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1/////////////////////////////////////////////////////////////////////////////
2// Name: strconv.cpp
3// Purpose: Unicode conversion classes
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4// Author: Ove Kaaven, Robert Roebling, Vadim Zeitlin, Vaclav Slavik,
5// Ryan Norton, Fredrik Roubert (UTF7)
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6// Modified by:
7// Created: 29/01/98
8// RCS-ID: $Id$
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9// Copyright: (c) 1999 Ove Kaaven, Robert Roebling, Vaclav Slavik
10// (c) 2000-2003 Vadim Zeitlin
15f2ee32 11// (c) 2004 Ryan Norton, Fredrik Roubert
65571936 12// Licence: wxWindows licence
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13/////////////////////////////////////////////////////////////////////////////
14
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15// ============================================================================
16// declarations
17// ============================================================================
18
19// ----------------------------------------------------------------------------
20// headers
21// ----------------------------------------------------------------------------
22
14f355c2 23#if defined(__GNUG__) && !defined(NO_GCC_PRAGMA)
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24 #pragma implementation "strconv.h"
25#endif
26
27// For compilers that support precompilation, includes "wx.h".
28#include "wx/wxprec.h"
29
30#ifdef __BORLANDC__
31 #pragma hdrstop
32#endif
33
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34#ifndef WX_PRECOMP
35 #include "wx/intl.h"
36 #include "wx/log.h"
37#endif // WX_PRECOMP
38
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39#include "wx/strconv.h"
40
41#if wxUSE_WCHAR_T
42
7608a683 43#ifdef __WINDOWS__
532d575b 44 #include "wx/msw/private.h"
13dd924a 45 #include "wx/msw/missing.h"
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46#endif
47
1c193821 48#ifndef __WXWINCE__
1cd52418 49#include <errno.h>
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50#endif
51
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52#include <ctype.h>
53#include <string.h>
54#include <stdlib.h>
55
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56#if defined(__WIN32__) && !defined(__WXMICROWIN__)
57 #define wxHAVE_WIN32_MB2WC
58#endif // __WIN32__ but !__WXMICROWIN__
59
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60// ----------------------------------------------------------------------------
61// headers
62// ----------------------------------------------------------------------------
7af284fd 63
6001e347 64#ifdef __SALFORDC__
373658eb 65 #include <clib.h>
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66#endif
67
b040e242 68#ifdef HAVE_ICONV
373658eb 69 #include <iconv.h>
b1d547eb 70 #include "wx/thread.h"
1cd52418 71#endif
1cd52418 72
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73#include "wx/encconv.h"
74#include "wx/fontmap.h"
7608a683 75#include "wx/utils.h"
373658eb 76
335d31e0 77#ifdef __WXMAC__
40ba2f3b 78#ifndef __DARWIN__
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79#include <ATSUnicode.h>
80#include <TextCommon.h>
81#include <TextEncodingConverter.h>
40ba2f3b 82#endif
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83
84#include "wx/mac/private.h" // includes mac headers
85#endif
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86// ----------------------------------------------------------------------------
87// macros
88// ----------------------------------------------------------------------------
3e61dfb0 89
1cd52418 90#define BSWAP_UCS4(str, len) { unsigned _c; for (_c=0; _c<len; _c++) str[_c]=wxUINT32_SWAP_ALWAYS(str[_c]); }
3a0d76bc 91#define BSWAP_UTF16(str, len) { unsigned _c; for (_c=0; _c<len; _c++) str[_c]=wxUINT16_SWAP_ALWAYS(str[_c]); }
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92
93#if SIZEOF_WCHAR_T == 4
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94 #define WC_NAME "UCS4"
95 #define WC_BSWAP BSWAP_UCS4
96 #ifdef WORDS_BIGENDIAN
97 #define WC_NAME_BEST "UCS-4BE"
98 #else
99 #define WC_NAME_BEST "UCS-4LE"
100 #endif
1cd52418 101#elif SIZEOF_WCHAR_T == 2
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102 #define WC_NAME "UTF16"
103 #define WC_BSWAP BSWAP_UTF16
a3f2769e 104 #define WC_UTF16
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105 #ifdef WORDS_BIGENDIAN
106 #define WC_NAME_BEST "UTF-16BE"
107 #else
108 #define WC_NAME_BEST "UTF-16LE"
109 #endif
bab1e722 110#else // sizeof(wchar_t) != 2 nor 4
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111 // does this ever happen?
112 #error "Unknown sizeof(wchar_t): please report this to wx-dev@lists.wxwindows.org"
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113#endif
114
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115// ============================================================================
116// implementation
117// ============================================================================
118
119// ----------------------------------------------------------------------------
c91830cb 120// UTF-16 en/decoding to/from UCS-4
373658eb 121// ----------------------------------------------------------------------------
6001e347 122
b0a6bb75 123
c91830cb 124static size_t encode_utf16(wxUint32 input, wxUint16 *output)
1cd52418 125{
dccce9ea 126 if (input<=0xffff)
4def3b35 127 {
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128 if (output)
129 *output = (wxUint16) input;
4def3b35 130 return 1;
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131 }
132 else if (input>=0x110000)
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133 {
134 return (size_t)-1;
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135 }
136 else
4def3b35 137 {
dccce9ea 138 if (output)
4def3b35 139 {
c91830cb 140 *output++ = (wxUint16) ((input >> 10)+0xd7c0);
999836aa 141 *output = (wxUint16) ((input&0x3ff)+0xdc00);
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142 }
143 return 2;
1cd52418 144 }
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145}
146
c91830cb 147static size_t decode_utf16(const wxUint16* input, wxUint32& output)
1cd52418 148{
dccce9ea 149 if ((*input<0xd800) || (*input>0xdfff))
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150 {
151 output = *input;
152 return 1;
dccce9ea 153 }
cdb14ecb 154 else if ((input[1]<0xdc00) || (input[1]>0xdfff))
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155 {
156 output = *input;
157 return (size_t)-1;
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158 }
159 else
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160 {
161 output = ((input[0] - 0xd7c0) << 10) + (input[1] - 0xdc00);
162 return 2;
163 }
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164}
165
b0a6bb75 166
f6bcfd97 167// ----------------------------------------------------------------------------
6001e347 168// wxMBConv
f6bcfd97 169// ----------------------------------------------------------------------------
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170
171wxMBConv::~wxMBConv()
172{
173 // nothing to do here (necessary for Darwin linking probably)
174}
6001e347 175
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176const wxWCharBuffer wxMBConv::cMB2WC(const char *psz) const
177{
2b5f62a0 178 if ( psz )
6001e347 179 {
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180 // calculate the length of the buffer needed first
181 size_t nLen = MB2WC(NULL, psz, 0);
182 if ( nLen != (size_t)-1 )
183 {
184 // now do the actual conversion
185 wxWCharBuffer buf(nLen);
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186 nLen = MB2WC(buf.data(), psz, nLen + 1); // with the trailing NULL
187 if ( nLen != (size_t)-1 )
188 {
189 return buf;
190 }
2b5f62a0 191 }
f6bcfd97 192 }
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193
194 wxWCharBuffer buf((wchar_t *)NULL);
195
196 return buf;
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197}
198
e5cceba0 199const wxCharBuffer wxMBConv::cWC2MB(const wchar_t *pwz) const
6001e347 200{
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201 if ( pwz )
202 {
203 size_t nLen = WC2MB(NULL, pwz, 0);
204 if ( nLen != (size_t)-1 )
205 {
c91830cb 206 wxCharBuffer buf(nLen+3); // space for a wxUint32 trailing zero
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207 nLen = WC2MB(buf.data(), pwz, nLen + 4);
208 if ( nLen != (size_t)-1 )
209 {
210 return buf;
211 }
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212 }
213 }
214
215 wxCharBuffer buf((char *)NULL);
e5cceba0 216
e5cceba0 217 return buf;
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218}
219
f5fb6871 220const wxWCharBuffer wxMBConv::cMB2WC(const char *szString, size_t nStringLen, size_t* pOutSize) const
e4e3bbb4 221{
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222 wxASSERT(pOutSize != NULL);
223
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224 const char* szEnd = szString + nStringLen + 1;
225 const char* szPos = szString;
226 const char* szStart = szPos;
227
228 size_t nActualLength = 0;
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229 size_t nCurrentSize = nStringLen; //try normal size first (should never resize?)
230
231 wxWCharBuffer theBuffer(nCurrentSize);
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232
233 //Convert the string until the length() is reached, continuing the
234 //loop every time a null character is reached
235 while(szPos != szEnd)
236 {
237 wxASSERT(szPos < szEnd); //something is _really_ screwed up if this rings true
238
239 //Get the length of the current (sub)string
240 size_t nLen = MB2WC(NULL, szPos, 0);
241
242 //Invalid conversion?
243 if( nLen == (size_t)-1 )
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244 {
245 *pOutSize = 0;
246 theBuffer.data()[0u] = wxT('\0');
247 return theBuffer;
248 }
249
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250
251 //Increase the actual length (+1 for current null character)
252 nActualLength += nLen + 1;
253
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254 //if buffer too big, realloc the buffer
255 if (nActualLength > (nCurrentSize+1))
256 {
257 wxWCharBuffer theNewBuffer(nCurrentSize << 1);
258 memcpy(theNewBuffer.data(), theBuffer.data(), nCurrentSize * sizeof(wchar_t));
259 theBuffer = theNewBuffer;
260 nCurrentSize <<= 1;
261 }
262
263 //Convert the current (sub)string
264 if ( MB2WC(&theBuffer.data()[szPos - szStart], szPos, nLen + 1) == (size_t)-1 )
e4e3bbb4 265 {
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266 *pOutSize = 0;
267 theBuffer.data()[0u] = wxT('\0');
268 return theBuffer;
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269 }
270
271 //Increment to next (sub)string
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272 //Note that we have to use strlen instead of nLen here
273 //because XX2XX gives us the size of the output buffer,
274 //which is not necessarily the length of the string
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275 szPos += strlen(szPos) + 1;
276 }
277
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278 //success - return actual length and the buffer
279 *pOutSize = nActualLength;
3698ae71 280 return theBuffer;
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281}
282
f5fb6871 283const wxCharBuffer wxMBConv::cWC2MB(const wchar_t *szString, size_t nStringLen, size_t* pOutSize) const
e4e3bbb4 284{
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285 wxASSERT(pOutSize != NULL);
286
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287 const wchar_t* szEnd = szString + nStringLen + 1;
288 const wchar_t* szPos = szString;
289 const wchar_t* szStart = szPos;
290
291 size_t nActualLength = 0;
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292 size_t nCurrentSize = nStringLen << 2; //try * 4 first
293
294 wxCharBuffer theBuffer(nCurrentSize);
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295
296 //Convert the string until the length() is reached, continuing the
297 //loop every time a null character is reached
298 while(szPos != szEnd)
299 {
300 wxASSERT(szPos < szEnd); //something is _really_ screwed up if this rings true
301
302 //Get the length of the current (sub)string
303 size_t nLen = WC2MB(NULL, szPos, 0);
304
305 //Invalid conversion?
