void QTMLocationProvider::positionUpdated(const QGeoPositionInfo &geoPosition) { if (!geoPosition.isValid()) { NS_WARNING("Invalida geoposition received"); return; } QGeoCoordinate coord = geoPosition.coordinate(); double latitude = coord.latitude(); double longitude = coord.longitude(); double altitude = coord.altitude(); double accuracy = geoPosition.attribute(QGeoPositionInfo::HorizontalAccuracy); double altitudeAccuracy = geoPosition.attribute(QGeoPositionInfo::VerticalAccuracy); double heading = geoPosition.attribute(QGeoPositionInfo::Direction); bool providesSpeed = geoPosition.hasAttribute(QGeoPositionInfo::GroundSpeed); double speed = geoPosition.attribute(QGeoPositionInfo::GroundSpeed); nsRefPtr<nsGeoPosition> p = new nsGeoPosition(latitude, longitude, altitude, accuracy, altitudeAccuracy, heading, speed, geoPosition.timestamp().toTime_t()); if (mCallback) { mCallback->Update(p); } }
void GeolocationClientQt::positionUpdated(const QGeoPositionInfo &geoPosition) { if (!geoPosition.isValid()) return; QGeoCoordinate coord = geoPosition.coordinate(); double latitude = coord.latitude(); double longitude = coord.longitude(); bool providesAltitude = (geoPosition.coordinate().type() == QGeoCoordinate::Coordinate3D); double altitude = coord.altitude(); double accuracy = geoPosition.attribute(QGeoPositionInfo::HorizontalAccuracy); bool providesAltitudeAccuracy = geoPosition.hasAttribute(QGeoPositionInfo::VerticalAccuracy); double altitudeAccuracy = geoPosition.attribute(QGeoPositionInfo::VerticalAccuracy); bool providesHeading = geoPosition.hasAttribute(QGeoPositionInfo::Direction); double heading = geoPosition.attribute(QGeoPositionInfo::Direction); bool providesSpeed = geoPosition.hasAttribute(QGeoPositionInfo::GroundSpeed); double speed = geoPosition.attribute(QGeoPositionInfo::GroundSpeed); double timeStampInSeconds = geoPosition.timestamp().toMSecsSinceEpoch() / 1000; m_lastPosition = GeolocationPosition::create(timeStampInSeconds, latitude, longitude, accuracy, providesAltitude, altitude, providesAltitudeAccuracy, altitudeAccuracy, providesHeading, heading, providesSpeed, speed); WebCore::Page* page = QWebPagePrivate::core(m_page); page->geolocationController()->positionChanged(m_lastPosition.get()); }
void GPSTracker::positionUpdated(QGeoPositionInfo position) { if(tracking){ addPosition(position); } emit positionUpdated(Point(position)); horizontalAccuracy = position.attribute(QGeoPositionInfo::HorizontalAccuracy); verticalAccuracy = position.attribute(QGeoPositionInfo::VerticalAccuracy); changeGPSStatus(RECEIVE); }
void QgsQuickPositionKit::onPositionUpdated( const QGeoPositionInfo &info ) { bool hasPosition = info.coordinate().isValid(); if ( hasPosition != mHasPosition ) { mHasPosition = hasPosition; emit hasPositionChanged(); } // Calculate position QgsPoint position = QgsPoint( info.coordinate().longitude(), info.coordinate().latitude(), info.coordinate().altitude() ); // can be NaN if ( position != mPosition ) { mPosition = position; emit positionChanged(); } // calculate accuracy double accuracy; if ( info.hasAttribute( QGeoPositionInfo::HorizontalAccuracy ) ) accuracy = info.attribute( QGeoPositionInfo::HorizontalAccuracy ); else accuracy = -1; if ( !qgsDoubleNear( accuracy, mAccuracy ) ) { mAccuracy = accuracy; emit accuracyChanged(); } // calculate direction double direction; if ( info.hasAttribute( QGeoPositionInfo::Direction ) ) direction = info.attribute( QGeoPositionInfo::Direction ); else direction = -1; if ( !qgsDoubleNear( direction, mDirection ) ) { mDirection = direction; emit directionChanged(); } // recalculate projected/screen variables onMapSettingsUpdated(); }
