X-Git-Url: https://git.saurik.com/wxWidgets.git/blobdiff_plain/012286eb3b9e05c15c1f7732c141b61d3ebb2524..ce7208d49d5ce2ca1dc0b3b83f14f1d04f29c4bf:/src/common/string.cpp diff --git a/src/common/string.cpp b/src/common/string.cpp index d97e47a0d1..b0bc3a1864 100644 --- a/src/common/string.cpp +++ b/src/common/string.cpp @@ -1,18 +1,15 @@ ///////////////////////////////////////////////////////////////////////////// -// Name: string.cpp +// Name: src/common/string.cpp // Purpose: wxString class -// Author: Vadim Zeitlin +// Author: Vadim Zeitlin, Ryan Norton // Modified by: // Created: 29/01/98 // RCS-ID: $Id$ // Copyright: (c) 1998 Vadim Zeitlin -// Licence: wxWindows license +// (c) 2004 Ryan Norton +// Licence: wxWindows licence ///////////////////////////////////////////////////////////////////////////// -#ifdef __GNUG__ - #pragma implementation "string.h" -#endif - /* * About ref counting: * 1) all empty strings use g_strEmpty, nRefs = -1 (set in Init()) @@ -28,35 +25,22 @@ #include "wx/wxprec.h" #ifdef __BORLANDC__ - #pragma hdrstop + #pragma hdrstop #endif #ifndef WX_PRECOMP - #include "wx/defs.h" - #include "wx/string.h" - #include "wx/intl.h" - #include "wx/thread.h" + #include "wx/string.h" + #include "wx/intl.h" + #include "wx/thread.h" #endif #include +#include #include #include #ifdef __SALFORDC__ - #include -#endif - -#if wxUSE_WCSRTOMBS - #include // for wcsrtombs(), see comments where it's used -#endif // GNU - -#ifdef WXSTRING_IS_WXOBJECT - IMPLEMENT_DYNAMIC_CLASS(wxString, wxObject) -#endif //WXSTRING_IS_WXOBJECT - -#if wxUSE_UNICODE -#undef wxUSE_EXPERIMENTAL_PRINTF -#define wxUSE_EXPERIMENTAL_PRINTF 1 + #include #endif // allocating extra space for each string consumes more memory but speeds up @@ -68,14 +52,21 @@ // static class variables definition // --------------------------------------------------------------------------- -#ifdef wxSTD_STRING_COMPATIBILITY - const size_t wxString::npos = wxSTRING_MAXLEN; -#endif // wxSTD_STRING_COMPATIBILITY +#if !wxUSE_STL + //According to STL _must_ be a -1 size_t + const size_t wxStringBase::npos = (size_t) -1; +#endif // ---------------------------------------------------------------------------- // static data // ---------------------------------------------------------------------------- +#if wxUSE_STL + +extern const wxChar WXDLLIMPEXP_BASE *wxEmptyString = _T(""); + +#else + // for an empty string, GetStringData() will return this address: this // structure has the same layout as wxStringData and it's data() method will // return the empty string (dummy pointer) @@ -85,151 +76,30 @@ static const struct wxChar dummy; } g_strEmpty = { {-1, 0, 0}, wxT('\0') }; -#if defined(__VISAGECPP__) && __IBMCPP__ >= 400 -// must define this static for VA or else you get multiply defined symbols everywhere -const unsigned int wxSTRING_MAXLEN = UINT_MAX - 100; - -#endif - // empty C style string: points to 'string data' byte of g_strEmpty -extern const wxChar WXDLLEXPORT *wxEmptyString = &g_strEmpty.dummy; - -// ---------------------------------------------------------------------------- -// conditional compilation -// ---------------------------------------------------------------------------- - -#if !defined(__WXSW__) && wxUSE_UNICODE - #ifdef wxUSE_EXPERIMENTAL_PRINTF - #undef wxUSE_EXPERIMENTAL_PRINTF - #endif - #define wxUSE_EXPERIMENTAL_PRINTF 1 -#endif +extern const wxChar WXDLLIMPEXP_BASE *wxEmptyString = &g_strEmpty.dummy; -// we want to find out if the current platform supports vsnprintf()-like -// function: for Unix this is done with configure, for Windows we test the -// compiler explicitly. -// -// FIXME currently, this is only for ANSI (!Unicode) strings, so we call this -// function wxVsnprintfA (A for ANSI), should also find one for Unicode -// strings in Unicode build -#ifdef __WXMSW__ - #if defined(__VISUALC__) || (defined(__MINGW32__) && wxUSE_NORLANDER_HEADERS) - #define wxVsnprintfA _vsnprintf - #endif -#else // !Windows - #ifdef HAVE_VSNPRINTF - #define wxVsnprintfA vsnprintf - #endif -#endif // Windows/!Windows - -#ifndef wxVsnprintfA - // in this case we'll use vsprintf() (which is ANSI and thus should be - // always available), but it's unsafe because it doesn't check for buffer - // size - so give a warning - #define wxVsnprintfA(buf, len, format, arg) vsprintf(buf, format, arg) - - #if defined(__VISUALC__) - #pragma message("Using sprintf() because no snprintf()-like function defined") - #elif defined(__GNUG__) && !defined(__UNIX__) - #warning "Using sprintf() because no snprintf()-like function defined" - #elif defined(__MWERKS__) - #warning "Using sprintf() because no snprintf()-like function defined" - #endif //compiler -#endif // no vsnprintf - -#ifdef _AIX - // AIX has vsnprintf, but there's no prototype in the system headers. - extern "C" int vsnprintf(char* str, size_t n, const char* format, va_list ap); #endif // ---------------------------------------------------------------------------- // global functions // ---------------------------------------------------------------------------- -#if defined(wxSTD_STRING_COMPATIBILITY) && wxUSE_STD_IOSTREAM +#if wxUSE_STD_IOSTREAM -// MS Visual C++ version 5.0 provides the new STL headers as well as the old -// iostream ones. -// -// ATTN: you can _not_ use both of these in the same program! +#include -istream& operator>>(istream& is, wxString& WXUNUSED(str)) +wxSTD ostream& operator<<(wxSTD ostream& os, const wxString& str) { -#if 0 - int w = is.width(0); - if ( is.ipfx(0) ) { - streambuf *sb = is.rdbuf(); - str.erase(); - while ( true ) { - int ch = sb->sbumpc (); - if ( ch == EOF ) { - is.setstate(ios::eofbit); - break; - } - else if ( isspace(ch) ) { - sb->sungetc(); - break; - } - - str += ch; - if ( --w == 1 ) - break; - } - } - - is.isfx(); - if ( str.length() == 0 ) - is.setstate(ios::failbit); +#ifdef __BORLANDC__ + os << str.mb_str(); +#else + os << str.c_str(); #endif - return is; -} - -ostream& operator<<(ostream& os, const wxString& str) -{ - os << str.c_str(); - return os; -} - -#endif //std::string compatibility - -extern int WXDLLEXPORT wxVsnprintf(wxChar *buf, size_t len, - const wxChar *format, va_list argptr) -{ -#if wxUSE_UNICODE - // FIXME should use wvsnprintf() or whatever if it's available - wxString s; - int iLen = s.PrintfV(format, argptr); - if ( iLen != -1 ) - { - wxStrncpy(buf, s.c_str(), iLen); - } - - return iLen; -#else // ANSI - // vsnprintf() will not terminate the string with '\0' if there is not - // enough place, but we want the string to always be NUL terminated - int rc = wxVsnprintfA(buf, len - 1, format, argptr); - if ( rc == -1 ) - { - buf[len] = 0; - } - - return rc; -#endif // Unicode/ANSI + return os; } -extern int WXDLLEXPORT wxSnprintf(wxChar *buf, size_t len, - const wxChar *format, ...) -{ - va_list argptr; - va_start(argptr, format); - - int iLen = wxVsnprintf(buf, len, format, argptr); - - va_end(argptr); - - return iLen; -} +#endif // wxUSE_STD_IOSTREAM // ---------------------------------------------------------------------------- // private classes @@ -241,15 +111,15 @@ extern int WXDLLEXPORT wxSnprintf(wxChar *buf, size_t len, class Averager { public: - Averager(const char *sz) { m_sz = sz; m_nTotal = m_nCount = 0; } + Averager(const wxChar *sz) { m_sz = sz; m_nTotal = m_nCount = 0; } ~Averager() - { printf("wxString: average %s = %f\n", m_sz, ((float)m_nTotal)/m_nCount); } + { wxPrintf("wxString: average %s = %f\n", m_sz, ((float)m_nTotal)/m_nCount); } void Add(size_t n) { m_nTotal += n; m_nCount++; } private: size_t m_nCount, m_nTotal; - const char *m_sz; + const wxChar *m_sz; } g_averageLength("allocation size"), g_averageSummandLength("summand length"), g_averageConcatHit("hit probability in concat"), @@ -260,38 +130,31 @@ extern int WXDLLEXPORT wxSnprintf(wxChar *buf, size_t len, #define STATISTICS_ADD(av, val) #endif // WXSTRING_STATISTICS +#if !wxUSE_STL + // =========================================================================== -// wxString class core +// wxStringData class deallocation // =========================================================================== -// --------------------------------------------------------------------------- -// construction -// --------------------------------------------------------------------------- - -// constructs string of copies of character -wxString::wxString(wxChar ch, size_t nLength) +#if defined(__VISUALC__) && defined(_MT) && !defined(_DLL) +# pragma message (__FILE__ ": building with Multithreaded non DLL runtime has a performance impact on wxString!") +void wxStringData::Free() { - Init(); - - if ( nLength > 0 ) { - AllocBuffer(nLength); - -#if wxUSE_UNICODE - // memset only works on char - for (size_t n=0; n 0 ) { // trailing '\0' is written in AllocBuffer() - AllocBuffer(nLength); - memcpy(m_pchData, psz + nPos, nLength*sizeof(wxChar)); + if ( !AllocBuffer(nLength) ) { + wxFAIL_MSG( _T("out of memory in wxStringBase::InitWith") ); + return; + } + wxTmemcpy(m_pchData, psz + nPos, nLength); } } -#ifdef wxSTD_STRING_COMPATIBILITY - // poor man's iterators are "void *" pointers -wxString::wxString(const void *pStart, const void *pEnd) -{ - InitWith((const wxChar *)pStart, 0, - (const wxChar *)pEnd - (const wxChar *)pStart); -} - -#endif //std::string compatibility - -#if wxUSE_UNICODE - -// from multibyte string -wxString::wxString(const char *psz, wxMBConv& conv, size_t nLength) +wxStringBase::wxStringBase(const void *pStart, const void *pEnd) { - // first get necessary size - size_t nLen = psz ? conv.MB2WC((wchar_t *) NULL, psz, 0) : 0; - - // nLength is number of *Unicode* characters here! - if ((nLen != (size_t)-1) && (nLen > nLength)) - nLen = nLength; - - // empty? - if ( (nLen != 0) && (nLen != (size_t)-1) ) { - AllocBuffer(nLen); - conv.MB2WC(m_pchData, psz, nLen); + if ( pEnd >= pStart ) + { + InitWith((const wxChar *)pStart, 0, + (const wxChar *)pEnd - (const wxChar *)pStart); } - else { + else + { + wxFAIL_MSG( _T("pStart is not before pEnd") ); Init(); } } -#else // ANSI - -#if wxUSE_WCHAR_T -// from wide string -wxString::wxString(const wchar_t *pwz, wxMBConv& conv) +wxStringBase::wxStringBase(size_type n, wxChar ch) { - // first get necessary size - size_t nLen = pwz ? conv.WC2MB((char *) NULL, pwz, 0) : 0; - - // empty? - if ( (nLen != 0) && (nLen != (size_t)-1) ) { - AllocBuffer(nLen); - conv.WC2MB(m_pchData, pwz, nLen); - } - else { - Init(); - } + Init(); + append(n, ch); } -#endif // wxUSE_WCHAR_T - -#endif // Unicode/ANSI // --------------------------------------------------------------------------- // memory allocation // --------------------------------------------------------------------------- // allocates memory needed to store a C string of length nLen -void