Changes to support voice ATIS
This commit is contained in:
parent
fe6784af51
commit
df089b80f8
2 changed files with 301 additions and 258 deletions
321
src/ATC/atis.cxx
321
src/ATC/atis.cxx
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@ -55,22 +55,23 @@ SG_USING_STD(cout);
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#include "atislist.hxx"
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#include "ATCdisplay.hxx"
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#include "ATCutils.hxx"
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#include "ATCmgr.hxx"
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// Constructor
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FGATIS::FGATIS()
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: type(0),
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lon(0.0), lat(0.0),
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elev(0.0),
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x(0.0), y(0.0), z(0.0),
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freq(0),
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range(0),
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display(false),
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displaying(false),
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ident(""),
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name(""),
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transmission(""),
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trans_ident(""),
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atis_failed(false)
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: type(0),
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lon(0.0), lat(0.0),
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elev(0.0),
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x(0.0), y(0.0), z(0.0),
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freq(0),
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range(0),
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display(false),
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displaying(false),
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ident(""),
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name(""),
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transmission(""),
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trans_ident(""),
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atis_failed(false)
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{
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}
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@ -80,166 +81,208 @@ FGATIS::~FGATIS() {
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// Main update function - checks whether we are displaying or not the correct message.
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void FGATIS::Update() {
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if(display) {
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if(displaying) {
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// Check if we need to update the message
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// - basically every hour and if the weather changes significantly at the station
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//globals->get_ATC_display()->ChangeRepeatingMessage(transmission);
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if(display) {
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if(displaying) {
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// Check if we need to update the message
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// - basically every hour and if the weather changes significantly at the station
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//globals->get_ATC_display()->ChangeRepeatingMessage(transmission);
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} else {
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// We need to get and display the message
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UpdateTransmission();
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//cout << "ATIS.CXX - calling ATCMgr to render transmission..." << endl;
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globals->get_ATC_mgr()->Render(transmission, true);
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displaying = true;
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}
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} else {
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// We need to get and display the message
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UpdateTransmission();
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globals->get_ATC_display()->RegisterRepeatingMessage(transmission);
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displaying = true;
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// We shouldn't be displaying
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if(displaying) {
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//cout << "ATIS.CXX - calling NoRender()..." << endl;
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globals->get_ATC_mgr()->NoRender();
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displaying = false;
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}
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}
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} else {
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// We shouldn't be displaying
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if(displaying) {
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globals->get_ATC_display()->CancelRepeatingMessage();
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displaying = false;
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}
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}
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}
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// Sets the actual broadcast ATIS transmission.
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void FGATIS::UpdateTransmission() {
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double visibility;
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char buf[10];
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int phonetic_id;
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string phonetic_id_string;
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string time_str = fgGetString("sim/time/gmt-string");
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int hours;
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// int minutes;
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#ifdef FG_WEATHERCM
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sgVec3 position = { lat, lon, elev };
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FGPhysicalProperty stationweather = WeatherDatabase->get(position);
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#else
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FGEnvironment stationweather =
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globals->get_environment_mgr()->getEnvironment(lat, lon, elev);
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#endif
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transmission = "";
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// Start with the transmitted station name.
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transmission += name;
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// Add "Information"
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transmission += " Information";
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//cout << "In atis.cxx, time_str = " << time_str << '\n';
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// Add the recording identifier
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// For now we will assume we only transmit every hour
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hours = atoi((time_str.substr(1,2)).c_str()); //Warning - this is fragile if the
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//time string format changes
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//cout << "In atis.cxx, hours = " << hours << endl;
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phonetic_id = current_atislist->GetCallSign(ident, hours, 0);
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phonetic_id_string = GetPhoneticIdent(phonetic_id);
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transmission += " ";
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transmission += phonetic_id_string;
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// Output the recording time. - we'll just output the last whole hour for now.
