| 1 | //#---------------------------------------------------------------------------
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| 2 | //# MBrecord.cc: Class to store an MBFITS single-dish data record.
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| 3 | //#---------------------------------------------------------------------------
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| 4 | //# livedata - processing pipeline for single-dish, multibeam spectral data.
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| 5 | //# Copyright (C) 2000-2009, Australia Telescope National Facility, CSIRO
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| 6 | //#
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| 7 | //# This file is part of livedata.
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| 8 | //#
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| 9 | //# livedata is free software: you can redistribute it and/or modify it under
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| 10 | //# the terms of the GNU General Public License as published by the Free
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| 11 | //# Software Foundation, either version 3 of the License, or (at your option)
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| 12 | //# any later version.
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| 13 | //#
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| 14 | //# livedata is distributed in the hope that it will be useful, but WITHOUT
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| 15 | //# ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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| 16 | //# FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
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| 17 | //# more details.
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| 18 | //#
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| 19 | //# You should have received a copy of the GNU General Public License along
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| 20 | //# with livedata.  If not, see <http://www.gnu.org/licenses/>.
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| 21 | //#
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| 22 | //# Correspondence concerning livedata may be directed to:
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| 23 | //#        Internet email: mcalabre@atnf.csiro.au
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| 24 | //#        Postal address: Dr. Mark Calabretta
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| 25 | //#                        Australia Telescope National Facility, CSIRO
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| 26 | //#                        PO Box 76
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| 27 | //#                        Epping NSW 1710
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| 28 | //#                        AUSTRALIA
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| 29 | //#
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| 30 | //# http://www.atnf.csiro.au/computing/software/livedata.html
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| 31 | //# $Id: MBrecord.cc,v 19.14 2009-09-29 07:33:38 cal103 Exp $
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| 32 | //#---------------------------------------------------------------------------
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| 33 | //# The MBrecord class stores an MBFITS single-dish data record.
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| 34 | //#
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| 35 | //# Original: 2000/08/01 Mark Calabretta, ATNF
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| 36 | //#---------------------------------------------------------------------------
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| 37 | 
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| 38 | #include <atnf/PKSIO/MBrecord.h>
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| 39 | 
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| 40 | #include <string.h>
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| 41 | 
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| 42 | //--------------------------------------------------------- MBrecord::MBrecord
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| 43 | 
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| 44 | // Default constructor.
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| 45 | 
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| 46 | MBrecord::MBrecord(int nif)
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| 47 | {
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| 48 |   // Construct arrays for the required number of IFs.
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| 49 |   cNIF = 0;
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| 50 |   setNIFs(nif);
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| 51 | 
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| 52 |   scanNo  = 0;
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| 53 |   cycleNo = 0;
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| 54 |   beamNo  = 0;
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| 55 |   pCode   = 0;
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| 56 |   rateAge = 0.0f;
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| 57 |   raRate  = 0.0f;
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| 58 |   decRate = 0.0f;
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| 59 |   nIF     = 0;
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| 60 | }
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| 61 | 
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| 62 | //-------------------------------------------------------- MBrecord::~MBrecord
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| 63 | 
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| 64 | // Destructor.
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| 65 | 
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| 66 | MBrecord::~MBrecord()
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| 67 | {
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| 68 |   free();
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| 69 | }
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| 70 | 
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| 71 | //---------------------------------------------------------- MBrecord::setNIFs
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| 72 | 
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| 73 | // Expand arrays if necessary to accomodate the required number of IFs; never
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| 74 | // contracts them.
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| 75 | 
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| 76 | void MBrecord::setNIFs(int nif)
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| 77 | {
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| 78 |   if (nif < 1) return;
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| 79 | 
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| 80 |   if (cNIF < nif) {
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| 81 |     // Too few IFs, free everything.
