mirror of
https://github.com/mappu/miqt.git
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500 lines
14 KiB
C++
500 lines
14 KiB
C++
#include <QAudioDevice>
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#include <QAudioEngine>
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#include <QChildEvent>
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#include <QEvent>
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#include <QMetaMethod>
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#include <QMetaObject>
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#include <QObject>
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#include <QString>
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#include <QByteArray>
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#include <cstring>
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#include <QTimerEvent>
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#include <qaudioengine.h>
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#include "gen_qaudioengine.h"
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#ifdef __cplusplus
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extern "C" {
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#endif
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void miqt_exec_callback_QAudioEngine_outputModeChanged(intptr_t);
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void miqt_exec_callback_QAudioEngine_outputDeviceChanged(intptr_t);
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void miqt_exec_callback_QAudioEngine_masterVolumeChanged(intptr_t);
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void miqt_exec_callback_QAudioEngine_pausedChanged(intptr_t);
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void miqt_exec_callback_QAudioEngine_distanceScaleChanged(intptr_t);
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bool miqt_exec_callback_QAudioEngine_event(QAudioEngine*, intptr_t, QEvent*);
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bool miqt_exec_callback_QAudioEngine_eventFilter(QAudioEngine*, intptr_t, QObject*, QEvent*);
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void miqt_exec_callback_QAudioEngine_timerEvent(QAudioEngine*, intptr_t, QTimerEvent*);
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void miqt_exec_callback_QAudioEngine_childEvent(QAudioEngine*, intptr_t, QChildEvent*);
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void miqt_exec_callback_QAudioEngine_customEvent(QAudioEngine*, intptr_t, QEvent*);
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void miqt_exec_callback_QAudioEngine_connectNotify(QAudioEngine*, intptr_t, QMetaMethod*);
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void miqt_exec_callback_QAudioEngine_disconnectNotify(QAudioEngine*, intptr_t, QMetaMethod*);
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#ifdef __cplusplus
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} /* extern C */
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#endif
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class MiqtVirtualQAudioEngine final : public QAudioEngine {
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public:
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MiqtVirtualQAudioEngine(): QAudioEngine() {};
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MiqtVirtualQAudioEngine(QObject* parent): QAudioEngine(parent) {};
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MiqtVirtualQAudioEngine(int sampleRate): QAudioEngine(sampleRate) {};
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MiqtVirtualQAudioEngine(int sampleRate, QObject* parent): QAudioEngine(sampleRate, parent) {};
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virtual ~MiqtVirtualQAudioEngine() override = 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 QAudioEngine::event(event);
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}
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QEvent* sigval1 = event;
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bool callback_return_value = miqt_exec_callback_QAudioEngine_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 QAudioEngine::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 QAudioEngine::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_QAudioEngine_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 QAudioEngine::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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QAudioEngine::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_QAudioEngine_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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QAudioEngine::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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QAudioEngine::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_QAudioEngine_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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QAudioEngine::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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QAudioEngine::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_QAudioEngine_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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QAudioEngine::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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QAudioEngine::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_QAudioEngine_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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QAudioEngine::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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QAudioEngine::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_QAudioEngine_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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QAudioEngine::disconnectNotify(*signal);
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}
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};
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QAudioEngine* QAudioEngine_new() {
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return new MiqtVirtualQAudioEngine();
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}
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QAudioEngine* QAudioEngine_new2(QObject* parent) {
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return new MiqtVirtualQAudioEngine(parent);
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}
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QAudioEngine* QAudioEngine_new3(int sampleRate) {
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return new MiqtVirtualQAudioEngine(static_cast<int>(sampleRate));
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}
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QAudioEngine* QAudioEngine_new4(int sampleRate, QObject* parent) {
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return new MiqtVirtualQAudioEngine(static_cast<int>(sampleRate), parent);
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}
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void QAudioEngine_virtbase(QAudioEngine* src, QObject** outptr_QObject) {
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*outptr_QObject = static_cast<QObject*>(src);
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}
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QMetaObject* QAudioEngine_metaObject(const QAudioEngine* self) {
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return (QMetaObject*) self->metaObject();
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}
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void* QAudioEngine_metacast(QAudioEngine* self, const char* param1) {
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return self->qt_metacast(param1);
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}
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struct miqt_string QAudioEngine_tr(const char* s) {