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// FIXME - this only gets GMT time but that appears to be all the clock outputs for now
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//cout << "in atis.cxx, time = " << time_str << endl;
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transmission = transmission + " Weather " + time_str.substr(0,3) + "00 hours Zulu";
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// Get the temperature
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// (Hardwire it for now since the global property returns the temperature at the current altitude
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//temperature = fgGetDouble("/environment/weather/temperature-K");
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#ifdef FG_WEATHERCM
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sprintf(buf, "%i", int(stationweather.Temperature - 273.15));
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#else
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sprintf(buf, "%d", int(stationweather.get_temperature_degc()));
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#endif
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transmission += " Temperature ";
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transmission += buf;
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transmission += " degrees Celsius";
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double visibility;
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char buf[10];
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int phonetic_id;
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string phonetic_id_string;
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string time_str = fgGetString("sim/time/gmt-string");
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int hours;
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// int minutes;
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#ifdef FG_WEATHERCM
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sgVec3 position = { lat, lon, elev };
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FGPhysicalProperty stationweather = WeatherDatabase->get(position);
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#else
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FGEnvironment stationweather =
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globals->get_environment_mgr()->getEnvironment(lat, lon, elev);
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#endif
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transmission = "";
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// UK CAA radiotelephony manual indicated ATIS transmissions start with "This is"
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// Not sure about rest of the world though.
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transmission += "This_is ";
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// transmitted station name.
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transmission += name;
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// Add "Information"
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transmission += " information";
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//cout << "In atis.cxx, time_str = " << time_str << '\n';
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// Add the recording identifier
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// For now we will assume we only transmit every hour
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hours = atoi((time_str.substr(1,2)).c_str()); //Warning - this is fragile if the
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//time string format changes
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//cout << "In atis.cxx, hours = " << hours << endl;
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phonetic_id = current_atislist->GetCallSign(ident, hours, 0);
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phonetic_id_string = GetPhoneticIdent(phonetic_id);
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transmission += " ";
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transmission += phonetic_id_string;
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// Output the recording time. - we'll just output the last whole hour for now.
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// FIXME - this only gets GMT time but that appears to be all the clock outputs for now
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//cout << "in atis.cxx, time = " << time_str << endl;
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transmission = transmission + " / Weather " + ConvertNumToSpokenDigits((time_str.substr(0,3) + "00")) + " hours zulu";
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// Get the temperature
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// (Hardwire it for now since the global property returns the temperature at the current altitude
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//temperature = fgGetDouble("/environment/weather/temperature-K");
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#ifdef FG_WEATHERCM
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sprintf(buf, "%i", int(stationweather.Temperature - 273.15));
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#else
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// HACK ALERT - at the moment the new environment subsystem returns bogus temperatures
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// FIXME - take out this hack when this gets fixed upstream
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int temp = (int)stationweather.get_temperature_degc();
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if((temp < -50) || (temp > 60)) {
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temp = 15;
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}
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// original:
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//sprintf(buf, "%d", int(stationweather.get_temperature_degc()));
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// hack:
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sprintf(buf, "%d", temp);
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#endif
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transmission += " / Temperature ";
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if(temp < 0) {
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transmission += "minus ";
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}
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string tempstr1 = buf;
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string tempstr2;
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transmission += ConvertNumToSpokenDigits(tempstr1);
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transmission += " degrees_Celsius";
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// Get the visibility
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#ifdef FG_WEATHERCM
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#ifdef FG_WEATHERCM
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visibility = fgGetDouble("/environment/visibility-m");
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#else
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visibility = stationweather.get_visibility_m();
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#endif
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#else
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visibility = stationweather.get_visibility_m();
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#endif
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sprintf(buf, "%i", int(visibility/1600));
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transmission += " Visibility ";
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transmission += buf;
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transmission += " / Visibility ";
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tempstr1 = buf;
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transmission += ConvertNumToSpokenDigits(tempstr1);
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transmission += " miles";
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// Get the cloudbase
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// FIXME: kludge for now
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if (strcmp(fgGetString("/environment/clouds/layer[0]/type"), "clear")) {
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double cloudbase =
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fgGetDouble("/environment/clouds/layer[0]/elevation-ft");
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// For some reason the altitude returned doesn't seem to correspond to the actual cloud altitude.
