source: trunk/src/Scantable.cpp @ 1929

Last change on this file since 1929 was 1929, checked in by Takeshi Nakazato, 14 years ago

New Development: No

JIRA Issue: No

Ready for Test: Yes

Interface Changes: No

What Interface Changed: Please list interface changes

Test Programs: s=sd.scantable('sddata()

s.nbeam(999) # unexisting scan number
s.ncycle(999)
s.nif(999)
s.npol(999)

Put in Release Notes: Yes/No?

Module(s): Module Names change impacts.

Description: Describe your changes here...

Fixed a bug in nbeam, ncycle, nif, and npol that causes seg fault.

  • Property svn:eol-style set to native
  • Property svn:keywords set to Author Date Id Revision
File size: 55.6 KB
Line 
1//
2// C++ Implementation: Scantable
3//
4// Description:
5//
6//
7// Author: Malte Marquarding <asap@atnf.csiro.au>, (C) 2005
8//
9// Copyright: See COPYING file that comes with this distribution
10//
11//
12#include <map>
13#include <fstream>
14
15#include <casa/aips.h>
16#include <casa/iostream.h>
17#include <casa/iomanip.h>
18#include <casa/OS/Path.h>
19#include <casa/OS/File.h>
20#include <casa/Arrays/Array.h>
21#include <casa/Arrays/ArrayMath.h>
22#include <casa/Arrays/MaskArrMath.h>
23#include <casa/Arrays/ArrayLogical.h>
24#include <casa/Arrays/ArrayAccessor.h>
25#include <casa/Arrays/Vector.h>
26#include <casa/Arrays/VectorSTLIterator.h>
27#include <casa/Arrays/Slice.h>
28#include <casa/BasicMath/Math.h>
29#include <casa/BasicSL/Constants.h>
30#include <casa/Quanta/MVAngle.h>
31#include <casa/Containers/RecordField.h>
32#include <casa/Utilities/GenSort.h>
33#include <casa/Logging/LogIO.h>
34
35#include <tables/Tables/TableParse.h>
36#include <tables/Tables/TableDesc.h>
37#include <tables/Tables/TableCopy.h>
38#include <tables/Tables/SetupNewTab.h>
39#include <tables/Tables/ScaColDesc.h>
40#include <tables/Tables/ArrColDesc.h>
41#include <tables/Tables/TableRow.h>
42#include <tables/Tables/TableVector.h>
43#include <tables/Tables/TableIter.h>
44
45#include <tables/Tables/ExprNode.h>
46#include <tables/Tables/TableRecord.h>
47#include <casa/Quanta/MVTime.h>
48#include <casa/Quanta/MVAngle.h>
49#include <measures/Measures/MeasRef.h>
50#include <measures/Measures/MeasTable.h>
51// needed to avoid error in .tcc
52#include <measures/Measures/MCDirection.h>
53//
54#include <measures/Measures/MDirection.h>
55#include <measures/Measures/MFrequency.h>
56#include <measures/Measures/MEpoch.h>
57#include <measures/TableMeasures/TableMeasRefDesc.h>
58#include <measures/TableMeasures/TableMeasValueDesc.h>
59#include <measures/TableMeasures/TableMeasDesc.h>
60#include <measures/TableMeasures/ScalarMeasColumn.h>
61#include <coordinates/Coordinates/CoordinateUtil.h>
62
63#include "Scantable.h"
64#include "STPolLinear.h"
65#include "STPolCircular.h"
66#include "STPolStokes.h"
67#include "STAttr.h"
68#include "MathUtils.h"
69
70using namespace casa;
71
72namespace asap {
73
74std::map<std::string, STPol::STPolFactory *> Scantable::factories_;
75
76void Scantable::initFactories() {
77  if ( factories_.empty() ) {
78    Scantable::factories_["linear"] = &STPolLinear::myFactory;
79    Scantable::factories_["circular"] = &STPolCircular::myFactory;
80    Scantable::factories_["stokes"] = &STPolStokes::myFactory;
81  }
82}
83
84Scantable::Scantable(Table::TableType ttype) :
85  type_(ttype)
86{
87  initFactories();
88  setupMainTable();
89  freqTable_ = STFrequencies(*this);
90  table_.rwKeywordSet().defineTable("FREQUENCIES", freqTable_.table());
91  weatherTable_ = STWeather(*this);
92  table_.rwKeywordSet().defineTable("WEATHER", weatherTable_.table());
93  focusTable_ = STFocus(*this);
94  table_.rwKeywordSet().defineTable("FOCUS", focusTable_.table());
95  tcalTable_ = STTcal(*this);
96  table_.rwKeywordSet().defineTable("TCAL", tcalTable_.table());
97  moleculeTable_ = STMolecules(*this);
98  table_.rwKeywordSet().defineTable("MOLECULES", moleculeTable_.table());
99  historyTable_ = STHistory(*this);
100  table_.rwKeywordSet().defineTable("HISTORY", historyTable_.table());
101  fitTable_ = STFit(*this);
102  table_.rwKeywordSet().defineTable("FIT", fitTable_.table());
103  table_.tableInfo().setType( "Scantable" ) ;
104  originalTable_ = table_;
105  attach();
106}
107
108Scantable::Scantable(const std::string& name, Table::TableType ttype) :
109  type_(ttype)
110{
111  initFactories();
112
113  Table tab(name, Table::Update);
114  uInt version = tab.keywordSet().asuInt("VERSION");
115  if (version != version_) {
116    throw(AipsError("Unsupported version of ASAP file."));
117  }
118  if ( type_ == Table::Memory ) {
119    table_ = tab.copyToMemoryTable(generateName());
120  } else {
121    table_ = tab;
122  }
123  table_.tableInfo().setType( "Scantable" ) ;
124
125  attachSubtables();
126  originalTable_ = table_;
127  attach();
128}
129/*
130Scantable::Scantable(const std::string& name, Table::TableType ttype) :
131  type_(ttype)
132{
133  initFactories();
134  Table tab(name, Table::Update);
135  uInt version = tab.keywordSet().asuInt("VERSION");
136  if (version != version_) {
137    throw(AipsError("Unsupported version of ASAP file."));
138  }
139  if ( type_ == Table::Memory ) {
140    table_ = tab.copyToMemoryTable(generateName());
141  } else {
142    table_ = tab;
143  }
144
145  attachSubtables();
146  originalTable_ = table_;
147  attach();
148}
149*/
150
151Scantable::Scantable( const Scantable& other, bool clear )
152{
153  // with or without data
154  String newname = String(generateName());
155  type_ = other.table_.tableType();
156  if ( other.table_.tableType() == Table::Memory ) {
157      if ( clear ) {
158        table_ = TableCopy::makeEmptyMemoryTable(newname,
159                                                 other.table_, True);
160      } else
161        table_ = other.table_.copyToMemoryTable(newname);
162  } else {
163      other.table_.deepCopy(newname, Table::New, False,
164                            other.table_.endianFormat(),
165                            Bool(clear));
166      table_ = Table(newname, Table::Update);
167      table_.markForDelete();
168  }
169  table_.tableInfo().setType( "Scantable" ) ;
170  /// @todo reindex SCANNO, recompute nbeam, nif, npol
171  if ( clear ) copySubtables(other);
172  attachSubtables();
173  originalTable_ = table_;
174  attach();
175}
176
177void Scantable::copySubtables(const Scantable& other) {
178  Table t = table_.rwKeywordSet().asTable("FREQUENCIES");
179  TableCopy::copyRows(t, other.freqTable_.table());
180  t = table_.rwKeywordSet().asTable("FOCUS");
181  TableCopy::copyRows(t, other.focusTable_.table());
182  t = table_.rwKeywordSet().asTable("WEATHER");
183  TableCopy::copyRows(t, other.weatherTable_.table());
184  t = table_.rwKeywordSet().asTable("TCAL");
185  TableCopy::copyRows(t, other.tcalTable_.table());
186  t = table_.rwKeywordSet().asTable("MOLECULES");
187  TableCopy::copyRows(t, other.moleculeTable_.table());
