/*---------------------------------------------------------------------------*\ ========= | \\ / F ield | OpenFOAM: The Open Source CFD Toolbox \\ / O peration | Website: https://openfoam.org \\ / A nd | Copyright (C) 2016-2024 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 . \*---------------------------------------------------------------------------*/ #include "rigidBodyModel.H" #include "masslessBody.H" #include "compositeBody.H" #include "jointBody.H" #include "nullJoint.H" #include "rigidBodyRestraint.H" // * * * * * * * * * * * * * * Static Data Members * * * * * * * * * * * * * // namespace Foam { namespace RBD { defineTypeNameAndDebug(rigidBodyModel, 0); } } // * * * * * * * * * * * * * Private Member Functions * * * * * * * * * * * // void Foam::RBD::rigidBodyModel::initialiseRootBody() { bodies_.append(new masslessBody("root")); lambda_.append(0); bodyIndices_.insert("root", 0); joints_.append(new joints::null(*this)); XT_.append(spatialTransform()); nDoF_ = 0; unitQuaternions_ = false; resizeState(); } void Foam::RBD::rigidBodyModel::resizeState() { Xlambda_.append(spatialTransform()); X0_.append(spatialTransform()); v_.append(Zero); a_.append(Zero); c_.append(Zero); IA_.append(spatialTensor::I); pA_.append(Zero); S_.append(Zero); S1_.append(Zero); U_.append(Zero); U1_.append(Zero); Dinv_.append(Zero); u_.append(Zero); } void Foam::RBD::rigidBodyModel::addRestraints ( const dictionary& dict ) { if (dict.found("restraints")) { const dictionary& restraintDict = dict.subDict("restraints"); label i = 0; restraints_.setSize(restraintDict.size()); forAllConstIter(IDLList, restraintDict, iter) { if (iter().isDict()) { restraints_.set ( i++, restraint::New ( iter().keyword(), iter().dict(), *this ) ); } } restraints_.setSize(i); } } // * * * * * * * * * * * * Protected Member Functions * * * * * * * * * * * // Foam::label Foam::RBD::rigidBodyModel::join_ ( const label parentID, const spatialTransform& XT, autoPtr jointPtr, autoPtr bodyPtr ) { // Append the body const rigidBody& body = bodyPtr(); bodies_.append(bodyPtr); const label bodyID = nBodies()-1; bodyIndices_.insert(body.name(), bodyID); // If the parentID refers to a merged body find the parent into which it has // been merged and set lambda and XT accordingly if (merged(parentID)) { const subBody& sBody = mergedBody(parentID); lambda_.append(sBody.masterIndex()); XT_.append(XT & sBody.masterXT()); } else { lambda_.append(parentID); XT_.append(XT); } // Append the joint const joint& prevJoint = joints_[joints_.size() - 1]; joints_.append(jointPtr); joint& curJoint = joints_[joints_.size() - 1]; curJoint.index() = joints_.size() - 1; curJoint.qIndex() = prevJoint.qIndex() + prevJoint.nDoF(); // Increment the degrees of freedom nDoF_ += curJoint.nDoF(); unitQuaternions_ = unitQuaternions_ || curJoint.unitQuaternion(); resizeState(); return bodyID; } // * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * * // Foam::RBD::rigidBodyModel::rigidBodyModel() : g_(Zero) { initialiseRootBody(); } Foam::RBD::rigidBodyModel::rigidBodyModel(const dictionary& dict) : g_(Zero) { initialiseRootBody(); const dictionary& bodiesDict = dict.subDict("bodies"); forAllConstIter(IDLList, bodiesDict, iter) { const dictionary& bodyDict = iter().dict(); if (bodyDict.found("mergeWith")) { merge ( bodyIndex(bodyDict.lookup("mergeWith")), bodyDict.lookup("transform"), rigidBody::New(iter().keyword(), bodyDict) ); } else { join ( bodyIndex(bodyDict.lookup("parent")), bodyDict.lookup("transform"), joint::New(*this, bodyDict.subDict("joint")), rigidBody::New(iter().keyword(), bodyDict) ); } } // Read the restraints and any other re-readable settings. read(dict); } // * * * * * * * * * * * * * * * * Destructor * * * * * * * * * * * * * * * // Foam::RBD::rigidBodyModel::~rigidBodyModel() {} // * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * // Foam::label Foam::RBD::rigidBodyModel::join ( const label parentID, const spatialTransform& XT, autoPtr jointPtr, autoPtr bodyPtr ) { if (isA(jointPtr())) { return join ( parentID, XT, autoPtr ( dynamic_cast(jointPtr.ptr()) ), bodyPtr ); } else { return