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[~andy/linux] / fs / jffs2 / summary.c
1 /*
2  * JFFS2 -- Journalling Flash File System, Version 2.
3  *
4  * Copyright (C) 2004  Ferenc Havasi <havasi@inf.u-szeged.hu>,
5  *                     Zoltan Sogor <weth@inf.u-szeged.hu>,
6  *                     Patrik Kluba <pajko@halom.u-szeged.hu>,
7  *                     University of Szeged, Hungary
8  *               2005  KaiGai Kohei <kaigai@ak.jp.nec.com>
9  *
10  * For licensing information, see the file 'LICENCE' in this directory.
11  *
12  * $Id: summary.c,v 1.4 2005/09/26 11:37:21 havasi Exp $
13  *
14  */
15
16 #include <linux/kernel.h>
17 #include <linux/sched.h>
18 #include <linux/slab.h>
19 #include <linux/mtd/mtd.h>
20 #include <linux/pagemap.h>
21 #include <linux/crc32.h>
22 #include <linux/compiler.h>
23 #include <linux/vmalloc.h>
24 #include "nodelist.h"
25 #include "debug.h"
26
27 int jffs2_sum_init(struct jffs2_sb_info *c)
28 {
29         c->summary = kmalloc(sizeof(struct jffs2_summary), GFP_KERNEL);
30
31         if (!c->summary) {
32                 JFFS2_WARNING("Can't allocate memory for summary information!\n");
33                 return -ENOMEM;
34         }
35
36         memset(c->summary, 0, sizeof(struct jffs2_summary));
37
38         c->summary->sum_buf = vmalloc(c->sector_size);
39
40         if (!c->summary->sum_buf) {
41                 JFFS2_WARNING("Can't allocate buffer for writing out summary information!\n");
42                 kfree(c->summary);
43                 return -ENOMEM;
44         }
45
46         dbg_summary("returned succesfully\n");
47
48         return 0;
49 }
50
51 void jffs2_sum_exit(struct jffs2_sb_info *c)
52 {
53         dbg_summary("called\n");
54
55         jffs2_sum_disable_collecting(c->summary);
56
57         vfree(c->summary->sum_buf);
58         c->summary->sum_buf = NULL;
59
60         kfree(c->summary);
61         c->summary = NULL;
62 }
63
64 static int jffs2_sum_add_mem(struct jffs2_summary *s, union jffs2_sum_mem *item)
65 {
66         if (!s->sum_list_head)
67                 s->sum_list_head = (union jffs2_sum_mem *) item;
68         if (s->sum_list_tail)
69                 s->sum_list_tail->u.next = (union jffs2_sum_mem *) item;
70         s->sum_list_tail = (union jffs2_sum_mem *) item;
71
72         switch (je16_to_cpu(item->u.nodetype)) {
73                 case JFFS2_NODETYPE_INODE:
74                         s->sum_size += JFFS2_SUMMARY_INODE_SIZE;
75                         s->sum_num++;
76                         dbg_summary("inode (%u) added to summary\n",
77                                                 je32_to_cpu(item->i.inode));
78                         break;
79                 case JFFS2_NODETYPE_DIRENT:
80                         s->sum_size += JFFS2_SUMMARY_DIRENT_SIZE(item->d.nsize);
81                         s->sum_num++;
82                         dbg_summary("dirent (%u) added to summary\n",
83                                                 je32_to_cpu(item->d.ino));
84                         break;
85 #ifdef CONFIG_JFFS2_FS_XATTR
86                 case JFFS2_NODETYPE_XATTR:
87                         s->sum_size += JFFS2_SUMMARY_XATTR_SIZE;
88                         s->sum_num++;
89                         dbg_summary("xattr (xid=%u, version=%u) added to summary\n",
90                                     je32_to_cpu(item->x.xid), je32_to_cpu(item->x.version));
91                         break;
92                 case JFFS2_NODETYPE_XREF:
93                         s->sum_size += JFFS2_SUMMARY_XREF_SIZE;
94                         s->sum_num++;
95                         dbg_summary("xref added to summary\n");
96                         break;
97 #endif
98                 default:
99                         JFFS2_WARNING("UNKNOWN node type %u\n",
100                                             je16_to_cpu(item->u.nodetype));
101                         return 1;
102         }
103         return 0;
104 }
105
106
107 /* The following 3 functions are called from scan.c to collect summary info for not closed jeb */
108
109 int jffs2_sum_add_padding_mem(struct jffs2_summary *s, uint32_t size)
110 {
111         dbg_summary("called with %u\n", size);
112         s->sum_padded += size;
113         return 0;
114 }
115
116 int jffs2_sum_add_inode_mem(struct jffs2_summary *s, struct jffs2_raw_inode *ri,
117                                 uint32_t ofs)
118 {
119         struct jffs2_sum_inode_mem *temp = kmalloc(sizeof(struct jffs2_sum_inode_mem), GFP_KERNEL);
120
121         if (!temp)
122                 return -ENOMEM;
123
124         temp->nodetype = ri->nodetype;
125         temp->inode = ri->ino;
126         temp->version = ri->version;
