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299 lines
9.7 KiB
C++
299 lines
9.7 KiB
C++
/*=========================================================================
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Program: Visualization Toolkit
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Module: vtkXMLUnstructuredGridWriter.cxx
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Copyright (c) Ken Martin, Will Schroeder, Bill Lorensen
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All rights reserved.
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See Copyright.txt or http://www.kitware.com/Copyright.htm for details.
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This software is distributed WITHOUT ANY WARRANTY; without even
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the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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PURPOSE. See the above copyright notice for more information.
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=========================================================================*/
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#include "vtkXMLUnstructuredGridWriter.h"
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#include "vtkCellArray.h"
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#include "vtkCellData.h"
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#include "vtkCellIterator.h"
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#include "vtkErrorCode.h"
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#include "vtkInformation.h"
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#include "vtkObjectFactory.h"
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#include "vtkPointData.h"
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#include "vtkUnsignedCharArray.h"
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#include "vtkUnstructuredGrid.h"
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#define vtkXMLOffsetsManager_DoNotInclude
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#include "vtkXMLOffsetsManager.h"
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#undef vtkXMLOffsetsManager_DoNotInclude
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#include <cassert>
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vtkStandardNewMacro(vtkXMLUnstructuredGridWriter);
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//----------------------------------------------------------------------------
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vtkXMLUnstructuredGridWriter::vtkXMLUnstructuredGridWriter()
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{
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this->CellsOM = new OffsetsManagerArray;
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}
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//----------------------------------------------------------------------------
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vtkXMLUnstructuredGridWriter::~vtkXMLUnstructuredGridWriter()
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{
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delete this->CellsOM;
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}
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//----------------------------------------------------------------------------
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void vtkXMLUnstructuredGridWriter::PrintSelf(ostream& os, vtkIndent indent)
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{
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this->Superclass::PrintSelf(os,indent);
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}
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//----------------------------------------------------------------------------
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vtkUnstructuredGridBase* vtkXMLUnstructuredGridWriter::GetInput()
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{
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return static_cast<vtkUnstructuredGridBase*>(this->Superclass::GetInput());
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}
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//----------------------------------------------------------------------------
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const char* vtkXMLUnstructuredGridWriter::GetDataSetName()
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{
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return "UnstructuredGrid";
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}
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//----------------------------------------------------------------------------
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const char* vtkXMLUnstructuredGridWriter::GetDefaultFileExtension()
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{
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return "vtu";
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}
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//----------------------------------------------------------------------------
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void vtkXMLUnstructuredGridWriter::WriteInlinePieceAttributes()
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{
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this->Superclass::WriteInlinePieceAttributes();
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if (this->ErrorCode == vtkErrorCode::OutOfDiskSpaceError)
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{
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return;
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}
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vtkUnstructuredGridBase* input = this->GetInput();
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this->WriteScalarAttribute("NumberOfCells", input->GetNumberOfCells());
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}
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//----------------------------------------------------------------------------
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void vtkXMLUnstructuredGridWriter::WriteInlinePiece(vtkIndent indent)
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{
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vtkUnstructuredGridBase* input = this->GetInput();
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// Split progress range by the approximate fraction of data written
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// by each step in this method.
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float progressRange[2] = {0,0};
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this->GetProgressRange(progressRange);
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float fractions[3];
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this->CalculateSuperclassFraction(fractions);
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// Set the range of progress for superclass.
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this->SetProgressRange(progressRange, 0, fractions);
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// Let the superclass write its data.
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this->Superclass::WriteInlinePiece(indent);
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if (this->ErrorCode == vtkErrorCode::OutOfDiskSpaceError)
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{
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return;
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}
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// Set range of progress for the cell specifications.
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this->SetProgressRange(progressRange, 1, fractions);
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// Write the cell specifications.
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if (vtkUnstructuredGrid *grid = vtkUnstructuredGrid::SafeDownCast(input))
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{
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// This is a bit more efficient and avoids iteration over all cells.
