source: trunk/src/STWriter.cpp@ 2005

Last change on this file since 2005 was 2005, checked in by Kana Sugimoto, 15 years ago

New Development: No

JIRA Issue: Yes (CAS-2817/ASAP-232)

Ready for Test: Yes

Interface Changes: Yes

What Interface Changed: added a new function SrcType::getName(int)

Test Programs: sdlist (CASA) or scantable.summary()

Put in Release Notes: No

Module(s): scantable, sdlist, sdplot

Description:

Added a new function SrcType::getName(int srctype) which returns
a source type in string.
The source type of each scan is retuned by Scantable::summary.


  • Property svn:eol-style set to native
  • Property svn:keywords set to Author Date Id Revision
File size: 13.0 KB
RevLine 
[470]1//#---------------------------------------------------------------------------
[822]2//# STWriter.cc: ASAP class to write out single dish spectra.
[28]3//#---------------------------------------------------------------------------
4//# Copyright (C) 2004
[125]5//# ATNF
[28]6//#
7//# This program is free software; you can redistribute it and/or modify it
8//# under the terms of the GNU General Public License as published by the Free
9//# Software Foundation; either version 2 of the License, or (at your option)
10//# any later version.
11//#
12//# This program is distributed in the hope that it will be useful, but
13//# WITHOUT ANY WARRANTY; without even the implied warranty of
14//# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General
15//# Public License for more details.
16//#
17//# You should have received a copy of the GNU General Public License along
18//# with this program; if not, write to the Free Software Foundation, Inc.,
19//# 675 Massachusetts Ave, Cambridge, MA 02139, USA.
20//#
21//# Correspondence concerning this software should be addressed as follows:
22//# Internet email: Malte.Marquarding@csiro.au
23//# Postal address: Malte Marquarding,
24//# Australia Telescope National Facility,
25//# P.O. Box 76,
26//# Epping, NSW, 2121,
27//# AUSTRALIA
28//#
29//# $Id: STWriter.cpp 2005 2011-02-23 08:19:36Z KanaSugimoto $
30//#---------------------------------------------------------------------------
31
32#include <string>
33
[81]34#include <casa/aips.h>
[470]35#include <casa/Arrays/Array.h>
36#include <casa/Arrays/Vector.h>
[81]37#include <casa/BasicSL/Complex.h>
38#include <casa/Utilities/CountedPtr.h>
[470]39#include <casa/Utilities/Assert.h>
[28]40
[1449]41#include <atnf/PKSIO/PKSrecord.h>
[28]42#include <atnf/PKSIO/PKSMS2writer.h>
43#include <atnf/PKSIO/PKSSDwriter.h>
[1819]44#include <atnf/PKSIO/SrcType.h>
[28]45
[827]46#include <tables/Tables/Table.h>
47#include <tables/Tables/TableIter.h>
48#include <tables/Tables/TableRow.h>
[324]49#include <tables/Tables/ArrayColumn.h>
50
[1443]51#include "STFITSImageWriter.h"
[988]52#include "STAsciiWriter.h"
[901]53#include "STHeader.h"
[1575]54#include "STMath.h"
[324]55
[1575]56
[822]57#include "STWriter.h"
[28]58
[125]59using namespace casa;
[827]60namespace asap {
[28]61
[822]62STWriter::STWriter(const std::string &format)
[28]63{
[988]64 format_ = format;
65 String t(format_);
[450]66 t.upcase();
[1443]67 if (t == "MS2") {
[988]68 writer_ = new PKSMS2writer();
[1443]69 } else if (t == "SDFITS") {
[988]70 writer_ = new PKSSDwriter();
[1443]71 } else if (t == "ASCII" || t == "FITS" || t == "CLASS") {
[988]72 writer_ = 0;
[450]73 } else {
[988]74 throw (AipsError("Unrecognized export format"));
[28]75 }
76}
77
[822]78STWriter::~STWriter()
[28]79{
[988]80 if (writer_) {
81 delete writer_;
[192]82 }
[28]83}
84
[822]85Int STWriter::setFormat(const std::string &format)
[28]86{
[988]87 if (format != format_) {