127         temp->offset = cpu_to_je32(ofs); /* relative offset from the begining of the jeb */
128         temp->totlen = ri->totlen;
129         temp->next = NULL;
130
131         return jffs2_sum_add_mem(s, (union jffs2_sum_mem *)temp);
132 }
133
134 int jffs2_sum_add_dirent_mem(struct jffs2_summary *s, struct jffs2_raw_dirent *rd,
135                                 uint32_t ofs)
136 {
137         struct jffs2_sum_dirent_mem *temp =
138                 kmalloc(sizeof(struct jffs2_sum_dirent_mem) + rd->nsize, GFP_KERNEL);
139
140         if (!temp)
141                 return -ENOMEM;
142
143         temp->nodetype = rd->nodetype;
144         temp->totlen = rd->totlen;
145         temp->offset = cpu_to_je32(ofs);        /* relative from the begining of the jeb */
146         temp->pino = rd->pino;
147         temp->version = rd->version;
148         temp->ino = rd->ino;
149         temp->nsize = rd->nsize;
150         temp->type = rd->type;
151         temp->next = NULL;
152
153         memcpy(temp->name, rd->name, rd->nsize);
154
155         return jffs2_sum_add_mem(s, (union jffs2_sum_mem *)temp);
156 }
157
158 #ifdef CONFIG_JFFS2_FS_XATTR
159 int jffs2_sum_add_xattr_mem(struct jffs2_summary *s, struct jffs2_raw_xattr *rx, uint32_t ofs)
160 {
161         struct jffs2_sum_xattr_mem *temp;
162
163         temp = kmalloc(sizeof(struct jffs2_sum_xattr_mem), GFP_KERNEL);
164         if (!temp)
165                 return -ENOMEM;
166
167         temp->nodetype = rx->nodetype;
168         temp->xid = rx->xid;
169         temp->version = rx->version;
170         temp->offset = cpu_to_je32(ofs);
171         temp->totlen = rx->totlen;
172         temp->next = NULL;
173
174         return jffs2_sum_add_mem(s, (union jffs2_sum_mem *)temp);
175 }
176
177 int jffs2_sum_add_xref_mem(struct jffs2_summary *s, struct jffs2_raw_xref *rr, uint32_t ofs)
178 {
179         struct jffs2_sum_xref_mem *temp;
180
181         temp = kmalloc(sizeof(struct jffs2_sum_xref_mem), GFP_KERNEL);
182         if (!temp)
183                 return -ENOMEM;
184
185         temp->nodetype = rr->nodetype;
186         temp->offset = cpu_to_je32(ofs);
187         temp->next = NULL;
188
189         return jffs2_sum_add_mem(s, (union jffs2_sum_mem *)temp);
190 }
191 #endif
192 /* Cleanup every collected summary information */
193
194 static void jffs2_sum_clean_collected(struct jffs2_summary *s)
195 {
196         union jffs2_sum_mem *temp;
197
198         if (!s->sum_list_head) {
199                 dbg_summary("already empty\n");
200         }
201         while (s->sum_list_head) {
202                 temp = s->sum_list_head;
203                 s->sum_list_head = s->sum_list_head->u.next;
204                 kfree(temp);
205         }
206         s->sum_list_tail = NULL;
207         s->sum_padded = 0;
208         s->sum_num = 0;
209 }
210
211 void jffs2_sum_reset_collected(struct jffs2_summary *s)
212 {
213         dbg_summary("called\n");
214         jffs2_sum_clean_collected(s);
215         s->sum_size = 0;
216 }
217
218 void jffs2_sum_disable_collecting(struct jffs2_summary *s)
219 {
220         dbg_summary("called\n");
221         jffs2_sum_clean_collected(s);
222         s->sum_size = JFFS2_SUMMARY_NOSUM_SIZE;
223 }
224
225 int jffs2_sum_is_disabled(struct jffs2_summary *s)
226 {
227         return (s->sum_size == JFFS2_SUMMARY_NOSUM_SIZE);
228 }
229
230 /* Move the collected summary information into sb (called from scan.c) */
231
232 void jffs2_sum_move_collected(struct jffs2_sb_info *c, struct jffs2_summary *s)
233 {
234         dbg_summary("oldsize=0x%x oldnum=%u => newsize=0x%x newnum=%u\n",
235                                 c->summary->sum_size, c->summary->sum_num,
236                                 s->sum_size, s->sum_num);
237
238         c->summary->sum_size = s->sum_size;
239         c->summary->sum_num = s->sum_num;
240         c->summary->sum_padded = s->sum_padded;
241         c->summary->sum_list_head = s->sum_list_head;
242         c->summary->sum_list_tail = s->sum_list_tail;
243
244         s->sum_list_head = s->sum_list_tail = NULL;
245 }
246
247 /* Called from wbuf.c to collect writed node info */
248
249 int jffs2_sum_add_kvec(struct jffs2_sb_info *c, const struct kvec *invecs,
250                                 unsigned long count, uint32_t ofs)
251 {
252         union jffs2_node_union *node;
253         struct jffs2_eraseblock *jeb;
254
255         node = invecs[0].iov_base;
256         jeb = &c->blocks[ofs / c->sector_size];
257         ofs -= jeb->offset;
258
259         switch (je16_to_cpu(node->u.nodetype)) {
260                 case JFFS2_NODETYPE_INODE: {
261                         struct jffs2_sum_inode_mem *temp =
