source: trunk/src/STWriter.cpp @ 1391

Last change on this file since 1391 was 1391, checked in by Malte Marquarding, 17 years ago

merge from alma branch to get alma/GBT support. Commented out fluxUnit changes as they are using a chnaged interface to PKSreader/writer. Also commented out progress meter related code.

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File size: 11.2 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 1391 2007-07-30 01:59:36Z MalteMarquarding $
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
41#include <atnf/PKSIO/PKSMS2writer.h>
42#include <atnf/PKSIO/PKSSDwriter.h>
43
[827]44#include <tables/Tables/Table.h>
45#include <tables/Tables/TableIter.h>
46#include <tables/Tables/TableRow.h>
[324]47#include <tables/Tables/ArrayColumn.h>
48
[827]49//#include "SDFITSImageWriter.h"
[988]50#include "STAsciiWriter.h"
[901]51#include "STHeader.h"
[324]52
[822]53#include "STWriter.h"
[28]54
[125]55using namespace casa;
[827]56namespace asap {
[28]57
[822]58STWriter::STWriter(const std::string &format)
[28]59{
[988]60  format_ = format;
61  String t(format_);
[450]62  t.upcase();
63  if (t== "MS2") {
[988]64    writer_ = new PKSMS2writer();
[450]65  } else if (t== "SDFITS") {
[988]66    writer_ = new PKSSDwriter();
[450]67  } else if (t== "ASCII") {
[988]68    writer_ = 0;
[450]69  } else {
[988]70    throw (AipsError("Unrecognized export format"));
[28]71  }
72}
73
[822]74STWriter::~STWriter()
[28]75{
[988]76   if (writer_) {
77     delete writer_;
[192]78   }
[28]79}
80
[822]81Int STWriter::setFormat(const std::string &format)
[28]82{
[988]83  if (format != format_) {
84    if (writer_) delete writer_;
[450]85  }
[827]86
[988]87  format_ = format;
88  String t(format_);
[450]89  t.upcase();
90  if (t== "MS2") {
[988]91    writer_ = new PKSMS2writer();
[450]92  } else if (t== "SDFITS") {
[988]93    writer_ = new PKSSDwriter();
[450]94  } else if (t== "ASCII") {
[988]95    writer_ = 0;
[450]96  } else {
97    throw (AipsError("Unrecognized Format"));
[28]98  }
99  return 0;
100}
101
[827]102Int STWriter::write(const CountedPtr<Scantable> in,
103                    const std::string &filename)
[28]104{
[192]105
[1280]106  if (format_=="ASCII") {
107    STAsciiWriter iw;
108    if (iw.write(*in, filename)) {
109      return 0;
110    } else {
111      return 1;
112    }
[199]113  }
[192]114
[827]115  // MS or SDFITS
[192]116
[28]117  // Extract the header from the table.
[1391]118  // this is a little different from what I have done
119  // before. Need to check with the Offline User Test data
[901]120  STHeader hdr = in->getHeader();
[1060]121  //const Int nPol  = hdr.npol;
122  //const Int nChan = hdr.nchan;
[1295]123  std::vector<uint> ifs = in->getIFNos();
124  int nIF = in->nif();//ifs.size();
[1060]125  Vector<uInt> nPol(nIF),nChan(nIF);
126  Vector<Bool> havexpol(nIF);
[1391]127  String fluxUnit = hdr.fluxunit;
128
[1295]129  nPol = 0;nChan = 0; havexpol = False;
[1305]130  for (uint i=0;i<ifs.size();++i) {
[1295]131    nPol(ifs[i]) = in->npol();
132    nChan(ifs[i]) = in->nchan(ifs[i]);
133    havexpol(ifs[i]) = nPol(ifs[i]) > 2;
[1060]134  }
[28]135
[324]136  const Table table = in->table();
137
[28]138  // Create the output file and write static data.
