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c9e089e9 1/////////////////////////////////////////////////////////////////////////////
41e155b4 2// Name: src/common/wxchar.cpp
c9e089e9 3// Purpose: wxChar implementation
247c23b4
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4// Author: Ove Kaven
5// Modified by: Ron Lee, Francesco Montorsi
c9e089e9
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6// Created: 09/04/99
7// RCS-ID: $Id$
77ffb593 8// Copyright: (c) wxWidgets copyright
65571936 9// Licence: wxWindows licence
c9e089e9
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10/////////////////////////////////////////////////////////////////////////////
11
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12// ===========================================================================
13// headers, declarations, constants
14// ===========================================================================
15
16// For compilers that support precompilation, includes "wx.h".
17#include "wx/wxprec.h"
18
19#ifdef __BORLANDC__
8898456d 20 #pragma hdrstop
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21#endif
22
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23#include "wx/wxchar.h"
24
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25#define _ISOC9X_SOURCE 1 // to get vsscanf()
26#define _BSD_SOURCE 1 // to still get strdup()
27
84fff0b3 28#include <stdio.h>
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29#include <stdlib.h>
30#include <string.h>
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31
32#ifndef __WXWINCE__
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33 #include <time.h>
34 #include <locale.h>
1c193821 35#else
8898456d 36 #include "wx/msw/wince/time.h"
1c193821 37#endif
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38
39#ifndef WX_PRECOMP
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40 #include "wx/string.h"
41 #include "wx/hash.h"
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42 #include "wx/utils.h" // for wxMin and wxMax
43 #include "wx/log.h"
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44#endif
45
57f6da0d 46#if defined(__WIN32__) && defined(wxNEED_WX_CTYPE_H)
b3e8d00a 47 #include <windef.h>
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48 #include <winbase.h>
49 #include <winnls.h>
50 #include <winnt.h>
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51#endif
52
31907d03 53#if defined(__MWERKS__) && __MSL__ >= 0x6000
52cbcda3 54namespace std {}
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55using namespace std ;
56#endif
57
d0bdc3ca 58#if wxUSE_WCHAR_T
434d2cb3 59size_t WXDLLEXPORT wxMB2WC(wchar_t *buf, const char *psz, size_t n)
c9e089e9 60{
2b5f62a0 61 // assume that we have mbsrtowcs() too if we have wcsrtombs()
fe190003 62#ifdef HAVE_WCSRTOMBS
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63 mbstate_t mbstate;
64 memset(&mbstate, 0, sizeof(mbstate_t));
65#endif
66
c9e089e9 67 if (buf) {
923d3156 68 if (!n || !*psz) {
223d09f6 69 if (n) *buf = wxT('\0');
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70 return 0;
71 }
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72#ifdef HAVE_WCSRTOMBS
73 return mbsrtowcs(buf, &psz, n, &mbstate);
74#else
1e96e503 75 return wxMbstowcs(buf, psz, n);
2b5f62a0 76#endif
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77 }
78
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79 // note that we rely on common (and required by Unix98 but unfortunately not
80 // C99) extension which allows to call mbs(r)towcs() with NULL output pointer
81 // to just get the size of the needed buffer -- this is needed as otherwise
82 // we have no idea about how much space we need and if the CRT doesn't
83 // support it (the only currently known example being Metrowerks, see
84 // wx/wxchar.h) we don't use its mbstowcs() at all
b3e8d00a 85#ifdef HAVE_WCSRTOMBS
c9e089e9 86 return mbsrtowcs((wchar_t *) NULL, &psz, 0, &mbstate);
2b5f62a0 87#else
1e96e503 88 return wxMbstowcs((wchar_t *) NULL, psz, 0);
2b5f62a0 89#endif
c9e089e9
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90}
91
434d2cb3 92size_t WXDLLEXPORT wxWC2MB(char *buf, const wchar_t *pwz, size_t n)
c9e089e9 93{
fe190003 94#ifdef HAVE_WCSRTOMBS
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95 mbstate_t mbstate;
96 memset(&mbstate, 0, sizeof(mbstate_t));
97#endif
98
c9e089e9 99 if (buf) {
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100 if (!n || !*pwz) {
101 // glibc2.1 chokes on null input
102 if (n) *buf = '\0';
103 return 0;
104 }
fe190003 105#ifdef HAVE_WCSRTOMBS
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106 return wcsrtombs(buf, &pwz, n, &mbstate);
107#else
1e96e503 108 return wxWcstombs(buf, pwz, n);
2b5f62a0 109#endif
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110 }
111
fe190003 112#ifdef HAVE_WCSRTOMBS
c9e089e9 113 return wcsrtombs((char *) NULL, &pwz, 0, &mbstate);
2b5f62a0 114#else
1e96e503 115 return wxWcstombs((char *) NULL, pwz, 0);
2b5f62a0 116#endif
c9e089e9 117}
b3e8d00a 118#endif // wxUSE_WCHAR_T
c9e089e9 119
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120bool WXDLLEXPORT wxOKlibc()
121{
5283098e 122#if wxUSE_WCHAR_T && defined(__UNIX__) && defined(__GLIBC__) && !defined(__WINE__)
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123 // glibc 2.0 uses UTF-8 even when it shouldn't
124 wchar_t res = 0;
434d2cb3 125 if ((MB_CUR_MAX == 2) &&
66b3ec7f 126 (wxMB2WC(&res, "\xdd\xa5", 1) == 1) &&
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127 (res==0x765)) {
128 // this is UTF-8 allright, check whether that's what we want
66b3ec7f 129 char *cur_locale = setlocale(LC_CTYPE, NULL);
434d2cb3 130 if ((strlen(cur_locale) < 4) ||
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131 (strcasecmp(cur_locale + strlen(cur_locale) - 4, "utf8")) ||
132 (strcasecmp(cur_locale + strlen(cur_locale) - 5, "utf-8"))) {
434d2cb3 133 // nope, don't use libc conversion
cab1a605 134 return false;
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135 }
136 }
137#endif
cab1a605 138 return true;
434d2cb3
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139}
140
f6f5941b
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141// ============================================================================
142// printf() functions business
143// ============================================================================
144
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145// special test mode: define all functions below even if we don't really need
146// them to be able to test them
147#ifdef wxTEST_PRINTF
148 #undef wxFprintf
149 #undef wxPrintf
150 #undef wxSprintf
151 #undef wxVfprintf
152 #undef wxVsprintf
153 #undef wxVprintf
154 #undef wxVsnprintf_
155 #undef wxSnprintf_
156
157 #define wxNEED_WPRINTF
158
159 int wxVfprintf( FILE *stream, const wxChar *format, va_list argptr );
160#endif
161
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162// ----------------------------------------------------------------------------
163// implement [v]snprintf() if the system doesn't provide a safe one
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164// or if the system's one does not support positional parameters
165// (very useful for i18n purposes)
f6f5941b
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166// ----------------------------------------------------------------------------
167
168#if !defined(wxVsnprintf_)
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169
170// wxUSE_STRUTILS says our wxVsnprintf_ implementation to use or not to
171// use wxStrlen and wxStrncpy functions over one-char processing loops.
172//
173// Some benchmarking revealed that wxUSE_STRUTILS == 1 has the following
174// effects:
175// -> on Windows:
176// when in ANSI mode, this setting does not change almost anything
177// when in Unicode mode, it gives ~ 50% of slowdown !
178// -> on Linux:
179// both in ANSI and Unicode mode it gives ~ 60% of speedup !
180//
181#if defined(WIN32) && wxUSE_UNICODE
182#define wxUSE_STRUTILS 0
183#else
184#define wxUSE_STRUTILS 1
185#endif
186
187// some limits of our implementation
412a5c57 188#define wxMAX_SVNPRINTF_ARGUMENTS 16
7a828c7f 189#define wxMAX_SVNPRINTF_FLAGBUFFER_LEN 32
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190#define wxMAX_SVNPRINTF_SCRATCHBUFFER_LEN 512
191
192
193// wxVsnprintf() needs to use a *system* implementation of swnprintf()
194// in order to perform some internal tasks.
195// NB: we cannot just use wxSnprintf() because for some systems it maybe
196// implemented later in this file using wxVsnprintf() and that would
197// result in an endless recursion and thus in a stack overflow
198#if wxUSE_UNICODE
199
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200 #if defined(__WINDOWS__)
201 // all compilers under Windows should have swprintf()
202 #define HAVE_SWPRINTF
203 #endif
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204
205 // NB: MSVC 6 has only non-standard swprintf() declaration and while MSVC 7
206 // and 7.1 do have the standard one, it's completely broken unless
207 // /Zc:wchar_t is used while the other one works so use it instead, and
208 // only VC8 has a working standard-compliant swprintf()
209 #if defined(__WXWINCE__) || \
210 (defined(__VISUALC__) && __VISUALC__ < 1400) || \
211 defined(__GNUWIN32__) || \
212 defined(__BORLANDC__)
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213 #define HAVE_BROKEN_SWPRINTF_DECL
214 #endif
215
216
217 // problem: on some systems swprintf takes the 'max' argument while on others
218 // it doesn't
219 #if defined(HAVE_BROKEN_SWPRINTF_DECL)
220
221 // like when using sprintf(), since 'max' is not used, wxVsnprintf() should
222 // always ensure that 'buff' is big enough for all common needs
223 #define system_sprintf(buff, max, flags, data) \
224 ::swprintf(buff, flags, data)
225 #else
226
227 #if !defined(HAVE_SWPRINTF)
228 #error wxVsnprintf() needs a system swprintf() implementation!
229 #endif
230
231 #define system_sprintf(buff, max, flags, data) \
232 ::swprintf(buff, max, flags, data)
233 #endif
234
235#else
236
237 #if defined(HAVE_SNPRINTF)
238
239 #define system_sprintf(buff, max, flags, data) \
240 ::snprintf(buff, max, flags, data)
241
242 #else // NB: at least sprintf() should *always* be available
243
244 // since 'max' is not used in this case, wxVsnprintf() should always ensure
245 // that 'buff' is big enough for all common needs
246 // (see wxMAX_SVNPRINTF_FLAGBUFFER_LEN and wxMAX_SVNPRINTF_SCRATCHBUFFER_LEN)
247 #define system_sprintf(buff, max, flags, data) \
248 ::sprintf(buff, flags, data)
249
250 #endif
251#endif
252
253
7a828c7f 254
7d70c309 255// the conversion specifiers accepted by wxVsnprintf_
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256enum wxPrintfArgType {
257 wxPAT_INVALID = -1,
258
259 wxPAT_INT, // %d, %i, %o, %u, %x, %X
260 wxPAT_LONGINT, // %ld, etc
261#if SIZEOF_LONG_LONG
262 wxPAT_LONGLONGINT, // %Ld, etc
263#endif
264 wxPAT_SIZET, // %Zd, etc
265
266 wxPAT_DOUBLE, // %e, %E, %f, %g, %G
267 wxPAT_LONGDOUBLE, // %le, etc
268
269 wxPAT_POINTER, // %p
270
271 wxPAT_CHAR, // %hc (in ANSI mode: %c, too)
272 wxPAT_WCHAR, // %lc (in Unicode mode: %c, too)
273
274 wxPAT_PCHAR, // %s (related to a char *)
275 wxPAT_PWCHAR, // %s (related to a wchar_t *)
276
277 wxPAT_NINT, // %n
278 wxPAT_NSHORTINT, // %hn
279 wxPAT_NLONGINT // %ln
280};
281
7d70c309 282// an argument passed to wxVsnprintf_
7a828c7f
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283typedef union {
284 int pad_int; // %d, %i, %o, %u, %x, %X
285 long int pad_longint; // %ld, etc
286#if SIZEOF_LONG_LONG
287 long long int pad_longlongint; // %Ld, etc
288#endif
289 size_t pad_sizet; // %Zd, etc
290
291 double pad_double; // %e, %E, %f, %g, %G
292 long double pad_longdouble; // %le, etc
293
294 void *pad_pointer; // %p
295
296 char pad_char; // %hc (in ANSI mode: %c, too)
297 wchar_t pad_wchar; // %lc (in Unicode mode: %c, too)
298
299 char *pad_pchar; // %s (related to a char *)
300 wchar_t *pad_pwchar; // %s (related to a wchar_t *)
301
302 int *pad_nint; // %n
303 short int *pad_nshortint; // %hn
304 long int *pad_nlongint; // %ln
305} wxPrintfArg;
306
307
308// Contains parsed data relative to a conversion specifier given to
7d70c309 309// wxVsnprintf_ and parsed from the format string
7a828c7f
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310// NOTE: in C++ there is almost no difference between struct & classes thus
311// there is no performance gain by using a struct here...
