2024-11-19 06:29:06 +00:00
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#include <QChildEvent>
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#include <QEvent>
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2024-10-20 05:21:03 +00:00
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#include <QInputDevice>
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#include <QList>
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2024-11-19 06:29:06 +00:00
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#include <QMetaMethod>
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2024-10-20 05:21:03 +00:00
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#include <QMetaObject>
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#include <QObject>
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#include <QRect>
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#include <QString>
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#include <QByteArray>
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#include <cstring>
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2024-11-19 06:29:06 +00:00
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#include <QTimerEvent>
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2024-10-20 05:21:03 +00:00
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#include <qinputdevice.h>
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#include "gen_qinputdevice.h"
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2024-12-11 06:55:47 +00:00
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#ifndef _Bool
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#define _Bool bool
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#endif
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2024-10-20 05:21:03 +00:00
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#include "_cgo_export.h"
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2024-11-19 06:29:06 +00:00
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class MiqtVirtualQInputDevice : public virtual QInputDevice {
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public:
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MiqtVirtualQInputDevice(): QInputDevice() {};
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MiqtVirtualQInputDevice(const QString& name, qint64 systemId, QInputDevice::DeviceType typeVal): QInputDevice(name, systemId, typeVal) {};
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MiqtVirtualQInputDevice(QObject* parent): QInputDevice(parent) {};
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MiqtVirtualQInputDevice(const QString& name, qint64 systemId, QInputDevice::DeviceType typeVal, const QString& seatName): QInputDevice(name, systemId, typeVal, seatName) {};
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MiqtVirtualQInputDevice(const QString& name, qint64 systemId, QInputDevice::DeviceType typeVal, const QString& seatName, QObject* parent): QInputDevice(name, systemId, typeVal, seatName, parent) {};
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virtual ~MiqtVirtualQInputDevice() = default;
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// cgo.Handle value for overwritten implementation
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intptr_t handle__Event = 0;
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// Subclass to allow providing a Go implementation
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virtual bool event(QEvent* event) override {
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if (handle__Event == 0) {
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return QInputDevice::event(event);
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}
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QEvent* sigval1 = event;
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bool callback_return_value = miqt_exec_callback_QInputDevice_Event(this, handle__Event, sigval1);
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return callback_return_value;
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}
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// Wrapper to allow calling protected method
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bool virtualbase_Event(QEvent* event) {
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return QInputDevice::event(event);
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}
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// cgo.Handle value for overwritten implementation
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intptr_t handle__EventFilter = 0;
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// Subclass to allow providing a Go implementation
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virtual bool eventFilter(QObject* watched, QEvent* event) override {
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if (handle__EventFilter == 0) {
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return QInputDevice::eventFilter(watched, event);
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}
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QObject* sigval1 = watched;
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QEvent* sigval2 = event;
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bool callback_return_value = miqt_exec_callback_QInputDevice_EventFilter(this, handle__EventFilter, sigval1, sigval2);
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return callback_return_value;
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}
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// Wrapper to allow calling protected method
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bool virtualbase_EventFilter(QObject* watched, QEvent* event) {
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return QInputDevice::eventFilter(watched, event);
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}
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// cgo.Handle value for overwritten implementation
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intptr_t handle__TimerEvent = 0;
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// Subclass to allow providing a Go implementation
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virtual void timerEvent(QTimerEvent* event) override {
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if (handle__TimerEvent == 0) {
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QInputDevice::timerEvent(event);
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return;
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}
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QTimerEvent* sigval1 = event;
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miqt_exec_callback_QInputDevice_TimerEvent(this, handle__TimerEvent, sigval1);
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}
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// Wrapper to allow calling protected method
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void virtualbase_TimerEvent(QTimerEvent* event) {
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QInputDevice::timerEvent(event);
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}
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// cgo.Handle value for overwritten implementation
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intptr_t handle__ChildEvent = 0;
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// Subclass to allow providing a Go implementation
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virtual void childEvent(QChildEvent* event) override {
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if (handle__ChildEvent == 0) {
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QInputDevice::childEvent(event);
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return;
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}
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QChildEvent* sigval1 = event;
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miqt_exec_callback_QInputDevice_ChildEvent(this, handle__ChildEvent, sigval1);
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}
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// Wrapper to allow calling protected method
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void virtualbase_ChildEvent(QChildEvent* event) {
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QInputDevice::childEvent(event);
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}
