[805] | 1 | //
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| 2 | // C++ Implementation: STFiller
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| 3 | //
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| 4 | // Description:
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| 5 | //
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| 6 | //
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| 7 | // Author: Malte Marquarding <asap@atnf.csiro.au>, (C) 2006
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| 8 | //
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| 9 | // Copyright: See COPYING file that comes with this distribution
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| 10 | //
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| 11 | //
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[404] | 12 | #include <casa/iostream.h>
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| 13 | #include <casa/iomanip.h>
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| 14 |
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[125] | 15 | #include <casa/Exceptions.h>
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[284] | 16 | #include <casa/OS/Path.h>
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[290] | 17 | #include <casa/OS/File.h>
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[338] | 18 | #include <casa/Quanta/Unit.h>
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[805] | 19 | #include <casa/Arrays/ArrayMath.h>
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[1060] | 20 | #include <casa/Arrays/ArrayLogical.h>
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[805] | 21 | #include <casa/Utilities/Regex.h>
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| 22 |
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| 23 | #include <casa/Containers/RecordField.h>
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| 24 |
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| 25 | #include <tables/Tables/TableRow.h>
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| 26 |
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[2] | 27 | #include <atnf/PKSIO/PKSreader.h>
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[1391] | 28 | //#include <casa/System/ProgressMeter.h>
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[125] | 29 |
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[1391] | 30 |
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[835] | 31 | #include "STDefs.h"
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[878] | 32 | #include "STAttr.h"
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[2] | 33 |
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[805] | 34 | #include "STFiller.h"
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[901] | 35 | #include "STHeader.h"
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[805] | 36 |
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[125] | 37 | using namespace casa;
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[2] | 38 |
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[805] | 39 | namespace asap {
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| 40 |
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| 41 | STFiller::STFiller() :
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[2] | 42 | reader_(0),
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[405] | 43 | header_(0),
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[805] | 44 | table_(0)
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[420] | 45 | {
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[2] | 46 | }
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[805] | 47 |
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| 48 | STFiller::STFiller( CountedPtr< Scantable > stbl ) :
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[46] | 49 | reader_(0),
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[405] | 50 | header_(0),
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[805] | 51 | table_(stbl)
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[420] | 52 | {
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[46] | 53 | }
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[2] | 54 |
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[855] | 55 | STFiller::STFiller(const std::string& filename, int whichIF, int whichBeam ) :
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[2] | 56 | reader_(0),
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[405] | 57 | header_(0),
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[805] | 58 | table_(0)
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[420] | 59 | {
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[805] | 60 | open(filename, whichIF, whichBeam);
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[2] | 61 | }
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| 62 |
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[805] | 63 | STFiller::~STFiller()
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| 64 | {
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| 65 | close();
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[2] | 66 | }
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| 67 |
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[855] | 68 | void STFiller::open( const std::string& filename, int whichIF, int whichBeam )
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[805] | 69 | {
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[846] | 70 | if (table_.null()) {
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| 71 | table_ = new Scantable();
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| 72 | }
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[805] | 73 | if (reader_) { delete reader_; reader_ = 0; }
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| 74 | Bool haveBase, haveSpectra;
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[2] | 75 |
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| 76 | String inName(filename);
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[284] | 77 | Path path(inName);
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| 78 | inName = path.expandedName();
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[405] | 79 |
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[290] | 80 | File file(inName);
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[805] | 81 | if ( !file.exists() ) {
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[290] | 82 | throw(AipsError("File does not exist"));
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| 83 | }
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[87] | 84 | filename_ = inName;
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[332] | 85 |
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[405] | 86 | // Create reader and fill in values for arguments
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[2] | 87 | String format;
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[1060] | 88 | Vector<Bool> beams, ifs;
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| 89 | Vector<uInt> nchans,npols;
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| 90 | if ( (reader_ = getPKSreader(inName, 0, 0, format, beams, ifs,
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| 91 | nchans, npols, haveXPol_,haveBase, haveSpectra
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| 92 | )) == 0 ) {
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[405] | 93 | throw(AipsError("Creation of PKSreader failed"));
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[2] | 94 | }
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| 95 | if (!haveSpectra) {
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| 96 | delete reader_;
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| 97 | reader_ = 0;
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[87] | 98 | throw(AipsError("No spectral data in file."));
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[2] | 99 | return;
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| 100 | }
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| 101 | nBeam_ = beams.nelements();
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[1060] | 102 | nIF_ = ifs.nelements();
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[2] | 103 | // Get basic parameters.