88 if (writer_) delete writer_;
[450]89 }
[827]90
[988]91 format_ = format;
92 String t(format_);
[450]93 t.upcase();
94 if (t== "MS2") {
[988]95 writer_ = new PKSMS2writer();
[450]96 } else if (t== "SDFITS") {
[988]97 writer_ = new PKSSDwriter();
[1443]98 } else if (t == "ASCII" || t == "FITS" || t == "CLASS") {
[988]99 writer_ = 0;
[450]100 } else {
101 throw (AipsError("Unrecognized Format"));
[28]102 }
103 return 0;
104}
105
[827]106Int STWriter::write(const CountedPtr<Scantable> in,
107 const std::string &filename)
[28]108{
[1575]109 // If we write out foreign formats we have to convert the frequency system
110 // into the output frame, as we do everything related to SPectarlCoordinates
111 // in asap on-the-fly.
[192]112
[1575]113 CountedPtr<Scantable> inst = in;
114 if (in->frequencies().getFrame(true) != in->frequencies().getFrame(false)) {
115 STMath stm(false);
116 inst = stm.frequencyAlign(in);
117 }
118
[1280]119 if (format_=="ASCII") {
120 STAsciiWriter iw;
[1575]121 // ASCII calls SpectralCoordinate::toWorld so no freqAlign use 'in'
[1280]122 if (iw.write(*in, filename)) {
123 return 0;
124 } else {
125 return 1;
126 }
[1443]127 } else if ( format_ == "FITS" || format_ == "CLASS") {
128 STFITSImageWriter iw;
129 if (format_ == "CLASS") {
130 iw.setClass(True);
131 }
[1575]132 if (iw.write(*inst, filename)) {
[1443]133 return 0;
134 }
[199]135 }
[192]136
[827]137 // MS or SDFITS
[192]138
[28]139 // Extract the header from the table.
[1391]140 // this is a little different from what I have done
141 // before. Need to check with the Offline User Test data
[1575]142 STHeader hdr = inst->getHeader();
[1060]143 //const Int nPol = hdr.npol;
144 //const Int nChan = hdr.nchan;
[1575]145 std::vector<uint> ifs = inst->getIFNos();
146 int nIF = inst->nif();//ifs.size();
[1060]147 Vector<uInt> nPol(nIF),nChan(nIF);
148 Vector<Bool> havexpol(nIF);
[1391]149 String fluxUnit = hdr.fluxunit;
[1688]150 fluxUnit.upcase();
[1295]151 nPol = 0;nChan = 0; havexpol = False;
[1305]152 for (uint i=0;i<ifs.size();++i) {
[1575]153 nPol(ifs[i]) = inst->npol();
154 nChan(ifs[i]) = inst->nchan(ifs[i]);
[1295]155 havexpol(ifs[i]) = nPol(ifs[i]) > 2;
[1060]156 }
[1819]157// Vector<String> obstypes(2);
158// obstypes(0) = "TR";//on
159// obstypes(1) = "RF TR";//off
[1575]160 const Table table = inst->table();
[324]161
[1663]162
[28]163 // Create the output file and write static data.
164 Int status;
[1060]165 status = writer_->create(String(filename), hdr.observer, hdr.project,
[1410]166 hdr.antennaname, hdr.antennaposition,
167 hdr.obstype, hdr.fluxunit,
168 hdr.equinox, hdr.freqref,
169 nChan, nPol, havexpol, False);
[996]170 if ( status ) {
[717]171 throw(AipsError("Failed to create output file"));
[28]172 }
173
174 Int count = 0;
[1449]175 PKSrecord pksrec;
176 pksrec.scanNo = 1;
[822]177 // use spearate iterators to ensure renumbering of all numbers
178 TableIterator scanit(table, "SCANNO");
179 while (!scanit.pastEnd() ) {
180 Table stable = scanit.table();
[988]181 TableIterator beamit(stable, "BEAMNO");
[1449]182 pksrec.beamNo = 1;
[822]183 while (!beamit.pastEnd() ) {
184 Table btable = beamit.table();
[1819]185 //MDirection::ScalarColumn dirCol(btable, "DIRECTION");
186 //pksrec.direction = dirCol(0).getAngle("rad").getValue();
[988]187 TableIterator cycit(btable, "CYCLENO");
[999]188 ROArrayColumn<Double> srateCol(btable, "SCANRATE");
[1462]189 Vector<Double> sratedbl;
190 srateCol.get(0, sratedbl);
[1477]191 Vector<Float> srateflt(sratedbl.nelements());
[1462]192 convertArray(srateflt, sratedbl);
[1819]193 //pksrec.scanRate = srateflt;
194 pksrec.scanRate = sratedbl;
