subsurface/qt-ui/profile/divecartesianaxis.cpp
Tomaz Canabrava f9784d876e Made the Axis be aware of Direction.
Now we can create an axis that's topToBottom, BottomToTop, LeftToRight and
RightToLeft.

This was needed for the Temperature Plot, because it should be inverted
(starting on the bottom).

Signed-off-by: Tomaz Canabrava <tcanabrava@kde.org>
Signed-off-by: Dirk Hohndel <dirk@hohndel.org>
2014-01-17 06:18:56 +07:00

308 lines
No EOL
7.8 KiB
C++

#include "divecartesianaxis.h"
#include "divelineitem.h"
#include "divetextitem.h"
#include "helpers.h"
#include <QPen>
#include <QGraphicsScene>
#include <QDebug>
#include <QPropertyAnimation>
#include <QGraphicsView>
#include <QStyleOption>
void DiveCartesianAxis::setMaximum(double maximum)
{
max = maximum;
emit sizeChanged();
}
void DiveCartesianAxis::setMinimum(double minimum)
{
min = minimum;
emit sizeChanged();
}
void DiveCartesianAxis::setTextColor(const QColor& color)
{
textColor = color;
}
DiveCartesianAxis::DiveCartesianAxis() : orientation(LeftToRight)
{
}
DiveCartesianAxis::~DiveCartesianAxis()
{
}
void DiveCartesianAxis::setOrientation(Orientation o)
{
orientation = o;
}
void DiveCartesianAxis::updateTicks()
{
QLineF m = line();
// unused so far:
// QGraphicsView *view = scene()->views().first();
double steps = (max - min) / interval;
double currValue = min;
// Remove the uneeded Ticks / Texts.
if (ticks.size() > steps) {
while (ticks.size() > steps) {
DiveLineItem *removedLine = ticks.takeLast();
removedLine->animatedHide();
DiveTextItem *removedText = labels.takeLast();
removedText->animatedHide();
}
}
// Move the remaining Ticks / Text to it's corerct position
// Regartind the possibly new values for the Axis
qreal begin, stepSize;
if (orientation == TopToBottom) {
begin = m.y1();
stepSize = (m.y2() - m.y1());
} else if (orientation == BottomToTop) {
begin = m.y2();
stepSize = (m.y2() - m.y1());
} else if (orientation == LeftToRight ) {
begin = m.x1();
stepSize = (m.x2() - m.x1());
} else if (orientation == RightToLeft) {
begin = m.x2();
stepSize = (m.x2() - m.x1());
}
stepSize = stepSize / steps;
for (int i = 0, count = ticks.size(); i < count; i++, currValue += interval) {
qreal childPos;
if (orientation == TopToBottom || orientation == LeftToRight) {
childPos = begin + i * stepSize;
} else {
childPos = begin - i * stepSize;
}
labels[i]->setText(textForValue(currValue));
if ( orientation == LeftToRight || orientation == RightToLeft) {
ticks[i]->animateMoveTo(childPos, m.y1() + tickSize);
labels[i]->animateMoveTo(childPos, m.y1() + tickSize);
} else {
ticks[i]->animateMoveTo(m.x1() - tickSize, childPos);
labels[i]->animateMoveTo(m.x1() - tickSize, childPos);
}
}
// Add's the rest of the needed Ticks / Text.
for (int i = ticks.size(); i < steps; i++, currValue += interval) {
qreal childPos;
if (orientation == TopToBottom || orientation == LeftToRight) {
childPos = begin + i * stepSize;
} else {
childPos = begin - i * stepSize;
}
DiveLineItem *item = new DiveLineItem(this);
item->setPen(pen());
ticks.push_back(item);
DiveTextItem *label = new DiveTextItem(this);
label->setText(textForValue(currValue));
label->setBrush(QBrush(textColor));
labels.push_back(label);
if (orientation == RightToLeft || orientation == LeftToRight) {
item->setLine(0, 0, 0, tickSize);
item->setPos(scene()->sceneRect().width() + 10, m.y1() + tickSize); // position it outside of the scene
item->animateMoveTo(childPos, m.y1() + tickSize); // anim it to scene.
label->setAlignment(Qt::AlignBottom | Qt::AlignHCenter);
label->setPos(scene()->sceneRect().width() + 10, m.y1() + tickSize); // position it outside of the scene);
label->animateMoveTo(childPos, m.y1() + tickSize);
} else {
item->setLine(0, 0, tickSize, 0);
item->setPos(m.x1() - tickSize, scene()->sceneRect().height() + 10);
item->animateMoveTo(m.x1() - tickSize, childPos);
label->setAlignment(Qt::AlignVCenter| Qt::AlignRight);
label->setPos(m.x1() - tickSize, scene()->sceneRect().height() + 10);
label->animateMoveTo(m.x1() - tickSize, childPos);
}
}
}
QString DiveCartesianAxis::textForValue(double value)
