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1 /*
2  * Copyright (C) 2001, 2002 Sistina Software (UK) Limited.
3  * Copyright (C) 2004 - 2006 Red Hat, Inc. All rights reserved.
4  *
5  * This file is released under the GPL.
6  */
7 
8 #include "dm-core.h"
9 #include "dm-ima.h"
10 #include <linux/module.h>
11 #include <linux/vmalloc.h>
12 #include <linux/miscdevice.h>
13 #include <linux/sched/mm.h>
14 #include <linux/init.h>
15 #include <linux/wait.h>
16 #include <linux/slab.h>
17 #include <linux/rbtree.h>
18 #include <linux/dm-ioctl.h>
19 #include <linux/hdreg.h>
20 #include <linux/compat.h>
21 #include <linux/nospec.h>
22 
23 #include <linux/uaccess.h>
24 #include <linux/ima.h>
25 
26 #define DM_MSG_PREFIX "ioctl"
27 #define DM_DRIVER_EMAIL "dm-devel@redhat.com"
28 
29 struct dm_file {
30 	/*
31 	 * poll will wait until the global event number is greater than
32 	 * this value.
33 	 */
34 	volatile unsigned int global_event_nr;
35 };
36 
37 /*-----------------------------------------------------------------
38  * The ioctl interface needs to be able to look up devices by
39  * name or uuid.
40  *---------------------------------------------------------------*/
41 struct hash_cell {
42 	struct rb_node name_node;
43 	struct rb_node uuid_node;
44 	bool name_set;
45 	bool uuid_set;
46 
47 	char *name;
48 	char *uuid;
49 	struct mapped_device *md;
50 	struct dm_table *new_map;
51 };
52 
53 struct vers_iter {
54     size_t param_size;
55     struct dm_target_versions *vers, *old_vers;
56     char *end;
57     uint32_t flags;
58 };
59 
60 
61 static struct rb_root name_rb_tree = RB_ROOT;
62 static struct rb_root uuid_rb_tree = RB_ROOT;
63 
64 static void dm_hash_remove_all(bool keep_open_devices, bool mark_deferred, bool only_deferred);
65 
66 /*
67  * Guards access to both hash tables.
68  */
69 static DECLARE_RWSEM(_hash_lock);
70 
71 /*
72  * Protects use of mdptr to obtain hash cell name and uuid from mapped device.
73  */
74 static DEFINE_MUTEX(dm_hash_cells_mutex);
75 
dm_hash_exit(void)76 static void dm_hash_exit(void)
77 {
78 	dm_hash_remove_all(false, false, false);
79 }
80 
81 /*-----------------------------------------------------------------
82  * Code for looking up a device by name
83  *---------------------------------------------------------------*/
__get_name_cell(const char * str)84 static struct hash_cell *__get_name_cell(const char *str)
85 {
86 	struct rb_node *n = name_rb_tree.rb_node;
87 
88 	while (n) {
89 		struct hash_cell *hc = container_of(n, struct hash_cell, name_node);
90 		int c = strcmp(hc->name, str);
91 		if (!c) {
92 			dm_get(hc->md);
93 			return hc;
94 		}
95 		n = c >= 0 ? n->rb_left : n->rb_right;
96 	}
97 
98 	return NULL;
99 }
100 
__get_uuid_cell(const char * str)101 static struct hash_cell *__get_uuid_cell(const char *str)
102 {
103 	struct rb_node *n = uuid_rb_tree.rb_node;
104 
105 	while (n) {
106 		struct hash_cell *hc = container_of(n, struct hash_cell, uuid_node);
107 		int c = strcmp(hc->uuid, str);
108 		if (!c) {
109 			dm_get(hc->md);
110 			return hc;
111 		}
112 		n = c >= 0 ? n->rb_left : n->rb_right;
113 	}
114 
115 	return NULL;
116 }
117 
__unlink_name(struct hash_cell * hc)118 static void __unlink_name(struct hash_cell *hc)
119 {
120 	if (hc->name_set) {
121 		hc->name_set = false;
122 		rb_erase(&hc->name_node, &name_rb_tree);
123 	}
124 }
125 
__unlink_uuid(struct hash_cell * hc)126 static void __unlink_uuid(struct hash_cell *hc)
127 {
128 	if (hc->uuid_set) {
129 		hc->uuid_set = false;
130 		rb_erase(&hc->uuid_node, &uuid_rb_tree);
131 	}
132 }
133 
__link_name(struct hash_cell * new_hc)134 static void __link_name(struct hash_cell *new_hc)
135 {
136 	struct rb_node **n, *parent;
137 
138 	__unlink_name(new_hc);
139 
140 	new_hc->name_set = true;
141 
142 	n = &name_rb_tree.rb_node;
143 	parent = NULL;
144 
145 	while (*n) {
146 		struct hash_cell *hc = container_of(*n, struct hash_cell, name_node);
147 		int c = strcmp(hc->name, new_hc->name);
148 		BUG_ON(!c);
149 		parent = *n;
150 		n = c >= 0 ? &hc->name_node.rb_left : &hc->name_node.rb_right;
151 	}
152 
153 	rb_link_node(&new_hc->name_node, parent, n);
154 	rb_insert_color(&new_hc->name_node, &name_rb_tree);
155 }
156 
__link_uuid(struct hash_cell * new_hc)157 static void __link_uuid(struct hash_cell *new_hc)
158 {
159 	struct rb_node **n, *parent;
160 
161 	__unlink_uuid(new_hc);
162 
163 	new_hc->uuid_set = true;
164 
165 	n = &uuid_rb_tree.rb_node;
166 	parent = NULL;
167 
168 	while (*n) {
169 		struct hash_cell *hc = container_of(*n, struct hash_cell, uuid_node);
170 		int c = strcmp(hc->uuid, new_hc->uuid);
171 		BUG_ON(!c);
172 		parent = *n;
173 		n = c > 0 ? &hc->uuid_node.rb_left : &hc->uuid_node.rb_right;
174 	}
175 
176 	rb_link_node(&new_hc->uuid_node, parent, n);
177 	rb_insert_color(&new_hc->uuid_node, &uuid_rb_tree);
178 }
179 
__get_dev_cell(uint64_t dev)180 static struct hash_cell *__get_dev_cell(uint64_t dev)
181 {
182 	struct mapped_device *md;
183 	struct hash_cell *hc;
184 
185 	md = dm_get_md(huge_decode_dev(dev));
186 	if (!md)
187 		return NULL;
188 
189 	hc = dm_get_mdptr(md);
190 	if (!hc) {
191 		dm_put(md);
192 		return NULL;
193 	}
194 
195 	return hc;
196 }
197 
198 /*-----------------------------------------------------------------
199  * Inserting, removing and renaming a device.
200  *---------------------------------------------------------------*/
alloc_cell(const char * name,const char * uuid,struct mapped_device * md)201 static struct hash_cell *alloc_cell(const char *name, const char *uuid,
202 				    struct mapped_device *md)
203 {
204 	struct hash_cell *hc;
205 
206 	hc = kmalloc(sizeof(*hc), GFP_KERNEL);
207 	if (!hc)
208 		return NULL;
209 
210 	hc->name = kstrdup(name, GFP_KERNEL);
211 	if (!hc->name) {
212 		kfree(hc);
213 		return NULL;
214 	}
215 
216 	if (!uuid)
217 		hc->uuid = NULL;
218 
219 	else {
220 		hc->uuid = kstrdup(uuid, GFP_KERNEL);
221 		if (!hc->uuid) {
222 			kfree(hc->name);
223 			kfree(hc);
224 			return NULL;
225 		}
226 	}
227 
228 	hc->name_set = hc->uuid_set = false;
229 	hc->md = md;
230 	hc->new_map = NULL;
231 	return hc;
232 }
233 
free_cell(struct hash_cell * hc)234 static void free_cell(struct hash_cell *hc)
235 {
236 	if (hc) {
237 		kfree(hc->name);
238 		kfree(hc->uuid);
239 		kfree(hc);
240 	}
241 }
242 
243 /*
244  * The kdev_t and uuid of a device can never change once it is
245  * initially inserted.
246  */
dm_hash_insert(const char * name,const char * uuid,struct mapped_device * md)247 static int dm_hash_insert(const char *name, const char *uuid, struct mapped_device *md)
248 {
249 	struct hash_cell *cell, *hc;
250 
251 	/*
252 	 * Allocate the new cells.
253 	 */
254 	cell = alloc_cell(name, uuid, md);
255 	if (!cell)
256 		return -ENOMEM;
257 
258 	/*
259 	 * Insert the cell into both hash tables.
260 	 */
261 	down_write(&_hash_lock);
262 	hc = __get_name_cell(name);
263 	if (hc) {
264 		dm_put(hc->md);
265 		goto bad;
266 	}
267 
268 	__link_name(cell);
269 
270 	if (uuid) {
271 		hc = __get_uuid_cell(uuid);
272 		if (hc) {
273 			__unlink_name(cell);
274 			dm_put(hc->md);
275 			goto bad;
276 		}
277 		__link_uuid(cell);
278 	}
279 	dm_get(md);
280 	mutex_lock(&dm_hash_cells_mutex);
281 	dm_set_mdptr(md, cell);
282 	mutex_unlock(&dm_hash_cells_mutex);
283 	up_write(&_hash_lock);
284 
285 	return 0;
286 
287  bad:
288 	up_write(&_hash_lock);
289 	free_cell(cell);
290 	return -EBUSY;
291 }
292 
__hash_remove(struct hash_cell * hc)293 static struct dm_table *__hash_remove(struct hash_cell *hc)
294 {
295 	struct dm_table *table;
296 	int srcu_idx;
297 
298 	/* remove from the dev trees */
299 	__unlink_name(hc);
300 	__unlink_uuid(hc);
301 	mutex_lock(&dm_hash_cells_mutex);
302 	dm_set_mdptr(hc->md, NULL);
303 	mutex_unlock(&dm_hash_cells_mutex);
304 
305 	table = dm_get_live_table(hc->md, &srcu_idx);
306 	if (table)
307 		dm_table_event(table);
308 	dm_put_live_table(hc->md, srcu_idx);
309 
310 	table = NULL;
311 	if (hc->new_map)
312 		table = hc->new_map;
313 	dm_put(hc->md);
314 	free_cell(hc);
315 
316 	return table;
317 }
318 
dm_hash_remove_all(bool keep_open_devices,bool mark_deferred,bool only_deferred)319 static void dm_hash_remove_all(bool keep_open_devices, bool mark_deferred, bool only_deferred)
320 {
321 	int dev_skipped;
322 	struct rb_node *n;
323 	struct hash_cell *hc;
324 	struct mapped_device *md;
325 	struct dm_table *t;
326 
327 retry:
328 	dev_skipped = 0;
329 
330 	down_write(&_hash_lock);
331 
332 	for (n = rb_first(&name_rb_tree); n; n = rb_next(n)) {
333 		hc = container_of(n, struct hash_cell, name_node);
334 		md = hc->md;
335 		dm_get(md);
336 
337 		if (keep_open_devices &&
338 		    dm_lock_for_deletion(md, mark_deferred, only_deferred)) {
339 			dm_put(md);
340 			dev_skipped++;
341 			continue;
342 		}
343 
344 		t = __hash_remove(hc);
345 
346 		up_write(&_hash_lock);
347 
348 		if (t) {
349 			dm_sync_table(md);
350 			dm_table_destroy(t);
351 		}
352 		dm_ima_measure_on_device_remove(md, true);
353 		dm_put(md);
354 		if (likely(keep_open_devices))
355 			dm_destroy(md);
356 		else
357 			dm_destroy_immediate(md);
358 
359 		/*
360 		 * Some mapped devices may be using other mapped
361 		 * devices, so repeat until we make no further
362 		 * progress.  If a new mapped device is created
363 		 * here it will also get removed.
