kwin/autotests/integration/window_rules_test.cpp
Vlad Zahorodnii 4bfb0acc17 Make Workspace track managed outputs
This change adjusts the window management abstractions in kwin for the
drm backend providing more than just "desktop" outputs.

Besides that, it has other potential benefits - for example, the
Workspace could start managing allocation of the placeholder output by
itself, thus leading to some simplifications in the drm backend. Another
is that it lets us move wayland code from the drm backend.
2022-07-21 08:43:50 +00:00

227 lines
8.2 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 "atoms.h"
#include "cursor.h"
#include "deleted.h"
#include "output.h"
#include "platform.h"
#include "rules.h"
#include "wayland_server.h"
#include "workspace.h"
#include "x11window.h"
#include <netwm.h>
#include <xcb/xcb_icccm.h>
namespace KWin
{
static const QString s_socketName = QStringLiteral("wayland_test_kwin_window_rules-0");
class WindowRuleTest : public QObject
{
Q_OBJECT
private Q_SLOTS:
void initTestCase();
void init();
void cleanup();
void testApplyInitialMaximizeVert_data();
void testApplyInitialMaximizeVert();
void testWindowClassChange();
};
void WindowRuleTest::initTestCase()
{
qRegisterMetaType<KWin::Window *>();
qRegisterMetaType<KWin::Deleted *>();
QSignalSpy applicationStartedSpy(kwinApp(), &Application::started);
QVERIFY(applicationStartedSpy.isValid());
kwinApp()->platform()->setInitialWindowSize(QSize(1280, 1024));
QVERIFY(waylandServer()->init(s_socketName));
QMetaObject::invokeMethod(kwinApp()->platform(), "setVirtualOutputs", Qt::DirectConnection, Q_ARG(int, 2));
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));
setenv("QT_QPA_PLATFORM", "wayland", true);
Test::initWaylandWorkspace();
}
void WindowRuleTest::init()
{
workspace()->setActiveOutput(QPoint(640, 512));
Cursors::self()->mouse()->setPos(QPoint(640, 512));
QVERIFY(waylandServer()->windows().isEmpty());
}
void WindowRuleTest::cleanup()
{
// discards old rules
RuleBook::self()->load();
}
struct XcbConnectionDeleter
{
static inline void cleanup(xcb_connection_t *pointer)
{
xcb_disconnect(pointer);
}
};
void WindowRuleTest::testApplyInitialMaximizeVert_data()
{
QTest::addColumn<QByteArray>("role");
QTest::newRow("lowercase") << QByteArrayLiteral("mainwindow");
QTest::newRow("CamelCase") << QByteArrayLiteral("MainWindow");
}
void WindowRuleTest::testApplyInitialMaximizeVert()
{
// this test creates the situation of BUG 367554: creates a window and initial apply maximize vertical
// the window is matched by class and role
// load the rule
QFile ruleFile(QFINDTESTDATA("./data/rules/maximize-vert-apply-initial"));
QVERIFY(ruleFile.open(QIODevice::ReadOnly | QIODevice::Text));
QMetaObject::invokeMethod(RuleBook::self(), "temporaryRulesMessage", Q_ARG(QString, QString::fromUtf8(ruleFile.readAll())));
// create the test window
QScopedPointer<xcb_connection_t, XcbConnectionDeleter> c(xcb_connect(nullptr, nullptr));
QVERIFY(!xcb_connection_has_error(c.data()));
xcb_window_t windowId = xcb_generate_id(c.data());
const QRect windowGeometry = QRect(0, 0, 10, 20);
const uint32_t values[] = {
XCB_EVENT_MASK_ENTER_WINDOW | XCB_EVENT_MASK_LEAVE_WINDOW};
xcb_create_window(c.data(), XCB_COPY_FROM_PARENT, windowId, rootWindow(),
windowGeometry.x(),
windowGeometry.y(),
windowGeometry.width(),
windowGeometry.height(),
0, XCB_WINDOW_CLASS_INPUT_OUTPUT, XCB_COPY_FROM_PARENT, XCB_CW_EVENT_MASK, values);
xcb_size_hints_t hints;
memset(&hints, 0, sizeof(hints));
xcb_icccm_size_hints_set_position(&hints, 1, windowGeometry.x(), windowGeometry.y());
xcb_icccm_size_hints_set_size(&hints, 1, windowGeometry.width(), windowGeometry.height());
xcb_icccm_set_wm_normal_hints(c.data(), windowId, &hints);
xcb_icccm_set_wm_class(c.data(), windowId, 9, "kpat\0kpat");
QFETCH(QByteArray, role);
xcb_change_property(c.data(), XCB_PROP_MODE_REPLACE, windowId, atoms->wm_window_role, XCB_ATOM_STRING, 8, role.length(), role.constData());
