1 /*----------------------------------------------------------------------------/
2 /  FatFs - FAT file system module  R0.08b                 (C)ChaN, 2011
3 /-----------------------------------------------------------------------------/
4 / FatFs module is a generic FAT file system module for small embedded systems.
5 / This is a free software that opened for education, research and commercial
6 / developments under license policy of following terms.
7 /
8 /  Copyright (C) 2011, ChaN, all right reserved.
9 /
10 / * The FatFs module is a free software and there is NO WARRANTY.
11 / * No restriction on use. You can use, modify and redistribute it for
12 /   personal, non-profit or commercial products UNDER YOUR RESPONSIBILITY.
13 / * Redistributions of source code must retain the above copyright notice.
14 /
15 /-----------------------------------------------------------------------------/
16 / Feb 26,'06 R0.00  Prototype.
17 /
18 / Apr 29,'06 R0.01  First stable version.
19 /
20 / Jun 01,'06 R0.02  Added FAT12 support.
21 /                   Removed unbuffered mode.
22 /                   Fixed a problem on small (<32M) partition.
23 / Jun 10,'06 R0.02a Added a configuration option (_FS_MINIMUM).
24 /
25 / Sep 22,'06 R0.03  Added f_rename().
26 /                   Changed option _FS_MINIMUM to _FS_MINIMIZE.
27 / Dec 11,'06 R0.03a Improved cluster scan algorithm to write files fast.
28 /                   Fixed f_mkdir() creates incorrect directory on FAT32.
29 /
30 / Feb 04,'07 R0.04  Supported multiple drive system.
31 /                   Changed some interfaces for multiple drive system.
32 /                   Changed f_mountdrv() to f_mount().
33 /                   Added f_mkfs().
34 / Apr 01,'07 R0.04a Supported multiple partitions on a physical drive.
35 /                   Added a capability of extending file size to f_lseek().
36 /                   Added minimization level 3.
37 /                   Fixed an endian sensitive code in f_mkfs().
38 / May 05,'07 R0.04b Added a configuration option _USE_NTFLAG.
39 /                   Added FSInfo support.
40 /                   Fixed DBCS name can result FR_INVALID_NAME.
41 /                   Fixed short seek (<= csize) collapses the file object.
42 /
43 / Aug 25,'07 R0.05  Changed arguments of f_read(), f_write() and f_mkfs().
44 /                   Fixed f_mkfs() on FAT32 creates incorrect FSInfo.
45 /                   Fixed f_mkdir() on FAT32 creates incorrect directory.
46 / Feb 03,'08 R0.05a Added f_truncate() and f_utime().
47 /                   Fixed off by one error at FAT sub-type determination.
48 /                   Fixed btr in f_read() can be mistruncated.
49 /                   Fixed cached sector is not flushed when create and close without write.
50 /
51 / Apr 01,'08 R0.06  Added fputc(), fputs(), fprintf() and fgets().
52 /                   Improved performance of f_lseek() on moving to the same or following cluster.
53 /
54 / Apr 01,'09 R0.07  Merged Tiny-FatFs as a configuration option. (_FS_TINY)
55 /                   Added long file name feature.
56 /                   Added multiple code page feature.
57 /                   Added re-entrancy for multitask operation.
58 /                   Added auto cluster size selection to f_mkfs().
59 /                   Added rewind option to f_readdir().
60 /                   Changed result code of critical errors.
61 /                   Renamed string functions to avoid name collision.
62 / Apr 14,'09 R0.07a Separated out OS dependent code on reentrant cfg.
63 /                   Added multiple sector size feature.
64 / Jun 21,'09 R0.07c Fixed f_unlink() can return FR_OK on error.
65 /                   Fixed wrong cache control in f_lseek().
66 /                   Added relative path feature.
67 /                   Added f_chdir() and f_chdrive().
68 /                   Added proper case conversion to extended char.
69 / Nov 03,'09 R0.07e Separated out configuration options from ff.h to ffconf.h.
70 /                   Fixed f_unlink() fails to remove a sub-dir on _FS_RPATH.
71 /                   Fixed name matching error on the 13 char boundary.
72 /                   Added a configuration option, _LFN_UNICODE.
73 /                   Changed f_readdir() to return the SFN with always upper case on non-LFN cfg.
74 /
75 / May 15,'10 R0.08  Added a memory configuration option. (_USE_LFN = 3)
76 /                   Added file lock feature. (_FS_SHARE)
77 /                   Added fast seek feature. (_USE_FASTSEEK)
78 /                   Changed some types on the API, XCHAR->TCHAR.
79 /                   Changed fname member in the FILINFO structure on Unicode cfg.
80 /                   String functions support UTF-8 encoding files on Unicode cfg.
81 / Aug 16,'10 R0.08a Added f_getcwd(). (_FS_RPATH = 2)
82 /                   Added sector erase feature. (_USE_ERASE)
83 /                   Moved file lock semaphore table from fs object to the bss.
84 /                   Fixed a wrong directory entry is created on non-LFN cfg when the given name contains ';'.
85 /                   Fixed f_mkfs() creates wrong FAT32 volume.
86 / Jan 15,'11 R0.08b Fast seek feature is also applied to f_read() and f_write().
87 /                   f_lseek() reports required table size on creating CLMP.
88 /                   Extended format syntax of f_printf function.
89 /                   Ignores duplicated directory separators in given path names.
90 /---------------------------------------------------------------------------*/
91 
92 #include "ff.h"     /* FatFs configurations and declarations */
93 #include "diskio.h"   /* Declarations of low level disk I/O functions */
94 
95 
96 /*--------------------------------------------------------------------------
97 
98    Module Private Definitions
99 
100 ---------------------------------------------------------------------------*/
101 
102 #if _FATFS != 8237
103 #error Wrong include file (ff.h).
104 #endif
105 
106 
107 /* Definitions on sector size */
108 #if _MAX_SS != 512 && _MAX_SS != 1024 && _MAX_SS != 2048 && _MAX_SS != 4096
109 #error Wrong sector size.
110 #endif
111 #if _MAX_SS != 512
112 #define SS(fs)  ((fs)->ssize) /* Multiple sector size */
113 #else
114 #define SS(fs)  512U      /* Fixed sector size */
115 #endif
116 
117 
118 /* Reentrancy related */
119 #if _FS_REENTRANT
120 #if _USE_LFN == 1
121 #error Static LFN work area must not be used in re-entrant configuration.
122 #endif
123 #define ENTER_FF(fs)    { if (!lock_fs(fs)) return FR_TIMEOUT; }
124 #define LEAVE_FF(fs, res) { unlock_fs(fs, res); return res; }
125 #else
126 #define ENTER_FF(fs)
127 #define LEAVE_FF(fs, res) return res
128 #endif
129 
130 #define ABORT(fs, res)    { fp->flag |= FA__ERROR; LEAVE_FF(fs, res); }
131 
132 
133 /* File shareing feature */
134 #if _FS_SHARE
135 #if _FS_READONLY
136 #error _FS_SHARE must be 0 on read-only cfg.
137 #endif
138 typedef struct {
139   FATFS *fs;        /* File ID 1, volume (NULL:blank entry) */
140   DWORD clu;        /* File ID 2, directory */
141   WORD idx;       /* File ID 3, directory index */
142   WORD ctr;       /* File open counter, 0:none, 0x01..0xFF:read open count, 0x100:write mode */
143 } FILESEM;
144 #endif
145 
146 
147 /* Misc definitions */
148 #define LD_CLUST(dir) (((DWORD)LD_WORD(dir+DIR_FstClusHI)<<16) | LD_WORD(dir+DIR_FstClusLO))
149 #define ST_CLUST(dir,cl) {ST_WORD(dir+DIR_FstClusLO, cl); ST_WORD(dir+DIR_FstClusHI, (DWORD)cl>>16);}
150 
151 
152 /* DBCS code ranges and SBCS extend char conversion table */
153 
154 #if _CODE_PAGE == 932 /* Japanese Shift-JIS */
155 #define _DF1S 0x81  /* DBC 1st byte range 1 start */
156 #define _DF1E 0x9F  /* DBC 1st byte range 1 end */
157 #define _DF2S 0xE0  /* DBC 1st byte range 2 start */
158 #define _DF2E 0xFC  /* DBC 1st byte range 2 end */
159 #define _DS1S 0x40  /* DBC 2nd byte range 1 start */
160 #define _DS1E 0x7E  /* DBC 2nd byte range 1 end */
161 #define _DS2S 0x80  /* DBC 2nd byte range 2 start */
162 #define _DS2E 0xFC  /* DBC 2nd byte range 2 end */
163 
164 #elif _CODE_PAGE == 936 /* Simplified Chinese GBK */
165 #define _DF1S 0x81
166 #define _DF1E 0xFE
167 #define _DS1S 0x40
168 #define _DS1E 0x7E
169 #define _DS2S 0x80
170 #define _DS2E 0xFE
171 
172 #elif _CODE_PAGE == 949 /* Korean */
173 #define _DF1S 0x81
174 #define _DF1E 0xFE
175 #define _DS1S 0x41
176 #define _DS1E 0x5A
177 #define _DS2S 0x61
178 #define _DS2E 0x7A
179 #define _DS3S 0x81
180 #define _DS3E 0xFE
181 
182 #elif _CODE_PAGE == 950 /* Traditional Chinese Big5 */
183 #define _DF1S 0x81
184 #define _DF1E 0xFE
185 #define _DS1S 0x40
186 #define _DS1E 0x7E
187 #define _DS2S 0xA1
188 #define _DS2E 0xFE
189 
190 #elif _CODE_PAGE == 437 /* U.S. (OEM) */
191 #define _DF1S 0
192 #define _EXCVT {0x80,0x9A,0x90,0x41,0x8E,0x41,0x8F,0x80,0x45,0x45,0x45,0x49,0x49,0x49,0x8E,0x8F,0x90,0x92,0x92,0x4F,0x99,0x4F,0x55,0x55,0x59,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \
193         0x41,0x49,0x4F,0x55,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0x21,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
194         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
195         0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF,0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF}
196 
197 #elif _CODE_PAGE == 720 /* Arabic (OEM) */
198 #define _DF1S 0
199 #define _EXCVT {0x80,0x81,0x45,0x41,0x84,0x41,0x86,0x43,0x45,0x45,0x45,0x49,0x49,0x8D,0x8E,0x8F,0x90,0x92,0x92,0x93,0x94,0x95,0x49,0x49,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \
200         0xA0,0xA1,0xA2,0xA3,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
201         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
202         0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF,0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF}
203 
204 #elif _CODE_PAGE == 737 /* Greek (OEM) */
205 #define _DF1S 0
206 #define _EXCVT {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x90,0x92,0x92,0x93,0x94,0x95,0x96,0x97,0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87, \
207         0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x90,0x91,0xAA,0x92,0x93,0x94,0x95,0x96,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
208         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
209         0x97,0xEA,0xEB,0xEC,0xE4,0xED,0xEE,0xE7,0xE8,0xF1,0xEA,0xEB,0xEC,0xED,0xEE,0xEF,0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF}
210 
211 #elif _CODE_PAGE == 775 /* Baltic (OEM) */
212 #define _DF1S 0
213 #define _EXCVT {0x80,0x9A,0x91,0xA0,0x8E,0x95,0x8F,0x80,0xAD,0xED,0x8A,0x8A,0xA1,0x8D,0x8E,0x8F,0x90,0x92,0x92,0xE2,0x99,0x95,0x96,0x97,0x97,0x99,0x9A,0x9D,0x9C,0x9D,0x9E,0x9F, \
214         0xA0,0xA1,0xE0,0xA3,0xA3,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
215         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xB5,0xB6,0xB7,0xB8,0xBD,0xBE,0xC6,0xC7,0xA5,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
216         0xE0,0xE1,0xE2,0xE3,0xE5,0xE5,0xE6,0xE3,0xE8,0xE8,0xEA,0xEA,0xEE,0xED,0xEE,0xEF,0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF}
217 
218 #elif _CODE_PAGE == 850 /* Multilingual Latin 1 (OEM) */
219 #define _DF1S 0
220 #define _EXCVT {0x80,0x9A,0x90,0xB6,0x8E,0xB7,0x8F,0x80,0xD2,0xD3,0xD4,0xD8,0xD7,0xDE,0x8E,0x8F,0x90,0x92,0x92,0xE2,0x99,0xE3,0xEA,0xEB,0x59,0x99,0x9A,0x9D,0x9C,0x9D,0x9E,0x9F, \
221         0xB5,0xD6,0xE0,0xE9,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0x21,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
222         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC7,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
223         0xE0,0xE1,0xE2,0xE3,0xE5,0xE5,0xE6,0xE7,0xE7,0xE9,0xEA,0xEB,0xED,0xED,0xEE,0xEF,0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF}
224 
225 #elif _CODE_PAGE == 852 /* Latin 2 (OEM) */
226 #define _DF1S 0
227 #define _EXCVT {0x80,0x9A,0x90,0xB6,0x8E,0xDE,0x8F,0x80,0x9D,0xD3,0x8A,0x8A,0xD7,0x8D,0x8E,0x8F,0x90,0x91,0x91,0xE2,0x99,0x95,0x95,0x97,0x97,0x99,0x9A,0x9B,0x9B,0x9D,0x9E,0x9F, \
228         0xB5,0xD6,0xE0,0xE9,0xA4,0xA4,0xA6,0xA6,0xA8,0xA8,0xAA,0x8D,0xAC,0xB8,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBD,0xBF, \
229         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC6,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD1,0xD1,0xD2,0xD3,0xD2,0xD5,0xD6,0xD7,0xB7,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
230         0xE0,0xE1,0xE2,0xE3,0xE3,0xD5,0xE6,0xE6,0xE8,0xE9,0xE8,0xEB,0xED,0xED,0xDD,0xEF,0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xEB,0xFC,0xFC,0xFE,0xFF}
231 
232 #elif _CODE_PAGE == 855 /* Cyrillic (OEM) */
233 #define _DF1S 0
234 #define _EXCVT {0x81,0x81,0x83,0x83,0x85,0x85,0x87,0x87,0x89,0x89,0x8B,0x8B,0x8D,0x8D,0x8F,0x8F,0x91,0x91,0x93,0x93,0x95,0x95,0x97,0x97,0x99,0x99,0x9B,0x9B,0x9D,0x9D,0x9F,0x9F, \
235         0xA1,0xA1,0xA3,0xA3,0xA5,0xA5,0xA7,0xA7,0xA9,0xA9,0xAB,0xAB,0xAD,0xAD,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB6,0xB6,0xB8,0xB8,0xB9,0xBA,0xBB,0xBC,0xBE,0xBE,0xBF, \
236         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC7,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD1,0xD1,0xD3,0xD3,0xD5,0xD5,0xD7,0xD7,0xDD,0xD9,0xDA,0xDB,0xDC,0xDD,0xE0,0xDF, \
237         0xE0,0xE2,0xE2,0xE4,0xE4,0xE6,0xE6,0xE8,0xE8,0xEA,0xEA,0xEC,0xEC,0xEE,0xEE,0xEF,0xF0,0xF2,0xF2,0xF4,0xF4,0xF6,0xF6,0xF8,0xF8,0xFA,0xFA,0xFC,0xFC,0xFD,0xFE,0xFF}
238 
239 #elif _CODE_PAGE == 857 /* Turkish (OEM) */
240 #define _DF1S 0
241 #define _EXCVT {0x80,0x9A,0x90,0xB6,0x8E,0xB7,0x8F,0x80,0xD2,0xD3,0xD4,0xD8,0xD7,0x98,0x8E,0x8F,0x90,0x92,0x92,0xE2,0x99,0xE3,0xEA,0xEB,0x98,0x99,0x9A,0x9D,0x9C,0x9D,0x9E,0x9E, \
242         0xB5,0xD6,0xE0,0xE9,0xA5,0xA5,0xA6,0xA6,0xA8,0xA9,0xAA,0xAB,0xAC,0x21,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
243         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC7,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
244         0xE0,0xE1,0xE2,0xE3,0xE5,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xDE,0x59,0xEE,0xEF,0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF}
245 
246 #elif _CODE_PAGE == 858 /* Multilingual Latin 1 + Euro (OEM) */
247 #define _DF1S 0
248 #define _EXCVT {0x80,0x9A,0x90,0xB6,0x8E,0xB7,0x8F,0x80,0xD2,0xD3,0xD4,0xD8,0xD7,0xDE,0x8E,0x8F,0x90,0x92,0x92,0xE2,0x99,0xE3,0xEA,0xEB,0x59,0x99,0x9A,0x9D,0x9C,0x9D,0x9E,0x9F, \
249         0xB5,0xD6,0xE0,0xE9,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0x21,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
250         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC7,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD1,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
251         0xE0,0xE1,0xE2,0xE3,0xE5,0xE5,0xE6,0xE7,0xE7,0xE9,0xEA,0xEB,0xED,0xED,0xEE,0xEF,0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF}
252 
253 #elif _CODE_PAGE == 862 /* Hebrew (OEM) */
254 #define _DF1S 0
255 #define _EXCVT {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \
256         0x41,0x49,0x4F,0x55,0xA5,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0x21,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
257         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
258         0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF,0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF}
259 
260 #elif _CODE_PAGE == 866 /* Russian (OEM) */
261 #define _DF1S 0
262 #define _EXCVT {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \
263         0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
264         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
265         0x90,0x91,0x92,0x93,0x9d,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F,0xF0,0xF0,0xF2,0xF2,0xF4,0xF4,0xF6,0xF6,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF}
266 
267 #elif _CODE_PAGE == 874 /* Thai (OEM, Windows) */
268 #define _DF1S 0
269 #define _EXCVT {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \
270         0xA0,0xA1,0xA2,0xA3,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
271         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
272         0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF,0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF}
273 
274 #elif _CODE_PAGE == 1250 /* Central Europe (Windows) */
275 #define _DF1S 0
276 #define _EXCVT {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x8A,0x9B,0x8C,0x8D,0x8E,0x8F, \
277         0xA0,0xA1,0xA2,0xA3,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF,0xB0,0xB1,0xB2,0xA3,0xB4,0xB5,0xB6,0xB7,0xB8,0xA5,0xAA,0xBB,0xBC,0xBD,0xBC,0xAF, \
278         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
279         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xF7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xFF}
280 
281 #elif _CODE_PAGE == 1251 /* Cyrillic (Windows) */
282 #define _DF1S 0
283 #define _EXCVT {0x80,0x81,0x82,0x82,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x80,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x8A,0x9B,0x8C,0x8D,0x8E,0x8F, \
284         0xA0,0xA2,0xA2,0xA3,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF,0xB0,0xB1,0xB2,0xB2,0xA5,0xB5,0xB6,0xB7,0xA8,0xB9,0xAA,0xBB,0xA3,0xBD,0xBD,0xAF, \
285         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
286         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF}
287 
288 #elif _CODE_PAGE == 1252 /* Latin 1 (Windows) */
289 #define _DF1S 0
290 #define _EXCVT {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0xAd,0x9B,0x8C,0x9D,0xAE,0x9F, \
291         0xA0,0x21,0xA2,0xA3,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
292         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
293         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xF7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0x9F}
294 
295 #elif _CODE_PAGE == 1253 /* Greek (Windows) */
296 #define _DF1S 0
297 #define _EXCVT {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \
298         0xA0,0xA1,0xA2,0xA3,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
299         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xA2,0xB8,0xB9,0xBA, \
300         0xE0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xF2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xFB,0xBC,0xFD,0xBF,0xFF}
301 
302 #elif _CODE_PAGE == 1254 /* Turkish (Windows) */
303 #define _DF1S 0
304 #define _EXCVT {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x8A,0x9B,0x8C,0x9D,0x9E,0x9F, \
305         0xA0,0x21,0xA2,0xA3,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
306         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
307         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xF7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0x9F}
308 
309 #elif _CODE_PAGE == 1255 /* Hebrew (Windows) */
310 #define _DF1S 0
311 #define _EXCVT {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \
312         0xA0,0x21,0xA2,0xA3,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
313         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
314         0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF,0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF}
315 
316 #elif _CODE_PAGE == 1256 /* Arabic (Windows) */
317 #define _DF1S 0
318 #define _EXCVT {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x8C,0x9D,0x9E,0x9F, \
319         0xA0,0xA1,0xA2,0xA3,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
320         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
321         0x41,0xE1,0x41,0xE3,0xE4,0xE5,0xE6,0x43,0x45,0x45,0x45,0x45,0xEC,0xED,0x49,0x49,0xF0,0xF1,0xF2,0xF3,0x4F,0xF5,0xF6,0xF7,0xF8,0x55,0xFA,0x55,0x55,0xFD,0xFE,0xFF}
322 
323 #elif _CODE_PAGE == 1257 /* Baltic (Windows) */
324 #define _DF1S 0
325 #define _EXCVT {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F, \
326         0xA0,0xA1,0xA2,0xA3,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xA8,0xB9,0xAA,0xBB,0xBC,0xBD,0xBE,0xAF, \
327         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
328         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xF7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xFF}
329 
330 #elif _CODE_PAGE == 1258 /* Vietnam (OEM, Windows) */
331 #define _DF1S 0
332 #define _EXCVT {0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,0x98,0x99,0x9A,0x9B,0xAC,0x9D,0x9E,0x9F, \
333         0xA0,0x21,0xA2,0xA3,0xA4,0xA5,0xA6,0xA7,0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF,0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF, \
334         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF, \
335         0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,0xC8,0xC9,0xCA,0xCB,0xEC,0xCD,0xCE,0xCF,0xD0,0xD1,0xF2,0xD3,0xD4,0xD5,0xD6,0xF7,0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xFE,0x9F}
336 
337 #elif _CODE_PAGE == 1 /* ASCII (for only non-LFN cfg) */
338 #if _USE_LFN
339 #error Cannot use LFN feature without valid code page.
