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44#include <linux/slab.h>
45#include <linux/crc32.h>
46#include <linux/err.h>
47#include "ubi.h"
48
49
50#define EBA_RESERVED_PEBS 1
51
52
53
54
55
56
57
58
59
60struct ubi_eba_entry {
61 int pnum;
62};
63
64
65
66
67
68
69
70
71
72struct ubi_eba_table {
73 struct ubi_eba_entry *entries;
74};
75
76
77
78
79
80
81
82
83
84unsigned long long ubi_next_sqnum(struct ubi_device *ubi)
85{
86 unsigned long long sqnum;
87
88 spin_lock(&ubi->ltree_lock);
89 sqnum = ubi->global_sqnum++;
90 spin_unlock(&ubi->ltree_lock);
91
92 return sqnum;
93}
94
95
96
97
98
99
100
101
102
103static int ubi_get_compat(const struct ubi_device *ubi, int vol_id)
104{
105 if (vol_id == UBI_LAYOUT_VOLUME_ID)
106 return UBI_LAYOUT_VOLUME_COMPAT;
107 return 0;
108}
109
110
111
112
113
114
115
116
117
118
119
120void ubi_eba_get_ldesc(struct ubi_volume *vol, int lnum,
121 struct ubi_eba_leb_desc *ldesc)
122{
123 ldesc->lnum = lnum;
124 ldesc->pnum = vol->eba_tbl->entries[lnum].pnum;
125}
126
127
128
129
130
131
132
133
134
135
136struct ubi_eba_table *ubi_eba_create_table(struct ubi_volume *vol,
137 int nentries)
138{
139 struct ubi_eba_table *tbl;
140 int err = -ENOMEM;
141 int i;
142
143 tbl = kzalloc(sizeof(*tbl), GFP_KERNEL);
144 if (!tbl)
145 return ERR_PTR(-ENOMEM);
146
147 tbl->entries = kmalloc_array(nentries, sizeof(*tbl->entries),
148 GFP_KERNEL);
149 if (!tbl->entries)
150 goto err;
151
152 for (i = 0; i < nentries; i++)
153 tbl->entries[i].pnum = UBI_LEB_UNMAPPED;
154
155 return tbl;
156
157err:
158 kfree(tbl->entries);
159 kfree(tbl);
160
161 return ERR_PTR(err);
162}
163
164
165
166
167
168
169
170void ubi_eba_destroy_table(struct ubi_eba_table *tbl)
171{
172 if (!tbl)
173 return;
174
175 kfree(tbl->entries);
176 kfree(tbl);
177}
178
179
180
181
182
183
184
185
186
187void ubi_eba_copy_table(struct ubi_volume *vol, struct ubi_eba_table *dst,
188 int nentries)
189{
190 struct ubi_eba_table *src;
191 int i;
192
193 ubi_assert(dst && vol && vol->eba_tbl);
194
195 src = vol->eba_tbl;
196
197 for (i = 0; i < nentries; i++)
198 dst->entries[i].pnum = src->entries[i].pnum;
199}
200
201
202
203
204
205
206
207
208void ubi_eba_replace_table(struct ubi_volume *vol, struct ubi_eba_table *tbl)
209{
210 ubi_eba_destroy_table(vol->eba_tbl);
211 vol->eba_tbl = tbl;
212}
213
214
215
216
217
218
219
220
221
222
223
224static struct ubi_ltree_entry *ltree_lookup(struct ubi_device *ubi, int vol_id,
225 int lnum)
226{
227 struct rb_node *p;
228
229 p = ubi->ltree.rb_node;
230 while (p) {
231 struct ubi_ltree_entry *le;
232
233 le = rb_entry(p, struct ubi_ltree_entry, rb);
234
235 if (vol_id < le->vol_id)
236 p = p->rb_left;
237 else if (vol_id > le->vol_id)
238 p = p->rb_right;
239 else {
240 if (lnum < le->lnum)
241 p = p->rb_left;
242 else if (lnum > le->lnum)
243 p = p->rb_right;
244 else
245 return le;
246 }
247 }
248
249 return NULL;
250}
251
252
253
254
255
256
257
258
259
260
261
262
263static struct ubi_ltree_entry *ltree_add_entry(struct ubi_device *ubi,
264 int vol_id, int lnum)
265{
266 struct ubi_ltree_entry *le, *le1, *le_free;
267
268 le = kmalloc(sizeof(struct ubi_ltree_entry), GFP_NOFS);
269 if (!le)
270 return ERR_PTR(-ENOMEM);
271
272 le->users = 0;
273 init_rwsem(&le->mutex);
274 le->vol_id = vol_id;
275 le->lnum = lnum;
276
277 spin_lock(&ubi->ltree_lock);
278 le1 = ltree_lookup(ubi, vol_id, lnum);
279
280 if (le1) {
281
282
283
284
285 le_free = le;
286 le = le1;
287 } else {
288 struct rb_node **p, *parent = NULL;
289
290
291
292
293
294 le_free = NULL;
295
296 p = &ubi->ltree.rb_node;
297 while (*p) {
298 parent = *p;
299 le1 = rb_entry(parent, struct ubi_ltree_entry, rb);
