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A passover of all the Parameters descriptions and PropertyInfo descriptions of the renderables in the code base to make then more consistently and concisely formatted. Also fixed some small issues and added or updated descriptions. * Start rephrasing propertyinfos for more consistency * Update eclipse cone propertyinfos * Update `RenderableFov` property infos and group colors in UI * `RenderableGalaxy` and `RenderableGlobe` * Update more descriptions * Moore descriptions * Update docs for `RenderableShadowCylinder` and add properties * `RenderableSkyTarget`, and spheres (`ImageOnline` and `ImageLocal`) * `RnederableSphericalGrid`, and update line width info of other types, for consistency * `RenderableStars` and `RenderableTimeVaryingSphere` * Update more propertyinfos * Fix inconsistent mentioning of true/false * change some phrasings for increased consistency * Update Renderbin description to include Sticker bin and remove extra property * Rename `OutlineWeight` -> `OutlineWidth` * Extend description about enable depth test for models * Clarify what relative values mean for `RenderableNodeArrow` * Elaborate on `RenderableLabel` size property --------- Co-authored-by: Alexander Bock <alexander.bock@liu.se> Co-authored-by: Ylva Selling <ylva.selling@gmail.com> Co-authored-by: Malin E <malin.ejdbo@gmail.com>
275 lines
10 KiB
C++
275 lines
10 KiB
C++
/*****************************************************************************************
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* *
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* OpenSpace *
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* *
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* Copyright (c) 2014-2024 *
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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/base/rendering/renderableplanetimevaryingimage.h>
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#include <modules/base/basemodule.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/engine/windowdelegate.h>
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#include <openspace/rendering/renderengine.h>
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#include <openspace/scene/scene.h>
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#include <openspace/util/updatestructures.h>
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#include <ghoul/filesystem/filesystem.h>
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#include <ghoul/io/texture/texturereader.h>
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#include <ghoul/logging/logmanager.h>
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#include <optional>
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namespace {
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constexpr std::string_view KeyLazyLoading = "LazyLoading";
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constexpr std::string_view _loggerCat = "RenderablePlaneTimeVaryingImage";
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constexpr openspace::properties::Property::PropertyInfo SourceFolderInfo = {
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"SourceFolder",
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"Source Folder",
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"An image directory that is loaded from disk and contains the textures to use "
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"for this plane.",
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openspace::properties::Property::Visibility::AdvancedUser
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};
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struct [[codegen::Dictionary(RenderablePlaneTimeVaryingImage)]] Parameters {
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// [[codegen::verbatim(SourceFolderInfo.description)]]
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std::string sourceFolder;
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};
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#include "renderableplanetimevaryingimage_codegen.cpp"
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} // namespace
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namespace openspace {
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documentation::Documentation RenderablePlaneTimeVaryingImage::Documentation() {
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return codegen::doc<Parameters>(
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"base_renderable_plane_time_varying_image",
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RenderablePlane::Documentation()
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);
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}
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RenderablePlaneTimeVaryingImage::RenderablePlaneTimeVaryingImage(
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const ghoul::Dictionary& dictionary)
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: RenderablePlane(dictionary)
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, _sourceFolder(SourceFolderInfo)
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{
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const Parameters p = codegen::bake<Parameters>(dictionary);
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addProperty(_blendMode);
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_sourceFolder = p.sourceFolder;
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if (!std::filesystem::is_directory(absPath(_sourceFolder))) {
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LERROR(std::format(
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"Time varying image, '{}' is not a valid directory",
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_sourceFolder.value()
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));
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}
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addProperty(_sourceFolder);
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_sourceFolder.onChange([this]() { _texture = loadTexture(); });
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if (dictionary.hasKey(KeyLazyLoading)) {
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_isLoadingLazily = dictionary.value<bool>(KeyLazyLoading);
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if (_isLoadingLazily) {
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_enabled.onChange([this]() {
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if (_enabled) {
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_textureIsDirty = true;
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}
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else {
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BaseModule::TextureManager.release(_texture);
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_texture = nullptr;
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}
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});
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}
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}
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}
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void RenderablePlaneTimeVaryingImage::initialize() {
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RenderablePlane::initialize();
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const bool success = extractMandatoryInfoFromDictionary();
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if (!success) {
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return;
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}
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extractTriggerTimesFromFileNames();
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computeSequenceEndTime();
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}
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void RenderablePlaneTimeVaryingImage::initializeGL() {
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RenderablePlane::initializeGL();
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_textureFiles.resize(_sourceFiles.size());
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for (size_t i = 0; i < _sourceFiles.size(); i++) {
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_textureFiles[i] = ghoul::io::TextureReader::ref().loadTexture(
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absPath(_sourceFiles[i]),
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2
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);
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_textureFiles[i]->setInternalFormat(GL_COMPRESSED_RGBA);
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_textureFiles[i]->uploadTexture();
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_textureFiles[i]->setFilter(ghoul::opengl::Texture::FilterMode::Linear);
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_textureFiles[i]->purgeFromRAM();
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}
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if (!_isLoadingLazily) {
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_texture = loadTexture();
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}
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}
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bool RenderablePlaneTimeVaryingImage::extractMandatoryInfoFromDictionary() {
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// Ensure that the source folder exists and then extract
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// the files with the same extension as <inputFileTypeString>
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namespace fs = std::filesystem;
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const fs::path sourceFolder = absPath(_sourceFolder);
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// Extract all file paths from the provided folder
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_sourceFiles.clear();
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namespace fs = std::filesystem;
