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1 /////////////////////////////////////////////////////////////////////////////
2 // Name: src/common/string.cpp
3 // Purpose: wxString class
4 // Author: Vadim Zeitlin, Ryan Norton
5 // Modified by:
6 // Created: 29/01/98
7 // RCS-ID: $Id$
8 // Copyright: (c) 1998 Vadim Zeitlin <zeitlin@dptmaths.ens-cachan.fr>
9 // (c) 2004 Ryan Norton <wxprojects@comcast.net>
10 // Licence: wxWindows licence
11 /////////////////////////////////////////////////////////////////////////////
12
13 // ===========================================================================
14 // headers, declarations, constants
15 // ===========================================================================
16
17 // For compilers that support precompilation, includes "wx.h".
18 #include "wx/wxprec.h"
19
20 #ifdef __BORLANDC__
21 #pragma hdrstop
22 #endif
23
24 #ifndef WX_PRECOMP
25 #include "wx/string.h"
26 #include "wx/wxcrtvararg.h"
27 #endif
28
29 #include <ctype.h>
30
31 #ifndef __WXWINCE__
32 #include <errno.h>
33 #endif
34
35 #include <string.h>
36 #include <stdlib.h>
37
38 #ifdef __SALFORDC__
39 #include <clib.h>
40 #endif
41
42 #include "wx/hashmap.h"
43
44 // string handling functions used by wxString:
45 #if wxUSE_UNICODE_UTF8
46 #define wxStringMemcpy memcpy
47 #define wxStringMemcmp memcmp
48 #define wxStringMemchr memchr
49 #define wxStringStrlen strlen
50 #else
51 #define wxStringMemcpy wxTmemcpy
52 #define wxStringMemcmp wxTmemcmp
53 #define wxStringMemchr wxTmemchr
54 #define wxStringStrlen wxStrlen
55 #endif
56
57
58 // ---------------------------------------------------------------------------
59 // static class variables definition
60 // ---------------------------------------------------------------------------
61
62 //According to STL _must_ be a -1 size_t
63 const size_t wxString::npos = (size_t) -1;
64
65 // ----------------------------------------------------------------------------
66 // global functions
67 // ----------------------------------------------------------------------------
68
69 #if wxUSE_STD_IOSTREAM
70
71 #include <iostream>
72
73 wxSTD ostream& operator<<(wxSTD ostream& os, const wxCStrData& str)
74 {
75 // FIXME-UTF8: always, not only if wxUSE_UNICODE
76 #if wxUSE_UNICODE && !defined(__BORLANDC__)
77 return os << (const wchar_t*)str.AsWCharBuf();
78 #else
79 return os << (const char*)str.AsCharBuf();
80 #endif
81 }
82
83 wxSTD ostream& operator<<(wxSTD ostream& os, const wxString& str)
84 {
85 return os << str.c_str();
86 }
87
88 wxSTD ostream& operator<<(wxSTD ostream& os, const wxCharBuffer& str)
89 {
90 return os << str.data();
91 }
92
93 #ifndef __BORLANDC__
94 wxSTD ostream& operator<<(wxSTD ostream& os, const wxWCharBuffer& str)
95 {
96 return os << str.data();
97 }
98 #endif
99
100 #endif // wxUSE_STD_IOSTREAM
101
102 // ===========================================================================
103 // wxString class core
104 // ===========================================================================
105
106 #if wxUSE_UNICODE_UTF8
107
108 void wxString::PosLenToImpl(size_t pos, size_t len,
109 size_t *implPos, size_t *implLen) const
110 {
111 if ( pos == npos )
112 *implPos = npos;
113 else
114 {
115 const_iterator i = begin() + pos;
116 *implPos = wxStringImpl::const_iterator(i.impl()) - m_impl.begin();
117 if ( len == npos )
118 *implLen = npos;
119 else
120 {
121 // too large length is interpreted as "to the end of the string"
122 // FIXME-UTF8: verify this is the case in std::string, assert
123 // otherwise
124 if ( pos + len > length() )
125 len = length() - pos;
126
127 *implLen = (i + len).impl() - i.impl();
128 }
129 }
130 }
131
132 #endif // wxUSE_UNICODE_UTF8
133
134 // ----------------------------------------------------------------------------
135 // wxCStrData converted strings caching
136 // ----------------------------------------------------------------------------
137
138 // FIXME-UTF8: temporarily disabled because it doesn't work with global
139 // string objects; re-enable after fixing this bug and benchmarking
140 // performance to see if using a hash is a good idea at all
141 #if 0
142
143 // For backward compatibility reasons, it must be possible to assign the value
144 // returned by wxString::c_str() to a char* or wchar_t* variable and work with
145 // it. Returning wxCharBuffer from (const char*)c_str() wouldn't do the trick,
146 // because the memory would be freed immediately, but it has to be valid as long
147 // as the string is not modified, so that code like this still works:
148 //
149 // const wxChar *s = str.c_str();
150 // while ( s ) { ... }
151
152 // FIXME-UTF8: not thread safe!
153 // FIXME-UTF8: we currently clear the cached conversion only when the string is
154 // destroyed, but we should do it when the string is modified, to
155 // keep memory usage down
156 // FIXME-UTF8: we do the conversion every time As[W]Char() is called, but if we
157 // invalidated the cache on every change, we could keep the previous
158 // conversion
159 // FIXME-UTF8: add tracing of usage of these two methods - new code is supposed
160 // to use mb_str() or wc_str() instead of (const [w]char*)c_str()
161
162 template<typename T>
163 static inline void DeleteStringFromConversionCache(T& hash, const wxString *s)
164 {
165 typename T::iterator i = hash.find(wxConstCast(s, wxString));
166 if ( i != hash.end() )
167 {
168 free(i->second);
169 hash.erase(i);
170 }
171 }
172
173 #if wxUSE_UNICODE
174 // NB: non-STL implementation doesn't compile with "const wxString*" key type,
175 // so we have to use wxString* here and const-cast when used
176 WX_DECLARE_HASH_MAP(wxString*, char*, wxPointerHash, wxPointerEqual,
177 wxStringCharConversionCache);
178 static wxStringCharConversionCache gs_stringsCharCache;
179
180 const char* wxCStrData::AsChar() const
181 {
182 // remove previously cache value, if any (see FIXMEs above):
183 DeleteStringFromConversionCache(gs_stringsCharCache, m_str);
184
185 // convert the string and keep it:
186 const char *s = gs_stringsCharCache[wxConstCast(m_str, wxString)] =
187 m_str->mb_str().release();
188
189 return s + m_offset;
190 }
191 #endif // wxUSE_UNICODE
192
193 #if !wxUSE_UNICODE_WCHAR
194 WX_DECLARE_HASH_MAP(wxString*, wchar_t*, wxPointerHash, wxPointerEqual,
195 wxStringWCharConversionCache);
196 static wxStringWCharConversionCache gs_stringsWCharCache;
197
198 const wchar_t* wxCStrData::AsWChar() const
199 {
200 // remove previously cache value, if any (see FIXMEs above):
201 DeleteStringFromConversionCache(gs_stringsWCharCache, m_str);
202
203 // convert the string and keep it:
204 const wchar_t *s = gs_stringsWCharCache[wxConstCast(m_str, wxString)] =
205 m_str->wc_str().release();
206
207 return s + m_offset;
208 }
209 #endif // !wxUSE_UNICODE_WCHAR
210
211 wxString::~wxString()
212 {
213 #if wxUSE_UNICODE
214 // FIXME-UTF8: do this only if locale is not UTF8 if wxUSE_UNICODE_UTF8
215 DeleteStringFromConversionCache(gs_stringsCharCache, this);
216 #endif
217 #if !wxUSE_UNICODE_WCHAR
218 DeleteStringFromConversionCache(gs_stringsWCharCache, this);
219 #endif
220 }
221 #endif
222
223 #if wxUSE_UNICODE && !wxUSE_UTF8_LOCALE_ONLY
224 const char* wxCStrData::AsChar() const
225 {
226 #if wxUSE_UNICODE_UTF8
227 if ( wxLocaleIsUtf8 )
228 return AsInternal();
229 #endif
230 // under non-UTF8 locales, we have to convert the internal UTF-8
231 // representation using wxConvLibc and cache the result
232
233 wxString *str = wxConstCast(m_str, wxString);
234
235 // convert the string:
236 //
237 // FIXME-UTF8: we'd like to do the conversion in the existing buffer (if we
238 // have it) but it's unfortunately not obvious to implement
239 // because we don't know how big buffer do we need for the
240 // given string length (in case of multibyte encodings, e.g.
