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1 ///////////////////////////////////////////////////////////////////////////////
2 // Name: wx/string.h
3 // Purpose: wxString class
4 // Author: Vadim Zeitlin
5 // Modified by:
6 // Created: 29/01/98
7 // RCS-ID: $Id$
8 // Copyright: (c) 1998 Vadim Zeitlin <zeitlin@dptmaths.ens-cachan.fr>
9 // Licence: wxWindows licence
10 ///////////////////////////////////////////////////////////////////////////////
11
12 /*
13 Efficient string class [more or less] compatible with MFC CString,
14 wxWidgets version 1 wxString and std::string and some handy functions
15 missing from string.h.
16 */
17
18 #ifndef _WX_WXSTRING_H__
19 #define _WX_WXSTRING_H__
20
21 // ----------------------------------------------------------------------------
22 // headers
23 // ----------------------------------------------------------------------------
24
25 #include "wx/defs.h" // everybody should include this
26
27 #if defined(__WXMAC__) || defined(__VISAGECPP__)
28 #include <ctype.h>
29 #endif
30
31 #if defined(__VISAGECPP__) && __IBMCPP__ >= 400
32 // problem in VACPP V4 with including stdlib.h multiple times
33 // strconv includes it anyway
34 # include <stdio.h>
35 # include <string.h>
36 # include <stdarg.h>
37 # include <limits.h>
38 #else
39 # include <string.h>
40 # include <stdio.h>
41 # include <stdarg.h>
42 # include <limits.h>
43 # include <stdlib.h>
44 #endif
45
46 #ifdef HAVE_STRCASECMP_IN_STRINGS_H
47 #include <strings.h> // for strcasecmp()
48 #endif // HAVE_STRCASECMP_IN_STRINGS_H
49
50 #ifdef __WXPALMOS__
51 #include <StringMgr.h>
52 #endif
53
54 #include "wx/wxcrtbase.h" // for wxChar, wxStrlen() etc.
55 #include "wx/strvararg.h"
56 #include "wx/buffer.h" // for wxCharBuffer
57 #include "wx/strconv.h" // for wxConvertXXX() macros and wxMBConv classes
58 #include "wx/stringimpl.h"
59 #include "wx/stringops.h"
60 #include "wx/unichar.h"
61
62 class WXDLLIMPEXP_BASE wxString;
63
64 // unless this symbol is predefined to disable the compatibility functions, do
65 // use them
66 #ifndef WXWIN_COMPATIBILITY_STRING_PTR_AS_ITER
67 #define WXWIN_COMPATIBILITY_STRING_PTR_AS_ITER 1
68 #endif
69
70 // ---------------------------------------------------------------------------
71 // macros
72 // ---------------------------------------------------------------------------
73
74 // casts [unfortunately!] needed to call some broken functions which require
75 // "char *" instead of "const char *"
76 #define WXSTRINGCAST (wxChar *)(const wxChar *)
77 #define wxCSTRINGCAST (wxChar *)(const wxChar *)
78 #define wxMBSTRINGCAST (char *)(const char *)
79 #define wxWCSTRINGCAST (wchar_t *)(const wchar_t *)
80
81 // like _T(), but for literals in wxString's internal representation, i.e.
82 // char* in UTF-8 build and wxChar* otherwise:
83 #if wxUSE_UNICODE_UTF8
84 #define wxSTRING_TEXT(str) str
85 #else
86 #define wxSTRING_TEXT(str) _T(str)
87 #endif
88
89 // ----------------------------------------------------------------------------
90 // constants
91 // ----------------------------------------------------------------------------
92
93 #if WXWIN_COMPATIBILITY_2_6
94
95 // deprecated in favour of wxString::npos, don't use in new code
96 //
97 // maximum possible length for a string means "take all string" everywhere
98 #define wxSTRING_MAXLEN wxString::npos
99
100 #endif // WXWIN_COMPATIBILITY_2_6
101
102 // ---------------------------------------------------------------------------
103 // global functions complementing standard C string library replacements for
104 // strlen() and portable strcasecmp()
105 //---------------------------------------------------------------------------
106
107 #if WXWIN_COMPATIBILITY_2_8
108 // Use wxXXX() functions from wxcrt.h instead! These functions are for
109 // backwards compatibility only.
110
111 // checks whether the passed in pointer is NULL and if the string is empty
112 wxDEPRECATED( inline bool IsEmpty(const char *p) );
113 inline bool IsEmpty(const char *p) { return (!p || !*p); }
114
115 // safe version of strlen() (returns 0 if passed NULL pointer)
116 wxDEPRECATED( inline size_t Strlen(const char *psz) );
117 inline size_t Strlen(const char *psz)
118 { return psz ? strlen(psz) : 0; }
119
120 // portable strcasecmp/_stricmp
121 wxDEPRECATED( inline int Stricmp(const char *psz1, const char *psz2) );
122 inline int Stricmp(const char *psz1, const char *psz2)
123 {
124 #if defined(__VISUALC__) && defined(__WXWINCE__)
125 register char c1, c2;
126 do {
127 c1 = tolower(*psz1++);
128 c2 = tolower(*psz2++);
129 } while ( c1 && (c1 == c2) );
130
131 return c1 - c2;
132 #elif defined(__VISUALC__) || ( defined(__MWERKS__) && defined(__INTEL__) )
133 return _stricmp(psz1, psz2);
134 #elif defined(__SC__)
135 return _stricmp(psz1, psz2);
136 #elif defined(__SALFORDC__)
137 return stricmp(psz1, psz2);
138 #elif defined(__BORLANDC__)
139 return stricmp(psz1, psz2);
140 #elif defined(__WATCOMC__)
141 return stricmp(psz1, psz2);
142 #elif defined(__DJGPP__)
143 return stricmp(psz1, psz2);
144 #elif defined(__EMX__)
145 return stricmp(psz1, psz2);
146 #elif defined(__WXPM__)
147 return stricmp(psz1, psz2);
148 #elif defined(__WXPALMOS__) || \
149 defined(HAVE_STRCASECMP_IN_STRING_H) || \
150 defined(HAVE_STRCASECMP_IN_STRINGS_H) || \
151 defined(__GNUWIN32__)
152 return strcasecmp(psz1, psz2);
153 #elif defined(__MWERKS__) && !defined(__INTEL__)
154 register char c1, c2;
155 do {
156 c1 = tolower(*psz1++);
157 c2 = tolower(*psz2++);
158 } while ( c1 && (c1 == c2) );
159
160 return c1 - c2;
161 #else
162 // almost all compilers/libraries provide this function (unfortunately under
163 // different names), that's why we don't implement our own which will surely
164 // be more efficient than this code (uncomment to use):
165 /*
166 register char c1, c2;
167 do {
168 c1 = tolower(*psz1++);
169 c2 = tolower(*psz2++);
170 } while ( c1 && (c1 == c2) );
171
172 return c1 - c2;
173 */
174
175 #error "Please define string case-insensitive compare for your OS/compiler"
176 #endif // OS/compiler
177 }
178
179 #endif // WXWIN_COMPATIBILITY_2_8
180
181 // ----------------------------------------------------------------------------
182 // wxCStrData
183 // ----------------------------------------------------------------------------
184
185 // Lightweight object returned by wxString::c_str() and implicitly convertible
186 // to either const char* or const wchar_t*.
187 class WXDLLIMPEXP_BASE wxCStrData
188 {
189 private:
190 // Ctors; for internal use by wxString and wxCStrData only
191 wxCStrData(const wxString *str, size_t offset = 0, bool owned = false)
192 : m_str(str), m_offset(offset), m_owned(owned) {}
193
194 public:
195 // Ctor constructs the object from char literal; they are needed to make
196 // operator?: compile and they intentionally take char*, not const char*
197 inline wxCStrData(char *buf);
198 inline wxCStrData(wchar_t *buf);
199 inline wxCStrData(const wxCStrData& data);
200
201 inline ~wxCStrData();
202
203 // methods defined inline below must be declared inline or mingw32 3.4.5
204 // warns about "<symbol> defined locally after being referenced with
205 // dllimport linkage"
206 #if wxUSE_UNICODE_WCHAR
207 inline
208 #endif
209 const wchar_t* AsWChar() const;
210 operator const wchar_t*() const { return AsWChar(); }
211
212 #if !wxUSE_UNICODE || wxUSE_UTF8_LOCALE_ONLY
213 inline
214 #endif
215 const char* AsChar() const;
216 const unsigned char* AsUnsignedChar() const
217 { return (const unsigned char *) AsChar(); }
218 operator const char*() const { return AsChar(); }
219 operator const unsigned char*() const { return AsUnsignedChar(); }
220
221 operator const void*() const { return AsChar(); }
222
223 inline const wxCharBuffer AsCharBuf() const;
224 inline const wxWCharBuffer AsWCharBuf() const;
225
226 inline wxString AsString() const;
227
228 // returns the value as C string in internal representation (equivalent
229 // to AsString().wx_str(), but more efficient)
230 const wxStringCharType *AsInternal() const;
231
232 // allow expressions like "c_str()[0]":
233 inline wxUniChar operator[](size_t n) const;
234 wxUniChar operator[](int n) const { return operator[](size_t(n)); }
235 wxUniChar operator[](long n) const { return operator[](size_t(n)); }
236 #ifndef wxSIZE_T_IS_UINT
237 wxUniChar operator[](unsigned int n) const { return operator[](size_t(n)); }
238 #endif // size_t != unsigned int
239
240 // these operators are needed to emulate the pointer semantics of c_str():
241 // expressions like "wxChar *p = str.c_str() + 1;" should continue to work
242 // (we need both versions to resolve ambiguities):
243 wxCStrData operator+(int n) const
244 { return wxCStrData(m_str, m_offset + n, m_owned); }
245 wxCStrData operator+(long n) const
246 { return wxCStrData(m_str, m_offset + n, m_owned); }
247 wxCStrData operator+(size_t n) const
248 { return wxCStrData(m_str, m_offset + n, m_owned); }
249
250 // and these for "str.c_str() + n - 2":
251 wxCStrData operator-(int n) const
252 {
253 wxASSERT_MSG( n <= (int)m_offset,
254 _T("attempt to construct address before the beginning of the string") );
255 return wxCStrData(m_str, m_offset - n, m_owned);
256 }
257 wxCStrData operator-(long n) const
258 {
259 wxASSERT_MSG( n <= (int)m_offset,
260 _T("attempt to construct address before the beginning of the string") );
261 return wxCStrData(m_str, m_offset - n, m_owned);
262 }
263 wxCStrData operator-(size_t n) const
264 {
265 wxASSERT_MSG( n <= m_offset,
266 _T("attempt to construct address before the beginning of the string") );
267 return wxCStrData(m_str, m_offset - n, m_owned);
268 }
269
270 // this operator is needed to make expressions like "*c_str()" or
271 // "*(c_str() + 2)" work
272 inline wxUniChar operator*() const;
273
274 private:
275 const wxString *m_str;
276 size_t m_offset;
277 bool m_owned;
278
279 friend class WXDLLIMPEXP_BASE wxString;
280 };
281
282 // ----------------------------------------------------------------------------
283 // wxStringPrintfMixin
284 // ---------------------------------------------------------------------------
285
286 // NB: VC6 has a bug that causes linker errors if you have template methods
287 // in a class using __declspec(dllimport). The solution is to split such
288 // class into two classes, one that contains the template methods and does
289 // *not* use WXDLLIMPEXP_BASE and another class that contains the rest
290 // (with DLL linkage).
291 //
292 // We only do this for VC6 here, because the code is less efficient
293 // (Printf() has to use dynamic_cast<>) and because OpenWatcom compiler
294 // cannot compile this code.
295
296 #if defined(__VISUALC__) && __VISUALC__ < 1300
297 #define wxNEEDS_WXSTRING_PRINTF_MIXIN
298 #endif
299
300 #ifdef wxNEEDS_WXSTRING_PRINTF_MIXIN
301 // this class contains implementation of wxString's vararg methods, it's
302 // exported from wxBase DLL
303 class WXDLLIMPEXP_BASE wxStringPrintfMixinBase
304 {
305 protected:
306 wxStringPrintfMixinBase() {}
307
308 #if !wxUSE_UTF8_LOCALE_ONLY
309 int DoPrintfWchar(const wxChar *format, ...);
310 static wxString DoFormatWchar(const wxChar *format, ...);
311 #endif
312 #if wxUSE_UNICODE_UTF8
313 int DoPrintfUtf8(const char *format, ...);
314 static wxString DoFormatUtf8(const char *format, ...);
315 #endif
316 };
317
318 // this class contains template wrappers for wxString's vararg methods, it's
319 // intentionally *not* exported from the DLL in order to fix the VC6 bug
320 // described above
321 class wxStringPrintfMixin : public wxStringPrintfMixinBase
322 {
323 private:
324 // to further complicate things, we can't return wxString from
325 // wxStringPrintfMixin::Format() because wxString is not yet declared at
326 // this point; the solution is to use this fake type trait template - this
327 // way the compiler won't know the return type until Format() is used
328 // (this doesn't compile with Watcom, but VC6 compiles it just fine):
329 template<typename T> struct StringReturnType
330 {
331 typedef wxString type;
332 };
333
334 public:
335 // these are duplicated wxString methods, they're also declared below
336 // if !wxNEEDS_WXSTRING_PRINTF_MIXIN:
337
338 // static wxString Format(const wString& format, ...) ATTRIBUTE_PRINTF_1;
339 WX_DEFINE_VARARG_FUNC_SANS_N0(static typename StringReturnType<T1>::type,
340 Format, 1, (const wxFormatString&),
341 DoFormatWchar, DoFormatUtf8)
342 // We have to implement the version without template arguments manually
343 // because of the StringReturnType<> hack, although WX_DEFINE_VARARG_FUNC
344 // normally does it itself. It has to be a template so that we can use
345 // the hack, even though there's no real template parameter:
346 struct FormatDummyArg {} ;
347
348 template<typename T>
349 inline static typename StringReturnType<T>::type
350 Format(const wxFormatString& fmt, FormatDummyArg dummy = FormatDummyArg())
351 {
352 return DoFormatWchar(fmt);
353 }
354
355 // int Printf(const wxString& format, ...);
356 WX_DEFINE_VARARG_FUNC(int, Printf, 1, (const wxFormatString&),
357 DoPrintfWchar, DoPrintfUtf8)
358 // int sprintf(const wxString& format, ...) ATTRIBUTE_PRINTF_2;
359 WX_DEFINE_VARARG_FUNC(int, sprintf, 1, (const wxFormatString&),
360 DoPrintfWchar, DoPrintfUtf8)
361
362 protected:
363 wxStringPrintfMixin() : wxStringPrintfMixinBase() {}
364 };
365 #endif // wxNEEDS_WXSTRING_PRINTF_MIXIN
366
367
368 // ----------------------------------------------------------------------------
369 // wxString: string class trying to be compatible with std::string, MFC
370 // CString and wxWindows 1.x wxString all at once
371 // ---------------------------------------------------------------------------
372
373 #ifdef wxNEEDS_WXSTRING_PRINTF_MIXIN
374 // "non dll-interface class 'wxStringPrintfMixin' used as base interface
375 // for dll-interface class 'wxString'" -- this is OK in our case
376 #pragma warning (disable:4275)
377 #endif
378
379 #if wxUSE_UNICODE_UTF8
380 // see the comment near wxString::iterator for why we need this
381 struct WXDLLIMPEXP_BASE wxStringIteratorNode
382 {
383 inline wxStringIteratorNode(const wxString *str,
384 wxStringImpl::const_iterator *citer);
385 inline wxStringIteratorNode(const wxString *str,
386 wxStringImpl::iterator *iter);
387 inline ~wxStringIteratorNode();
388
389 const wxString *m_str;
390 wxStringImpl::const_iterator *m_citer;
391 wxStringImpl::iterator *m_iter;
392 wxStringIteratorNode *m_prev, *m_next;
393
394 // the node belongs to a particular iterator instance, it's not copied
395 // when a copy of the iterator is made
396 DECLARE_NO_COPY_CLASS(wxStringIteratorNode)
397 };
398 #endif // wxUSE_UNICODE_UTF8
399
400 class WXDLLIMPEXP_BASE wxString
401 #ifdef wxNEEDS_WXSTRING_PRINTF_MIXIN
402 : public wxStringPrintfMixin
403 #endif
404 {
405 // NB: special care was taken in arranging the member functions in such order
406 // that all inline functions can be effectively inlined, verify that all
407 // performance critical functions are still inlined if you change order!
408 public:
409 // an 'invalid' value for string index, moved to this place due to a CW bug
410 static const size_t npos;
411
412 private:
413 // if we hadn't made these operators private, it would be possible to
414 // compile "wxString s; s = 17;" without any warnings as 17 is implicitly
415 // converted to char in C and we do have operator=(char)
416 //
417 // NB: we don't need other versions (short/long and unsigned) as attempt
418 // to assign another numeric type to wxString will now result in
419 // ambiguity between operator=(char) and operator=(int)
420 wxString& operator=(int);
421
422 // these methods are not implemented - there is _no_ conversion from int to
423 // string, you're doing something wrong if the compiler wants to call it!
424 //
425 // try `s << i' or `s.Printf("%d", i)' instead
426 wxString(int);
427
428
429 // buffer for holding temporary substring when using any of the methods
430 // that take (char*,size_t) or (wchar_t*,size_t) arguments:
431 template<typename T>
432 struct SubstrBufFromType
433 {
434 T data;
435 size_t len;
436
437 SubstrBufFromType(const T& data_, size_t len_)
438 : data(data_), len(len_) {}
439 };
440
441 #if wxUSE_UNICODE_UTF8
442 // even char* -> char* needs conversion, from locale charset to UTF-8
443 typedef SubstrBufFromType<wxCharBuffer> SubstrBufFromWC;
444 typedef SubstrBufFromType<wxCharBuffer> SubstrBufFromMB;
445 #elif wxUSE_UNICODE_WCHAR
446 typedef SubstrBufFromType<const wchar_t*> SubstrBufFromWC;
447 typedef SubstrBufFromType<wxWCharBuffer> SubstrBufFromMB;
448 #else
449 typedef SubstrBufFromType<const char*> SubstrBufFromMB;
450 typedef SubstrBufFromType<wxCharBuffer> SubstrBufFromWC;
451 #endif
452
453
454 // Functions implementing primitive operations on string data; wxString
455 // methods and iterators are implemented in terms of it. The differences
456 // between UTF-8 and wchar_t* representations of the string are mostly
457 // contained here.
