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330 lines
9.1 KiB
C++
330 lines
9.1 KiB
C++
/******************************************************************************
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* The MIT License (MIT)
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*
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* Copyright (c) 2016-2017 Baldur Karlsson
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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* THE SOFTWARE.
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******************************************************************************/
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#include "RangeHistogram.h"
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#include <float.h>
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#include <math.h>
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#include <QMouseEvent>
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#include <QPainter>
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RangeHistogram::RangeHistogram(QWidget *parent) : QWidget(parent)
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{
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setMouseTracking(true);
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}
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RangeHistogram::~RangeHistogram()
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{
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}
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// sets the range of data where the histogram data was calculated.
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void RangeHistogram::setHistogramRange(float min, float max)
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{
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m_HistogramMin = min;
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m_HistogramMax = max;
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}
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// sets the minimum and maximum as well as the black and white points
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void RangeHistogram::setRange(float min, float max)
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{
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m_RangeMin = min;
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if(min < 0.0f)
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m_RangeMax = qMax((min - FLT_EPSILON) * (1.0f - m_MinRangeSize), max);
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else
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m_RangeMax = qMax((min + FLT_EPSILON) * (1.0f + m_MinRangeSize), max);
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m_BlackPoint = m_RangeMin;
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m_WhitePoint = m_RangeMax;
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update();
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emit rangeUpdated();
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}
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bool RangeHistogram::ValidRange() const
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{
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if(qIsInf(m_WhitePoint) || qIsNaN(m_WhitePoint) || qIsInf(m_BlackPoint) || qIsNaN(m_BlackPoint) ||
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qIsInf(m_RangeMax) || qIsNaN(m_RangeMax) || qIsInf(m_RangeMin) || qIsNaN(m_RangeMin) ||
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qIsInf(m_RangeMax - m_RangeMin) || qIsNaN(m_RangeMax - m_RangeMin) ||
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qIsInf(m_WhitePoint - m_BlackPoint) || qIsNaN(m_WhitePoint - m_BlackPoint))
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{
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return false;
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}
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return true;
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}
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void RangeHistogram::setHistogramData(const QVector<uint32_t> &histogram)
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{
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m_HistogramData = histogram;
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update();
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}
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void RangeHistogram::setBlackPoint(float val)
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{
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if(val <= m_RangeMin)
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m_BlackPoint = m_RangeMin = val;
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else
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m_BlackPoint = val;
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update();
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emit rangeUpdated();
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}
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void RangeHistogram::setWhitePoint(float val)
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{
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if(val >= m_RangeMax)
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m_WhitePoint = m_RangeMax = val;
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else
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m_WhitePoint = val;
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update();
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emit rangeUpdated();
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}
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float RangeHistogram::blackDelta()
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{
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if(!ValidRange())
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return 0.0f;
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return delta(m_BlackPoint);
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}
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void RangeHistogram::setBlackDelta(float value)
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{
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setBlackPoint(qMin(m_WhitePoint - m_MinRangeSize, value * (m_RangeMax - m_RangeMin) + m_RangeMin));
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}
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float RangeHistogram::whiteDelta()
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{
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if(!ValidRange())
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return 0.0f;
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return delta(m_WhitePoint);
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}
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void RangeHistogram::setWhiteDelta(float value)
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{
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setWhitePoint(qMax(m_BlackPoint + m_MinRangeSize, value * (m_RangeMax - m_RangeMin) + m_RangeMin));
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}
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float RangeHistogram::delta(float val) const
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{
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return (val - m_RangeMin) / (m_RangeMax - m_RangeMin);
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}
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void RangeHistogram::mousePressEvent(QMouseEvent *e)
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{
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if(e->button() != Qt::LeftButton || !ValidRange())
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return;
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QRect r = rect();
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r.marginsRemoved(QMargins(totalSpace(), totalSpace(), totalSpace(), totalSpace()));
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int whiteX = (int)(whiteDelta() * r.width());
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int blackX = (int)(blackDelta() * r.width());
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QPointF whiteVec(whiteX - e->pos().x(), rect().height() - e->pos().y());
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QPointF blackVec(blackX - e->pos().x(), e->pos().y());
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float whitedist = (float)sqrt(whiteVec.x() * whiteVec.x() + whiteVec.y() * whiteVec.y());
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float blackdist = (float)sqrt(blackVec.x() * blackVec.x() + blackVec.y() * blackVec.y());
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if(whitedist < blackdist && whitedist < 18.0f)
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m_DragMode = DraggingMode::White;
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else if(blackdist < whitedist && blackdist < 18.0f)
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m_DragMode = DraggingMode::Black;
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else if(e->pos().x() > whiteX)
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m_DragMode = DraggingMode::White;
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else if(e->pos().x() < blackX)
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m_DragMode = DraggingMode::Black;
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if(m_DragMode == DraggingMode::White)
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{
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float newWhite = (float)(e->pos().x() - totalSpace()) / (float)regionWidth();
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setWhiteDelta(qBound(blackDelta() + m_MinRangeSize, newWhite, 1.0f));
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}