306 if( nLen == (size_t)-1 )
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307 {
308 *pOutSize = 0;
309 theBuffer.data()[0u] = wxT('\0');
310 return theBuffer;
311 }
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312
313 //Increase the actual length (+1 for current null character)
314 nActualLength += nLen + 1;
3698ae71 315
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316 //if buffer too big, realloc the buffer
317 if (nActualLength > (nCurrentSize+1))
318 {
319 wxCharBuffer theNewBuffer(nCurrentSize << 1);
320 memcpy(theNewBuffer.data(), theBuffer.data(), nCurrentSize);
321 theBuffer = theNewBuffer;
322 nCurrentSize <<= 1;
323 }
324
325 //Convert the current (sub)string
326 if(WC2MB(&theBuffer.data()[szPos - szStart], szPos, nLen + 1) == (size_t)-1 )
e4e3bbb4 327 {
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328 *pOutSize = 0;
329 theBuffer.data()[0u] = wxT('\0');
330 return theBuffer;
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331 }
332
333 //Increment to next (sub)string
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334 //Note that we have to use wxWcslen instead of nLen here
335 //because XX2XX gives us the size of the output buffer,
336 //which is not necessarily the length of the string
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337 szPos += wxWcslen(szPos) + 1;
338 }
339
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340 //success - return actual length and the buffer
341 *pOutSize = nActualLength;
3698ae71 342 return theBuffer;
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343}
344
6001e347 345// ----------------------------------------------------------------------------
bde4baac 346// wxMBConvLibc
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347// ----------------------------------------------------------------------------
348
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349size_t wxMBConvLibc::MB2WC(wchar_t *buf, const char *psz, size_t n) const
350{
351 return wxMB2WC(buf, psz, n);
352}
353
354size_t wxMBConvLibc::WC2MB(char *buf, const wchar_t *psz, size_t n) const
355{
356 return wxWC2MB(buf, psz, n);
357}
e1bfe89e 358
66bf0099 359#ifdef __UNIX__
c12b7f79 360
e1bfe89e 361// ----------------------------------------------------------------------------
532d575b 362// wxConvBrokenFileNames
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363// ----------------------------------------------------------------------------
364
845905d5 365wxConvBrokenFileNames::wxConvBrokenFileNames(const wxChar *charset)
ea8ce907 366{
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367 if ( !charset || wxStricmp(charset, _T("UTF-8")) == 0
368 || wxStricmp(charset, _T("UTF8")) == 0 )
369 m_conv = new wxMBConvUTF8(wxMBConvUTF8::MAP_INVALID_UTF8_TO_OCTAL);
370 else
371 m_conv = new wxCSConv(charset);
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372}
373
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374size_t
375wxConvBrokenFileNames::MB2WC(wchar_t *outputBuf,
376 const char *psz,
377 size_t outputSize) const
e1bfe89e 378{
c12b7f79 379 return m_conv->MB2WC( outputBuf, psz, outputSize );
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380}
381
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382size_t
383wxConvBrokenFileNames::WC2MB(char *outputBuf,
384 const wchar_t *psz,
385 size_t outputSize) const
e1bfe89e 386{
c12b7f79 387 return m_conv->WC2MB( outputBuf, psz, outputSize );
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388}
389
66bf0099 390#endif
c12b7f79 391
bde4baac 392// ----------------------------------------------------------------------------
3698ae71 393// UTF-7
bde4baac 394// ----------------------------------------------------------------------------
6001e347 395
15f2ee32 396// Implementation (C) 2004 Fredrik Roubert
6001e347 397
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398//
399// BASE64 decoding table
400//
401static const unsigned char utf7unb64[] =
6001e347 402{
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403 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
404 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
405 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
406 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
407 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
408 0xff, 0xff, 0xff, 0x3e, 0xff, 0xff, 0xff, 0x3f,
409 0x34, 0x35, 0x36, 0x37, 0x38, 0x39, 0x3a, 0x3b,
410 0x3c, 0x3d, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
411 0xff, 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06,
412 0x07, 0x08, 0x09, 0x0a, 0x0b, 0x0c, 0x0d, 0x0e,
413 0x0f, 0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16,
414 0x17, 0x18, 0x19, 0xff, 0xff, 0xff, 0xff, 0xff,
415 0xff, 0x1a, 0x1b, 0x1c, 0x1d, 0x1e, 0x1f, 0x20,
416 0x21, 0x22, 0x23, 0x24, 0x25, 0x26, 0x27, 0x28,
417 0x29, 0x2a, 0x2b, 0x2c, 0x2d, 0x2e, 0x2f, 0x30,
418 0x31, 0x32, 0x33, 0xff, 0xff, 0xff, 0xff, 0xff,
419 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
420 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
421 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
422 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
423 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
424 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
425 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
426 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
427 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
428 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
429 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
430 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
431 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
432 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
433 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
434 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff
435};
436
437size_t wxMBConvUTF7::MB2WC(wchar_t *buf, const char *psz, size_t n) const
438{
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439 size_t len = 0;
440
441 while (*psz && ((!buf) || (len < n)))
442 {
443 unsigned char cc = *psz++;
444 if (cc != '+')
445 {
446 // plain ASCII char
447 if (buf)
448 *buf++ = cc;
449 len++;
450 }
451 else if (*psz == '-')
452 {
453 // encoded plus sign
454 if (buf)
455 *buf++ = cc;
456 len++;
457 psz++;
458 }
459 else
460 {
461 // BASE64 encoded string
462 bool lsb;
463 unsigned char c;
464 unsigned int d, l;
465 for (lsb = false, d = 0, l = 0;
466 (cc = utf7unb64[(unsigned char)*psz]) != 0xff; psz++)
467 {
468 d <<= 6;
469 d += cc;
470 for (l += 6; l >= 8; lsb = !lsb)
471 {
6356d52a 472 c = (unsigned char)((d >> (l -= 8)) % 256);
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473 if (lsb)
474 {
475 if (buf)
476 *buf++ |= c;
477 len ++;
478 }
479 else
480 if (buf)
6356d52a 481 *buf = (wchar_t)(c << 8);
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482 }
483 }
484 if (*psz == '-')
485 psz++;
486 }
487 }
488 if (buf && (len < n))
489 *buf = 0;
490 return len;
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491}
492
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493//
494// BASE64 encoding table
495//
496static const unsigned char utf7enb64[] =
497{
498 'A', 'B', 'C', 'D', 'E', 'F', 'G', 'H',
499 'I', 'J', 'K', 'L', 'M', 'N', 'O', 'P',
500 'Q', 'R', 'S', 'T', 'U', 'V', 'W', 'X',
501 'Y', 'Z', 'a', 'b', 'c', 'd', 'e', 'f',
502 'g', 'h', 'i', 'j', 'k', 'l', 'm', 'n',
503 'o', 'p', 'q', 'r', 's', 't', 'u', 'v',
504 'w', 'x', 'y', 'z', '0', '1', '2', '3',
505 '4', '5', '6', '7', '8', '9', '+', '/'
506};
507
508//
509// UTF-7 encoding table
510//
511// 0 - Set D (directly encoded characters)
512// 1 - Set O (optional direct characters)
513// 2 - whitespace characters (optional)
514// 3 - special characters
515//
516static const unsigned char utf7encode[128] =
6001e347 517{
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518 3, 3, 3, 3, 3, 3, 3, 3, 3, 2, 2, 3, 3, 2, 3, 3,
519 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
520 2, 1, 1, 1, 1, 1, 1, 0, 0, 0, 1, 3, 0, 0, 0, 3,
521 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 0,
522 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
523 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 3, 1, 1, 1,
524 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
525 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 3, 3
526};
527
667e5b3e 528size_t wxMBConvUTF7::WC2MB(char *buf, const wchar_t *psz, size_t n) const
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529{
530
531
532 size_t len = 0;
533
534 while (*psz && ((!buf) || (len < n)))
535 {
536 wchar_t cc = *psz++;
537 if (cc < 0x80 && utf7encode[cc] < 1)
538 {
539 // plain ASCII char
540 if (buf)
541 *buf++ = (char)cc;
542 len++;
543 }
544#ifndef WC_UTF16
79c78d42 545 else if (((wxUint32)cc) > 0xffff)
b2c13097 546 {
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547 // no surrogate pair generation (yet?)
548 return (size_t)-1;
549 }
550#endif
551 else
552 {
553 if (buf)
554 *buf++ = '+';
555 len++;
556 if (cc != '+')
557 {
558 // BASE64 encode string
559 unsigned int lsb, d, l;
560 for (d = 0, l = 0;; psz++)
561 {
562 for (lsb = 0; lsb < 2; lsb ++)
563 {
564 d <<= 8;
565 d += lsb ? cc & 0xff : (cc & 0xff00) >> 8;
566
567 for (l += 8; l >= 6; )
568 {
569 l -= 6;
570 if (buf)
571 *buf++ = utf7enb64[(d >> l) % 64];
572 len++;
573 }
574 }
575 cc = *psz;
576 if (!(cc) || (cc < 0x80 && utf7encode[cc] < 1))
577 break;
578 }
579 if (l != 0)
580 {
581 if (buf)
582 *buf++ = utf7enb64[((d % 16) << (6 - l)) % 64];
583 len++;
584 }
585 }
586 if (buf)
587 *buf++ = '-';
588 len++;
589 }
590 }
591 if (buf && (len < n))
592 *buf = 0;
593 return len;
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594}
595
f6bcfd97 596// ----------------------------------------------------------------------------
6001e347 597// UTF-8
f6bcfd97 598// ----------------------------------------------------------------------------
6001e347 599
dccce9ea 600static wxUint32 utf8_max[]=
4def3b35 601 { 0x7f, 0x7ff, 0xffff, 0x1fffff, 0x3ffffff, 0x7fffffff, 0xffffffff };
6001e347 602
3698ae71
VZ
603// boundaries of the private use area we use to (temporarily) remap invalid
604// characters invalid in a UTF-8 encoded string
ea8ce907
RR
605const wxUint32 wxUnicodePUA = 0x100000;
606const wxUint32 wxUnicodePUAEnd = wxUnicodePUA + 256;
607
6001e347
RR
608size_t wxMBConvUTF8::MB2WC(wchar_t *buf, const char *psz, size_t n) const
609{
4def3b35
VS
610 size_t len = 0;
611
dccce9ea 612 while (*psz && ((!buf) || (len < n)))
4def3b35 613 {
ea8ce907
RR
614 const char *opsz = psz;
615 bool invalid = false;
4def3b35
VS
616 unsigned char cc = *psz++, fc = cc;
617 unsigned cnt;
dccce9ea 618 for (cnt = 0; fc & 0x80; cnt++)
4def3b35 619 fc <<= 1;
dccce9ea 620 if (!cnt)
4def3b35
VS
621 {
622 // plain ASCII char
dccce9ea 623 if (buf)
4def3b35
VS
624 *buf++ = cc;
625 len++;
561488ef
MW
626
627 // escape the escape character for octal escapes
628 if ((m_options & MAP_INVALID_UTF8_TO_OCTAL)
629 && cc == '\\' && (!buf || len < n))
630 {
631 if (buf)
632 *buf++ = cc;
633 len++;
634 }
dccce9ea
VZ
635 }
636 else
4def3b35
VS
637 {
638 cnt--;
dccce9ea 639 if (!cnt)
4def3b35
VS
640 {
641 // invalid UTF-8 sequence
ea8ce907 642 invalid = true;
dccce9ea
VZ
643 }
644 else
4def3b35
VS
645 {
646 unsigned ocnt = cnt - 1;
647 wxUint32 res = cc & (0x3f >> cnt);
dccce9ea 648 while (cnt--)
4def3b35 649 {
ea8ce907 650 cc = *psz;
dccce9ea 651 if ((cc & 0xC0) != 0x80)
4def3b35
VS
652 {
653 // invalid UTF-8 sequence
ea8ce907
RR
654 invalid = true;
655 break;
4def3b35 656 }
ea8ce907 657 psz++;
4def3b35
VS
658 res = (res << 6) | (cc & 0x3f);
659 }
ea8ce907 660 if (invalid || res <= utf8_max[ocnt])
4def3b35
VS
661 {
662 // illegal UTF-8 encoding
ea8ce907 663 invalid = true;
4def3b35 664 }
ea8ce907
RR
665 else if ((m_options & MAP_INVALID_UTF8_TO_PUA) &&
666 res >= wxUnicodePUA && res < wxUnicodePUAEnd)
667 {
668 // if one of our PUA characters turns up externally
669 // it must also be treated as an illegal sequence
670 // (a bit like you have to escape an escape character)
671 invalid = true;
672 }
673 else
674 {
1cd52418 675#ifdef WC_UTF16
ea8ce907
RR
676 // cast is ok because wchar_t == wxUuint16 if WC_UTF16
677 size_t pa = encode_utf16(res, (wxUint16 *)buf);
678 if (pa == (size_t)-1)
679 {
680 invalid = true;
681 }
682 else
683 {
684 if (buf)
685 buf += pa;
686 len += pa;
687 }
373658eb 688#else // !WC_UTF16
ea8ce907
RR
689 if (buf)
690 *buf++ = res;
691 len++;
373658eb 692#endif // WC_UTF16/!WC_UTF16
ea8ce907
RR
693 }
694 }
695 if (invalid)
696 {
697 if (m_options & MAP_INVALID_UTF8_TO_PUA)
698 {
699 while (opsz < psz && (!buf || len < n))
700 {
701#ifdef WC_UTF16
702 // cast is ok because wchar_t == wxUuint16 if WC_UTF16
703 size_t pa = encode_utf16((unsigned char)*opsz + wxUnicodePUA, (wxUint16 *)buf);
704 wxASSERT(pa != (size_t)-1);
705 if (buf)
706 buf += pa;
707 opsz++;
708 len += pa;
709#else
710 if (buf)
711 *buf++ = wxUnicodePUA + (unsigned char)*opsz;
712 opsz++;
713 len++;
714#endif
715 }
716 }
