320a8a7a87d4bfb485bbfcf71c357cb7e266d498
[platform/kernel/u-boot.git] / fs / fat / fat_write.c
1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * fat_write.c
4  *
5  * R/W (V)FAT 12/16/32 filesystem implementation by Donggeun Kim
6  */
7
8 #include <common.h>
9 #include <command.h>
10 #include <config.h>
11 #include <fat.h>
12 #include <malloc.h>
13 #include <asm/byteorder.h>
14 #include <part.h>
15 #include <linux/ctype.h>
16 #include <div64.h>
17 #include <linux/math64.h>
18 #include "fat.c"
19
20 static void uppercase(char *str, int len)
21 {
22         int i;
23
24         for (i = 0; i < len; i++) {
25                 *str = toupper(*str);
26                 str++;
27         }
28 }
29
30 static int total_sector;
31 static int disk_write(__u32 block, __u32 nr_blocks, void *buf)
32 {
33         ulong ret;
34
35         if (!cur_dev)
36                 return -1;
37
38         if (cur_part_info.start + block + nr_blocks >
39                 cur_part_info.start + total_sector) {
40                 printf("error: overflow occurs\n");
41                 return -1;
42         }
43
44         ret = blk_dwrite(cur_dev, cur_part_info.start + block, nr_blocks, buf);
45         if (nr_blocks && ret == 0)
46                 return -1;
47
48         return ret;
49 }
50
51 /*
52  * Set short name in directory entry
53  */
54 static void set_name(dir_entry *dirent, const char *filename)
55 {
56         char s_name[VFAT_MAXLEN_BYTES];
57         char *period;
58         int period_location, len, i, ext_num;
59
60         if (filename == NULL)
61                 return;
62
63         len = strlen(filename);
64         if (len == 0)
65                 return;
66
67         strcpy(s_name, filename);
68         uppercase(s_name, len);
69
70         period = strchr(s_name, '.');
71         if (period == NULL) {
72                 period_location = len;
73                 ext_num = 0;
74         } else {
75                 period_location = period - s_name;
76                 ext_num = len - period_location - 1;
77         }
78
79         /* Pad spaces when the length of file name is shorter than eight */
80         if (period_location < 8) {
81                 memcpy(dirent->name, s_name, period_location);
82                 for (i = period_location; i < 8; i++)
83                         dirent->name[i] = ' ';
84         } else if (period_location == 8) {
85                 memcpy(dirent->name, s_name, period_location);
86         } else {
87                 memcpy(dirent->name, s_name, 6);
88                 dirent->name[6] = '~';
89                 dirent->name[7] = '1';
90         }
91
92         if (ext_num < 3) {
93                 memcpy(dirent->ext, s_name + period_location + 1, ext_num);
94                 for (i = ext_num; i < 3; i++)
95                         dirent->ext[i] = ' ';
96         } else
97                 memcpy(dirent->ext, s_name + period_location + 1, 3);
98
99         debug("name : %s\n", dirent->name);
100         debug("ext : %s\n", dirent->ext);
101 }
102
103 /*
104  * Write fat buffer into block device
105  */
106 static int flush_dirty_fat_buffer(fsdata *mydata)
107 {
108         int getsize = FATBUFBLOCKS;
109         __u32 fatlength = mydata->fatlength;
110         __u8 *bufptr = mydata->fatbuf;
111         __u32 startblock = mydata->fatbufnum * FATBUFBLOCKS;
112
113         debug("debug: evicting %d, dirty: %d\n", mydata->fatbufnum,
114               (int)mydata->fat_dirty);
115
116         if ((!mydata->fat_dirty) || (mydata->fatbufnum == -1))
117                 return 0;
118
119         /* Cap length if fatlength is not a multiple of FATBUFBLOCKS */
120         if (startblock + getsize > fatlength)
121                 getsize = fatlength - startblock;
122
123         startblock += mydata->fat_sect;
124
125         /* Write FAT buf */
126         if (disk_write(startblock, getsize, bufptr) < 0) {
127                 debug("error: writing FAT blocks\n");
128                 return -1;
129         }
130
131         if (mydata->fats == 2) {
132                 /* Update corresponding second FAT blocks */
133                 startblock += mydata->fatlength;
134                 if (disk_write(startblock, getsize, bufptr) < 0) {
135                         debug("error: writing second FAT blocks\n");
136                         return -1;
137                 }
138         }
139         mydata->fat_dirty = 0;
140
141         return 0;
142 }
143
144 /*
145  * Set the file name information from 'name' into 'slotptr',
146  */
147 static int str2slot(dir_slot *slotptr, const char *name, int *idx)
148 {
149         int j, end_idx = 0;
150
151         for (j = 0; j <= 8; j += 2) {
152                 if (name[*idx] == 0x00) {
153                         slotptr->name0_4[j] = 0;
154                         slotptr->name0_4[j + 1] = 0;
155                         end_idx++;
156                         goto name0_4;
157                 }
158                 slotptr->name0_4[j] = name[*idx];
159                 (*idx)++;
160                 end_idx++;
161         }
162         for (j = 0; j <= 10; j += 2) {
163                 if (name[*idx] == 0x00) {
164                         slotptr->name5_10[j] = 0;
165                         slotptr->name5_10[j + 1] = 0;
166                         end_idx++;
167                         goto name5_10;
168                 }
169                 slotptr->name5_10[j] = name[*idx];
170                 (*idx)++;
171                 end_idx++;
172         }
173         for (j = 0; j <= 2; j += 2) {
174                 if (name[*idx] == 0x00) {
175                         slotptr->name11_12[j] = 0;
176                         slotptr->name11_12[j + 1] = 0;
177                         end_idx++;
178                         goto name11_12;
179                 }
180                 slotptr->name11_12[j] = name[*idx];
181                 (*idx)++;
182                 end_idx++;
183         }
184
185         if (name[*idx] == 0x00)
186                 return 1;
187
188         return 0;
189 /* Not used characters are filled with 0xff 0xff */
190 name0_4:
191         for (; end_idx < 5; end_idx++) {
192                 slotptr->name0_4[end_idx * 2] = 0xff;
193                 slotptr->name0_4[end_idx * 2 + 1] = 0xff;
194         }
195         end_idx = 5;
196 name5_10:
197         end_idx -= 5;
198         for (; end_idx < 6; end_idx++) {