340 #endif
341 #define _DF1S 0
342 
343 #else
344 #error Unknown code page
345 
346 #endif
347 
348 
349 /* Character code support macros */
350 #define IsUpper(c)  (((c)>='A')&&((c)<='Z'))
351 #define IsLower(c)  (((c)>='a')&&((c)<='z'))
352 #define IsDigit(c)  (((c)>='0')&&((c)<='9'))
353 
354 #if _DF1S   /* Code page is DBCS */
355 
356 #ifdef _DF2S  /* Two 1st byte areas */
357 #define IsDBCS1(c)  (((BYTE)(c) >= _DF1S && (BYTE)(c) <= _DF1E) || ((BYTE)(c) >= _DF2S && (BYTE)(c) <= _DF2E))
358 #else     /* One 1st byte area */
359 #define IsDBCS1(c)  ((BYTE)(c) >= _DF1S && (BYTE)(c) <= _DF1E)
360 #endif
361 
362 #ifdef _DS3S  /* Three 2nd byte areas */
363 #define IsDBCS2(c)  (((BYTE)(c) >= _DS1S && (BYTE)(c) <= _DS1E) || ((BYTE)(c) >= _DS2S && (BYTE)(c) <= _DS2E) || ((BYTE)(c) >= _DS3S && (BYTE)(c) <= _DS3E))
364 #else     /* Two 2nd byte areas */
365 #define IsDBCS2(c)  (((BYTE)(c) >= _DS1S && (BYTE)(c) <= _DS1E) || ((BYTE)(c) >= _DS2S && (BYTE)(c) <= _DS2E))
366 #endif
367 
368 #else     /* Code page is SBCS */
369 
370 #define IsDBCS1(c)  0
371 #define IsDBCS2(c)  0
372 
373 #endif /* _DF1S */
374 
375 
376 /* Name status flags */
377 #define NS      11    /* Index of name status byte in fn[] */
378 #define NS_LOSS   0x01  /* Out of 8.3 format */
379 #define NS_LFN    0x02  /* Force to create LFN entry */
380 #define NS_LAST   0x04  /* Last segment */
381 #define NS_BODY   0x08  /* Lower case flag (body) */
382 #define NS_EXT    0x10  /* Lower case flag (ext) */
383 #define NS_DOT    0x20  /* Dot entry */
384 
385 
386 /* FAT sub-type boundaries */
387 /* Note that the FAT spec by Microsoft says 4085 but Windows works with 4087! */
388 #define MIN_FAT16 4086  /* Minimum number of clusters for FAT16 */
389 #define MIN_FAT32 65526 /* Minimum number of clusters for FAT32 */
390 
391 
392 /* FatFs refers the members in the FAT structures as byte array instead of
393 / structure member because the structure is not binary compatible between
394 / different platforms */
395 
396 #define BS_jmpBoot      0 /* Jump instruction (3) */
397 #define BS_OEMName      3 /* OEM name (8) */
398 #define BPB_BytsPerSec    11  /* Sector size [byte] (2) */
399 #define BPB_SecPerClus    13  /* Cluster size [sector] (1) */
400 #define BPB_RsvdSecCnt    14  /* Size of reserved area [sector] (2) */
401 #define BPB_NumFATs     16  /* Number of FAT copies (1) */
402 #define BPB_RootEntCnt    17  /* Number of root dir entries for FAT12/16 (2) */
403 #define BPB_TotSec16    19  /* Volume size [sector] (2) */
404 #define BPB_Media     21  /* Media descriptor (1) */
405 #define BPB_FATSz16     22  /* FAT size [sector] (2) */
406 #define BPB_SecPerTrk   24  /* Track size [sector] (2) */
407 #define BPB_NumHeads    26  /* Number of heads (2) */
408 #define BPB_HiddSec     28  /* Number of special hidden sectors (4) */
409 #define BPB_TotSec32    32  /* Volume size [sector] (4) */
410 #define BS_DrvNum     36  /* Physical drive number (2) */
411 #define BS_BootSig      38  /* Extended boot signature (1) */
412 #define BS_VolID      39  /* Volume serial number (4) */
413 #define BS_VolLab     43  /* Volume label (8) */
414 #define BS_FilSysType   54  /* File system type (1) */
415 #define BPB_FATSz32     36  /* FAT size [sector] (4) */
416 #define BPB_ExtFlags    40  /* Extended flags (2) */
417 #define BPB_FSVer     42  /* File system version (2) */
418 #define BPB_RootClus    44  /* Root dir first cluster (4) */
419 #define BPB_FSInfo      48  /* Offset of FSInfo sector (2) */
420 #define BPB_BkBootSec   50  /* Offset of backup boot sectot (2) */
421 #define BS_DrvNum32     64  /* Physical drive number (2) */
422 #define BS_BootSig32    66  /* Extended boot signature (1) */
423 #define BS_VolID32      67  /* Volume serial number (4) */
424 #define BS_VolLab32     71  /* Volume label (8) */
425 #define BS_FilSysType32   82  /* File system type (1) */
426 #define FSI_LeadSig     0 /* FSI: Leading signature (4) */
427 #define FSI_StrucSig    484 /* FSI: Structure signature (4) */
428 #define FSI_Free_Count    488 /* FSI: Number of free clusters (4) */
429 #define FSI_Nxt_Free    492 /* FSI: Last allocated cluster (4) */
430 #define MBR_Table     446 /* MBR: Partition table offset (2) */
431 #define SZ_PTE        16  /* MBR: Size of a partition table entry */
432 #define BS_55AA       510 /* Boot sector signature (2) */
433 
434 #define DIR_Name      0 /* Short file name (11) */
435 #define DIR_Attr      11  /* Attribute (1) */
436 #define DIR_NTres     12  /* NT flag (1) */
437 #define DIR_CrtTime     14  /* Created time (2) */
438 #define DIR_CrtDate     16  /* Created date (2) */
439 #define DIR_FstClusHI   20  /* Higher 16-bit of first cluster (2) */
440 #define DIR_WrtTime     22  /* Modified time (2) */
441 #define DIR_WrtDate     24  /* Modified date (2) */
442 #define DIR_FstClusLO   26  /* Lower 16-bit of first cluster (2) */
443 #define DIR_FileSize    28  /* File size (4) */
444 #define LDIR_Ord      0 /* LFN entry order and LLE flag (1) */
445 #define LDIR_Attr     11  /* LFN attribute (1) */
446 #define LDIR_Type     12  /* LFN type (1) */
447 #define LDIR_Chksum     13  /* Sum of corresponding SFN entry */
448 #define LDIR_FstClusLO    26  /* Filled by zero (0) */
449 #define SZ_DIR        32    /* Size of a directory entry */
450 #define LLE         0x40  /* Last long entry flag in LDIR_Ord */
451 #define DDE         0xE5  /* Deleted directory enrty mark in DIR_Name[0] */
452 #define NDDE        0x05  /* Replacement of a character collides with DDE */
453 
454 
455 /*------------------------------------------------------------*/
456 /* Work area                                                  */
457 
458 #if _VOLUMES
459 static
460 FATFS *FatFs[_VOLUMES]; /* Pointer to the file system objects (logical drives) */
461 #else
462 #error Number of drives must not be 0.
463 #endif
464 
465 static
466 WORD Fsid;        /* File system mount ID */
467 
468 #if _FS_RPATH
469 static
470 BYTE CurrVol;     /* Current drive */
471 #endif
472 
473 #if _FS_SHARE
474 static
475 FILESEM Files[_FS_SHARE]; /* File lock semaphores */
476 #endif
477 
478 #if _USE_LFN == 0     /* No LFN */
479 #define DEF_NAMEBUF     BYTE sfn[12]
480 #define INIT_BUF(dobj)    (dobj).fn = sfn
481 #define FREE_BUF()
482 
483 #elif _USE_LFN == 1     /* LFN with static LFN working buffer */
484 static WCHAR LfnBuf[_MAX_LFN+1];
485 #define DEF_NAMEBUF     BYTE sfn[12]
486 #define INIT_BUF(dobj)    { (dobj).fn = sfn; (dobj).lfn = LfnBuf; }
487 #define FREE_BUF()
488 
489 #elif _USE_LFN == 2     /* LFN with dynamic LFN working buffer on the stack */
490 #define DEF_NAMEBUF     BYTE sfn[12]; WCHAR lbuf[_MAX_LFN+1]
491 #define INIT_BUF(dobj)    { (dobj).fn = sfn; (dobj).lfn = lbuf; }
492 #define FREE_BUF()
493 
494 #elif _USE_LFN == 3     /* LFN with dynamic LFN working buffer on the heap */
495 #define DEF_NAMEBUF     BYTE sfn[12]; WCHAR *lfn
496 #define INIT_BUF(dobj)    { lfn = ff_memalloc((_MAX_LFN + 1) * 2); \
497                 if (!lfn) LEAVE_FF((dobj).fs, FR_NOT_ENOUGH_CORE); \
498                 (dobj).lfn = lfn; (dobj).fn = sfn; }
499 #define FREE_BUF()      ff_memfree(lfn)
500 
501 #else
502 #error Wrong LFN configuration.
503 #endif
504 
505 
506 
507 
508 /*--------------------------------------------------------------------------
509 
510    Module Private Functions
511 
512 ---------------------------------------------------------------------------*/
513 
514 
515 /*-----------------------------------------------------------------------*/
516 /* String functions                                                      */
517 /*-----------------------------------------------------------------------*/
518 
519 /* Copy memory to memory */
520 static
mem_cpy(void * dst,const void * src,UINT cnt)521 void mem_cpy (void* dst, const void* src, UINT cnt) {
522   BYTE *d = (BYTE*)dst;
523   const BYTE *s = (const BYTE*)src;
524 
525 #if _WORD_ACCESS == 1
526   while (cnt >= sizeof(int)) {
527     *(int*)d = *(int*)s;
528     d += sizeof(int); s += sizeof(int);
529     cnt -= sizeof(int);
530   }
531 #endif
532   while (cnt--)
533     *d++ = *s++;
534 }
535 
536 /* Fill memory */
537 static
mem_set(void * dst,int val,UINT cnt)538 void mem_set (void* dst, int val, UINT cnt) {
539   BYTE *d = (BYTE*)dst;
540 
541   while (cnt--)
542     *d++ = (BYTE)val;
543 }
544 
545 /* Compare memory to memory */
546 static
mem_cmp(const void * dst,const void * src,UINT cnt)547 int mem_cmp (const void* dst, const void* src, UINT cnt) {
548   const BYTE *d = (const BYTE *)dst, *s = (const BYTE *)src;
549   int r = 0;
550 
551   while (cnt-- && (r = *d++ - *s++) == 0) ;
552   return r;
553 }
554 
555 /* Check if chr is contained in the string */
556 static
chk_chr(const char * str,int chr)557 int chk_chr (const char* str, int chr) {
558   while (*str && *str != chr) str++;
559   return *str;
560 }
561 
562 
563 
564 /*-----------------------------------------------------------------------*/
565 /* Request/Release grant to access the volume                            */
566 /*-----------------------------------------------------------------------*/
567 #if _FS_REENTRANT
568 
569 static
lock_fs(FATFS * fs)570 int lock_fs (
571   FATFS *fs   /* File system object */
572 )
573 {
574   return ff_req_grant(fs->sobj);
575 }
576 
577 
578 static
unlock_fs(FATFS * fs,FRESULT res)579 void unlock_fs (
580   FATFS *fs,    /* File system object */
581   FRESULT res   /* Result code to be returned */
582 )
583 {
584   if (res != FR_NOT_ENABLED &&
585     res != FR_INVALID_DRIVE &&
586     res != FR_INVALID_OBJECT &&
587     res != FR_TIMEOUT) {
588     ff_rel_grant(fs->sobj);
589   }
590 }
591 #endif
592 
593 
594 
595 /*-----------------------------------------------------------------------*/
596 /* File shareing control functions                                       */
597 /*-----------------------------------------------------------------------*/
598 #if _FS_SHARE
599 
600 static
chk_lock(DIR * dj,int acc)601 FRESULT chk_lock (  /* Check if the file can be accessed */
602   DIR* dj,    /* Directory object pointing the file to be checked */
603   int acc     /* Desired access (0:Read, 1:Write, 2:Delete/Rename) */
604 )
605 {
606   UINT i, be;
607 
608   /* Search file semaphore table */
609   for (i = be = 0; i < _FS_SHARE; i++) {
610     if (Files[i].fs) {  /* Existing entry */
611       if (Files[i].fs == dj->fs &&    /* Check if the file matched with an open file */
612         Files[i].clu == dj->sclust &&
613         Files[i].idx == dj->index) break;
614     } else {      /* Blank entry */
615       be++;
616     }
617   }
618   if (i == _FS_SHARE) /* The file is not opened */
619     return (be || acc == 2) ? FR_OK : FR_TOO_MANY_OPEN_FILES; /* Is there a blank entry for new file? */
620 
621   /* The file has been opened. Reject any open against writing file and all write mode open */
622   return (acc || Files[i].ctr == 0x100) ? FR_LOCKED : FR_OK;
623 }
624 
625 
626 static
enq_lock(FATFS * fs)627 int enq_lock (  /* Check if an entry is available for a new file */
628   FATFS* fs /* File system object */
629 )
630 {
631   UINT i;
632 
633   for (i = 0; i < _FS_SHARE && Files[i].fs; i++) ;
634   return (i == _FS_SHARE) ? 0 : 1;
635 }
636 
637 
638 static
inc_lock(DIR * dj,int acc)639 UINT inc_lock ( /* Increment file open counter and returns its index (0:int error) */
640   DIR* dj,  /* Directory object pointing the file to register or increment */
641   int acc   /* Desired access mode (0:Read, !0:Write) */
642 )
643 {
644   UINT i;
645 
646 
647   for (i = 0; i < _FS_SHARE; i++) { /* Find the file */
648     if (Files[i].fs == dj->fs &&
649       Files[i].clu == dj->sclust &&
650       Files[i].idx == dj->index) break;
651   }
652 
653   if (i == _FS_SHARE) {       /* Not opened. Register it as new. */
654     for (i = 0; i < _FS_SHARE && Files[i].fs; i++) ;
655     if (i == _FS_SHARE) return 0; /* No space to register (int err) */
656     Files[i].fs = dj->fs;
657     Files[i].clu = dj->sclust;
658     Files[i].idx = dj->index;
659     Files[i].ctr = 0;
660   }
661 
662   if (acc && Files[i].ctr) return 0;  /* Access violation (int err) */
663 
664   Files[i].ctr = acc ? 0x100 : Files[i].ctr + 1;  /* Set semaphore value */
665 
666   return i + 1;
667 }
668 
669 
670 static
dec_lock(UINT i)671 FRESULT dec_lock (  /* Decrement file open counter */
672   UINT i      /* Semaphore index */
673 )
674 {
675   WORD n;
676   FRESULT res;
677 
678 
679   if (--i < _FS_SHARE) {
680     n = Files[i].ctr;
681     if (n == 0x100) n = 0;
682     if (n) n--;
683     Files[i].ctr = n;
684     if (!n) Files[i].fs = 0;
685     res = FR_OK;
686   } else {
687     res = FR_INT_ERR;
688   }
689   return res;
690 }
691 
692 
693 static
clear_lock(FATFS * fs)694 void clear_lock ( /* Clear lock entries of the volume */
695   FATFS *fs
696 )
697 {
698   UINT i;
699 
700   for (i = 0; i < _FS_SHARE; i++) {
701     if (Files[i].fs == fs) Files[i].fs = 0;
702   }
703 }
704 #endif
705 
706 
707 
708 /*-----------------------------------------------------------------------*/
709 /* Change window offset                                                  */
710 /*-----------------------------------------------------------------------*/
711 
712 static
move_window(FATFS * fs,DWORD sector)713 FRESULT move_window (
714   FATFS *fs,    /* File system object */
715   DWORD sector  /* Sector number to make appearance in the fs->win[] */
716 )         /* Move to zero only writes back dirty window */
717 {
718   DWORD wsect;
719 
720 
721   wsect = fs->winsect;
722   if (wsect != sector) {  /* Changed current window */
723 #if !_FS_READONLY
724     if (fs->wflag) {  /* Write back dirty window if needed */
725       if (disk_write(fs->drv, fs->win, wsect, 1) != RES_OK)
726         return FR_DISK_ERR;
727       fs->wflag = 0;
728       if (wsect < (fs->fatbase + fs->fsize)) {  /* In FAT area */
729         BYTE nf;
730         for (nf = fs->n_fats; nf > 1; nf--) { /* Reflect the change to all FAT copies */
731           wsect += fs->fsize;
732           disk_write(fs->drv, fs->win, wsect, 1);
733         }
734       }
735     }
736 #endif
737     if (sector) {
738       if (disk_read(fs->drv, fs->win, sector, 1) != RES_OK)
739         return FR_DISK_ERR;
740       fs->winsect = sector;
741     }
742   }
743 
744   return FR_OK;
745 }
746 
747 
748 
749 
750 /*-----------------------------------------------------------------------*/
751 /* Clean-up cached data                                                  */
752 /*-----------------------------------------------------------------------*/
753 #if !_FS_READONLY
754 static
sync(FATFS * fs)755 FRESULT sync (  /* FR_OK: successful, FR_DISK_ERR: failed */
756   FATFS *fs /* File system object */
757 )
758 {
759   FRESULT res;
760 
761 
762   res = move_window(fs, 0);
763   if (res == FR_OK) {
764     /* Update FSInfo sector if needed */
765     if (fs->fs_type == FS_FAT32 && fs->fsi_flag) {
766       fs->winsect = 0;
767       /* Create FSInfo structure */
768       mem_set(fs->win, 0, 512);
769       ST_WORD(fs->win+BS_55AA, 0xAA55);
770       ST_DWORD(fs->win+FSI_LeadSig, 0x41615252);
771       ST_DWORD(fs->win+FSI_StrucSig, 0x61417272);
772       ST_DWORD(fs->win+FSI_Free_Count, fs->free_clust);
773       ST_DWORD(fs->win+FSI_Nxt_Free, fs->last_clust);
774       /* Write it into the FSInfo sector */
775       disk_write(fs->drv, fs->win, fs->fsi_sector, 1);
776       fs->fsi_flag = 0;
777     }
778     /* Make sure that no pending write process in the physical drive */
779     if (disk_ioctl(fs->drv, CTRL_SYNC, (void*)0) != RES_OK)
780       res = FR_DISK_ERR;
781   }
782 
783   return res;
784 }
785 #endif
786 
787 
788 
789 
790 /*-----------------------------------------------------------------------*/
791 /* Get sector# from cluster#                                             */
792 /*-----------------------------------------------------------------------*/
793 
794 
clust2sect(FATFS * fs,DWORD clst)795 DWORD clust2sect (  /* !=0: Sector number, 0: Failed - invalid cluster# */
796   FATFS *fs,    /* File system object */
797   DWORD clst    /* Cluster# to be converted */
798 )
799 {
800   clst -= 2;
801   if (clst >= (fs->n_fatent - 2)) return 0;   /* Invalid cluster# */
802   return clst * fs->csize + fs->database;
803 }
804 
805 
806 
807 
808 /*-----------------------------------------------------------------------*/
809 /* FAT access - Read value of a FAT entry                                */
810 /*-----------------------------------------------------------------------*/
811 
812 
get_fat(FATFS * fs,DWORD clst)813 DWORD get_fat ( /* 0xFFFFFFFF:Disk error, 1:Internal error, Else:Cluster status */
814   FATFS *fs,  /* File system object */
815   DWORD clst  /* Cluster# to get the link information */
816 )
817 {
818   UINT wc, bc;
819   BYTE *p;
820 
821 
822   if (clst < 2 || clst >= fs->n_fatent) /* Chack range */
823     return 1;
824 
825   switch (fs->fs_type) {
826   case FS_FAT12 :
827     bc = (UINT)clst; bc += bc / 2;
828     if (move_window(fs, fs->fatbase + (bc / SS(fs)))) break;
829     wc = fs->win[bc % SS(fs)]; bc++;
830     if (move_window(fs, fs->fatbase + (bc / SS(fs)))) break;
831     wc |= fs->win[bc % SS(fs)] << 8;
832     return (clst & 1) ? (wc >> 4) : (wc & 0xFFF);
833 
834   case FS_FAT16 :
835     if (move_window(fs, fs->fatbase + (clst / (SS(fs) / 2)))) break;
836     p = &fs->win[clst * 2 % SS(fs)];
837     return LD_WORD(p);
838 
839   case FS_FAT32 :
840     if (move_window(fs, fs->fatbase + (clst / (SS(fs) / 4)))) break;
841     p = &fs->win[clst * 4 % SS(fs)];
842     return LD_DWORD(p) & 0x0FFFFFFF;
843   }
844 
845   return 0xFFFFFFFF;  /* An error occurred at the disk I/O layer */
846 }
847 
848 
849 
850 
851 /*-----------------------------------------------------------------------*/
852 /* FAT access - Change value of a FAT entry                              */
853 /*-----------------------------------------------------------------------*/
854 #if !_FS_READONLY
855 
put_fat(FATFS * fs,DWORD clst,DWORD val)856 FRESULT put_fat (
857   FATFS *fs,  /* File system object */
858   DWORD clst, /* Cluster# to be changed in range of 2 to fs->n_fatent - 1 */
859   DWORD val /* New value to mark the cluster */
860 )
861 {
862   UINT bc;
863   BYTE *p;
864   FRESULT res;
865 
866 
867   if (clst < 2 || clst >= fs->n_fatent) { /* Check range */
868     res = FR_INT_ERR;
869 
870   } else {
871     switch (fs->fs_type) {
872     case FS_FAT12 :
873       bc = clst; bc += bc / 2;
874       res = move_window(fs, fs->fatbase + (bc / SS(fs)));
875       if (res != FR_OK) break;
876       p = &fs->win[bc % SS(fs)];
877       *p = (clst & 1) ? ((*p & 0x0F) | ((BYTE)val << 4)) : (BYTE)val;
878       bc++;
879       fs->wflag = 1;
880       res = move_window(fs, fs->fatbase + (bc / SS(fs)));
881       if (res != FR_OK) break;
882       p = &fs->win[bc % SS(fs)];
883       *p = (clst & 1) ? (BYTE)(val >> 4) : ((*p & 0xF0) | ((BYTE)(val >> 8) & 0x0F));
884       break;
885 
886     case FS_FAT16 :
887       res = move_window(fs, fs->fatbase + (clst / (SS(fs) / 2)));
888       if (res != FR_OK) break;
889       p = &fs->win[clst * 2 % SS(fs)];
890       ST_WORD(p, (WORD)val);
891       break;
892 
893     case FS_FAT32 :
894       res = move_window(fs, fs->fatbase + (clst / (SS(fs) / 4)));
895       if (res != FR_OK) break;
896       p = &fs->win[clst * 4 % SS(fs)];
897       val |= LD_DWORD(p) & 0xF0000000;
898       ST_DWORD(p, val);
899       break;
900 