void KTracks::on_acSelect_triggered() { QModelIndexList selection = ui->tvTracks->selectionModel()->selectedRows(); QAbstractItemModel *model = ui->tvTracks->model(); if (!selection.isEmpty()) { QList<QGeoPositionInfo> trackList; trackList.clear(); trackList = sql.selTrack(model->data(model->index(selection.at(0).row(),0)).toInt()); ui->cpPlot->clearGraphs(); ui->cpPlot->addGraph(); QGeoPositionInfo tp; QVector<double> x; QVector<double> y; int cnt = trackList.count(); x.resize(cnt); y.resize(cnt); //options int pType; if (ui->miAltitude->isChecked()) { ui->cpPlot->yAxis->setLabel("Altitude [m]"); pType = 1; } if (ui->miDistance->isChecked()) { ui->cpPlot->yAxis->setLabel("Distance [m]"); pType = 2; } if (ui->miSpeed->isChecked()) { ui->cpPlot->yAxis->setLabel("Speed [m/s]"); pType = 3; } ui->cpPlot->xAxis->setLabel("time [hh:mm:ss]"); for (int i=0; i<cnt; i++) { tp = trackList.value(i); x[i] = tp.timestamp().toTime_t(); switch (pType) { case 1: { y[i] = tp.coordinate().altitude(); break; } case 2: { y[i] = tp.coordinate().distanceTo(trackList.value(0).coordinate()); break; } case 3: { y[i] = tp.attribute(QGeoPositionInfo::GroundSpeed); break; } } //switch } //for to ui->cpPlot->graph(0)->setData(x,y); // set axes ranges, so we see all data: ui->cpPlot->xAxis->setRange(x[0],x[cnt-1]); qSort(y.begin(), y.end()); ui->cpPlot->yAxis->setRange(y.first(),y.last()); //repaint ui->cpPlot->replot(); } //selection.isempty }
void TrackRecorder::positionUpdated(const QGeoPositionInfo &newPos) { if(newPos.hasAttribute(QGeoPositionInfo::HorizontalAccuracy)) { m_accuracy = newPos.attribute(QGeoPositionInfo::HorizontalAccuracy); } else { m_accuracy = -1; } emit accuracyChanged(); m_currentPosition = newPos.coordinate(); emit currentPositionChanged(); if(newPos.hasAttribute(QGeoPositionInfo::HorizontalAccuracy) && (newPos.attribute(QGeoPositionInfo::HorizontalAccuracy) > 30.0)) { return; } if(m_tracking) { m_points.append(newPos); emit pointsChanged(); emit timeChanged(); if(m_isEmpty) { m_isEmpty = false; m_minLat = m_maxLat = newPos.coordinate().latitude(); m_minLon = m_maxLon = newPos.coordinate().longitude(); emit isEmptyChanged(); } if(m_points.size() > 1) { // Next line triggers following compiler warning? // \usr\include\qt5\QtCore\qlist.h:452: warning: assuming signed overflow does not occur when assuming that (X - c) > X is always false [-Wstrict-overflow] m_distance += m_points.at(m_points.size()-2).coordinate().distanceTo(m_points.at(m_points.size()-1).coordinate()); emit distanceChanged(); if(newPos.coordinate().latitude() < m_minLat) { m_minLat = newPos.coordinate().latitude(); } else if(newPos.coordinate().latitude() > m_maxLat) { m_maxLat = newPos.coordinate().latitude(); } if(newPos.coordinate().longitude() < m_minLon) { m_minLon = newPos.coordinate().longitude(); } else if(newPos.coordinate().longitude() > m_maxLon) { m_maxLon = newPos.coordinate().longitude(); } } emit newTrackPoint(newPos.coordinate()); } }
