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619 lines
20 KiB
619 lines
20 KiB
/******************************************************************** |
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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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Copyright (C) 2015 Martin Gräßlin <mgraesslin@kde.org> |
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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 2 of the License, or |
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(at your option) any later version. |
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|
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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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|
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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 "drm_output.h" |
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#include "drm_backend.h" |
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|
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#include "composite.h" |
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#include "logind.h" |
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#include "logging.h" |
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#include "main.h" |
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#include "screens_drm.h" |
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#include "wayland_server.h" |
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// KWayland |
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#include <KWayland/Server/display.h> |
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#include <KWayland/Server/output_interface.h> |
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#include <KWayland/Server/outputchangeset.h> |
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#include <KWayland/Server/outputdevice_interface.h> |
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#include <KWayland/Server/outputmanagement_interface.h> |
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#include <KWayland/Server/outputconfiguration_interface.h> |
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// KF5 |
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#include <KConfigGroup> |
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#include <KLocalizedString> |
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#include <KSharedConfig> |
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// Qt |
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#include <QCryptographicHash> |
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// drm |
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#include <xf86drm.h> |
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#include <xf86drmMode.h> |
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#include <libdrm/drm_mode.h> |
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namespace KWin |
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{ |
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|
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DrmOutput::DrmOutput(DrmBackend *backend) |
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: QObject() |
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, m_backend(backend) |
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{ |
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} |
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|
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DrmOutput::~DrmOutput() |
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{ |
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hideCursor(); |
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cleanupBlackBuffer(); |
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delete m_waylandOutput.data(); |
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delete m_waylandOutputDevice.data(); |
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} |
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|
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void DrmOutput::hideCursor() |
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{ |
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drmModeSetCursor(m_backend->fd(), m_crtcId, 0, 0, 0); |
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} |
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void DrmOutput::restoreSaved() |
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{ |
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if (!m_savedCrtc.isNull()) { |
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drmModeSetCrtc(m_backend->fd(), m_savedCrtc->crtc_id, m_savedCrtc->buffer_id, |
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m_savedCrtc->x, m_savedCrtc->y, &m_connector, 1, &m_savedCrtc->mode); |
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} |
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} |
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void DrmOutput::showCursor(DrmBuffer *c) |
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{ |
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const QSize &s = c->size(); |
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drmModeSetCursor(m_backend->fd(), m_crtcId, c->handle(), s.width(), s.height()); |
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} |
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|
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void DrmOutput::moveCursor(const QPoint &globalPos) |
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{ |
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const QPoint p = globalPos - m_globalPos; |
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drmModeMoveCursor(m_backend->fd(), m_crtcId, p.x(), p.y()); |
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} |
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|
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QSize DrmOutput::size() const |
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{ |
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return QSize(m_mode.hdisplay, m_mode.vdisplay); |
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} |
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|
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QRect DrmOutput::geometry() const |
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{ |
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return QRect(m_globalPos, size()); |
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} |
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bool DrmOutput::present(DrmBuffer *buffer) |
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{ |
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if (!buffer || buffer->bufferId() == 0) { |
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return false; |
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} |
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if (!LogindIntegration::self()->isActiveSession()) { |
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m_currentBuffer = buffer; |
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return false; |
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} |
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if (m_dpmsMode != DpmsMode::On) { |
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return false; |
