Files
pilotclient/tests/blackmisc/testgeo.cpp
Klaus Basan e55480737e Ref T111, lat/lng/angle changes
* get struct CAngle::DegMinSecFractionalSec to obtain parts
* round to epsilon utility functions and fix (qint64)
2017-09-24 19:51:09 +01:00

76 lines
2.6 KiB
C++

/* Copyright (C) 2013
* swift Project Community / Contributors
*
* This file is part of swift project. It is subject to the license terms in the LICENSE file found in the top-level
* directory of this distribution and at http://www.swift-project.org/license.html. No part of swift project,
* including this file, may be copied, modified, propagated, or distributed except according to the terms
* contained in the LICENSE file.
*/
//! \cond PRIVATE_TESTS
/*!
* \file
* \ingroup testblackmisc
*/
#include "testgeo.h"
#include "blackmisc/geo/coordinategeodetic.h"
#include "blackmisc/geo/earthangle.h"
#include "blackmisc/geo/latitude.h"
#include "blackmisc/pq/physicalquantity.h"
#include "blackmisc/pq/units.h"
#include <QTest>
using namespace BlackMisc::Geo;
using namespace BlackMisc::PhysicalQuantities;
using namespace BlackMisc::Math;
namespace BlackMiscTest
{
void CTestGeo::geoBasics()
{
CLatitude lat(10, CAngleUnit::deg());
QVERIFY2(lat * 2 == lat + lat, "Latitude addition should be equal");
lat += CLatitude(20, CAngleUnit::deg());
QVERIFY2(lat.valueRounded() == 30.0, "Latitude should be 30 degrees");
CAngle a(20, 0);
lat = CLatitude(a);
double v = lat.valueRounded(CAngleUnit::deg());
QVERIFY2(v == 20.0, "Values shall be the same");
a = CAngle(28, 0);
lat = CLatitude(a);
v = lat.valueRounded(CAngleUnit::deg());
QVERIFY2(v == 28.0, "Values shall be the same");
a = CAngle(30, 0, 0);
lat = CLatitude(a);
v = lat.valueRounded(CAngleUnit::deg());
QVERIFY2(v == 30.0, "Values shall be the same");
}
void CTestGeo::coordinateGeodetic()
{
CCoordinateGeodetic northPole = { 90.0, 0.0 };
CCoordinateGeodetic southPole = { -90.0, 0.0 };
QCOMPARE(calculateEuclideanDistance(northPole, southPole), 2.0);
CCoordinateGeodetic equator = { 0.0, 70.354683 };
QCOMPARE(calculateEuclideanDistance(northPole, equator), std::sqrt(2.0f));
CCoordinateGeodetic testCoordinate = northPole;
double latValue = testCoordinate.latitude().value(CAngleUnit::deg());
double lngValue = testCoordinate.longitude().value(CAngleUnit::deg());
QVERIFY2(latValue == 90.0, "Latitude value supposed to be 90");
QVERIFY2(lngValue == 0.0, "Longitude value supposed to be 0");
CLatitude newLat(90.0, CAngleUnit::deg());
testCoordinate.setLatitude(newLat);
latValue = testCoordinate.latitude().value(CAngleUnit::deg());
QVERIFY2(latValue == newLat.value(CAngleUnit::deg()), "Latitude value supposed to be equal");
}
} // ns
//! \endcond