312class wxPrintfConvSpec
f6f5941b 313{
7a828c7f 314public:
f6f5941b 315
7a828c7f 316 // the position of the argument relative to this conversion specifier
412a5c57 317 size_t m_pos;
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318
319 // the type of this conversion specifier
412a5c57 320 wxPrintfArgType m_type;
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321
322 // the minimum and maximum width
323 // when one of this var is set to -1 it means: use the following argument
324 // in the stack as minimum/maximum width for this conversion specifier
412a5c57 325 int m_nMinWidth, m_nMaxWidth;
5f1d3069 326
7a828c7f 327 // does the argument need to the be aligned to left ?
412a5c57 328 bool m_bAlignLeft;
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329
330 // pointer to the '%' of this conversion specifier in the format string
331 // NOTE: this points somewhere in the string given to the Parse() function -
332 // it's task of the caller ensure that memory is still valid !
412a5c57 333 const wxChar *m_pArgPos;
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334
335 // pointer to the last character of this conversion specifier in the
336 // format string
337 // NOTE: this points somewhere in the string given to the Parse() function -
338 // it's task of the caller ensure that memory is still valid !
412a5c57 339 const wxChar *m_pArgEnd;
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340
341 // a little buffer where formatting flags like #+\.hlqLZ are stored by Parse()
342 // for use in Process()
412a5c57
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343 // NB: even if this buffer is used only for numeric conversion specifiers and
344 // thus could be safely declared as a char[] buffer, we want it to be wxChar
345 // so that in Unicode builds we can avoid to convert its contents to Unicode
346 // chars when copying it in user's buffer.
347 wxChar m_szFlags[wxMAX_SVNPRINTF_FLAGBUFFER_LEN];
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348
349
350public:
351
352 // we don't declare this as a constructor otherwise it would be called
7d70c309 353 // automatically and we don't want this: to be optimized, wxVsnprintf_
7a828c7f
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354 // calls this function only on really-used instances of this class.
355 void Init();
356
357 // Parses the first conversion specifier in the given string, which must
358 // begin with a '%'. Returns false if the first '%' does not introduce a
359 // (valid) conversion specifier and thus should be ignored.
360 bool Parse(const wxChar *format);
361
362 // Process this conversion specifier and puts the result in the given
363 // buffer. Returns the number of characters written in 'buf' or -1 if
364 // there's not enough space.
365 int Process(wxChar *buf, size_t lenMax, wxPrintfArg *p);
366
367 // Loads the argument of this conversion specifier from given va_list.
368 bool LoadArg(wxPrintfArg *p, va_list &argptr);
369
370private:
371 // An helper function of LoadArg() which is used to handle the '*' flag
372 void ReplaceAsteriskWith(int w);
373};
374
375void wxPrintfConvSpec::Init()
376{
412a5c57
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377 m_nMinWidth = 0;
378 m_nMaxWidth = 0xFFFF;
379 m_pos = 0;
380 m_bAlignLeft = false;
381 m_pArgPos = m_pArgEnd = NULL;
382 m_type = wxPAT_INVALID;
383
384 // this character will never be removed from m_szFlags array and
7d70c309 385 // is important when calling sprintf() in wxPrintfConvSpec::Process() !
412a5c57 386 m_szFlags[0] = wxT('%');
7a828c7f
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387}
388
389bool wxPrintfConvSpec::Parse(const wxChar *format)
390{
391 bool done = false;
392
393 // temporary parse data
394 size_t flagofs = 1;
395 bool in_prec, prec_dot;
396 int ilen = 0;
397
412a5c57
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398 m_bAlignLeft = in_prec = prec_dot = false;
399 m_pArgPos = m_pArgEnd = format;
7a828c7f 400 do
f6f5941b 401 {
7a828c7f
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402#define CHECK_PREC \
403 if (in_prec && !prec_dot) \
404 { \
f2fac41a 405 m_szFlags[flagofs++] = wxT('.'); \
7a828c7f
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406 prec_dot = true; \
407 }
df17b887 408
7a828c7f 409 // what follows '%'?
412a5c57 410 const wxChar ch = *(++m_pArgEnd);
7a828c7f 411 switch ( ch )
df17b887 412 {
7a828c7f
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413 case wxT('\0'):
414 return false; // not really an argument
415
416 case wxT('%'):
417 return false; // not really an argument
418
419 case wxT('#'):
420 case wxT('0'):
421 case wxT(' '):
422 case wxT('+'):
423 case wxT('\''):
424 CHECK_PREC
412a5c57 425 m_szFlags[flagofs++] = ch;
7a828c7f
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426 break;
427
428 case wxT('-'):
429 CHECK_PREC
412a5c57
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430 m_bAlignLeft = true;
431 m_szFlags[flagofs++] = ch;
7a828c7f
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432 break;
433
434 case wxT('.'):
435 CHECK_PREC
436 in_prec = true;
437 prec_dot = false;
412a5c57
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438 m_nMaxWidth = 0;
439 // dot will be auto-added to m_szFlags if non-negative
7a828c7f
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440 // number follows
441 break;
442
443 case wxT('h'):
444 ilen = -1;
445 CHECK_PREC
412a5c57 446 m_szFlags[flagofs++] = ch;
7a828c7f
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447 break;
448
449 case wxT('l'):
412a5c57
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450 // NB: it's safe to use flagofs-1 as flagofs always start from 1
451 if (m_szFlags[flagofs-1] == 'l') // 'll' modifier is the same as 'L' or 'q'
452 ilen = 2;
453 else
7a828c7f
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454 ilen = 1;
455 CHECK_PREC
412a5c57 456 m_szFlags[flagofs++] = ch;
7a828c7f
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457 break;
458
459 case wxT('q'):
460 case wxT('L'):
461 ilen = 2;
462 CHECK_PREC
412a5c57 463 m_szFlags[flagofs++] = ch;
7a828c7f
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464 break;
465
466 case wxT('Z'):
467 ilen = 3;
468 CHECK_PREC
412a5c57 469 m_szFlags[flagofs++] = ch;
7a828c7f
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470 break;
471
472 case wxT('*'):
473 if (in_prec)
474 {
475 CHECK_PREC
f6f5941b 476
7a828c7f
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477 // tell Process() to use the next argument
478 // in the stack as maxwidth...
412a5c57 479 m_nMaxWidth = -1;
7a828c7f
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480 }
481 else
482 {
483 // tell Process() to use the next argument
484 // in the stack as minwidth...
412a5c57 485 m_nMinWidth = -1;
7a828c7f
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486 }
487
488 // save the * in our formatting buffer...
489 // will be replaced later by Process()
412a5c57 490 m_szFlags[flagofs++] = ch;
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491 break;
492
493 case wxT('1'): case wxT('2'): case wxT('3'):
494 case wxT('4'): case wxT('5'): case wxT('6'):
495 case wxT('7'): case wxT('8'): case wxT('9'):
496 {
497 int len = 0;
498 CHECK_PREC
412a5c57
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499 while ( (*m_pArgEnd >= wxT('0')) &&
500 (*m_pArgEnd <= wxT('9')) )
7a828c7f 501 {
412a5c57
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502 m_szFlags[flagofs++] = (*m_pArgEnd);
503 len = len*10 + (*m_pArgEnd - wxT('0'));
504 m_pArgEnd++;
7a828c7f
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505 }
506
507 if (in_prec)
412a5c57 508 m_nMaxWidth = len;
7a828c7f 509 else
412a5c57 510 m_nMinWidth = len;
7a828c7f 511
412a5c57 512 m_pArgEnd--; // the main loop pre-increments n again
f6f5941b 513 }
7a828c7f
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514 break;
515
516 case wxT('$'): // a positional parameter (e.g. %2$s) ?
517 {
412a5c57 518 if (m_nMinWidth <= 0)
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519 break; // ignore this formatting flag as no
520 // numbers are preceding it
521
412a5c57 522 // remove from m_szFlags all digits previously added
7a828c7f
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523 do {
524 flagofs--;
412a5c57
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525 } while (m_szFlags[flagofs] >= '1' &&
526 m_szFlags[flagofs] <= '9');
7a828c7f
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527
528 // re-adjust the offset making it point to the
412a5c57 529 // next free char of m_szFlags
7a828c7f
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530 flagofs++;
531
412a5c57
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532 m_pos = m_nMinWidth;
533 m_nMinWidth = 0;
7a828c7f
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534 }
535 break;
536
537 case wxT('d'):
538 case wxT('i'):
539 case wxT('o'):
540 case wxT('u'):
541 case wxT('x'):
542 case wxT('X'):
543 CHECK_PREC
412a5c57 544 m_szFlags[flagofs++] = ch;
f2fac41a 545 m_szFlags[flagofs] = wxT('\0');
7a828c7f 546 if (ilen == 0)
412a5c57 547 m_type = wxPAT_INT;
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548 else if (ilen == -1)
549 // NB: 'short int' value passed through '...'
550 // is promoted to 'int', so we have to get
551 // an int from stack even if we need a short
412a5c57 552 m_type = wxPAT_INT;
7a828c7f 553 else if (ilen == 1)
412a5c57 554 m_type = wxPAT_LONGINT;
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555 else if (ilen == 2)
556#if SIZEOF_LONG_LONG
412a5c57 557 m_type = wxPAT_LONGLONGINT;
7a828c7f 558#else // !long long
412a5c57 559 m_type = wxPAT_LONGINT;
7a828c7f
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560#endif // long long/!long long
561 else if (ilen == 3)
412a5c57 562 m_type = wxPAT_SIZET;
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563 done = true;
564 break;
565
566 case wxT('e'):
567 case wxT('E'):
568 case wxT('f'):
569 case wxT('g'):
570 case wxT('G'):
571 CHECK_PREC
412a5c57 572 m_szFlags[flagofs++] = ch;
f2fac41a 573 m_szFlags[flagofs] = wxT('\0');
7a828c7f 574 if (ilen == 2)
412a5c57 575 m_type = wxPAT_LONGDOUBLE;
7a828c7f 576 else
412a5c57 577 m_type = wxPAT_DOUBLE;
7a828c7f
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578 done = true;
579 break;
580
581 case wxT('p'):
412a5c57 582 m_type = wxPAT_POINTER;
7a828c7f
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583 done = true;
584 break;
585
586 case wxT('c'):
587 if (ilen == -1)
588 {
589 // in Unicode mode %hc == ANSI character
590 // and in ANSI mode, %hc == %c == ANSI...