458
459 #if wxUSE_UNICODE_UTF8
460 static SubstrBufFromMB ConvertStr(const char *psz, size_t nLength,
461 const wxMBConv& conv);
462 static SubstrBufFromWC ConvertStr(const wchar_t *pwz, size_t nLength,
463 const wxMBConv& conv);
464 #elif wxUSE_UNICODE_WCHAR
465 static SubstrBufFromMB ConvertStr(const char *psz, size_t nLength,
466 const wxMBConv& conv);
467 #else
468 static SubstrBufFromWC ConvertStr(const wchar_t *pwz, size_t nLength,
469 const wxMBConv& conv);
470 #endif
471
472 #if !wxUSE_UNICODE_UTF8 // wxUSE_UNICODE_WCHAR or !wxUSE_UNICODE
473 // returns C string encoded as the implementation expects:
474 #if wxUSE_UNICODE
475 static const wchar_t* ImplStr(const wchar_t* str)
476 { return str ? str : wxT(""); }
477 static const SubstrBufFromWC ImplStr(const wchar_t* str, size_t n)
478 { return SubstrBufFromWC(str, (str && n == npos) ? wxWcslen(str) : n); }
479 static wxWCharBuffer ImplStr(const char* str,
480 const wxMBConv& conv = wxConvLibc)
481 { return ConvertStr(str, npos, conv).data; }
482 static SubstrBufFromMB ImplStr(const char* str, size_t n,
483 const wxMBConv& conv = wxConvLibc)
484 { return ConvertStr(str, n, conv); }
485 #else
486 static const char* ImplStr(const char* str,
487 const wxMBConv& WXUNUSED(conv) = wxConvLibc)
488 { return str ? str : ""; }
489 static const SubstrBufFromMB ImplStr(const char* str, size_t n,
490 const wxMBConv& WXUNUSED(conv) = wxConvLibc)
491 { return SubstrBufFromMB(str, (str && n == npos) ? wxStrlen(str) : n); }
492 static wxCharBuffer ImplStr(const wchar_t* str)
493 { return ConvertStr(str, npos, wxConvLibc).data; }
494 static SubstrBufFromWC ImplStr(const wchar_t* str, size_t n)
495 { return ConvertStr(str, n, wxConvLibc); }
496 #endif
497
498 // translates position index in wxString to/from index in underlying
499 // wxStringImpl:
500 static size_t PosToImpl(size_t pos) { return pos; }
501 static void PosLenToImpl(size_t pos, size_t len,
502 size_t *implPos, size_t *implLen)
503 { *implPos = pos; *implLen = len; }
504 static size_t LenToImpl(size_t len) { return len; }
505 static size_t PosFromImpl(size_t pos) { return pos; }
506
507 #else // wxUSE_UNICODE_UTF8
508
509 static wxCharBuffer ImplStr(const char* str,
510 const wxMBConv& conv = wxConvLibc)
511 { return ConvertStr(str, npos, conv).data; }
512 static SubstrBufFromMB ImplStr(const char* str, size_t n,
513 const wxMBConv& conv = wxConvLibc)
514 { return ConvertStr(str, n, conv); }
515
516 static wxCharBuffer ImplStr(const wchar_t* str)
517 { return ConvertStr(str, npos, wxMBConvUTF8()).data; }
518 static SubstrBufFromWC ImplStr(const wchar_t* str, size_t n)
519 { return ConvertStr(str, n, wxMBConvUTF8()); }
520
521 size_t PosToImpl(size_t pos) const
522 {
523 if ( pos == 0 || pos == npos )
524 return pos;
525 else
526 return (begin() + pos).impl() - m_impl.begin();
527 }
528
529 void PosLenToImpl(size_t pos, size_t len, size_t *implPos, size_t *implLen) const;
530
531 size_t LenToImpl(size_t len) const
532 {
533 size_t pos, len2;
534 PosLenToImpl(0, len, &pos, &len2);
535 return len2;
536 }
537
538 size_t PosFromImpl(size_t pos) const
539 {
540 if ( pos == 0 || pos == npos )
541 return pos;
542 else
543 return const_iterator(this, m_impl.begin() + pos) - begin();
544 }
545 #endif // !wxUSE_UNICODE_UTF8/wxUSE_UNICODE_UTF8
546
547 public:
548 // standard types
549 typedef wxUniChar value_type;
550 typedef wxUniChar char_type;
551 typedef wxUniCharRef reference;
552 typedef wxChar* pointer;
553 typedef const wxChar* const_pointer;
554
555 typedef size_t size_type;
556 typedef wxUniChar const_reference;
557
558 #if wxUSE_STL
559 #if wxUSE_UNICODE_UTF8
560 // random access is not O(1), as required by Random Access Iterator
561 #define WX_STR_ITERATOR_TAG std::bidirectional_iterator_tag
562 #else
563 #define WX_STR_ITERATOR_TAG std::random_access_iterator_tag
564 #endif
565 #else
566 #define WX_STR_ITERATOR_TAG void /* dummy type */
567 #endif
568
569 #define WX_STR_ITERATOR_IMPL(iterator_name, pointer_type, reference_type) \
570 private: \
571 typedef wxStringImpl::iterator_name underlying_iterator; \
572 public: \
573 typedef WX_STR_ITERATOR_TAG iterator_category; \
574 typedef wxUniChar value_type; \
575 typedef int difference_type; \
576 typedef reference_type reference; \
577 typedef pointer_type pointer; \
578 \
579 reference operator[](size_t n) const { return *(*this + n); } \
580 \
581 iterator_name& operator++() \
582 { wxStringOperations::IncIter(m_cur); return *this; } \
583 iterator_name& operator--() \
584 { wxStringOperations::DecIter(m_cur); return *this; } \
585 iterator_name operator++(int) \
586 { \
587 iterator_name tmp = *this; \
588 wxStringOperations::IncIter(m_cur); \
589 return tmp; \
590 } \
591 iterator_name operator--(int) \
592 { \
593 iterator_name tmp = *this; \
594 wxStringOperations::DecIter(m_cur); \
595 return tmp; \
596 } \
597 \
598 iterator_name& operator+=(int n) \
599 { \
600 m_cur = wxStringOperations::AddToIter(m_cur, n); \
601 return *this; \
602 } \
603 iterator_name& operator+=(size_t n) \
604 { \
605 m_cur = wxStringOperations::AddToIter(m_cur, (int)n); \
606 return *this; \
607 } \
608 iterator_name& operator-=(int n) \
609 { \
610 m_cur = wxStringOperations::AddToIter(m_cur, -n); \
611 return *this; \
612 } \
613 iterator_name& operator-=(size_t n) \
614 { \
615 m_cur = wxStringOperations::AddToIter(m_cur, -(int)n); \
616 return *this; \
617 } \
618 \
619 difference_type operator-(const iterator_name& i) const \
620 { return wxStringOperations::DiffIters(m_cur, i.m_cur); } \
621 \
622 bool operator==(const iterator_name& i) const \
623 { return m_cur == i.m_cur; } \
624 bool operator!=(const iterator_name& i) const \
625 { return m_cur != i.m_cur; } \
626 \
627 bool operator<(const iterator_name& i) const \
628 { return m_cur < i.m_cur; } \
629 bool operator>(const iterator_name& i) const \
630 { return m_cur > i.m_cur; } \
631 bool operator<=(const iterator_name& i) const \
632 { return m_cur <= i.m_cur; } \
633 bool operator>=(const iterator_name& i) const \
634 { return m_cur >= i.m_cur; } \
635 \
636 private: \
637 /* for internal wxString use only: */ \
638 underlying_iterator impl() const { return m_cur; } \
639 \
640 friend class WXDLLIMPEXP_BASE wxString; \
641 friend class WXDLLIMPEXP_BASE wxCStrData; \
642 \
643 private: \
644 underlying_iterator m_cur
645
646 class WXDLLIMPEXP_BASE const_iterator;
647
648 #if wxUSE_UNICODE_UTF8
649 // NB: In UTF-8 build, (non-const) iterator needs to keep reference
650 // to the underlying wxStringImpl, because UTF-8 is variable-length
651 // encoding and changing the value pointer to by an iterator (using
652 // its operator*) requires calling wxStringImpl::replace() if the old
653 // and new values differ in their encoding's length.
654 //
655 // Furthermore, the replace() call may invalid all iterators for the
656 // string, so we have to keep track of outstanding iterators and update
657 // them if replace() happens.
658 //
659 // This is implemented by maintaining linked list of iterators for every
660 // string and traversing it in wxUniCharRef::operator=(). Head of the
661 // list is stored in wxString. (FIXME-UTF8)
662
663 class WXDLLIMPEXP_BASE iterator
664 {
665 WX_STR_ITERATOR_IMPL(iterator, wxChar*, wxUniCharRef);
666
667 public:
668 iterator(const iterator& i)
669 : m_cur(i.m_cur), m_node(i.str(), &m_cur) {}
670 iterator& operator=(const iterator& i)
671 { m_cur = i.m_cur; return *this; }
672
673 reference operator*()
674 { return wxUniCharRef::CreateForString(m_node, m_cur); }
675
676 iterator operator+(int n) const
677 { return iterator(str(), wxStringOperations::AddToIter(m_cur, n)); }
678 iterator operator+(size_t n) const
679 { return iterator(str(), wxStringOperations::AddToIter(m_cur, (int)n)); }
680 iterator operator-(int n) const
681 { return iterator(str(), wxStringOperations::AddToIter(m_cur, -n)); }
682 iterator operator-(size_t n) const
683 { return iterator(str(), wxStringOperations::AddToIter(m_cur, -(int)n)); }
684
685 private:
686 iterator(wxString *str, underlying_iterator ptr)
687 : m_cur(ptr), m_node(str, &m_cur) {}
688
689 wxString* str() const { return wx_const_cast(wxString*, m_node.m_str); }
690
691 wxStringIteratorNode m_node;
692
693 friend class const_iterator;
694 };
695
696 class WXDLLIMPEXP_BASE const_iterator
697 {
698 // NB: reference_type is intentionally value, not reference, the character
699 // may be encoded differently in wxString data:
700 WX_STR_ITERATOR_IMPL(const_iterator, const wxChar*, wxUniChar);
701
702 public:
703 const_iterator(const const_iterator& i)
704 : m_cur(i.m_cur), m_node(i.str(), &m_cur) {}
705 const_iterator(const iterator& i)
706 : m_cur(i.m_cur), m_node(i.str(), &m_cur) {}
707
708 const_iterator& operator=(const const_iterator& i)
709 { m_cur = i.m_cur; return *this; }
710 const_iterator& operator=(const iterator& i)
711 { m_cur = i.m_cur; return *this; }
712
713 reference operator*() const
714 { return wxStringOperations::DecodeChar(m_cur); }
715
716 const_iterator operator+(int n) const
717 { return const_iterator(str(), wxStringOperations::AddToIter(m_cur, n)); }
718 const_iterator operator+(size_t n) const
719 { return const_iterator(str(), wxStringOperations::AddToIter(m_cur, (int)n)); }
720 const_iterator operator-(int n) const
721 { return const_iterator(str(), wxStringOperations::AddToIter(m_cur, -n)); }
722 const_iterator operator-(size_t n) const
723 { return const_iterator(str(), wxStringOperations::AddToIter(m_cur, -(int)n)); }
724
725 private:
726 // for internal wxString use only:
727 const_iterator(const wxString *str, underlying_iterator ptr)
728 : m_cur(ptr), m_node(str, &m_cur) {}
729
730 const wxString* str() const { return m_node.m_str; }
731
732 wxStringIteratorNode m_node;
733 };
734
735 size_t IterToImplPos(wxString::iterator i) const
736 { return wxStringImpl::const_iterator(i.impl()) - m_impl.begin(); }
737
738 #else // !wxUSE_UNICODE_UTF8
739
740 class WXDLLIMPEXP_BASE iterator
741 {
742 WX_STR_ITERATOR_IMPL(iterator, wxChar*, wxUniCharRef);
743
744 public:
745 iterator(const iterator& i) : m_cur(i.m_cur) {}
746
747 reference operator*()
748 { return wxUniCharRef::CreateForString(m_cur); }
749
750 iterator operator+(int n) const
751 { return iterator(wxStringOperations::AddToIter(m_cur, n)); }
752 iterator operator+(size_t n) const
753 { return iterator(wxStringOperations::AddToIter(m_cur, (int)n)); }
754 iterator operator-(int n) const
755 { return iterator(wxStringOperations::AddToIter(m_cur, -n)); }
756 iterator operator-(size_t n) const
757 { return iterator(wxStringOperations::AddToIter(m_cur, -(int)n)); }
758
759 private:
760 // for internal wxString use only:
761 iterator(underlying_iterator ptr) : m_cur(ptr) {}
762 iterator(wxString *WXUNUSED(str), underlying_iterator ptr) : m_cur(ptr) {}
763
764 friend class const_iterator;
765 };
766
767 class WXDLLIMPEXP_BASE const_iterator
768 {
769 // NB: reference_type is intentionally value, not reference, the character
770 // may be encoded differently in wxString data:
771 WX_STR_ITERATOR_IMPL(const_iterator, const wxChar*, wxUniChar);
772
773 public:
774 const_iterator(const const_iterator& i) : m_cur(i.m_cur) {}
775 const_iterator(const iterator& i) : m_cur(i.m_cur) {}
776
777 reference operator*() const
778 { return wxStringOperations::DecodeChar(m_cur); }
779
780 const_iterator operator+(int n) const
781 { return const_iterator(wxStringOperations::AddToIter(m_cur, n)); }
782 const_iterator operator+(size_t n) const
783 { return const_iterator(wxStringOperations::AddToIter(m_cur, (int)n)); }
784 const_iterator operator-(int n) const
785 { return const_iterator(wxStringOperations::AddToIter(m_cur, -n)); }
786 const_iterator operator-(size_t n) const
787 { return const_iterator(wxStringOperations::AddToIter(m_cur, -(int)n)); }
788
789 private:
790 // for internal wxString use only:
791 const_iterator(underlying_iterator ptr) : m_cur(ptr) {}
792 const_iterator(const wxString *WXUNUSED(str), underlying_iterator ptr)
793 : m_cur(ptr) {}
794 };
795 #endif // wxUSE_UNICODE_UTF8/!wxUSE_UNICODE_UTF8
796
797 #undef WX_STR_ITERATOR_TAG
798 #undef WX_STR_ITERATOR_IMPL
799
800 friend class iterator;
801 friend class const_iterator;
802
803 template <typename T>
804 class reverse_iterator_impl
805 {
806 public:
807 typedef T iterator_type;
808
809 typedef typename T::iterator_category iterator_category;
810 typedef typename T::value_type value_type;
811 typedef typename T::difference_type difference_type;
812 typedef typename T::reference reference;
813 typedef typename T::pointer *pointer;
814
815 reverse_iterator_impl(iterator_type i) : m_cur(i) {}
816 reverse_iterator_impl(const reverse_iterator_impl& ri)
817 : m_cur(ri.m_cur) {}
818
819 iterator_type base() const { return m_cur; }
820
821 reference operator*() const { return *(m_cur-1); }
822 reference operator[](size_t n) const { return *(*this + n); }
823
824 reverse_iterator_impl& operator++()
825 { --m_cur; return *this; }
826 reverse_iterator_impl operator++(int)
827 { reverse_iterator_impl tmp = *this; --m_cur; return tmp; }
828 reverse_iterator_impl& operator--()
829 { ++m_cur; return *this; }
830 reverse_iterator_impl operator--(int)
831 { reverse_iterator_impl tmp = *this; ++m_cur; return tmp; }
832
833 // NB: explicit <T> in the functions below is to keep BCC 5.5 happy
834 reverse_iterator_impl operator+(int n) const
835 { return reverse_iterator_impl<T>(m_cur - n); }
836 reverse_iterator_impl operator+(size_t n) const
837 { return reverse_iterator_impl<T>(m_cur - n); }
838 reverse_iterator_impl operator-(int n) const
839 { return reverse_iterator_impl<T>(m_cur + n); }
840 reverse_iterator_impl operator-(size_t n) const
841 { return reverse_iterator_impl<T>(m_cur + n); }
842 reverse_iterator_impl operator+=(int n)
843 { m_cur -= n; return *this; }
844 reverse_iterator_impl operator+=(size_t n)
845 { m_cur -= n; return *this; }
846 reverse_iterator_impl operator-=(int n)
847 { m_cur += n; return *this; }
848 reverse_iterator_impl operator-=(size_t n)
849 { m_cur += n; return *this; }
850
851 unsigned operator-(const reverse_iterator_impl& i) const
852 { return i.m_cur - m_cur; }
853
854 bool operator==(const reverse_iterator_impl& ri) const
855 { return m_cur == ri.m_cur; }
856 bool operator!=(const reverse_iterator_impl& ri) const
857 { return !(*this == ri); }
858
859 bool operator<(const reverse_iterator_impl& i) const
860 { return m_cur > i.m_cur; }
861 bool operator>(const reverse_iterator_impl& i) const
862 { return m_cur < i.m_cur; }
863 bool operator<=(const reverse_iterator_impl& i) const
864 { return m_cur >= i.m_cur; }
865 bool operator>=(const reverse_iterator_impl& i) const
866 { return m_cur <= i.m_cur; }
867
868 private:
869 iterator_type m_cur;
870 };
871
872 typedef reverse_iterator_impl<iterator> reverse_iterator;
873 typedef reverse_iterator_impl<const_iterator> const_reverse_iterator;
874
875 private:
876 // used to transform an expression built using c_str() (and hence of type
877 // wxCStrData) to an iterator into the string
878 static const_iterator CreateConstIterator(const wxCStrData& data)
879 {
880 return const_iterator(data.m_str,
881 (data.m_str->begin() + data.m_offset).impl());
882 }
883
884 // in UTF-8 STL build, creation from std::string requires conversion under
885 // non-UTF8 locales, so we can't have and use wxString(wxStringImpl) ctor;
886 // instead we define dummy type that lets us have wxString ctor for creation
