Improve auto-tests for xcbutils.h

This commit is contained in:
Martin Gräßlin 2014-09-24 21:04:15 +02:00
parent fd8006c546
commit 1e2f491176
2 changed files with 83 additions and 34 deletions

View file

@ -39,6 +39,7 @@ private Q_SLOTS:
void mapUnmap();
void geometry();
void destroy();
void destroyNotManaged();
};
void TestXcbWindow::defaultCtor()
@ -95,6 +96,10 @@ void TestXcbWindow::create()
window.create(geometry, XCB_CW_OVERRIDE_REDIRECT, values);
QCOMPARE(window.isValid(), true);
QVERIFY(window != XCB_WINDOW_NONE);
// and reset again
window.reset();
QCOMPARE(window.isValid(), false);
QVERIFY(window == XCB_WINDOW_NONE);
}
void TestXcbWindow::mapUnmap()
@ -115,6 +120,11 @@ void TestXcbWindow::mapUnmap()
Xcb::WindowAttributes attribs3(window);
QCOMPARE(attribs3.isNull(), false);
QVERIFY(attribs3->map_state == XCB_MAP_STATE_UNMAPPED);
// map, unmap shouldn't fail for an invalid window, it's just ignored
window.reset();
window.map();
window.unmap();
}
void TestXcbWindow::geometry()
@ -131,6 +141,12 @@ void TestXcbWindow::geometry()
Xcb::WindowGeometry windowGeometry2(window);
QCOMPARE(windowGeometry2.isNull(), false);
QCOMPARE(windowGeometry2.rect(), geometry2);
// setting a geometry on an invalid window should be ignored
window.reset();
window.setGeometry(geometry2);
Xcb::WindowGeometry windowGeometry3(window);
QCOMPARE(windowGeometry3.isNull(), true);
}
void TestXcbWindow::destroy()
@ -170,5 +186,19 @@ void TestXcbWindow::destroy()
free(error);
}
void TestXcbWindow::destroyNotManaged()
{
Xcb::Window window;
// just destroy the non-existing window
window.reset();
// now let's add a window
window.reset(createWindow(), false);
xcb_window_t w = window;
window.reset();
Xcb::WindowAttributes attribs(w);
QVERIFY(attribs);
}
KWIN_TEST_MAIN(TestXcbWindow)
#include "test_xcb_window.moc"

