1 // SPDX-License-Identifier: GPL-2.0-or-later 2 /* 3 * Userspace block device - block device which IO is handled from userspace 4 * 5 * Take full use of io_uring passthrough command for communicating with 6 * ublk userspace daemon(ublksrvd) for handling basic IO request. 7 * 8 * Copyright 2022 Ming Lei <ming.lei@redhat.com> 9 * 10 * (part of code stolen from loop.c) 11 */ 12 #include <linux/module.h> 13 #include <linux/moduleparam.h> 14 #include <linux/sched.h> 15 #include <linux/fs.h> 16 #include <linux/pagemap.h> 17 #include <linux/file.h> 18 #include <linux/stat.h> 19 #include <linux/errno.h> 20 #include <linux/major.h> 21 #include <linux/wait.h> 22 #include <linux/blkdev.h> 23 #include <linux/init.h> 24 #include <linux/swap.h> 25 #include <linux/slab.h> 26 #include <linux/compat.h> 27 #include <linux/mutex.h> 28 #include <linux/writeback.h> 29 #include <linux/completion.h> 30 #include <linux/highmem.h> 31 #include <linux/sysfs.h> 32 #include <linux/miscdevice.h> 33 #include <linux/falloc.h> 34 #include <linux/uio.h> 35 #include <linux/ioprio.h> 36 #include <linux/sched/mm.h> 37 #include <linux/uaccess.h> 38 #include <linux/cdev.h> 39 #include <linux/io_uring.h> 40 #include <linux/blk-mq.h> 41 #include <linux/delay.h> 42 #include <linux/mm.h> 43 #include <asm/page.h> 44 #include <linux/task_work.h> 45 #include <linux/namei.h> 46 #include <uapi/linux/ublk_cmd.h> 47 48 #define UBLK_MINORS (1U << MINORBITS) 49 50 /* All UBLK_F_* have to be included into UBLK_F_ALL */ 51 #define UBLK_F_ALL (UBLK_F_SUPPORT_ZERO_COPY \ 52 | UBLK_F_URING_CMD_COMP_IN_TASK \ 53 | UBLK_F_NEED_GET_DATA \ 54 | UBLK_F_USER_RECOVERY \ 55 | UBLK_F_USER_RECOVERY_REISSUE \ 56 | UBLK_F_UNPRIVILEGED_DEV \ 57 | UBLK_F_CMD_IOCTL_ENCODE) 58 59 /* All UBLK_PARAM_TYPE_* should be included here */ 60 #define UBLK_PARAM_TYPE_ALL (UBLK_PARAM_TYPE_BASIC | \ 61 UBLK_PARAM_TYPE_DISCARD | UBLK_PARAM_TYPE_DEVT) 62 63 struct ublk_rq_data { 64 struct llist_node node; 65 struct callback_head work; 66 }; 67 68 struct ublk_uring_cmd_pdu { 69 struct ublk_queue *ubq; 70 }; 71 72 /* 73 * io command is active: sqe cmd is received, and its cqe isn't done 74 * 75 * If the flag is set, the io command is owned by ublk driver, and waited 76 * for incoming blk-mq request from the ublk block device. 77 * 78 * If the flag is cleared, the io command will be completed, and owned by 79 * ublk server. 80 */ 81 #define UBLK_IO_FLAG_ACTIVE 0x01 82 83 /* 84 * IO command is completed via cqe, and it is being handled by ublksrv, and 85 * not committed yet 86 * 87 * Basically exclusively with UBLK_IO_FLAG_ACTIVE, so can be served for 88 * cross verification 89 */ 90 #define UBLK_IO_FLAG_OWNED_BY_SRV 0x02 91 92 /* 93 * IO command is aborted, so this flag is set in case of 94 * !UBLK_IO_FLAG_ACTIVE. 95 * 96 * After this flag is observed, any pending or new incoming request 97 * associated with this io command will be failed immediately 98 */ 99 #define UBLK_IO_FLAG_ABORTED 0x04 100 101 /* 102 * UBLK_IO_FLAG_NEED_GET_DATA is set because IO command requires 103 * get data buffer address from ublksrv. 104 * 105 * Then, bio data could be copied into this data buffer for a WRITE request 106 * after the IO command is issued again and UBLK_IO_FLAG_NEED_GET_DATA is unset. 107 */ 108 #define UBLK_IO_FLAG_NEED_GET_DATA 0x08 109 110 struct ublk_io { 111 /* userspace buffer address from io cmd */ 112 __u64 addr; 113 unsigned int flags; 114 int res; 115 116 struct io_uring_cmd *cmd; 117 }; 118 119 struct ublk_queue { 120 int q_id; 121 int q_depth; 122 123 unsigned long flags; 124 struct task_struct *ubq_daemon; 125 char *io_cmd_buf; 126 127 struct llist_head io_cmds; 128 129 unsigned long io_addr; /* mapped vm address */ 130 unsigned int max_io_sz; 131 bool force_abort; 132 unsigned short nr_io_ready; /* how many ios setup */ 133 struct ublk_device *dev; 134 struct ublk_io ios[]; 135 }; 136 137 #define UBLK_DAEMON_MONITOR_PERIOD (5 * HZ) 138 139 struct ublk_device { 140 struct gendisk *ub_disk; 141 142 char *__queues; 143 144 unsigned int queue_size; 145 struct ublksrv_ctrl_dev_info dev_info; 146 147 struct blk_mq_tag_set tag_set; 148 149 struct cdev cdev; 150 struct device cdev_dev; 151 152 #define UB_STATE_OPEN 0 153 #define UB_STATE_USED 1 154 #define UB_STATE_DELETED 2 155 unsigned long state; 156 int ub_number; 157 158 struct mutex mutex; 159 160 spinlock_t mm_lock; 161 struct mm_struct *mm; 162 163 struct ublk_params params; 164 165 struct completion completion; 166 unsigned int nr_queues_ready; 167 unsigned int nr_privileged_daemon; 168 169 /* 170 * Our ubq->daemon may be killed without any notification, so 171 * monitor each queue's daemon periodically 172 */ 173 struct delayed_work monitor_work; 174 struct work_struct quiesce_work; 175 struct work_struct stop_work; 176 }; 177 178 /* header of ublk_params */ 179 struct ublk_params_header { 180 __u32 len; 181 __u32 types; 182 }; 183 184 static dev_t ublk_chr_devt; 185 static struct class *ublk_chr_class; 186 187 static DEFINE_IDR(ublk_index_idr); 188 static DEFINE_SPINLOCK(ublk_idr_lock); 189 static wait_queue_head_t ublk_idr_wq; /* wait until one idr is freed */ 190 191 static DEFINE_MUTEX(ublk_ctl_mutex); 192 193 /* 194 * Max ublk devices allowed to add 195 * 196 * It can be extended to one per-user limit in future or even controlled 197 * by cgroup. 198 */ 199 static unsigned int ublks_max = 64; 200 static unsigned int ublks_added; /* protected by ublk_ctl_mutex */ 201 202 static struct miscdevice ublk_misc; 203 204 static void ublk_dev_param_basic_apply(struct ublk_device *ub) 205 { 206 struct request_queue *q = ub->ub_disk->queue; 207 const struct ublk_param_basic *p = &ub->params.basic; 208 209 blk_queue_logical_block_size(q, 1 << p->logical_bs_shift); 210 blk_queue_physical_block_size(q, 1 << p->physical_bs_shift); 211 blk_queue_io_min(q, 1 << p->io_min_shift); 212 blk_queue_io_opt(q, 1 << p->io_opt_shift); 213 214 blk_queue_write_cache(q, p->attrs & UBLK_ATTR_VOLATILE_CACHE, 215 p->attrs & UBLK_ATTR_FUA); 216 if (p->attrs & UBLK_ATTR_ROTATIONAL) 217 blk_queue_flag_clear(QUEUE_FLAG_NONROT, q); 218 else 219 blk_queue_flag_set(QUEUE_FLAG_NONROT, q); 220 221 blk_queue_max_hw_sectors(q, p->max_sectors); 222 blk_queue_chunk_sectors(q, p->chunk_sectors); 223 blk_queue_virt_boundary(q, p->virt_boundary_mask); 224 225 if (p->attrs & UBLK_ATTR_READ_ONLY) 226 set_disk_ro(ub->ub_disk, true); 227 228 set_capacity(ub->ub_disk, p->dev_sectors); 229 } 230 231 static void ublk_dev_param_discard_apply(struct ublk_device *ub) 232 { 233 struct request_queue *q = ub->ub_disk->queue; 234 const struct ublk_param_discard *p = &ub->params.discard; 235 236 q->limits.discard_alignment = p->discard_alignment; 237 q->limits.discard_granularity = p->discard_granularity; 238 blk_queue_max_discard_sectors(q, p->max_discard_sectors); 239 blk_queue_max_write_zeroes_sectors(q, 240 p->max_write_zeroes_sectors); 241 blk_queue_max_discard_segments(q, p->max_discard_segments); 242 } 243 244 static int ublk_validate_params(const struct ublk_device *ub) 245 { 246 /* basic param is the only one which must be set */ 247 if (ub->params.types & UBLK_PARAM_TYPE_BASIC) { 248 const struct ublk_param_basic *p = &ub->params.basic; 249 250 if (p->logical_bs_shift > PAGE_SHIFT || p->logical_bs_shift < 9) 251 return -EINVAL; 252 253 if (p->logical_bs_shift > p->physical_bs_shift) 254 return -EINVAL; 255 256 if (p->max_sectors > (ub->dev_info.max_io_buf_bytes >> 9)) 257 return -EINVAL; 258 } else 259 return -EINVAL; 260 261 if (ub->params.types & UBLK_PARAM_TYPE_DISCARD) { 262 const struct ublk_param_discard *p = &ub->params.discard; 263 264 /* So far, only support single segment discard */ 265 if (p->max_discard_sectors && p->max_discard_segments != 1) 266 return -EINVAL; 267 268 if (!p->discard_granularity) 269 return -EINVAL; 270 } 271 272 /* dev_t is read-only */ 273 if (ub->params.types & UBLK_PARAM_TYPE_DEVT) 274 return -EINVAL; 275 276 return 0; 277 } 278 279 static int ublk_apply_params(struct ublk_device *ub) 280 { 281 if (!(ub->params.types & UBLK_PARAM_TYPE_BASIC)) 282 return -EINVAL; 283 284 ublk_dev_param_basic_apply(ub); 285 286 if (ub->params.types & UBLK_PARAM_TYPE_DISCARD) 287 ublk_dev_param_discard_apply(ub); 288 289 return 0; 290 } 291 292 static inline bool ublk_can_use_task_work(const struct ublk_queue *ubq) 293 { 294 if (IS_BUILTIN(CONFIG_BLK_DEV_UBLK) && 295 !