241 // ISO-2022-JP or UTF-8 when internal representation is wchar_t)
242 //
243 // One idea would be to store more than just m_convertedToChar
244 // in wxString: then we could record the length of the string
245 // which was converted the last time and try to reuse the same
246 // buffer if the current length is not greater than it (this
247 // could still fail because string could have been modified in
248 // place but it would work most of the time, so we'd do it and
249 // only allocate the new buffer if in-place conversion returned
250 // an error). We could also store a bit saying if the string
251 // was modified since the last conversion (and update it in all
252 // operation modifying the string, of course) to avoid unneeded
253 // consequential conversions. But both of these ideas require
254 // adding more fields to wxString and require profiling results
255 // to be sure that we really gain enough from them to justify
256 // doing it.
257 wxCharBuffer buf(str->mb_str());
258
259 // if it failed, return empty string and not NULL to avoid crashes in code
260 // written with either wxWidgets 2 wxString or std::string behaviour in
261 // mind: neither of them ever returns NULL and so we shouldn't neither
262 if ( !buf )
263 return "";
264
265 if ( str->m_convertedToChar &&
266 strlen(buf) == strlen(str->m_convertedToChar) )
267 {
268 // keep the same buffer for as long as possible, so that several calls
269 // to c_str() in a row still work:
270 strcpy(str->m_convertedToChar, buf);
271 }
272 else
273 {
274 str->m_convertedToChar = buf.release();
275 }
276
277 // and keep it:
278 return str->m_convertedToChar + m_offset;
279 }
280 #endif // wxUSE_UNICODE && !wxUSE_UTF8_LOCALE_ONLY
281
282 #if !wxUSE_UNICODE_WCHAR
283 const wchar_t* wxCStrData::AsWChar() const
284 {
285 wxString *str = wxConstCast(m_str, wxString);
286
287 // convert the string:
288 wxWCharBuffer buf(str->wc_str());
289
290 // notice that here, unlike above in AsChar(), conversion can't fail as our
291 // internal UTF-8 is always well-formed -- or the string was corrupted and
292 // all bets are off anyhow
293
294 // FIXME-UTF8: do the conversion in-place in the existing buffer
295 if ( str->m_convertedToWChar &&
296 wxWcslen(buf) == wxWcslen(str->m_convertedToWChar) )
297 {
298 // keep the same buffer for as long as possible, so that several calls
299 // to c_str() in a row still work:
300 memcpy(str->m_convertedToWChar, buf, sizeof(wchar_t) * wxWcslen(buf));
301 }
302 else
303 {
304 str->m_convertedToWChar = buf.release();
305 }
306
307 // and keep it:
308 return str->m_convertedToWChar + m_offset;
309 }
310 #endif // !wxUSE_UNICODE_WCHAR
311
312 // ===========================================================================
313 // wxString class core
314 // ===========================================================================
315
316 // ---------------------------------------------------------------------------
317 // construction and conversion
318 // ---------------------------------------------------------------------------
319
320 #if wxUSE_UNICODE_WCHAR
321 /* static */
322 wxString::SubstrBufFromMB wxString::ConvertStr(const char *psz, size_t nLength,
323 const wxMBConv& conv)
324 {
325 // anything to do?
326 if ( !psz || nLength == 0 )
327 return SubstrBufFromMB(L"", 0);
328
329 if ( nLength == npos )
330 nLength = wxNO_LEN;
331
332 size_t wcLen;
333 wxWCharBuffer wcBuf(conv.cMB2WC(psz, nLength, &wcLen));
334 if ( !wcLen )
335 return SubstrBufFromMB(_T(""), 0);
336 else
337 return SubstrBufFromMB(wcBuf, wcLen);
338 }
339 #endif // wxUSE_UNICODE_WCHAR
340
341 #if wxUSE_UNICODE_UTF8
342 /* static */
343 wxString::SubstrBufFromMB wxString::ConvertStr(const char *psz, size_t nLength,
344 const wxMBConv& conv)
345 {
346 // anything to do?
347 if ( !psz || nLength == 0 )
348 return SubstrBufFromMB("", 0);
349
350 // if psz is already in UTF-8, we don't have to do the roundtrip to
351 // wchar_t* and back:
352 if ( conv.IsUTF8() )
353 {
354 // we need to validate the input because UTF8 iterators assume valid
355 // UTF-8 sequence and psz may be invalid:
356 if ( wxStringOperations::IsValidUtf8String(psz, nLength) )
357 {
358 return SubstrBufFromMB(wxCharBuffer::CreateNonOwned(psz), nLength);
359 }
360 // else: do the roundtrip through wchar_t*
361 }
362
363 if ( nLength == npos )
364 nLength = wxNO_LEN;
365
366 // first convert to wide string:
367 size_t wcLen;
368 wxWCharBuffer wcBuf(conv.cMB2WC(psz, nLength, &wcLen));
369 if ( !wcLen )
370 return SubstrBufFromMB("", 0);
371
372 // and then to UTF-8:
373 SubstrBufFromMB buf(ConvertStr(wcBuf, wcLen, wxMBConvStrictUTF8()));
374 // widechar -> UTF-8 conversion isn't supposed to ever fail:
375 wxASSERT_MSG( buf.data, _T("conversion to UTF-8 failed") );
376
377 return buf;
378 }
379 #endif // wxUSE_UNICODE_UTF8
380
381 #if wxUSE_UNICODE_UTF8 || !wxUSE_UNICODE
382 /* static */
383 wxString::SubstrBufFromWC wxString::ConvertStr(const wchar_t *pwz, size_t nLength,
384 const wxMBConv& conv)
385 {
386 // anything to do?
