kwin/autotests/integration/internal_window.cpp
Vlad Zahorodnii e0da725533 autotests: Fix Test::waitForWindowDestroyed
Before Deleted merge, it used to be equivalent to waiting until the
window is closed.

This fixes tests waiting until the window closing animation completes
and the Window object is destroyed.
2023-04-22 13:55:29 +00:00

814 lines
28 KiB
C++

/*
KWin - the KDE window manager
This file is part of the KDE project.
SPDX-FileCopyrightText: 2016 Martin Gräßlin <mgraesslin@kde.org>
SPDX-License-Identifier: GPL-2.0-or-later
*/
#include "kwin_wayland_test.h"
#include "core/output.h"
#include "core/outputbackend.h"
#include "effects.h"
#include "internalwindow.h"
#include "pointer_input.h"
#include "wayland/surface_interface.h"
#include "wayland_server.h"
#include "workspace.h"
#include <QPainter>
#include <QRasterWindow>
#include <KWayland/Client/keyboard.h>
#include <KWayland/Client/seat.h>
#include <KWayland/Client/surface.h>
#include <KWindowSystem>
#include <linux/input.h>
Q_DECLARE_METATYPE(NET::WindowType);
namespace KWin
{
static const QString s_socketName = QStringLiteral("wayland_test_kwin_internal_window-0");
class InternalWindowTest : public QObject
{
Q_OBJECT
private Q_SLOTS:
void initTestCase();
void init();
void cleanup();
void testEnterLeave();
void testPointerPressRelease();
void testPointerAxis();
void testKeyboard_data();
void testKeyboard();
void testKeyboardShowWithoutActivating();
void testKeyboardTriggersLeave();
void testTouch();
void testOpacity();
void testMove();
void testSkipCloseAnimation_data();
void testSkipCloseAnimation();
void testModifierClickUnrestrictedMove();
void testModifierScroll();
void testPopup();
void testScale();
void testWindowType_data();
void testWindowType();
void testChangeWindowType_data();
void testChangeWindowType();
void testEffectWindow();
void testReentrantMoveResize();
void testDismissPopup();
};
class HelperWindow : public QRasterWindow
{
Q_OBJECT
public:
HelperWindow();
~HelperWindow() override;
QPoint latestGlobalMousePos() const
{
return m_latestGlobalMousePos;
}
Qt::MouseButtons pressedButtons() const
{
return m_pressedButtons;
}
Q_SIGNALS:
void entered();
void left();
void mouseMoved(const QPoint &global);
void mousePressed();
void mouseReleased();
void wheel();
void keyPressed();
void keyReleased();
protected:
void paintEvent(QPaintEvent *event) override;
bool event(QEvent *event) override;
void mouseMoveEvent(QMouseEvent *event) override;
void mousePressEvent(QMouseEvent *event) override;
void mouseReleaseEvent(QMouseEvent *event) override;
void wheelEvent(QWheelEvent *event) override;
void keyPressEvent(QKeyEvent *event) override;
void keyReleaseEvent(QKeyEvent *event) override;
private:
QPoint m_latestGlobalMousePos;
Qt::MouseButtons m_pressedButtons = Qt::MouseButtons();
};
HelperWindow::HelperWindow()
: QRasterWindow(nullptr)
{
setFlags(Qt::FramelessWindowHint);
}
HelperWindow::~HelperWindow() = default;
void HelperWindow::paintEvent(QPaintEvent *event)
{
QPainter p(this);
p.fillRect(0, 0, width(), height(), Qt::red);