412a5c57 591 m_type = wxPAT_CHAR;
7a828c7f
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592 }
593 else if (ilen == 1)
594 {
595 // in ANSI mode %lc == Unicode character
596 // and in Unicode mode, %lc == %c == Unicode...
412a5c57 597 m_type = wxPAT_WCHAR;
7a828c7f
VZ
598 }
599 else
600 {
601#if wxUSE_UNICODE
602 // in Unicode mode, %c == Unicode character
412a5c57 603 m_type = wxPAT_WCHAR;
7a828c7f
VZ
604#else
605 // in ANSI mode, %c == ANSI character
412a5c57 606 m_type = wxPAT_CHAR;
7a828c7f
VZ
607#endif
608 }
609 done = true;
610 break;
611
612 case wxT('s'):
613 if (ilen == -1)
614 {
615 // Unicode mode wx extension: we'll let %hs mean non-Unicode
616 // strings (when in ANSI mode, %s == %hs == ANSI string)
412a5c57 617 m_type = wxPAT_PCHAR;
7a828c7f
VZ
618 }
619 else if (ilen == 1)
620 {
621 // in Unicode mode, %ls == %s == Unicode string
622 // in ANSI mode, %ls == Unicode string
412a5c57 623 m_type = wxPAT_PWCHAR;
7a828c7f
VZ
624 }
625 else
626 {
627#if wxUSE_UNICODE
412a5c57 628 m_type = wxPAT_PWCHAR;
7a828c7f 629#else
412a5c57 630 m_type = wxPAT_PCHAR;
7a828c7f
VZ
631#endif
632 }
633 done = true;
634 break;
635
636 case wxT('n'):
637 if (ilen == 0)
412a5c57 638 m_type = wxPAT_NINT;
7a828c7f 639 else if (ilen == -1)
412a5c57 640 m_type = wxPAT_NSHORTINT;
7a828c7f 641 else if (ilen >= 1)
412a5c57 642 m_type = wxPAT_NLONGINT;
7a828c7f
VZ
643 done = true;
644 break;
645
646 default:
647 // bad format, don't consider this an argument;
648 // leave it unchanged
649 return false;
650 }
412a5c57
VZ
651
652 if (flagofs == wxMAX_SVNPRINTF_FLAGBUFFER_LEN)
653 {
654 wxLogDebug(wxT("Too many flags specified for a single conversion specifier!"));
655 return false;
656 }
7a828c7f
VZ
657 }
658 while (!done);
659
660 return true; // parsing was successful
661}
662
663
412a5c57 664void wxPrintfConvSpec::ReplaceAsteriskWith(int width)
7a828c7f 665{
412a5c57 666 wxChar temp[wxMAX_SVNPRINTF_FLAGBUFFER_LEN];
7a828c7f
VZ
667
668 // find the first * in our flag buffer
412a5c57 669 wxChar *pwidth = wxStrchr(m_szFlags, wxT('*'));
7a828c7f
VZ
670 wxASSERT(pwidth);
671
412a5c57
VZ
672 // save what follows the * (the +1 is to skip the asterisk itself!)
673 wxStrcpy(temp, pwidth+1);
674 if (width < 0)
675 {
676 pwidth[0] = wxT('-');
7a828c7f
VZ
677 pwidth++;
678 }
679
680 // replace * with the actual integer given as width
412a5c57 681 int maxlen = (m_szFlags + wxMAX_SVNPRINTF_FLAGBUFFER_LEN - pwidth) / sizeof(wxChar);
297eb8e6 682 int offset = system_sprintf(pwidth, maxlen, wxT("%d"), abs(width));
7a828c7f 683
f2fac41a
VZ
684#ifdef HAVE_BROKEN_SWPRINTF_DECL
685 wxUnusedVar(maxlen); // avoid dummy warnings
686#endif
687
7a828c7f 688 // restore after the expanded * what was following it
412a5c57 689 wxStrcpy(pwidth+offset, temp);
7a828c7f
VZ
690}
691
692bool wxPrintfConvSpec::LoadArg(wxPrintfArg *p, va_list &argptr)
693{
694 // did the '*' width/precision specifier was used ?
412a5c57 695 if (m_nMaxWidth == -1)
7a828c7f
VZ
696 {
697 // take the maxwidth specifier from the stack
412a5c57
VZ
698 m_nMaxWidth = va_arg(argptr, int);
699 if (m_nMaxWidth < 0)
700 m_nMaxWidth = 0;
7a828c7f 701 else
412a5c57 702 ReplaceAsteriskWith(m_nMaxWidth);
7a828c7f
VZ
703 }
704
412a5c57 705 if (m_nMinWidth == -1)
7a828c7f
VZ
706 {
707 // take the minwidth specifier from the stack
412a5c57 708 m_nMinWidth = va_arg(argptr, int);
7a828c7f 709
412a5c57
VZ
710 ReplaceAsteriskWith(m_nMinWidth);
711 if (m_nMinWidth < 0)
7a828c7f 712 {
412a5c57
VZ
713 m_bAlignLeft = !m_bAlignLeft;
714 m_nMinWidth = -m_nMinWidth;
7a828c7f
VZ
715 }
716 }
717
412a5c57 718 switch (m_type) {
7a828c7f
VZ
719 case wxPAT_INT:
720 p->pad_int = va_arg(argptr, int);
721 break;
722 case wxPAT_LONGINT:
723 p->pad_longint = va_arg(argptr, long int);
724 break;
725#if SIZEOF_LONG_LONG
726 case wxPAT_LONGLONGINT:
727 p->pad_longlongint = va_arg(argptr, long long int);
728 break;
729#endif
730 case wxPAT_SIZET:
731 p->pad_sizet = va_arg(argptr, size_t);
732 break;
733 case wxPAT_DOUBLE:
734 p->pad_double = va_arg(argptr, double);
735 break;
736 case wxPAT_LONGDOUBLE:
737 p->pad_longdouble = va_arg(argptr, long double);
738 break;
739 case wxPAT_POINTER:
740 p->pad_pointer = va_arg(argptr, void *);
741 break;
742
743 case wxPAT_CHAR:
5e52e029 744 p->pad_char = (char)va_arg(argptr, int); // char is promoted to int when passed through '...'
7a828c7f
VZ
745 break;
746 case wxPAT_WCHAR:
7d70c309 747 p->pad_wchar = (wchar_t)va_arg(argptr, int); // char is promoted to int when passed through '...'
7a828c7f
VZ
748 break;
749
750 case wxPAT_PCHAR:
751 p->pad_pchar = va_arg(argptr, char *);
752 break;
753 case wxPAT_PWCHAR:
754 p->pad_pwchar = va_arg(argptr, wchar_t *);
755 break;
756
757 case wxPAT_NINT:
758 p->pad_nint = va_arg(argptr, int *);
759 break;
760 case wxPAT_NSHORTINT:
761 p->pad_nshortint = va_arg(argptr, short int *);
762 break;
763 case wxPAT_NLONGINT:
764 p->pad_nlongint = va_arg(argptr, long int *);
765 break;
766
767 case wxPAT_INVALID:
768 default:
769 return false;
770 }
771
772 return true; // loading was successful
773}
774
775int wxPrintfConvSpec::Process(wxChar *buf, size_t lenMax, wxPrintfArg *p)
776{
412a5c57
VZ
777 // buffer to avoid dynamic memory allocation each time for small strings;
778 // note that this buffer is used only to hold results of number formatting,
779 // %s directly writes user's string in buf, without using szScratch
297eb8e6 780 wxChar szScratch[wxMAX_SVNPRINTF_SCRATCHBUFFER_LEN];
412a5c57
VZ
781 size_t lenScratch = 0, lenCur = 0;
782
f6f5941b 783#define APPEND_CH(ch) \
210f4bcd
VS
784 { \
785 if ( lenCur == lenMax ) \
786 return -1; \
787 \
788 buf[lenCur++] = ch; \
789 }
f6f5941b
VZ
790
791#define APPEND_STR(s) \
f6f5941b 792 { \
1af48460
VZ
793 for ( const wxChar *p = s; *p; p++ ) \
794 { \
795 APPEND_CH(*p); \
796 } \
f6f5941b
VZ
797 }
798
412a5c57 799 switch ( m_type )
7a828c7f
VZ
800 {
801 case wxPAT_INT:
297eb8e6 802 lenScratch = system_sprintf(szScratch, wxMAX_SVNPRINTF_SCRATCHBUFFER_LEN, m_szFlags, p->pad_int);
7a828c7f
VZ
803 break;
804
805 case wxPAT_LONGINT:
297eb8e6 806 lenScratch = system_sprintf(szScratch, wxMAX_SVNPRINTF_SCRATCHBUFFER_LEN, m_szFlags, p->pad_longint);
7a828c7f
VZ
807 break;
808
f6f5941b 809#if SIZEOF_LONG_LONG
7a828c7f 810 case wxPAT_LONGLONGINT:
297eb8e6 811 lenScratch = system_sprintf(szScratch, wxMAX_SVNPRINTF_SCRATCHBUFFER_LEN, m_szFlags, p->pad_longlongint);
7a828c7f
VZ
812 break;
813#endif // SIZEOF_LONG_LONG
814
815 case wxPAT_SIZET:
297eb8e6 816 lenScratch = system_sprintf(szScratch, wxMAX_SVNPRINTF_SCRATCHBUFFER_LEN, m_szFlags, p->pad_sizet);
7a828c7f
VZ
817 break;
818
819 case wxPAT_LONGDOUBLE:
297eb8e6 820 lenScratch = system_sprintf(szScratch, wxMAX_SVNPRINTF_SCRATCHBUFFER_LEN, m_szFlags, p->pad_longdouble);
7a828c7f
VZ
821 break;
822
823 case wxPAT_DOUBLE:
297eb8e6 824 lenScratch = system_sprintf(szScratch, wxMAX_SVNPRINTF_SCRATCHBUFFER_LEN, m_szFlags, p->pad_double);
7a828c7f
VZ
825 break;
826
827 case wxPAT_POINTER:
297eb8e6 828 lenScratch = system_sprintf(szScratch, wxMAX_SVNPRINTF_SCRATCHBUFFER_LEN, m_szFlags, p->pad_pointer);
7a828c7f
VZ
829 break;
830
831 case wxPAT_CHAR:
832 case wxPAT_WCHAR:
833 {
834 wxChar val =
210f4bcd 835#if wxUSE_UNICODE
7a828c7f
VZ
836 p->pad_wchar;
837
412a5c57
VZ
838 if (m_type == wxPAT_CHAR)
839 {
7a828c7f
VZ
840 // user passed a character explicitely indicated as ANSI...
841 const char buf[2] = { p->pad_char, 0 };
842 val = wxString(buf, wxConvLibc)[0u];
412a5c57
VZ
843
844 //wprintf(L"converting ANSI=>Unicode"); // for debug
7a828c7f
VZ
845 }
846#else
847 p->pad_char;
848
34deaa93 849#if wxUSE_WCHAR_T
412a5c57
VZ
850 if (m_type == wxPAT_WCHAR)
851 {
7a828c7f
VZ
852 // user passed a character explicitely indicated as Unicode...
