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/****************************************************************************
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**
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** Copyright (C) 2012 Digia Plc
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** All rights reserved.
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** For any questions to Digia, please use contact form at http://qt.digia.com
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**
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** This file is part of the Qt Commercial Charts Add-on.
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**
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** $QT_BEGIN_LICENSE$
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** Licensees holding valid Qt Commercial licenses may use this file in
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** accordance with the Qt Commercial License Agreement provided with the
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** Software or, alternatively, in accordance with the terms contained in
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** a written agreement between you and Digia.
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**
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** If you have questions regarding the use of this file, please use
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** contact form at http://qt.digia.com
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** $QT_END_LICENSE$
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**
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****************************************************************************/
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#include "logxydomain_p.h"
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#include "qabstractaxis_p.h"
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#include <qmath.h>
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QTCOMMERCIALCHART_BEGIN_NAMESPACE
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LogXYDomain::LogXYDomain(QObject *parent)
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: AbstractDomain(parent),
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m_logMinX(0),
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m_logMaxX(1),
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m_logBaseX(10)
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{
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}
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LogXYDomain::~LogXYDomain()
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{
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}
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void LogXYDomain::setRange(qreal minX, qreal maxX, qreal minY, qreal maxY)
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{
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bool axisXChanged = false;
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bool axisYChanged = false;
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if (!qFuzzyCompare(m_minX, minX) || !qFuzzyCompare(m_maxX, maxX)) {
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m_minX = minX;
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m_maxX = maxX;
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axisXChanged = true;
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m_logMinX = log10(m_minX) / log10(m_logBaseX);
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m_logMaxX = log10(m_maxX) / log10(m_logBaseX);
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if(!m_signalsBlocked)
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emit rangeHorizontalChanged(m_minX, m_maxX);
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}
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if (!qFuzzyIsNull(m_minY - minY) || !qFuzzyIsNull(m_maxY - maxY)) {
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m_minY = minY;
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m_maxY = maxY;
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axisYChanged = true;
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if(!m_signalsBlocked)
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emit rangeVerticalChanged(m_minY, m_maxY);
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}
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if (axisXChanged || axisYChanged)
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emit updated();
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}
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void LogXYDomain::zoomIn(const QRectF &rect)
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{
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qreal newLogMinX = rect.left() * (m_logMaxX - m_logMinX) / m_size.width() + m_logMinX;
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qreal newLogMaxX = rect.right() * (m_logMaxX - m_logMinX) / m_size.width() + m_logMinX;
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qreal minX = qPow(m_logBaseX, newLogMinX);
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qreal maxX = qPow(m_logBaseX, newLogMaxX);
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qreal dy = spanY() / m_size.height();
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qreal minY = m_minY;
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qreal maxY = m_maxY;
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minY = maxY - dy * rect.bottom();
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maxY = maxY - dy * rect.top();
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setRange(minX, maxX, minY, maxY);
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}
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void LogXYDomain::zoomOut(const QRectF &rect)
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{
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qreal ratioX = m_size.width()/rect.width();
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qreal newLogMinX = m_logMinX - (m_logMaxX - m_logMinX) / ratioX;
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qreal newLogMaxX = m_logMaxX + (m_logMaxX - m_logMinX) / ratioX;
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qreal minX = qPow(m_logBaseX, newLogMinX);
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qreal maxX = qPow(m_logBaseX, newLogMaxX);
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qreal dy = spanY() / rect.height();
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qreal minY = m_minY;
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qreal maxY = m_maxY;
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maxY = minY + dy * rect.bottom();
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minY = maxY - dy * m_size.height();
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setRange(minX, maxX, minY, maxY);
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}
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void LogXYDomain::move(qreal dx, qreal dy)
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{
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qreal stepX = dx * qAbs(m_logMaxX - m_logMinX) / m_size.width();
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qreal minX = qPow(m_logBaseX, m_logMinX + stepX);
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qreal maxX = qPow(m_logBaseX, m_logMaxX + stepX);
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qreal y = spanY() / m_size.height();
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qreal minY = m_minY;
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qreal maxY = m_maxY;
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if (dy != 0) {
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minY = minY + y * dy;
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maxY = maxY + y * dy;
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}
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setRange(minX, maxX, minY, maxY);
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}
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QPointF LogXYDomain::calculateGeometryPoint(const QPointF &point) const
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{
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const qreal leftEdge = m_logMinX < m_logMaxX ? m_logMinX : m_logMaxX;
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const qreal deltaX = m_size.width() / qAbs(m_logMaxX - m_logMinX);
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const qreal deltaY = m_size.height() / (m_maxY - m_minY);
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qreal x = (log10(point.x()) / log10(m_logBaseX)) * deltaX - leftEdge * deltaX;
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qreal y = (point.y() - m_minY) * -deltaY + m_size.height();
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return QPointF(x, y);
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}
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QVector<QPointF> LogXYDomain::calculateGeometryPoints(const QList<QPointF>& vector) const
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{
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const qreal leftEdge = m_logMinX < m_logMaxX ? m_logMinX : m_logMaxX;
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const qreal deltaX = m_size.width() / qAbs(m_logMaxX - m_logMinX);
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const qreal deltaY = m_size.height() / (m_maxY - m_minY);
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QVector<QPointF> result;
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result.resize(vector.count());
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for (int i = 0; i < vector.count(); ++i) {
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qreal x = (log10(vector[i].x()) / log10(m_logBaseX)) * deltaX - leftEdge * deltaX;
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qreal y = (vector[i].y() - m_minY) * -deltaY + m_size.height();
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result[i].setX(x);
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result[i].setY(y);
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}
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return result;
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}
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QPointF LogXYDomain::calculateDomainPoint(const QPointF &point) const
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{
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const qreal leftEdgeX= m_logMinX < m_logMaxX ? m_logMinX : m_logMaxX;
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const qreal deltaX = m_size.width() / qAbs(m_logMaxX - m_logMinX);
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const qreal deltaY = m_size.height() / (m_maxY - m_minY);
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qreal x = qPow(m_logBaseX, leftEdgeX + point.x() / deltaX);
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qreal y = (point.y() - m_size.height()) / (-deltaY) + m_minY;
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return QPointF(x, y);
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}
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// operators
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bool QTCOMMERCIALCHART_AUTOTEST_EXPORT operator== (const LogXYDomain &domain1, const LogXYDomain &domain2)
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{
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return (qFuzzyIsNull(domain1.m_maxX - domain2.m_maxX) &&
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qFuzzyIsNull(domain1.m_maxY - domain2.m_maxY) &&
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qFuzzyIsNull(domain1.m_minX - domain2.m_minX) &&
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qFuzzyIsNull(domain1.m_minY - domain2.m_minY));
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}
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bool QTCOMMERCIALCHART_AUTOTEST_EXPORT operator!= (const LogXYDomain &domain1, const LogXYDomain &domain2)
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{
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return !(domain1 == domain2);
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}
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QDebug QTCOMMERCIALCHART_AUTOTEST_EXPORT operator<<(QDebug dbg, const LogXYDomain &domain)
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{
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dbg.nospace() << "AbstractDomain(" << domain.m_minX << ',' << domain.m_maxX << ',' << domain.m_minY << ',' << domain.m_maxY << ')' << domain.m_size;
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return dbg.maybeSpace();
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}
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#include "moc_logxydomain_p.cpp"
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QTCOMMERCIALCHART_END_NAMESPACE
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