887 // from wxStringImpl that couldn't be used by user code (in all other builds,
888 // "standard" ctors can be used):
889 #if wxUSE_UNICODE_UTF8 && wxUSE_STL_BASED_WXSTRING
890 struct CtorFromStringImplTag {};
891
892 wxString(CtorFromStringImplTag* WXUNUSED(dummy), const wxStringImpl& src)
893 : m_impl(src) {}
894
895 static wxString FromImpl(const wxStringImpl& src)
896 { return wxString((CtorFromStringImplTag*)NULL, src); }
897 #else
898 #if !wxUSE_STL_BASED_WXSTRING
899 wxString(const wxStringImpl& src) : m_impl(src) { }
900 // else: already defined as wxString(wxStdString) below
901 #endif
902 static wxString FromImpl(const wxStringImpl& src) { return wxString(src); }
903 #endif
904
905 public:
906 // constructors and destructor
907 // ctor for an empty string
908 wxString() {}
909
910 // copy ctor
911 wxString(const wxString& stringSrc) : m_impl(stringSrc.m_impl) { }
912
913 // string containing nRepeat copies of ch
914 wxString(wxUniChar ch, size_t nRepeat = 1)
915 { assign(nRepeat, ch); }
916 wxString(size_t nRepeat, wxUniChar ch)
917 { assign(nRepeat, ch); }
918 wxString(wxUniCharRef ch, size_t nRepeat = 1)
919 { assign(nRepeat, ch); }
920 wxString(size_t nRepeat, wxUniCharRef ch)
921 { assign(nRepeat, ch); }
922 wxString(char ch, size_t nRepeat = 1)
923 { assign(nRepeat, ch); }
924 wxString(size_t nRepeat, char ch)
925 { assign(nRepeat, ch); }
926 wxString(wchar_t ch, size_t nRepeat = 1)
927 { assign(nRepeat, ch); }
928 wxString(size_t nRepeat, wchar_t ch)
929 { assign(nRepeat, ch); }
930
931 // ctors from char* strings:
932 wxString(const char *psz)
933 : m_impl(ImplStr(psz)) {}
934 wxString(const char *psz, const wxMBConv& conv)
935 : m_impl(ImplStr(psz, conv)) {}
936 wxString(const char *psz, size_t nLength)
937 { assign(psz, nLength); }
938 wxString(const char *psz, const wxMBConv& conv, size_t nLength)
939 {
940 SubstrBufFromMB str(ImplStr(psz, nLength, conv));
941 m_impl.assign(str.data, str.len);
942 }
943
944 // and unsigned char*:
945 wxString(const unsigned char *psz)
946 : m_impl(ImplStr((const char*)psz)) {}
947 wxString(const unsigned char *psz, const wxMBConv& conv)
948 : m_impl(ImplStr((const char*)psz, conv)) {}
949 wxString(const unsigned char *psz, size_t nLength)
950 { assign((const char*)psz, nLength); }
951 wxString(const unsigned char *psz, const wxMBConv& conv, size_t nLength)
952 {
953 SubstrBufFromMB str(ImplStr((const char*)psz, nLength, conv));
954 m_impl.assign(str.data, str.len);
955 }
956
957 // ctors from wchar_t* strings:
958 wxString(const wchar_t *pwz)
959 : m_impl(ImplStr(pwz)) {}
960 wxString(const wchar_t *pwz, const wxMBConv& WXUNUSED(conv))
961 : m_impl(ImplStr(pwz)) {}
962 wxString(const wchar_t *pwz, size_t nLength)
963 { assign(pwz, nLength); }
964 wxString(const wchar_t *pwz, const wxMBConv& WXUNUSED(conv), size_t nLength)
965 { assign(pwz, nLength); }
966
967 wxString(const wxCharBuffer& buf)
968 { assign(buf.data()); } // FIXME-UTF8: fix for embedded NUL and buffer length
969 wxString(const wxWCharBuffer& buf)
970 { assign(buf.data()); } // FIXME-UTF8: fix for embedded NUL and buffer length
971
972 wxString(const wxCStrData& cstr)
973 : m_impl(cstr.AsString().m_impl) { }
974
975 // as we provide both ctors with this signature for both char and unsigned
976 // char string, we need to provide one for wxCStrData to resolve ambiguity
977 wxString(const wxCStrData& cstr, size_t nLength)
978 : m_impl(cstr.AsString().Mid(0, nLength).m_impl) {}
979
980 // and because wxString is convertible to wxCStrData and const wxChar *
981 // we also need to provide this one
982 wxString(const wxString& str, size_t nLength)
983 { assign(str, nLength); }
984
985 // even if we're not built with wxUSE_STL == 1 it is very convenient to allow
986 // implicit conversions from std::string to wxString and vice verse as this
987 // allows to use the same strings in non-GUI and GUI code, however we don't
988 // want to unconditionally add this ctor as it would make wx lib dependent on
989 // libstdc++ on some Linux versions which is bad, so instead we ask the
990 // client code to define this wxUSE_STD_STRING symbol if they need it
991 #if wxUSE_STD_STRING
992 #if wxUSE_UNICODE_WCHAR
993 wxString(const wxStdWideString& str) : m_impl(str) {}
994 #else // UTF-8 or ANSI
995 wxString(const wxStdWideString& str)
996 { assign(str.c_str(), str.length()); }
997 #endif
998
999 #if !wxUSE_UNICODE // ANSI build
1000 // FIXME-UTF8: do this in UTF8 build #if wxUSE_UTF8_LOCALE_ONLY, too
1001 wxString(const std::string& str) : m_impl(str) {}
1002 #else // Unicode
1003 wxString(const std::string& str)
1004 { assign(str.c_str(), str.length()); }
1005 #endif
1006 #endif // wxUSE_STD_STRING
1007
1008 // Unlike ctor from std::string, we provide conversion to std::string only
1009 // if wxUSE_STL and not merely wxUSE_STD_STRING (which is on by default),
1010 // because it conflicts with operator const char/wchar_t*:
1011 #if wxUSE_STL
1012 #if wxUSE_UNICODE_WCHAR && wxUSE_STL_BASED_WXSTRING
1013 // wxStringImpl is std::string in the encoding we want
1014 operator const wxStdWideString&() const { return m_impl; }
1015 #else
1016 // wxStringImpl is either not std::string or needs conversion
1017 operator wxStdWideString() const
1018 // FIXME-UTF8: broken for embedded NULs
1019 { return wxStdWideString(wc_str()); }
1020 #endif
1021
1022 #if (!wxUSE_UNICODE || wxUSE_UTF8_LOCALE_ONLY) && wxUSE_STL_BASED_WXSTRING
1023 // wxStringImpl is std::string in the encoding we want
1024 operator const std::string&() const { return m_impl; }
1025 #else
1026 // wxStringImpl is either not std::string or needs conversion
1027 operator std::string() const
1028 // FIXME-UTF8: broken for embedded NULs
1029 { return std::string(mb_str()); }
1030 #endif
1031 #endif // wxUSE_STL
1032
1033 // first valid index position
1034 const_iterator begin() const { return const_iterator(this, m_impl.begin()); }
1035 iterator begin() { return iterator(this, m_impl.begin()); }
1036 // position one after the last valid one
1037 const_iterator end() const { return const_iterator(this, m_impl.end()); }
1038 iterator end() { return iterator(this, m_impl.end()); }
1039
1040 // first element of the reversed string
1041 const_reverse_iterator rbegin() const
1042 { return const_reverse_iterator(end()); }
1043 reverse_iterator rbegin()
1044 { return reverse_iterator(end()); }
1045 // one beyond the end of the reversed string
1046 const_reverse_iterator rend() const
1047 { return const_reverse_iterator(begin()); }
1048 reverse_iterator rend()
1049 { return reverse_iterator(begin()); }
1050
1051 // std::string methods:
1052 #if wxUSE_UNICODE_UTF8
1053 size_t length() const { return end() - begin(); } // FIXME-UTF8: optimize!
1054 #else
1055 size_t length() const { return m_impl.length(); }
1056 #endif
1057
1058 size_type size() const { return length(); }
1059 size_type max_size() const { return npos; }
1060
1061 bool empty() const { return m_impl.empty(); }
1062
1063 size_type capacity() const { return m_impl.capacity(); } // FIXME-UTF8
1064 void reserve(size_t sz) { m_impl.reserve(sz); } // FIXME-UTF8
1065
1066 void resize(size_t nSize, wxUniChar ch = wxT('\0'))
1067 {
1068 #if wxUSE_UNICODE_UTF8
1069 if ( !ch.IsAscii() )
1070 {
1071 size_t len = length();
1072 if ( nSize == len)
1073 return;
1074 else if ( nSize < len )
1075 erase(nSize);
1076 else
1077 append(nSize - len, ch);
1078 }
1079 else
1080 #endif
1081 m_impl.resize(nSize, (wxStringCharType)ch);
1082 }
1083
1084 wxString substr(size_t nStart = 0, size_t nLen = npos) const
1085 {
1086 size_t pos, len;
1087 PosLenToImpl(nStart, nLen, &pos, &len);
1088 return FromImpl(m_impl.substr(pos, len));
1089 }
1090
1091 // generic attributes & operations
1092 // as standard strlen()
1093 size_t Len() const { return length(); }
1094 // string contains any characters?
1095 bool IsEmpty() const { return empty(); }
1096 // empty string is "false", so !str will return true
1097 bool operator!() const { return empty(); }
1098 // truncate the string to given length
1099 wxString& Truncate(size_t uiLen);
1100 // empty string contents
1101 void Empty()
1102 {
1103 Truncate(0);
1104
1105 wxASSERT_MSG( empty(), _T("string not empty after call to Empty()?") );
1106 }
1107 // empty the string and free memory
1108 void Clear()
1109 {
1110 wxString tmp(wxEmptyString);
1111 swap(tmp);
1112 }
1113
1114 // contents test
1115 // Is an ascii value
1116 bool IsAscii() const;
1117 // Is a number
1118 bool IsNumber() const;
1119 // Is a word
1120 bool IsWord() const;
1121
1122 // data access (all indexes are 0 based)
1123 // read access
1124 wxUniChar at(size_t n) const
1125 { return *(begin() + n); } // FIXME-UTF8: optimize?
1126 wxUniChar GetChar(size_t n) const
1127 { return at(n); }
1128 // read/write access
1129 wxUniCharRef at(size_t n)
1130 { return *(begin() + n); } // FIXME-UTF8: optimize?
1131 wxUniCharRef GetWritableChar(size_t n)
1132 { return at(n); }
1133 // write access
1134 void SetChar(size_t n, wxUniChar ch)
1135 { at(n) = ch; }
1136
1137 // get last character
1138 wxUniChar Last() const
1139 {
1140 wxASSERT_MSG( !empty(), _T("wxString: index out of bounds") );
1141 return *rbegin();
1142 }
1143
1144 // get writable last character
1145 wxUniCharRef Last()
1146 {
1147 wxASSERT_MSG( !empty(), _T("wxString: index out of bounds") );
1148 return *rbegin();
1149 }
1150
1151 /*
1152 Note that we we must define all of the overloads below to avoid
1153 ambiguity when using str[0].
1154 */
1155 wxUniChar operator[](int n) const
1156 { return at(n); }
1157 wxUniChar operator[](long n) const
1158 { return at(n); }
1159 wxUniChar operator[](size_t n) const
1160 { return at(n); }
1161 #ifndef wxSIZE_T_IS_UINT
1162 wxUniChar operator[](unsigned int n) const
1163 { return at(n); }
1164 #endif // size_t != unsigned int
1165
1166 // operator versions of GetWriteableChar()
1167 wxUniCharRef operator[](int n)
1168 { return at(n); }
1169 wxUniCharRef operator[](long n)
1170 { return at(n); }
1171 wxUniCharRef operator[](size_t n)
1172 { return at(n); }
1173 #ifndef wxSIZE_T_IS_UINT
1174 wxUniCharRef operator[](unsigned int n)
1175 { return at(n); }
1176 #endif // size_t != unsigned int
1177
1178 // explicit conversion to C string (use this with printf()!)
1179 wxCStrData c_str() const { return wxCStrData(this); }
1180 wxCStrData data() const { return c_str(); }
1181
1182 // implicit conversion to C string
1183 operator wxCStrData() const { return c_str(); }
1184
1185 // these operators conflict with operators for conversion to std::string,
1186 // so they must be disabled in STL build:
1187 #if !wxUSE_STL
1188 operator const char*() const { return c_str(); }
1189 operator const wchar_t*() const { return c_str(); }
1190 #endif
1191
1192 // implicit conversion to untyped pointer for compatibility with previous
1193 // wxWidgets versions: this is the same as conversion to const char * so it
1194 // may fail!
1195 operator const void*() const { return c_str(); }
1196
1197 // identical to c_str(), for MFC compatibility
1198 const wxCStrData GetData() const { return c_str(); }
1199
1200 // explicit conversion to C string in internal representation (char*,
1201 // wchar_t*, UTF-8-encoded char*, depending on the build):
1202 const wxStringCharType *wx_str() const { return m_impl.c_str(); }
1203
1204 // conversion to *non-const* multibyte or widestring buffer; modifying
1205 // returned buffer won't affect the string, these methods are only useful
1206 // for passing values to const-incorrect functions
1207 wxWritableCharBuffer char_str(const wxMBConv& conv = wxConvLibc) const
1208 { return mb_str(conv); }
1209 wxWritableWCharBuffer wchar_str() const { return wc_str(); }
1210
1211 // conversion to/from plain (i.e. 7 bit) ASCII: this is useful for
1212 // converting numbers or strings which are certain not to contain special
1213 // chars (typically system functions, X atoms, environment variables etc.)
1214 //
1215 // the behaviour of these functions with the strings containing anything
1216 // else than 7 bit ASCII characters is undefined, use at your own risk.
1217 #if wxUSE_UNICODE
1218 static wxString FromAscii(const char *ascii); // string
1219 static wxString FromAscii(const char ascii); // char
1220 const wxCharBuffer ToAscii() const;
1221 #else // ANSI
1222 static wxString FromAscii(const char *ascii) { return wxString( ascii ); }
1223 static wxString FromAscii(const char ascii) { return wxString( ascii ); }
1224 const char *ToAscii() const { return c_str(); }
1225 #endif // Unicode/!Unicode
1226
1227 // conversion to/from UTF-8:
1228 #if wxUSE_UNICODE_UTF8
1229 static wxString FromUTF8(const char *utf8)
1230 {
1231 if ( !utf8 )
1232 return wxEmptyString;
1233
1234 wxASSERT( wxStringOperations::IsValidUtf8String(utf8) );
1235 return FromImpl(wxStringImpl(utf8));
1236 }
1237 static wxString FromUTF8(const char *utf8, size_t len)
1238 {
1239 if ( !utf8 )
1240 return wxEmptyString;
1241 if ( len == npos )
1242 return FromUTF8(utf8);
1243
1244 wxASSERT( wxStringOperations::IsValidUtf8String(utf8, len) );
1245 return FromImpl(wxStringImpl(utf8, len));
1246 }
1247 const char* utf8_str() const { return wx_str(); }
1248 const char* ToUTF8() const { return wx_str(); }
1249 #elif wxUSE_UNICODE_WCHAR
1250 static wxString FromUTF8(const char *utf8)
1251 { return wxString(utf8, wxMBConvUTF8()); }
1252 static wxString FromUTF8(const char *utf8, size_t len)
1253 { return wxString(utf8, wxMBConvUTF8(), len); }
1254 const wxCharBuffer utf8_str() const { return mb_str(wxMBConvUTF8()); }
1255 const wxCharBuffer ToUTF8() const { return utf8_str(); }
1256 #else // ANSI
1257 static wxString FromUTF8(const char *utf8)
1258 { return wxString(wxMBConvUTF8().cMB2WC(utf8)); }
1259 static wxString FromUTF8(const char *utf8, size_t len)
1260 {
1261 size_t wlen;
1262 wxWCharBuffer buf(wxMBConvUTF8().cMB2WC(utf8, len == npos ? wxNO_LEN : len, &wlen));
1263 return wxString(buf.data(), wlen);
1264 }
1265 const wxCharBuffer utf8_str() const
1266 { return wxMBConvUTF8().cWC2MB(wc_str()); }
1267 const wxCharBuffer ToUTF8() const { return utf8_str(); }
1268 #endif
1269
1270 // functions for storing binary data in wxString:
1271 #if wxUSE_UNICODE
1272 static wxString From8BitData(const char *data, size_t len)
1273 { return wxString(data, wxConvISO8859_1, len); }
1274 // version for NUL-terminated data:
1275 static wxString From8BitData(const char *data)
1276 { return wxString(data, wxConvISO8859_1); }
1277 const wxCharBuffer To8BitData() const { return mb_str(wxConvISO8859_1); }
1278 #else // ANSI
1279 static wxString From8BitData(const char *data, size_t len)
1280 { return wxString(data, len); }
1281 // version for NUL-terminated data:
1282 static wxString From8BitData(const char *data)
1283 { return wxString(data); }
1284 const char *To8BitData() const { return c_str(); }
1285 #endif // Unicode/ANSI
1286
1287 // conversions with (possible) format conversions: have to return a
1288 // buffer with temporary data
1289 //
1290 // the functions defined (in either Unicode or ANSI) mode are mb_str() to
1291 // return an ANSI (multibyte) string, wc_str() to return a wide string and
1292 // fn_str() to return a string which should be used with the OS APIs
1293 // accepting the file names. The return value is always the same, but the
1294 // type differs because a function may either return pointer to the buffer
1295 // directly or have to use intermediate buffer for translation.