188  t = table_.rwKeywordSet().asTable("HISTORY");
189  TableCopy::copyRows(t, other.historyTable_.table());
190  t = table_.rwKeywordSet().asTable("FIT");
191  TableCopy::copyRows(t, other.fitTable_.table());
192}
193
194void Scantable::attachSubtables()
195{
196  freqTable_ = STFrequencies(table_);
197  focusTable_ = STFocus(table_);
198  weatherTable_ = STWeather(table_);
199  tcalTable_ = STTcal(table_);
200  moleculeTable_ = STMolecules(table_);
201  historyTable_ = STHistory(table_);
202  fitTable_ = STFit(table_);
203}
204
205Scantable::~Scantable()
206{
207  //cout << "~Scantable() " << this << endl;
208}
209
210void Scantable::setupMainTable()
211{
212  TableDesc td("", "1", TableDesc::Scratch);
213  td.comment() = "An ASAP Scantable";
214  td.rwKeywordSet().define("VERSION", uInt(version_));
215
216  // n Cycles
217  td.addColumn(ScalarColumnDesc<uInt>("SCANNO"));
218  // new index every nBeam x nIF x nPol
219  td.addColumn(ScalarColumnDesc<uInt>("CYCLENO"));
220
221  td.addColumn(ScalarColumnDesc<uInt>("BEAMNO"));
222  td.addColumn(ScalarColumnDesc<uInt>("IFNO"));
223  // linear, circular, stokes
224  td.rwKeywordSet().define("POLTYPE", String("linear"));
225  td.addColumn(ScalarColumnDesc<uInt>("POLNO"));
226
227  td.addColumn(ScalarColumnDesc<uInt>("FREQ_ID"));
228  td.addColumn(ScalarColumnDesc<uInt>("MOLECULE_ID"));
229
230  ScalarColumnDesc<Int> refbeamnoColumn("REFBEAMNO");
231  refbeamnoColumn.setDefault(Int(-1));
232  td.addColumn(refbeamnoColumn);
233
234  ScalarColumnDesc<uInt> flagrowColumn("FLAGROW");
235  flagrowColumn.setDefault(uInt(0));
236  td.addColumn(flagrowColumn);
237
238  td.addColumn(ScalarColumnDesc<Double>("TIME"));
239  TableMeasRefDesc measRef(MEpoch::UTC); // UTC as default
240  TableMeasValueDesc measVal(td, "TIME");
241  TableMeasDesc<MEpoch> mepochCol(measVal, measRef);
242  mepochCol.write(td);
243
244  td.addColumn(ScalarColumnDesc<Double>("INTERVAL"));
245
246  td.addColumn(ScalarColumnDesc<String>("SRCNAME"));
247  // Type of source (on=0, off=1, other=-1)
248  ScalarColumnDesc<Int> stypeColumn("SRCTYPE");
249  stypeColumn.setDefault(Int(-1));
250  td.addColumn(stypeColumn);
251  td.addColumn(ScalarColumnDesc<String>("FIELDNAME"));
252
253  //The actual Data Vectors
254  td.addColumn(ArrayColumnDesc<Float>("SPECTRA"));
255  td.addColumn(ArrayColumnDesc<uChar>("FLAGTRA"));
256  td.addColumn(ArrayColumnDesc<Float>("TSYS"));
257
258  td.addColumn(ArrayColumnDesc<Double>("DIRECTION",
259                                       IPosition(1,2),
260                                       ColumnDesc::Direct));
261  TableMeasRefDesc mdirRef(MDirection::J2000); // default
262  TableMeasValueDesc tmvdMDir(td, "DIRECTION");
263  // the TableMeasDesc gives the column a type
264  TableMeasDesc<MDirection> mdirCol(tmvdMDir, mdirRef);
265  // a uder set table type e.g. GALCTIC, B1950 ...
266  td.rwKeywordSet().define("DIRECTIONREF", String("J2000"));
267  // writing create the measure column
268  mdirCol.write(td);
269  td.addColumn(ScalarColumnDesc<Float>("AZIMUTH"));
270  td.addColumn(ScalarColumnDesc<Float>("ELEVATION"));
271  td.addColumn(ScalarColumnDesc<Float>("OPACITY"));
272
273  td.addColumn(ScalarColumnDesc<uInt>("TCAL_ID"));
274  ScalarColumnDesc<Int> fitColumn("FIT_ID");
275  fitColumn.setDefault(Int(-1));
276  td.addColumn(fitColumn);
277
278  td.addColumn(ScalarColumnDesc<uInt>("FOCUS_ID"));
279  td.addColumn(ScalarColumnDesc<uInt>("WEATHER_ID"));
280
281  // columns which just get dragged along, as they aren't used in asap
282  td.addColumn(ScalarColumnDesc<Double>("SRCVELOCITY"));
283  td.addColumn(ArrayColumnDesc<Double>("SRCPROPERMOTION"));
284  td.addColumn(ArrayColumnDesc<Double>("SRCDIRECTION"));
285  td.addColumn(ArrayColumnDesc<Double>("SCANRATE"));
286
287  td.rwKeywordSet().define("OBSMODE", String(""));
288
289  // Now create Table SetUp from the description.
290  SetupNewTable aNewTab(generateName(), td, Table::Scratch);
291  table_ = Table(aNewTab, type_, 0);
292  originalTable_ = table_;
293}
294
295void Scantable::attach()
296{
297  timeCol_.attach(table_, "TIME");
298  srcnCol_.attach(table_, "SRCNAME");
299  srctCol_.attach(table_, "SRCTYPE");
300  specCol_.attach(table_, "SPECTRA");
301  flagsCol_.attach(table_, "FLAGTRA");
302  tsysCol_.attach(table_, "TSYS");
303  cycleCol_.attach(table_,"CYCLENO");
304  scanCol_.attach(table_, "SCANNO");
305  beamCol_.attach(table_, "BEAMNO");
306  ifCol_.attach(table_, "IFNO");
307  polCol_.attach(table_, "POLNO");
308  integrCol_.attach(table_, "INTERVAL");
309  azCol_.attach(table_, "AZIMUTH");
310  elCol_.attach(table_, "ELEVATION");
311  dirCol_.attach(table_, "DIRECTION");
312  fldnCol_.attach(table_, "FIELDNAME");
313  rbeamCol_.attach(table_, "REFBEAMNO");
314
315  mweatheridCol_.attach(table_,"WEATHER_ID");
316  mfitidCol_.attach(table_,"FIT_ID");
317  mfreqidCol_.attach(table_, "FREQ_ID");
318  mtcalidCol_.attach(table_, "TCAL_ID");
319  mfocusidCol_.attach(table_, "FOCUS_ID");
320  mmolidCol_.attach(table_, "MOLECULE_ID");
321
322  //Add auxiliary column for row-based flagging (CAS-1433 Wataru Kawasaki)
323  attachAuxColumnDef(flagrowCol_, "FLAGROW", 0);
324
325}
326
327template<class T, class T2>
328void Scantable::attachAuxColumnDef(ScalarColumn<T>& col,
329                                   const String& colName,
330                                   const T2& defValue)
331{
332  try {
333    col.attach(table_, colName);
334  } catch (TableError& err) {
335    String errMesg = err.getMesg();
336    if (errMesg == "Table column " + colName + " is unknown") {
337      table_.addColumn(ScalarColumnDesc<T>(colName));
338      col.attach(table_, colName);
339      col.fillColumn(static_cast<T>(defValue));
340    } else {
341      throw;
342    }
343  } catch (...) {
344    throw;
345  }
346}
347
348template<class T, class T2>
349void Scantable::attachAuxColumnDef(ArrayColumn<T>& col,
350                                   const String& colName,
351                                   const Array<T2>& defValue)
352{
353  try {
354    col.attach(table_, colName);
355  } catch (TableError& err) {
356    String errMesg = err.getMesg();
357    if (errMesg == "Table column " + colName + " is unknown") {
358      table_.addColumn(ArrayColumnDesc<T>(colName));
359      col.attach(table_, colName);
360
361      int size = 0;
362      ArrayIterator<T2>& it = defValue.begin();
363      while (it != defValue.end()) {
364        ++size;
365        ++it;
366      }
367      IPosition ip(1, size);
368      Array<T>& arr(ip);
369      for (int i = 0; i < size; ++i)
370        arr[i] = static_cast<T>(defValue[i]);
371
372      col.fillColumn(arr);
373    } else {
374      throw;
375    }
376  } catch (...) {
377    throw;
378  }
379}
380
381void Scantable::setHeader(const STHeader& sdh)
382{
383  table_.rwKeywordSet().define("nIF", sdh.nif);