(ubq->flags & UBLK_F_URING_CMD_COMP_IN_TASK)) 296 return true; 297 return false; 298 } 299 300 static inline bool ublk_need_get_data(const struct ublk_queue *ubq) 301 { 302 return ubq->flags & UBLK_F_NEED_GET_DATA; 303 } 304 305 static struct ublk_device *ublk_get_device(struct ublk_device *ub) 306 { 307 if (kobject_get_unless_zero(&ub->cdev_dev.kobj)) 308 return ub; 309 return NULL; 310 } 311 312 static void ublk_put_device(struct ublk_device *ub) 313 { 314 put_device(&ub->cdev_dev); 315 } 316 317 static inline struct ublk_queue *ublk_get_queue(struct ublk_device *dev, 318 int qid) 319 { 320 return (struct ublk_queue *)&(dev->__queues[qid * dev->queue_size]); 321 } 322 323 static inline bool ublk_rq_has_data(const struct request *rq) 324 { 325 return bio_has_data(rq->bio); 326 } 327 328 static inline struct ublksrv_io_desc *ublk_get_iod(struct ublk_queue *ubq, 329 int tag) 330 { 331 return (struct ublksrv_io_desc *) 332 &(ubq->io_cmd_buf[tag * sizeof(struct ublksrv_io_desc)]); 333 } 334 335 static inline char *ublk_queue_cmd_buf(struct ublk_device *ub, int q_id) 336 { 337 return ublk_get_queue(ub, q_id)->io_cmd_buf; 338 } 339 340 static inline int ublk_queue_cmd_buf_size(struct ublk_device *ub, int q_id) 341 { 342 struct ublk_queue *ubq = ublk_get_queue(ub, q_id); 343 344 return round_up(ubq->q_depth * sizeof(struct ublksrv_io_desc), 345 PAGE_SIZE); 346 } 347 348 static inline bool ublk_queue_can_use_recovery_reissue( 349 struct ublk_queue *ubq) 350 { 351 return (ubq->flags & UBLK_F_USER_RECOVERY) && 352 (ubq->flags & UBLK_F_USER_RECOVERY_REISSUE); 353 } 354 355 static inline bool ublk_queue_can_use_recovery( 356 struct ublk_queue *ubq) 357 { 358 return ubq->flags & UBLK_F_USER_RECOVERY; 359 } 360 361 static inline bool ublk_can_use_recovery(struct ublk_device *ub) 362 { 363 return ub->dev_info.flags & UBLK_F_USER_RECOVERY; 364 } 365 366 static void ublk_free_disk(struct gendisk *disk) 367 { 368 struct ublk_device *ub = disk->private_data; 369 370 clear_bit(UB_STATE_USED, &ub->state); 371 put_device(&ub->cdev_dev); 372 } 373 374 static void ublk_store_owner_uid_gid(unsigned int *owner_uid, 375 unsigned int *owner_gid) 376 { 377 kuid_t uid; 378 kgid_t gid; 379 380 current_uid_gid(&uid, &gid); 381 382 *owner_uid = from_kuid(&init_user_ns, uid); 383 *owner_gid = from_kgid(&init_user_ns, gid); 384 } 385 386 static int ublk_open(struct block_device *bdev, fmode_t mode) 387 { 388 struct ublk_device *ub = bdev->bd_disk->private_data; 389 390 if (capable(CAP_SYS_ADMIN)) 391 return 0; 392 393 /* 394 * If it is one unprivileged device, only owner can open 395 * the disk. Otherwise it could be one trap made by one 396 * evil user who grants this disk's privileges to other 397 * users deliberately. 398 * 399 * This way is reasonable too given anyone can create 400 * unprivileged device, and no need other's grant. 401 */ 402 if (ub->dev_info.flags & UBLK_F_UNPRIVILEGED_DEV) { 403 unsigned int curr_uid, curr_gid; 404 405 ublk_store_owner_uid_gid(&curr_uid, &curr_gid); 406 407 if (curr_uid != ub->dev_info.owner_uid || curr_gid != 408 ub->dev_info.owner_gid) 409 return -EPERM; 410 } 411 412 return 0; 413 } 414 415 static const struct block_device_operations ub_fops = { 416 .owner = THIS_MODULE, 417 .open = ublk_open, 418 .free_disk = ublk_free_disk, 419 }; 420 421 #define UBLK_MAX_PIN_PAGES 32 422 423 struct ublk_map_data { 424 const struct request *rq; 425 unsigned long ubuf; 426 unsigned int len; 427 }; 428 429 struct ublk_io_iter { 430 struct page *pages[UBLK_MAX_PIN_PAGES]; 431 unsigned pg_off; /* offset in the 1st page in pages */ 432 int nr_pages; /* how many page pointers in pages */ 433 struct bio *bio; 434 struct bvec_iter iter; 435 }; 436 437 static inline unsigned ublk_copy_io_pages(struct ublk_io_iter *data, 438 unsigned max_bytes, bool to_vm) 439 { 440 const unsigned total = min_t(unsigned, max_bytes, 441 PAGE_SIZE - data->pg_off + 442 ((data->nr_pages - 1) << PAGE_SHIFT)); 443 unsigned done = 0; 444 unsigned pg_idx = 0; 445 446 while (done < total) { 447 struct bio_vec bv = bio_iter_iovec(data->bio, data->iter); 448 const unsigned int bytes = min3(bv.bv_len, total - done, 449 (unsigned)(PAGE_SIZE - data->pg_off)); 450 void *bv_buf = bvec_kmap_local(&bv); 451 void *pg_buf = kmap_local_page(data->pages[pg_idx]); 452 453 if (to_vm) 454 memcpy(pg_buf + data->pg_off, bv_buf, bytes); 455 else 456 memcpy(bv_buf, pg_buf + data->pg_off, bytes); 457 458 kunmap_local(pg_buf); 459 kunmap_local(bv_buf); 460 461 /* advance page array */ 462 data->pg_off += bytes; 463 if (data->pg_off == PAGE_SIZE) { 464 pg_idx += 1; 465 data->pg_off = 0; 466 } 467 468 done += bytes; 469 470 /* advance bio */ 471 bio_advance_iter_single(data->bio, &data->iter, bytes); 472 if (!data->iter.bi_size) { 473 data->bio = data->bio->bi_next; 474 if (data->bio == NULL) 475 break; 476 data->iter = data->bio->bi_iter; 477 } 478 } 479 480 return done; 481 } 482 483 static int ublk_copy_user_pages(struct ublk_map_data *data, bool to_vm) 484 { 485 const unsigned int gup_flags = to_vm ? FOLL_WRITE : 0; 486 const unsigned long start_vm = data->ubuf; 487 unsigned int done = 0; 488 struct ublk_io_iter iter = { 489 .pg_off = start_vm & (PAGE_SIZE - 1), 490 .bio = data->rq->bio, 491 .iter = data->rq->bio->bi_iter, 492 }; 493 const unsigned int nr_pages = round_up(data->len + 494 (start_vm & (PAGE_SIZE - 1)), PAGE_SIZE) >> PAGE_SHIFT; 495 496 while (done < nr_pages) { 497 const unsigned to_pin = min_t(unsigned, UBLK_MAX_PIN_PAGES, 498 nr_pages - done); 499 unsigned i, len; 500 501 iter.nr_pages = get_user_pages_fast(start_vm + 502 (done << PAGE_SHIFT), to_pin, gup_flags, 503 iter.pages); 504 if (iter.nr_pages <= 0) 505 return done == 0 ? iter.nr_pages : done; 506 len = ublk_copy_io_pages(&iter, data->len, to_vm); 507 for (i = 0; i < iter.nr_pages; i++) { 508 if (to_vm) 509 set_page_dirty(iter.pages[i]); 510 put_page(iter.pages[i]); 511 } 512 data->len -= len; 513 done += iter.nr_pages; 514 } 515 516 return done; 517 } 518 519 static inline bool ublk_need_map_req(const struct request *req) 520 { 521 return ublk_rq_has_data(req) && req_op(req) == REQ_OP_WRITE; 522 } 523 524 static inline bool ublk_need_unmap_req(const struct request *req) 525 { 526 return ublk_rq_has_data(req) && req_op(req) == REQ_OP_READ; 527 } 528 529 static int ublk_map_io(const struct ublk_queue *ubq, const struct request *req, 530 struct ublk_io *io) 531 { 532 const unsigned int rq_bytes = blk_rq_bytes(req); 533 534 /* 535 * no zero copy, we delay copy WRITE request data into ublksrv 536 * context and the big benefit is that pinning pages in current 537 * context is pretty fast, see ublk_pin_user_pages 538 */ 539 if (ublk_need_map_req(req)) { 540 struct ublk_map_data data = { 541 .rq = req, 542 .ubuf = io->addr, 543 .len = rq_bytes, 544 }; 545 546 ublk_copy_user_pages(&data, true); 547 548 return rq_bytes - data.len; 549 } 550 return rq_bytes; 551 } 552 553 static int ublk_unmap_io(const struct ublk_queue *ubq, 554 const struct request *req, 555 struct ublk_io *io) 556 { 557 const unsigned int rq_bytes = blk_rq_bytes(req); 558 559 if (ublk_need_unmap_req(req)) { 560 struct ublk_map_data data = { 561 .rq = req, 562 .ubuf = io->addr, 563 .len = io->res, 564 }; 565 566 WARN_ON_ONCE(io->res > rq_bytes); 567 568 ublk_copy_user_pages(&data, false); 569 570 return io->res - data.len; 571 } 572 return rq_bytes; 573 } 574 575 static inline unsigned int ublk_req_build_flags(struct request *req) 576 { 577 unsigned flags = 0; 578 579 if (req->cmd_flags & REQ_FAILFAST_DEV) 580 flags |= UBLK_IO_F_FAILFAST_DEV; 581 582 if (req->cmd_flags & REQ_FAILFAST_TRANSPORT) 583 flags |= UBLK_IO_F_FAILFAST_TRANSPORT; 584 585 if (req->cmd_flags & REQ_FAILFAST_DRIVER) 586 flags |= UBLK_IO_F_FAILFAST_DRIVER; 587 588 if (req->cmd_flags & REQ_META) 589 flags |= UBLK_IO_F_META; 590 591 if (req->cmd_flags & REQ_FUA) 592 flags |= UBLK_IO_F_FUA; 593 594 if (req->cmd_flags & REQ_NOUNMAP) 595 flags |= UBLK_IO_F_NOUNMAP; 596 597 if (req->cmd_flags & REQ_SWAP) 598 flags |= UBLK_IO_F_SWAP; 599 600 return flags; 601 } 602 603 static blk_status_t ublk_setup_iod(struct ublk_queue *ubq, struct request *req) 604 { 605 struct ublksrv_io_desc *iod = ublk_get_iod(ubq, req->tag); 606 struct ublk_io *io = &ubq->ios[req->tag]; 607 u32 ublk_op; 608 609 switch (req_op(req)) { 610 case REQ_OP_READ: 611 ublk_op = UBLK_IO_OP_READ; 612 break; 613 case REQ_OP_WRITE: 614 ublk_op = UBLK_IO_OP_WRITE; 615 break; 616 case REQ_OP_FLUSH: 617 ublk_op = UBLK_IO_OP_FLUSH; 618 break; 619 case REQ_OP_DISCARD: 620 ublk_op = UBLK_IO_OP_DISCARD; 621 break; 622 case REQ_OP_WRITE_ZEROES: 623 ublk_op = UBLK_IO_OP_WRITE_ZEROES; 624 break; 625 default: 626 return BLK_STS_IOERR; 627 } 628 629 /* need to translate since kernel may change */ 630 iod->op_flags = ublk_op | ublk_req_build_flags(req); 631 iod->nr_sectors = blk_rq_sectors(req); 632 iod->start_sector = blk_rq_pos(req); 633 iod->addr = io->addr; 634 635 return BLK_STS_OK; 636 } 637 638 static inline struct ublk_uring_cmd_pdu *ublk_get_uring_cmd_pdu( 639 struct io_uring_cmd *ioucmd) 640 { 641 return (struct ublk_uring_cmd_pdu *)&ioucmd->pdu; 642 } 643 644 static inline bool ubq_daemon_is_dying(struct ublk_queue *ubq) 645 { 646 return ubq->ubq_daemon->flags & PF_EXITING; 647 } 648 649 /* todo: handle partial completion */ 650 static void ublk_complete_rq(struct request *req) 651 { 652 struct ublk_queue *ubq = req->mq_hctx->driver_data; 653 struct ublk_io *io = &ubq->ios[req->tag]; 654 unsigned int unmapped_bytes; 655 blk_status_t res = BLK_STS_OK; 656 657 /* failed read IO if nothing is read */ 658 if (!io->res && req_op(req) == REQ_OP_READ) 659 io->res = -EIO; 660 661 if (io->res < 0) { 662 res = errno_to_blk_status(io->res); 663 goto exit; 664 } 665 666 /* 667 * FLUSH, DISCARD or WRITE_ZEROES usually won't return bytes returned, so end them 668 * directly. 