1296 #if wxUSE_UNICODE
1297
1298 #if wxUSE_UTF8_LOCALE_ONLY
1299 const char* mb_str() const { return wx_str(); }
1300 const wxCharBuffer mb_str(const wxMBConv& conv) const;
1301 #else
1302 const wxCharBuffer mb_str(const wxMBConv& conv = wxConvLibc) const;
1303 #endif
1304
1305 const wxWX2MBbuf mbc_str() const { return mb_str(*wxConvCurrent); }
1306
1307 #if wxUSE_UNICODE_WCHAR
1308 const wxChar* wc_str() const { return wx_str(); }
1309 #elif wxUSE_UNICODE_UTF8
1310 const wxWCharBuffer wc_str() const;
1311 #endif
1312 // for compatibility with !wxUSE_UNICODE version
1313 const wxWX2WCbuf wc_str(const wxMBConv& WXUNUSED(conv)) const
1314 { return wc_str(); }
1315
1316 #if wxMBFILES
1317 const wxCharBuffer fn_str() const { return mb_str(wxConvFile); }
1318 #else // !wxMBFILES
1319 const wxWX2WCbuf fn_str() const { return wc_str(); }
1320 #endif // wxMBFILES/!wxMBFILES
1321
1322 #else // ANSI
1323 const wxChar* mb_str() const { return wx_str(); }
1324
1325 // for compatibility with wxUSE_UNICODE version
1326 const wxChar* mb_str(const wxMBConv& WXUNUSED(conv)) const { return wx_str(); }
1327
1328 const wxWX2MBbuf mbc_str() const { return mb_str(); }
1329
1330 #if wxUSE_WCHAR_T
1331 const wxWCharBuffer wc_str(const wxMBConv& conv = wxConvLibc) const;
1332 #endif // wxUSE_WCHAR_T
1333 #ifdef __WXOSX__
1334 const wxCharBuffer fn_str() const { return wxConvFile.cWC2WX( wc_str( wxConvLocal ) ); }
1335 #else
1336 const wxChar* fn_str() const { return c_str(); }
1337 #endif
1338 #endif // Unicode/ANSI
1339
1340 // overloaded assignment
1341 // from another wxString
1342 wxString& operator=(const wxString& stringSrc)
1343 { m_impl = stringSrc.m_impl; return *this; }
1344 wxString& operator=(const wxCStrData& cstr)
1345 { return *this = cstr.AsString(); }
1346 // from a character
1347 wxString& operator=(wxUniChar ch)
1348 { m_impl = wxStringOperations::EncodeChar(ch); return *this; }
1349 wxString& operator=(wxUniCharRef ch)
1350 { return operator=((wxUniChar)ch); }
1351 wxString& operator=(char ch)
1352 { return operator=(wxUniChar(ch)); }
1353 wxString& operator=(unsigned char ch)
1354 { return operator=(wxUniChar(ch)); }
1355 wxString& operator=(wchar_t ch)
1356 { return operator=(wxUniChar(ch)); }
1357 // from a C string - STL probably will crash on NULL,
1358 // so we need to compensate in that case
1359 #if wxUSE_STL_BASED_WXSTRING
1360 wxString& operator=(const char *psz)
1361 { if (psz) m_impl = ImplStr(psz); else Clear(); return *this; }
1362 wxString& operator=(const wchar_t *pwz)
1363 { if (pwz) m_impl = ImplStr(pwz); else Clear(); return *this; }
1364 #else
1365 wxString& operator=(const char *psz)
1366 { m_impl = ImplStr(psz); return *this; }
1367 wxString& operator=(const wchar_t *pwz)
1368 { m_impl = ImplStr(pwz); return *this; }
1369 #endif
1370 wxString& operator=(const unsigned char *psz)
1371 { return operator=((const char*)psz); }
1372
1373 // from wxWCharBuffer
1374 wxString& operator=(const wxWCharBuffer& s)
1375 { return operator=(s.data()); } // FIXME-UTF8: fix for embedded NULs
1376 // from wxCharBuffer
1377 wxString& operator=(const wxCharBuffer& s)
1378 { return operator=(s.data()); } // FIXME-UTF8: fix for embedded NULs
1379
1380 // string concatenation
1381 // in place concatenation
1382 /*
1383 Concatenate and return the result. Note that the left to right
1384 associativity of << allows to write things like "str << str1 << str2
1385 << ..." (unlike with +=)
1386 */
1387 // string += string
1388 wxString& operator<<(const wxString& s)
1389 {
1390 #if WXWIN_COMPATIBILITY_2_8 && !wxUSE_STL_BASED_WXSTRING && !wxUSE_UNICODE_UTF8
1391 wxASSERT_MSG( s.IsValid(),
1392 _T("did you forget to call UngetWriteBuf()?") );
1393 #endif
1394
1395 append(s);
1396 return *this;
1397 }
1398 // string += C string
1399 wxString& operator<<(const char *psz)
1400 { append(psz); return *this; }
1401 wxString& operator<<(const wchar_t *pwz)
1402 { append(pwz); return *this; }
1403 wxString& operator<<(const wxCStrData& psz)
1404 { append(psz.AsString()); return *this; }
1405 // string += char
1406 wxString& operator<<(wxUniChar ch) { append(1, ch); return *this; }
1407 wxString& operator<<(wxUniCharRef ch) { append(1, ch); return *this; }
1408 wxString& operator<<(char ch) { append(1, ch); return *this; }
1409 wxString& operator<<(unsigned char ch) { append(1, ch); return *this; }
1410 wxString& operator<<(wchar_t ch) { append(1, ch); return *this; }
1411
1412 // string += buffer (i.e. from wxGetString)
1413 wxString& operator<<(const wxWCharBuffer& s)
1414 { return operator<<((const wchar_t *)s); }
1415 wxString& operator<<(const wxCharBuffer& s)
1416 { return operator<<((const char *)s); }
1417
1418 // string += C string
1419 wxString& Append(const wxString& s)
1420 {
1421 // test for empty() to share the string if possible
1422 if ( empty() )
1423 *this = s;
1424 else
1425 append(s);
1426 return *this;
1427 }
1428 wxString& Append(const char* psz)
1429 { append(psz); return *this; }
1430 wxString& Append(const wchar_t* pwz)
1431 { append(pwz); return *this; }
1432 wxString& Append(const wxCStrData& psz)
1433 { append(psz); return *this; }
1434 wxString& Append(const wxCharBuffer& psz)
1435 { append(psz); return *this; }
1436 wxString& Append(const wxWCharBuffer& psz)
1437 { append(psz); return *this; }
1438 // append count copies of given character
1439 wxString& Append(wxUniChar ch, size_t count = 1u)
1440 { append(count, ch); return *this; }
1441 wxString& Append(wxUniCharRef ch, size_t count = 1u)
1442 { append(count, ch); return *this; }
1443 wxString& Append(char ch, size_t count = 1u)
1444 { append(count, ch); return *this; }
1445 wxString& Append(unsigned char ch, size_t count = 1u)
1446 { append(count, ch); return *this; }
1447 wxString& Append(wchar_t ch, size_t count = 1u)
1448 { append(count, ch); return *this; }
1449 wxString& Append(const char* psz, size_t nLen)
1450 { append(psz, nLen); return *this; }
1451 wxString& Append(const wchar_t* pwz, size_t nLen)
1452 { append(pwz, nLen); return *this; }
1453
1454 // prepend a string, return the string itself
1455 wxString& Prepend(const wxString& str)
1456 { *this = str + *this; return *this; }
1457
1458 // non-destructive concatenation
1459 // two strings
1460 friend wxString WXDLLIMPEXP_BASE operator+(const wxString& string1,
1461 const wxString& string2);
1462 // string with a single char
1463 friend wxString WXDLLIMPEXP_BASE operator+(const wxString& string, wxUniChar ch);
1464 // char with a string
1465 friend wxString WXDLLIMPEXP_BASE operator+(wxUniChar ch, const wxString& string);
1466 // string with C string
1467 friend wxString WXDLLIMPEXP_BASE operator+(const wxString& string,
1468 const char *psz);
1469 friend wxString WXDLLIMPEXP_BASE operator+(const wxString& string,
1470 const wchar_t *pwz);
1471 // C string with string
1472 friend wxString WXDLLIMPEXP_BASE operator+(const char *psz,
1473 const wxString& string);
1474 friend wxString WXDLLIMPEXP_BASE operator+(const wchar_t *pwz,
1475 const wxString& string);
1476
1477 // stream-like functions
1478 // insert an int into string
1479 wxString& operator<<(int i)
1480 { return (*this) << Format(_T("%d"), i); }
1481 // insert an unsigned int into string
1482 wxString& operator<<(unsigned int ui)
1483 { return (*this) << Format(_T("%u"), ui); }
1484 // insert a long into string
1485 wxString& operator<<(long l)
1486 { return (*this) << Format(_T("%ld"), l); }
1487 // insert an unsigned long into string
1488 wxString& operator<<(unsigned long ul)
1489 { return (*this) << Format(_T("%lu"), ul); }
1490 #if defined wxLongLong_t && !defined wxLongLongIsLong
1491 // insert a long long if they exist and aren't longs
1492 wxString& operator<<(wxLongLong_t ll)
1493 {
1494 const wxChar *fmt = _T("%") wxLongLongFmtSpec _T("d");
1495 return (*this) << Format(fmt, ll);
1496 }
1497 // insert an unsigned long long
1498 wxString& operator<<(wxULongLong_t ull)
1499 {
1500 const wxChar *fmt = _T("%") wxLongLongFmtSpec _T("u");
1501 return (*this) << Format(fmt , ull);
1502 }
1503 #endif
1504 // insert a float into string
1505 wxString& operator<<(float f)
1506 { return (*this) << Format(_T("%f"), f); }
1507 // insert a double into string
1508 wxString& operator<<(double d)
1509 { return (*this) << Format(_T("%g"), d); }
1510
1511 // string comparison
1512 // case-sensitive comparison (returns a value < 0, = 0 or > 0)
1513 int Cmp(const char *psz) const
1514 { return compare(psz); }
1515 int Cmp(const wchar_t *pwz) const
1516 { return compare(pwz); }
1517 int Cmp(const wxString& s) const
1518 { return compare(s); }
1519 int Cmp(const wxCStrData& s) const
1520 { return compare(s); }
1521 int Cmp(const wxCharBuffer& s) const
1522 { return compare(s); }
1523 int Cmp(const wxWCharBuffer& s) const
1524 { return compare(s); }
1525 // same as Cmp() but not case-sensitive
1526 int CmpNoCase(const wxString& s) const;
1527 // test for the string equality, either considering case or not
1528 // (if compareWithCase then the case matters)
1529 bool IsSameAs(const wxString& str, bool compareWithCase = true) const
1530 { return (compareWithCase ? Cmp(str) : CmpNoCase(str)) == 0; }
1531 bool IsSameAs(const char *str, bool compareWithCase = true) const
1532 { return (compareWithCase ? Cmp(str) : CmpNoCase(str)) == 0; }
1533 bool IsSameAs(const wchar_t *str, bool compareWithCase = true) const
1534 { return (compareWithCase ? Cmp(str) : CmpNoCase(str)) == 0; }
1535 bool IsSameAs(const wxCStrData& str, bool compareWithCase = true) const
1536 { return IsSameAs(str.AsString(), compareWithCase); }
1537 bool IsSameAs(const wxCharBuffer& str, bool compareWithCase = true) const
1538 { return IsSameAs(str.data(), compareWithCase); }
1539 bool IsSameAs(const wxWCharBuffer& str, bool compareWithCase = true) const
1540 { return IsSameAs(str.data(), compareWithCase); }
1541 // comparison with a single character: returns true if equal
1542 bool IsSameAs(wxUniChar c, bool compareWithCase = true) const;
1543 // FIXME-UTF8: remove these overloads
1544 bool IsSameAs(wxUniCharRef c, bool compareWithCase = true) const
1545 { return IsSameAs(wxUniChar(c), compareWithCase); }
1546 bool IsSameAs(char c, bool compareWithCase = true) const
1547 { return IsSameAs(wxUniChar(c), compareWithCase); }
1548 bool IsSameAs(unsigned char c, bool compareWithCase = true) const
1549 { return IsSameAs(wxUniChar(c), compareWithCase); }
1550 bool IsSameAs(wchar_t c, bool compareWithCase = true) const
1551 { return IsSameAs(wxUniChar(c), compareWithCase); }
1552 bool IsSameAs(int c, bool compareWithCase = true) const
1553 { return IsSameAs(wxUniChar(c), compareWithCase); }
1554
1555 // simple sub-string extraction
1556 // return substring starting at nFirst of length nCount (or till the end
1557 // if nCount = default value)
1558 wxString Mid(size_t nFirst, size_t nCount = npos) const;
1559
1560 // operator version of Mid()
1561 wxString operator()(size_t start, size_t len) const
1562 { return Mid(start, len); }
1563
1564 // check if the string starts with the given prefix and return the rest
1565 // of the string in the provided pointer if it is not NULL; otherwise
1566 // return false
1567 bool StartsWith(const wxString& prefix, wxString *rest = NULL) const;
1568 // check if the string ends with the given suffix and return the
1569 // beginning of the string before the suffix in the provided pointer if
1570 // it is not NULL; otherwise return false
1571 bool EndsWith(const wxString& suffix, wxString *rest = NULL) const;
1572
1573 // get first nCount characters
1574 wxString Left(size_t nCount) const;
1575 // get last nCount characters
1576 wxString Right(size_t nCount) const;
1577 // get all characters before the first occurance of ch
1578 // (returns the whole string if ch not found)
1579 wxString BeforeFirst(wxUniChar ch) const;
1580 // get all characters before the last occurence of ch
1581 // (returns empty string if ch not found)
1582 wxString BeforeLast(wxUniChar ch) const;
1583 // get all characters after the first occurence of ch
1584 // (returns empty string if ch not found)
1585 wxString AfterFirst(wxUniChar ch) const;
1586 // get all characters after the last occurence of ch
1587 // (returns the whole string if ch not found)
1588 wxString AfterLast(wxUniChar ch) const;
1589
1590 // for compatibility only, use more explicitly named functions above
1591 wxString Before(wxUniChar ch) const { return BeforeLast(ch); }
1592 wxString After(wxUniChar ch) const { return AfterFirst(ch); }
1593
1594 // case conversion
1595 // convert to upper case in place, return the string itself
1596 wxString& MakeUpper();
1597 // convert to upper case, return the copy of the string
1598 // Here's something to remember: BC++ doesn't like returns in inlines.
1599 wxString Upper() const ;
1600 // convert to lower case in place, return the string itself
1601 wxString& MakeLower();
1602 // convert to lower case, return the copy of the string
1603 wxString Lower() const ;
1604
1605 // trimming/padding whitespace (either side) and truncating
1606 // remove spaces from left or from right (default) side
1607 wxString& Trim(bool bFromRight = true);
1608 // add nCount copies chPad in the beginning or at the end (default)
1609 wxString& Pad(size_t nCount, wxUniChar chPad = wxT(' '), bool bFromRight = true);
1610
1611 // searching and replacing
1612 // searching (return starting index, or -1 if not found)
1613 int Find(wxUniChar ch, bool bFromEnd = false) const; // like strchr/strrchr
1614 int Find(wxUniCharRef ch, bool bFromEnd = false) const
1615 { return Find(wxUniChar(ch), bFromEnd); }
1616 int Find(char ch, bool bFromEnd = false) const
1617 { return Find(wxUniChar(ch), bFromEnd); }
1618 int Find(unsigned char ch, bool bFromEnd = false) const
1619 { return Find(wxUniChar(ch), bFromEnd); }
1620 int Find(wchar_t ch, bool bFromEnd = false) const
1621 { return Find(wxUniChar(ch), bFromEnd); }
1622 // searching (return starting index, or -1 if not found)
1623 int Find(const wxString& sub) const // like strstr
1624 {
1625 size_type idx = find(sub);
1626 return (idx == npos) ? wxNOT_FOUND : (int)idx;
1627 }
1628 int Find(const char *sub) const // like strstr
1629 {
1630 size_type idx = find(sub);
1631 return (idx == npos) ? wxNOT_FOUND : (int)idx;
1632 }
1633 int Find(const wchar_t *sub) const // like strstr
1634 {
1635 size_type idx = find(sub);
1636 return (idx == npos) ? wxNOT_FOUND : (int)idx;
1637 }
1638
1639 int Find(const wxCStrData& sub) const
1640 { return Find(sub.AsString()); }
1641 int Find(const wxCharBuffer& sub) const
1642 { return Find(sub.data()); }
1643 int Find(const wxWCharBuffer& sub) const
1644 { return Find(sub.data()); }
1645
1646 // replace first (or all of bReplaceAll) occurences of substring with
1647 // another string, returns the number of replacements made
1648 size_t Replace(const wxString& strOld,
1649 const wxString& strNew,
1650 bool bReplaceAll = true);
1651
1652 // check if the string contents matches a mask containing '*' and '?'
