git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/trunk@50005 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
229 lines
8.0 KiB
C++
229 lines
8.0 KiB
C++
/////////////////////////////////////////////////////////////////////////////
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// Name: src/mac/corefoundation/strconv.cpp
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// Purpose: Unicode conversion classes
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// Author: David Elliott
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// Modified by:
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// Created: 2007-07-06
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// RCS-ID: $Id$
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// Copyright: (c) 2007 David Elliott
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// Licence: wxWindows licence
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/////////////////////////////////////////////////////////////////////////////
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// For compilers that support precompilation, includes "wx.h".
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#include "wx/wxprec.h"
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#ifndef WX_PRECOMP
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#include "wx/string.h"
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#endif
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#include "wx/strconv.h"
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#include "wx/fontmap.h"
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#ifdef __DARWIN__
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#include "wx/mac/corefoundation/private/strconv_cf.h"
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#include "wx/mac/corefoundation/cfref.h"
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// ============================================================================
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// CoreFoundation conversion classes
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// ============================================================================
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/* Provide factory functions for unit tests. Not in any header. Do not
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* assume ABI compatibility even within a given wxWidgets release.
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*/
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WXDLLIMPEXP_BASE wxMBConv* new_wxMBConv_cf( const char* name)
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{
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wxMBConv_cf *result = new wxMBConv_cf(name);
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if(!result->IsOk())
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{
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delete result;
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return NULL;
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}
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else
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return result;
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}
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WXDLLIMPEXP_BASE wxMBConv* new_wxMBConv_cf(wxFontEncoding encoding)
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{
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wxMBConv_cf *result = new wxMBConv_cf(encoding);
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if(!result->IsOk())
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{
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delete result;
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return NULL;
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}
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else
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return result;
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}
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// Provide a constant for the wchat_t encoding used by the host platform.
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#ifdef WORDS_BIGENDIAN
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static const CFStringEncoding wxCFStringEncodingWcharT = kCFStringEncodingUTF32BE;
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#else
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static const CFStringEncoding wxCFStringEncodingWcharT = kCFStringEncodingUTF32LE;
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#endif
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size_t wxMBConv_cf::ToWChar(wchar_t * dst, size_t dstSize, const char * src, size_t srcSize) const
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{
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wxCHECK(src, wxCONV_FAILED);
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/* NOTE: This is wrong if the source encoding has an element size
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* other than char (e.g. it's kCFStringEncodingUnicode)
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* If the user specifies it, it's presumably right though.
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* Right now we don't support UTF-16 in anyway since wx can do a better job.
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*/
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if(srcSize == wxNO_LEN)
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srcSize = strlen(src) + 1;
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// First create the temporary CFString
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wxCFRef<CFStringRef> theString( CFStringCreateWithBytes (
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NULL, //the allocator
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(const UInt8*)src,
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srcSize,
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m_encoding,
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false //no BOM/external representation
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));
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wxCHECK(theString != NULL, wxCONV_FAILED);
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/* NOTE: The string content includes the NULL element if the source string did
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* That means we have to do nothing special because the destination will have
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* the NULL element iff the source did and the NULL element will be included
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* in the count iff it was included in the source count.
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*/
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/* If we're compiling against Tiger headers we can support direct conversion
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* to UTF32. If we are then run against a pre-Tiger system, the encoding
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* won't be available so we'll defer to the string->UTF-16->UTF-32 conversion.
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*/
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if(CFStringIsEncodingAvailable(wxCFStringEncodingWcharT))
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{
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CFRange fullStringRange = CFRangeMake(0, CFStringGetLength(theString));
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CFIndex usedBufLen;
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CFIndex charsConverted = CFStringGetBytes(
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theString,
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fullStringRange,
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wxCFStringEncodingWcharT,
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0,
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false,
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// if dstSize is 0 then pass NULL to get required length in usedBufLen
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dstSize != 0?(UInt8*)dst:NULL,
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dstSize * sizeof(wchar_t),
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&usedBufLen);
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// charsConverted is > 0 iff conversion succeeded
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if(charsConverted <= 0)
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return wxCONV_FAILED;
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/* usedBufLen is the number of bytes written, so we divide by
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* sizeof(wchar_t) to get the number of elements written.
