d25b88ca2b
upgrade OSL_ASSERT to assert and add a few more Change-Id: Ib52ca573d9e0878fef94dec40410f71bc94dea04 Reviewed-on: https://gerrit.libreoffice.org/c/core/+/166914 Tested-by: Jenkins Reviewed-by: Caolán McNamara <caolan.mcnamara@collabora.com>
659 lines
22 KiB
C++
659 lines
22 KiB
C++
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
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/*
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* This file is part of the LibreOffice project.
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*
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/.
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*
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* This file incorporates work covered by the following license notice:
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*
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* Licensed to the Apache Software Foundation (ASF) under one or more
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* contributor license agreements. See the NOTICE file distributed
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* with this work for additional information regarding copyright
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* ownership. The ASF licenses this file to you under the Apache
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* License, Version 2.0 (the "License"); you may not use this file
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* except in compliance with the License. You may obtain a copy of
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* the License at http://www.apache.org/licenses/LICENSE-2.0 .
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*/
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#include <sal/config.h>
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#include <cassert>
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#include <cstdlib>
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#include <osl/diagnose.h>
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#include <rtl/tencinfo.h>
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#include "strimp.hxx"
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#include <rtl/character.hxx>
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#include <rtl/string.h>
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#include <rtl/math.h>
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/* ======================================================================= */
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#if USE_SDT_PROBES
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#define RTL_LOG_STRING_BITS 8
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#endif
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#include "strtmpl.hxx"
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/* ======================================================================= */
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sal_Int32 SAL_CALL rtl_str_valueOfFloat(char * pStr, float f)
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SAL_THROW_EXTERN_C()
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{
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return rtl::str::valueOfFP<RTL_STR_MAX_VALUEOFFLOAT>(pStr, f);
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}
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sal_Int32 SAL_CALL rtl_str_valueOfDouble(char * pStr, double d)
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SAL_THROW_EXTERN_C()
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{
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return rtl::str::valueOfFP<RTL_STR_MAX_VALUEOFDOUBLE>(pStr, d);
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}
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float SAL_CALL rtl_str_toFloat(char const * pStr) SAL_THROW_EXTERN_C()
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{
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assert(pStr);
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return static_cast<float>(rtl_math_stringToDouble(pStr, pStr + rtl_str_getLength(pStr),
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'.', 0, nullptr, nullptr));
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}
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double SAL_CALL rtl_str_toDouble(char const * pStr) SAL_THROW_EXTERN_C()
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{
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assert(pStr);
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return rtl_math_stringToDouble(pStr, pStr + rtl_str_getLength(pStr), '.', 0,
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nullptr, nullptr);
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}
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/* ======================================================================= */
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static int rtl_ImplGetFastUTF8ByteLen( const sal_Unicode* pStr, sal_Int32 nLen )
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{
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int n;
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sal_Unicode c;
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sal_uInt32 nUCS4Char;
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const sal_Unicode* pEndStr;
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n = 0;
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pEndStr = pStr+nLen;
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while ( pStr < pEndStr )
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{
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c = *pStr;
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if ( c < 0x80 )
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n++;
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else if ( c < 0x800 )
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n += 2;
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else
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{
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if ( !rtl::isHighSurrogate(c) )
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n += 3;
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else