300
301 if (vol_id < le1->vol_id)
302 p = &(*p)->rb_left;
303 else if (vol_id > le1->vol_id)
304 p = &(*p)->rb_right;
305 else {
306 ubi_assert(lnum != le1->lnum);
307 if (lnum < le1->lnum)
308 p = &(*p)->rb_left;
309 else
310 p = &(*p)->rb_right;
311 }
312 }
313
314 rb_link_node(&le->rb, parent, p);
315 rb_insert_color(&le->rb, &ubi->ltree);
316 }
317 le->users += 1;
318 spin_unlock(&ubi->ltree_lock);
319
320 kfree(le_free);
321 return le;
322}
323
324
325
326
327
328
329
330
331
332
333static int leb_read_lock(struct ubi_device *ubi, int vol_id, int lnum)
334{
335 struct ubi_ltree_entry *le;
336
337 le = ltree_add_entry(ubi, vol_id, lnum);
338 if (IS_ERR(le))
339 return PTR_ERR(le);
340 down_read(&le->mutex);
341 return 0;
342}
343
344
345
346
347
348
349
350static void leb_read_unlock(struct ubi_device *ubi, int vol_id, int lnum)
351{
352 struct ubi_ltree_entry *le;
353
354 spin_lock(&ubi->ltree_lock);
355 le = ltree_lookup(ubi, vol_id, lnum);
356 le->users -= 1;
357 ubi_assert(le->users >= 0);
358 up_read(&le->mutex);
359 if (le->users == 0) {
360 rb_erase(&le->rb, &ubi->ltree);
361 kfree(le);
362 }
363 spin_unlock(&ubi->ltree_lock);
364}
365
366
367
368
369
370
371
372
373
374
375static int leb_write_lock(struct ubi_device *ubi, int vol_id, int lnum)
376{
377 struct ubi_ltree_entry *le;
378
379 le = ltree_add_entry(ubi, vol_id, lnum);
380 if (IS_ERR(le))
381 return PTR_ERR(le);
382 down_write(&le->mutex);
383 return 0;
384}
385
386
387
388
389
390
391
392
393
394
395
396
397static int leb_write_trylock(struct ubi_device *ubi, int vol_id, int lnum)
398{
399 struct ubi_ltree_entry *le;
400
401 le = ltree_add_entry(ubi, vol_id, lnum);
402 if (IS_ERR(le))
403 return PTR_ERR(le);
404 if (down_write_trylock(&le->mutex))
405 return 0;
406
407
408 spin_lock(&ubi->ltree_lock);
409 le->users -= 1;
410 ubi_assert(le->users >= 0);
411 if (le->users == 0) {
412 rb_erase(&le->rb, &ubi->ltree);
413 kfree(le);
414 }
415 spin_unlock(&ubi->ltree_lock);
416
417 return 1;
418}
419
420
421
422
423
424
425
426static void leb_write_unlock(struct ubi_device *ubi, int vol_id, int lnum)
427{
428 struct ubi_ltree_entry *le;
429
430 spin_lock(&ubi->ltree_lock);
431 le = ltree_lookup(ubi, vol_id, lnum);
432 le->users -= 1;
433 ubi_assert(le->users >= 0);
434 up_write(&le->mutex);
435 if (le->users == 0) {
436 rb_erase(&le->rb, &ubi->ltree);
437 kfree(le);
438 }
439 spin_unlock(&ubi->ltree_lock);
440}
441
442
443
444
445
446
447
448
449bool ubi_eba_is_mapped(struct ubi_volume *vol, int lnum)
450{
451 return vol->eba_tbl->entries[lnum].pnum >= 0;
452}
453
454
455
456
457
458
459
460
461
462
463
464int ubi_eba_unmap_leb(struct ubi_device *ubi, struct ubi_volume *vol,
465 int lnum)
466{
467 int err, pnum, vol_id = vol->vol_id;
468
469 if (ubi->ro_mode)
470 return -EROFS;
471
472 err = leb_write_lock(ubi, vol_id, lnum);
473 if (err)
474 return err;
475
476 pnum = vol->eba_tbl->entries[lnum].pnum;
477 if (pnum < 0)
478
479 goto out_unlock;
480
481 dbg_eba("erase LEB %d:%d, PEB %d", vol_id, lnum, pnum);
482
483 down_read(&ubi->fm_eba_sem);
484 vol->eba_tbl->entries[lnum].pnum = UBI_LEB_UNMAPPED;
485 up_read(&ubi->fm_eba_sem);
486 err = ubi_wl_put_peb(ubi, vol_id, lnum, pnum, 0);
487
488out_unlock:
489 leb_write_unlock(ubi, vol_id, lnum);
490 return err;
491}
492
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494
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511
512int ubi_eba_read_leb(struct ubi_device *ubi, struct ubi_volume *vol, int lnum,
513 void *buf, int offset, int len, int check)
514{
515 int err, pnum, scrub = 0, vol_id = vol->vol_id;
516 struct ubi_vid_io_buf *vidb;