901     default :
902       res = FR_INT_ERR;
903     }
904     fs->wflag = 1;
905   }
906 
907   return res;
908 }
909 #endif /* !_FS_READONLY */
910 
911 
912 
913 
914 /*-----------------------------------------------------------------------*/
915 /* FAT handling - Remove a cluster chain                                 */
916 /*-----------------------------------------------------------------------*/
917 #if !_FS_READONLY
918 static
remove_chain(FATFS * fs,DWORD clst)919 FRESULT remove_chain (
920   FATFS *fs,      /* File system object */
921   DWORD clst      /* Cluster# to remove a chain from */
922 )
923 {
924   FRESULT res;
925   DWORD nxt;
926 #if _USE_ERASE
927   DWORD scl = clst, ecl = clst, resion[2];
928 #endif
929 
930   if (clst < 2 || clst >= fs->n_fatent) { /* Check range */
931     res = FR_INT_ERR;
932 
933   } else {
934     res = FR_OK;
935     while (clst < fs->n_fatent) {     /* Not a last link? */
936       nxt = get_fat(fs, clst);      /* Get cluster status */
937       if (nxt == 0) break;        /* Empty cluster? */
938       if (nxt == 1) { res = FR_INT_ERR; break; }  /* Internal error? */
939       if (nxt == 0xFFFFFFFF) { res = FR_DISK_ERR; break; }  /* Disk error? */
940       res = put_fat(fs, clst, 0);     /* Mark the cluster "empty" */
941       if (res != FR_OK) break;
942       if (fs->free_clust != 0xFFFFFFFF) { /* Update FSInfo */
943         fs->free_clust++;
944         fs->fsi_flag = 1;
945       }
946 #if _USE_ERASE
947       if (ecl + 1 == nxt) { /* Next cluster is contiguous */
948         ecl = nxt;
949       } else {        /* End of contiguous clusters */
950         resion[0] = clust2sect(fs, scl);          /* Start sector */
951         resion[1] = clust2sect(fs, ecl) + fs->csize - 1;  /* End sector */
952         disk_ioctl(fs->drv, CTRL_ERASE_SECTOR, resion);   /* Erase the block */
953         scl = ecl = nxt;
954       }
955 #endif
956       clst = nxt; /* Next cluster */
957     }
958   }
959 
960   return res;
961 }
962 #endif
963 
964 
965 
966 
967 /*-----------------------------------------------------------------------*/
968 /* FAT handling - Stretch or Create a cluster chain                      */
969 /*-----------------------------------------------------------------------*/
970 #if !_FS_READONLY
971 static
create_chain(FATFS * fs,DWORD clst)972 DWORD create_chain (  /* 0:No free cluster, 1:Internal error, 0xFFFFFFFF:Disk error, >=2:New cluster# */
973   FATFS *fs,      /* File system object */
974   DWORD clst      /* Cluster# to stretch. 0 means create a new chain. */
975 )
976 {
977   DWORD cs, ncl, scl;
978   FRESULT res;
979 
980 
981   if (clst == 0) {    /* Create a new chain */
982     scl = fs->last_clust;     /* Get suggested start point */
983     if (!scl || scl >= fs->n_fatent) scl = 1;
984   }
985   else {          /* Stretch the current chain */
986     cs = get_fat(fs, clst);     /* Check the cluster status */
987     if (cs < 2) return 1;     /* It is an invalid cluster */
988     if (cs < fs->n_fatent) return cs; /* It is already followed by next cluster */
989     scl = clst;
990   }
991 
992   ncl = scl;        /* Start cluster */
993   for (;;) {
994     ncl++;              /* Next cluster */
995     if (ncl >= fs->n_fatent) {    /* Wrap around */
996       ncl = 2;
997       if (ncl > scl) return 0;  /* No free cluster */
998     }
999     cs = get_fat(fs, ncl);      /* Get the cluster status */
1000     if (cs == 0) break;       /* Found a free cluster */
1001     if (cs == 0xFFFFFFFF || cs == 1)/* An error occurred */
1002       return cs;
1003     if (ncl == scl) return 0;   /* No free cluster */
1004   }
1005 
1006   res = put_fat(fs, ncl, 0x0FFFFFFF); /* Mark the new cluster "last link" */
1007   if (res == FR_OK && clst != 0) {
1008     res = put_fat(fs, clst, ncl); /* Link it to the previous one if needed */
1009   }
1010   if (res == FR_OK) {
1011     fs->last_clust = ncl;     /* Update FSINFO */
1012     if (fs->free_clust != 0xFFFFFFFF) {
1013       fs->free_clust--;
1014       fs->fsi_flag = 1;
1015     }
1016   } else {
1017     ncl = (res == FR_DISK_ERR) ? 0xFFFFFFFF : 1;
1018   }
1019 
1020   return ncl;   /* Return new cluster number or error code */
1021 }
1022 #endif /* !_FS_READONLY */
1023 
1024 
1025 
1026 /*-----------------------------------------------------------------------*/
1027 /* FAT handling - Convert offset into cluster with link map table        */
1028 /*-----------------------------------------------------------------------*/
1029 
1030 #if _USE_FASTSEEK
1031 static
clmt_clust(FIL * fp,DWORD ofs)1032 DWORD clmt_clust (  /* <2:Error, >=2:Cluster number */
1033   FIL* fp,    /* Pointer to the file object */
1034   DWORD ofs   /* File offset to be converted to cluster# */
1035 )
1036 {
1037   DWORD cl, ncl, *tbl;
1038 
1039 
1040   tbl = fp->cltbl + 1;  /* Top of CLMT */
1041   cl = ofs / SS(fp->fs) / fp->fs->csize;  /* Cluster order from top of the file */
1042   for (;;) {
1043     ncl = *tbl++;     /* Number of cluters in the fragment */
1044     if (!ncl) return 0;   /* End of table? (error) */
1045     if (cl < ncl) break;  /* In this fragment? */
1046     cl -= ncl; tbl++;   /* Next fragment */
1047   }
1048   return cl + *tbl; /* Return the cluster number */
1049 }
1050 #endif  /* _USE_FASTSEEK */
1051 
1052 
1053 
1054 /*-----------------------------------------------------------------------*/
1055 /* Directory handling - Set directory index                              */
1056 /*-----------------------------------------------------------------------*/
1057 
1058 static
dir_sdi(DIR * dj,WORD idx)1059 FRESULT dir_sdi (
1060   DIR *dj,    /* Pointer to directory object */
1061   WORD idx    /* Directory index number */
1062 )
1063 {
1064   DWORD clst;
1065   WORD ic;
1066 
1067 
1068   dj->index = idx;
1069   clst = dj->sclust;
1070   if (clst == 1 || clst >= dj->fs->n_fatent)  /* Check start cluster range */
1071     return FR_INT_ERR;
1072   if (!clst && dj->fs->fs_type == FS_FAT32) /* Replace cluster# 0 with root cluster# if in FAT32 */
1073     clst = dj->fs->dirbase;
1074 
1075   if (clst == 0) {  /* Static table (root-dir in FAT12/16) */
1076     dj->clust = clst;
1077     if (idx >= dj->fs->n_rootdir)   /* Index is out of range */
1078       return FR_INT_ERR;
1079     dj->sect = dj->fs->dirbase + idx / (SS(dj->fs) / SZ_DIR); /* Sector# */
1080   }
1081   else {        /* Dynamic table (sub-dirs or root-dir in FAT32) */
1082     ic = SS(dj->fs) / SZ_DIR * dj->fs->csize; /* Entries per cluster */
1083     while (idx >= ic) { /* Follow cluster chain */
1084       clst = get_fat(dj->fs, clst);       /* Get next cluster */
1085       if (clst == 0xFFFFFFFF) return FR_DISK_ERR; /* Disk error */
1086       if (clst < 2 || clst >= dj->fs->n_fatent) /* Reached to end of table or int error */
1087         return FR_INT_ERR;
1088       idx -= ic;
1089     }
1090     dj->clust = clst;
1091     dj->sect = clust2sect(dj->fs, clst) + idx / (SS(dj->fs) / SZ_DIR);  /* Sector# */
1092   }
1093 
1094   dj->dir = dj->fs->win + (idx % (SS(dj->fs) / SZ_DIR)) * SZ_DIR; /* Ptr to the entry in the sector */
1095 
1096   return FR_OK; /* Seek succeeded */
1097 }
1098 
1099 
1100 
1101 
1102 /*-----------------------------------------------------------------------*/
1103 /* Directory handling - Move directory index next                        */
1104 /*-----------------------------------------------------------------------*/
1105 
1106 static
dir_next(DIR * dj,int stretch)1107 FRESULT dir_next (  /* FR_OK:Succeeded, FR_NO_FILE:End of table, FR_DENIED:EOT and could not stretch */
1108   DIR *dj,    /* Pointer to directory object */
1109   int stretch   /* 0: Do not stretch table, 1: Stretch table if needed */
1110 )
1111 {
1112   DWORD clst;
1113   WORD i;
1114 
1115 
1116   i = dj->index + 1;
1117   if (!i || !dj->sect)  /* Report EOT when index has reached 65535 */
1118     return FR_NO_FILE;
1119 
1120   if (!(i % (SS(dj->fs) / SZ_DIR))) { /* Sector changed? */
1121     dj->sect++;         /* Next sector */
1122 
1123     if (dj->clust == 0) { /* Static table */
1124       if (i >= dj->fs->n_rootdir) /* Report EOT when end of table */
1125         return FR_NO_FILE;
1126     }
1127     else {          /* Dynamic table */
1128       if (((i / (SS(dj->fs) / SZ_DIR)) & (dj->fs->csize - 1)) == 0) { /* Cluster changed? */
1129         clst = get_fat(dj->fs, dj->clust);        /* Get next cluster */
1130         if (clst <= 1) return FR_INT_ERR;
1131         if (clst == 0xFFFFFFFF) return FR_DISK_ERR;
1132         if (clst >= dj->fs->n_fatent) {         /* When it reached end of dynamic table */
1133 #if !_FS_READONLY
1134           BYTE c;
1135           if (!stretch) return FR_NO_FILE;      /* When do not stretch, report EOT */
1136           clst = create_chain(dj->fs, dj->clust);   /* Stretch cluster chain */
1137           if (clst == 0) return FR_DENIED;      /* No free cluster */
1138           if (clst == 1) return FR_INT_ERR;
1139           if (clst == 0xFFFFFFFF) return FR_DISK_ERR;
1140           /* Clean-up stretched table */
1141           if (move_window(dj->fs, 0)) return FR_DISK_ERR; /* Flush active window */
1142           mem_set(dj->fs->win, 0, SS(dj->fs));      /* Clear window buffer */
1143           dj->fs->winsect = clust2sect(dj->fs, clst); /* Cluster start sector */
1144           for (c = 0; c < dj->fs->csize; c++) {   /* Fill the new cluster with 0 */
1145             dj->fs->wflag = 1;
1146             if (move_window(dj->fs, 0)) return FR_DISK_ERR;
1147             dj->fs->winsect++;
1148           }
1149           dj->fs->winsect -= c;           /* Rewind window address */
1150 #else
1151           return FR_NO_FILE;      /* Report EOT */
1152 #endif
1153         }
1154         dj->clust = clst;       /* Initialize data for new cluster */
1155         dj->sect = clust2sect(dj->fs, clst);
1156       }
1157     }
1158   }
1159 
1160   dj->index = i;
1161   dj->dir = dj->fs->win + (i % (SS(dj->fs) / SZ_DIR)) * SZ_DIR;
1162 
1163   return FR_OK;
1164 }
1165 
1166 
1167 
1168 
1169 /*-----------------------------------------------------------------------*/
1170 /* LFN handling - Test/Pick/Fit an LFN segment from/to directory entry   */
1171 /*-----------------------------------------------------------------------*/
1172 #if _USE_LFN
1173 static
1174 const BYTE LfnOfs[] = {1,3,5,7,9,14,16,18,20,22,24,28,30};  /* Offset of LFN chars in the directory entry */
1175 
1176 
1177 static
cmp_lfn(WCHAR * lfnbuf,BYTE * dir)1178 int cmp_lfn (     /* 1:Matched, 0:Not matched */
1179   WCHAR *lfnbuf,    /* Pointer to the LFN to be compared */
1180   BYTE *dir     /* Pointer to the directory entry containing a part of LFN */
1181 )
1182 {
1183   UINT i, s;
1184   WCHAR wc, uc;
1185 
1186 
1187   i = ((dir[LDIR_Ord] & ~LLE) - 1) * 13;  /* Get offset in the LFN buffer */
1188   s = 0; wc = 1;
1189   do {
1190     uc = LD_WORD(dir+LfnOfs[s]);  /* Pick an LFN character from the entry */
1191     if (wc) { /* Last char has not been processed */
1192       wc = ff_wtoupper(uc);   /* Convert it to upper case */
1193       if (i >= _MAX_LFN || wc != ff_wtoupper(lfnbuf[i++]))  /* Compare it */
1194         return 0;       /* Not matched */
1195     } else {
1196       if (uc != 0xFFFF) return 0; /* Check filler */
1197     }
1198   } while (++s < 13);       /* Repeat until all chars in the entry are checked */
1199 
1200   if ((dir[LDIR_Ord] & LLE) && wc && lfnbuf[i]) /* Last segment matched but different length */
1201     return 0;
1202 
1203   return 1;           /* The part of LFN matched */
1204 }
1205 
1206 
1207 
1208 static
pick_lfn(WCHAR * lfnbuf,BYTE * dir)1209 int pick_lfn (      /* 1:Succeeded, 0:Buffer overflow */
1210   WCHAR *lfnbuf,    /* Pointer to the Unicode-LFN buffer */
1211   BYTE *dir     /* Pointer to the directory entry */
1212 )
1213 {
1214   UINT i, s;
1215   WCHAR wc, uc;
1216 
1217 
1218   i = ((dir[LDIR_Ord] & 0x3F) - 1) * 13;  /* Offset in the LFN buffer */
1219 
1220   s = 0; wc = 1;
1221   do {
1222     uc = LD_WORD(dir+LfnOfs[s]);    /* Pick an LFN character from the entry */
1223     if (wc) { /* Last char has not been processed */
1224       if (i >= _MAX_LFN) return 0;  /* Buffer overflow? */
1225       lfnbuf[i++] = wc = uc;      /* Store it */
1226     } else {
1227       if (uc != 0xFFFF) return 0;   /* Check filler */
1228     }
1229   } while (++s < 13);           /* Read all character in the entry */
1230 
1231   if (dir[LDIR_Ord] & LLE) {        /* Put terminator if it is the last LFN part */
1232     if (i >= _MAX_LFN) return 0;    /* Buffer overflow? */
1233     lfnbuf[i] = 0;
1234   }
1235 
1236   return 1;
1237 }
1238 
1239 
1240 #if !_FS_READONLY
1241 static
fit_lfn(const WCHAR * lfnbuf,BYTE * dir,BYTE ord,BYTE sum)1242 void fit_lfn (
1243   const WCHAR *lfnbuf,  /* Pointer to the LFN buffer */
1244   BYTE *dir,        /* Pointer to the directory entry */
1245   BYTE ord,       /* LFN order (1-20) */
1246   BYTE sum        /* SFN sum */
1247 )
1248 {
1249   UINT i, s;
1250   WCHAR wc;
1251 
1252 
1253   dir[LDIR_Chksum] = sum;     /* Set check sum */
1254   dir[LDIR_Attr] = AM_LFN;    /* Set attribute. LFN entry */
1255   dir[LDIR_Type] = 0;
1256   ST_WORD(dir+LDIR_FstClusLO, 0);
1257 
1258   i = (ord - 1) * 13;       /* Get offset in the LFN buffer */
1259   s = wc = 0;
1260   do {
1261     if (wc != 0xFFFF) wc = lfnbuf[i++]; /* Get an effective char */
1262     ST_WORD(dir+LfnOfs[s], wc); /* Put it */
1263     if (!wc) wc = 0xFFFF;   /* Padding chars following last char */
1264   } while (++s < 13);
1265   if (wc == 0xFFFF || !lfnbuf[i]) ord |= LLE; /* Bottom LFN part is the start of LFN sequence */
1266   dir[LDIR_Ord] = ord;      /* Set the LFN order */
1267 }
1268 
1269 #endif
1270 #endif
1271 
1272 
1273 
1274 /*-----------------------------------------------------------------------*/
1275 /* Create numbered name                                                  */
1276 /*-----------------------------------------------------------------------*/
1277 #if _USE_LFN
gen_numname(BYTE * dst,const BYTE * src,const WCHAR * lfn,WORD seq)1278 void gen_numname (
1279   BYTE *dst,      /* Pointer to generated SFN */
1280   const BYTE *src,  /* Pointer to source SFN to be modified */
1281   const WCHAR *lfn, /* Pointer to LFN */
1282   WORD seq      /* Sequence number */
1283 )
1284 {
1285   BYTE ns[8], c;
1286   UINT i, j;
1287 
1288 
1289   mem_cpy(dst, src, 11);
1290 
1291   if (seq > 5) {  /* On many collisions, generate a hash number instead of sequential number */
1292     do seq = (seq >> 1) + (seq << 15) + (WORD)*lfn++; while (*lfn);
1293   }
1294 
1295   /* itoa (hexdecimal) */
1296   i = 7;
1297   do {
1298     c = (seq % 16) + '0';
1299     if (c > '9') c += 7;
1300     ns[i--] = c;
1301     seq /= 16;
1302   } while (seq);
1303   ns[i] = '~';
1304 
1305   /* Append the number */
1306   for (j = 0; j < i && dst[j] != ' '; j++) {
1307     if (IsDBCS1(dst[j])) {
1308       if (j == i - 1) break;
1309       j++;
1310     }
1311   }
1312   do {
1313     dst[j++] = (i < 8) ? ns[i++] : ' ';
1314   } while (j < 8);
1315 }
1316 #endif
1317 
1318 
1319 
1320 
1321 /*-----------------------------------------------------------------------*/
1322 /* Calculate sum of an SFN                                               */
1323 /*-----------------------------------------------------------------------*/
1324 #if _USE_LFN
1325 static
sum_sfn(const BYTE * dir)1326 BYTE sum_sfn (
1327   const BYTE *dir   /* Ptr to directory entry */
1328 )
1329 {
1330   BYTE sum = 0;
1331   UINT n = 11;
1332 
1333   do sum = (sum >> 1) + (sum << 7) + *dir++; while (--n);
1334   return sum;
1335 }
1336 #endif
1337 
1338 
1339 
1340 
1341 /*-----------------------------------------------------------------------*/
1342 /* Directory handling - Find an object in the directory                  */
1343 /*-----------------------------------------------------------------------*/
1344 
1345 static
dir_find(DIR * dj)1346 FRESULT dir_find (
1347   DIR *dj     /* Pointer to the directory object linked to the file name */
1348 )
1349 {
1350   FRESULT res;
1351   BYTE c, *dir;
1352 #if _USE_LFN
1353   BYTE a, ord, sum;
1354 #endif
1355 
1356   res = dir_sdi(dj, 0);     /* Rewind directory object */
1357   if (res != FR_OK) return res;
1358 
1359 #if _USE_LFN
1360   ord = sum = 0xFF;
1361 #endif
1362   do {
1363     res = move_window(dj->fs, dj->sect);
1364     if (res != FR_OK) break;
1365     dir = dj->dir;          /* Ptr to the directory entry of current index */
1366     c = dir[DIR_Name];
1367     if (c == 0) { res = FR_NO_FILE; break; }  /* Reached to end of table */
1368 #if _USE_LFN  /* LFN configuration */
1369     a = dir[DIR_Attr] & AM_MASK;
1370     if (c == DDE || ((a & AM_VOL) && a != AM_LFN)) {  /* An entry without valid data */
1371       ord = 0xFF;
1372     } else {
1373       if (a == AM_LFN) {      /* An LFN entry is found */
1374         if (dj->lfn) {
1375           if (c & LLE) {    /* Is it start of LFN sequence? */
1376             sum = dir[LDIR_Chksum];
1377             c &= ~LLE; ord = c; /* LFN start order */
1378             dj->lfn_idx = dj->index;
1379           }
1380           /* Check validity of the LFN entry and compare it with given name */
1381           ord = (c == ord && sum == dir[LDIR_Chksum] && cmp_lfn(dj->lfn, dir)) ? ord - 1 : 0xFF;
1382         }
1383       } else {          /* An SFN entry is found */
1384         if (!ord && sum == sum_sfn(dir)) break; /* LFN matched? */
1385         ord = 0xFF; dj->lfn_idx = 0xFFFF; /* Reset LFN sequence */
1386         if (!(dj->fn[NS] & NS_LOSS) && !mem_cmp(dir, dj->fn, 11)) break;  /* SFN matched? */
1387       }
1388     }
1389 #else   /* Non LFN configuration */
1390     if (!(dir[DIR_Attr] & AM_VOL) && !mem_cmp(dir, dj->fn, 11)) /* Is it a valid entry? */
1391       break;
1392 #endif
1393     res = dir_next(dj, 0);    /* Next entry */
1394   } while (res == FR_OK);
1395 
1396   return res;
1397 }
1398 
1399 
1400 
1401 
1402 /*-----------------------------------------------------------------------*/
1403 /* Read an object from the directory                                     */
1404 /*-----------------------------------------------------------------------*/
1405 #if _FS_MINIMIZE <= 1
1406 static
dir_read(DIR * dj)1407 FRESULT dir_read (
1408   DIR *dj     /* Pointer to the directory object that pointing the entry to be read */
1409 )
1410 {
1411   FRESULT res;
1412   BYTE c, *dir;
1413 #if _USE_LFN
1414   BYTE a, ord = 0xFF, sum = 0xFF;
1415 #endif
1416 
1417   res = FR_NO_FILE;
1418   while (dj->sect) {
1419     res = move_window(dj->fs, dj->sect);
1420     if (res != FR_OK) break;
1421     dir = dj->dir;          /* Ptr to the directory entry of current index */
1422     c = dir[DIR_Name];
1423     if (c == 0) { res = FR_NO_FILE; break; }  /* Reached to end of table */
1424 #if _USE_LFN  /* LFN configuration */
1425     a = dir[DIR_Attr] & AM_MASK;
1426     if (c == DDE || (!_FS_RPATH && c == '.') || ((a & AM_VOL) && a != AM_LFN)) {  /* An entry without valid data */
1427       ord = 0xFF;
1428     } else {
1429       if (a == AM_LFN) {      /* An LFN entry is found */
1430         if (c & LLE) {      /* Is it start of LFN sequence? */
1431           sum = dir[LDIR_Chksum];
1432           c &= ~LLE; ord = c;
1433           dj->lfn_idx = dj->index;
1434         }
1435         /* Check LFN validity and capture it */
1436         ord = (c == ord && sum == dir[LDIR_Chksum] && pick_lfn(dj->lfn, dir)) ? ord - 1 : 0xFF;
