subsurface/profile-widget/ruleritem.cpp
Jeremie Guichard 597539ce39 Fix double to int truncation in C++ code
Wfloat-conversion enabled for C++ part of the code
Fix warnings raised by the flag using lrint

Original issue reported on the mailing list:
The ascent/descent rates are sometimes not what is expected.
E.g. setting the ascent rate to 10m/min results in an actual
ascent rate of 9m/min.
This is due to truncating the ascent rate preference,
then effectively rounding up the time to reach each stop to 2s intervals.
The result being that setting the ascent rate to 10m/min
results in 20s to ascend 3m (9m/min), when it should be exactly 18s.

Reported-by: John Smith <noseygit@hotmail.com>
Reported-by: Rick Walsh <rickmwalsh@gmail.com>
Signed-off-by: Jeremie Guichard <djebrest@gmail.com>
2017-03-24 09:39:25 -07:00

180 lines
4.7 KiB
C++

#include "profile-widget/ruleritem.h"
#ifndef SUBSURFACE_MOBILE
#include "desktop-widgets/preferences/preferencesdialog.h"
#endif
#include "profile-widget/profilewidget2.h"
#include "core/display.h"
#include "core/subsurface-qt/SettingsObjectWrapper.h"
#include <qgraphicssceneevent.h>
#include "core/profile.h"
RulerNodeItem2::RulerNodeItem2() :
entry(NULL),
ruler(NULL),
timeAxis(NULL),
depthAxis(NULL)
{
memset(&pInfo, 0, sizeof(pInfo));
setRect(-8, -8, 16, 16);
setBrush(QColor(0xff, 0, 0, 127));
setPen(QColor(Qt::red));
setFlag(ItemIsMovable);
setFlag(ItemSendsGeometryChanges);
setFlag(ItemIgnoresTransformations);
}
void RulerNodeItem2::setPlotInfo(plot_info &info)
{
pInfo = info;
entry = pInfo.entry;
}
void RulerNodeItem2::setRuler(RulerItem2 *r)
{
ruler = r;
}
void RulerNodeItem2::recalculate()
{
struct plot_data *data = pInfo.entry + (pInfo.nr - 1);
uint16_t count = 0;
if (x() < 0) {
setPos(0, y());
} else if (x() > timeAxis->posAtValue(data->sec)) {
setPos(timeAxis->posAtValue(data->sec), depthAxis->posAtValue(data->depth));
} else {
data = pInfo.entry;
count = 0;
while (timeAxis->posAtValue(data->sec) < x() && count < pInfo.nr) {
data = pInfo.entry + count;
count++;
}
setPos(timeAxis->posAtValue(data->sec), depthAxis->posAtValue(data->depth));
entry = data;
}
}
void RulerNodeItem2::mouseMoveEvent(QGraphicsSceneMouseEvent *event)
{
qreal x = event->scenePos().x();
if (x < 0.0)
x = 0.0;
setPos(x, event->scenePos().y());
recalculate();
ruler->recalculate();
}
RulerItem2::RulerItem2() : source(new RulerNodeItem2()),
dest(new RulerNodeItem2()),
timeAxis(NULL),
depthAxis(NULL),
textItemBack(new QGraphicsRectItem(this)),
textItem(new QGraphicsSimpleTextItem(this))
{
memset(&pInfo, 0, sizeof(pInfo));
source->setRuler(this);
dest->setRuler(this);
textItem->setFlag(QGraphicsItem::ItemIgnoresTransformations);
textItemBack->setBrush(QColor(0xff, 0xff, 0xff, 190));
textItemBack->setPen(QColor(Qt::white));
textItemBack->setFlag(QGraphicsItem::ItemIgnoresTransformations);
setPen(QPen(QColor(Qt::black), 0.0));
#ifndef SUBSURFACE_MOBILE
connect(SettingsObjectWrapper::instance()->techDetails, &TechnicalDetailsSettings::rulerGraphChanged, this, &RulerItem2::settingsChanged);
#endif
}
void RulerItem2::settingsChanged(bool value)
{
ProfileWidget2 *profWidget = NULL;
if (scene() && scene()->views().count())
profWidget = qobject_cast<ProfileWidget2 *>(scene()->views().first());
setVisible( (profWidget && profWidget->currentState == ProfileWidget2::PROFILE) ? value : false);
}
void RulerItem2::recalculate()
{
char buffer[500];
QPointF tmp;
QFont font;
QFontMetrics fm(font);
if (timeAxis == NULL || depthAxis == NULL || pInfo.nr == 0)
return;
prepareGeometryChange();
startPoint = mapFromItem(source, 0, 0);
endPoint = mapFromItem(dest, 0, 0);
if (startPoint.x() > endPoint.x()) {
tmp = endPoint;
endPoint = startPoint;
startPoint = tmp;
}
QLineF line(startPoint, endPoint);
setLine(line);
compare_samples(source->entry, dest->entry, buffer, 500, 1);
text = QString(buffer);
// draw text
QGraphicsView *view = scene()->views().first();
QPoint begin = view->mapFromScene(mapToScene(startPoint));
textItem->setText(text);
qreal tgtX = startPoint.x();
const qreal diff = begin.x() + textItem->boundingRect().width();
// clamp so that the text doesn't go out of the screen to the right
if (diff > view->width()) {
begin.setX(lrint(begin.x() - (diff - view->width())));
tgtX = mapFromScene(view->mapToScene(begin)).x();
}
// always show the text bellow the lowest of the start and end points
qreal tgtY = (startPoint.y() >= endPoint.y()) ? startPoint.y() : endPoint.y();
// this isn't exactly optimal, since we want to scale the 1.0, 4.0 distances as well
textItem->setPos(tgtX - 1.0, tgtY + 4.0);
// setup the text background
textItemBack->setVisible(startPoint.x() != endPoint.x());
textItemBack->setPos(textItem->x(), textItem->y());
textItemBack->setRect(0, 0, textItem->boundingRect().width(), textItem->boundingRect().height());
}
RulerNodeItem2 *RulerItem2::sourceNode() const
{
return source;
}
RulerNodeItem2 *RulerItem2::destNode() const
{
return dest;
}
void RulerItem2::setPlotInfo(plot_info info)
{
pInfo = info;
dest->setPlotInfo(info);
source->setPlotInfo(info);
dest->recalculate();
source->recalculate();
recalculate();
}
void RulerItem2::setAxis(DiveCartesianAxis *time, DiveCartesianAxis *depth)
{
timeAxis = time;
depthAxis = depth;
dest->depthAxis = depth;
dest->timeAxis = time;
source->depthAxis = depth;
source->timeAxis = time;
recalculate();
}
void RulerItem2::setVisible(bool visible)
{
QGraphicsLineItem::setVisible(visible);
source->setVisible(visible);
dest->setVisible(visible);
}