source: trunk/src/kernel32/ole2nls.c@ 22015

Last change on this file since 22015 was 21916, checked in by dmik, 14 years ago

Merge branch gcc-kmk to trunk.

File size: 120.3 KB
Line 
1/* $Id: ole2nls.c,v 1.6 2003-04-02 12:58:30 sandervl Exp $
2 *
3 * National Language Support library
4 *
5 * Copyright 1995 Martin von Loewis
6 * Copyright 1998 David Lee Lambert
7 * Copyright 2000 Julio César Gázquez
8 */
9
10#ifdef __WIN32OS2__
11#include <odin.h>
12#include <odinwrap.h>
13
14#include <string.h>
15#include <stdio.h>
16#include <heapstring.h>
17#include <ctype.h>
18#ifndef __GNUC__
19#include <wcstr.h>
20#endif
21#endif
22
23#include <string.h>
24#include <stdio.h>
25#include <ctype.h>
26#include <stdlib.h>
27#include <locale.h>
28
29#include "windef.h"
30#include "winbase.h"
31#include "wingdi.h"
32#include "winuser.h"
33#include "wine/unicode.h"
34#include "heap.h"
35#include "options.h"
36#include "winver.h"
37#include "winnls.h"
38#include "winreg.h"
39#include "winerror.h"
40#include "debugtools.h"
41
42#ifdef __WIN32OS2__
43#include <wctype.h>
44#include <unicode.h>
45
46#define DBG_LOCALLOG DBG_kernel32
47#include "dbglocal.h"
48
49ODINDEBUGCHANNEL(KERNEL32-OLE2NLS)
50#endif
51
52DEFAULT_DEBUG_CHANNEL(string);
53
54/* Locale name to id map. used by EnumSystemLocales, GetLocaleInfoA
55 * MUST contain all #defines from winnls.h
56 * last entry has NULL name, 0 id.
57 */
58#define LOCALE_ENTRY(x) {#x,LOCALE_##x}
59static const struct tagLOCALE_NAME2ID {
60 const char *name;
61 LCTYPE id;
62} locale_name2id[]= {
63 LOCALE_ENTRY(ILANGUAGE),
64 LOCALE_ENTRY(SLANGUAGE),
65 LOCALE_ENTRY(SENGLANGUAGE),
66 LOCALE_ENTRY(SABBREVLANGNAME),
67 LOCALE_ENTRY(SNATIVELANGNAME),
68 LOCALE_ENTRY(ICOUNTRY),
69 LOCALE_ENTRY(SCOUNTRY),
70 LOCALE_ENTRY(SENGCOUNTRY),
71 LOCALE_ENTRY(SABBREVCTRYNAME),
72 LOCALE_ENTRY(SNATIVECTRYNAME),
73 LOCALE_ENTRY(IDEFAULTLANGUAGE),
74 LOCALE_ENTRY(IDEFAULTCOUNTRY),
75 LOCALE_ENTRY(IDEFAULTCODEPAGE),
76 LOCALE_ENTRY(IDEFAULTANSICODEPAGE),
77 LOCALE_ENTRY(IDEFAULTMACCODEPAGE),
78 LOCALE_ENTRY(SLIST),
79 LOCALE_ENTRY(IMEASURE),
80 LOCALE_ENTRY(SDECIMAL),
81 LOCALE_ENTRY(STHOUSAND),
82 LOCALE_ENTRY(SGROUPING),
83 LOCALE_ENTRY(IDIGITS),
84 LOCALE_ENTRY(ILZERO),
85 LOCALE_ENTRY(INEGNUMBER),
86 LOCALE_ENTRY(SNATIVEDIGITS),
87 LOCALE_ENTRY(SCURRENCY),
88 LOCALE_ENTRY(SINTLSYMBOL),
89 LOCALE_ENTRY(SMONDECIMALSEP),
90 LOCALE_ENTRY(SMONTHOUSANDSEP),
91 LOCALE_ENTRY(SMONGROUPING),
92 LOCALE_ENTRY(ICURRDIGITS),
93 LOCALE_ENTRY(IINTLCURRDIGITS),
94 LOCALE_ENTRY(ICURRENCY),
95 LOCALE_ENTRY(INEGCURR),
96 LOCALE_ENTRY(SDATE),
97 LOCALE_ENTRY(STIME),
98 LOCALE_ENTRY(SSHORTDATE),
99 LOCALE_ENTRY(SLONGDATE),
100 LOCALE_ENTRY(STIMEFORMAT),
101 LOCALE_ENTRY(IDATE),
102 LOCALE_ENTRY(ILDATE),
103 LOCALE_ENTRY(ITIME),
104 LOCALE_ENTRY(ITIMEMARKPOSN),
105 LOCALE_ENTRY(ICENTURY),
106 LOCALE_ENTRY(ITLZERO),
107 LOCALE_ENTRY(IDAYLZERO),
108 LOCALE_ENTRY(IMONLZERO),
109 LOCALE_ENTRY(S1159),
110 LOCALE_ENTRY(S2359),
111 LOCALE_ENTRY(ICALENDARTYPE),
112 LOCALE_ENTRY(IOPTIONALCALENDAR),
113 LOCALE_ENTRY(IFIRSTDAYOFWEEK),
114 LOCALE_ENTRY(IFIRSTWEEKOFYEAR),
115 LOCALE_ENTRY(SDAYNAME1),
116 LOCALE_ENTRY(SDAYNAME2),
117 LOCALE_ENTRY(SDAYNAME3),
118 LOCALE_ENTRY(SDAYNAME4),
119 LOCALE_ENTRY(SDAYNAME5),
120 LOCALE_ENTRY(SDAYNAME6),
121 LOCALE_ENTRY(SDAYNAME7),
122 LOCALE_ENTRY(SABBREVDAYNAME1),
123 LOCALE_ENTRY(SABBREVDAYNAME2),
124 LOCALE_ENTRY(SABBREVDAYNAME3),
125 LOCALE_ENTRY(SABBREVDAYNAME4),
126 LOCALE_ENTRY(SABBREVDAYNAME5),
127 LOCALE_ENTRY(SABBREVDAYNAME6),
128 LOCALE_ENTRY(SABBREVDAYNAME7),
129 LOCALE_ENTRY(SMONTHNAME1),
130 LOCALE_ENTRY(SMONTHNAME2),
131 LOCALE_ENTRY(SMONTHNAME3),
132 LOCALE_ENTRY(SMONTHNAME4),
133 LOCALE_ENTRY(SMONTHNAME5),
134 LOCALE_ENTRY(SMONTHNAME6),
135 LOCALE_ENTRY(SMONTHNAME7),
136 LOCALE_ENTRY(SMONTHNAME8),
137 LOCALE_ENTRY(SMONTHNAME9),
138 LOCALE_ENTRY(SMONTHNAME10),
139 LOCALE_ENTRY(SMONTHNAME11),
140 LOCALE_ENTRY(SMONTHNAME12),
141 LOCALE_ENTRY(SMONTHNAME13),
142 LOCALE_ENTRY(SABBREVMONTHNAME1),
143 LOCALE_ENTRY(SABBREVMONTHNAME2),
144 LOCALE_ENTRY(SABBREVMONTHNAME3),
145 LOCALE_ENTRY(SABBREVMONTHNAME4),
146 LOCALE_ENTRY(SABBREVMONTHNAME5),
147 LOCALE_ENTRY(SABBREVMONTHNAME6),
148 LOCALE_ENTRY(SABBREVMONTHNAME7),
149 LOCALE_ENTRY(SABBREVMONTHNAME8),
150 LOCALE_ENTRY(SABBREVMONTHNAME9),
151 LOCALE_ENTRY(SABBREVMONTHNAME10),
152 LOCALE_ENTRY(SABBREVMONTHNAME11),
153 LOCALE_ENTRY(SABBREVMONTHNAME12),
154 LOCALE_ENTRY(SABBREVMONTHNAME13),
155 LOCALE_ENTRY(SPOSITIVESIGN),
156 LOCALE_ENTRY(SNEGATIVESIGN),
157 LOCALE_ENTRY(IPOSSIGNPOSN),
158 LOCALE_ENTRY(INEGSIGNPOSN),
159 LOCALE_ENTRY(IPOSSYMPRECEDES),
160 LOCALE_ENTRY(IPOSSEPBYSPACE),
161 LOCALE_ENTRY(INEGSYMPRECEDES),
162 LOCALE_ENTRY(INEGSEPBYSPACE),
163 LOCALE_ENTRY(FONTSIGNATURE),
164 LOCALE_ENTRY(SISO639LANGNAME),
165 LOCALE_ENTRY(SISO3166CTRYNAME),
166 {NULL,0}
167};
168
169static char *GetLocaleSubkeyName( DWORD lctype );
170
171#ifndef __WIN32OS2__
172/***********************************************************************
173 * GetUserDefaultLCID (KERNEL32.@)
174 * GetUserDefaultLCID (OLE2NLS.1)
175 */
176LCID WINAPI GetUserDefaultLCID(void)
177{
178 return MAKELCID( GetUserDefaultLangID() , SORT_DEFAULT );
179}
180
181/***********************************************************************
182 * GetSystemDefaultLCID (KERNEL32.@)
183 * GetSystemDefaultLCID (OLE2NLS.2)
184 */
185LCID WINAPI GetSystemDefaultLCID(void)
186{
187 return GetUserDefaultLCID();
188}
189#endif //__WIN32OS2__
190
191#define NLS_MAX_LANGUAGES 20
192typedef struct {
193 char lang[128];
194 char country[128];
195 LANGID found_lang_id[NLS_MAX_LANGUAGES];
196 char found_language[NLS_MAX_LANGUAGES][3];
197 char found_country[NLS_MAX_LANGUAGES][3];
198 int n_found;
199} LANG_FIND_DATA;
200
201static BOOL CALLBACK NLS_FindLanguageID_ProcA(HMODULE hModule, LPCSTR type,
202 LPCSTR name, WORD LangID, LONG lParam)
203{
204 LANG_FIND_DATA *l_data = (LANG_FIND_DATA *)lParam;
205 LCID lcid = MAKELCID(LangID, SORT_DEFAULT);
206 char buf_language[128];
207 char buf_country[128];
208 char buf_en_language[128];
209
210 TRACE("%04X\n", (UINT)LangID);
211 if(PRIMARYLANGID(LangID) == LANG_NEUTRAL)
212 return TRUE; /* continue search */
213
214 buf_language[0] = 0;
215 buf_country[0] = 0;
216
217 GetLocaleInfoA(lcid, LOCALE_SISO639LANGNAME|LOCALE_NOUSEROVERRIDE,
218 buf_language, sizeof(buf_language));
219 TRACE("LOCALE_SISO639LANGNAME: %s\n", buf_language);
220
221 GetLocaleInfoA(lcid, LOCALE_SISO3166CTRYNAME|LOCALE_NOUSEROVERRIDE,
222 buf_country, sizeof(buf_country));
223 TRACE("LOCALE_SISO3166CTRYNAME: %s\n", buf_country);
224
225 if(l_data->lang && strlen(l_data->lang) > 0 && !strcasecmp(l_data->lang, buf_language))
226 {
227 if(l_data->country && strlen(l_data->country) > 0)
228 {
229 if(!strcasecmp(l_data->country, buf_country))
230 {
231 l_data->found_lang_id[0] = LangID;
232 l_data->n_found = 1;
233 TRACE("Found lang_id %04X for %s_%s\n", LangID, l_data->lang, l_data->country);
234 return FALSE; /* stop enumeration */
235 }
236 }
237 else /* l_data->country not specified */
238 {
239 if(l_data->n_found < NLS_MAX_LANGUAGES)
240 {
241 l_data->found_lang_id[l_data->n_found] = LangID;
242 strncpy(l_data->found_country[l_data->n_found], buf_country, 3);
243 strncpy(l_data->found_language[l_data->n_found], buf_language, 3);
244 l_data->n_found++;
245 TRACE("Found lang_id %04X for %s\n", LangID, l_data->lang);
246 return TRUE; /* continue search */
247 }
248 }
249 }
250
251 /* Just in case, check LOCALE_SENGLANGUAGE too,
252 * in hope that possible alias name might have that value.
253 */
254 buf_en_language[0] = 0;
255 GetLocaleInfoA(lcid, LOCALE_SENGLANGUAGE|LOCALE_NOUSEROVERRIDE,
256 buf_en_language, sizeof(buf_en_language));
257 TRACE("LOCALE_SENGLANGUAGE: %s\n", buf_en_language);
258
259 if(l_data->lang && strlen(l_data->lang) > 0 && !strcasecmp(l_data->lang, buf_en_language))
260 {
261 l_data->found_lang_id[l_data->n_found] = LangID;
262 strncpy(l_data->found_country[l_data->n_found], buf_country, 3);
263 strncpy(l_data->found_language[l_data->n_found], buf_language, 3);
264 l_data->n_found++;
265 TRACE("Found lang_id %04X for %s\n", LangID, l_data->lang);
266 }
267
268 return TRUE; /* continue search */
269}
270
271/***********************************************************************
272 * NLS_GetLanguageID
273 *
274 * INPUT:
275 * Lang: a string whose two first chars are the iso name of a language.
276 * Country: a string whose two first chars are the iso name of country
277 * Charset: a string defining the chossen charset encoding
278 * Dialect: a string defining a variation of the locale
279 *
280 * all those values are from the standardized format of locale
281 * name in unix which is: Lang[_Country][.Charset][@Dialect]
282 *
283 * RETURNS:
284 * the numeric code of the language used by Windows
285 *
286 * FIXME: Charset and Dialect are not handled
287 */
288static LANGID NLS_GetLanguageID(LPCSTR Lang, LPCSTR Country, LPCSTR Charset, LPCSTR Dialect)
289{
290 LANG_FIND_DATA l_data;
291 char lang_string[256];
292
293 if(!Lang)
294 {
295 l_data.found_lang_id[0] = MAKELANGID(LANG_ENGLISH, SUBLANG_DEFAULT);
296 goto END;
297 }
298
299 memset(&l_data, 0, sizeof(LANG_FIND_DATA));
300 strncpy(l_data.lang, Lang, sizeof(l_data.lang));
301
302 if(Country && strlen(Country) > 0)
303 strncpy(l_data.country, Country, sizeof(l_data.country));
304
305 EnumResourceLanguagesA(GetModuleHandleA("KERNEL32"), RT_STRINGA,
306 (LPCSTR)LOCALE_ILANGUAGE, NLS_FindLanguageID_ProcA, (LONG)&l_data);
307
308 strcpy(lang_string, l_data.lang);
309 if(l_data.country && strlen(l_data.country) > 0)
310 {
311 strcat(lang_string, "_");
312 strcat(lang_string, l_data.country);
313 }
314
315 if(!l_data.n_found)
316 {
317 if(l_data.country && strlen(l_data.country) > 0)
318 {
319 MESSAGE("Warning: Language '%s' was not found, retrying without country name...\n", lang_string);
320 l_data.country[0] = 0;
321 EnumResourceLanguagesA(GetModuleHandleA("KERNEL32"), RT_STRINGA,
322 (LPCSTR)LOCALE_ILANGUAGE, NLS_FindLanguageID_ProcA, (LONG)&l_data);
323 }
324 }
325
326 /* Re-evaluate lang_string */
327 strcpy(lang_string, l_data.lang);
328 if(l_data.country && strlen(l_data.country) > 0)
329 {
330 strcat(lang_string, "_");
331 strcat(lang_string, l_data.country);
332 }
333
334 if(!l_data.n_found)
335 {
336 MESSAGE("Warning: Language '%s' was not recognized, defaulting to English\n", lang_string);
337 l_data.found_lang_id[0] = MAKELANGID(LANG_ENGLISH, SUBLANG_DEFAULT);
338 }
339 else
340 {
341 if(l_data.n_found == 1)
342 TRACE("For language '%s' lang_id %04X was found\n", lang_string, l_data.found_lang_id[0]);
343 else /* l_data->n_found > 1 */
344 {
345 int i;
346 MESSAGE("For language '%s' several language ids were found:\n", lang_string);
347 for(i = 0; i < l_data.n_found; i++)
348 MESSAGE("%s_%s - %04X; ", l_data.found_language[i], l_data.found_country[i], l_data.found_lang_id[i]);
349
350 MESSAGE("\nInstead of using first in the list, suggest to define\n"
351 "your LANG environment variable like this: LANG=%s_%s\n",
352 l_data.found_language[0], l_data.found_country[0]);
353 }
354 }
355END:
356 TRACE("Returning %04X\n", l_data.found_lang_id[0]);
357 return l_data.found_lang_id[0];
358}
359#ifndef __WIN32OS2__
360/***********************************************************************
361 * GetUserDefaultLangID (KERNEL32.@)
362 * GetUserDefaultLangID (OLE2NLS.3)
363 */
364LANGID WINAPI GetUserDefaultLangID(void)
365{
366 /* caching result, if defined from environment, which should (?) not change during a WINE session */
367 static LANGID userLCID = 0;
368
369 if (userLCID == 0)
370 {
371 char buf[256];
372 char *lang,*country,*charset,*dialect,*next;
373
374 if (GetEnvironmentVariableA( "LANGUAGE", buf, sizeof(buf) )) goto ok;
375 if (GetEnvironmentVariableA( "LANG", buf, sizeof(buf) )) goto ok;
376 if (GetEnvironmentVariableA( "LC_ALL", buf, sizeof(buf) )) goto ok;
377 if (GetEnvironmentVariableA( "LC_MESSAGES", buf, sizeof(buf) )) goto ok;
378 if (GetEnvironmentVariableA( "LC_CTYPE", buf, sizeof(buf) )) goto ok;
379
380 return userLCID = MAKELANGID( LANG_ENGLISH, SUBLANG_DEFAULT );
381
382 ok:
383 if (!strcmp(buf,"POSIX") || !strcmp(buf,"C"))
384 return userLCID = MAKELANGID( LANG_ENGLISH, SUBLANG_DEFAULT );
385
386 lang=buf;
387
388 do {
389 next=strchr(lang,':'); if (next) *next++='\0';
390 dialect=strchr(lang,'@'); if (dialect) *dialect++='\0';
391 charset=strchr(lang,'.'); if (charset) *charset++='\0';
392 country=strchr(lang,'_'); if (country) *country++='\0';
393
394 userLCID = NLS_GetLanguageID(lang, country, charset, dialect);
395
396 lang=next;
397 } while (lang && !userLCID);
398
399 if (!userLCID)
400 {
401 MESSAGE( "Warning: language '%s' not recognized, defaulting to English\n",
402 buf );
403 userLCID = MAKELANGID( LANG_ENGLISH, SUBLANG_DEFAULT );
404 }
405 }
406 return userLCID;
407}
408
409/***********************************************************************
410 * GetSystemDefaultLangID (KERNEL32.@)
411 * GetSystemDefaultLangID (OLE2NLS.4)
412 */
413LANGID WINAPI GetSystemDefaultLangID(void)
414{
415 return GetUserDefaultLangID();
416}
417#endif //__WIN32OS2__
418/******************************************************************************
419 * ConvertDefaultLocale (KERNEL32.@)
420 */
421LCID WINAPI ConvertDefaultLocale (LCID lcid)
422{ switch (lcid)
423 { case LOCALE_SYSTEM_DEFAULT:
424 return GetSystemDefaultLCID();
425 case LOCALE_USER_DEFAULT:
426 return GetUserDefaultLCID();
427 case LOCALE_NEUTRAL:
428 return MAKELCID (LANG_NEUTRAL, SUBLANG_NEUTRAL);
429 }
430 return MAKELANGID( PRIMARYLANGID(lcid), SUBLANG_NEUTRAL);
431}
432
433/* Enhanced version of LoadStringW.
434 * It takes LanguageId to find and load language dependant resources.
435 * Resource is copied as is: "binary" strings are not truncated.
436 * Return: length of resource + 1 to distinguish absent resources
437 * from the resources with zero length.
