630ba5fab4
As Wayland doesn't have a warp event yet, before this commit, warps were dealt with like normal absolute motion events. This trips up games though, which don't deal with actual absolute motion events well. As a solution to that, until an actual warp event is a thing, we send a motion event with a position + a relative motion event with no motion BUG: 458233 CCBUG: 482476
176 lines
5.8 KiB
C++
176 lines
5.8 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: 2016 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 "mock_libinput.h"
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#include "backends/libinput/device.h"
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#include "input_event.h"
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#include <QTest>
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Q_DECLARE_METATYPE(KWin::SwitchEvent::State);
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using namespace KWin;
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using namespace KWin::LibInput;
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using namespace std::literals;
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class InputEventsTest : public QObject
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{
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Q_OBJECT
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private Q_SLOTS:
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void testInitMouseEvent_data();
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void testInitMouseEvent();
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void testInitKeyEvent_data();
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void testInitKeyEvent();
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void testInitWheelEvent_data();
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void testInitWheelEvent();
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void testInitSwitchEvent_data();
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void testInitSwitchEvent();
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};
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void InputEventsTest::testInitMouseEvent_data()
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{
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QTest::addColumn<QEvent::Type>("type");
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QTest::newRow("Press") << QEvent::MouseButtonPress;
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QTest::newRow("Release") << QEvent::MouseButtonRelease;
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QTest::newRow("Move") << QEvent::MouseMove;
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}
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void InputEventsTest::testInitMouseEvent()
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{
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// this test verifies that a MouseEvent is constructed correctly
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// first create the test LibInput::Device
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libinput_device device;
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Device d(&device);
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QFETCH(QEvent::Type, type);
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// now create our own event
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MouseEvent event(type, QPointF(100, 200), Qt::LeftButton, Qt::LeftButton | Qt::RightButton,
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Qt::ShiftModifier | Qt::ControlModifier, 300ms, QPointF(1, 2), QPointF(3, 4), &d, false);
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// and verify the contract of QMouseEvent
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QCOMPARE(event.type(), type);
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QCOMPARE(event.globalPos(), QPoint(100, 200));
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QCOMPARE(event.screenPos(), QPointF(100, 200));
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QCOMPARE(event.localPos(), QPointF(100, 200));
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QCOMPARE(event.button(), Qt::LeftButton);
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QCOMPARE(event.buttons(), Qt::LeftButton | Qt::RightButton);
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QCOMPARE(event.modifiers(), Qt::ShiftModifier | Qt::ControlModifier);
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QCOMPARE(event.timestamp(), 300ms);
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// and our custom argument
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QCOMPARE(event.device(), &d);
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QCOMPARE(event.delta(), QPointF(1, 2));
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QCOMPARE(event.deltaUnaccelerated(), QPointF(3, 4));
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}
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void InputEventsTest::testInitKeyEvent_data()
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{
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QTest::addColumn<QEvent::Type>("type");
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QTest::addColumn<bool>("autorepeat");
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QTest::newRow("Press") << QEvent::KeyPress << false;
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QTest::newRow("Repeat") << QEvent::KeyPress << true;
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QTest::newRow("Release") << QEvent::KeyRelease << false;
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}
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void InputEventsTest::testInitKeyEvent()
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{
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// this test verifies that a KeyEvent is constructed correctly
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// first create the test LibInput::Device
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libinput_device device;
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Device d(&device);
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// setup event
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QFETCH(QEvent::Type, type);
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QFETCH(bool, autorepeat);
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KeyEvent event(type, Qt::Key_Space, Qt::ShiftModifier | Qt::ControlModifier, 200, 300,
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QStringLiteral(" "), autorepeat, 400ms, &d);
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// and verify the contract of QKeyEvent
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QCOMPARE(event.type(), type);
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QCOMPARE(event.isAutoRepeat(), autorepeat);
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QCOMPARE(event.key(), int(Qt::Key_Space));
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QCOMPARE(event.nativeScanCode(), 200u);
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QCOMPARE(event.nativeVirtualKey(), 300u);
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QCOMPARE(event.text(), QStringLiteral(" "));
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QCOMPARE(event.count(), 1);
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QCOMPARE(event.nativeModifiers(), 0u);
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QCOMPARE(event.modifiers(), Qt::ShiftModifier | Qt::ControlModifier);
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QCOMPARE(event.timestamp(), 400ms);
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// and our custom argument
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QCOMPARE(event.device(), &d);
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}
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void InputEventsTest::testInitWheelEvent_data()
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{
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QTest::addColumn<Qt::Orientation>("orientation");
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QTest::addColumn<qreal>("delta");
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QTest::addColumn<qint32>("deltaV120");
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QTest::addColumn<QPoint>("expectedAngleDelta");
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QTest::newRow("horiz") << Qt::Horizontal << 3.3 << 1 << QPoint(3, 0);
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QTest::newRow("vert") << Qt::Vertical << 2.4 << 2 << QPoint(0, 2);
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}
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void InputEventsTest::testInitWheelEvent()
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{
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// this test verifies that a WheelEvent is constructed correctly
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// first create the test LibInput::Device
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libinput_device device;
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Device d(&device);
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// setup event
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QFETCH(Qt::Orientation, orientation);
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QFETCH(qreal, delta);
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QFETCH(qint32, deltaV120);
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WheelEvent event(QPointF(100, 200), delta, deltaV120, orientation, Qt::LeftButton | Qt::RightButton,
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Qt::ShiftModifier | Qt::ControlModifier, InputRedirection::PointerAxisSourceWheel, 300ms, &d);
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// compare QWheelEvent contract
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QCOMPARE(event.type(), QEvent::Wheel);
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QCOMPARE(event.position(), QPointF(100, 200));
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QCOMPARE(event.globalPosition(), QPointF(100, 200));
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QCOMPARE(event.buttons(), Qt::LeftButton | Qt::RightButton);
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QCOMPARE(event.modifiers(), Qt::ShiftModifier | Qt::ControlModifier);
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QCOMPARE(event.timestamp(), 300ms);
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QTEST(event.angleDelta(), "expectedAngleDelta");
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QTEST(event.orientation(), "orientation");
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QTEST(event.delta(), "delta");
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QTEST(event.deltaV120(), "deltaV120");
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QCOMPARE(event.axisSource(), InputRedirection::PointerAxisSourceWheel);
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// and our custom argument
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QCOMPARE(event.device(), &d);
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}
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void InputEventsTest::testInitSwitchEvent_data()
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{
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QTest::addColumn<KWin::SwitchEvent::State>("state");
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QTest::addColumn<quint64>("timestamp");
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QTest::newRow("on") << SwitchEvent::State::On << quint64{23456790};
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QTest::newRow("off") << SwitchEvent::State::Off << quint64{45689235987};
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}
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void InputEventsTest::testInitSwitchEvent()
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{
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// this test verifies that a SwitchEvent is constructed correctly
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libinput_device device;
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Device d(&device);
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QFETCH(SwitchEvent::State, state);
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QFETCH(quint64, timestamp);
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SwitchEvent event(state, std::chrono::microseconds(timestamp), &d);
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QCOMPARE(event.state(), state);
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QCOMPARE(event.timestamp(), std::chrono::microseconds(timestamp));
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QCOMPARE(event.device(), &d);
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}
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QTEST_GUILESS_MAIN(InputEventsTest)
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#include "input_event_test.moc"
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