5 Commits

Author SHA1 Message Date
Kilian 92159b0669 Implement FSUIPC FSData Classes 2022-09-23 22:16:01 +02:00
Kilian 115e4d9265 Migrate to radians instead of degrees to lessen conversion errors 2022-09-23 00:16:52 +02:00
Kilian 07487e9e51 Format 2022-09-11 23:26:28 +02:00
Kilian 46a0607b55 Fix Linux 2022-09-11 21:45:09 +02:00
Kilian de8b282ab1 Fix merge errors 2022-09-11 21:34:26 +02:00
32 changed files with 1606 additions and 317 deletions
+22 -1
View File
@@ -64,6 +64,27 @@
"cinttypes": "cpp",
"typeinfo": "cpp",
"valarray": "cpp",
"__threading_support": "cpp"
"__threading_support": "cpp",
"__bit_reference": "cpp",
"__bits": "cpp",
"__config": "cpp",
"__debug": "cpp",
"__errc": "cpp",
"__hash_table": "cpp",
"__locale": "cpp",
"__mutex_base": "cpp",
"__node_handle": "cpp",
"__nullptr": "cpp",
"__split_buffer": "cpp",
"__string": "cpp",
"__tree": "cpp",
"__tuple": "cpp",
"compare": "cpp",
"concepts": "cpp",
"ios": "cpp",
"locale": "cpp",
"queue": "cpp",
"stack": "cpp",
"variant": "cpp"
},
}
-3
View File
@@ -1,5 +1,2 @@
- Reverse engineer FSUIPC .NET onRunway Check
- Update OSXCross Docker image to SDK 11
- Implement ARM64 arch for Plugin
- Refactor SimDatabase to be a class
- Requires new Airport class
+3 -4
View File
@@ -20,11 +20,10 @@ namespace file
std::ifstream in(XPLANE_PLUGIN_DIRECTORY CONFIG);
std::string line;
while (std::getline(in, line)) {
std::vector<std::string> fields =
germanairlinesva::util::split(line, '=');
std::vector<std::string> fields = util::split(line, '=');
if (fields.size() >= 2) {
germanairlinesva::util::trim(fields[0]);
germanairlinesva::util::trim(fields[1]);
util::trim(fields[0]);
util::trim(fields[1]);
if (fields[0] == "scenery") {
this->scenery = fields[1];
} else if (fields[0] == "user") {
+14 -4
View File
@@ -7,7 +7,18 @@ namespace file
namespace simdata
{
Gate::Gate(std::string designator,
struct germanairlinesva::geodata::point center,
double latitude,
double longitude,
std::uint8_t radius)
{
this->designator = designator;
this->center = {geodata::toRadians(latitude),
geodata::toRadians(longitude)};
this->radius = radius;
}
Gate::Gate(std::string designator,
struct geodata::point center,
std::uint8_t radius)
{
this->designator = designator;
@@ -22,10 +33,9 @@ namespace file
write<decltype(this->radius)>(out, this->radius);
}
bool Gate::contains(germanairlinesva::geodata::point coordinates) const
bool Gate::contains(geodata::point coordinates) const
{
return germanairlinesva::geodata::distanceEarthP(this->center,
coordinates);
return geodata::distanceEarthP(this->center, coordinates);
}
} // namespace simdata
} // namespace file
+18
View File
@@ -0,0 +1,18 @@
#ifndef GERMANAIRLINESVA_FILE_FSUIPC_FSGEODATA_H
#define GERMANAIRLINESVA_FILE_FSUIPC_FSGEODATA_H
#include "FsLatLonPoint.h"
#include "FsLatLonQuadrilateral.h"
#include "FsLatitude.h"
#include "FsLatitudeSpan.h"
#include "FsLongitude.h"
#include "FsLongitudeSpan.h"
#include "FsLatLonPointImpl.h"
#include "FsLatLonQuadrilateralImpl.h"
#include "FsLatitudeImpl.h"
#include "FsLatitudeSpanImpl.h"
#include "FsLongitudeImpl.h"
#include "FsLongitudeSpanImpl.h"
#endif
+57
View File
@@ -0,0 +1,57 @@
#ifndef GERMANAIRLINESVA_FILE_FSUIPC_FSLATLONPOINT_H
#define GERMANAIRLINESVA_FILE_FSUIPC_FSLATLONPOINT_H
#define _USE_MATH_DEFINES
#include <cmath>
#include <cstdint>
#include <string>
#include "FsLatitude.h"
#include "FsLatitudeSpan.h"
#include "FsLongitude.h"
#include "FsLongitudeSpan.h"
namespace germanairlinesva
{
namespace file
{
namespace FSUIPC
{
class FsLatLonPoint
{
private:
FsLatitude lat;
FsLongitude lon;
public:
inline FsLatLonPoint();
inline FsLatLonPoint(FsLatitude Latitude, FsLongitude Longitude);
inline const FsLongitude Longitude() const;
inline const FsLatitude Latitude() const;
inline double DistanceFromInFeet(const FsLatLonPoint &Point) const;
inline double
DistanceFromInNauticalMiles(const FsLatLonPoint &Point) const;
inline double DistanceFromInMetres(const FsLatLonPoint &Point) const;
inline double BearingTo(const FsLatLonPoint &Point) const;
inline double BearingFrom(const FsLatLonPoint &Point) const;
inline FsLatLonPoint OffsetByFeet(double Bearing,
double Distance) const;
inline FsLatLonPoint OffsetByMetres(double Bearing,
double Distance) const;
inline FsLatLonPoint OffsetByNauticalMiles(double Bearing,
double Distance) const;
inline const std::string to_string(bool HemisphereAsText,
char DetailLevel) const;
inline const std::string to_string() const;
};
} // namespace FSUIPC
} // namespace file
} // namespace germanairlinesva
#endif
+145
View File
@@ -0,0 +1,145 @@
#ifndef GERMANAIRLINESVA_FILE_FSUIPC_FSLATLONPOINTIMPL_H
#define GERMANAIRLINESVA_FILE_FSUIPC_FSLATLONPOINTIMPL_H
#include "FsLatLonPoint.h"
namespace germanairlinesva
{
namespace file
{
namespace FSUIPC
{
inline FsLatLonPoint::FsLatLonPoint() = default;
inline FsLatLonPoint::FsLatLonPoint(FsLatitude Latitude,
FsLongitude Longitude)
{
this->lon = Longitude;
this->lat = Latitude;
}
inline const FsLongitude FsLatLonPoint::Longitude() const
{
return this->lon;
}
inline const FsLatitude FsLatLonPoint::Latitude() const
{
return this->lat;
}
inline double
FsLatLonPoint::DistanceFromInFeet(const FsLatLonPoint &Point) const
{
FsLongitudeSpan fsLongitudeSpan =
FsLongitudeSpan::BetweenTwoLongitudes(Point.Longitude(), this->lon);
double num = (fsLongitudeSpan.ToFeet(this->lat) +
fsLongitudeSpan.ToFeet(Point.lat)) /
2.0;
double feet = FsLatitudeSpan(Point.Latitude().DecimalDegrees() -
this->lat.DecimalDegrees())
.ToFeet();
return sqrt(num * num + feet * feet);
}
inline double FsLatLonPoint::DistanceFromInNauticalMiles(
const FsLatLonPoint &Point) const
{
return this->DistanceFromInFeet(Point) / 6076.1155;
}
inline double
FsLatLonPoint::DistanceFromInMetres(const FsLatLonPoint &Point) const
{
return this->DistanceFromInFeet(Point) / 3.2808;
}
inline double FsLatLonPoint::BearingTo(const FsLatLonPoint &Point) const
{
double num1 = 0.0;
double num2 = abs(FsLatitudeSpan(this->lat.DecimalDegrees() -
Point.Latitude().DecimalDegrees())
.ToFeet());
double num3 = abs((FsLongitudeSpan(Point.Longitude().DecimalDegrees() -
this->lon.DecimalDegrees())
.ToFeet(this->lat) +
FsLongitudeSpan(Point.Longitude().DecimalDegrees() -
this->lon.DecimalDegrees())
.ToFeet(Point.lat)) /
2.0);
if (num2 == 0.0)
num1 = this->lon.DecimalDegrees() > Point.Longitude().DecimalDegrees()
? 270.0
: 90.0;
else if (this->lat.DecimalDegrees() < Point.Latitude().DecimalDegrees() &&
this->lon.DecimalDegrees() < Point.Longitude().DecimalDegrees())
num1 = atan(num3 / num2) * 180.0 / M_PI;
else if (this->lat.DecimalDegrees() > Point.Latitude().DecimalDegrees() &&
this->lon.DecimalDegrees() < Point.Longitude().DecimalDegrees())
num1 = atan(num2 / num3) * 180.0 / M_PI + 90.0;
else if (this->lat.DecimalDegrees() > Point.Latitude().DecimalDegrees() &&
this->lon.DecimalDegrees() > Point.Longitude().DecimalDegrees())
num1 = atan(num3 / num2) * 180.0 / M_PI + 180.0;
else if (this->lat.DecimalDegrees() < Point.Latitude().DecimalDegrees() &&
this->lon.DecimalDegrees() > Point.Longitude().DecimalDegrees())
num1 = atan(num2 / num3) * 180.0 / M_PI + 270.0;
return num1;
}
inline double FsLatLonPoint::BearingFrom(const FsLatLonPoint &Point) const
{
double num = 180.0 + this->BearingTo(Point);
if (num >= 360.0)