364 		 */
365 		goto retry;
366 	}
367 
368 	up_write(&_hash_lock);
369 
370 	if (dev_skipped)
371 		DMWARN("remove_all left %d open device(s)", dev_skipped);
372 }
373 
374 /*
375  * Set the uuid of a hash_cell that isn't already set.
376  */
__set_cell_uuid(struct hash_cell * hc,char * new_uuid)377 static void __set_cell_uuid(struct hash_cell *hc, char *new_uuid)
378 {
379 	mutex_lock(&dm_hash_cells_mutex);
380 	hc->uuid = new_uuid;
381 	mutex_unlock(&dm_hash_cells_mutex);
382 
383 	__link_uuid(hc);
384 }
385 
386 /*
387  * Changes the name of a hash_cell and returns the old name for
388  * the caller to free.
389  */
__change_cell_name(struct hash_cell * hc,char * new_name)390 static char *__change_cell_name(struct hash_cell *hc, char *new_name)
391 {
392 	char *old_name;
393 
394 	/*
395 	 * Rename and move the name cell.
396 	 */
397 	__unlink_name(hc);
398 	old_name = hc->name;
399 
400 	mutex_lock(&dm_hash_cells_mutex);
401 	hc->name = new_name;
402 	mutex_unlock(&dm_hash_cells_mutex);
403 
404 	__link_name(hc);
405 
406 	return old_name;
407 }
408 
dm_hash_rename(struct dm_ioctl * param,const char * new)409 static struct mapped_device *dm_hash_rename(struct dm_ioctl *param,
410 					    const char *new)
411 {
412 	char *new_data, *old_name = NULL;
413 	struct hash_cell *hc;
414 	struct dm_table *table;
415 	struct mapped_device *md;
416 	unsigned int change_uuid = (param->flags & DM_UUID_FLAG) ? 1 : 0;
417 	int srcu_idx;
418 
419 	/*
420 	 * duplicate new.
421 	 */
422 	new_data = kstrdup(new, GFP_KERNEL);
423 	if (!new_data)
424 		return ERR_PTR(-ENOMEM);
425 
426 	down_write(&_hash_lock);
427 
428 	/*
429 	 * Is new free ?
430 	 */
431 	if (change_uuid)
432 		hc = __get_uuid_cell(new);
433 	else
434 		hc = __get_name_cell(new);
435 
436 	if (hc) {
437 		DMERR("Unable to change %s on mapped device %s to one that already exists: %s",
438 		      change_uuid ? "uuid" : "name",
439 		      param->name, new);
440 		dm_put(hc->md);
441 		up_write(&_hash_lock);
442 		kfree(new_data);
443 		return ERR_PTR(-EBUSY);
444 	}
445 
446 	/*
447 	 * Is there such a device as 'old' ?
448 	 */
449 	hc = __get_name_cell(param->name);
450 	if (!hc) {
451 		DMERR("Unable to rename non-existent device, %s to %s%s",
452 		      param->name, change_uuid ? "uuid " : "", new);
453 		up_write(&_hash_lock);
454 		kfree(new_data);
455 		return ERR_PTR(-ENXIO);
456 	}
457 
458 	/*
459 	 * Does this device already have a uuid?
460 	 */
461 	if (change_uuid && hc->uuid) {
462 		DMERR("Unable to change uuid of mapped device %s to %s "
463 		      "because uuid is already set to %s",
464 		      param->name, new, hc->uuid);
465 		dm_put(hc->md);
466 		up_write(&_hash_lock);
467 		kfree(new_data);
468 		return ERR_PTR(-EINVAL);
469 	}
470 
471 	if (change_uuid)
472 		__set_cell_uuid(hc, new_data);
473 	else
474 		old_name = __change_cell_name(hc, new_data);
475 
476 	/*
477 	 * Wake up any dm event waiters.
478 	 */
479 	table = dm_get_live_table(hc->md, &srcu_idx);
480 	if (table)
481 		dm_table_event(table);
482 	dm_put_live_table(hc->md, srcu_idx);
483 
484 	if (!dm_kobject_uevent(hc->md, KOBJ_CHANGE, param->event_nr, false))
485 		param->flags |= DM_UEVENT_GENERATED_FLAG;
486 
487 	md = hc->md;
488 
489 	dm_ima_measure_on_device_rename(md);
490 
491 	up_write(&_hash_lock);
492 	kfree(old_name);
493 
494 	return md;
495 }
496 
dm_deferred_remove(void)497 void dm_deferred_remove(void)
498 {
499 	dm_hash_remove_all(true, false, true);
500 }
501 
502 /*-----------------------------------------------------------------
503  * Implementation of the ioctl commands
504  *---------------------------------------------------------------*/
505 /*
506  * All the ioctl commands get dispatched to functions with this
507  * prototype.
508  */
509 typedef int (*ioctl_fn)(struct file *filp, struct dm_ioctl *param, size_t param_size);
510 
remove_all(struct file * filp,struct dm_ioctl * param,size_t param_size)511 static int remove_all(struct file *filp, struct dm_ioctl *param, size_t param_size)
512 {
513 	dm_hash_remove_all(true, !!(param->flags & DM_DEFERRED_REMOVE), false);
514 	param->data_size = 0;
515 	return 0;
516 }
517 
518 /*
519  * Round up the ptr to an 8-byte boundary.
520  */
521 #define ALIGN_MASK 7
align_val(size_t val)522 static inline size_t align_val(size_t val)
523 {
524 	return (val + ALIGN_MASK) & ~ALIGN_MASK;
525 }
align_ptr(void * ptr)526 static inline void *align_ptr(void *ptr)
527 {
528 	return (void *)align_val((size_t)ptr);
529 }
530 
531 /*
532  * Retrieves the data payload buffer from an already allocated
533  * struct dm_ioctl.
534  */
get_result_buffer(struct dm_ioctl * param,size_t param_size,size_t * len)535 static void *get_result_buffer(struct dm_ioctl *param, size_t param_size,
536 			       size_t *len)
537 {
538 	param->data_start = align_ptr(param + 1) - (void *) param;
539 
540 	if (param->data_start < param_size)
541 		*len = param_size - param->data_start;
542 	else
543 		*len = 0;
544 
545 	return ((void *) param) + param->data_start;
546 }
547 
filter_device(struct hash_cell * hc,const char * pfx_name,const char * pfx_uuid)548 static bool filter_device(struct hash_cell *hc, const char *pfx_name, const char *pfx_uuid)
549 {
550 	const char *val;
551 	size_t val_len, pfx_len;
552 
553 	val = hc->name;
554 	val_len = strlen(val);
555 	pfx_len = strnlen(pfx_name, DM_NAME_LEN);
556 	if (pfx_len > val_len)
557 		return false;
558 	if (memcmp(val, pfx_name, pfx_len))
559 		return false;
560 
561 	val = hc->uuid ? hc->uuid : "";
562 	val_len = strlen(val);
563 	pfx_len = strnlen(pfx_uuid, DM_UUID_LEN);
564 	if (pfx_len > val_len)
565 		return false;
566 	if (memcmp(val, pfx_uuid, pfx_len))
567 		return false;
568 
569 	return true;
570 }
571 
list_devices(struct file * filp,struct dm_ioctl * param,size_t param_size)572 static int list_devices(struct file *filp, struct dm_ioctl *param, size_t param_size)
573 {
574 	struct rb_node *n;
575 	struct hash_cell *hc;
576 	size_t len, needed = 0;
577 	struct gendisk *disk;
578 	struct dm_name_list *orig_nl, *nl, *old_nl = NULL;
579 	uint32_t *event_nr;
580 
581 	down_write(&_hash_lock);
582 
583 	/*
584 	 * Loop through all the devices working out how much
585 	 * space we need.
586 	 */
587 	for (n = rb_first(&name_rb_tree); n; n = rb_next(n)) {
588 		hc = container_of(n, struct hash_cell, name_node);
589 		if (!filter_device(hc, param->name, param->uuid))
590 			continue;
591 		needed += align_val(offsetof(struct dm_name_list, name) + strlen(hc->name) + 1);
592 		needed += align_val(sizeof(uint32_t) * 2);
593 		if (param->flags & DM_UUID_FLAG && hc->uuid)
594 			needed += align_val(strlen(hc->uuid) + 1);
595 	}
596 
597 	/*
598 	 * Grab our output buffer.
599 	 */
600 	nl = orig_nl = get_result_buffer(param, param_size, &len);
601 	if (len < needed || len < sizeof(nl->dev)) {
602 		param->flags |= DM_BUFFER_FULL_FLAG;
603 		goto out;
604 	}
605 	param->data_size = param->data_start + needed;
606 
607 	nl->dev = 0;	/* Flags no data */
608 
609 	/*
610 	 * Now loop through filling out the names.
