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// Copyright (C) 2020 The Qt Company Ltd.
// Copyright (C) 2013 Olivier Goffart <ogoffart@woboq.com>
// SPDX-License-Identifier: LicenseRef-Qt-Commercial OR LGPL-3.0-only OR GPL-2.0-only OR GPL-3.0-only
#ifndef QOBJECT_H
#define QOBJECT_H
#ifndef QT_NO_QOBJECT
#include <QtCore/qobjectdefs.h>
#include <QtCore/qstring.h>
#include <QtCore/qbytearray.h>
#include <QtCore/qlist.h>
#ifdef QT_INCLUDE_COMPAT
#include <QtCore/qcoreevent.h>
#endif
#include <QtCore/qscopedpointer.h>
#include <QtCore/qmetatype.h>
#include <QtCore/qobject_impl.h>
#include <QtCore/qbindingstorage.h>
#include <chrono>
QT_BEGIN_NAMESPACE
template <typename T> class QBindable;
class QEvent;
class QTimerEvent;
class QChildEvent;
struct QMetaObject;
class QVariant;
class QObjectPrivate;
class QObject;
class QThread;
class QWidget;
class QAccessibleWidget;
#if QT_CONFIG(regularexpression)
class QRegularExpression;
#endif
struct QDynamicMetaObjectData;
typedef QList<QObject*> QObjectList;
Q_CORE_EXPORT void qt_qFindChildren_helper(const QObject *parent, const QString &name,
const QMetaObject &mo, QList<void *> *list, Qt::FindChildOptions options);
Q_CORE_EXPORT void qt_qFindChildren_helper(const QObject *parent, const QMetaObject &mo,
QList<void *> *list, Qt::FindChildOptions options);
Q_CORE_EXPORT void qt_qFindChildren_helper(const QObject *parent, const QRegularExpression &re,
const QMetaObject &mo, QList<void *> *list, Qt::FindChildOptions options);
Q_CORE_EXPORT QObject *qt_qFindChild_helper(const QObject *parent, const QString &name, const QMetaObject &mo, Qt::FindChildOptions options);
class Q_CORE_EXPORT QObjectData
{
Q_DISABLE_COPY(QObjectData)
public:
QObjectData() = default;
virtual ~QObjectData() = 0;
QObject *q_ptr;
QObject *parent;
QObjectList children;
uint isWidget : 1;
uint blockSig : 1;
uint wasDeleted : 1;
uint isDeletingChildren : 1;
uint sendChildEvents : 1;
uint receiveChildEvents : 1;
uint isWindow : 1; // for QWindow
uint deleteLaterCalled : 1;
uint isQuickItem : 1;
uint willBeWidget : 1; // for handling widget-specific bits in QObject's ctor
uint wasWidget : 1; // for properly cleaning up in QObject's dtor
uint unused : 21;
QAtomicInt postedEvents;
QDynamicMetaObjectData *metaObject;
QBindingStorage bindingStorage;
// ### Qt7: Make this return a const QMetaObject *. You should not mess with
// the metaobjects of existing objects.