}
bool HelperWindow::event(QEvent *event)
{
if (event->type() == QEvent::Enter) {
Q_EMIT entered();
}
if (event->type() == QEvent::Leave) {
Q_EMIT left();
}
return QRasterWindow::event(event);
}
void HelperWindow::mouseMoveEvent(QMouseEvent *event)
{
m_latestGlobalMousePos = event->globalPos();
Q_EMIT mouseMoved(event->globalPos());
}
void HelperWindow::mousePressEvent(QMouseEvent *event)
{
m_latestGlobalMousePos = event->globalPos();
m_pressedButtons = event->buttons();
Q_EMIT mousePressed();
}
void HelperWindow::mouseReleaseEvent(QMouseEvent *event)
{
m_latestGlobalMousePos = event->globalPos();
m_pressedButtons = event->buttons();
Q_EMIT mouseReleased();
}
void HelperWindow::wheelEvent(QWheelEvent *event)
{
Q_EMIT wheel();
}
void HelperWindow::keyPressEvent(QKeyEvent *event)
{
Q_EMIT keyPressed();
}
void HelperWindow::keyReleaseEvent(QKeyEvent *event)
{
Q_EMIT keyReleased();
}
void InternalWindowTest::initTestCase()
{
qRegisterMetaType<KWin::Window *>();
qRegisterMetaType<KWin::InternalWindow *>();
QSignalSpy applicationStartedSpy(kwinApp(), &Application::started);
QVERIFY(waylandServer()->init(s_socketName));
QMetaObject::invokeMethod(kwinApp()->outputBackend(), "setVirtualOutputs", Qt::DirectConnection, Q_ARG(QVector<QRect>, QVector<QRect>() << QRect(0, 0, 1280, 1024) << QRect(1280, 0, 1280, 1024)));
kwinApp()->setConfig(KSharedConfig::openConfig(QString(), KConfig::SimpleConfig));
kwinApp()->start();
QVERIFY(applicationStartedSpy.wait());
const auto outputs = workspace()->outputs();
QCOMPARE(outputs.count(), 2);
QCOMPARE(outputs[0]->geometry(), QRect(0, 0, 1280, 1024));
QCOMPARE(outputs[1]->geometry(), QRect(1280, 0, 1280, 1024));
}
void InternalWindowTest::init()
{
input()->pointer()->warp(QPoint(512, 512));
QVERIFY(Test::setupWaylandConnection(Test::AdditionalWaylandInterface::Seat));
QVERIFY(Test::waitForWaylandKeyboard());
}
void InternalWindowTest::cleanup()
{
Test::destroyWaylandConnection();
}
void InternalWindowTest::testEnterLeave()
{
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
QVERIFY(!workspace()->findInternal(nullptr));
QVERIFY(!workspace()->findInternal(&win));
win.setGeometry(0, 0, 100, 100);
win.show();
QTRY_COMPARE(windowAddedSpy.count(), 1);
QVERIFY(!workspace()->activeWindow());
InternalWindow *window = windowAddedSpy.first().first().value<InternalWindow *>();
QVERIFY(window);
QVERIFY(window->isInternal());
QVERIFY(!window->isDecorated());
QCOMPARE(workspace()->findInternal(&win), window);
QCOMPARE(window->frameGeometry(), QRect(0, 0, 100, 100));
QVERIFY(window->isShown());
QVERIFY(workspace()->stackingOrder().contains(window));
QSignalSpy enterSpy(&win, &HelperWindow::entered);
QSignalSpy leaveSpy(&win, &HelperWindow::left);
QSignalSpy moveSpy(&win, &HelperWindow::mouseMoved);
quint32 timestamp = 1;
Test::pointerMotion(QPoint(50, 50), timestamp++);
QTRY_COMPARE(moveSpy.count(), 1);
Test::pointerMotion(QPoint(60, 50), timestamp++);
QTRY_COMPARE(moveSpy.count(), 2);
QCOMPARE(moveSpy[1].first().toPoint(), QPoint(60, 50));
