xref: /linux/drivers/block/ublk_drv.c (revision c31f4aa8fed048fa70e742c4bb49bb48dc489ab3)
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/cmd.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 <linux/kref.h>
47 #include <uapi/linux/ublk_cmd.h>
48 
49 #define UBLK_MINORS		(1U << MINORBITS)
50 
51 #define UBLK_INVALID_BUF_IDX 	((u16)-1)
52 
53 /* private ioctl command mirror */
54 #define UBLK_CMD_DEL_DEV_ASYNC	_IOC_NR(UBLK_U_CMD_DEL_DEV_ASYNC)
55 #define UBLK_CMD_UPDATE_SIZE	_IOC_NR(UBLK_U_CMD_UPDATE_SIZE)
56 #define UBLK_CMD_QUIESCE_DEV	_IOC_NR(UBLK_U_CMD_QUIESCE_DEV)
57 
58 #define UBLK_IO_REGISTER_IO_BUF		_IOC_NR(UBLK_U_IO_REGISTER_IO_BUF)
59 #define UBLK_IO_UNREGISTER_IO_BUF	_IOC_NR(UBLK_U_IO_UNREGISTER_IO_BUF)
60 
61 /* All UBLK_F_* have to be included into UBLK_F_ALL */
62 #define UBLK_F_ALL (UBLK_F_SUPPORT_ZERO_COPY \
63 		| UBLK_F_URING_CMD_COMP_IN_TASK \
64 		| UBLK_F_NEED_GET_DATA \
65 		| UBLK_F_USER_RECOVERY \
66 		| UBLK_F_USER_RECOVERY_REISSUE \
67 		| UBLK_F_UNPRIVILEGED_DEV \
68 		| UBLK_F_CMD_IOCTL_ENCODE \
69 		| UBLK_F_USER_COPY \
70 		| UBLK_F_ZONED \
71 		| UBLK_F_USER_RECOVERY_FAIL_IO \
72 		| UBLK_F_UPDATE_SIZE \
73 		| UBLK_F_AUTO_BUF_REG \
74 		| UBLK_F_QUIESCE \
75 		| UBLK_F_PER_IO_DAEMON \
76 		| UBLK_F_BUF_REG_OFF_DAEMON)
77 
78 #define UBLK_F_ALL_RECOVERY_FLAGS (UBLK_F_USER_RECOVERY \
79 		| UBLK_F_USER_RECOVERY_REISSUE \
80 		| UBLK_F_USER_RECOVERY_FAIL_IO)
81 
82 /* All UBLK_PARAM_TYPE_* should be included here */
83 #define UBLK_PARAM_TYPE_ALL                                \
84 	(UBLK_PARAM_TYPE_BASIC | UBLK_PARAM_TYPE_DISCARD | \
85 	 UBLK_PARAM_TYPE_DEVT | UBLK_PARAM_TYPE_ZONED |    \
86 	 UBLK_PARAM_TYPE_DMA_ALIGN | UBLK_PARAM_TYPE_SEGMENT)
87 
88 struct ublk_uring_cmd_pdu {
89 	/*
90 	 * Store requests in same batch temporarily for queuing them to
91 	 * daemon context.
92 	 *
93 	 * It should have been stored to request payload, but we do want
94 	 * to avoid extra pre-allocation, and uring_cmd payload is always
95 	 * free for us
96 	 */
97 	union {
98 		struct request *req;
99 		struct request *req_list;
100 	};
101 
102 	/*
103 	 * The following two are valid in this cmd whole lifetime, and
104 	 * setup in ublk uring_cmd handler
105 	 */
106 	struct ublk_queue *ubq;
107 
108 	u16 tag;
109 };
110 
111 /*
112  * io command is active: sqe cmd is received, and its cqe isn't done
113  *
114  * If the flag is set, the io command is owned by ublk driver, and waited
115  * for incoming blk-mq request from the ublk block device.
116  *
117  * If the flag is cleared, the io command will be completed, and owned by
118  * ublk server.
119  */
120 #define UBLK_IO_FLAG_ACTIVE	0x01
121 
122 /*
123  * IO command is completed via cqe, and it is being handled by ublksrv, and
124  * not committed yet
125  *
126  * Basically exclusively with UBLK_IO_FLAG_ACTIVE, so can be served for
127  * cross verification
128  */
129 #define UBLK_IO_FLAG_OWNED_BY_SRV 0x02
130 
131 /*
132  * UBLK_IO_FLAG_NEED_GET_DATA is set because IO command requires
133  * get data buffer address from ublksrv.
134  *
135  * Then, bio data could be copied into this data buffer for a WRITE request
136  * after the IO command is issued again and UBLK_IO_FLAG_NEED_GET_DATA is unset.
137  */
138 #define UBLK_IO_FLAG_NEED_GET_DATA 0x08
139 
140 /*
141  * request buffer is registered automatically, so we have to unregister it
142  * before completing this request.
143  *
144  * io_uring will unregister buffer automatically for us during exiting.
145  */
146 #define UBLK_IO_FLAG_AUTO_BUF_REG 	0x10
147 
148 /* atomic RW with ubq->cancel_lock */
149 #define UBLK_IO_FLAG_CANCELED	0x80000000
150 
151 /*
152  * Initialize refcount to a large number to include any registered buffers.
153  * UBLK_IO_COMMIT_AND_FETCH_REQ will release these references minus those for
154  * any buffers registered on the io daemon task.
155  */
156 #define UBLK_REFCOUNT_INIT (REFCOUNT_MAX / 2)
157 
158 union ublk_io_buf {
159 	__u64	addr;
160 	struct ublk_auto_buf_reg auto_reg;
161 };
162 
163 struct ublk_io {
164 	union ublk_io_buf buf;
165 	unsigned int flags;
166 	int res;
167 
168 	union {
169 		/* valid if UBLK_IO_FLAG_ACTIVE is set */
170 		struct io_uring_cmd *cmd;
171 		/* valid if UBLK_IO_FLAG_OWNED_BY_SRV is set */
172 		struct request *req;
173 	};
174 
175 	struct task_struct *task;
176 
177 	/*
178 	 * The number of uses of this I/O by the ublk server
179 	 * if user copy or zero copy are enabled:
180 	 * - UBLK_REFCOUNT_INIT from dispatch to the server
181 	 *   until UBLK_IO_COMMIT_AND_FETCH_REQ
182 	 * - 1 for each inflight ublk_ch_{read,write}_iter() call
183 	 * - 1 for each io_uring registered buffer not registered on task
184 	 * The I/O can only be completed once all references are dropped.
185 	 * User copy and buffer registration operations are only permitted
186 	 * if the reference count is nonzero.
187 	 */
188 	refcount_t ref;
189 	/* Count of buffers registered on task and not yet unregistered */
190 	unsigned task_registered_buffers;
191 
192 	void *buf_ctx_handle;
193 } ____cacheline_aligned_in_smp;
194 
195 struct ublk_queue {
196 	int q_id;
197 	int q_depth;
198 
199 	unsigned long flags;
200 	struct ublksrv_io_desc *io_cmd_buf;
201 
202 	bool force_abort;
203 	bool canceling;
204 	bool fail_io; /* copy of dev->state == UBLK_S_DEV_FAIL_IO */
205 	spinlock_t		cancel_lock;
206 	struct ublk_device *dev;
207 	struct ublk_io ios[] __counted_by(q_depth);
208 };
209 
210 struct ublk_device {
211 	struct gendisk		*ub_disk;
212 
213 	struct ublksrv_ctrl_dev_info	dev_info;
214 
215 	struct blk_mq_tag_set	tag_set;
216 
217 	struct cdev		cdev;
218 	struct device		cdev_dev;
219 
220 #define UB_STATE_OPEN		0
221 #define UB_STATE_USED		1
222 #define UB_STATE_DELETED	2
223 	unsigned long		state;
224 	int			ub_number;
225 
226 	struct mutex		mutex;
227 
228 	spinlock_t		lock;
229 	struct mm_struct	*mm;
230 
231 	struct ublk_params	params;
232 
233 	struct completion	completion;
234 	u32			nr_io_ready;
235 	bool 			unprivileged_daemons;
236 	struct mutex cancel_mutex;
237 	bool canceling;
238 	pid_t 	ublksrv_tgid;
239 	struct delayed_work	exit_work;
240 
241 	struct ublk_queue       *queues[];
242 };
243 
244 /* header of ublk_params */
245 struct ublk_params_header {
246 	__u32	len;
247 	__u32	types;
248 };
249 
250 static void ublk_io_release(void *priv);
251 static void ublk_stop_dev_unlocked(struct ublk_device *ub);
252 static void ublk_abort_queue(struct ublk_device *ub, struct ublk_queue *ubq);
253 static inline struct request *__ublk_check_and_get_req(struct ublk_device *ub,
254 		u16 q_id, u16 tag, struct ublk_io *io, size_t offset);
255 static inline unsigned int ublk_req_build_flags(struct request *req);
256 
257 static inline struct ublksrv_io_desc *
258 ublk_get_iod(const struct ublk_queue *ubq, unsigned tag)
259 {
260 	return &ubq->io_cmd_buf[tag];
261 }
262 
263 static inline bool ublk_dev_is_zoned(const struct ublk_device *ub)
264 {
265 	return ub->dev_info.flags & UBLK_F_ZONED;
266 }
267 
268 static inline bool ublk_queue_is_zoned(const struct ublk_queue *ubq)
269 {
270 	return ubq->flags & UBLK_F_ZONED;
271 }
272 
273 #ifdef CONFIG_BLK_DEV_ZONED
274 
275 struct ublk_zoned_report_desc {
276 	__u64 sector;
277 	__u32 operation;
278 	__u32 nr_zones;
279 };
280 
281 static DEFINE_XARRAY(ublk_zoned_report_descs);
282 
283 static int ublk_zoned_insert_report_desc(const struct request *req,
284 		struct ublk_zoned_report_desc *desc)
285 {
286 	return xa_insert(&ublk_zoned_report_descs, (unsigned long)req,
287 			    desc, GFP_KERNEL);
288 }
289 
290 static struct ublk_zoned_report_desc *ublk_zoned_erase_report_desc(
291 		const struct request *req)
292 {
293 	return xa_erase(&ublk_zoned_report_descs, (unsigned long)req);
294 }
295 
296 static struct ublk_zoned_report_desc *ublk_zoned_get_report_desc(
297 		const struct request *req)
298 {
299 	return xa_load(&ublk_zoned_report_descs, (unsigned long)req);
300 }
301 
302 static int ublk_get_nr_zones(const struct ublk_device *ub)
303 {
304 	const struct ublk_param_basic *p = &ub->params.basic;
305 
306 	/* Zone size is a power of 2 */
307 	return p->dev_sectors >> ilog2(p->chunk_sectors);
308 }
309 
310 static int ublk_revalidate_disk_zones(struct ublk_device *ub)
311 {
312 	return blk_revalidate_disk_zones(ub->ub_disk);
313 }
314 
315 static int ublk_dev_param_zoned_validate(const struct ublk_device *ub)
316 {
317 	const struct ublk_param_zoned *p = &ub->params.zoned;
318 	int nr_zones;
319 
320 	if (!ublk_dev_is_zoned(ub))
321 		return -EINVAL;
322 
323 	if (!p->max_zone_append_sectors)
324 		return -EINVAL;
325 
326 	nr_zones = ublk_get_nr_zones(ub);
327 
328 	if (p->max_active_zones > nr_zones)
329 		return -EINVAL;
330 
331 	if (p->max_open_zones > nr_zones)
332 		return -EINVAL;
333 
334 	return 0;
335 }
336 
337 static void ublk_dev_param_zoned_apply(struct ublk_device *ub)
338 {
339 	ub->ub_disk->nr_zones = ublk_get_nr_zones(ub);
340 }
341 
342 /* Based on virtblk_alloc_report_buffer */
343 static void *ublk_alloc_report_buffer(struct ublk_device *ublk,
344 				      unsigned int nr_zones, size_t *buflen)
345 {
346 	struct request_queue *q = ublk->ub_disk->queue;
347 	size_t bufsize;
348 	void *buf;
349 
350 	nr_zones = min_t(unsigned int, nr_zones,
351 			 ublk->ub_disk->nr_zones);
352 
353 	bufsize = nr_zones * sizeof(struct blk_zone);
354 	bufsize =
355 		min_t(size_t, bufsize, queue_max_hw_sectors(q) << SECTOR_SHIFT);
356 
357 	while (bufsize >= sizeof(struct blk_zone)) {
358 		buf = kvmalloc(bufsize, GFP_KERNEL | __GFP_NORETRY);
359 		if (buf) {
360 			*buflen = bufsize;
361 			return buf;
362 		}
363 		bufsize >>= 1;
364 	}
365 
366 	*buflen = 0;
367 	return NULL;
368 }
369 
370 static int ublk_report_zones(struct gendisk *disk, sector_t sector,
371 		      unsigned int nr_zones, struct blk_report_zones_args *args)
372 {
373 	struct ublk_device *ub = disk->private_data;
374 	unsigned int zone_size_sectors = disk->queue->limits.chunk_sectors;
375 	unsigned int first_zone = sector >> ilog2(zone_size_sectors);
376 	unsigned int done_zones = 0;
377 	unsigned int max_zones_per_request;
378 	int ret;
379 	struct blk_zone *buffer;
380 	size_t buffer_length;
381 
382 	nr_zones = min_t(unsigned int, ub->ub_disk->nr_zones - first_zone,
383 			 nr_zones);
384 
385 	buffer = ublk_alloc_report_buffer(ub, nr_zones, &buffer_length);
386 	if (!buffer)
387 		return -ENOMEM;
388 
389 	max_zones_per_request = buffer_length / sizeof(struct blk_zone);
390 
391 	while (done_zones < nr_zones) {
392 		unsigned int remaining_zones = nr_zones - done_zones;
393 		unsigned int zones_in_request =
394 			min_t(unsigned int, remaining_zones, max_zones_per_request);
395 		struct request *req;
396 		struct ublk_zoned_report_desc desc;
397 		blk_status_t status;
398 
399 		memset(buffer, 0, buffer_length);
400 
401 		req = blk_mq_alloc_request(disk->queue, REQ_OP_DRV_IN, 0);
402 		if (IS_ERR(req)) {
403 			ret = PTR_ERR(req);
404 			goto out;
405 		}
406 
407 		desc.operation = UBLK_IO_OP_REPORT_ZONES;
408 		desc.sector = sector;
409 		desc.nr_zones = zones_in_request;
410 		ret = ublk_zoned_insert_report_desc(req, &desc);
411 		if (ret)
412 			goto free_req;
413 
414 		ret = blk_rq_map_kern(req, buffer, buffer_length, GFP_KERNEL);
415 		if (ret)
416 			goto erase_desc;
417 
418 		status = blk_execute_rq(req, 0);
419 		ret = blk_status_to_errno(status);
420 erase_desc:
421 		ublk_zoned_erase_report_desc(req);
422 free_req:
423 		blk_mq_free_request(req);
424 		if (ret)
425 			goto out;
426 
427 		for (unsigned int i = 0; i < zones_in_request; i++) {
428 			struct blk_zone *zone = buffer + i;
429 
430 			/* A zero length zone means no more zones in this response */
431 			if (!zone->len)
432 				break;
433 
434 			ret = disk_report_zone(disk, zone, i, args);
435 			if (ret)
436 				goto out;
437 
438 			done_zones++;
439 			sector += zone_size_sectors;
440 
441 		}
442 	}
443 
444 	ret = done_zones;
445 
446 out:
447 	kvfree(buffer);
448 	return ret;
449 }
450 
451 static blk_status_t ublk_setup_iod_zoned(struct ublk_queue *ubq,
452 					 struct request *req)
453 {
454 	struct ublksrv_io_desc *iod = ublk_get_iod(ubq, req->tag);
455 	struct ublk_io *io = &ubq->ios[req->tag];
456 	struct ublk_zoned_report_desc *desc;
457 	u32 ublk_op;
458 
459 	switch (req_op(req)) {
460 	case REQ_OP_ZONE_OPEN:
461 		ublk_op = UBLK_IO_OP_ZONE_OPEN;
462 		break;
463 	case REQ_OP_ZONE_CLOSE:
464 		ublk_op = UBLK_IO_OP_ZONE_CLOSE;
465 		break;
466 	case REQ_OP_ZONE_FINISH:
467 		ublk_op = UBLK_IO_OP_ZONE_FINISH;
468 		break;
469 	case REQ_OP_ZONE_RESET:
470 		ublk_op = UBLK_IO_OP_ZONE_RESET;
471 		break;
472 	case REQ_OP_ZONE_APPEND:
473 		ublk_op = UBLK_IO_OP_ZONE_APPEND;
474 		break;
475 	case REQ_OP_ZONE_RESET_ALL:
476 		ublk_op = UBLK_IO_OP_ZONE_RESET_ALL;
477 		break;
478 	case REQ_OP_DRV_IN:
479 		desc = ublk_zoned_get_report_desc(req);
480 		if (!desc)
481 			return BLK_STS_IOERR;
482 		ublk_op = desc->operation;
483 		switch (ublk_op) {
484 		case UBLK_IO_OP_REPORT_ZONES:
485 			iod->op_flags = ublk_op | ublk_req_build_flags(req);
486 			iod->nr_zones = desc->nr_zones;
487 			iod->start_sector = desc->sector;
488 			return BLK_STS_OK;
489 		default:
490 			return BLK_STS_IOERR;
491 		}
492 	case REQ_OP_DRV_OUT:
493 		/* We do not support drv_out */
494 		return BLK_STS_NOTSUPP;
495 	default:
496 		return BLK_STS_IOERR;
497 	}
498 
499 	iod->op_flags = ublk_op | ublk_req_build_flags(req);
500 	iod->nr_sectors = blk_rq_sectors(req);
501 	iod->start_sector = blk_rq_pos(req);
502 	iod->addr = io->buf.addr;
503 
504 	return BLK_STS_OK;
505 }
506 
507 #else
508 
509 #define ublk_report_zones (NULL)
510 
511 static int ublk_dev_param_zoned_validate(const struct ublk_device *ub)
512 {
513 	return -EOPNOTSUPP;
514 }
515 
516 static void ublk_dev_param_zoned_apply(struct ublk_device *ub)
517 {
518 }
519 
520 static int ublk_revalidate_disk_zones(struct ublk_device *ub)
521 {
522 	return 0;
523 }
524 
525 static blk_status_t ublk_setup_iod_zoned(struct ublk_queue *ubq,
526 					 struct request *req)
527 {
528 	return BLK_STS_NOTSUPP;
529 }
530 
531 #endif
532 
533 static inline void __ublk_complete_rq(struct request *req, struct ublk_io *io,
534 				      bool need_map);
535 
536 static dev_t ublk_chr_devt;
537 static const struct class ublk_chr_class = {
538 	.name = "ublk-char",
539 };
540 
541 static DEFINE_IDR(ublk_index_idr);
542 static DEFINE_SPINLOCK(ublk_idr_lock);
543 static wait_queue_head_t ublk_idr_wq;	/* wait until one idr is freed */
544 
545 static DEFINE_MUTEX(ublk_ctl_mutex);
546 
547 
548 #define UBLK_MAX_UBLKS UBLK_MINORS
549 
550 /*
551  * Max unprivileged ublk devices allowed to add
552  *
553  * It can be extended to one per-user limit in future or even controlled
554  * by cgroup.
