subsurface/qt-ui/globe.cpp
Tomaz Canabrava 098aa6343b Fixed the display of Subsurface in Smaller Screens
This patch fixes the display of subsurface in smaller
screens by creating ScrollArea containers that are
now englobbing each of the Tab-pages and the Planner
Widget. Some of those widgets were pretty big by the
amount of things on it and it was too big for small
( 14" and 15" ) screens.

This seems to fix it, and looks good both on Gtk+ and
Oxygen styles.

Signed-off-by: Tomaz Canabrava <tcanabrava@kde.org>
2013-09-26 18:14:09 -03:00

234 lines
6.6 KiB
C++

#include "globe.h"
#include "kmessagewidget.h"
#include "mainwindow.h"
#include "ui_mainwindow.h"
#include "../dive.h"
#include "../divelist.h"
#include "../helpers.h"
#include <QDebug>
#include <marble/AbstractFloatItem.h>
#include <marble/GeoDataPlacemark.h>
#include <marble/GeoDataDocument.h>
#include <marble/MarbleModel.h>
#include <marble/MarbleDirs.h>
#include <marble/MapThemeManager.h>
#include <marble/GeoDataLineString.h>
#if INCOMPLETE_MARBLE
#include "marble/GeoDataTreeModel.h"
#else
#include <marble/GeoDataTreeModel.h>
#endif
#include <QMouseEvent>
#include <QMessageBox>
GlobeGPS::GlobeGPS(QWidget* parent) : MarbleWidget(parent), loadedDives(0)
{
// check if Google Sat Maps are installed
// if not, check if they are in a known location
MapThemeManager mtm;
QStringList list = mtm.mapThemeIds();
QString theme, subsurfaceDataPath;
QDir marble;
bool foundGoogleMap = false;
Q_FOREACH(theme, list)
if (theme == "earth/googlesat/googlesat.dgml")
foundGoogleMap = true;
if (!foundGoogleMap) {
subsurfaceDataPath = getSubsurfaceDataPath("marbledata");
if (subsurfaceDataPath != "")
MarbleDirs::setMarbleDataPath(subsurfaceDataPath);
}
messageWidget = new KMessageWidget(this);
messageWidget->setCloseButtonVisible(false);
messageWidget->setHidden(true);
setMapThemeId("earth/googlesat/googlesat.dgml");
//setMapThemeId("earth/openstreetmap/openstreetmap.dgml");
setProjection(Marble::Spherical);
setAnimationsEnabled(true);
setShowClouds(false);
setShowBorders(false);
setShowPlaces(true);
setShowCrosshairs(false);
setShowGrid(false);
setShowOverviewMap(false);
setShowScaleBar(true);
setShowCompass(false);
connect(this, SIGNAL(mouseClickGeoPosition(qreal, qreal, GeoDataCoordinates::Unit)),
this, SLOT(mouseClicked(qreal, qreal, GeoDataCoordinates::Unit)));
setMinimumHeight(0);
setMinimumWidth(0);
}
void GlobeGPS::mouseClicked(qreal lon, qreal lat, GeoDataCoordinates::Unit unit)
{
GeoDataCoordinates here(lon, lat, unit);
long lon_udeg = rint(1000000 * here.longitude(GeoDataCoordinates::Degree));
long lat_udeg = rint(1000000 * here.latitude(GeoDataCoordinates::Degree));
// distance() is in km above the map.
// We're going to use that to decide how
// approximate the dives have to be.
//
// Totally arbitrarily I say that 1km
// distance means that we can resolve
// to about 100m. Which in turn is about
// 1000 udeg.
//
// Trigonometry is hard, but sin x == x
// for small x, so let's just do this as
// a linear thing.
long resolve = rint(distance() * 1000);
int idx;
struct dive *dive;
bool clear = !(QApplication::keyboardModifiers() && Qt::ControlModifier);
bool toggle = !clear;
bool first = true;
for_each_dive(idx, dive) {
long lat_diff, lon_diff;
if (!dive_has_gps_location(dive))
continue;
lat_diff = labs(dive->latitude.udeg - lat_udeg);
lon_diff = labs(dive->longitude.udeg - lon_udeg);
if (lat_diff > 180000000)
lat_diff = 360000000 - lat_diff;
if (lon_diff > 180000000)
lon_diff = 180000000 - lon_diff;
