2 * cifs_unicode: Unicode kernel case support
5 * Convert a unicode character to upper or lower case using
8 * Copyright (c) International Business Machines Corp., 2000,2009
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation; either version 2 of the License, or
13 * (at your option) any later version.
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See
18 * the GNU General Public License for more details.
20 * You should have received a copy of the GNU General Public License
21 * along with this program; if not, write to the Free Software
22 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
26 * These APIs are based on the C library functions. The semantics
27 * should match the C functions but with expanded size operands.
29 * The upper/lower functions are based on a table created by mkupr.
30 * This is a compressed table of upper and lower case conversion.
33 #ifndef _CIFS_UNICODE_H
34 #define _CIFS_UNICODE_H
36 #include <asm/byteorder.h>
37 #include <linux/types.h>
38 #include <linux/nls.h>
40 #define UNIUPR_NOLOWER /* Example to not expand lower case tables */
43 * Windows maps these to the user defined 16 bit Unicode range since they are
44 * reserved symbols (along with \ and /), otherwise illegal to store
45 * in filenames in NTFS
47 #define UNI_ASTERISK (__u16) ('*' + 0xF000)
48 #define UNI_QUESTION (__u16) ('?' + 0xF000)
49 #define UNI_COLON (__u16) (':' + 0xF000)
50 #define UNI_GRTRTHAN (__u16) ('>' + 0xF000)
51 #define UNI_LESSTHAN (__u16) ('<' + 0xF000)
52 #define UNI_PIPE (__u16) ('|' + 0xF000)
53 #define UNI_SLASH (__u16) ('\\' + 0xF000)
56 * Macs use an older "SFM" mapping of the symbols above. Fortunately it does
57 * not conflict (although almost does) with the mapping above.
60 #define SFM_DOUBLEQUOTE ((__u16) 0xF020)
61 #define SFM_ASTERISK ((__u16) 0xF021)
62 #define SFM_QUESTION ((__u16) 0xF025)
63 #define SFM_COLON ((__u16) 0xF022)
64 #define SFM_GRTRTHAN ((__u16) 0xF024)
65 #define SFM_LESSTHAN ((__u16) 0xF023)
66 #define SFM_PIPE ((__u16) 0xF027)
67 #define SFM_SLASH ((__u16) 0xF026)
68 #define SFM_SPACE ((__u16) 0xF028)
69 #define SFM_PERIOD ((__u16) 0xF029)
72 * Mapping mechanism to use when one of the seven reserved characters is
73 * encountered. We can only map using one of the mechanisms at a time
74 * since otherwise readdir could return directory entries which we would
77 * NO_MAP_UNI_RSVD = do not perform any remapping of the character
78 * SFM_MAP_UNI_RSVD = map reserved characters using SFM scheme (MAC compatible)
79 * SFU_MAP_UNI_RSVD = map reserved characters ala SFU ("mapchars" option)
82 #define NO_MAP_UNI_RSVD 0
83 #define SFM_MAP_UNI_RSVD 1
84 #define SFU_MAP_UNI_RSVD 2
86 /* Just define what we want from uniupr.h. We don't want to define the tables
87 * in each source file.
