mirror of
https://github.com/qelectrotech/qelectrotech-source-mirror.git
synced 2026-10-08 13:04:13 +02:00
592cbdbf0b
A project can now keep the texts drawn in its symbols, and the names of their terminals, horizontal when a symbol is turned: Project properties > General, "Garder horizontaux les textes des symboles pivotés". The box of each text turns with the symbol; the text does not, and reads as it does in the symbol itself. It is a project setting, saved as <symbol_texts upright="true"/> and only when on. A new project starts with it on; a project saved without it (every existing one) reads with it off, so it looks and saves exactly as before, and looks the same on every computer. The MCP server's new projects start with it on too. It builds on the mirror of #1354, which already redraws the texts of a mirrored symbol readable: what the symbol does to its texts is now its mirrors and, with the setting on, its turn (Element::symbolTextsTransform()). ElementPictureFactory caches one drawing per such transform, terminal names undo it the same way, and the DXF export places the texts alike. The fields of a symbol (label, comment...) already keep their angle with "Garder la rotation visuelle" and are left as they are. Known limit: two texts stacked in a symbol end up side by side when it is turned, and can overlap when kept horizontal; the setting can be turned off for such a project. Test: tst_uprightsymboltexts turns the symbols of a folio and checks the angle of each motor's "M" in the DXF, with the setting off and on. Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
507 lines
18 KiB
C++
507 lines
18 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/>.
|
|
*/
|
|
#include "dxfexport.h"
|
|
#include "shownkinds.h"
|
|
|
|
#include "conductorsegment.h"
|
|
#include "createdxf.h"
|
|
#include "diagram.h"
|
|
#include "dxfpaintdevice.h"
|
|
#include "exportproperties.h"
|
|
#include "factory/elementpicturefactory.h"
|
|
#include "qetgraphicsitem/ViewItem/qetgraphicstableitem.h"
|
|
#include "qetgraphicsitem/conductor.h"
|
|
#include "qetgraphicsitem/conductortextitem.h"
|
|
#include "qetgraphicsitem/crossrefitem.h"
|
|
#include "qetgraphicsitem/diagramimageitem.h"
|
|
#include "qetgraphicsitem/diagramtextitem.h"
|
|
#include "qetgraphicsitem/dynamicelementtextitem.h"
|
|
#include "qetgraphicsitem/element.h"
|
|
#include "qetgraphicsitem/independenttextitem.h"
|
|
#include "qetgraphicsitem/qetshapeitem.h"
|
|
#include "qetgraphicsitem/terminal.h"
|
|
#include "textlines.h"
|
|
|
|
#include <QFontMetricsF>
|
|
#include <QGraphicsSimpleTextItem>
|
|
#include <QSet>
|
|
#include <cmath>
|
|
#include <utility>
|
|
|
|
/**
|
|
@brief DxfExport::folioSize
|
|
@return the size of @a diagram as exported with @a properties: its border
|
|
and title block, or just its items, following properties.exported_area.
|
|
The export dialog offers this size by default, and --export-dxf uses it.
|
|
*/
|
|
QSize DxfExport::folioSize(Diagram *diagram, const ExportProperties &properties)
|
|
{
|
|
const bool state_useBorder = diagram -> useBorder();
|
|
diagram -> setUseBorder(properties.exported_area == QET::BorderArea);
|
|
const QSize size = diagram -> imageSize();
|
|
diagram -> setUseBorder(state_useBorder);
|
|
return size;
|
|
}
|
|
|
|
/**
|
|
@brief DxfExport::write
|
|
Export @a diagram as a DXF file. Moved here unchanged from
|
|
ExportDialog::generateDxf(), except that the options come from
|
|
@a properties instead of the dialog, so the command line can use it.
|
|
The diagram's own display options are applied for the export and put
|
|
back afterwards, as the dialog always did.
|
|
@param diagram : folio to export
|
|
@param width : width of the export, as offered by folioSize()
|
|
@param height : height of the export
|
|
@param path : file to write
|
|
@param properties : export options
|
|
*/
|
|
void DxfExport::write(Diagram *diagram, int width, int height,
|
|
const QString &path, const ExportProperties &properties)
|
|
{
|
|
//Non-const: BorderTitleBlock::drawDxf() takes a QString &.
