linux-user/elfload.c: Don't memset(NULL..) if malloc() failed
[qemu.git] / block / vvfat.c
blob8511fe523c9580fd1d7420916b0bc854cb66ebe6
1 /* vim:set shiftwidth=4 ts=8: */
2 /*
3 * QEMU Block driver for virtual VFAT (shadows a local directory)
5 * Copyright (c) 2004,2005 Johannes E. Schindelin
7 * Permission is hereby granted, free of charge, to any person obtaining a copy
8 * of this software and associated documentation files (the "Software"), to deal
9 * in the Software without restriction, including without limitation the rights
10 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
11 * copies of the Software, and to permit persons to whom the Software is
12 * furnished to do so, subject to the following conditions:
14 * The above copyright notice and this permission notice shall be included in
15 * all copies or substantial portions of the Software.
17 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
18 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
19 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
20 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
21 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
22 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
23 * THE SOFTWARE.
25 #include <sys/stat.h>
26 #include <dirent.h>
27 #include "qemu-common.h"
28 #include "block_int.h"
29 #include "module.h"
31 #ifndef S_IWGRP
32 #define S_IWGRP 0
33 #endif
34 #ifndef S_IWOTH
35 #define S_IWOTH 0
36 #endif
38 /* TODO: add ":bootsector=blabla.img:" */
39 /* LATER TODO: add automatic boot sector generation from
40 BOOTEASY.ASM and Ranish Partition Manager
41 Note that DOS assumes the system files to be the first files in the
42 file system (test if the boot sector still relies on that fact)! */
43 /* MAYBE TODO: write block-visofs.c */
44 /* TODO: call try_commit() only after a timeout */
46 /* #define DEBUG */
48 #ifdef DEBUG
50 #define DLOG(a) a
52 #undef stderr
53 #define stderr STDERR
54 FILE* stderr = NULL;
56 static void checkpoint(void);
58 #ifdef __MINGW32__
59 void nonono(const char* file, int line, const char* msg) {
60 fprintf(stderr, "Nonono! %s:%d %s\n", file, line, msg);
61 exit(-5);
63 #undef assert
64 #define assert(a) do {if (!(a)) nonono(__FILE__, __LINE__, #a);}while(0)
65 #endif
67 #else
69 #define DLOG(a)
71 #endif
73 /* dynamic array functions */
74 typedef struct array_t {
75 char* pointer;
76 unsigned int size,next,item_size;
77 } array_t;
79 static inline void array_init(array_t* array,unsigned int item_size)
81 array->pointer = NULL;
82 array->size=0;
83 array->next=0;
84 array->item_size=item_size;
87 static inline void array_free(array_t* array)
89 g_free(array->pointer);
90 array->size=array->next=0;
93 /* does not automatically grow */
94 static inline void* array_get(array_t* array,unsigned int index) {
95 assert(index < array->next);
96 return array->pointer + index * array->item_size;
99 static inline int array_ensure_allocated(array_t* array, int index)
101 if((index + 1) * array->item_size > array->size) {
102 int new_size = (index + 32) * array->item_size;
103 array->pointer = g_realloc(array->pointer, new_size);
104 if (!array->pointer)
105 return -1;
106 array->size = new_size;
107 array->next = index + 1;
110 return 0;
113 static inline void* array_get_next(array_t* array) {
114 unsigned int next = array->next;
115 void* result;
117 if (array_ensure_allocated(array, next) < 0)
118 return NULL;
120 array->next = next + 1;
121 result = array_get(array, next);
123 return result;
126 static inline void* array_insert(array_t* array,unsigned int index,unsigned int count) {
127 if((array->next+count)*array->item_size>array->size) {
128 int increment=count*array->item_size;
129 array->pointer=g_realloc(array->pointer,array->size+increment);
130 if(!array->pointer)
131 return NULL;
132 array->size+=increment;
134 memmove(array->pointer+(index+count)*array->item_size,
135 array->pointer+index*array->item_size,
136 (array->next-index)*array->item_size);
137 array->next+=count;
138 return array->pointer+index*array->item_size;
141 /* this performs a "roll", so that the element which was at index_from becomes
142 * index_to, but the order of all other elements is preserved. */
143 static inline int array_roll(array_t* array,int index_to,int index_from,int count)
145 char* buf;
146 char* from;
147 char* to;
148 int is;
150 if(!array ||
151 index_to<0 || index_to>=array->next ||
152 index_from<0 || index_from>=array->next)
153 return -1;
155 if(index_to==index_from)
156 return 0;
158 is=array->item_size;
159 from=array->pointer+index_from*is;
160 to=array->pointer+index_to*is;
161 buf=g_malloc(is*count);
162 memcpy(buf,from,is*count);
164 if(index_to<index_from)
165 memmove(to+is*count,to,from-to);
166 else
167 memmove(from,from+is*count,to-from);
169 memcpy(to,buf,is*count);
171 g_free(buf);
173 return 0;
176 static inline int array_remove_slice(array_t* array,int index, int count)
178 assert(index >=0);
179 assert(count > 0);
180 assert(index + count <= array->next);
181 if(array_roll(array,array->next-1,index,count))
182 return -1;
183 array->next -= count;
184 return 0;
187 static int array_remove(array_t* array,int index)
189 return array_remove_slice(array, index, 1);
192 /* return the index for a given member */
193 static int array_index(array_t* array, void* pointer)
195 size_t offset = (char*)pointer - array->pointer;
196 assert((offset % array->item_size) == 0);
197 assert(offset/array->item_size < array->next);
198 return offset/array->item_size;
201 /* These structures are used to fake a disk and the VFAT filesystem.
202 * For this reason we need to use QEMU_PACKED. */
204 typedef struct bootsector_t {
205 uint8_t jump[3];
206 uint8_t name[8];
207 uint16_t sector_size;
208 uint8_t sectors_per_cluster;
209 uint16_t reserved_sectors;
210 uint8_t number_of_fats;
211 uint16_t root_entries;
212 uint16_t total_sectors16;
213 uint8_t media_type;
214 uint16_t sectors_per_fat;
215 uint16_t sectors_per_track;
216 uint16_t number_of_heads;
217 uint32_t hidden_sectors;
218 uint32_t total_sectors;
219 union {
220 struct {
221 uint8_t drive_number;
222 uint8_t current_head;
223 uint8_t signature;
224 uint32_t id;
225 uint8_t volume_label[11];
226 } QEMU_PACKED fat16;
227 struct {
228 uint32_t sectors_per_fat;
229 uint16_t flags;
230 uint8_t major,minor;
231 uint32_t first_cluster_of_root_directory;
232 uint16_t info_sector;
233 uint16_t backup_boot_sector;
234 uint16_t ignored;
235 } QEMU_PACKED fat32;
236 } u;
237 uint8_t fat_type[8];
238 uint8_t ignored[0x1c0];
239 uint8_t magic[2];
240 } QEMU_PACKED bootsector_t;
242 typedef struct {
243 uint8_t head;
244 uint8_t sector;
245 uint8_t cylinder;
246 } mbr_chs_t;
248 typedef struct partition_t {
249 uint8_t attributes; /* 0x80 = bootable */
250 mbr_chs_t start_CHS;
251 uint8_t fs_type; /* 0x1 = FAT12, 0x6 = FAT16, 0xe = FAT16_LBA, 0xb = FAT32, 0xc = FAT32_LBA */
252 mbr_chs_t end_CHS;
253 uint32_t start_sector_long;
254 uint32_t length_sector_long;
255 } QEMU_PACKED partition_t;
257 typedef struct mbr_t {
258 uint8_t ignored[0x1b8];
259 uint32_t nt_id;
260 uint8_t ignored2[2];
261 partition_t partition[4];
262 uint8_t magic[2];
263 } QEMU_PACKED mbr_t;
265 typedef struct direntry_t {
266 uint8_t name[8];
267 uint8_t extension[3];
268 uint8_t attributes;
269 uint8_t reserved[2];
270 uint16_t ctime;
271 uint16_t cdate;
272 uint16_t adate;
273 uint16_t begin_hi;
274 uint16_t mtime;
275 uint16_t mdate;
276 uint16_t begin;
277 uint32_t size;
278 } QEMU_PACKED direntry_t;
280 /* this structure are used to transparently access the files */
282 typedef struct mapping_t {
283 /* begin is the first cluster, end is the last+1 */
284 uint32_t begin,end;
285 /* as s->directory is growable, no pointer may be used here */
286 unsigned int dir_index;
287 /* the clusters of a file may be in any order; this points to the first */
288 int first_mapping_index;
289 union {
290 /* offset is
291 * - the offset in the file (in clusters) for a file, or
292 * - the next cluster of the directory for a directory, and
293 * - the address of the buffer for a faked entry
295 struct {
296 uint32_t offset;
297 } file;
298 struct {
299 int parent_mapping_index;
300 int first_dir_index;
301 } dir;
302 } info;
303 /* path contains the full path, i.e. it always starts with s->path */
304 char* path;
306 enum { MODE_UNDEFINED = 0, MODE_NORMAL = 1, MODE_MODIFIED = 2,
307 MODE_DIRECTORY = 4, MODE_FAKED = 8,
308 MODE_DELETED = 16, MODE_RENAMED = 32 } mode;
309 int read_only;
310 } mapping_t;
312 #ifdef DEBUG
313 static void print_direntry(const struct direntry_t*);
314 static void print_mapping(const struct mapping_t* mapping);
315 #endif
317 /* here begins the real VVFAT driver */
319 typedef struct BDRVVVFATState {
320 CoMutex lock;
321 BlockDriverState* bs; /* pointer to parent */
322 unsigned int first_sectors_number; /* 1 for a single partition, 0x40 for a disk with partition table */
323 unsigned char first_sectors[0x40*0x200];
325 int fat_type; /* 16 or 32 */
326 array_t fat,directory,mapping;
328 unsigned int cluster_size;
329 unsigned int sectors_per_cluster;
330 unsigned int sectors_per_fat;
331 unsigned int sectors_of_root_directory;
332 uint32_t last_cluster_of_root_directory;
333 unsigned int faked_sectors; /* how many sectors are faked before file data */
334 uint32_t sector_count; /* total number of sectors of the partition */
335 uint32_t cluster_count; /* total number of clusters of this partition */
336 uint32_t max_fat_value;
338 int current_fd;
339 mapping_t* current_mapping;
340 unsigned char* cluster; /* points to current cluster */
341 unsigned char* cluster_buffer; /* points to a buffer to hold temp data */
342 unsigned int current_cluster;
344 /* write support */
345 BlockDriverState* write_target;
346 char* qcow_filename;
347 BlockDriverState* qcow;
348 void* fat2;
349 char* used_clusters;
350 array_t commits;
351 const char* path;
352 int downcase_short_names;
353 } BDRVVVFATState;
355 /* take the sector position spos and convert it to Cylinder/Head/Sector position
356 * if the position is outside the specified geometry, fill maximum value for CHS
357 * and return 1 to signal overflow.
359 static int sector2CHS(BlockDriverState* bs, mbr_chs_t * chs, int spos){
360 int head,sector;
361 sector = spos % (bs->secs); spos/= bs->secs;
362 head = spos % (bs->heads); spos/= bs->heads;
363 if(spos >= bs->cyls){
364 /* Overflow,
365 it happens if 32bit sector positions are used, while CHS is only 24bit.