387 if ( !pwz || nLength == 0 )
388 return SubstrBufFromWC("", 0);
389
390 if ( nLength == npos )
391 nLength = wxNO_LEN;
392
393 size_t mbLen;
394 wxCharBuffer mbBuf(conv.cWC2MB(pwz, nLength, &mbLen));
395 if ( !mbLen )
396 return SubstrBufFromWC("", 0);
397 else
398 return SubstrBufFromWC(mbBuf, mbLen);
399 }
400 #endif // wxUSE_UNICODE_UTF8 || !wxUSE_UNICODE
401
402
403 #if wxUSE_UNICODE_WCHAR
404
405 //Convert wxString in Unicode mode to a multi-byte string
406 const wxCharBuffer wxString::mb_str(const wxMBConv& conv) const
407 {
408 return conv.cWC2MB(wx_str(), length() + 1 /* size, not length */, NULL);
409 }
410
411 #elif wxUSE_UNICODE_UTF8
412
413 const wxWCharBuffer wxString::wc_str() const
414 {
415 return wxMBConvStrictUTF8().cMB2WC
416 (
417 m_impl.c_str(),
418 m_impl.length() + 1, // size, not length
419 NULL
420 );
421 }
422
423 const wxCharBuffer wxString::mb_str(const wxMBConv& conv) const
424 {
425 if ( conv.IsUTF8() )
426 return wxCharBuffer::CreateNonOwned(m_impl.c_str());
427
428 // FIXME-UTF8: use wc_str() here once we have buffers with length
429
430 size_t wcLen;
431 wxWCharBuffer wcBuf(wxMBConvStrictUTF8().cMB2WC
432 (
433 m_impl.c_str(),
434 m_impl.length() + 1, // size
435 &wcLen
436 ));
437 if ( !wcLen )
438 return wxCharBuffer("");
439
440 return conv.cWC2MB(wcBuf, wcLen+1, NULL);
441 }
442
443 #else // ANSI
444
445 //Converts this string to a wide character string if unicode
446 //mode is not enabled and wxUSE_WCHAR_T is enabled
447 const wxWCharBuffer wxString::wc_str(const wxMBConv& conv) const
448 {
449 return conv.cMB2WC(wx_str(), length() + 1 /* size, not length */, NULL);
450 }
451
452 #endif // Unicode/ANSI
453
454 // shrink to minimal size (releasing extra memory)
455 bool wxString::Shrink()
456 {
457 wxString tmp(begin(), end());
458 swap(tmp);
459 return tmp.length() == length();
460 }
461
462 // deprecated compatibility code:
463 #if WXWIN_COMPATIBILITY_2_8 && !wxUSE_STL_BASED_WXSTRING && !wxUSE_UNICODE_UTF8
464 wxStringCharType *wxString::GetWriteBuf(size_t nLen)
465 {
466 return DoGetWriteBuf(nLen);
467 }
468
469 void wxString::UngetWriteBuf()
470 {
471 DoUngetWriteBuf();
472 }
473
474 void wxString::UngetWriteBuf(size_t nLen)
475 {
476 DoUngetWriteBuf(nLen);
477 }
478 #endif // WXWIN_COMPATIBILITY_2_8 && !wxUSE_STL_BASED_WXSTRING && !wxUSE_UNICODE_UTF8
479
480
481 // ---------------------------------------------------------------------------
482 // data access
483 // ---------------------------------------------------------------------------
484
485 // all functions are inline in string.h
486
487 // ---------------------------------------------------------------------------
488 // concatenation operators
489 // ---------------------------------------------------------------------------
490
491 /*
492 * concatenation functions come in 5 flavours:
493 * string + string
494 * char + string and string + char
495 * C str + string and string + C str
496 */
497
498 wxString operator+(const wxString& str1, const wxString& str2)
499 {
500 #if !wxUSE_STL_BASED_WXSTRING
501 wxASSERT( str1.IsValid() );
502 wxASSERT( str2.IsValid() );
503 #endif
504
505 wxString s = str1;
506 s += str2;
507
508 return s;
509 }
510
511 wxString operator+(const wxString& str, wxUniChar ch)
512 {
513 #if !wxUSE_STL_BASED_WXSTRING
514 wxASSERT( str.IsValid() );
515 #endif
516
517 wxString s = str;
518 s += ch;
519
520 return s;
521 }
522
523 wxString operator+(wxUniChar ch, const wxString& str)
524 {
525 #if !wxUSE_STL_BASED_WXSTRING
526 wxASSERT( str.IsValid() );
527 #endif
528
529 wxString s = ch;
530 s += str;
531
532 return s;
533 }
534
535 wxString operator+(const wxString& str, const char *psz)
536 {
537 #if !wxUSE_STL_BASED_WXSTRING
538 wxASSERT( str.IsValid() );
539 #endif
540
541 wxString s;
542 if ( !s.Alloc(strlen(psz) + str.length()) ) {
543 wxFAIL_MSG( _T("out of memory in wxString::operator+") );
544 }
545 s += str;
546 s += psz;
547
548 return s;
549 }
550
551 wxString operator+(const wxString& str, const wchar_t *pwz)
552 {
553 #if !wxUSE_STL_BASED_WXSTRING
554 wxASSERT( str.IsValid() );
555 #endif
556
557 wxString s;
558 if ( !s.Alloc(wxWcslen(pwz) + str.length()) ) {
559 wxFAIL_MSG( _T("out of memory in wxString::operator+") );
560 }
561 s += str;
562 s += pwz;
563
564 return s;
565 }
566
567 wxString operator+(const char *psz, const wxString& str)
568 {
569 #if !wxUSE_STL_BASED_WXSTRING
570 wxASSERT( str.IsValid() );
571 #endif
572
573 wxString s;
574 if ( !s.Alloc(strlen(psz) + str.length()) ) {
575 wxFAIL_MSG( _T("out of memory in wxString::operator+") );
576 }
577 s = psz;
578 s += str;
579
580 return s;
581 }
582
583 wxString operator+(const wchar_t *pwz, const wxString& str)
584 {
585 #if !wxUSE_STL_BASED_WXSTRING
586 wxASSERT( str.IsValid() );
587 #endif
588
589 wxString s;
590 if ( !s.Alloc(wxWcslen(pwz) + str.length()) ) {
591 wxFAIL_MSG( _T("out of memory in wxString::operator+") );
592 }
593 s = pwz;
594 s += str;
595
596 return s;
597 }
598
599 // ---------------------------------------------------------------------------
600 // string comparison
601 // ---------------------------------------------------------------------------
602
603 bool wxString::IsSameAs(wxUniChar c, bool compareWithCase) const
604 {
605 return (length() == 1) && (compareWithCase ? GetChar(0u) == c
606 : wxToupper(GetChar(0u)) == wxToupper(c));
607 }
608
609 #ifdef HAVE_STD_STRING_COMPARE
610
611 // NB: Comparison code (both if HAVE_STD_STRING_COMPARE and if not) works with
612 // UTF-8 encoded strings too, thanks to UTF-8's design which allows us to
613 // sort strings in characters code point order by sorting the byte sequence
614 // in byte values order (i.e. what strcmp() and memcmp() do).
615
616 int wxString::compare(const wxString& str) const
617 {
618 return m_impl.compare(str.m_impl);
619 }
620
621 int wxString::compare(size_t nStart, size_t nLen,
622 const wxString& str) const
623 {
624 size_t pos, len;
625 PosLenToImpl(nStart, nLen, &pos, &len);
626 return m_impl.compare(pos, len, str.m_impl);
627 }
628
629 int wxString::compare(size_t nStart, size_t nLen,
630 const wxString& str,
631 size_t nStart2, size_t nLen2) const
632 {
633 size_t pos, len;
634 PosLenToImpl(nStart, nLen, &pos, &len);
635
636 size_t pos2, len2;
637 str.PosLenToImpl(nStart2, nLen2, &pos2, &len2);
638
639 return m_impl.compare(pos, len, str.m_impl, pos2, len2);
640 }
641
642 int wxString::compare(const char* sz) const
643 {
644 return m_impl.compare(ImplStr(sz));
645 }
646
647 int wxString::compare(const wchar_t* sz) const
648 {
649 return m_impl.compare(ImplStr(sz));
650 }
651
652 int wxString::compare(size_t nStart, size_t nLen,
653 const char* sz, size_t nCount) const
654 {
655 size_t pos, len;
656 PosLenToImpl(nStart, nLen, &pos, &len);
657
658 SubstrBufFromMB str(ImplStr(sz, nCount));
659
660 return m_impl.compare(pos, len, str.data, str.len);
661 }
662
663 int wxString::compare(size_t nStart, size_t nLen,
664 const wchar_t* sz, size_t nCount) const
665 {
666 size_t pos, len;
667 PosLenToImpl(nStart, nLen, &pos, &len);
668
669 SubstrBufFromWC str(ImplStr(sz, nCount));
670
671 return m_impl.compare(pos, len, str.data, str.len);
672 }
673
674 #else // !HAVE_STD_STRING_COMPARE
675
676 static inline int wxDoCmp(const wxStringCharType* s1, size_t l1,
677 const wxStringCharType* s2, size_t l2)
678 {
679 if( l1 == l2 )
680 return wxStringMemcmp(s1, s2, l1);
681 else if( l1 < l2 )
682 {
683 int ret = wxStringMemcmp(s1, s2, l1);
684 return ret == 0 ? -1 : ret;
685 }
686 else
687 {
688 int ret = wxStringMemcmp(s1, s2, l2);
689 return ret == 0 ? +1 : ret;
690 }
691 }
692
693 int wxString::compare(const wxString& str) const
694 {
695 return ::wxDoCmp(m_impl.data(), m_impl.length(),
