xref: /openbmc/linux/drivers/dax/super.c (revision fc772314)
1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * Copyright(c) 2017 Intel Corporation. All rights reserved.
4  */
5 #include <linux/pagemap.h>
6 #include <linux/module.h>
7 #include <linux/mount.h>
8 #include <linux/pseudo_fs.h>
9 #include <linux/magic.h>
10 #include <linux/genhd.h>
11 #include <linux/pfn_t.h>
12 #include <linux/cdev.h>
13 #include <linux/hash.h>
14 #include <linux/slab.h>
15 #include <linux/uio.h>
16 #include <linux/dax.h>
17 #include <linux/fs.h>
18 #include "dax-private.h"
19 
20 static dev_t dax_devt;
21 DEFINE_STATIC_SRCU(dax_srcu);
22 static struct vfsmount *dax_mnt;
23 static DEFINE_IDA(dax_minor_ida);
24 static struct kmem_cache *dax_cache __read_mostly;
25 static struct super_block *dax_superblock __read_mostly;
26 
27 #define DAX_HASH_SIZE (PAGE_SIZE / sizeof(struct hlist_head))
28 static struct hlist_head dax_host_list[DAX_HASH_SIZE];
29 static DEFINE_SPINLOCK(dax_host_lock);
30 
31 int dax_read_lock(void)
32 {
33 	return srcu_read_lock(&dax_srcu);
34 }
35 EXPORT_SYMBOL_GPL(dax_read_lock);
36 
37 void dax_read_unlock(int id)
38 {
39 	srcu_read_unlock(&dax_srcu, id);
40 }
41 EXPORT_SYMBOL_GPL(dax_read_unlock);
42 
43 #ifdef CONFIG_BLOCK
44 #include <linux/blkdev.h>
45 
46 int bdev_dax_pgoff(struct block_device *bdev, sector_t sector, size_t size,
47 		pgoff_t *pgoff)
48 {
49 	phys_addr_t phys_off = (get_start_sect(bdev) + sector) * 512;
50 
51 	if (pgoff)
52 		*pgoff = PHYS_PFN(phys_off);
53 	if (phys_off % PAGE_SIZE || size % PAGE_SIZE)
54 		return -EINVAL;
55 	return 0;
56 }
57 EXPORT_SYMBOL(bdev_dax_pgoff);
58 
59 #if IS_ENABLED(CONFIG_FS_DAX)
60 struct dax_device *fs_dax_get_by_bdev(struct block_device *bdev)
61 {
62 	if (!blk_queue_dax(bdev->bd_disk->queue))
63 		return NULL;
64 	return dax_get_by_host(bdev->bd_disk->disk_name);
65 }
66 EXPORT_SYMBOL_GPL(fs_dax_get_by_bdev);
67 #endif
68 
69 bool __generic_fsdax_supported(struct dax_device *dax_dev,
70 		struct block_device *bdev, int blocksize, sector_t start,
71 		sector_t sectors)
72 {
73 	bool dax_enabled = false;
74 	pgoff_t pgoff, pgoff_end;
75 	char buf[BDEVNAME_SIZE];
76 	void *kaddr, *end_kaddr;
77 	pfn_t pfn, end_pfn;
78 	sector_t last_page;
79 	long len, len2;
80 	int err, id;
81 
82 	if (blocksize != PAGE_SIZE) {
83 		pr_info("%s: error: unsupported blocksize for dax\n",
84 				bdevname(bdev, buf));
85 		return false;
86 	}
87 
88 	err = bdev_dax_pgoff(bdev, start, PAGE_SIZE, &pgoff);
89 	if (err) {
90 		pr_info("%s: error: unaligned partition for dax\n",