366 Windows/Dos is said to take 1023/255/63 as nonrepresentable CHS */
367 chs->head = 0xFF;
368 chs->sector = 0xFF;
369 chs->cylinder = 0xFF;
370 return 1;
372 chs->head = (uint8_t)head;
373 chs->sector = (uint8_t)( (sector+1) | ((spos>>8)<<6) );
374 chs->cylinder = (uint8_t)spos;
375 return 0;
378 static void init_mbr(BDRVVVFATState* s)
380 /* TODO: if the files mbr.img and bootsect.img exist, use them */
381 mbr_t* real_mbr=(mbr_t*)s->first_sectors;
382 partition_t* partition = &(real_mbr->partition[0]);
383 int lba;
385 memset(s->first_sectors,0,512);
387 /* Win NT Disk Signature */
388 real_mbr->nt_id= cpu_to_le32(0xbe1afdfa);
390 partition->attributes=0x80; /* bootable */
392 /* LBA is used when partition is outside the CHS geometry */
393 lba = sector2CHS(s->bs, &partition->start_CHS, s->first_sectors_number-1);
394 lba|= sector2CHS(s->bs, &partition->end_CHS, s->sector_count);
396 /*LBA partitions are identified only by start/length_sector_long not by CHS*/
397 partition->start_sector_long =cpu_to_le32(s->first_sectors_number-1);
398 partition->length_sector_long=cpu_to_le32(s->sector_count - s->first_sectors_number+1);
400 /* FAT12/FAT16/FAT32 */
401 /* DOS uses different types when partition is LBA,
402 probably to prevent older versions from using CHS on them */
403 partition->fs_type= s->fat_type==12 ? 0x1:
404 s->fat_type==16 ? (lba?0xe:0x06):
405 /*fat_tyoe==32*/ (lba?0xc:0x0b);
407 real_mbr->magic[0]=0x55; real_mbr->magic[1]=0xaa;
410 /* direntry functions */
412 /* dest is assumed to hold 258 bytes, and pads with 0xffff up to next multiple of 26 */
413 static inline int short2long_name(char* dest,const char* src)
415 int i;
416 int len;
417 for(i=0;i<129 && src[i];i++) {
418 dest[2*i]=src[i];
419 dest[2*i+1]=0;
421 len=2*i;
422 dest[2*i]=dest[2*i+1]=0;
423 for(i=2*i+2;(i%26);i++)
424 dest[i]=0xff;
425 return len;
428 static inline direntry_t* create_long_filename(BDRVVVFATState* s,const char* filename)
430 char buffer[258];
431 int length=short2long_name(buffer,filename),
432 number_of_entries=(length+25)/26,i;
433 direntry_t* entry;
435 for(i=0;i<number_of_entries;i++) {
436 entry=array_get_next(&(s->directory));
437 entry->attributes=0xf;
438 entry->reserved[0]=0;
439 entry->begin=0;
440 entry->name[0]=(number_of_entries-i)|(i==0?0x40:0);
442 for(i=0;i<26*number_of_entries;i++) {
443 int offset=(i%26);
444 if(offset<10) offset=1+offset;
445 else if(offset<22) offset=14+offset-10;
446 else offset=28+offset-22;
447 entry=array_get(&(s->directory),s->directory.next-1-(i/26));
448 entry->name[offset]=buffer[i];
450 return array_get(&(s->directory),s->directory.next-number_of_entries);
453 static char is_free(const direntry_t* direntry)
455 return direntry->name[0]==0xe5 || direntry->name[0]==0x00;
458 static char is_volume_label(const direntry_t* direntry)
460 return direntry->attributes == 0x28;
463 static char is_long_name(const direntry_t* direntry)
465 return direntry->attributes == 0xf;
468 static char is_short_name(const direntry_t* direntry)
470 return !is_volume_label(direntry) && !is_long_name(direntry)
471 && !is_free(direntry);
474 static char is_directory(const direntry_t* direntry)
476 return direntry->attributes & 0x10 && direntry->name[0] != 0xe5;
479 static inline char is_dot(const direntry_t* direntry)
481 return is_short_name(direntry) && direntry->name[0] == '.';
484 static char is_file(const direntry_t* direntry)
486 return is_short_name(direntry) && !is_directory(direntry);
489 static inline uint32_t begin_of_direntry(const direntry_t* direntry)
491 return le16_to_cpu(direntry->begin)|(le16_to_cpu(direntry->begin_hi)<<16);
494 static inline uint32_t filesize_of_direntry(const direntry_t* direntry)
496 return le32_to_cpu(direntry->size);
499 static void set_begin_of_direntry(direntry_t* direntry, uint32_t begin)
501 direntry->begin = cpu_to_le16(begin & 0xffff);
502 direntry->begin_hi = cpu_to_le16((begin >> 16) & 0xffff);
505 /* fat functions */
507 static inline uint8_t fat_chksum(const direntry_t* entry)
509 uint8_t chksum=0;
510 int i;
512 for(i=0;i<11;i++) {
513 unsigned char c;
515 c = (i < 8) ? entry->name[i] : entry->extension[i-8];
516 chksum=(((chksum&0xfe)>>1)|((chksum&0x01)?0x80:0)) + c;
519 return chksum;
522 /* if return_time==0, this returns the fat_date, else the fat_time */
523 static uint16_t fat_datetime(time_t time,int return_time) {
524 struct tm* t;
525 #ifdef _WIN32
526 t=localtime(&time); /* this is not thread safe */
527 #else
528 struct tm t1;
529 t = &t1;
530 localtime_r(&time,t);
531 #endif
532 if(return_time)
533 return cpu_to_le16((t->tm_sec/2)|(t->tm_min<<5)|(t->tm_hour<<11));
534 return cpu_to_le16((t->tm_mday)|((t->tm_mon+1)<<5)|((t->tm_year-80)<<9));
537 static inline void fat_set(BDRVVVFATState* s,unsigned int cluster,uint32_t value)
539 if(s->fat_type==32) {
540 uint32_t* entry=array_get(&(s->fat),cluster);
541 *entry=cpu_to_le32(value);
542 } else if(s->fat_type==16) {
543 uint16_t* entry=array_get(&(s->fat),cluster);
544 *entry=cpu_to_le16(value&0xffff);
545 } else {
546 int offset = (cluster*3/2);
547 unsigned char* p = array_get(&(s->fat), offset);
548 switch (cluster&1) {
549 case 0:
550 p[0] = value&0xff;
551 p[1] = (p[1]&0xf0) | ((value>>8)&0xf);
552 break;
553 case 1:
554 p[0] = (p[0]&0xf) | ((value&0xf)<<4);
555 p[1] = (value>>4);
556 break;
561 static inline uint32_t fat_get(BDRVVVFATState* s,unsigned int cluster)
563 if(s->fat_type==32) {
564 uint32_t* entry=array_get(&(s->fat),cluster);
565 return le32_to_cpu(*entry);
566 } else if(s->fat_type==16) {
567 uint16_t* entry=array_get(&(s->fat),cluster);
568 return le16_to_cpu(*entry);
569 } else {
570 const uint8_t* x=(uint8_t*)(s->fat.pointer)+cluster*3/2;
571 return ((x[0]|(x[1]<<8))>>(cluster&1?4:0))&0x0fff;
575 static inline int fat_eof(BDRVVVFATState* s,uint32_t fat_entry)
577 if(fat_entry>s->max_fat_value-8)
578 return -1;
579 return 0;
582 static inline void init_fat(BDRVVVFATState* s)
584 if (s->fat_type == 12) {
585 array_init(&(s->fat),1);
586 array_ensure_allocated(&(s->fat),
587 s->sectors_per_fat * 0x200 * 3 / 2 - 1);
588 } else {
589 array_init(&(s->fat),(s->fat_type==32?4:2));
590 array_ensure_allocated(&(s->fat),
591 s->sectors_per_fat * 0x200 / s->fat.item_size - 1);
593 memset(s->fat.pointer,0,s->fat.size);
595 switch(s->fat_type) {
596 case 12: s->max_fat_value=0xfff; break;
597 case 16: s->max_fat_value=0xffff; break;
598 case 32: s->max_fat_value=0x0fffffff; break;
599 default: s->max_fat_value=0; /* error... */
604 /* TODO: in create_short_filename, 0xe5->0x05 is not yet handled! */
605 /* TODO: in parse_short_filename, 0x05->0xe5 is not yet handled! */
606 static inline direntry_t* create_short_and_long_name(BDRVVVFATState* s,
607 unsigned int directory_start, const char* filename, int is_dot)
609 int i,j,long_index=s->directory.next;
610 direntry_t* entry = NULL;
611 direntry_t* entry_long = NULL;
613 if(is_dot) {
614 entry=array_get_next(&(s->directory));
615 memset(entry->name,0x20,11);
616 memcpy(entry->name,filename,strlen(filename));
617 return entry;
620 entry_long=create_long_filename(s,filename);
622 i = strlen(filename);
623 for(j = i - 1; j>0 && filename[j]!='.';j--);
624 if (j > 0)
625 i = (j > 8 ? 8 : j);
626 else if (i > 8)
627 i = 8;
629 entry=array_get_next(&(s->directory));
630 memset(entry->name,0x20,11);
631 memcpy(entry->name, filename, i);
633 if(j > 0)
634 for (i = 0; i < 3 && filename[j+1+i]; i++)
635 entry->extension[i] = filename[j+1+i];
637 /* upcase & remove unwanted characters */
638 for(i=10;i>=0;i--) {
639 if(i==10 || i==7) for(;i>0 && entry->name[i]==' ';i--);
640 if(entry->name[i]<=' ' || entry->name[i]>0x7f
641 || strchr(".*?<>|\":/\\[];,+='",entry->name[i]))
642 entry->name[i]='_';
643 else if(entry->name[i]>='a' && entry->name[i]<='z')
644 entry->name[i]+='A'-'a';
647 /* mangle duplicates */
648 while(1) {
649 direntry_t* entry1=array_get(&(s->directory),directory_start);
650 int j;
652 for(;entry1<entry;entry1++)
653 if(!is_long_name(entry1) && !memcmp(entry1->name,entry->name,11))
654 break; /* found dupe */
655 if(entry1==entry) /* no dupe found */
656 break;
658 /* use all 8 characters of name */
659 if(entry->name[7]==' ') {
660 int j;
661 for(j=6;j>0 && entry->name[j]==' ';j--)
662 entry->name[j]='~';
665 /* increment number */
666 for(j=7;j>0 && entry->name[j]=='9';j--)
667 entry->name[j]='0';
668 if(j>0) {
669 if(entry->name[j]<'0' || entry->name[j]>'9')
670 entry->name[j]='0';
671 else
672 entry->name[j]++;
676 /* calculate checksum; propagate to long name */
677 if(entry_long) {
678 uint8_t chksum=fat_chksum(entry);
680 /* calculate anew, because realloc could have taken place */
681 entry_long=array_get(&(s->directory),long_index);
682 while(entry_long<entry && is_long_name(entry_long)) {
683 entry_long->reserved[1]=chksum;
684 entry_long++;
688 return entry;
692 * Read a directory. (the index of the corresponding mapping must be passed).
694 static int read_directory(BDRVVVFATState* s, int mapping_index)
696 mapping_t* mapping = array_get(&(s->mapping), mapping_index);
697 direntry_t* direntry;
698 const char* dirname = mapping->path;
699 int first_cluster = mapping->begin;
700 int parent_index = mapping->info.dir.parent_mapping_index;
701 mapping_t* parent_mapping = (mapping_t*)
702 (parent_index >= 0 ? array_get(&(s->mapping), parent_index) : NULL);
703 int first_cluster_of_parent = parent_mapping ? parent_mapping->begin : -1;
705 DIR* dir=opendir(dirname);
706 struct dirent* entry;
707 int i;
709 assert(mapping->mode & MODE_DIRECTORY);
711 if(!dir) {
712 mapping->end = mapping->begin;
713 return -1;
716 i = mapping->info.dir.first_dir_index =
717 first_cluster == 0 ? 0 : s->directory.next;
719 /* actually read the directory, and allocate the mappings */
720 while((entry=readdir(dir))) {
721 unsigned int length=strlen(dirname)+2+strlen(entry->d_name);
722 char* buffer;
723 direntry_t* direntry;
724 struct stat st;
725 int is_dot=!strcmp(entry->d_name,".");
726 int is_dotdot=!strcmp(entry->d_name,"..");
728 if(first_cluster == 0 && (is_dotdot || is_dot))
729 continue;
731 buffer=(char*)g_malloc(length);
732 snprintf(buffer,length,"%s/%s",dirname,entry->d_name);
734 if(stat(buffer,&st)<0) {
735 g_free(buffer);
736 continue;
739 /* create directory entry for this file */
740 direntry=create_short_and_long_name(s, i, entry->d_name,
741 is_dot || is_dotdot);
742 direntry->attributes=(S_ISDIR(st.st_mode)?0x10:0x20);
743 direntry->reserved[0]=direntry->reserved[1]=0;
744 direntry->ctime=fat_datetime(st.st_ctime,1);
745 direntry->cdate=fat_datetime(st.st_ctime,0);
746 direntry->adate=fat_datetime(st.st_atime,0);
747 direntry->begin_hi=0;
748 direntry->mtime=fat_datetime(st.st_mtime,1);
749 direntry->mdate=fat_datetime(st.st_mtime,0);
750 if(is_dotdot)
751 set_begin_of_direntry(direntry, first_cluster_of_parent);
752 else if(is_dot)
753 set_begin_of_direntry(direntry, first_cluster);
754 else
755 direntry->begin=0; /* do that later */
756 if (st.st_size > 0x7fffffff) {
757 fprintf(stderr, "File %s is larger than 2GB\n", buffer);
758 g_free(buffer);
759 closedir(dir);
760 return -2;
762 direntry->size=cpu_to_le32(S_ISDIR(st.st_mode)?0:st.st_size);
764 /* create mapping for this file */
765 if(!is_dot && !is_dotdot && (S_ISDIR(st.st_mode) || st.st_size)) {
766 s->current_mapping=(mapping_t*)array_get_next(&(s->mapping));
767 s->current_mapping->begin=0;
768 s->current_mapping->end=st.st_size;
770 * we get the direntry of the most recent direntry, which
771 * contains the short name and all the relevant information.