join_ ( parentID, XT, jointPtr, bodyPtr ); } } Foam::label Foam::RBD::rigidBodyModel::join ( const label parentID, const spatialTransform& XT, autoPtr cJointPtr, autoPtr bodyPtr ) { label parent = parentID; joints::composite& cJoint = cJointPtr(); // For all but the final joint in the set add a jointBody with the // joint and transform for (label j=0; j(new jointBody) ); } // For the final joint in the set add the real body parent = join_ ( parent, cJoint.size() == 1 ? XT : spatialTransform(), autoPtr(cJointPtr.ptr()), bodyPtr ); // Set the properties of the last joint in the list to those set // by rigidBodyModel cJoint.setLastJoint(); return parent; } void Foam::RBD::rigidBodyModel::makeComposite(const label bodyID) { if (!isA(bodies_[bodyID])) { // Retrieve the un-merged body autoPtr bodyPtr = bodies_.set(bodyID, nullptr); // Insert the compositeBody containing the original body bodies_.set ( bodyID, new compositeBody(bodyPtr) ); } } Foam::label Foam::RBD::rigidBodyModel::merge ( const label parentID, const spatialTransform& XT, autoPtr bodyPtr ) { autoPtr sBodyPtr; // If the parentID refers to a merged body find the parent into which it has // been merged and merge this on into the same parent with the appropriate // transform if (merged(parentID)) { const subBody& sBody = mergedBody(parentID); makeComposite(sBody.masterIndex()); sBodyPtr.set ( new subBody ( bodyPtr, bodies_[sBody.masterIndex()].name(), sBody.masterIndex(), XT & sBody.masterXT() ) ); } else { makeComposite(parentID); sBodyPtr.set ( new subBody ( bodyPtr, bodies_[parentID].name(), parentID, XT ) ); } const subBody& sBody = sBodyPtr(); mergedBodies_.append(sBodyPtr); // Merge the sub-body with the parent bodies_[sBody.masterIndex()].merge(sBody); const label sBodyID = mergedBodyID(mergedBodies_.size() - 1); bodyIndices_.insert(sBody.name(), sBodyID); return sBodyID; } Foam::spatialTransform Foam::RBD::rigidBodyModel::X0 ( const label bodyId ) const { if (merged(bodyId)) { const subBody& mBody = mergedBody(bodyId); return mBody.masterXT() & X0_[mBody.masterIndex()]; } else { return X0_[bodyId]; } } Foam::wordList Foam::RBD::rigidBodyModel::movingBodyNames() const { wordList names(nBodies()); label j = 0; for (label i=1; i(bodies_[i])) { names[j++] = bodies_[i].name(); } } names.setSize(j); return names; } void Foam::RBD::rigidBodyModel::write(Ostream& os) const { os << indent << "bodies" << nl << indent << token::BEGIN_BLOCK << incrIndent << nl; // Write the moving bodies for (label i=1; i(bodies_[i])) { os << indent << bodies_[i].name() << nl << indent << token::BEGIN_BLOCK << incrIndent << endl; bodies_[i].write(os); writeEntry(os, "parent", bodies_[lambda_[i]].name()); writeEntry(os, "transform", XT_[i]); os << indent << "joint" << nl << joints_[i] << endl; os << decrIndent << indent << token::END_BLOCK << endl; } } // Write the bodies merged into the parent bodies for efficiency forAll(mergedBodies_, i) { os << indent << mergedBodies_[i].name() << nl << indent << token::BEGIN_BLOCK << incrIndent << endl; mergedBodies_[i].body().write(os); writeEntry(os, "transform", mergedBodies_[i].masterXT()); writeEntry(os, "mergeWith", mergedBodies_[i].masterName()); os << decrIndent << indent << token::END_BLOCK << endl; } os << decrIndent << indent << token::END_BLOCK << nl; if (!restraints_.empty()) { os << indent << "restraints" << nl << indent << token::BEGIN_BLOCK << incrIndent << nl; forAll(restraints_, ri) { word restraintType = restraints_[ri].type(); os << indent << restraints_[ri].name() << nl << indent << token::BEGIN_BLOCK << incrIndent << endl; restraints_[ri].write(os); os << decrIndent << indent << token::END_BLOCK << endl; } os << decrIndent << indent << token::END_BLOCK << nl; } } bool Foam::RBD::rigidBodyModel::read(const dictionary& dict) { restraints_.clear(); addRestraints(dict); return true; } // * * * * * * * * * * * * * * * Ostream Operator * * * * * * * * * * * * * // Foam::Ostream& Foam::RBD::operator<<(Ostream& os, const rigidBodyModel& rbm) { rbm.write(os); return os; } // ************************************************************************* //