517 struct ubi_vid_hdr *vid_hdr;
518 uint32_t uninitialized_var(crc);
519
520 err = leb_read_lock(ubi, vol_id, lnum);
521 if (err)
522 return err;
523
524 pnum = vol->eba_tbl->entries[lnum].pnum;
525 if (pnum < 0) {
526
527
528
529
530
531 dbg_eba("read %d bytes from offset %d of LEB %d:%d (unmapped)",
532 len, offset, vol_id, lnum);
533 leb_read_unlock(ubi, vol_id, lnum);
534 ubi_assert(vol->vol_type != UBI_STATIC_VOLUME);
535 memset(buf, 0xFF, len);
536 return 0;
537 }
538
539 dbg_eba("read %d bytes from offset %d of LEB %d:%d, PEB %d",
540 len, offset, vol_id, lnum, pnum);
541
542 if (vol->vol_type == UBI_DYNAMIC_VOLUME)
543 check = 0;
544
545retry:
546 if (check) {
547 vidb = ubi_alloc_vid_buf(ubi, GFP_NOFS);
548 if (!vidb) {
549 err = -ENOMEM;
550 goto out_unlock;
551 }
552
553 vid_hdr = ubi_get_vid_hdr(vidb);
554
555 err = ubi_io_read_vid_hdr(ubi, pnum, vidb, 1);
556 if (err && err != UBI_IO_BITFLIPS) {
557 if (err > 0) {
558
559
560
561
562
563
564
565
566 if (err == UBI_IO_BAD_HDR_EBADMSG ||
567 err == UBI_IO_BAD_HDR) {
568 ubi_warn(ubi, "corrupted VID header at PEB %d, LEB %d:%d",
569 pnum, vol_id, lnum);
570 err = -EBADMSG;
571 } else {
572
573
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575
576
577
578
579
580
581
582
583
584
585 if (ubi->fast_attach) {
586 err = -EBADMSG;
587 } else {
588 err = -EINVAL;
589 ubi_ro_mode(ubi);
590 }
591 }
592 }
593 goto out_free;
594 } else if (err == UBI_IO_BITFLIPS)
595 scrub = 1;
596
597 ubi_assert(lnum < be32_to_cpu(vid_hdr->used_ebs));
598 ubi_assert(len == be32_to_cpu(vid_hdr->data_size));
599
600 crc = be32_to_cpu(vid_hdr->data_crc);
601 ubi_free_vid_buf(vidb);
602 }
603
604 err = ubi_io_read_data(ubi, buf, pnum, offset, len);
605 if (err) {
606 if (err == UBI_IO_BITFLIPS)
607 scrub = 1;
608 else if (mtd_is_eccerr(err)) {
609 if (vol->vol_type == UBI_DYNAMIC_VOLUME)
610 goto out_unlock;
611 scrub = 1;
612 if (!check) {
613 ubi_msg(ubi, "force data checking");
614 check = 1;
615 goto retry;
616 }
617 } else
618 goto out_unlock;
619 }
620
621 if (check) {
622 uint32_t crc1 = crc32(UBI_CRC32_INIT, buf, len);
623 if (crc1 != crc) {
624 ubi_warn(ubi, "CRC error: calculated %#08x, must be %#08x",
625 crc1, crc);
626 err = -EBADMSG;
627 goto out_unlock;
628 }
629 }
630
631 if (scrub)
632 err = ubi_wl_scrub_peb(ubi, pnum);
633
634 leb_read_unlock(ubi, vol_id, lnum);
635 return err;
636
637out_free:
638 ubi_free_vid_buf(vidb);
639out_unlock:
640 leb_read_unlock(ubi, vol_id, lnum);
641 return err;
642}
643
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657
658int ubi_eba_read_leb_sg(struct ubi_device *ubi, struct ubi_volume *vol,
659 struct ubi_sgl *sgl, int lnum, int offset, int len,
660 int check)
661{
662 int to_read;
663 int ret;
664 struct scatterlist *sg;
665
666 for (;;) {
667 ubi_assert(sgl->list_pos < UBI_MAX_SG_COUNT);
668 sg = &sgl->sg[sgl->list_pos];
669 if (len < sg->length - sgl->page_pos)
670 to_read = len;
671 else
672 to_read = sg->length - sgl->page_pos;
673
674 ret = ubi_eba_read_leb(ubi, vol, lnum,
675 sg_virt(sg) + sgl->page_pos, offset,
676 to_read, check);
677 if (ret < 0)
678 return ret;
679
680 offset += to_read;
681 len -= to_read;
682 if (!len) {
683 sgl->page_pos += to_read;
684 if (sgl->page_pos == sg->length) {
685 sgl->list_pos++;
686 sgl->page_pos = 0;
687 }
688
689 break;
690 }
691
692 sgl->list_pos++;
693 sgl->page_pos = 0;
694 }
695
696 return ret;
697}
698
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716
717static int try_recover_peb(struct ubi_volume *vol, int pnum, int lnum,
718 const void *buf, int offset, int len,
719 struct ubi_vid_io_buf *vidb, bool *retry)
720{
721 struct ubi_device *ubi = vol->ubi;