Test::pointerMotion(QPoint(101, 50), timestamp++);
QTRY_COMPARE(leaveSpy.count(), 1);
// set a mask on the window
win.setMask(QRegion(10, 20, 30, 40));
// outside the mask we should not get an enter
Test::pointerMotion(QPoint(5, 5), timestamp++);
QVERIFY(!enterSpy.wait(100));
QCOMPARE(enterSpy.count(), 1);
// inside the mask we should still get an enter
Test::pointerMotion(QPoint(25, 27), timestamp++);
QTRY_COMPARE(enterSpy.count(), 2);
}
void InternalWindowTest::testPointerPressRelease()
{
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setGeometry(0, 0, 100, 100);
win.show();
QSignalSpy pressSpy(&win, &HelperWindow::mousePressed);
QSignalSpy releaseSpy(&win, &HelperWindow::mouseReleased);
QTRY_COMPARE(windowAddedSpy.count(), 1);
quint32 timestamp = 1;
Test::pointerMotion(QPoint(50, 50), timestamp++);
Test::pointerButtonPressed(BTN_LEFT, timestamp++);
QTRY_COMPARE(pressSpy.count(), 1);
Test::pointerButtonReleased(BTN_LEFT, timestamp++);
QTRY_COMPARE(releaseSpy.count(), 1);
}
void InternalWindowTest::testPointerAxis()
{
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setGeometry(0, 0, 100, 100);
win.show();
QSignalSpy wheelSpy(&win, &HelperWindow::wheel);
QTRY_COMPARE(windowAddedSpy.count(), 1);
quint32 timestamp = 1;
Test::pointerMotion(QPoint(50, 50), timestamp++);
Test::pointerAxisVertical(5.0, timestamp++);
QTRY_COMPARE(wheelSpy.count(), 1);
Test::pointerAxisHorizontal(5.0, timestamp++);
QTRY_COMPARE(wheelSpy.count(), 2);
}
void InternalWindowTest::testKeyboard_data()
{
QTest::addColumn<QPoint>("cursorPos");
QTest::newRow("on Window") << QPoint(50, 50);
QTest::newRow("outside Window") << QPoint(250, 250);
}
void InternalWindowTest::testKeyboard()
{
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setGeometry(0, 0, 100, 100);
win.show();
QSignalSpy pressSpy(&win, &HelperWindow::keyPressed);
QSignalSpy releaseSpy(&win, &HelperWindow::keyReleased);
QTRY_COMPARE(windowAddedSpy.count(), 1);
auto internalWindow = windowAddedSpy.first().first().value<InternalWindow *>();
QVERIFY(internalWindow);
QVERIFY(internalWindow->isInternal());
QVERIFY(internalWindow->readyForPainting());
quint32 timestamp = 1;
QFETCH(QPoint, cursorPos);
Test::pointerMotion(cursorPos, timestamp++);
Test::keyboardKeyPressed(KEY_A, timestamp++);
QTRY_COMPARE(pressSpy.count(), 1);
QCOMPARE(releaseSpy.count(), 0);
Test::keyboardKeyReleased(KEY_A, timestamp++);
QTRY_COMPARE(releaseSpy.count(), 1);
QCOMPARE(pressSpy.count(), 1);
}
void InternalWindowTest::testKeyboardShowWithoutActivating()
{
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setProperty("_q_showWithoutActivating", true);
win.setGeometry(0, 0, 100, 100);
win.show();
QSignalSpy pressSpy(&win, &HelperWindow::keyPressed);
QSignalSpy releaseSpy(&win, &HelperWindow::keyReleased);
QTRY_COMPARE(windowAddedSpy.count(), 1);
auto internalWindow = windowAddedSpy.first().first().value<InternalWindow *>();
QVERIFY(internalWindow);
QVERIFY(internalWindow->isInternal());
QVERIFY(internalWindow->readyForPainting());
quint32 timestamp = 1;