199                 slotptr->name5_10[end_idx * 2] = 0xff;
200                 slotptr->name5_10[end_idx * 2 + 1] = 0xff;
201         }
202         end_idx = 11;
203 name11_12:
204         end_idx -= 11;
205         for (; end_idx < 2; end_idx++) {
206                 slotptr->name11_12[end_idx * 2] = 0xff;
207                 slotptr->name11_12[end_idx * 2 + 1] = 0xff;
208         }
209
210         return 1;
211 }
212
213 static int new_dir_table(fat_itr *itr);
214 static int flush_dir(fat_itr *itr);
215
216 /*
217  * Fill dir_slot entries with appropriate name, id, and attr
218  * 'itr' will point to a next entry
219  */
220 static int
221 fill_dir_slot(fat_itr *itr, const char *l_name)
222 {
223         __u8 temp_dir_slot_buffer[MAX_LFN_SLOT * sizeof(dir_slot)];
224         dir_slot *slotptr = (dir_slot *)temp_dir_slot_buffer;
225         __u8 counter = 0, checksum;
226         int idx = 0, ret;
227
228         /* Get short file name checksum value */
229         checksum = mkcksum(itr->dent->name, itr->dent->ext);
230
231         do {
232                 memset(slotptr, 0x00, sizeof(dir_slot));
233                 ret = str2slot(slotptr, l_name, &idx);
234                 slotptr->id = ++counter;
235                 slotptr->attr = ATTR_VFAT;
236                 slotptr->alias_checksum = checksum;
237                 slotptr++;
238         } while (ret == 0);
239
240         slotptr--;
241         slotptr->id |= LAST_LONG_ENTRY_MASK;
242
243         while (counter >= 1) {
244                 memcpy(itr->dent, slotptr, sizeof(dir_slot));
245                 slotptr--;
246                 counter--;
247
248                 if (itr->remaining == 0)
249                         flush_dir(itr);
250
251                 /* allocate a cluster for more entries */
252                 if (!fat_itr_next(itr))
253                         if (!itr->dent &&
254                             (!itr->is_root || itr->fsdata->fatsize == 32) &&
255                             new_dir_table(itr))
256                                 return -1;
257         }
258
259         return 0;
260 }
261
262 /*
263  * Set the entry at index 'entry' in a FAT (12/16/32) table.
264  */
265 static int set_fatent_value(fsdata *mydata, __u32 entry, __u32 entry_value)
266 {
267         __u32 bufnum, offset, off16;
268         __u16 val1, val2;
269
270         switch (mydata->fatsize) {
271         case 32:
272                 bufnum = entry / FAT32BUFSIZE;
273                 offset = entry - bufnum * FAT32BUFSIZE;
274                 break;
275         case 16:
276                 bufnum = entry / FAT16BUFSIZE;
277                 offset = entry - bufnum * FAT16BUFSIZE;
278                 break;
279         case 12:
280                 bufnum = entry / FAT12BUFSIZE;
281                 offset = entry - bufnum * FAT12BUFSIZE;
282                 break;
283         default:
284                 /* Unsupported FAT size */
285                 return -1;
286         }
287
288         /* Read a new block of FAT entries into the cache. */
289         if (bufnum != mydata->fatbufnum) {
290                 int getsize = FATBUFBLOCKS;
291                 __u8 *bufptr = mydata->fatbuf;
292                 __u32 fatlength = mydata->fatlength;
293                 __u32 startblock = bufnum * FATBUFBLOCKS;
294
295                 /* Cap length if fatlength is not a multiple of FATBUFBLOCKS */
296                 if (startblock + getsize > fatlength)
297                         getsize = fatlength - startblock;
298
299                 if (flush_dirty_fat_buffer(mydata) < 0)
300                         return -1;
301
302                 startblock += mydata->fat_sect;
303
304                 if (disk_read(startblock, getsize, bufptr) < 0) {
305                         debug("Error reading FAT blocks\n");
306                         return -1;
307                 }
308                 mydata->fatbufnum = bufnum;
309         }
310
311         /* Mark as dirty */
312         mydata->fat_dirty = 1;
313
314         /* Set the actual entry */
315         switch (mydata->fatsize) {
316         case 32:
317                 ((__u32 *) mydata->fatbuf)[offset] = cpu_to_le32(entry_value);
318                 break;
319         case 16:
320                 ((__u16 *) mydata->fatbuf)[offset] = cpu_to_le16(entry_value);
321                 break;
322         case 12:
323                 off16 = (offset * 3) / 4;
324
325                 switch (offset & 0x3) {
326                 case 0:
327                         val1 = cpu_to_le16(entry_value) & 0xfff;
328                         ((__u16 *)mydata->fatbuf)[off16] &= ~0xfff;
329                         ((__u16 *)mydata->fatbuf)[off16] |= val1;
330                         break;
331                 case 1:
332                         val1 = cpu_to_le16(entry_value) & 0xf;
333                         val2 = (cpu_to_le16(entry_value) >> 4) & 0xff;
334
335                         ((__u16 *)mydata->fatbuf)[off16] &= ~0xf000;
336                         ((__u16 *)mydata->fatbuf)[off16] |= (val1 << 12);
337
338                         ((__u16 *)mydata->fatbuf)[off16 + 1] &= ~0xff;
339                         ((__u16 *)mydata->fatbuf)[off16 + 1] |= val2;
340                         break;
341                 case 2:
342                         val1 = cpu_to_le16(entry_value) & 0xff;
343                         val2 = (cpu_to_le16(entry_value) >> 8) & 0xf;
344
345                         ((__u16 *)mydata->fatbuf)[off16] &= ~0xff00;
346                         ((__u16 *)mydata->fatbuf)[off16] |= (val1 << 8);
347
348                         ((__u16 *)mydata->fatbuf)[off16 + 1] &= ~0xf;
349                         ((__u16 *)mydata->fatbuf)[off16 + 1] |= val2;
350                         break;
351                 case 3:
352                         val1 = cpu_to_le16(entry_value) & 0xfff;
353                         ((__u16 *)mydata->fatbuf)[off16] &= ~0xfff0;
354                         ((__u16 *)mydata->fatbuf)[off16] |= (val1 << 4);
355                         break;
356                 default:
357                         break;
358                 }
359
360                 break;
361         default:
362                 return -1;
363         }
364
365         return 0;
366 }
367
368 /*
369  * Determine the next free cluster after 'entry' in a FAT (12/16/32) table
370  * and link it to 'entry'. EOC marker is not set on returned entry.
