kwin/cursor.cpp
Martin Gräßlin d95ab94f0a Migrate away from QX11Info::appTime
The porting to Qt5 broke the timestamp handling in many areas. A deeper
look into Qt's xcb plugin shows that the appTime handling is not
sufficient for KWin's need. E.g. the time is only updated in response to
a property notify event if it's for a Qt created window, which is hardly
ever the case in KWin. Another example is that key press/release events
never updated the appTime.

As the functionality in Qt is rather trivial we can do the timestamp
handling ourselves. We filter all events anyway and it is slightly faster
as we don't have to go through the QPA interface any more.

REVIEW: 122636
2015-02-23 11:02:59 +01:00

477 lines
12 KiB
C++

/********************************************************************
KWin - the KDE window manager
This file is part of the KDE project.
Copyright (C) 2013 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/>.
*********************************************************************/
#include "cursor.h"
// kwin
#include <kwinglobals.h>
#include "input.h"
#include "main.h"
#include "utils.h"
#include "xcbutils.h"
// KDE
#include <KConfig>
#include <KConfigGroup>
#include <KSharedConfig>
// Qt
#include <QDBusConnection>
#include <QScreen>
#include <QTimer>
// xcb
#include <xcb/xfixes.h>
#if HAVE_XCB_CURSOR
#include <xcb/xcb_cursor.h>
#endif
namespace KWin
{
Cursor *Cursor::s_self = nullptr;
Cursor *Cursor::create(QObject *parent)
{
Q_ASSERT(!s_self);
#ifndef KCMRULES
if (kwinApp()->operationMode() == Application::OperationModeX11) {
s_self = new X11Cursor(parent);
} else {
s_self = new InputRedirectionCursor(parent);
}
#else
s_self = new X11Cursor(parent);
#endif
return s_self;
}
Cursor::Cursor(QObject *parent)
: QObject(parent)
, m_mousePollingCounter(0)
, m_cursorTrackingCounter(0)
, m_themeName("default")
, m_themeSize(24)
{
loadThemeSettings();
QDBusConnection::sessionBus().connect(QString(), QStringLiteral("/KGlobalSettings"), QStringLiteral("org.kde.KGlobalSettings"),
QStringLiteral("notifyChange"), this, SLOT(slotKGlobalSettingsNotifyChange(int,int)));
}
Cursor::~Cursor()
{
s_self = NULL;
}
void Cursor::loadThemeSettings()
{
QString themeName = QString::fromUtf8(qgetenv("XCURSOR_THEME"));
bool ok = false;
// XCURSOR_SIZE might not be set (e.g. by startkde)
uint themeSize = 0;
if (qEnvironmentVariableIsSet("XCURSOR_SIZE")) {
themeSize = qgetenv("XCURSOR_SIZE").toUInt(&ok);
}
if (!ok) {
if (QScreen *s = QGuiApplication::primaryScreen()) {
themeSize = s->logicalDotsPerInchY() * 16 / 72;
ok = true;
}
}
if (!themeName.isEmpty() && ok) {
updateTheme(themeName, themeSize);
return;
}
// didn't get from environment variables, read from config file
loadThemeFromKConfig();
}
void Cursor::loadThemeFromKConfig()
{
KConfigGroup mousecfg(KSharedConfig::openConfig("kcminputrc", KConfig::NoGlobals), "Mouse");
const QString themeName = mousecfg.readEntry("cursorTheme", "default");
bool ok = false;
uint themeSize = mousecfg.readEntry("cursorSize", QString("24")).toUInt(&ok);
if (!ok) {
themeSize = 24;
}
updateTheme(themeName, themeSize);
}
void Cursor::updateTheme(const QString &name, int size)
{
if (m_themeName != name || m_themeSize != size) {
m_themeName = name;
m_themeSize = size;
emit themeChanged();
}
}
void Cursor::slotKGlobalSettingsNotifyChange(int type, int arg)
{
Q_UNUSED(arg)
if (type == 5 /*CursorChanged*/) {
loadThemeFromKConfig();
// sync to environment
qputenv("XCURSOR_THEME", m_themeName.toUtf8());
qputenv("XCURSOR_SIZE", QByteArray::number(m_themeSize));
}
}
QPoint Cursor::pos()
{
s_self->doGetPos();
return s_self->m_pos;
}
void Cursor::setPos(const QPoint &pos)
{
// first query the current pos to not warp to the already existing pos
