245 lines
8.3 KiB
C++
245 lines
8.3 KiB
C++
/**
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* \file RhumbSolve.cpp
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* \brief Command line utility for rhumb line calculations
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*
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* Copyright (c) Charles Karney (2014-2017) <charles@karney.com> and licensed
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* under the MIT/X11 License. For more information, see
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* https://geographiclib.sourceforge.io/
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*
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* See the <a href="RhumbSolve.1.html">man page</a> for usage information.
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**********************************************************************/
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#include <iostream>
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#include <string>
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#include <sstream>
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#include <fstream>
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#include <cmath>
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#include <limits>
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#include <GeographicLib/Rhumb.hpp>
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#include <GeographicLib/DMS.hpp>
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#include <GeographicLib/Utility.hpp>
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#if defined(_MSC_VER)
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// Squelch warnings about constant conditional expressions and potentially
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// uninitialized local variables
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# pragma warning (disable: 4127 4701)
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#endif
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#include "RhumbSolve.usage"
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using namespace GeographicLib;
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typedef Math::real real;
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std::string LatLonString(real lat, real lon, int prec, bool dms, char dmssep,
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bool longfirst) {
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using namespace GeographicLib;
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std::string
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latstr = dms ? DMS::Encode(lat, prec + 5, DMS::LATITUDE, dmssep) :
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DMS::Encode(lat, prec + 5, DMS::NUMBER),
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lonstr = dms ? DMS::Encode(lon, prec + 5, DMS::LONGITUDE, dmssep) :
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DMS::Encode(lon, prec + 5, DMS::NUMBER);
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return
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(longfirst ? lonstr : latstr) + " " + (longfirst ? latstr : lonstr);
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}
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std::string AzimuthString(real azi, int prec, bool dms, char dmssep) {
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return dms ? DMS::Encode(azi, prec + 5, DMS::AZIMUTH, dmssep) :
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DMS::Encode(azi, prec + 5, DMS::NUMBER);
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}
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int main(int argc, const char* const argv[]) {
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try {
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Utility::set_digits();
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bool linecalc = false, inverse = false, dms = false, exact = true,
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longfirst = false;
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real
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a = Constants::WGS84_a(),
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f = Constants::WGS84_f();
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real lat1, lon1, azi12 = Math::NaN(), lat2, lon2, s12, S12;
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int prec = 3;
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std::string istring, ifile, ofile, cdelim;
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char lsep = ';', dmssep = char(0);
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for (int m = 1; m < argc; ++m) {
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std::string arg(argv[m]);
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if (arg == "-i") {
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inverse = true;
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linecalc = false;
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} else if (arg == "-L" || arg == "-l") { // -l is DEPRECATED
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inverse = false;
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linecalc = true;
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if (m + 3 >= argc) return usage(1, true);
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try {
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DMS::DecodeLatLon(std::string(argv[m + 1]), std::string(argv[m + 2]),
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lat1, lon1, longfirst);
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azi12 = DMS::DecodeAzimuth(std::string(argv[m + 3]));
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}
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catch (const std::exception& e) {
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std::cerr << "Error decoding arguments of -L: " << e.what() << "\n";
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return 1;
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}
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m += 3;
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} else if (arg == "-e") {
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if (m + 2 >= argc) return usage(1, true);
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try {
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a = Utility::val<real>(std::string(argv[m + 1]));
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f = Utility::fract<real>(std::string(argv[m + 2]));
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}
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catch (const std::exception& e) {
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std::cerr << "Error decoding arguments of -e: " << e.what() << "\n";
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return 1;
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}
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m += 2;
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}
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else if (arg == "-d") {
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dms = true;
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dmssep = '\0';
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} else if (arg == "-:") {
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dms = true;
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dmssep = ':';
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} else if (arg == "-w")
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longfirst = !longfirst;
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else if (arg == "-p") {
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if (++m == argc) return usage(1, true);
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try {
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prec = Utility::val<int>(std::string(argv[m]));
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}
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catch (const std::exception&) {
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std::cerr << "Precision " << argv[m] << " is not a number\n";
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return 1;
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}
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} else if (arg == "-s")
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exact = false;
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else if (arg == "--input-string") {
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if (++m == argc) return usage(1, true);
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istring = argv[m];
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} else if (arg == "--input-file") {
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if (++m == argc) return usage(1, true);
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ifile = argv[m];
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} else if (arg == "--output-file") {
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if (++m == argc) return usage(1, true);
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ofile = argv[m];
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} else if (arg == "--line-separator") {
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if (++m == argc) return usage(1, true);
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if (std::string(argv[m]).size() != 1) {
