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[wxWidgets.git] / src / common / string.cpp
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1/////////////////////////////////////////////////////////////////////////////
2// Name: string.cpp
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>
65571936 9// Licence: wxWindows licence
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10/////////////////////////////////////////////////////////////////////////////
11
14f355c2 12#if defined(__GNUG__) && !defined(NO_GCC_PRAGMA)
30b21f9a 13 #pragma implementation "string.h"
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14#endif
15
16/*
17 * About ref counting:
18 * 1) all empty strings use g_strEmpty, nRefs = -1 (set in Init())
19 * 2) AllocBuffer() sets nRefs to 1, Lock() increments it by one
20 * 3) Unlock() decrements nRefs and frees memory if it goes to 0
21 */
22
23// ===========================================================================
24// headers, declarations, constants
25// ===========================================================================
26
27// For compilers that support precompilation, includes "wx.h".
28#include "wx/wxprec.h"
29
30#ifdef __BORLANDC__
30b21f9a 31 #pragma hdrstop
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32#endif
33
34#ifndef WX_PRECOMP
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35 #include "wx/defs.h"
36 #include "wx/string.h"
37 #include "wx/intl.h"
3096bd2f 38 #include "wx/thread.h"
6b769f3d 39#endif
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40
41#include <ctype.h>
42#include <string.h>
43#include <stdlib.h>
44
ce3ed50d 45#ifdef __SALFORDC__
30b21f9a 46 #include <clib.h>
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47#endif
48
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49// allocating extra space for each string consumes more memory but speeds up
50// the concatenation operations (nLen is the current string's length)
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51// NB: EXTRA_ALLOC must be >= 0!
52#define EXTRA_ALLOC (19 - nLen % 16)
3168a13f 53
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54// ---------------------------------------------------------------------------
55// static class variables definition
56// ---------------------------------------------------------------------------
57
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58#if defined(__VISAGECPP__) && __IBMCPP__ >= 400
59// must define this static for VA or else you get multiply defined symbols
60// everywhere
61const unsigned int wxSTRING_MAXLEN = UINT_MAX - 100;
62#endif // Visual Age
63
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64#if !wxUSE_STL
65 const size_t wxStringBase::npos = wxSTRING_MAXLEN;
66#endif
c801d85f 67
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68// ----------------------------------------------------------------------------
69// static data
70// ----------------------------------------------------------------------------
c801d85f 71
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72#if wxUSE_STL
73
74extern const wxChar WXDLLIMPEXP_BASE *wxEmptyString = _T("");
75
76#else
77
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78// for an empty string, GetStringData() will return this address: this
79// structure has the same layout as wxStringData and it's data() method will
80// return the empty string (dummy pointer)
81static const struct
82{
83 wxStringData data;
2bb67b80 84 wxChar dummy;
223d09f6 85} g_strEmpty = { {-1, 0, 0}, wxT('\0') };
3c024cc2 86
c801d85f 87// empty C style string: points to 'string data' byte of g_strEmpty
fd242375 88extern const wxChar WXDLLIMPEXP_BASE *wxEmptyString = &g_strEmpty.dummy;
c801d85f 89
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90#endif
91
3168a13f 92// ----------------------------------------------------------------------------
c801d85f 93// global functions
3168a13f 94// ----------------------------------------------------------------------------
c801d85f 95
e87b7833 96#if wxUSE_STD_IOSTREAM
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97
98// MS Visual C++ version 5.0 provides the new STL headers as well as the old
99// iostream ones.
100//
101// ATTN: you can _not_ use both of these in the same program!
a38b83c3 102
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103#include <iostream>
104
dd107c50 105wxSTD istream& operator>>(wxSTD istream& is, wxString& WXUNUSED(str))
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106{
107#if 0
108 int w = is.width(0);
109 if ( is.ipfx(0) ) {
3f4a0c5b 110 streambuf *sb = is.rdbuf();
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111 str.erase();
112 while ( true ) {
113 int ch = sb->sbumpc ();
114 if ( ch == EOF ) {
3f4a0c5b 115 is.setstate(ios::eofbit);
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116 break;
117 }
118 else if ( isspace(ch) ) {
119 sb->sungetc();
120 break;
121 }
dd1eaa89 122
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123 str += ch;
124 if ( --w == 1 )
125 break;
126 }
127 }
128
129 is.isfx();
130 if ( str.length() == 0 )
3f4a0c5b 131 is.setstate(ios::failbit);
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132#endif
133 return is;
134}
135
dd107c50 136wxSTD ostream& operator<<(wxSTD ostream& os, const wxString& str)
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137{
138 os << str.c_str();
139 return os;
140}
141
e87b7833 142#endif // wxUSE_STD_IOSTREAM
c801d85f 143
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144// ----------------------------------------------------------------------------
145// private classes
146// ----------------------------------------------------------------------------
147
148// this small class is used to gather statistics for performance tuning
149//#define WXSTRING_STATISTICS
150#ifdef WXSTRING_STATISTICS
151 class Averager
152 {
153 public:
f6f5941b 154 Averager(const wxChar *sz) { m_sz = sz; m_nTotal = m_nCount = 0; }
2c3b684c 155 ~Averager()
f6f5941b 156 { wxPrintf("wxString: average %s = %f\n", m_sz, ((float)m_nTotal)/m_nCount); }
3168a13f 157
c86f1403 158 void Add(size_t n) { m_nTotal += n; m_nCount++; }
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159
160 private:
c86f1403 161 size_t m_nCount, m_nTotal;
f6f5941b 162 const wxChar *m_sz;
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163 } g_averageLength("allocation size"),
164 g_averageSummandLength("summand length"),
165 g_averageConcatHit("hit probability in concat"),
166 g_averageInitialLength("initial string length");
167
168 #define STATISTICS_ADD(av, val) g_average##av.Add(val)
169#else
170 #define STATISTICS_ADD(av, val)
171#endif // WXSTRING_STATISTICS
172
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173#if !wxUSE_STL
174
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175// ===========================================================================
176// wxStringData class deallocation
177// ===========================================================================
178
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179#if defined(__VISUALC__) && defined(_MT) && !defined(_DLL)
180# pragma message (__FILE__ ": building with Multithreaded non DLL runtime has a performance impact on wxString!")