696 str.m_impl.data(), str.m_impl.length());
697 }
698
699 int wxString::compare(size_t nStart, size_t nLen,
700 const wxString& str) const
701 {
702 wxASSERT(nStart <= length());
703 size_type strLen = length() - nStart;
704 nLen = strLen < nLen ? strLen : nLen;
705
706 size_t pos, len;
707 PosLenToImpl(nStart, nLen, &pos, &len);
708
709 return ::wxDoCmp(m_impl.data() + pos, len,
710 str.m_impl.data(), str.m_impl.length());
711 }
712
713 int wxString::compare(size_t nStart, size_t nLen,
714 const wxString& str,
715 size_t nStart2, size_t nLen2) const
716 {
717 wxASSERT(nStart <= length());
718 wxASSERT(nStart2 <= str.length());
719 size_type strLen = length() - nStart,
720 strLen2 = str.length() - nStart2;
721 nLen = strLen < nLen ? strLen : nLen;
722 nLen2 = strLen2 < nLen2 ? strLen2 : nLen2;
723
724 size_t pos, len;
725 PosLenToImpl(nStart, nLen, &pos, &len);
726 size_t pos2, len2;
727 str.PosLenToImpl(nStart2, nLen2, &pos2, &len2);
728
729 return ::wxDoCmp(m_impl.data() + pos, len,
730 str.m_impl.data() + pos2, len2);
731 }
732
733 int wxString::compare(const char* sz) const
734 {
735 SubstrBufFromMB str(ImplStr(sz, npos));
736 if ( str.len == npos )
737 str.len = wxStringStrlen(str.data);
738 return ::wxDoCmp(m_impl.data(), m_impl.length(), str.data, str.len);
739 }
740
741 int wxString::compare(const wchar_t* sz) const
742 {
743 SubstrBufFromWC str(ImplStr(sz, npos));
744 if ( str.len == npos )
745 str.len = wxStringStrlen(str.data);
746 return ::wxDoCmp(m_impl.data(), m_impl.length(), str.data, str.len);
747 }
748
749 int wxString::compare(size_t nStart, size_t nLen,
750 const char* sz, size_t nCount) const
751 {
752 wxASSERT(nStart <= length());
753 size_type strLen = length() - nStart;
754 nLen = strLen < nLen ? strLen : nLen;
755
756 size_t pos, len;
757 PosLenToImpl(nStart, nLen, &pos, &len);
758
759 SubstrBufFromMB str(ImplStr(sz, nCount));
760 if ( str.len == npos )
761 str.len = wxStringStrlen(str.data);
762
763 return ::wxDoCmp(m_impl.data() + pos, len, str.data, str.len);
764 }
765
766 int wxString::compare(size_t nStart, size_t nLen,
767 const wchar_t* sz, size_t nCount) const
768 {
769 wxASSERT(nStart <= length());
770 size_type strLen = length() - nStart;
771 nLen = strLen < nLen ? strLen : nLen;
772
773 size_t pos, len;
774 PosLenToImpl(nStart, nLen, &pos, &len);
775
776 SubstrBufFromWC str(ImplStr(sz, nCount));
777 if ( str.len == npos )
778 str.len = wxStringStrlen(str.data);
779
780 return ::wxDoCmp(m_impl.data() + pos, len, str.data, str.len);
781 }
782
783 #endif // HAVE_STD_STRING_COMPARE/!HAVE_STD_STRING_COMPARE
784
785
786 // ---------------------------------------------------------------------------
787 // find_{first,last}_[not]_of functions
788 // ---------------------------------------------------------------------------
789
790 #if !wxUSE_STL_BASED_WXSTRING || wxUSE_UNICODE_UTF8
791
792 // NB: All these functions are implemented with the argument being wxChar*,
793 // i.e. widechar string in any Unicode build, even though native string
794 // representation is char* in the UTF-8 build. This is because we couldn't
795 // use memchr() to determine if a character is in a set encoded as UTF-8.
796
797 size_t wxString::find_first_of(const wxChar* sz, size_t nStart) const
798 {
799 return find_first_of(sz, nStart, wxStrlen(sz));
800 }
801
802 size_t wxString::find_first_not_of(const wxChar* sz, size_t nStart) const
803 {
804 return find_first_not_of(sz, nStart, wxStrlen(sz));
805 }
806
807 size_t wxString::find_first_of(const wxChar* sz, size_t nStart, size_t n) const
808 {
809 wxASSERT_MSG( nStart <= length(), _T("invalid index") );
810
811 size_t idx = nStart;
812 for ( const_iterator i = begin() + nStart; i != end(); ++idx, ++i )
813 {
814 if ( wxTmemchr(sz, *i, n) )
815 return idx;
816 }
817
818 return npos;
819 }
820
821 size_t wxString::find_first_not_of(const wxChar* sz, size_t nStart, size_t n) const
822 {
823 wxASSERT_MSG( nStart <= length(), _T("invalid index") );
824
825 size_t idx = nStart;
826 for ( const_iterator i = begin() + nStart; i != end(); ++idx, ++i )
827 {
828 if ( !wxTmemchr(sz, *i, n) )
829 return idx;
830 }
831
832 return npos;
833 }
834
835
836 size_t wxString::find_last_of(const wxChar* sz, size_t nStart) const
837 {
838 return find_last_of(sz, nStart, wxStrlen(sz));
839 }
840
841 size_t wxString::find_last_not_of(const wxChar* sz, size_t nStart) const
842 {
843 return find_last_not_of(sz, nStart, wxStrlen(sz));
844 }
845
846 size_t wxString::find_last_of(const wxChar* sz, size_t nStart, size_t n) const
847 {
848 size_t len = length();
849
850 if ( nStart == npos )
851 {
852 nStart = len - 1;
853 }
854 else
855 {
856 wxASSERT_MSG( nStart <= len, _T("invalid index") );
857 }
858
859 size_t idx = nStart;
860 for ( const_reverse_iterator i = rbegin() + (len - nStart - 1);
861 i != rend(); --idx, ++i )
862 {
863 if ( wxTmemchr(sz, *i, n) )
864 return idx;
865 }
866
867 return npos;
868 }
869
870 size_t wxString::find_last_not_of(const wxChar* sz, size_t nStart, size_t n) const
871 {
872 size_t len = length();
873
874 if ( nStart == npos )
875 {
876 nStart = len - 1;
877 }
878 else
879 {
880 wxASSERT_MSG( nStart <= len, _T("invalid index") );
881 }
882
883 size_t idx = nStart;
884 for ( const_reverse_iterator i = rbegin() + (len - nStart - 1);
885 i != rend(); --idx, ++i )
886 {
887 if ( !wxTmemchr(sz, *i, n) )
888 return idx;
889 }
890
891 return npos;
892 }
893
894 size_t wxString::find_first_not_of(wxUniChar ch, size_t nStart) const
895 {
896 wxASSERT_MSG( nStart <= length(), _T("invalid index") );
897
898 size_t idx = nStart;
899 for ( const_iterator i = begin() + nStart; i != end(); ++idx, ++i )
900 {
901 if ( *i != ch )
902 return idx;
903 }
904
905 return npos;
906 }
907
908 size_t wxString::find_last_not_of(wxUniChar ch, size_t nStart) const
909 {
910 size_t len = length();
911
912 if ( nStart == npos )
913 {
914 nStart = len - 1;
915 }
916 else
917 {
918 wxASSERT_MSG( nStart <= len, _T("invalid index") );
919 }
920
921 size_t idx = nStart;
922 for ( const_reverse_iterator i = rbegin() + (len - nStart - 1);
923 i != rend(); --idx, ++i )
924 {
925 if ( *i != ch )
926 return idx;
927 }
928
929 return npos;
930 }
931
932 // the functions above were implemented for wchar_t* arguments in Unicode
933 // build and char* in ANSI build; below are implementations for the other
934 // version:
935 #if wxUSE_UNICODE
936 #define wxOtherCharType char
937 #define STRCONV (const wxChar*)wxConvLibc.cMB2WC
938 #else
939 #define wxOtherCharType wchar_t
940 #define STRCONV (const wxChar*)wxConvLibc.cWC2MB
941 #endif
942
943 size_t wxString::find_first_of(const wxOtherCharType* sz, size_t nStart) const
944 { return find_first_of(STRCONV(sz), nStart); }
945
946 size_t wxString::find_first_of(const wxOtherCharType* sz, size_t nStart,
947 size_t n) const
948 { return find_first_of(STRCONV(sz, n, NULL), nStart, n); }
949 size_t wxString::find_last_of(const wxOtherCharType* sz, size_t nStart) const
950 { return find_last_of(STRCONV(sz), nStart); }
951 size_t wxString::find_last_of(const wxOtherCharType* sz, size_t nStart,
952 size_t n) const
953 { return find_last_of(STRCONV(sz, n, NULL), nStart, n); }
954 size_t wxString::find_first_not_of(const wxOtherCharType* sz, size_t nStart) const
955 { return find_first_not_of(STRCONV(sz), nStart); }
956 size_t wxString::find_first_not_of(const wxOtherCharType* sz, size_t nStart,
957 size_t n) const
958 { return find_first_not_of(STRCONV(sz, n, NULL), nStart, n); }
959 size_t wxString::find_last_not_of(const wxOtherCharType* sz, size_t nStart) const
960 { return find_last_not_of(STRCONV(sz), nStart); }
961 size_t wxString::find_last_not_of(const wxOtherCharType* sz, size_t nStart,