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// cgo.Handle value for overwritten implementation
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intptr_t handle__CustomEvent = 0;
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// Subclass to allow providing a Go implementation
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virtual void customEvent(QEvent* event) override {
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if (handle__CustomEvent == 0) {
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QInputDevice::customEvent(event);
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return;
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}
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QEvent* sigval1 = event;
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miqt_exec_callback_QInputDevice_CustomEvent(this, handle__CustomEvent, sigval1);
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}
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// Wrapper to allow calling protected method
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void virtualbase_CustomEvent(QEvent* event) {
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QInputDevice::customEvent(event);
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}
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// cgo.Handle value for overwritten implementation
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intptr_t handle__ConnectNotify = 0;
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// Subclass to allow providing a Go implementation
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virtual void connectNotify(const QMetaMethod& signal) override {
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if (handle__ConnectNotify == 0) {
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QInputDevice::connectNotify(signal);
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return;
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}
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const QMetaMethod& signal_ret = signal;
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// Cast returned reference into pointer
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QMetaMethod* sigval1 = const_cast<QMetaMethod*>(&signal_ret);
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miqt_exec_callback_QInputDevice_ConnectNotify(this, handle__ConnectNotify, sigval1);
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}
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// Wrapper to allow calling protected method
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void virtualbase_ConnectNotify(QMetaMethod* signal) {
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QInputDevice::connectNotify(*signal);
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}
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// cgo.Handle value for overwritten implementation
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intptr_t handle__DisconnectNotify = 0;
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// Subclass to allow providing a Go implementation
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virtual void disconnectNotify(const QMetaMethod& signal) override {
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if (handle__DisconnectNotify == 0) {
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QInputDevice::disconnectNotify(signal);
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return;
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}
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const QMetaMethod& signal_ret = signal;
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// Cast returned reference into pointer
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QMetaMethod* sigval1 = const_cast<QMetaMethod*>(&signal_ret);
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miqt_exec_callback_QInputDevice_DisconnectNotify(this, handle__DisconnectNotify, sigval1);
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}
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// Wrapper to allow calling protected method
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void virtualbase_DisconnectNotify(QMetaMethod* signal) {
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QInputDevice::disconnectNotify(*signal);
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}
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};
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2024-12-07 04:15:57 +00:00
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QInputDevice* QInputDevice_new() {
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return new MiqtVirtualQInputDevice();
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2024-10-20 05:21:03 +00:00
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}
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2024-12-07 04:15:57 +00:00
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QInputDevice* QInputDevice_new2(struct miqt_string name, long long systemId, int typeVal) {
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QString name_QString = QString::fromUtf8(name.data, name.len);
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2024-12-07 04:15:57 +00:00
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return new MiqtVirtualQInputDevice(name_QString, static_cast<qint64>(systemId), static_cast<QInputDevice::DeviceType>(typeVal));
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2024-10-20 05:21:03 +00:00
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}
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2024-12-07 04:15:57 +00:00
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QInputDevice* QInputDevice_new3(QObject* parent) {
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return new MiqtVirtualQInputDevice(parent);
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2024-10-20 05:21:03 +00:00
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}
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2024-12-07 04:15:57 +00:00
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QInputDevice* QInputDevice_new4(struct miqt_string name, long long systemId, int typeVal, struct miqt_string seatName) {
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2024-10-20 05:21:03 +00:00
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QString name_QString = QString::fromUtf8(name.data, name.len);
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QString seatName_QString = QString::fromUtf8(seatName.data, seatName.len);
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2024-12-07 04:15:57 +00:00
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return new MiqtVirtualQInputDevice(name_QString, static_cast<qint64>(systemId), static_cast<QInputDevice::DeviceType>(typeVal), seatName_QString);
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2024-10-20 05:21:03 +00:00
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}
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2024-12-07 04:15:57 +00:00
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QInputDevice* QInputDevice_new5(struct miqt_string name, long long systemId, int typeVal, struct miqt_string seatName, QObject* parent) {
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2024-10-20 05:21:03 +00:00
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QString name_QString = QString::fromUtf8(name.data, name.len);
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QString seatName_QString = QString::fromUtf8(seatName.data, seatName.len);
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2024-12-07 04:15:57 +00:00
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return new MiqtVirtualQInputDevice(name_QString, static_cast<qint64>(systemId), static_cast<QInputDevice::DeviceType>(typeVal), seatName_QString, parent);
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}
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void QInputDevice_virtbase(QInputDevice* src, QObject** outptr_QObject) {
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*outptr_QObject = static_cast<QObject*>(src);
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2024-10-20 05:21:03 +00:00
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}
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QMetaObject* QInputDevice_MetaObject(const QInputDevice* self) {
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return (QMetaObject*) self->metaObject();