num -= 360.0;
if (num < 0.0)
num += 360.0;
return num;
}
inline FsLatLonPoint FsLatLonPoint::OffsetByFeet(double Bearing,
double Distance) const
{
double Feet1 = sin(M_PI * Bearing / 180.0) * Distance;
double Feet2 = cos(M_PI * Bearing / 180.0) * Distance;
FsLatLonPoint fsLatLonPoint = FsLatLonPoint();
fsLatLonPoint.lat = this->lat.Add(FsLatitudeSpan::FromFeet(Feet2));
fsLatLonPoint.lon =
this->lon.Add(FsLongitudeSpan::FromFeet(Feet1, fsLatLonPoint.lat));
return fsLatLonPoint;
}
inline FsLatLonPoint FsLatLonPoint::OffsetByMetres(double Bearing,
double Distance) const
{
double Metres1 = sin(M_PI * Bearing / 180.0) * Distance;
double Metres2 = cos(M_PI * Bearing / 180.0) * Distance;
FsLatLonPoint fsLatLonPoint = FsLatLonPoint();
fsLatLonPoint.lat = this->lat.Add(FsLatitudeSpan::FromMetres(Metres2));
fsLatLonPoint.lon = this->lon.Add(
FsLongitudeSpan::FromMetres(Metres1, fsLatLonPoint.lat));
return fsLatLonPoint;
}
inline FsLatLonPoint
FsLatLonPoint::OffsetByNauticalMiles(double Bearing,
double Distance) const
{
double NauticalMiles1 = sin(M_PI * Bearing / 180.0) * Distance;
double NauticalMiles2 = cos(M_PI * Bearing / 180.0) * Distance;
FsLatLonPoint fsLatLonPoint = FsLatLonPoint();
fsLatLonPoint.lat =
this->lat.Add(FsLatitudeSpan::FromNauticalMiles(NauticalMiles2));
fsLatLonPoint.lon =
this->lon.Add(FsLongitudeSpan::FromNauticalMiles(NauticalMiles1,
fsLatLonPoint.lat));
return fsLatLonPoint;
}
inline const std::string FsLatLonPoint::to_string(bool HemisphereAsText,
char DetailLevel) const
{
return this->lat.to_string(HemisphereAsText, DetailLevel) + ", " +
this->lon.to_string(HemisphereAsText, DetailLevel);
}
inline const std::string FsLatLonPoint::to_string() const
{
return this->to_string(true, 'm');
}
} // namespace FSUIPC
} // namespace file
} // namespace germanairlinesva
#endif
@@ -0,0 +1,57 @@
#ifndef GERMANAIRLINESVA_FILE_FSUIPC_FSLATLONQUADRILATERAL_H
#define GERMANAIRLINESVA_FILE_FSUIPC_FSLATLONQUADRILATERAL_H
#define _USE_MATH_DEFINES
#include <cmath>
#include <string>
#include <vector>
namespace germanairlinesva
{
namespace file
{
namespace FSUIPC
{
class FsLatitude;
class FsLatitudeSpan;
class FsLongitude;
class FsLongitudeSpan;
class FsLatLonPoint;
class FsLatLonQuadrilateral
{
private:
FsLatLonPoint ne;
FsLatLonPoint se;
FsLatLonPoint sw;
FsLatLonPoint nw;
public:
inline FsLatLonQuadrilateral();
inline FsLatLonQuadrilateral(FsLatLonPoint P0,
FsLatLonPoint P1,
FsLatLonPoint P2,
FsLatLonPoint P3);
inline FsLatLonPoint NE() const;
inline FsLatLonPoint SE() const;
inline FsLatLonPoint SW() const;
inline FsLatLonPoint NW() const;
inline bool ContainsPoint(FsLatLonPoint point) const;
inline const std::string to_string(bool HemisphereAsText,
char DetailLevel) const;
inline const std::string to_string() const;
inline static FsLatLonQuadrilateral
ForRunway(FsLatLonPoint &ThresholdCentre,
double HeadingTrue,
double WidthInFeet,
double LengthInFeet);
};
} // namespace FSUIPC
} // namespace file
} // namespace germanairlinesva
#endif
@@ -0,0 +1,166 @@
#ifndef GERMANAIRLINESVA_FILE_FSUIPC_FSLATLONQUADRILATERALIMPL_H
#define GERMANAIRLINESVA_FILE_FSUIPC_FSLATLONQUADRILATERALIMPL_H
#include "FsLatLonQuadrilateral.h"
namespace germanairlinesva
{
namespace file
{
namespace FSUIPC
{
inline FsLatLonQuadrilateral::FsLatLonQuadrilateral() = default;
inline FsLatLonQuadrilateral::FsLatLonQuadrilateral(FsLatLonPoint P0,
FsLatLonPoint P1,
FsLatLonPoint P2,
FsLatLonPoint P3)
{
std::vector<FsLatLonPoint> fsLatLonPointList1;
std::vector<FsLatLonPoint> fsLatLonPointList2;
fsLatLonPointList1.push_back(P0);
fsLatLonPointList1.push_back(P1);
fsLatLonPointList1.push_back(P2);
fsLatLonPointList1.push_back(P3);
for (int index1 = 0; index1 < 3; ++index1) {
double num = 0.0;
int index2 = 0;
for (size_t index3 = 0; index3 < fsLatLonPointList1.size(); ++index3) {
if (fsLatLonPointList1[index3].Latitude().UDegrees() > num) {
num = fsLatLonPointList1[index3].Latitude().UDegrees();
index2 = index3;
}
}
fsLatLonPointList2.push_back(fsLatLonPointList1[index2]);
fsLatLonPointList1.erase(fsLatLonPointList1.begin() + index2);
}
fsLatLonPointList2.push_back(fsLatLonPointList1[0]);
if (fsLatLonPointList2[1].Longitude().UDegrees() >
fsLatLonPointList2[0].Longitude().UDegrees()) {
this->ne = fsLatLonPointList2[1];
this->nw = fsLatLonPointList2[0];
} else {
this->ne = fsLatLonPointList2[0];
this->nw = fsLatLonPointList2[1];
}
if (fsLatLonPointList2[3].Longitude().UDegrees() >
fsLatLonPointList2[2].Longitude().UDegrees()) {
this->se = fsLatLonPointList2[3];
this->sw = fsLatLonPointList2[2];
} else {
this->se = fsLatLonPointList2[2];
this->sw = fsLatLonPointList2[3];
}
}
inline FsLatLonPoint FsLatLonQuadrilateral::NE() const { return this->ne; }
inline FsLatLonPoint FsLatLonQuadrilateral::SE() const { return this->se; }
inline FsLatLonPoint FsLatLonQuadrilateral::SW() const { return this->sw; }
inline FsLatLonPoint FsLatLonQuadrilateral::NW() const { return this->nw; }
inline bool FsLatLonQuadrilateral::ContainsPoint(FsLatLonPoint point) const
{
bool flag = false;
double udegrees1 = this->nw.Latitude().UDegrees();
double udegrees2 = this->sw.Latitude().UDegrees();
double udegrees3 = this->se.Latitude().UDegrees();
double udegrees4 = this->ne.Latitude().UDegrees();
double udegrees5 = this->nw.Longitude().UDegrees();
double udegrees6 = this->sw.Longitude().UDegrees();
double udegrees7 = this->se.Longitude().UDegrees();
double udegrees8 = this->ne.Longitude().UDegrees();
double udegrees9 = point.Longitude().UDegrees();
double udegrees10 = point.Latitude().UDegrees();
if (udegrees9 > udegrees5 + (udegrees6 - udegrees5) /
(udegrees1 - udegrees2) *
(udegrees1 - udegrees10) &&
udegrees9 < udegrees8 + (udegrees7 - udegrees8) /
(udegrees4 - udegrees3) *
(udegrees4 - udegrees10) &&
udegrees10 > udegrees2 + (udegrees3 - udegrees2) /
(udegrees7 - udegrees6) *
(udegrees9 - udegrees6))
flag = udegrees10 < udegrees1 + (udegrees4 - udegrees1) /
(udegrees8 - udegrees5) *
(udegrees9 - udegrees5);
return flag;
}
inline const std::string
FsLatLonQuadrilateral::to_string(bool HemisphereAsText,
char DetailLevel) const
{
return this->ne.to_string(HemisphereAsText, DetailLevel) + ", " +
this->nw.to_string(HemisphereAsText, DetailLevel) + ", " +
this->sw.to_string(HemisphereAsText, DetailLevel) + ", " +
this->se.to_string(HemisphereAsText, DetailLevel);
}
inline const std::string FsLatLonQuadrilateral::to_string() const
{
return this->to_string(true, 'm');
}
inline FsLatLonQuadrilateral
FsLatLonQuadrilateral::ForRunway(FsLatLonPoint &ThresholdCentre,
double HeadingTrue,
double WidthInFeet,
double LengthInFeet)
{
double num = M_PI * HeadingTrue / 180.0;
double Feet = cos(num) * WidthInFeet / 2.0;
double decimalDegrees1 =
FsLatitudeSpan::FromFeet(sin(num) * WidthInFeet / 2.0)
.DecimalDegrees();
FsLatitude fsLatitude1 = FsLatitude(
ThresholdCentre.Latitude().DecimalDegrees() - decimalDegrees1);
double decimalDegrees2 =
FsLongitudeSpan::FromFeet(Feet, fsLatitude1).DecimalDegrees();
FsLongitude Longitude1 = FsLongitude(
ThresholdCentre.Longitude().DecimalDegrees() + decimalDegrees2);
FsLatLonPoint P1 = FsLatLonPoint(fsLatitude1, Longitude1);
fsLatitude1 = FsLatitude(ThresholdCentre.Latitude().DecimalDegrees() +
decimalDegrees1);
double decimalDegrees3 =
