mirror of
https://github.com/OPM/ResInsight.git
synced 2025-01-01 03:37:15 -06:00
232 lines
7.6 KiB
C++
232 lines
7.6 KiB
C++
#include <QtNetwork>
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#include <QStringList>
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#include <octave/oct.h>
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#include "riSettings.h"
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#include "RiaSocketDataTransfer.cpp" // NB! Include cpp-file to avoid linking of additional file in oct-compile configuration
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#ifdef WIN32
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#include <Windows.h>
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#endif //WIN32
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void setEclipseProperty(const Matrix& propertyFrames, const QString &hostName, quint16 port,
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const qint64& caseId, QString propertyName, const int32NDArray& requestedTimeSteps, QString porosityModel)
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{
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QTcpSocket socket;
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socket.connectToHost(hostName, port);
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if (!socket.waitForConnected(riOctavePlugin::connectTimeOutMilliSecs))
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{
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error("Connection: %s",socket.errorString().toLatin1().data());
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return;
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}
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QDataStream socketStream(&socket);
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socketStream.setVersion(riOctavePlugin::qtDataStreamVersion);
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// Create command as a string with arguments , and send it:
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QString command;
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command += "SetActiveCellProperty " + QString::number(caseId) + " " + propertyName + " " + porosityModel;
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for (int i = 0; i < requestedTimeSteps.numel(); ++i)
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{
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if (i == 0) command += " ";
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command += QString::number(static_cast<int>(requestedTimeSteps.elem(i)) - 1); // To make the index 0-based
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if (i != requestedTimeSteps.numel() -1) command += " ";
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}
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QByteArray cmdBytes = command.toLatin1();
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socketStream << (qint64)(cmdBytes.size());
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socket.write(cmdBytes);
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// Write property data header
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dim_vector mxDims = propertyFrames.dims();
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qint64 cellCount = mxDims.elem(0);
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qint64 timeStepCount = mxDims.elem(1);
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qint64 timeStepByteCount = cellCount * sizeof(double);
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socketStream << (qint64)(timeStepCount);
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socketStream << (qint64)timeStepByteCount;
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const double* internalData = propertyFrames.fortran_vec();
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QStringList errorMessages;
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if (!RiaSocketDataTransfer::writeBlockDataToSocket(&socket, (const char *)internalData, timeStepByteCount*timeStepCount, errorMessages))
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{
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for (int i = 0; i < errorMessages.size(); i++)
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{
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octave_stdout << errorMessages[i].toStdString();
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}
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return;
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}
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QString tmp = QString("riSetActiveCellProperty : Wrote %1").arg(propertyName);
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if (caseId == -1)
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{
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tmp += QString(" to current case.");
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}
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else
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{
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tmp += QString(" to case with Id = %1.").arg(caseId);
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}
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octave_stdout << tmp.toStdString() << " Active Cells : " << cellCount << " Time steps : " << timeStepCount << std::endl;
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while(socket.bytesToWrite() && socket.state() == QAbstractSocket::ConnectedState)
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{
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// octave_stdout << "Bytes to write: " << socket.bytesToWrite() << std::endl;
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socket.waitForBytesWritten(riOctavePlugin::shortTimeOutMilliSecs);
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OCTAVE_QUIT;
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}
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//octave_stdout << " Socket write completed" << std::endl;
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if (socket.bytesToWrite() && socket.state() != QAbstractSocket::ConnectedState)
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{
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error("riSetActiveCellProperty : ResInsight refused to accept the data. Maybe the dimensions or porosity model is wrong");
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}
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#ifdef WIN32
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// TODO: Due to synchronization issues seen on Windows 10, it is required to do a sleep here to be able to catch disconnect
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// signals from the socket. No sleep causes the server to hang.
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Sleep(100);
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#endif //WIN32
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return;
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}
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DEFUN_DLD (riSetActiveCellProperty, args, nargout,
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"Usage:\n"
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"\n"
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"\triSetActiveCellProperty( Matrix[numActiveCells][numTimeSteps], [CaseId], PropertyName, [TimeStepIndices], [PorosityModel = \"Matrix\"|\"Fracture\"] ) \n"
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"\n"
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"Interprets the supplied matrix as a property set defined for the active cells in the case, "
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"and puts the data into ResInsight as a \"Generated\" property with the name \"PropertyName\"."