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} |
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if (m_currentBuffer) { |
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return false; |
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} |
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if (m_lastStride != buffer->stride() || m_lastGbm != buffer->isGbm()) { |
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// need to set a new mode first |
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if (!setMode(buffer)) { |
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return false; |
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} |
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} |
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const bool ok = drmModePageFlip(m_backend->fd(), m_crtcId, buffer->bufferId(), DRM_MODE_PAGE_FLIP_EVENT, this) == 0; |
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if (ok) { |
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m_currentBuffer = buffer; |
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} else { |
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qCWarning(KWIN_DRM) << "Page flip failed"; |
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buffer->releaseGbm(); |
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} |
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return ok; |
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} |
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|
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void DrmOutput::pageFlipped() |
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{ |
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if (!m_currentBuffer) { |
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return; |
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} |
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m_currentBuffer->releaseGbm(); |
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m_currentBuffer = nullptr; |
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cleanupBlackBuffer(); |
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} |
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|
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void DrmOutput::cleanupBlackBuffer() |
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{ |
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if (m_blackBuffer) { |
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delete m_blackBuffer; |
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m_blackBuffer = nullptr; |
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} |
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} |
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static KWayland::Server::OutputInterface::DpmsMode toWaylandDpmsMode(DrmOutput::DpmsMode mode) |
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{ |
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using namespace KWayland::Server; |
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switch (mode) { |
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case DrmOutput::DpmsMode::On: |
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return OutputInterface::DpmsMode::On; |
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case DrmOutput::DpmsMode::Standby: |
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return OutputInterface::DpmsMode::Standby; |
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case DrmOutput::DpmsMode::Suspend: |
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return OutputInterface::DpmsMode::Suspend; |
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case DrmOutput::DpmsMode::Off: |
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return OutputInterface::DpmsMode::Off; |
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default: |
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Q_UNREACHABLE(); |
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} |
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} |
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static DrmOutput::DpmsMode fromWaylandDpmsMode(KWayland::Server::OutputInterface::DpmsMode wlMode) |
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{ |
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using namespace KWayland::Server; |
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switch (wlMode) { |
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case OutputInterface::DpmsMode::On: |
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return DrmOutput::DpmsMode::On; |
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case OutputInterface::DpmsMode::Standby: |
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return DrmOutput::DpmsMode::Standby; |
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case OutputInterface::DpmsMode::Suspend: |
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return DrmOutput::DpmsMode::Suspend; |
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case OutputInterface::DpmsMode::Off: |
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return DrmOutput::DpmsMode::Off; |
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default: |
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Q_UNREACHABLE(); |
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} |
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} |
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void DrmOutput::init(drmModeConnector *connector) |
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{ |
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initEdid(connector); |
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initDpms(connector); |
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initUuid(); |
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m_savedCrtc.reset(drmModeGetCrtc(m_backend->fd(), m_crtcId)); |
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blank(); |
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setDpms(DpmsMode::On); |
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if (!m_waylandOutput.isNull()) { |
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delete m_waylandOutput.data(); |
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m_waylandOutput.clear(); |
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} |
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m_waylandOutput = waylandServer()->display()->createOutput(); |
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if (!m_waylandOutputDevice.isNull()) { |
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delete m_waylandOutputDevice.data(); |
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m_waylandOutputDevice.clear(); |
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} |
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m_waylandOutputDevice = waylandServer()->display()->createOutputDevice(); |
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m_waylandOutputDevice->setUuid(m_uuid); |
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if (!m_edid.eisaId.isEmpty()) { |
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m_waylandOutput->setManufacturer(QString::fromLatin1(m_edid.eisaId)); |
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} else { |
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m_waylandOutput->setManufacturer(i18n("unknown")); |
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} |