View file

@ -50,22 +50,23 @@ private Q_SLOTS:
void testTransientFor();
void testPropertyByteArray();
void testPropertyBool();
void testAtom();
private:
void testEmpty(WindowGeometry &geometry);
void testGeometry(WindowGeometry &geometry, const QRect &rect);
xcb_window_t m_testWindow;
Window m_testWindow;
};
void TestXcbWrapper::init()
{
m_testWindow = XCB_WINDOW_NONE;
const uint32_t values[] = { true };
m_testWindow.create(QRect(0, 0, 10, 10), XCB_WINDOW_CLASS_INPUT_ONLY, XCB_CW_OVERRIDE_REDIRECT, values);
QVERIFY(m_testWindow.isValid());
}
void TestXcbWrapper::cleanup()
{
if (m_testWindow != XCB_WINDOW_NONE) {
xcb_destroy_window(connection(), m_testWindow);
}
m_testWindow.reset();
}
void TestXcbWrapper::testEmpty(WindowGeometry &geometry)
@ -79,7 +80,7 @@ void TestXcbWrapper::testEmpty(WindowGeometry &geometry)
void TestXcbWrapper::testGeometry(WindowGeometry &geometry, const QRect &rect)
{
QCOMPARE(geometry.window(), m_testWindow);
QCOMPARE(geometry.window(), (xcb_window_t)m_testWindow);
// now lets retrieve some data
QCOMPARE(geometry.rect(), rect);
QVERIFY(geometry.isRetrieved());
@ -101,9 +102,6 @@ void TestXcbWrapper::defaultCtor()
void TestXcbWrapper::normalCtor()
{
m_testWindow = createWindow();
QVERIFY(m_testWindow != noneWindow());
WindowGeometry geometry(m_testWindow);
QVERIFY(!geometry.isRetrieved());
testGeometry(geometry, QRect(0, 0, 10, 10));
@ -121,8 +119,6 @@ void TestXcbWrapper::copyCtorEmpty()
void TestXcbWrapper::copyCtorBeforeRetrieve()
{
m_testWindow = createWindow();
QVERIFY(m_testWindow != noneWindow());
WindowGeometry geometry(m_testWindow);
QVERIFY(!geometry.isRetrieved());
WindowGeometry other(geometry);
@ -135,8 +131,6 @@ void TestXcbWrapper::copyCtorBeforeRetrieve()
void TestXcbWrapper::copyCtorAfterRetrieve()
{
m_testWindow = createWindow();
QVERIFY(m_testWindow != noneWindow());
WindowGeometry geometry(m_testWindow);
QVERIFY(geometry);
QVERIFY(geometry.isRetrieved());
@ -161,12 +155,15 @@ void TestXcbWrapper::assignementEmpty()
testEmpty(geometry);
testEmpty(other);
QVERIFY(!other.isRetrieved());
// test assignment to self
geometry = geometry;
other = other;
testEmpty(geometry);
testEmpty(other);
}
void TestXcbWrapper::assignmentBeforeRetrieve()
{
m_testWindow = createWindow();
QVERIFY(m_testWindow != noneWindow());
WindowGeometry geometry(m_testWindow);
WindowGeometry other = geometry;
QVERIFY(geometry.isRetrieved());
@ -177,15 +174,17 @@ void TestXcbWrapper::assignmentBeforeRetrieve()
other = WindowGeometry(m_testWindow);
QVERIFY(!other.isRetrieved());
QCOMPARE(other.window(), m_testWindow);
QCOMPARE(other.window(), (xcb_window_t)m_testWindow);
other = WindowGeometry();
testEmpty(geometry);
// test assignment to self
geometry = geometry;
other = other;
testEmpty(geometry);
}
void TestXcbWrapper::assignmentAfterRetrieve()
{
m_testWindow = createWindow();
QVERIFY(m_testWindow != noneWindow());
WindowGeometry geometry(m_testWindow);
QVERIFY(geometry);
QVERIFY(geometry.isRetrieved());
@ -195,6 +194,13 @@ void TestXcbWrapper::assignmentAfterRetrieve()
QVERIFY(other.isRetrieved());
testGeometry(other, QRect(0, 0, 10, 10));
// test assignment to self
geometry = geometry;
other = other;
testEmpty(geometry);
testGeometry(other, QRect(0, 0, 10, 10));
// set to empty again
other = WindowGeometry();
testEmpty(other);
}
@ -207,7 +213,6 @@ void TestXcbWrapper::discard()
WindowGeometry *geometry = new WindowGeometry();
delete geometry;
m_testWindow = createWindow();
geometry = new WindowGeometry(m_testWindow);