void tst_QNmeaPositionInfoSource::startUpdates_waitForValidDateTime() { // Tests that the class does not emit an update until it receives a // sentences with a valid date *and* time. All sentences before this // should be ignored, and any sentences received after this that do // not have a date should use the known date. QFETCH(QByteArray, bytes); QFETCH(QList<QDateTime>, dateTimes); QFETCH(QList<bool>, expectHorizontalAccuracy); QFETCH(QList<bool>, expectVerticalAccuracy); QNmeaPositionInfoSource source(m_mode); source.setUserEquivalentRangeError(5.1); QNmeaPositionInfoSourceProxyFactory factory; QNmeaPositionInfoSourceProxy *proxy = static_cast<QNmeaPositionInfoSourceProxy*>(factory.createProxy(&source)); QSignalSpy spy(proxy->source(), SIGNAL(positionUpdated(QGeoPositionInfo))); proxy->source()->startUpdates(); proxy->feedBytes(bytes); QTRY_COMPARE(spy.count(), dateTimes.count()); for (int i=0; i<spy.count(); i++) { QGeoPositionInfo pInfo = spy[i][0].value<QGeoPositionInfo>(); QCOMPARE(pInfo.timestamp(), dateTimes[i]); // Generated GGA/GSA sentences have hard coded HDOP of 3.5, which corrisponds to a // horizontal accuracy of 35.7, for the user equivalent range error of 5.1 set above. QCOMPARE(pInfo.hasAttribute(QGeoPositionInfo::HorizontalAccuracy), expectHorizontalAccuracy[i]); if (pInfo.hasAttribute(QGeoPositionInfo::HorizontalAccuracy)) QVERIFY(qFuzzyCompare(pInfo.attribute(QGeoPositionInfo::HorizontalAccuracy), 35.7)); // Generate GSA sentences have hard coded VDOP of 4.0, which corrisponds to a vertical // accuracy of 40.8, for the user equivalent range error of 5.1 set above. QCOMPARE(pInfo.hasAttribute(QGeoPositionInfo::VerticalAccuracy), expectVerticalAccuracy[i]); if (pInfo.hasAttribute(QGeoPositionInfo::VerticalAccuracy)) QVERIFY(qFuzzyCompare(pInfo.attribute(QGeoPositionInfo::VerticalAccuracy), 40.8)); } }
void QGeoPositionInfoSourceAndroid::requestTimeout() { AndroidPositioning::stopUpdates(androidClassKeyForSingleRequest); //no queued update to process -> timeout const int count = queuedSingleUpdates.count(); if (!count) { emit updateTimeout(); return; } //pick best QGeoPositionInfo best = queuedSingleUpdates[0]; for (int i = 1; i < count; i++) { const QGeoPositionInfo info = queuedSingleUpdates[i]; //anything newer by 20s is always better const int timeDelta = best.timestamp().secsTo(info.timestamp()); if (abs(timeDelta) > 20) { if (timeDelta > 0) best = info; continue; } //compare accuracy if (info.hasAttribute(QGeoPositionInfo::HorizontalAccuracy) && info.hasAttribute(QGeoPositionInfo::HorizontalAccuracy)) { best = info.attribute(QGeoPositionInfo::HorizontalAccuracy) < best.attribute(QGeoPositionInfo::HorizontalAccuracy) ? info : best; continue; } //prefer info with accuracy information if (info.hasAttribute(QGeoPositionInfo::HorizontalAccuracy)) best = info; } queuedSingleUpdates.clear(); emit positionUpdated(best); }
// Testcase to check that values are passed correctly void TestQGeoPositionInfoSource::updateValues() { CHECK_SOURCE_VALID; QSignalSpy spy(m_source, SIGNAL(positionUpdated(const QGeoPositionInfo&))); m_source->startUpdates(); QTRY_VERIFY_WITH_TIMEOUT(!spy.isEmpty(), 2000); QList<QVariant> list = spy.takeFirst(); QGeoPositionInfo info; info = list.at(0).value<QGeoPositionInfo>(); QCOMPARE(qFuzzyCompare(info.coordinate().latitude(), 21), TRUE ); QCOMPARE(qFuzzyCompare(info.coordinate().longitude(), 31), TRUE ); QCOMPARE(qFuzzyCompare(info.coordinate().altitude(), 5.1), TRUE ); QCOMPARE(qFuzzyCompare(info.attribute(QGeoPositionInfo::HorizontalAccuracy), 8), TRUE ); QCOMPARE(qFuzzyCompare(info.attribute(QGeoPositionInfo::VerticalAccuracy), 9), TRUE ); QDateTime dateTime; dateTime.setTime_t(99998); // there is some rounding difference impacting at sec level // hence don't compare directly QCOMPARE(info.timestamp().date(),dateTime.date()); QCOMPARE(info.timestamp().time().hour(),dateTime.time().hour()); }
