1c30a15e5SDonggeun Kim /* 2c30a15e5SDonggeun Kim * fat_write.c 3c30a15e5SDonggeun Kim * 4c30a15e5SDonggeun Kim * R/W (V)FAT 12/16/32 filesystem implementation by Donggeun Kim 5c30a15e5SDonggeun Kim * 61a459660SWolfgang Denk * SPDX-License-Identifier: GPL-2.0+ 7c30a15e5SDonggeun Kim */ 8c30a15e5SDonggeun Kim 9c30a15e5SDonggeun Kim #include <common.h> 10c30a15e5SDonggeun Kim #include <command.h> 11c30a15e5SDonggeun Kim #include <config.h> 12c30a15e5SDonggeun Kim #include <fat.h> 13c30a15e5SDonggeun Kim #include <asm/byteorder.h> 14c30a15e5SDonggeun Kim #include <part.h> 15fb7e16ccSRichard Genoud #include <linux/ctype.h> 169e374e7bSTom Rini #include <div64.h> 179e374e7bSTom Rini #include <linux/math64.h> 18c30a15e5SDonggeun Kim #include "fat.c" 19c30a15e5SDonggeun Kim 20c30a15e5SDonggeun Kim static void uppercase(char *str, int len) 21c30a15e5SDonggeun Kim { 22c30a15e5SDonggeun Kim int i; 23c30a15e5SDonggeun Kim 24c30a15e5SDonggeun Kim for (i = 0; i < len; i++) { 25fb7e16ccSRichard Genoud *str = toupper(*str); 26c30a15e5SDonggeun Kim str++; 27c30a15e5SDonggeun Kim } 28c30a15e5SDonggeun Kim } 29c30a15e5SDonggeun Kim 30c30a15e5SDonggeun Kim static int total_sector; 31079df722SDonggeun Kim static int disk_write(__u32 block, __u32 nr_blocks, void *buf) 32c30a15e5SDonggeun Kim { 330a04ed86SŁukasz Majewski ulong ret; 340a04ed86SŁukasz Majewski 35079df722SDonggeun Kim if (!cur_dev || !cur_dev->block_write) 36c30a15e5SDonggeun Kim return -1; 37c30a15e5SDonggeun Kim 38079df722SDonggeun Kim if (cur_part_info.start + block + nr_blocks > 39079df722SDonggeun Kim cur_part_info.start + total_sector) { 40c30a15e5SDonggeun Kim printf("error: overflow occurs\n"); 41c30a15e5SDonggeun Kim return -1; 42c30a15e5SDonggeun Kim } 43c30a15e5SDonggeun Kim 440a04ed86SŁukasz Majewski ret = cur_dev->block_write(cur_dev->dev, 450a04ed86SŁukasz Majewski cur_part_info.start + block, 460a04ed86SŁukasz Majewski nr_blocks, buf); 470a04ed86SŁukasz Majewski if (nr_blocks && ret == 0) 480a04ed86SŁukasz Majewski return -1; 490a04ed86SŁukasz Majewski 500a04ed86SŁukasz Majewski return ret; 51c30a15e5SDonggeun Kim } 52c30a15e5SDonggeun Kim 53c30a15e5SDonggeun Kim /* 54c30a15e5SDonggeun Kim * Set short name in directory entry 55c30a15e5SDonggeun Kim */ 56c30a15e5SDonggeun Kim static void set_name(dir_entry *dirent, const char *filename) 57c30a15e5SDonggeun Kim { 58c30a15e5SDonggeun Kim char s_name[VFAT_MAXLEN_BYTES]; 59c30a15e5SDonggeun Kim char *period; 60c30a15e5SDonggeun Kim int period_location, len, i, ext_num; 61c30a15e5SDonggeun Kim 62c30a15e5SDonggeun Kim if (filename == NULL) 63c30a15e5SDonggeun Kim return; 64c30a15e5SDonggeun Kim 65c30a15e5SDonggeun Kim len = strlen(filename); 66c30a15e5SDonggeun Kim if (len == 0) 67c30a15e5SDonggeun Kim return; 68c30a15e5SDonggeun Kim 6973dc8328SPiotr Wilczek strcpy(s_name, filename); 70c30a15e5SDonggeun Kim uppercase(s_name, len); 71c30a15e5SDonggeun Kim 72c30a15e5SDonggeun Kim period = strchr(s_name, '.'); 73c30a15e5SDonggeun Kim if (period == NULL) { 74c30a15e5SDonggeun Kim period_location = len; 75c30a15e5SDonggeun Kim ext_num = 0; 76c30a15e5SDonggeun Kim } else { 77c30a15e5SDonggeun Kim period_location = period - s_name; 78c30a15e5SDonggeun Kim ext_num = len - period_location - 1; 79c30a15e5SDonggeun Kim } 80c30a15e5SDonggeun Kim 81c30a15e5SDonggeun Kim /* Pad spaces when the length of file name is shorter than eight */ 82c30a15e5SDonggeun Kim if (period_location < 8) { 83c30a15e5SDonggeun Kim memcpy(dirent->name, s_name, period_location); 84c30a15e5SDonggeun Kim for (i = period_location; i < 8; i++) 85c30a15e5SDonggeun Kim dirent->name[i] = ' '; 86c30a15e5SDonggeun Kim } else if (period_location == 8) { 87c30a15e5SDonggeun Kim memcpy(dirent->name, s_name, period_location); 88c30a15e5SDonggeun Kim } else { 89c30a15e5SDonggeun Kim memcpy(dirent->name, s_name, 6); 90c30a15e5SDonggeun Kim dirent->name[6] = '~'; 91c30a15e5SDonggeun Kim dirent->name[7] = '1'; 92c30a15e5SDonggeun Kim } 93c30a15e5SDonggeun Kim 94c30a15e5SDonggeun Kim if (ext_num < 3) { 95c30a15e5SDonggeun Kim memcpy(dirent->ext, s_name + period_location + 1, ext_num); 96c30a15e5SDonggeun Kim for (i = ext_num; i < 3; i++) 97c30a15e5SDonggeun Kim dirent->ext[i] = ' '; 98c30a15e5SDonggeun Kim } else 99c30a15e5SDonggeun Kim memcpy(dirent->ext, s_name + period_location + 1, 3); 100c30a15e5SDonggeun Kim 101c30a15e5SDonggeun Kim debug("name : %s\n", dirent->name); 102c30a15e5SDonggeun Kim debug("ext : %s\n", dirent->ext); 103c30a15e5SDonggeun Kim } 104c30a15e5SDonggeun Kim 105627182eaSDonggeun Kim static __u8 num_of_fats; 106c30a15e5SDonggeun Kim /* 107c30a15e5SDonggeun Kim * Write fat buffer into block device 108c30a15e5SDonggeun Kim */ 109c30a15e5SDonggeun Kim static int flush_fat_buffer(fsdata *mydata) 110c30a15e5SDonggeun Kim { 111c30a15e5SDonggeun Kim int getsize = FATBUFBLOCKS; 112c30a15e5SDonggeun Kim __u32 fatlength = mydata->fatlength; 113c30a15e5SDonggeun Kim __u8 *bufptr = mydata->fatbuf; 114c30a15e5SDonggeun Kim __u32 startblock = mydata->fatbufnum * FATBUFBLOCKS; 115c30a15e5SDonggeun Kim 116c30a15e5SDonggeun Kim startblock += mydata->fat_sect; 117c30a15e5SDonggeun Kim 118c30a15e5SDonggeun Kim if (getsize > fatlength) 119c30a15e5SDonggeun Kim getsize = fatlength; 120c30a15e5SDonggeun Kim 121c30a15e5SDonggeun Kim /* Write FAT buf */ 122c30a15e5SDonggeun Kim if (disk_write(startblock, getsize, bufptr) < 0) { 123c30a15e5SDonggeun Kim debug("error: writing FAT blocks\n"); 124c30a15e5SDonggeun Kim return -1; 125c30a15e5SDonggeun Kim } 126c30a15e5SDonggeun Kim 127627182eaSDonggeun Kim if (num_of_fats == 2) { 128627182eaSDonggeun Kim /* Update corresponding second FAT blocks */ 129627182eaSDonggeun Kim startblock += mydata->fatlength; 130627182eaSDonggeun Kim if (disk_write(startblock, getsize, bufptr) < 0) { 131627182eaSDonggeun Kim debug("error: writing second FAT blocks\n"); 132627182eaSDonggeun Kim return -1; 133627182eaSDonggeun Kim } 134627182eaSDonggeun Kim } 135627182eaSDonggeun Kim 136c30a15e5SDonggeun Kim return 0; 137c30a15e5SDonggeun Kim } 138c30a15e5SDonggeun Kim 139c30a15e5SDonggeun Kim /* 140c30a15e5SDonggeun Kim * Get the entry at index 'entry' in a FAT (12/16/32) table. 141c30a15e5SDonggeun Kim * On failure 0x00 is returned. 