Merge with release.
This commit is contained in:
commit
03a7c5667e
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@ -1,3 +1,8 @@
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# Version 0.3.2 Released May 15, 2015
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- [#298] Segmented Curve isn't selected in Seam Allowance tool.
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- [#299] Error when opening .val file.
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- [#302] Error when creating layout.
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# Version 0.3.1 Released April 24, 2015
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- [#263] Regression. Union tool doesn't work.
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- For tool Curve intersect axis fixed wrong calculation point in case with too small scene rect size.
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2
dist/debian/changelog
vendored
2
dist/debian/changelog
vendored
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@ -1,4 +1,4 @@
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valentina (0.3.1) trusty; urgency=low
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valentina (0.3.2) trusty; urgency=low
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* Auto build.
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2
dist/rpm/_service
vendored
2
dist/rpm/_service
vendored
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@ -1,7 +1,7 @@
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<services>
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<service name="tar_scm">
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<param name="url">https://github.com/dismine/Valentina.git</param>
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<param name="versionprefix">0.3.1</param>
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<param name="versionprefix">0.3.2</param>
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<param name="filename">valentina</param>
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<param name="scm">git</param>
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<param name="versionformat">%at</param>
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2
dist/rpm/valentina.spec
vendored
2
dist/rpm/valentina.spec
vendored
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@ -33,7 +33,7 @@ BuildRequires: update-desktop-files
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Requires: poppler-utils
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Version: 0.3.1
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Version: 0.3.2
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Release: 0
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URL: https://bitbucket.org/dismine/valentina
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License: GPL-3.0+
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@ -712,11 +712,9 @@ void DialogTool::NamePointChanged()
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if (edit)
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{
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QString name = edit->text();
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name.replace(" ", "");
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QRegExpValidator v(QRegExp(nameRegExp), this);
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int pos = 0;
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QRegularExpression rx(nameRegExp);
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if (name.isEmpty() || (pointName != name && data->IsUnique(name) == false) ||
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v.validate(name, pos) == QValidator::Invalid)
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rx.match(name).hasMatch() == false)
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{
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flagName = false;
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ChangeColor(labelEditNamePoint, Qt::red);
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@ -76,7 +76,7 @@ QVector<QPointF> VAbstractCurve::FromBegin(const QVector<QPointF> &points, const
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{
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if (theBegin == false)
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{
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if (PointInSegment(begin, points.at(i), points.at(i+1)))
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if (IsPointOnLineSegment(begin, points.at(i), points.at(i+1)))
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{
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theBegin = true;
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segment.append(begin);
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@ -352,30 +352,67 @@ void VGObject::LineCoefficients(const QLineF &line, qreal *a, qreal *b, qreal *c
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}
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//---------------------------------------------------------------------------------------------------------------------
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bool VGObject::PointInSegment(const QPointF &t, const QPointF &p1, const QPointF &p2)
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/**
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* @brief IsPointOnLineSegment Check if the point is on the line segment.
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*
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* Original idea http://www.sunshine2k.de/coding/java/PointOnLine/PointOnLine.html
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*/
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bool VGObject::IsPointOnLineSegment(const QPointF &t, const QPointF &p1, const QPointF &p2)
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{
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const qreal eps = 1e-8;
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qreal a = p2.y() - p1.y();
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qreal b = p1.x() - p2.x();
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qreal c = - a * p1.x() - b * p1.y();
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if (qAbs(a * t.x() + b * t.y() + c) > eps)
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// The test point must lie inside the bounding box spanned by the two line points.
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if (not ( (p1.x() <= t.x() && t.x() <= p2.x()) || (p2.x() <= t.x() && t.x() <= p1.x()) ))
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{
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// test point not in x-range
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return false;
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}
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return PointInBox (t, p1, p2);
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if (not ( (p1.y() <= t.y() && t.y() <= p2.y()) || (p2.y() <= t.y() && t.y() <= p1.y()) ))
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{
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// test point not in y-range
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return false;
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}
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// Test via the perp dot product (PDP)
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return IsPointOnLineviaPDP(t, p1, p2);
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}
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//---------------------------------------------------------------------------------------------------------------------
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bool VGObject::PointInBox(const QPointF &t, const QPointF &p1, const QPointF &p2)
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/**
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* @brief IsPointOnLineviaPDP use the perp dot product (PDP) way.
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*
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* The pdp is zero only if the t lies on the line e1 = vector from p1 to p2.
