b8a70e62d5
At the moment, our frame scheduling infrastructure is still heavily based on Xinerama-style rendering. Specifically, we assume that painting is driven by a single timer, etc. This change introduces a new type - RenderLoop. Its main purpose is to drive compositing on a specific output, or in case of X11, on the overlay window. With RenderLoop, compositing is synchronized to vblank events. It exposes the last and the next estimated presentation timestamp. The expected presentation timestamp can be used by effects to ensure that animations are synchronized with the upcoming vblank event. On Wayland, every outputs has its own render loop. On X11, per screen rendering is not possible, therefore the platform exposes the render loop for the overlay window. Ideally, the Scene has to expose the RenderLoop, but as the first step towards better compositing scheduling it's good as is for the time being. The RenderLoop tries to minimize the latency by delaying compositing as close as possible to the next vblank event. One tricky thing about it is that if compositing is too close to the next vblank event, animations may become a little bit choppy. However, increasing the latency reduces the choppiness. Given that, there is no any "silver bullet" solution for the choppiness issue, a new option has been added in the Compositing KCM to specify the amount of latency. By default, it's "Medium," but if a user is not satisfied with the upstream default, they can tweak it.
332 lines
9.5 KiB
C++
332 lines
9.5 KiB
C++
/*
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KWin - the KDE window manager
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This file is part of the KDE project.
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SPDX-FileCopyrightText: 2006 Lubos Lunak <l.lunak@kde.org>
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SPDX-FileCopyrightText: 2009, 2010, 2011 Martin Gräßlin <mgraesslin@kde.org>
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SPDX-License-Identifier: GPL-2.0-or-later
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*/
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#ifndef KWIN_SCENE_OPENGL_H
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#define KWIN_SCENE_OPENGL_H
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#include "scene.h"
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#include "shadow.h"
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#include "kwinglutils.h"
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#include "decorations/decorationrenderer.h"
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#include "platformsupport/scenes/opengl/backend.h"
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namespace KWin
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{
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class LanczosFilter;
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class OpenGLBackend;
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class SyncManager;
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class SyncObject;
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class KWIN_EXPORT SceneOpenGL
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: public Scene
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{
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Q_OBJECT
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public:
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class EffectFrame;
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~SceneOpenGL() override;
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bool initFailed() const override;
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void paint(int screenId, const QRegion &damage, const QList<Toplevel *> &windows,
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std::chrono::milliseconds presentTime) override;
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Scene::EffectFrame *createEffectFrame(EffectFrameImpl *frame) override;
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Shadow *createShadow(Toplevel *toplevel) override;
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void screenGeometryChanged(const QSize &size) override;
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OverlayWindow *overlayWindow() const override;
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bool usesOverlayWindow() const override;
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bool makeOpenGLContextCurrent() override;
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void doneOpenGLContextCurrent() override;
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bool supportsSurfacelessContext() const override;
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bool supportsNativeFence() const override;
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Decoration::Renderer *createDecorationRenderer(Decoration::DecoratedClientImpl *impl) override;
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void triggerFence() override;
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virtual QMatrix4x4 projectionMatrix() const = 0;
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bool animationsSupported() const override;
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void insertWait();
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bool debug() const { return m_debug; }
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void initDebugOutput();
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/**
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* @brief Factory method to create a backend specific texture.