142c30a15e5SDonggeun Kim * When bufnum is changed, write back the previous fatbuf to the disk. 143c30a15e5SDonggeun Kim */ 144c30a15e5SDonggeun Kim static __u32 get_fatent_value(fsdata *mydata, __u32 entry) 145c30a15e5SDonggeun Kim { 146c30a15e5SDonggeun Kim __u32 bufnum; 147c30a15e5SDonggeun Kim __u32 off16, offset; 148c30a15e5SDonggeun Kim __u32 ret = 0x00; 149c30a15e5SDonggeun Kim __u16 val1, val2; 150c30a15e5SDonggeun Kim 151dd6d7967SWu, Josh if (CHECK_CLUST(entry, mydata->fatsize)) { 152dd6d7967SWu, Josh printf("Error: Invalid FAT entry: 0x%08x\n", entry); 153dd6d7967SWu, Josh return ret; 154dd6d7967SWu, Josh } 155dd6d7967SWu, Josh 156c30a15e5SDonggeun Kim switch (mydata->fatsize) { 157c30a15e5SDonggeun Kim case 32: 158c30a15e5SDonggeun Kim bufnum = entry / FAT32BUFSIZE; 159c30a15e5SDonggeun Kim offset = entry - bufnum * FAT32BUFSIZE; 160c30a15e5SDonggeun Kim break; 161c30a15e5SDonggeun Kim case 16: 162c30a15e5SDonggeun Kim bufnum = entry / FAT16BUFSIZE; 163c30a15e5SDonggeun Kim offset = entry - bufnum * FAT16BUFSIZE; 164c30a15e5SDonggeun Kim break; 165c30a15e5SDonggeun Kim case 12: 166c30a15e5SDonggeun Kim bufnum = entry / FAT12BUFSIZE; 167c30a15e5SDonggeun Kim offset = entry - bufnum * FAT12BUFSIZE; 168c30a15e5SDonggeun Kim break; 169c30a15e5SDonggeun Kim 170c30a15e5SDonggeun Kim default: 171c30a15e5SDonggeun Kim /* Unsupported FAT size */ 172c30a15e5SDonggeun Kim return ret; 173c30a15e5SDonggeun Kim } 174c30a15e5SDonggeun Kim 175c30a15e5SDonggeun Kim debug("FAT%d: entry: 0x%04x = %d, offset: 0x%04x = %d\n", 176c30a15e5SDonggeun Kim mydata->fatsize, entry, entry, offset, offset); 177c30a15e5SDonggeun Kim 178c30a15e5SDonggeun Kim /* Read a new block of FAT entries into the cache. */ 179c30a15e5SDonggeun Kim if (bufnum != mydata->fatbufnum) { 180c30a15e5SDonggeun Kim int getsize = FATBUFBLOCKS; 181c30a15e5SDonggeun Kim __u8 *bufptr = mydata->fatbuf; 182c30a15e5SDonggeun Kim __u32 fatlength = mydata->fatlength; 183c30a15e5SDonggeun Kim __u32 startblock = bufnum * FATBUFBLOCKS; 184c30a15e5SDonggeun Kim 185c30a15e5SDonggeun Kim if (getsize > fatlength) 186c30a15e5SDonggeun Kim getsize = fatlength; 187c30a15e5SDonggeun Kim 188c30a15e5SDonggeun Kim fatlength *= mydata->sect_size; /* We want it in bytes now */ 189c30a15e5SDonggeun Kim startblock += mydata->fat_sect; /* Offset from start of disk */ 190c30a15e5SDonggeun Kim 191c30a15e5SDonggeun Kim /* Write back the fatbuf to the disk */ 192c30a15e5SDonggeun Kim if (mydata->fatbufnum != -1) { 193c30a15e5SDonggeun Kim if (flush_fat_buffer(mydata) < 0) 194c30a15e5SDonggeun Kim return -1; 195c30a15e5SDonggeun Kim } 196c30a15e5SDonggeun Kim 197c30a15e5SDonggeun Kim if (disk_read(startblock, getsize, bufptr) < 0) { 198c30a15e5SDonggeun Kim debug("Error reading FAT blocks\n"); 199c30a15e5SDonggeun Kim return ret; 200c30a15e5SDonggeun Kim } 201c30a15e5SDonggeun Kim mydata->fatbufnum = bufnum; 202c30a15e5SDonggeun Kim } 203c30a15e5SDonggeun Kim 204c30a15e5SDonggeun Kim /* Get the actual entry from the table */ 205c30a15e5SDonggeun Kim switch (mydata->fatsize) { 206c30a15e5SDonggeun Kim case 32: 207c30a15e5SDonggeun Kim ret = FAT2CPU32(((__u32 *) mydata->fatbuf)[offset]); 208c30a15e5SDonggeun Kim break; 209c30a15e5SDonggeun Kim case 16: 210c30a15e5SDonggeun Kim ret = FAT2CPU16(((__u16 *) mydata->fatbuf)[offset]); 211c30a15e5SDonggeun Kim break; 212c30a15e5SDonggeun Kim case 12: 213c30a15e5SDonggeun Kim off16 = (offset * 3) / 4; 214c30a15e5SDonggeun Kim 215c30a15e5SDonggeun Kim switch (offset & 0x3) { 216c30a15e5SDonggeun Kim case 0: 217c30a15e5SDonggeun Kim ret = FAT2CPU16(((__u16 *) mydata->fatbuf)[off16]); 218c30a15e5SDonggeun Kim ret &= 0xfff; 219c30a15e5SDonggeun Kim break; 220c30a15e5SDonggeun Kim case 1: 221c30a15e5SDonggeun Kim val1 = FAT2CPU16(((__u16 *)mydata->fatbuf)[off16]); 222c30a15e5SDonggeun Kim val1 &= 0xf000; 223c30a15e5SDonggeun Kim val2 = FAT2CPU16(((__u16 *)mydata->fatbuf)[off16 + 1]); 224c30a15e5SDonggeun Kim val2 &= 0x00ff; 225c30a15e5SDonggeun Kim ret = (val2 << 4) | (val1 >> 12); 226c30a15e5SDonggeun Kim break; 227c30a15e5SDonggeun Kim case 2: 228c30a15e5SDonggeun Kim val1 = FAT2CPU16(((__u16 *)mydata->fatbuf)[off16]); 229c30a15e5SDonggeun Kim val1 &= 0xff00; 230c30a15e5SDonggeun Kim val2 = FAT2CPU16(((__u16 *)mydata->fatbuf)[off16 + 1]); 231c30a15e5SDonggeun Kim val2 &= 0x000f; 232c30a15e5SDonggeun Kim ret = (val2 << 8) | (val1 >> 8); 233c30a15e5SDonggeun Kim break; 234c30a15e5SDonggeun Kim case 3: 235c30a15e5SDonggeun Kim ret = FAT2CPU16(((__u16 *)mydata->fatbuf)[off16]); 236c30a15e5SDonggeun Kim ret = (ret & 0xfff0) >> 4; 237c30a15e5SDonggeun Kim break; 238c30a15e5SDonggeun Kim default: 239c30a15e5SDonggeun Kim break; 240c30a15e5SDonggeun Kim } 241c30a15e5SDonggeun Kim break; 242c30a15e5SDonggeun Kim } 243c30a15e5SDonggeun Kim debug("FAT%d: ret: %08x, entry: %08x, offset: %04x\n", 244c30a15e5SDonggeun Kim mydata->fatsize, ret, entry, offset); 245c30a15e5SDonggeun Kim 246c30a15e5SDonggeun Kim return ret; 247c30a15e5SDonggeun Kim } 248c30a15e5SDonggeun Kim 249c30a15e5SDonggeun Kim /* 250c30a15e5SDonggeun Kim * Set the file name information from 'name' into 'slotptr', 251c30a15e5SDonggeun Kim */ 252c30a15e5SDonggeun Kim static int str2slot(dir_slot *slotptr, const char *name, int *idx) 253c30a15e5SDonggeun Kim { 254c30a15e5SDonggeun Kim int j, end_idx = 0; 255c30a15e5SDonggeun Kim 256c30a15e5SDonggeun Kim for (j = 0; j <= 8; j += 2) { 257c30a15e5SDonggeun Kim if (name[*idx] == 0x00) { 258c30a15e5SDonggeun Kim slotptr->name0_4[j] = 0; 259c30a15e5SDonggeun Kim slotptr->name0_4[j + 1] = 0; 260c30a15e5SDonggeun Kim end_idx++; 261c30a15e5SDonggeun Kim goto name0_4; 262c30a15e5SDonggeun Kim } 263c30a15e5SDonggeun Kim slotptr->name0_4[j] = name[*idx]; 264c30a15e5SDonggeun Kim (*idx)++; 265c30a15e5SDonggeun Kim end_idx++; 266c30a15e5SDonggeun Kim } 267c30a15e5SDonggeun Kim for (j = 0; j <= 10; j += 2) { 268c30a15e5SDonggeun Kim if (name[*idx] == 0x00) { 269c30a15e5SDonggeun Kim slotptr->name5_10[j] = 0; 270c30a15e5SDonggeun Kim slotptr->name5_10[j + 1] = 0; 271c30a15e5SDonggeun Kim end_idx++; 272c30a15e5SDonggeun Kim goto name5_10; 273c30a15e5SDonggeun Kim } 274c30a15e5SDonggeun Kim slotptr->name5_10[j] = name[*idx]; 275c30a15e5SDonggeun Kim (*idx)++; 276c30a15e5SDonggeun Kim end_idx++; 277c30a15e5SDonggeun Kim } 278c30a15e5SDonggeun Kim for (j = 0; j <= 2; j += 2) { 279c30a15e5SDonggeun Kim if (name[*idx] == 0x00) { 280c30a15e5SDonggeun Kim slotptr->name11_12[j] = 0; 281c30a15e5SDonggeun Kim slotptr->name11_12[j + 1] = 0; 282c30a15e5SDonggeun Kim end_idx++; 283c30a15e5SDonggeun Kim goto name11_12; 284c30a15e5SDonggeun Kim } 285c30a15e5SDonggeun Kim slotptr->name11_12[j] = name[*idx]; 286c30a15e5SDonggeun Kim (*idx)++; 287c30a15e5SDonggeun Kim end_idx++; 288c30a15e5SDonggeun Kim } 289c30a15e5SDonggeun Kim 290c30a15e5SDonggeun Kim if (name[*idx] == 0x00) 291c30a15e5SDonggeun Kim return 1; 292c30a15e5SDonggeun Kim 293c30a15e5SDonggeun Kim return 0; 294c30a15e5SDonggeun Kim /* Not used characters are filled with 0xff 0xff */ 295c30a15e5SDonggeun Kim name0_4: 296c30a15e5SDonggeun Kim for (; end_idx < 5; end_idx++) { 297c30a15e5SDonggeun Kim slotptr->name0_4[end_idx * 2] = 0xff; 298c30a15e5SDonggeun Kim slotptr->name0_4[end_idx * 2 + 1] = 0xff; 299c30a15e5SDonggeun Kim } 300c30a15e5SDonggeun Kim end_idx = 5; 301c30a15e5SDonggeun Kim name5_10: 302c30a15e5SDonggeun Kim end_idx -= 5; 303c30a15e5SDonggeun Kim for (; end_idx < 6; end_idx++) { 304c30a15e5SDonggeun Kim slotptr->name5_10[end_idx * 2] = 0xff; 305c30a15e5SDonggeun Kim slotptr->name5_10[end_idx * 2 + 1] = 0xff; 306c30a15e5SDonggeun Kim } 307c30a15e5SDonggeun Kim end_idx = 11; 308c30a15e5SDonggeun Kim name11_12: 309c30a15e5SDonggeun Kim end_idx -= 11; 310c30a15e5SDonggeun Kim for (; end_idx < 2; end_idx++) { 311c30a15e5SDonggeun Kim slotptr->name11_12[end_idx * 2] = 0xff; 312c30a15e5SDonggeun Kim slotptr->name11_12[end_idx * 2 + 1] = 0xff; 313c30a15e5SDonggeun Kim } 314c30a15e5SDonggeun Kim 315c30a15e5SDonggeun Kim return 1; 316c30a15e5SDonggeun Kim } 317c30a15e5SDonggeun Kim 318c30a15e5SDonggeun Kim static int is_next_clust(fsdata *mydata, dir_entry *dentptr); 319c30a15e5SDonggeun Kim static void flush_dir_table(fsdata *mydata, dir_entry **dentptr); 320c30a15e5SDonggeun Kim 321c30a15e5SDonggeun Kim /* 322c30a15e5SDonggeun Kim * Fill dir_slot entries with appropriate name, id, and attr 323c30a15e5SDonggeun Kim * The real directory entry is returned by 'dentptr' 324c30a15e5SDonggeun Kim */ 325c30a15e5SDonggeun Kim static void 326c30a15e5SDonggeun Kim fill_dir_slot(fsdata *mydata, dir_entry **dentptr, const char *l_name) 327c30a15e5SDonggeun Kim { 3281170e634SBenoît Thébaudeau dir_slot *slotptr = (dir_slot *)get_contents_vfatname_block; 3298506eb8dSAnatolij Gustschin __u8 counter = 0, checksum; 330c30a15e5SDonggeun Kim int idx = 0, ret; 331c30a15e5SDonggeun Kim char s_name[16]; 332c30a15e5SDonggeun Kim 333c30a15e5SDonggeun Kim /* Get short file name and checksum value */ 334c30a15e5SDonggeun Kim strncpy(s_name, (*dentptr)->name, 16); 335ff04f6d1SMarek Vasut checksum = mkcksum((*dentptr)->name, (*dentptr)->ext); 336c30a15e5SDonggeun Kim 337c30a15e5SDonggeun Kim do { 338c30a15e5SDonggeun Kim memset(slotptr, 0x00, sizeof(dir_slot)); 339c30a15e5SDonggeun Kim ret = str2slot(slotptr, l_name, &idx); 340c30a15e5SDonggeun Kim slotptr->id = ++counter; 341c30a15e5SDonggeun Kim slotptr->attr = ATTR_VFAT; 342c30a15e5SDonggeun Kim slotptr->alias_checksum = checksum; 343c30a15e5SDonggeun Kim slotptr++; 344c30a15e5SDonggeun Kim } while (ret == 0); 345c30a15e5SDonggeun Kim 346c30a15e5SDonggeun Kim slotptr--; 347c30a15e5SDonggeun Kim slotptr->id |= LAST_LONG_ENTRY_MASK; 348c30a15e5SDonggeun Kim 349c30a15e5SDonggeun Kim while (counter >= 1) { 350c30a15e5SDonggeun Kim if (is_next_clust(mydata, *dentptr)) { 351c30a15e5SDonggeun Kim /* A new cluster is allocated for directory table */ 352c30a15e5SDonggeun Kim flush_dir_table(mydata, dentptr); 353c30a15e5SDonggeun Kim } 354c30a15e5SDonggeun Kim memcpy(*dentptr, slotptr, sizeof(dir_slot)); 355c30a15e5SDonggeun Kim (*dentptr)++; 356c30a15e5SDonggeun Kim slotptr--; 357c30a15e5SDonggeun Kim counter--; 358c30a15e5SDonggeun Kim } 359c30a15e5SDonggeun Kim 360c30a15e5SDonggeun Kim if (is_next_clust(mydata, *dentptr)) { 361c30a15e5SDonggeun Kim /* A new cluster is allocated for directory table */ 362c30a15e5SDonggeun Kim flush_dir_table(mydata, dentptr); 363c30a15e5SDonggeun Kim } 364c30a15e5SDonggeun Kim } 365c30a15e5SDonggeun Kim 366c30a15e5SDonggeun Kim static __u32 dir_curclust; 367c30a15e5SDonggeun Kim 368c30a15e5SDonggeun Kim /* 369c30a15e5SDonggeun Kim * Extract the full long filename starting at 'retdent' (which is really 370c30a15e5SDonggeun Kim * a slot) into 'l_name'. If successful also copy the real directory entry 371c30a15e5SDonggeun Kim * into 'retdent' 372c30a15e5SDonggeun Kim * If additional adjacent cluster for directory entries is read into memory, 3731170e634SBenoît Thébaudeau * then 'get_contents_vfatname_block' is copied into 'get_dentfromdir_block' and 374c30a15e5SDonggeun Kim * the location of the real directory entry is returned by 'retdent' 375c30a15e5SDonggeun Kim * Return 0 on success, -1 otherwise. 376c30a15e5SDonggeun Kim */ 377c30a15e5SDonggeun Kim static int 378c30a15e5SDonggeun Kim get_long_file_name(fsdata *mydata, int curclust, __u8 *cluster, 379c30a15e5SDonggeun Kim dir_entry **retdent, char *l_name) 380c30a15e5SDonggeun Kim { 381c30a15e5SDonggeun Kim dir_entry *realdent; 382c30a15e5SDonggeun Kim dir_slot *slotptr = (dir_slot *)(*retdent); 383c30a15e5SDonggeun Kim dir_slot *slotptr2 = NULL; 384c30a15e5SDonggeun Kim __u8 *buflimit = cluster + mydata->sect_size * ((curclust == 0) ? 385c30a15e5SDonggeun Kim PREFETCH_BLOCKS : 386c30a15e5SDonggeun Kim mydata->clust_size); 387c30a15e5SDonggeun Kim __u8 counter = (slotptr->id & ~LAST_LONG_ENTRY_MASK) & 0xff; 388c30a15e5SDonggeun Kim int idx = 0, cur_position = 0; 389c30a15e5SDonggeun Kim 390c30a15e5SDonggeun Kim if (counter > VFAT_MAXSEQ) { 391c30a15e5SDonggeun Kim debug("Error: VFAT name is too long\n"); 392c30a15e5SDonggeun Kim return -1; 393c30a15e5SDonggeun Kim } 394c30a15e5SDonggeun Kim 395c30a15e5SDonggeun Kim while ((__u8 *)slotptr < buflimit) { 396c30a15e5SDonggeun Kim if (counter == 0) 397c30a15e5SDonggeun Kim break; 398c30a15e5SDonggeun Kim if (((slotptr->id & ~LAST_LONG_ENTRY_MASK) & 0xff) != counter) 399c30a15e5SDonggeun Kim return -1; 400c30a15e5SDonggeun Kim slotptr++; 401c30a15e5SDonggeun Kim counter--; 402c30a15e5SDonggeun Kim } 403c30a15e5SDonggeun Kim 404c30a15e5SDonggeun Kim if ((__u8 *)slotptr >= buflimit) { 405c30a15e5SDonggeun Kim if (curclust == 0) 406c30a15e5SDonggeun Kim return -1; 407c30a15e5SDonggeun Kim curclust = get_fatent_value(mydata, dir_curclust); 408c30a15e5SDonggeun Kim if (CHECK_CLUST(curclust, mydata->fatsize)) { 409c30a15e5SDonggeun Kim debug("curclust: 0x%x\n", curclust); 410c30a15e5SDonggeun Kim printf("Invalid FAT entry\n"); 411c30a15e5SDonggeun Kim return -1; 412c30a15e5SDonggeun Kim } 413c30a15e5SDonggeun Kim 414c30a15e5SDonggeun Kim dir_curclust = curclust; 415c30a15e5SDonggeun Kim 4161170e634SBenoît Thébaudeau if (get_cluster(mydata, curclust, get_contents_vfatname_block, 417c30a15e5SDonggeun Kim mydata->clust_size * mydata->sect_size) != 0) { 418c30a15e5SDonggeun Kim debug("Error: reading directory block\n"); 419c30a15e5SDonggeun Kim return -1; 420c30a15e5SDonggeun Kim } 421c30a15e5SDonggeun Kim 4221170e634SBenoît Thébaudeau slotptr2 = (dir_slot *)get_contents_vfatname_block; 423c30a15e5SDonggeun Kim while (counter > 0) { 424c30a15e5SDonggeun Kim if (((slotptr2->id & ~LAST_LONG_ENTRY_MASK) 425c30a15e5SDonggeun Kim & 0xff) != counter) 426c30a15e5SDonggeun Kim return -1; 427c30a15e5SDonggeun Kim slotptr2++; 428c30a15e5SDonggeun Kim counter--; 429c30a15e5SDonggeun Kim } 430c30a15e5SDonggeun Kim 431c30a15e5SDonggeun Kim /* Save the real directory entry */ 432c30a15e5SDonggeun Kim realdent = (dir_entry *)slotptr2; 4331170e634SBenoît Thébaudeau while ((__u8 *)slotptr2 > get_contents_vfatname_block) { 434c30a15e5SDonggeun Kim slotptr2--; 435c30a15e5SDonggeun Kim slot2str(slotptr2, l_name, &idx); 436c30a15e5SDonggeun Kim } 437c30a15e5SDonggeun Kim } else { 438c30a15e5SDonggeun Kim /* Save the real directory entry */ 439c30a15e5SDonggeun Kim realdent = (dir_entry *)slotptr; 440c30a15e5SDonggeun Kim } 441c30a15e5SDonggeun Kim 442c30a15e5SDonggeun Kim do { 443c30a15e5SDonggeun Kim slotptr--; 444c30a15e5SDonggeun Kim if (slot2str(slotptr, l_name, &idx)) 445c30a15e5SDonggeun Kim break; 446c30a15e5SDonggeun Kim } while (!