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181void wxStringData::Free()
182{
183 free(this);
184}
8ecf21b7 185#endif
ca5e07c7 186
c801d85f 187// ===========================================================================
e87b7833 188// wxStringBase
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189// ===========================================================================
190
c801d85f 191// takes nLength elements of psz starting at nPos
e87b7833 192void wxStringBase::InitWith(const wxChar *psz, size_t nPos, size_t nLength)
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193{
194 Init();
195
f6bcfd97 196 // if the length is not given, assume the string to be NUL terminated
e87b7833 197 if ( nLength == npos ) {
f6bcfd97 198 wxASSERT_MSG( nPos <= wxStrlen(psz), _T("index out of bounds") );
c801d85f 199
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200 nLength = wxStrlen(psz + nPos);
201 }
6c68273f 202
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203 STATISTICS_ADD(InitialLength, nLength);
204
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205 if ( nLength > 0 ) {
206 // trailing '\0' is written in AllocBuffer()
b1801e0e 207 if ( !AllocBuffer(nLength) ) {
e87b7833 208 wxFAIL_MSG( _T("out of memory in wxStringBase::InitWith") );
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209 return;
210 }
06386448 211 wxMemcpy(m_pchData, psz + nPos, nLength);
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212 }
213}
dd1eaa89 214
c801d85f 215// poor man's iterators are "void *" pointers
e87b7833 216wxStringBase::wxStringBase(const void *pStart, const void *pEnd)
c801d85f 217{
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218 InitWith((const wxChar *)pStart, 0,
219 (const wxChar *)pEnd - (const wxChar *)pStart);
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220}
221
e87b7833 222wxStringBase::wxStringBase(size_type n, wxChar ch)
c801d85f 223{
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224 Init();
225 append(n, ch);
c801d85f 226}
2bb67b80 227
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228// ---------------------------------------------------------------------------
229// memory allocation
230// ---------------------------------------------------------------------------
231
232// allocates memory needed to store a C string of length nLen
e87b7833 233bool wxStringBase::AllocBuffer(size_t nLen)
c801d85f 234{
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235 // allocating 0 sized buffer doesn't make sense, all empty strings should
236 // reuse g_strEmpty
237 wxASSERT( nLen > 0 );
238
239 // make sure that we don't overflow
240 wxASSERT( nLen < (INT_MAX / sizeof(wxChar)) -
241 (sizeof(wxStringData) + EXTRA_ALLOC + 1) );
c801d85f 242
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243 STATISTICS_ADD(Length, nLen);
244
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245 // allocate memory:
246 // 1) one extra character for '\0' termination
247 // 2) sizeof(wxStringData) for housekeeping info
3168a13f 248 wxStringData* pData = (wxStringData*)
2bb67b80 249 malloc(sizeof(wxStringData) + (nLen + EXTRA_ALLOC + 1)*sizeof(wxChar));
e015c2a3 250
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251 if ( pData == NULL ) {
252 // allocation failures are handled by the caller
d775fa82 253 return false;
b1801e0e 254 }
e015c2a3 255
c801d85f 256 pData->nRefs = 1;
c801d85f 257 pData->nDataLength = nLen;
3168a13f 258 pData->nAllocLength = nLen + EXTRA_ALLOC;
c801d85f 259 m_pchData = pData->data(); // data starts after wxStringData
223d09f6 260 m_pchData[nLen] = wxT('\0');
d775fa82 261 return true;
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262}
263
c801d85f 264// must be called before changing this string
e87b7833 265bool wxStringBase::CopyBeforeWrite()
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266{
267 wxStringData* pData = GetStringData();
268
269 if ( pData->IsShared() ) {
270 pData->Unlock(); // memory not freed because shared
c86f1403 271 size_t nLen = pData->nDataLength;
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272 if ( !AllocBuffer(nLen) ) {
273 // allocation failures are handled by the caller
d775fa82 274 return false;
b1801e0e 275 }
2bb67b80 276 memcpy(m_pchData, pData->data(), nLen*sizeof(wxChar));
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277 }
278
3bbb630a 279 wxASSERT( !GetStringData()->IsShared() ); // we must be the only owner
b1801e0e 280
d775fa82 281 return true;
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282}
283
284// must be called before replacing contents of this string
e87b7833 285bool wxStringBase::AllocBeforeWrite(size_t nLen)
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286{
287 wxASSERT( nLen != 0 ); // doesn't make any sense
288
289 // must not share string and must have enough space
3168a13f 290 wxStringData* pData = GetStringData();
fbf0c83d 291 if ( pData->IsShared() || pData->IsEmpty() ) {
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292 // can't work with old buffer, get new one
293 pData->Unlock();
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294 if ( !AllocBuffer(nLen) ) {
295 // allocation failures are handled by the caller
d775fa82 296 return false;
b1801e0e 297 }
c801d85f 298 }
471aebdd 299 else {
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300 if ( nLen > pData->nAllocLength ) {
301 // realloc the buffer instead of calling malloc() again, this is more
302 // efficient
303 STATISTICS_ADD(Length, nLen);
304
305 nLen += EXTRA_ALLOC;
306
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307 pData = (wxStringData*)
308 realloc(pData, sizeof(wxStringData) + (nLen + 1)*sizeof(wxChar));
e015c2a3 309
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310 if ( pData == NULL ) {
311 // allocation failures are handled by the caller
312 // keep previous data since reallocation failed
d775fa82 313 return false;
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314 }
315
316 pData->nAllocLength = nLen;
317 m_pchData = pData->data();
318 }
319
320 // now we have enough space, just update the string length
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321 pData->nDataLength = nLen;
322 }
c801d85f 323
f1da2f03 324 wxASSERT( !GetStringData()->IsShared() ); // we must be the only owner
b1801e0e 325
d775fa82 326 return true;
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327}
328
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329wxStringBase& wxStringBase::append(size_t n, wxChar ch)
330{
331 size_type len = length();
332
333 if ( !CopyBeforeWrite() || !Alloc(len + n) ) {
334 wxFAIL_MSG( _T("out of memory in wxStringBase::append") );
335 }
336 GetStringData()->nDataLength = len + n;
337 m_pchData[len + n] = '\0';
338 for ( size_t i = 0; i < n; ++i )
339 m_pchData[len + i] = ch;
340 return *this;
341}
342
343void wxStringBase::resize(size_t nSize, wxChar ch)
344{
345 size_t len = length();
346
347 if ( nSize < len )
348 {
349 erase(begin() + nSize, end());
350 }
351 else if ( nSize > len )
352 {
353 append(nSize - len, ch);
354 }
355 //else: we have exactly the specified length, nothing to do
356}
357
dd1eaa89 358// allocate enough memory for nLen characters
e87b7833 359bool wxStringBase::Alloc(size_t nLen)
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360{
361 wxStringData *pData = GetStringData();
362 if ( pData->nAllocLength <= nLen ) {
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363 if ( pData->IsEmpty() ) {
364 nLen += EXTRA_ALLOC;
365
366 wxStringData* pData = (wxStringData*)
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367 malloc(sizeof(wxStringData) + (nLen + 1)*sizeof(wxChar));
368
369 if ( pData == NULL ) {
370 // allocation failure handled by caller
d775fa82 371 return false;
b1801e0e 372 }
e015c2a3 373
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374 pData->nRefs = 1;
375 pData->nDataLength = 0;
376 pData->nAllocLength = nLen;
377 m_pchData = pData->data(); // data starts after wxStringData
223d09f6 378 m_pchData[0u] = wxT('\0');
9fbd8b8d 379 }
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380 else if ( pData->IsShared() ) {
381 pData->Unlock(); // memory not freed because shared
c86f1403 382 size_t nOldLen = pData->nDataLength;
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383 if ( !AllocBuffer(nLen) ) {
384 // allocation failure handled by caller