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char buf3[10];
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// cout << "cloudbase = " << cloudbase << endl;
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sprintf(buf3, "%i", int(cloudbase));
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transmission = transmission + " Cloudbase " + buf3 + " feet";
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double cloudbase =
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fgGetDouble("/environment/clouds/layer[0]/elevation-ft");
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// For some reason the altitude returned doesn't seem to correspond to the actual cloud altitude.
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char buf3[10];
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char buf4[10];
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// cout << "cloudbase = " << cloudbase << endl;
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sprintf(buf3, "%i", int(cloudbase)/1000);
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sprintf(buf4, "%i", ((int)cloudbase % 1000)/100);
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transmission += " / Cloudbase";
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if(int(cloudbase)/1000) {
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tempstr1 = buf3;
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transmission = transmission + " " + ConvertNumToSpokenDigits(tempstr1) + " thousand";
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}
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if(((int)cloudbase % 1000)/100) {
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tempstr1 = buf4;
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transmission = transmission + " " + ConvertNumToSpokenDigits(tempstr1) + " hundred";
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}
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transmission += " feet";
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}
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// Get the pressure / altimeter
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#ifndef FG_WEATHERCM
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double altimeter = stationweather.get_pressure_sea_level_inhg();
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sprintf(buf, "%.2f", altimeter);
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transmission += " Altimeter ";
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transmission += buf;
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#endif
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#ifndef FG_WEATHERCM
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double altimeter = stationweather.get_pressure_sea_level_inhg();
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sprintf(buf, "%.2f", altimeter);
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transmission += " / Altimeter ";
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tempstr1 = buf;
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transmission += ConvertNumToSpokenDigits(tempstr1);
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#endif
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// Based on the airport-id and wind get the active runway
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//FGRunway *r;
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SGPath path( globals->get_fg_root() );
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path.append( "Airports" );
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path.append( "runways.mk4" );
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FGRunways runways( path.c_str() );
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#ifdef FG_WEATHERCM
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#ifdef FG_WEATHERCM
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//Set the heading to into the wind
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double wind_x = stationweather.Wind[0];
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double wind_y = stationweather.Wind[1];
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double speed = sqrt( wind_x*wind_x + wind_y*wind_y ) * SG_METER_TO_NM / (60.0*60.0);
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double hdg;
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double wind_x = stationweather.Wind[0];
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double wind_y = stationweather.Wind[1];
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double speed = sqrt( wind_x*wind_x + wind_y*wind_y ) * SG_METER_TO_NM / (60.0*60.0);
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double hdg;
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//If no wind use 270degrees
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if(speed == 0) {
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hdg = 270;
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transmission += " Winds light and variable";
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hdg = 270;
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transmission += " / Winds_light_and_variable";
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} else {
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// //normalize the wind to get the direction
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//wind_x /= speed; wind_y /= speed;
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hdg = - atan2 ( wind_x, wind_y ) * SG_RADIANS_TO_DEGREES ;
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if (hdg < 0.0)
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hdg += 360.0;
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//add a description of the wind to the transmission
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char buf2[72];
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sprintf(buf2, "%s %i %s %i %s", " Winds ", int(speed), " knots from ", int(hdg), " degrees");
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transmission += buf2;
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// //normalize the wind to get the direction
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//wind_x /= speed; wind_y /= speed;
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hdg = - atan2 ( wind_x, wind_y ) * SG_RADIANS_TO_DEGREES ;
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if (hdg < 0.0)
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hdg += 360.0;
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//add a description of the wind to the transmission
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char buf5[10];
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char buf6[10];
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sprintf(buf5, "%i", int(speed));
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sprintf(buf6, "%i", int(hdg));
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tempstr1 = buf5;
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tempstr2 = buf6;
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transmission = transmission + " / Winds " + ConvertNumToSpokenDigits(tempstr1) + " knots from "