(slotptr->id & LAST_LONG_ENTRY_MASK)); 447c30a15e5SDonggeun Kim 448c30a15e5SDonggeun Kim l_name[idx] = '\0'; 449c30a15e5SDonggeun Kim if (*l_name == DELETED_FLAG) 450c30a15e5SDonggeun Kim *l_name = '\0'; 451c30a15e5SDonggeun Kim else if (*l_name == aRING) 452c30a15e5SDonggeun Kim *l_name = DELETED_FLAG; 453c30a15e5SDonggeun Kim downcase(l_name); 454c30a15e5SDonggeun Kim 455c30a15e5SDonggeun Kim /* Return the real directory entry */ 456c30a15e5SDonggeun Kim *retdent = realdent; 457c30a15e5SDonggeun Kim 458c30a15e5SDonggeun Kim if (slotptr2) { 4591170e634SBenoît Thébaudeau memcpy(get_dentfromdir_block, get_contents_vfatname_block, 460c30a15e5SDonggeun Kim mydata->clust_size * mydata->sect_size); 4611170e634SBenoît Thébaudeau cur_position = (__u8 *)realdent - get_contents_vfatname_block; 462c30a15e5SDonggeun Kim *retdent = (dir_entry *) &get_dentfromdir_block[cur_position]; 463c30a15e5SDonggeun Kim } 464c30a15e5SDonggeun Kim 465c30a15e5SDonggeun Kim return 0; 466c30a15e5SDonggeun Kim } 467c30a15e5SDonggeun Kim 468c30a15e5SDonggeun Kim /* 469c30a15e5SDonggeun Kim * Set the entry at index 'entry' in a FAT (16/32) table. 470c30a15e5SDonggeun Kim */ 471c30a15e5SDonggeun Kim static int set_fatent_value(fsdata *mydata, __u32 entry, __u32 entry_value) 472c30a15e5SDonggeun Kim { 473c30a15e5SDonggeun Kim __u32 bufnum, offset; 474c30a15e5SDonggeun Kim 475c30a15e5SDonggeun Kim switch (mydata->fatsize) { 476c30a15e5SDonggeun Kim case 32: 477c30a15e5SDonggeun Kim bufnum = entry / FAT32BUFSIZE; 478c30a15e5SDonggeun Kim offset = entry - bufnum * FAT32BUFSIZE; 479c30a15e5SDonggeun Kim break; 480c30a15e5SDonggeun Kim case 16: 481c30a15e5SDonggeun Kim bufnum = entry / FAT16BUFSIZE; 482c30a15e5SDonggeun Kim offset = entry - bufnum * FAT16BUFSIZE; 483c30a15e5SDonggeun Kim break; 484c30a15e5SDonggeun Kim default: 485c30a15e5SDonggeun Kim /* Unsupported FAT size */ 486c30a15e5SDonggeun Kim return -1; 487c30a15e5SDonggeun Kim } 488c30a15e5SDonggeun Kim 489c30a15e5SDonggeun Kim /* Read a new block of FAT entries into the cache. */ 490c30a15e5SDonggeun Kim if (bufnum != mydata->fatbufnum) { 491c30a15e5SDonggeun Kim int getsize = FATBUFBLOCKS; 492c30a15e5SDonggeun Kim __u8 *bufptr = mydata->fatbuf; 493c30a15e5SDonggeun Kim __u32 fatlength = mydata->fatlength; 494c30a15e5SDonggeun Kim __u32 startblock = bufnum * FATBUFBLOCKS; 495c30a15e5SDonggeun Kim 496c30a15e5SDonggeun Kim fatlength *= mydata->sect_size; 497c30a15e5SDonggeun Kim startblock += mydata->fat_sect; 498c30a15e5SDonggeun Kim 499c30a15e5SDonggeun Kim if (getsize > fatlength) 500c30a15e5SDonggeun Kim getsize = fatlength; 501c30a15e5SDonggeun Kim 502c30a15e5SDonggeun Kim if (mydata->fatbufnum != -1) { 503c30a15e5SDonggeun Kim if (flush_fat_buffer(mydata) < 0) 504c30a15e5SDonggeun Kim return -1; 505c30a15e5SDonggeun Kim } 506c30a15e5SDonggeun Kim 507c30a15e5SDonggeun Kim if (disk_read(startblock, getsize, bufptr) < 0) { 508c30a15e5SDonggeun Kim debug("Error reading FAT blocks\n"); 509c30a15e5SDonggeun Kim return -1; 510c30a15e5SDonggeun Kim } 511c30a15e5SDonggeun Kim mydata->fatbufnum = bufnum; 512c30a15e5SDonggeun Kim } 513c30a15e5SDonggeun Kim 514c30a15e5SDonggeun Kim /* Set the actual entry */ 515c30a15e5SDonggeun Kim switch (mydata->fatsize) { 516c30a15e5SDonggeun Kim case 32: 517c30a15e5SDonggeun Kim ((__u32 *) mydata->fatbuf)[offset] = cpu_to_le32(entry_value); 518c30a15e5SDonggeun Kim break; 519c30a15e5SDonggeun Kim case 16: 520c30a15e5SDonggeun Kim ((__u16 *) mydata->fatbuf)[offset] = cpu_to_le16(entry_value); 521c30a15e5SDonggeun Kim break; 522c30a15e5SDonggeun Kim default: 523c30a15e5SDonggeun Kim return -1; 524c30a15e5SDonggeun Kim } 525c30a15e5SDonggeun Kim 526c30a15e5SDonggeun Kim return 0; 527c30a15e5SDonggeun Kim } 528c30a15e5SDonggeun Kim 529c30a15e5SDonggeun Kim /* 530c30a15e5SDonggeun Kim * Determine the entry value at index 'entry' in a FAT (16/32) table 531c30a15e5SDonggeun Kim */ 532c30a15e5SDonggeun Kim static __u32 determine_fatent(fsdata *mydata, __u32 entry) 533c30a15e5SDonggeun Kim { 534c30a15e5SDonggeun Kim __u32 next_fat, next_entry = entry + 1; 535c30a15e5SDonggeun Kim 536c30a15e5SDonggeun Kim while (1) { 537c30a15e5SDonggeun Kim next_fat = get_fatent_value(mydata, next_entry); 538c30a15e5SDonggeun Kim if (next_fat == 0) { 539c30a15e5SDonggeun Kim set_fatent_value(mydata, entry, next_entry); 540c30a15e5SDonggeun Kim break; 541c30a15e5SDonggeun Kim } 542c30a15e5SDonggeun Kim next_entry++; 543c30a15e5SDonggeun Kim } 544c30a15e5SDonggeun Kim debug("FAT%d: entry: %08x, entry_value: %04x\n", 545c30a15e5SDonggeun Kim mydata->fatsize, entry, next_entry); 546c30a15e5SDonggeun Kim 547c30a15e5SDonggeun Kim return next_entry; 548c30a15e5SDonggeun Kim } 549c30a15e5SDonggeun Kim 550c30a15e5SDonggeun Kim /* 551c30a15e5SDonggeun Kim * Write at most 'size' bytes from 'buffer' into the specified cluster. 552c30a15e5SDonggeun Kim * Return 0 on success, -1 otherwise. 