2 * Compressed rom filesystem for Linux.
4 * Copyright (C) 1999 Linus Torvalds.
6 * This file is released under the GPL.
10 * These are the VFS interfaces to the compressed rom filesystem.
11 * The actual compression is based on zlib, see the other files.
14 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
16 #include <linux/module.h>
18 #include <linux/file.h>
19 #include <linux/pagemap.h>
20 #include <linux/pfn_t.h>
21 #include <linux/ramfs.h>
22 #include <linux/init.h>
23 #include <linux/string.h>
24 #include <linux/blkdev.h>
25 #include <linux/mtd/mtd.h>
26 #include <linux/mtd/super.h>
27 #include <linux/slab.h>
28 #include <linux/vfs.h>
29 #include <linux/mutex.h>
30 #include <uapi/linux/cramfs_fs.h>
31 #include <linux/uaccess.h>
36 * cramfs super-block data in memory
38 struct cramfs_sb_info
{
44 void *linear_virt_addr
;
45 resource_size_t linear_phys_addr
;
46 size_t mtd_point_size
;
49 static inline struct cramfs_sb_info
*CRAMFS_SB(struct super_block
*sb
)
54 static const struct super_operations cramfs_ops
;
55 static const struct inode_operations cramfs_dir_inode_operations
;
56 static const struct file_operations cramfs_directory_operations
;
57 static const struct file_operations cramfs_physmem_fops
;
58 static const struct address_space_operations cramfs_aops
;
60 static DEFINE_MUTEX(read_mutex
);
63 /* These macros may change in future, to provide better st_ino semantics. */
64 #define OFFSET(x) ((x)->i_ino)
66 static unsigned long cramino(const struct cramfs_inode
*cino
, unsigned int offset
)
74 * The file mode test fixes buggy mkcramfs implementations where
75 * cramfs_inode->offset is set to a non zero value for entries
76 * which did not contain data, like devices node and fifos.
78 switch (cino
->mode
& S_IFMT
) {
82 return cino
->offset
<< 2;
89 static struct inode
*get_cramfs_inode(struct super_block
*sb
,
90 const struct cramfs_inode
*cramfs_inode
, unsigned int offset
)
93 static struct timespec64 zerotime
;
95 inode
= iget_locked(sb
, cramino(cramfs_inode
, offset
));
97 return ERR_PTR(-ENOMEM
);
98 if (!(inode
->i_state
& I_NEW
))
101 switch (cramfs_inode
->mode
& S_IFMT
) {
103 inode
->i_fop
= &generic_ro_fops
;
104 inode
->i_data
.a_ops
= &cramfs_aops
;
105 if (IS_ENABLED(CONFIG_CRAMFS_MTD
) &&
106 CRAMFS_SB(sb
)->flags
& CRAMFS_FLAG_EXT_BLOCK_POINTERS
&&
107 CRAMFS_SB(sb
)->linear_phys_addr
)
108 inode
->i_fop
= &cramfs_physmem_fops
;
111 inode
->i_op
= &cramfs_dir_inode_operations
;
112 inode
->i_fop
= &cramfs_directory_operations
;
115 inode
->i_op
= &page_symlink_inode_operations
;
116 inode_nohighmem(inode
);
117 inode
->i_data
.a_ops
= &cramfs_aops
;
120 init_special_inode(inode
, cramfs_inode
->mode
,
121 old_decode_dev(cramfs_inode
->size
));
124 inode
->i_mode
= cramfs_inode
->mode
;
125 i_uid_write(inode
, cramfs_inode
->uid
);
126 i_gid_write(inode
, cramfs_inode
->gid
);
128 /* if the lower 2 bits are zero, the inode contains data */
129 if (!(inode
->i_ino
& 3)) {
130 inode
->i_size
= cramfs_inode
->size
;
131 inode
->i_blocks
= (cramfs_inode
->size
- 1) / 512 + 1;
134 /* Struct copy intentional */
135 inode
->i_mtime
= inode
->i_atime
= inode
->i_ctime
= zerotime
;
136 /* inode->i_nlink is left 1 - arguably wrong for directories,
137 but it's the best we can do without reading the directory
138 contents. 1 yields the right result in GNU find, even
139 without -noleaf option. */
141 unlock_new_inode(inode
);
147 * We have our own block cache: don't fill up the buffer cache
148 * with the rom-image, because the way the filesystem is set
149 * up the accesses should be fairly regular and cached in the
150 * page cache and dentry tree anyway..