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+ ConvertNumToSpokenDigits(tempstr2) + " degrees";
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}
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#else
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#else
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double speed = stationweather.get_wind_speed_kt();
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double hdg = stationweather.get_wind_from_heading_deg();
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if (speed == 0) {
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transmission += " Winds light and variable";
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transmission += " / Winds_light_and_variable";
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} else {
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// FIXME: get gust factor in somehow
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char buf2[72];
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sprintf(buf2, "%s %i %s %i %s", " Winds ", int(speed),
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" knots from ", int(hdg), " degrees");
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transmission += buf2;
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// FIXME: get gust factor in somehow
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char buf5[10];
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char buf6[10];
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sprintf(buf5, "%i", int(speed));
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sprintf(buf6, "%i", int(hdg));
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tempstr1 = buf5;
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tempstr2 = buf6;
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transmission = transmission + " / Winds " + ConvertNumToSpokenDigits(tempstr1) + " knots from "
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+ ConvertNumToSpokenDigits(tempstr2) + " degrees";
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}
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#endif
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#endif
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string rwy_no = runways.search(ident, int(hdg));
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if(rwy_no != (string)"NN") {
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transmission += " Landing and departing runway ";
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transmission += rwy_no;
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//cout << "in atis.cxx, r.rwy_no = " << rwy_no << " r.id = " << r->id << " r.heading = " << r->heading << endl;
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transmission += " / Landing_and_departing_runway ";
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transmission += ConvertRwyNumToSpokenString(atoi(rwy_no.c_str()));
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//cout << "in atis.cxx, r.rwy_no = " << rwy_no << " r.id = " << r->id << " r.heading = " << r->heading << endl;
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}
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// Anything else?
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transmission += " Advise controller on initial contact you have ";
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transmission += " / Advise_controller_on_initial_contact_you_have ";
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transmission += phonetic_id_string;
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transmission += " /// ";
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}
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238
src/ATC/atis.hxx
238
src/ATC/atis.hxx
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@ -33,14 +33,14 @@
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#ifdef SG_HAVE_STD_INCLUDES
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# include <istream>
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#include <iomanip>
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# include <iomanip>
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#elif defined( SG_HAVE_NATIVE_SGI_COMPILERS )
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# include <iostream.h>
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#elif defined( __BORLANDC__ ) || (__APPLE__)
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# include <iostream>
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#else
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# include <istream.h>
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#include <iomanip.h>
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# include <iomanip.h>
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#endif
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#if ! defined( SG_HAVE_NATIVE_SGI_COMPILERS )
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@ -57,131 +57,131 @@ SG_USING_STD(string);
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#define FG_ATIS_DEFAULT_RANGE 30
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class FGATIS : public FGATC {
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char type;
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double lon, lat;
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double elev;
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double x, y, z;
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int freq;
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int range;
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bool display; // Flag to indicate whether we should be outputting to the ATC display.
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bool displaying; // Flag to indicate whether we are outputting to the ATC display.
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string ident; // Code of the airport its at.
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string name; // Name transmitted in the broadcast.
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string transmission; // The actual ATIS transmission
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// This is not stored in default.atis but is generated
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// from the prevailing conditions when required.
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// for failure modeling
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string trans_ident; // transmitted ident
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bool atis_failed; // atis failed?
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// Aircraft position
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// ATIS is actually a special case in that unlike other ATC eg.tower it doesn't actually know about
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// or the whereabouts of the aircraft it is transmitting to. However, to ensure consistancy of
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// operation with the other ATC classes the ATIS class must calculate range to the aircraft in order
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// to decide whether to render the transmission - hence the users plane details must be stored.