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else if(m_DragMode == DraggingMode::Black)
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{
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float newBlack = (float)(e->pos().x() - totalSpace()) / (float)regionWidth();
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setBlackDelta(qBound(0.0f, newBlack, whiteDelta() - m_MinRangeSize));
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}
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emit rangeUpdated();
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if(m_DragMode != DraggingMode::None)
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update();
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m_MousePrev = e->pos();
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}
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void RangeHistogram::mouseReleaseEvent(QMouseEvent *e)
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{
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m_DragMode = DraggingMode::None;
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m_MousePrev = QPoint(-1, -1);
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}
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void RangeHistogram::mouseMoveEvent(QMouseEvent *e)
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{
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QPoint pos = e->pos();
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if(ValidRange() && (e->buttons() & Qt::LeftButton) && pos != m_MousePrev)
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{
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if(m_DragMode == DraggingMode::White)
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{
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float newWhite = (float)(pos.x() - totalSpace()) / (float)regionWidth();
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setWhiteDelta(qBound(blackDelta() + m_MinRangeSize, newWhite, 1.0f));
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}
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else if(m_DragMode == DraggingMode::Black)
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{
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float newBlack = (float)(pos.x() - totalSpace()) / (float)regionWidth();
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setBlackDelta(qBound(0.0f, newBlack, whiteDelta() - m_MinRangeSize));
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}
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emit rangeUpdated();
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if(m_DragMode != DraggingMode::None)
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update();
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m_MousePrev = pos;
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}
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}
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void RangeHistogram::paintEvent(QPaintEvent *e)
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{
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QPainter p(this);
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p.setRenderHint(QPainter::Antialiasing);
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const QBrush blackBrush(QColor(0, 0, 0));
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const QBrush grayBrush(QColor(180, 180, 180));
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const QBrush redBrush(QColor(60, 0, 0));
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const QBrush greenBrush(QColor(0, 128, 0));
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const QBrush whiteBrush(QColor(255, 255, 255));
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QRect r = this->rect();
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p.eraseRect(r);
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r = r.marginsRemoved(QMargins(m_Margin, m_Margin, m_Margin, m_Margin));
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p.fillRect(r, blackBrush);
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r = r.marginsRemoved(QMargins(m_Border, m_Border, m_Border, m_Border));
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p.fillRect(r, ValidRange() ? grayBrush : redBrush);
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int whiteX = (int)(whiteDelta() * r.width());
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int blackX = (int)(blackDelta() * r.width());
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QRect blackPoint(r.topLeft(), QSize(blackX, r.height()));
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QRect whitePoint(r.left() + whiteX, r.top(), r.width() - whiteX, r.height());
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p.fillRect(whitePoint, whiteBrush);
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p.fillRect(blackPoint, blackBrush);
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if(!ValidRange())
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return;
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if(!m_HistogramData.isEmpty())
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{
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float minx = delta(m_HistogramMin);
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float maxx = delta(m_HistogramMax);
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uint32_t maxval = 0;
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for(int i = 0; i < m_HistogramData.count(); i++)
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{
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float x = (float)i / (float)m_HistogramData.count();
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float xdelta = minx + x * (maxx - minx);
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if(xdelta >= 0.0f && xdelta <= 1.0f)
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{
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maxval = qMax(maxval, m_HistogramData[i]);
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}
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}
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if(maxval == 0)
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maxval = 1;
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for(int i = 0; i < m_HistogramData.count(); i++)
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{
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float x = (float)i / (float)m_HistogramData.count();
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float y = (float)m_HistogramData[i] / (float)maxval;
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float xdelta = minx + x * (maxx - minx);
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if(xdelta >= 0.0f && xdelta <= 1.0f)
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{
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float segwidth = qMax(r.width() * (maxx - minx) / (float)m_HistogramData.count(), 1.0f);
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QRectF barRect(QPointF(r.left() + r.width() * (minx + x * (maxx - minx)),
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r.bottom() - r.height() * y + 1),
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QSizeF(segwidth, r.height() * y));
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p.fillRect(barRect, greenBrush);
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}
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}
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}
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QVector<QPoint> blackTriangle = {QPoint(blackPoint.right() + 1, m_MarkerSize * 2),
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QPoint(blackPoint.right() + m_MarkerSize + 1, 0),
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QPoint(blackPoint.right() - m_MarkerSize + 1, 0)};
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QPainterPath blackPath;
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blackPath.addPolygon(QPolygon(blackTriangle));
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p.fillPath(blackPath, grayBrush);
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QVector<QPoint> whiteTriangle = {
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QPoint(whitePoint.left(), whitePoint.bottom() - m_MarkerSize * 2 + m_Margin),
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QPoint(whitePoint.left() + m_MarkerSize, whitePoint.bottom() + m_Margin),
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QPoint(whitePoint.left() - m_MarkerSize, whitePoint.bottom() + m_Margin)};
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QPainterPath whitePath;
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whitePath.addPolygon(QPolygon(whiteTriangle));
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p.fillPath(whitePath, grayBrush);
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blackTriangle[0] -= QPoint(0, 2);
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blackTriangle[1] += QPoint(-2, 1);
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blackTriangle[2] += QPoint(2, 1);
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blackPath = QPainterPath();
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blackPath.addPolygon(QPolygon(blackTriangle));
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whiteTriangle[0] += QPoint(0, 2);
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whiteTriangle[1] -= QPoint(2, 1);
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whiteTriangle[2] += QPoint(2, -1);
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whitePath = QPainterPath();
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whitePath.addPolygon(QPolygon(whiteTriangle));
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p.fillPath(blackPath, blackBrush);
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p.fillPath(whitePath, whiteBrush);
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}
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