1653 bool Matches(const wxString& mask) const;
1654
1655 // conversion to numbers: all functions return true only if the whole
1656 // string is a number and put the value of this number into the pointer
1657 // provided, the base is the numeric base in which the conversion should be
1658 // done and must be comprised between 2 and 36 or be 0 in which case the
1659 // standard C rules apply (leading '0' => octal, "0x" => hex)
1660 // convert to a signed integer
1661 bool ToLong(long *val, int base = 10) const;
1662 // convert to an unsigned integer
1663 bool ToULong(unsigned long *val, int base = 10) const;
1664 // convert to wxLongLong
1665 #if defined(wxLongLong_t)
1666 bool ToLongLong(wxLongLong_t *val, int base = 10) const;
1667 // convert to wxULongLong
1668 bool ToULongLong(wxULongLong_t *val, int base = 10) const;
1669 #endif // wxLongLong_t
1670 // convert to a double
1671 bool ToDouble(double *val) const;
1672
1673
1674 #ifndef wxNEEDS_WXSTRING_PRINTF_MIXIN
1675 // formatted input/output
1676 // as sprintf(), returns the number of characters written or < 0 on error
1677 // (take 'this' into account in attribute parameter count)
1678 // int Printf(const wxString& format, ...);
1679 WX_DEFINE_VARARG_FUNC(int, Printf, 1, (const wxFormatString&),
1680 DoPrintfWchar, DoPrintfUtf8)
1681 #ifdef __WATCOMC__
1682 // workaround for http://bugzilla.openwatcom.org/show_bug.cgi?id=351
1683 WX_VARARG_WATCOM_WORKAROUND(int, Printf, 1, (const wxString&),
1684 (wxFormatString(f1)));
1685 WX_VARARG_WATCOM_WORKAROUND(int, Printf, 1, (const wxCStrData&),
1686 (wxFormatString(f1)));
1687 WX_VARARG_WATCOM_WORKAROUND(int, Printf, 1, (const char*),
1688 (wxFormatString(f1)));
1689 WX_VARARG_WATCOM_WORKAROUND(int, Printf, 1, (const wchar_t*),
1690 (wxFormatString(f1)));
1691 #endif
1692 #endif // !wxNEEDS_WXSTRING_PRINTF_MIXIN
1693 // as vprintf(), returns the number of characters written or < 0 on error
1694 int PrintfV(const wxString& format, va_list argptr);
1695
1696 #ifndef wxNEEDS_WXSTRING_PRINTF_MIXIN
1697 // returns the string containing the result of Printf() to it
1698 // static wxString Format(const wxString& format, ...) ATTRIBUTE_PRINTF_1;
1699 WX_DEFINE_VARARG_FUNC(static wxString, Format, 1, (const wxFormatString&),
1700 DoFormatWchar, DoFormatUtf8)
1701 #ifdef __WATCOMC__
1702 // workaround for http://bugzilla.openwatcom.org/show_bug.cgi?id=351
1703 WX_VARARG_WATCOM_WORKAROUND(static wxString, Format, 1, (const wxString&),
1704 (wxFormatString(f1)));
1705 WX_VARARG_WATCOM_WORKAROUND(static wxString, Format, 1, (const wxCStrData&),
1706 (wxFormatString(f1)));
1707 WX_VARARG_WATCOM_WORKAROUND(static wxString, Format, 1, (const char*),
1708 (wxFormatString(f1)));
1709 WX_VARARG_WATCOM_WORKAROUND(static wxString, Format, 1, (const wchar_t*),
1710 (wxFormatString(f1)));
1711 #endif
1712 #endif
1713 // the same as above, but takes a va_list
1714 static wxString FormatV(const wxString& format, va_list argptr);
1715
1716 // raw access to string memory
1717 // ensure that string has space for at least nLen characters
1718 // only works if the data of this string is not shared
1719 bool Alloc(size_t nLen) { reserve(nLen); /*return capacity() >= nLen;*/ return true; }
1720 // minimize the string's memory
1721 // only works if the data of this string is not shared
1722 bool Shrink();
1723 #if WXWIN_COMPATIBILITY_2_8 && !wxUSE_STL_BASED_WXSTRING && !wxUSE_UNICODE_UTF8
1724 // These are deprecated, use wxStringBuffer or wxStringBufferLength instead
1725 //
1726 // get writable buffer of at least nLen bytes. Unget() *must* be called
1727 // a.s.a.p. to put string back in a reasonable state!
1728 wxDEPRECATED( wxStringCharType *GetWriteBuf(size_t nLen) );
1729 // call this immediately after GetWriteBuf() has been used
1730 wxDEPRECATED( void UngetWriteBuf() );
1731 wxDEPRECATED( void UngetWriteBuf(size_t nLen) );
1732 #endif // WXWIN_COMPATIBILITY_2_8 && !wxUSE_STL_BASED_WXSTRING && wxUSE_UNICODE_UTF8
1733
1734 // wxWidgets version 1 compatibility functions
1735
1736 // use Mid()
1737 wxString SubString(size_t from, size_t to) const
1738 { return Mid(from, (to - from + 1)); }
1739 // values for second parameter of CompareTo function
1740 enum caseCompare {exact, ignoreCase};
1741 // values for first parameter of Strip function
1742 enum stripType {leading = 0x1, trailing = 0x2, both = 0x3};
1743
1744 #ifndef wxNEEDS_WXSTRING_PRINTF_MIXIN
1745 // use Printf()
1746 // (take 'this' into account in attribute parameter count)
1747 // int sprintf(const wxString& format, ...) ATTRIBUTE_PRINTF_2;
1748 WX_DEFINE_VARARG_FUNC(int, sprintf, 1, (const wxFormatString&),
1749 DoPrintfWchar, DoPrintfUtf8)
1750 #ifdef __WATCOMC__
1751 // workaround for http://bugzilla.openwatcom.org/show_bug.cgi?id=351
1752 WX_VARARG_WATCOM_WORKAROUND(int, sprintf, 1, (const wxString&),
1753 (wxFormatString(f1)));
1754 WX_VARARG_WATCOM_WORKAROUND(int, sprintf, 1, (const wxCStrData&),
1755 (wxFormatString(f1)));
1756 WX_VARARG_WATCOM_WORKAROUND(int, sprintf, 1, (const char*),
1757 (wxFormatString(f1)));
1758 WX_VARARG_WATCOM_WORKAROUND(int, sprintf, 1, (const wchar_t*),
1759 (wxFormatString(f1)));
1760 #endif
1761 #endif // wxNEEDS_WXSTRING_PRINTF_MIXIN
1762
1763 // use Cmp()
1764 inline int CompareTo(const wxChar* psz, caseCompare cmp = exact) const
1765 { return cmp == exact ? Cmp(psz) : CmpNoCase(psz); }
1766
1767 // use length()
1768 size_t Length() const { return length(); }
1769 // Count the number of characters
1770 int Freq(wxUniChar ch) const;
1771 // use MakeLower
1772 void LowerCase() { MakeLower(); }
1773 // use MakeUpper
1774 void UpperCase() { MakeUpper(); }
1775 // use Trim except that it doesn't change this string
1776 wxString Strip(stripType w = trailing) const;
1777
1778 // use Find (more general variants not yet supported)
1779 size_t Index(const wxChar* psz) const { return Find(psz); }
1780 size_t Index(wxUniChar ch) const { return Find(ch); }
1781 // use Truncate
1782 wxString& Remove(size_t pos) { return Truncate(pos); }
1783 wxString& RemoveLast(size_t n = 1) { return Truncate(length() - n); }
1784
1785 wxString& Remove(size_t nStart, size_t nLen)
1786 { return (wxString&)erase( nStart, nLen ); }
1787
1788 // use Find()
1789 int First( wxUniChar ch ) const { return Find(ch); }
1790 int First( wxUniCharRef ch ) const { return Find(ch); }
1791 int First( char ch ) const { return Find(ch); }
1792 int First( unsigned char ch ) const { return Find(ch); }
1793 int First( wchar_t ch ) const { return Find(ch); }
1794 int First( const wxString& str ) const { return Find(str); }
1795 int Last( wxUniChar ch ) const { return Find(ch, true); }
1796 bool Contains(const wxString& str) const { return Find(str) != wxNOT_FOUND; }
1797
1798 // use empty()
1799 bool IsNull() const { return empty(); }
1800
1801 // std::string compatibility functions
1802
1803 // take nLen chars starting at nPos
1804 wxString(const wxString& str, size_t nPos, size_t nLen)
1805 { assign(str, nPos, nLen); }
1806 // take all characters from first to last
1807 wxString(const_iterator first, const_iterator last)
1808 : m_impl(first.impl(), last.impl()) { }
1809 #if WXWIN_COMPATIBILITY_STRING_PTR_AS_ITER
1810 // the 2 overloads below are for compatibility with the existing code using
1811 // pointers instead of iterators
1812 wxString(const char *first, const char *last)
1813 {
1814 SubstrBufFromMB str(ImplStr(first, last - first));
1815 m_impl.assign(str.data, str.len);
1816 }
1817 wxString(const wchar_t *first, const wchar_t *last)
1818 {
1819 SubstrBufFromWC str(ImplStr(first, last - first));
1820 m_impl.assign(str.data, str.len);
1821 }
1822 // and this one is needed to compile code adding offsets to c_str() result
1823 wxString(const wxCStrData& first, const wxCStrData& last)
1824 : m_impl(CreateConstIterator(first).impl(),
1825 CreateConstIterator(last).impl())
1826 {
1827 wxASSERT_MSG( first.m_str == last.m_str,
1828 _T("pointers must be into the same string") );
1829 }
1830 #endif // WXWIN_COMPATIBILITY_STRING_PTR_AS_ITER
1831
1832 // lib.string.modifiers
1833 // append elements str[pos], ..., str[pos+n]
1834 wxString& append(const wxString& str, size_t pos, size_t n)
1835 {
1836 size_t from, len;
1837 str.PosLenToImpl(pos, n, &from, &len);
1838 m_impl.append(str.m_impl, from, len);
1839 return *this;
1840 }
1841 // append a string
1842 wxString& append(const wxString& str)
1843 { m_impl.append(str.m_impl); return *this; }
1844 // append first n (or all if n == npos) characters of sz
1845 wxString& append(const char *sz)
1846 { m_impl.append(ImplStr(sz)); return *this; }
1847 wxString& append(const wchar_t *sz)
1848 { m_impl.append(ImplStr(sz)); return *this; }
1849 wxString& append(const char *sz, size_t n)
1850 {
1851 SubstrBufFromMB str(ImplStr(sz, n));
1852 m_impl.append(str.data, str.len);
1853 return *this;
1854 }
1855 wxString& append(const wchar_t *sz, size_t n)
1856 {
1857 SubstrBufFromWC str(ImplStr(sz, n));
1858 m_impl.append(str.data, str.len);
1859 return *this;
1860 }
1861
1862 wxString& append(const wxCStrData& str)
1863 { return append(str.AsString()); }
1864 wxString& append(const wxCharBuffer& str)
1865 { return append(str.data()); }
1866 wxString& append(const wxWCharBuffer& str)
1867 { return append(str.data()); }
1868
1869 // append n copies of ch
1870 wxString& append(size_t n, wxUniChar ch)
1871 {
1872 #if wxUSE_UNICODE_UTF8
1873 if ( !ch.IsAscii() )
1874 m_impl.append(wxStringOperations::EncodeNChars(n, ch));
1875 else
1876 #endif
1877 m_impl.append(n, (wxStringCharType)ch);
1878 return *this;
1879 }
1880 // append from first to last
1881 wxString& append(const_iterator first, const_iterator last)
1882 { m_impl.append(first.impl(), last.impl()); return *this; }
1883 #if WXWIN_COMPATIBILITY_STRING_PTR_AS_ITER
1884 wxString& append(const char *first, const char *last)
1885 { return append(first, last - first); }
1886 wxString& append(const wchar_t *first, const wchar_t *last)
1887 { return append(first, last - first); }
1888 wxString& append(const wxCStrData& first, const wxCStrData& last)
1889 { return append(CreateConstIterator(first), CreateConstIterator(last)); }
1890 #endif // WXWIN_COMPATIBILITY_STRING_PTR_AS_ITER
1891
1892 // same as `this_string = str'
1893 wxString& assign(const wxString& str)
1894 { m_impl = str.m_impl; return *this; }
1895 wxString& assign(const wxString& str, size_t len)
1896 {
1897 m_impl.assign(str.m_impl, 0, str.LenToImpl(len));
1898 return *this;
1899 }
1900 // same as ` = str[pos..pos + n]
1901 wxString& assign(const wxString& str, size_t pos, size_t n)
1902 {
1903 size_t from, len;
1904 str.PosLenToImpl(pos, n, &from, &len);
1905 m_impl.assign(str.m_impl, from, len);
1906 return *this;
1907 }
1908 // same as `= first n (or all if n == npos) characters of sz'
1909 wxString& assign(const char *sz)
1910 { m_impl.assign(ImplStr(sz)); return *this; }
1911 wxString& assign(const wchar_t *sz)
1912 { m_impl.assign(ImplStr(sz)); return *this; }
1913 wxString& assign(const char *sz, size_t n)
1914 {
1915 SubstrBufFromMB str(ImplStr(sz, n));
1916 m_impl.assign(str.data, str.len);
1917 return *this;
1918 }
1919 wxString& assign(const wchar_t *sz, size_t n)
1920 {
1921 SubstrBufFromWC str(ImplStr(sz, n));
1922 m_impl.assign(str.data, str.len);
1923 return *this;
1924 }
1925
1926 wxString& assign(const wxCStrData& str)
1927 { return assign(str.AsString()); }
1928 wxString& assign(const wxCharBuffer& str)
1929 { return assign(str.data()); }
1930 wxString& assign(const wxWCharBuffer& str)
1931 { return assign(str.data()); }
1932 wxString& assign(const wxCStrData& str, size_t len)
1933 { return assign(str.AsString(), len); }
1934 wxString& assign(const wxCharBuffer& str, size_t len)
1935 { return assign(str.data(), len); }
1936 wxString& assign(const wxWCharBuffer& str, size_t len)
1937 { return assign(str.data(), len); }
1938
1939 // same as `= n copies of ch'
1940 wxString& assign(size_t n, wxUniChar ch)
1941 {
1942 #if wxUSE_UNICODE_UTF8
1943 if ( !ch.IsAscii() )
1944 m_impl.assign(wxStringOperations::EncodeNChars(n, ch));
1945 else
1946 #endif
1947 m_impl.assign(n, (wxStringCharType)ch);
1948 return *this;
1949 }
1950
1951 wxString& assign(size_t n, wxUniCharRef ch)
1952 { return assign(n, wxUniChar(ch)); }
1953 wxString& assign(size_t n, char ch)
1954 { return assign(n, wxUniChar(ch)); }
1955 wxString& assign(size_t n, unsigned char ch)
1956 { return assign(n, wxUniChar(ch)); }
1957 wxString& assign(size_t n, wchar_t ch)
1958 { return assign(n, wxUniChar(ch)); }
1959
1960 // assign from first to last
1961 wxString& assign(const_iterator first, const_iterator last)
1962 { m_impl.assign(first.impl(), last.impl()); return *this; }
1963 #if WXWIN_COMPATIBILITY_STRING_PTR_AS_ITER
1964 wxString& assign(const char *first, const char *last)
1965 { return assign(first, last - first); }
1966 wxString& assign(const wchar_t *first, const wchar_t *last)
1967 { return assign(first, last - first); }
1968 wxString& assign(const wxCStrData& first, const wxCStrData& last)
1969 { return assign(CreateConstIterator(first), CreateConstIterator(last)); }
1970 #endif // WXWIN_COMPATIBILITY_STRING_PTR_AS_ITER
1971
1972 // string comparison
1973 int compare(const wxString& str) const;
1974 int compare(const char* sz) const;
1975 int compare(const wchar_t* sz) const;
1976 int compare(const wxCStrData& str) const
1977 { return compare(str.AsString()); }
1978 int compare(const wxCharBuffer& str) const
1979 { return compare(str.data()); }
1980 int compare(const wxWCharBuffer& str) const
1981 { return compare(str.data()); }
1982 // comparison with a substring
1983 int compare(size_t nStart, size_t nLen, const wxString& str) const;
1984 // comparison of 2 substrings
1985 int compare(size_t nStart, size_t nLen,
1986 const wxString& str, size_t nStart2, size_t nLen2) const;
1987 // substring comparison with first nCount characters of sz
1988 int compare(size_t nStart, size_t nLen,
1989 const char* sz, size_t nCount = npos) const;
1990 int compare(size_t nStart, size_t nLen,
1991 const wchar_t* sz, size_t nCount = npos) const;
1992
1993 // insert another string
1994 wxString& insert(size_t nPos, const wxString& str)
1995 { insert(begin() + nPos, str.begin(), str.end()); return *this; }
1996 // insert n chars of str starting at nStart (in str)
1997 wxString& insert(size_t nPos, const wxString& str, size_t nStart, size_t n)
1998 {
1999 size_t from, len;
2000 str.PosLenToImpl(nStart, n, &from, &len);
2001 m_impl.insert(PosToImpl(nPos), str.m_impl, from, len);
2002 return *this;
2003 }
2004 // insert first n (or all if n == npos) characters of sz
2005 wxString& insert(size_t nPos, const char *sz)
2006 { m_impl.insert(PosToImpl(nPos), ImplStr(sz)); return *this; }
2007 wxString& insert(size_t nPos, const wchar_t *sz)
2008 { m_impl.insert(PosToImpl(nPos), ImplStr(sz)); return *this; }
2009 wxString& insert(size_t nPos, const char *sz, size_t n)
2010 {
2011 SubstrBufFromMB str(ImplStr(sz, n));
2012 m_impl.insert(PosToImpl(nPos), str.data, str.len);
2013 return *this;
2014 }
2015 wxString& insert(size_t nPos, const wchar_t *sz, size_t n)
2016 {
2017 SubstrBufFromWC str(ImplStr(sz, n));
2018 m_impl.insert(PosToImpl(nPos), str.data, str.len);
2019 return *this;
2020 }
2021 // insert n copies of ch
2022 wxString& insert(size_t nPos, size_t n, wxUniChar ch)
2023 {
2024 #if wxUSE_UNICODE_UTF8
2025 if ( !ch.IsAscii() )