152 * This also acts as a way to guarantee contiguous areas of up to
153 * BLKS_PER_BUF*PAGE_SIZE, so that the caller doesn't need to
154 * worry about end-of-buffer issues even when decompressing a full
157 * Note: This is all optimized away at compile time when
158 * CONFIG_CRAMFS_BLOCKDEV=n.
160 #define READ_BUFFERS (2)
161 /* NEXT_BUFFER(): Loop over [0..(READ_BUFFERS-1)]. */
162 #define NEXT_BUFFER(_ix) ((_ix) ^ 1)
165 * BLKS_PER_BUF_SHIFT should be at least 2 to allow for "compressed"
166 * data that takes up more space than the original and with unlucky
169 #define BLKS_PER_BUF_SHIFT (2)
170 #define BLKS_PER_BUF (1 << BLKS_PER_BUF_SHIFT)
171 #define BUFFER_SIZE (BLKS_PER_BUF*PAGE_SIZE)
173 static unsigned char read_buffers
[READ_BUFFERS
][BUFFER_SIZE
];
174 static unsigned buffer_blocknr
[READ_BUFFERS
];
175 static struct super_block
*buffer_dev
[READ_BUFFERS
];
176 static int next_buffer
;
179 * Populate our block cache and return a pointer to it.
181 static void *cramfs_blkdev_read(struct super_block
*sb
, unsigned int offset
,
184 struct address_space
*mapping
= sb
->s_bdev
->bd_inode
->i_mapping
;
185 struct page
*pages
[BLKS_PER_BUF
];
186 unsigned i
, blocknr
, buffer
;
187 unsigned long devsize
;
192 blocknr
= offset
>> PAGE_SHIFT
;
193 offset
&= PAGE_SIZE
- 1;
195 /* Check if an existing buffer already has the data.. */
196 for (i
= 0; i
< READ_BUFFERS
; i
++) {
197 unsigned int blk_offset
;
199 if (buffer_dev
[i
] != sb
)
201 if (blocknr
< buffer_blocknr
[i
])
203 blk_offset
= (blocknr
- buffer_blocknr
[i
]) << PAGE_SHIFT
;
204 blk_offset
+= offset
;
205 if (blk_offset
> BUFFER_SIZE
||
206 blk_offset
+ len
> BUFFER_SIZE
)
208 return read_buffers
[i
] + blk_offset
;
211 devsize
= mapping
->host
->i_size
>> PAGE_SHIFT
;
213 /* Ok, read in BLKS_PER_BUF pages completely first. */
214 for (i
= 0; i
< BLKS_PER_BUF
; i
++) {
215 struct page
*page
= NULL
;
217 if (blocknr
+ i
< devsize
) {
218 page
= read_mapping_page(mapping
, blocknr
+ i
, NULL
);
219 /* synchronous error? */
226 for (i
= 0; i
< BLKS_PER_BUF
; i
++) {
227 struct page
*page
= pages
[i
];
230 wait_on_page_locked(page
);
231 if (!PageUptodate(page
)) {
232 /* asynchronous error */
239 buffer
= next_buffer
;
240 next_buffer
= NEXT_BUFFER(buffer
);
241 buffer_blocknr
[buffer
] = blocknr
;
242 buffer_dev
[buffer
] = sb
;
244 data
= read_buffers
[buffer
];
245 for (i
= 0; i
< BLKS_PER_BUF
; i
++) {
246 struct page
*page
= pages
[i
];
249 memcpy(data
, kmap(page
), PAGE_SIZE
);
253 memset(data
, 0, PAGE_SIZE
);
256 return read_buffers
[buffer
] + offset
;
260 * Return a pointer to the linearly addressed cramfs image in memory.