371  */
372 static __u32 determine_fatent(fsdata *mydata, __u32 entry)
373 {
374         __u32 next_fat, next_entry = entry + 1;
375
376         while (1) {
377                 next_fat = get_fatent(mydata, next_entry);
378                 if (next_fat == 0) {
379                         /* found free entry, link to entry */
380                         set_fatent_value(mydata, entry, next_entry);
381                         break;
382                 }
383                 next_entry++;
384         }
385         debug("FAT%d: entry: %08x, entry_value: %04x\n",
386                mydata->fatsize, entry, next_entry);
387
388         return next_entry;
389 }
390
391 /**
392  * set_sectors() - write data to sectors
393  *
394  * Write 'size' bytes from 'buffer' into the specified sector.
395  *
396  * @mydata:     data to be written
397  * @startsect:  sector to be written to
398  * @buffer:     data to be written
399  * @size:       bytes to be written (but not more than the size of a cluster)
400  * Return:      0 on success, -1 otherwise
401  */
402 static int
403 set_sectors(fsdata *mydata, u32 startsect, u8 *buffer, u32 size)
404 {
405         u32 nsects = 0;
406         int ret;
407
408         debug("startsect: %d\n", startsect);
409
410         if ((unsigned long)buffer & (ARCH_DMA_MINALIGN - 1)) {
411                 ALLOC_CACHE_ALIGN_BUFFER(__u8, tmpbuf, mydata->sect_size);
412
413                 debug("FAT: Misaligned buffer address (%p)\n", buffer);
414
415                 while (size >= mydata->sect_size) {
416                         memcpy(tmpbuf, buffer, mydata->sect_size);
417                         ret = disk_write(startsect++, 1, tmpbuf);
418                         if (ret != 1) {
419                                 debug("Error writing data (got %d)\n", ret);
420                                 return -1;
421                         }
422
423                         buffer += mydata->sect_size;
424                         size -= mydata->sect_size;
425                 }
426         } else if (size >= mydata->sect_size) {
427                 nsects = size / mydata->sect_size;
428                 ret = disk_write(startsect, nsects, buffer);
429                 if (ret != nsects) {
430                         debug("Error writing data (got %d)\n", ret);
431                         return -1;
432                 }
433
434                 startsect += nsects;
435                 buffer += nsects * mydata->sect_size;
436                 size -= nsects * mydata->sect_size;
437         }
438
439         if (size) {
440                 ALLOC_CACHE_ALIGN_BUFFER(__u8, tmpbuf, mydata->sect_size);
441                 /* Do not leak content of stack */
442                 memset(tmpbuf, 0, mydata->sect_size);
443                 memcpy(tmpbuf, buffer, size);
444                 ret = disk_write(startsect, 1, tmpbuf);
445                 if (ret != 1) {
446                         debug("Error writing data (got %d)\n", ret);
447                         return -1;
448                 }
449         }
450
451         return 0;
452 }
453
454 /**
455  * set_cluster() - write data to cluster
456  *
457  * Write 'size' bytes from 'buffer' into the specified cluster.
458  *
459  * @mydata:     data to be written
460  * @clustnum:   cluster to be written to
461  * @buffer:     data to be written
462  * @size:       bytes to be written (but not more than the size of a cluster)
463  * Return:      0 on success, -1 otherwise
464  */
465 static int
466 set_cluster(fsdata *mydata, u32 clustnum, u8 *buffer, u32 size)
467 {
468         return set_sectors(mydata, clust_to_sect(mydata, clustnum),
469                            buffer, size);
470 }
471
472 static int
473 flush_dir(fat_itr *itr)
474 {
475         fsdata *mydata = itr->fsdata;
476         u32 startsect, sect_offset, nsects;
477
478         if (!itr->is_root || mydata->fatsize == 32)
479                 return set_cluster(mydata, itr->clust, itr->block,
480                                    mydata->clust_size * mydata->sect_size);
481
482         sect_offset = itr->clust * mydata->clust_size;
483         startsect = mydata->rootdir_sect + sect_offset;
484         /* do not write past the end of rootdir */
485         nsects = min_t(u32, mydata->clust_size,
486                        mydata->rootdir_size - sect_offset);
487
488         return set_sectors(mydata, startsect, itr->block,
489                            nsects * mydata->sect_size);
490 }
491
492 static __u8 tmpbuf_cluster[MAX_CLUSTSIZE] __aligned(ARCH_DMA_MINALIGN);
493
494 /*
495  * Read and modify data on existing and consecutive cluster blocks
496  */
497 static int
498 get_set_cluster(fsdata *mydata, __u32 clustnum, loff_t pos, __u8 *buffer,
499                 loff_t size, loff_t *gotsize)
500 {
501         unsigned int bytesperclust = mydata->clust_size * mydata->sect_size;
502         __u32 startsect;
503         loff_t wsize;
504         int clustcount, i, ret;
505
506         *gotsize = 0;
507         if (!size)
508                 return 0;
509
510         assert(pos < bytesperclust);
511         startsect = clust_to_sect(mydata, clustnum);
512
513         debug("clustnum: %d, startsect: %d, pos: %lld\n",
514               clustnum, startsect, pos);
515
516         /* partial write at beginning */
517         if (pos) {
518                 wsize = min(bytesperclust - pos, size);
519                 ret = disk_read(startsect, mydata->clust_size, tmpbuf_cluster);
520                 if (ret != mydata->clust_size) {
521                         debug("Error reading data (got %d)\n", ret);
522                         return -1;
523                 }
524
525                 memcpy(tmpbuf_cluster + pos, buffer, wsize);
526                 ret = disk_write(startsect, mydata->clust_size, tmpbuf_cluster);
527                 if (ret != mydata->clust_size) {
528                         debug("Error writing data (got %d)\n", ret);
529                         return -1;
530                 }
531
532                 size -= wsize;
533                 buffer += wsize;
534                 *gotsize += wsize;
535
536                 startsect += mydata->clust_size;
537
538                 if (!size)
539                         return 0;
540         }
541
542         /* full-cluster write */
543         if (size >= bytesperclust) {