438 */
439static INT NLS_LoadStringExW(HMODULE hModule, LANGID lang_id, UINT res_id, LPWSTR buffer, INT buflen)
440{
441 HRSRC hrsrc;
442 HGLOBAL hmem;
443 WCHAR *p;
444 int string_num;
445 int i;
446
447 /* Replace SUBLANG_NEUTRAL by SUBLANG_DEFAULT */
448 if(SUBLANGID(lang_id) == SUBLANG_NEUTRAL)
449 lang_id = MAKELANGID(PRIMARYLANGID(lang_id), SUBLANG_DEFAULT);
450
451 hrsrc = FindResourceExW(hModule, RT_STRINGW, (LPCWSTR)((res_id >> 4) + 1), lang_id);
452
453 if(!hrsrc) return 0;
454 hmem = LoadResource(hModule, hrsrc);
455 if(!hmem) return 0;
456
457 p = LockResource(hmem);
458 string_num = res_id & 0x000f;
459 for(i = 0; i < string_num; i++)
460 p += *p + 1;
461
462 TRACE("strlen = %d\n", (int)*p );
463
464 if (buffer == NULL) return *p;
465 i = min(buflen - 1, *p);
466 if (i > 0) {
467 memcpy(buffer, p + 1, i * sizeof (WCHAR));
468 buffer[i] = (WCHAR) 0;
469 } else {
470 if (buflen > 1)
471 buffer[0] = (WCHAR) 0;
472 }
473
474 FreeResource(hmem);
475 TRACE("%s loaded!\n", debugstr_w(buffer));
476 return (i + 1);
477}
478
479/******************************************************************************
480 * GetLocaleInfoA (KERNEL32.@)
481 *
482 * NOTES
483 * LANG_NEUTRAL is equal to LOCALE_SYSTEM_DEFAULT
484 *
485 * MS online documentation states that the string returned is NULL terminated
486 * except for LOCALE_FONTSIGNATURE which "will return a non-NULL
487 * terminated string".
488 */
489INT WINAPI GetLocaleInfoA(LCID lcid,LCTYPE LCType,LPSTR buf,INT len)
490{
491 LPCSTR retString = NULL;
492 int found = 0, i;
493 char *pacKey;
494 char acBuffer[128];
495 DWORD dwBufferSize=128;
496 BOOL NoUserOverride;
497
498 TRACE("(lcid=0x%lx,lctype=0x%lx,%p,%x)\n",lcid,LCType,buf,len);
499
500 if (len && (! buf) ) {
501 SetLastError(ERROR_INSUFFICIENT_BUFFER);
502 return 0;
503 }
504
505 if (lcid == LOCALE_NEUTRAL || lcid == LANG_SYSTEM_DEFAULT)
506 {
507 lcid = GetSystemDefaultLCID();
508 }
509 else if (lcid == LANG_USER_DEFAULT) /*0x800*/
510 {
511 lcid = GetUserDefaultLCID();
512 }
513
514 /* LOCALE_NOUSEROVERRIDE means: do not get user redefined settings
515 from the registry. Instead, use system default values. */
516 NoUserOverride = (LCType & LOCALE_NOUSEROVERRIDE) != 0;
517
518 LCType &= ~(LOCALE_NOUSEROVERRIDE|LOCALE_USE_CP_ACP);
519
520 /* First, check if it's in the registry. */
521 /* All user customized values are stored in the registry by SetLocaleInfo */
522 if ( !NoUserOverride && (pacKey = GetLocaleSubkeyName(LCType)) )
523 {
524 char acRealKey[128];
525 HKEY hKey;
526
527 sprintf( acRealKey, "Control Panel\\International\\%s", pacKey );
528
529 if ( RegOpenKeyExA( HKEY_CURRENT_USER, acRealKey,
530 0, KEY_READ, &hKey) == ERROR_SUCCESS )
531 {
532 if ( RegQueryValueExA( hKey, NULL, NULL, NULL, (LPBYTE)acBuffer,
533 &dwBufferSize ) == ERROR_SUCCESS )
534 {
535 retString = acBuffer;
536 found = 1;
537 }
538 RegCloseKey(hKey);
539 }
540 }
541
542 /* If not in the registry, get it from the NLS entries. */
543 if(!found) {
544 WCHAR wcBuffer[128];
545 int res_size;
546
547 /* check if language is registered in the kernel32 resources */
548#ifdef __WIN32OS2__
549 if((res_size = NLS_LoadStringExW(GetModuleHandleA("KERNEL32"), LANGIDFROMLCID(lcid),
550 LCType, wcBuffer, sizeof(wcBuffer)/sizeof(wcBuffer[0]))) > 1) {
551#else
552 if((res_size = NLS_LoadStringExW(GetModuleHandleA("KERNEL32"), LANGIDFROMLCID(lcid),
553 LCType, wcBuffer, sizeof(wcBuffer)/sizeof(wcBuffer[0])))) {
554#endif
555 WideCharToMultiByte(CP_ACP, 0, wcBuffer, res_size, acBuffer, dwBufferSize, NULL, NULL);
556 retString = acBuffer;
557 found = 1;
558 }
559
560#ifdef __WIN32OS2__
561 /* nls not found: try with English (United States) */
562 if(!found && (res_size = NLS_LoadStringExW(GetModuleHandleA("KERNEL32"), LANGIDFROMLCID(0x0409),
563 LCType, wcBuffer, sizeof(wcBuffer)/sizeof(wcBuffer[0])))>1) {
564 WideCharToMultiByte(CP_ACP, 0, wcBuffer, res_size, acBuffer, dwBufferSize, NULL, NULL);
565 retString = acBuffer;
566 found = 1;
567 }
568#endif
569 }
570
571 /* if not found report a most descriptive error */
572 if(!found) {
573 retString=0;
574 /* If we are through all of this, retLen should not be zero anymore.
575 If it is, the value is not supported */
576 i=0;
577 while (locale_name2id[i].name!=NULL) {
578 if (LCType == locale_name2id[i].id) {
579 retString = locale_name2id[i].name;
580 break;
581 }
582 i++;
583 }
584 if(!retString)
585 FIXME("Unkown LC type %lX\n", LCType);
586 else
587 FIXME("'%s' is not defined for your language (%04X).\n"
588 "Please define it in dlls/kernel/nls/YourLanguage.nls\n"
589 "and submit patch for inclusion into the next Wine release.\n",
590 retString, LOWORD(lcid));
591 SetLastError(ERROR_INVALID_PARAMETER);
592 return 0;
593 }
594
595 /* a FONTSIGNATURE is not a string, just 6 DWORDs */
596 if (LCType == LOCALE_FONTSIGNATURE) {
597 if (len) {
598 len = (len < sizeof(FONTSIGNATURE)) ? len : sizeof(FONTSIGNATURE);
599 memcpy(buf, retString, len);
600 return len;
601 }
602 return sizeof(FONTSIGNATURE);
603 }
604 /* if len=0 return only the length, don't touch the buffer*/
605 if (len) {
606 lstrcpynA(buf,retString,len);
607 return strlen(buf) + 1;
608 }
609 return strlen(retString)+1;
610}
611
612/******************************************************************************
613 * GetLocaleInfoW (KERNEL32.@)
614 *
615 * NOTES
616 * MS documentation states that len "specifies the size, in bytes (ANSI version)
617 * or characters (Unicode version), of" wbuf. Thus the number returned is
618 * the same between GetLocaleInfoW and GetLocaleInfoA.
619 */
620INT WINAPI GetLocaleInfoW(LCID lcid,LCTYPE LCType,LPWSTR wbuf,INT len)
621{ WORD wlen;
622 LPSTR abuf;
623
624 if (len && (! wbuf) )
625 { SetLastError(ERROR_INSUFFICIENT_BUFFER);
626 return 0;
627 }
628
629 abuf = (LPSTR)HeapAlloc(GetProcessHeap(),0,len);
630 wlen = GetLocaleInfoA(lcid, LCType, abuf, len);
631
632 if (wlen && len) /* if len=0 return only the length*/
633 MultiByteToWideChar( CP_ACP, 0, abuf, -1, wbuf, len );
634
635 HeapFree(GetProcessHeap(),0,abuf);
636 return wlen;
637}
638
639
640/******************************************************************************
641 *
642 * GetLocaleSubkeyName [helper function]
643 *
644 * - For use with the registry.
645 * - Gets the registry subkey name for a given lctype.
646 */
647static char *GetLocaleSubkeyName( DWORD lctype )
648{
649 char *pacKey=NULL;
650
651 switch ( lctype )
652 {
653 /* These values are used by SetLocaleInfo and GetLocaleInfo, and
654 * the values are stored in the registry, confirmed under Windows,
655 * for the ones that actually assign pacKey. Cases that aren't finished
656 * have not been confirmed, so that must be done before they can be
657 * added.
658 */
659 case LOCALE_SDATE : /* The date separator. */
660 pacKey = "sDate";
661 break;
662 case LOCALE_ICURRDIGITS:
663 pacKey = "iCurrDigits";
664 break;
665 case LOCALE_SDECIMAL :
666 pacKey = "sDecimal";
667 break;
668 case LOCALE_ICURRENCY:
669 pacKey = "iCurrency";
670 break;
671 case LOCALE_SGROUPING :
672 pacKey = "sGrouping";
673 break;
674 case LOCALE_IDIGITS:
675 pacKey = "iDigits";
676 break;
677 case LOCALE_SLIST :
678 pacKey = "sList";
679 break;
680 /* case LOCALE_ICALENDARTYPE: */
681 /* case LOCALE_IFIRSTDAYOFWEEK: */
682#ifdef __WIN32OS2__
683 case LOCALE_IFIRSTDAYOFWEEK:
684 pacKey = "iFirstDayOfWeek";
685 break;
686#endif
687 /* case LOCALE_IFIRSTWEEKOFYEAR: */
688 /* case LOCALE_SYEARMONTH : */
689 /* case LOCALE_SPOSITIVESIGN : */
690 /* case LOCALE_IPAPERSIZE: */
691 /* break; */
692 case LOCALE_SLONGDATE :
693 pacKey = "sLongDate";
694 break;
695 case LOCALE_SMONDECIMALSEP :
696 pacKey = "sMonDecimalSep";
697 break;
698 case LOCALE_SMONGROUPING:
699 pacKey = "sMonGrouping";
700 break;
701 case LOCALE_IMEASURE:
702 pacKey = "iMeasure";
703 break;
704 case LOCALE_SMONTHOUSANDSEP :
705 pacKey = "sMonThousandSep";
706 break;
707 case LOCALE_INEGCURR:
708 pacKey = "iNegCurr";
709 break;
710 case LOCALE_SNEGATIVESIGN :
711 pacKey = "sNegativeSign";
712 break;
713 case LOCALE_INEGNUMBER:
714 pacKey = "iNegNumber";
715 break;
716 case LOCALE_SSHORTDATE :
717 pacKey = "sShortDate";
718 break;
719 case LOCALE_ILDATE: /* Long Date format ordering specifier. */
720 pacKey = "iLDate";
721 break;
722 case LOCALE_ILZERO:
723 pacKey = "iLZero";
724 break;
725 case LOCALE_ITLZERO:
726 pacKey = "iTLZero";
727 break;
728 case LOCALE_ITIME: /* Time format specifier. */
729 pacKey = "iTime";
730 break;
731 case LOCALE_STHOUSAND :
732 pacKey = "sThousand";
733 break;
734 case LOCALE_S1159: /* AM */
735 pacKey = "s1159";
736 break;
737 case LOCALE_STIME:
738 pacKey = "sTime";
739 break;
740 case LOCALE_S2359: /* PM */
741 pacKey = "s2359";
742 break;
743 case LOCALE_STIMEFORMAT :
744 pacKey = "sTimeFormat";
745 break;
746 case LOCALE_SCURRENCY:
747 pacKey = "sCurrency";
748 break;
749
750 /* The following are not listed under MSDN as supported,
751 * but seem to be used and also stored in the registry.
752 */
753
754 case LOCALE_IDATE:
755 pacKey = "iDate";
756 break;
757 case LOCALE_SCOUNTRY:
758 pacKey = "sCountry";
759 break;
760 case LOCALE_ICOUNTRY:
761 pacKey = "iCountry";
762 break;
763 case LOCALE_SLANGUAGE:
764 pacKey = "sLanguage";
765 break;
766
767 default:
768 break;
769 }
770
771 return( pacKey );
772}
773
774/******************************************************************************
775 * SetLocaleInfoA [KERNEL32.656]
776 */
777BOOL WINAPI SetLocaleInfoA(DWORD lcid, DWORD lctype, LPCSTR data)
778{
779 HKEY hKey;
780 char *pacKey;
781 char acRealKey[128];
782
783 if ( (pacKey = GetLocaleSubkeyName(lctype)) != NULL)
784 {
785 sprintf( acRealKey, "Control Panel\\International\\%s", pacKey );
786 if ( RegCreateKeyA( HKEY_CURRENT_USER, acRealKey,
787 &hKey ) == ERROR_SUCCESS )
788 {
789 if ( RegSetValueExA( hKey, NULL, 0, REG_SZ,
790 (LPSTR)data, strlen(data)+1 ) != ERROR_SUCCESS )
791 {
792 ERR("SetLocaleInfoA: %s did not work\n", pacKey );
793 }
794 RegCloseKey( hKey );
795 }
796 }
797 else
798 {
799 FIXME("(%ld,%ld,%s): stub\n",lcid,lctype,data);
800 }
801 return TRUE;
802}
803
804#ifdef __WIN32OS2__
805/*****************************************************************************
806 * Name : BOOL SetLocaleInfoW
807 * Purpose : The SetLocaleInfoW function sets an item of locale information.
808 * It does so by making an entry in the process portion of the
809 * locale table. This setting only affects the user override portion
810 * of the locale settings; it does not set the system defaults.
811 * Only certain types of locale information, or LCTYPE values, can
812 * be set by this function. See the following Remarks section for a
813 * list of valid LCTYPE values.
814 * The locale information is always passed in as a null-terminated
815 * Unicode string in the Unicode (W) version of the function, and as
816 * a null-terminated ANSI string in the ANSI (A) version. No integers
817 * are allowed by this function; any numeric values must be specified
818 * as Unicode or ANSI text. Each LCTYPE has a particular format, as
819 * noted in Locale Identifiers.
820 * Parameters: LCID Locale locale identifier
821 * LCTYPE LCType type of information to set
822 * LPCTSTR lpLCData pointer to information to set
823 * Variables :
824 * Result : TRUE / FALSE
825 * Remark :
826 * Status : UNTESTED STUB
827 *
828 * Author : Patrick Haller [Mon, 1998/06/15 08:00]
829 *****************************************************************************/
830
831BOOL WIN32API SetLocaleInfoW(LCID Locale,
832 LCTYPE LCType,
833 LPCWSTR lpLCData)
834{
835 dprintf(("KERNEL32: SetLocaleInfoW(%08xh,%08xh,%08xh) not implemented.\n",
836 Locale,
837 LCType,
838 lpLCData));
839
840 return (FALSE);
841}
842#endif
843
844/******************************************************************************
845 * IsValidLocale [KERNEL32.489]
846 */
847BOOL WINAPI IsValidLocale(LCID lcid,DWORD flags)
848{
849 /* check if language is registered in the kernel32 resources */
850 if(!FindResourceExW(GetModuleHandleA("KERNEL32"), RT_STRINGW, (LPCWSTR)LOCALE_ILANGUAGE, LOWORD(lcid)))
851 return FALSE;
852 else
853 return TRUE;
854}
855
856static BOOL CALLBACK EnumResourceLanguagesProcW(HMODULE hModule, LPCWSTR type,
857 LPCWSTR name, WORD LangID, LONG lParam)
858{
859 CHAR bufA[20];
860 WCHAR bufW[20];
861 LOCALE_ENUMPROCW lpfnLocaleEnum = (LOCALE_ENUMPROCW)lParam;
862 sprintf(bufA, "%08X", (UINT)LangID);
863 MultiByteToWideChar(CP_ACP, 0, bufA, -1, bufW, sizeof(bufW)/sizeof(bufW[0]));
864 return lpfnLocaleEnum(bufW);
865}
866
867/******************************************************************************
868 * EnumSystemLocalesW [KERNEL32.209]
869 */
870BOOL WINAPI EnumSystemLocalesW( LOCALE_ENUMPROCW lpfnLocaleEnum,
871 DWORD flags )
872{
873 TRACE("(%p,%08lx)\n", lpfnLocaleEnum,flags);
874
875 EnumResourceLanguagesW(GetModuleHandleA("KERNEL32"), RT_STRINGW,
876 (LPCWSTR)LOCALE_ILANGUAGE, EnumResourceLanguagesProcW,
877 (LONG)lpfnLocaleEnum);
878
879 return TRUE;
880}
881
882static BOOL CALLBACK EnumResourceLanguagesProcA(HMODULE hModule, LPCSTR type,
883 LPCSTR name, WORD LangID, LONG lParam)
884{
885 CHAR bufA[20];
886 LOCALE_ENUMPROCA lpfnLocaleEnum = (LOCALE_ENUMPROCA)lParam;
887 sprintf(bufA, "%08X", (UINT)LangID);
888 return lpfnLocaleEnum(bufA);
889}
890
891/******************************************************************************
892 * EnumSystemLocalesA [KERNEL32.208]
893 */
894BOOL WINAPI EnumSystemLocalesA(LOCALE_ENUMPROCA lpfnLocaleEnum,
895 DWORD flags)
896{
