1 /* SPDX-License-Identifier: GPL-2.0 */
7 * Charles University, Faculty of Mathematics and Physics
10 #include <linux/buffer_head.h>
15 * functions used for retyping
17 static inline struct ufs_buffer_head *UCPI_UBH(struct ufs_cg_private_info *cpi)
21 static inline struct ufs_buffer_head *USPI_UBH(struct ufs_sb_private_info *spi)
29 * macros used for accessing structures
32 ufs_get_fs_state(struct super_block *sb, struct ufs_super_block_first *usb1,
33 struct ufs_super_block_third *usb3)
35 switch (UFS_SB(sb)->s_flags & UFS_ST_MASK) {
37 if (fs32_to_cpu(sb, usb3->fs_postblformat) == UFS_42POSTBLFMT)
38 return fs32_to_cpu(sb, usb1->fs_u0.fs_sun.fs_state);
39 fallthrough; /* to UFS_ST_SUN */
41 return fs32_to_cpu(sb, usb3->fs_un2.fs_sun.fs_state);
43 return fs32_to_cpu(sb, usb1->fs_u1.fs_sunx86.fs_state);
46 return fs32_to_cpu(sb, usb3->fs_un2.fs_44.fs_state);
51 ufs_set_fs_state(struct super_block *sb, struct ufs_super_block_first *usb1,
52 struct ufs_super_block_third *usb3, s32 value)
54 switch (UFS_SB(sb)->s_flags & UFS_ST_MASK) {
56 if (fs32_to_cpu(sb, usb3->fs_postblformat) == UFS_42POSTBLFMT) {
57 usb1->fs_u0.fs_sun.fs_state = cpu_to_fs32(sb, value);
60 fallthrough; /* to UFS_ST_SUN */
62 usb3->fs_un2.fs_sun.fs_state = cpu_to_fs32(sb, value);
65 usb1->fs_u1.fs_sunx86.fs_state = cpu_to_fs32(sb, value);
68 usb3->fs_un2.fs_44.fs_state = cpu_to_fs32(sb, value);
74 ufs_get_fs_npsect(struct super_block *sb, struct ufs_super_block_first *usb1,
75 struct ufs_super_block_third *usb3)
77 if ((UFS_SB(sb)->s_flags & UFS_ST_MASK) == UFS_ST_SUNx86)
78 return fs32_to_cpu(sb, usb3->fs_un2.fs_sunx86.fs_npsect);
80 return fs32_to_cpu(sb, usb1->fs_u1.fs_sun.fs_npsect);
84 ufs_get_fs_qbmask(struct super_block *sb, struct ufs_super_block_third *usb3)
88 switch (UFS_SB(sb)->s_flags & UFS_ST_MASK) {
91 ((__fs32 *)&tmp)[0] = usb3->fs_un2.fs_sun.fs_qbmask[0];
92 ((__fs32 *)&tmp)[1] = usb3->fs_un2.fs_sun.fs_qbmask[1];
95 ((__fs32 *)&tmp)[0] = usb3->fs_un2.fs_sunx86.fs_qbmask[0];
96 ((__fs32 *)&tmp)[1] = usb3->fs_un2.fs_sunx86.fs_qbmask[1];
99 ((__fs32 *)&tmp)[0] = usb3->fs_un2.fs_44.fs_qbmask[0];
100 ((__fs32 *)&tmp)[1] = usb3->fs_un2.fs_44.fs_qbmask[1];
104 return fs64_to_cpu(sb, tmp);
108 ufs_get_fs_qfmask(struct super_block *sb, struct ufs_super_block_third *usb3)
112 switch (UFS_SB(sb)->s_flags & UFS_ST_MASK) {
115 ((__fs32 *)&tmp)[0] = usb3->fs_un2.fs_sun.fs_qfmask[0];
116 ((__fs32 *)&tmp)[1] = usb3->fs_un2.fs_sun.fs_qfmask[1];
119 ((__fs32 *)&tmp)[0] = usb3->fs_un2.fs_sunx86.fs_qfmask[0];
120 ((__fs32 *)&tmp)[1] = usb3->fs_un2.fs_sunx86.fs_qfmask[1];
123 ((__fs32 *)&tmp)[0] = usb3->fs_un2.fs_44.fs_qfmask[0];
124 ((__fs32 *)&tmp)[1] = usb3->fs_un2.fs_44.fs_qfmask[1];
128 return fs64_to_cpu(sb, tmp);
132 ufs_get_de_namlen(struct super_block *sb, struct ufs_dir_entry *de)
134 if ((UFS_SB(sb)->s_flags & UFS_DE_MASK) == UFS_DE_OLD)
135 return fs16_to_cpu(sb, de->d_u.d_namlen);
137 return de->d_u.d_44.d_namlen; /* XXX this seems wrong */
141 ufs_set_de_namlen(struct super_block *sb, struct ufs_dir_entry *de, u16 value)