3698ae71 717 else if (m_options & MAP_INVALID_UTF8_TO_OCTAL)
ea8ce907
RR
718 {
719 while (opsz < psz && (!buf || len < n))
720 {
3698ae71
VZ
721 if ( buf && len + 3 < n )
722 {
723 unsigned char n = *opsz;
724 *buf++ = L'\\';
b2c13097
WS
725 *buf++ = (wchar_t)( L'0' + n / 0100 );
726 *buf++ = (wchar_t)( L'0' + (n % 0100) / 010 );
727 *buf++ = (wchar_t)( L'0' + n % 010 );
3698ae71 728 }
ea8ce907
RR
729 opsz++;
730 len += 4;
731 }
732 }
3698ae71 733 else // MAP_INVALID_UTF8_NOT
ea8ce907
RR
734 {
735 return (size_t)-1;
736 }
4def3b35
VS
737 }
738 }
6001e347 739 }
dccce9ea 740 if (buf && (len < n))
4def3b35
VS
741 *buf = 0;
742 return len;
6001e347
RR
743}
744
3698ae71
VZ
745static inline bool isoctal(wchar_t wch)
746{
747 return L'0' <= wch && wch <= L'7';
748}
749
6001e347
RR
750size_t wxMBConvUTF8::WC2MB(char *buf, const wchar_t *psz, size_t n) const
751{
4def3b35 752 size_t len = 0;
6001e347 753
dccce9ea 754 while (*psz && ((!buf) || (len < n)))
4def3b35
VS
755 {
756 wxUint32 cc;
1cd52418 757#ifdef WC_UTF16
b5153fd8
VZ
758 // cast is ok for WC_UTF16
759 size_t pa = decode_utf16((const wxUint16 *)psz, cc);
4def3b35 760 psz += (pa == (size_t)-1) ? 1 : pa;
1cd52418 761#else
4def3b35
VS
762 cc=(*psz++) & 0x7fffffff;
763#endif
3698ae71
VZ
764
765 if ( (m_options & MAP_INVALID_UTF8_TO_PUA)
766 && cc >= wxUnicodePUA && cc < wxUnicodePUAEnd )
4def3b35 767 {
dccce9ea 768 if (buf)
ea8ce907 769 *buf++ = (char)(cc - wxUnicodePUA);
4def3b35 770 len++;
3698ae71 771 }
561488ef
MW
772 else if ( (m_options & MAP_INVALID_UTF8_TO_OCTAL)
773 && cc == L'\\' && psz[0] == L'\\' )
774 {
775 if (buf)
776 *buf++ = (char)cc;
777 psz++;
778 len++;
779 }
3698ae71
VZ
780 else if ( (m_options & MAP_INVALID_UTF8_TO_OCTAL) &&
781 cc == L'\\' &&
782 isoctal(psz[0]) && isoctal(psz[1]) && isoctal(psz[2]) )
4def3b35 783 {
dccce9ea 784 if (buf)
3698ae71 785 {
b2c13097
WS
786 *buf++ = (char) ((psz[0] - L'0')*0100 +
787 (psz[1] - L'0')*010 +
788 (psz[2] - L'0'));
3698ae71
VZ
789 }
790
791 psz += 3;
ea8ce907
RR
792 len++;
793 }
794 else
795 {
796 unsigned cnt;
797 for (cnt = 0; cc > utf8_max[cnt]; cnt++) {}
798 if (!cnt)
4def3b35 799 {
ea8ce907
RR
800 // plain ASCII char
801 if (buf)
802 *buf++ = (char) cc;
803 len++;
804 }
805
806 else
807 {
808 len += cnt + 1;
809 if (buf)
810 {
811 *buf++ = (char) ((-128 >> cnt) | ((cc >> (cnt * 6)) & (0x3f >> cnt)));
812 while (cnt--)
813 *buf++ = (char) (0x80 | ((cc >> (cnt * 6)) & 0x3f));
814 }
4def3b35
VS
815 }
816 }
6001e347 817 }
4def3b35 818
3698ae71
VZ
819 if (buf && (len<n))
820 *buf = 0;
adb45366 821
4def3b35 822 return len;
6001e347
RR
823}
824
c91830cb
VZ
825// ----------------------------------------------------------------------------
826// UTF-16
827// ----------------------------------------------------------------------------
828
829#ifdef WORDS_BIGENDIAN
bde4baac
VZ
830 #define wxMBConvUTF16straight wxMBConvUTF16BE
831 #define wxMBConvUTF16swap wxMBConvUTF16LE
c91830cb 832#else
bde4baac
VZ
833 #define wxMBConvUTF16swap wxMBConvUTF16BE
834 #define wxMBConvUTF16straight wxMBConvUTF16LE
c91830cb
VZ
835#endif
836
837
c91830cb
VZ
838#ifdef WC_UTF16
839
c91830cb
VZ
840// copy 16bit MB to 16bit String
841size_t wxMBConvUTF16straight::MB2WC(wchar_t *buf, const char *psz, size_t n) const
842{
843 size_t len=0;
844
845 while (*(wxUint16*)psz && (!buf || len < n))
846 {
847 if (buf)
848 *buf++ = *(wxUint16*)psz;
849 len++;
850
851 psz += sizeof(wxUint16);
852 }
853 if (buf && len<n) *buf=0;
854
855 return len;
856}
857
858
859// copy 16bit String to 16bit MB
860size_t wxMBConvUTF16straight::WC2MB(char *buf, const wchar_t *psz, size_t n) const
861{
862 size_t len=0;
863
864 while (*psz && (!buf || len < n))
865 {
866 if (buf)
867 {
868 *(wxUint16*)buf = *psz;
869 buf += sizeof(wxUint16);
870 }
871 len += sizeof(wxUint16);
872 psz++;
873 }
874 if (buf && len<=n-sizeof(wxUint16)) *(wxUint16*)buf=0;
875
876 return len;
877}
878
879
880// swap 16bit MB to 16bit String
881size_t wxMBConvUTF16swap::MB2WC(wchar_t *buf, const char *psz, size_t n) const
882{
883 size_t len=0;
884
885 while (*(wxUint16*)psz && (!buf || len < n))
886 {
887 if (buf)
888 {
889 ((char *)buf)[0] = psz[1];
890 ((char *)buf)[1] = psz[0];
891 buf++;
892 }
893 len++;
894 psz += sizeof(wxUint16);
895 }
896 if (buf && len<n) *buf=0;
897
898 return len;
899}
900
901
902// swap 16bit MB to 16bit String
903size_t wxMBConvUTF16swap::WC2MB(char *buf, const wchar_t *psz, size_t n) const
904{
905 size_t len=0;
906
907 while (*psz && (!buf || len < n))
908 {
909 if (buf)
910 {
911 *buf++ = ((char*)psz)[1];
912 *buf++ = ((char*)psz)[0];
913 }
914 len += sizeof(wxUint16);
915 psz++;
916 }
917 if (buf && len<=n-sizeof(wxUint16)) *(wxUint16*)buf=0;
918
919 return len;
920}
921
922
923#else // WC_UTF16
924
925
926// copy 16bit MB to 32bit String
927size_t wxMBConvUTF16straight::MB2WC(wchar_t *buf, const char *psz, size_t n) const
928{
929 size_t len=0;
930
931 while (*(wxUint16*)psz && (!buf || len < n))
932 {
933 wxUint32 cc;
934 size_t pa=decode_utf16((wxUint16*)psz, cc);
935 if (pa == (size_t)-1)
936 return pa;
937
938 if (buf)
939 *buf++ = cc;
940 len++;
941 psz += pa * sizeof(wxUint16);
942 }
943 if (buf && len<n) *buf=0;
944
945 return len;
946}
947
948
949// copy 32bit String to 16bit MB
950size_t wxMBConvUTF16straight::WC2MB(char *buf, const wchar_t *psz, size_t n) const
951{
952 size_t len=0;
953
954 while (*psz && (!buf || len < n))
955 {
956 wxUint16 cc[2];
957 size_t pa=encode_utf16(*psz, cc);
958
959 if (pa == (size_t)-1)
960 return pa;
961
962 if (buf)
963 {
69b80d28 964 *(wxUint16*)buf = cc[0];
b5153fd8 965 buf += sizeof(wxUint16);
c91830cb 966 if (pa > 1)
69b80d28
VZ
967 {
968 *(wxUint16*)buf = cc[1];
969 buf += sizeof(wxUint16);
970 }
c91830cb
VZ
971 }
972
973 len += pa*sizeof(wxUint16);
974 psz++;
975 }
976 if (buf && len<=n-sizeof(wxUint16)) *(wxUint16*)buf=0;
977
978 return len;
979}
980
981
982// swap 16bit MB to 32bit String
983size_t wxMBConvUTF16swap::MB2WC(wchar_t *buf, const char *psz, size_t n) const
984{
985 size_t len=0;
986
987 while (*(wxUint16*)psz && (!buf || len < n))
988 {
989 wxUint32 cc;
990 char tmp[4];
991 tmp[0]=psz[1]; tmp[1]=psz[0];
992 tmp[2]=psz[3]; tmp[3]=psz[2];
993
994 size_t pa=decode_utf16((wxUint16*)tmp, cc);
995 if (pa == (size_t)-1)
996 return pa;
997
998 if (buf)
999 *buf++ = cc;
1000
1001 len++;
1002 psz += pa * sizeof(wxUint16);
1003 }
1004 if (buf && len<n) *buf=0;
1005
1006 return len;
1007}
1008
1009
1010// swap 32bit String to 16bit MB
1011size_t wxMBConvUTF16swap::WC2MB(char *buf, const wchar_t *psz, size_t n) const
1012{
1013 size_t len=0;
1014
1015 while (*psz && (!buf || len < n))
1016 {
1017 wxUint16 cc[2];
1018 size_t pa=encode_utf16(*psz, cc);
1019
1020 if (pa == (size_t)-1)
1021 return pa;
1022
1023 if (buf)
1024 {
1025 *buf++ = ((char*)cc)[1];
1026 *buf++ = ((char*)cc)[0];
1027 if (pa > 1)
1028 {
1029 *buf++ = ((char*)cc)[3];
1030 *buf++ = ((char*)cc)[2];
1031 }
1032 }
1033
1034 len += pa*sizeof(wxUint16);
1035 psz++;
1036 }
1037 if (buf && len<=n-sizeof(wxUint16)) *(wxUint16*)buf=0;
1038
1039 return len;
1040}
1041
1042#endif // WC_UTF16
1043
1044
1045// ----------------------------------------------------------------------------
1046// UTF-32
1047// ----------------------------------------------------------------------------
1048
1049#ifdef WORDS_BIGENDIAN
1050#define wxMBConvUTF32straight wxMBConvUTF32BE
1051#define wxMBConvUTF32swap wxMBConvUTF32LE
1052#else
1053#define wxMBConvUTF32swap wxMBConvUTF32BE
1054#define wxMBConvUTF32straight wxMBConvUTF32LE
1055#endif
1056
1057
1058WXDLLIMPEXP_DATA_BASE(wxMBConvUTF32LE) wxConvUTF32LE;
1059WXDLLIMPEXP_DATA_BASE(wxMBConvUTF32BE) wxConvUTF32BE;
1060
1061
1062#ifdef WC_UTF16
1063
1064// copy 32bit MB to 16bit String
1065size_t wxMBConvUTF32straight::MB2WC(wchar_t *buf, const char *psz, size_t n) const
1066{
1067 size_t len=0;
1068
1069 while (*(wxUint32*)psz && (!buf || len < n))
1070 {
1071 wxUint16 cc[2];
1072
1073 size_t pa=encode_utf16(*(wxUint32*)psz, cc);
1074 if (pa == (size_t)-1)
1075 return pa;
1076
1077 if (buf)
1078 {
1079 *buf++ = cc[0];
1080 if (pa > 1)
1081 *buf++ = cc[1];
1082 }
1083 len += pa;
1084 psz += sizeof(wxUint32);
1085 }
1086 if (buf && len<n) *buf=0;
1087
1088 return len;
1089}
1090
1091
1092// copy 16bit String to 32bit MB
1093size_t wxMBConvUTF32straight::WC2MB(char *buf, const wchar_t *psz, size_t n) const
1094{
1095 size_t len=0;
1096
1097 while (*psz && (!buf || len < n))
1098 {
1099 wxUint32 cc;
1100
b5153fd8
VZ
1101 // cast is ok for WC_UTF16
1102 size_t pa = decode_utf16((const wxUint16 *)psz, cc);
c91830cb
VZ
1103 if (pa == (size_t)-1)
1104 return pa;
1105
1106 if (buf)
1107 {
1108 *(wxUint32*)buf = cc;
1109 buf += sizeof(wxUint32);
1110 }
1111 len += sizeof(wxUint32);
1112 psz += pa;
1113 }
b5153fd8
VZ
1114
1115 if (buf && len<=n-sizeof(wxUint32))
1116 *(wxUint32*)buf=0;
c91830cb
VZ
1117
1118 return len;
1119}
1120
1121
1122
1123// swap 32bit MB to 16bit String
1124size_t wxMBConvUTF32swap::MB2WC(wchar_t *buf, const char *psz, size_t n) const
1125{
1126 size_t len=0;
1127
1128 while (*(wxUint32*)psz && (!buf || len < n))
1129 {
1130 char tmp[4];
1131 tmp[0] = psz[3]; tmp[1] = psz[2];
1132 tmp[2] = psz[1]; tmp[3] = psz[0];
1133
1134
1135 wxUint16 cc[2];
1136
1137 size_t pa=encode_utf16(*(wxUint32*)tmp, cc);
1138 if (pa == (size_t)-1)
1139 return pa;
1140
1141 if (buf)
1142 {
1143 *buf++ = cc[0];
1144 if (pa > 1)
1145 *buf++ = cc[1];
1146 }
1147 len += pa;
1148 psz += sizeof(wxUint32);
1149 }
b5153fd8
VZ
1150
1151 if (buf && len<n)
1152 *buf=0;
c91830cb
VZ
1153
1154 return len;
1155}
1156
1157
1158// swap 16bit String to 32bit MB
1159size_t wxMBConvUTF32swap::WC2MB(char *buf, const wchar_t *psz, size_t n) const
1160{
1161 size_t len=0;
1162
1163 while (*psz && (!buf || len < n))
1164 {
1165 char cc[4];
1166
b5153fd8
VZ
1167 // cast is ok for WC_UTF16
1168 size_t pa=decode_utf16((const wxUint16 *)psz, *(wxUint32*)cc);
c91830cb
VZ
1169 if (pa == (size_t)-1)
1170 return pa;
1171
1172 if (buf)
1173 {
1174 *buf++ = cc[3];
1175 *buf++ = cc[2];
1176 *buf++ = cc[1];
1177 *buf++ = cc[0];
1178 }
1179 len += sizeof(wxUint32);
1180 psz += pa;
1181 }
b5153fd8
VZ
1182
1183 if (buf && len<=n-sizeof(wxUint32))
1184 *(wxUint32*)buf=0;
c91830cb
VZ
1185
1186 return len;
1187}
1188
1189#else // WC_UTF16
1190
1191
1192// copy 32bit MB to 32bit String
1193size_t wxMBConvUTF32straight::MB2WC(wchar_t *buf, const char *psz, size_t n) const
1194{
1195 size_t len=0;
1196
1197 while (*(wxUint32*)psz && (!buf || len < n))
1198 {
1199 if (buf)
1200 *buf++ = *(wxUint32*)psz;
1201 len++;
1202 psz += sizeof(wxUint32);
1203 }
b5153fd8
VZ
1204
1205 if (buf && len<n)
1206 *buf=0;
c91830cb
VZ
1207
1208 return len;
1209}
1210
1211
1212// copy 32bit String to 32bit MB
1213size_t wxMBConvUTF32straight::WC2MB(char *buf, const wchar_t *psz, size_t n) const
1214{
1215 size_t len=0;
1216
1217 while (*psz && (!buf || len < n))
1218 {
1219 if (buf)
1220 {
1221 *(wxUint32*)buf = *psz;
1222 buf += sizeof(wxUint32);
1223 }
1224
1225 len += sizeof(wxUint32);
1226 psz++;
1227 }
1228
b5153fd8
VZ
1229 if (buf && len<=n-sizeof(wxUint32))
1230 *(wxUint32*)buf=0;
c91830cb
VZ
1231
1232 return len;
1233}
1234
1235
1236// swap 32bit MB to 32bit String
1237size_t wxMBConvUTF32swap::MB2WC(wchar_t *buf, const char *psz, size_t n) const
1238{
1239 size_t len=0;
1240
1241 while (*(wxUint32*)psz && (!buf || len < n))
1242 {
1243 if (buf)
1244 {
1245 ((char *)buf)[0] = psz[3];
1246 ((char *)buf)[1] = psz[2];
1247 ((char *)buf)[2] = psz[1];
1248 ((char *)buf)[3] = psz[0];
1249 buf++;
1250 }
1251 len++;
1252 psz += sizeof(wxUint32);
1253 }
b5153fd8
VZ
1254
1255 if (buf && len<n)
1256 *buf=0;
c91830cb
VZ
1257
1258 return len;
1259}
1260
1261
1262// swap 32bit String to 32bit MB
1263size_t wxMBConvUTF32swap::WC2MB(char *buf, const wchar_t *psz, size_t n) const
1264{
1265 size_t len=0;
1266
1267 while (*psz && (!buf || len < n))
1268 {
1269 if (buf)
1270 {
1271 *buf++ = ((char *)psz)[3];
1272 *buf++ = ((char *)psz)[2];
1273 *buf++ = ((char *)psz)[1];
1274 *buf++ = ((char *)psz)[0];
1275 }
1276 len += sizeof(wxUint32);
1277 psz++;
1278 }
b5153fd8
VZ
1279
1280 if (buf && len<=n-sizeof(wxUint32))
1281 *(wxUint32*)buf=0;
c91830cb
VZ
1282
1283 return len;
1284}
1285
1286
1287#endif // WC_UTF16
1288
1289
36acb880
VZ
1290// ============================================================================
1291// The classes doing conversion using the iconv_xxx() functions
1292// ============================================================================
3caec1bb 1293
b040e242 1294#ifdef HAVE_ICONV
3a0d76bc 1295
b1d547eb
VS
1296// VS: glibc 2.1.3 is broken in that iconv() conversion to/from UCS4 fails with
1297// E2BIG if output buffer is _exactly_ as big as needed. Such case is
1298// (unless there's yet another bug in glibc) the only case when iconv()
1299// returns with (size_t)-1 (which means error) and says there are 0 bytes
1300// left in the input buffer -- when _real_ error occurs,
1301// bytes-left-in-input buffer is non-zero. Hence, this alternative test for
1302// iconv() failure.