897 TRACE("(%p,%08lx)\n", lpfnLocaleEnum,flags);
898
899 EnumResourceLanguagesA(GetModuleHandleA("KERNEL32"), RT_STRINGA,
900 (LPCSTR)LOCALE_ILANGUAGE, EnumResourceLanguagesProcA,
901 (LONG)lpfnLocaleEnum);
902
903 return TRUE;
904}
905
906/***********************************************************************
907 * VerLanguageNameA [KERNEL32.709][VERSION.9]
908 */
909DWORD WINAPI VerLanguageNameA( UINT wLang, LPSTR szLang, UINT nSize )
910{
911 if(!szLang)
912 return 0;
913
914 return GetLocaleInfoA(MAKELCID(wLang, SORT_DEFAULT), LOCALE_SENGLANGUAGE, szLang, nSize);
915}
916
917/***********************************************************************
918 * VerLanguageNameW [KERNEL32.710][VERSION.10]
919 */
920DWORD WINAPI VerLanguageNameW( UINT wLang, LPWSTR szLang, UINT nSize )
921{
922 if(!szLang)
923 return 0;
924
925 return GetLocaleInfoW(MAKELCID(wLang, SORT_DEFAULT), LOCALE_SENGLANGUAGE, szLang, nSize);
926}
927
928
929static const unsigned char LCM_Unicode_LUT[] = {
930 6 , 3, /* - 1 */
931 6 , 4, /* - 2 */
932 6 , 5, /* - 3 */
933 6 , 6, /* - 4 */
934 6 , 7, /* - 5 */
935 6 , 8, /* - 6 */
936 6 , 9, /* - 7 */
937 6 , 10, /* - 8 */
938 7 , 5, /* - 9 */
939 7 , 6, /* - 10 */
940 7 , 7, /* - 11 */
941 7 , 8, /* - 12 */
942 7 , 9, /* - 13 */
943 6 , 11, /* - 14 */
944 6 , 12, /* - 15 */
945 6 , 13, /* - 16 */
946 6 , 14, /* - 17 */
947 6 , 15, /* - 18 */
948 6 , 16, /* - 19 */
949 6 , 17, /* - 20 */
950 6 , 18, /* - 21 */
951 6 , 19, /* - 22 */
952 6 , 20, /* - 23 */
953 6 , 21, /* - 24 */
954 6 , 22, /* - 25 */
955 6 , 23, /* - 26 */
956 6 , 24, /* - 27 */
957 6 , 25, /* - 28 */
958 6 , 26, /* - 29 */
959 6 , 27, /* - 30 */
960 6 , 28, /* - 31 */
961 7 , 2, /* - 32 */
962 7 , 28, /* ! - 33 */
963 7 , 29, /* " - 34 */ /* " */
964 7 , 31, /* # - 35 */
965 7 , 33, /* $ - 36 */
966 7 , 35, /* % - 37 */
967 7 , 37, /* & - 38 */
968 6 , 128, /* ' - 39 */
969 7 , 39, /* ( - 40 */
970 7 , 42, /* ) - 41 */
971 7 , 45, /* * - 42 */
972 8 , 3, /* + - 43 */
973 7 , 47, /* , - 44 */
974 6 , 130, /* - - 45 */
975 7 , 51, /* . - 46 */
976 7 , 53, /* / - 47 */
977 12 , 3, /* 0 - 48 */
978 12 , 33, /* 1 - 49 */
979 12 , 51, /* 2 - 50 */
980 12 , 70, /* 3 - 51 */
981 12 , 88, /* 4 - 52 */
982 12 , 106, /* 5 - 53 */
983 12 , 125, /* 6 - 54 */
984 12 , 144, /* 7 - 55 */
985 12 , 162, /* 8 - 56 */
986 12 , 180, /* 9 - 57 */
987 7 , 55, /* : - 58 */
988 7 , 58, /* ; - 59 */
989 8 , 14, /* < - 60 */
990 8 , 18, /* = - 61 */
991 8 , 20, /* > - 62 */
992 7 , 60, /* ? - 63 */
993 7 , 62, /* @ - 64 */
994 14 , 2, /* A - 65 */
995 14 , 9, /* B - 66 */
996 14 , 10, /* C - 67 */
997 14 , 26, /* D - 68 */
998 14 , 33, /* E - 69 */
999 14 , 35, /* F - 70 */
1000 14 , 37, /* G - 71 */
1001 14 , 44, /* H - 72 */
1002 14 , 50, /* I - 73 */
1003 14 , 53, /* J - 74 */
1004 14 , 54, /* K - 75 */
1005 14 , 72, /* L - 76 */
1006 14 , 81, /* M - 77 */
1007 14 , 112, /* N - 78 */
1008 14 , 124, /* O - 79 */
1009 14 , 126, /* P - 80 */
1010 14 , 137, /* Q - 81 */
1011 14 , 138, /* R - 82 */
1012 14 , 145, /* S - 83 */
1013 14 , 153, /* T - 84 */
1014 14 , 159, /* U - 85 */
1015 14 , 162, /* V - 86 */
1016 14 , 164, /* W - 87 */
1017 14 , 166, /* X - 88 */
1018 14 , 167, /* Y - 89 */
1019 14 , 169, /* Z - 90 */
1020 7 , 63, /* [ - 91 */
1021 7 , 65, /* \ - 92 */
1022 7 , 66, /* ] - 93 */
1023 7 , 67, /* ^ - 94 */
1024 7 , 68, /* _ - 95 */
1025 7 , 72, /* ` - 96 */
1026 14 , 2, /* a - 97 */
1027 14 , 9, /* b - 98 */
1028 14 , 10, /* c - 99 */
1029 14 , 26, /* d - 100 */
1030 14 , 33, /* e - 101 */
1031 14 , 35, /* f - 102 */
1032 14 , 37, /* g - 103 */
1033 14 , 44, /* h - 104 */
1034 14 , 50, /* i - 105 */
1035 14 , 53, /* j - 106 */
1036 14 , 54, /* k - 107 */
1037 14 , 72, /* l - 108 */
1038 14 , 81, /* m - 109 */
1039 14 , 112, /* n - 110 */
1040 14 , 124, /* o - 111 */
1041 14 , 126, /* p - 112 */
1042 14 , 137, /* q - 113 */
1043 14 , 138, /* r - 114 */
1044 14 , 145, /* s - 115 */
1045 14 , 153, /* t - 116 */
1046 14 , 159, /* u - 117 */
1047 14 , 162, /* v - 118 */
1048 14 , 164, /* w - 119 */
1049 14 , 166, /* x - 120 */
1050 14 , 167, /* y - 121 */
1051 14 , 169, /* z - 122 */
1052 7 , 74, /* { - 123 */
1053 7 , 76, /* | - 124 */
1054 7 , 78, /* } - 125 */
1055 7 , 80, /* ~ - 126 */
1056 6 , 29, /*  - 127 */
1057 6 , 30, /* € - 128 */
1058 6 , 31, /*  - 129 */
1059 7 , 123, /* ‚ - 130 */
1060 14 , 35, /* ƒ - 131 */
1061 7 , 127, /* „ - 132 */
1062 10 , 21, /* …
1063 - 133 */
1064 10 , 15, /* † - 134 */
1065 10 , 16, /* ‡ - 135 */
1066 7 , 67, /* ˆ - 136 */
1067 10 , 22, /* ‰ - 137 */
1068 14 , 145, /* Š - 138 */
1069 7 , 136, /* ‹ - 139 */
1070 14 + 16 , 124, /* Œ - 140 */
1071 6 , 43, /*  - 141 */
1072 6 , 44, /* Ž - 142 */
1073 6 , 45, /*  - 143 */
1074 6 , 46, /*  - 144 */
1075 7 , 121, /* ‘ - 145 */
1076 7 , 122, /* ’ - 146 */
1077 7 , 125, /* “ - 147 */
1078 7 , 126, /* ” - 148 */
1079 10 , 17, /* • - 149 */
1080 6 , 137, /* – - 150 */
1081 6 , 139, /* — - 151 */
1082 7 , 93, /* ˜ - 152 */
1083 14 , 156, /* ™ - 153 */
1084 14 , 145, /* š - 154 */
1085 7 , 137, /* › - 155 */
1086 14 + 16 , 124, /* œ - 156 */
1087 6 , 59, /*  - 157 */
1088 6 , 60, /* ž - 158 */
1089 14 , 167, /* Ÿ - 159 */
1090 7 , 4, /*   - 160 */
1091 7 , 81, /* ¡ - 161 */
1092 10 , 2, /* ¢ - 162 */
1093 10 , 3, /* £ - 163 */
1094 10 , 4, /* € - 164 */
1095 10 , 5, /* ¥ - 165 */
1096 7 , 82, /* Š - 166 */
1097 10 , 6, /* § - 167 */
1098 7 , 83, /* š - 168 */
1099 10 , 7, /* © - 169 */
1100 14 , 2, /* ª - 170 */
1101 8 , 24, /* « - 171 */
1102 10 , 8, /* ¬ - 172 */
1103 6 , 131, /* ­ - 173 */
1104 10 , 9, /* ® - 174 */
1105 7 , 84, /* ¯ - 175 */
1106 10 , 10, /* ° - 176 */
1107 8 , 23, /* ± - 177 */
1108 12 , 51, /* ² - 178 */
1109 12 , 70, /* ³ - 179 */
1110 7 , 85, /* Ž - 180 */
1111 10 , 11, /* µ - 181 */
1112 10 , 12, /* ¶ - 182 */
1113 10 , 13, /* · - 183 */
1114 7 , 86, /* ž - 184 */
1115 12 , 33, /* ¹ - 185 */
1116 14 , 124, /* º - 186 */
1117 8 , 26, /* » - 187 */
1118 12 , 21, /* Œ - 188 */
1119 12 , 25, /* œ - 189 */
1120 12 , 29, /* Ÿ - 190 */
1121 7 , 87, /* ¿ - 191 */
1122 14 , 2, /* À - 192 */
1123 14 , 2, /* Á - 193 */
1124 14 , 2, /* Â - 194 */
1125 14 , 2, /* Ã - 195 */
1126 14 , 2, /* Ä - 196 */
1127 14 , 2, /* Å - 197 */
1128 14 + 16 , 2, /* Æ - 198 */
1129 14 , 10, /* Ç - 199 */
1130 14 , 33, /* È - 200 */
1131 14 , 33, /* É - 201 */
1132 14 , 33, /* Ê - 202 */
1133 14 , 33, /* Ë - 203 */
1134 14 , 50, /* Ì - 204 */
1135 14 , 50, /* Í - 205 */
1136 14 , 50, /* Î - 206 */
1137 14 , 50, /* Ï - 207 */
1138 14 , 26, /* Ð - 208 */
1139 14 , 112, /* Ñ - 209 */
1140 14 , 124, /* Ò - 210 */
1141 14 , 124, /* Ó - 211 */
1142 14 , 124, /* Ô - 212 */
1143 14 , 124, /* Õ - 213 */
1144 14 , 124, /* Ö - 214 */
1145 8 , 28, /* × - 215 */
1146 14 , 124, /* Ø - 216 */
1147 14 , 159, /* Ù - 217 */
1148 14 , 159, /* Ú - 218 */
1149 14 , 159, /* Û - 219 */
1150 14 , 159, /* Ü - 220 */
1151 14 , 167, /* Ý - 221 */
1152 14 + 32 , 153, /* Þ - 222 */
1153 14 + 48 , 145, /* ß - 223 */
1154 14 , 2, /* à - 224 */
1155 14 , 2, /* á - 225 */
1156 14 , 2, /* â - 226 */
1157 14 , 2, /* ã - 227 */
1158 14 , 2, /* ä - 228 */
1159 14 , 2, /* å - 229 */
1160 14 + 16 , 2, /* æ - 230 */
1161 14 , 10, /* ç - 231 */
1162 14 , 33, /* è - 232 */
1163 14 , 33, /* é - 233 */
1164 14 , 33, /* ê - 234 */
1165 14 , 33, /* ë - 235 */
1166 14 , 50, /* ì - 236 */
1167 14 , 50, /* í - 237 */
1168 14 , 50, /* î - 238 */
1169 14 , 50, /* ï - 239 */
1170 14 , 26, /* ð - 240 */
1171 14 , 112, /* ñ - 241 */
1172 14 , 124, /* ò - 242 */
1173 14 , 124, /* ó - 243 */
1174 14 , 124, /* ô - 244 */
1175 14 , 124, /* õ - 245 */
1176 14 , 124, /* ö - 246 */
1177 8 , 29, /* ÷ - 247 */
1178 14 , 124, /* ø - 248 */
1179 14 , 159, /* ù - 249 */
1180 14 , 159, /* ú - 250 */
1181 14 , 159, /* û - 251 */
1182 14 , 159, /* ü - 252 */
1183 14 , 167, /* ý - 253 */
1184 14 + 32 , 153, /* þ - 254 */
1185 14 , 167 /* ÿ - 255 */ };
1186
1187static const unsigned char LCM_Unicode_LUT_2[] = { 33, 44, 145 };
1188
1189#define LCM_Diacritic_Start 131
1190
1191static const unsigned char LCM_Diacritic_LUT[] = {
1192123, /* ƒ - 131 */
1193 2, /* „ - 132 */
1194 2, /* …
1195 - 133 */
1196 2, /* † - 134 */
1197 2, /* ‡ - 135 */
1198 3, /* ˆ - 136 */
1199 2, /* ‰ - 137 */
1200 20, /* Š - 138 */
1201 2, /* ‹ - 139 */
1202 2, /* Œ - 140 */
1203 2, /*  - 141 */
1204 2, /* Ž - 142 */
1205 2, /*  - 143 */
1206 2, /*  - 144 */
1207 2, /* ‘ - 145 */
1208 2, /* ’ - 146 */
1209 2, /* “ - 147 */
1210 2, /* ” - 148 */
1211 2, /* • - 149 */
1212 2, /* – - 150 */
1213 2, /* — - 151 */
1214 2, /* ˜ - 152 */
1215 2, /* ™ - 153 */
1216 20, /* š - 154 */
1217 2, /* › - 155 */
1218 2, /* œ - 156 */
1219 2, /*  - 157 */
1220 2, /* ž - 158 */
1221 19, /* Ÿ - 159 */
1222 2, /*   - 160 */
1223 2, /* ¡ - 161 */
1224 2, /* ¢ - 162 */
1225 2, /* £ - 163 */
1226 2, /* € - 164 */
1227 2, /* ¥ - 165 */
1228 2, /* Š - 166 */
1229 2, /* § - 167 */
1230 2, /* š - 168 */
1231 2, /* © - 169 */
1232 3, /* ª - 170 */
1233 2, /* « - 171 */
1234 2, /* ¬ - 172 */
1235 2, /* ­ - 173 */
1236 2, /* ® - 174 */
1237 2, /* ¯ - 175 */
1238 2, /* ° - 176 */
1239 2, /* ± - 177 */
1240 2, /* ² - 178 */
1241 2, /* ³ - 179 */
1242 2, /* Ž - 180 */
1243 2, /* µ - 181 */
1244 2, /* ¶ - 182 */
1245 2, /* · - 183 */
1246 2, /* ž - 184 */
1247 2, /* ¹ - 185 */
1248 3, /* º - 186 */
1249 2, /* » - 187 */
1250 2, /* Œ - 188 */
1251 2, /* œ - 189 */
1252 2, /* Ÿ - 190 */
1253 2, /* ¿ - 191 */
1254 15, /* À - 192 */
1255 14, /* Á - 193 */
1256 18, /* Â - 194 */
1257 25, /* Ã - 195 */
1258 19, /* Ä - 196 */
1259 26, /* Å - 197 */
1260 2, /* Æ - 198 */
1261 28, /* Ç - 199 */
1262 15, /* È - 200 */
1263 14, /* É - 201 */
1264 18, /* Ê - 202 */
1265 19, /* Ë - 203 */
1266 15, /* Ì - 204 */
1267 14, /* Í - 205 */
1268 18, /* Î - 206 */
1269 19, /* Ï - 207 */
1270104, /* Ð - 208 */
1271 25, /* Ñ - 209 */
1272 15, /* Ò - 210 */
1273 14, /* Ó - 211 */
1274 18, /* Ô - 212 */
1275 25, /* Õ - 213 */
1276 19, /* Ö - 214 */
1277 2, /* × - 215 */
1278 33, /* Ø - 216 */
1279 15, /* Ù - 217 */
1280 14, /* Ú - 218 */
1281 18, /* Û - 219 */
1282 19, /* Ü - 220 */
1283 14, /* Ý - 221 */
1284 2, /* Þ - 222 */
1285 2, /* ß - 223 */
1286 15, /* à - 224 */
1287 14, /* á - 225 */
1288 18, /* â - 226 */
1289 25, /* ã - 227 */
1290 19, /* ä - 228 */
1291 26, /* å - 229 */
1292 2, /* æ - 230 */
1293 28, /* ç - 231 */
1294 15, /* è - 232 */
1295 14, /* é - 233 */
1296 18, /* ê - 234 */
1297 19, /* ë - 235 */
1298 15, /* ì - 236 */
1299 14, /* í - 237 */
1300 18, /* î - 238 */
1301 19, /* ï - 239 */
1302104, /* ð - 240 */
1303 25, /* ñ - 241 */
1304 15, /* ò - 242 */
1305 14, /* ó - 243 */
1306 18, /* ô - 244 */
1307 25, /* õ - 245 */
1308 19, /* ö - 246 */
1309 2, /* ÷ - 247 */
1310 33, /* ø - 248 */
1311 15, /* ù - 249 */
1312 14, /* ú - 250 */
1313 18, /* û - 251 */
1314 19, /* ü - 252 */
1315 14, /* ý - 253 */
1316 2, /* þ - 254 */
1317 19, /* ÿ - 255 */
1318} ;
1319
1320/******************************************************************************
1321 * OLE2NLS_isPunctuation [INTERNAL]
1322 */
1323static int OLE2NLS_isPunctuation(unsigned char c)
1324{
1325 /* "punctuation character" in this context is a character which is
1326 considered "less important" during word sort comparison.
1327 See LCMapString implementation for the precise definition
1328 of "less important". */
1329
1330 return (LCM_Unicode_LUT[-2+2*c]==6);
1331}
1332
1333/******************************************************************************
1334 * OLE2NLS_isNonSpacing [INTERNAL]
1335 */
1336static int OLE2NLS_isNonSpacing(unsigned char c)
1337{
1338 /* This function is used by LCMapStringA. Characters
1339 for which it returns true are ignored when mapping a
1340 string with NORM_IGNORENONSPACE */
1341 return ((c==136) || (c==170) || (c==186));
1342}
1343
1344/******************************************************************************
1345 * OLE2NLS_isSymbol [INTERNAL]
1346 */
1347static int OLE2NLS_isSymbol(unsigned char c)
1348{
1349 /* This function is used by LCMapStringA. Characters
1350 for which it returns true are ignored when mapping a
1351 string with NORM_IGNORESYMBOLS */
1352 return ( (c!=0) && !(isalpha(c) || isdigit(c)) );
1353}
1354
1355/******************************************************************************
1356 * identity [Internal]
1357 */
1358static int identity(int c)
1359{
1360 return c;
1361}
1362
1363/******************************************************************************
1364 * identityW [Internal]
1365 */
1366static WCHAR identityW(WCHAR c)
1367{
1368 return c;
1369}
1370
1371/*************************************************************************
1372 * LCMapStringA [KERNEL32.492]
1373 *
1374 * Convert a string, or generate a sort key from it.
1375 *
1376 * If (mapflags & LCMAP_SORTKEY), the function will generate
1377 * a sort key for the source string. Else, it will convert it
1378 * accordingly to the flags LCMAP_UPPERCASE, LCMAP_LOWERCASE,...
1379 *
1380 * RETURNS
1381 * Error : 0.
1382 * Success : length of the result string.
1383 *
1384 * NOTES
1385 * If called with scrlen = -1, the function will compute the length
1386 * of the 0-terminated string strsrc by itself.
1387 *
1388 * If called with dstlen = 0, returns the buffer length that
1389 * would be required.
1390 *
1391 * NORM_IGNOREWIDTH means to compare ASCII and wide characters
1392 * as if they are equal.
1393 * In the only code page implemented so far, there may not be
1394 * wide characters in strings passed to LCMapStringA,
1395 * so there is nothing to be done for this flag.