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*
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* @return :SceneOpenGL::Texture*
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*/
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SceneOpenGLTexture *createTexture();
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OpenGLBackend *backend() const {
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return m_backend;
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}
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QVector<QByteArray> openGLPlatformInterfaceExtensions() const override;
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QSharedPointer<GLTexture> textureForOutput(AbstractOutput *output) const override;
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static SceneOpenGL *createScene(QObject *parent);
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protected:
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SceneOpenGL(OpenGLBackend *backend, QObject *parent = nullptr);
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void paintBackground(const QRegion ®ion) override;
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void aboutToStartPainting(int screenId, const QRegion &damage) override;
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void extendPaintRegion(QRegion ®ion, bool opaqueFullscreen) override;
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QMatrix4x4 transformation(int mask, const ScreenPaintData &data) const;
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void paintDesktop(int desktop, int mask, const QRegion ®ion, ScreenPaintData &data) override;
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void paintEffectQuickView(EffectQuickView *w) override;
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void handleGraphicsReset(GLenum status);
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virtual void doPaintBackground(const QVector<float> &vertices) = 0;
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virtual void updateProjectionMatrix() = 0;
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protected:
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bool init_ok;
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private:
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bool viewportLimitsMatched(const QSize &size) const;
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private:
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bool m_resetOccurred = false;
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bool m_debug;
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OpenGLBackend *m_backend;
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SyncManager *m_syncManager;
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SyncObject *m_currentFence;
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};
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class SceneOpenGL2 : public SceneOpenGL
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{
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Q_OBJECT
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public:
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explicit SceneOpenGL2(OpenGLBackend *backend, QObject *parent = nullptr);
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~SceneOpenGL2() override;
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CompositingType compositingType() const override {
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return OpenGL2Compositing;
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}
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static bool supported(OpenGLBackend *backend);
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QMatrix4x4 projectionMatrix() const override { return m_projectionMatrix; }
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QMatrix4x4 screenProjectionMatrix() const override { return m_screenProjectionMatrix; }
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protected:
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void paintSimpleScreen(int mask, const QRegion ®ion) override;
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void paintGenericScreen(int mask, const ScreenPaintData &data) override;
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void doPaintBackground(const QVector< float >& vertices) override;
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Scene::Window *createWindow(Toplevel *t) override;
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void finalDrawWindow(EffectWindowImpl* w, int mask, const QRegion ®ion, WindowPaintData& data) override;
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void updateProjectionMatrix() override;
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void paintCursor(const QRegion ®ion) override;
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private:
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void performPaintWindow(EffectWindowImpl* w, int mask, const QRegion ®ion, WindowPaintData& data);
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QMatrix4x4 createProjectionMatrix() const;
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private:
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LanczosFilter *m_lanczosFilter;
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QScopedPointer<GLTexture> m_cursorTexture;
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QMatrix4x4 m_projectionMatrix;
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QMatrix4x4 m_screenProjectionMatrix;
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GLuint vao;
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};
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class OpenGLWindowPixmap;
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class OpenGLWindow final : public Scene::Window
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{
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Q_OBJECT
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public:
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enum Leaf { ShadowLeaf, DecorationLeaf, ContentLeaf, PreviousContentLeaf };
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struct RenderNode
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{
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RenderNode()
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: texture(nullptr)
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, firstVertex(0)
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, vertexCount(0)
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, opacity(1.0)
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, hasAlpha(false)
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, coordinateType(UnnormalizedCoordinates)
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{
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}
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GLTexture *texture;
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WindowQuadList quads;
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int firstVertex;
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int vertexCount;
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float opacity;
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bool hasAlpha;
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TextureCoordinateType coordinateType;
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Leaf leafType;
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};
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struct RenderContext
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{
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QVector<RenderNode> renderNodes;
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int shadowOffset = 0;
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int decorationOffset = 0;
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int contentOffset = 0;
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int previousContentOffset = 0;
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int quadCount = 0;
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};
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OpenGLWindow(Toplevel *toplevel, SceneOpenGL *scene);
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~OpenGLWindow() override;
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WindowPixmap *createWindowPixmap() override;
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void performPaint(int mask, const QRegion ®ion, const WindowPaintData &data) override;
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QSharedPointer<GLTexture> windowTexture() override;
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private:
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QMatrix4x4 transformation(int mask, const WindowPaintData &data) const;
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GLTexture *getDecorationTexture() const;
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QMatrix4x4 modelViewProjectionMatrix(int mask, const WindowPaintData &data) const;
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QVector4D modulate(float opacity, float brightness) const;
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void setBlendEnabled(bool enabled);
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void initializeRenderContext(RenderContext &context, const WindowPaintData &data);
