERNEL, 1); 282 } else { 283 memset(buf, 0, len); 284 285 /* 286 * We need to preserve the original bvec and the number of vecs 287 * in it for completion handling 288 */ 289 bip = bio_integrity_alloc(bio, GFP_KERNEL, nr_vecs + 1); 290 } 291 292 if (IS_ERR(bip)) { 293 ret = PTR_ERR(bip); 294 goto free_buf; 295 } 296 297 if (write) 298 bio_integrity_unpin_bvec(bvec, nr_vecs); 299 else 300 memcpy(&bip->bip_vec[1], bvec, nr_vecs * sizeof(*bvec)); 301 302 ret = bio_integrity_add_page(bio, virt_to_page(buf), len, 303 offset_in_page(buf)); 304 if (ret != len) { 305 ret = -ENOMEM; 306 goto free_bip; 307 } 308 309 bip->bip_flags |= BIP_COPY_USER; 310 return 0; 311 free_bip: 312 bio_integrity_free(bio); 313 free_buf: 314 kfree(buf); 315 return ret; 316 } 317 318 static int bio_integrity_init_user(struct bio *bio, struct bio_vec *bvec, 319 int nr_vecs, unsigned int len) 320 { 321 struct bio_integrity_payload *bip; 322 323 bip = bio_integrity_alloc(bio, GFP_KERNEL, nr_vecs); 324 if (IS_ERR(bip)) 325 return PTR_ERR(bip); 326 327 memcpy(bip->bip_vec, bvec, nr_vecs * sizeof(*bvec)); 328 bip->bip_iter.bi_size = len; 329 bip->bip_vcnt = nr_vecs; 330 return 0; 331 } 332 333 static unsigned int bvec_from_pages(struct bio_vec *bvec, struct page **pages, 334 int nr_vecs, ssize_t bytes, ssize_t offset, 335 bool *is_p2p) 336 { 337 unsigned int nr_bvecs = 0; 338 int i, j; 339 340 for (i = 0; i < nr_vecs; i = j) { 341 size_t size = min_t(size_t, bytes, PAGE_SIZE - offset); 342 struct folio *folio = page_folio(pages[i]); 343 344 bytes -= size; 345 for (j = i + 1; j < nr_vecs; j++) { 346 size_t next = min_t(size_t, PAGE_SIZE, bytes); 347 348 if (page_folio(pages[j]) != folio || 349 pages[j] != pages[j - 1] + 1) 350 break; 351 unpin_user_page(pages[j]); 352 size += next; 353 bytes -= next; 354 } 355 356 if (is_pci_p2pdma_page(pages[i])) 357 *is_p2p = true; 358 359 bvec_set_page(&bvec[nr_bvecs], pages[i], size, offset); 360 offset = 0; 361 nr_bvecs++; 362 } 363 364 return nr_bvecs; 365 } 366 367 int bio_integrity_map_user(struct bio *bio, struct iov_iter *iter) 368 { 369 struct request_queue *q = bdev_get_queue(bio->bi_bdev); 370 struct page *stack_pages[UIO_FASTIOV], **pages = stack_pages; 371 struct bio_vec stack_vec[UIO_FASTIOV], *bvec = stack_vec; 372 iov_iter_extraction_t extraction_flags = 0; 373 size_t offset, bytes = iter->count; 374 bool copy, is_p2p = false; 375 unsigned int nr_bvecs; 376 int ret, nr_vecs; 377 378 if (bio_integrity(bio)) 379 return -EINVAL; 380 if (bytes >> SECTOR_SHIFT > queue_max_hw_sectors(q)) 381 return -E2BIG; 382 383 nr_vecs = iov_iter_npages(iter, BIO_MAX_VECS + 1); 384 if (nr_vecs > BIO_MAX_VECS) 385 return -E2BIG; 386 if (nr_vecs > UIO_FASTIOV) { 387 bvec = kzalloc_objs(*bvec, nr_vecs); 388 if (!bvec) 389 return -ENOMEM; 390 pages = NULL; 391 } 392 393 copy = iov_iter_alignment(iter) & 394 blk_lim_dma_alignment_and_pad(&q->limits); 395 396 if (blk_queue_pci_p2pdma(q)) 397 extraction_flags |= ITER_ALLOW_P2PDMA; 398 399 ret = iov_iter_extract_pages(iter, &pages, bytes, nr_vecs, 400 extraction_flags, &offset); 401 if (unlikely(ret < 0)) 402 goto free_bvec; 403 404 /* 405 * Handle partial pinning. This can happen when pin_user_pages_fast() 406 * returns fewer pages than requested. 407 */ 408 if (user_backed_iter(iter) && unlikely(ret != bytes)) { 409 if (ret > 0) { 410 int npinned = DIV_ROUND_UP(offset + ret, PAGE_SIZE); 411 int i; 412 413 for (i = 0; i < npinned; i++) 414 unpin_user_page(pages[i]); 415 } 416 if (pages != stack_pages) 417 kvfree(pages); 418 ret = -EFAULT; 419 goto free_bvec; 420 } 421 422 nr_bvecs = bvec_from_pages(bvec, pages, nr_vecs, bytes, offset, 423 &is_p2p); 424 if (pages != stack_pages) 425 kvfree(pages); 426 if (nr_bvecs > queue_max_integrity_segments(q)) 427 copy = true; 428 if (is_p2p) 429 bio->bi_opf |= REQ_NOMERGE; 430 431 if (copy) 432 ret = bio_integrity_copy_user(bio, bvec, nr_bvecs, bytes); 433 else 434 ret = bio_integrity_init_user(bio, bvec, nr_bvecs, bytes); 435 if (ret) 436 goto release_pages; 437 if (bvec != stack_vec) 438 