553c30a15e5SDonggeun Kim */ 554c30a15e5SDonggeun Kim static int 555c30a15e5SDonggeun Kim set_cluster(fsdata *mydata, __u32 clustnum, __u8 *buffer, 556c30a15e5SDonggeun Kim unsigned long size) 557c30a15e5SDonggeun Kim { 5588133f43dSBenoît Thébaudeau __u32 idx = 0; 559c30a15e5SDonggeun Kim __u32 startsect; 5608133f43dSBenoît Thébaudeau int ret; 561c30a15e5SDonggeun Kim 562c30a15e5SDonggeun Kim if (clustnum > 0) 563c30a15e5SDonggeun Kim startsect = mydata->data_begin + 564c30a15e5SDonggeun Kim clustnum * mydata->clust_size; 565c30a15e5SDonggeun Kim else 566c30a15e5SDonggeun Kim startsect = mydata->rootdir_sect; 567c30a15e5SDonggeun Kim 568c30a15e5SDonggeun Kim debug("clustnum: %d, startsect: %d\n", clustnum, startsect); 569c30a15e5SDonggeun Kim 5708133f43dSBenoît Thébaudeau if ((unsigned long)buffer & (ARCH_DMA_MINALIGN - 1)) { 5718133f43dSBenoît Thébaudeau ALLOC_CACHE_ALIGN_BUFFER(__u8, tmpbuf, mydata->sect_size); 5728133f43dSBenoît Thébaudeau 5738133f43dSBenoît Thébaudeau printf("FAT: Misaligned buffer address (%p)\n", buffer); 5748133f43dSBenoît Thébaudeau 5758133f43dSBenoît Thébaudeau while (size >= mydata->sect_size) { 5768133f43dSBenoît Thébaudeau memcpy(tmpbuf, buffer, mydata->sect_size); 5778133f43dSBenoît Thébaudeau ret = disk_write(startsect++, 1, tmpbuf); 5788133f43dSBenoît Thébaudeau if (ret != 1) { 5798133f43dSBenoît Thébaudeau debug("Error writing data (got %d)\n", ret); 580c30a15e5SDonggeun Kim return -1; 581c30a15e5SDonggeun Kim } 5828133f43dSBenoît Thébaudeau 5838133f43dSBenoît Thébaudeau buffer += mydata->sect_size; 5848133f43dSBenoît Thébaudeau size -= mydata->sect_size; 5856b8f185fSWu, Josh } 5868133f43dSBenoît Thébaudeau } else if (size >= mydata->sect_size) { 587c30a15e5SDonggeun Kim idx = size / mydata->sect_size; 5888133f43dSBenoît Thébaudeau ret = disk_write(startsect, idx, buffer); 5898133f43dSBenoît Thébaudeau if (ret != idx) { 5908133f43dSBenoît Thébaudeau debug("Error writing data (got %d)\n", ret); 591c30a15e5SDonggeun Kim return -1; 592c30a15e5SDonggeun Kim } 593c30a15e5SDonggeun Kim 5948133f43dSBenoît Thébaudeau startsect += idx; 5958133f43dSBenoît Thébaudeau idx *= mydata->sect_size; 5968133f43dSBenoît Thébaudeau buffer += idx; 5978133f43dSBenoît Thébaudeau size -= idx; 5988133f43dSBenoît Thébaudeau } 5998133f43dSBenoît Thébaudeau 6008133f43dSBenoît Thébaudeau if (size) { 6018133f43dSBenoît Thébaudeau ALLOC_CACHE_ALIGN_BUFFER(__u8, tmpbuf, mydata->sect_size); 6028133f43dSBenoît Thébaudeau 6038133f43dSBenoît Thébaudeau memcpy(tmpbuf, buffer, size); 6048133f43dSBenoît Thébaudeau ret = disk_write(startsect, 1, tmpbuf); 6058133f43dSBenoît Thébaudeau if (ret != 1) { 6068133f43dSBenoît Thébaudeau debug("Error writing data (got %d)\n", ret); 6078133f43dSBenoît Thébaudeau return -1; 6088133f43dSBenoît Thébaudeau } 609c30a15e5SDonggeun Kim } 610c30a15e5SDonggeun Kim 611c30a15e5SDonggeun Kim return 0; 612c30a15e5SDonggeun Kim } 613c30a15e5SDonggeun Kim 614c30a15e5SDonggeun Kim /* 615c30a15e5SDonggeun Kim * Find the first empty cluster 616c30a15e5SDonggeun Kim */ 617c30a15e5SDonggeun Kim static int find_empty_cluster(fsdata *mydata) 618c30a15e5SDonggeun Kim { 619c30a15e5SDonggeun Kim __u32 fat_val, entry = 3; 620c30a15e5SDonggeun Kim 621c30a15e5SDonggeun Kim while (1) { 622c30a15e5SDonggeun Kim fat_val = get_fatent_value(mydata, entry); 623c30a15e5SDonggeun Kim if (fat_val == 0) 624c30a15e5SDonggeun Kim break; 625c30a15e5SDonggeun Kim entry++; 626c30a15e5SDonggeun Kim } 627c30a15e5SDonggeun Kim 628c30a15e5SDonggeun Kim return entry; 629c30a15e5SDonggeun Kim } 630c30a15e5SDonggeun Kim 631c30a15e5SDonggeun Kim /* 632c30a15e5SDonggeun Kim * Write directory entries in 'get_dentfromdir_block' to block device 633c30a15e5SDonggeun Kim */ 634c30a15e5SDonggeun Kim static void flush_dir_table(fsdata *mydata, dir_entry **dentptr) 635c30a15e5SDonggeun Kim { 636c30a15e5SDonggeun Kim int dir_newclust = 0; 637c30a15e5SDonggeun Kim 638c30a15e5SDonggeun Kim if (set_cluster(mydata, dir_curclust, 639c30a15e5SDonggeun Kim get_dentfromdir_block, 640c30a15e5SDonggeun Kim mydata->clust_size * mydata->sect_size) != 0) { 641c30a15e5SDonggeun Kim printf("error: wrinting directory entry\n"); 642c30a15e5SDonggeun Kim return; 643c30a15e5SDonggeun Kim } 644c30a15e5SDonggeun Kim dir_newclust = find_empty_cluster(mydata); 645c30a15e5SDonggeun Kim set_fatent_value(mydata, dir_curclust, dir_newclust); 646c30a15e5SDonggeun Kim if (mydata->fatsize == 32) 647c30a15e5SDonggeun Kim set_fatent_value(mydata, dir_newclust, 0xffffff8); 648c30a15e5SDonggeun Kim else if (mydata->fatsize == 16) 649c30a15e5SDonggeun Kim set_fatent_value(mydata, dir_newclust, 0xfff8); 650c30a15e5SDonggeun Kim 651c30a15e5SDonggeun Kim dir_curclust = dir_newclust; 652c30a15e5SDonggeun Kim 653c30a15e5SDonggeun Kim if (flush_fat_buffer(mydata) < 0) 654c30a15e5SDonggeun Kim return; 655c30a15e5SDonggeun Kim 656c30a15e5SDonggeun Kim memset(get_dentfromdir_block, 0x00, 657c30a15e5SDonggeun Kim mydata->clust_size * mydata->sect_size); 658c30a15e5SDonggeun Kim 659c30a15e5SDonggeun Kim *dentptr = (dir_entry *) get_dentfromdir_block; 660c30a15e5SDonggeun Kim } 661c30a15e5SDonggeun Kim 662c30a15e5SDonggeun Kim /* 663c30a15e5SDonggeun Kim * Set empty cluster from 'entry' to the end of a file 664c30a15e5SDonggeun Kim */ 665c30a15e5SDonggeun Kim static int clear_fatent(fsdata *mydata, __u32 entry) 666c30a15e5SDonggeun Kim { 667c30a15e5SDonggeun Kim __u32 fat_val; 668c30a15e5SDonggeun Kim 669c30a15e5SDonggeun Kim while (1) { 670c30a15e5SDonggeun Kim fat_val = get_fatent_value(mydata, entry); 671c30a15e5SDonggeun Kim if (fat_val != 0) 672c30a15e5SDonggeun Kim set_fatent_value(mydata, entry, 0); 673c30a15e5SDonggeun Kim else 674c30a15e5SDonggeun Kim break; 675c30a15e5SDonggeun Kim 676c30a15e5SDonggeun Kim if (fat_val == 0xfffffff || fat_val == 0xffff) 677c30a15e5SDonggeun Kim break; 678c30a15e5SDonggeun Kim 679c30a15e5SDonggeun Kim entry = fat_val; 680c30a15e5SDonggeun Kim } 681c30a15e5SDonggeun Kim 682c30a15e5SDonggeun Kim /* Flush fat buffer */ 683c30a15e5SDonggeun Kim if (flush_fat_buffer(mydata) < 0) 684c30a15e5SDonggeun Kim return -1; 685c30a15e5SDonggeun Kim 686c30a15e5SDonggeun Kim return 0; 687c30a15e5SDonggeun Kim } 688c30a15e5SDonggeun Kim 689c30a15e5SDonggeun Kim /* 690c30a15e5SDonggeun Kim * Write at most 'maxsize' bytes from 'buffer' into 691c30a15e5SDonggeun Kim * the file associated with 'dentptr' 6921ad0b98aSSuriyan Ramasami * Update the number of bytes written in *gotsize and return 0 6931ad0b98aSSuriyan Ramasami * or return -1 on fatal errors. 694c30a15e5SDonggeun Kim */ 695c30a15e5SDonggeun Kim static int 696c30a15e5SDonggeun Kim set_contents(fsdata *mydata, dir_entry *dentptr, __u8 *buffer, 6971ad0b98aSSuriyan Ramasami loff_t maxsize, loff_t *gotsize) 698c30a15e5SDonggeun Kim { 6991ad0b98aSSuriyan Ramasami loff_t filesize = FAT2CPU32(dentptr->size); 700c30a15e5SDonggeun Kim unsigned int bytesperclust = mydata->clust_size * mydata->sect_size; 701c30a15e5SDonggeun Kim __u32 curclust = START(dentptr); 702c30a15e5SDonggeun Kim __u32 endclust = 0, newclust = 0; 7031ad0b98aSSuriyan Ramasami loff_t actsize; 704c30a15e5SDonggeun Kim 7051ad0b98aSSuriyan Ramasami *gotsize = 0; 7061ad0b98aSSuriyan Ramasami debug("Filesize: %llu bytes\n", filesize); 707c30a15e5SDonggeun Kim 708c30a15e5SDonggeun Kim if (maxsize > 0 && filesize > maxsize) 709c30a15e5SDonggeun Kim filesize = maxsize; 710c30a15e5SDonggeun Kim 7111ad0b98aSSuriyan Ramasami debug("%llu bytes\n", filesize); 712c30a15e5SDonggeun Kim 713c30a15e5SDonggeun Kim actsize = bytesperclust; 714c30a15e5SDonggeun Kim endclust = curclust; 