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for (const fs::directory_entry& e : fs::directory_iterator(sourceFolder)) {
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if (e.is_regular_file()) {
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_sourceFiles.push_back(e.path());
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}
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}
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std::sort(_sourceFiles.begin(), _sourceFiles.end());
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// Ensure that there are available and valid source files left
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if (_sourceFiles.empty()) {
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LERROR(std::format(
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"{}: Plane sequence filepath '{}' was empty",
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_identifier, _sourceFolder.value()
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));
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return false;
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}
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return true;
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}
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void RenderablePlaneTimeVaryingImage::deinitializeGL() {
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BaseModule::TextureManager.release(_texture);
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_textureFiles.clear();
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RenderablePlane::deinitializeGL();
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}
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void RenderablePlaneTimeVaryingImage::bindTexture() {
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if (_texture && !_textureIsDirty) {
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_texture->bind();
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}
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}
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void RenderablePlaneTimeVaryingImage::update(const UpdateData& data) {
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ZoneScoped;
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RenderablePlane::update(data);
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if (!_enabled || _startTimes.empty()) {
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return;
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}
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bool needsUpdate = false;
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const double currentTime = data.time.j2000Seconds();
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const bool isInInterval = (currentTime >= _startTimes[0]) &&
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(currentTime < _sequenceEndTime);
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if (isInInterval) {
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const size_t nextIdx = _activeTriggerTimeIndex + 1;
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if (
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// true => we were not in an interval the previous frame but now we are
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_activeTriggerTimeIndex == -1 ||
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// true => We stepped back to a time represented by another state
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currentTime < _startTimes[_activeTriggerTimeIndex] ||
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// true => We stepped forward to a time represented by another state
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(nextIdx < _sourceFiles.size() && currentTime >= _startTimes[nextIdx]))
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{
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_activeTriggerTimeIndex = updateActiveTriggerTimeIndex(currentTime);
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needsUpdate = true;
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} // else we're still in same state as previous frame (no changes needed)
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}
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else {
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// not in interval => set everything to false
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_activeTriggerTimeIndex = -1;
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needsUpdate = false;
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}
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if (needsUpdate || _textureIsDirty) {
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_texture = loadTexture();
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_textureIsDirty = false;
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}
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}
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void RenderablePlaneTimeVaryingImage::render(const RenderData& data, RendererTasks& t) {
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if (!_startTimes.empty() &&
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data.time.j2000Seconds() < _sequenceEndTime &&
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data.time.j2000Seconds() > _startTimes[0])
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{
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glDisable(GL_CULL_FACE);
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RenderablePlane::render(data, t);
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}
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}
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// Requires time to be formated as such: 'YYYY-MM-DDTHH-MM-SS-XXX'
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void RenderablePlaneTimeVaryingImage::extractTriggerTimesFromFileNames() {
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for (const std::filesystem::path& filePath : _sourceFiles) {
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// Extract the filename from the path (without extension)
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std::string timeString = filePath.stem().string();
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// Ensure the separators are correct
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timeString.replace(4, 1, "-");
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timeString.replace(7, 1, "-");
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timeString.replace(13, 1, ":");
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timeString.replace(16, 1, ":");
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timeString.replace(19, 1, ".");
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const double triggerTime = Time::convertTime(timeString);
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_startTimes.push_back(triggerTime);
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}
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}
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int RenderablePlaneTimeVaryingImage::updateActiveTriggerTimeIndex(
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double currentTime) const
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{
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int activeIndex = 0;
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auto iter = std::upper_bound(_startTimes.begin(), _startTimes.end(), currentTime);
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if (iter != _startTimes.end()) {
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if (iter != _startTimes.begin()) {
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const std::ptrdiff_t idx = std::distance(_startTimes.begin(), iter);
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activeIndex = static_cast<int>(idx) - 1;
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}
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else {
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activeIndex = 0;
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}
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}
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else {
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activeIndex = static_cast<int>(_sourceFiles.size() - 1);
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}
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return activeIndex;
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}
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void RenderablePlaneTimeVaryingImage::computeSequenceEndTime() {
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if (_sourceFiles.size() > 1) {
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const double lastTriggerTime = _startTimes[_sourceFiles.size() - 1];
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const double sequenceDuration = lastTriggerTime - _startTimes[0];
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const double averageStateDuration = sequenceDuration /
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static_cast<double>(_sourceFiles.size() - 1);
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_sequenceEndTime = lastTriggerTime + averageStateDuration;
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}
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}
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ghoul::opengl::Texture* RenderablePlaneTimeVaryingImage::loadTexture() const {
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ghoul::opengl::Texture* texture = nullptr;
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if (_activeTriggerTimeIndex != -1) {
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texture = _textureFiles[_activeTriggerTimeIndex].get();
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}
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return texture;
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}
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} // namespace openspace
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