555  */
556 static unsigned int unprivileged_ublks_max = 64;
557 static unsigned int unprivileged_ublks_added; /* protected by ublk_ctl_mutex */
558 
559 static struct miscdevice ublk_misc;
560 
561 static inline unsigned ublk_pos_to_hwq(loff_t pos)
562 {
563 	return ((pos - UBLKSRV_IO_BUF_OFFSET) >> UBLK_QID_OFF) &
564 		UBLK_QID_BITS_MASK;
565 }
566 
567 static inline unsigned ublk_pos_to_buf_off(loff_t pos)
568 {
569 	return (pos - UBLKSRV_IO_BUF_OFFSET) & UBLK_IO_BUF_BITS_MASK;
570 }
571 
572 static inline unsigned ublk_pos_to_tag(loff_t pos)
573 {
574 	return ((pos - UBLKSRV_IO_BUF_OFFSET) >> UBLK_TAG_OFF) &
575 		UBLK_TAG_BITS_MASK;
576 }
577 
578 static void ublk_dev_param_basic_apply(struct ublk_device *ub)
579 {
580 	const struct ublk_param_basic *p = &ub->params.basic;
581 
582 	if (p->attrs & UBLK_ATTR_READ_ONLY)
583 		set_disk_ro(ub->ub_disk, true);
584 
585 	set_capacity(ub->ub_disk, p->dev_sectors);
586 }
587 
588 static int ublk_validate_params(const struct ublk_device *ub)
589 {
590 	/* basic param is the only one which must be set */
591 	if (ub->params.types & UBLK_PARAM_TYPE_BASIC) {
592 		const struct ublk_param_basic *p = &ub->params.basic;
593 
594 		if (p->logical_bs_shift > PAGE_SHIFT || p->logical_bs_shift < 9)
595 			return -EINVAL;
596 
597 		if (p->logical_bs_shift > p->physical_bs_shift)
598 			return -EINVAL;
599 
600 		if (p->max_sectors > (ub->dev_info.max_io_buf_bytes >> 9))
601 			return -EINVAL;
602 
603 		if (ublk_dev_is_zoned(ub) && !p->chunk_sectors)
604 			return -EINVAL;
605 	} else
606 		return -EINVAL;
607 
608 	if (ub->params.types & UBLK_PARAM_TYPE_DISCARD) {
609 		const struct ublk_param_discard *p = &ub->params.discard;
610 
611 		/* So far, only support single segment discard */
612 		if (p->max_discard_sectors && p->max_discard_segments != 1)
613 			return -EINVAL;
614 
615 		if (!p->discard_granularity)
616 			return -EINVAL;
617 	}
618 
619 	/* dev_t is read-only */
620 	if (ub->params.types & UBLK_PARAM_TYPE_DEVT)
621 		return -EINVAL;
622 
623 	if (ub->params.types & UBLK_PARAM_TYPE_ZONED)
624 		return ublk_dev_param_zoned_validate(ub);
625 	else if (ublk_dev_is_zoned(ub))
626 		return -EINVAL;
627 
628 	if (ub->params.types & UBLK_PARAM_TYPE_DMA_ALIGN) {
629 		const struct ublk_param_dma_align *p = &ub->params.dma;
630 
631 		if (p->alignment >= PAGE_SIZE)
632 			return -EINVAL;
633 
634 		if (!is_power_of_2(p->alignment + 1))
635 			return -EINVAL;
636 	}
637 
638 	if (ub->params.types & UBLK_PARAM_TYPE_SEGMENT) {
639 		const struct ublk_param_segment *p = &ub->params.seg;
640 
641 		if (!is_power_of_2(p->seg_boundary_mask + 1))
642 			return -EINVAL;
643 
644 		if (p->seg_boundary_mask + 1 < UBLK_MIN_SEGMENT_SIZE)
645 			return -EINVAL;
646 		if (p->max_segment_size < UBLK_MIN_SEGMENT_SIZE)
647 			return -EINVAL;
648 	}
649 
650 	return 0;
651 }
652 
653 static void ublk_apply_params(struct ublk_device *ub)
654 {
655 	ublk_dev_param_basic_apply(ub);
656 
657 	if (ub->params.types & UBLK_PARAM_TYPE_ZONED)
658 		ublk_dev_param_zoned_apply(ub);
659 }
660 
661 static inline bool ublk_support_zero_copy(const struct ublk_queue *ubq)
662 {
663 	return ubq->flags & UBLK_F_SUPPORT_ZERO_COPY;
664 }
665 
666 static inline bool ublk_dev_support_zero_copy(const struct ublk_device *ub)
667 {
668 	return ub->dev_info.flags & UBLK_F_SUPPORT_ZERO_COPY;
669 }
670 
671 static inline bool ublk_support_auto_buf_reg(const struct ublk_queue *ubq)
672 {
673 	return ubq->flags & UBLK_F_AUTO_BUF_REG;
674 }
675 
676 static inline bool ublk_dev_support_auto_buf_reg(const struct ublk_device *ub)
677 {
678 	return ub->dev_info.flags & UBLK_F_AUTO_BUF_REG;
679 }
680 
681 static inline bool ublk_support_user_copy(const struct ublk_queue *ubq)
682 {
683 	return ubq->flags & UBLK_F_USER_COPY;
684 }
685 
686 static inline bool ublk_dev_support_user_copy(const struct ublk_device *ub)
687 {
688 	return ub->dev_info.flags & UBLK_F_USER_COPY;
689 }
690 
691 static inline bool ublk_need_map_io(const struct ublk_queue *ubq)
692 {
693 	return !ublk_support_user_copy(ubq) && !ublk_support_zero_copy(ubq) &&
694 		!ublk_support_auto_buf_reg(ubq);
695 }
696 
697 static inline bool ublk_dev_need_map_io(const struct ublk_device *ub)
698 {
699 	return !ublk_dev_support_user_copy(ub) &&
700 	       !ublk_dev_support_zero_copy(ub) &&
701 	       !ublk_dev_support_auto_buf_reg(ub);
702 }
703 
704 static inline bool ublk_need_req_ref(const struct ublk_queue *ubq)
705 {
706 	/*
707 	 * read()/write() is involved in user copy, so request reference
708 	 * has to be grabbed
709 	 *
710 	 * for zero copy, request buffer need to be registered to io_uring
711 	 * buffer table, so reference is needed
712 	 *
713 	 * For auto buffer register, ublk server still may issue
714 	 * UBLK_IO_COMMIT_AND_FETCH_REQ before one registered buffer is used up,
715 	 * so reference is required too.
716 	 */
717 	return ublk_support_user_copy(ubq) || ublk_support_zero_copy(ubq) ||
718 		ublk_support_auto_buf_reg(ubq);
719 }
720 
721 static inline bool ublk_dev_need_req_ref(const struct ublk_device *ub)
722 {
723 	return ublk_dev_support_user_copy(ub) ||
724 	       ublk_dev_support_zero_copy(ub) ||
725 	       ublk_dev_support_auto_buf_reg(ub);
726 }
727 
728 static inline void ublk_init_req_ref(const struct ublk_queue *ubq,
729 		struct ublk_io *io)
730 {
731 	if (ublk_need_req_ref(ubq))
732 		refcount_set(&io->ref, UBLK_REFCOUNT_INIT);
733 }
734 
735 static inline bool ublk_get_req_ref(struct ublk_io *io)
736 {
737 	return refcount_inc_not_zero(&io->ref);
738 }
739 
740 static inline void ublk_put_req_ref(struct ublk_io *io, struct request *req)
741 {
742 	if (!refcount_dec_and_test(&io->ref))
743 		return;
744 
745 	/* ublk_need_map_io() and ublk_need_req_ref() are mutually exclusive */
746 	__ublk_complete_rq(req, io, false);
747 }
748 
749 static inline bool ublk_sub_req_ref(struct ublk_io *io)
750 {
751 	unsigned sub_refs = UBLK_REFCOUNT_INIT - io->task_registered_buffers;
752 
753 	io->task_registered_buffers = 0;
754 	return refcount_sub_and_test(sub_refs, &io->ref);
755 }
756 
757 static inline bool ublk_need_get_data(const struct ublk_queue *ubq)
758 {
759 	return ubq->flags & UBLK_F_NEED_GET_DATA;
760 }
761 
762 static inline bool ublk_dev_need_get_data(const struct ublk_device *ub)
763 {
764 	return ub->dev_info.flags & UBLK_F_NEED_GET_DATA;
765 }
766 
767 /* Called in slow path only, keep it noinline for trace purpose */
768 static noinline struct ublk_device *ublk_get_device(struct ublk_device *ub)
769 {
770 	if (kobject_get_unless_zero(&ub->cdev_dev.kobj))
771 		return ub;
772 	return NULL;
773 }
774 
775 /* Called in slow path only, keep it noinline for trace purpose */
776 static noinline void ublk_put_device(struct ublk_device *ub)
777 {
778 	put_device(&ub->cdev_dev);
779 }
780 
781 static inline struct ublk_queue *ublk_get_queue(struct ublk_device *dev,
782 		int qid)
783 {
784 	return dev->queues[qid];
785 }
786 
787 static inline bool ublk_rq_has_data(const struct request *rq)
788 {
789 	return bio_has_data(rq->bio);
790 }
791 
792 static inline struct ublksrv_io_desc *
793 ublk_queue_cmd_buf(struct ublk_device *ub, int q_id)
794 {
795 	return ublk_get_queue(ub, q_id)->io_cmd_buf;
796 }
797 
798 static inline int __ublk_queue_cmd_buf_size(int depth)
799 {
800 	return round_up(depth * sizeof(struct ublksrv_io_desc), PAGE_SIZE);
801 }
802 
803 static inline int ublk_queue_cmd_buf_size(struct ublk_device *ub)
804 {
805 	return __ublk_queue_cmd_buf_size(ub->dev_info.queue_depth);
806 }
807 
808 static int ublk_max_cmd_buf_size(void)
809 {
810 	return __ublk_queue_cmd_buf_size(UBLK_MAX_QUEUE_DEPTH);
811 }
812 
813 /*
814  * Should I/O outstanding to the ublk server when it exits be reissued?
815  * If not, outstanding I/O will get errors.
816  */
817 static inline bool ublk_nosrv_should_reissue_outstanding(struct ublk_device *ub)
818 {
819 	return (ub->dev_info.flags & UBLK_F_USER_RECOVERY) &&
820 	       (ub->dev_info.flags & UBLK_F_USER_RECOVERY_REISSUE);
821 }
822 
823 /*
824  * Should I/O issued while there is no ublk server queue? If not, I/O
825  * issued while there is no ublk server will get errors.
826  */
827 static inline bool ublk_nosrv_dev_should_queue_io(struct ublk_device *ub)
828 {
829 	return (ub->dev_info.flags & UBLK_F_USER_RECOVERY) &&
830 	       !(ub->dev_info.flags & UBLK_F_USER_RECOVERY_FAIL_IO);
831 }
832 
833 /*
834  * Same as ublk_nosrv_dev_should_queue_io, but uses a queue-local copy
835  * of the device flags for smaller cache footprint - better for fast
836  * paths.
837  */
838 static inline bool ublk_nosrv_should_queue_io(struct ublk_queue *ubq)
839 {
840 	return (ubq->flags & UBLK_F_USER_RECOVERY) &&
841 	       !(ubq->flags & UBLK_F_USER_RECOVERY_FAIL_IO);
842 }
843 
844 /*
845  * Should ublk devices be stopped (i.e. no recovery possible) when the
846  * ublk server exits? If not, devices can be used again by a future
847  * incarnation of a ublk server via the start_recovery/end_recovery
848  * commands.
849  */
850 static inline bool ublk_nosrv_should_stop_dev(struct ublk_device *ub)
851 {
852 	return !(ub->dev_info.flags & UBLK_F_USER_RECOVERY);
853 }
854 
855 static inline bool ublk_dev_in_recoverable_state(struct ublk_device *ub)
856 {
857 	return ub->dev_info.state == UBLK_S_DEV_QUIESCED ||
858 	       ub->dev_info.state == UBLK_S_DEV_FAIL_IO;
859 }
860 
861 static void ublk_free_disk(struct gendisk *disk)
862 {
863 	struct ublk_device *ub = disk->private_data;
864 
865 	clear_bit(UB_STATE_USED, &ub->state);
866 	ublk_put_device(ub);
867 }
868 
869 static void ublk_store_owner_uid_gid(unsigned int *owner_uid,
870 		unsigned int *owner_gid)
871 {
872 	kuid_t uid;
873 	kgid_t gid;
874 
875 	current_uid_gid(&uid, &gid);
876 
877 	*owner_uid = from_kuid(&init_user_ns, uid);
878 	*owner_gid = from_kgid(&init_user_ns, gid);
879 }
880 
881 static int ublk_open(struct gendisk *disk, blk_mode_t mode)
882 {
883 	struct ublk_device *ub = disk->private_data;
884 
885 	if (capable(CAP_SYS_ADMIN))
886 		return 0;
887 
888 	/*
889 	 * If it is one unprivileged device, only owner can open
890 	 * the disk. Otherwise it could be one trap made by one
891 	 * evil user who grants this disk's privileges to other
892 	 * users deliberately.
893 	 *
894 	 * This way is reasonable too given anyone can create
895 	 * unprivileged device, and no need other's grant.
896 	 */
897 	if (ub->dev_info.flags & UBLK_F_UNPRIVILEGED_DEV) {
898 		unsigned int curr_uid, curr_gid;
899 
900 		ublk_store_owner_uid_gid(&curr_uid, &curr_gid);
901 
902 		if (curr_uid != ub->dev_info.owner_uid || curr_gid !=
903 				ub->dev_info.owner_gid)
904 			return -EPERM;
905 	}
906 
907 	return 0;
908 }
909 
910 static const struct block_device_operations ub_fops = {
911 	.owner =	THIS_MODULE,
912 	.open =		ublk_open,
913 	.free_disk =	ublk_free_disk,
914 	.report_zones =	ublk_report_zones,
915 };
916 
917 /*
918  * Copy data between request pages and io_iter, and 'offset'
919  * is the start point of linear offset of request.
920  */
921 static size_t ublk_copy_user_pages(const struct request *req,
922 		unsigned offset, struct iov_iter *uiter, int dir)
923 {
924 	struct req_iterator iter;
925 	struct bio_vec bv;
926 	size_t done = 0;
927 
928 	rq_for_each_segment(bv, req, iter) {
929 		unsigned len;
930 		void *bv_buf;
931 		size_t copied;
932 
933 		if (offset >= bv.bv_len) {
934 			offset -= bv.bv_len;
935 			continue;
936 		}
937 
938 		len = bv.bv_len - offset;
939 		bv_buf = kmap_local_page(bv.bv_page) + bv.bv_offset + offset;
940 		if (dir == ITER_DEST)
941 			copied = copy_to_iter(bv_buf, len, uiter);
942 		else
943 			copied = copy_from_iter(bv_buf, len, uiter);
944 
945 		kunmap_local(bv_buf);
946 
947 		done += copied;
948 		if (copied < len)
949 			break;
950 
951 		offset = 0;
952 	}
953 	return done;
954 }
955 
956 static inline bool ublk_need_map_req(const struct request *req)
957 {
958 	return ublk_rq_has_data(req) && req_op(req) == REQ_OP_WRITE;
959 }
960 
961 static inline bool ublk_need_unmap_req(const struct request *req)
962 {
963 	return ublk_rq_has_data(req) &&
964 	       (req_op(req) == REQ_OP_READ || req_op(req) == REQ_OP_DRV_IN);
965 }
966 
967 static unsigned int ublk_map_io(const struct ublk_queue *ubq,
968 				const struct request *req,
969 				const struct ublk_io *io)
970 {
971 	const unsigned int rq_bytes = blk_rq_bytes(req);
972 
973 	if (!ublk_need_map_io(ubq))
974 		return rq_bytes;
975 
976 	/*
977 	 * no zero copy, we delay copy WRITE request data into ublksrv
978 	 * context and the big benefit is that pinning pages in current
979 	 * context is pretty fast, see ublk_pin_user_pages
980 	 */
981 	if (ublk_need_map_req(req)) {
982 		struct iov_iter iter;
983 		const int dir = ITER_DEST;
984 
985 		import_ubuf(dir, u64_to_user_ptr(io->buf.addr), rq_bytes, &iter);
986 		return ublk_copy_user_pages(req, 0, &iter, dir);
987 	}
988 	return rq_bytes;
989 }
990 
991 static unsigned int ublk_unmap_io(bool need_map,
992 		const struct request *req,
993 		const struct ublk_io *io)
994 {
995 	const unsigned int rq_bytes = blk_rq_bytes(req);
996 
997 	if (!need_map)
998 		return rq_bytes;
999 
1000 	if (ublk_need_unmap_req(req)) {
1001 		struct iov_iter iter;
1002 		const int dir = ITER_SOURCE;
1003 
1004 		WARN_ON_ONCE(io->res > rq_bytes);
1005 
1006 		import_ubuf(dir, u64_to_user_ptr(io->buf.addr), io->res, &iter);
1007 		return ublk_copy_user_pages(req, 0, &iter, dir);
1008 	}
1009 	return rq_bytes;
1010 }
1011 
1012 static inline unsigned int ublk_req_build_flags(struct request *req)
1013 {
1014 	unsigned flags = 0;
1015 
1016 	if (req->cmd_flags & REQ_FAILFAST_DEV)
1017 		flags |= UBLK_IO_F_FAILFAST_DEV;
1018 
1019 	if (req->cmd_flags & REQ_FAILFAST_TRANSPORT)
1020 		flags |= UBLK_IO_F_FAILFAST_TRANSPORT;
1021 
1022 	if (req->cmd_flags & REQ_FAILFAST_DRIVER)
1023 		flags |= UBLK_IO_F_FAILFAST_DRIVER;
1024 
1025 	if (req->cmd_flags & REQ_META)
1026 		flags |= UBLK_IO_F_META;
1027 
1028 	if (req->cmd_flags & REQ_FUA)
1029 		flags |= UBLK_IO_F_FUA;
1030 
1031 	if (req->cmd_flags & REQ_NOUNMAP)
1032 		flags |= UBLK_IO_F_NOUNMAP;
1033 
1034 	if (req->cmd_flags & REQ_SWAP)
1035 		flags |= UBLK_IO_F_SWAP;
1036 
1037 	return flags;
1038 }
1039 
1040 static blk_status_t ublk_setup_iod(struct ublk_queue *ubq, struct request *req)
1041 {
1042 	struct ublksrv_io_desc *iod = ublk_get_iod(ubq, req->tag);
1043 	struct ublk_io *io = &ubq->ios[req->tag];
1044 	u32 ublk_op;
1045 
1046 	switch (req_op(req)) {
1047 	case REQ_OP_READ:
1048 		ublk_op = UBLK_IO_OP_READ;
1049 		break;
1050 	case REQ_OP_WRITE:
1051 		ublk_op = UBLK_IO_OP_WRITE;
1052 		break;
1053 	case REQ_OP_FLUSH:
1054 		ublk_op = UBLK_IO_OP_FLUSH;
1055 		break;
1056 	case REQ_OP_DISCARD:
1057 		ublk_op = UBLK_IO_OP_DISCARD;
1058 		break;
1059 	case REQ_OP_WRITE_ZEROES:
1060 		ublk_op = UBLK_IO_OP_WRITE_ZEROES;
1061 		break;
1062 	default:
1063 		if (ublk_queue_is_zoned(ubq))
1064 			return ublk_setup_iod_zoned(ubq, req);
1065 		return BLK_STS_IOERR;
1066 	}
1067 
1068 	/* need to translate since kernel may change */
1069 	iod->op_flags = ublk_op | ublk_req_build_flags(req);
1070 	iod->nr_sectors = blk_rq_sectors(req);
1071 	iod->start_sector = blk_rq_pos(req);
1072 	iod->addr = io->buf.addr;
1073 
1074 	return BLK_STS_OK;
1075 }
1076 
1077 static inline struct ublk_uring_cmd_pdu *ublk_get_uring_cmd_pdu(
1078 		struct io_uring_cmd *ioucmd)
1079 {
1080 	return io_uring_cmd_to_pdu(ioucmd, struct ublk_uring_cmd_pdu);
1081 }
1082 
1083 static void ublk_end_request(struct request *req, blk_status_t error)
1084 {
1085 	local_bh_disable();
1086 	blk_mq_end_request(req, error);
1087 	local_bh_enable();
1088 }
1089 
1090 /* todo: handle partial completion */
1091 static inline void __ublk_complete_rq(struct request *req, struct ublk_io *io,
1092 				      bool need_map)
1093 {
1094 	unsigned int unmapped_bytes;
1095 	blk_status_t res = BLK_STS_OK;
1096 	bool requeue;
1097 
1098 	/* failed read IO if nothing is read */
1099 	if (!io->res && req_op(req) == REQ_OP_READ)
1100 		io->res = -EIO;
1101 
1102 	if (io->res < 0) {
1103 		res = errno_to_blk_status(io->res);
1104 		goto exit;
1105 	}
1106 
1107 	/*
1108 	 * FLUSH, DISCARD or WRITE_ZEROES usually won't return bytes returned, so end them
1109 	 * directly.
