/**************************************************************************** ** Meta object code from reading C++ file 'VHDAccelerometerData.h' ** ** Created by: The Qt Meta Object Compiler version 67 (Qt 5.15.10) ** ** WARNING! All changes made in this file will be lost! *****************************************************************************/ #include #include "../luis/application/sources/view/hd/data/VHDAccelerometerData.h" #include #include #if !defined(Q_MOC_OUTPUT_REVISION) #error "The header file 'VHDAccelerometerData.h' doesn't include ." #elif Q_MOC_OUTPUT_REVISION != 67 #error "This file was generated using the moc from 5.15.10. It" #error "cannot be used with the include files from this version of Qt." #error "(The moc has changed too much.)" #endif QT_BEGIN_MOC_NAMESPACE QT_WARNING_PUSH QT_WARNING_DISABLE_DEPRECATED struct qt_meta_stringdata_View__VHDAccelerometer_t { QByteArrayData data[32]; char stringdata0[255]; }; #define QT_MOC_LITERAL(idx, ofs, len) \ Q_STATIC_BYTE_ARRAY_DATA_HEADER_INITIALIZER_WITH_OFFSET(len, \ qptrdiff(offsetof(qt_meta_stringdata_View__VHDAccelerometer_t, stringdata0) + ofs \ - idx * sizeof(QByteArrayData)) \ ) static const qt_meta_stringdata_View__VHDAccelerometer_t qt_meta_stringdata_View__VHDAccelerometer = { { QT_MOC_LITERAL(0, 0, 22), // "View::VHDAccelerometer" QT_MOC_LITERAL(1, 23, 8), // "xChanged" QT_MOC_LITERAL(2, 32, 0), // "" QT_MOC_LITERAL(3, 33, 2), // "vx" QT_MOC_LITERAL(4, 36, 8), // "yChanged" QT_MOC_LITERAL(5, 45, 2), // "vy" QT_MOC_LITERAL(6, 48, 8), // "zChanged" QT_MOC_LITERAL(7, 57, 2), // "vz" QT_MOC_LITERAL(8, 60, 11), // "xMaxChanged" QT_MOC_LITERAL(9, 72, 5), // "vxMax" QT_MOC_LITERAL(10, 78, 11), // "yMaxChanged" QT_MOC_LITERAL(11, 90, 5), // "vyMax" QT_MOC_LITERAL(12, 96, 11), // "zMaxChanged" QT_MOC_LITERAL(13, 108, 5), // "vzMax" QT_MOC_LITERAL(14, 114, 12), // "xTiltChanged" QT_MOC_LITERAL(15, 127, 6), // "vxTilt" QT_MOC_LITERAL(16, 134, 12), // "yTiltChanged" QT_MOC_LITERAL(17, 147, 6), // "vyTilt" QT_MOC_LITERAL(18, 154, 12), // "zTiltChanged" QT_MOC_LITERAL(19, 167, 6), // "vzTilt" QT_MOC_LITERAL(20, 174, 15), // "onActionReceive" QT_MOC_LITERAL(21, 190, 19), // "HDAccelerometerData" QT_MOC_LITERAL(22, 210, 5), // "vData" QT_MOC_LITERAL(23, 216, 1), // "x" QT_MOC_LITERAL(24, 218, 1), // "y" QT_MOC_LITERAL(25, 220, 1), // "z" QT_MOC_LITERAL(26, 222, 4), // "xMax" QT_MOC_LITERAL(27, 227, 4), // "yMax" QT_MOC_LITERAL(28, 232, 4), // "zMax" QT_MOC_LITERAL(29, 237, 5), // "xTilt" QT_MOC_LITERAL(30, 243, 5), // "yTilt" QT_MOC_LITERAL(31, 249, 5) // "zTilt" }, "View::VHDAccelerometer\0xChanged\0\0vx\0" "yChanged\0vy\0zChanged\0vz\0xMaxChanged\0" "vxMax\0yMaxChanged\0vyMax\0zMaxChanged\0" "vzMax\0xTiltChanged\0vxTilt\0yTiltChanged\0" "vyTilt\0zTiltChanged\0vzTilt\0onActionReceive\0" "HDAccelerometerData\0vData\0x\0y\0z\0xMax\0" "yMax\0zMax\0xTilt\0yTilt\0zTilt" }; #undef QT_MOC_LITERAL static const uint qt_meta_data_View__VHDAccelerometer[] = { // content: 8, // revision 