xref: /openbmc/linux/drivers/block/rnbd/rnbd-srv.c (revision aeefc1a0)
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  * RDMA Network Block Driver
4  *
5  * Copyright (c) 2014 - 2018 ProfitBricks GmbH. All rights reserved.
6  * Copyright (c) 2018 - 2019 1&1 IONOS Cloud GmbH. All rights reserved.
7  * Copyright (c) 2019 - 2020 1&1 IONOS SE. All rights reserved.
8  */
9 #undef pr_fmt
10 #define pr_fmt(fmt) KBUILD_MODNAME " L" __stringify(__LINE__) ": " fmt
11 
12 #include <linux/module.h>
13 #include <linux/blkdev.h>
14 
15 #include "rnbd-srv.h"
16 #include "rnbd-srv-dev.h"
17 
18 MODULE_DESCRIPTION("RDMA Network Block Device Server");
19 MODULE_LICENSE("GPL");
20 
21 static u16 port_nr = RTRS_PORT;
22 
23 module_param_named(port_nr, port_nr, ushort, 0444);
24 MODULE_PARM_DESC(port_nr,
25 		 "The port number the server is listening on (default: "
26 		 __stringify(RTRS_PORT)")");
27 
28 #define DEFAULT_DEV_SEARCH_PATH "/"
29 
30 static char dev_search_path[PATH_MAX] = DEFAULT_DEV_SEARCH_PATH;
31 
32 static int dev_search_path_set(const char *val, const struct kernel_param *kp)
33 {
34 	const char *p = strrchr(val, '\n') ? : val + strlen(val);
35 
36 	if (strlen(val) >= sizeof(dev_search_path))
37 		return -EINVAL;
38 
39 	snprintf(dev_search_path, sizeof(dev_search_path), "%.*s",
40 		 (int)(p - val), val);
41 
42 	pr_info("dev_search_path changed to '%s'\n", dev_search_path);
43 
44 	return 0;
45 }
46 
47 static struct kparam_string dev_search_path_kparam_str = {
48 	.maxlen	= sizeof(dev_search_path),
49 	.string	= dev_search_path
50 };
51 
52 static const struct kernel_param_ops dev_search_path_ops = {
53 	.set	= dev_search_path_set,
54 	.get	= param_get_string,
55 };
56 
57 module_param_cb(dev_search_path, &dev_search_path_ops,
58 		&dev_search_path_kparam_str, 0444);
59 MODULE_PARM_DESC(dev_search_path,
60 		 "Sets the dev_search_path. When a device is mapped this path is prepended to the device path from the map device operation.  If %SESSNAME% is specified in a path, then device will be searched in a session namespace. (default: "
61 		 DEFAULT_DEV_SEARCH_PATH ")");
62 
63 static DEFINE_MUTEX(sess_lock);
64 static DEFINE_SPINLOCK(dev_lock);
65 
66 static LIST_HEAD(sess_list);
67 static LIST_HEAD(dev_list);
68 
69 struct rnbd_io_private {
70 	struct rtrs_srv_op		*id;
71 	struct rnbd_srv_sess_dev	*sess_dev;
72 };
73 
74 static void rnbd_sess_dev_release(struct kref *kref)
75 {
76 	struct rnbd_srv_sess_dev *sess_dev;
77 
78 	sess_dev = container_of(kref, struct rnbd_srv_sess_dev, kref);
79 	complete(sess_dev->destroy_comp);
80 }
81 
82 static inline void rnbd_put_sess_dev(struct rnbd_srv_sess_dev *sess_dev)
83 {
84 	kref_put(&sess_dev->kref, rnbd_sess_dev_release);
85 }
86 
87 void rnbd_endio(void *priv, int error)
88 {
89 	struct rnbd_io_private *rnbd_priv = priv;
90 	struct rnbd_srv_sess_dev *sess_dev = rnbd_priv->sess_dev;
