Addresses a flaw where if the user changed the OCIO "display", Olive wouldn't check whether the currently selected "view" still existed in the new display or not which would create an invalid color processor if not. This commit now checks whether the new display contains the current view, and sets the default view for the new display if not.
325 lines
8.4 KiB
C++
325 lines
8.4 KiB
C++
/***
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Olive - Non-Linear Video Editor
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Copyright (C) 2019 Olive Team
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program 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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GNU General Public License for more details.
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You should have received a copy of the 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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#include "viewerglwidget.h"
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#include <OpenImageIO/imagebuf.h>
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#include <QFileInfo>
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#include <QMessageBox>
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#include <QOpenGLContext>
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#include <QOpenGLFunctions>
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#include <QOpenGLTexture>
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#include "common/define.h"
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#include "render/backend/opengl/openglrenderfunctions.h"
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#include "render/backend/opengl/openglshader.h"
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#include "render/pixelformat.h"
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#ifdef Q_OS_LINUX
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bool ViewerGLWidget::nouveau_check_done_ = false;
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#endif
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ViewerGLWidget::ViewerGLWidget(QWidget *parent) :
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QOpenGLWidget(parent),
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color_manager_(nullptr),
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has_image_(false)
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{
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setContextMenuPolicy(Qt::CustomContextMenu);
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}
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ViewerGLWidget::~ViewerGLWidget()
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{
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ContextCleanup();
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}
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void ViewerGLWidget::ConnectColorManager(ColorManager *color_manager)
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{
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if (color_manager_ != nullptr) {
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disconnect(color_manager_, SIGNAL(ConfigChanged()), this, SLOT(RefreshColorPipeline()));
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}
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color_manager_ = color_manager;
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if (color_manager_ != nullptr) {
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connect(color_manager_, SIGNAL(ConfigChanged()), this, SLOT(RefreshColorPipeline()));
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}
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RefreshColorPipeline();
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}
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void ViewerGLWidget::DisconnectColorManager()
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{
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ConnectColorManager(nullptr);
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}
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void ViewerGLWidget::SetMatrix(const QMatrix4x4 &mat)
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{
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matrix_ = mat;
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update();
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}
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void ViewerGLWidget::SetImage(const QString &fn)
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{
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has_image_ = false;
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if (!fn.isEmpty()) {
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auto input = OIIO::ImageInput::open(fn.toStdString());
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if (input) {
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PixelFormat::Format image_format = PixelFormat::OIIOFormatToOliveFormat(input->spec().format,
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input->spec().nchannels == kRGBAChannels);
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// Ensure the following texture operations are done in our context (in case we're in a separate window for instance)
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makeCurrent();
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if (!texture_.IsCreated()
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|| texture_.width() != input->spec().width
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|| texture_.height() != input->spec().height
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|| texture_.format() != image_format) {
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load_buffer_.destroy();
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texture_.Destroy();
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load_buffer_.set_width(input->spec().width);
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load_buffer_.set_height(input->spec().height);
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load_buffer_.set_format(image_format);
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load_buffer_.allocate();
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texture_.Create(context(), input->spec().width, input->spec().height, image_format);
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}
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input->read_image(input->spec().format, load_buffer_.data());
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input->close();
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texture_.Upload(load_buffer_.data());
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doneCurrent();
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has_image_ = true;
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#if OIIO_VERSION < 10903
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OIIO::ImageInput::destroy(input);
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#endif
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} else {
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qWarning() << "OIIO Error:" << OIIO::geterror().c_str();
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}
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}
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update();
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}
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void ViewerGLWidget::SetOCIODisplay(const QString &display)
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{
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ocio_display_ = display;
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// Determine if the selected view is available in this display
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if (color_manager_
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&& !color_manager_->ListAvailableViews(ocio_display_).contains(ocio_view_)) {
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// If not, set to the default view for this display
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ocio_view_ = color_manager_->GetDefaultView(ocio_display_);
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}
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SetupColorProcessor();
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update();
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}
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void ViewerGLWidget::SetOCIOView(const QString &view)
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{
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ocio_view_ = view;
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SetupColorProcessor();
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update();
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}
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void ViewerGLWidget::SetOCIOLook(const QString &look)
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{
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ocio_look_ = look;
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SetupColorProcessor();
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update();
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}
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ColorManager *ViewerGLWidget::color_manager() const
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{
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return color_manager_;
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}
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const QString &ViewerGLWidget::ocio_display() const
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{
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return ocio_display_;
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}
