/*---------------------------------------------------------------------------*\ ========= | \\ / F ield | OpenFOAM: The Open Source CFD Toolbox \\ / O peration | \\ / A nd | Copyright (C) 2011-2016 OpenFOAM Foundation \\/ M anipulation | ------------------------------------------------------------------------------- License This file is part of OpenFOAM. OpenFOAM is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. OpenFOAM is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with OpenFOAM. If not, see . Application surfaceMeshImport Group grpSurfaceUtilities Description Import from various third-party surface formats into surfMesh with optional scaling or transformations (rotate/translate) on a coordinateSystem. Usage \b surfaceMeshImport inputFile [OPTION] Options: - \par -clean Perform some surface checking/cleanup on the input surface. - \par -name \ Specify an alternative surface name when writing. - \par -scaleIn \ Specify a scaling factor when reading files. - \par -scaleOut \ Specify a scaling factor when writing files. - \par -dict \ Specify an alternative dictionary for constant/coordinateSystems. - \par -from \ Specify a coordinate system when reading files. - \par -to \ Specify a coordinate system when writing files. Note The filename extensions are used to determine the file format type. \*---------------------------------------------------------------------------*/ #include "argList.H" #include "Time.H" #include "MeshedSurfaces.H" #include "coordinateSystems.H" using namespace Foam; // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * // int main(int argc, char *argv[]) { argList::addNote ( "import from various third-party surface formats into surfMesh" ); argList::noParallel(); argList::addArgument("inputFile"); argList::addBoolOption ( "clean", "perform some surface checking/cleanup on the input surface" ); argList::addOption ( "name", "name", "specify an alternative surface name when writing - " "default is 'default'" ); argList::addOption ( "scaleIn", "factor", "geometry scaling factor on input - default is 1" ); argList::addOption ( "scaleOut", "factor", "geometry scaling factor on output - default is 1" ); #include "addDictOption.H" argList::addOption ( "from", "coordinateSystem", "specify a local coordinate system when reading files." ); argList::addOption ( "to", "coordinateSystem", "specify a local coordinate system when writing files." ); #include "setRootCase.H" #include "createTime.H" // try for the latestTime, but create "constant" as needed instantList Times = runTime.times(); if (Times.size()) { label startTime = Times.size()-1; runTime.setTime(Times[startTime], startTime); } else { runTime.setTime(instant(0, runTime.constant()), 0); } const fileName importName = args[1]; const word exportName = args.lookupOrDefault("name", "default"); // check that reading is supported if (!MeshedSurface::canRead(importName, true)) { return 1; } // get the coordinate transformations autoPtr fromCsys; autoPtr toCsys; if (args.found("from") || args.found("to")) { autoPtr ioPtr; if (args.found("dict")) { const fileName dictPath = args["dict"]; ioPtr.reset ( new IOobject ( ( isDir(dictPath) ? dictPath/coordinateSystems::typeName : dictPath ), runTime, IOobject::MUST_READ, IOobject::NO_WRITE, false ) ); } else { ioPtr.reset ( new IOobject ( coordinateSystems::typeName, runTime.constant(), runTime, IOobject::MUST_READ, IOobject::NO_WRITE, false ) ); } if (!ioPtr->typeHeaderOk(false)) { FatalErrorInFunction << ioPtr->objectPath() << nl << exit(FatalError); } coordinateSystems csLst(ioPtr()); if (args.found("from")) { const word csName = args["from"]; const label csIndex = csLst.findIndex(csName); if (csIndex < 0) { FatalErrorInFunction << "Cannot find -from " << csName << nl << "available coordinateSystems: " << csLst.toc() << nl << exit(FatalError); } fromCsys.reset(new coordinateSystem(csLst[csIndex])); } if (args.found("to")) { const word csName = args["to"]; const label csIndex = csLst.findIndex(csName); if (csIndex < 0) { FatalErrorInFunction << "Cannot find -to " << csName << nl << "available coordinateSystems: " << csLst.toc() << nl << exit(FatalError); } toCsys.reset(new coordinateSystem(csLst[csIndex])); } // maybe fix this later if (fromCsys.valid() && toCsys.valid()) { FatalErrorInFunction << exit(FatalError); } } MeshedSurface surf(importName); if (args.found("clean")) { surf.cleanup(true); } scalar scaleIn = 0; if (args.readIfPresent("scaleIn", scaleIn) && scaleIn > 0) { Info<< " -scaleIn " << scaleIn << endl; surf.scalePoints(scaleIn); } if (fromCsys.valid()) { Info<< " -from " << fromCsys().name() << endl; tmp tpf = fromCsys().localPosition(surf.points()); surf.movePoints(tpf()); } if (toCsys.valid()) { Info<< " -to " << toCsys().name() << endl; tmp tpf = toCsys().globalPosition(surf.points()); surf.movePoints(tpf()); } scalar scaleOut = 0; if (args.readIfPresent("scaleOut", scaleOut) && scaleOut > 0) { Info<< " -scaleOut " << scaleOut << endl; surf.scalePoints(scaleOut); } surfMesh smesh ( IOobject ( exportName, runTime.constant(), runTime ), std::move(surf) ); Info<< "writing surfMesh:\n " << smesh.objectPath() << endl; smesh.write(); Info<< "\nEnd\n" << endl; return 0; } // ************************************************************************* //