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m_waylandOutputDevice->setManufacturer(m_waylandOutput->manufacturer()); |
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|
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if (!m_edid.monitorName.isEmpty()) { |
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QString model = QString::fromLatin1(m_edid.monitorName); |
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if (!m_edid.serialNumber.isEmpty()) { |
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model.append('/'); |
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model.append(QString::fromLatin1(m_edid.serialNumber)); |
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} |
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m_waylandOutput->setModel(model); |
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} else if (!m_edid.serialNumber.isEmpty()) { |
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m_waylandOutput->setModel(QString::fromLatin1(m_edid.serialNumber)); |
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} else { |
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m_waylandOutput->setModel(i18n("unknown")); |
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} |
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m_waylandOutputDevice->setModel(m_waylandOutput->model()); |
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QSize physicalSize = !m_edid.physicalSize.isEmpty() ? m_edid.physicalSize : QSize(connector->mmWidth, connector->mmHeight); |
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// the size might be completely borked. E.g. Samsung SyncMaster 2494HS reports 160x90 while in truth it's 520x292 |
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// as this information is used to calculate DPI info, it's going to result in everything being huge |
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const QByteArray unknown = QByteArrayLiteral("unkown"); |
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KConfigGroup group = kwinApp()->config()->group("EdidOverwrite").group(m_edid.eisaId.isEmpty() ? unknown : m_edid.eisaId) |
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.group(m_edid.monitorName.isEmpty() ? unknown : m_edid.monitorName) |
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.group(m_edid.serialNumber.isEmpty() ? unknown : m_edid.serialNumber); |
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if (group.hasKey("PhysicalSize")) { |
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const QSize overwriteSize = group.readEntry("PhysicalSize", physicalSize); |
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qCWarning(KWIN_DRM) << "Overwriting monitor physical size for" << m_edid.eisaId << "/" << m_edid.monitorName << "/" << m_edid.serialNumber << " from " << physicalSize << "to " << overwriteSize; |
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physicalSize = overwriteSize; |
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} |
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m_waylandOutput->setPhysicalSize(physicalSize); |
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m_waylandOutputDevice->setPhysicalSize(physicalSize); |
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|
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// read in mode information |
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for (int i = 0; i < connector->count_modes; ++i) { |
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auto *m = &connector->modes[i]; |
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KWayland::Server::OutputInterface::ModeFlags flags; |
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KWayland::Server::OutputDeviceInterface::ModeFlags deviceflags; |
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if (isCurrentMode(m)) { |
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flags |= KWayland::Server::OutputInterface::ModeFlag::Current; |
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deviceflags |= KWayland::Server::OutputDeviceInterface::ModeFlag::Current; |
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} |
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if (m->type & DRM_MODE_TYPE_PREFERRED) { |
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flags |= KWayland::Server::OutputInterface::ModeFlag::Preferred; |
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deviceflags |= KWayland::Server::OutputDeviceInterface::ModeFlag::Preferred; |
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} |
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// Calculate higher precision (mHz) refresh rate |
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// logic based on Weston, see compositor-drm.c |
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quint64 refreshRate = (m->clock * 1000000LL / m->htotal + m->vtotal / 2) / m->vtotal; |
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if (m->flags & DRM_MODE_FLAG_INTERLACE) { |
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refreshRate *= 2; |
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} |
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if (m->flags & DRM_MODE_FLAG_DBLSCAN) { |
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refreshRate /= 2; |
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} |
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if (m->vscan > 1) { |
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refreshRate /= m->vscan; |
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} |
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m_waylandOutput->addMode(QSize(m->hdisplay, m->vdisplay), flags, refreshRate); |
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KWayland::Server::OutputDeviceInterface::Mode mode; |
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mode.id = i; |
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mode.size = QSize(m->hdisplay, m->vdisplay); |
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mode.flags = deviceflags; |
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mode.refreshRate = refreshRate; |
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qCDebug(KWIN_DRM) << "Adding mode: " << i << mode.size; |
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m_waylandOutputDevice->addMode(mode); |
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} |
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// set dpms |
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if (!m_dpms.isNull()) { |
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m_waylandOutput->setDpmsSupported(true); |
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m_waylandOutput->setDpmsMode(toWaylandDpmsMode(m_dpmsMode)); |
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connect(m_waylandOutput.data(), &KWayland::Server::OutputInterface::dpmsModeRequested, this, |
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[this] (KWayland::Server::OutputInterface::DpmsMode mode) { |
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setDpms(fromWaylandDpmsMode(mode)); |
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}, Qt::QueuedConnection |
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); |
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} |
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m_waylandOutput->create(); |
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qCDebug(KWIN_DRM) << "Created OutputDevice"; |