262                                 kmalloc(sizeof(struct jffs2_sum_inode_mem), GFP_KERNEL);
263
264                         if (!temp)
265                                 goto no_mem;
266
267                         temp->nodetype = node->i.nodetype;
268                         temp->inode = node->i.ino;
269                         temp->version = node->i.version;
270                         temp->offset = cpu_to_je32(ofs);
271                         temp->totlen = node->i.totlen;
272                         temp->next = NULL;
273
274                         return jffs2_sum_add_mem(c->summary, (union jffs2_sum_mem *)temp);
275                 }
276
277                 case JFFS2_NODETYPE_DIRENT: {
278                         struct jffs2_sum_dirent_mem *temp =
279                                 kmalloc(sizeof(struct jffs2_sum_dirent_mem) + node->d.nsize, GFP_KERNEL);
280
281                         if (!temp)
282                                 goto no_mem;
283
284                         temp->nodetype = node->d.nodetype;
285                         temp->totlen = node->d.totlen;
286                         temp->offset = cpu_to_je32(ofs);
287                         temp->pino = node->d.pino;
288                         temp->version = node->d.version;
289                         temp->ino = node->d.ino;
290                         temp->nsize = node->d.nsize;
291                         temp->type = node->d.type;
292                         temp->next = NULL;
293
294                         switch (count) {
295                                 case 1:
296                                         memcpy(temp->name,node->d.name,node->d.nsize);
297                                         break;
298
299                                 case 2:
300                                         memcpy(temp->name,invecs[1].iov_base,node->d.nsize);
301                                         break;
302
303                                 default:
304                                         BUG();  /* impossible count value */
305                                         break;
306                         }
307
308                         return jffs2_sum_add_mem(c->summary, (union jffs2_sum_mem *)temp);
309                 }
310 #ifdef CONFIG_JFFS2_FS_XATTR
311                 case JFFS2_NODETYPE_XATTR: {
312                         struct jffs2_sum_xattr_mem *temp;
313                         if (je32_to_cpu(node->x.version) == 0xffffffff)
314                                 return 0;
315                         temp = kmalloc(sizeof(struct jffs2_sum_xattr_mem), GFP_KERNEL);
316                         if (!temp)
317                                 goto no_mem;
318
319                         temp->nodetype = node->x.nodetype;
320                         temp->xid = node->x.xid;
321                         temp->version = node->x.version;
322                         temp->totlen = node->x.totlen;
323                         temp->offset = cpu_to_je32(ofs);
324                         temp->next = NULL;
325
326                         return jffs2_sum_add_mem(c->summary, (union jffs2_sum_mem *)temp);
327                 }
328                 case JFFS2_NODETYPE_XREF: {
329                         struct jffs2_sum_xref_mem *temp;
330
331                         if (je32_to_cpu(node->r.ino) == 0xffffffff
332                             && je32_to_cpu(node->r.xid) == 0xffffffff)
333                                 return 0;
334                         temp = kmalloc(sizeof(struct jffs2_sum_xref_mem), GFP_KERNEL);
335                         if (!temp)
336                                 goto no_mem;
337                         temp->nodetype = node->r.nodetype;
338                         temp->offset = cpu_to_je32(ofs);
339                         temp->next = NULL;
340
341                         return jffs2_sum_add_mem(c->summary, (union jffs2_sum_mem *)temp);
342                 }
343 #endif
344                 case JFFS2_NODETYPE_PADDING:
345                         dbg_summary("node PADDING\n");
346                         c->summary->sum_padded += je32_to_cpu(node->u.totlen);
347                         break;
348
349                 case JFFS2_NODETYPE_CLEANMARKER:
350                         dbg_summary("node CLEANMARKER\n");
351                         break;
352
353                 case JFFS2_NODETYPE_SUMMARY:
354                         dbg_summary("node SUMMARY\n");
355                         break;
356
357                 default:
358                         /* If you implement a new node type you should also implement
359                            summary support for it or disable summary.
