kwin/plugins/platforms/drm/drm_output.h
Roman Gilg 997cf97c9f Atomic Mode Setting / Universal Plane preliminary support
This is Milestone 1 of full support of Atomic Mode Setting (AMS) and
Universal Planes in the KWin DRM backend.

With Milestone 1 we can use the primary plane of a DRM output and do an
AMS commit (this means mode setting aswell as page flipping), if the
driver supports it. Until now the functionality is only tested on Intel
graphics. You need the drm-next kernel for most recent DRM kernel
developments. As boot option set "i915.nuclear_pageflip". Additionally
at the moment AMS is still hidden behind the environment variable
KWIN_DRM_AMS. Set it, if you want to try out AMS.

What needs to be done next: Make it possible to transfer EGL buffers
directly to planes and implement logic for deciding about using a plane
or not for a specific buffer.

You can read more about it on LWN:
https://lwn.net/Articles/653071
And on Martin's blog:
https://blog.martin-graesslin.com/blog/2015/08/layered-compositing/
I used as model previous work by Daniel Stone for Weston:
https://git.collabora.com/cgit/user/daniels/weston.git

Reviewed-by: mgraesslin

Tags: #kwin

Differential Revision: https://phabricator.kde.org/D2370
2016-08-31 14:06:31 +02:00

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/********************************************************************
KWin - the KDE window manager
This file is part of the KDE project.
Copyright (C) 2015 Martin Gräßlin <mgraesslin@kde.org>
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 2 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*********************************************************************/
#ifndef KWIN_DRM_OUTPUT_H
#define KWIN_DRM_OUTPUT_H
#include "drm_pointer.h"
#include "drm_object.h"
#include <QObject>
#include <QPoint>
#include <QPointer>
#include <QSize>
#include <QVector>
#include <xf86drmMode.h>
namespace KWayland
{
namespace Server
{
class OutputInterface;
class OutputDeviceInterface;
class OutputChangeSet;
class OutputManagementInterface;
}
}
namespace KWin
{
class DrmBackend;
class DrmBuffer;
class DrmPlane;
class DrmConnector;
class DrmCrtc;
class DrmOutput : public QObject
{
Q_OBJECT
public:
struct Edid {
QByteArray eisaId;
QByteArray monitorName;
QByteArray serialNumber;
QSize physicalSize;
};
virtual ~DrmOutput();
void showCursor(DrmBuffer *buffer);
void hideCursor();
void moveCursor(const QPoint &globalPos);
bool init(drmModeConnector *connector);
bool present(DrmBuffer *buffer);
void pageFlipped();
void restoreSaved();
bool blank();
/**
* This sets the changes and tests them against the DRM output
*/
void setChanges(KWayland::Server::OutputChangeSet *changeset);
bool commitChanges();
QSize size() const;
QRect geometry() const;
QString name() const;
int currentRefreshRate() const;
// These values are defined by the kernel
enum class DpmsMode {
On = DRM_MODE_DPMS_ON,
Standby = DRM_MODE_DPMS_STANDBY,
Suspend = DRM_MODE_DPMS_SUSPEND,
Off = DRM_MODE_DPMS_OFF
};
void setDpms(DpmsMode mode);
bool isDpmsEnabled() const {
return m_dpmsMode == DpmsMode::On;
}
QByteArray uuid() const {
return m_uuid;
}
Q_SIGNALS:
void dpmsChanged();
private:
friend class DrmBackend;
DrmOutput(DrmBackend *backend);
void cleanupBlackBuffer();
bool presentAtomically(DrmBuffer *buffer);
bool presentLegacy(DrmBuffer *buffer);
bool setModeLegacy(DrmBuffer *buffer);
void initEdid(drmModeConnector *connector);
void initDpms(drmModeConnector *connector);
bool isCurrentMode(const drmModeModeInfo *mode) const;
void initUuid();
void setGlobalPos(const QPoint &pos);
void pageFlippedBufferRemover(DrmBuffer *oldbuffer, DrmBuffer *newbuffer);
bool initPrimaryPlane();
bool initCursorPlane();
DrmObject::AtomicReturn atomicReqModesetPopulate(drmModeAtomicReq *req, bool enable);
DrmBackend *m_backend;
QPoint m_globalPos;
quint32 m_crtcId = 0;
quint32 m_connector = 0;
quint32 m_lastStride = 0;
bool m_lastGbm = false;
drmModeModeInfo m_mode;
DrmBuffer *m_currentBuffer = nullptr;
DrmBuffer *m_nextBuffer = nullptr;
DrmBuffer *m_blackBuffer = nullptr;
struct CrtcCleanup {
static void inline cleanup(_drmModeCrtc *ptr) {
drmModeFreeCrtc(ptr); // TODO: Atomically? See compositor-drm.c l.3670
}
};
Edid m_edid;
QScopedPointer<_drmModeCrtc, CrtcCleanup> m_savedCrtc;
QPointer<KWayland::Server::OutputInterface> m_waylandOutput;
QPointer<KWayland::Server::OutputDeviceInterface> m_waylandOutputDevice;
QPointer<KWayland::Server::OutputChangeSet> m_changeset;
KWin::ScopedDrmPointer<_drmModeProperty, &drmModeFreeProperty> m_dpms;
DpmsMode m_dpmsMode = DpmsMode::On;
QByteArray m_uuid;
DrmConnector *m_conn = nullptr;
DrmCrtc *m_crtc = nullptr;
uint32_t m_blobId = 0;
DrmPlane* m_primaryPlane = nullptr;
DrmPlane* m_cursorPlane = nullptr;
QVector<DrmPlane*> m_planesFlipList;
};
}
Q_DECLARE_METATYPE(KWin::DrmOutput*)
#endif