1110 	 *
1111 	 * Both the two needn't unmap.
1112 	 */
1113 	if (req_op(req) != REQ_OP_READ && req_op(req) != REQ_OP_WRITE &&
1114 	    req_op(req) != REQ_OP_DRV_IN)
1115 		goto exit;
1116 
1117 	/* for READ request, writing data in iod->addr to rq buffers */
1118 	unmapped_bytes = ublk_unmap_io(need_map, req, io);
1119 
1120 	/*
1121 	 * Extremely impossible since we got data filled in just before
1122 	 *
1123 	 * Re-read simply for this unlikely case.
1124 	 */
1125 	if (unlikely(unmapped_bytes < io->res))
1126 		io->res = unmapped_bytes;
1127 
1128 	/*
1129 	 * Run bio->bi_end_io() with softirqs disabled. If the final fput
1130 	 * happens off this path, then that will prevent ublk's blkdev_release()
1131 	 * from being called on current's task work, see fput() implementation.
1132 	 *
1133 	 * Otherwise, ublk server may not provide forward progress in case of
1134 	 * reading the partition table from bdev_open() with disk->open_mutex
1135 	 * held, and causes dead lock as we could already be holding
1136 	 * disk->open_mutex here.
1137 	 *
1138 	 * Preferably we would not be doing IO with a mutex held that is also
1139 	 * used for release, but this work-around will suffice for now.
1140 	 */
1141 	local_bh_disable();
1142 	requeue = blk_update_request(req, BLK_STS_OK, io->res);
1143 	local_bh_enable();
1144 	if (requeue)
1145 		blk_mq_requeue_request(req, true);
1146 	else if (likely(!blk_should_fake_timeout(req->q)))
1147 		__blk_mq_end_request(req, BLK_STS_OK);
1148 
1149 	return;
1150 exit:
1151 	ublk_end_request(req, res);
1152 }
1153 
1154 static struct io_uring_cmd *__ublk_prep_compl_io_cmd(struct ublk_io *io,
1155 						     struct request *req)
1156 {
1157 	/* read cmd first because req will overwrite it */
1158 	struct io_uring_cmd *cmd = io->cmd;
1159 
1160 	/* mark this cmd owned by ublksrv */
1161 	io->flags |= UBLK_IO_FLAG_OWNED_BY_SRV;
1162 
1163 	/*
1164 	 * clear ACTIVE since we are done with this sqe/cmd slot
1165 	 * We can only accept io cmd in case of being not active.
1166 	 */
1167 	io->flags &= ~UBLK_IO_FLAG_ACTIVE;
1168 
1169 	io->req = req;
1170 	return cmd;
1171 }
1172 
1173 static void ublk_complete_io_cmd(struct ublk_io *io, struct request *req,
1174 				 int res, unsigned issue_flags)
1175 {
1176 	struct io_uring_cmd *cmd = __ublk_prep_compl_io_cmd(io, req);
1177 
1178 	/* tell ublksrv one io request is coming */
1179 	io_uring_cmd_done(cmd, res, issue_flags);
1180 }
1181 
1182 #define UBLK_REQUEUE_DELAY_MS	3
1183 
1184 static inline void __ublk_abort_rq(struct ublk_queue *ubq,
1185 		struct request *rq)
1186 {
1187 	/* We cannot process this rq so just requeue it. */
1188 	if (ublk_nosrv_dev_should_queue_io(ubq->dev))
1189 		blk_mq_requeue_request(rq, false);
1190 	else
1191 		ublk_end_request(rq, BLK_STS_IOERR);
1192 }
1193 
1194 static void
1195 ublk_auto_buf_reg_fallback(const struct ublk_queue *ubq, unsigned tag)
1196 {
1197 	struct ublksrv_io_desc *iod = ublk_get_iod(ubq, tag);
1198 
1199 	iod->op_flags |= UBLK_IO_F_NEED_REG_BUF;
1200 }
1201 
1202 enum auto_buf_reg_res {
1203 	AUTO_BUF_REG_FAIL,
1204 	AUTO_BUF_REG_FALLBACK,
1205 	AUTO_BUF_REG_OK,
1206 };
1207 
1208 static void ublk_prep_auto_buf_reg_io(const struct ublk_queue *ubq,
1209 				      struct request *req, struct ublk_io *io,
1210 				      struct io_uring_cmd *cmd,
1211 				      enum auto_buf_reg_res res)
1212 {
1213 	if (res == AUTO_BUF_REG_OK) {
1214 		io->task_registered_buffers = 1;
1215 		io->buf_ctx_handle = io_uring_cmd_ctx_handle(cmd);
1216 		io->flags |= UBLK_IO_FLAG_AUTO_BUF_REG;
1217 	}
1218 	ublk_init_req_ref(ubq, io);
1219 	__ublk_prep_compl_io_cmd(io, req);
1220 }
1221 
1222 static enum auto_buf_reg_res
1223 __ublk_do_auto_buf_reg(const struct ublk_queue *ubq, struct request *req,
1224 		       struct ublk_io *io, struct io_uring_cmd *cmd,
1225 		       unsigned int issue_flags)
1226 {
1227 	int ret;
1228 
1229 	ret = io_buffer_register_bvec(cmd, req, ublk_io_release,
1230 				      io->buf.auto_reg.index, issue_flags);
1231 	if (ret) {
1232 		if (io->buf.auto_reg.flags & UBLK_AUTO_BUF_REG_FALLBACK) {
1233 			ublk_auto_buf_reg_fallback(ubq, req->tag);
1234 			return AUTO_BUF_REG_FALLBACK;
1235 		}
1236 		ublk_end_request(req, BLK_STS_IOERR);
1237 		return AUTO_BUF_REG_FAIL;
1238 	}
1239 
1240 	return AUTO_BUF_REG_OK;
1241 }
1242 
1243 static void ublk_do_auto_buf_reg(const struct ublk_queue *ubq, struct request *req,
1244 				 struct ublk_io *io, struct io_uring_cmd *cmd,
1245 				 unsigned int issue_flags)
1246 {
1247 	enum auto_buf_reg_res res = __ublk_do_auto_buf_reg(ubq, req, io, cmd,
1248 			issue_flags);
1249 
1250 	if (res != AUTO_BUF_REG_FAIL) {
1251 		ublk_prep_auto_buf_reg_io(ubq, req, io, cmd, res);
1252 		io_uring_cmd_done(cmd, UBLK_IO_RES_OK, issue_flags);
1253 	}
1254 }
1255 
1256 static bool ublk_start_io(const struct ublk_queue *ubq, struct request *req,
1257 			  struct ublk_io *io)
1258 {
1259 	unsigned mapped_bytes = ublk_map_io(ubq, req, io);
1260 
1261 	/* partially mapped, update io descriptor */
1262 	if (unlikely(mapped_bytes != blk_rq_bytes(req))) {
1263 		/*
1264 		 * Nothing mapped, retry until we succeed.
1265 		 *
1266 		 * We may never succeed in mapping any bytes here because
1267 		 * of OOM. TODO: reserve one buffer with single page pinned
1268 		 * for providing forward progress guarantee.
1269 		 */
1270 		if (unlikely(!mapped_bytes)) {
1271 			blk_mq_requeue_request(req, false);
1272 			blk_mq_delay_kick_requeue_list(req->q,
1273 					UBLK_REQUEUE_DELAY_MS);
1274 			return false;
1275 		}
1276 
1277 		ublk_get_iod(ubq, req->tag)->nr_sectors =
1278 			mapped_bytes >> 9;
1279 	}
1280 
1281 	return true;
1282 }
1283 
1284 static void ublk_dispatch_req(struct ublk_queue *ubq, struct request *req)
1285 {
1286 	unsigned int issue_flags = IO_URING_CMD_TASK_WORK_ISSUE_FLAGS;
1287 	int tag = req->tag;
1288 	struct ublk_io *io = &ubq->ios[tag];
1289 
1290 	pr_devel("%s: complete: qid %d tag %d io_flags %x addr %llx\n",
1291 			__func__, ubq->q_id, req->tag, io->flags,
1292 			ublk_get_iod(ubq, req->tag)->addr);
1293 
1294 	/*
1295 	 * Task is exiting if either:
1296 	 *
1297 	 * (1) current != io->task.
1298 	 * io_uring_cmd_complete_in_task() tries to run task_work
1299 	 * in a workqueue if cmd's task is PF_EXITING.
1300 	 *
1301 	 * (2) current->flags & PF_EXITING.
1302 	 */
1303 	if (unlikely(current != io->task || current->flags & PF_EXITING)) {
1304 		__ublk_abort_rq(ubq, req);
1305 		return;
1306 	}
1307 
1308 	if (ublk_need_get_data(ubq) && ublk_need_map_req(req)) {
1309 		/*
1310 		 * We have not handled UBLK_IO_NEED_GET_DATA command yet,
1311 		 * so immediately pass UBLK_IO_RES_NEED_GET_DATA to ublksrv
1312 		 * and notify it.
1313 		 */
1314 		io->flags |= UBLK_IO_FLAG_NEED_GET_DATA;
1315 		pr_devel("%s: need get data. qid %d tag %d io_flags %x\n",
1316 				__func__, ubq->q_id, req->tag, io->flags);
1317 		ublk_complete_io_cmd(io, req, UBLK_IO_RES_NEED_GET_DATA,
1318 				     issue_flags);
1319 		return;
1320 	}
1321 
1322 	if (!ublk_start_io(ubq, req, io))
1323 		return;
1324 
1325 	if (ublk_support_auto_buf_reg(ubq) && ublk_rq_has_data(req)) {
1326 		ublk_do_auto_buf_reg(ubq, req, io, io->cmd, issue_flags);
1327 	} else {
1328 		ublk_init_req_ref(ubq, io);
1329 		ublk_complete_io_cmd(io, req, UBLK_IO_RES_OK, issue_flags);
1330 	}
1331 }
1332 
1333 static void ublk_cmd_tw_cb(struct io_tw_req tw_req, io_tw_token_t tw)
1334 {
1335 	struct io_uring_cmd *cmd = io_uring_cmd_from_tw(tw_req);
1336 	struct ublk_uring_cmd_pdu *pdu = ublk_get_uring_cmd_pdu(cmd);
1337 	struct ublk_queue *ubq = pdu->ubq;
1338 
1339 	ublk_dispatch_req(ubq, pdu->req);
1340 }
1341 
1342 static void ublk_queue_cmd(struct ublk_queue *ubq, struct request *rq)
1343 {
1344 	struct io_uring_cmd *cmd = ubq->ios[rq->tag].cmd;
1345 	struct ublk_uring_cmd_pdu *pdu = ublk_get_uring_cmd_pdu(cmd);
1346 
1347 	pdu->req = rq;
1348 	io_uring_cmd_complete_in_task(cmd, ublk_cmd_tw_cb);
1349 }
1350 
1351 static void ublk_cmd_list_tw_cb(struct io_tw_req tw_req, io_tw_token_t tw)
1352 {
1353 	struct io_uring_cmd *cmd = io_uring_cmd_from_tw(tw_req);
1354 	struct ublk_uring_cmd_pdu *pdu = ublk_get_uring_cmd_pdu(cmd);
1355 	struct request *rq = pdu->req_list;
1356 	struct request *next;
1357 
1358 	do {
1359 		next = rq->rq_next;
1360 		rq->rq_next = NULL;
1361 		ublk_dispatch_req(rq->mq_hctx->driver_data, rq);
1362 		rq = next;
1363 	} while (rq);
1364 }
1365 
1366 static void ublk_queue_cmd_list(struct ublk_io *io, struct rq_list *l)
1367 {
1368 	struct io_uring_cmd *cmd = io->cmd;
1369 	struct ublk_uring_cmd_pdu *pdu = ublk_get_uring_cmd_pdu(cmd);
1370 
1371 	pdu->req_list = rq_list_peek(l);
1372 	rq_list_init(l);
1373 	io_uring_cmd_complete_in_task(cmd, ublk_cmd_list_tw_cb);
1374 }
1375 
1376 static enum blk_eh_timer_return ublk_timeout(struct request *rq)
1377 {
1378 	struct ublk_queue *ubq = rq->mq_hctx->driver_data;
1379 	pid_t tgid = ubq->dev->ublksrv_tgid;
1380 	struct task_struct *p;
1381 	struct pid *pid;
1382 
1383 	if (!(ubq->flags & UBLK_F_UNPRIVILEGED_DEV))
1384 		return BLK_EH_RESET_TIMER;
1385 
1386 	if (unlikely(!tgid))
1387 		return BLK_EH_RESET_TIMER;
1388 
1389 	rcu_read_lock();
1390 	pid = find_vpid(tgid);
1391 	p = pid_task(pid, PIDTYPE_PID);
1392 	if (p)
1393 		send_sig(SIGKILL, p, 0);
1394 	rcu_read_unlock();
1395 	return BLK_EH_DONE;
1396 }
1397 
1398 static blk_status_t ublk_prep_req(struct ublk_queue *ubq, struct request *rq,
1399 				  bool check_cancel)
1400 {
1401 	blk_status_t res;
1402 
1403 	if (unlikely(READ_ONCE(ubq->fail_io)))
1404 		return BLK_STS_TARGET;
1405 
1406 	/* With recovery feature enabled, force_abort is set in
1407 	 * ublk_stop_dev() before calling del_gendisk(). We have to
1408 	 * abort all requeued and new rqs here to let del_gendisk()
1409 	 * move on. Besides, we cannot not call io_uring_cmd_complete_in_task()
1410 	 * to avoid UAF on io_uring ctx.
1411 	 *
1412 	 * Note: force_abort is guaranteed to be seen because it is set
1413 	 * before request queue is unqiuesced.
1414 	 */
1415 	if (ublk_nosrv_should_queue_io(ubq) &&
1416 	    unlikely(READ_ONCE(ubq->force_abort)))
1417 		return BLK_STS_IOERR;
1418 
1419 	if (check_cancel && unlikely(ubq->canceling))
1420 		return BLK_STS_IOERR;
1421 
1422 	/* fill iod to slot in io cmd buffer */
1423 	res = ublk_setup_iod(ubq, rq);
1424 	if (unlikely(res != BLK_STS_OK))
1425 		return BLK_STS_IOERR;
1426 
1427 	blk_mq_start_request(rq);
1428 	return BLK_STS_OK;
1429 }
1430 
1431 static blk_status_t ublk_queue_rq(struct blk_mq_hw_ctx *hctx,
1432 		const struct blk_mq_queue_data *bd)
1433 {
1434 	struct ublk_queue *ubq = hctx->driver_data;
1435 	struct request *rq = bd->rq;
1436 	blk_status_t res;
1437 
1438 	res = ublk_prep_req(ubq, rq, false);
1439 	if (res != BLK_STS_OK)
1440 		return res;
1441 
1442 	/*
1443 	 * ->canceling has to be handled after ->force_abort and ->fail_io
1444 	 * is dealt with, otherwise this request may not be failed in case
1445 	 * of recovery, and cause hang when deleting disk
1446 	 */
1447 	if (unlikely(ubq->canceling)) {
1448 		__ublk_abort_rq(ubq, rq);
1449 		return BLK_STS_OK;
1450 	}
1451 
1452 	ublk_queue_cmd(ubq, rq);
1453 	return BLK_STS_OK;
1454 }
1455 
1456 static inline bool ublk_belong_to_same_batch(const struct ublk_io *io,
1457 					     const struct ublk_io *io2)
1458 {
1459 	return (io_uring_cmd_ctx_handle(io->cmd) ==
1460 		io_uring_cmd_ctx_handle(io2->cmd)) &&
1461 		(io->task == io2->task);
1462 }
1463 
1464 static void ublk_queue_rqs(struct rq_list *rqlist)
1465 {
1466 	struct rq_list requeue_list = { };
1467 	struct rq_list submit_list = { };
1468 	struct ublk_io *io = NULL;
1469 	struct request *req;
1470 
1471 	while ((req = rq_list_pop(rqlist))) {
1472 		struct ublk_queue *this_q = req->mq_hctx->driver_data;
1473 		struct ublk_io *this_io = &this_q->ios[req->tag];
1474 
1475 		if (ublk_prep_req(this_q, req, true) != BLK_STS_OK) {
1476 			rq_list_add_tail(&requeue_list, req);
1477 			continue;
1478 		}
1479 
1480 		if (io && !ublk_belong_to_same_batch(io, this_io) &&
1481 				!rq_list_empty(&submit_list))
1482 			ublk_queue_cmd_list(io, &submit_list);
1483 		io = this_io;
1484 		rq_list_add_tail(&submit_list, req);
1485 	}
1486 
1487 	if (!rq_list_empty(&submit_list))
1488 		ublk_queue_cmd_list(io, &submit_list);
1489 	*rqlist = requeue_list;
1490 }
1491 
1492 static int ublk_init_hctx(struct blk_mq_hw_ctx *hctx, void *driver_data,
1493 		unsigned int hctx_idx)
1494 {
1495 	struct ublk_device *ub = driver_data;
1496 	struct ublk_queue *ubq = ublk_get_queue(ub, hctx->queue_num);
1497 
1498 	hctx->driver_data = ubq;
1499 	return 0;
1500 }
1501 
1502 static const struct blk_mq_ops ublk_mq_ops = {
1503 	.queue_rq       = ublk_queue_rq,
1504 	.queue_rqs      = ublk_queue_rqs,
1505 	.init_hctx	= ublk_init_hctx,
1506 	.timeout	= ublk_timeout,
1507 };
1508 
1509 static void ublk_queue_reinit(struct ublk_device *ub, struct ublk_queue *ubq)
1510 {
1511 	int i;
1512 
1513 	for (i = 0; i < ubq->q_depth; i++) {
1514 		struct ublk_io *io = &ubq->ios[i];
1515 
1516 		/*
1517 		 * UBLK_IO_FLAG_CANCELED is kept for avoiding to touch
1518 		 * io->cmd
1519 		 */
1520 		io->flags &= UBLK_IO_FLAG_CANCELED;
1521 		io->cmd = NULL;
1522 		io->buf.addr = 0;
1523 
1524 		/*
1525 		 * old task is PF_EXITING, put it now
1526 		 *
1527 		 * It could be NULL in case of closing one quiesced
1528 		 * device.