1437       } else {          /* An SFN entry is found */
1438         if (ord || sum != sum_sfn(dir)) /* Is there a valid LFN? */
1439           dj->lfn_idx = 0xFFFF;   /* It has no LFN. */
1440         break;
1441       }
1442     }
1443 #else   /* Non LFN configuration */
1444     if (c != DDE && (_FS_RPATH || c != '.') && !(dir[DIR_Attr] & AM_VOL)) /* Is it a valid entry? */
1445       break;
1446 #endif
1447     res = dir_next(dj, 0);        /* Next entry */
1448     if (res != FR_OK) break;
1449   }
1450 
1451   if (res != FR_OK) dj->sect = 0;
1452 
1453   return res;
1454 }
1455 #endif
1456 
1457 
1458 
1459 /*-----------------------------------------------------------------------*/
1460 /* Register an object to the directory                                   */
1461 /*-----------------------------------------------------------------------*/
1462 #if !_FS_READONLY
1463 static
dir_register(DIR * dj)1464 FRESULT dir_register (  /* FR_OK:Successful, FR_DENIED:No free entry or too many SFN collision, FR_DISK_ERR:Disk error */
1465   DIR *dj       /* Target directory with object name to be created */
1466 )
1467 {
1468   FRESULT res;
1469   BYTE c, *dir;
1470 #if _USE_LFN  /* LFN configuration */
1471   WORD n, ne, is;
1472   BYTE sn[12], *fn, sum;
1473   WCHAR *lfn;
1474 
1475 
1476   fn = dj->fn; lfn = dj->lfn;
1477   mem_cpy(sn, fn, 12);
1478 
1479   if (_FS_RPATH && (sn[NS] & NS_DOT))   /* Cannot create dot entry */
1480     return FR_INVALID_NAME;
1481 
1482   if (sn[NS] & NS_LOSS) {     /* When LFN is out of 8.3 format, generate a numbered name */
1483     fn[NS] = 0; dj->lfn = 0;      /* Find only SFN */
1484     for (n = 1; n < 100; n++) {
1485       gen_numname(fn, sn, lfn, n);  /* Generate a numbered name */
1486       res = dir_find(dj);       /* Check if the name collides with existing SFN */
1487       if (res != FR_OK) break;
1488     }
1489     if (n == 100) return FR_DENIED;   /* Abort if too many collisions */
1490     if (res != FR_NO_FILE) return res;  /* Abort if the result is other than 'not collided' */
1491     fn[NS] = sn[NS]; dj->lfn = lfn;
1492   }
1493 
1494   if (sn[NS] & NS_LFN) {      /* When LFN is to be created, reserve an SFN + LFN entries. */
1495     for (ne = 0; lfn[ne]; ne++) ;
1496     ne = (ne + 25) / 13;
1497   } else {            /* Otherwise reserve only an SFN entry. */
1498     ne = 1;
1499   }
1500 
1501   /* Reserve contiguous entries */
1502   res = dir_sdi(dj, 0);
1503   if (res != FR_OK) return res;
1504   n = is = 0;
1505   do {
1506     res = move_window(dj->fs, dj->sect);
1507     if (res != FR_OK) break;
1508     c = *dj->dir;       /* Check the entry status */
1509     if (c == DDE || c == 0) { /* Is it a blank entry? */
1510       if (n == 0) is = dj->index; /* First index of the contiguous entry */
1511       if (++n == ne) break; /* A contiguous entry that required count is found */
1512     } else {
1513       n = 0;          /* Not a blank entry. Restart to search */
1514     }
1515     res = dir_next(dj, 1);    /* Next entry with table stretch */
1516   } while (res == FR_OK);
1517 
1518   if (res == FR_OK && ne > 1) { /* Initialize LFN entry if needed */
1519     res = dir_sdi(dj, is);
1520     if (res == FR_OK) {
1521       sum = sum_sfn(dj->fn);  /* Sum of the SFN tied to the LFN */
1522       ne--;
1523       do {          /* Store LFN entries in bottom first */
1524         res = move_window(dj->fs, dj->sect);
1525         if (res != FR_OK) break;
1526         fit_lfn(dj->lfn, dj->dir, (BYTE)ne, sum);
1527         dj->fs->wflag = 1;
1528         res = dir_next(dj, 0);  /* Next entry */
1529       } while (res == FR_OK && --ne);
1530     }
1531   }
1532 
1533 #else /* Non LFN configuration */
1534   res = dir_sdi(dj, 0);
1535   if (res == FR_OK) {
1536     do {  /* Find a blank entry for the SFN */
1537       res = move_window(dj->fs, dj->sect);
1538       if (res != FR_OK) break;
1539       c = *dj->dir;
1540       if (c == DDE || c == 0) break;  /* Is it a blank entry? */
1541       res = dir_next(dj, 1);      /* Next entry with table stretch */
1542     } while (res == FR_OK);
1543   }
1544 #endif
1545 
1546   if (res == FR_OK) {   /* Initialize the SFN entry */
1547     res = move_window(dj->fs, dj->sect);
1548     if (res == FR_OK) {
1549       dir = dj->dir;
1550       mem_set(dir, 0, SZ_DIR);  /* Clean the entry */
1551       mem_cpy(dir, dj->fn, 11); /* Put SFN */
1552 #if _USE_LFN
1553       dir[DIR_NTres] = *(dj->fn+NS) & (NS_BODY | NS_EXT); /* Put NT flag */
1554 #endif
1555       dj->fs->wflag = 1;
1556     }
1557   }
1558 
1559   return res;
1560 }
1561 #endif /* !_FS_READONLY */
1562 
1563 
1564 
1565 
1566 /*-----------------------------------------------------------------------*/
1567 /* Remove an object from the directory                                   */
1568 /*-----------------------------------------------------------------------*/
1569 #if !_FS_READONLY && !_FS_MINIMIZE
1570 static
dir_remove(DIR * dj)1571 FRESULT dir_remove (  /* FR_OK: Successful, FR_DISK_ERR: A disk error */
1572   DIR *dj       /* Directory object pointing the entry to be removed */
1573 )
1574 {
1575   FRESULT res;
1576 #if _USE_LFN  /* LFN configuration */
1577   WORD i;
1578 
1579   i = dj->index;  /* SFN index */
1580   res = dir_sdi(dj, (WORD)((dj->lfn_idx == 0xFFFF) ? i : dj->lfn_idx)); /* Goto the SFN or top of the LFN entries */
1581   if (res == FR_OK) {
1582     do {
1583       res = move_window(dj->fs, dj->sect);
1584       if (res != FR_OK) break;
1585       *dj->dir = DDE;     /* Mark the entry "deleted" */
1586       dj->fs->wflag = 1;
1587       if (dj->index >= i) break;  /* When reached SFN, all entries of the object has been deleted. */
1588       res = dir_next(dj, 0);    /* Next entry */
1589     } while (res == FR_OK);
1590     if (res == FR_NO_FILE) res = FR_INT_ERR;
1591   }
1592 
1593 #else     /* Non LFN configuration */
1594   res = dir_sdi(dj, dj->index);
1595   if (res == FR_OK) {
1596     res = move_window(dj->fs, dj->sect);
1597     if (res == FR_OK) {
1598       *dj->dir = DDE;     /* Mark the entry "deleted" */
1599       dj->fs->wflag = 1;
1600     }
1601   }
1602 #endif
1603 
1604   return res;
1605 }
1606 #endif /* !_FS_READONLY */
1607 
1608 
1609 
1610 
1611 /*-----------------------------------------------------------------------*/
1612 /* Pick a segment and create the object name in directory form           */
1613 /*-----------------------------------------------------------------------*/
1614 
1615 static
create_name(DIR * dj,const TCHAR ** path)1616 FRESULT create_name (
1617   DIR *dj,      /* Pointer to the directory object */
1618   const TCHAR **path  /* Pointer to pointer to the segment in the path string */
1619 )
1620 {
1621 #ifdef _EXCVT
1622   static const BYTE excvt[] = _EXCVT; /* Upper conversion table for extended chars */
1623 #endif
1624 
1625 #if _USE_LFN  /* LFN configuration */
1626   BYTE b, cf;
1627   WCHAR w, *lfn;
1628   UINT i, ni, si, di;
1629   const TCHAR *p;
1630 
1631   /* Create LFN in Unicode */
1632   for (p = *path; *p == '/' || *p == '\\'; p++) ; /* Strip duplicated separator */
1633   lfn = dj->lfn;
1634   si = di = 0;
1635   for (;;) {
1636     w = p[si++];          /* Get a character */
1637     if (w < ' ' || w == '/' || w == '\\') break;  /* Break on end of segment */
1638     if (di >= _MAX_LFN)       /* Reject too long name */
1639       return FR_INVALID_NAME;
1640 #if !_LFN_UNICODE
1641     w &= 0xFF;
1642     if (IsDBCS1(w)) {       /* Check if it is a DBC 1st byte (always false on SBCS cfg) */
1643       b = (BYTE)p[si++];      /* Get 2nd byte */
1644       if (!IsDBCS2(b))
1645         return FR_INVALID_NAME; /* Reject invalid sequence */
1646       w = (w << 8) + b;     /* Create a DBC */
1647     }
1648     w = ff_convert(w, 1);     /* Convert ANSI/OEM to Unicode */
1649     if (!w) return FR_INVALID_NAME; /* Reject invalid code */
1650 #endif
1651     if (w < 0x80 && chk_chr("\"*:<>\?|\x7F", w)) /* Reject illegal chars for LFN */
1652       return FR_INVALID_NAME;
1653     lfn[di++] = w;          /* Store the Unicode char */
1654   }
1655   *path = &p[si];           /* Return pointer to the next segment */
1656   cf = (w < ' ') ? NS_LAST : 0;   /* Set last segment flag if end of path */
1657 #if _FS_RPATH
1658   if ((di == 1 && lfn[di-1] == '.') || /* Is this a dot entry? */
1659     (di == 2 && lfn[di-1] == '.' && lfn[di-2] == '.')) {
1660     lfn[di] = 0;
1661     for (i = 0; i < 11; i++)
1662       dj->fn[i] = (i < di) ? '.' : ' ';
1663     dj->fn[i] = cf | NS_DOT;    /* This is a dot entry */
1664     return FR_OK;
1665   }
1666 #endif
1667   while (di) {            /* Strip trailing spaces and dots */
1668     w = lfn[di-1];
1669     if (w != ' ' && w != '.') break;
1670     di--;
1671   }
1672   if (!di) return FR_INVALID_NAME;  /* Reject nul string */
1673 
1674   lfn[di] = 0;            /* LFN is created */
1675 
1676   /* Create SFN in directory form */
1677   mem_set(dj->fn, ' ', 11);
1678   for (si = 0; lfn[si] == ' ' || lfn[si] == '.'; si++) ;  /* Strip leading spaces and dots */
1679   if (si) cf |= NS_LOSS | NS_LFN;
1680   while (di && lfn[di - 1] != '.') di--;  /* Find extension (di<=si: no extension) */
1681 
1682   b = i = 0; ni = 8;
1683   for (;;) {
1684     w = lfn[si++];          /* Get an LFN char */
1685     if (!w) break;          /* Break on end of the LFN */
1686     if (w == ' ' || (w == '.' && si != di)) { /* Remove spaces and dots */
1687       cf |= NS_LOSS | NS_LFN; continue;
1688     }
1689 
1690     if (i >= ni || si == di) {    /* Extension or end of SFN */
1691       if (ni == 11) {       /* Long extension */
1692         cf |= NS_LOSS | NS_LFN; break;
1693       }
1694       if (si != di) cf |= NS_LOSS | NS_LFN; /* Out of 8.3 format */
1695       if (si > di) break;     /* No extension */
1696       si = di; i = 8; ni = 11;  /* Enter extension section */
1697       b <<= 2; continue;
1698     }
1699 
1700     if (w >= 0x80) {        /* Non ASCII char */
1701 #ifdef _EXCVT
1702       w = ff_convert(w, 0);   /* Unicode -> OEM code */
1703       if (w) w = excvt[w - 0x80]; /* Convert extended char to upper (SBCS) */
1704 #else
1705       w = ff_convert(ff_wtoupper(w), 0);  /* Upper converted Unicode -> OEM code */
1706 #endif
1707       cf |= NS_LFN;       /* Force create LFN entry */
1708     }
1709 
1710     if (_DF1S && w >= 0x100) {    /* Double byte char (always false on SBCS cfg) */
1711       if (i >= ni - 1) {
1712         cf |= NS_LOSS | NS_LFN; i = ni; continue;
1713       }
1714       dj->fn[i++] = (BYTE)(w >> 8);
1715     } else {            /* Single byte char */
1716       if (!w || chk_chr("+,;=[]", w)) { /* Replace illegal chars for SFN */
1717         w = '_'; cf |= NS_LOSS | NS_LFN;/* Lossy conversion */
1718       } else {
1719         if (IsUpper(w)) {   /* ASCII large capital */
1720           b |= 2;
1721         } else {
1722           if (IsLower(w)) { /* ASCII small capital */
1723             b |= 1; w -= 0x20;
1724           }
1725         }
1726       }
1727     }
1728     dj->fn[i++] = (BYTE)w;
1729   }
1730 
1731   if (dj->fn[0] == DDE) dj->fn[0] = NDDE; /* If the first char collides with deleted mark, replace it with 0x05 */
1732 
1733   if (ni == 8) b <<= 2;
1734   if ((b & 0x0C) == 0x0C || (b & 0x03) == 0x03) /* Create LFN entry when there are composite capitals */
1735     cf |= NS_LFN;
1736   if (!(cf & NS_LFN)) {           /* When LFN is in 8.3 format without extended char, NT flags are created */
1737     if ((b & 0x03) == 0x01) cf |= NS_EXT; /* NT flag (Extension has only small capital) */
1738     if ((b & 0x0C) == 0x04) cf |= NS_BODY;  /* NT flag (Filename has only small capital) */
1739   }
1740 
1741   dj->fn[NS] = cf;  /* SFN is created */
1742 
1743   return FR_OK;
1744 
1745 
1746 #else /* Non-LFN configuration */
1747   BYTE b, c, d, *sfn;
1748   UINT ni, si, i;
1749   const char *p;
1750 
1751   /* Create file name in directory form */
1752   for (p = *path; *p == '/' || *p == '\\'; p++) ; /* Strip duplicated separator */
1753   sfn = dj->fn;
1754   mem_set(sfn, ' ', 11);
1755   si = i = b = 0; ni = 8;
1756 #if _FS_RPATH
1757   if (p[si] == '.') { /* Is this a dot entry? */
1758     for (;;) {
1759       c = (BYTE)p[si++];
1760       if (c != '.' || si >= 3) break;
1761       sfn[i++] = c;
1762     }
1763     if (c != '/' && c != '\\' && c > ' ') return FR_INVALID_NAME;
1764     *path = &p[si];                 /* Return pointer to the next segment */
1765     sfn[NS] = (c <= ' ') ? NS_LAST | NS_DOT : NS_DOT; /* Set last segment flag if end of path */
1766     return FR_OK;
1767   }
1768 #endif
1769   for (;;) {
1770     c = (BYTE)p[si++];
1771     if (c <= ' ' || c == '/' || c == '\\') break; /* Break on end of segment */
1772     if (c == '.' || i >= ni) {
1773       if (ni != 8 || c != '.') return FR_INVALID_NAME;
1774       i = 8; ni = 11;
1775       b <<= 2; continue;
1776     }
1777     if (c >= 0x80) {        /* Extended char? */
1778       b |= 3;           /* Eliminate NT flag */
1779 #ifdef _EXCVT
1780       c = excvt[c-0x80];      /* Upper conversion (SBCS) */
1781 #else
1782 #if !_DF1S  /* ASCII only cfg */
1783       return FR_INVALID_NAME;
1784 #endif
1785 #endif
1786     }
1787     if (IsDBCS1(c)) {       /* Check if it is a DBC 1st byte (always false on SBCS cfg) */
1788       d = (BYTE)p[si++];      /* Get 2nd byte */
1789       if (!IsDBCS2(d) || i >= ni - 1) /* Reject invalid DBC */
1790         return FR_INVALID_NAME;
1791       sfn[i++] = c;
1792       sfn[i++] = d;
1793     } else {            /* Single byte code */
1794       if (chk_chr("\"*+,:;<=>\?[]|\x7F", c))  /* Reject illegal chrs for SFN */
1795         return FR_INVALID_NAME;
1796       if (IsUpper(c)) {     /* ASCII large capital? */
1797         b |= 2;
1798       } else {
1799         if (IsLower(c)) {   /* ASCII small capital? */
1800           b |= 1; c -= 0x20;
1801         }
1802       }
1803       sfn[i++] = c;
1804     }
1805   }
1806   *path = &p[si];           /* Return pointer to the next segment */
1807   c = (c <= ' ') ? NS_LAST : 0;   /* Set last segment flag if end of path */
1808 
1809   if (!i) return FR_INVALID_NAME;   /* Reject nul string */
1810   if (sfn[0] == DDE) sfn[0] = NDDE; /* When first char collides with DDE, replace it with 0x05 */
1811 
1812   if (ni == 8) b <<= 2;
1813   if ((b & 0x03) == 0x01) c |= NS_EXT;  /* NT flag (Name extension has only small capital) */
1814   if ((b & 0x0C) == 0x04) c |= NS_BODY; /* NT flag (Name body has only small capital) */
1815 
1816   sfn[NS] = c;    /* Store NT flag, File name is created */
1817 
1818   return FR_OK;
1819 #endif
1820 }
1821 
1822 
1823 
1824 
1825 /*-----------------------------------------------------------------------*/
1826 /* Get file information from directory entry                             */
1827 /*-----------------------------------------------------------------------*/
1828 #if _FS_MINIMIZE <= 1
1829 static
get_fileinfo(DIR * dj,FILINFO * fno)1830 void get_fileinfo (   /* No return code */
1831   DIR *dj,      /* Pointer to the directory object */
1832   FILINFO *fno    /* Pointer to the file information to be filled */
1833 )
1834 {
1835   UINT i;
1836   BYTE nt, *dir;
1837   TCHAR *p, c;
1838 
1839 
1840   p = fno->fname;
1841   if (dj->sect) {
1842     dir = dj->dir;
1843     nt = dir[DIR_NTres];    /* NT flag */
1844     for (i = 0; i < 8; i++) { /* Copy name body */
1845       c = dir[i];
1846       if (c == ' ') break;
1847       if (c == NDDE) c = (TCHAR)DDE;
1848       if (_USE_LFN && (nt & NS_BODY) && IsUpper(c)) c += 0x20;
1849 #if _LFN_UNICODE
1850       if (IsDBCS1(c) && i < 7 && IsDBCS2(dir[i+1]))
1851         c = (c << 8) | dir[++i];
1852       c = ff_convert(c, 1);
1853       if (!c) c = '?';
1854 #endif
1855       *p++ = c;
1856     }
1857     if (dir[8] != ' ') {    /* Copy name extension */
1858       *p++ = '.';
1859       for (i = 8; i < 11; i++) {
1860         c = dir[i];
1861         if (c == ' ') break;
1862         if (_USE_LFN && (nt & NS_EXT) && IsUpper(c)) c += 0x20;
1863 #if _LFN_UNICODE
1864         if (IsDBCS1(c) && i < 10 && IsDBCS2(dir[i+1]))
1865           c = (c << 8) | dir[++i];
1866         c = ff_convert(c, 1);
1867         if (!c) c = '?';
1868 #endif
1869         *p++ = c;
1870       }
1871     }
1872     fno->fattrib = dir[DIR_Attr];       /* Attribute */
1873     fno->fsize = LD_DWORD(dir+DIR_FileSize);  /* Size */
1874     fno->fdate = LD_WORD(dir+DIR_WrtDate);    /* Date */
1875     fno->ftime = LD_WORD(dir+DIR_WrtTime);    /* Time */
1876   }
1877   *p = 0;   /* Terminate SFN str by a \0 */
1878 
1879 #if _USE_LFN
1880   if (fno->lfname && fno->lfsize) {
1881     TCHAR *tp = fno->lfname;
1882     WCHAR w, *lfn;
1883 
1884     i = 0;
1885     if (dj->sect && dj->lfn_idx != 0xFFFF) {/* Get LFN if available */
1886       lfn = dj->lfn;
1887       while ((w = *lfn++) != 0) {     /* Get an LFN char */
1888 #if !_LFN_UNICODE
1889         w = ff_convert(w, 0);     /* Unicode -> OEM conversion */
1890         if (!w) { i = 0; break; }   /* Could not convert, no LFN */
1891         if (_DF1S && w >= 0x100)    /* Put 1st byte if it is a DBC (always false on SBCS cfg) */
1892           tp[i++] = (TCHAR)(w >> 8);
1893 #endif
1894         if (i >= fno->lfsize - 1) { i = 0; break; } /* Buffer overflow, no LFN */
1895         tp[i++] = (TCHAR)w;
1896       }
1897     }
1898     tp[i] = 0;  /* Terminate the LFN str by a \0 */
1899   }
1900 #endif
1901 }
1902 #endif /* _FS_MINIMIZE <= 1 */
1903 
1904 
1905 
1906 
1907 /*-----------------------------------------------------------------------*/
1908 /* Follow a file path                                                    */
1909 /*-----------------------------------------------------------------------*/
1910 
1911 static
follow_path(DIR * dj,const TCHAR * path)1912 FRESULT follow_path ( /* FR_OK(0): successful, !=0: error code */
1913   DIR *dj,      /* Directory object to return last directory and found object */
1914   const TCHAR *path /* Full-path string to find a file or directory */
1915 )
1916 {
1917   FRESULT res;
1918   BYTE *dir, ns;
1919 
1920 
1921 #if _FS_RPATH
1922   if (*path == '/' || *path == '\\') { /* There is a heading separator */
1923     path++; dj->sclust = 0;   /* Strip it and start from the root dir */
1924   } else {              /* No heading separator */
1925     dj->sclust = dj->fs->cdir;  /* Start from the current dir */
1926   }
1927 #else
1928   if (*path == '/' || *path == '\\')  /* Strip heading separator if exist */
1929     path++;
1930   dj->sclust = 0;           /* Start from the root dir */
1931 #endif
1932 
1933   if ((UINT)*path < ' ') {      /* Nul path means the start directory itself */
1934     res = dir_sdi(dj, 0);
1935     dj->dir = 0;
1936 
1937   } else {              /* Follow path */
1938     for (;;) {
1939       res = create_name(dj, &path); /* Get a segment */
1940       if (res != FR_OK) break;
1941       res = dir_find(dj);       /* Find it */
1942       ns = *(dj->fn+NS);
1943       if (res != FR_OK) {       /* Failed to find the object */
1944         if (res != FR_NO_FILE) break; /* Abort if any hard error occured */
1945         /* Object not found */
1946         if (_FS_RPATH && (ns & NS_DOT)) { /* If dot entry is not exit */
1947           dj->sclust = 0; dj->dir = 0;  /* It is the root dir */
1948           res = FR_OK;
1949           if (!(ns & NS_LAST)) continue;
1950         } else {              /* Could not find the object */
