5 * Daniel Pirkl <daniel.pirkl@email.cz>
6 * Charles University, Faculty of Mathematics and Physics
11 * linux/fs/ext2/super.c
13 * Copyright (C) 1992, 1993, 1994, 1995
14 * Remy Card (card@masi.ibp.fr)
15 * Laboratoire MASI - Institut Blaise Pascal
16 * Universite Pierre et Marie Curie (Paris VI)
20 * linux/fs/minix/inode.c
22 * Copyright (C) 1991, 1992 Linus Torvalds
24 * Big-endian to little-endian byte-swapping/bitmaps by
25 * David S. Miller (davem@caip.rutgers.edu), 1995
31 * linux/fs/ufs/super.c
34 * Adrian Rodriguez (adrian@franklins-tower.rutgers.edu)
35 * Laboratory for Computer Science Research Computing Facility
36 * Rutgers, The State University of New Jersey
38 * Copyright (C) 1996 Eddie C. Dost (ecd@skynet.be)
40 * Kernel module support added on 96/04/26 by
41 * Stefan Reinauer <stepan@home.culture.mipt.ru>
43 * Module usage counts added on 96/04/29 by
44 * Gertjan van Wingerde <gertjan@cs.vu.nl>
46 * Clean swab support on 19970406 by
47 * Francois-Rene Rideau <fare@tunes.org>
49 * 4.4BSD (FreeBSD) support added on February 1st 1998 by
50 * Niels Kristian Bech Jensen <nkbj@image.dk> partially based
51 * on code by Martin von Loewis <martin@mira.isdn.cs.tu-berlin.de>.
53 * NeXTstep support added on February 5th 1998 by
54 * Niels Kristian Bech Jensen <nkbj@image.dk>.
56 * write support Daniel Pirkl <daniel.pirkl@email.cz> 1998
58 * HP/UX hfs filesystem support added by
59 * Martin K. Petersen <mkp@mkp.net>, August 1999
64 #include <linux/config.h>
65 #include <linux/module.h>
69 #include <asm/bitops.h>
70 #include <asm/uaccess.h>
71 #include <asm/system.h>
73 #include <linux/errno.h>
75 #include <linux/ufs_fs.h>
76 #include <linux/malloc.h>
77 #include <linux/sched.h>
78 #include <linux/stat.h>
79 #include <linux/string.h>
80 #include <linux/locks.h>
81 #include <linux/blkdev.h>
82 #include <linux/init.h>
87 #undef UFS_SUPER_DEBUG
88 #undef UFS_SUPER_DEBUG_MORE
90 #ifdef UFS_SUPER_DEBUG
91 #define UFSD(x) printk("(%s, %d), %s: ", __FILE__, __LINE__, __FUNCTION__); printk x;
96 #ifdef UFS_SUPER_DEBUG_MORE
98 * Print contents of ufs_super_block, useful for debugging
100 void ufs_print_super_stuff(struct ufs_super_block_first
* usb1
,
101 struct ufs_super_block_second
* usb2
,
102 struct ufs_super_block_third
* usb3
, unsigned swab
)
104 printk("ufs_print_super_stuff\n");
105 printk("size of usb: %u\n", sizeof(struct ufs_super_block
));
106 printk(" magic: 0x%x\n", SWAB32(usb3
->fs_magic
));
107 printk(" sblkno: %u\n", SWAB32(usb1
->fs_sblkno
));
108 printk(" cblkno: %u\n", SWAB32(usb1
->fs_cblkno
));
109 printk(" iblkno: %u\n", SWAB32(usb1
->fs_iblkno
));
110 printk(" dblkno: %u\n", SWAB32(usb1
->fs_dblkno
));
111 printk(" cgoffset: %u\n", SWAB32(usb1
->fs_cgoffset
));
112 printk(" ~cgmask: 0x%x\n", ~SWAB32(usb1
->fs_cgmask
));
113 printk(" size: %u\n", SWAB32(usb1
->fs_size
));
114 printk(" dsize: %u\n", SWAB32(usb1
->fs_dsize
));
115 printk(" ncg: %u\n", SWAB32(usb1
->fs_ncg
));
116 printk(" bsize: %u\n", SWAB32(usb1
->fs_bsize
));
117 printk(" fsize: %u\n", SWAB32(usb1
->fs_fsize
));
118 printk(" frag: %u\n", SWAB32(usb1
->fs_frag
));
119 printk(" fragshift: %u\n", SWAB32(usb1
->fs_fragshift
));
120 printk(" ~fmask: %u\n", ~SWAB32(usb1
->fs_fmask
));
121 printk(" fshift: %u\n", SWAB32(usb1
->fs_fshift
));
122 printk(" sbsize: %u\n", SWAB32(usb1
->fs_sbsize
));
123 printk(" spc: %u\n", SWAB32(usb1
->fs_spc
));
124 printk(" cpg: %u\n", SWAB32(usb1
->fs_cpg
));
125 printk(" ipg: %u\n", SWAB32(usb1
->fs_ipg
));
126 printk(" fpg: %u\n", SWAB32(usb1
->fs_fpg
));
127 printk(" csaddr: %u\n", SWAB32(usb1