d775fa82 385 return false;
b1801e0e 386 }
2bb67b80 387 memcpy(m_pchData, pData->data(), nOldLen*sizeof(wxChar));
3168a13f 388 }
dd1eaa89 389 else {
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390 nLen += EXTRA_ALLOC;
391
b1801e0e 392 pData = (wxStringData *)
2bb67b80 393 realloc(pData, sizeof(wxStringData) + (nLen + 1)*sizeof(wxChar));
3168a13f 394
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395 if ( pData == NULL ) {
396 // allocation failure handled by caller
397 // keep previous data since reallocation failed
d775fa82 398 return false;
dd1eaa89 399 }
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400
401 // it's not important if the pointer changed or not (the check for this
402 // is not faster than assigning to m_pchData in all cases)
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403 pData->nAllocLength = nLen;
404 m_pchData = pData->data();
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405 }
406 }
407 //else: we've already got enough
d775fa82 408 return true;
dd1eaa89 409}
d775fa82 410
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411wxStringBase::iterator wxStringBase::begin()
412{
413 if (length() > 0)
414 CopyBeforeWrite();
415 return m_pchData;
416}
417
418wxStringBase::iterator wxStringBase::end()
419{
420 if (length() > 0)
421 CopyBeforeWrite();
422 return m_pchData + length();
423}
dd1eaa89 424
e87b7833 425wxStringBase::iterator wxStringBase::erase(iterator it)
dd1eaa89 426{
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427 size_type idx = it - begin();
428 erase(idx, 1);
429 return begin() + idx;
430}
3bbb630a 431
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432wxStringBase& wxStringBase::erase(size_t nStart, size_t nLen)
433{
434 wxASSERT(nStart <= length());
435 size_t strLen = length() - nStart;
436 // delete nLen or up to the end of the string characters
437 nLen = strLen < nLen ? strLen : nLen;
438 wxString strTmp(c_str(), nStart);
439 strTmp.append(c_str() + nStart + nLen, length() - nStart - nLen);
337a0010 440
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441 swap(strTmp);
442 return *this;
443}
337a0010 444
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445wxStringBase& wxStringBase::insert(size_t nPos, const wxChar *sz, size_t n)
446{
447 wxASSERT( nPos <= length() );
3bbb630a 448
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449 if ( n == npos ) n = wxStrlen(sz);
450 if ( n == 0 ) return *this;
451
452 if ( !CopyBeforeWrite() || !Alloc(length() + n) ) {
453 wxFAIL_MSG( _T("out of memory in wxStringBase::insert") );
337a0010 454 }
fbf0c83d 455
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456 memmove(m_pchData + nPos + n, m_pchData + nPos,
457 (length() - nPos) * sizeof(wxChar));
458 memcpy(m_pchData + nPos, sz, n * sizeof(wxChar));
459 GetStringData()->nDataLength = length() + n;
460 m_pchData[length()] = '\0';
b1801e0e 461
e87b7833 462 return *this;
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463}
464
e87b7833 465void wxStringBase::swap(wxStringBase& str)
c801d85f 466{
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467 wxChar* tmp = str.m_pchData;
468 str.m_pchData = m_pchData;
469 m_pchData = tmp;
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470}
471
e87b7833 472size_t wxStringBase::find(const wxStringBase& str, size_t nStart) const
097c080b 473{
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474 wxASSERT( str.GetStringData()->IsValid() );
475 wxASSERT( nStart <= length() );
476
dcb68102 477 //anchor
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478 const wxChar* p = (const wxChar*)wxMemchr(c_str() + nStart,
479 str.c_str()[0],
480 length() - nStart);
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481
482 if(!p)
483 return npos;
484
485 while(p - c_str() + str.length() <= length() &&
486 wxMemcmp(p, str.c_str(), str.length()) )
487 {
488 //anchor again
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489 p = (const wxChar*)wxMemchr(++p,
490 str.c_str()[0],
491 length() - (p - c_str()));
e87b7833 492
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493 if(!p)
494 return npos;
495 }
496
497 return (p - c_str() + str.length() <= length()) ? p - c_str() : npos;
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498}
499
e87b7833 500size_t wxStringBase::find(const wxChar* sz, size_t nStart, size_t n) const
8f06a017 501{
e87b7833 502 return find(wxStringBase(sz, n), nStart);
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503}
504
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505size_t wxStringBase::find(wxChar ch, size_t nStart) const
506{
507 wxASSERT( nStart <= length() );
c801d85f 508
7c9b5f42 509 const wxChar *p = (const wxChar*)wxMemchr(c_str() + nStart, ch, length() - nStart);
c801d85f 510
e87b7833 511 return p == NULL ? npos : p - c_str();
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512}
513
e87b7833 514size_t wxStringBase::rfind(const wxStringBase& str, size_t nStart) const
c801d85f 515{
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516 wxASSERT( str.GetStringData()->IsValid() );
517 wxASSERT( nStart == npos || nStart <= length() );
518
519 if ( length() >= str.length() )
520 {
521 // avoids a corner case later
522 if ( length() == 0 && str.length() == 0 )
523 return 0;
524
525 // "top" is the point where search starts from
526 size_t top = length() - str.length();
c801d85f 527
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528 if ( nStart == npos )
529 nStart = length() - 1;
530 if ( nStart < top )
531 top = nStart;
532
533 const wxChar *cursor = c_str() + top;
534 do
535 {
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536 if ( wxMemcmp(cursor, str.c_str(),
537 str.length()) == 0 )
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538 {
539 return cursor - c_str();
540 }
78e6050b 541 } while ( cursor-- > c_str() );
e2101186 542 }
d775fa82 543
e2101186 544 return npos;
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545}
546
e87b7833 547size_t wxStringBase::rfind(const wxChar* sz, size_t nStart, size_t n) const
c801d85f 548{
e87b7833 549 return rfind(wxStringBase(sz, n), nStart);
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550}
551
e87b7833 552size_t wxStringBase::rfind(wxChar ch, size_t nStart) const
c801d85f 553{
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554 if ( nStart == npos )
555 {
556 nStart = length();
557 }
558 else
559 {
560 wxASSERT( nStart <= length() );
561 }
c801d85f 562
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563 const wxChar *actual;
564 for ( actual = c_str() + ( nStart == npos ? length() : nStart + 1 );
565 actual > c_str(); --actual )
566 {
567 if ( *(actual - 1) == ch )
568 return (actual - 1) - c_str();
569 }
e87b7833 570
93c83507 571 return npos;
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572}
573
e87b7833 574size_t wxStringBase::find_first_of(const wxChar* sz, size_t nStart) const
c801d85f 575{
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576 wxASSERT(nStart <= length());
577
578 size_t len = wxStrlen(sz);
579
580 size_t i;
581 for(i = nStart; i < this->length(); ++i)
582 {
583 if (wxMemchr(sz, *(c_str() + i), len))
584 break;
585 }
586
587 if(i == this->length())
e87b7833 588 return npos;
dcb68102
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589 else
590 return i;
c801d85f 591}
e87b7833 592
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593size_t wxStringBase::find_first_of(const wxChar* sz, size_t nStart,
594 size_t n) const
595{
596 return find_first_of(wxStringBase(sz, n), nStart);
597}
598
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599size_t wxStringBase::find_last_of(const wxChar* sz, size_t nStart) const
600{
601 if ( nStart == npos )
602 {
e2101186 603 nStart = length() - 1;
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604 }
605 else
606 {
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607 wxASSERT_MSG( nStart <= length(),
608 _T("invalid index in find_last_of()") );
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609 }
610
dcb68102
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611 size_t len = wxStrlen(sz);
612
e2101186 613 for ( const wxChar *p = c_str() + nStart; p >= c_str(); --p )
e87b7833 614 {
dcb68102 615 if ( wxMemchr(sz, *p, len) )
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616 return p - c_str();
617 }
618