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m_waylandOutputDevice->create(); |
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} |
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void DrmOutput::initUuid() |
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{ |
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QCryptographicHash hash(QCryptographicHash::Md5); |
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hash.addData(QByteArray::number(m_connector)); |
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hash.addData(m_edid.eisaId); |
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hash.addData(m_edid.monitorName); |
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hash.addData(m_edid.serialNumber); |
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m_uuid = hash.result().toHex().left(10); |
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} |
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bool DrmOutput::isCurrentMode(const drmModeModeInfo *mode) const |
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{ |
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return mode->clock == m_mode.clock |
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&& mode->hdisplay == m_mode.hdisplay |
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&& mode->hsync_start == m_mode.hsync_start |
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&& mode->hsync_end == m_mode.hsync_end |
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&& mode->htotal == m_mode.htotal |
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&& mode->hskew == m_mode.hskew |
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&& mode->vdisplay == m_mode.vdisplay |
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&& mode->vsync_start == m_mode.vsync_start |
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&& mode->vsync_end == m_mode.vsync_end |
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&& mode->vtotal == m_mode.vtotal |
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&& mode->vscan == m_mode.vscan |
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&& mode->vrefresh == m_mode.vrefresh |
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&& mode->flags == m_mode.flags |
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&& mode->type == m_mode.type |
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&& qstrcmp(mode->name, m_mode.name) == 0; |
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} |
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void DrmOutput::blank() |
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{ |
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if (!m_blackBuffer) { |
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m_blackBuffer = m_backend->createBuffer(size()); |
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m_blackBuffer->map(); |
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m_blackBuffer->image()->fill(Qt::black); |
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} |
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setMode(m_blackBuffer); |
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} |
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bool DrmOutput::setMode(DrmBuffer *buffer) |
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{ |
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if (drmModeSetCrtc(m_backend->fd(), m_crtcId, buffer->bufferId(), 0, 0, &m_connector, 1, &m_mode) == 0) { |
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m_lastStride = buffer->stride(); |
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m_lastGbm = buffer->isGbm(); |
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return true; |
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} else { |
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qCWarning(KWIN_DRM) << "Mode setting failed"; |
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return false; |
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} |
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} |
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static bool verifyEdidHeader(drmModePropertyBlobPtr edid) |
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{ |
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const uint8_t *data = reinterpret_cast<uint8_t*>(edid->data); |
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if (data[0] != 0x00) { |
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return false; |
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} |
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for (int i = 1; i < 7; ++i) { |
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if (data[i] != 0xFF) { |
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return false; |
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} |
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} |
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if (data[7] != 0x00) { |
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return false; |
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} |
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return true; |
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} |
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static QByteArray extractEisaId(drmModePropertyBlobPtr edid) |
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{ |
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/* |
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* From EDID standard section 3.4: |
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* The ID Manufacturer Name field, shown in Table 3.5, contains a 2-byte representation of the monitor's |
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* manufacturer. This is the same as the EISA ID. It is based on compressed ASCII, “0001=A” ... “11010=Z”. |
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* |
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* The table: |
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* | Byte | Bit | |
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* | | 7 | 6 | 5 | 4 | 3 | 2 | 1 | 0 | |
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* ---------------------------------------- |
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* | 1 | 0)| (4| 3 | 2 | 1 | 0)| (4| 3 | |
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* | | * | Character 1 | Char 2| |
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* ---------------------------------------- |
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* | 2 | 2 | 1 | 0)| (4| 3 | 2 | 1 | 0)| |
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* | | Character2| Character 3 | |
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* ---------------------------------------- |
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**/ |
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const uint8_t *data = reinterpret_cast<uint8_t*>(edid->data); |
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static const uint offset = 0x8; |
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char id[4]; |
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if (data[offset] >> 7) { |
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// bit at position 7 is not a 0 |
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return QByteArray(); |
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} |