544                 clustcount = lldiv(size, bytesperclust);
545
546                 if (!((unsigned long)buffer & (ARCH_DMA_MINALIGN - 1))) {
547                         wsize = clustcount * bytesperclust;
548                         ret = disk_write(startsect,
549                                          clustcount * mydata->clust_size,
550                                          buffer);
551                         if (ret != clustcount * mydata->clust_size) {
552                                 debug("Error writing data (got %d)\n", ret);
553                                 return -1;
554                         }
555
556                         size -= wsize;
557                         buffer += wsize;
558                         *gotsize += wsize;
559
560                         startsect += clustcount * mydata->clust_size;
561                 } else {
562                         for (i = 0; i < clustcount; i++) {
563                                 memcpy(tmpbuf_cluster, buffer, bytesperclust);
564                                 ret = disk_write(startsect,
565                                                  mydata->clust_size,
566                                                  tmpbuf_cluster);
567                                 if (ret != mydata->clust_size) {
568                                         debug("Error writing data (got %d)\n",
569                                               ret);
570                                         return -1;
571                                 }
572
573                                 size -= bytesperclust;
574                                 buffer += bytesperclust;
575                                 *gotsize += bytesperclust;
576
577                                 startsect += mydata->clust_size;
578                         }
579                 }
580         }
581
582         /* partial write at end */
583         if (size) {
584                 wsize = size;
585                 ret = disk_read(startsect, mydata->clust_size, tmpbuf_cluster);
586                 if (ret != mydata->clust_size) {
587                         debug("Error reading data (got %d)\n", ret);
588                         return -1;
589                 }
590                 memcpy(tmpbuf_cluster, buffer, wsize);
591                 ret = disk_write(startsect, mydata->clust_size, tmpbuf_cluster);
592                 if (ret != mydata->clust_size) {
593                         debug("Error writing data (got %d)\n", ret);
594                         return -1;
595                 }
596
597                 size -= wsize;
598                 buffer += wsize;
599                 *gotsize += wsize;
600         }
601
602         assert(!size);
603
604         return 0;
605 }
606
607 /*
608  * Find the first empty cluster
609  */
610 static int find_empty_cluster(fsdata *mydata)
611 {
612         __u32 fat_val, entry = 3;
613
614         while (1) {
615                 fat_val = get_fatent(mydata, entry);
616                 if (fat_val == 0)
617                         break;
618                 entry++;
619         }
620
621         return entry;
622 }
623
624 /*
625  * Allocate a cluster for additional directory entries
626  */
627 static int new_dir_table(fat_itr *itr)
628 {
629         fsdata *mydata = itr->fsdata;
630         int dir_newclust = 0;
631         unsigned int bytesperclust = mydata->clust_size * mydata->sect_size;
632
633         dir_newclust = find_empty_cluster(mydata);
634         set_fatent_value(mydata, itr->clust, dir_newclust);
635         if (mydata->fatsize == 32)
636                 set_fatent_value(mydata, dir_newclust, 0xffffff8);
637         else if (mydata->fatsize == 16)
638                 set_fatent_value(mydata, dir_newclust, 0xfff8);
639         else if (mydata->fatsize == 12)
640                 set_fatent_value(mydata, dir_newclust, 0xff8);
641
642         itr->clust = dir_newclust;
643         itr->next_clust = dir_newclust;
644
645         if (flush_dirty_fat_buffer(mydata) < 0)
646                 return -1;
647
648         memset(itr->block, 0x00, bytesperclust);
649
650         itr->dent = (dir_entry *)itr->block;
651         itr->last_cluster = 1;
652         itr->remaining = bytesperclust / sizeof(dir_entry) - 1;
653
654         return 0;
655 }
656
657 /*
658  * Set empty cluster from 'entry' to the end of a file
659  */
660 static int clear_fatent(fsdata *mydata, __u32 entry)
661 {
662         __u32 fat_val;
663
664         while (!CHECK_CLUST(entry, mydata->fatsize)) {
665                 fat_val = get_fatent(mydata, entry);
666                 if (fat_val != 0)
667                         set_fatent_value(mydata, entry, 0);
668                 else
669                         break;
670
671                 entry = fat_val;
672         }
673
674         /* Flush fat buffer */
675         if (flush_dirty_fat_buffer(mydata) < 0)
676                 return -1;
677
678         return 0;
679 }
680
681 /*
682  * Set start cluster in directory entry
683  */
684 static void set_start_cluster(const fsdata *mydata, dir_entry *dentptr,
685                               __u32 start_cluster)
686 {
687         if (mydata->fatsize == 32)
688                 dentptr->starthi =
689                         cpu_to_le16((start_cluster & 0xffff0000) >> 16);
690         dentptr->start = cpu_to_le16(start_cluster & 0xffff);
691 }
692
693 /*
694  * Check whether adding a file makes the file system to
695  * exceed the size of the block device
696  * Return -1 when overflow occurs, otherwise return 0
697  */
698 static int check_overflow(fsdata *mydata, __u32 clustnum, loff_t size)
699 {
700         __u32 startsect, sect_num, offset;
701
702         if (clustnum > 0)
703                 startsect = clust_to_sect(mydata, clustnum);
704         else
705                 startsect = mydata->rootdir_sect;
706
707         sect_num = div_u64_rem(size, mydata->sect_size, &offset);
708
709         if (offset != 0)
710                 sect_num++;
711
712         if (startsect + sect_num > total_sector)
713                 return -1;
714         return 0;
715 }
716
717 /*
718  * Write at most 'maxsize' bytes from 'buffer' into
719  * the file associated with 'dentptr'
720  * Update the number of bytes written in *gotsize and return 0
721  * or return -1 on fatal errors.