853 const wchar_t buf[2] = { p->pad_wchar, 0 };
854 val = wxString(buf, wxConvLibc)[0u];
412a5c57
VZ
855
856 //printf("converting Unicode=>ANSI"); // for debug
7a828c7f 857 }
34deaa93 858#endif
210f4bcd 859#endif
210f4bcd 860
7a828c7f 861 size_t i;
210f4bcd 862
412a5c57
VZ
863 if (!m_bAlignLeft)
864 for (i = 1; i < (size_t)m_nMinWidth; i++)
7a828c7f 865 APPEND_CH(_T(' '));
f6f5941b 866
7a828c7f 867 APPEND_CH(val);
210f4bcd 868
412a5c57
VZ
869 if (m_bAlignLeft)
870 for (i = 1; i < (size_t)m_nMinWidth; i++)
7a828c7f
VZ
871 APPEND_CH(_T(' '));
872 }
873 break;
f6f5941b 874
7a828c7f
VZ
875 case wxPAT_PCHAR:
876 case wxPAT_PWCHAR:
877 {
878 wxString s;
879 const wxChar *val =
f6f5941b 880#if wxUSE_UNICODE
7a828c7f
VZ
881 p->pad_pwchar;
882
412a5c57
VZ
883 if (m_type == wxPAT_PCHAR)
884 {
7a828c7f 885 // user passed a string explicitely indicated as ANSI...
a31746c7 886 val = s = wxString(p->pad_pchar, wxConvLibc);
412a5c57
VZ
887
888 //wprintf(L"converting ANSI=>Unicode"); // for debug
7a828c7f
VZ
889 }
890#else
891 p->pad_pchar;
892
34deaa93 893#if wxUSE_WCHAR_T
412a5c57
VZ
894 if (m_type == wxPAT_PWCHAR)
895 {
7a828c7f 896 // user passed a string explicitely indicated as Unicode...
a31746c7 897 val = s = wxString(p->pad_pwchar, wxConvLibc);
412a5c57
VZ
898
899 //printf("converting Unicode=>ANSI"); // for debug
7a828c7f 900 }
34deaa93 901#endif
7a828c7f
VZ
902#endif
903 int len;
904
905 if (val)
906 {
907#if wxUSE_STRUTILS
412a5c57 908 // at this point we are sure that m_nMaxWidth is positive or null
a31746c7 909 // (see top of wxPrintfConvSpec::LoadArg)
412a5c57 910 len = wxMin((unsigned int)m_nMaxWidth, wxStrlen(val));
7a828c7f 911#else
412a5c57 912 for ( len = 0; val[len] && (len < m_nMaxWidth); len++ )
7a828c7f 913 ;
f6f5941b 914#endif
7a828c7f 915 }
412a5c57 916 else if (m_nMaxWidth >= 6)
7a828c7f
VZ
917 {
918 val = wxT("(null)");
919 len = 6;
920 }
921 else
922 {
923 val = wxEmptyString;
924 len = 0;
925 }
926
927 int i;
928
412a5c57 929 if (!m_bAlignLeft)
7a828c7f 930 {
412a5c57 931 for (i = len; i < m_nMinWidth; i++)
7a828c7f
VZ
932 APPEND_CH(_T(' '));
933 }
934
935#if wxUSE_STRUTILS
a31746c7 936 len = wxMin((unsigned int)len, lenMax-lenCur);
7a828c7f
VZ
937 wxStrncpy(buf+lenCur, val, len);
938 lenCur += len;
939#else
940 for (i = 0; i < len; i++)
941 APPEND_CH(val[i]);
942#endif
943
412a5c57 944 if (m_bAlignLeft)
7a828c7f 945 {
412a5c57 946 for (i = len; i < m_nMinWidth; i++)
7a828c7f 947 APPEND_CH(_T(' '));
f6f5941b 948 }
df17b887 949 }
7a828c7f
VZ
950 break;
951
952 case wxPAT_NINT:
953 *p->pad_nint = lenCur;
954 break;
955
956 case wxPAT_NSHORTINT:
7d70c309 957 *p->pad_nshortint = (short int)lenCur;
7a828c7f
VZ
958 break;
959
960 case wxPAT_NLONGINT:
961 *p->pad_nlongint = lenCur;
962 break;
963
964 case wxPAT_INVALID:
965 default:
966 return -1;
967 }
968
f2fac41a
VZ
969#ifdef HAVE_BROKEN_SWPRINTF_DECL
970 wxUnusedVar(lenScratch); // avoid dummy warnings
971#endif
972
7a828c7f
VZ
973 // if we used system's sprintf() then we now need to append the s_szScratch
974 // buffer to the given one...
412a5c57 975 switch (m_type)
7a828c7f
VZ
976 {
977 case wxPAT_INT:
978 case wxPAT_LONGINT:
979#if SIZEOF_LONG_LONG
980 case wxPAT_LONGLONGINT:
981#endif
982 case wxPAT_SIZET:
983 case wxPAT_LONGDOUBLE:
984 case wxPAT_DOUBLE:
985 case wxPAT_POINTER:
986#if wxUSE_STRUTILS
987 {
297eb8e6 988 wxASSERT(lenScratch >= 0 && lenScratch < wxMAX_SVNPRINTF_SCRATCHBUFFER_LEN);
412a5c57
VZ
989 if (lenMax < lenScratch)
990 {
991 // fill output buffer and then return -1
992 wxStrncpy(buf, szScratch, lenMax);
993 return -1;
994 }
995 wxStrncpy(buf, szScratch, lenScratch);
996 lenCur += lenScratch;
7a828c7f
VZ
997 }
998#else
999 {
412a5c57 1000 APPEND_STR(szScratch);
7a828c7f
VZ
1001 }
1002#endif
1003 break;
1004
1005 default:
1006 break; // all other cases were completed previously
1007 }
1008
1009 return lenCur;
1010}
1011
247c23b4
VZ
1012// differences from standard strncpy:
1013// 1) copies everything from 'source' except for '%%' sequence which is copied as '%'
1014// 2) returns the number of written characters in 'dest' as it could differ from given 'n'
1015// 3) much less optimized, unfortunately...
1016static int wxCopyStrWithPercents(wxChar *dest, const wxChar *source, size_t n)
1017{
1018 size_t written = 0;
1019
1020 if (n == 0)
1021 return 0;
1022
1023 size_t i;
1024 for ( i = 0; i < n-1; source++, i++)
1025 {
1026 dest[written++] = *source;
1027 if (*(source+1) == wxT('%'))
1028 {
1029 // skip this additional '%' character
1030 source++;
1031 i++;
1032 }
1033 }
1034
1035 if (i < n)
1036 // copy last character inconditionally
1037 dest[written++] = *source;
1038
1039 return written;
1040}
1041
7a828c7f
VZ
1042int WXDLLEXPORT wxVsnprintf_(wxChar *buf, size_t lenMax,
1043 const wxChar *format, va_list argptr)
1044{
412a5c57
VZ
1045 // useful for debugging, to understand if we are really using this function
1046 // rather than the system implementation
1047#if 0
1048 wprintf(L"Using wxVsnprintf_\n");
1049#endif
1050
1051 // required memory:
1052 wxPrintfConvSpec arg[wxMAX_SVNPRINTF_ARGUMENTS];
1053 wxPrintfArg argdata[wxMAX_SVNPRINTF_ARGUMENTS];
1054 wxPrintfConvSpec *pspec[wxMAX_SVNPRINTF_ARGUMENTS] = { NULL };
7a828c7f
VZ
1055
1056 size_t i;
1057
1058 // number of characters in the buffer so far, must be less than lenMax
1059 size_t lenCur = 0;
1060
1061 size_t nargs = 0;
1062 const wxChar *toparse = format;
1063
1064 // parse the format string
1065 bool posarg_present = false, nonposarg_present = false;
1066 for (; *toparse != wxT('\0'); toparse++)
1067 {
1068 if (*toparse == wxT('%') )
f6f5941b 1069 {
7a828c7f
VZ
1070 arg[nargs].Init();
1071
1072 // let's see if this is a (valid) conversion specifier...
1073 if (arg[nargs].Parse(toparse))
1074 {
1075 // ...yes it is
1076 wxPrintfConvSpec *current = &arg[nargs];
1077
1078 // make toparse point to the end of this specifier
412a5c57 1079 toparse = current->m_pArgEnd;
7a828c7f 1080
412a5c57
VZ
1081 if (current->m_pos > 0)
1082 {
7a828c7f 1083 // the positionals start from number 1... adjust the index
412a5c57 1084 current->m_pos--;
7a828c7f 1085 posarg_present = true;
412a5c57
VZ
1086 }
1087 else
1088 {
7a828c7f 1089 // not a positional argument...
412a5c57 1090 current->m_pos = nargs;
7a828c7f
VZ
1091 nonposarg_present = true;
1092 }
1093
1094 // this conversion specifier is tied to the pos-th argument...
412a5c57 1095 pspec[current->m_pos] = current;
7a828c7f
VZ
1096 nargs++;
1097
1098 if (nargs == wxMAX_SVNPRINTF_ARGUMENTS)
412a5c57
VZ
1099 {
1100 wxLogDebug(wxT("A single call to wxVsnprintf() has more than %d arguments; ")
1101 wxT("ignoring all remaining arguments."), wxMAX_SVNPRINTF_ARGUMENTS);
7a828c7f 1102 break; // cannot handle any additional conv spec
412a5c57
VZ
1103 }
1104 }
1105 else
1106 {
1107 // it's safe to look in the next character of toparse as at worst
1108 // we'll hit its \0
1109 if (*(toparse+1) == wxT('%'))
1110 toparse++; // the Parse() returned false because we've found a %%
7a828c7f 1111 }
f6f5941b 1112 }
7a828c7f 1113 }
df17b887 1114
7a828c7f
VZ
1115 if (posarg_present && nonposarg_present)
1116 return -1; // format strings with both positional and
1117 // non-positional conversion specifier are unsupported !!
1118
3aa077ce
MW
1119 // on platforms where va_list is an array type, it is necessary to make a
1120 // copy to be able to pass it to LoadArg as a reference.
1121 bool ok = true;
1122 va_list ap;
1123 wxVaCopy(ap, argptr);
1124
7a828c7f 1125 // now load arguments from stack
412a5c57
VZ
1126 for (i=0; i < nargs && ok; i++)
1127 {
1128 // !pspec[i] means that the user forgot a positional parameter (e.g. %$1s %$3s);
1129 // LoadArg == false means that wxPrintfConvSpec::Parse failed to set the
1130 // conversion specifier 'type' to a valid value...
3aa077ce 1131 ok = pspec[i] && pspec[i]->LoadArg(&argdata[i], ap);
7a828c7f
VZ
1132 }
1133
3aa077ce
MW
1134 va_end(ap);
1135
247c23b4 1136 // something failed while loading arguments from the variable list...
3aa077ce
MW
1137 if (!ok)
1138 return -1;
1139
7a828c7f
VZ
1140 // finally, process each conversion specifier with its own argument
1141 toparse = format;
1142 for (i=0; i < nargs; i++)
1143 {
1144 // copy in the output buffer the portion of the format string between
1145 // last specifier and the current one
412a5c57 1146 size_t tocopy = ( arg[i].m_pArgPos - toparse );
7a828c7f 1147 if (lenCur+tocopy >= lenMax)
412a5c57
VZ
1148 {
1149 // not enough space in the output buffer !