1396 */
1397INT WINAPI LCMapStringA(
1398 LCID lcid, /* [in] locale identifier created with MAKELCID;
1399 LOCALE_SYSTEM_DEFAULT and LOCALE_USER_DEFAULT are
1400 predefined values. */
1401 DWORD mapflags, /* [in] flags */
1402 LPCSTR srcstr, /* [in] source buffer */
1403 INT srclen, /* [in] source length */
1404 LPSTR dststr, /* [out] destination buffer */
1405 INT dstlen) /* [in] destination buffer length */
1406{
1407 int i;
1408
1409 TRACE("(0x%04lx,0x%08lx,%s,%d,%p,%d)\n",
1410 lcid,mapflags,srcstr,srclen,dststr,dstlen);
1411
1412 if ( ((dstlen!=0) && (dststr==NULL)) || (srcstr==NULL) )
1413 {
1414 ERR("(src=%s,dest=%s): Invalid NULL string\n", srcstr, dststr);
1415 SetLastError(ERROR_INVALID_PARAMETER);
1416 return 0;
1417 }
1418 if (srclen == -1)
1419 srclen = strlen(srcstr) + 1 ; /* (include final '\0') */
1420
1421#define LCMAPSTRINGA_SUPPORTED_FLAGS (LCMAP_UPPERCASE | \
1422 LCMAP_LOWERCASE | \
1423 LCMAP_SORTKEY | \
1424 NORM_IGNORECASE | \
1425 NORM_IGNORENONSPACE | \
1426 SORT_STRINGSORT | \
1427 NORM_IGNOREWIDTH | \
1428 NORM_IGNOREKANATYPE)
1429 /* FIXME: as long as we don't support Katakana nor Hiragana
1430 * characters, we can support NORM_IGNOREKANATYPE
1431 */
1432#ifdef DEBUG
1433 if (mapflags & ~LCMAPSTRINGA_SUPPORTED_FLAGS)
1434 {
1435 FIXME("(0x%04lx,0x%08lx,%p,%d,%p,%d): "
1436 "unimplemented flags: 0x%08lx\n",
1437 lcid,
1438 mapflags,
1439 srcstr,
1440 srclen,
1441 dststr,
1442 dstlen,
1443 mapflags & ~LCMAPSTRINGA_SUPPORTED_FLAGS
1444 );
1445 }
1446#endif
1447
1448 if ( !(mapflags & LCMAP_SORTKEY) )
1449 {
1450 int i,j;
1451 int (* f)(int) = identity;
1452
1453 int flag_ignorenonspace = mapflags & NORM_IGNORENONSPACE;
1454 int flag_ignoresymbols = mapflags & NORM_IGNORESYMBOLS;
1455
1456 if (flag_ignorenonspace || flag_ignoresymbols)
1457 {
1458 /* For some values of mapflags, the length of the resulting
1459 string is not known at this point. Windows does map the string
1460 and does not SetLastError ERROR_INSUFFICIENT_BUFFER in
1461 these cases. */
1462 if (dstlen==0)
1463 {
1464 /* Compute required length */
1465 for (i=j=0; i < srclen; i++)
1466 {
1467 if ( !(flag_ignorenonspace && OLE2NLS_isNonSpacing(srcstr[i]))
1468 && !(flag_ignoresymbols && OLE2NLS_isSymbol(srcstr[i])) )
1469 j++;
1470 }
1471 return j;
1472 }
1473 }
1474 else
1475 {
1476 if (dstlen==0)
1477 return srclen;
1478 if (dstlen<srclen)
1479 {
1480 SetLastError(ERROR_INSUFFICIENT_BUFFER);
1481 return 0;
1482 }
1483 }
1484 if (mapflags & LCMAP_UPPERCASE)
1485 f = toupper;
1486 else if (mapflags & LCMAP_LOWERCASE)
1487 f = tolower;
1488 /* FIXME: NORM_IGNORENONSPACE requires another conversion */
1489 for (i=j=0; (i<srclen) && (j<dstlen) ; i++)
1490 {
1491 if ( !(flag_ignorenonspace && OLE2NLS_isNonSpacing(srcstr[i]))
1492 && !(flag_ignoresymbols && OLE2NLS_isSymbol(srcstr[i])) )
1493 {
1494 dststr[j] = (CHAR) f(srcstr[i]);
1495 j++;
1496 }
1497 }
1498 return j;
1499 }
1500
1501 /* FIXME: This function completely ignores the "lcid" parameter. */
1502 /* else ... (mapflags & LCMAP_SORTKEY) */
1503 {
1504 int unicode_len=0;
1505 int case_len=0;
1506 int diacritic_len=0;
1507 int delayed_punctuation_len=0;
1508 char *case_component;
1509 char *diacritic_component;
1510 char *delayed_punctuation_component;
1511 int room,count;
1512 int flag_stringsort = mapflags & SORT_STRINGSORT;
1513
1514 /* compute how much room we will need */
1515 for (i=0;i<srclen;i++)
1516 {
1517 int ofs;
1518 unsigned char source_char = srcstr[i];
1519 if (source_char!='\0')
1520 {
1521 if (flag_stringsort || !OLE2NLS_isPunctuation(source_char))
1522 {
1523 unicode_len++;
1524 if ( LCM_Unicode_LUT[-2+2*source_char] & ~15 )
1525 unicode_len++; /* double letter */
1526 }
1527 else
1528 {
1529 delayed_punctuation_len++;
1530 }
1531 }
1532
1533 if (isupper(source_char))
1534 case_len=unicode_len;
1535
1536 ofs = source_char - LCM_Diacritic_Start;
1537 if ((ofs>=0) && (LCM_Diacritic_LUT[ofs]!=2))
1538 diacritic_len=unicode_len;
1539 }
1540
1541 if (mapflags & NORM_IGNORECASE)
1542 case_len=0;
1543 if (mapflags & NORM_IGNORENONSPACE)
1544 diacritic_len=0;
1545
1546 room = 2 * unicode_len /* "unicode" component */
1547 + diacritic_len /* "diacritic" component */
1548 + case_len /* "case" component */
1549 + 4 * delayed_punctuation_len /* punctuation in word sort mode */
1550 + 4 /* four '\1' separators */
1551 + 1 ; /* terminal '\0' */
1552 if (dstlen==0)
1553 return room;
1554 else if (dstlen<room)
1555 {
1556 SetLastError(ERROR_INSUFFICIENT_BUFFER);
1557 return 0;
1558 }
1559#if 0
1560 /*FIXME the Pointercheck should not be nessesary */
1561 if (IsBadWritePtr (dststr,room))
1562 { ERR("bad destination buffer (dststr) : %p,%d\n",dststr,dstlen);
1563 SetLastError(ERROR_INSUFFICIENT_BUFFER);
1564 return 0;
1565 }
1566#endif
1567 /* locate each component, write separators */
1568 diacritic_component = dststr + 2*unicode_len ;
1569 *diacritic_component++ = '\1';
1570 case_component = diacritic_component + diacritic_len ;
1571 *case_component++ = '\1';
1572 delayed_punctuation_component = case_component + case_len ;
1573 *delayed_punctuation_component++ = '\1';
1574 *delayed_punctuation_component++ = '\1';
1575
1576 /* read source string char by char, write
1577 corresponding weight in each component. */
1578 for (i=0,count=0;i<srclen;i++)
1579 {
1580 unsigned char source_char=srcstr[i];
1581 if (source_char!='\0')
1582 {
1583 int type,longcode;
1584 type = LCM_Unicode_LUT[-2+2*source_char];
1585 longcode = type >> 4;
1586 type &= 15;
1587 if (!flag_stringsort && OLE2NLS_isPunctuation(source_char))
1588 {
1589 WORD encrypted_location = (1<<15) + 7 + 4*count;
1590 *delayed_punctuation_component++ = (unsigned char) (encrypted_location>>8);
1591 *delayed_punctuation_component++ = (unsigned char) (encrypted_location&255);
1592 /* big-endian is used here because it lets string comparison be
1593 compatible with numerical comparison */
1594
1595 *delayed_punctuation_component++ = type;
1596 *delayed_punctuation_component++ = LCM_Unicode_LUT[-1+2*source_char];
1597 /* assumption : a punctuation character is never a
1598 double or accented letter */
1599 }
1600 else
1601 {
1602 dststr[2*count] = type;
1603 dststr[2*count+1] = LCM_Unicode_LUT[-1+2*source_char];
1604 if (longcode)
1605 {
1606 if (count<case_len)
1607 case_component[count] = ( isupper(source_char) ? 18 : 2 ) ;
1608 if (count<diacritic_len)
1609 diacritic_component[count] = 2; /* assumption: a double letter
1610 is never accented */
1611 count++;
1612
1613 dststr[2*count] = type;
1614 dststr[2*count+1] = *(LCM_Unicode_LUT_2 - 1 + longcode);
1615 /* 16 in the first column of LCM_Unicode_LUT --> longcode = 1
1616 32 in the first column of LCM_Unicode_LUT --> longcode = 2
1617 48 in the first column of LCM_Unicode_LUT --> longcode = 3 */
1618 }
1619
1620 if (count<case_len)
1621 case_component[count] = ( isupper(source_char) ? 18 : 2 ) ;
1622 if (count<diacritic_len)
1623 {
1624 int ofs = source_char - LCM_Diacritic_Start;
1625 diacritic_component[count] = (ofs>=0 ? LCM_Diacritic_LUT[ofs] : 2);
1626 }
1627 count++;
1628 }
1629 }
1630 }
1631 dststr[room-1] = '\0';
1632 return room;
1633 }
1634}
1635
1636/*************************************************************************
1637 * LCMapStringW [KERNEL32.493]
1638 *
1639 * Convert a string, or generate a sort key from it.
1640 *
1641 * NOTE
1642 *
1643 * See LCMapStringA for documentation
1644 */
1645INT WINAPI LCMapStringW(
1646 LCID lcid,DWORD mapflags,LPCWSTR srcstr,INT srclen,LPWSTR dststr,
1647 INT dstlen)
1648{
1649 int i;
1650
1651 TRACE("(0x%04lx,0x%08lx,%p,%d,%p,%d)\n",
1652 lcid, mapflags, srcstr, srclen, dststr, dstlen);
1653
1654 if ( ((dstlen!=0) && (dststr==NULL)) || (srcstr==NULL) )
1655 {
1656 ERR("(src=%p,dst=%p): Invalid NULL string\n", srcstr, dststr);
1657 SetLastError(ERROR_INVALID_PARAMETER);
1658 return 0;
1659 }
1660 if (srclen==-1)
1661 srclen = strlenW(srcstr)+1;
1662
1663 /* FIXME: Both this function and it's companion LCMapStringA()
1664 * completely ignore the "lcid" parameter. In place of the "lcid"
1665 * parameter the application must set the "LC_COLLATE" or "LC_ALL"
1666 * environment variable prior to invoking this function. */
1667 if (mapflags & LCMAP_SORTKEY)
1668 {
1669 /* Possible values of LC_COLLATE. */
1670 char *lc_collate_default = 0; /* value prior to this function */
1671 char *lc_collate_env = 0; /* value retrieved from the environment */
1672
1673 /* General purpose index into strings of any type. */
1674 int str_idx = 0;
1675
1676 /* Lengths of various strings where the length is measured in
1677 * wide characters for wide character strings and in bytes for
1678 * native strings. The lengths include the NULL terminator. */
1679 size_t returned_len = 0;
1680 size_t src_native_len = 0;
1681 size_t dst_native_len = 0;
1682 size_t dststr_libc_len = 0;
1683
1684 /* Native (character set determined by locale) versions of the
1685 * strings source and destination strings. */
1686 LPSTR src_native = 0;
1687 LPSTR dst_native = 0;
1688
1689 /* Version of the source and destination strings using the
1690 * "wchar_t" Unicode data type needed by various libc functions. */
1691 wchar_t *srcstr_libc = 0;
1692 wchar_t *dststr_libc = 0;
1693
1694 if(!(srcstr_libc = (wchar_t *)HeapAlloc(GetProcessHeap(), 0,
1695 srclen * sizeof(wchar_t))))
1696 {
1697 ERR("Unable to allocate %d bytes for srcstr_libc\n",
1698 srclen * sizeof(wchar_t));
1699 SetLastError(ERROR_NOT_ENOUGH_MEMORY);
1700 return 0;
1701 }
1702
1703 /* Convert source string to a libc Unicode string. */
1704 for(str_idx = 0; str_idx < srclen; str_idx++)
1705 {
1706 srcstr_libc[str_idx] = srcstr[str_idx];
1707 }
1708
1709 /* src_native should contain at most 3 bytes for each
1710 * multibyte characters in the original srcstr string. */
1711 src_native_len = 3 * srclen;
1712 if(!(src_native = (LPSTR)HeapAlloc(GetProcessHeap(), 0,
1713 src_native_len)))
1714 {
1715 ERR("Unable to allocate %d bytes for src_native\n", src_native_len);
1716 SetLastError(ERROR_NOT_ENOUGH_MEMORY);
1717 if(srcstr_libc) HeapFree(GetProcessHeap(), 0, srcstr_libc);
1718 return 0;
1719 }
1720
1721 /* FIXME: Prior to to setting the LC_COLLATE locale category the
1722 * current value is backed up so it can be restored after the
1723 * last LC_COLLATE sensitive function returns.
1724 *
1725 * Even though the locale is adjusted for a minimum amount of
1726 * time a race condition exists where other threads may be
1727 * affected if they invoke LC_COLLATE sensitive functions. One
1728 * possible solution is to wrap all LC_COLLATE sensitive Wine
1729 * functions, like LCMapStringW(), in a mutex.
1730 *
1731 * Another enhancement to the following would be to set the
1732 * LC_COLLATE locale category as a function of the "lcid"
1733 * parameter instead of the "LC_COLLATE" environment variable. */
1734 if(!(lc_collate_default = setlocale(LC_COLLATE, NULL)))
1735 {
1736 ERR("Unable to query the LC_COLLATE catagory\n");
1737 SetLastError(ERROR_INVALID_PARAMETER);
1738 if(srcstr_libc) HeapFree(GetProcessHeap(), 0, srcstr_libc);
1739 if(src_native) HeapFree(GetProcessHeap(), 0, src_native);
1740 return 0;
1741 }
1742
1743 if(!(lc_collate_env = setlocale(LC_COLLATE, "")))
1744 {
1745 ERR("Unable to inherit the LC_COLLATE locale category from the "
1746 "environment. The \"LC_COLLATE\" environment variable is "
1747 "\"%s\".\n", getenv("LC_COLLATE") ?
1748 getenv("LC_COLLATE") : "<unset>");
1749 SetLastError(ERROR_INVALID_PARAMETER);
1750 if(srcstr_libc) HeapFree(GetProcessHeap(), 0, srcstr_libc);
1751 if(src_native) HeapFree(GetProcessHeap(), 0, src_native);
1752 return 0;
1753 }
1754
1755 TRACE("lc_collate_default = %s\n", lc_collate_default);
1756 TRACE("lc_collate_env = %s\n", lc_collate_env);
1757
1758 /* Convert the libc Unicode string to a native multibyte character
1759 * string. */
1760 returned_len = wcstombs(src_native, srcstr_libc, src_native_len) + 1;
1761 if(returned_len == 0)
1762 {
1763 LPSTR srcstr_ascii = (LPSTR)HEAP_strdupWtoA(GetProcessHeap(),
1764 0, srcstr);
1765 ERR("wcstombs failed. The string specified (%s) may contains an "
1766 "invalid character.\n", srcstr_ascii);
1767 SetLastError(ERROR_INVALID_PARAMETER);
1768 if(srcstr_ascii) HeapFree(GetProcessHeap(), 0, srcstr_ascii);
1769 if(srcstr_libc) HeapFree(GetProcessHeap(), 0, srcstr_libc);
1770 if(src_native) HeapFree(GetProcessHeap(), 0, src_native);
1771 setlocale(LC_COLLATE, lc_collate_default);
1772 return 0;
1773 }
1774 else if(returned_len > src_native_len)
1775 {
1776 src_native[src_native_len - 1] = 0;
1777 ERR("wcstombs returned a string (%s) that was longer (%d bytes) "
1778 "than expected (%d bytes).\n", src_native, returned_len,
1779 dst_native_len);
1780
1781 /* Since this is an internal error I'm not sure what the correct
1782 * error code is. */
1783 SetLastError(ERROR_NOT_ENOUGH_MEMORY);
1784
1785 if(srcstr_libc) HeapFree(GetProcessHeap(), 0, srcstr_libc);
1786 if(src_native) HeapFree(GetProcessHeap(), 0, src_native);
1787 setlocale(LC_COLLATE, lc_collate_default);
1788 return 0;
1789 }
1790 src_native_len = returned_len;
1791
1792 TRACE("src_native = %s src_native_len = %d\n",
1793 src_native, src_native_len);
1794
1795 /* dst_native seems to contain at most 4 bytes for each byte in
1796 * the original src_native string. Change if need be since this
1797 * isn't documented by the strxfrm() man page. */
1798 dst_native_len = 4 * src_native_len;
1799 if(!(dst_native = (LPSTR)HeapAlloc(GetProcessHeap(), 0, dst_native_len)))
1800 {
1801 ERR("Unable to allocate %d bytes for dst_native\n", dst_native_len);
1802 SetLastError(ERROR_NOT_ENOUGH_MEMORY);
1803 if(srcstr_libc) HeapFree(GetProcessHeap(), 0, srcstr_libc);
1804 if(src_native) HeapFree(GetProcessHeap(), 0, src_native);
1805 setlocale(LC_COLLATE, lc_collate_default);
1806 return 0;
1807 }
1808
1809 /* The actual translation is done by the following call to
1810 * strxfrm(). The surrounding code could have been simplified
1811 * by calling wcsxfrm() instead except that wcsxfrm() is not
1812 * available on older Linux systems (RedHat 4.1 with
1813 * libc-5.3.12-17).
1814 *
1815 * Also, it is possible that the translation could be done by
1816 * various tables as it is done in LCMapStringA(). However, I'm
1817 * not sure what those tables are. */
1818 returned_len = strxfrm(dst_native, src_native, dst_native_len) + 1;
1819
1820 if(returned_len > dst_native_len)
1821 {
1822 dst_native[dst_native_len - 1] = 0;
1823 ERR("strxfrm returned a string (%s) that was longer (%d bytes) "
1824 "than expected (%d bytes).\n", dst_native, returned_len,
1825 dst_native_len);
1826
1827 /* Since this is an internal error I'm not sure what the correct
1828 * error code is. */
1829 SetLastError(ERROR_NOT_ENOUGH_MEMORY);
1830
1831 if(srcstr_libc) HeapFree(GetProcessHeap(), 0, srcstr_libc);
1832 if(src_native) HeapFree(GetProcessHeap(), 0, src_native);
1833 if(dst_native) HeapFree(GetProcessHeap(), 0, dst_native);
1834 setlocale(LC_COLLATE, lc_collate_default);
1835 return 0;
1836 }
1837 dst_native_len = returned_len;
1838
1839 TRACE("dst_native = %s dst_native_len = %d\n",
1840 dst_native, dst_native_len);
1841
1842 dststr_libc_len = dst_native_len;
1843 if(!(dststr_libc = (wchar_t *)HeapAlloc(GetProcessHeap(), 0,
1844 dststr_libc_len * sizeof(wchar_t))))
1845 {
1846 ERR("Unable to allocate %d bytes for dststr_libc\n",
1847 dststr_libc_len * sizeof(wchar_t));
1848 SetLastError(ERROR_NOT_ENOUGH_MEMORY);
1849 if(srcstr_libc) HeapFree(GetProcessHeap(), 0, srcstr_libc);
1850 if(src_native) HeapFree(GetProcessHeap(), 0, src_native);
1851 if(dst_native) HeapFree(GetProcessHeap(), 0, dst_native);
1852 setlocale(LC_COLLATE, lc_collate_default);
1853 return 0;
1854 }
1855
1856 /* Convert the native multibyte string to a libc Unicode string. */
1857 returned_len = mbstowcs(dststr_libc, dst_native, dst_native_len) + 1;
1858
1859 /* Restore LC_COLLATE now that the last LC_COLLATE sensitive
1860 * function has returned. */
1861 setlocale(LC_COLLATE, lc_collate_default);
1862
1863 if(returned_len == 0)
1864 {
1865 ERR("mbstowcs failed. The native version of the translated string "
1866 "(%s) may contain an invalid character.\n", dst_native);
1867 SetLastError(ERROR_INVALID_PARAMETER);
1868 if(srcstr_libc) HeapFree(GetProcessHeap(), 0, srcstr_libc);
1869 if(src_native) HeapFree(GetProcessHeap(), 0, src_native);
1870 if(dst_native) HeapFree(GetProcessHeap(), 0, dst_native);
1871 if(dststr_libc) HeapFree(GetProcessHeap(), 0, dststr_libc);
1872 return 0;
1873 }
1874 if(dstlen)
1875 {
1876 if(returned_len > dstlen)
1877 {
1878 ERR("mbstowcs returned a string that was longer (%d chars) "
1879 "than the buffer provided (%d chars).\n", returned_len,
1880 dstlen);
1881 SetLastError(ERROR_INSUFFICIENT_BUFFER);
1882 if(srcstr_libc) HeapFree(GetProcessHeap(), 0, srcstr_libc);
1883 if(src_native) HeapFree(GetProcessHeap(), 0, src_native);
1884 if(dst_native) HeapFree(GetProcessHeap(), 0, dst_native);
1885 if(dststr_libc) HeapFree(GetProcessHeap(), 0, dststr_libc);
1886 return 0;
1887 }
1888 dstlen = returned_len;
1889
1890 /* Convert a libc Unicode string to the destination string. */
1891 for(str_idx = 0; str_idx < dstlen; str_idx++)
1892 {
1893 dststr[str_idx] = dststr_libc[str_idx];
1894 }
1895 TRACE("1st 4 int sized chunks of dststr = %x %x %x %x\n",
1896 *(((int *)dststr) + 0),
1897 *(((int *)dststr) + 1),
1898 *(((int *)dststr) + 2),
1899 *(((int *)dststr) + 3));
1900 }
1901 else
1902 {
1903 dstlen = returned_len;
1904 }
1905 TRACE("dstlen (return) = %d\n", dstlen);
1906 if(srcstr_libc) HeapFree(GetProcessHeap(), 0, srcstr_libc);
1907 if(src_native) HeapFree(GetProcessHeap(), 0, src_native);
1908 if(dst_native) HeapFree(GetProcessHeap(), 0, dst_native);
1909 if(dststr_libc) HeapFree(GetProcessHeap(), 0, dststr_libc);
1910 return dstlen;
1911 }
1912 else
1913 {
1914#ifdef __WIN32OS2__
1915 WCHAR (*f)(WCHAR)=identityW;
1916#else
1917 int (*f)(int)=identity;
1918#endif
1919
1920 if (dstlen==0)
1921 return srclen;
1922 if (dstlen<srclen)
1923 {
1924 SetLastError(ERROR_INSUFFICIENT_BUFFER);
1925 return 0;
1926 }
1927
1928#ifdef __WIN32OS2__
1929 /* For WCHAR we better use the WCHAR toupper/lower.