611 	 */
612 	for (n = rb_first(&name_rb_tree); n; n = rb_next(n)) {
613 		void *uuid_ptr;
614 		hc = container_of(n, struct hash_cell, name_node);
615 		if (!filter_device(hc, param->name, param->uuid))
616 			continue;
617 		if (old_nl)
618 			old_nl->next = (uint32_t) ((void *) nl -
619 						   (void *) old_nl);
620 		disk = dm_disk(hc->md);
621 		nl->dev = huge_encode_dev(disk_devt(disk));
622 		nl->next = 0;
623 		strcpy(nl->name, hc->name);
624 
625 		old_nl = nl;
626 		event_nr = align_ptr(nl->name + strlen(hc->name) + 1);
627 		event_nr[0] = dm_get_event_nr(hc->md);
628 		event_nr[1] = 0;
629 		uuid_ptr = align_ptr(event_nr + 2);
630 		if (param->flags & DM_UUID_FLAG) {
631 			if (hc->uuid) {
632 				event_nr[1] |= DM_NAME_LIST_FLAG_HAS_UUID;
633 				strcpy(uuid_ptr, hc->uuid);
634 				uuid_ptr = align_ptr(uuid_ptr + strlen(hc->uuid) + 1);
635 			} else {
636 				event_nr[1] |= DM_NAME_LIST_FLAG_DOESNT_HAVE_UUID;
637 			}
638 		}
639 		nl = uuid_ptr;
640 	}
641 	/*
642 	 * If mismatch happens, security may be compromised due to buffer
643 	 * overflow, so it's better to crash.
644 	 */
645 	BUG_ON((char *)nl - (char *)orig_nl != needed);
646 
647  out:
648 	up_write(&_hash_lock);
649 	return 0;
650 }
651 
list_version_get_needed(struct target_type * tt,void * needed_param)652 static void list_version_get_needed(struct target_type *tt, void *needed_param)
653 {
654     size_t *needed = needed_param;
655 
656     *needed += sizeof(struct dm_target_versions);
657     *needed += strlen(tt->name) + 1;
658     *needed += ALIGN_MASK;
659 }
660 
list_version_get_info(struct target_type * tt,void * param)661 static void list_version_get_info(struct target_type *tt, void *param)
662 {
663     struct vers_iter *info = param;
664 
665     /* Check space - it might have changed since the first iteration */
666     if ((char *)info->vers + sizeof(tt->version) + strlen(tt->name) + 1 >
667 	info->end) {
668 
669 	info->flags = DM_BUFFER_FULL_FLAG;
670 	return;
671     }
672 
673     if (info->old_vers)
674 	info->old_vers->next = (uint32_t) ((void *)info->vers -
675 					   (void *)info->old_vers);
676     info->vers->version[0] = tt->version[0];
677     info->vers->version[1] = tt->version[1];
678     info->vers->version[2] = tt->version[2];
679     info->vers->next = 0;
680     strcpy(info->vers->name, tt->name);
681 
682     info->old_vers = info->vers;
683     info->vers = align_ptr(((void *) ++info->vers) + strlen(tt->name) + 1);
684 }
685 
__list_versions(struct dm_ioctl * param,size_t param_size,const char * name)686 static int __list_versions(struct dm_ioctl *param, size_t param_size, const char *name)
687 {
688 	size_t len, needed = 0;
689 	struct dm_target_versions *vers;
690 	struct vers_iter iter_info;
691 	struct target_type *tt = NULL;
692 
693 	if (name) {
694 		tt = dm_get_target_type(name);
695 		if (!tt)
696 			return -EINVAL;
697 	}
698 
699 	/*
700 	 * Loop through all the devices working out how much
701 	 * space we need.
702 	 */
703 	if (!tt)
704 		dm_target_iterate(list_version_get_needed, &needed);
705 	else
706 		list_version_get_needed(tt, &needed);
707 
708 	/*
709 	 * Grab our output buffer.
710 	 */
711 	vers = get_result_buffer(param, param_size, &len);
712 	if (len < needed) {
713 		param->flags |= DM_BUFFER_FULL_FLAG;
714 		goto out;
715 	}
716 	param->data_size = param->data_start + needed;
717 
718 	iter_info.param_size = param_size;
719 	iter_info.old_vers = NULL;
720 	iter_info.vers = vers;
721 	iter_info.flags = 0;
722 	iter_info.end = (char *)vers + needed;
723 
724 	/*
725 	 * Now loop through filling out the names & versions.
726 	 */
727 	if (!tt)
728 		dm_target_iterate(list_version_get_info, &iter_info);
729 	else
730 		list_version_get_info(tt, &iter_info);
731 	param->flags |= iter_info.flags;
732 
733  out:
734 	if (tt)
735 		dm_put_target_type(tt);
736 	return 0;
737 }
738 
list_versions(struct file * filp,struct dm_ioctl * param,size_t param_size)739 static int list_versions(struct file *filp, struct dm_ioctl *param, size_t param_size)
740 {
741 	return __list_versions(param, param_size, NULL);
742 }
743 
get_target_version(struct file * filp,struct dm_ioctl * param,size_t param_size)744 static int get_target_version(struct file *filp, struct dm_ioctl *param, size_t param_size)
745 {
746 	return __list_versions(param, param_size, param->name);
747 }
748 
check_name(const char * name)749 static int check_name(const char *name)
750 {
751 	if (strchr(name, '/')) {
752 		DMERR("invalid device name");
753 		return -EINVAL;
754 	}
755 
756 	return 0;
757 }
758 
759 /*
760  * On successful return, the caller must not attempt to acquire
761  * _hash_lock without first calling dm_put_live_table, because dm_table_destroy
762  * waits for this dm_put_live_table and could be called under this lock.
763  */
dm_get_inactive_table(struct mapped_device * md,int * srcu_idx)764 static struct dm_table *dm_get_inactive_table(struct mapped_device *md, int *srcu_idx)
765 {
766 	struct hash_cell *hc;
767 	struct dm_table *table = NULL;
768 
769 	/* increment rcu count, we don't care about the table pointer */
770 	dm_get_live_table(md, srcu_idx);
771 
772 	down_read(&_hash_lock);
773 	hc = dm_get_mdptr(md);
774 	if (!hc || hc->md != md) {
775 		DMERR("device has been removed from the dev hash table.");
776 		goto out;
777 	}
778 
779 	table = hc->new_map;
780 
781 out:
782 	up_read(&_hash_lock);
783 
784 	return table;
785 }
786 
dm_get_live_or_inactive_table(struct mapped_device * md,struct dm_ioctl * param,int * srcu_idx)787 static struct dm_table *dm_get_live_or_inactive_table(struct mapped_device *md,
788 						      struct dm_ioctl *param,
789 						      int *srcu_idx)
790 {
791 	return (param->flags & DM_QUERY_INACTIVE_TABLE_FLAG) ?
792 		dm_get_inactive_table(md, srcu_idx) : dm_get_live_table(md, srcu_idx);
793 }
794 
795 /*
796  * Fills in a dm_ioctl structure, ready for sending back to
797  * userland.
798  */
__dev_status(struct mapped_device * md,struct dm_ioctl * param)799 static void __dev_status(struct mapped_device *md, struct dm_ioctl *param)
800 {
801 	struct gendisk *disk = dm_disk(md);
802 	struct dm_table *table;
803 	int srcu_idx;
804 
805 	param->flags &= ~(DM_SUSPEND_FLAG | DM_READONLY_FLAG |
806 			  DM_ACTIVE_PRESENT_FLAG | DM_INTERNAL_SUSPEND_FLAG);
807 
808 	if (dm_suspended_md(md))
809 		param->flags |= DM_SUSPEND_FLAG;
810 
811 	if (dm_suspended_internally_md(md))
812 		param->flags |= DM_INTERNAL_SUSPEND_FLAG;
813 
814 	if (dm_test_deferred_remove_flag(md))
815 		param->flags |= DM_DEFERRED_REMOVE;
816 
817 	param->dev = huge_encode_dev(disk_devt(disk));
818 
819 	/*
820 	 * Yes, this will be out of date by the time it gets back
821 	 * to userland, but it is still very useful for
822 	 * debugging.
823 	 */
824 	param->open_count = dm_open_count(md);
825 
826 	param->event_nr = dm_get_event_nr(md);
827 	param->target_count = 0;
828 
829 	table = dm_get_live_table(md, &srcu_idx);
830 	if (table) {
831 		if (!(param->flags & DM_QUERY_INACTIVE_TABLE_FLAG)) {
832 			if (get_disk_ro(disk))
833 				param->flags |= DM_READONLY_FLAG;
834 			param->target_count = table->num_targets;
835 		}
836 
837 		param->flags |= DM_ACTIVE_PRESENT_FLAG;
838 	}
839 	dm_put_live_table(md, srcu_idx);
840 
841 	if (param->flags & DM_QUERY_INACTIVE_TABLE_FLAG) {
842 		int srcu_idx;
843 		table = dm_get_inactive_table(md, &srcu_idx);
844 		if (table) {
845 			if (!(dm_table_get_mode(table) & FMODE_WRITE))
846 				param->flags |= DM_READONLY_FLAG;
847 			param->target_count = table->num_targets;
848 		}
849 		dm_put_live_table(md, srcu_idx);
850 	}
851 }
852 
dev_create(struct file * filp,struct dm_ioctl * param,size_t param_size)853 static int dev_create(struct file *filp, struct dm_ioctl *param, size_t param_size)
854 {
855 	int r, m = DM_ANY_MINOR;
856 	struct mapped_device *md;
857 
858 	r = check_name(param->name);
859 	if (r)
860 		return r;
861 
862 	if (param->flags & DM_PERSISTENT_DEV_FLAG)
863 		m = MINOR(huge_decode_dev(param->dev));
864 
865 	r = dm_create(m, &md);
866 	if (r)
867 		return r;
868 
869 	r = dm_hash_insert(param->name, *param->uuid ? param->uuid : NULL, md);
870 	if (r) {
871 		dm_put(md);
872 		dm_destroy(md);
873 		return r;
874 	}
875 
876 	param->flags &= ~DM_INACTIVE_PRESENT_FLAG;
877 
878 	__dev_status(md, param);
879 
880 	dm_put(md);
881 
882 	return 0;
883 }
884 
885 /*
886  * Always use UUID for lookups if it's present, otherwise use name or dev.
887  */
__find_device_hash_cell(struct dm_ioctl * param)888 static struct hash_cell *__find_device_hash_cell(struct dm_ioctl *param)
889 {
890 	struct hash_cell *hc = NULL;
891 
892 	if (*param->uuid) {
893 		if (*param->name || param->dev) {
894 			DMERR("Invalid ioctl structure: uuid %s, name %s, dev %llx",
895 			      param->uuid, param->name, (unsigned long long)param->dev);
896 			return NULL;
897 		}
898 
899 		hc = __get_uuid_cell(param->uuid);
900 		if (!hc)
901 			return NULL;
902 	} else if (*param->name) {
903 		if (param->dev) {
904 			DMERR("Invalid ioctl structure: name %s, dev %llx",
905 			      param->name, (unsigned long long)param->dev);
906 			return NULL;
907 		}
908 
909 		hc = __get_name_cell(param->name);
910 		if (!hc)
911 			return NULL;
912 	} else if (param->dev) {
913 		hc = __get_dev_cell(param->dev);
914 		if (!hc)
915 			return NULL;
916 	} else
917 		return NULL;
918 
919 	/*
920 	 * Sneakily write in both the name and the uuid
921 	 * while we have the cell.