1150 // copy until the end of remaining space and then stop
1151 wxCopyStrWithPercents(buf+lenCur, toparse, lenMax - lenCur - 1);
1152 buf[lenMax-1] = wxT('\0');
1153 return -1;
1154 }
7a828c7f 1155
247c23b4 1156 lenCur += wxCopyStrWithPercents(buf+lenCur, toparse, tocopy);
7a828c7f
VZ
1157
1158 // process this specifier directly in the output buffer
412a5c57 1159 int n = arg[i].Process(buf+lenCur, lenMax - lenCur, &argdata[arg[i].m_pos]);
7a828c7f 1160 if (n == -1)
412a5c57
VZ
1161 {
1162 buf[lenMax-1] = wxT('\0'); // be sure to always NUL-terminate the string
7a828c7f 1163 return -1; // not enough space in the output buffer !
412a5c57 1164 }
7a828c7f
VZ
1165 lenCur += n;
1166
412a5c57 1167 // the +1 is because wxPrintfConvSpec::m_pArgEnd points to the last character
7a828c7f 1168 // of the format specifier, but we are not interested to it...
412a5c57 1169 toparse = arg[i].m_pArgEnd + 1;
5f1d3069
RR
1170 }
1171
7a828c7f
VZ
1172 // copy portion of the format string after last specifier
1173 // NOTE: toparse is pointing to the character just after the last processed
1174 // conversion specifier
1175 // NOTE2: the +1 is because we want to copy also the '\0'
1176 size_t tocopy = wxStrlen(format) + 1 - ( toparse - format ) ;
1177 if (lenCur+tocopy >= lenMax)
1178 return -1; // not enough space in the output buffer !
247c23b4
VZ
1179
1180 // the -1 is because of the '\0'
1181 lenCur += wxCopyStrWithPercents(buf+lenCur, toparse, tocopy) - 1;
7a828c7f 1182
7a828c7f 1183 wxASSERT(lenCur == wxStrlen(buf));
f6f5941b
VZ
1184 return lenCur;
1185}
5f1d3069 1186
f6f5941b
VZ
1187#undef APPEND_CH
1188#undef APPEND_STR
1189#undef CHECK_PREC
5f1d3069 1190
f6f5941b
VZ
1191#endif // !wxVsnprintfA
1192
1193#if !defined(wxSnprintf_)
1194int WXDLLEXPORT wxSnprintf_(wxChar *buf, size_t len, const wxChar *format, ...)
1195{
5f1d3069
RR
1196 va_list argptr;
1197 va_start(argptr, format);
1198
f6f5941b 1199 int iLen = wxVsnprintf_(buf, len, format, argptr);
5f1d3069
RR
1200
1201 va_end(argptr);
f6f5941b
VZ
1202
1203 return iLen;
5f1d3069 1204}
f6f5941b 1205#endif // wxSnprintf_
5f1d3069 1206
8dfb846e
CE
1207#if defined(__DMC__)
1208 /* Digital Mars adds count to _stprintf (C99) so convert */
1209 #if wxUSE_UNICODE
1210 int wxSprintf (wchar_t * __RESTRICT s, const wchar_t * __RESTRICT format, ... )
1211 {
1212 va_list arglist;
1213
1214 va_start( arglist, format );
1215 int iLen = swprintf ( s, -1, format, arglist );
1216 va_end( arglist );
1217 return iLen ;
1218 }
1219
1220 #endif // wxUSE_UNICODE
1221
1222#endif //__DMC__
1223
f6f5941b
VZ
1224// ----------------------------------------------------------------------------
1225// implement the standard IO functions for wide char if libc doesn't have them
1226// ----------------------------------------------------------------------------
5f1d3069 1227
fbe47c7b 1228#ifdef wxNEED_FPUTS
f6f5941b
VZ
1229int wxFputs(const wchar_t *ws, FILE *stream)
1230{
1231 // counting the number of wide characters written isn't worth the trouble,
1232 // simply distinguish between ok and error
1233 return fputs(wxConvLibc.cWC2MB(ws), stream) == -1 ? -1 : 0;
1234}
fbe47c7b 1235#endif // wxNEED_FPUTS
5f1d3069 1236
19b65a30
VZ
1237#ifdef wxNEED_PUTS
1238int wxPuts(const wxChar *ws)
1239{
1240 int rc = wxFputs(ws, stdout);
1241 if ( rc != -1 )
1242 {
1243 if ( wxFputs(L"\n", stdout) == -1 )
1244 return -1;
1245
1246 rc++;
1247 }
1248
1249 return rc;
1250}
1251#endif // wxNEED_PUTS
1252
fbe47c7b 1253#ifdef wxNEED_PUTC
f6f5941b
VZ
1254int /* not wint_t */ wxPutc(wchar_t wc, FILE *stream)
1255{
1256 wchar_t ws[2] = { wc, L'\0' };
5f1d3069 1257
f6f5941b 1258 return wxFputs(ws, stream);
5f1d3069 1259}
fbe47c7b 1260#endif // wxNEED_PUTC
f6f5941b
VZ
1261
1262// NB: we only implement va_list functions here, the ones taking ... are
1263// defined below for wxNEED_PRINTF_CONVERSION case anyhow and we reuse
1264// the definitions there to avoid duplicating them here
1265#ifdef wxNEED_WPRINTF
1266
1267// TODO: implement the scanf() functions
df17b887 1268int vwscanf(const wxChar *format, va_list argptr)
5f1d3069 1269{
f6f5941b 1270 wxFAIL_MSG( _T("TODO") );
5f1d3069 1271
f6f5941b
VZ
1272 return -1;
1273}
1274
df17b887 1275int vswscanf(const wxChar *ws, const wxChar *format, va_list argptr)
f6f5941b 1276{
63de666d
VS
1277 // The best we can do without proper Unicode support in glibc is to
1278 // convert the strings into MB representation and run ANSI version
1279 // of the function. This doesn't work with %c and %s because of difference
1280 // in size of char and wchar_t, though.
525d8583 1281
63de666d
VS
1282 wxCHECK_MSG( wxStrstr(format, _T("%s")) == NULL, -1,
1283 _T("incomplete vswscanf implementation doesn't allow %s") );
1284 wxCHECK_MSG( wxStrstr(format, _T("%c")) == NULL, -1,
1285 _T("incomplete vswscanf implementation doesn't allow %c") );
525d8583 1286
63de666d
VS
1287 va_list argcopy;
1288 wxVaCopy(argcopy, argptr);
1289 return vsscanf(wxConvLibc.cWX2MB(ws), wxConvLibc.cWX2MB(format), argcopy);
f6f5941b 1290}
5f1d3069 1291
df17b887 1292int vfwscanf(FILE *stream, const wxChar *format, va_list argptr)
f6f5941b
VZ
1293{
1294 wxFAIL_MSG( _T("TODO") );
5f1d3069 1295
f6f5941b 1296 return -1;
5f1d3069
RR
1297}
1298
f6f5941b
VZ
1299#define vswprintf wxVsnprintf_
1300
df17b887 1301int vfwprintf(FILE *stream, const wxChar *format, va_list argptr)
5f1d3069 1302{
f6f5941b
VZ
1303 wxString s;
1304 int rc = s.PrintfV(format, argptr);
5f1d3069 1305
f6f5941b
VZ
1306 if ( rc != -1 )
1307 {
1308 // we can't do much better without Unicode support in libc...
50b079e5 1309 if ( fprintf(stream, "%s", (const char*)s.mb_str() ) == -1 )
f6f5941b
VZ
1310 return -1;
1311 }
5f1d3069 1312
f6f5941b 1313 return rc;
5f1d3069
RR
1314}
1315
df17b887 1316int vwprintf(const wxChar *format, va_list argptr)
5f1d3069 1317{
f6f5941b
VZ
1318 return wxVfprintf(stdout, format, argptr);
1319}
5f1d3069 1320
f6f5941b 1321#endif // wxNEED_WPRINTF
5f1d3069 1322
f6f5941b 1323#ifdef wxNEED_PRINTF_CONVERSION
5f1d3069 1324
f6f5941b
VZ
1325// ----------------------------------------------------------------------------
1326// wxFormatConverter: class doing the "%s" -> "%ls" conversion
1327// ----------------------------------------------------------------------------
5f1d3069 1328
f6f5941b
VZ
1329/*
1330 Here are the gory details. We want to follow the Windows/MS conventions,
1331 that is to have
1332
1333 In ANSI mode:
1334
1335 format specifier results in
1336 -----------------------------------
1337 %c, %hc, %hC char
1338 %lc, %C, %lC wchar_t
1339
1340 In Unicode mode:
1341
1342 format specifier results in
1343 -----------------------------------
1344 %hc, %C, %hC char
1345 %c, %lc, %lC wchar_t
1346
1347
1348 while on POSIX systems we have %C identical to %lc and %c always means char
1349 (in any mode) while %lc always means wchar_t,
1350
1351 So to use native functions in order to get our semantics we must do the
1352 following translations in Unicode mode (nothing to do in ANSI mode):
1353
77ffb593 1354 wxWidgets specifier POSIX specifier
f6f5941b
VZ
1355 ----------------------------------------
1356
1357 %hc, %C, %hC %c
1358 %c %lc
1359
1360
1361 And, of course, the same should be done for %s as well.
1362*/
1363
1364class wxFormatConverter
5f1d3069 1365{
f6f5941b
VZ
1366public:
1367 wxFormatConverter(const wxChar *format);
1368
c03d0035
VZ
1369 // notice that we only translated the string if m_fmtOrig == NULL (as set
1370 // by CopyAllBefore()), otherwise we should simply use the original format
1371 operator const wxChar *() const
1372 { return m_fmtOrig ? m_fmtOrig : m_fmt.c_str(); }
f6f5941b
VZ
1373
1374private:
1375 // copy another character to the translated format: this function does the
1376 // copy if we are translating but doesn't do anything at all if we don't,
1377 // so we don't create the translated format string at all unless we really
1378 // need to (i.e. InsertFmtChar() is called)
1379 wxChar CopyFmtChar(wxChar ch)
1380 {
1381 if ( !m_fmtOrig )
1382 {
c03d0035 1383 // we're translating, do copy
f6f5941b
VZ
1384 m_fmt += ch;
1385 }
1386 else
1387 {
1388 // simply increase the count which should be copied by
1389 // CopyAllBefore() later if needed
1390 m_nCopied++;
1391 }
1392
1393 return ch;
1394 }
1395
1396 // insert an extra character
1397 void InsertFmtChar(wxChar ch)
1398 {
1399 if ( m_fmtOrig )
1400 {
1401 // so far we haven't translated anything yet
1402 CopyAllBefore();
1403 }
1404
1405 m_fmt += ch;
1406 }
1407
1408 void CopyAllBefore()
1409 {
1410 wxASSERT_MSG( m_fmtOrig && m_fmt.empty(), _T("logic error") );
1411
1412 m_fmt = wxString(m_fmtOrig, m_nCopied);
1413
1414 // we won't need it any longer
1415 m_fmtOrig = NULL;
1416 }
5f1d3069 1417
f6f5941b
VZ
1418 static bool IsFlagChar(wxChar ch)
1419 {
1420 return ch == _T('-') || ch == _T('+') ||
1421 ch == _T('0') || ch == _T(' ') || ch == _T('#');
1422 }
1423
41d9940d 1424 void SkipDigits(const wxChar **ptpc)
f6f5941b 1425 {
41d9940d
SC
1426 while ( **ptpc >= _T('0') && **ptpc <= _T('9') )
1427 CopyFmtChar(*(*ptpc)++);
f6f5941b
VZ
1428 }
1429
1430 // the translated format
1431 wxString m_fmt;
1432
1433 // the original format
1434 const wxChar *m_fmtOrig;
1435
1436 // the number of characters already copied
1437 size_t m_nCopied;
1438};
1439
1440wxFormatConverter::wxFormatConverter(const wxChar *format)
1441{
1442 m_fmtOrig = format;
1443 m_nCopied = 0;
1444
1445 while ( *format )
1446 {
1447 if ( CopyFmtChar(*format++) == _T('%') )
1448 {
1449 // skip any flags
1450 while ( IsFlagChar(*format) )
1451 CopyFmtChar(*format++);
1452
1453 // and possible width
1454 if ( *format == _T('*') )
1455 CopyFmtChar(*format++);
1456 else
1457 SkipDigits(&format);
1458
1459 // precision?