722  */
723 static int
724 set_contents(fsdata *mydata, dir_entry *dentptr, loff_t pos, __u8 *buffer,
725              loff_t maxsize, loff_t *gotsize)
726 {
727         unsigned int bytesperclust = mydata->clust_size * mydata->sect_size;
728         __u32 curclust = START(dentptr);
729         __u32 endclust = 0, newclust = 0;
730         u64 cur_pos, filesize;
731         loff_t offset, actsize, wsize;
732
733         *gotsize = 0;
734         filesize = pos + maxsize;
735
736         debug("%llu bytes\n", filesize);
737
738         if (!filesize) {
739                 if (!curclust)
740                         return 0;
741                 if (!CHECK_CLUST(curclust, mydata->fatsize) ||
742                     IS_LAST_CLUST(curclust, mydata->fatsize)) {
743                         clear_fatent(mydata, curclust);
744                         set_start_cluster(mydata, dentptr, 0);
745                         return 0;
746                 }
747                 debug("curclust: 0x%x\n", curclust);
748                 debug("Invalid FAT entry\n");
749                 return -1;
750         }
751
752         if (!curclust) {
753                 assert(pos == 0);
754                 goto set_clusters;
755         }
756
757         /* go to cluster at pos */
758         cur_pos = bytesperclust;
759         while (1) {
760                 if (pos <= cur_pos)
761                         break;
762                 if (IS_LAST_CLUST(curclust, mydata->fatsize))
763                         break;
764
765                 newclust = get_fatent(mydata, curclust);
766                 if (!IS_LAST_CLUST(newclust, mydata->fatsize) &&
767                     CHECK_CLUST(newclust, mydata->fatsize)) {
768                         debug("curclust: 0x%x\n", curclust);
769                         debug("Invalid FAT entry\n");
770                         return -1;
771                 }
772
773                 cur_pos += bytesperclust;
774                 curclust = newclust;
775         }
776         if (IS_LAST_CLUST(curclust, mydata->fatsize)) {
777                 assert(pos == cur_pos);
778                 goto set_clusters;
779         }
780
781         assert(pos < cur_pos);
782         cur_pos -= bytesperclust;
783
784         /* overwrite */
785         assert(IS_LAST_CLUST(curclust, mydata->fatsize) ||
786                !CHECK_CLUST(curclust, mydata->fatsize));
787
788         while (1) {
789                 /* search for allocated consecutive clusters */
790                 actsize = bytesperclust;
791                 endclust = curclust;
792                 while (1) {
793                         if (filesize <= (cur_pos + actsize))
794                                 break;
795
796                         newclust = get_fatent(mydata, endclust);
797
798                         if (IS_LAST_CLUST(newclust, mydata->fatsize))
799                                 break;
800                         if (CHECK_CLUST(newclust, mydata->fatsize)) {
801                                 debug("curclust: 0x%x\n", curclust);
802                                 debug("Invalid FAT entry\n");
803                                 return -1;
804                         }
805
806                         actsize += bytesperclust;
807                         endclust = newclust;
808                 }
809
810                 /* overwrite to <curclust..endclust> */
811                 if (pos < cur_pos)
812                         offset = 0;
813                 else
814                         offset = pos - cur_pos;
815                 wsize = min(cur_pos + actsize, filesize) - pos;
816                 if (get_set_cluster(mydata, curclust, offset,
817                                     buffer, wsize, &actsize)) {
818                         printf("Error get-and-setting cluster\n");
819                         return -1;
820                 }
821                 buffer += wsize;
822                 *gotsize += wsize;
823                 cur_pos += offset + wsize;
824
825                 if (filesize <= cur_pos)
826                         break;
827
828                 /* CHECK: newclust = get_fatent(mydata, endclust); */
829
830                 if (IS_LAST_CLUST(newclust, mydata->fatsize))
831                         /* no more clusters */
832                         break;
833
834                 curclust = newclust;
835         }
836
837         if (filesize <= cur_pos) {
838                 /* no more write */
839                 newclust = get_fatent(mydata, endclust);
840                 if (!IS_LAST_CLUST(newclust, mydata->fatsize)) {
841                         /* truncate the rest */
842                         clear_fatent(mydata, newclust);
843
844                         /* Mark end of file in FAT */
845                         if (mydata->fatsize == 12)
846                                 newclust = 0xfff;
847                         else if (mydata->fatsize == 16)
848                                 newclust = 0xffff;
849                         else if (mydata->fatsize == 32)
850                                 newclust = 0xfffffff;
851                         set_fatent_value(mydata, endclust, newclust);
852                 }
853
854                 return 0;
855         }
856
857         curclust = endclust;
858         filesize -= cur_pos;
859         assert(!do_div(cur_pos, bytesperclust));
860
861 set_clusters:
862         /* allocate and write */
863         assert(!pos);
864
865         /* Assure that curclust is valid */
866         if (!curclust) {
867                 curclust = find_empty_cluster(mydata);
868                 set_start_cluster(mydata, dentptr, curclust);
869         } else {
870                 newclust = get_fatent(mydata, curclust);
871
872                 if (IS_LAST_CLUST(newclust, mydata->fatsize)) {
873                         newclust = determine_fatent(mydata, curclust);
874                         set_fatent_value(mydata, curclust, newclust);
875                         curclust = newclust;
876                 } else {
877                         debug("error: something wrong\n");
878                         return -1;
879                 }
880         }
881
882         /* TODO: already partially written */
883         if (check_overflow(mydata, curclust, filesize)) {
884                 printf("Error: no space left: %llu\n", filesize);
885                 return -1;
886         }
887
888         actsize = bytesperclust;
889         endclust = curclust;
890         do {
891                 /* search for consecutive clusters */
892                 while (actsize < filesize) {
893                         newclust = determine_fatent(mydata, endclust);
894
895                         if ((newclust - 1) != endclust)
896                                 /* write to <curclust..endclust> */