->fs_csaddr
));
128 printk(" cssize: %u\n", SWAB32(usb1
->fs_cssize
));
129 printk(" cgsize: %u\n", SWAB32(usb1
->fs_cgsize
));
130 printk(" fstodb: %u\n", SWAB32(usb1
->fs_fsbtodb
));
131 printk(" contigsumsize: %d\n", SWAB32(usb3
->fs_u2
.fs_44
.fs_contigsumsize
));
132 printk(" postblformat: %u\n", SWAB32(usb3
->fs_postblformat
));
133 printk(" nrpos: %u\n", SWAB32(usb3
->fs_nrpos
));
134 printk(" ndir %u\n", SWAB32(usb1
->fs_cstotal
.cs_ndir
));
135 printk(" nifree %u\n", SWAB32(usb1
->fs_cstotal
.cs_nifree
));
136 printk(" nbfree %u\n", SWAB32(usb1
->fs_cstotal
.cs_nbfree
));
137 printk(" nffree %u\n", SWAB32(usb1
->fs_cstotal
.cs_nffree
));
143 * Print contents of ufs_cylinder_group, useful for debugging
145 void ufs_print_cylinder_stuff(struct ufs_cylinder_group
*cg
, unsigned swab
)
147 printk("\nufs_print_cylinder_stuff\n");
148 printk("size of ucg: %u\n", sizeof(struct ufs_cylinder_group
));
149 printk(" magic: %x\n", SWAB32(cg
->cg_magic
));
150 printk(" time: %u\n", SWAB32(cg
->cg_time
));
151 printk(" cgx: %u\n", SWAB32(cg
->cg_cgx
));
152 printk(" ncyl: %u\n", SWAB16(cg
->cg_ncyl
));
153 printk(" niblk: %u\n", SWAB16(cg
->cg_niblk
));
154 printk(" ndblk: %u\n", SWAB32(cg
->cg_ndblk
));
155 printk(" cs_ndir: %u\n", SWAB32(cg
->cg_cs
.cs_ndir
));
156 printk(" cs_nbfree: %u\n", SWAB32(cg
->cg_cs
.cs_nbfree
));
157 printk(" cs_nifree: %u\n", SWAB32(cg
->cg_cs
.cs_nifree
));
158 printk(" cs_nffree: %u\n", SWAB32(cg
->cg_cs
.cs_nffree
));
159 printk(" rotor: %u\n", SWAB32(cg
->cg_rotor
));
160 printk(" frotor: %u\n", SWAB32(cg
->cg_frotor
));
161 printk(" irotor: %u\n", SWAB32(cg
->cg_irotor
));
162 printk(" frsum: %u, %u, %u, %u, %u, %u, %u, %u\n",
163 SWAB32(cg
->cg_frsum
[0]), SWAB32(cg
->cg_frsum
[1]),
164 SWAB32(cg
->cg_frsum
[2]), SWAB32(cg
->cg_frsum
[3]),
165 SWAB32(cg
->cg_frsum
[4]), SWAB32(cg
->cg_frsum
[5]),
166 SWAB32(cg
->cg_frsum
[6]), SWAB32(cg
->cg_frsum
[7]));
167 printk(" btotoff: %u\n", SWAB32(cg
->cg_btotoff
));
168 printk(" boff: %u\n", SWAB32(cg
->cg_boff
));
169 printk(" iuseoff: %u\n", SWAB32(cg
->cg_iusedoff
));
170 printk(" freeoff: %u\n", SWAB32(cg
->cg_freeoff
));
171 printk(" nextfreeoff: %u\n", SWAB32(cg
->cg_nextfreeoff
));
172 printk(" clustersumoff %u\n", SWAB32(cg
->cg_u
.cg_44
.cg_clustersumoff
));
173 printk(" clusteroff %u\n", SWAB32(cg
->cg_u
.cg_44
.cg_clusteroff
));
174 printk(" nclusterblks %u\n", SWAB32(cg
->cg_u
.cg_44
.cg_nclusterblks
));
177 #endif /* UFS_SUPER_DEBUG_MORE */
179 static struct super_operations ufs_super_ops
;
181 static char error_buf
[1024];
183 void ufs_error (struct super_block
* sb
, const char * function
,
184 const char * fmt
, ...)
186 struct ufs_sb_private_info
* uspi
;
187 struct ufs_super_block_first
* usb1
;
190 uspi
= sb
->u
.ufs_sb
.s_uspi
;
191 usb1
= ubh_get_usb_first(USPI_UBH
);
193 if (!(sb
->s_flags
& MS_RDONLY
)) {
194 usb1
->fs_clean
= UFS_FSBAD
;
195 ubh_mark_buffer_dirty(USPI_UBH
);
197 sb
->s_flags
|= MS_RDONLY
;
199 va_start (args
, fmt
);
200 vsprintf (error_buf
, fmt
, args
);
202 switch (sb
->u
.ufs_sb
.s_mount_opt
& UFS_MOUNT_ONERROR
) {
203 case UFS_MOUNT_ONERROR_PANIC
:
204 panic ("UFS-fs panic (device %s): %s: %s\n",
205 kdevname(sb
->s_dev
), function
, error_buf
);
207 case UFS_MOUNT_ONERROR_LOCK
:
208 case UFS_MOUNT_ONERROR_UMOUNT
:
209 case UFS_MOUNT_ONERROR_REPAIR
:
210 printk (KERN_CRIT
"UFS-fs error (device %s): %s: %s\n",
211 kdevname(sb
->s_dev
), function
, error_buf
);
215 void ufs_panic (struct super_block
* sb
, const char * function
,
216 const char * fmt
, ...)