91 				bdevname(bdev, buf));
92 		return false;
93 	}
94 
95 	last_page = PFN_DOWN((start + sectors - 1) * 512) * PAGE_SIZE / 512;
96 	err = bdev_dax_pgoff(bdev, last_page, PAGE_SIZE, &pgoff_end);
97 	if (err) {
98 		pr_info("%s: error: unaligned partition for dax\n",
99 				bdevname(bdev, buf));
100 		return false;
101 	}
102 
103 	if (!dax_dev && !bdev_dax_supported(bdev, blocksize)) {
104 		pr_debug("%s: error: dax unsupported by block device\n",
105 				bdevname(bdev, buf));
106 		return false;
107 	}
108 
109 	id = dax_read_lock();
110 	len = dax_direct_access(dax_dev, pgoff, 1, &kaddr, &pfn);
111 	len2 = dax_direct_access(dax_dev, pgoff_end, 1, &end_kaddr, &end_pfn);
112 
113 	if (len < 1 || len2 < 1) {
114 		pr_info("%s: error: dax access failed (%ld)\n",
115 				bdevname(bdev, buf), len < 1 ? len : len2);
116 		dax_read_unlock(id);
117 		return false;
118 	}
119 
120 	if (IS_ENABLED(CONFIG_FS_DAX_LIMITED) && pfn_t_special(pfn)) {
121 		/*
122 		 * An arch that has enabled the pmem api should also
123 		 * have its drivers support pfn_t_devmap()
124 		 *
125 		 * This is a developer warning and should not trigger in
126 		 * production. dax_flush() will crash since it depends
127 		 * on being able to do (page_address(pfn_to_page())).
128 		 */
129 		WARN_ON(IS_ENABLED(CONFIG_ARCH_HAS_PMEM_API));
130 		dax_enabled = true;
131 	} else if (pfn_t_devmap(pfn) && pfn_t_devmap(end_pfn)) {
132 		struct dev_pagemap *pgmap, *end_pgmap;
133 
134 		pgmap = get_dev_pagemap(pfn_t_to_pfn(pfn), NULL);
135 		end_pgmap = get_dev_pagemap(pfn_t_to_pfn(end_pfn), NULL);
136 		if (pgmap && pgmap == end_pgmap && pgmap->type == MEMORY_DEVICE_FS_DAX
137 				&& pfn_t_to_page(pfn)->pgmap == pgmap
138 				&& pfn_t_to_page(end_pfn)->pgmap == pgmap
139 				&& pfn_t_to_pfn(pfn) == PHYS_PFN(__pa(kaddr))
140 				&& pfn_t_to_pfn(end_pfn) == PHYS_PFN(__pa(end_kaddr)))
141 			dax_enabled = true;
142 		put_dev_pagemap(pgmap);
143 		put_dev_pagemap(end_pgmap);
144 
145 	}
146 	dax_read_unlock(id);
147 
148 	if (!dax_enabled) {
149 		pr_info("%s: error: dax support not enabled\n",
150 				bdevname(bdev, buf));
151 		return false;
152 	}
153 	return true;
154 }
155 EXPORT_SYMBOL_GPL(__generic_fsdax_supported);
156 
157 /**
158  * __bdev_dax_supported() - Check if the device supports dax for filesystem
159  * @bdev: block device to check
160  * @blocksize: The block size of the device
161  *
162  * This is a library function for filesystems to check if the block device
163  * can be mounted with dax option.
