mirror of
https://github.com/mappu/miqt.git
synced 2024-12-22 00:48:38 +00:00
288 lines
6.3 KiB
C++
288 lines
6.3 KiB
C++
#include <QLine>
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#include <QLineF>
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#include <QPoint>
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#include <QPointF>
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#include <qline.h>
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#include "gen_qline.h"
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#ifndef _Bool
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#define _Bool bool
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#endif
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#include "_cgo_export.h"
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QLine* QLine_new() {
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return new QLine();
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}
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QLine* QLine_new2(QPoint* pt1, QPoint* pt2) {
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return new QLine(*pt1, *pt2);
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}
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QLine* QLine_new3(int x1, int y1, int x2, int y2) {
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return new QLine(static_cast<int>(x1), static_cast<int>(y1), static_cast<int>(x2), static_cast<int>(y2));
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}
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QLine* QLine_new4(QLine* param1) {
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return new QLine(*param1);
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}
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bool QLine_IsNull(const QLine* self) {
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return self->isNull();
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}
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QPoint* QLine_P1(const QLine* self) {
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return new QPoint(self->p1());
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}
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QPoint* QLine_P2(const QLine* self) {
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return new QPoint(self->p2());
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}
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int QLine_X1(const QLine* self) {
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return self->x1();
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}
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int QLine_Y1(const QLine* self) {
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return self->y1();
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}
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int QLine_X2(const QLine* self) {
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return self->x2();
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}
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int QLine_Y2(const QLine* self) {
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return self->y2();
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}
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int QLine_Dx(const QLine* self) {
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return self->dx();
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}
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int QLine_Dy(const QLine* self) {
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return self->dy();
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}
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void QLine_Translate(QLine* self, QPoint* p) {
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self->translate(*p);
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}
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void QLine_Translate2(QLine* self, int dx, int dy) {
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self->translate(static_cast<int>(dx), static_cast<int>(dy));
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}
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QLine* QLine_Translated(const QLine* self, QPoint* p) {
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return new QLine(self->translated(*p));
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}
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QLine* QLine_Translated2(const QLine* self, int dx, int dy) {
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return new QLine(self->translated(static_cast<int>(dx), static_cast<int>(dy)));
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}
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QPoint* QLine_Center(const QLine* self) {
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return new QPoint(self->center());
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}
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void QLine_SetP1(QLine* self, QPoint* p1) {
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self->setP1(*p1);
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}
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void QLine_SetP2(QLine* self, QPoint* p2) {
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self->setP2(*p2);
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}
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void QLine_SetPoints(QLine* self, QPoint* p1, QPoint* p2) {
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self->setPoints(*p1, *p2);
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}
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void QLine_SetLine(QLine* self, int x1, int y1, int x2, int y2) {
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self->setLine(static_cast<int>(x1), static_cast<int>(y1), static_cast<int>(x2), static_cast<int>(y2));
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}
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bool QLine_OperatorEqual(const QLine* self, QLine* d) {
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return (*self == *d);
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}
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bool QLine_OperatorNotEqual(const QLine* self, QLine* d) {
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return (*self != *d);
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}
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QLineF* QLine_ToLineF(const QLine* self) {
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return new QLineF(self->toLineF());
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}
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void QLine_Delete(QLine* self, bool isSubclass) {
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if (isSubclass) {
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delete dynamic_cast<QLine*>( self );
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} else {
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delete self;
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}
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}
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QLineF* QLineF_new() {
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return new QLineF();
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}
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QLineF* QLineF_new2(QPointF* pt1, QPointF* pt2) {
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return new QLineF(*pt1, *pt2);
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}
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QLineF* QLineF_new3(double x1, double y1, double x2, double y2) {
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return new QLineF(static_cast<qreal>(x1), static_cast<qreal>(y1), static_cast<qreal>(x2), static_cast<qreal>(y2));
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}
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QLineF* QLineF_new4(QLine* line) {
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return new QLineF(*line);
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}
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QLineF* QLineF_new5(QLineF* param1) {
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return new QLineF(*param1);
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}
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QLineF* QLineF_FromPolar(double length, double angle) {
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return new QLineF(QLineF::fromPolar(static_cast<qreal>(length), static_cast<qreal>(angle)));
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}
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bool QLineF_IsNull(const QLineF* self) {
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return self->isNull();
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}