1460 if ( *format == _T('.') )
1461 {
cfee166d
JS
1462 CopyFmtChar(*format++);
1463 if ( *format == _T('*') )
1464 CopyFmtChar(*format++);
1465 else
1466 SkipDigits(&format);
f6f5941b
VZ
1467 }
1468
1469 // next we can have a size modifier
1470 enum
1471 {
1472 Default,
1473 Short,
1474 Long
1475 } size;
1476
1477 switch ( *format )
1478 {
1479 case _T('h'):
1480 size = Short;
1481 format++;
1482 break;
1483
1484 case _T('l'):
1485 // "ll" has a different meaning!
1486 if ( format[1] != _T('l') )
1487 {
1488 size = Long;
1489 format++;
1490 break;
1491 }
1492 //else: fall through
1493
1494 default:
1495 size = Default;
1496 }
1497
1498 // and finally we should have the type
1499 switch ( *format )
1500 {
1501 case _T('C'):
1502 case _T('S'):
1503 // %C and %hC -> %c and %lC -> %lc
1504 if ( size == Long )
1505 CopyFmtChar(_T('l'));
1506
1507 InsertFmtChar(*format++ == _T('C') ? _T('c') : _T('s'));
1508 break;
1509
1510 case _T('c'):
1511 case _T('s'):
1512 // %c -> %lc but %hc stays %hc and %lc is still %lc
cfee166d
JS
1513 if ( size == Default)
1514 InsertFmtChar(_T('l'));
f6f5941b
VZ
1515 // fall through
1516
1517 default:
1518 // nothing special to do
cfee166d
JS
1519 if ( size != Default )
1520 CopyFmtChar(*(format - 1));
f6f5941b
VZ
1521 CopyFmtChar(*format++);
1522 }
1523 }
1524 }
1525}
1526
1527#else // !wxNEED_PRINTF_CONVERSION
1528 // no conversion necessary
1529 #define wxFormatConverter(x) (x)
1530#endif // wxNEED_PRINTF_CONVERSION/!wxNEED_PRINTF_CONVERSION
1531
cfee166d
JS
1532#ifdef __WXDEBUG__
1533// For testing the format converter
1534wxString wxConvertFormat(const wxChar *format)
1535{
1536 return wxString(wxFormatConverter(format));
1537}
1538#endif
1539
f6f5941b
VZ
1540// ----------------------------------------------------------------------------
1541// wxPrintf(), wxScanf() and relatives
1542// ----------------------------------------------------------------------------
1543
1544#if defined(wxNEED_PRINTF_CONVERSION) || defined(wxNEED_WPRINTF)
1545
df17b887 1546int wxScanf( const wxChar *format, ... )
f6f5941b 1547{
5f1d3069
RR
1548 va_list argptr;
1549 va_start(argptr, format);
1550
f6f5941b 1551 int ret = vwscanf(wxFormatConverter(format), argptr );
5f1d3069
RR
1552
1553 va_end(argptr);
1554
1555 return ret;
1556}
1557
df17b887 1558int wxSscanf( const wxChar *str, const wxChar *format, ... )
5f1d3069 1559{
5f1d3069
RR
1560 va_list argptr;
1561 va_start(argptr, format);
1562
f6f5941b 1563 int ret = vswscanf( str, wxFormatConverter(format), argptr );
5f1d3069
RR
1564
1565 va_end(argptr);
1566
1567 return ret;
1568}
1569
df17b887 1570int wxFscanf( FILE *stream, const wxChar *format, ... )
5f1d3069 1571{
5f1d3069 1572 va_list argptr;
f6f5941b 1573 va_start(argptr, format);
f6f5941b 1574 int ret = vfwscanf(stream, wxFormatConverter(format), argptr);
5f1d3069
RR
1575
1576 va_end(argptr);
1577
1578 return ret;
1579}
1580
df17b887 1581int wxPrintf( const wxChar *format, ... )
5f1d3069 1582{
f6f5941b
VZ
1583 va_list argptr;
1584 va_start(argptr, format);
df17b887 1585
f6f5941b 1586 int ret = vwprintf( wxFormatConverter(format), argptr );
5f1d3069 1587
f6f5941b 1588 va_end(argptr);
5f1d3069
RR
1589
1590 return ret;
1591}
1592
f6f5941b 1593#ifndef wxSnprintf
df17b887 1594int wxSnprintf( wxChar *str, size_t size, const wxChar *format, ... )
5f1d3069 1595{
f6f5941b
VZ
1596 va_list argptr;
1597 va_start(argptr, format);
5f1d3069 1598
f6f5941b 1599 int ret = vswprintf( str, size, wxFormatConverter(format), argptr );
5f1d3069 1600
8dd57590
MW
1601 // VsnprintfTestCase reveals that glibc's implementation of vswprintf
1602 // doesn't nul terminate on truncation.
1603 str[size - 1] = 0;
1604
f6f5941b 1605 va_end(argptr);
5f1d3069
RR
1606
1607 return ret;
1608}
f6f5941b 1609#endif // wxSnprintf
5f1d3069 1610
df17b887 1611int wxSprintf( wxChar *str, const wxChar *format, ... )
5f1d3069 1612{
f6f5941b
VZ
1613 va_list argptr;
1614 va_start(argptr, format);
5f1d3069 1615
56413ebf 1616 // note that wxString::FormatV() uses wxVsnprintf(), not wxSprintf(), so
f8991003 1617 // it's safe to implement this one in terms of it
56413ebf 1618 wxString s(wxString::FormatV(format, argptr));
a4e0917b 1619 wxStrcpy(str, s);
5f1d3069 1620
f6f5941b 1621 va_end(argptr);
5f1d3069 1622
a4e0917b 1623 return s.length();
5f1d3069
RR
1624}
1625
df17b887 1626int wxFprintf( FILE *stream, const wxChar *format, ... )
5f1d3069 1627{
f6f5941b
VZ
1628 va_list argptr;
1629 va_start( argptr, format );
5f1d3069 1630
f6f5941b 1631 int ret = vfwprintf( stream, wxFormatConverter(format), argptr );
5f1d3069 1632
f6f5941b 1633 va_end(argptr);
5f1d3069
RR
1634
1635 return ret;
1636}
f06e3075 1637
f6f5941b 1638int wxVsscanf( const wxChar *str, const wxChar *format, va_list argptr )
5f1d3069 1639{
f6f5941b
VZ
1640 return vswscanf( str, wxFormatConverter(format), argptr );
1641}
5f1d3069 1642
f6f5941b
VZ
1643int wxVfprintf( FILE *stream, const wxChar *format, va_list argptr )
1644{
1645 return vfwprintf( stream, wxFormatConverter(format), argptr );
1646}
5f1d3069 1647
f6f5941b
VZ
1648int wxVprintf( const wxChar *format, va_list argptr )
1649{
1650 return vwprintf( wxFormatConverter(format), argptr );
5f1d3069 1651}
5f1d3069 1652
f6f5941b
VZ
1653#ifndef wxVsnprintf
1654int wxVsnprintf( wxChar *str, size_t size, const wxChar *format, va_list argptr )
5f1d3069 1655{
f6f5941b
VZ
1656 return vswprintf( str, size, wxFormatConverter(format), argptr );
1657}
1658#endif // wxVsnprintf
5f1d3069 1659
f6f5941b
VZ
1660int wxVsprintf( wxChar *str, const wxChar *format, va_list argptr )
1661{
1662 // same as for wxSprintf()
b63b07a8 1663 return vswprintf(str, INT_MAX / 4, wxFormatConverter(format), argptr);
f6f5941b 1664}
5f1d3069 1665
f6f5941b 1666#endif // wxNEED_PRINTF_CONVERSION
5f1d3069 1667
33a7c3dd
VZ
1668#if wxUSE_WCHAR_T
1669
f6f5941b
VZ
1670// ----------------------------------------------------------------------------
1671// ctype.h stuff (currently unused)
1672// ----------------------------------------------------------------------------
5f1d3069 1673
57f6da0d
OK
1674#if defined(__WIN32__) && defined(wxNEED_WX_CTYPE_H)
1675inline WORD wxMSW_ctype(wxChar ch)
1676{
1677 WORD ret;
1678 GetStringTypeEx(LOCALE_USER_DEFAULT, CT_CTYPE1, &ch, 1, &ret);
1679 return ret;
1680}
1681
b0655a87
OK
1682WXDLLEXPORT int wxIsalnum(wxChar ch) { return IsCharAlphaNumeric(ch); }
1683WXDLLEXPORT int wxIsalpha(wxChar ch) { return IsCharAlpha(ch); }
4eb7c4b1 1684WXDLLEXPORT int wxIscntrl(wxChar ch) { return wxMSW_ctype(ch) & C1_CNTRL; }
b0655a87
OK
1685WXDLLEXPORT int wxIsdigit(wxChar ch) { return wxMSW_ctype(ch) & C1_DIGIT; }
1686WXDLLEXPORT int wxIsgraph(wxChar ch) { return wxMSW_ctype(ch) & (C1_DIGIT|C1_PUNCT|C1_ALPHA); }
1687WXDLLEXPORT int wxIslower(wxChar ch) { return IsCharLower(ch); }
1688WXDLLEXPORT int wxIsprint(wxChar ch) { return wxMSW_ctype(ch) & (C1_DIGIT|C1_SPACE|C1_PUNCT|C1_ALPHA); }
1689WXDLLEXPORT int wxIspunct(wxChar ch) { return wxMSW_ctype(ch) & C1_PUNCT; }
1690WXDLLEXPORT int wxIsspace(wxChar ch) { return wxMSW_ctype(ch) & C1_SPACE; }
1691WXDLLEXPORT int wxIsupper(wxChar ch) { return IsCharUpper(ch); }
1692WXDLLEXPORT int wxIsxdigit(wxChar ch) { return wxMSW_ctype(ch) & C1_XDIGIT; }
1693WXDLLEXPORT int wxTolower(wxChar ch) { return (wxChar)CharLower((LPTSTR)(ch)); }
1694WXDLLEXPORT int wxToupper(wxChar ch) { return (wxChar)CharUpper((LPTSTR)(ch)); }
57f6da0d
OK
1695#endif
1696
dbf9aa46 1697#ifdef wxNEED_WX_MBSTOWCS
dcb68102 1698
1e96e503 1699WXDLLEXPORT size_t wxMbstowcs (wchar_t * out, const char * in, size_t outlen)
dcb68102
RN
1700{
1701 if (!out)
1702 {
1703 size_t outsize = 0;
1704 while(*in++)
1705 outsize++;
1706 return outsize;
1707 }
525d8583 1708
dcb68102 1709 const char* origin = in;
525d8583 1710
dcb68102
RN
1711 while (outlen-- && *in)
1712 {
1713 *out++ = (wchar_t) *in++;
1714 }
525d8583 1715
dcb68102 1716 *out = '\0';
525d8583 1717