722 struct ubi_vid_hdr *vid_hdr;
723 int new_pnum, err, vol_id = vol->vol_id, data_size;
724 uint32_t crc;
725
726 *retry = false;
727
728 new_pnum = ubi_wl_get_peb(ubi);
729 if (new_pnum < 0) {
730 err = new_pnum;
731 goto out_put;
732 }
733
734 ubi_msg(ubi, "recover PEB %d, move data to PEB %d",
735 pnum, new_pnum);
736
737 err = ubi_io_read_vid_hdr(ubi, pnum, vidb, 1);
738 if (err && err != UBI_IO_BITFLIPS) {
739 if (err > 0)
740 err = -EIO;
741 goto out_put;
742 }
743
744 vid_hdr = ubi_get_vid_hdr(vidb);
745 ubi_assert(vid_hdr->vol_type == UBI_VID_DYNAMIC);
746
747 mutex_lock(&ubi->buf_mutex);
748 memset(ubi->peb_buf + offset, 0xFF, len);
749
750
751 if (offset > 0) {
752 err = ubi_io_read_data(ubi, ubi->peb_buf, pnum, 0, offset);
753 if (err && err != UBI_IO_BITFLIPS)
754 goto out_unlock;
755 }
756
757 *retry = true;
758
759 memcpy(ubi->peb_buf + offset, buf, len);
760
761 data_size = offset + len;
762 crc = crc32(UBI_CRC32_INIT, ubi->peb_buf, data_size);
763 vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
764 vid_hdr->copy_flag = 1;
765 vid_hdr->data_size = cpu_to_be32(data_size);
766 vid_hdr->data_crc = cpu_to_be32(crc);
767 err = ubi_io_write_vid_hdr(ubi, new_pnum, vidb);
768 if (err)
769 goto out_unlock;
770
771 err = ubi_io_write_data(ubi, ubi->peb_buf, new_pnum, 0, data_size);
772
773out_unlock:
774 mutex_unlock(&ubi->buf_mutex);
775
776 if (!err)
777 vol->eba_tbl->entries[lnum].pnum = new_pnum;
778
779out_put:
780 up_read(&ubi->fm_eba_sem);
781
782 if (!err) {
783 ubi_wl_put_peb(ubi, vol_id, lnum, pnum, 1);
784 ubi_msg(ubi, "data was successfully recovered");
785 } else if (new_pnum >= 0) {
786
787
788
789
790 ubi_wl_put_peb(ubi, vol_id, lnum, new_pnum, 1);
791 ubi_warn(ubi, "failed to write to PEB %d", new_pnum);
792 }
793
794 return err;
795}
796
797
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811
812
813static int recover_peb(struct ubi_device *ubi, int pnum, int vol_id, int lnum,
814 const void *buf, int offset, int len)
815{
816 int err, idx = vol_id2idx(ubi, vol_id), tries;
817 struct ubi_volume *vol = ubi->volumes[idx];
818 struct ubi_vid_io_buf *vidb;
819
820 vidb = ubi_alloc_vid_buf(ubi, GFP_NOFS);
821 if (!vidb)
822 return -ENOMEM;
823
824 for (tries = 0; tries <= UBI_IO_RETRIES; tries++) {
825 bool retry;
826
827 err = try_recover_peb(vol, pnum, lnum, buf, offset, len, vidb,
828 &retry);
829 if (!err || !retry)
830 break;
831
832 ubi_msg(ubi, "try again");
833 }
834
835 ubi_free_vid_buf(vidb);
836
837 return err;
838}
839
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854
855static int try_write_vid_and_data(struct ubi_volume *vol, int lnum,
856 struct ubi_vid_io_buf *vidb, const void *buf,
857 int offset, int len)
858{
859 struct ubi_device *ubi = vol->ubi;
860 int pnum, opnum, err, vol_id = vol->vol_id;
861
862 pnum = ubi_wl_get_peb(ubi);
863 if (pnum < 0) {
864 err = pnum;
865 goto out_put;
866 }
867
868 opnum = vol->eba_tbl->entries[lnum].pnum;
869
870 dbg_eba("write VID hdr and %d bytes at offset %d of LEB %d:%d, PEB %d",
871 len, offset, vol_id, lnum, pnum);
872
873 err = ubi_io_write_vid_hdr(ubi, pnum, vidb);
874 if (err) {
875 ubi_warn(ubi, "failed to write VID header to LEB %d:%d, PEB %d",
876 vol_id, lnum, pnum);
877 goto out_put;
878 }
879
880 if (len) {
881 err = ubi_io_write_data(ubi, buf, pnum, offset, len);
882 if (err) {
883 ubi_warn(ubi,
884 "failed to write %d bytes at offset %d of LEB %d:%d, PEB %d",
885 len, offset, vol_id, lnum, pnum);
886 goto out_put;
887 }
888 }
889
890 vol->eba_tbl->entries[lnum].pnum = pnum;
891
892out_put:
893 up_read(&ubi->fm_eba_sem);
894
895 if (err && pnum >= 0)
896 err = ubi_wl_put_peb(ubi, vol_id, lnum, pnum, 1);