wxString::AllocBuffer(size_t nLen) +bool wxStringBase::AllocBuffer(size_t nLen) { // allocating 0 sized buffer doesn't make sense, all empty strings should // reuse g_strEmpty @@ -383,30 +215,42 @@ void wxString::AllocBuffer(size_t nLen) // 2) sizeof(wxStringData) for housekeeping info wxStringData* pData = (wxStringData*) malloc(sizeof(wxStringData) + (nLen + EXTRA_ALLOC + 1)*sizeof(wxChar)); + + if ( pData == NULL ) { + // allocation failures are handled by the caller + return false; + } + pData->nRefs = 1; pData->nDataLength = nLen; pData->nAllocLength = nLen + EXTRA_ALLOC; m_pchData = pData->data(); // data starts after wxStringData m_pchData[nLen] = wxT('\0'); + return true; } // must be called before changing this string -void wxString::CopyBeforeWrite() +bool wxStringBase::CopyBeforeWrite() { wxStringData* pData = GetStringData(); if ( pData->IsShared() ) { pData->Unlock(); // memory not freed because shared size_t nLen = pData->nDataLength; - AllocBuffer(nLen); - memcpy(m_pchData, pData->data(), nLen*sizeof(wxChar)); + if ( !AllocBuffer(nLen) ) { + // allocation failures are handled by the caller + return false; + } + wxTmemcpy(m_pchData, pData->data(), nLen); } wxASSERT( !GetStringData()->IsShared() ); // we must be the only owner + + return true; } // must be called before replacing contents of this string -void wxString::AllocBeforeWrite(size_t nLen) +bool wxStringBase::AllocBeforeWrite(size_t nLen) { wxASSERT( nLen != 0 ); // doesn't make any sense @@ -415,7 +259,10 @@ void wxString::AllocBeforeWrite(size_t nLen) if ( pData->IsShared() || pData->IsEmpty() ) { // can't work with old buffer, get new one pData->Unlock(); - AllocBuffer(nLen); + if ( !AllocBuffer(nLen) ) { + // allocation failures are handled by the caller + return false; + } } else { if ( nLen > pData->nAllocLength ) { @@ -425,38 +272,75 @@ void wxString::AllocBeforeWrite(size_t nLen) nLen += EXTRA_ALLOC; - wxStringData *pDataOld = pData; pData = (wxStringData*) realloc(pData, sizeof(wxStringData) + (nLen + 1)*sizeof(wxChar)); - if ( !pData ) { - // out of memory - free(pDataOld); - // FIXME we're going to crash... - return; + if ( pData == NULL ) { + // allocation failures are handled by the caller + // keep previous data since reallocation failed + return false; } pData->nAllocLength = nLen; m_pchData = pData->data(); } - - // now we have enough space, just update the string length - pData->nDataLength = nLen; } wxASSERT( !GetStringData()->IsShared() ); // we must be the only owner + + // it doesn't really matter what the string length is as it's going to be + // overwritten later but, for extra safety, set it to 0 for now as we may + // have some junk in m_pchData + GetStringData()->nDataLength = 0; + + return true; +} + +wxStringBase& wxStringBase::append(size_t n, wxChar ch) +{ + size_type len = length(); + + if ( !Alloc(len + n) || !CopyBeforeWrite() ) { + wxFAIL_MSG( _T("out of memory in wxStringBase::append") ); + } + GetStringData()->nDataLength = len + n; + m_pchData[len + n] = '\0'; + for ( size_t i = 0; i < n; ++i ) + m_pchData[len + i] = ch; + return *this; +} + +void wxStringBase::resize(size_t nSize, wxChar ch) +{ + size_t len = length(); + + if ( nSize < len ) + { + erase(begin() + nSize, end()); + } + else if ( nSize > len ) + { + append(nSize - len, ch); + } + //else: we have exactly the specified length, nothing to do } // allocate enough memory for nLen characters -void wxString::Alloc(size_t nLen) +bool wxStringBase::Alloc(size_t nLen) { wxStringData *pData = GetStringData(); if ( pData->nAllocLength <= nLen ) { if ( pData->IsEmpty() ) { nLen += EXTRA_ALLOC; - wxStringData* pData = (wxStringData*) - malloc(sizeof(wxStringData) + (nLen + 1)*sizeof(wxChar)); + pData = (wxStringData *) + malloc(sizeof(wxStringData) + (nLen + 1)*sizeof(wxChar)); + + if ( pData == NULL ) { + // allocation failure handled by caller + return false; + } + pData->nRefs = 1; pData->nDataLength = 0; pData->nAllocLength = nLen; @@ -466,318 +350,1007 @@ void wxString::Alloc(size_t nLen) else if ( pData->IsShared() ) { pData->Unlock(); // memory not freed because shared size_t nOldLen = pData->nDataLength; - AllocBuffer(nLen); - memcpy(m_pchData, pData->data(), nOldLen*sizeof(wxChar)); + if ( !AllocBuffer(nLen) ) { + // allocation failure handled by caller + return false; + } + // +1 to copy the terminator, too + memcpy(m_pchData, pData->data(), (nOldLen+1)*sizeof(wxChar)); + GetStringData()->nDataLength = nOldLen; } else { nLen += EXTRA_ALLOC; - wxStringData *pDataOld = pData; - wxStringData *p = (wxStringData *) + pData = (wxStringData *) realloc(pData, sizeof(wxStringData) + (nLen + 1)*sizeof(wxChar)); - if ( p == NULL ) { - // don't leak memory - free(pDataOld); - - // FIXME what to do on memory error? - return; + if ( pData == NULL ) { + // allocation failure handled by caller + // keep previous data since reallocation failed + return false; } // it's not important if the pointer changed or not (the check for this // is not faster than assigning to m_pchData in all cases) - p->nAllocLength = nLen; - m_pchData = p->data(); + pData->nAllocLength = nLen; + m_pchData = pData->data(); } } //else: we've already got enough + return true; } -// shrink to minimal size (releasing extra memory) -void wxString::Shrink() +wxStringBase::iterator wxStringBase::begin() { - wxStringData *pData = GetStringData(); + if (length() > 0) + CopyBeforeWrite(); + return m_pchData; +} - // this variable is unused in release build, so avoid the compiler warning - // by just not declaring it -#ifdef __WXDEBUG__ - void *p = -#endif - realloc(pData, sizeof(wxStringData) + (pData->nDataLength + 1)*sizeof(wxChar)); +wxStringBase::iterator wxStringBase::end() +{ + if (length() > 0) + CopyBeforeWrite(); + return m_pchData + length(); +} + +wxStringBase::iterator wxStringBase::erase(iterator it) +{ + size_type idx = it - begin(); + erase(idx, 1); + return begin() + idx; +} - // we rely on a reasonable realloc() implementation here - so far I haven't - // seen any which wouldn't behave like this +wxStringBase& wxStringBase::erase(size_t nStart, size_t nLen) +{ + wxASSERT(nStart <= length()); + size_t strLen = length() - nStart; + // delete nLen or up to the end of the string characters + nLen = strLen < nLen ? strLen : nLen; + wxString strTmp(c_str(), nStart); + strTmp.append(c_str() + nStart + nLen, length() - nStart - nLen); - wxASSERT( p != NULL ); // can't free memory? - wxASSERT( p == pData ); // we're decrementing the size - block shouldn't move! + swap(strTmp); + return *this; } -// get the pointer to writable buffer of (at least) nLen bytes -wxChar *wxString::GetWriteBuf(size_t nLen) +wxStringBase& wxStringBase::insert(size_t nPos, const wxChar *sz, size_t n) { - AllocBeforeWrite(nLen); + wxASSERT( nPos <= length() ); - wxASSERT( GetStringData()->nRefs == 1 ); - GetStringData()->Validate(FALSE); + if ( n == npos ) n = wxStrlen(sz); + if ( n == 0 ) return *this; - return m_pchData; + if ( !Alloc(length() + n) || !CopyBeforeWrite() ) { + wxFAIL_MSG( _T("out of memory in wxStringBase::insert") ); + } + + memmove(m_pchData + nPos + n, m_pchData + nPos, + (length() - nPos) * sizeof(wxChar)); + memcpy(m_pchData + nPos, sz, n * sizeof(wxChar)); + GetStringData()->nDataLength = length() + n; + m_pchData[length()] = '\0'; + + return *this; } -// put string back in a reasonable state after GetWriteBuf -void wxString::UngetWriteBuf() +void wxStringBase::swap(wxStringBase& str) { - GetStringData()->nDataLength = wxStrlen(m_pchData); - GetStringData()->Validate(TRUE); + wxChar* tmp = str.m_pchData; + str.m_pchData = m_pchData; + m_pchData = tmp; } -void wxString::UngetWriteBuf(size_t nLen) +size_t wxStringBase::find(const wxStringBase& str, size_t nStart) const { - GetStringData()->nDataLength = nLen; - GetStringData()->Validate(TRUE); + // deal with the special case of empty string first + const size_t nLen = length(); + const size_t nLenOther = str.length(); + + if ( !nLenOther ) + { + // empty string is a substring of anything + return 0; + } + + if ( !nLen ) + { + // the other string is non empty so can't be our substring + return npos; + } + + wxASSERT( str.GetStringData()->IsValid() ); + wxASSERT( nStart <= nLen ); + + const wxChar * const other = str.c_str(); + + // anchor + const wxChar* p = (const wxChar*)wxTmemchr(c_str() + nStart, + *other, + nLen - nStart); + + if ( !p ) + return npos; + + while ( p - c_str() + nLenOther <= nLen && wxTmemcmp(p, other, nLenOther) ) + { + p++; + + // anchor again + p = (const wxChar*)wxTmemchr(p, *other, nLen - (p - c_str())); + + if ( !p ) + return npos; + } + + return p - c_str() + nLenOther <= nLen ? p - c_str() : npos; } -// --------------------------------------------------------------------------- -// data access -// --------------------------------------------------------------------------- +size_t wxStringBase::find(const wxChar* sz, size_t nStart, size_t n) const +{ + return find(wxStringBase(sz, n), nStart); +} -// all functions are inline in string.h +size_t wxStringBase::find(wxChar ch, size_t nStart) const +{ + wxASSERT( nStart <= length() ); -// --------------------------------------------------------------------------- -// assignment operators -// --------------------------------------------------------------------------- + const wxChar *p = (const wxChar*)wxTmemchr(c_str() + nStart, ch, length() - nStart); -// helper function: does real copy -void wxString::AssignCopy(size_t nSrcLen, const wxChar *pszSrcData) + return p == NULL ? npos : p - c_str(); +} + +size_t wxStringBase::rfind(const wxStringBase& str, size_t nStart) const { - if ( nSrcLen == 0 ) { - Reinit(); - } - else { - AllocBeforeWrite(nSrcLen); - memcpy(m_pchData, pszSrcData, nSrcLen*sizeof(wxChar)); - GetStringData()->nDataLength = nSrcLen; - m_pchData[nSrcLen] = wxT('\0'); - } + wxASSERT( str.GetStringData()->IsValid() ); + wxASSERT( nStart == npos || nStart <= length() ); + + if ( length() >= str.length() ) + { + // avoids a corner case later + if ( length() == 0 && str.length() == 0 ) + return 0; + + // "top" is the point where search starts from + size_t top = length() - str.length(); + + if ( nStart == npos ) + nStart = length() - 1; + if ( nStart < top ) + top = nStart; + + const wxChar *cursor = c_str() + top; + do + { + if ( wxTmemcmp(cursor, str.c_str(), + str.length()) == 0 ) + { + return cursor - c_str(); + } + } while ( cursor-- > c_str() ); + } + + return npos; } -// assigns one string to another -wxString& wxString::operator=(const wxString& stringSrc) +size_t wxStringBase::rfind(const wxChar* sz, size_t nStart, size_t n) const { - wxASSERT( stringSrc.GetStringData()->IsValid() ); + return rfind(wxStringBase(sz, n), nStart); +} - // don't copy string over itself - if ( m_pchData != stringSrc.m_pchData ) { - if ( stringSrc.GetStringData()->IsEmpty() ) { - Reinit(); +size_t wxStringBase::rfind(wxChar ch, size_t nStart) const +{ + if ( nStart == npos ) + { + nStart = length(); } - else { - // adjust references - GetStringData()->Unlock(); - m_pchData = stringSrc.m_pchData; - GetStringData()->Lock(); + else + { + wxASSERT( nStart <= length() ); } - } - return *this; + const wxChar *actual; + for ( actual = c_str() + ( nStart == npos ? length() : nStart + 1 ); + actual > c_str(); --actual ) + { + if ( *(actual - 1) == ch ) + return (actual - 1) - c_str(); + } + + return npos; } -// assigns a single character -wxString& wxString::operator=(wxChar ch) +size_t wxStringBase::find_first_of(const wxChar* sz, size_t nStart) const { - AssignCopy(1, &ch); - return *this; + wxASSERT(nStart <= length()); + + size_t len = wxStrlen(sz); + + size_t i; + for(i = nStart; i < this->length(); ++i) + { + if (wxTmemchr(sz, *(c_str() + i), len)) + break; + } + + if(i == this->length()) + return npos; + else + return i; } -// assigns C string -wxString& wxString::operator=(const wxChar *psz) +size_t wxStringBase::find_first_of(const wxChar* sz, size_t nStart, + size_t n) const +{ + return find_first_of(wxStringBase(sz, n), nStart); +} + +size_t wxStringBase::find_last_of(const wxChar* sz, size_t nStart) const +{ + if ( nStart == npos ) + { + nStart = length() - 1; + } + else + { + wxASSERT_MSG( nStart <= length(), + _T("invalid index in find_last_of()") ); + } + + size_t len = wxStrlen(sz); + + for ( const wxChar *p = c_str() + nStart; p >= c_str(); --p ) + { + if ( wxTmemchr(sz, *p, len) ) + return p - c_str(); + } + + return npos; +} + +size_t wxStringBase::find_last_of(const wxChar* sz, size_t nStart, + size_t n) const +{ + return find_last_of(wxStringBase(sz, n), nStart); +} + +size_t wxStringBase::find_first_not_of(const wxChar* sz, size_t nStart) const +{ + if ( nStart == npos ) + { + nStart = length(); + } + else + { + wxASSERT( nStart <= length() ); + } + + size_t len = wxStrlen(sz); + + size_t i; + for(i = nStart; i < this->length(); ++i) + { + if (!wxTmemchr(sz, *(c_str() + i), len)) + break; + } + + if(i == this->length()) + return npos; + else + return i; +} + +size_t wxStringBase::find_first_not_of(const wxChar* sz, size_t nStart, + size_t n) const +{ + return find_first_not_of(wxStringBase(sz, n), nStart); +} + +size_t wxStringBase::find_first_not_of(wxChar ch, size_t nStart) const +{ + wxASSERT( nStart <= length() ); + + for ( const wxChar *p = c_str() + nStart; *p; p++ ) + { + if ( *p != ch ) + return p - c_str(); + } + + return npos; +} + +size_t wxStringBase::find_last_not_of(const wxChar* sz, size_t nStart) const +{ + if ( nStart == npos ) + { + nStart = length() - 1; + } + else + { + wxASSERT( nStart <= length() ); + } + + size_t len = wxStrlen(sz); + + for ( const wxChar *p = c_str() + nStart; p >= c_str(); --p ) + { + if ( !wxTmemchr(sz, *p,len) ) + return p - c_str(); + } + + return npos; +} + +size_t wxStringBase::find_last_not_of(const wxChar* sz, size_t nStart, + size_t n) const +{ + return find_last_not_of(wxStringBase(sz, n), nStart); +} + +size_t wxStringBase::find_last_not_of(wxChar ch, size_t nStart) const +{ + if ( nStart == npos ) + { + nStart = length() - 1; + } + else + { + wxASSERT( nStart <= length() ); + } + + for ( const wxChar *p = c_str() + nStart; p >= c_str(); --p ) + { + if ( *p != ch ) + return p - c_str(); + } + + return npos; +} + +wxStringBase& wxStringBase::replace(size_t nStart, size_t nLen, + const wxChar *sz) +{ + wxASSERT_MSG( nStart <= length(), + _T("index out of bounds in wxStringBase::replace") ); + size_t strLen = length() - nStart; + nLen = strLen < nLen ? strLen : nLen; + + wxStringBase strTmp; + strTmp.reserve(length()); // micro optimisation to avoid multiple mem allocs + + //This is kind of inefficient, but its pretty good considering... + //we don't want to use character access operators here because on STL + //it will freeze the reference count of strTmp, which means a deep copy + //at the end when swap is called + // + //Also, we can't use append with the full character pointer and must + //do it manually because this string can contain null characters + for(size_t i1 = 0; i1 < nStart; ++i1) + strTmp.append(1, this->c_str()[i1]); + + //its safe to do the full version here because + //sz must be a normal c string + strTmp.append(sz); + + for(size_t i2 = nStart + nLen; i2 < length(); ++i2) + strTmp.append(1, this->c_str()[i2]); + + swap(strTmp); + return *this; +} + +wxStringBase& wxStringBase::replace(size_t nStart, size_t nLen, + size_t nCount, wxChar ch) +{ + return replace(nStart, nLen, wxStringBase(nCount, ch).c_str()); +} + +wxStringBase& wxStringBase::replace(size_t nStart, size_t nLen, + const wxStringBase& str, + size_t nStart2, size_t nLen2) +{ + return replace(nStart, nLen, str.substr(nStart2, nLen2)); +} + +wxStringBase& wxStringBase::replace(size_t nStart, size_t nLen, + const wxChar* sz, size_t nCount) +{ + return replace(nStart, nLen, wxStringBase(sz, nCount).c_str()); +} + +wxStringBase wxStringBase::substr(size_t nStart, size_t nLen) const +{ + if ( nLen == npos ) + nLen = length() - nStart; + return wxStringBase(*this, nStart, nLen); +} + +// assigns one string to another +wxStringBase& wxStringBase::operator=(const wxStringBase& stringSrc) +{ + wxASSERT( stringSrc.GetStringData()->IsValid() ); + + // don't copy string over itself + if ( m_pchData != stringSrc.m_pchData ) { + if ( stringSrc.GetStringData()->IsEmpty() ) { + Reinit(); + } + else { + // adjust references + GetStringData()->Unlock(); + m_pchData = stringSrc.m_pchData; + GetStringData()->Lock(); + } + } + + return *this; +} + +// assigns a single character +wxStringBase& wxStringBase::operator=(wxChar ch) +{ + if ( !AssignCopy(1, &ch) ) { + wxFAIL_MSG( _T("out of memory in wxStringBase::operator=(wxChar)") ); + } + return *this; +} + +// assigns C string +wxStringBase& wxStringBase::operator=(const wxChar *psz) +{ + if ( !AssignCopy(wxStrlen(psz), psz) ) { + wxFAIL_MSG( _T("out of memory in wxStringBase::operator=(const wxChar *)") ); + } + return *this; +} + +// helper function: does real copy +bool wxStringBase::AssignCopy(size_t nSrcLen, const wxChar *pszSrcData) +{ + if ( nSrcLen == 0 ) { + Reinit(); + } + else { + if ( !AllocBeforeWrite(nSrcLen) ) { + // allocation failure handled by caller + return false; + } + memcpy(m_pchData, pszSrcData, nSrcLen*sizeof(wxChar)); + GetStringData()->nDataLength = nSrcLen; + m_pchData[nSrcLen] = wxT('\0'); + } + return true; +} + +// --------------------------------------------------------------------------- +// string concatenation +// --------------------------------------------------------------------------- + +// add something to this string +bool wxStringBase::ConcatSelf(size_t nSrcLen, const wxChar *pszSrcData, + size_t nMaxLen) +{ + STATISTICS_ADD(SummandLength, nSrcLen); + + nSrcLen = nSrcLen < nMaxLen ? nSrcLen : nMaxLen; + + // concatenating an empty string is a NOP + if ( nSrcLen > 0 ) { + wxStringData *pData = GetStringData(); + size_t nLen = pData->nDataLength; + size_t nNewLen = nLen + nSrcLen; + + // alloc new buffer if current is too small + if ( pData->IsShared() ) { + STATISTICS_ADD(ConcatHit, 0); + + // we have to allocate another buffer + wxStringData* pOldData = GetStringData(); + if ( !AllocBuffer(nNewLen) ) { + // allocation failure handled by caller + return false; + } + memcpy(m_pchData, pOldData->data(), nLen*sizeof(wxChar)); + pOldData->Unlock(); + } + else if ( nNewLen > pData->nAllocLength ) { + STATISTICS_ADD(ConcatHit, 0); + + reserve(nNewLen); + // we have to grow the buffer + if ( capacity() < nNewLen ) { + // allocation failure handled by caller + return false; + } + } + else { + STATISTICS_ADD(ConcatHit, 1); + + // the buffer is already big enough + } + + // should be enough space + wxASSERT( nNewLen <= GetStringData()->nAllocLength ); + + // fast concatenation - all is done in our buffer + memcpy(m_pchData + nLen, pszSrcData, nSrcLen*sizeof(wxChar)); + + m_pchData[nNewLen] = wxT('\0'); // put terminating '\0' + GetStringData()->nDataLength = nNewLen; // and fix the length + } + //else: the string to append was empty + return true; +} + +// --------------------------------------------------------------------------- +// simple sub-string extraction +// --------------------------------------------------------------------------- + +// helper function: clone the data attached to this string +bool wxStringBase::AllocCopy(wxString& dest, int nCopyLen, int nCopyIndex) const +{ + if ( nCopyLen == 0 ) { + dest.Init(); + } + else { + if ( !dest.AllocBuffer(nCopyLen) ) { + // allocation failure handled by caller + return false; + } + memcpy(dest.m_pchData, m_pchData + nCopyIndex, nCopyLen*sizeof(wxChar)); + } + return true; +} + +#endif // !wxUSE_STL + +#if !wxUSE_STL || !defined(HAVE_STD_STRING_COMPARE) + +#if !wxUSE_STL + #define STRINGCLASS wxStringBase +#else + #define STRINGCLASS wxString +#endif + +static inline int wxDoCmp(const wxChar* s1, size_t l1, + const wxChar* s2, size_t l2) +{ + if( l1 == l2 ) + return wxTmemcmp(s1, s2, l1); + else if( l1 < l2 ) + { + int ret = wxTmemcmp(s1, s2, l1); + return ret == 0 ? -1 : ret; + } + else + { + int ret = wxTmemcmp(s1, s2, l2); + return ret == 0 ? +1 : ret; + } +} + +int STRINGCLASS::compare(const wxStringBase& str) const +{ + return ::wxDoCmp(data(), length(), str.data(), str.length()); +} + +int STRINGCLASS::compare(size_t nStart, size_t nLen, + const wxStringBase& str) const +{ + wxASSERT(nStart <= length()); + size_type strLen = length() - nStart; + nLen = strLen < nLen ? strLen : nLen; + return ::wxDoCmp(data() + nStart, nLen, str.data(), str.length()); +} + +int STRINGCLASS::compare(size_t nStart, size_t nLen, + const wxStringBase& str, + size_t nStart2, size_t nLen2) const +{ + wxASSERT(nStart <= length()); + wxASSERT(nStart2 <= str.length()); + size_type strLen = length() - nStart, + strLen2 = str.length() - nStart2; + nLen = strLen < nLen ? strLen : nLen; + nLen2 = strLen2 < nLen2 ? strLen2 : nLen2; + return ::wxDoCmp(data() + nStart, nLen, str.data() + nStart2, nLen2); +} + +int STRINGCLASS::compare(const wxChar* sz) const +{ + size_t nLen = wxStrlen(sz); + return ::wxDoCmp(data(), length(), sz, nLen); +} + +int STRINGCLASS::compare(size_t nStart, size_t nLen, + const wxChar* sz, size_t nCount) const +{ + wxASSERT(nStart <= length()); + size_type strLen = length() - nStart; + nLen = strLen < nLen ? strLen : nLen; + if( nCount == npos ) + nCount = wxStrlen(sz); + + return ::wxDoCmp(data() + nStart, nLen, sz, nCount); +} + +#undef STRINGCLASS + +#endif // !wxUSE_STL || !defined(HAVE_STD_STRING_COMPARE) + +// =========================================================================== +// wxString