1 // SPDX-License-Identifier: GPL-2.0-only
3 * Copyright(c) 2017 Intel Corporation. All rights reserved.
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/pfn_t.h>
11 #include <linux/cdev.h>
12 #include <linux/slab.h>
13 #include <linux/uio.h>
14 #include <linux/dax.h>
16 #include <linux/cacheinfo.h>
17 #include "dax-private.h"
20 * struct dax_device - anchor object for dax services
22 * @cdev: optional character interface for "device dax"
23 * @private: dax driver private data
24 * @flags: state and boolean properties
25 * @ops: operations for this device
26 * @holder_data: holder of a dax_device: could be filesystem or mapped device
27 * @holder_ops: operations for the inner holder
34 const struct dax_operations
*ops
;
36 const struct dax_holder_operations
*holder_ops
;
39 static dev_t dax_devt
;
40 DEFINE_STATIC_SRCU(dax_srcu
);
41 static struct vfsmount
*dax_mnt
;
42 static DEFINE_IDA(dax_minor_ida
);
43 static struct kmem_cache
*dax_cache __read_mostly
;
44 static struct super_block
*dax_superblock __read_mostly
;
46 int dax_read_lock(void)
48 return srcu_read_lock(&dax_srcu
);
50 EXPORT_SYMBOL_GPL(dax_read_lock
);
52 void dax_read_unlock(int id
)
54 srcu_read_unlock(&dax_srcu
, id
);
56 EXPORT_SYMBOL_GPL(dax_read_unlock
);
58 #if defined(CONFIG_BLOCK) && defined(CONFIG_FS_DAX)
59 #include <linux/blkdev.h>
61 static DEFINE_XARRAY(dax_hosts
);
63 int dax_add_host(struct dax_device
*dax_dev
, struct gendisk
*disk
)
65 return xa_insert(&dax_hosts
, (unsigned long)disk
, dax_dev
, GFP_KERNEL
);
67 EXPORT_SYMBOL_GPL(dax_add_host
);
69 void dax_remove_host(struct gendisk
*disk
)
71 xa_erase(&dax_hosts
, (unsigned long)disk
);
73 EXPORT_SYMBOL_GPL(dax_remove_host
);
76 * fs_dax_get_by_bdev() - temporary lookup mechanism for filesystem-dax
77 * @bdev: block device to find a dax_device for
78 * @start_off: returns the byte offset into the dax_device that @bdev starts
79 * @holder: filesystem or mapped device inside the dax_device
80 * @ops: operations for the inner holder
82 struct dax_device
*fs_dax_get_by_bdev(struct block_device
*bdev
, u64
*start_off
,
83 void *holder
, const struct dax_holder_operations
*ops
)
85 struct dax_device
*dax_dev
;
89 if (!blk_queue_dax(bdev
->bd_disk
->queue
))
92 *start_off
= get_start_sect(bdev
) * SECTOR_SIZE
;
93 part_size
= bdev_nr_sectors(bdev
) * SECTOR_SIZE
;
94 if (*start_off
% PAGE_SIZE
|| part_size
% PAGE_SIZE
) {
95 pr_info("%pg: error: unaligned partition for dax\n", bdev
);
100 dax_dev
= xa_load(&dax_hosts
, (unsigned long)bdev
->bd_disk
);
101 if (!dax_dev
|| !dax_alive(dax_dev
) || !igrab(&dax_dev
->inode
))
104 if (!cmpxchg(&dax_dev
->holder_data
, NULL
, holder
))
105 dax_dev
->holder_ops
= ops
;
113 EXPORT_SYMBOL_GPL(fs_dax_get_by_bdev
);
115 void fs_put_dax(struct dax_device
*dax_dev
, void *holder
)
117 if (dax_dev
&& holder
&&
118 cmpxchg(&dax_dev
->holder_data
, holder
, NULL
) == holder
)
119 dax_dev
->holder_ops
= NULL
;
122 EXPORT_SYMBOL_GPL(fs_put_dax
);
123 #endif /* CONFIG_BLOCK && CONFIG_FS_DAX */
125 enum dax_device_flags
{
126 /* !alive + rcu grace period == no new operations / mappings */
128 /* gate whether dax_flush() calls the low level flush routine */
130 /* flag to check if device supports synchronous flush */
132 /* do not leave the caches dirty after writes */
134 /* handle CPU fetch exceptions during reads */
139 * dax_direct_access() - translate a device pgoff to an absolute pfn
140 * @dax_dev: a dax_device instance representing the logical memory range
141 * @pgoff: offset in pages from the start of the device to translate
142 * @nr_pages: number of consecutive pages caller can handle relative to @pfn
143 * @mode: indicator on normal access or recovery write
144 * @kaddr: output parameter that returns a virtual address mapping of pfn
145 * @pfn: output parameter that returns an absolute pfn translation of @pgoff
147 * Return: negative errno if an error occurs, otherwise the number of
148 * pages accessible at the device relative @pgoff.