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[1060] | 104 | if ( anyEQ(haveXPol_, True) ) {
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[717] | 105 | pushLog("Cross polarization present");
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[1060] | 106 | for (uInt i=0; i< npols.nelements();++i) {
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| 107 | if (npols[i] < 3) npols[i] += 2;// Convert Complex -> 2 Floats
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| 108 | }
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[110] | 109 | }
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[405] | 110 | if (header_) delete header_;
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[901] | 111 | header_ = new STHeader();
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[1060] | 112 | header_->nchan = max(nchans);
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| 113 | header_->npol = max(npols);
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[405] | 114 | header_->nbeam = nBeam_;
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| 115 |
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| 116 | Int status = reader_->getHeader(header_->observer, header_->project,
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| 117 | header_->antennaname, header_->antennaposition,
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| 118 | header_->obstype,header_->equinox,
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| 119 | header_->freqref,
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| 120 | header_->utc, header_->reffreq,
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| 121 | header_->bandwidth);
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| 122 |
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[2] | 123 | if (status) {
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| 124 | delete reader_;
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| 125 | reader_ = 0;
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[805] | 126 | delete header_;
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| 127 | header_ = 0;
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[87] | 128 | throw(AipsError("Failed to get header."));
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[2] | 129 | }
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[405] | 130 | if ((header_->obstype).matches("*SW*")) {
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[2] | 131 | // need robust way here - probably read ahead of next timestamp
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[717] | 132 | pushLog("Header indicates frequency switched observation.\n"
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[754] | 133 | "setting # of IFs = 1 ");
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[2] | 134 | nIF_ = 1;
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[805] | 135 | header_->obstype = String("fswitch");
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[2] | 136 | }
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[405] | 137 | // Determine Telescope and set brightness unit
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[342] | 138 |
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[1391] | 139 |
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[342] | 140 | Bool throwIt = False;
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[878] | 141 | Instrument inst = STAttr::convertInstrument(header_->antennaname, throwIt);
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[405] | 142 | header_->fluxunit = "Jy";
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[342] | 143 | if (inst==ATMOPRA || inst==TIDBINBILLA) {
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[405] | 144 | header_->fluxunit = "K";
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[342] | 145 | }
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[1188] | 146 | STAttr stattr;
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| 147 | header_->poltype = stattr.feedPolType(inst);
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[405] | 148 | header_->nif = nIF_;
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| 149 | header_->epoch = "UTC";
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[805] | 150 | // *** header_->frequnit = "Hz"
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[2] | 151 | // Apply selection criteria.
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| 152 | Vector<Int> ref;
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[332] | 153 | ifOffset_ = 0;
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| 154 | if (whichIF>=0) {
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| 155 | if (whichIF>=0 && whichIF<nIF_) {
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[1060] | 156 | ifs = False;
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| 157 | ifs(whichIF) = True;
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[805] | 158 | header_->nif = 1;
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| 159 | nIF_ = 1;
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| 160 | ifOffset_ = whichIF;
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[332] | 161 | } else {
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[805] | 162 | delete reader_;
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| 163 | reader_ = 0;
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| 164 | delete header_;
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| 165 | header_ = 0;
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| 166 | throw(AipsError("Illegal IF selection"));
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[332] | 167 | }
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| 168 | }
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| 169 | beamOffset_ = 0;
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| 170 | if (whichBeam>=0) {
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[805] | 171 | if (whichBeam>=0 && whichBeam<nBeam_) {
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[1060] | 172 | beams = False;
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| 173 | beams(whichBeam) = True;
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[805] | 174 | header_->nbeam = 1;
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| 175 | nBeam_ = 1;
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| 176 | beamOffset_ = whichBeam;
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| 177 | } else {
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| 178 | delete reader_;
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| 179 | reader_ = 0;
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| 180 | delete header_;
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| 181 | header_ = 0;
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| 182 | throw(AipsError("Illegal Beam selection"));
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| 183 | }
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[332] | 184 | }
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| 185 | Vector<Int> start(nIF_, 1);
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| 186 | Vector<Int> end(nIF_, 0);
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[1060] | 187 | reader_->select(beams, ifs, start, end, ref, True, haveXPol_[0], False);
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[846] | 188 | table_->setHeader(*header_);
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[1391] | 189 | //For MS, add the location of POINTING of the input MS so one get
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| 190 | //pointing data from there, if necessary.