164  *
165  * Return: true if supported, false if unsupported
166  */
167 bool __bdev_dax_supported(struct block_device *bdev, int blocksize)
168 {
169 	struct dax_device *dax_dev;
170 	struct request_queue *q;
171 	char buf[BDEVNAME_SIZE];
172 	bool ret;
173 	int id;
174 
175 	q = bdev_get_queue(bdev);
176 	if (!q || !blk_queue_dax(q)) {
177 		pr_debug("%s: error: request queue doesn't support dax\n",
178 				bdevname(bdev, buf));
179 		return false;
180 	}
181 
182 	dax_dev = dax_get_by_host(bdev->bd_disk->disk_name);
183 	if (!dax_dev) {
184 		pr_debug("%s: error: device does not support dax\n",
185 				bdevname(bdev, buf));
186 		return false;
187 	}
188 
189 	id = dax_read_lock();
190 	ret = dax_supported(dax_dev, bdev, blocksize, 0,
191 			i_size_read(bdev->bd_inode) / 512);
192 	dax_read_unlock(id);
193 
194 	put_dax(dax_dev);
195 
196 	return ret;
197 }
198 EXPORT_SYMBOL_GPL(__bdev_dax_supported);
199 #endif
200 
201 enum dax_device_flags {
202 	/* !alive + rcu grace period == no new operations / mappings */
203 	DAXDEV_ALIVE,
204 	/* gate whether dax_flush() calls the low level flush routine */
205 	DAXDEV_WRITE_CACHE,
206 	/* flag to check if device supports synchronous flush */
207 	DAXDEV_SYNC,
208 };
209 
210 /**
211  * struct dax_device - anchor object for dax services
212  * @inode: core vfs
213  * @cdev: optional character interface for "device dax"
214  * @host: optional name for lookups where the device path is not available
215  * @private: dax driver private data
216  * @flags: state and boolean properties
217  */
218 struct dax_device {
219 	struct hlist_node list;
220 	struct inode inode;
221 	struct cdev cdev;
222 	const char *host;
223 	void *private;
224 	unsigned long flags;
225 	const struct dax_operations *ops;
226 };
227 
228 static ssize_t write_cache_show(struct device *dev,
229 		struct device_attribute *attr, char *buf)
230 {
231 	struct dax_device *dax_dev = dax_get_by_host(dev_name(dev));
232 	ssize_t rc;
233 
234 	WARN_ON_ONCE(!dax_dev);
235 	if (!dax_dev)
236 		return -ENXIO;
237 
238 	rc = sprintf(buf, "%d\n", !!dax_write_cache_enabled(dax_dev));
239 	put_dax(dax_dev);
240 	return rc;
241 }
242 
243 static ssize_t write_cache_store(struct device *dev,
244 		struct device_attribute *attr, const char *buf, size_t len)
245 {
246 	bool write_cache;
247 	int rc = strtobool(buf, &write_cache);
248 	struct dax_device *dax_dev = dax_get_by_host(dev_name(dev));
249 
250 	WARN_ON_ONCE(!dax_dev);
251 	if (!dax_dev)
252 		return -ENXIO;
253 
254 	if (rc)
255 		len = rc;
256 	else
257 		dax_write_cache(dax_dev, write_cache);
258 
259 	put_dax(dax_dev);
260 	return len;
261 }
262 static DEVICE_ATTR_RW(write_cache);
263 
264 static umode_t dax_visible(struct kobject *kobj, struct attribute *a, int n)
265 {
266 	struct device *dev = container_of(kobj, typeof(*dev), kobj);
267 	struct dax_device *dax_dev = dax_get_by_host(dev_name(dev));
268 
269 	WARN_ON_ONCE(!dax_dev);
270 	if (!dax_dev)
271 		return 0;
272 
273 #ifndef CONFIG_ARCH_HAS_PMEM_API
274 	if (a == &dev_attr_write_cache.attr)
275 		return 0;
276 #endif
277 	return a->mode;
278 }
279 
280 static struct attribute *dax_attributes[] = {
281 	&dev_attr_write_cache.attr,
282 	NULL,
283 };
284 
285 struct attribute_group dax_attribute_group = {
286 	.name = "dax",
287 	.attrs = dax_attributes,
288 	.is_visible = dax_visible,
289 };
290 EXPORT_SYMBOL_GPL(dax_attribute_group);
291 
292 /**
293  * dax_direct_access() - translate a device pgoff to an absolute pfn
294  * @dax_dev: a dax_device instance representing the logical memory range
295  * @pgoff: offset in pages from the start of the device to translate
296  * @nr_pages: number of consecutive pages caller can handle relative to @pfn
297  * @kaddr: output parameter that returns a virtual address mapping of pfn
298  * @pfn: output parameter that returns an absolute pfn translation of @pgoff
299  *
300  * Return: negative errno if an error occurs, otherwise the number of
301  * pages accessible at the device relative @pgoff.