143 if ((UFS_SB(sb)->s_flags & UFS_DE_MASK) == UFS_DE_OLD)
144 de->d_u.d_namlen = cpu_to_fs16(sb, value);
146 de->d_u.d_44.d_namlen = value; /* XXX this seems wrong */
150 ufs_set_de_type(struct super_block *sb, struct ufs_dir_entry *de, int mode)
152 if ((UFS_SB(sb)->s_flags & UFS_DE_MASK) != UFS_DE_44BSD)
156 * TODO turn this into a table lookup
158 switch (mode & S_IFMT) {
160 de->d_u.d_44.d_type = DT_SOCK;
163 de->d_u.d_44.d_type = DT_LNK;
166 de->d_u.d_44.d_type = DT_REG;
169 de->d_u.d_44.d_type = DT_BLK;
172 de->d_u.d_44.d_type = DT_DIR;
175 de->d_u.d_44.d_type = DT_CHR;
178 de->d_u.d_44.d_type = DT_FIFO;
181 de->d_u.d_44.d_type = DT_UNKNOWN;
186 ufs_get_inode_uid(struct super_block *sb, struct ufs_inode *inode)
188 switch (UFS_SB(sb)->s_flags & UFS_UID_MASK) {
190 return fs32_to_cpu(sb, inode->ui_u3.ui_44.ui_uid);
192 if (inode->ui_u1.oldids.ui_suid == 0xFFFF)
193 return fs32_to_cpu(sb, inode->ui_u3.ui_sun.ui_uid);
196 return fs16_to_cpu(sb, inode->ui_u1.oldids.ui_suid);
201 ufs_set_inode_uid(struct super_block *sb, struct ufs_inode *inode, u32 value)
203 switch (UFS_SB(sb)->s_flags & UFS_UID_MASK) {
205 inode->ui_u3.ui_44.ui_uid = cpu_to_fs32(sb, value);
206 inode->ui_u1.oldids.ui_suid = cpu_to_fs16(sb, value);
209 inode->ui_u3.ui_sun.ui_uid = cpu_to_fs32(sb, value);
214 inode->ui_u1.oldids.ui_suid = cpu_to_fs16(sb, value);
220 ufs_get_inode_gid(struct super_block *sb, struct ufs_inode *inode)
222 switch (UFS_SB(sb)->s_flags & UFS_UID_MASK) {
224 return fs32_to_cpu(sb, inode->ui_u3.ui_44.ui_gid);
226 if (inode->ui_u1.oldids.ui_sgid == 0xFFFF)
227 return fs32_to_cpu(sb, inode->ui_u3.ui_sun.ui_gid);
230 return fs16_to_cpu(sb, inode->ui_u1.oldids.ui_sgid);
235 ufs_set_inode_gid(struct super_block *sb, struct ufs_inode *inode, u32 value)
237 switch (UFS_SB(sb)->s_flags & UFS_UID_MASK) {
239 inode->ui_u3.ui_44.ui_gid = cpu_to_fs32(sb, value);
240 inode->ui_u1.oldids.ui_sgid = cpu_to_fs16(sb, value);
243 inode->ui_u3.ui_sun.ui_gid = cpu_to_fs32(sb, value);
248 inode->ui_u1.oldids.ui_sgid = cpu_to_fs16(sb, value);
253 extern dev_t ufs_get_inode_dev(struct super_block *, struct ufs_inode_info *);
254 extern void ufs_set_inode_dev(struct super_block *, struct ufs_inode_info *, dev_t);
255 extern int ufs_prepare_chunk(struct page *page, loff_t pos, unsigned len);
258 * These functions manipulate ufs buffers
260 #define ubh_bread(sb,fragment,size) _ubh_bread_(uspi,sb,fragment,size)
261 extern struct ufs_buffer_head * _ubh_bread_(struct ufs_sb_private_info *, struct super_block *, u64 , u64);
262 extern struct ufs_buffer_head * ubh_bread_uspi(struct ufs_sb_private_info *, struct super_block *, u64, u64);
263 extern void ubh_brelse (struct ufs_buffer_head *);
264 extern void ubh_brelse_uspi (struct ufs_sb_private_info *);
265 extern void ubh_mark_buffer_dirty (struct ufs_buffer_head *);
266 extern void ubh_mark_buffer_uptodate (struct ufs_buffer_head *, int);
267 extern void ubh_sync_block(struct ufs_buffer_head *);