922 	 */
923 	strlcpy(param->name, hc->name, sizeof(param->name));
924 	if (hc->uuid)
925 		strlcpy(param->uuid, hc->uuid, sizeof(param->uuid));
926 	else
927 		param->uuid[0] = '\0';
928 
929 	if (hc->new_map)
930 		param->flags |= DM_INACTIVE_PRESENT_FLAG;
931 	else
932 		param->flags &= ~DM_INACTIVE_PRESENT_FLAG;
933 
934 	return hc;
935 }
936 
find_device(struct dm_ioctl * param)937 static struct mapped_device *find_device(struct dm_ioctl *param)
938 {
939 	struct hash_cell *hc;
940 	struct mapped_device *md = NULL;
941 
942 	down_read(&_hash_lock);
943 	hc = __find_device_hash_cell(param);
944 	if (hc)
945 		md = hc->md;
946 	up_read(&_hash_lock);
947 
948 	return md;
949 }
950 
dev_remove(struct file * filp,struct dm_ioctl * param,size_t param_size)951 static int dev_remove(struct file *filp, struct dm_ioctl *param, size_t param_size)
952 {
953 	struct hash_cell *hc;
954 	struct mapped_device *md;
955 	int r;
956 	struct dm_table *t;
957 
958 	down_write(&_hash_lock);
959 	hc = __find_device_hash_cell(param);
960 
961 	if (!hc) {
962 		DMDEBUG_LIMIT("device doesn't appear to be in the dev hash table.");
963 		up_write(&_hash_lock);
964 		return -ENXIO;
965 	}
966 
967 	md = hc->md;
968 
969 	/*
970 	 * Ensure the device is not open and nothing further can open it.
971 	 */
972 	r = dm_lock_for_deletion(md, !!(param->flags & DM_DEFERRED_REMOVE), false);
973 	if (r) {
974 		if (r == -EBUSY && param->flags & DM_DEFERRED_REMOVE) {
975 			up_write(&_hash_lock);
976 			dm_put(md);
977 			return 0;
978 		}
979 		DMDEBUG_LIMIT("unable to remove open device %s", hc->name);
980 		up_write(&_hash_lock);
981 		dm_put(md);
982 		return r;
983 	}
984 
985 	t = __hash_remove(hc);
986 	up_write(&_hash_lock);
987 
988 	if (t) {
989 		dm_sync_table(md);
990 		dm_table_destroy(t);
991 	}
992 
993 	param->flags &= ~DM_DEFERRED_REMOVE;
994 
995 	dm_ima_measure_on_device_remove(md, false);
996 
997 	if (!dm_kobject_uevent(md, KOBJ_REMOVE, param->event_nr, false))
998 		param->flags |= DM_UEVENT_GENERATED_FLAG;
999 
1000 	dm_put(md);
1001 	dm_destroy(md);
1002 	return 0;
1003 }
1004 
1005 /*
1006  * Check a string doesn't overrun the chunk of
1007  * memory we copied from userland.
1008  */
invalid_str(char * str,void * end)1009 static int invalid_str(char *str, void *end)
1010 {
1011 	while ((void *) str < end)
1012 		if (!*str++)
1013 			return 0;
1014 
1015 	return -EINVAL;
1016 }
1017 
dev_rename(struct file * filp,struct dm_ioctl * param,size_t param_size)1018 static int dev_rename(struct file *filp, struct dm_ioctl *param, size_t param_size)
1019 {
1020 	int r;
1021 	char *new_data = (char *) param + param->data_start;
1022 	struct mapped_device *md;
1023 	unsigned int change_uuid = (param->flags & DM_UUID_FLAG) ? 1 : 0;
1024 
1025 	if (new_data < param->data ||
1026 	    invalid_str(new_data, (void *) param + param_size) || !*new_data ||
1027 	    strlen(new_data) > (change_uuid ? DM_UUID_LEN - 1 : DM_NAME_LEN - 1)) {
1028 		DMERR("Invalid new mapped device name or uuid string supplied.");
1029 		return -EINVAL;
1030 	}
1031 
1032 	if (!change_uuid) {
1033 		r = check_name(new_data);
1034 		if (r)
1035 			return r;
1036 	}
1037 
1038 	md = dm_hash_rename(param, new_data);
1039 	if (IS_ERR(md))
1040 		return PTR_ERR(md);
1041 
1042 	__dev_status(md, param);
1043 	dm_put(md);
1044 
1045 	return 0;
1046 }
1047 
dev_set_geometry(struct file * filp,struct dm_ioctl * param,size_t param_size)1048 static int dev_set_geometry(struct file *filp, struct dm_ioctl *param, size_t param_size)
1049 {
1050 	int r = -EINVAL, x;
1051 	struct mapped_device *md;
1052 	struct hd_geometry geometry;
1053 	unsigned long indata[4];
1054 	char *geostr = (char *) param + param->data_start;
1055 	char dummy;
1056 
1057 	md = find_device(param);
1058 	if (!md)
1059 		return -ENXIO;
1060 
1061 	if (geostr < param->data ||
1062 	    invalid_str(geostr, (void *) param + param_size)) {
1063 		DMERR("Invalid geometry supplied.");
1064 		goto out;
1065 	}
1066 
1067 	x = sscanf(geostr, "%lu %lu %lu %lu%c", indata,
1068 		   indata + 1, indata + 2, indata + 3, &dummy);
1069 
1070 	if (x != 4) {
1071 		DMERR("Unable to interpret geometry settings.");
1072 		goto out;
1073 	}
1074 
1075 	if (indata[0] > 65535 || indata[1] > 255 ||
1076 	    indata[2] > 255 || indata[3] > ULONG_MAX) {
1077 		DMERR("Geometry exceeds range limits.");
1078 		goto out;
1079 	}
1080 
1081 	geometry.cylinders = indata[0];
1082 	geometry.heads = indata[1];
1083 	geometry.sectors = indata[2];
1084 	geometry.start = indata[3];
1085 
1086 	r = dm_set_geometry(md, &geometry);
1087 
1088 	param->data_size = 0;
1089 
1090 out:
1091 	dm_put(md);
1092 	return r;
1093 }
1094 
do_suspend(struct dm_ioctl * param)1095 static int do_suspend(struct dm_ioctl *param)
1096 {
1097 	int r = 0;
1098 	unsigned int suspend_flags = DM_SUSPEND_LOCKFS_FLAG;
1099 	struct mapped_device *md;
1100 
1101 	md = find_device(param);
1102 	if (!md)
1103 		return -ENXIO;
1104 
1105 	if (param->flags & DM_SKIP_LOCKFS_FLAG)
1106 		suspend_flags &= ~DM_SUSPEND_LOCKFS_FLAG;
1107 	if (param->flags & DM_NOFLUSH_FLAG)
1108 		suspend_flags |= DM_SUSPEND_NOFLUSH_FLAG;
1109 
1110 	if (!dm_suspended_md(md)) {
1111 		r = dm_suspend(md, suspend_flags);
1112 		if (r)
1113 			goto out;
1114 	}
1115 
1116 	__dev_status(md, param);
1117 
1118 out:
1119 	dm_put(md);
1120 
1121 	return r;
1122 }
1123 
do_resume(struct dm_ioctl * param)1124 static int do_resume(struct dm_ioctl *param)
1125 {
1126 	int r = 0;
1127 	unsigned int suspend_flags = DM_SUSPEND_LOCKFS_FLAG;
1128 	struct hash_cell *hc;
1129 	struct mapped_device *md;
1130 	struct dm_table *new_map, *old_map = NULL;
1131 	bool need_resize_uevent = false;
1132 
1133 	down_write(&_hash_lock);
1134 
1135 	hc = __find_device_hash_cell(param);
1136 	if (!hc) {
1137 		DMDEBUG_LIMIT("device doesn't appear to be in the dev hash table.");
1138 		up_write(&_hash_lock);
1139 		return -ENXIO;
1140 	}
1141 
1142 	md = hc->md;
1143 
1144 	new_map = hc->new_map;
1145 	hc->new_map = NULL;
1146 	param->flags &= ~DM_INACTIVE_PRESENT_FLAG;
1147 
1148 	up_write(&_hash_lock);
1149 
1150 	/* Do we need to load a new map ? */
1151 	if (new_map) {
1152 		sector_t old_size, new_size;
1153 
1154 		/* Suspend if it isn't already suspended */
1155 		if (param->flags & DM_SKIP_LOCKFS_FLAG)
1156 			suspend_flags &= ~DM_SUSPEND_LOCKFS_FLAG;
1157 		if (param->flags & DM_NOFLUSH_FLAG)
1158 			suspend_flags |= DM_SUSPEND_NOFLUSH_FLAG;
1159 		if (!dm_suspended_md(md))
1160 			dm_suspend(md, suspend_flags);
1161 
1162 		old_size = dm_get_size(md);
1163 		old_map = dm_swap_table(md, new_map);
1164 		if (IS_ERR(old_map)) {
1165 			dm_sync_table(md);
1166 			dm_table_destroy(new_map);
1167 			dm_put(md);
1168 			return PTR_ERR(old_map);
1169 		}
1170 		new_size = dm_get_size(md);
1171 		if (old_size && new_size && old_size != new_size)
1172 			need_resize_uevent = true;
1173 
1174 		if (dm_table_get_mode(new_map) & FMODE_WRITE)
1175 			set_disk_ro(dm_disk(md), 0);
1176 		else
1177 			set_disk_ro(dm_disk(md), 1);
1178 	}
1179 
1180 	if (dm_suspended_md(md)) {
1181 		r = dm_resume(md);
1182 		if (!r) {
1183 			dm_ima_measure_on_device_resume(md, new_map ? true : false);
1184 
1185 			if (!dm_kobject_uevent(md, KOBJ_CHANGE, param->event_nr, need_resize_uevent))
1186 				param->flags |= DM_UEVENT_GENERATED_FLAG;
1187 		}
1188 	}
1189 
1190 	/*
1191 	 * Since dm_swap_table synchronizes RCU, nobody should be in
1192 	 * read-side critical section already.
1193 	 */
1194 	if (old_map)
1195 		dm_table_destroy(old_map);
1196 
1197 	if (!r)
1198 		__dev_status(md, param);
1199 
1200 	dm_put(md);
1201 	return r;
1202 }
1203 
1204 /*
1205  * Set or unset the suspension state of a device.