897 else if (!err && opnum >= 0)
898 err = ubi_wl_put_peb(ubi, vol_id, lnum, opnum, 0);
899
900 return err;
901}
902
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916
917
918int ubi_eba_write_leb(struct ubi_device *ubi, struct ubi_volume *vol, int lnum,
919 const void *buf, int offset, int len)
920{
921 int err, pnum, tries, vol_id = vol->vol_id;
922 struct ubi_vid_io_buf *vidb;
923 struct ubi_vid_hdr *vid_hdr;
924
925 if (ubi->ro_mode)
926 return -EROFS;
927
928 err = leb_write_lock(ubi, vol_id, lnum);
929 if (err)
930 return err;
931
932 pnum = vol->eba_tbl->entries[lnum].pnum;
933 if (pnum >= 0) {
934 dbg_eba("write %d bytes at offset %d of LEB %d:%d, PEB %d",
935 len, offset, vol_id, lnum, pnum);
936
937 err = ubi_io_write_data(ubi, buf, pnum, offset, len);
938 if (err) {
939 ubi_warn(ubi, "failed to write data to PEB %d", pnum);
940 if (err == -EIO && ubi->bad_allowed)
941 err = recover_peb(ubi, pnum, vol_id, lnum, buf,
942 offset, len);
943 }
944
945 goto out;
946 }
947
948
949
950
951
952 vidb = ubi_alloc_vid_buf(ubi, GFP_NOFS);
953 if (!vidb) {
954 leb_write_unlock(ubi, vol_id, lnum);
955 return -ENOMEM;
956 }
957
958 vid_hdr = ubi_get_vid_hdr(vidb);
959
960 vid_hdr->vol_type = UBI_VID_DYNAMIC;
961 vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
962 vid_hdr->vol_id = cpu_to_be32(vol_id);
963 vid_hdr->lnum = cpu_to_be32(lnum);
964 vid_hdr->compat = ubi_get_compat(ubi, vol_id);
965 vid_hdr->data_pad = cpu_to_be32(vol->data_pad);
966
967 for (tries = 0; tries <= UBI_IO_RETRIES; tries++) {
968 err = try_write_vid_and_data(vol, lnum, vidb, buf, offset, len);
969 if (err != -EIO || !ubi->bad_allowed)
970 break;
971
972
973
974
975
976
977
978 vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
979 ubi_msg(ubi, "try another PEB");
980 }
981
982 ubi_free_vid_buf(vidb);
983
984out:
985 if (err)
986 ubi_ro_mode(ubi);
987
988 leb_write_unlock(ubi, vol_id, lnum);
989
990 return err;
991}
992
993
994
995
996
997
998
999
1000
1001
1002
1003
1004
1005
1006
1007
1008
1009
1010
1011
1012
1013
1014
1015int ubi_eba_write_leb_st(struct ubi_device *ubi, struct ubi_volume *vol,
1016 int lnum, const void *buf, int len, int used_ebs)
1017{
1018 int err, tries, data_size = len, vol_id = vol->vol_id;
1019 struct ubi_vid_io_buf *vidb;
1020 struct ubi_vid_hdr *vid_hdr;
1021 uint32_t crc;
1022
1023 if (ubi->ro_mode)
1024 return -EROFS;
1025
1026 if (lnum == used_ebs - 1)
1027
1028 len = ALIGN(data_size, ubi->min_io_size);
1029 else
1030 ubi_assert(!(len & (ubi->min_io_size - 1)));
1031
1032 vidb = ubi_alloc_vid_buf(ubi, GFP_NOFS);
1033 if (!vidb)
1034 return -ENOMEM;
1035
1036 vid_hdr = ubi_get_vid_hdr(vidb);
1037
1038 err = leb_write_lock(ubi, vol_id, lnum);
1039 if (err)
1040 goto out;
1041
1042 vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
1043 vid_hdr->vol_id = cpu_to_be32(vol_id);
1044 vid_hdr->lnum = cpu_to_be32(lnum);
1045 vid_hdr->compat = ubi_get_compat(ubi, vol_id);
1046 vid_hdr->data_pad = cpu_to_be32(vol->data_pad);
1047
1048 crc = crc32(UBI_CRC32_INIT, buf, data_size);
1049 vid_hdr->vol_type = UBI_VID_STATIC;
1050 vid_hdr->data_size = cpu_to_be32(data_size);
1051 vid_hdr->used_ebs = cpu_to_be32(used_ebs);
1052 vid_hdr->data_crc = cpu_to_be32(crc);
1053
1054 ubi_assert(vol->eba_tbl->entries[lnum].pnum < 0);
1055
1056 for (tries = 0; tries <= UBI_IO_RETRIES; tries++) {
1057 err = try_write_vid_and_data(vol, lnum, vidb, buf, 0, len);
1058 if (err != -EIO || !ubi->bad_allowed)
1059 break;
1060
1061 vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
1062 ubi_msg(ubi, "try another PEB");
1063 }
1064
1065 if (err)
1066 ubi_ro_mode(ubi);
1067