void LocationData::onPositionChanged(const QGeoPositionInfo& info) { emit positionChanged(info); if (info.isValid()) { const QGeoCoordinate& c = info.coordinate(); if (c.isValid()) { double lat = c.latitude(); double lon = c.longitude(); double alt = c.altitude(); //qDebug() << "LocationData::onPositionChanged()" << lat << lon << alt; if ((latitude != lat) || (longitude != lon)) { latitude = lat; mask |= LATMASK; longitude = lon; mask |= LONMASK; } if (altitude != alt) { altitude = alt; mask |= ALTMASK; } emit positionChanged(lat,lon,alt); } if (info.hasAttribute(QGeoPositionInfo::GroundSpeed)) { double s = info.attribute(QGeoPositionInfo::GroundSpeed); emit speedChanged(s); } if (info.hasAttribute(QGeoPositionInfo::Direction)) { double c = info.attribute(QGeoPositionInfo::Direction); emit courseChanged(c); } } }
int CLbsPositionLogger::Write(const QGeoPositionInfo &info) { int nRet = 0; QString szContext; szContext = QString::number(info.timestamp().toUTC().toTime_t()) + "," + QString::number(info.coordinate().latitude()) + "," + QString::number(info.coordinate().longitude()) + ","; if(!qIsNaN(info.coordinate().altitude())) szContext += QString::number(info.coordinate().altitude()); szContext += ","; if(info.hasAttribute(QGeoPositionInfo::HorizontalAccuracy)) szContext += QString::number(info.attribute(QGeoPositionInfo::HorizontalAccuracy)); szContext += ","; if(info.hasAttribute(QGeoPositionInfo::Direction)) szContext += QString::number(info.attribute(QGeoPositionInfo::Direction)); szContext += ","; if(info.hasAttribute(QGeoPositionInfo::GroundSpeed)) szContext += QString::number(info.attribute(QGeoPositionInfo::GroundSpeed)); szContext += "\n"; m_logFile.write(szContext.toStdString().c_str(), szContext.length()); return nRet; }
void QGeoPositionInfoSourceMaemo::newPositionUpdate(const QGeoPositionInfo &position) { /* Invalid fixes have NaN for horizontal accuracy regardless of whether they come from satellite or non-satellite position methods. Satellite fixes always have LOCATION_GPS_DEVICE_TIME_SET. If this is not set and we have a numeric value for horizontal accuracy then we are dealing with a non-satellite based positioning method. Since QGeoPositionInfo instances are only considered valid if they have a valid coordinate and a valid timestamp, we use the current date and time as the timestamp for the network based positioning. This will help in the case where someone wants to reply a journey from a log file. Based on some logging it looks like satellite and non-satellite methods can be distinguished (after the initial fix) by whether the time has been set and / or whether the horizontal accuracy is above or below around 500 metres. Using the timestamp appears to be more definitive than using the accuracy. */ const bool horizontalAccuracyDefined = !qIsNaN(position.attribute(QGeoPositionInfo::HorizontalAccuracy)); const bool hasTimeStamp = !position.timestamp().isNull(); if (horizontalAccuracyDefined) { if (hasTimeStamp) { //Valid satellite fix lastUpdateFromSatellite = position; } else { //Valid non-satellite fix QGeoPositionInfo networkPosition(position); networkPosition.setTimestamp(QDateTime::currentDateTime()); lastUpdateFromNetwork = networkPosition; } } else { //Invalid position update if (hasTimeStamp) { lastUpdateFromSatellite = QGeoPositionInfo(); } else { lastUpdateFromNetwork = QGeoPositionInfo(); } } }
