source: trunk/src/SDMemTable.cc @ 490

Last change on this file since 490 was 490, checked in by kil064, 19 years ago

add functions

stokesLength
getStokesSpectrumLabel
getCircularSpectrumLabel

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[2]1//#---------------------------------------------------------------------------
2//# SDMemTable.cc: A MemoryTable container for single dish integrations
3//#---------------------------------------------------------------------------
4//# Copyright (C) 2004
[125]5//# ATNF
[2]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:
30//#---------------------------------------------------------------------------
31
[206]32#include <map>
33
[125]34#include <casa/aips.h>
[80]35#include <casa/iostream.h>
36#include <casa/iomanip.h>
37#include <casa/Arrays/Array.h>
38#include <casa/Arrays/ArrayMath.h>
39#include <casa/Arrays/MaskArrMath.h>
40#include <casa/Arrays/ArrayLogical.h>
41#include <casa/Arrays/ArrayAccessor.h>
[455]42#include <casa/Arrays/VectorSTLIterator.h>
[206]43#include <casa/Arrays/Vector.h>
[418]44#include <casa/BasicMath/Math.h>
[286]45#include <casa/Quanta/MVAngle.h>
[2]46
[80]47#include <tables/Tables/TableParse.h>
48#include <tables/Tables/TableDesc.h>
[488]49#include <tables/Tables/TableCopy.h>
[80]50#include <tables/Tables/SetupNewTab.h>
51#include <tables/Tables/ScaColDesc.h>
52#include <tables/Tables/ArrColDesc.h>
[2]53
[80]54#include <tables/Tables/ExprNode.h>
55#include <tables/Tables/TableRecord.h>
56#include <measures/Measures/MFrequency.h>
57#include <measures/Measures/MeasTable.h>
[105]58#include <coordinates/Coordinates/CoordinateUtil.h>
[80]59#include <casa/Quanta/MVTime.h>
[281]60#include <casa/Quanta/MVAngle.h>
[2]61
[215]62#include "SDDefs.h"
[2]63#include "SDContainer.h"
[365]64#include "MathUtils.h"
[418]65#include "SDPol.h"
[476]66#include "SDAttr.h"
[2]67
[465]68#include "SDMemTable.h"
[206]69
[125]70using namespace casa;
[83]71using namespace asap;
[2]72
[18]73SDMemTable::SDMemTable() :
74  IFSel_(0),
75  beamSel_(0),
[206]76  polSel_(0)
77{
[18]78  setup();
[322]79  attach();
[18]80}
[206]81
[2]82SDMemTable::SDMemTable(const std::string& name) :
83  IFSel_(0),
84  beamSel_(0),
[206]85  polSel_(0)
86{
[50]87  Table tab(name);
[483]88  uInt version;
89  tab.keywordSet().get("VERSION", version);
90  if (version != version_) {
91    throw(AipsError("Unsupported version of ASAP file."));
92  }
[22]93  table_ = tab.copyToMemoryTable("dummy");
[206]94  //cerr << "hello from C SDMemTable @ " << this << endl;
[329]95  attach();
[2]96}
97
[206]98SDMemTable::SDMemTable(const SDMemTable& other, Bool clear)
99{
[148]100  table_ = other.table_.copyToMemoryTable(String("dummy"));
[2]101  // clear all rows()
[16]102  if (clear) {
[148]103    table_.removeRow(this->table_.rowNumbers());
[483]104    IFSel_= 0;
105    beamSel_= 0;
106    polSel_= 0;
107    chanMask_.resize(0);
[16]108  } else {
[483]109    IFSel_= other.IFSel_;
110    beamSel_= other.beamSel_;
111    polSel_= other.polSel_;
112    chanMask_.resize(0);
113    chanMask_ = other.chanMask_;
[16]114  }
[483]115
[322]116  attach();
[206]117  //cerr << "hello from CC SDMemTable @ " << this << endl;
[2]118}
119
[80]120SDMemTable::SDMemTable(const Table& tab, const std::string& exprs) :
[2]121  IFSel_(0),
122  beamSel_(0),
[206]123  polSel_(0)
124{
[2]125  Table t = tableCommand(exprs,tab);
[89]126  if (t.nrow() == 0)
127      throw(AipsError("Query unsuccessful."));
[22]128  table_ = t.copyToMemoryTable("dummy");
[329]129  attach();
[380]130  renumber();
[2]131}
132
[206]133SDMemTable::~SDMemTable()
134{
[105]135  //cerr << "goodbye from SDMemTable @ " << this << endl;
[2]136}
137
[206]138SDMemTable SDMemTable::getScan(Int scanID) const
139{
[80]140  String cond("SELECT * from $1 WHERE SCANID == ");
141  cond += String::toString(scanID);
142  return SDMemTable(table_, cond);
[2]143}
144
[206]145SDMemTable &SDMemTable::operator=(const SDMemTable& other)
146{
[148]147  if (this != &other) {
148     IFSel_= other.IFSel_;
149     beamSel_= other.beamSel_;
150     polSel_= other.polSel_;
151     chanMask_.resize(0);
152     chanMask_ = other.chanMask_;
153     table_ = other.table_.copyToMemoryTable(String("dummy"));
[322]154     attach();
[206]155  }
[138]156  return *this;
157}
158
[206]159SDMemTable SDMemTable::getSource(const std::string& source) const
160{
[80]161  String cond("SELECT * from $1 WHERE SRCNAME == ");
162  cond += source;
163  return SDMemTable(table_, cond);
164}
165
[206]166void SDMemTable::setup()
167{
[2]168  TableDesc td("", "1", TableDesc::Scratch);
169  td.comment() = "A SDMemTable";
[483]170  td.rwKeywordSet().define("VERSION", Int(version_));
171
[2]172  td.addColumn(ScalarColumnDesc<Double>("TIME"));
173  td.addColumn(ScalarColumnDesc<String>("SRCNAME"));
174  td.addColumn(ArrayColumnDesc<Float>("SPECTRA"));
175  td.addColumn(ArrayColumnDesc<uChar>("FLAGTRA"));
[89]176  td.addColumn(ArrayColumnDesc<Float>("TSYS"));
[418]177  td.addColumn(ArrayColumnDesc<Float>("STOKES"));
[89]178  td.addColumn(ScalarColumnDesc<Int>("SCANID"));
179  td.addColumn(ScalarColumnDesc<Double>("INTERVAL"));
[39]180  td.addColumn(ArrayColumnDesc<uInt>("FREQID"));
[386]181  td.addColumn(ArrayColumnDesc<uInt>("RESTFREQID"));
[78]182  td.addColumn(ArrayColumnDesc<Double>("DIRECTION"));
[105]183  td.addColumn(ScalarColumnDesc<String>("FIELDNAME"));
184  td.addColumn(ScalarColumnDesc<String>("TCALTIME"));
185  td.addColumn(ArrayColumnDesc<Float>("TCAL"));
186  td.addColumn(ScalarColumnDesc<Float>("AZIMUTH"));
187  td.addColumn(ScalarColumnDesc<Float>("ELEVATION"));
188  td.addColumn(ScalarColumnDesc<Float>("PARANGLE"));
189  td.addColumn(ScalarColumnDesc<Int>("REFBEAM"));
[455]190  td.addColumn(ArrayColumnDesc<Int>("FITID"));
[105]191
[418]192  // Now create Table SetUp from the description.
