kwin/autotests/integration/screen_changes_test.cpp
Vlad Zahorodnii d1b35f306d Introduce started signal in Application
The new signal is emitted when the Application has fully been initialized.

It allows us to change the startup sequence, for example create workspace
before starting the Xwayland server, without making any adjustments in our
test suit.
2020-07-17 09:10:51 +00:00

199 lines
7.6 KiB
C++

/********************************************************************
KWin - the KDE window manager
This file is part of the KDE project.
Copyright (C) 2016 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 "kwin_wayland_test.h"
#include "cursor.h"
#include "platform.h"
#include "screens.h"
#include "wayland_server.h"
#include <KWayland/Client/output.h>
#include <KWayland/Client/xdgoutput.h>
#include <KWayland/Client/registry.h>
using namespace KWin;
using namespace KWayland::Client;
static const QString s_socketName = QStringLiteral("wayland_test_kwin_screen_changes-0");
class ScreenChangesTest : public QObject
{
Q_OBJECT
private Q_SLOTS:
void initTestCase();
void init();
void cleanup();
void testScreenAddRemove();
};
void ScreenChangesTest::initTestCase()
{
QSignalSpy applicationStartedSpy(kwinApp(), &Application::started);
QVERIFY(applicationStartedSpy.isValid());
kwinApp()->platform()->setInitialWindowSize(QSize(1280, 1024));
QVERIFY(waylandServer()->init(s_socketName.toLocal8Bit()));
kwinApp()->start();
QVERIFY(applicationStartedSpy.wait());
setenv("QT_QPA_PLATFORM", "wayland", true);
waylandServer()->initWorkspace();
}
void ScreenChangesTest::init()
{
QVERIFY(Test::setupWaylandConnection());
screens()->setCurrent(0);
KWin::Cursors::self()->mouse()->setPos(QPoint(640, 512));
}
void ScreenChangesTest::cleanup()
{
Test::destroyWaylandConnection();
}
void ScreenChangesTest::testScreenAddRemove()
{
// this test verifies that when a new screen is added it gets synced to Wayland
// first create a registry to get signals about Outputs announced/removed
Registry registry;
QSignalSpy allAnnounced(&registry, &Registry::interfacesAnnounced);
QVERIFY(allAnnounced.isValid());
QSignalSpy outputAnnouncedSpy(&registry, &Registry::outputAnnounced);
QVERIFY(outputAnnouncedSpy.isValid());
QSignalSpy outputRemovedSpy(&registry, &Registry::outputRemoved);
QVERIFY(outputRemovedSpy.isValid());
registry.create(Test::waylandConnection());
QVERIFY(registry.isValid());
registry.setup();
QVERIFY(allAnnounced.wait());
const auto xdgOMData = registry.interface(Registry::Interface::XdgOutputUnstableV1);
auto xdgOutputManager = registry.createXdgOutputManager(xdgOMData.name, xdgOMData.version);
// should be one output
QCOMPARE(screens()->count(), 1);
QCOMPARE(outputAnnouncedSpy.count(), 1);
const quint32 firstOutputId = outputAnnouncedSpy.first().first().value<quint32>();
QVERIFY(firstOutputId != 0u);
outputAnnouncedSpy.clear();
// let's announce a new output
QSignalSpy screensChangedSpy(screens(), &Screens::changed);
QVERIFY(screensChangedSpy.isValid());
const QVector<QRect> geometries{QRect(0, 0, 1280, 1024), QRect(1280, 0, 1280, 1024)};
QMetaObject::invokeMethod(kwinApp()->platform(), "setVirtualOutputs",
Qt::DirectConnection,
Q_ARG(int, 2),
Q_ARG(QVector<QRect>, geometries));
QVERIFY(screensChangedSpy.wait());
QCOMPARE(screensChangedSpy.count(), 1);
QCOMPARE(screens()->count(), 2);
QCOMPARE(screens()->geometry(0), geometries.at(0));