619 return npos;
620}
621
e2101186
MB
622size_t wxStringBase::find_last_of(const wxChar* sz, size_t nStart,
623 size_t n) const
624{
625 return find_last_of(wxStringBase(sz, n), nStart);
626}
627
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628size_t wxStringBase::find_first_not_of(const wxChar* sz, size_t nStart) const
629{
630 if ( nStart == npos )
631 {
632 nStart = length();
633 }
634 else
635 {
636 wxASSERT( nStart <= length() );
637 }
638
dcb68102
RN
639 size_t len = wxStrlen(sz);
640
641 size_t i;
642 for(i = nStart; i < this->length(); ++i)
643 {
644 if (!wxMemchr(sz, *(c_str() + i), len))
645 break;
646 }
647
648 if(i == this->length())
649 return npos;
650 else
651 return i;
e2101186
MB
652}
653
654size_t wxStringBase::find_first_not_of(const wxChar* sz, size_t nStart,
655 size_t n) const
656{
657 return find_first_not_of(wxStringBase(sz, n), nStart);
e87b7833
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658}
659
660size_t wxStringBase::find_first_not_of(wxChar ch, size_t nStart) const
661{
662 wxASSERT( nStart <= length() );
663
664 for ( const wxChar *p = c_str() + nStart; *p; p++ )
665 {
666 if ( *p != ch )
667 return p - c_str();
668 }
669
670 return npos;
671}
672
673size_t wxStringBase::find_last_not_of(const wxChar* sz, size_t nStart) const
674{
675 if ( nStart == npos )
676 {
e2101186 677 nStart = length() - 1;
e87b7833
MB
678 }
679 else
680 {
681 wxASSERT( nStart <= length() );
682 }
683
dcb68102
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684 size_t len = wxStrlen(sz);
685
e2101186 686 for ( const wxChar *p = c_str() + nStart; p >= c_str(); --p )
e87b7833 687 {
dcb68102
RN
688 if ( !wxMemchr(sz, *p,len) )
689 return p - c_str();
e87b7833
MB
690 }
691
692 return npos;
693}
694
e2101186
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695size_t wxStringBase::find_last_not_of(const wxChar* sz, size_t nStart,
696 size_t n) const
697{
698 return find_last_not_of(wxStringBase(sz, n), nStart);
699}
700
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701size_t wxStringBase::find_last_not_of(wxChar ch, size_t nStart) const
702{
703 if ( nStart == npos )
704 {
e2101186 705 nStart = length() - 1;
e87b7833
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706 }
707 else
708 {
709 wxASSERT( nStart <= length() );
710 }
711
e2101186 712 for ( const wxChar *p = c_str() + nStart; p >= c_str(); --p )
e87b7833
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713 {
714 if ( *p != ch )
715 return p - c_str();
716 }
717
718 return npos;
719}
720
721wxStringBase& wxStringBase::replace(size_t nStart, size_t nLen,
722 const wxChar *sz)
723{
724 wxASSERT_MSG( nStart <= length(),
725 _T("index out of bounds in wxStringBase::replace") );
726 size_t strLen = length() - nStart;
727 nLen = strLen < nLen ? strLen : nLen;
728
729 wxStringBase strTmp;
730 strTmp.reserve(length()); // micro optimisation to avoid multiple mem allocs
731
732 if ( nStart != 0 )
733 strTmp.append(c_str(), nStart);
734 strTmp.append(sz);
735 strTmp.append(c_str() + nStart + nLen);
736
737 swap(strTmp);
738 return *this;
739}
740
741wxStringBase& wxStringBase::replace(size_t nStart, size_t nLen,
742 size_t nCount, wxChar ch)
743{
744 return replace(nStart, nLen, wxStringBase(ch, nCount).c_str());
745}
746
747wxStringBase& wxStringBase::replace(size_t nStart, size_t nLen,
748 const wxStringBase& str,
749 size_t nStart2, size_t nLen2)
750{
751 return replace(nStart, nLen, str.substr(nStart2, nLen2));
752}
753
754wxStringBase& wxStringBase::replace(size_t nStart, size_t nLen,
755 const wxChar* sz, size_t nCount)
756{
757 return replace(nStart, nLen, wxStringBase(sz, nCount).c_str());
758}
759
760wxStringBase wxStringBase::substr(size_t nStart, size_t nLen) const
761{
762 if ( nLen == npos )
763 nLen = length() - nStart;
764 return wxStringBase(*this, nStart, nLen);
765}
766
767// assigns one string to another
768wxStringBase& wxStringBase::operator=(const wxStringBase& stringSrc)
769{
770 wxASSERT( stringSrc.GetStringData()->IsValid() );
771
772 // don't copy string over itself
773 if ( m_pchData != stringSrc.m_pchData ) {
774 if ( stringSrc.GetStringData()->IsEmpty() ) {
775 Reinit();
776 }
777 else {
778 // adjust references
779 GetStringData()->Unlock();
780 m_pchData = stringSrc.m_pchData;
781 GetStringData()->Lock();
782 }
783 }
784
785 return *this;
786}
787
788// assigns a single character
789wxStringBase& wxStringBase::operator=(wxChar ch)
790{
791 if ( !AssignCopy(1, &ch) ) {
792 wxFAIL_MSG( _T("out of memory in wxStringBase::operator=(wxChar)") );
793 }
794 return *this;
795}
796
797// assigns C string
798wxStringBase& wxStringBase::operator=(const wxChar *psz)
799{
800 if ( !AssignCopy(wxStrlen(psz), psz) ) {
801 wxFAIL_MSG( _T("out of memory in wxStringBase::operator=(const wxChar *)") );
802 }
803 return *this;
804}
805
806// helper function: does real copy
807bool wxStringBase::AssignCopy(size_t nSrcLen, const wxChar *pszSrcData)
808{
809 if ( nSrcLen == 0 ) {
810 Reinit();
811 }
812 else {
813 if ( !AllocBeforeWrite(nSrcLen) ) {
814 // allocation failure handled by caller
d775fa82 815 return false;
e87b7833
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816 }
817 memcpy(m_pchData, pszSrcData, nSrcLen*sizeof(wxChar));
818 GetStringData()->nDataLength = nSrcLen;
819 m_pchData[nSrcLen] = wxT('\0');
820 }
d775fa82 821 return true;
e87b7833
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822}
823
824// ---------------------------------------------------------------------------
825// string concatenation
826// ---------------------------------------------------------------------------
c801d85f 827
c801d85f 828// add something to this string
e87b7833
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829bool wxStringBase::ConcatSelf(size_t nSrcLen, const wxChar *pszSrcData,
830 size_t nMaxLen)
c801d85f 831{
3168a13f 832 STATISTICS_ADD(SummandLength, nSrcLen);
c801d85f 833
e87b7833
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834 nSrcLen = nSrcLen < nMaxLen ? nSrcLen : nMaxLen;
835
05488905
VZ
836 // concatenating an empty string is a NOP
837 if ( nSrcLen > 0 ) {
838 wxStringData *pData = GetStringData();
839 size_t nLen = pData->nDataLength;
840 size_t nNewLen = nLen + nSrcLen;
c801d85f 841
05488905
VZ
842 // alloc new buffer if current is too small
843 if ( pData->IsShared() ) {
844 STATISTICS_ADD(ConcatHit, 0);
3168a13f 845
05488905
VZ
846 // we have to allocate another buffer
847 wxStringData* pOldData = GetStringData();
b1801e0e
GD
848 if ( !AllocBuffer(nNewLen) ) {
849 // allocation failure handled by caller
d775fa82 850 return false;
b1801e0e 851 }
2bb67b80 852 memcpy(m_pchData, pOldData->data(), nLen*sizeof(wxChar));
05488905
VZ
853 pOldData->Unlock();
854 }
855 else if ( nNewLen > pData->nAllocLength ) {
856 STATISTICS_ADD(ConcatHit, 0);
3168a13f 857
e87b7833 858 reserve(nNewLen);
05488905 859 // we have to grow the buffer
e87b7833 860 if ( capacity() < nNewLen ) {
b1801e0e 861 // allocation failure handled by caller
d775fa82 862 return false;
b1801e0e 863 }
05488905
VZ
864 }
865 else {
866 STATISTICS_ADD(ConcatHit, 1);
3168a13f 867
05488905
VZ
868 // the buffer is already big enough
869 }
3168a13f 870
05488905
VZ
871 // should be enough space
872 wxASSERT( nNewLen <= GetStringData()->nAllocLength );
3168a13f 873
05488905 874 // fast concatenation - all is done in our buffer
2bb67b80 875 memcpy(m_pchData + nLen, pszSrcData, nSrcLen*sizeof(wxChar));
3168a13f 876
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877 m_pchData[nNewLen] = wxT('\0'); // put terminating '\0'
878 GetStringData()->nDataLength = nNewLen; // and fix the length
879 }
880 //else: the string to append was empty
d775fa82 881 return true;
e87b7833
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882}
883
884// ---------------------------------------------------------------------------
885// simple sub-string extraction
886// ---------------------------------------------------------------------------
887
888// helper function: clone the data attached to this string
889bool wxStringBase::AllocCopy(wxString& dest, int nCopyLen, int nCopyIndex) const
890{
891 if ( nCopyLen == 0 ) {
892 dest.Init();
893 }
894 else {
895 if ( !dest.AllocBuffer(nCopyLen) ) {
896 // allocation failure handled by caller
d775fa82 897 return false;
e87b7833
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898 }
