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https://git.salome-platform.org/gitpub/modules/smesh.git
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Fix some controls
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@ -47,6 +47,7 @@
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#include "SMDS_MeshNode.hxx"
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#include "SMDS_VolumeTool.hxx"
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#include "SMDS_QuadraticFaceOfNodes.hxx"
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#include "SMDS_QuadraticEdge.hxx"
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/*
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@ -88,32 +89,69 @@ namespace{
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return 0;
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const SMDS_MeshElement* anEdge = theMesh->FindElement( theId );
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if ( anEdge == 0 || anEdge->GetType() != SMDSAbs_Edge || anEdge->NbNodes() != 2 )
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if ( anEdge == 0 || anEdge->GetType() != SMDSAbs_Edge/* || anEdge->NbNodes() != 2 */)
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return 0;
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TColStd_MapOfInteger aMap;
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// for each pair of nodes in anEdge (there are 2 pairs in a quadratic edge)
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// count elements containing both nodes of the pair.
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// Note that there may be such cases for a quadratic edge (a horizontal line):
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//
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// Case 1 Case 2
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// | | | | |
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// | | | | |
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// +-----+------+ +-----+------+
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// | | | |
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// | | | |
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// result sould be 2 in both cases
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//
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int aResult0 = 0, aResult1 = 0;
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// last node, it is a medium one in a quadratic edge
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const SMDS_MeshNode* aLastNode = anEdge->GetNode( anEdge->NbNodes() - 1 );
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const SMDS_MeshNode* aNode0 = anEdge->GetNode( 0 );
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const SMDS_MeshNode* aNode1 = anEdge->GetNode( 1 );
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if ( aNode1 == aLastNode ) aNode1 = 0;
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int aResult = 0;
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SMDS_ElemIteratorPtr anIter = anEdge->nodesIterator();
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if ( anIter != 0 ) {
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while( anIter->more() ) {
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const SMDS_MeshNode* aNode = (SMDS_MeshNode*)anIter->next();
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if ( aNode == 0 )
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return 0;
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SMDS_ElemIteratorPtr anElemIter = aNode->GetInverseElementIterator();
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while( anElemIter->more() ) {
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const SMDS_MeshElement* anElem = anElemIter->next();
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if ( anElem != 0 && anElem->GetType() != SMDSAbs_Edge ) {
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int anId = anElem->GetID();
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if ( anIter->more() ) // i.e. first node
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aMap.Add( anId );
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else if ( aMap.Contains( anId ) )
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aResult++;
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}
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}
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SMDS_ElemIteratorPtr anElemIter = aLastNode->GetInverseElementIterator();
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while( anElemIter->more() ) {
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const SMDS_MeshElement* anElem = anElemIter->next();
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if ( anElem != 0 && anElem->GetType() != SMDSAbs_Edge ) {
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SMDS_ElemIteratorPtr anIter = anElem->nodesIterator();
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while ( anIter->more() ) {
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if ( const SMDS_MeshElement* anElemNode = anIter->next() ) {
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if ( anElemNode == aNode0 ) {
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aResult0++;
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if ( !aNode1 ) break; // not a quadratic edge
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}
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else if ( anElemNode == aNode1 )
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aResult1++;
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}
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}
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}
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}
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int aResult = max ( aResult0, aResult1 );
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// TColStd_MapOfInteger aMap;
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// SMDS_ElemIteratorPtr anIter = anEdge->nodesIterator();
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// if ( anIter != 0 ) {
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// while( anIter->more() ) {
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// const SMDS_MeshNode* aNode = (SMDS_MeshNode*)anIter->next();
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// if ( aNode == 0 )
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// return 0;
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// SMDS_ElemIteratorPtr anElemIter = aNode->GetInverseElementIterator();
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// while( anElemIter->more() ) {
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// const SMDS_MeshElement* anElem = anElemIter->next();
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// if ( anElem != 0 && anElem->GetType() != SMDSAbs_Edge ) {
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// int anId = anElem->GetID();
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// if ( anIter->more() ) // i.e. first node
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// aMap.Add( anId );
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// else if ( aMap.Contains( anId ) )
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// aResult++;
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// }
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// }
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// }
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// }
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return aResult;
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}
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@ -155,39 +193,41 @@ bool NumericalFunctor::GetPoints(const int theId,
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}
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bool NumericalFunctor::GetPoints(const SMDS_MeshElement* anElem,
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TSequenceOfXYZ& theRes )
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TSequenceOfXYZ& theRes )
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{
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theRes.clear();
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if ( anElem == 0)
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return false;
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// Get nodes of the element
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theRes.reserve( anElem->NbNodes() );
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if(anElem->IsQuadratic()) {
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const SMDS_QuadraticFaceOfNodes* F =
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static_cast<const SMDS_QuadraticFaceOfNodes*>(anElem);
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// use special nodes iterator
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SMDS_NodeIteratorPtr anIter = F->interlacedNodesIterator();
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if ( anIter != 0 ) {
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while( anIter->more() ) {
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const SMDS_MeshNode* aNode = anIter->next();
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if ( aNode != 0 ) {
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theRes.push_back( gp_XYZ( aNode->X(), aNode->Y(), aNode->Z() ) );
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}
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}
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// Get nodes of the element
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SMDS_ElemIteratorPtr anIter;
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if ( anElem->IsQuadratic() ) {