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bool beginRenderWindow(int mask, const QRegion ®ion, WindowPaintData &data);
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void endRenderWindow();
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bool bindTexture();
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SceneOpenGL *m_scene;
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bool m_hardwareClipping = false;
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bool m_blendingEnabled = false;
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};
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class OpenGLWindowPixmap : public WindowPixmap
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{
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public:
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explicit OpenGLWindowPixmap(Scene::Window *window, SceneOpenGL *scene);
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~OpenGLWindowPixmap() override;
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SceneOpenGLTexture *texture() const;
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bool bind();
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bool isValid() const override;
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protected:
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WindowPixmap *createChild(KWaylandServer::SubSurfaceInterface *subSurface) override;
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private:
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explicit OpenGLWindowPixmap(KWaylandServer::SubSurfaceInterface *subSurface, WindowPixmap *parent, SceneOpenGL *scene);
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QScopedPointer<SceneOpenGLTexture> m_texture;
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SceneOpenGL *m_scene;
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};
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class SceneOpenGL::EffectFrame
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: public Scene::EffectFrame
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{
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public:
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EffectFrame(EffectFrameImpl* frame, SceneOpenGL *scene);
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~EffectFrame() override;
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void free() override;
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void freeIconFrame() override;
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void freeTextFrame() override;
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void freeSelection() override;
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void render(const QRegion ®ion, double opacity, double frameOpacity) override;
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void crossFadeIcon() override;
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void crossFadeText() override;
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static void cleanup();
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private:
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void updateTexture();
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void updateTextTexture();
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GLTexture *m_texture;
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GLTexture *m_textTexture;
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GLTexture *m_oldTextTexture;
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QPixmap *m_textPixmap; // need to keep the pixmap around to workaround some driver problems
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GLTexture *m_iconTexture;
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GLTexture *m_oldIconTexture;
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GLTexture *m_selectionTexture;
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GLVertexBuffer *m_unstyledVBO;
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SceneOpenGL *m_scene;
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static GLTexture* m_unstyledTexture;
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static QPixmap* m_unstyledPixmap; // need to keep the pixmap around to workaround some driver problems
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static void updateUnstyledTexture(); // Update OpenGL unstyled frame texture
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};
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/**
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* @short OpenGL implementation of Shadow.
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*
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* This class extends Shadow by the Elements required for OpenGL rendering.
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* @author Martin Gräßlin <mgraesslin@kde.org>
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*/
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class SceneOpenGLShadow
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: public Shadow
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{
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public:
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explicit SceneOpenGLShadow(Toplevel *toplevel);
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~SceneOpenGLShadow() override;
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GLTexture *shadowTexture() {
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return m_texture.data();
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}
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protected:
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void buildQuads() override;
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bool prepareBackend() override;
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private:
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QSharedPointer<GLTexture> m_texture;
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};
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class SceneOpenGLDecorationRenderer : public Decoration::Renderer
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{
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Q_OBJECT
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public:
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enum class DecorationPart : int {
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Left,
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Top,
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Right,
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Bottom,
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Count
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};
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explicit SceneOpenGLDecorationRenderer(Decoration::DecoratedClientImpl *client);
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~SceneOpenGLDecorationRenderer() override;
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void render() override;
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void reparent(Deleted *deleted) override;
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GLTexture *texture() {
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return m_texture.data();
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}
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GLTexture *texture() const {
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return m_texture.data();
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}
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private:
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void resizeTexture();
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QScopedPointer<GLTexture> m_texture;
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};
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inline bool SceneOpenGL::usesOverlayWindow() const
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{
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return m_backend->usesOverlayWindow();
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}
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inline SceneOpenGLTexture* OpenGLWindowPixmap::texture() const
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{
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return m_texture.data();
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}
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class KWIN_EXPORT OpenGLFactory : public SceneFactory
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{
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Q_OBJECT
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Q_INTERFACES(KWin::SceneFactory)
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Q_PLUGIN_METADATA(IID "org.kde.kwin.Scene" FILE "opengl.json")
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public:
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explicit OpenGLFactory(QObject *parent = nullptr);
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~OpenGLFactory() override;
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Scene *create(QObject *parent = nullptr) const override;
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};
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} // namespace
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#endif
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