262 static void *cramfs_direct_read(struct super_block
*sb
, unsigned int offset
,
265 struct cramfs_sb_info
*sbi
= CRAMFS_SB(sb
);
269 if (len
> sbi
->size
|| offset
> sbi
->size
- len
)
270 return page_address(ZERO_PAGE(0));
271 return sbi
->linear_virt_addr
+ offset
;
275 * Returns a pointer to a buffer containing at least LEN bytes of
276 * filesystem starting at byte offset OFFSET into the filesystem.
278 static void *cramfs_read(struct super_block
*sb
, unsigned int offset
,
281 struct cramfs_sb_info
*sbi
= CRAMFS_SB(sb
);
283 if (IS_ENABLED(CONFIG_CRAMFS_MTD
) && sbi
->linear_virt_addr
)
284 return cramfs_direct_read(sb
, offset
, len
);
285 else if (IS_ENABLED(CONFIG_CRAMFS_BLOCKDEV
))
286 return cramfs_blkdev_read(sb
, offset
, len
);
292 * For a mapping to be possible, we need a range of uncompressed and
293 * contiguous blocks. Return the offset for the first block and number of
294 * valid blocks for which that is true, or zero otherwise.
296 static u32
cramfs_get_block_range(struct inode
*inode
, u32 pgoff
, u32
*pages
)
298 struct cramfs_sb_info
*sbi
= CRAMFS_SB(inode
->i_sb
);
300 u32
*blockptrs
, first_block_addr
;
303 * We can dereference memory directly here as this code may be
304 * reached only when there is a direct filesystem image mapping
305 * available in memory.
307 blockptrs
= (u32
*)(sbi
->linear_virt_addr
+ OFFSET(inode
) + pgoff
* 4);
308 first_block_addr
= blockptrs
[0] & ~CRAMFS_BLK_FLAGS
;
311 u32 block_off
= i
* (PAGE_SIZE
>> CRAMFS_BLK_DIRECT_PTR_SHIFT
);
312 u32 expect
= (first_block_addr
+ block_off
) |
313 CRAMFS_BLK_FLAG_DIRECT_PTR
|
314 CRAMFS_BLK_FLAG_UNCOMPRESSED
;
315 if (blockptrs
[i
] != expect
) {
316 pr_debug("range: block %d/%d got %#x expects %#x\n",
317 pgoff
+i
, pgoff
+ *pages
- 1,
318 blockptrs
[i
], expect
);
323 } while (++i
< *pages
);
326 return first_block_addr
<< CRAMFS_BLK_DIRECT_PTR_SHIFT
;
332 * Return true if the last page of a file in the filesystem image contains
333 * some other data that doesn't belong to that file. It is assumed that the
334 * last block is CRAMFS_BLK_FLAG_DIRECT_PTR | CRAMFS_BLK_FLAG_UNCOMPRESSED
335 * (verified by cramfs_get_block_range() and directly accessible in memory.
337 static bool cramfs_last_page_is_shared(struct inode
*inode
)
339 struct cramfs_sb_info
*sbi
= CRAMFS_SB(inode
->i_sb
);
340 u32 partial
, last_page
, blockaddr
, *blockptrs
;
343 partial
= offset_in_page(inode
->i_size
);
346 last_page
= inode
->i_size
>> PAGE_SHIFT
;
347 blockptrs
= (u32
*)(sbi
->linear_virt_addr
+ OFFSET(inode
));
348 blockaddr
= blockptrs
[last_page
] & ~CRAMFS_BLK_FLAGS
;
349 blockaddr
<<= CRAMFS_BLK_DIRECT_PTR_SHIFT
;
350 tail_data
= sbi
->linear_virt_addr
+ blockaddr
+ partial
;
351 return memchr_inv(tail_data
, 0, PAGE_SIZE
- partial
) ? true : false;
354 static int cramfs_physmem_mmap(struct file
*file
, struct vm_area_struct
*vma
)
356 struct inode
*inode
= file_inode(file
);
357 struct cramfs_sb_info
*sbi
= CRAMFS_SB(inode
->i_sb
);
358 unsigned int pages
, max_pages
, offset
;
359 unsigned long address
, pgoff
= vma
->vm_pgoff
;
360 char *bailout_reason
;
363 ret
= generic_file_readonly_mmap(file
, vma
);
368 * Now try to pre-populate ptes for this vma with a direct
369 * mapping avoiding memory allocation when possible.
