/************************************************************** * * Licensed to the Apache Software Foundation (ASF) under one * or more contributor license agreements. See the NOTICE file * distributed with this work for additional information * regarding copyright ownership. The ASF licenses this file * to you under the Apache License, Version 2.0 (the * "License"); you may not use this file except in compliance * with the License. You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, * software distributed under the License is distributed on an * "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY * KIND, either express or implied. See the License for the * specific language governing permissions and limitations * under the License. * *************************************************************/ // MARKER(update_precomp.py): autogen include statement, do not remove #include "precompiled_sw.hxx" #include "SwGrammarMarkUp.hxx" SwGrammarMarkUp::~SwGrammarMarkUp() { } SwWrongList* SwGrammarMarkUp::Clone() { SwWrongList* pClone = new SwGrammarMarkUp(); pClone->CopyFrom( *this ); return pClone; } void SwGrammarMarkUp::CopyFrom( const SwWrongList& rCopy ) { maSentence = ((const SwGrammarMarkUp&)rCopy).maSentence; SwWrongList::CopyFrom( rCopy ); } void SwGrammarMarkUp::MoveGrammar( xub_StrLen nPos, long nDiff ) { Move( nPos, nDiff ); if( !maSentence.size() ) return; std::vector< xub_StrLen >::iterator pIter = maSentence.begin(); while( pIter != maSentence.end() && *pIter < nPos ) ++pIter; xub_StrLen nEnd = nDiff < 0 ? xub_StrLen(nPos - nDiff) : nPos; while( pIter != maSentence.end() ) { if( *pIter >= nEnd ) *pIter = xub_StrLen( *pIter + nDiff ); else *pIter = nPos; ++pIter; } } SwGrammarMarkUp* SwGrammarMarkUp::SplitGrammarList( xub_StrLen nSplitPos ) { SwGrammarMarkUp* pNew = (SwGrammarMarkUp*)SplitList( nSplitPos ); if( !maSentence.size() ) return pNew; std::vector< xub_StrLen >::iterator pIter = maSentence.begin(); while( pIter != maSentence.end() && *pIter < nSplitPos ) ++pIter; if( pIter != maSentence.begin() ) { if( !pNew ) { pNew = new SwGrammarMarkUp(); pNew->SetInvalid( 0, STRING_LEN ); } pNew->maSentence.insert( pNew->maSentence.begin(), maSentence.begin(), pIter ); maSentence.erase( maSentence.begin(), pIter ); } return pNew; } void SwGrammarMarkUp::JoinGrammarList( SwGrammarMarkUp* pNext, xub_StrLen nInsertPos ) { JoinList( pNext, nInsertPos ); if (pNext) { if( !pNext->maSentence.size() ) return; std::vector< xub_StrLen >::iterator pIter = pNext->maSentence.begin(); while( pIter != pNext->maSentence.end() ) { *pIter = *pIter + nInsertPos; ++pIter; } maSentence.insert( maSentence.end(), pNext->maSentence.begin(), pNext->maSentence.end() ); } } void SwGrammarMarkUp::ClearGrammarList( xub_StrLen nSentenceEnd ) { if( STRING_LEN == nSentenceEnd ) { ClearList(); maSentence.clear(); Validate(); } else if( GetBeginInv() <= nSentenceEnd ) { std::vector< xub_StrLen >::iterator pIter = maSentence.begin(); xub_StrLen nStart = 0; while( pIter != maSentence.end() && *pIter < GetBeginInv() ) { nStart = *pIter; ++pIter; } std::vector< xub_StrLen >::iterator pLast = pIter; while( pLast != maSentence.end() && *pLast <= nSentenceEnd ) ++pLast; maSentence.erase( pIter, pLast ); RemoveEntry( nStart, nSentenceEnd ); SetInvalid( nSentenceEnd + 1, STRING_LEN ); } } void SwGrammarMarkUp::setSentence( xub_StrLen nStart ) { std::vector< xub_StrLen >::iterator pIter = maSentence.begin(); while( pIter != maSentence.end() && *pIter < nStart ) ++pIter; if( pIter == maSentence.end() || *pIter > nStart ) maSentence.insert( pIter, nStart ); } xub_StrLen SwGrammarMarkUp::getSentenceStart( xub_StrLen nPos ) { if( !maSentence.size() ) return 0; std::vector< xub_StrLen >::iterator pIter = maSentence.begin(); while( pIter != maSentence.end() && *pIter < nPos ) ++pIter; if( pIter != maSentence.begin() ) --pIter; xub_StrLen nRet = 0; if( pIter != maSentence.end() && *pIter < nPos ) nRet = *pIter; return nRet; } xub_StrLen SwGrammarMarkUp::getSentenceEnd( xub_StrLen nPos ) { if( !maSentence.size() ) return STRING_LEN; std::vector< xub_StrLen >::iterator pIter = maSentence.begin(); while( pIter != maSentence.end() && *pIter <= nPos ) ++pIter; xub_StrLen nRet = STRING_LEN; if( pIter != maSentence.end() ) nRet = *pIter; return nRet; }