139  Int status;
[1060]140  status = writer_->create(String(filename), hdr.observer, hdr.project,
[28]141                               hdr.antennaname, hdr.antennaposition,
142                               hdr.obstype, hdr.equinox, hdr.freqref,
[1060]143                               nChan, nPol, havexpol, False);
[996]144  if ( status ) {
[717]145    throw(AipsError("Failed to create output file"));
[28]146  }
147
[999]148  Double          srcVel;
[822]149
150  String          fieldName, srcName, tcalTime;
151  Vector<Float>   calFctr, sigma, tcal, tsys;
[999]152  Vector<Double>  direction(2), scanRate(2), srcDir(2), srcPM(2);
[822]153  Matrix<Float>   spectra;
154  Matrix<uChar>   flagtra;
155  Complex         xCalFctr;
[28]156  Int count = 0;
[822]157  Int scanno = 1;
158  // use spearate iterators to ensure renumbering of all numbers
159  TableIterator scanit(table, "SCANNO");
160  while (!scanit.pastEnd() ) {
161    Table stable = scanit.table();
[988]162    TableIterator beamit(stable, "BEAMNO");
[822]163    Int beamno = 1;
164    while (!beamit.pastEnd() ) {
165      Table btable = beamit.table();
[988]166      TableIterator cycit(btable, "CYCLENO");
[999]167      ROArrayColumn<Double> srateCol(btable, "SCANRATE");
168      srateCol.get(0, scanRate);
169      ROArrayColumn<Double> spmCol(btable, "SRCPROPERMOTION");
170      spmCol.get(0, srcPM);
171      ROArrayColumn <Double> sdirCol(btable, "SRCDIRECTION");
172      sdirCol.get(0, srcDir);
173      ROScalarColumn<Double> svelCol(btable, "SRCVELOCITY");
174      svelCol.get(0, srcVel);
[1295]175      ROScalarColumn<uInt> bCol(btable, "BEAMNO");
176      beamno = bCol(0)+1;
[988]177      Int cycno = 1;
178      while (!cycit.pastEnd() ) {
179        Table ctable = cycit.table();
180        TableIterator ifit(ctable, "IFNO");
[1390]181        MDirection::ScalarColumn dirCol(ctable, "DIRECTION");
182        Vector<Double> direction = dirCol(0).getAngle("rad").getValue();
[988]183        Int ifno = 1;
184        while (!ifit.pastEnd() ) {
185          Table itable = ifit.table();
186          TableRow row(itable);
[822]187          // use the first row to fill in all the "metadata"
[827]188          const TableRecord& rec = row.get(0);
[988]189          ROArrayColumn<Float> specCol(itable, "SPECTRA");
[1295]190          ifno = rec.asuInt("IFNO")+1;
[822]191          uInt nchan = specCol(0).nelements();
192          Double cdelt,crval,crpix, restfreq;
[827]193          Float focusAxi, focusTan, focusRot,
194                temperature, pressure, humidity, windSpeed, windAz;
[988]195          Float tmp0,tmp1,tmp2,tmp3,tmp4;
[827]196          Vector<Float> tcalval;
[988]197          String stmp0,stmp1, tcalt;
[822]198          in->frequencies().getEntry(crpix,crval,cdelt, rec.asuInt("FREQ_ID"));
[988]199          in->focus().getEntry(focusAxi, focusTan, focusRot,
200                               tmp0,tmp1,tmp2,tmp3,tmp4,
201                               rec.asuInt("FOCUS_ID"));
202          in->molecules().getEntry(restfreq,stmp0,stmp1,rec.asuInt("MOLECULE_ID"));
[827]203          in->tcal().getEntry(tcalt,tcalval,rec.asuInt("TCAL_ID"));
204          in->weather().getEntry(temperature, pressure, humidity,
205                                 windSpeed, windAz,
206                                 rec.asuInt("WEATHER_ID"));
[822]207          Double pixel = Double(nchan/2);
208          Double refFreqNew = (pixel-crpix)*cdelt + crval;
209          // ok, now we have nrows for the n polarizations in this table
210          Matrix<Float> specs;
211          Matrix<uChar> flags;
212          Vector<Complex> xpol;
[988]213          polConversion(specs, flags, xpol, itable);
214          Vector<Float> tsys = tsysFromTable(itable);
[822]215          // dummy data
[827]216          uInt npol = specs.ncolumn();
[988]217
[822]218          Matrix<Float>   baseLin(npol,2, 0.0f);
219          Matrix<Float>   baseSub(npol,9, 0.0f);
220          Complex         xCalFctr;
221          Vector<Double>  scanRate(2, 0.0);
222          Vector<Float>   sigma(npol, 0.0f);
223          Vector<Float>   calFctr(npol, 0.0f);
[996]224          status = writer_->write(scanno, cycno, rec.asDouble("TIME"),
[822]225                                      rec.asDouble("INTERVAL"),
226                                      rec.asString("FIELDNAME"),
227                                      rec.asString("SRCNAME"),