dcb68102
RN
1718 return in - origin;
1719}
1720
41e155b4 1721WXDLLEXPORT size_t wxWcstombs (char * out, const wchar_t * in, size_t outlen)
dcb68102
RN
1722{
1723 if (!out)
1724 {
1725 size_t outsize = 0;
1726 while(*in++)
1727 outsize++;
1728 return outsize;
1729 }
525d8583 1730
dcb68102 1731 const wchar_t* origin = in;
525d8583 1732
dcb68102
RN
1733 while (outlen-- && *in)
1734 {
1735 *out++ = (char) *in++;
1736 }
525d8583 1737
dcb68102 1738 *out = '\0';
525d8583 1739
dcb68102
RN
1740 return in - origin;
1741}
525d8583 1742
dbf9aa46
VZ
1743#endif // wxNEED_WX_MBSTOWCS
1744
dcb68102
RN
1745#if defined(wxNEED_WX_CTYPE_H)
1746
1747#include <CoreFoundation/CoreFoundation.h>
1748
eaceebf6
RN
1749#define cfalnumset CFCharacterSetGetPredefined(kCFCharacterSetAlphaNumeric)
1750#define cfalphaset CFCharacterSetGetPredefined(kCFCharacterSetLetter)
1751#define cfcntrlset CFCharacterSetGetPredefined(kCFCharacterSetControl)
1752#define cfdigitset CFCharacterSetGetPredefined(kCFCharacterSetDecimalDigit)
dcb68102 1753//CFCharacterSetRef cfgraphset = kCFCharacterSetControl && !' '
eaceebf6 1754#define cflowerset CFCharacterSetGetPredefined(kCFCharacterSetLowercaseLetter)
dcb68102 1755//CFCharacterSetRef cfprintset = !kCFCharacterSetControl
eaceebf6
RN
1756#define cfpunctset CFCharacterSetGetPredefined(kCFCharacterSetPunctuation)
1757#define cfspaceset CFCharacterSetGetPredefined(kCFCharacterSetWhitespaceAndNewline)
1758#define cfupperset CFCharacterSetGetPredefined(kCFCharacterSetUppercaseLetter)
dcb68102
RN
1759
1760WXDLLEXPORT int wxIsalnum(wxChar ch) { return CFCharacterSetIsCharacterMember(cfalnumset, ch); }
1761WXDLLEXPORT int wxIsalpha(wxChar ch) { return CFCharacterSetIsCharacterMember(cfalphaset, ch); }
1762WXDLLEXPORT int wxIscntrl(wxChar ch) { return CFCharacterSetIsCharacterMember(cfcntrlset, ch); }
1763WXDLLEXPORT int wxIsdigit(wxChar ch) { return CFCharacterSetIsCharacterMember(cfdigitset, ch); }
1764WXDLLEXPORT int wxIsgraph(wxChar ch) { return !CFCharacterSetIsCharacterMember(cfcntrlset, ch) && ch != ' '; }
1765WXDLLEXPORT int wxIslower(wxChar ch) { return CFCharacterSetIsCharacterMember(cflowerset, ch); }
1766WXDLLEXPORT int wxIsprint(wxChar ch) { return !CFCharacterSetIsCharacterMember(cfcntrlset, ch); }
1767WXDLLEXPORT int wxIspunct(wxChar ch) { return CFCharacterSetIsCharacterMember(cfpunctset, ch); }
1768WXDLLEXPORT int wxIsspace(wxChar ch) { return CFCharacterSetIsCharacterMember(cfspaceset, ch); }
1769WXDLLEXPORT int wxIsupper(wxChar ch) { return CFCharacterSetIsCharacterMember(cfupperset, ch); }
1770WXDLLEXPORT int wxIsxdigit(wxChar ch) { return wxIsdigit(ch) || (ch>='a' && ch<='f') || (ch>='A' && ch<='F'); }
1771WXDLLEXPORT int wxTolower(wxChar ch) { return (wxChar)tolower((char)(ch)); }
1772WXDLLEXPORT int wxToupper(wxChar ch) { return (wxChar)toupper((char)(ch)); }
dcb68102 1773
8a9c20b0
RN
1774#endif // wxNEED_WX_CTYPE_H
1775
07243717
VZ
1776#ifndef wxStrdupA
1777
1778WXDLLEXPORT char *wxStrdupA(const char *s)
1779{
1780 return strcpy((char *)malloc(strlen(s) + 1), s);
1781}
1782
1783#endif // wxStrdupA
1784
1785#ifndef wxStrdupW
1786
1787WXDLLEXPORT wchar_t * wxStrdupW(const wchar_t *pwz)
c9e089e9 1788{
07243717
VZ
1789 size_t size = (wxWcslen(pwz) + 1) * sizeof(wchar_t);
1790 wchar_t *ret = (wchar_t *) malloc(size);
1791 memcpy(ret, pwz, size);
c9e089e9
OK
1792 return ret;
1793}
07243717
VZ
1794
1795#endif // wxStrdupW
c9e089e9 1796
d0bdc3ca
OK
1797#ifndef wxStricmp
1798int WXDLLEXPORT wxStricmp(const wxChar *psz1, const wxChar *psz2)
1799{
1800 register wxChar c1, c2;
1801 do {
1802 c1 = wxTolower(*psz1++);
1803 c2 = wxTolower(*psz2++);
1804 } while ( c1 && (c1 == c2) );
1805 return c1 - c2;
1806}
1807#endif
1808
e766c8a9
SC
1809#ifndef wxStricmp
1810int WXDLLEXPORT wxStrnicmp(const wxChar *s1, const wxChar *s2, size_t n)
1811{
a400a823
VZ
1812 // initialize the variables just to suppress stupid gcc warning
1813 register wxChar c1 = 0, c2 = 0;
e766c8a9
SC
1814 while (n && ((c1 = wxTolower(*s1)) == (c2 = wxTolower(*s2)) ) && c1) n--, s1++, s2++;
1815 if (n) {
1816 if (c1 < c2) return -1;
1817 if (c1 > c2) return 1;
1818 }
1819 return 0;
1820}
1821#endif
1822
c9e089e9 1823#ifndef wxSetlocale
191ab39a 1824WXDLLEXPORT wxWCharBuffer wxSetlocale(int category, const wxChar *locale)
c9e089e9 1825{
ddf14c13 1826 char *localeOld = setlocale(category, wxConvLibc.cWX2MB(locale));
929eed47 1827
ddf14c13 1828 return wxWCharBuffer(wxConvLibc.cMB2WC(localeOld));
c9e089e9
OK
1829}
1830#endif
1831
30261041
RN
1832#if wxUSE_WCHAR_T && !defined(HAVE_WCSLEN)
1833WXDLLEXPORT size_t wxWcslen(const wchar_t *s)
1834{
1835 size_t n = 0;
1836 while ( *s++ )
1837 n++;
1838
1839 return n;
1840}
1841#endif
1842
f6f5941b
VZ
1843// ----------------------------------------------------------------------------
1844// string.h functions
1845// ----------------------------------------------------------------------------
1846
b0655a87 1847#ifdef wxNEED_WX_STRING_H
30261041
RN
1848
1849// RN: These need to be c externed for the regex lib
1850#ifdef __cplusplus
1851extern "C" {
1852#endif
1853
b0655a87
OK
1854WXDLLEXPORT wxChar * wxStrcat(wxChar *dest, const wxChar *src)
1855{
1856 wxChar *ret = dest;
1857 while (*dest) dest++;
1858 while ((*dest++ = *src++));
1859 return ret;
1860}
1861
109c7768 1862WXDLLEXPORT const wxChar * wxStrchr(const wxChar *s, wxChar c)
b0655a87 1863{
109c7768
VZ
1864 // be careful here as the terminating NUL makes part of the string
1865 while ( *s != c )
1866 {
1867 if ( !*s++ )
1868 return NULL;
1869 }
1870
1871 return s;
b0655a87
OK
1872}
1873
1874WXDLLEXPORT int wxStrcmp(const wxChar *s1, const wxChar *s2)
1875{
1876 while ((*s1 == *s2) && *s1) s1++, s2++;
1877 if ((wxUChar)*s1 < (wxUChar)*s2) return -1;
1878 if ((wxUChar)*s1 > (wxUChar)*s2) return 1;
1879 return 0;
1880}
1881
1882WXDLLEXPORT wxChar * wxStrcpy(wxChar *dest, const wxChar *src)
1883{
1884 wxChar *ret = dest;
1885 while ((*dest++ = *src++));
1886 return ret;
1887}
1888
dcb68102
RN
1889WXDLLEXPORT size_t wxStrlen_(const wxChar *s)
1890{
1891 size_t n = 0;
1892 while ( *s++ )
1893 n++;
525d8583 1894
dcb68102
RN
1895 return n;
1896}
1897
1898
b0655a87
OK
1899WXDLLEXPORT wxChar * wxStrncat(wxChar *dest, const wxChar *src, size_t n)
1900{
1901 wxChar *ret = dest;
1902 while (*dest) dest++;
1903 while (n && (*dest++ = *src++)) n--;
1904 return ret;
1905}
1906
a5e0b1e8
OK
1907WXDLLEXPORT int wxStrncmp(const wxChar *s1, const wxChar *s2, size_t n)
1908{
1909 while (n && (*s1 == *s2) && *s1) n--, s1++, s2++;
1910 if (n) {
1911 if ((wxUChar)*s1 < (wxUChar)*s2) return -1;
1912 if ((wxUChar)*s1 > (wxUChar)*s2) return 1;
1913 }
1914 return 0;
1915}
1916
b0655a87
OK
1917WXDLLEXPORT wxChar * wxStrncpy(wxChar *dest, const wxChar *src, size_t n)
1918{
1919 wxChar *ret = dest;
1920 while (n && (*dest++ = *src++)) n--;
1921 while (n) *dest++=0, n--; // the docs specify padding with zeroes
1922 return ret;
1923}
1924
109c7768 1925WXDLLEXPORT const wxChar * wxStrpbrk(const wxChar *s, const wxChar *accept)
b0655a87 1926{
109c7768
VZ
1927 while (*s && !wxStrchr(accept, *s))
1928 s++;
1929
1930 return *s ? s : NULL;
b0655a87
OK
1931}
1932
109c7768 1933WXDLLEXPORT const wxChar * wxStrrchr(const wxChar *s, wxChar c)
b0655a87 1934{
109c7768
VZ
1935 const wxChar *ret = NULL;
1936 do
1937 {
1938 if ( *s == c )
1939 ret = s;
1940 s++;
1941 }
1942 while ( *s );
1943
1944 return ret;
b0655a87
OK
1945}
1946
1947WXDLLEXPORT size_t wxStrspn(const wxChar *s, const wxChar *accept)
1948{
1949 size_t len = 0;
1950 while (wxStrchr(accept, *s++)) len++;
1951 return len;
1952}
1953
109c7768 1954WXDLLEXPORT const wxChar *wxStrstr(const wxChar *haystack, const wxChar *needle)
b0655a87 1955{
dcb68102 1956 wxASSERT_MSG( needle != NULL, _T("NULL argument in wxStrstr") );
9f6fe288 1957
109c7768
VZ
1958 // VZ: this is not exactly the most efficient string search algorithm...