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}
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void* QInputDevice_Metacast(QInputDevice* self, const char* param1) {
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return self->qt_metacast(param1);
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}
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struct miqt_string QInputDevice_Tr(const char* s) {
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QString _ret = QInputDevice::tr(s);
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// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
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QByteArray _b = _ret.toUtf8();
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struct miqt_string _ms;
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_ms.len = _b.length();
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_ms.data = static_cast<char*>(malloc(_ms.len));
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memcpy(_ms.data, _b.data(), _ms.len);
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return _ms;
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}
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struct miqt_string QInputDevice_Name(const QInputDevice* self) {
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QString _ret = self->name();
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// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
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QByteArray _b = _ret.toUtf8();
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struct miqt_string _ms;
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_ms.len = _b.length();
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_ms.data = static_cast<char*>(malloc(_ms.len));
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memcpy(_ms.data, _b.data(), _ms.len);
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return _ms;
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}
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int QInputDevice_Type(const QInputDevice* self) {
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QInputDevice::DeviceType _ret = self->type();
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return static_cast<int>(_ret);
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}
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int QInputDevice_Capabilities(const QInputDevice* self) {
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QInputDevice::Capabilities _ret = self->capabilities();
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return static_cast<int>(_ret);
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}
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bool QInputDevice_HasCapability(const QInputDevice* self, int cap) {
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return self->hasCapability(static_cast<QInputDevice::Capability>(cap));
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}
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long long QInputDevice_SystemId(const QInputDevice* self) {
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qint64 _ret = self->systemId();
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return static_cast<long long>(_ret);
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}
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struct miqt_string QInputDevice_SeatName(const QInputDevice* self) {
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QString _ret = self->seatName();
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// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
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QByteArray _b = _ret.toUtf8();
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struct miqt_string _ms;
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_ms.len = _b.length();
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_ms.data = static_cast<char*>(malloc(_ms.len));
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memcpy(_ms.data, _b.data(), _ms.len);
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return _ms;
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}
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QRect* QInputDevice_AvailableVirtualGeometry(const QInputDevice* self) {
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return new QRect(self->availableVirtualGeometry());
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}
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2024-11-17 06:21:37 +00:00
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struct miqt_array /* of struct miqt_string */ QInputDevice_SeatNames() {
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2024-10-20 05:21:03 +00:00
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QStringList _ret = QInputDevice::seatNames();
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// Convert QList<> from C++ memory to manually-managed C memory
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struct miqt_string* _arr = static_cast<struct miqt_string*>(malloc(sizeof(struct miqt_string) * _ret.length()));
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for (size_t i = 0, e = _ret.length(); i < e; ++i) {
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QString _lv_ret = _ret[i];
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// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
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QByteArray _lv_b = _lv_ret.toUtf8();
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struct miqt_string _lv_ms;
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_lv_ms.len = _lv_b.length();
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_lv_ms.data = static_cast<char*>(malloc(_lv_ms.len));
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memcpy(_lv_ms.data, _lv_b.data(), _lv_ms.len);
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_arr[i] = _lv_ms;
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}
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2024-11-04 07:18:27 +00:00
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struct miqt_array _out;
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_out.len = _ret.length();
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_out.data = static_cast<void*>(_arr);
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2024-10-20 05:21:03 +00:00
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return _out;
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}
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2024-11-17 06:21:37 +00:00
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struct miqt_array /* of QInputDevice* */ QInputDevice_Devices() {
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2024-10-20 05:21:03 +00:00
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QList<const QInputDevice *> _ret = QInputDevice::devices();
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// Convert QList<> from C++ memory to manually-managed C memory
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QInputDevice** _arr = static_cast<QInputDevice**>(malloc(sizeof(QInputDevice*) * _ret.length()));
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for (size_t i = 0, e = _ret.length(); i < e; ++i) {
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_arr[i] = (QInputDevice*) _ret[i];
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}
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2024-11-04 07:18:27 +00:00
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struct miqt_array _out;
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_out.len = _ret.length();
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_out.data = static_cast<void*>(_arr);
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2024-10-20 05:21:03 +00:00
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return _out;
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}
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QInputDevice* QInputDevice_PrimaryKeyboard() {
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return (QInputDevice*) QInputDevice::primaryKeyboard();
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}
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bool QInputDevice_OperatorEqual(const QInputDevice* self, QInputDevice* other) {
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2024-11-22 06:06:01 +00:00
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return (*self == *other);