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| 82 |     if (cNIF) free();
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| 83 |   }
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| 84 | 
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| 85 |   if (cNIF == 0) {
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| 86 |     IFno     = new short[nif];
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| 87 |     nChan    = new int[nif];
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| 88 |     nPol     = new int[nif];
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| 89 |     fqRefPix = new float[nif];
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| 90 |     fqRefVal = new double[nif];
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| 91 |     fqDelt   = new double[nif];
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| 92 | 
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| 93 |     tsys     = new float[nif][2];
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| 94 |     calfctr  = new float[nif][2];
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| 95 |     xcalfctr = new float[nif][2];
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| 96 |     baseLin  = new float[nif][2][2];
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| 97 |     baseSub  = new float[nif][2][24];
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| 98 |     spectra  = new float*[nif];
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| 99 |     flagged  = new unsigned char*[nif];
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| 100 |     xpol     = new float*[nif];
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| 101 |     tcal     = new float[nif][2];
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| 102 | 
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| 103 |     cNProd   = new int[nif];
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| 104 |     cNXPol   = new int[nif];
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| 105 | 
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| 106 |     for (int iIF = 0; iIF < nif; iIF++) {
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| 107 |       spectra[iIF] = 0x0;
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| 108 |       flagged[iIF] = 0x0;
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| 109 |       xpol[iIF]    = 0x0;
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| 110 | 
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| 111 |       cNProd[iIF] = 0;
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| 112 |       cNXPol[iIF] = 0;
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| 113 |     }
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| 114 | 
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| 115 |     // The number we can accomodate, may exceed the number we have.
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| 116 |     cNIF = nif;
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| 117 |   }
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| 118 | }
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| 119 | 
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| 120 | //--------------------------------------------------------- MBrecord::allocate
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| 121 | 
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| 122 | // Ensure there is enough storage for the specified number of spectral
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| 123 | // products (channels x polarizations) for IF with array index iIF (i.e.
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| 124 | // the actual IF number is IFno[iIF]).  Expands arrays if necessary but
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| 125 | // never contracts.
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| 126 | 
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| 127 | void MBrecord::allocate(
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| 128 |         int iIF,
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| 129 |         int nprod,
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| 130 |         int nxpol)
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| 131 | {
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| 132 |   // Don't mess with storage we didn't allocate.
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| 133 |   if (cNProd[iIF] || spectra[iIF] == 0x0) {
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| 134 |     if (cNProd[iIF] < nprod) {
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| 135 |       if (cNProd[iIF]) {
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| 136 |         // Free storage previously allocated.
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| 137 |         delete [] spectra[iIF];
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| 138 |         delete [] flagged[iIF];
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| 139 |       }
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| 140 | 
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| 141 |       // Reallocate data storage.
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| 142 |       cNProd[iIF]  = nprod;
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| 143 |       spectra[iIF] = new float[nprod];
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| 144 |       flagged[iIF] = new unsigned char[nprod];
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| 145 |     }
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| 146 |   }
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| 147 | 
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| 148 |   if (cNXPol[iIF] || xpol[iIF] == 0x0) {
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| 149 |     if (cNXPol[iIF] < nxpol) {
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| 150 |       if (cNXPol[iIF]) {
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| 151 |         // Free storage previously allocated.
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| 152 |         delete [] xpol[iIF];
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| 153 |       }
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| 154 | 
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| 155 |       // Reallocate xpol storage.
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| 156 |       cNXPol[iIF] = nxpol;
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| 157 |       xpol[iIF] = new float[nxpol];
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| 158 |     }
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| 159 |   }
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| 160 | }
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| 161 | 
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| 162 | //------------------------------------------------------------- MBrecord::free
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| 163 | 
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| 164 | // Free all allocated storage.
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| 165 | 
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| 166 | void MBrecord::free()
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| 167 | {
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| 168 |   if (cNIF) {
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| 169 |     for (int iIF = 0; iIF < cNIF; iIF++) {
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| 170 |       // Don't free storage we didn't allocate.