[22]193  SetupNewTable aNewTab("dummy", td, Table::New);
[418]194
[455]195  // Bind the Stokes Virtual machine to the STOKES column Because we
196  // don't know how many polarizations will be in the data at this
197  // point, we must bind the Virtual Engine regardless.  The STOKES
198  // column won't be accessed if not appropriate (nPol=4)
[483]199  SDStokesEngine::registerClass();
200  SDStokesEngine stokesEngine(String("STOKES"), String("SPECTRA"));
201  aNewTab.bindColumn("STOKES", stokesEngine);
202 
203  // Create Table
204  table_ = Table(aNewTab, Table::Memory, 0);
[455]205  // add subtable
206  TableDesc tdf("", "1", TableDesc::Scratch);
207  tdf.addColumn(ArrayColumnDesc<String>("FUNCTIONS"));
208  tdf.addColumn(ArrayColumnDesc<Int>("COMPONENTS"));
209  tdf.addColumn(ArrayColumnDesc<Double>("PARAMETERS"));
210  tdf.addColumn(ArrayColumnDesc<Bool>("PARMASK"));
[465]211  tdf.addColumn(ArrayColumnDesc<String>("FRAMEINFO"));
[455]212  SetupNewTable fittab("fits", tdf, Table::New);
213  Table fitTable(fittab, Table::Memory);
214  table_.rwKeywordSet().defineTable("FITS", fitTable);
[418]215
[483]216  TableDesc tdh("", "1", TableDesc::Scratch);
217  tdh.addColumn(ScalarColumnDesc<String>("ITEM"));
218  SetupNewTable histtab("hist", tdh, Table::New);
219  Table histTable(histtab, Table::Memory);
220  table_.rwKeywordSet().defineTable("HISTORY", histTable);
[2]221}
222
[380]223void SDMemTable::attach()
[322]224{
225  timeCol_.attach(table_, "TIME");
226  srcnCol_.attach(table_, "SRCNAME");
227  specCol_.attach(table_, "SPECTRA");
228  flagsCol_.attach(table_, "FLAGTRA");
229  tsCol_.attach(table_, "TSYS");
[418]230  stokesCol_.attach(table_, "STOKES");
[322]231  scanCol_.attach(table_, "SCANID");
232  integrCol_.attach(table_, "INTERVAL");
233  freqidCol_.attach(table_, "FREQID");
[386]234  restfreqidCol_.attach(table_, "RESTFREQID");
[322]235  dirCol_.attach(table_, "DIRECTION");
236  fldnCol_.attach(table_, "FIELDNAME");
237  tcaltCol_.attach(table_, "TCALTIME");
238  tcalCol_.attach(table_, "TCAL");
239  azCol_.attach(table_, "AZIMUTH");
240  elCol_.attach(table_, "ELEVATION");
241  paraCol_.attach(table_, "PARANGLE");
242  rbeamCol_.attach(table_, "REFBEAM");
[455]243  fitCol_.attach(table_,"FITID");
[322]244}
245
246
[206]247std::string SDMemTable::getSourceName(Int whichRow) const
248{
[2]249  String name;
[322]250  srcnCol_.get(whichRow, name);
[2]251  return name;
252}
253
[281]254std::string SDMemTable::getTime(Int whichRow, Bool showDate) const
[206]255{
[2]256  Double tm;
[281]257  if (whichRow > -1) {
[322]258    timeCol_.get(whichRow, tm);
[281]259  } else {
260    table_.keywordSet().get("UTC",tm);
261  }
[50]262  MVTime mvt(tm);
[281]263  if (showDate)
264    mvt.setFormat(MVTime::YMD);
265  else
266    mvt.setFormat(MVTime::TIME);
[50]267  ostringstream oss;
268  oss << mvt;
[281]269  return String(oss);
[2]270}
[281]271
[206]272double SDMemTable::getInterval(Int whichRow) const
273{
[50]274  Double intval;
[322]275  integrCol_.get(whichRow, intval);
[50]276  return intval;
277}
[2]278
[206]279bool SDMemTable::setIF(Int whichIF)
280{
[50]281  if ( whichIF >= 0 && whichIF < nIF()) {
[2]282    IFSel_ = whichIF;
283    return true;
[50]284  }
285  return false;
[2]286}
[50]287
[206]288bool SDMemTable::setBeam(Int whichBeam)
289{
[50]290  if ( whichBeam >= 0 && whichBeam < nBeam()) {
[2]291    beamSel_ = whichBeam;
292    return true;
[50]293  }
294  return false;
295}
[2]296
[206]297bool SDMemTable::setPol(Int whichPol)
298{
[50]299  if ( whichPol >= 0 && whichPol < nPol()) {
[2]300    polSel_ = whichPol;
301    return true;
[50]302  }
303  return false;
[2]304}
305
[380]306void SDMemTable::resetCursor()
[303]307{
308   polSel_ = 0;
309   IFSel_ = 0;
310   beamSel_ = 0;
311}
312
[206]313bool SDMemTable::setMask(std::vector<int> whichChans)
314{
[16]315  std::vector<int>::iterator it;
[322]316  uInt n = flagsCol_.shape(0)(3);
[105]317  if (whichChans.empty()) {
318    chanMask_ = std::vector<bool>(n,true);
319    return true;     
320  }
[16]321  chanMask_.resize(n,true);
[39]322  for (it = whichChans.begin(); it != whichChans.end(); ++it) {
[105]323    if (*it < n) {
[16]324      chanMask_[*it] = false;
[105]325    }
[16]326  }
[2]327  return true;
328}
329
[447]330std::vector<bool> SDMemTable::getMask(Int whichRow) const
331{
332
[16]333  std::vector<bool> mask;
[455]334
[16]335  Array<uChar> arr;
[322]336  flagsCol_.get(whichRow, arr);
[455]337
[206]338  ArrayAccessor<uChar, Axis<asap::BeamAxis> > aa0(arr);
[16]339  aa0.reset(aa0.begin(uInt(beamSel_)));//go to beam
[206]340  ArrayAccessor<uChar, Axis<asap::IFAxis> > aa1(aa0);
[16]341  aa1.reset(aa1.begin(uInt(IFSel_)));// go to IF
[206]342  ArrayAccessor<uChar, Axis<asap::PolAxis> > aa2(aa1);
[16]343  aa2.reset(aa2.begin(uInt(polSel_)));// go to pol
344
345  Bool useUserMask = ( chanMask_.size() == arr.shape()(3) );
346
347  std::vector<bool> tmp;
348  tmp = chanMask_; // WHY the fxxx do I have to make a copy here
349  std::vector<bool>::iterator miter;
350  miter = tmp.begin();
351
[206]352  for (ArrayAccessor<uChar, Axis<asap::ChanAxis> > i(aa2); i != i.end(); ++i) {
[16]353    bool out =!static_cast<bool>(*i);
354    if (useUserMask) {
355      out = out && (*miter);
356      miter++;
357    }
358    mask.push_back(out);
[89]359  }
[16]360  return mask;
[2]361}
[418]362
363
364
[206]365std::vector<float> SDMemTable::getSpectrum(Int whichRow) const
366{
[2]367  Array<Float> arr;
[322]368  specCol_.get(whichRow, arr);
[455]369  return getFloatSpectrum(arr);
[418]370}
371
[490]372
373int SDMemTable::stokesLength() const
374{
375   return stokesCol_.shape(0).nelements();        // All rows same shape
376}
377
378
[455]379std::vector<float> SDMemTable::getStokesSpectrum(Int whichRow, Bool doPol,
380                                                 Float paOffset) const
[472]381//
382// Gets one STokes parameter depending on cursor polSel location
383//  doPol=False  : I,Q,U,V
384//  doPol=True   : I,P,PA,V   ; P = sqrt(Q**2+U**2), PA = 0.5*atan2(Q,U)
385//
[418]386{
[430]387  AlwaysAssert(asap::nAxes==4,AipsError);
[428]388  if (nPol()!=1 && nPol()!=2 && nPol()!=4) {
389     throw (AipsError("You must have 1,2 or 4 polarizations to get the Stokes parameters"));
[418]390  }
391  Array<Float> arr;
392  stokesCol_.get(whichRow, arr);
[455]393
[430]394  if (doPol && (polSel_==1 || polSel_==2)) {       //   Q,U --> P, P.A.
395
[455]396    // Set current cursor location
[418]397     const IPosition& shape = arr.shape();
[430]398     IPosition start, end;
[483]399     getCursorSlice(start, end, shape);
[430]400
[455]401     // Get Q and U slices
[430]402
[455]403     Array<Float> Q = SDPolUtil::getStokesSlice(arr,start,end,"Q");
404     Array<Float> U = SDPolUtil::getStokesSlice(arr,start,end,"U");
[430]405
[455]406     // Compute output
[430]407
[418]408     Array<Float> out;
409     if (polSel_==1) {                                        // P
410        out = SDPolUtil::polarizedIntensity(Q,U);
411     } else if (polSel_==2) {                                 // P.A.
[426]412        out = SDPolUtil::positionAngle(Q,U) + paOffset;
[418]413     }
[430]414
[455]415     // Copy to output
[430]416
[418]417     IPosition vecShape(1,shape(asap::ChanAxis));
418     Vector<Float> outV = out.reform(vecShape);
[455]419     std::vector<float> stlout;
420     outV.tovector(stlout);
421     return stlout;
422
[418]423  } else {
[430]424
[455]425    // Selects at the cursor location
426    return getFloatSpectrum(arr);
[418]427  }
428}
429
[490]430std::string SDMemTable::getStokesSpectrumLabel (Bool doPol) const
431//
432// Gets STokes label depending on cursor polSel location
433//  doPol=False  : I,Q,U,V
434//  doPol=True   : I,P,PA,V   ; P = sqrt(Q**2+U**2), PA = 0.5*atan2(Q,U)
435//
436{
437  AlwaysAssert(asap::nAxes==4,AipsError);
438  if (nPol()!=1 && nPol()!=2 && nPol()!=4) {
439     throw (AipsError("You must have 1,2 or 4 polarizations to get the Stokes parameters"));
440  }
441//
442   Stokes::StokesTypes type = Stokes::Undefined;
443   switch (polSel_) {
444      case 0:
445        {
446           type = Stokes::I;
447        }
448        break;
449      case 1:
450        {
451           if (doPol) {
452              type = Stokes::Plinear;
453           } else {
454              type = Stokes::Q;
455           }
456        }
457      case 2:
458        {
459           if (doPol) {
460              type = Stokes::Pangle;
461           } else {
462              type = Stokes::U;
463           }
464        }
465        break;
466      case 3:
467        {
468           type = Stokes::V;
469        }
470        break;
471      default:
472        {
473            throw(AipsError("Unknown Stokes type"));
474        }
475   }
476//
477   return SDPolUtil::stokesString(type);
478}
479
480
481
[455]482std::vector<float> SDMemTable::getCircularSpectrum(Int whichRow,
483                                                   Bool doRR) const
484  // Gets
485  //  RR = I + V
486  //  LL = I - V
[430]487{
488  AlwaysAssert(asap::nAxes==4,AipsError);
489  if (nPol()!=4) {
490     throw (AipsError("You must have 4 polarizations to get RR or LL"));
491  }
492  Array<Float> arr;
493  stokesCol_.get(whichRow, arr);
494
[455]495  // Set current cursor location
[430]496
497  const IPosition& shape = arr.shape();
498  IPosition start, end;
[483]499  getCursorSlice(start, end, shape);
[430]500
[455]501  // Get I and V slices
[430]502
[455]503  Array<Float> I = SDPolUtil::getStokesSlice(arr,start,end,"I");
504  Array<Float> V = SDPolUtil::getStokesSlice(arr,start,end,"V");