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//SGPropertyNode *airplane_lon_node;
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//SGPropertyNode *airplane_lat_node;
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//SGPropertyNode *airplane_elev_node;
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public:
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FGATIS(void);
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~FGATIS(void);
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//run the ATIS instance
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void Update(void);
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//Indicate that this instance should be outputting to the ATC display
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inline void SetDisplay(void) {display = true;}
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//Indicate that this instance should not be outputting to the ATC display
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inline void SetNoDisplay(void) {display = false;}
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inline char get_type() const { return type; }
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inline double get_lon() const { return lon; }
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inline double get_lat() const { return lat; }
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inline double get_elev() const { return elev; }
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inline double get_x() const { return x; }
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inline double get_y() const { return y; }
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inline double get_z() const { return z; }
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inline int get_freq() const { return freq; }
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inline int get_range() const { return range; }
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inline const char* GetIdent() { return ident.c_str(); }
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inline string get_trans_ident() { return trans_ident; }
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inline atc_type GetType() { return ATIS; }
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private:
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//Update the transmission string
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void UpdateTransmission(void);
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/* inline void set_type( char t ) { type = t; }
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inline void set_lon( double l ) { lon = l; }
|
||||
inline void set_lat( double l ) { lat = l; }
|
||||
inline void set_elev( double e ) { elev = e; }
|
||||
inline void set_freq( int f ) { freq = f; }
|
||||
inline void set_range( int r ) { range = r; }
|
||||
inline void set_dme( bool b ) { dme = b; }
|
||||
inline void set_ident( char *i ) { strncpy( ident, i, 5 ); } */
|
||||
|
||||
friend istream& operator>> ( istream&, FGATIS& );
|
||||
|
||||
char type;
|
||||
double lon, lat;
|
||||
double elev;
|
||||
double x, y, z;
|
||||
int freq;
|
||||
int range;
|
||||
bool display; // Flag to indicate whether we should be outputting to the ATC display.
|
||||
bool displaying; // Flag to indicate whether we are outputting to the ATC display.
|
||||
string ident; // Code of the airport its at.
|
||||
string name; // Name transmitted in the broadcast.
|
||||
string transmission; // The actual ATIS transmission
|
||||
// This is not stored in default.atis but is generated
|
||||
// from the prevailing conditions when required.
|
||||
|
||||
// for failure modeling
|
||||
string trans_ident; // transmitted ident
|
||||
bool atis_failed; // atis failed?
|
||||
|
||||
// Aircraft position
|
||||
// ATIS is actually a special case in that unlike other ATC eg.tower it doesn't actually know about
|
||||
// or the whereabouts of the aircraft it is transmitting to. However, to ensure consistancy of
|
||||
// operation with the other ATC classes the ATIS class must calculate range to the aircraft in order
|
||||
// to decide whether to render the transmission - hence the users plane details must be stored.
|
||||
//SGPropertyNode *airplane_lon_node;
|
||||
//SGPropertyNode *airplane_lat_node;
|
||||
//SGPropertyNode *airplane_elev_node;
|
||||
|
||||
public:
|
||||
|