268 extern void ubh_bforget (struct ufs_buffer_head *);
269 extern int ubh_buffer_dirty (struct ufs_buffer_head *);
270 #define ubh_ubhcpymem(mem,ubh,size) _ubh_ubhcpymem_(uspi,mem,ubh,size)
271 extern void _ubh_ubhcpymem_(struct ufs_sb_private_info *, unsigned char *, struct ufs_buffer_head *, unsigned);
272 #define ubh_memcpyubh(ubh,mem,size) _ubh_memcpyubh_(uspi,ubh,mem,size)
273 extern void _ubh_memcpyubh_(struct ufs_sb_private_info *, struct ufs_buffer_head *, unsigned char *, unsigned);
275 /* This functions works with cache pages*/
276 struct folio *ufs_get_locked_folio(struct address_space *mapping, pgoff_t index);
277 static inline void ufs_put_locked_folio(struct folio *folio)
284 * macros and inline function to get important structures from ufs_sb_private_info
287 static inline void *get_usb_offset(struct ufs_sb_private_info *uspi,
292 index = offset >> uspi->s_fshift;
293 offset &= ~uspi->s_fmask;
294 return uspi->s_ubh.bh[index]->b_data + offset;
297 #define ubh_get_usb_first(uspi) \
298 ((struct ufs_super_block_first *)get_usb_offset((uspi), 0))
300 #define ubh_get_usb_second(uspi) \
301 ((struct ufs_super_block_second *)get_usb_offset((uspi), UFS_SECTOR_SIZE))
303 #define ubh_get_usb_third(uspi) \
304 ((struct ufs_super_block_third *)get_usb_offset((uspi), 2*UFS_SECTOR_SIZE))
307 #define ubh_get_ucg(ubh) \
308 ((struct ufs_cylinder_group *)((ubh)->bh[0]->b_data))
312 * Extract byte from ufs_buffer_head
313 * Extract the bits for a block from a map inside ufs_buffer_head
315 #define ubh_get_addr8(ubh,begin) \
316 ((u8*)(ubh)->bh[(begin) >> uspi->s_fshift]->b_data + \
317 ((begin) & ~uspi->s_fmask))
319 #define ubh_get_addr16(ubh,begin) \
320 (((__fs16*)((ubh)->bh[(begin) >> (uspi->s_fshift-1)]->b_data)) + \
321 ((begin) & ((uspi->fsize>>1) - 1)))
323 #define ubh_get_addr32(ubh,begin) \
324 (((__fs32*)((ubh)->bh[(begin) >> (uspi->s_fshift-2)]->b_data)) + \
325 ((begin) & ((uspi->s_fsize>>2) - 1)))
327 #define ubh_get_addr64(ubh,begin) \
328 (((__fs64*)((ubh)->bh[(begin) >> (uspi->s_fshift-3)]->b_data)) + \
329 ((begin) & ((uspi->s_fsize>>3) - 1)))
331 #define ubh_get_addr ubh_get_addr8
333 static inline void *ubh_get_data_ptr(struct ufs_sb_private_info *uspi,
334 struct ufs_buffer_head *ubh,
337 if (uspi->fs_magic == UFS2_MAGIC)
338 return ubh_get_addr64(ubh, blk);
340 return ubh_get_addr32(ubh, blk);
343 #define ubh_blkmap(ubh,begin,bit) \
344 ((*ubh_get_addr(ubh, (begin) + ((bit) >> 3)) >> ((bit) & 7)) & (0xff >> (UFS_MAXFRAG - uspi->s_fpb)))
347 ufs_freefrags(struct ufs_sb_private_info *uspi)
349 return ufs_blkstofrags(uspi->cs_total.cs_nbfree) +
350 uspi->cs_total.cs_nffree;
354 * Macros to access cylinder group array structures
356 #define ubh_cg_blktot(ucpi,cylno) \
357 (*((__fs32*)ubh_get_addr(UCPI_UBH(ucpi), (ucpi)->c_btotoff + ((cylno) << 2))))
359 #define ubh_cg_blks(ucpi,cylno,rpos) \
360 (*((__fs16*)ubh_get_addr(UCPI_UBH(ucpi), \
361 (ucpi)->c_boff + (((cylno) * uspi->s_nrpos + (rpos)) << 1 ))))
365 * These functions work like classical bitmap operations.