669 * 670 * Both the two needn't unmap. 671 */ 672 if (req_op(req) != REQ_OP_READ && req_op(req) != REQ_OP_WRITE) 673 goto exit; 674 675 /* for READ request, writing data in iod->addr to rq buffers */ 676 unmapped_bytes = ublk_unmap_io(ubq, req, io); 677 678 /* 679 * Extremely impossible since we got data filled in just before 680 * 681 * Re-read simply for this unlikely case. 682 */ 683 if (unlikely(unmapped_bytes < io->res)) 684 io->res = unmapped_bytes; 685 686 if (blk_update_request(req, BLK_STS_OK, io->res)) 687 blk_mq_requeue_request(req, true); 688 else 689 __blk_mq_end_request(req, BLK_STS_OK); 690 691 return; 692 exit: 693 blk_mq_end_request(req, res); 694 } 695 696 /* 697 * Since __ublk_rq_task_work always fails requests immediately during 698 * exiting, __ublk_fail_req() is only called from abort context during 699 * exiting. So lock is unnecessary. 700 * 701 * Also aborting may not be started yet, keep in mind that one failed 702 * request may be issued by block layer again. 703 */ 704 static void __ublk_fail_req(struct ublk_queue *ubq, struct ublk_io *io, 705 struct request *req) 706 { 707 WARN_ON_ONCE(io->flags & UBLK_IO_FLAG_ACTIVE); 708 709 if (!(io->flags & UBLK_IO_FLAG_ABORTED)) { 710 io->flags |= UBLK_IO_FLAG_ABORTED; 711 if (ublk_queue_can_use_recovery_reissue(ubq)) 712 blk_mq_requeue_request(req, false); 713 else 714 blk_mq_end_request(req, BLK_STS_IOERR); 715 } 716 } 717 718 static void ubq_complete_io_cmd(struct ublk_io *io, int res, 719 unsigned issue_flags) 720 { 721 /* mark this cmd owned by ublksrv */ 722 io->flags |= UBLK_IO_FLAG_OWNED_BY_SRV; 723 724 /* 725 * clear ACTIVE since we are done with this sqe/cmd slot 726 * We can only accept io cmd in case of being not active. 727 */ 728 io->flags &= ~UBLK_IO_FLAG_ACTIVE; 729 730 /* tell ublksrv one io request is coming */ 731 io_uring_cmd_done(io->cmd, res, 0, issue_flags); 732 } 733 734 #define UBLK_REQUEUE_DELAY_MS 3 735 736 static inline void __ublk_abort_rq(struct ublk_queue *ubq, 737 struct request *rq) 738 { 739 /* We cannot process this rq so just requeue it. */ 740 if (ublk_queue_can_use_recovery(ubq)) 741 blk_mq_requeue_request(rq, false); 742 else 743 blk_mq_end_request(rq, BLK_STS_IOERR); 744 745 mod_delayed_work(system_wq, &ubq->dev->monitor_work, 0); 746 } 747 748 static inline void __ublk_rq_task_work(struct request *req, 749 unsigned issue_flags) 750 { 751 struct ublk_queue *ubq = req->mq_hctx->driver_data; 752 int tag = req->tag; 753 struct ublk_io *io = &ubq->ios[tag]; 754 unsigned int mapped_bytes; 755 756 pr_devel("%s: complete: op %d, qid %d tag %d io_flags %x addr %llx\n", 757 __func__, io->cmd->cmd_op, ubq->q_id, req->tag, io->flags, 758 ublk_get_iod(ubq, req->tag)->addr); 759 760 /* 761 * Task is exiting if either: 762 * 763 * (1) current != ubq_daemon. 764 * io_uring_cmd_complete_in_task() tries to run task_work 765 * in a workqueue if ubq_daemon(cmd's task) is PF_EXITING. 766 * 767 * (2) current->flags & PF_EXITING. 768 */ 769 if (unlikely(current != ubq->ubq_daemon || current->flags & PF_EXITING)) { 770 __ublk_abort_rq(ubq, req); 771 return; 772 } 773 774 if (ublk_need_get_data(ubq) && ublk_need_map_req(req)) { 775 /* 776 * We have not handled UBLK_IO_NEED_GET_DATA command yet, 777 * so immepdately pass UBLK_IO_RES_NEED_GET_DATA to ublksrv 778 * and notify it. 779 */ 780 if (!(io->flags & UBLK_IO_FLAG_NEED_GET_DATA)) { 781 io->flags |= UBLK_IO_FLAG_NEED_GET_DATA; 782 pr_devel("%s: need get data. op %d, qid %d tag %d io_flags %x\n", 783 __func__, io->cmd->cmd_op, ubq->q_id, 784 req->tag, io->flags); 785 ubq_complete_io_cmd(io, UBLK_IO_RES_NEED_GET_DATA, issue_flags); 786 return; 787 } 788 /* 789 * We have handled UBLK_IO_NEED_GET_DATA command, 790 * so clear UBLK_IO_FLAG_NEED_GET_DATA now and just 791 * do the copy work. 792 */ 793 io->flags &= ~UBLK_IO_FLAG_NEED_GET_DATA; 794 /* update iod->addr because ublksrv may have passed a new io buffer */ 795 ublk_get_iod(ubq, req->tag)->addr = io->addr; 796 pr_devel("%s: update iod->addr: op %d, qid %d tag %d io_flags %x addr %llx\n", 797 __func__, io->cmd->cmd_op, ubq->q_id, req->tag, io->flags, 798 ublk_get_iod(ubq, req->tag)->addr); 799 } 800 801 mapped_bytes = ublk_map_io(ubq, req, io); 802 803 /* partially mapped, update io descriptor */ 804 if (unlikely(mapped_bytes != blk_rq_bytes(req))) { 805 /* 806 * Nothing mapped, retry until we succeed. 807 * 808 * We may never succeed in mapping any bytes here because 809 * of OOM. TODO: reserve one buffer with single page pinned 810 * for providing forward progress guarantee. 811 */ 812 if (unlikely(!mapped_bytes)) { 813 blk_mq_requeue_request(req, false); 814 blk_mq_delay_kick_requeue_list(req->q, 815 UBLK_REQUEUE_DELAY_MS); 816 return; 817 } 818 819 ublk_get_iod(ubq, req->tag)->nr_sectors = 820 mapped_bytes >> 9; 821 } 822 823 ubq_complete_io_cmd(io, UBLK_IO_RES_OK, issue_flags); 824 } 825 826 static inline void ublk_forward_io_cmds(struct ublk_queue *ubq, 827 unsigned issue_flags) 828 { 829 struct llist_node *io_cmds = llist_del_all(&ubq->io_cmds); 830 struct ublk_rq_data *data, *tmp; 831 832 io_cmds = llist_reverse_order(io_cmds); 833 llist_for_each_entry_safe(data, tmp, io_cmds, node) 834 __ublk_rq_task_work(blk_mq_rq_from_pdu(data), issue_flags); 835 } 836 837 static inline void ublk_abort_io_cmds(struct ublk_queue *ubq) 838 { 839 struct llist_node *io_cmds = llist_del_all(&ubq->io_cmds); 840 struct ublk_rq_data *data, *tmp; 841 842 llist_for_each_entry_safe(data, tmp, io_cmds, node) 843 __ublk_abort_rq(ubq, blk_mq_rq_from_pdu(data)); 844 } 845 846 static void ublk_rq_task_work_cb(struct io_uring_cmd *cmd, unsigned issue_flags) 847 { 848 struct ublk_uring_cmd_pdu *pdu = ublk_get_uring_cmd_pdu(cmd); 849 struct ublk_queue *ubq = pdu->ubq; 850 851 ublk_forward_io_cmds(ubq, issue_flags); 852 } 853 854 static void ublk_rq_task_work_fn(struct callback_head *work) 855 { 856 struct ublk_rq_data *data = container_of(work, 857 struct ublk_rq_data, work); 858 struct request *req = blk_mq_rq_from_pdu(data); 859 struct ublk_queue *ubq = req->mq_hctx->driver_data; 860 unsigned issue_flags = IO_URING_F_UNLOCKED; 861 862 ublk_forward_io_cmds(ubq, issue_flags); 863 } 864 865 static void ublk_queue_cmd(struct ublk_queue *ubq, struct request *rq) 866 { 867 struct ublk_rq_data *data = blk_mq_rq_to_pdu(rq); 868 struct ublk_io *io; 869 870 if (!llist_add(&data->node, &ubq->io_cmds)) 871 return; 872 873 io = &ubq->ios[rq->tag]; 874 /* 875 * If the check pass, we know that this is a re-issued request aborted 876 * previously in monitor_work because the ubq_daemon(cmd's task) is 877 * PF_EXITING. We cannot call io_uring_cmd_complete_in_task() anymore 878 * because this ioucmd's io_uring context may be freed now if no inflight 879 * ioucmd exists. Otherwise we may cause null-deref in ctx->fallback_work. 880 * 881 * Note: monitor_work sets UBLK_IO_FLAG_ABORTED and ends this request(releasing 882 * the tag). Then the request is re-started(allocating the tag) and we are here. 883 * Since releasing/allocating a tag implies smp_mb(), finding UBLK_IO_FLAG_ABORTED 884 * guarantees that here is a re-issued request aborted previously. 