218 struct ufs_sb_private_info
* uspi
;
219 struct ufs_super_block_first
* usb1
;
222 uspi
= sb
->u
.ufs_sb
.s_uspi
;
223 usb1
= ubh_get_usb_first(USPI_UBH
);
225 if (!(sb
->s_flags
& MS_RDONLY
)) {
226 usb1
->fs_clean
= UFS_FSBAD
;
227 ubh_mark_buffer_dirty(USPI_UBH
);
230 va_start (args
, fmt
);
231 vsprintf (error_buf
, fmt
, args
);
233 /* this is to prevent panic from syncing this filesystem */
236 sb
->s_flags
|= MS_RDONLY
;
237 printk (KERN_CRIT
"UFS-fs panic (device %s): %s: %s\n",
238 kdevname(sb
->s_dev
), function
, error_buf
);
241 void ufs_warning (struct super_block
* sb
, const char * function
,
242 const char * fmt
, ...)
246 va_start (args
, fmt
);
247 vsprintf (error_buf
, fmt
, args
);
249 printk (KERN_WARNING
"UFS-fs warning (device %s): %s: %s\n",
250 kdevname(sb
->s_dev
), function
, error_buf
);
253 static int ufs_parse_options (char * options
, unsigned * mount_options
)
263 for (this_char
= strtok (options
, ",");
265 this_char
= strtok (NULL
, ",")) {
267 if ((value
= strchr (this_char
, '=')) != NULL
)
269 if (!strcmp (this_char
, "ufstype")) {
270 ufs_clear_opt (*mount_options
, UFSTYPE
);
271 if (!strcmp (value
, "old"))
272 ufs_set_opt (*mount_options
, UFSTYPE_OLD
);
273 else if (!strcmp (value
, "sun"))
274 ufs_set_opt (*mount_options
, UFSTYPE_SUN
);
275 else if (!strcmp (value
, "44bsd"))
276 ufs_set_opt (*mount_options
, UFSTYPE_44BSD
);
277 else if (!strcmp (value
, "nextstep"))
278 ufs_set_opt (*mount_options
, UFSTYPE_NEXTSTEP
);
279 else if (!strcmp (value
, "nextstep-cd"))
280 ufs_set_opt (*mount_options
, UFSTYPE_NEXTSTEP_CD
);
281 else if (!strcmp (value
, "openstep"))
282 ufs_set_opt (*mount_options
, UFSTYPE_OPENSTEP
);
283 else if (!strcmp (value
, "sunx86"))
284 ufs_set_opt (*mount_options
, UFSTYPE_SUNx86
);
285 else if (!strcmp (value
, "hp"))
286 ufs_set_opt (*mount_options
, UFSTYPE_HP
);
288 printk ("UFS-fs: Invalid type option: %s\n", value
);
292 else if (!strcmp (this_char
, "onerror")) {
293 ufs_clear_opt (*mount_options
, ONERROR
);
294 if (!strcmp (value
, "panic"))
295 ufs_set_opt (*mount_options
, ONERROR_PANIC
);
296 else if (!strcmp (value
, "lock"))
297 ufs_set_opt (*mount_options
, ONERROR_LOCK
);
298 else if (!strcmp (value
, "umount"))
299 ufs_set_opt (*mount_options
, ONERROR_UMOUNT
);
300 else if (!strcmp (value
, "repair")) {
301 printk("UFS-fs: Unable to do repair on error, "
302 "will lock lock instead \n");
303 ufs_set_opt (*mount_options
, ONERROR_REPAIR
);
306 printk ("UFS-fs: Invalid action onerror: %s\n", value
);
311 printk("UFS-fs: Invalid option: %s\n", this_char
);
319 * Read on-disk structures associated with cylinder groups
321 int ufs_read_cylinder_structures (struct super_block
* sb
) {
322 struct ufs_sb_private_info
* uspi
;
323 struct ufs_buffer_head
* ubh
;
324 unsigned char * base
, * space
;
325 unsigned size
, blks
, i
;
330 uspi
= sb
->u
.ufs_sb
.s_uspi
;
331 swab
= sb
->u
.ufs_sb
.s_swab
;
334 * Read cs structures from (usually) first data block
337 size
= uspi
->s_cssize
;
338 blks
= (size
+ uspi
->s_fsize
- 1) >> uspi
->s_fshift
;
339 base
= space
= kmalloc(size
, GFP_KERNEL
);
342 for (i
= 0; i
< blks
; i
+= uspi
->s_fpb
) {
343 size
= uspi
->s_bsize
;
344 if (i
+ uspi
->s_fpb
> blks
)
345 size
= (blks
- i
) * uspi
->s_fsize
;
346 ubh
= ubh_bread(sb
->s_dev
, uspi
->s_csaddr
+ i
, size
);
349 ubh_ubhcpymem (space
, ubh
, size
);
350 sb
->u
.ufs_sb
.s_csp
[ufs_fragstoblks(i
)] = (struct ufs_csum
*)space
;
357 * Read cylinder group (we read only first fragment from block
358 * at this time) and prepare internal data structures for cg caching.