1930 * (VAC308 toupper/tolower doesn't do range checks according to standards
1931 * which may cause illegal memory reads access when misused like it were here.
1932 */
1933 if (mapflags & LCMAP_UPPERCASE)
1934 f = toupperW;
1935 else if (mapflags & LCMAP_LOWERCASE)
1936 f = tolowerW;
1937#else
1938 if (mapflags & LCMAP_UPPERCASE)
1939 f = toupper;
1940 else if (mapflags & LCMAP_LOWERCASE)
1941 f = tolower;
1942#endif
1943 if (f)
1944 {
1945 for (i=0; i < srclen; i++)
1946 dststr[i] = (WCHAR) f(srcstr[i]);
1947 }
1948 else
1949 memcpy(dststr, srcstr, sizeof(WCHAR) * srclen);
1950
1951 return srclen;
1952 }
1953}
1954
1955
1956/***********************************************************************
1957 * OLE2NLS_EstimateMappingLength
1958 *
1959 * Estimates the number of characters required to hold the string
1960 * computed by LCMapStringA.
1961 *
1962 * The size is always over-estimated, with a fixed limit on the
1963 * amount of estimation error.
1964 *
1965 * Note that len == -1 is not permitted.
1966 */
1967static inline int OLE2NLS_EstimateMappingLength(LCID lcid, DWORD dwMapFlags,
1968 LPCSTR str, DWORD len)
1969{
1970 /* Estimate only for small strings to keep the estimation error from
1971 * becoming too large. */
1972 if (len < 128) return len * 8 + 5;
1973 else return LCMapStringA(lcid, dwMapFlags, str, len, NULL, 0);
1974}
1975
1976/******************************************************************************
1977 * CompareStringA [KERNEL32.143]
1978 * Compares two strings using locale
1979 *
1980 * RETURNS
1981 *
1982 * success: CSTR_LESS_THAN, CSTR_EQUAL, CSTR_GREATER_THAN
1983 * failure: 0
1984 *
1985 * NOTES
1986 *
1987 * Defaults to a word sort, but uses a string sort if
1988 * SORT_STRINGSORT is set.
1989 * Calls SetLastError for ERROR_INVALID_FLAGS, ERROR_INVALID_PARAMETER.
1990 *
1991 * BUGS
1992 *
1993 * This implementation ignores the locale
1994 *
1995 * FIXME
1996 *
1997 * Quite inefficient.
1998 */
1999UINT WINAPI CompareStringA(
2000 DWORD lcid, /* [in] locale ID */
2001 DWORD fdwStyle, /* [in] comparison-style options */
2002 LPCSTR s1, /* [in] first string */
2003 DWORD l1, /* [in] length of first string */
2004 LPCSTR s2, /* [in] second string */
2005 DWORD l2) /* [in] length of second string */
2006{
2007 int mapstring_flags;
2008 int len1,len2;
2009 int result;
2010 LPSTR sk1,sk2;
2011 TRACE("%s and %s\n",
2012 debugstr_a (s1), debugstr_a (s2));
2013
2014 if ( (s1==NULL) || (s2==NULL) )
2015 {
2016 ERR("(s1=%s,s2=%s): Invalid NULL string\n", s1, s2);
2017 SetLastError(ERROR_INVALID_PARAMETER);
2018 return 0;
2019 }
2020
2021 if(fdwStyle & NORM_IGNORESYMBOLS)
2022 FIXME("IGNORESYMBOLS not supported\n");
2023
2024 if (l1 == -1) l1 = strlen(s1);
2025 if (l2 == -1) l2 = strlen(s2);
2026
2027 mapstring_flags = LCMAP_SORTKEY | fdwStyle ;
2028 len1 = OLE2NLS_EstimateMappingLength(lcid, mapstring_flags, s1, l1);
2029 len2 = OLE2NLS_EstimateMappingLength(lcid, mapstring_flags, s2, l2);
2030
2031 if ((len1==0)||(len2==0))
2032 return 0; /* something wrong happened */
2033
2034 sk1 = (LPSTR)HeapAlloc(GetProcessHeap(), 0, len1 + len2);
2035 sk2 = sk1 + len1;
2036 if ( (!LCMapStringA(lcid,mapstring_flags,s1,l1,sk1,len1))
2037 || (!LCMapStringA(lcid,mapstring_flags,s2,l2,sk2,len2)) )
2038 {
2039 ERR("Bug in LCmapStringA.\n");
2040 result = 0;
2041 }
2042 else
2043 {
2044 /* strcmp doesn't necessarily return -1, 0, or 1 */
2045 result = strcmp(sk1,sk2);
2046 }
2047 HeapFree(GetProcessHeap(),0,sk1);
2048
2049 if (result < 0)
2050 return 1;
2051 if (result == 0)
2052 return 2;
2053
2054 /* must be greater, if we reach this point */
2055 return 3;
2056}
2057
2058/******************************************************************************
2059 * CompareStringW [KERNEL32.144]
2060 * This implementation ignores the locale
2061 * FIXME : Does only string sort. Should
2062 * be reimplemented the same way as CompareStringA.
2063 */
2064UINT WINAPI CompareStringW(DWORD lcid, DWORD fdwStyle,
2065 LPCWSTR s1, DWORD l1, LPCWSTR s2,DWORD l2)
2066{
2067 int len,ret;
2068 if(fdwStyle & NORM_IGNORENONSPACE)
2069 FIXME("IGNORENONSPACE not supprted\n");
2070 if(fdwStyle & NORM_IGNORESYMBOLS)
2071 FIXME("IGNORESYMBOLS not supported\n");
2072
2073 /* Is strcmp defaulting to string sort or to word sort?? */
2074 /* FIXME: Handle NORM_STRINGSORT */
2075 l1 = (l1==-1)?strlenW(s1):l1;
2076 l2 = (l2==-1)?strlenW(s2):l2;
2077 len = l1<l2 ? l1:l2;
2078 ret = (fdwStyle & NORM_IGNORECASE) ? strncmpiW(s1,s2,len) : strncmpW(s1,s2,len);
2079 /* not equal, return 1 or 3 */
2080 if(ret!=0) {
2081 /* need to translate result */
2082 return ((int)ret < 0) ? 1 : 3;
2083 }
2084 /* same len, return 2 */
2085 if(l1==l2) return 2;
2086 /* the longer one is lexically greater */
2087 return (l1<l2)? 1 : 3;
2088}
2089
2090/******************************************************************************
2091 * OLE_GetFormatA [Internal]
2092 *
2093 * FIXME
2094 * If datelen == 0, it should return the reguired string length.
2095 *
2096 This function implements stuff for GetDateFormat() and
2097 GetTimeFormat().
2098
2099 d single-digit (no leading zero) day (of month)
2100 dd two-digit day (of month)
2101 ddd short day-of-week name
2102 dddd long day-of-week name
2103 M single-digit month
2104 MM two-digit month
2105 MMM short month name
2106 MMMM full month name
2107 y two-digit year, no leading 0
2108 yy two-digit year
2109 yyyy four-digit year
2110 gg era string
2111 h hours with no leading zero (12-hour)
2112 hh hours with full two digits
2113 H hours with no leading zero (24-hour)
2114 HH hours with full two digits
2115 m minutes with no leading zero
2116 mm minutes with full two digits
2117 s seconds with no leading zero
2118 ss seconds with full two digits
2119 t time marker (A or P)
2120 tt time marker (AM, PM)
2121 '' used to quote literal characters
2122 '' (within a quoted string) indicates a literal '
2123
2124 These functions REQUIRE valid locale, date, and format.
2125 */
2126static INT OLE_GetFormatA(LCID locale,
2127 DWORD flags,
2128 DWORD tflags,
2129 LPSYSTEMTIME xtime,
2130 LPCSTR _format, /*in*/
2131 LPSTR date, /*out*/
2132 INT datelen)
2133{
2134 INT inpos, outpos;
2135 int count, type, inquote, Overflow;
2136 char buf[40];
2137 char format[40];
2138 char * pos;
2139 int buflen;
2140
2141 const char * _dgfmt[] = { "%d", "%02d" };
2142 const char ** dgfmt = _dgfmt - 1;
2143
2144 /* report, for debugging */
2145 TRACE("(0x%lx,0x%lx, 0x%lx, time(y=%d m=%d wd=%d d=%d,h=%d,m=%d,s=%d), fmt=%p \'%s\' , %p, len=%d)\n",
2146 locale, flags, tflags,
2147 xtime->wYear,xtime->wMonth,xtime->wDayOfWeek,xtime->wDay, xtime->wHour, xtime->wMinute, xtime->wSecond,
2148 _format, _format, date, datelen);
2149
2150 if(datelen == 0) {
2151 FIXME("datelen = 0, returning 255\n");
2152 return 255;
2153 }
2154
2155 /* initalize state variables and output buffer */
2156 inpos = outpos = 0;
2157 count = 0; inquote = 0; Overflow = 0;
2158 type = '\0';
2159 date[0] = buf[0] = '\0';
2160
2161 strcpy(format,_format);
2162
2163 /* alter the formatstring, while it works for all languages now in wine
2164 its possible that it fails when the time looks like ss:mm:hh as example*/
2165 if (tflags & (TIME_NOMINUTESORSECONDS))
2166 { if ((pos = strstr ( format, ":mm")) != NULL)
2167 { memcpy ( pos, pos+3, strlen(format)-(pos-format)-2 );
2168 }
2169 }
2170 if (tflags & (TIME_NOSECONDS))
2171 { if ((pos = strstr ( format, ":ss")) != NULL)
2172 { memcpy ( pos, pos+3, strlen(format)-(pos-format)-2 );
2173 }
2174 }
2175
2176 for (inpos = 0;; inpos++) {
2177 /* TRACE("STATE inpos=%2d outpos=%2d count=%d inquote=%d type=%c buf,date = %c,%c\n", inpos, outpos, count, inquote, type, buf[inpos], date[outpos]); */
2178 if (inquote) {
2179 if (format[inpos] == '\'') {
2180 if (format[inpos+1] == '\'') {
2181 inpos += 1;
2182 date[outpos++] = '\'';
2183 } else {
2184 inquote = 0;
2185 continue; /* we did nothing to the output */
2186 }
2187 } else if (format[inpos] == '\0') {
2188 date[outpos++] = '\0';
2189 if (outpos > datelen) Overflow = 1;
2190 break;
2191 } else {
2192 date[outpos++] = format[inpos];
2193 if (outpos > datelen) {
2194 Overflow = 1;
2195 date[outpos-1] = '\0'; /* this is the last place where
2196 it's safe to write */
2197 break;
2198 }
2199 }
2200 } else if ( (count && (format[inpos] != type))
2201 || count == 4
2202 || (count == 2 && strchr("ghHmst", type)) ) {
2203 if (type == 'h' && (tflags & TIME_FORCE24HOURFORMAT)) type= 'H';
2204 if (type == 'd') {
2205 if (count == 4) {
2206 GetLocaleInfoA(locale,
2207 LOCALE_SDAYNAME1
2208 + (xtime->wDayOfWeek+6)%7,
2209 buf, sizeof(buf));
2210 } else if (count == 3) {
2211 GetLocaleInfoA(locale,
2212 LOCALE_SABBREVDAYNAME1
2213 + (xtime->wDayOfWeek+6)%7,
2214 buf, sizeof(buf));
2215 } else {
2216 sprintf(buf, dgfmt[count], xtime->wDay);
2217 }
2218 } else if (type == 'M') {
2219 if (count == 3) {
2220 GetLocaleInfoA(locale,
2221 LOCALE_SABBREVMONTHNAME1
2222 + xtime->wMonth - 1,
2223 buf, sizeof(buf));
2224 } else if (count == 4) {
2225 GetLocaleInfoA(locale,
2226 LOCALE_SMONTHNAME1
2227 + xtime->wMonth - 1,
2228 buf, sizeof(buf));
2229 } else {
2230 sprintf(buf, dgfmt[count], xtime->wMonth);
2231 }
2232 } else if (type == 'y') {
2233 if (count == 4) {
2234 sprintf(buf, "%d", xtime->wYear);
2235 } else if (count == 3) {
2236 strcpy(buf, "yyy");
2237 WARN("unknown format, c=%c, n=%d\n", type, count);
2238 } else {
2239 sprintf(buf, dgfmt[count], xtime->wYear % 100);
2240 }
2241 } else if (type == 'g') {
2242 if (count == 2) {
2243 FIXME("LOCALE_ICALENDARTYPE unimp.\n");
2244 strcpy(buf, "AD");
2245 } else {
2246 strcpy(buf, "g");
2247 WARN("unknown format, c=%c, n=%d\n", type, count);
2248 }
2249 } else if (type == 'h') {
2250 /* gives us hours 1:00 -- 12:00 */
2251 sprintf(buf, dgfmt[count], (xtime->wHour-1)%12 +1);
2252 } else if (type == 'H') {
2253 /* 24-hour time */
2254 sprintf(buf, dgfmt[count], xtime->wHour);
2255 } else if ( type == 'm') {
2256 sprintf(buf, dgfmt[count], xtime->wMinute);
2257 } else if ( type == 's') {
2258 sprintf(buf, dgfmt[count], xtime->wSecond);
2259 } else if (type == 't') {
2260 if ((tflags & TIME_NOTIMEMARKER))
2261 buf[0]='\0';
2262 else if (count == 1) {
2263 sprintf(buf, "%c", (xtime->wHour < 12) ? 'A' : 'P');
2264 } else if (count == 2) {
2265 /* sprintf(buf, "%s", (xtime->wHour < 12) ? "AM" : "PM"); */
2266 GetLocaleInfoA(locale,
2267 (xtime->wHour<12)
2268 ? LOCALE_S1159 : LOCALE_S2359,
2269 buf, sizeof(buf));
2270 }
2271 };
2272
2273 /* we need to check the next char in the format string
2274 again, no matter what happened */
2275 inpos--;
2276
2277 /* add the contents of buf to the output */
2278 buflen = strlen(buf);
2279 if (outpos + buflen < datelen) {
2280 date[outpos] = '\0'; /* for strcat to hook onto */
2281 strcat(date, buf);
2282 outpos += buflen;
2283 } else {
2284 date[outpos] = '\0';
2285 strncat(date, buf, datelen - outpos);
2286 date[datelen - 1] = '\0';
2287 SetLastError(ERROR_INSUFFICIENT_BUFFER);
2288 WARN("insufficient buffer\n");
2289 return 0;
2290 }
2291
2292 /* reset the variables we used to keep track of this item */
2293 count = 0;
2294 type = '\0';
2295 } else if (format[inpos] == '\0') {
2296 /* we can't check for this at the loop-head, because
2297 that breaks the printing of the last format-item */
2298 date[outpos] = '\0';
2299 break;
2300 } else if (count) {
2301 /* continuing a code for an item */
2302 count +=1;
2303 continue;
2304 } else if (strchr("hHmstyMdg", format[inpos])) {
2305 type = format[inpos];
2306 count = 1;
2307 continue;
2308 } else if (format[inpos] == '\'') {
2309 inquote = 1;
2310 continue;
2311 } else {
2312 date[outpos++] = format[inpos];
2313 }
2314 /* now deal with a possible buffer overflow */
2315 if (outpos >= datelen) {
2316 date[datelen - 1] = '\0';
2317 SetLastError(ERROR_INSUFFICIENT_BUFFER);
2318 return 0;
2319 }
2320 }
2321
2322 if (Overflow) {
2323 SetLastError(ERROR_INSUFFICIENT_BUFFER);
2324 };
2325
2326 /* finish it off with a string terminator */
2327 outpos++;
2328 /* sanity check */
2329 if (outpos > datelen-1) outpos = datelen-1;
2330 date[outpos] = '\0';
2331
2332 TRACE("returns string '%s', len %d\n", date, outpos);
2333 return outpos;
2334}
2335
2336/******************************************************************************
2337 * OLE_GetFormatW [INTERNAL]
2338 */
2339static INT OLE_GetFormatW(LCID locale, DWORD flags, DWORD tflags,
2340 LPSYSTEMTIME xtime,
2341 LPCWSTR format,
2342 LPWSTR output, INT outlen)
2343{
2344 INT inpos, outpos;
2345 int count, type=0, inquote;
2346 int Overflow; /* loop check */
2347 char tmp[16];
2348 WCHAR buf[40];
2349 int buflen=0;
2350 WCHAR arg0[] = {0}, arg1[] = {'%','d',0};
2351 WCHAR arg2[] = {'%','0','2','d',0};
2352 WCHAR *argarr[3];
2353 int datevars=0, timevars=0;
2354
2355 argarr[0] = arg0;
2356 argarr[1] = arg1;
2357 argarr[2] = arg2;
2358
2359 /* make a debug report */
2360 TRACE("args: 0x%lx, 0x%lx, 0x%lx, time(d=%d,h=%d,m=%d,s=%d), fmt:%s (at %p), "
2361 "%p with max len %d\n",
2362 locale, flags, tflags,
2363 xtime->wDay, xtime->wHour, xtime->wMinute, xtime->wSecond,
2364 debugstr_w(format), format, output, outlen);
2365
2366 if(outlen == 0) {
2367 FIXME("outlen = 0, returning 255\n");
2368 return 255;
2369 }
2370
2371 /* initialize state variables */
2372 inpos = outpos = 0;
2373 count = 0;
2374 inquote = Overflow = 0;
2375 /* this is really just a sanity check */
2376 output[0] = buf[0] = 0;
2377
2378 /* this loop is the core of the function */
2379 for (inpos = 0; /* we have several break points */ ; inpos++) {
2380 if (inquote) {
2381 if (format[inpos] == (WCHAR) '\'') {
2382 if (format[inpos+1] == '\'') {
2383 inpos++;
2384 output[outpos++] = '\'';
2385 } else {
2386 inquote = 0;
2387 continue;
2388 }
2389 } else if (format[inpos] == 0) {
2390 output[outpos++] = 0;
2391 if (outpos > outlen) Overflow = 1;
2392 break; /* normal exit (within a quote) */
2393 } else {
2394 output[outpos++] = format[inpos]; /* copy input */
2395 if (outpos > outlen) {
2396 Overflow = 1;
2397 output[outpos-1] = 0;
2398 break;
2399 }
2400 }
2401 } else if ( (count && (format[inpos] != type))
2402 || ( (count==4 && type =='y') ||
2403 (count==4 && type =='M') ||
2404 (count==4 && type =='d') ||
2405 (count==2 && type =='g') ||
2406 (count==2 && type =='h') ||
2407 (count==2 && type =='H') ||
2408 (count==2 && type =='m') ||
2409 (count==2 && type =='s') ||
2410 (count==2 && type =='t') ) ) {
2411 switch(type)
2412 {
2413 case 'd':
2414 if (count == 4) {
2415 GetLocaleInfoW(locale,
2416 LOCALE_SDAYNAME1 + (xtime->wDayOfWeek +6)%7,
2417 buf, sizeof(buf)/sizeof(WCHAR) );
2418 } else if (count == 3) {
2419 GetLocaleInfoW(locale,
2420 LOCALE_SABBREVDAYNAME1 +
2421 (xtime->wDayOfWeek +6)%7,
2422 buf, sizeof(buf)/sizeof(WCHAR) );
2423 } else {
2424 sprintf( tmp, "%.*d", count, xtime->wDay );
2425 MultiByteToWideChar( CP_ACP, 0, tmp, -1, buf, sizeof(buf)/sizeof(WCHAR) );
2426 }
2427 break;
2428
2429 case 'M':
2430 if (count == 4) {
2431 GetLocaleInfoW(locale, LOCALE_SMONTHNAME1 +
2432 xtime->wMonth -1, buf,
2433 sizeof(buf)/sizeof(WCHAR) );
2434 } else if (count == 3) {
2435 GetLocaleInfoW(locale, LOCALE_SABBREVMONTHNAME1 +
2436 xtime->wMonth -1, buf,
2437 sizeof(buf)/sizeof(WCHAR) );
2438 } else {
2439 sprintf( tmp, "%.*d", count, xtime->wMonth );
2440 MultiByteToWideChar( CP_ACP, 0, tmp, -1, buf, sizeof(buf)/sizeof(WCHAR) );
2441 }
2442 break;
2443 case 'y':
2444 if (count == 4) {
2445 sprintf( tmp, "%d", xtime->wYear );
2446 } else if (count == 3) {
2447 strcpy( tmp, "yyy" );
2448 } else {
2449 sprintf( tmp, "%.*d", count, xtime->wYear % 100 );
2450 }
2451 MultiByteToWideChar( CP_ACP, 0, tmp, -1, buf, sizeof(buf)/sizeof(WCHAR) );
2452 break;
2453
2454 case 'g':
2455 if (count == 2) {
2456 FIXME("LOCALE_ICALENDARTYPE unimplemented\n");
2457 strcpy( tmp, "AD" );
2458 } else {
2459 /* Win API sez we copy it verbatim */
2460 strcpy( tmp, "g" );
2461 }
2462 MultiByteToWideChar( CP_ACP, 0, tmp, -1, buf, sizeof(buf)/sizeof(WCHAR) );
2463 break;
2464
2465 case 'h':
2466 /* hours 1:00-12:00 --- is this right? */
2467 sprintf( tmp, "%.*d", count, (xtime->wHour-1)%12 +1);
2468 MultiByteToWideChar( CP_ACP, 0, tmp, -1, buf, sizeof(buf)/sizeof(WCHAR) );
2469 break;
2470
2471 case 'H':
2472 sprintf( tmp, "%.*d", count, xtime->wHour );
2473 MultiByteToWideChar( CP_ACP, 0, tmp, -1, buf, sizeof(buf)/sizeof(WCHAR) );
2474 break;
2475
2476 case 'm':
2477 sprintf( tmp, "%.*d", count, xtime->wMinute );
2478 MultiByteToWideChar( CP_ACP, 0, tmp, -1, buf, sizeof(buf)/sizeof(WCHAR) );
2479 break;
2480
2481 case 's':
2482 sprintf( tmp, "%.*d", count, xtime->wSecond );
2483 MultiByteToWideChar( CP_ACP, 0, tmp, -1, buf, sizeof(buf)/sizeof(WCHAR) );
2484 break;
2485
2486 case 't':