384  table_.rwKeywordSet().define("nBeam", sdh.nbeam);
385  table_.rwKeywordSet().define("nPol", sdh.npol);
386  table_.rwKeywordSet().define("nChan", sdh.nchan);
387  table_.rwKeywordSet().define("Observer", sdh.observer);
388  table_.rwKeywordSet().define("Project", sdh.project);
389  table_.rwKeywordSet().define("Obstype", sdh.obstype);
390  table_.rwKeywordSet().define("AntennaName", sdh.antennaname);
391  table_.rwKeywordSet().define("AntennaPosition", sdh.antennaposition);
392  table_.rwKeywordSet().define("Equinox", sdh.equinox);
393  table_.rwKeywordSet().define("FreqRefFrame", sdh.freqref);
394  table_.rwKeywordSet().define("FreqRefVal", sdh.reffreq);
395  table_.rwKeywordSet().define("Bandwidth", sdh.bandwidth);
396  table_.rwKeywordSet().define("UTC", sdh.utc);
397  table_.rwKeywordSet().define("FluxUnit", sdh.fluxunit);
398  table_.rwKeywordSet().define("Epoch", sdh.epoch);
399  table_.rwKeywordSet().define("POLTYPE", sdh.poltype);
400}
401
402STHeader Scantable::getHeader() const
403{
404  STHeader sdh;
405  table_.keywordSet().get("nBeam",sdh.nbeam);
406  table_.keywordSet().get("nIF",sdh.nif);
407  table_.keywordSet().get("nPol",sdh.npol);
408  table_.keywordSet().get("nChan",sdh.nchan);
409  table_.keywordSet().get("Observer", sdh.observer);
410  table_.keywordSet().get("Project", sdh.project);
411  table_.keywordSet().get("Obstype", sdh.obstype);
412  table_.keywordSet().get("AntennaName", sdh.antennaname);
413  table_.keywordSet().get("AntennaPosition", sdh.antennaposition);
414  table_.keywordSet().get("Equinox", sdh.equinox);
415  table_.keywordSet().get("FreqRefFrame", sdh.freqref);
416  table_.keywordSet().get("FreqRefVal", sdh.reffreq);
417  table_.keywordSet().get("Bandwidth", sdh.bandwidth);
418  table_.keywordSet().get("UTC", sdh.utc);
419  table_.keywordSet().get("FluxUnit", sdh.fluxunit);
420  table_.keywordSet().get("Epoch", sdh.epoch);
421  table_.keywordSet().get("POLTYPE", sdh.poltype);
422  return sdh;
423}
424
425void Scantable::setSourceType( int stype )
426{
427  if ( stype < 0 || stype > 1 )
428    throw(AipsError("Illegal sourcetype."));
429  TableVector<Int> tabvec(table_, "SRCTYPE");
430  tabvec = Int(stype);
431}
432
433bool Scantable::conformant( const Scantable& other )
434{
435  return this->getHeader().conformant(other.getHeader());
436}
437
438
439
440std::string Scantable::formatSec(Double x) const
441{
442  Double xcop = x;
443  MVTime mvt(xcop/24./3600.);  // make days
444
445  if (x < 59.95)
446    return  String("      ") + mvt.string(MVTime::TIME_CLEAN_NO_HM, 7)+"s";
447  else if (x < 3599.95)
448    return String("   ") + mvt.string(MVTime::TIME_CLEAN_NO_H,7)+" ";
449  else {
450    ostringstream oss;
451    oss << setw(2) << std::right << setprecision(1) << mvt.hour();
452    oss << ":" << mvt.string(MVTime::TIME_CLEAN_NO_H,7) << " ";
453    return String(oss);
454  }
455};
456
457std::string Scantable::formatDirection(const MDirection& md) const
458{
459  Vector<Double> t = md.getAngle(Unit(String("rad"))).getValue();
460  Int prec = 7;
461
462  MVAngle mvLon(t[0]);
463  String sLon = mvLon.string(MVAngle::TIME,prec);
464  uInt tp = md.getRef().getType();
465  if (tp == MDirection::GALACTIC ||
466      tp == MDirection::SUPERGAL ) {
467    sLon = mvLon(0.0).string(MVAngle::ANGLE_CLEAN,prec);
468  }
469  MVAngle mvLat(t[1]);
470  String sLat = mvLat.string(MVAngle::ANGLE+MVAngle::DIG2,prec);
471  return sLon + String(" ") + sLat;
472}
473
474
475std::string Scantable::getFluxUnit() const
476{
477  return table_.keywordSet().asString("FluxUnit");
478}
479
480void Scantable::setFluxUnit(const std::string& unit)
481{
482  String tmp(unit);
483  Unit tU(tmp);
484  if (tU==Unit("K") || tU==Unit("Jy")) {
485     table_.rwKeywordSet().define(String("FluxUnit"), tmp);
486  } else {
487     throw AipsError("Illegal unit - must be compatible with Jy or K");
488  }
489}
490
491void Scantable::setInstrument(const std::string& name)
492{
493  bool throwIt = true;
494  // create an Instrument to see if this is valid
495  STAttr::convertInstrument(name, throwIt);
496  String nameU(name);
497  nameU.upcase();
498  table_.rwKeywordSet().define(String("AntennaName"), nameU);
499}
500
501void Scantable::setFeedType(const std::string& feedtype)
502{
503  if ( Scantable::factories_.find(feedtype) ==  Scantable::factories_.end() ) {
504    std::string msg = "Illegal feed type "+ feedtype;
505    throw(casa::AipsError(msg));
506  }
507  table_.rwKeywordSet().define(String("POLTYPE"), feedtype);
508}
509
510MPosition Scantable::getAntennaPosition() const
511{
512  Vector<Double> antpos;
513  table_.keywordSet().get("AntennaPosition", antpos);
514  MVPosition mvpos(antpos(0),antpos(1),antpos(2));
515  return MPosition(mvpos);
516}
517
518void Scantable::makePersistent(const std::string& filename)
519{
520  String inname(filename);
521  Path path(inname);
522  /// @todo reindex SCANNO, recompute nbeam, nif, npol
523  inname = path.expandedName();
524  // WORKAROUND !!! for Table bug
525  // Remove when fixed in casacore
526  if ( table_.tableType() == Table::Memory  && !selector_.empty() ) {
527    Table tab = table_.copyToMemoryTable(generateName());
528    tab.deepCopy(inname, Table::New);
529    tab.markForDelete();
530
531  } else {
532    table_.deepCopy(inname, Table::New);
533  }
534}
535
536int Scantable::nbeam( int scanno ) const
537{
538  if ( scanno < 0 ) {
539    Int n;
540    table_.keywordSet().get("nBeam",n);
541    return int(n);
542  } else {
543    // take the first POLNO,IFNO,CYCLENO as nbeam shouldn't vary with these
544    Table t = table_(table_.col("SCANNO") == scanno);
545    if ( t.nrow() == 0 ) return 0 ;
546    ROTableRow row(t);
547    const TableRecord& rec = row.get(0);
548    Table subt = t( t.col("IFNO") == Int(rec.asuInt("IFNO"))
549                    && t.col("POLNO") == Int(rec.asuInt("POLNO"))
550                    && t.col("CYCLENO") == Int(rec.asuInt("CYCLENO")) );
551    ROTableVector<uInt> v(subt, "BEAMNO");
552    return int(v.nelements());
553  }
554  return 0;
555}
556
557int Scantable::nif( int scanno ) const
558{
559  if ( scanno < 0 ) {
560    Int n;
561    table_.keywordSet().get("nIF",n);
562    return int(n);
563  } else {
564    // take the first POLNO,BEAMNO,CYCLENO as nbeam shouldn't vary with these
565    Table t = table_(table_.col("SCANNO") == scanno);
566    if ( t.nrow() == 0 ) return 0 ;
567    ROTableRow row(t);
568    const TableRecord& rec = row.get(0);
569    Table subt = t( t.col("BEAMNO") == Int(rec.asuInt("BEAMNO"))
570                    && t.col("POLNO") == Int(rec.asuInt("POLNO"))
571                    && t.col("CYCLENO") == Int(rec.asuInt("CYCLENO")) );
572    if ( subt.nrow() == 0 ) return 0;
573    ROTableVector<uInt> v(subt, "IFNO");
574    return int(v.nelements());
575  }
576  return 0;
577}
578
579int Scantable::npol( int scanno ) const
580{
581  if ( scanno < 0 ) {