150 long dax_direct_access(struct dax_device
*dax_dev
, pgoff_t pgoff
, long nr_pages
,
151 enum dax_access_mode mode
, void **kaddr
, pfn_t
*pfn
)
158 if (!dax_alive(dax_dev
))
164 avail
= dax_dev
->ops
->direct_access(dax_dev
, pgoff
, nr_pages
,
168 return min(avail
, nr_pages
);
170 EXPORT_SYMBOL_GPL(dax_direct_access
);
172 size_t dax_copy_from_iter(struct dax_device
*dax_dev
, pgoff_t pgoff
, void *addr
,
173 size_t bytes
, struct iov_iter
*i
)
175 if (!dax_alive(dax_dev
))
179 * The userspace address for the memory copy has already been validated
180 * via access_ok() in vfs_write, so use the 'no check' version to bypass
181 * the HARDENED_USERCOPY overhead.
183 if (test_bit(DAXDEV_NOCACHE
, &dax_dev
->flags
))
184 return _copy_from_iter_flushcache(addr
, bytes
, i
);
185 return _copy_from_iter(addr
, bytes
, i
);
188 size_t dax_copy_to_iter(struct dax_device
*dax_dev
, pgoff_t pgoff
, void *addr
,
189 size_t bytes
, struct iov_iter
*i
)
191 if (!dax_alive(dax_dev
))
195 * The userspace address for the memory copy has already been validated
196 * via access_ok() in vfs_red, so use the 'no check' version to bypass
197 * the HARDENED_USERCOPY overhead.
199 if (test_bit(DAXDEV_NOMC
, &dax_dev
->flags
))
200 return _copy_mc_to_iter(addr
, bytes
, i
);
201 return _copy_to_iter(addr
, bytes
, i
);
204 int dax_zero_page_range(struct dax_device
*dax_dev
, pgoff_t pgoff
,
209 if (!dax_alive(dax_dev
))
212 * There are no callers that want to zero more than one page as of now.
213 * Once users are there, this check can be removed after the
214 * device mapper code has been updated to split ranges across targets.
219 ret
= dax_dev
->ops
->zero_page_range(dax_dev
, pgoff
, nr_pages
);
220 return dax_mem2blk_err(ret
);
222 EXPORT_SYMBOL_GPL(dax_zero_page_range
);
224 size_t dax_recovery_write(struct dax_device
*dax_dev
, pgoff_t pgoff
,
225 void *addr
, size_t bytes
, struct iov_iter
*iter
)
227 if (!dax_dev
->ops
->recovery_write
)
229 return dax_dev
->ops
->recovery_write(dax_dev
, pgoff
, addr
, bytes
, iter
);
231 EXPORT_SYMBOL_GPL(dax_recovery_write
);
233 int dax_holder_notify_failure(struct dax_device
*dax_dev
, u64 off
,
234 u64 len
, int mf_flags
)
238 id
= dax_read_lock();
239 if (!dax_alive(dax_dev
)) {
244 if (!dax_dev
->holder_ops
) {
249 rc
= dax_dev
->holder_ops
->notify_failure(dax_dev
, off
, len
, mf_flags
);
254 EXPORT_SYMBOL_GPL(dax_holder_notify_failure
);
256 #ifdef CONFIG_ARCH_HAS_PMEM_API
257 void arch_wb_cache_pmem(void *addr
, size_t size
);
258 void dax_flush(struct dax_device
*dax_dev
, void *addr
, size_t size
)
260 if (unlikely(!dax_write_cache_enabled(dax_dev
)))
263 arch_wb_cache_pmem(addr
, size
);
266 void dax_flush(struct dax_device
*dax_dev
, void *addr
, size_t size
)
270 EXPORT_SYMBOL_GPL(dax_flush
);
272 void dax_write_cache(struct dax_device
*dax_dev
, bool wc
)
275 set_bit(DAXDEV_WRITE_CACHE
, &dax_dev
->flags
);
277 clear_bit(DAXDEV_WRITE_CACHE
, &dax_dev
->flags
);
279 EXPORT_SYMBOL_GPL(dax_write_cache
);
281 bool dax_write_cache_enabled(struct dax_device
*dax_dev
)
283 return test_bit(DAXDEV_WRITE_CACHE
, &dax_dev
->flags
);
285 EXPORT_SYMBOL_GPL(dax_write_cache_enabled
);
287 bool dax_synchronous(struct dax_device
*dax_dev
)
289 return test_bit(DAXDEV_SYNC
, &dax_dev
->flags
);
291 EXPORT_SYMBOL_GPL(dax_synchronous
);
293 void set_dax_synchronous(struct dax_device
*dax_dev
)
295 set_bit(DAXDEV_SYNC
, &dax_dev
->flags
);
297 EXPORT_SYMBOL_GPL(set_dax_synchronous
);
299 void set_dax_nocache(struct dax_device
*dax_dev
)
301 set_bit(DAXDEV_NOCACHE
, &dax_dev
->flags
);
303 EXPORT_SYMBOL_GPL(set_dax_nocache
);
305 void set_dax_nomc(struct dax_device
*dax_dev
)
307 set_bit(DAXDEV_NOMC
, &dax_dev
->flags
);
309 EXPORT_SYMBOL_GPL(set_dax_nomc
);
311 bool dax_alive(struct dax_device
*dax_dev
)
313 lockdep_assert_held(&dax_srcu
);
314 return test_bit(DAXDEV_ALIVE
, &dax_dev
->flags
);
316 EXPORT_SYMBOL_GPL(dax_alive
);
319 * Note, rcu is not protecting the liveness of dax_dev, rcu is ensuring
320 * that any fault handlers or operations that might have seen
321 * dax_alive(), have completed. Any operations that start after
322 * synchronize_srcu() has run will abort upon seeing !dax_alive().
