1 /////////////////////////////////////////////////////////////////////////////
3 // Purpose: wxString class
4 // Author: Vadim Zeitlin
8 // Copyright: (c) 1998 Vadim Zeitlin <zeitlin@dptmaths.ens-cachan.fr>
9 // Licence: wxWindows license
10 /////////////////////////////////////////////////////////////////////////////
13 #pragma implementation "string.h"
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
23 // ===========================================================================
24 // headers, declarations, constants
25 // ===========================================================================
27 // For compilers that support precompilation, includes "wx.h".
28 #include "wx/wxprec.h"
36 #include "wx/string.h"
38 #include "wx/thread.h"
50 #include <wchar.h> // for wcsrtombs(), see comments where it's used
53 #ifdef WXSTRING_IS_WXOBJECT
54 IMPLEMENT_DYNAMIC_CLASS(wxString
, wxObject
)
55 #endif //WXSTRING_IS_WXOBJECT
58 #undef wxUSE_EXPERIMENTAL_PRINTF
59 #define wxUSE_EXPERIMENTAL_PRINTF 1
62 // allocating extra space for each string consumes more memory but speeds up
63 // the concatenation operations (nLen is the current string's length)
64 // NB: EXTRA_ALLOC must be >= 0!
65 #define EXTRA_ALLOC (19 - nLen % 16)
67 // ---------------------------------------------------------------------------
68 // static class variables definition
69 // ---------------------------------------------------------------------------
71 #ifdef wxSTD_STRING_COMPATIBILITY
72 const size_t wxString::npos
= wxSTRING_MAXLEN
;
73 #endif // wxSTD_STRING_COMPATIBILITY
75 // ----------------------------------------------------------------------------
77 // ----------------------------------------------------------------------------
79 // for an empty string, GetStringData() will return this address: this
80 // structure has the same layout as wxStringData and it's data() method will
81 // return the empty string (dummy pointer)
86 } g_strEmpty
= { {-1, 0, 0}, wxT('\0') };
88 #if defined(__VISAGECPP__) && __IBMCPP__ >= 400
89 // must define this static for VA or else you get multiply defined symbols everywhere
90 const unsigned int wxSTRING_MAXLEN
= UINT_MAX
- 100;
94 // empty C style string: points to 'string data' byte of g_strEmpty
95 extern const wxChar WXDLLEXPORT
*wxEmptyString
= &g_strEmpty
.dummy
;
97 // ----------------------------------------------------------------------------
98 // conditional compilation
99 // ----------------------------------------------------------------------------
101 #if !defined(__WXSW__) && wxUSE_UNICODE
102 #ifdef wxUSE_EXPERIMENTAL_PRINTF
103 #undef wxUSE_EXPERIMENTAL_PRINTF
105 #define wxUSE_EXPERIMENTAL_PRINTF 1
108 // we want to find out if the current platform supports vsnprintf()-like
109 // function: for Unix this is done with configure, for Windows we test the
110 // compiler explicitly.
112 // FIXME currently, this is only for ANSI (!Unicode) strings, so we call this
113 // function wxVsnprintfA (A for ANSI), should also find one for Unicode
114 // strings in Unicode build
116 #if (defined(__VISUALC__) || defined(wxUSE_NORLANDER_HEADERS)) && !defined(__MINGW32__)
117 #define wxVsnprintfA _vsnprintf
120 #ifdef HAVE_VSNPRINTF
121 #define wxVsnprintfA vsnprintf
123 #endif // Windows/!Windows
126 // in this case we'll use vsprintf() (which is ANSI and thus should be
127 // always available), but it's unsafe because it doesn't check for buffer
128 // size - so give a warning
129 #define wxVsnprintfA(buf, len, format, arg) vsprintf(buf, format, arg)
131 #if defined(__VISUALC__)
132 #pragma message("Using sprintf() because no snprintf()-like function defined")
133 #elif defined(__GNUG__) && !defined(__UNIX__)
134 #warning "Using sprintf() because no snprintf()-like function defined"
135 #elif defined(__MWERKS__)
136 #warning "Using sprintf() because no snprintf()-like function defined"
138 #endif // no vsnprintf
141 // AIX has vsnprintf, but there's no prototype in the system headers.
142 extern "C" int vsnprintf(char* str
, size_t n
, const char* format
, va_list ap
);
145 // ----------------------------------------------------------------------------
147 // ----------------------------------------------------------------------------
149 #if defined(wxSTD_STRING_COMPATIBILITY) && wxUSE_STD_IOSTREAM
151 // MS Visual C++ version 5.0 provides the new STL headers as well as the old
154 // ATTN: you can _not_ use both of these in the same program!
156 istream
& operator>>(istream
& is
, wxString
& WXUNUSED(str
))
161 streambuf
*sb
= is
.rdbuf();
164 int ch
= sb
->sbumpc ();
166 is
.setstate(ios::eofbit
);
169 else if ( isspace(ch
) ) {
181 if ( str
.length() == 0 )
182 is
.setstate(ios::failbit
);
187 ostream
& operator<<(ostream
& os
, const wxString
& str
)
193 #endif //std::string compatibility
195 extern int WXDLLEXPORT
wxVsnprintf(wxChar
*buf
, size_t len
,
196 const wxChar
*format
, va_list argptr
)
199 // FIXME should use wvsnprintf() or whatever if it's available
201 int iLen
= s
.PrintfV(format
, argptr
);
204 wxStrncpy(buf
, s
.c_str(), iLen
);
209 // vsnprintf() will not terminate the string with '\0' if there is not
210 // enough place, but we want the string to always be NUL terminated
211 int rc
= wxVsnprintfA(buf
, len
- 1, format
, argptr
);
218 #endif // Unicode/ANSI
221 extern int WXDLLEXPORT
wxSnprintf(wxChar
*buf
, size_t len
,
222 const wxChar
*format
, ...)