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const QString &ViewerGLWidget::ocio_view() const
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{
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return ocio_view_;
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}
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const QString &ViewerGLWidget::ocio_look() const
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{
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return ocio_look_;
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}
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void ViewerGLWidget::mousePressEvent(QMouseEvent *event)
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{
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QOpenGLWidget::mousePressEvent(event);
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emit DragStarted();
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}
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void ViewerGLWidget::SetOCIOParameters(const QString &display, const QString &view, const QString &look)
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{
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ocio_display_ = display;
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ocio_view_ = view;
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ocio_look_ = look;
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SetupColorProcessor();
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update();
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}
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void ViewerGLWidget::initializeGL()
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{
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SetupColorProcessor();
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connect(context(), SIGNAL(aboutToBeDestroyed()), this, SLOT(ContextCleanup()), Qt::DirectConnection);
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#ifdef Q_OS_LINUX
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if (!nouveau_check_done_) {
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const char* vendor = reinterpret_cast<const char*>(context()->functions()->glGetString(GL_VENDOR));
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if (!strcmp(vendor, "nouveau")) {
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// Working with Qt widgets in this function segfaults, so we queue the messagebox for later
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QMetaObject::invokeMethod(this,
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"ShowNouveauWarning",
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Qt::QueuedConnection);
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}
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nouveau_check_done_ = true;
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}
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#endif
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}
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void ViewerGLWidget::paintGL()
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{
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// Get functions attached to this context (they will already be initialized)
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QOpenGLFunctions* f = context()->functions();
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// Clear background to empty
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f->glClearColor(0.0f, 0.0f, 0.0f, 0.0f);
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f->glClear(GL_COLOR_BUFFER_BIT);
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// We only draw if we have a pipeline
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if (!has_image_ || !color_service_ || !texture_.IsCreated()) {
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return;
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}
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// Bind retrieved texture
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f->glBindTexture(GL_TEXTURE_2D, texture_.texture());
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// Blit using the color service
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color_service_->ProcessOpenGL(true, matrix_);
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// Release retrieved texture
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f->glBindTexture(GL_TEXTURE_2D, 0);
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}
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void ViewerGLWidget::RefreshColorPipeline()
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{
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if (!color_manager_) {
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color_service_ = nullptr;
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return;
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}
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QStringList displays = color_manager_->ListAvailableDisplays();
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if (!displays.contains(ocio_display_)) {
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ocio_display_ = color_manager_->GetDefaultDisplay();
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}
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QStringList views = color_manager_->ListAvailableViews(ocio_display_);
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if (!views.contains(ocio_view_)) {
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ocio_view_ = color_manager_->GetDefaultView(ocio_display_);
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}
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QStringList looks = color_manager_->ListAvailableLooks();
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if (!looks.contains(ocio_look_)) {
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ocio_look_.clear();
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}
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SetupColorProcessor();
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update();
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}
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#ifdef Q_OS_LINUX
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void ViewerGLWidget::ShowNouveauWarning()
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{
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QMessageBox::warning(this,
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tr("Driver Warning"),
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tr("Olive has detected your system is using the Nouveau graphics driver.\n\nThis driver is "
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"known to have stability and performance issues with Olive. It is highly recommended "
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"you install the proprietary NVIDIA driver before continuing to use Olive."),
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QMessageBox::Ok);
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}
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#endif
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void ViewerGLWidget::SetupColorProcessor()
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{
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if (!context()) {
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return;
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}
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color_service_ = nullptr;
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if (color_manager_) {
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// (Re)create color processor
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try {
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ColorProcessorPtr new_service = ColorProcessor::Create(color_manager_->GetConfig(),
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OCIO::ROLE_SCENE_LINEAR,
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ocio_display_,
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ocio_view_,
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ocio_look_);
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color_service_ = OpenGLColorProcessor::Create(color_manager_->GetConfig(),
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OCIO::ROLE_SCENE_LINEAR,
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ocio_display_,
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ocio_view_,
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ocio_look_);
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color_service_->Enable(context(), true);
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} catch (OCIO::Exception& e) {
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QMessageBox::critical(this,
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tr("OpenColorIO Error"),
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tr("Failed to set color configuration: %1").arg(e.what()),
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QMessageBox::Ok);
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}
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} else {
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color_service_ = nullptr;
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}
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}
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void ViewerGLWidget::ContextCleanup()
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{
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makeCurrent();
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color_service_ = nullptr;
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texture_.Destroy();
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doneCurrent();
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}
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