885 */ 886 if (unlikely(io->flags & UBLK_IO_FLAG_ABORTED)) { 887 ublk_abort_io_cmds(ubq); 888 } else if (ublk_can_use_task_work(ubq)) { 889 if (task_work_add(ubq->ubq_daemon, &data->work, 890 TWA_SIGNAL_NO_IPI)) 891 ublk_abort_io_cmds(ubq); 892 } else { 893 struct io_uring_cmd *cmd = io->cmd; 894 struct ublk_uring_cmd_pdu *pdu = ublk_get_uring_cmd_pdu(cmd); 895 896 pdu->ubq = ubq; 897 io_uring_cmd_complete_in_task(cmd, ublk_rq_task_work_cb); 898 } 899 } 900 901 static blk_status_t ublk_queue_rq(struct blk_mq_hw_ctx *hctx, 902 const struct blk_mq_queue_data *bd) 903 { 904 struct ublk_queue *ubq = hctx->driver_data; 905 struct request *rq = bd->rq; 906 blk_status_t res; 907 908 /* fill iod to slot in io cmd buffer */ 909 res = ublk_setup_iod(ubq, rq); 910 if (unlikely(res != BLK_STS_OK)) 911 return BLK_STS_IOERR; 912 913 /* With recovery feature enabled, force_abort is set in 914 * ublk_stop_dev() before calling del_gendisk(). We have to 915 * abort all requeued and new rqs here to let del_gendisk() 916 * move on. Besides, we cannot not call io_uring_cmd_complete_in_task() 917 * to avoid UAF on io_uring ctx. 918 * 919 * Note: force_abort is guaranteed to be seen because it is set 920 * before request queue is unqiuesced. 921 */ 922 if (ublk_queue_can_use_recovery(ubq) && unlikely(ubq->force_abort)) 923 return BLK_STS_IOERR; 924 925 blk_mq_start_request(bd->rq); 926 927 if (unlikely(ubq_daemon_is_dying(ubq))) { 928 __ublk_abort_rq(ubq, rq); 929 return BLK_STS_OK; 930 } 931 932 ublk_queue_cmd(ubq, rq); 933 934 return BLK_STS_OK; 935 } 936 937 static int ublk_init_hctx(struct blk_mq_hw_ctx *hctx, void *driver_data, 938 unsigned int hctx_idx) 939 { 940 struct ublk_device *ub = driver_data; 941 struct ublk_queue *ubq = ublk_get_queue(ub, hctx->queue_num); 942 943 hctx->driver_data = ubq; 944 return 0; 945 } 946 947 static int ublk_init_rq(struct blk_mq_tag_set *set, struct request *req, 948 unsigned int hctx_idx, unsigned int numa_node) 949 { 950 struct ublk_rq_data *data = blk_mq_rq_to_pdu(req); 951 952 init_task_work(&data->work, ublk_rq_task_work_fn); 953 return 0; 954 } 955 956 static const struct blk_mq_ops ublk_mq_ops = { 957 .queue_rq = ublk_queue_rq, 958 .init_hctx = ublk_init_hctx, 959 .init_request = ublk_init_rq, 960 }; 961 962 static int ublk_ch_open(struct inode *inode, struct file *filp) 963 { 964 struct ublk_device *ub = container_of(inode->i_cdev, 965 struct ublk_device, cdev); 966 967 if (test_and_set_bit(UB_STATE_OPEN, &ub->state)) 968 return -EBUSY; 969 filp->private_data = ub; 970 return 0; 971 } 972 973 static int ublk_ch_release(struct inode *inode, struct file *filp) 974 { 975 struct ublk_device *ub = filp->private_data; 976 977 clear_bit(UB_STATE_OPEN, &ub->state); 978 return 0; 979 } 980 981 /* map pre-allocated per-queue cmd buffer to ublksrv daemon */ 982 static int ublk_ch_mmap(struct file *filp, struct vm_area_struct *vma) 983 { 984 struct ublk_device *ub = filp->private_data; 985 size_t sz = vma->vm_end - vma->vm_start; 986 unsigned max_sz = UBLK_MAX_QUEUE_DEPTH * sizeof(struct ublksrv_io_desc); 987 unsigned long pfn, end, phys_off = vma->vm_pgoff << PAGE_SHIFT; 988 int q_id, ret = 0; 989 990 spin_lock(&ub->mm_lock); 991 if (!ub->mm) 992 ub->mm = current->mm; 993 if (current->mm != ub->mm) 994 ret = -EINVAL; 995 spin_unlock(&ub->mm_lock); 996 997 if (ret) 998 return ret; 999 1000 if (vma->vm_flags & VM_WRITE) 1001 return -EPERM; 1002 1003 end = UBLKSRV_CMD_BUF_OFFSET + ub->dev_info.nr_hw_queues * max_sz; 1004 if (phys_off < UBLKSRV_CMD_BUF_OFFSET || phys_off >= end) 1005 return -EINVAL; 1006 1007 q_id = (phys_off - UBLKSRV_CMD_BUF_OFFSET) / max_sz; 1008 pr_devel("%s: qid %d, pid %d, addr %lx pg_off %lx sz %lu\n", 1009 __func__, q_id, current->pid, vma->vm_start, 1010 phys_off, (unsigned long)sz); 1011 1012 if (sz != ublk_queue_cmd_buf_size(ub, q_id)) 1013 return -EINVAL; 1014 1015 pfn = virt_to_phys(ublk_queue_cmd_buf(ub, q_id)) >> PAGE_SHIFT; 1016 return remap_pfn_range(vma, vma->vm_start, pfn, sz, vma->vm_page_prot); 1017 } 1018 1019 static void ublk_commit_completion(struct ublk_device *ub, 1020 struct ublksrv_io_cmd *ub_cmd) 1021 { 1022 u32 qid = ub_cmd->q_id, tag = ub_cmd->tag; 1023 struct ublk_queue *ubq = ublk_get_queue(ub, qid); 1024 struct ublk_io *io = &ubq->ios[tag]; 1025 struct request *req; 1026 1027 /* now this cmd slot is owned by nbd driver */ 1028 io->flags &= ~UBLK_IO_FLAG_OWNED_BY_SRV; 1029 io->res = ub_cmd->result; 1030 1031 /* find the io request and complete */ 1032 req = blk_mq_tag_to_rq(ub->tag_set.tags[qid], tag); 1033 1034 if (req && likely(!blk_should_fake_timeout(req->q))) 1035 ublk_complete_rq(req); 1036 } 1037 1038 /* 1039 * When ->ubq_daemon is exiting, either new request is ended immediately, 1040 * or any queued io command is drained, so it is safe to abort queue 1041 * lockless 1042 */ 1043 static void ublk_abort_queue(struct ublk_device *ub, struct ublk_queue *ubq) 1044 { 1045 int i; 1046 1047 if (!ublk_get_device(ub)) 1048 return; 1049 1050 for (i = 0; i < ubq->q_depth; i++) { 1051 struct ublk_io *io = &ubq->ios[i]; 1052 1053 if (!(io->flags & UBLK_IO_FLAG_ACTIVE)) { 1054 struct request *rq; 1055 1056 /* 1057 * Either we fail the request or ublk_rq_task_work_fn 1058 * will do it 1059 */ 1060 rq = blk_mq_tag_to_rq(ub->tag_set.tags[ubq->q_id], i); 1061 if (rq) 1062 __ublk_fail_req(ubq, io, rq); 1063 } 1064 } 1065 ublk_put_device(ub); 1066 } 1067 1068 static void ublk_daemon_monitor_work(struct work_struct *work) 1069 { 1070 struct ublk_device *ub = 1071 container_of(work, struct ublk_device, monitor_work.work); 1072 int i; 1073 1074 for (i = 0; i < ub->dev_info.nr_hw_queues; i++) { 1075 struct ublk_queue *ubq = ublk_get_queue(ub, i); 1076 1077 if (ubq_daemon_is_dying(ubq)) { 1078 if (ublk_queue_can_use_recovery(ubq)) 1079 schedule_work(&ub->quiesce_work); 1080 else 1081 schedule_work(&ub->stop_work); 1082 1083 /* abort queue is for making forward progress */ 1084 ublk_abort_queue(ub, ubq); 1085 } 1086 } 1087 1088 /* 1089 * We can't schedule monitor work after ub's state is not UBLK_S_DEV_LIVE. 1090 * after ublk_remove() or __ublk_quiesce_dev() is started. 1091 * 1092 * No need ub->mutex, monitor work are canceled after state is marked 1093 * as not LIVE, so new state is observed reliably. 1094 */ 1095 if (ub->dev_info.state == UBLK_S_DEV_LIVE) 1096 schedule_delayed_work(&ub->monitor_work, 1097 UBLK_DAEMON_MONITOR_PERIOD); 1098 } 1099 1100 static inline bool ublk_queue_ready(struct ublk_queue *ubq) 1101 { 1102 return ubq->nr_io_ready == ubq->q_depth; 1103 } 1104 1105 static void ublk_cancel_queue(struct ublk_queue *ubq) 1106 { 1107 int i; 1108 1109 if (!ublk_queue_ready(ubq)) 1110 return; 1111 1112 for (i = 0; i < ubq->q_depth; i++) { 1113 struct ublk_io *io = &ubq->ios[i]; 1114 1115 if (io->flags & UBLK_IO_FLAG_ACTIVE) 1116 io_uring_cmd_done(io->cmd, UBLK_IO_RES_ABORT, 0, 1117 IO_URING_F_UNLOCKED); 1118 } 1119 1120 /* all io commands are canceled */ 1121 ubq->nr_io_ready = 0; 1122 } 1123 1124 /* Cancel all pending commands, must be called after del_gendisk() returns */ 1125 static void ublk_cancel_dev(struct ublk_device *ub) 1126 { 1127 int i; 1128 1129 for (i = 0; i < ub->dev_info.nr_hw_queues; i++) 1130 ublk_cancel_queue(ublk_get_queue(ub, i)); 1131 } 1132 1133 static bool ublk_check_inflight_rq(struct request *rq, void *data) 1134 { 1135 bool *idle = data; 1136 1137 if (blk_mq_request_started(rq)) { 1138 *idle = false; 1139 return false; 1140 } 1141 return true; 1142 } 1143 1144 static void ublk_wait_tagset_rqs_idle(struct ublk_device *ub) 1145 { 1146 bool idle; 1147 1148 WARN_ON_ONCE(!blk_queue_quiesced(ub->ub_disk->queue)); 1149 while (true) { 1150 idle = true; 1151 blk_mq_tagset_busy_iter(&ub->tag_set, 1152 ublk_check_inflight_rq, &idle); 1153 if (idle) 1154 break; 1155 msleep(UBLK_REQUEUE_DELAY_MS); 1156 } 1157 } 1158 1159 static void __ublk_quiesce_dev(struct ublk_device *ub) 1160 { 1161 pr_devel("%s: quiesce ub: dev_id %d state %s\n", 1162 __func__, ub->dev_info.dev_id, 1163 ub->dev_info.state == UBLK_S_DEV_LIVE ? 