582    Int n;
583    table_.keywordSet().get("nPol",n);
584    return n;
585  } else {
586    // take the first POLNO,IFNO,CYCLENO as nbeam shouldn't vary with these
587    Table t = table_(table_.col("SCANNO") == scanno);
588    if ( t.nrow() == 0 ) return 0 ;
589    ROTableRow row(t);
590    const TableRecord& rec = row.get(0);
591    Table subt = t( t.col("BEAMNO") == Int(rec.asuInt("BEAMNO"))
592                    && t.col("IFNO") == Int(rec.asuInt("IFNO"))
593                    && t.col("CYCLENO") == Int(rec.asuInt("CYCLENO")) );
594    if ( subt.nrow() == 0 ) return 0;
595    ROTableVector<uInt> v(subt, "POLNO");
596    return int(v.nelements());
597  }
598  return 0;
599}
600
601int Scantable::ncycle( int scanno ) const
602{
603  if ( scanno < 0 ) {
604    Block<String> cols(2);
605    cols[0] = "SCANNO";
606    cols[1] = "CYCLENO";
607    TableIterator it(table_, cols);
608    int n = 0;
609    while ( !it.pastEnd() ) {
610      ++n;
611      ++it;
612    }
613    return n;
614  } else {
615    Table t = table_(table_.col("SCANNO") == scanno);
616    if ( t.nrow() == 0 ) return 0 ;
617    ROTableRow row(t);
618    const TableRecord& rec = row.get(0);
619    Table subt = t( t.col("BEAMNO") == Int(rec.asuInt("BEAMNO"))
620                    && t.col("POLNO") == Int(rec.asuInt("POLNO"))
621                    && t.col("IFNO") == Int(rec.asuInt("IFNO")) );
622    if ( subt.nrow() == 0 ) return 0;
623    return int(subt.nrow());
624  }
625  return 0;
626}
627
628
629int Scantable::nrow( int scanno ) const
630{
631  return int(table_.nrow());
632}
633
634int Scantable::nchan( int ifno ) const
635{
636  if ( ifno < 0 ) {
637    Int n;
638    table_.keywordSet().get("nChan",n);
639    return int(n);
640  } else {
641    // take the first SCANNO,POLNO,BEAMNO,CYCLENO as nbeam shouldn't
642    // vary with these
643    Table t = table_(table_.col("IFNO") == ifno);
644    if ( t.nrow() == 0 ) return 0;
645    ROArrayColumn<Float> v(t, "SPECTRA");
646    return v.shape(0)(0);
647  }
648  return 0;
649}
650
651int Scantable::nscan() const {
652  Vector<uInt> scannos(scanCol_.getColumn());
653  uInt nout = genSort( scannos, Sort::Ascending,
654                       Sort::QuickSort|Sort::NoDuplicates );
655  return int(nout);
656}
657
658int Scantable::getChannels(int whichrow) const
659{
660  return specCol_.shape(whichrow)(0);
661}
662
663int Scantable::getBeam(int whichrow) const
664{
665  return beamCol_(whichrow);
666}
667
668std::vector<uint> Scantable::getNumbers(const ScalarColumn<uInt>& col) const
669{
670  Vector<uInt> nos(col.getColumn());
671  uInt n = genSort( nos, Sort::Ascending, Sort::QuickSort|Sort::NoDuplicates );
672  nos.resize(n, True);
673  std::vector<uint> stlout;
674  nos.tovector(stlout);
675  return stlout;
676}
677
678int Scantable::getIF(int whichrow) const
679{
680  return ifCol_(whichrow);
681}
682
683int Scantable::getPol(int whichrow) const
684{
685  return polCol_(whichrow);
686}
687
688std::string Scantable::formatTime(const MEpoch& me, bool showdate) const
689{
690  MVTime mvt(me.getValue());
691  if (showdate)
692    mvt.setFormat(MVTime::YMD);
693  else
694    mvt.setFormat(MVTime::TIME);
695  ostringstream oss;
696  oss << mvt;
697  return String(oss);
698}
699
700void Scantable::calculateAZEL()
701{
702  MPosition mp = getAntennaPosition();
703  MEpoch::ROScalarColumn timeCol(table_, "TIME");
704  ostringstream oss;
705  oss << "Computed azimuth/elevation using " << endl
706      << mp << endl;
707  for (Int i=0; i<nrow(); ++i) {
708    MEpoch me = timeCol(i);
709    MDirection md = getDirection(i);
710    oss  << " Time: " << formatTime(me,False) << " Direction: " << formatDirection(md)
711         << endl << "     => ";
712    MeasFrame frame(mp, me);
713    Vector<Double> azel =
714        MDirection::Convert(md, MDirection::Ref(MDirection::AZEL,
715                                                frame)
716                            )().getAngle("rad").getValue();
717    azCol_.put(i,Float(azel[0]));
718    elCol_.put(i,Float(azel[1]));
719    oss << "azel: " << azel[0]/C::pi*180.0 << " "
720        << azel[1]/C::pi*180.0 << " (deg)" << endl;
721  }
722  pushLog(String(oss));
723}
724
725void Scantable::clip(const Float uthres, const Float dthres, bool clipoutside, bool unflag)
726{
727  for (uInt i=0; i<table_.nrow(); ++i) {
728    Vector<uChar> flgs = flagsCol_(i);
729    srchChannelsToClip(i, uthres, dthres, clipoutside, unflag, flgs);
730    flagsCol_.put(i, flgs);
731  }
732}
733
734std::vector<bool> Scantable::getClipMask(int whichrow, const Float uthres, const Float dthres, bool clipoutside, bool unflag)
735{
736  Vector<uChar> flags;
737  flagsCol_.get(uInt(whichrow), flags);
738  srchChannelsToClip(uInt(whichrow), uthres, dthres, clipoutside, unflag, flags);
739  Vector<Bool> bflag(flags.shape());
740  convertArray(bflag, flags);
741  //bflag = !bflag;
742
743  std::vector<bool> mask;
744  bflag.tovector(mask);
745  return mask;
746}
747
748void Scantable::srchChannelsToClip(uInt whichrow, const Float uthres, const Float dthres, bool clipoutside, bool unflag,
749                                   Vector<uChar> flgs)
750{
751    Vector<Float> spcs = specCol_(whichrow);
752    uInt nchannel = nchan();
753    if (spcs.nelements() != nchannel) {
754      throw(AipsError("Data has incorrect number of channels"));
755    }
756    uChar userflag = 1 << 7;
757    if (unflag) {
758      userflag = 0 << 7;
759    }
760    if (clipoutside) {
761      for (uInt j = 0; j < nchannel; ++j) {
762        Float spc = spcs(j);
763        if ((spc >= uthres) || (spc <= dthres)) {
764          flgs(j) = userflag;
765        }
766      }
767    } else {
768      for (uInt j = 0; j < nchannel; ++j) {
769        Float spc = spcs(j);
770        if ((spc < uthres) && (spc > dthres)) {
771          flgs(j) = userflag;
772        }
773      }
774    }
775}
776
777void Scantable::flag(const std::vector<bool>& msk, bool unflag)
778{
779  std::vector<bool>::const_iterator it;
780  uInt ntrue = 0;
781  for (it = msk.begin(); it != msk.end(); ++it) {
782    if ( *it ) {
783      ntrue++;
784    }
785  }
786  if ( selector_.empty()  && (msk.size() == 0 || msk.size() == ntrue) )
787    throw(AipsError("Trying to flag whole scantable."));
788  if ( msk.size() == 0 ) {
789    uChar userflag = 1 << 7;
790    if ( unflag ) {
791      userflag = 0 << 7;
792    }
793    for ( uInt i=0; i<table_.nrow(); ++i) {
794      Vector<uChar> flgs = flagsCol_(i);
795      flgs = userflag;
796      flagsCol_.put(i, flgs);
797    }
798    return;
799  }
800  if ( int(msk.size()) != nchan() ) {
801    throw(AipsError("Mask has incorrect number of channels."));
802  }
803  for ( uInt i=0; i<table_.nrow(); ++i) {
804    Vector<uChar> flgs = flagsCol_(i);
805    if ( flgs.nelements() != msk.size() ) {
806      throw(AipsError("Mask has incorrect number of channels."