0, // classname 0, 0, // classinfo 10, 14, // methods 9, 94, // properties 0, 0, // enums/sets 0, 0, // constructors 0, // flags 9, // signalCount // signals: name, argc, parameters, tag, flags 1, 1, 64, 2, 0x06 /* Public */, 4, 1, 67, 2, 0x06 /* Public */, 6, 1, 70, 2, 0x06 /* Public */, 8, 1, 73, 2, 0x06 /* Public */, 10, 1, 76, 2, 0x06 /* Public */, 12, 1, 79, 2, 0x06 /* Public */, 14, 1, 82, 2, 0x06 /* Public */, 16, 1, 85, 2, 0x06 /* Public */, 18, 1, 88, 2, 0x06 /* Public */, // slots: name, argc, parameters, tag, flags 20, 1, 91, 2, 0x08 /* Private */, // signals: parameters QMetaType::Void, QMetaType::Float, 3, QMetaType::Void, QMetaType::Float, 5, QMetaType::Void, QMetaType::Float, 7, QMetaType::Void, QMetaType::Float, 9, QMetaType::Void, QMetaType::Float, 11, QMetaType::Void, QMetaType::Float, 13, QMetaType::Void, QMetaType::Float, 15, QMetaType::Void, QMetaType::Float, 17, QMetaType::Void, QMetaType::Float, 19, // slots: parameters QMetaType::Void, 0x80000000 | 21, 22, // properties: name, type, flags 23, QMetaType::Float, 0x00495003, 24, QMetaType::Float, 0x00495003, 25, QMetaType::Float, 0x00495003, 26, QMetaType::Float, 0x00495003, 27, QMetaType::Float, 0x00495003, 28, QMetaType::Float, 0x00495003, 29, QMetaType::Float, 0x00495003, 30, QMetaType::Float, 0x00495003, 31, QMetaType::Float, 0x00495003, // properties: notify_signal_id 0, 1, 2, 3, 4, 5, 6, 7, 8, 0 // eod }; void View::VHDAccelerometer::qt_static_metacall(QObject *_o, QMetaObject::Call _c, int _id, void **_a) { if (_c == QMetaObject::InvokeMetaMethod) { auto *_t = static_cast(_o); (void)_t; switch (_id) { case 0: _t->xChanged((*reinterpret_cast< const float(*)>(_a[1]))); break; case 1: _t->yChanged((*reinterpret_cast< const float(*)>(_a[1]))); break; case 2: _t->zChanged((*reinterpret_cast< const float(*)>(_a[1]))); break; case 3: _t->xMaxChanged((*reinterpret_cast< const float(*)>(_a[1]))); break; case 4: _t->yMaxChanged((*reinterpret_cast< const float(*)>(_a[1]))); break; case 5: _t->zMaxChanged((*reinterpret_cast< const float(*)>(_a[1]))); break; case 6: _t->xTiltChanged((*reinterpret_cast< const float(*)>(_a[1]))); break; case 7: _t->yTiltChanged((*reinterpret_cast< const float(*)>(_a[1]))); break; case 8: _t->zTiltChanged((*reinterpret_cast< const float(*)>(_a[1]))); break; case 9: _t->onActionReceive((*reinterpret_cast< const HDAccelerometerData(*)>(_a[1]))); break; default: ; } } else if (_c == QMetaObject::IndexOfMethod) { int *result = reinterpret_cast(_a[0]); { using _t = void (VHDAccelerometer::*)(const float & ); if (*reinterpret_cast<_t *>(_a[1]) == static_cast<_t>(&VHDAccelerometer::xChanged)) { *result = 0; return; } } { using _t = void (VHDAccelerometer::*)(const float & ); if (*reinterpret_cast<_t *>(_a[1]) == static_cast<_t>(&VHDAccelerometer::yChanged)) { *result = 1; return; } } { using _t = void (VHDAccelerometer::*)(const float & ); if (*reinterpret_cast<_t *>(_a[1]) == static_cast<_t>(&VHDAccelerometer::zChanged)) { *result = 