[430]505
[455]506  // Compute output
[430]507
[455]508  Array<Float> out = SDPolUtil::circularPolarizationFromStokes(I, V, doRR);
[430]509
[455]510  // Copy to output
[430]511
512  IPosition vecShape(1,shape(asap::ChanAxis));
513  Vector<Float> outV = out.reform(vecShape);
[455]514  std::vector<float> stlout;
515  outV.tovector(stlout);
516
517  return stlout;
[430]518}
519
[490]520
521std::string SDMemTable::getCircularSpectrumLabel (Bool doRR) const
522//
523// Gets Circular label
524//
525{
526   Stokes::StokesTypes type = Stokes::Undefined;
527   if (doRR) {
528      type = Stokes::RR;
529   } else {
530      type = Stokes::LL;
531   }
532//
533   return SDPolUtil::stokesString(type);
534}
535
536
537
538
539
540
[472]541Array<Float> SDMemTable::getStokesSpectrum(Int whichRow, Int iBeam, Int iIF) const
542{
[418]543
[472]544// Get data
545
546  Array<Float> arr;
547  stokesCol_.get(whichRow, arr);
548
549// Set current cursor location and overwrite polarization axis
550
551  const IPosition& shape = arr.shape();
552  IPosition start(shape.nelements(),0); 
553  IPosition end(shape-1);
554  if (iBeam!=-1) {
555     start(asap::BeamAxis) = iBeam;
556     end(asap::BeamAxis) = iBeam;
557  }
558  if (iIF!=-1) {
559     start(asap::IFAxis) = iIF;
560     end(asap::IFAxis) = iIF;
561  }
562
563// Get slice
564
565  return arr(start,end);
566}
567
568
[206]569std::vector<string> SDMemTable::getCoordInfo() const
570{
[105]571  String un;
572  Table t = table_.keywordSet().asTable("FREQUENCIES");
573  String sunit;
574  t.keywordSet().get("UNIT",sunit);
575  String dpl;
576  t.keywordSet().get("DOPPLER",dpl);
577  if (dpl == "") dpl = "RADIO";
578  String rfrm;
579  t.keywordSet().get("REFFRAME",rfrm);
580  std::vector<string> inf;
581  inf.push_back(sunit);
582  inf.push_back(rfrm);
583  inf.push_back(dpl);
[263]584  t.keywordSet().get("BASEREFFRAME",rfrm);
585  inf.push_back(rfrm);
[105]586  return inf;
587}
[39]588
[206]589void SDMemTable::setCoordInfo(std::vector<string> theinfo)
590{
[105]591  std::vector<string>::iterator it;
[306]592  String un,rfrm, brfrm,dpl;
593  un = theinfo[0];              // Abcissa unit
594  rfrm = theinfo[1];            // Active (or conversion) frame
595  dpl = theinfo[2];             // Doppler
596  brfrm = theinfo[3];           // Base frame
[455]597
[105]598  Table t = table_.rwKeywordSet().asTable("FREQUENCIES");
[455]599
[105]600  Vector<Double> rstf;
601  t.keywordSet().get("RESTFREQS",rstf);
[455]602
[105]603  Bool canDo = True;
604  Unit u1("km/s");Unit u2("Hz");
605  if (Unit(un) == u1) {
606    Vector<Double> rstf;
607    t.keywordSet().get("RESTFREQS",rstf);
608    if (rstf.nelements() == 0) {
609        throw(AipsError("Can't set unit to km/s if no restfrequencies are specified"));
610    }
611  } else if (Unit(un) != u2 && un != "") {
612        throw(AipsError("Unit not conformant with Spectral Coordinates"));
613  }
614  t.rwKeywordSet().define("UNIT", un);
[455]615
[105]616  MFrequency::Types mdr;
617  if (!MFrequency::getType(mdr, rfrm)) {
618   
619    Int a,b;const uInt* c;
620    const String* valid = MFrequency::allMyTypes(a, b, c);
621    String pfix = "Please specify a legal frame type. Types are\n";
622    throw(AipsError(pfix+(*valid)));
623  } else {
624    t.rwKeywordSet().define("REFFRAME",rfrm);
625  }
[455]626
[275]627  MDoppler::Types dtype;
628  dpl.upcase();
629  if (!MDoppler::getType(dtype, dpl)) {
630    throw(AipsError("Doppler type unknown"));
631  } else {
632    t.rwKeywordSet().define("DOPPLER",dpl);
633  }
[455]634
[306]635  if (!MFrequency::getType(mdr, brfrm)) {
636     Int a,b;const uInt* c;
637     const String* valid = MFrequency::allMyTypes(a, b, c);
638     String pfix = "Please specify a legal frame type. Types are\n";
639     throw(AipsError(pfix+(*valid)));
640   } else {
641    t.rwKeywordSet().define("BASEREFFRAME",brfrm);
642   }
[105]643}
644
[286]645
[206]646std::vector<double> SDMemTable::getAbcissa(Int whichRow) const
647{
[286]648  std::vector<double> abc(nChan());
[206]649
[455]650  // Get header units keyword
[286]651  Table t = table_.keywordSet().asTable("FREQUENCIES");
[105]652  String sunit;
653  t.keywordSet().get("UNIT",sunit);
654  if (sunit == "") sunit = "pixel";
655  Unit u(sunit);
[286]656
[455]657  // Easy if just wanting pixels
[286]658  if (sunit==String("pixel")) {
659    // assume channels/pixels
660    std::vector<double>::iterator it;
661    uInt i=0;
662    for (it = abc.begin(); it != abc.end(); ++it) {
663      (*it) = Double(i++);
664    }
665    return abc;
[78]666  }
667
[455]668  // Continue with km/s or Hz.  Get FreqIDs
[347]669  Vector<uInt> freqIDs;
670  freqidCol_.get(whichRow, freqIDs);
671  uInt freqID = freqIDs(IFSel_);
[386]672  restfreqidCol_.get(whichRow, freqIDs);
673  uInt restFreqID = freqIDs(IFSel_);
[286]674
[455]675  // Get SpectralCoordinate, set reference frame conversion,
676  // velocity conversion, and rest freq state
[286]677
[386]678  SpectralCoordinate spc = getSpectralCoordinate(freqID, restFreqID, whichRow);
[286]679  Vector<Double> pixel(nChan());
680  indgen(pixel);
[455]681
[286]682  if (u == Unit("km/s")) {
683     Vector<Double> world;
684     spc.pixelToVelocity(world,pixel);
685     std::vector<double>::iterator it;
686     uInt i = 0;
687     for (it = abc.begin(); it != abc.end(); ++it) {
688       (*it) = world[i];
689       i++;
690     }
[39]691  } else if (u == Unit("Hz")) {
[286]692
[455]693    // Set world axis units   
[39]694    Vector<String> wau(1); wau = u.getName();
695    spc.setWorldAxisUnits(wau);
[455]696
[39]697    std::vector<double>::iterator it;
698    Double tmp;
699    uInt i = 0;
[286]700    for (it = abc.begin(); it != abc.end(); ++it) {
701      spc.toWorld(tmp,pixel[i]);
[39]702      (*it) = tmp;
703      i++;
704    }
705  }
[286]706  return abc;
[39]707}
708
[164]709std::string SDMemTable::getAbcissaString(Int whichRow) const
[105]710{
711  Table t = table_.keywordSet().asTable("FREQUENCIES");
[455]712
[105]713  String sunit;
714  t.keywordSet().get("UNIT",sunit);
715  if (sunit == "") sunit = "pixel";
716  Unit u(sunit);
[455]717
[347]718  Vector<uInt> freqIDs;
719  freqidCol_.get(whichRow, freqIDs);
[386]720  uInt freqID = freqIDs(IFSel_); 
721  restfreqidCol_.get(whichRow, freqIDs);
722  uInt restFreqID = freqIDs(IFSel_);
[286]723
[455]724  // Get SpectralCoordinate, with frame, velocity, rest freq state set
725  SpectralCoordinate spc = getSpectralCoordinate(freqID, restFreqID, whichRow);
[286]726
[105]727  String s = "Channel";
728  if (u == Unit("km/s")) {
729    s = CoordinateUtil::axisLabel(spc,0,True,True,True);
730  } else if (u == Unit("Hz")) {
731    Vector<String> wau(1);wau = u.getName();
732    spc.setWorldAxisUnits(wau);
[455]733
[286]734    s = CoordinateUtil::axisLabel(spc,0,True,True,False);
[105]735  }
736  return s;
737}
738
[206]739void SDMemTable::setSpectrum(std::vector<float> spectrum, int whichRow)
740{
[89]741  Array<Float> arr;
[322]742  specCol_.get(whichRow, arr);
[455]743  if (spectrum.size() != arr.shape()(asap::ChanAxis)) {
[89]744    throw(AipsError("Attempting to set spectrum with incorrect length."));
745  }
746
[455]747  // Setup accessors
[206]748  ArrayAccessor<Float, Axis<asap::BeamAxis> > aa0(arr);
[447]749  aa0.reset(aa0.begin(uInt(beamSel_)));                   // Beam selection
[206]750  ArrayAccessor<Float, Axis<asap::IFAxis> > aa1(aa0);
[447]751  aa1.reset(aa1.begin(uInt(IFSel_)));                     // IF selection
[206]752  ArrayAccessor<Float, Axis<asap::PolAxis> > aa2(aa1);
[447]753  aa2.reset(aa2.begin(uInt(polSel_)));                    // Pol selection
[89]754
[455]755  // Iterate
[89]756  std::vector<float>::iterator it = spectrum.begin();
[206]757  for (ArrayAccessor<Float, Axis<asap::ChanAxis> > i(aa2); i != i.end(); ++i) {
[89]758    (*i) = Float(*it);
759    it++;
760  }
[322]761  specCol_.put(whichRow, arr);
[89]762}
763
[206]764void SDMemTable::getSpectrum(Vector<Float>& spectrum, Int whichRow) const
765{
[21]766  Array<Float> arr;
[322]767  specCol_.get(whichRow, arr);
[418]768
[455]769  // Iterate and extract
[21]770  spectrum.resize(arr.shape()(3));
[206]771  ArrayAccessor<Float, Axis<asap::BeamAxis> > aa0(arr);
[21]772  aa0.reset(aa0.begin(uInt(beamSel_)));//go to beam
[206]773  ArrayAccessor<Float, Axis<asap::IFAxis> > aa1(aa0);
[21]774  aa1.reset(aa1.begin(uInt(IFSel_)));// go to IF
[206]775  ArrayAccessor<Float, Axis<asap::PolAxis> > aa2(aa1);
[21]776  aa2.reset(aa2.begin(uInt(polSel_)));// go to pol
[455]777
[206]778  ArrayAccessor<Float, Axis<asap::BeamAxis> > va(spectrum);
779  for (ArrayAccessor<Float, Axis<asap::ChanAxis> > i(aa2); i != i.end(); ++i) {
[21]780    (*va) = (*i);
781    va++;
782  }
783}
[418]784
785
[89]786/*
[68]787void SDMemTable::getMask(Vector<Bool>& mask, Int whichRow) const {
[21]788  Array<uChar> arr;
[322]789  flagsCol_.get(whichRow, arr);
[21]790  mask.resize(arr.shape()(3));
791
[206]792  ArrayAccessor<uChar, Axis<asap::BeamAxis> > aa0(arr);
[21]793  aa0.reset(aa0.begin(uInt(beamSel_)));//go to beam
[206]794  ArrayAccessor<uChar, Axis<asap::IFAxis> > aa1(aa0);
[21]795  aa1.reset(aa1.begin(uInt(IFSel_)));// go to IF
[206]796  ArrayAccessor<uChar, Axis<asap::PolAxis> > aa2(aa1);
[21]797  aa2.reset(aa2.begin(uInt(polSel_)));// go to pol
798
799  Bool useUserMask = ( chanMask_.size() == arr.shape()(3) );
[89]800
[206]801  ArrayAccessor<Bool, Axis<asap::BeamAxis> > va(mask);
[21]802  std::vector<bool> tmp;
803  tmp = chanMask_; // WHY the fxxx do I have to make a copy here. The
[89]804                   // iterator should work on chanMask_??