91 
92 	rnbd_put_sess_dev(sess_dev);
93 
94 	rtrs_srv_resp_rdma(rnbd_priv->id, error);
95 
96 	kfree(priv);
97 }
98 
99 static struct rnbd_srv_sess_dev *
100 rnbd_get_sess_dev(int dev_id, struct rnbd_srv_session *srv_sess)
101 {
102 	struct rnbd_srv_sess_dev *sess_dev;
103 	int ret = 0;
104 
105 	rcu_read_lock();
106 	sess_dev = xa_load(&srv_sess->index_idr, dev_id);
107 	if (likely(sess_dev))
108 		ret = kref_get_unless_zero(&sess_dev->kref);
109 	rcu_read_unlock();
110 
111 	if (!sess_dev || !ret)
112 		return ERR_PTR(-ENXIO);
113 
114 	return sess_dev;
115 }
116 
117 static int process_rdma(struct rtrs_srv *sess,
118 			struct rnbd_srv_session *srv_sess,
119 			struct rtrs_srv_op *id, void *data, u32 datalen,
120 			const void *usr, size_t usrlen)
121 {
122 	const struct rnbd_msg_io *msg = usr;
123 	struct rnbd_io_private *priv;
124 	struct rnbd_srv_sess_dev *sess_dev;
125 	u32 dev_id;
126 	int err;
127 	struct rnbd_dev_blk_io *io;
128 	struct bio *bio;
129 	short prio;
130 
131 	priv = kmalloc(sizeof(*priv), GFP_KERNEL);
132 	if (!priv)
133 		return -ENOMEM;
134 
135 	dev_id = le32_to_cpu(msg->device_id);
136 
137 	sess_dev = rnbd_get_sess_dev(dev_id, srv_sess);
138 	if (IS_ERR(sess_dev)) {
139 		pr_err_ratelimited("Got I/O request on session %s for unknown device id %d\n",
140 				   srv_sess->sessname, dev_id);
141 		err = -ENOTCONN;
142 		goto err;
143 	}
144 
145 	priv->sess_dev = sess_dev;
146 	priv->id = id;
147 
148 	/* Generate bio with pages pointing to the rdma buffer */
149 	bio = rnbd_bio_map_kern(data, sess_dev->rnbd_dev->ibd_bio_set, datalen, GFP_KERNEL);
150 	if (IS_ERR(bio)) {
151 		err = PTR_ERR(bio);
152 		rnbd_srv_err(sess_dev, "Failed to generate bio, err: %d\n", err);
153 		goto sess_dev_put;
154 	}
155 
156 	io = container_of(bio, struct rnbd_dev_blk_io, bio);
157 	io->dev = sess_dev->rnbd_dev;
158 	io->priv = priv;
159 
160 	bio->bi_end_io = rnbd_dev_bi_end_io;
161 	bio->bi_private = io;
162 	bio->bi_opf = rnbd_to_bio_flags(le32_to_cpu(msg->rw));
163 	bio->bi_iter.bi_sector = le64_to_cpu(msg->sector);
164 	bio->bi_iter.bi_size = le32_to_cpu(msg->bi_size);
165 	prio = srv_sess->ver < RNBD_PROTO_VER_MAJOR ||
166 	       usrlen < sizeof(*msg) ? 0 : le16_to_cpu(msg->prio);
167 	bio_set_prio(bio, prio);
168 	bio_set_dev(bio, sess_dev->rnbd_dev->bdev);
169 
170 	submit_bio(bio);
171 
172 	return 0;
173 
174 sess_dev_put:
175 	rnbd_put_sess_dev(sess_dev);
176 err:
177 	kfree(priv);
178 	return err;
179 }
180 
181 static void destroy_device(struct rnbd_srv_dev *dev)
182 {
183 	WARN_ONCE(!list_empty(&dev->sess_dev_list),
184 		  "Device %s is being destroyed but still in use!\n",
185 		  dev->id);
186 
187 	spin_lock(&dev_lock);
188 	list_del(&dev->list);
189 	spin_unlock(&dev_lock);
190 
191 	mutex_destroy(&dev->lock);
192 	if (dev->dev_kobj.state_in_sysfs)
193 		/*
194 		 * Destroy kobj only if it was really created.