FsLongitudeSpan::FromFeet(Feet, fsLatitude1).DecimalDegrees();
Longitude1 = FsLongitude(ThresholdCentre.Longitude().DecimalDegrees() -
decimalDegrees3);
FsLatLonPoint P0 = FsLatLonPoint(fsLatitude1, Longitude1);
double decimalDegrees4 =
FsLatitudeSpan::FromFeet(cos(num) * LengthInFeet).DecimalDegrees();
FsLatitude fsLatitude2 = FsLatitude(
ThresholdCentre.Latitude().DecimalDegrees() + decimalDegrees4);
double decimalDegrees5 =
FsLongitudeSpan ::FromFeet(sin(num) * LengthInFeet, fsLatitude2)
.DecimalDegrees();
FsLongitude Longitude2 = FsLongitude(
ThresholdCentre.Longitude().DecimalDegrees() + decimalDegrees5);
FsLatLonPoint fsLatLonPoint = FsLatLonPoint(fsLatitude2, Longitude2);
fsLatitude1 = FsLatitude(fsLatLonPoint.Latitude().DecimalDegrees() -
decimalDegrees1);
double decimalDegrees6 =
FsLongitudeSpan::FromFeet(Feet, fsLatitude1).DecimalDegrees();
Longitude1 = FsLongitude(fsLatLonPoint.Longitude().DecimalDegrees() +
decimalDegrees6);
FsLatLonPoint P3 = FsLatLonPoint(fsLatitude1, Longitude1);
fsLatitude1 = FsLatitude(fsLatLonPoint.Latitude().DecimalDegrees() +
decimalDegrees1);
double decimalDegrees7 =
FsLongitudeSpan::FromFeet(Feet, fsLatitude1).DecimalDegrees();
Longitude1 = FsLongitude(fsLatLonPoint.Longitude().DecimalDegrees() -
decimalDegrees7);
FsLatLonPoint P2 = FsLatLonPoint(fsLatitude1, Longitude1);
return FsLatLonQuadrilateral(P0, P1, P2, P3);
}
} // namespace FSUIPC
} // namespace file
} // namespace germanairlinesva
#endif
+60
View File
@@ -0,0 +1,60 @@
#ifndef GERMANAIRLINESVA_FILE_FSUIPC_FSLATITUDE_H
#define GERMANAIRLINESVA_FILE_FSUIPC_FSLATITUDE_H
#include <cmath>
#include <cstdint>
#include <sstream>
#include <string>
namespace germanairlinesva
{
namespace file
{
namespace FSUIPC
{
class FsLatitudeSpan;
class FsLatitude
{
private:
double pos;
public:
inline FsLatitude();
inline FsLatitude(double DecimalDegrees);
inline FsLatitude(std::int64_t FSUnits);
inline FsLatitude(std::int32_t FSUnits);
inline FsLatitude(std::int32_t Degrees, double DecimalMinutes);
inline FsLatitude(std::int32_t Degrees,
std::int32_t Minutes,
double DecimalSeconds);
inline std::int64_t ToFSUnits8() const;
inline std::int32_t ToFSUnits4() const;
inline double DecimalDegrees() const;
inline double DecimalMinutes() const;
inline double DecimalSeconds() const;
inline std::int32_t Degree() const;
inline std::int32_t Minute() const;
inline std::int32_t Second() const;
inline double UDegrees() const;
inline const std::string to_string(bool HemisphereAsText,
char DetailLevel) const;
inline const std::string to_string() const;
inline FsLatitude Add(const FsLatitudeSpan &Distance) const;
inline FsLatitude Subtract(const FsLatitudeSpan &Distance) const;
inline FsLatitude AddDegrees(double Degrees) const;
inline FsLatitude AddMinutes(double Minutes) const;
inline FsLatitude AddSeconds(double Seconds) const;
};
} // namespace FSUIPC
} // namespace file
} // namespace germanairlinesva
#endif
+129
View File
@@ -0,0 +1,129 @@
#ifndef GERMANAIRLINESVA_FILE_FSUIPC_FSLATITUDEIMPL_H
#define GERMANAIRLINESVA_FILE_FSUIPC_FSLATITUDEIMPL_H
#include "FsLatitude.h"
namespace germanairlinesva
{
namespace file
{
namespace FSUIPC
{
inline FsLatitude::FsLatitude() = default;
inline FsLatitude::FsLatitude(double DecimalDegrees)
{
this->pos = DecimalDegrees;
while (this->pos > 90.0 || this->pos < -90.0) {
if (this->pos > 90.0)
this->pos = 180.0 - this->pos;
if (this->pos < -90.0)
this->pos = -180.0 - this->pos;
}
}
inline FsLatitude::FsLatitude(std::int64_t FSUnits)
: FsLatitude(FSUnits * 90.0 / 4.2957189152768E+16)
{
}
inline FsLatitude::FsLatitude(std::int32_t FSUnits)
: FsLatitude(FSUnits * 90.0 / 10001750.0)
{
}
inline FsLatitude::FsLatitude(std::int32_t Degrees, double DecimalMinutes)
: FsLatitude(Degrees + DecimalMinutes / 60.0)
{
}
inline FsLatitude::FsLatitude(std::int32_t Degrees,
std::int32_t Minutes,
double DecimalSeconds)
: FsLatitude(Degrees + Minutes / 60.0 + DecimalSeconds / 3600.0)
{
}
inline std::int64_t FsLatitude::ToFSUnits8() const
{
return this->pos * 4.2957189152768E+16 / 90.0;
}
inline std::int32_t FsLatitude::ToFSUnits4() const
{
return this->pos * 10001750.0 / 90.0;
}
inline double FsLatitude::DecimalDegrees() const { return this->pos; }
inline double FsLatitude::DecimalMinutes() const
{
return (this->pos - trunc(this->pos)) * 60.0;
}
inline double FsLatitude::DecimalSeconds() const
{
double decimalMinutes = this->DecimalMinutes();
return (decimalMinutes - trunc(decimalMinutes)) * 60.0;
}
inline std::int32_t FsLatitude::Degree() const { return trunc(this->pos); }
inline std::int32_t FsLatitude::Minute() const
{
return trunc(this->DecimalMinutes());
}
inline std::int32_t FsLatitude::Second() const
{
return trunc(this->DecimalSeconds());
}
inline double FsLatitude::UDegrees() const { return this->pos + 90.0; }
inline const std::string FsLatitude::to_string(bool HemisphereAsText,
char DetailLevel) const
{
std::ostringstream str;
if (!HemisphereAsText) {
str << (this->pos < 0.0 ? "-" : "");
} else {
str << (this->pos < 0.0 ? "S" : "N");
}
switch (DetailLevel) {
case 'm':
str << this->Degree() << "° " << this->DecimalMinutes() << "'";
break;
case 's':
str << this->Degree() << "° " << this->Minute() << "' "
<< this->DecimalSeconds() << "\"";
break;
default:
str << this->pos << "*";
break;
}
return str.str();
}
inline const std::string FsLatitude::to_string() const
{
return this->to_string(true, 'm');
}
inline FsLatitude FsLatitude::Add(const FsLatitudeSpan &Distance) const
{
return FsLatitude(this->pos + Distance.DecimalDegrees());
}
inline FsLatitude FsLatitude::Subtract(const FsLatitudeSpan &Distance) const
{
return FsLatitude(this->pos - Distance.DecimalDegrees());
}
inline FsLatitude FsLatitude::AddDegrees(double Degrees) const
{
return FsLatitude(this->pos + Degrees);
}
inline FsLatitude FsLatitude::AddMinutes(double Minutes) const
{
return FsLatitude(this->pos + Minutes / 60.0);
}
inline FsLatitude FsLatitude::AddSeconds(double Seconds) const
{
return FsLatitude(this->pos + Seconds / 3600.0);
}
} // namespace FSUIPC
} // namespace file
} // namespace germanairlinesva
#endif
+58
View File
@@ -0,0 +1,58 @@
#ifndef GERMANAIRLINESVA_FILE_FSUIPC_FSLATITUDESPAN_H
#define GERMANAIRLINESVA_FILE_FSUIPC_FSLATITUDESPAN_H
#include <cmath>
#include <cstdint>
#include <sstream>
#include <string>
namespace germanairlinesva
{
namespace file
{
namespace FSUIPC
{
class FsLatitude;
class FsLatitudeSpan
{
private:
double span;
public:
inline FsLatitudeSpan();
inline FsLatitudeSpan(double DecimalDegrees);
inline FsLatitudeSpan(std::int32_t Degrees, double DecimalMinutes);
inline FsLatitudeSpan(std::int32_t Degrees,
std::int32_t Minutes,
double DecimalSeconds);
inline static FsLatitudeSpan FromFeet(double Feet);
inline static FsLatitudeSpan FromNauticalMiles(double NauticalMiles);
inline static FsLatitudeSpan FromMetres(double Metres);
inline static FsLatitudeSpan
BetweenTwoLatitides(const FsLatitude &Lat1, const FsLatitude &Lat2);
inline double DecimalDegrees() const;
inline double DecimalMinutes() const;
inline double DecimalSeconds() const;
inline std::int32_t Degrees() const;
inline std::int32_t Minutes() const;
inline std::int32_t Seconds() const;
inline double TotalMinutes() const;
inline double TotalSeconds() const;
inline double ToFeet() const;