897                                 goto getit;
898
899                         if (CHECK_CLUST(newclust, mydata->fatsize)) {
900                                 debug("newclust: 0x%x\n", newclust);
901                                 debug("Invalid FAT entry\n");
902                                 return 0;
903                         }
904                         endclust = newclust;
905                         actsize += bytesperclust;
906                 }
907
908                 /* set remaining bytes */
909                 actsize = filesize;
910                 if (set_cluster(mydata, curclust, buffer, (u32)actsize) != 0) {
911                         debug("error: writing cluster\n");
912                         return -1;
913                 }
914                 *gotsize += actsize;
915
916                 /* Mark end of file in FAT */
917                 if (mydata->fatsize == 12)
918                         newclust = 0xfff;
919                 else if (mydata->fatsize == 16)
920                         newclust = 0xffff;
921                 else if (mydata->fatsize == 32)
922                         newclust = 0xfffffff;
923                 set_fatent_value(mydata, endclust, newclust);
924
925                 return 0;
926 getit:
927                 if (set_cluster(mydata, curclust, buffer, (u32)actsize) != 0) {
928                         debug("error: writing cluster\n");
929                         return -1;
930                 }
931                 *gotsize += actsize;
932                 filesize -= actsize;
933                 buffer += actsize;
934
935                 if (CHECK_CLUST(newclust, mydata->fatsize)) {
936                         debug("newclust: 0x%x\n", newclust);
937                         debug("Invalid FAT entry\n");
938                         return 0;
939                 }
940                 actsize = bytesperclust;
941                 curclust = endclust = newclust;
942         } while (1);
943
944         return 0;
945 }
946
947 /*
948  * Fill dir_entry
949  */
950 static void fill_dentry(fsdata *mydata, dir_entry *dentptr,
951         const char *filename, __u32 start_cluster, __u32 size, __u8 attr)
952 {
953         set_start_cluster(mydata, dentptr, start_cluster);
954         dentptr->size = cpu_to_le32(size);
955
956         dentptr->attr = attr;
957
958         set_name(dentptr, filename);
959 }
960
961 /*
962  * Find a directory entry based on filename or start cluster number
963  * If the directory entry is not found,
964  * the new position for writing a directory entry will be returned
965  */
966 static dir_entry *find_directory_entry(fat_itr *itr, char *filename)
967 {
968         int match = 0;
969
970         while (fat_itr_next(itr)) {
971                 /* check both long and short name: */
972                 if (!strcasecmp(filename, itr->name))
973                         match = 1;
974                 else if (itr->name != itr->s_name &&
975                          !strcasecmp(filename, itr->s_name))
976                         match = 1;
977
978                 if (!match)
979                         continue;
980
981                 if (itr->dent->name[0] == '\0')
982                         return NULL;
983                 else
984                         return itr->dent;
985         }
986
987         /* allocate a cluster for more entries */
988         if (!itr->dent &&
989             (!itr->is_root || itr->fsdata->fatsize == 32) &&
990             new_dir_table(itr))
991                 /* indicate that allocating dent failed */
992                 itr->dent = NULL;
993
994         return NULL;
995 }
996
997 static int split_filename(char *filename, char **dirname, char **basename)
998 {
999         char *p, *last_slash, *last_slash_cont;
1000
1001 again:
1002         p = filename;
1003         last_slash = NULL;
1004         last_slash_cont = NULL;
1005         while (*p) {
1006                 if (ISDIRDELIM(*p)) {
1007                         last_slash = p;
1008                         last_slash_cont = p;
1009                         /* continuous slashes */
1010                         while (ISDIRDELIM(*p))
1011                                 last_slash_cont = p++;
1012                         if (!*p)
1013                                 break;
1014                 }
1015                 p++;
1016         }
1017
1018         if (last_slash) {
1019                 if (last_slash_cont == (filename + strlen(filename) - 1)) {
1020                         /* remove trailing slashes */
1021                         *last_slash = '\0';
1022                         goto again;
1023                 }
1024
1025                 if (last_slash == filename) {
1026                         /* avoid ""(null) directory */
1027                         *dirname = "/";
1028                 } else {
1029                         *last_slash = '\0';
1030                         *dirname = filename;
1031                 }
1032
1033                 *last_slash_cont = '\0';
1034                 *basename = last_slash_cont + 1;
1035         } else {
1036                 *dirname = "/"; /* root by default */
1037                 *basename = filename;
1038         }
1039
1040         return 0;
1041 }
1042
1043 /**
1044  * normalize_longname() - check long file name and convert to lower case
1045  *
1046  * We assume here that the FAT file system is using an 8bit code page.
1047  * Linux typically uses CP437, EDK2 assumes CP1250.
1048  *
1049  * @l_filename: preallocated buffer receiving the normalized name
1050  * @filename:   filename to normalize
1051  * Return:      0 on success, -1 on failure
1052  */
1053 static int normalize_longname(char *l_filename, const char *filename)
1054 {
1055         const char *p, illegal[] = "<>:\"/\\|?*";
1056
1057         if (strlen(filename) >= VFAT_MAXLEN_BYTES)
1058                 return -1;
1059
1060         for (p = filename; *p; ++p) {
1061                 if ((unsigned char)*p < 0x20)
1062                         return -1;
1063                 if (strchr(illegal, *p))
1064                         return -1;
1065         }
1066
1067         strcpy(l_filename, filename);
1068         downcase(l_filename, VFAT_MAXLEN_BYTES);
1069
1070         return 0;
1071 }
1072
1073 int file_fat_write_at(const char *filename, loff_t pos, void *buffer,
1074                       loff_t size, loff_t *actwrite)
1075 {
1076         dir_entry *retdent;
1077         fsdata datablock = { .fatbuf = NULL, };
1078         fsdata *mydata = &datablock;
1079         fat_itr *itr = NULL;
1080         int ret = -1;
1081         char *filename_copy, *parent, *basename;
1082         char l_filename[VFAT_MAXLEN_BYTES];
1083
1084         debug("writing %s\n", filename);
1085
1086         filename_copy = strdup(filename);