773 s->current_mapping->dir_index=s->directory.next-1;
774 s->current_mapping->first_mapping_index = -1;
775 if (S_ISDIR(st.st_mode)) {
776 s->current_mapping->mode = MODE_DIRECTORY;
777 s->current_mapping->info.dir.parent_mapping_index =
778 mapping_index;
779 } else {
780 s->current_mapping->mode = MODE_UNDEFINED;
781 s->current_mapping->info.file.offset = 0;
783 s->current_mapping->path=buffer;
784 s->current_mapping->read_only =
785 (st.st_mode & (S_IWUSR | S_IWGRP | S_IWOTH)) == 0;
788 closedir(dir);
790 /* fill with zeroes up to the end of the cluster */
791 while(s->directory.next%(0x10*s->sectors_per_cluster)) {
792 direntry_t* direntry=array_get_next(&(s->directory));
793 memset(direntry,0,sizeof(direntry_t));
796 /* TODO: if there are more entries, bootsector has to be adjusted! */
797 #define ROOT_ENTRIES (0x02 * 0x10 * s->sectors_per_cluster)
798 if (mapping_index == 0 && s->directory.next < ROOT_ENTRIES) {
799 /* root directory */
800 int cur = s->directory.next;
801 array_ensure_allocated(&(s->directory), ROOT_ENTRIES - 1);
802 s->directory.next = ROOT_ENTRIES;
803 memset(array_get(&(s->directory), cur), 0,
804 (ROOT_ENTRIES - cur) * sizeof(direntry_t));
807 /* reget the mapping, since s->mapping was possibly realloc()ed */
808 mapping = (mapping_t*)array_get(&(s->mapping), mapping_index);
809 first_cluster += (s->directory.next - mapping->info.dir.first_dir_index)
810 * 0x20 / s->cluster_size;
811 mapping->end = first_cluster;
813 direntry = (direntry_t*)array_get(&(s->directory), mapping->dir_index);
814 set_begin_of_direntry(direntry, mapping->begin);
816 return 0;
819 static inline uint32_t sector2cluster(BDRVVVFATState* s,off_t sector_num)
821 return (sector_num-s->faked_sectors)/s->sectors_per_cluster;
824 static inline off_t cluster2sector(BDRVVVFATState* s, uint32_t cluster_num)
826 return s->faked_sectors + s->sectors_per_cluster * cluster_num;
829 static int init_directories(BDRVVVFATState* s,
830 const char* dirname)
832 bootsector_t* bootsector;
833 mapping_t* mapping;
834 unsigned int i;
835 unsigned int cluster;
837 memset(&(s->first_sectors[0]),0,0x40*0x200);
839 s->cluster_size=s->sectors_per_cluster*0x200;
840 s->cluster_buffer=g_malloc(s->cluster_size);
843 * The formula: sc = spf+1+spf*spc*(512*8/fat_type),
844 * where sc is sector_count,
845 * spf is sectors_per_fat,
846 * spc is sectors_per_clusters, and
847 * fat_type = 12, 16 or 32.
849 i = 1+s->sectors_per_cluster*0x200*8/s->fat_type;
850 s->sectors_per_fat=(s->sector_count+i)/i; /* round up */
852 array_init(&(s->mapping),sizeof(mapping_t));
853 array_init(&(s->directory),sizeof(direntry_t));
855 /* add volume label */
857 direntry_t* entry=array_get_next(&(s->directory));
858 entry->attributes=0x28; /* archive | volume label */
859 memcpy(entry->name,"QEMU VVF",8);
860 memcpy(entry->extension,"AT ",3);
863 /* Now build FAT, and write back information into directory */
864 init_fat(s);
866 s->faked_sectors=s->first_sectors_number+s->sectors_per_fat*2;
867 s->cluster_count=sector2cluster(s, s->sector_count);
869 mapping = array_get_next(&(s->mapping));
870 mapping->begin = 0;
871 mapping->dir_index = 0;
872 mapping->info.dir.parent_mapping_index = -1;
873 mapping->first_mapping_index = -1;
874 mapping->path = g_strdup(dirname);
875 i = strlen(mapping->path);
876 if (i > 0 && mapping->path[i - 1] == '/')
877 mapping->path[i - 1] = '\0';
878 mapping->mode = MODE_DIRECTORY;
879 mapping->read_only = 0;
880 s->path = mapping->path;
882 for (i = 0, cluster = 0; i < s->mapping.next; i++) {
883 /* MS-DOS expects the FAT to be 0 for the root directory
884 * (except for the media byte). */
885 /* LATER TODO: still true for FAT32? */
886 int fix_fat = (i != 0);
887 mapping = array_get(&(s->mapping), i);
889 if (mapping->mode & MODE_DIRECTORY) {
890 mapping->begin = cluster;
891 if(read_directory(s, i)) {
892 fprintf(stderr, "Could not read directory %s\n",
893 mapping->path);
894 return -1;
896 mapping = array_get(&(s->mapping), i);
897 } else {
898 assert(mapping->mode == MODE_UNDEFINED);
899 mapping->mode=MODE_NORMAL;
900 mapping->begin = cluster;
901 if (mapping->end > 0) {
902 direntry_t* direntry = array_get(&(s->directory),
903 mapping->dir_index);
905 mapping->end = cluster + 1 + (mapping->end-1)/s->cluster_size;
906 set_begin_of_direntry(direntry, mapping->begin);
907 } else {
908 mapping->end = cluster + 1;
909 fix_fat = 0;
913 assert(mapping->begin < mapping->end);
915 /* next free cluster */
916 cluster = mapping->end;
918 if(cluster > s->cluster_count) {
919 fprintf(stderr,"Directory does not fit in FAT%d (capacity %.2f MB)\n",
920 s->fat_type, s->sector_count / 2000.0);
921 return -EINVAL;
924 /* fix fat for entry */
925 if (fix_fat) {
926 int j;
927 for(j = mapping->begin; j < mapping->end - 1; j++)
928 fat_set(s, j, j+1);
929 fat_set(s, mapping->end - 1, s->max_fat_value);
933 mapping = array_get(&(s->mapping), 0);
934 s->sectors_of_root_directory = mapping->end * s->sectors_per_cluster;
935 s->last_cluster_of_root_directory = mapping->end;
937 /* the FAT signature */
938 fat_set(s,0,s->max_fat_value);
939 fat_set(s,1,s->max_fat_value);
941 s->current_mapping = NULL;
943 bootsector=(bootsector_t*)(s->first_sectors+(s->first_sectors_number-1)*0x200);
944 bootsector->jump[0]=0xeb;
945 bootsector->jump[1]=0x3e;
946 bootsector->jump[2]=0x90;
947 memcpy(bootsector->name,"QEMU ",8);
948 bootsector->sector_size=cpu_to_le16(0x200);
949 bootsector->sectors_per_cluster=s->sectors_per_cluster;
950 bootsector->reserved_sectors=cpu_to_le16(1);
951 bootsector->number_of_fats=0x2; /* number of FATs */
952 bootsector->root_entries=cpu_to_le16(s->sectors_of_root_directory*0x10);
953 bootsector->total_sectors16=s->sector_count>0xffff?0:cpu_to_le16(s->sector_count);
954 bootsector->media_type=(s->first_sectors_number>1?0xf8:0xf0); /* media descriptor (f8=hd, f0=3.5 fd)*/
955 s->fat.pointer[0] = bootsector->media_type;
956 bootsector->sectors_per_fat=cpu_to_le16(s->sectors_per_fat);
957 bootsector->sectors_per_track=cpu_to_le16(s->bs->secs);
958 bootsector->number_of_heads=cpu_to_le16(s->bs->heads);
959 bootsector->hidden_sectors=cpu_to_le32(s->first_sectors_number==1?0:0x3f);
960 bootsector->total_sectors=cpu_to_le32(s->sector_count>0xffff?s->sector_count:0);
962 /* LATER TODO: if FAT32, this is wrong */
963 bootsector->u.fat16.drive_number=s->first_sectors_number==1?0:0x80; /* fda=0, hda=0x80 */
964 bootsector->u.fat16.current_head=0;
965 bootsector->u.fat16.signature=0x29;
966 bootsector->u.fat16.id=cpu_to_le32(0xfabe1afd);
968 memcpy(bootsector->u.fat16.volume_label,"QEMU VVFAT ",11);
969 memcpy(bootsector->fat_type,(s->fat_type==12?"FAT12 ":s->fat_type==16?"FAT16 ":"FAT32 "),8);
970 bootsector->magic[0]=0x55; bootsector->magic[1]=0xaa;
972 return 0;
975 #ifdef DEBUG
976 static BDRVVVFATState *vvv = NULL;
977 #endif
979 static int enable_write_target(BDRVVVFATState *s);
980 static int is_consistent(BDRVVVFATState *s);
982 static int vvfat_open(BlockDriverState *bs, const char* dirname, int flags)
984 BDRVVVFATState *s = bs->opaque;
985 int i;
987 #ifdef DEBUG
988 vvv = s;
989 #endif
991 DLOG(if (stderr == NULL) {
992 stderr = fopen("vvfat.log", "a");
993 setbuf(stderr, NULL);
996 s->bs = bs;
998 /* LATER TODO: if FAT32, adjust */
999 s->sectors_per_cluster=0x10;
1001 s->current_cluster=0xffffffff;
1003 s->first_sectors_number=0x40;
1004 /* read only is the default for safety */
1005 bs->read_only = 1;
1006 s->qcow = s->write_target = NULL;
1007 s->qcow_filename = NULL;
1008 s->fat2 = NULL;
1009 s->downcase_short_names = 1;
1011 if (!strstart(dirname, "fat:", NULL))
1012 return -1;
1014 if (strstr(dirname, ":32:")) {
1015 fprintf(stderr, "Big fat greek warning: FAT32 has not been tested. You are welcome to do so!\n");
1016 s->fat_type = 32;
1017 } else if (strstr(dirname, ":16:")) {
1018 s->fat_type = 16;
1019 } else if (strstr(dirname, ":12:")) {
1020 s->fat_type = 12;
1023 if (strstr(dirname, ":floppy:")) {
1024 /* 1.44MB or 2.88MB floppy. 2.88MB can be FAT12 (default) or FAT16. */
1025 if (!s->fat_type) {
1026 s->fat_type = 12;
1027 bs->secs = 36;
1028 s->sectors_per_cluster=2;
1029 } else {
1030 bs->secs=(s->fat_type == 12 ? 18 : 36);
1031 s->sectors_per_cluster=1;
1033 s->first_sectors_number = 1;
1034 bs->cyls=80; bs->heads=2;
1035 } else {
1036 /* 32MB or 504MB disk*/
1037 if (!s->fat_type) {
1038 s->fat_type = 16;
1040 bs->cyls=(s->fat_type == 12 ? 64 : 1024);
1041 bs->heads=16; bs->secs=63;
1044 s->sector_count=bs->cyls*bs->heads*bs->secs-(s->first_sectors_number-1);
1046 if (strstr(dirname, ":rw:")) {
1047 if (enable_write_target(s))
1048 return -1;
1049 bs->read_only = 0;
1052 i = strrchr(dirname, ':') - dirname;
1053 assert(i >= 3);
1054 if (dirname[i-2] == ':' && qemu_isalpha(dirname[i-1]))
1055 /* workaround for DOS drive names */
1056 dirname += i-1;
1057 else
1058 dirname += i+1;
1060 bs->total_sectors=bs->cyls*bs->heads*bs->secs;
1062 if(init_directories(s, dirname))
1063 return -1;
1065 s->sector_count = s->faked_sectors + s->sectors_per_cluster*s->cluster_count;
1067 if(s->first_sectors_number==0x40)
1068 init_mbr(s);
1069 else {
1070 /* MS-DOS does not like to know about CHS (?). */
1071 bs->heads = bs->cyls = bs->secs = 0;
1074 // assert(is_consistent(s));
1075 qemu_co_mutex_init(&s->lock);
1076 return 0;
1079 static inline void vvfat_close_current_file(BDRVVVFATState *s)
1081 if(s->current_mapping) {
1082 s->current_mapping = NULL;
1083 if (s->current_fd) {
1084 close(s->current_fd);
1085 s->current_fd = 0;
1088 s->current_cluster = -1;
1091 /* mappings between index1 and index2-1 are supposed to be ordered
1092 * return value is the index of the last mapping for which end>cluster_num