195 		 */
196 		rnbd_srv_destroy_dev_sysfs(dev);
197 	else
198 		kfree(dev);
199 }
200 
201 static void destroy_device_cb(struct kref *kref)
202 {
203 	struct rnbd_srv_dev *dev;
204 
205 	dev = container_of(kref, struct rnbd_srv_dev, kref);
206 
207 	destroy_device(dev);
208 }
209 
210 static void rnbd_put_srv_dev(struct rnbd_srv_dev *dev)
211 {
212 	kref_put(&dev->kref, destroy_device_cb);
213 }
214 
215 void rnbd_destroy_sess_dev(struct rnbd_srv_sess_dev *sess_dev, bool keep_id)
216 {
217 	DECLARE_COMPLETION_ONSTACK(dc);
218 
219 	if (keep_id)
220 		/* free the resources for the id but don't  */
221 		/* allow to re-use the id itself because it */
222 		/* is still used by the client              */
223 		xa_cmpxchg(&sess_dev->sess->index_idr, sess_dev->device_id,
224 			   sess_dev, NULL, 0);
225 	else
226 		xa_erase(&sess_dev->sess->index_idr, sess_dev->device_id);
227 	synchronize_rcu();
228 
229 	sess_dev->destroy_comp = &dc;
230 	rnbd_put_sess_dev(sess_dev);
231 	wait_for_completion(&dc); /* wait for inflights to drop to zero */
232 
233 	rnbd_dev_close(sess_dev->rnbd_dev);
234 	list_del(&sess_dev->sess_list);
235 	mutex_lock(&sess_dev->dev->lock);
236 	list_del(&sess_dev->dev_list);
237 	if (sess_dev->open_flags & FMODE_WRITE)
238 		sess_dev->dev->open_write_cnt--;
239 	mutex_unlock(&sess_dev->dev->lock);
240 
241 	rnbd_put_srv_dev(sess_dev->dev);
242 
243 	rnbd_srv_info(sess_dev, "Device closed\n");
244 	kfree(sess_dev);
245 }
246 
247 static void destroy_sess(struct rnbd_srv_session *srv_sess)
248 {
249 	struct rnbd_srv_sess_dev *sess_dev, *tmp;
250 
251 	if (list_empty(&srv_sess->sess_dev_list))
252 		goto out;
253 
254 	mutex_lock(&srv_sess->lock);
255 	list_for_each_entry_safe(sess_dev, tmp, &srv_sess->sess_dev_list,
256 				 sess_list)
257 		rnbd_srv_destroy_dev_session_sysfs(sess_dev);
258 	mutex_unlock(&srv_sess->lock);
259 
260 out:
261 	xa_destroy(&srv_sess->index_idr);
262 	bioset_exit(&srv_sess->sess_bio_set);
263 
264 	pr_info("RTRS Session %s disconnected\n", srv_sess->sessname);
265 
266 	mutex_lock(&sess_lock);
267 	list_del(&srv_sess->list);
268 	mutex_unlock(&sess_lock);
269 
270 	mutex_destroy(&srv_sess->lock);
271 	kfree(srv_sess);
272 }
273 
274 static int create_sess(struct rtrs_srv *rtrs)
275 {
276 	struct rnbd_srv_session *srv_sess;
277 	char sessname[NAME_MAX];
278 	int err;
279 
280 	err = rtrs_srv_get_sess_name(rtrs, sessname, sizeof(sessname));
281 	if (err) {
282 		pr_err("rtrs_srv_get_sess_name(%s): %d\n", sessname, err);
283 
284 		return err;
285 	}
286 	srv_sess = kzalloc(sizeof(*srv_sess), GFP_KERNEL);
287 	if (!srv_sess)
288 		return -ENOMEM;
289 
290 	srv_sess->queue_depth = rtrs_srv_get_queue_depth(rtrs);
291 	err = bioset_init(&srv_sess->sess_bio_set, srv_sess->queue_depth,
292 			  offsetof(struct rnbd_dev_blk_io, bio),
293 			  BIOSET_NEED_BVECS);
294 	if (err) {
295 		pr_err("Allocating srv_session for session %s failed\n",
296 		       sessname);
297 		kfree(srv_sess);
298 		return err;
299 	}
300 
301 	xa_init_flags(&srv_sess->index_idr, XA_FLAGS_ALLOC);
302 	INIT_LIST_HEAD(&srv_sess->sess_dev_list);
303 	mutex_init(&srv_sess->lock);
304 	mutex_lock(&sess_lock);
305 	list_add(&srv_sess->list, &sess_list);
306 	mutex_unlock(&sess_lock);
307 
308 	srv_sess->rtrs = rtrs;
309 	strlcpy(srv_sess->sessname, sessname, sizeof(srv_sess->sessname));
310 
311 	rtrs_srv_set_sess_priv(rtrs, srv_sess);
312 
313 	return 0;
314 }
315 
316 static int rnbd_srv_link_ev(struct rtrs_srv *rtrs,
317 			     enum rtrs_srv_link_ev ev, void *priv)
318 {
319 	struct rnbd_srv_session *srv_sess = priv;
320 
321 	switch (ev) {
322 	case RTRS_SRV_LINK_EV_CONNECTED:
323 		return create_sess(rtrs);
324 
325 	case RTRS_SRV_LINK_EV_DISCONNECTED:
326 		if (WARN_ON_ONCE(!srv_sess))
327 			return -EINVAL;
328 
329 		destroy_sess(srv_sess);
330 		return 0;