899 memcpy(dest.m_pchData, m_pchData + nCopyIndex, nCopyLen*sizeof(wxChar));
900 }
d775fa82 901 return true;
e87b7833
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902}
903
904#endif // !wxUSE_STL
905
906#if !wxUSE_STL || !defined(HAVE_STD_STRING_COMPARE)
907
908#if !wxUSE_STL
909 #define STRINGCLASS wxStringBase
910#else
911 #define STRINGCLASS wxString
912#endif
913
914static inline int wxDoCmp(const wxChar* s1, size_t l1,
915 const wxChar* s2, size_t l2)
916{
917 if( l1 == l2 )
dcb68102 918 return wxMemcmp(s1, s2, l1);
e87b7833
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919 else if( l1 < l2 )
920 {
dcb68102 921 int ret = wxMemcmp(s1, s2, l1);
e87b7833
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922 return ret == 0 ? -1 : ret;
923 }
924 else if( l1 > l2 )
925 {
dcb68102 926 int ret = wxMemcmp(s1, s2, l2);
e87b7833
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927 return ret == 0 ? +1 : ret;
928 }
929
930 wxFAIL; // must never get there
931 return 0; // quiet compilers
932}
933
e87b7833
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934int STRINGCLASS::compare(const wxStringBase& str) const
935{
936 return ::wxDoCmp(data(), length(), str.data(), str.length());
937}
938
e87b7833
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939int STRINGCLASS::compare(size_t nStart, size_t nLen,
940 const wxStringBase& str) const
941{
942 wxASSERT(nStart <= length());
943 size_type strLen = length() - nStart;
944 nLen = strLen < nLen ? strLen : nLen;
945 return ::wxDoCmp(data() + nStart, nLen, str.data(), str.length());
946}
947
948int STRINGCLASS::compare(size_t nStart, size_t nLen,
949 const wxStringBase& str,
950 size_t nStart2, size_t nLen2) const
951{
952 wxASSERT(nStart <= length());
953 wxASSERT(nStart2 <= str.length());
954 size_type strLen = length() - nStart,
955 strLen2 = str.length() - nStart2;
956 nLen = strLen < nLen ? strLen : nLen;
957 nLen2 = strLen2 < nLen2 ? strLen2 : nLen2;
958 return ::wxDoCmp(data() + nStart, nLen, str.data() + nStart2, nLen2);
959}
960
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961int STRINGCLASS::compare(const wxChar* sz) const
962{
963 size_t nLen = wxStrlen(sz);
964 return ::wxDoCmp(data(), length(), sz, nLen);
965}
966
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967int STRINGCLASS::compare(size_t nStart, size_t nLen,
968 const wxChar* sz, size_t nCount) const
969{
970 wxASSERT(nStart <= length());
971 size_type strLen = length() - nStart;
972 nLen = strLen < nLen ? strLen : nLen;
973 if( nCount == npos )
974 nCount = wxStrlen(sz);
975
976 return ::wxDoCmp(data() + nStart, nLen, sz, nCount);
977}
978
979#undef STRINGCLASS
980
981#endif // !wxUSE_STL || !defined(HAVE_STD_STRING_COMPARE)
982
983// ===========================================================================
984// wxString class core
985// ===========================================================================
986
987// ---------------------------------------------------------------------------
06386448
RN
988// common conversion routines
989// ---------------------------------------------------------------------------
990
991#if wxUSE_WCHAR_T
992
19db911a
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993//Convert a wide character string of a specified length
994//to a multi-byte character string, ignoring intermittent null characters
215f9d70
RN
995//returns the actual length of the string
996inline size_t wxMbstr(wxCharBuffer& buffer, const wchar_t* szString,
997 size_t nStringLen, wxMBConv& conv)
06386448
RN
998{
999 const wchar_t* szEnd = szString + nStringLen + 1;
1000 const wchar_t* szPos = szString;
1001 const wchar_t* szStart = szPos;
1002
215f9d70
RN
1003 size_t nActualLength = 0;
1004
06386448
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1005 //Convert the string until the length() is reached, continuing the
1006 //loop every time a null character is reached
1007 while(szPos != szEnd)
1008 {
1009 wxASSERT(szPos < szEnd); //something is _really_ screwed up if this rings true
1010
1011 //Get the length of the current (sub)string
1012 size_t nLen = conv.WC2MB(NULL, szPos, 0);
1013
1014 wxASSERT(nLen != (size_t)-1); //should not be true! If it is system wctomb could be bad
1015
215f9d70
RN
1016 nActualLength += nLen + 1;
1017
1018 wxASSERT(nActualLength <= (nStringLen<<1) + 1); //If this is true it means buffer overflow
1019
06386448
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1020 //Convert the current (sub)string
1021 if ( conv.WC2MB(&buffer.data()[szPos - szStart], szPos, nLen + 1) == (size_t)-1 )
1022 {
1023 //error - return empty buffer
1024 wxFAIL_MSG(wxT("Error converting wide-character string to a multi-byte string"));
1025 buffer.data()[0] = '\0';
215f9d70 1026 return 0;
06386448
RN
1027 }
1028
1029 //Increment to next (sub)string
1030 //Note that we have to use wxWcslen here instead of nLen
1031 //here because XX2XX gives us the size of the output buffer,
1032 //not neccessarly the length of the string
1033 szPos += wxWcslen(szPos) + 1;
1034 }
1035
215f9d70 1036 return nActualLength - 1; //success - return actual length
06386448
RN
1037}
1038
19db911a
RN
1039//Convert a multi-byte character string of a specified length
1040//to a wide character string, ignoring intermittent null characters
215f9d70
RN
1041//returns the actual length
1042inline size_t wxWcstr( wxWCharBuffer& buffer, const char* szString,
1043 size_t nStringLen, wxMBConv& conv)
06386448
RN
1044{
1045 const char* szEnd = szString + nStringLen + 1;
1046 const char* szPos = szString;
1047 const char* szStart = szPos;
215f9d70
RN
1048
1049 size_t nActualLength = 0;
06386448
RN
1050
1051 //Convert the string until the length() is reached, continuing the
1052 //loop every time a null character is reached
1053 while(szPos != szEnd)
1054 {
1055 wxASSERT(szPos < szEnd); //something is _really_ screwed up if this rings true
1056
1057 //Get the length of the current (sub)string
1058 size_t nLen = conv.MB2WC(NULL, szPos, 0);
1059
1060 wxASSERT(nLen != (size_t)-1); //should not be true! If it is system mbtowc could be bad
1061
215f9d70
RN
1062 nActualLength += nLen + 1;
1063
1064 wxASSERT(nActualLength <= nStringLen + 1); //If this is true it means buffer overflow
1065
06386448
RN
1066 //Convert the current (sub)string
1067 if ( conv.MB2WC(&buffer.data()[szPos - szStart], szPos, nLen + 1) == (size_t)-1 )
1068 {
1069 //error - return empty buffer
1070 wxFAIL_MSG(wxT("Error converting multi-byte string to a wide-character string"));
1071 buffer.data()[0] = '\0';
215f9d70 1072 return 0;
06386448
RN
1073 }
1074
1075 //Increment to next (sub)string
1076 //Note that we have to use strlen here instead of nLen
1077 //here because XX2XX gives us the size of the output buffer,
1078 //not neccessarly the length of the string
1079 szPos += strlen(szPos) + 1;
1080 }
1081
215f9d70 1082 return nActualLength - 1; //success - return actual length
06386448
RN
1083}
1084
1085#endif //wxUSE_WCHAR_T
1086
1087// ---------------------------------------------------------------------------
1088// construction and conversion
e87b7833
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1089// ---------------------------------------------------------------------------
1090
1091#if wxUSE_UNICODE
1092
1093// from multibyte string
1094wxString::wxString(const char *psz, wxMBConv& conv, size_t nLength)
1095{
31444b6a
VS
1096 // if nLength != npos, then we have to make a NULL-terminated copy
1097 // of first nLength bytes of psz first because the input buffer to MB2WC
1098 // must always be NULL-terminated:
1099 wxCharBuffer inBuf((const char *)NULL);
1100 if (nLength != npos)
1101 {
b65ee6fd 1102 wxASSERT( psz != NULL );
31444b6a
VS
1103 wxCharBuffer tmp(nLength);
1104 memcpy(tmp.data(), psz, nLength);
1105 tmp.data()[nLength] = '\0';
1106 inBuf = tmp;
1107 psz = inBuf.data();
1108 }
d775fa82 1109
e87b7833
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1110 // first get the size of the buffer we need
1111 size_t nLen;
1112 if ( psz )
1113 {
1114 // calculate the needed size ourselves or use the provided one
06386448
RN
1115 if (nLength == npos)
1116 nLen = strlen(psz);
1117 else
1118 nLen = nLength;
e87b7833
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1119 }
1120 else
1121 {
1122 // nothing to convert
1123 nLen = 0;
1124 }
1125
1126 // anything to do?
