Files
Upsilon/apps/statistics/histogram_view.cpp
Émilie Feral a1b14762b2 [apps/statistics] Do not shit the origin label in histogram view
Change-Id: I4c3f67e6284a8fdc2d6850e278a414968c232184
2017-01-09 15:08:55 +01:00

59 lines
2.0 KiB
C++

#include "histogram_view.h"
#include <assert.h>
#include <math.h>
namespace Statistics {
HistogramView::HistogramView(Data * data) :
CurveViewWithBanner(data, 0.2f, 0.1f, 0.4f, 0.1f),
m_data(data),
m_bannerView(HistogramBannerView(data))
{
}
void HistogramView::reloadSelection() {
float pixelLowerBound = floatToPixel(Axis::Horizontal, m_data->selectedBar() - m_data->barWidth())-1;
float pixelUpperBound = floatToPixel(Axis::Horizontal, m_data->selectedBar() + m_data->barWidth())+1;
float selectedValueInPixels = floatToPixel(Axis::Vertical, (float)m_data->heightForBarAtValue(m_data->selectedBar())/(float)m_data->totalSize())-1;
float horizontalAxisInPixels = floatToPixel(Axis::Vertical, 0.0f)+1;
KDRect dirtyZone(KDRect(pixelLowerBound, selectedValueInPixels, pixelUpperBound-pixelLowerBound,
horizontalAxisInPixels - selectedValueInPixels));
markRectAsDirty(dirtyZone);
m_bannerView.reload();
}
void HistogramView::reload() {
markRectAsDirty(bounds());
computeLabels(Axis::Horizontal);
m_bannerView.reload();
}
void HistogramView::drawRect(KDContext * ctx, KDRect rect) const {
ctx->fillRect(rect, KDColorWhite);
drawAxes(ctx, rect, Axis::Horizontal);
drawLabels(ctx, rect, Axis::Horizontal, false);
if (m_mainViewSelected) {
drawHistogram(ctx, rect, nullptr, m_data->firsBarAbscissa(), m_data->barWidth(), true, KDColorBlack, KDColorRed,
m_data->selectedBar() - m_data->barWidth()/2, m_data->selectedBar() + m_data->barWidth()/2);
} else {
drawHistogram(ctx, rect, nullptr, m_data->firsBarAbscissa(), m_data->barWidth(), true, KDColorBlack, KDColorRed);
}
}
char * HistogramView::label(Axis axis, int index) const {
if (axis == Axis::Vertical) {
return nullptr;
}
return (char *)m_labels[index];
}
View * HistogramView::bannerView() {
return &m_bannerView;
}
float HistogramView::evaluateModelWithParameter(Model * curve, float t) const {
return (float)m_data->heightForBarAtValue(t)/(float)m_data->totalSize();
}
}