1164 "LIVE" : "QUIESCED"); 1165 blk_mq_quiesce_queue(ub->ub_disk->queue); 1166 ublk_wait_tagset_rqs_idle(ub); 1167 ub->dev_info.state = UBLK_S_DEV_QUIESCED; 1168 ublk_cancel_dev(ub); 1169 /* we are going to release task_struct of ubq_daemon and resets 1170 * ->ubq_daemon to NULL. So in monitor_work, check on ubq_daemon causes UAF. 1171 * Besides, monitor_work is not necessary in QUIESCED state since we have 1172 * already scheduled quiesce_work and quiesced all ubqs. 1173 * 1174 * Do not let monitor_work schedule itself if state it QUIESCED. And we cancel 1175 * it here and re-schedule it in END_USER_RECOVERY to avoid UAF. 1176 */ 1177 cancel_delayed_work_sync(&ub->monitor_work); 1178 } 1179 1180 static void ublk_quiesce_work_fn(struct work_struct *work) 1181 { 1182 struct ublk_device *ub = 1183 container_of(work, struct ublk_device, quiesce_work); 1184 1185 mutex_lock(&ub->mutex); 1186 if (ub->dev_info.state != UBLK_S_DEV_LIVE) 1187 goto unlock; 1188 __ublk_quiesce_dev(ub); 1189 unlock: 1190 mutex_unlock(&ub->mutex); 1191 } 1192 1193 static void ublk_unquiesce_dev(struct ublk_device *ub) 1194 { 1195 int i; 1196 1197 pr_devel("%s: unquiesce ub: dev_id %d state %s\n", 1198 __func__, ub->dev_info.dev_id, 1199 ub->dev_info.state == UBLK_S_DEV_LIVE ? 1200 "LIVE" : "QUIESCED"); 1201 /* quiesce_work has run. We let requeued rqs be aborted 1202 * before running fallback_wq. "force_abort" must be seen 1203 * after request queue is unqiuesced. Then del_gendisk() 1204 * can move on. 1205 */ 1206 for (i = 0; i < ub->dev_info.nr_hw_queues; i++) 1207 ublk_get_queue(ub, i)->force_abort = true; 1208 1209 blk_mq_unquiesce_queue(ub->ub_disk->queue); 1210 /* We may have requeued some rqs in ublk_quiesce_queue() */ 1211 blk_mq_kick_requeue_list(ub->ub_disk->queue); 1212 } 1213 1214 static void ublk_stop_dev(struct ublk_device *ub) 1215 { 1216 mutex_lock(&ub->mutex); 1217 if (ub->dev_info.state == UBLK_S_DEV_DEAD) 1218 goto unlock; 1219 if (ublk_can_use_recovery(ub)) { 1220 if (ub->dev_info.state == UBLK_S_DEV_LIVE) 1221 __ublk_quiesce_dev(ub); 1222 ublk_unquiesce_dev(ub); 1223 } 1224 del_gendisk(ub->ub_disk); 1225 ub->dev_info.state = UBLK_S_DEV_DEAD; 1226 ub->dev_info.ublksrv_pid = -1; 1227 put_disk(ub->ub_disk); 1228 ub->ub_disk = NULL; 1229 unlock: 1230 ublk_cancel_dev(ub); 1231 mutex_unlock(&ub->mutex); 1232 cancel_delayed_work_sync(&ub->monitor_work); 1233 } 1234 1235 /* device can only be started after all IOs are ready */ 1236 static void ublk_mark_io_ready(struct ublk_device *ub, struct ublk_queue *ubq) 1237 { 1238 mutex_lock(&ub->mutex); 1239 ubq->nr_io_ready++; 1240 if (ublk_queue_ready(ubq)) { 1241 ubq->ubq_daemon = current; 1242 get_task_struct(ubq->ubq_daemon); 1243 ub->nr_queues_ready++; 1244 1245 if (capable(CAP_SYS_ADMIN)) 1246 ub->nr_privileged_daemon++; 1247 } 1248 if (ub->nr_queues_ready == ub->dev_info.nr_hw_queues) 1249 complete_all(&ub->completion); 1250 mutex_unlock(&ub->mutex); 1251 } 1252 1253 static void ublk_handle_need_get_data(struct ublk_device *ub, int q_id, 1254 int tag) 1255 { 1256 struct ublk_queue *ubq = ublk_get_queue(ub, q_id); 1257 struct request *req = blk_mq_tag_to_rq(ub->tag_set.tags[q_id], tag); 1258 1259 ublk_queue_cmd(ubq, req); 1260 } 1261 1262 static inline int ublk_check_cmd_op(u32 cmd_op) 1263 { 1264 u32 ioc_type = _IOC_TYPE(cmd_op); 1265 1266 if (IS_ENABLED(CONFIG_BLKDEV_UBLK_LEGACY_OPCODES) && ioc_type != 'u') 1267 return -EOPNOTSUPP; 1268 1269 if (ioc_type != 'u' && ioc_type != 0) 1270 return -EOPNOTSUPP; 1271 1272 return 0; 1273 } 1274 1275 static int __ublk_ch_uring_cmd(struct io_uring_cmd *cmd, 1276 unsigned int issue_flags, 1277 struct ublksrv_io_cmd *ub_cmd) 1278 { 1279 struct ublk_device *ub = cmd->file->private_data; 1280 struct ublk_queue *ubq; 1281 struct ublk_io *io; 1282 u32 cmd_op = cmd->cmd_op; 1283 unsigned tag = ub_cmd->tag; 1284 int ret = -EINVAL; 1285 struct request *req; 1286 1287 pr_devel("%s: received: cmd op %d queue %d tag %d result %d\n", 1288 __func__, cmd->cmd_op, ub_cmd->q_id, tag, 1289 ub_cmd->result); 1290 1291 if (ub_cmd->q_id >= ub->dev_info.nr_hw_queues) 1292 goto out; 1293 1294 ubq = ublk_get_queue(ub, ub_cmd->q_id); 1295 if (!ubq || ub_cmd->q_id != ubq->q_id) 1296 goto out; 1297 1298 if (ubq->ubq_daemon && ubq->ubq_daemon != current) 1299 goto out; 1300 1301 if (tag >= ubq->q_depth) 1302 goto out; 1303 1304 io = &ubq->ios[tag]; 1305 1306 /* there is pending io cmd, something must be wrong */ 1307 if (io->flags & UBLK_IO_FLAG_ACTIVE) { 1308 ret = -EBUSY; 1309 goto out; 1310 } 1311 1312 /* 1313 * ensure that the user issues UBLK_IO_NEED_GET_DATA 1314 * iff the driver have set the UBLK_IO_FLAG_NEED_GET_DATA. 1315 */ 1316 if ((!!(io->flags & UBLK_IO_FLAG_NEED_GET_DATA)) 1317 ^ (_IOC_NR(cmd_op) == UBLK_IO_NEED_GET_DATA)) 1318 goto out; 1319 1320 ret = ublk_check_cmd_op(cmd_op); 1321 if (ret) 1322 goto out; 1323 1324 ret = -EINVAL; 1325 switch (_IOC_NR(cmd_op)) { 1326 case UBLK_IO_FETCH_REQ: 1327 /* UBLK_IO_FETCH_REQ is only allowed before queue is setup */ 1328 if (ublk_queue_ready(ubq)) { 1329 ret = -EBUSY; 1330 goto out; 1331 } 1332 /* 1333 * The io is being handled by server, so COMMIT_RQ is expected 1334 * instead of FETCH_REQ 1335 */ 1336 if (io->flags & UBLK_IO_FLAG_OWNED_BY_SRV) 1337 goto out; 1338 /* FETCH_RQ has to provide IO buffer if NEED GET DATA is not enabled */ 1339 if (!ub_cmd->addr && !ublk_need_get_data(ubq)) 1340 goto out; 1341 io->cmd = cmd; 1342 io->flags |= UBLK_IO_FLAG_ACTIVE; 1343 io->addr = ub_cmd->addr; 1344 1345 ublk_mark_io_ready(ub, ubq); 1346 break; 1347 case UBLK_IO_COMMIT_AND_FETCH_REQ: 1348 req = blk_mq_tag_to_rq(ub->tag_set.tags[ub_cmd->q_id], tag); 1349 /* 1350 * COMMIT_AND_FETCH_REQ has to provide IO buffer if NEED GET DATA is 1351 * not enabled or it is Read IO. 1352 */ 1353 if (!ub_cmd->addr && (!ublk_need_get_data(ubq) || req_op(req) == REQ_OP_READ)) 1354 goto out; 1355 if (!(io->flags & UBLK_IO_FLAG_OWNED_BY_SRV)) 1356 goto out; 1357 io->addr = ub_cmd->addr; 1358 io->flags |= UBLK_IO_FLAG_ACTIVE; 1359 io->cmd = cmd; 1360 ublk_commit_completion(ub, ub_cmd); 1361 break; 1362 case UBLK_IO_NEED_GET_DATA: 1363 if (!(io->flags & UBLK_IO_FLAG_OWNED_BY_SRV)) 1364 goto out; 1365 io->addr = ub_cmd->addr; 1366 io->cmd = cmd; 1367 io->flags |= UBLK_IO_FLAG_ACTIVE; 1368 ublk_handle_need_get_data(ub, ub_cmd->q_id, ub_cmd->tag); 1369 break; 1370 default: 1371 goto out; 1372 } 1373 return -EIOCBQUEUED; 1374 1375 out: 1376 io_uring_cmd_done(cmd, ret, 0, issue_flags); 1377 pr_devel("%s: complete: cmd op %d, tag %d ret %x io_flags %x\n", 1378 __func__, cmd_op, tag, ret, io->flags); 1379 return -EIOCBQUEUED; 1380 } 1381 1382 static int ublk_ch_uring_cmd(struct io_uring_cmd *cmd, unsigned int issue_flags) 1383 { 1384 struct ublksrv_io_cmd *ub_src = (struct ublksrv_io_cmd *) cmd->cmd; 1385 struct ublksrv_io_cmd ub_cmd; 1386 1387 /* 1388 * Not necessary for async retry, but let's keep it simple and always 1389 * copy the values to avoid any potential reuse. 1390 */ 1391 ub_cmd.q_id = READ_ONCE(ub_src->q_id); 1392 ub_cmd.tag = READ_ONCE(ub_src->tag); 1393 ub_cmd.result = READ_ONCE(ub_src->result); 1394 ub_cmd.addr = READ_ONCE(ub_src->addr); 1395 1396 return __ublk_ch_uring_cmd(cmd, issue_flags, &ub_cmd); 1397 } 1398 1399 static const struct file_operations ublk_ch_fops = { 1400 .owner = THIS_MODULE, 1401 .open = ublk_ch_open, 1402 .release = ublk_ch_release, 1403 .llseek = no_llseek, 1404 .uring_cmd = ublk_ch_uring_cmd, 1405 .mmap = ublk_ch_mmap, 1406 }; 1407 1408 static void ublk_deinit_queue(struct ublk_device *ub, int q_id) 1409 { 1410 int size = ublk_queue_cmd_buf_size(ub, q_id); 1411 struct ublk_queue *ubq = ublk_get_queue(ub, q_id); 1412 1413 if (ubq->ubq_daemon) 1414 put_task_struct(ubq->ubq_daemon); 1415 if (ubq->io_cmd_buf) 1416 free_pages((unsigned long)ubq->io_cmd_buf, get_order(size)); 1417 } 1418 1419 static int ublk_init_queue(struct ublk_device *ub, int q_id) 1420 { 1421 struct ublk_queue *ubq = ublk_get_queue(ub, q_id); 1422 gfp_t gfp_flags = GFP_KERNEL | __GFP_ZERO; 1423 void *ptr; 1424 int size; 1425 1426 ubq->flags = ub->dev_info.flags; 1427 ubq->q_id = q_id; 1428 ubq->q_depth = ub->dev_info.queue_depth; 1429 size = ublk_queue_cmd_buf_size(ub, q_id); 1430 1431 ptr = (void *) __get_free_pages(gfp_flags, get_order(size)); 1432 if (!ptr) 1433 return -ENOMEM; 1434 1435 ubq->io_cmd_buf = ptr; 1436 ubq->dev = ub; 1437 return 0; 1438 } 1439 1440 static void ublk_deinit_queues(struct ublk_device *ub) 1441 { 1442 int nr_queues = ub->dev_info.nr_hw_queues; 1443 int i; 1444 1445 if (!ub->__queues) 1446 return; 1447 1448 for (i = 0; i < nr_queues; i++) 1449 ublk_deinit_queue(ub, i); 1450 kfree(ub->__queues); 1451 } 1452 1453 static int ublk_init_queues(struct ublk_device *ub) 1454 { 1455 int nr_queues = ub->dev_info.nr_hw_queues; 1456 int depth = ub->dev_info.queue_depth; 1457 int ubq_size = sizeof(struct ublk_queue) + depth * sizeof(struct ublk_io); 1458 int i, ret = -ENOMEM; 1459 1460 ub->queue_size = ubq_size; 1461 ub->__queues = kcalloc(nr_queues, ubq_size, GFP_KERNEL); 1462 if (!ub->__queues) 