2026 m_impl.insert(PosToImpl(nPos), wxStringOperations::EncodeNChars(n, ch));
2027 else
2028 #endif
2029 m_impl.insert(PosToImpl(nPos), n, (wxStringCharType)ch);
2030 return *this;
2031 }
2032 iterator insert(iterator it, wxUniChar ch)
2033 {
2034 #if wxUSE_UNICODE_UTF8
2035 if ( !ch.IsAscii() )
2036 {
2037 size_t pos = IterToImplPos(it);
2038 m_impl.insert(pos, wxStringOperations::EncodeChar(ch));
2039 return iterator(this, m_impl.begin() + pos);
2040 }
2041 else
2042 #endif
2043 return iterator(this, m_impl.insert(it.impl(), (wxStringCharType)ch));
2044 }
2045 void insert(iterator it, const_iterator first, const_iterator last)
2046 { m_impl.insert(it.impl(), first.impl(), last.impl()); }
2047 #if WXWIN_COMPATIBILITY_STRING_PTR_AS_ITER
2048 void insert(iterator it, const char *first, const char *last)
2049 { insert(it - begin(), first, last - first); }
2050 void insert(iterator it, const wchar_t *first, const wchar_t *last)
2051 { insert(it - begin(), first, last - first); }
2052 void insert(iterator it, const wxCStrData& first, const wxCStrData& last)
2053 { insert(it, CreateConstIterator(first), CreateConstIterator(last)); }
2054 #endif // WXWIN_COMPATIBILITY_STRING_PTR_AS_ITER
2055
2056 void insert(iterator it, size_type n, wxUniChar ch)
2057 {
2058 #if wxUSE_UNICODE_UTF8
2059 if ( !ch.IsAscii() )
2060 m_impl.insert(IterToImplPos(it), wxStringOperations::EncodeNChars(n, ch));
2061 else
2062 #endif
2063 m_impl.insert(it.impl(), n, (wxStringCharType)ch);
2064 }
2065
2066 // delete characters from nStart to nStart + nLen
2067 wxString& erase(size_type pos = 0, size_type n = npos)
2068 {
2069 size_t from, len;
2070 PosLenToImpl(pos, n, &from, &len);
2071 m_impl.erase(from, len);
2072 return *this;
2073 }
2074 // delete characters from first up to last
2075 iterator erase(iterator first, iterator last)
2076 { return iterator(this, m_impl.erase(first.impl(), last.impl())); }
2077 iterator erase(iterator first)
2078 { return iterator(this, m_impl.erase(first.impl())); }
2079
2080 #ifdef wxSTRING_BASE_HASNT_CLEAR
2081 void clear() { erase(); }
2082 #else
2083 void clear() { m_impl.clear(); }
2084 #endif
2085
2086 // replaces the substring of length nLen starting at nStart
2087 wxString& replace(size_t nStart, size_t nLen, const char* sz)
2088 {
2089 size_t from, len;
2090 PosLenToImpl(nStart, nLen, &from, &len);
2091 m_impl.replace(from, len, ImplStr(sz));
2092 return *this;
2093 }
2094 wxString& replace(size_t nStart, size_t nLen, const wchar_t* sz)
2095 {
2096 size_t from, len;
2097 PosLenToImpl(nStart, nLen, &from, &len);
2098 m_impl.replace(from, len, ImplStr(sz));
2099 return *this;
2100 }
2101 // replaces the substring of length nLen starting at nStart
2102 wxString& replace(size_t nStart, size_t nLen, const wxString& str)
2103 {
2104 size_t from, len;
2105 PosLenToImpl(nStart, nLen, &from, &len);
2106 m_impl.replace(from, len, str.m_impl);
2107 return *this;
2108 }
2109 // replaces the substring with nCount copies of ch
2110 wxString& replace(size_t nStart, size_t nLen, size_t nCount, wxUniChar ch)
2111 {
2112 size_t from, len;
2113 PosLenToImpl(nStart, nLen, &from, &len);
2114 #if wxUSE_UNICODE_UTF8
2115 if ( !ch.IsAscii() )
2116 m_impl.replace(from, len, wxStringOperations::EncodeNChars(nCount, ch));
2117 else
2118 #endif
2119 m_impl.replace(from, len, nCount, (wxStringCharType)ch);
2120 return *this;
2121 }
2122 // replaces a substring with another substring
2123 wxString& replace(size_t nStart, size_t nLen,
2124 const wxString& str, size_t nStart2, size_t nLen2)
2125 {
2126 size_t from, len;
2127 PosLenToImpl(nStart, nLen, &from, &len);
2128
2129 size_t from2, len2;
2130 str.PosLenToImpl(nStart2, nLen2, &from2, &len2);
2131
2132 m_impl.replace(from, len, str.m_impl, from2, len2);
2133 return *this;
2134 }
2135 // replaces the substring with first nCount chars of sz
2136 wxString& replace(size_t nStart, size_t nLen,
2137 const char* sz, size_t nCount)
2138 {
2139 size_t from, len;
2140 PosLenToImpl(nStart, nLen, &from, &len);
2141
2142 SubstrBufFromMB str(ImplStr(sz, nCount));
2143
2144 m_impl.replace(from, len, str.data, str.len);
2145 return *this;
2146 }
2147 wxString& replace(size_t nStart, size_t nLen,
2148 const wchar_t* sz, size_t nCount)
2149 {
2150 size_t from, len;
2151 PosLenToImpl(nStart, nLen, &from, &len);
2152
2153 SubstrBufFromWC str(ImplStr(sz, nCount));
2154
2155 m_impl.replace(from, len, str.data, str.len);
2156 return *this;
2157 }
2158 wxString& replace(size_t nStart, size_t nLen,
2159 const wxString& s, size_t nCount)
2160 {
2161 size_t from, len;
2162 PosLenToImpl(nStart, nLen, &from, &len);
2163 m_impl.replace(from, len, s.m_impl.c_str(), s.LenToImpl(nCount));
2164 return *this;
2165 }
2166
2167 wxString& replace(iterator first, iterator last, const char* s)
2168 { m_impl.replace(first.impl(), last.impl(), ImplStr(s)); return *this; }
2169 wxString& replace(iterator first, iterator last, const wchar_t* s)
2170 { m_impl.replace(first.impl(), last.impl(), ImplStr(s)); return *this; }
2171 wxString& replace(iterator first, iterator last, const char* s, size_type n)
2172 {
2173 SubstrBufFromMB str(ImplStr(s, n));
2174 m_impl.replace(first.impl(), last.impl(), str.data, str.len);
2175 return *this;
2176 }
2177 wxString& replace(iterator first, iterator last, const wchar_t* s, size_type n)
2178 {
2179 SubstrBufFromWC str(ImplStr(s, n));
2180 m_impl.replace(first.impl(), last.impl(), str.data, str.len);
2181 return *this;
2182 }
2183 wxString& replace(iterator first, iterator last, const wxString& s)
2184 { m_impl.replace(first.impl(), last.impl(), s.m_impl); return *this; }
2185 wxString& replace(iterator first, iterator last, size_type n, wxUniChar ch)
2186 {
2187 #if wxUSE_UNICODE_UTF8
2188 if ( !ch.IsAscii() )
2189 m_impl.replace(first.impl(), last.impl(),
2190 wxStringOperations::EncodeNChars(n, ch));
2191 else
2192 #endif
2193 m_impl.replace(first.impl(), last.impl(), n, (wxStringCharType)ch);
2194 return *this;
2195 }
2196 wxString& replace(iterator first, iterator last,
2197 const_iterator first1, const_iterator last1)
2198 {
2199 m_impl.replace(first.impl(), last.impl(), first1.impl(), last1.impl());
2200 return *this;
2201 }
2202 wxString& replace(iterator first, iterator last,
2203 const char *first1, const char *last1)
2204 { replace(first, last, first1, last1 - first1); return *this; }
2205 wxString& replace(iterator first, iterator last,
2206 const wchar_t *first1, const wchar_t *last1)
2207 { replace(first, last, first1, last1 - first1); return *this; }
2208
2209 // swap two strings
2210 void swap(wxString& str)
2211 { m_impl.swap(str.m_impl); }
2212
2213 // find a substring
2214 size_t find(const wxString& str, size_t nStart = 0) const
2215 { return PosFromImpl(m_impl.find(str.m_impl, PosToImpl(nStart))); }
2216
2217 // find first n characters of sz
2218 size_t find(const char* sz, size_t nStart = 0, size_t n = npos) const
2219 {
2220 SubstrBufFromMB str(ImplStr(sz, n));
2221 return PosFromImpl(m_impl.find(str.data, PosToImpl(nStart), str.len));
2222 }
2223 size_t find(const wchar_t* sz, size_t nStart = 0, size_t n = npos) const
2224 {
2225 SubstrBufFromWC str(ImplStr(sz, n));
2226 return PosFromImpl(m_impl.find(str.data, PosToImpl(nStart), str.len));
2227 }
2228 size_t find(const wxCharBuffer& s, size_t nStart = 0, size_t n = npos) const
2229 { return find(s.data(), nStart, n); }
2230 size_t find(const wxWCharBuffer& s, size_t nStart = 0, size_t n = npos) const
2231 { return find(s.data(), nStart, n); }
2232 size_t find(const wxCStrData& s, size_t nStart = 0, size_t n = npos) const
2233 { return find(s.AsWChar(), nStart, n); }
2234
2235 // find the first occurence of character ch after nStart
2236 size_t find(wxUniChar ch, size_t nStart = 0) const
2237 {
2238 return PosFromImpl(m_impl.find(wxStringOperations::EncodeChar(ch),
2239 PosToImpl(nStart)));
2240 }
2241 size_t find(wxUniCharRef ch, size_t nStart = 0) const
2242 { return find(wxUniChar(ch), nStart); }
2243 size_t find(char ch, size_t nStart = 0) const
2244 { return find(wxUniChar(ch), nStart); }
2245 size_t find(unsigned char ch, size_t nStart = 0) const
2246 { return find(wxUniChar(ch), nStart); }
2247 size_t find(wchar_t ch, size_t nStart = 0) const
2248 { return find(wxUniChar(ch), nStart); }
2249
2250 // rfind() family is exactly like find() but works right to left
2251
2252 // as find, but from the end
2253 size_t rfind(const wxString& str, size_t nStart = npos) const
2254 { return PosFromImpl(m_impl.rfind(str.m_impl, PosToImpl(nStart))); }
2255
2256 // as find, but from the end
2257 size_t rfind(const char* sz, size_t nStart = npos, size_t n = npos) const
2258 {
2259 SubstrBufFromMB str(ImplStr(sz, n));
2260 return PosFromImpl(m_impl.rfind(str.data, PosToImpl(nStart), str.len));
2261 }
2262 size_t rfind(const wchar_t* sz, size_t nStart = npos, size_t n = npos) const
2263 {
2264 SubstrBufFromWC str(ImplStr(sz, n));
2265 return PosFromImpl(m_impl.rfind(str.data, PosToImpl(nStart), str.len));
2266 }
2267 size_t rfind(const wxCharBuffer& s, size_t nStart = npos, size_t n = npos) const
2268 { return rfind(s.data(), nStart, n); }
2269 size_t rfind(const wxWCharBuffer& s, size_t nStart = npos, size_t n = npos) const
2270 { return rfind(s.data(), nStart, n); }
2271 size_t rfind(const wxCStrData& s, size_t nStart = npos, size_t n = npos) const
2272 { return rfind(s.AsWChar(), nStart, n); }
2273 // as find, but from the end
2274 size_t rfind(wxUniChar ch, size_t nStart = npos) const
2275 {
2276 return PosFromImpl(m_impl.rfind(wxStringOperations::EncodeChar(ch),
2277 PosToImpl(nStart)));
2278 }
2279 size_t rfind(wxUniCharRef ch, size_t nStart = npos) const
2280 { return rfind(wxUniChar(ch), nStart); }
2281 size_t rfind(char ch, size_t nStart = npos) const
2282 { return rfind(wxUniChar(ch), nStart); }
2283 size_t rfind(unsigned char ch, size_t nStart = npos) const
2284 { return rfind(wxUniChar(ch), nStart); }
2285 size_t rfind(wchar_t ch, size_t nStart = npos) const
2286 { return rfind(wxUniChar(ch), nStart); }
2287
2288 // find first/last occurence of any character (not) in the set:
2289 #if wxUSE_STL_BASED_WXSTRING && !wxUSE_UNICODE_UTF8
2290 // FIXME-UTF8: this is not entirely correct, because it doesn't work if
2291 // sizeof(wchar_t)==2 and surrogates are present in the string;
2292 // should we care? Probably not.
2293 size_t find_first_of(const wxString& str, size_t nStart = 0) const
2294 { return m_impl.find_first_of(str.m_impl, nStart); }
2295 size_t find_first_of(const char* sz, size_t nStart = 0) const
2296 { return m_impl.find_first_of(ImplStr(sz), nStart); }
2297 size_t find_first_of(const wchar_t* sz, size_t nStart = 0) const
2298 { return m_impl.find_first_of(ImplStr(sz), nStart); }
2299 size_t find_first_of(const char* sz, size_t nStart, size_t n) const
2300 { return m_impl.find_first_of(ImplStr(sz), nStart, n); }
2301 size_t find_first_of(const wchar_t* sz, size_t nStart, size_t n) const
2302 { return m_impl.find_first_of(ImplStr(sz), nStart, n); }
2303 size_t find_first_of(wxUniChar c, size_t nStart = 0) const
2304 { return m_impl.find_first_of((wxChar)c, nStart); }
2305
2306 size_t find_last_of(const wxString& str, size_t nStart = npos) const
2307 { return m_impl.find_last_of(str.m_impl, nStart); }
2308 size_t find_last_of(const char* sz, size_t nStart = npos) const
2309 { return m_impl.find_last_of(ImplStr(sz), nStart); }
2310 size_t find_last_of(const wchar_t* sz, size_t nStart = npos) const
2311 { return m_impl.find_last_of(ImplStr(sz), nStart); }
2312 size_t find_last_of(const char* sz, size_t nStart, size_t n) const
2313 { return m_impl.find_last_of(ImplStr(sz), nStart, n); }
2314 size_t find_last_of(const wchar_t* sz, size_t nStart, size_t n) const
2315 { return m_impl.find_last_of(ImplStr(sz), nStart, n); }
2316 size_t find_last_of(wxUniChar c, size_t nStart = npos) const
2317 { return m_impl.find_last_of((wxChar)c, nStart); }
2318
2319 size_t find_first_not_of(const wxString& str, size_t nStart = 0) const
2320 { return m_impl.find_first_not_of(str.m_impl, nStart); }
2321 size_t find_first_not_of(const char* sz, size_t nStart = 0) const
2322 { return m_impl.find_first_not_of(ImplStr(sz), nStart); }
2323 size_t find_first_not_of(const wchar_t* sz, size_t nStart = 0) const
2324 { return m_impl.find_first_not_of(ImplStr(sz), nStart); }
2325 size_t find_first_not_of(const char* sz, size_t nStart, size_t n) const
2326 { return m_impl.find_first_not_of(ImplStr(sz), nStart, n); }
2327 size_t find_first_not_of(const wchar_t* sz, size_t nStart, size_t n) const
2328 { return m_impl.find_first_not_of(ImplStr(sz), nStart, n); }
2329 size_t find_first_not_of(wxUniChar c, size_t nStart = 0) const
2330 { return m_impl.find_first_not_of((wxChar)c, nStart); }
2331
2332 size_t find_last_not_of(const wxString& str, size_t nStart = npos) const
2333 { return m_impl.find_last_not_of(str.m_impl, nStart); }
2334 size_t find_last_not_of(const char* sz, size_t nStart = npos) const
2335 { return m_impl.find_last_not_of(ImplStr(sz), nStart); }
2336 size_t find_last_not_of(const wchar_t* sz, size_t nStart = npos) const
2337 { return m_impl.find_last_not_of(ImplStr(sz), nStart); }
2338 size_t find_last_not_of(const char* sz, size_t nStart, size_t n) const
2339 { return m_impl.find_last_not_of(ImplStr(sz), nStart, n); }
2340 size_t find_last_not_of(const wchar_t* sz, size_t nStart, size_t n) const
2341 { return m_impl.find_last_not_of(ImplStr(sz), nStart, n); }
2342 size_t find_last_not_of(wxUniChar c, size_t nStart = npos) const
2343 { return m_impl.find_last_not_of((wxChar)c, nStart); }
2344 #else
2345 // we can't use std::string implementation in UTF-8 build, because the
2346 // character sets would be interpreted wrongly:
2347
2348 // as strpbrk() but starts at nStart, returns npos if not found
2349 size_t find_first_of(const wxString& str, size_t nStart = 0) const
2350 #if wxUSE_UNICODE // FIXME-UTF8: temporary
2351 { return find_first_of(str.wc_str(), nStart); }
2352 #else
2353 { return find_first_of(str.mb_str(), nStart); }
2354 #endif
2355 // same as above
2356 size_t find_first_of(const char* sz, size_t nStart = 0) const;
2357 size_t find_first_of(const wchar_t* sz, size_t nStart = 0) const;
2358 size_t find_first_of(const char* sz, size_t nStart, size_t n) const;
2359 size_t find_first_of(const wchar_t* sz, size_t nStart, size_t n) const;
2360 // same as find(char, size_t)
2361 size_t find_first_of(wxUniChar c, size_t nStart = 0) const
2362 { return find(c, nStart); }
2363 // find the last (starting from nStart) char from str in this string
2364 size_t find_last_of (const wxString& str, size_t nStart = npos) const
2365 #if wxUSE_UNICODE // FIXME-UTF8: temporary
2366 { return find_last_of(str.wc_str(), nStart); }
2367 #else
2368 { return find_last_of(str.mb_str(), nStart); }
2369 #endif
2370 // same as above
2371 size_t find_last_of (const char* sz, size_t nStart = npos) const;
2372 size_t find_last_of (const wchar_t* sz, size_t nStart = npos) const;
2373 size_t find_last_of(const char* sz, size_t nStart, size_t n) const;
2374 size_t find_last_of(const wchar_t* sz, size_t nStart, size_t n) const;
2375 // same as above
2376 size_t find_last_of(wxUniChar c, size_t nStart = npos) const
2377 { return rfind(c, nStart); }
2378
2379 // find first/last occurence of any character not in the set
2380
2381 // as strspn() (starting from nStart), returns npos on failure
2382 size_t find_first_not_of(const wxString& str, size_t nStart = 0) const