1951           if (!(ns & NS_LAST)) res = FR_NO_PATH;
1952         }
1953         break;
1954       }
1955       if (ns & NS_LAST) break;      /* Last segment match. Function completed. */
1956       dir = dj->dir;            /* There is next segment. Follow the sub directory */
1957       if (!(dir[DIR_Attr] & AM_DIR)) {  /* Cannot follow because it is a file */
1958         res = FR_NO_PATH; break;
1959       }
1960       dj->sclust = LD_CLUST(dir);
1961     }
1962   }
1963 
1964   return res;
1965 }
1966 
1967 
1968 
1969 
1970 /*-----------------------------------------------------------------------*/
1971 /* Load boot record and check if it is an FAT boot record                */
1972 /*-----------------------------------------------------------------------*/
1973 
1974 static
check_fs(FATFS * fs,DWORD sect)1975 BYTE check_fs ( /* 0:The FAT BR, 1:Valid BR but not an FAT, 2:Not a BR, 3:Disk error */
1976   FATFS *fs,  /* File system object */
1977   DWORD sect  /* Sector# (lba) to check if it is an FAT boot record or not */
1978 )
1979 {
1980   if (disk_read(fs->drv, fs->win, sect, 1) != RES_OK) /* Load boot record */
1981     return 3;
1982   if (LD_WORD(&fs->win[BS_55AA]) != 0xAA55)   /* Check record signature (always placed at offset 510 even if the sector size is >512) */
1983     return 2;
1984 
1985   if ((LD_DWORD(&fs->win[BS_FilSysType]) & 0xFFFFFF) == 0x544146) /* Check "FAT" string */
1986     return 0;
1987   if ((LD_DWORD(&fs->win[BS_FilSysType32]) & 0xFFFFFF) == 0x544146)
1988     return 0;
1989 
1990   return 1;
1991 }
1992 
1993 
1994 
1995 
1996 /*-----------------------------------------------------------------------*/
1997 /* Check if the file system object is valid or not                       */
1998 /*-----------------------------------------------------------------------*/
1999 
2000 static
chk_mounted(const TCHAR ** path,FATFS ** rfs,BYTE chk_wp)2001 FRESULT chk_mounted ( /* FR_OK(0): successful, !=0: any error occurred */
2002   const TCHAR **path, /* Pointer to pointer to the path name (drive number) */
2003   FATFS **rfs,    /* Pointer to pointer to the found file system object */
2004   BYTE chk_wp     /* !=0: Check media write protection for write access */
2005 )
2006 {
2007   BYTE fmt, b, *tbl;
2008   UINT vol;
2009   DSTATUS stat;
2010   DWORD bsect, fasize, tsect, sysect, nclst, szbfat;
2011   WORD nrsv;
2012   const TCHAR *p = *path;
2013   FATFS *fs;
2014 
2015   /* Get logical drive number from the path name */
2016   vol = p[0] - '0';         /* Is there a drive number? */
2017   if (vol <= 9 && p[1] == ':') {    /* Found a drive number, get and strip it */
2018     p += 2; *path = p;        /* Return pointer to the path name */
2019   } else {              /* No drive number is given */
2020 #if _FS_RPATH
2021     vol = CurrVol;          /* Use current drive */
2022 #else
2023     vol = 0;            /* Use drive 0 */
2024 #endif
2025   }
2026 
2027   /* Check if the logical drive is valid or not */
2028   if (vol >= _VOLUMES)        /* Is the drive number valid? */
2029     return FR_INVALID_DRIVE;
2030   *rfs = fs = FatFs[vol];       /* Return pointer to the corresponding file system object */
2031   if (!fs) return FR_NOT_ENABLED;   /* Is the file system object available? */
2032 
2033   ENTER_FF(fs);           /* Lock file system */
2034 
2035   if (fs->fs_type) {          /* If the logical drive has been mounted */
2036     stat = disk_status(fs->drv);
2037     if (!(stat & STA_NOINIT)) {   /* and the physical drive is kept initialized (has not been changed), */
2038 #if !_FS_READONLY
2039       if (chk_wp && (stat & STA_PROTECT)) /* Check write protection if needed */
2040         return FR_WRITE_PROTECTED;
2041 #endif
2042       return FR_OK;       /* The file system object is valid */
2043     }
2044   }
2045 
2046   /* The logical drive must be mounted. */
2047   /* Following code attempts to mount a volume. (analyze BPB and initialize the fs object) */
2048 
2049   fs->fs_type = 0;          /* Clear the file system object */
2050   fs->drv = (BYTE)LD2PD(vol);     /* Bind the logical drive and a physical drive */
2051   stat = disk_initialize(fs->drv);  /* Initialize low level disk I/O layer */
2052   if (stat & STA_NOINIT)        /* Check if the initialization succeeded */
2053     return FR_NOT_READY;      /* Failed to initialize due to no media or hard error */
2054 #if _MAX_SS != 512            /* Get disk sector size (variable sector size cfg only) */
2055   if (disk_ioctl(fs->drv, GET_SECTOR_SIZE, &fs->ssize) != RES_OK)
2056     return FR_DISK_ERR;
2057 #endif
2058 #if !_FS_READONLY
2059   if (chk_wp && (stat & STA_PROTECT)) /* Check disk write protection if needed */
2060     return FR_WRITE_PROTECTED;
2061 #endif
2062   /* Search FAT partition on the drive. Supports only generic partitionings, FDISK and SFD. */
2063   fmt = check_fs(fs, bsect = 0);    /* Check sector 0 if it is a VBR */
2064   if (fmt == 1) {           /* Not an FAT-VBR, the disk may be partitioned */
2065     /* Check the partition listed in top of the partition table */
2066     tbl = &fs->win[MBR_Table + LD2PT(vol) * SZ_PTE];/* Partition table */
2067     if (tbl[4]) {                 /* Is the partition existing? */
2068       bsect = LD_DWORD(&tbl[8]);          /* Partition offset in LBA */
2069       fmt = check_fs(fs, bsect);          /* Check the partition */
2070     }
2071   }
2072   if (fmt == 3) return FR_DISK_ERR;
2073   if (fmt) return FR_NO_FILESYSTEM;         /* No FAT volume is found */
2074 
2075   /* Following code initializes the file system object */
2076 
2077   if (LD_WORD(fs->win+BPB_BytsPerSec) != SS(fs))    /* (BPB_BytsPerSec must be equal to the physical sector size) */
2078     return FR_NO_FILESYSTEM;
2079 
2080   fasize = LD_WORD(fs->win+BPB_FATSz16);        /* Number of sectors per FAT */
2081   if (!fasize) fasize = LD_DWORD(fs->win+BPB_FATSz32);
2082   fs->fsize = fasize;
2083 
2084   fs->n_fats = b = fs->win[BPB_NumFATs];        /* Number of FAT copies */
2085   if (b != 1 && b != 2) return FR_NO_FILESYSTEM;    /* (Must be 1 or 2) */
2086   fasize *= b;                    /* Number of sectors for FAT area */
2087 
2088   fs->csize = b = fs->win[BPB_SecPerClus];      /* Number of sectors per cluster */
2089   if (!b || (b & (b - 1))) return FR_NO_FILESYSTEM; /* (Must be power of 2) */
2090 
2091   fs->n_rootdir = LD_WORD(fs->win+BPB_RootEntCnt);  /* Number of root directory entries */
2092   if (fs->n_rootdir % (SS(fs) / SZ_DIR)) return FR_NO_FILESYSTEM; /* (BPB_RootEntCnt must be sector aligned) */
2093 
2094   tsect = LD_WORD(fs->win+BPB_TotSec16);        /* Number of sectors on the volume */
2095   if (!tsect) tsect = LD_DWORD(fs->win+BPB_TotSec32);
2096 
2097   nrsv = LD_WORD(fs->win+BPB_RsvdSecCnt);       /* Number of reserved sectors */
2098   if (!nrsv) return FR_NO_FILESYSTEM;         /* (BPB_RsvdSecCnt must not be 0) */
2099 
2100   /* Determine the FAT sub type */
2101   sysect = nrsv + fasize + fs->n_rootdir / (SS(fs) / SZ_DIR); /* RSV+FAT+DIR */
2102   if (tsect < sysect) return FR_NO_FILESYSTEM;    /* (Invalid volume size) */
2103   nclst = (tsect - sysect) / fs->csize;       /* Number of clusters */
2104   if (!nclst) return FR_NO_FILESYSTEM;        /* (Invalid volume size) */
2105   fmt = FS_FAT12;
2106   if (nclst >= MIN_FAT16) fmt = FS_FAT16;
2107   if (nclst >= MIN_FAT32) fmt = FS_FAT32;
2108 
2109   /* Boundaries and Limits */
2110   fs->n_fatent = nclst + 2;             /* Number of FAT entries */
2111   fs->database = bsect + sysect;            /* Data start sector */
2112   fs->fatbase = bsect + nrsv;             /* FAT start sector */
2113   if (fmt == FS_FAT32) {
2114     if (fs->n_rootdir) return FR_NO_FILESYSTEM;   /* (BPB_RootEntCnt must be 0) */
2115     fs->dirbase = LD_DWORD(fs->win+BPB_RootClus); /* Root directory start cluster */
2116     szbfat = fs->n_fatent * 4;            /* (Required FAT size) */
2117   } else {
2118     if (!fs->n_rootdir) return FR_NO_FILESYSTEM;  /* (BPB_RootEntCnt must not be 0) */
2119     fs->dirbase = fs->fatbase + fasize;       /* Root directory start sector */
2120     szbfat = (fmt == FS_FAT16) ?          /* (Required FAT size) */
2121       fs->n_fatent * 2 : fs->n_fatent * 3 / 2 + (fs->n_fatent & 1);
2122   }
2123   if (fs->fsize < (szbfat + (SS(fs) - 1)) / SS(fs)) /* (BPB_FATSz must not be less than required) */
2124     return FR_NO_FILESYSTEM;
2125 
2126 #if !_FS_READONLY
2127   /* Initialize cluster allocation information */
2128   fs->free_clust = 0xFFFFFFFF;
2129   fs->last_clust = 0;
2130 
2131   /* Get fsinfo if available */
2132   if (fmt == FS_FAT32) {
2133     fs->fsi_flag = 0;
2134     fs->fsi_sector = bsect + LD_WORD(fs->win+BPB_FSInfo);
2135     if (disk_read(fs->drv, fs->win, fs->fsi_sector, 1) == RES_OK &&
2136       LD_WORD(fs->win+BS_55AA) == 0xAA55 &&
2137       LD_DWORD(fs->win+FSI_LeadSig) == 0x41615252 &&
2138       LD_DWORD(fs->win+FSI_StrucSig) == 0x61417272) {
2139         fs->last_clust = LD_DWORD(fs->win+FSI_Nxt_Free);
2140         fs->free_clust = LD_DWORD(fs->win+FSI_Free_Count);
2141     }
2142   }
2143 #endif
2144   fs->fs_type = fmt;    /* FAT sub-type */
2145   fs->id = ++Fsid;    /* File system mount ID */
2146   fs->winsect = 0;    /* Invalidate sector cache */
2147   fs->wflag = 0;
2148 #if _FS_RPATH
2149   fs->cdir = 0;     /* Current directory (root dir) */
2150 #endif
2151 #if _FS_SHARE       /* Clear file lock semaphores */
2152   clear_lock(fs);
2153 #endif
2154 
2155   return FR_OK;
2156 }
2157 
2158 
2159 
2160 
2161 /*-----------------------------------------------------------------------*/
2162 /* Check if the file/dir object is valid or not                          */
2163 /*-----------------------------------------------------------------------*/
2164 
2165 static
validate(FATFS * fs,WORD id)2166 FRESULT validate (  /* FR_OK(0): The object is valid, !=0: Invalid */
2167   FATFS *fs,    /* Pointer to the file system object */
2168   WORD id     /* Member id of the target object to be checked */
2169 )
2170 {
2171   if (!fs || !fs->fs_type || fs->id != id)
2172     return FR_INVALID_OBJECT;
2173 
2174   ENTER_FF(fs);   /* Lock file system */
2175 
2176   if (disk_status(fs->drv) & STA_NOINIT)
2177     return FR_NOT_READY;
2178 
2179   return FR_OK;
2180 }
2181 
2182 
2183 
2184 
2185 /*--------------------------------------------------------------------------
2186 
2187    Public Functions
2188 
2189 --------------------------------------------------------------------------*/
2190 
2191 
2192 
2193 /*-----------------------------------------------------------------------*/
2194 /* Mount/Unmount a Logical Drive                                         */
2195 /*-----------------------------------------------------------------------*/
2196 
f_mount(BYTE vol,FATFS * fs)2197 FRESULT f_mount (
2198   BYTE vol,   /* Logical drive number to be mounted/unmounted */
2199   FATFS *fs   /* Pointer to new file system object (NULL for unmount)*/
2200 )
2201 {
2202   FATFS *rfs;
2203 
2204 
2205   if (vol >= _VOLUMES)      /* Check if the drive number is valid */
2206     return FR_INVALID_DRIVE;
2207   rfs = FatFs[vol];       /* Get current fs object */
2208 
2209   if (rfs) {
2210 #if _FS_SHARE
2211     clear_lock(rfs);
2212 #endif
2213 #if _FS_REENTRANT         /* Discard sync object of the current volume */
2214     if (!ff_del_syncobj(rfs->sobj)) return FR_INT_ERR;
2215 #endif
2216     rfs->fs_type = 0;     /* Clear old fs object */
2217   }
2218 
2219   if (fs) {
2220     fs->fs_type = 0;      /* Clear new fs object */
2221 #if _FS_REENTRANT         /* Create sync object for the new volume */
2222     if (!ff_cre_syncobj(vol, &fs->sobj)) return FR_INT_ERR;
2223 #endif
2224   }
2225   FatFs[vol] = fs;        /* Register new fs object */
2226 
2227   return FR_OK;
2228 }
2229 
2230 
2231 
2232 
2233 /*-----------------------------------------------------------------------*/
2234 /* Open or Create a File                                                 */
2235 /*-----------------------------------------------------------------------*/
2236 
f_open(FIL * fp,const TCHAR * path,BYTE mode)2237 FRESULT f_open (
2238   FIL *fp,      /* Pointer to the blank file object */
2239   const TCHAR *path,  /* Pointer to the file name */
2240   BYTE mode     /* Access mode and file open mode flags */
2241 )
2242 {
2243   FRESULT res;
2244   DIR dj;
2245   BYTE *dir;
2246   DEF_NAMEBUF;
2247 
2248 
2249   fp->fs = 0;     /* Clear file object */
2250 
2251 #if !_FS_READONLY
2252   mode &= FA_READ | FA_WRITE | FA_CREATE_ALWAYS | FA_OPEN_ALWAYS | FA_CREATE_NEW;
2253   res = chk_mounted(&path, &dj.fs, (BYTE)(mode & ~FA_READ));
2254 #else
2255   mode &= FA_READ;
2256   res = chk_mounted(&path, &dj.fs, 0);
2257 #endif
2258   INIT_BUF(dj);
2259   if (res == FR_OK)
2260     res = follow_path(&dj, path); /* Follow the file path */
2261   dir = dj.dir;
2262 
2263 #if !_FS_READONLY /* R/W configuration */
2264   if (res == FR_OK) {
2265     if (!dir) /* Current dir itself */
2266       res = FR_INVALID_NAME;
2267 #if _FS_SHARE
2268     else
2269       res = chk_lock(&dj, (mode & ~FA_READ) ? 1 : 0);
2270 #endif
2271   }
2272   /* Create or Open a file */
2273   if (mode & (FA_CREATE_ALWAYS | FA_OPEN_ALWAYS | FA_CREATE_NEW)) {
2274     DWORD dw, cl;
2275 
2276     if (res != FR_OK) {         /* No file, create new */
2277       if (res == FR_NO_FILE)      /* There is no file to open, create a new entry */
2278 #if _FS_SHARE
2279         res = enq_lock(dj.fs) ? dir_register(&dj) : FR_TOO_MANY_OPEN_FILES;
2280 #else
2281         res = dir_register(&dj);
2282 #endif
2283       mode |= FA_CREATE_ALWAYS;   /* File is created */
2284       dir = dj.dir;         /* New entry */
2285     }
2286     else {                /* Any object is already existing */
2287       if (dir[DIR_Attr] & (AM_RDO | AM_DIR)) {  /* Cannot overwrite it (R/O or DIR) */
2288         res = FR_DENIED;
2289       } else {
2290         if (mode & FA_CREATE_NEW) /* Cannot create as new file */
2291           res = FR_EXIST;
2292       }
2293     }
2294     if (res == FR_OK && (mode & FA_CREATE_ALWAYS)) {  /* Truncate it if overwrite mode */
2295       dw = get_fattime();         /* Created time */
2296       ST_DWORD(dir+DIR_CrtTime, dw);
2297       dir[DIR_Attr] = 0;          /* Reset attribute */
2298       ST_DWORD(dir+DIR_FileSize, 0);    /* size = 0 */
2299       cl = LD_CLUST(dir);         /* Get start cluster */
2300       ST_CLUST(dir, 0);         /* cluster = 0 */
2301       dj.fs->wflag = 1;
2302       if (cl) {             /* Remove the cluster chain if exist */
2303         dw = dj.fs->winsect;
2304         res = remove_chain(dj.fs, cl);
2305         if (res == FR_OK) {
2306           dj.fs->last_clust = cl - 1; /* Reuse the cluster hole */
2307           res = move_window(dj.fs, dw);
2308         }
2309       }
2310     }
2311   }
2312   else {  /* Open an existing file */
2313     if (res == FR_OK) {           /* Follow succeeded */
2314       if (dir[DIR_Attr] & AM_DIR) {   /* It is a directory */
2315         res = FR_NO_FILE;
2316       } else {
2317         if ((mode & FA_WRITE) && (dir[DIR_Attr] & AM_RDO)) /* R/O violation */
2318           res = FR_DENIED;
2319       }
2320     }
2321   }
2322   if (res == FR_OK) {
2323     if (mode & FA_CREATE_ALWAYS)      /* Set file change flag if created or overwritten */
2324       mode |= FA__WRITTEN;
2325     fp->dir_sect = dj.fs->winsect;      /* Pointer to the directory entry */
2326     fp->dir_ptr = dir;
2327 #if _FS_SHARE
2328     fp->lockid = inc_lock(&dj, (mode & ~FA_READ) ? 1 : 0);
2329     if (!fp->lockid) res = FR_INT_ERR;
2330 #endif
2331   }
2332 
2333 #else       /* R/O configuration */
2334   if (res == FR_OK) {         /* Follow succeeded */
2335     if (!dir) {           /* Current dir itself */
2336       res = FR_INVALID_NAME;
2337     } else {
2338       if (dir[DIR_Attr] & AM_DIR) /* It is a directory */
2339         res = FR_NO_FILE;
2340     }
2341   }
2342 #endif
2343   FREE_BUF();
2344 
2345   if (res == FR_OK) {
2346     fp->flag = mode;          /* File access mode */
2347     fp->sclust = LD_CLUST(dir);     /* File start cluster */
2348     fp->fsize = LD_DWORD(dir+DIR_FileSize); /* File size */
2349     fp->fptr = 0;           /* File pointer */
2350     fp->dsect = 0;
2351 #if _USE_FASTSEEK
2352     fp->cltbl = 0;            /* Normal seek mode */
2353 #endif
2354     fp->fs = dj.fs; fp->id = dj.fs->id; /* Validate file object */
2355   }
2356 
2357   LEAVE_FF(dj.fs, res);
2358 }
2359 
2360 
2361 
2362 
2363 /*-----------------------------------------------------------------------*/
2364 /* Read File                                                             */
2365 /*-----------------------------------------------------------------------*/
2366 
f_read(FIL * fp,void * buff,UINT btr,UINT * br)2367 FRESULT f_read (
2368   FIL *fp,    /* Pointer to the file object */
2369   void *buff,   /* Pointer to data buffer */
2370   UINT btr,   /* Number of bytes to read */
2371   UINT *br    /* Pointer to number of bytes read */
2372 )
2373 {
2374   FRESULT res;
2375   DWORD clst, sect, remain;
2376   UINT rcnt, cc;
2377   BYTE csect, *rbuff = (BYTE*)(buff);
2378 
2379 
2380   *br = 0;  /* Initialize byte counter */
2381 
2382   res = validate(fp->fs, fp->id);       /* Check validity */
2383   if (res != FR_OK) LEAVE_FF(fp->fs, res);
2384   if (fp->flag & FA__ERROR)         /* Aborted file? */
2385     LEAVE_FF(fp->fs, FR_INT_ERR);
2386   if (!(fp->flag & FA_READ))          /* Check access mode */
2387     LEAVE_FF(fp->fs, FR_DENIED);
2388   remain = fp->fsize - fp->fptr;
2389   if (btr > remain) btr = (UINT)remain;   /* Truncate btr by remaining bytes */
2390 
2391   for ( ;  btr;               /* Repeat until all data read */
2392     rbuff += rcnt, fp->fptr += rcnt, *br += rcnt, btr -= rcnt) {
2393     if ((fp->fptr % SS(fp->fs)) == 0) {   /* On the sector boundary? */
2394       csect = (BYTE)(fp->fptr / SS(fp->fs) & (fp->fs->csize - 1));  /* Sector offset in the cluster */
2395       if (!csect) {           /* On the cluster boundary? */
2396         if (fp->fptr == 0) {      /* On the top of the file? */
2397           clst = fp->sclust;      /* Follow from the origin */
2398         } else {            /* Middle or end of the file */
2399 #if _USE_FASTSEEK
2400           if (fp->cltbl)
2401             clst = clmt_clust(fp, fp->fptr);  /* Get cluster# from the CLMT */
2402           else
2403 #endif
2404             clst = get_fat(fp->fs, fp->clust);  /* Follow cluster chain on the FAT */
2405         }
2406         if (clst < 2) ABORT(fp->fs, FR_INT_ERR);
2407         if (clst == 0xFFFFFFFF) ABORT(fp->fs, FR_DISK_ERR);
2408         fp->clust = clst;       /* Update current cluster */
2409       }
2410       sect = clust2sect(fp->fs, fp->clust); /* Get current sector */
2411       if (!sect) ABORT(fp->fs, FR_INT_ERR);
2412       sect += csect;
2413       cc = btr / SS(fp->fs);        /* When remaining bytes >= sector size, */
2414       if (cc) {             /* Read maximum contiguous sectors directly */
2415         if (csect + cc > fp->fs->csize) /* Clip at cluster boundary */
2416           cc = fp->fs->csize - csect;
2417         if (disk_read(fp->fs->drv, rbuff, sect, (BYTE)cc) != RES_OK)
2418           ABORT(fp->fs, FR_DISK_ERR);
2419 #if !_FS_READONLY && _FS_MINIMIZE <= 2      /* Replace one of the read sectors with cached data if it contains a dirty sector */
2420 #if _FS_TINY
2421         if (fp->fs->wflag && fp->fs->winsect - sect < cc)