const QPoint cursorPos = QPoint(50, 50);
Test::pointerMotion(cursorPos, timestamp++);
Test::keyboardKeyPressed(KEY_A, timestamp++);
QCOMPARE(pressSpy.count(), 0);
QVERIFY(!pressSpy.wait(100));
QCOMPARE(releaseSpy.count(), 0);
Test::keyboardKeyReleased(KEY_A, timestamp++);
QCOMPARE(releaseSpy.count(), 0);
QVERIFY(!releaseSpy.wait(100));
QCOMPARE(pressSpy.count(), 0);
}
void InternalWindowTest::testKeyboardTriggersLeave()
{
// this test verifies that a leave event is sent to a window when an internal window
// gets a key event
std::unique_ptr<KWayland::Client::Keyboard> keyboard(Test::waylandSeat()->createKeyboard());
QVERIFY(keyboard != nullptr);
QVERIFY(keyboard->isValid());
QSignalSpy enteredSpy(keyboard.get(), &KWayland::Client::Keyboard::entered);
QSignalSpy leftSpy(keyboard.get(), &KWayland::Client::Keyboard::left);
std::unique_ptr<KWayland::Client::Surface> surface(Test::createSurface());
std::unique_ptr<Test::XdgToplevel> shellSurface(Test::createXdgToplevelSurface(surface.get()));
// now let's render
auto window = Test::renderAndWaitForShown(surface.get(), QSize(100, 50), Qt::blue);
QVERIFY(window);
QVERIFY(window->isActive());
QVERIFY(!window->isInternal());
if (enteredSpy.isEmpty()) {
QVERIFY(enteredSpy.wait());
}
QCOMPARE(enteredSpy.count(), 1);
// create internal window
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setGeometry(0, 0, 100, 100);
win.show();
QSignalSpy pressSpy(&win, &HelperWindow::keyPressed);
QSignalSpy releaseSpy(&win, &HelperWindow::keyReleased);
QTRY_COMPARE(windowAddedSpy.count(), 1);
auto internalWindow = windowAddedSpy.first().first().value<InternalWindow *>();
QVERIFY(internalWindow);
QVERIFY(internalWindow->isInternal());
QVERIFY(internalWindow->readyForPainting());
QVERIFY(leftSpy.isEmpty());
QVERIFY(!leftSpy.wait(100));
// now let's trigger a key, which should result in a leave
quint32 timestamp = 1;
Test::keyboardKeyPressed(KEY_A, timestamp++);
QVERIFY(leftSpy.wait());
QCOMPARE(pressSpy.count(), 1);
Test::keyboardKeyReleased(KEY_A, timestamp++);
QTRY_COMPARE(releaseSpy.count(), 1);
// after hiding the internal window, next key press should trigger an enter
win.hide();
Test::keyboardKeyPressed(KEY_A, timestamp++);
QVERIFY(enteredSpy.wait());
Test::keyboardKeyReleased(KEY_A, timestamp++);
// Destroy the test window.
shellSurface.reset();
QVERIFY(Test::waitForWindowClosed(window));
}
void InternalWindowTest::testTouch()
{
// touch events for internal windows are emulated through mouse events
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setGeometry(0, 0, 100, 100);
win.show();
QTRY_COMPARE(windowAddedSpy.count(), 1);
QSignalSpy pressSpy(&win, &HelperWindow::mousePressed);
QSignalSpy releaseSpy(&win, &HelperWindow::mouseReleased);
QSignalSpy moveSpy(&win, &HelperWindow::mouseMoved);
quint32 timestamp = 1;
QCOMPARE(win.pressedButtons(), Qt::MouseButtons());
Test::touchDown(0, QPointF(50, 50), timestamp++);
QCOMPARE(pressSpy.count(), 1);
QCOMPARE(win.latestGlobalMousePos(), QPoint(50, 50));
QCOMPARE(win.pressedButtons(), Qt::MouseButtons(Qt::LeftButton));