1206  * If the device already is in the requested state we just return its status.
1207  */
dev_suspend(struct file * filp,struct dm_ioctl * param,size_t param_size)1208 static int dev_suspend(struct file *filp, struct dm_ioctl *param, size_t param_size)
1209 {
1210 	if (param->flags & DM_SUSPEND_FLAG)
1211 		return do_suspend(param);
1212 
1213 	return do_resume(param);
1214 }
1215 
1216 /*
1217  * Copies device info back to user space, used by
1218  * the create and info ioctls.
1219  */
dev_status(struct file * filp,struct dm_ioctl * param,size_t param_size)1220 static int dev_status(struct file *filp, struct dm_ioctl *param, size_t param_size)
1221 {
1222 	struct mapped_device *md;
1223 
1224 	md = find_device(param);
1225 	if (!md)
1226 		return -ENXIO;
1227 
1228 	__dev_status(md, param);
1229 	dm_put(md);
1230 
1231 	return 0;
1232 }
1233 
1234 /*
1235  * Build up the status struct for each target
1236  */
retrieve_status(struct dm_table * table,struct dm_ioctl * param,size_t param_size)1237 static void retrieve_status(struct dm_table *table,
1238 			    struct dm_ioctl *param, size_t param_size)
1239 {
1240 	unsigned int i, num_targets;
1241 	struct dm_target_spec *spec;
1242 	char *outbuf, *outptr;
1243 	status_type_t type;
1244 	size_t remaining, len, used = 0;
1245 	unsigned int status_flags = 0;
1246 
1247 	outptr = outbuf = get_result_buffer(param, param_size, &len);
1248 
1249 	if (param->flags & DM_STATUS_TABLE_FLAG)
1250 		type = STATUSTYPE_TABLE;
1251 	else if (param->flags & DM_IMA_MEASUREMENT_FLAG)
1252 		type = STATUSTYPE_IMA;
1253 	else
1254 		type = STATUSTYPE_INFO;
1255 
1256 	/* Get all the target info */
1257 	num_targets = table->num_targets;
1258 	for (i = 0; i < num_targets; i++) {
1259 		struct dm_target *ti = dm_table_get_target(table, i);
1260 		size_t l;
1261 
1262 		remaining = len - (outptr - outbuf);
1263 		if (remaining <= sizeof(struct dm_target_spec)) {
1264 			param->flags |= DM_BUFFER_FULL_FLAG;
1265 			break;
1266 		}
1267 
1268 		spec = (struct dm_target_spec *) outptr;
1269 
1270 		spec->status = 0;
1271 		spec->sector_start = ti->begin;
1272 		spec->length = ti->len;
1273 		strncpy(spec->target_type, ti->type->name,
1274 			sizeof(spec->target_type) - 1);
1275 
1276 		outptr += sizeof(struct dm_target_spec);
1277 		remaining = len - (outptr - outbuf);
1278 		if (remaining <= 0) {
1279 			param->flags |= DM_BUFFER_FULL_FLAG;
1280 			break;
1281 		}
1282 
1283 		/* Get the status/table string from the target driver */
1284 		if (ti->type->status) {
1285 			if (param->flags & DM_NOFLUSH_FLAG)
1286 				status_flags |= DM_STATUS_NOFLUSH_FLAG;
1287 			ti->type->status(ti, type, status_flags, outptr, remaining);
1288 		} else
1289 			outptr[0] = '\0';
1290 
1291 		l = strlen(outptr) + 1;
1292 		if (l == remaining) {
1293 			param->flags |= DM_BUFFER_FULL_FLAG;
1294 			break;
1295 		}
1296 
1297 		outptr += l;
1298 		used = param->data_start + (outptr - outbuf);
1299 
1300 		outptr = align_ptr(outptr);
1301 		spec->next = outptr - outbuf;
1302 	}
1303 
1304 	if (used)
1305 		param->data_size = used;
1306 
1307 	param->target_count = num_targets;
1308 }
1309 
1310 /*
1311  * Wait for a device to report an event
1312  */
dev_wait(struct file * filp,struct dm_ioctl * param,size_t param_size)1313 static int dev_wait(struct file *filp, struct dm_ioctl *param, size_t param_size)
1314 {
1315 	int r = 0;
1316 	struct mapped_device *md;
1317 	struct dm_table *table;
1318 	int srcu_idx;
1319 
1320 	md = find_device(param);
1321 	if (!md)
1322 		return -ENXIO;
1323 
1324 	/*
1325 	 * Wait for a notification event
1326 	 */
1327 	if (dm_wait_event(md, param->event_nr)) {
1328 		r = -ERESTARTSYS;
1329 		goto out;
1330 	}
1331 
1332 	/*
1333 	 * The userland program is going to want to know what
1334 	 * changed to trigger the event, so we may as well tell
1335 	 * him and save an ioctl.
1336 	 */
1337 	__dev_status(md, param);
1338 
1339 	table = dm_get_live_or_inactive_table(md, param, &srcu_idx);
1340 	if (table)
1341 		retrieve_status(table, param, param_size);
1342 	dm_put_live_table(md, srcu_idx);
1343 
1344 out:
1345 	dm_put(md);
1346 
1347 	return r;
1348 }
1349 
1350 /*
1351  * Remember the global event number and make it possible to poll
1352  * for further events.
1353  */
dev_arm_poll(struct file * filp,struct dm_ioctl * param,size_t param_size)1354 static int dev_arm_poll(struct file *filp, struct dm_ioctl *param, size_t param_size)
1355 {
1356 	struct dm_file *priv = filp->private_data;
1357 
1358 	priv->global_event_nr = atomic_read(&dm_global_event_nr);
1359 
1360 	return 0;
1361 }
1362 
get_mode(struct dm_ioctl * param)1363 static inline fmode_t get_mode(struct dm_ioctl *param)
1364 {
1365 	fmode_t mode = FMODE_READ | FMODE_WRITE;
1366 
1367 	if (param->flags & DM_READONLY_FLAG)
1368 		mode = FMODE_READ;
1369 
1370 	return mode;
1371 }
1372 
next_target(struct dm_target_spec * last,uint32_t next,void * end,struct dm_target_spec ** spec,char ** target_params)1373 static int next_target(struct dm_target_spec *last, uint32_t next, void *end,
1374 		       struct dm_target_spec **spec, char **target_params)
1375 {
1376 	*spec = (struct dm_target_spec *) ((unsigned char *) last + next);
1377 	*target_params = (char *) (*spec + 1);
1378 
1379 	if (*spec < (last + 1))
1380 		return -EINVAL;
1381 
1382 	return invalid_str(*target_params, end);
1383 }
1384 
populate_table(struct dm_table * table,struct dm_ioctl * param,size_t param_size)1385 static int populate_table(struct dm_table *table,
1386 			  struct dm_ioctl *param, size_t param_size)
1387 {
1388 	int r;
1389 	unsigned int i = 0;
1390 	struct dm_target_spec *spec = (struct dm_target_spec *) param;
1391 	uint32_t next = param->data_start;
1392 	void *end = (void *) param + param_size;
1393 	char *target_params;
1394 
1395 	if (!param->target_count) {
1396 		DMERR("populate_table: no targets specified");
1397 		return -EINVAL;
1398 	}
1399 
1400 	for (i = 0; i < param->target_count; i++) {
1401 
1402 		r = next_target(spec, next, end, &spec, &target_params);
1403 		if (r) {
1404 			DMERR("unable to find target");
1405 			return r;
1406 		}
1407 
1408 		r = dm_table_add_target(table, spec->target_type,
1409 					(sector_t) spec->sector_start,
1410 					(sector_t) spec->length,
1411 					target_params);
1412 		if (r) {
1413 			DMERR("error adding target to table");
1414 			return r;
1415 		}
1416 
1417 		next = spec->next;
1418 	}
1419 
1420 	return dm_table_complete(table);
1421 }
1422 
is_valid_type(enum dm_queue_mode cur,enum dm_queue_mode new)1423 static bool is_valid_type(enum dm_queue_mode cur, enum dm_queue_mode new)
1424 {
1425 	if (cur == new ||
1426 	    (cur == DM_TYPE_BIO_BASED && new == DM_TYPE_DAX_BIO_BASED))
1427 		return true;
1428 
1429 	return false;
1430 }
1431 
table_load(struct file * filp,struct dm_ioctl * param,size_t param_size)1432 static int table_load(struct file *filp, struct dm_ioctl *param, size_t param_size)
1433 {
1434 	int r;
1435 	struct hash_cell *hc;
1436 	struct dm_table *t, *old_map = NULL;
1437 	struct mapped_device *md;
1438 	struct target_type *immutable_target_type;
1439 
1440 	md = find_device(param);
1441 	if (!md)
1442 		return -ENXIO;
1443 
1444 	r = dm_table_create(&t, get_mode(param), param->target_count, md);
1445 	if (r)
1446 		goto err;
1447 
1448 	/* Protect md->type and md->queue against concurrent table loads. */
1449 	dm_lock_md_type(md);
1450 	r = populate_table(t, param, param_size);
1451 	if (r)
1452 		goto err_unlock_md_type;
1453 
1454 	dm_ima_measure_on_table_load(t, STATUSTYPE_IMA);
1455 
1456 	immutable_target_type = dm_get_immutable_target_type(md);
1457 	if (immutable_target_type &&
1458 	    (immutable_target_type != dm_table_get_immutable_target_type(t)) &&
1459 	    !dm_table_get_wildcard_target(t)) {
1460 		DMERR("can't replace immutable target type %s",
1461 		      immutable_target_type->name);
1462 		r = -EINVAL;
1463 		goto err_unlock_md_type;
1464 	}
1465 
1466 	if (dm_get_md_type(md) == DM_TYPE_NONE) {
1467 		/* setup md->queue to reflect md's type (may block) */
1468 		r = dm_setup_md_queue(md, t);
1469 		if (r) {
1470 			DMERR("unable to set up device queue for new table.");
1471 			goto err_unlock_md_type;
1472 		}
1473 	} else if (!is_valid_type(dm_get_md_type(md), dm_table_get_type(t))) {
1474 		DMERR("can't change device type (old=%u vs new=%u) after initial table load.",
1475 		      dm_get_md_type(md), dm_table_get_type(t));
1476 		r = -EINVAL;
1477 		goto err_unlock_md_type;
1478 	}
1479 
1480 	dm_unlock_md_type(md);
1481 
1482 	/* stage inactive table */
1483 	down_write(&_hash_lock);
1484 	hc = dm_get_mdptr(md);
1485 	if (!hc || hc->md != md) {
1486 		DMERR("device has been removed from the dev hash table.");
1487 		up_write(&_hash_lock);
1488 		r = -ENXIO;
1489 		goto err_destroy_table;
1490 	}
1491 
1492 	if (hc->new_map)
1493 		old_map = hc->new_map;
1494 	hc->new_map = t;
1495 	up_write(&_hash_lock);
1496 
1497 	param->flags |= DM_INACTIVE_PRESENT_FLAG;
1498 	__dev_status(md, param);
1499 
1500 	if (old_map) {
1501 		dm_sync_table(md);
1502 		dm_table_destroy(old_map);
1503 	}
1504 
1505 	dm_put(md);
1506 
1507 	return 0;
1508 
1509 err_unlock_md_type:
1510 	dm_unlock_md_type(md);
1511 err_destroy_table:
1512 	dm_table_destroy(t);
1513 err:
1514 	dm_put(md);
1515 
1516 	return r;
1517 }
1518 
table_clear(struct file * filp,struct dm_ioctl * param,size_t param_size)1519 static int table_clear(struct file *filp, struct dm_ioctl *param, size_t param_size)
1520 {
1521 	struct hash_cell *hc;
1522 	struct mapped_device *md;
1523 	struct dm_table *old_map = NULL;
1524 	bool has_new_map = false;
1525 
1526 	down_write(&_hash_lock);
1527 
1528 	hc = __find_device_hash_cell(param);
1529 	if (!hc) {
1530 		DMDEBUG_LIMIT("device doesn't appear to be in the dev hash table.");
1531 		up_write(&_hash_lock);
1532 		return -ENXIO;
1533 	}
1534 
1535 	if (hc->new_map) {
1536 		old_map = hc->new_map;
1537 		hc->new_map = NULL;
1538 		has_new_map = true;
1539 	}
1540 
1541 	md = hc->md;
1542 	up_write(&_hash_lock);
1543 
1544 	param->flags &= ~DM_INACTIVE_PRESENT_FLAG;
1545 	__dev_status(md, param);
1546 
1547 	if (old_map) {
1548 		dm_sync_table(md);
1549 		dm_table_destroy(old_map);
1550 	}
1551 	dm_ima_measure_on_table_clear(md, has_new_map);
1552 	dm_put(md);
1553 
1554 	return 0;
1555 }
1556 
1557 /*
1558  * Retrieves a list of devices used by a particular dm device.
