#include #include #include #include #include #include #include #include #include "gen_qaudiodevice.h" #ifndef _Bool #define _Bool bool #endif #include "_cgo_export.h" QAudioDevice* QAudioDevice_new() { return new QAudioDevice(); } QAudioDevice* QAudioDevice_new2(QAudioDevice* other) { return new QAudioDevice(*other); } void QAudioDevice_Swap(QAudioDevice* self, QAudioDevice* other) { self->swap(*other); } void QAudioDevice_OperatorAssign(QAudioDevice* self, QAudioDevice* other) { self->operator=(*other); } bool QAudioDevice_OperatorEqual(const QAudioDevice* self, QAudioDevice* other) { return (*self == *other); } bool QAudioDevice_OperatorNotEqual(const QAudioDevice* self, QAudioDevice* other) { return (*self != *other); } bool QAudioDevice_IsNull(const QAudioDevice* self) { return self->isNull(); } struct miqt_string QAudioDevice_Id(const QAudioDevice* self) { QByteArray _qb = self->id(); struct miqt_string _ms; _ms.len = _qb.length(); _ms.data = static_cast(malloc(_ms.len)); memcpy(_ms.data, _qb.data(), _ms.len); return _ms; } struct miqt_string QAudioDevice_Description(const QAudioDevice* self) { QString _ret = self->description(); // Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory QByteArray _b = _ret.toUtf8(); struct miqt_string _ms; _ms.len = _b.length(); _ms.data = static_cast(malloc(_ms.len)); memcpy(_ms.data, _b.data(), _ms.len); return _ms; } bool QAudioDevice_IsDefault(const QAudioDevice* self) { return self->isDefault(); } int QAudioDevice_Mode(const QAudioDevice* self) { QAudioDevice::Mode _ret = self->mode(); return static_cast(_ret); } bool QAudioDevice_IsFormatSupported(const QAudioDevice* self, QAudioFormat* format) { return self->isFormatSupported(*format); } QAudioFormat* QAudioDevice_PreferredFormat(const QAudioDevice* self) { return new QAudioFormat(self->preferredFormat()); } int QAudioDevice_MinimumSampleRate(const QAudioDevice* self) { return self->minimumSampleRate(); } int QAudioDevice_MaximumSampleRate(const QAudioDevice* self) { return self->maximumSampleRate(); } int QAudioDevice_MinimumChannelCount(const QAudioDevice* self) { return self->minimumChannelCount(); } int QAudioDevice_MaximumChannelCount(const QAudioDevice* self) { return self->maximumChannelCount(); } struct miqt_array /* of uint16_t */ QAudioDevice_SupportedSampleFormats(const QAudioDevice* self) { QList _ret = self->supportedSampleFormats(); // Convert QList<> from C++ memory to manually-managed C memory uint16_t* _arr = static_cast(malloc(sizeof(uint16_t) * _ret.length())); for (size_t i = 0, e = _ret.length(); i < e; ++i) { QAudioFormat::SampleFormat _lv_ret = _ret[i]; _arr[i] = static_cast(_lv_ret); } struct miqt_array _out; _out.len = _ret.length(); _out.data = static_cast(_arr); return _out; } uint32_t QAudioDevice_ChannelConfiguration(const QAudioDevice* self) { QAudioFormat::ChannelConfig _ret = self->channelConfiguration(); return static_cast(_ret); } void QAudioDevice_Delete(QAudioDevice* self, bool isSubclass) { if (isSubclass) { delete dynamic_cast( self ); } else { delete self; } }