inline double ToNauticalMiles() const;
inline double ToMetres() const;
inline const std::string to_string(char DetailLevel) const;
inline const std::string to_string();
};
} // namespace FSUIPC
} // namespace file
} // namespace germanairlinesva
#endif
+121
View File
@@ -0,0 +1,121 @@
#ifndef GERMANAIRLINESVA_FILE_FSUIPC_FSLATITUDESPANIMPL_H
#define GERMANAIRLINESVA_FILE_FSUIPC_FSLATITUDESPANIMPL_H
#include "FsLatitudeSpan.h"
namespace germanairlinesva
{
namespace file
{
namespace FSUIPC
{
inline FsLatitudeSpan::FsLatitudeSpan() = default;
inline FsLatitudeSpan::FsLatitudeSpan(double DecimalDegrees)
{
this->span = DecimalDegrees;
}
inline FsLatitudeSpan::FsLatitudeSpan(std::int32_t Degrees,
double DecimalMinutes)
: FsLatitudeSpan(Degrees + DecimalMinutes / 60.0)
{
}
inline FsLatitudeSpan::FsLatitudeSpan(std::int32_t Degrees,
std::int32_t Minutes,
double DecimalSeconds)
: FsLatitudeSpan(Degrees + Minutes / 60.0 + DecimalSeconds / 3600.0)
{
}
inline FsLatitudeSpan FsLatitudeSpan::FromFeet(double Feet)
{
return FsLatitudeSpan(Feet / 364601.4567);
}
inline FsLatitudeSpan
FsLatitudeSpan::FromNauticalMiles(double NauticalMiles)
{
return FsLatitudeSpan::FromFeet(NauticalMiles * 6076.1155);
}
inline FsLatitudeSpan FsLatitudeSpan::FromMetres(double Metres)
{
return FsLatitudeSpan::FromFeet(Metres * 3.2808);
}
inline FsLatitudeSpan
FsLatitudeSpan::BetweenTwoLatitides(const FsLatitude &Lat1,
const FsLatitude &Lat2)
{
return FsLatitudeSpan(abs(Lat2.UDegrees() - Lat1.UDegrees()));
}
inline double FsLatitudeSpan::DecimalDegrees() const { return this->span; }
inline double FsLatitudeSpan::DecimalMinutes() const
{
return (this->span - trunc(this->span)) * 60.0;
}
inline double FsLatitudeSpan::DecimalSeconds() const
{
double decimalMinutes = this->DecimalMinutes();
return (decimalMinutes - trunc(decimalMinutes)) * 60.0;
}
inline std::int32_t FsLatitudeSpan::Degrees() const
{
return trunc(this->span);
}
inline std::int32_t FsLatitudeSpan::Minutes() const
{
return trunc(this->DecimalMinutes());
}
inline std::int32_t FsLatitudeSpan::Seconds() const
{
return trunc(this->DecimalSeconds());
}
inline double FsLatitudeSpan::TotalMinutes() const
{
return this->span * 60.0;
}
inline double FsLatitudeSpan::TotalSeconds() const
{
return this->span * 3600.0;
}
inline double FsLatitudeSpan::ToFeet() const
{
return 364601.4567 * this->span;
}
inline double FsLatitudeSpan::ToNauticalMiles() const
{
return this->ToFeet() / 6076.1155;
}
inline double FsLatitudeSpan::ToMetres() const
{
return this->ToFeet() / 3.2808;
}
inline const std::string FsLatitudeSpan::to_string(char DetailLevel) const
{
std::ostringstream str;
switch (DetailLevel) {
case 'm':
str << this->Degrees() << "* " << this->DecimalMinutes() << "'";
break;
case 's':
str << this->Degrees() << "* " << this->Minutes() << "' "
<< this->DecimalSeconds() << "\"";
break;
default:
str << this->span << "*";
break;
}
return str.str();
}
inline const std::string FsLatitudeSpan::to_string()
{
return this->to_string('m');
}
} // namespace FSUIPC
} // namespace file
} // namespace germanairlinesva
#endif
+60
View File
@@ -0,0 +1,60 @@
#ifndef GERMANAIRLINESVA_FILE_FSUIPC_FSLONGITUDE_H
#define GERMANAIRLINESVA_FILE_FSUIPC_FSLONGITUDE_H
#include <cmath>
#include <cstdint>
#include <sstream>
#include <string>
namespace germanairlinesva
{
namespace file
{
namespace FSUIPC
{
class FsLongitudeSpan;
class FsLongitude
{
private:
double pos;
public:
inline FsLongitude();
inline FsLongitude(double DecimalDegrees);
inline FsLongitude(std::int64_t FSUnits);
inline FsLongitude(std::int32_t FSUnits);
inline FsLongitude(std::int32_t Degrees, double DecimalMinutes);
inline FsLongitude(std::int32_t Degrees,
std::int32_t Minutes,
double DecimalSeconds);
inline long ToFSUnits8() const;
inline std::int32_t ToFSUnits4() const;
inline double DecimalDegrees() const;
inline double DecimalMinutes() const;
inline double DecimalSeconds() const;
inline std::int32_t Degree() const;
inline std::int32_t Minute() const;
inline std::int32_t Second() const;
inline double UDegrees() const;
inline const std::string to_string(bool HemisphereAsText,
char DetailLevel) const;
inline const std::string to_string() const;
inline FsLongitude Add(const FsLongitudeSpan &Distance) const;
inline FsLongitude Subtract(const FsLongitudeSpan &Distance) const;
inline FsLongitude AddDegrees(double Degrees) const;
inline FsLongitude AddMinutes(double Minutes) const;
inline FsLongitude AddSeconds(double Seconds) const;
};
} // namespace FSUIPC
} // namespace file
} // namespace germanairlinesva
#endif
+133
View File
@@ -0,0 +1,133 @@
#ifndef GERMANAIRLINESVA_FILE_FSUIPC_FSLONGITUDEIMPL_H
#define GERMANAIRLINESVA_FILE_FSUIPC_FSLONGITUDEIMPL_H
#include "FsLongitude.h"
namespace germanairlinesva
{
namespace file
{
namespace FSUIPC
{
inline FsLongitude::FsLongitude() = default;
inline FsLongitude::FsLongitude(double DecimalDegrees)
{
this->pos = DecimalDegrees;
while (this->pos < -180.0 || this->pos > 180.0) {
if (this->pos > 180.0)
this->pos -= 360.0;
if (this->pos < -180.0)
this->pos += 360.0;
}
}
inline FsLongitude::FsLongitude(std::int64_t FSUnits)
: FsLongitude(FSUnits * 360.0 / 1.8446744073709552E+19)
{
}
inline FsLongitude::FsLongitude(std::int32_t FSUnits)
: FsLongitude(FSUnits * 360.0 / 4294967296.0)
{
}
inline FsLongitude::FsLongitude(std::int32_t Degrees, double DecimalMinutes)
: FsLongitude(Degrees + DecimalMinutes / 60.0)
{
}
inline FsLongitude::FsLongitude(std::int32_t Degrees,
std::int32_t Minutes,
double DecimalSeconds)
: FsLongitude(Degrees + Minutes / 60.0 + DecimalSeconds / 3600.0)
{
}
inline long FsLongitude::ToFSUnits8() const
{
return this->pos * 1.8446744073709552E+19 / 360.0;
}
inline std::int32_t FsLongitude::ToFSUnits4() const
{
return this->pos * 4294967296.0 / 360.0;
}
inline double FsLongitude::DecimalDegrees() const { return this->pos; }
inline double FsLongitude::DecimalMinutes() const
{
return (this->pos - trunc(this->pos)) * 60.0;
}
inline double FsLongitude::DecimalSeconds() const
{
double decimalMinutes = this->DecimalMinutes();
return (decimalMinutes - trunc(decimalMinutes)) * 60.0;
}
inline std::int32_t FsLongitude::Degree() const
{
return trunc(this->DecimalDegrees());
}
inline std::int32_t FsLongitude::Minute() const
{
return trunc(this->DecimalMinutes());
}
inline std::int32_t FsLongitude::Second() const
{
return trunc(this->DecimalSeconds());
}
inline double FsLongitude::UDegrees() const { return this->pos + 180.0; }
inline const std::string FsLongitude::to_string(bool HemisphereAsText,
char DetailLevel) const
{
std::ostringstream str;
if (!HemisphereAsText) {
str << (this->pos < 0.0 ? "-" : "");
} else {
str << (this->pos < 0.0 ? "W" : "E");
}
switch (DetailLevel) {
case 'm':
str << this->Degree() << "° " << this->DecimalMinutes() << "'";
break;
case 's':
str << this->Degree() << "° " << this->Minute() << "' "
<< this->DecimalSeconds() << "\"";
break;
default:
str << this->pos << "*";
break;
}
return str.str();
}
inline const std::string FsLongitude::to_string() const
{
return this->to_string(true, 'm');
}
inline FsLongitude FsLongitude::Add(const FsLongitudeSpan &Distance) const
{
return FsLongitude(this->pos + Distance.DecimalDegrees());
}
inline FsLongitude
FsLongitude::Subtract(const FsLongitudeSpan &Distance) const