360                         */
361                         BUG();
362                         break;
363         }
364
365         return 0;
366
367 no_mem:
368         JFFS2_WARNING("MEMORY ALLOCATION ERROR!");
369         return -ENOMEM;
370 }
371
372 static struct jffs2_raw_node_ref *alloc_ref_at(struct jffs2_sb_info *c, struct jffs2_eraseblock *jeb,
373                                                uint32_t offset)
374 {
375         struct jffs2_raw_node_ref *ref;
376         /* If there was a gap, mark it dirty */
377         if (offset > c->sector_size - jeb->free_size) {
378                 int ret = jffs2_scan_dirty_space(c, jeb, offset - (c->sector_size - jeb->free_size));
379                 if (ret)
380                         return NULL;
381         }
382         ref = jffs2_alloc_raw_node_ref();
383         if (!ref)
384                 return NULL;
385
386         ref->flash_offset = jeb->offset + offset;
387         return ref;
388 }
389
390 /* Process the stored summary information - helper function for jffs2_sum_scan_sumnode() */
391
392 static int jffs2_sum_process_sum_data(struct jffs2_sb_info *c, struct jffs2_eraseblock *jeb,
393                                 struct jffs2_raw_summary *summary, uint32_t *pseudo_random)
394 {
395         struct jffs2_raw_node_ref *raw;
396         struct jffs2_inode_cache *ic;
397         struct jffs2_full_dirent *fd;
398         void *sp;
399         int i, ino;
400         int err;
401
402         sp = summary->sum;
403
404         for (i=0; i<je32_to_cpu(summary->sum_num); i++) {
405                 dbg_summary("processing summary index %d\n", i);
406
407                 switch (je16_to_cpu(((struct jffs2_sum_unknown_flash *)sp)->nodetype)) {
408                         case JFFS2_NODETYPE_INODE: {
409                                 struct jffs2_sum_inode_flash *spi;
410                                 spi = sp;
411
412                                 ino = je32_to_cpu(spi->inode);
413
414                                 dbg_summary("Inode at 0x%08x-0x%08x\n",
415                                             jeb->offset + je32_to_cpu(spi->offset),
416                                             jeb->offset + je32_to_cpu(spi->offset) + je32_to_cpu(spu->totlen));
417
418                                 raw = alloc_ref_at(c, jeb, je32_to_cpu(spi->offset));
419                                 if (!raw) {
420                                         JFFS2_NOTICE("allocation of node reference failed\n");
421                                         return -ENOMEM;
422                                 }
423
424                                 ic = jffs2_scan_make_ino_cache(c, ino);
425                                 if (!ic) {
426                                         JFFS2_NOTICE("scan_make_ino_cache failed\n");
427                                         jffs2_free_raw_node_ref(raw);
428                                         return -ENOMEM;
429                                 }
430
431                                 raw->flash_offset |= REF_UNCHECKED;
432
433                                 jffs2_link_node_ref(c, jeb, raw, PAD(je32_to_cpu(spi->totlen)), ic);
434
435                                 *pseudo_random += je32_to_cpu(spi->version);
436
437                                 sp += JFFS2_SUMMARY_INODE_SIZE;
438
439                                 break;
440                         }
441
442                         case JFFS2_NODETYPE_DIRENT: {
443                                 struct jffs2_sum_dirent_flash *spd;
444                                 spd = sp;
445
446                                 dbg_summary("Dirent at 0x%08x\n",
447                                             jeb->offset + je32_to_cpu(spd->offset),
448                                             jeb->offset + je32_to_cpu(spd->offset) + je32_to_cpu(spd->totlen));
449
450
451                                 fd = jffs2_alloc_full_dirent(spd->nsize+1);
452                                 if (!fd)
453                                         return -ENOMEM;
454
455                                 memcpy(&fd->name, spd->name, spd->nsize);
456                                 fd->name[spd->nsize] = 0;
457
458                                 raw = alloc_ref_at(c, jeb, je32_to_cpu(spd->offset));
459                                 if (!raw) {
460                                         jffs2_free_full_dirent(fd);
461                                         JFFS2_NOTICE("allocation of node reference failed\n");
462                                         return -ENOMEM;
463                                 }
464
465                                 ic = jffs2_scan_make_ino_cache(c, je32_to_cpu(spd->pino));
466                                 if (!ic) {
467                                         jffs2_free_full_dirent(fd);
468                                         jffs2_free_raw_node_ref(raw);
469                                         return -ENOMEM;
470                                 }
471
472                                 raw->flash_offset |= REF_PRISTINE;
473                                 jffs2_link_node_ref(c, jeb, raw, PAD(je32_to_cpu(spd->totlen)), ic);