1094 static inline int find_mapping_for_cluster_aux(BDRVVVFATState* s,int cluster_num,int index1,int index2)
1096 while(1) {
1097 int index3;
1098 mapping_t* mapping;
1099 index3=(index1+index2)/2;
1100 mapping=array_get(&(s->mapping),index3);
1101 assert(mapping->begin < mapping->end);
1102 if(mapping->begin>=cluster_num) {
1103 assert(index2!=index3 || index2==0);
1104 if(index2==index3)
1105 return index1;
1106 index2=index3;
1107 } else {
1108 if(index1==index3)
1109 return mapping->end<=cluster_num ? index2 : index1;
1110 index1=index3;
1112 assert(index1<=index2);
1113 DLOG(mapping=array_get(&(s->mapping),index1);
1114 assert(mapping->begin<=cluster_num);
1115 assert(index2 >= s->mapping.next ||
1116 ((mapping = array_get(&(s->mapping),index2)) &&
1117 mapping->end>cluster_num)));
1121 static inline mapping_t* find_mapping_for_cluster(BDRVVVFATState* s,int cluster_num)
1123 int index=find_mapping_for_cluster_aux(s,cluster_num,0,s->mapping.next);
1124 mapping_t* mapping;
1125 if(index>=s->mapping.next)
1126 return NULL;
1127 mapping=array_get(&(s->mapping),index);
1128 if(mapping->begin>cluster_num)
1129 return NULL;
1130 assert(mapping->begin<=cluster_num && mapping->end>cluster_num);
1131 return mapping;
1134 static int open_file(BDRVVVFATState* s,mapping_t* mapping)
1136 if(!mapping)
1137 return -1;
1138 if(!s->current_mapping ||
1139 strcmp(s->current_mapping->path,mapping->path)) {
1140 /* open file */
1141 int fd = open(mapping->path, O_RDONLY | O_BINARY | O_LARGEFILE);
1142 if(fd<0)
1143 return -1;
1144 vvfat_close_current_file(s);
1145 s->current_fd = fd;
1146 s->current_mapping = mapping;
1148 return 0;
1151 static inline int read_cluster(BDRVVVFATState *s,int cluster_num)
1153 if(s->current_cluster != cluster_num) {
1154 int result=0;
1155 off_t offset;
1156 assert(!s->current_mapping || s->current_fd || (s->current_mapping->mode & MODE_DIRECTORY));
1157 if(!s->current_mapping
1158 || s->current_mapping->begin>cluster_num
1159 || s->current_mapping->end<=cluster_num) {
1160 /* binary search of mappings for file */
1161 mapping_t* mapping=find_mapping_for_cluster(s,cluster_num);
1163 assert(!mapping || (cluster_num>=mapping->begin && cluster_num<mapping->end));
1165 if (mapping && mapping->mode & MODE_DIRECTORY) {
1166 vvfat_close_current_file(s);
1167 s->current_mapping = mapping;
1168 read_cluster_directory:
1169 offset = s->cluster_size*(cluster_num-s->current_mapping->begin);
1170 s->cluster = (unsigned char*)s->directory.pointer+offset
1171 + 0x20*s->current_mapping->info.dir.first_dir_index;
1172 assert(((s->cluster-(unsigned char*)s->directory.pointer)%s->cluster_size)==0);
1173 assert((char*)s->cluster+s->cluster_size <= s->directory.pointer+s->directory.next*s->directory.item_size);
1174 s->current_cluster = cluster_num;
1175 return 0;
1178 if(open_file(s,mapping))
1179 return -2;
1180 } else if (s->current_mapping->mode & MODE_DIRECTORY)
1181 goto read_cluster_directory;
1183 assert(s->current_fd);
1185 offset=s->cluster_size*(cluster_num-s->current_mapping->begin)+s->current_mapping->info.file.offset;
1186 if(lseek(s->current_fd, offset, SEEK_SET)!=offset)
1187 return -3;
1188 s->cluster=s->cluster_buffer;
1189 result=read(s->current_fd,s->cluster,s->cluster_size);
1190 if(result<0) {
1191 s->current_cluster = -1;
1192 return -1;
1194 s->current_cluster = cluster_num;
1196 return 0;
1199 #ifdef DEBUG
1200 static void print_direntry(const direntry_t* direntry)
1202 int j = 0;
1203 char buffer[1024];
1205 fprintf(stderr, "direntry %p: ", direntry);
1206 if(!direntry)
1207 return;
1208 if(is_long_name(direntry)) {
1209 unsigned char* c=(unsigned char*)direntry;
1210 int i;
1211 for(i=1;i<11 && c[i] && c[i]!=0xff;i+=2)
1212 #define ADD_CHAR(c) {buffer[j] = (c); if (buffer[j] < ' ') buffer[j] = 0xb0; j++;}
1213 ADD_CHAR(c[i]);
1214 for(i=14;i<26 && c[i] && c[i]!=0xff;i+=2)
1215 ADD_CHAR(c[i]);
1216 for(i=28;i<32 && c[i] && c[i]!=0xff;i+=2)
1217 ADD_CHAR(c[i]);
1218 buffer[j] = 0;
1219 fprintf(stderr, "%s\n", buffer);
1220 } else {
1221 int i;
1222 for(i=0;i<11;i++)
1223 ADD_CHAR(direntry->name[i]);
1224 buffer[j] = 0;
1225 fprintf(stderr,"%s attributes=0x%02x begin=%d size=%d\n",
1226 buffer,
1227 direntry->attributes,
1228 begin_of_direntry(direntry),le32_to_cpu(direntry->size));
1232 static void print_mapping(const mapping_t* mapping)
1234 fprintf(stderr, "mapping (%p): begin, end = %d, %d, dir_index = %d, "
1235 "first_mapping_index = %d, name = %s, mode = 0x%x, " ,
1236 mapping, mapping->begin, mapping->end, mapping->dir_index,
1237 mapping->first_mapping_index, mapping->path, mapping->mode);
1239 if (mapping->mode & MODE_DIRECTORY)
1240 fprintf(stderr, "parent_mapping_index = %d, first_dir_index = %d\n", mapping->info.dir.parent_mapping_index, mapping->info.dir.first_dir_index);
1241 else
1242 fprintf(stderr, "offset = %d\n", mapping->info.file.offset);
1244 #endif
1246 static int vvfat_read(BlockDriverState *bs, int64_t sector_num,
1247 uint8_t *buf, int nb_sectors)
1249 BDRVVVFATState *s = bs->opaque;
1250 int i;
1252 for(i=0;i<nb_sectors;i++,sector_num++) {
1253 if (sector_num >= bs->total_sectors)
1254 return -1;
1255 if (s->qcow) {
1256 int n;
1257 if (s->qcow->drv->bdrv_is_allocated(s->qcow,
1258 sector_num, nb_sectors-i, &n)) {
1259 DLOG(fprintf(stderr, "sectors %d+%d allocated\n", (int)sector_num, n));
1260 if (s->qcow->drv->bdrv_read(s->qcow, sector_num, buf+i*0x200, n))
1261 return -1;
1262 i += n - 1;
1263 sector_num += n - 1;
1264 continue;
1266 DLOG(fprintf(stderr, "sector %d not allocated\n", (int)sector_num));
1268 if(sector_num<s->faked_sectors) {
1269 if(sector_num<s->first_sectors_number)
1270 memcpy(buf+i*0x200,&(s->first_sectors[sector_num*0x200]),0x200);
1271 else if(sector_num-s->first_sectors_number<s->sectors_per_fat)
1272 memcpy(buf+i*0x200,&(s->fat.pointer[(sector_num-s->first_sectors_number)*0x200]),0x200);
1273 else if(sector_num-s->first_sectors_number-s->sectors_per_fat<s->sectors_per_fat)
1274 memcpy(buf+i*0x200,&(s->fat.pointer[(sector_num-s->first_sectors_number-s->sectors_per_fat)*0x200]),0x200);
1275 } else {
1276 uint32_t sector=sector_num-s->faked_sectors,
1277 sector_offset_in_cluster=(sector%s->sectors_per_cluster),
1278 cluster_num=sector/s->sectors_per_cluster;
1279 if(cluster_num > s->cluster_count || read_cluster(s, cluster_num) != 0) {
1280 /* LATER TODO: strict: return -1; */
1281 memset(buf+i*0x200,0,0x200);
1282 continue;
1284 memcpy(buf+i*0x200,s->cluster+sector_offset_in_cluster*0x200,0x200);
1287 return 0;
1290 static coroutine_fn int vvfat_co_read(BlockDriverState *bs, int64_t sector_num,
1291 uint8_t *buf, int nb_sectors)
1293 int ret;
1294 BDRVVVFATState *s = bs->opaque;
1295 qemu_co_mutex_lock(&s->lock);
1296 ret = vvfat_read(bs, sector_num, buf, nb_sectors);
1297 qemu_co_mutex_unlock(&s->lock);
1298 return ret;
1301 /* LATER TODO: statify all functions */
1304 * Idea of the write support (use snapshot):
1306 * 1. check if all data is consistent, recording renames, modifications,
1307 * new files and directories (in s->commits).
1309 * 2. if the data is not consistent, stop committing
1311 * 3. handle renames, and create new files and directories (do not yet
1312 * write their contents)
1314 * 4. walk the directories, fixing the mapping and direntries, and marking
1315 * the handled mappings as not deleted
1317 * 5. commit the contents of the files
1319 * 6. handle deleted files and directories
1323 typedef struct commit_t {
1324 char* path;
1325 union {
1326 struct { uint32_t cluster; } rename;
1327 struct { int dir_index; uint32_t modified_offset; } writeout;
1328 struct { uint32_t first_cluster; } new_file;
1329 struct { uint32_t cluster; } mkdir;
1330 } param;
1331 /* DELETEs and RMDIRs are handled differently: see handle_deletes() */
1332 enum {
1333 ACTION_RENAME, ACTION_WRITEOUT, ACTION_NEW_FILE, ACTION_MKDIR
1334 } action;
1335 } commit_t;
1337 static void clear_commits(BDRVVVFATState* s)
1339 int i;
1340 DLOG(fprintf(stderr, "clear_commits (%d commits)\n", s->commits.next));
1341 for (i = 0; i < s->commits.next; i++) {
1342 commit_t* commit = array_get(&(s->commits), i);
1343 assert(commit->path || commit->action == ACTION_WRITEOUT);
1344 if (commit->action != ACTION_WRITEOUT) {
1345 assert(commit->path);
1346 g_free(commit->path);
1347 } else
1348 assert(commit->path == NULL);
1350 s->commits.next = 0;
1353 static void schedule_rename(BDRVVVFATState* s,
1354 uint32_t cluster, char* new_path)
1356 commit_t* commit = array_get_next(&(s->commits));
1357 commit->path = new_path;
1358 commit->param.rename.cluster = cluster;
1359 commit->action = ACTION_RENAME;
1362 static void schedule_writeout(BDRVVVFATState* s,
1363 int dir_index, uint32_t modified_offset)
1365 commit_t* commit = array_get_next(&(s->commits));
1366 commit->path = NULL;
1367 commit->param.writeout.dir_index = dir_index;
1368 commit->param.writeout.modified_offset = modified_offset;
1369 commit->action = ACTION_WRITEOUT;
1372 static void schedule_new_file(BDRVVVFATState* s,
1373 char* path, uint32_t first_cluster)
1375 commit_t* commit = array_get_next(&(s->commits));
1376 commit->path = path;
1377 commit->param.new_file.first_cluster = first_cluster;
1378 commit->action = ACTION_NEW_FILE;
1381 static void schedule_mkdir(BDRVVVFATState* s, uint32_t cluster, char* path)
1383 commit_t* commit = array_get_next(&(s->commits));
1384 commit->path = path;
1385 commit->param.mkdir.cluster = cluster;
1386 commit->action = ACTION_MKDIR;
1389 typedef struct {
1391 * Since the sequence number is at most 0x3f, and the filename
1392 * length is at most 13 times the sequence number, the maximal
1393 * filename length is 0x3f * 13 bytes.