delete geometry;
@ -218,8 +223,6 @@ void TestXcbWrapper::discard()
void TestXcbWrapper::testQueryTree()
{
m_testWindow = createWindow();
QVERIFY(m_testWindow != noneWindow());
Tree tree(m_testWindow);
// should have root as parent
QCOMPARE(tree.parent(), static_cast<xcb_window_t>(QX11Info::appRootWindow()));
@ -251,29 +254,27 @@ void TestXcbWrapper::testQueryTree()
void TestXcbWrapper::testCurrentInput()
{
m_testWindow = createWindow();
xcb_connection_t *c = QX11Info::connection();
xcb_map_window(c, m_testWindow);
m_testWindow.map();
QX11Info::setAppTime(QX11Info::getTimestamp());
// let's set the input focus
xcb_set_input_focus(c, XCB_INPUT_FOCUS_PARENT, m_testWindow, QX11Info::appTime());
m_testWindow.focus(XCB_INPUT_FOCUS_PARENT, QX11Info::appTime());
xcb_flush(c);
CurrentInput input;
QCOMPARE(input.window(), m_testWindow);
QCOMPARE(input.window(), (xcb_window_t)m_testWindow);
// creating a copy should make the input object have no window any more
CurrentInput input2(input);
QCOMPARE(input2.window(), m_testWindow);
QCOMPARE(input2.window(), (xcb_window_t)m_testWindow);
QCOMPARE(input.window(), xcb_window_t(XCB_WINDOW_NONE));
}
void TestXcbWrapper::testTransientFor()
{
m_testWindow = createWindow();
TransientFor transient(m_testWindow);
QCOMPARE(transient.window(), m_testWindow);
QCOMPARE(transient.window(), (xcb_window_t)m_testWindow);
// our m_testWindow doesn't have a transient for hint
xcb_window_t compareWindow = XCB_WINDOW_NONE;
QVERIFY(!transient.getTransientFor(&compareWindow));
@ -292,18 +293,18 @@ void TestXcbWrapper::testTransientFor()
// let's get another transient object
TransientFor realTransient(transientWindow);
QVERIFY(realTransient.getTransientFor(&compareWindow));
QCOMPARE(compareWindow, m_testWindow);
QCOMPARE(compareWindow, (xcb_window_t)m_testWindow);
ok = false;
QCOMPARE(realTransient.value<xcb_window_t>(32, XCB_ATOM_WINDOW, XCB_WINDOW_NONE, &ok), m_testWindow);
QCOMPARE(realTransient.value<xcb_window_t>(32, XCB_ATOM_WINDOW, XCB_WINDOW_NONE, &ok), (xcb_window_t)m_testWindow);
QVERIFY(ok);
ok = false;
QCOMPARE(realTransient.value<xcb_window_t>(XCB_WINDOW_NONE, &ok), m_testWindow);
QCOMPARE(realTransient.value<xcb_window_t>(XCB_WINDOW_NONE, &ok), (xcb_window_t)m_testWindow);
QVERIFY(ok);
ok = false;
QCOMPARE(realTransient.value<xcb_window_t>(), m_testWindow);
QCOMPARE(realTransient.value<xcb_window_t*>(nullptr, &ok)[0], m_testWindow);
QCOMPARE(realTransient.value<xcb_window_t>(), (xcb_window_t)m_testWindow);
QCOMPARE(realTransient.value<xcb_window_t*>(nullptr, &ok)[0], (xcb_window_t)m_testWindow);
QVERIFY(ok);
QCOMPARE(realTransient.value<xcb_window_t*>()[0], m_testWindow);
QCOMPARE(realTransient.value<xcb_window_t*>()[0], (xcb_window_t)m_testWindow);
// test for a not existing window
TransientFor doesntExist(XCB_WINDOW_NONE);
@ -402,5 +403,23 @@ void TestXcbWrapper::testPropertyBool()
QVERIFY(!ok);
}
void TestXcbWrapper::testAtom()
{
Atom atom(QByteArrayLiteral("WM_CLIENT_MACHINE"));
QCOMPARE(atom.name(), QByteArrayLiteral("WM_CLIENT_MACHINE"));
QVERIFY(atom == XCB_ATOM_WM_CLIENT_MACHINE);
QVERIFY(atom.isValid());
// test the const paths
const Atom &atom2(atom);
QVERIFY(atom2.isValid());
QVERIFY(atom2 == XCB_ATOM_WM_CLIENT_MACHINE);
QCOMPARE(atom2.name(), QByteArrayLiteral("WM_CLIENT_MACHINE"));
//destroy before retrieved
Atom atom3(QByteArrayLiteral("WM_CLIENT_MACHINE"));
QCOMPARE(atom3.name(), QByteArrayLiteral("WM_CLIENT_MACHINE"));
}
KWIN_TEST_MAIN(TestXcbWrapper)
#include "test_xcb_wrapper.moc"