225 va_start(argptr
, format
);
227 int iLen
= wxVsnprintf(buf
, len
, format
, argptr
);
234 // ----------------------------------------------------------------------------
236 // ----------------------------------------------------------------------------
238 // this small class is used to gather statistics for performance tuning
239 //#define WXSTRING_STATISTICS
240 #ifdef WXSTRING_STATISTICS
244 Averager(const char *sz
) { m_sz
= sz
; m_nTotal
= m_nCount
= 0; }
246 { printf("wxString: average %s = %f\n", m_sz
, ((float)m_nTotal
)/m_nCount
); }
248 void Add(size_t n
) { m_nTotal
+= n
; m_nCount
++; }
251 size_t m_nCount
, m_nTotal
;
253 } g_averageLength("allocation size"),
254 g_averageSummandLength("summand length"),
255 g_averageConcatHit("hit probability in concat"),
256 g_averageInitialLength("initial string length");
258 #define STATISTICS_ADD(av, val) g_average##av.Add(val)
260 #define STATISTICS_ADD(av, val)
261 #endif // WXSTRING_STATISTICS
263 // ===========================================================================
264 // wxString class core
265 // ===========================================================================
267 // ---------------------------------------------------------------------------
269 // ---------------------------------------------------------------------------
271 // constructs string of <nLength> copies of character <ch>
272 wxString::wxString(wxChar ch
, size_t nLength
)
277 AllocBuffer(nLength
);
280 // memset only works on char
281 for (size_t n
=0; n
<nLength
; n
++) m_pchData
[n
] = ch
;
283 memset(m_pchData
, ch
, nLength
);
288 // takes nLength elements of psz starting at nPos
289 void wxString::InitWith(const wxChar
*psz
, size_t nPos
, size_t nLength
)
293 wxASSERT( nPos
<= wxStrlen(psz
) );
295 if ( nLength
== wxSTRING_MAXLEN
)
296 nLength
= wxStrlen(psz
+ nPos
);
298 STATISTICS_ADD(InitialLength
, nLength
);
301 // trailing '\0' is written in AllocBuffer()
302 AllocBuffer(nLength
);
303 memcpy(m_pchData
, psz
+ nPos
, nLength
*sizeof(wxChar
));
307 #ifdef wxSTD_STRING_COMPATIBILITY
309 // poor man's iterators are "void *" pointers
310 wxString::wxString(const void *pStart
, const void *pEnd
)
312 InitWith((const wxChar
*)pStart
, 0,
313 (const wxChar
*)pEnd
- (const wxChar
*)pStart
);
316 #endif //std::string compatibility
320 // from multibyte string
321 wxString::wxString(const char *psz
, wxMBConv
& conv
, size_t nLength
)
323 // first get necessary size
324 size_t nLen
= psz
? conv
.MB2WC((wchar_t *) NULL
, psz
, 0) : 0;
326 // nLength is number of *Unicode* characters here!
327 if ((nLen
!= (size_t)-1) && (nLen
> nLength
))
331 if ( (nLen
!= 0) && (nLen
!= (size_t)-1) ) {
333 conv
.MB2WC(m_pchData
, psz
, nLen
);
344 wxString::wxString(const wchar_t *pwz
)
346 // first get necessary size
347 size_t nLen
= pwz
? wxWC2MB((char *) NULL
, pwz
, 0) : 0;
350 if ( (nLen
!= 0) && (nLen
!= (size_t)-1) ) {
352 wxWC2MB(m_pchData
, pwz
, nLen
);
358 #endif // wxUSE_WCHAR_T
360 #endif // Unicode/ANSI
362 // ---------------------------------------------------------------------------
364 // ---------------------------------------------------------------------------
366 // allocates memory needed to store a C string of length nLen
367 void wxString::AllocBuffer(size_t nLen
)
369 // allocating 0 sized buffer doesn't make sense, all empty strings should
371 wxASSERT( nLen
> 0 );
373 // make sure that we don't overflow
374 wxASSERT( nLen
< (INT_MAX
/ sizeof(wxChar
)) -
375 (sizeof(wxStringData
) + EXTRA_ALLOC
+ 1) );
377 STATISTICS_ADD(Length
, nLen
);
380 // 1) one extra character for '\0' termination
381 // 2) sizeof(wxStringData) for housekeeping info
382 wxStringData
* pData
= (wxStringData
*)
383 malloc(sizeof(wxStringData
) + (nLen
+ EXTRA_ALLOC
+ 1)*sizeof(wxChar
));
385 pData
->nDataLength
= nLen
;
386 pData
->nAllocLength
= nLen
+ EXTRA_ALLOC
;
387 m_pchData
= pData
->data(); // data starts after wxStringData
388 m_pchData
[nLen
] = wxT('\0');
391 // must be called before changing this string
392 void wxString::CopyBeforeWrite()
394 wxStringData
* pData
= GetStringData();
396 if ( pData
->IsShared() ) {
397 pData
->Unlock(); // memory not freed because shared
398 size_t nLen
= pData
->nDataLength
;
400 memcpy(m_pchData
, pData
->data(), nLen
*sizeof(wxChar
));
403 wxASSERT( !GetStringData()->IsShared() ); // we must be the only owner
406 // must be called before replacing contents of this string
407 void wxString::AllocBeforeWrite(size_t nLen
)
409 wxASSERT( nLen
!= 0 ); // doesn't make any sense
411 // must not share string and must have enough space
412 wxStringData
* pData
= GetStringData();
413 if ( pData
->IsShared() || pData
->IsEmpty() ) {
414 // can't work with old buffer, get new one
419 if ( nLen
> pData
->nAllocLength
) {
420 // realloc the buffer instead of calling malloc() again, this is more
422 STATISTICS_ADD(Length
, nLen
);
426 wxStringData
*pDataOld
= pData
;
427 pData
= (wxStringData
*)
428 realloc(pData
, sizeof(wxStringData
) + (nLen
+ 1)*sizeof(wxChar
));
433 // FIXME we're going to crash...
437 pData
->nAllocLength
= nLen
;
438 m_pchData
= pData
->data();
441 // now we have enough space, just update the string length
442 pData
->nDataLength
= nLen
;
445 wxASSERT( !GetStringData()->IsShared() ); // we must be the only owner
448 // allocate enough memory for nLen characters
449 void wxString::Alloc(size_t nLen
)
451 wxStringData
*pData
= GetStringData();
452 if ( pData
->nAllocLength
<= nLen
) {
453 if ( pData
->IsEmpty() ) {
456 wxStringData
* pData
= (wxStringData
*)
457 malloc(sizeof(wxStringData
) + (nLen
+ 1)*sizeof(wxChar
));
459 pData
->nDataLength
= 0;
460 pData
->nAllocLength
= nLen
;
461 m_pchData
= pData
->data(); // data starts after wxStringData
462 m_pchData
[0u] = wxT('\0');
464 else if ( pData
->IsShared() ) {
465 pData
->Unlock(); // memory not freed because shared
466 size_t nOldLen
= pData
->nDataLength
;
468 memcpy(m_pchData
, pData
->data(), nOldLen
*sizeof(wxChar
));
473 wxStringData
*pDataOld
= pData
;
474 wxStringData
*p
= (wxStringData
*)
475 realloc(pData
, sizeof(wxStringData
) + (nLen
+ 1)*sizeof(wxChar
));
481 // FIXME what to do on memory error?
