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12ea31ef78
The default location which is used when the PluginParemeter "googlemaps.cachefolder" is not specified should be ~/.cache/googlemaps on Linux or /user/<name>/appdata/local/cache/googlemaps on Windows. This patch moves the cache to the default system location where we store the printing templates, cloudstorage and the default user XML file. Signed-off-by: Lubomir I. Ivanov <neolit123@gmail.com>
264 lines
9.5 KiB
C++
264 lines
9.5 KiB
C++
// SPDX-License-Identifier: GPL-2.0
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#include <QApplication>
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#include <QClipboard>
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#include <QGeoCoordinate>
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#include <QDebug>
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#include <QVector>
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#include "qmlmapwidgethelper.h"
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#include "core/dive.h"
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#include "core/divesite.h"
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#include "core/helpers.h"
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#include "qt-models/maplocationmodel.h"
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#define MIN_DISTANCE_BETWEEN_DIVE_SITES_M 50.0
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#define SMALL_CIRCLE_RADIUS_PX 26.0
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MapWidgetHelper::MapWidgetHelper(QObject *parent) : QObject(parent)
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{
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m_mapLocationModel = new MapLocationModel(this);
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connect(m_mapLocationModel, SIGNAL(selectedLocationChanged(MapLocation *)),
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this, SLOT(selectedLocationChanged(MapLocation *)));
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}
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void MapWidgetHelper::centerOnDiveSite(struct dive_site *ds)
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{
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int idx;
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struct dive *dive;
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QVector<struct dive_site *> selDS;
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QVector<QGeoCoordinate> selGC;
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QGeoCoordinate dsCoord;
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for_each_dive (idx, dive) {
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struct dive_site *dss = get_dive_site_for_dive(dive);
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if (!dive_site_has_gps_location(dss) || !dive->selected)
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continue;
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// only store dive sites with GPS
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selDS.append(dss);
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selGC.append(QGeoCoordinate(dss->latitude.udeg * 0.000001,
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dss->longitude.udeg * 0.000001));
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}
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if (!dive_site_has_gps_location(ds) && !selDS.size()) {
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// only a single dive site with no GPS selected
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m_mapLocationModel->setSelectedUuid(ds ? ds->uuid : 0, false);
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QMetaObject::invokeMethod(m_map, "deselectMapLocation");
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} else if (selDS.size() == 1) {
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// a single dive site with GPS selected
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ds = selDS.at(0);
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m_mapLocationModel->setSelectedUuid(ds->uuid, false);
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dsCoord.setLatitude(ds->latitude.udeg * 0.000001);
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dsCoord.setLongitude(ds->longitude.udeg * 0.000001);
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QMetaObject::invokeMethod(m_map, "centerOnCoordinate", Q_ARG(QVariant, QVariant::fromValue(dsCoord)));
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} else if (selDS.size() > 1) {
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/* more than one dive sites with GPS selected.
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* find the most top-left and bottom-right dive sites on the map coordinate system. */
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ds = selDS.at(0);
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m_mapLocationModel->setSelectedUuid(ds->uuid, false);
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qreal minLat = 0.0, minLon = 0.0, maxLat = 0.0, maxLon = 0.0;
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bool start = true;
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foreach(QGeoCoordinate gc, selGC) {
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qreal lat = gc.latitude();
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qreal lon = gc.longitude();
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if (start) {
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minLat = maxLat = lat;
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minLon = maxLon = lon;
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start = false;
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continue;
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}
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if (lat < minLat)
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minLat = lat;
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else if (lat > maxLat)
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maxLat = lat;
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if (lon < minLon)
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minLon = lon;
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else if (lon > maxLon)
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maxLon = lon;
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}
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// pass rectangle coordinates to QML
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QGeoCoordinate coordTopLeft(minLat, minLon);
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QGeoCoordinate coordBottomRight(maxLat, maxLon);
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QGeoCoordinate coordCenter(minLat + (maxLat - minLat) * 0.5, minLon + (maxLon - minLon) * 0.5);
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QMetaObject::invokeMethod(m_map, "centerOnRectangle",
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Q_ARG(QVariant, QVariant::fromValue(coordTopLeft)),
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Q_ARG(QVariant, QVariant::fromValue(coordBottomRight)),
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Q_ARG(QVariant, QVariant::fromValue(coordCenter)));
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}
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}
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void MapWidgetHelper::reloadMapLocations()
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{
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struct dive_site *ds;