474
475                                 fd->raw = raw;
476                                 fd->next = NULL;
477                                 fd->version = je32_to_cpu(spd->version);
478                                 fd->ino = je32_to_cpu(spd->ino);
479                                 fd->nhash = full_name_hash(fd->name, spd->nsize);
480                                 fd->type = spd->type;
481
482                                 jffs2_add_fd_to_list(c, fd, &ic->scan_dents);
483
484                                 *pseudo_random += je32_to_cpu(spd->version);
485
486                                 sp += JFFS2_SUMMARY_DIRENT_SIZE(spd->nsize);
487
488                                 break;
489                         }
490 #ifdef CONFIG_JFFS2_FS_XATTR
491                         case JFFS2_NODETYPE_XATTR: {
492                                 struct jffs2_xattr_datum *xd;
493                                 struct jffs2_sum_xattr_flash *spx;
494
495                                 spx = (struct jffs2_sum_xattr_flash *)sp;
496                                 dbg_summary("xattr at %#08x-%#08x (xid=%u, version=%u)\n", 
497                                             jeb->offset + je32_to_cpu(spx->offset),
498                                             jeb->offset + je32_to_cpu(spx->offset) + je32_to_cpu(spx->totlen),
499                                             je32_to_cpu(spx->xid), je32_to_cpu(spx->version));
500                                 raw = alloc_ref_at(c, jeb, je32_to_cpu(spx->offset));
501                                 if (!raw) {
502                                         JFFS2_NOTICE("allocation of node reference failed\n");
503                                         return -ENOMEM;
504                                 }
505                                 xd = jffs2_setup_xattr_datum(c, je32_to_cpu(spx->xid),
506                                                                 je32_to_cpu(spx->version));
507                                 if (IS_ERR(xd)) {
508                                         jffs2_free_raw_node_ref(raw);
509                                         if (PTR_ERR(xd) == -EEXIST) {
510                                                 /* a newer version of xd exists */
511                                                 if ((err = jffs2_scan_dirty_space(c, jeb, je32_to_cpu(spx->totlen))))
512                                                         return err;
513                                                 sp += JFFS2_SUMMARY_XATTR_SIZE;
514                                                 break;
515                                         }
516                                         JFFS2_NOTICE("allocation of xattr_datum failed\n");
517                                         return PTR_ERR(xd);
518                                 }
519                                 xd->node = raw;
520
521                                 raw->flash_offset |= REF_UNCHECKED;
522
523                                 jffs2_link_node_ref(c, jeb, raw, PAD(je32_to_cpu(spx->totlen)), NULL);
524                                 /* FIXME */ raw->next_in_ino = (void *)xd;
525
526                                 *pseudo_random += je32_to_cpu(spx->xid);
527                                 sp += JFFS2_SUMMARY_XATTR_SIZE;
528
529                                 break;
530                         }
531                         case JFFS2_NODETYPE_XREF: {
532                                 struct jffs2_xattr_ref *ref;
533                                 struct jffs2_sum_xref_flash *spr;
534
535                                 spr = (struct jffs2_sum_xref_flash *)sp;
536                                 dbg_summary("xref at %#08x-%#08x\n",
537                                             jeb->offset + je32_to_cpu(spr->offset),
538                                             jeb->offset + je32_to_cpu(spr->offset) + PAD(sizeof(struct jffs2_raw_xref)));
539
540                                 raw = alloc_ref_at(c, jeb, je32_to_cpu(spr->offset));
541                                 if (!raw) {
542                                         JFFS2_NOTICE("allocation of node reference failed\n");
543                                         return -ENOMEM;
544                                 }
545                                 ref = jffs2_alloc_xattr_ref();
546                                 if (!ref) {
547                                         JFFS2_NOTICE("allocation of xattr_datum failed\n");
548                                         jffs2_free_raw_node_ref(raw);
549                                         return -ENOMEM;
550                                 }
551                                 ref->ino = 0xfffffffe;
552                                 ref->xid = 0xfffffffd;
553                                 ref->node = raw;
554                                 ref->next = c->xref_temp;
555                                 c->xref_temp = ref;
556
557                                 raw->flash_offset |= REF_UNCHECKED;
558
559                                 jffs2_link_node_ref(c, jeb, raw, PAD(sizeof(struct jffs2_raw_xref)), NULL);