if (lat_diff > resolve || lon_diff > resolve)
continue;
if (clear) {
mainWindow()->dive_list()->unselectDives();
clear = false;
}
mainWindow()->dive_list()->selectDive(dive, first, toggle);
first = false;
}
}
void GlobeGPS::reload()
{
if (loadedDives) {
model()->treeModel()->removeDocument(loadedDives);
delete loadedDives;
}
if (editingDiveCoords) {
editingDiveCoords = 0;
if (messageWidget->isVisible())
messageWidget->animatedHide();
}
loadedDives = new GeoDataDocument;
QMap<QString, GeoDataPlacemark *> locationMap;
int idx = 0;
struct dive *dive;
for_each_dive(idx, dive) {
if (dive_has_gps_location(dive)) {
GeoDataPlacemark *place = new GeoDataPlacemark(dive->location);
place->setCoordinate(dive->longitude.udeg / 1000000.0,dive->latitude.udeg / 1000000.0 , 0, GeoDataCoordinates::Degree);
// don't add dive locations twice, unless they are at least 50m apart
if (locationMap[QString(dive->location)]) {
GeoDataCoordinates existingLocation = locationMap[QString(dive->location)]->coordinate();
GeoDataLineString segment = GeoDataLineString();
segment.append(existingLocation);
GeoDataCoordinates newLocation = place->coordinate();
segment.append(newLocation);
double dist = segment.length(6371);
// the dist is scaled to the radius given - so with 6371km as radius
// 50m turns into 0.05 as threashold
if (dist < 0.05)
continue;
}
locationMap[QString(dive->location)] = place;
loadedDives->append(place);
}
}
model()->treeModel()->addDocument(loadedDives);
}
void GlobeGPS::centerOn(dive* dive)
{
// dive has changed, if we had the 'editingDive', hide it.
if (messageWidget->isVisible() && (!dive || dive_has_gps_location(dive))) {
messageWidget->animatedHide();
}
if (!dive)
return;
editingDiveCoords = 0;
qreal longitude = dive->longitude.udeg / 1000000.0;
qreal latitude = dive->latitude.udeg / 1000000.0;
if (!longitude || !latitude) {
prepareForGetDiveCoordinates(dive);
return;
}
// set the zoom as seen from n kilometer above. 3km / 10,000ft seems pleasant
// do not change it it was already modified by user
if (!zoom())
zoomView(zoomFromDistance(3));
centerOn(longitude,latitude, true);
}
void GlobeGPS::prepareForGetDiveCoordinates(dive* dive)
{
if (!messageWidget->isVisible()) {
messageWidget->setMessageType(KMessageWidget::Warning);
messageWidget->setText(QObject::tr("No location data - move the map and double-click to set the dive location"));
messageWidget->setWordWrap(true);
messageWidget->animatedShow();
}
editingDiveCoords = dive;
}
void GlobeGPS::changeDiveGeoPosition(qreal lon, qreal lat, GeoDataCoordinates::Unit unit)
{
// convert to degrees if in radian.
if (unit == GeoDataCoordinates::Radian) {
lon = lon * 180 / M_PI;
lat = lat * 180 / M_PI;
}
if (!editingDiveCoords) {
return;
}
editingDiveCoords->latitude.udeg = lrint(lat * 1000000.0);
editingDiveCoords->longitude.udeg = lrint(lon * 1000000.0);
centerOn(lon, lat, true);
reload();
editingDiveCoords = 0;
messageWidget->animatedHide();
mark_divelist_changed(TRUE);
}
void GlobeGPS::mousePressEvent(QMouseEvent* event)
{
qreal lat, lon;
if (editingDiveCoords && geoCoordinates(event->pos().x(), event->pos().y(), lon, lat, GeoDataCoordinates::Degree)) {
changeDiveGeoPosition(lon, lat, GeoDataCoordinates::Degree);
}
}
void GlobeGPS::resizeEvent(QResizeEvent* event)
{
int size = event->size().width();
MarbleWidget::resizeEvent(event);
if (size > 600)
messageWidget->setGeometry((size - 600) / 2, 5, 600, 0);
else
messageWidget->setGeometry(5, 5, size - 10, 0);
messageWidget->setMaximumHeight(500);
}