3caec1bb
VS
1303// [This bug does not appear in glibc 2.2.]
1304#if defined(__GLIBC__) && __GLIBC__ == 2 && __GLIBC_MINOR__ <= 1
1305#define ICONV_FAILED(cres, bufLeft) ((cres == (size_t)-1) && \
1306 (errno != E2BIG || bufLeft != 0))
1307#else
1308#define ICONV_FAILED(cres, bufLeft) (cres == (size_t)-1)
1309#endif
1310
ab217dba 1311#define ICONV_CHAR_CAST(x) ((ICONV_CONST char **)(x))
36acb880
VZ
1312
1313// ----------------------------------------------------------------------------
e95354ec 1314// wxMBConv_iconv: encapsulates an iconv character set
36acb880
VZ
1315// ----------------------------------------------------------------------------
1316
e95354ec 1317class wxMBConv_iconv : public wxMBConv
1cd52418
OK
1318{
1319public:
e95354ec
VZ
1320 wxMBConv_iconv(const wxChar *name);
1321 virtual ~wxMBConv_iconv();
36acb880 1322
bde4baac
VZ
1323 virtual size_t MB2WC(wchar_t *buf, const char *psz, size_t n) const;
1324 virtual size_t WC2MB(char *buf, const wchar_t *psz, size_t n) const;
36acb880 1325
e95354ec 1326 bool IsOk() const
36acb880
VZ
1327 { return (m2w != (iconv_t)-1) && (w2m != (iconv_t)-1); }
1328
1329protected:
1330 // the iconv handlers used to translate from multibyte to wide char and in
1331 // the other direction
1332 iconv_t m2w,
1333 w2m;
b1d547eb
VS
1334#if wxUSE_THREADS
1335 // guards access to m2w and w2m objects
1336 wxMutex m_iconvMutex;
1337#endif
36acb880
VZ
1338
1339private:
e95354ec 1340 // the name (for iconv_open()) of a wide char charset -- if none is
36acb880
VZ
1341 // available on this machine, it will remain NULL
1342 static const char *ms_wcCharsetName;
1343
1344 // true if the wide char encoding we use (i.e. ms_wcCharsetName) has
1345 // different endian-ness than the native one
405d8f46 1346 static bool ms_wcNeedsSwap;
36acb880
VZ
1347};
1348
e95354ec
VZ
1349const char *wxMBConv_iconv::ms_wcCharsetName = NULL;
1350bool wxMBConv_iconv::ms_wcNeedsSwap = false;
36acb880 1351
e95354ec 1352wxMBConv_iconv::wxMBConv_iconv(const wxChar *name)
36acb880 1353{
04c79127
RR
1354 // Do it the hard way
1355 char cname[100];
1356 for (size_t i = 0; i < wxStrlen(name)+1; i++)
1357 cname[i] = (char) name[i];
1358
36acb880
VZ
1359 // check for charset that represents wchar_t:
1360 if (ms_wcCharsetName == NULL)
f1339c56 1361 {
e95354ec 1362 ms_wcNeedsSwap = false;
dccce9ea 1363
36acb880
VZ
1364 // try charset with explicit bytesex info (e.g. "UCS-4LE"):
1365 ms_wcCharsetName = WC_NAME_BEST;
04c79127 1366 m2w = iconv_open(ms_wcCharsetName, cname);
3a0d76bc 1367
36acb880
VZ
1368 if (m2w == (iconv_t)-1)
1369 {
1370 // try charset w/o bytesex info (e.g. "UCS4")
1371 // and check for bytesex ourselves:
1372 ms_wcCharsetName = WC_NAME;
04c79127 1373 m2w = iconv_open(ms_wcCharsetName, cname);
36acb880
VZ
1374
1375 // last bet, try if it knows WCHAR_T pseudo-charset
3a0d76bc
VS
1376 if (m2w == (iconv_t)-1)
1377 {
36acb880 1378 ms_wcCharsetName = "WCHAR_T";
04c79127 1379 m2w = iconv_open(ms_wcCharsetName, cname);
36acb880 1380 }
3a0d76bc 1381
36acb880
VZ
1382 if (m2w != (iconv_t)-1)
1383 {
1384 char buf[2], *bufPtr;
1385 wchar_t wbuf[2], *wbufPtr;
1386 size_t insz, outsz;
1387 size_t res;
1388
1389 buf[0] = 'A';
1390 buf[1] = 0;
1391 wbuf[0] = 0;
1392 insz = 2;
1393 outsz = SIZEOF_WCHAR_T * 2;
1394 wbufPtr = wbuf;
1395 bufPtr = buf;
1396
1397 res = iconv(m2w, ICONV_CHAR_CAST(&bufPtr), &insz,
1398 (char**)&wbufPtr, &outsz);
1399
1400 if (ICONV_FAILED(res, insz))
3a0d76bc 1401 {
36acb880
VZ
1402 ms_wcCharsetName = NULL;
1403 wxLogLastError(wxT("iconv"));
2b5f62a0 1404 wxLogError(_("Conversion to charset '%s' doesn't work."), name);
3a0d76bc
VS
1405 }
1406 else
1407 {
36acb880 1408 ms_wcNeedsSwap = wbuf[0] != (wchar_t)buf[0];
3a0d76bc
VS
1409 }
1410 }
36acb880
VZ
1411 else
1412 {
1413 ms_wcCharsetName = NULL;
373658eb 1414
77ffb593 1415 // VS: we must not output an error here, since wxWidgets will safely
957686c8
VS
1416 // fall back to using wxEncodingConverter.
1417 wxLogTrace(wxT("strconv"), wxT("Impossible to convert to/from charset '%s' with iconv, falling back to wxEncodingConverter."), name);
1418 //wxLogError(
36acb880 1419 }
3a0d76bc 1420 }
36acb880 1421 wxLogTrace(wxT("strconv"), wxT("wchar_t charset is '%s', needs swap: %i"), ms_wcCharsetName, ms_wcNeedsSwap);
3a0d76bc 1422 }
36acb880 1423 else // we already have ms_wcCharsetName
3caec1bb 1424 {
04c79127 1425 m2w = iconv_open(ms_wcCharsetName, cname);
f1339c56 1426 }
dccce9ea 1427
36acb880
VZ
1428 // NB: don't ever pass NULL to iconv_open(), it may crash!
1429 if ( ms_wcCharsetName )
f1339c56 1430 {
04c79127 1431 w2m = iconv_open( cname, ms_wcCharsetName);
36acb880 1432 }
405d8f46
VZ
1433 else
1434 {
1435 w2m = (iconv_t)-1;
1436 }
36acb880 1437}
3caec1bb 1438
e95354ec 1439wxMBConv_iconv::~wxMBConv_iconv()
36acb880
VZ
1440{
1441 if ( m2w != (iconv_t)-1 )
1442 iconv_close(m2w);
1443 if ( w2m != (iconv_t)-1 )
1444 iconv_close(w2m);
1445}
3a0d76bc 1446
bde4baac 1447size_t wxMBConv_iconv::MB2WC(wchar_t *buf, const char *psz, size_t n) const
36acb880 1448{
b1d547eb
VS
1449#if wxUSE_THREADS
1450 // NB: iconv() is MT-safe, but each thread must use it's own iconv_t handle.
1451 // Unfortunately there is a couple of global wxCSConv objects such as
1452 // wxConvLocal that are used all over wx code, so we have to make sure
1453 // the handle is used by at most one thread at the time. Otherwise
1454 // only a few wx classes would be safe to use from non-main threads
1455 // as MB<->WC conversion would fail "randomly".
1456 wxMutexLocker lock(wxConstCast(this, wxMBConv_iconv)->m_iconvMutex);
1457#endif
3698ae71 1458
36acb880
VZ
1459 size_t inbuf = strlen(psz);
1460 size_t outbuf = n * SIZEOF_WCHAR_T;
1461 size_t res, cres;
1462 // VS: Use these instead of psz, buf because iconv() modifies its arguments:
1463 wchar_t *bufPtr = buf;
1464 const char *pszPtr = psz;
1465
1466 if (buf)
1467 {
1468 // have destination buffer, convert there
1469 cres = iconv(m2w,
1470 ICONV_CHAR_CAST(&pszPtr), &inbuf,
1471 (char**)&bufPtr, &outbuf);
1472 res = n - (outbuf / SIZEOF_WCHAR_T);
dccce9ea 1473
36acb880 1474 if (ms_wcNeedsSwap)
3a0d76bc 1475 {
36acb880
VZ
1476 // convert to native endianness
1477 WC_BSWAP(buf /* _not_ bufPtr */, res)
3a0d76bc 1478 }
adb45366 1479
49dd9820
VS
1480 // NB: iconv was given only strlen(psz) characters on input, and so
1481 // it couldn't convert the trailing zero. Let's do it ourselves
1482 // if there's some room left for it in the output buffer.
1483 if (res < n)
1484 buf[res] = 0;
36acb880
VZ
1485 }
1486 else
1487 {
1488 // no destination buffer... convert using temp buffer
1489 // to calculate destination buffer requirement
1490 wchar_t tbuf[8];
1491 res = 0;
1492 do {
1493 bufPtr = tbuf;
1494 outbuf = 8*SIZEOF_WCHAR_T;
1495
1496 cres = iconv(m2w,
1497 ICONV_CHAR_CAST(&pszPtr), &inbuf,
1498 (char**)&bufPtr, &outbuf );
1499
1500 res += 8-(outbuf/SIZEOF_WCHAR_T);
1501 } while ((cres==(size_t)-1) && (errno==E2BIG));
f1339c56 1502 }
dccce9ea 1503
36acb880 1504 if (ICONV_FAILED(cres, inbuf))
f1339c56 1505 {
36acb880
VZ
1506 //VS: it is ok if iconv fails, hence trace only
1507 wxLogTrace(wxT("strconv"), wxT("iconv failed: %s"), wxSysErrorMsg(wxSysErrorCode()));
1508 return (size_t)-1;
1509 }
1510
1511 return res;
1512}
1513
bde4baac 1514size_t wxMBConv_iconv::WC2MB(char *buf, const wchar_t *psz, size_t n) const
36acb880 1515{
b1d547eb
VS
1516#if wxUSE_THREADS
1517 // NB: explained in MB2WC
1518 wxMutexLocker lock(wxConstCast(this, wxMBConv_iconv)->m_iconvMutex);
1519#endif
3698ae71 1520
f8d791e0 1521 size_t inbuf = wxWcslen(psz) * SIZEOF_WCHAR_T;
36acb880
VZ
1522 size_t outbuf = n;
1523 size_t res, cres;
3a0d76bc 1524
36acb880 1525 wchar_t *tmpbuf = 0;
3caec1bb 1526
36acb880
VZ
1527 if (ms_wcNeedsSwap)
1528 {
1529 // need to copy to temp buffer to switch endianness
1530 // this absolutely doesn't rock!