2; return; } } { using _t = void (VHDAccelerometer::*)(const float & ); if (*reinterpret_cast<_t *>(_a[1]) == static_cast<_t>(&VHDAccelerometer::xMaxChanged)) { *result = 3; return; } } { using _t = void (VHDAccelerometer::*)(const float & ); if (*reinterpret_cast<_t *>(_a[1]) == static_cast<_t>(&VHDAccelerometer::yMaxChanged)) { *result = 4; return; } } { using _t = void (VHDAccelerometer::*)(const float & ); if (*reinterpret_cast<_t *>(_a[1]) == static_cast<_t>(&VHDAccelerometer::zMaxChanged)) { *result = 5; return; } } { using _t = void (VHDAccelerometer::*)(const float & ); if (*reinterpret_cast<_t *>(_a[1]) == static_cast<_t>(&VHDAccelerometer::xTiltChanged)) { *result = 6; return; } } { using _t = void (VHDAccelerometer::*)(const float & ); if (*reinterpret_cast<_t *>(_a[1]) == static_cast<_t>(&VHDAccelerometer::yTiltChanged)) { *result = 7; return; } } { using _t = void (VHDAccelerometer::*)(const float & ); if (*reinterpret_cast<_t *>(_a[1]) == static_cast<_t>(&VHDAccelerometer::zTiltChanged)) { *result = 8; return; } } } #ifndef QT_NO_PROPERTIES else if (_c == QMetaObject::ReadProperty) { auto *_t = static_cast(_o); (void)_t; void *_v = _a[0]; switch (_id) { case 0: *reinterpret_cast< float*>(_v) = _t->x(); break; case 1: *reinterpret_cast< float*>(_v) = _t->y(); break; case 2: *reinterpret_cast< float*>(_v) = _t->z(); break; case 3: *reinterpret_cast< float*>(_v) = _t->xMax(); break; case 4: *reinterpret_cast< float*>(_v) = _t->yMax(); break; case 5: *reinterpret_cast< float*>(_v) = _t->zMax(); break; case 6: *reinterpret_cast< float*>(_v) = _t->xTilt(); break; case 7: *reinterpret_cast< float*>(_v) = _t->yTilt(); break; case 8: *reinterpret_cast< float*>(_v) = _t->zTilt(); break; default: break; } } else if (_c == QMetaObject::WriteProperty) { auto *_t = static_cast(_o); (void)_t; void *_v = _a[0]; switch (_id) { case 0: _t->x(*reinterpret_cast< float*>(_v)); break; case 1: _t->y(*reinterpret_cast< float*>(_v)); break; case 2: _t->z(*reinterpret_cast< float*>(_v)); break; case 3: _t->xMax(*reinterpret_cast< float*>(_v)); break; case 4: _t->yMax(*reinterpret_cast< float*>(_v)); break; case 5: _t->zMax(*reinterpret_cast< float*>(_v)); break; case 6: _t->xTilt(*reinterpret_cast< float*>(_v)); break; case 7: _t->yTilt(*reinterpret_cast< float*>(_v)); break; case 8: _t->zTilt(*reinterpret_cast< float*>(_v)); break; default: break; } } else if (_c == QMetaObject::ResetProperty) { } #endif // QT_NO_PROPERTIES } QT_INIT_METAOBJECT const QMetaObject View::VHDAccelerometer::staticMetaObject = { { QMetaObject::SuperData::link(), qt_meta_stringdata_View__VHDAccelerometer.data, qt_meta_data_View__VHDAccelerometer, qt_static_metacall, nullptr, nullptr } }; const QMetaObject *View::VHDAccelerometer::metaObject() const { return QObject::d_ptr->metaObject ? QObject::d_ptr->dynamicMetaObject() : &staticMetaObject; } void *View::VHDAccelerometer::qt_metacast(const char *_clname) { if (!