1463 return ret; 1464 1465 for (i = 0; i < nr_queues; i++) { 1466 if (ublk_init_queue(ub, i)) 1467 goto fail; 1468 } 1469 1470 init_completion(&ub->completion); 1471 return 0; 1472 1473 fail: 1474 ublk_deinit_queues(ub); 1475 return ret; 1476 } 1477 1478 static int ublk_alloc_dev_number(struct ublk_device *ub, int idx) 1479 { 1480 int i = idx; 1481 int err; 1482 1483 spin_lock(&ublk_idr_lock); 1484 /* allocate id, if @id >= 0, we're requesting that specific id */ 1485 if (i >= 0) { 1486 err = idr_alloc(&ublk_index_idr, ub, i, i + 1, GFP_NOWAIT); 1487 if (err == -ENOSPC) 1488 err = -EEXIST; 1489 } else { 1490 err = idr_alloc(&ublk_index_idr, ub, 0, 0, GFP_NOWAIT); 1491 } 1492 spin_unlock(&ublk_idr_lock); 1493 1494 if (err >= 0) 1495 ub->ub_number = err; 1496 1497 return err; 1498 } 1499 1500 static void ublk_free_dev_number(struct ublk_device *ub) 1501 { 1502 spin_lock(&ublk_idr_lock); 1503 idr_remove(&ublk_index_idr, ub->ub_number); 1504 wake_up_all(&ublk_idr_wq); 1505 spin_unlock(&ublk_idr_lock); 1506 } 1507 1508 static void ublk_cdev_rel(struct device *dev) 1509 { 1510 struct ublk_device *ub = container_of(dev, struct ublk_device, cdev_dev); 1511 1512 blk_mq_free_tag_set(&ub->tag_set); 1513 ublk_deinit_queues(ub); 1514 ublk_free_dev_number(ub); 1515 mutex_destroy(&ub->mutex); 1516 kfree(ub); 1517 } 1518 1519 static int ublk_add_chdev(struct ublk_device *ub) 1520 { 1521 struct device *dev = &ub->cdev_dev; 1522 int minor = ub->ub_number; 1523 int ret; 1524 1525 dev->parent = ublk_misc.this_device; 1526 dev->devt = MKDEV(MAJOR(ublk_chr_devt), minor); 1527 dev->class = ublk_chr_class; 1528 dev->release = ublk_cdev_rel; 1529 device_initialize(dev); 1530 1531 ret = dev_set_name(dev, "ublkc%d", minor); 1532 if (ret) 1533 goto fail; 1534 1535 cdev_init(&ub->cdev, &ublk_ch_fops); 1536 ret = cdev_device_add(&ub->cdev, dev); 1537 if (ret) 1538 goto fail; 1539 1540 ublks_added++; 1541 return 0; 1542 fail: 1543 put_device(dev); 1544 return ret; 1545 } 1546 1547 static void ublk_stop_work_fn(struct work_struct *work) 1548 { 1549 struct ublk_device *ub = 1550 container_of(work, struct ublk_device, stop_work); 1551 1552 ublk_stop_dev(ub); 1553 } 1554 1555 /* align max io buffer size with PAGE_SIZE */ 1556 static void ublk_align_max_io_size(struct ublk_device *ub) 1557 { 1558 unsigned int max_io_bytes = ub->dev_info.max_io_buf_bytes; 1559 1560 ub->dev_info.max_io_buf_bytes = 1561 round_down(max_io_bytes, PAGE_SIZE); 1562 } 1563 1564 static int ublk_add_tag_set(struct ublk_device *ub) 1565 { 1566 ub->tag_set.ops = &ublk_mq_ops; 1567 ub->tag_set.nr_hw_queues = ub->dev_info.nr_hw_queues; 1568 ub->tag_set.queue_depth = ub->dev_info.queue_depth; 1569 ub->tag_set.numa_node = NUMA_NO_NODE; 1570 ub->tag_set.cmd_size = sizeof(struct ublk_rq_data); 1571 ub->tag_set.flags = BLK_MQ_F_SHOULD_MERGE; 1572 ub->tag_set.driver_data = ub; 1573 return blk_mq_alloc_tag_set(&ub->tag_set); 1574 } 1575 1576 static void ublk_remove(struct ublk_device *ub) 1577 { 1578 ublk_stop_dev(ub); 1579 cancel_work_sync(&ub->stop_work); 1580 cancel_work_sync(&ub->quiesce_work); 1581 cdev_device_del(&ub->cdev, &ub->cdev_dev); 1582 put_device(&ub->cdev_dev); 1583 ublks_added--; 1584 } 1585 1586 static struct ublk_device *ublk_get_device_from_id(int idx) 1587 { 1588 struct ublk_device *ub = NULL; 1589 1590 if (idx < 0) 1591 return NULL; 1592 1593 spin_lock(&ublk_idr_lock); 1594 ub = idr_find(&ublk_index_idr, idx); 1595 if (ub) 1596 ub = ublk_get_device(ub); 1597 spin_unlock(&ublk_idr_lock); 1598 1599 return ub; 1600 } 1601 1602 static int ublk_ctrl_start_dev(struct ublk_device *ub, struct io_uring_cmd *cmd) 1603 { 1604 struct ublksrv_ctrl_cmd *header = (struct ublksrv_ctrl_cmd *)cmd->cmd; 1605 int ublksrv_pid = (int)header->data[0]; 1606 struct gendisk *disk; 1607 int ret = -EINVAL; 1608 1609 if (ublksrv_pid <= 0) 1610 return -EINVAL; 1611 1612 wait_for_completion_interruptible(&ub->completion); 1613 1614 schedule_delayed_work(&ub->monitor_work, UBLK_DAEMON_MONITOR_PERIOD); 1615 1616 mutex_lock(&ub->mutex); 1617 if (ub->dev_info.state == UBLK_S_DEV_LIVE || 1618 test_bit(UB_STATE_USED, &ub->state)) { 1619 ret = -EEXIST; 1620 goto out_unlock; 1621 } 1622 1623 disk = blk_mq_alloc_disk(&ub->tag_set, NULL); 1624 if (IS_ERR(disk)) { 1625 ret = PTR_ERR(disk); 1626 goto out_unlock; 1627 } 1628 sprintf(disk->disk_name, "ublkb%d", ub->ub_number); 1629 disk->fops = &ub_fops; 1630 disk->private_data = ub; 1631 1632 ub->dev_info.ublksrv_pid = ublksrv_pid; 1633 ub->ub_disk = disk; 1634 1635 ret = ublk_apply_params(ub); 1636 if (ret) 1637 goto out_put_disk; 1638 1639 /* don't probe partitions if any one ubq daemon is un-trusted */ 1640 if (ub->nr_privileged_daemon != ub->nr_queues_ready) 1641 set_bit(GD_SUPPRESS_PART_SCAN, &disk->state); 1642 1643 get_device(&ub->cdev_dev); 1644 ub->dev_info.state = UBLK_S_DEV_LIVE; 1645 ret = add_disk(disk); 1646 if (ret) { 1647 /* 1648 * Has to drop the reference since ->free_disk won't be 1649 * called in case of add_disk failure. 1650 */ 1651 ub->dev_info.state = UBLK_S_DEV_DEAD; 1652 ublk_put_device(ub); 1653 goto out_put_disk; 1654 } 1655 set_bit(UB_STATE_USED, &ub->state); 1656 out_put_disk: 1657 if (ret) 1658 put_disk(disk); 1659 out_unlock: 1660 mutex_unlock(&ub->mutex); 1661 return ret; 1662 } 1663 1664 static int ublk_ctrl_get_queue_affinity(struct ublk_device *ub, 1665 struct io_uring_cmd *cmd) 1666 { 1667 struct ublksrv_ctrl_cmd *header = (struct ublksrv_ctrl_cmd *)cmd->cmd; 1668 void __user *argp = (void __user *)(unsigned long)header->addr; 1669 cpumask_var_t cpumask; 1670 unsigned long queue; 1671 unsigned int retlen; 1672 unsigned int i; 1673 int ret; 1674 1675 if (header->len * BITS_PER_BYTE < nr_cpu_ids) 1676 return -EINVAL; 1677 if (header->len & (sizeof(unsigned long)-1)) 1678 return -EINVAL; 1679 if (!header->addr) 1680 return -EINVAL; 1681 1682 queue = header->data[0]; 1683 if (queue >= ub->dev_info.nr_hw_queues) 1684 return -EINVAL; 1685 1686 if (!zalloc_cpumask_var(&cpumask, GFP_KERNEL)) 1687 return -ENOMEM; 1688 1689 for_each_possible_cpu(i) { 1690 if (ub->tag_set.map[HCTX_TYPE_DEFAULT].mq_map[i] == queue) 1691 cpumask_set_cpu(i, cpumask); 1692 } 1693 1694 ret = -EFAULT; 1695 retlen = min_t(unsigned short, header->len, cpumask_size()); 1696 if (copy_to_user(argp, cpumask, retlen)) 1697 goto out_free_cpumask; 1698 if (retlen != header->len && 1699 clear_user(argp + retlen, header->len - retlen)) 1700 goto out_free_cpumask; 1701 1702 ret = 0; 1703 out_free_cpumask: 1704 free_cpumask_var(cpumask); 1705 return ret; 1706 } 1707 1708 static inline void ublk_dump_dev_info(struct ublksrv_ctrl_dev_info *info) 1709 { 1710 pr_devel("%s: dev id %d flags %llx\n", __func__, 1711 info->dev_id, info->flags); 1712 pr_devel("\t nr_hw_queues %d queue_depth %d\n", 1713 info->nr_hw_queues, info->queue_depth); 1714 } 1715 1716 static int ublk_ctrl_add_dev(struct io_uring_cmd *cmd) 1717 { 1718 struct ublksrv_ctrl_cmd *header = (struct ublksrv_ctrl_cmd *)cmd->cmd; 1719 void __user *argp = (void __user *)(unsigned long)header->addr; 1720 struct ublksrv_ctrl_dev_info info; 1721 struct ublk_device *ub; 1722 int ret = -EINVAL; 1723 1724 if (header->len < sizeof(info) || !header->addr) 1725 return -EINVAL; 1726 if (header->queue_id != (u16)-1) { 1727 pr_warn("%s: queue_id is wrong %x\n", 1728 __func__, header->queue_id); 1729 return -EINVAL; 1730 } 1731 1732 if (copy_from_user(&info, argp, sizeof(info))) 1733 return -EFAULT; 1734 1735 if (capable(CAP_SYS_ADMIN)) 1736 info.flags &= ~UBLK_F_UNPRIVILEGED_DEV; 1737 else if (!(info.flags & UBLK_F_UNPRIVILEGED_DEV)) 1738 return -EPERM; 1739 1740 /* the created device is always owned by current user */ 1741 ublk_store_owner_uid_gid(&info.owner_uid, &info.owner_gid); 1742 1743 if (header->dev_id != info.dev_id) { 1744 pr_warn("%s: dev id not match %u %u\n", 1745 __func__, header->dev_id, info.dev_id); 1746 return -EINVAL; 1747 } 1748 1749 ublk_dump_dev_info(&info); 1750 1751 ret = mutex_lock_killable(&ublk_ctl_mutex); 1752 if (ret) 1753 return ret; 1754 1755 ret = -EACCES; 1756 if (ublks_added >= ublks_max) 1757 goto out_unlock; 1758 1759 ret = -ENOMEM; 1760 ub = kzalloc(sizeof(*ub), GFP_KERNEL); 1761 if (!ub) 1762 goto out_unlock; 1763 mutex_init(&ub->mutex); 1764 spin_lock_init(&ub->mm_lock); 1765 INIT_WORK(&ub->quiesce_work, ublk_quiesce_work_fn); 1766 INIT_WORK(&ub->stop_work, ublk_stop_work_fn); 1767 INIT_DELAYED_WORK(&ub->monitor_work, ublk_daemon_monitor_work); 1768 1769 ret = ublk_alloc_dev_number(ub, header->dev_id); 1770 if (ret < 0) 1771 goto out_free_ub; 1772 1773 memcpy(&ub->dev_info, &info, sizeof(info)); 1774 1775 /* update device id */ 1776 ub->dev_info.dev_id = ub->ub_number; 1777 1778 /* 1779 * 64bit flags will be copied back to userspace as feature 1780 * negotiation result, so have to clear flags which driver 1781 * doesn't support yet, then userspace can get correct flags 1782 * (features) to handle. 