|
|
QString file_path = path;
|
|
const ExportProperties previous = diagram -> applyProperties(properties);
|
|
|
|
width -= 2*Diagram::margin;
|
|
height -= 2*Diagram::margin;
|
|
|
|
Createdxf::xScale = Createdxf::sheetWidth / double(width);
|
|
Createdxf::yScale = Createdxf::sheetHeight / double(height);
|
|
|
|
Createdxf::dxfBegin(file_path, Layer::all());
|
|
|
|
//Each kind of content on its own layer (discussion #1071). The
|
|
//border's title block switches to Layer::TitleBlock itself, see
|
|
//BorderTitleBlock::drawDxf().
|
|
Createdxf::layer = Layer::Border;
|
|
//Add project elements (lines, rectangles, circles, texts) to dxf file
|
|
if (properties.draw_border) {
|
|
QRectF rect(Diagram::margin,Diagram::margin,width,height);
|
|
Createdxf::drawRectangle(file_path,rect,0);
|
|
}
|
|
diagram -> border_and_titleblock.drawDxf(file_path, 0);
|
|
|
|
// Build the lists of elements.
|
|
QList<Element *> list_elements;
|
|
QList<Conductor *> list_conductors;
|
|
QList<DiagramTextItem *> list_texts;
|
|
QList<DiagramImageItem *> list_images;
|
|
//Slave cross-reference labels. They hang off a DynamicElementTextItem
|
|
//as plain QGraphicsTextItem children, so neither cast below picks them
|
|
//up and they were missing from the DXF entirely.
|
|
QList<QGraphicsTextItem *> list_xref_texts;
|
|
//Master-side cross-reference item (the table/cross drawn next to a
|
|
//report/master element). It paints itself with hand-written
|
|
//QPainter code across three modes (drawAsCross/drawAsContacts/
|
|
//drawAsPlcTable), so instead of hand-porting each one it's replayed
|
|
//through DxfPaintEngine, which reuses paint() unmodified.
|
|
QList<CrossRefItem *> list_master_xrefs;
|
|
QList<QLineF *> list_lines;
|
|
QList<QRectF *> list_rectangles;
|
|
//QList<QRectF *> list_ellipses;
|
|
QList <QetShapeItem *> list_shapes;
|
|
QList <QetGraphicsTableItem *> list_tables;
|
|
// QList <Terminal *> list_terminals;
|
|
|
|
// Determine les elements a "XMLiser"
|
|
//In stacking order (z, then insertion order, which a load makes the
|
|
//file's order), not items() order: that follows memory addresses, so
|
|
//the same folio came out in a different order on every run (FINDINGS
|
|
//F050), as saving did before bugtracker #343. A rect query gives
|
|
//stacking order even with NoIndex; anything it misses keeps its
|
|
//items() position after the rest.
|
|
QList<QGraphicsItem *> stacked_items = diagram -> items(
|
|
QRectF(-1e9, -1e9, 2e9, 2e9), Qt::IntersectsItemBoundingRect,
|
|
Qt::AscendingOrder);
|
|
{
|
|
const QSet<QGraphicsItem *> ranked(stacked_items.cbegin(), stacked_items.cend());
|
|
for (QGraphicsItem *qgi : diagram -> items()) {
|
|
if (!ranked.contains(qgi)) {
|
|
stacked_items << qgi;
|
|
}
|
|
}
|
|
}
|
|
for (QGraphicsItem *qgi : std::as_const(stacked_items)) {
|
|
//Left out like on screen and in print (View > Show, #301)
|
|
if (ShownKinds::isHidden(qgi)) {
|
|
continue;
|
|
}
|
|
if (Element *elmt = qgraphicsitem_cast<Element *>(qgi)) {
|
|
list_elements << elmt;
|
|
} else if (Conductor *f = qgraphicsitem_cast<Conductor *>(qgi)) {
|
|
list_conductors << f;
|
|
} else if (IndependentTextItem *iti = qgraphicsitem_cast<IndependentTextItem *>(qgi)) {
|
|
list_texts << iti;
|
|
} else if (DiagramImageItem *dii = qgraphicsitem_cast<DiagramImageItem *>(qgi)) {
|
|
list_images << dii;
|
|