void Daemon::positionUpdated(QGeoPositionInfo gpsPos) { qreal haMeters = 0; if(gpsPos.isValid()) { haMeters = gpsPos.attribute(QGeoPositionInfo::HorizontalAccuracy); log(QString("Location accuracy is %1 m").arg(haMeters)); } else { log("Location updated, but not valid"); } if (!m_daemonEnabled) { deleteGPS(); return; } if(gpsPos.isValid()) { m_YougeoPosInfo = gpsPos; if (haMeters < m_accuracy && haMeters != 0) { emit gpsLocationReceived(); if (!m_keepGpsRunning) { deleteGPS(); log(QString("GPS stopped. Accuracy was %1 m").arg(haMeters)); } // Is there location request? if (!m_askingLocation.isEmpty()) { // Send location response SMS m_message->sendLocationSMS("RES:", m_YougeoPosInfo, m_askingLocation); log(QString("SMS sent to number %1").arg(m_askingLocation)); // Reset position and requester reset(); } } } }
void TRMainWindow::newLocationInfoReceived(const QGeoPositionInfo positionInfo) { QGeoCoordinate currentCoords = positionInfo.coordinate(); if(m_lastKnownPosition || !(currentCoords == *m_lastKnownPosition)) { // We need to write to the file, let's initialize it if(m_outputKMLFile == NULL) { // File initialization QString timeStamp = positionInfo.timestamp().toString(Qt::ISODate); QString fileTimeStamp = positionInfo.timestamp().toString("hhmmssddMMyy"); m_outputKMLFile = new QFile("c://Data//trackroute_"+fileTimeStamp+".kml"); m_outputKMLFile->open(QIODevice::WriteOnly | QIODevice::Text); // File writer initialization if(m_kmlFileWriter == NULL) { // Header m_kmlFileWriter = new QXmlStreamWriter(m_outputKMLFile); m_kmlFileWriter->writeStartDocument(); m_kmlFileWriter->writeNamespace("http://www.opengis.net/kml/2.2","kml"); // Document m_kmlFileWriter->writeStartElement("Document"); m_kmlFileWriter->writeTextElement("name","TrackRoute Path File"); m_kmlFileWriter->writeTextElement("description","Pathfile generated by Trackroute on: "+timeStamp); // Style m_kmlFileWriter->writeStartElement("Style"); m_kmlFileWriter->writeAttribute("id","yellowLineGreenPoly"); // LineStyle m_kmlFileWriter->writeStartElement("LineStyle"); m_kmlFileWriter->writeTextElement("color","7f00ffff"); m_kmlFileWriter->writeTextElement("width","4"); m_kmlFileWriter->writeEndElement(); // PolyStyle m_kmlFileWriter->writeStartElement("PolyStyle"); m_kmlFileWriter->writeTextElement("color","7f00ff00"); m_kmlFileWriter->writeEndElement(); // End Style m_kmlFileWriter->writeEndElement(); // Placemark m_kmlFileWriter->writeStartElement("Placemark"); m_kmlFileWriter->writeTextElement("name","TrackRoute Path "+timeStamp); m_kmlFileWriter->writeTextElement("description","Path generated by Trackroute on: "+timeStamp); m_kmlFileWriter->writeTextElement("styleUrl","#yellowLineGreenPoly"); // LineString m_kmlFileWriter->writeStartElement("LineString"); m_kmlFileWriter->writeTextElement("extrude","1"); m_kmlFileWriter->writeTextElement("tessellate","1"); m_kmlFileWriter->writeTextElement("altitudeMode","absolute"); // Coordinates m_kmlFileWriter->writeStartElement("coordinates"); } } // Update data m_numberOfUpdatesReceived++; m_currentSpeed = positionInfo.attribute(QGeoPositionInfo::GroundSpeed); m_currentSpeed = m_currentSpeed > 0 ? m_currentSpeed:0; m_totalSpeed += m_currentSpeed; m_averageSpeed = m_totalSpeed / m_numberOfUpdatesReceived; QString coordString = currentCoords.toString(); // Update UI ui->latLonDataLabel->setText(coordString.left(coordString.lastIndexOf(","))); ui->altitudeDataLabel->setText(QString::number(currentCoords.altitude())+" m"); ui->wptNumberDataLabel->setText(QString::number(m_numberOfUpdatesReceived)); ui->currentSpdDataLabel->setText(QString::number(m_currentSpeed)+" km/h"); ui->averageSpdDataLabel->setText(QString::number(m_averageSpeed)+" km/h"); // Write to the KML file QString locationData = QString::number(currentCoords.latitude()).append(",").append(QString::number(currentCoords.longitude())) .append(",").append(QString::number(currentCoords.altitude())).append(" "); m_kmlFileWriter->writeCharacters(locationData); m_outputKMLFile->flush(); } m_lastKnownPosition = ¤tCoords; }