QMetaObject *dynamicMetaObject() const;
#ifdef QT_DEBUG
enum { CheckForParentChildLoopsWarnDepth = 4096 };
#endif
};
class Q_CORE_EXPORT QObject
{
Q_OBJECT
Q_PROPERTY(QString objectName READ objectName WRITE setObjectName NOTIFY objectNameChanged
BINDABLE bindableObjectName)
Q_DECLARE_PRIVATE(QObject)
public:
Q_INVOKABLE explicit QObject(QObject *parent = nullptr);
virtual ~QObject();
virtual bool event(QEvent *event);
virtual bool eventFilter(QObject *watched, QEvent *event);
#if defined(QT_NO_TRANSLATION) || defined(Q_QDOC)
static QString tr(const char *sourceText, const char * = nullptr, int = -1)
{ return QString::fromUtf8(sourceText); }
#endif // QT_NO_TRANSLATION
QString objectName() const;
#if QT_CORE_REMOVED_SINCE(6, 4)
void setObjectName(const QString &name);
#endif
Q_WEAK_OVERLOAD
void setObjectName(const QString &name) { doSetObjectName(name); }
void setObjectName(QAnyStringView name);
QBindable<QString> bindableObjectName();
inline bool isWidgetType() const { return d_ptr->isWidget; }
inline bool isWindowType() const { return d_ptr->isWindow; }
inline bool isQuickItemType() const { return d_ptr->isQuickItem; }
inline bool signalsBlocked() const noexcept { return d_ptr->blockSig; }
bool blockSignals(bool b) noexcept;
QThread *thread() const;
void moveToThread(QThread *thread);
int startTimer(int interval, Qt::TimerType timerType = Qt::CoarseTimer);
Q_ALWAYS_INLINE
int startTimer(std::chrono::milliseconds time, Qt::TimerType timerType = Qt::CoarseTimer)
{
return startTimer(int(time.count()), timerType);
}
void killTimer(int id);
template<typename T>
inline T findChild(const QString &aName = QString(), Qt::FindChildOptions options = Qt::FindChildrenRecursively) const
{
typedef typename std::remove_cv<typename std::remove_pointer<T>::type>::type ObjType;
return static_cast<T>(qt_qFindChild_helper(this, aName, ObjType::staticMetaObject, options));
}
template<typename T>
inline QList<T> findChildren(const QString &aName, Qt::FindChildOptions options = Qt::FindChildrenRecursively) const
{
typedef typename std::remove_cv<typename std::remove_pointer<T>::type>::type ObjType;
QList<T> list;
qt_qFindChildren_helper(this, aName, ObjType::staticMetaObject,
reinterpret_cast<QList<void *> *>(&list), options);
return list;
}
template<typename T>
QList<T> findChildren(Qt::FindChildOptions options = Qt::FindChildrenRecursively) const
{
typedef typename std::remove_cv<typename std::remove_pointer<T>::type>::type ObjType;
QList<T> list;
qt_qFindChildren_helper(this, ObjType::staticMetaObject,
reinterpret_cast<QList<void *> *>(&list), options);
return list;
}
#if QT_CONFIG(regularexpression)
template<typename T>
inline QList<T> findChildren(const QRegularExpression &re, Qt::FindChildOptions options = Qt::FindChildrenRecursively) const
{
typedef typename std::remove_cv<typename std::remove_pointer<T>::type>::type ObjType;
QList<T> list;
qt_qFindChildren_helper(this, re, ObjType::staticMetaObject,
reinterpret_cast<QList<void *> *>(&list), options);
return list;
}
#endif // QT_CONFIG(regularexpression)
inline const QObjectList &children() const { return d_ptr->children; }
void setParent(QObject *parent);
void installEventFilter(QObject *filterObj);
void removeEventFilter(QObject *obj);
static QMetaObject::Connection connect(const QObject *sender, const char *signal,
const QObject *receiver, const char *member, Qt::ConnectionType = Qt::AutoConnection);
static QMetaObject::Connection connect(const QObject *sender, const QMetaMethod &signal,
const QObject *receiver, const QMetaMethod &method,
Qt::ConnectionType type = Qt::AutoConnection);
inline QMetaObject::Connection connect(const QObject *sender, const char *signal,
const char *member, Qt::ConnectionType type = Qt::AutoConnection) const;
#ifdef Q_QDOC
template<typename PointerToMemberFunction>
static QMetaObject::Connection connect(const QObject *sender, PointerToMemberFunction signal, const QObject *receiver, PointerToMemberFunction method, Qt::ConnectionType type = Qt::AutoConnection);
template<typename PointerToMemberFunction, typename Functor>
static QMetaObject::Connection connect(const QObject *sender, PointerToMemberFunction signal, Functor functor);
template<typename PointerToMemberFunction, typename Functor>
static QMetaObject::Connection connect(const QObject *sender, PointerToMemberFunction signal, const QObject *context, Functor functor, Qt::ConnectionType type = Qt::AutoConnection);
#else
//Connect a signal to a pointer to qobject member function
template <typename Func1, typename Func2>
static inline QMetaObject::Connection connect(const typename QtPrivate::FunctionPointer<Func1>::Object *sender, Func1 signal,
const typename QtPrivate::FunctionPointer<Func2>::Object *receiver, Func2 slot,
Qt::ConnectionType type = Qt::AutoConnection)
{
typedef QtPrivate::FunctionPointer<Func1> SignalType;
typedef QtPrivate::FunctionPointer<Func2> SlotType;
static_assert(QtPrivate::HasQ_OBJECT_Macro<typename SignalType::Object>::Value,
"No Q_OBJECT in the class with the signal");
//compilation error if the arguments does not match.