} else if (QetShapeItem *dii = qgraphicsitem_cast<QetShapeItem *>(qgi)) {
|
|
list_shapes << dii;
|
|
} else if (DynamicElementTextItem *deti = qgraphicsitem_cast<DynamicElementTextItem *>(qgi)) {
|
|
list_texts << deti;
|
|
QGraphicsTextItem *xref = deti->slaveXrefItem();
|
|
if (xref && !ShownKinds::isHidden(xref)) {
|
|
list_xref_texts << xref;
|
|
}
|
|
} else if (QetGraphicsTableItem *gti = qgraphicsitem_cast<QetGraphicsTableItem *>(qgi)) {
|
|
list_tables << gti;
|
|
} else if (CrossRefItem *xref = qgraphicsitem_cast<CrossRefItem *>(qgi)) {
|
|
list_master_xrefs << xref;
|
|
}
|
|
}
|
|
|
|
// Draw shapes
|
|
Createdxf::layer = Layer::Shapes;
|
|
foreach (QetShapeItem *qsi, list_shapes) qsi->toDXF(file_path, qsi->pen());
|
|
|
|
// Draw tables
|
|
Createdxf::layer = Layer::Tables;
|
|
foreach (QetGraphicsTableItem *gti, list_tables) {
|
|
gti->toDXF(file_path);
|
|
}
|
|
|
|
//Draw elements
|
|
foreach(Element *elmt, list_elements)
|
|
{
|
|
double rotation_angle = elmt -> orientation() * 90;
|
|
//The mirrors of an element are about its own axes, before it is
|
|
//rotated, see Element::setMirror()
|
|
const qreal mirror_x = elmt -> hasHorizontalMirror() ? -1 : 1;
|
|
const qreal mirror_y = elmt -> hasVerticalMirror() ? -1 : 1;
|
|
|
|
qreal elem_pos_x = elmt -> pos().x();
|
|
qreal elem_pos_y = elmt -> pos().y();// - (diagram -> margin / 2);
|
|
|
|
ElementPictureFactory::primitives primitives = ElementPictureFactory::instance()->getPrimitives(elmt->location());
|
|
|
|
Createdxf::layer = Layer::SymbolTexts;
|
|
for(QGraphicsSimpleTextItem *text : primitives.m_texts)
|
|
{
|
|
qreal fontSize = text->font().pointSizeF();
|
|
if (fontSize < 0)
|
|
fontSize = text->font().pixelSize();
|
|
|
|
QPointF text_pos = text->pos();
|
|
//A text the element mirrors, or turns in a project that keeps
|
|
//symbol texts horizontal, keeps reading as in the symbol:
|
|
//only its box moves, as ElementPictureFactory draws it on the
|
|
//folio. It is then drawn as in a symbol neither mirrored nor
|
|
//turned, moved to where the element puts the box's centre.
|
|
const QTransform texts_transform = elmt -> symbolTextsTransform();
|
|
const qreal text_turn = elmt -> hasUprightSymbolTexts() ? 0 : rotation_angle;
|
|
if (!texts_transform.isIdentity())
|
|
{
|
|
QTransform box_transform;
|
|
box_transform.translate(text->pos().x(), text->pos().y());
|
|
box_transform.rotate(text->rotation());
|
|
const QFontMetricsF metrics(text->font());
|
|
const QRectF box(0, -metrics.ascent(),
|
|
text->boundingRect().width(),
|
|
text->boundingRect().height());
|
|
const QPointF centre = box_transform.mapRect(box).center();
|
|
text_pos += texts_transform.map(centre) - centre;
|
|
}
|
|
|
|
qreal x = elem_pos_x + text_pos.x();
|
|
qreal y = elem_pos_y + text_pos.y();
|
|
|
|
qreal angle = text -> rotation() + text_turn;
|
|
qreal angler = angle * M_PI/180;
|
|
int xdir = -sin(angler);
|
|
int ydir = -cos(angler);
|
|
|
|
QPointF transformed_point = rotation_transformed(x, y, elem_pos_x, elem_pos_y, -text_turn);
|
|
x = transformed_point.x() - ydir * fontSize * 0.5;
|
|
y = transformed_point.y() - xdir * fontSize * 0.5;
|
|
QStringList lines = text->text().split('\n');
|
|
qreal offset = fontSize * 1.6;
|
|
for (QString line : lines)
|
|
{
|
|
if (line.size() > 0 && line != "_" ) {
|
|
Createdxf::drawText(file_path, line, QPointF(x, y), fontSize, 360 - angle, 0, 0.72);