2383 #if wxUSE_UNICODE // FIXME-UTF8: temporary
2384 { return find_first_not_of(str.wc_str(), nStart); }
2385 #else
2386 { return find_first_not_of(str.mb_str(), nStart); }
2387 #endif
2388 // same as above
2389 size_t find_first_not_of(const char* sz, size_t nStart = 0) const;
2390 size_t find_first_not_of(const wchar_t* sz, size_t nStart = 0) const;
2391 size_t find_first_not_of(const char* sz, size_t nStart, size_t n) const;
2392 size_t find_first_not_of(const wchar_t* sz, size_t nStart, size_t n) const;
2393 // same as above
2394 size_t find_first_not_of(wxUniChar ch, size_t nStart = 0) const;
2395 // as strcspn()
2396 size_t find_last_not_of(const wxString& str, size_t nStart = npos) const
2397 #if wxUSE_UNICODE // FIXME-UTF8: temporary
2398 { return find_last_not_of(str.wc_str(), nStart); }
2399 #else
2400 { return find_last_not_of(str.mb_str(), nStart); }
2401 #endif
2402 // same as above
2403 size_t find_last_not_of(const char* sz, size_t nStart = npos) const;
2404 size_t find_last_not_of(const wchar_t* sz, size_t nStart = npos) const;
2405 size_t find_last_not_of(const char* sz, size_t nStart, size_t n) const;
2406 size_t find_last_not_of(const wchar_t* sz, size_t nStart, size_t n) const;
2407 // same as above
2408 size_t find_last_not_of(wxUniChar ch, size_t nStart = npos) const;
2409 #endif // wxUSE_STL_BASED_WXSTRING && !wxUSE_UNICODE_UTF8 or not
2410
2411 // provide char/wchar_t/wxUniCharRef overloads for char-finding functions
2412 // above to resolve ambiguities:
2413 size_t find_first_of(wxUniCharRef ch, size_t nStart = 0) const
2414 { return find_first_of(wxUniChar(ch), nStart); }
2415 size_t find_first_of(char ch, size_t nStart = 0) const
2416 { return find_first_of(wxUniChar(ch), nStart); }
2417 size_t find_first_of(unsigned char ch, size_t nStart = 0) const
2418 { return find_first_of(wxUniChar(ch), nStart); }
2419 size_t find_first_of(wchar_t ch, size_t nStart = 0) const
2420 { return find_first_of(wxUniChar(ch), nStart); }
2421 size_t find_last_of(wxUniCharRef ch, size_t nStart = npos) const
2422 { return find_last_of(wxUniChar(ch), nStart); }
2423 size_t find_last_of(char ch, size_t nStart = npos) const
2424 { return find_last_of(wxUniChar(ch), nStart); }
2425 size_t find_last_of(unsigned char ch, size_t nStart = npos) const
2426 { return find_last_of(wxUniChar(ch), nStart); }
2427 size_t find_last_of(wchar_t ch, size_t nStart = npos) const
2428 { return find_last_of(wxUniChar(ch), nStart); }
2429 size_t find_first_not_of(wxUniCharRef ch, size_t nStart = 0) const
2430 { return find_first_not_of(wxUniChar(ch), nStart); }
2431 size_t find_first_not_of(char ch, size_t nStart = 0) const
2432 { return find_first_not_of(wxUniChar(ch), nStart); }
2433 size_t find_first_not_of(unsigned char ch, size_t nStart = 0) const
2434 { return find_first_not_of(wxUniChar(ch), nStart); }
2435 size_t find_first_not_of(wchar_t ch, size_t nStart = 0) const
2436 { return find_first_not_of(wxUniChar(ch), nStart); }
2437 size_t find_last_not_of(wxUniCharRef ch, size_t nStart = npos) const
2438 { return find_last_not_of(wxUniChar(ch), nStart); }
2439 size_t find_last_not_of(char ch, size_t nStart = npos) const
2440 { return find_last_not_of(wxUniChar(ch), nStart); }
2441 size_t find_last_not_of(unsigned char ch, size_t nStart = npos) const
2442 { return find_last_not_of(wxUniChar(ch), nStart); }
2443 size_t find_last_not_of(wchar_t ch, size_t nStart = npos) const
2444 { return find_last_not_of(wxUniChar(ch), nStart); }
2445
2446 // and additional overloads for the versions taking strings:
2447 size_t find_first_of(const wxCStrData& sz, size_t nStart = 0) const
2448 { return find_first_of(sz.AsString(), nStart); }
2449 size_t find_first_of(const wxCharBuffer& sz, size_t nStart = 0) const
2450 { return find_first_of(sz.data(), nStart); }
2451 size_t find_first_of(const wxWCharBuffer& sz, size_t nStart = 0) const
2452 { return find_first_of(sz.data(), nStart); }
2453 size_t find_first_of(const wxCStrData& sz, size_t nStart, size_t n) const
2454 { return find_first_of(sz.AsWChar(), nStart, n); }
2455 size_t find_first_of(const wxCharBuffer& sz, size_t nStart, size_t n) const
2456 { return find_first_of(sz.data(), nStart, n); }
2457 size_t find_first_of(const wxWCharBuffer& sz, size_t nStart, size_t n) const
2458 { return find_first_of(sz.data(), nStart, n); }
2459
2460 size_t find_last_of(const wxCStrData& sz, size_t nStart = 0) const
2461 { return find_last_of(sz.AsString(), nStart); }
2462 size_t find_last_of(const wxCharBuffer& sz, size_t nStart = 0) const
2463 { return find_last_of(sz.data(), nStart); }
2464 size_t find_last_of(const wxWCharBuffer& sz, size_t nStart = 0) const
2465 { return find_last_of(sz.data(), nStart); }
2466 size_t find_last_of(const wxCStrData& sz, size_t nStart, size_t n) const
2467 { return find_last_of(sz.AsWChar(), nStart, n); }
2468 size_t find_last_of(const wxCharBuffer& sz, size_t nStart, size_t n) const
2469 { return find_last_of(sz.data(), nStart, n); }
2470 size_t find_last_of(const wxWCharBuffer& sz, size_t nStart, size_t n) const
2471 { return find_last_of(sz.data(), nStart, n); }
2472
2473 size_t find_first_not_of(const wxCStrData& sz, size_t nStart = 0) const
2474 { return find_first_not_of(sz.AsString(), nStart); }
2475 size_t find_first_not_of(const wxCharBuffer& sz, size_t nStart = 0) const
2476 { return find_first_not_of(sz.data(), nStart); }
2477 size_t find_first_not_of(const wxWCharBuffer& sz, size_t nStart = 0) const
2478 { return find_first_not_of(sz.data(), nStart); }
2479 size_t find_first_not_of(const wxCStrData& sz, size_t nStart, size_t n) const
2480 { return find_first_not_of(sz.AsWChar(), nStart, n); }
2481 size_t find_first_not_of(const wxCharBuffer& sz, size_t nStart, size_t n) const
2482 { return find_first_not_of(sz.data(), nStart, n); }
2483 size_t find_first_not_of(const wxWCharBuffer& sz, size_t nStart, size_t n) const
2484 { return find_first_not_of(sz.data(), nStart, n); }
2485
2486 size_t find_last_not_of(const wxCStrData& sz, size_t nStart = 0) const
2487 { return find_last_not_of(sz.AsString(), nStart); }
2488 size_t find_last_not_of(const wxCharBuffer& sz, size_t nStart = 0) const
2489 { return find_last_not_of(sz.data(), nStart); }
2490 size_t find_last_not_of(const wxWCharBuffer& sz, size_t nStart = 0) const
2491 { return find_last_not_of(sz.data(), nStart); }
2492 size_t find_last_not_of(const wxCStrData& sz, size_t nStart, size_t n) const
2493 { return find_last_not_of(sz.AsWChar(), nStart, n); }
2494 size_t find_last_not_of(const wxCharBuffer& sz, size_t nStart, size_t n) const
2495 { return find_last_not_of(sz.data(), nStart, n); }
2496 size_t find_last_not_of(const wxWCharBuffer& sz, size_t nStart, size_t n) const
2497 { return find_last_not_of(sz.data(), nStart, n); }
2498
2499 // string += string
2500 wxString& operator+=(const wxString& s)
2501 { m_impl += s.m_impl; return *this; }
2502 // string += C string
2503 wxString& operator+=(const char *psz)
2504 { m_impl += ImplStr(psz); return *this; }
2505 wxString& operator+=(const wchar_t *pwz)
2506 { m_impl += ImplStr(pwz); return *this; }
2507 wxString& operator+=(const wxCStrData& s)
2508 { m_impl += s.AsString().m_impl; return *this; }
2509 wxString& operator+=(const wxCharBuffer& s)
2510 { return operator+=(s.data()); }
2511 wxString& operator+=(const wxWCharBuffer& s)
2512 { return operator+=(s.data()); }
2513 // string += char
2514 wxString& operator+=(wxUniChar ch)
2515 { m_impl += wxStringOperations::EncodeChar(ch); return *this; }
2516 wxString& operator+=(wxUniCharRef ch) { return *this += wxUniChar(ch); }
2517 wxString& operator+=(int ch) { return *this += wxUniChar(ch); }
2518 wxString& operator+=(char ch) { return *this += wxUniChar(ch); }
2519 wxString& operator+=(unsigned char ch) { return *this += wxUniChar(ch); }
2520 wxString& operator+=(wchar_t ch) { return *this += wxUniChar(ch); }
2521
2522 private:
2523 #if !wxUSE_STL_BASED_WXSTRING
2524 // helpers for wxStringBuffer and wxStringBufferLength
2525 wxStringCharType *DoGetWriteBuf(size_t nLen)
2526 { return m_impl.DoGetWriteBuf(nLen); }
2527 void DoUngetWriteBuf()
2528 { m_impl.DoUngetWriteBuf(); }
2529 void DoUngetWriteBuf(size_t nLen)
2530 { m_impl.DoUngetWriteBuf(nLen); }
2531 #endif // !wxUSE_STL_BASED_WXSTRING
2532
2533 #ifndef wxNEEDS_WXSTRING_PRINTF_MIXIN
2534 #if !wxUSE_UTF8_LOCALE_ONLY
2535 int DoPrintfWchar(const wxChar *format, ...);
2536 static wxString DoFormatWchar(const wxChar *format, ...);
2537 #endif
2538 #if wxUSE_UNICODE_UTF8
2539 int DoPrintfUtf8(const char *format, ...);
2540 static wxString DoFormatUtf8(const char *format, ...);
2541 #endif
2542 #endif
2543
2544 #if !wxUSE_STL_BASED_WXSTRING
2545 // check string's data validity
2546 bool IsValid() const { return m_impl.GetStringData()->IsValid(); }
2547 #endif
2548
2549 private:
2550 wxStringImpl m_impl;
2551
2552 #ifdef __VISUALC__
2553 // "struct 'ConvertedBuffer<T>' needs to have dll-interface to be used by
2554 // clients of class 'wxString'" - this is private, we don't care
2555 #pragma warning (disable:4251)
2556 #endif
2557
2558 // buffers for compatibility conversion from (char*)c_str() and
2559 // (wchar_t*)c_str():
2560 // FIXME-UTF8: bechmark various approaches to keeping compatibility buffers
2561 template<typename T>
2562 struct ConvertedBuffer
2563 {
2564 ConvertedBuffer() : m_buf(NULL) {}
2565 ~ConvertedBuffer()
2566 { free(m_buf); }
2567
2568 operator T*() const { return m_buf; }
2569
2570 ConvertedBuffer& operator=(T *str)
2571 {
2572 free(m_buf);
2573 m_buf = str;
2574 return *this;
2575 }
2576
2577 T *m_buf;
2578 };
2579 #if wxUSE_UNICODE && !wxUSE_UTF8_LOCALE_ONLY
2580 ConvertedBuffer<char> m_convertedToChar;
2581 #endif
2582 #if !wxUSE_UNICODE_WCHAR
2583 ConvertedBuffer<wchar_t> m_convertedToWChar;
2584 #endif
2585
2586 #ifdef __VISUALC__
2587 #pragma warning (default:4251)
2588 #endif
2589
2590 #if wxUSE_UNICODE_UTF8
2591 // FIXME-UTF8: (try to) move this elsewhere (TLS) or solve differently
2592 // assigning to character pointer to by wxString::interator may
2593 // change the underlying wxStringImpl iterator, so we have to
2594 // keep track of all iterators and update them as necessary:
2595 struct wxStringIteratorNodeHead
2596 {
2597 wxStringIteratorNodeHead() : ptr(NULL) {}
2598 wxStringIteratorNode *ptr;
2599
2600 // copying is disallowed as it would result in more than one pointer into
2601 // the same linked list
2602 DECLARE_NO_COPY_CLASS(wxStringIteratorNodeHead)
2603 };
2604
2605 wxStringIteratorNodeHead m_iterators;
2606
2607 friend class WXDLLIMPEXP_BASE wxStringIteratorNode;
2608 friend class WXDLLIMPEXP_BASE wxUniCharRef;
2609 #endif // wxUSE_UNICODE_UTF8
2610
2611 friend class WXDLLIMPEXP_BASE wxCStrData;
2612 friend class wxImplStringBuffer;
2613 friend class wxImplStringBufferLength;
2614 };
2615
2616 #ifdef wxNEEDS_WXSTRING_PRINTF_MIXIN
2617 #pragma warning (default:4275)
2618 #endif
2619
2620 // string iterator operators that satisfy STL Random Access Iterator
2621 // requirements:
2622 inline wxString::iterator operator+(int n, wxString::iterator i)
2623 { return i + n; }
2624 inline wxString::iterator operator+(size_t n, wxString::iterator i)
2625 { return i + n; }
2626 inline wxString::const_iterator operator+(int n, wxString::const_iterator i)
2627 { return i + n; }
2628 inline wxString::const_iterator operator+(size_t n, wxString::const_iterator i)
2629 { return i + n; }
2630 inline wxString::reverse_iterator operator+(int n, wxString::reverse_iterator i)
2631 { return i + n; }
2632 inline wxString::reverse_iterator operator+(size_t n, wxString::reverse_iterator i)
2633 { return i + n; }
2634 inline wxString::const_reverse_iterator operator+(int n, wxString::const_reverse_iterator i)
2635 { return i + n; }
2636 inline wxString::const_reverse_iterator operator+(size_t n, wxString::const_reverse_iterator i)
2637 { return i + n; }
2638
2639 // notice that even though for many compilers the friend declarations above are
2640 // enough, from the point of view of C++ standard we must have the declarations
2641 // here as friend ones are not injected in the enclosing namespace and without
2642 // them the code fails to compile with conforming compilers such as xlC or g++4
2643 wxString WXDLLIMPEXP_BASE operator+(const wxString& string1, const wxString& string2);
2644 wxString WXDLLIMPEXP_BASE operator+(const wxString& string, const char *psz);
2645 wxString WXDLLIMPEXP_BASE operator+(const wxString& string, const wchar_t *pwz);
2646 wxString WXDLLIMPEXP_BASE operator+(const char *psz, const wxString& string);
2647 wxString WXDLLIMPEXP_BASE operator+(const wchar_t *pwz, const wxString& string);
2648
2649 wxString WXDLLIMPEXP_BASE operator+(const wxString& string, wxUniChar ch);
2650 wxString WXDLLIMPEXP_BASE operator+(wxUniChar ch, const wxString& string);
2651
2652 inline wxString operator+(const wxString& string, wxUniCharRef ch)
2653 { return string + (wxUniChar)ch; }
2654 inline wxString operator+(const wxString& string, char ch)
2655 { return string + wxUniChar(ch); }
2656 inline wxString operator+(const wxString& string, wchar_t ch)
2657 { return string + wxUniChar(ch); }
2658 inline wxString operator+(wxUniCharRef ch, const wxString& string)
2659 { return (wxUniChar)ch + string; }
2660 inline wxString operator+(char ch, const wxString& string)
2661 { return wxUniChar(ch) + string; }
2662 inline wxString operator+(wchar_t ch, const wxString& string)
2663 { return wxUniChar(ch) + string; }
2664
2665
2666 #if wxUSE_STL_BASED_WXSTRING
2667 // return an empty wxString (not very useful with wxUSE_STL == 1)
2668 inline const wxString wxGetEmptyString() { return wxString(); }
2669 #else // !wxUSE_STL_BASED_WXSTRING
2670 // return an empty wxString (more efficient than wxString() here)
2671 inline const wxString& wxGetEmptyString()
2672 {
2673 return *(wxString *)&wxEmptyString;
2674 }
2675 #endif // wxUSE_STL_BASED_WXSTRING/!wxUSE_STL_BASED_WXSTRING
2676
2677 // ----------------------------------------------------------------------------
2678 // wxStringBuffer: a tiny class allowing to get a writable pointer into string
2679 // ----------------------------------------------------------------------------
2680
2681 #if !wxUSE_STL_BASED_WXSTRING
2682 // string buffer for direct access to string data in their native
2683 // representation:
2684 class wxImplStringBuffer
2685 {
2686 public:
2687 typedef wxStringCharType CharType;
2688
2689 wxImplStringBuffer(wxString& str, size_t lenWanted = 1024)
2690 : m_str(str), m_buf(NULL)
2691 { m_buf = m_str.DoGetWriteBuf(lenWanted); }
2692
2693 ~wxImplStringBuffer() { m_str.DoUngetWriteBuf(); }
2694
2695 operator wxStringCharType*() const { return m_buf; }
2696
2697 private:
2698 wxString& m_str;
2699 wxStringCharType *m_buf;
2700
2701 DECLARE_NO_COPY_CLASS(wxImplStringBuffer)
2702 };
2703
2704 class wxImplStringBufferLength
2705 {
2706 public:
2707 typedef wxStringCharType CharType;
2708
2709 wxImplStringBufferLength(wxString& str, size_t lenWanted = 1024)
2710 : m_str(str), m_buf(NULL), m_len(0), m_lenSet(false)
2711 {
2712 m_buf = m_str.DoGetWriteBuf(lenWanted);
2713 wxASSERT(m_buf != NULL);
2714 }
2715
2716 ~wxImplStringBufferLength()
2717 {
2718 wxASSERT(m_lenSet);
2719 m_str.DoUngetWriteBuf(m_len);
2720 }
2721
2722 operator wxStringCharType*() const { return m_buf; }