962 size_t n) const
963 { return find_last_not_of(STRCONV(sz, n, NULL), nStart, n); }
964
965 #undef wxOtherCharType
966 #undef STRCONV
967
968 #endif // !wxUSE_STL_BASED_WXSTRING || wxUSE_UNICODE_UTF8
969
970 // ===========================================================================
971 // other common string functions
972 // ===========================================================================
973
974 int wxString::CmpNoCase(const wxString& s) const
975 {
976 // FIXME-UTF8: use wxUniChar::ToLower/ToUpper once added
977
978 const_iterator i1 = begin();
979 const_iterator end1 = end();
980 const_iterator i2 = s.begin();
981 const_iterator end2 = s.end();
982
983 for ( ; i1 != end1 && i2 != end2; ++i1, ++i2 )
984 {
985 wxUniChar lower1 = (wxChar)wxTolower(*i1);
986 wxUniChar lower2 = (wxChar)wxTolower(*i2);
987 if ( lower1 != lower2 )
988 return lower1 < lower2 ? -1 : 1;
989 }
990
991 size_t len1 = length();
992 size_t len2 = s.length();
993
994 if ( len1 < len2 )
995 return -1;
996 else if ( len1 > len2 )
997 return 1;
998 return 0;
999 }
1000
1001
1002 #if wxUSE_UNICODE
1003
1004 #ifdef __MWERKS__
1005 #ifndef __SCHAR_MAX__
1006 #define __SCHAR_MAX__ 127
1007 #endif
1008 #endif
1009
1010 wxString wxString::FromAscii(const char *ascii, size_t len)
1011 {
1012 if (!ascii || len == 0)
1013 return wxEmptyString;
1014
1015 wxString res;
1016
1017 {
1018 wxStringInternalBuffer buf(res, len);
1019 wxStringCharType *dest = buf;
1020
1021 for ( ; len > 0; --len )
1022 {
1023 unsigned char c = (unsigned char)*ascii++;
1024 wxASSERT_MSG( c < 0x80,
1025 _T("Non-ASCII value passed to FromAscii().") );
1026
1027 *dest++ = (wchar_t)c;
1028 }
1029 }
1030
1031 return res;
1032 }
1033
1034 wxString wxString::FromAscii(const char *ascii)
1035 {
1036 return FromAscii(ascii, wxStrlen(ascii));
1037 }
1038
1039 wxString wxString::FromAscii(char ascii)
1040 {
1041 // What do we do with '\0' ?
1042
1043 unsigned char c = (unsigned char)ascii;
1044
1045 wxASSERT_MSG( c < 0x80, _T("Non-ASCII value passed to FromAscii().") );
1046
1047 // NB: the cast to wchar_t causes interpretation of 'ascii' as Latin1 value
1048 return wxString(wxUniChar((wchar_t)c));
1049 }
1050
1051 const wxCharBuffer wxString::ToAscii() const
1052 {
1053 // this will allocate enough space for the terminating NUL too
1054 wxCharBuffer buffer(length());
1055 char *dest = buffer.data();
1056
1057 for ( const_iterator i = begin(); i != end(); ++i )
1058 {
1059 wxUniChar c(*i);
1060 // FIXME-UTF8: unify substituted char ('_') with wxUniChar ('?')
1061 *dest++ = c.IsAscii() ? (char)c : '_';
1062
1063 // the output string can't have embedded NULs anyhow, so we can safely
1064 // stop at first of them even if we do have any
1065 if ( !c )
1066 break;
1067 }
1068
1069 return buffer;
1070 }
1071
1072 #endif // wxUSE_UNICODE
1073
1074 // extract string of length nCount starting at nFirst
1075 wxString wxString::Mid(size_t nFirst, size_t nCount) const
1076 {
1077 size_t nLen = length();
1078
1079 // default value of nCount is npos and means "till the end"
1080 if ( nCount == npos )
1081 {
1082 nCount = nLen - nFirst;
1083 }
1084
1085 // out-of-bounds requests return sensible things
1086 if ( nFirst + nCount > nLen )
1087 {
1088 nCount = nLen - nFirst;
1089 }
1090
1091 if ( nFirst > nLen )
1092 {
1093 // AllocCopy() will return empty string
1094 return wxEmptyString;
1095 }
1096
1097 wxString dest(*this, nFirst, nCount);
1098 if ( dest.length() != nCount )
1099 {
1100 wxFAIL_MSG( _T("out of memory in wxString::Mid") );
1101 }
1102
1103 return dest;
1104 }
1105
1106 // check that the string starts with prefix and return the rest of the string
1107 // in the provided pointer if it is not NULL, otherwise return false
1108 bool wxString::StartsWith(const wxString& prefix, wxString *rest) const
1109 {
1110 if ( compare(0, prefix.length(), prefix) != 0 )
1111 return false;
1112
1113 if ( rest )
1114 {
1115 // put the rest of the string into provided pointer
1116 rest->assign(*this, prefix.length(), npos);
1117 }
1118
1119 return true;
1120 }
1121
1122
1123 // check that the string ends with suffix and return the rest of it in the
1124 // provided pointer if it is not NULL, otherwise return false
1125 bool wxString::EndsWith(const wxString& suffix, wxString *rest) const
1126 {
1127 int start = length() - suffix.length();
1128
1129 if ( start < 0 || compare(start, npos, suffix) != 0 )
1130 return false;
1131
1132 if ( rest )
1133 {
1134 // put the rest of the string into provided pointer
1135 rest->assign(*this, 0, start);
1136 }
1137
1138 return true;
1139 }
1140
1141
1142 // extract nCount last (rightmost) characters
1143 wxString wxString::Right(size_t nCount) const
1144 {
1145 if ( nCount > length() )
1146 nCount = length();
1147
1148 wxString dest(*this, length() - nCount, nCount);
1149 if ( dest.length() != nCount ) {
1150 wxFAIL_MSG( _T("out of memory in wxString::Right") );
1151 }
1152 return dest;
1153 }
1154
1155 // get all characters after the last occurence of ch
1156 // (returns the whole string if ch not found)
1157 wxString wxString::AfterLast(wxUniChar ch) const
1158 {
1159 wxString str;
1160 int iPos = Find(ch, true);
1161 if ( iPos == wxNOT_FOUND )
1162 str = *this;
1163 else
1164 str = wx_str() + iPos + 1;
1165
1166 return str;
1167 }
1168
1169 // extract nCount first (leftmost) characters
1170 wxString wxString::Left(size_t nCount) const
1171 {
1172 if ( nCount > length() )
1173 nCount = length();
1174
1175 wxString dest(*this, 0, nCount);
1176 if ( dest.length() != nCount ) {
1177 wxFAIL_MSG( _T("out of memory in wxString::Left") );
1178 }
1179 return dest;
1180 }
1181
1182 // get all characters before the first occurence of ch
1183 // (returns the whole string if ch not found)
1184 wxString wxString::BeforeFirst(wxUniChar ch) const
1185 {
1186 int iPos = Find(ch);
1187 if ( iPos == wxNOT_FOUND ) iPos = length();
1188 return wxString(*this, 0, iPos);
1189 }
1190
1191 /// get all characters before the last occurence of ch
1192 /// (returns empty string if ch not found)
1193 wxString wxString::BeforeLast(wxUniChar ch) const
1194 {
1195 wxString str;
1196 int iPos = Find(ch, true);
1197 if ( iPos != wxNOT_FOUND && iPos != 0 )
1198 str = wxString(c_str(), iPos);
1199
1200 return str;
1201 }
1202
1203 /// get all characters after the first occurence of ch
1204 /// (returns empty string if ch not found)
1205 wxString wxString::AfterFirst(wxUniChar ch) const
1206 {
1207 wxString str;
1208 int iPos = Find(ch);
1209 if ( iPos != wxNOT_FOUND )
1210 str = wx_str() + iPos + 1;
1211
1212 return str;
1213 }
1214
1215 // replace first (or all) occurences of some substring with another one
1216 size_t wxString::Replace(const wxString& strOld,
1217 const wxString& strNew, bool bReplaceAll)
1218 {
1219 // if we tried to replace an empty string we'd enter an infinite loop below
1220 wxCHECK_MSG( !strOld.empty(), 0,
1221 _T("wxString::Replace(): invalid parameter") );
1222
1223 size_t uiCount = 0; // count of replacements made
1224
1225 size_t uiOldLen = strOld.length();
1226 size_t uiNewLen = strNew.length();
1227
1228 size_t dwPos = 0;
1229
1230 while ( (*this)[dwPos] != wxT('\0') )
1231 {
1232 //DO NOT USE STRSTR HERE
1233 //this string can contain embedded null characters,
1234 //so strstr will function incorrectly
1235 dwPos = find(strOld, dwPos);
1236 if ( dwPos == npos )
1237 break; // exit the loop
1238 else
1239 {
1240 //replace this occurance of the old string with the new one
1241 replace(dwPos, uiOldLen, strNew, uiNewLen);
1242
1243 //move up pos past the string that was replaced
1244 dwPos += uiNewLen;
1245
1246 //increase replace count
1247 ++uiCount;
1248
1249 // stop now?