360 if (!(sb
->u
.ufs_sb
.s_ucg
= kmalloc (sizeof(struct buffer_head
*) * uspi
->s_ncg
, GFP_KERNEL
)))
362 for (i
= 0; i
< uspi
->s_ncg
; i
++)
363 sb
->u
.ufs_sb
.s_ucg
[i
] = NULL
;
364 for (i
= 0; i
< UFS_MAX_GROUP_LOADED
; i
++) {
365 sb
->u
.ufs_sb
.s_ucpi
[i
] = NULL
;
366 sb
->u
.ufs_sb
.s_cgno
[i
] = UFS_CGNO_EMPTY
;
368 for (i
= 0; i
< uspi
->s_ncg
; i
++) {
369 UFSD(("read cg %u\n", i
))
370 if (!(sb
->u
.ufs_sb
.s_ucg
[i
] = bread (sb
->s_dev
, ufs_cgcmin(i
), sb
->s_blocksize
)))
372 if (!ufs_cg_chkmagic ((struct ufs_cylinder_group
*) sb
->u
.ufs_sb
.s_ucg
[i
]->b_data
))
374 #ifdef UFS_SUPER_DEBUG_MORE
375 ufs_print_cylinder_stuff((struct ufs_cylinder_group
*) sb
->u
.ufs_sb
.s_ucg
[i
]->b_data
, swab
);
378 for (i
= 0; i
< UFS_MAX_GROUP_LOADED
; i
++) {
379 if (!(sb
->u
.ufs_sb
.s_ucpi
[i
] = kmalloc (sizeof(struct ufs_cg_private_info
), GFP_KERNEL
)))
381 sb
->u
.ufs_sb
.s_cgno
[i
] = UFS_CGNO_EMPTY
;
383 sb
->u
.ufs_sb
.s_cg_loaded
= 0;
388 if (base
) kfree (base
);
389 if (sb
->u
.ufs_sb
.s_ucg
) {
390 for (i
= 0; i
< uspi
->s_ncg
; i
++)
391 if (sb
->u
.ufs_sb
.s_ucg
[i
]) brelse (sb
->u
.ufs_sb
.s_ucg
[i
]);
392 kfree (sb
->u
.ufs_sb
.s_ucg
);
393 for (i
= 0; i
< UFS_MAX_GROUP_LOADED
; i
++)
394 if (sb
->u
.ufs_sb
.s_ucpi
[i
]) kfree (sb
->u
.ufs_sb
.s_ucpi
[i
]);
396 UFSD(("EXIT (FAILED)\n"))
401 * Put on-disk structures associated with cylinder groups and
402 * write them back to disk
404 void ufs_put_cylinder_structures (struct super_block
* sb
) {
405 struct ufs_sb_private_info
* uspi
;
406 struct ufs_buffer_head
* ubh
;
407 unsigned char * base
, * space
;
408 unsigned blks
, size
, i
;
412 uspi
= sb
->u
.ufs_sb
.s_uspi
;
414 size
= uspi
->s_cssize
;
415 blks
= (size
+ uspi
->s_fsize
- 1) >> uspi
->s_fshift
;
416 base
= space
= (char*) sb
->u
.ufs_sb
.s_csp
[0];
417 for (i
= 0; i
< blks
; i
+= uspi
->s_fpb
) {
418 size
= uspi
->s_bsize
;
419 if (i
+ uspi
->s_fpb
> blks
)
420 size
= (blks
- i
) * uspi
->s_fsize
;
421 ubh
= ubh_bread (sb
->s_dev
, uspi
->s_csaddr
+ i
, size
);
422 ubh_memcpyubh (ubh
, space
, size
);
424 ubh_mark_buffer_uptodate (ubh
, 1);
425 ubh_mark_buffer_dirty (ubh
);
428 for (i
= 0; i
< sb
->u
.ufs_sb
.s_cg_loaded
; i
++) {
429 ufs_put_cylinder (sb
, i
);
430 kfree (sb
->u
.ufs_sb
.s_ucpi
[i
]);
432 for (; i
< UFS_MAX_GROUP_LOADED
; i
++)
433 kfree (sb
->u
.ufs_sb
.s_ucpi
[i
]);
434 for (i
= 0; i
< uspi
->s_ncg
; i
++)
435 brelse (sb
->u
.ufs_sb
.s_ucg
[i
]);
436 kfree (sb
->u
.ufs_sb
.s_ucg
);
441 struct super_block
* ufs_read_super (struct super_block
* sb
, void * data
,
444 struct ufs_sb_private_info
* uspi
;
445 struct ufs_super_block_first
* usb1
;
446 struct ufs_super_block_second
* usb2
;
447 struct ufs_super_block_third
* usb3
;
448 struct ufs_buffer_head
* ubh
;
449 unsigned block_size
, super_block_size
;
450 unsigned flags
, swab
;
459 UFSD(("flag %u\n", (int)(sb
->s_flags
& MS_RDONLY
)))
461 #ifndef CONFIG_UFS_FS_WRITE
462 if (!(sb
->s_flags
& MS_RDONLY
)) {
463 printk("ufs was compiled with read-only support, "
464 "can't be mounted as read-write\n");
469 * Set default mount options
470 * Parse mount options
472 sb
->u
.ufs_sb
.s_mount_opt
= 0;
473 ufs_set_opt (sb
->u
.ufs_sb
.s_mount_opt
, ONERROR_LOCK
);
474 if (!ufs_parse_options ((char *) data
, &sb
->u
.ufs_sb
.s_mount_opt
)) {
475 printk("wrong mount options\n");
478 if (!(sb
->u
.ufs_sb
.s_mount_opt
& UFS_MOUNT_UFSTYPE
)) {
479 printk("You didn't specify the type of your ufs filesystem\n\n"
480 "mount -t ufs -o ufstype="
481 "sun|sunx86|44bsd|old|hp|nextstep|netxstep-cd|openstep ...\n\n"
482 ">>>WARNING<<< Wrong ufstype may corrupt your filesystem, "
483 "default is ufstype=old\n");
484 ufs_set_opt (sb
->u