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this->WriteCellsInline("Cells", grid->GetCells(), grid->GetCellTypesArray(),
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grid->GetFaces(), grid->GetFaceLocations(), indent);
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}
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else
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{
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vtkCellIterator *cellIter = input->NewCellIterator();
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this->WriteCellsInline("Cells", cellIter, input->GetNumberOfCells(),
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input->GetMaxCellSize(), indent);
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cellIter->Delete();
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}
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}
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//----------------------------------------------------------------------------
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void vtkXMLUnstructuredGridWriter::AllocatePositionArrays()
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{
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this->Superclass::AllocatePositionArrays();
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this->NumberOfCellsPositions = new vtkTypeInt64[this->NumberOfPieces];
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this->CellsOM->Allocate(this->NumberOfPieces,5,this->NumberOfTimeSteps);
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}
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//----------------------------------------------------------------------------
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void vtkXMLUnstructuredGridWriter::DeletePositionArrays()
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{
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this->Superclass::DeletePositionArrays();
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delete [] this->NumberOfCellsPositions;
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this->NumberOfCellsPositions = NULL;
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}
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//----------------------------------------------------------------------------
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void vtkXMLUnstructuredGridWriter::WriteAppendedPieceAttributes(int index)
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{
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this->Superclass::WriteAppendedPieceAttributes(index);
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if (this->ErrorCode == vtkErrorCode::OutOfDiskSpaceError)
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{
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return;
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}
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this->NumberOfCellsPositions[index] =
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this->ReserveAttributeSpace("NumberOfCells");
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}
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//----------------------------------------------------------------------------
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void vtkXMLUnstructuredGridWriter::WriteAppendedPiece(int index,
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vtkIndent indent)
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{
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vtkUnstructuredGridBase* input = this->GetInput();
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this->Superclass::WriteAppendedPiece(index, indent);
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if (this->ErrorCode == vtkErrorCode::OutOfDiskSpaceError)
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{
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return;
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}
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if (vtkUnstructuredGrid *grid = vtkUnstructuredGrid::SafeDownCast(input))
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{
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this->WriteCellsAppended("Cells", grid->GetCellTypesArray(),
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grid->GetFaces(),
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grid->GetFaceLocations(),
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indent, &this->CellsOM->GetPiece(index));
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}
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else
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{
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vtkCellIterator *cellIter = input->NewCellIterator();
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this->WriteCellsAppended("Cells", cellIter, input->GetNumberOfCells(),
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indent, &this->CellsOM->GetPiece(index));
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cellIter->Delete();
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}
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}
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//----------------------------------------------------------------------------
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void vtkXMLUnstructuredGridWriter::WriteAppendedPieceData(int index)
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{
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ostream& os = *(this->Stream);
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vtkUnstructuredGridBase* input = this->GetInput();
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std::streampos returnPosition = os.tellp();
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os.seekp(std::streampos(this->NumberOfCellsPositions[index]));
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this->WriteScalarAttribute("NumberOfCells", input->GetNumberOfCells());
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if (this->ErrorCode == vtkErrorCode::OutOfDiskSpaceError)
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{
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return;
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}
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os.seekp(returnPosition);
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// Split progress range by the approximate fraction of data written
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// by each step in this method.
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float progressRange[2] = {0,0};
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this->GetProgressRange(progressRange);
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float fractions[3];
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this->CalculateSuperclassFraction(fractions);
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// Set the range of progress for superclass.
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this->SetProgressRange(progressRange, 0, fractions);
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// Let the superclass write its data.
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this->Superclass::WriteAppendedPieceData(index);
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if (this->ErrorCode == vtkErrorCode::OutOfDiskSpaceError)
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{
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return;
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}
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// Set range of progress for the cell specifications.
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this->SetProgressRange(progressRange, 1, fractions);
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// Write the cell specification arrays.
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if (vtkUnstructuredGrid *grid = vtkUnstructuredGrid::SafeDownCast(input))
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{
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this->WriteCellsAppendedData(grid->GetCells(), grid->GetCellTypesArray(),
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grid->GetFaces(), grid->GetFaceLocations(),
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this->CurrentTimeIndex,
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&this->CellsOM->GetPiece(index));
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}
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else
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{
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vtkCellIterator *cellIter = input->NewCellIterator();
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this->WriteCellsAppendedData(cellIter, input->GetNumberOfCells(),
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input->GetMaxCellSize(),
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this->CurrentTimeIndex,
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&this->CellsOM->GetPiece(index));
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cellIter->Delete();
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}
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}
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//----------------------------------------------------------------------------
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vtkIdType vtkXMLUnstructuredGridWriter::GetNumberOfInputCells()
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{
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return this->GetInput()->GetNumberOfCells();
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}
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//----------------------------------------------------------------------------
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void vtkXMLUnstructuredGridWriter::CalculateSuperclassFraction(float* fractions)
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{
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vtkUnstructuredGridBase* input = this->GetInput();
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// The superclass will write point/cell data and point specifications.
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int pdArrays = input->GetPointData()->GetNumberOfArrays();
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int cdArrays = input->GetCellData()->GetNumberOfArrays();
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vtkIdType pdSize = pdArrays*this->GetNumberOfInputPoints();
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vtkIdType cdSize = cdArrays*this->GetNumberOfInputCells();
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vtkIdType pointsSize = this->GetNumberOfInputPoints();
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// This class will write cell specifications.
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vtkIdType connectSize = 0;
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if (vtkUnstructuredGrid *grid = vtkUnstructuredGrid::SafeDownCast(input))
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{
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if (grid->GetCells() == 0)
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{
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connectSize = 0;
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}
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else
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{
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connectSize = (grid->GetCells()->GetData()->GetNumberOfTuples() -
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grid->GetNumberOfCells());
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}
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}
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else
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{
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vtkCellIterator *cellIter = input->NewCellIterator();
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for (cellIter->InitTraversal(); !cellIter->IsDoneWithTraversal();
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cellIter->GoToNextCell())
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{
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connectSize += cellIter->GetNumberOfPoints();
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}
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cellIter->Delete();
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}
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vtkIdType offsetSize = input->GetNumberOfCells();
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vtkIdType typesSize = input->GetNumberOfCells();
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int total = (pdSize+cdSize+pointsSize+connectSize+offsetSize+typesSize);
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if(total == 0)
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{
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total = 1;
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}
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fractions[0] = 0;
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fractions[1] = float(pdSize+cdSize+pointsSize)/total;
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fractions[2] = 1;
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}
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//----------------------------------------------------------------------------
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int vtkXMLUnstructuredGridWriter::FillInputPortInformation(
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int vtkNotUsed(port), vtkInformation* info)
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{
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info->Set(vtkAlgorithm::INPUT_REQUIRED_DATA_TYPE(), "vtkUnstructuredGridBase");
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return 1;
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}
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