715c30a15e5SDonggeun Kim do { 716c30a15e5SDonggeun Kim /* search for consecutive clusters */ 717c30a15e5SDonggeun Kim while (actsize < filesize) { 718c30a15e5SDonggeun Kim newclust = determine_fatent(mydata, endclust); 719c30a15e5SDonggeun Kim 720c30a15e5SDonggeun Kim if ((newclust - 1) != endclust) 721c30a15e5SDonggeun Kim goto getit; 722c30a15e5SDonggeun Kim 723c30a15e5SDonggeun Kim if (CHECK_CLUST(newclust, mydata->fatsize)) { 724*5e1a860eSBenoît Thébaudeau debug("newclust: 0x%x\n", newclust); 725c30a15e5SDonggeun Kim debug("Invalid FAT entry\n"); 7261ad0b98aSSuriyan Ramasami return 0; 727c30a15e5SDonggeun Kim } 728c30a15e5SDonggeun Kim endclust = newclust; 729c30a15e5SDonggeun Kim actsize += bytesperclust; 730c30a15e5SDonggeun Kim } 731c30a15e5SDonggeun Kim 732c30a15e5SDonggeun Kim /* set remaining bytes */ 733c30a15e5SDonggeun Kim actsize = filesize; 7341d7f2eceSBenoît Thébaudeau if (set_cluster(mydata, curclust, buffer, (int)actsize) != 0) { 735c30a15e5SDonggeun Kim debug("error: writing cluster\n"); 736c30a15e5SDonggeun Kim return -1; 737c30a15e5SDonggeun Kim } 7381ad0b98aSSuriyan Ramasami *gotsize += actsize; 739c30a15e5SDonggeun Kim 740c30a15e5SDonggeun Kim /* Mark end of file in FAT */ 741c30a15e5SDonggeun Kim if (mydata->fatsize == 16) 742c30a15e5SDonggeun Kim newclust = 0xffff; 743c30a15e5SDonggeun Kim else if (mydata->fatsize == 32) 744c30a15e5SDonggeun Kim newclust = 0xfffffff; 745c30a15e5SDonggeun Kim set_fatent_value(mydata, endclust, newclust); 746c30a15e5SDonggeun Kim 7471ad0b98aSSuriyan Ramasami return 0; 748c30a15e5SDonggeun Kim getit: 749c30a15e5SDonggeun Kim if (set_cluster(mydata, curclust, buffer, (int)actsize) != 0) { 750c30a15e5SDonggeun Kim debug("error: writing cluster\n"); 751c30a15e5SDonggeun Kim return -1; 752c30a15e5SDonggeun Kim } 7531ad0b98aSSuriyan Ramasami *gotsize += actsize; 754c30a15e5SDonggeun Kim filesize -= actsize; 755c30a15e5SDonggeun Kim buffer += actsize; 756c30a15e5SDonggeun Kim 757*5e1a860eSBenoît Thébaudeau if (CHECK_CLUST(newclust, mydata->fatsize)) { 758*5e1a860eSBenoît Thébaudeau debug("newclust: 0x%x\n", newclust); 759c30a15e5SDonggeun Kim debug("Invalid FAT entry\n"); 7601ad0b98aSSuriyan Ramasami return 0; 761c30a15e5SDonggeun Kim } 762c30a15e5SDonggeun Kim actsize = bytesperclust; 763c30a15e5SDonggeun Kim curclust = endclust = newclust; 764c30a15e5SDonggeun Kim } while (1); 765c30a15e5SDonggeun Kim } 766c30a15e5SDonggeun Kim 767c30a15e5SDonggeun Kim /* 768c30a15e5SDonggeun Kim * Fill dir_entry 769c30a15e5SDonggeun Kim */ 770c30a15e5SDonggeun Kim static void fill_dentry(fsdata *mydata, dir_entry *dentptr, 771c30a15e5SDonggeun Kim const char *filename, __u32 start_cluster, __u32 size, __u8 attr) 772c30a15e5SDonggeun Kim { 773c30a15e5SDonggeun Kim if (mydata->fatsize == 32) 774c30a15e5SDonggeun Kim dentptr->starthi = 775c30a15e5SDonggeun Kim cpu_to_le16((start_cluster & 0xffff0000) >> 16); 776c30a15e5SDonggeun Kim dentptr->start = cpu_to_le16(start_cluster & 0xffff); 777c30a15e5SDonggeun Kim dentptr->size = cpu_to_le32(size); 778c30a15e5SDonggeun Kim 779c30a15e5SDonggeun Kim dentptr->attr = attr; 780c30a15e5SDonggeun Kim 781c30a15e5SDonggeun Kim set_name(dentptr, filename); 782c30a15e5SDonggeun Kim } 783c30a15e5SDonggeun Kim 784c30a15e5SDonggeun Kim /* 785c30a15e5SDonggeun Kim * Check whether adding a file makes the file system to 786c30a15e5SDonggeun Kim * exceed the size of the block device 787c30a15e5SDonggeun Kim * Return -1 when overflow occurs, otherwise return 0 788c30a15e5SDonggeun Kim */ 7891ad0b98aSSuriyan Ramasami static int check_overflow(fsdata *mydata, __u32 clustnum, loff_t size) 790c30a15e5SDonggeun Kim { 7919e374e7bSTom Rini __u32 startsect, sect_num, offset; 792c30a15e5SDonggeun Kim 793c30a15e5SDonggeun Kim if (clustnum > 0) { 794c30a15e5SDonggeun Kim startsect = mydata->data_begin + 795c30a15e5SDonggeun Kim clustnum * mydata->clust_size; 796c30a15e5SDonggeun Kim } else { 797c30a15e5SDonggeun Kim startsect = mydata->rootdir_sect; 798c30a15e5SDonggeun Kim } 799c30a15e5SDonggeun Kim 8009e374e7bSTom Rini sect_num = div_u64_rem(size, mydata->sect_size, &offset); 8019e374e7bSTom Rini 8029e374e7bSTom Rini if (offset != 0) 803c30a15e5SDonggeun Kim sect_num++; 804c30a15e5SDonggeun Kim 805079df722SDonggeun Kim if (startsect + sect_num > cur_part_info.start + total_sector) 806c30a15e5SDonggeun Kim return -1; 807c30a15e5SDonggeun Kim return 0; 808c30a15e5SDonggeun Kim } 809c30a15e5SDonggeun Kim 810c30a15e5SDonggeun Kim /* 811c30a15e5SDonggeun Kim * Check if adding several entries exceed one cluster boundary 812c30a15e5SDonggeun Kim */ 813c30a15e5SDonggeun Kim static int is_next_clust(fsdata *mydata, dir_entry *dentptr) 814c30a15e5SDonggeun Kim { 815c30a15e5SDonggeun Kim int cur_position; 816c30a15e5SDonggeun Kim 817c30a15e5SDonggeun Kim cur_position = (__u8 *)dentptr - get_dentfromdir_block; 818c30a15e5SDonggeun Kim 819c30a15e5SDonggeun Kim if (cur_position >= mydata->clust_size * mydata->sect_size) 820c30a15e5SDonggeun Kim return 1; 821c30a15e5SDonggeun Kim else 822c30a15e5SDonggeun Kim return 0; 823c30a15e5SDonggeun Kim } 824c30a15e5SDonggeun Kim 825c30a15e5SDonggeun Kim static dir_entry *empty_dentptr; 826c30a15e5SDonggeun Kim /* 827c30a15e5SDonggeun Kim * Find a directory entry based on filename or start cluster number 828c30a15e5SDonggeun Kim * If the directory entry is not found, 829c30a15e5SDonggeun Kim * the new position for writing a directory entry will be returned 830c30a15e5SDonggeun Kim */ 831c30a15e5SDonggeun Kim static dir_entry *find_directory_entry(fsdata *mydata, int startsect, 832c30a15e5SDonggeun Kim char *filename, dir_entry *retdent, __u32 start) 833c30a15e5SDonggeun Kim { 834c30a15e5SDonggeun Kim __u32 curclust = (startsect - mydata->data_begin) / mydata->clust_size; 835c30a15e5SDonggeun Kim 836c30a15e5SDonggeun Kim debug("get_dentfromdir: %s\n", filename); 837c30a15e5SDonggeun Kim 838c30a15e5SDonggeun Kim while (1) { 839c30a15e5SDonggeun Kim dir_entry *dentptr; 840c30a15e5SDonggeun Kim 841c30a15e5SDonggeun Kim int i; 842c30a15e5SDonggeun Kim 843c30a15e5SDonggeun Kim if (get_cluster(mydata, curclust, get_dentfromdir_block, 844c30a15e5SDonggeun Kim mydata->clust_size * mydata->sect_size) != 0) { 845c30a15e5SDonggeun Kim printf("Error: reading directory block\n"); 846c30a15e5SDonggeun Kim return NULL; 847c30a15e5SDonggeun Kim } 848c30a15e5SDonggeun Kim 849c30a15e5SDonggeun Kim dentptr = (dir_entry *)get_dentfromdir_block; 850c30a15e5SDonggeun Kim 851c30a15e5SDonggeun Kim dir_curclust = curclust; 852c30a15e5SDonggeun Kim 853c30a15e5SDonggeun Kim for (i = 0; i < DIRENTSPERCLUST; i++) { 854c30a15e5SDonggeun Kim char s_name[14], l_name[VFAT_MAXLEN_BYTES]; 