.ufs_sb
.s_mount_opt
, UFSTYPE_OLD
);
487 sb
->u
.ufs_sb
.s_uspi
= uspi
=
488 kmalloc (sizeof(struct ufs_sb_private_info
), GFP_KERNEL
);
492 switch (sb
->u
.ufs_sb
.s_mount_opt
& UFS_MOUNT_UFSTYPE
) {
493 case UFS_MOUNT_UFSTYPE_44BSD
:
494 UFSD(("ufstype=44bsd\n"))
495 uspi
->s_fsize
= block_size
= 512;
496 uspi
->s_fmask
= ~(512 - 1);
498 uspi
->s_sbsize
= super_block_size
= 1536;
500 flags
|= UFS_DE_44BSD
| UFS_UID_44BSD
| UFS_ST_44BSD
| UFS_CG_44BSD
;
503 case UFS_MOUNT_UFSTYPE_SUN
:
504 UFSD(("ufstype=sun\n"))
505 uspi
->s_fsize
= block_size
= 1024;
506 uspi
->s_fmask
= ~(1024 - 1);
508 uspi
->s_sbsize
= super_block_size
= 2048;
510 uspi
->s_maxsymlinklen
= 56;
511 flags
|= UFS_DE_OLD
| UFS_UID_EFT
| UFS_ST_SUN
| UFS_CG_SUN
;
514 case UFS_MOUNT_UFSTYPE_SUNx86
:
515 UFSD(("ufstype=sunx86\n"))
516 uspi
->s_fsize
= block_size
= 1024;
517 uspi
->s_fmask
= ~(1024 - 1);
519 uspi
->s_sbsize
= super_block_size
= 2048;
521 uspi
->s_maxsymlinklen
= 56;
522 flags
|= UFS_DE_OLD
| UFS_UID_EFT
| UFS_ST_SUNx86
| UFS_CG_SUN
;
525 case UFS_MOUNT_UFSTYPE_OLD
:
526 UFSD(("ufstype=old\n"))
527 uspi
->s_fsize
= block_size
= 1024;
528 uspi
->s_fmask
= ~(1024 - 1);
530 uspi
->s_sbsize
= super_block_size
= 2048;
532 flags
|= UFS_DE_OLD
| UFS_UID_OLD
| UFS_ST_OLD
| UFS_CG_OLD
;
533 if (!(sb
->s_flags
& MS_RDONLY
)) {
534 printk(KERN_INFO
"ufstype=old is supported read-only\n");
535 sb
->s_flags
|= MS_RDONLY
;
539 case UFS_MOUNT_UFSTYPE_NEXTSTEP
:
540 UFSD(("ufstype=nextstep\n"))
541 uspi
->s_fsize
= block_size
= 1024;
542 uspi
->s_fmask
= ~(1024 - 1);
544 uspi
->s_sbsize
= super_block_size
= 2048;
546 flags
|= UFS_DE_OLD
| UFS_UID_OLD
| UFS_ST_OLD
| UFS_CG_OLD
;
547 if (!(sb
->s_flags
& MS_RDONLY
)) {
548 printk(KERN_INFO
"ufstype=nextstep is supported read-only\n");
549 sb
->s_flags
|= MS_RDONLY
;
553 case UFS_MOUNT_UFSTYPE_NEXTSTEP_CD
:
554 UFSD(("ufstype=nextstep-cd\n"))
555 uspi
->s_fsize
= block_size
= 2048;
556 uspi
->s_fmask
= ~(2048 - 1);
558 uspi
->s_sbsize
= super_block_size
= 2048;
560 flags
|= UFS_DE_OLD
| UFS_UID_OLD
| UFS_ST_OLD
| UFS_CG_OLD
;
561 if (!(sb
->s_flags
& MS_RDONLY
)) {
562 printk(KERN_INFO
"ufstype=nextstep-cd is supported read-only\n");
563 sb
->s_flags
|= MS_RDONLY
;
567 case UFS_MOUNT_UFSTYPE_OPENSTEP
:
568 UFSD(("ufstype=openstep\n"))
569 uspi
->s_fsize
= block_size
= 1024;
570 uspi
->s_fmask
= ~(1024 - 1);
572 uspi
->s_sbsize
= super_block_size
= 2048;
574 flags
|= UFS_DE_44BSD
| UFS_UID_44BSD
| UFS_ST_44BSD
| UFS_CG_44BSD
;
575 if (!(sb
->s_flags
& MS_RDONLY
)) {
576 printk(KERN_INFO
"ufstype=openstep is supported read-only\n");
577 sb
->s_flags
|= MS_RDONLY
;
581 case UFS_MOUNT_UFSTYPE_HP
:
582 UFSD(("ufstype=hp\n"))
583 uspi
->s_fsize
= block_size
= 1024;
584 uspi
->s_fmask
= ~(1024 - 1);
586 uspi
->s_sbsize
= super_block_size
= 2048;
588 flags
|= UFS_DE_OLD
| UFS_UID_OLD
| UFS_ST_OLD
| UFS_CG_OLD
;
589 if (!(sb
->s_flags
& MS_RDONLY
)) {
590 printk(KERN_INFO
"ufstype=hp is supported read-only\n");
591 sb
->s_flags
|= MS_RDONLY
;
595 printk("unknown ufstype\n");
600 set_blocksize (sb
->s_dev
, block_size
);
603 * read ufs super block from device
605 ubh
= ubh_bread_uspi (uspi
, sb
->s_dev
, uspi
->s_sbbase
+ UFS_SBLOCK
/block_size
, super_block_size
);
609 usb1
= ubh_get_usb_first(USPI_UBH
);
610 usb2
= ubh_get_usb_second(USPI_UBH
);
611 usb3
= ubh_get_usb_third(USPI_UBH
);
614 * Check ufs magic number
616 #if defined(__LITTLE_ENDIAN) || defined(__BIG_ENDIAN) /* sane bytesex */
617 switch (usb3
->fs_magic
) {
622 swab
= UFS_NATIVE_ENDIAN
;
628 swab
= UFS_SWABBED_ENDIAN
;
631 #else /* bytesex perversion */
632 switch (le32_to_cpup(&usb3
->fs_magic
)) {
637 swab
= UFS_LITTLE_ENDIAN
;
643 swab
= UFS_BIG_ENDIAN
;
