| 1 | #include "externals/nova.h"
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| 2 |
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| 3 | #include "Database.h"
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| 4 |
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| 5 | #include "Time.h"
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| 6 | #include "Configuration.h"
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| 7 |
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| 8 | using namespace std;
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| 9 | using namespace Nova;
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| 10 |
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| 11 | // ========================================================================
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| 12 | // ========================================================================
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| 13 | // ========================================================================
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| 14 |
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| 15 | void SetupConfiguration(Configuration &conf)
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| 16 | {
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| 17 | po::options_description control("Smart FACT");
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| 18 | control.add_options()
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| 19 | ("source-name", var<string>(), "Source name")
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| 20 | ("date-time", var<string>(), "SQL time (UTC)")
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| 21 | ("source-database", var<string>(""), "Database link as in\n\tuser:password@server[:port]/database.")
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| 22 | ("max-current", var<double>(75), "Maximum current to display in other plots.")
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| 23 | ("max-zd", var<double>(75), "Maximum zenith distance to display in other plots")
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| 24 | ("no-limits", po_switch(), "Switch off limits in plots")
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| 25 | ;
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| 26 |
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| 27 | po::positional_options_description p;
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| 28 | p.add("source-name", 1); // The 1st positional options
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| 29 | p.add("date-time", 2); // The 2nd positional options
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| 30 |
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| 31 | conf.AddOptions(control);
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| 32 | conf.SetArgumentPositions(p);
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| 33 | }
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| 34 |
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| 35 | void PrintUsage()
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| 36 | {
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| 37 | cout <<
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| 38 | "makedata - The astronomy data listing\n"
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| 39 | "\n"
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| 40 | // "Calculates several plots for the sources in the database\n"
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| 41 | // "helpful or needed for scheduling. The Plot is always calculated\n"
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| 42 | // "for the night which starts at the same so. So no matter if\n"
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| 43 | // "you specify '1974-09-09 00:00:00' or '1974-09-09 21:56:00'\n"
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| 44 | // "the plots will refer to the night 1974-09-09/1974-09-10.\n"
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| 45 | // "The advantage is that specification of the date as in\n"
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| 46 | // "1974-09-09 is enough. Time axis starts and ends at nautical\n"
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| 47 | // "twilight which is 12deg below horizon.\n"
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| 48 | // "\n"
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| 49 | "Usage: makedata sql-datetime [--ra={ra} --dec={dec}]\n";
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| 50 | cout << endl;
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| 51 | }
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| 52 |
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| 53 | int main(int argc, const char* argv[])
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| 54 | {
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| 55 | Configuration conf(argv[0]);
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| 56 | conf.SetPrintUsage(PrintUsage);
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| 57 | SetupConfiguration(conf);
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| 58 |
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| 59 | if (!conf.DoParse(argc, argv))
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| 60 | return 127;
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| 61 | /*
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| 62 | if (!conf.Has("source-name"))
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| 63 | {
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| 64 | cout << "ERROR - --source-name missing." << endl;
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| 65 | return 1;
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| 66 | }
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| 67 | */
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| 68 | // ------------------ Eval config ---------------------
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| 69 |
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| 70 | Time time;
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| 71 | if (conf.Has("date-time"))
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| 72 | time.SetFromStr(conf.Get<string>("date-time"));
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| 73 |
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| 74 | const double max_current = conf.Get<double>("max-current");
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| 75 | const double max_zd = conf.Get<double>("max-zd");
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| 76 | const double no_limits = conf.Get<bool>("no-limits");
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| 77 |
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| 78 | // -12: nautical
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| 79 | const RstTime sun_set = GetSolarRst(time.JD()-0.5, -12); // Sun set with the same date than th provided date
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| 80 | const RstTime sun_rise = GetSolarRst(time.JD()+0.5, -12); // Sun rise on the following day
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| 81 |
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| 82 | const double jd = floor(time.Mjd())+2400001;
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| 83 | const double mjd = floor(time.Mjd())+49718+0.5;
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| 84 |
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| 85 |
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| 86 | const double jd0 = fmod(sun_set.set, 1); // ~0.3
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| 87 | const double jd1 = fmod(sun_rise.rise, 1); // ~0.8
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| 88 |
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| 89 | cout << Time::iso << time << ", " << mjd-49718 << ", ";
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| 90 | cout << jd0 << ", ";
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| 91 | cout << jd1 << "\n";
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| 92 |
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| 93 | if (!conf.Has("source-name"))
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| 94 | return 1;
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| 95 |
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| 96 | const string source_name = conf.Get<string>("source-name");
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| 97 | const string fDatabase = conf.Get<string>("source-database");
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| 98 |