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// shift two bits to right, and with 7 right most bits |
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id[0] = 'A' + ((data[offset] >> 2) & 0x1f) -1; |
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// for first byte: take last two bits and shift them 3 to left (000xx000) |
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// for second byte: shift 5 bits to right and take 3 right most bits (00000xxx) |
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// or both together |
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id[1] = 'A' + (((data[offset] & 0x3) << 3) | ((data[offset + 1] >> 5) & 0x7)) - 1; |
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// take five right most bits |
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id[2] = 'A' + (data[offset + 1] & 0x1f) - 1; |
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id[3] = '\0'; |
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return QByteArray(id); |
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} |
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static void extractMonitorDescriptorDescription(drmModePropertyBlobPtr blob, DrmOutput::Edid &edid) |
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{ |
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// see section 3.10.3 |
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const uint8_t *data = reinterpret_cast<uint8_t*>(blob->data); |
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static const uint offset = 0x36; |
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static const uint blockLength = 18; |
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for (int i = 0; i < 5; ++i) { |
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const uint co = offset + i * blockLength; |
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// Flag = 0000h when block used as descriptor |
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if (data[co] != 0) { |
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continue; |
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} |
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if (data[co + 1] != 0) { |
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continue; |
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} |
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// Reserved = 00h when block used as descriptor |
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if (data[co + 2] != 0) { |
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continue; |
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} |
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/* |
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* FFh: Monitor Serial Number - Stored as ASCII, code page # 437, ≤ 13 bytes. |
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* FEh: ASCII String - Stored as ASCII, code page # 437, ≤ 13 bytes. |
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* FDh: Monitor range limits, binary coded |
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* FCh: Monitor name, stored as ASCII, code page # 437 |
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* FBh: Descriptor contains additional color point data |
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* FAh: Descriptor contains additional Standard Timing Identifications |
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* F9h - 11h: Currently undefined |
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* 10h: Dummy descriptor, used to indicate that the descriptor space is unused |
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* 0Fh - 00h: Descriptor defined by manufacturer. |
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*/ |
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if (data[co + 3] == 0xfc && edid.monitorName.isEmpty()) { |
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edid.monitorName = QByteArray((const char *)(&data[co + 5]), 12).trimmed(); |
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} |
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if (data[co + 3] == 0xfe) { |
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const QByteArray id = QByteArray((const char *)(&data[co + 5]), 12).trimmed(); |
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if (!id.isEmpty()) { |
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edid.eisaId = id; |
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} |
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} |
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if (data[co + 3] == 0xff) { |
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edid.serialNumber = QByteArray((const char *)(&data[co + 5]), 12).trimmed(); |
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} |
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} |
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} |
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|
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static QByteArray extractSerialNumber(drmModePropertyBlobPtr edid) |
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{ |
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// see section 3.4 |
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const uint8_t *data = reinterpret_cast<uint8_t*>(edid->data); |
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static const uint offset = 0x0C; |
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/* |
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* The ID serial number is a 32-bit serial number used to differentiate between individual instances of the same model |
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* of monitor. Its use is optional. When used, the bit order for this field follows that shown in Table 3.6. The EDID |
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* structure Version 1 Revision 1 and later offer a way to represent the serial number of the monitor as an ASCII string |
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* in a separate descriptor block. |
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*/ |
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uint32_t serialNumber = 0; |
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serialNumber = (uint32_t) data[offset + 0]; |
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serialNumber |= (uint32_t) data[offset + 1] << 8; |
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serialNumber |= (uint32_t) data[offset + 2] << 16; |
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serialNumber |= (uint32_t) data[offset + 3] << 24; |
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if (serialNumber == 0) { |
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return QByteArray(); |
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} |
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return QByteArray::number(serialNumber); |
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} |
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|
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static QSize extractPhysicalSize(drmModePropertyBlobPtr edid) |
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{ |
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const uint8_t *data = reinterpret_cast<uint8_t*>(edid->data); |
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return QSize(data[0x15], data[0x16]) * 10; |