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{
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nUCS4Char = c;
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if ( pStr+1 < pEndStr )
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{
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c = *(pStr+1);
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if ( rtl::isLowSurrogate(c) )
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{
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nUCS4Char = rtl::combineSurrogates(nUCS4Char, c);
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pStr++;
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}
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}
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if ( nUCS4Char < 0x10000 )
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n += 3;
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else if ( nUCS4Char < 0x200000 )
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n += 4;
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else if ( nUCS4Char < 0x4000000 )
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n += 5;
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else
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n += 6;
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}
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}
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pStr++;
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}
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return n;
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}
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/* ----------------------------------------------------------------------- */
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static bool rtl_impl_convertUStringToString(rtl_String ** pTarget,
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sal_Unicode const * pSource,
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sal_Int32 nLength,
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rtl_TextEncoding nEncoding,
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sal_uInt32 nFlags,
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bool bCheckErrors)
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{
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assert(pTarget != nullptr);
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assert(pSource != nullptr || nLength == 0);
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assert(nLength >= 0);
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OSL_ASSERT(nLength == 0 || rtl_isOctetTextEncoding(nEncoding));
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if ( !nLength )
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rtl_string_new( pTarget );
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else
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{
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rtl_String* pTemp;
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rtl_UnicodeToTextConverter hConverter;
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sal_uInt32 nInfo;
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sal_Size nSrcChars;
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sal_Size nDestBytes;
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sal_Size nNewLen;
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sal_Size nNotConvertedChars;
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sal_Size nMaxCharLen;
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/* Optimization for UTF-8 - we try to calculate the exact length */
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/* For all other encoding we try a good estimation */
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if ( nEncoding == RTL_TEXTENCODING_UTF8 )
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{
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nNewLen = rtl_ImplGetFastUTF8ByteLen( pSource, nLength );
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/* Includes the string only ASCII, then we could copy
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the buffer faster */
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if ( nNewLen == static_cast<sal_Size>(nLength) )
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{
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char* pBuffer;
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if ( *pTarget )
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rtl_string_release( *pTarget );
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*pTarget = rtl_string_ImplAlloc( nLength );
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assert(*pTarget != nullptr);
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pBuffer = (*pTarget)->buffer;
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do
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{
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/* Check ASCII range */
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OSL_ENSURE( *pSource <= 127,
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"rtl_uString2String() - UTF8 test is encoding is wrong" );
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*pBuffer = static_cast<char>(static_cast<unsigned char>(*pSource));
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pBuffer++;
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pSource++;
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nLength--;
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}
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while ( nLength );
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return true;
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}
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nMaxCharLen = 4;
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}
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else
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{
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rtl_TextEncodingInfo aTextEncInfo;
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aTextEncInfo.StructSize = sizeof( aTextEncInfo );