{
return FsLongitude(this->pos - Distance.DecimalDegrees());
}
inline FsLongitude FsLongitude::AddDegrees(double Degrees) const
{
return FsLongitude(this->pos + Degrees);
}
inline FsLongitude FsLongitude::AddMinutes(double Minutes) const
{
return FsLongitude(this->pos + Minutes / 60.0);
}
inline FsLongitude FsLongitude::AddSeconds(double Seconds) const
{
return FsLongitude(this->pos + Seconds / 3600.0);
}
} // namespace FSUIPC
} // namespace file
} // namespace germanairlinesva
#endif
+65
View File
@@ -0,0 +1,65 @@
#ifndef GERMANAIRLINESVA_FILE_FSUIPC_FSLONGITUDESPAN_H
#define GERMANAIRLINESVA_FILE_FSUIPC_FSLONGITUDESPAN_H
#define _USE_MATH_DEFINES
#include <cmath>
#include <cstdint>
#include <sstream>
#include <string>
namespace germanairlinesva
{
namespace file
{
namespace FSUIPC
{
class FsLongitude;
class FsLatitude;
class FsLongitudeSpan
{
private:
double span;
public:
inline FsLongitudeSpan();
inline FsLongitudeSpan(double DecimalDegrees);
inline FsLongitudeSpan(std::int32_t Degrees, double DecimalMinutes);
inline FsLongitudeSpan(std::int32_t Degrees,
std::int32_t Minutes,
double DecimalSeconds);
inline static FsLongitudeSpan FromFeet(double Feet,
const FsLatitude &AtLatitude);
inline static FsLongitudeSpan
FromNauticalMiles(double NauticalMiles,
const FsLatitude &AtLatitude);
inline static FsLongitudeSpan FromMetres(double Metres,
const FsLatitude &AtLatitude);
inline static FsLongitudeSpan
BetweenTwoLongitudes(const FsLongitude &Lon1,
const FsLongitude &Lon2);
inline double DecimalDegrees() const;
inline double DecimalMinutes() const;
inline double DecimalSeconds() const;
inline std::int32_t Degrees() const;
inline std::int32_t Minutes() const;
inline std::int32_t Seconds() const;
inline double TotalMinutes() const;
inline double TotalSeconds() const;
inline double ToFeet(const FsLatitude &AtLatitude) const;
inline double ToNauticalMiles(const FsLatitude &AtLatitude) const;
inline double ToMetres(const FsLatitude &AtLatitude) const;
inline const std::string to_string(char DetailLevel) const;
inline const std::string to_string();
};
} // namespace FSUIPC
} // namespace file
} // namespace germanairlinesva
#endif
+133
View File
@@ -0,0 +1,133 @@
#ifndef GERMANAIRLINESVA_FILE_FSUIPC_FSLONGITUDESPANIMPL_H
#define GERMANAIRLINESVA_FILE_FSUIPC_FSLONGITUDESPANIMPL_H
#include "FsLongitudeSpan.h"
namespace germanairlinesva
{
namespace file
{
namespace FSUIPC
{
inline FsLongitudeSpan::FsLongitudeSpan() = default;
inline FsLongitudeSpan::FsLongitudeSpan(double DecimalDegrees)
{
this->span = DecimalDegrees;
}
inline FsLongitudeSpan::FsLongitudeSpan(std::int32_t Degrees,
double DecimalMinutes)
: FsLongitudeSpan(Degrees + DecimalMinutes / 60.0)
{
}
inline FsLongitudeSpan::FsLongitudeSpan(std::int32_t Degrees,
std::int32_t Minutes,
double DecimalSeconds)
: FsLongitudeSpan(Degrees + Minutes / 60.0 + DecimalSeconds / 3600.0)
{
}
inline FsLongitudeSpan
FsLongitudeSpan::FromFeet(double Feet, const FsLatitude &AtLatitude)
{
double num =
cos(M_PI * AtLatitude.DecimalDegrees() / 180.0) * 131479672.3 / 360.0;
return FsLongitudeSpan(Feet / num);
}
inline FsLongitudeSpan
FsLongitudeSpan::FromNauticalMiles(double NauticalMiles,
const FsLatitude &AtLatitude)
{
return FsLongitudeSpan::FromFeet(NauticalMiles * 6076.1155, AtLatitude);
}
inline FsLongitudeSpan
FsLongitudeSpan::FromMetres(double Metres, const FsLatitude &AtLatitude)
{
return FsLongitudeSpan::FromFeet(Metres * 3.2808, AtLatitude);
}
inline FsLongitudeSpan
FsLongitudeSpan::BetweenTwoLongitudes(const FsLongitude &Lon1,
const FsLongitude &Lon2)
{
return fmod(Lon2.UDegrees() - Lon1.UDegrees(), 360.0) <
fmod(Lon1.UDegrees() - Lon2.UDegrees(), 360.0)
? FsLongitudeSpan(
fmod(Lon2.UDegrees() - Lon1.UDegrees(), 360.0))
: FsLongitudeSpan(
fmod(Lon1.UDegrees() - Lon2.UDegrees(), 360.0));
}
inline double FsLongitudeSpan::DecimalDegrees() const { return this->span; }
inline double FsLongitudeSpan::DecimalMinutes() const
{
return (this->span - trunc(this->span)) * 60.0;
}
inline double FsLongitudeSpan::DecimalSeconds() const
{
double decimalMinutes = this->DecimalMinutes();
return (decimalMinutes - trunc(decimalMinutes)) * 60.0;
}
inline std::int32_t FsLongitudeSpan::Degrees() const
{
return trunc(this->span);
}
inline std::int32_t FsLongitudeSpan::Minutes() const
{
return trunc(this->DecimalMinutes());
}
inline std::int32_t FsLongitudeSpan::Seconds() const
{
return trunc(this->DecimalSeconds());
}
inline double FsLongitudeSpan::TotalMinutes() const
{
return this->span * 60.0;
}
inline double FsLongitudeSpan::TotalSeconds() const
{
return this->span * 3600.0;
}
inline double FsLongitudeSpan::ToFeet(const FsLatitude &AtLatitude) const
{
return cos(M_PI * AtLatitude.DecimalDegrees() / 180.0) * 131479672.3 /
360.0 * this->span;
}
inline double
FsLongitudeSpan::ToNauticalMiles(const FsLatitude &AtLatitude) const
{
return this->ToFeet(AtLatitude) / 6076.1155;
}
inline double FsLongitudeSpan::ToMetres(const FsLatitude &AtLatitude) const
{
return this->ToFeet(AtLatitude) / 3.2808;
}
inline const std::string FsLongitudeSpan::to_string(char DetailLevel) const
{
std::ostringstream str;
switch (DetailLevel) {
case 'm':
str << this->Degrees() << "* " << this->DecimalMinutes() << "'";
break;
case 's':
str << this->Degrees() << "* " << this->Minutes() << "' "
<< this->DecimalSeconds() << "\"";
break;
default:
str << this->span << "*";
break;
}
return str.str();
}
inline const std::string FsLongitudeSpan::to_string()
{
return this->to_string('m');
}
} // namespace FSUIPC
} // namespace file
} // namespace germanairlinesva
#endif
+4 -2
View File
@@ -26,14 +26,16 @@ namespace file
std::uint32_t time;
std::uint16_t altitude = 0;
std::uint16_t groundSpeed = 0;
struct germanairlinesva::geodata::point coordinates{NAN, NAN};
struct geodata::point coordinates {
NAN, NAN
};
public:
RecordingEntry() = default;
RecordingEntry(std::uint32_t time,
std::uint16_t altitude,
std::uint16_t groundSpeed,
struct germanairlinesva::geodata::point coordinates);
struct geodata::point coordinates);
void toFile(std::ofstream &out) const;
+13 -8
View File
@@ -21,11 +21,9 @@ namespace file
{
/*
* Representation of gate
* Heading in degrees (0...360)
* Center in lat/lon radians
* Radius in metres
*
* Designator must be null terminated
*
* UINT8 | CHAR[] | POINT | UINT8
* -------+------------+--------+-------
* STRLEN | DESIGNATOR | CENTER | RADIUS
@@ -34,22 +32,29 @@ namespace file
{
private:
std::string designator;
struct germanairlinesva::geodata::point center;
struct geodata::point center;
std::uint8_t radius;
public:
// From X-Plane or MakeRwys
Gate(std::string designator,
struct germanairlinesva::geodata::point center,
double latitude,
double longitude,
std::uint8_t radius);
// From Database
Gate(std::string designator,
struct geodata::point center,
std::uint8_t radius);
void toFile(std::ofstream &out) const;
bool contains(germanairlinesva::geodata::point coordinates) const;
bool contains(geodata::point coordinates) const;
inline const std::string to_string() const
{
std::ostringstream str;
str << "Gate " << this->designator << " at " << this->center.latitude
<< "N " << this->center.longitude << "E, Radius "
str << "Gate " << this->designator << " at "
<< geodata::toDegrees(this->center.latitude) << "N "