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} |
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|
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void DrmOutput::initEdid(drmModeConnector *connector) |
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{ |
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ScopedDrmPointer<_drmModePropertyBlob, &drmModeFreePropertyBlob> edid; |
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for (int i = 0; i < connector->count_props; ++i) { |
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ScopedDrmPointer<_drmModeProperty, &drmModeFreeProperty> property(drmModeGetProperty(m_backend->fd(), connector->props[i])); |
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if (!property) { |
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continue; |
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} |
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if ((property->flags & DRM_MODE_PROP_BLOB) && qstrcmp(property->name, "EDID") == 0) { |
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edid.reset(drmModeGetPropertyBlob(m_backend->fd(), connector->prop_values[i])); |
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} |
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} |
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if (!edid) { |
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return; |
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} |
|
|
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// for documentation see: http://read.pudn.com/downloads110/ebook/456020/E-EDID%20Standard.pdf |
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if (edid->length < 128) { |
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return; |
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} |
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if (!verifyEdidHeader(edid.data())) { |
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return; |
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} |
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m_edid.eisaId = extractEisaId(edid.data()); |
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m_edid.serialNumber = extractSerialNumber(edid.data()); |
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|
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// parse monitor descriptor description |
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extractMonitorDescriptorDescription(edid.data(), m_edid); |
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|
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m_edid.physicalSize = extractPhysicalSize(edid.data()); |
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} |
|
|
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void DrmOutput::initDpms(drmModeConnector *connector) |
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{ |
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for (int i = 0; i < connector->count_props; ++i) { |
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ScopedDrmPointer<_drmModeProperty, &drmModeFreeProperty> property(drmModeGetProperty(m_backend->fd(), connector->props[i])); |
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if (!property) { |
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continue; |
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} |
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if (qstrcmp(property->name, "DPMS") == 0) { |
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m_dpms.swap(property); |
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break; |
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} |
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} |
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} |
|
|
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void DrmOutput::setDpms(DrmOutput::DpmsMode mode) |
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{ |
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if (m_dpms.isNull()) { |
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return; |
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} |
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if (mode == m_dpmsMode) { |
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return; |
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} |
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if (drmModeConnectorSetProperty(m_backend->fd(), m_connector, m_dpms->prop_id, uint64_t(mode)) != 0) { |
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qCWarning(KWIN_DRM) << "Setting DPMS failed"; |
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return; |
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} |
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m_dpmsMode = mode; |
|
if (m_waylandOutput) { |
|
m_waylandOutput->setDpmsMode(toWaylandDpmsMode(m_dpmsMode)); |
|
} |
|
emit dpmsChanged(); |
|
if (m_dpmsMode != DpmsMode::On) { |
|
m_backend->outputWentOff(); |
|
} else { |
|
m_backend->checkOutputsAreOn(); |
|
blank(); |
|
if (Compositor *compositor = Compositor::self()) { |
|
compositor->addRepaintFull(); |
|
} |
|
} |
|
} |
|
|
|
QString DrmOutput::name() const |
|
{ |
|
if (!m_waylandOutput) { |
|
return i18n("unknown"); |
|
} |
|
return QStringLiteral("%1 %2").arg(m_waylandOutput->manufacturer()).arg(m_waylandOutput->model()); |
|
} |
|
|
|
int DrmOutput::currentRefreshRate() const |
|
{ |
|
if (!m_waylandOutput) { |
|
return 60000; |
|
} |
|
return m_waylandOutput->refreshRate(); |
|
} |
|
|
|
void DrmOutput::setGlobalPos(const QPoint &pos) |
|
{ |
|
m_globalPos = pos; |
|
if (m_waylandOutput) { |
|
m_waylandOutput->setGlobalPosition(pos); |
|
} |
|
if (m_waylandOutputDevice) { |
|
m_waylandOutputDevice->setGlobalPosition(pos); |
|
} |
|
} |
|
|
|
void DrmOutput::setChanges(KWayland::Server::OutputChangeSet *changes) |
|
{ |
|
m_changeset = changes; |
|
qCDebug(KWIN_DRM) << "set changes in DrmOutput"; |
|
commitChanges(); |
|
} |
|
|
|
bool DrmOutput::commitChanges() |
|
{ |
|
Q_ASSERT(!m_waylandOutputDevice.isNull()); |
|
Q_ASSERT(!m_waylandOutput.isNull()); |
|
|
|
if (m_changeset.isNull()) { |
|
qCDebug(KWIN_DRM) << "no changes"; |
|
// No changes to an output is an entirely valid thing |
|
return true; |
|
} |
|
|
|
if (m_changeset->enabledChanged()) { |
|
qCDebug(KWIN_DRM) << "Setting enabled:"; |
|
m_waylandOutputDevice->setEnabled(m_changeset->enabled()); |
|
} |
|
if (m_changeset->modeChanged()) { |
|
qCDebug(KWIN_DRM) << "Setting new mode:" << m_changeset->mode(); |
|
m_waylandOutputDevice->setCurrentMode(m_changeset->mode()); |
|
// FIXME: implement for wl_output |
|
} |
|
if (m_changeset->transformChanged()) { |
|
qCDebug(KWIN_DRM) << "Server setting transform: " << (int)(m_changeset->transform()); |
|
m_waylandOutputDevice->setTransform(m_changeset->transform()); |
|
// FIXME: implement for wl_output |
|
} |
|
if (m_changeset->positionChanged()) { |
|
qCDebug(KWIN_DRM) << "Server setting position: " << m_changeset->position(); |
|
m_waylandOutput->setGlobalPosition(m_changeset->position()); |
|
m_waylandOutputDevice->setGlobalPosition(m_changeset->position()); |
|
setGlobalPos(m_changeset->position()); |
|
// may just work already! |
|
} |
|
if (m_changeset->scaleChanged()) { |
|
qCDebug(KWIN_DRM) << "Setting scale:" << m_changeset->scale(); |
|
m_waylandOutputDevice->setScale(m_changeset->scale()); |
|
// FIXME: implement for wl_output |
|
} |
|
return true; |
|
} |
|
|
|
|
|
}
|
|
|