class core +// =========================================================================== + +// --------------------------------------------------------------------------- +// construction and conversion +// --------------------------------------------------------------------------- + +#if wxUSE_UNICODE + +// from multibyte string +wxString::wxString(const char *psz, const wxMBConv& conv, size_t nLength) +{ + // anything to do? + if ( psz && nLength != 0 ) + { + if ( nLength == npos ) + { + nLength = wxNO_LEN; + } + + size_t nLenWide; + wxWCharBuffer wbuf = conv.cMB2WC(psz, nLength, &nLenWide); + + if ( nLenWide ) + assign(wbuf, nLenWide); + } +} + +//Convert wxString in Unicode mode to a multi-byte string +const wxCharBuffer wxString::mb_str(const wxMBConv& conv) const +{ + return conv.cWC2MB(c_str(), length() + 1 /* size, not length */, NULL); +} + +#else // ANSI + +#if wxUSE_WCHAR_T + +// from wide string +wxString::wxString(const wchar_t *pwz, const wxMBConv& conv, size_t nLength) +{ + // anything to do? + if ( pwz && nLength != 0 ) + { + if ( nLength == npos ) + { + nLength = wxNO_LEN; + } + + size_t nLenMB; + wxCharBuffer buf = conv.cWC2MB(pwz, nLength, &nLenMB); + + if ( nLenMB ) + assign(buf, nLenMB); + } +} + +//Converts this string to a wide character string if unicode +//mode is not enabled and wxUSE_WCHAR_T is enabled +const wxWCharBuffer wxString::wc_str(const wxMBConv& conv) const +{ + return conv.cMB2WC(c_str(), length() + 1 /* size, not length */, NULL); +} + +#endif // wxUSE_WCHAR_T + +#endif // Unicode/ANSI + +// shrink to minimal size (releasing extra memory) +bool wxString::Shrink() +{ + wxString tmp(begin(), end()); + swap(tmp); + return tmp.length() == length(); +} + +#if !wxUSE_STL +// get the pointer to writable buffer of (at least) nLen bytes +wxChar *wxString::GetWriteBuf(size_t nLen) +{ + if ( !AllocBeforeWrite(nLen) ) { + // allocation failure handled by caller + return NULL; + } + + wxASSERT( GetStringData()->nRefs == 1 ); + GetStringData()->Validate(false); + + return m_pchData; +} + +// put string back in a reasonable state after GetWriteBuf +void wxString::UngetWriteBuf() +{ + GetStringData()->nDataLength = wxStrlen(m_pchData); + GetStringData()->Validate(true); +} + +void wxString::UngetWriteBuf(size_t nLen) +{ + GetStringData()->nDataLength = nLen; + GetStringData()->Validate(true); +} +#endif + +// --------------------------------------------------------------------------- +// data access +// --------------------------------------------------------------------------- + +// all functions are inline in string.h + +// --------------------------------------------------------------------------- +// assignment operators +// --------------------------------------------------------------------------- + +#if !wxUSE_UNICODE + +// same as 'signed char' variant +wxString& wxString::operator=(const unsigned char* psz) +{ + *this = (const char *)psz; + return *this; +} + +#if wxUSE_WCHAR_T +wxString& wxString::operator=(const wchar_t *pwz) +{ + wxString str(pwz); + swap(str); + return *this; +} +#endif + +#endif + +/* + * concatenation functions come in 5 flavours: + * string + string + * char + string and string + char + * C str + string and string + C str + */ + +wxString operator+(const wxString& str1, const wxString& str2) { - AssignCopy(wxStrlen(psz), psz); - return *this; -} +#if !wxUSE_STL + wxASSERT( str1.GetStringData()->IsValid() ); + wxASSERT( str2.GetStringData()->IsValid() ); +#endif -#if !wxUSE_UNICODE + wxString s = str1; + s += str2; -// same as 'signed char' variant -wxString& wxString::operator=(const unsigned char* psz) -{ - *this = (const char *)psz; - return *this; + return s; } -#if wxUSE_WCHAR_T -wxString& wxString::operator=(const wchar_t *pwz) +wxString operator+(const wxString& str, wxChar ch) { - wxString str(pwz); - *this = str; - return *this; -} +#if !wxUSE_STL + wxASSERT( str.GetStringData()->IsValid() ); #endif -#endif + wxString s = str; + s += ch; -// --------------------------------------------------------------------------- -// string concatenation -// --------------------------------------------------------------------------- + return s; +} -// add something to this string -void wxString::ConcatSelf(int nSrcLen, const wxChar *pszSrcData) +wxString operator+(wxChar ch, const wxString& str) { - STATISTICS_ADD(SummandLength, nSrcLen); +#if !wxUSE_STL + wxASSERT( str.GetStringData()->IsValid() ); +#endif - // concatenating an empty string is a NOP - if ( nSrcLen > 0 ) { - wxStringData *pData = GetStringData(); - size_t nLen = pData->nDataLength; - size_t nNewLen = nLen + nSrcLen; + wxString s = ch; + s += str; - // alloc new buffer if current is too small - if ( pData->IsShared() ) { - STATISTICS_ADD(ConcatHit, 0); + return s; +} - // we have to allocate another buffer - wxStringData* pOldData = GetStringData(); - AllocBuffer(nNewLen); - memcpy(m_pchData, pOldData->data(), nLen*sizeof(wxChar)); - pOldData->Unlock(); - } - else if ( nNewLen > pData->nAllocLength ) { - STATISTICS_ADD(ConcatHit, 0); +wxString operator+(const wxString& str, const wxChar *psz) +{ +#if !wxUSE_STL + wxASSERT( str.GetStringData()->IsValid() ); +#endif - // we have to grow the buffer - Alloc(nNewLen); + wxString s; + if ( !s.Alloc(wxStrlen(psz) + str.length()) ) { + wxFAIL_MSG( _T("out of memory in wxString::operator+") ); } - else { - STATISTICS_ADD(ConcatHit, 1); + s += str; + s += psz; - // the buffer is already big enough - } + return s; +} - // should be enough space - wxASSERT( nNewLen <= GetStringData()->nAllocLength ); +wxString operator+(const wxChar *psz, const wxString& str) +{ +#if !wxUSE_STL + wxASSERT( str.GetStringData()->IsValid() ); +#endif - // fast concatenation - all is done in our buffer - memcpy(m_pchData + nLen, pszSrcData, nSrcLen*sizeof(wxChar)); + wxString s; + if ( !s.Alloc(wxStrlen(psz) + str.length()) ) { + wxFAIL_MSG( _T("out of memory in wxString::operator+") ); + } + s = psz; + s += str; - m_pchData[nNewLen] = wxT('\0'); // put terminating '\0' - GetStringData()->nDataLength = nNewLen; // and fix the length - } - //else: the string to append was empty + return s; } -/* - * concatenation functions come in 5 flavours: - * string + string - * char + string and string + char - * C str + string and string + C str - */ +// =========================================================================== +// other common string functions +// =========================================================================== + +int wxString::Cmp(const wxString& s) const +{ + return compare(s); +} -wxString operator+(const wxString& string1, const wxString& string2) +int wxString::Cmp(const wxChar* psz) const { - wxASSERT( string1.GetStringData()->IsValid() ); - wxASSERT( string2.GetStringData()->IsValid() ); + return compare(psz); +} - wxString s = string1; - s += string2; +static inline int wxDoCmpNoCase(const wxChar* s1, size_t l1, + const wxChar* s2, size_t l2) +{ + size_t i; - return s; + if( l1 == l2 ) + { + for(i = 0; i < l1; ++i) + { + if(wxTolower(s1[i]) != wxTolower(s2[i])) + break; + } + return i == l1 ? 0 : wxTolower(s1[i]) < wxTolower(s2[i]) ? -1 : 1; + } + else if( l1 < l2 ) + { + for(i = 0; i < l1; ++i) + { + if(wxTolower(s1[i]) != wxTolower(s2[i])) + break; + } + return i == l1 ? -1 : wxTolower(s1[i]) < wxTolower(s2[i]) ? -1 : 1; + } + else + { + for(i = 0; i < l2; ++i) + { + if(wxTolower(s1[i]) != wxTolower(s2[i])) + break; + } + return i == l2 ? 1 : wxTolower(s1[i]) < wxTolower(s2[i]) ? -1 : 1; + } } -wxString operator+(const wxString& string, wxChar ch) +int wxString::CmpNoCase(const wxString& s) const { - wxASSERT( string.GetStringData()->IsValid() ); + return wxDoCmpNoCase(data(), length(), s.data(), s.length()); +} - wxString s = string; - s += ch; +int wxString::CmpNoCase(const wxChar* psz) const +{ + int nLen = wxStrlen(psz); - return s; + return wxDoCmpNoCase(data(), length(), psz, nLen); } -wxString operator+(wxChar ch, const wxString& string) + +#if wxUSE_UNICODE + +#ifdef __MWERKS__ +#ifndef __SCHAR_MAX__ +#define __SCHAR_MAX__ 127 +#endif +#endif + +wxString wxString::FromAscii(const char *ascii) { - wxASSERT( string.GetStringData()->IsValid() ); + if (!ascii) + return wxEmptyString; - wxString s = ch; - s += string; + size_t len = strlen( ascii ); + wxString res; - return s; + if ( len ) + { + wxStringBuffer buf(res, len); + + wchar_t *dest = buf; + + for ( ;; ) + { + if ( (*dest++ = (wchar_t)(unsigned char)*ascii++) == L'\0' ) + break; + } + } + + return res; } -wxString operator+(const wxString& string, const wxChar *psz) +wxString wxString::FromAscii(const char ascii) { - wxASSERT( string.GetStringData()->IsValid() ); + // What do we do with '\0' ? - wxString s; - s.Alloc(wxStrlen(psz) + string.Len()); - s = string; - s += psz; + wxString res; + res += (wchar_t)(unsigned char) ascii; - return s; + return res; } -wxString operator+(const wxChar *psz, const wxString& string) +const wxCharBuffer wxString::ToAscii() const { - wxASSERT( string.GetStringData()->IsValid() ); + // this will allocate enough space for the terminating NUL too + wxCharBuffer buffer(length()); - wxString s; - s.Alloc(wxStrlen(psz) + string.Len()); - s = psz; - s += string; - return s; -} + char *dest = buffer.data(); -// =========================================================================== -// other common string functions -// =========================================================================== + const wchar_t *pwc = c_str(); + for ( ;; ) + { + *dest++ = (char)(*pwc > SCHAR_MAX ? wxT('_') : *pwc); -// --------------------------------------------------------------------------- -// simple sub-string extraction -// --------------------------------------------------------------------------- + // the output string can't have embedded NULs anyhow, so we can safely + // stop at first of them even if we do have any + if ( !