mirror of
https://github.com/OPM/ResInsight.git
synced 2025-02-25 18:55:39 -06:00
164 lines
4.4 KiB
C++
164 lines
4.4 KiB
C++
#include <QtNetwork>
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#include <octave/oct.h>
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#include "riSettings.h"
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void getActiveCellCenters(NDArray& cellCenterValues, const QString &hostName, quint16 port, const qint32& caseId, const quint32& gridIndex, const QString& porosityModel)
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{
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QString serverName = hostName;
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quint16 serverPort = port;
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const int timeout = riOctavePlugin::timeOutMilliSecs;
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QTcpSocket socket;
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socket.connectToHost(serverName, serverPort);
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if (!socket.waitForConnected(timeout))
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{
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error((("Connection: ") + socket.errorString()).toLatin1().data());
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return;
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}
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// Create command and send it:
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QString command = QString("GetActiveCellCenters %1 %2 %3").arg(caseId).arg(gridIndex).arg(porosityModel);
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QByteArray cmdBytes = command.toLatin1();
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QDataStream socketStream(&socket);
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socketStream.setVersion(riOctavePlugin::qtDataStreamVersion);
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socketStream << (qint64)(cmdBytes.size());
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socket.write(cmdBytes);
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// Get response. First wait for the header
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while (socket.bytesAvailable() < (int)(2 * sizeof(quint64)))
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{
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if (!socket.waitForReadyRead(timeout))
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{
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error((("Wating for header: ") + socket.errorString()).toLatin1().data());
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return;
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}
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}
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// Read timestep count and blocksize
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quint64 activeCellCount;
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quint64 byteCount;
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socketStream >> activeCellCount;
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socketStream >> byteCount;
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dim_vector dv (1, 1);
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dv(0) = 3;
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dv(1) = activeCellCount;
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cellCenterValues.resize(dv);
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if (!(byteCount && activeCellCount))
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{
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error ("Could not find the requested data in ResInsight");
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return;
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}
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// Wait for available data for each column, then read data for each column
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while (socket.bytesAvailable() < (qint64)(byteCount))
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{
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if (!socket.waitForReadyRead(timeout))
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{
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error((("Waiting for data: ") + socket.errorString()).toLatin1().data());
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return;
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}
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OCTAVE_QUIT;
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}
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quint64 bytesRead = 0;
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double* internalMatrixData = cellCenterValues.fortran_vec();
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bytesRead = socket.read((char*)(internalMatrixData), byteCount);
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if (byteCount != bytesRead)
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{
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error("Could not read binary double data properly from socket");
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octave_stdout << "Active cell count: " << activeCellCount << std::endl;
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}
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return;
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}
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DEFUN_DLD (riGetActiveCellCenters, args, nargout,
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"Usage:\n"
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"\n"
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" riGetActiveCellCenters([CaseId], GridIndex, [PorosityModel = <20>Matrix<69>|<7C>Fracture<72>] )\n"
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"\n"
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"This function returns the UTM coordinates (X, Y, Z) of the center point of all the cells in the grid.\n"
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"If the CaseId is not defined, ResInsight<68>s Current Case is used.\n"
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)
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{
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if (nargout < 1)
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{
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error("riGetActiveCellCenters: Missing output argument.\n");
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print_usage();
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return octave_value_list ();
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}
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int nargin = args.length ();
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if (nargin < 1)
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{
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error("riGetActiveCellCenters: Too few arguments. The grid index argument is required.\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 > 3)
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{
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error("riGetActiveCellCenters: 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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qint32 caseId = -1;
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quint32 gridIndex = 0;
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std::string porosityModel = "Matrix";
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if (nargin == 1)
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{
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gridIndex = args(0).uint_value();
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}
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else if (nargin == 2)
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{
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if (args(0).is_numeric_type() && args(1).is_numeric_type())
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{
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caseId = args(0).uint_value();
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gridIndex = args(1).uint_value();
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}
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else
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{
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gridIndex = args(0).uint_value();
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porosityModel = args(1).string_value();
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}
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}
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else if (nargin == 3)
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{
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caseId = args(0).uint_value();
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gridIndex = args(1).uint_value();
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porosityModel = args(2).string_value();
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}
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if (porosityModel != "Matrix" && porosityModel != "Fracture")
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{
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error("riGetActiveCellProperty: 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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NDArray cellCenterValues;
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getActiveCellCenters(cellCenterValues, "127.0.0.1", 40001, caseId, gridIndex, porosityModel.c_str());
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return octave_value(cellCenterValues);
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}
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