mirror of
https://github.com/IfcOpenShell/IfcOpenShell.git
synced 2026-08-11 18:16:40 +00:00
141 lines
6.4 KiB
C++
141 lines
6.4 KiB
C++
/********************************************************************************
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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 <map>
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#include "IfcGeom.h"
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namespace {
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bool process_colour(IfcSchema::IfcColourRgb* colour, double* rgb) {
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if (colour != 0) {
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rgb[0] = colour->Red();
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rgb[1] = colour->Green();
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rgb[2] = colour->Blue();
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}
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return colour != 0;
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}
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bool process_colour(IfcSchema::IfcNormalisedRatioMeasure* factor, double* rgb) {
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if (factor != 0) {
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const double f = *factor;
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rgb[0] = rgb[1] = rgb[2] = f;
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}
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return factor != 0;
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}
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bool process_colour(IfcSchema::IfcColourOrFactor* colour_or_factor, double* rgb) {
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if (colour_or_factor == 0) {
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return false;
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} else if (colour_or_factor->declaration().is(IfcSchema::IfcColourRgb::Class())) {
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return process_colour(static_cast<IfcSchema::IfcColourRgb*>(colour_or_factor), rgb);
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} else if (colour_or_factor->declaration().is(IfcSchema::IfcNormalisedRatioMeasure::Class())) {
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return process_colour(static_cast<IfcSchema::IfcNormalisedRatioMeasure*>(colour_or_factor), rgb);
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} else {
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return false;
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}
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}
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}
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#define Kernel MAKE_TYPE_NAME(Kernel)
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const IfcGeom::SurfaceStyle* IfcGeom::Kernel::internalize_surface_style(const std::pair<IfcUtil::IfcBaseClass*, IfcUtil::IfcBaseClass*>& shading_styles) {
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if (shading_styles.second == 0) {
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return 0;
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}
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int surface_style_id = shading_styles.first->data().id();
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std::map<int,SurfaceStyle>::const_iterator it = style_cache.find(surface_style_id);
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if (it != style_cache.end()) {
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return &(it->second);
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}
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SurfaceStyle surface_style;
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IfcSchema::IfcSurfaceStyle* style = shading_styles.first->as<IfcSchema::IfcSurfaceStyle>();
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IfcSchema::IfcSurfaceStyleShading* shading = shading_styles.second->as<IfcSchema::IfcSurfaceStyleShading>();
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if (style->hasName()) {
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surface_style = SurfaceStyle(surface_style_id, style->Name());
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} else {
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surface_style = SurfaceStyle(surface_style_id);
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}
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double rgb[3];
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if (process_colour(shading->SurfaceColour(), rgb)) {
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surface_style.Diffuse().reset(SurfaceStyle::ColorComponent(rgb[0], rgb[1], rgb[2]));
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}
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if (shading_styles.second->declaration().is(IfcSchema::IfcSurfaceStyleRendering::Class())) {
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IfcSchema::IfcSurfaceStyleRendering* rendering_style = static_cast<IfcSchema::IfcSurfaceStyleRendering*>(shading_styles.second);
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if (rendering_style->hasDiffuseColour() && process_colour(rendering_style->DiffuseColour(), rgb)) {
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SurfaceStyle::ColorComponent diffuse = surface_style.Diffuse().get_value_or(SurfaceStyle::ColorComponent(1,1,1));
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surface_style.Diffuse().reset(SurfaceStyle::ColorComponent(diffuse.R() * rgb[0], diffuse.G() * rgb[1], diffuse.B() * rgb[2]));
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}
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if (rendering_style->hasDiffuseTransmissionColour()) {
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// Not supported
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}
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if (rendering_style->hasReflectionColour()) {
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// Not supported
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}
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if (rendering_style->hasSpecularColour() && process_colour(rendering_style->SpecularColour(), rgb)) {
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surface_style.Specular().reset(SurfaceStyle::ColorComponent(rgb[0], rgb[1], rgb[2]));
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}
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if (rendering_style->hasSpecularHighlight()) {
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IfcSchema::IfcSpecularHighlightSelect* highlight = rendering_style->SpecularHighlight();
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if (highlight->declaration().is(IfcSchema::IfcSpecularRoughness::Class())) {
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double roughness = *((IfcSchema::IfcSpecularRoughness*)highlight);
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if (roughness >= 1e-9) {
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surface_style.Specularity().reset(1.0 / roughness);
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}
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} else if (highlight->declaration().is(IfcSchema::IfcSpecularExponent::Class())) {
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surface_style.Specularity().reset(*((IfcSchema::IfcSpecularExponent*)highlight));
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}
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}
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if (rendering_style->hasTransmissionColour()) {
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// Not supported
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}
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if (rendering_style->hasTransparency()) {
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const double d = rendering_style->Transparency();
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surface_style.Transparency().reset(d);
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}
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}
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return &(style_cache[surface_style_id] = surface_style);
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}
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const IfcGeom::SurfaceStyle* IfcGeom::Kernel::get_style(const IfcSchema::IfcRepresentationItem* item) {
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return internalize_surface_style(get_surface_style<IfcSchema::IfcSurfaceStyleShading>(item));
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}
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const IfcGeom::SurfaceStyle* IfcGeom::Kernel::get_style(const IfcSchema::IfcMaterial* material) {
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IfcSchema::IfcMaterialDefinitionRepresentation::list::ptr defs = material->HasRepresentation();
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for (IfcSchema::IfcMaterialDefinitionRepresentation::list::it jt = defs->begin(); jt != defs->end(); ++jt) {
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IfcSchema::IfcRepresentation::list::ptr reps = (*jt)->Representations();
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IfcSchema::IfcStyledItem::list::ptr styles(new IfcSchema::IfcStyledItem::list);
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for (IfcSchema::IfcRepresentation::list::it it = reps->begin(); it != reps->end(); ++it) {
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styles->push((**it).Items()->as<IfcSchema::IfcStyledItem>());
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}
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for (IfcSchema::IfcStyledItem::list::it it = styles->begin(); it != styles->end(); ++it) {
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const std::pair<IfcSchema::IfcSurfaceStyle*, IfcSchema::IfcSurfaceStyleShading*> ss = get_surface_style<IfcSchema::IfcSurfaceStyleShading>(*it);
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if (ss.second) {
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return internalize_surface_style(ss);
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}
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}
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}
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IfcGeom::SurfaceStyle material_style = IfcGeom::SurfaceStyle(material->data().id(), material->Name());
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return &(style_cache[material->data().id()] = material_style);
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}
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