807                      " Probably varying with IF. Please flag per IF"));
808    }
809    std::vector<bool>::const_iterator it;
810    uInt j = 0;
811    uChar userflag = 1 << 7;
812    if ( unflag ) {
813      userflag = 0 << 7;
814    }
815    for (it = msk.begin(); it != msk.end(); ++it) {
816      if ( *it ) {
817        flgs(j) = userflag;
818      }
819      ++j;
820    }
821    flagsCol_.put(i, flgs);
822  }
823}
824
825void Scantable::flagRow(const std::vector<uInt>& rows, bool unflag)
826{
827  if ( selector_.empty() && (rows.size() == table_.nrow()) )
828    throw(AipsError("Trying to flag whole scantable."));
829
830  uInt rowflag = (unflag ? 0 : 1);
831  std::vector<uInt>::const_iterator it;
832  for (it = rows.begin(); it != rows.end(); ++it)
833    flagrowCol_.put(*it, rowflag);
834}
835
836std::vector<bool> Scantable::getMask(int whichrow) const
837{
838  Vector<uChar> flags;
839  flagsCol_.get(uInt(whichrow), flags);
840  Vector<Bool> bflag(flags.shape());
841  convertArray(bflag, flags);
842  bflag = !bflag;
843  std::vector<bool> mask;
844  bflag.tovector(mask);
845  return mask;
846}
847
848std::vector<float> Scantable::getSpectrum( int whichrow,
849                                           const std::string& poltype ) const
850{
851  String ptype = poltype;
852  if (poltype == "" ) ptype = getPolType();
853  if ( whichrow  < 0 || whichrow >= nrow() )
854    throw(AipsError("Illegal row number."));
855  std::vector<float> out;
856  Vector<Float> arr;
857  uInt requestedpol = polCol_(whichrow);
858  String basetype = getPolType();
859  if ( ptype == basetype ) {
860    specCol_.get(whichrow, arr);
861  } else {
862    CountedPtr<STPol> stpol(STPol::getPolClass(Scantable::factories_,
863                                               basetype));
864    uInt row = uInt(whichrow);
865    stpol->setSpectra(getPolMatrix(row));
866    Float fang,fhand,parang;
867    fang = focusTable_.getTotalAngle(mfocusidCol_(row));
868    fhand = focusTable_.getFeedHand(mfocusidCol_(row));
869    stpol->setPhaseCorrections(fang, fhand);
870    arr = stpol->getSpectrum(requestedpol, ptype);
871  }
872  if ( arr.nelements() == 0 )
873    pushLog("Not enough polarisations present to do the conversion.");
874  arr.tovector(out);
875  return out;
876}
877
878void Scantable::setSpectrum( const std::vector<float>& spec,
879                                   int whichrow )
880{
881  Vector<Float> spectrum(spec);
882  Vector<Float> arr;
883  specCol_.get(whichrow, arr);
884  if ( spectrum.nelements() != arr.nelements() )
885    throw AipsError("The spectrum has incorrect number of channels.");
886  specCol_.put(whichrow, spectrum);
887}
888
889
890String Scantable::generateName()
891{
892  return (File::newUniqueName("./","temp")).baseName();
893}
894
895const casa::Table& Scantable::table( ) const
896{
897  return table_;
898}
899
900casa::Table& Scantable::table( )
901{
902  return table_;
903}
904
905std::string Scantable::getPolType() const
906{
907  return table_.keywordSet().asString("POLTYPE");
908}
909
910void Scantable::unsetSelection()
911{
912  table_ = originalTable_;
913  attach();
914  selector_.reset();
915}
916
917void Scantable::setSelection( const STSelector& selection )
918{
919  Table tab = const_cast<STSelector&>(selection).apply(originalTable_);
920  if ( tab.nrow() == 0 ) {
921    throw(AipsError("Selection contains no data. Not applying it."));
922  }
923  table_ = tab;
924  attach();
925  selector_ = selection;
926}
927
928std::string Scantable::summary( bool verbose )
929{
930  // Format header info
931  ostringstream oss;
932  oss << endl;
933  oss << asap::SEPERATOR << endl;
934  oss << " Scan Table Summary" << endl;
935  oss << asap::SEPERATOR << endl;
936  oss.flags(std::ios_base::left);
937  oss << setw(15) << "Beams:" << setw(4) << nbeam() << endl
938      << setw(15) << "IFs:" << setw(4) << nif() << endl
939      << setw(15) << "Polarisations:" << setw(4) << npol()
940      << "(" << getPolType() << ")" << endl
941      << setw(15) << "Channels:" << nchan() << endl;
942  String tmp;
943  oss << setw(15) << "Observer:"
944      << table_.keywordSet().asString("Observer") << endl;
945  oss << setw(15) << "Obs Date:" << getTime(-1,true) << endl;
946  table_.keywordSet().get("Project", tmp);
947  oss << setw(15) << "Project:" << tmp << endl;
948  table_.keywordSet().get("Obstype", tmp);
949  oss << setw(15) << "Obs. Type:" << tmp << endl;
950  table_.keywordSet().get("AntennaName", tmp);
951  oss << setw(15) << "Antenna Name:" << tmp << endl;
952  table_.keywordSet().get("FluxUnit", tmp);
953  oss << setw(15) << "Flux Unit:" << tmp << endl;
954  //Vector<Double> vec(moleculeTable_.getRestFrequencies());
955  int nid = moleculeTable_.nrow();
956  Bool firstline = True;
957  oss << setw(15) << "Rest Freqs:";
958  for (int i=0; i<nid; i++) {
959      Table t = table_(table_.col("MOLECULE_ID") == i);
960      if (t.nrow() >  0) {
961          Vector<Double> vec(moleculeTable_.getRestFrequency(i));
962          if (vec.nelements() > 0) {
963               if (firstline) {
964                   oss << setprecision(10) << vec << " [Hz]" << endl;
965                   firstline=False;
966               }
967               else{
968                   oss << setw(15)<<" " << setprecision(10) << vec << " [Hz]" << endl;
969               }
970          } else {
971              oss << "none" << endl;
972          }
973      }
974  }
975
976  oss << setw(15) << "Abcissa:" << getAbcissaLabel(0) << endl;
977  oss << selector_.print() << endl;
978  oss << endl;
979  // main table
980  String dirtype = "Position ("
981                  + getDirectionRefString()
982                  + ")";
983  oss << setw(5) << "Scan" << setw(15) << "Source"
984      << setw(10) << "Time" << setw(18) << "Integration" << endl;
985  oss << setw(5) << "" << setw(5) << "Beam" << setw(3) << "" << dirtype << endl;
986  oss << setw(10) << "" << setw(3) << "IF" << setw(3) << ""
987      << setw(8) << "Frame" << setw(16)
988      << "RefVal" << setw(10) << "RefPix" << setw(12) << "Increment"
989      << setw(7) << "Channels"
990      << endl;
991  oss << asap::SEPERATOR << endl;
992  TableIterator iter(table_, "SCANNO");
993  while (!iter.pastEnd()) {
994    Table subt = iter.table();
995    ROTableRow row(subt);
996    MEpoch::ROScalarColumn timeCol(subt,"TIME");
997    const TableRecord& rec = row.get(0);
998    oss << setw(4) << std::right << rec.asuInt("SCANNO")
999        << std::left << setw(1) << ""
1000        << setw(15) << rec.asString("SRCNAME")
1001        << setw(10) << formatTime(timeCol(0), false);
1002    // count the cycles in the scan
1003    TableIterator cyciter(subt, "CYCLENO");
1004    int nint = 0;
1005    while (!cyciter.pastEnd()) {
1006      ++nint;