QCOMPARE(screens()->geometry(1), geometries.at(1));
// this should result in it getting announced, two new outputs are added...
QVERIFY(outputAnnouncedSpy.wait());
if (outputAnnouncedSpy.count() < 2) {
QVERIFY(outputAnnouncedSpy.wait());
}
QCOMPARE(outputAnnouncedSpy.count(), 2);
// ... and afterward the previous output gets removed
if (outputRemovedSpy.isEmpty()) {
QVERIFY(outputRemovedSpy.wait());
}
QCOMPARE(outputRemovedSpy.count(), 1);
QCOMPARE(outputRemovedSpy.first().first().value<quint32>(), firstOutputId);
// let's wait a little bit to ensure we don't get more events
QTest::qWait(100);
QCOMPARE(outputAnnouncedSpy.count(), 2);
QCOMPARE(outputRemovedSpy.count(), 1);
// let's create the output objects to ensure they are correct
QScopedPointer<Output> o1(registry.createOutput(outputAnnouncedSpy.first().first().value<quint32>(), outputAnnouncedSpy.first().last().value<quint32>()));
QVERIFY(o1->isValid());
QSignalSpy o1ChangedSpy(o1.data(), &Output::changed);
QVERIFY(o1ChangedSpy.isValid());
QVERIFY(o1ChangedSpy.wait());
QCOMPARE(o1->geometry(), geometries.at(0));
QScopedPointer<Output> o2(registry.createOutput(outputAnnouncedSpy.last().first().value<quint32>(), outputAnnouncedSpy.last().last().value<quint32>()));
QVERIFY(o2->isValid());
QSignalSpy o2ChangedSpy(o2.data(), &Output::changed);
QVERIFY(o2ChangedSpy.isValid());
QVERIFY(o2ChangedSpy.wait());
QCOMPARE(o2->geometry(), geometries.at(1));
//and check XDGOutput is synced
QScopedPointer<XdgOutput> xdgO1(xdgOutputManager->getXdgOutput(o1.data()));
QSignalSpy xdgO1ChangedSpy(xdgO1.data(), &XdgOutput::changed);
QVERIFY(xdgO1ChangedSpy.isValid());
QVERIFY(xdgO1ChangedSpy.wait());
QCOMPARE(xdgO1->logicalPosition(), geometries.at(0).topLeft());
QCOMPARE(xdgO1->logicalSize(), geometries.at(0).size());
QScopedPointer<XdgOutput> xdgO2(xdgOutputManager->getXdgOutput(o2.data()));
QSignalSpy xdgO2ChangedSpy(xdgO2.data(), &XdgOutput::changed);
QVERIFY(xdgO2ChangedSpy.isValid());
QVERIFY(xdgO2ChangedSpy.wait());
QCOMPARE(xdgO2->logicalPosition(), geometries.at(1).topLeft());
QCOMPARE(xdgO2->logicalSize(), geometries.at(1).size());
QVERIFY(xdgO1->name().startsWith("Virtual-"));
QVERIFY(xdgO1->name() != xdgO2->name());
QVERIFY(!xdgO1->description().isEmpty());
// now let's try to remove one output again
outputAnnouncedSpy.clear();
outputRemovedSpy.clear();
screensChangedSpy.clear();
QSignalSpy o1RemovedSpy(o1.data(), &Output::removed);
QVERIFY(o1RemovedSpy.isValid());
QSignalSpy o2RemovedSpy(o2.data(), &Output::removed);
QVERIFY(o2RemovedSpy.isValid());
const QVector<QRect> geometries2{QRect(0, 0, 1280, 1024)};
QMetaObject::invokeMethod(kwinApp()->platform(), "setVirtualOutputs",
Qt::DirectConnection,
Q_ARG(int, 1),
Q_ARG(QVector<QRect>, geometries2));
QVERIFY(screensChangedSpy.wait());
QCOMPARE(screensChangedSpy.count(), 1);
QCOMPARE(screens()->count(), 1);
QCOMPARE(screens()->geometry(0), geometries2.at(0));
QVERIFY(outputAnnouncedSpy.wait());
QCOMPARE(outputAnnouncedSpy.count(), 1);
if (o1RemovedSpy.isEmpty()) {
QVERIFY(o1RemovedSpy.wait());
}
if (o2RemovedSpy.isEmpty()) {
QVERIFY(o2RemovedSpy.wait());
}
// now wait a bit to ensure we don't get more events
QTest::qWait(100);
QCOMPARE(outputAnnouncedSpy.count(), 1);
QCOMPARE(o1RemovedSpy.count(), 1);
QCOMPARE(o2RemovedSpy.count(), 1);
QCOMPARE(outputRemovedSpy.count(), 2);
}
WAYLANDTEST_MAIN(ScreenChangesTest)
#include "screen_changes_test.moc"