1127 if ( (nLen != 0) && (nLen != (size_t)-1) )
1128 {
215f9d70
RN
1129 //When converting mb->wc it never inflates to more characters than the length
1130 wxWCharBuffer buffer(nLen + 1);
1131
1132 //Convert the string
1133 size_t nActualLength = wxWcstr(buffer, psz, nLen, conv);
1134
1135 if ( !Alloc(nActualLength + 1) )
49dcf8bf 1136 {
215f9d70 1137 wxFAIL_MSG(wxT("Out of memory in wxString"));
49dcf8bf
RN
1138 }
1139 else
1140 {
1141 //Copy the data
1142 assign(buffer.data(), nActualLength);
1143 }
e87b7833 1144 }
265d5cce
RN
1145}
1146
06386448 1147//Convert wxString in Unicode mode to a multi-byte string
265d5cce
RN
1148const wxCharBuffer wxString::mb_str(wxMBConv& conv) const
1149{
215f9d70
RN
1150 //*2 is the worst case - probably for UTF8
1151 wxCharBuffer buffer((length() << 1) + 1);
1152
1153 //Do the actual conversion (will return a blank string on error)
1154 wxMbstr(buffer, (*this).c_str(), length(), conv);
1155
1156 return buffer;
e87b7833
MB
1157}
1158
1159#else // ANSI
1160
1161#if wxUSE_WCHAR_T
1162// from wide string
1163wxString::wxString(const wchar_t *pwz, wxMBConv& conv, size_t nLength)
1164{
31444b6a
VS
1165 // if nLength != npos, then we have to make a NULL-terminated copy
1166 // of first nLength chars of psz first because the input buffer to WC2MB
1167 // must always be NULL-terminated:
1168 wxWCharBuffer inBuf((const wchar_t *)NULL);
1169 if (nLength != npos)
1170 {
b65ee6fd 1171 wxASSERT( pwz != NULL );
31444b6a
VS
1172 wxWCharBuffer tmp(nLength);
1173 memcpy(tmp.data(), pwz, nLength * sizeof(wchar_t));
1174 tmp.data()[nLength] = '\0';
1175 inBuf = tmp;
1176 pwz = inBuf.data();
1177 }
d775fa82 1178
e87b7833
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1179 // first get the size of the buffer we need
1180 size_t nLen;
1181 if ( pwz )
1182 {
1183 // calculate the needed size ourselves or use the provided one
06386448
RN
1184 if (nLength == npos)
1185 nLen = wxWcslen(pwz);
1186 else
1187 nLen = nLength;
e87b7833
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1188 }
1189 else
1190 {
1191 // nothing to convert
1192 nLen = 0;
1193 }
1194
1195 // anything to do?
1196 if ( (nLen != 0) && (nLen != (size_t)-1) )
1197 {
215f9d70
RN
1198 //*2 is the worst case - probably for UTF8
1199 wxCharBuffer buffer((nLen << 1) + 1);
1200
06386448 1201 //do the actual conversion (if it fails we get an empty string)
215f9d70
RN
1202 size_t nActualLength = wxMbstr(buffer, pwz, nLen, conv);
1203
1204 if ( !Alloc(nActualLength + 1) )
49dcf8bf 1205 {
215f9d70 1206 wxFAIL_MSG(wxT("Out of memory in wxString"));
49dcf8bf
RN
1207 }
1208 else
1209 {
1210 //copy the data
1211 assign(buffer.data(), nActualLength);
1212 }
e87b7833 1213 }
e87b7833 1214}
265d5cce 1215
06386448
RN
1216//Converts this string to a wide character string if unicode
1217//mode is not enabled and wxUSE_WCHAR_T is enabled
265d5cce
RN
1218const wxWCharBuffer wxString::wc_str(wxMBConv& conv) const
1219{
215f9d70
RN
1220 //mb->wc never inflates to more than the length
1221 wxWCharBuffer buffer(length() + 1);
1222
06386448 1223 //Do the actual conversion (will return a blank string on error)
215f9d70
RN
1224 wxWcstr(buffer, (*this).c_str(), length(), conv);
1225
1226 return buffer;
265d5cce
RN
1227}
1228
e87b7833
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1229#endif // wxUSE_WCHAR_T
1230
1231#endif // Unicode/ANSI
1232
1233// shrink to minimal size (releasing extra memory)
1234bool wxString::Shrink()
1235{
1236 wxString tmp(begin(), end());
1237 swap(tmp);
1238 return tmp.length() == length();
1239}
1240
1241#if !wxUSE_STL
1242// get the pointer to writable buffer of (at least) nLen bytes
1243wxChar *wxString::GetWriteBuf(size_t nLen)
1244{
1245 if ( !AllocBeforeWrite(nLen) ) {
1246 // allocation failure handled by caller
1247 return NULL;
1248 }
1249
1250 wxASSERT( GetStringData()->nRefs == 1 );
d775fa82 1251 GetStringData()->Validate(false);
e87b7833
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1252
1253 return m_pchData;
1254}
1255
1256// put string back in a reasonable state after GetWriteBuf
1257void wxString::UngetWriteBuf()
1258{
1259 GetStringData()->nDataLength = wxStrlen(m_pchData);
d775fa82 1260 GetStringData()->Validate(true);
e87b7833
MB
1261}
1262
1263void wxString::UngetWriteBuf(size_t nLen)
1264{
1265 GetStringData()->nDataLength = nLen;
d775fa82 1266 GetStringData()->Validate(true);
e87b7833
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1267}
1268#endif
1269
1270// ---------------------------------------------------------------------------
1271// data access
1272// ---------------------------------------------------------------------------
1273
1274// all functions are inline in string.h
1275
1276// ---------------------------------------------------------------------------
1277// assignment operators
1278// ---------------------------------------------------------------------------
1279
1280#if !wxUSE_UNICODE
1281
1282// same as 'signed char' variant
1283wxString& wxString::operator=(const unsigned char* psz)
1284{
1285 *this = (const char *)psz;
1286 return *this;
1287}
1288
1289#if wxUSE_WCHAR_T
1290wxString& wxString::operator=(const wchar_t *pwz)
1291{
1292 wxString str(pwz);
1293 swap(str);
1294 return *this;
c801d85f 1295}
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1296#endif
1297
1298#endif
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1299
1300/*
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1301 * concatenation functions come in 5 flavours:
1302 * string + string
1303 * char + string and string + char
1304 * C str + string and string + C str
1305 */
1306
b1801e0e 1307wxString operator+(const wxString& str1, const wxString& str2)
c801d85f 1308{
e87b7833 1309#if !wxUSE_STL
b1801e0e
GD
1310 wxASSERT( str1.GetStringData()->IsValid() );
1311 wxASSERT( str2.GetStringData()->IsValid() );
e87b7833 1312#endif
097c080b 1313
b1801e0e
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1314 wxString s = str1;
1315 s += str2;
3168a13f 1316
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1317 return s;
1318}
1319
b1801e0e 1320wxString operator+(const wxString& str, wxChar ch)
c801d85f 1321{
e87b7833 1322#if !wxUSE_STL
b1801e0e 1323 wxASSERT( str.GetStringData()->IsValid() );
e87b7833 1324#endif
3168a13f 1325
b1801e0e 1326 wxString s = str;
3168a13f 1327 s += ch;
097c080b 1328
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1329 return s;
1330}
1331
b1801e0e 1332wxString operator+(wxChar ch, const wxString& str)
c801d85f 1333{
e87b7833 1334#if !wxUSE_STL
b1801e0e 1335 wxASSERT( str.GetStringData()->IsValid() );
e87b7833 1336#endif
097c080b 1337
3168a13f 1338 wxString s = ch;
b1801e0e 1339 s += str;
3168a13f 1340
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1341 return s;
1342}
1343