1529 		 */
1530 		if (io->task) {
1531 			put_task_struct(io->task);
1532 			io->task = NULL;
1533 		}
1534 
1535 		WARN_ON_ONCE(refcount_read(&io->ref));
1536 		WARN_ON_ONCE(io->task_registered_buffers);
1537 	}
1538 }
1539 
1540 static int ublk_ch_open(struct inode *inode, struct file *filp)
1541 {
1542 	struct ublk_device *ub = container_of(inode->i_cdev,
1543 			struct ublk_device, cdev);
1544 
1545 	if (test_and_set_bit(UB_STATE_OPEN, &ub->state))
1546 		return -EBUSY;
1547 	filp->private_data = ub;
1548 	ub->ublksrv_tgid = current->tgid;
1549 	return 0;
1550 }
1551 
1552 static void ublk_reset_ch_dev(struct ublk_device *ub)
1553 {
1554 	int i;
1555 
1556 	for (i = 0; i < ub->dev_info.nr_hw_queues; i++)
1557 		ublk_queue_reinit(ub, ublk_get_queue(ub, i));
1558 
1559 	/* set to NULL, otherwise new tasks cannot mmap io_cmd_buf */
1560 	ub->mm = NULL;
1561 	ub->nr_io_ready = 0;
1562 	ub->unprivileged_daemons = false;
1563 	ub->ublksrv_tgid = -1;
1564 }
1565 
1566 static struct gendisk *ublk_get_disk(struct ublk_device *ub)
1567 {
1568 	struct gendisk *disk;
1569 
1570 	spin_lock(&ub->lock);
1571 	disk = ub->ub_disk;
1572 	if (disk)
1573 		get_device(disk_to_dev(disk));
1574 	spin_unlock(&ub->lock);
1575 
1576 	return disk;
1577 }
1578 
1579 static void ublk_put_disk(struct gendisk *disk)
1580 {
1581 	if (disk)
1582 		put_device(disk_to_dev(disk));
1583 }
1584 
1585 /*
1586  * Use this function to ensure that ->canceling is consistently set for
1587  * the device and all queues. Do not set these flags directly.
1588  *
1589  * Caller must ensure that:
1590  * - cancel_mutex is held. This ensures that there is no concurrent
1591  *   access to ub->canceling and no concurrent writes to ubq->canceling.
1592  * - there are no concurrent reads of ubq->canceling from the queue_rq
1593  *   path. This can be done by quiescing the queue, or through other
1594  *   means.
1595  */
1596 static void ublk_set_canceling(struct ublk_device *ub, bool canceling)
1597 	__must_hold(&ub->cancel_mutex)
1598 {
1599 	int i;
1600 
1601 	ub->canceling = canceling;
1602 	for (i = 0; i < ub->dev_info.nr_hw_queues; i++)
1603 		ublk_get_queue(ub, i)->canceling = canceling;
1604 }
1605 
1606 static bool ublk_check_and_reset_active_ref(struct ublk_device *ub)
1607 {
1608 	int i, j;
1609 
1610 	if (!(ub->dev_info.flags & (UBLK_F_SUPPORT_ZERO_COPY |
1611 					UBLK_F_AUTO_BUF_REG)))
1612 		return false;
1613 
1614 	for (i = 0; i < ub->dev_info.nr_hw_queues; i++) {
1615 		struct ublk_queue *ubq = ublk_get_queue(ub, i);
1616 
1617 		for (j = 0; j < ubq->q_depth; j++) {
1618 			struct ublk_io *io = &ubq->ios[j];
1619 			unsigned int refs = refcount_read(&io->ref) +
1620 				io->task_registered_buffers;
1621 
1622 			/*
1623 			 * UBLK_REFCOUNT_INIT or zero means no active
1624 			 * reference
1625 			 */
1626 			if (refs != UBLK_REFCOUNT_INIT && refs != 0)
1627 				return true;
1628 
1629 			/* reset to zero if the io hasn't active references */
1630 			refcount_set(&io->ref, 0);
1631 			io->task_registered_buffers = 0;
1632 		}
1633 	}
1634 	return false;
1635 }
1636 
1637 static void ublk_ch_release_work_fn(struct work_struct *work)
1638 {
1639 	struct ublk_device *ub =
1640 		container_of(work, struct ublk_device, exit_work.work);
1641 	struct gendisk *disk;
1642 	int i;
1643 
1644 	/*
1645 	 * For zero-copy and auto buffer register modes, I/O references
1646 	 * might not be dropped naturally when the daemon is killed, but
1647 	 * io_uring guarantees that registered bvec kernel buffers are
1648 	 * unregistered finally when freeing io_uring context, then the
1649 	 * active references are dropped.
1650 	 *
1651 	 * Wait until active references are dropped for avoiding use-after-free
1652 	 *
1653 	 * registered buffer may be unregistered in io_ring's release hander,
1654 	 * so have to wait by scheduling work function for avoiding the two
1655 	 * file release dependency.
1656 	 */
1657 	if (ublk_check_and_reset_active_ref(ub)) {
1658 		schedule_delayed_work(&ub->exit_work, 1);
1659 		return;
1660 	}
1661 
1662 	/*
1663 	 * disk isn't attached yet, either device isn't live, or it has
1664 	 * been removed already, so we needn't to do anything
1665 	 */
1666 	disk = ublk_get_disk(ub);
1667 	if (!disk)
1668 		goto out;
1669 
1670 	/*
1671 	 * All uring_cmd are done now, so abort any request outstanding to
1672 	 * the ublk server
1673 	 *
1674 	 * This can be done in lockless way because ublk server has been
1675 	 * gone
1676 	 *
1677 	 * More importantly, we have to provide forward progress guarantee
1678 	 * without holding ub->mutex, otherwise control task grabbing
1679 	 * ub->mutex triggers deadlock
1680 	 *
1681 	 * All requests may be inflight, so ->canceling may not be set, set
1682 	 * it now.
1683 	 */
1684 	mutex_lock(&ub->cancel_mutex);
1685 	ublk_set_canceling(ub, true);
1686 	for (i = 0; i < ub->dev_info.nr_hw_queues; i++)
1687 		ublk_abort_queue(ub, ublk_get_queue(ub, i));
1688 	mutex_unlock(&ub->cancel_mutex);
1689 	blk_mq_kick_requeue_list(disk->queue);
1690 
1691 	/*
1692 	 * All infligh requests have been completed or requeued and any new
1693 	 * request will be failed or requeued via `->canceling` now, so it is
1694 	 * fine to grab ub->mutex now.
1695 	 */
1696 	mutex_lock(&ub->mutex);
1697 
1698 	/* double check after grabbing lock */
1699 	if (!ub->ub_disk)
1700 		goto unlock;
1701 
1702 	/*
1703 	 * Transition the device to the nosrv state. What exactly this
1704 	 * means depends on the recovery flags
1705 	 */
1706 	if (ublk_nosrv_should_stop_dev(ub)) {
1707 		/*
1708 		 * Allow any pending/future I/O to pass through quickly
1709 		 * with an error. This is needed because del_gendisk
1710 		 * waits for all pending I/O to complete
1711 		 */
1712 		for (i = 0; i < ub->dev_info.nr_hw_queues; i++)
1713 			WRITE_ONCE(ublk_get_queue(ub, i)->force_abort, true);
1714 
1715 		ublk_stop_dev_unlocked(ub);
1716 	} else {
1717 		if (ublk_nosrv_dev_should_queue_io(ub)) {
1718 			/* ->canceling is set and all requests are aborted */
1719 			ub->dev_info.state = UBLK_S_DEV_QUIESCED;
1720 		} else {
1721 			ub->dev_info.state = UBLK_S_DEV_FAIL_IO;
1722 			for (i = 0; i < ub->dev_info.nr_hw_queues; i++)
1723 				WRITE_ONCE(ublk_get_queue(ub, i)->fail_io, true);
1724 		}
1725 	}
1726 unlock:
1727 	mutex_unlock(&ub->mutex);
1728 	ublk_put_disk(disk);
1729 
1730 	/* all uring_cmd has been done now, reset device & ubq */
1731 	ublk_reset_ch_dev(ub);
1732 out:
1733 	clear_bit(UB_STATE_OPEN, &ub->state);
1734 
1735 	/* put the reference grabbed in ublk_ch_release() */
1736 	ublk_put_device(ub);
1737 }
1738 
1739 static int ublk_ch_release(struct inode *inode, struct file *filp)
1740 {
1741 	struct ublk_device *ub = filp->private_data;
1742 
1743 	/*
1744 	 * Grab ublk device reference, so it won't be gone until we are
1745 	 * really released from work function.
1746 	 */
1747 	ublk_get_device(ub);
1748 
1749 	INIT_DELAYED_WORK(&ub->exit_work, ublk_ch_release_work_fn);
1750 	schedule_delayed_work(&ub->exit_work, 0);
1751 	return 0;
1752 }
1753 
1754 /* map pre-allocated per-queue cmd buffer to ublksrv daemon */
1755 static int ublk_ch_mmap(struct file *filp, struct vm_area_struct *vma)
1756 {
1757 	struct ublk_device *ub = filp->private_data;
1758 	size_t sz = vma->vm_end - vma->vm_start;
1759 	unsigned max_sz = ublk_max_cmd_buf_size();
1760 	unsigned long pfn, end, phys_off = vma->vm_pgoff << PAGE_SHIFT;
1761 	int q_id, ret = 0;
1762 
1763 	spin_lock(&ub->lock);
1764 	if (!ub->mm)
1765 		ub->mm = current->mm;
1766 	if (current->mm != ub->mm)
1767 		ret = -EINVAL;
1768 	spin_unlock(&ub->lock);
1769 
1770 	if (ret)
1771 		return ret;
1772 
1773 	if (vma->vm_flags & VM_WRITE)
1774 		return -EPERM;
1775 
1776 	end = UBLKSRV_CMD_BUF_OFFSET + ub->dev_info.nr_hw_queues * max_sz;
1777 	if (phys_off < UBLKSRV_CMD_BUF_OFFSET || phys_off >= end)
1778 		return -EINVAL;
1779 
1780 	q_id = (phys_off - UBLKSRV_CMD_BUF_OFFSET) / max_sz;
1781 	pr_devel("%s: qid %d, pid %d, addr %lx pg_off %lx sz %lu\n",
1782 			__func__, q_id, current->pid, vma->vm_start,
1783 			phys_off, (unsigned long)sz);
1784 
1785 	if (sz != ublk_queue_cmd_buf_size(ub))
1786 		return -EINVAL;
1787 
1788 	pfn = virt_to_phys(ublk_queue_cmd_buf(ub, q_id)) >> PAGE_SHIFT;
1789 	return remap_pfn_range(vma, vma->vm_start, pfn, sz, vma->vm_page_prot);
1790 }
1791 
1792 static void __ublk_fail_req(struct ublk_device *ub, struct ublk_io *io,
1793 		struct request *req)
1794 {
1795 	WARN_ON_ONCE(io->flags & UBLK_IO_FLAG_ACTIVE);
1796 
1797 	if (ublk_nosrv_should_reissue_outstanding(ub))
1798 		blk_mq_requeue_request(req, false);
1799 	else {
1800 		io->res = -EIO;
1801 		__ublk_complete_rq(req, io, ublk_dev_need_map_io(ub));
1802 	}
1803 }
1804 
1805 /*
1806  * Called from ublk char device release handler, when any uring_cmd is
1807  * done, meantime request queue is "quiesced" since all inflight requests
1808  * can't be completed because ublk server is dead.
1809  *
1810  * So no one can hold our request IO reference any more, simply ignore the
1811  * reference, and complete the request immediately
1812  */
1813 static void ublk_abort_queue(struct ublk_device *ub, struct ublk_queue *ubq)
1814 {
1815 	int i;
1816 
1817 	for (i = 0; i < ubq->q_depth; i++) {
1818 		struct ublk_io *io = &ubq->ios[i];
1819 
1820 		if (io->flags & UBLK_IO_FLAG_OWNED_BY_SRV)
1821 			__ublk_fail_req(ub, io, io->req);
1822 	}
1823 }
1824 
1825 static void ublk_start_cancel(struct ublk_device *ub)
1826 {
1827 	struct gendisk *disk = ublk_get_disk(ub);
1828 
1829 	/* Our disk has been dead */
1830 	if (!disk)
1831 		return;
1832 
1833 	mutex_lock(&ub->cancel_mutex);
1834 	if (ub->canceling)
1835 		goto out;
1836 	/*
1837 	 * Now we are serialized with ublk_queue_rq()
1838 	 *
1839 	 * Make sure that ubq->canceling is set when queue is frozen,
1840 	 * because ublk_queue_rq() has to rely on this flag for avoiding to
1841 	 * touch completed uring_cmd
1842 	 */
1843 	blk_mq_quiesce_queue(disk->queue);
1844 	ublk_set_canceling(ub, true);
1845 	blk_mq_unquiesce_queue(disk->queue);
1846 out:
1847 	mutex_unlock(&ub->cancel_mutex);
1848 	ublk_put_disk(disk);
1849 }
1850 
1851 static void ublk_cancel_cmd(struct ublk_queue *ubq, unsigned tag,
1852 		unsigned int issue_flags)
1853 {
1854 	struct ublk_io *io = &ubq->ios[tag];
1855 	struct ublk_device *ub = ubq->dev;
1856 	struct request *req;
1857 	bool done;
1858 
1859 	if (!(io->flags & UBLK_IO_FLAG_ACTIVE))
1860 		return;
1861 
1862 	/*
1863 	 * Don't try to cancel this command if the request is started for
1864 	 * avoiding race between io_uring_cmd_done() and
1865 	 * io_uring_cmd_complete_in_task().
1866 	 *
1867 	 * Either the started request will be aborted via __ublk_abort_rq(),
1868 	 * then this uring_cmd is canceled next time, or it will be done in
1869 	 * task work function ublk_dispatch_req() because io_uring guarantees
1870 	 * that ublk_dispatch_req() is always called
1871 	 */
1872 	req = blk_mq_tag_to_rq(ub->tag_set.tags[ubq->q_id], tag);
1873 	if (req && blk_mq_request_started(req) && req->tag == tag)
1874 		return;
1875 
1876 	spin_lock(&ubq->cancel_lock);
1877 	done = !!(io->flags & UBLK_IO_FLAG_CANCELED);
1878 	if (!done)
1879 		io->flags |= UBLK_IO_FLAG_CANCELED;
1880 	spin_unlock(&ubq->cancel_lock);
1881 
1882 	if (!done)
1883 		io_uring_cmd_done(io->cmd, UBLK_IO_RES_ABORT, issue_flags);
1884 }
1885 
1886 /*
1887  * The ublk char device won't be closed when calling cancel fn, so both
1888  * ublk device and queue are guaranteed to be live
1889  *
1890  * Two-stage cancel:
1891  *
1892  * - make every active uring_cmd done in ->cancel_fn()
1893  *
1894  * - aborting inflight ublk IO requests in ublk char device release handler,
1895  *   which depends on 1st stage because device can only be closed iff all
1896  *   uring_cmd are done
1897  *
1898  * Do _not_ try to acquire ub->mutex before all inflight requests are
1899  * aborted, otherwise deadlock may be caused.
1900  */
1901 static void ublk_uring_cmd_cancel_fn(struct io_uring_cmd *cmd,
1902 		unsigned int issue_flags)
1903 {
1904 	struct ublk_uring_cmd_pdu *pdu = ublk_get_uring_cmd_pdu(cmd);
1905 	struct ublk_queue *ubq = pdu->ubq;
1906 	struct task_struct *task;
1907 	struct ublk_io *io;
1908 
1909 	if (WARN_ON_ONCE(!ubq))
1910 		return;
1911 
1912 	if (WARN_ON_ONCE(pdu->tag >= ubq->q_depth))
1913 		return;
1914 
1915 	task = io_uring_cmd_get_task(cmd);
1916 	io = &ubq->ios[pdu->tag];
1917 	if (WARN_ON_ONCE(task && task != io->task))
1918 		return;
1919 
1920 	ublk_start_cancel(ubq->dev);
1921 
1922 	WARN_ON_ONCE(io->cmd != cmd);
1923 	ublk_cancel_cmd(ubq, pdu->tag, issue_flags);
1924 }
1925 
1926 static inline bool ublk_dev_ready(const struct ublk_device *ub)
1927 {
1928 	u32 total = (u32)ub->dev_info.nr_hw_queues * ub->dev_info.queue_depth;
1929 
1930 	return ub->nr_io_ready == total;
1931 }
1932 
1933 static void ublk_cancel_queue(struct ublk_queue *ubq)
1934 {
1935 	int i;
1936 
1937 	for (i = 0; i < ubq->q_depth; i++)
1938 		ublk_cancel_cmd(ubq, i, IO_URING_F_UNLOCKED);
1939 }
1940 
1941 /* Cancel all pending commands, must be called after del_gendisk() returns */
1942 static void ublk_cancel_dev(struct ublk_device *ub)
1943 {
1944 	int i;
1945 
1946 	for (i = 0; i < ub->dev_info.nr_hw_queues; i++)
1947 		ublk_cancel_queue(ublk_get_queue(ub, i));
1948 }
1949 
1950 static bool ublk_check_inflight_rq(struct request *rq, void *data)
1951 {
1952 	bool *idle = data;
1953 
1954 	if (blk_mq_request_started(rq)) {
1955 		*idle = false;
1956 		return false;
1957 	}
1958 	return true;
1959 }
1960 
1961 static void ublk_wait_tagset_rqs_idle(struct ublk_device *ub)
1962 {
1963 	bool idle;
1964 
1965 	WARN_ON_ONCE(!blk_queue_quiesced(ub->ub_disk->queue));
1966 	while (true) {
1967 		idle = true;
1968 		blk_mq_tagset_busy_iter(&ub->tag_set,
1969 				ublk_check_inflight_rq, &idle);
1970 		if (idle)
1971 			break;
1972 		msleep(UBLK_REQUEUE_DELAY_MS);
1973 	}
1974 }
1975 
1976 static void ublk_force_abort_dev(struct ublk_device *ub)
1977 {
1978 	int i;
1979 
1980 	pr_devel("%s: force abort ub: dev_id %d state %s\n",
1981 			__func__, ub->dev_info.dev_id,
1982 			ub->dev_info.state == UBLK_S_DEV_LIVE ?