560                                 /* FIXME */ raw->next_in_ino = (void *)ref;
561
562                                 *pseudo_random += raw->flash_offset;
563                                 sp += JFFS2_SUMMARY_XREF_SIZE;
564
565                                 break;
566                         }
567 #endif
568                         default : {
569                                 uint16_t nodetype = je16_to_cpu(((struct jffs2_sum_unknown_flash *)sp)->nodetype);
570                                 JFFS2_WARNING("Unsupported node type %x found in summary! Exiting...\n", nodetype);
571                                 if ((nodetype & JFFS2_COMPAT_MASK) == JFFS2_FEATURE_INCOMPAT)
572                                         return -EIO;
573
574                                 /* For compatible node types, just fall back to the full scan */
575                                 c->wasted_size -= jeb->wasted_size;
576                                 c->free_size += c->sector_size - jeb->free_size;
577                                 c->used_size -= jeb->used_size;
578                                 c->dirty_size -= jeb->dirty_size;
579                                 jeb->wasted_size = jeb->used_size = jeb->dirty_size = 0;
580                                 jeb->free_size = c->sector_size;
581
582                                 jffs2_free_all_node_refs(c, jeb);
583                                 return -ENOTRECOVERABLE;
584                         }
585                 }
586         }
587
588         return 0;
589 }
590
591 /* Process the summary node - called from jffs2_scan_eraseblock() */
592 int jffs2_sum_scan_sumnode(struct jffs2_sb_info *c, struct jffs2_eraseblock *jeb,
593                            struct jffs2_raw_summary *summary, uint32_t sumsize,
594                            uint32_t *pseudo_random)
595 {
596         struct jffs2_unknown_node crcnode;
597         struct jffs2_raw_node_ref *cache_ref;
598         int ret, ofs;
599         uint32_t crc;
600         int err;
601
602         ofs = c->sector_size - sumsize;
603
604         dbg_summary("summary found for 0x%08x at 0x%08x (0x%x bytes)\n",
605                     jeb->offset, jeb->offset + ofs, sumsize);
606
607         /* OK, now check for node validity and CRC */
608         crcnode.magic = cpu_to_je16(JFFS2_MAGIC_BITMASK);
609         crcnode.nodetype = cpu_to_je16(JFFS2_NODETYPE_SUMMARY);
610         crcnode.totlen = summary->totlen;
611         crc = crc32(0, &crcnode, sizeof(crcnode)-4);
612
613         if (je32_to_cpu(summary->hdr_crc) != crc) {
614                 dbg_summary("Summary node header is corrupt (bad CRC or "
615                                 "no summary at all)\n");
616                 goto crc_err;
617         }
618
619         if (je32_to_cpu(summary->totlen) != sumsize) {
620                 dbg_summary("Summary node is corrupt (wrong erasesize?)\n");
621                 goto crc_err;
622         }
623
624         crc = crc32(0, summary, sizeof(struct jffs2_raw_summary)-8);
625
626         if (je32_to_cpu(summary->node_crc) != crc) {
627                 dbg_summary("Summary node is corrupt (bad CRC)\n");
628                 goto crc_err;
629         }
630
631         crc = crc32(0, summary->sum, sumsize - sizeof(struct jffs2_raw_summary));
632
633         if (je32_to_cpu(summary->sum_crc) != crc) {
634                 dbg_summary("Summary node data is corrupt (bad CRC)\n");
635                 goto crc_err;
636         }
637
638         if ( je32_to_cpu(summary->cln_mkr) ) {
639
640                 dbg_summary("Summary : CLEANMARKER node \n");
641
642                 if (je32_to_cpu(summary->cln_mkr) != c->cleanmarker_size) {
643                         dbg_summary("CLEANMARKER node has totlen 0x%x != normal 0x%x\n",
644                                 je32_to_cpu(summary->cln_mkr), c->cleanmarker_size);
645                         if ((err = jffs2_scan_dirty_space(c, jeb, PAD(je32_to_cpu(summary->cln_mkr)))))
646                                 return err;
647                 } else if (jeb->first_node) {
648                         dbg_summary("CLEANMARKER node not first node in block "
649                                         "(0x%08x)\n", jeb->offset);
650                         if ((err = jffs2_scan_dirty_space(c, jeb, PAD(je32_to_cpu(summary->cln_mkr)))))
651                                 return err;
652                 } else {
653                         struct jffs2_raw_node_ref *marker_ref = jffs2_alloc_raw_node_ref();
654
655                         if (!marker_ref) {
656                                 JFFS2_NOTICE("Failed to allocate node ref for clean marker\n");
657                                 return -ENOMEM;
658                         }
659
660                         marker_ref->flash_offset = jeb->offset | REF_NORMAL;
661
662                         jffs2_link_node_ref(c, jeb, marker_ref, je32_to_cpu(summary->cln_mkr), NULL);
663                 }
664         }
665
666         ret = jffs2_sum_process_sum_data(c, jeb, summary, pseudo_random);