<< geodata::toDegrees(this->center.longitude) << "E, Radius "
<< (int)this->radius;
return str.str();
}
+66 -28
View File
@@ -1,5 +1,5 @@
#ifndef GERMANAIRLINESVA_FILE_RUNWAY_H
#define GERMANAIRLINESVA_FILE_RUNWAY_H
#ifndef GERMANAIRLINESVA_FILE_SIMDATA_RUNWAY_H
#define GERMANAIRLINESVA_FILE_SIMDATA_RUNWAY_H
#include <fstream>
#include <iomanip>
@@ -9,6 +9,7 @@
#include <string>
#include <utility>
#include "FSUIPC/FsGeoData.h"
#include "geodata.hpp"
#include "helpers.hpp"
#include "util.hpp"
@@ -21,56 +22,93 @@ namespace file
{
/*
* Representation of one runway with supplementary information
* Heading in degrees (0...360) true
* Width and length in meters
* Heading in degrees true
* Threshold center in lat/lon degrees
* Width and length in feet
*
* Designator must be null terminated
*
* UINT8 | CHAR[] | BOX | UINT8 | UINT16 | UINT16
* UINT8 | CHAR[] | POINT | UINT8 | UINT16 | DOUBLE
* -------+------------+--------+-------+--------+-------
* STRLEN | DESIGNATOR | BOUNDS | WIDTH | LENGTH | TRUHDG
* STRLEN | DESIGNATOR | CENTER | WIDTH | LENGTH | TRUHDG
*/
class Runway
{
private:
std::string designator;
struct germanairlinesva::geodata::box bounds;
struct geodata::point center;
std::uint8_t width;
std::uint16_t length;
std::uint16_t trueHeading;
std::vector<std::uint8_t> file;
double trueHeading;
// QUAD TEST
FSUIPC::FsLatLonQuadrilateral quad;
public:
// From X-Plane or MakeRwys
Runway(std::string designator,
inline Runway(std::string designator,
double latitudeStart,
double longitudeStart,
double latitudeEnd,
double longitudeEnd,
double width);
double width)
{
this->designator = designator;
this->width = width * 33.280839895;
this->length = geodata::distanceEarthD(latitudeStart,
longitudeStart,
latitudeEnd,
longitudeEnd) *
3.280839895;
this->trueHeading = geodata::bearingDD(latitudeStart,
longitudeStart,
latitudeEnd,
longitudeEnd);
this->center = {latitudeStart, longitudeStart};
FSUIPC::FsLatLonPoint threshold(latitudeStart, longitudeStart);
quad = FSUIPC::FsLatLonQuadrilateral::ForRunway(threshold,
this->trueHeading,
this->width,
this->length);
}
// From database
Runway(std::string designator,
struct germanairlinesva::geodata::box bounds,
inline Runway(std::string designator,
struct geodata::point center,
std::uint8_t width,
std::uint16_t length,
std::uint16_t trueHeading);
double trueHeading)
{
this->designator = designator;
this->center = center;
this->width = width;
this->length = length;
this->trueHeading = trueHeading;
void toFile(std::ofstream &out) const;
FSUIPC::FsLatLonPoint threshold(center.latitude, center.longitude);
quad = FSUIPC::FsLatLonQuadrilateral::ForRunway(threshold,
trueHeading,
width,
length);
}
inline void toFile(std::ofstream &out) const
{
writeString(out, this->designator);
write<decltype(this->center)>(out, this->center);
write<decltype(this->width)>(out, this->width);
write<decltype(this->length)>(out, this->length);
write<decltype(this->trueHeading)>(out, this->trueHeading);
}
inline const std::string to_string() const
{
std::ostringstream str;
str << "Runway " << this->designator << " with bounds "
<< this->bounds.topLeft.latitude << "N "
<< this->bounds.topLeft.longitude << "E, "
<< this->bounds.topRight.latitude << "N "
<< this->bounds.topRight.longitude << "E, "
<< this->bounds.bottomRight.latitude << "N "
<< this->bounds.bottomRight.longitude << "E, "
<< this->bounds.bottomLeft.latitude << "N "
<< this->bounds.bottomLeft.longitude << "E, "
<< "Width " << (int)this->width << "m, Length " << this->length
<< "m, True Heading " << this->trueHeading << "°";
str << "Runway " << this->designator << " with threshold center "
<< this->center.latitude << "N " << this->center.longitude
<< "E, Width " << (int)this->width << "ft, Length "
<< this->length << "ft, True Heading " << this->trueHeading
<< "°, Quad " << quad.to_string(true, ' ');
return str.str();
}
+8 -9
View File
@@ -42,10 +42,7 @@ namespace file
class SimDatabase
{
private:
std::map<
std::string,
std::pair<std::vector<const germanairlinesva::file::simdata::Gate>,
std::vector<const germanairlinesva::file::simdata::Runway>>>
std::map<std::string, std::pair<std::vector<Gate>, std::vector<Runway>>>
airports;
void fromFile();
@@ -60,13 +57,15 @@ namespace file
void toFile() const;
inline std::size_t getCount() const { return this->airports.size(); }
inline const std::pair<const std::vector<const Gate>, const std::vector<const Runway>>
inline const std::pair<const std::vector<Gate>,
const std::vector<Runway>>
operator[](std::string key)
{
try {
return this->airports.at(key);
} catch (std::out_of_range &ex) {
return std::pair<const std::vector<const Gate>, const std::vector<const Runway>>();
auto it = this->airports.find(key);
if (it != this->airports.end()) {
return this->airports[key];
} else {
return std::pair<std::vector<Gate>, std::vector<Runway>>();
}
}
};
+10 -6
View File
@@ -16,20 +16,24 @@ namespace file
{
namespace simdata
{
int scan(const std::string defaultFile,
int scan(
const std::string defaultFile,
const std::string sceneryPack,
const std::string logFile,
SimDatabase &airports);
std::map<std::string, std::pair<std::vector<Gate>, std::vector<Runway>>>
&airports);
void makeAirport(const std::string &kind,
void makeAirport(
const std::string &kind,
std::ifstream &infile,
SimDatabase &airports,
std::map<std::string, std::pair<std::vector<Gate>, std::vector<Runway>>>
&airports,
std::ofstream &logfile);
void makeGate15(std::vector<Gate> &gates,
const std::vector<std::string> &fields);
void makeRunway(std::vector<const Runway> &runways,
void makeRunway(std::vector<Runway> &runways,
const std::vector<std::string> &fields);
void makeGate1300(std::vector<const Gate> &gates,
void makeGate1300(std::vector<Gate> &gates,
const std::vector<std::string> &fields);
} // namespace simdata
} // namespace file
+1 -1
View File
@@ -8,7 +8,7 @@ namespace file
{
Logbook::Logbook()
{
if (germanairlinesva::util::fileExists(XPLANE_PLUGIN_DIRECTORY LOGBOOK)) {
if (util::fileExists(XPLANE_PLUGIN_DIRECTORY LOGBOOK)) {
this->fromFile();
}
}
+2 -3
View File
@@ -7,11 +7,10 @@ namespace file
{
namespace recording
{
RecordingEntry::RecordingEntry(
std::uint32_t time,
RecordingEntry::RecordingEntry(std::uint32_t time,
std::uint16_t altitude,
std::uint16_t groundSpeed,
struct germanairlinesva::geodata::point coordinates)
struct geodata::point coordinates)
{
this->time = time;
this->altitude = altitude;
-57
View File
@@ -1,57 +0,0 @@
#include "simdata/runway.h"
namespace germanairlinesva
{
namespace file
{
namespace simdata
{
Runway::Runway(std::string designator,
double latitudeStart,
double longitudeStart,
double latitudeEnd,
double longitudeEnd,
double width)
{
this->designator = designator;
this->width = width;
this->length = germanairlinesva::geodata::distanceEarthD(latitudeStart,
longitudeStart,
latitudeEnd,
longitudeEnd);
this->trueHeading = (std::uint16_t)std::round(
germanairlinesva::geodata::bearingDD(latitudeStart,
longitudeStart,
latitudeEnd,
longitudeEnd));
this->bounds = germanairlinesva::geodata::calculateBoxDD(
{latitudeStart, longitudeStart},
{latitudeEnd, longitudeEnd},
this->trueHeading,
this->width);
}
Runway::Runway(std::string designator,
germanairlinesva::geodata::box bounds,
std::uint8_t width,
std::uint16_t length,