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*/
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wxASSERT( (usedBufLen % sizeof(wchar_t)) == 0 );
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// CFStringGetBytes does exactly the right thing when buffer
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// pointer is NULL and returns the number of bytes required
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return usedBufLen / sizeof(wchar_t);
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}
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else
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{
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// NOTE: Includes NULL iff source did
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/* NOTE: This is an approximation. The eventual UTF-32 will
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* possibly have less elements but certainly not more.
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*/
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size_t returnSize = CFStringGetLength(theString);
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if (dstSize == 0 || dst == NULL)
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{
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return returnSize;
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}
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// Convert the entire string.. too hard to figure out how many UTF-16 we'd need
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// for an undersized UTF-32 destination buffer.
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CFRange fullStringRange = CFRangeMake(0, CFStringGetLength(theString));
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UniChar *szUniCharBuffer = new UniChar[fullStringRange.length];
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CFStringGetCharacters(theString, fullStringRange, szUniCharBuffer);
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wxMBConvUTF16 converter;
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returnSize = converter.ToWChar( dst, dstSize, (const char*)szUniCharBuffer, fullStringRange.length );
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delete [] szUniCharBuffer;
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return returnSize;
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}
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// NOTREACHED
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}
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size_t wxMBConv_cf::FromWChar(char *dst, size_t dstSize, const wchar_t *src, size_t srcSize) const
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{
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wxCHECK(src, wxCONV_FAILED);
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if(srcSize == wxNO_LEN)
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srcSize = wxStrlen(src) + 1;
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// Temporary CFString
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wxCFRef<CFStringRef> theString;
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/* If we're compiling against Tiger headers we can support direct conversion
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* from UTF32. If we are then run against a pre-Tiger system, the encoding
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* won't be available so we'll defer to the UTF-32->UTF-16->string conversion.
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*/
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if(CFStringIsEncodingAvailable(wxCFStringEncodingWcharT))
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{
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theString = wxCFRef<CFStringRef>(CFStringCreateWithBytes(
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kCFAllocatorDefault,
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(UInt8*)src,
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srcSize * sizeof(wchar_t),
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wxCFStringEncodingWcharT,
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false));
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}
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else
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{
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wxMBConvUTF16 converter;
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size_t cbUniBuffer = converter.FromWChar( NULL, 0, src, srcSize );
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wxASSERT(cbUniBuffer % sizeof(UniChar));
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// Will be free'd by kCFAllocatorMalloc when CFString is released
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UniChar *tmpUniBuffer = (UniChar*)malloc(cbUniBuffer);
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cbUniBuffer = converter.FromWChar( (char*) tmpUniBuffer, cbUniBuffer, src, srcSize );
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wxASSERT(cbUniBuffer % sizeof(UniChar));
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theString = wxCFRef<CFStringRef>(CFStringCreateWithCharactersNoCopy(
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kCFAllocatorDefault,
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tmpUniBuffer,
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cbUniBuffer / sizeof(UniChar),
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kCFAllocatorMalloc
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));
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}
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wxCHECK(theString != NULL, wxCONV_FAILED);
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CFIndex usedBufLen;
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CFIndex charsConverted = CFStringGetBytes(
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theString,
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CFRangeMake(0, CFStringGetLength(theString)),
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m_encoding,
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0, // FAIL on unconvertible characters
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false, // not an external representation
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// if dstSize is 0 then pass NULL to get required length in usedBufLen
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(dstSize != 0)?(UInt8*)dst:NULL,
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dstSize,
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&usedBufLen
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);
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// charsConverted is > 0 iff conversion succeeded
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if(charsConverted <= 0)
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return wxCONV_FAILED;
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return usedBufLen;
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}
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#endif // __DARWIN__
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