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*/
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bool VGObject::IsPointOnLineviaPDP(const QPointF &t, const QPointF &p1, const QPointF &p2)
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{
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const qreal eps = 1e-8;
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return ( qAbs(PerpDotProduct(p1, p2, t) < GetEpsilon(p1, p2)) );
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}
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return (qAbs (t.x() - qMin(p1.x(), p2.x())) <= eps || qMin(p1.x(), p2.x()) <= t.x()) &&
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(qAbs (qMax(p1.x(), p2.x()) - t.x()) <= eps || qMax(p1.x(), p2.x()) >= t.x()) &&
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(qAbs (t.y() - qMin(p1.y(), p2.y())) <= eps || qMin(p1.y(), p2.y()) <= t.y()) &&
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(qAbs (qMax(p1.y(), p2.y()) - t.y()) <= eps || qMax(p1.y(), p2.y()) >= t.y());
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//---------------------------------------------------------------------------------------------------------------------
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/**
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* @brief PerpDotProduct Calculates the area of the parallelogram of the three points.
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* This is actually the same as the area of the triangle defined by the three points, multiplied by 2.
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* @return 2 * triangleArea(a,b,c)
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*/
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double VGObject::PerpDotProduct(const QPointF &t, const QPointF &p1, const QPointF &p2)
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{
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return (p1.x() - t.x()) * (p2.y() - t.y()) - (p1.y() - t.y()) * (p2.x() - t.x());
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}
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//---------------------------------------------------------------------------------------------------------------------
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/**
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* @brief GetEpsilon solve the floating-point accuraccy problem.
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*
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* There is the floating-point accuraccy problem, so instead of checking against zero, some epsilon value has to be
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* used. Because the size of the pdp value depends on the length of the vectors, no static value can be used. One
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* approach is to compare the pdp/area value to the fraction of another area which also depends on the length of the
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* line e1=(p1, p2), e.g. the area of the square with side e1 which is computed below
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*/
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double VGObject::GetEpsilon(const QPointF &p1, const QPointF &p2)
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{
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const int dx1 = p2.toPoint().x() - p1.toPoint().x();
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const int dy1 = p2.toPoint().y() - p1.toPoint().y();
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const double epsilon = 0.003 * (dx1 * dx1 + dy1 * dy1);
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return epsilon;
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}
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//---------------------------------------------------------------------------------------------------------------------
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static QPointF ClosestPoint(const QLineF &line, const QPointF &point);
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static QPointF addVector (const QPointF &p, const QPointF &p1, const QPointF &p2, qreal k);
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static void LineCoefficients(const QLineF &line, qreal *a, qreal *b, qreal *c);
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static bool PointInSegment (const QPointF &t, const QPointF &p1, const QPointF &p2);
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static bool PointInBox (const QPointF &t, const QPointF &p1, const QPointF &p2);
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static bool IsPointOnLineSegment (const QPointF &t, const QPointF &p1, const QPointF &p2);
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static QVector<QPointF> GetReversePoints(const QVector<QPointF> &points);
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static int GetLengthContour(const QVector<QPointF> &contour, const QVector<QPointF> &newPoints);
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private:
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QSharedDataPointer<VGObjectData> d;
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static bool IsPointOnLineviaPDP(const QPointF &t, const QPointF &p1, const QPointF &p2);
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static double PerpDotProduct(const QPointF &t, const QPointF &p1, const QPointF &p2);
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static double GetEpsilon(const QPointF &p1, const QPointF &p2);
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};
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#endif // VGOBJECT_H
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@ -31,7 +31,7 @@
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#include <QStringList>
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//Same regexp in pattern.xsd shema file. Don't forget synchronize.
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const QString nameRegExp = QStringLiteral("^([^0-9-*/^+=\\s\\(\\)%:;!.,`'\"]){1,1}([^-*/^+=\\s\\(\\)%:;!.,`'\"]){0,}$");
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const QString nameRegExp = QStringLiteral("^([^0-9*/^+\\-=\\s()?%:;!.,`'\"]){1,1}([^*/^+\\-=\\s()?%:;!.,`'\"]){0,}$");
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// From documantation: If you use QStringLiteral you should avoid declaring the same literal in multiple places: This
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// furthermore blows up the binary sizes.