std::uint16_t trueHeading)
{
this->designator = designator;
this->bounds = bounds;
this->width = width;
this->length = length;
this->trueHeading = trueHeading;
}
void Runway::toFile(std::ofstream &out) const
{
writeString(out, this->designator);
write<decltype(this->bounds)>(out, this->bounds);
write<decltype(this->width)>(out, this->width);
write<decltype(this->length)>(out, this->length);
write<decltype(this->trueHeading)>(out, this->trueHeading);
}
} // namespace simdata
} // namespace file
} // namespace germanairlinesva
+10 -10
View File
@@ -25,6 +25,8 @@ namespace file
toLog("Sim Database updated");
} else {
this->fromFile();
toLog("Sim Database loaded");
}
}
@@ -56,8 +58,7 @@ namespace file
std::uint16_t numGates = read<std::uint16_t>(in);
for (int j = 0; j < numGates; j++) {
std::string designator = readString(in);
struct germanairlinesva::geodata::point center =
read<struct germanairlinesva::geodata::point>(in);
struct geodata::point center = read<struct geodata::point>(in);
std::uint8_t radius = read<std::uint8_t>(in);
this->airports[icao].first.emplace_back(designator, center, radius);
@@ -66,15 +67,14 @@ namespace file
std::uint8_t numRunways = read<std::uint8_t>(in);
for (int j = 0; j < numRunways; j++) {
std::string designator = readString(in);
// Bounds
struct germanairlinesva::geodata::box bounds =
read<struct germanairlinesva::geodata::box>(in);
// Center
struct geodata::point center = read<struct geodata::point>(in);
std::uint8_t width = read<std::uint8_t>(in);
std::uint16_t length = read<std::uint16_t>(in);
std::uint16_t trueHeading = read<std::uint16_t>(in);
double trueHeading = read<double>(in);
this->airports[icao].second.emplace_back(designator,
bounds,
center,
width,
length,
trueHeading);
@@ -96,11 +96,11 @@ namespace file
write<std::uint16_t>(out, airports.size());
// Airport
for (const std::pair<const std::string,
std::pair<std::vector<const Gate>, std::vector<const Runway>>>
std::pair<std::vector<Gate>, std::vector<Runway>>>
&airport : airports) {
std::string icao = airport.first;
const std::vector<const Gate> gates = airport.second.first;
const std::vector<const Runway> runways = airport.second.second;
const std::vector<Gate> gates = airport.second.first;
const std::vector<Runway> runways = airport.second.second;
// ICAO
writeString(out, icao);
// Gates
+36 -35
View File
@@ -6,10 +6,12 @@ namespace file
{
namespace simdata
{
int scan(const std::string defaultFile,
int scan(
const std::string defaultFile,
const std::string sceneryPack,
const std::string logFile,
SimDatabase &database)
std::map<std::string, std::pair<std::vector<Gate>, std::vector<Runway>>>
&airports)
{
std::ifstream base(defaultFile);
if (!base.good()) {
@@ -29,7 +31,7 @@ namespace file
// Default
logfile << "<FILE> " << defaultFile << std::endl;
makeAirport("DEFAULT", base, database, logfile);
makeAirport("DEFAULT", base, airports, logfile);
base.close();
std::string line;
@@ -37,8 +39,7 @@ namespace file
std::vector<std::string> packs;
while (std::getline(custom, line)) {
if ((pos = line.find("SCENERY_PACK")) != std::string::npos) {
std::string path =
germanairlinesva::util::rtrim_copy(line.substr(pos + 13)) +
std::string path = util::rtrim_copy(line.substr(pos + 13)) +
"Earth nav data/apt.dat";
packs.emplace_back(path);
}
@@ -49,7 +50,7 @@ namespace file
std::ifstream pack(path);
if (pack.good()) {
logfile << "<FILE> " << path << std::endl;
makeAirport("CUSTOM", pack, database, logfile);
makeAirport("CUSTOM", pack, airports, logfile);
pack.close();
} else {
pack.close();
@@ -59,33 +60,33 @@ namespace file
}
logfile << std::endl
<< "<STATUS> Total airports: " << database.numAirports()
<< std::endl;
<< "<STATUS> Total airports: " << airports.size() << std::endl;
custom.close();
logfile.close();
return 0;
}
void makeAirport(const std::string &kind,
void makeAirport(
const std::string &kind,
std::ifstream &infile,
SimDatabase &database,
std::map<std::string, std::pair<std::vector<Gate>, std::vector<Runway>>>
&airports,
std::ofstream &logfile)
{
std::string line;
std::string *currentIcao = nullptr;
std::vector<const Gate> tmpGates;
std::vector<const Runway> tmpRunways;
std::vector<Gate> tmpGates;
std::vector<Runway> tmpRunways;
int apCount = 0;
int validCount = 0;
while (std::getline(infile, line)) {
std::vector<std::string> fields =
germanairlinesva::util::split(line, ' ');
fields = germanairlinesva::util::select_T<std::string>(
fields,
[](const std::string &s) { return s.length() > 0; });
std::vector<std::string> fields = util::split(line, ' ');
fields = util::select_T<std::string>(fields, [](const std::string &s) {
return s.length() > 0;
});
if (fields.empty())
continue;
@@ -93,7 +94,7 @@ namespace file
// Write to file if ICAO is valid, and we have gates and runways
if (currentIcao != nullptr && !tmpRunways.empty() &&
!tmpGates.empty()) {
database.addAirport(*currentIcao, tmpGates, tmpRunways);
airports[*currentIcao] = {tmpGates, tmpRunways};
validCount += 1;
logfile << "\t<STATUS> " << *currentIcao << " committed"
<< std::endl;
@@ -101,8 +102,8 @@ namespace file
logfile << "\t<STATUS> " << *currentIcao
<< " had no gates or runways" << std::endl;
}
tmpGates = std::vector<const Gate>();
tmpRunways = std::vector<const Runway>();
tmpGates = std::vector<Gate>();
tmpRunways = std::vector<Runway>();
currentIcao = new std::string(fields[4]);
apCount += 1;
logfile << "\t<" << kind << "> " << line << std::endl;
@@ -113,7 +114,7 @@ namespace file
// Write to file if ICAO is valid, and we have gates and runways
if (currentIcao != nullptr && !tmpRunways.empty() &&
!tmpGates.empty()) {
database.addAirport(*currentIcao, tmpGates, tmpRunways);
airports[*currentIcao] = {tmpGates, tmpRunways};
validCount += 1;
logfile << "\t<STATUS> " << *currentIcao << " committed"
<< std::endl;
@@ -121,8 +122,8 @@ namespace file
logfile << "\t<STATUS> " << *currentIcao
<< " had no gates or runways" << std::endl;
}
tmpGates = std::vector<const Gate>();
tmpRunways = std::vector<const Runway>();
tmpGates = std::vector<Gate>();
tmpRunways = std::vector<Runway>();
currentIcao = nullptr;
logfile << "\t<" << kind << " SKIPPED> " << line << std::endl;
} else if (currentIcao != nullptr && fields[0] == "100") {
@@ -135,7 +136,7 @@ namespace file
}
if (currentIcao != nullptr && !tmpRunways.empty() && !tmpGates.empty()) {
database.addAirport(*currentIcao, tmpGates, tmpRunways);
airports[*currentIcao] = {tmpGates, tmpRunways};
validCount += 1;
logfile << "\t<STATUS> " << *currentIcao << " committed" << std::endl;
}
@@ -143,7 +144,7 @@ namespace file
<< validCount << " are valid" << std::endl;
}
void makeGate15(std::vector<const Gate> &gates,
void makeGate15(std::vector<Gate> &gates,
const std::vector<std::string> &fields)
{
std::string gateName;
@@ -152,13 +153,13 @@ namespace file
}
gateName += fields.back();
gateName = std::regex_replace(gateName, std::regex{","}, "0");
struct germanairlinesva::geodata::point pt {
std::stod(fields[1]), std::stod(fields[2])
};
gates.emplace_back(gateName, pt, 40);
gates.emplace_back(gateName,
std::stod(fields[1]),
std::stod(fields[2]),
40);
}
void makeRunway(std::vector<const Runway> &runways,
void makeRunway(std::vector<Runway> &runways,
const std::vector<std::string> &fields)
{
runways.emplace_back(fields[8],