[1072]228                                      srcDir, srcPM, srcVel,hdr.obstype,
[822]229                                      ifno,
230                                      refFreqNew, nchan*abs(cdelt), cdelt,
231                                      restfreq,
[827]232                                      tcal,
233                                      tcalt,
[822]234                                      rec.asFloat("AZIMUTH"),
235                                      rec.asFloat("ELEVATION"),
236                                      rec.asFloat("PARANGLE"),
[988]237                                      focusAxi, focusTan, focusRot,
[827]238                                      temperature,
239                                      pressure, humidity, windSpeed, windAz,
[988]240                                      rec.asInt("REFBEAMNO")+1, beamno,
[827]241                                      direction,
[999]242                                      scanRate,
[827]243                                      tsys,
[822]244                                      sigma, calFctr,// not in scantable
245                                      baseLin, baseSub,// not in scantable
246                                      specs, flags,
247                                      xCalFctr,//
[996]248                                      xpol);
249          if ( status ) {
[988]250            writer_->close();
251            throw(AipsError("STWriter: Failed to export Scantable."));
[822]252          }
[999]253          ++count;
[1295]254          //++ifno;
[988]255          ++ifit;
[470]256        }
[988]257        ++cycno;
258        ++cycit;
[28]259      }
[1295]260      //++beamno;
[822]261      ++beamit;
[28]262    }
[822]263    ++scanno;
264    ++scanit;
[28]265  }
[717]266  ostringstream oss;
[999]267  oss << "STWriter: wrote " << count << " rows to " << filename;
[717]268  pushLog(String(oss));
[988]269  writer_->close();
[1391]270  //if MS2 delete POINTING table exists and copy the one in the keyword
271  if ( format_ == "MS2" ) {
272    replacePtTab(table, filename);
273  }
[28]274  return 0;
275}
[470]276
[827]277Vector<Float> STWriter::tsysFromTable(const Table& tab)
278{
279  ROArrayColumn<Float> tsysCol(tab, "TSYS");
280  Vector<Float> out(tab.nrow());
281  Vector<Float> tmp;
282  for (uInt i=0; i<tab.nrow(); ++i) {
[988]283    tmp.resize();
[827]284    tmp = tsysCol(i);
285    out[i] = tmp[0];
286  }
[988]287  return out;
[827]288}
289
290void STWriter::polConversion( Matrix< Float >& specs, Matrix< uChar >& flags,
[822]291                              Vector< Complex > & xpol, const Table & tab )
292{
293  String poltype = tab.keywordSet().asString("POLTYPE");
[1259]294  if ( poltype == "stokes") {
[822]295    String msg = "poltype = " + poltype + " not yet supported in output.";
[988]296    throw(AipsError(msg));
297  }
[827]298  ROArrayColumn<Float> specCol(tab, "SPECTRA");
299  ROArrayColumn<uChar> flagCol(tab, "FLAGTRA");
[822]300  uInt nchan = specCol(0).nelements();
[988]301  uInt ncol = (tab.nrow()==1 ? 1: 2 );
302  specs.resize(nchan, ncol);
303  flags.resize(nchan, ncol);
[822]304  // the linears
[988]305  for (uInt i=0; i<ncol; ++i) {
[822]306    specs.column(i) = specCol(i);
307    flags.column(i) = flagCol(i);
308  }
309  // now the complex if exists
310  Bool hasxpol = False;
311  xpol.resize();
[827]312  if ( tab.nrow() == 4 ) {
[822]313    hasxpol = True;
314    xpol.resize(nchan);
315    Vector<Float> reals, imags;
316    reals = specCol(2); imags = specCol(3);
317    for (uInt k=0; k < nchan; ++k) {
[827]318      xpol[k] = Complex(reals[k], imags[k]);
[822]319    }
320  }
321}
[827]322
[1391]323// For writing MS data, if there is the reference to
324// original pointing table it replace it by it.
325void STWriter::replacePtTab (const Table& tab, const std::string& fname)
326{
327  String oldPtTabName = fname;
328  oldPtTabName.append("/POINTING");
329  if ( tab.keywordSet().isDefined("POINTING") ) {
330    String PointingTab = tab.keywordSet().asString("POINTING");
331    if ( Table::isReadable(PointingTab) ) {
332      Table newPtTab(PointingTab, Table::Old);
333      newPtTab.copy(oldPtTabName, Table::New);
334      ostringstream oss;
335      oss << "STWriter: copied  " <<PointingTab  << " to " << fname;
336      pushLog(String(oss));
337    }
338  }
339}
[827]340
341}
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