648 if ((((sb
->u
.ufs_sb
.s_mount_opt
& UFS_MOUNT_UFSTYPE
) == UFS_MOUNT_UFSTYPE_NEXTSTEP
)
649 || ((sb
->u
.ufs_sb
.s_mount_opt
& UFS_MOUNT_UFSTYPE
) == UFS_MOUNT_UFSTYPE_NEXTSTEP_CD
)
650 || ((sb
->u
.ufs_sb
.s_mount_opt
& UFS_MOUNT_UFSTYPE
) == UFS_MOUNT_UFSTYPE_OPENSTEP
))
651 && uspi
->s_sbbase
< 256) {
652 ubh_brelse_uspi(uspi
);
657 printk("ufs_read_super: bad magic number\n");
662 * Check block and fragment sizes
664 uspi
->s_bsize
= SWAB32(usb1
->fs_bsize
);
665 uspi
->s_fsize
= SWAB32(usb1
->fs_fsize
);
666 uspi
->s_sbsize
= SWAB32(usb1
->fs_sbsize
);
667 uspi
->s_fmask
= SWAB32(usb1
->fs_fmask
);
668 uspi
->s_fshift
= SWAB32(usb1
->fs_fshift
);
670 if (uspi
->s_bsize
!= 4096 && uspi
->s_bsize
!= 8192
671 && uspi
->s_bsize
!= 32768) {
672 printk("ufs_read_super: fs_bsize %u != {4096, 8192, 32768}\n", uspi
->s_bsize
);
675 if (uspi
->s_fsize
!= 512 && uspi
->s_fsize
!= 1024
676 && uspi
->s_fsize
!= 2048 && uspi
->s_fsize
!= 4096) {
677 printk("ufs_read_super: fs_fsize %u != {512, 1024, 2048. 4096}\n", uspi
->s_fsize
);
680 if (uspi
->s_fsize
!= block_size
|| uspi
->s_sbsize
!= super_block_size
) {
681 ubh_brelse_uspi(uspi
);
683 block_size
= uspi
->s_fsize
;
684 super_block_size
= uspi
->s_sbsize
;
685 UFSD(("another value of block_size or super_block_size %u, %u\n", block_size
, super_block_size
))
689 #ifdef UFS_SUPER_DEBUG_MORE
690 ufs_print_super_stuff (usb1
, usb2
, usb3
, swab
);
694 * Check, if file system was correctly unmounted.
695 * If not, make it read only.
697 if (((flags
& UFS_ST_MASK
) == UFS_ST_44BSD
) ||
698 ((flags
& UFS_ST_MASK
) == UFS_ST_OLD
) ||
699 (((flags
& UFS_ST_MASK
) == UFS_ST_SUN
||
700 (flags
& UFS_ST_MASK
) == UFS_ST_SUNx86
) &&
701 (ufs_get_fs_state(usb1
, usb3
) == (UFS_FSOK
- SWAB32(usb1
->fs_time
))))) {
702 switch(usb1
->fs_clean
) {
704 UFSD(("fs is clean\n"))
707 UFSD(("fs is stable\n"))
710 UFSD(("fs is DEC OSF/1\n"))
713 printk("ufs_read_super: fs is active\n");
714 sb
->s_flags
|= MS_RDONLY
;
717 printk("ufs_read_super: fs is bad\n");
718 sb
->s_flags
|= MS_RDONLY
;
721 printk("ufs_read_super: can't grok fs_clean 0x%x\n", usb1
->fs_clean
);
722 sb
->s_flags
|= MS_RDONLY
;
727 printk("ufs_read_super: fs needs fsck\n");
728 sb
->s_flags
|= MS_RDONLY
;
732 * Read ufs_super_block into internal data structures
734 sb
->s_blocksize
= SWAB32(usb1
->fs_fsize
);
735 sb
->s_blocksize_bits
= SWAB32(usb1
->fs_fshift
);
736 sb
->s_op
= &ufs_super_ops
;
737 sb
->dq_op
= NULL
; /***/
738 sb
->s_magic
= SWAB32(usb3
->fs_magic
);
740 uspi
->s_sblkno
= SWAB32(usb1
->fs_sblkno
);
741 uspi
->s_cblkno
= SWAB32(usb1
->fs_cblkno
);
742 uspi
->s_iblkno
= SWAB32(usb1
->fs_iblkno
);
743 uspi
->s_dblkno
= SWAB32(usb1
->fs_dblkno
);
744 uspi
->s_cgoffset
= SWAB32(usb1
->fs_cgoffset
);
745 uspi
->s_cgmask
= SWAB32(usb1
->fs_cgmask
);
746 uspi
->s_size
= SWAB32(usb1
->fs_size
);
747 uspi
->s_dsize
= SWAB32(usb1
->fs_dsize
);
748 uspi
->s_ncg
= SWAB32(usb1
->fs_ncg
);
749 /* s_bsize already set */
750 /* s_fsize already set */
751 uspi
->s_fpb
= SWAB32(usb1
->fs_frag
);
752 uspi
->s_minfree
= SWAB32(usb1
->fs_minfree
);
753 uspi
->s_bmask
= SWAB32(usb1
->fs_bmask
);
754 uspi
->s_fmask
= SWAB32(usb1
->fs_fmask
);
755 uspi
->s_bshift
= SWAB32(usb1
->fs_bshift
);
756 uspi
->s_fshift
= SWAB32(usb1
->fs_fshift
);
757 uspi
->s_fpbshift
= SWAB32(usb1
->fs_fragshift
);
758 uspi
->s_fsbtodb
= SWAB32(usb1
->fs_fsbtodb
);
759 /* s_sbsize already set */
760 uspi
->s_csmask
= SWAB32(usb1
->fs_csmask
);
761 uspi
->s_csshift
= SWAB32(usb1
->fs_csshift
);
762 uspi
->s_nindir
= SWAB32(usb1
->fs_nindir
);
763 uspi
->s_inopb
= SWAB32(usb1
->fs_inopb
);
764 uspi
->s_nspf
= SWAB32(usb1
->fs_nspf
);
765 uspi
->s_npsect