1250 if ( !bReplaceAll )
1251 break; // exit the loop
1252 }
1253 }
1254
1255 return uiCount;
1256 }
1257
1258 bool wxString::IsAscii() const
1259 {
1260 for ( const_iterator i = begin(); i != end(); ++i )
1261 {
1262 if ( !(*i).IsAscii() )
1263 return false;
1264 }
1265
1266 return true;
1267 }
1268
1269 bool wxString::IsWord() const
1270 {
1271 for ( const_iterator i = begin(); i != end(); ++i )
1272 {
1273 if ( !wxIsalpha(*i) )
1274 return false;
1275 }
1276
1277 return true;
1278 }
1279
1280 bool wxString::IsNumber() const
1281 {
1282 if ( empty() )
1283 return true;
1284
1285 const_iterator i = begin();
1286
1287 if ( *i == _T('-') || *i == _T('+') )
1288 ++i;
1289
1290 for ( ; i != end(); ++i )
1291 {
1292 if ( !wxIsdigit(*i) )
1293 return false;
1294 }
1295
1296 return true;
1297 }
1298
1299 wxString wxString::Strip(stripType w) const
1300 {
1301 wxString s = *this;
1302 if ( w & leading ) s.Trim(false);
1303 if ( w & trailing ) s.Trim(true);
1304 return s;
1305 }
1306
1307 // ---------------------------------------------------------------------------
1308 // case conversion
1309 // ---------------------------------------------------------------------------
1310
1311 wxString& wxString::MakeUpper()
1312 {
1313 for ( iterator it = begin(), en = end(); it != en; ++it )
1314 *it = (wxChar)wxToupper(*it);
1315
1316 return *this;
1317 }
1318
1319 wxString& wxString::MakeLower()
1320 {
1321 for ( iterator it = begin(), en = end(); it != en; ++it )
1322 *it = (wxChar)wxTolower(*it);
1323
1324 return *this;
1325 }
1326
1327 // ---------------------------------------------------------------------------
1328 // trimming and padding
1329 // ---------------------------------------------------------------------------
1330
1331 // some compilers (VC++ 6.0 not to name them) return true for a call to
1332 // isspace('ê') in the C locale which seems to be broken to me, but we have to
1333 // live with this by checking that the character is a 7 bit one - even if this
1334 // may fail to detect some spaces (I don't know if Unicode doesn't have
1335 // space-like symbols somewhere except in the first 128 chars), it is arguably
1336 // still better than trimming away accented letters
1337 inline int wxSafeIsspace(wxChar ch) { return (ch < 127) && wxIsspace(ch); }
1338
1339 // trims spaces (in the sense of isspace) from left or right side
1340 wxString& wxString::Trim(bool bFromRight)
1341 {
1342 // first check if we're going to modify the string at all
1343 if ( !empty() &&
1344 (
1345 (bFromRight && wxSafeIsspace(GetChar(length() - 1))) ||
1346 (!bFromRight && wxSafeIsspace(GetChar(0u)))
1347 )
1348 )
1349 {
1350 if ( bFromRight )
1351 {
1352 // find last non-space character
1353 reverse_iterator psz = rbegin();
1354 while ( (psz != rend()) && wxSafeIsspace(*psz) )
1355 ++psz;
1356
1357 // truncate at trailing space start
1358 erase(psz.base(), end());
1359 }
1360 else
1361 {
1362 // find first non-space character
1363 iterator psz = begin();
1364 while ( (psz != end()) && wxSafeIsspace(*psz) )
1365 ++psz;
1366
1367 // fix up data and length
1368 erase(begin(), psz);
1369 }
1370 }
1371
1372 return *this;
1373 }
1374
1375 // adds nCount characters chPad to the string from either side
1376 wxString& wxString::Pad(size_t nCount, wxUniChar chPad, bool bFromRight)
1377 {
1378 wxString s(chPad, nCount);
1379
1380 if ( bFromRight )
1381 *this += s;
1382 else
1383 {
1384 s += *this;
1385 swap(s);
1386 }
1387
1388 return *this;
1389 }
1390
1391 // truncate the string
1392 wxString& wxString::Truncate(size_t uiLen)
1393 {
1394 if ( uiLen < length() )
1395 {
1396 erase(begin() + uiLen, end());
1397 }
1398 //else: nothing to do, string is already short enough
1399
1400 return *this;
1401 }
1402
1403 // ---------------------------------------------------------------------------
1404 // finding (return wxNOT_FOUND if not found and index otherwise)
1405 // ---------------------------------------------------------------------------
1406
1407 // find a character
1408 int wxString::Find(wxUniChar ch, bool bFromEnd) const
1409 {
1410 size_type idx = bFromEnd ? find_last_of(ch) : find_first_of(ch);
1411
1412 return (idx == npos) ? wxNOT_FOUND : (int)idx;
1413 }
1414
1415 // ----------------------------------------------------------------------------
1416 // conversion to numbers
1417 // ----------------------------------------------------------------------------
1418
1419 // The implementation of all the functions below is exactly the same so factor
1420 // it out. Note that number extraction works correctly on UTF-8 strings, so
1421 // we can use wxStringCharType and wx_str() for maximum efficiency.