331 
332 	default:
333 		pr_warn("Received unknown RTRS session event %d from session %s\n",
334 			ev, srv_sess->sessname);
335 		return -EINVAL;
336 	}
337 }
338 
339 void rnbd_srv_sess_dev_force_close(struct rnbd_srv_sess_dev *sess_dev)
340 {
341 	rnbd_srv_destroy_dev_session_sysfs(sess_dev);
342 	sess_dev->keep_id = true;
343 
344 }
345 
346 static int process_msg_close(struct rtrs_srv *rtrs,
347 			     struct rnbd_srv_session *srv_sess,
348 			     void *data, size_t datalen, const void *usr,
349 			     size_t usrlen)
350 {
351 	const struct rnbd_msg_close *close_msg = usr;
352 	struct rnbd_srv_sess_dev *sess_dev;
353 
354 	sess_dev = rnbd_get_sess_dev(le32_to_cpu(close_msg->device_id),
355 				      srv_sess);
356 	if (IS_ERR(sess_dev))
357 		return 0;
358 
359 	rnbd_put_sess_dev(sess_dev);
360 	mutex_lock(&srv_sess->lock);
361 	rnbd_srv_destroy_dev_session_sysfs(sess_dev);
362 	mutex_unlock(&srv_sess->lock);
363 	return 0;
364 }
365 
366 static int process_msg_open(struct rtrs_srv *rtrs,
367 			    struct rnbd_srv_session *srv_sess,
368 			    const void *msg, size_t len,
369 			    void *data, size_t datalen);
370 
371 static int process_msg_sess_info(struct rtrs_srv *rtrs,
372 				 struct rnbd_srv_session *srv_sess,
373 				 const void *msg, size_t len,
374 				 void *data, size_t datalen);
375 
376 static int rnbd_srv_rdma_ev(struct rtrs_srv *rtrs, void *priv,
377 			     struct rtrs_srv_op *id, int dir,
378 			     void *data, size_t datalen, const void *usr,
379 			     size_t usrlen)
380 {
381 	struct rnbd_srv_session *srv_sess = priv;
382 	const struct rnbd_msg_hdr *hdr = usr;
383 	int ret = 0;
384 	u16 type;
385 
386 	if (WARN_ON_ONCE(!srv_sess))
387 		return -ENODEV;
388 
389 	type = le16_to_cpu(hdr->type);
390 
391 	switch (type) {
392 	case RNBD_MSG_IO:
393 		return process_rdma(rtrs, srv_sess, id, data, datalen, usr,
394 				    usrlen);
395 	case RNBD_MSG_CLOSE:
396 		ret = process_msg_close(rtrs, srv_sess, data, datalen,
397 					usr, usrlen);
398 		break;
399 	case RNBD_MSG_OPEN:
400 		ret = process_msg_open(rtrs, srv_sess, usr, usrlen,
401 				       data, datalen);
402 		break;
403 	case RNBD_MSG_SESS_INFO:
404 		ret = process_msg_sess_info(rtrs, srv_sess, usr, usrlen,
405 					    data, datalen);
406 		break;
407 	default:
408 		pr_warn("Received unexpected message type %d with dir %d from session %s\n",
409 			type, dir, srv_sess->sessname);
410 		return -EINVAL;
411 	}
412 
413 	rtrs_srv_resp_rdma(id, ret);
414 	return 0;
415 }
416 
417 static struct rnbd_srv_sess_dev
418 *rnbd_sess_dev_alloc(struct rnbd_srv_session *srv_sess)
419 {
420 	struct rnbd_srv_sess_dev *sess_dev;
421 	int error;
422 
423 	sess_dev = kzalloc(sizeof(*sess_dev), GFP_KERNEL);
424 	if (!sess_dev)
425 		return ERR_PTR(-ENOMEM);
426 
427 	error = xa_alloc(&srv_sess->index_idr, &sess_dev->device_id, sess_dev,
428 			 xa_limit_32b, GFP_NOWAIT);
429 	if (error < 0) {
430 		pr_warn("Allocating idr failed, err: %d\n", error);
431 		kfree(sess_dev);
432 		return ERR_PTR(error);
433 	}
434 
435 	return sess_dev;
436 }
437 
438 static struct rnbd_srv_dev *rnbd_srv_init_srv_dev(const char *id)
439 {
440 	struct rnbd_srv_dev *dev;
441 
442 	dev = kzalloc(sizeof(*dev), GFP_KERNEL);
443 	if (!dev)
444 		return ERR_PTR(-ENOMEM);
445 
446 	strlcpy(dev->id, id, sizeof(dev->id));
447 	kref_init(&dev->kref);
448 	INIT_LIST_HEAD(&dev->sess_dev_list);
449 	mutex_init(&dev->lock);
450 
451 	return dev;
452 }
453 
454 static struct rnbd_srv_dev *
455 rnbd_srv_find_or_add_srv_dev(struct rnbd_srv_dev *new_dev)
456 {
457 	struct rnbd_srv_dev *dev;
458 
459 	spin_lock(&dev_lock);
460 	list_for_each_entry(dev, &dev_list, list) {
461 		if (!strncmp(dev->id, new_dev->id, sizeof(dev->id))) {
462 			if (!kref_get_unless_zero(&dev->kref))
463 				/*
464 				 * We lost the race, device is almost dead.