|
|
}
|
|
x += offset * xdir;
|
|
y -= offset * ydir;
|
|
}
|
|
}
|
|
|
|
Createdxf::layer = Layer::Symbols;
|
|
for (QLineF line : primitives.m_lines)
|
|
{
|
|
QTransform t = QTransform().translate(elem_pos_x,elem_pos_y).rotate(rotation_angle).scale(mirror_x, mirror_y);
|
|
QLineF l = t.map(line);
|
|
Createdxf::drawLine(file_path, l, 0);
|
|
}
|
|
|
|
for (QRectF rect : primitives.m_rectangles)
|
|
{
|
|
QTransform t = QTransform().translate(elem_pos_x,elem_pos_y).rotate(rotation_angle).scale(mirror_x, mirror_y);
|
|
QRectF r = t.mapRect(rect);
|
|
Createdxf::drawRectangle(file_path,r,0);
|
|
}
|
|
|
|
for (QRectF circle_rect : primitives.m_circles)
|
|
{
|
|
QTransform t = QTransform().translate(elem_pos_x,elem_pos_y).rotate(rotation_angle).scale(mirror_x, mirror_y);
|
|
QPointF c = t.map(QPointF(circle_rect.center().x(),circle_rect.center().y()));
|
|
Createdxf::drawCircle(file_path,c,circle_rect.width()/2,0);
|
|
}
|
|
|
|
for (QVector<QPointF> polygon : primitives.m_polygons)
|
|
{
|
|
if (polygon.size() == 0)
|
|
continue;
|
|
QTransform t = QTransform().translate(elem_pos_x,elem_pos_y).rotate(rotation_angle).scale(mirror_x, mirror_y);
|
|
QPolygonF poly = t.map(polygon);
|
|
if(poly.isClosed())
|
|
Createdxf::drawPolygon(file_path,poly,0);
|
|
else
|
|
Createdxf::drawPolyline(file_path,poly,0);
|
|
}
|
|
|
|
// Draw arcs and ellipses
|
|
for (QVector<qreal> arc : primitives.m_arcs)
|
|
{
|
|
if (arc.size() == 0)
|
|
continue;
|
|
qreal x = (elem_pos_x + arc.at(0));
|
|
qreal y = (elem_pos_y + arc.at(1));
|
|
qreal w = arc.at(2);
|
|
qreal h = arc.at(3);
|
|
qreal startAngle = arc.at(4);
|
|
qreal spanAngle = arc .at(5);
|
|
//In a mirror the arc starts where it ended: an angle a
|
|
//becomes 180 - a in a horizontal one, -a in a vertical one
|
|
if (elmt -> hasHorizontalMirror())
|
|
{
|
|
x = elem_pos_x - arc.at(0) - w;
|
|
startAngle = 180 - startAngle - spanAngle;
|
|
}
|
|
if (elmt -> hasVerticalMirror())
|
|
{
|
|
y = elem_pos_y - arc.at(1) - h;
|
|
startAngle = -startAngle - spanAngle;
|
|
}
|
|
QRectF r(x,y,w,h);
|
|
QPointF hotspot(elem_pos_x,elem_pos_y);
|
|
Createdxf::drawArcEllipse(file_path, r, startAngle, spanAngle, hotspot, rotation_angle, 0);
|
|
}
|
|
if (properties.draw_terminals) {
|
|
Createdxf::layer = Layer::Terminals;
|
|
// Draw terminals
|
|
QList<Terminal *> list_terminals = elmt->terminals();
|
|
QColor col("red");
|
|
QTransform t = QTransform().translate(elem_pos_x,elem_pos_y).rotate(rotation_angle).scale(mirror_x, mirror_y);
|
|
foreach(Terminal *tp, list_terminals) {
|
|
QPointF c = t.map(QPointF(tp->dock_elmt_.x(),tp->dock_elmt_.y()));
|
|
Createdxf::drawCircle(file_path,c,3.0,Createdxf::dxfColor(col));
|
|
}
|
|
}
|
|
}
|
|
|
|
//Draw conductors
|
|
foreach(Conductor *cond, list_conductors) {
|
|
QPolygonF poly;
|
|
bool firstseg = true;
|
|
foreach(ConductorSegment *segment, cond -> segmentsList()) {
|
|
//Createdxf::drawLine(file_path,QLineF(cond->pos()+segment->firstPoint(),cond->pos()+segment->secondPoint()),0);
|
|
if(firstseg){
|
|
poly << cond->pos()+segment->firstPoint();
|
|
firstseg = false;
|
|
}
|
|
poly << cond->pos()+segment->secondPoint();
|
|
}
|
|
Createdxf::layer = Layer::Wires;
|
|
//The wire's own colour, as on the folio (a two-colour wire gets
|
|
//its main one). Black comes out as BYLAYER, see Createdxf.