302  */
303 long dax_direct_access(struct dax_device *dax_dev, pgoff_t pgoff, long nr_pages,
304 		void **kaddr, pfn_t *pfn)
305 {
306 	long avail;
307 
308 	if (!dax_dev)
309 		return -EOPNOTSUPP;
310 
311 	if (!dax_alive(dax_dev))
312 		return -ENXIO;
313 
314 	if (nr_pages < 0)
315 		return nr_pages;
316 
317 	avail = dax_dev->ops->direct_access(dax_dev, pgoff, nr_pages,
318 			kaddr, pfn);
319 	if (!avail)
320 		return -ERANGE;
321 	return min(avail, nr_pages);
322 }
323 EXPORT_SYMBOL_GPL(dax_direct_access);
324 
325 bool dax_supported(struct dax_device *dax_dev, struct block_device *bdev,
326 		int blocksize, sector_t start, sector_t len)
327 {
328 	if (!dax_alive(dax_dev))
329 		return false;
330 
331 	return dax_dev->ops->dax_supported(dax_dev, bdev, blocksize, start, len);
332 }
333 
334 size_t dax_copy_from_iter(struct dax_device *dax_dev, pgoff_t pgoff, void *addr,
335 		size_t bytes, struct iov_iter *i)
336 {
337 	if (!dax_alive(dax_dev))
338 		return 0;
339 
340 	return dax_dev->ops->copy_from_iter(dax_dev, pgoff, addr, bytes, i);
341 }
342 EXPORT_SYMBOL_GPL(dax_copy_from_iter);
343 
344 size_t dax_copy_to_iter(struct dax_device *dax_dev, pgoff_t pgoff, void *addr,
345 		size_t bytes, struct iov_iter *i)
346 {
347 	if (!dax_alive(dax_dev))
348 		return 0;
349 
350 	return dax_dev->ops->copy_to_iter(dax_dev, pgoff, addr, bytes, i);
351 }
352 EXPORT_SYMBOL_GPL(dax_copy_to_iter);
353 
354 int dax_zero_page_range(struct dax_device *dax_dev, pgoff_t pgoff,
355 			size_t nr_pages)
356 {
357 	if (!dax_alive(dax_dev))
358 		return -ENXIO;
359 	/*
360 	 * There are no callers that want to zero more than one page as of now.
361 	 * Once users are there, this check can be removed after the
362 	 * device mapper code has been updated to split ranges across targets.
363 	 */
364 	if (nr_pages != 1)
365 		return -EIO;
366 
367 	return dax_dev->ops->zero_page_range(dax_dev, pgoff, nr_pages);
368 }
369 EXPORT_SYMBOL_GPL(dax_zero_page_range);
370 
371 #ifdef CONFIG_ARCH_HAS_PMEM_API
372 void arch_wb_cache_pmem(void *addr, size_t size);
373 void dax_flush(struct dax_device *dax_dev, void *addr, size_t size)
374 {
375 	if (unlikely(!dax_write_cache_enabled(dax_dev)))
376 		return;
377 
378 	arch_wb_cache_pmem(addr, size);
379 }
380 #else
381 void dax_flush(struct dax_device *dax_dev, void *addr, size_t size)
382 {
383 }
384 #endif
385 EXPORT_SYMBOL_GPL(dax_flush);
386 
387 void dax_write_cache(struct dax_device *dax_dev, bool wc)
388 {
389 	if (wc)
390 		set_bit(DAXDEV_WRITE_CACHE, &dax_dev->flags);
391 	else
392 		clear_bit(DAXDEV_WRITE_CACHE, &dax_dev->flags);
393 }
394 EXPORT_SYMBOL_GPL(dax_write_cache);
395 
396 bool dax_write_cache_enabled(struct dax_device *dax_dev)
397 {
398 	return test_bit(DAXDEV_WRITE_CACHE, &dax_dev->flags);
399 }
400 EXPORT_SYMBOL_GPL(dax_write_cache_enabled);
401 
402 bool __dax_synchronous(struct dax_device *dax_dev)
403 {
404 	return test_bit(DAXDEV_SYNC, &dax_dev->flags);
405 }
406 EXPORT_SYMBOL_GPL(__dax_synchronous);
407 
408 void __set_dax_synchronous(struct dax_device *dax_dev)
409 {
410 	set_bit(DAXDEV_SYNC, &dax_dev->flags);
411 }
412 EXPORT_SYMBOL_GPL(__set_dax_synchronous);
413 
414 bool dax_alive(struct dax_device *dax_dev)
415 {
416 	lockdep_assert_held(&dax_srcu);
417 	return test_bit(DAXDEV_ALIVE, &dax_dev->flags);
418 }
419 EXPORT_SYMBOL_GPL(dax_alive);
420 
421 static int dax_host_hash(const char *host)
422 {
423 	return hashlen_hash(hashlen_string("DAX", host)) % DAX_HASH_SIZE;
424 }
425 
426 /*
427  * Note, rcu is not protecting the liveness of dax_dev, rcu is ensuring
428  * that any fault handlers or operations that might have seen
429  * dax_alive(), have completed.  Any operations that start after
430  * synchronize_srcu() has run will abort upon seeing !dax_alive().