1983 			"LIVE" : "QUIESCED");
1984 	blk_mq_quiesce_queue(ub->ub_disk->queue);
1985 	if (ub->dev_info.state == UBLK_S_DEV_LIVE)
1986 		ublk_wait_tagset_rqs_idle(ub);
1987 
1988 	for (i = 0; i < ub->dev_info.nr_hw_queues; i++)
1989 		ublk_get_queue(ub, i)->force_abort = true;
1990 	blk_mq_unquiesce_queue(ub->ub_disk->queue);
1991 	/* We may have requeued some rqs in ublk_quiesce_queue() */
1992 	blk_mq_kick_requeue_list(ub->ub_disk->queue);
1993 }
1994 
1995 static struct gendisk *ublk_detach_disk(struct ublk_device *ub)
1996 {
1997 	struct gendisk *disk;
1998 
1999 	/* Sync with ublk_abort_queue() by holding the lock */
2000 	spin_lock(&ub->lock);
2001 	disk = ub->ub_disk;
2002 	ub->dev_info.state = UBLK_S_DEV_DEAD;
2003 	ub->dev_info.ublksrv_pid = -1;
2004 	ub->ub_disk = NULL;
2005 	spin_unlock(&ub->lock);
2006 
2007 	return disk;
2008 }
2009 
2010 static void ublk_stop_dev_unlocked(struct ublk_device *ub)
2011 	__must_hold(&ub->mutex)
2012 {
2013 	struct gendisk *disk;
2014 
2015 	if (ub->dev_info.state == UBLK_S_DEV_DEAD)
2016 		return;
2017 
2018 	if (ublk_nosrv_dev_should_queue_io(ub))
2019 		ublk_force_abort_dev(ub);
2020 	del_gendisk(ub->ub_disk);
2021 	disk = ublk_detach_disk(ub);
2022 	put_disk(disk);
2023 }
2024 
2025 static void ublk_stop_dev(struct ublk_device *ub)
2026 {
2027 	mutex_lock(&ub->mutex);
2028 	ublk_stop_dev_unlocked(ub);
2029 	mutex_unlock(&ub->mutex);
2030 	ublk_cancel_dev(ub);
2031 }
2032 
2033 /* reset ublk io_uring queue & io flags */
2034 static void ublk_reset_io_flags(struct ublk_device *ub)
2035 {
2036 	int i, j;
2037 
2038 	for (i = 0; i < ub->dev_info.nr_hw_queues; i++) {
2039 		struct ublk_queue *ubq = ublk_get_queue(ub, i);
2040 
2041 		/* UBLK_IO_FLAG_CANCELED can be cleared now */
2042 		spin_lock(&ubq->cancel_lock);
2043 		for (j = 0; j < ubq->q_depth; j++)
2044 			ubq->ios[j].flags &= ~UBLK_IO_FLAG_CANCELED;
2045 		spin_unlock(&ubq->cancel_lock);
2046 		ubq->fail_io = false;
2047 	}
2048 	mutex_lock(&ub->cancel_mutex);
2049 	ublk_set_canceling(ub, false);
2050 	mutex_unlock(&ub->cancel_mutex);
2051 }
2052 
2053 /* device can only be started after all IOs are ready */
2054 static void ublk_mark_io_ready(struct ublk_device *ub)
2055 	__must_hold(&ub->mutex)
2056 {
2057 	if (!ub->unprivileged_daemons && !capable(CAP_SYS_ADMIN))
2058 		ub->unprivileged_daemons = true;
2059 
2060 	ub->nr_io_ready++;
2061 	if (ublk_dev_ready(ub)) {
2062 		/* now we are ready for handling ublk io request */
2063 		ublk_reset_io_flags(ub);
2064 		complete_all(&ub->completion);
2065 	}
2066 }
2067 
2068 static inline int ublk_check_cmd_op(u32 cmd_op)
2069 {
2070 	u32 ioc_type = _IOC_TYPE(cmd_op);
2071 
2072 	if (!IS_ENABLED(CONFIG_BLKDEV_UBLK_LEGACY_OPCODES) && ioc_type != 'u')
2073 		return -EOPNOTSUPP;
2074 
2075 	if (ioc_type != 'u' && ioc_type != 0)
2076 		return -EOPNOTSUPP;
2077 
2078 	return 0;
2079 }
2080 
2081 static inline int ublk_set_auto_buf_reg(struct ublk_io *io, struct io_uring_cmd *cmd)
2082 {
2083 	struct ublk_auto_buf_reg buf;
2084 
2085 	buf = ublk_sqe_addr_to_auto_buf_reg(READ_ONCE(cmd->sqe->addr));
2086 
2087 	if (buf.reserved0 || buf.reserved1)
2088 		return -EINVAL;
2089 
2090 	if (buf.flags & ~UBLK_AUTO_BUF_REG_F_MASK)
2091 		return -EINVAL;
2092 	io->buf.auto_reg = buf;
2093 	return 0;
2094 }
2095 
2096 static int ublk_handle_auto_buf_reg(struct ublk_io *io,
2097 				    struct io_uring_cmd *cmd,
2098 				    u16 *buf_idx)
2099 {
2100 	if (io->flags & UBLK_IO_FLAG_AUTO_BUF_REG) {
2101 		io->flags &= ~UBLK_IO_FLAG_AUTO_BUF_REG;
2102 
2103 		/*
2104 		 * `UBLK_F_AUTO_BUF_REG` only works iff `UBLK_IO_FETCH_REQ`
2105 		 * and `UBLK_IO_COMMIT_AND_FETCH_REQ` are issued from same
2106 		 * `io_ring_ctx`.
2107 		 *
2108 		 * If this uring_cmd's io_ring_ctx isn't same with the
2109 		 * one for registering the buffer, it is ublk server's
2110 		 * responsibility for unregistering the buffer, otherwise
2111 		 * this ublk request gets stuck.
2112 		 */
2113 		if (io->buf_ctx_handle == io_uring_cmd_ctx_handle(cmd))
2114 			*buf_idx = io->buf.auto_reg.index;
2115 	}
2116 
2117 	return ublk_set_auto_buf_reg(io, cmd);
2118 }
2119 
2120 /* Once we return, `io->req` can't be used any more */
2121 static inline struct request *
2122 ublk_fill_io_cmd(struct ublk_io *io, struct io_uring_cmd *cmd)
2123 {
2124 	struct request *req = io->req;
2125 
2126 	io->cmd = cmd;
2127 	io->flags |= UBLK_IO_FLAG_ACTIVE;
2128 	/* now this cmd slot is owned by ublk driver */
2129 	io->flags &= ~UBLK_IO_FLAG_OWNED_BY_SRV;
2130 
2131 	return req;
2132 }
2133 
2134 static inline int
2135 ublk_config_io_buf(const struct ublk_device *ub, struct ublk_io *io,
2136 		   struct io_uring_cmd *cmd, unsigned long buf_addr,
2137 		   u16 *buf_idx)
2138 {
2139 	if (ublk_dev_support_auto_buf_reg(ub))
2140 		return ublk_handle_auto_buf_reg(io, cmd, buf_idx);
2141 
2142 	io->buf.addr = buf_addr;
2143 	return 0;
2144 }
2145 
2146 static inline void ublk_prep_cancel(struct io_uring_cmd *cmd,
2147 				    unsigned int issue_flags,
2148 				    struct ublk_queue *ubq, unsigned int tag)
2149 {
2150 	struct ublk_uring_cmd_pdu *pdu = ublk_get_uring_cmd_pdu(cmd);
2151 
2152 	/*
2153 	 * Safe to refer to @ubq since ublk_queue won't be died until its
2154 	 * commands are completed
2155 	 */
2156 	pdu->ubq = ubq;
2157 	pdu->tag = tag;
2158 	io_uring_cmd_mark_cancelable(cmd, issue_flags);
2159 }
2160 
2161 static void ublk_io_release(void *priv)
2162 {
2163 	struct request *rq = priv;
2164 	struct ublk_queue *ubq = rq->mq_hctx->driver_data;
2165 	struct ublk_io *io = &ubq->ios[rq->tag];
2166 
2167 	/*
2168 	 * task_registered_buffers may be 0 if buffers were registered off task
2169 	 * but unregistered on task. Or after UBLK_IO_COMMIT_AND_FETCH_REQ.
2170 	 */
2171 	if (current == io->task && io->task_registered_buffers)
2172 		io->task_registered_buffers--;
2173 	else
2174 		ublk_put_req_ref(io, rq);
2175 }
2176 
2177 static int ublk_register_io_buf(struct io_uring_cmd *cmd,
2178 				struct ublk_device *ub,
2179 				u16 q_id, u16 tag,
2180 				struct ublk_io *io,
2181 				unsigned int index, unsigned int issue_flags)
2182 {
2183 	struct request *req;
2184 	int ret;
2185 
2186 	if (!ublk_dev_support_zero_copy(ub))
2187 		return -EINVAL;
2188 
2189 	req = __ublk_check_and_get_req(ub, q_id, tag, io, 0);
2190 	if (!req)
2191 		return -EINVAL;
2192 
2193 	ret = io_buffer_register_bvec(cmd, req, ublk_io_release, index,
2194 				      issue_flags);
2195 	if (ret) {
2196 		ublk_put_req_ref(io, req);
2197 		return ret;
2198 	}
2199 
2200 	return 0;
2201 }
2202 
2203 static int
2204 ublk_daemon_register_io_buf(struct io_uring_cmd *cmd,
2205 			    struct ublk_device *ub,
2206 			    u16 q_id, u16 tag, struct ublk_io *io,
2207 			    unsigned index, unsigned issue_flags)
2208 {
2209 	unsigned new_registered_buffers;
2210 	struct request *req = io->req;
2211 	int ret;
2212 
2213 	/*
2214 	 * Ensure there are still references for ublk_sub_req_ref() to release.
2215 	 * If not, fall back on the thread-safe buffer registration.
2216 	 */
2217 	new_registered_buffers = io->task_registered_buffers + 1;
2218 	if (unlikely(new_registered_buffers >= UBLK_REFCOUNT_INIT))
2219 		return ublk_register_io_buf(cmd, ub, q_id, tag, io, index,
2220 					    issue_flags);
2221 
2222 	if (!ublk_dev_support_zero_copy(ub) || !ublk_rq_has_data(req))
2223 		return -EINVAL;
2224 
2225 	ret = io_buffer_register_bvec(cmd, req, ublk_io_release, index,
2226 				      issue_flags);
2227 	if (ret)
2228 		return ret;
2229 
2230 	io->task_registered_buffers = new_registered_buffers;
2231 	return 0;
2232 }
2233 
2234 static int ublk_unregister_io_buf(struct io_uring_cmd *cmd,
2235 				  const struct ublk_device *ub,
2236 				  unsigned int index, unsigned int issue_flags)
2237 {
2238 	if (!(ub->dev_info.flags & UBLK_F_SUPPORT_ZERO_COPY))
2239 		return -EINVAL;
2240 
2241 	return io_buffer_unregister_bvec(cmd, index, issue_flags);
2242 }
2243 
2244 static int ublk_check_fetch_buf(const struct ublk_device *ub, __u64 buf_addr)
2245 {
2246 	if (ublk_dev_need_map_io(ub)) {
2247 		/*
2248 		 * FETCH_RQ has to provide IO buffer if NEED GET
2249 		 * DATA is not enabled
2250 		 */
2251 		if (!buf_addr && !ublk_dev_need_get_data(ub))
2252 			return -EINVAL;
2253 	} else if (buf_addr) {
2254 		/* User copy requires addr to be unset */
2255 		return -EINVAL;
2256 	}
2257 	return 0;
2258 }
2259 
2260 static int __ublk_fetch(struct io_uring_cmd *cmd, struct ublk_device *ub,
2261 			struct ublk_io *io)
2262 {
2263 	/* UBLK_IO_FETCH_REQ is only allowed before dev is setup */
2264 	if (ublk_dev_ready(ub))
2265 		return -EBUSY;
2266 
2267 	/* allow each command to be FETCHed at most once */
2268 	if (io->flags & UBLK_IO_FLAG_ACTIVE)
2269 		return -EINVAL;
2270 
2271 	WARN_ON_ONCE(io->flags & UBLK_IO_FLAG_OWNED_BY_SRV);
2272 
2273 	ublk_fill_io_cmd(io, cmd);
2274 
2275 	WRITE_ONCE(io->task, get_task_struct(current));
2276 	ublk_mark_io_ready(ub);
2277 
2278 	return 0;
2279 }
2280 
2281 static int ublk_fetch(struct io_uring_cmd *cmd, struct ublk_device *ub,
2282 		      struct ublk_io *io, __u64 buf_addr)
2283 {
2284 	int ret;
2285 
2286 	/*
2287 	 * When handling FETCH command for setting up ublk uring queue,
2288 	 * ub->mutex is the innermost lock, and we won't block for handling
2289 	 * FETCH, so it is fine even for IO_URING_F_NONBLOCK.
2290 	 */
2291 	mutex_lock(&ub->mutex);
2292 	ret = __ublk_fetch(cmd, ub, io);
2293 	if (!ret)
2294 		ret = ublk_config_io_buf(ub, io, cmd, buf_addr, NULL);
2295 	mutex_unlock(&ub->mutex);
2296 	return ret;
2297 }
2298 
2299 static int ublk_check_commit_and_fetch(const struct ublk_device *ub,
2300 				       struct ublk_io *io, __u64 buf_addr)
2301 {
2302 	struct request *req = io->req;
2303 
2304 	if (ublk_dev_need_map_io(ub)) {
2305 		/*
2306 		 * COMMIT_AND_FETCH_REQ has to provide IO buffer if
2307 		 * NEED GET DATA is not enabled or it is Read IO.
2308 		 */
2309 		if (!buf_addr && (!ublk_dev_need_get_data(ub) ||
2310 					req_op(req) == REQ_OP_READ))
2311 			return -EINVAL;
2312 	} else if (req_op(req) != REQ_OP_ZONE_APPEND && buf_addr) {
2313 		/*
2314 		 * User copy requires addr to be unset when command is
2315 		 * not zone append
2316 		 */
2317 		return -EINVAL;
2318 	}
2319 
2320 	return 0;
2321 }
2322 
2323 static bool ublk_need_complete_req(const struct ublk_device *ub,
2324 				   struct ublk_io *io)
2325 {
2326 	if (ublk_dev_need_req_ref(ub))
2327 		return ublk_sub_req_ref(io);
2328 	return true;
2329 }
2330 
2331 static bool ublk_get_data(const struct ublk_queue *ubq, struct ublk_io *io,
2332 			  struct request *req)
2333 {
2334 	/*
2335 	 * We have handled UBLK_IO_NEED_GET_DATA command,
2336 	 * so clear UBLK_IO_FLAG_NEED_GET_DATA now and just
2337 	 * do the copy work.
2338 	 */
2339 	io->flags &= ~UBLK_IO_FLAG_NEED_GET_DATA;
2340 	/* update iod->addr because ublksrv may have passed a new io buffer */
2341 	ublk_get_iod(ubq, req->tag)->addr = io->buf.addr;
2342 	pr_devel("%s: update iod->addr: qid %d tag %d io_flags %x addr %llx\n",
2343 			__func__, ubq->q_id, req->tag, io->flags,
2344 			ublk_get_iod(ubq, req->tag)->addr);
2345 
2346 	return ublk_start_io(ubq, req, io);
2347 }
2348 
2349 static int ublk_ch_uring_cmd_local(struct io_uring_cmd *cmd,
2350 		unsigned int issue_flags)
2351 {
2352 	/* May point to userspace-mapped memory */
2353 	const struct ublksrv_io_cmd *ub_src = io_uring_sqe_cmd(cmd->sqe);
2354 	u16 buf_idx = UBLK_INVALID_BUF_IDX;
2355 	struct ublk_device *ub = cmd->file->private_data;
2356 	struct ublk_queue *ubq;
2357 	struct ublk_io *io = NULL;
2358 	u32 cmd_op = cmd->cmd_op;
2359 	u16 q_id = READ_ONCE(ub_src->q_id);
2360 	u16 tag = READ_ONCE(ub_src->tag);
2361 	s32 result = READ_ONCE(ub_src->result);
2362 	u64 addr = READ_ONCE(ub_src->addr); /* unioned with zone_append_lba */
2363 	struct request *req;
2364 	int ret;
2365 	bool compl;
2366 
2367 	WARN_ON_ONCE(issue_flags & IO_URING_F_UNLOCKED);
2368 
2369 	pr_devel("%s: received: cmd op %d queue %d tag %d result %d\n",
2370 			__func__, cmd->cmd_op, q_id, tag, result);
2371 
2372 	ret = ublk_check_cmd_op(cmd_op);
2373 	if (ret)
2374 		goto out;
2375 
2376 	/*
2377 	 * io_buffer_unregister_bvec() doesn't access the ubq or io,
2378 	 * so no need to validate the q_id, tag, or task
2379 	 */
2380 	if (_IOC_NR(cmd_op) == UBLK_IO_UNREGISTER_IO_BUF)
2381 		return ublk_unregister_io_buf(cmd, ub, addr, issue_flags);
2382 
2383 	ret = -EINVAL;
2384 	if (q_id >= ub->dev_info.nr_hw_queues)
2385 		goto out;
2386 
2387 	ubq = ublk_get_queue(ub, q_id);
2388 
2389 	if (tag >= ub->dev_info.queue_depth)
2390 		goto out;
2391 
2392 	io = &ubq->ios[tag];
2393 	/* UBLK_IO_FETCH_REQ can be handled on any task, which sets io->task */
2394 	if (unlikely(_IOC_NR(cmd_op) == UBLK_IO_FETCH_REQ)) {
2395 		ret = ublk_check_fetch_buf(ub, addr);
2396 		if (ret)
2397 			goto out;
2398 		ret = ublk_fetch(cmd, ub, io, addr);
2399 		if (ret)
2400 			goto out;
2401 
2402 		ublk_prep_cancel(cmd, issue_flags, ubq, tag);
2403 		return -EIOCBQUEUED;
2404 	}
2405 
2406 	if (READ_ONCE(io->task) != current) {
2407 		/*
2408 		 * ublk_register_io_buf() accesses only the io's refcount,
2409 		 * so can be handled on any task
2410 		 */
2411 		if (_IOC_NR(cmd_op) == UBLK_IO_REGISTER_IO_BUF)
2412 			return ublk_register_io_buf(cmd, ub, q_id, tag, io,
2413 						    addr, issue_flags);
2414 
2415 		goto out;
2416 	}
2417 
2418 	/* there is pending io cmd, something must be wrong */
2419 	if (!(io->flags & UBLK_IO_FLAG_OWNED_BY_SRV)) {
2420 		ret = -EBUSY;
2421 		goto out;
2422 	}
2423 
2424 	/*
2425 	 * ensure that the user issues UBLK_IO_NEED_GET_DATA
2426 	 * iff the driver have set the UBLK_IO_FLAG_NEED_GET_DATA.