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std::cerr << "Line separator must be a single character\n";
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return 1;
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}
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lsep = argv[m][0];
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} else if (arg == "--comment-delimiter") {
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if (++m == argc) return usage(1, true);
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cdelim = argv[m];
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} else if (arg == "--version") {
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std::cout << argv[0] << ": GeographicLib version "
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<< GEOGRAPHICLIB_VERSION_STRING << "\n";
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return 0;
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} else
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return usage(!(arg == "-h" || arg == "--help"), arg != "--help");
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}
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if (!ifile.empty() && !istring.empty()) {
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std::cerr << "Cannot specify --input-string and --input-file together\n";
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return 1;
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}
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if (ifile == "-") ifile.clear();
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std::ifstream infile;
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std::istringstream instring;
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if (!ifile.empty()) {
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infile.open(ifile.c_str());
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if (!infile.is_open()) {
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std::cerr << "Cannot open " << ifile << " for reading\n";
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return 1;
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}
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} else if (!istring.empty()) {
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std::string::size_type m = 0;
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while (true) {
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m = istring.find(lsep, m);
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if (m == std::string::npos)
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break;
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istring[m] = '\n';
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}
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instring.str(istring);
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}
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std::istream* input = !ifile.empty() ? &infile :
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(!istring.empty() ? &instring : &std::cin);
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std::ofstream outfile;
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if (ofile == "-") ofile.clear();
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if (!ofile.empty()) {
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outfile.open(ofile.c_str());
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if (!outfile.is_open()) {
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std::cerr << "Cannot open " << ofile << " for writing\n";
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return 1;
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}
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}
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std::ostream* output = !ofile.empty() ? &outfile : &std::cout;
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const Rhumb rh(a, f, exact);
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const RhumbLine rhl(linecalc ? rh.Line(lat1, lon1, azi12) :
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rh.Line(0, 0, Math::qd));
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// Max precision = 10: 0.1 nm in distance, 10^-15 deg (= 0.11 nm),
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// 10^-11 sec (= 0.3 nm).
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prec = std::min(10 + Math::extra_digits(), std::max(0, prec));
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std::string s, eol, slat1, slon1, slat2, slon2, sazi, ss12, strc;
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std::istringstream str;
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int retval = 0;
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while (std::getline(*input, s)) {
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try {
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eol = "\n";
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if (!cdelim.empty()) {
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std::string::size_type m = s.find(cdelim);
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if (m != std::string::npos) {
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eol = " " + s.substr(m) + "\n";
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s = s.substr(0, m);
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}
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}
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str.clear(); str.str(s);
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if (linecalc) {
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if (!(str >> s12))
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throw GeographicErr("Incomplete input: " + s);
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if (str >> strc)
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throw GeographicErr("Extraneous input: " + strc);
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rhl.Position(s12, lat2, lon2, S12);
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*output << LatLonString(lat2, lon2, prec, dms, dmssep, longfirst)
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<< " " << Utility::str(S12, std::max(prec-7, 0)) << eol;
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} else if (inverse) {
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if (!(str >> slat1 >> slon1 >> slat2 >> slon2))
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throw GeographicErr("Incomplete input: " + s);
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if (str >> strc)
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throw GeographicErr("Extraneous input: " + strc);
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DMS::DecodeLatLon(slat1, slon1, lat1, lon1, longfirst);
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DMS::DecodeLatLon(slat2, slon2, lat2, lon2, longfirst);
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rh.Inverse(lat1, lon1, lat2, lon2, s12, azi12, S12);
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*output << AzimuthString(azi12, prec, dms, dmssep) << " "
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<< Utility::str(s12, prec) << " "
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<< Utility::str(S12, std::max(prec-7, 0)) << eol;
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} else { // direct
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if (!(str >> slat1 >> slon1 >> sazi >> s12))
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throw GeographicErr("Incomplete input: " + s);
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if (str >> strc)
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throw GeographicErr("Extraneous input: " + strc);
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DMS::DecodeLatLon(slat1, slon1, lat1, lon1, longfirst);
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azi12 = DMS::DecodeAzimuth(sazi);
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rh.Direct(lat1, lon1, azi12, s12, lat2, lon2, S12);
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*output << LatLonString(lat2, lon2, prec, dms, dmssep, longfirst)
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<< " " << Utility::str(S12, std::max(prec-7, 0)) << eol;
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}
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}
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catch (const std::exception& e) {
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// Write error message cout so output lines match input lines
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*output << "ERROR: " << e.what() << "\n";
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retval = 1;
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}
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}
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return retval;
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}
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catch (const std::exception& e) {
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std::cerr << "Caught exception: " << e.what() << "\n";
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return 1;
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}
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catch (...) {
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std::cerr << "Caught unknown exception\n";
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return 1;
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}
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}
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