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int idx;
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QMap<QString, MapLocation *> locationNameMap;
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m_mapLocationModel->clear();
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MapLocation *location;
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QVector<MapLocation *> locationList;
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qreal latitude, longitude;
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if (displayed_dive_site.uuid && dive_site_has_gps_location(&displayed_dive_site)) {
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latitude = displayed_dive_site.latitude.udeg * 0.000001;
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longitude = displayed_dive_site.longitude.udeg * 0.000001;
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location = new MapLocation(displayed_dive_site.uuid, QGeoCoordinate(latitude, longitude),
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QString(displayed_dive_site.name));
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locationList.append(location);
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locationNameMap[QString(displayed_dive_site.name)] = location;
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}
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for_each_dive_site(idx, ds) {
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if (!dive_site_has_gps_location(ds) || ds->uuid == displayed_dive_site.uuid)
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continue;
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latitude = ds->latitude.udeg * 0.000001;
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longitude = ds->longitude.udeg * 0.000001;
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QGeoCoordinate dsCoord(latitude, longitude);
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QString name(ds->name);
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// don't add dive locations with the same name, unless they are
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// at least MIN_DISTANCE_BETWEEN_DIVE_SITES_M apart
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if (locationNameMap[name]) {
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MapLocation *existingLocation = locationNameMap[name];
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QGeoCoordinate coord = qvariant_cast<QGeoCoordinate>(existingLocation->getRole(MapLocation::Roles::RoleCoordinate));
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if (dsCoord.distanceTo(coord) < MIN_DISTANCE_BETWEEN_DIVE_SITES_M)
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continue;
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}
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location = new MapLocation(ds->uuid, dsCoord, name);
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locationList.append(location);
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locationNameMap[name] = location;
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}
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m_mapLocationModel->addList(locationList);
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}
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void MapWidgetHelper::selectedLocationChanged(MapLocation *location)
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{
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int idx;
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struct dive *dive;
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m_selectedDiveIds.clear();
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QGeoCoordinate locationCoord = location->coordinate();
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for_each_dive (idx, dive) {
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struct dive_site *ds = get_dive_site_for_dive(dive);
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if (!dive_site_has_gps_location(ds))
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continue;
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const qreal latitude = ds->latitude.udeg * 0.000001;
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const qreal longitude = ds->longitude.udeg * 0.000001;
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QGeoCoordinate dsCoord(latitude, longitude);
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if (locationCoord.distanceTo(dsCoord) < m_smallCircleRadius)
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m_selectedDiveIds.append(idx);
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}
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emit selectedDivesChanged(m_selectedDiveIds);
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}
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void MapWidgetHelper::selectVisibleLocations()
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{
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int idx;
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struct dive *dive;
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bool selectedFirst = false;
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m_selectedDiveIds.clear();
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for_each_dive (idx, dive) {
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struct dive_site *ds = get_dive_site_for_dive(dive);
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if (!dive_site_has_gps_location(ds))
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continue;
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const qreal latitude = ds->latitude.udeg * 0.000001;
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const qreal longitude = ds->longitude.udeg * 0.000001;
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QGeoCoordinate dsCoord(latitude, longitude);
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QPointF point;
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QMetaObject::invokeMethod(m_map, "fromCoordinate", Q_RETURN_ARG(QPointF, point),
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Q_ARG(QGeoCoordinate, dsCoord));
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if (!qIsNaN(point.x())) {
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if (!selectedFirst) {
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m_mapLocationModel->setSelectedUuid(ds->uuid, false);
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selectedFirst = true;
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}
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m_selectedDiveIds.append(idx);
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}
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}
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emit selectedDivesChanged(m_selectedDiveIds);
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}
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/*
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* Based on a 2D Map widget circle with center "coord" and radius SMALL_CIRCLE_RADIUS_PX,
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* obtain a "small circle" with radius m_smallCircleRadius in meters:
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* https://en.wikipedia.org/wiki/Circle_of_a_sphere
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*
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* The idea behind this circle is to be able to select multiple nearby dives, when clicking on
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* the map. This code can be in QML, but it is in C++ instead for performance reasons.