2723 void SetLength(size_t length) { m_len = length; m_lenSet = true; }
2724
2725 private:
2726 wxString& m_str;
2727 wxStringCharType *m_buf;
2728 size_t m_len;
2729 bool m_lenSet;
2730
2731 DECLARE_NO_COPY_CLASS(wxImplStringBufferLength)
2732 };
2733
2734 #endif // !wxUSE_STL_BASED_WXSTRING
2735
2736 template<typename T>
2737 class wxStringTypeBufferBase
2738 {
2739 public:
2740 typedef T CharType;
2741
2742 wxStringTypeBufferBase(wxString& str, size_t lenWanted = 1024)
2743 : m_str(str), m_buf(lenWanted)
2744 { }
2745
2746
2747 operator CharType*() { return m_buf.data(); }
2748
2749 protected:
2750 wxString& m_str;
2751 wxCharTypeBuffer<CharType> m_buf;
2752 };
2753
2754 template<typename T>
2755 class wxStringTypeBufferLengthBase
2756 {
2757 public:
2758 typedef T CharType;
2759
2760 wxStringTypeBufferLengthBase(wxString& str, size_t lenWanted = 1024)
2761 : m_str(str), m_buf(lenWanted), m_len(0), m_lenSet(false)
2762 { }
2763
2764 ~wxStringTypeBufferLengthBase()
2765 {
2766 wxASSERT(m_lenSet);
2767 m_str.assign(m_buf.data(), m_len);
2768 }
2769
2770 operator CharType*() { return m_buf.data(); }
2771 void SetLength(size_t length) { m_len = length; m_lenSet = true; }
2772
2773 protected:
2774 wxString& m_str;
2775 wxCharTypeBuffer<CharType> m_buf;
2776 size_t m_len;
2777 bool m_lenSet;
2778 };
2779
2780 template<typename T>
2781 class wxStringTypeBuffer : public wxStringTypeBufferBase<T>
2782 {
2783 public:
2784 wxStringTypeBuffer(wxString& str, size_t lenWanted = 1024)
2785 : wxStringTypeBufferBase<T>(str, lenWanted) {}
2786 ~wxStringTypeBuffer()
2787 {
2788 this->m_str.assign(this->m_buf.data());
2789 }
2790
2791 DECLARE_NO_COPY_CLASS(wxStringTypeBuffer)
2792 };
2793
2794 template<typename T>
2795 class wxStringTypeBufferLength : public wxStringTypeBufferLengthBase<T>
2796 {
2797 public:
2798 wxStringTypeBufferLength(wxString& str, size_t lenWanted = 1024)
2799 : wxStringTypeBufferLengthBase<T>(str, lenWanted) {}
2800
2801 ~wxStringTypeBufferLength()
2802 {
2803 wxASSERT(this->m_lenSet);
2804 this->m_str.assign(this->m_buf.data(), this->m_len);
2805 }
2806
2807 DECLARE_NO_COPY_CLASS(wxStringTypeBufferLength)
2808 };
2809
2810 #if wxUSE_STL_BASED_WXSTRING
2811 class wxImplStringBuffer : public wxStringTypeBufferBase<wxStringCharType>
2812 {
2813 public:
2814 wxImplStringBuffer(wxString& str, size_t lenWanted = 1024)
2815 : wxStringTypeBufferBase<wxStringCharType>(str, lenWanted) {}
2816 ~wxImplStringBuffer()
2817 { m_str.m_impl.assign(m_buf.data()); }
2818
2819 DECLARE_NO_COPY_CLASS(wxImplStringBuffer)
2820 };
2821
2822 class wxImplStringBufferLength : public wxStringTypeBufferLengthBase<wxStringCharType>
2823 {
2824 public:
2825 wxImplStringBufferLength(wxString& str, size_t lenWanted = 1024)
2826 : wxStringTypeBufferLengthBase<wxStringCharType>(str, lenWanted) {}
2827
2828 ~wxImplStringBufferLength()
2829 {
2830 wxASSERT(m_lenSet);
2831 m_str.m_impl.assign(m_buf.data(), m_len);
2832 }
2833
2834 DECLARE_NO_COPY_CLASS(wxImplStringBufferLength)
2835 };
2836 #endif // wxUSE_STL_BASED_WXSTRING
2837
2838
2839 #if wxUSE_STL_BASED_WXSTRING || wxUSE_UNICODE_UTF8
2840 typedef wxStringTypeBuffer<wxChar> wxStringBuffer;
2841 typedef wxStringTypeBufferLength<wxChar> wxStringBufferLength;
2842 #else // if !wxUSE_STL_BASED_WXSTRING && !wxUSE_UNICODE_UTF8
2843 typedef wxImplStringBuffer wxStringBuffer;
2844 typedef wxImplStringBufferLength wxStringBufferLength;
2845 #endif // !wxUSE_STL_BASED_WXSTRING && !wxUSE_UNICODE_UTF8
2846
2847 // ---------------------------------------------------------------------------
2848 // wxString comparison functions: operator versions are always case sensitive
2849 // ---------------------------------------------------------------------------
2850
2851 #define wxCMP_WXCHAR_STRING(p, s, op) 0 op s.Cmp(p)
2852
2853 wxDEFINE_ALL_COMPARISONS(const wxChar *, const wxString&, wxCMP_WXCHAR_STRING)
2854
2855 #undef wxCMP_WXCHAR_STRING
2856
2857 // note that there is an optimization in operator==() and !=(): we (quickly)
2858 // checks the strings length first, before comparing their data
2859 inline bool operator==(const wxString& s1, const wxString& s2)
2860 { return (s1.Len() == s2.Len()) && (s1.Cmp(s2) == 0); }
2861 inline bool operator!=(const wxString& s1, const wxString& s2)
2862 { return (s1.Len() != s2.Len()) || (s1.Cmp(s2) != 0); }
2863 inline bool operator< (const wxString& s1, const wxString& s2)
2864 { return s1.Cmp(s2) < 0; }
2865 inline bool operator> (const wxString& s1, const wxString& s2)
2866 { return s1.Cmp(s2) > 0; }
2867 inline bool operator<=(const wxString& s1, const wxString& s2)
2868 { return s1.Cmp(s2) <= 0; }
2869 inline bool operator>=(const wxString& s1, const wxString& s2)
2870 { return s1.Cmp(s2) >= 0; }
2871
2872 inline bool operator==(const wxString& s1, const wxCStrData& s2)
2873 { return s1 == s2.AsString(); }
2874 inline bool operator==(const wxCStrData& s1, const wxString& s2)
2875 { return s1.AsString() == s2; }
2876 inline bool operator!=(const wxString& s1, const wxCStrData& s2)
2877 { return s1 != s2.AsString(); }
2878 inline bool operator!=(const wxCStrData& s1, const wxString& s2)
2879 { return s1.AsString() != s2; }
2880
2881 inline bool operator==(const wxString& s1, const wxWCharBuffer& s2)
2882 { return (s1.Cmp((const wchar_t *)s2) == 0); }
2883 inline bool operator==(const wxWCharBuffer& s1, const wxString& s2)
2884 { return (s2.Cmp((const wchar_t *)s1) == 0); }
2885 inline bool operator!=(const wxString& s1, const wxWCharBuffer& s2)
2886 { return (s1.Cmp((const wchar_t *)s2) != 0); }
2887 inline bool operator!=(const wxWCharBuffer& s1, const wxString& s2)
2888 { return (s2.Cmp((const wchar_t *)s1) != 0); }
2889
2890 inline bool operator==(const wxString& s1, const wxCharBuffer& s2)
2891 { return (s1.Cmp((const char *)s2) == 0); }
2892 inline bool operator==(const wxCharBuffer& s1, const wxString& s2)
2893 { return (s2.Cmp((const char *)s1) == 0); }
2894 inline bool operator!=(const wxString& s1, const wxCharBuffer& s2)
2895 { return (s1.Cmp((const char *)s2) != 0); }
2896 inline bool operator!=(const wxCharBuffer& s1, const wxString& s2)
2897 { return (s2.Cmp((const char *)s1) != 0); }
2898
2899 inline wxString operator+(const wxString& string, const wxWCharBuffer& buf)
2900 { return string + (const wchar_t *)buf; }
2901 inline wxString operator+(const wxWCharBuffer& buf, const wxString& string)
2902 { return (const wchar_t *)buf + string; }
2903
2904 inline wxString operator+(const wxString& string, const wxCharBuffer& buf)
2905 { return string + (const char *)buf; }
2906 inline wxString operator+(const wxCharBuffer& buf, const wxString& string)
2907 { return (const char *)buf + string; }
2908
2909 // comparison with char
2910 inline bool operator==(const wxUniChar& c, const wxString& s) { return s.IsSameAs(c); }
2911 inline bool operator==(const wxUniCharRef& c, const wxString& s) { return s.IsSameAs(c); }
2912 inline bool operator==(char c, const wxString& s) { return s.IsSameAs(c); }
2913 inline bool operator==(wchar_t c, const wxString& s) { return s.IsSameAs(c); }
2914 inline bool operator==(int c, const wxString& s) { return s.IsSameAs(c); }
2915 inline bool operator==(const wxString& s, const wxUniChar& c) { return s.IsSameAs(c); }
2916 inline bool operator==(const wxString& s, const wxUniCharRef& c) { return s.IsSameAs(c); }
2917 inline bool operator==(const wxString& s, char c) { return s.IsSameAs(c); }
2918 inline bool operator==(const wxString& s, wchar_t c) { return s.IsSameAs(c); }
2919 inline bool operator!=(const wxUniChar& c, const wxString& s) { return !s.IsSameAs(c); }
2920 inline bool operator!=(const wxUniCharRef& c, const wxString& s) { return !s.IsSameAs(c); }
2921 inline bool operator!=(char c, const wxString& s) { return !s.IsSameAs(c); }
2922 inline bool operator!=(wchar_t c, const wxString& s) { return !s.IsSameAs(c); }
2923 inline bool operator!=(int c, const wxString& s) { return !s.IsSameAs(c); }
2924 inline bool operator!=(const wxString& s, const wxUniChar& c) { return !s.IsSameAs(c); }
2925 inline bool operator!=(const wxString& s, const wxUniCharRef& c) { return !s.IsSameAs(c); }
2926 inline bool operator!=(const wxString& s, char c) { return !s.IsSameAs(c); }
2927 inline bool operator!=(const wxString& s, wchar_t c) { return !s.IsSameAs(c); }
2928
2929 // comparison with C string in Unicode build
2930 #if wxUSE_UNICODE
2931
2932 #define wxCMP_CHAR_STRING(p, s, op) wxString(p) op s
2933
2934 wxDEFINE_ALL_COMPARISONS(const char *, const wxString&, wxCMP_CHAR_STRING)
2935
2936 #undef wxCMP_CHAR_STRING
2937
2938 #endif // wxUSE_UNICODE
2939
2940 // we also need to provide the operators for comparison with wxCStrData to
2941 // resolve ambiguity between operator(const wxChar *,const wxString &) and
2942 // operator(const wxChar *, const wxChar *) for "p == s.c_str()"
2943 //
2944 // notice that these are (shallow) pointer comparisons, not (deep) string ones
2945 #define wxCMP_CHAR_CSTRDATA(p, s, op) p op s.AsChar()
2946 #define wxCMP_WCHAR_CSTRDATA(p, s, op) p op s.AsWChar()
2947
2948 wxDEFINE_ALL_COMPARISONS(const wchar_t *, const wxCStrData&, wxCMP_WCHAR_CSTRDATA)
2949 wxDEFINE_ALL_COMPARISONS(const char *, const wxCStrData&, wxCMP_CHAR_CSTRDATA)
2950
2951 #undef wxCMP_CHAR_CSTRDATA
2952 #undef wxCMP_WCHAR_CSTRDATA
2953
2954 // ---------------------------------------------------------------------------
2955 // Implementation only from here until the end of file
2956 // ---------------------------------------------------------------------------
2957
2958 #if wxUSE_STD_IOSTREAM
2959
2960 #include "wx/iosfwrap.h"
2961
2962 WXDLLIMPEXP_BASE wxSTD ostream& operator<<(wxSTD ostream&, const wxString&);
2963 WXDLLIMPEXP_BASE wxSTD ostream& operator<<(wxSTD ostream&, const wxCStrData&);
2964 WXDLLIMPEXP_BASE wxSTD ostream& operator<<(wxSTD ostream&, const wxCharBuffer&);
2965 #ifndef __BORLANDC__
2966 WXDLLIMPEXP_BASE wxSTD ostream& operator<<(wxSTD ostream&, const wxWCharBuffer&);
2967 #endif
2968
2969 #endif // wxSTD_STRING_COMPATIBILITY
2970
2971 // ---------------------------------------------------------------------------
2972 // wxCStrData implementation
2973 // ---------------------------------------------------------------------------
2974
2975 inline wxCStrData::wxCStrData(char *buf)
2976 : m_str(new wxString(buf)), m_offset(0), m_owned(true) {}
2977 inline wxCStrData::wxCStrData(wchar_t *buf)
2978 : m_str(new wxString(buf)), m_offset(0), m_owned(true) {}
2979
2980 inline wxCStrData::wxCStrData(const wxCStrData& data)
2981 : m_str(data.m_owned ? new wxString(*data.m_str) : data.m_str),
2982 m_offset(data.m_offset),
2983 m_owned(data.m_owned)
2984 {
2985 }
2986
2987 inline wxCStrData::~wxCStrData()
2988 {
2989 if ( m_owned )
2990 delete m_str;
2991 }
2992
2993 // simple cases for AsChar() and AsWChar(), the complicated ones are
2994 // in string.cpp
2995 #if wxUSE_UNICODE_WCHAR
2996 inline const wchar_t* wxCStrData::AsWChar() const
2997 {
2998 return m_str->wx_str() + m_offset;
2999 }
3000 #endif // wxUSE_UNICODE_WCHAR
3001
3002 #if !wxUSE_UNICODE
3003 inline const char* wxCStrData::AsChar() const
3004 {
3005 return m_str->wx_str() + m_offset;
3006 }
3007 #endif // !wxUSE_UNICODE
3008
3009 #if wxUSE_UTF8_LOCALE_ONLY
3010 inline const char* wxCStrData::AsChar() const
3011 {
3012 return wxStringOperations::AddToIter(m_str->wx_str(), m_offset);
3013 }
3014 #endif // wxUSE_UTF8_LOCALE_ONLY
3015
3016 inline const wxCharBuffer wxCStrData::AsCharBuf() const
3017 {
3018 #if !wxUSE_UNICODE
3019 return wxCharBuffer::CreateNonOwned(AsChar());
3020 #else
3021 return AsString().mb_str();
3022 #endif
3023 }
3024
3025 inline const wxWCharBuffer wxCStrData::AsWCharBuf() const
3026 {
3027 #if wxUSE_UNICODE_WCHAR
3028 return wxWCharBuffer::CreateNonOwned(AsWChar());
3029 #else
3030 return AsString().wc_str();
3031 #endif
3032 }
3033
3034 inline wxString wxCStrData::AsString() const
3035 {
3036 if ( m_offset == 0 )
3037 return *m_str;
3038 else
3039 return m_str->Mid(m_offset);
3040 }
3041
3042 inline const wxStringCharType *wxCStrData::AsInternal() const
3043 {
3044 #if wxUSE_UNICODE_UTF8
3045 return wxStringOperations::AddToIter(m_str->wx_str(), m_offset);
3046 #else
3047 return m_str->wx_str() + m_offset;
3048 #endif
3049 }
3050
3051 inline wxUniChar wxCStrData::operator*() const
3052 {
3053 if ( m_str->empty() )
3054 return wxUniChar(_T('\0'));
3055 else
3056 return (*m_str)[m_offset];
3057 }
3058
3059 inline wxUniChar wxCStrData::operator[](size_t n) const
3060 {
3061 // NB: we intentionally use operator[] and not at() here because the former
3062 // works for the terminating NUL while the latter does not
3063 return (*m_str)[m_offset + n];
3064 }
3065
3066 // ----------------------------------------------------------------------------
3067 // more wxCStrData operators
3068 // ----------------------------------------------------------------------------
3069
3070 // we need to define those to allow "size_t pos = p - s.c_str()" where p is
3071 // some pointer into the string
3072 inline size_t operator-(const char *p, const wxCStrData& cs)
3073 {
3074 return p - cs.AsChar();
3075 }
3076
3077 inline size_t operator-(const wchar_t *p, const wxCStrData& cs)
3078 {
3079 return p - cs.AsWChar();
3080 }
3081
3082 // ----------------------------------------------------------------------------
3083 // implementation of wx[W]CharBuffer inline methods using wxCStrData
3084 // ----------------------------------------------------------------------------
3085
3086 // FIXME-UTF8: move this to buffer.h
3087 inline wxCharBuffer::wxCharBuffer(const wxCStrData& cstr)
3088 : wxCharTypeBufferBase(cstr.AsCharBuf())
3089 {
3090 }
3091
3092 inline wxWCharBuffer::wxWCharBuffer(const wxCStrData& cstr)
3093 : wxCharTypeBufferBase(cstr.AsWCharBuf())
3094 {
3095 }
3096
3097 #if wxUSE_UNICODE_UTF8
3098 // ----------------------------------------------------------------------------
3099 // implementation of wxStringIteratorNode inline methods
3100 // ----------------------------------------------------------------------------
3101
3102 wxStringIteratorNode::wxStringIteratorNode(const wxString *str,
3103 wxStringImpl::const_iterator *citer)
3104 : m_str(str),
3105 m_citer(citer),
3106 m_iter(NULL),
3107 m_prev(NULL),
3108 m_next(str->m_iterators.ptr)
3109 {
3110 wx_const_cast(wxString*, m_str)->m_iterators.ptr = this;
3111 if ( m_next )
3112 m_next->m_prev = this;
3113 }
3114
3115 wxStringIteratorNode::wxStringIteratorNode(const wxString *str,
3116 wxStringImpl::iterator *iter)
3117 : m_str(str),
3118 m_citer(NULL),
3119 m_iter(iter),
3120 m_prev(NULL),
3121 m_next(str->m_iterators.ptr)
3122 {
3123 wx_const_cast(wxString*, m_str)->m_iterators.ptr = this;
3124 if ( m_next)
3125 m_next->m_prev = this;
3126 }
3127
3128 wxStringIteratorNode::~wxStringIteratorNode()
3129 {
3130 if ( m_next )
3131 m_next->m_prev = m_prev;
3132 if ( m_prev )
3133 m_prev->m_next = m_next;
3134 else // first in the list
3135 wx_const_cast(wxString*, m_str)->m_iterators.ptr = m_next;
3136 }
3137 #endif // wxUSE_UNICODE_UTF8
3138
3139 #if WXWIN_COMPATIBILITY_2_8
3140 // lot of code out there doesn't explicitly include wx/crt.h, but uses
3141 // CRT wrappers that are now declared in wx/wxcrt.h and wx/wxcrtvararg.h,
3142 // so let's include this header now that wxString is defined and it's safe
3143 // to do it:
3144 #include "wx/crt.h"
3145 #endif
3146
3147 #endif // _WX_WXSTRING_H_