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| 171 |       if (cNProd[iIF]) {
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| 172 |         delete [] spectra[iIF];
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| 173 |         delete [] flagged[iIF];
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| 174 |       }
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| 175 | 
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| 176 |       if (cNXPol[iIF]) {
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| 177 |         delete [] xpol[iIF];
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| 178 |       }
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| 179 |     }
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| 180 | 
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| 181 |     delete [] IFno;
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| 182 |     delete [] nChan;
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| 183 |     delete [] nPol;
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| 184 |     delete [] fqRefPix;
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| 185 |     delete [] fqRefVal;
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| 186 |     delete [] fqDelt;
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| 187 | 
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| 188 |     delete [] tsys;
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| 189 |     delete [] calfctr;
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| 190 |     delete [] xcalfctr;
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| 191 |     delete [] baseLin;
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| 192 |     delete [] baseSub;
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| 193 | 
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| 194 |     delete [] spectra;
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| 195 |     delete [] flagged;
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| 196 |     delete [] xpol;
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| 197 | 
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| 198 |     delete [] tcal;
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| 199 | 
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| 200 |     delete [] cNProd;
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| 201 |     delete [] cNXPol;
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| 202 | 
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| 203 |     cNIF = 0;
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| 204 |   }
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| 205 | }
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| 206 | 
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| 207 | //-------------------------------------------------------- MBrecord::operator=
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| 208 | 
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| 209 | // Do a deep copy of one MBrecord to another.
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| 210 | 
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| 211 | MBrecord &MBrecord::operator=(const MBrecord &other)
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| 212 | {
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| 213 |   if (this == &other) {
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| 214 |     return *this;
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| 215 |   }
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| 216 | 
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| 217 |   setNIFs(other.nIF);
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| 218 | 
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| 219 |   scanNo  = other.scanNo;
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| 220 |   cycleNo = other.cycleNo;
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| 221 |   strcpy(datobs, other.datobs);
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| 222 |   utc = other.utc;
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| 223 | 
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| 224 |   exposure = other.exposure;
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| 225 |   strcpy(srcName, other.srcName);
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| 226 |   srcRA  = other.srcRA;
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| 227 |   srcDec = other.srcDec;
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| 228 |   restFreq = other.restFreq;
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| 229 |   strcpy(obsType, other.obsType);
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| 230 | 
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| 231 |   // Beam-dependent parameters.
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| 232 |   beamNo  = other.beamNo;
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| 233 |   ra      = other.ra;
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| 234 |   dec     = other.dec;
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| 235 |   pCode   = other.pCode;
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| 236 |   rateAge = other.rateAge;
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| 237 |   raRate  = other.raRate;
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| 238 |   decRate = other.decRate;
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| 239 | 
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| 240 |   // IF-dependent parameters.
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| 241 |   nIF = other.nIF;
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| 242 |   for (int iIF = 0; iIF < nIF; iIF++) {
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| 243 |     IFno[iIF]     = other.IFno[iIF];
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| 244 |     nChan[iIF]    = other.nChan[iIF];
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| 245 |     nPol[iIF]     = other.nPol[iIF];
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| 246 |     fqRefPix[iIF] = other.fqRefPix[iIF];
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| 247 |     fqRefVal[iIF] = other.fqRefVal[iIF];
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| 248 |     fqDelt[iIF]   = other.fqDelt[iIF];
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| 249 | 
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| 250 |     for (int j = 0; j < 2; j++) {
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| 251 |       tsys[iIF][j] = other.tsys[iIF][j];
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| 252 |     }
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| 253 | 
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| 254 |     for (int j = 0; j < 2; j++) {
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| 255 |       calfctr[iIF][j]  = other.calfctr[iIF][j];
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| 256 |       xcalfctr[iIF][j] = other.xcalfctr[iIF][j];
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| 257 |     }
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| 258 | 
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| 259 |     haveBase = other.haveBase;
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| 260 |     for (int ipol = 0; ipol < nPol[iIF]; ipol++) {
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| 261 |       baseLin[iIF][ipol][0] = other.baseLin[iIF][ipol][0];
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| 262 |       baseLin[iIF][ipol][1] = other.baseLin[iIF][ipol][1];
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| 263 | 
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| 264 |       for (int j = 0; j < 24; j++) {
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| 265 |         baseSub[iIF][ipol][j] = other.baseSub[iIF][ipol][j];
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| 266 |       }
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| 267 |     }
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| 268 | 
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| 269 |     for (int j = 0; j < 2; j++) {
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| 270 |       tcal[iIF][j] = other.tcal[iIF][j];
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| 271 |     }
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| 272 |   }
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| 273 | 
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| 274 |   haveSpectra = other.haveSpectra;
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| 275 |   if (haveSpectra) {
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| 276 |     for (int iIF = 0; iIF < nIF; iIF++) {
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| 277 |       int nprod = nChan[iIF] * nPol[iIF];
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| 278 |       int nxpol = other.xpol[iIF] ? nChan[iIF] * 2 : 0;
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| 279 |       allocate(iIF, nprod, nxpol);
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| 280 |     }
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| 281 | 
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| 282 |     // Copy data.