2422           mem_cpy(rbuff + ((fp->fs->winsect - sect) * SS(fp->fs)), fp->fs->win, SS(fp->fs));
2423 #else
2424         if ((fp->flag & FA__DIRTY) && fp->dsect - sect < cc)
2425           mem_cpy(rbuff + ((fp->dsect - sect) * SS(fp->fs)), fp->buf, SS(fp->fs));
2426 #endif
2427 #endif
2428         rcnt = SS(fp->fs) * cc;     /* Number of bytes transferred */
2429         continue;
2430       }
2431 #if !_FS_TINY
2432       if (fp->dsect != sect) {      /* Load data sector if not in cache */
2433 #if !_FS_READONLY
2434         if (fp->flag & FA__DIRTY) {   /* Write-back dirty sector cache */
2435           if (disk_write(fp->fs->drv, fp->buf, fp->dsect, 1) != RES_OK)
2436             ABORT(fp->fs, FR_DISK_ERR);
2437           fp->flag &= ~FA__DIRTY;
2438         }
2439 #endif
2440         if (disk_read(fp->fs->drv, fp->buf, sect, 1) != RES_OK) /* Fill sector cache */
2441           ABORT(fp->fs, FR_DISK_ERR);
2442       }
2443 #endif
2444       fp->dsect = sect;
2445     }
2446     rcnt = SS(fp->fs) - (fp->fptr % SS(fp->fs));  /* Get partial sector data from sector buffer */
2447     if (rcnt > btr) rcnt = btr;
2448 #if _FS_TINY
2449     if (move_window(fp->fs, fp->dsect))   /* Move sector window */
2450       ABORT(fp->fs, FR_DISK_ERR);
2451     mem_cpy(rbuff, &fp->fs->win[fp->fptr % SS(fp->fs)], rcnt);  /* Pick partial sector */
2452 #else
2453     mem_cpy(rbuff, &fp->buf[fp->fptr % SS(fp->fs)], rcnt);  /* Pick partial sector */
2454 #endif
2455   }
2456 
2457   LEAVE_FF(fp->fs, FR_OK);
2458 }
2459 
2460 
2461 
2462 
2463 #if !_FS_READONLY
2464 /*-----------------------------------------------------------------------*/
2465 /* Write File                                                            */
2466 /*-----------------------------------------------------------------------*/
2467 
f_write(FIL * fp,const void * buff,UINT btw,UINT * bw)2468 FRESULT f_write (
2469   FIL *fp,      /* Pointer to the file object */
2470   const void *buff, /* Pointer to the data to be written */
2471   UINT btw,     /* Number of bytes to write */
2472   UINT *bw      /* Pointer to number of bytes written */
2473 )
2474 {
2475   FRESULT res;
2476   DWORD clst, sect;
2477   UINT wcnt, cc;
2478   const BYTE *wbuff = (const BYTE*)(buff);
2479   BYTE csect;
2480 
2481 
2482   *bw = 0;  /* Initialize byte counter */
2483 
2484   res = validate(fp->fs, fp->id);     /* Check validity */
2485   if (res != FR_OK) LEAVE_FF(fp->fs, res);
2486   if (fp->flag & FA__ERROR)       /* Aborted file? */
2487     LEAVE_FF(fp->fs, FR_INT_ERR);
2488   if (!(fp->flag & FA_WRITE))       /* Check access mode */
2489     LEAVE_FF(fp->fs, FR_DENIED);
2490   if ((DWORD)(fp->fsize + btw) < fp->fsize) btw = 0;  /* File size cannot reach 4GB */
2491 
2492   for ( ;  btw;             /* Repeat until all data written */
2493     wbuff += wcnt, fp->fptr += wcnt, *bw += wcnt, btw -= wcnt) {
2494     if ((fp->fptr % SS(fp->fs)) == 0) { /* On the sector boundary? */
2495       csect = (BYTE)(fp->fptr / SS(fp->fs) & (fp->fs->csize - 1));  /* Sector offset in the cluster */
2496       if (!csect) {         /* On the cluster boundary? */
2497         if (fp->fptr == 0) {    /* On the top of the file? */
2498           clst = fp->sclust;    /* Follow from the origin */
2499           if (clst == 0)      /* When no cluster is allocated, */
2500             fp->sclust = clst = create_chain(fp->fs, 0);  /* Create a new cluster chain */
2501         } else {          /* Middle or end of the file */
2502 #if _USE_FASTSEEK
2503           if (fp->cltbl)
2504             clst = clmt_clust(fp, fp->fptr);  /* Get cluster# from the CLMT */
2505           else
2506 #endif
2507             clst = create_chain(fp->fs, fp->clust); /* Follow or stretch cluster chain on the FAT */
2508         }
2509         if (clst == 0) break;   /* Could not allocate a new cluster (disk full) */
2510         if (clst == 1) ABORT(fp->fs, FR_INT_ERR);
2511         if (clst == 0xFFFFFFFF) ABORT(fp->fs, FR_DISK_ERR);
2512         fp->clust = clst;     /* Update current cluster */
2513       }
2514 #if _FS_TINY
2515       if (fp->fs->winsect == fp->dsect && move_window(fp->fs, 0)) /* Write-back sector cache */
2516         ABORT(fp->fs, FR_DISK_ERR);
2517 #else
2518       if (fp->flag & FA__DIRTY) {   /* Write-back sector cache */
2519         if (disk_write(fp->fs->drv, fp->buf, fp->dsect, 1) != RES_OK)
2520           ABORT(fp->fs, FR_DISK_ERR);
2521         fp->flag &= ~FA__DIRTY;
2522       }
2523 #endif
2524       sect = clust2sect(fp->fs, fp->clust); /* Get current sector */
2525       if (!sect) ABORT(fp->fs, FR_INT_ERR);
2526       sect += csect;
2527       cc = btw / SS(fp->fs);      /* When remaining bytes >= sector size, */
2528       if (cc) {           /* Write maximum contiguous sectors directly */
2529         if (csect + cc > fp->fs->csize) /* Clip at cluster boundary */
2530           cc = fp->fs->csize - csect;
2531         if (disk_write(fp->fs->drv, wbuff, sect, (BYTE)cc) != RES_OK)
2532           ABORT(fp->fs, FR_DISK_ERR);
2533 #if _FS_TINY
2534         if (fp->fs->winsect - sect < cc) {  /* Refill sector cache if it gets invalidated by the direct write */
2535           mem_cpy(fp->fs->win, wbuff + ((fp->fs->winsect - sect) * SS(fp->fs)), SS(fp->fs));
2536           fp->fs->wflag = 0;
2537         }
2538 #else
2539         if (fp->dsect - sect < cc) { /* Refill sector cache if it gets invalidated by the direct write */
2540           mem_cpy(fp->buf, wbuff + ((fp->dsect - sect) * SS(fp->fs)), SS(fp->fs));
2541           fp->flag &= ~FA__DIRTY;
2542         }
2543 #endif
2544         wcnt = SS(fp->fs) * cc;   /* Number of bytes transferred */
2545         continue;
2546       }
2547 #if _FS_TINY
2548       if (fp->fptr >= fp->fsize) {  /* Avoid silly cache filling at growing edge */
2549         if (move_window(fp->fs, 0)) ABORT(fp->fs, FR_DISK_ERR);
2550         fp->fs->winsect = sect;
2551       }
2552 #else
2553       if (fp->dsect != sect) {    /* Fill sector cache with file data */
2554         if (fp->fptr < fp->fsize &&
2555           disk_read(fp->fs->drv, fp->buf, sect, 1) != RES_OK)
2556             ABORT(fp->fs, FR_DISK_ERR);
2557       }
2558 #endif
2559       fp->dsect = sect;
2560     }
2561     wcnt = SS(fp->fs) - (fp->fptr % SS(fp->fs));/* Put partial sector into file I/O buffer */
2562     if (wcnt > btw) wcnt = btw;
2563 #if _FS_TINY
2564     if (move_window(fp->fs, fp->dsect)) /* Move sector window */
2565       ABORT(fp->fs, FR_DISK_ERR);
2566     mem_cpy(&fp->fs->win[fp->fptr % SS(fp->fs)], wbuff, wcnt);  /* Fit partial sector */
2567     fp->fs->wflag = 1;
2568 #else
2569     mem_cpy(&fp->buf[fp->fptr % SS(fp->fs)], wbuff, wcnt);  /* Fit partial sector */
2570     fp->flag |= FA__DIRTY;
2571 #endif
2572   }
2573 
2574   if (fp->fptr > fp->fsize) fp->fsize = fp->fptr; /* Update file size if needed */
2575   fp->flag |= FA__WRITTEN;            /* Set file change flag */
2576 
2577   LEAVE_FF(fp->fs, FR_OK);
2578 }
2579 
2580 
2581 
2582 
2583 /*-----------------------------------------------------------------------*/
2584 /* Synchronize the File Object                                           */
2585 /*-----------------------------------------------------------------------*/
2586 
f_sync(FIL * fp)2587 FRESULT f_sync (
2588   FIL *fp   /* Pointer to the file object */
2589 )
2590 {
2591   FRESULT res;
2592   DWORD tim;
2593   BYTE *dir;
2594 
2595 
2596   res = validate(fp->fs, fp->id);   /* Check validity of the object */
2597   if (res == FR_OK) {
2598     if (fp->flag & FA__WRITTEN) { /* Has the file been written? */
2599 #if !_FS_TINY /* Write-back dirty buffer */
2600       if (fp->flag & FA__DIRTY) {
2601         if (disk_write(fp->fs->drv, fp->buf, fp->dsect, 1) != RES_OK)
2602           LEAVE_FF(fp->fs, FR_DISK_ERR);
2603         fp->flag &= ~FA__DIRTY;
2604       }
2605 #endif
2606       /* Update the directory entry */
2607       res = move_window(fp->fs, fp->dir_sect);
2608       if (res == FR_OK) {
2609         dir = fp->dir_ptr;
2610         dir[DIR_Attr] |= AM_ARC;          /* Set archive bit */
2611         ST_DWORD(dir+DIR_FileSize, fp->fsize);    /* Update file size */
2612         ST_CLUST(dir, fp->sclust);          /* Update start cluster */
2613         tim = get_fattime();            /* Update updated time */
2614         ST_DWORD(dir+DIR_WrtTime, tim);
2615         fp->flag &= ~FA__WRITTEN;
2616         fp->fs->wflag = 1;
2617         res = sync(fp->fs);
2618       }
2619     }
2620   }
2621 
2622   LEAVE_FF(fp->fs, res);
2623 }
2624 
2625 #endif /* !_FS_READONLY */
2626 
2627 
2628 
2629 
2630 /*-----------------------------------------------------------------------*/
2631 /* Close File                                                            */
2632 /*-----------------------------------------------------------------------*/
2633 
f_close(FIL * fp)2634 FRESULT f_close (
2635   FIL *fp   /* Pointer to the file object to be closed */
2636 )
2637 {
2638   FRESULT res;
2639 
2640 #if _FS_READONLY
2641   FATFS *fs = fp->fs;
2642   res = validate(fs, fp->id);
2643   if (res == FR_OK) fp->fs = 0; /* Discard file object */
2644   LEAVE_FF(fs, res);
2645 
2646 #else
2647   res = f_sync(fp);   /* Flush cached data */
2648 #if _FS_SHARE
2649   if (res == FR_OK) {   /* Decrement open counter */
2650 #if _FS_REENTRANT
2651     res = validate(fp->fs, fp->id);
2652     if (res == FR_OK) {
2653       res = dec_lock(fp->lockid);
2654       unlock_fs(fp->fs, FR_OK);
2655     }
2656 #else
2657     res = dec_lock(fp->lockid);
2658 #endif
2659   }
2660 #endif
2661   if (res == FR_OK) fp->fs = 0; /* Discard file object */
2662   return res;
2663 #endif
2664 }
2665 
2666 
2667 
2668 
2669 /*-----------------------------------------------------------------------*/
2670 /* Current Drive/Directory Handlings                                     */
2671 /*-----------------------------------------------------------------------*/
2672 
2673 #if _FS_RPATH >= 1
2674 
f_chdrive(BYTE drv)2675 FRESULT f_chdrive (
2676   BYTE drv    /* Drive number */
2677 )
2678 {
2679   if (drv >= _VOLUMES) return FR_INVALID_DRIVE;
2680 
2681   CurrVol = drv;
2682 
2683   return FR_OK;
2684 }
2685 
2686 
2687 
f_chdir(const TCHAR * path)2688 FRESULT f_chdir (
2689   const TCHAR *path /* Pointer to the directory path */
2690 )
2691 {
2692   FRESULT res;
2693   DIR dj;
2694   DEF_NAMEBUF;
2695 
2696 
2697   res = chk_mounted(&path, &dj.fs, 0);
2698   if (res == FR_OK) {
2699     INIT_BUF(dj);
2700     res = follow_path(&dj, path);   /* Follow the path */
2701     FREE_BUF();
2702     if (res == FR_OK) {         /* Follow completed */
2703       if (!dj.dir) {
2704         dj.fs->cdir = dj.sclust;  /* Start directory itself */
2705       } else {
2706         if (dj.dir[DIR_Attr] & AM_DIR)  /* Reached to the directory */
2707           dj.fs->cdir = LD_CLUST(dj.dir);
2708         else
2709           res = FR_NO_PATH;   /* Reached but a file */
2710       }
2711     }
2712     if (res == FR_NO_FILE) res = FR_NO_PATH;
2713   }
2714 
2715   LEAVE_FF(dj.fs, res);
2716 }
2717 
2718 
2719 #if _FS_RPATH >= 2
f_getcwd(TCHAR * path,UINT sz_path)2720 FRESULT f_getcwd (
2721   TCHAR *path,  /* Pointer to the directory path */
2722   UINT sz_path  /* Size of path */
2723 )
2724 {
2725   FRESULT res;
2726   DIR dj;
2727   UINT i, n;
2728   DWORD ccl;
2729   TCHAR *tp;
2730   FILINFO fno;
2731   DEF_NAMEBUF;
2732 
2733 
2734   *path = 0;
2735   res = chk_mounted((const TCHAR**)&path, &dj.fs, 0); /* Get current volume */
2736   if (res == FR_OK) {
2737     INIT_BUF(dj);
2738     i = sz_path;    /* Bottom of buffer (dir stack base) */
2739     dj.sclust = dj.fs->cdir;      /* Start to follow upper dir from current dir */
2740     while ((ccl = dj.sclust) != 0) {  /* Repeat while current dir is a sub-dir */
2741       res = dir_sdi(&dj, 1);      /* Get parent dir */
2742       if (res != FR_OK) break;
2743       res = dir_read(&dj);
2744       if (res != FR_OK) break;
2745       dj.sclust = LD_CLUST(dj.dir); /* Goto parent dir */
2746       res = dir_sdi(&dj, 0);
2747       if (res != FR_OK) break;
2748       do {              /* Find the entry links to the child dir */
2749         res = dir_read(&dj);
2750         if (res != FR_OK) break;
2751         if (ccl == LD_CLUST(dj.dir)) break; /* Found the entry */
2752         res = dir_next(&dj, 0);
2753       } while (res == FR_OK);
2754       if (res == FR_NO_FILE) res = FR_INT_ERR;/* It cannot be 'not found'. */
2755       if (res != FR_OK) break;
2756 #if _USE_LFN
2757       fno.lfname = path;
2758       fno.lfsize = i;
2759 #endif
2760       get_fileinfo(&dj, &fno);    /* Get the dir name and push it to the buffer */
2761       tp = fno.fname;
2762       if (_USE_LFN && *path) tp = path;
2763       for (n = 0; tp[n]; n++) ;
2764       if (i < n + 3) {
2765         res = FR_NOT_ENOUGH_CORE; break;
2766       }
2767       while (n) path[--i] = tp[--n];
2768       path[--i] = '/';
2769     }
2770     tp = path;
2771     if (res == FR_OK) {
2772       *tp++ = '0' + CurrVol;      /* Put drive number */
2773       *tp++ = ':';
2774       if (i == sz_path) {       /* Root-dir */
2775         *tp++ = '/';
2776       } else {            /* Sub-dir */
2777         do    /* Add stacked path str */
2778           *tp++ = path[i++];
2779         while (i < sz_path);
2780       }
2781     }
2782     *tp = 0;
2783     FREE_BUF();
2784   }
2785 
2786   LEAVE_FF(dj.fs, res);
2787 }
2788 #endif /* _FS_RPATH >= 2 */
2789 #endif /* _FS_RPATH >= 1 */
2790 
2791 
2792 
2793 #if _FS_MINIMIZE <= 2
2794 /*-----------------------------------------------------------------------*/
2795 /* Seek File R/W Pointer                                                 */
2796 /*-----------------------------------------------------------------------*/
2797 
f_lseek(FIL * fp,DWORD ofs)2798 FRESULT f_lseek (
2799   FIL *fp,    /* Pointer to the file object */
2800   DWORD ofs   /* File pointer from top of file */
2801 )
2802 {
2803   FRESULT res;
2804 
2805 
2806   res = validate(fp->fs, fp->id);   /* Check validity of the object */
2807   if (res != FR_OK) LEAVE_FF(fp->fs, res);
2808   if (fp->flag & FA__ERROR)     /* Check abort flag */
2809     LEAVE_FF(fp->fs, FR_INT_ERR);
2810 
2811 #if _USE_FASTSEEK
2812   if (fp->cltbl) {  /* Fast seek */
2813     DWORD cl, pcl, ncl, tcl, dsc, tlen, ulen, *tbl;
2814 
2815     if (ofs == CREATE_LINKMAP) {  /* Create CLMT */
2816       tbl = fp->cltbl;
2817       tlen = *tbl++; ulen = 2;  /* Given table size and required table size */
2818       cl = fp->sclust;      /* Top of the chain */
2819       if (cl) {
2820         do {
2821           /* Get a fragment */
2822           tcl = cl; ncl = 0; ulen += 2; /* Top, length and used items */
2823           do {
2824             pcl = cl; ncl++;
2825             cl = get_fat(fp->fs, cl);
2826             if (cl <= 1) ABORT(fp->fs, FR_INT_ERR);
2827             if (cl == 0xFFFFFFFF) ABORT(fp->fs, FR_DISK_ERR);
2828           } while (cl == pcl + 1);
2829           if (ulen <= tlen) {   /* Store the length and top of the fragment */
2830             *tbl++ = ncl; *tbl++ = tcl;
2831           }
2832         } while (cl < fp->fs->n_fatent);  /* Repeat until end of chain */
2833       }
2834       *fp->cltbl = ulen;  /* Number of items used */
2835       if (ulen <= tlen)
2836         *tbl = 0;   /* Terminate table */
2837       else
2838         res = FR_NOT_ENOUGH_CORE; /* Given table size is smaller than required */
2839 
2840     } else {            /* Fast seek */
2841       if (ofs > fp->fsize)    /* Clip offset at the file size */
2842         ofs = fp->fsize;
2843       fp->fptr = ofs;       /* Set file pointer */
2844       if (ofs) {
2845         fp->clust = clmt_clust(fp, ofs - 1);
2846         dsc = clust2sect(fp->fs, fp->clust);
2847         if (!dsc) ABORT(fp->fs, FR_INT_ERR);
2848         dsc += (ofs - 1) / SS(fp->fs) & (fp->fs->csize - 1);
2849         if (fp->fptr % SS(fp->fs) && dsc != fp->dsect) {  /* Refill sector cache if needed */
2850 #if !_FS_TINY
2851 #if !_FS_READONLY
2852           if (fp->flag & FA__DIRTY) {   /* Write-back dirty sector cache */
2853             if (disk_write(fp->fs->drv, fp->buf, fp->dsect, 1) != RES_OK)
2854               ABORT(fp->fs, FR_DISK_ERR);
2855             fp->flag &= ~FA__DIRTY;
2856           }
2857 #endif
2858           if (disk_read(fp->fs->drv, fp->buf, dsc, 1) != RES_OK)  /* Load current sector */
2859             ABORT(fp->fs, FR_DISK_ERR);
2860 #endif
2861           fp->dsect = dsc;
2862         }
2863       }
2864     }
2865   } else
2866 #endif
2867 
2868   /* Normal Seek */
2869   {
2870     DWORD clst, bcs, nsect, ifptr;
2871 
2872     if (ofs > fp->fsize         /* In read-only mode, clip offset with the file size */
2873 #if !_FS_READONLY
2874        && !(fp->flag & FA_WRITE)
2875 #endif
2876       ) ofs = fp->fsize;
2877 
2878     ifptr = fp->fptr;
2879     fp->fptr = nsect = 0;
2880     if (ofs) {
2881       bcs = (DWORD)fp->fs->csize * SS(fp->fs);  /* Cluster size (byte) */
2882       if (ifptr > 0 &&
2883         (ofs - 1) / bcs >= (ifptr - 1) / bcs) { /* When seek to same or following cluster, */
2884         fp->fptr = (ifptr - 1) & ~(bcs - 1);  /* start from the current cluster */
2885         ofs -= fp->fptr;
2886         clst = fp->clust;
2887       } else {                  /* When seek to back cluster, */
2888         clst = fp->sclust;            /* start from the first cluster */
2889 #if !_FS_READONLY
2890         if (clst == 0) {            /* If no cluster chain, create a new chain */
2891           clst = create_chain(fp->fs, 0);
2892           if (clst == 1) ABORT(fp->fs, FR_INT_ERR);
2893           if (clst == 0xFFFFFFFF) ABORT(fp->fs, FR_DISK_ERR);
2894           fp->sclust = clst;
2895         }
2896 #endif
2897         fp->clust = clst;
2898       }
2899       if (clst != 0) {
2900         while (ofs > bcs) {           /* Cluster following loop */
2901 #if !_FS_READONLY
2902           if (fp->flag & FA_WRITE) {      /* Check if in write mode or not */
2903             clst = create_chain(fp->fs, clst);  /* Force stretch if in write mode */
2904             if (clst == 0) {        /* When disk gets full, clip file size */
2905               ofs = bcs; break;
2906             }
2907           } else
2908 #endif
2909             clst = get_fat(fp->fs, clst); /* Follow cluster chain if not in write mode */
2910           if (clst == 0xFFFFFFFF) ABORT(fp->fs, FR_DISK_ERR);
2911           if (clst <= 1 || clst >= fp->fs->n_fatent) ABORT(fp->fs, FR_INT_ERR);
2912           fp->clust = clst;
2913           fp->fptr += bcs;
2914           ofs -= bcs;
2915         }
2916         fp->fptr += ofs;
2917         if (ofs % SS(fp->fs)) {
2918           nsect = clust2sect(fp->fs, clst); /* Current sector */
2919           if (!nsect) ABORT(fp->fs, FR_INT_ERR);
2920           nsect += ofs / SS(fp->fs);
2921         }
2922       }
2923     }
2924     if (fp->fptr % SS(fp->fs) && nsect != fp->dsect) {  /* Fill sector cache if needed */
2925 #if !_FS_TINY
2926 #if !_FS_READONLY
2927       if (fp->flag & FA__DIRTY) {     /* Write-back dirty sector cache */
2928         if (disk_write(fp->fs->drv, fp->buf, fp->dsect, 1) != RES_OK)
2929           ABORT(fp->fs, FR_DISK_ERR);
2930         fp->flag &= ~FA__DIRTY;
2931       }
2932 #endif
2933       if (disk_read(fp->fs->drv, fp->buf, nsect, 1) != RES_OK)  /* Fill sector cache */
2934         ABORT(fp->fs, FR_DISK_ERR);
2935 #endif
2936       fp->dsect = nsect;
2937     }
2938 #if !_FS_READONLY