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| 191 | //Also find nrow in MS
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| 192 | nInDataRow = 0;
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| 193 | if (format == "MS2") {
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| 194 | Path datapath(inName);
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| 195 | String ptTabPath = datapath.absoluteName();
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| 196 | Table inMS(ptTabPath);
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| 197 | nInDataRow = inMS.nrow();
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| 198 | ptTabPath.append("/POINTING");
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| 199 | table_->table().rwKeywordSet().define("POINTING", ptTabPath);
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| 200 | if ((header_->antennaname).matches("GBT")) {
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| 201 | String GOTabPath = datapath.absoluteName();
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| 202 | GOTabPath.append("/GBT_GO");
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| 203 | table_->table().rwKeywordSet().define("GBT_GO", GOTabPath);
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| 204 | }
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| 205 | }
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| 206 |
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[805] | 207 | }
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[405] | 208 |
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[805] | 209 | void STFiller::close( )
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| 210 | {
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| 211 | delete reader_;reader_=0;
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| 212 | delete header_;header_=0;
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| 213 | table_ = 0;
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[2] | 214 | }
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| 215 |
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[805] | 216 | int asap::STFiller::read( )
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| 217 | {
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[87] | 218 | int status = 0;
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| 219 |
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[17] | 220 | Int beamNo, IFno, refBeam, scanNo, cycleNo;
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[87] | 221 | Float azimuth, elevation, focusAxi, focusRot, focusTan,
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[2] | 222 | humidity, parAngle, pressure, temperature, windAz, windSpeed;
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[73] | 223 | Double bandwidth, freqInc, interval, mjd, refFreq, restFreq, srcVel;
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[1072] | 224 | String fieldName, srcName, tcalTime, obsType;
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[2] | 225 | Vector<Float> calFctr, sigma, tcal, tsys;
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| 226 | Matrix<Float> baseLin, baseSub;
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| 227 | Vector<Double> direction(2), scanRate(2), srcDir(2), srcPM(2);
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| 228 | Matrix<Float> spectra;
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| 229 | Matrix<uChar> flagtra;
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| 230 | Complex xCalFctr;
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| 231 | Vector<Complex> xPol;
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[1391] | 232 | Double min = 0.0;
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| 233 | Double max = nInDataRow;
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| 234 | //ProgressMeter fillpm(min, max, "Data importing progress");
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| 235 | int n = 0;
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[805] | 236 | while ( status == 0 ) {
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| 237 | status = reader_->read(scanNo, cycleNo, mjd, interval, fieldName,
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[1072] | 238 | srcName, srcDir, srcPM, srcVel, obsType, IFno,
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| 239 | refFreq, bandwidth, freqInc, restFreq, tcal, tcalTime,
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[805] | 240 | azimuth, elevation, parAngle, focusAxi,
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| 241 | focusTan, focusRot, temperature, pressure,
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| 242 | humidity, windSpeed, windAz, refBeam,
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| 243 | beamNo, direction, scanRate,
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| 244 | tsys, sigma, calFctr, baseLin, baseSub,
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| 245 | spectra, flagtra, xCalFctr, xPol);
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| 246 | if ( status != 0 ) break;
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[1391] | 247 | n += 1;
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| 248 |
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[1081] | 249 | Regex filterrx(".*[SL|PA]$");
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[1110] | 250 | Regex obsrx("^AT.+");
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| 251 | if ( header_->antennaname.matches(obsrx) && obsType.matches(filterrx)) {
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| 252 | //cerr << "ignoring paddle scan" << endl;
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[1081] | 253 | continue;
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| 254 | }