667         /* -ENOTRECOVERABLE isn't a fatal error -- it means we should do a full
668            scan of this eraseblock. So return zero */
669         if (ret == -ENOTRECOVERABLE)
670                 return 0;
671         if (ret)
672                 return ret;             /* real error */
673
674         /* for PARANOIA_CHECK */
675         cache_ref = alloc_ref_at(c, jeb, ofs);
676
677         if (!cache_ref) {
678                 JFFS2_NOTICE("Failed to allocate node ref for cache\n");
679                 return -ENOMEM;
680         }
681
682         cache_ref->flash_offset |= REF_NORMAL;
683
684         jffs2_link_node_ref(c, jeb, cache_ref, sumsize, NULL);
685
686         if (unlikely(jeb->free_size)) {
687                 JFFS2_WARNING("Free size 0x%x bytes in eraseblock @0x%08x with summary?\n",
688                               jeb->free_size, jeb->offset);
689                 jeb->wasted_size += jeb->free_size;
690                 c->wasted_size += jeb->free_size;
691                 c->free_size -= jeb->free_size;
692                 jeb->free_size = 0;
693         }
694
695         return jffs2_scan_classify_jeb(c, jeb);
696
697 crc_err:
698         JFFS2_WARNING("Summary node crc error, skipping summary information.\n");
699
700         return 0;
701 }
702
703 /* Write summary data to flash - helper function for jffs2_sum_write_sumnode() */
704
705 static int jffs2_sum_write_data(struct jffs2_sb_info *c, struct jffs2_eraseblock *jeb,
706                                         uint32_t infosize, uint32_t datasize, int padsize)
707 {
708         struct jffs2_raw_summary isum;
709         union jffs2_sum_mem *temp;
710         struct jffs2_sum_marker *sm;
711         struct kvec vecs[2];
712         void *wpage;
713         int ret;
714         size_t retlen;
715
716         memset(c->summary->sum_buf, 0xff, datasize);
717         memset(&isum, 0, sizeof(isum));
718
719         isum.magic = cpu_to_je16(JFFS2_MAGIC_BITMASK);
720         isum.nodetype = cpu_to_je16(JFFS2_NODETYPE_SUMMARY);
721         isum.totlen = cpu_to_je32(infosize);
722         isum.hdr_crc = cpu_to_je32(crc32(0, &isum, sizeof(struct jffs2_unknown_node) - 4));
723         isum.padded = cpu_to_je32(c->summary->sum_padded);
724         isum.cln_mkr = cpu_to_je32(c->cleanmarker_size);
725         isum.sum_num = cpu_to_je32(c->summary->sum_num);
726         wpage = c->summary->sum_buf;
727
728         while (c->summary->sum_num) {
729                 temp = c->summary->sum_list_head;
730
731                 switch (je16_to_cpu(temp->u.nodetype)) {
732                         case JFFS2_NODETYPE_INODE: {
733                                 struct jffs2_sum_inode_flash *sino_ptr = wpage;
734
735                                 sino_ptr->nodetype = temp->i.nodetype;
736                                 sino_ptr->inode = temp->i.inode;
737                                 sino_ptr->version = temp->i.version;
738                                 sino_ptr->offset = temp->i.offset;
739                                 sino_ptr->totlen = temp->i.totlen;
740
741                                 wpage += JFFS2_SUMMARY_INODE_SIZE;
742
743                                 break;
744                         }
745
746                         case JFFS2_NODETYPE_DIRENT: {
747                                 struct jffs2_sum_dirent_flash *sdrnt_ptr = wpage;
748
749                                 sdrnt_ptr->nodetype = temp->d.nodetype;
750                                 sdrnt_ptr->totlen = temp->d.totlen;
751                                 sdrnt_ptr->offset = temp->d.offset;
752                                 sdrnt_ptr->pino = temp->d.pino;
753                                 sdrnt_ptr->version = temp->d.version;
754                                 sdrnt_ptr->ino = temp->d.ino;
755                                 sdrnt_ptr->nsize = temp->d.nsize;
756                                 sdrnt_ptr->type = temp->d.type;
757
758                                 memcpy(sdrnt_ptr->name, temp->d.name,
759                                                         temp->d.nsize);
760
761                                 wpage += JFFS2_SUMMARY_DIRENT_SIZE(temp->d.nsize);
762
763                                 break;
764                         }
765 #ifdef CONFIG_JFFS2_FS_XATTR
766                         case JFFS2_NODETYPE_XATTR: {
767                                 struct jffs2_sum_xattr_flash *sxattr_ptr = wpage;
768
769                                 temp = c->summary->sum_list_head;
770                                 sxattr_ptr->nodetype = temp->x.nodetype;
771                                 sxattr_ptr->xid = temp->x.xid;
772                                 sxattr_ptr->version = temp->x.version;
773                                 sxattr_ptr->offset = temp->x.offset;
774                                 sxattr_ptr->totlen = temp->x.totlen;
775
776                                 wpage += JFFS2_SUMMARY_XATTR_SIZE;
777                                 break;
778                         }
779                         case JFFS2_NODETYPE_XREF: {
780                                 struct jffs2_sum_xref_flash *sxref_ptr = wpage;
