Files
qelectrotech-source-mirror/sources/qetgraphicsitem/conductor.h
T
ispyisail 79a8637251 Add optional hops where wires cross (#436)
Where two wires cross without being connected, a project can now draw a
small arc (a hop) on one of them, instead of the user inserting a jump
symbol and splitting the wire. It is a project setting, off by default:
Project properties > Général > "Croisements de conducteurs", with no
hops, hops on horizontal wires, or hops on vertical wires. Choosing the
orientation rather than following drawing order keeps a project
consistent.

Only the drawing changes: no element is added and no wire is split. A
wire that ends or bends on another one is a junction and never hops,
and a crossing too close to the end of a segment for the arc to fit is
drawn plainly. PDF, SVG and image export and printing show the hops,
since they paint through Conductor::paint(); DXF export, which writes
the segments itself, does not.

The setting is saved as <wire_crossings hop="..."/> under the project
root, next to <usage>, and only when hops are on, so a project that
never used them saves exactly as before.

The geometry is in wirehops.cpp, free of any graphics item, and tested
on its own. Conductor::paintedPath() feeds it the conductors of the
folio from a snapshot of their scene points, rebuilt only when a
conductor changes shape, moves, or enters or leaves a folio; each hop
path is cached the same way. Asking the scene for the conductors in a
rect instead strokes every candidate's shape, which made a 366-wire
folio render 0.6 s slower; with the snapshot the difference is within
measurement noise.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
2026-10-01 21:18:12 +13:00