372 /* Could COW work here? */
373 bailout_reason
= "vma is writable";
374 if (vma
->vm_flags
& VM_WRITE
)
377 max_pages
= (inode
->i_size
+ PAGE_SIZE
- 1) >> PAGE_SHIFT
;
378 bailout_reason
= "beyond file limit";
379 if (pgoff
>= max_pages
)
381 pages
= min(vma_pages(vma
), max_pages
- pgoff
);
383 offset
= cramfs_get_block_range(inode
, pgoff
, &pages
);
384 bailout_reason
= "unsuitable block layout";
387 address
= sbi
->linear_phys_addr
+ offset
;
388 bailout_reason
= "data is not page aligned";
389 if (!PAGE_ALIGNED(address
))
392 /* Don't map the last page if it contains some other data */
393 if (pgoff
+ pages
== max_pages
&& cramfs_last_page_is_shared(inode
)) {
394 pr_debug("mmap: %s: last page is shared\n",
395 file_dentry(file
)->d_name
.name
);
400 bailout_reason
= "no suitable block remaining";
404 if (pages
== vma_pages(vma
)) {
406 * The entire vma is mappable. remap_pfn_range() will
407 * make it distinguishable from a non-direct mapping
408 * in /proc/<pid>/maps by substituting the file offset
409 * with the actual physical address.
411 ret
= remap_pfn_range(vma
, vma
->vm_start
, address
>> PAGE_SHIFT
,
412 pages
* PAGE_SIZE
, vma
->vm_page_prot
);
415 * Let's create a mixed map if we can't map it all.
416 * The normal paging machinery will take care of the
417 * unpopulated ptes via cramfs_readpage().
420 vma
->vm_flags
|= VM_MIXEDMAP
;
421 for (i
= 0; i
< pages
&& !ret
; i
++) {
422 unsigned long off
= i
* PAGE_SIZE
;
423 pfn_t pfn
= phys_to_pfn_t(address
+ off
, PFN_DEV
);
424 ret
= vm_insert_mixed(vma
, vma
->vm_start
+ off
, pfn
);
429 pr_debug("mapped %s[%lu] at 0x%08lx (%u/%lu pages) "
430 "to vma 0x%08lx, page_prot 0x%llx\n",
431 file_dentry(file
)->d_name
.name
, pgoff
,
432 address
, pages
, vma_pages(vma
), vma
->vm_start
,
433 (unsigned long long)pgprot_val(vma
->vm_page_prot
));
437 pr_debug("%s[%lu]: direct mmap impossible: %s\n",
438 file_dentry(file
)->d_name
.name
, pgoff
, bailout_reason
);
439 /* Didn't manage any direct map, but normal paging is still possible */
443 #else /* CONFIG_MMU */
445 static int cramfs_physmem_mmap(struct file
*file
, struct vm_area_struct
*vma
)
447 return vma
->vm_flags
& (VM_SHARED
| VM_MAYSHARE
) ? 0 : -ENOSYS
;
450 static unsigned long cramfs_physmem_get_unmapped_area(struct file
*file
,
451 unsigned long addr
, unsigned long len
,
452 unsigned long pgoff
, unsigned long flags
)
454 struct inode
*inode
= file_inode(file
);
455 struct super_block
*sb
= inode
->i_sb
;
456 struct cramfs_sb_info
*sbi
= CRAMFS_SB(sb
);
457 unsigned int pages
, block_pages
, max_pages
, offset
;
459 pages
= (len
+ PAGE_SIZE
- 1) >> PAGE_SHIFT
;
460 max_pages
= (inode
->i_size
+ PAGE_SIZE
- 1) >> PAGE_SHIFT
;
461 if (pgoff
>= max_pages
|| pages
> max_pages
- pgoff
)
464 offset
= cramfs_get_block_range(inode
, pgoff