1068 leb_write_unlock(ubi, vol_id, lnum);
1069
1070out:
1071 ubi_free_vid_buf(vidb);
1072
1073 return err;
1074}
1075
1076
1077
1078
1079
1080
1081
1082
1083
1084
1085
1086
1087
1088
1089
1090
1091
1092
1093int ubi_eba_atomic_leb_change(struct ubi_device *ubi, struct ubi_volume *vol,
1094 int lnum, const void *buf, int len)
1095{
1096 int err, tries, vol_id = vol->vol_id;
1097 struct ubi_vid_io_buf *vidb;
1098 struct ubi_vid_hdr *vid_hdr;
1099 uint32_t crc;
1100
1101 if (ubi->ro_mode)
1102 return -EROFS;
1103
1104 if (len == 0) {
1105
1106
1107
1108
1109 err = ubi_eba_unmap_leb(ubi, vol, lnum);
1110 if (err)
1111 return err;
1112 return ubi_eba_write_leb(ubi, vol, lnum, NULL, 0, 0);
1113 }
1114
1115 vidb = ubi_alloc_vid_buf(ubi, GFP_NOFS);
1116 if (!vidb)
1117 return -ENOMEM;
1118
1119 vid_hdr = ubi_get_vid_hdr(vidb);
1120
1121 mutex_lock(&ubi->alc_mutex);
1122 err = leb_write_lock(ubi, vol_id, lnum);
1123 if (err)
1124 goto out_mutex;
1125
1126 vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
1127 vid_hdr->vol_id = cpu_to_be32(vol_id);
1128 vid_hdr->lnum = cpu_to_be32(lnum);
1129 vid_hdr->compat = ubi_get_compat(ubi, vol_id);
1130 vid_hdr->data_pad = cpu_to_be32(vol->data_pad);
1131
1132 crc = crc32(UBI_CRC32_INIT, buf, len);
1133 vid_hdr->vol_type = UBI_VID_DYNAMIC;
1134 vid_hdr->data_size = cpu_to_be32(len);
1135 vid_hdr->copy_flag = 1;
1136 vid_hdr->data_crc = cpu_to_be32(crc);
1137
1138 dbg_eba("change LEB %d:%d", vol_id, lnum);
1139
1140 for (tries = 0; tries <= UBI_IO_RETRIES; tries++) {
1141 err = try_write_vid_and_data(vol, lnum, vidb, buf, 0, len);
1142 if (err != -EIO || !ubi->bad_allowed)
1143 break;
1144
1145 vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
1146 ubi_msg(ubi, "try another PEB");
1147 }
1148
1149
1150
1151
1152
1153
1154 if (err)
1155 ubi_ro_mode(ubi);
1156
1157 leb_write_unlock(ubi, vol_id, lnum);
1158
1159out_mutex:
1160 mutex_unlock(&ubi->alc_mutex);
1161 ubi_free_vid_buf(vidb);
1162 return err;
1163}
1164
1165
1166
1167
1168
1169
1170
1171
1172
1173
1174
1175
1176
1177
1178
1179
1180
1181
1182
1183
1184static int is_error_sane(int err)
1185{
1186 if (err == -EIO || err == -ENOMEM || err == UBI_IO_BAD_HDR ||
1187 err == UBI_IO_BAD_HDR_EBADMSG || err == -ETIMEDOUT)
1188 return 0;
1189 return 1;
1190}
1191
1192
1193
1194
1195
1196
1197
1198
1199
1200
1201
1202
1203
1204
1205
1206int ubi_eba_copy_leb(struct ubi_device *ubi, int from, int to,
1207 struct ubi_vid_io_buf *vidb)
1208{
1209 int err, vol_id, lnum, data_size, aldata_size, idx;
1210 struct ubi_vid_hdr *vid_hdr = ubi_get_vid_hdr(vidb);
1211 struct ubi_volume *vol;
1212 uint32_t crc;
1213
1214 ubi_assert(rwsem_is_locked(&ubi->fm_eba_sem));
1215
1216 vol_id = be32_to_cpu(vid_hdr->vol_id);
1217 lnum = be32_to_cpu(vid_hdr->lnum);
1218
1219 dbg_wl("copy LEB %d:%d, PEB %d to PEB %d", vol_id, lnum, from, to);
1220
1221 if (vid_hdr->vol_type == UBI_VID_STATIC) {
1222 data_size = be32_to_cpu(vid_hdr->data_size);
1223 aldata_size = ALIGN(data_size, ubi->min_io_size);
1224 } else
1225 data_size = aldata_size =
1226 ubi->leb_size - be32_to_cpu(vid_hdr->data_pad);
1227
1228 idx = vol_id2idx(ubi, vol_id);
1229 spin_lock(&ubi->volumes_lock);
1230
1231
1232
1233
1234
1235
1236 vol = ubi->volumes[idx];
1237 spin_unlock(&ubi->volumes_lock);
1238 if (!vol) {
1239
1240 dbg_wl("volume %d is being removed, cancel", vol_id);
1241 return MOVE_CANCEL_RACE;
1242 }
1243
1244
1245
1246
1247
1248
1249
1250
1251
1252
1253
1254
1255
1256
1257
1258
1259 err = leb_write_trylock(ubi, vol_id, lnum);
1260 if (err) {
1261 dbg_wl("contention on LEB %d:%d, cancel", vol_id, lnum);
1262 return MOVE_RETRY;
1263 }
1264
1265
1266
1267
1268