324 * Note, because alloc_dax() returns an ERR_PTR() on error, callers
325 * typically store its result into a local variable in order to check
326 * the result. Therefore, care must be taken to populate the struct
327 * device dax_dev field make sure the dax_dev is not leaked.
329 void kill_dax(struct dax_device
*dax_dev
)
334 if (dax_dev
->holder_data
!= NULL
)
335 dax_holder_notify_failure(dax_dev
, 0, U64_MAX
,
338 clear_bit(DAXDEV_ALIVE
, &dax_dev
->flags
);
339 synchronize_srcu(&dax_srcu
);
341 /* clear holder data */
342 dax_dev
->holder_ops
= NULL
;
343 dax_dev
->holder_data
= NULL
;
345 EXPORT_SYMBOL_GPL(kill_dax
);
347 void run_dax(struct dax_device
*dax_dev
)
349 set_bit(DAXDEV_ALIVE
, &dax_dev
->flags
);
351 EXPORT_SYMBOL_GPL(run_dax
);
353 static struct inode
*dax_alloc_inode(struct super_block
*sb
)
355 struct dax_device
*dax_dev
;
358 dax_dev
= alloc_inode_sb(sb
, dax_cache
, GFP_KERNEL
);
362 inode
= &dax_dev
->inode
;
367 static struct dax_device
*to_dax_dev(struct inode
*inode
)
369 return container_of(inode
, struct dax_device
, inode
);
372 static void dax_free_inode(struct inode
*inode
)
374 struct dax_device
*dax_dev
= to_dax_dev(inode
);
376 ida_free(&dax_minor_ida
, iminor(inode
));
377 kmem_cache_free(dax_cache
, dax_dev
);
380 static void dax_destroy_inode(struct inode
*inode
)
382 struct dax_device
*dax_dev
= to_dax_dev(inode
);
383 WARN_ONCE(test_bit(DAXDEV_ALIVE
, &dax_dev
->flags
),
384 "kill_dax() must be called before final iput()\n");
387 static const struct super_operations dax_sops
= {
388 .statfs
= simple_statfs
,
389 .alloc_inode
= dax_alloc_inode
,
390 .destroy_inode
= dax_destroy_inode
,
391 .free_inode
= dax_free_inode
,
392 .drop_inode
= generic_delete_inode
,
395 static int dax_init_fs_context(struct fs_context
*fc
)
397 struct pseudo_fs_context
*ctx
= init_pseudo(fc
, DAXFS_MAGIC
);
400 ctx
->ops
= &dax_sops
;
404 static struct file_system_type dax_fs_type
= {
406 .init_fs_context
= dax_init_fs_context
,
407 .kill_sb
= kill_anon_super
,
410 static int dax_test(struct inode
*inode
, void *data
)
412 dev_t devt
= *(dev_t
*) data
;
414 return inode
->i_rdev
== devt
;
417 static int dax_set(struct inode
*inode
, void *data
)
419 dev_t devt
= *(dev_t
*) data
;
421 inode
->i_rdev
= devt
;
425 static struct dax_device
*dax_dev_get(dev_t devt
)
427 struct dax_device
*dax_dev
;
430 inode
= iget5_locked(dax_superblock
, hash_32(devt
+ DAXFS_MAGIC
, 31),
431 dax_test
, dax_set
, &devt
);
436 dax_dev
= to_dax_dev(inode
);
437 if (inode
->i_state
& I_NEW
) {
438 set_bit(DAXDEV_ALIVE
, &dax_dev
->flags
);
439 inode
->i_cdev
= &dax_dev
->cdev
;
440 inode
->i_mode
= S_IFCHR
;
441 inode
->i_flags
= S_DAX
;
442 mapping_set_gfp_mask(&inode
->i_data
, GFP_USER
);
443 unlock_new_inode(inode
);
449 struct dax_device
*alloc_dax(void *private, const struct dax_operations
*ops
)
451 struct dax_device
*dax_dev
;
456 * Unavailable on architectures with virtually aliased data caches,
457 * except for device-dax (NULL operations pointer), which does
458 * not use aliased mappings from the kernel.