, &block_pages
);
465 if (!offset
|| block_pages
!= pages
)
467 addr
= sbi
->linear_phys_addr
+ offset
;
468 pr_debug("get_unmapped for %s ofs %#lx siz %lu at 0x%08lx\n",
469 file_dentry(file
)->d_name
.name
, pgoff
*PAGE_SIZE
, len
, addr
);
473 static unsigned int cramfs_physmem_mmap_capabilities(struct file
*file
)
475 return NOMMU_MAP_COPY
| NOMMU_MAP_DIRECT
|
476 NOMMU_MAP_READ
| NOMMU_MAP_EXEC
;
479 #endif /* CONFIG_MMU */
481 static const struct file_operations cramfs_physmem_fops
= {
482 .llseek
= generic_file_llseek
,
483 .read_iter
= generic_file_read_iter
,
484 .splice_read
= generic_file_splice_read
,
485 .mmap
= cramfs_physmem_mmap
,
487 .get_unmapped_area
= cramfs_physmem_get_unmapped_area
,
488 .mmap_capabilities
= cramfs_physmem_mmap_capabilities
,
492 static void cramfs_kill_sb(struct super_block
*sb
)
494 struct cramfs_sb_info
*sbi
= CRAMFS_SB(sb
);
496 if (IS_ENABLED(CONFIG_CRAMFS_MTD
) && sb
->s_mtd
) {
497 if (sbi
&& sbi
->mtd_point_size
)
498 mtd_unpoint(sb
->s_mtd
, 0, sbi
->mtd_point_size
);
500 } else if (IS_ENABLED(CONFIG_CRAMFS_BLOCKDEV
) && sb
->s_bdev
) {
501 kill_block_super(sb
);
506 static int cramfs_remount(struct super_block
*sb
, int *flags
, char *data
)
513 static int cramfs_read_super(struct super_block
*sb
,
514 struct cramfs_super
*super
, int silent
)
516 struct cramfs_sb_info
*sbi
= CRAMFS_SB(sb
);
517 unsigned long root_offset
;
519 /* We don't know the real size yet */
520 sbi
->size
= PAGE_SIZE
;
522 /* Read the first block and get the superblock from it */
523 mutex_lock(&read_mutex
);
524 memcpy(super
, cramfs_read(sb
, 0, sizeof(*super
)), sizeof(*super
));
525 mutex_unlock(&read_mutex
);
527 /* Do sanity checks on the superblock */
528 if (super
->magic
!= CRAMFS_MAGIC
) {
529 /* check for wrong endianness */
530 if (super
->magic
== CRAMFS_MAGIC_WEND
) {
532 pr_err("wrong endianness\n");
536 /* check at 512 byte offset */
537 mutex_lock(&read_mutex
);
539 cramfs_read(sb
, 512, sizeof(*super
)),
541 mutex_unlock(&read_mutex
);
542 if (super
->magic
!= CRAMFS_MAGIC
) {
543 if (super
->magic
== CRAMFS_MAGIC_WEND
&& !silent
)
544 pr_err("wrong endianness\n");
546 pr_err("wrong magic\n");
551 /* get feature flags first */
552 if (super
->flags
& ~CRAMFS_SUPPORTED_FLAGS
) {
553 pr_err("unsupported filesystem features\n");
557 /* Check that the root inode is in a sane state */
558 if (!S_ISDIR(super
->root
.mode
)) {
559 pr_err("root is not a directory\n");
562 /* correct strange, hard-coded permissions of mkcramfs */
563 super
->root
.mode
|= 0555;
565 root_offset
= super
->root
.offset
<< 2;
566 if (super
->flags
& CRAMFS_FLAG_FSID_VERSION_2
) {
567 sbi
->size
= super
->size
;
568 sbi
->blocks
= super
->fsid
.blocks
;
569 sbi
->files
= super
->fsid
.files
;
575 sbi
->magic
= super
->magic
;
576 sbi
->flags
= super
->flags
;