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if ( !rtl_getTextEncodingInfo( nEncoding, &aTextEncInfo ) )
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{
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aTextEncInfo.AverageCharSize = 1;
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aTextEncInfo.MaximumCharSize = 8;
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}
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nNewLen = nLength * static_cast<sal_Size>(aTextEncInfo.AverageCharSize);
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nMaxCharLen = aTextEncInfo.MaximumCharSize;
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}
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nFlags |= RTL_UNICODETOTEXT_FLAGS_FLUSH;
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hConverter = rtl_createUnicodeToTextConverter( nEncoding );
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for (;;)
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{
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pTemp = rtl_string_ImplAlloc( nNewLen );
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assert(pTemp != nullptr);
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nDestBytes = rtl_convertUnicodeToText( hConverter, nullptr,
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pSource, nLength,
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pTemp->buffer, nNewLen,
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nFlags,
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&nInfo, &nSrcChars );
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if (bCheckErrors && (nInfo & RTL_UNICODETOTEXT_INFO_ERROR) != 0)
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{
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rtl_freeString(pTemp);
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rtl_destroyUnicodeToTextConverter(hConverter);
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return false;
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}
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if ((nInfo & RTL_UNICODETOTEXT_INFO_DESTBUFFERTOSMALL) == 0)
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break;
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/* Buffer not big enough, try again with enough space */
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rtl_freeString( pTemp );
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/* Try with the max. count of characters with
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additional overhead for replacing functionality */
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nNotConvertedChars = nLength-nSrcChars;
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nNewLen = nDestBytes+(nNotConvertedChars*nMaxCharLen)+nNotConvertedChars+4;
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}
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/* Set the buffer to the correct size or is there to
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much overhead, reallocate to the correct size */
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if ( nNewLen > nDestBytes+8 )
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{
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rtl_String* pTemp2 = rtl_string_ImplAlloc( nDestBytes );
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assert(pTemp2 != nullptr);
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rtl::str::Copy(pTemp2->buffer, pTemp->buffer, nDestBytes);
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rtl_freeString( pTemp );
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pTemp = pTemp2;
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}
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else
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{
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pTemp->length = nDestBytes;
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pTemp->buffer[nDestBytes] = 0;
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}
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rtl_destroyUnicodeToTextConverter( hConverter );
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if ( *pTarget )
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rtl_string_release( *pTarget );
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*pTarget = pTemp;
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/* Results the conversion in an empty buffer -
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create an empty string */
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if ( pTemp && !nDestBytes )
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rtl_string_new( pTarget );
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}
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return true;
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}
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void SAL_CALL rtl_uString2String( rtl_String** ppThis,
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const sal_Unicode* pUStr,
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sal_Int32 nULen,
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rtl_TextEncoding eTextEncoding,
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sal_uInt32 nCvtFlags )
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SAL_THROW_EXTERN_C()
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{
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rtl_impl_convertUStringToString(ppThis, pUStr, nULen, eTextEncoding,
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nCvtFlags, false);
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}
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sal_Bool SAL_CALL rtl_convertUStringToString(rtl_String ** pTarget,
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sal_Unicode const * pSource,
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sal_Int32 nLength,
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rtl_TextEncoding nEncoding,
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sal_uInt32 nFlags)
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SAL_THROW_EXTERN_C()
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{
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return rtl_impl_convertUStringToString(pTarget, pSource, nLength, nEncoding,