|
|
const ConductorProperties wire_properties = cond -> properties();
|
|
Createdxf::drawPolyline(file_path, poly, Createdxf::dxfColor(wire_properties.color));
|
|
//Draw conductor text item
|
|
Createdxf::layer = Layer::WireNumbers;
|
|
ConductorTextItem *textItem = cond -> textItem();
|
|
|
|
if (textItem && !ShownKinds::isHidden(textItem)) {
|
|
qreal fontSize = textItem -> font().pointSizeF();
|
|
if (fontSize < 0)
|
|
fontSize = textItem -> font().pixelSize();
|
|
qreal angle = textItem -> rotation();
|
|
qreal angler = angle * M_PI/180;
|
|
int xdir = -sin(angler);
|
|
int ydir = -cos(angler);
|
|
|
|
qreal x = (cond->pos().x() + textItem -> pos().x())
|
|
+ xdir * fontSize * 1.8
|
|
- ydir * fontSize;
|
|
qreal y = (cond->pos().y() + textItem -> pos().y())
|
|
- ydir * fontSize * 1.8
|
|
- xdir * fontSize * 0.9;
|
|
QStringList lines = textItem->toPlainText().split('\n');
|
|
qreal offset = fontSize * 1.6;
|
|
foreach (QString line, lines) {
|
|
if (line.size() > 0 && line != "_" )
|
|
Createdxf::drawText(file_path, line, QPointF(x, y), fontSize, 360-angle,
|
|
Createdxf::dxfColor(wire_properties.text_color), 0.72 );
|
|
x += offset * xdir;
|
|
y -= offset * ydir;
|
|
}
|
|
}
|
|
|
|
// Draw the junctions
|
|
Createdxf::layer = Layer::Junctions;
|
|
QList<QPointF> junctions_list = cond->junctions();
|
|
if (!junctions_list.isEmpty()) {
|
|
foreach(QPointF point, junctions_list) {
|
|
Createdxf::drawEllipse(file_path,QRectF(cond->pos().x() + point.x() - 1.5, cond->pos().y() + point.y() - 1.5, 3.0, 3.0),0);
|
|
}
|
|
}
|
|
}
|
|
|
|
//Draw text items
|
|
foreach(DiagramTextItem *dti, list_texts) {
|
|
//A free text, or a symbol's own text (its label and the like)
|
|
Createdxf::layer = qgraphicsitem_cast<IndependentTextItem *>(dti)
|
|
? Layer::Texts : Layer::SymbolTexts;
|
|
qreal fontSize = dti -> font().pointSizeF();
|
|
if (fontSize < 0)
|
|
fontSize = dti -> font().pixelSize();
|
|
|
|
qreal angle = dti -> rotation();
|
|
|
|
QGraphicsItem *parent = dti->parentItem();
|
|
while (parent) {
|
|
angle += parent->rotation();
|
|
parent = parent->parentItem();
|
|
}
|
|
|
|
qreal angler = angle * M_PI/180;
|
|
int xdir = -sin(angler);
|
|
int ydir = -cos(angler);
|
|
qreal x = (dti->scenePos().x())
|
|
+ xdir * fontSize * 1.8
|
|
- ydir * fontSize;
|
|
qreal y = dti->scenePos().y()
|
|
- ydir * fontSize * 1.8
|
|
- xdir * fontSize * 0.9;
|
|
//As drawn: a text with a width is wrapped
|
|
QStringList lines = TextLines::layoutLines(dti -> document());
|
|
qreal offset = fontSize * 1.6;
|
|
foreach (QString line, lines) {
|
|
if (line.size() > 0 && line != "_" )
|
|
Createdxf::drawText(file_path, line, QPointF(x, y), fontSize, 360-angle, Createdxf::dxfColor(dti->color()), 0.72 );
|
|
x += offset * xdir;
|
|
y -= offset * ydir;
|
|
}
|
|
}
|
|
|
|
//Draw the slave cross-reference labels
|
|
Createdxf::layer = Layer::Xrefs;
|
|
for (QGraphicsTextItem *xref : std::as_const(list_xref_texts))
|
|
{
|
|
qreal fontSize = xref->font().pointSizeF();
