/******************************************************************************** * * * This file is part of IfcOpenShell. * * * * IfcOpenShell is free software: you can redistribute it and/or modify * * it under the terms of the Lesser GNU General Public License as published by * * the Free Software Foundation, either version 3.0 of the License, or * * (at your option) any later version. * * * * IfcOpenShell 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 * * Lesser GNU General Public License for more details. * * * * You should have received a copy of the Lesser GNU General Public License * * along with this program. If not, see . * * * ********************************************************************************/ #ifndef GEOMETRYSERIALIZER_H #define GEOMETRYSERIALIZER_H #include "../ifcgeom_schema_agnostic/Serializer.h" #include "../ifcgeom/IfcGeomElement.h" class SerializerSettings : public IfcGeom::IteratorSettings { public: enum Setting : uint64_t { /// Use entity names instead of unique IDs for naming elements. /// Applicable for OBJ, DAE, and SVG output. USE_ELEMENT_NAMES = 1 << (IfcGeom::IteratorSettings::NUM_SETTINGS + 1), /// Use entity GUIDs instead of unique IDs for naming elements. /// Applicable for OBJ, DAE, and SVG output. USE_ELEMENT_GUIDS = 1 << (IfcGeom::IteratorSettings::NUM_SETTINGS + 2), /// Use material names instead of unique IDs for naming materials. /// Applicable for OBJ and DAE output. USE_MATERIAL_NAMES = 1 << (IfcGeom::IteratorSettings::NUM_SETTINGS + 3), /// Use element types instead of unique IDs for naming elements. /// Applicable for DAE output. USE_ELEMENT_TYPES = 1 << (IfcGeom::IteratorSettings::NUM_SETTINGS + 4), /// Order the elements using their IfcBuildingStorey parent /// Applicable for DAE output USE_ELEMENT_HIERARCHY = 1 << (IfcGeom::IteratorSettings::NUM_SETTINGS + 5), /// Use step ids for naming elements. /// Applicable for OBJ, DAE, and SVG output. USE_ELEMENT_STEPIDS = 1 << (IfcGeom::IteratorSettings::NUM_SETTINGS + 6), /// Use Y UP . /// Applicable for OBJ output. USE_Y_UP = 1 << (IfcGeom::IteratorSettings::NUM_SETTINGS + 7), /// Number of different setting flags. NUM_SETTINGS = 7 }; SerializerSettings() : precision(DEFAULT_PRECISION) { } /// Sets the precision used to format floating-point values, 15 by default. /// Use a negative value to use the system's default precision (should be 6 typically). short precision; enum { DEFAULT_PRECISION = 15 }; }; class stream_or_filename { private: std::shared_ptr ofs_; std::shared_ptr oss_; boost::optional filename_; public: std::ostream& stream; stream_or_filename(const std::string& fn) : ofs_(new std::ofstream(IfcUtil::path::from_utf8(fn).c_str())) , stream(*ofs_) {} stream_or_filename() : oss_(new std::ostringstream) , stream(*oss_) {} std::string get_value() const { return oss_->str(); } boost::optional filename() const { return filename_; } bool is_ready() { if (ofs_) { return ofs_->is_open(); } else { return true; } } }; class GeometrySerializer : public Serializer { public: enum read_type { READ_BREP, READ_TRIANGULATION }; GeometrySerializer(const SerializerSettings& settings) : settings_(settings) {} virtual ~GeometrySerializer() {} virtual bool isTesselated() const = 0; virtual void write(const IfcGeom::TriangulationElement* o) = 0; virtual void write(const IfcGeom::BRepElement* o) = 0; virtual void setUnitNameAndMagnitude(const std::string& name, float magnitude) = 0; virtual IfcGeom::Element* read(IfcParse::IfcFile& f, const std::string& guid, const std::string& representation_id, read_type rt = READ_BREP) = 0; const SerializerSettings& settings() const { return settings_; } SerializerSettings& settings() { return settings_; } /// Returns ID for the object depending on the used setting. virtual std::string object_id(const IfcGeom::Element* o) { if (settings_.get(SerializerSettings::USE_ELEMENT_GUIDS)) return o->guid(); if (settings_.get(SerializerSettings::USE_ELEMENT_NAMES)) return o->name(); if (settings_.get(SerializerSettings::USE_ELEMENT_STEPIDS)) return "id-" + boost::lexical_cast(o->id()); return o->unique_id(); } protected: SerializerSettings settings_; }; class WriteOnlyGeometrySerializer : public GeometrySerializer { public: WriteOnlyGeometrySerializer(const SerializerSettings& settings) : GeometrySerializer(settings) {} virtual IfcGeom::Element* read(IfcParse::IfcFile&, const std::string&, const std::string&, read_type = READ_BREP) { throw std::runtime_error("Not supported"); }; }; #endif