1087         if (!filename_copy)
1088                 return -ENOMEM;
1089
1090         split_filename(filename_copy, &parent, &basename);
1091         if (!strlen(basename)) {
1092                 ret = -EINVAL;
1093                 goto exit;
1094         }
1095
1096         filename = basename;
1097         if (normalize_longname(l_filename, filename)) {
1098                 printf("FAT: illegal filename (%s)\n", filename);
1099                 ret = -EINVAL;
1100                 goto exit;
1101         }
1102
1103         itr = malloc_cache_aligned(sizeof(fat_itr));
1104         if (!itr) {
1105                 ret = -ENOMEM;
1106                 goto exit;
1107         }
1108
1109         ret = fat_itr_root(itr, &datablock);
1110         if (ret)
1111                 goto exit;
1112
1113         total_sector = datablock.total_sect;
1114
1115         ret = fat_itr_resolve(itr, parent, TYPE_DIR);
1116         if (ret) {
1117                 printf("%s: doesn't exist (%d)\n", parent, ret);
1118                 goto exit;
1119         }
1120
1121         retdent = find_directory_entry(itr, l_filename);
1122
1123         if (retdent) {
1124                 if (fat_itr_isdir(itr)) {
1125                         ret = -EISDIR;
1126                         goto exit;
1127                 }
1128
1129                 /* A file exists */
1130                 if (pos == -1)
1131                         /* Append to the end */
1132                         pos = FAT2CPU32(retdent->size);
1133                 if (pos > retdent->size) {
1134                         /* No hole allowed */
1135                         ret = -EINVAL;
1136                         goto exit;
1137                 }
1138
1139                 /* Update file size in a directory entry */
1140                 retdent->size = cpu_to_le32(pos + size);
1141         } else {
1142                 /* Create a new file */
1143
1144                 if (itr->is_root) {
1145                         /* root dir cannot have "." or ".." */
1146                         if (!strcmp(l_filename, ".") ||
1147                             !strcmp(l_filename, "..")) {
1148                                 ret = -EINVAL;
1149                                 goto exit;
1150                         }
1151                 }
1152
1153                 if (!itr->dent) {
1154                         printf("Error: allocating new dir entry\n");
1155                         ret = -EIO;
1156                         goto exit;
1157                 }
1158
1159                 if (pos) {
1160                         /* No hole allowed */
1161                         ret = -EINVAL;
1162                         goto exit;
1163                 }
1164
1165                 memset(itr->dent, 0, sizeof(*itr->dent));
1166
1167                 /* Calculate checksum for short name */
1168                 set_name(itr->dent, filename);
1169
1170                 /* Set long name entries */
1171                 if (fill_dir_slot(itr, filename)) {
1172                         ret = -EIO;
1173                         goto exit;
1174                 }
1175
1176                 /* Set short name entry */
1177                 fill_dentry(itr->fsdata, itr->dent, filename, 0, size, 0x20);
1178
1179                 retdent = itr->dent;
1180         }
1181
1182         ret = set_contents(mydata, retdent, pos, buffer, size, actwrite);
1183         if (ret < 0) {
1184                 printf("Error: writing contents\n");
1185                 ret = -EIO;
1186                 goto exit;
1187         }
1188         debug("attempt to write 0x%llx bytes\n", *actwrite);
1189
1190         /* Flush fat buffer */
1191         ret = flush_dirty_fat_buffer(mydata);
1192         if (ret) {
1193                 printf("Error: flush fat buffer\n");
1194                 ret = -EIO;
1195                 goto exit;
1196         }
1197
1198         /* Write directory table to device */
1199         ret = flush_dir(itr);
1200         if (ret) {
1201                 printf("Error: writing directory entry\n");
1202                 ret = -EIO;
1203         }
1204
1205 exit:
1206         free(filename_copy);
1207         free(mydata->fatbuf);
1208         free(itr);
1209         return ret;
1210 }
1211
1212 int file_fat_write(const char *filename, void *buffer, loff_t offset,
1213                    loff_t maxsize, loff_t *actwrite)
1214 {
1215         return file_fat_write_at(filename, offset, buffer, maxsize, actwrite);
1216 }
1217
1218 static int fat_dir_entries(fat_itr *itr)
1219 {
1220         fat_itr *dirs;
1221         fsdata fsdata = { .fatbuf = NULL, }, *mydata = &fsdata;
1222                                                 /* for FATBUFSIZE */
1223         int count;
1224
1225         dirs = malloc_cache_aligned(sizeof(fat_itr));
1226         if (!dirs) {
1227                 debug("Error: allocating memory\n");
1228                 count = -ENOMEM;
1229                 goto exit;
1230         }
1231
1232         /* duplicate fsdata */
1233         fat_itr_child(dirs, itr);
1234         fsdata = *dirs->fsdata;
1235
1236         /* allocate local fat buffer */
1237         fsdata.fatbuf = malloc_cache_aligned(FATBUFSIZE);
1238         if (!fsdata.fatbuf) {
1239                 debug("Error: allocating memory\n");
1240                 count = -ENOMEM;
1241                 goto exit;
1242         }
1243         fsdata.fatbufnum = -1;
1244         dirs->fsdata = &fsdata;
1245
1246         for (count = 0; fat_itr_next(dirs); count++)
1247                 ;
1248
1249 exit:
1250         free(fsdata.fatbuf);
1251         free(dirs);
1252         return count;
1253 }
1254
1255 static int delete_dentry(fat_itr *itr)
1256 {
1257         fsdata *mydata = itr->fsdata;
1258         dir_entry *dentptr = itr->dent;
1259
1260         /* free cluster blocks */
1261         clear_fatent(mydata, START(dentptr));
1262         if (flush_dirty_fat_buffer(mydata) < 0) {
1263                 printf("Error: flush fat buffer\n");
1264                 return -EIO;
1265         }
1266
1267         /*
1268          * update a directory entry
1269          * TODO:
1270          *  - long file name support
1271          *  - find and mark the "new" first invalid entry as name[0]=0x00
1272          */
1273         memset(dentptr, 0, sizeof(*dentptr));
1274         dentptr->name[0] = 0xe5;
1275
1276         if (flush_dir(itr)) {
1277                 printf("error: writing directory entry\n");
1278                 return -EIO;
1279         }
1280
1281         return 0;
1282 }
1283
1284 int fat_unlink(const char *filename)
1285 {
1286         fsdata fsdata = { .fatbuf = NULL, };
1287         fat_itr *itr = NULL;
1288         int n_entries, ret;
1289         char *filename_copy, *dirname, *basename;
1290
1291         filename_copy = strdup(filename);