855c30a15e5SDonggeun Kim 856c30a15e5SDonggeun Kim l_name[0] = '\0'; 857c30a15e5SDonggeun Kim if (dentptr->name[0] == DELETED_FLAG) { 858c30a15e5SDonggeun Kim dentptr++; 859c30a15e5SDonggeun Kim if (is_next_clust(mydata, dentptr)) 860c30a15e5SDonggeun Kim break; 861c30a15e5SDonggeun Kim continue; 862c30a15e5SDonggeun Kim } 863c30a15e5SDonggeun Kim if ((dentptr->attr & ATTR_VOLUME)) { 864cb940c7eSRichard Genoud if (vfat_enabled && 865cb940c7eSRichard Genoud (dentptr->attr & ATTR_VFAT) && 866c30a15e5SDonggeun Kim (dentptr->name[0] & LAST_LONG_ENTRY_MASK)) { 867c30a15e5SDonggeun Kim get_long_file_name(mydata, curclust, 868c30a15e5SDonggeun Kim get_dentfromdir_block, 869c30a15e5SDonggeun Kim &dentptr, l_name); 870c30a15e5SDonggeun Kim debug("vfatname: |%s|\n", l_name); 871cb940c7eSRichard Genoud } else { 872c30a15e5SDonggeun Kim /* Volume label or VFAT entry */ 873c30a15e5SDonggeun Kim dentptr++; 874c30a15e5SDonggeun Kim if (is_next_clust(mydata, dentptr)) 875c30a15e5SDonggeun Kim break; 876c30a15e5SDonggeun Kim continue; 877c30a15e5SDonggeun Kim } 878c30a15e5SDonggeun Kim } 879c30a15e5SDonggeun Kim if (dentptr->name[0] == 0) { 880c30a15e5SDonggeun Kim debug("Dentname == NULL - %d\n", i); 881c30a15e5SDonggeun Kim empty_dentptr = dentptr; 882c30a15e5SDonggeun Kim return NULL; 883c30a15e5SDonggeun Kim } 884c30a15e5SDonggeun Kim 885c30a15e5SDonggeun Kim get_name(dentptr, s_name); 886c30a15e5SDonggeun Kim 887c30a15e5SDonggeun Kim if (strcmp(filename, s_name) 888c30a15e5SDonggeun Kim && strcmp(filename, l_name)) { 889c30a15e5SDonggeun Kim debug("Mismatch: |%s|%s|\n", 890c30a15e5SDonggeun Kim s_name, l_name); 891c30a15e5SDonggeun Kim dentptr++; 892c30a15e5SDonggeun Kim if (is_next_clust(mydata, dentptr)) 893c30a15e5SDonggeun Kim break; 894c30a15e5SDonggeun Kim continue; 895c30a15e5SDonggeun Kim } 896c30a15e5SDonggeun Kim 897c30a15e5SDonggeun Kim memcpy(retdent, dentptr, sizeof(dir_entry)); 898c30a15e5SDonggeun Kim 899c30a15e5SDonggeun Kim debug("DentName: %s", s_name); 900c30a15e5SDonggeun Kim debug(", start: 0x%x", START(dentptr)); 901c30a15e5SDonggeun Kim debug(", size: 0x%x %s\n", 902c30a15e5SDonggeun Kim FAT2CPU32(dentptr->size), 903c30a15e5SDonggeun Kim (dentptr->attr & ATTR_DIR) ? 904c30a15e5SDonggeun Kim "(DIR)" : ""); 905c30a15e5SDonggeun Kim 906c30a15e5SDonggeun Kim return dentptr; 907c30a15e5SDonggeun Kim } 908c30a15e5SDonggeun Kim 909dd6d7967SWu, Josh /* 910dd6d7967SWu, Josh * In FAT16/12, the root dir is locate before data area, shows 911dd6d7967SWu, Josh * in following: 912dd6d7967SWu, Josh * ------------------------------------------------------------- 913dd6d7967SWu, Josh * | Boot | FAT1 & 2 | Root dir | Data (start from cluster #2) | 914dd6d7967SWu, Josh * ------------------------------------------------------------- 915dd6d7967SWu, Josh * 916dd6d7967SWu, Josh * As a result if curclust is in Root dir, it is a negative 917dd6d7967SWu, Josh * number or 0, 1. 918dd6d7967SWu, Josh * 919dd6d7967SWu, Josh */ 920dd6d7967SWu, Josh if (mydata->fatsize != 32 && (int)curclust <= 1) { 921dd6d7967SWu, Josh /* Current clust is in root dir, set to next clust */ 922dd6d7967SWu, Josh curclust++; 923dd6d7967SWu, Josh if ((int)curclust <= 1) 924dd6d7967SWu, Josh continue; /* continue to find */ 925dd6d7967SWu, Josh 926dd6d7967SWu, Josh /* Reach the end of root dir */ 927dd6d7967SWu, Josh empty_dentptr = dentptr; 928dd6d7967SWu, Josh return NULL; 929dd6d7967SWu, Josh } 930dd6d7967SWu, Josh 931c30a15e5SDonggeun Kim curclust = get_fatent_value(mydata, dir_curclust); 9322e98f708SWu, Josh if (IS_LAST_CLUST(curclust, mydata->fatsize)) { 933c30a15e5SDonggeun Kim empty_dentptr = dentptr; 934c30a15e5SDonggeun Kim return NULL; 935c30a15e5SDonggeun Kim } 936c30a15e5SDonggeun Kim if (CHECK_CLUST(curclust, mydata->fatsize)) { 937c30a15e5SDonggeun Kim debug("curclust: 0x%x\n", curclust); 938c30a15e5SDonggeun Kim debug("Invalid FAT entry\n"); 939c30a15e5SDonggeun Kim return NULL; 940c30a15e5SDonggeun Kim } 941c30a15e5SDonggeun Kim } 942c30a15e5SDonggeun Kim 943c30a15e5SDonggeun Kim return NULL; 944c30a15e5SDonggeun Kim } 945c30a15e5SDonggeun Kim 9461ad0b98aSSuriyan Ramasami static int do_fat_write(const char *filename, void *buffer, loff_t size, 9471ad0b98aSSuriyan Ramasami loff_t *actwrite) 948c30a15e5SDonggeun Kim { 949c30a15e5SDonggeun Kim dir_entry *dentptr, *retdent; 950c30a15e5SDonggeun Kim __u32 startsect; 951c30a15e5SDonggeun Kim __u32 start_cluster; 952c30a15e5SDonggeun Kim boot_sector bs; 953c30a15e5SDonggeun Kim volume_info volinfo; 954c30a15e5SDonggeun Kim fsdata datablock; 955c30a15e5SDonggeun Kim fsdata *mydata = &datablock; 956c30a15e5SDonggeun Kim int cursect; 957bf6b6af7SAnatolij Gustschin int ret = -1, name_len; 958c30a15e5SDonggeun Kim char l_filename[VFAT_MAXLEN_BYTES]; 959c30a15e5SDonggeun Kim 9601ad0b98aSSuriyan Ramasami *actwrite = size; 961c30a15e5SDonggeun Kim dir_curclust = 0; 962c30a15e5SDonggeun Kim 963c30a15e5SDonggeun Kim if (read_bootsectandvi(&bs, &volinfo, &mydata->fatsize)) { 964c30a15e5SDonggeun Kim debug("error: reading boot sector\n"); 965c30a15e5SDonggeun Kim return -1; 966c30a15e5SDonggeun Kim } 967c30a15e5SDonggeun Kim 968c30a15e5SDonggeun Kim total_sector = bs.total_sect; 969c30a15e5SDonggeun Kim if (total_sector == 0) 970e04350d2SSteve Rae total_sector = (int)cur_part_info.size; /* cast of lbaint_t */ 971c30a15e5SDonggeun Kim 972c30a15e5SDonggeun Kim if (mydata->fatsize == 32) 973c30a15e5SDonggeun Kim mydata->fatlength = bs.fat32_length; 974c30a15e5SDonggeun Kim else 975c30a15e5SDonggeun Kim mydata->fatlength = bs.fat_length; 976c30a15e5SDonggeun Kim 977c30a15e5SDonggeun Kim mydata->fat_sect = bs.reserved; 978c30a15e5SDonggeun Kim 979c30a15e5SDonggeun Kim cursect = mydata->rootdir_sect 980c30a15e5SDonggeun Kim = mydata->fat_sect + mydata->fatlength * bs.fats; 981627182eaSDonggeun Kim num_of_fats = bs.fats; 982c30a15e5SDonggeun Kim 983c30a15e5SDonggeun Kim mydata->sect_size = (bs.sector_size[1] << 8) + bs.sector_size[0]; 984c30a15e5SDonggeun Kim mydata->clust_size = bs.cluster_size; 985c30a15e5SDonggeun Kim 986c30a15e5SDonggeun Kim if (mydata->fatsize == 32) { 987c30a15e5SDonggeun Kim mydata->data_begin = mydata->rootdir_sect - 988c30a15e5SDonggeun Kim (mydata->clust_size * 2); 989c30a15e5SDonggeun Kim } else { 990c30a15e5SDonggeun Kim int rootdir_size; 991c30a15e5SDonggeun Kim 992c30a15e5SDonggeun Kim rootdir_size = ((bs.dir_entries[1] * (int)256 + 993c30a15e5SDonggeun Kim bs.dir_entries[0]) * 994c30a15e5SDonggeun Kim sizeof(dir_entry)) / 995c30a15e5SDonggeun Kim mydata->sect_size; 996c30a15e5SDonggeun Kim mydata->data_begin = mydata->rootdir_sect + 997c30a15e5SDonggeun Kim rootdir_size - 998c30a15e5SDonggeun Kim (mydata->clust_size * 2); 999c30a15e5SDonggeun Kim } 1000c30a15e5SDonggeun Kim 1001c30a15e5SDonggeun Kim mydata->fatbufnum = -1; 10028abd053cSNobuhiro Iwamatsu mydata->fatbuf = memalign(ARCH_DMA_MINALIGN, FATBUFSIZE); 1003c30a15e5SDonggeun Kim if (mydata->fatbuf == NULL) { 1004c30a15e5SDonggeun Kim debug("Error: allocating memory\n"); 1005c30a15e5SDonggeun Kim return -1; 1006c30a15e5SDonggeun Kim } 1007c30a15e5SDonggeun Kim 1008c30a15e5SDonggeun Kim if (disk_read(cursect, 1009c30a15e5SDonggeun Kim (mydata->fatsize == 32) ? 