= ufs_get_fs_npsect(usb1
, usb3
);
766 uspi
->s_interleave
= SWAB32(usb1
->fs_interleave
);
767 uspi
->s_trackskew
= SWAB32(usb1
->fs_trackskew
);
768 uspi
->s_csaddr
= SWAB32(usb1
->fs_csaddr
);
769 uspi
->s_cssize
= SWAB32(usb1
->fs_cssize
);
770 uspi
->s_cgsize
= SWAB32(usb1
->fs_cgsize
);
771 uspi
->s_ntrak
= SWAB32(usb1
->fs_ntrak
);
772 uspi
->s_nsect
= SWAB32(usb1
->fs_nsect
);
773 uspi
->s_spc
= SWAB32(usb1
->fs_spc
);
774 uspi
->s_ipg
= SWAB32(usb1
->fs_ipg
);
775 uspi
->s_fpg
= SWAB32(usb1
->fs_fpg
);
776 uspi
->s_cpc
= SWAB32(usb2
->fs_cpc
);
777 uspi
->s_contigsumsize
= SWAB32(usb3
->fs_u2
.fs_44
.fs_contigsumsize
);
778 uspi
->s_qbmask
= ufs_get_fs_qbmask(usb3
);
779 uspi
->s_qfmask
= ufs_get_fs_qfmask(usb3
);
780 uspi
->s_postblformat
= SWAB32(usb3
->fs_postblformat
);
781 uspi
->s_nrpos
= SWAB32(usb3
->fs_nrpos
);
782 uspi
->s_postbloff
= SWAB32(usb3
->fs_postbloff
);
783 uspi
->s_rotbloff
= SWAB32(usb3
->fs_rotbloff
);
786 * Compute another frequently used values
788 uspi
->s_fpbmask
= uspi
->s_fpb
- 1;
789 uspi
->s_apbshift
= uspi
->s_bshift
- 2;
790 uspi
->s_2apbshift
= uspi
->s_apbshift
* 2;
791 uspi
->s_3apbshift
= uspi
->s_apbshift
* 3;
792 uspi
->s_apb
= 1 << uspi
->s_apbshift
;
793 uspi
->s_2apb
= 1 << uspi
->s_2apbshift
;
794 uspi
->s_3apb
= 1 << uspi
->s_3apbshift
;
795 uspi
->s_apbmask
= uspi
->s_apb
- 1;
796 uspi
->s_nspfshift
= uspi
->s_fshift
- UFS_SECTOR_BITS
;
797 uspi
->s_nspb
= uspi
->s_nspf
<< uspi
->s_fpbshift
;
798 uspi
->s_inopf
= uspi
->s_inopb
>> uspi
->s_fpbshift
;
799 uspi
->s_bpf
= uspi
->s_fsize
<< 3;
800 uspi
->s_bpfshift
= uspi
->s_fshift
+ 3;
801 uspi
->s_bpfmask
= uspi
->s_bpf
- 1;
802 if ((sb
->u
.ufs_sb
.s_mount_opt
& UFS_MOUNT_UFSTYPE
) ==
803 UFS_MOUNT_UFSTYPE_44BSD
)
804 uspi
->s_maxsymlinklen
=
805 SWAB32(usb3
->fs_u2
.fs_44
.fs_maxsymlinklen
);
807 sb
->u
.ufs_sb
.s_flags
= flags
;
808 sb
->u
.ufs_sb
.s_swab
= swab
;
810 sb
->s_root
= d_alloc_root(iget(sb
, UFS_ROOTINO
));
814 * Read cylinder group structures
816 if (!(sb
->s_flags
& MS_RDONLY
))
817 if (!ufs_read_cylinder_structures(sb
))
824 if (ubh
) ubh_brelse_uspi (uspi
);
825 if (uspi
) kfree (uspi
);
826 UFSD(("EXIT (FAILED)\n"))
830 void ufs_write_super (struct super_block
* sb
) {
831 struct ufs_sb_private_info
* uspi
;
832 struct ufs_super_block_first
* usb1
;
833 struct ufs_super_block_third
* usb3
;
834 unsigned flags
, swab
;
837 swab
= sb
->u
.ufs_sb
.s_swab
;
838 flags
= sb
->u
.ufs_sb
.s_flags
;
839 uspi
= sb
->u
.ufs_sb
.s_uspi
;
840 usb1
= ubh_get_usb_first(USPI_UBH
);
841 usb3
= ubh_get_usb_third(USPI_UBH
);
843 if (!(sb
->s_flags
& MS_RDONLY
)) {
844 usb1
->fs_time
= SWAB32(CURRENT_TIME
);
845 if ((flags
& UFS_ST_MASK
) == UFS_ST_SUN
846 || (flags
& UFS_ST_MASK
) == UFS_ST_SUNx86
)
847 ufs_set_fs_state(usb1
, usb3
, UFS_FSOK
- SWAB32(usb1
->fs_time
));
848 ubh_mark_buffer_dirty (USPI_UBH
);
854 void ufs_put_super (struct super_block
* sb
)
856 struct ufs_sb_private_info
* uspi
;
861 uspi
= sb
->u
.ufs_sb
.s_uspi
;
862 swab
= sb
->u
.ufs_sb
.s_swab
;
864 if (!(sb
->s_flags
& MS_RDONLY
))
865 ufs_put_cylinder_structures (sb
);
867 ubh_brelse_uspi (uspi
);
868 kfree (sb
->u
.ufs_sb
.s_uspi
);
873 int ufs_remount (struct super_block
* sb
, int * mount_flags
, char * data
)
875 struct ufs_sb_private_info
* uspi
;
876 struct ufs_super_block_first
* usb1
;
877 struct ufs_super_block_third
* usb3
;
878 unsigned new_mount_opt
, ufstype
;
879 unsigned flags
, swab
;
881 uspi
= sb
->u
.ufs_sb
.s_uspi
;
882 flags
= sb
->u
.ufs_sb
.s_flags
;
883 swab
= sb
->u
.ufs_sb
.s_swab
;
884 usb1
= ubh_get_usb_first(USPI_UBH
);
885 usb3
= ubh_get_usb_third(USPI_UBH
);
888 * Allow the "check" option to be passed as a remount option.