2487 GetLocaleInfoW(locale, (xtime->wHour < 12) ?
2488 LOCALE_S1159 : LOCALE_S2359,
2489 buf, sizeof(buf) );
2490 if (count == 1) {
2491 buf[1] = 0;
2492 }
2493 break;
2494 }
2495
2496 /* no matter what happened, we need to check this next
2497 character the next time we loop through */
2498 inpos--;
2499
2500 /* cat buf onto the output */
2501 outlen = strlenW(buf);
2502 if (outpos + buflen < outlen) {
2503 strcpyW( output + outpos, buf );
2504 outpos += buflen;
2505 } else {
2506 lstrcpynW( output + outpos, buf, outlen - outpos );
2507 Overflow = 1;
2508 break; /* Abnormal exit */
2509 }
2510
2511 /* reset the variables we used this time */
2512 count = 0;
2513 type = '\0';
2514 } else if (format[inpos] == 0) {
2515 /* we can't check for this at the beginning, because that
2516 would keep us from printing a format spec that ended the
2517 string */
2518 output[outpos] = 0;
2519 break; /* NORMAL EXIT */
2520 } else if (count) {
2521 /* how we keep track of the middle of a format spec */
2522 count++;
2523 continue;
2524 } else if ( (datevars && (format[inpos]=='d' ||
2525 format[inpos]=='M' ||
2526 format[inpos]=='y' ||
2527 format[inpos]=='g') ) ||
2528 (timevars && (format[inpos]=='H' ||
2529 format[inpos]=='h' ||
2530 format[inpos]=='m' ||
2531 format[inpos]=='s' ||
2532 format[inpos]=='t') ) ) {
2533 type = format[inpos];
2534 count = 1;
2535 continue;
2536 } else if (format[inpos] == '\'') {
2537 inquote = 1;
2538 continue;
2539 } else {
2540 /* unquoted literals */
2541 output[outpos++] = format[inpos];
2542 }
2543 }
2544
2545 if (Overflow) {
2546 SetLastError(ERROR_INSUFFICIENT_BUFFER);
2547 WARN(" buffer overflow\n");
2548 };
2549
2550 /* final string terminator and sanity check */
2551 outpos++;
2552 if (outpos > outlen-1) outpos = outlen-1;
2553 output[outpos] = '0';
2554
2555 TRACE(" returning %s\n", debugstr_w(output));
2556
2557 return (!Overflow) ? outlen : 0;
2558
2559}
2560
2561
2562/******************************************************************************
2563 * GetDateFormatA [KERNEL32.310]
2564 * Makes an ASCII string of the date
2565 *
2566 * This function uses format to format the date, or, if format
2567 * is NULL, uses the default for the locale. format is a string
2568 * of literal fields and characters as follows:
2569 *
2570 * - d single-digit (no leading zero) day (of month)
2571 * - dd two-digit day (of month)
2572 * - ddd short day-of-week name
2573 * - dddd long day-of-week name
2574 * - M single-digit month
2575 * - MM two-digit month
2576 * - MMM short month name
2577 * - MMMM full month name
2578 * - y two-digit year, no leading 0
2579 * - yy two-digit year
2580 * - yyyy four-digit year
2581 * - gg era string
2582 *
2583 */
2584INT WINAPI GetDateFormatA(LCID locale,DWORD flags,
2585 CONST SYSTEMTIME *xtime,
2586 LPCSTR format, LPSTR date,INT datelen)
2587{
2588
2589 char format_buf[40];
2590 LPCSTR thisformat;
2591 SYSTEMTIME t;
2592 LPSYSTEMTIME thistime;
2593 LCID thislocale;
2594 INT ret;
2595 FILETIME ft;
2596 BOOL res;
2597
2598 TRACE("(0x%04lx,0x%08lx,%p,%s,%p,%d)\n",
2599 locale,flags,xtime,format,date,datelen);
2600
2601 if (!locale) {
2602 locale = LOCALE_SYSTEM_DEFAULT;
2603 };
2604
2605 if (locale == LOCALE_SYSTEM_DEFAULT) {
2606 thislocale = GetSystemDefaultLCID();
2607 } else if (locale == LOCALE_USER_DEFAULT) {
2608 thislocale = GetUserDefaultLCID();
2609 } else {
2610 thislocale = locale;
2611 };
2612
2613 if (xtime == NULL) {
2614 GetSystemTime(&t);
2615 } else {
2616 /* Silently correct wDayOfWeek by tranforming to FileTime and back again*/
2617 res=SystemTimeToFileTime(xtime,&ft);
2618 /* Check year(?)/month and date for range and set ERROR_INVALID_PARAMETER on error*/
2619 /*FIXME: SystemTimeToFileTime doesn't yet do that ckeck*/
2620 if(!res)
2621 {
2622 SetLastError(ERROR_INVALID_PARAMETER);
2623 return 0;
2624 }
2625 FileTimeToSystemTime(&ft,&t);
2626
2627 };
2628 thistime = &t;
2629
2630 if (format == NULL) {
2631 GetLocaleInfoA(thislocale, ((flags&DATE_LONGDATE)
2632 ? LOCALE_SLONGDATE
2633 : LOCALE_SSHORTDATE),
2634 format_buf, sizeof(format_buf));
2635 thisformat = format_buf;
2636 } else {
2637 thisformat = format;
2638 };
2639
2640
2641 ret = OLE_GetFormatA(thislocale, flags, 0, thistime, thisformat,
2642 date, datelen);
2643
2644
2645 TRACE(
2646 "GetDateFormatA() returning %d, with data=%s\n",
2647 ret, date);
2648 return ret;
2649}
2650
2651/******************************************************************************
2652 * GetDateFormatW [KERNEL32.311]
2653 * Makes a Unicode string of the date
2654 *
2655 * Acts the same as GetDateFormatA(), except that it's Unicode.
2656 * Accepts & returns sizes as counts of Unicode characters.
2657 *
2658 */
2659INT WINAPI GetDateFormatW(LCID locale,DWORD flags,
2660 CONST SYSTEMTIME *xtime,
2661 LPCWSTR format,
2662 LPWSTR date, INT datelen)
2663{
2664#ifdef __WIN32OS2__
2665 // convert "format" on passing in into ASCII
2666 LPSTR pszAsciiFormat = UnicodeToAsciiString((LPWSTR) format);
2667 LPSTR pszAsciiDate = (char *)alloca(datelen);
2668 int rc;
2669
2670 TRACE("Kernel32-ole2nls: GetDateFormatW(0x%04lx,0x%08lx,%p,%s,%p,%d) not yet complete\n",
2671 locale,flags,xtime,pszAsciiFormat,date,datelen);
2672
2673 // call ASCII variant
2674 rc = GetDateFormatA(locale,
2675 flags,
2676 xtime,
2677 pszAsciiFormat,
2678 pszAsciiDate,
2679 datelen); // is in "characters", not bytes
2680
2681 FreeAsciiString(pszAsciiFormat);
2682
2683 // convert "date" on returning to UNICODE
2684 if (datelen != 0)
2685 {
2686 // in this case 'rc' holds the number of characters to convert
2687 lstrcpynAtoW(date, pszAsciiDate, rc);
2688 }
2689
2690 return rc;
2691
2692#else
2693 unsigned short datearr[] = {'1','9','9','4','-','1','-','1',0};
2694
2695 FIXME("STUB (should call OLE_GetFormatW)\n");
2696 lstrcpynW(date, datearr, datelen);
2697 return ( datelen < 9) ? datelen : 9;
2698#endif
2699}
2700
2701/**************************************************************************
2702 * EnumDateFormatsA (KERNEL32.198)
2703 */
2704BOOL WINAPI EnumDateFormatsA(
2705 DATEFMT_ENUMPROCA lpDateFmtEnumProc, LCID Locale, DWORD dwFlags)
2706{
2707 LCID Loc = GetUserDefaultLCID();
2708 if(!lpDateFmtEnumProc)
2709 {
2710 SetLastError(ERROR_INVALID_PARAMETER);
2711 return FALSE;
2712 }
2713
2714 switch( Loc )
2715 {
2716
2717 case 0x00000407: /* (Loc,"de_DE") */
2718 {
2719 switch(dwFlags)
2720 {
2721 case DATE_SHORTDATE:
2722 if(!(*lpDateFmtEnumProc)("dd.MM.yy")) return TRUE;
2723 if(!(*lpDateFmtEnumProc)("d.M.yyyy")) return TRUE;
2724 if(!(*lpDateFmtEnumProc)("d.MM.yy")) return TRUE;
2725 if(!(*lpDateFmtEnumProc)("d.M.yy")) return TRUE;
2726 return TRUE;
2727 case DATE_LONGDATE:
2728 if(!(*lpDateFmtEnumProc)("dddd,d. MMMM yyyy")) return TRUE;
2729 if(!(*lpDateFmtEnumProc)("d. MMMM yyyy")) return TRUE;
2730 if(!(*lpDateFmtEnumProc)("d. MMM yyyy")) return TRUE;
2731 return TRUE;
2732 default:
2733 FIXME("Unknown date format (%ld)\n", dwFlags);
2734 SetLastError(ERROR_INVALID_PARAMETER);
2735 return FALSE;
2736 }
2737 }
2738
2739 case 0x0000040c: /* (Loc,"fr_FR") */
2740 {
2741 switch(dwFlags)
2742 {
2743 case DATE_SHORTDATE:
2744 if(!(*lpDateFmtEnumProc)("dd/MM/yy")) return TRUE;
2745 if(!(*lpDateFmtEnumProc)("dd.MM.yy")) return TRUE;
2746 if(!(*lpDateFmtEnumProc)("dd-MM-yy")) return TRUE;
2747 if(!(*lpDateFmtEnumProc)("dd/MM/yyyy")) return TRUE;
2748 return TRUE;
2749 case DATE_LONGDATE:
2750 if(!(*lpDateFmtEnumProc)("dddd d MMMM yyyy")) return TRUE;
2751 if(!(*lpDateFmtEnumProc)("d MMM yy")) return TRUE;
2752 if(!(*lpDateFmtEnumProc)("d MMMM yyyy")) return TRUE;
2753 return TRUE;
2754 default:
2755 FIXME("Unknown date format (%ld)\n", dwFlags);
2756 SetLastError(ERROR_INVALID_PARAMETER);
2757 return FALSE;
2758 }
2759 }
2760
2761 case 0x00000c0c: /* (Loc,"fr_CA") */
2762 {
2763 switch(dwFlags)
2764 {
2765 case DATE_SHORTDATE:
2766 if(!(*lpDateFmtEnumProc)("yy-MM-dd")) return TRUE;
2767 if(!(*lpDateFmtEnumProc)("dd-MM-yy")) return TRUE;
2768 if(!(*lpDateFmtEnumProc)("yy MM dd")) return TRUE;
2769 if(!(*lpDateFmtEnumProc)("dd/MM/yy")) return TRUE;
2770 return TRUE;
2771 case DATE_LONGDATE:
2772 if(!(*lpDateFmtEnumProc)("d MMMM, yyyy")) return TRUE;
2773 if(!(*lpDateFmtEnumProc)("d MMM yyyy")) return TRUE;
2774 return TRUE;
2775 default:
2776 FIXME("Unknown date format (%ld)\n", dwFlags);
2777 SetLastError(ERROR_INVALID_PARAMETER);
2778 return FALSE;
2779 }
2780 }
2781
2782 case 0x00000809: /* (Loc,"en_UK") */
2783 {
2784 switch(dwFlags)
2785 {
2786 case DATE_SHORTDATE:
2787 if(!(*lpDateFmtEnumProc)("dd/MM/yy")) return TRUE;
2788 if(!(*lpDateFmtEnumProc)("dd/MM/yyyy")) return TRUE;
2789 if(!(*lpDateFmtEnumProc)("d/M/yy")) return TRUE;
2790 if(!(*lpDateFmtEnumProc)("d.M.yy")) return TRUE;
2791 return TRUE;
2792 case DATE_LONGDATE:
2793 if(!(*lpDateFmtEnumProc)("dd MMMM yyyy")) return TRUE;
2794 if(!(*lpDateFmtEnumProc)("d MMMM yyyy")) return TRUE;
2795 return TRUE;
2796 default:
2797 FIXME("Unknown date format (%ld)\n", dwFlags);
2798 SetLastError(ERROR_INVALID_PARAMETER);
2799 return FALSE;
2800 }
2801 }
2802
2803 case 0x00000c09: /* (Loc,"en_AU") */
2804 {
2805 switch(dwFlags)
2806 {
2807 case DATE_SHORTDATE:
2808 if(!(*lpDateFmtEnumProc)("d/MM/yy")) return TRUE;
2809 if(!(*lpDateFmtEnumProc)("d/M/yy")) return TRUE;
2810 if(!(*lpDateFmtEnumProc)("dd/MM/yy")) return TRUE;
2811 return TRUE;
2812 case DATE_LONGDATE:
2813 if(!(*lpDateFmtEnumProc)("dddd,d MMMM yyyy")) return TRUE;
2814 if(!(*lpDateFmtEnumProc)("d MMMM yyyy")) return TRUE;
2815 return TRUE;
2816 default:
2817 FIXME("Unknown date format (%ld)\n", dwFlags);
2818 SetLastError(ERROR_INVALID_PARAMETER);
2819 return FALSE;
2820 }
2821 }
2822
2823 case 0x00001009: /* (Loc,"en_CA") */
2824 {
2825 switch(dwFlags)
2826 {
2827 case DATE_SHORTDATE:
2828 if(!(*lpDateFmtEnumProc)("dd/MM/yy")) return TRUE;
2829 if(!(*lpDateFmtEnumProc)("d/M/yy")) return TRUE;
2830 if(!(*lpDateFmtEnumProc)("yy-MM-dd")) return TRUE;
2831 if(!(*lpDateFmtEnumProc)("M/dd/yy")) return TRUE;
2832 return TRUE;
2833 case DATE_LONGDATE:
2834 if(!(*lpDateFmtEnumProc)("d-MMM-yy")) return TRUE;
2835 if(!(*lpDateFmtEnumProc)("MMMM d, yyyy")) return TRUE;
2836 return TRUE;
2837 default:
2838 FIXME("Unknown date format (%ld)\n", dwFlags);
2839 SetLastError(ERROR_INVALID_PARAMETER);
2840 return FALSE;
2841 }
2842 }
2843
2844 case 0x00001409: /* (Loc,"en_NZ") */
2845 {
2846 switch(dwFlags)
2847 {
2848 case DATE_SHORTDATE:
2849 if(!(*lpDateFmtEnumProc)("d/MM/yy")) return TRUE;
2850 if(!(*lpDateFmtEnumProc)("dd/MM/yy")) return TRUE;
2851 if(!(*lpDateFmtEnumProc)("d.MM.yy")) return TRUE;
2852 return TRUE;
2853 case DATE_LONGDATE:
2854 if(!(*lpDateFmtEnumProc)("d MMMM yyyy")) return TRUE;
2855 if(!(*lpDateFmtEnumProc)("dddd, d MMMM yyyy")) return TRUE;
2856 return TRUE;
2857 default:
2858 FIXME("Unknown date format (%ld)\n", dwFlags);
2859 SetLastError(ERROR_INVALID_PARAMETER);
2860 return FALSE;
2861 }
2862 }
2863
2864 case 0x00001809: /* (Loc,"en_IE") */
2865 {
2866 switch(dwFlags)
2867 {
2868 case DATE_SHORTDATE:
2869 if(!(*lpDateFmtEnumProc)("dd/MM/yy")) return TRUE;
2870 if(!(*lpDateFmtEnumProc)("d/M/yy")) return TRUE;
2871 if(!(*lpDateFmtEnumProc)("d.M.yy")) return TRUE;
2872 return TRUE;
2873 case DATE_LONGDATE:
2874 if(!(*lpDateFmtEnumProc)("dd MMMM yyyy")) return TRUE;
2875 if(!(*lpDateFmtEnumProc)("d MMMM yyyy")) return TRUE;
2876 return TRUE;
2877 default:
2878 FIXME("Unknown date format (%ld)\n", dwFlags);
2879 SetLastError(ERROR_INVALID_PARAMETER);
2880 return FALSE;
2881 }
2882 }
2883
2884 case 0x00001c09: /* (Loc,"en_ZA") */
2885 {
2886 switch(dwFlags)
2887 {
2888 case DATE_SHORTDATE:
2889 if(!(*lpDateFmtEnumProc)("yy/MM/dd")) return TRUE;
2890 return TRUE;
2891 case DATE_LONGDATE:
2892 if(!(*lpDateFmtEnumProc)("dd MMMM yyyy")) return TRUE;
2893 return TRUE;
2894 default:
2895 FIXME("Unknown date format (%ld)\n", dwFlags);
2896 SetLastError(ERROR_INVALID_PARAMETER);
2897 return FALSE;
2898 }
2899 }
2900
2901 case 0x00002009: /* (Loc,"en_JM") */
2902 {
2903 switch(dwFlags)
2904 {
2905 case DATE_SHORTDATE:
2906 if(!(*lpDateFmtEnumProc)("dd/MM/yyyy")) return TRUE;
2907 return TRUE;
2908 case DATE_LONGDATE:
2909 if(!(*lpDateFmtEnumProc)("dddd,MMMM dd,yyyy")) return TRUE;
2910 if(!(*lpDateFmtEnumProc)("MMMM dd,yyyy")) return TRUE;
2911 if(!(*lpDateFmtEnumProc)("dddd,dd MMMM,yyyy")) return TRUE;
2912 if(!(*lpDateFmtEnumProc)("dd MMMM,yyyy")) return TRUE;
2913 return TRUE;
2914 default:
2915 FIXME("Unknown date format (%ld)\n", dwFlags);