if (pos == Cursor::pos()) {
return;
}
s_self->m_pos = pos;
s_self->doSetPos();
}
void Cursor::setPos(int x, int y)
{
Cursor::setPos(QPoint(x, y));
}
xcb_cursor_t Cursor::getX11Cursor(Qt::CursorShape shape)
{
Q_UNUSED(shape)
return XCB_CURSOR_NONE;
}
xcb_cursor_t Cursor::getX11Cursor(const QByteArray &name)
{
Q_UNUSED(name)
return XCB_CURSOR_NONE;
}
xcb_cursor_t Cursor::x11Cursor(Qt::CursorShape shape)
{
return s_self->getX11Cursor(shape);
}
xcb_cursor_t Cursor::x11Cursor(const QByteArray &name)
{
return s_self->getX11Cursor(name);
}
void Cursor::doSetPos()
{
emit posChanged(m_pos);
}
void Cursor::doGetPos()
{
}
void Cursor::updatePos(const QPoint &pos)
{
if (m_pos == pos) {
return;
}
m_pos = pos;
emit posChanged(m_pos);
}
void Cursor::startMousePolling()
{
++m_mousePollingCounter;
if (m_mousePollingCounter == 1) {
doStartMousePolling();
}
}
void Cursor::stopMousePolling()
{
Q_ASSERT(m_mousePollingCounter > 0);
--m_mousePollingCounter;
if (m_mousePollingCounter == 0) {
doStopMousePolling();
}
}
void Cursor::doStartMousePolling()
{
}
void Cursor::doStopMousePolling()
{
}
void Cursor::startCursorTracking()
{
++m_cursorTrackingCounter;
if (m_cursorTrackingCounter == 1) {
doStartCursorTracking();
}
}
void Cursor::stopCursorTracking()
{
Q_ASSERT(m_cursorTrackingCounter > 0);
--m_cursorTrackingCounter;
if (m_cursorTrackingCounter == 0) {
doStopCursorTracking();
}
}
void Cursor::doStartCursorTracking()
{
}
void Cursor::doStopCursorTracking()
{
}
void Cursor::notifyCursorChanged(uint32_t serial)
{
if (m_cursorTrackingCounter <= 0) {
// cursor change tracking is currently disabled, so don't emit signal
return;
}
emit cursorChanged(serial);
}
X11Cursor::X11Cursor(QObject *parent)
: Cursor(parent)
, m_timeStamp(XCB_TIME_CURRENT_TIME)
, m_buttonMask(0)
, m_resetTimeStampTimer(new QTimer(this))
, m_mousePollingTimer(new QTimer(this))
{
m_resetTimeStampTimer->setSingleShot(true);
connect(m_resetTimeStampTimer, SIGNAL(timeout()), SLOT(resetTimeStamp()));
// TODO: How often do we really need to poll?
m_mousePollingTimer->setInterval(50);
connect(m_mousePollingTimer, SIGNAL(timeout()), SLOT(mousePolled()));
connect(this, &Cursor::themeChanged, this, [this] { m_cursors.clear(); });
}
X11Cursor::~X11Cursor()
{
}
void X11Cursor::doSetPos()
{
const QPoint &pos = currentPos();
xcb_warp_pointer(connection(), XCB_WINDOW_NONE, rootWindow(), 0, 0, 0, 0, pos.x(), pos.y());
// call default implementation to emit signal
Cursor::doSetPos();
}
void X11Cursor::doGetPos()
{
if (m_timeStamp != XCB_TIME_CURRENT_TIME &&
m_timeStamp == xTime()) {
// time stamps did not change, no need to query again
return;
}
m_timeStamp = xTime();
Xcb::Pointer pointer(rootWindow());
if (pointer.isNull()) {
return;
}
m_buttonMask = pointer->mask;
updatePos(pointer->root_x, pointer->root_y);
m_resetTimeStampTimer->start(0);
}
void X11Cursor::resetTimeStamp()
{
m_timeStamp = XCB_TIME_CURRENT_TIME;
}
void X11Cursor::doStartMousePolling()
{
m_mousePollingTimer->start();
}
void X11Cursor::doStopMousePolling()
{
m_mousePollingTimer->stop();
}
void X11Cursor::doStartCursorTracking()
{
xcb_xfixes_select_cursor_input(connection(), rootWindow(), XCB_XFIXES_CURSOR_NOTIFY_MASK_DISPLAY_CURSOR);
}
void X11Cursor::doStopCursorTracking()
{
xcb_xfixes_select_cursor_input(connection(), rootWindow(), 0);
}
void X11Cursor::mousePolled()
{
static QPoint lastPos = currentPos();
static uint16_t lastMask = m_buttonMask;
doGetPos(); // Update if needed
if (lastPos != currentPos() || lastMask != m_buttonMask) {
emit mouseChanged(currentPos(), lastPos,
x11ToQtMouseButtons(m_buttonMask), x11ToQtMouseButtons(lastMask),
x11ToQtKeyboardModifiers(m_buttonMask), x11ToQtKeyboardModifiers(lastMask));
lastPos = currentPos();
lastMask = m_buttonMask;
}
}