431  */
432 void kill_dax(struct dax_device *dax_dev)
433 {
434 	if (!dax_dev)
435 		return;
436 
437 	clear_bit(DAXDEV_ALIVE, &dax_dev->flags);
438 
439 	synchronize_srcu(&dax_srcu);
440 
441 	spin_lock(&dax_host_lock);
442 	hlist_del_init(&dax_dev->list);
443 	spin_unlock(&dax_host_lock);
444 }
445 EXPORT_SYMBOL_GPL(kill_dax);
446 
447 void run_dax(struct dax_device *dax_dev)
448 {
449 	set_bit(DAXDEV_ALIVE, &dax_dev->flags);
450 }
451 EXPORT_SYMBOL_GPL(run_dax);
452 
453 static struct inode *dax_alloc_inode(struct super_block *sb)
454 {
455 	struct dax_device *dax_dev;
456 	struct inode *inode;
457 
458 	dax_dev = kmem_cache_alloc(dax_cache, GFP_KERNEL);
459 	if (!dax_dev)
460 		return NULL;
461 
462 	inode = &dax_dev->inode;
463 	inode->i_rdev = 0;
464 	return inode;
465 }
466 
467 static struct dax_device *to_dax_dev(struct inode *inode)
468 {
469 	return container_of(inode, struct dax_device, inode);
470 }
471 
472 static void dax_free_inode(struct inode *inode)
473 {
474 	struct dax_device *dax_dev = to_dax_dev(inode);
475 	kfree(dax_dev->host);
476 	dax_dev->host = NULL;
477 	if (inode->i_rdev)
478 		ida_simple_remove(&dax_minor_ida, MINOR(inode->i_rdev));
479 	kmem_cache_free(dax_cache, dax_dev);
480 }
481 
482 static void dax_destroy_inode(struct inode *inode)
483 {
484 	struct dax_device *dax_dev = to_dax_dev(inode);
485 	WARN_ONCE(test_bit(DAXDEV_ALIVE, &dax_dev->flags),
486 			"kill_dax() must be called before final iput()\n");
487 }
488 
489 static const struct super_operations dax_sops = {
490 	.statfs = simple_statfs,
491 	.alloc_inode = dax_alloc_inode,
492 	.destroy_inode = dax_destroy_inode,
493 	.free_inode = dax_free_inode,
494 	.drop_inode = generic_delete_inode,
495 };
496 
497 static int dax_init_fs_context(struct fs_context *fc)
498 {
499 	struct pseudo_fs_context *ctx = init_pseudo(fc, DAXFS_MAGIC);
500 	if (!ctx)
501 		return -ENOMEM;
502 	ctx->ops = &dax_sops;
503 	return 0;
504 }
505 
506 static struct file_system_type dax_fs_type = {
507 	.name		= "dax",
508 	.init_fs_context = dax_init_fs_context,
509 	.kill_sb	= kill_anon_super,
510 };
511 
512 static int dax_test(struct inode *inode, void *data)
513 {
514 	dev_t devt = *(dev_t *) data;
515 
516 	return inode->i_rdev == devt;
517 }
518 
519 static int dax_set(struct inode *inode, void *data)
520 {
521 	dev_t devt = *(dev_t *) data;
522 
523 	inode->i_rdev = devt;
524 	return 0;
525 }
526 
527 static struct dax_device *dax_dev_get(dev_t devt)
528 {
529 	struct dax_device *dax_dev;
530 	struct inode *inode;
531 
532 	inode = iget5_locked(dax_superblock, hash_32(devt + DAXFS_MAGIC, 31),
533 			dax_test, dax_set, &devt);
534 
535 	if (!inode)
536 		return NULL;
537 
538 	dax_dev = to_dax_dev(inode);
539 	if (inode->i_state & I_NEW) {
540 		set_bit(DAXDEV_ALIVE, &dax_dev->flags);
541 		inode->i_cdev = &dax_dev->cdev;
542 		inode->i_mode = S_IFCHR;
543 		inode->i_flags = S_DAX;
544 		mapping_set_gfp_mask(&inode->i_data, GFP_USER);