1531 // (no, doing WC_BSWAP twice on the original buffer won't help, as it
1532 // could be in read-only memory, or be accessed in some other thread)
1533 tmpbuf=(wchar_t*)malloc((inbuf+1)*SIZEOF_WCHAR_T);
1534 memcpy(tmpbuf,psz,(inbuf+1)*SIZEOF_WCHAR_T);
1535 WC_BSWAP(tmpbuf, inbuf)
1536 psz=tmpbuf;
1537 }
3a0d76bc 1538
36acb880
VZ
1539 if (buf)
1540 {
1541 // have destination buffer, convert there
1542 cres = iconv( w2m, ICONV_CHAR_CAST(&psz), &inbuf, &buf, &outbuf );
3a0d76bc 1543
36acb880 1544 res = n-outbuf;
adb45366 1545
49dd9820
VS
1546 // NB: iconv was given only wcslen(psz) characters on input, and so
1547 // it couldn't convert the trailing zero. Let's do it ourselves
1548 // if there's some room left for it in the output buffer.
1549 if (res < n)
1550 buf[0] = 0;
36acb880
VZ
1551 }
1552 else
1553 {
1554 // no destination buffer... convert using temp buffer
1555 // to calculate destination buffer requirement
1556 char tbuf[16];
1557 res = 0;
1558 do {
1559 buf = tbuf; outbuf = 16;
1560
1561 cres = iconv( w2m, ICONV_CHAR_CAST(&psz), &inbuf, &buf, &outbuf );
dccce9ea 1562
36acb880
VZ
1563 res += 16 - outbuf;
1564 } while ((cres==(size_t)-1) && (errno==E2BIG));
f1339c56 1565 }
dccce9ea 1566
36acb880
VZ
1567 if (ms_wcNeedsSwap)
1568 {
1569 free(tmpbuf);
1570 }
dccce9ea 1571
36acb880
VZ
1572 if (ICONV_FAILED(cres, inbuf))
1573 {
1574 //VS: it is ok if iconv fails, hence trace only
1575 wxLogTrace(wxT("strconv"), wxT("iconv failed: %s"), wxSysErrorMsg(wxSysErrorCode()));
1576 return (size_t)-1;
1577 }
1578
1579 return res;
1580}
1581
b040e242 1582#endif // HAVE_ICONV
36acb880 1583
e95354ec 1584
36acb880
VZ
1585// ============================================================================
1586// Win32 conversion classes
1587// ============================================================================
1cd52418 1588
e95354ec 1589#ifdef wxHAVE_WIN32_MB2WC
373658eb 1590
8b04d4c4 1591// from utils.cpp
d775fa82 1592#if wxUSE_FONTMAP
8b04d4c4
VZ
1593extern WXDLLIMPEXP_BASE long wxCharsetToCodepage(const wxChar *charset);
1594extern WXDLLIMPEXP_BASE long wxEncodingToCodepage(wxFontEncoding encoding);
7608a683 1595#endif
373658eb 1596
e95354ec 1597class wxMBConv_win32 : public wxMBConv
1cd52418
OK
1598{
1599public:
bde4baac
VZ
1600 wxMBConv_win32()
1601 {
1602 m_CodePage = CP_ACP;
1603 }
1604
7608a683 1605#if wxUSE_FONTMAP
e95354ec 1606 wxMBConv_win32(const wxChar* name)
bde4baac
VZ
1607 {
1608 m_CodePage = wxCharsetToCodepage(name);
1609 }
dccce9ea 1610
e95354ec 1611 wxMBConv_win32(wxFontEncoding encoding)
bde4baac
VZ
1612 {
1613 m_CodePage = wxEncodingToCodepage(encoding);
1614 }
7608a683 1615#endif
8b04d4c4 1616
bde4baac 1617 size_t MB2WC(wchar_t *buf, const char *psz, size_t n) const
f1339c56 1618 {
02272c9c
VZ
1619 // note that we have to use MB_ERR_INVALID_CHARS flag as it without it
1620 // the behaviour is not compatible with the Unix version (using iconv)
1621 // and break the library itself, e.g. wxTextInputStream::NextChar()
1622 // wouldn't work if reading an incomplete MB char didn't result in an
1623 // error
667e5b3e
VZ
1624 //
1625 // note however that using MB_ERR_INVALID_CHARS with CP_UTF7 results in
1626 // an error (tested under Windows Server 2003) and apparently it is
1627 // done on purpose, i.e. the function accepts any input in this case
1628 // and although I'd prefer to return error on ill-formed output, our
1629 // own wxMBConvUTF7 doesn't detect errors (e.g. lone "+" which is
1630 // explicitly ill-formed according to RFC 2152) neither so we don't
1631 // even have any fallback here...
1632 int flags = m_CodePage == CP_UTF7 ? 0 : MB_ERR_INVALID_CHARS;
1633
2b5f62a0
VZ
1634 const size_t len = ::MultiByteToWideChar
1635 (
1636 m_CodePage, // code page
667e5b3e 1637 flags, // flags: fall on error
2b5f62a0
VZ
1638 psz, // input string
1639 -1, // its length (NUL-terminated)
b4da152e 1640 buf, // output string
2b5f62a0
VZ
1641 buf ? n : 0 // size of output buffer
1642 );
1643
03a991bc
VZ
1644 // note that it returns count of written chars for buf != NULL and size
1645 // of the needed buffer for buf == NULL so in either case the length of
1646 // the string (which never includes the terminating NUL) is one less
1647 return len ? len - 1 : (size_t)-1;
f1339c56 1648 }
dccce9ea 1649
13dd924a 1650 size_t WC2MB(char *buf, const wchar_t *pwz, size_t n) const
f1339c56 1651 {
13dd924a
VZ
1652 /*
1653 we have a problem here: by default, WideCharToMultiByte() may
1654 replace characters unrepresentable in the target code page with bad
1655 quality approximations such as turning "1/2" symbol (U+00BD) into
1656 "1" for the code pages which don't have it and we, obviously, want
1657 to avoid this at any price
d775fa82 1658
13dd924a
VZ
1659 the trouble is that this function does it _silently_, i.e. it won't
1660 even tell us whether it did or not... Win98/2000 and higher provide
1661 WC_NO_BEST_FIT_CHARS but it doesn't work for the older systems and
1662 we have to resort to a round trip, i.e. check that converting back
1663 results in the same string -- this is, of course, expensive but
1664 otherwise we simply can't be sure to not garble the data.
1665 */
1666
1667 // determine if we can rely on WC_NO_BEST_FIT_CHARS: according to MSDN
1668 // it doesn't work with CJK encodings (which we test for rather roughly
1669 // here...) nor with UTF-7/8 nor, of course, with Windows versions not
1670 // supporting it
907173e5
WS
1671 BOOL usedDef wxDUMMY_INITIALIZE(false);
1672 BOOL *pUsedDef;
13dd924a
VZ
1673 int flags;
1674 if ( CanUseNoBestFit() && m_CodePage < 50000 )
1675 {
1676 // it's our lucky day
1677 flags = WC_NO_BEST_FIT_CHARS;
1678 pUsedDef = &usedDef;
1679 }
1680 else // old system or unsupported encoding
1681 {
1682 flags = 0;
1683 pUsedDef = NULL;
1684 }
1685
2b5f62a0
VZ
1686 const size_t len = ::WideCharToMultiByte
1687 (
1688 m_CodePage, // code page
13dd924a
VZ
1689 flags, // either none or no best fit
1690 pwz, // input string
2b5f62a0
VZ
1691 -1, // it is (wide) NUL-terminated
1692 buf, // output buffer
1693 buf ? n : 0, // and its size
1694 NULL, // default "replacement" char
13dd924a 1695 pUsedDef // [out] was it used?
2b5f62a0
VZ
1696 );
1697
13dd924a
VZ
1698 if ( !len )
1699 {
1700 // function totally failed
1701 return (size_t)-1;
1702 }
1703
1704 // if we were really converting, check if we succeeded
1705 if ( buf )
1706 {
1707 if ( flags )
1708 {
1709 // check if the conversion failed, i.e. if any replacements
1710 // were done
1711 if ( usedDef )
1712 return (size_t)-1;
1713 }
1714 else // we must resort to double tripping...
1715 {
1716 wxWCharBuffer wcBuf(n);
1717 if ( MB2WC(wcBuf.data(), buf, n) == (size_t)-1 ||
1718 wcscmp(wcBuf, pwz) != 0 )
1719 {
1720 // we didn't obtain the same thing we started from, hence
1721 // the conversion was lossy and we consider that it failed
1722 return (size_t)-1;
1723 }
1724 }
1725 }
1726
03a991bc 1727 // see the comment above for the reason of "len - 1"
13dd924a 1728 return len - 1;
f1339c56 1729 }
dccce9ea 1730
13dd924a
VZ
1731 bool IsOk() const { return m_CodePage != -1; }
1732
1733private:
1734 static bool CanUseNoBestFit()
1735 {
1736 static int s_isWin98Or2k = -1;
1737
1738 if ( s_isWin98Or2k == -1 )
1739 {
1740 int verMaj, verMin;
1741 switch ( wxGetOsVersion(&verMaj, &verMin) )
1742 {
1743 case wxWIN95:
1744 s_isWin98Or2k = verMaj >= 4 && verMin >= 10;
1745 break;
1746
1747 case wxWINDOWS_NT:
1748 s_isWin98Or2k = verMaj >= 5;
1749 break;
1750
1751 default:
1752 // unknown, be conseravtive by default
1753 s_isWin98Or2k = 0;
1754 }
1755
1756 wxASSERT_MSG( s_isWin98Or2k != -1, _T("should be set above") );
1757 }
1758
1759 return s_isWin98Or2k == 1;
1760 }
f1339c56 1761
b1d66b54 1762 long m_CodePage;
1cd52418 1763};
e95354ec
VZ
1764
1765#endif // wxHAVE_WIN32_MB2WC
1766
f7e98dee
RN
1767// ============================================================================
1768// Cocoa conversion classes
1769// ============================================================================
1770
1771#if defined(__WXCOCOA__)
1772
ecd9653b 1773// RN: There is no UTF-32 support in either Core Foundation or
f7e98dee
RN
1774// Cocoa. Strangely enough, internally Core Foundation uses
1775// UTF 32 internally quite a bit - its just not public (yet).
