84  QPainter *p = 
c.painter();
 
   92  const double w = spu.width();
 
   93  const double h = spu.height();
 
   95  const double baseX = position.x();
 
   96  const double baseY = position.y() - h;
 
   98  QVector<QPointF> textPositions; 
 
  100  for ( 
int i = 0; i < nCategories; ++i )
 
  104      textPositions.push_back( QPointF( baseX + ( w / nCategories ) * i + w / nCategories / 2.0, baseY + h / 2.0 ) );
 
  108      textPositions.push_back( QPointF( baseX + w / 2.0, baseY + h / nCategories * i + w / nCategories / 2.0 ) );
 
  116  p->setBrush( mBrush );
 
  121    p->drawEllipse( baseX, baseY, w, h );
 
  124    QList<QPointF> intersect; 
 
  125    const QPointF center( baseX + w / 2.0, baseY + h / 2.0 );
 
  126    const double r1 = w / 2.0;
 
  127    const double r2 = h / 2.0;
 
  129    for ( 
int i = 1; i < nCategories; ++i )
 
  133        lineEllipseIntersection( QPointF( baseX + w / nCategories * i, baseY ), QPointF( baseX + w / nCategories * i, baseY + h ), center, r1, r2, intersect );
 
  137        lineEllipseIntersection( QPointF( baseX, baseY + h / nCategories * i ), QPointF( baseX + w, baseY + h / nCategories * i ), center, r1, r2, intersect );
 
  139      if ( intersect.size() > 1 )
 
  141        p->drawLine( intersect.at( 0 ), intersect.at( 1 ) );
 
  147    p->drawRect( QRectF( baseX, baseY, w, h ) );
 
  148    for ( 
int i = 1; i < nCategories; ++i )
 
  152        p->drawLine( QPointF( baseX + w / nCategories * i, baseY ), QPointF( baseX + w / nCategories * i, baseY + h ) );
 
  156        p->drawLine( QPointF( baseX, baseY + h / nCategories * i ), QPointF( baseX + w, baseY + h / nCategories * i ) );
 
  163    triangle << QPointF( baseX, baseY + h ) << QPointF( baseX + w, baseY + h ) << QPointF( baseX + w / 2.0, baseY );
 
  164    p->drawPolygon( triangle );
 
  166    const QLineF triangleEdgeLeft( baseX + w / 2.0, baseY, baseX, baseY + h );
 
  167    const QLineF triangleEdgeRight( baseX + w, baseY + h, baseX + w / 2.0, baseY );
 
  168    QPointF intersectionPoint1, intersectionPoint2;
 
  170    for ( 
int i = 1; i < nCategories; ++i )
 
  174        const QLineF verticalLine( baseX + w / nCategories * i, baseY + h, baseX + w / nCategories * i, baseY );
 
  175        if ( baseX + w / nCategories * i < baseX + w / 2.0 )
 
  177          verticalLine.intersects( triangleEdgeLeft, &intersectionPoint1 );
 
  181          verticalLine.intersects( triangleEdgeRight, &intersectionPoint1 );
 
  183        p->drawLine( QPointF( baseX + w / nCategories * i, baseY + h ), intersectionPoint1 );
 
  187        const QLineF horizontalLine( baseX, baseY + h / nCategories * i, baseX + w, baseY + h / nCategories * i );
 
  188        horizontalLine.intersects( triangleEdgeLeft, &intersectionPoint1 );
 
  189        horizontalLine.intersects( triangleEdgeRight, &intersectionPoint2 );
 
  190        p->drawLine( intersectionPoint1, intersectionPoint2 );
 
  197  const QFontMetricsF fontMetrics( sFont );
 
  205  for ( 
int i = 0; i < textPositions.size(); ++i )
 
  208    const QString val = expression->
evaluate( &expressionContext ).toString();
 
  211    const double textWidth = fontMetrics.horizontalAdvance( val );
 
  212    const double textHeight = fontMetrics.height();
 
  216    const QPointF position = textPositions.at( i );
 
  224        xOffset = textHeight / 2.0;
 
  228        xOffset = fontMetrics.xHeight();
 
  231    p->drawText( QPointF( position.x() - textWidth / 2.0, position.y() + xOffset ), val );
 
 
Expression contexts are used to encapsulate the parameters around which a QgsExpression should be eva...
void setFeature(const QgsFeature &feature)
Convenience function for setting a feature for the context.
void setFields(const QgsFields &fields)
Convenience function for setting a fields for the context.
Contains information about the context of a rendering operation.
void renderDiagram(const QgsFeature &feature, QgsRenderContext &c, const QgsDiagramSettings &s, QPointF position) override
Draws the diagram at the given position (in pixel coordinates)
QgsTextDiagram * clone() const override
Returns an instance that is equivalent to this one.
QSizeF diagramSize(const QgsAttributes &attributes, const QgsRenderContext &c, const QgsDiagramSettings &s) override
Returns the size in map units the diagram will use to render.
QString diagramName() const override
Gets a descriptive name for this diagram type.
double legendSize(double value, const QgsDiagramSettings &s, const QgsDiagramInterpolationSettings &is) const override
Returns the size of the legend item for the diagram corresponding to a specified value.
#define DIAGRAM_NAME_TEXT