485 // it's not important if the pointer changed or not (the check for this
486 // is not faster than assigning to m_pchData in all cases)
487 p
->nAllocLength
= nLen
;
488 m_pchData
= p
->data();
491 //else: we've already got enough
494 // shrink to minimal size (releasing extra memory)
495 void wxString::Shrink()
497 wxStringData
*pData
= GetStringData();
499 // this variable is unused in release build, so avoid the compiler warning
500 // by just not declaring it
504 realloc(pData
, sizeof(wxStringData
) + (pData
->nDataLength
+ 1)*sizeof(wxChar
));
506 // we rely on a reasonable realloc() implementation here - so far I haven't
507 // seen any which wouldn't behave like this
509 wxASSERT( p
!= NULL
); // can't free memory?
510 wxASSERT( p
== pData
); // we're decrementing the size - block shouldn't move!
513 // get the pointer to writable buffer of (at least) nLen bytes
514 wxChar
*wxString::GetWriteBuf(size_t nLen
)
516 AllocBeforeWrite(nLen
);
518 wxASSERT( GetStringData()->nRefs
== 1 );
519 GetStringData()->Validate(FALSE
);
524 // put string back in a reasonable state after GetWriteBuf
525 void wxString::UngetWriteBuf()
527 GetStringData()->nDataLength
= wxStrlen(m_pchData
);
528 GetStringData()->Validate(TRUE
);
531 // ---------------------------------------------------------------------------
533 // ---------------------------------------------------------------------------
535 // all functions are inline in string.h
537 // ---------------------------------------------------------------------------
538 // assignment operators
539 // ---------------------------------------------------------------------------
541 // helper function: does real copy
542 void wxString::AssignCopy(size_t nSrcLen
, const wxChar
*pszSrcData
)
544 if ( nSrcLen
== 0 ) {
548 AllocBeforeWrite(nSrcLen
);
549 memcpy(m_pchData
, pszSrcData
, nSrcLen
*sizeof(wxChar
));
550 GetStringData()->nDataLength
= nSrcLen
;
551 m_pchData
[nSrcLen
] = wxT('\0');
555 // assigns one string to another
556 wxString
& wxString::operator=(const wxString
& stringSrc
)
558 wxASSERT( stringSrc
.GetStringData()->IsValid() );
560 // don't copy string over itself
561 if ( m_pchData
!= stringSrc
.m_pchData
) {
562 if ( stringSrc
.GetStringData()->IsEmpty() ) {
567 GetStringData()->Unlock();
568 m_pchData
= stringSrc
.m_pchData
;
569 GetStringData()->Lock();
576 // assigns a single character
577 wxString
& wxString::operator=(wxChar ch
)
584 wxString
& wxString::operator=(const wxChar
*psz
)
586 AssignCopy(wxStrlen(psz
), psz
);
592 // same as 'signed char' variant
593 wxString
& wxString::operator=(const unsigned char* psz
)
595 *this = (const char *)psz
;
600 wxString
& wxString::operator=(const wchar_t *pwz
)
610 // ---------------------------------------------------------------------------
611 // string concatenation
612 // ---------------------------------------------------------------------------
614 // add something to this string
615 void wxString::ConcatSelf(int nSrcLen
, const wxChar
*pszSrcData
)
617 STATISTICS_ADD(SummandLength
, nSrcLen
);
619 // concatenating an empty string is a NOP
621 wxStringData
*pData
= GetStringData();
622 size_t nLen
= pData
->nDataLength
;
623 size_t nNewLen
= nLen
+ nSrcLen
;
625 // alloc new buffer if current is too small
626 if ( pData
->IsShared() ) {
627 STATISTICS_ADD(ConcatHit
, 0);
629 // we have to allocate another buffer
630 wxStringData
* pOldData
= GetStringData();
631 AllocBuffer(nNewLen
);
632 memcpy(m_pchData
, pOldData
->data(), nLen
*sizeof(wxChar
));
635 else if ( nNewLen
> pData
->nAllocLength
) {
636 STATISTICS_ADD(ConcatHit
, 0);
638 // we have to grow the buffer
642 STATISTICS_ADD(ConcatHit
, 1);
644 // the buffer is already big enough
647 // should be enough space
648 wxASSERT( nNewLen
<= GetStringData()->nAllocLength
);
650 // fast concatenation - all is done in our buffer
651 memcpy(m_pchData
+ nLen
, pszSrcData
, nSrcLen
*sizeof(wxChar
));
653 m_pchData
[nNewLen
] = wxT('\0'); // put terminating '\0'
654 GetStringData()->nDataLength
= nNewLen
; // and fix the length
656 //else: the string to append was empty
660 * concatenation functions come in 5 flavours:
662 * char + string and string + char
663 * C str + string and string + C str
666 wxString
operator+(const wxString
& string1
, const wxString
& string2
)
668 wxASSERT( string1
.GetStringData()->IsValid() );
669 wxASSERT( string2
.GetStringData()->IsValid() );
671 wxString s
= string1
;
677 wxString
operator+(const wxString
& string
, wxChar ch
)
679 wxASSERT( string
.GetStringData()->IsValid() );
687 wxString
operator+(wxChar ch
, const wxString
& string
)
689 wxASSERT( string
.GetStringData()->IsValid() );
697 wxString
operator+(const wxString
& string
, const wxChar
*psz
)
699 wxASSERT( string
.GetStringData()->IsValid() );
702 s
.Alloc(wxStrlen(psz
) + string
.Len());
709 wxString
operator+(const wxChar
*psz
, const wxString
& string
)
711 wxASSERT( string
.GetStringData()->IsValid() );
714 s
.Alloc(wxStrlen(psz
) + string
.Len());
721 // ===========================================================================
722 // other common string functions
723 // ===========================================================================
725 // ---------------------------------------------------------------------------
726 // simple sub-string extraction
727 // ---------------------------------------------------------------------------
729 // helper function: clone the data attached to this string
730 void wxString::AllocCopy(wxString
& dest
, int nCopyLen
, int nCopyIndex
) const
732 if ( nCopyLen
== 0 ) {
736 dest
.AllocBuffer(nCopyLen
);
737 memcpy(dest
.m_pchData
, m_pchData
+ nCopyIndex
, nCopyLen
*sizeof(wxChar
));
741 // extract string of length nCount starting at nFirst
742 wxString
wxString::Mid(size_t nFirst
, size_t nCount
) const
744 wxStringData
*pData
= GetStringData();
745 size_t nLen
= pData
->nDataLength
;
747 // default value of nCount is wxSTRING_MAXLEN and means "till the end"
748 if ( nCount
== wxSTRING_MAXLEN
)
750 nCount
= nLen
- nFirst
;
753 // out-of-bounds requests return sensible things
754 if ( nFirst
+ nCount
> nLen
)
756 nCount
= nLen
- nFirst
;
761 // AllocCopy() will return empty string
766 AllocCopy(dest
, nCount
, nFirst
);
771 // extract nCount last (rightmost) characters
772 wxString
wxString::Right(size_t nCount
) const
774 if ( nCount
> (size_t)GetStringData()->nDataLength
)
775 nCount
= GetStringData()->nDataLength
;
778 AllocCopy(dest
, nCount
, GetStringData()->nDataLength
- nCount
);
782 // get all characters after the last occurence of ch
783 // (returns the whole string if ch not found)
784 wxString