b1801e0e 1344wxString operator+(const wxString& str, const wxChar *psz)
c801d85f 1345{
e87b7833 1346#if !wxUSE_STL
b1801e0e 1347 wxASSERT( str.GetStringData()->IsValid() );
e87b7833 1348#endif
097c080b 1349
c801d85f 1350 wxString s;
b1801e0e
GD
1351 if ( !s.Alloc(wxStrlen(psz) + str.Len()) ) {
1352 wxFAIL_MSG( _T("out of memory in wxString::operator+") );
1353 }
1354 s = str;
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1355 s += psz;
1356
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1357 return s;
1358}
1359
b1801e0e 1360wxString operator+(const wxChar *psz, const wxString& str)
c801d85f 1361{
e87b7833 1362#if !wxUSE_STL
b1801e0e 1363 wxASSERT( str.GetStringData()->IsValid() );
e87b7833 1364#endif
097c080b 1365
c801d85f 1366 wxString s;
b1801e0e
GD
1367 if ( !s.Alloc(wxStrlen(psz) + str.Len()) ) {
1368 wxFAIL_MSG( _T("out of memory in wxString::operator+") );
1369 }
3168a13f 1370 s = psz;
b1801e0e 1371 s += str;
3168a13f 1372
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1373 return s;
1374}
1375
1376// ===========================================================================
1377// other common string functions
1378// ===========================================================================
1379
dcb68102
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1380int wxString::Cmp(const wxString& s) const
1381{
1382 return compare(s);
1383}
1384
1385int wxString::Cmp(const wxChar* psz) const
1386{
1387 return compare(psz);
1388}
1389
1390static inline int wxDoCmpNoCase(const wxChar* s1, size_t l1,
1391 const wxChar* s2, size_t l2)
1392{
1393 size_t i;
1394
1395 if( l1 == l2 )
1396 {
1397 for(i = 0; i < l1; ++i)
1398 {
1399 if(wxTolower(s1[i]) != wxTolower(s2[i]))
1400 break;
1401 }
1402 return i == l1 ? 0 : s1[i] < s2[i] ? -1 : 1;
1403 }
1404 else if( l1 < l2 )
1405 {
1406 for(i = 0; i < l1; ++i)
1407 {
1408 if(wxTolower(s1[i]) != wxTolower(s2[i]))
1409 break;
1410 }
1411 return i == l1 ? -1 : s1[i] < s2[i] ? -1 : 1;
1412 }
1413 else if( l1 > l2 )
1414 {
1415 for(i = 0; i < l2; ++i)
1416 {
1417 if(wxTolower(s1[i]) != wxTolower(s2[i]))
1418 break;
1419 }
1420 return i == l2 ? 1 : s1[i] < s2[i] ? -1 : 1;
1421 }
1422
1423 wxFAIL; // must never get there
1424 return 0; // quiet compilers
1425}
1426
1427int wxString::CmpNoCase(const wxString& s) const
1428{
1429 return wxDoCmpNoCase(data(), length(), s.data(), s.length());
1430}
1431
1432int wxString::CmpNoCase(const wxChar* psz) const
1433{
1434 int nLen = wxStrlen(psz);
1435
1436 return wxDoCmpNoCase(data(), length(), psz, nLen);
1437}
1438
1439
b1ac3b56 1440#if wxUSE_UNICODE
e015c2a3 1441
cf6bedce
SC
1442#ifdef __MWERKS__
1443#ifndef __SCHAR_MAX__
1444#define __SCHAR_MAX__ 127
1445#endif
1446#endif
1447
e015c2a3 1448wxString wxString::FromAscii(const char *ascii)
b1ac3b56
RR
1449{
1450 if (!ascii)
1451 return wxEmptyString;
e015c2a3 1452
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RR
1453 size_t len = strlen( ascii );
1454 wxString res;
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1455
1456 if ( len )
1457 {
1458 wxStringBuffer buf(res, len);
1459
1460 wchar_t *dest = buf;
1461
1462 for ( ;; )
1463 {
1464 if ( (*dest++ = (wchar_t)(unsigned char)*ascii++) == L'\0' )
1465 break;
1466 }
1467 }
1468
b1ac3b56
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1469 return res;
1470}
1471
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1472wxString wxString::FromAscii(const char ascii)
1473{
1474 // What do we do with '\0' ?
1475
1476 wxString res;
1477 res += (wchar_t)(unsigned char) ascii;
8760bc65 1478
2b5f62a0
VZ
1479 return res;
1480}
1481
b1ac3b56
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1482const wxCharBuffer wxString::ToAscii() const
1483{
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VZ
1484 // this will allocate enough space for the terminating NUL too
1485 wxCharBuffer buffer(length());
b1ac3b56 1486
e015c2a3
VZ
1487 signed char *dest = (signed char *)buffer.data();
1488
1489 const wchar_t *pwc = c_str();
1490 for ( ;; )
b1ac3b56 1491 {
e015c2a3
VZ
1492 *dest++ = *pwc > SCHAR_MAX ? '_' : *pwc;
1493
1494 // the output string can't have embedded NULs anyhow, so we can safely
1495 // stop at first of them even if we do have any
1496 if ( !*pwc++ )
1497 break;
b1ac3b56 1498 }
e015c2a3 1499
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RR
1500 return buffer;
1501}
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VZ
1502
1503#endif // Unicode
b1ac3b56 1504
c801d85f 1505// extract string of length nCount starting at nFirst
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1506wxString wxString::Mid(size_t nFirst, size_t nCount) const
1507{
e87b7833 1508 size_t nLen = length();
30d9011f 1509
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1510 // default value of nCount is npos and means "till the end"
1511 if ( nCount == npos )
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VZ
1512 {
1513 nCount = nLen - nFirst;
1514 }
1515
c801d85f 1516 // out-of-bounds requests return sensible things
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1517 if ( nFirst + nCount > nLen )
1518 {
1519 nCount = nLen - nFirst;
1520 }
c801d85f 1521
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1522 if ( nFirst > nLen )
1523 {
1524 // AllocCopy() will return empty string
c801d85f 1525 nCount = 0;
30d9011f 1526 }
c801d85f 1527
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1528 wxString dest(*this, nFirst, nCount);
1529 if ( dest.length() != nCount ) {
b1801e0e
GD
1530 wxFAIL_MSG( _T("out of memory in wxString::Mid") );
1531 }
30d9011f 1532
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1533 return dest;
1534}
1535
e87b7833 1536// check that the string starts with prefix and return the rest of the string
d775fa82 1537// in the provided pointer if it is not NULL, otherwise return false
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BP
1538bool wxString::StartsWith(const wxChar *prefix, wxString *rest) const
1539{
1540 wxASSERT_MSG( prefix, _T("invalid parameter in wxString::StartsWith") );
1541
1542 // first check if the beginning of the string matches the prefix: note
1543 // that we don't have to check that we don't run out of this string as
1544 // when we reach the terminating NUL, either prefix string ends too (and
1545 // then it's ok) or we break out of the loop because there is no match
1546 const wxChar *p = c_str();
1547 while ( *prefix )
1548 {
1549 if ( *prefix++ != *p++ )
1550 {
1551 // no match
d775fa82 1552 return false;
f6bcfd97
BP
1553 }
1554 }
1555
1556 if ( rest )
1557 {
1558 // put the rest of the string into provided pointer
1559 *rest = p;
1560 }
1561
d775fa82 1562 return true;
f6bcfd97
BP
1563}
1564
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1565// extract nCount last (rightmost) characters