1292         if (!filename_copy) {
1293                 printf("Error: allocating memory\n");
1294                 ret = -ENOMEM;
1295                 goto exit;
1296         }
1297         split_filename(filename_copy, &dirname, &basename);
1298
1299         if (!strcmp(dirname, "/") && !strcmp(basename, "")) {
1300                 printf("Error: cannot remove root\n");
1301                 ret = -EINVAL;
1302                 goto exit;
1303         }
1304
1305         itr = malloc_cache_aligned(sizeof(fat_itr));
1306         if (!itr) {
1307                 printf("Error: allocating memory\n");
1308                 ret = -ENOMEM;
1309                 goto exit;
1310         }
1311
1312         ret = fat_itr_root(itr, &fsdata);
1313         if (ret)
1314                 goto exit;
1315
1316         total_sector = fsdata.total_sect;
1317
1318         ret = fat_itr_resolve(itr, dirname, TYPE_DIR);
1319         if (ret) {
1320                 printf("%s: doesn't exist (%d)\n", dirname, ret);
1321                 ret = -ENOENT;
1322                 goto exit;
1323         }
1324
1325         if (!find_directory_entry(itr, basename)) {
1326                 printf("%s: doesn't exist\n", basename);
1327                 ret = -ENOENT;
1328                 goto exit;
1329         }
1330
1331         if (fat_itr_isdir(itr)) {
1332                 n_entries = fat_dir_entries(itr);
1333                 if (n_entries < 0) {
1334                         ret = n_entries;
1335                         goto exit;
1336                 }
1337                 if (n_entries > 2) {
1338                         printf("Error: directory is not empty: %d\n",
1339                                n_entries);
1340                         ret = -EINVAL;
1341                         goto exit;
1342                 }
1343         }
1344
1345         ret = delete_dentry(itr);
1346
1347 exit:
1348         free(fsdata.fatbuf);
1349         free(itr);
1350         free(filename_copy);
1351
1352         return ret;
1353 }
1354
1355 int fat_mkdir(const char *new_dirname)
1356 {
1357         dir_entry *retdent;
1358         fsdata datablock = { .fatbuf = NULL, };
1359         fsdata *mydata = &datablock;
1360         fat_itr *itr = NULL;
1361         char *dirname_copy, *parent, *dirname;
1362         char l_dirname[VFAT_MAXLEN_BYTES];
1363         int ret = -1;
1364         loff_t actwrite;
1365         unsigned int bytesperclust;
1366         dir_entry *dotdent = NULL;
1367
1368         dirname_copy = strdup(new_dirname);
1369         if (!dirname_copy)
1370                 goto exit;
1371
1372         split_filename(dirname_copy, &parent, &dirname);
1373         if (!strlen(dirname)) {
1374                 ret = -EINVAL;
1375                 goto exit;
1376         }
1377
1378         if (normalize_longname(l_dirname, dirname)) {
1379                 printf("FAT: illegal filename (%s)\n", dirname);
1380                 ret = -EINVAL;
1381                 goto exit;
1382         }
1383
1384         itr = malloc_cache_aligned(sizeof(fat_itr));
1385         if (!itr) {
1386                 ret = -ENOMEM;
1387                 goto exit;
1388         }
1389
1390         ret = fat_itr_root(itr, &datablock);
1391         if (ret)
1392                 goto exit;
1393
1394         total_sector = datablock.total_sect;
1395
1396         ret = fat_itr_resolve(itr, parent, TYPE_DIR);
1397         if (ret) {
1398                 printf("%s: doesn't exist (%d)\n", parent, ret);
1399                 goto exit;
1400         }
1401
1402         retdent = find_directory_entry(itr, l_dirname);
1403
1404         if (retdent) {
1405                 printf("%s: already exists\n", l_dirname);
1406                 ret = -EEXIST;
1407                 goto exit;
1408         } else {
1409                 if (itr->is_root) {
1410                         /* root dir cannot have "." or ".." */
1411                         if (!strcmp(l_dirname, ".") ||
1412                             !strcmp(l_dirname, "..")) {
1413                                 ret = -EINVAL;
1414                                 goto exit;
1415                         }
1416                 }
1417
1418                 if (!itr->dent) {
1419                         printf("Error: allocating new dir entry\n");
1420                         ret = -EIO;
1421                         goto exit;
1422                 }
1423
1424                 memset(itr->dent, 0, sizeof(*itr->dent));
1425
1426                 /* Set short name to set alias checksum field in dir_slot */
1427                 set_name(itr->dent, dirname);
1428                 fill_dir_slot(itr, dirname);
1429
1430                 /* Set attribute as archive for regular file */
1431                 fill_dentry(itr->fsdata, itr->dent, dirname, 0, 0,
1432                             ATTR_DIR | ATTR_ARCH);
1433
1434                 retdent = itr->dent;
1435         }
1436
1437         /* Default entries */
1438         bytesperclust = mydata->clust_size * mydata->sect_size;
1439         dotdent = malloc_cache_aligned(bytesperclust);
1440         if (!dotdent) {
1441                 ret = -ENOMEM;
1442                 goto exit;
1443         }
1444         memset(dotdent, 0, bytesperclust);
1445
1446         memcpy(dotdent[0].name, ".       ", 8);
1447         memcpy(dotdent[0].ext, "   ", 3);
1448         dotdent[0].attr = ATTR_DIR | ATTR_ARCH;
1449
1450         memcpy(dotdent[1].name, "..      ", 8);
1451         memcpy(dotdent[1].ext, "   ", 3);
1452         dotdent[1].attr = ATTR_DIR | ATTR_ARCH;
1453         set_start_cluster(mydata, &dotdent[1], itr->start_clust);
1454
1455         ret = set_contents(mydata, retdent, 0, (__u8 *)dotdent,
1456                            bytesperclust, &actwrite);
1457         if (ret < 0) {
1458                 printf("Error: writing contents\n");
1459                 goto exit;
1460         }
1461         /* Write twice for "." */
1462         set_start_cluster(mydata, &dotdent[0], START(retdent));
1463         ret = set_contents(mydata, retdent, 0, (__u8 *)dotdent,
1464                            bytesperclust, &actwrite);
1465         if (ret < 0) {
1466                 printf("Error: writing contents\n");
1467                 goto exit;
1468         }
1469
1470         /* Flush fat buffer */
1471         ret = flush_dirty_fat_buffer(mydata);
1472         if (ret) {
1473                 printf("Error: flush fat buffer\n");
1474                 goto exit;
1475         }
1476
1477         /* Write directory table to device */
1478         ret = flush_dir(itr);
1479         if (ret)
1480                 printf("Error: writing directory entry\n");
1481
1482 exit:
1483         free(dirname_copy);
1484         free(mydata->fatbuf);
1485         free(itr);
1486         free(dotdent);
1487         return ret;
1488 }