1422
1423 #ifndef __WXWINCE__
1424 #define DO_IF_NOT_WINCE(x) x
1425 #else
1426 #define DO_IF_NOT_WINCE(x)
1427 #endif
1428
1429 #define WX_STRING_TO_INT_TYPE(val, base, func) \
1430 wxCHECK_MSG( val, false, _T("NULL output pointer") ); \
1431 wxASSERT_MSG( !base || (base > 1 && base <= 36), _T("invalid base") ); \
1432 \
1433 DO_IF_NOT_WINCE( errno = 0; ) \
1434 \
1435 const wxStringCharType *start = wx_str(); \
1436 wxStringCharType *end; \
1437 *val = func(start, &end, base); \
1438 \
1439 /* return true only if scan was stopped by the terminating NUL and */ \
1440 /* if the string was not empty to start with and no under/overflow */ \
1441 /* occurred: */ \
1442 return !*end && (end != start) \
1443 DO_IF_NOT_WINCE( && (errno != ERANGE) )
1444
1445 bool wxString::ToLong(long *val, int base) const
1446 {
1447 WX_STRING_TO_INT_TYPE(val, base, wxStrtol);
1448 }
1449
1450 bool wxString::ToULong(unsigned long *val, int base) const
1451 {
1452 WX_STRING_TO_INT_TYPE(val, base, wxStrtoul);
1453 }
1454
1455 bool wxString::ToLongLong(wxLongLong_t *val, int base) const
1456 {
1457 WX_STRING_TO_INT_TYPE(val, base, wxStrtoll);
1458 }
1459
1460 bool wxString::ToULongLong(wxULongLong_t *val, int base) const
1461 {
1462 WX_STRING_TO_INT_TYPE(val, base, wxStrtoull);
1463 }
1464
1465 bool wxString::ToDouble(double *val) const
1466 {
1467 wxCHECK_MSG( val, false, _T("NULL pointer in wxString::ToDouble") );
1468
1469 #ifndef __WXWINCE__
1470 errno = 0;
1471 #endif
1472
1473 const wxChar *start = c_str();
1474 wxChar *end;
1475 *val = wxStrtod(start, &end);
1476
1477 // return true only if scan was stopped by the terminating NUL and if the
1478 // string was not empty to start with and no under/overflow occurred
1479 return !*end && (end != start)
1480 #ifndef __WXWINCE__
1481 && (errno != ERANGE)
1482 #endif
1483 ;
1484 }
1485
1486 // ---------------------------------------------------------------------------
1487 // formatted output
1488 // ---------------------------------------------------------------------------
1489
1490 #if !wxUSE_UTF8_LOCALE_ONLY
1491 /* static */
1492 #ifdef wxNEEDS_WXSTRING_PRINTF_MIXIN
1493 wxString wxStringPrintfMixinBase::DoFormatWchar(const wxChar *format, ...)
1494 #else
1495 wxString wxString::DoFormatWchar(const wxChar *format, ...)
1496 #endif
1497 {
1498 va_list argptr;
1499 va_start(argptr, format);
1500
1501 wxString s;
1502 s.PrintfV(format, argptr);
1503
1504 va_end(argptr);
1505
1506 return s;
1507 }
1508 #endif // !wxUSE_UTF8_LOCALE_ONLY
1509
1510 #if wxUSE_UNICODE_UTF8
1511 /* static */
1512 wxString wxString::DoFormatUtf8(const char *format, ...)
1513 {
1514 va_list argptr;
1515 va_start(argptr, format);
1516
1517 wxString s;
1518 s.PrintfV(format, argptr);
1519
1520 va_end(argptr);
1521
1522 return s;
1523 }
1524 #endif // wxUSE_UNICODE_UTF8
1525
1526 /* static */
1527 wxString wxString::FormatV(const wxString& format, va_list argptr)
1528 {
1529 wxString s;
1530 s.PrintfV(format, argptr);
1531 return s;
1532 }
1533
1534 #if !wxUSE_UTF8_LOCALE_ONLY
1535 #ifdef wxNEEDS_WXSTRING_PRINTF_MIXIN
1536 int wxStringPrintfMixinBase::DoPrintfWchar(const wxChar *format, ...)
1537 #else
1538 int wxString::DoPrintfWchar(const wxChar *format, ...)
1539 #endif
1540 {
1541 va_list argptr;
1542 va_start(argptr, format);
1543
1544 #ifdef wxNEEDS_WXSTRING_PRINTF_MIXIN
1545 // get a pointer to the wxString instance; we have to use dynamic_cast<>
1546 // because it's the only cast that works safely for downcasting when
1547 // multiple inheritance is used:
1548 wxString *str = static_cast<wxString*>(this);
1549 #else
1550 wxString *str = this;
1551 #endif
1552
1553 int iLen = str->PrintfV(format, argptr);
1554
1555 va_end(argptr);
1556
1557 return iLen;
1558 }
1559 #endif // !wxUSE_UTF8_LOCALE_ONLY
1560
1561 #if wxUSE_UNICODE_UTF8
1562 int wxString::DoPrintfUtf8(const char *format, ...)
1563 {
1564 va_list argptr;
1565 va_start(argptr, format);
1566
1567 int iLen = PrintfV(format, argptr);
1568
1569 va_end(argptr);
1570
1571 return iLen;
1572 }
1573 #endif // wxUSE_UNICODE_UTF8
1574
1575 #if wxUSE_UNICODE_UTF8
1576 template<typename BufferType>
1577 #else
1578 // we only need one version in non-UTF8 builds and at least two Windows
1579 // compilers have problems with this function template, so use just one
1580 // normal function here
1581 #endif
1582 static int DoStringPrintfV(wxString& str,
1583 const wxString& format, va_list argptr)
1584 {
1585 int size = 1024;
1586
1587 for ( ;; )
1588 {
1589 #if wxUSE_UNICODE_UTF8
1590 BufferType tmp(str, size + 1);
1591 typename BufferType::CharType *buf = tmp;
1592 #else
1593 wxStringBuffer tmp(str, size + 1);
1594 wxChar *buf = tmp;
1595 #endif
1596
1597 if ( !buf )
1598 {
1599 // out of memory
1600
1601 // in UTF-8 build, leaving uninitialized junk in the buffer
1602 // could result in invalid non-empty UTF-8 string, so just
1603 // reset the string to empty on failure:
1604 buf[0] = '\0';
1605 return -1;
1606 }
1607
1608 // wxVsnprintf() may modify the original arg pointer, so pass it
1609 // only a copy
1610 va_list argptrcopy;
1611 wxVaCopy(argptrcopy, argptr);
1612 int len = wxVsnprintf(buf, size, format, argptrcopy);
1613 va_end(argptrcopy);
1614
1615 // some implementations of vsnprintf() don't NUL terminate
1616 // the string if there is not enough space for it so
1617 // always do it manually
1618 buf[size] = _T('\0');
1619
1620 // vsnprintf() may return either -1 (traditional Unix behaviour) or the
1621 // total number of characters which would have been written if the
1622 // buffer were large enough (newer standards such as Unix98)
1623 if ( len < 0 )
1624 {
1625 // NB: wxVsnprintf() may call either wxCRT_VsnprintfW or
1626 // wxCRT_VsnprintfA in UTF-8 build; wxUSE_WXVSNPRINTF
1627 // is true if *both* of them use our own implementation,
1628 // otherwise we can't be sure
1629 #if wxUSE_WXVSNPRINTF
1630 // we know that our own implementation of wxVsnprintf() returns -1
1631 // only for a format error - thus there's something wrong with
1632 // the user's format string
1633 buf[0] = '\0';
1634 return -1;
1635 #else // possibly using system version
1636 // assume it only returns error if there is not enough space, but
1637 // as we don't know how much we need, double the current size of
1638 // the buffer
1639 size *= 2;
1640 #endif // wxUSE_WXVSNPRINTF/!wxUSE_WXVSNPRINTF
1641 }
1642 else if ( len >= size )
1643 {
1644 #if wxUSE_WXVSNPRINTF
1645 // we know that our own implementation of wxVsnprintf() returns
1646 // size+1 when there's not enough space but that's not the size
1647 // of the required buffer!