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QString _ret = QAudioEngine::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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void QAudioEngine_setOutputMode(QAudioEngine* self, int mode) {
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self->setOutputMode(static_cast<QAudioEngine::OutputMode>(mode));
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}
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int QAudioEngine_outputMode(const QAudioEngine* self) {
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QAudioEngine::OutputMode _ret = self->outputMode();
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return static_cast<int>(_ret);
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}
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int QAudioEngine_sampleRate(const QAudioEngine* self) {
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return self->sampleRate();
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}
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void QAudioEngine_setOutputDevice(QAudioEngine* self, QAudioDevice* device) {
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self->setOutputDevice(*device);
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}
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QAudioDevice* QAudioEngine_outputDevice(const QAudioEngine* self) {
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return new QAudioDevice(self->outputDevice());
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}
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void QAudioEngine_setMasterVolume(QAudioEngine* self, float volume) {
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self->setMasterVolume(static_cast<float>(volume));
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}
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float QAudioEngine_masterVolume(const QAudioEngine* self) {
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return self->masterVolume();
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}
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void QAudioEngine_setPaused(QAudioEngine* self, bool paused) {
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self->setPaused(paused);
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}
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bool QAudioEngine_paused(const QAudioEngine* self) {
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return self->paused();
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}
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void QAudioEngine_setRoomEffectsEnabled(QAudioEngine* self, bool enabled) {
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self->setRoomEffectsEnabled(enabled);
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}
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bool QAudioEngine_roomEffectsEnabled(const QAudioEngine* self) {
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return self->roomEffectsEnabled();
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}
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void QAudioEngine_setDistanceScale(QAudioEngine* self, float scale) {
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self->setDistanceScale(static_cast<float>(scale));
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}
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float QAudioEngine_distanceScale(const QAudioEngine* self) {
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return self->distanceScale();
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}
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void QAudioEngine_outputModeChanged(QAudioEngine* self) {
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self->outputModeChanged();
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}
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void QAudioEngine_connect_outputModeChanged(QAudioEngine* self, intptr_t slot) {
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MiqtVirtualQAudioEngine::connect(self, static_cast<void (QAudioEngine::*)()>(&QAudioEngine::outputModeChanged), self, [=]() {
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miqt_exec_callback_QAudioEngine_outputModeChanged(slot);
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});
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}
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void QAudioEngine_outputDeviceChanged(QAudioEngine* self) {
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self->outputDeviceChanged();
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}
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void QAudioEngine_connect_outputDeviceChanged(QAudioEngine* self, intptr_t slot) {
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MiqtVirtualQAudioEngine::connect(self, static_cast<void (QAudioEngine::*)()>(&QAudioEngine::outputDeviceChanged), self, [=]() {
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miqt_exec_callback_QAudioEngine_outputDeviceChanged(slot);
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});
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}
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void QAudioEngine_masterVolumeChanged(QAudioEngine* self) {
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self->masterVolumeChanged();
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}
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void QAudioEngine_connect_masterVolumeChanged(QAudioEngine* self, intptr_t slot) {
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MiqtVirtualQAudioEngine::connect(self, static_cast<void (QAudioEngine::*)()>(&QAudioEngine::masterVolumeChanged), self, [=]() {
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miqt_exec_callback_QAudioEngine_masterVolumeChanged(slot);
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});
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}
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void QAudioEngine_pausedChanged(QAudioEngine* self) {
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self->pausedChanged();
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}
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void QAudioEngine_connect_pausedChanged(QAudioEngine* self, intptr_t slot) {
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MiqtVirtualQAudioEngine::connect(self, static_cast<void (QAudioEngine::*)()>(&QAudioEngine::pausedChanged), self, [=]() {
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miqt_exec_callback_QAudioEngine_pausedChanged(slot);
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});
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}
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void QAudioEngine_distanceScaleChanged(QAudioEngine* self) {
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self->distanceScaleChanged();
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}
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void QAudioEngine_connect_distanceScaleChanged(QAudioEngine* self, intptr_t slot) {
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MiqtVirtualQAudioEngine::connect(self, static_cast<void (QAudioEngine::*)()>(&QAudioEngine::distanceScaleChanged), self, [=]() {
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miqt_exec_callback_QAudioEngine_distanceScaleChanged(slot);
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});
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}
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void QAudioEngine_start(QAudioEngine* self) {
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self->start();
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}
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void QAudioEngine_stop(QAudioEngine* self) {
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self->stop();
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}
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void QAudioEngine_pause(QAudioEngine* self) {