wxString::AfterLast(wxChar ch
) const
787 int iPos
= Find(ch
, TRUE
);
788 if ( iPos
== wxNOT_FOUND
)
791 str
= c_str() + iPos
+ 1;
796 // extract nCount first (leftmost) characters
797 wxString
wxString::Left(size_t nCount
) const
799 if ( nCount
> (size_t)GetStringData()->nDataLength
)
800 nCount
= GetStringData()->nDataLength
;
803 AllocCopy(dest
, nCount
, 0);
807 // get all characters before the first occurence of ch
808 // (returns the whole string if ch not found)
809 wxString
wxString::BeforeFirst(wxChar ch
) const
812 for ( const wxChar
*pc
= m_pchData
; *pc
!= wxT('\0') && *pc
!= ch
; pc
++ )
818 /// get all characters before the last occurence of ch
819 /// (returns empty string if ch not found)
820 wxString
wxString::BeforeLast(wxChar ch
) const
823 int iPos
= Find(ch
, TRUE
);
824 if ( iPos
!= wxNOT_FOUND
&& iPos
!= 0 )
825 str
= wxString(c_str(), iPos
);
830 /// get all characters after the first occurence of ch
831 /// (returns empty string if ch not found)
832 wxString
wxString::AfterFirst(wxChar ch
) const
836 if ( iPos
!= wxNOT_FOUND
)
837 str
= c_str() + iPos
+ 1;
842 // replace first (or all) occurences of some substring with another one
843 size_t wxString::Replace(const wxChar
*szOld
, const wxChar
*szNew
, bool bReplaceAll
)
845 size_t uiCount
= 0; // count of replacements made
847 size_t uiOldLen
= wxStrlen(szOld
);
850 const wxChar
*pCurrent
= m_pchData
;
851 const wxChar
*pSubstr
;
852 while ( *pCurrent
!= wxT('\0') ) {
853 pSubstr
= wxStrstr(pCurrent
, szOld
);
854 if ( pSubstr
== NULL
) {
855 // strTemp is unused if no replacements were made, so avoid the copy
859 strTemp
+= pCurrent
; // copy the rest
860 break; // exit the loop
863 // take chars before match
864 strTemp
.ConcatSelf(pSubstr
- pCurrent
, pCurrent
);
866 pCurrent
= pSubstr
+ uiOldLen
; // restart after match
871 if ( !bReplaceAll
) {
872 strTemp
+= pCurrent
; // copy the rest
873 break; // exit the loop
878 // only done if there were replacements, otherwise would have returned above
884 bool wxString::IsAscii() const
886 const wxChar
*s
= (const wxChar
*) *this;
888 if(!isascii(*s
)) return(FALSE
);
894 bool wxString::IsWord() const
896 const wxChar
*s
= (const wxChar
*) *this;
898 if(!wxIsalpha(*s
)) return(FALSE
);
904 bool wxString::IsNumber() const
906 const wxChar
*s
= (const wxChar
*) *this;
908 if(!wxIsdigit(*s
)) return(FALSE
);
914 wxString
wxString::Strip(stripType w
) const
917 if ( w
& leading
) s
.Trim(FALSE
);
918 if ( w
& trailing
) s
.Trim(TRUE
);
922 // ---------------------------------------------------------------------------
924 // ---------------------------------------------------------------------------
926 wxString
& wxString::MakeUpper()
930 for ( wxChar
*p
= m_pchData
; *p
; p
++ )
931 *p
= (wxChar
)wxToupper(*p
);
936 wxString
& wxString::MakeLower()
940 for ( wxChar
*p
= m_pchData
; *p
; p
++ )
941 *p
= (wxChar
)wxTolower(*p
);
946 // ---------------------------------------------------------------------------
947 // trimming and padding
948 // ---------------------------------------------------------------------------
950 // trims spaces (in the sense of isspace) from left or right side
951 wxString
& wxString::Trim(bool bFromRight
)
953 // first check if we're going to modify the string at all
956 (bFromRight
&& wxIsspace(GetChar(Len() - 1))) ||
957 (!bFromRight
&& wxIsspace(GetChar(0u)))
961 // ok, there is at least one space to trim
966 // find last non-space character
967 wxChar
*psz
= m_pchData
+ GetStringData()->nDataLength
- 1;
968 while ( wxIsspace(*psz
) && (psz
>= m_pchData
) )
971 // truncate at trailing space start
973 GetStringData()->nDataLength
= psz
- m_pchData
;
977 // find first non-space character
978 const wxChar
*psz
= m_pchData
;
979 while ( wxIsspace(*psz
) )
982 // fix up data and length
983 int nDataLength
= GetStringData()->nDataLength
- (psz
- (const wxChar
*) m_pchData
);
984 memmove(m_pchData
, psz
, (nDataLength
+ 1)*sizeof(wxChar
));
985 GetStringData()->nDataLength
= nDataLength
;
992 // adds nCount characters chPad to the string from either side
993 wxString
& wxString::Pad(size_t nCount
, wxChar chPad
, bool bFromRight
)
995 wxString
s(chPad
, nCount
);
1008 // truncate the string
1009 wxString
& wxString::Truncate(size_t uiLen
)
1011 if ( uiLen
< Len() ) {
1014 *(m_pchData
+ uiLen
) = wxT('\0');
1015 GetStringData()->nDataLength
= uiLen
;
1017 //else: nothing to do, string is already short enough
1022 // ---------------------------------------------------------------------------
1023 // finding (return wxNOT_FOUND if not found and index otherwise)
1024 // ---------------------------------------------------------------------------
1027 int wxString::Find(wxChar ch
, bool bFromEnd
) const
1029 const wxChar
*psz
= bFromEnd
? wxStrrchr(m_pchData
, ch
) : wxStrchr(m_pchData
, ch
);
1031 return (psz
== NULL
) ? wxNOT_FOUND
: psz
- (const wxChar
*) m_pchData
;
1034 // find a sub-string (like strstr)
1035 int wxString::Find(const wxChar
*pszSub
) const
1037 const wxChar
*psz
= wxStrstr(m_pchData
, pszSub
);
1039 return (psz
== NULL
) ? wxNOT_FOUND
: psz
- (const wxChar
*) m_pchData
;
1042 // ----------------------------------------------------------------------------
1043 // conversion to numbers
1044 // ----------------------------------------------------------------------------
1046 bool wxString::ToLong(long *val
) const
1048 wxCHECK_MSG( val
, FALSE
, _T("NULL pointer in wxString::ToLong") );
1050 const wxChar
*start
= c_str();
1052 *val
= wxStrtol(start
, &end
, 10);
1054 // return TRUE only if scan was stopped by the terminating NUL and if the
1055 // string was not empty to start with
1056 return !*end
&& (end
!= start
);
1059 bool wxString::ToULong(unsigned long *val
) const
1061 wxCHECK_MSG( val
, FALSE
, _T("NULL pointer in wxString::ToULong") );
1063 const wxChar
*start
= c_str();
1065 *val
= wxStrtoul(start
, &end
, 10);
1067 // return TRUE only if scan was stopped by the terminating NUL and if the
1068 // string was not empty to start with
1069 return !*end
&& (end
!= start
);
1072 bool wxString::ToDouble(double *val
) const
1074 wxCHECK_MSG( val
, FALSE
, _T("NULL pointer in wxString::ToDouble") );
1076 const wxChar
*start
= c_str();
1078 *val
= wxStrtod(start
, &end
);
1080 // return TRUE only if scan was stopped by the terminating NUL and if the
1081 // string was not empty to start with
1082 return !*end
&& (end
!= start
);
1085 // ---------------------------------------------------------------------------
1087 // ---------------------------------------------------------------------------
1090 wxString
wxString::Format(const wxChar
*pszFormat
, ...)