[21]805  std::vector<bool>::iterator miter;
806  miter = tmp.begin();
807
[206]808  for (ArrayAccessor<uChar, Axis<asap::ChanAxis> > i(aa2); i != i.end(); ++i) {
[21]809    bool out =!static_cast<bool>(*i);
810    if (useUserMask) {
811      out = out && (*miter);
812      miter++;
813    }
814    (*va) = out;
815    va++;
[89]816  }
[21]817}
[89]818*/
[447]819
[455]820MaskedArray<Float> SDMemTable::rowAsMaskedArray(uInt whichRow,
821                                                Bool toStokes) const
[164]822{
[455]823  // Get flags
[441]824  Array<uChar> farr;
825  flagsCol_.get(whichRow, farr);
826
[455]827  // Get data and convert mask to Bool
[2]828  Array<Float> arr;
[441]829  Array<Bool> mask;
[439]830  if (toStokes) {
831     stokesCol_.get(whichRow, arr);
[455]832
[441]833     Array<Bool> tMask(farr.shape());
834     convertArray(tMask, farr);
[462]835     mask = SDPolUtil::stokesData (tMask, True);
[439]836  } else {
837     specCol_.get(whichRow, arr);
[441]838     mask.resize(farr.shape());
839     convertArray(mask, farr);
[439]840  }
[455]841
[447]842  return MaskedArray<Float>(arr,!mask);
[2]843}
844
[206]845Float SDMemTable::getTsys(Int whichRow) const
846{
[2]847  Array<Float> arr;
[322]848  tsCol_.get(whichRow, arr);
[2]849  Float out;
[455]850
[2]851  IPosition ip(arr.shape());
[418]852  ip(asap::BeamAxis) = beamSel_;
853  ip(asap::IFAxis) = IFSel_;
854  ip(asap::PolAxis) = polSel_;
855  ip(asap::ChanAxis)=0;               // First channel only
[455]856
[2]857  out = arr(ip);
858  return out;
859}
860
[281]861MDirection SDMemTable::getDirection(Int whichRow, Bool refBeam) const
[206]862{
[212]863  MDirection::Types mdr = getDirectionReference();
[206]864  Array<Double> posit;
[322]865  dirCol_.get(whichRow,posit);
[206]866  Vector<Double> wpos(2);
[380]867  Int rb;
868  rbeamCol_.get(whichRow,rb);
[206]869  wpos[0] = posit(IPosition(2,beamSel_,0));
870  wpos[1] = posit(IPosition(2,beamSel_,1));
[380]871  if (refBeam && rb > -1) {  // use refBeam instead if it exists
872    wpos[0] = posit(IPosition(2,rb,0));
873    wpos[1] = posit(IPosition(2,rb,1));
874  }
875
[206]876  Quantum<Double> lon(wpos[0],Unit(String("rad")));
877  Quantum<Double> lat(wpos[1],Unit(String("rad")));
[286]878  return MDirection(lon, lat, mdr);
[206]879}
[39]880
[380]881MEpoch SDMemTable::getEpoch(Int whichRow) const
[206]882{
[286]883  MEpoch::Types met = getTimeReference();
[455]884
[286]885  Double obstime;
[322]886  timeCol_.get(whichRow,obstime);
[286]887  MVEpoch tm2(Quantum<Double>(obstime, Unit(String("d"))));
888  return MEpoch(tm2, met);
889}
890
891MPosition SDMemTable::getAntennaPosition () const
892{
893  Vector<Double> antpos;
894  table_.keywordSet().get("AntennaPosition", antpos);
895  MVPosition mvpos(antpos(0),antpos(1),antpos(2));
896  return MPosition(mvpos);
897}
898
899
[347]900SpectralCoordinate SDMemTable::getSpectralCoordinate(uInt freqID) const
[286]901{
[206]902 
[39]903  Table t = table_.keywordSet().asTable("FREQUENCIES");
[347]904  if (freqID> t.nrow() ) {
905    throw(AipsError("SDMemTable::getSpectralCoordinate - freqID out of range"));
[39]906  }
[89]907
[39]908  Double rp,rv,inc;
909  String rf;
910  ROScalarColumn<Double> rpc(t, "REFPIX");
911  ROScalarColumn<Double> rvc(t, "REFVAL");
912  ROScalarColumn<Double> incc(t, "INCREMENT");
[105]913  t.keywordSet().get("BASEREFFRAME",rf);
[89]914
[455]915  // Create SpectralCoordinate (units Hz)
[39]916  MFrequency::Types mft;
917  if (!MFrequency::getType(mft, rf)) {
918    cerr << "Frequency type unknown assuming TOPO" << endl;
[89]919    mft = MFrequency::TOPO;
920  }
[347]921  rpc.get(freqID, rp);
922  rvc.get(freqID, rv);
923  incc.get(freqID, inc);
[455]924
[39]925  SpectralCoordinate spec(mft,rv,inc,rp);
[286]926  return spec;
927}
928
929
[455]930SpectralCoordinate SDMemTable::getSpectralCoordinate(uInt freqID,
931                                                     uInt restFreqID,
[386]932                                                     uInt whichRow) const
[286]933{
[455]934 
935  // Create basic SC
936  SpectralCoordinate spec = getSpectralCoordinate (freqID);
[385]937
[286]938  Table t = table_.keywordSet().asTable("FREQUENCIES");
939
[455]940  // Set rest frequency
[386]941  Vector<Double> restFreqIDs;
942  t.keywordSet().get("RESTFREQS",restFreqIDs);
[455]943  if (restFreqID < restFreqIDs.nelements()) {    // Should always be true
[386]944    spec.setRestFrequency(restFreqIDs(restFreqID),True);
[286]945  }
946
[455]947  // Set up frame conversion layer
[286]948  String frm;
949  t.keywordSet().get("REFFRAME",frm);
950  if (frm == "") frm = "TOPO";
951  MFrequency::Types mtype;
952  if (!MFrequency::getType(mtype, frm)) {
[455]953    // Should never happen
954    cerr << "Frequency type unknown assuming TOPO" << endl;
[286]955    mtype = MFrequency::TOPO;
956  }
957
[455]958  // Set reference frame conversion  (requires row)
[401]959  MDirection dir = getDirection(whichRow);
[286]960  MEpoch epoch = getEpoch(whichRow);
961  MPosition pos = getAntennaPosition();
[455]962
[401]963  if (!spec.setReferenceConversion(mtype,epoch,pos,dir)) {
[286]964    throw(AipsError("Couldn't convert frequency frame."));
965  }
966
[455]967  // Now velocity conversion if appropriate
[286]968  String unitStr;
969  t.keywordSet().get("UNIT",unitStr);
[455]970
[286]971  String dpl;
972  t.keywordSet().get("DOPPLER",dpl);
973  MDoppler::Types dtype;
974  MDoppler::getType(dtype, dpl);
975
[455]976  // Only set velocity unit if non-blank and non-Hz
[286]977  if (!unitStr.empty()) {
978     Unit unitU(unitStr);
979     if (unitU==Unit("Hz")) {
980     } else {
981        spec.setVelocity(unitStr, dtype);
982     }
983  }
[455]984
[39]985  return spec;
986}
987
[286]988
[89]989Bool SDMemTable::setCoordinate(const SpectralCoordinate& speccord,
[347]990                               uInt freqID) {
[50]991  Table t = table_.rwKeywordSet().asTable("FREQUENCIES");
[347]992  if (freqID > t.nrow() ) {
[89]993    throw(AipsError("SDMemTable::setCoordinate - coord no out of range"));
[50]994  }
995  ScalarColumn<Double> rpc(t, "REFPIX");
996  ScalarColumn<Double> rvc(t, "REFVAL");
997  ScalarColumn<Double> incc(t, "INCREMENT");
[89]998
[347]999  rpc.put(freqID, speccord.referencePixel()[0]);
1000  rvc.put(freqID, speccord.referenceValue()[0]);
1001  incc.put(freqID, speccord.increment()[0]);
[50]1002
1003  return True;
1004}
1005
[89]1006Int SDMemTable::nCoordinates() const
1007{
1008  return table_.keywordSet().asTable("FREQUENCIES").nrow();
1009}
[50]1010
[89]1011
[251]1012std::vector<double> SDMemTable::getRestFreqs() const
1013{
1014  Table t = table_.keywordSet().asTable("FREQUENCIES");
1015  Vector<Double> tvec;
1016  t.keywordSet().get("RESTFREQS",tvec);
1017  std::vector<double> stlout;
1018  tvec.tovector(stlout);
1019  return stlout; 
1020}
1021
[206]1022bool SDMemTable::putSDFreqTable(const SDFrequencyTable& sdft)
1023{
[39]1024  TableDesc td("", "1", TableDesc::Scratch);
1025  td.addColumn(ScalarColumnDesc<Double>("REFPIX"));
1026  td.addColumn(ScalarColumnDesc<Double>("REFVAL"));
1027  td.addColumn(ScalarColumnDesc<Double>("INCREMENT"));
1028  SetupNewTable aNewTab("freqs", td, Table::New);
1029  Table aTable (aNewTab, Table::Memory, sdft.length());
1030  ScalarColumn<Double> sc0(aTable, "REFPIX");
1031  ScalarColumn<Double> sc1(aTable, "REFVAL");