781
782                                 temp = c->summary->sum_list_head;
783                                 sxref_ptr->nodetype = temp->r.nodetype;
784                                 sxref_ptr->offset = temp->r.offset;
785
786                                 wpage += JFFS2_SUMMARY_XREF_SIZE;
787                                 break;
788                         }
789 #endif
790                         default : {
791                                 if ((je16_to_cpu(temp->u.nodetype) & JFFS2_COMPAT_MASK)
792                                     == JFFS2_FEATURE_RWCOMPAT_COPY) {
793                                         dbg_summary("Writing unknown RWCOMPAT_COPY node type %x\n",
794                                                     je16_to_cpu(temp->u.nodetype));
795                                         jffs2_sum_disable_collecting(c->summary);
796                                 } else {
797                                         BUG();  /* unknown node in summary information */
798                                 }
799                         }
800                 }
801
802                 c->summary->sum_list_head = temp->u.next;
803                 kfree(temp);
804
805                 c->summary->sum_num--;
806         }
807
808         jffs2_sum_reset_collected(c->summary);
809
810         wpage += padsize;
811
812         sm = wpage;
813         sm->offset = cpu_to_je32(c->sector_size - jeb->free_size);
814         sm->magic = cpu_to_je32(JFFS2_SUM_MAGIC);
815
816         isum.sum_crc = cpu_to_je32(crc32(0, c->summary->sum_buf, datasize));
817         isum.node_crc = cpu_to_je32(crc32(0, &isum, sizeof(isum) - 8));
818
819         vecs[0].iov_base = &isum;
820         vecs[0].iov_len = sizeof(isum);
821         vecs[1].iov_base = c->summary->sum_buf;
822         vecs[1].iov_len = datasize;
823
824         dbg_summary("JFFS2: writing out data to flash to pos : 0x%08x\n",
825                         jeb->offset + c->sector_size - jeb->free_size);
826
827         spin_unlock(&c->erase_completion_lock);
828         ret = jffs2_flash_writev(c, vecs, 2, jeb->offset + c->sector_size -
829                                 jeb->free_size, &retlen, 0);
830
831         if (ret || (retlen != infosize)) {
832                 struct jffs2_raw_node_ref *ref;
833
834                 JFFS2_WARNING("Write of %u bytes at 0x%08x failed. returned %d, retlen %zd\n",
835                         infosize, jeb->offset + c->sector_size - jeb->free_size, ret, retlen);
836
837                 /* Waste remaining space */
838                 ref = jffs2_alloc_raw_node_ref();
839                 if (ref) {
840                         spin_lock(&c->erase_completion_lock);
841
842                         ref->flash_offset = jeb->offset + c->sector_size - jeb->free_size;
843                         ref->flash_offset |= REF_OBSOLETE;
844
845                         jffs2_link_node_ref(c, jeb, ref, c->sector_size - jeb->free_size, NULL);
846                 }
847
848                 c->summary->sum_size = JFFS2_SUMMARY_NOSUM_SIZE;
849
850                 return 1;
851         }
852
853         spin_lock(&c->erase_completion_lock);
854
855         return 0;
856 }
857
858 /* Write out summary information - called from jffs2_do_reserve_space */
859
860 int jffs2_sum_write_sumnode(struct jffs2_sb_info *c)
861 {
862         struct jffs2_raw_node_ref *summary_ref;
863         int datasize, infosize, padsize, ret;
864         struct jffs2_eraseblock *jeb;
865
866         dbg_summary("called\n");
867
868         jeb = c->nextblock;
869
870         if (!c->summary->sum_num || !c->summary->sum_list_head) {
871                 JFFS2_WARNING("Empty summary info!!!\n");
872                 BUG();
873         }
874
875         datasize = c->summary->sum_size + sizeof(struct jffs2_sum_marker);
876         infosize = sizeof(struct jffs2_raw_summary) + datasize;
877         padsize = jeb->free_size - infosize;
878         infosize += padsize;
879         datasize += padsize;
880
881         /* Is there enough space for summary? */
882         if (padsize < 0) {
883                 /* don't try to write out summary for this jeb */
884                 jffs2_sum_disable_collecting(c->summary);
885
886                 JFFS2_WARNING("Not enough space for summary, padsize = %d\n", padsize);
887                 return 0;
888         }
889
890         ret = jffs2_sum_write_data(c, jeb, infosize, datasize, padsize);
891         if (ret)
892                 return 0; /* can't write out summary, block is marked as NOSUM_SIZE */
893
894         /* for ACCT_PARANOIA_CHECK */
895         spin_unlock(&c->erase_completion_lock);
896         summary_ref = jffs2_alloc_raw_node_ref();
897
898         if (!summary_ref) {
899                 JFFS2_NOTICE("Failed to allocate node ref for summary\n");
900                 return -ENOMEM;
901         }
902
903         summary_ref->flash_offset = (jeb->offset + c->sector_size - jeb->free_size) | REF_NORMAL;
904
905         spin_lock(&c->erase_completion_lock);
906         jffs2_link_node_ref(c, jeb, summary_ref, infosize, NULL);
907
908         return 0;
909 }