2427 	 */
2428 	if ((!!(io->flags & UBLK_IO_FLAG_NEED_GET_DATA))
2429 			^ (_IOC_NR(cmd_op) == UBLK_IO_NEED_GET_DATA))
2430 		goto out;
2431 
2432 	switch (_IOC_NR(cmd_op)) {
2433 	case UBLK_IO_REGISTER_IO_BUF:
2434 		return ublk_daemon_register_io_buf(cmd, ub, q_id, tag, io, addr,
2435 						   issue_flags);
2436 	case UBLK_IO_COMMIT_AND_FETCH_REQ:
2437 		ret = ublk_check_commit_and_fetch(ub, io, addr);
2438 		if (ret)
2439 			goto out;
2440 		io->res = result;
2441 		req = ublk_fill_io_cmd(io, cmd);
2442 		ret = ublk_config_io_buf(ub, io, cmd, addr, &buf_idx);
2443 		compl = ublk_need_complete_req(ub, io);
2444 
2445 		/* can't touch 'ublk_io' any more */
2446 		if (buf_idx != UBLK_INVALID_BUF_IDX)
2447 			io_buffer_unregister_bvec(cmd, buf_idx, issue_flags);
2448 		if (req_op(req) == REQ_OP_ZONE_APPEND)
2449 			req->__sector = addr;
2450 		if (compl)
2451 			__ublk_complete_rq(req, io, ublk_dev_need_map_io(ub));
2452 
2453 		if (ret)
2454 			goto out;
2455 		break;
2456 	case UBLK_IO_NEED_GET_DATA:
2457 		/*
2458 		 * ublk_get_data() may fail and fallback to requeue, so keep
2459 		 * uring_cmd active first and prepare for handling new requeued
2460 		 * request
2461 		 */
2462 		req = ublk_fill_io_cmd(io, cmd);
2463 		ret = ublk_config_io_buf(ub, io, cmd, addr, NULL);
2464 		WARN_ON_ONCE(ret);
2465 		if (likely(ublk_get_data(ubq, io, req))) {
2466 			__ublk_prep_compl_io_cmd(io, req);
2467 			return UBLK_IO_RES_OK;
2468 		}
2469 		break;
2470 	default:
2471 		goto out;
2472 	}
2473 	ublk_prep_cancel(cmd, issue_flags, ubq, tag);
2474 	return -EIOCBQUEUED;
2475 
2476  out:
2477 	pr_devel("%s: complete: cmd op %d, tag %d ret %x io_flags %x\n",
2478 			__func__, cmd_op, tag, ret, io ? io->flags : 0);
2479 	return ret;
2480 }
2481 
2482 static inline struct request *__ublk_check_and_get_req(struct ublk_device *ub,
2483 		u16 q_id, u16 tag, struct ublk_io *io, size_t offset)
2484 {
2485 	struct request *req;
2486 
2487 	/*
2488 	 * can't use io->req in case of concurrent UBLK_IO_COMMIT_AND_FETCH_REQ,
2489 	 * which would overwrite it with io->cmd
2490 	 */
2491 	req = blk_mq_tag_to_rq(ub->tag_set.tags[q_id], tag);
2492 	if (!req)
2493 		return NULL;
2494 
2495 	if (!ublk_get_req_ref(io))
2496 		return NULL;
2497 
2498 	if (unlikely(!blk_mq_request_started(req) || req->tag != tag))
2499 		goto fail_put;
2500 
2501 	if (!ublk_rq_has_data(req))
2502 		goto fail_put;
2503 
2504 	if (offset > blk_rq_bytes(req))
2505 		goto fail_put;
2506 
2507 	return req;
2508 fail_put:
2509 	ublk_put_req_ref(io, req);
2510 	return NULL;
2511 }
2512 
2513 static void ublk_ch_uring_cmd_cb(struct io_tw_req tw_req, io_tw_token_t tw)
2514 {
2515 	unsigned int issue_flags = IO_URING_CMD_TASK_WORK_ISSUE_FLAGS;
2516 	struct io_uring_cmd *cmd = io_uring_cmd_from_tw(tw_req);
2517 	int ret = ublk_ch_uring_cmd_local(cmd, issue_flags);
2518 
2519 	if (ret != -EIOCBQUEUED)
2520 		io_uring_cmd_done(cmd, ret, issue_flags);
2521 }
2522 
2523 static int ublk_ch_uring_cmd(struct io_uring_cmd *cmd, unsigned int issue_flags)
2524 {
2525 	if (unlikely(issue_flags & IO_URING_F_CANCEL)) {
2526 		ublk_uring_cmd_cancel_fn(cmd, issue_flags);
2527 		return 0;
2528 	}
2529 
2530 	/* well-implemented server won't run into unlocked */
2531 	if (unlikely(issue_flags & IO_URING_F_UNLOCKED)) {
2532 		io_uring_cmd_complete_in_task(cmd, ublk_ch_uring_cmd_cb);
2533 		return -EIOCBQUEUED;
2534 	}
2535 
2536 	return ublk_ch_uring_cmd_local(cmd, issue_flags);
2537 }
2538 
2539 static inline bool ublk_check_ubuf_dir(const struct request *req,
2540 		int ubuf_dir)
2541 {
2542 	/* copy ubuf to request pages */
2543 	if ((req_op(req) == REQ_OP_READ || req_op(req) == REQ_OP_DRV_IN) &&
2544 	    ubuf_dir == ITER_SOURCE)
2545 		return true;
2546 
2547 	/* copy request pages to ubuf */
2548 	if ((req_op(req) == REQ_OP_WRITE ||
2549 	     req_op(req) == REQ_OP_ZONE_APPEND) &&
2550 	    ubuf_dir == ITER_DEST)
2551 		return true;
2552 
2553 	return false;
2554 }
2555 
2556 static struct request *ublk_check_and_get_req(struct kiocb *iocb,
2557 		struct iov_iter *iter, size_t *off, int dir,
2558 		struct ublk_io **io)
2559 {
2560 	struct ublk_device *ub = iocb->ki_filp->private_data;
2561 	struct ublk_queue *ubq;
2562 	struct request *req;
2563 	size_t buf_off;
2564 	u16 tag, q_id;
2565 
2566 	if (!user_backed_iter(iter))
2567 		return ERR_PTR(-EACCES);
2568 
2569 	if (ub->dev_info.state == UBLK_S_DEV_DEAD)
2570 		return ERR_PTR(-EACCES);
2571 
2572 	tag = ublk_pos_to_tag(iocb->ki_pos);
2573 	q_id = ublk_pos_to_hwq(iocb->ki_pos);
2574 	buf_off = ublk_pos_to_buf_off(iocb->ki_pos);
2575 
2576 	if (q_id >= ub->dev_info.nr_hw_queues)
2577 		return ERR_PTR(-EINVAL);
2578 
2579 	ubq = ublk_get_queue(ub, q_id);
2580 	if (!ublk_dev_support_user_copy(ub))
2581 		return ERR_PTR(-EACCES);
2582 
2583 	if (tag >= ub->dev_info.queue_depth)
2584 		return ERR_PTR(-EINVAL);
2585 
2586 	*io = &ubq->ios[tag];
2587 	req = __ublk_check_and_get_req(ub, q_id, tag, *io, buf_off);
2588 	if (!req)
2589 		return ERR_PTR(-EINVAL);
2590 
2591 	if (!ublk_check_ubuf_dir(req, dir))
2592 		goto fail;
2593 
2594 	*off = buf_off;
2595 	return req;
2596 fail:
2597 	ublk_put_req_ref(*io, req);
2598 	return ERR_PTR(-EACCES);
2599 }
2600 
2601 static ssize_t ublk_ch_read_iter(struct kiocb *iocb, struct iov_iter *to)
2602 {
2603 	struct request *req;
2604 	struct ublk_io *io;
2605 	size_t buf_off;
2606 	size_t ret;
2607 
2608 	req = ublk_check_and_get_req(iocb, to, &buf_off, ITER_DEST, &io);
2609 	if (IS_ERR(req))
2610 		return PTR_ERR(req);
2611 
2612 	ret = ublk_copy_user_pages(req, buf_off, to, ITER_DEST);
2613 	ublk_put_req_ref(io, req);
2614 
2615 	return ret;
2616 }
2617 
2618 static ssize_t ublk_ch_write_iter(struct kiocb *iocb, struct iov_iter *from)
2619 {
2620 	struct request *req;
2621 	struct ublk_io *io;
2622 	size_t buf_off;
2623 	size_t ret;
2624 
2625 	req = ublk_check_and_get_req(iocb, from, &buf_off, ITER_SOURCE, &io);
2626 	if (IS_ERR(req))
2627 		return PTR_ERR(req);
2628 
2629 	ret = ublk_copy_user_pages(req, buf_off, from, ITER_SOURCE);
2630 	ublk_put_req_ref(io, req);
2631 
2632 	return ret;
2633 }
2634 
2635 static const struct file_operations ublk_ch_fops = {
2636 	.owner = THIS_MODULE,
2637 	.open = ublk_ch_open,
2638 	.release = ublk_ch_release,
2639 	.read_iter = ublk_ch_read_iter,
2640 	.write_iter = ublk_ch_write_iter,
2641 	.uring_cmd = ublk_ch_uring_cmd,
2642 	.mmap = ublk_ch_mmap,
2643 };
2644 
2645 static void ublk_deinit_queue(struct ublk_device *ub, int q_id)
2646 {
2647 	struct ublk_queue *ubq = ub->queues[q_id];
2648 	int size, i;
2649 
2650 	if (!ubq)
2651 		return;
2652 
2653 	size = ublk_queue_cmd_buf_size(ub);
2654 
2655 	for (i = 0; i < ubq->q_depth; i++) {
2656 		struct ublk_io *io = &ubq->ios[i];
2657 		if (io->task)
2658 			put_task_struct(io->task);
2659 		WARN_ON_ONCE(refcount_read(&io->ref));
2660 		WARN_ON_ONCE(io->task_registered_buffers);
2661 	}
2662 
2663 	if (ubq->io_cmd_buf)
2664 		free_pages((unsigned long)ubq->io_cmd_buf, get_order(size));
2665 
2666 	kvfree(ubq);
2667 	ub->queues[q_id] = NULL;
2668 }
2669 
2670 static int ublk_get_queue_numa_node(struct ublk_device *ub, int q_id)
2671 {
2672 	unsigned int cpu;
2673 
2674 	/* Find first CPU mapped to this queue */
2675 	for_each_possible_cpu(cpu) {
2676 		if (ub->tag_set.map[HCTX_TYPE_DEFAULT].mq_map[cpu] == q_id)
2677 			return cpu_to_node(cpu);
2678 	}
2679 
2680 	return NUMA_NO_NODE;
2681 }
2682 
2683 static int ublk_init_queue(struct ublk_device *ub, int q_id)
2684 {
2685 	int depth = ub->dev_info.queue_depth;
2686 	gfp_t gfp_flags = GFP_KERNEL | __GFP_ZERO;
2687 	struct ublk_queue *ubq;
2688 	struct page *page;
2689 	int numa_node;
2690 	int size;
2691 
2692 	/* Determine NUMA node based on queue's CPU affinity */
2693 	numa_node = ublk_get_queue_numa_node(ub, q_id);
2694 
2695 	/* Allocate queue structure on local NUMA node */
2696 	ubq = kvzalloc_node(struct_size(ubq, ios, depth), GFP_KERNEL,
2697 			    numa_node);
2698 	if (!ubq)
2699 		return -ENOMEM;
2700 
2701 	spin_lock_init(&ubq->cancel_lock);
2702 	ubq->flags = ub->dev_info.flags;
2703 	ubq->q_id = q_id;
2704 	ubq->q_depth = depth;
2705 	size = ublk_queue_cmd_buf_size(ub);
2706 
2707 	/* Allocate I/O command buffer on local NUMA node */
2708 	page = alloc_pages_node(numa_node, gfp_flags, get_order(size));
2709 	if (!page) {
2710 		kvfree(ubq);
2711 		return -ENOMEM;
2712 	}
2713 	ubq->io_cmd_buf = page_address(page);
2714 
2715 	ub->queues[q_id] = ubq;
2716 	ubq->dev = ub;
2717 	return 0;
2718 }
2719 
2720 static void ublk_deinit_queues(struct ublk_device *ub)
2721 {
2722 	int i;
2723 
2724 	for (i = 0; i < ub->dev_info.nr_hw_queues; i++)
2725 		ublk_deinit_queue(ub, i);
2726 }
2727 
2728 static int ublk_init_queues(struct ublk_device *ub)
2729 {
2730 	int i, ret;
2731 
2732 	for (i = 0; i < ub->dev_info.nr_hw_queues; i++) {
2733 		ret = ublk_init_queue(ub, i);
2734 		if (ret)
2735 			goto fail;
2736 	}
2737 
2738 	init_completion(&ub->completion);
2739 	return 0;
2740 
2741  fail:
2742 	ublk_deinit_queues(ub);
2743 	return ret;
2744 }
2745 
2746 static int ublk_alloc_dev_number(struct ublk_device *ub, int idx)
2747 {
2748 	int i = idx;
2749 	int err;
2750 
2751 	spin_lock(&ublk_idr_lock);
2752 	/* allocate id, if @id >= 0, we're requesting that specific id */
2753 	if (i >= 0) {
2754 		err = idr_alloc(&ublk_index_idr, ub, i, i + 1, GFP_NOWAIT);
2755 		if (err == -ENOSPC)
2756 			err = -EEXIST;
2757 	} else {
2758 		err = idr_alloc(&ublk_index_idr, ub, 0, UBLK_MAX_UBLKS,
2759 				GFP_NOWAIT);
2760 	}
2761 	spin_unlock(&ublk_idr_lock);
2762 
2763 	if (err >= 0)
2764 		ub->ub_number = err;
2765 
2766 	return err;
2767 }
2768 
2769 static void ublk_free_dev_number(struct ublk_device *ub)
2770 {
2771 	spin_lock(&ublk_idr_lock);
2772 	idr_remove(&ublk_index_idr, ub->ub_number);
2773 	wake_up_all(&ublk_idr_wq);
2774 	spin_unlock(&ublk_idr_lock);
2775 }
2776 
2777 static void ublk_cdev_rel(struct device *dev)
2778 {
2779 	struct ublk_device *ub = container_of(dev, struct ublk_device, cdev_dev);
2780 
2781 	blk_mq_free_tag_set(&ub->tag_set);
2782 	ublk_deinit_queues(ub);
2783 	ublk_free_dev_number(ub);
2784 	mutex_destroy(&ub->mutex);
2785 	mutex_destroy(&ub->cancel_mutex);
2786 	kfree(ub);
2787 }
2788 
2789 static int ublk_add_chdev(struct ublk_device *ub)
2790 {
2791 	struct device *dev = &ub->cdev_dev;
2792 	int minor = ub->ub_number;
2793 	int ret;
2794 
2795 	dev->parent = ublk_misc.this_device;
2796 	dev->devt = MKDEV(MAJOR(ublk_chr_devt), minor);
2797 	dev->class = &ublk_chr_class;
2798 	dev->release = ublk_cdev_rel;
2799 	device_initialize(dev);
2800 
2801 	ret = dev_set_name(dev, "ublkc%d", minor);
2802 	if (ret)
2803 		goto fail;
2804 
2805 	cdev_init(&ub->cdev, &ublk_ch_fops);
2806 	ret = cdev_device_add(&ub->cdev, dev);
2807 	if (ret)
2808 		goto fail;
2809 
2810 	if (ub->dev_info.flags & UBLK_F_UNPRIVILEGED_DEV)
2811 		unprivileged_ublks_added++;
2812 	return 0;
2813  fail:
2814 	put_device(dev);
2815 	return ret;
2816 }
2817 
2818 /* align max io buffer size with PAGE_SIZE */
2819 static void ublk_align_max_io_size(struct ublk_device *ub)
2820 {
2821 	unsigned int max_io_bytes = ub->dev_info.max_io_buf_bytes;
2822 
2823 	ub->dev_info.max_io_buf_bytes =
2824 		round_down(max_io_bytes, PAGE_SIZE);
2825 }
2826 
2827 static int ublk_add_tag_set(struct ublk_device *ub)
2828 {
2829 	ub->tag_set.ops = &ublk_mq_ops;
2830 	ub->tag_set.nr_hw_queues = ub->dev_info.nr_hw_queues;
2831 	ub->tag_set.queue_depth = ub->dev_info.queue_depth;
2832 	ub->tag_set.numa_node = NUMA_NO_NODE;
2833 	ub->tag_set.driver_data = ub;
2834 	return blk_mq_alloc_tag_set(&ub->tag_set);
2835 }
2836 
2837 static void ublk_remove(struct ublk_device *ub)
2838 {
2839 	bool unprivileged;
2840 
2841 	ublk_stop_dev(ub);
2842 	cdev_device_del(&ub->cdev, &ub->cdev_dev);
2843 	unprivileged = ub->dev_info.flags & UBLK_F_UNPRIVILEGED_DEV;
2844 	ublk_put_device(ub);
2845 
2846 	if (unprivileged)
2847 		unprivileged_ublks_added--;
2848 }
2849 
2850 static struct ublk_device *ublk_get_device_from_id(int idx)
2851 {
2852 	struct ublk_device *ub = NULL;
2853 
2854 	if (idx < 0)
2855 		return NULL;
2856 
2857 	spin_lock(&ublk_idr_lock);
2858 	ub = idr_find(&ublk_index_idr, idx);
2859 	if (ub)
2860 		ub = ublk_get_device(ub);
2861 	spin_unlock(&ublk_idr_lock);
2862 
2863 	return ub;
2864 }
2865 
2866 static int ublk_ctrl_start_dev(struct ublk_device *ub,
2867 		const struct ublksrv_ctrl_cmd *header)
2868 {
2869 	const struct ublk_param_basic *p = &ub->params.basic;
2870 	int ublksrv_pid = (int)header->data[0];
2871 	struct queue_limits lim = {
2872 		.logical_block_size	= 1 << p->logical_bs_shift,
2873 		.physical_block_size	= 1 << p->physical_bs_shift,
2874 		.io_min			= 1 << p->io_min_shift,
2875 		.io_opt			= 1 << p->io_opt_shift,
2876 		.max_hw_sectors		= p->max_sectors,
2877 		.chunk_sectors		= p->chunk_sectors,
2878 		.virt_boundary_mask	= p->virt_boundary_mask,
2879 		.max_segments		= USHRT_MAX,
2880 		.max_segment_size	= UINT_MAX,
2881 		.dma_alignment		= 3,
2882 	};
2883 	struct gendisk *disk;
2884 	int ret = -EINVAL;
2885 
2886 	if (ublksrv_pid <= 0)
2887 		return -EINVAL;
2888 	if (!(ub->params.types & UBLK_PARAM_TYPE_BASIC))
2889 		return -EINVAL;
2890 
2891 	if (ub->params.types & UBLK_PARAM_TYPE_DISCARD) {
2892 		const struct ublk_param_discard *pd = &ub->params.discard;
2893 
2894 		lim.discard_alignment = pd->discard_alignment;
2895 		lim.discard_granularity = pd->discard_granularity;
2896 		lim.max_hw_discard_sectors = pd->max_discard_sectors;
2897 		lim.max_write_zeroes_sectors = pd->max_write_zeroes_sectors;
2898 		lim.max_discard_segments = pd->max_discard_segments;
2899 	}
2900 
2901 	if (ub->params.types & UBLK_PARAM_TYPE_ZONED) {
2902 		const struct ublk_param_zoned *p = &ub->params.zoned;
2903 
2904 		if (!IS_ENABLED(CONFIG_BLK_DEV_ZONED))
2905 			return -EOPNOTSUPP;
2906 
2907 		lim.features |= BLK_FEAT_ZONED;
2908 		lim.max_active_zones = p->max_active_zones;
2909 		lim.max_open_zones =  p->max_open_zones;
2910 		lim.max_hw_zone_append_sectors = p->max_zone_append_sectors;
2911 	}
2912 
2913 	if (ub->params.basic.attrs & UBLK_ATTR_VOLATILE_CACHE) {
2914 		lim.features |= BLK_FEAT_WRITE_CACHE;
2915 		if (ub->params.basic.attrs & UBLK_ATTR_FUA)
2916 			lim.features |= BLK_FEAT_FUA;
2917 	}
2918 
2919 	if (ub->params.basic.attrs & UBLK_ATTR_ROTATIONAL)
2920 		lim.features |= BLK_FEAT_ROTATIONAL;
2921 
2922 	if (ub->params.types & UBLK_PARAM_TYPE_DMA_ALIGN)
2923 		lim.dma_alignment = ub->params.dma.alignment;
2924 