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*
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* This can be made faster with an exponential regression [a * exp(b * x)], with a pretty
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* decent R-squared, but it becomes bound to map provider zoom level mappings and the
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* SMALL_CIRCLE_RADIUS_PX value, which makes the code hard to maintain.
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*/
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void MapWidgetHelper::calculateSmallCircleRadius(QGeoCoordinate coord)
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{
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QPointF point;
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QMetaObject::invokeMethod(m_map, "fromCoordinate", Q_RETURN_ARG(QPointF, point),
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Q_ARG(QGeoCoordinate, coord), Q_ARG(bool, false));
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QPointF point2(point.x() + SMALL_CIRCLE_RADIUS_PX, point.y());
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QGeoCoordinate coord2;
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QMetaObject::invokeMethod(m_map, "toCoordinate", Q_RETURN_ARG(QGeoCoordinate, coord2),
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Q_ARG(QPointF, point2), Q_ARG(bool, false));
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m_smallCircleRadius = coord2.distanceTo(coord);
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}
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void MapWidgetHelper::copyToClipboardCoordinates(QGeoCoordinate coord, bool formatTraditional)
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{
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bool savep = prefs.coordinates_traditional;
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prefs.coordinates_traditional = formatTraditional;
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const int lat = llrint(1000000.0 * coord.latitude());
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const int lon = llrint(1000000.0 * coord.longitude());
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const char *coordinates = printGPSCoords(lat, lon);
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QApplication::clipboard()->setText(QString(coordinates), QClipboard::Clipboard);
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free((void *)coordinates);
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prefs.coordinates_traditional = savep;
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}
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void MapWidgetHelper::updateCurrentDiveSiteCoordinates(quint32 uuid, QGeoCoordinate coord)
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{
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MapLocation *loc = m_mapLocationModel->getMapLocationForUuid(uuid);
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if (loc)
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loc->setCoordinate(coord);
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displayed_dive_site.latitude.udeg = llrint(coord.latitude() * 1000000.0);
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displayed_dive_site.longitude.udeg = llrint(coord.longitude() * 1000000.0);
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emit coordinatesChanged();
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}
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bool MapWidgetHelper::editMode()
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{
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return m_editMode;
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}
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void MapWidgetHelper::setEditMode(bool editMode)
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{
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m_editMode = editMode;
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MapLocation *exists = m_mapLocationModel->getMapLocationForUuid(displayed_dive_site.uuid);
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// if divesite uuid doesn't exist in the model, add a new MapLocation.
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if (editMode && !exists) {
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QGeoCoordinate coord(0.0, 0.0);
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m_mapLocationModel->add(new MapLocation(displayed_dive_site.uuid, coord,
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QString(displayed_dive_site.name)));
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QMetaObject::invokeMethod(m_map, "centerOnCoordinate",
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Q_ARG(QVariant, QVariant::fromValue(coord)));
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}
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emit editModeChanged();
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}
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QString MapWidgetHelper::pluginObject()
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{
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QString str;
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str += "import QtQuick 2.0;";
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str += "import QtLocation 5.3;";
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str += "Plugin {";
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str += " id: mapPlugin;";
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str += " name: 'googlemaps';";
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str += " PluginParameter { name: 'googlemaps.maps.language'; value: '%lang%' }";
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str += " PluginParameter { name: 'googlemaps.cachefolder'; value: '%cacheFolder%' }";
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str += " Component.onCompleted: {";
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str += " if (availableServiceProviders.indexOf(name) === -1) {";
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str += " console.warn('MapWidget.qml: cannot find a plugin named: ' + name);";
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str += " }";
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str += " }";
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str += "}";
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QString lang = uiLanguage(NULL).replace('_', '-');
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str.replace("%lang%", lang);
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QString cacheFolder = QString(system_default_directory()).append("/googlemaps");
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str.replace("%cacheFolder%", cacheFolder.replace("\\", "/"));
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return str;
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}
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