f9becf8085
At the moment, despite the protocol supporting it, we were not feeding the EDIDs. KScreen was falling back to the output name so it didn't fail horribly but it's still a good idea to provide all the data.
274 lines
7.7 KiB
C++
274 lines
7.7 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: 2015 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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#include "fb_backend.h"
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#include "composite.h"
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#include "logging.h"
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#include "logind.h"
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#include "scene_qpainter_fb_backend.h"
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#include "outputscreens.h"
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#include "virtual_terminal.h"
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#include "udev.h"
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// system
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#include <fcntl.h>
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#include <unistd.h>
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#include <sys/ioctl.h>
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#include <sys/mman.h>
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// Linux
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#include <linux/fb.h>
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namespace KWin
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{
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FramebufferOutput::FramebufferOutput(QObject *parent):
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AbstractWaylandOutput(parent)
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{
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setName("FB-0");
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}
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void FramebufferOutput::init(const QSize &pixelSize, const QSize &physicalSize)
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{
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KWaylandServer::OutputDeviceInterface::Mode mode;
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mode.id = 0;
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mode.size = pixelSize;
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mode.flags = KWaylandServer::OutputDeviceInterface::ModeFlag::Current;
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mode.refreshRate = 60000; // TODO: get actual refresh rate of fb device?
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initInterfaces("model_TODO", "manufacturer_TODO", "UUID_TODO", physicalSize, { mode }, {});
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}
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FramebufferBackend::FramebufferBackend(QObject *parent)
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: Platform(parent)
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{
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}
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FramebufferBackend::~FramebufferBackend()
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{
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unmap();
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if (m_fd >= 0) {
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close(m_fd);
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}
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}
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Screens *FramebufferBackend::createScreens(QObject *parent)
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{
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return new OutputScreens(this, parent);
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}
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QPainterBackend *FramebufferBackend::createQPainterBackend()
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{
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return new FramebufferQPainterBackend(this);
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}
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void FramebufferBackend::init()
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{
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setSoftwareCursorForced(true);
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LogindIntegration *logind = LogindIntegration::self();
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auto takeControl = [logind, this]() {
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if (logind->hasSessionControl()) {
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openFrameBuffer();
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} else {
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logind->takeControl();
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connect(logind, &LogindIntegration::hasSessionControlChanged, this, &FramebufferBackend::openFrameBuffer);
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}
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};
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if (logind->isConnected()) {
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takeControl();
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} else {
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connect(logind, &LogindIntegration::connectedChanged, this, takeControl);
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}
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VirtualTerminal::create(this);
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}
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void FramebufferBackend::openFrameBuffer()
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{
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VirtualTerminal::self()->init();
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QString framebufferDevice = deviceIdentifier().constData();
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if (framebufferDevice.isEmpty()) {
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framebufferDevice = QString(Udev().listFramebuffers().at(0)->devNode());
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}
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int fd = LogindIntegration::self()->takeDevice(framebufferDevice.toUtf8().constData());
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qCDebug(KWIN_FB) << "Using frame buffer device:" << framebufferDevice;
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if (fd < 0) {
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qCWarning(KWIN_FB) << "Failed to open frame buffer device:" << framebufferDevice << "through logind, trying without";
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}
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fd = open(framebufferDevice.toUtf8().constData(), O_RDWR | O_CLOEXEC);
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if (fd < 0) {
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qCWarning(KWIN_FB) << "failed to open frame buffer device:" << framebufferDevice;
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emit initFailed();
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return;
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}
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m_fd = fd;
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if (!handleScreenInfo()) {
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qCWarning(KWIN_FB) << "failed to handle framebuffer information";
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emit initFailed();
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return;
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}
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initImageFormat();
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if (m_imageFormat == QImage::Format_Invalid) {
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emit initFailed();
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return;
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}
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setReady(true);
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emit screensQueried();
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}
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bool FramebufferBackend::handleScreenInfo()
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{
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if (m_fd < 0) {
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return false;
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}
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fb_var_screeninfo varinfo;
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fb_fix_screeninfo fixinfo;
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// Probe the device for screen information.
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if (ioctl(m_fd, FBIOGET_FSCREENINFO, &fixinfo) < 0 || ioctl(m_fd, FBIOGET_VSCREENINFO, &varinfo) < 0) {
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return false;
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}
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// Activate the framebuffer device, assuming this is a non-primary framebuffer device
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varinfo.activate = FB_ACTIVATE_NOW | FB_ACTIVATE_FORCE;
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ioctl(m_fd, FBIOPUT_VSCREENINFO, &varinfo);
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// Probe the device for new screen information.