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self->pause();
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}
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void QAudioEngine_resume(QAudioEngine* self) {
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self->resume();
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}
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struct miqt_string QAudioEngine_tr2(const char* s, const char* c) {
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QString _ret = QAudioEngine::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 QAudioEngine_tr3(const char* s, const char* c, int n) {
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QString _ret = QAudioEngine::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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bool QAudioEngine_override_virtual_event(void* self, intptr_t slot) {
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MiqtVirtualQAudioEngine* self_cast = dynamic_cast<MiqtVirtualQAudioEngine*>( (QAudioEngine*)(self) );
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if (self_cast == nullptr) {
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return false;
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}
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self_cast->handle__event = slot;
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return true;
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}
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bool QAudioEngine_virtualbase_event(void* self, QEvent* event) {
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return ( (MiqtVirtualQAudioEngine*)(self) )->virtualbase_event(event);
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}
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bool QAudioEngine_override_virtual_eventFilter(void* self, intptr_t slot) {
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MiqtVirtualQAudioEngine* self_cast = dynamic_cast<MiqtVirtualQAudioEngine*>( (QAudioEngine*)(self) );
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if (self_cast == nullptr) {
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return false;
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}
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self_cast->handle__eventFilter = slot;
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return true;
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}
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bool QAudioEngine_virtualbase_eventFilter(void* self, QObject* watched, QEvent* event) {
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return ( (MiqtVirtualQAudioEngine*)(self) )->virtualbase_eventFilter(watched, event);
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}
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bool QAudioEngine_override_virtual_timerEvent(void* self, intptr_t slot) {
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MiqtVirtualQAudioEngine* self_cast = dynamic_cast<MiqtVirtualQAudioEngine*>( (QAudioEngine*)(self) );
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if (self_cast == nullptr) {
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return false;
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}
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self_cast->handle__timerEvent = slot;
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return true;
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}
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void QAudioEngine_virtualbase_timerEvent(void* self, QTimerEvent* event) {
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( (MiqtVirtualQAudioEngine*)(self) )->virtualbase_timerEvent(event);
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}
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bool QAudioEngine_override_virtual_childEvent(void* self, intptr_t slot) {
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MiqtVirtualQAudioEngine* self_cast = dynamic_cast<MiqtVirtualQAudioEngine*>( (QAudioEngine*)(self) );
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if (self_cast == nullptr) {
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return false;
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}
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self_cast->handle__childEvent = slot;
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return true;
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}
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void QAudioEngine_virtualbase_childEvent(void* self, QChildEvent* event) {
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( (MiqtVirtualQAudioEngine*)(self) )->virtualbase_childEvent(event);
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}
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bool QAudioEngine_override_virtual_customEvent(void* self, intptr_t slot) {
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MiqtVirtualQAudioEngine* self_cast = dynamic_cast<MiqtVirtualQAudioEngine*>( (QAudioEngine*)(self) );
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if (self_cast == nullptr) {
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return false;
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}
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self_cast->handle__customEvent = slot;
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return true;
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}
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void QAudioEngine_virtualbase_customEvent(void* self, QEvent* event) {
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( (MiqtVirtualQAudioEngine*)(self) )->virtualbase_customEvent(event);
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}
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bool QAudioEngine_override_virtual_connectNotify(void* self, intptr_t slot) {
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MiqtVirtualQAudioEngine* self_cast = dynamic_cast<MiqtVirtualQAudioEngine*>( (QAudioEngine*)(self) );
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if (self_cast == nullptr) {
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return false;
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}
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self_cast->handle__connectNotify = slot;
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return true;
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}
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void QAudioEngine_virtualbase_connectNotify(void* self, QMetaMethod* signal) {
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( (MiqtVirtualQAudioEngine*)(self) )->virtualbase_connectNotify(signal);
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}
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bool QAudioEngine_override_virtual_disconnectNotify(void* self, intptr_t slot) {
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MiqtVirtualQAudioEngine* self_cast = dynamic_cast<MiqtVirtualQAudioEngine*>( (QAudioEngine*)(self) );
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if (self_cast == nullptr) {
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return false;
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}
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self_cast->handle__disconnectNotify = slot;
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return true;
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}
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void QAudioEngine_virtualbase_disconnectNotify(void* self, QMetaMethod* signal) {
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( (MiqtVirtualQAudioEngine*)(self) )->virtualbase_disconnectNotify(signal);
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}
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void QAudioEngine_delete(QAudioEngine* self) {
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delete self;
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}
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