577 if (root_offset
== 0)
578 pr_info("empty filesystem");
579 else if (!(super
->flags
& CRAMFS_FLAG_SHIFTED_ROOT_OFFSET
) &&
580 ((root_offset
!= sizeof(struct cramfs_super
)) &&
581 (root_offset
!= 512 + sizeof(struct cramfs_super
))))
583 pr_err("bad root offset %lu\n", root_offset
);
590 static int cramfs_finalize_super(struct super_block
*sb
,
591 struct cramfs_inode
*cramfs_root
)
595 /* Set it all up.. */
596 sb
->s_flags
|= SB_RDONLY
;
597 sb
->s_op
= &cramfs_ops
;
598 root
= get_cramfs_inode(sb
, cramfs_root
, 0);
600 return PTR_ERR(root
);
601 sb
->s_root
= d_make_root(root
);
607 static int cramfs_blkdev_fill_super(struct super_block
*sb
, void *data
,
610 struct cramfs_sb_info
*sbi
;
611 struct cramfs_super super
;
614 sbi
= kzalloc(sizeof(struct cramfs_sb_info
), GFP_KERNEL
);
619 /* Invalidate the read buffers on mount: think disk change.. */
620 for (i
= 0; i
< READ_BUFFERS
; i
++)
621 buffer_blocknr
[i
] = -1;
623 err
= cramfs_read_super(sb
, &super
, silent
);
626 return cramfs_finalize_super(sb
, &super
.root
);
629 static int cramfs_mtd_fill_super(struct super_block
*sb
, void *data
,
632 struct cramfs_sb_info
*sbi
;
633 struct cramfs_super super
;
636 sbi
= kzalloc(sizeof(struct cramfs_sb_info
), GFP_KERNEL
);
641 /* Map only one page for now. Will remap it when fs size is known. */
642 err
= mtd_point(sb
->s_mtd
, 0, PAGE_SIZE
, &sbi
->mtd_point_size
,
643 &sbi
->linear_virt_addr
, &sbi
->linear_phys_addr
);
644 if (err
|| sbi
->mtd_point_size
!= PAGE_SIZE
) {
645 pr_err("unable to get direct memory access to mtd:%s\n",
647 return err
? : -ENODATA
;
650 pr_info("checking physical address %pap for linear cramfs image\n",
651 &sbi
->linear_phys_addr
);
652 err
= cramfs_read_super(sb
, &super
, silent
);
656 /* Remap the whole filesystem now */
657 pr_info("linear cramfs image on mtd:%s appears to be %lu KB in size\n",
658 sb
->s_mtd
->name
, sbi
->size
/1024);
659 mtd_unpoint(sb
->s_mtd
, 0, PAGE_SIZE
);
660 err
= mtd_point(sb
->s_mtd
, 0, sbi
->size
, &sbi
->mtd_point_size
,
661 &sbi
->linear_virt_addr
, &sbi
->linear_phys_addr
);
662 if (err
|| sbi
->mtd_point_size
!= sbi
->size
) {
663 pr_err("unable to get direct memory access to mtd:%s\n",
665 return err
? : -ENODATA
;
668 return cramfs_finalize_super(sb
, &super
.root
);
671 static int cramfs_statfs(struct dentry
*dentry
, struct kstatfs
*buf
)
673 struct super_block
*sb
= dentry
->d_sb
;
677 id
= huge_encode_dev(sb
->s_bdev
->bd_dev
);
679 id
= huge_encode_dev(sb
->s_dev
);
681 buf
->f_type
= CRAMFS_MAGIC
;
682 buf
->f_bsize
= PAGE_SIZE
;
683 buf
->f_blocks
= CRAMFS_SB(sb
)->blocks
;
686 buf
->f_files
= CRAMFS_SB(sb
)->files
;
688 buf
->f_fsid
.val
[0] = (u32
)id
;
689 buf
->f_fsid
.val
[1] = (u32
)(id
>> 32);
690 buf
->f_namelen
= CRAMFS_MAXPATHLEN
;
695 * Read a cramfs directory entry.