2916 SetLastError(ERROR_INVALID_PARAMETER);
2917 return FALSE;
2918 }
2919 }
2920
2921 case 0x00002809: /* (Loc,"en_BZ") */
2922 case 0x00002c09: /* (Loc,"en_TT") */
2923 {
2924 switch(dwFlags)
2925 {
2926 case DATE_SHORTDATE:
2927 if(!(*lpDateFmtEnumProc)("dd/MM/yyyy")) return TRUE;
2928 return TRUE;
2929 case DATE_LONGDATE:
2930 if(!(*lpDateFmtEnumProc)("dddd,dd MMMM yyyy")) return TRUE;
2931 return TRUE;
2932 default:
2933 FIXME("Unknown date format (%ld)\n", dwFlags);
2934 SetLastError(ERROR_INVALID_PARAMETER);
2935 return FALSE;
2936 }
2937 }
2938
2939 default: /* default to US English "en_US" */
2940 {
2941 switch(dwFlags)
2942 {
2943 case DATE_SHORTDATE:
2944 if(!(*lpDateFmtEnumProc)("M/d/yy")) return TRUE;
2945 if(!(*lpDateFmtEnumProc)("M/d/yyyy")) return TRUE;
2946 if(!(*lpDateFmtEnumProc)("MM/dd/yy")) return TRUE;
2947 if(!(*lpDateFmtEnumProc)("MM/dd/yyyy")) return TRUE;
2948 if(!(*lpDateFmtEnumProc)("yy/MM/dd")) return TRUE;
2949 if(!(*lpDateFmtEnumProc)("dd-MMM-yy")) return TRUE;
2950 return TRUE;
2951 case DATE_LONGDATE:
2952 if(!(*lpDateFmtEnumProc)("dddd, MMMM dd, yyyy")) return TRUE;
2953 if(!(*lpDateFmtEnumProc)("MMMM dd, yyyy")) return TRUE;
2954 if(!(*lpDateFmtEnumProc)("dddd, dd MMMM, yyyy")) return TRUE;
2955 if(!(*lpDateFmtEnumProc)("dd MMMM, yyyy")) return TRUE;
2956 return TRUE;
2957 default:
2958 FIXME("Unknown date format (%ld)\n", dwFlags);
2959 SetLastError(ERROR_INVALID_PARAMETER);
2960 return FALSE;
2961 }
2962 }
2963 }
2964}
2965
2966/**************************************************************************
2967 * EnumDateFormatsW (KERNEL32.199)
2968 */
2969BOOL WINAPI EnumDateFormatsW(
2970 DATEFMT_ENUMPROCW lpDateFmtEnumProc, LCID Locale, DWORD dwFlags)
2971{
2972 FIXME("(%p, %ld, %ld): stub\n", lpDateFmtEnumProc, Locale, dwFlags);
2973 SetLastError(ERROR_CALL_NOT_IMPLEMENTED);
2974 return FALSE;
2975}
2976
2977/**************************************************************************
2978 * EnumTimeFormatsA (KERNEL32.210)
2979 */
2980BOOL WINAPI EnumTimeFormatsA(
2981 TIMEFMT_ENUMPROCA lpTimeFmtEnumProc, LCID Locale, DWORD dwFlags)
2982{
2983 LCID Loc = GetUserDefaultLCID();
2984 if(!lpTimeFmtEnumProc)
2985 {
2986 SetLastError(ERROR_INVALID_PARAMETER);
2987 return FALSE;
2988 }
2989 if(dwFlags)
2990 {
2991 FIXME("Unknown time format (%ld)\n", dwFlags);
2992 }
2993
2994 switch( Loc )
2995 {
2996 case 0x00000407: /* (Loc,"de_DE") */
2997 {
2998 if(!(*lpTimeFmtEnumProc)("HH.mm")) return TRUE;
2999 if(!(*lpTimeFmtEnumProc)("HH:mm:ss")) return TRUE;
3000 if(!(*lpTimeFmtEnumProc)("H:mm:ss")) return TRUE;
3001 if(!(*lpTimeFmtEnumProc)("H.mm")) return TRUE;
3002 if(!(*lpTimeFmtEnumProc)("H.mm'Uhr'")) return TRUE;
3003 return TRUE;
3004 }
3005
3006 case 0x0000040c: /* (Loc,"fr_FR") */
3007 case 0x00000c0c: /* (Loc,"fr_CA") */
3008 {
3009 if(!(*lpTimeFmtEnumProc)("H:mm")) return TRUE;
3010 if(!(*lpTimeFmtEnumProc)("HH:mm:ss")) return TRUE;
3011 if(!(*lpTimeFmtEnumProc)("H:mm:ss")) return TRUE;
3012 if(!(*lpTimeFmtEnumProc)("HH.mm")) return TRUE;
3013 if(!(*lpTimeFmtEnumProc)("HH'h'mm")) return TRUE;
3014 return TRUE;
3015 }
3016
3017 case 0x00000809: /* (Loc,"en_UK") */
3018 case 0x00000c09: /* (Loc,"en_AU") */
3019 case 0x00001409: /* (Loc,"en_NZ") */
3020 case 0x00001809: /* (Loc,"en_IE") */
3021 {
3022 if(!(*lpTimeFmtEnumProc)("h:mm:ss tt")) return TRUE;
3023 if(!(*lpTimeFmtEnumProc)("HH:mm:ss")) return TRUE;
3024 if(!(*lpTimeFmtEnumProc)("H:mm:ss")) return TRUE;
3025 return TRUE;
3026 }
3027
3028 case 0x00001c09: /* (Loc,"en_ZA") */
3029 case 0x00002809: /* (Loc,"en_BZ") */
3030 case 0x00002c09: /* (Loc,"en_TT") */
3031 {
3032 if(!(*lpTimeFmtEnumProc)("h:mm:ss tt")) return TRUE;
3033 if(!(*lpTimeFmtEnumProc)("hh:mm:ss tt")) return TRUE;
3034 return TRUE;
3035 }
3036
3037 default: /* default to US style "en_US" */
3038 {
3039 if(!(*lpTimeFmtEnumProc)("h:mm:ss tt")) return TRUE;
3040 if(!(*lpTimeFmtEnumProc)("hh:mm:ss tt")) return TRUE;
3041 if(!(*lpTimeFmtEnumProc)("H:mm:ss")) return TRUE;
3042 if(!(*lpTimeFmtEnumProc)("HH:mm:ss")) return TRUE;
3043 return TRUE;
3044 }
3045 }
3046}
3047
3048/**************************************************************************
3049 * EnumTimeFormatsW (KERNEL32.211)
3050 */
3051BOOL WINAPI EnumTimeFormatsW(
3052 TIMEFMT_ENUMPROCW lpTimeFmtEnumProc, LCID Locale, DWORD dwFlags)
3053{
3054 FIXME("(%p,%ld,%ld): stub\n", lpTimeFmtEnumProc, Locale, dwFlags);
3055 SetLastError(ERROR_CALL_NOT_IMPLEMENTED);
3056 return FALSE;
3057}
3058
3059/**************************************************************************
3060 * This function is used just locally !
3061 * Description: Inverts a string.
3062 */
3063static void OLE_InvertString(char* string)
3064{
3065 char sTmpArray[128];
3066 INT counter, i = 0;
3067
3068 for (counter = strlen(string); counter > 0; counter--)
3069 {
3070 memcpy(sTmpArray + i, string + counter-1, 1);
3071 i++;
3072 }
3073 memcpy(sTmpArray + i, "\0", 1);
3074 strcpy(string, sTmpArray);
3075}
3076
3077/***************************************************************************************
3078 * This function is used just locally !
3079 * Description: Test if the given string (psNumber) is valid or not.
3080 * The valid characters are the following:
3081 * - Characters '0' through '9'.
3082 * - One decimal point (dot) if the number is a floating-point value.
3083 * - A minus sign in the first character position if the number is
3084 * a negative value.
3085 * If the function succeeds, psBefore/psAfter will point to the string
3086 * on the right/left of the decimal symbol. pbNegative indicates if the
3087 * number is negative.
3088 */
3089static INT OLE_GetNumberComponents(char* pInput, char* psBefore, char* psAfter, BOOL* pbNegative)
3090{
3091char sNumberSet[] = "0123456789";
3092BOOL bInDecimal = FALSE;
3093
3094 /* Test if we do have a minus sign */
3095 if ( *pInput == '-' )
3096 {
3097 *pbNegative = TRUE;
3098 pInput++; /* Jump to the next character. */
3099 }
3100
3101 while(*pInput != '\0')
3102 {
3103 /* Do we have a valid numeric character */
3104 if ( strchr(sNumberSet, *pInput) != NULL )
3105 {
3106 if (bInDecimal == TRUE)
3107 *psAfter++ = *pInput;
3108 else
3109 *psBefore++ = *pInput;
3110 }
3111 else
3112 {
3113 /* Is this a decimal point (dot) */
3114 if ( *pInput == '.' )
3115 {
3116 /* Is it the first time we find it */
3117 if ((bInDecimal == FALSE))
3118 bInDecimal = TRUE;
3119 else
3120 return -1; /* ERROR: Invalid parameter */
3121 }
3122 else
3123 {
3124 /* It's neither a numeric character, nor a decimal point.
3125 * Thus, return an error.
3126 */
3127 return -1;
3128 }
3129 }
3130 pInput++;
3131 }
3132
3133 /* Add an End of Line character to the output buffers */
3134 *psBefore = '\0';
3135 *psAfter = '\0';
3136
3137 return 0;
3138}
3139
3140/**************************************************************************
3141 * This function is used just locally !
3142 * Description: A number could be formatted using different numbers
3143 * of "digits in group" (example: 4;3;2;0).
3144 * The first parameter of this function is an array
3145 * containing the rule to be used. It's format is the following:
3146 * |NDG|DG1|DG2|...|0|
3147 * where NDG is the number of used "digits in group" and DG1, DG2,
3148 * are the corresponding "digits in group".
3149 * Thus, this function returns the grouping value in the array
3150 * pointed by the second parameter.
3151 */
3152static INT OLE_GetGrouping(char* sRule, INT index)
3153{
3154 char sData[2], sRuleSize[2];
3155 INT nData, nRuleSize;
3156
3157 memcpy(sRuleSize, sRule, 1);
3158 memcpy(sRuleSize+1, "\0", 1);
3159 nRuleSize = atoi(sRuleSize);
3160
3161 if (index > 0 && index < nRuleSize)
3162 {
3163 memcpy(sData, sRule+index, 1);
3164 memcpy(sData+1, "\0", 1);
3165 nData = atoi(sData);
3166 }
3167
3168 else
3169 {
3170 memcpy(sData, sRule+nRuleSize-1, 1);
3171 memcpy(sData+1, "\0", 1);
3172 nData = atoi(sData);
3173 }
3174
3175 return nData;
3176}
3177
3178/**************************************************************************
3179 * GetNumberFormatA (KERNEL32.355)
3180 */
3181INT WINAPI GetNumberFormatA(LCID locale, DWORD dwflags,
3182 LPCSTR lpvalue, const NUMBERFMTA * lpFormat,
3183 LPSTR lpNumberStr, int cchNumber)
3184{
3185 char sNumberDigits[3], sDecimalSymbol[5], sDigitsInGroup[11], sDigitGroupSymbol[5], sILZero[2];
3186 INT nNumberDigits, nNumberDecimal, i, j, nCounter, nStep, nRuleIndex, nGrouping, nDigits, retVal, nLZ;
3187 char sNumber[128], sDestination[128], sDigitsAfterDecimal[10], sDigitsBeforeDecimal[128];
3188 char sRule[10], sSemiColumn[]=";", sBuffer[5], sNegNumber[2];
3189 char *pStr = NULL, *pTmpStr = NULL;
3190 LCID systemDefaultLCID;
3191 BOOL bNegative = FALSE;
3192 enum Operations
3193 {
3194 USE_PARAMETER,
3195 USE_LOCALEINFO,
3196 USE_SYSTEMDEFAULT,
3197 RETURN_ERROR
3198 } used_operation;
3199
3200 strncpy(sNumber, lpvalue, 128);
3201 sNumber[127] = '\0';
3202
3203 /* Make sure we have a valid input string, get the number
3204 * of digits before and after the decimal symbol, and check
3205 * if this is a negative number.
3206 */
3207 if ( OLE_GetNumberComponents(sNumber, sDigitsBeforeDecimal, sDigitsAfterDecimal, &bNegative) != -1)
3208 {
3209 nNumberDecimal = strlen(sDigitsBeforeDecimal);
3210 nDigits = strlen(sDigitsAfterDecimal);
3211 }
3212 else
3213 {
3214 SetLastError(ERROR_INVALID_PARAMETER);
3215 return 0;
3216 }
3217
3218 /* Which source will we use to format the string */
3219 used_operation = RETURN_ERROR;
3220 if (lpFormat != NULL)
3221 {
3222 if (dwflags == 0)
3223 used_operation = USE_PARAMETER;
3224 }
3225 else
3226 {
3227 if (dwflags & LOCALE_NOUSEROVERRIDE)
3228 used_operation = USE_LOCALEINFO;
3229 else
3230 used_operation = USE_SYSTEMDEFAULT;
3231 }
3232
3233 /* Load the fields we need */
3234 switch(used_operation)
3235 {
3236 case USE_LOCALEINFO:
3237 GetLocaleInfoA(locale, LOCALE_IDIGITS, sNumberDigits, sizeof(sNumberDigits));
3238 GetLocaleInfoA(locale, LOCALE_SDECIMAL, sDecimalSymbol, sizeof(sDecimalSymbol));
3239 GetLocaleInfoA(locale, LOCALE_SGROUPING, sDigitsInGroup, sizeof(sDigitsInGroup));
3240 GetLocaleInfoA(locale, LOCALE_STHOUSAND, sDigitGroupSymbol, sizeof(sDigitGroupSymbol));
3241 GetLocaleInfoA(locale, LOCALE_ILZERO, sILZero, sizeof(sILZero));
3242 GetLocaleInfoA(locale, LOCALE_INEGNUMBER, sNegNumber, sizeof(sNegNumber));
3243 break;
3244 case USE_PARAMETER:
3245 sprintf(sNumberDigits, "%d",lpFormat->NumDigits);
3246 strcpy(sDecimalSymbol, lpFormat->lpDecimalSep);
3247 sprintf(sDigitsInGroup, "%d;0",lpFormat->Grouping);
3248 strcpy(sDigitGroupSymbol, lpFormat->lpThousandSep);
3249 sprintf(sILZero, "%d",lpFormat->LeadingZero);
3250 sprintf(sNegNumber, "%d",lpFormat->NegativeOrder);
3251 break;
3252 case USE_SYSTEMDEFAULT:
3253 systemDefaultLCID = GetSystemDefaultLCID();
3254 GetLocaleInfoA(systemDefaultLCID, LOCALE_IDIGITS, sNumberDigits, sizeof(sNumberDigits));
3255 GetLocaleInfoA(systemDefaultLCID, LOCALE_SDECIMAL, sDecimalSymbol, sizeof(sDecimalSymbol));
3256 GetLocaleInfoA(systemDefaultLCID, LOCALE_SGROUPING, sDigitsInGroup, sizeof(sDigitsInGroup));
3257 GetLocaleInfoA(systemDefaultLCID, LOCALE_STHOUSAND, sDigitGroupSymbol, sizeof(sDigitGroupSymbol));
3258 GetLocaleInfoA(systemDefaultLCID, LOCALE_ILZERO, sILZero, sizeof(sILZero));
3259 GetLocaleInfoA(systemDefaultLCID, LOCALE_INEGNUMBER, sNegNumber, sizeof(sNegNumber));
3260 break;
3261 default:
3262 SetLastError(ERROR_INVALID_PARAMETER);
3263 return 0;
3264 }
3265
3266 nNumberDigits = atoi(sNumberDigits);
3267
3268 /* Remove the ";" */
3269 i=0;
3270 j = 1;
3271 for (nCounter=0; nCounter<strlen(sDigitsInGroup); nCounter++)
3272 {
3273 if ( memcmp(sDigitsInGroup + nCounter, sSemiColumn, 1) != 0 )
3274 {
3275 memcpy(sRule + j, sDigitsInGroup + nCounter, 1);
3276 i++;
3277 j++;
3278 }
3279 }
3280 sprintf(sBuffer, "%d", i);
3281 memcpy(sRule, sBuffer, 1); /* Number of digits in the groups ( used by OLE_GetGrouping() ) */
3282 memcpy(sRule + j, "\0", 1);
3283
3284 /* First, format the digits before the decimal. */
3285 if ((nNumberDecimal>0) && (atoi(sDigitsBeforeDecimal) != 0))
3286 {
3287 /* Working on an inverted string is easier ! */
3288 OLE_InvertString(sDigitsBeforeDecimal);
3289
3290 nStep = nCounter = i = j = 0;
3291 nRuleIndex = 1;
3292 nGrouping = OLE_GetGrouping(sRule, nRuleIndex);
3293
3294 /* Here, we will loop until we reach the end of the string.
3295 * An internal counter (j) is used in order to know when to
3296 * insert the "digit group symbol".