89 #ifndef UNICASERANGE_DEFINED
95 #endif /* UNICASERANGE_DEFINED */
97 #ifndef UNIUPR_NOUPPER
98 extern signed char CifsUniUpperTable
[512];
99 extern const struct UniCaseRange CifsUniUpperRange
[];
100 #endif /* UNIUPR_NOUPPER */
102 #ifndef UNIUPR_NOLOWER
103 extern signed char CifsUniLowerTable
[512];
104 extern const struct UniCaseRange CifsUniLowerRange
[];
105 #endif /* UNIUPR_NOLOWER */
108 int cifs_from_utf16(char *to
, const __le16
*from
, int tolen
, int fromlen
,
109 const struct nls_table
*cp
, int map_type
);
110 int cifs_utf16_bytes(const __le16
*from
, int maxbytes
,
111 const struct nls_table
*codepage
);
112 int cifs_strtoUTF16(__le16
*, const char *, int, const struct nls_table
*);
113 char *cifs_strndup_from_utf16(const char *src
, const int maxlen
,
114 const bool is_unicode
,
115 const struct nls_table
*codepage
);
116 extern int cifsConvertToUTF16(__le16
*target
, const char *source
, int maxlen
,
117 const struct nls_table
*cp
, int mapChars
);
118 extern int cifs_remap(struct cifs_sb_info
*cifs_sb
);
119 extern __le16
*cifs_strndup_to_utf16(const char *src
, const int maxlen
,
120 int *utf16_len
, const struct nls_table
*cp
,
124 wchar_t cifs_toupper(wchar_t in
);
127 * UniStrcat: Concatenate the second string to the first
130 * Address of the first string
132 static inline __le16
*
133 UniStrcat(__le16
*ucs1
, const __le16
*ucs2
)
135 __le16
*anchor
= ucs1
; /* save a pointer to start of ucs1 */
137 while (*ucs1
++) ; /* To end of first string */
138 ucs1
--; /* Return to the null */
139 while ((*ucs1
++ = *ucs2
++)) ; /* copy string 2 over */
144 * UniStrchr: Find a character in a string
147 * Address of first occurrence of character in string
148 * or NULL if the character is not in the string
150 static inline wchar_t *
151 UniStrchr(const wchar_t *ucs
, wchar_t uc
)
153 while ((*ucs
!= uc
) && *ucs
)
157 return (wchar_t *) ucs
;
162 * UniStrcmp: Compare two strings
165 * < 0: First string is less than second
166 * = 0: Strings are equal
167 * > 0: First string is greater than second
170 UniStrcmp(const wchar_t *ucs1
, const wchar_t *ucs2
)
172 while ((*ucs1
== *ucs2
) && *ucs1
) {
176 return (int) *ucs1
- (int) *ucs2
;
180 * UniStrcpy: Copy a string
182 static inline wchar_t *
183 UniStrcpy(wchar_t *ucs1
, const wchar_t *ucs2
)
185 wchar_t *anchor
= ucs1
; /* save the start of result string */
187 while ((*ucs1
++ = *ucs2
++)) ;
192 * UniStrlen: Return the length of a string (in 16 bit Unicode chars not bytes)
195 UniStrlen(const wchar_t *ucs1
)
205 * UniStrnlen: Return the length (in 16 bit Unicode chars not bytes) of a
206 * string (length limited)
209 UniStrnlen(const wchar_t *ucs1
, int maxlen
)
222 * UniStrncat: Concatenate length limited string
224 static inline wchar_t *
225 UniStrncat(wchar_t *ucs1
, const wchar_t *ucs2
, size_t n
)
227 wchar_t *anchor
= ucs1
; /* save pointer to string 1 */
230 ucs1
--; /* point to null terminator of s1 */
231 while (n
-- && (*ucs1
= *ucs2
)) { /* copy s2 after s1 */
235 *ucs1
= 0; /* Null terminate the result */
240 * UniStrncmp: Compare length limited string
243 UniStrncmp(const wchar_t *ucs1
, const wchar_t *ucs2
, size_t n
)
246 return 0; /* Null strings are equal */
247 while ((*ucs1
== *ucs2
) && *ucs1
&& --n
) {
251 return (int) *ucs1
- (int) *ucs2
;