366 * The difference is that we don't have the whole bitmap
367 * in one contiguous chunk of memory, but in several buffers.
368 * The parameters of each function are super_block, ufs_buffer_head and
369 * position of the beginning of the bitmap.
371 #define ubh_setbit(ubh,begin,bit) \
372 (*ubh_get_addr(ubh, (begin) + ((bit) >> 3)) |= (1 << ((bit) & 7)))
374 #define ubh_clrbit(ubh,begin,bit) \
375 (*ubh_get_addr (ubh, (begin) + ((bit) >> 3)) &= ~(1 << ((bit) & 7)))
377 #define ubh_isset(ubh,begin,bit) \
378 (*ubh_get_addr (ubh, (begin) + ((bit) >> 3)) & (1 << ((bit) & 7)))
380 #define ubh_isclr(ubh,begin,bit) (!ubh_isset(ubh,begin,bit))
382 #define ubh_find_first_zero_bit(ubh,begin,size) _ubh_find_next_zero_bit_(uspi,ubh,begin,size,0)
384 #define ubh_find_next_zero_bit(ubh,begin,size,offset) _ubh_find_next_zero_bit_(uspi,ubh,begin,size,offset)
385 static inline unsigned _ubh_find_next_zero_bit_(
386 struct ufs_sb_private_info * uspi, struct ufs_buffer_head * ubh,
387 unsigned begin, unsigned size, unsigned offset)
389 unsigned base, count, pos;
394 base = offset >> uspi->s_bpfshift;
395 offset &= uspi->s_bpfmask;
397 count = min_t(unsigned int, size + offset, uspi->s_bpf);
398 size -= count - offset;
399 pos = find_next_zero_bit_le(ubh->bh[base]->b_data, count, offset);
400 if (pos < count || !size)
405 return (base << uspi->s_bpfshift) + pos - begin;
408 static inline unsigned find_last_zero_bit (unsigned char * bitmap,
409 unsigned size, unsigned offset)
412 unsigned char * mapp;
415 mapp = bitmap + (size >> 3);
417 bit = 1 << (size & 7);
418 for (i = size; i > offset; i--) {
419 if ((map & bit) == 0)
431 #define ubh_find_last_zero_bit(ubh,begin,size,offset) _ubh_find_last_zero_bit_(uspi,ubh,begin,size,offset)
432 static inline unsigned _ubh_find_last_zero_bit_(
433 struct ufs_sb_private_info * uspi, struct ufs_buffer_head * ubh,
434 unsigned begin, unsigned start, unsigned end)
436 unsigned base, count, pos, size;
441 base = start >> uspi->s_bpfshift;
442 start &= uspi->s_bpfmask;
444 count = min_t(unsigned int,
445 size + (uspi->s_bpf - start), uspi->s_bpf)
446 - (uspi->s_bpf - start);
448 pos = find_last_zero_bit (ubh->bh[base]->b_data,
449 start, start - count);
450 if (pos > start - count || !size)
455 return (base << uspi->s_bpfshift) + pos - begin;
458 #define ubh_isblockclear(ubh,begin,block) (!_ubh_isblockset_(uspi,ubh,begin,block))
460 #define ubh_isblockset(ubh,begin,block) _ubh_isblockset_(uspi,ubh,begin,block)
461 static inline int _ubh_isblockset_(struct ufs_sb_private_info * uspi,
462 struct ufs_buffer_head * ubh, unsigned begin, unsigned block)
465 switch (uspi->s_fpb) {
467 return (*ubh_get_addr (ubh, begin + block) == 0xff);
469 mask = 0x0f << ((block & 0x01) << 2);
470 return (*ubh_get_addr (ubh, begin + (block >> 1)) & mask) == mask;
472 mask = 0x03 << ((block & 0x03) << 1);
473 return (*ubh_get_addr (ubh, begin + (block >> 2)) & mask) == mask;
475 mask = 0x01 << (block & 0x07);
476 return (*ubh_get_addr (ubh, begin + (block >> 3)) & mask) == mask;