465 				 *  Continue traversing to find a valid one.
466 				 */
467 				continue;
468 			spin_unlock(&dev_lock);
469 			return dev;
470 		}
471 	}
472 	list_add(&new_dev->list, &dev_list);
473 	spin_unlock(&dev_lock);
474 
475 	return new_dev;
476 }
477 
478 static int rnbd_srv_check_update_open_perm(struct rnbd_srv_dev *srv_dev,
479 					    struct rnbd_srv_session *srv_sess,
480 					    enum rnbd_access_mode access_mode)
481 {
482 	int ret = -EPERM;
483 
484 	mutex_lock(&srv_dev->lock);
485 
486 	switch (access_mode) {
487 	case RNBD_ACCESS_RO:
488 		ret = 0;
489 		break;
490 	case RNBD_ACCESS_RW:
491 		if (srv_dev->open_write_cnt == 0)  {
492 			srv_dev->open_write_cnt++;
493 			ret = 0;
494 		} else {
495 			pr_err("Mapping device '%s' for session %s with RW permissions failed. Device already opened as 'RW' by %d client(s), access mode %s.\n",
496 			       srv_dev->id, srv_sess->sessname,
497 			       srv_dev->open_write_cnt,
498 			       rnbd_access_mode_str(access_mode));
499 		}
500 		break;
501 	case RNBD_ACCESS_MIGRATION:
502 		if (srv_dev->open_write_cnt < 2) {
503 			srv_dev->open_write_cnt++;
504 			ret = 0;
505 		} else {
506 			pr_err("Mapping device '%s' for session %s with migration permissions failed. Device already opened as 'RW' by %d client(s), access mode %s.\n",
507 			       srv_dev->id, srv_sess->sessname,
508 			       srv_dev->open_write_cnt,
509 			       rnbd_access_mode_str(access_mode));
510 		}
511 		break;
512 	default:
513 		pr_err("Received mapping request for device '%s' on session %s with invalid access mode: %d\n",
514 		       srv_dev->id, srv_sess->sessname, access_mode);
515 		ret = -EINVAL;
516 	}
517 
518 	mutex_unlock(&srv_dev->lock);
519 
520 	return ret;
521 }
522 
523 static struct rnbd_srv_dev *
524 rnbd_srv_get_or_create_srv_dev(struct rnbd_dev *rnbd_dev,
525 				struct rnbd_srv_session *srv_sess,
526 				enum rnbd_access_mode access_mode)
527 {
528 	int ret;
529 	struct rnbd_srv_dev *new_dev, *dev;
530 
531 	new_dev = rnbd_srv_init_srv_dev(rnbd_dev->name);
532 	if (IS_ERR(new_dev))
533 		return new_dev;
534 
535 	dev = rnbd_srv_find_or_add_srv_dev(new_dev);
536 	if (dev != new_dev)
537 		kfree(new_dev);
538 
539 	ret = rnbd_srv_check_update_open_perm(dev, srv_sess, access_mode);
540 	if (ret) {
541 		rnbd_put_srv_dev(dev);
542 		return ERR_PTR(ret);
543 	}
544 
545 	return dev;
546 }
547 
548 static void rnbd_srv_fill_msg_open_rsp(struct rnbd_msg_open_rsp *rsp,
549 					struct rnbd_srv_sess_dev *sess_dev)
550 {
551 	struct rnbd_dev *rnbd_dev = sess_dev->rnbd_dev;
552 
553 	rsp->hdr.type = cpu_to_le16(RNBD_MSG_OPEN_RSP);
554 	rsp->device_id =
555 		cpu_to_le32(sess_dev->device_id);
556 	rsp->nsectors =
557 		cpu_to_le64(get_capacity(rnbd_dev->bdev->bd_disk));
558 	rsp->logical_block_size	=
559 		cpu_to_le16(bdev_logical_block_size(rnbd_dev->bdev));
560 	rsp->physical_block_size =
561 		cpu_to_le16(bdev_physical_block_size(rnbd_dev->bdev));
562 	rsp->max_segments =
563 		cpu_to_le16(rnbd_dev_get_max_segs(rnbd_dev));
564 	rsp->max_hw_sectors =
565 		cpu_to_le32(rnbd_dev_get_max_hw_sects(rnbd_dev));
566 	rsp->max_write_same_sectors =
567 		cpu_to_le32(bdev_write_same(rnbd_dev->bdev));