1269
1270 if (vol->eba_tbl->entries[lnum].pnum != from) {
1271 dbg_wl("LEB %d:%d is no longer mapped to PEB %d, mapped to PEB %d, cancel",
1272 vol_id, lnum, from, vol->eba_tbl->entries[lnum].pnum);
1273 err = MOVE_CANCEL_RACE;
1274 goto out_unlock_leb;
1275 }
1276
1277
1278
1279
1280
1281
1282
1283 mutex_lock(&ubi->buf_mutex);
1284 dbg_wl("read %d bytes of data", aldata_size);
1285 err = ubi_io_read_data(ubi, ubi->peb_buf, from, 0, aldata_size);
1286 if (err && err != UBI_IO_BITFLIPS) {
1287 ubi_warn(ubi, "error %d while reading data from PEB %d",
1288 err, from);
1289 err = MOVE_SOURCE_RD_ERR;
1290 goto out_unlock_buf;
1291 }
1292
1293
1294
1295
1296
1297
1298
1299
1300
1301
1302
1303 if (vid_hdr->vol_type == UBI_VID_DYNAMIC)
1304 aldata_size = data_size =
1305 ubi_calc_data_len(ubi, ubi->peb_buf, data_size);
1306
1307 cond_resched();
1308 crc = crc32(UBI_CRC32_INIT, ubi->peb_buf, data_size);
1309 cond_resched();
1310
1311
1312
1313
1314
1315
1316
1317 if (data_size > 0) {
1318 vid_hdr->copy_flag = 1;
1319 vid_hdr->data_size = cpu_to_be32(data_size);
1320 vid_hdr->data_crc = cpu_to_be32(crc);
1321 }
1322 vid_hdr->sqnum = cpu_to_be64(ubi_next_sqnum(ubi));
1323
1324 err = ubi_io_write_vid_hdr(ubi, to, vidb);
1325 if (err) {
1326 if (err == -EIO)
1327 err = MOVE_TARGET_WR_ERR;
1328 goto out_unlock_buf;
1329 }
1330
1331 cond_resched();
1332
1333
1334 err = ubi_io_read_vid_hdr(ubi, to, vidb, 1);
1335 if (err) {
1336 if (err != UBI_IO_BITFLIPS) {
1337 ubi_warn(ubi, "error %d while reading VID header back from PEB %d",
1338 err, to);
1339 if (is_error_sane(err))
1340 err = MOVE_TARGET_RD_ERR;
1341 } else
1342 err = MOVE_TARGET_BITFLIPS;
1343 goto out_unlock_buf;
1344 }
1345
1346 if (data_size > 0) {
1347 err = ubi_io_write_data(ubi, ubi->peb_buf, to, 0, aldata_size);
1348 if (err) {
1349 if (err == -EIO)
1350 err = MOVE_TARGET_WR_ERR;
1351 goto out_unlock_buf;
1352 }
1353
1354 cond_resched();
1355 }
1356
1357 ubi_assert(vol->eba_tbl->entries[lnum].pnum == from);
1358 vol->eba_tbl->entries[lnum].pnum = to;
1359
1360out_unlock_buf:
1361 mutex_unlock(&ubi->buf_mutex);
1362out_unlock_leb:
1363 leb_write_unlock(ubi, vol_id, lnum);
1364 return err;
1365}
1366
1367
1368
1369
1370
1371
1372
1373
1374
1375
1376
1377
1378
1379
1380
1381
1382
1383
1384
1385static void print_rsvd_warning(struct ubi_device *ubi,
1386 struct ubi_attach_info *ai)
1387{
1388
1389
1390
1391
1392 if (ai->max_sqnum > (1 << 18)) {
1393 int min = ubi->beb_rsvd_level / 10;
1394
1395 if (!min)
1396 min = 1;
1397 if (ubi->beb_rsvd_pebs > min)
1398 return;
1399 }
1400
1401 ubi_warn(ubi, "cannot reserve enough PEBs for bad PEB handling, reserved %d, need %d",
1402 ubi->beb_rsvd_pebs, ubi->beb_rsvd_level);
1403 if (ubi->corr_peb_count)
1404 ubi_warn(ubi, "%d PEBs are corrupted and not used",
1405 ubi->corr_peb_count);
1406}
1407
1408
1409
1410
1411
1412
1413
1414
1415
1416
1417
1418int self_check_eba(struct ubi_device *ubi, struct ubi_attach_info *ai_fastmap,
1419 struct ubi_attach_info *ai_scan)
1420{
1421 int i, j, num_volumes, ret = 0;
1422 int **scan_eba, **fm_eba;
1423 struct ubi_ainf_volume *av;
1424 struct ubi_volume *vol;
1425 struct ubi_ainf_peb *aeb;
1426 struct rb_node *rb;
1427
1428 num_volumes = ubi->vtbl_slots + UBI_INT_VOL_COUNT;
1429
1430 scan_eba = kmalloc(sizeof(*scan_eba) * num_volumes, GFP_KERNEL);
1431 if (!scan_eba)
1432 return -ENOMEM;
1433
1434 fm_eba = kmalloc(sizeof(*fm_eba) * num_volumes, GFP_KERNEL);
1435 if (!fm_eba) {
1436 kfree(scan_eba);
1437 return -ENOMEM;
1438 }
1439
1440 for (i = 0; i < num_volumes; i++) {
1441 vol = ubi->volumes[i];
1442 if (!vol)
1443 continue;
1444