@@ -175,7 +176,7 @@ namespace file
std::stod(fields[1]));
}
void makeGate1300(std::vector<const Gate> &gates,
void makeGate1300(std::vector<Gate> &gates,
const std::vector<std::string> &fields)
{
std::string gateName;
@@ -185,10 +186,10 @@ namespace file
gateName += fields.back();
gateName = std::regex_replace(gateName, std::regex{","}, "0");
struct germanairlinesva::geodata::point pt {
std::stod(fields[1]), std::stod(fields[2])
};
gates.emplace_back(gateName, pt, 40);
gates.emplace_back(gateName,
std::stod(fields[1]),
std::stod(fields[2]),
40);
}
} // namespace simdata
} // namespace file
+22 -2
View File
@@ -41,11 +41,16 @@ namespace geodata
static inline double toRadians(double value) { return value * M_PI / 180; }
static inline double normalize(double value)
static inline double normalizeD(double value)
{
return fmod(value + 360, 360);
}
static inline double normalizeR(double value)
{
return value < 0 ? 2 * M_PI + value : value;
}
// Input and Output in degrees
static inline double bearingDD(double fromLatitude,
double fromLongitude,
@@ -58,7 +63,22 @@ namespace geodata
sin(toRadians(fromLatitude)) * cos(toRadians(toLatitude)) *
cos(toRadians(toLongitude) - toRadians(fromLongitude));
return normalize(toDegrees(atan2(y, x)));
return normalizeD(toDegrees(atan2(y, x)));
}
// Input in degrees, Output in radians
static inline double bearingDR(double fromLatitude,
double fromLongitude,
double toLatitude,
double toLongitude)
{
double y = sin(toRadians(toLongitude) - toRadians(fromLongitude)) *
cos(toRadians(toLatitude));
double x = cos(toRadians(fromLatitude)) * sin(toRadians(toLatitude)) -
sin(toRadians(fromLatitude)) * cos(toRadians(toLatitude)) *
cos(toRadians(toLongitude) - toRadians(fromLongitude));
return normalizeR(atan2(y, x));
}
// Input in degrees, Output in metres
+5 -3
View File
@@ -3,8 +3,9 @@
#include <cstdint>
namespace germanairlinesva_websocket
namespace germanairlinesva
{
namespace websocket
{
#pragma pack(push) /* push current alignment to stack */
#pragma pack(1) /* set alignment to 1 byte boundary */
@@ -44,6 +45,7 @@ namespace germanairlinesva_websocket
};
#pragma pack(pop) /* restore original alignment from stack */
} // namespace germanairlinesva_websocket
} // namespace websocket
} // namespace germanairlinesva
#endif
+5 -2
View File
@@ -18,7 +18,9 @@
#include <string>
#include <utility>
namespace germanairlinesva_websocket
namespace germanairlinesva
{
namespace websocket
{
class Websocket
{
@@ -38,6 +40,7 @@ namespace germanairlinesva_websocket
void onClientMessageCallback(const ix::WebSocketMessagePtr &msg);
void sendData(data &d);
};
} // namespace germanairlinesva_websocket
} // namespace websocket
} // namespace germanairlinesva
#endif
+6 -5
View File
@@ -1,6 +1,8 @@
#include "include/websocket.h"
namespace germanairlinesva_websocket
namespace germanairlinesva
{
namespace websocket
{
Websocket::Websocket(std::string host,
std::string user,
@@ -86,9 +88,7 @@ void Websocket::sendData(data &d)
{
if (strcmp(d.path, this->lastPath) != 0) {
strcpy(this->lastPath, d.path);
if (germanairlinesva::util::generateMD5(d.path,
this->lastHash,
this->toLog)) {
if (util::generateMD5(d.path, this->lastHash, this->toLog)) {
strcpy(this->lastHash, "NOT SET");
}
}
@@ -110,4 +110,5 @@ void Websocket::sendData(data &d)
this->webSocket->send(msg.str(), false);
}
}
} // namespace germanairlinesva_websocket
} // namespace websocket
} // namespace germanairlinesva
+59 -16
View File
@@ -12,7 +12,7 @@ std::atomic<bool> wantsExit;
std::unique_ptr<germanairlinesva::file::config::Config> configuration;
std::unique_ptr<germanairlinesva::file::simdata::SimDatabase> database;
std::unique_ptr<germanairlinesva_websocket::Websocket> connector;
std::unique_ptr<germanairlinesva::websocket::Websocket> connector;
int xplaneVersion;
/* Datarefs */
@@ -43,7 +43,7 @@ XPLMDataRef pitch;
XPLMDataRef roll;
XPLMDataRef quaternion;
struct germanairlinesva_websocket::data toSend;
struct germanairlinesva::websocket::data toSend;
germanairlinesva::file::recording::Recording p;
/*
@@ -114,16 +114,12 @@ PLUGIN_API int XPluginStart(char *outName, char *outSig, char *outDesc)
configuration = std::make_unique<germanairlinesva::file::config::Config>();
toLog("Config loaded");
try {
connector = std::make_unique<germanairlinesva_websocket::Websocket>(
connector = std::make_unique<germanairlinesva::websocket::Websocket>(
"wss://ws.hofmannnet.myhome-server.de:8000",
configuration->getUser(),
toLog);
} catch (const std::invalid_argument &e) {
toLog(e.what());
return 0;
}
toLog("WebSocket started");
char hash[2 * MD5LEN + 1] = "";
if (germanairlinesva::util::generateMD5(XPLANE_CUSTOM_SCENERY, hash, toLog) ==
0) {
@@ -132,6 +128,7 @@ PLUGIN_API int XPluginStart(char *outName, char *outSig, char *outDesc)
hash,
configuration,
toLog);
}
toLog("Readback test of sim database using EDDF");
auto ap = (*database)["EDDF"];
@@ -144,11 +141,57 @@ PLUGIN_API int XPluginStart(char *outName, char *outSig, char *outDesc)
toLog("Readback test of sim database using XXXX");
auto ap2 = (*database)["XXXX"];
ap2.first.size() == 0 ? toLog(" SUCCESS") : toLog(" ERROR");
// Thread for sending data to websocket
serverThread = std::thread(&serverWorker);
recordingThread = std::thread(&recordingWorker);
toLog("Workers started");
toLog("Logbook Test");
germanairlinesva::file::logbook::Logbook logbook;
logbook.addEntry("08.09.2022",
"1000",
"L049",
"D-ALFA",
"John F. Kennedy International Aiport / EDDF",
"A1",
"14L",
"Gander International Airport / CYQX",
"10",
"03",
"10:00",
"10:20",
"13:20",
"13:30",
210.5,
20.1,
5012.4156,
8.87,
5041.3856,
7.1,
971.14,
2.41,
980.65,
-165.23,
1,
1.2012,
"2022-09-08_VGA1000",
5.5,
1);
logbook.toFile();
return 1;
}
delete connector.release();
delete database.release();
delete configuration.release();
PLUGIN_API void XPluginStop(void)
{
/* Flight Loop */
XPLMUnregisterFlightLoopCallback(flightLoop, nullptr);
/* End threads */
wantsExit = true;
serverThread.join();
recordingThread.join();
delete connector.release();
delete database.release();
@@ -177,7 +220,7 @@ float flightLoop(float elapsedMe, float elapsedSim, int counter, void *refcon)
{
const std::lock_guard<std::mutex> lock(mutex);
std::memset(&toSend, 0, sizeof(germanairlinesva_websocket::data));
std::memset(&toSend, 0, sizeof(germanairlinesva::websocket::data));
toSend.pause = XPLMGetDatai(pauseIndicator);
toSend.pBrake = XPLMGetDataf(parkingBrake);
@@ -218,11 +261,11 @@ void serverWorker()
germanairlinesva::util::setThreadName("GAServerWorker");
while (!wantsExit) {
struct germanairlinesva_websocket::data copy;
struct germanairlinesva::websocket::data copy;
{
const std::lock_guard<std::mutex> lock(mutex);
std::memcpy(&copy, &toSend, sizeof(germanairlinesva_websocket::data));
std::memcpy(&copy, &toSend, sizeof(germanairlinesva::websocket::data));
}
connector->sendData(copy);
@@ -241,11 +284,11 @@ void recordingWorker()
std::uint32_t segment = 0;
while (!wantsExit) {
germanairlinesva_websocket::data copy;
germanairlinesva::websocket::data copy;
{
const std::lock_guard<std::mutex> lock(mutex);
std::memcpy(&copy, &toSend, sizeof(germanairlinesva_websocket::data));
std::memcpy(&copy, &toSend, sizeof(germanairlinesva::websocket::data));
}
germanairlinesva::file::recording::RecordingEntry currentPath(