*pwc++ ) + break; + } -// helper function: clone the data attached to this string -void wxString::AllocCopy(wxString& dest, int nCopyLen, int nCopyIndex) const -{ - if ( nCopyLen == 0 ) { - dest.Init(); - } - else { - dest.AllocBuffer(nCopyLen); - memcpy(dest.m_pchData, m_pchData + nCopyIndex, nCopyLen*sizeof(wxChar)); - } + return buffer; } +#endif // Unicode + // extract string of length nCount starting at nFirst wxString wxString::Mid(size_t nFirst, size_t nCount) const { - wxStringData *pData = GetStringData(); - size_t nLen = pData->nDataLength; + size_t nLen = length(); - // default value of nCount is wxSTRING_MAXLEN and means "till the end" - if ( nCount == wxSTRING_MAXLEN ) - { - nCount = nLen - nFirst; - } + // default value of nCount is npos and means "till the end" + if ( nCount == npos ) + { + nCount = nLen - nFirst; + } - // out-of-bounds requests return sensible things - if ( nFirst + nCount > nLen ) - { - nCount = nLen - nFirst; - } + // out-of-bounds requests return sensible things + if ( nFirst + nCount > nLen ) + { + nCount = nLen - nFirst; + } - if ( nFirst > nLen ) - { - // AllocCopy() will return empty string - nCount = 0; - } + if ( nFirst > nLen ) + { + // AllocCopy() will return empty string + return wxEmptyString; + } - wxString dest; - AllocCopy(dest, nCount, nFirst); + wxString dest(*this, nFirst, nCount); + if ( dest.length() != nCount ) + { + wxFAIL_MSG( _T("out of memory in wxString::Mid") ); + } - return dest; + return dest; } -// check that the tring starts with prefix and return the rest of the string -// in the provided pointer if it is not NULL, otherwise return FALSE +// check that the string starts with prefix and return the rest of the string +// in the provided pointer if it is not NULL, otherwise return false bool wxString::StartsWith(const wxChar *prefix, wxString *rest) const { wxASSERT_MSG( prefix, _T("invalid parameter in wxString::StartsWith") ); @@ -792,7 +1365,7 @@ bool wxString::StartsWith(const wxChar *prefix, wxString *rest) const if ( *prefix++ != *p++ ) { // no match - return FALSE; + return false; } } @@ -802,17 +1375,40 @@ bool wxString::StartsWith(const wxChar *prefix, wxString *rest) const *rest = p; } - return TRUE; + return true; +} + + +// check that the string ends with suffix and return the rest of it in the +// provided pointer if it is not NULL, otherwise return false +bool wxString::EndsWith(const wxChar *suffix, wxString *rest) const +{ + wxASSERT_MSG( suffix, _T("invalid parameter in wxString::EndssWith") ); + + int start = length() - wxStrlen(suffix); + if ( start < 0 || wxStrcmp(c_str() + start, suffix) != 0 ) + return false; + + if ( rest ) + { + // put the rest of the string into provided pointer + rest->assign(*this, 0, start); + } + + return true; } + // extract nCount last (rightmost) characters wxString wxString::Right(size_t nCount) const { - if ( nCount > (size_t)GetStringData()->nDataLength ) - nCount = GetStringData()->nDataLength; + if ( nCount > length() ) + nCount = length(); - wxString dest; - AllocCopy(dest, nCount, GetStringData()->nDataLength - nCount); + wxString dest(*this, length() - nCount, nCount); + if ( dest.length() != nCount ) { + wxFAIL_MSG( _T("out of memory in wxString::Right") ); + } return dest; } @@ -821,7 +1417,7 @@ wxString wxString::Right(size_t nCount) const wxString wxString::AfterLast(wxChar ch) const { wxString str; - int iPos = Find(ch, TRUE); + int iPos = Find(ch, true); if ( iPos == wxNOT_FOUND ) str = *this; else @@ -833,11 +1429,13 @@ wxString wxString::AfterLast(wxChar ch) const // extract nCount first (leftmost) characters wxString wxString::Left(size_t nCount) const { - if ( nCount > (size_t)GetStringData()->nDataLength ) - nCount = GetStringData()->nDataLength; + if ( nCount > length() ) + nCount = length(); - wxString dest; - AllocCopy(dest, nCount, 0); + wxString dest(*this, 0, nCount); + if ( dest.length() != nCount ) { + wxFAIL_MSG( _T("out of memory in wxString::Left") ); + } return dest; } @@ -845,11 +1443,9 @@ wxString wxString::Left(size_t nCount) const // (returns the whole string if ch not found) wxString wxString::BeforeFirst(wxChar ch) const { - wxString str; - for ( const wxChar *pc = m_pchData; *pc != wxT('\0') && *pc != ch; pc++ ) - str += *pc; - - return str; + int iPos = Find(ch); + if ( iPos == wxNOT_FOUND ) iPos = length(); + return wxString(*this, 0, iPos); } /// get all characters before the last occurence of ch @@ -857,7 +1453,7 @@ wxString wxString::BeforeFirst(wxChar ch) const wxString wxString::BeforeLast(wxChar ch) const { wxString str; - int iPos = Find(ch, TRUE); + int iPos = Find(ch, true); if ( iPos != wxNOT_FOUND && iPos != 0 ) str = wxString(c_str(), iPos); @@ -877,84 +1473,85 @@ wxString wxString::AfterFirst(wxChar ch) const } // replace first (or all) occurences of some substring with another one -size_t wxString::Replace(const wxChar *szOld, const wxChar *szNew, bool bReplaceAll) +size_t wxString::Replace(const wxChar *szOld, + const wxChar *szNew, bool bReplaceAll) { - size_t uiCount = 0; // count of replacements made + // if we tried to replace an empty string we'd enter an infinite loop below + wxCHECK_MSG( szOld && *szOld && szNew, 0, + _T("wxString::Replace(): invalid parameter") ); - size_t uiOldLen = wxStrlen(szOld); + size_t uiCount = 0; // count of replacements made - wxString strTemp; - const wxChar *pCurrent = m_pchData; - const wxChar *pSubstr; - while ( *pCurrent != wxT('\0') ) { - pSubstr = wxStrstr(pCurrent, szOld); - if ( pSubstr == NULL ) { - // strTemp is unused if no replacements were made, so avoid the copy - if ( uiCount == 0 ) - return 0; + size_t uiOldLen = wxStrlen(szOld); + size_t uiNewLen = wxStrlen(szNew); - strTemp += pCurrent; // copy the rest - break; // exit the loop - } - else { - // take chars before match - strTemp.ConcatSelf(pSubstr - pCurrent, pCurrent); - strTemp += szNew; - pCurrent = pSubstr + uiOldLen; // restart after match + size_t dwPos = 0; + + while ( this->c_str()[dwPos] != wxT('\0') ) + { + //DO NOT USE STRSTR HERE + //this string can contain embedded null characters, + //so strstr will function incorrectly + dwPos = find(szOld, dwPos); + if ( dwPos == npos ) + break; // exit the loop + else + { + //replace this occurance of the old string with the new one + replace(dwPos, uiOldLen, szNew, uiNewLen); - uiCount++; + //move up pos past the string that was replaced + dwPos += uiNewLen; - // stop now? - if ( !bReplaceAll ) { - strTemp += pCurrent; // copy the rest - break; // exit the loop - } - } - } + //increase replace count + ++uiCount; - // only done if there were replacements, otherwise would have returned above - *this = strTemp; + // stop now? + if ( !bReplaceAll ) + break; // exit the loop + } + } - return uiCount; + return uiCount; } bool wxString::IsAscii() const { const wxChar *s = (const wxChar*) *this; while(*s){ - if(!isascii(*s)) return(FALSE); + if(!isascii(*s)) return(false); s++; } - return(TRUE); + return(true); } bool wxString::IsWord() const { const wxChar *s = (const wxChar*) *this; while(*s){ - if(!wxIsalpha(*s)) return(FALSE); + if(!wxIsalpha(*s)) return(false); s++; } - return(TRUE); + return(true); } bool wxString::IsNumber() const { const wxChar *s = (const wxChar*) *this; if (wxStrlen(s)) - if ((s[0] == '-') || (s[0] == '+')) s++; + if ((s[0] == wxT('-')) || (s[0] == wxT('+'))) s++; while(*s){ - if(!wxIsdigit(*s)) return(FALSE); + if(!wxIsdigit(*s)) return(false); s++; } - return(TRUE); + return(true); } wxString wxString::Strip(stripType w) const { wxString s = *this; - if ( w & leading ) s.Trim(FALSE); - if ( w & trailing ) s.Trim(TRUE); + if ( w & leading ) s.Trim(false); + if ( w & trailing ) s.Trim(true); return s; } @@ -964,20 +1561,16 @@ wxString wxString::Strip(stripType w) const wxString& wxString::MakeUpper() { - CopyBeforeWrite(); - - for ( wxChar *p = m_pchData; *p; p++ ) - *p = (wxChar)wxToupper(*p); + for ( iterator it = begin(), en = end(); it != en; ++it ) + *it = (wxChar)wxToupper(*it); return *this; } wxString& wxString::MakeLower() { - CopyBeforeWrite(); - - for ( wxChar *p = m_pchData; *p; p++ ) - *p = (wxChar)wxTolower(*p); + for ( iterator it = begin(), en = end(); it != en; ++it ) + *it = (wxChar)wxTolower(*it); return *this; } @@ -986,76 +1579,76 @@ wxString& wxString::MakeLower() // trimming and padding // --------------------------------------------------------------------------- +// some compilers (VC++ 6.0 not to name them) return true for a call to +// isspace('ê') in the C locale which seems to be broken to me, but we have to +// live with this by checking that the character is a 7 bit one - even if this +// may fail to detect some spaces (I don't know if Unicode doesn't have +// space-like symbols somewhere except in the first 128 chars), it is arguably +// still better than trimming away accented letters +inline int wxSafeIsspace(wxChar ch) { return (ch < 127) && wxIsspace(ch); } + // trims spaces (in the sense of isspace) from left or right side wxString& wxString::Trim(bool bFromRight) { - // first check if we're going to modify the string at all - if ( !IsEmpty() && - ( - (bFromRight && wxIsspace(GetChar(Len() - 1))) || - (!bFromRight && wxIsspace(GetChar(0u))) + // first check if we're going to modify the string at all + if ( !empty() && + ( + (bFromRight && wxSafeIsspace(GetChar(length() - 1))) || + (!bFromRight && wxSafeIsspace(GetChar(0u))) + ) ) - ) - { - // ok, there is at least one space to trim - CopyBeforeWrite(); - - if ( bFromRight ) - { - // find last non-space character - wxChar *psz = m_pchData + GetStringData()->nDataLength - 1; - while ( wxIsspace(*psz) && (psz >= m_pchData) ) - psz--; - - // truncate at trailing space start - *++psz = wxT('\0'); - GetStringData()->nDataLength = psz - m_pchData; - } - else { - // find first non-space character - const wxChar *psz = m_pchData; - while ( wxIsspace(*psz) ) - psz++; + if ( bFromRight ) + { + // find last non-space character + reverse_iterator psz = rbegin(); + while ( (psz != rend()) && wxSafeIsspace(*psz) ) + psz++; + + // truncate at trailing space start + erase(psz.base(), end()); + } + else + { + // find first non-space character + iterator psz = begin(); + while ( (psz != end()) && wxSafeIsspace(*psz) ) + psz++; - // fix up data and length - int nDataLength = GetStringData()->nDataLength - (psz - (const wxChar*) m_pchData); - memmove(m_pchData, psz, (nDataLength + 1)*sizeof(wxChar)); - GetStringData()->nDataLength = nDataLength; + // fix up data and length + erase(begin(), psz); + } } - } - return *this; + return *this; } // adds nCount characters chPad to the string from either side wxString& wxString::Pad(size_t nCount, wxChar chPad, bool bFromRight) { - wxString s(chPad, nCount); + wxString s(chPad, nCount); - if ( bFromRight ) - *this += s; - else - { - s += *this; - *this = s; - } + if ( bFromRight ) + *this += s; + else + { + s += *this; + swap(s); + } - return *this; + return *this; } // truncate the string wxString& wxString::Truncate(size_t uiLen) { - if ( uiLen < Len() ) { - CopyBeforeWrite(); - - *(m_pchData + uiLen) = wxT('\0'); - GetStringData()->nDataLength = uiLen; - } - //else: nothing to do, string is already short enough + if ( uiLen < length() ) + { + erase(begin() + uiLen, end()); + } + //else: nothing to do, string is already short enough - return *this; + return *this; } // --------------------------------------------------------------------------- @@ -1065,60 +1658,113 @@ wxString& wxString::Truncate(size_t uiLen) // find a character int wxString::Find(wxChar ch, bool bFromEnd) const { - const wxChar *psz = bFromEnd ? wxStrrchr(m_pchData, ch) : wxStrchr(m_pchData, ch); + size_type idx = bFromEnd ? find_last_of(ch) : find_first_of(ch); - return (psz == NULL) ? wxNOT_FOUND : psz - (const wxChar*) m_pchData; + return (idx == npos) ? wxNOT_FOUND : (int)idx; } // find a sub-string (like strstr) int wxString::Find(const wxChar *pszSub) const { - const wxChar *psz = wxStrstr(m_pchData, pszSub); + size_type idx = find(pszSub); - return (psz == NULL) ? wxNOT_FOUND : psz - (const wxChar*) m_pchData; + return (idx == npos) ? wxNOT_FOUND : (int)idx; } // ---------------------------------------------------------------------------- // conversion to numbers // ---------------------------------------------------------------------------- -bool wxString::ToLong(long *val) const +// the implementation of all the functions below is exactly the same so factor +// it out +#ifndef __WATCOMC__ + +template +bool wxStringToIntType(const wxChar *start, + T *val, + int base, + T (*func)(const wxChar *, wxChar **, int)) { - wxCHECK_MSG( val, FALSE, _T("NULL pointer in wxString::ToLong") ); + wxCHECK_MSG( val, false, _T("NULL output pointer") ); + wxASSERT_MSG( !base || (base > 1 && base <= 36), _T("invalid base") ); + + errno = 0; - const wxChar *start = c_str(); wxChar *end; - *val = wxStrtol(start, &end, 10); + *val = (*func)(start, &end, base); + + // return true only if scan was stopped by the terminating NUL and if the + // string was not empty to start with and no under/overflow occurred + return !