// further touch down should not trigger
Test::touchDown(1, QPointF(75, 75), timestamp++);
QCOMPARE(pressSpy.count(), 1);
Test::touchUp(1, timestamp++);
QCOMPARE(releaseSpy.count(), 0);
QCOMPARE(win.latestGlobalMousePos(), QPoint(50, 50));
QCOMPARE(win.pressedButtons(), Qt::MouseButtons(Qt::LeftButton));
// another press
Test::touchDown(1, QPointF(10, 10), timestamp++);
QCOMPARE(pressSpy.count(), 1);
QCOMPARE(win.latestGlobalMousePos(), QPoint(50, 50));
QCOMPARE(win.pressedButtons(), Qt::MouseButtons(Qt::LeftButton));
// simulate the move
QCOMPARE(moveSpy.count(), 0);
Test::touchMotion(0, QPointF(80, 90), timestamp++);
QCOMPARE(moveSpy.count(), 1);
QCOMPARE(win.latestGlobalMousePos(), QPoint(80, 90));
QCOMPARE(win.pressedButtons(), Qt::MouseButtons(Qt::LeftButton));
// move on other ID should not do anything
Test::touchMotion(1, QPointF(20, 30), timestamp++);
QCOMPARE(moveSpy.count(), 1);
QCOMPARE(win.latestGlobalMousePos(), QPoint(80, 90));
QCOMPARE(win.pressedButtons(), Qt::MouseButtons(Qt::LeftButton));
// now up our main point
Test::touchUp(0, timestamp++);
QCOMPARE(releaseSpy.count(), 1);
QCOMPARE(win.latestGlobalMousePos(), QPoint(80, 90));
QCOMPARE(win.pressedButtons(), Qt::MouseButtons());
// and up the additional point
Test::touchUp(1, timestamp++);
QCOMPARE(releaseSpy.count(), 1);
QCOMPARE(moveSpy.count(), 1);
QCOMPARE(win.latestGlobalMousePos(), QPoint(80, 90));
QCOMPARE(win.pressedButtons(), Qt::MouseButtons());
}
void InternalWindowTest::testOpacity()
{
// this test verifies that opacity is properly synced from QWindow to InternalClient
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setOpacity(0.5);
win.setGeometry(0, 0, 100, 100);
win.show();
QTRY_COMPARE(windowAddedSpy.count(), 1);
auto internalWindow = windowAddedSpy.first().first().value<InternalWindow *>();
QVERIFY(internalWindow);
QVERIFY(internalWindow->isInternal());
QCOMPARE(internalWindow->opacity(), 0.5);
QSignalSpy opacityChangedSpy(internalWindow, &InternalWindow::opacityChanged);
win.setOpacity(0.75);
QCOMPARE(opacityChangedSpy.count(), 1);
QCOMPARE(internalWindow->opacity(), 0.75);
}
void InternalWindowTest::testMove()
{
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setOpacity(0.5);
win.setGeometry(0, 0, 100, 100);
win.show();
QTRY_COMPARE(windowAddedSpy.count(), 1);
auto internalWindow = windowAddedSpy.first().first().value<InternalWindow *>();
QVERIFY(internalWindow);
QCOMPARE(internalWindow->frameGeometry(), QRect(0, 0, 100, 100));
// normal move should be synced
internalWindow->move(QPoint(5, 10));
QCOMPARE(internalWindow->frameGeometry(), QRect(5, 10, 100, 100));
QTRY_COMPARE(win.geometry(), QRect(5, 10, 100, 100));
// another move should also be synced
internalWindow->move(QPoint(10, 20));
QCOMPARE(internalWindow->frameGeometry(), QRect(10, 20, 100, 100));
QTRY_COMPARE(win.geometry(), QRect(10, 20, 100, 100));
// now move with a Geometry update blocker
{
GeometryUpdatesBlocker blocker(internalWindow);
internalWindow->move(QPoint(5, 10));
// not synced!