1093 va_start(argptr
, pszFormat
);
1096 s
.PrintfV(pszFormat
, argptr
);
1104 wxString
wxString::FormatV(const wxChar
*pszFormat
, va_list argptr
)
1107 s
.Printf(pszFormat
, argptr
);
1111 int wxString::Printf(const wxChar
*pszFormat
, ...)
1114 va_start(argptr
, pszFormat
);
1116 int iLen
= PrintfV(pszFormat
, argptr
);
1123 int wxString::PrintfV(const wxChar
* pszFormat
, va_list argptr
)
1125 #if wxUSE_EXPERIMENTAL_PRINTF
1126 // the new implementation
1128 // buffer to avoid dynamic memory allocation each time for small strings
1129 char szScratch
[1024];
1132 for (size_t n
= 0; pszFormat
[n
]; n
++)
1133 if (pszFormat
[n
] == wxT('%')) {
1134 static char s_szFlags
[256] = "%";
1136 bool adj_left
= FALSE
, in_prec
= FALSE
,
1137 prec_dot
= FALSE
, done
= FALSE
;
1139 size_t min_width
= 0, max_width
= wxSTRING_MAXLEN
;
1141 #define CHECK_PREC if (in_prec && !prec_dot) { s_szFlags[flagofs++] = '.'; prec_dot = TRUE; }
1142 switch (pszFormat
[++n
]) {
1156 s_szFlags
[flagofs
++] = pszFormat
[n
];
1161 s_szFlags
[flagofs
++] = pszFormat
[n
];
1168 // dot will be auto-added to s_szFlags if non-negative number follows
1173 s_szFlags
[flagofs
++] = pszFormat
[n
];
1178 s_szFlags
[flagofs
++] = pszFormat
[n
];
1184 s_szFlags
[flagofs
++] = pszFormat
[n
];
1189 s_szFlags
[flagofs
++] = pszFormat
[n
];
1193 int len
= va_arg(argptr
, int);
1200 adj_left
= !adj_left
;
1201 s_szFlags
[flagofs
++] = '-';
1206 flagofs
+= ::sprintf(s_szFlags
+flagofs
,"%d",len
);
1209 case wxT('1'): case wxT('2'): case wxT('3'):
1210 case wxT('4'): case wxT('5'): case wxT('6'):
1211 case wxT('7'): case wxT('8'): case wxT('9'):
1215 while ((pszFormat
[n
]>=wxT('0')) && (pszFormat
[n
]<=wxT('9'))) {
1216 s_szFlags
[flagofs
++] = pszFormat
[n
];
1217 len
= len
*10 + (pszFormat
[n
] - wxT('0'));
1220 if (in_prec
) max_width
= len
;
1221 else min_width
= len
;
1222 n
--; // the main loop pre-increments n again
1232 s_szFlags
[flagofs
++] = pszFormat
[n
];
1233 s_szFlags
[flagofs
] = '\0';
1235 int val
= va_arg(argptr
, int);
1236 ::sprintf(szScratch
, s_szFlags
, val
);
1238 else if (ilen
== -1) {
1239 short int val
= va_arg(argptr
, short int);
1240 ::sprintf(szScratch
, s_szFlags
, val
);
1242 else if (ilen
== 1) {
1243 long int val
= va_arg(argptr
, long int);
1244 ::sprintf(szScratch
, s_szFlags
, val
);
1246 else if (ilen
== 2) {
1247 #if SIZEOF_LONG_LONG
1248 long long int val
= va_arg(argptr
, long long int);
1249 ::sprintf(szScratch
, s_szFlags
, val
);
1251 long int val
= va_arg(argptr
, long int);
1252 ::sprintf(szScratch
, s_szFlags
, val
);
1255 else if (ilen
== 3) {
1256 size_t val
= va_arg(argptr
, size_t);
1257 ::sprintf(szScratch
, s_szFlags
, val
);
1259 *this += wxString(szScratch
);
1268 s_szFlags
[flagofs
++] = pszFormat
[n
];
1269 s_szFlags
[flagofs
] = '\0';
1271 long double val
= va_arg(argptr
, long double);
1272 ::sprintf(szScratch
, s_szFlags
, val
);
1274 double val
= va_arg(argptr
, double);
1275 ::sprintf(szScratch
, s_szFlags
, val
);
1277 *this += wxString(szScratch
);
1282 void *val
= va_arg(argptr
, void *);
1284 s_szFlags
[flagofs
++] = pszFormat
[n
];
1285 s_szFlags
[flagofs
] = '\0';
1286 ::sprintf(szScratch
, s_szFlags
, val
);
1287 *this += wxString(szScratch
);
1293 wxChar val
= va_arg(argptr
, int);
1294 // we don't need to honor padding here, do we?