568 	rsp->max_discard_sectors =
569 		cpu_to_le32(rnbd_dev_get_max_discard_sects(rnbd_dev));
570 	rsp->discard_granularity =
571 		cpu_to_le32(rnbd_dev_get_discard_granularity(rnbd_dev));
572 	rsp->discard_alignment =
573 		cpu_to_le32(rnbd_dev_get_discard_alignment(rnbd_dev));
574 	rsp->secure_discard =
575 		cpu_to_le16(rnbd_dev_get_secure_discard(rnbd_dev));
576 	rsp->rotational =
577 		!blk_queue_nonrot(bdev_get_queue(rnbd_dev->bdev));
578 }
579 
580 static struct rnbd_srv_sess_dev *
581 rnbd_srv_create_set_sess_dev(struct rnbd_srv_session *srv_sess,
582 			      const struct rnbd_msg_open *open_msg,
583 			      struct rnbd_dev *rnbd_dev, fmode_t open_flags,
584 			      struct rnbd_srv_dev *srv_dev)
585 {
586 	struct rnbd_srv_sess_dev *sdev = rnbd_sess_dev_alloc(srv_sess);
587 
588 	if (IS_ERR(sdev))
589 		return sdev;
590 
591 	kref_init(&sdev->kref);
592 
593 	strlcpy(sdev->pathname, open_msg->dev_name, sizeof(sdev->pathname));
594 
595 	sdev->rnbd_dev		= rnbd_dev;
596 	sdev->sess		= srv_sess;
597 	sdev->dev		= srv_dev;
598 	sdev->open_flags	= open_flags;
599 	sdev->access_mode	= open_msg->access_mode;
600 
601 	return sdev;
602 }
603 
604 static char *rnbd_srv_get_full_path(struct rnbd_srv_session *srv_sess,
605 				     const char *dev_name)
606 {
607 	char *full_path;
608 	char *a, *b;
609 
610 	full_path = kmalloc(PATH_MAX, GFP_KERNEL);
611 	if (!full_path)
612 		return ERR_PTR(-ENOMEM);
613 
614 	/*
615 	 * Replace %SESSNAME% with a real session name in order to
616 	 * create device namespace.
617 	 */
618 	a = strnstr(dev_search_path, "%SESSNAME%", sizeof(dev_search_path));
619 	if (a) {
620 		int len = a - dev_search_path;
621 
622 		len = snprintf(full_path, PATH_MAX, "%.*s/%s/%s", len,
623 			       dev_search_path, srv_sess->sessname, dev_name);
624 		if (len >= PATH_MAX) {
625 			pr_err("Too long path: %s, %s, %s\n",
626 			       dev_search_path, srv_sess->sessname, dev_name);
627 			kfree(full_path);
628 			return ERR_PTR(-EINVAL);
629 		}
630 	} else {
631 		snprintf(full_path, PATH_MAX, "%s/%s",
632 			 dev_search_path, dev_name);
633 	}
634 
635 	/* eliminitate duplicated slashes */
636 	a = strchr(full_path, '/');
637 	b = a;
638 	while (*b != '\0') {
639 		if (*b == '/' && *a == '/') {
640 			b++;
641 		} else {
642 			a++;
643 			*a = *b;
644 			b++;
645 		}
646 	}
647 	a++;
648 	*a = '\0';
649 
650 	return full_path;
651 }
652 
653 static int process_msg_sess_info(struct rtrs_srv *rtrs,
654 				 struct rnbd_srv_session *srv_sess,
655 				 const void *msg, size_t len,
656 				 void *data, size_t datalen)
657 {
658 	const struct rnbd_msg_sess_info *sess_info_msg = msg;
659 	struct rnbd_msg_sess_info_rsp *rsp = data;
660 
661 	srv_sess->ver = min_t(u8, sess_info_msg->ver, RNBD_PROTO_VER_MAJOR);
662 	pr_debug("Session %s using protocol version %d (client version: %d, server version: %d)\n",
663 		 srv_sess->sessname, srv_sess->ver,
664 		 sess_info_msg->ver, RNBD_PROTO_VER_MAJOR);
665 
666 	rsp->hdr.type = cpu_to_le16(RNBD_MSG_SESS_INFO_RSP);
667 	rsp->ver = srv_sess->ver;
668 
669 	return 0;
670 }
671 
672 /**
673  * find_srv_sess_dev() - a dev is already opened by this name
674  * @srv_sess:	the session to search.