QCOMPARE(win.geometry(), QRect(10, 20, 100, 100));
}
// after destroying the blocker it should be synced
QTRY_COMPARE(win.geometry(), QRect(5, 10, 100, 100));
}
void InternalWindowTest::testSkipCloseAnimation_data()
{
QTest::addColumn<bool>("initial");
QTest::newRow("set") << true;
QTest::newRow("not set") << false;
}
void InternalWindowTest::testSkipCloseAnimation()
{
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setOpacity(0.5);
win.setGeometry(0, 0, 100, 100);
QFETCH(bool, initial);
win.setProperty("KWIN_SKIP_CLOSE_ANIMATION", initial);
win.show();
QTRY_COMPARE(windowAddedSpy.count(), 1);
auto internalWindow = windowAddedSpy.first().first().value<InternalWindow *>();
QVERIFY(internalWindow);
QCOMPARE(internalWindow->skipsCloseAnimation(), initial);
QSignalSpy skipCloseChangedSpy(internalWindow, &Window::skipCloseAnimationChanged);
win.setProperty("KWIN_SKIP_CLOSE_ANIMATION", !initial);
QCOMPARE(skipCloseChangedSpy.count(), 1);
QCOMPARE(internalWindow->skipsCloseAnimation(), !initial);
win.setProperty("KWIN_SKIP_CLOSE_ANIMATION", initial);
QCOMPARE(skipCloseChangedSpy.count(), 2);
QCOMPARE(internalWindow->skipsCloseAnimation(), initial);
}
void InternalWindowTest::testModifierClickUnrestrictedMove()
{
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setGeometry(0, 0, 100, 100);
win.setFlags(win.flags() & ~Qt::FramelessWindowHint);
win.show();
QTRY_COMPARE(windowAddedSpy.count(), 1);
auto internalWindow = windowAddedSpy.first().first().value<InternalWindow *>();
QVERIFY(internalWindow);
QVERIFY(internalWindow->isDecorated());
KConfigGroup group = kwinApp()->config()->group("MouseBindings");
group.writeEntry("CommandAllKey", "Meta");
group.writeEntry("CommandAll1", "Move");
group.writeEntry("CommandAll2", "Move");
group.writeEntry("CommandAll3", "Move");
group.sync();
workspace()->slotReconfigure();
QCOMPARE(options->commandAllModifier(), Qt::MetaModifier);
QCOMPARE(options->commandAll1(), Options::MouseUnrestrictedMove);
QCOMPARE(options->commandAll2(), Options::MouseUnrestrictedMove);
QCOMPARE(options->commandAll3(), Options::MouseUnrestrictedMove);
// move cursor on window
input()->pointer()->warp(internalWindow->frameGeometry().center());
// simulate modifier+click
quint32 timestamp = 1;
Test::keyboardKeyPressed(KEY_LEFTMETA, timestamp++);
QVERIFY(!internalWindow->isInteractiveMove());
Test::pointerButtonPressed(BTN_LEFT, timestamp++);
QVERIFY(internalWindow->isInteractiveMove());
// release modifier should not change it
Test::keyboardKeyReleased(KEY_LEFTMETA, timestamp++);
QVERIFY(internalWindow->isInteractiveMove());
// but releasing the key should end move/resize
Test::pointerButtonReleased(BTN_LEFT, timestamp++);
QVERIFY(!internalWindow->isInteractiveMove());
}
void InternalWindowTest::testModifierScroll()
{
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setGeometry(0, 0, 100, 100);
win.setFlags(win.flags() & ~Qt::FramelessWindowHint);
win.show();
QTRY_COMPARE(windowAddedSpy.count(), 1);
auto internalWindow = windowAddedSpy.first().first().value<InternalWindow *>();
QVERIFY(internalWindow);
QVERIFY(internalWindow->isDecorated());
KConfigGroup group = kwinApp()->config()->group("MouseBindings");
group.writeEntry("CommandAllKey", "Meta");
group.writeEntry("CommandAllWheel", "change opacity");
group.sync();
workspace()->slotReconfigure();
// move cursor on window
input()->pointer()->warp(internalWindow->frameGeometry().center());
// set the opacity to 0.5
internalWindow->setOpacity(0.5);