_clname) return nullptr; if (!strcmp(_clname, qt_meta_stringdata_View__VHDAccelerometer.stringdata0)) return static_cast(this); return QObject::qt_metacast(_clname); } int View::VHDAccelerometer::qt_metacall(QMetaObject::Call _c, int _id, void **_a) { _id = QObject::qt_metacall(_c, _id, _a); if (_id < 0) return _id; if (_c == QMetaObject::InvokeMetaMethod) { if (_id < 10) qt_static_metacall(this, _c, _id, _a); _id -= 10; } else if (_c == QMetaObject::RegisterMethodArgumentMetaType) { if (_id < 10) *reinterpret_cast(_a[0]) = -1; _id -= 10; } #ifndef QT_NO_PROPERTIES else if (_c == QMetaObject::ReadProperty || _c == QMetaObject::WriteProperty || _c == QMetaObject::ResetProperty || _c == QMetaObject::RegisterPropertyMetaType) { qt_static_metacall(this, _c, _id, _a); _id -= 9; } else if (_c == QMetaObject::QueryPropertyDesignable) { _id -= 9; } else if (_c == QMetaObject::QueryPropertyScriptable) { _id -= 9; } else if (_c == QMetaObject::QueryPropertyStored) { _id -= 9; } else if (_c == QMetaObject::QueryPropertyEditable) { _id -= 9; } else if (_c == QMetaObject::QueryPropertyUser) { _id -= 9; } #endif // QT_NO_PROPERTIES return _id; } // SIGNAL 0 void View::VHDAccelerometer::xChanged(const float & _t1) { void *_a[] = { nullptr, const_cast(reinterpret_cast(std::addressof(_t1))) }; QMetaObject::activate(this, &staticMetaObject, 0, _a); } // SIGNAL 1 void View::VHDAccelerometer::yChanged(const float & _t1) { void *_a[] = { nullptr, const_cast(reinterpret_cast(std::addressof(_t1))) }; QMetaObject::activate(this, &staticMetaObject, 1, _a); } // SIGNAL 2 void View::VHDAccelerometer::zChanged(const float & _t1) { void *_a[] = { nullptr, const_cast(reinterpret_cast(std::addressof(_t1))) }; QMetaObject::activate(this, &staticMetaObject, 2, _a); } // SIGNAL 3 void View::VHDAccelerometer::xMaxChanged(const float & _t1) { void *_a[] = { nullptr, const_cast(reinterpret_cast(std::addressof(_t1))) }; QMetaObject::activate(this, &staticMetaObject, 3, _a); } // SIGNAL 4 void View::VHDAccelerometer::yMaxChanged(const float & _t1) { void *_a[] = { nullptr, const_cast(reinterpret_cast(std::addressof(_t1))) }; QMetaObject::activate(this, &staticMetaObject, 4, _a); } // SIGNAL 5 void View::VHDAccelerometer::zMaxChanged(const float & _t1) { void *_a[] = { nullptr, const_cast(reinterpret_cast(std::addressof(_t1))) }; QMetaObject::activate(this, &staticMetaObject, 5, _a); } // SIGNAL 6 void View::VHDAccelerometer::xTiltChanged(const float & _t1) { void *_a[] = { nullptr, const_cast(reinterpret_cast(std::addressof(_t1))) }; QMetaObject::activate(this, &staticMetaObject, 6, _a); } // SIGNAL 7 void View::VHDAccelerometer::yTiltChanged(const float & _t1) { void *_a[] = { nullptr, const_cast(reinterpret_cast(std::addressof(_t1))) }; QMetaObject::activate(this, &staticMetaObject, 7, _a); } // SIGNAL 8 void View::VHDAccelerometer::zTiltChanged(const float & _t1) { void *_a[] = { nullptr, const_cast(reinterpret_cast(std::addressof(_t1))) }; QMetaObject::activate(this, &staticMetaObject, 8, _a); } QT_WARNING_POP QT_END_MOC_NAMESPACE