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1 : 2 : /* 3 : * ALMA - Atacama Large Millimeter Array 4 : * (c) European Southern Observatory, 2002 5 : * (c) Associated Universities Inc., 2002 6 : * Copyright by ESO (in the framework of the ALMA collaboration), 7 : * Copyright by AUI (in the framework of the ALMA collaboration), 8 : * All rights reserved. 9 : * 10 : * This library is free software; you can redistribute it and/or 11 : * modify it under the terms of the GNU Lesser General Public 12 : * License as published by the Free software Foundation; either 13 : * version 2.1 of the License, or (at your option) any later version. 14 : * 15 : * This library is distributed in the hope that it will be useful, 16 : * but WITHOUT ANY WARRANTY, without even the implied warranty of 17 : * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 18 : * Lesser General Public License for more details. 19 : * 20 : * You should have received a copy of the GNU Lesser General Public 21 : * License along with this library; if not, write to the Free Software 22 : * Foundation, Inc., 59 Temple Place, Suite 330, Boston, 23 : * MA 02111-1307 USA 24 : * 25 : * ///////////////////////////////////////////////////////////////// 26 : * // WARNING! DO NOT MODIFY THIS FILE! // 27 : * // --------------------------------------------------------- // 28 : * // | This is generated code! Do not modify this file. | // 29 : * // | Any changes will be lost when the file is re-generated. | // 30 : * // --------------------------------------------------------- // 31 : * ///////////////////////////////////////////////////////////////// 32 : * 33 : * File CFluxCalibrationMethod.cpp 34 : */ 35 : #include <sstream> 36 : #include <alma/Enumerations/CFluxCalibrationMethod.h> 37 : #include <string> 38 : using namespace std; 39 : 40 0 : int CFluxCalibrationMethod::version() { 41 0 : return FluxCalibrationMethodMod::version; 42 : } 43 : 44 0 : string CFluxCalibrationMethod::revision () { 45 0 : return FluxCalibrationMethodMod::revision; 46 : } 47 : 48 0 : unsigned int CFluxCalibrationMethod::size() { 49 0 : return 3; 50 : } 51 : 52 : 53 : const std::string& CFluxCalibrationMethod::sABSOLUTE = "ABSOLUTE"; 54 : 55 : const std::string& CFluxCalibrationMethod::sRELATIVE = "RELATIVE"; 56 : 57 : const std::string& CFluxCalibrationMethod::sEFFICIENCY = "EFFICIENCY"; 58 : 59 2 : const std::vector<std::string> CFluxCalibrationMethod::names() { 60 2 : std::vector<std::string> enumSet; 61 : 62 2 : enumSet.insert(enumSet.end(), CFluxCalibrationMethod::sABSOLUTE); 63 : 64 2 : enumSet.insert(enumSet.end(), CFluxCalibrationMethod::sRELATIVE); 65 : 66 2 : enumSet.insert(enumSet.end(), CFluxCalibrationMethod::sEFFICIENCY); 67 : 68 2 : return enumSet; 69 0 : } 70 : 71 2 : std::string CFluxCalibrationMethod::name(const FluxCalibrationMethodMod::FluxCalibrationMethod& f) { 72 2 : switch (f) { 73 : 74 0 : case FluxCalibrationMethodMod::ABSOLUTE: 75 0 : return CFluxCalibrationMethod::sABSOLUTE; 76 : 77 0 : case FluxCalibrationMethodMod::RELATIVE: 78 0 : return CFluxCalibrationMethod::sRELATIVE; 79 : 80 2 : case FluxCalibrationMethodMod::EFFICIENCY: 81 2 : return CFluxCalibrationMethod::sEFFICIENCY; 82 : 83 : } 84 : // Impossible siutation but....who knows with C++ enums 85 0 : throw badInt((int) f); 86 : } 87 : 88 3 : FluxCalibrationMethodMod::FluxCalibrationMethod CFluxCalibrationMethod::newFluxCalibrationMethod(const std::string& name) { 89 : 90 3 : if (name == CFluxCalibrationMethod::sABSOLUTE) { 91 2 : return FluxCalibrationMethodMod::ABSOLUTE; 92 : } 93 : 94 1 : if (name == CFluxCalibrationMethod::sRELATIVE) { 95 0 : return FluxCalibrationMethodMod::RELATIVE; 96 : } 97 : 98 1 : if (name == CFluxCalibrationMethod::sEFFICIENCY) { 99 1 : return FluxCalibrationMethodMod::EFFICIENCY; 100 : } 101 : 102 0 : throw badString(name); 103 : } 104 : 105 1 : FluxCalibrationMethodMod::FluxCalibrationMethod CFluxCalibrationMethod::literal(const std::string& name) { 106 : 107 1 : if (name == CFluxCalibrationMethod::sABSOLUTE) { 108 0 : return FluxCalibrationMethodMod::ABSOLUTE; 109 : } 110 : 111 1 : if (name == CFluxCalibrationMethod::sRELATIVE) { 112 0 : return FluxCalibrationMethodMod::RELATIVE; 113 : } 114 : 115 1 : if (name == CFluxCalibrationMethod::sEFFICIENCY) { 116 1 : return FluxCalibrationMethodMod::EFFICIENCY; 117 : } 118 : 119 0 : throw badString(name); 120 : } 121 : 122 2 : FluxCalibrationMethodMod::FluxCalibrationMethod CFluxCalibrationMethod::from_int(unsigned int i) { 123 2 : vector<string> names_ = names(); 124 2 : if (i >= names_.size()) throw badInt(i); 125 4 : return newFluxCalibrationMethod(names_.at(i)); 126 2 : } 127 : 128 0 : string CFluxCalibrationMethod::badString(const string& name) { 129 0 : return "'"+name+"' does not correspond to any literal in the enumeration 'FluxCalibrationMethod'."; 130 : } 131 : 132 0 : string CFluxCalibrationMethod::badInt(unsigned int i) { 133 0 : ostringstream oss ; 134 0 : oss << "'" << i << "' is out of range for the enumeration 'FluxCalibrationMethod'."; 135 0 : return oss.str(); 136 0 : } 137 : 138 : namespace FluxCalibrationMethodMod { 139 0 : std::ostream & operator << ( std::ostream & out, const FluxCalibrationMethod& value) { 140 0 : out << CFluxCalibrationMethod::name(value); 141 0 : return out; 142 : } 143 : 144 0 : std::istream & operator >> ( std::istream & in , FluxCalibrationMethod& value ) { 145 0 : in.clear(); 146 0 : string s ; 147 0 : in >> s; 148 : try { 149 0 : value = CFluxCalibrationMethod::literal(s); 150 : } 151 0 : catch (string & m) { 152 0 : in.setstate(ios::failbit); 153 0 : } 154 0 : return in; 155 0 : } 156 : } 157 :