1032  ScalarColumn<Double> sc2(aTable, "INCREMENT");
1033  for (uInt i=0; i < sdft.length(); ++i) {
1034    sc0.put(i,sdft.referencePixel(i));
1035    sc1.put(i,sdft.referenceValue(i));
1036    sc2.put(i,sdft.increment(i));
1037  }
[105]1038  String rf = sdft.refFrame();
1039  if (rf.contains("TOPO")) rf = "TOPO";
1040
1041  aTable.rwKeywordSet().define("BASEREFFRAME", rf);
1042  aTable.rwKeywordSet().define("REFFRAME", rf);
[39]1043  aTable.rwKeywordSet().define("EQUINOX", sdft.equinox());
[105]1044  aTable.rwKeywordSet().define("UNIT", String(""));
1045  aTable.rwKeywordSet().define("DOPPLER", String("RADIO"));
[89]1046  Vector<Double> rfvec;
[206]1047  String rfunit;
1048  sdft.restFrequencies(rfvec,rfunit);
1049  Quantum<Vector<Double> > q(rfvec, rfunit);
1050  rfvec.resize();
1051  rfvec = q.getValue("Hz");
[89]1052  aTable.rwKeywordSet().define("RESTFREQS", rfvec);
[455]1053  table_.rwKeywordSet().defineTable("FREQUENCIES", aTable);
1054  return true;
[39]1055}
1056
[455]1057bool SDMemTable::putSDFitTable(const SDFitTable& sdft)
1058{
1059  TableDesc td("", "1", TableDesc::Scratch);
1060  td.addColumn(ArrayColumnDesc<String>("FUNCTIONS"));
1061  td.addColumn(ArrayColumnDesc<Int>("COMPONENTS"));
1062  td.addColumn(ArrayColumnDesc<Double>("PARAMETERS"));
1063  td.addColumn(ArrayColumnDesc<Bool>("PARMASK"));
[465]1064  td.addColumn(ArrayColumnDesc<String>("FRAMEINFO"));
[455]1065  SetupNewTable aNewTab("fits", td, Table::New);
1066  Table aTable(aNewTab, Table::Memory);
1067  ArrayColumn<String> sc0(aTable, "FUNCTIONS");
1068  ArrayColumn<Int> sc1(aTable, "COMPONENTS");
1069  ArrayColumn<Double> sc2(aTable, "PARAMETERS");
1070  ArrayColumn<Bool> sc3(aTable, "PARMASK");
[465]1071  ArrayColumn<String> sc4(aTable, "FRAMEINFO");
[455]1072  for (uInt i; i<sdft.length(); ++i) {
[465]1073    const Vector<Double>& parms = sdft.getParameters(i);
1074    const Vector<Bool>& parmask = sdft.getParameterMask(i);
1075    const Vector<String>& funcs = sdft.getFunctions(i);
1076    const Vector<Int>& comps = sdft.getComponents(i);
1077    const Vector<String>& finfo = sdft.getFrameInfo(i);
[455]1078    sc0.put(i,funcs);
1079    sc1.put(i,comps);
1080    sc3.put(i,parmask);
1081    sc2.put(i,parms);
[465]1082    sc4.put(i,finfo);
[455]1083  }
1084  table_.rwKeywordSet().defineTable("FITS", aTable);
1085  return true;
1086}
1087
1088SDFitTable SDMemTable::getSDFitTable() const
1089{
1090  const Table& t = table_.keywordSet().asTable("FITS");
1091  Vector<Double> parms;
1092  Vector<Bool> parmask;
1093  Vector<String> funcs;
[465]1094  Vector<String> finfo;
[455]1095  Vector<Int> comps; 
1096  ROArrayColumn<Double> parmsCol(t, "PARAMETERS");
1097  ROArrayColumn<Bool> parmaskCol(t, "PARMASK");
1098  ROArrayColumn<Int> compsCol(t, "COMPONENTS");
1099  ROArrayColumn<String> funcsCol(t, "FUNCTIONS");
[465]1100  ROArrayColumn<String> finfoCol(t, "FRAMEINFO");
[455]1101  uInt n = t.nrow();
[465]1102  SDFitTable sdft;
[455]1103  for (uInt i=0; i<n; ++i) {
1104    parmaskCol.get(i, parmask);
1105    parmsCol.get(i, parms);
1106    funcsCol.get(i, funcs);
1107    compsCol.get(i, comps);
[465]1108    finfoCol.get(i, finfo);
1109    sdft.addFit(parms, parmask, funcs, comps, finfo);
[455]1110  }
1111  return sdft;
1112}
1113
[465]1114SDFitTable SDMemTable::getSDFitTable(uInt whichRow) const {
1115  Array<Int> fitid;
1116  fitCol_.get(whichRow, fitid);
1117  if (fitid.nelements() == 0) return SDFitTable();
[455]1118
[465]1119  IPosition shp = fitid.shape();
1120  IPosition start(4, beamSel_, IFSel_, polSel_,0);
1121  IPosition end(4, beamSel_, IFSel_, polSel_, shp[3]-1);
1122
1123  // reform the output array slice to be of dim=1
1124  Vector<Int> tmp = (fitid(start, end)).reform(IPosition(1,shp[3]));
1125
1126  const Table& t = table_.keywordSet().asTable("FITS");
1127  Vector<Double> parms;
1128  Vector<Bool> parmask;
1129  Vector<String> funcs;
1130  Vector<String> finfo;
1131  Vector<Int> comps;   
1132  ROArrayColumn<Double> parmsCol(t, "PARAMETERS");
1133  ROArrayColumn<Bool> parmaskCol(t, "PARMASK");
1134  ROArrayColumn<Int> compsCol(t, "COMPONENTS");
1135  ROArrayColumn<String> funcsCol(t, "FUNCTIONS");
1136  ROArrayColumn<String> finfoCol(t, "FRAMEINFO");
1137  if (t.nrow() == 0) return SDFitTable();
1138  SDFitTable sdft;
1139  Int k=-1;
1140  for (uInt i=0; i< tmp.nelements(); ++i) {
1141    k = tmp[i];
1142    if ( k > -1 && k < t.nrow() ) {
1143      parms.resize();
1144      parmsCol.get(k, parms);
1145      parmask.resize();
1146      parmaskCol.get(k, parmask);
1147      funcs.resize();
1148      funcsCol.get(k, funcs);
1149      comps.resize();
1150      compsCol.get(k, comps);
1151      finfo.resize();
1152      finfoCol.get(k, finfo);
1153      sdft.addFit(parms, parmask, funcs, comps, finfo);
1154    }
1155  }
1156  return sdft;
1157}
1158
[455]1159void SDMemTable::addFit(uInt whichRow,
1160                        const Vector<Double>& p, const Vector<Bool>& m,
1161                        const Vector<String>& f, const Vector<Int>& c)
1162{
1163  if (whichRow >= nRow()) {
1164    throw(AipsError("Specified row out of range"));
1165  }
1166  Table t = table_.keywordSet().asTable("FITS");
1167  uInt nrow = t.nrow(); 
1168  t.addRow();
1169  ArrayColumn<Double> parmsCol(t, "PARAMETERS");
1170  ArrayColumn<Bool> parmaskCol(t, "PARMASK");
1171  ArrayColumn<Int> compsCol(t, "COMPONENTS");
1172  ArrayColumn<String> funcsCol(t, "FUNCTIONS");
[465]1173  ArrayColumn<String> finfoCol(t, "FRAMEINFO");
[455]1174  parmsCol.put(nrow, p);
1175  parmaskCol.put(nrow, m);
1176  compsCol.put(nrow, c);
1177  funcsCol.put(nrow, f);
[465]1178  Vector<String> fi = mathutil::toVectorString(getCoordInfo());
1179  finfoCol.put(nrow, fi);
[455]1180
1181  Array<Int> fitarr;
1182  fitCol_.get(whichRow, fitarr);
1183
1184  Array<Int> newarr;               // The new Array containing the fitid
1185  Int pos =-1;                     // The fitid position in the array
1186  if ( fitarr.nelements() == 0 ) { // no fits at all in this row
1187    Array<Int> arr(IPosition(4,nBeam(),nIF(),nPol(),1));
1188    arr = -1;
1189    newarr.reference(arr);
1190    pos = 0;     
1191  } else {
1192    IPosition shp = fitarr.shape();
1193    IPosition start(4, beamSel_, IFSel_, polSel_,0);
1194    IPosition end(4, beamSel_, IFSel_, polSel_, shp[3]-1);
1195    // reform the output array slice to be of dim=1
1196    Array<Int> tmp = (fitarr(start, end)).reform(IPosition(1,shp[3]));
1197    const Vector<Int>& fits = tmp;
1198    VectorSTLIterator<Int> it(fits);
1199    Int i = 0;
1200    while (it != fits.end()) {
1201      if (*it == -1) {
1202        pos = i;
1203        break;
1204      }
1205      ++i;
1206      ++it;
1207    };
1208  }
1209  if (pos == -1) {
1210      mathutil::extendLastArrayAxis(newarr,fitarr, -1);
1211      pos = fitarr.shape()[3];     // the new element position
1212  } else {
1213    if (fitarr.nelements() > 0)
1214      newarr = fitarr;
1215  }
1216  newarr(IPosition(4, beamSel_, IFSel_, polSel_, pos)) = Int(nrow);
1217  fitCol_.put(whichRow, newarr);
1218
1219}
1220
[206]1221SDFrequencyTable SDMemTable::getSDFreqTable() const
1222{
[251]1223  const Table& t = table_.keywordSet().asTable("FREQUENCIES");
[39]1224  SDFrequencyTable sdft;
[306]1225
[455]1226  // Add refpix/refval/incr.  What are the units ? Hz I suppose
1227  // but it's nowhere described...