255 * UniStrncmp_le: Compare length limited string - native to little-endian
258 UniStrncmp_le(const wchar_t *ucs1
, const wchar_t *ucs2
, size_t n
)
261 return 0; /* Null strings are equal */
262 while ((*ucs1
== __le16_to_cpu(*ucs2
)) && *ucs1
&& --n
) {
266 return (int) *ucs1
- (int) __le16_to_cpu(*ucs2
);
270 * UniStrncpy: Copy length limited string with pad
272 static inline wchar_t *
273 UniStrncpy(wchar_t *ucs1
, const wchar_t *ucs2
, size_t n
)
275 wchar_t *anchor
= ucs1
;
277 while (n
-- && *ucs2
) /* Copy the strings */
281 while (n
--) /* Pad with nulls */
287 * UniStrncpy_le: Copy length limited string with pad to little-endian
289 static inline wchar_t *
290 UniStrncpy_le(wchar_t *ucs1
, const wchar_t *ucs2
, size_t n
)
292 wchar_t *anchor
= ucs1
;
294 while (n
-- && *ucs2
) /* Copy the strings */
295 *ucs1
++ = __le16_to_cpu(*ucs2
++);
298 while (n
--) /* Pad with nulls */
304 * UniStrstr: Find a string in a string
307 * Address of first match found
308 * NULL if no matching string is found
310 static inline wchar_t *
311 UniStrstr(const wchar_t *ucs1
, const wchar_t *ucs2
)
313 const wchar_t *anchor1
= ucs1
;
314 const wchar_t *anchor2
= ucs2
;
317 if (*ucs1
== *ucs2
) {
318 /* Partial match found */
322 if (!*ucs2
) /* Match found */
323 return (wchar_t *) anchor1
;
324 ucs1
= ++anchor1
; /* No match */
329 if (!*ucs2
) /* Both end together */
330 return (wchar_t *) anchor1
; /* Match found */
331 return NULL
; /* No match */
334 #ifndef UNIUPR_NOUPPER
336 * UniToupper: Convert a unicode character to upper case
338 static inline wchar_t
339 UniToupper(register wchar_t uc
)
341 register const struct UniCaseRange
*rp
;
343 if (uc
< sizeof(CifsUniUpperTable
)) {
344 /* Latin characters */
345 return uc
+ CifsUniUpperTable
[uc
]; /* Use base tables */
347 rp
= CifsUniUpperRange
; /* Use range tables */
349 if (uc
< rp
->start
) /* Before start of range */
350 return uc
; /* Uppercase = input */
351 if (uc
<= rp
->end
) /* In range */
352 return uc
+ rp
->table
[uc
- rp
->start
];
353 rp
++; /* Try next range */
356 return uc
; /* Past last range */
360 * UniStrupr: Upper case a unicode string
362 static inline __le16
*
363 UniStrupr(register __le16
*upin
)
368 while (*up
) { /* For all characters */
369 *up
= cpu_to_le16(UniToupper(le16_to_cpu(*up
)));
372 return upin
; /* Return input pointer */
374 #endif /* UNIUPR_NOUPPER */
376 #ifndef UNIUPR_NOLOWER
378 * UniTolower: Convert a unicode character to lower case
380 static inline wchar_t
381 UniTolower(register wchar_t uc
)
383 register const struct UniCaseRange
*rp
;
385 if (uc
< sizeof(CifsUniLowerTable
)) {
386 /* Latin characters */
387 return uc
+ CifsUniLowerTable
[uc
]; /* Use base tables */
389 rp
= CifsUniLowerRange
; /* Use range tables */
391 if (uc
< rp
->start
) /* Before start of range */
392 return uc
; /* Uppercase = input */
393 if (uc
<= rp
->end
) /* In range */
394 return uc
+ rp
->table
[uc
- rp
->start
];
395 rp
++; /* Try next range */
398 return uc
; /* Past last range */
402 * UniStrlwr: Lower case a unicode string
404 static inline wchar_t *
405 UniStrlwr(register wchar_t *upin
)
407 register wchar_t *up
;
410 while (*up
) { /* For all characters */
411 *up
= UniTolower(*up
);
414 return upin
; /* Return input pointer */
419 #endif /* _CIFS_UNICODE_H */