3297 */
3298 while (nNumberDecimal > 0)
3299 {
3300 i = nCounter + nStep;
3301 memcpy(sDestination + i, sDigitsBeforeDecimal + nCounter, 1);
3302 nCounter++;
3303 j++;
3304 if (j >= nGrouping)
3305 {
3306 j = 0;
3307 if (nRuleIndex < sRule[0])
3308 nRuleIndex++;
3309 nGrouping = OLE_GetGrouping(sRule, nRuleIndex);
3310 memcpy(sDestination + i+1, sDigitGroupSymbol, strlen(sDigitGroupSymbol));
3311 nStep+= strlen(sDigitGroupSymbol);
3312 }
3313
3314 nNumberDecimal--;
3315 }
3316
3317 memcpy(sDestination + i+1, "\0", 1);
3318 /* Get the string in the right order ! */
3319 OLE_InvertString(sDestination);
3320 }
3321 else
3322 {
3323 nLZ = atoi(sILZero);
3324 if (nLZ != 0)
3325 {
3326 /* Use 0.xxx instead of .xxx */
3327 memcpy(sDestination, "0", 1);
3328 memcpy(sDestination+1, "\0", 1);
3329 }
3330 else
3331 memcpy(sDestination, "\0", 1);
3332
3333 }
3334
3335 /* Second, format the digits after the decimal. */
3336 j = 0;
3337 nCounter = nNumberDigits;
3338 if ( (nDigits>0) && (pStr = strstr (sNumber, ".")) )
3339 {
3340 i = strlen(sNumber) - strlen(pStr) + 1;
3341 strncpy ( sDigitsAfterDecimal, sNumber + i, nNumberDigits);
3342 j = strlen(sDigitsAfterDecimal);
3343 if (j < nNumberDigits)
3344 nCounter = nNumberDigits-j;
3345 }
3346 for (i=0;i<nCounter;i++)
3347 memcpy(sDigitsAfterDecimal+i+j, "0", 1);
3348 memcpy(sDigitsAfterDecimal + nNumberDigits, "\0", 1);
3349
3350 i = strlen(sDestination);
3351 j = strlen(sDigitsAfterDecimal);
3352 /* Finally, construct the resulting formatted string. */
3353
3354 for (nCounter=0; nCounter<i; nCounter++)
3355 memcpy(sNumber + nCounter, sDestination + nCounter, 1);
3356
3357 memcpy(sNumber + nCounter, sDecimalSymbol, strlen(sDecimalSymbol));
3358
3359 for (i=0; i<j; i++)
3360 memcpy(sNumber + nCounter+i+strlen(sDecimalSymbol), sDigitsAfterDecimal + i, 1);
3361 memcpy(sNumber + nCounter+i+strlen(sDecimalSymbol), "\0", 1);
3362
3363 /* Is it a negative number */
3364 if (bNegative == TRUE)
3365 {
3366 i = atoi(sNegNumber);
3367 pStr = sDestination;
3368 pTmpStr = sNumber;
3369 switch (i)
3370 {
3371 case 0:
3372 *pStr++ = '(';
3373 while (*sNumber != '\0')
3374 *pStr++ = *pTmpStr++;
3375 *pStr++ = ')';
3376 break;
3377 case 1:
3378 *pStr++ = '-';
3379 while (*pTmpStr != '\0')
3380 *pStr++ = *pTmpStr++;
3381 break;
3382 case 2:
3383 *pStr++ = '-';
3384 *pStr++ = ' ';
3385 while (*pTmpStr != '\0')
3386 *pStr++ = *pTmpStr++;
3387 break;
3388 case 3:
3389 while (*pTmpStr != '\0')
3390 *pStr++ = *pTmpStr++;
3391 *pStr++ = '-';
3392 break;
3393 case 4:
3394 while (*pTmpStr != '\0')
3395 *pStr++ = *pTmpStr++;
3396 *pStr++ = ' ';
3397 *pStr++ = '-';
3398 break;
3399 default:
3400 while (*pTmpStr != '\0')
3401 *pStr++ = *pTmpStr++;
3402 break;
3403 }
3404 }
3405 else
3406 strcpy(sDestination, sNumber);
3407
3408 /* If cchNumber is zero, then returns the number of bytes or characters
3409 * required to hold the formatted number string
3410 */
3411 if (cchNumber==0)
3412 retVal = strlen(sDestination) + 1;
3413 else
3414 {
3415 strncpy (lpNumberStr, sDestination, cchNumber-1);
3416 *(lpNumberStr+cchNumber-1) = '\0'; /* ensure we got a NULL at the end */
3417 retVal = strlen(lpNumberStr);
3418 }
3419
3420 return retVal;
3421}
3422
3423/**************************************************************************
3424 * GetNumberFormatW (KERNEL32.@)
3425 */
3426INT WINAPI GetNumberFormatW(LCID locale, DWORD dwflags,
3427 LPCWSTR lpvalue, const NUMBERFMTW * lpFormat,
3428 LPWSTR lpNumberStr, int cchNumber)
3429{
3430 FIXME("%s: stub, no reformating done\n",debugstr_w(lpvalue));
3431
3432 lstrcpynW( lpNumberStr, lpvalue, cchNumber );
3433 return cchNumber? strlenW( lpNumberStr ) : 0;
3434}
3435
3436/**************************************************************************
3437 * GetCurrencyFormatA (KERNEL32.302)
3438 */
3439INT WINAPI GetCurrencyFormatA(LCID locale, DWORD dwflags,
3440 LPCSTR lpvalue, const CURRENCYFMTA * lpFormat,
3441 LPSTR lpCurrencyStr, int cchCurrency)
3442{
3443 UINT nPosOrder, nNegOrder;
3444 INT retVal;
3445 char sDestination[128], sNegOrder[8], sPosOrder[8], sCurrencySymbol[8];
3446 char *pDestination = sDestination;
3447 char sNumberFormated[128];
3448 char *pNumberFormated = sNumberFormated;
3449 LCID systemDefaultLCID;
3450 BOOL bIsPositive = FALSE, bValidFormat = FALSE;
3451 enum Operations
3452 {
3453 USE_PARAMETER,
3454 USE_LOCALEINFO,
3455 USE_SYSTEMDEFAULT,
3456 RETURN_ERROR
3457 } used_operation;
3458
3459 NUMBERFMTA numberFmt;
3460
3461 /* Which source will we use to format the string */
3462 used_operation = RETURN_ERROR;
3463 if (lpFormat != NULL)
3464 {
3465 if (dwflags == 0)
3466 used_operation = USE_PARAMETER;
3467 }
3468 else
3469 {
3470 if (dwflags & LOCALE_NOUSEROVERRIDE)
3471 used_operation = USE_LOCALEINFO;
3472 else
3473 used_operation = USE_SYSTEMDEFAULT;
3474 }
3475
3476 /* Load the fields we need */
3477 switch(used_operation)
3478 {
3479 case USE_LOCALEINFO:
3480 /* Specific to CURRENCYFMTA*/
3481 GetLocaleInfoA(locale, LOCALE_INEGCURR, sNegOrder, sizeof(sNegOrder));
3482 GetLocaleInfoA(locale, LOCALE_ICURRENCY, sPosOrder, sizeof(sPosOrder));
3483 GetLocaleInfoA(locale, LOCALE_SCURRENCY, sCurrencySymbol, sizeof(sCurrencySymbol));
3484
3485 nPosOrder = atoi(sPosOrder);
3486 nNegOrder = atoi(sNegOrder);
3487 break;
3488 case USE_PARAMETER:
3489 /* Specific to CURRENCYFMTA*/
3490 nNegOrder = lpFormat->NegativeOrder;
3491 nPosOrder = lpFormat->PositiveOrder;
3492 strcpy(sCurrencySymbol, lpFormat->lpCurrencySymbol);
3493 break;
3494 case USE_SYSTEMDEFAULT:
3495 systemDefaultLCID = GetSystemDefaultLCID();
3496 /* Specific to CURRENCYFMTA*/
3497 GetLocaleInfoA(systemDefaultLCID, LOCALE_INEGCURR, sNegOrder, sizeof(sNegOrder));
3498 GetLocaleInfoA(systemDefaultLCID, LOCALE_ICURRENCY, sPosOrder, sizeof(sPosOrder));
3499 GetLocaleInfoA(systemDefaultLCID, LOCALE_SCURRENCY, sCurrencySymbol, sizeof(sCurrencySymbol));
3500
3501 nPosOrder = atoi(sPosOrder);
3502 nNegOrder = atoi(sNegOrder);
3503 break;
3504 default:
3505 SetLastError(ERROR_INVALID_PARAMETER);
3506 return 0;
3507 }
3508
3509 /* Construct a temporary number format structure */
3510 if (lpFormat != NULL)
3511 {
3512 numberFmt.NumDigits = lpFormat->NumDigits;
3513 numberFmt.LeadingZero = lpFormat->LeadingZero;
3514 numberFmt.Grouping = lpFormat->Grouping;
3515 numberFmt.NegativeOrder = 0;
3516 numberFmt.lpDecimalSep = lpFormat->lpDecimalSep;
3517 numberFmt.lpThousandSep = lpFormat->lpThousandSep;
3518 bValidFormat = TRUE;
3519 }
3520
3521 /* Make a call to GetNumberFormatA() */
3522 if (*lpvalue == '-')
3523 {
3524 bIsPositive = FALSE;
3525 retVal = GetNumberFormatA(locale,0,lpvalue+1,(bValidFormat)?&numberFmt:NULL,pNumberFormated,128);
3526 }
3527 else
3528 {
3529 bIsPositive = TRUE;
3530 retVal = GetNumberFormatA(locale,0,lpvalue,(bValidFormat)?&numberFmt:NULL,pNumberFormated,128);
3531 }
3532
3533 if (retVal == 0)
3534 return 0;
3535
3536 /* construct the formatted string */
3537 if (bIsPositive)
3538 {
3539 switch (nPosOrder)
3540 {
3541 case 0: /* Prefix, no separation */
3542 strcpy (pDestination, sCurrencySymbol);
3543 strcat (pDestination, pNumberFormated);
3544 break;
3545 case 1: /* Suffix, no separation */
3546 strcpy (pDestination, pNumberFormated);
3547 strcat (pDestination, sCurrencySymbol);
3548 break;
3549 case 2: /* Prefix, 1 char separation */
3550 strcpy (pDestination, sCurrencySymbol);
3551 strcat (pDestination, " ");
3552 strcat (pDestination, pNumberFormated);
3553 break;
3554 case 3: /* Suffix, 1 char separation */
3555 strcpy (pDestination, pNumberFormated);
3556 strcat (pDestination, " ");
3557 strcat (pDestination, sCurrencySymbol);
3558 break;
3559 default:
3560 SetLastError(ERROR_INVALID_PARAMETER);
3561 return 0;
3562 }
3563 }
3564 else /* negative number */
3565 {
3566 switch (nNegOrder)
3567 {
3568 case 0: /* format: ($1.1) */
3569 strcpy (pDestination, "(");
3570 strcat (pDestination, sCurrencySymbol);
3571 strcat (pDestination, pNumberFormated);
3572 strcat (pDestination, ")");
3573 break;
3574 case 1: /* format: -$1.1 */
3575 strcpy (pDestination, "-");
3576 strcat (pDestination, sCurrencySymbol);
3577 strcat (pDestination, pNumberFormated);
3578 break;
3579 case 2: /* format: $-1.1 */
3580 strcpy (pDestination, sCurrencySymbol);
3581 strcat (pDestination, "-");
3582 strcat (pDestination, pNumberFormated);
3583 break;
3584 case 3: /* format: $1.1- */
3585 strcpy (pDestination, sCurrencySymbol);
3586 strcat (pDestination, pNumberFormated);
3587 strcat (pDestination, "-");
3588 break;
3589 case 4: /* format: (1.1$) */
3590 strcpy (pDestination, "(");
3591 strcat (pDestination, pNumberFormated);
3592 strcat (pDestination, sCurrencySymbol);
3593 strcat (pDestination, ")");
3594 break;
3595 case 5: /* format: -1.1$ */
3596 strcpy (pDestination, "-");
3597 strcat (pDestination, pNumberFormated);
3598 strcat (pDestination, sCurrencySymbol);
3599 break;
3600 case 6: /* format: 1.1-$ */
3601 strcpy (pDestination, pNumberFormated);
3602 strcat (pDestination, "-");
3603 strcat (pDestination, sCurrencySymbol);
3604 break;
3605 case 7: /* format: 1.1$- */
3606 strcpy (pDestination, pNumberFormated);
3607 strcat (pDestination, sCurrencySymbol);
3608 strcat (pDestination, "-");
3609 break;
3610 case 8: /* format: -1.1 $ */
3611 strcpy (pDestination, "-");
3612 strcat (pDestination, pNumberFormated);
3613 strcat (pDestination, " ");
3614 strcat (pDestination, sCurrencySymbol);
3615 break;
3616 case 9: /* format: -$ 1.1 */
3617 strcpy (pDestination, "-");
3618 strcat (pDestination, sCurrencySymbol);
3619 strcat (pDestination, " ");
3620 strcat (pDestination, pNumberFormated);
3621 break;
3622 case 10: /* format: 1.1 $- */
3623 strcpy (pDestination, pNumberFormated);
3624 strcat (pDestination, " ");
3625 strcat (pDestination, sCurrencySymbol);
3626 strcat (pDestination, "-");
3627 break;
3628 case 11: /* format: $ 1.1- */
3629 strcpy (pDestination, sCurrencySymbol);
3630 strcat (pDestination, " ");
3631 strcat (pDestination, pNumberFormated);
3632 strcat (pDestination, "-");
3633 break;
3634 case 12: /* format: $ -1.1 */
3635 strcpy (pDestination, sCurrencySymbol);
3636 strcat (pDestination, " ");
3637 strcat (pDestination, "-");
3638 strcat (pDestination, pNumberFormated);
3639 break;
3640 case 13: /* format: 1.1- $ */
3641 strcpy (pDestination, pNumberFormated);
3642 strcat (pDestination, "-");
3643 strcat (pDestination, " ");
3644 strcat (pDestination, sCurrencySymbol);
3645 break;
3646 case 14: /* format: ($ 1.1) */
3647 strcpy (pDestination, "(");
3648 strcat (pDestination, sCurrencySymbol);
3649 strcat (pDestination, " ");
3650 strcat (pDestination, pNumberFormated);
3651 strcat (pDestination, ")");
3652 break;
3653 case 15: /* format: (1.1 $) */
3654 strcpy (pDestination, "(");
3655 strcat (pDestination, pNumberFormated);
3656 strcat (pDestination, " ");
3657 strcat (pDestination, sCurrencySymbol);
3658 strcat (pDestination, ")");
3659 break;
3660 default:
3661 SetLastError(ERROR_INVALID_PARAMETER);
3662 return 0;
3663 }
3664 }
3665
3666 if (cchCurrency == 0)
3667 return strlen(pDestination) + 1;
3668
3669 else
3670 {
3671 strncpy (lpCurrencyStr, pDestination, cchCurrency-1);
3672 *(lpCurrencyStr+cchCurrency-1) = '\0'; /* ensure we got a NULL at the end */
3673 return strlen(lpCurrencyStr);
3674 }
3675}
3676
3677/**************************************************************************
3678 * GetCurrencyFormatW (KERNEL32.303)
3679 */
3680INT WINAPI GetCurrencyFormatW(LCID locale, DWORD dwflags,
3681 LPCWSTR lpvalue, const CURRENCYFMTW * lpFormat,
3682 LPWSTR lpCurrencyStr, int cchCurrency)
3683{
3684 FIXME("This API function is NOT implemented !\n");
3685 return 0;
3686}
3687
3688/******************************************************************************
3689 * OLE2NLS_CheckLocale [intern]
3690 */
3691static LCID OLE2NLS_CheckLocale (LCID locale)
3692{
3693 if (!locale)
3694 { locale = LOCALE_SYSTEM_DEFAULT;
3695 }
3696
3697 if (locale == LOCALE_SYSTEM_DEFAULT)
3698 { return GetSystemDefaultLCID();
3699 }
3700 else if (locale == LOCALE_USER_DEFAULT)
3701 { return GetUserDefaultLCID();
3702 }
3703 else
3704 { return locale;
3705 }
3706}
3707/******************************************************************************
3708 * GetTimeFormatA [KERNEL32.422]
3709 * Makes an ASCII string of the time
3710 *
3711 * Formats date according to format, or locale default if format is
3712 * NULL. The format consists of literal characters and fields as follows:
3713 *
3714 * h hours with no leading zero (12-hour)
3715 * hh hours with full two digits
3716 * H hours with no leading zero (24-hour)
3717 * HH hours with full two digits
3718 * m minutes with no leading zero
3719 * mm minutes with full two digits
3720 * s seconds with no leading zero
3721 * ss seconds with full two digits
3722 * t time marker (A or P)
3723 * tt time marker (AM, PM)
3724 *
3725 */
3726INT WINAPI
3727GetTimeFormatA(LCID locale, /* [in] */
3728 DWORD flags, /* [in] */
3729 CONST SYSTEMTIME *xtime, /* [in] */
3730 LPCSTR format, /* [in] */
3731 LPSTR timestr, /* [out] */
3732 INT timelen /* [in] */)
3733{ char format_buf[40];
3734 LPCSTR thisformat;
3735 SYSTEMTIME t;
3736 LPSYSTEMTIME thistime;
3737 LCID thislocale=0;
3738 DWORD thisflags=LOCALE_STIMEFORMAT; /* standart timeformat */
3739 INT ret;
3740
3741 TRACE("GetTimeFormat(0x%04lx,0x%08lx,%p,%s,%p,%d)\n",locale,flags,xtime,format,timestr,timelen);
3742
3743 thislocale = OLE2NLS_CheckLocale ( locale );
3744
3745 if (format == NULL)
3746 { if (flags & LOCALE_NOUSEROVERRIDE) /*use system default*/
3747 { thislocale = GetSystemDefaultLCID();
3748 }
3749 GetLocaleInfoA(thislocale, thisflags, format_buf, sizeof(format_buf));
3750 thisformat = format_buf;
3751 }
3752 else
3753 { thisformat = format;
3754 }
3755
3756 if (xtime == NULL) /* NULL means use the current local time*/
3757 { GetLocalTime(&t);
3758 thistime = &t;
3759 }
3760 else
3761 { thistime = (LPSYSTEMTIME)xtime;
3762 /* Check that hour,min and sec is in range */
3763 }
3764 ret = OLE_GetFormatA(thislocale, thisflags, flags, thistime, thisformat,
3765 timestr, timelen);
3766 return ret;
3767}
3768
3769
3770/******************************************************************************
3771 * GetTimeFormatW [KERNEL32.423]
3772 * Makes a Unicode string of the time
3773 */
3774INT WINAPI
3775GetTimeFormatW(LCID locale, /* [in] */
3776 DWORD flags, /* [in] */
3777 CONST SYSTEMTIME *xtime, /* [in] */
3778 LPCWSTR format, /* [in] */
3779 LPWSTR timestr, /* [out] */
3780 INT timelen /* [in] */)
3781{ WCHAR format_buf[40];
3782 LPCWSTR thisformat;
3783 SYSTEMTIME t;
3784 LPSYSTEMTIME thistime;
3785 LCID thislocale=0;
3786 DWORD thisflags=LOCALE_STIMEFORMAT; /* standart timeformat */
3787 INT ret;
3788
3789 TRACE("GetTimeFormat(0x%04lx,0x%08lx,%p,%s,%p,%d)\n",locale,flags,
3790 xtime,debugstr_w(format),timestr,timelen);
3791
3792 thislocale = OLE2NLS_CheckLocale ( locale );
3793
3794 if (format == NULL)
3795 { if (flags & LOCALE_NOUSEROVERRIDE) /*use system default*/
3796 { thislocale = GetSystemDefaultLCID();
3797 }
3798 GetLocaleInfoW(thislocale, thisflags, format_buf, 40);
3799 thisformat = format_buf;
3800 }
3801 else
3802 { thisformat = format;
3803 }
3804
3805 if (xtime == NULL) /* NULL means use the current local time*/
3806 { GetLocalTime(&t);
3807 thistime = &t;
3808 }
3809 else
3810 { thistime = (LPSYSTEMTIME)xtime;
3811 }
3812
3813 ret = OLE_GetFormatW(thislocale, thisflags, flags, thistime, thisformat,
3814 timestr, timelen);
3815 return ret;
3816}
3817
3818/******************************************************************************
3819 * EnumCalendarInfoA [KERNEL32.196]
3820 */
3821BOOL WINAPI EnumCalendarInfoA(
3822 CALINFO_ENUMPROCA calinfoproc,LCID locale,CALID calendar,CALTYPE caltype
3823) {
3824 FIXME("(%p,0x%04lx,0x%08lx,0x%08lx),stub!\n",calinfoproc,locale,calendar,caltype);
3825 return FALSE;
3826}
3827
3828#ifdef __WIN32OS2__
3829/*****************************************************************************
3830 * Name : BOOL WIN32API EnumCalendarInfoW
3831 * Purpose : The EnumCalendarInfoW function enumerates calendar information
3832 * for a specified locale. The CalType parameter specifies the type
3833 * of calendar information to enumerate. The function returns the
3834 * specified calendar information for all applicable calendars for
3835 * the locale, or for a single requested calendar, depending on the
3836 * value of the Calendar parameter.
3837 * The EnumCalendarInfo function enumerates the calendar information
3838 * by calling an application-defined callback function. It passes
3839 * the callback function a pointer to a string buffer containing
3840 * the requested calendar information. This continues until either
3841 * the last applicable calendar is found or the callback function
3842 * returns FALSE.
3843 * Parameters: CALINFO_ENUMPROCW lpCalInfoEnumProc pointer to enumeration
3844 * callback function
3845 * LCID Locale locale whose calendar information is of interest
3846 * CALID Calendar calendar whose information is of interest
3847 * CALTYPE CalType type of calendar information of interest
3848 * Variables :
3849 * Result : If the function succeeds, the return value is nonzero.
3850 * If the function fails, the return value is zero
3851 * Remark :
3852 * Status : UNTESTED STUB
3853 *
3854 * Author : Markus Montkowski [Tha, 1998/05/21 17:46]
3855 *****************************************************************************/
3856
3857BOOL WIN32API EnumCalendarInfoW(CALINFO_ENUMPROCW lpCalInfoEnumProc,
3858 LCID Locale,
3859 CALID Calendar,
3860 CALTYPE CalType)
3861{
3862
3863 dprintf(("KERNEL32: EnumCalendarInfoW(%08x,%08x,%08x,%08x)not implemented\n",
3864 lpCalInfoEnumProc,
3865 Locale,
3866 Calendar,
3867 CalType
3868 ));
3869
3870 return (FALSE);
3871}
3872#endif
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