697 static int cramfs_readdir(struct file
*file
, struct dir_context
*ctx
)
699 struct inode
*inode
= file_inode(file
);
700 struct super_block
*sb
= inode
->i_sb
;
704 /* Offset within the thing. */
705 if (ctx
->pos
>= inode
->i_size
)
708 /* Directory entries are always 4-byte aligned */
712 buf
= kmalloc(CRAMFS_MAXPATHLEN
, GFP_KERNEL
);
716 while (offset
< inode
->i_size
) {
717 struct cramfs_inode
*de
;
718 unsigned long nextoffset
;
724 mutex_lock(&read_mutex
);
725 de
= cramfs_read(sb
, OFFSET(inode
) + offset
, sizeof(*de
)+CRAMFS_MAXPATHLEN
);
726 name
= (char *)(de
+1);
729 * Namelengths on disk are shifted by two
730 * and the name padded out to 4-byte boundaries
733 namelen
= de
->namelen
<< 2;
734 memcpy(buf
, name
, namelen
);
735 ino
= cramino(de
, OFFSET(inode
) + offset
);
737 mutex_unlock(&read_mutex
);
738 nextoffset
= offset
+ sizeof(*de
) + namelen
;
748 if (!dir_emit(ctx
, buf
, namelen
, ino
, mode
>> 12))
751 ctx
->pos
= offset
= nextoffset
;
758 * Lookup and fill in the inode data..
760 static struct dentry
*cramfs_lookup(struct inode
*dir
, struct dentry
*dentry
, unsigned int flags
)
762 unsigned int offset
= 0;
763 struct inode
*inode
= NULL
;
766 mutex_lock(&read_mutex
);
767 sorted
= CRAMFS_SB(dir
->i_sb
)->flags
& CRAMFS_FLAG_SORTED_DIRS
;
768 while (offset
< dir
->i_size
) {
769 struct cramfs_inode
*de
;
772 int dir_off
= OFFSET(dir
) + offset
;
774 de
= cramfs_read(dir
->i_sb
, dir_off
, sizeof(*de
)+CRAMFS_MAXPATHLEN
);
775 name
= (char *)(de
+1);
777 /* Try to take advantage of sorted directories */
778 if (sorted
&& (dentry
->d_name
.name
[0] < name
[0]))
781 namelen
= de
->namelen
<< 2;
782 offset
+= sizeof(*de
) + namelen
;
784 /* Quick check that the name is roughly the right length */
785 if (((dentry
->d_name
.len
+ 3) & ~3) != namelen
)
790 inode
= ERR_PTR(-EIO
);
797 if (namelen
!= dentry
->d_name
.len
)
799 retval
= memcmp(dentry
->d_name
.name
, name
, namelen
);
803 inode
= get_cramfs_inode(dir
->i_sb
, de
, dir_off
);
806 /* else (retval < 0) */
811 mutex_unlock(&read_mutex
);
812 return d_splice_alias(inode
, dentry
);
815 static int cramfs_readpage(struct file
*file
, struct page
*page
)
817 struct inode
*inode
= page
->mapping
->host
;
822 maxblock
= (inode
->i_size
+ PAGE_SIZE
- 1) >> PAGE_SHIFT
;
826 if (page
->index
< maxblock
) {
827 struct super_block
*sb
= inode
->i_sb
;
828 u32 blkptr_offset
= OFFSET(inode
) + page
->index
* 4;
829 u32 block_ptr
, block_start
, block_len
;
830 bool uncompressed
, direct
;
832 mutex_lock(&read_mutex
);
833 block_ptr
= *(u32
*) cramfs_read(sb
, blkptr_offset
, 4);
834 uncompressed
= (block_ptr
& CRAMFS_BLK_FLAG_UNCOMPRESSED
);
835 direct
= (block_ptr
& CRAMFS_BLK_FLAG_DIRECT_PTR
);
836 block_ptr
&= ~CRAMFS_BLK_FLAGS
;
840 * The block pointer is an absolute start pointer,
841 * shifted by 2 bits. The size is included in the
842 * first 2 bytes of the data block when compressed,
843 * or PAGE_SIZE otherwise.
845 block_start
= block_ptr
<< CRAMFS_BLK_DIRECT_PTR_SHIFT
;
847 block_len
= PAGE_SIZE
;
848 /* if last block: cap to file length */
849 if (page
->index
== maxblock
- 1)
851 offset_in_page(inode
->i_size
);
854 cramfs_read(sb
, block_start
, 2);
859 * The block pointer indicates one past the end of
860 * the current block (start of next block). If this
861 * is the first block then it starts where the block
862 * pointer table ends, otherwise its start comes
863 * from the previous block's pointer.