{
return QString::number(value);
}
void DiveCartesianAxis::setTickSize(qreal size)
{
tickSize = size;
}
void DiveCartesianAxis::setTickInterval(double i)
{
interval = i;
}
qreal DiveCartesianAxis::valueAt(const QPointF& p)
{
QLineF m = line();
double retValue = orientation == LeftToRight || RightToLeft?
max * (p.x() - m.x1()) / (m.x2() - m.x1()) :
max * (p.y() - m.y1()) / (m.y2() - m.y1());
return retValue;
}
qreal DiveCartesianAxis::posAtValue(qreal value)
{
QLineF m = line();
QPointF p = pos();
double size = max - min;
double distanceFromOrigin = value - min;
double percent = (value - min) / size;
double realSize = orientation == LeftToRight || orientation == RightToLeft?
m.x2() - m.x1() :
m.y2() - m.y1();
// Inverted axis, just invert the percentage.
if(orientation == RightToLeft || orientation == BottomToTop){
percent = 1 - percent;
}
double retValue = realSize * percent;
double adjusted =
orientation == LeftToRight ? retValue + m.x1() + p.x() :
orientation == RightToLeft ? retValue + m.x1() + p.x() :
orientation == TopToBottom ? retValue + m.y1() + p.y() :
/* entation == BottomToTop */ retValue + m.y1() + p.y() ;
return adjusted;
}
qreal DiveCartesianAxis::percentAt(const QPointF& p)
{
qreal value = valueAt(p);
double size = max - min;
double percent = value / size;
return percent;
}
double DiveCartesianAxis::maximum() const
{
return max;
}
double DiveCartesianAxis::minimum() const
{
return min;
}
void DiveCartesianAxis::setColor(const QColor& color)
{
QPen defaultPen(color);
defaultPen.setJoinStyle(Qt::RoundJoin);
defaultPen.setCapStyle(Qt::RoundCap);
defaultPen.setWidth(2);
defaultPen.setCosmetic(true);
setPen(defaultPen);
}
QString DepthAxis::textForValue(double value)
{
return get_depth_string(value, false, false);
}
QString TimeAxis::textForValue(double value)
{
return QString::number(value / 60);
}
QString TemperatureAxis::textForValue(double value)
{
return QString::number(mkelvin_to_C( (int) value));
}
void DiveCartesianPlane::setLeftAxis(DiveCartesianAxis* axis)
{
leftAxis = axis;
connect(leftAxis, SIGNAL(sizeChanged()), this, SLOT(setup()));
if (bottomAxis)
setup();
}
void DiveCartesianPlane::setBottomAxis(DiveCartesianAxis* axis)
{
bottomAxis = axis;
connect(bottomAxis, SIGNAL(sizeChanged()), this, SLOT(setup()));
if (leftAxis)
setup();
}
QLineF DiveCartesianPlane::horizontalLine() const
{
return (bottomAxis) ? bottomAxis->line() : QLineF() ;
}
void DiveCartesianPlane::setHorizontalLine(QLineF line)
{
if ( horizontalSize == line.length())
return;
horizontalSize = line.length();
setup();
}
void DiveCartesianPlane::setVerticalLine(QLineF line)
{
if (verticalSize == line.length())
return;
verticalSize = line.length();
setup();
}
QLineF DiveCartesianPlane::verticalLine() const
{
return (leftAxis) ? leftAxis->line() : QLineF() ;
}
void DiveCartesianPlane::setup()
{
if (!leftAxis || !bottomAxis || !scene())
return;
// This creates a Grid around the axis, creating the cartesian plane.
const int top = leftAxis->posAtValue(leftAxis->minimum());
const int bottom = leftAxis->posAtValue(leftAxis->maximum());
const int left = bottomAxis->posAtValue(bottomAxis->minimum());
const int right = bottomAxis->posAtValue(bottomAxis->maximum());
setRect(0, 0, horizontalSize, verticalSize);
setPos(left, top);
qDeleteAll(horizontalLines);
qDeleteAll(verticalLines);
horizontalLines.clear();
verticalLines.clear();
// DEPTH is M_OR_FEET(10,30), Minutes are 600, per line.
for (int i = leftAxis->minimum(), max = leftAxis->maximum(); i < max; i += M_OR_FT(10,30)) {
DiveLineItem *line = new DiveLineItem();
line->setLine(0, 0, horizontalSize, 0);
line->setPos(left,leftAxis->posAtValue(i));
line->setZValue(-1);
horizontalLines.push_back(line);
scene()->addItem(line);
}
for (int i = bottomAxis->minimum(), max = bottomAxis->maximum(); i < max; i += 600) { // increments by 10 minutes.
DiveLineItem *line = new DiveLineItem();
line->setLine(0, 0, 0, verticalSize);
line->setPos(bottomAxis->posAtValue(i), top);
line->setZValue(-1);
verticalLines.push_back(line);
scene()->addItem(line);
}
}