1301 // wx extension: we'll let %hs mean non-Unicode strings
1302 char *val
= va_arg(argptr
, char *);
1304 // ASCII->Unicode constructor handles max_width right
1305 wxString
s(val
, wxConvLibc
, max_width
);
1307 size_t len
= wxSTRING_MAXLEN
;
1309 for (len
= 0; val
[len
] && (len
<max_width
); len
++);
1310 } else val
= wxT("(null)");
1311 wxString
s(val
, len
);
1313 if (s
.Len() < min_width
)
1314 s
.Pad(min_width
- s
.Len(), wxT(' '), adj_left
);
1317 wxChar
*val
= va_arg(argptr
, wxChar
*);
1318 size_t len
= wxSTRING_MAXLEN
;
1320 for (len
= 0; val
[len
] && (len
<max_width
); len
++);
1321 } else val
= wxT("(null)");
1322 wxString
s(val
, len
);
1323 if (s
.Len() < min_width
)
1324 s
.Pad(min_width
- s
.Len(), wxT(' '), adj_left
);
1331 int *val
= va_arg(argptr
, int *);
1334 else if (ilen
== -1) {
1335 short int *val
= va_arg(argptr
, short int *);
1338 else if (ilen
>= 1) {
1339 long int *val
= va_arg(argptr
, long int *);
1345 if (wxIsalpha(pszFormat
[n
]))
1346 // probably some flag not taken care of here yet
1347 s_szFlags
[flagofs
++] = pszFormat
[n
];
1350 *this += wxT('%'); // just to pass the glibc tst-printf.c
1358 } else *this += pszFormat
[n
];
1361 // buffer to avoid dynamic memory allocation each time for small strings
1362 char szScratch
[1024];
1364 // NB: wxVsnprintf() may return either less than the buffer size or -1 if
1365 // there is not enough place depending on implementation
1366 int iLen
= wxVsnprintfA(szScratch
, WXSIZEOF(szScratch
), pszFormat
, argptr
);
1368 // the whole string is in szScratch
1372 bool outOfMemory
= FALSE
;
1373 int size
= 2*WXSIZEOF(szScratch
);
1374 while ( !outOfMemory
) {
1375 char *buf
= GetWriteBuf(size
);
1377 iLen
= wxVsnprintfA(buf
, size
, pszFormat
, argptr
);
1384 // ok, there was enough space
1388 // still not enough, double it again
1392 if ( outOfMemory
) {
1397 #endif // wxUSE_EXPERIMENTAL_PRINTF/!wxUSE_EXPERIMENTAL_PRINTF
1402 // ----------------------------------------------------------------------------
1403 // misc other operations
1404 // ----------------------------------------------------------------------------
1406 // returns TRUE if the string matches the pattern which may contain '*' and
1407 // '?' metacharacters (as usual, '?' matches any character and '*' any number
1409 bool wxString::Matches(const wxChar
*pszMask
) const
1411 // check char by char
1412 const wxChar
*pszTxt
;
1413 for ( pszTxt
= c_str(); *pszMask
!= wxT('\0'); pszMask
++, pszTxt
++ ) {
1414 switch ( *pszMask
) {
1416 if ( *pszTxt
== wxT('\0') )
1419 // pszText and pszMask will be incremented in the loop statement
1425 // ignore special chars immediately following this one
1426 while ( *pszMask
== wxT('*') || *pszMask
== wxT('?') )
1429 // if there is nothing more, match
1430 if ( *pszMask
== wxT('\0') )
1433 // are there any other metacharacters in the mask?
1435 const wxChar
*pEndMask
= wxStrpbrk(pszMask
, wxT("*?"));
1437 if ( pEndMask
!= NULL
) {
1438 // we have to match the string between two metachars
1439 uiLenMask
= pEndMask
- pszMask
;
1442 // we have to match the remainder of the string
1443 uiLenMask
= wxStrlen(pszMask
);
1446 wxString
strToMatch(pszMask
, uiLenMask
);
1447 const wxChar
* pMatch
= wxStrstr(pszTxt
, strToMatch
);
1448 if ( pMatch
== NULL
)
1451 // -1 to compensate "++" in the loop
1452 pszTxt
= pMatch
+ uiLenMask
- 1;
1453 pszMask
+= uiLenMask
- 1;
1458 if ( *pszMask
!= *pszTxt
)
1464 // match only if nothing left
1465 return *pszTxt
== wxT('\0');
1468 // Count the number of chars
1469 int wxString::Freq(wxChar ch
) const
1473 for (int i
= 0; i
< len
; i
++)
1475 if (GetChar(i
) == ch
)
1481 // convert to upper case, return the copy of the string
1482 wxString
wxString::Upper() const
1483 { wxString
s(*this); return s
.MakeUpper(); }
1485 // convert to lower case, return the copy of the string
1486 wxString
wxString::Lower() const { wxString
s(*this); return s
.MakeLower(); }
1488 int wxString::sprintf(const wxChar
*pszFormat
, ...)
1491 va_start(argptr
, pszFormat
);
1492 int iLen
= PrintfV(pszFormat
, argptr
);
1497 // ---------------------------------------------------------------------------
1498 // standard C++ library string functions
1499 // ---------------------------------------------------------------------------
1500 #ifdef wxSTD_STRING_COMPATIBILITY
1502 wxString
& wxString::insert(size_t nPos
, const wxString
& str
)
1504 wxASSERT( str
.GetStringData()->IsValid() );
1505 wxASSERT( nPos
<= Len() );
1507 if ( !str
.IsEmpty() ) {
1509 wxChar
*pc
= strTmp
.GetWriteBuf(Len() + str
.Len());
1510 wxStrncpy(pc
, c_str(), nPos
);
1511 wxStrcpy(pc
+ nPos
, str
);
1512 wxStrcpy(pc
+ nPos
+ str
.Len(), c_str() + nPos
);
1513 strTmp
.UngetWriteBuf();
1520 size_t wxString::find(const wxString
& str
, size_t nStart
) const
1522 wxASSERT( str
.GetStringData()->IsValid() );
1523 wxASSERT( nStart
<= Len() );
1525 const wxChar
*p
= wxStrstr(c_str() + nStart
, str
);
1527 return p
== NULL
? npos
: p
- c_str();
1530 // VC++ 1.5 can't cope with the default argument in the header.
1531 #if !defined(__VISUALC__) || defined(__WIN32__)
1532 size_t wxString::find(const wxChar
* sz
, size_t nStart
, size_t n
) const
1534 return find(wxString(sz
, n
), nStart
);
1538 // Gives a duplicate symbol (presumably a case-insensitivity problem)
1539 #if !defined(__BORLANDC__)
1540 size_t wxString::find(wxChar ch
, size_t nStart
) const
1542 wxASSERT( nStart
<= Len() );
1544 const wxChar
*p
= wxStrchr(c_str() + nStart
, ch
);
1546 return p
== NULL
? npos
: p
- c_str();
1550 size_t wxString::rfind(const wxString
& str
, size_t nStart
) const
1552 wxASSERT( str
.GetStringData()->IsValid() );
1553 wxASSERT( nStart
<= Len() );
1555 // TODO could be made much quicker than that
1556 const wxChar
*p
= c_str() + (nStart
== npos
? Len() : nStart
);
1557 while ( p
>= c_str() + str
.Len() ) {
1558 if ( wxStrncmp(p
- str
.Len(), str
, str
.Len()) == 0 )
1559 return p
- str
.Len() - c_str();
1566 // VC++ 1.5 can't cope with the default argument in the header.