1395 unsigned char name[0x3f * 13 + 1];
1396 int checksum, len;
1397 int sequence_number;
1398 } long_file_name;
1400 static void lfn_init(long_file_name* lfn)
1402 lfn->sequence_number = lfn->len = 0;
1403 lfn->checksum = 0x100;
1406 /* return 0 if parsed successfully, > 0 if no long name, < 0 if error */
1407 static int parse_long_name(long_file_name* lfn,
1408 const direntry_t* direntry)
1410 int i, j, offset;
1411 const unsigned char* pointer = (const unsigned char*)direntry;
1413 if (!is_long_name(direntry))
1414 return 1;
1416 if (pointer[0] & 0x40) {
1417 lfn->sequence_number = pointer[0] & 0x3f;
1418 lfn->checksum = pointer[13];
1419 lfn->name[0] = 0;
1420 lfn->name[lfn->sequence_number * 13] = 0;
1421 } else if ((pointer[0] & 0x3f) != --lfn->sequence_number)
1422 return -1;
1423 else if (pointer[13] != lfn->checksum)
1424 return -2;
1425 else if (pointer[12] || pointer[26] || pointer[27])
1426 return -3;
1428 offset = 13 * (lfn->sequence_number - 1);
1429 for (i = 0, j = 1; i < 13; i++, j+=2) {
1430 if (j == 11)
1431 j = 14;
1432 else if (j == 26)
1433 j = 28;
1435 if (pointer[j+1] == 0)
1436 lfn->name[offset + i] = pointer[j];
1437 else if (pointer[j+1] != 0xff || (pointer[0] & 0x40) == 0)
1438 return -4;
1439 else
1440 lfn->name[offset + i] = 0;
1443 if (pointer[0] & 0x40)
1444 lfn->len = offset + strlen((char*)lfn->name + offset);
1446 return 0;
1449 /* returns 0 if successful, >0 if no short_name, and <0 on error */
1450 static int parse_short_name(BDRVVVFATState* s,
1451 long_file_name* lfn, direntry_t* direntry)
1453 int i, j;
1455 if (!is_short_name(direntry))
1456 return 1;
1458 for (j = 7; j >= 0 && direntry->name[j] == ' '; j--);
1459 for (i = 0; i <= j; i++) {
1460 if (direntry->name[i] <= ' ' || direntry->name[i] > 0x7f)
1461 return -1;
1462 else if (s->downcase_short_names)
1463 lfn->name[i] = qemu_tolower(direntry->name[i]);
1464 else
1465 lfn->name[i] = direntry->name[i];
1468 for (j = 2; j >= 0 && direntry->extension[j] == ' '; j--);
1469 if (j >= 0) {
1470 lfn->name[i++] = '.';
1471 lfn->name[i + j + 1] = '\0';
1472 for (;j >= 0; j--) {
1473 if (direntry->extension[j] <= ' ' || direntry->extension[j] > 0x7f)
1474 return -2;
1475 else if (s->downcase_short_names)
1476 lfn->name[i + j] = qemu_tolower(direntry->extension[j]);
1477 else
1478 lfn->name[i + j] = direntry->extension[j];
1480 } else
1481 lfn->name[i + j + 1] = '\0';
1483 lfn->len = strlen((char*)lfn->name);
1485 return 0;
1488 static inline uint32_t modified_fat_get(BDRVVVFATState* s,
1489 unsigned int cluster)
1491 if (cluster < s->last_cluster_of_root_directory) {
1492 if (cluster + 1 == s->last_cluster_of_root_directory)
1493 return s->max_fat_value;
1494 else
1495 return cluster + 1;
1498 if (s->fat_type==32) {
1499 uint32_t* entry=((uint32_t*)s->fat2)+cluster;
1500 return le32_to_cpu(*entry);
1501 } else if (s->fat_type==16) {
1502 uint16_t* entry=((uint16_t*)s->fat2)+cluster;
1503 return le16_to_cpu(*entry);
1504 } else {
1505 const uint8_t* x=s->fat2+cluster*3/2;
1506 return ((x[0]|(x[1]<<8))>>(cluster&1?4:0))&0x0fff;
1510 static inline int cluster_was_modified(BDRVVVFATState* s, uint32_t cluster_num)
1512 int was_modified = 0;
1513 int i, dummy;
1515 if (s->qcow == NULL)
1516 return 0;
1518 for (i = 0; !was_modified && i < s->sectors_per_cluster; i++)
1519 was_modified = s->qcow->drv->bdrv_is_allocated(s->qcow,
1520 cluster2sector(s, cluster_num) + i, 1, &dummy);
1522 return was_modified;
1525 static const char* get_basename(const char* path)
1527 char* basename = strrchr(path, '/');
1528 if (basename == NULL)
1529 return path;
1530 else
1531 return basename + 1; /* strip '/' */
1535 * The array s->used_clusters holds the states of the clusters. If it is
1536 * part of a file, it has bit 2 set, in case of a directory, bit 1. If it
1537 * was modified, bit 3 is set.
1538 * If any cluster is allocated, but not part of a file or directory, this
1539 * driver refuses to commit.
1541 typedef enum {
1542 USED_DIRECTORY = 1, USED_FILE = 2, USED_ANY = 3, USED_ALLOCATED = 4
1543 } used_t;
1546 * get_cluster_count_for_direntry() not only determines how many clusters
1547 * are occupied by direntry, but also if it was renamed or modified.
1549 * A file is thought to be renamed *only* if there already was a file with
1550 * exactly the same first cluster, but a different name.
1552 * Further, the files/directories handled by this function are
1553 * assumed to be *not* deleted (and *only* those).
1555 static uint32_t get_cluster_count_for_direntry(BDRVVVFATState* s,
1556 direntry_t* direntry, const char* path)
1559 * This is a little bit tricky:
1560 * IF the guest OS just inserts a cluster into the file chain,
1561 * and leaves the rest alone, (i.e. the original file had clusters
1562 * 15 -> 16, but now has 15 -> 32 -> 16), then the following happens:
1564 * - do_commit will write the cluster into the file at the given
1565 * offset, but
1567 * - the cluster which is overwritten should be moved to a later
1568 * position in the file.
1570 * I am not aware that any OS does something as braindead, but this
1571 * situation could happen anyway when not committing for a long time.
1572 * Just to be sure that this does not bite us, detect it, and copy the
1573 * contents of the clusters to-be-overwritten into the qcow.
1575 int copy_it = 0;
1576 int was_modified = 0;
1577 int32_t ret = 0;
1579 uint32_t cluster_num = begin_of_direntry(direntry);
1580 uint32_t offset = 0;
1581 int first_mapping_index = -1;
1582 mapping_t* mapping = NULL;
1583 const char* basename2 = NULL;
1585 vvfat_close_current_file(s);
1587 /* the root directory */
1588 if (cluster_num == 0)
1589 return 0;
1591 /* write support */
1592 if (s->qcow) {
1593 basename2 = get_basename(path);
1595 mapping = find_mapping_for_cluster(s, cluster_num);
1597 if (mapping) {
1598 const char* basename;
1600 assert(mapping->mode & MODE_DELETED);
1601 mapping->mode &= ~MODE_DELETED;
1603 basename = get_basename(mapping->path);
1605 assert(mapping->mode & MODE_NORMAL);
1607 /* rename */
1608 if (strcmp(basename, basename2))
1609 schedule_rename(s, cluster_num, g_strdup(path));
1610 } else if (is_file(direntry))
1611 /* new file */
1612 schedule_new_file(s, g_strdup(path), cluster_num);
1613 else {
1614 abort();
1615 return 0;
1619 while(1) {
1620 if (s->qcow) {
1621 if (!copy_it && cluster_was_modified(s, cluster_num)) {
1622 if (mapping == NULL ||
1623 mapping->begin > cluster_num ||
1624 mapping->end <= cluster_num)
1625 mapping = find_mapping_for_cluster(s, cluster_num);
1628 if (mapping &&
1629 (mapping->mode & MODE_DIRECTORY) == 0) {
1631 /* was modified in qcow */
1632 if (offset != mapping->info.file.offset + s->cluster_size
1633 * (cluster_num - mapping->begin)) {
1634 /* offset of this cluster in file chain has changed */
1635 abort();
1636 copy_it = 1;
1637 } else if (offset == 0) {
1638 const char* basename = get_basename(mapping->path);
1640 if (strcmp(basename, basename2))
1641 copy_it = 1;
1642 first_mapping_index = array_index(&(s->mapping), mapping);
1645 if (mapping->first_mapping_index != first_mapping_index
1646 && mapping->info.file.offset > 0) {
1647 abort();
1648 copy_it = 1;
1651 /* need to write out? */
1652 if (!was_modified && is_file(direntry)) {
1653 was_modified = 1;
1654 schedule_writeout(s, mapping->dir_index, offset);
1659 if (copy_it) {
1660 int i, dummy;
1662 * This is horribly inefficient, but that is okay, since
1663 * it is rarely executed, if at all.
1665 int64_t offset = cluster2sector(s, cluster_num);
1667 vvfat_close_current_file(s);
1668 for (i = 0; i < s->sectors_per_cluster; i++)
1669 if (!s->qcow->drv->bdrv_is_allocated(s->qcow,
1670 offset + i, 1, &dummy)) {
1671 if (vvfat_read(s->bs,
1672 offset, s->cluster_buffer, 1))
1673 return -1;
1674 if (s->qcow->drv->bdrv_write(s->qcow,
1675 offset, s->cluster_buffer, 1))
1676 return -2;
1681 ret++;
1682 if (s->used_clusters[cluster_num] & USED_ANY)
1683 return 0;
1684 s->used_clusters[cluster_num] = USED_FILE;
1686 cluster_num = modified_fat_get(s, cluster_num);
1688 if (fat_eof(s, cluster_num))
1689 return ret;
1690 else if (cluster_num < 2 || cluster_num > s->max_fat_value - 16)
1691 return -1;
1693 offset += s->cluster_size;
1698 * This function looks at the modified data (qcow).
1699 * It returns 0 upon inconsistency or error, and the number of clusters
1700 * used by the directory, its subdirectories and their files.
1702 static int check_directory_consistency(BDRVVVFATState *s,
1703 int cluster_num, const char* path)
1705 int ret = 0;
1706 unsigned char* cluster = g_malloc(s->cluster_size);
1707 direntry_t* direntries = (direntry_t*)cluster;
1708 mapping_t* mapping = find_mapping_for_cluster(s, cluster_num);
1710 long_file_name lfn;
1711 int path_len = strlen(path);
1712 char path2[PATH_MAX + 1];
1714 assert(path_len < PATH_MAX); /* len was tested before! */
1715 pstrcpy(path2, sizeof(path2), path);
1716 path2[path_len] = '/';
1717 path2[path_len + 1] = '\0';
1719 if (mapping) {
1720 const char* basename = get_basename(mapping->path);
1721 const char* basename2 = get_basename(path);
1723 assert(mapping->mode & MODE_DIRECTORY);
1725 assert(mapping->mode & MODE_DELETED);
1726 mapping->mode &= ~MODE_DELETED;
1728 if (strcmp(basename, basename2))
1729 schedule_rename(s, cluster_num, g_strdup(path));
1730 } else
1731 /* new directory */
1732 schedule_mkdir(s, cluster_num, g_strdup(path));
1734 lfn_init(&lfn);
1735 do {
1736 int i;
1737 int subret = 0;
1739 ret++;
1741 if (s->used_clusters[cluster_num] & USED_ANY) {
1742 fprintf(stderr, "cluster %d used more than once\n", (int)cluster_num);
1743 return 0;
1745 s->used_clusters[cluster_num] = USED_DIRECTORY;
1747 DLOG(fprintf(stderr, "read cluster %d (sector %d)\n", (int)cluster_num, (int)cluster2sector(s, cluster_num)));
1748 subret = vvfat_read(s->bs, cluster2sector(s, cluster_num), cluster,
1749 s->sectors_per_cluster);
1750 if (subret) {
1751 fprintf(stderr, "Error fetching direntries\n");
1752 fail:
1753 g_free(cluster);
1754 return 0;
1757 for (i = 0; i < 0x10 * s->sectors_per_cluster; i++) {
1758 int cluster_count = 0;
1760 DLOG(fprintf(stderr, "check direntry %d:\n", i); print_direntry(direntries + i));
1761 if (is_volume_label(direntries + i) || is_dot(direntries + i) ||
1762 is_free(direntries + i))
1763 continue;
1765 subret = parse_long_name(&lfn, direntries + i);
1766 if (subret < 0) {
1767 fprintf(stderr, "Error in long name\n");
1768 goto fail;
1770 if (subret == 0 || is_free(direntries + i))
1771 continue;
1773 if (fat_chksum(direntries+i) != lfn.checksum) {
1774 subret = parse_short_name(s, &lfn, direntries + i);
1775 if (subret < 0) {
1776 fprintf(stderr, "Error in short name (%d)\n", subret);
1777 goto fail;
1779 if (subret > 0 || !strcmp((char*)lfn.name, ".")
1780 || !strcmp((char*)lfn.name, ".."))