1007      ++cyciter;
1008    }
1009    oss << setw(3) << std::right << nint  << setw(3) << " x " << std::left
1010        << setw(6) <<  formatSec(rec.asFloat("INTERVAL")) << endl;
1011
1012    TableIterator biter(subt, "BEAMNO");
1013    while (!biter.pastEnd()) {
1014      Table bsubt = biter.table();
1015      ROTableRow brow(bsubt);
1016      const TableRecord& brec = brow.get(0);
1017      uInt row0 = bsubt.rowNumbers(table_)[0];
1018      oss << setw(5) << "" <<  setw(4) << std::right << brec.asuInt("BEAMNO")<< std::left;
1019      oss  << setw(4) << ""  << formatDirection(getDirection(row0)) << endl;
1020      TableIterator iiter(bsubt, "IFNO");
1021      while (!iiter.pastEnd()) {
1022        Table isubt = iiter.table();
1023        ROTableRow irow(isubt);
1024        const TableRecord& irec = irow.get(0);
1025        oss << setw(9) << "";
1026        oss << setw(3) << std::right << irec.asuInt("IFNO") << std::left
1027            << setw(1) << "" << frequencies().print(irec.asuInt("FREQ_ID"))
1028            << setw(3) << "" << nchan(irec.asuInt("IFNO"))
1029            << endl;
1030
1031        ++iiter;
1032      }
1033      ++biter;
1034    }
1035    ++iter;
1036  }
1037  /// @todo implement verbose mode
1038  return String(oss);
1039}
1040
1041std::string Scantable::getTime(int whichrow, bool showdate) const
1042{
1043  MEpoch::ROScalarColumn timeCol(table_, "TIME");
1044  MEpoch me;
1045  if (whichrow > -1) {
1046    me = timeCol(uInt(whichrow));
1047  } else {
1048    Double tm;
1049    table_.keywordSet().get("UTC",tm);
1050    me = MEpoch(MVEpoch(tm));
1051  }
1052  return formatTime(me, showdate);
1053}
1054
1055MEpoch Scantable::getEpoch(int whichrow) const
1056{
1057  if (whichrow > -1) {
1058    return timeCol_(uInt(whichrow));
1059  } else {
1060    Double tm;
1061    table_.keywordSet().get("UTC",tm);
1062    return MEpoch(MVEpoch(tm));
1063  }
1064}
1065
1066std::string Scantable::getDirectionString(int whichrow) const
1067{
1068  return formatDirection(getDirection(uInt(whichrow)));
1069}
1070
1071
1072SpectralCoordinate Scantable::getSpectralCoordinate(int whichrow) const {
1073  const MPosition& mp = getAntennaPosition();
1074  const MDirection& md = getDirection(whichrow);
1075  const MEpoch& me = timeCol_(whichrow);
1076  //Double rf = moleculeTable_.getRestFrequency(mmolidCol_(whichrow));
1077  Vector<Double> rf = moleculeTable_.getRestFrequency(mmolidCol_(whichrow));
1078  return freqTable_.getSpectralCoordinate(md, mp, me, rf,
1079                                          mfreqidCol_(whichrow));
1080}
1081
1082std::vector< double > Scantable::getAbcissa( int whichrow ) const
1083{
1084  if ( whichrow > int(table_.nrow()) ) throw(AipsError("Illegal row number"));
1085  std::vector<double> stlout;
1086  int nchan = specCol_(whichrow).nelements();
1087  String us = freqTable_.getUnitString();
1088  if ( us == "" || us == "pixel" || us == "channel" ) {
1089    for (int i=0; i<nchan; ++i) {
1090      stlout.push_back(double(i));
1091    }
1092    return stlout;
1093  }
1094  SpectralCoordinate spc = getSpectralCoordinate(whichrow);
1095  Vector<Double> pixel(nchan);
1096  Vector<Double> world;
1097  indgen(pixel);
1098  if ( Unit(us) == Unit("Hz") ) {
1099    for ( int i=0; i < nchan; ++i) {
1100      Double world;
1101      spc.toWorld(world, pixel[i]);
1102      stlout.push_back(double(world));
1103    }
1104  } else if ( Unit(us) == Unit("km/s") ) {
1105    Vector<Double> world;
1106    spc.pixelToVelocity(world, pixel);
1107    world.tovector(stlout);
1108  }
1109  return stlout;
1110}
1111void Scantable::setDirectionRefString( const std::string & refstr )
1112{
1113  MDirection::Types mdt;
1114  if (refstr != "" && !MDirection::getType(mdt, refstr)) {
1115    throw(AipsError("Illegal Direction frame."));
1116  }
1117  if ( refstr == "" ) {
1118    String defaultstr = MDirection::showType(dirCol_.getMeasRef().getType());
1119    table_.rwKeywordSet().define("DIRECTIONREF", defaultstr);
1120  } else {
1121    table_.rwKeywordSet().define("DIRECTIONREF", String(refstr));
1122  }
1123}
1124
1125std::string Scantable::getDirectionRefString( ) const
1126{
1127  return table_.keywordSet().asString("DIRECTIONREF");
1128}
1129
1130MDirection Scantable::getDirection(int whichrow ) const
1131{
1132  String usertype = table_.keywordSet().asString("DIRECTIONREF");
1133  String type = MDirection::showType(dirCol_.getMeasRef().getType());
1134  if ( usertype != type ) {
1135    MDirection::Types mdt;
1136    if (!MDirection::getType(mdt, usertype)) {
1137      throw(AipsError("Illegal Direction frame."));
1138    }
1139    return dirCol_.convert(uInt(whichrow), mdt);
1140  } else {
1141    return dirCol_(uInt(whichrow));
1142  }
1143}
1144
1145std::string Scantable::getAbcissaLabel( int whichrow ) const
1146{
1147  if ( whichrow > int(table_.nrow()) ) throw(AipsError("Illegal ro number"));
1148  const MPosition& mp = getAntennaPosition();
1149  const MDirection& md = getDirection(whichrow);
1150  const MEpoch& me = timeCol_(whichrow);
1151  //const Double& rf = mmolidCol_(whichrow);
1152  const Vector<Double> rf = moleculeTable_.getRestFrequency(mmolidCol_(whichrow));
1153  SpectralCoordinate spc =
1154    freqTable_.getSpectralCoordinate(md, mp, me, rf, mfreqidCol_(whichrow));
1155
1156  String s = "Channel";
1157  Unit u = Unit(freqTable_.getUnitString());
1158  if (u == Unit("km/s")) {
1159    s = CoordinateUtil::axisLabel(spc, 0, True,True,  True);
1160  } else if (u == Unit("Hz")) {
1161    Vector<String> wau(1);wau = u.getName();
1162    spc.setWorldAxisUnits(wau);
1163    s = CoordinateUtil::axisLabel(spc, 0, True, True, False);
1164  }
1165  return s;
1166
1167}
1168
1169/**
1170void asap::Scantable::setRestFrequencies( double rf, const std::string& name,
1171                                          const std::string& unit )
1172**/
1173void Scantable::setRestFrequencies( vector<double> rf, const vector<std::string>& name,
1174                                          const std::string& unit )
1175
1176{
1177  ///@todo lookup in line table to fill in name and formattedname
1178  Unit u(unit);
1179  //Quantum<Double> urf(rf, u);
1180  Quantum<Vector<Double> >urf(rf, u);
1181  Vector<String> formattedname(0);
1182  //cerr<<"Scantable::setRestFrequnecies="<<urf<<endl;
1183
1184  //uInt id = moleculeTable_.addEntry(urf.getValue("Hz"), name, "");
1185  uInt id = moleculeTable_.addEntry(urf.getValue("Hz"), mathutil::toVectorString(name), formattedname);
1186  TableVector<uInt> tabvec(table_, "MOLECULE_ID");
1187  tabvec = id;
1188}
1189
1190/**
1191void asap::Scantable::setRestFrequencies( const std::string& name )
1192{
1193  throw(AipsError("setRestFrequencies( const std::string& name ) NYI"));
1194  ///@todo implement
1195}
1196**/