1959
9f6fe288
VZ
1960 const size_t len = wxStrlen(needle);
1961
109c7768 1962 while ( const wxChar *fnd = wxStrchr(haystack, *needle) )
9f6fe288
VZ
1963 {
1964 if ( !wxStrncmp(fnd, needle, len) )
1965 return fnd;
1966
1967 haystack = fnd + 1;
1968 }
1969
109c7768 1970 return NULL;
b0655a87
OK
1971}
1972
30261041
RN
1973#ifdef __cplusplus
1974}
1975#endif
1976
b0655a87
OK
1977WXDLLEXPORT double wxStrtod(const wxChar *nptr, wxChar **endptr)
1978{
1979 const wxChar *start = nptr;
1980
1981 // FIXME: only correct for C locale
1982 while (wxIsspace(*nptr)) nptr++;
223d09f6 1983 if (*nptr == wxT('+') || *nptr == wxT('-')) nptr++;
b0655a87 1984 while (wxIsdigit(*nptr)) nptr++;
223d09f6 1985 if (*nptr == wxT('.')) {
b0655a87
OK
1986 nptr++;
1987 while (wxIsdigit(*nptr)) nptr++;
1988 }
223d09f6 1989 if (*nptr == wxT('E') || *nptr == wxT('e')) {
b0655a87 1990 nptr++;
223d09f6 1991 if (*nptr == wxT('+') || *nptr == wxT('-')) nptr++;
b0655a87
OK
1992 while (wxIsdigit(*nptr)) nptr++;
1993 }
1994
1995 wxString data(nptr, nptr-start);
ddf14c13 1996 wxWX2MBbuf dat = data.mb_str(wxConvLibc);
e90c1d2a 1997 char *rdat = wxMBSTRINGCAST dat;
b0655a87
OK
1998 double ret = strtod(dat, &rdat);
1999
2000 if (endptr) *endptr = (wxChar *)(start + (rdat - (const char *)dat));
2001
2002 return ret;
2003}
2004
2005WXDLLEXPORT long int wxStrtol(const wxChar *nptr, wxChar **endptr, int base)
2006{
2007 const wxChar *start = nptr;
2008
2009 // FIXME: only correct for C locale
2010 while (wxIsspace(*nptr)) nptr++;
223d09f6 2011 if (*nptr == wxT('+') || *nptr == wxT('-')) nptr++;
b0655a87 2012 if (((base == 0) || (base == 16)) &&
223d09f6 2013 (nptr[0] == wxT('0') && nptr[1] == wxT('x'))) {
b0655a87
OK
2014 nptr += 2;
2015 base = 16;
2016 }
223d09f6 2017 else if ((base == 0) && (nptr[0] == wxT('0'))) base = 8;
b0655a87
OK
2018 else if (base == 0) base = 10;
2019
223d09f6
KB
2020 while ((wxIsdigit(*nptr) && (*nptr - wxT('0') < base)) ||
2021 (wxIsalpha(*nptr) && (wxToupper(*nptr) - wxT('A') + 10 < base))) nptr++;
b0655a87 2022
dcb68102 2023 wxString data(start, nptr-start);
ddf14c13 2024 wxWX2MBbuf dat = data.mb_str(wxConvLibc);
e90c1d2a 2025 char *rdat = wxMBSTRINGCAST dat;
b0655a87
OK
2026 long int ret = strtol(dat, &rdat, base);
2027
2028 if (endptr) *endptr = (wxChar *)(start + (rdat - (const char *)dat));
2029
2030 return ret;
2031}
dcb68102
RN
2032
2033WXDLLEXPORT unsigned long int wxStrtoul(const wxChar *nptr, wxChar **endptr, int base)
2034{
2035 return (unsigned long int) wxStrtol(nptr, endptr, base);
2036}
2037
f6f5941b 2038#endif // wxNEED_WX_STRING_H
b0655a87 2039
c9e089e9 2040#ifdef wxNEED_WX_STDIO_H
e7b3d6ba
OK
2041WXDLLEXPORT FILE * wxFopen(const wxChar *path, const wxChar *mode)
2042{
b1ac3b56
RR
2043 char mode_buffer[10];
2044 for (size_t i = 0; i < wxStrlen(mode)+1; i++)
2045 mode_buffer[i] = (char) mode[i];
f6f5941b 2046
b1ac3b56 2047 return fopen( wxConvFile.cWX2MB(path), mode_buffer );
e7b3d6ba
OK
2048}
2049
2050WXDLLEXPORT FILE * wxFreopen(const wxChar *path, const wxChar *mode, FILE *stream)
2051{
b1ac3b56
RR
2052 char mode_buffer[10];
2053 for (size_t i = 0; i < wxStrlen(mode)+1; i++)
2054 mode_buffer[i] = (char) mode[i];
f6f5941b 2055
b1ac3b56 2056 return freopen( wxConvFile.cWX2MB(path), mode_buffer, stream );
e7b3d6ba
OK
2057}
2058
f6bcfd97
BP
2059WXDLLEXPORT int wxRemove(const wxChar *path)
2060{
92980e90 2061 return remove( wxConvFile.cWX2MB(path) );
f6bcfd97
BP
2062}
2063
2064WXDLLEXPORT int wxRename(const wxChar *oldpath, const wxChar *newpath)
2065{
92980e90 2066 return rename( wxConvFile.cWX2MB(oldpath), wxConvFile.cWX2MB(newpath) );
f6bcfd97 2067}
c9e089e9
OK
2068#endif
2069
b7a5d6ca 2070#ifndef wxAtof
c9e089e9
OK
2071double WXDLLEXPORT wxAtof(const wxChar *psz)
2072{
4676948b
JS
2073#ifdef __WXWINCE__
2074 double d;
2075 wxString str(psz);
2076 if (str.ToDouble(& d))
2077 return d;
41e155b4
WS
2078
2079 return 0.0;
4676948b 2080#else
ddf14c13 2081 return atof(wxConvLibc.cWX2MB(psz));
4676948b 2082#endif
c9e089e9 2083}
b7a5d6ca 2084#endif
c9e089e9 2085
b7a5d6ca 2086#ifdef wxNEED_WX_STDLIB_H
c9e089e9
OK
2087int WXDLLEXPORT wxAtoi(const wxChar *psz)
2088{
ddf14c13 2089 return atoi(wxConvLibc.cWX2MB(psz));
c9e089e9
OK
2090}
2091
2092long WXDLLEXPORT wxAtol(const wxChar *psz)
2093{
ddf14c13 2094 return atol(wxConvLibc.cWX2MB(psz));
c9e089e9
OK
2095}
2096
2097wxChar * WXDLLEXPORT wxGetenv(const wxChar *name)
2098{
78868257 2099#if wxUSE_UNICODE
4772f8e1
VS
2100 // NB: buffer returned by getenv() is allowed to be overwritten next
2101 // time getenv() is called, so it is OK to use static string
2102 // buffer to hold the data.
2103 static wxWCharBuffer value((wxChar*)NULL);
ddf14c13 2104 value = wxConvLibc.cMB2WX(getenv(wxConvLibc.cWX2MB(name)));
4772f8e1 2105 return value.data();
92980e90 2106#else
4772f8e1 2107 return getenv(name);
92980e90 2108#endif
c9e089e9
OK
2109}
2110
b1ac3b56 2111int WXDLLEXPORT wxSystem(const wxChar *psz)
c9e089e9 2112{
ddf14c13 2113 return system(wxConvLibc.cWX2MB(psz));
c9e089e9
OK
2114}
2115
33a7c3dd 2116#endif // wxNEED_WX_STDLIB_H
e7b3d6ba
OK
2117
2118#ifdef wxNEED_WX_TIME_H
26378b41
VZ
2119WXDLLEXPORT size_t
2120wxStrftime(wxChar *s, size_t maxsize, const wxChar *fmt, const struct tm *tm)
e7b3d6ba 2121{
26378b41
VZ
2122 if ( !maxsize )
2123 return 0;
f6f5941b 2124
26378b41
VZ
2125 wxCharBuffer buf(maxsize);
2126
ddf14c13 2127 wxCharBuffer bufFmt(wxConvLibc.cWX2MB(fmt));
26378b41 2128 if ( !bufFmt )
b1ac3b56 2129 return 0;
26378b41
VZ
2130
2131 size_t ret = strftime(buf.data(), maxsize, bufFmt, tm);
2132 if ( !ret )
2133 return 0;
2134
ddf14c13 2135 wxWCharBuffer wbuf = wxConvLibc.cMB2WX(buf);
26378b41
VZ
2136 if ( !wbuf )
2137 return 0;
2138
2139 wxStrncpy(s, wbuf, maxsize);
2140 return wxStrlen(s);
e7b3d6ba 2141}
33a7c3dd
VZ
2142#endif // wxNEED_WX_TIME_H
2143
b63b07a8
RL
2144#ifndef wxCtime
2145WXDLLEXPORT wxChar *wxCtime(const time_t *timep)
2146{
9348da2f
VZ
2147 // normally the string is 26 chars but give one more in case some broken
2148 // DOS compiler decides to use "\r\n" instead of "\n" at the end
2149 static wxChar buf[27];
2150
2151 // ctime() is guaranteed to return a string containing only ASCII
2152 // characters, as its format is always the same for any locale
2153 wxStrncpy(buf, wxString::FromAscii(ctime(timep)), WXSIZEOF(buf));
2154 buf[WXSIZEOF(buf) - 1] = _T('\0');
b63b07a8
RL
2155
2156 return buf;
2157}
2158#endif // wxCtime
2159
33a7c3dd
VZ
2160#endif // wxUSE_WCHAR_T
2161
2162// ----------------------------------------------------------------------------
2163// functions which we may need even if !wxUSE_WCHAR_T
2164// ----------------------------------------------------------------------------
2165
2166#ifndef wxStrtok
2167
2168WXDLLEXPORT wxChar * wxStrtok(wxChar *psz, const wxChar *delim, wxChar **save_ptr)
2169{
2170 if (!psz)
2171 {
2172 psz = *save_ptr;
2173 if ( !psz )
2174 return NULL;
2175 }
2176
2177 psz += wxStrspn(psz, delim);
2178 if (!*psz)
2179 {
2180 *save_ptr = (wxChar *)NULL;
2181 return (wxChar *)NULL;
2182 }
2183
2184 wxChar *ret = psz;
2185 psz = wxStrpbrk(psz, delim);
2186 if (!psz)
2187 {
2188 *save_ptr = (wxChar*)NULL;
2189 }
2190 else
2191 {
2192 *psz = wxT('\0');
2193 *save_ptr = psz + 1;
2194 }
2195
2196 return ret;
2197}
2198
2199#endif // wxStrtok
2200
2bb1e1f4
SC
2201// ----------------------------------------------------------------------------
2202// missing C RTL functions
2203// ----------------------------------------------------------------------------
2204
896e226a 2205#ifdef wxNEED_STRDUP
27db4210 2206
2bb1e1f4
SC
2207char *strdup(const char *s)
2208{
d314acc0
SC
2209 char *dest = (char*) malloc( strlen( s ) + 1 ) ;
2210 if ( dest )
2211 strcpy( dest , s ) ;
2212 return dest ;
2bb1e1f4 2213}
27db4210 2214#endif // wxNEED_STRDUP
0be9ace2 2215
eae4425d 2216#if defined(__WXWINCE__) && (_WIN32_WCE <= 211)
27db4210 2217
0be9ace2
JS
2218void *calloc( size_t num, size_t size )
2219{
2220 void** ptr = (void **)malloc(num * size);
2221 memset( ptr, 0, num * size);
2222 return ptr;
2223}
42d11c8e 2224
27db4210 2225#endif // __WXWINCE__ <= 211
4c663122 2226
619be6d0
JS
2227#ifdef __WXWINCE__
2228
2229int wxRemove(const wxChar *path)
2230{
2231 return ::DeleteFile(path) == 0;
2232}
2233
2234#endif