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Schema dependent serializers
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/********************************************************************************
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* *
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* This file is part of IfcOpenShell. *
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* *
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* IfcOpenShell is free software: you can redistribute it and/or modify *
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* it under the terms of the Lesser GNU General Public License as published by *
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* the Free Software Foundation, either version 3.0 of the License, or *
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* (at your option) any later version. *
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* *
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* IfcOpenShell is distributed in the hope that it will be useful, *
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* but WITHOUT ANY WARRANTY; without even the implied warranty of *
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
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* Lesser GNU General Public License for more details. *
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* *
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* You should have received a copy of the Lesser GNU General Public License *
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* along with this program. If not, see <http://www.gnu.org/licenses/>. *
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* *
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********************************************************************************/
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#include "WavefrontObjSerializer.h"
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#include "../ifcgeom_schema_agnostic/IfcGeomRenderStyles.h"
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#include <boost/lexical_cast.hpp>
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#include <iomanip>
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bool WaveFrontOBJSerializer::ready() {
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return obj_stream.is_open() && mtl_stream.is_open();
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}
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void WaveFrontOBJSerializer::writeHeader() {
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obj_stream << "# File generated by IfcOpenShell " << IFCOPENSHELL_VERSION << "\n";
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#ifdef WIN32
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const char dir_separator = '\\';
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#else
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const char dir_separator = '/';
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#endif
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std::string mtl_basename = mtl_filename;
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std::string::size_type slash = mtl_basename.find_last_of(dir_separator);
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if (slash != std::string::npos) {
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mtl_basename = mtl_basename.substr(slash+1);
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}
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obj_stream << "mtllib " << mtl_basename << "\n";
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mtl_stream << "# File generated by IfcOpenShell " << IFCOPENSHELL_VERSION << "\n";
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}
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void WaveFrontOBJSerializer::writeMaterial(const IfcGeom::Material& style)
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{
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std::string material_name = (settings().get(SerializerSettings::USE_MATERIAL_NAMES)
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? style.original_name() : style.name());
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IfcUtil::sanitate_material_name(material_name);
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mtl_stream << "newmtl " << material_name << "\n";
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if (style.hasDiffuse()) {
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const double* diffuse = style.diffuse();
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mtl_stream << "Kd " << diffuse[0] << " " << diffuse[1] << " " << diffuse[2] << "\n";
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}
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if (style.hasSpecular()) {
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const double* specular = style.specular();
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mtl_stream << "Ks " << specular[0] << " " << specular[1] << " " << specular[2] << "\n";
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}
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if (style.hasSpecularity()) {
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mtl_stream << "Ns " << style.specularity() << "\n";
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}
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if (style.hasTransparency()) {
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const double transparency = 1.0 - style.transparency();
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if (transparency < 1) {
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mtl_stream << "d " << transparency << "\n";
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}
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}
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}
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void WaveFrontOBJSerializer::write(const IfcGeom::TriangulationElement<real_t>* o)
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{
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const std::string name = (settings().get(SerializerSettings::USE_ELEMENT_GUIDS)
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? o->guid() : (settings().get(SerializerSettings::USE_ELEMENT_NAMES)
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? o->name() : o->unique_id()));
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obj_stream << "g " << name << "\n";
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obj_stream << "s 1" << "\n";
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const IfcGeom::Representation::Triangulation<real_t>& mesh = o->geometry();
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const int vcount = (int)mesh.verts().size() / 3;
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for ( std::vector<real_t>::const_iterator it = mesh.verts().begin(); it != mesh.verts().end(); ) {
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const real_t x = *(it++) + (real_t)settings().offset[0];
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const real_t y = *(it++) + (real_t)settings().offset[1];
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const real_t z = *(it++) + (real_t)settings().offset[2];
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obj_stream << "v " << x << " " << y << " " << z << "\n";
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}
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for ( std::vector<real_t>::const_iterator it = mesh.normals().begin(); it != mesh.normals().end(); ) {
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const real_t x = *(it++);
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const real_t y = *(it++);
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const real_t z = *(it++);
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obj_stream << "vn " << x << " " << y << " " << z << "\n";
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}
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for (std::vector<real_t>::const_iterator it = mesh.uvs().begin(); it != mesh.uvs().end();) {
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const real_t u = *it++;
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const real_t v = *it++;
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obj_stream << "vt " << u << " " << v << "\n";
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}
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int previous_material_id = -2;
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std::vector<int>::const_iterator material_it = mesh.material_ids().begin();
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const bool has_uvs = !mesh.uvs().empty();
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const bool has_normals = !mesh.normals().empty();
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for ( std::vector<int>::const_iterator it = mesh.faces().begin(); it != mesh.faces().end(); ) {
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const int material_id = *(material_it++);
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if (material_id != previous_material_id) {
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const IfcGeom::Material& material = mesh.materials()[material_id];
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std::string material_name = (settings().get(SerializerSettings::USE_MATERIAL_NAMES)
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? material.original_name() : material.name());
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IfcUtil::sanitate_material_name(material_name);
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obj_stream << "usemtl " << material_name << "\n";
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if (materials.find(material_name) == materials.end()) {
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writeMaterial(material);
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materials.insert(material_name);
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}
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previous_material_id = material_id;
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}
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const int v1 = *(it++)+vcount_total;
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const int v2 = *(it++)+vcount_total;
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const int v3 = *(it++)+vcount_total;
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if (has_normals && has_uvs) {
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obj_stream << "f " << v1 << "/" << v1 << "/" << v1 << " "
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<< v2 << "/" << v2 << "/" << v2 << " "
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<< v3 << "/" << v3 << "/" << v3 << "\n";
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} else if (has_normals) {
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obj_stream << "f " << v1 << "//" << v1 << " "
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<< v2 << "//" << v2 << " "
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<< v3 << "//" << v3 << "\n";
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} else {
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obj_stream << "f " << v1 << " " << v2 << " " << v3 << "\n";
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}
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}
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std::set<int> faces_set (mesh.faces().begin(), mesh.faces().end());
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const std::vector<int>& edges = mesh.edges();
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for ( std::vector<int>::const_iterator it = edges.begin(); it != edges.end(); ) {
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const int i1 = *(it++);
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const int i2 = *(it++);
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if (faces_set.find(i1) != faces_set.end() || faces_set.find(i2) != faces_set.end()) {
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continue;
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}
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const int material_id = *(material_it++);
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if (material_id != previous_material_id) {
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const IfcGeom::Material& material = mesh.materials()[material_id];
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std::string material_name = (settings().get(SerializerSettings::USE_MATERIAL_NAMES)
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? material.original_name() : material.name());
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IfcUtil::sanitate_material_name(material_name);
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obj_stream << "usemtl " << material_name << "\n";
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if (materials.find(material_name) == materials.end()) {
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writeMaterial(material);
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materials.insert(material_name);
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}
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previous_material_id = material_id;
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}
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const int v1 = i1 + vcount_total;
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const int v2 = i2 + vcount_total;
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obj_stream << "l " << v1 << " " << v2 << "\n";
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}
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vcount_total += vcount;
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}
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