mirror of
https://github.com/OpenSpace/OpenSpace.git
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246 lines
9.6 KiB
C++
246 lines
9.6 KiB
C++
/*****************************************************************************************
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* *
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* OpenSpace *
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* *
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* Copyright (c) 2014-2023 *
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* *
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* Permission is hereby granted, free of charge, to any person obtaining a copy of this *
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* software and associated documentation files (the "Software"), to deal in the Software *
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* without restriction, including without limitation the rights to use, copy, modify, *
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* merge, publish, distribute, sublicense, and/or sell copies of the Software, and to *
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* permit persons to whom the Software is furnished to do so, subject to the following *
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* conditions: *
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* *
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* The above copyright notice and this permission notice shall be included in all copies *
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* or substantial portions of the Software. *
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* *
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, *
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* INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A *
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* PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT *
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* HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF *
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* CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE *
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* OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. *
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****************************************************************************************/
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#include <modules/exoplanets/rendering/renderableorbitdisc.h>
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#include <openspace/documentation/documentation.h>
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#include <openspace/documentation/verifier.h>
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#include <openspace/engine/globals.h>
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#include <openspace/rendering/renderengine.h>
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#include <openspace/scene/scenegraphnode.h>
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#include <openspace/scene/scene.h>
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#include <openspace/util/distanceconstants.h>
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#include <ghoul/logging/logmanager.h>
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#include <ghoul/filesystem/filesystem.h>
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#include <ghoul/opengl/openglstatecache.h>
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#include <ghoul/opengl/programobject.h>
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#include <ghoul/opengl/textureunit.h>
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#include <filesystem>
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#include <optional>
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namespace {
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constexpr std::array<const char*, 7> UniformNames = {
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"modelViewProjectionTransform", "offset", "opacity",
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"discTexture", "eccentricity", "semiMajorAxis", "multiplyColor"
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};
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constexpr openspace::properties::Property::PropertyInfo TextureInfo = {
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"Texture",
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"Texture",
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"This value is the path to a texture on disk that contains a one-dimensional "
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"texture which is used for the color",
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openspace::properties::Property::Visibility::AdvancedUser
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};
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constexpr openspace::properties::Property::PropertyInfo SizeInfo = {
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"Size",
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"Size",
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"This value specifies the semi-major axis of the orbit, in meter",
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openspace::properties::Property::Visibility::AdvancedUser
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};
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constexpr openspace::properties::Property::PropertyInfo EccentricityInfo = {
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"Eccentricity",
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"Eccentricity",
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"This value determines the eccentricity, that is the deviation from a perfect "
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"sphere, for this orbit",
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openspace::properties::Property::Visibility::AdvancedUser
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};
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constexpr openspace::properties::Property::PropertyInfo OffsetInfo = {
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"Offset",
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"Offset",
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"This property determines the width of the disc. The values specify the lower "
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"and upper deviation from the semi major axis, respectively. The values are "
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"relative to the size of the semi-major axis. That is, 0 means no deviation "
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"from the semi-major axis and 1 is a whole semi-major axis's worth of deviation",
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openspace::properties::Property::Visibility::AdvancedUser
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};
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constexpr openspace::properties::Property::PropertyInfo MultiplyColorInfo = {
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"MultiplyColor",
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"Multiply Color",
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"If set, the disc's texture is multiplied with this color. Useful for applying a "
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"color grayscale images",
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// @VISIBILITY(1.5)
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openspace::properties::Property::Visibility::NoviceUser
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};
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struct [[codegen::Dictionary(RenderableOrbitDisc)]] Parameters {
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// [[codegen::verbatim(TextureInfo.description)]]
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std::filesystem::path texture;
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// [[codegen::verbatim(SizeInfo.description)]]
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float size;
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// [[codegen::verbatim(EccentricityInfo.description)]]
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float eccentricity;
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// [[codegen::verbatim(OffsetInfo.description)]]
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std::optional<glm::vec2> offset;
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// [[codegen::verbatim(MultiplyColorInfo.description)]]
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std::optional<glm::vec3> multiplyColor [[codegen::color()]];
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};
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#include "renderableorbitdisc_codegen.cpp"
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} // namespace
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namespace openspace {
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documentation::Documentation RenderableOrbitDisc::Documentation() {
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return codegen::doc<Parameters>("exoplanets_renderableorbitdisc");