460 if (ops
&& cpu_dcache_is_aliasing())
461 return ERR_PTR(-EOPNOTSUPP
);
463 if (WARN_ON_ONCE(ops
&& !ops
->zero_page_range
))
464 return ERR_PTR(-EINVAL
);
466 minor
= ida_alloc_max(&dax_minor_ida
, MINORMASK
, GFP_KERNEL
);
468 return ERR_PTR(-ENOMEM
);
470 devt
= MKDEV(MAJOR(dax_devt
), minor
);
471 dax_dev
= dax_dev_get(devt
);
476 dax_dev
->private = private;
480 ida_free(&dax_minor_ida
, minor
);
481 return ERR_PTR(-ENOMEM
);
483 EXPORT_SYMBOL_GPL(alloc_dax
);
485 void put_dax(struct dax_device
*dax_dev
)
489 iput(&dax_dev
->inode
);
491 EXPORT_SYMBOL_GPL(put_dax
);
494 * dax_holder() - obtain the holder of a dax device
495 * @dax_dev: a dax_device instance
497 * Return: the holder's data which represents the holder if registered,
500 void *dax_holder(struct dax_device
*dax_dev
)
502 return dax_dev
->holder_data
;
504 EXPORT_SYMBOL_GPL(dax_holder
);
507 * inode_dax: convert a public inode into its dax_dev
508 * @inode: An inode with i_cdev pointing to a dax_dev
510 * Note this is not equivalent to to_dax_dev() which is for private
511 * internal use where we know the inode filesystem type == dax_fs_type.
513 struct dax_device
*inode_dax(struct inode
*inode
)
515 struct cdev
*cdev
= inode
->i_cdev
;
517 return container_of(cdev
, struct dax_device
, cdev
);
519 EXPORT_SYMBOL_GPL(inode_dax
);
521 struct inode
*dax_inode(struct dax_device
*dax_dev
)
523 return &dax_dev
->inode
;
525 EXPORT_SYMBOL_GPL(dax_inode
);
527 void *dax_get_private(struct dax_device
*dax_dev
)
529 if (!test_bit(DAXDEV_ALIVE
, &dax_dev
->flags
))
531 return dax_dev
->private;
533 EXPORT_SYMBOL_GPL(dax_get_private
);
535 static void init_once(void *_dax_dev
)
537 struct dax_device
*dax_dev
= _dax_dev
;
538 struct inode
*inode
= &dax_dev
->inode
;
540 memset(dax_dev
, 0, sizeof(*dax_dev
));
541 inode_init_once(inode
);
544 static int dax_fs_init(void)
548 dax_cache
= kmem_cache_create("dax_cache", sizeof(struct dax_device
), 0,
549 SLAB_HWCACHE_ALIGN
| SLAB_RECLAIM_ACCOUNT
| SLAB_ACCOUNT
,
554 dax_mnt
= kern_mount(&dax_fs_type
);
555 if (IS_ERR(dax_mnt
)) {
556 rc
= PTR_ERR(dax_mnt
);
559 dax_superblock
= dax_mnt
->mnt_sb
;
564 kmem_cache_destroy(dax_cache
);
569 static void dax_fs_exit(void)
571 kern_unmount(dax_mnt
);
573 kmem_cache_destroy(dax_cache
);
576 static int __init
dax_core_init(void)
584 rc
= alloc_chrdev_region(&dax_devt
, 0, MINORMASK
+1, "dax");
594 unregister_chrdev_region(dax_devt
, MINORMASK
+1);
600 static void __exit
dax_core_exit(void)
603 unregister_chrdev_region(dax_devt
, MINORMASK
+1);
604 ida_destroy(&dax_minor_ida
);
608 MODULE_AUTHOR("Intel Corporation");
609 MODULE_DESCRIPTION("DAX: direct access to differentiated memory");
610 MODULE_LICENSE("GPL v2");
611 subsys_initcall(dax_core_init
);
612 module_exit(dax_core_exit
);