*end && (end != start) && (errno != ERANGE); +} - // return TRUE only if scan was stopped by the terminating NUL and if the - // string was not empty to start with - return !*end && (end != start); +#define wxSTR2INT(val, b, func) return wxStringToIntType(c_str(), val, b, func) + +#else // __WATCOMC__ + +// FIXME, TODO, ASAP !!! - ugly trick to make release for Open Watcom possible +// without changing code flow for other compilers + +#define wxSTR2INT(val, base, func) \ + wxCHECK_MSG( val, false, _T("NULL output pointer") ); \ + wxASSERT_MSG( !base || (base > 1 && base <= 36), _T("invalid base") ); \ + \ + errno = 0; \ + \ + wxChar *end; \ + *val = (*func)(c_str(), &end, base); \ + \ + return !*end && (end != c_str()) && (errno != ERANGE) + +#endif // !__WATCOMC__/__WATCOMC__ + +bool wxString::ToLong(long *val, int base) const +{ + wxSTR2INT(val, base, wxStrtol); } -bool wxString::ToULong(unsigned long *val) const +bool wxString::ToULong(unsigned long *val, int base) const { - wxCHECK_MSG( val, FALSE, _T("NULL pointer in wxString::ToULong") ); + wxSTR2INT(val, base, wxStrtoul); +} - const wxChar *start = c_str(); - wxChar *end; - *val = wxStrtoul(start, &end, 10); +bool wxString::ToLongLong(wxLongLong_t *val, int base) const +{ +#ifdef wxHAS_STRTOLL + wxSTR2INT(val, base, wxStrtoll); +#else + // TODO: implement this ourselves + wxUnusedVar(val); + wxUnusedVar(base); + return false; +#endif // wxHAS_STRTOLL +} - // return TRUE only if scan was stopped by the terminating NUL and if the - // string was not empty to start with - return !*end && (end != start); +bool wxString::ToULongLong(wxULongLong_t *val, int base) const +{ +#ifdef wxHAS_STRTOLL + wxSTR2INT(val, base, wxStrtoull); +#else + // TODO: implement this ourselves + wxUnusedVar(val); + wxUnusedVar(base); + return false; +#endif } bool wxString::ToDouble(double *val) const { - wxCHECK_MSG( val, FALSE, _T("NULL pointer in wxString::ToDouble") ); + wxCHECK_MSG( val, false, _T("NULL pointer in wxString::ToDouble") ); + + errno = 0; const wxChar *start = c_str(); wxChar *end; *val = wxStrtod(start, &end); - // return TRUE only if scan was stopped by the terminating NUL and if the - // string was not empty to start with - return !*end && (end != start); + // return true only if scan was stopped by the terminating NUL and if the + // string was not empty to start with and no under/overflow occurred + return !*end && (end != start) && (errno != ERANGE); } // --------------------------------------------------------------------------- @@ -1143,331 +1789,166 @@ wxString wxString::Format(const wxChar *pszFormat, ...) wxString wxString::FormatV(const wxChar *pszFormat, va_list argptr) { wxString s; - s.Printf(pszFormat, argptr); + s.PrintfV(pszFormat, argptr); return s; } int wxString::Printf(const wxChar *pszFormat, ...) { - va_list argptr; - va_start(argptr, pszFormat); - - int iLen = PrintfV(pszFormat, argptr); - - va_end(argptr); - - return iLen; -} - -int wxString::PrintfV(const wxChar* pszFormat, va_list argptr) -{ -#if wxUSE_EXPERIMENTAL_PRINTF - // the new implementation - - // buffer to avoid dynamic memory allocation each time for small strings - char szScratch[1024]; - - Reinit(); - for (size_t n = 0; pszFormat[n]; n++) - if (pszFormat[n] == wxT('%')) { - static char s_szFlags[256] = "%"; - size_t flagofs = 1; - bool adj_left = FALSE, in_prec = FALSE, - prec_dot = FALSE, done = FALSE; - int ilen = 0; - size_t min_width = 0, max_width = wxSTRING_MAXLEN; - do { -#define CHECK_PREC if (in_prec && !prec_dot) { s_szFlags[flagofs++] = '.'; prec_dot = TRUE; } - switch (pszFormat[++n]) { - case wxT('\0'): - done = TRUE; - break; - case wxT('%'): - *this += wxT('%'); - done = TRUE; - break; - case wxT('#'): - case wxT('0'): - case wxT(' '): - case wxT('+'): - case wxT('\''): - CHECK_PREC - s_szFlags[flagofs++] = pszFormat[n]; - break; - case wxT('-'): - CHECK_PREC - adj_left = TRUE; - s_szFlags[flagofs++] = pszFormat[n]; - break; - case wxT('.'): - CHECK_PREC - in_prec = TRUE; - prec_dot = FALSE; - max_width = 0; - // dot will be auto-added to s_szFlags if non-negative number follows - break; - case wxT('h'): - ilen = -1; - CHECK_PREC - s_szFlags[flagofs++] = pszFormat[n]; - break; - case wxT('l'): - ilen = 1; - CHECK_PREC - s_szFlags[flagofs++] = pszFormat[n]; - break; - case wxT('q'): - case wxT('L'): - ilen = 2; - CHECK_PREC - s_szFlags[flagofs++] = pszFormat[n]; - break; - case wxT('Z'): - ilen = 3; - CHECK_PREC - s_szFlags[flagofs++] = pszFormat[n]; - break; - case wxT('*'): - { - int len = va_arg(argptr, int); - if (in_prec) { - if (len<0) break; - CHECK_PREC - max_width = len; - } else { - if (len<0) { - adj_left = !adj_left; - s_szFlags[flagofs++] = '-'; - len = -len; - } - min_width = len; - } - flagofs += ::sprintf(s_szFlags+flagofs,"%d",len); - } - break; - case wxT('1'): case wxT('2'): case wxT('3'): - case wxT('4'): case wxT('5'): case wxT('6'): - case wxT('7'): case wxT('8'): case wxT('9'): - { - int len = 0; - CHECK_PREC - while ((pszFormat[n]>=wxT('0')) && (pszFormat[n]<=wxT('9'))) { - s_szFlags[flagofs++] = pszFormat[n]; - len = len*10 + (pszFormat[n] - wxT('0')); - n++; - } - if (in_prec) max_width = len; - else min_width = len; - n--; // the main loop pre-increments n again - } - break; - case wxT('d'): - case wxT('i'): - case wxT('o'): - case wxT('u'): - case wxT('x'): - case wxT('X'): - CHECK_PREC - s_szFlags[flagofs++] = pszFormat[n]; - s_szFlags[flagofs] = '\0'; - if (ilen == 0 ) { - int val = va_arg(argptr, int); - ::sprintf(szScratch, s_szFlags, val); - } - else if (ilen == -1) { - short int val = va_arg(argptr, short int); - ::sprintf(szScratch, s_szFlags, val); - } - else if (ilen == 1) { - long int val = va_arg(argptr, long int); - ::sprintf(szScratch, s_szFlags, val); - } - else if (ilen == 2) { -#if SIZEOF_LONG_LONG - long long int val = va_arg(argptr, long long int); - ::sprintf(szScratch, s_szFlags, val); -#else - long int val = va_arg(argptr, long int); - ::sprintf(szScratch, s_szFlags, val); -#endif - } - else if (ilen == 3) { - size_t val = va_arg(argptr, size_t); - ::sprintf(szScratch, s_szFlags, val); - } - *this += wxString(szScratch); - done = TRUE; - break; - case wxT('e'): - case wxT('E'): - case wxT('f'): - case wxT('g'): - case wxT('G'): - CHECK_PREC - s_szFlags[flagofs++] = pszFormat[n]; - s_szFlags[flagofs] = '\0'; - if (ilen == 2) { - long double val = va_arg(argptr, long double); - ::sprintf(szScratch, s_szFlags, val); - } else { - double val = va_arg(argptr, double); - ::sprintf(szScratch, s_szFlags, val); - } - *this += wxString(szScratch); - done = TRUE; - break; - case wxT('p'): - { - void *val = va_arg(argptr, void *); - CHECK_PREC - s_szFlags[flagofs++] = pszFormat[n]; - s_szFlags[flagofs] = '\0'; - ::sprintf(szScratch, s_szFlags, val); - *this += wxString(szScratch); - done = TRUE; - } - break; - case wxT('c'): - { - wxChar val = va_arg(argptr, int); - // we don't need to honor padding here, do we? - *this += val; - done = TRUE; - } - break; - case wxT('s'): - if (ilen == -1) { - // wx extension: we'll let %hs mean non-Unicode strings - char *val = va_arg(argptr, char *); -#if wxUSE_UNICODE - // ASCII->Unicode constructor handles max_width right - wxString s(val, wxConvLibc, max_width); -#else - size_t len = wxSTRING_MAXLEN; - if (val) { - for (len = 0; val[len] && (len= 1) { - long int *val = va_arg(argptr, long int *); - *val = Len(); - } - done = TRUE; - break; - default: - if (wxIsalpha(pszFormat[n])) - // probably some flag not taken care of here yet - s_szFlags[flagofs++] = pszFormat[n]; - else { - // bad format - *this += wxT('%'); // just to pass the glibc tst-printf.c - n--; - done = TRUE; - } - break; - } -#undef CHECK_PREC - } while (!done); - } else *this += pszFormat[n]; + va_list argptr; + va_start(argptr, pszFormat); -#else - // buffer to avoid dynamic memory allocation each time for small strings - char szScratch[1024]; - - // NB: wxVsnprintf() may return either less than the buffer size or -1 if - // there is not enough place depending on implementation - int iLen = wxVsnprintfA(szScratch, WXSIZEOF(szScratch), pszFormat, argptr); - if ( iLen != -1 ) { - // the whole string is in szScratch - *this = szScratch; - } - else { - bool outOfMemory = FALSE; - int size = 2*WXSIZEOF(szScratch); - while ( !outOfMemory ) { - char *buf = GetWriteBuf(size); - if ( buf ) - iLen = wxVsnprintfA(buf, size, pszFormat, argptr); - else - outOfMemory = TRUE; - - UngetWriteBuf(); - - if ( iLen != -1 ) { - // ok, there was enough space - break; - } + int iLen = PrintfV(pszFormat, argptr); - // still not enough, double it again - size *= 2; - } + va_end(argptr); - if ( outOfMemory ) { - // out of memory - return -1; - } - } -#endif // wxUSE_EXPERIMENTAL_PRINTF/!wxUSE_EXPERIMENTAL_PRINTF + return iLen; +} + +int wxString::PrintfV(const wxChar* pszFormat, va_list argptr) +{ + int size = 1024; - return Len(); + for ( ;; ) + { + wxStringBuffer tmp(*this, size + 1); + wxChar *buf = tmp; + + if ( !buf ) + { + // out of memory + return -1; + } + + // wxVsnprintf() may modify the original arg pointer, so pass it + // only a copy + va_list argptrcopy; + wxVaCopy(argptrcopy, argptr); + int len = wxVsnprintf(buf, size, pszFormat, argptrcopy); + va_end(argptrcopy); + + // some implementations of vsnprintf() don't