481 #define ubh_clrblock(ubh,begin,block) _ubh_clrblock_(uspi,ubh,begin,block)
482 static inline void _ubh_clrblock_(struct ufs_sb_private_info * uspi,
483 struct ufs_buffer_head * ubh, unsigned begin, unsigned block)
485 switch (uspi->s_fpb) {
487 *ubh_get_addr (ubh, begin + block) = 0x00;
490 *ubh_get_addr (ubh, begin + (block >> 1)) &= ~(0x0f << ((block & 0x01) << 2));
493 *ubh_get_addr (ubh, begin + (block >> 2)) &= ~(0x03 << ((block & 0x03) << 1));
496 *ubh_get_addr (ubh, begin + (block >> 3)) &= ~(0x01 << ((block & 0x07)));
501 #define ubh_setblock(ubh,begin,block) _ubh_setblock_(uspi,ubh,begin,block)
502 static inline void _ubh_setblock_(struct ufs_sb_private_info * uspi,
503 struct ufs_buffer_head * ubh, unsigned begin, unsigned block)
505 switch (uspi->s_fpb) {
507 *ubh_get_addr(ubh, begin + block) = 0xff;
510 *ubh_get_addr(ubh, begin + (block >> 1)) |= (0x0f << ((block & 0x01) << 2));
513 *ubh_get_addr(ubh, begin + (block >> 2)) |= (0x03 << ((block & 0x03) << 1));
516 *ubh_get_addr(ubh, begin + (block >> 3)) |= (0x01 << ((block & 0x07)));
521 static inline void ufs_fragacct (struct super_block * sb, unsigned blockmap,
522 __fs32 * fraglist, int cnt)
524 struct ufs_sb_private_info * uspi;
525 unsigned fragsize, pos;
527 uspi = UFS_SB(sb)->s_uspi;
530 for (pos = 0; pos < uspi->s_fpb; pos++) {
531 if (blockmap & (1 << pos)) {
534 else if (fragsize > 0) {
535 fs32_add(sb, &fraglist[fragsize], cnt);
539 if (fragsize > 0 && fragsize < uspi->s_fpb)
540 fs32_add(sb, &fraglist[fragsize], cnt);
543 static inline void *ufs_get_direct_data_ptr(struct ufs_sb_private_info *uspi,
544 struct ufs_inode_info *ufsi,
547 BUG_ON(blk > UFS_TIND_BLOCK);
548 return uspi->fs_magic == UFS2_MAGIC ?
549 (void *)&ufsi->i_u1.u2_i_data[blk] :
550 (void *)&ufsi->i_u1.i_data[blk];
553 static inline u64 ufs_data_ptr_to_cpu(struct super_block *sb, void *p)
555 return UFS_SB(sb)->s_uspi->fs_magic == UFS2_MAGIC ?
556 fs64_to_cpu(sb, *(__fs64 *)p) :
557 fs32_to_cpu(sb, *(__fs32 *)p);
560 static inline void ufs_cpu_to_data_ptr(struct super_block *sb, void *p, u64 val)
562 if (UFS_SB(sb)->s_uspi->fs_magic == UFS2_MAGIC)
563 *(__fs64 *)p = cpu_to_fs64(sb, val);
565 *(__fs32 *)p = cpu_to_fs32(sb, val);
568 static inline void ufs_data_ptr_clear(struct ufs_sb_private_info *uspi,
571 if (uspi->fs_magic == UFS2_MAGIC)
577 static inline int ufs_is_data_ptr_zero(struct ufs_sb_private_info *uspi,
580 if (uspi->fs_magic == UFS2_MAGIC)
581 return *(__fs64 *)p == 0;
583 return *(__fs32 *)p == 0;
586 static inline __fs32 ufs_get_seconds(struct super_block *sbp)
588 time64_t now = ktime_get_real_seconds();
590 /* Signed 32-bit interpretation wraps around in 2038, which
591 * happens in ufs1 inode stamps but not ufs2 using 64-bits
592 * stamps. For superblock and blockgroup, let's assume
593 * unsigned 32-bit stamps, which are good until y2106.
594 * Wrap around rather than clamp here to make the dirty
595 * file system detection work in the superblock stamp.
597 return cpu_to_fs32(sbp, lower_32_bits(now));