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| 283 |     for (int iIF = 0; iIF < nIF; iIF++) {
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| 284 |       float *specp  = spectra[iIF];
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| 285 |       float *ospecp = other.spectra[iIF];
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| 286 |       unsigned char *flagp  = flagged[iIF];
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| 287 |       unsigned char *oflagp = other.flagged[iIF];
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| 288 |       for (int j = 0; j < nChan[iIF]*nPol[iIF]; j++) {
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| 289 |         *(specp++) = *(ospecp++);
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| 290 |         *(flagp++) = *(oflagp++);
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| 291 |       }
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| 292 | 
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| 293 |       if (xpol[iIF]) {
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| 294 |         float *xpolp  = xpol[iIF];
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| 295 |         float *oxpolp = other.xpol[iIF];
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| 296 |         for (int j = 0; j < 2*nChan[iIF]; j++) {
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| 297 |           *(xpolp++) = *(oxpolp++);
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| 298 |         }
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| 299 |       }
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| 300 |     }
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| 301 |   }
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| 302 | 
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| 303 |   extraSysCal = other.extraSysCal;
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| 304 | 
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| 305 |   azimuth   = other.azimuth;
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| 306 |   elevation = other.elevation;
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| 307 |   parAngle  = other.parAngle;
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| 308 |   paRate    = other.paRate;
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| 309 | 
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| 310 |   focusAxi  = other.focusAxi;
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| 311 |   focusTan  = other.focusTan;
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| 312 |   focusRot  = other.focusRot;
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| 313 | 
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| 314 |   temp      = other.temp;
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| 315 |   pressure  = other.pressure;
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| 316 |   humidity  = other.humidity;
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| 317 |   windSpeed = other.windSpeed;
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| 318 |   windAz    = other.windAz;
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| 319 | 
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| 320 |   strcpy(tcalTime, other.tcalTime);
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| 321 | 
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| 322 |   refBeam = other.refBeam;
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| 323 | 
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| 324 |   return *this;
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| 325 | }
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| 326 | 
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| 327 | //---------------------------------------------------------- MBrecord::extract
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| 328 | 
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| 329 | // Extract a selected IF from one MBrecord into another.
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| 330 | 
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| 331 | int MBrecord::extract(const MBrecord &other, int iIF)
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| 332 | {
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| 333 |   if (this == &other) {
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| 334 |     return 1;
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| 335 |   }
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| 336 | 
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| 337 |   setNIFs(1);
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| 338 | 
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| 339 |   scanNo  = other.scanNo;
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| 340 |   cycleNo = other.cycleNo;
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| 341 |   strcpy(datobs, other.datobs);
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| 342 |   utc = other.utc;
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| 343 | 
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| 344 |   exposure = other.exposure;
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| 345 |   strcpy(srcName, other.srcName);
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| 346 |   srcRA  = other.srcRA;
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| 347 |   srcDec = other.srcDec;
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| 348 |   restFreq = other.restFreq;
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| 349 |   strcpy(obsType, other.obsType);
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| 350 | 
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| 351 |   // Beam-dependent parameters.
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| 352 |   beamNo  = other.beamNo;
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| 353 |   ra      = other.ra;
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| 354 |   dec     = other.dec;
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| 355 |   pCode   = other.pCode;
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| 356 |   rateAge = other.rateAge;
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| 357 |   raRate  = other.raRate;
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| 358 |   decRate = other.decRate;
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| 359 |   paRate  = other.paRate;
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| 360 | 
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| 361 |   // IF-dependent parameters.