1559  */
retrieve_deps(struct dm_table * table,struct dm_ioctl * param,size_t param_size)1560 static void retrieve_deps(struct dm_table *table,
1561 			  struct dm_ioctl *param, size_t param_size)
1562 {
1563 	unsigned int count = 0;
1564 	struct list_head *tmp;
1565 	size_t len, needed;
1566 	struct dm_dev_internal *dd;
1567 	struct dm_target_deps *deps;
1568 
1569 	deps = get_result_buffer(param, param_size, &len);
1570 
1571 	/*
1572 	 * Count the devices.
1573 	 */
1574 	list_for_each(tmp, dm_table_get_devices(table))
1575 		count++;
1576 
1577 	/*
1578 	 * Check we have enough space.
1579 	 */
1580 	needed = struct_size(deps, dev, count);
1581 	if (len < needed) {
1582 		param->flags |= DM_BUFFER_FULL_FLAG;
1583 		return;
1584 	}
1585 
1586 	/*
1587 	 * Fill in the devices.
1588 	 */
1589 	deps->count = count;
1590 	count = 0;
1591 	list_for_each_entry(dd, dm_table_get_devices(table), list)
1592 		deps->dev[count++] = huge_encode_dev(dd->dm_dev->bdev->bd_dev);
1593 
1594 	param->data_size = param->data_start + needed;
1595 }
1596 
table_deps(struct file * filp,struct dm_ioctl * param,size_t param_size)1597 static int table_deps(struct file *filp, struct dm_ioctl *param, size_t param_size)
1598 {
1599 	struct mapped_device *md;
1600 	struct dm_table *table;
1601 	int srcu_idx;
1602 
1603 	md = find_device(param);
1604 	if (!md)
1605 		return -ENXIO;
1606 
1607 	__dev_status(md, param);
1608 
1609 	table = dm_get_live_or_inactive_table(md, param, &srcu_idx);
1610 	if (table)
1611 		retrieve_deps(table, param, param_size);
1612 	dm_put_live_table(md, srcu_idx);
1613 
1614 	dm_put(md);
1615 
1616 	return 0;
1617 }
1618 
1619 /*
1620  * Return the status of a device as a text string for each
1621  * target.
1622  */
table_status(struct file * filp,struct dm_ioctl * param,size_t param_size)1623 static int table_status(struct file *filp, struct dm_ioctl *param, size_t param_size)
1624 {
1625 	struct mapped_device *md;
1626 	struct dm_table *table;
1627 	int srcu_idx;
1628 
1629 	md = find_device(param);
1630 	if (!md)
1631 		return -ENXIO;
1632 
1633 	__dev_status(md, param);
1634 
1635 	table = dm_get_live_or_inactive_table(md, param, &srcu_idx);
1636 	if (table)
1637 		retrieve_status(table, param, param_size);
1638 	dm_put_live_table(md, srcu_idx);
1639 
1640 	dm_put(md);
1641 
1642 	return 0;
1643 }
1644 
1645 /*
1646  * Process device-mapper dependent messages.  Messages prefixed with '@'
1647  * are processed by the DM core.  All others are delivered to the target.
1648  * Returns a number <= 1 if message was processed by device mapper.
1649  * Returns 2 if message should be delivered to the target.
1650  */
message_for_md(struct mapped_device * md,unsigned int argc,char ** argv,char * result,unsigned int maxlen)1651 static int message_for_md(struct mapped_device *md, unsigned int argc, char **argv,
1652 			  char *result, unsigned int maxlen)
1653 {
1654 	int r;
1655 
1656 	if (**argv != '@')
1657 		return 2; /* no '@' prefix, deliver to target */
1658 
1659 	if (!strcasecmp(argv[0], "@cancel_deferred_remove")) {
1660 		if (argc != 1) {
1661 			DMERR("Invalid arguments for @cancel_deferred_remove");
1662 			return -EINVAL;
1663 		}
1664 		return dm_cancel_deferred_remove(md);
1665 	}
1666 
1667 	r = dm_stats_message(md, argc, argv, result, maxlen);
1668 	if (r < 2)
1669 		return r;
1670 
1671 	DMERR("Unsupported message sent to DM core: %s", argv[0]);
1672 	return -EINVAL;
1673 }
1674 
1675 /*
1676  * Pass a message to the target that's at the supplied device offset.
1677  */
target_message(struct file * filp,struct dm_ioctl * param,size_t param_size)1678 static int target_message(struct file *filp, struct dm_ioctl *param, size_t param_size)
1679 {
1680 	int r, argc;
1681 	char **argv;
1682 	struct mapped_device *md;
1683 	struct dm_table *table;
1684 	struct dm_target *ti;
1685 	struct dm_target_msg *tmsg = (void *) param + param->data_start;
1686 	size_t maxlen;
1687 	char *result = get_result_buffer(param, param_size, &maxlen);
1688 	int srcu_idx;
1689 
1690 	md = find_device(param);
1691 	if (!md)
1692 		return -ENXIO;
1693 
1694 	if (tmsg < (struct dm_target_msg *) param->data ||
1695 	    invalid_str(tmsg->message, (void *) param + param_size)) {
1696 		DMERR("Invalid target message parameters.");
1697 		r = -EINVAL;
1698 		goto out;
1699 	}
1700 
1701 	r = dm_split_args(&argc, &argv, tmsg->message);
1702 	if (r) {
1703 		DMERR("Failed to split target message parameters");
1704 		goto out;
1705 	}
1706 
1707 	if (!argc) {
1708 		DMERR("Empty message received.");
1709 		r = -EINVAL;
1710 		goto out_argv;
1711 	}
1712 
1713 	r = message_for_md(md, argc, argv, result, maxlen);
1714 	if (r <= 1)
1715 		goto out_argv;
1716 
1717 	table = dm_get_live_table(md, &srcu_idx);
1718 	if (!table)
1719 		goto out_table;
1720 
1721 	if (dm_deleting_md(md)) {
1722 		r = -ENXIO;
1723 		goto out_table;
1724 	}
1725 
1726 	ti = dm_table_find_target(table, tmsg->sector);
1727 	if (!ti) {
1728 		DMERR("Target message sector outside device.");
1729 		r = -EINVAL;
1730 	} else if (ti->type->message)
1731 		r = ti->type->message(ti, argc, argv, result, maxlen);
1732 	else {
1733 		DMERR("Target type does not support messages");
1734 		r = -EINVAL;
1735 	}
1736 
1737  out_table:
1738 	dm_put_live_table(md, srcu_idx);
1739  out_argv:
1740 	kfree(argv);
1741  out:
1742 	if (r >= 0)
1743 		__dev_status(md, param);
1744 
1745 	if (r == 1) {
1746 		param->flags |= DM_DATA_OUT_FLAG;
1747 		if (dm_message_test_buffer_overflow(result, maxlen))
1748 			param->flags |= DM_BUFFER_FULL_FLAG;
1749 		else
1750 			param->data_size = param->data_start + strlen(result) + 1;
1751 		r = 0;
1752 	}
1753 
1754 	dm_put(md);
1755 	return r;
1756 }
1757 
1758 /*
1759  * The ioctl parameter block consists of two parts, a dm_ioctl struct
1760  * followed by a data buffer.  This flag is set if the second part,
1761  * which has a variable size, is not used by the function processing
1762  * the ioctl.
1763  */
1764 #define IOCTL_FLAGS_NO_PARAMS		1
1765 #define IOCTL_FLAGS_ISSUE_GLOBAL_EVENT	2
1766 
1767 /*-----------------------------------------------------------------
1768  * Implementation of open/close/ioctl on the special char
1769  * device.