1776
1777#include <CoreFoundation/CFString.h>
1778#include <CoreFoundation/CFStringEncodingExt.h>
1779
1780CFStringEncoding wxCFStringEncFromFontEnc(wxFontEncoding encoding)
ecd9653b 1781{
638357a0 1782 CFStringEncoding enc = kCFStringEncodingInvalidId ;
ecd9653b
WS
1783 if ( encoding == wxFONTENCODING_DEFAULT )
1784 {
638357a0 1785 enc = CFStringGetSystemEncoding();
ecd9653b
WS
1786 }
1787 else switch( encoding)
1788 {
1789 case wxFONTENCODING_ISO8859_1 :
1790 enc = kCFStringEncodingISOLatin1 ;
1791 break ;
1792 case wxFONTENCODING_ISO8859_2 :
1793 enc = kCFStringEncodingISOLatin2;
1794 break ;
1795 case wxFONTENCODING_ISO8859_3 :
1796 enc = kCFStringEncodingISOLatin3 ;
1797 break ;
1798 case wxFONTENCODING_ISO8859_4 :
1799 enc = kCFStringEncodingISOLatin4;
1800 break ;
1801 case wxFONTENCODING_ISO8859_5 :
1802 enc = kCFStringEncodingISOLatinCyrillic;
1803 break ;
1804 case wxFONTENCODING_ISO8859_6 :
1805 enc = kCFStringEncodingISOLatinArabic;
1806 break ;
1807 case wxFONTENCODING_ISO8859_7 :
1808 enc = kCFStringEncodingISOLatinGreek;
1809 break ;
1810 case wxFONTENCODING_ISO8859_8 :
1811 enc = kCFStringEncodingISOLatinHebrew;
1812 break ;
1813 case wxFONTENCODING_ISO8859_9 :
1814 enc = kCFStringEncodingISOLatin5;
1815 break ;
1816 case wxFONTENCODING_ISO8859_10 :
1817 enc = kCFStringEncodingISOLatin6;
1818 break ;
1819 case wxFONTENCODING_ISO8859_11 :
1820 enc = kCFStringEncodingISOLatinThai;
1821 break ;
1822 case wxFONTENCODING_ISO8859_13 :
1823 enc = kCFStringEncodingISOLatin7;
1824 break ;
1825 case wxFONTENCODING_ISO8859_14 :
1826 enc = kCFStringEncodingISOLatin8;
1827 break ;
1828 case wxFONTENCODING_ISO8859_15 :
1829 enc = kCFStringEncodingISOLatin9;
1830 break ;
1831
1832 case wxFONTENCODING_KOI8 :
1833 enc = kCFStringEncodingKOI8_R;
1834 break ;
1835 case wxFONTENCODING_ALTERNATIVE : // MS-DOS CP866
1836 enc = kCFStringEncodingDOSRussian;
1837 break ;
1838
1839// case wxFONTENCODING_BULGARIAN :
1840// enc = ;
1841// break ;
1842
1843 case wxFONTENCODING_CP437 :
1844 enc =kCFStringEncodingDOSLatinUS ;
1845 break ;
1846 case wxFONTENCODING_CP850 :
1847 enc = kCFStringEncodingDOSLatin1;
1848 break ;
1849 case wxFONTENCODING_CP852 :
1850 enc = kCFStringEncodingDOSLatin2;
1851 break ;
1852 case wxFONTENCODING_CP855 :
1853 enc = kCFStringEncodingDOSCyrillic;
1854 break ;
1855 case wxFONTENCODING_CP866 :
1856 enc =kCFStringEncodingDOSRussian ;
1857 break ;
1858 case wxFONTENCODING_CP874 :
1859 enc = kCFStringEncodingDOSThai;
1860 break ;
1861 case wxFONTENCODING_CP932 :
1862 enc = kCFStringEncodingDOSJapanese;
1863 break ;
1864 case wxFONTENCODING_CP936 :
1865 enc =kCFStringEncodingDOSChineseSimplif ;
1866 break ;
1867 case wxFONTENCODING_CP949 :
1868 enc = kCFStringEncodingDOSKorean;
1869 break ;
1870 case wxFONTENCODING_CP950 :
1871 enc = kCFStringEncodingDOSChineseTrad;
1872 break ;
ecd9653b
WS
1873 case wxFONTENCODING_CP1250 :
1874 enc = kCFStringEncodingWindowsLatin2;
1875 break ;
1876 case wxFONTENCODING_CP1251 :
1877 enc =kCFStringEncodingWindowsCyrillic ;
1878 break ;
1879 case wxFONTENCODING_CP1252 :
1880 enc =kCFStringEncodingWindowsLatin1 ;
1881 break ;
1882 case wxFONTENCODING_CP1253 :
1883 enc = kCFStringEncodingWindowsGreek;
1884 break ;
1885 case wxFONTENCODING_CP1254 :
1886 enc = kCFStringEncodingWindowsLatin5;
1887 break ;
1888 case wxFONTENCODING_CP1255 :
1889 enc =kCFStringEncodingWindowsHebrew ;
1890 break ;
1891 case wxFONTENCODING_CP1256 :
1892 enc =kCFStringEncodingWindowsArabic ;
1893 break ;
1894 case wxFONTENCODING_CP1257 :
1895 enc = kCFStringEncodingWindowsBalticRim;
1896 break ;
638357a0
RN
1897// This only really encodes to UTF7 (if that) evidently
1898// case wxFONTENCODING_UTF7 :
1899// enc = kCFStringEncodingNonLossyASCII ;
1900// break ;
ecd9653b
WS
1901 case wxFONTENCODING_UTF8 :
1902 enc = kCFStringEncodingUTF8 ;
1903 break ;
1904 case wxFONTENCODING_EUC_JP :
1905 enc = kCFStringEncodingEUC_JP;
1906 break ;
1907 case wxFONTENCODING_UTF16 :
f7e98dee 1908 enc = kCFStringEncodingUnicode ;
ecd9653b 1909 break ;
f7e98dee
RN
1910 case wxFONTENCODING_MACROMAN :
1911 enc = kCFStringEncodingMacRoman ;
1912 break ;
1913 case wxFONTENCODING_MACJAPANESE :
1914 enc = kCFStringEncodingMacJapanese ;
1915 break ;
1916 case wxFONTENCODING_MACCHINESETRAD :
1917 enc = kCFStringEncodingMacChineseTrad ;
1918 break ;
1919 case wxFONTENCODING_MACKOREAN :
1920 enc = kCFStringEncodingMacKorean ;
1921 break ;
1922 case wxFONTENCODING_MACARABIC :
1923 enc = kCFStringEncodingMacArabic ;
1924 break ;
1925 case wxFONTENCODING_MACHEBREW :
1926 enc = kCFStringEncodingMacHebrew ;
1927 break ;
1928 case wxFONTENCODING_MACGREEK :
1929 enc = kCFStringEncodingMacGreek ;
1930 break ;
1931 case wxFONTENCODING_MACCYRILLIC :
1932 enc = kCFStringEncodingMacCyrillic ;
1933 break ;
1934 case wxFONTENCODING_MACDEVANAGARI :
1935 enc = kCFStringEncodingMacDevanagari ;
1936 break ;
1937 case wxFONTENCODING_MACGURMUKHI :
1938 enc = kCFStringEncodingMacGurmukhi ;
1939 break ;
1940 case wxFONTENCODING_MACGUJARATI :
1941 enc = kCFStringEncodingMacGujarati ;
1942 break ;
1943 case wxFONTENCODING_MACORIYA :
1944 enc = kCFStringEncodingMacOriya ;
1945 break ;
1946 case wxFONTENCODING_MACBENGALI :
1947 enc = kCFStringEncodingMacBengali ;
1948 break ;
1949 case wxFONTENCODING_MACTAMIL :
1950 enc = kCFStringEncodingMacTamil ;
1951 break ;
1952 case wxFONTENCODING_MACTELUGU :
1953 enc = kCFStringEncodingMacTelugu ;
1954 break ;
1955 case wxFONTENCODING_MACKANNADA :
1956 enc = kCFStringEncodingMacKannada ;
1957 break ;
1958 case wxFONTENCODING_MACMALAJALAM :
1959 enc = kCFStringEncodingMacMalayalam ;
1960 break ;
1961 case wxFONTENCODING_MACSINHALESE :
1962 enc = kCFStringEncodingMacSinhalese ;
1963 break ;
1964 case wxFONTENCODING_MACBURMESE :
1965 enc = kCFStringEncodingMacBurmese ;
1966 break ;
1967 case wxFONTENCODING_MACKHMER :
1968 enc = kCFStringEncodingMacKhmer ;
1969 break ;
1970 case wxFONTENCODING_MACTHAI :
1971 enc = kCFStringEncodingMacThai ;
1972 break ;
1973 case wxFONTENCODING_MACLAOTIAN :
1974 enc = kCFStringEncodingMacLaotian ;
1975 break ;
1976 case wxFONTENCODING_MACGEORGIAN :
1977 enc = kCFStringEncodingMacGeorgian ;
1978 break ;
1979 case wxFONTENCODING_MACARMENIAN :
1980 enc = kCFStringEncodingMacArmenian ;
1981 break ;
1982 case wxFONTENCODING_MACCHINESESIMP :
1983 enc = kCFStringEncodingMacChineseSimp ;
1984 break ;
1985 case wxFONTENCODING_MACTIBETAN :
1986 enc = kCFStringEncodingMacTibetan ;
1987 break ;
1988 case wxFONTENCODING_MACMONGOLIAN :
1989 enc = kCFStringEncodingMacMongolian ;
1990 break ;
1991 case wxFONTENCODING_MACETHIOPIC :
1992 enc = kCFStringEncodingMacEthiopic ;
1993 break ;
1994 case wxFONTENCODING_MACCENTRALEUR :
1995 enc = kCFStringEncodingMacCentralEurRoman ;
1996 break ;
1997 case wxFONTENCODING_MACVIATNAMESE :
1998 enc = kCFStringEncodingMacVietnamese ;
1999 break ;
2000 case wxFONTENCODING_MACARABICEXT :
2001 enc = kCFStringEncodingMacExtArabic ;
2002 break ;
2003 case wxFONTENCODING_MACSYMBOL :
2004 enc = kCFStringEncodingMacSymbol ;
2005 break ;
2006 case wxFONTENCODING_MACDINGBATS :
2007 enc = kCFStringEncodingMacDingbats ;
2008 break ;
2009 case wxFONTENCODING_MACTURKISH :
2010 enc = kCFStringEncodingMacTurkish ;
2011 break ;
2012 case wxFONTENCODING_MACCROATIAN :
2013 enc = kCFStringEncodingMacCroatian ;
2014 break ;
2015 case wxFONTENCODING_MACICELANDIC :
2016 enc = kCFStringEncodingMacIcelandic ;
2017 break ;
2018 case wxFONTENCODING_MACROMANIAN :
2019 enc = kCFStringEncodingMacRomanian ;
2020 break ;
2021 case wxFONTENCODING_MACCELTIC :
2022 enc = kCFStringEncodingMacCeltic ;
2023 break ;
2024 case wxFONTENCODING_MACGAELIC :
2025 enc = kCFStringEncodingMacGaelic ;
2026 break ;
ecd9653b
WS
2027// case wxFONTENCODING_MACKEYBOARD :
2028// enc = kCFStringEncodingMacKeyboardGlyphs ;
2029// break ;
2030 default :
2031 // because gcc is picky
2032 break ;
2033 } ;
2034 return enc ;
f7e98dee
RN
2035}
2036
f7e98dee
RN
2037class wxMBConv_cocoa : public wxMBConv
2038{
2039public:
2040 wxMBConv_cocoa()
2041 {
2042 Init(CFStringGetSystemEncoding()) ;
2043 }
2044
a6900d10 2045#if wxUSE_FONTMAP
f7e98dee
RN
2046 wxMBConv_cocoa(const wxChar* name)
2047 {
267e11c5 2048 Init( wxCFStringEncFromFontEnc(wxFontMapperBase::Get()->CharsetToEncoding(name, false) ) ) ;
f7e98dee 2049 }
a6900d10 2050#endif
f7e98dee
RN
2051
2052 wxMBConv_cocoa(wxFontEncoding encoding)
2053 {
2054 Init( wxCFStringEncFromFontEnc(encoding) );
2055 }
2056
2057 ~wxMBConv_cocoa()
2058 {
2059 }
2060
2061 void Init( CFStringEncoding encoding)
2062 {
638357a0 2063 m_encoding = encoding ;
f7e98dee
RN
2064 }
2065
2066 size_t MB2WC(wchar_t * szOut, const char * szUnConv, size_t nOutSize) const
2067 {
2068 wxASSERT(szUnConv);
ecd9653b 2069
638357a0
RN
2070 CFStringRef theString = CFStringCreateWithBytes (
2071 NULL, //the allocator
2072 (const UInt8*)szUnConv,
2073 strlen(szUnConv),
2074 m_encoding,
2075 false //no BOM/external representation
f7e98dee
RN
2076 );
2077
2078 wxASSERT(theString);
2079
638357a0
RN
2080 size_t nOutLength = CFStringGetLength(theString);
2081
2082 if (szOut == NULL)
f7e98dee 2083 {
f7e98dee 2084 CFRelease(theString);
638357a0 2085 return nOutLength;
f7e98dee 2086 }
ecd9653b 2087
638357a0 2088 CFRange theRange = { 0, nOutSize };
ecd9653b 2089
638357a0
RN
2090#if SIZEOF_WCHAR_T == 4
2091 UniChar* szUniCharBuffer = new UniChar[nOutSize];
2092#endif
3698ae71 2093
f7e98dee 2094 CFStringGetCharacters(theString, theRange, szUniCharBuffer);
3698ae71 2095
f7e98dee 2096 CFRelease(theString);
ecd9653b 2097
638357a0 2098 szUniCharBuffer[nOutLength] = '\0' ;
f7e98dee
RN
2099
2100#if SIZEOF_WCHAR_T == 4
2101 wxMBConvUTF16 converter ;