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| 362 |   nIF = 1;
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| 363 |   IFno[0]     = other.IFno[iIF];
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| 364 |   nChan[0]    = other.nChan[iIF];
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| 365 |   nPol[0]     = other.nPol[iIF];
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| 366 |   fqRefPix[0] = other.fqRefPix[iIF];
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| 367 |   fqRefVal[0] = other.fqRefVal[iIF];
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| 368 |   fqDelt[0]   = other.fqDelt[iIF];
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| 369 | 
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| 370 |   for (int j = 0; j < 2; j++) {
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| 371 |     tsys[0][j] = other.tsys[iIF][j];
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| 372 |   }
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| 373 | 
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| 374 |   for (int j = 0; j < 2; j++) {
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| 375 |     calfctr[0][j]  = other.calfctr[iIF][j];
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| 376 |     xcalfctr[0][j] = other.xcalfctr[iIF][j];
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| 377 |   }
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| 378 | 
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| 379 |   haveBase = other.haveBase;
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| 380 |   for (int ipol = 0; ipol < nPol[0]; ipol++) {
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| 381 |     baseLin[0][ipol][0] = other.baseLin[iIF][ipol][0];
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| 382 |     baseLin[0][ipol][1] = other.baseLin[iIF][ipol][1];
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| 383 | 
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| 384 |     for (int j = 0; j < 24; j++) {
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| 385 |       baseSub[0][ipol][j] = other.baseSub[iIF][ipol][j];
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| 386 |     }
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| 387 |   }
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| 388 | 
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| 389 |   for (int j = 0; j < 2; j++) {
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| 390 |     tcal[0][j] = other.tcal[iIF][j];
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| 391 |   }
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| 392 | 
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| 393 |   haveSpectra = other.haveSpectra;
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| 394 |   if (haveSpectra) {
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| 395 |     int nprod = nChan[0] * nPol[0];
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| 396 |     int nxpol = other.xpol[iIF] ? nChan[0] * 2 : 0;
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| 397 |     allocate(0, nprod, nxpol);
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| 398 | 
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| 399 |     // Copy data.
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| 400 |     float *specp  = spectra[0];
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| 401 |     float *ospecp = other.spectra[iIF];
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| 402 |     unsigned char *flagp  = flagged[0];
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| 403 |     unsigned char *oflagp = other.flagged[iIF];
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| 404 |     for (int j = 0; j < nChan[0]*nPol[0]; j++) {
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| 405 |       *(specp++) = *(ospecp++);
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| 406 |       *(flagp++) = *(oflagp++);
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| 407 |     }
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| 408 | 
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| 409 |     if (xpol[0]) {
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| 410 |       float *xpolp  = xpol[0];
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| 411 |       float *oxpolp = other.xpol[iIF];
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| 412 |       for (int j = 0; j < 2*nChan[0]; j++) {
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| 413 |         *(xpolp++) = *(oxpolp++);
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| 414 |       }
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| 415 |     }
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| 416 |   }
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| 417 | 
 | 
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| 418 |   extraSysCal = other.extraSysCal;
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| 419 | 
 | 
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| 420 |   azimuth   = other.azimuth;
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| 421 |   elevation = other.elevation;
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| 422 |   parAngle  = other.parAngle;
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| 423 | 
 | 
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| 424 |   focusAxi  = other.focusAxi;
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| 425 |   focusTan  = other.focusTan;
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| 426 |   focusRot  = other.focusRot;
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| 427 | 
 | 
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| 428 |   temp      = other.temp;
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| 429 |   pressure  = other.pressure;
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| 430 |   humidity  = other.humidity;
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| 431 |   windSpeed = other.windSpeed;
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| 432 |   windAz    = other.windAz;
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| 433 | 
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| 434 |   strcpy(tcalTime, other.tcalTime);
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| 435 | 
 | 
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| 436 |   refBeam = other.refBeam;
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| 437 | 
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| 438 |   return 0;
 | 
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| 439 | }
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