1770  *---------------------------------------------------------------*/
lookup_ioctl(unsigned int cmd,int * ioctl_flags)1771 static ioctl_fn lookup_ioctl(unsigned int cmd, int *ioctl_flags)
1772 {
1773 	static const struct {
1774 		int cmd;
1775 		int flags;
1776 		ioctl_fn fn;
1777 	} _ioctls[] = {
1778 		{DM_VERSION_CMD, 0, NULL}, /* version is dealt with elsewhere */
1779 		{DM_REMOVE_ALL_CMD, IOCTL_FLAGS_NO_PARAMS | IOCTL_FLAGS_ISSUE_GLOBAL_EVENT, remove_all},
1780 		{DM_LIST_DEVICES_CMD, 0, list_devices},
1781 
1782 		{DM_DEV_CREATE_CMD, IOCTL_FLAGS_NO_PARAMS | IOCTL_FLAGS_ISSUE_GLOBAL_EVENT, dev_create},
1783 		{DM_DEV_REMOVE_CMD, IOCTL_FLAGS_NO_PARAMS | IOCTL_FLAGS_ISSUE_GLOBAL_EVENT, dev_remove},
1784 		{DM_DEV_RENAME_CMD, IOCTL_FLAGS_ISSUE_GLOBAL_EVENT, dev_rename},
1785 		{DM_DEV_SUSPEND_CMD, IOCTL_FLAGS_NO_PARAMS, dev_suspend},
1786 		{DM_DEV_STATUS_CMD, IOCTL_FLAGS_NO_PARAMS, dev_status},
1787 		{DM_DEV_WAIT_CMD, 0, dev_wait},
1788 
1789 		{DM_TABLE_LOAD_CMD, 0, table_load},
1790 		{DM_TABLE_CLEAR_CMD, IOCTL_FLAGS_NO_PARAMS, table_clear},
1791 		{DM_TABLE_DEPS_CMD, 0, table_deps},
1792 		{DM_TABLE_STATUS_CMD, 0, table_status},
1793 
1794 		{DM_LIST_VERSIONS_CMD, 0, list_versions},
1795 
1796 		{DM_TARGET_MSG_CMD, 0, target_message},
1797 		{DM_DEV_SET_GEOMETRY_CMD, 0, dev_set_geometry},
1798 		{DM_DEV_ARM_POLL, IOCTL_FLAGS_NO_PARAMS, dev_arm_poll},
1799 		{DM_GET_TARGET_VERSION, 0, get_target_version},
1800 	};
1801 
1802 	if (unlikely(cmd >= ARRAY_SIZE(_ioctls)))
1803 		return NULL;
1804 
1805 	cmd = array_index_nospec(cmd, ARRAY_SIZE(_ioctls));
1806 	*ioctl_flags = _ioctls[cmd].flags;
1807 	return _ioctls[cmd].fn;
1808 }
1809 
1810 /*
1811  * As well as checking the version compatibility this always
1812  * copies the kernel interface version out.
1813  */
check_version(unsigned int cmd,struct dm_ioctl __user * user,struct dm_ioctl * kernel_params)1814 static int check_version(unsigned int cmd, struct dm_ioctl __user *user,
1815 			 struct dm_ioctl *kernel_params)
1816 {
1817 	int r = 0;
1818 
1819 	/* Make certain version is first member of dm_ioctl struct */
1820 	BUILD_BUG_ON(offsetof(struct dm_ioctl, version) != 0);
1821 
1822 	if (copy_from_user(kernel_params->version, user->version, sizeof(kernel_params->version)))
1823 		return -EFAULT;
1824 
1825 	if ((kernel_params->version[0] != DM_VERSION_MAJOR) ||
1826 	    (kernel_params->version[1] > DM_VERSION_MINOR)) {
1827 		DMERR("ioctl interface mismatch: kernel(%u.%u.%u), user(%u.%u.%u), cmd(%d)",
1828 		      DM_VERSION_MAJOR, DM_VERSION_MINOR,
1829 		      DM_VERSION_PATCHLEVEL,
1830 		      kernel_params->version[0],
1831 		      kernel_params->version[1],
1832 		      kernel_params->version[2],
1833 		      cmd);
1834 		r = -EINVAL;
1835 	}
1836 
1837 	/*
1838 	 * Fill in the kernel version.
1839 	 */
1840 	kernel_params->version[0] = DM_VERSION_MAJOR;
1841 	kernel_params->version[1] = DM_VERSION_MINOR;
1842 	kernel_params->version[2] = DM_VERSION_PATCHLEVEL;
1843 	if (copy_to_user(user->version, kernel_params->version, sizeof(kernel_params->version)))
1844 		return -EFAULT;
1845 
1846 	return r;
1847 }
1848 
1849 #define DM_PARAMS_MALLOC	0x0001	/* Params allocated with kvmalloc() */
1850 #define DM_WIPE_BUFFER		0x0010	/* Wipe input buffer before returning from ioctl */
1851 
free_params(struct dm_ioctl * param,size_t param_size,int param_flags)1852 static void free_params(struct dm_ioctl *param, size_t param_size, int param_flags)
1853 {
1854 	if (param_flags & DM_WIPE_BUFFER)
1855 		memset(param, 0, param_size);
1856 
1857 	if (param_flags & DM_PARAMS_MALLOC)
1858 		kvfree(param);
1859 }
1860 
copy_params(struct dm_ioctl __user * user,struct dm_ioctl * param_kernel,int ioctl_flags,struct dm_ioctl ** param,int * param_flags)1861 static int copy_params(struct dm_ioctl __user *user, struct dm_ioctl *param_kernel,
1862 		       int ioctl_flags, struct dm_ioctl **param, int *param_flags)
1863 {
1864 	struct dm_ioctl *dmi;
1865 	int secure_data;
1866 	const size_t minimum_data_size = offsetof(struct dm_ioctl, data);
1867 	unsigned int noio_flag;
1868 
1869 	/* check_version() already copied version from userspace, avoid TOCTOU */
1870 	if (copy_from_user((char *)param_kernel + sizeof(param_kernel->version),
1871 			   (char __user *)user + sizeof(param_kernel->version),
1872 			   minimum_data_size - sizeof(param_kernel->version)))
1873 		return -EFAULT;
1874 
1875 	if (unlikely(param_kernel->data_size < minimum_data_size) ||
1876 	    unlikely(param_kernel->data_size > DM_MAX_TARGETS * DM_MAX_TARGET_PARAMS)) {
1877 		DMERR("Invalid data size in the ioctl structure: %u",
1878 		      param_kernel->data_size);
1879 		return -EINVAL;
1880 	}
1881 
1882 	secure_data = param_kernel->flags & DM_SECURE_DATA_FLAG;
1883 
1884 	*param_flags = secure_data ? DM_WIPE_BUFFER : 0;
1885 
1886 	if (ioctl_flags & IOCTL_FLAGS_NO_PARAMS) {
1887 		dmi = param_kernel;
1888 		dmi->data_size = minimum_data_size;
1889 		goto data_copied;
1890 	}
1891 
1892 	/*
1893 	 * Use __GFP_HIGH to avoid low memory issues when a device is
1894 	 * suspended and the ioctl is needed to resume it.
1895 	 * Use kmalloc() rather than vmalloc() when we can.
1896 	 */
1897 	dmi = NULL;
1898 	noio_flag = memalloc_noio_save();
1899 	dmi = kvmalloc(param_kernel->data_size, GFP_KERNEL | __GFP_HIGH);
1900 	memalloc_noio_restore(noio_flag);
1901 
1902 	if (!dmi) {
1903 		if (secure_data && clear_user(user, param_kernel->data_size))
1904 			return -EFAULT;
1905 		return -ENOMEM;
1906 	}
1907 
1908 	*param_flags |= DM_PARAMS_MALLOC;
1909 
1910 	/* Copy from param_kernel (which was already copied from user) */
1911 	memcpy(dmi, param_kernel, minimum_data_size);
1912 
1913 	if (copy_from_user(&dmi->data, (char __user *)user + minimum_data_size,
1914 			   param_kernel->data_size - minimum_data_size))
1915 		goto bad;
1916 data_copied:
1917 	/* Wipe the user buffer so we do not return it to userspace */
1918 	if (secure_data && clear_user(user, param_kernel->data_size))
1919 		goto bad;
1920 
1921 	*param = dmi;
1922 	return 0;
1923 
1924 bad:
1925 	free_params(dmi, param_kernel->data_size, *param_flags);
1926 
1927 	return -EFAULT;
1928 }
1929 
validate_params(uint cmd,struct dm_ioctl * param)1930 static int validate_params(uint cmd, struct dm_ioctl *param)
1931 {
1932 	/* Always clear this flag */
1933 	param->flags &= ~DM_BUFFER_FULL_FLAG;
1934 	param->flags &= ~DM_UEVENT_GENERATED_FLAG;
1935 	param->flags &= ~DM_SECURE_DATA_FLAG;
1936 	param->flags &= ~DM_DATA_OUT_FLAG;
1937 
1938 	/* Ignores parameters */
1939 	if (cmd == DM_REMOVE_ALL_CMD ||
1940 	    cmd == DM_LIST_DEVICES_CMD ||
1941 	    cmd == DM_LIST_VERSIONS_CMD)
1942 		return 0;
1943 
1944 	if (cmd == DM_DEV_CREATE_CMD) {
1945 		if (!*param->name) {
1946 			DMERR("name not supplied when creating device");
1947 			return -EINVAL;
1948 		}
1949 	} else if (*param->uuid && *param->name) {
1950 		DMERR("only supply one of name or uuid, cmd(%u)", cmd);
1951 		return -EINVAL;
1952 	}
1953 
1954 	/* Ensure strings are terminated */
1955 	param->name[DM_NAME_LEN - 1] = '\0';
1956 	param->uuid[DM_UUID_LEN - 1] = '\0';
1957 
1958 	return 0;
1959 }
1960 
ctl_ioctl(struct file * file,uint command,struct dm_ioctl __user * user)1961 static int ctl_ioctl(struct file *file, uint command, struct dm_ioctl __user *user)
1962 {
1963 	int r = 0;
1964 	int ioctl_flags;
1965 	int param_flags;
1966 	unsigned int cmd;
1967 	struct dm_ioctl *param;
1968 	ioctl_fn fn = NULL;
1969 	size_t input_param_size;
1970 	struct dm_ioctl param_kernel;
1971 
1972 	/* only root can play with this */
1973 	if (!capable(CAP_SYS_ADMIN))
1974 		return -EACCES;
1975 
1976 	if (_IOC_TYPE(command) != DM_IOCTL)
1977 		return -ENOTTY;
1978 
1979 	cmd = _IOC_NR(command);
1980 
1981 	/*
1982 	 * Check the interface version passed in.  This also
1983 	 * writes out the kernel's interface version.
1984 	 */
1985 	r = check_version(cmd, user, &param_kernel);
1986 	if (r)
1987 		return r;
1988 
1989 	/*
1990 	 * Nothing more to do for the version command.
1991 	 */
1992 	if (cmd == DM_VERSION_CMD)
1993 		return 0;
1994 
1995 	fn = lookup_ioctl(cmd, &ioctl_flags);
1996 	if (!fn) {
1997 		DMERR("dm_ctl_ioctl: unknown command 0x%x", command);
1998 		return -ENOTTY;
1999 	}
2000 
2001 	/*
2002 	 * Copy the parameters into kernel space.