261 lines
8.4 KiB
C++

/*
Copyright 2006-2026 The QElectroTech Team
This file is part of QElectroTech.
QElectroTech is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 2 of the License, or
(at your option) any later version.
QElectroTech is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with QElectroTech. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef CONDUCTOR_H
#define CONDUCTOR_H
#include "../autoNum/assignvariables.h"
#include "../conductorproperties.h"
#include <QGraphicsPathItem>
#include <QUuid>
class ConductorProfile;
class ConductorSegmentProfile;
class Diagram;
class Terminal;
class ConductorSegment;
class ConductorTextItem;
class Element;
class QETDiagramEditor;
class NumerotationContext;
class QetGraphicsHandlerItem;
typedef QPair<QPointF, Qt::Corner> ConductorBend;
typedef QHash<Qt::Corner, ConductorProfile> ConductorProfilesGroup;
/**
This class represents a conductor, i.e. a wire between two element
terminals.
*/
class Conductor : public QGraphicsObject
{
Q_OBJECT
Q_PROPERTY(QPointF pos READ pos WRITE setPos)
Q_PROPERTY(int animPath READ fakePath WRITE updatePathAnimate)
Q_PROPERTY(ConductorProperties properties READ properties WRITE setProperties)
Q_PROPERTY(autonum::sequentialNumbers sequenceNum READ sequenceNum WRITE setSequenceNum)
signals:
void propertiesChange();
public:
Conductor(Terminal *, Terminal *);
~Conductor() override;
bool isValid() const;
private:
Conductor(const Conductor &);
public:
enum { Type = UserType + 1001 };
enum Highlight { None, Normal, Alert };
Terminal *terminal1;
Terminal *terminal2;
public:
/**
@brief type
Enable the use of qgraphicsitem_cast
to safely cast a QGraphicsItem into a conductor.
@return the QGraphicsItem type
*/
int type() const override { return Type; }
Diagram *diagram() const;
ConductorTextItem *textItem() const;
QUuid uuid() const {return m_uuid;}
void newUuid() {m_uuid = QUuid::createUuid(); m_persist_uuid = true;} //create new uuid for this conductor
void setUuid(const QUuid &uuid) {m_uuid = uuid; m_persist_uuid = true;} //saved from now on
void updatePath(const QRectF & = QRectF());
//This method do nothing, it's only made to be used with Q_PROPERTY
//It's used to anim the path when is change
void updatePathAnimate(const int = 1) {updatePath();}
int fakePath() {return 1;}
void paint(
QPainter *,
const QStyleOptionGraphicsItem *,
QWidget *) override;
QRectF boundingRect() const override;
QPainterPath shape() const override;
virtual QPainterPath nearShape() const;
qreal length() const;
ConductorSegment *middleSegment();
QPointF posForText(Qt::Orientations &flag);
void refreshText();
void setPath(const QPainterPath &path);
QPainterPath path() const;
public:
static bool valideXml (QDomElement &);
bool fromXml (QDomElement &);
QDomElement toXml (
QDomDocument &,
QHash<Terminal *,
int> &) const;
private:
bool pathFromXml(const QDomElement &);
public:
QVector <QPointF> handlerPoints() const;
const QList<ConductorSegment *> segmentsList() const;
bool moveSegment(int index, qreal dx, qreal dy);
void setPropertyToPotential(
const ConductorProperties &property,
bool only_text = false);
void setProperties(const ConductorProperties &property);
ConductorProperties properties() const;
void setProfile(const ConductorProfile &, Qt::Corner);
ConductorProfile profile(Qt::Corner) const;
void setProfiles(const ConductorProfilesGroup &);
ConductorProfilesGroup profiles() const;
void calculateTextItemPosition();
virtual Highlight highlight() const;
virtual void setHighlighted(Highlight);
QSet<Conductor *> relatedPotentialConductors(
const bool all_diagram = true,
QList <Terminal *> *t_list=nullptr);
QETDiagramEditor* diagramEditor() const;
void editProperty ();
autonum::sequentialNumbers sequenceNum () const
{return m_autoNum_seq;}
autonum::sequentialNumbers& rSequenceNum()
{return m_autoNum_seq;}
void setSequenceNum(const autonum::sequentialNumbers& sn);
QList<QPointF> junctions() const;
QPainterPath paintedPath() const;
private:
void setUpConnectionForFormula(
QString old_formula, QString new_formula);
autonum::sequentialNumbers m_autoNum_seq;
public:
void setFreezeLabel(bool freeze);
public slots:
void displayedTextChanged();
protected:
void mouseDoubleClickEvent(
QGraphicsSceneMouseEvent *event) override;
void mousePressEvent(QGraphicsSceneMouseEvent *event) override;
void mouseReleaseEvent(
QGraphicsSceneMouseEvent *event) override;
void hoverEnterEvent(QGraphicsSceneHoverEvent *event) override;
void hoverLeaveEvent(QGraphicsSceneHoverEvent *event) override;
QVariant itemChange(
GraphicsItemChange, const QVariant &) override;
bool sceneEventFilter(
QGraphicsItem *watched, QEvent *event) override;
private:
void adjustHandlerPos();
void handlerMousePressEvent(
QetGraphicsHandlerItem *qghi,
QGraphicsSceneMouseEvent *event);
void handlerMouseMoveEvent(
QetGraphicsHandlerItem *qghi,
QGraphicsSceneMouseEvent *event);
void handlerMouseReleaseEvent(
QetGraphicsHandlerItem *qghi,
QGraphicsSceneMouseEvent *event);
void addHandler();
void removeHandler();
QVector<QetGraphicsHandlerItem *> m_handler_vector;
int m_vector_index = -1;
bool m_mouse_over;
///Hop path cache for paintedPath(), valid while no conductor geometry changed
mutable QPainterPath m_hops_path;
mutable quint64 m_hops_generation = 0;
mutable int m_hops_mode = -1;
/// Functional properties
ConductorProperties m_properties;
/// Text input for non simple, non-singleline conductors
ConductorTextItem *m_text_item;
/// Segments composing the conductor
ConductorSegment *segments;
/// Attributes related to mouse interaction
bool m_moving_segment;
int moved_point;
qreal m_previous_z_value;
ConductorSegment *m_moved_segment;
QPointF before_mov_text_pos_;
/// Whether the conductor was manually modified by users
bool modified_path;
/// Whether the current profile should be saved as soon as possible
bool has_to_save_profile;
/// conductor profile: "photography" of what the conductor is supposed to look
/// like - there is one profile per kind of traject
ConductorProfilesGroup conductor_profiles;
/// Define whether and how the conductor should be highlighted
Highlight must_highlight_;
bool m_valid;
bool m_freeze_label = false;
QUuid m_uuid;
/// false when m_uuid was synthesized by fromXml() because the
/// file had none -- toXml() must not persist that value, or
/// every reload mints and saves a new random one (see #754).
bool m_persist_uuid = true;
/// QPen et QBrush objects used to draw conductors
static QPen conductor_pen;
static QBrush conductor_brush;
static bool pen_and_brush_initialized;
QPainterPath m_path;
private:
void segmentsToPath();
void saveProfile(bool = true);
void generateConductorPath(const QPointF &, Qet::Orientation, const QPointF &, Qet::Orientation);
void updateConductorPath(const QPointF &, Qet::Orientation, const QPointF &, Qet::Orientation);
uint segmentsCount(QET::ConductorSegmentType = QET::Both) const;
QList<QPointF> segmentsToPoints() const;
QList<ConductorBend> bends() const;
void pointsToSegments(const QList<QPointF>&);
Qt::Corner currentPathType() const;
void deleteSegments();
static int getCoeff(const qreal &, const qreal &);
static int getSign(const qreal &);
QHash<ConductorSegmentProfile *, qreal> shareOffsetBetweenSegments(const qreal &offset, const QList<ConductorSegmentProfile *> &, const qreal & = 0.01) const;
static QPointF extendTerminal(const QPointF &, Qet::Orientation, qreal = 10);
static Qt::Corner movementType(const QPointF &, const QPointF &);
static QPointF movePointIntoPolygon(const QPointF &, const QPainterPath &);
};
Conductor * longestConductorInPotential (Conductor *conductor, bool all_diagram = false);
QList <Conductor *> relatedConductors (const Conductor *conductor);
//return true if @a is between or at @b and @c.
template <typename T>
bool isBetween (const T a, const T b, const T c) {
return (b <= c)? (a >= b && a <= c) : (a <= b && a >= c);
}
#endif