[306]1228  Vector<Double> refPix, refVal, incr;
1229  ScalarColumn<Double> refPixCol(t, "REFPIX");
1230  ScalarColumn<Double> refValCol(t, "REFVAL");
1231  ScalarColumn<Double> incrCol(t, "INCREMENT");
1232  refPix = refPixCol.getColumn();
1233  refVal = refValCol.getColumn();
1234  incr = incrCol.getColumn();
[455]1235
[306]1236  uInt n = refPix.nelements();
1237  for (uInt i=0; i<n; i++) {
1238     sdft.addFrequency(refPix[i], refVal[i], incr[i]);
1239  }
1240
[455]1241  // Frequency reference frame.  I don't know if this
1242  // is the correct frame.  It might be 'REFFRAME'
1243  // rather than 'BASEREFFRAME' ?
[306]1244  String baseFrame;
1245  t.keywordSet().get("BASEREFFRAME",baseFrame);
1246  sdft.setRefFrame(baseFrame);
1247
[455]1248  // Equinox 
[306]1249  Float equinox;
1250  t.keywordSet().get("EQUINOX", equinox);
1251  sdft.setEquinox(equinox);
1252
[455]1253  // Rest Frequency
[306]1254  Vector<Double> restFreqs;
1255  t.keywordSet().get("RESTFREQS", restFreqs);
1256  for (uInt i=0; i<restFreqs.nelements(); i++) {
1257     sdft.addRestFrequency(restFreqs[i]);
1258  }
1259  sdft.setRestFrequencyUnit(String("Hz"));
[455]1260
[39]1261  return sdft;
1262}
1263
[206]1264bool SDMemTable::putSDContainer(const SDContainer& sdc)
1265{
[2]1266  uInt rno = table_.nrow();
1267  table_.addRow();
[455]1268
[322]1269  timeCol_.put(rno, sdc.timestamp);
1270  srcnCol_.put(rno, sdc.sourcename);
1271  fldnCol_.put(rno, sdc.fieldname);
1272  specCol_.put(rno, sdc.getSpectrum());
1273  flagsCol_.put(rno, sdc.getFlags());
1274  tsCol_.put(rno, sdc.getTsys());
1275  scanCol_.put(rno, sdc.scanid);
1276  integrCol_.put(rno, sdc.interval);
1277  freqidCol_.put(rno, sdc.getFreqMap());
[386]1278  restfreqidCol_.put(rno, sdc.getRestFreqMap());
[322]1279  dirCol_.put(rno, sdc.getDirection());
1280  rbeamCol_.put(rno, sdc.refbeam);
1281  tcalCol_.put(rno, sdc.tcal);
1282  tcaltCol_.put(rno, sdc.tcaltime);
1283  azCol_.put(rno, sdc.azimuth);
1284  elCol_.put(rno, sdc.elevation);
1285  paraCol_.put(rno, sdc.parangle);
[455]1286  fitCol_.put(rno, sdc.getFitMap());
[2]1287  return true;
1288}
[18]1289
[206]1290SDContainer SDMemTable::getSDContainer(uInt whichRow) const
1291{
[21]1292  SDContainer sdc(nBeam(),nIF(),nPol(),nChan());
[322]1293  timeCol_.get(whichRow, sdc.timestamp);
1294  srcnCol_.get(whichRow, sdc.sourcename);
1295  integrCol_.get(whichRow, sdc.interval);
1296  scanCol_.get(whichRow, sdc.scanid);
1297  fldnCol_.get(whichRow, sdc.fieldname);
1298  rbeamCol_.get(whichRow, sdc.refbeam);
1299  azCol_.get(whichRow, sdc.azimuth);
1300  elCol_.get(whichRow, sdc.elevation);
1301  paraCol_.get(whichRow, sdc.parangle);
[105]1302  Vector<Float> tc;
[322]1303  tcalCol_.get(whichRow, tc);
[105]1304  sdc.tcal[0] = tc[0];sdc.tcal[1] = tc[1];
[322]1305  tcaltCol_.get(whichRow, sdc.tcaltime);
[455]1306
[21]1307  Array<Float> spectrum;
1308  Array<Float> tsys;
1309  Array<uChar> flagtrum;
[39]1310  Vector<uInt> fmap;
[78]1311  Array<Double> direction;
[455]1312  Array<Int> fits;
1313 
[322]1314  specCol_.get(whichRow, spectrum);
[21]1315  sdc.putSpectrum(spectrum);
[322]1316  flagsCol_.get(whichRow, flagtrum);
[21]1317  sdc.putFlags(flagtrum);
[322]1318  tsCol_.get(whichRow, tsys);
[21]1319  sdc.putTsys(tsys);
[322]1320  freqidCol_.get(whichRow, fmap);
[39]1321  sdc.putFreqMap(fmap);
[386]1322  restfreqidCol_.get(whichRow, fmap);
1323  sdc.putRestFreqMap(fmap);
[322]1324  dirCol_.get(whichRow, direction);
[78]1325  sdc.putDirection(direction);
[455]1326  fitCol_.get(whichRow, fits);
1327  sdc.putFitMap(fits);
[21]1328  return sdc;
1329}
[78]1330
[206]1331bool SDMemTable::putSDHeader(const SDHeader& sdh)
1332{
[18]1333  table_.rwKeywordSet().define("nIF", sdh.nif);
1334  table_.rwKeywordSet().define("nBeam", sdh.nbeam);
1335  table_.rwKeywordSet().define("nPol", sdh.npol);
1336  table_.rwKeywordSet().define("nChan", sdh.nchan);
1337  table_.rwKeywordSet().define("Observer", sdh.observer);
1338  table_.rwKeywordSet().define("Project", sdh.project);
1339  table_.rwKeywordSet().define("Obstype", sdh.obstype);
1340  table_.rwKeywordSet().define("AntennaName", sdh.antennaname);
1341  table_.rwKeywordSet().define("AntennaPosition", sdh.antennaposition);
1342  table_.rwKeywordSet().define("Equinox", sdh.equinox);
1343  table_.rwKeywordSet().define("FreqRefFrame", sdh.freqref);
1344  table_.rwKeywordSet().define("FreqRefVal", sdh.reffreq);
1345  table_.rwKeywordSet().define("Bandwidth", sdh.bandwidth);
1346  table_.rwKeywordSet().define("UTC", sdh.utc);
[206]1347  table_.rwKeywordSet().define("FluxUnit", sdh.fluxunit);
1348  table_.rwKeywordSet().define("Epoch", sdh.epoch);
[18]1349  return true;
[50]1350}
[21]1351
[206]1352SDHeader SDMemTable::getSDHeader() const
1353{
[21]1354  SDHeader sdh;
1355  table_.keywordSet().get("nBeam",sdh.nbeam);
1356  table_.keywordSet().get("nIF",sdh.nif);
1357  table_.keywordSet().get("nPol",sdh.npol);
1358  table_.keywordSet().get("nChan",sdh.nchan);
1359  table_.keywordSet().get("Observer", sdh.observer);
1360  table_.keywordSet().get("Project", sdh.project);
1361  table_.keywordSet().get("Obstype", sdh.obstype);
1362  table_.keywordSet().get("AntennaName", sdh.antennaname);
1363  table_.keywordSet().get("AntennaPosition", sdh.antennaposition);
1364  table_.keywordSet().get("Equinox", sdh.equinox);
1365  table_.keywordSet().get("FreqRefFrame", sdh.freqref);
1366  table_.keywordSet().get("FreqRefVal", sdh.reffreq);
1367  table_.keywordSet().get("Bandwidth", sdh.bandwidth);
1368  table_.keywordSet().get("UTC", sdh.utc);
[206]1369  table_.keywordSet().get("FluxUnit", sdh.fluxunit);
1370  table_.keywordSet().get("Epoch", sdh.epoch);
[21]1371  return sdh;
[18]1372}
[206]1373void SDMemTable::makePersistent(const std::string& filename)
[483]1374
[2]1375  table_.deepCopy(filename,Table::New);
[483]1376
[2]1377}
1378
[89]1379Int SDMemTable::nScan() const {
[50]1380  Int n = 0;
1381  Int previous = -1;Int current=0;
[322]1382  for (uInt i=0; i< scanCol_.nrow();i++) {
1383    scanCol_.getScalar(i,current);
[50]1384    if (previous != current) {
[89]1385      previous = current;
[50]1386      n++;
1387    }
1388  }
1389  return n;
1390}
1391
[260]1392String SDMemTable::formatSec(Double x) const
[206]1393{
[105]1394  Double xcop = x;
1395  MVTime mvt(xcop/24./3600.);  // make days
[365]1396
[105]1397  if (x < 59.95)
[281]1398    return  String("      ") + mvt.string(MVTime::TIME_CLEAN_NO_HM, 7)+"s";
1399  else if (x < 3599.95)
1400    return String("   ") + mvt.string(MVTime::TIME_CLEAN_NO_H,7)+" ";
1401  else {
1402    ostringstream oss;
1403    oss << setw(2) << std::right << setprecision(1) << mvt.hour();
1404    oss << ":" << mvt.string(MVTime::TIME_CLEAN_NO_H,7) << " ";
1405    return String(oss);
1406  }   
[105]1407};
1408
[281]1409String SDMemTable::formatDirection(const MDirection& md) const
1410{
1411  Vector<Double> t = md.getAngle(Unit(String("rad"))).getValue();
1412  Int prec = 7;
1413
1414  MVAngle mvLon(t[0]);
1415  String sLon = mvLon.string(MVAngle::TIME,prec);
1416  MVAngle mvLat(t[1]);
1417  String sLat = mvLat.string(MVAngle::ANGLE+MVAngle::DIG2,prec);
[380]1418  return sLon + String(" ") + sLat;
[281]1419}
1420
1421
[206]1422std::string SDMemTable::getFluxUnit() const
1423{
1424  String tmp;
1425  table_.keywordSet().get("FluxUnit", tmp);
1426  return tmp;
1427}
1428
[218]1429void SDMemTable::setFluxUnit(const std::string& unit)
1430{
1431  String tmp(unit);
1432  Unit tU(tmp);
1433  if (tU==Unit("K") || tU==Unit("Jy")) {
1434     table_.rwKeywordSet().define(String("FluxUnit"), tmp);
1435  } else {
1436     throw AipsError("Illegal unit - must be compatible with Jy or K");
1437  }
1438}
1439
[275]1440
[236]1441void SDMemTable::setInstrument(const std::string& name)
1442{
1443  Bool throwIt = True;
[476]1444  Instrument ins = SDAttr::convertInstrument(name, throwIt);