kfree(bvec); 439 440 return 0; 441 442 release_pages: 443 bio_integrity_unpin_bvec(bvec, nr_bvecs); 444 free_bvec: 445 if (bvec != stack_vec) 446 kfree(bvec); 447 return ret; 448 } 449 450 static void bio_uio_meta_to_bip(struct bio *bio, struct uio_meta *meta) 451 { 452 struct bio_integrity_payload *bip = bio_integrity(bio); 453 454 if (meta->flags & IO_INTEGRITY_CHK_GUARD) 455 bip->bip_flags |= BIP_CHECK_GUARD; 456 if (meta->flags & IO_INTEGRITY_CHK_APPTAG) 457 bip->bip_flags |= BIP_CHECK_APPTAG; 458 if (meta->flags & IO_INTEGRITY_CHK_REFTAG) 459 bip->bip_flags |= BIP_CHECK_REFTAG; 460 461 bip->app_tag = meta->app_tag; 462 } 463 464 int bio_integrity_map_iter(struct bio *bio, struct uio_meta *meta) 465 { 466 struct blk_integrity *bi = blk_get_integrity(bio->bi_bdev->bd_disk); 467 unsigned int integrity_bytes; 468 int ret; 469 struct iov_iter it; 470 471 if (!bi) 472 return -EINVAL; 473 /* 474 * original meta iterator can be bigger. 475 * process integrity info corresponding to current data buffer only. 476 */ 477 it = meta->iter; 478 integrity_bytes = bio_integrity_bytes(bi, bio_sectors(bio)); 479 if (it.count < integrity_bytes) 480 return -EINVAL; 481 482 /* should fit into two bytes */ 483 BUILD_BUG_ON(IO_INTEGRITY_VALID_FLAGS >= (1 << 16)); 484 485 if (meta->flags && (meta->flags & ~IO_INTEGRITY_VALID_FLAGS)) 486 return -EINVAL; 487 488 it.count = integrity_bytes; 489 ret = bio_integrity_map_user(bio, &it); 490 if (!ret) { 491 bio_uio_meta_to_bip(bio, meta); 492 bip_set_seed(bio_integrity(bio), meta->seed); 493 iov_iter_advance(&meta->iter, integrity_bytes); 494 meta->seed += bio_integrity_intervals(bi, bio_sectors(bio)); 495 } 496 return ret; 497 } 498 499 /** 500 * bio_integrity_advance - Advance integrity vector 501 * @bio: bio whose integrity vector to update 502 * @bytes_done: number of data bytes that have been completed 503 * 504 * Description: This function calculates how many integrity bytes the 505 * number of completed data bytes correspond to and advances the 506 * integrity vector accordingly. 507 */ 508 void bio_integrity_advance(struct bio *bio, unsigned int bytes_done) 509 { 510 struct bio_integrity_payload *bip = bio_integrity(bio); 511 struct blk_integrity *bi = blk_get_integrity(bio->bi_bdev->bd_disk); 512 unsigned bytes = bio_integrity_bytes(bi, bytes_done >> 9); 513 514 bip->bip_iter.bi_sector += bio_integrity_intervals(bi, bytes_done >> 9); 515 bvec_iter_advance(bip->bip_vec, &bip->bip_iter, bytes); 516 } 517 518 /** 519 * bio_integrity_trim - Trim integrity vector 520 * @bio: bio whose integrity vector to update 521 * 522 * Description: Used to trim the integrity vector in a cloned bio. 523 */ 524 void bio_integrity_trim(struct bio *bio) 525 { 526 struct bio_integrity_payload *bip = bio_integrity(bio); 527 struct blk_integrity *bi = blk_get_integrity(bio->bi_bdev->bd_disk); 528 529 bip->bip_iter.bi_size = bio_integrity_bytes(bi, bio_sectors(bio)); 530 } 531 EXPORT_SYMBOL(bio_integrity_trim); 532 533 /** 534 * bio_integrity_clone - Callback for cloning bios with integrity metadata 535 * @bio: New bio 536 * @bio_src: Original bio 537 * @gfp_mask: Memory allocation mask 538 * 539 * Description: Called to allocate a bip when cloning a bio 540 */ 541 int bio_integrity_clone(struct bio *bio, struct bio *bio_src, 542 gfp_t gfp_mask) 543 { 544 struct bio_integrity_payload *bip_src = bio_integrity(bio_src); 545 struct bio_integrity_payload *bip; 546 547 BUG_ON(bip_src == NULL); 548 549 bip = bio_integrity_alloc(bio, gfp_mask, 0); 550 if (IS_ERR(bip)) 551 return PTR_ERR(bip); 552 553 bip->bip_vec = bip_src->bip_vec; 554 bip->bip_iter = bip_src->bip_iter; 555 bip->bip_flags = bip_src->bip_flags & BIP_CLONE_FLAGS; 556 bip->app_tag = bip_src->app_tag; 557 558 return 0; 559 } 560 561 static int __init bio_integrity_initfn(void) 562 { 563 if (mempool_init_page_pool(&integrity_buf_pool, BIO_POOL_SIZE, 564 get_order(BLK_INTEGRITY_MAX_SIZE))) 565 panic("bio: can't create integrity buf pool\n"); 566 return 0; 567 } 568 subsys_initcall(bio_integrity_initfn); 569