675  * @dev_name:	string containing the name of the device.
676  *
677  * Return struct rnbd_srv_sess_dev if srv_sess already opened the dev_name
678  * NULL if the session didn't open the device yet.
679  */
680 static struct rnbd_srv_sess_dev *
681 find_srv_sess_dev(struct rnbd_srv_session *srv_sess, const char *dev_name)
682 {
683 	struct rnbd_srv_sess_dev *sess_dev;
684 
685 	if (list_empty(&srv_sess->sess_dev_list))
686 		return NULL;
687 
688 	list_for_each_entry(sess_dev, &srv_sess->sess_dev_list, sess_list)
689 		if (!strcmp(sess_dev->pathname, dev_name))
690 			return sess_dev;
691 
692 	return NULL;
693 }
694 
695 static int process_msg_open(struct rtrs_srv *rtrs,
696 			    struct rnbd_srv_session *srv_sess,
697 			    const void *msg, size_t len,
698 			    void *data, size_t datalen)
699 {
700 	int ret;
701 	struct rnbd_srv_dev *srv_dev;
702 	struct rnbd_srv_sess_dev *srv_sess_dev;
703 	const struct rnbd_msg_open *open_msg = msg;
704 	fmode_t open_flags;
705 	char *full_path;
706 	struct rnbd_dev *rnbd_dev;
707 	struct rnbd_msg_open_rsp *rsp = data;
708 
709 	pr_debug("Open message received: session='%s' path='%s' access_mode=%d\n",
710 		 srv_sess->sessname, open_msg->dev_name,
711 		 open_msg->access_mode);
712 	open_flags = FMODE_READ;
713 	if (open_msg->access_mode != RNBD_ACCESS_RO)
714 		open_flags |= FMODE_WRITE;
715 
716 	mutex_lock(&srv_sess->lock);
717 
718 	srv_sess_dev = find_srv_sess_dev(srv_sess, open_msg->dev_name);
719 	if (srv_sess_dev)
720 		goto fill_response;
721 
722 	if ((strlen(dev_search_path) + strlen(open_msg->dev_name))
723 	    >= PATH_MAX) {
724 		pr_err("Opening device for session %s failed, device path too long. '%s/%s' is longer than PATH_MAX (%d)\n",
725 		       srv_sess->sessname, dev_search_path, open_msg->dev_name,
726 		       PATH_MAX);
727 		ret = -EINVAL;
728 		goto reject;
729 	}
730 	if (strstr(open_msg->dev_name, "..")) {
731 		pr_err("Opening device for session %s failed, device path %s contains relative path ..\n",
732 		       srv_sess->sessname, open_msg->dev_name);
733 		ret = -EINVAL;
734 		goto reject;
735 	}
736 	full_path = rnbd_srv_get_full_path(srv_sess, open_msg->dev_name);
737 	if (IS_ERR(full_path)) {
738 		ret = PTR_ERR(full_path);
739 		pr_err("Opening device '%s' for client %s failed, failed to get device full path, err: %d\n",
740 		       open_msg->dev_name, srv_sess->sessname, ret);
741 		goto reject;
742 	}
743 
744 	rnbd_dev = rnbd_dev_open(full_path, open_flags,
745 				 &srv_sess->sess_bio_set);
746 	if (IS_ERR(rnbd_dev)) {
747 		pr_err("Opening device '%s' on session %s failed, failed to open the block device, err: %ld\n",
748 		       full_path, srv_sess->sessname, PTR_ERR(rnbd_dev));
749 		ret = PTR_ERR(rnbd_dev);
750 		goto free_path;
751 	}
752 
753 	srv_dev = rnbd_srv_get_or_create_srv_dev(rnbd_dev, srv_sess,
754 						  open_msg->access_mode);
755 	if (IS_ERR(srv_dev)) {
756 		pr_err("Opening device '%s' on session %s failed, creating srv_dev failed, err: %ld\n",
757 		       full_path, srv_sess->sessname, PTR_ERR(srv_dev));
758 		ret = PTR_ERR(srv_dev);
759 		goto rnbd_dev_close;
760 	}
761 
762 	srv_sess_dev = rnbd_srv_create_set_sess_dev(srv_sess, open_msg,
763 						     rnbd_dev, open_flags,
764 						     srv_dev);
765 	if (IS_ERR(srv_sess_dev)) {
766 		pr_err("Opening device '%s' on session %s failed, creating sess_dev failed, err: %ld\n",
767 		       full_path, srv_sess->sessname, PTR_ERR(srv_sess_dev));
768 		ret = PTR_ERR(srv_sess_dev);
769 		goto srv_dev_put;
770 	}
771 
772 	/* Create the srv_dev sysfs files if they haven't been created yet. The
773 	 * reason to delay the creation is not to create the sysfs files before
774 	 * we are sure the device can be opened.