xcb_cursor_t X11Cursor::getX11Cursor(Qt::CursorShape shape)
{
return getX11Cursor(cursorName(shape));
}
xcb_cursor_t X11Cursor::getX11Cursor(const QByteArray &name)
{
auto it = m_cursors.constFind(name);
if (it != m_cursors.constEnd()) {
return it.value();
}
return createCursor(name);
}
xcb_cursor_t X11Cursor::createCursor(const QByteArray &name)
{
if (name.isEmpty()) {
return XCB_CURSOR_NONE;
}
#if HAVE_XCB_CURSOR
xcb_cursor_context_t *ctx;
if (xcb_cursor_context_new(connection(), defaultScreen(), &ctx) < 0) {
return XCB_CURSOR_NONE;
}
const xcb_cursor_t cursor = xcb_cursor_load_cursor(ctx, name.constData());
if (cursor != XCB_CURSOR_NONE) {
m_cursors.insert(name, cursor);
}
xcb_cursor_context_free(ctx);
return cursor;
#else
return XCB_CURSOR_NONE;
#endif
}
QByteArray Cursor::cursorName(Qt::CursorShape shape) const
{
switch (shape) {
case Qt::ArrowCursor:
return QByteArray("left_ptr");
case Qt::UpArrowCursor:
return QByteArray("up_arrow");
case Qt::CrossCursor:
return QByteArray("cross");
case Qt::WaitCursor:
return QByteArray("wait");
case Qt::IBeamCursor:
return QByteArray("ibeam");
case Qt::SizeVerCursor:
return QByteArray("size_ver");
case Qt::SizeHorCursor:
return QByteArray("size_hor");
case Qt::SizeBDiagCursor:
return QByteArray("size_bdiag");
case Qt::SizeFDiagCursor:
return QByteArray("size_fdiag");
case Qt::SizeAllCursor:
return QByteArray("size_all");
case Qt::SplitVCursor:
return QByteArray("split_v");
case Qt::SplitHCursor:
return QByteArray("split_h");
case Qt::PointingHandCursor:
return QByteArray("pointing_hand");
case Qt::ForbiddenCursor:
return QByteArray("forbidden");
case Qt::OpenHandCursor:
return QByteArray("openhand");
case Qt::ClosedHandCursor:
return QByteArray("closedhand");
case Qt::WhatsThisCursor:
return QByteArray("whats_this");
case Qt::BusyCursor:
return QByteArray("left_ptr_watch");
case Qt::DragMoveCursor:
return QByteArray("dnd-move");
case Qt::DragCopyCursor:
return QByteArray("dnd-copy");
case Qt::DragLinkCursor:
return QByteArray("dnd-link");
default:
return QByteArray();
}
}
InputRedirectionCursor::InputRedirectionCursor(QObject *parent)
: Cursor(parent)
, m_oldButtons(Qt::NoButton)
, m_currentButtons(Qt::NoButton)
{
connect(input(), SIGNAL(globalPointerChanged(QPointF)), SLOT(slotPosChanged(QPointF)));
connect(input(), SIGNAL(pointerButtonStateChanged(uint32_t,InputRedirection::PointerButtonState)),
SLOT(slotPointerButtonChanged()));
#ifndef KCMRULES
connect(input(), &InputRedirection::keyboardModifiersChanged,
this, &InputRedirectionCursor::slotModifiersChanged);
#endif
}
InputRedirectionCursor::~InputRedirectionCursor()
{
}
void InputRedirectionCursor::doSetPos()
{
// no support for pointer warping - reset to true position
slotPosChanged(input()->globalPointer());
}
void InputRedirectionCursor::slotPosChanged(const QPointF &pos)
{
const QPoint oldPos = currentPos();
updatePos(pos.toPoint());
emit mouseChanged(pos.toPoint(), oldPos, m_currentButtons, m_oldButtons,
input()->keyboardModifiers(), input()->keyboardModifiers());
}
void InputRedirectionCursor::slotModifiersChanged(Qt::KeyboardModifiers mods, Qt::KeyboardModifiers oldMods)
{
emit mouseChanged(currentPos(), currentPos(), m_currentButtons, m_currentButtons, mods, oldMods);
}
void InputRedirectionCursor::slotPointerButtonChanged()
{
m_oldButtons = m_currentButtons;
m_currentButtons = input()->qtButtonStates();
}
void InputRedirectionCursor::doStartCursorTracking()
{
xcb_xfixes_select_cursor_input(connection(), rootWindow(), XCB_XFIXES_CURSOR_NOTIFY_MASK_DISPLAY_CURSOR);
// TODO: also track the Wayland cursor
}
void InputRedirectionCursor::doStopCursorTracking()
{
xcb_xfixes_select_cursor_input(connection(), rootWindow(), 0);
// TODO: also track the Wayland cursor
}
} // namespace