[236]1445  String nameU(name);
1446  nameU.upcase();
1447  table_.rwKeywordSet().define(String("AntennaName"), nameU);
1448}
1449
[380]1450std::string SDMemTable::summary(bool verbose) const  {
[281]1451
[455]1452  // Format header info
[89]1453  ostringstream oss;
1454  oss << endl;
[380]1455  oss << "--------------------------------------------------------------------------------" << endl;
[89]1456  oss << " Scan Table Summary" << endl;
[380]1457  oss << "--------------------------------------------------------------------------------" << endl;
[89]1458  oss.flags(std::ios_base::left);
1459  oss << setw(15) << "Beams:" << setw(4) << nBeam() << endl
1460      << setw(15) << "IFs:" << setw(4) << nIF() << endl
1461      << setw(15) << "Polarisations:" << setw(4) << nPol() << endl
1462      << setw(15) << "Channels:"  << setw(4) << nChan() << endl;
1463  oss << endl;
1464  String tmp;
1465  table_.keywordSet().get("Observer", tmp);
1466  oss << setw(15) << "Observer:" << tmp << endl;
[281]1467  oss << setw(15) << "Obs Date:" << getTime(-1,True) << endl;
[89]1468  table_.keywordSet().get("Project", tmp);
1469  oss << setw(15) << "Project:" << tmp << endl;
1470  table_.keywordSet().get("Obstype", tmp);
1471  oss << setw(15) << "Obs. Type:" << tmp << endl;
1472  table_.keywordSet().get("AntennaName", tmp);
1473  oss << setw(15) << "Antenna Name:" << tmp << endl;
[206]1474  table_.keywordSet().get("FluxUnit", tmp);
1475  oss << setw(15) << "Flux Unit:" << tmp << endl;
[260]1476  Table t = table_.keywordSet().asTable("FREQUENCIES");
[105]1477  Vector<Double> vec;
1478  t.keywordSet().get("RESTFREQS",vec);
1479  oss << setw(15) << "Rest Freqs:";
1480  if (vec.nelements() > 0) {
1481      oss << setprecision(0) << vec << " [Hz]" << endl;
1482  } else {
1483      oss << "None set" << endl;
1484  }
[158]1485  oss << setw(15) << "Abcissa:" << getAbcissaString() << endl;
[105]1486  oss << setw(15) << "Cursor:" << "Beam[" << getBeam() << "] "
1487      << "IF[" << getIF() << "] " << "Pol[" << getPol() << "]" << endl;
[89]1488  oss << endl;
[455]1489
[385]1490  String dirtype ="Position ("+ MDirection::showType(getDirectionReference()) + ")";
[380]1491  oss << setw(5) << "Scan"
[281]1492      << setw(15) << "Source"
[380]1493      << setw(24) << dirtype
[281]1494      << setw(10) << "Time"
[365]1495      << setw(18) << "Integration"
[380]1496      << setw(7) << "FreqIDs" << endl;
1497  oss << "--------------------------------------------------------------------------------" << endl;
[281]1498 
[455]1499  // Generate list of scan start and end integrations
[385]1500  Vector<Int> scanIDs = scanCol_.getColumn();
1501  Vector<uInt> startInt, endInt;
1502  mathutil::scanBoundaries(startInt, endInt, scanIDs);
[455]1503
[385]1504  const uInt nScans = startInt.nelements();
[365]1505  String name;
1506  Vector<uInt> freqIDs, listFQ;
[385]1507  uInt nInt;
[455]1508
[385]1509  for (uInt i=0; i<nScans; i++) {
[455]1510    // Get things from first integration of scan
1511    String time = getTime(startInt(i),False);
1512    String tInt = formatSec(Double(getInterval(startInt(i))));
1513    String posit = formatDirection(getDirection(startInt(i),True));
1514    srcnCol_.getScalar(startInt(i),name);
[367]1515
[455]1516    // Find all the FreqIDs in this scan
1517    listFQ.resize(0);     
1518    for (uInt j=startInt(i); j<endInt(i)+1; j++) {
1519      freqidCol_.get(j, freqIDs);
1520      for (uInt k=0; k<freqIDs.nelements(); k++) {
1521        mathutil::addEntry(listFQ, freqIDs(k));
1522      }
1523    }
[367]1524
[455]1525    nInt = endInt(i) - startInt(i) + 1;
1526    oss << setw(3) << std::right << i << std::left << setw(2) << "  "
1527        << setw(15) << name
1528        << setw(24) << posit
1529        << setw(10) << time
1530        << setw(3) << std::right << nInt  << setw(3) << " x " << std::left
1531        << setw(6) <<  tInt
1532        << " " << listFQ << endl;
[2]1533  }
[89]1534  oss << endl;
[455]1535  oss << "Table contains " << table_.nrow() << " integration(s) in "
1536      << nScans << " scan(s)." << endl;
[321]1537
[455]1538  // Frequency Table
[380]1539  if (verbose) {
1540    std::vector<string> info = getCoordInfo();
1541    SDFrequencyTable sdft = getSDFreqTable();
1542    oss << endl << endl;
1543    oss << "FreqID  Frame   RefFreq(Hz)     RefPix   Increment(Hz)" << endl;
1544    oss << "--------------------------------------------------------------------------------" << endl;
1545    for (uInt i=0; i<sdft.length(); i++) {
1546      oss << setw(8) << i << setw(8)
1547          << info[3] << setw(16) << setprecision(8)
1548          << sdft.referenceValue(i) << setw(10)
1549          << sdft.referencePixel(i) << setw(12)
1550          << sdft.increment(i) << endl;
1551    }
1552    oss << "--------------------------------------------------------------------------------" << endl;
[321]1553  }
[89]1554  return String(oss);
[2]1555}
[483]1556/*
1557std::string SDMemTable::scanSummary(const std::vector<int>& whichScans) {
1558  ostringstream oss;
1559  Vector<Int> scanIDs = scanCol_.getColumn();
1560  Vector<uInt> startInt, endInt;
1561  mathutil::scanBoundaries(startInt, endInt, scanIDs);
1562  const uInt nScans = startInt.nelements();
1563  std::vector<int>::const_iterator it(whichScans);
1564  return String(oss);
1565}
1566*/
[206]1567Int SDMemTable::nBeam() const
1568{
[18]1569  Int n;
1570  table_.keywordSet().get("nBeam",n);
1571  return n;
1572}
[455]1573
[18]1574Int SDMemTable::nIF() const {
1575  Int n;
1576  table_.keywordSet().get("nIF",n);
1577  return n;
1578}
[455]1579
[18]1580Int SDMemTable::nPol() const {
1581  Int n;
1582  table_.keywordSet().get("nPol",n);
1583  return n;
1584}
[455]1585
[18]1586Int SDMemTable::nChan() const {
1587  Int n;
1588  table_.keywordSet().get("nChan",n);
1589  return n;
1590}
[455]1591
[488]1592Table SDMemTable::getHistoryTable() const
1593{
1594  return table_.keywordSet().asTable("HISTORY");
1595}
1596
1597void SDMemTable::appendToHistoryTable(const Table& otherHist)
1598{
1599  Table t = table_.rwKeywordSet().asTable("HISTORY");
1600  const String sep = "--------------------------------------------------------------------------------";
1601  addHistory(sep);
1602  TableCopy::copyRows(t, otherHist, t.nrow(), 0, otherHist.nrow());
1603  addHistory(sep);
1604}
1605
[483]1606void SDMemTable::addHistory(const std::string& hist)
[206]1607{
[483]1608  Table t = table_.rwKeywordSet().asTable("HISTORY");
1609  uInt nrow = t.nrow(); 
1610  t.addRow();
1611  ScalarColumn<String> itemCol(t, "ITEM");
1612  itemCol.put(nrow, hist);
[206]1613}
1614
[483]1615std::vector<std::string> SDMemTable::getHistory() const
[206]1616{
1617  Vector<String> history;
[483]1618  const Table& t = table_.keywordSet().asTable("HISTORY");
1619  uInt nrow = t.nrow(); 
1620  ROScalarColumn<String> itemCol(t, "ITEM");
1621  std::vector<std::string> stlout;
1622  String hist;
1623  for (uInt i=0; i<nrow; ++i) {
1624    itemCol.get(i, hist);
1625    stlout.push_back(hist);
1626  }
[206]1627  return stlout;
1628}
[488]1629
1630
[16]1631/*
[483]1632  void SDMemTable::maskChannels(const std::vector<Int>& whichChans ) {
[89]1633
[16]1634  std::vector<int>::iterator it;
[206]1635  ArrayAccessor<uChar, Axis<asap::PolAxis> > j(flags_);
[16]1636  for (it = whichChans.begin(); it != whichChans.end(); it++) {
1637    j.reset(j.begin(uInt(*it)));
[206]1638    for (ArrayAccessor<uChar, Axis<asap::BeamAxis> > i(j); i != i.end(); ++i) {
1639      for (ArrayAccessor<uChar, Axis<asap::IFAxis> > ii(i); ii != ii.end(); ++ii) {
1640        for (ArrayAccessor<uChar, Axis<asap::ChanAxis> > iii(ii);
[89]1641             iii != iii.end(); ++iii) {
1642          (*iii) =
1643        }
[16]1644      }
1645    }
1646  }
[89]1647
[16]1648}
1649*/