889 * It is not possible to change ufstype option during remount
891 ufstype
= sb
->u
.ufs_sb
.s_mount_opt
& UFS_MOUNT_UFSTYPE
;
893 ufs_set_opt (new_mount_opt
, ONERROR_LOCK
);
894 if (!ufs_parse_options (data
, &new_mount_opt
))
896 if (!(new_mount_opt
& UFS_MOUNT_UFSTYPE
)) {
897 new_mount_opt
|= ufstype
;
899 else if ((new_mount_opt
& UFS_MOUNT_UFSTYPE
) != ufstype
) {
900 printk("ufstype can't be changed during remount\n");
904 if ((*mount_flags
& MS_RDONLY
) == (sb
->s_flags
& MS_RDONLY
)) {
905 sb
->u
.ufs_sb
.s_mount_opt
= new_mount_opt
;
910 * fs was mouted as rw, remounting ro
912 if (*mount_flags
& MS_RDONLY
) {
913 ufs_put_cylinder_structures(sb
);
914 usb1
->fs_time
= SWAB32(CURRENT_TIME
);
915 if ((flags
& UFS_ST_MASK
) == UFS_ST_SUN
916 || (flags
& UFS_ST_MASK
) == UFS_ST_SUNx86
)
917 ufs_set_fs_state(usb1
, usb3
, UFS_FSOK
- SWAB32(usb1
->fs_time
));
918 ubh_mark_buffer_dirty (USPI_UBH
);
920 sb
->s_flags
|= MS_RDONLY
;
923 * fs was mounted as ro, remounting rw
926 #ifndef CONFIG_UFS_FS_WRITE
927 printk("ufs was compiled with read-only support, "
928 "can't be mounted as read-write\n");
931 if (ufstype
!= UFS_MOUNT_UFSTYPE_SUN
&&
932 ufstype
!= UFS_MOUNT_UFSTYPE_44BSD
&&
933 ufstype
!= UFS_MOUNT_UFSTYPE_SUNx86
) {
934 printk("this ufstype is read-only supported\n");
937 if (!ufs_read_cylinder_structures (sb
)) {
938 printk("failed during remounting\n");
941 sb
->s_flags
&= ~MS_RDONLY
;
944 sb
->u
.ufs_sb
.s_mount_opt
= new_mount_opt
;
948 int ufs_statfs (struct super_block
* sb
, struct statfs
* buf
)
950 struct ufs_sb_private_info
* uspi
;
951 struct ufs_super_block_first
* usb1
;
954 swab
= sb
->u
.ufs_sb
.s_swab
;
955 uspi
= sb
->u
.ufs_sb
.s_uspi
;
956 usb1
= ubh_get_usb_first (USPI_UBH
);
958 buf
->f_type
= UFS_MAGIC
;
959 buf
->f_bsize
= sb
->s_blocksize
;
960 buf
->f_blocks
= uspi
->s_dsize
;
961 buf
->f_bfree
= ufs_blkstofrags(SWAB32(usb1
->fs_cstotal
.cs_nbfree
)) +
962 SWAB32(usb1
->fs_cstotal
.cs_nffree
);
963 buf
->f_bavail
= (buf
->f_bfree
> ((buf
->f_blocks
/ 100) * uspi
->s_minfree
))
964 ? (buf
->f_bfree
- ((buf
->f_blocks
/ 100) * uspi
->s_minfree
)) : 0;
965 buf
->f_files
= uspi
->s_ncg
* uspi
->s_ipg
;
966 buf
->f_ffree
= SWAB32(usb1
->fs_cstotal
.cs_nifree
);
967 buf
->f_namelen
= UFS_MAXNAMLEN
;
971 static struct super_operations ufs_super_ops
= {
972 read_inode
: ufs_read_inode
,
973 write_inode
: ufs_write_inode
,
974 delete_inode
: ufs_delete_inode
,
975 put_super
: ufs_put_super
,
976 write_super
: ufs_write_super
,
978 remount_fs
: ufs_remount
,
981 static DECLARE_FSTYPE_DEV(ufs_fs_type
, "ufs", ufs_read_super
);
983 static int __init
init_ufs_fs(void)
985 return register_filesystem(&ufs_fs_type
);
988 static void __exit
exit_ufs_fs(void)
990 unregister_filesystem(&ufs_fs_type
);
995 module_init(init_ufs_fs
)
996 module_exit(exit_ufs_fs
)