1783 */ 1784 ub->dev_info.flags &= UBLK_F_ALL; 1785 1786 if (!IS_BUILTIN(CONFIG_BLK_DEV_UBLK)) 1787 ub->dev_info.flags |= UBLK_F_URING_CMD_COMP_IN_TASK; 1788 1789 ub->dev_info.flags |= UBLK_F_CMD_IOCTL_ENCODE; 1790 1791 /* We are not ready to support zero copy */ 1792 ub->dev_info.flags &= ~UBLK_F_SUPPORT_ZERO_COPY; 1793 1794 ub->dev_info.nr_hw_queues = min_t(unsigned int, 1795 ub->dev_info.nr_hw_queues, nr_cpu_ids); 1796 ublk_align_max_io_size(ub); 1797 1798 ret = ublk_init_queues(ub); 1799 if (ret) 1800 goto out_free_dev_number; 1801 1802 ret = ublk_add_tag_set(ub); 1803 if (ret) 1804 goto out_deinit_queues; 1805 1806 ret = -EFAULT; 1807 if (copy_to_user(argp, &ub->dev_info, sizeof(info))) 1808 goto out_free_tag_set; 1809 1810 /* 1811 * Add the char dev so that ublksrv daemon can be setup. 1812 * ublk_add_chdev() will cleanup everything if it fails. 1813 */ 1814 ret = ublk_add_chdev(ub); 1815 goto out_unlock; 1816 1817 out_free_tag_set: 1818 blk_mq_free_tag_set(&ub->tag_set); 1819 out_deinit_queues: 1820 ublk_deinit_queues(ub); 1821 out_free_dev_number: 1822 ublk_free_dev_number(ub); 1823 out_free_ub: 1824 mutex_destroy(&ub->mutex); 1825 kfree(ub); 1826 out_unlock: 1827 mutex_unlock(&ublk_ctl_mutex); 1828 return ret; 1829 } 1830 1831 static inline bool ublk_idr_freed(int id) 1832 { 1833 void *ptr; 1834 1835 spin_lock(&ublk_idr_lock); 1836 ptr = idr_find(&ublk_index_idr, id); 1837 spin_unlock(&ublk_idr_lock); 1838 1839 return ptr == NULL; 1840 } 1841 1842 static int ublk_ctrl_del_dev(struct ublk_device **p_ub) 1843 { 1844 struct ublk_device *ub = *p_ub; 1845 int idx = ub->ub_number; 1846 int ret; 1847 1848 ret = mutex_lock_killable(&ublk_ctl_mutex); 1849 if (ret) 1850 return ret; 1851 1852 if (!test_bit(UB_STATE_DELETED, &ub->state)) { 1853 ublk_remove(ub); 1854 set_bit(UB_STATE_DELETED, &ub->state); 1855 } 1856 1857 /* Mark the reference as consumed */ 1858 *p_ub = NULL; 1859 ublk_put_device(ub); 1860 mutex_unlock(&ublk_ctl_mutex); 1861 1862 /* 1863 * Wait until the idr is removed, then it can be reused after 1864 * DEL_DEV command is returned. 1865 * 1866 * If we returns because of user interrupt, future delete command 1867 * may come: 1868 * 1869 * - the device number isn't freed, this device won't or needn't 1870 * be deleted again, since UB_STATE_DELETED is set, and device 1871 * will be released after the last reference is dropped 1872 * 1873 * - the device number is freed already, we will not find this 1874 * device via ublk_get_device_from_id() 1875 */ 1876 wait_event_interruptible(ublk_idr_wq, ublk_idr_freed(idx)); 1877 1878 return 0; 1879 } 1880 1881 static inline void ublk_ctrl_cmd_dump(struct io_uring_cmd *cmd) 1882 { 1883 struct ublksrv_ctrl_cmd *header = (struct ublksrv_ctrl_cmd *)cmd->cmd; 1884 1885 pr_devel("%s: cmd_op %x, dev id %d qid %d data %llx buf %llx len %u\n", 1886 __func__, cmd->cmd_op, header->dev_id, header->queue_id, 1887 header->data[0], header->addr, header->len); 1888 } 1889 1890 static int ublk_ctrl_stop_dev(struct ublk_device *ub) 1891 { 1892 ublk_stop_dev(ub); 1893 cancel_work_sync(&ub->stop_work); 1894 cancel_work_sync(&ub->quiesce_work); 1895 1896 return 0; 1897 } 1898 1899 static int ublk_ctrl_get_dev_info(struct ublk_device *ub, 1900 struct io_uring_cmd *cmd) 1901 { 1902 struct ublksrv_ctrl_cmd *header = (struct ublksrv_ctrl_cmd *)cmd->cmd; 1903 void __user *argp = (void __user *)(unsigned long)header->addr; 1904 1905 if (header->len < sizeof(struct ublksrv_ctrl_dev_info) || !header->addr) 1906 return -EINVAL; 1907 1908 if (copy_to_user(argp, &ub->dev_info, sizeof(ub->dev_info))) 1909 return -EFAULT; 1910 1911 return 0; 1912 } 1913 1914 /* TYPE_DEVT is readonly, so fill it up before returning to userspace */ 1915 static void ublk_ctrl_fill_params_devt(struct ublk_device *ub) 1916 { 1917 ub->params.devt.char_major = MAJOR(ub->cdev_dev.devt); 1918 ub->params.devt.char_minor = MINOR(ub->cdev_dev.devt); 1919 1920 if (ub->ub_disk) { 1921 ub->params.devt.disk_major = MAJOR(disk_devt(ub->ub_disk)); 1922 ub->params.devt.disk_minor = MINOR(disk_devt(ub->ub_disk)); 1923 } else { 1924 ub->params.devt.disk_major = 0; 1925 ub->params.devt.disk_minor = 0; 1926 } 1927 ub->params.types |= UBLK_PARAM_TYPE_DEVT; 1928 } 1929 1930 static int ublk_ctrl_get_params(struct ublk_device *ub, 1931 struct io_uring_cmd *cmd) 1932 { 1933 struct ublksrv_ctrl_cmd *header = (struct ublksrv_ctrl_cmd *)cmd->cmd; 1934 void __user *argp = (void __user *)(unsigned long)header->addr; 1935 struct ublk_params_header ph; 1936 int ret; 1937 1938 if (header->len <= sizeof(ph) || !header->addr) 1939 return -EINVAL; 1940 1941 if (copy_from_user(&ph, argp, sizeof(ph))) 1942 return -EFAULT; 1943 1944 if (ph.len > header->len || !ph.len) 1945 return -EINVAL; 1946 1947 if (ph.len > sizeof(struct ublk_params)) 1948 ph.len = sizeof(struct ublk_params); 1949 1950 mutex_lock(&ub->mutex); 1951 ublk_ctrl_fill_params_devt(ub); 1952 if (copy_to_user(argp, &ub->params, ph.len)) 1953 ret = -EFAULT; 1954 else 1955 ret = 0; 1956 mutex_unlock(&ub->mutex); 1957 1958 return ret; 1959 } 1960 1961 static int ublk_ctrl_set_params(struct ublk_device *ub, 1962 struct io_uring_cmd *cmd) 1963 { 1964 struct ublksrv_ctrl_cmd *header = (struct ublksrv_ctrl_cmd *)cmd->cmd; 1965 void __user *argp = (void __user *)(unsigned long)header->addr; 1966 struct ublk_params_header ph; 1967 int ret = -EFAULT; 1968 1969 if (header->len <= sizeof(ph) || !header->addr) 1970 return -EINVAL; 1971 1972 if (copy_from_user(&ph, argp, sizeof(ph))) 1973 return -EFAULT; 1974 1975 if (ph.len > header->len || !ph.len || !ph.types) 1976 return -EINVAL; 1977 1978 if (ph.len > sizeof(struct ublk_params)) 1979 ph.len = sizeof(struct ublk_params); 1980 1981 /* parameters can only be changed when device isn't live */ 1982 mutex_lock(&ub->mutex); 1983 if (ub->dev_info.state == UBLK_S_DEV_LIVE) { 1984 ret = -EACCES; 1985 } else if (copy_from_user(&ub->params, argp, ph.len)) { 1986 ret = -EFAULT; 1987 } else { 1988 /* clear all we don't support yet */ 1989 ub->params.types &= UBLK_PARAM_TYPE_ALL; 1990 ret = ublk_validate_params(ub); 1991 if (ret) 1992 ub->params.types = 0; 1993 } 1994 mutex_unlock(&ub->mutex); 1995 1996 return ret; 1997 } 1998 1999 static void ublk_queue_reinit(struct ublk_device *ub, struct ublk_queue *ubq) 2000 { 2001 int i; 2002 2003 WARN_ON_ONCE(!(ubq->ubq_daemon && ubq_daemon_is_dying(ubq))); 2004 /* All old ioucmds have to be completed */ 2005 WARN_ON_ONCE(ubq->nr_io_ready); 2006 /* old daemon is PF_EXITING, put it now */ 2007 put_task_struct(ubq->ubq_daemon); 2008 /* We have to reset it to NULL, otherwise ub won't accept new FETCH_REQ */ 2009 ubq->ubq_daemon = NULL; 2010 2011 for (i = 0; i < ubq->q_depth; i++) { 2012 struct ublk_io *io = &ubq->ios[i]; 2013 2014 /* forget everything now and be ready for new FETCH_REQ */ 2015 io->flags = 0; 2016 io->cmd = NULL; 2017 io->addr = 0; 2018 } 2019 } 2020 2021 static int ublk_ctrl_start_recovery(struct ublk_device *ub, 2022 struct io_uring_cmd *cmd) 2023 { 2024 struct ublksrv_ctrl_cmd *header = (struct ublksrv_ctrl_cmd *)cmd->cmd; 2025 int ret = -EINVAL; 2026 int i; 2027 2028 mutex_lock(&ub->mutex); 2029 if (!ublk_can_use_recovery(ub)) 2030 goto out_unlock; 2031 /* 2032 * START_RECOVERY is only allowd after: 2033 * 2034 * (1) UB_STATE_OPEN is not set, which means the dying process is exited 2035 * and related io_uring ctx is freed so file struct of /dev/ublkcX is 2036 * released. 2037 * 2038 * (2) UBLK_S_DEV_QUIESCED is set, which means the quiesce_work: 2039 * (a)has quiesced request queue 2040 * (b)has requeued every inflight rqs whose io_flags is ACTIVE 2041 * (c)has requeued/aborted every inflight rqs whose io_flags is NOT ACTIVE 2042 * (d)has completed/camceled all ioucmds owned by ther dying process 2043 */ 2044 if (test_bit(UB_STATE_OPEN, &ub->state) || 2045 ub->dev_info.state != UBLK_S_DEV_QUIESCED) { 2046 ret = -EBUSY; 2047 goto out_unlock; 2048 } 2049 pr_devel("%s: start recovery for dev id %d.