[999]195 ROArrayColumn<Double> spmCol(btable, "SRCPROPERMOTION");
[1449]196 spmCol.get(0, pksrec.srcPM);
[999]197 ROArrayColumn <Double> sdirCol(btable, "SRCDIRECTION");
[1449]198 sdirCol.get(0, pksrec.srcDir);
[999]199 ROScalarColumn<Double> svelCol(btable, "SRCVELOCITY");
[1449]200 svelCol.get(0, pksrec.srcVel);
[1295]201 ROScalarColumn<uInt> bCol(btable, "BEAMNO");
[1449]202 pksrec.beamNo = bCol(0)+1;
203 pksrec.cycleNo = 1;
[988]204 while (!cycit.pastEnd() ) {
205 Table ctable = cycit.table();
[1819]206 TableIterator ifit(ctable, "IFNO", TableIterator::Ascending, TableIterator::HeapSort);
[1390]207 MDirection::ScalarColumn dirCol(ctable, "DIRECTION");
[1449]208 pksrec.direction = dirCol(0).getAngle("rad").getValue();
209 pksrec.IFno = 1;
[988]210 while (!ifit.pastEnd() ) {
211 Table itable = ifit.table();
212 TableRow row(itable);
[822]213 // use the first row to fill in all the "metadata"
[827]214 const TableRecord& rec = row.get(0);
[988]215 ROArrayColumn<Float> specCol(itable, "SPECTRA");
[1449]216 pksrec.IFno = rec.asuInt("IFNO")+1;
[822]217 uInt nchan = specCol(0).nelements();
[1449]218 Double crval,crpix;
[1819]219 //Vector<Double> restfreq;
[988]220 Float tmp0,tmp1,tmp2,tmp3,tmp4;
[1819]221 String tcalt;
222 Vector<String> stmp0, stmp1;
[1575]223 inst->frequencies().getEntry(crpix,crval, pksrec.freqInc,
[1449]224 rec.asuInt("FREQ_ID"));
[1586]225 inst->focus().getEntry(pksrec.parAngle, pksrec.focusAxi, pksrec.focusTan,
226 pksrec.focusRot, tmp0,tmp1,tmp2,tmp3,tmp4,
227 rec.asuInt("FOCUS_ID"));
[1575]228 inst->molecules().getEntry(pksrec.restFreq,stmp0,stmp1,
[1449]229 rec.asuInt("MOLECULE_ID"));
[2004]230// inst->tcal().getEntry(pksrec.tcalTime, pksrec.tcal,
231// rec.asuInt("TCAL_ID"));
[1575]232 inst->weather().getEntry(pksrec.temperature, pksrec.pressure,
[1449]233 pksrec.humidity, pksrec.windSpeed,
234 pksrec.windAz, rec.asuInt("WEATHER_ID"));
[822]235 Double pixel = Double(nchan/2);
[1449]236 pksrec.refFreq = (pixel-crpix)*pksrec.freqInc + crval;
[822]237 // ok, now we have nrows for the n polarizations in this table
[1462]238 polConversion(pksrec.spectra, pksrec.flagged, pksrec.xPol, itable);
[1449]239 pksrec.tsys = tsysFromTable(itable);
[822]240 // dummy data
[1462]241 uInt npol = pksrec.spectra.ncolumn();
[988]242
[2004]243 // TCAL
244 inst->tcal().getEntry( pksrec.tcalTime, pksrec.tcal,
245 rec.asuInt("TCAL_ID") ) ;
246 if ( pksrec.tcal.nelements() == 1 ) {
247 ROScalarColumn<uInt> uintCol( itable, "TCAL_ID" ) ;
248 Vector<uInt> tcalids = uintCol.getColumn() ;
249 pksrec.tcal.resize( npol ) ;
250 Vector<Float> dummyA ;
251 String dummyS ;
252 for ( uInt ipol = 0 ; ipol < npol ; ipol++ ) {
253 inst->tcal().getEntry( dummyS, dummyA, tcalids[ipol] ) ;
254 pksrec.tcal[ipol] = dummyA[0] ;
255 }
256 }
257 else if ( pksrec.tcal.nelements() == nchan ) {
258 ROScalarColumn<uInt> uintCol( itable, "TCAL_ID" ) ;
259 Vector<uInt> tcalids = uintCol.getColumn() ;
260 pksrec.tcal.resize( npol ) ;
261 Vector<Float> dummyA ;
262 String dummyS ;
263 for ( uInt ipol = 0 ; ipol < npol ; ipol++ ) {
264 inst->tcal().getEntry( dummyS, dummyA, tcalids[ipol] ) ;
265 pksrec.tcal[ipol] = mean( dummyA ) ;
266 }
267 }
268 //LogIO os ;
269 //os << "npol = " << npol << " pksrec.tcal = " << pksrec.tcal << LogIO::POST ;
270
[1449]271 pksrec.mjd = rec.asDouble("TIME");
272 pksrec.interval = rec.asDouble("INTERVAL");
273 pksrec.fieldName = rec.asString("FIELDNAME");
274 pksrec.srcName = rec.asString("SRCNAME");
[1819]275 //pksrec.obsType = obstypes[rec.asInt("SRCTYPE")];
276 pksrec.obsType = getObsTypes( rec.asInt("SRCTYPE") ) ;
[1449]277 pksrec.bandwidth = nchan * abs(pksrec.freqInc);