1566wxString wxString::Right(size_t nCount) const
1567{
e87b7833
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1568 if ( nCount > length() )
1569 nCount = length();
c801d85f 1570
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1571 wxString dest(*this, length() - nCount, nCount);
1572 if ( dest.length() != nCount ) {
b1801e0e
GD
1573 wxFAIL_MSG( _T("out of memory in wxString::Right") );
1574 }
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1575 return dest;
1576}
1577
1578// get all characters after the last occurence of ch
1579// (returns the whole string if ch not found)
2bb67b80 1580wxString wxString::AfterLast(wxChar ch) const
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1581{
1582 wxString str;
d775fa82 1583 int iPos = Find(ch, true);
3c67202d 1584 if ( iPos == wxNOT_FOUND )
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1585 str = *this;
1586 else
c8cfb486 1587 str = c_str() + iPos + 1;
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1588
1589 return str;
1590}
1591
1592// extract nCount first (leftmost) characters
1593wxString wxString::Left(size_t nCount) const
1594{
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1595 if ( nCount > length() )
1596 nCount = length();
c801d85f 1597
e87b7833
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1598 wxString dest(*this, 0, nCount);
1599 if ( dest.length() != nCount ) {
b1801e0e
GD
1600 wxFAIL_MSG( _T("out of memory in wxString::Left") );
1601 }
c801d85f
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1602 return dest;
1603}
1604
1605// get all characters before the first occurence of ch
1606// (returns the whole string if ch not found)
2bb67b80 1607wxString wxString::BeforeFirst(wxChar ch) const
c801d85f 1608{
e87b7833
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1609 int iPos = Find(ch);
1610 if ( iPos == wxNOT_FOUND ) iPos = length();
1611 return wxString(*this, 0, iPos);
c801d85f
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1612}
1613
1614/// get all characters before the last occurence of ch
1615/// (returns empty string if ch not found)
2bb67b80 1616wxString wxString::BeforeLast(wxChar ch) const
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1617{
1618 wxString str;
d775fa82 1619 int iPos = Find(ch, true);
3c67202d 1620 if ( iPos != wxNOT_FOUND && iPos != 0 )
d1c9bbf6 1621 str = wxString(c_str(), iPos);
c801d85f
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1622
1623 return str;
1624}
1625
1626/// get all characters after the first occurence of ch
1627/// (returns empty string if ch not found)
2bb67b80 1628wxString wxString::AfterFirst(wxChar ch) const
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1629{
1630 wxString str;
1631 int iPos = Find(ch);
3c67202d 1632 if ( iPos != wxNOT_FOUND )
c801d85f
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1633 str = c_str() + iPos + 1;
1634
1635 return str;
1636}
1637
1638// replace first (or all) occurences of some substring with another one
a8f1f1b2
VZ
1639size_t
1640wxString::Replace(const wxChar *szOld, const wxChar *szNew, bool bReplaceAll)
c801d85f 1641{
a8f1f1b2
VZ
1642 // if we tried to replace an empty string we'd enter an infinite loop below
1643 wxCHECK_MSG( szOld && *szOld && szNew, 0,
1644 _T("wxString::Replace(): invalid parameter") );
1645
c86f1403 1646 size_t uiCount = 0; // count of replacements made
c801d85f 1647
2bb67b80 1648 size_t uiOldLen = wxStrlen(szOld);
c801d85f
KB
1649
1650 wxString strTemp;
e87b7833 1651 const wxChar *pCurrent = c_str();
2bb67b80 1652 const wxChar *pSubstr;
223d09f6 1653 while ( *pCurrent != wxT('\0') ) {
2bb67b80 1654 pSubstr = wxStrstr(pCurrent, szOld);
c801d85f
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1655 if ( pSubstr == NULL ) {
1656 // strTemp is unused if no replacements were made, so avoid the copy
1657 if ( uiCount == 0 )
1658 return 0;
1659
1660 strTemp += pCurrent; // copy the rest
1661 break; // exit the loop
1662 }
1663 else {
1664 // take chars before match
e87b7833
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1665 size_type len = strTemp.length();
1666 strTemp.append(pCurrent, pSubstr - pCurrent);
1667 if ( strTemp.length() != (size_t)(len + pSubstr - pCurrent) ) {
b1801e0e
GD
1668 wxFAIL_MSG( _T("out of memory in wxString::Replace") );
1669 return 0;
1670 }
c801d85f
KB
1671 strTemp += szNew;
1672 pCurrent = pSubstr + uiOldLen; // restart after match
1673
1674 uiCount++;
1675
1676 // stop now?
1677 if ( !bReplaceAll ) {
1678 strTemp += pCurrent; // copy the rest
1679 break; // exit the loop
1680 }
1681 }
1682 }
1683
1684 // only done if there were replacements, otherwise would have returned above
e87b7833 1685 swap(strTemp);
c801d85f
KB
1686
1687 return uiCount;
1688}
1689
1690bool wxString::IsAscii() const
1691{
2bb67b80 1692 const wxChar *s = (const wxChar*) *this;
c801d85f 1693 while(*s){
d775fa82 1694 if(!isascii(*s)) return(false);
c801d85f
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1695 s++;
1696 }
d775fa82 1697 return(true);
c801d85f 1698}
dd1eaa89 1699
c801d85f
KB
1700bool wxString::IsWord() const
1701{
2bb67b80 1702 const wxChar *s = (const wxChar*) *this;
c801d85f 1703 while(*s){
d775fa82 1704 if(!wxIsalpha(*s)) return(false);
c801d85f
KB
1705 s++;
1706 }
d775fa82 1707 return(true);
c801d85f 1708}
dd1eaa89 1709
c801d85f
KB
1710bool wxString::IsNumber() const
1711{
2bb67b80 1712 const wxChar *s = (const wxChar*) *this;
2f74ed28
GT
1713 if (wxStrlen(s))
1714 if ((s[0] == '-') || (s[0] == '+')) s++;
c801d85f 1715 while(*s){
d775fa82 1716 if(!wxIsdigit(*s)) return(false);
c801d85f
KB
1717 s++;
1718 }
d775fa82 1719 return(true);
c801d85f
KB
1720}
1721
c801d85f
KB
1722wxString wxString::Strip(stripType w) const
1723{
1724 wxString s = *this;
d775fa82
WS
1725 if ( w & leading ) s.Trim(false);
1726 if ( w & trailing ) s.Trim(true);
c801d85f
KB
1727 return s;
1728}
1729
c801d85f
KB
1730// ---------------------------------------------------------------------------
1731// case conversion
1732// ---------------------------------------------------------------------------
1733
1734wxString& wxString::MakeUpper()
1735{
e87b7833
MB
1736 for ( iterator it = begin(), en = end(); it != en; ++it )
1737 *it = (wxChar)wxToupper(*it);
c801d85f
KB
1738
1739 return *this;
1740}
1741
1742wxString& wxString::MakeLower()
1743{
e87b7833
MB
1744 for ( iterator it = begin(), en = end(); it != en; ++it )
1745 *it = (wxChar)wxTolower(*it);
c801d85f
KB
1746
1747 return *this;
1748}
1749
1750// ---------------------------------------------------------------------------
1751// trimming and padding
1752// ---------------------------------------------------------------------------
1753
d775fa82 1754// some compilers (VC++ 6.0 not to name them) return true for a call to
576c608d
VZ
1755