NETWinInfo info(c.data(), windowId, rootWindow(), NET::WMAllProperties, NET::WM2AllProperties);
info.setWindowType(NET::Normal);
xcb_map_window(c.data(), windowId);
xcb_flush(c.data());
QSignalSpy windowCreatedSpy(workspace(), &Workspace::windowAdded);
QVERIFY(windowCreatedSpy.isValid());
QVERIFY(windowCreatedSpy.wait());
X11Window *window = windowCreatedSpy.last().first().value<X11Window *>();
QVERIFY(window);
QVERIFY(window->isDecorated());
QVERIFY(!window->hasStrut());
QVERIFY(!window->isHiddenInternal());
QVERIFY(!window->readyForPainting());
QMetaObject::invokeMethod(window, "setReadyForPainting");
QVERIFY(window->readyForPainting());
QVERIFY(Test::waitForWaylandSurface(window));
QCOMPARE(window->maximizeMode(), MaximizeVertical);
// destroy window again
QSignalSpy windowClosedSpy(window, &X11Window::windowClosed);
QVERIFY(windowClosedSpy.isValid());
xcb_unmap_window(c.data(), windowId);
xcb_destroy_window(c.data(), windowId);
xcb_flush(c.data());
QVERIFY(windowClosedSpy.wait());
}
void WindowRuleTest::testWindowClassChange()
{
KSharedConfig::Ptr config = KSharedConfig::openConfig(QString(), KConfig::SimpleConfig);
config->group("General").writeEntry("count", 1);
auto group = config->group("1");
group.writeEntry("above", true);
group.writeEntry("aboverule", 2);
group.writeEntry("wmclass", "org.kde.foo");
group.writeEntry("wmclasscomplete", false);
group.writeEntry("wmclassmatch", 1);
group.sync();
RuleBook::self()->setConfig(config);
workspace()->slotReconfigure();
// create the test window
QScopedPointer<xcb_connection_t, XcbConnectionDeleter> c(xcb_connect(nullptr, nullptr));
QVERIFY(!xcb_connection_has_error(c.data()));
xcb_window_t windowId = xcb_generate_id(c.data());
const QRect windowGeometry = QRect(0, 0, 10, 20);
const uint32_t values[] = {
XCB_EVENT_MASK_ENTER_WINDOW | XCB_EVENT_MASK_LEAVE_WINDOW};
xcb_create_window(c.data(), XCB_COPY_FROM_PARENT, windowId, rootWindow(),
windowGeometry.x(),
windowGeometry.y(),
windowGeometry.width(),
windowGeometry.height(),
0, XCB_WINDOW_CLASS_INPUT_OUTPUT, XCB_COPY_FROM_PARENT, XCB_CW_EVENT_MASK, values);
xcb_size_hints_t hints;
memset(&hints, 0, sizeof(hints));
xcb_icccm_size_hints_set_position(&hints, 1, windowGeometry.x(), windowGeometry.y());
xcb_icccm_size_hints_set_size(&hints, 1, windowGeometry.width(), windowGeometry.height());
xcb_icccm_set_wm_normal_hints(c.data(), windowId, &hints);
xcb_icccm_set_wm_class(c.data(), windowId, 23, "org.kde.bar\0org.kde.bar");
NETWinInfo info(c.data(), windowId, rootWindow(), NET::WMAllProperties, NET::WM2AllProperties);
info.setWindowType(NET::Normal);
xcb_map_window(c.data(), windowId);
xcb_flush(c.data());
QSignalSpy windowCreatedSpy(workspace(), &Workspace::windowAdded);
QVERIFY(windowCreatedSpy.isValid());
QVERIFY(windowCreatedSpy.wait());
X11Window *window = windowCreatedSpy.last().first().value<X11Window *>();
QVERIFY(window);
QVERIFY(window->isDecorated());
QVERIFY(!window->hasStrut());
QVERIFY(!window->isHiddenInternal());
QVERIFY(!window->readyForPainting());
QMetaObject::invokeMethod(window, "setReadyForPainting");
QVERIFY(window->readyForPainting());
QVERIFY(Test::waitForWaylandSurface(window));
QCOMPARE(window->keepAbove(), false);
// now change class
QSignalSpy windowClassChangedSpy{window, &X11Window::windowClassChanged};
QVERIFY(windowClassChangedSpy.isValid());
xcb_icccm_set_wm_class(c.data(), windowId, 23, "org.kde.foo\0org.kde.foo");
xcb_flush(c.data());
QVERIFY(windowClassChangedSpy.wait());
QCOMPARE(window->keepAbove(), true);
// destroy window
QSignalSpy windowClosedSpy(window, &X11Window::windowClosed);
QVERIFY(windowClosedSpy.isValid());
xcb_unmap_window(c.data(), windowId);
xcb_destroy_window(c.data(), windowId);
xcb_flush(c.data());
QVERIFY(windowClosedSpy.wait());
}
}
WAYLANDTEST_MAIN(KWin::WindowRuleTest)
#include "window_rules_test.moc"