2925 	if (ub->params.types & UBLK_PARAM_TYPE_SEGMENT) {
2926 		lim.seg_boundary_mask = ub->params.seg.seg_boundary_mask;
2927 		lim.max_segment_size = ub->params.seg.max_segment_size;
2928 		lim.max_segments = ub->params.seg.max_segments;
2929 	}
2930 
2931 	if (wait_for_completion_interruptible(&ub->completion) != 0)
2932 		return -EINTR;
2933 
2934 	if (ub->ublksrv_tgid != ublksrv_pid)
2935 		return -EINVAL;
2936 
2937 	mutex_lock(&ub->mutex);
2938 	if (ub->dev_info.state == UBLK_S_DEV_LIVE ||
2939 	    test_bit(UB_STATE_USED, &ub->state)) {
2940 		ret = -EEXIST;
2941 		goto out_unlock;
2942 	}
2943 
2944 	disk = blk_mq_alloc_disk(&ub->tag_set, &lim, NULL);
2945 	if (IS_ERR(disk)) {
2946 		ret = PTR_ERR(disk);
2947 		goto out_unlock;
2948 	}
2949 	sprintf(disk->disk_name, "ublkb%d", ub->ub_number);
2950 	disk->fops = &ub_fops;
2951 	disk->private_data = ub;
2952 
2953 	ub->dev_info.ublksrv_pid = ublksrv_pid;
2954 	ub->ub_disk = disk;
2955 
2956 	ublk_apply_params(ub);
2957 
2958 	/* don't probe partitions if any daemon task is un-trusted */
2959 	if (ub->unprivileged_daemons)
2960 		set_bit(GD_SUPPRESS_PART_SCAN, &disk->state);
2961 
2962 	ublk_get_device(ub);
2963 	ub->dev_info.state = UBLK_S_DEV_LIVE;
2964 
2965 	if (ublk_dev_is_zoned(ub)) {
2966 		ret = ublk_revalidate_disk_zones(ub);
2967 		if (ret)
2968 			goto out_put_cdev;
2969 	}
2970 
2971 	ret = add_disk(disk);
2972 	if (ret)
2973 		goto out_put_cdev;
2974 
2975 	set_bit(UB_STATE_USED, &ub->state);
2976 
2977 out_put_cdev:
2978 	if (ret) {
2979 		ublk_detach_disk(ub);
2980 		ublk_put_device(ub);
2981 	}
2982 	if (ret)
2983 		put_disk(disk);
2984 out_unlock:
2985 	mutex_unlock(&ub->mutex);
2986 	return ret;
2987 }
2988 
2989 static int ublk_ctrl_get_queue_affinity(struct ublk_device *ub,
2990 		const struct ublksrv_ctrl_cmd *header)
2991 {
2992 	void __user *argp = (void __user *)(unsigned long)header->addr;
2993 	cpumask_var_t cpumask;
2994 	unsigned long queue;
2995 	unsigned int retlen;
2996 	unsigned int i;
2997 	int ret;
2998 
2999 	if (header->len * BITS_PER_BYTE < nr_cpu_ids)
3000 		return -EINVAL;
3001 	if (header->len & (sizeof(unsigned long)-1))
3002 		return -EINVAL;
3003 	if (!header->addr)
3004 		return -EINVAL;
3005 
3006 	queue = header->data[0];
3007 	if (queue >= ub->dev_info.nr_hw_queues)
3008 		return -EINVAL;
3009 
3010 	if (!zalloc_cpumask_var(&cpumask, GFP_KERNEL))
3011 		return -ENOMEM;
3012 
3013 	for_each_possible_cpu(i) {
3014 		if (ub->tag_set.map[HCTX_TYPE_DEFAULT].mq_map[i] == queue)
3015 			cpumask_set_cpu(i, cpumask);
3016 	}
3017 
3018 	ret = -EFAULT;
3019 	retlen = min_t(unsigned short, header->len, cpumask_size());
3020 	if (copy_to_user(argp, cpumask, retlen))
3021 		goto out_free_cpumask;
3022 	if (retlen != header->len &&
3023 	    clear_user(argp + retlen, header->len - retlen))
3024 		goto out_free_cpumask;
3025 
3026 	ret = 0;
3027 out_free_cpumask:
3028 	free_cpumask_var(cpumask);
3029 	return ret;
3030 }
3031 
3032 static inline void ublk_dump_dev_info(struct ublksrv_ctrl_dev_info *info)
3033 {
3034 	pr_devel("%s: dev id %d flags %llx\n", __func__,
3035 			info->dev_id, info->flags);
3036 	pr_devel("\t nr_hw_queues %d queue_depth %d\n",
3037 			info->nr_hw_queues, info->queue_depth);
3038 }
3039 
3040 static int ublk_ctrl_add_dev(const struct ublksrv_ctrl_cmd *header)
3041 {
3042 	void __user *argp = (void __user *)(unsigned long)header->addr;
3043 	struct ublksrv_ctrl_dev_info info;
3044 	struct ublk_device *ub;
3045 	int ret = -EINVAL;
3046 
3047 	if (header->len < sizeof(info) || !header->addr)
3048 		return -EINVAL;
3049 	if (header->queue_id != (u16)-1) {
3050 		pr_warn("%s: queue_id is wrong %x\n",
3051 			__func__, header->queue_id);
3052 		return -EINVAL;
3053 	}
3054 
3055 	if (copy_from_user(&info, argp, sizeof(info)))
3056 		return -EFAULT;
3057 
3058 	if (info.queue_depth > UBLK_MAX_QUEUE_DEPTH || !info.queue_depth ||
3059 	    info.nr_hw_queues > UBLK_MAX_NR_QUEUES || !info.nr_hw_queues)
3060 		return -EINVAL;
3061 
3062 	if (capable(CAP_SYS_ADMIN))
3063 		info.flags &= ~UBLK_F_UNPRIVILEGED_DEV;
3064 	else if (!(info.flags & UBLK_F_UNPRIVILEGED_DEV))
3065 		return -EPERM;
3066 
3067 	/* forbid nonsense combinations of recovery flags */
3068 	switch (info.flags & UBLK_F_ALL_RECOVERY_FLAGS) {
3069 	case 0:
3070 	case UBLK_F_USER_RECOVERY:
3071 	case (UBLK_F_USER_RECOVERY | UBLK_F_USER_RECOVERY_REISSUE):
3072 	case (UBLK_F_USER_RECOVERY | UBLK_F_USER_RECOVERY_FAIL_IO):
3073 		break;
3074 	default:
3075 		pr_warn("%s: invalid recovery flags %llx\n", __func__,
3076 			info.flags & UBLK_F_ALL_RECOVERY_FLAGS);
3077 		return -EINVAL;
3078 	}
3079 
3080 	if ((info.flags & UBLK_F_QUIESCE) && !(info.flags & UBLK_F_USER_RECOVERY)) {
3081 		pr_warn("UBLK_F_QUIESCE requires UBLK_F_USER_RECOVERY\n");
3082 		return -EINVAL;
3083 	}
3084 
3085 	/*
3086 	 * unprivileged device can't be trusted, but RECOVERY and
3087 	 * RECOVERY_REISSUE still may hang error handling, so can't
3088 	 * support recovery features for unprivileged ublk now
3089 	 *
3090 	 * TODO: provide forward progress for RECOVERY handler, so that
3091 	 * unprivileged device can benefit from it
3092 	 */
3093 	if (info.flags & UBLK_F_UNPRIVILEGED_DEV) {
3094 		info.flags &= ~(UBLK_F_USER_RECOVERY_REISSUE |
3095 				UBLK_F_USER_RECOVERY);
3096 
3097 		/*
3098 		 * For USER_COPY, we depends on userspace to fill request
3099 		 * buffer by pwrite() to ublk char device, which can't be
3100 		 * used for unprivileged device
3101 		 *
3102 		 * Same with zero copy or auto buffer register.
3103 		 */
3104 		if (info.flags & (UBLK_F_USER_COPY | UBLK_F_SUPPORT_ZERO_COPY |
3105 					UBLK_F_AUTO_BUF_REG))
3106 			return -EINVAL;
3107 	}
3108 
3109 	/* the created device is always owned by current user */
3110 	ublk_store_owner_uid_gid(&info.owner_uid, &info.owner_gid);
3111 
3112 	if (header->dev_id != info.dev_id) {
3113 		pr_warn("%s: dev id not match %u %u\n",
3114 			__func__, header->dev_id, info.dev_id);
3115 		return -EINVAL;
3116 	}
3117 
3118 	if (header->dev_id != U32_MAX && header->dev_id >= UBLK_MAX_UBLKS) {
3119 		pr_warn("%s: dev id is too large. Max supported is %d\n",
3120 			__func__, UBLK_MAX_UBLKS - 1);
3121 		return -EINVAL;
3122 	}
3123 
3124 	ublk_dump_dev_info(&info);
3125 
3126 	ret = mutex_lock_killable(&ublk_ctl_mutex);
3127 	if (ret)
3128 		return ret;
3129 
3130 	ret = -EACCES;
3131 	if ((info.flags & UBLK_F_UNPRIVILEGED_DEV) &&
3132 	    unprivileged_ublks_added >= unprivileged_ublks_max)
3133 		goto out_unlock;
3134 
3135 	ret = -ENOMEM;
3136 	ub = kzalloc(struct_size(ub, queues, info.nr_hw_queues), GFP_KERNEL);
3137 	if (!ub)
3138 		goto out_unlock;
3139 	mutex_init(&ub->mutex);
3140 	spin_lock_init(&ub->lock);
3141 	mutex_init(&ub->cancel_mutex);
3142 
3143 	ret = ublk_alloc_dev_number(ub, header->dev_id);
3144 	if (ret < 0)
3145 		goto out_free_ub;
3146 
3147 	memcpy(&ub->dev_info, &info, sizeof(info));
3148 
3149 	/* update device id */
3150 	ub->dev_info.dev_id = ub->ub_number;
3151 
3152 	/*
3153 	 * 64bit flags will be copied back to userspace as feature
3154 	 * negotiation result, so have to clear flags which driver
3155 	 * doesn't support yet, then userspace can get correct flags
3156 	 * (features) to handle.
3157 	 */
3158 	ub->dev_info.flags &= UBLK_F_ALL;
3159 
3160 	ub->dev_info.flags |= UBLK_F_CMD_IOCTL_ENCODE |
3161 		UBLK_F_URING_CMD_COMP_IN_TASK |
3162 		UBLK_F_PER_IO_DAEMON |
3163 		UBLK_F_BUF_REG_OFF_DAEMON;
3164 
3165 	/* GET_DATA isn't needed any more with USER_COPY or ZERO COPY */
3166 	if (ub->dev_info.flags & (UBLK_F_USER_COPY | UBLK_F_SUPPORT_ZERO_COPY |
3167 				UBLK_F_AUTO_BUF_REG))
3168 		ub->dev_info.flags &= ~UBLK_F_NEED_GET_DATA;
3169 
3170 	/*
3171 	 * Zoned storage support requires reuse `ublksrv_io_cmd->addr` for
3172 	 * returning write_append_lba, which is only allowed in case of
3173 	 * user copy or zero copy
3174 	 */
3175 	if (ublk_dev_is_zoned(ub) &&
3176 	    (!IS_ENABLED(CONFIG_BLK_DEV_ZONED) || !(ub->dev_info.flags &
3177 	     (UBLK_F_USER_COPY | UBLK_F_SUPPORT_ZERO_COPY)))) {
3178 		ret = -EINVAL;
3179 		goto out_free_dev_number;
3180 	}
3181 
3182 	ub->dev_info.nr_hw_queues = min_t(unsigned int,
3183 			ub->dev_info.nr_hw_queues, nr_cpu_ids);
3184 	ublk_align_max_io_size(ub);
3185 
3186 	ret = ublk_add_tag_set(ub);
3187 	if (ret)
3188 		goto out_free_dev_number;
3189 
3190 	ret = ublk_init_queues(ub);
3191 	if (ret)
3192 		goto out_free_tag_set;
3193 
3194 	ret = -EFAULT;
3195 	if (copy_to_user(argp, &ub->dev_info, sizeof(info)))
3196 		goto out_deinit_queues;
3197 
3198 	/*
3199 	 * Add the char dev so that ublksrv daemon can be setup.
3200 	 * ublk_add_chdev() will cleanup everything if it fails.
3201 	 */
3202 	ret = ublk_add_chdev(ub);
3203 	goto out_unlock;
3204 
3205 out_deinit_queues:
3206 	ublk_deinit_queues(ub);
3207 out_free_tag_set:
3208 	blk_mq_free_tag_set(&ub->tag_set);
3209 out_free_dev_number:
3210 	ublk_free_dev_number(ub);
3211 out_free_ub:
3212 	mutex_destroy(&ub->mutex);
3213 	mutex_destroy(&ub->cancel_mutex);
3214 	kfree(ub);
3215 out_unlock:
3216 	mutex_unlock(&ublk_ctl_mutex);
3217 	return ret;
3218 }
3219 
3220 static inline bool ublk_idr_freed(int id)
3221 {
3222 	void *ptr;
3223 
3224 	spin_lock(&ublk_idr_lock);
3225 	ptr = idr_find(&ublk_index_idr, id);
3226 	spin_unlock(&ublk_idr_lock);
3227 
3228 	return ptr == NULL;
3229 }
3230 
3231 static int ublk_ctrl_del_dev(struct ublk_device **p_ub, bool wait)
3232 {
3233 	struct ublk_device *ub = *p_ub;
3234 	int idx = ub->ub_number;
3235 	int ret;
3236 
3237 	ret = mutex_lock_killable(&ublk_ctl_mutex);
3238 	if (ret)
3239 		return ret;
3240 
3241 	if (!test_bit(UB_STATE_DELETED, &ub->state)) {
3242 		ublk_remove(ub);
3243 		set_bit(UB_STATE_DELETED, &ub->state);
3244 	}
3245 
3246 	/* Mark the reference as consumed */
3247 	*p_ub = NULL;
3248 	ublk_put_device(ub);
3249 	mutex_unlock(&ublk_ctl_mutex);
3250 
3251 	/*
3252 	 * Wait until the idr is removed, then it can be reused after
3253 	 * DEL_DEV command is returned.
3254 	 *
3255 	 * If we returns because of user interrupt, future delete command
3256 	 * may come:
3257 	 *
3258 	 * - the device number isn't freed, this device won't or needn't
3259 	 *   be deleted again, since UB_STATE_DELETED is set, and device
3260 	 *   will be released after the last reference is dropped
3261 	 *
3262 	 * - the device number is freed already, we will not find this
3263 	 *   device via ublk_get_device_from_id()
3264 	 */
3265 	if (wait && wait_event_interruptible(ublk_idr_wq, ublk_idr_freed(idx)))
3266 		return -EINTR;
3267 	return 0;
3268 }
3269 
3270 static inline void ublk_ctrl_cmd_dump(struct io_uring_cmd *cmd)
3271 {
3272 	const struct ublksrv_ctrl_cmd *header = io_uring_sqe_cmd(cmd->sqe);
3273 
3274 	pr_devel("%s: cmd_op %x, dev id %d qid %d data %llx buf %llx len %u\n",
3275 			__func__, cmd->cmd_op, header->dev_id, header->queue_id,
3276 			header->data[0], header->addr, header->len);
3277 }
3278 
3279 static int ublk_ctrl_stop_dev(struct ublk_device *ub)
3280 {
3281 	ublk_stop_dev(ub);
3282 	return 0;
3283 }
3284 
3285 static int ublk_ctrl_get_dev_info(struct ublk_device *ub,
3286 		const struct ublksrv_ctrl_cmd *header)
3287 {
3288 	void __user *argp = (void __user *)(unsigned long)header->addr;
3289 
3290 	if (header->len < sizeof(struct ublksrv_ctrl_dev_info) || !header->addr)
3291 		return -EINVAL;
3292 
3293 	if (copy_to_user(argp, &ub->dev_info, sizeof(ub->dev_info)))
3294 		return -EFAULT;
3295 
3296 	return 0;
3297 }
3298 
3299 /* TYPE_DEVT is readonly, so fill it up before returning to userspace */
3300 static void ublk_ctrl_fill_params_devt(struct ublk_device *ub)
3301 {
3302 	ub->params.devt.char_major = MAJOR(ub->cdev_dev.devt);
3303 	ub->params.devt.char_minor = MINOR(ub->cdev_dev.devt);
3304 
3305 	if (ub->ub_disk) {
3306 		ub->params.devt.disk_major = MAJOR(disk_devt(ub->ub_disk));
3307 		ub->params.devt.disk_minor = MINOR(disk_devt(ub->ub_disk));
3308 	} else {
3309 		ub->params.devt.disk_major = 0;
3310 		ub->params.devt.disk_minor = 0;
3311 	}
3312 	ub->params.types |= UBLK_PARAM_TYPE_DEVT;
3313 }
3314 
3315 static int ublk_ctrl_get_params(struct ublk_device *ub,
3316 		const struct ublksrv_ctrl_cmd *header)
3317 {
3318 	void __user *argp = (void __user *)(unsigned long)header->addr;
3319 	struct ublk_params_header ph;
3320 	int ret;
3321 
3322 	if (header->len <= sizeof(ph) || !header->addr)
3323 		return -EINVAL;
3324 
3325 	if (copy_from_user(&ph, argp, sizeof(ph)))
3326 		return -EFAULT;
3327 
3328 	if (ph.len > header->len || !ph.len)
3329 		return -EINVAL;
3330 
3331 	if (ph.len > sizeof(struct ublk_params))
3332 		ph.len = sizeof(struct ublk_params);
3333 
3334 	mutex_lock(&ub->mutex);
3335 	ublk_ctrl_fill_params_devt(ub);
3336 	if (copy_to_user(argp, &ub->params, ph.len))
3337 		ret = -EFAULT;
3338 	else
3339 		ret = 0;
3340 	mutex_unlock(&ub->mutex);
3341 
3342 	return ret;
3343 }
3344 
3345 static int ublk_ctrl_set_params(struct ublk_device *ub,
3346 		const struct ublksrv_ctrl_cmd *header)
3347 {
3348 	void __user *argp = (void __user *)(unsigned long)header->addr;
3349 	struct ublk_params_header ph;
3350 	int ret = -EFAULT;
3351 
3352 	if (header->len <= sizeof(ph) || !header->addr)
3353 		return -EINVAL;
3354 
3355 	if (copy_from_user(&ph, argp, sizeof(ph)))
3356 		return -EFAULT;
3357 
3358 	if (ph.len > header->len || !ph.len || !ph.types)
3359 		return -EINVAL;
3360 
3361 	if (ph.len > sizeof(struct ublk_params))
3362 		ph.len = sizeof(struct ublk_params);
3363 
3364 	mutex_lock(&ub->mutex);
3365 	if (test_bit(UB_STATE_USED, &ub->state)) {
3366 		/*
3367 		 * Parameters can only be changed when device hasn't
3368 		 * been started yet
3369 		 */
3370 		ret = -EACCES;
3371 	} else if (copy_from_user(&ub->params, argp, ph.len)) {
3372 		ret = -EFAULT;
3373 	} else {
3374 		/* clear all we don't support yet */
3375 		ub->params.types &= UBLK_PARAM_TYPE_ALL;
3376 		ret = ublk_validate_params(ub);
3377 		if (ret)
3378 			ub->params.types = 0;
3379 	}
3380 	mutex_unlock(&ub->mutex);
3381 
3382 	return ret;
3383 }
3384 
3385 static int ublk_ctrl_start_recovery(struct ublk_device *ub,
3386 		const struct ublksrv_ctrl_cmd *header)
3387 {
3388 	int ret = -EINVAL;
3389 
3390 	mutex_lock(&ub->mutex);
3391 	if (ublk_nosrv_should_stop_dev(ub))
3392 		goto out_unlock;
3393 	/*
3394 	 * START_RECOVERY is only allowd after:
3395 	 *
3396 	 * (1) UB_STATE_OPEN is not set, which means the dying process is exited
3397 	 *     and related io_uring ctx is freed so file struct of /dev/ublkcX is
3398 	 *     released.