1445 scan_eba[i] = kmalloc(vol->reserved_pebs * sizeof(**scan_eba),
1446 GFP_KERNEL);
1447 if (!scan_eba[i]) {
1448 ret = -ENOMEM;
1449 goto out_free;
1450 }
1451
1452 fm_eba[i] = kmalloc(vol->reserved_pebs * sizeof(**fm_eba),
1453 GFP_KERNEL);
1454 if (!fm_eba[i]) {
1455 ret = -ENOMEM;
1456 goto out_free;
1457 }
1458
1459 for (j = 0; j < vol->reserved_pebs; j++)
1460 scan_eba[i][j] = fm_eba[i][j] = UBI_LEB_UNMAPPED;
1461
1462 av = ubi_find_av(ai_scan, idx2vol_id(ubi, i));
1463 if (!av)
1464 continue;
1465
1466 ubi_rb_for_each_entry(rb, aeb, &av->root, u.rb)
1467 scan_eba[i][aeb->lnum] = aeb->pnum;
1468
1469 av = ubi_find_av(ai_fastmap, idx2vol_id(ubi, i));
1470 if (!av)
1471 continue;
1472
1473 ubi_rb_for_each_entry(rb, aeb, &av->root, u.rb)
1474 fm_eba[i][aeb->lnum] = aeb->pnum;
1475
1476 for (j = 0; j < vol->reserved_pebs; j++) {
1477 if (scan_eba[i][j] != fm_eba[i][j]) {
1478 if (scan_eba[i][j] == UBI_LEB_UNMAPPED ||
1479 fm_eba[i][j] == UBI_LEB_UNMAPPED)
1480 continue;
1481
1482 ubi_err(ubi, "LEB:%i:%i is PEB:%i instead of %i!",
1483 vol->vol_id, j, fm_eba[i][j],
1484 scan_eba[i][j]);
1485 ubi_assert(0);
1486 }
1487 }
1488 }
1489
1490out_free:
1491 for (i = 0; i < num_volumes; i++) {
1492 if (!ubi->volumes[i])
1493 continue;
1494
1495 kfree(scan_eba[i]);
1496 kfree(fm_eba[i]);
1497 }
1498
1499 kfree(scan_eba);
1500 kfree(fm_eba);
1501 return ret;
1502}
1503
1504
1505
1506
1507
1508
1509
1510
1511
1512int ubi_eba_init(struct ubi_device *ubi, struct ubi_attach_info *ai)
1513{
1514 int i, err, num_volumes;
1515 struct ubi_ainf_volume *av;
1516 struct ubi_volume *vol;
1517 struct ubi_ainf_peb *aeb;
1518 struct rb_node *rb;
1519
1520 dbg_eba("initialize EBA sub-system");
1521
1522 spin_lock_init(&ubi->ltree_lock);
1523 mutex_init(&ubi->alc_mutex);
1524 ubi->ltree = RB_ROOT;
1525
1526 ubi->global_sqnum = ai->max_sqnum + 1;
1527 num_volumes = ubi->vtbl_slots + UBI_INT_VOL_COUNT;
1528
1529 for (i = 0; i < num_volumes; i++) {
1530 struct ubi_eba_table *tbl;
1531
1532 vol = ubi->volumes[i];
1533 if (!vol)
1534 continue;
1535
1536 cond_resched();
1537
1538 tbl = ubi_eba_create_table(vol, vol->reserved_pebs);
1539 if (IS_ERR(tbl)) {
1540 err = PTR_ERR(tbl);
1541 goto out_free;
1542 }
1543
1544 ubi_eba_replace_table(vol, tbl);
1545
1546 av = ubi_find_av(ai, idx2vol_id(ubi, i));
1547 if (!av)
1548 continue;
1549
1550 ubi_rb_for_each_entry(rb, aeb, &av->root, u.rb) {
1551 if (aeb->lnum >= vol->reserved_pebs) {
1552
1553
1554
1555
1556 ubi_move_aeb_to_list(av, aeb, &ai->erase);
1557 } else {
1558 struct ubi_eba_entry *entry;
1559
1560 entry = &vol->eba_tbl->entries[aeb->lnum];
1561 entry->pnum = aeb->pnum;
1562 }
1563 }
1564 }
1565
1566 if (ubi->avail_pebs < EBA_RESERVED_PEBS) {
1567 ubi_err(ubi, "no enough physical eraseblocks (%d, need %d)",
1568 ubi->avail_pebs, EBA_RESERVED_PEBS);
1569 if (ubi->corr_peb_count)
1570 ubi_err(ubi, "%d PEBs are corrupted and not used",
1571 ubi->corr_peb_count);
1572 err = -ENOSPC;
1573 goto out_free;
1574 }
1575 ubi->avail_pebs -= EBA_RESERVED_PEBS;
1576 ubi->rsvd_pebs += EBA_RESERVED_PEBS;
1577
1578 if (ubi->bad_allowed) {
1579 ubi_calculate_reserved(ubi);
1580
1581 if (ubi->avail_pebs < ubi->beb_rsvd_level) {
1582
1583 ubi->beb_rsvd_pebs = ubi->avail_pebs;
1584 print_rsvd_warning(ubi, ai);
1585 } else
1586 ubi->beb_rsvd_pebs = ubi->beb_rsvd_level;
1587
1588 ubi->avail_pebs -= ubi->beb_rsvd_pebs;
1589 ubi->rsvd_pebs += ubi->beb_rsvd_pebs;
1590 }
1591
1592 dbg_eba("EBA sub-system is initialized");
1593 return 0;
1594
1595out_free:
1596 for (i = 0; i < num_volumes; i++) {
1597 if (!ubi->volumes[i])
1598 continue;
1599 ubi_eba_replace_table(ubi->volumes[i], NULL);
1600 }
1601 return err;
1602}
1603