1567 #if !defined(__VISUALC__) || defined(__WIN32__)
1568 size_t wxString::rfind(const wxChar
* sz
, size_t nStart
, size_t n
) const
1570 return rfind(wxString(sz
, n
== npos
? 0 : n
), nStart
);
1573 size_t wxString::rfind(wxChar ch
, size_t nStart
) const
1575 if ( nStart
== npos
)
1581 wxASSERT( nStart
<= Len() );
1584 const wxChar
*p
= wxStrrchr(c_str(), ch
);
1589 size_t result
= p
- c_str();
1590 return ( result
> nStart
) ? npos
: result
;
1594 size_t wxString::find_first_of(const wxChar
* sz
, size_t nStart
) const
1596 const wxChar
*start
= c_str() + nStart
;
1597 const wxChar
*firstOf
= wxStrpbrk(start
, sz
);
1599 return firstOf
- start
;
1604 size_t wxString::find_last_of(const wxChar
* sz
, size_t nStart
) const
1606 if ( nStart
== npos
)
1612 wxASSERT( nStart
<= Len() );
1615 for ( const wxChar
*p
= c_str() + length() - 1; p
>= c_str(); p
-- )
1617 if ( wxStrchr(sz
, *p
) )
1624 size_t wxString::find_first_not_of(const wxChar
* sz
, size_t nStart
) const
1626 if ( nStart
== npos
)
1632 wxASSERT( nStart
<= Len() );
1635 size_t nAccept
= wxStrspn(c_str() + nStart
, sz
);
1636 if ( nAccept
>= length() - nStart
)
1642 size_t wxString::find_first_not_of(wxChar ch
, size_t nStart
) const
1644 wxASSERT( nStart
<= Len() );
1646 for ( const wxChar
*p
= c_str() + nStart
; *p
; p
++ )
1655 size_t wxString::find_last_not_of(const wxChar
* sz
, size_t nStart
) const
1657 if ( nStart
== npos
)
1663 wxASSERT( nStart
<= Len() );
1666 for ( const wxChar
*p
= c_str() + nStart
- 1; p
>= c_str(); p
-- )
1668 if ( !wxStrchr(sz
, *p
) )
1675 size_t wxString::find_last_not_of(wxChar ch
, size_t nStart
) const
1677 if ( nStart
== npos
)
1683 wxASSERT( nStart
<= Len() );
1686 for ( const wxChar
*p
= c_str() + nStart
- 1; p
>= c_str(); p
-- )
1695 wxString
& wxString::erase(size_t nStart
, size_t nLen
)
1697 wxString
strTmp(c_str(), nStart
);
1698 if ( nLen
!= npos
) {
1699 wxASSERT( nStart
+ nLen
<= Len() );
1701 strTmp
.append(c_str() + nStart
+ nLen
);
1708 wxString
& wxString::replace(size_t nStart
, size_t nLen
, const wxChar
*sz
)
1710 wxASSERT( nStart
+ nLen
<= wxStrlen(sz
) );
1714 strTmp
.append(c_str(), nStart
);
1716 strTmp
.append(c_str() + nStart
+ nLen
);
1722 wxString
& wxString::replace(size_t nStart
, size_t nLen
, size_t nCount
, wxChar ch
)
1724 return replace(nStart
, nLen
, wxString(ch
, nCount
));
1727 wxString
& wxString::replace(size_t nStart
, size_t nLen
,
1728 const wxString
& str
, size_t nStart2
, size_t nLen2
)
1730 return replace(nStart
, nLen
, str
.substr(nStart2
, nLen2
));
1733 wxString
& wxString::replace(size_t nStart
, size_t nLen
,
1734 const wxChar
* sz
, size_t nCount
)
1736 return replace(nStart
, nLen
, wxString(sz
, nCount
));
1739 #endif //std::string compatibility
1741 // ============================================================================
1743 // ============================================================================
1745 // size increment = max(50% of current size, ARRAY_MAXSIZE_INCREMENT)
1746 #define ARRAY_MAXSIZE_INCREMENT 4096
1747 #ifndef ARRAY_DEFAULT_INITIAL_SIZE // also defined in dynarray.h
1748 #define ARRAY_DEFAULT_INITIAL_SIZE (16)
1751 #define STRING(p) ((wxString *)(&(p)))
1754 wxArrayString::wxArrayString(bool autoSort
)
1758 m_pItems
= (wxChar
**) NULL
;
1759 m_autoSort
= autoSort
;
1763 wxArrayString::wxArrayString(const wxArrayString
& src
)
1767 m_pItems
= (wxChar
**) NULL
;
1768 m_autoSort
= src
.m_autoSort
;
1773 // assignment operator
1774 wxArrayString
& wxArrayString::operator=(const wxArrayString
& src
)
1784 void wxArrayString::Copy(const wxArrayString
& src
)
1786 if ( src
.m_nCount
> ARRAY_DEFAULT_INITIAL_SIZE
)
1787 Alloc(src
.m_nCount
);
1789 for ( size_t n
= 0; n
< src
.m_nCount
; n
++ )
1794 void wxArrayString::Grow()
1796 // only do it if no more place
1797 if( m_nCount
== m_nSize
) {
1798 if( m_nSize
== 0 ) {
1799 // was empty, alloc some memory
1800 m_nSize
= ARRAY_DEFAULT_INITIAL_SIZE
;
1801 m_pItems
= new wxChar
*[m_nSize
];
1804 // otherwise when it's called for the first time, nIncrement would be 0
1805 // and the array would never be expanded
1806 #if defined(__VISAGECPP__) && defined(__WXDEBUG__)
1807 int array_size
= ARRAY_DEFAULT_INITIAL_SIZE
;
1808 wxASSERT( array_size
!= 0 );
1810 wxASSERT( ARRAY_DEFAULT_INITIAL_SIZE
!= 0 );
1813 // add 50% but not too much
1814 size_t nIncrement
= m_nSize
< ARRAY_DEFAULT_INITIAL_SIZE
1815 ? ARRAY_DEFAULT_INITIAL_SIZE
: m_nSize
>> 1;
1816 if ( nIncrement
> ARRAY_MAXSIZE_INCREMENT
)
1817 nIncrement
= ARRAY_MAXSIZE_INCREMENT
;
1818 m_nSize
+= nIncrement
;
1819 wxChar
**pNew
= new wxChar
*[m_nSize
];
1821 // copy data to new location
1822 memcpy(pNew
, m_pItems
, m_nCount
*sizeof(wxChar
*));
1824 // delete old memory (but do not release the strings!)