NUL terminate + // the string if there is not enough space for it so + // always do it manually + buf[size] = _T('\0'); + + // vsnprintf() may return either -1 (traditional Unix behaviour) or the + // total number of characters which would have been written if the + // buffer were large enough (newer standards such as Unix98) + if ( len < 0 ) + { + // still not enough, as we don't know how much we need, double the + // current size of the buffer + size *= 2; + } + else if ( len >= size ) + { + // some vsnprintf() implementations NUL-terminate the buffer and + // some don't in len == size case, to be safe always add 1 + size = len + 1; + } + else // ok, there was enough space + { + break; + } + } + + // we could have overshot + Shrink(); + + return length(); } // ---------------------------------------------------------------------------- // misc other operations // ---------------------------------------------------------------------------- -// returns TRUE if the string matches the pattern which may contain '*' and +// returns true if the string matches the pattern which may contain '*' and // '?' metacharacters (as usual, '?' matches any character and '*' any number // of them) bool wxString::Matches(const wxChar *pszMask) const { - // check char by char - const wxChar *pszTxt; - for ( pszTxt = c_str(); *pszMask != wxT('\0'); pszMask++, pszTxt++ ) { + // I disable this code as it doesn't seem to be faster (in fact, it seems + // to be much slower) than the old, hand-written code below and using it + // here requires always linking with libregex even if the user code doesn't + // use it +#if 0 // wxUSE_REGEX + // first translate the shell-like mask into a regex + wxString pattern; + pattern.reserve(wxStrlen(pszMask)); + + pattern += _T('^'); + while ( *pszMask ) + { + switch ( *pszMask ) + { + case _T('?'): + pattern += _T('.'); + break; + + case _T('*'): + pattern += _T(".*"); + break; + + case _T('^'): + case _T('.'): + case _T('$'): + case _T('('): + case _T(')'): + case _T('|'): + case _T('+'): + case _T('\\'): + // these characters are special in a RE, quote them + // (however note that we don't quote '[' and ']' to allow + // using them for Unix shell like matching) + pattern += _T('\\'); + // fall through + + default: + pattern += *pszMask; + } + + pszMask++; + } + pattern += _T('$'); + + // and now use it + return wxRegEx(pattern, wxRE_NOSUB | wxRE_EXTENDED).Matches(c_str()); +#else // !wxUSE_REGEX + // TODO: this is, of course, awfully inefficient... + + // the char currently being checked + const wxChar *pszTxt = c_str(); + + // the last location where '*' matched + const wxChar *pszLastStarInText = NULL; + const wxChar *pszLastStarInMask = NULL; + +match: + for ( ; *pszMask != wxT('\0'); pszMask++, pszTxt++ ) { switch ( *pszMask ) { case wxT('?'): if ( *pszTxt == wxT('\0') ) - return FALSE; + return false; - // pszText and pszMask will be incremented in the loop statement + // pszTxt and pszMask will be incremented in the loop statement break; case wxT('*'): { + // remember where we started to be able to backtrack later + pszLastStarInText = pszTxt; + pszLastStarInMask = pszMask; + // ignore special chars immediately following this one + // (should this be an error?) while ( *pszMask == wxT('*') || *pszMask == wxT('?') ) pszMask++; // if there is nothing more, match if ( *pszMask == wxT('\0') ) - return TRUE; + return true; // are there any other metacharacters in the mask? size_t uiLenMask; @@ -1485,7 +1966,7 @@ bool wxString::Matches(const wxChar *pszMask) const wxString strToMatch(pszMask, uiLenMask); const wxChar* pMatch = wxStrstr(pszTxt, strToMatch); if ( pMatch == NULL ) - return FALSE; + return false; // -1 to compensate "++" in the loop pszTxt = pMatch + uiLenMask - 1; @@ -1495,20 +1976,36 @@ bool wxString::Matches(const wxChar *pszMask) const default: if ( *pszMask != *pszTxt ) - return FALSE; + return false; break; } } // match only if nothing left - return *pszTxt == wxT('\0'); + if ( *pszTxt == wxT('\0') ) + return true; + + // if we failed to match, backtrack if we can + if ( pszLastStarInText ) { + pszTxt = pszLastStarInText + 1; + pszMask = pszLastStarInMask; + + pszLastStarInText = NULL; + + // don't bother resetting pszLastStarInMask, it's unnecessary + + goto match; + } + + return false; +#endif // wxUSE_REGEX/!wxUSE_REGEX } // Count the number of chars int wxString::Freq(wxChar ch) const { int count = 0; - int len = Len(); + int len = length(); for (int i = 0; i < len; i++) { if (GetChar(i) == ch) @@ -1533,266 +2030,43 @@ int wxString::sprintf(const wxChar *pszFormat, ...) return iLen; } -// --------------------------------------------------------------------------- -// standard C++ library string functions -// --------------------------------------------------------------------------- -#ifdef wxSTD_STRING_COMPATIBILITY - -wxString& wxString::insert(size_t nPos, const wxString& str) -{ - wxASSERT( str.GetStringData()->IsValid() ); - wxASSERT( nPos <= Len() ); - - if ( !str.IsEmpty() ) { - wxString strTmp; - wxChar *pc = strTmp.GetWriteBuf(Len() + str.Len()); - wxStrncpy(pc, c_str(), nPos); - wxStrcpy(pc + nPos, str); - wxStrcpy(pc + nPos + str.Len(), c_str() + nPos); - strTmp.UngetWriteBuf(); - *this = strTmp; - } - - return *this; -} - -size_t wxString::find(const wxString& str, size_t nStart) const -{ - wxASSERT( str.GetStringData()->IsValid() ); - wxASSERT( nStart <= Len() ); - - const wxChar *p = wxStrstr(c_str() + nStart, str); - - return p == NULL ? npos : p - c_str(); -} +// ============================================================================ +// ArrayString +// ============================================================================ -// VC++ 1.5 can't cope with the default argument in the header. -#if !defined(__VISUALC__) || defined(__WIN32__) -size_t wxString::find(const wxChar* sz, size_t nStart, size_t n) const -{ - return find(wxString(sz, n), nStart); -} -#endif // VC++ 1.5 +#include "wx/arrstr.h" -// Gives a duplicate symbol (presumably a case-insensitivity problem) -#if !defined(__BORLANDC__) -size_t wxString::find(wxChar ch, size_t nStart) const +wxArrayString::wxArrayString(size_t sz, const wxChar** a) { - wxASSERT( nStart <= Len() ); - - const wxChar *p = wxStrchr(c_str() + nStart, ch); - - return p == NULL ? npos : p - c_str(); -} +#if !wxUSE_STL + Init(false); #endif - -size_t wxString::rfind(const wxString& str, size_t nStart) const -{ - wxASSERT( str.GetStringData()->IsValid() ); - wxASSERT( nStart <= Len() ); - - // TODO could be made much quicker than that - const wxChar *p = c_str() + (nStart == npos ? Len() : nStart); - while ( p >= c_str() + str.Len() ) { - if ( wxStrncmp(p - str.Len(), str, str.Len()) == 0 ) - return p - str.Len() - c_str(); - p--; - } - - return npos; -} - -// VC++ 1.5 can't cope with the default argument in the header. -#if !defined(__VISUALC__) || defined(__WIN32__) -size_t wxString::rfind(const wxChar* sz, size_t nStart, size_t n) const -{ - return rfind(wxString(sz, n == npos ? 0 : n), nStart); -} - -size_t wxString::rfind(wxChar ch, size_t nStart) const -{ - if ( nStart == npos ) - { - nStart = Len(); - } - else - { - wxASSERT( nStart <= Len() ); - } - - const wxChar *p = wxStrrchr(c_str(), ch); - - if ( p == NULL ) - return npos; - - size_t result = p - c_str(); - return ( result > nStart ) ? npos : result; -} -#endif // VC++ 1.5 - -size_t wxString::find_first_of(const wxChar* sz, size_t nStart) const -{ - const wxChar *start = c_str() + nStart; - const wxChar *firstOf = wxStrpbrk(start, sz); - if ( firstOf ) - return firstOf - c_str(); - else - return npos; -} - -size_t wxString::find_last_of(const wxChar* sz, size_t nStart) const -{ - if ( nStart == npos ) - { - nStart = Len(); - } - else - { - wxASSERT( nStart <= Len() ); - } - - for ( const wxChar *p = c_str() + length() - 1; p >= c_str(); p-- ) - { - if ( wxStrchr(sz, *p) ) - return p - c_str(); - } - - return npos; -} - -size_t wxString::find_first_not_of(const wxChar* sz, size_t nStart) const -{ - if ( nStart == npos ) - { - nStart = Len(); - } - else - { - wxASSERT( nStart <= Len() ); - } - - size_t nAccept = wxStrspn(c_str() + nStart, sz); - if ( nAccept >= length() - nStart ) - return npos; - else - return nAccept; -} - -size_t wxString::find_first_not_of(wxChar ch, size_t nStart) const -{ - wxASSERT( nStart <= Len() ); - - for ( const wxChar *p = c_str() + nStart; *p; p++ ) - { - if ( *p != ch ) - return p - c_str(); - } - - return npos; -} - -size_t wxString::find_last_not_of(const wxChar* sz, size_t nStart) const -{ - if ( nStart == npos ) - { - nStart = Len(); - } - else - { - wxASSERT( nStart <= Len() ); - } - - for ( const wxChar *p = c_str() + nStart - 1; p >= c_str(); p-- ) - { - if ( !wxStrchr(sz, *p) ) - return p - c_str(); - } - - return npos; -} - -size_t wxString::find_last_not_of(wxChar ch, size_t nStart) const -{ - if ( nStart == npos ) - { - nStart = Len(); - } - else - { - wxASSERT( nStart <= Len() ); - } - - for ( const wxChar *p = c_str() + nStart - 1; p >= c_str(); p-- ) - { - if ( *p != ch ) - return p - c_str(); - } - - return npos; -} - -wxString& wxString::erase(size_t nStart, size_t nLen) -{ - wxString strTmp(c_str(), nStart); - if ( nLen != npos ) { - wxASSERT( nStart + nLen <= Len() ); - - strTmp.append(c_str() + nStart + nLen); - } - - *this = strTmp; - return *this; -} - -wxString& wxString::replace(size_t nStart, size_t nLen, const wxChar *sz) -{ - wxASSERT_MSG( nStart + nLen <= Len(), - _T("index out of bounds in wxString::replace") ); - - wxString strTmp; - strTmp.Alloc(Len()); // micro optimisation to avoid multiple mem allocs - - if ( nStart != 0 ) - strTmp.append(c_str(), nStart); - strTmp << sz << c_str() + nStart + nLen; - - *this = strTmp; - return *this; -} - -wxString& wxString::replace(size_t nStart, size_t nLen, size_t nCount, wxChar ch) -{ - return replace(nStart, nLen, wxString(ch, nCount)); -} - -wxString& wxString::replace(size_t nStart, size_t nLen, - const wxString& str, size_t nStart2, size_t nLen2) -{ - return replace(nStart, nLen, str.substr(nStart2, nLen2)); + for (size_t i=0; i < sz; i++) + Add(a[i]); } -wxString& wxString::replace(size_t nStart, size_t nLen, - const wxChar* sz, size_t nCount) +wxArrayString::wxArrayString(size_t sz, const wxString* a) { - return replace(nStart, nLen, wxString(sz, nCount)); +#if !wxUSE_STL + Init(false); +#endif + for (size_t i=0; i < sz; i++) + Add(a[i]); } -#endif //std::string compatibility - -// ============================================================================ -// ArrayString -// ============================================================================ +#if !wxUSE_STL -// size increment = max(50% of current size, ARRAY_MAXSIZE_INCREMENT) +// size increment = min(50% of current