||||
FGATIS(void);
|
||||
~FGATIS(void);
|
||||
|
||||
//run the ATIS instance
|
||||
void Update(void);
|
||||
|
||||
//Indicate that this instance should be outputting to the ATC display
|
||||
inline void SetDisplay(void) {display = true;}
|
||||
|
||||
//Indicate that this instance should not be outputting to the ATC display
|
||||
inline void SetNoDisplay(void) {display = false;}
|
||||
|
||||
inline char get_type() const { return type; }
|
||||
inline double get_lon() const { return lon; }
|
||||
inline double get_lat() const { return lat; }
|
||||
inline double get_elev() const { return elev; }
|
||||
inline double get_x() const { return x; }
|
||||
inline double get_y() const { return y; }
|
||||
inline double get_z() const { return z; }
|
||||
inline int get_freq() const { return freq; }
|
||||
inline int get_range() const { return range; }
|
||||
inline const char* GetIdent() { return ident.c_str(); }
|
||||
inline string get_trans_ident() { return trans_ident; }
|
||||
inline atc_type GetType() { return ATIS; }
|
||||
|
||||
private:
|
||||
|
||||
//Update the transmission string
|
||||
void UpdateTransmission(void);
|
||||
|
||||
/* inline void set_type( char t ) { type = t; }
|
||||
inline void set_lon( double l ) { lon = l; }
|
||||
inline void set_lat( double l ) { lat = l; }
|
||||
inline void set_elev( double e ) { elev = e; }
|
||||
inline void set_freq( int f ) { freq = f; }
|
||||
inline void set_range( int r ) { range = r; }
|
||||
inline void set_dme( bool b ) { dme = b; }
|
||||
inline void set_ident( char *i ) { strncpy( ident, i, 5 ); } */
|
||||
|
||||
friend istream& operator>> ( istream&, FGATIS& );
|
||||
};
|
||||
|
||||
|
||||
inline istream&
|
||||
operator >> ( istream& in, FGATIS& a )
|
||||
{
|
||||
double f;
|
||||
char ch;
|
||||
|
||||
static bool first_time = true;
|
||||
static double julian_date = 0;
|
||||
static const double MJD0 = 2415020.0;
|
||||
if ( first_time ) {
|
||||
julian_date = sgTimeCurrentMJD(0, 0) + MJD0;
|
||||
first_time = false;
|
||||
}
|
||||
|
||||
in >> a.type;
|
||||
|
||||
if ( a.type == '[' )
|
||||
return in >> skipeol;
|
||||
|
||||
in >> a.lat >> a.lon >> a.elev >> f >> a.range
|
||||
>> a.ident;
|
||||
|
||||
a.name = "";
|
||||
in >> ch;
|
||||
a.name += ch;
|
||||
while(1) {
|
||||
//in >> noskipws
|
||||
in.unsetf(ios::skipws);
|
||||
double f;
|
||||
char ch;
|
||||
|
||||
static bool first_time = true;
|
||||
static double julian_date = 0;
|
||||
static const double MJD0 = 2415020.0;
|
||||
if ( first_time ) {
|
||||
julian_date = sgTimeCurrentMJD(0, 0) + MJD0;
|
||||
first_time = false;
|
||||
}
|
||||
|
||||
in >> a.type;
|
||||
|
||||
if ( a.type == '[' )
|
||||
return in >> skipeol;
|
||||
|
||||
in >> a.lat >> a.lon >> a.elev >> f >> a.range
|
||||
>> a.ident;
|
||||
|
||||
a.name = "";
|
||||
in >> ch;
|
||||
a.name += ch;
|
||||
if((ch == '"') || (ch == 0x0A)) {
|
||||
break;
|
||||
} // we shouldn't need the 0x0A but it makes a nice safely in case someone leaves off the "
|
||||
}
|
||||
in.setf(ios::skipws);
|
||||
//cout << "atis.name = " << a.name << '\n';
|
||||
|
||||
a.freq = (int)(f*100.0 + 0.5);
|
||||
|
||||
// cout << a.ident << endl;
|
||||
|
||||
// generate cartesian coordinates
|
||||
Point3D geod( a.lon * SGD_DEGREES_TO_RADIANS, a.lat * SGD_DEGREES_TO_RADIANS, a.elev );
|
||||
Point3D cart = sgGeodToCart( geod );
|
||||
a.x = cart.x();
|
||||
a.y = cart.y();
|
||||
a.z = cart.z();
|
||||
|
||||
a.trans_ident = a.ident;
|
||||
a.atis_failed = false;
|
||||
|
||||
return in >> skipeol;
|
||||
while(1) {
|
||||
//in >> noskipws
|
||||
in.unsetf(ios::skipws);
|
||||
in >> ch;
|
||||
a.name += ch;
|
||||
if((ch == '"') || (ch == 0x0A)) {
|
||||
break;
|
||||
} // we shouldn't need the 0x0A but it makes a nice safely in case someone leaves off the "
|
||||
}
|
||||
in.setf(ios::skipws);
|
||||
//cout << "atis.name = " << a.name << '\n';
|
||||
|
||||
a.freq = (int)(f*100.0 + 0.5);
|
||||
|
||||
// cout << a.ident << endl;
|
||||
|
||||
// generate cartesian coordinates
|
||||
Point3D geod( a.lon * SGD_DEGREES_TO_RADIANS, a.lat * SGD_DEGREES_TO_RADIANS, a.elev );
|
||||
Point3D cart = sgGeodToCart( geod );
|
||||
a.x = cart.x();
|
||||
a.y = cart.y();
|
||||
a.z = cart.z();
|
||||
|
||||
a.trans_ident = a.ident;
|
||||
a.atis_failed = false;
|
||||
|
||||
return in >> skipeol;
|
||||
}
|
||||
|
||||
#endif // _FG_ATIS_HXX
|
||||
|
|
Loading…
Reference in a new issue