1197void Scantable::setRestFrequencies( const vector<std::string>& name )
1198{
1199  throw(AipsError("setRestFrequencies( const vector<std::string>& name ) NYI"));
1200  ///@todo implement
1201}
1202
1203std::vector< unsigned int > Scantable::rownumbers( ) const
1204{
1205  std::vector<unsigned int> stlout;
1206  Vector<uInt> vec = table_.rowNumbers();
1207  vec.tovector(stlout);
1208  return stlout;
1209}
1210
1211
1212Matrix<Float> Scantable::getPolMatrix( uInt whichrow ) const
1213{
1214  ROTableRow row(table_);
1215  const TableRecord& rec = row.get(whichrow);
1216  Table t =
1217    originalTable_( originalTable_.col("SCANNO") == Int(rec.asuInt("SCANNO"))
1218                    && originalTable_.col("BEAMNO") == Int(rec.asuInt("BEAMNO"))
1219                    && originalTable_.col("IFNO") == Int(rec.asuInt("IFNO"))
1220                    && originalTable_.col("CYCLENO") == Int(rec.asuInt("CYCLENO")) );
1221  ROArrayColumn<Float> speccol(t, "SPECTRA");
1222  return speccol.getColumn();
1223}
1224
1225std::vector< std::string > Scantable::columnNames( ) const
1226{
1227  Vector<String> vec = table_.tableDesc().columnNames();
1228  return mathutil::tovectorstring(vec);
1229}
1230
1231MEpoch::Types Scantable::getTimeReference( ) const
1232{
1233  return MEpoch::castType(timeCol_.getMeasRef().getType());
1234}
1235
1236void Scantable::addFit( const STFitEntry& fit, int row )
1237{
1238  //cout << mfitidCol_(uInt(row)) << endl;
1239  LogIO os( LogOrigin( "Scantable", "addFit()", WHERE ) ) ;
1240  os << mfitidCol_(uInt(row)) << LogIO::POST ;
1241  uInt id = fitTable_.addEntry(fit, mfitidCol_(uInt(row)));
1242  mfitidCol_.put(uInt(row), id);
1243}
1244
1245void Scantable::shift(int npix)
1246{
1247  Vector<uInt> fids(mfreqidCol_.getColumn());
1248  genSort( fids, Sort::Ascending,
1249           Sort::QuickSort|Sort::NoDuplicates );
1250  for (uInt i=0; i<fids.nelements(); ++i) {
1251    frequencies().shiftRefPix(npix, fids[i]);
1252  }
1253}
1254
1255String Scantable::getAntennaName() const
1256{
1257  String out;
1258  table_.keywordSet().get("AntennaName", out);
1259  return out;
1260}
1261
1262int Scantable::checkScanInfo(const std::vector<int>& scanlist) const
1263{
1264  String tbpath;
1265  int ret = 0;
1266  if ( table_.keywordSet().isDefined("GBT_GO") ) {
1267    table_.keywordSet().get("GBT_GO", tbpath);
1268    Table t(tbpath,Table::Old);
1269    // check each scan if other scan of the pair exist
1270    int nscan = scanlist.size();
1271    for (int i = 0; i < nscan; i++) {
1272      Table subt = t( t.col("SCAN") == scanlist[i]+1 );
1273      if (subt.nrow()==0) {
1274        //cerr <<"Scan "<<scanlist[i]<<" cannot be found in the scantable."<<endl;
1275        LogIO os( LogOrigin( "Scantable", "checkScanInfo()", WHERE ) ) ;
1276        os <<LogIO::WARN<<"Scan "<<scanlist[i]<<" cannot be found in the scantable."<<LogIO::POST;
1277        ret = 1;
1278        break;
1279      }
1280      ROTableRow row(subt);
1281      const TableRecord& rec = row.get(0);
1282      int scan1seqn = rec.asuInt("PROCSEQN");
1283      int laston1 = rec.asuInt("LASTON");
1284      if ( rec.asuInt("PROCSIZE")==2 ) {
1285        if ( i < nscan-1 ) {
1286          Table subt2 = t( t.col("SCAN") == scanlist[i+1]+1 );
1287          if ( subt2.nrow() == 0) {
1288            LogIO os( LogOrigin( "Scantable", "checkScanInfo()", WHERE ) ) ;
1289
1290            //cerr<<"Scan "<<scanlist[i+1]<<" cannot be found in the scantable."<<endl;
1291            os<<LogIO::WARN<<"Scan "<<scanlist[i+1]<<" cannot be found in the scantable."<<LogIO::POST;
1292            ret = 1;
1293            break;
1294          }
1295          ROTableRow row2(subt2);
1296          const TableRecord& rec2 = row2.get(0);
1297          int scan2seqn = rec2.asuInt("PROCSEQN");
1298          int laston2 = rec2.asuInt("LASTON");
1299          if (scan1seqn == 1 && scan2seqn == 2) {
1300            if (laston1 == laston2) {
1301              LogIO os( LogOrigin( "Scantable", "checkScanInfo()", WHERE ) ) ;
1302              //cerr<<"A valid scan pair ["<<scanlist[i]<<","<<scanlist[i+1]<<"]"<<endl;
1303              os<<"A valid scan pair ["<<scanlist[i]<<","<<scanlist[i+1]<<"]"<<LogIO::POST;
1304              i +=1;
1305            }
1306            else {
1307              LogIO os( LogOrigin( "Scantable", "checkScanInfo()", WHERE ) ) ;
1308              //cerr<<"Incorrect scan pair ["<<scanlist[i]<<","<<scanlist[i+1]<<"]"<<endl;
1309              os<<LogIO::WARN<<"Incorrect scan pair ["<<scanlist[i]<<","<<scanlist[i+1]<<"]"<<LogIO::POST;
1310            }
1311          }
1312          else if (scan1seqn==2 && scan2seqn == 1) {
1313            if (laston1 == laston2) {
1314              LogIO os( LogOrigin( "Scantable", "checkScanInfo()", WHERE ) ) ;
1315              //cerr<<"["<<scanlist[i]<<","<<scanlist[i+1]<<"] is a valid scan pair but in incorrect order."<<endl;
1316              os<<LogIO::WARN<<"["<<scanlist[i]<<","<<scanlist[i+1]<<"] is a valid scan pair but in incorrect order."<<LogIO::POST;
1317              ret = 1;
1318              break;
1319            }
1320          }
1321          else {
1322            LogIO os( LogOrigin( "Scantable", "checkScanInfo()", WHERE ) ) ;
1323            //cerr<<"The other scan for  "<<scanlist[i]<<" appears to be missing. Check the input scan numbers."<<endl;
1324            os<<LogIO::WARN<<"The other scan for  "<<scanlist[i]<<" appears to be missing. Check the input scan numbers."<<LogIO::POST;
1325            ret = 1;
1326            break;
1327          }
1328        }
1329      }
1330      else {
1331        LogIO os( LogOrigin( "Scantable", "checkScanInfo()", WHERE ) ) ;
1332        //cerr<<"The scan does not appear to be standard obsevation."<<endl;
1333        os<<LogIO::WARN<<"The scan does not appear to be standard obsevation."<<LogIO::POST;
1334      }
1335    //if ( i >= nscan ) break;
1336    }
1337  }
1338  else {
1339    LogIO os( LogOrigin( "Scantable", "checkScanInfo()", WHERE ) ) ;
1340    //cerr<<"No reference to GBT_GO table."<<endl;
1341    os<<LogIO::WARN<<"No reference to GBT_GO table."<<LogIO::POST;
1342    ret = 1;
1343  }
1344  return ret;
1345}
1346
1347std::vector<double> Scantable::getDirectionVector(int whichrow) const
1348{
1349  Vector<Double> Dir = dirCol_(whichrow).getAngle("rad").getValue();
1350  std::vector<double> dir;
1351  Dir.tovector(dir);
1352  return dir;
1353}
1354
1355void asap::Scantable::reshapeSpectrum( int nmin, int nmax )
1356  throw( casa::AipsError )
1357{
1358  // assumed that all rows have same nChan
1359  Vector<Float> arr = specCol_( 0 ) ;
1360  int nChan = arr.nelements() ;
1361
1362  // if nmin < 0 or nmax < 0, nothing to do
1363  if (  nmin < 0 ) {
1364    throw( casa::indexError<int>( nmin, "asap::Scantable::reshapeSpectrum: Invalid range. Negative index is specified." ) ) ;