size, ARRAY_MAXSIZE_INCREMENT) #define ARRAY_MAXSIZE_INCREMENT 4096 + #ifndef ARRAY_DEFAULT_INITIAL_SIZE // also defined in dynarray.h - #define ARRAY_DEFAULT_INITIAL_SIZE (16) +#define ARRAY_DEFAULT_INITIAL_SIZE (16) #endif #define STRING(p) ((wxString *)(&(p))) // ctor -wxArrayString::wxArrayString(bool autoSort) +void wxArrayString::Init(bool autoSort) { m_nSize = m_nCount = 0; @@ -1803,10 +2077,7 @@ wxArrayString::wxArrayString(bool autoSort) // copy ctor wxArrayString::wxArrayString(const wxArrayString& src) { - m_nSize = - m_nCount = 0; - m_pItems = (wxChar **) NULL; - m_autoSort = src.m_autoSort; + Init(src.m_autoSort); *this = src; } @@ -1819,6 +2090,8 @@ wxArrayString& wxArrayString::operator=(const wxArrayString& src) Copy(src); + m_autoSort = src.m_autoSort; + return *this; } @@ -1832,30 +2105,33 @@ void wxArrayString::Copy(const wxArrayString& src) } // grow the array -void wxArrayString::Grow() +void wxArrayString::Grow(size_t nIncrement) { // only do it if no more place - if( m_nCount == m_nSize ) { - if( m_nSize == 0 ) { + if ( (m_nSize - m_nCount) < nIncrement ) { + // if ARRAY_DEFAULT_INITIAL_SIZE were set to 0, the initially empty would + // be never resized! + #if ARRAY_DEFAULT_INITIAL_SIZE == 0 + #error "ARRAY_DEFAULT_INITIAL_SIZE must be > 0!" + #endif + + if ( m_nSize == 0 ) { // was empty, alloc some memory m_nSize = ARRAY_DEFAULT_INITIAL_SIZE; + if (m_nSize < nIncrement) + m_nSize = nIncrement; m_pItems = new wxChar *[m_nSize]; } else { // otherwise when it's called for the first time, nIncrement would be 0 // and the array would never be expanded -#if defined(__VISAGECPP__) && defined(__WXDEBUG__) - int array_size = ARRAY_DEFAULT_INITIAL_SIZE; - wxASSERT( array_size != 0 ); -#else - wxASSERT( ARRAY_DEFAULT_INITIAL_SIZE != 0 ); -#endif - // add 50% but not too much - size_t nIncrement = m_nSize < ARRAY_DEFAULT_INITIAL_SIZE + size_t ndefIncrement = m_nSize < ARRAY_DEFAULT_INITIAL_SIZE ? ARRAY_DEFAULT_INITIAL_SIZE : m_nSize >> 1; - if ( nIncrement > ARRAY_MAXSIZE_INCREMENT ) - nIncrement = ARRAY_MAXSIZE_INCREMENT; + if ( ndefIncrement > ARRAY_MAXSIZE_INCREMENT ) + ndefIncrement = ARRAY_MAXSIZE_INCREMENT; + if ( nIncrement < ndefIncrement ) + nIncrement = ndefIncrement; m_nSize += nIncrement; wxChar **pNew = new wxChar *[m_nSize]; @@ -1904,11 +2180,14 @@ wxArrayString::~wxArrayString() wxDELETEA(m_pItems); } +void wxArrayString::reserve(size_t nSize) +{ + Alloc(nSize); +} + // pre-allocates memory (frees the previous data!) void wxArrayString::Alloc(size_t nSize) { - wxASSERT( nSize > 0 ); - // only if old buffer was not big enough if ( nSize > m_nSize ) { Free(); @@ -1935,6 +2214,30 @@ void wxArrayString::Shrink() } } +#if WXWIN_COMPATIBILITY_2_4 + +// return a wxString[] as required for some control ctors. +wxString* wxArrayString::GetStringArray() const +{ + wxString *array = 0; + + if( m_nCount > 0 ) + { + array = new wxString[m_nCount]; + for( size_t i = 0; i < m_nCount; i++ ) + array[i] = m_pItems[i]; + } + + return array; +} + +void wxArrayString::Remove(size_t nIndex, size_t nRemove) +{ + RemoveAt(nIndex, nRemove); +} + +#endif // WXWIN_COMPATIBILITY_2_4 + // searches the array for an item (forward or backwards) int wxArrayString::Index(const wxChar *sz, bool bCase, bool bFromEnd) const { @@ -1985,7 +2288,7 @@ int wxArrayString::Index(const wxChar *sz, bool bCase, bool bFromEnd) const } // add item at the end -size_t wxArrayString::Add(const wxString& str) +size_t wxArrayString::Add(const wxString& str, size_t nInsert) { if ( m_autoSort ) { // insert the string at the correct position to keep the array sorted @@ -1996,7 +2299,7 @@ size_t wxArrayString::Add(const wxString& str) while ( lo < hi ) { i = (lo + hi)/2; - res = wxStrcmp(str, m_pItems[i]); + res = str.Cmp(m_pItems[i]); if ( res < 0 ) hi = i; else if ( res > 0 ) @@ -2009,54 +2312,99 @@ size_t wxArrayString::Add(const wxString& str) wxASSERT_MSG( lo == hi, wxT("binary search broken") ); - Insert(str, lo); + Insert(str, lo, nInsert); return (size_t)lo; } else { wxASSERT( str.GetStringData()->IsValid() ); - Grow(); + Grow(nInsert); - // the string data must not be deleted! - str.GetStringData()->Lock(); - - // just append - m_pItems[m_nCount] = (wxChar *)str.c_str(); // const_cast + for (size_t i = 0; i < nInsert; i++) + { + // the string data must not be deleted! + str.GetStringData()->Lock(); - return m_nCount++; + // just append + m_pItems[m_nCount + i] = (wxChar *)str.c_str(); // const_cast + } + size_t ret = m_nCount; + m_nCount += nInsert; + return ret; } } // add item at the given position -void wxArrayString::Insert(const wxString& str, size_t nIndex) +void wxArrayString::Insert(const wxString& str, size_t nIndex, size_t nInsert) { wxASSERT( str.GetStringData()->IsValid() ); wxCHECK_RET( nIndex <= m_nCount, wxT("bad index in wxArrayString::Insert") ); + wxCHECK_RET( m_nCount <= m_nCount + nInsert, + wxT("array size overflow in wxArrayString::Insert") ); - Grow(); + Grow(nInsert); - memmove(&m_pItems[nIndex + 1], &m_pItems[nIndex], + memmove(&m_pItems[nIndex + nInsert], &m_pItems[nIndex], (m_nCount - nIndex)*sizeof(wxChar *)); - str.GetStringData()->Lock(); - m_pItems[nIndex] = (wxChar *)str.c_str(); + for (size_t i = 0; i < nInsert; i++) + { + str.GetStringData()->Lock(); + m_pItems[nIndex + i] = (wxChar *)str.c_str(); + } + m_nCount += nInsert; +} + +// range insert (STL 23.2.4.3) +void +wxArrayString::insert(iterator it, const_iterator first, const_iterator last) +{ + const int idx = it - begin(); + + // grow it once + Grow(last - first); + + // reset "it" since it can change inside Grow() + it = begin() + idx; + + while ( first != last ) + { + it = insert(it, *first); + + // insert returns an iterator to the last element inserted but we need + // insert the next after this one, that is before the next one + ++it; + + ++first; + } +} + +// expand the array +void wxArrayString::SetCount(size_t count) +{ + Alloc(count); - m_nCount++; + wxString s; + while ( m_nCount < count ) + m_pItems[m_nCount++] = (wxChar *)s.c_str(); } // removes item from array (by index) -void wxArrayString::Remove(size_t nIndex) +void wxArrayString::RemoveAt(size_t nIndex, size_t nRemove) { - wxCHECK_RET( nIndex <= m_nCount, wxT("bad index in wxArrayString::Remove") ); + wxCHECK_RET( nIndex < m_nCount, wxT("bad index in wxArrayString::Remove") ); + wxCHECK_RET( nIndex + nRemove <= m_nCount, + wxT("removing too many elements in wxArrayString::Remove") ); // release our lock - Item(nIndex).GetStringData()->Unlock(); + for (size_t i = 0; i < nRemove; i++) + Item(nIndex + i).GetStringData()->Unlock(); - memmove(&m_pItems[nIndex], &m_pItems[nIndex + 1], - (m_nCount - nIndex - 1)*sizeof(wxChar *)); - m_nCount--; + memmove(&m_pItems[nIndex], &m_pItems[nIndex + nRemove], + (m_nCount - nIndex - nRemove)*sizeof(wxChar *)); + m_nCount -= nRemove; } // removes item from array (by value) @@ -2067,7 +2415,14 @@ void wxArrayString::Remove(const wxChar *sz) wxCHECK_RET( iIndex != wxNOT_FOUND, wxT("removing inexistent element in wxArrayString::Remove") ); - Remove(iIndex); + RemoveAt(iIndex); +} + +void wxArrayString::assign(const_iterator first, const_iterator last) +{ + reserve(last - first); + for(; first != last; ++first) + push_back(*first); } // ---------------------------------------------------------------------------- @@ -2079,19 +2434,7 @@ void wxArrayString::Remove(const wxChar *sz) #if wxUSE_THREADS // need a critical section to protect access to gs_compareFunction and // gs_sortAscending variables - static wxCriticalSection *gs_critsectStringSort = NULL; - - // call this before the value of the global sort vars is changed/after - // you're finished with them - #define START_SORT() wxASSERT( !gs_critsectStringSort ); \ - gs_critsectStringSort = new wxCriticalSection; \ - gs_critsectStringSort->Enter() - #define END_SORT() gs_critsectStringSort->Leave(); \ - delete gs_critsectStringSort; \ - gs_critsectStringSort = NULL -#else // !threads - #define START_SORT() - #define END_SORT() + static wxCriticalSection gs_critsectStringSort; #endif // wxUSE_THREADS // function to use for string comparaison @@ -2099,10 +2442,11 @@ static wxArrayString::CompareFunction gs_compareFunction = NULL; // if we don't use the compare function, this flag tells us if we sort the // array in ascending or descending order -static bool gs_sortAscending = TRUE; +static bool gs_sortAscending = true; // function which is called by quick sort -static int LINKAGEMODE wxStringCompareFunction(const void *first, const void *second) +extern "C" int wxC_CALLING_CONV // LINKAGEMODE +wxStringCompareFunction(const void *first, const void *second) { wxString *strFirst = (wxString *)first; wxString *strSecond = (wxString *)second; @@ -2112,7 +2456,7 @@ static int LINKAGEMODE wxStringCompareFunction(const void *first, const void *se } else { // maybe we should use wxStrcoll - int result = wxStrcmp(strFirst->c_str(), strSecond->c_str()); + int result = strFirst->Cmp(*strSecond); return gs_sortAscending ? result : -result; } @@ -2121,7 +2465,7 @@ static int LINKAGEMODE wxStringCompareFunction(const void *first, const void *se // sort array elements using passed comparaison function void wxArrayString::Sort(CompareFunction compareFunction) { - START_SORT(); + wxCRIT_SECT_LOCKER(lockCmpFunc, gs_critsectStringSort); wxASSERT( !gs_compareFunction ); // must have been reset to NULL gs_compareFunction = compareFunction; @@ -2130,20 +2474,22 @@ void wxArrayString::Sort(CompareFunction compareFunction) // reset it to NULL so that Sort(bool) will work the next time gs_compareFunction = NULL; - - END_SORT(); } -void wxArrayString::Sort(bool reverseOrder) +extern "C" { - START_SORT(); - - wxASSERT( !gs_compareFunction ); // must have been reset to NULL - gs_sortAscending = !reverseOrder; + typedef int (wxC_CALLING_CONV * wxStringCompareFn)(const void *first, + const void *second); +} - DoSort(); +void wxArrayString::Sort(CompareFunction2 compareFunction) +{ + qsort(m_pItems, m_nCount, sizeof(wxChar *), (wxStringCompareFn)compareFunction); +} - END_SORT(); +void wxArrayString::Sort(bool reverseOrder) +{ + Sort(reverseOrder ? wxStringSortDescending : wxStringSortAscending); } void wxArrayString::DoSort() @@ -2158,14 +2504,25 @@ void wxArrayString::DoSort() bool wxArrayString::operator==(const wxArrayString& a) const { if ( m_nCount != a.m_nCount ) - return FALSE; + return false; for ( size_t n = 0; n < m_nCount; n++ ) { if ( Item(n) != a[n] ) - return FALSE; + return false; } - return TRUE; + return true; +} + +#endif // !wxUSE_STL + +int wxCMPFUNC_CONV wxStringSortAscending(wxString* s1, wxString* s2) +{ + return s1->Cmp(*s2); } +int wxCMPFUNC_CONV wxStringSortDescending(wxString* s1, wxString* s2) +{ + return -s1->Cmp(*s2); +}