\n", __func__, header->dev_id); 2050 for (i = 0; i < ub->dev_info.nr_hw_queues; i++) 2051 ublk_queue_reinit(ub, ublk_get_queue(ub, i)); 2052 /* set to NULL, otherwise new ubq_daemon cannot mmap the io_cmd_buf */ 2053 ub->mm = NULL; 2054 ub->nr_queues_ready = 0; 2055 ub->nr_privileged_daemon = 0; 2056 init_completion(&ub->completion); 2057 ret = 0; 2058 out_unlock: 2059 mutex_unlock(&ub->mutex); 2060 return ret; 2061 } 2062 2063 static int ublk_ctrl_end_recovery(struct ublk_device *ub, 2064 struct io_uring_cmd *cmd) 2065 { 2066 struct ublksrv_ctrl_cmd *header = (struct ublksrv_ctrl_cmd *)cmd->cmd; 2067 int ublksrv_pid = (int)header->data[0]; 2068 int ret = -EINVAL; 2069 2070 pr_devel("%s: Waiting for new ubq_daemons(nr: %d) are ready, dev id %d...\n", 2071 __func__, ub->dev_info.nr_hw_queues, header->dev_id); 2072 /* wait until new ubq_daemon sending all FETCH_REQ */ 2073 wait_for_completion_interruptible(&ub->completion); 2074 pr_devel("%s: All new ubq_daemons(nr: %d) are ready, dev id %d\n", 2075 __func__, ub->dev_info.nr_hw_queues, header->dev_id); 2076 2077 mutex_lock(&ub->mutex); 2078 if (!ublk_can_use_recovery(ub)) 2079 goto out_unlock; 2080 2081 if (ub->dev_info.state != UBLK_S_DEV_QUIESCED) { 2082 ret = -EBUSY; 2083 goto out_unlock; 2084 } 2085 ub->dev_info.ublksrv_pid = ublksrv_pid; 2086 pr_devel("%s: new ublksrv_pid %d, dev id %d\n", 2087 __func__, ublksrv_pid, header->dev_id); 2088 blk_mq_unquiesce_queue(ub->ub_disk->queue); 2089 pr_devel("%s: queue unquiesced, dev id %d.\n", 2090 __func__, header->dev_id); 2091 blk_mq_kick_requeue_list(ub->ub_disk->queue); 2092 ub->dev_info.state = UBLK_S_DEV_LIVE; 2093 schedule_delayed_work(&ub->monitor_work, UBLK_DAEMON_MONITOR_PERIOD); 2094 ret = 0; 2095 out_unlock: 2096 mutex_unlock(&ub->mutex); 2097 return ret; 2098 } 2099 2100 /* 2101 * All control commands are sent via /dev/ublk-control, so we have to check 2102 * the destination device's permission 2103 */ 2104 static int ublk_char_dev_permission(struct ublk_device *ub, 2105 const char *dev_path, int mask) 2106 { 2107 int err; 2108 struct path path; 2109 struct kstat stat; 2110 2111 err = kern_path(dev_path, LOOKUP_FOLLOW, &path); 2112 if (err) 2113 return err; 2114 2115 err = vfs_getattr(&path, &stat, STATX_TYPE, AT_STATX_SYNC_AS_STAT); 2116 if (err) 2117 goto exit; 2118 2119 err = -EPERM; 2120 if (stat.rdev != ub->cdev_dev.devt || !S_ISCHR(stat.mode)) 2121 goto exit; 2122 2123 err = inode_permission(&nop_mnt_idmap, 2124 d_backing_inode(path.dentry), mask); 2125 exit: 2126 path_put(&path); 2127 return err; 2128 } 2129 2130 static int ublk_ctrl_uring_cmd_permission(struct ublk_device *ub, 2131 struct io_uring_cmd *cmd) 2132 { 2133 struct ublksrv_ctrl_cmd *header = (struct ublksrv_ctrl_cmd *)cmd->cmd; 2134 bool unprivileged = ub->dev_info.flags & UBLK_F_UNPRIVILEGED_DEV; 2135 void __user *argp = (void __user *)(unsigned long)header->addr; 2136 char *dev_path = NULL; 2137 int ret = 0; 2138 int mask; 2139 2140 if (!unprivileged) { 2141 if (!capable(CAP_SYS_ADMIN)) 2142 return -EPERM; 2143 /* 2144 * The new added command of UBLK_CMD_GET_DEV_INFO2 includes 2145 * char_dev_path in payload too, since userspace may not 2146 * know if the specified device is created as unprivileged 2147 * mode. 2148 */ 2149 if (_IOC_NR(cmd->cmd_op) != UBLK_CMD_GET_DEV_INFO2) 2150 return 0; 2151 } 2152 2153 /* 2154 * User has to provide the char device path for unprivileged ublk 2155 * 2156 * header->addr always points to the dev path buffer, and 2157 * header->dev_path_len records length of dev path buffer. 2158 */ 2159 if (!header->dev_path_len || header->dev_path_len > PATH_MAX) 2160 return -EINVAL; 2161 2162 if (header->len < header->dev_path_len) 2163 return -EINVAL; 2164 2165 dev_path = kmalloc(header->dev_path_len + 1, GFP_KERNEL); 2166 if (!dev_path) 2167 return -ENOMEM; 2168 2169 ret = -EFAULT; 2170 if (copy_from_user(dev_path, argp, header->dev_path_len)) 2171 goto exit; 2172 dev_path[header->dev_path_len] = 0; 2173 2174 ret = -EINVAL; 2175 switch (_IOC_NR(cmd->cmd_op)) { 2176 case UBLK_CMD_GET_DEV_INFO: 2177 case UBLK_CMD_GET_DEV_INFO2: 2178 case UBLK_CMD_GET_QUEUE_AFFINITY: 2179 case UBLK_CMD_GET_PARAMS: 2180 mask = MAY_READ; 2181 break; 2182 case UBLK_CMD_START_DEV: 2183 case UBLK_CMD_STOP_DEV: 2184 case UBLK_CMD_ADD_DEV: 2185 case UBLK_CMD_DEL_DEV: 2186 case UBLK_CMD_SET_PARAMS: 2187 case UBLK_CMD_START_USER_RECOVERY: 2188 case UBLK_CMD_END_USER_RECOVERY: 2189 mask = MAY_READ | MAY_WRITE; 2190 break; 2191 default: 2192 goto exit; 2193 } 2194 2195 ret = ublk_char_dev_permission(ub, dev_path, mask); 2196 if (!ret) { 2197 header->len -= header->dev_path_len; 2198 header->addr += header->dev_path_len; 2199 } 2200 pr_devel("%s: dev id %d cmd_op %x uid %d gid %d path %s ret %d\n", 2201 __func__, ub->ub_number, cmd->cmd_op, 2202 ub->dev_info.owner_uid, ub->dev_info.owner_gid, 2203 dev_path, ret); 2204 exit: 2205 kfree(dev_path); 2206 return ret; 2207 } 2208 2209 static int ublk_ctrl_uring_cmd(struct io_uring_cmd *cmd, 2210 unsigned int issue_flags) 2211 { 2212 struct ublksrv_ctrl_cmd *header = (struct ublksrv_ctrl_cmd *)cmd->cmd; 2213 struct ublk_device *ub = NULL; 2214 u32 cmd_op = cmd->cmd_op; 2215 int ret = -EINVAL; 2216 2217 if (issue_flags & IO_URING_F_NONBLOCK) 2218 return -EAGAIN; 2219 2220 ublk_ctrl_cmd_dump(cmd); 2221 2222 if (!(issue_flags & IO_URING_F_SQE128)) 2223 goto out; 2224 2225 ret = ublk_check_cmd_op(cmd_op); 2226 if (ret) 2227 goto out; 2228 2229 if (_IOC_NR(cmd_op) != UBLK_CMD_ADD_DEV) { 2230 ret = -ENODEV; 2231 ub = ublk_get_device_from_id(header->dev_id); 2232 if (!ub) 2233 goto out; 2234 2235 ret = ublk_ctrl_uring_cmd_permission(ub, cmd); 2236 if (ret) 2237 goto put_dev; 2238 } 2239 2240 switch (_IOC_NR(cmd_op)) { 2241 case UBLK_CMD_START_DEV: 2242 ret = ublk_ctrl_start_dev(ub, cmd); 2243 break; 2244 case UBLK_CMD_STOP_DEV: 2245 ret = ublk_ctrl_stop_dev(ub); 2246 break; 2247 case UBLK_CMD_GET_DEV_INFO: 2248 case UBLK_CMD_GET_DEV_INFO2: 2249 ret = ublk_ctrl_get_dev_info(ub, cmd); 2250 break; 2251 case UBLK_CMD_ADD_DEV: 2252 ret = ublk_ctrl_add_dev(cmd); 2253 break; 2254 case UBLK_CMD_DEL_DEV: 2255 ret = ublk_ctrl_del_dev(&ub); 2256 break; 2257 case UBLK_CMD_GET_QUEUE_AFFINITY: 2258 ret = ublk_ctrl_get_queue_affinity(ub, cmd); 2259 break; 2260 case UBLK_CMD_GET_PARAMS: 2261 ret = ublk_ctrl_get_params(ub, cmd); 2262 break; 2263 case UBLK_CMD_SET_PARAMS: 2264 ret = ublk_ctrl_set_params(ub, cmd); 2265 break; 2266 case UBLK_CMD_START_USER_RECOVERY: 2267 ret = ublk_ctrl_start_recovery(ub, cmd); 2268 break; 2269 case UBLK_CMD_END_USER_RECOVERY: 2270 ret = ublk_ctrl_end_recovery(ub, cmd); 2271 break; 2272 default: 2273 ret = -ENOTSUPP; 2274 break; 2275 } 2276 2277 put_dev: 2278 if (ub) 2279 ublk_put_device(ub); 2280 out: 2281 io_uring_cmd_done(cmd, ret, 0, issue_flags); 2282 pr_devel("%s: cmd done ret %d cmd_op %x, dev id %d qid %d\n", 2283 __func__, ret, cmd->cmd_op, header->dev_id, header->queue_id); 2284 return -EIOCBQUEUED; 2285 } 2286 2287 static const struct file_operations ublk_ctl_fops = { 2288 .open = nonseekable_open, 2289 .uring_cmd = ublk_ctrl_uring_cmd, 2290 .owner = THIS_MODULE, 2291 .llseek = noop_llseek, 2292 }; 2293 2294 static struct miscdevice ublk_misc = { 2295 .minor = MISC_DYNAMIC_MINOR, 2296 .name = "ublk-control", 2297 .fops = &ublk_ctl_fops, 2298 }; 2299 2300 static int __init ublk_init(void) 2301 { 2302 int ret; 2303 2304 init_waitqueue_head(&ublk_idr_wq); 2305 2306 ret = misc_register(&ublk_misc); 2307 if (ret) 2308 return ret; 2309 2310 ret = alloc_chrdev_region(&ublk_chr_devt, 0, UBLK_MINORS, "ublk-char"); 2311 if (ret) 2312 goto unregister_mis; 2313 2314 ublk_chr_class = class_create("ublk-char"); 2315 if (IS_ERR(ublk_chr_class)) { 2316 ret = PTR_ERR(ublk_chr_class); 2317 goto free_chrdev_region; 2318 } 2319 return 0; 2320 2321 free_chrdev_region: 2322 unregister_chrdev_region(ublk_chr_devt, UBLK_MINORS); 2323 unregister_mis: 2324 misc_deregister(&ublk_misc); 2325 return ret; 2326 } 2327 2328 static void __exit ublk_exit(void) 2329 { 2330 struct ublk_device *ub; 2331 int id; 2332 2333 idr_for_each_entry(&ublk_index_idr, ub, id) 2334 ublk_remove(ub); 2335 2336 class_destroy(ublk_chr_class); 2337 misc_deregister(&ublk_misc); 2338 2339 idr_destroy(&ublk_index_idr); 2340 unregister_chrdev_region(ublk_chr_devt, UBLK_MINORS); 2341 } 2342 2343 module_init(ublk_init); 2344 module_exit(ublk_exit); 2345 2346 module_param(ublks_max, int, 0444); 2347 MODULE_PARM_DESC(ublks_max, "max number of ublk devices allowed to add(default: 64)"); 2348 2349 MODULE_AUTHOR("Ming Lei <ming.lei@redhat.com>"); 2350 MODULE_LICENSE("GPL"); 2351