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nFlags, true);
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}
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void rtl_string_newReplaceFirst(
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rtl_String ** newStr, rtl_String * str, char const * from,
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sal_Int32 fromLength, char const * to, sal_Int32 toLength,
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sal_Int32 * index) SAL_THROW_EXTERN_C()
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{
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assert(str != nullptr);
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assert(index != nullptr);
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assert(*index >= 0 && *index <= str->length);
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assert(fromLength >= 0);
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assert(toLength >= 0);
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sal_Int32 i = rtl_str_indexOfStr_WithLength(
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str->buffer + *index, str->length - *index, from, fromLength);
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if (i == -1) {
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rtl_string_assign(newStr, str);
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} else {
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assert(i <= str->length - *index);
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i += *index;
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assert(fromLength <= str->length);
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if (str->length - fromLength > SAL_MAX_INT32 - toLength) {
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std::abort();
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}
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rtl::str::newReplaceStrAt(newStr, str, i, fromLength, to, toLength);
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}
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*index = i;
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}
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void rtl_string_newReplaceAll(
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rtl_String ** newStr, rtl_String * str, char const * from,
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sal_Int32 fromLength, char const * to, sal_Int32 toLength)
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SAL_THROW_EXTERN_C()
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{
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rtl::str::newReplaceAllFromIndex(newStr, str, from, fromLength, to, toLength, 0);
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}
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sal_Int32 SAL_CALL rtl_str_getLength(const char* pStr) SAL_THROW_EXTERN_C()
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{
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return rtl::str::getLength(pStr);
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}
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sal_Int32 SAL_CALL rtl_str_compare(const char* pStr1, const char* pStr2) SAL_THROW_EXTERN_C()
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{
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return rtl::str::compare(rtl::str::null_terminated(pStr1), rtl::str::null_terminated(pStr2),
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rtl::str::CompareNormal(), rtl::str::noShortening);
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}
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sal_Int32 SAL_CALL rtl_str_compare_WithLength(const char* pStr1, sal_Int32 nStr1Len,
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const char* pStr2, sal_Int32 nStr2Len)
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SAL_THROW_EXTERN_C()
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{
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return rtl::str::compare(rtl::str::with_length(pStr1, nStr1Len),
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rtl::str::with_length(pStr2, nStr2Len),
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rtl::str::CompareNormal(), rtl::str::noShortening);
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}
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sal_Int32 SAL_CALL rtl_str_shortenedCompare_WithLength(const char* pStr1, sal_Int32 nStr1Len,
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const char* pStr2, sal_Int32 nStr2Len,
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sal_Int32 nShortenedLength)
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SAL_THROW_EXTERN_C()
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{
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return rtl::str::compare(rtl::str::with_length(pStr1, nStr1Len),
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rtl::str::with_length(pStr2, nStr2Len),
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rtl::str::CompareNormal(), nShortenedLength);
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}
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sal_Int32 SAL_CALL rtl_str_reverseCompare_WithLength(const char* pStr1, sal_Int32 nStr1Len,
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const char* pStr2, sal_Int32 nStr2Len)
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SAL_THROW_EXTERN_C()
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{
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return rtl::str::reverseCompare_WithLengths(pStr1, nStr1Len, pStr2, nStr2Len,
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rtl::str::CompareNormal());
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}
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sal_Int32 SAL_CALL rtl_str_compareIgnoreAsciiCase(const char* pStr1, const char* pStr2)
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SAL_THROW_EXTERN_C()
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{
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return rtl::str::compare(rtl::str::null_terminated(pStr1), rtl::str::null_terminated(pStr2),
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rtl::str::CompareIgnoreAsciiCase(), rtl::str::noShortening);