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[805] | 255 | TableRow row(table_->table());
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| 256 | TableRecord& rec = row.record();
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[999] | 257 | // fields that don't get used and are just passed through asap
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| 258 | RecordFieldPtr<Array<Double> > srateCol(rec, "SCANRATE");
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| 259 | *srateCol = scanRate;
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| 260 | RecordFieldPtr<Array<Double> > spmCol(rec, "SRCPROPERMOTION");
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| 261 | *spmCol = srcPM;
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| 262 | RecordFieldPtr<Array<Double> > sdirCol(rec, "SRCDIRECTION");
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| 263 | *sdirCol = srcDir;
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| 264 | RecordFieldPtr<Double> svelCol(rec, "SRCVELOCITY");
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| 265 | *svelCol = srcVel;
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| 266 | // the real stuff
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[972] | 267 | RecordFieldPtr<Int> fitCol(rec, "FIT_ID");
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| 268 | *fitCol = -1;
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[805] | 269 | RecordFieldPtr<uInt> scanoCol(rec, "SCANNO");
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| 270 | *scanoCol = scanNo-1;
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| 271 | RecordFieldPtr<uInt> cyclenoCol(rec, "CYCLENO");
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| 272 | *cyclenoCol = cycleNo-1;
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| 273 | RecordFieldPtr<Double> mjdCol(rec, "TIME");
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| 274 | *mjdCol = mjd;
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| 275 | RecordFieldPtr<Double> intCol(rec, "INTERVAL");
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| 276 | *intCol = interval;
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| 277 | RecordFieldPtr<String> srcnCol(rec, "SRCNAME");
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| 278 | RecordFieldPtr<Int> srctCol(rec, "SRCTYPE");
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[1391] | 279 | RecordFieldPtr<String> fieldnCol(rec, "FIELDNAME");
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| 280 | *fieldnCol = fieldName;
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[805] | 281 | // try to auto-identify if it is on or off.
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[922] | 282 | Regex rx(".*[e|w|_R]$");
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[942] | 283 | Regex rx2("_S$");
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[805] | 284 | Int match = srcName.matches(rx);
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| 285 | if (match) {
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| 286 | *srcnCol = srcName;
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| 287 | } else {
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| 288 | *srcnCol = srcName.before(rx2);
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| 289 | }
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| 290 | //*srcnCol = srcName;//.before(rx2);
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| 291 | *srctCol = match;
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| 292 | RecordFieldPtr<uInt> beamCol(rec, "BEAMNO");
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| 293 | *beamCol = beamNo-beamOffset_-1;
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| 294 | RecordFieldPtr<Int> rbCol(rec, "REFBEAMNO");
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| 295 | Int rb = -1;
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| 296 | if (nBeam_ > 1 ) rb = refBeam-1;
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| 297 | *rbCol = rb;
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| 298 | RecordFieldPtr<uInt> ifCol(rec, "IFNO");
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| 299 | *ifCol = IFno-ifOffset_- 1;
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| 300 | uInt id;
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| 301 | /// @todo this has to change when nchan isn't global anymore
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| 302 | id = table_->frequencies().addEntry(Double(header_->nchan/2),
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| 303 | refFreq, freqInc);
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| 304 | RecordFieldPtr<uInt> mfreqidCol(rec, "FREQ_ID");
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| 305 | *mfreqidCol = id;
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[25] | 306 |
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[805] | 307 | id = table_->molecules().addEntry(restFreq);
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| 308 | RecordFieldPtr<uInt> molidCol(rec, "MOLECULE_ID");
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| 309 | *molidCol = id;
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[414] | 310 |
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[805] | 311 | id = table_->tcal().addEntry(tcalTime, tcal);
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| 312 | RecordFieldPtr<uInt> mcalidCol(rec, "TCAL_ID");
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| 313 | *mcalidCol = id;
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| 314 | id = table_->weather().addEntry(temperature, pressure, humidity,
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| 315 | windSpeed, windAz);
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| 316 | RecordFieldPtr<uInt> mweatheridCol(rec, "WEATHER_ID");
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| 317 | *mweatheridCol = id;