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@ -107,8 +107,8 @@ QPointF VToolPointOfContact::FindPoint(const qreal &radius, const QPointF ¢e
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break;
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case 2:
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{
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const bool flagP1 = VGObject::PointInSegment (p1, firstPoint, secondPoint);
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const bool flagP2 = VGObject::PointInSegment (p2, firstPoint, secondPoint);
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const bool flagP1 = VGObject::IsPointOnLineSegment (p1, firstPoint, secondPoint);
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const bool flagP2 = VGObject::IsPointOnLineSegment (p2, firstPoint, secondPoint);
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if ((flagP1 == true && flagP2 == true) ||
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(flagP1 == false && flagP2 == false)/*In case we have something wrong*/)
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{
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@ -33,7 +33,7 @@
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extern const int MAJOR_VERSION = 0;
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extern const int MINOR_VERSION = 3;
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extern const int DEBUG_VERSION = 1;
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extern const int DEBUG_VERSION = 2;
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extern const QString APP_VERSION(QStringLiteral("%1.%2.%3.%4").arg(MAJOR_VERSION).arg(MINOR_VERSION)
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.arg(DEBUG_VERSION).arg(LATEST_TAG_DISTANCE));
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@ -39,8 +39,8 @@ extern const QString APP_VERSION;
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// Change version number in version.cpp too.
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#define VER_FILEVERSION 0,3,1,0
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#define VER_FILEVERSION_STR "0.3.1.0\0"
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#define VER_FILEVERSION 0,3,2,0
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#define VER_FILEVERSION_STR "0.3.2.0\0"
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#define VER_PRODUCTVERSION VER_FILEVERSION
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#define VER_PRODUCTVERSION_STR VER_FILEVERSION_STR
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@ -60,7 +60,7 @@ QWidget *TextDelegate::createEditor(QWidget *parent, const QStyleOptionViewItem
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QLineEdit *editor = new QLineEdit(parent);
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editor->setLocale(parent->locale());
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//Same regex pattern in xsd file
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editor->setValidator( new QRegExpValidator(QRegExp(regex)) );
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editor->setValidator( new QRegularExpressionValidator(QRegularExpression(regex)) );
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connect(editor, &QLineEdit::editingFinished, this, &TextDelegate::commitAndCloseEditor);
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return editor;
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}
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@ -431,8 +431,8 @@ void VToolOptionsPropertyBrowser::SetPointName(const QString &name)
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return;
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}
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QRegExp rx(nameRegExp);
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if (name.isEmpty() || VContainer::IsUnique(name) == false || rx.exactMatch(name) == false)
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QRegularExpression rx(nameRegExp);
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if (name.isEmpty() || VContainer::IsUnique(name) == false || rx.match(name).hasMatch() == false)
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{
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idToProperty[VAbstractTool::AttrName]->setValue(i->name());
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}
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@ -274,7 +274,7 @@
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</xs:element>
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<xs:simpleType name="shortName">
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<xs:restriction base="xs:string">
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<xs:pattern value="^([^0-9-*/^+=\s\(\)%:;!.,`'\"]){1,1}([^-*/^+=\s\(\)%:;!.,`'\"]){0,}$"/>
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<xs:pattern value="^([^0-9*/^+\-=\s()?%:;!.,`'\"]){1,1}([^*/^+\-=\s()?%:;!.,`'\"]){0,}$"/>
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</xs:restriction>
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</xs:simpleType>
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<xs:simpleType name="units">
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@ -203,8 +203,7 @@ int VContour::EdgesCount() const
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return 1;
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}
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const QLineF axis = QLineF(0, 0, d->paperWidth, 0);
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const int n = qFloor(axis.length()/d->shift);
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const int n = qFloor(EmptySheetEdge().length()/d->shift);
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if (n <= 0)
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{
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return 1;
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@ -226,7 +225,7 @@ QLineF VContour::GlobalEdge(int i) const
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if (d->globalContour.isEmpty())
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{
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// Because sheet is blank we have one global edge for all cases - Ox axis.
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const QLineF axis = QLineF(0, 0, d->paperWidth - 5, 0);
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const QLineF axis = EmptySheetEdge();
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if (d->shift == 0)
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{
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return axis;
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@ -318,3 +317,9 @@ void VContour::AppendWhole(QVector<QPointF> &contour, const VLayoutDetail &detai
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++j;
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}while (processedEdges < nD);
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}
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//---------------------------------------------------------------------------------------------------------------------
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QLineF VContour::EmptySheetEdge() const
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{
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return QLineF(0, 0, d->paperWidth - 5, 0);
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}
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|
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@ -62,6 +62,7 @@ public:
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QVector<QPointF> UniteWithContour(const VLayoutDetail &detail, int globalI, int detJ, BestFrom type) const;
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QLineF EmptySheetEdge() const;
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int EdgesCount() const;
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QLineF GlobalEdge(int i) const;
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QVector<QPointF> CutEdge(const QLineF &edge) const;
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|
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