638357a0 2102 converter.MB2WC(szOut, (const char*)szUniCharBuffer , nOutSize ) ;
f7e98dee
RN
2103 delete[] szUniCharBuffer;
2104#endif
3698ae71 2105
638357a0 2106 return nOutLength;
f7e98dee
RN
2107 }
2108
2109 size_t WC2MB(char *szOut, const wchar_t *szUnConv, size_t nOutSize) const
2110 {
638357a0 2111 wxASSERT(szUnConv);
3698ae71 2112
f7e98dee 2113 size_t nRealOutSize;
638357a0 2114 size_t nBufSize = wxWcslen(szUnConv);
f7e98dee 2115 UniChar* szUniBuffer = (UniChar*) szUnConv;
ecd9653b 2116
f7e98dee 2117#if SIZEOF_WCHAR_T == 4
d9d488cf 2118 wxMBConvUTF16 converter ;
f7e98dee
RN
2119 nBufSize = converter.WC2MB( NULL , szUnConv , 0 );
2120 szUniBuffer = new UniChar[ (nBufSize / sizeof(UniChar)) + 1] ;
2121 converter.WC2MB( (char*) szUniBuffer , szUnConv, nBufSize + sizeof(UniChar)) ;
2122 nBufSize /= sizeof(UniChar);
f7e98dee
RN
2123#endif
2124
2125 CFStringRef theString = CFStringCreateWithCharactersNoCopy(
2126 NULL, //allocator
2127 szUniBuffer,
2128 nBufSize,
638357a0 2129 kCFAllocatorNull //deallocator - we want to deallocate it ourselves
f7e98dee 2130 );
ecd9653b 2131
f7e98dee 2132 wxASSERT(theString);
ecd9653b 2133
f7e98dee 2134 //Note that CER puts a BOM when converting to unicode
638357a0
RN
2135 //so we check and use getchars instead in that case
2136 if (m_encoding == kCFStringEncodingUnicode)
f7e98dee 2137 {
638357a0
RN
2138 if (szOut != NULL)
2139 CFStringGetCharacters(theString, CFRangeMake(0, nOutSize - 1), (UniChar*) szOut);
3698ae71 2140
638357a0
RN
2141 nRealOutSize = CFStringGetLength(theString) + 1;
2142 }
2143 else
2144 {
2145 CFStringGetBytes(
2146 theString,
2147 CFRangeMake(0, CFStringGetLength(theString)),
2148 m_encoding,
2149 0, //what to put in characters that can't be converted -
2150 //0 tells CFString to return NULL if it meets such a character
2151 false, //not an external representation
2152 (UInt8*) szOut,
3698ae71 2153 nOutSize,
638357a0
RN
2154 (CFIndex*) &nRealOutSize
2155 );
f7e98dee 2156 }
ecd9653b 2157
638357a0 2158 CFRelease(theString);
ecd9653b 2159
638357a0
RN
2160#if SIZEOF_WCHAR_T == 4
2161 delete[] szUniBuffer;
2162#endif
ecd9653b 2163
f7e98dee
RN
2164 return nRealOutSize - 1;
2165 }
2166
2167 bool IsOk() const
ecd9653b 2168 {
3698ae71 2169 return m_encoding != kCFStringEncodingInvalidId &&
638357a0 2170 CFStringIsEncodingAvailable(m_encoding);
f7e98dee
RN
2171 }
2172
2173private:
638357a0 2174 CFStringEncoding m_encoding ;
f7e98dee
RN
2175};
2176
2177#endif // defined(__WXCOCOA__)
2178
335d31e0
SC
2179// ============================================================================
2180// Mac conversion classes
2181// ============================================================================
2182
2183#if defined(__WXMAC__) && defined(TARGET_CARBON)
2184
2185class wxMBConv_mac : public wxMBConv
2186{
2187public:
2188 wxMBConv_mac()
2189 {
2190 Init(CFStringGetSystemEncoding()) ;
2191 }
2192
2d1659cf 2193#if wxUSE_FONTMAP
335d31e0
SC
2194 wxMBConv_mac(const wxChar* name)
2195 {
267e11c5 2196 Init( wxMacGetSystemEncFromFontEnc(wxFontMapperBase::Get()->CharsetToEncoding(name, false) ) ) ;
335d31e0 2197 }
2d1659cf 2198#endif
335d31e0
SC
2199
2200 wxMBConv_mac(wxFontEncoding encoding)
2201 {
d775fa82
WS
2202 Init( wxMacGetSystemEncFromFontEnc(encoding) );
2203 }
2204
2205 ~wxMBConv_mac()
2206 {
2207 OSStatus status = noErr ;
2208 status = TECDisposeConverter(m_MB2WC_converter);
2209 status = TECDisposeConverter(m_WC2MB_converter);
2210 }
2211
2212
2213 void Init( TextEncodingBase encoding)
2214 {
2215 OSStatus status = noErr ;
2216 m_char_encoding = encoding ;
2217 m_unicode_encoding = CreateTextEncoding(kTextEncodingUnicodeDefault,0,kUnicode16BitFormat) ;
2218
2219 status = TECCreateConverter(&m_MB2WC_converter,
2220 m_char_encoding,
2221 m_unicode_encoding);
2222 status = TECCreateConverter(&m_WC2MB_converter,
2223 m_unicode_encoding,
2224 m_char_encoding);
2225 }
2226
335d31e0
SC
2227 size_t MB2WC(wchar_t *buf, const char *psz, size_t n) const
2228 {
d775fa82
WS
2229 OSStatus status = noErr ;
2230 ByteCount byteOutLen ;
2231 ByteCount byteInLen = strlen(psz) ;
2232 wchar_t *tbuf = NULL ;
2233 UniChar* ubuf = NULL ;
2234 size_t res = 0 ;
2235
2236 if (buf == NULL)
2237 {
638357a0 2238 //apple specs say at least 32
c543817b 2239 n = wxMax( 32 , byteInLen ) ;
d775fa82
WS
2240 tbuf = (wchar_t*) malloc( n * SIZEOF_WCHAR_T) ;
2241 }
2242 ByteCount byteBufferLen = n * sizeof( UniChar ) ;
f3a355ce 2243#if SIZEOF_WCHAR_T == 4
d775fa82 2244 ubuf = (UniChar*) malloc( byteBufferLen + 2 ) ;
f3a355ce 2245#else
d775fa82 2246 ubuf = (UniChar*) (buf ? buf : tbuf) ;
f3a355ce 2247#endif
d775fa82
WS
2248 status = TECConvertText(m_MB2WC_converter, (ConstTextPtr) psz , byteInLen, &byteInLen,
2249 (TextPtr) ubuf , byteBufferLen, &byteOutLen);
f3a355ce 2250#if SIZEOF_WCHAR_T == 4
8471ea90
SC
2251 // we have to terminate here, because n might be larger for the trailing zero, and if UniChar
2252 // is not properly terminated we get random characters at the end
2253 ubuf[byteOutLen / sizeof( UniChar ) ] = 0 ;
d9d488cf 2254 wxMBConvUTF16 converter ;
d775fa82
WS
2255 res = converter.MB2WC( (buf ? buf : tbuf) , (const char*)ubuf , n ) ;
2256 free( ubuf ) ;
f3a355ce 2257#else
d775fa82 2258 res = byteOutLen / sizeof( UniChar ) ;
f3a355ce 2259#endif
d775fa82
WS
2260 if ( buf == NULL )
2261 free(tbuf) ;
335d31e0 2262
335d31e0
SC
2263 if ( buf && res < n)
2264 buf[res] = 0;
2265
d775fa82 2266 return res ;
335d31e0
SC
2267 }
2268
2269 size_t WC2MB(char *buf, const wchar_t *psz, size_t n) const
d775fa82
WS
2270 {
2271 OSStatus status = noErr ;
2272 ByteCount byteOutLen ;
2273 ByteCount byteInLen = wxWcslen(psz) * SIZEOF_WCHAR_T ;
2274
2275 char *tbuf = NULL ;
2276
2277 if (buf == NULL)
2278 {
638357a0 2279 //apple specs say at least 32
c543817b 2280 n = wxMax( 32 , ((byteInLen / SIZEOF_WCHAR_T) * 8) + SIZEOF_WCHAR_T );
d775fa82
WS
2281 tbuf = (char*) malloc( n ) ;
2282 }
2283
2284 ByteCount byteBufferLen = n ;
2285 UniChar* ubuf = NULL ;
f3a355ce 2286#if SIZEOF_WCHAR_T == 4
d9d488cf 2287 wxMBConvUTF16 converter ;
d775fa82
WS
2288 size_t unicharlen = converter.WC2MB( NULL , psz , 0 ) ;
2289 byteInLen = unicharlen ;
2290 ubuf = (UniChar*) malloc( byteInLen + 2 ) ;
2291 converter.WC2MB( (char*) ubuf , psz, unicharlen + 2 ) ;
f3a355ce 2292#else
d775fa82 2293 ubuf = (UniChar*) psz ;
f3a355ce 2294#endif
d775fa82
WS
2295 status = TECConvertText(m_WC2MB_converter, (ConstTextPtr) ubuf , byteInLen, &byteInLen,
2296 (TextPtr) (buf ? buf : tbuf) , byteBufferLen, &byteOutLen);
f3a355ce 2297#if SIZEOF_WCHAR_T == 4
d775fa82 2298 free( ubuf ) ;
f3a355ce 2299#endif
d775fa82
WS
2300 if ( buf == NULL )
2301 free(tbuf) ;
335d31e0 2302
d775fa82 2303 size_t res = byteOutLen ;
335d31e0 2304 if ( buf && res < n)
638357a0 2305 {
335d31e0 2306 buf[res] = 0;
3698ae71 2307
638357a0
RN
2308 //we need to double-trip to verify it didn't insert any ? in place
2309 //of bogus characters
2310 wxWCharBuffer wcBuf(n);
2311 size_t pszlen = wxWcslen(psz);
2312 if ( MB2WC(wcBuf.data(), buf, n) == (size_t)-1 ||
2313 wxWcslen(wcBuf) != pszlen ||
2314 memcmp(wcBuf, psz, pszlen * sizeof(wchar_t)) != 0 )
2315 {
2316 // we didn't obtain the same thing we started from, hence
2317 // the conversion was lossy and we consider that it failed
2318 return (size_t)-1;
2319 }
2320 }
335d31e0 2321
d775fa82 2322 return res ;
335d31e0
SC
2323 }
2324
2325 bool IsOk() const
2326 { return m_MB2WC_converter != NULL && m_WC2MB_converter != NULL ; }
2327
2328private:
d775fa82
WS
2329 TECObjectRef m_MB2WC_converter ;
2330 TECObjectRef m_WC2MB_converter ;
2331
2332 TextEncodingBase m_char_encoding ;
2333 TextEncodingBase m_unicode_encoding ;
335d31e0
SC
2334};
2335
2336#endif // defined(__WXMAC__) && defined(TARGET_CARBON)
1e6feb95 2337
36acb880
VZ
2338// ============================================================================
2339// wxEncodingConverter based conversion classes
2340// ============================================================================
2341
1e6feb95 2342#if wxUSE_FONTMAP
1cd52418 2343
e95354ec 2344class wxMBConv_wxwin : public wxMBConv
1cd52418 2345{
8b04d4c4
VZ
2346private:
2347 void Init()
2348 {
2349 m_ok = m2w.Init(m_enc, wxFONTENCODING_UNICODE) &&
2350 w2m.Init(wxFONTENCODING_UNICODE, m_enc);
2351 }
2352
6001e347 2353public:
f1339c56
RR
2354 // temporarily just use wxEncodingConverter stuff,
2355 // so that it works while a better implementation is built
e95354ec 2356 wxMBConv_wxwin(const wxChar* name)
f1339c56
RR
2357 {
2358 if (name)
267e11c5 2359 m_enc = wxFontMapperBase::Get()->CharsetToEncoding(name, false);
8b04d4c4
VZ
2360 else
2361 m_enc = wxFONTENCODING_SYSTEM;
cafbf6fb 2362
8b04d4c4
VZ
2363 Init();
2364 }
2365
e95354ec 2366 wxMBConv_wxwin(wxFontEncoding enc)
8b04d4c4
VZ
2367 {
2368 m_enc = enc;
2369
2370 Init();
f1339c56 2371 }
dccce9ea 2372
bde4baac 2373 size_t MB2WC(wchar_t *buf, const char *psz, size_t WXUNUSED(n)) const
f1339c56
RR
2374 {
2375 size_t inbuf = strlen(psz);
dccce9ea 2376 if (buf)
c643a977
VS
2377 {
2378 if (!m2w.Convert(psz,buf))
2379 return (size_t)-1;
2380 }
f1339c56
RR
2381 return inbuf;
2382 }
dccce9ea 2383
bde4baac 2384 size_t WC2MB(char *buf, const wchar_t *psz, size_t WXUNUSED(n)) const
f1339c56 2385 {
f8d791e0 2386 const size_t inbuf = wxWcslen(psz);
f1339c56 2387 if (buf)
c643a977
VS
2388 {
2389 if (!w2m.Convert(psz,buf))
2390 return (size_t)-1;
2391 }
dccce9ea 2392
f1339c56
RR
2393 return inbuf;
2394 }
dccce9ea 2395
e95354ec 2396 bool IsOk() const { return m_ok; }
f1339c56
RR
2397
2398public:
8b04d4c4 2399 wxFontEncoding m_enc;
f1339c56 2400 wxEncodingConverter m2w, w2m;
cafbf6fb
VZ
2401
2402 // were we initialized successfully?