1781 continue;
1783 lfn.checksum = 0x100; /* cannot use long name twice */
1785 if (path_len + 1 + lfn.len >= PATH_MAX) {
1786 fprintf(stderr, "Name too long: %s/%s\n", path, lfn.name);
1787 goto fail;
1789 pstrcpy(path2 + path_len + 1, sizeof(path2) - path_len - 1,
1790 (char*)lfn.name);
1792 if (is_directory(direntries + i)) {
1793 if (begin_of_direntry(direntries + i) == 0) {
1794 DLOG(fprintf(stderr, "invalid begin for directory: %s\n", path2); print_direntry(direntries + i));
1795 goto fail;
1797 cluster_count = check_directory_consistency(s,
1798 begin_of_direntry(direntries + i), path2);
1799 if (cluster_count == 0) {
1800 DLOG(fprintf(stderr, "problem in directory %s:\n", path2); print_direntry(direntries + i));
1801 goto fail;
1803 } else if (is_file(direntries + i)) {
1804 /* check file size with FAT */
1805 cluster_count = get_cluster_count_for_direntry(s, direntries + i, path2);
1806 if (cluster_count !=
1807 (le32_to_cpu(direntries[i].size) + s->cluster_size
1808 - 1) / s->cluster_size) {
1809 DLOG(fprintf(stderr, "Cluster count mismatch\n"));
1810 goto fail;
1812 } else
1813 abort(); /* cluster_count = 0; */
1815 ret += cluster_count;
1818 cluster_num = modified_fat_get(s, cluster_num);
1819 } while(!fat_eof(s, cluster_num));
1821 g_free(cluster);
1822 return ret;
1825 /* returns 1 on success */
1826 static int is_consistent(BDRVVVFATState* s)
1828 int i, check;
1829 int used_clusters_count = 0;
1831 DLOG(checkpoint());
1833 * - get modified FAT
1834 * - compare the two FATs (TODO)
1835 * - get buffer for marking used clusters
1836 * - recurse direntries from root (using bs->bdrv_read to make
1837 * sure to get the new data)
1838 * - check that the FAT agrees with the size
1839 * - count the number of clusters occupied by this directory and
1840 * its files
1841 * - check that the cumulative used cluster count agrees with the
1842 * FAT
1843 * - if all is fine, return number of used clusters
1845 if (s->fat2 == NULL) {
1846 int size = 0x200 * s->sectors_per_fat;
1847 s->fat2 = g_malloc(size);
1848 memcpy(s->fat2, s->fat.pointer, size);
1850 check = vvfat_read(s->bs,
1851 s->first_sectors_number, s->fat2, s->sectors_per_fat);
1852 if (check) {
1853 fprintf(stderr, "Could not copy fat\n");
1854 return 0;
1856 assert (s->used_clusters);
1857 for (i = 0; i < sector2cluster(s, s->sector_count); i++)
1858 s->used_clusters[i] &= ~USED_ANY;
1860 clear_commits(s);
1862 /* mark every mapped file/directory as deleted.
1863 * (check_directory_consistency() will unmark those still present). */
1864 if (s->qcow)
1865 for (i = 0; i < s->mapping.next; i++) {
1866 mapping_t* mapping = array_get(&(s->mapping), i);
1867 if (mapping->first_mapping_index < 0)
1868 mapping->mode |= MODE_DELETED;
1871 used_clusters_count = check_directory_consistency(s, 0, s->path);
1872 if (used_clusters_count <= 0) {
1873 DLOG(fprintf(stderr, "problem in directory\n"));
1874 return 0;
1877 check = s->last_cluster_of_root_directory;
1878 for (i = check; i < sector2cluster(s, s->sector_count); i++) {
1879 if (modified_fat_get(s, i)) {
1880 if(!s->used_clusters[i]) {
1881 DLOG(fprintf(stderr, "FAT was modified (%d), but cluster is not used?\n", i));
1882 return 0;
1884 check++;
1887 if (s->used_clusters[i] == USED_ALLOCATED) {
1888 /* allocated, but not used... */
1889 DLOG(fprintf(stderr, "unused, modified cluster: %d\n", i));
1890 return 0;
1894 if (check != used_clusters_count)
1895 return 0;
1897 return used_clusters_count;
1900 static inline void adjust_mapping_indices(BDRVVVFATState* s,
1901 int offset, int adjust)
1903 int i;
1905 for (i = 0; i < s->mapping.next; i++) {
1906 mapping_t* mapping = array_get(&(s->mapping), i);
1908 #define ADJUST_MAPPING_INDEX(name) \
1909 if (mapping->name >= offset) \
1910 mapping->name += adjust
1912 ADJUST_MAPPING_INDEX(first_mapping_index);
1913 if (mapping->mode & MODE_DIRECTORY)
1914 ADJUST_MAPPING_INDEX(info.dir.parent_mapping_index);
1918 /* insert or update mapping */
1919 static mapping_t* insert_mapping(BDRVVVFATState* s,
1920 uint32_t begin, uint32_t end)
1923 * - find mapping where mapping->begin >= begin,
1924 * - if mapping->begin > begin: insert
1925 * - adjust all references to mappings!
1926 * - else: adjust
1927 * - replace name
1929 int index = find_mapping_for_cluster_aux(s, begin, 0, s->mapping.next);
1930 mapping_t* mapping = NULL;
1931 mapping_t* first_mapping = array_get(&(s->mapping), 0);
1933 if (index < s->mapping.next && (mapping = array_get(&(s->mapping), index))
1934 && mapping->begin < begin) {
1935 mapping->end = begin;
1936 index++;
1937 mapping = array_get(&(s->mapping), index);
1939 if (index >= s->mapping.next || mapping->begin > begin) {
1940 mapping = array_insert(&(s->mapping), index, 1);
1941 mapping->path = NULL;
1942 adjust_mapping_indices(s, index, +1);
1945 mapping->begin = begin;
1946 mapping->end = end;
1948 DLOG(mapping_t* next_mapping;
1949 assert(index + 1 >= s->mapping.next ||
1950 ((next_mapping = array_get(&(s->mapping), index + 1)) &&
1951 next_mapping->begin >= end)));
1953 if (s->current_mapping && first_mapping != (mapping_t*)s->mapping.pointer)
1954 s->current_mapping = array_get(&(s->mapping),
1955 s->current_mapping - first_mapping);
1957 return mapping;
1960 static int remove_mapping(BDRVVVFATState* s, int mapping_index)
1962 mapping_t* mapping = array_get(&(s->mapping), mapping_index);
1963 mapping_t* first_mapping = array_get(&(s->mapping), 0);
1965 /* free mapping */
1966 if (mapping->first_mapping_index < 0) {
1967 g_free(mapping->path);
1970 /* remove from s->mapping */
1971 array_remove(&(s->mapping), mapping_index);
1973 /* adjust all references to mappings */
1974 adjust_mapping_indices(s, mapping_index, -1);
1976 if (s->current_mapping && first_mapping != (mapping_t*)s->mapping.pointer)
1977 s->current_mapping = array_get(&(s->mapping),
1978 s->current_mapping - first_mapping);
1980 return 0;
1983 static void adjust_dirindices(BDRVVVFATState* s, int offset, int adjust)
1985 int i;
1986 for (i = 0; i < s->mapping.next; i++) {
1987 mapping_t* mapping = array_get(&(s->mapping), i);
1988 if (mapping->dir_index >= offset)
1989 mapping->dir_index += adjust;
1990 if ((mapping->mode & MODE_DIRECTORY) &&
1991 mapping->info.dir.first_dir_index >= offset)
1992 mapping->info.dir.first_dir_index += adjust;
1996 static direntry_t* insert_direntries(BDRVVVFATState* s,
1997 int dir_index, int count)
2000 * make room in s->directory,
2001 * adjust_dirindices
2003 direntry_t* result = array_insert(&(s->directory), dir_index, count);
2004 if (result == NULL)
2005 return NULL;
2006 adjust_dirindices(s, dir_index, count);
2007 return result;
2010 static int remove_direntries(BDRVVVFATState* s, int dir_index, int count)
2012 int ret = array_remove_slice(&(s->directory), dir_index, count);
2013 if (ret)
2014 return ret;
2015 adjust_dirindices(s, dir_index, -count);
2016 return 0;
2020 * Adapt the mappings of the cluster chain starting at first cluster
2021 * (i.e. if a file starts at first_cluster, the chain is followed according
2022 * to the modified fat, and the corresponding entries in s->mapping are
2023 * adjusted)
2025 static int commit_mappings(BDRVVVFATState* s,
2026 uint32_t first_cluster, int dir_index)
2028 mapping_t* mapping = find_mapping_for_cluster(s, first_cluster);
2029 direntry_t* direntry = array_get(&(s->directory), dir_index);
2030 uint32_t cluster = first_cluster;
2032 vvfat_close_current_file(s);
2034 assert(mapping);
2035 assert(mapping->begin == first_cluster);
2036 mapping->first_mapping_index = -1;
2037 mapping->dir_index = dir_index;
2038 mapping->mode = (dir_index <= 0 || is_directory(direntry)) ?
2039 MODE_DIRECTORY : MODE_NORMAL;
2041 while (!fat_eof(s, cluster)) {
2042 uint32_t c, c1;
2044 for (c = cluster, c1 = modified_fat_get(s, c); c + 1 == c1;
2045 c = c1, c1 = modified_fat_get(s, c1));
2047 c++;
2048 if (c > mapping->end) {
2049 int index = array_index(&(s->mapping), mapping);
2050 int i, max_i = s->mapping.next - index;
2051 for (i = 1; i < max_i && mapping[i].begin < c; i++);
2052 while (--i > 0)
2053 remove_mapping(s, index + 1);
2055 assert(mapping == array_get(&(s->mapping), s->mapping.next - 1)
2056 || mapping[1].begin >= c);
2057 mapping->end = c;
2059 if (!fat_eof(s, c1)) {
2060 int i = find_mapping_for_cluster_aux(s, c1, 0, s->mapping.next);
2061 mapping_t* next_mapping = i >= s->mapping.next ? NULL :
2062 array_get(&(s->mapping), i);
2064 if (next_mapping == NULL || next_mapping->begin > c1) {
2065 int i1 = array_index(&(s->mapping), mapping);
2067 next_mapping = insert_mapping(s, c1, c1+1);
2069 if (c1 < c)
2070 i1++;
2071 mapping = array_get(&(s->mapping), i1);
2074 next_mapping->dir_index = mapping->dir_index;
2075 next_mapping->first_mapping_index =
2076 mapping->first_mapping_index < 0 ?