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| 99 | // ------------------ Precalc moon coord ---------------------
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| 100 |
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| 101 | vector<tuple<EquPosn, double, double>> fMoonCoords;
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| 102 | vector<EquPosn> fSunCoords;
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| 103 |
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| 104 | for (double h=0; h<1; h+=1./(24*12))
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| 105 | {
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| 106 | const EquPosn sun = GetSolarEquCoords(jd+h);
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| 107 | const EquPosn moon = GetLunarEquCoords(jd+h, 0.01);
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| 108 | const double disk = GetLunarDisk(jd+h);
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| 109 | const double edist = GetLunarEarthDist(jd+h)/384400;
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| 110 |
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| 111 | fMoonCoords.emplace_back(moon, disk, edist);
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| 112 | fSunCoords.emplace_back(sun);
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| 113 | }
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| 114 |
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| 115 | // ------------- Get Sources from databasse ---------------------
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| 116 |
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| 117 | const mysqlpp::StoreQueryResult res =
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| 118 | Database(fDatabase).query("SELECT fRightAscension, fDeclination FROM Source WHERE fSourceName='"+source_name+"'").store();
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| 119 |
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| 120 | // ------------- Create canvases and frames ---------------------
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| 121 |
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| 122 | vector<mysqlpp::Row>::const_iterator row=res.begin();
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| 123 | if (row==res.end())
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| 124 | return 1;
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| 125 |
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| 126 | EquPosn pos;
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| 127 | pos.ra = double((*row)[0])*15;
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| 128 | pos.dec = double((*row)[1]);
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| 129 |
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| 130 | // Loop over 24 hours
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| 131 | for (int i=0; i<24*12; i++)
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| 132 | {
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| 133 | const double h = double(i)/(24*12);
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| 134 |
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| 135 | // check if it is betwene sun-rise and sun-set
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| 136 | if (h<jd0 || h>jd1)
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| 137 | continue;
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| 138 |
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| 139 | // get local position of source
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| 140 | const HrzPosn hrz = GetHrzFromEqu(pos, jd+h);
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| 141 |
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| 142 | // Get sun and moon properties and
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| 143 | const EquPosn sun = fSunCoords[i];
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| 144 | const EquPosn moon = get<0>(fMoonCoords[i]);
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| 145 | const double disk = get<1>(fMoonCoords[i]);
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| 146 | const double edist = get<2>(fMoonCoords[i]);
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| 147 | const HrzPosn hrzm = GetHrzFromEqu(moon, jd+h);
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| 148 | const ZdAzPosn hrzs = GetHrzFromEqu(sun, jd+h);
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| 149 |
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| 150 | // Distance between source and moon
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| 151 | const double angle = GetAngularSeparation(moon, pos);
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| 152 |
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| 153 | // Current prediction
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| 154 | const double sin_malt = hrzm.alt<0 ? 0 : sin(hrzm.alt*M_PI/180);
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| 155 | const double cos_mdist = cos(angle*M_PI/180);
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| 156 | const double sin_szd = sin(hrzs.zd*M_PI/180);
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| 157 |
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| 158 | const double k0 = pow(disk, 2.63);
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| 159 | const double k1 = pow(sin_malt, 0.60);
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| 160 | const double k2 = pow(edist, -2.00);
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| 161 | const double k3 = exp(0.67*cos_mdist*cos_mdist*cos_mdist*cos_mdist);
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| 162 | const double k4 = exp(-97.8+105.8*sin_szd*sin_szd);
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| 163 |
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| 164 | const double cur = 6.2 + 95.7*k0*k1*k2*k3 + k4;
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| 165 |
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| 166 | // Relative energy threshold prediction
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| 167 | //const double cs = cos((90+hrz.alt)*M_PI/180);
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| 168 | //const double ratio = (10.*sqrt(409600.*cs*cs+9009.) + 6400.*cs - 60.)/10.;
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| 169 | const double ratio = pow(cos((90-hrz.alt)*M_PI/180), -2.664);
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| 170 |
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| 171 | // Add points to curve
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| 172 | // const double axis = (mjd+h)*24*3600;
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| 173 |
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| 174 | Time t(mjd-49718);
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| 175 | t += boost::posix_time::minutes(i*5);
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| 176 |
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| 177 | cout << t << ", " << h << ", ";
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| 178 |
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| 179 | if (no_limits || cur<max_current)
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| 180 | cout << hrz.alt;
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| 181 | cout << ", ";
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| 182 |
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| 183 | if (no_limits || 90-hrz.alt<max_zd)
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| 184 | cout << cur;
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| 185 | cout << ", ";
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| 186 |
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| 187 | if (no_limits || (cur<max_current && 90-hrz.alt<max_zd))
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| 188 | cout << ratio*cur/6.2;
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| 189 | cout << ", ";
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| 190 |
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| 191 | if (no_limits || (cur<max_current && 90-hrz.alt<max_zd))
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| 192 | cout << angle;
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| 193 | cout << "\n";
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| 194 | }
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| 195 |
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| 196 | cout << flush;
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| 197 |
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| 198 | return 0;
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| 199 | }
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