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switch ( anElem->GetType() ) {
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case SMDSAbs_Edge:
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anIter = static_cast<const SMDS_QuadraticEdge*>
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(anElem)->interlacedNodesElemIterator();
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break;
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case SMDSAbs_Face:
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anIter = static_cast<const SMDS_QuadraticFaceOfNodes*>
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(anElem)->interlacedNodesElemIterator();
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break;
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default:
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anIter = anElem->nodesIterator();
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//return false;
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}
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}
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else {
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anIter = anElem->nodesIterator();
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}
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if(theRes.size()==0) {
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SMDS_ElemIteratorPtr anIter = anElem->nodesIterator();
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if ( anIter != 0 ) {
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while( anIter->more() ) {
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const SMDS_MeshNode* aNode = (SMDS_MeshNode*)anIter->next();
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if ( aNode != 0 ) {
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theRes.push_back( gp_XYZ( aNode->X(), aNode->Y(), aNode->Z() ) );
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}
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}
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if ( anIter ) {
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while( anIter->more() ) {
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if ( const SMDS_MeshNode* aNode = static_cast<const SMDS_MeshNode*>( anIter->next() ))
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theRes.push_back( gp_XYZ( aNode->X(), aNode->Y(), aNode->Z() ) );
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}
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}
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@ -206,12 +246,10 @@ void NumericalFunctor::SetPrecision( const long thePrecision )
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double NumericalFunctor::GetValue( long theId )
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{
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cout<<"theId="<<theId<<endl;
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TSequenceOfXYZ P;
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if ( GetPoints( theId, P ))
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{
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double aVal = GetValue( P );
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cout<<"aVal="<<aVal<<endl;
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if ( myPrecision >= 0 )
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{
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double prec = pow( 10., (double)( myPrecision ) );
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@ -874,7 +912,7 @@ double Area::GetValue( const TSequenceOfXYZ& P )
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double Area::GetBadRate( double Value, int /*nbNodes*/ ) const
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{
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// meaningless as it is not quality control functor
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// meaningless as it is not a quality control functor
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return Value;
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}
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@ -890,7 +928,11 @@ SMDSAbs_ElementType Area::GetType() const
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*/
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double Length::GetValue( const TSequenceOfXYZ& P )
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{
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return ( P.size() == 2 ? getDistance( P( 1 ), P( 2 ) ) : 0 );
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switch ( P.size() ) {
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case 2: return getDistance( P( 1 ), P( 2 ) );
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case 3: return getDistance( P( 1 ), P( 2 ) ) + getDistance( P( 2 ), P( 3 ) );
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default: return 0.;
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}
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}
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double Length::GetBadRate( double Value, int /*nbNodes*/ ) const
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@ -1490,41 +1532,33 @@ bool FreeEdges::IsSatisfy( long theId )
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if ( aFace == 0 || aFace->GetType() != SMDSAbs_Face || aFace->NbNodes() < 3 )
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return false;
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int nbNodes = aFace->NbNodes();
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//const SMDS_MeshNode* aNodes[ nbNodes ];
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#ifndef WNT
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const SMDS_MeshNode* aNodes [nbNodes];
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#else
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const SMDS_MeshNode** aNodes = (const SMDS_MeshNode **)new SMDS_MeshNode*[nbNodes];
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#endif
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int i = 0;
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SMDS_ElemIteratorPtr anIter = aFace->nodesIterator();
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if ( anIter != 0 )
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{
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while( anIter->more() )
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{
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const SMDS_MeshNode* aNode = (SMDS_MeshNode*)anIter->next();
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if ( aNode == 0 )
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return false;
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aNodes[ i++ ] = aNode;
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}
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SMDS_ElemIteratorPtr anIter;
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if ( aFace->IsQuadratic() ) {
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anIter = static_cast<const SMDS_QuadraticFaceOfNodes*>
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(aFace)->interlacedNodesElemIterator();
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}
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else {
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anIter = aFace->nodesIterator();
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}
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if ( anIter != 0 )
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return false;
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for ( int i = 0; i < nbNodes - 1; i++ )
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if ( IsFreeEdge( &aNodes[ i ], theId ) ) {
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#ifdef WNT
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delete [] aNodes;
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#endif
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int i = 0, nbNodes = aFace->NbNodes();
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vector <const SMDS_MeshNode*> aNodes( nbNodes+1 );
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while( anIter->more() )
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{
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const SMDS_MeshNode* aNode = (SMDS_MeshNode*)anIter->next();
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if ( aNode == 0 )
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return false;
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aNodes[ i++ ] = aNode;
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}
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aNodes[ nbNodes ] = aNodes[ 0 ];
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for ( i = 0; i < nbNodes; i++ )
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if ( IsFreeEdge( &aNodes[ i ], theId ) )
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return true;
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}
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aNodes[ 1 ] = aNodes[ nbNodes - 1 ];
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const Standard_Boolean isFree = IsFreeEdge( &aNodes[ 0 ], theId );
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#ifdef WNT
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delete [] aNodes;
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#endif
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// return
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return isFree;
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return false;
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}
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SMDSAbs_ElementType FreeEdges::GetType() const
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