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QPointF* QLineF_P1(const QLineF* self) {
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return new QPointF(self->p1());
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}
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QPointF* QLineF_P2(const QLineF* self) {
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return new QPointF(self->p2());
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}
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double QLineF_X1(const QLineF* self) {
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qreal _ret = self->x1();
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return static_cast<double>(_ret);
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}
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double QLineF_Y1(const QLineF* self) {
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qreal _ret = self->y1();
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return static_cast<double>(_ret);
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}
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double QLineF_X2(const QLineF* self) {
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qreal _ret = self->x2();
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return static_cast<double>(_ret);
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}
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double QLineF_Y2(const QLineF* self) {
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qreal _ret = self->y2();
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return static_cast<double>(_ret);
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}
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double QLineF_Dx(const QLineF* self) {
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qreal _ret = self->dx();
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return static_cast<double>(_ret);
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}
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double QLineF_Dy(const QLineF* self) {
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qreal _ret = self->dy();
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return static_cast<double>(_ret);
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}
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double QLineF_Length(const QLineF* self) {
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qreal _ret = self->length();
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return static_cast<double>(_ret);
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}
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void QLineF_SetLength(QLineF* self, double lenVal) {
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self->setLength(static_cast<qreal>(lenVal));
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}
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double QLineF_Angle(const QLineF* self) {
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qreal _ret = self->angle();
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return static_cast<double>(_ret);
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}
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void QLineF_SetAngle(QLineF* self, double angle) {
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self->setAngle(static_cast<qreal>(angle));
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}
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double QLineF_AngleTo(const QLineF* self, QLineF* l) {
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qreal _ret = self->angleTo(*l);
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return static_cast<double>(_ret);
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}
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QLineF* QLineF_UnitVector(const QLineF* self) {
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return new QLineF(self->unitVector());
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}
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QLineF* QLineF_NormalVector(const QLineF* self) {
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return new QLineF(self->normalVector());
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}
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int QLineF_Intersects(const QLineF* self, QLineF* l) {
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QLineF::IntersectionType _ret = self->intersects(*l);
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return static_cast<int>(_ret);
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}
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QPointF* QLineF_PointAt(const QLineF* self, double t) {
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return new QPointF(self->pointAt(static_cast<qreal>(t)));
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}
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void QLineF_Translate(QLineF* self, QPointF* p) {
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self->translate(*p);
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}
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void QLineF_Translate2(QLineF* self, double dx, double dy) {
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self->translate(static_cast<qreal>(dx), static_cast<qreal>(dy));
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}
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QLineF* QLineF_Translated(const QLineF* self, QPointF* p) {
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return new QLineF(self->translated(*p));
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}
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QLineF* QLineF_Translated2(const QLineF* self, double dx, double dy) {
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return new QLineF(self->translated(static_cast<qreal>(dx), static_cast<qreal>(dy)));
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}
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QPointF* QLineF_Center(const QLineF* self) {
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return new QPointF(self->center());
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}
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void QLineF_SetP1(QLineF* self, QPointF* p1) {
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self->setP1(*p1);
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}
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void QLineF_SetP2(QLineF* self, QPointF* p2) {
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self->setP2(*p2);
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}
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void QLineF_SetPoints(QLineF* self, QPointF* p1, QPointF* p2) {
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self->setPoints(*p1, *p2);
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}
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void QLineF_SetLine(QLineF* self, double x1, double y1, double x2, double y2) {
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self->setLine(static_cast<qreal>(x1), static_cast<qreal>(y1), static_cast<qreal>(x2), static_cast<qreal>(y2));
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}
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bool QLineF_OperatorEqual(const QLineF* self, QLineF* d) {
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return (*self == *d);
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}
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bool QLineF_OperatorNotEqual(const QLineF* self, QLineF* d) {
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return (*self != *d);
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}
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QLine* QLineF_ToLine(const QLineF* self) {
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return new QLine(self->toLine());
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}
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int QLineF_Intersects2(const QLineF* self, QLineF* l, QPointF* intersectionPoint) {
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QLineF::IntersectionType _ret = self->intersects(*l, intersectionPoint);
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return static_cast<int>(_ret);
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}
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void QLineF_Delete(QLineF* self, bool isSubclass) {
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if (isSubclass) {
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delete dynamic_cast<QLineF*>( self );
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} else {
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delete self;
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}
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}
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