void QDeclarativePosition::setPosition(const QGeoPositionInfo &info) { // timestamp const QDateTime pTimestamp = m_info.timestamp(); const QDateTime timestamp = info.timestamp(); bool emitTimestampChanged = pTimestamp != timestamp; // coordinate const QGeoCoordinate pCoordinate = m_info.coordinate(); const QGeoCoordinate coordinate = info.coordinate(); bool emitCoordinateChanged = pCoordinate != coordinate; bool emitLatitudeValidChanged = exclusiveNaN(pCoordinate.latitude(), coordinate.latitude()); bool emitLongitudeValidChanged = exclusiveNaN(pCoordinate.longitude(), coordinate.longitude()); bool emitAltitudeValidChanged = exclusiveNaN(pCoordinate.altitude(), coordinate.altitude()); // direction const qreal pDirection = m_info.attribute(QGeoPositionInfo::Direction); const qreal direction = info.attribute(QGeoPositionInfo::Direction); bool emitDirectionChanged = !equalOrNaN(pDirection, direction); bool emitDirectionValidChanged = exclusiveNaN(pDirection, direction); // ground speed const qreal pSpeed = m_info.attribute(QGeoPositionInfo::GroundSpeed); const qreal speed = info.attribute(QGeoPositionInfo::GroundSpeed); bool emitSpeedChanged = !equalOrNaN(pSpeed, speed); bool emitSpeedValidChanged = exclusiveNaN(pSpeed, speed); // vertical speed const qreal pVerticalSpeed = m_info.attribute(QGeoPositionInfo::VerticalSpeed); const qreal verticalSpeed = info.attribute(QGeoPositionInfo::VerticalSpeed); bool emitVerticalSpeedChanged = !equalOrNaN(pVerticalSpeed, verticalSpeed); bool emitVerticalSpeedValidChanged = exclusiveNaN(pVerticalSpeed, verticalSpeed); // magnetic variation const qreal pMagneticVariation = m_info.attribute(QGeoPositionInfo::MagneticVariation); const qreal magneticVariation = info.attribute(QGeoPositionInfo::MagneticVariation); bool emitMagneticVariationChanged = !equalOrNaN(pMagneticVariation, magneticVariation); bool emitMagneticVariationValidChanged = exclusiveNaN(pMagneticVariation, magneticVariation); // horizontal accuracy const qreal pHorizontalAccuracy = m_info.attribute(QGeoPositionInfo::HorizontalAccuracy); const qreal horizontalAccuracy = info.attribute(QGeoPositionInfo::HorizontalAccuracy); bool emitHorizontalAccuracyChanged = !equalOrNaN(pHorizontalAccuracy, horizontalAccuracy); bool emitHorizontalAccuracyValidChanged = exclusiveNaN(pHorizontalAccuracy, horizontalAccuracy); // vertical accuracy const qreal pVerticalAccuracy = m_info.attribute(QGeoPositionInfo::VerticalAccuracy); const qreal verticalAccuracy = info.attribute(QGeoPositionInfo::VerticalAccuracy); bool emitVerticalAccuracyChanged = !equalOrNaN(pVerticalAccuracy, verticalAccuracy); bool emitVerticalAccuracyValidChanged = exclusiveNaN(pVerticalAccuracy, verticalAccuracy); m_info = info; if (emitTimestampChanged) emit timestampChanged(); if (emitCoordinateChanged) emit coordinateChanged(); if (emitLatitudeValidChanged) emit latitudeValidChanged(); if (emitLongitudeValidChanged) emit longitudeValidChanged(); if (emitAltitudeValidChanged) emit altitudeValidChanged(); if (emitDirectionChanged) emit directionChanged(); if (emitDirectionValidChanged) emit directionValidChanged(); if (emitSpeedChanged) emit speedChanged(); if (emitSpeedValidChanged) emit speedValidChanged(); if (emitVerticalSpeedChanged) emit verticalSpeedChanged(); if (emitVerticalSpeedValidChanged) emit verticalSpeedValidChanged(); if (emitHorizontalAccuracyChanged) emit horizontalAccuracyChanged(); if (emitHorizontalAccuracyValidChanged) emit horizontalAccuracyValidChanged(); if (emitVerticalAccuracyChanged) emit verticalAccuracyChanged(); if (emitVerticalAccuracyValidChanged) emit verticalAccuracyValidChanged(); if (emitMagneticVariationChanged) emit magneticVariationChanged(); if (emitMagneticVariationValidChanged) emit magneticVariationValidChanged(); }
void TestQGeoPositionInfoSource::lastKnownPosition() { CHECK_SOURCE_VALID; QFETCH(int, positioningMethod); QFETCH(bool, lastKnownPositionArgument); QFETCH(bool, positionValid); #if defined(Q_OS_SYMBIAN) QSKIP("Real GPS not suitable for autotesting, skipping the test.", SkipAll); #endif QGeoPositionInfoSource::PositioningMethods method = static_cast<QGeoPositionInfoSource::PositioningMethods>(positioningMethod); if ((m_source->supportedPositioningMethods() & method) == 0) QSKIP("Not a supported positioning method for this position source", SkipSingle); m_source->setPreferredPositioningMethods(method); QSignalSpy spy(m_source, SIGNAL(positionUpdated(const QGeoPositionInfo&))); QSignalSpy timeout(m_source, SIGNAL(updateTimeout())); int time_out = 7000; m_source->setUpdateInterval(time_out); m_source->startUpdates(); // Use QEventLoop instead of qWait() to ensure we stop as soon as a // position is emitted (otherwise the lastKnownPosition() may have // changed by the time it is checked) QEventLoop loop; QTimer timer; timer.setInterval(9500); connect(m_source, SIGNAL(positionUpdated(const QGeoPositionInfo&)), &loop, SLOT(quit())); connect(&timer, SIGNAL(timeout()), &loop, SLOT(quit())); timer.start(); loop.exec(); EXPECT_FAIL_WINCE_SEE_MOBILITY_337_ABORT; QVERIFY((spy.count() > 0) && (timeout.count() == 0)); QList<QVariant> list = spy.takeFirst(); QGeoPositionInfo info; info = list.at(0).value<QGeoPositionInfo>(); QGeoPositionInfo lastPositioninfo; lastPositioninfo = m_source->lastKnownPosition(lastKnownPositionArgument); QCOMPARE(lastPositioninfo.isValid(), positionValid); if (positionValid) { QCOMPARE(info.coordinate(), lastPositioninfo.coordinate()); QCOMPARE(info.timestamp(), lastPositioninfo.timestamp()); QCOMPARE(info.hasAttribute(QGeoPositionInfo::HorizontalAccuracy), lastPositioninfo.hasAttribute(QGeoPositionInfo::HorizontalAccuracy)); if (info.hasAttribute(QGeoPositionInfo::HorizontalAccuracy)) { bool isNaN1 = qIsNaN(info.attribute(QGeoPositionInfo::HorizontalAccuracy)); bool isNaN2 = qIsNaN(lastPositioninfo.attribute(QGeoPositionInfo::HorizontalAccuracy)); QCOMPARE(isNaN1, isNaN2); if (!isNaN1) { QCOMPARE(qFuzzyCompare(info.attribute(QGeoPositionInfo::HorizontalAccuracy), lastPositioninfo.attribute(QGeoPositionInfo::HorizontalAccuracy)), TRUE); } } QCOMPARE(info.hasAttribute(QGeoPositionInfo::VerticalAccuracy), lastPositioninfo.hasAttribute(QGeoPositionInfo::VerticalAccuracy)); if (info.hasAttribute(QGeoPositionInfo::VerticalAccuracy)) { bool isNaN1 = qIsNaN(info.attribute(QGeoPositionInfo::VerticalAccuracy)); bool isNaN2 = qIsNaN(lastPositioninfo.attribute(QGeoPositionInfo::VerticalAccuracy)); QCOMPARE(isNaN1, isNaN2); if (!isNaN1) { QCOMPARE(qFuzzyCompare(info.attribute(QGeoPositionInfo::VerticalAccuracy), lastPositioninfo.attribute(QGeoPositionInfo::VerticalAccuracy)), TRUE); } } } m_source->stopUpdates(); }