static_assert(int(SignalType::ArgumentCount) >= int(SlotType::ArgumentCount),
"The slot requires more arguments than the signal provides.");
static_assert((QtPrivate::CheckCompatibleArguments<typename SignalType::Arguments, typename SlotType::Arguments>::value),
"Signal and slot arguments are not compatible.");
static_assert((QtPrivate::AreArgumentsCompatible<typename SlotType::ReturnType, typename SignalType::ReturnType>::value),
"Return type of the slot is not compatible with the return type of the signal.");
const int *types = nullptr;
if (type == Qt::QueuedConnection || type == Qt::BlockingQueuedConnection)
types = QtPrivate::ConnectionTypes<typename SignalType::Arguments>::types();
return connectImpl(sender, reinterpret_cast<void **>(&signal),
receiver, reinterpret_cast<void **>(&slot),
new QtPrivate::QSlotObject<Func2, typename QtPrivate::List_Left<typename SignalType::Arguments, SlotType::ArgumentCount>::Value,
typename SignalType::ReturnType>(slot),
type, types, &SignalType::Object::staticMetaObject);
}
//connect to a function pointer (not a member)
template <typename Func1, typename Func2>
static inline typename std::enable_if<int(QtPrivate::FunctionPointer<Func2>::ArgumentCount) >= 0, QMetaObject::Connection>::type
connect(const typename QtPrivate::FunctionPointer<Func1>::Object *sender, Func1 signal, Func2 slot)
{
return connect(sender, signal, sender, slot, Qt::DirectConnection);
}
//connect to a function pointer (not a member)
template <typename Func1, typename Func2>
static inline typename std::enable_if<int(QtPrivate::FunctionPointer<Func2>::ArgumentCount) >= 0 &&
!QtPrivate::FunctionPointer<Func2>::IsPointerToMemberFunction, QMetaObject::Connection>::type
connect(const typename QtPrivate::FunctionPointer<Func1>::Object *sender, Func1 signal, const QObject *context, Func2 slot,
Qt::ConnectionType type = Qt::AutoConnection)
{
typedef QtPrivate::FunctionPointer<Func1> SignalType;
typedef QtPrivate::FunctionPointer<Func2> SlotType;
static_assert(QtPrivate::HasQ_OBJECT_Macro<typename SignalType::Object>::Value,
"No Q_OBJECT in the class with the signal");
//compilation error if the arguments does not match.