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}
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sal_Int32 SAL_CALL rtl_str_compareIgnoreAsciiCase_WithLength(const char* pStr1, sal_Int32 nStr1Len,
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const char* pStr2, sal_Int32 nStr2Len)
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SAL_THROW_EXTERN_C()
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{
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return rtl::str::compare(rtl::str::with_length(pStr1, nStr1Len),
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rtl::str::with_length(pStr2, nStr2Len),
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rtl::str::CompareIgnoreAsciiCase(), rtl::str::noShortening);
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}
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sal_Int32 SAL_CALL rtl_str_shortenedCompareIgnoreAsciiCase_WithLength(
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const char* pStr1, sal_Int32 nStr1Len, const char* pStr2, sal_Int32 nStr2Len,
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sal_Int32 nShortenedLength) SAL_THROW_EXTERN_C()
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{
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return rtl::str::compare(rtl::str::with_length(pStr1, nStr1Len),
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rtl::str::with_length(pStr2, nStr2Len),
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rtl::str::CompareIgnoreAsciiCase(), nShortenedLength);
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}
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sal_Int32 SAL_CALL rtl_str_hashCode(const char* pStr) SAL_THROW_EXTERN_C()
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{
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return rtl::str::hashCode(pStr);
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}
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sal_Int32 SAL_CALL rtl_str_hashCode_WithLength(const char* pStr, sal_Int32 nLen)
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SAL_THROW_EXTERN_C()
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{
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return rtl::str::hashCode_WithLength(pStr, nLen);
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}
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sal_Int32 SAL_CALL rtl_str_indexOfChar(const char* pStr, char c) SAL_THROW_EXTERN_C()
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{
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return rtl::str::indexOfChar(pStr, c);
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}
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sal_Int32 SAL_CALL rtl_str_indexOfChar_WithLength(const char* pStr, sal_Int32 nLen, char c)
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SAL_THROW_EXTERN_C()
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{
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return rtl::str::indexOfChar_WithLength(pStr, nLen, c);
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}
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sal_Int32 SAL_CALL rtl_str_lastIndexOfChar(const char* pStr, char c) SAL_THROW_EXTERN_C()
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{
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return rtl::str::lastIndexOfChar(pStr, c);
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}
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sal_Int32 SAL_CALL rtl_str_lastIndexOfChar_WithLength(const char* pStr, sal_Int32 nLen, char c)
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SAL_THROW_EXTERN_C()
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{
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return rtl::str::lastIndexOfChar_WithLength(pStr, nLen, c);
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}
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sal_Int32 SAL_CALL rtl_str_indexOfStr(const char* pStr, const char* pSubStr) SAL_THROW_EXTERN_C()
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{
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return rtl::str::indexOfStr(pStr, pSubStr);
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}
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sal_Int32 SAL_CALL rtl_str_indexOfStr_WithLength(const char* pStr, sal_Int32 nStrLen,
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const char* pSubStr, sal_Int32 nSubLen)
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SAL_THROW_EXTERN_C()
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{
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return rtl::str::indexOfStr_WithLength(pStr, nStrLen, pSubStr, nSubLen);
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}
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sal_Int32 SAL_CALL rtl_str_lastIndexOfStr(const char* pStr, const char* pSubStr)
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SAL_THROW_EXTERN_C()
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{
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return rtl::str::lastIndexOfStr(pStr, pSubStr);
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}
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sal_Int32 SAL_CALL rtl_str_lastIndexOfStr_WithLength(const char* pStr, sal_Int32 nStrLen,
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const char* pSubStr, sal_Int32 nSubLen)
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SAL_THROW_EXTERN_C()
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{
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return rtl::str::lastIndexOfStr_WithLength(pStr, nStrLen, pSubStr, nSubLen);
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}
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void SAL_CALL rtl_str_replaceChar(char* pStr, char cOld, char cNew) SAL_THROW_EXTERN_C()
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{
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return rtl::str::replaceChars(rtl::str::null_terminated(pStr), rtl::str::FromTo(cOld, cNew));
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}
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void SAL_CALL rtl_str_replaceChar_WithLength(char* pStr, sal_Int32 nLen, char cOld, char cNew)