2077 array_index(&(s->mapping), mapping) :
2078 mapping->first_mapping_index;
2079 next_mapping->path = mapping->path;
2080 next_mapping->mode = mapping->mode;
2081 next_mapping->read_only = mapping->read_only;
2082 if (mapping->mode & MODE_DIRECTORY) {
2083 next_mapping->info.dir.parent_mapping_index =
2084 mapping->info.dir.parent_mapping_index;
2085 next_mapping->info.dir.first_dir_index =
2086 mapping->info.dir.first_dir_index +
2087 0x10 * s->sectors_per_cluster *
2088 (mapping->end - mapping->begin);
2089 } else
2090 next_mapping->info.file.offset = mapping->info.file.offset +
2091 mapping->end - mapping->begin;
2093 mapping = next_mapping;
2096 cluster = c1;
2099 return 0;
2102 static int commit_direntries(BDRVVVFATState* s,
2103 int dir_index, int parent_mapping_index)
2105 direntry_t* direntry = array_get(&(s->directory), dir_index);
2106 uint32_t first_cluster = dir_index == 0 ? 0 : begin_of_direntry(direntry);
2107 mapping_t* mapping = find_mapping_for_cluster(s, first_cluster);
2109 int factor = 0x10 * s->sectors_per_cluster;
2110 int old_cluster_count, new_cluster_count;
2111 int current_dir_index = mapping->info.dir.first_dir_index;
2112 int first_dir_index = current_dir_index;
2113 int ret, i;
2114 uint32_t c;
2116 DLOG(fprintf(stderr, "commit_direntries for %s, parent_mapping_index %d\n", mapping->path, parent_mapping_index));
2118 assert(direntry);
2119 assert(mapping);
2120 assert(mapping->begin == first_cluster);
2121 assert(mapping->info.dir.first_dir_index < s->directory.next);
2122 assert(mapping->mode & MODE_DIRECTORY);
2123 assert(dir_index == 0 || is_directory(direntry));
2125 mapping->info.dir.parent_mapping_index = parent_mapping_index;
2127 if (first_cluster == 0) {
2128 old_cluster_count = new_cluster_count =
2129 s->last_cluster_of_root_directory;
2130 } else {
2131 for (old_cluster_count = 0, c = first_cluster; !fat_eof(s, c);
2132 c = fat_get(s, c))
2133 old_cluster_count++;
2135 for (new_cluster_count = 0, c = first_cluster; !fat_eof(s, c);
2136 c = modified_fat_get(s, c))
2137 new_cluster_count++;
2140 if (new_cluster_count > old_cluster_count) {
2141 if (insert_direntries(s,
2142 current_dir_index + factor * old_cluster_count,
2143 factor * (new_cluster_count - old_cluster_count)) == NULL)
2144 return -1;
2145 } else if (new_cluster_count < old_cluster_count)
2146 remove_direntries(s,
2147 current_dir_index + factor * new_cluster_count,
2148 factor * (old_cluster_count - new_cluster_count));
2150 for (c = first_cluster; !fat_eof(s, c); c = modified_fat_get(s, c)) {
2151 void* direntry = array_get(&(s->directory), current_dir_index);
2152 int ret = vvfat_read(s->bs, cluster2sector(s, c), direntry,
2153 s->sectors_per_cluster);
2154 if (ret)
2155 return ret;
2156 assert(!strncmp(s->directory.pointer, "QEMU", 4));
2157 current_dir_index += factor;
2160 ret = commit_mappings(s, first_cluster, dir_index);
2161 if (ret)
2162 return ret;
2164 /* recurse */
2165 for (i = 0; i < factor * new_cluster_count; i++) {
2166 direntry = array_get(&(s->directory), first_dir_index + i);
2167 if (is_directory(direntry) && !is_dot(direntry)) {
2168 mapping = find_mapping_for_cluster(s, first_cluster);
2169 assert(mapping->mode & MODE_DIRECTORY);
2170 ret = commit_direntries(s, first_dir_index + i,
2171 array_index(&(s->mapping), mapping));
2172 if (ret)
2173 return ret;
2177 return 0;
2180 /* commit one file (adjust contents, adjust mapping),
2181 return first_mapping_index */
2182 static int commit_one_file(BDRVVVFATState* s,
2183 int dir_index, uint32_t offset)
2185 direntry_t* direntry = array_get(&(s->directory), dir_index);
2186 uint32_t c = begin_of_direntry(direntry);
2187 uint32_t first_cluster = c;
2188 mapping_t* mapping = find_mapping_for_cluster(s, c);
2189 uint32_t size = filesize_of_direntry(direntry);
2190 char* cluster = g_malloc(s->cluster_size);
2191 uint32_t i;
2192 int fd = 0;
2194 assert(offset < size);
2195 assert((offset % s->cluster_size) == 0);
2197 for (i = s->cluster_size; i < offset; i += s->cluster_size)
2198 c = modified_fat_get(s, c);
2200 fd = open(mapping->path, O_RDWR | O_CREAT | O_BINARY, 0666);
2201 if (fd < 0) {
2202 fprintf(stderr, "Could not open %s... (%s, %d)\n", mapping->path,
2203 strerror(errno), errno);
2204 g_free(cluster);
2205 return fd;
2207 if (offset > 0) {
2208 if (lseek(fd, offset, SEEK_SET) != offset) {
2209 g_free(cluster);
2210 return -3;
2214 while (offset < size) {
2215 uint32_t c1;
2216 int rest_size = (size - offset > s->cluster_size ?
2217 s->cluster_size : size - offset);
2218 int ret;
2220 c1 = modified_fat_get(s, c);
2222 assert((size - offset == 0 && fat_eof(s, c)) ||
2223 (size > offset && c >=2 && !fat_eof(s, c)));
2225 ret = vvfat_read(s->bs, cluster2sector(s, c),
2226 (uint8_t*)cluster, (rest_size + 0x1ff) / 0x200);
2228 if (ret < 0) {
2229 g_free(cluster);
2230 return ret;
2233 if (write(fd, cluster, rest_size) < 0) {
2234 g_free(cluster);
2235 return -2;
2238 offset += rest_size;
2239 c = c1;
2242 if (ftruncate(fd, size)) {
2243 perror("ftruncate()");
2244 close(fd);
2245 g_free(cluster);
2246 return -4;
2248 close(fd);
2249 g_free(cluster);
2251 return commit_mappings(s, first_cluster, dir_index);
2254 #ifdef DEBUG
2255 /* test, if all mappings point to valid direntries */
2256 static void check1(BDRVVVFATState* s)
2258 int i;
2259 for (i = 0; i < s->mapping.next; i++) {
2260 mapping_t* mapping = array_get(&(s->mapping), i);
2261 if (mapping->mode & MODE_DELETED) {
2262 fprintf(stderr, "deleted\n");
2263 continue;
2265 assert(mapping->dir_index < s->directory.next);
2266 direntry_t* direntry = array_get(&(s->directory), mapping->dir_index);
2267 assert(mapping->begin == begin_of_direntry(direntry) || mapping->first_mapping_index >= 0);
2268 if (mapping->mode & MODE_DIRECTORY) {
2269 assert(mapping->info.dir.first_dir_index + 0x10 * s->sectors_per_cluster * (mapping->end - mapping->begin) <= s->directory.next);
2270 assert((mapping->info.dir.first_dir_index % (0x10 * s->sectors_per_cluster)) == 0);
2275 /* test, if all direntries have mappings */
2276 static void check2(BDRVVVFATState* s)
2278 int i;
2279 int first_mapping = -1;
2281 for (i = 0; i < s->directory.next; i++) {
2282 direntry_t* direntry = array_get(&(s->directory), i);
2284 if (is_short_name(direntry) && begin_of_direntry(direntry)) {
2285 mapping_t* mapping = find_mapping_for_cluster(s, begin_of_direntry(direntry));
2286 assert(mapping);
2287 assert(mapping->dir_index == i || is_dot(direntry));
2288 assert(mapping->begin == begin_of_direntry(direntry) || is_dot(direntry));
2291 if ((i % (0x10 * s->sectors_per_cluster)) == 0) {
2292 /* cluster start */
2293 int j, count = 0;
2295 for (j = 0; j < s->mapping.next; j++) {
2296 mapping_t* mapping = array_get(&(s->mapping), j);
2297 if (mapping->mode & MODE_DELETED)
2298 continue;
2299 if (mapping->mode & MODE_DIRECTORY) {
2300 if (mapping->info.dir.first_dir_index <= i && mapping->info.dir.first_dir_index + 0x10 * s->sectors_per_cluster > i) {
2301 assert(++count == 1);
2302 if (mapping->first_mapping_index == -1)
2303 first_mapping = array_index(&(s->mapping), mapping);
2304 else
2305 assert(first_mapping == mapping->first_mapping_index);
2306 if (mapping->info.dir.parent_mapping_index < 0)
2307 assert(j == 0);
2308 else {
2309 mapping_t* parent = array_get(&(s->mapping), mapping->info.dir.parent_mapping_index);
2310 assert(parent->mode & MODE_DIRECTORY);
2311 assert(parent->info.dir.first_dir_index < mapping->info.dir.first_dir_index);
2316 if (count == 0)
2317 first_mapping = -1;
2321 #endif
2323 static int handle_renames_and_mkdirs(BDRVVVFATState* s)
2325 int i;
2327 #ifdef DEBUG
2328 fprintf(stderr, "handle_renames\n");
2329 for (i = 0; i < s->commits.next; i++) {
2330 commit_t* commit = array_get(&(s->commits), i);
2331 fprintf(stderr, "%d, %s (%d, %d)\n", i, commit->path ? commit->path : "(null)", commit->param.rename.cluster, commit->action);
2333 #endif
2335 for (i = 0; i < s->commits.next;) {
2336 commit_t* commit = array_get(&(s->commits), i);
2337 if (commit->action == ACTION_RENAME) {
2338 mapping_t* mapping = find_mapping_for_cluster(s,
2339 commit->param.rename.cluster);
2340 char* old_path = mapping->path;
2342 assert(commit->path);
2343 mapping->path = commit->path;
2344 if (rename(old_path, mapping->path))
2345 return -2;
2347 if (mapping->mode & MODE_DIRECTORY) {
2348 int l1 = strlen(mapping->path);
2349 int l2 = strlen(old_path);
2350 int diff = l1 - l2;
2351 direntry_t* direntry = array_get(&(s->directory),
2352 mapping->info.dir.first_dir_index);
2353 uint32_t c = mapping->begin;
2354 int i = 0;
2356 /* recurse */
2357 while (!fat_eof(s, c)) {
2358 do {
2359 direntry_t* d = direntry + i;
2361 if (is_file(d) || (is_directory(d) && !is_dot(d))) {
2362 mapping_t* m = find_mapping_for_cluster(s,
2363 begin_of_direntry(d));
2364 int l = strlen(m->path);
2365 char* new_path = g_malloc(l + diff + 1);
2367 assert(!strncmp(m->path, mapping->path, l2));
2369 pstrcpy(new_path, l + diff + 1, mapping->path);
2370 pstrcpy(new_path + l1, l + diff + 1 - l1,
2371 m->path + l2);
2373 schedule_rename(s, m->begin, new_path);
2375 i++;
2376 } while((i % (0x10 * s->sectors_per_cluster)) != 0);
2377 c = fat_get(s, c);
2381 g_free(old_path);
2382 array_remove(&(s->commits), i);
2383 continue;
2384 } else if (commit->action == ACTION_MKDIR) {
2385 mapping_t* mapping;
2386 int j, parent_path_len;
2388 #ifdef __MINGW32__
2389 if (mkdir(commit->path))
2390 return -5;
2391 #else
2392 if (mkdir(commit->path, 0755))
2393 return -5;
2394 #endif
2396 mapping = insert_mapping(s, commit->param.mkdir.cluster,
2397 commit->param.mkdir.cluster + 1);
2398 if (mapping == NULL)
2399 return -6;
2401 mapping->mode = MODE_DIRECTORY;
2402 mapping->read_only = 0;
2403 mapping->path = commit->path;
2404 j = s->directory.next;
2405 assert(j);
2406 insert_direntries(s, s->directory.next,
2407 0x10 * s->sectors_per_cluster);
2408 mapping->info.dir.first_dir_index = j;
2410 parent_path_len = strlen(commit->path)
2411 - strlen(get_basename(commit->path)) - 1;
2412 for (j = 0; j < s->mapping.next; j++) {
2413 mapping_t* m = array_get(&(s->mapping), j);
2414 if (m->first_mapping_index < 0 && m != mapping &&
2415 !strncmp(m->path, mapping->path, parent_path_len) &&
2416 strlen(m->path) == parent_path_len)
2417 break;
2419 assert(j < s->mapping.next);
2420 mapping->info.dir.parent_mapping_index = j;
2422 array_remove(&(s->commits), i);
2423 continue;
2426 i++;
2428 return 0;
2432 * TODO: make sure that the short name is not matching *another* file
2434 static int handle_commits(BDRVVVFATState* s)
2436 int i, fail = 0;
2438 vvfat_close_current_file(s);
2440 for (i = 0; !fail && i < s->commits.next; i++) {
2441 commit_t* commit = array_get(&(s->commits), i);
2442 switch(commit->action) {
2443 case ACTION_RENAME: case ACTION_MKDIR:
2444 abort();
2445 fail = -2;
2446 break;
2447 case ACTION_WRITEOUT: {
2448 #ifndef NDEBUG
2449 /* these variables are only used by assert() below */
2450 direntry_t* entry = array_get(&(s->directory),