2403 bool m_ok;
fc7a2a60 2404
e95354ec 2405 DECLARE_NO_COPY_CLASS(wxMBConv_wxwin)
f6bcfd97 2406};
6001e347 2407
1e6feb95
VZ
2408#endif // wxUSE_FONTMAP
2409
36acb880
VZ
2410// ============================================================================
2411// wxCSConv implementation
2412// ============================================================================
2413
8b04d4c4 2414void wxCSConv::Init()
6001e347 2415{
e95354ec
VZ
2416 m_name = NULL;
2417 m_convReal = NULL;
2418 m_deferred = true;
2419}
2420
8b04d4c4
VZ
2421wxCSConv::wxCSConv(const wxChar *charset)
2422{
2423 Init();
82713003 2424
e95354ec
VZ
2425 if ( charset )
2426 {
e95354ec
VZ
2427 SetName(charset);
2428 }
bda3d86a
VZ
2429
2430 m_encoding = wxFONTENCODING_SYSTEM;
6001e347
RR
2431}
2432
8b04d4c4
VZ
2433wxCSConv::wxCSConv(wxFontEncoding encoding)
2434{
bda3d86a 2435 if ( encoding == wxFONTENCODING_MAX || encoding == wxFONTENCODING_DEFAULT )
e95354ec
VZ
2436 {
2437 wxFAIL_MSG( _T("invalid encoding value in wxCSConv ctor") );
2438
2439 encoding = wxFONTENCODING_SYSTEM;
2440 }
2441
8b04d4c4
VZ
2442 Init();
2443
bda3d86a 2444 m_encoding = encoding;
8b04d4c4
VZ
2445}
2446
6001e347
RR
2447wxCSConv::~wxCSConv()
2448{
65e50848
JS
2449 Clear();
2450}
2451
54380f29 2452wxCSConv::wxCSConv(const wxCSConv& conv)
8b04d4c4 2453 : wxMBConv()
54380f29 2454{
8b04d4c4
VZ
2455 Init();
2456
54380f29 2457 SetName(conv.m_name);
8b04d4c4 2458 m_encoding = conv.m_encoding;
54380f29
GD
2459}
2460
2461wxCSConv& wxCSConv::operator=(const wxCSConv& conv)
2462{
2463 Clear();
8b04d4c4 2464
54380f29 2465 SetName(conv.m_name);
8b04d4c4
VZ
2466 m_encoding = conv.m_encoding;
2467
54380f29
GD
2468 return *this;
2469}
2470
65e50848
JS
2471void wxCSConv::Clear()
2472{
8b04d4c4 2473 free(m_name);
e95354ec 2474 delete m_convReal;
8b04d4c4 2475
65e50848 2476 m_name = NULL;
e95354ec 2477 m_convReal = NULL;
6001e347
RR
2478}
2479
2480void wxCSConv::SetName(const wxChar *charset)
2481{
f1339c56
RR
2482 if (charset)
2483 {
2484 m_name = wxStrdup(charset);
e95354ec 2485 m_deferred = true;
f1339c56 2486 }
6001e347
RR
2487}
2488
e95354ec
VZ
2489wxMBConv *wxCSConv::DoCreate() const
2490{
c547282d
VZ
2491 // check for the special case of ASCII or ISO8859-1 charset: as we have
2492 // special knowledge of it anyhow, we don't need to create a special
2493 // conversion object
2494 if ( m_encoding == wxFONTENCODING_ISO8859_1 )
f1339c56 2495 {
e95354ec
VZ
2496 // don't convert at all
2497 return NULL;
2498 }
dccce9ea 2499
e95354ec
VZ
2500 // we trust OS to do conversion better than we can so try external
2501 // conversion methods first
2502 //
2503 // the full order is:
2504 // 1. OS conversion (iconv() under Unix or Win32 API)
2505 // 2. hard coded conversions for UTF
2506 // 3. wxEncodingConverter as fall back
2507
2508 // step (1)
2509#ifdef HAVE_ICONV
c547282d 2510#if !wxUSE_FONTMAP
e95354ec 2511 if ( m_name )
c547282d 2512#endif // !wxUSE_FONTMAP
e95354ec 2513 {
c547282d
VZ
2514 wxString name(m_name);
2515
2516#if wxUSE_FONTMAP
2517 if ( name.empty() )
d0ee33f5 2518 name = wxFontMapperBase::GetEncodingName(m_encoding);
c547282d
VZ
2519#endif // wxUSE_FONTMAP
2520
2521 wxMBConv_iconv *conv = new wxMBConv_iconv(name);
e95354ec
VZ
2522 if ( conv->IsOk() )
2523 return conv;
2524
2525 delete conv;
2526 }
2527#endif // HAVE_ICONV
2528
2529#ifdef wxHAVE_WIN32_MB2WC
2530 {
7608a683 2531#if wxUSE_FONTMAP
e95354ec
VZ
2532 wxMBConv_win32 *conv = m_name ? new wxMBConv_win32(m_name)
2533 : new wxMBConv_win32(m_encoding);
2534 if ( conv->IsOk() )
2535 return conv;
2536
2537 delete conv;
7608a683
WS
2538#else
2539 return NULL;
2540#endif
e95354ec
VZ
2541 }
2542#endif // wxHAVE_WIN32_MB2WC
d775fa82
WS
2543#if defined(__WXMAC__)
2544 {
5c3c8676 2545 // leave UTF16 and UTF32 to the built-ins of wx
3698ae71 2546 if ( m_name || ( m_encoding < wxFONTENCODING_UTF16BE ||
5c3c8676 2547 ( m_encoding >= wxFONTENCODING_MACMIN && m_encoding <= wxFONTENCODING_MACMAX ) ) )
d775fa82
WS
2548 {
2549
2d1659cf 2550#if wxUSE_FONTMAP
d775fa82
WS
2551 wxMBConv_mac *conv = m_name ? new wxMBConv_mac(m_name)
2552 : new wxMBConv_mac(m_encoding);
2d1659cf
RN
2553#else
2554 wxMBConv_mac *conv = new wxMBConv_mac(m_encoding);
2555#endif
d775fa82 2556 if ( conv->IsOk() )
f7e98dee
RN
2557 return conv;
2558
2559 delete conv;
2560 }
2561 }
2562#endif
2563#if defined(__WXCOCOA__)
2564 {
2565 if ( m_name || ( m_encoding <= wxFONTENCODING_UTF16 ) )
2566 {
2567
a6900d10 2568#if wxUSE_FONTMAP
f7e98dee
RN
2569 wxMBConv_cocoa *conv = m_name ? new wxMBConv_cocoa(m_name)
2570 : new wxMBConv_cocoa(m_encoding);
a6900d10
RN
2571#else
2572 wxMBConv_cocoa *conv = new wxMBConv_cocoa(m_encoding);
2573#endif
f7e98dee 2574 if ( conv->IsOk() )
d775fa82
WS
2575 return conv;
2576
2577 delete conv;
2578 }
335d31e0
SC
2579 }
2580#endif
e95354ec
VZ
2581 // step (2)
2582 wxFontEncoding enc = m_encoding;
2583#if wxUSE_FONTMAP
c547282d
VZ
2584 if ( enc == wxFONTENCODING_SYSTEM && m_name )
2585 {
2586 // use "false" to suppress interactive dialogs -- we can be called from
2587 // anywhere and popping up a dialog from here is the last thing we want to
2588 // do
267e11c5 2589 enc = wxFontMapperBase::Get()->CharsetToEncoding(m_name, false);
c547282d 2590 }
e95354ec
VZ
2591#endif // wxUSE_FONTMAP
2592
2593 switch ( enc )
2594 {
2595 case wxFONTENCODING_UTF7:
2596 return new wxMBConvUTF7;
2597
2598 case wxFONTENCODING_UTF8:
2599 return new wxMBConvUTF8;
2600
e95354ec
VZ
2601 case wxFONTENCODING_UTF16BE:
2602 return new wxMBConvUTF16BE;
2603
2604 case wxFONTENCODING_UTF16LE:
2605 return new wxMBConvUTF16LE;
2606
e95354ec
VZ
2607 case wxFONTENCODING_UTF32BE:
2608 return new wxMBConvUTF32BE;
2609
2610 case wxFONTENCODING_UTF32LE:
2611 return new wxMBConvUTF32LE;
2612
2613 default:
2614 // nothing to do but put here to suppress gcc warnings
2615 ;
2616 }
2617
2618 // step (3)
2619#if wxUSE_FONTMAP
2620 {
2621 wxMBConv_wxwin *conv = m_name ? new wxMBConv_wxwin(m_name)
2622 : new wxMBConv_wxwin(m_encoding);
2623 if ( conv->IsOk() )
2624 return conv;
2625
2626 delete conv;
2627 }
2628#endif // wxUSE_FONTMAP
2629
a58d4f4d
VS
2630 // NB: This is a hack to prevent deadlock. What could otherwise happen
2631 // in Unicode build: wxConvLocal creation ends up being here
2632 // because of some failure and logs the error. But wxLog will try to
2633 // attach timestamp, for which it will need wxConvLocal (to convert
2634 // time to char* and then wchar_t*), but that fails, tries to log
2635 // error, but wxLog has a (already locked) critical section that
2636 // guards static buffer.
2637 static bool alreadyLoggingError = false;
2638 if (!alreadyLoggingError)
2639 {
2640 alreadyLoggingError = true;
2641 wxLogError(_("Cannot convert from the charset '%s'!"),
2642 m_name ? m_name
e95354ec
VZ
2643 :
2644#if wxUSE_FONTMAP
267e11c5 2645 wxFontMapperBase::GetEncodingDescription(m_encoding).c_str()
e95354ec
VZ
2646#else // !wxUSE_FONTMAP
2647 wxString::Format(_("encoding %s"), m_encoding).c_str()
2648#endif // wxUSE_FONTMAP/!wxUSE_FONTMAP
2649 );
a58d4f4d
VS
2650 alreadyLoggingError = false;
2651 }
e95354ec
VZ
2652
2653 return NULL;
2654}
2655
2656void wxCSConv::CreateConvIfNeeded() const
2657{
2658 if ( m_deferred )
2659 {
2660 wxCSConv *self = (wxCSConv *)this; // const_cast
bda3d86a
VZ
2661
2662#if wxUSE_INTL
2663 // if we don't have neither the name nor the encoding, use the default
2664 // encoding for this system
2665 if ( !m_name && m_encoding == wxFONTENCODING_SYSTEM )
2666 {
4d312c22 2667 self->m_name = wxStrdup(wxLocale::GetSystemEncodingName());
bda3d86a
VZ
2668 }
2669#endif // wxUSE_INTL
2670
e95354ec
VZ
2671 self->m_convReal = DoCreate();
2672 self->m_deferred = false;
6001e347 2673 }
6001e347
RR
2674}
2675
2676size_t wxCSConv::MB2WC(wchar_t *buf, const char *psz, size_t n) const
2677{
e95354ec 2678 CreateConvIfNeeded();
dccce9ea 2679
e95354ec
VZ
2680 if (m_convReal)
2681 return m_convReal->MB2WC(buf, psz, n);
f1339c56
RR
2682
2683 // latin-1 (direct)
4def3b35 2684 size_t len = strlen(psz);
dccce9ea 2685
f1339c56
RR
2686 if (buf)
2687 {
4def3b35 2688 for (size_t c = 0; c <= len; c++)
f1339c56
RR
2689 buf[c] = (unsigned char)(psz[c]);
2690 }
dccce9ea 2691
f1339c56 2692 return len;
6001e347
RR
2693}
2694
2695size_t wxCSConv::WC2MB(char *buf, const wchar_t *psz, size_t n) const
2696{
e95354ec 2697 CreateConvIfNeeded();
dccce9ea 2698
e95354ec
VZ
2699 if (m_convReal)
2700 return m_convReal->WC2MB(buf, psz, n);
1cd52418 2701
f1339c56 2702 // latin-1 (direct)
f8d791e0 2703 const size_t len = wxWcslen(psz);
f1339c56
RR
2704 if (buf)
2705 {
4def3b35 2706 for (size_t c = 0; c <= len; c++)
24642831
VS
2707 {
2708 if (psz[c] > 0xFF)
2709 return (size_t)-1;
907173e5 2710 buf[c] = (char)psz[c];
24642831
VS
2711 }
2712 }
2713 else
2714 {
2715 for (size_t c = 0; c <= len; c++)
2716 {
2717 if (psz[c] > 0xFF)
2718 return (size_t)-1;
2719 }
f1339c56 2720 }
dccce9ea 2721
f1339c56 2722 return len;
6001e347
RR
2723}
2724
bde4baac
VZ
2725// ----------------------------------------------------------------------------
2726// globals
2727// ----------------------------------------------------------------------------
2728
2729#ifdef __WINDOWS__
2730 static wxMBConv_win32 wxConvLibcObj;
f81f5901
SC
2731#elif defined(__WXMAC__) && !defined(__MACH__)
2732 static wxMBConv_mac wxConvLibcObj ;
bde4baac 2733#else
dcc8fac0 2734 static wxMBConvLibc wxConvLibcObj;
bde4baac
VZ
2735#endif
2736
2737static wxCSConv wxConvLocalObj(wxFONTENCODING_SYSTEM);
2738static wxCSConv wxConvISO8859_1Obj(wxFONTENCODING_ISO8859_1);
2739static wxMBConvUTF7 wxConvUTF7Obj;
2740static wxMBConvUTF8 wxConvUTF8Obj;
c12b7f79 2741
bde4baac
VZ
2742WXDLLIMPEXP_DATA_BASE(wxMBConv&) wxConvLibc = wxConvLibcObj;
2743WXDLLIMPEXP_DATA_BASE(wxCSConv&) wxConvLocal = wxConvLocalObj;
2744WXDLLIMPEXP_DATA_BASE(wxCSConv&) wxConvISO8859_1 = wxConvISO8859_1Obj;
2745WXDLLIMPEXP_DATA_BASE(wxMBConvUTF7&) wxConvUTF7 = wxConvUTF7Obj;
2746WXDLLIMPEXP_DATA_BASE(wxMBConvUTF8&) wxConvUTF8 = wxConvUTF8Obj;
2747WXDLLIMPEXP_DATA_BASE(wxMBConv *) wxConvCurrent = &wxConvLibcObj;
f5a1953b
VZ
2748WXDLLIMPEXP_DATA_BASE(wxMBConv *) wxConvFileName = &
2749#ifdef __WXOSX__
ea8ce907 2750 wxConvUTF8Obj;
f5a1953b 2751#else
ea8ce907 2752 wxConvLibcObj;
f5a1953b
VZ
2753#endif
2754
bde4baac
VZ
2755
2756#else // !wxUSE_WCHAR_T
2757
2758// stand-ins in absence of wchar_t
2759WXDLLIMPEXP_DATA_BASE(wxMBConv) wxConvLibc,
2760 wxConvISO8859_1,
2761 wxConvLocal,
2762 wxConvUTF8;
2763
2764#endif // wxUSE_WCHAR_T/!wxUSE_WCHAR_T
6001e347
RR
2765
2766