2003 	 */
2004 	r = copy_params(user, &param_kernel, ioctl_flags, &param, &param_flags);
2005 
2006 	if (r)
2007 		return r;
2008 
2009 	input_param_size = param->data_size;
2010 	r = validate_params(cmd, param);
2011 	if (r)
2012 		goto out;
2013 
2014 	param->data_size = offsetof(struct dm_ioctl, data);
2015 	r = fn(file, param, input_param_size);
2016 
2017 	if (unlikely(param->flags & DM_BUFFER_FULL_FLAG) &&
2018 	    unlikely(ioctl_flags & IOCTL_FLAGS_NO_PARAMS))
2019 		DMERR("ioctl %d tried to output some data but has IOCTL_FLAGS_NO_PARAMS set", cmd);
2020 
2021 	if (!r && ioctl_flags & IOCTL_FLAGS_ISSUE_GLOBAL_EVENT)
2022 		dm_issue_global_event();
2023 
2024 	/*
2025 	 * Copy the results back to userland.
2026 	 */
2027 	if (!r && copy_to_user(user, param, param->data_size))
2028 		r = -EFAULT;
2029 
2030 out:
2031 	free_params(param, input_param_size, param_flags);
2032 	return r;
2033 }
2034 
dm_ctl_ioctl(struct file * file,uint command,ulong u)2035 static long dm_ctl_ioctl(struct file *file, uint command, ulong u)
2036 {
2037 	return (long)ctl_ioctl(file, command, (struct dm_ioctl __user *)u);
2038 }
2039 
2040 #ifdef CONFIG_COMPAT
dm_compat_ctl_ioctl(struct file * file,uint command,ulong u)2041 static long dm_compat_ctl_ioctl(struct file *file, uint command, ulong u)
2042 {
2043 	return (long)dm_ctl_ioctl(file, command, (ulong) compat_ptr(u));
2044 }
2045 #else
2046 #define dm_compat_ctl_ioctl NULL
2047 #endif
2048 
dm_open(struct inode * inode,struct file * filp)2049 static int dm_open(struct inode *inode, struct file *filp)
2050 {
2051 	int r;
2052 	struct dm_file *priv;
2053 
2054 	r = nonseekable_open(inode, filp);
2055 	if (unlikely(r))
2056 		return r;
2057 
2058 	priv = filp->private_data = kmalloc(sizeof(struct dm_file), GFP_KERNEL);
2059 	if (!priv)
2060 		return -ENOMEM;
2061 
2062 	priv->global_event_nr = atomic_read(&dm_global_event_nr);
2063 
2064 	return 0;
2065 }
2066 
dm_release(struct inode * inode,struct file * filp)2067 static int dm_release(struct inode *inode, struct file *filp)
2068 {
2069 	kfree(filp->private_data);
2070 	return 0;
2071 }
2072 
dm_poll(struct file * filp,poll_table * wait)2073 static __poll_t dm_poll(struct file *filp, poll_table *wait)
2074 {
2075 	struct dm_file *priv = filp->private_data;
2076 	__poll_t mask = 0;
2077 
2078 	poll_wait(filp, &dm_global_eventq, wait);
2079 
2080 	if ((int)(atomic_read(&dm_global_event_nr) - priv->global_event_nr) > 0)
2081 		mask |= EPOLLIN;
2082 
2083 	return mask;
2084 }
2085 
2086 static const struct file_operations _ctl_fops = {
2087 	.open    = dm_open,
2088 	.release = dm_release,
2089 	.poll    = dm_poll,
2090 	.unlocked_ioctl	 = dm_ctl_ioctl,
2091 	.compat_ioctl = dm_compat_ctl_ioctl,
2092 	.owner	 = THIS_MODULE,
2093 	.llseek  = noop_llseek,
2094 };
2095 
2096 static struct miscdevice _dm_misc = {
2097 	.minor		= MAPPER_CTRL_MINOR,
2098 	.name  		= DM_NAME,
2099 	.nodename	= DM_DIR "/" DM_CONTROL_NODE,
2100 	.fops  		= &_ctl_fops
2101 };
2102 
2103 MODULE_ALIAS_MISCDEV(MAPPER_CTRL_MINOR);
2104 MODULE_ALIAS("devname:" DM_DIR "/" DM_CONTROL_NODE);
2105 
2106 /*
2107  * Create misc character device and link to DM_DIR/control.
2108  */
dm_interface_init(void)2109 int __init dm_interface_init(void)
2110 {
2111 	int r;
2112 
2113 	r = misc_register(&_dm_misc);
2114 	if (r) {
2115 		DMERR("misc_register failed for control device");
2116 		return r;
2117 	}
2118 
2119 	DMINFO("%d.%d.%d%s initialised: %s", DM_VERSION_MAJOR,
2120 	       DM_VERSION_MINOR, DM_VERSION_PATCHLEVEL, DM_VERSION_EXTRA,
2121 	       DM_DRIVER_EMAIL);
2122 	return 0;
2123 }
2124 
dm_interface_exit(void)2125 void dm_interface_exit(void)
2126 {
2127 	misc_deregister(&_dm_misc);
2128 	dm_hash_exit();
2129 }
2130 
2131 /**
2132  * dm_copy_name_and_uuid - Copy mapped device name & uuid into supplied buffers
2133  * @md: Pointer to mapped_device
2134  * @name: Buffer (size DM_NAME_LEN) for name
2135  * @uuid: Buffer (size DM_UUID_LEN) for uuid or empty string if uuid not defined
2136  */
dm_copy_name_and_uuid(struct mapped_device * md,char * name,char * uuid)2137 int dm_copy_name_and_uuid(struct mapped_device *md, char *name, char *uuid)
2138 {
2139 	int r = 0;
2140 	struct hash_cell *hc;
2141 
2142 	if (!md)
2143 		return -ENXIO;
2144 
2145 	mutex_lock(&dm_hash_cells_mutex);
2146 	hc = dm_get_mdptr(md);
2147 	if (!hc || hc->md != md) {
2148 		r = -ENXIO;
2149 		goto out;
2150 	}
2151 
2152 	if (name)
2153 		strcpy(name, hc->name);
2154 	if (uuid)
2155 		strcpy(uuid, hc->uuid ? : "");
2156 
2157 out:
2158 	mutex_unlock(&dm_hash_cells_mutex);
2159 
2160 	return r;
2161 }
2162 EXPORT_SYMBOL_GPL(dm_copy_name_and_uuid);
2163 
2164 /**
2165  * dm_early_create - create a mapped device in early boot.
2166  *
2167  * @dmi: Contains main information of the device mapping to be created.
2168  * @spec_array: array of pointers to struct dm_target_spec. Describes the
2169  * mapping table of the device.
2170  * @target_params_array: array of strings with the parameters to a specific
2171  * target.
2172  *
2173  * Instead of having the struct dm_target_spec and the parameters for every
2174  * target embedded at the end of struct dm_ioctl (as performed in a normal
2175  * ioctl), pass them as arguments, so the caller doesn't need to serialize them.
2176  * The size of the spec_array and target_params_array is given by
2177  * @dmi->target_count.
2178  * This function is supposed to be called in early boot, so locking mechanisms
2179  * to protect against concurrent loads are not required.
2180  */
dm_early_create(struct dm_ioctl * dmi,struct dm_target_spec ** spec_array,char ** target_params_array)2181 int __init dm_early_create(struct dm_ioctl *dmi,
2182 			   struct dm_target_spec **spec_array,
2183 			   char **target_params_array)
2184 {
2185 	int r, m = DM_ANY_MINOR;
2186 	struct dm_table *t, *old_map;
2187 	struct mapped_device *md;
2188 	unsigned int i;
2189 
2190 	if (!dmi->target_count)
2191 		return -EINVAL;
2192 
2193 	r = check_name(dmi->name);
2194 	if (r)
2195 		return r;
2196 
2197 	if (dmi->flags & DM_PERSISTENT_DEV_FLAG)
2198 		m = MINOR(huge_decode_dev(dmi->dev));
2199 
2200 	/* alloc dm device */
2201 	r = dm_create(m, &md);
2202 	if (r)
2203 		return r;
2204 
2205 	/* hash insert */
2206 	r = dm_hash_insert(dmi->name, *dmi->uuid ? dmi->uuid : NULL, md);
2207 	if (r)
2208 		goto err_destroy_dm;
2209 
2210 	/* alloc table */
2211 	r = dm_table_create(&t, get_mode(dmi), dmi->target_count, md);
2212 	if (r)
2213 		goto err_hash_remove;
2214 
2215 	/* add targets */
2216 	for (i = 0; i < dmi->target_count; i++) {
2217 		r = dm_table_add_target(t, spec_array[i]->target_type,
2218 					(sector_t) spec_array[i]->sector_start,
2219 					(sector_t) spec_array[i]->length,
2220 					target_params_array[i]);
2221 		if (r) {
2222 			DMERR("error adding target to table");
2223 			goto err_destroy_table;
2224 		}
2225 	}
2226 
2227 	/* finish table */
2228 	r = dm_table_complete(t);
2229 	if (r)
2230 		goto err_destroy_table;
2231 
2232 	/* setup md->queue to reflect md's type (may block) */
2233 	r = dm_setup_md_queue(md, t);
2234 	if (r) {
2235 		DMERR("unable to set up device queue for new table.");
2236 		goto err_destroy_table;
2237 	}
2238 
2239 	/* Set new map */
2240 	dm_suspend(md, 0);
2241 	old_map = dm_swap_table(md, t);
2242 	if (IS_ERR(old_map)) {
2243 		r = PTR_ERR(old_map);
2244 		goto err_destroy_table;
2245 	}
2246 	set_disk_ro(dm_disk(md), !!(dmi->flags & DM_READONLY_FLAG));
2247 
2248 	/* resume device */
2249 	r = dm_resume(md);
2250 	if (r)
2251 		goto err_destroy_table;
2252 
2253 	DMINFO("%s (%s) is ready", md->disk->disk_name, dmi->name);
2254 	dm_put(md);
2255 	return 0;
2256 
2257 err_destroy_table:
2258 	dm_table_destroy(t);
2259 err_hash_remove:
2260 	(void) __hash_remove(__get_name_cell(dmi->name));
2261 	/* release reference from __get_name_cell */
2262 	dm_put(md);
2263 err_destroy_dm:
2264 	dm_put(md);
2265 	dm_destroy(md);
2266 	return r;
2267 }
2268