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216 lines
4.0 KiB
216 lines
4.0 KiB
#include "precomp.h"
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#include "utf8str.h"
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CUTF8String::~CUTF8String()
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{
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if (ALLOC_UNICODE & m_eAlloc)
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{
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delete m_pwszUnicode;
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}
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else if (ALLOC_UTF8 & m_eAlloc)
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{
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delete m_pszUTF8;
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}
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}
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CUTF8String::operator LPWSTR()
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{
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if ((NULL == m_pwszUnicode) && (NULL != m_pszUTF8))
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{
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DecodeUTF8();
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}
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return m_pwszUnicode;
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}
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CUTF8String::operator LPSTR()
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{
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if ((NULL == m_pszUTF8) && (NULL != m_pwszUnicode))
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{
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EncodeUTF8();
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}
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return m_pszUTF8;
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}
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VOID CUTF8String::EncodeUTF8()
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{
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DebugEntry(CUTF8String::EncodeUTF8);
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m_hr = S_OK;
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ASSERT(NULL != m_pwszUnicode);
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int cchUTF8 = 1; // always include a NULL terminator
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// First make a pass to see how many characters we will be converting.
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LPWSTR pwsz = m_pwszUnicode;
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while (L'\0' != *pwsz)
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{
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WCHAR wch = *pwsz++;
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if (wch < 0x80)
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{
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cchUTF8 += 1;
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}
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else if (wch < 0x800)
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{
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cchUTF8 += 2;
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}
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else
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{
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cchUTF8 += 3;
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}
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}
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ASSERT(NULL == m_pszUTF8);
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m_pszUTF8 = new CHAR[cchUTF8];
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if (NULL != m_pszUTF8)
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{
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ASSERT(ALLOC_NONE == m_eAlloc);
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m_eAlloc = ALLOC_UTF8;
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// Start encoding here:
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const BYTE cUtf8FirstSignal[4] = {0x00, 0x00, 0xC0, 0xE0};
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const BYTE cMask = 0xBF;
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const BYTE cSignal = 0x80;
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LPSTR pszStop = m_pszUTF8 + cchUTF8;
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LPSTR pszDst = m_pszUTF8;
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pwsz = m_pwszUnicode;
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while (pszDst < pszStop)
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{
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WCHAR wch = *pwsz++;
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#ifdef DEBUG
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if (L'\0' == wch)
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{
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ASSERT(pszDst == pszStop - 1);
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}
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#endif // DEBUG
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int cchTotal;
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if (wch < 0x80)
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{
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cchTotal = 1;
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}
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else if (wch < 0x800)
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{
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cchTotal = 2;
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}
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else
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{
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cchTotal = 3;
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}
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pszDst += cchTotal;
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switch (cchTotal)
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{
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case 3:
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*--pszDst = (wch | cSignal) & cMask;
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wch >>= 6;
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// FALL THROUGH
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case 2:
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*--pszDst = (wch | cSignal) & cMask;
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wch >>= 6;
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// FALL THROUGH
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case 1:
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*--pszDst = (wch | cUtf8FirstSignal[cchTotal]);
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}
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pszDst += cchTotal;
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}
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m_hr = S_OK;
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}
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else
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{
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m_hr = E_OUTOFMEMORY;
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}
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DebugExitVOID(CUTF8String::EncodeUTF8);
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}
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VOID CUTF8String::DecodeUTF8()
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{
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DebugEntry(CUTF8String::DecodeUTF8);
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m_hr = S_OK;
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ASSERT(NULL != m_pszUTF8);
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int cchUnicode = 1; // always include a NULL terminator
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LPSTR psz = m_pszUTF8;
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// First determine the destination size (cchUnicode)
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while ('\0' != *psz)
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{
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int cbChar = 0;
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BYTE bFirst = (BYTE) *psz;
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while (bFirst & 0x80)
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{
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cbChar++;
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ASSERT(cbChar < 8);
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bFirst <<= 1;
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}
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cbChar = max(1, cbChar);
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psz += cbChar;
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cchUnicode++;
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}
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ASSERT(NULL == m_pwszUnicode);
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m_pwszUnicode = new WCHAR[cchUnicode];
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if (NULL != m_pwszUnicode)
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{
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ASSERT(ALLOC_NONE == m_eAlloc);
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m_eAlloc = ALLOC_UNICODE;
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// Start decoding here:
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LPWSTR pwszStop = m_pwszUnicode + cchUnicode;
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LPWSTR pwszDst = m_pwszUnicode;
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psz = m_pszUTF8;
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while (pwszDst < pwszStop)
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{
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int cbChar = 0;
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BYTE bFirst = (BYTE) *psz;
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while (bFirst & 0x80)
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{
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cbChar++;
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ASSERT(cbChar < 8);
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bFirst <<= 1;
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}
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BOOL fValid = TRUE;
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WCHAR wch = L'\0';
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switch (cbChar)
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{
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case 6: psz++; // FALLTHROUGH // we don't handle
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case 5: psz++; // FALLTHROUGH // UCS-4; skip first
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case 4: psz++; // FALLTHROUGH // three bytes
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case 3:
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wch = WCHAR(*psz++ & 0x0f) << 12; // 0x0800 - 0xffff
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fValid = fValid && ((*psz & 0xc0) == 0x80);
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// FALLTHROUGH
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case 2:
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wch |= WCHAR(*psz++ & 0x3f) << 6; // 0x0080 - 0x07ff
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fValid = fValid && ((*psz & 0xc0) == 0x80);
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wch |= WCHAR(*psz++ & 0x3f);
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break;
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case 0:
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wch = WCHAR(*psz++); // 0x0000 - 0x007f
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break;
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default:
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ERROR_OUT(("CUTF8String::DecodeUTF8 found invalid UTF-8 lead byte"));
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wch = L'?';
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psz += cbChar;
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break;
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}
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if (FALSE == fValid)
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{
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ERROR_OUT(("CUTF8String::DecodeUTF8 found bad UTF-8 sequence"));
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*pwszDst = L'\0';
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m_hr = E_FAIL;
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break;
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}
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#ifdef DEBUG
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cchUnicode--;
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#endif // DEBUG
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*pwszDst++ = wch;
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}
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ASSERT(0 == cchUnicode);
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}
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else
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{
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m_hr = E_OUTOFMEMORY;
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}
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DebugExitVOID(CUTF8String::DecodeUTF8);
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}
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