static_assert(int(SignalType::ArgumentCount) >= int(SlotType::ArgumentCount),
"The slot requires more arguments than the signal provides.");
static_assert((QtPrivate::CheckCompatibleArguments<typename SignalType::Arguments, typename SlotType::Arguments>::value),
"Signal and slot arguments are not compatible.");
static_assert((QtPrivate::AreArgumentsCompatible<typename SlotType::ReturnType, typename SignalType::ReturnType>::value),
"Return type of the slot is not compatible with the return type of the signal.");
const int *types = nullptr;
if (type == Qt::QueuedConnection || type == Qt::BlockingQueuedConnection)
types = QtPrivate::ConnectionTypes<typename SignalType::Arguments>::types();
return connectImpl(sender, reinterpret_cast<void **>(&signal), context, nullptr,
new QtPrivate::QStaticSlotObject<Func2,
typename QtPrivate::List_Left<typename SignalType::Arguments, SlotType::ArgumentCount>::Value,
typename SignalType::ReturnType>(slot),
type, types, &SignalType::Object::staticMetaObject);
}
//connect to a functor
template <typename Func1, typename Func2>
static inline typename std::enable_if<
QtPrivate::FunctionPointer<Func2>::ArgumentCount == -1 &&
!std::is_convertible_v<Func2, const char*>, // don't match old-style connect
QMetaObject::Connection>::type
connect(const typename QtPrivate::FunctionPointer<Func1>::Object *sender, Func1 signal, Func2 slot)
{
return connect(sender, signal, sender, std::move(slot), Qt::DirectConnection);
}
//connect to a functor, with a "context" object defining in which event loop is going to be executed
template <typename Func1, typename Func2>
static inline typename std::enable_if<
QtPrivate::FunctionPointer<Func2>::ArgumentCount == -1 &&
!std::is_convertible_v<Func2, const char*>, // don't match old-style connect
QMetaObject::Connection>::type
connect(const typename QtPrivate::FunctionPointer<Func1>::Object *sender, Func1 signal, const QObject *context, Func2 slot,
Qt::ConnectionType type = Qt::AutoConnection)
{
typedef QtPrivate::FunctionPointer<Func1> SignalType;
const int FunctorArgumentCount = QtPrivate::ComputeFunctorArgumentCount<Func2 , typename SignalType::Arguments>::Value;
static_assert((FunctorArgumentCount >= 0),
"Signal and slot arguments are not compatible.");
const int SlotArgumentCount = (FunctorArgumentCount >= 0) ? FunctorArgumentCount : 0;
typedef typename QtPrivate::FunctorReturnType<Func2, typename QtPrivate::List_Left<typename SignalType::Arguments, SlotArgumentCount>::Value>::Value SlotReturnType;
static_assert((QtPrivate::AreArgumentsCompatible<SlotReturnType, typename SignalType::ReturnType>::value),
"Return type of the slot is not compatible with the return type of the signal.");
static_assert(QtPrivate::HasQ_OBJECT_Macro<typename SignalType::Object>::Value,
"No Q_OBJECT in the class with the signal");
const int *types = nullptr;
if (type == Qt::QueuedConnection || type == Qt::BlockingQueuedConnection)
types = QtPrivate::ConnectionTypes<typename SignalType::Arguments>::types();
return connectImpl(sender, reinterpret_cast<void **>(&signal), context, nullptr,
new QtPrivate::QFunctorSlotObject<Func2, SlotArgumentCount,
typename QtPrivate::List_Left<typename SignalType::Arguments, SlotArgumentCount>::Value,
typename SignalType::ReturnType>(std::move(slot)),
type, types, &SignalType::Object::staticMetaObject);
}
#endif //Q_QDOC
static bool disconnect(const QObject *sender, const char *signal,
const QObject *receiver, const char *member);
static bool disconnect(const QObject *sender, const QMetaMethod &signal,
const QObject *receiver, const QMetaMethod &member);
inline bool disconnect(const char *signal = nullptr,
const QObject *receiver = nullptr, const char *member = nullptr) const
{ return disconnect(this, signal, receiver, member); }
inline bool disconnect(const QObject *receiver, const char *member = nullptr) const
{ return disconnect(this, nullptr, receiver, member); }
static bool disconnect(const QMetaObject::Connection &);
#ifdef Q_QDOC
template<typename PointerToMemberFunction>
static bool disconnect(const QObject *sender, PointerToMemberFunction signal, const QObject *receiver, PointerToMemberFunction method);
#else
template <typename Func1, typename Func2>
static inline bool disconnect(const typename QtPrivate::FunctionPointer<Func1>::Object *sender, Func1 signal,
const typename QtPrivate::FunctionPointer<Func2>::Object *receiver, Func2 slot)
{
typedef QtPrivate::FunctionPointer<Func1> SignalType;
typedef QtPrivate::FunctionPointer<Func2> SlotType;
static_assert(QtPrivate::HasQ_OBJECT_Macro<typename SignalType::Object>::Value,
"No Q_OBJECT in the class with the signal");
//compilation error if the arguments does not match.