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"The \"TimeStepIndices\" argument is used to \"label\" all the time steps present in the supplied data matrix,"
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"and must thus be complete. The time step data will then be put into ResInsight at the time steps requested."
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"If the CaseId is not defined, ResInsight’s Current Case is used."
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)
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{
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int nargin = args.length ();
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if (nargin < 2)
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{
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error("riSetActiveCellProperty: Too few arguments. The data matrix and the name of the property requested is neccesary\n");
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print_usage();
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return octave_value_list ();
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}
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if (nargin > 5)
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{
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error("riSetActiveCellProperty: Too many arguments.\n");
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print_usage();
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return octave_value_list ();
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}
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Matrix propertyFrames = args(0).matrix_value();
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if (error_state)
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{
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error("riSetActiveCellProperty: The supplied first argument is not a valid Matrix");
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print_usage();
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return octave_value_list ();
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}
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dim_vector mxDims = propertyFrames.dims();
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if (mxDims.length() != 2)
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{
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error("riSetActiveCellProperty: The supplied Data Matrix must have two dimensions: NumActiveCells*numTimesteps");
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print_usage();
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return octave_value_list ();
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}
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std::vector<int> argIndices;
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argIndices.push_back(0);
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argIndices.push_back(1);
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argIndices.push_back(2);
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argIndices.push_back(3);
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argIndices.push_back(4);
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// Check if we have a CaseId:
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if (!riOctavePlugin::isOctaveValueNumeric(args(argIndices[1])))
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{
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argIndices[1] = -1;
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for (size_t aIdx = 2; aIdx < argIndices.size(); ++aIdx)
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--argIndices[aIdx];
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}
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// Check if we have a Requested TimeSteps
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if (!(nargin > argIndices[3] && args(argIndices[3]).is_matrix_type() && !args(argIndices[3]).is_string()))
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{
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argIndices[3] = -1;
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for (size_t aIdx = 4; aIdx < argIndices.size(); ++aIdx)
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--argIndices[aIdx];
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}
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// Check if we have a PorosityModel
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int lastArgumentIndex = argIndices[4] ;
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if (!(nargin > argIndices[4] && args(argIndices[4]).is_string()))
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{
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argIndices[4] = -1;
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for (size_t aIdx = 5; aIdx < argIndices.size(); ++aIdx)
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--argIndices[aIdx];
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}
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// Check if we have more arguments than we should
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if (nargin > lastArgumentIndex + 1)
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{
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error("riSetActiveCellProperty: Unexpected argument after the PorosityModel.\n");
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print_usage();
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return octave_value_list ();
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}
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int caseId = -1;
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std::string propertyName = "UNDEFINED";
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int32NDArray requestedTimeSteps;
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std::string porosityModel = "Matrix";
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if (argIndices[1] >= 0) caseId = args(argIndices[1]).int_value();
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if (argIndices[2] >= 0) propertyName = args(argIndices[2]).char_matrix_value().row_as_string(0);
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if (argIndices[3] >= 0) requestedTimeSteps = args(argIndices[3]).int32_array_value();
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if (argIndices[4] >= 0) porosityModel = args(argIndices[4]).string_value();
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if (requestedTimeSteps.numel())
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{
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int timeStepCount = mxDims.elem(1);
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if (requestedTimeSteps.numel() != timeStepCount)
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{
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error("riSetActiveCellProperty: The number of timesteps in the input matrix must match the number of timesteps in the TimeStepIndices array.");
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print_usage();
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return octave_value_list ();
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}
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}
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if (porosityModel != "Matrix" && porosityModel != "Fracture")
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{
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error("riSetActiveCellProperty: The value for \"PorosityModel\" is unknown. Please use either \"Matrix\" or \"Fracture\"\n");
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print_usage();
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return octave_value_list ();
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}
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setEclipseProperty(propertyFrames, "127.0.0.1", 40001, caseId, propertyName.c_str(), requestedTimeSteps, porosityModel.c_str());
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return octave_value_list ();
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}
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