545 		unlock_new_inode(inode);
546 	}
547 
548 	return dax_dev;
549 }
550 
551 static void dax_add_host(struct dax_device *dax_dev, const char *host)
552 {
553 	int hash;
554 
555 	/*
556 	 * Unconditionally init dax_dev since it's coming from a
557 	 * non-zeroed slab cache
558 	 */
559 	INIT_HLIST_NODE(&dax_dev->list);
560 	dax_dev->host = host;
561 	if (!host)
562 		return;
563 
564 	hash = dax_host_hash(host);
565 	spin_lock(&dax_host_lock);
566 	hlist_add_head(&dax_dev->list, &dax_host_list[hash]);
567 	spin_unlock(&dax_host_lock);
568 }
569 
570 struct dax_device *alloc_dax(void *private, const char *__host,
571 		const struct dax_operations *ops, unsigned long flags)
572 {
573 	struct dax_device *dax_dev;
574 	const char *host;
575 	dev_t devt;
576 	int minor;
577 
578 	if (ops && !ops->zero_page_range) {
579 		pr_debug("%s: error: device does not provide dax"
580 			 " operation zero_page_range()\n",
581 			 __host ? __host : "Unknown");
582 		return ERR_PTR(-EINVAL);
583 	}
584 
585 	host = kstrdup(__host, GFP_KERNEL);
586 	if (__host && !host)
587 		return ERR_PTR(-ENOMEM);
588 
589 	minor = ida_simple_get(&dax_minor_ida, 0, MINORMASK+1, GFP_KERNEL);
590 	if (minor < 0)
591 		goto err_minor;
592 
593 	devt = MKDEV(MAJOR(dax_devt), minor);
594 	dax_dev = dax_dev_get(devt);
595 	if (!dax_dev)
596 		goto err_dev;
597 
598 	dax_add_host(dax_dev, host);
599 	dax_dev->ops = ops;
600 	dax_dev->private = private;
601 	if (flags & DAXDEV_F_SYNC)
602 		set_dax_synchronous(dax_dev);
603 
604 	return dax_dev;
605 
606  err_dev:
607 	ida_simple_remove(&dax_minor_ida, minor);
608  err_minor:
609 	kfree(host);
610 	return ERR_PTR(-ENOMEM);
611 }
612 EXPORT_SYMBOL_GPL(alloc_dax);
613 
614 void put_dax(struct dax_device *dax_dev)
615 {
616 	if (!dax_dev)
617 		return;
618 	iput(&dax_dev->inode);
619 }
620 EXPORT_SYMBOL_GPL(put_dax);
621 
622 /**
623  * dax_get_by_host() - temporary lookup mechanism for filesystem-dax
624  * @host: alternate name for the device registered by a dax driver
625  */
626 struct dax_device *dax_get_by_host(const char *host)
627 {
628 	struct dax_device *dax_dev, *found = NULL;
629 	int hash, id;
630 
631 	if (!host)
632 		return NULL;
633 
634 	hash = dax_host_hash(host);
635 
636 	id = dax_read_lock();
637 	spin_lock(&dax_host_lock);
638 	hlist_for_each_entry(dax_dev, &dax_host_list[hash], list) {
639 		if (!dax_alive(dax_dev)
640 				|| strcmp(host, dax_dev->host) != 0)
641 			continue;
642 
643 		if (igrab(&dax_dev->inode))
644 			found = dax_dev;
645 		break;
646 	}
647 	spin_unlock(&dax_host_lock);
648 	dax_read_unlock(id);
649 
650 	return found;
651 }
652 EXPORT_SYMBOL_GPL(dax_get_by_host);
653 
654 /**
655  * inode_dax: convert a public inode into its dax_dev
656  * @inode: An inode with i_cdev pointing to a dax_dev
657  *
658  * Note this is not equivalent to to_dax_dev() which is for private
659  * internal use where we know the inode filesystem type == dax_fs_type.