1825 wxDELETEA(m_pItems
);
1832 void wxArrayString::Free()
1834 for ( size_t n
= 0; n
< m_nCount
; n
++ ) {
1835 STRING(m_pItems
[n
])->GetStringData()->Unlock();
1839 // deletes all the strings from the list
1840 void wxArrayString::Empty()
1847 // as Empty, but also frees memory
1848 void wxArrayString::Clear()
1855 wxDELETEA(m_pItems
);
1859 wxArrayString::~wxArrayString()
1863 wxDELETEA(m_pItems
);
1866 // pre-allocates memory (frees the previous data!)
1867 void wxArrayString::Alloc(size_t nSize
)
1869 wxASSERT( nSize
> 0 );
1871 // only if old buffer was not big enough
1872 if ( nSize
> m_nSize
) {
1874 wxDELETEA(m_pItems
);
1875 m_pItems
= new wxChar
*[nSize
];
1882 // minimizes the memory usage by freeing unused memory
1883 void wxArrayString::Shrink()
1885 // only do it if we have some memory to free
1886 if( m_nCount
< m_nSize
) {
1887 // allocates exactly as much memory as we need
1888 wxChar
**pNew
= new wxChar
*[m_nCount
];
1890 // copy data to new location
1891 memcpy(pNew
, m_pItems
, m_nCount
*sizeof(wxChar
*));
1897 // searches the array for an item (forward or backwards)
1898 int wxArrayString::Index(const wxChar
*sz
, bool bCase
, bool bFromEnd
) const
1901 // use binary search in the sorted array
1902 wxASSERT_MSG( bCase
&& !bFromEnd
,
1903 wxT("search parameters ignored for auto sorted array") );
1912 res
= wxStrcmp(sz
, m_pItems
[i
]);
1924 // use linear search in unsorted array
1926 if ( m_nCount
> 0 ) {
1927 size_t ui
= m_nCount
;
1929 if ( STRING(m_pItems
[--ui
])->IsSameAs(sz
, bCase
) )
1936 for( size_t ui
= 0; ui
< m_nCount
; ui
++ ) {
1937 if( STRING(m_pItems
[ui
])->IsSameAs(sz
, bCase
) )
1946 // add item at the end
1947 size_t wxArrayString::Add(const wxString
& str
)
1950 // insert the string at the correct position to keep the array sorted
1958 res
= wxStrcmp(str
, m_pItems
[i
]);
1969 wxASSERT_MSG( lo
== hi
, wxT("binary search broken") );
1976 wxASSERT( str
.GetStringData()->IsValid() );
1980 // the string data must not be deleted!
1981 str
.GetStringData()->Lock();
1984 m_pItems
[m_nCount
] = (wxChar
*)str
.c_str(); // const_cast
1990 // add item at the given position
1991 void wxArrayString::Insert(const wxString
& str
, size_t nIndex
)
1993 wxASSERT( str
.GetStringData()->IsValid() );
1995 wxCHECK_RET( nIndex
<= m_nCount
, wxT("bad index in wxArrayString::Insert") );
1999 memmove(&m_pItems
[nIndex
+ 1], &m_pItems
[nIndex
],
2000 (m_nCount
- nIndex
)*sizeof(wxChar
*));
2002 str
.GetStringData()->Lock();
2003 m_pItems
[nIndex
] = (wxChar
*)str
.c_str();
2008 // removes item from array (by index)
2009 void wxArrayString::Remove(size_t nIndex
)
2011 wxCHECK_RET( nIndex
<= m_nCount
, wxT("bad index in wxArrayString::Remove") );
2014 Item(nIndex
).GetStringData()->Unlock();
2016 memmove(&m_pItems
[nIndex
], &m_pItems
[nIndex
+ 1],
2017 (m_nCount
- nIndex
- 1)*sizeof(wxChar
*));
2021 // removes item from array (by value)
2022 void wxArrayString::Remove(const wxChar
*sz
)
2024 int iIndex
= Index(sz
);
2026 wxCHECK_RET( iIndex
!= wxNOT_FOUND
,
2027 wxT("removing inexistent element in wxArrayString::Remove") );
2032 // ----------------------------------------------------------------------------
2034 // ----------------------------------------------------------------------------
2036 // we can only sort one array at a time with the quick-sort based
2039 // need a critical section to protect access to gs_compareFunction and
2040 // gs_sortAscending variables
2041 static wxCriticalSection
*gs_critsectStringSort
= NULL
;
2043 // call this before the value of the global sort vars is changed/after
2044 // you're finished with them
2045 #define START_SORT() wxASSERT( !gs_critsectStringSort ); \
2046 gs_critsectStringSort = new wxCriticalSection; \
2047 gs_critsectStringSort->Enter()
2048 #define END_SORT() gs_critsectStringSort->Leave(); \
2049 delete gs_critsectStringSort; \
2050 gs_critsectStringSort = NULL
2052 #define START_SORT()
2054 #endif // wxUSE_THREADS
2056 // function to use for string comparaison
2057 static wxArrayString::CompareFunction gs_compareFunction
= NULL
;
2059 // if we don't use the compare function, this flag tells us if we sort the
2060 // array in ascending or descending order
2061 static bool gs_sortAscending
= TRUE
;
2063 // function which is called by quick sort
2064 static int LINKAGEMODE
wxStringCompareFunction(const void *first
, const void *second
)
2066 wxString
*strFirst
= (wxString
*)first
;
2067 wxString
*strSecond
= (wxString
*)second
;
2069 if ( gs_compareFunction
) {
2070 return gs_compareFunction(*strFirst
, *strSecond
);
2073 // maybe we should use wxStrcoll
2074 int result
= wxStrcmp(strFirst
->c_str(), strSecond
->c_str());
2076 return gs_sortAscending
? result
: -result
;
2080 // sort array elements using passed comparaison function
2081 void wxArrayString::Sort(CompareFunction compareFunction
)
2085 wxASSERT( !gs_compareFunction
); // must have been reset to NULL
2086 gs_compareFunction
= compareFunction
;
2093 void wxArrayString::Sort(bool reverseOrder
)
2097 wxASSERT( !gs_compareFunction
); // must have been reset to NULL
2098 gs_sortAscending
= !reverseOrder
;
2105 void wxArrayString::DoSort()
2107 wxCHECK_RET( !m_autoSort
, wxT("can't use this method with sorted arrays") );
2109 // just sort the pointers using qsort() - of course it only works because
2110 // wxString() *is* a pointer to its data
2111 qsort(m_pItems
, m_nCount
, sizeof(wxChar
*), wxStringCompareFunction
);