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2024-10-20 05:21:03 +00:00
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}
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void QInputDevice_AvailableVirtualGeometryChanged(QInputDevice* self, QRect* area) {
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self->availableVirtualGeometryChanged(*area);
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}
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void QInputDevice_connect_AvailableVirtualGeometryChanged(QInputDevice* self, intptr_t slot) {
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2024-11-19 06:29:06 +00:00
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MiqtVirtualQInputDevice::connect(self, static_cast<void (QInputDevice::*)(QRect)>(&QInputDevice::availableVirtualGeometryChanged), self, [=](QRect area) {
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2024-10-20 05:21:03 +00:00
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QRect* sigval1 = new QRect(area);
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miqt_exec_callback_QInputDevice_AvailableVirtualGeometryChanged(slot, sigval1);
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});
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}
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struct miqt_string QInputDevice_Tr2(const char* s, const char* c) {
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QString _ret = QInputDevice::tr(s, c);
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// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
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QByteArray _b = _ret.toUtf8();
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struct miqt_string _ms;
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_ms.len = _b.length();
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_ms.data = static_cast<char*>(malloc(_ms.len));
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memcpy(_ms.data, _b.data(), _ms.len);
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return _ms;
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}
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struct miqt_string QInputDevice_Tr3(const char* s, const char* c, int n) {
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QString _ret = QInputDevice::tr(s, c, static_cast<int>(n));
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// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
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QByteArray _b = _ret.toUtf8();
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struct miqt_string _ms;
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_ms.len = _b.length();
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_ms.data = static_cast<char*>(malloc(_ms.len));
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memcpy(_ms.data, _b.data(), _ms.len);
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return _ms;
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}
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QInputDevice* QInputDevice_PrimaryKeyboard1(struct miqt_string seatName) {
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QString seatName_QString = QString::fromUtf8(seatName.data, seatName.len);
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return (QInputDevice*) QInputDevice::primaryKeyboard(seatName_QString);
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}
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2024-11-19 06:29:06 +00:00
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void QInputDevice_override_virtual_Event(void* self, intptr_t slot) {
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dynamic_cast<MiqtVirtualQInputDevice*>( (QInputDevice*)(self) )->handle__Event = slot;
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}
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bool QInputDevice_virtualbase_Event(void* self, QEvent* event) {
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return ( (MiqtVirtualQInputDevice*)(self) )->virtualbase_Event(event);
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}
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void QInputDevice_override_virtual_EventFilter(void* self, intptr_t slot) {
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dynamic_cast<MiqtVirtualQInputDevice*>( (QInputDevice*)(self) )->handle__EventFilter = slot;
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}
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bool QInputDevice_virtualbase_EventFilter(void* self, QObject* watched, QEvent* event) {
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return ( (MiqtVirtualQInputDevice*)(self) )->virtualbase_EventFilter(watched, event);
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}
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void QInputDevice_override_virtual_TimerEvent(void* self, intptr_t slot) {
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dynamic_cast<MiqtVirtualQInputDevice*>( (QInputDevice*)(self) )->handle__TimerEvent = slot;
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}
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void QInputDevice_virtualbase_TimerEvent(void* self, QTimerEvent* event) {
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( (MiqtVirtualQInputDevice*)(self) )->virtualbase_TimerEvent(event);
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}
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void QInputDevice_override_virtual_ChildEvent(void* self, intptr_t slot) {
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dynamic_cast<MiqtVirtualQInputDevice*>( (QInputDevice*)(self) )->handle__ChildEvent = slot;
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}
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void QInputDevice_virtualbase_ChildEvent(void* self, QChildEvent* event) {
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( (MiqtVirtualQInputDevice*)(self) )->virtualbase_ChildEvent(event);
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}
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void QInputDevice_override_virtual_CustomEvent(void* self, intptr_t slot) {
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|
dynamic_cast<MiqtVirtualQInputDevice*>( (QInputDevice*)(self) )->handle__CustomEvent = slot;
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|
}
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void QInputDevice_virtualbase_CustomEvent(void* self, QEvent* event) {
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|
( (MiqtVirtualQInputDevice*)(self) )->virtualbase_CustomEvent(event);
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}
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void QInputDevice_override_virtual_ConnectNotify(void* self, intptr_t slot) {
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|
dynamic_cast<MiqtVirtualQInputDevice*>( (QInputDevice*)(self) )->handle__ConnectNotify = slot;
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}
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void QInputDevice_virtualbase_ConnectNotify(void* self, QMetaMethod* signal) {
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|
( (MiqtVirtualQInputDevice*)(self) )->virtualbase_ConnectNotify(signal);
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|
}
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void QInputDevice_override_virtual_DisconnectNotify(void* self, intptr_t slot) {
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|
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|
dynamic_cast<MiqtVirtualQInputDevice*>( (QInputDevice*)(self) )->handle__DisconnectNotify = slot;
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|
}
|
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|
void QInputDevice_virtualbase_DisconnectNotify(void* self, QMetaMethod* signal) {
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|
( (MiqtVirtualQInputDevice*)(self) )->virtualbase_DisconnectNotify(signal);
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|
}
|
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|
void QInputDevice_Delete(QInputDevice* self, bool isSubclass) {
|
|
|
|
if (isSubclass) {
|
|
|
|
delete dynamic_cast<MiqtVirtualQInputDevice*>( self );
|
|
|
|
} else {
|
|
|
|
delete self;
|
|
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|
}
|
2024-10-20 05:21:03 +00:00
|
|
|
}
|
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