QCOMPARE(internalWindow->opacity(), 0.5);
quint32 timestamp = 1;
Test::keyboardKeyPressed(KEY_LEFTMETA, timestamp++);
Test::pointerAxisVertical(-5, timestamp++);
QCOMPARE(internalWindow->opacity(), 0.6);
Test::pointerAxisVertical(5, timestamp++);
QCOMPARE(internalWindow->opacity(), 0.5);
Test::keyboardKeyReleased(KEY_LEFTMETA, timestamp++);
}
void InternalWindowTest::testPopup()
{
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setGeometry(0, 0, 100, 100);
win.setFlags(win.flags() | Qt::Popup);
win.show();
QTRY_COMPARE(windowAddedSpy.count(), 1);
auto internalWindow = windowAddedSpy.first().first().value<InternalWindow *>();
QVERIFY(internalWindow);
QCOMPARE(internalWindow->isPopupWindow(), true);
}
void InternalWindowTest::testScale()
{
QMetaObject::invokeMethod(kwinApp()->outputBackend(), "setVirtualOutputs", Qt::DirectConnection,
Q_ARG(QVector<QRect>, QVector<QRect>({QRect(0, 0, 1280, 1024), QRect(1280 / 2, 0, 1280, 1024)})),
Q_ARG(QVector<qreal>, QVector<qreal>({2, 2})));
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setGeometry(0, 0, 100, 100);
win.setFlags(win.flags() | Qt::Popup);
win.show();
QCOMPARE(win.devicePixelRatio(), 2.0);
QTRY_COMPARE(windowAddedSpy.count(), 1);
auto internalWindow = windowAddedSpy.first().first().value<InternalWindow *>();
QCOMPARE(internalWindow->bufferScale(), 2);
}
void InternalWindowTest::testWindowType_data()
{
QTest::addColumn<NET::WindowType>("windowType");
QTest::newRow("normal") << NET::Normal;
QTest::newRow("desktop") << NET::Desktop;
QTest::newRow("Dock") << NET::Dock;
QTest::newRow("Toolbar") << NET::Toolbar;
QTest::newRow("Menu") << NET::Menu;
QTest::newRow("Dialog") << NET::Dialog;
QTest::newRow("Utility") << NET::Utility;
QTest::newRow("Splash") << NET::Splash;
QTest::newRow("DropdownMenu") << NET::DropdownMenu;
QTest::newRow("PopupMenu") << NET::PopupMenu;
QTest::newRow("Tooltip") << NET::Tooltip;
QTest::newRow("Notification") << NET::Notification;
QTest::newRow("ComboBox") << NET::ComboBox;
QTest::newRow("OnScreenDisplay") << NET::OnScreenDisplay;
QTest::newRow("CriticalNotification") << NET::CriticalNotification;
QTest::newRow("AppletPopup") << NET::AppletPopup;
}
void InternalWindowTest::testWindowType()
{
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setGeometry(0, 0, 100, 100);
QFETCH(NET::WindowType, windowType);
KWindowSystem::setType(win.winId(), windowType);
win.show();
QTRY_COMPARE(windowAddedSpy.count(), 1);
auto internalWindow = windowAddedSpy.first().first().value<InternalWindow *>();
QVERIFY(internalWindow);
QCOMPARE(internalWindow->windowType(), windowType);
}
void InternalWindowTest::testChangeWindowType_data()
{
QTest::addColumn<NET::WindowType>("windowType");
QTest::newRow("desktop") << NET::Desktop;
QTest::newRow("Dock") << NET::Dock;
QTest::newRow("Toolbar") << NET::Toolbar;
QTest::newRow("Menu") << NET::Menu;
QTest::newRow("Dialog") << NET::Dialog;
QTest::newRow("Utility") << NET::Utility;
QTest::newRow("Splash") << NET::Splash;
QTest::newRow("DropdownMenu") << NET::DropdownMenu;
QTest::newRow("PopupMenu") << NET::PopupMenu;
QTest::newRow("Tooltip") << NET::Tooltip;
QTest::newRow("Notification") << NET::Notification;
QTest::newRow("ComboBox") << NET::ComboBox;
QTest::newRow("OnScreenDisplay") << NET::OnScreenDisplay;
QTest::newRow("CriticalNotification") << NET::CriticalNotification;
QTest::newRow("AppletPopup") << NET::AppletPopup;
}
void InternalWindowTest::testChangeWindowType()
{