2939     if (fp->fptr > fp->fsize) {     /* Set file change flag if the file size is extended */
2940       fp->fsize = fp->fptr;
2941       fp->flag |= FA__WRITTEN;
2942     }
2943 #endif
2944   }
2945 
2946   LEAVE_FF(fp->fs, res);
2947 }
2948 
2949 
2950 
2951 #if _FS_MINIMIZE <= 1
2952 /*-----------------------------------------------------------------------*/
2953 /* Create a Directroy Object                                             */
2954 /*-----------------------------------------------------------------------*/
2955 
f_opendir(DIR * dj,const TCHAR * path)2956 FRESULT f_opendir (
2957   DIR *dj,      /* Pointer to directory object to create */
2958   const TCHAR *path /* Pointer to the directory path */
2959 )
2960 {
2961   FRESULT res;
2962   DEF_NAMEBUF;
2963 
2964 
2965   res = chk_mounted(&path, &dj->fs, 0);
2966   if (res == FR_OK) {
2967     INIT_BUF(*dj);
2968     res = follow_path(dj, path);      /* Follow the path to the directory */
2969     FREE_BUF();
2970     if (res == FR_OK) {           /* Follow completed */
2971       if (dj->dir) {            /* It is not the root dir */
2972         if (dj->dir[DIR_Attr] & AM_DIR) { /* The object is a directory */
2973           dj->sclust = LD_CLUST(dj->dir);
2974         } else {            /* The object is not a directory */
2975           res = FR_NO_PATH;
2976         }
2977       }
2978       if (res == FR_OK) {
2979         dj->id = dj->fs->id;
2980         res = dir_sdi(dj, 0);     /* Rewind dir */
2981       }
2982     }
2983     if (res == FR_NO_FILE) res = FR_NO_PATH;
2984   }
2985 
2986   LEAVE_FF(dj->fs, res);
2987 }
2988 
2989 
2990 
2991 
2992 /*-----------------------------------------------------------------------*/
2993 /* Read Directory Entry in Sequense                                      */
2994 /*-----------------------------------------------------------------------*/
2995 
f_readdir(DIR * dj,FILINFO * fno)2996 FRESULT f_readdir (
2997   DIR *dj,      /* Pointer to the open directory object */
2998   FILINFO *fno    /* Pointer to file information to return */
2999 )
3000 {
3001   FRESULT res;
3002   DEF_NAMEBUF;
3003 
3004 
3005   res = validate(dj->fs, dj->id);     /* Check validity of the object */
3006   if (res == FR_OK) {
3007     if (!fno) {
3008       res = dir_sdi(dj, 0);     /* Rewind the directory object */
3009     } else {
3010       INIT_BUF(*dj);
3011       res = dir_read(dj);       /* Read an directory item */
3012       if (res == FR_NO_FILE) {    /* Reached end of dir */
3013         dj->sect = 0;
3014         res = FR_OK;
3015       }
3016       if (res == FR_OK) {       /* A valid entry is found */
3017         get_fileinfo(dj, fno);    /* Get the object information */
3018         res = dir_next(dj, 0);    /* Increment index for next */
3019         if (res == FR_NO_FILE) {
3020           dj->sect = 0;
3021           res = FR_OK;
3022         }
3023       }
3024       FREE_BUF();
3025     }
3026   }
3027 
3028   LEAVE_FF(dj->fs, res);
3029 }
3030 
3031 
3032 
3033 #if _FS_MINIMIZE == 0
3034 /*-----------------------------------------------------------------------*/
3035 /* Get File Status                                                       */
3036 /*-----------------------------------------------------------------------*/
3037 
f_stat(const TCHAR * path,FILINFO * fno)3038 FRESULT f_stat (
3039   const TCHAR *path,  /* Pointer to the file path */
3040   FILINFO *fno    /* Pointer to file information to return */
3041 )
3042 {
3043   FRESULT res;
3044   DIR dj;
3045   DEF_NAMEBUF;
3046 
3047 
3048   res = chk_mounted(&path, &dj.fs, 0);
3049   if (res == FR_OK) {
3050     INIT_BUF(dj);
3051     res = follow_path(&dj, path); /* Follow the file path */
3052     if (res == FR_OK) {       /* Follow completed */
3053       if (dj.dir)   /* Found an object */
3054         get_fileinfo(&dj, fno);
3055       else      /* It is root dir */
3056         res = FR_INVALID_NAME;
3057     }
3058     FREE_BUF();
3059   }
3060 
3061   LEAVE_FF(dj.fs, res);
3062 }
3063 
3064 
3065 
3066 #if !_FS_READONLY
3067 /*-----------------------------------------------------------------------*/
3068 /* Get Number of Free Clusters                                           */
3069 /*-----------------------------------------------------------------------*/
3070 
f_getfree(const TCHAR * path,DWORD * nclst,FATFS ** fatfs)3071 FRESULT f_getfree (
3072   const TCHAR *path,  /* Pointer to the logical drive number (root dir) */
3073   DWORD *nclst,   /* Pointer to the variable to return number of free clusters */
3074   FATFS **fatfs   /* Pointer to pointer to corresponding file system object to return */
3075 )
3076 {
3077   FRESULT res;
3078   DWORD n, clst, sect, stat;
3079   UINT i;
3080   BYTE fat, *p;
3081 
3082 
3083   /* Get drive number */
3084   res = chk_mounted(&path, fatfs, 0);
3085   if (res == FR_OK) {
3086     /* If free_clust is valid, return it without full cluster scan */
3087     if ((*fatfs)->free_clust <= (*fatfs)->n_fatent - 2) {
3088       *nclst = (*fatfs)->free_clust;
3089     } else {
3090       /* Get number of free clusters */
3091       fat = (*fatfs)->fs_type;
3092       n = 0;
3093       if (fat == FS_FAT12) {
3094         clst = 2;
3095         do {
3096           stat = get_fat(*fatfs, clst);
3097           if (stat == 0xFFFFFFFF) { res = FR_DISK_ERR; break; }
3098           if (stat == 1) { res = FR_INT_ERR; break; }
3099           if (stat == 0) n++;
3100         } while (++clst < (*fatfs)->n_fatent);
3101       } else {
3102         clst = (*fatfs)->n_fatent;
3103         sect = (*fatfs)->fatbase;
3104         i = 0; p = 0;
3105         do {
3106           if (!i) {
3107             res = move_window(*fatfs, sect++);
3108             if (res != FR_OK) break;
3109             p = (*fatfs)->win;
3110             i = SS(*fatfs);
3111           }
3112           if (fat == FS_FAT16) {
3113             if (LD_WORD(p) == 0) n++;
3114             p += 2; i -= 2;
3115           } else {
3116             if ((LD_DWORD(p) & 0x0FFFFFFF) == 0) n++;
3117             p += 4; i -= 4;
3118           }
3119         } while (--clst);
3120       }
3121       (*fatfs)->free_clust = n;
3122       if (fat == FS_FAT32) (*fatfs)->fsi_flag = 1;
3123       *nclst = n;
3124     }
3125   }
3126   LEAVE_FF(*fatfs, res);
3127 }
3128 
3129 
3130 
3131 
3132 /*-----------------------------------------------------------------------*/
3133 /* Truncate File                                                         */
3134 /*-----------------------------------------------------------------------*/
3135 
f_truncate(FIL * fp)3136 FRESULT f_truncate (
3137   FIL *fp   /* Pointer to the file object */
3138 )
3139 {
3140   FRESULT res;
3141   DWORD ncl;
3142 
3143 
3144   res = validate(fp->fs, fp->id);   /* Check validity of the object */
3145   if (res == FR_OK) {
3146     if (fp->flag & FA__ERROR) {     /* Check abort flag */
3147       res = FR_INT_ERR;
3148     } else {
3149       if (!(fp->flag & FA_WRITE))   /* Check access mode */
3150         res = FR_DENIED;
3151     }
3152   }
3153   if (res == FR_OK) {
3154     if (fp->fsize > fp->fptr) {
3155       fp->fsize = fp->fptr; /* Set file size to current R/W point */
3156       fp->flag |= FA__WRITTEN;
3157       if (fp->fptr == 0) {  /* When set file size to zero, remove entire cluster chain */
3158         res = remove_chain(fp->fs, fp->sclust);
3159         fp->sclust = 0;
3160       } else {        /* When truncate a part of the file, remove remaining clusters */
3161         ncl = get_fat(fp->fs, fp->clust);
3162         res = FR_OK;
3163         if (ncl == 0xFFFFFFFF) res = FR_DISK_ERR;
3164         if (ncl == 1) res = FR_INT_ERR;
3165         if (res == FR_OK && ncl < fp->fs->n_fatent) {
3166           res = put_fat(fp->fs, fp->clust, 0x0FFFFFFF);
3167           if (res == FR_OK) res = remove_chain(fp->fs, ncl);
3168         }
3169       }
3170     }
3171     if (res != FR_OK) fp->flag |= FA__ERROR;
3172   }
3173 
3174   LEAVE_FF(fp->fs, res);
3175 }
3176 
3177 
3178 
3179 
3180 /*-----------------------------------------------------------------------*/
3181 /* Delete a File or Directory                                            */
3182 /*-----------------------------------------------------------------------*/
3183 
f_unlink(const TCHAR * path)3184 FRESULT f_unlink (
3185   const TCHAR *path   /* Pointer to the file or directory path */
3186 )
3187 {
3188   FRESULT res;
3189   DIR dj, sdj;
3190   BYTE *dir;
3191   DWORD dclst;
3192   DEF_NAMEBUF;
3193 
3194 
3195   res = chk_mounted(&path, &dj.fs, 1);
3196   if (res == FR_OK) {
3197     INIT_BUF(dj);
3198     res = follow_path(&dj, path);   /* Follow the file path */
3199     if (_FS_RPATH && res == FR_OK && (dj.fn[NS] & NS_DOT))
3200       res = FR_INVALID_NAME;      /* Cannot remove dot entry */
3201 #if _FS_SHARE
3202     if (res == FR_OK) res = chk_lock(&dj, 2); /* Cannot remove open file */
3203 #endif
3204     if (res == FR_OK) {         /* The object is accessible */
3205       dir = dj.dir;
3206       if (!dir) {
3207         res = FR_INVALID_NAME;    /* Cannot remove the start directory */
3208       } else {
3209         if (dir[DIR_Attr] & AM_RDO)
3210           res = FR_DENIED;    /* Cannot remove R/O object */
3211       }
3212       dclst = LD_CLUST(dir);
3213       if (res == FR_OK && (dir[DIR_Attr] & AM_DIR)) { /* Is it a sub-dir? */
3214         if (dclst < 2) {
3215           res = FR_INT_ERR;
3216         } else {
3217           mem_cpy(&sdj, &dj, sizeof(DIR));  /* Check if the sub-dir is empty or not */
3218           sdj.sclust = dclst;
3219           res = dir_sdi(&sdj, 2);   /* Exclude dot entries */
3220           if (res == FR_OK) {
3221             res = dir_read(&sdj);
3222             if (res == FR_OK      /* Not empty dir */
3223 #if _FS_RPATH
3224             || dclst == sdj.fs->cdir  /* Current dir */
3225 #endif
3226             ) res = FR_DENIED;
3227             if (res == FR_NO_FILE) res = FR_OK; /* Empty */
3228           }
3229         }
3230       }
3231       if (res == FR_OK) {
3232         res = dir_remove(&dj);    /* Remove the directory entry */
3233         if (res == FR_OK) {
3234           if (dclst)        /* Remove the cluster chain if exist */
3235             res = remove_chain(dj.fs, dclst);
3236           if (res == FR_OK) res = sync(dj.fs);
3237         }
3238       }
3239     }
3240     FREE_BUF();
3241   }
3242   LEAVE_FF(dj.fs, res);
3243 }
3244 
3245 
3246 
3247 
3248 /*-----------------------------------------------------------------------*/
3249 /* Create a Directory                                                    */
3250 /*-----------------------------------------------------------------------*/
3251 
f_mkdir(const TCHAR * path)3252 FRESULT f_mkdir (
3253   const TCHAR *path   /* Pointer to the directory path */
3254 )
3255 {
3256   FRESULT res;
3257   DIR dj;
3258   BYTE *dir, n;
3259   DWORD dsc, dcl, pcl, tim = get_fattime();
3260   DEF_NAMEBUF;
3261 
3262 
3263   res = chk_mounted(&path, &dj.fs, 1);
3264   if (res == FR_OK) {
3265     INIT_BUF(dj);
3266     res = follow_path(&dj, path);     /* Follow the file path */
3267     if (res == FR_OK) res = FR_EXIST;   /* Any object with same name is already existing */
3268     if (_FS_RPATH && res == FR_NO_FILE && (dj.fn[NS] & NS_DOT))
3269       res = FR_INVALID_NAME;
3270     if (res == FR_NO_FILE) {        /* Can create a new directory */
3271       dcl = create_chain(dj.fs, 0);   /* Allocate a cluster for the new directory table */
3272       res = FR_OK;
3273       if (dcl == 0) res = FR_DENIED;    /* No space to allocate a new cluster */
3274       if (dcl == 1) res = FR_INT_ERR;
3275       if (dcl == 0xFFFFFFFF) res = FR_DISK_ERR;
3276       if (res == FR_OK)         /* Flush FAT */
3277         res = move_window(dj.fs, 0);
3278       if (res == FR_OK) {         /* Initialize the new directory table */
3279         dsc = clust2sect(dj.fs, dcl);
3280         dir = dj.fs->win;
3281         mem_set(dir, 0, SS(dj.fs));
3282         mem_set(dir+DIR_Name, ' ', 8+3);  /* Create "." entry */
3283         dir[DIR_Name] = '.';
3284         dir[DIR_Attr] = AM_DIR;
3285         ST_DWORD(dir+DIR_WrtTime, tim);
3286         ST_CLUST(dir, dcl);
3287         mem_cpy(dir+SZ_DIR, dir, SZ_DIR);   /* Create ".." entry */
3288         dir[33] = '.'; pcl = dj.sclust;
3289         if (dj.fs->fs_type == FS_FAT32 && pcl == dj.fs->dirbase)
3290           pcl = 0;
3291         ST_CLUST(dir+SZ_DIR, pcl);
3292         for (n = dj.fs->csize; n; n--) {  /* Write dot entries and clear following sectors */
3293           dj.fs->winsect = dsc++;
3294           dj.fs->wflag = 1;
3295           res = move_window(dj.fs, 0);
3296           if (res != FR_OK) break;
3297           mem_set(dir, 0, SS(dj.fs));
3298         }
3299       }
3300       if (res == FR_OK) res = dir_register(&dj);  /* Register the object to the directoy */
3301       if (res != FR_OK) {
3302         remove_chain(dj.fs, dcl);     /* Could not register, remove cluster chain */
3303       } else {
3304         dir = dj.dir;
3305         dir[DIR_Attr] = AM_DIR;       /* Attribute */
3306         ST_DWORD(dir+DIR_WrtTime, tim);   /* Created time */
3307         ST_CLUST(dir, dcl);         /* Table start cluster */
3308         dj.fs->wflag = 1;
3309         res = sync(dj.fs);
3310       }
3311     }
3312     FREE_BUF();
3313   }
3314 
3315   LEAVE_FF(dj.fs, res);
3316 }
3317 
3318 
3319 
3320 
3321 /*-----------------------------------------------------------------------*/
3322 /* Change Attribute                                                      */
3323 /*-----------------------------------------------------------------------*/
3324 
f_chmod(const TCHAR * path,BYTE value,BYTE mask)3325 FRESULT f_chmod (
3326   const TCHAR *path,  /* Pointer to the file path */
3327   BYTE value,     /* Attribute bits */
3328   BYTE mask     /* Attribute mask to change */
3329 )
3330 {
3331   FRESULT res;
3332   DIR dj;
3333   BYTE *dir;
3334   DEF_NAMEBUF;
3335 
3336 
3337   res = chk_mounted(&path, &dj.fs, 1);
3338   if (res == FR_OK) {
3339     INIT_BUF(dj);
3340     res = follow_path(&dj, path);   /* Follow the file path */
3341     FREE_BUF();
3342     if (_FS_RPATH && res == FR_OK && (dj.fn[NS] & NS_DOT))
3343       res = FR_INVALID_NAME;
3344     if (res == FR_OK) {
3345       dir = dj.dir;
3346       if (!dir) {           /* Is it a root directory? */
3347         res = FR_INVALID_NAME;
3348       } else {            /* File or sub directory */
3349         mask &= AM_RDO|AM_HID|AM_SYS|AM_ARC;  /* Valid attribute mask */
3350         dir[DIR_Attr] = (value & mask) | (dir[DIR_Attr] & (BYTE)~mask); /* Apply attribute change */
3351         dj.fs->wflag = 1;
3352         res = sync(dj.fs);
3353       }
3354     }
3355   }
3356 
3357   LEAVE_FF(dj.fs, res);
3358 }
3359 
3360 
3361 
3362 
3363 /*-----------------------------------------------------------------------*/
3364 /* Change Timestamp                                                      */
3365 /*-----------------------------------------------------------------------*/
3366 
f_utime(const TCHAR * path,const FILINFO * fno)3367 FRESULT f_utime (
3368   const TCHAR *path,  /* Pointer to the file/directory name */
3369   const FILINFO *fno  /* Pointer to the time stamp to be set */
3370 )
3371 {
3372   FRESULT res;
3373   DIR dj;
3374   BYTE *dir;
3375   DEF_NAMEBUF;
3376 
3377 
3378   res = chk_mounted(&path, &dj.fs, 1);
3379   if (res == FR_OK) {
3380     INIT_BUF(dj);
3381     res = follow_path(&dj, path); /* Follow the file path */
3382     FREE_BUF();
3383     if (_FS_RPATH && res == FR_OK && (dj.fn[NS] & NS_DOT))
3384       res = FR_INVALID_NAME;
3385     if (res == FR_OK) {
3386       dir = dj.dir;
3387       if (!dir) {         /* Root directory */
3388         res = FR_INVALID_NAME;
3389       } else {          /* File or sub-directory */
3390         ST_WORD(dir+DIR_WrtTime, fno->ftime);
3391         ST_WORD(dir+DIR_WrtDate, fno->fdate);
3392         dj.fs->wflag = 1;
3393         res = sync(dj.fs);
3394       }
3395     }
3396   }
3397 
3398   LEAVE_FF(dj.fs, res);
3399 }
3400 
3401 
3402 
3403 
3404 /*-----------------------------------------------------------------------*/
3405 /* Rename File/Directory                                                 */
3406 /*-----------------------------------------------------------------------*/
3407 
f_rename(const TCHAR * path_old,const TCHAR * path_new)3408 FRESULT f_rename (
3409   const TCHAR *path_old,  /* Pointer to the old name */
3410   const TCHAR *path_new /* Pointer to the new name */
3411 )
3412 {
3413   FRESULT res;
3414   DIR djo, djn;
3415   BYTE buf[21], *dir;
3416   DWORD dw;
3417   DEF_NAMEBUF;
3418 
3419 
3420   res = chk_mounted(&path_old, &djo.fs, 1);
3421   if (res == FR_OK) {
3422     djn.fs = djo.fs;
3423     INIT_BUF(djo);
3424     res = follow_path(&djo, path_old);    /* Check old object */
3425     if (_FS_RPATH && res == FR_OK && (djo.fn[NS] & NS_DOT))
3426       res = FR_INVALID_NAME;
3427 #if _FS_SHARE
3428     if (res == FR_OK) res = chk_lock(&djo, 2);
3429 #endif
3430     if (res == FR_OK) {           /* Old object is found */
3431       if (!djo.dir) {           /* Is root dir? */
3432         res = FR_NO_FILE;
3433       } else {
3434         mem_cpy(buf, djo.dir+DIR_Attr, 21);   /* Save the object information except for name */
3435         mem_cpy(&djn, &djo, sizeof(DIR));   /* Check new object */
3436         res = follow_path(&djn, path_new);
3437         if (res == FR_OK) res = FR_EXIST;   /* The new object name is already existing */
3438         if (res == FR_NO_FILE) {        /* Is it a valid path and no name collision? */
3439 /* Start critical section that any interruption or error can cause cross-link */
3440           res = dir_register(&djn);     /* Register the new entry */
3441           if (res == FR_OK) {
3442             dir = djn.dir;          /* Copy object information except for name */
3443             mem_cpy(dir+13, buf+2, 19);
3444             dir[DIR_Attr] = buf[0] | AM_ARC;
3445             djo.fs->wflag = 1;
3446             if (djo.sclust != djn.sclust && (dir[DIR_Attr] & AM_DIR)) {   /* Update .. entry in the directory if needed */
3447               dw = clust2sect(djn.fs, LD_CLUST(dir));
3448               if (!dw) {
3449                 res = FR_INT_ERR;
3450               } else {
3451                 res = move_window(djn.fs, dw);
3452                 dir = djn.fs->win+SZ_DIR; /* .. entry */
3453                 if (res == FR_OK && dir[1] == '.') {
3454                   dw = (djn.fs->fs_type == FS_FAT32 && djn.sclust == djn.fs->dirbase) ? 0 : djn.sclust;
3455                   ST_CLUST(dir, dw);
3456                   djn.fs->wflag = 1;
3457                 }
3458               }
3459             }
3460             if (res == FR_OK) {
3461               res = dir_remove(&djo);   /* Remove old entry */
3462               if (res == FR_OK)
3463                 res = sync(djo.fs);
3464             }
3465           }
3466 /* End critical section */
3467         }
3468       }
3469     }
3470     FREE_BUF();
3471   }
3472   LEAVE_FF(djo.fs, res);
3473 }
3474 
3475 #endif /* !_FS_READONLY */
3476 #endif /* _FS_MINIMIZE == 0 */
3477 #endif /* _FS_MINIMIZE <= 1 */
3478 #endif /* _FS_MINIMIZE <= 2 */
3479 
3480 
3481 
3482 /*-----------------------------------------------------------------------*/
3483 /* Forward data to the stream directly (available on only tiny cfg)      */
3484 /*-----------------------------------------------------------------------*/
