mirror of
https://github.com/fralx/LimeReport.git
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135 lines
4.7 KiB
C++
135 lines
4.7 KiB
C++
#include "lrverticalbarchart.h"
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namespace LimeReport{
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void VerticalBarChart::paintChart(QPainter *painter, QRectF chartRect)
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{
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updateMinAndMaxValues();
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const qreal valuesHMargin = this->valuesHMargin(painter);
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const qreal valuesVMargin = this->valuesVMargin(painter);
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QRectF calcRect = horizontalLabelsRect(
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painter,
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chartRect.adjusted(
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hPadding(chartRect) * 2 + valuesHMargin,
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chartRect.height() - (painter->fontMetrics().height() + vPadding(chartRect) * 2),
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-(hPadding(chartRect) * 2),
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-vPadding(chartRect)
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)
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);
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qreal barsShift = calcRect.height();
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paintVerticalGrid(
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painter,
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chartRect.adjusted(
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hPadding(chartRect),
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vPadding(chartRect) + valuesVMargin,
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-hPadding(chartRect),
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-(vPadding(chartRect) + barsShift)
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)
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);
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paintVerticalBars(
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painter,
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chartRect.adjusted(
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hPadding(chartRect) * 2 + valuesHMargin,
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vPadding(chartRect) + valuesVMargin,
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-hPadding(chartRect) * 2,
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-(vPadding(chartRect) + barsShift)
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)
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);
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paintSerialLines(
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painter,
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chartRect.adjusted(
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hPadding(chartRect) * 2 + valuesHMargin,
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vPadding(chartRect) + valuesVMargin,
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-hPadding(chartRect) * 2,
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-(vPadding(chartRect) + barsShift)
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)
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);
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paintHorizontalLabels(painter, calcRect);
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}
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void VerticalBarChart::paintVerticalBars(QPainter *painter, QRectF barsRect)
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{
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if (valuesCount() == 0) return;
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int delta = int(maxValue() - minValue());
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delta = genNextValue(delta);
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int barSeriesCount = 0;
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foreach(SeriesItem* series, m_chartItem->series()){
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if (series->preferredType() == SeriesItem::Bar) barSeriesCount++;
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}
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barSeriesCount = (m_chartItem->itemMode() == DesignMode) ? seriesCount() : barSeriesCount;
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if (barSeriesCount < 1) return;
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painter->save();
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painter->setRenderHint(QPainter::Antialiasing,false);
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qreal vStep = barsRect.height() / delta;
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qreal hStep = (barsRect.width() / valuesCount()) / (barSeriesCount == 0 ? 1 : barSeriesCount);
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qreal topShift = (delta - (maxValue() - minValue())) * vStep + barsRect.top();
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qDebug() << "vStep" << vStep << "hStep" << hStep;
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if (!m_chartItem->series().isEmpty() && (m_chartItem->itemMode() != DesignMode)){
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int curSeries = 0;
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foreach (SeriesItem* series, m_chartItem->series()) {
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if (series->preferredType() == SeriesItem::Bar){
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qreal curHOffset = curSeries * hStep + barsRect.left();
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painter->setBrush(series->color());
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foreach (qreal value, series->data()->values()) {
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painter->drawRect(QRectF(curHOffset, maxValue() * vStep + topShift, hStep, -value * vStep));
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curHOffset += hStep * barSeriesCount;
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}
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curSeries++;
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}
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}
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} else {
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qreal curHOffset = barsRect.left();
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int curColor = 0;
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for (int i = 0; i < 9; ++i){
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if (curColor == 3) curColor = 0;
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painter->setBrush(color_map[curColor]);
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painter->drawRect(QRectF(curHOffset, maxValue() * vStep + barsRect.top(), hStep, -designValues()[i] * vStep));
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curHOffset += hStep;
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curColor++;
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}
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}
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painter->restore();
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}
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void VerticalBarChart::paintSerialLines(QPainter* painter, QRectF barsRect)
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{
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if (valuesCount() == 0 ) return;
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painter->save();
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painter->setRenderHint(QPainter::Antialiasing,true);
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int delta = int(maxValue() - minValue());
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delta = genNextValue(delta);
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qreal vStep = barsRect.height() / delta;
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qreal hStep = (barsRect.width() / valuesCount());
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qreal topShift = (delta - (maxValue()-minValue())) * vStep + barsRect.top();
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if (!m_chartItem->series().isEmpty()){
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foreach (SeriesItem* series, m_chartItem->series()) {
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if (series->preferredType() == SeriesItem::Line){
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for (int i = 0; i < series->data()->values().count()-1; ++i ){
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QPoint startPoint = QPoint((i+1)*hStep + barsRect.left()-hStep/2,
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(maxValue() * vStep+topShift) - series->data()->values().at(i) * vStep
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);
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QPoint endPoint = QPoint((i+2)*hStep + barsRect.left()-hStep/2,
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(maxValue() * vStep+topShift) - series->data()->values().at(i+1) * vStep
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);
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drawSegment(painter, startPoint, endPoint, series->color());
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}
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}
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}
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}
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painter->restore();
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}
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} // namespace LimeReport
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