278 pksrec.azimuth = rec.asFloat("AZIMUTH");
279 pksrec.elevation = rec.asFloat("ELEVATION");
280 pksrec.refBeam = rec.asInt("REFBEAMNO") + 1;
281 pksrec.sigma.resize(npol);
282 pksrec.sigma = 0.0f;
283 pksrec.calFctr.resize(npol);
284 pksrec.calFctr = 0.0f;
285 pksrec.baseLin.resize(npol,2);
286 pksrec.baseLin = 0.0f;
287 pksrec.baseSub.resize(npol,9);
288 pksrec.baseSub = 0.0f;
289 pksrec.xCalFctr = 0.0;
[1819]290 pksrec.flagrow = rec.asuInt("FLAGROW");
[1449]291
292 status = writer_->write(pksrec);
[996]293 if ( status ) {
[988]294 writer_->close();
295 throw(AipsError("STWriter: Failed to export Scantable."));
[822]296 }
[999]297 ++count;
[1449]298 //++pksrec.IFno;
[988]299 ++ifit;
[470]300 }
[1449]301 ++pksrec.cycleNo;
[988]302 ++cycit;
[28]303 }
[1449]304 //++pksrec.beamNo;
[822]305 ++beamit;
[28]306 }
[1449]307 ++pksrec.scanNo;
[822]308 ++scanit;
[28]309 }
[717]310 ostringstream oss;
[999]311 oss << "STWriter: wrote " << count << " rows to " << filename;
[717]312 pushLog(String(oss));
[988]313 writer_->close();
[1391]314 //if MS2 delete POINTING table exists and copy the one in the keyword
315 if ( format_ == "MS2" ) {
316 replacePtTab(table, filename);
317 }
[28]318 return 0;
319}
[470]320
[827]321Vector<Float> STWriter::tsysFromTable(const Table& tab)
322{
323 ROArrayColumn<Float> tsysCol(tab, "TSYS");
324 Vector<Float> out(tab.nrow());
325 Vector<Float> tmp;
326 for (uInt i=0; i<tab.nrow(); ++i) {
[988]327 tmp.resize();
[827]328 tmp = tsysCol(i);
329 out[i] = tmp[0];
330 }
[988]331 return out;
[827]332}
333
334void STWriter::polConversion( Matrix< Float >& specs, Matrix< uChar >& flags,
[822]335 Vector< Complex > & xpol, const Table & tab )
336{
337 String poltype = tab.keywordSet().asString("POLTYPE");
[1664]338// Full stokes is not supported. Just allow stokes I
339 if ( poltype == "stokes" && tab.nrow() != 1) {
[822]340 String msg = "poltype = " + poltype + " not yet supported in output.";
[988]341 throw(AipsError(msg));
342 }
[827]343 ROArrayColumn<Float> specCol(tab, "SPECTRA");
344 ROArrayColumn<uChar> flagCol(tab, "FLAGTRA");
[822]345 uInt nchan = specCol(0).nelements();
[988]346 uInt ncol = (tab.nrow()==1 ? 1: 2 );
347 specs.resize(nchan, ncol);
348 flags.resize(nchan, ncol);
[822]349 // the linears
[988]350 for (uInt i=0; i<ncol; ++i) {
[822]351 specs.column(i) = specCol(i);
352 flags.column(i) = flagCol(i);
353 }
354 // now the complex if exists
355 Bool hasxpol = False;
356 xpol.resize();
[827]357 if ( tab.nrow() == 4 ) {
[822]358 hasxpol = True;
359 xpol.resize(nchan);
360 Vector<Float> reals, imags;
361 reals = specCol(2); imags = specCol(3);
362 for (uInt k=0; k < nchan; ++k) {
[827]363 xpol[k] = Complex(reals[k], imags[k]);
[822]364 }
365 }
366}
[827]367
[1391]368// For writing MS data, if there is the reference to
369// original pointing table it replace it by it.
370void STWriter::replacePtTab (const Table& tab, const std::string& fname)
371{
372 String oldPtTabName = fname;
373 oldPtTabName.append("/POINTING");
374 if ( tab.keywordSet().isDefined("POINTING") ) {
375 String PointingTab = tab.keywordSet().asString("POINTING");
376 if ( Table::isReadable(PointingTab) ) {
377 Table newPtTab(PointingTab, Table::Old);
378 newPtTab.copy(oldPtTabName, Table::New);
379 ostringstream oss;
380 oss << "STWriter: copied " <<PointingTab << " to " << fname;
381 pushLog(String(oss));
382 }
383 }
384}
[827]385
[1819]386// get obsType string from SRCTYPE value
387String STWriter::getObsTypes( Int srctype )
388{
[2005]389 return SrcType::getName(srctype) ;
[827]390}
[1819]391
392}
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