1010c30a15e5SDonggeun Kim (mydata->clust_size) : 10111170e634SBenoît Thébaudeau PREFETCH_BLOCKS, do_fat_read_at_block) < 0) { 1012c30a15e5SDonggeun Kim debug("Error: reading rootdir block\n"); 1013c30a15e5SDonggeun Kim goto exit; 1014c30a15e5SDonggeun Kim } 10151170e634SBenoît Thébaudeau dentptr = (dir_entry *) do_fat_read_at_block; 1016c30a15e5SDonggeun Kim 1017c30a15e5SDonggeun Kim name_len = strlen(filename); 10188506eb8dSAnatolij Gustschin if (name_len >= VFAT_MAXLEN_BYTES) 10198506eb8dSAnatolij Gustschin name_len = VFAT_MAXLEN_BYTES - 1; 10208506eb8dSAnatolij Gustschin 1021c30a15e5SDonggeun Kim memcpy(l_filename, filename, name_len); 10228506eb8dSAnatolij Gustschin l_filename[name_len] = 0; /* terminate the string */ 1023c30a15e5SDonggeun Kim downcase(l_filename); 1024c30a15e5SDonggeun Kim 1025c30a15e5SDonggeun Kim startsect = mydata->rootdir_sect; 1026c30a15e5SDonggeun Kim retdent = find_directory_entry(mydata, startsect, 1027c30a15e5SDonggeun Kim l_filename, dentptr, 0); 1028c30a15e5SDonggeun Kim if (retdent) { 1029c30a15e5SDonggeun Kim /* Update file size and start_cluster in a directory entry */ 1030c30a15e5SDonggeun Kim retdent->size = cpu_to_le32(size); 1031c30a15e5SDonggeun Kim start_cluster = FAT2CPU16(retdent->start); 1032c30a15e5SDonggeun Kim if (mydata->fatsize == 32) 1033c30a15e5SDonggeun Kim start_cluster |= 1034c30a15e5SDonggeun Kim (FAT2CPU16(retdent->starthi) << 16); 1035c30a15e5SDonggeun Kim 1036c30a15e5SDonggeun Kim ret = check_overflow(mydata, start_cluster, size); 1037c30a15e5SDonggeun Kim if (ret) { 10381ad0b98aSSuriyan Ramasami printf("Error: %llu overflow\n", size); 1039c30a15e5SDonggeun Kim goto exit; 1040c30a15e5SDonggeun Kim } 1041c30a15e5SDonggeun Kim 1042c30a15e5SDonggeun Kim ret = clear_fatent(mydata, start_cluster); 1043c30a15e5SDonggeun Kim if (ret) { 1044c30a15e5SDonggeun Kim printf("Error: clearing FAT entries\n"); 1045c30a15e5SDonggeun Kim goto exit; 1046c30a15e5SDonggeun Kim } 1047c30a15e5SDonggeun Kim 10481ad0b98aSSuriyan Ramasami ret = set_contents(mydata, retdent, buffer, size, actwrite); 10498506eb8dSAnatolij Gustschin if (ret < 0) { 1050c30a15e5SDonggeun Kim printf("Error: writing contents\n"); 1051c30a15e5SDonggeun Kim goto exit; 1052c30a15e5SDonggeun Kim } 10531ad0b98aSSuriyan Ramasami debug("attempt to write 0x%llx bytes\n", *actwrite); 1054c30a15e5SDonggeun Kim 1055c30a15e5SDonggeun Kim /* Flush fat buffer */ 1056c30a15e5SDonggeun Kim ret = flush_fat_buffer(mydata); 1057c30a15e5SDonggeun Kim if (ret) { 1058c30a15e5SDonggeun Kim printf("Error: flush fat buffer\n"); 1059c30a15e5SDonggeun Kim goto exit; 1060c30a15e5SDonggeun Kim } 1061c30a15e5SDonggeun Kim 1062c30a15e5SDonggeun Kim /* Write directory table to device */ 1063c30a15e5SDonggeun Kim ret = set_cluster(mydata, dir_curclust, 1064c30a15e5SDonggeun Kim get_dentfromdir_block, 1065c30a15e5SDonggeun Kim mydata->clust_size * mydata->sect_size); 1066c30a15e5SDonggeun Kim if (ret) { 10678506eb8dSAnatolij Gustschin printf("Error: writing directory entry\n"); 1068c30a15e5SDonggeun Kim goto exit; 1069c30a15e5SDonggeun Kim } 1070c30a15e5SDonggeun Kim } else { 1071c30a15e5SDonggeun Kim /* Set short name to set alias checksum field in dir_slot */ 1072c30a15e5SDonggeun Kim set_name(empty_dentptr, filename); 1073c30a15e5SDonggeun Kim fill_dir_slot(mydata, &empty_dentptr, filename); 1074c30a15e5SDonggeun Kim 1075c30a15e5SDonggeun Kim ret = start_cluster = find_empty_cluster(mydata); 1076c30a15e5SDonggeun Kim if (ret < 0) { 1077c30a15e5SDonggeun Kim printf("Error: finding empty cluster\n"); 1078c30a15e5SDonggeun Kim goto exit; 1079c30a15e5SDonggeun Kim } 1080c30a15e5SDonggeun Kim 1081c30a15e5SDonggeun Kim ret = check_overflow(mydata, start_cluster, size); 1082c30a15e5SDonggeun Kim if (ret) { 10831ad0b98aSSuriyan Ramasami printf("Error: %llu overflow\n", size); 1084c30a15e5SDonggeun Kim goto exit; 1085c30a15e5SDonggeun Kim } 1086c30a15e5SDonggeun Kim 1087c30a15e5SDonggeun Kim /* Set attribute as archieve for regular file */ 1088c30a15e5SDonggeun Kim fill_dentry(mydata, empty_dentptr, filename, 1089c30a15e5SDonggeun Kim start_cluster, size, 0x20); 1090c30a15e5SDonggeun Kim 10911ad0b98aSSuriyan Ramasami ret = set_contents(mydata, empty_dentptr, buffer, size, 10921ad0b98aSSuriyan Ramasami actwrite); 10938506eb8dSAnatolij Gustschin if (ret < 0) { 1094c30a15e5SDonggeun Kim printf("Error: writing contents\n"); 1095c30a15e5SDonggeun Kim goto exit; 1096c30a15e5SDonggeun Kim } 10971ad0b98aSSuriyan Ramasami debug("attempt to write 0x%llx bytes\n", *actwrite); 1098c30a15e5SDonggeun Kim 1099c30a15e5SDonggeun Kim /* Flush fat buffer */ 1100c30a15e5SDonggeun Kim ret = flush_fat_buffer(mydata); 1101c30a15e5SDonggeun Kim if (ret) { 1102c30a15e5SDonggeun Kim printf("Error: flush fat buffer\n"); 1103c30a15e5SDonggeun Kim goto exit; 1104c30a15e5SDonggeun Kim } 1105c30a15e5SDonggeun Kim 1106c30a15e5SDonggeun Kim /* Write directory table to device */ 1107c30a15e5SDonggeun Kim ret = set_cluster(mydata, dir_curclust, 1108c30a15e5SDonggeun Kim get_dentfromdir_block, 1109c30a15e5SDonggeun Kim mydata->clust_size * mydata->sect_size); 1110c30a15e5SDonggeun Kim if (ret) { 1111c30a15e5SDonggeun Kim printf("Error: writing directory entry\n"); 1112c30a15e5SDonggeun Kim goto exit; 1113c30a15e5SDonggeun Kim } 1114c30a15e5SDonggeun Kim } 1115c30a15e5SDonggeun Kim 1116c30a15e5SDonggeun Kim exit: 1117c30a15e5SDonggeun Kim free(mydata->fatbuf); 11181ad0b98aSSuriyan Ramasami return ret; 1119c30a15e5SDonggeun Kim } 1120c30a15e5SDonggeun Kim 11211ad0b98aSSuriyan Ramasami int file_fat_write(const char *filename, void *buffer, loff_t offset, 11221ad0b98aSSuriyan Ramasami loff_t maxsize, loff_t *actwrite) 1123c30a15e5SDonggeun Kim { 11241ad0b98aSSuriyan Ramasami if (offset != 0) { 11251ad0b98aSSuriyan Ramasami printf("Error: non zero offset is currently not suported.\n"); 11261ad0b98aSSuriyan Ramasami return -1; 11271ad0b98aSSuriyan Ramasami } 11281ad0b98aSSuriyan Ramasami 1129c30a15e5SDonggeun Kim printf("writing %s\n", filename); 11301ad0b98aSSuriyan Ramasami return do_fat_write(filename, buffer, maxsize, actwrite); 1131c30a15e5SDonggeun Kim } 1132