static_assert((QtPrivate::CheckCompatibleArguments<typename SignalType::Arguments, typename SlotType::Arguments>::value),
"Signal and slot arguments are not compatible.");
return disconnectImpl(sender, reinterpret_cast<void **>(&signal), receiver, reinterpret_cast<void **>(&slot),
&SignalType::Object::staticMetaObject);
}
template <typename Func1>
static inline bool disconnect(const typename QtPrivate::FunctionPointer<Func1>::Object *sender, Func1 signal,
const QObject *receiver, void **zero)
{
// This is the overload for when one wish to disconnect a signal from any slot. (slot=nullptr)
// Since the function template parameter cannot be deduced from '0', we use a
// dummy void ** parameter that must be equal to 0
Q_ASSERT(!zero);
typedef QtPrivate::FunctionPointer<Func1> SignalType;
return disconnectImpl(sender, reinterpret_cast<void **>(&signal), receiver, zero,
&SignalType::Object::staticMetaObject);
}
#endif //Q_QDOC
void dumpObjectTree() const;
void dumpObjectInfo() const;
bool setProperty(const char *name, const QVariant &value);
QVariant property(const char *name) const;
QList<QByteArray> dynamicPropertyNames() const;
QBindingStorage *bindingStorage() { return &d_ptr->bindingStorage; }
const QBindingStorage *bindingStorage() const { return &d_ptr->bindingStorage; }
Q_SIGNALS:
void destroyed(QObject * = nullptr);
void objectNameChanged(const QString &objectName, QPrivateSignal);
public:
inline QObject *parent() const { return d_ptr->parent; }
inline bool inherits(const char *classname) const
{
return const_cast<QObject *>(this)->qt_metacast(classname) != nullptr;
}
public Q_SLOTS:
void deleteLater();
protected:
QObject *sender() const;
int senderSignalIndex() const;
int receivers(const char *signal) const;
bool isSignalConnected(const QMetaMethod &signal) const;
virtual void timerEvent(QTimerEvent *event);
virtual void childEvent(QChildEvent *event);
virtual void customEvent(QEvent *event);
virtual void connectNotify(const QMetaMethod &signal);
virtual void disconnectNotify(const QMetaMethod &signal);
protected:
QObject(QObjectPrivate &dd, QObject *parent = nullptr);
protected:
QScopedPointer<QObjectData> d_ptr;
friend struct QMetaObject;
friend struct QMetaObjectPrivate;
friend class QMetaCallEvent;
friend class QApplication;
friend class QApplicationPrivate;
friend class QCoreApplication;
friend class QCoreApplicationPrivate;
friend class QWidget;
friend class QAccessibleWidget;
friend class QThreadData;
private:
void doSetObjectName(const QString &name);
Q_DISABLE_COPY(QObject)
Q_PRIVATE_SLOT(d_func(), void _q_reregisterTimers(void *))
private:
static QMetaObject::Connection connectImpl(const QObject *sender, void **signal,
const QObject *receiver, void **slotPtr,
QtPrivate::QSlotObjectBase *slot, Qt::ConnectionType type,
const int *types, const QMetaObject *senderMetaObject);
static bool disconnectImpl(const QObject *sender, void **signal, const QObject *receiver, void **slot,
const QMetaObject *senderMetaObject);
};
inline QMetaObject::Connection QObject::connect(const QObject *asender, const char *asignal,
const char *amember, Qt::ConnectionType atype) const
{ return connect(asender, asignal, this, amember, atype); }
template <class T>
inline T qobject_cast(QObject *object)
{
typedef typename std::remove_cv<typename std::remove_pointer<T>::type>::type ObjType;
static_assert(QtPrivate::HasQ_OBJECT_Macro<ObjType>::Value,
"qobject_cast requires the type to have a Q_OBJECT macro");
return static_cast<T>(ObjType::staticMetaObject.cast(object));
}