775 	 */
776 	mutex_lock(&srv_dev->lock);
777 	if (!srv_dev->dev_kobj.state_in_sysfs) {
778 		ret = rnbd_srv_create_dev_sysfs(srv_dev, rnbd_dev->bdev,
779 						 rnbd_dev->name);
780 		if (ret) {
781 			mutex_unlock(&srv_dev->lock);
782 			rnbd_srv_err(srv_sess_dev,
783 				      "Opening device failed, failed to create device sysfs files, err: %d\n",
784 				      ret);
785 			goto free_srv_sess_dev;
786 		}
787 	}
788 
789 	ret = rnbd_srv_create_dev_session_sysfs(srv_sess_dev);
790 	if (ret) {
791 		mutex_unlock(&srv_dev->lock);
792 		rnbd_srv_err(srv_sess_dev,
793 			      "Opening device failed, failed to create dev client sysfs files, err: %d\n",
794 			      ret);
795 		goto free_srv_sess_dev;
796 	}
797 
798 	list_add(&srv_sess_dev->dev_list, &srv_dev->sess_dev_list);
799 	mutex_unlock(&srv_dev->lock);
800 
801 	list_add(&srv_sess_dev->sess_list, &srv_sess->sess_dev_list);
802 
803 	rnbd_srv_info(srv_sess_dev, "Opened device '%s'\n", srv_dev->id);
804 
805 	kfree(full_path);
806 
807 fill_response:
808 	rnbd_srv_fill_msg_open_rsp(rsp, srv_sess_dev);
809 	mutex_unlock(&srv_sess->lock);
810 	return 0;
811 
812 free_srv_sess_dev:
813 	xa_erase(&srv_sess->index_idr, srv_sess_dev->device_id);
814 	synchronize_rcu();
815 	kfree(srv_sess_dev);
816 srv_dev_put:
817 	if (open_msg->access_mode != RNBD_ACCESS_RO) {
818 		mutex_lock(&srv_dev->lock);
819 		srv_dev->open_write_cnt--;
820 		mutex_unlock(&srv_dev->lock);
821 	}
822 	rnbd_put_srv_dev(srv_dev);
823 rnbd_dev_close:
824 	rnbd_dev_close(rnbd_dev);
825 free_path:
826 	kfree(full_path);
827 reject:
828 	mutex_unlock(&srv_sess->lock);
829 	return ret;
830 }
831 
832 static struct rtrs_srv_ctx *rtrs_ctx;
833 
834 static struct rtrs_srv_ops rtrs_ops;
835 static int __init rnbd_srv_init_module(void)
836 {
837 	int err;
838 
839 	BUILD_BUG_ON(sizeof(struct rnbd_msg_hdr) != 4);
840 	BUILD_BUG_ON(sizeof(struct rnbd_msg_sess_info) != 36);
841 	BUILD_BUG_ON(sizeof(struct rnbd_msg_sess_info_rsp) != 36);
842 	BUILD_BUG_ON(sizeof(struct rnbd_msg_open) != 264);
843 	BUILD_BUG_ON(sizeof(struct rnbd_msg_close) != 8);
844 	BUILD_BUG_ON(sizeof(struct rnbd_msg_open_rsp) != 56);
845 	rtrs_ops = (struct rtrs_srv_ops) {
846 		.rdma_ev = rnbd_srv_rdma_ev,
847 		.link_ev = rnbd_srv_link_ev,
848 	};
849 	rtrs_ctx = rtrs_srv_open(&rtrs_ops, port_nr);
850 	if (IS_ERR(rtrs_ctx)) {
851 		err = PTR_ERR(rtrs_ctx);
852 		pr_err("rtrs_srv_open(), err: %d\n", err);
853 		return err;
854 	}
855 
856 	err = rnbd_srv_create_sysfs_files();
857 	if (err) {
858 		pr_err("rnbd_srv_create_sysfs_files(), err: %d\n", err);
859 		rtrs_srv_close(rtrs_ctx);
860 		return err;
861 	}
862 
863 	return 0;
864 }
865 
866 static void __exit rnbd_srv_cleanup_module(void)
867 {
868 	rtrs_srv_close(rtrs_ctx);
869 	WARN_ON(!list_empty(&sess_list));
870 	rnbd_srv_destroy_sysfs_files();
871 }
872 
873 module_init(rnbd_srv_init_module);
874 module_exit(rnbd_srv_cleanup_module);
875