2451 commit->param.writeout.dir_index);
2452 uint32_t begin = begin_of_direntry(entry);
2453 mapping_t* mapping = find_mapping_for_cluster(s, begin);
2454 #endif
2456 assert(mapping);
2457 assert(mapping->begin == begin);
2458 assert(commit->path == NULL);
2460 if (commit_one_file(s, commit->param.writeout.dir_index,
2461 commit->param.writeout.modified_offset))
2462 fail = -3;
2464 break;
2466 case ACTION_NEW_FILE: {
2467 int begin = commit->param.new_file.first_cluster;
2468 mapping_t* mapping = find_mapping_for_cluster(s, begin);
2469 direntry_t* entry;
2470 int i;
2472 /* find direntry */
2473 for (i = 0; i < s->directory.next; i++) {
2474 entry = array_get(&(s->directory), i);
2475 if (is_file(entry) && begin_of_direntry(entry) == begin)
2476 break;
2479 if (i >= s->directory.next) {
2480 fail = -6;
2481 continue;
2484 /* make sure there exists an initial mapping */
2485 if (mapping && mapping->begin != begin) {
2486 mapping->end = begin;
2487 mapping = NULL;
2489 if (mapping == NULL) {
2490 mapping = insert_mapping(s, begin, begin+1);
2492 /* most members will be fixed in commit_mappings() */
2493 assert(commit->path);
2494 mapping->path = commit->path;
2495 mapping->read_only = 0;
2496 mapping->mode = MODE_NORMAL;
2497 mapping->info.file.offset = 0;
2499 if (commit_one_file(s, i, 0))
2500 fail = -7;
2502 break;
2504 default:
2505 abort();
2508 if (i > 0 && array_remove_slice(&(s->commits), 0, i))
2509 return -1;
2510 return fail;
2513 static int handle_deletes(BDRVVVFATState* s)
2515 int i, deferred = 1, deleted = 1;
2517 /* delete files corresponding to mappings marked as deleted */
2518 /* handle DELETEs and unused mappings (modified_fat_get(s, mapping->begin) == 0) */
2519 while (deferred && deleted) {
2520 deferred = 0;
2521 deleted = 0;
2523 for (i = 1; i < s->mapping.next; i++) {
2524 mapping_t* mapping = array_get(&(s->mapping), i);
2525 if (mapping->mode & MODE_DELETED) {
2526 direntry_t* entry = array_get(&(s->directory),
2527 mapping->dir_index);
2529 if (is_free(entry)) {
2530 /* remove file/directory */
2531 if (mapping->mode & MODE_DIRECTORY) {
2532 int j, next_dir_index = s->directory.next,
2533 first_dir_index = mapping->info.dir.first_dir_index;
2535 if (rmdir(mapping->path) < 0) {
2536 if (errno == ENOTEMPTY) {
2537 deferred++;
2538 continue;
2539 } else
2540 return -5;
2543 for (j = 1; j < s->mapping.next; j++) {
2544 mapping_t* m = array_get(&(s->mapping), j);
2545 if (m->mode & MODE_DIRECTORY &&
2546 m->info.dir.first_dir_index >
2547 first_dir_index &&
2548 m->info.dir.first_dir_index <
2549 next_dir_index)
2550 next_dir_index =
2551 m->info.dir.first_dir_index;
2553 remove_direntries(s, first_dir_index,
2554 next_dir_index - first_dir_index);
2556 deleted++;
2558 } else {
2559 if (unlink(mapping->path))
2560 return -4;
2561 deleted++;
2563 DLOG(fprintf(stderr, "DELETE (%d)\n", i); print_mapping(mapping); print_direntry(entry));
2564 remove_mapping(s, i);
2569 return 0;
2573 * synchronize mapping with new state:
2575 * - copy FAT (with bdrv_read)
2576 * - mark all filenames corresponding to mappings as deleted
2577 * - recurse direntries from root (using bs->bdrv_read)
2578 * - delete files corresponding to mappings marked as deleted
2580 static int do_commit(BDRVVVFATState* s)
2582 int ret = 0;
2584 /* the real meat are the commits. Nothing to do? Move along! */
2585 if (s->commits.next == 0)
2586 return 0;
2588 vvfat_close_current_file(s);
2590 ret = handle_renames_and_mkdirs(s);
2591 if (ret) {
2592 fprintf(stderr, "Error handling renames (%d)\n", ret);
2593 abort();
2594 return ret;
2597 /* copy FAT (with bdrv_read) */
2598 memcpy(s->fat.pointer, s->fat2, 0x200 * s->sectors_per_fat);
2600 /* recurse direntries from root (using bs->bdrv_read) */
2601 ret = commit_direntries(s, 0, -1);
2602 if (ret) {
2603 fprintf(stderr, "Fatal: error while committing (%d)\n", ret);
2604 abort();
2605 return ret;
2608 ret = handle_commits(s);
2609 if (ret) {
2610 fprintf(stderr, "Error handling commits (%d)\n", ret);
2611 abort();
2612 return ret;
2615 ret = handle_deletes(s);
2616 if (ret) {
2617 fprintf(stderr, "Error deleting\n");
2618 abort();
2619 return ret;
2622 s->qcow->drv->bdrv_make_empty(s->qcow);
2624 memset(s->used_clusters, 0, sector2cluster(s, s->sector_count));
2626 DLOG(checkpoint());
2627 return 0;
2630 static int try_commit(BDRVVVFATState* s)
2632 vvfat_close_current_file(s);
2633 DLOG(checkpoint());
2634 if(!is_consistent(s))
2635 return -1;
2636 return do_commit(s);
2639 static int vvfat_write(BlockDriverState *bs, int64_t sector_num,
2640 const uint8_t *buf, int nb_sectors)
2642 BDRVVVFATState *s = bs->opaque;
2643 int i, ret;
2645 DLOG(checkpoint());
2647 /* Check if we're operating in read-only mode */
2648 if (s->qcow == NULL) {
2649 return -EACCES;
2652 vvfat_close_current_file(s);
2655 * Some sanity checks:
2656 * - do not allow writing to the boot sector
2657 * - do not allow to write non-ASCII filenames
2660 if (sector_num < s->first_sectors_number)
2661 return -1;
2663 for (i = sector2cluster(s, sector_num);
2664 i <= sector2cluster(s, sector_num + nb_sectors - 1);) {
2665 mapping_t* mapping = find_mapping_for_cluster(s, i);
2666 if (mapping) {
2667 if (mapping->read_only) {
2668 fprintf(stderr, "Tried to write to write-protected file %s\n",
2669 mapping->path);
2670 return -1;
2673 if (mapping->mode & MODE_DIRECTORY) {
2674 int begin = cluster2sector(s, i);
2675 int end = begin + s->sectors_per_cluster, k;
2676 int dir_index;
2677 const direntry_t* direntries;
2678 long_file_name lfn;
2680 lfn_init(&lfn);
2682 if (begin < sector_num)
2683 begin = sector_num;
2684 if (end > sector_num + nb_sectors)
2685 end = sector_num + nb_sectors;
2686 dir_index = mapping->dir_index +
2687 0x10 * (begin - mapping->begin * s->sectors_per_cluster);
2688 direntries = (direntry_t*)(buf + 0x200 * (begin - sector_num));
2690 for (k = 0; k < (end - begin) * 0x10; k++) {
2691 /* do not allow non-ASCII filenames */
2692 if (parse_long_name(&lfn, direntries + k) < 0) {
2693 fprintf(stderr, "Warning: non-ASCII filename\n");
2694 return -1;
2696 /* no access to the direntry of a read-only file */
2697 else if (is_short_name(direntries+k) &&
2698 (direntries[k].attributes & 1)) {
2699 if (memcmp(direntries + k,
2700 array_get(&(s->directory), dir_index + k),
2701 sizeof(direntry_t))) {
2702 fprintf(stderr, "Warning: tried to write to write-protected file\n");
2703 return -1;
2708 i = mapping->end;
2709 } else
2710 i++;
2714 * Use qcow backend. Commit later.
2716 DLOG(fprintf(stderr, "Write to qcow backend: %d + %d\n", (int)sector_num, nb_sectors));
2717 ret = s->qcow->drv->bdrv_write(s->qcow, sector_num, buf, nb_sectors);
2718 if (ret < 0) {
2719 fprintf(stderr, "Error writing to qcow backend\n");
2720 return ret;
2723 for (i = sector2cluster(s, sector_num);
2724 i <= sector2cluster(s, sector_num + nb_sectors - 1); i++)
2725 if (i >= 0)
2726 s->used_clusters[i] |= USED_ALLOCATED;
2728 DLOG(checkpoint());
2729 /* TODO: add timeout */
2730 try_commit(s);
2732 DLOG(checkpoint());
2733 return 0;
2736 static coroutine_fn int vvfat_co_write(BlockDriverState *bs, int64_t sector_num,
2737 const uint8_t *buf, int nb_sectors)
2739 int ret;
2740 BDRVVVFATState *s = bs->opaque;
2741 qemu_co_mutex_lock(&s->lock);
2742 ret = vvfat_write(bs, sector_num, buf, nb_sectors);
2743 qemu_co_mutex_unlock(&s->lock);
2744 return ret;
2747 static int vvfat_is_allocated(BlockDriverState *bs,
2748 int64_t sector_num, int nb_sectors, int* n)
2750 BDRVVVFATState* s = bs->opaque;
2751 *n = s->sector_count - sector_num;
2752 if (*n > nb_sectors)
2753 *n = nb_sectors;
2754 else if (*n < 0)
2755 return 0;
2756 return 1;
2759 static int write_target_commit(BlockDriverState *bs, int64_t sector_num,
2760 const uint8_t* buffer, int nb_sectors) {
2761 BDRVVVFATState* s = *((BDRVVVFATState**) bs->opaque);
2762 return try_commit(s);
2765 static void write_target_close(BlockDriverState *bs) {
2766 BDRVVVFATState* s = *((BDRVVVFATState**) bs->opaque);
2767 bdrv_delete(s->qcow);
2768 g_free(s->qcow_filename);
2771 static BlockDriver vvfat_write_target = {
2772 .format_name = "vvfat_write_target",
2773 .bdrv_write = write_target_commit,
2774 .bdrv_close = write_target_close,
2777 static int enable_write_target(BDRVVVFATState *s)
2779 BlockDriver *bdrv_qcow;
2780 QEMUOptionParameter *options;
2781 int ret;
2782 int size = sector2cluster(s, s->sector_count);
2783 s->used_clusters = calloc(size, 1);
2785 array_init(&(s->commits), sizeof(commit_t));
2787 s->qcow_filename = g_malloc(1024);
2788 get_tmp_filename(s->qcow_filename, 1024);
2790 bdrv_qcow = bdrv_find_format("qcow");
2791 options = parse_option_parameters("", bdrv_qcow->create_options, NULL);
2792 set_option_parameter_int(options, BLOCK_OPT_SIZE, s->sector_count * 512);
2793 set_option_parameter(options, BLOCK_OPT_BACKING_FILE, "fat:");
2795 if (bdrv_create(bdrv_qcow, s->qcow_filename, options) < 0)
2796 return -1;
2798 s->qcow = bdrv_new("");
2799 if (s->qcow == NULL) {
2800 return -1;
2803 ret = bdrv_open(s->qcow, s->qcow_filename,
2804 BDRV_O_RDWR | BDRV_O_CACHE_WB | BDRV_O_NO_FLUSH, bdrv_qcow);
2805 if (ret < 0) {
2806 return ret;
2809 #ifndef _WIN32
2810 unlink(s->qcow_filename);
2811 #endif
2813 s->bs->backing_hd = calloc(sizeof(BlockDriverState), 1);
2814 s->bs->backing_hd->drv = &vvfat_write_target;
2815 s->bs->backing_hd->opaque = g_malloc(sizeof(void*));
2816 *(void**)s->bs->backing_hd->opaque = s;
2818 return 0;
2821 static void vvfat_close(BlockDriverState *bs)
2823 BDRVVVFATState *s = bs->opaque;
2825 vvfat_close_current_file(s);
2826 array_free(&(s->fat));
2827 array_free(&(s->directory));
2828 array_free(&(s->mapping));
2829 g_free(s->cluster_buffer);
2832 static BlockDriver bdrv_vvfat = {
2833 .format_name = "vvfat",
2834 .instance_size = sizeof(BDRVVVFATState),
2835 .bdrv_file_open = vvfat_open,
2836 .bdrv_read = vvfat_co_read,
2837 .bdrv_write = vvfat_co_write,
2838 .bdrv_close = vvfat_close,
2839 .bdrv_is_allocated = vvfat_is_allocated,
2840 .protocol_name = "fat",
2843 static void bdrv_vvfat_init(void)
2845 bdrv_register(&bdrv_vvfat);
2848 block_init(bdrv_vvfat_init);
2850 #ifdef DEBUG
2851 static void checkpoint(void) {
2852 assert(((mapping_t*)array_get(&(vvv->mapping), 0))->end == 2);
2853 check1(vvv);
2854 check2(vvv);
2855 assert(!vvv->current_mapping || vvv->current_fd || (vvv->current_mapping->mode & MODE_DIRECTORY));
2856 #if 0
2857 if (((direntry_t*)vvv->directory.pointer)[1].attributes != 0xf)
2858 fprintf(stderr, "Nonono!\n");
2859 mapping_t* mapping;
2860 direntry_t* direntry;
2861 assert(vvv->mapping.size >= vvv->mapping.item_size * vvv->mapping.next);
2862 assert(vvv->directory.size >= vvv->directory.item_size * vvv->directory.next);
2863 if (vvv->mapping.next<47)
2864 return;
2865 assert((mapping = array_get(&(vvv->mapping), 47)));
2866 assert(mapping->dir_index < vvv->directory.next);
2867 direntry = array_get(&(vvv->directory), mapping->dir_index);
2868 assert(!memcmp(direntry->name, "USB H ", 11) || direntry->name[0]==0);
2869 #endif
2871 #endif