3485 #if _USE_FORWARD && _FS_TINY
3486 
f_forward(FIL * fp,UINT (* func)(const BYTE *,UINT),UINT btr,UINT * bf)3487 FRESULT f_forward (
3488   FIL *fp,            /* Pointer to the file object */
3489   UINT (*func)(const BYTE*,UINT), /* Pointer to the streaming function */
3490   UINT btr,           /* Number of bytes to forward */
3491   UINT *bf            /* Pointer to number of bytes forwarded */
3492 )
3493 {
3494   FRESULT res;
3495   DWORD remain, clst, sect;
3496   UINT rcnt;
3497   BYTE csect;
3498 
3499 
3500   *bf = 0;  /* Initialize byte counter */
3501 
3502   res = validate(fp->fs, fp->id);         /* Check validity of the object */
3503   if (res != FR_OK) LEAVE_FF(fp->fs, res);
3504   if (fp->flag & FA__ERROR)           /* Check error flag */
3505     LEAVE_FF(fp->fs, FR_INT_ERR);
3506   if (!(fp->flag & FA_READ))            /* Check access mode */
3507     LEAVE_FF(fp->fs, FR_DENIED);
3508 
3509   remain = fp->fsize - fp->fptr;
3510   if (btr > remain) btr = (UINT)remain;     /* Truncate btr by remaining bytes */
3511 
3512   for ( ;  btr && (*func)(0, 0);          /* Repeat until all data transferred or stream becomes busy */
3513     fp->fptr += rcnt, *bf += rcnt, btr -= rcnt) {
3514     csect = (BYTE)(fp->fptr / SS(fp->fs) & (fp->fs->csize - 1));  /* Sector offset in the cluster */
3515     if ((fp->fptr % SS(fp->fs)) == 0) {     /* On the sector boundary? */
3516       if (!csect) {             /* On the cluster boundary? */
3517         clst = (fp->fptr == 0) ?      /* On the top of the file? */
3518           fp->sclust : get_fat(fp->fs, fp->clust);
3519         if (clst <= 1) ABORT(fp->fs, FR_INT_ERR);
3520         if (clst == 0xFFFFFFFF) ABORT(fp->fs, FR_DISK_ERR);
3521         fp->clust = clst;         /* Update current cluster */
3522       }
3523     }
3524     sect = clust2sect(fp->fs, fp->clust);   /* Get current data sector */
3525     if (!sect) ABORT(fp->fs, FR_INT_ERR);
3526     sect += csect;
3527     if (move_window(fp->fs, sect))        /* Move sector window */
3528       ABORT(fp->fs, FR_DISK_ERR);
3529     fp->dsect = sect;
3530     rcnt = SS(fp->fs) - (WORD)(fp->fptr % SS(fp->fs));  /* Forward data from sector window */
3531     if (rcnt > btr) rcnt = btr;
3532     rcnt = (*func)(&fp->fs->win[(WORD)fp->fptr % SS(fp->fs)], rcnt);
3533     if (!rcnt) ABORT(fp->fs, FR_INT_ERR);
3534   }
3535 
3536   LEAVE_FF(fp->fs, FR_OK);
3537 }
3538 #endif /* _USE_FORWARD */
3539 
3540 
3541 
3542 #if _USE_MKFS && !_FS_READONLY
3543 /*-----------------------------------------------------------------------*/
3544 /* Create File System on the Drive                                       */
3545 /*-----------------------------------------------------------------------*/
3546 #define N_ROOTDIR 512   /* Number of root dir entries for FAT12/16 */
3547 #define N_FATS    1   /* Number of FAT copies (1 or 2) */
3548 
3549 
f_mkfs(BYTE drv,BYTE sfd,UINT au)3550 FRESULT f_mkfs (
3551   BYTE drv,   /* Logical drive number */
3552   BYTE sfd,   /* Partitioning rule 0:FDISK, 1:SFD */
3553   UINT au     /* Allocation unit size [bytes] */
3554 )
3555 {
3556   static const WORD vst[] = { 1024,   512,  256,  128,   64,    32,   16,    8,    4,    2,   0};
3557   static const WORD cst[] = {32768, 16384, 8192, 4096, 2048, 16384, 8192, 4096, 2048, 1024, 512};
3558   BYTE fmt, md, *tbl;
3559   DWORD n_clst, vs, n, wsect;
3560   UINT i;
3561   DWORD b_vol, b_fat, b_dir, b_data;  /* Offset (LBA) */
3562   DWORD n_vol, n_rsv, n_fat, n_dir; /* Size */
3563   FATFS *fs;
3564   DSTATUS stat;
3565 
3566 
3567   /* Check mounted drive and clear work area */
3568   if (drv >= _VOLUMES) return FR_INVALID_DRIVE;
3569   fs = FatFs[drv];
3570   if (!fs) return FR_NOT_ENABLED;
3571   fs->fs_type = 0;
3572   drv = LD2PD(drv);
3573 
3574   /* Get disk statics */
3575   stat = disk_initialize(drv);
3576   if (stat & STA_NOINIT) return FR_NOT_READY;
3577   if (stat & STA_PROTECT) return FR_WRITE_PROTECTED;
3578 #if _MAX_SS != 512          /* Get disk sector size */
3579   if (disk_ioctl(drv, GET_SECTOR_SIZE, &SS(fs)) != RES_OK)
3580     return FR_DISK_ERR;
3581 #endif
3582   if (disk_ioctl(drv, GET_SECTOR_COUNT, &n_vol) != RES_OK || n_vol < 128)
3583     return FR_DISK_ERR;
3584   b_vol = (sfd) ? 0 : 63; /* Volume start sector */
3585   n_vol -= b_vol;
3586   if (au & (au - 1)) au = 0;  /* Check validity of the AU size */
3587   if (!au) {          /* AU auto selection */
3588     vs = n_vol / (2000 / (SS(fs) / 512));
3589     for (i = 0; vs < vst[i]; i++) ;
3590     au = cst[i];
3591   }
3592   au /= SS(fs);   /* Number of sectors per cluster */
3593   if (au == 0) au = 1;
3594   if (au > 128) au = 128;
3595 
3596   /* Pre-compute number of clusters and FAT syb-type */
3597   n_clst = n_vol / au;
3598   fmt = FS_FAT12;
3599   if (n_clst >= MIN_FAT16) fmt = FS_FAT16;
3600   if (n_clst >= MIN_FAT32) fmt = FS_FAT32;
3601 
3602   /* Determine offset and size of FAT structure */
3603   if (fmt == FS_FAT32) {
3604     n_fat = ((n_clst * 4) + 8 + SS(fs) - 1) / SS(fs);
3605     n_rsv = 32;
3606     n_dir = 0;
3607   } else {
3608     n_fat = (fmt == FS_FAT12) ? (n_clst * 3 + 1) / 2 + 3 : (n_clst * 2) + 4;
3609     n_fat = (n_fat + SS(fs) - 1) / SS(fs);
3610     n_rsv = 1;
3611     n_dir = (DWORD)N_ROOTDIR * SZ_DIR / SS(fs);
3612   }
3613   b_fat = b_vol + n_rsv;        /* FAT area start sector */
3614   b_dir = b_fat + n_fat * N_FATS;   /* Directory area start sector */
3615   b_data = b_dir + n_dir;       /* Data area start sector */
3616   if (n_vol < b_data + au) return FR_MKFS_ABORTED;  /* Too small volume */
3617 
3618   /* Align data start sector to erase block boundary (for flash memory media) */
3619   if (disk_ioctl(drv, GET_BLOCK_SIZE, &n) != RES_OK || !n || n > 32768) n = 1;
3620   n = (b_data + n - 1) & ~(n - 1);  /* Next nearest erase block from current data start */
3621   n = (n - b_data) / N_FATS;
3622   if (fmt == FS_FAT32) {    /* FAT32: Move FAT offset */
3623     n_rsv += n;
3624     b_fat += n;
3625   } else {          /* FAT12/16: Expand FAT size */
3626     n_fat += n;
3627   }
3628 
3629   /* Determine number of clusters and final check of validity of the FAT sub-type */
3630   n_clst = (n_vol - n_rsv - n_fat * N_FATS - n_dir) / au;
3631   if (   (fmt == FS_FAT16 && n_clst < MIN_FAT16)
3632     || (fmt == FS_FAT32 && n_clst < MIN_FAT32))
3633     return FR_MKFS_ABORTED;
3634 
3635   /* Create partition table if required */
3636   if (sfd) {  /* No patition table (SFD) */
3637     md = 0xF0;
3638   } else {  /* With patition table (FDISK) */
3639     DWORD n_disk = b_vol + n_vol;
3640 
3641     mem_set(fs->win, 0, SS(fs));
3642     tbl = fs->win+MBR_Table;
3643     ST_DWORD(tbl, 0x00010180);      /* Partition start in CHS */
3644     if (n_disk < 63UL * 255 * 1024) { /* Partition end in CHS */
3645       n_disk = n_disk / 63 / 255;
3646       tbl[7] = (BYTE)n_disk;
3647       tbl[6] = (BYTE)((n_disk >> 2) | 63);
3648     } else {
3649       ST_WORD(&tbl[6], 0xFFFF); /* CHS saturated */
3650     }
3651     tbl[5] = 254;
3652     if (fmt != FS_FAT32)        /* System ID */
3653       tbl[4] = (n_vol < 0x10000) ? 0x04 : 0x06;
3654     else
3655       tbl[4] = 0x0c;
3656     ST_DWORD(tbl+8, 63);        /* Partition start in LBA */
3657     ST_DWORD(tbl+12, n_vol);      /* Partition size in LBA */
3658     ST_WORD(fs->win+BS_55AA, 0xAA55); /* MBR signature */
3659     if (disk_write(drv, fs->win, 0, 1) != RES_OK) /* Put the MBR into first physical sector */
3660       return FR_DISK_ERR;
3661     md = 0xF8;
3662   }
3663 
3664   /* Create volume boot record */
3665   tbl = fs->win;              /* Clear sector */
3666   mem_set(tbl, 0, SS(fs));
3667   mem_cpy(tbl, "\xEB\xFE\x90" "MSDOS5.0", 11);/* Boot jump code, OEM name */
3668   i = SS(fs);               /* Sector size */
3669   ST_WORD(tbl+BPB_BytsPerSec, i);
3670   tbl[BPB_SecPerClus] = (BYTE)au;     /* Sectors per cluster */
3671   ST_WORD(tbl+BPB_RsvdSecCnt, n_rsv);   /* Reserved sectors */
3672   tbl[BPB_NumFATs] = N_FATS;        /* Number of FATs */
3673   i = (fmt == FS_FAT32) ? 0 : N_ROOTDIR;  /* Number of rootdir entries */
3674   ST_WORD(tbl+BPB_RootEntCnt, i);
3675   if (n_vol < 0x10000) {          /* Number of total sectors */
3676     ST_WORD(tbl+BPB_TotSec16, n_vol);
3677   } else {
3678     ST_DWORD(tbl+BPB_TotSec32, n_vol);
3679   }
3680   tbl[BPB_Media] = md;          /* Media descriptor */
3681   ST_WORD(tbl+BPB_SecPerTrk, 63);     /* Number of sectors per track */
3682   ST_WORD(tbl+BPB_NumHeads, 255);     /* Number of heads */
3683   ST_DWORD(tbl+BPB_HiddSec, b_vol);   /* Hidden sectors */
3684   n = get_fattime();            /* Use current time as VSN */
3685   if (fmt == FS_FAT32) {
3686     ST_DWORD(tbl+BS_VolID32, n);    /* VSN */
3687     ST_DWORD(tbl+BPB_FATSz32, n_fat); /* Number of sectors per FAT */
3688     ST_DWORD(tbl+BPB_RootClus, 2);    /* Root directory start cluster (2) */
3689     ST_WORD(tbl+BPB_FSInfo, 1);     /* FSInfo record offset (VBR+1) */
3690     ST_WORD(tbl+BPB_BkBootSec, 6);    /* Backup boot record offset (VBR+6) */
3691     tbl[BS_DrvNum32] = 0x80;      /* Drive number */
3692     tbl[BS_BootSig32] = 0x29;     /* Extended boot signature */
3693     mem_cpy(tbl+BS_VolLab32, "NO NAME    " "FAT32   ", 19); /* Volume label, FAT signature */
3694   } else {
3695     ST_DWORD(tbl+BS_VolID, n);      /* VSN */
3696     ST_WORD(tbl+BPB_FATSz16, n_fat);  /* Number of sectors per FAT */
3697     tbl[BS_DrvNum] = 0x80;        /* Drive number */
3698     tbl[BS_BootSig] = 0x29;       /* Extended boot signature */
3699     mem_cpy(tbl+BS_VolLab, "NO NAME    " "FAT     ", 19); /* Volume label, FAT signature */
3700   }
3701   ST_WORD(tbl+BS_55AA, 0xAA55);     /* Signature (Offset is fixed here regardless of sector size) */
3702   if (disk_write(drv, tbl, b_vol, 1) != RES_OK) /* Write VBR */
3703     return FR_DISK_ERR;
3704   if (fmt == FS_FAT32)              /* Write backup VBR if needed (VBR+6) */
3705     disk_write(drv, tbl, b_vol + 6, 1);
3706 
3707   /* Initialize FAT area */
3708   wsect = b_fat;
3709   for (i = 0; i < N_FATS; i++) {    /* Initialize each FAT copy */
3710     mem_set(tbl, 0, SS(fs));      /* 1st sector of the FAT  */
3711     n = md;               /* Media descriptor byte */
3712     if (fmt != FS_FAT32) {
3713       n |= (fmt == FS_FAT12) ? 0x00FFFF00 : 0xFFFFFF00;
3714       ST_DWORD(tbl+0, n);       /* Reserve cluster #0-1 (FAT12/16) */
3715     } else {
3716       n |= 0xFFFFFF00;
3717       ST_DWORD(tbl+0, n);       /* Reserve cluster #0-1 (FAT32) */
3718       ST_DWORD(tbl+4, 0xFFFFFFFF);
3719       ST_DWORD(tbl+8, 0x0FFFFFFF);  /* Reserve cluster #2 for root dir */
3720     }
3721     if (disk_write(drv, tbl, wsect++, 1) != RES_OK)
3722       return FR_DISK_ERR;
3723     mem_set(tbl, 0, SS(fs));      /* Fill following FAT entries with zero */
3724     for (n = 1; n < n_fat; n++) {   /* This loop may take a time on FAT32 volume due to many single sector writes */
3725       if (disk_write(drv, tbl, wsect++, 1) != RES_OK)
3726         return FR_DISK_ERR;
3727     }
3728   }
3729 
3730   /* Initialize root directory */
3731   i = (fmt == FS_FAT32) ? au : n_dir;
3732   do {
3733     if (disk_write(drv, tbl, wsect++, 1) != RES_OK)
3734       return FR_DISK_ERR;
3735   } while (--i);
3736 
3737 #if _USE_ERASE  /* Erase data area if needed */
3738   {
3739     DWORD eb[2];
3740 
3741     eb[0] = wsect; eb[1] = wsect + (n_clst - ((fmt == FS_FAT32) ? 1 : 0)) * au - 1;
3742     disk_ioctl(drv, CTRL_ERASE_SECTOR, eb);
3743   }
3744 #endif
3745 
3746   /* Create FSInfo if needed */
3747   if (fmt == FS_FAT32) {
3748     ST_DWORD(tbl+FSI_LeadSig, 0x41615252);
3749     ST_DWORD(tbl+FSI_StrucSig, 0x61417272);
3750     ST_DWORD(tbl+FSI_Free_Count, n_clst - 1); /* Number of free clusters */
3751     ST_DWORD(tbl+FSI_Nxt_Free, 2);        /* Last allocated cluster# */
3752     ST_WORD(tbl+BS_55AA, 0xAA55);
3753     disk_write(drv, tbl, b_vol + 1, 1); /* Write original (VBR+1) */
3754     disk_write(drv, tbl, b_vol + 7, 1); /* Write backup (VBR+7) */
3755   }
3756 
3757   return (disk_ioctl(drv, CTRL_SYNC, (void*)0) == RES_OK) ? FR_OK : FR_DISK_ERR;
3758 }
3759 
3760 #endif /* _USE_MKFS && !_FS_READONLY */
3761 
3762 
3763 
3764 
3765 #if _USE_STRFUNC
3766 /*-----------------------------------------------------------------------*/
3767 /* Get a string from the file                                            */
3768 /*-----------------------------------------------------------------------*/
f_gets(TCHAR * buff,int len,FIL * fil)3769 TCHAR* f_gets (
3770   TCHAR* buff,  /* Pointer to the string buffer to read */
3771   int len,    /* Size of string buffer (characters) */
3772   FIL* fil    /* Pointer to the file object */
3773 )
3774 {
3775   int n = 0;
3776   TCHAR c, *p = buff;
3777   BYTE s[2];
3778   UINT rc;
3779 
3780 
3781   while (n < len - 1) {     /* Read bytes until buffer gets filled */
3782     f_read(fil, s, 1, &rc);
3783     if (rc != 1) break;     /* Break on EOF or error */
3784     c = s[0];
3785 #if _LFN_UNICODE          /* Read a character in UTF-8 encoding */
3786     if (c >= 0x80) {
3787       if (c < 0xC0) continue; /* Skip stray trailer */
3788       if (c < 0xE0) {     /* Two-byte sequense */
3789         f_read(fil, s, 1, &rc);
3790         if (rc != 1) break;
3791         c = ((c & 0x1F) << 6) | (s[0] & 0x3F);
3792         if (c < 0x80) c = '?';
3793       } else {
3794         if (c < 0xF0) {   /* Three-byte sequense */
3795           f_read(fil, s, 2, &rc);
3796           if (rc != 2) break;
3797           c = (c << 12) | ((s[0] & 0x3F) << 6) | (s[1] & 0x3F);
3798           if (c < 0x800) c = '?';
3799         } else {      /* Reject four-byte sequense */
3800           c = '?';
3801         }
3802       }
3803     }
3804 #endif
3805 #if _USE_STRFUNC >= 2
3806     if (c == '\r') continue;  /* Strip '\r' */
3807 #endif
3808     *p++ = c;
3809     n++;
3810     if (c == '\n') break;   /* Break on EOL */
3811   }
3812   *p = 0;
3813   return n ? buff : 0;      /* When no data read (eof or error), return with error. */
3814 }
3815 
3816 
3817 
3818 #if !_FS_READONLY
3819 #include <stdarg.h>
3820 /*-----------------------------------------------------------------------*/
3821 /* Put a character to the file                                           */
3822 /*-----------------------------------------------------------------------*/
f_putc(TCHAR c,FIL * fil)3823 int f_putc (
3824   TCHAR c,  /* A character to be output */
3825   FIL* fil  /* Pointer to the file object */
3826 )
3827 {
3828   UINT bw, btw;
3829   BYTE s[3];
3830 
3831 
3832 #if _USE_STRFUNC >= 2
3833   if (c == '\n') f_putc ('\r', fil);  /* LF -> CRLF conversion */
3834 #endif
3835 
3836 #if _LFN_UNICODE  /* Write the character in UTF-8 encoding */
3837   if (c < 0x80) {     /* 7-bit */
3838     s[0] = (BYTE)c;
3839     btw = 1;
3840   } else {
3841     if (c < 0x800) {  /* 11-bit */
3842       s[0] = (BYTE)(0xC0 | (c >> 6));
3843       s[1] = (BYTE)(0x80 | (c & 0x3F));
3844       btw = 2;
3845     } else {      /* 16-bit */
3846       s[0] = (BYTE)(0xE0 | (c >> 12));
3847       s[1] = (BYTE)(0x80 | ((c >> 6) & 0x3F));
3848       s[2] = (BYTE)(0x80 | (c & 0x3F));
3849       btw = 3;
3850     }
3851   }
3852 #else       /* Write the character without conversion */
3853   s[0] = (BYTE)c;
3854   btw = 1;
3855 #endif
3856   f_write(fil, s, btw, &bw);    /* Write the char to the file */
3857   return (bw == btw) ? 1 : EOF; /* Return the result */
3858 }
3859 
3860 
3861 
3862 
3863 /*-----------------------------------------------------------------------*/
3864 /* Put a string to the file                                              */
3865 /*-----------------------------------------------------------------------*/
f_puts(const TCHAR * str,FIL * fil)3866 int f_puts (
3867   const TCHAR* str, /* Pointer to the string to be output */
3868   FIL* fil      /* Pointer to the file object */
3869 )
3870 {
3871   int n;
3872 
3873 
3874   for (n = 0; *str; str++, n++) {
3875     if (f_putc(*str, fil) == EOF) return EOF;
3876   }
3877   return n;
3878 }
3879 
3880 
3881 
3882 
3883 /*-----------------------------------------------------------------------*/
3884 /* Put a formatted string to the file                                    */
3885 /*-----------------------------------------------------------------------*/
f_printf(FIL * fil,const TCHAR * str,...)3886 int f_printf (
3887   FIL* fil,     /* Pointer to the file object */
3888   const TCHAR* str, /* Pointer to the format string */
3889   ...         /* Optional arguments... */
3890 )
3891 {
3892   va_list arp;
3893   BYTE f, r;
3894   UINT i, j, w;
3895   ULONG v;
3896   TCHAR c, d, s[16], *p;
3897   int res, cc;
3898 
3899 
3900   va_start(arp, str);
3901 
3902   for (cc = res = 0; cc != EOF; res += cc) {
3903     c = *str++;
3904     if (c == 0) break;      /* End of string */
3905     if (c != '%') {       /* Non escape character */
3906       cc = f_putc(c, fil);
3907       if (cc != EOF) cc = 1;
3908       continue;
3909     }
3910     w = f = 0;
3911     c = *str++;
3912     if (c == '0') {       /* Flag: '0' padding */
3913       f = 1; c = *str++;
3914     } else {
3915       if (c == '-') {     /* Flag: left justified */
3916         f = 2; c = *str++;
3917       }
3918     }
3919     while (IsDigit(c)) {    /* Precision */
3920       w = w * 10 + c - '0';
3921       c = *str++;
3922     }
3923     if (c == 'l' || c == 'L') { /* Prefix: Size is long int */
3924       f |= 4; c = *str++;
3925     }
3926     if (!c) break;
3927     d = c;
3928     if (IsLower(d)) d -= 0x20;
3929     switch (d) {        /* Type is... */
3930     case 'S' :          /* String */
3931       p = va_arg(arp, TCHAR*);
3932       for (j = 0; p[j]; j++) ;
3933       res = 0;
3934       while (!(f & 2) && j++ < w) res += (cc = f_putc(' ', fil));
3935       res += (cc = f_puts(p, fil));
3936       while (j++ < w) res += (cc = f_putc(' ', fil));
3937       if (cc != EOF) cc = res;
3938       continue;
3939     case 'C' :          /* Character */
3940       cc = f_putc((TCHAR)va_arg(arp, int), fil); continue;
3941     case 'B' :          /* Binary */
3942       r = 2; break;
3943     case 'O' :          /* Octal */
3944       r = 8; break;
3945     case 'D' :          /* Signed decimal */
3946     case 'U' :          /* Unsigned decimal */
3947       r = 10; break;
3948     case 'X' :          /* Hexdecimal */
3949       r = 16; break;
3950     default:          /* Unknown type (passthrough) */
3951       cc = f_putc(c, fil); continue;
3952     }
3953 
3954     /* Get an argument and put it in numeral */
3955     v = (f & 4) ? va_arg(arp, long) : ((d == 'D') ? (long)va_arg(arp, int) : va_arg(arp, unsigned int));
3956     if (d == 'D' && (v & 0x80000000)) {
3957       v = 0 - v;
3958       f |= 8;
3959     }
3960     i = 0;
3961     do {
3962       d = (TCHAR)(v % r); v /= r;
3963       if (d > 9) d += (c == 'x') ? 0x27 : 0x07;
3964       s[i++] = d + '0';
3965     } while (v && i < sizeof(s) / sizeof(s[0]));
3966     if (f & 8) s[i++] = '-';
3967     j = i; d = (f & 1) ? '0' : ' ';
3968     res = 0;
3969     while (!(f & 2) && j++ < w) res += (cc = f_putc(d, fil));
3970     do res += (cc = f_putc(s[--i], fil)); while(i);
3971     while (j++ < w) res += (cc = f_putc(' ', fil));
3972     if (cc != EOF) cc = res;
3973   }
3974 
3975   va_end(arp);
3976   return (cc == EOF) ? cc : res;
3977 }
3978 
3979 #endif /* !_FS_READONLY */
3980 #endif /* _USE_STRFUNC */
3981