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SAL_THROW_EXTERN_C()
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{
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return rtl::str::replaceChars(rtl::str::with_length(pStr, nLen), rtl::str::FromTo(cOld, cNew));
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}
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void SAL_CALL rtl_str_toAsciiLowerCase(char* pStr) SAL_THROW_EXTERN_C()
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{
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return rtl::str::replaceChars(rtl::str::null_terminated(pStr), rtl::str::toAsciiLower);
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}
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void SAL_CALL rtl_str_toAsciiLowerCase_WithLength(char* pStr, sal_Int32 nLen) SAL_THROW_EXTERN_C()
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{
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return rtl::str::replaceChars(rtl::str::with_length(pStr, nLen), rtl::str::toAsciiLower);
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}
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void SAL_CALL rtl_str_toAsciiUpperCase(char* pStr) SAL_THROW_EXTERN_C()
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{
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return rtl::str::replaceChars(rtl::str::null_terminated(pStr), rtl::str::toAsciiUpper);
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}
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void SAL_CALL rtl_str_toAsciiUpperCase_WithLength(char* pStr, sal_Int32 nLen) SAL_THROW_EXTERN_C()
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{
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return rtl::str::replaceChars(rtl::str::with_length(pStr, nLen), rtl::str::toAsciiUpper);
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}
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sal_Int32 SAL_CALL rtl_str_trim(char* pStr) SAL_THROW_EXTERN_C() { return rtl::str::trim(pStr); }
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sal_Int32 SAL_CALL rtl_str_trim_WithLength(char* pStr, sal_Int32 nLen) SAL_THROW_EXTERN_C()
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{
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return rtl::str::trim_WithLength(pStr, nLen);
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}
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sal_Int32 SAL_CALL rtl_str_valueOfBoolean(char* pStr, sal_Bool b) SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::valueOfBoolean(pStr, b);
|
|
}
|
|
|
|
sal_Int32 SAL_CALL rtl_str_valueOfChar(char* pStr, char c) SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::valueOfChar(pStr, c);
|
|
}
|
|
|
|
sal_Int32 SAL_CALL rtl_str_valueOfInt32(char* pStr, sal_Int32 n, sal_Int16 nRadix)
|
|
SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::valueOfInt<RTL_STR_MAX_VALUEOFINT32>(pStr, n, nRadix);
|
|
}
|
|
|
|
sal_Int32 SAL_CALL rtl_str_valueOfInt64(char* pStr, sal_Int64 n, sal_Int16 nRadix)
|
|
SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::valueOfInt<RTL_STR_MAX_VALUEOFINT64>(pStr, n, nRadix);
|
|
}
|
|
|
|
sal_Int32 SAL_CALL rtl_str_valueOfUInt64(char* pStr, sal_uInt64 n, sal_Int16 nRadix)
|
|
SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::valueOfInt<RTL_STR_MAX_VALUEOFUINT64>(pStr, n, nRadix);
|
|
}
|
|
|
|
sal_Bool SAL_CALL rtl_str_toBoolean(const char* pStr) SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::toBoolean(pStr);
|
|
}
|
|
|
|
sal_Int32 SAL_CALL rtl_str_toInt32(const char* pStr, sal_Int16 nRadix) SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::toInt<sal_Int32>(rtl::str::null_terminated(pStr), nRadix);
|
|
}
|
|
|
|
sal_Int64 SAL_CALL rtl_str_toInt64(const char* pStr, sal_Int16 nRadix) SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::toInt<sal_Int64>(rtl::str::null_terminated(pStr), nRadix);
|
|
}
|
|
|
|
sal_Int64 SAL_CALL rtl_str_toInt64_WithLength(const char* pStr, sal_Int16 nRadix,
|
|
sal_Int32 nStrLength) SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::toInt<sal_Int64>(rtl::str::with_length(pStr, nStrLength), nRadix);
|
|
}
|
|
|
|
sal_uInt32 SAL_CALL rtl_str_toUInt32(const char* pStr, sal_Int16 nRadix) SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::toInt<sal_uInt32>(rtl::str::null_terminated(pStr), nRadix);
|
|
}
|
|
|
|
sal_uInt64 SAL_CALL rtl_str_toUInt64(const char* pStr, sal_Int16 nRadix) SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::toInt<sal_uInt64>(rtl::str::null_terminated(pStr), nRadix);
|
|
}
|
|
|
|
rtl_String* rtl_string_ImplAlloc(sal_Int32 nLen) { return rtl::str::Alloc<rtl_String>(nLen); }
|
|
|
|
void SAL_CALL rtl_string_acquire(rtl_String* pThis) SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::acquire(pThis);
|
|
}
|
|
|
|
void SAL_CALL rtl_string_release(rtl_String* pThis) SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::release(pThis);
|
|
}
|
|
|
|
void SAL_CALL rtl_string_new(rtl_String** ppThis) SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::new_(ppThis);
|
|
}
|
|
|
|
rtl_String* SAL_CALL rtl_string_alloc(sal_Int32 nLen) SAL_THROW_EXTERN_C()
|
|
{
|
|
assert(nLen >= 0);
|
|
return rtl::str::Alloc<rtl_String>(nLen);
|
|
}
|
|
|
|
void SAL_CALL rtl_string_new_WithLength(rtl_String** ppThis, sal_Int32 nLen) SAL_THROW_EXTERN_C()
|
|
{
|
|
rtl::str::new_WithLength(ppThis, nLen);
|
|
}
|
|
|
|
void SAL_CALL rtl_string_newFromString(rtl_String** ppThis, const rtl_String* pStr)
|
|
SAL_THROW_EXTERN_C()
|
|
{
|
|
rtl::str::newFromString(ppThis, pStr);
|
|
}
|
|
|
|
void SAL_CALL rtl_string_newFromStr(rtl_String** ppThis, const char* pCharStr) SAL_THROW_EXTERN_C()
|
|
{
|
|
rtl::str::newFromStr(ppThis, pCharStr);
|
|
}
|
|
|
|
void SAL_CALL rtl_string_newFromStr_WithLength(rtl_String** ppThis, const char* pCharStr,
|
|
sal_Int32 nLen) SAL_THROW_EXTERN_C()
|
|
{
|
|
rtl::str::newFromStr_WithLength(ppThis, pCharStr, nLen);
|
|
}
|
|
|
|
void SAL_CALL rtl_string_newFromSubString(rtl_String** ppThis, const rtl_String* pFrom,
|
|
sal_Int32 beginIndex, sal_Int32 count)
|
|
SAL_THROW_EXTERN_C()
|
|
{
|
|
rtl::str::newFromSubString(ppThis, pFrom, beginIndex, count);
|
|
}
|
|
|
|
// Used when creating from string literals.