[206]1650void SDMemTable::flag(int whichRow)
[483]1651  {
[89]1652  Array<uChar> arr;
[322]1653  flagsCol_.get(whichRow, arr);
[89]1654
[206]1655  ArrayAccessor<uChar, Axis<asap::BeamAxis> > aa0(arr);
[89]1656  aa0.reset(aa0.begin(uInt(beamSel_)));//go to beam
[206]1657  ArrayAccessor<uChar, Axis<asap::IFAxis> > aa1(aa0);
[89]1658  aa1.reset(aa1.begin(uInt(IFSel_)));// go to IF
[206]1659  ArrayAccessor<uChar, Axis<asap::PolAxis> > aa2(aa1);
[89]1660  aa2.reset(aa2.begin(uInt(polSel_)));// go to pol
1661
[206]1662  for (ArrayAccessor<uChar, Axis<asap::ChanAxis> > i(aa2); i != i.end(); ++i) {
[89]1663    (*i) = uChar(True);
1664  }
1665
[322]1666  flagsCol_.put(whichRow, arr);
[89]1667}
[212]1668
[281]1669MDirection::Types SDMemTable::getDirectionReference() const
[212]1670
1671  Float eq;
1672  table_.keywordSet().get("Equinox",eq);
1673  std::map<float,string> mp;
1674  mp[2000.0] = "J2000";
1675  mp[1950.0] = "B1950";
1676  MDirection::Types mdr;
1677  if (!MDirection::getType(mdr, mp[eq])) {   
1678    mdr = MDirection::J2000;
1679    cerr  << "Unknown equinox using J2000" << endl;
1680  }
[455]1681
[212]1682  return mdr;
1683}
1684
[380]1685MEpoch::Types SDMemTable::getTimeReference() const
[212]1686{
1687  MEpoch::Types met;
1688  String ep;
1689  table_.keywordSet().get("Epoch",ep);
1690  if (!MEpoch::getType(met, ep)) {
[387]1691    cerr << "Epoch type unknown - using UTC" << endl;
[212]1692    met = MEpoch::UTC;
1693  }
[455]1694
[212]1695  return met;
1696}
1697
[236]1698
[455]1699Bool SDMemTable::setRestFreqs(const Vector<Double>& restFreqsIn,
1700                              const String& sUnit,
1701                              const vector<string>& lines,
1702                              const String& source,
1703                              Int whichIF)
[386]1704{
1705   const Int nIFs = nIF();
1706   if (whichIF>=nIFs) {
1707      throw(AipsError("Illegal IF index"));
1708   }
1709
[455]1710   // Find vector of restfrequencies
1711   // Double takes precedence over String
[401]1712   Unit unit;
1713   Vector<Double> restFreqs;
1714   if (restFreqsIn.nelements()>0) {
1715      restFreqs.resize(restFreqsIn.nelements());
1716      restFreqs = restFreqsIn;
1717      unit = Unit(sUnit);
1718   } else if (lines.size()>0) {
1719      const uInt nLines = lines.size();
1720      unit = Unit("Hz");
1721      restFreqs.resize(nLines);
1722      MFrequency lineFreq;
1723      for (uInt i=0; i<nLines; i++) {
1724         String tS(lines[i]);
1725         tS.upcase();
1726         if (MeasTable::Line(lineFreq, tS)) {
1727            restFreqs[i] = lineFreq.getValue().getValue();          // Hz
1728         } else {
[455]1729            String s = String(lines[i]) +
1730              String(" is an unrecognized spectral line");
[401]1731            throw(AipsError(s));
1732         }
1733      }
1734   } else {
1735      throw(AipsError("You have not specified any rest frequencies or lines"));
1736   }
1737
[455]1738   // If multiple restfreqs, must be length nIF. In this
1739   // case we will just replace the rest frequencies
[392]1740   const uInt nRestFreqs = restFreqs.nelements();
1741   Int idx = -1;
[386]1742   SDFrequencyTable sdft = getSDFreqTable();
1743
[392]1744   if (nRestFreqs>1) {
[455]1745     // Replace restFreqs, one per IF
[392]1746      if (nRestFreqs != nIFs) {
1747         throw (AipsError("Number of rest frequencies must be equal to the number of IFs"));
1748      }
[414]1749      cout << "Replacing rest frequencies with given list, one per IF" << endl;
[392]1750      sdft.deleteRestFrequencies();
1751      for (uInt i=0; i<nRestFreqs; i++) {
1752         Quantum<Double> rf(restFreqs[i], unit);
1753         sdft.addRestFrequency(rf.getValue("Hz"));
1754      }
1755   } else {
1756
[455]1757     // Add new rest freq
[392]1758      Quantum<Double> rf(restFreqs[0], unit);
1759      idx = sdft.addRestFrequency(rf.getValue("Hz"));
[414]1760      cout << "Selecting given rest frequency" << endl;
[392]1761   }
[455]1762   
1763   // Replace
[386]1764   Bool empty = source.empty();
1765   Bool ok = False;
1766   if (putSDFreqTable(sdft)) {
1767      const uInt nRow = table_.nrow();
1768      String srcName;
1769      Vector<uInt> restFreqIDs;
1770      for (uInt i=0; i<nRow; i++) {
1771         srcnCol_.get(i, srcName);
1772         restfreqidCol_.get(i,restFreqIDs);       
[455]1773
[392]1774         if (idx==-1) {
[455]1775           // Replace vector of restFreqs; one per IF.
1776           // No selection possible
[392]1777            for (uInt i=0; i<nIFs; i++) restFreqIDs[i] = i;
1778         } else {
[455]1779           // Set RestFreqID for selected data
[392]1780            if (empty || source==srcName) {
1781               if (whichIF<0) {
1782                  restFreqIDs = idx;
1783               } else {             
1784                  restFreqIDs[whichIF] = idx;
1785               }
[386]1786            }
1787         }
1788         restfreqidCol_.put(i,restFreqIDs);       
1789      }
1790      ok = True;
1791   } else {
[455]1792     ok = False;
[386]1793   }
[455]1794
[386]1795   return ok;
1796}
1797
[414]1798void SDMemTable::spectralLines() const
[401]1799{
1800   Vector<String> lines = MeasTable::Lines();
1801   MFrequency lineFreq;
1802   Double freq;
[455]1803
[414]1804   cout.flags(std::ios_base::left);
1805   cout << "Line      Frequency (Hz)" << endl;
1806   cout << "-----------------------" << endl;
[401]1807   for (uInt i=0; i<lines.nelements(); i++) {
1808     MeasTable::Line(lineFreq, lines[i]);
1809     freq = lineFreq.getValue().getValue();          // Hz
[414]1810     cout << setw(11) << lines[i] << setprecision(10) << freq << endl;
[401]1811   }
1812}
[386]1813
[380]1814void SDMemTable::renumber()
1815{
1816  uInt nRow = scanCol_.nrow();
1817  Int newscanid = 0;
1818  Int cIdx;// the current scanid
1819  // get the first scanid
1820  scanCol_.getScalar(0,cIdx);
1821  Int pIdx = cIdx;// the scanid of the previous row
1822  for (uInt i=0; i<nRow;++i) {
1823    scanCol_.getScalar(i,cIdx);
1824    if (pIdx == cIdx) {
1825      // renumber
1826      scanCol_.put(i,newscanid);
1827    } else {
1828      ++newscanid;
1829      pIdx = cIdx;   // store scanid
1830      --i;           // don't increment next loop
1831    }
1832  }
1833}
[386]1834
[418]1835
[483]1836void SDMemTable::getCursorSlice(IPosition& start, IPosition& end,
[455]1837                                const IPosition& shape) const
[430]1838{
[455]1839  const uInt nDim = shape.nelements();
1840  start.resize(nDim);
1841  end.resize(nDim);
1842 
1843  start(asap::BeamAxis) = beamSel_;
1844  end(asap::BeamAxis) = beamSel_;
1845  start(asap::IFAxis) = IFSel_;
1846  end(asap::IFAxis) = IFSel_;
[430]1847
[455]1848  start(asap::PolAxis) = polSel_;
1849  end(asap::PolAxis) = polSel_;
[430]1850
[455]1851  start(asap::ChanAxis) = 0;
1852  end(asap::ChanAxis) = shape(asap::ChanAxis) - 1;
[430]1853}
1854
[447]1855
[455]1856std::vector<float> SDMemTable::getFloatSpectrum(const Array<Float>& arr) const
1857  // Get spectrum at cursor location
[447]1858{
1859
[455]1860  // Setup accessors
[447]1861  ArrayAccessor<Float, Axis<asap::BeamAxis> > aa0(arr);
1862  aa0.reset(aa0.begin(uInt(beamSel_)));                    // Beam selection
1863
1864  ArrayAccessor<Float, Axis<asap::IFAxis> > aa1(aa0);
1865  aa1.reset(aa1.begin(uInt(IFSel_)));                      // IF selection
1866
1867  ArrayAccessor<Float, Axis<asap::PolAxis> > aa2(aa1);
1868  aa2.reset(aa2.begin(uInt(polSel_)));                     // Pol selection
[455]1869 
[447]1870  std::vector<float> spectrum;
1871  for (ArrayAccessor<Float, Axis<asap::ChanAxis> > i(aa2); i != i.end(); ++i) {
1872    spectrum.push_back(*i);
1873  }
1874  return spectrum;
1875}
1876
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