qskinny/examples/iotdashboard/DiagramSkinlet.cpp
2022-04-17 12:25:51 +02:00

184 lines
4.8 KiB
C++

/******************************************************************************
* QSkinny - Copyright (C) 2021 Uwe Rathmann
* This file may be used under the terms of the QSkinny License, Version 1.0
*****************************************************************************/
#include "DiagramSkinlet.h"
#include "Diagram.h"
#include "nodes/DiagramDataNode.h"
#include "nodes/DiagramSegmentsNode.h"
namespace
{
QskAspect::Subcontrol areaForIndex( int i )
{
switch( i )
{
case 1:
return Diagram::ChartArea2;
case 2:
return Diagram::ChartArea3;
default:
return Diagram::ChartArea1;
}
}
QskAspect::Subcontrol lineForIndex( int i )
{
switch( i )
{
case 1:
return Diagram::ChartLine2;
case 2:
return Diagram::ChartLine3;
default:
return Diagram::ChartLine1;
}
}
}
DiagramSkinlet::DiagramSkinlet( QskSkin* skin )
: QskSkinlet( skin )
{
setNodeRoles( { ChartRole, SeparatorRole } );
}
DiagramSkinlet::~DiagramSkinlet()
{
}
QRectF DiagramSkinlet::subControlRect(
const QskSkinnable* skinnable, const QRectF& contentsRect,
QskAspect::Subcontrol subControl ) const
{
if( subControl == Diagram::Chart )
{
return contentsRect;
}
return Inherited::subControlRect( skinnable, contentsRect, subControl );
}
QSGNode* DiagramSkinlet::updateSubNode(
const QskSkinnable* skinnable, quint8 nodeRole, QSGNode* node ) const
{
const auto discharge = static_cast< const Diagram* >( skinnable );
switch( nodeRole )
{
case ChartRole:
{
return updateChartNode( discharge, node );
}
case SeparatorRole:
{
return updateSeparatorNode( discharge, node );
}
}
return nullptr;
}
QSGNode* DiagramSkinlet::updateChartNode( const Diagram* diagram, QSGNode* node ) const
{
if( node == nullptr )
{
node = new DiagramDataNode;
}
using Q = Diagram;
const QRectF rect = diagram->subControlRect( Q::Chart );
const qreal yMax = diagram->yMax();
const QVector< Diagram::Type > types = { Diagram::Line, Diagram::Area };
for( int i = 0; i < diagram->dataPoints().size(); ++i )
{
QSGNode* chartNode;
if( node->childCount() > i )
{
chartNode = node->childAtIndex( i );
}
else
{
chartNode = new QSGNode;
node->appendChildNode( chartNode );
}
const QVector< QPointF > dataPoints = diagram->dataPoints().at( i );
int nodeIndex = 0;
QskAspect::Subcontrol lineSubcontrol = lineForIndex( i );
QskAspect::Subcontrol areaSubcontrol = areaForIndex( i );
int lineWidth = diagram->metric( lineSubcontrol | QskAspect::Size );
for( int j = 0; j < types.size(); ++j )
{
if( diagram->typesAt( i ) & types.at( j ) )
{
DiagramDataNode* dataPointNode;
if( chartNode->childCount() > nodeIndex )
{
dataPointNode = static_cast< DiagramDataNode* >( chartNode->childAtIndex( nodeIndex ) );
}
else
{
dataPointNode = new DiagramDataNode;
chartNode->appendChildNode( dataPointNode );
}
const DiagramDataNode::Type nodeType = ( types.at( j ) == Diagram::Line ) ? DiagramDataNode::Line : DiagramDataNode::Area;
const QColor color = ( types.at( j ) == Diagram::Line ) ? diagram->color( lineSubcontrol )
: diagram->color( areaSubcontrol );
dataPointNode->update( rect, nodeType, color, dataPoints, yMax, false, lineWidth );
nodeIndex++;
}
}
while( nodeIndex < chartNode->childCount() )
{
chartNode->removeChildNode( chartNode->childAtIndex( nodeIndex++ ) );
}
}
// ### also check for superfluous nodes here
return node;
}
QSGNode* DiagramSkinlet::updateSeparatorNode( const Diagram* diagram, QSGNode* node ) const
{
const int xGridLines = diagram->xGridLines();
if( xGridLines <= 0 )
{
return nullptr;
}
auto* separatorNode = static_cast< DiagramSegmentsNode* >( node );
if( separatorNode == nullptr )
{
separatorNode = new DiagramSegmentsNode;
}
using Q = Diagram;
const QRectF rect = diagram->subControlRect( Q::Chart );
const QColor color = diagram->color( Q::Segments );
const QVector< QVector< QPointF > > dataPoints = diagram->dataPoints();
separatorNode->update( rect, color, dataPoints, xGridLines );
return separatorNode;
}
#include "moc_DiagramSkinlet.cpp"