865 block_start
= OFFSET(inode
) + maxblock
* 4;
867 block_start
= *(u32
*)
868 cramfs_read(sb
, blkptr_offset
- 4, 4);
869 /* Beware... previous ptr might be a direct ptr */
870 if (unlikely(block_start
& CRAMFS_BLK_FLAG_DIRECT_PTR
)) {
871 /* See comments on earlier code. */
872 u32 prev_start
= block_start
;
873 block_start
= prev_start
& ~CRAMFS_BLK_FLAGS
;
874 block_start
<<= CRAMFS_BLK_DIRECT_PTR_SHIFT
;
875 if (prev_start
& CRAMFS_BLK_FLAG_UNCOMPRESSED
) {
876 block_start
+= PAGE_SIZE
;
879 cramfs_read(sb
, block_start
, 2);
880 block_start
+= 2 + block_len
;
883 block_start
&= ~CRAMFS_BLK_FLAGS
;
884 block_len
= block_ptr
- block_start
;
889 else if (unlikely(block_len
> 2*PAGE_SIZE
||
890 (uncompressed
&& block_len
> PAGE_SIZE
))) {
891 mutex_unlock(&read_mutex
);
892 pr_err("bad data blocksize %u\n", block_len
);
894 } else if (uncompressed
) {
896 cramfs_read(sb
, block_start
, block_len
),
898 bytes_filled
= block_len
;
900 bytes_filled
= cramfs_uncompress_block(pgdata
,
902 cramfs_read(sb
, block_start
, block_len
),
905 mutex_unlock(&read_mutex
);
906 if (unlikely(bytes_filled
< 0))
910 memset(pgdata
+ bytes_filled
, 0, PAGE_SIZE
- bytes_filled
);
911 flush_dcache_page(page
);
913 SetPageUptodate(page
);
919 ClearPageUptodate(page
);
925 static const struct address_space_operations cramfs_aops
= {
926 .readpage
= cramfs_readpage
934 * A directory can only readdir
936 static const struct file_operations cramfs_directory_operations
= {
937 .llseek
= generic_file_llseek
,
938 .read
= generic_read_dir
,
939 .iterate_shared
= cramfs_readdir
,
942 static const struct inode_operations cramfs_dir_inode_operations
= {
943 .lookup
= cramfs_lookup
,
946 static const struct super_operations cramfs_ops
= {
947 .remount_fs
= cramfs_remount
,
948 .statfs
= cramfs_statfs
,
951 static struct dentry
*cramfs_mount(struct file_system_type
*fs_type
, int flags
,
952 const char *dev_name
, void *data
)
954 struct dentry
*ret
= ERR_PTR(-ENOPROTOOPT
);
956 if (IS_ENABLED(CONFIG_CRAMFS_MTD
)) {
957 ret
= mount_mtd(fs_type
, flags
, dev_name
, data
,
958 cramfs_mtd_fill_super
);
962 if (IS_ENABLED(CONFIG_CRAMFS_BLOCKDEV
)) {
963 ret
= mount_bdev(fs_type
, flags
, dev_name
, data
,
964 cramfs_blkdev_fill_super
);
969 static struct file_system_type cramfs_fs_type
= {
970 .owner
= THIS_MODULE
,
972 .mount
= cramfs_mount
,
973 .kill_sb
= cramfs_kill_sb
,
974 .fs_flags
= FS_REQUIRES_DEV
,
976 MODULE_ALIAS_FS("cramfs");
978 static int __init
init_cramfs_fs(void)
982 rv
= cramfs_uncompress_init();
985 rv
= register_filesystem(&cramfs_fs_type
);
987 cramfs_uncompress_exit();
991 static void __exit
exit_cramfs_fs(void)
993 cramfs_uncompress_exit();
994 unregister_filesystem(&cramfs_fs_type
);
997 module_init(init_cramfs_fs
)
998 module_exit(exit_cramfs_fs
)
999 MODULE_LICENSE("GPL");