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if (ioctl(m_fd, FBIOGET_VSCREENINFO, &varinfo) < 0) {
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return false;
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}
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auto *output = new FramebufferOutput(this);
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output->init(QSize(varinfo.xres, varinfo.yres), QSize(varinfo.width, varinfo.height));
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m_outputs << output;
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m_id = QByteArray(fixinfo.id);
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m_red = {varinfo.red.offset, varinfo.red.length};
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m_green = {varinfo.green.offset, varinfo.green.length};
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m_blue = {varinfo.blue.offset, varinfo.blue.length};
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m_alpha = {varinfo.transp.offset, varinfo.transp.length};
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m_bitsPerPixel = varinfo.bits_per_pixel;
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m_bufferLength = fixinfo.smem_len;
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m_bytesPerLine = fixinfo.line_length;
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return true;
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}
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void FramebufferBackend::map()
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{
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if (m_memory) {
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// already mapped;
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return;
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}
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if (m_fd < 0) {
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// not valid
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return;
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}
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void *mem = mmap(nullptr, m_bufferLength, PROT_WRITE, MAP_SHARED, m_fd, 0);
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if (mem == MAP_FAILED) {
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qCWarning(KWIN_FB) << "Failed to mmap frame buffer";
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return;
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}
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m_memory = mem;
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}
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void FramebufferBackend::unmap()
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{
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if (!m_memory) {
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return;
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}
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if (munmap(m_memory, m_bufferLength) < 0) {
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qCWarning(KWIN_FB) << "Failed to munmap frame buffer";
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}
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m_memory = nullptr;
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}
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QSize FramebufferBackend::screenSize() const
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{
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if (m_outputs.isEmpty()) {
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return QSize();
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}
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return m_outputs[0]->pixelSize();
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}
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QImage::Format FramebufferBackend::imageFormat() const
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{
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return m_imageFormat;
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}
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void FramebufferBackend::initImageFormat()
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{
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if (m_fd < 0) {
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return;
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}
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qCDebug(KWIN_FB) << "Bits Per Pixel: " << m_bitsPerPixel;
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qCDebug(KWIN_FB) << "Buffer Length: " << m_bufferLength;
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qCDebug(KWIN_FB) << "Bytes Per Line: " << m_bytesPerLine;
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qCDebug(KWIN_FB) << "Alpha Length: " << m_alpha.length;
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qCDebug(KWIN_FB) << "Red Length: " << m_red.length;
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qCDebug(KWIN_FB) << "Green Length: " << m_green.length;
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qCDebug(KWIN_FB) << "Blue Length: " << m_blue.length;
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qCDebug(KWIN_FB) << "Blue Offset: " << m_blue.offset;
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qCDebug(KWIN_FB) << "Green Offset: " << m_green.offset;
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qCDebug(KWIN_FB) << "Red Offset: " << m_red.offset;
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qCDebug(KWIN_FB) << "Alpha Offset: " << m_alpha.offset;
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if (m_bitsPerPixel == 32 &&
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m_red.length == 8 &&
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m_green.length == 8 &&
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m_blue.length == 8 &&
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m_blue.offset == 0 &&
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m_green.offset == 8 &&
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m_red.offset == 16) {
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qCDebug(KWIN_FB) << "Framebuffer format is RGB32";
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m_imageFormat = QImage::Format_RGB32;
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} else if (m_bitsPerPixel == 32 &&
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m_red.length == 8 &&
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m_green.length == 8 &&
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m_blue.length == 8 &&
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m_alpha.length == 8 &&
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m_red.offset == 0 &&
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m_green.offset == 8 &&
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m_blue.offset == 16 &&
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m_alpha.offset == 24) {
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qCDebug(KWIN_FB) << "Framebuffer format is RGBA8888";
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m_imageFormat = QImage::Format_RGBA8888;
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} else if (m_bitsPerPixel == 24 &&
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m_red.length == 8 &&
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m_green.length == 8 &&
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m_blue.length == 8 &&
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m_blue.offset == 0 &&
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m_green.offset == 8 &&
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m_red.offset == 16) {
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qCDebug(KWIN_FB) << "Framebuffer Format is RGB888";
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m_bgr = true;
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m_imageFormat = QImage::Format_RGB888;
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} else if (m_bitsPerPixel == 16 &&
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m_red.length == 5 &&
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m_green.length == 6 &&
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m_blue.length == 5 &&
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m_blue.offset == 0 &&
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m_green.offset == 5 &&
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m_red.offset == 11) {
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qCDebug(KWIN_FB) << "Framebuffer Format is RGB16";
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m_imageFormat = QImage::Format_RGB16;
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} else {
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qCWarning(KWIN_FB) << "Framebuffer format is unknown";
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}
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}
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Outputs FramebufferBackend::outputs() const
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{
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return m_outputs;
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}
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Outputs FramebufferBackend::enabledOutputs() const
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{
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return m_outputs;
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}
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}
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