3399 	 *
3400 	 * and one of the following holds
3401 	 *
3402 	 * (2) UBLK_S_DEV_QUIESCED is set, which means the quiesce_work:
3403 	 *     (a)has quiesced request queue
3404 	 *     (b)has requeued every inflight rqs whose io_flags is ACTIVE
3405 	 *     (c)has requeued/aborted every inflight rqs whose io_flags is NOT ACTIVE
3406 	 *     (d)has completed/camceled all ioucmds owned by ther dying process
3407 	 *
3408 	 * (3) UBLK_S_DEV_FAIL_IO is set, which means the queue is not
3409 	 *     quiesced, but all I/O is being immediately errored
3410 	 */
3411 	if (test_bit(UB_STATE_OPEN, &ub->state) || !ublk_dev_in_recoverable_state(ub)) {
3412 		ret = -EBUSY;
3413 		goto out_unlock;
3414 	}
3415 	pr_devel("%s: start recovery for dev id %d.\n", __func__, header->dev_id);
3416 	init_completion(&ub->completion);
3417 	ret = 0;
3418  out_unlock:
3419 	mutex_unlock(&ub->mutex);
3420 	return ret;
3421 }
3422 
3423 static int ublk_ctrl_end_recovery(struct ublk_device *ub,
3424 		const struct ublksrv_ctrl_cmd *header)
3425 {
3426 	int ublksrv_pid = (int)header->data[0];
3427 	int ret = -EINVAL;
3428 
3429 	pr_devel("%s: Waiting for all FETCH_REQs, dev id %d...\n", __func__,
3430 		 header->dev_id);
3431 
3432 	if (wait_for_completion_interruptible(&ub->completion))
3433 		return -EINTR;
3434 
3435 	pr_devel("%s: All FETCH_REQs received, dev id %d\n", __func__,
3436 		 header->dev_id);
3437 
3438 	if (ub->ublksrv_tgid != ublksrv_pid)
3439 		return -EINVAL;
3440 
3441 	mutex_lock(&ub->mutex);
3442 	if (ublk_nosrv_should_stop_dev(ub))
3443 		goto out_unlock;
3444 
3445 	if (!ublk_dev_in_recoverable_state(ub)) {
3446 		ret = -EBUSY;
3447 		goto out_unlock;
3448 	}
3449 	ub->dev_info.ublksrv_pid = ublksrv_pid;
3450 	ub->dev_info.state = UBLK_S_DEV_LIVE;
3451 	pr_devel("%s: new ublksrv_pid %d, dev id %d\n",
3452 			__func__, ublksrv_pid, header->dev_id);
3453 	blk_mq_kick_requeue_list(ub->ub_disk->queue);
3454 	ret = 0;
3455  out_unlock:
3456 	mutex_unlock(&ub->mutex);
3457 	return ret;
3458 }
3459 
3460 static int ublk_ctrl_get_features(const struct ublksrv_ctrl_cmd *header)
3461 {
3462 	void __user *argp = (void __user *)(unsigned long)header->addr;
3463 	u64 features = UBLK_F_ALL;
3464 
3465 	if (header->len != UBLK_FEATURES_LEN || !header->addr)
3466 		return -EINVAL;
3467 
3468 	if (copy_to_user(argp, &features, UBLK_FEATURES_LEN))
3469 		return -EFAULT;
3470 
3471 	return 0;
3472 }
3473 
3474 static void ublk_ctrl_set_size(struct ublk_device *ub, const struct ublksrv_ctrl_cmd *header)
3475 {
3476 	struct ublk_param_basic *p = &ub->params.basic;
3477 	u64 new_size = header->data[0];
3478 
3479 	mutex_lock(&ub->mutex);
3480 	p->dev_sectors = new_size;
3481 	set_capacity_and_notify(ub->ub_disk, p->dev_sectors);
3482 	mutex_unlock(&ub->mutex);
3483 }
3484 
3485 struct count_busy {
3486 	const struct ublk_queue *ubq;
3487 	unsigned int nr_busy;
3488 };
3489 
3490 static bool ublk_count_busy_req(struct request *rq, void *data)
3491 {
3492 	struct count_busy *idle = data;
3493 
3494 	if (!blk_mq_request_started(rq) && rq->mq_hctx->driver_data == idle->ubq)
3495 		idle->nr_busy += 1;
3496 	return true;
3497 }
3498 
3499 /* uring_cmd is guaranteed to be active if the associated request is idle */
3500 static bool ubq_has_idle_io(const struct ublk_queue *ubq)
3501 {
3502 	struct count_busy data = {
3503 		.ubq = ubq,
3504 	};
3505 
3506 	blk_mq_tagset_busy_iter(&ubq->dev->tag_set, ublk_count_busy_req, &data);
3507 	return data.nr_busy < ubq->q_depth;
3508 }
3509 
3510 /* Wait until each hw queue has at least one idle IO */
3511 static int ublk_wait_for_idle_io(struct ublk_device *ub,
3512 				 unsigned int timeout_ms)
3513 {
3514 	unsigned int elapsed = 0;
3515 	int ret;
3516 
3517 	while (elapsed < timeout_ms && !signal_pending(current)) {
3518 		unsigned int queues_cancelable = 0;
3519 		int i;
3520 
3521 		for (i = 0; i < ub->dev_info.nr_hw_queues; i++) {
3522 			struct ublk_queue *ubq = ublk_get_queue(ub, i);
3523 
3524 			queues_cancelable += !!ubq_has_idle_io(ubq);
3525 		}
3526 
3527 		/*
3528 		 * Each queue needs at least one active command for
3529 		 * notifying ublk server
3530 		 */
3531 		if (queues_cancelable == ub->dev_info.nr_hw_queues)
3532 			break;
3533 
3534 		msleep(UBLK_REQUEUE_DELAY_MS);
3535 		elapsed += UBLK_REQUEUE_DELAY_MS;
3536 	}
3537 
3538 	if (signal_pending(current))
3539 		ret = -EINTR;
3540 	else if (elapsed >= timeout_ms)
3541 		ret = -EBUSY;
3542 	else
3543 		ret = 0;
3544 
3545 	return ret;
3546 }
3547 
3548 static int ublk_ctrl_quiesce_dev(struct ublk_device *ub,
3549 				 const struct ublksrv_ctrl_cmd *header)
3550 {
3551 	/* zero means wait forever */
3552 	u64 timeout_ms = header->data[0];
3553 	struct gendisk *disk;
3554 	int ret = -ENODEV;
3555 
3556 	if (!(ub->dev_info.flags & UBLK_F_QUIESCE))
3557 		return -EOPNOTSUPP;
3558 
3559 	mutex_lock(&ub->mutex);
3560 	disk = ublk_get_disk(ub);
3561 	if (!disk)
3562 		goto unlock;
3563 	if (ub->dev_info.state == UBLK_S_DEV_DEAD)
3564 		goto put_disk;
3565 
3566 	ret = 0;
3567 	/* already in expected state */
3568 	if (ub->dev_info.state != UBLK_S_DEV_LIVE)
3569 		goto put_disk;
3570 
3571 	/* Mark the device as canceling */
3572 	mutex_lock(&ub->cancel_mutex);
3573 	blk_mq_quiesce_queue(disk->queue);
3574 	ublk_set_canceling(ub, true);
3575 	blk_mq_unquiesce_queue(disk->queue);
3576 	mutex_unlock(&ub->cancel_mutex);
3577 
3578 	if (!timeout_ms)
3579 		timeout_ms = UINT_MAX;
3580 	ret = ublk_wait_for_idle_io(ub, timeout_ms);
3581 
3582 put_disk:
3583 	ublk_put_disk(disk);
3584 unlock:
3585 	mutex_unlock(&ub->mutex);
3586 
3587 	/* Cancel pending uring_cmd */
3588 	if (!ret)
3589 		ublk_cancel_dev(ub);
3590 	return ret;
3591 }
3592 
3593 /*
3594  * All control commands are sent via /dev/ublk-control, so we have to check
3595  * the destination device's permission
3596  */
3597 static int ublk_char_dev_permission(struct ublk_device *ub,
3598 		const char *dev_path, int mask)
3599 {
3600 	int err;
3601 	struct path path;
3602 	struct kstat stat;
3603 
3604 	err = kern_path(dev_path, LOOKUP_FOLLOW, &path);
3605 	if (err)
3606 		return err;
3607 
3608 	err = vfs_getattr(&path, &stat, STATX_TYPE, AT_STATX_SYNC_AS_STAT);
3609 	if (err)
3610 		goto exit;
3611 
3612 	err = -EPERM;
3613 	if (stat.rdev != ub->cdev_dev.devt || !S_ISCHR(stat.mode))
3614 		goto exit;
3615 
3616 	err = inode_permission(&nop_mnt_idmap,
3617 			d_backing_inode(path.dentry), mask);
3618 exit:
3619 	path_put(&path);
3620 	return err;
3621 }
3622 
3623 static int ublk_ctrl_uring_cmd_permission(struct ublk_device *ub,
3624 		struct io_uring_cmd *cmd)
3625 {
3626 	struct ublksrv_ctrl_cmd *header = (struct ublksrv_ctrl_cmd *)io_uring_sqe_cmd(cmd->sqe);
3627 	bool unprivileged = ub->dev_info.flags & UBLK_F_UNPRIVILEGED_DEV;
3628 	void __user *argp = (void __user *)(unsigned long)header->addr;
3629 	char *dev_path = NULL;
3630 	int ret = 0;
3631 	int mask;
3632 
3633 	if (!unprivileged) {
3634 		if (!capable(CAP_SYS_ADMIN))
3635 			return -EPERM;
3636 		/*
3637 		 * The new added command of UBLK_CMD_GET_DEV_INFO2 includes
3638 		 * char_dev_path in payload too, since userspace may not
3639 		 * know if the specified device is created as unprivileged
3640 		 * mode.
3641 		 */
3642 		if (_IOC_NR(cmd->cmd_op) != UBLK_CMD_GET_DEV_INFO2)
3643 			return 0;
3644 	}
3645 
3646 	/*
3647 	 * User has to provide the char device path for unprivileged ublk
3648 	 *
3649 	 * header->addr always points to the dev path buffer, and
3650 	 * header->dev_path_len records length of dev path buffer.
3651 	 */
3652 	if (!header->dev_path_len || header->dev_path_len > PATH_MAX)
3653 		return -EINVAL;
3654 
3655 	if (header->len < header->dev_path_len)
3656 		return -EINVAL;
3657 
3658 	dev_path = memdup_user_nul(argp, header->dev_path_len);
3659 	if (IS_ERR(dev_path))
3660 		return PTR_ERR(dev_path);
3661 
3662 	ret = -EINVAL;
3663 	switch (_IOC_NR(cmd->cmd_op)) {
3664 	case UBLK_CMD_GET_DEV_INFO:
3665 	case UBLK_CMD_GET_DEV_INFO2:
3666 	case UBLK_CMD_GET_QUEUE_AFFINITY:
3667 	case UBLK_CMD_GET_PARAMS:
3668 	case (_IOC_NR(UBLK_U_CMD_GET_FEATURES)):
3669 		mask = MAY_READ;
3670 		break;
3671 	case UBLK_CMD_START_DEV:
3672 	case UBLK_CMD_STOP_DEV:
3673 	case UBLK_CMD_ADD_DEV:
3674 	case UBLK_CMD_DEL_DEV:
3675 	case UBLK_CMD_SET_PARAMS:
3676 	case UBLK_CMD_START_USER_RECOVERY:
3677 	case UBLK_CMD_END_USER_RECOVERY:
3678 	case UBLK_CMD_UPDATE_SIZE:
3679 	case UBLK_CMD_QUIESCE_DEV:
3680 		mask = MAY_READ | MAY_WRITE;
3681 		break;
3682 	default:
3683 		goto exit;
3684 	}
3685 
3686 	ret = ublk_char_dev_permission(ub, dev_path, mask);
3687 	if (!ret) {
3688 		header->len -= header->dev_path_len;
3689 		header->addr += header->dev_path_len;
3690 	}
3691 	pr_devel("%s: dev id %d cmd_op %x uid %d gid %d path %s ret %d\n",
3692 			__func__, ub->ub_number, cmd->cmd_op,
3693 			ub->dev_info.owner_uid, ub->dev_info.owner_gid,
3694 			dev_path, ret);
3695 exit:
3696 	kfree(dev_path);
3697 	return ret;
3698 }
3699 
3700 static bool ublk_ctrl_uring_cmd_may_sleep(u32 cmd_op)
3701 {
3702 	switch (_IOC_NR(cmd_op)) {
3703 	case UBLK_CMD_GET_QUEUE_AFFINITY:
3704 	case UBLK_CMD_GET_DEV_INFO:
3705 	case UBLK_CMD_GET_DEV_INFO2:
3706 	case _IOC_NR(UBLK_U_CMD_GET_FEATURES):
3707 		return false;
3708 	default:
3709 		return true;
3710 	}
3711 }
3712 
3713 static int ublk_ctrl_uring_cmd(struct io_uring_cmd *cmd,
3714 		unsigned int issue_flags)
3715 {
3716 	const struct ublksrv_ctrl_cmd *header = io_uring_sqe_cmd(cmd->sqe);
3717 	struct ublk_device *ub = NULL;
3718 	u32 cmd_op = cmd->cmd_op;
3719 	int ret = -EINVAL;
3720 
3721 	if (ublk_ctrl_uring_cmd_may_sleep(cmd_op) &&
3722 	    issue_flags & IO_URING_F_NONBLOCK)
3723 		return -EAGAIN;
3724 
3725 	ublk_ctrl_cmd_dump(cmd);
3726 
3727 	if (!(issue_flags & IO_URING_F_SQE128))
3728 		goto out;
3729 
3730 	ret = ublk_check_cmd_op(cmd_op);
3731 	if (ret)
3732 		goto out;
3733 
3734 	if (cmd_op == UBLK_U_CMD_GET_FEATURES) {
3735 		ret = ublk_ctrl_get_features(header);
3736 		goto out;
3737 	}
3738 
3739 	if (_IOC_NR(cmd_op) != UBLK_CMD_ADD_DEV) {
3740 		ret = -ENODEV;
3741 		ub = ublk_get_device_from_id(header->dev_id);
3742 		if (!ub)
3743 			goto out;
3744 
3745 		ret = ublk_ctrl_uring_cmd_permission(ub, cmd);
3746 		if (ret)
3747 			goto put_dev;
3748 	}
3749 
3750 	switch (_IOC_NR(cmd_op)) {
3751 	case UBLK_CMD_START_DEV:
3752 		ret = ublk_ctrl_start_dev(ub, header);
3753 		break;
3754 	case UBLK_CMD_STOP_DEV:
3755 		ret = ublk_ctrl_stop_dev(ub);
3756 		break;
3757 	case UBLK_CMD_GET_DEV_INFO:
3758 	case UBLK_CMD_GET_DEV_INFO2:
3759 		ret = ublk_ctrl_get_dev_info(ub, header);
3760 		break;
3761 	case UBLK_CMD_ADD_DEV:
3762 		ret = ublk_ctrl_add_dev(header);
3763 		break;
3764 	case UBLK_CMD_DEL_DEV:
3765 		ret = ublk_ctrl_del_dev(&ub, true);
3766 		break;
3767 	case UBLK_CMD_DEL_DEV_ASYNC:
3768 		ret = ublk_ctrl_del_dev(&ub, false);
3769 		break;
3770 	case UBLK_CMD_GET_QUEUE_AFFINITY:
3771 		ret = ublk_ctrl_get_queue_affinity(ub, header);
3772 		break;
3773 	case UBLK_CMD_GET_PARAMS:
3774 		ret = ublk_ctrl_get_params(ub, header);
3775 		break;
3776 	case UBLK_CMD_SET_PARAMS:
3777 		ret = ublk_ctrl_set_params(ub, header);
3778 		break;
3779 	case UBLK_CMD_START_USER_RECOVERY:
3780 		ret = ublk_ctrl_start_recovery(ub, header);
3781 		break;
3782 	case UBLK_CMD_END_USER_RECOVERY:
3783 		ret = ublk_ctrl_end_recovery(ub, header);
3784 		break;
3785 	case UBLK_CMD_UPDATE_SIZE:
3786 		ublk_ctrl_set_size(ub, header);
3787 		ret = 0;
3788 		break;
3789 	case UBLK_CMD_QUIESCE_DEV:
3790 		ret = ublk_ctrl_quiesce_dev(ub, header);
3791 		break;
3792 	default:
3793 		ret = -EOPNOTSUPP;
3794 		break;
3795 	}
3796 
3797  put_dev:
3798 	if (ub)
3799 		ublk_put_device(ub);
3800  out:
3801 	pr_devel("%s: cmd done ret %d cmd_op %x, dev id %d qid %d\n",
3802 			__func__, ret, cmd->cmd_op, header->dev_id, header->queue_id);
3803 	return ret;
3804 }
3805 
3806 static const struct file_operations ublk_ctl_fops = {
3807 	.open		= nonseekable_open,
3808 	.uring_cmd      = ublk_ctrl_uring_cmd,
3809 	.owner		= THIS_MODULE,
3810 	.llseek		= noop_llseek,
3811 };
3812 
3813 static struct miscdevice ublk_misc = {
3814 	.minor		= MISC_DYNAMIC_MINOR,
3815 	.name		= "ublk-control",
3816 	.fops		= &ublk_ctl_fops,
3817 };
3818 
3819 static int __init ublk_init(void)
3820 {
3821 	int ret;
3822 
3823 	BUILD_BUG_ON((u64)UBLKSRV_IO_BUF_OFFSET +
3824 			UBLKSRV_IO_BUF_TOTAL_SIZE < UBLKSRV_IO_BUF_OFFSET);
3825 	BUILD_BUG_ON(sizeof(struct ublk_auto_buf_reg) != 8);
3826 
3827 	init_waitqueue_head(&ublk_idr_wq);
3828 
3829 	ret = misc_register(&ublk_misc);
3830 	if (ret)
3831 		return ret;
3832 
3833 	ret = alloc_chrdev_region(&ublk_chr_devt, 0, UBLK_MINORS, "ublk-char");
3834 	if (ret)
3835 		goto unregister_mis;
3836 
3837 	ret = class_register(&ublk_chr_class);
3838 	if (ret)
3839 		goto free_chrdev_region;
3840 
3841 	return 0;
3842 
3843 free_chrdev_region:
3844 	unregister_chrdev_region(ublk_chr_devt, UBLK_MINORS);
3845 unregister_mis:
3846 	misc_deregister(&ublk_misc);
3847 	return ret;
3848 }
3849 
3850 static void __exit ublk_exit(void)
3851 {
3852 	struct ublk_device *ub;
3853 	int id;
3854 
3855 	idr_for_each_entry(&ublk_index_idr, ub, id)
3856 		ublk_remove(ub);
3857 
3858 	class_unregister(&ublk_chr_class);
3859 	misc_deregister(&ublk_misc);
3860 
3861 	idr_destroy(&ublk_index_idr);
3862 	unregister_chrdev_region(ublk_chr_devt, UBLK_MINORS);
3863 }
3864 
3865 module_init(ublk_init);
3866 module_exit(ublk_exit);
3867 
3868 static int ublk_set_max_unprivileged_ublks(const char *buf,
3869 					   const struct kernel_param *kp)
3870 {
3871 	return param_set_uint_minmax(buf, kp, 0, UBLK_MAX_UBLKS);
3872 }
3873 
3874 static int ublk_get_max_unprivileged_ublks(char *buf,
3875 					   const struct kernel_param *kp)
3876 {
3877 	return sysfs_emit(buf, "%u\n", unprivileged_ublks_max);
3878 }
3879 
3880 static const struct kernel_param_ops ublk_max_unprivileged_ublks_ops = {
3881 	.set = ublk_set_max_unprivileged_ublks,
3882 	.get = ublk_get_max_unprivileged_ublks,
3883 };
3884 
3885 module_param_cb(ublks_max, &ublk_max_unprivileged_ublks_ops,
3886 		&unprivileged_ublks_max, 0644);
3887 MODULE_PARM_DESC(ublks_max, "max number of unprivileged ublk devices allowed to add(default: 64)");
3888 
3889 MODULE_AUTHOR("Ming Lei <ming.lei@redhat.com>");
3890 MODULE_DESCRIPTION("Userspace block device");
3891 MODULE_LICENSE("GPL");
3892