/*++ Copyright (C) 2023 3MF Consortium All rights reserved. Redistribution and use in source and binary forms, with or without modification, are permitted provided that the following conditions are met: 1. Redistributions of source code must retain the above copyright notice, this list of conditions and the following disclaimer. 2. Redistributions in binary form must reproduce the above copyright notice, this list of conditions and the following disclaimer in the documentation and/or other materials provided with the distribution. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. Abstract: Reader for nodes of graph representing a function for implicit modelling --*/ #include "Model/Reader/Volumetric2201/NMR_ModelReaderNode_Implicit_Node.h" #include "Model/Reader/Volumetric2201/NMR_ModelReaderNode_Implicit_Node_Inputs.h" #include "Model/Reader/Volumetric2201/NMR_ModelReaderNode_Implicit_Node_Outputs.h" #include "Model/Classes/NMR_Model.h" #include "Model/Classes/NMR_ModelConstants.h" #include "Common/NMR_Exception.h" #include "Common/NMR_Exception_Windows.h" #include "Common/NMR_StringUtils.h" #include namespace NMR { CModelReaderNode_Implicit_Node::CModelReaderNode_Implicit_Node( _In_ CModel * pModel, _In_ CModelImplicitNode * pImplicitNode, _In_ PModelWarnings pWarnings) : CModelReaderNode(pWarnings) { __NMRASSERT(pModel); __NMRASSERT(pImplicitNode); m_pModel = pModel; m_pImplicitNode = pImplicitNode; } void CModelReaderNode_Implicit_Node::parseXML(_In_ CXmlReader * pXMLReader) { __NMRASSERT(pXMLReader); // Parse name parseName(pXMLReader); // Parse Attributes parseAttributes(pXMLReader); // Parse Content parseContent(pXMLReader); } Lib3MF::sMatrix4x4 matFromString(std::string const & str) { Lib3MF::sMatrix4x4 mat; std::stringstream ss(str); for (int i = 0; i < 4; i++) { for (int j = 0; j < 4; j++) { if (!(ss >> mat.m_Field[i][j])) { throw CNMRException(NMR_ERROR_NOTENOUGHVALUESINMATRIXSTRING); } } } // Check if there is any extra content in the input string std::string extra; if (ss >> extra && !extra.empty()) { throw CNMRException(NMR_ERROR_TOOMANYVALUESINMATRIXSTRING); } return mat; } void CModelReaderNode_Implicit_Node::OnAttribute(_In_z_ const nfChar * pAttributeName, _In_z_ const nfChar * pAttributeValue) { if (strcmp(pAttributeName, XML_3MF_ATTRIBUTE_IMPLICIT_NODE_ID) == 0) { m_pImplicitNode->setIdentifier(pAttributeValue); } else if (strcmp(pAttributeName, XML_3MF_ATTRIBUTE_IMPLICIT_NODE_DISPLAY_NAME) == 0) { m_pImplicitNode->setDisplayName(pAttributeValue); } else if (strcmp(pAttributeName, XML_3MF_ATTRIBUTE_IMPLICIT_NODE_TAG) == 0) { m_pImplicitNode->setTag(pAttributeValue); } else if (m_pImplicitNode->getNodeType() == Lib3MF::eImplicitNodeType::Constant && strcmp(pAttributeName, XML_3MF_ATTRIBUTE_IMPLICIT_NODE_VALUE) == 0) { m_pImplicitNode->setConstant(strtod(pAttributeValue, nullptr)); } else if (m_pImplicitNode->getNodeType() == Lib3MF::eImplicitNodeType::ConstVec) { if (strcmp(pAttributeName, XML_3MF_ATTRIBUTE_IMPLICIT_NODE_X) == 0) { m_vector.m_Coordinates[0] = strtod(pAttributeValue, nullptr); } else if (strcmp(pAttributeName, XML_3MF_ATTRIBUTE_IMPLICIT_NODE_Y) == 0) { m_vector.m_Coordinates[1] = strtod(pAttributeValue, nullptr); } else if (strcmp(pAttributeName, XML_3MF_ATTRIBUTE_IMPLICIT_NODE_Z) == 0) { m_vector.m_Coordinates[2] = strtod(pAttributeValue, nullptr); } m_pImplicitNode->setVector(m_vector); } else if (m_pImplicitNode->getNodeType() == Lib3MF::eImplicitNodeType::ConstMat) { if (strcmp(pAttributeName, XML_3MF_ATTRIBUTE_IMPLICIT_NODE_MATRIX) == 0) { m_pImplicitNode->setMatrix(matFromString(pAttributeValue)); } } else if (m_pImplicitNode->getNodeType() == Lib3MF::eImplicitNodeType::ConstResourceID) { if ((strcmp(pAttributeName, XML_3MF_ATTRIBUTE_IMPLICIT_NODE_RESOURCE_ID_VALUE_DEPRECATED) == 0) || (strcmp(pAttributeName, XML_3MF_ATTRIBUTE_IMPLICIT_NODE_VALUE) == 0)) { m_pImplicitNode->setModelResourceID(std::stoi(pAttributeValue)); } } else if (m_pImplicitNode->getNodeType() == Lib3MF::eImplicitNodeType::BeamLattice) { if (strcmp(pAttributeName, XML_3MF_ATTRIBUTE_IMPLICIT_NODE_ACCURATERANGE) == 0) { m_pImplicitNode->setAccurateRange(strtod(pAttributeValue, nullptr)); } } else if (m_pImplicitNode->getNodeType() == Lib3MF::eImplicitNodeType::FunctionGradient || m_pImplicitNode->getNodeType() == Lib3MF::eImplicitNodeType::NormalizeDistance) { if (strcmp(pAttributeName, XML_3MF_ATTRIBUTE_IMPLICIT_NODE_SCALAROUTPUT) == 0) { m_pImplicitNode->setScalarOutputName(pAttributeValue); } else if (strcmp(pAttributeName, XML_3MF_ATTRIBUTE_IMPLICIT_NODE_VECTORINPUT) == 0) { m_pImplicitNode->setVectorInputName(pAttributeValue); } } } void NMR::CModelReaderNode_Implicit_Node::OnNSChildElement(_In_z_ const nfChar * pChildName, _In_z_ const nfChar * pNameSpace, _In_ CXmlReader * pXMLReader) { __NMRASSERT(pChildName); __NMRASSERT(pXMLReader); __NMRASSERT(pNameSpace); if (strcmp(pChildName, XML_3MF_ELEMENT_IMPLICIT_NODE_INPUT) == 0) { auto pXMLNode = std::make_shared(m_pImplicitNode, m_pWarnings); pXMLNode->parseXML(pXMLReader); } else if (strcmp(pChildName, XML_3MF_ELEMENT_IMPLICIT_NODE_OUTPUT) == 0) { auto pXMLNode = std::make_shared( m_pImplicitNode, m_pWarnings); pXMLNode->parseXML(pXMLReader); } } }