660  */
661 struct dax_device *inode_dax(struct inode *inode)
662 {
663 	struct cdev *cdev = inode->i_cdev;
664 
665 	return container_of(cdev, struct dax_device, cdev);
666 }
667 EXPORT_SYMBOL_GPL(inode_dax);
668 
669 struct inode *dax_inode(struct dax_device *dax_dev)
670 {
671 	return &dax_dev->inode;
672 }
673 EXPORT_SYMBOL_GPL(dax_inode);
674 
675 void *dax_get_private(struct dax_device *dax_dev)
676 {
677 	if (!test_bit(DAXDEV_ALIVE, &dax_dev->flags))
678 		return NULL;
679 	return dax_dev->private;
680 }
681 EXPORT_SYMBOL_GPL(dax_get_private);
682 
683 static void init_once(void *_dax_dev)
684 {
685 	struct dax_device *dax_dev = _dax_dev;
686 	struct inode *inode = &dax_dev->inode;
687 
688 	memset(dax_dev, 0, sizeof(*dax_dev));
689 	inode_init_once(inode);
690 }
691 
692 static int dax_fs_init(void)
693 {
694 	int rc;
695 
696 	dax_cache = kmem_cache_create("dax_cache", sizeof(struct dax_device), 0,
697 			(SLAB_HWCACHE_ALIGN|SLAB_RECLAIM_ACCOUNT|
698 			 SLAB_MEM_SPREAD|SLAB_ACCOUNT),
699 			init_once);
700 	if (!dax_cache)
701 		return -ENOMEM;
702 
703 	dax_mnt = kern_mount(&dax_fs_type);
704 	if (IS_ERR(dax_mnt)) {
705 		rc = PTR_ERR(dax_mnt);
706 		goto err_mount;
707 	}
708 	dax_superblock = dax_mnt->mnt_sb;
709 
710 	return 0;
711 
712  err_mount:
713 	kmem_cache_destroy(dax_cache);
714 
715 	return rc;
716 }
717 
718 static void dax_fs_exit(void)
719 {
720 	kern_unmount(dax_mnt);
721 	kmem_cache_destroy(dax_cache);
722 }
723 
724 static int __init dax_core_init(void)
725 {
726 	int rc;
727 
728 	rc = dax_fs_init();
729 	if (rc)
730 		return rc;
731 
732 	rc = alloc_chrdev_region(&dax_devt, 0, MINORMASK+1, "dax");
733 	if (rc)
734 		goto err_chrdev;
735 
736 	rc = dax_bus_init();
737 	if (rc)
738 		goto err_bus;
739 	return 0;
740 
741 err_bus:
742 	unregister_chrdev_region(dax_devt, MINORMASK+1);
743 err_chrdev:
744 	dax_fs_exit();
745 	return 0;
746 }
747 
748 static void __exit dax_core_exit(void)
749 {
750 	unregister_chrdev_region(dax_devt, MINORMASK+1);
751 	ida_destroy(&dax_minor_ida);
752 	dax_fs_exit();
753 }
754 
755 MODULE_AUTHOR("Intel Corporation");
756 MODULE_LICENSE("GPL v2");
757 subsys_initcall(dax_core_init);
758 module_exit(dax_core_exit);
759