template <class T>
inline T qobject_cast(const QObject *object)
{
typedef typename std::remove_cv<typename std::remove_pointer<T>::type>::type ObjType;
static_assert(QtPrivate::HasQ_OBJECT_Macro<ObjType>::Value,
"qobject_cast requires the type to have a Q_OBJECT macro");
return static_cast<T>(ObjType::staticMetaObject.cast(object));
}
template <class T> constexpr const char * qobject_interface_iid() = delete;
template <class T> inline T *
qobject_iid_cast(QObject *object, const char *IId = qobject_interface_iid<T *>())
{
return reinterpret_cast<T *>((object ? object->qt_metacast(IId) : nullptr));
}
template <class T> inline std::enable_if_t<std::is_const<T>::value, T *>
qobject_iid_cast(const QObject *object)
{
// NOLINTNEXTLINE(cppcoreguidelines-pro-type-const-cast)
QObject *o = const_cast<QObject *>(object);
return qobject_iid_cast<std::remove_cv_t<T>>(o);
}
#if defined(Q_QDOC)
# define Q_DECLARE_INTERFACE(IFace, IId)
#elif !defined(Q_MOC_RUN)
# define Q_DECLARE_INTERFACE(IFace, IId) \
template <> constexpr const char *qobject_interface_iid<IFace *>() \
{ return IId; } \
template <> inline IFace *qobject_cast<IFace *>(QObject *object) \
{ return qobject_iid_cast<IFace>(object); } \
template <> inline const IFace *qobject_cast<const IFace *>(const QObject *object) \
{ return qobject_iid_cast<const IFace>(object); }
#endif // Q_MOC_RUN
inline const QBindingStorage *qGetBindingStorage(const QObject *o)
{
return o->bindingStorage();
}
inline QBindingStorage *qGetBindingStorage(QObject *o)
{
return o->bindingStorage();
}
#ifndef QT_NO_DEBUG_STREAM
Q_CORE_EXPORT QDebug operator<<(QDebug, const QObject *);
#endif
class QSignalBlocker
{
public:
inline explicit QSignalBlocker(QObject *o) noexcept;
inline explicit QSignalBlocker(QObject &o) noexcept;
inline ~QSignalBlocker();
inline QSignalBlocker(QSignalBlocker &&other) noexcept;
inline QSignalBlocker &operator=(QSignalBlocker &&other) noexcept;
inline void reblock() noexcept;
inline void unblock() noexcept;
private:
Q_DISABLE_COPY(QSignalBlocker)
QObject *m_o;
bool m_blocked;
bool m_inhibited;
};
QSignalBlocker::QSignalBlocker(QObject *o) noexcept
: m_o(o),
m_blocked(o && o->blockSignals(true)),
m_inhibited(false)
{}
QSignalBlocker::QSignalBlocker(QObject &o) noexcept
: m_o(&o),
m_blocked(o.blockSignals(true)),
m_inhibited(false)
{}
QSignalBlocker::QSignalBlocker(QSignalBlocker &&other) noexcept
: m_o(other.m_o),
m_blocked(other.m_blocked),
m_inhibited(other.m_inhibited)
{
other.m_o = nullptr;
}
QSignalBlocker &QSignalBlocker::operator=(QSignalBlocker &&other) noexcept
{
if (this != &other) {
// if both *this and other block the same object's signals:
// unblock *this iff our dtor would unblock, but other's wouldn't
if (m_o != other.m_o || (!m_inhibited && other.m_inhibited))
unblock();
m_o = other.m_o;
m_blocked = other.m_blocked;
m_inhibited = other.m_inhibited;
// disable other:
other.m_o = nullptr;
}
return *this;
}
QSignalBlocker::~QSignalBlocker()
{
if (m_o && !m_inhibited)
m_o->blockSignals(m_blocked);
}
void QSignalBlocker::reblock() noexcept
{
if (m_o)
m_o->blockSignals(true);
m_inhibited = false;
}
void QSignalBlocker::unblock() noexcept
{
if (m_o)
m_o->blockSignals(m_blocked);
m_inhibited = true;
}
namespace QtPrivate {
inline QObject & deref_for_methodcall(QObject &o) { return o; }
inline QObject & deref_for_methodcall(QObject *o) { return *o; }
}
#define Q_SET_OBJECT_NAME(obj) QT_PREPEND_NAMESPACE(QtPrivate)::deref_for_methodcall(obj).setObjectName(QLatin1StringView(#obj))
QT_END_NAMESPACE
#endif
#endif // QOBJECT_H