|
|
if (fontSize < 0)
|
|
fontSize = xref->font().pixelSize();
|
|
|
|
qreal angle = xref->rotation();
|
|
QGraphicsItem *parent = xref->parentItem();
|
|
while (parent) {
|
|
angle += parent->rotation();
|
|
parent = parent->parentItem();
|
|
}
|
|
|
|
qreal angler = angle * M_PI/180;
|
|
int xdir = -sin(angler);
|
|
int ydir = -cos(angler);
|
|
qreal x = xref->scenePos().x()
|
|
+ xdir * fontSize * 1.8
|
|
- ydir * fontSize;
|
|
qreal y = xref->scenePos().y()
|
|
- ydir * fontSize * 1.8
|
|
- xdir * fontSize * 0.9;
|
|
|
|
const QStringList lines = xref->toPlainText().split('\n');
|
|
const qreal offset = fontSize * 1.6;
|
|
for (const QString &line : lines) {
|
|
if (line.size() > 0 && line != QLatin1String("_")) {
|
|
Createdxf::drawText(file_path, line, QPointF(x, y), fontSize,
|
|
360-angle, Createdxf::dxfColor(xref->defaultTextColor()), 0.72);
|
|
}
|
|
x += offset * xdir;
|
|
y -= offset * ydir;
|
|
}
|
|
}
|
|
|
|
//Draw the master-side cross-reference items (table/cross), replaying
|
|
//their existing paint() unmodified through DxfPaintEngine instead of
|
|
//hand-porting drawAsCross()/drawAsContacts()/drawAsPlcTable().
|
|
Createdxf::layer = Layer::Xrefs;
|
|
for (CrossRefItem *xref : std::as_const(list_master_xrefs))
|
|
{
|
|
DxfPaintDevice dxf_device(file_path);
|
|
QPainter painter(&dxf_device);
|
|
painter.setWorldTransform(xref->sceneTransform());
|
|
xref->paintForExport(&painter);
|
|
painter.end();
|
|
}
|
|
|
|
//Draw images -- collected above (list_images) but never actually
|
|
//drawn until now, an existing gap this reuses the same paint()
|
|
//-replay approach to fix: DiagramImageItem::paint() has no
|
|
//viewport-dependent logic (unlike CrossRefItem, which needs its own
|
|
//paintForExport() for that reason), so it's called directly with a
|
|
//default QStyleOptionGraphicsItem rather than needing an export-
|
|
//specific variant of its own. DxfPaintEngine::drawPixmap() is what
|
|
//actually turns the drawPixmap() call inside paint() into a
|
|
//placeholder outline, since this DXF dialect has no raster image
|
|
//entity to draw instead.
|
|
Createdxf::layer = Layer::Images;
|
|
for (DiagramImageItem *image : std::as_const(list_images))
|
|
{
|
|
DxfPaintDevice dxf_device(file_path);
|
|
QPainter painter(&dxf_device);
|
|
painter.setWorldTransform(image->sceneTransform());
|
|
image->paintForExport(&painter);
|
|
painter.end();
|
|
}
|
|
|
|
Createdxf::dxfEnd(file_path);
|
|
|
|
diagram -> applyProperties(previous);
|
|
}
|
|
|
|
QPointF DxfExport::rotation_transformed(qreal px,
|
|
qreal py,
|
|
qreal origin_x,
|
|
qreal origin_y,
|
|
qreal angle) {
|
|
|
|
angle *= -3.14159265 / 180;
|
|
|
|
float s = sin(angle);
|
|
float c = cos(angle);
|
|
|
|
// Vector to rotate:
|
|
qreal Vx = px - origin_x;
|
|
qreal Vy = py - origin_y;
|
|
|
|
// rotate vector
|
|
float xnew = Vx * c - Vy * s;
|
|
float ynew = Vx * s + Vy * c;
|
|
|
|
return QPointF(xnew + origin_x, ynew + origin_y);
|
|
}
|