|
|
void SAL_CALL rtl_string_newFromLiteral(rtl_String** ppThis, const char* pCharStr, sal_Int32 nLen,
|
|
sal_Int32 allocExtra) SAL_THROW_EXTERN_C()
|
|
{
|
|
rtl::str::newFromStr_WithLength(ppThis, pCharStr, nLen, allocExtra);
|
|
}
|
|
|
|
void SAL_CALL rtl_string_assign(rtl_String** ppThis, rtl_String* pStr) SAL_THROW_EXTERN_C()
|
|
{
|
|
rtl::str::assign(ppThis, pStr);
|
|
}
|
|
|
|
sal_Int32 SAL_CALL rtl_string_getLength(const rtl_String* pThis) SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::getLength(pThis);
|
|
}
|
|
|
|
char* SAL_CALL rtl_string_getStr(rtl_String* pThis) SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::getStr(pThis);
|
|
}
|
|
|
|
void SAL_CALL rtl_string_newConcat(rtl_String** ppThis, rtl_String* pLeft, rtl_String* pRight)
|
|
SAL_THROW_EXTERN_C()
|
|
{
|
|
rtl::str::newConcat(ppThis, pLeft, pRight);
|
|
}
|
|
|
|
void SAL_CALL rtl_string_ensureCapacity(rtl_String** ppThis, sal_Int32 size) SAL_THROW_EXTERN_C()
|
|
{
|
|
rtl::str::ensureCapacity(ppThis, size);
|
|
}
|
|
|
|
void SAL_CALL rtl_string_newReplaceStrAt(rtl_String** ppThis, rtl_String* pStr, sal_Int32 nIndex,
|
|
sal_Int32 nCount, rtl_String* pNewSubStr)
|
|
SAL_THROW_EXTERN_C()
|
|
{
|
|
rtl::str::newReplaceStrAt(ppThis, pStr, nIndex, nCount, pNewSubStr);
|
|
}
|
|
|
|
void SAL_CALL rtl_string_newReplaceStrAt_WithLength(rtl_String** ppThis, rtl_String* pStr, sal_Int32 nIndex,
|
|
sal_Int32 nCount, char const * subStr, sal_Int32 substrLen)
|
|
SAL_THROW_EXTERN_C()
|
|
{
|
|
rtl::str::newReplaceStrAt(ppThis, pStr, nIndex, nCount, subStr, substrLen);
|
|
}
|
|
|
|
void SAL_CALL rtl_string_newReplace(rtl_String** ppThis, rtl_String* pStr, char cOld, char cNew)
|
|
SAL_THROW_EXTERN_C()
|
|
{
|
|
rtl::str::newReplaceChars(ppThis, pStr, rtl::str::FromTo(cOld, cNew));
|
|
}
|
|
|
|
void SAL_CALL rtl_string_newToAsciiLowerCase(rtl_String** ppThis, rtl_String* pStr)
|
|
SAL_THROW_EXTERN_C()
|
|
{
|
|
rtl::str::newReplaceChars(ppThis, pStr, rtl::str::toAsciiLower);
|
|
}
|
|
|
|
void SAL_CALL rtl_string_newToAsciiUpperCase(rtl_String** ppThis, rtl_String* pStr)
|
|
SAL_THROW_EXTERN_C()
|
|
{
|
|
rtl::str::newReplaceChars(ppThis, pStr, rtl::str::toAsciiUpper);
|
|
}
|
|
|
|
void SAL_CALL rtl_string_newTrim(rtl_String** ppThis, rtl_String* pStr) SAL_THROW_EXTERN_C()
|
|
{
|
|
rtl::str::newTrim(ppThis, pStr);
|
|
}
|
|
|
|
sal_Int32 SAL_CALL rtl_string_getToken(rtl_String** ppThis, rtl_String* pStr, sal_Int32 nToken,
|
|
char cTok, sal_Int32 nIndex) SAL_THROW_EXTERN_C()
|
|
{
|
|
return rtl::str::getToken(ppThis, pStr, nToken, cTok, nIndex);
|
|
}
|
|
|
|
/* vim:set shiftwidth=4 softtabstop=4 expandtab: */
|