1648 size *= 2; // so we just double the current size of the buffer
1649 #else
1650 // some vsnprintf() implementations NUL-terminate the buffer and
1651 // some don't in len == size case, to be safe always add 1
1652 size = len + 1;
1653 #endif
1654 }
1655 else // ok, there was enough space
1656 {
1657 break;
1658 }
1659 }
1660
1661 // we could have overshot
1662 str.Shrink();
1663
1664 return str.length();
1665 }
1666
1667 int wxString::PrintfV(const wxString& format, va_list argptr)
1668 {
1669 #if wxUSE_UNICODE_UTF8
1670 #if wxUSE_STL_BASED_WXSTRING
1671 typedef wxStringTypeBuffer<char> Utf8Buffer;
1672 #else
1673 typedef wxStringInternalBuffer Utf8Buffer;
1674 #endif
1675 #endif
1676
1677 #if wxUSE_UTF8_LOCALE_ONLY
1678 return DoStringPrintfV<Utf8Buffer>(*this, format, argptr);
1679 #else
1680 #if wxUSE_UNICODE_UTF8
1681 if ( wxLocaleIsUtf8 )
1682 return DoStringPrintfV<Utf8Buffer>(*this, format, argptr);
1683 else
1684 // wxChar* version
1685 return DoStringPrintfV<wxStringBuffer>(*this, format, argptr);
1686 #else
1687 return DoStringPrintfV(*this, format, argptr);
1688 #endif // UTF8/WCHAR
1689 #endif
1690 }
1691
1692 // ----------------------------------------------------------------------------
1693 // misc other operations
1694 // ----------------------------------------------------------------------------
1695
1696 // returns true if the string matches the pattern which may contain '*' and
1697 // '?' metacharacters (as usual, '?' matches any character and '*' any number
1698 // of them)
1699 bool wxString::Matches(const wxString& mask) const
1700 {
1701 // I disable this code as it doesn't seem to be faster (in fact, it seems
1702 // to be much slower) than the old, hand-written code below and using it
1703 // here requires always linking with libregex even if the user code doesn't
1704 // use it
1705 #if 0 // wxUSE_REGEX
1706 // first translate the shell-like mask into a regex
1707 wxString pattern;
1708 pattern.reserve(wxStrlen(pszMask));
1709
1710 pattern += _T('^');
1711 while ( *pszMask )
1712 {
1713 switch ( *pszMask )
1714 {
1715 case _T('?'):
1716 pattern += _T('.');
1717 break;
1718
1719 case _T('*'):
1720 pattern += _T(".*");
1721 break;
1722
1723 case _T('^'):
1724 case _T('.'):
1725 case _T('$'):
1726 case _T('('):
1727 case _T(')'):
1728 case _T('|'):
1729 case _T('+'):
1730 case _T('\\'):
1731 // these characters are special in a RE, quote them
1732 // (however note that we don't quote '[' and ']' to allow
1733 // using them for Unix shell like matching)
1734 pattern += _T('\\');
1735 // fall through
1736
1737 default:
1738 pattern += *pszMask;
1739 }
1740
1741 pszMask++;
1742 }
1743 pattern += _T('$');
1744
1745 // and now use it
1746 return wxRegEx(pattern, wxRE_NOSUB | wxRE_EXTENDED).Matches(c_str());
1747 #else // !wxUSE_REGEX
1748 // TODO: this is, of course, awfully inefficient...
1749
1750 // FIXME-UTF8: implement using iterators, remove #if
1751 #if wxUSE_UNICODE_UTF8
1752 wxWCharBuffer maskBuf = mask.wc_str();
1753 wxWCharBuffer txtBuf = wc_str();
1754 const wxChar *pszMask = maskBuf.data();
1755 const wxChar *pszTxt = txtBuf.data();
1756 #else
1757 const wxChar *pszMask = mask.wx_str();
1758 // the char currently being checked
1759 const wxChar *pszTxt = wx_str();
1760 #endif
1761
1762 // the last location where '*' matched
1763 const wxChar *pszLastStarInText = NULL;
1764 const wxChar *pszLastStarInMask = NULL;
1765
1766 match:
1767 for ( ; *pszMask != wxT('\0'); pszMask++, pszTxt++ ) {
1768 switch ( *pszMask ) {
1769 case wxT('?'):
1770 if ( *pszTxt == wxT('\0') )
1771 return false;
1772
1773 // pszTxt and pszMask will be incremented in the loop statement
1774
1775 break;
1776
1777 case wxT('*'):
1778 {
1779 // remember where we started to be able to backtrack later
1780 pszLastStarInText = pszTxt;
1781 pszLastStarInMask = pszMask;
1782
1783 // ignore special chars immediately following this one
1784 // (should this be an error?)
1785 while ( *pszMask == wxT('*') || *pszMask == wxT('?') )
1786 pszMask++;
1787
1788 // if there is nothing more, match
1789 if ( *pszMask == wxT('\0') )
1790 return true;
1791
1792 // are there any other metacharacters in the mask?
1793 size_t uiLenMask;
1794 const wxChar *pEndMask = wxStrpbrk(pszMask, wxT("*?"));
1795
1796 if ( pEndMask != NULL ) {
1797 // we have to match the string between two metachars
1798 uiLenMask = pEndMask - pszMask;
1799 }
1800 else {
1801 // we have to match the remainder of the string
1802 uiLenMask = wxStrlen(pszMask);
1803 }
1804
1805 wxString strToMatch(pszMask, uiLenMask);
1806 const wxChar* pMatch = wxStrstr(pszTxt, strToMatch);
1807 if ( pMatch == NULL )
1808 return false;
1809
1810 // -1 to compensate "++" in the loop
1811 pszTxt = pMatch + uiLenMask - 1;
1812 pszMask += uiLenMask - 1;
1813 }
1814 break;
1815
1816 default:
1817 if ( *pszMask != *pszTxt )
1818 return false;
1819 break;
1820 }
1821 }
1822
1823 // match only if nothing left
1824 if ( *pszTxt == wxT('\0') )
1825 return true;
1826
1827 // if we failed to match, backtrack if we can
1828 if ( pszLastStarInText ) {
1829 pszTxt = pszLastStarInText + 1;
1830 pszMask = pszLastStarInMask;
1831
1832 pszLastStarInText = NULL;
1833
1834 // don't bother resetting pszLastStarInMask, it's unnecessary
1835
1836 goto match;
1837 }
1838
1839 return false;
1840 #endif // wxUSE_REGEX/!wxUSE_REGEX
1841 }
1842
1843 // Count the number of chars
1844 int wxString::Freq(wxUniChar ch) const
1845 {
1846 int count = 0;
1847 for ( const_iterator i = begin(); i != end(); ++i )
1848 {
1849 if ( *i == ch )
1850 count ++;
1851 }
1852 return count;
1853 }
1854
1855 // convert to upper case, return the copy of the string
1856 wxString wxString::Upper() const
1857 { wxString s(*this); return s.MakeUpper(); }
1858
1859 // convert to lower case, return the copy of the string
1860 wxString wxString::Lower() const { wxString s(*this); return s.MakeLower(); }
1861
1862 // ----------------------------------------------------------------------------
1863 // wxUTF8StringBuffer
1864 // ----------------------------------------------------------------------------
1865
1866 #if wxUSE_UNICODE_WCHAR
1867 wxUTF8StringBuffer::~wxUTF8StringBuffer()
1868 {
1869 wxMBConvStrictUTF8 conv;
1870 size_t wlen = conv.ToWChar(NULL, 0, m_buf);
1871 wxCHECK_RET( wlen != wxCONV_FAILED, "invalid UTF-8 data in string buffer?" );
1872
1873 wxStringInternalBuffer wbuf(m_str, wlen);
1874 conv.ToWChar(wbuf, wlen, m_buf);
1875 }
1876
1877 wxUTF8StringBufferLength::~wxUTF8StringBufferLength()
1878 {
1879 wxCHECK_RET(m_lenSet, "length not set");
1880
1881 wxMBConvStrictUTF8 conv;
1882 size_t wlen = conv.ToWChar(NULL, 0, m_buf, m_len);
1883 wxCHECK_RET( wlen != wxCONV_FAILED, "invalid UTF-8 data in string buffer?" );
1884
1885 wxStringInternalBufferLength wbuf(m_str, wlen);
1886 conv.ToWChar(wbuf, wlen, m_buf, m_len);
1887 wbuf.SetLength(wlen);
1888 }
1889 #endif // wxUSE_UNICODE_WCHAR