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| 318 | RecordFieldPtr<uInt> mfocusidCol(rec, "FOCUS_ID");
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| 319 | id = table_->focus().addEntry(focusAxi, focusTan, focusRot);
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| 320 | *mfocusidCol = id;
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| 321 | RecordFieldPtr<Array<Double> > dirCol(rec, "DIRECTION");
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| 322 | *dirCol = direction;
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[922] | 323 | RecordFieldPtr<Float> azCol(rec, "AZIMUTH");
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[805] | 324 | *azCol = azimuth;
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[922] | 325 | RecordFieldPtr<Float> elCol(rec, "ELEVATION");
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[805] | 326 | *elCol = elevation;
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[405] | 327 |
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[805] | 328 | RecordFieldPtr<Float> parCol(rec, "PARANGLE");
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| 329 | *parCol = parAngle;
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[332] | 330 |
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[805] | 331 | RecordFieldPtr< Array<Float> > specCol(rec, "SPECTRA");
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| 332 | RecordFieldPtr< Array<uChar> > flagCol(rec, "FLAGTRA");
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| 333 | RecordFieldPtr< uInt > polnoCol(rec, "POLNO");
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[405] | 334 |
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[805] | 335 | RecordFieldPtr< Array<Float> > tsysCol(rec, "TSYS");
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| 336 | // Turn the (nchan,npol) matrix and possible complex xPol vector
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| 337 | // into 2-4 rows in the scantable
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| 338 | Vector<Float> tsysvec(1);
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| 339 | // Why is spectra.ncolumn() == 3 for haveXPol_ == True
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| 340 | uInt npol = (spectra.ncolumn()==1 ? 1: 2);
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| 341 | for ( uInt i=0; i< npol; ++i ) {
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| 342 | tsysvec = tsys(i);
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| 343 | *tsysCol = tsysvec;
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| 344 | *polnoCol = i;
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[405] | 345 |
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[805] | 346 | *specCol = spectra.column(i);
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| 347 | *flagCol = flagtra.column(i);
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| 348 | table_->table().addRow();
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| 349 | row.put(table_->table().nrow()-1, rec);
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[2] | 350 | }
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[1060] | 351 | if ( haveXPol_[0] ) {
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[805] | 352 | // no tsys given for xpol, so emulate it
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| 353 | tsysvec = sqrt(tsys[0]*tsys[1]);
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| 354 | *tsysCol = tsysvec;
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| 355 | // add real part of cross pol
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| 356 | *polnoCol = 2;
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| 357 | Vector<Float> r(real(xPol));
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| 358 | *specCol = r;
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| 359 | // make up flags from linears
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| 360 | /// @fixme this has to be a bitwise or of both pols
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| 361 | *flagCol = flagtra.column(0);// | flagtra.column(1);
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| 362 | table_->table().addRow();
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| 363 | row.put(table_->table().nrow()-1, rec);
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| 364 | // ad imaginary part of cross pol
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| 365 | *polnoCol = 3;
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| 366 | Vector<Float> im(imag(xPol));
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| 367 | *specCol = im;
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| 368 | table_->table().addRow();
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| 369 | row.put(table_->table().nrow()-1, rec);
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[2] | 370 | }
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[1391] | 371 | //fillpm._update(n);
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[805] | 372 | }
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| 373 | if (status > 0) {
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| 374 | close();
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| 375 | throw(AipsError("Reading error occured, data possibly corrupted."));
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| 376 | }
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[1391] | 377 | //fillpm.done();
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[2] | 378 | return status;
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| 379 | }
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[805] | 380 |
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| 381 | }//namespace asap
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