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}
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RenderableOrbitDisc::RenderableOrbitDisc(const ghoul::Dictionary& dictionary)
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: Renderable(dictionary)
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, _texturePath(TextureInfo)
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, _size(SizeInfo, 1.f, 0.f, 3.0e12f)
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, _eccentricity(EccentricityInfo, 0.f, 0.f, 1.f)
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, _offset(OffsetInfo, glm::vec2(0.f), glm::vec2(0.f), glm::vec2(1.f))
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, _multiplyColor(MultiplyColorInfo, glm::vec3(1.f), glm::vec3(0.f), glm::vec3(1.f))
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{
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const Parameters p = codegen::bake<Parameters>(dictionary);
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_offset = p.offset.value_or(_offset);
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_offset.onChange([this]() { _planeIsDirty = true; });
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addProperty(_offset);
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_size = p.size;
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_size.onChange([this]() { _planeIsDirty = true; });
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addProperty(_size);
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setBoundingSphere(_size + _offset.value().y * _size);
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_texturePath = p.texture.string();
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_texturePath.onChange([this]() { _texture->loadFromFile(_texturePath.value()); });
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addProperty(_texturePath);
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_multiplyColor = p.multiplyColor.value_or(_multiplyColor);
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_multiplyColor.setViewOption(properties::Property::ViewOptions::Color);
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addProperty(_multiplyColor);
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_eccentricity = p.eccentricity;
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_eccentricity.onChange([this]() { _planeIsDirty = true; });
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addProperty(_eccentricity);
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addProperty(Fadeable::_opacity);
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}
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bool RenderableOrbitDisc::isReady() const {
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return _shader && _texture && _plane;
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}
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void RenderableOrbitDisc::initialize() {
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_texture = std::make_unique<TextureComponent>(1);
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_texture->setFilterMode(ghoul::opengl::Texture::FilterMode::AnisotropicMipMap);
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_texture->setWrapping(ghoul::opengl::Texture::WrappingMode::ClampToEdge);
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_plane = std::make_unique<PlaneGeometry>(planeSize());
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}
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void RenderableOrbitDisc::initializeGL() {
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_shader = global::renderEngine->buildRenderProgram(
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"OrbitDiscProgram",
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absPath("${BASE}/modules/exoplanets/shaders/orbitdisc_vs.glsl"),
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absPath("${BASE}/modules/exoplanets/shaders/orbitdisc_fs.glsl")
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);
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ghoul::opengl::updateUniformLocations(*_shader, _uniformCache, UniformNames);
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_texture->loadFromFile(_texturePath.value());
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_texture->uploadToGpu();
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_plane->initialize();
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}
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void RenderableOrbitDisc::deinitializeGL() {
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_plane->deinitialize();
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_plane = nullptr;
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_texture = nullptr;
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global::renderEngine->removeRenderProgram(_shader.get());
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_shader = nullptr;
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}
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void RenderableOrbitDisc::render(const RenderData& data, RendererTasks&) {
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_shader->activate();
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glm::dmat4 modelTransform =
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glm::translate(glm::dmat4(1.0), data.modelTransform.translation) *
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glm::dmat4(data.modelTransform.rotation) *
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glm::scale(glm::dmat4(1.0), glm::dvec3(data.modelTransform.scale));
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glm::dmat4 modelViewTransform = data.camera.combinedViewMatrix() * modelTransform;
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_shader->setUniform(
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_uniformCache.modelViewProjection,
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data.camera.projectionMatrix() * glm::mat4(modelViewTransform)
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);
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_shader->setUniform(_uniformCache.offset, _offset);
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_shader->setUniform(_uniformCache.opacity, opacity());
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_shader->setUniform(_uniformCache.eccentricity, _eccentricity);
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_shader->setUniform(_uniformCache.semiMajorAxis, _size);
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_shader->setUniform(_uniformCache.multiplyColor, _multiplyColor);
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ghoul::opengl::TextureUnit unit;
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unit.activate();
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_texture->bind();
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_shader->setUniform(_uniformCache.texture, unit);
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glEnablei(GL_BLEND, 0);
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glBlendFunc(GL_SRC_ALPHA, GL_ONE_MINUS_SRC_ALPHA);
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glDepthMask(false);
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glDisable(GL_CULL_FACE);
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_plane->render();
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_shader->deactivate();
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// Restores GL State
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global::renderEngine->openglStateCache().resetBlendState();
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global::renderEngine->openglStateCache().resetDepthState();
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global::renderEngine->openglStateCache().resetPolygonAndClippingState();
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}
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void RenderableOrbitDisc::update(const UpdateData&) {
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if (_shader->isDirty()) {
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_shader->rebuildFromFile();
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ghoul::opengl::updateUniformLocations(*_shader, _uniformCache, UniformNames);
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}
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if (_planeIsDirty) {
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_plane->updateSize(planeSize());
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_planeIsDirty = false;
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}
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_texture->update();
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}
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float RenderableOrbitDisc::planeSize() const {
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float maxRadius = _size + _offset.value().y * _size;
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maxRadius *= (1.f + _eccentricity);
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return maxRadius;
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}
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} // namespace openspace
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