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setGeometry(0, 0, 100, 100);
win.show();
QTRY_COMPARE(windowAddedSpy.count(), 1);
auto internalWindow = windowAddedSpy.first().first().value<InternalWindow *>();
QVERIFY(internalWindow);
QCOMPARE(internalWindow->windowType(), NET::Normal);
QFETCH(NET::WindowType, windowType);
KWindowSystem::setType(win.winId(), windowType);
QTRY_COMPARE(internalWindow->windowType(), windowType);
KWindowSystem::setType(win.winId(), NET::Normal);
QTRY_COMPARE(internalWindow->windowType(), NET::Normal);
}
void InternalWindowTest::testEffectWindow()
{
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setGeometry(0, 0, 100, 100);
win.show();
QTRY_COMPARE(windowAddedSpy.count(), 1);
auto internalWindow = windowAddedSpy.first().first().value<InternalWindow *>();
QVERIFY(internalWindow);
QVERIFY(internalWindow->effectWindow());
QCOMPARE(internalWindow->effectWindow()->internalWindow(), &win);
QCOMPARE(effects->findWindow(&win), internalWindow->effectWindow());
QCOMPARE(effects->findWindow(&win)->internalWindow(), &win);
}
void InternalWindowTest::testReentrantMoveResize()
{
// This test verifies that calling moveResize() from a slot connected directly
// to the frameGeometryChanged() signal won't cause an infinite recursion.
// Create an internal window.
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow win;
win.setGeometry(0, 0, 100, 100);
win.show();
QTRY_COMPARE(windowAddedSpy.count(), 1);
auto window = windowAddedSpy.first().first().value<InternalWindow *>();
QVERIFY(window);
QCOMPARE(window->pos(), QPoint(0, 0));
// Let's pretend that there is a script that really wants the window to be at (100, 100).
connect(window, &Window::frameGeometryChanged, this, [window]() {
window->moveResize(QRectF(QPointF(100, 100), window->size()));
});
// Trigger the lambda above.
window->move(QPoint(40, 50));
// Eventually, the window will end up at (100, 100).
QCOMPARE(window->pos(), QPoint(100, 100));
}
void InternalWindowTest::testDismissPopup()
{
// This test verifies that a popup window created by the compositor will be dismissed
// when user clicks another window.
// Create a toplevel window.
QSignalSpy windowAddedSpy(workspace(), &Workspace::windowAdded);
HelperWindow clientToplevel;
clientToplevel.setGeometry(0, 0, 100, 100);
clientToplevel.show();
QTRY_COMPARE(windowAddedSpy.count(), 1);
auto serverToplevel = windowAddedSpy.last().first().value<InternalWindow *>();
QVERIFY(serverToplevel);
// Create a popup window.
QRasterWindow clientPopup;
clientPopup.setFlag(Qt::Popup);
clientPopup.setTransientParent(&clientToplevel);
clientPopup.setGeometry(0, 0, 50, 50);
clientPopup.show();
QTRY_COMPARE(windowAddedSpy.count(), 2);
auto serverPopup = windowAddedSpy.last().first().value<InternalWindow *>();
QVERIFY(serverPopup);
// Create the other window to click
HelperWindow otherClientToplevel;
otherClientToplevel.setGeometry(100, 100, 100, 100);
otherClientToplevel.show();
QTRY_COMPARE(windowAddedSpy.count(), 3);
auto serverOtherToplevel = windowAddedSpy.last().first().value<InternalWindow *>();
QVERIFY(serverOtherToplevel);
// Click somewhere outside the popup window.
QSignalSpy popupClosedSpy(serverPopup, &InternalWindow::closed);
quint32 timestamp = 0;
Test::pointerMotion(serverOtherToplevel->frameGeometry().center(), timestamp++);
Test::pointerButtonPressed(BTN_LEFT, timestamp++);
QTRY_COMPARE(popupClosedSpy.count(), 1);
}
}
WAYLANDTEST_MAIN(KWin::InternalWindowTest)
#include "internal_window.moc"