1365    }
1366  if (  nmax < 0  ) {
1367    throw( casa::indexError<int>( nmax, "asap::Scantable::reshapeSpectrum: Invalid range. Negative index is specified." ) ) ;
1368  }
1369
1370  // if nmin > nmax, exchange values
1371  if ( nmin > nmax ) {
1372    int tmp = nmax ;
1373    nmax = nmin ;
1374    nmin = tmp ;
1375    LogIO os( LogOrigin( "Scantable", "reshapeSpectrum()", WHERE ) ) ;
1376    os << "Swap values. Applied range is ["
1377       << nmin << ", " << nmax << "]" << LogIO::POST ;
1378  }
1379
1380  // if nmin exceeds nChan, nothing to do
1381  if ( nmin >= nChan ) {
1382    throw( casa::indexError<int>( nmin, "asap::Scantable::reshapeSpectrum: Invalid range. Specified minimum exceeds nChan." ) ) ;
1383  }
1384
1385  // if nmax exceeds nChan, reset nmax to nChan
1386  if ( nmax >= nChan ) {
1387    if ( nmin == 0 ) {
1388      // nothing to do
1389      LogIO os( LogOrigin( "Scantable", "reshapeSpectrum()", WHERE ) ) ;
1390      os << "Whole range is selected. Nothing to do." << LogIO::POST ;
1391      return ;
1392    }
1393    else {
1394      LogIO os( LogOrigin( "Scantable", "reshapeSpectrum()", WHERE ) ) ;
1395      os << "Specified maximum exceeds nChan. Applied range is ["
1396         << nmin << ", " << nChan-1 << "]." << LogIO::POST ;
1397      nmax = nChan - 1 ;
1398    }
1399  }
1400
1401  // reshape specCol_ and flagCol_
1402  for ( int irow = 0 ; irow < nrow() ; irow++ ) {
1403    reshapeSpectrum( nmin, nmax, irow ) ;
1404  }
1405
1406  // update FREQUENCIES subtable
1407  Double refpix ;
1408  Double refval ;
1409  Double increment ;
1410  int freqnrow = freqTable_.table().nrow() ;
1411  Vector<uInt> oldId( freqnrow ) ;
1412  Vector<uInt> newId( freqnrow ) ;
1413  for ( int irow = 0 ; irow < freqnrow ; irow++ ) {
1414    freqTable_.getEntry( refpix, refval, increment, irow ) ;
1415    /***
1416     * need to shift refpix to nmin
1417     * note that channel nmin in old index will be channel 0 in new one
1418     ***/
1419    refval = refval - ( refpix - nmin ) * increment ;
1420    refpix = 0 ;
1421    freqTable_.setEntry( refpix, refval, increment, irow ) ;
1422  }
1423
1424  // update nchan
1425  int newsize = nmax - nmin + 1 ;
1426  table_.rwKeywordSet().define( "nChan", newsize ) ;
1427
1428  // update bandwidth
1429  // assumed all spectra in the scantable have same bandwidth
1430  table_.rwKeywordSet().define( "Bandwidth", increment * newsize ) ;
1431
1432  return ;
1433}
1434
1435void asap::Scantable::reshapeSpectrum( int nmin, int nmax, int irow )
1436{
1437  // reshape specCol_ and flagCol_
1438  Vector<Float> oldspec = specCol_( irow ) ;
1439  Vector<uChar> oldflag = flagsCol_( irow ) ;
1440  uInt newsize = nmax - nmin + 1 ;
1441  specCol_.put( irow, oldspec( Slice( nmin, newsize, 1 ) ) ) ;
1442  flagsCol_.put( irow, oldflag( Slice( nmin, newsize, 1 ) ) ) ;
1443
1444  return ;
1445}
1446
1447void asap::Scantable::regridChannel( int nChan, double dnu )
1448{
1449  LogIO os( LogOrigin( "Scantable", "regridChannel()", WHERE ) ) ;
1450  os << "Regrid abcissa with channel number " << nChan << " and spectral resoultion " << dnu << "Hz." << LogIO::POST ;
1451  // assumed that all rows have same nChan
1452  Vector<Float> arr = specCol_( 0 ) ;
1453  int oldsize = arr.nelements() ;
1454
1455  // if oldsize == nChan, nothing to do
1456  if ( oldsize == nChan ) {
1457    os << "Specified channel number is same as current one. Nothing to do." << LogIO::POST ;
1458    return ;
1459  }
1460
1461  // if oldChan < nChan, unphysical operation
1462  if ( oldsize < nChan ) {
1463    os << "Unphysical operation. Nothing to do." << LogIO::POST ;
1464    return ;
1465  }
1466
1467  // change channel number for specCol_ and flagCol_
1468  Vector<Float> newspec( nChan, 0 ) ;
1469  Vector<uChar> newflag( nChan, false ) ;
1470  vector<string> coordinfo = getCoordInfo() ;
1471  string oldinfo = coordinfo[0] ;
1472  coordinfo[0] = "Hz" ;
1473  setCoordInfo( coordinfo ) ;
1474  for ( int irow = 0 ; irow < nrow() ; irow++ ) {
1475    regridChannel( nChan, dnu, irow ) ;
1476  }
1477  coordinfo[0] = oldinfo ;
1478  setCoordInfo( coordinfo ) ;
1479
1480
1481  // NOTE: this method does not update metadata such as
1482  //       FREQUENCIES subtable, nChan, Bandwidth, etc.
1483
1484  return ;
1485}
1486
1487void asap::Scantable::regridChannel( int nChan, double dnu, int irow )
1488{
1489  // logging
1490  //ofstream ofs( "average.log", std::ios::out | std::ios::app ) ;
1491  //ofs << "IFNO = " << getIF( irow ) << " irow = " << irow << endl ;
1492
1493  Vector<Float> oldspec = specCol_( irow ) ;
1494  Vector<uChar> oldflag = flagsCol_( irow ) ;
1495  Vector<Float> newspec( nChan, 0 ) ;
1496  Vector<uChar> newflag( nChan, false ) ;
1497
1498  // regrid
1499  vector<double> abcissa = getAbcissa( irow ) ;
1500  int oldsize = abcissa.size() ;
1501  double olddnu = abcissa[1] - abcissa[0] ;
1502  //int refChan = 0 ;
1503  //double frac = 0.0 ;
1504  //double wedge = 0.0 ;
1505  //double pile = 0.0 ;
1506  int ichan = 0 ;
1507  double wsum = 0.0 ;
1508  Vector<Float> z( nChan ) ;
1509  z[0] = abcissa[0] - 0.5 * olddnu + 0.5 * dnu ;
1510  for ( int ii = 1 ; ii < nChan ; ii++ )
1511    z[ii] = z[ii-1] + dnu ;
1512  Vector<Float> zi( nChan+1 ) ;
1513  Vector<Float> yi( oldsize + 1 ) ;
1514  zi[0] = z[0] - 0.5 * dnu ;
1515  zi[1] = z[0] + 0.5 * dnu ;
1516  for ( int ii = 2 ; ii < nChan ; ii++ )
1517    zi[ii] = zi[ii-1] + dnu ;
1518  zi[nChan] = z[nChan-1] + 0.5 * dnu ;
1519  yi[0] = abcissa[0] - 0.5 * olddnu ;
1520  yi[1] = abcissa[1] + 0.5 * olddnu ;
1521  for ( int ii = 2 ; ii < oldsize ; ii++ )
1522    yi[ii] = abcissa[ii-1] + olddnu ;
1523  yi[oldsize] = abcissa[oldsize-1] + 0.5 * olddnu ;
1524  if ( dnu > 0.0 ) {
1525    for ( int ii = 0 ; ii < nChan ; ii++ ) {
1526      double zl = zi[ii] ;
1527      double zr = zi[ii+1] ;
1528      for ( int j = ichan ; j < oldsize ; j++ ) {
1529        double yl = yi[j] ;
1530        double yr = yi[j+1] ;
1531        if ( yl <= zl ) {
1532          if ( yr <= zl ) {
1533            continue ;
1534          }
1535          else if ( yr <= zr ) {
1536            newspec[ii] += oldspec[j] * ( yr - zl ) ;
1537            newflag[ii] = newflag[ii] || oldflag[j] ;
1538            wsum += ( yr - zl ) ;
1539          }
1540          else {
1541            newspec[ii] += oldspec[j] * dnu ;
1542            newflag[ii] = newflag[ii] || oldflag[j] ;
1543            wsum += dnu ;
1544            ichan = j ;
1545            break ;
1546          }
1547        }
1548        else if ( yl < zr ) {
1549          if ( yr <= zr ) {
1550              newspec[ii] += oldspec[j] * ( yr - yl ) ;
1551              newflag[ii] = newflag[ii] || oldflag[j] ;
1552              wsum += ( yr - yl ) ;
1553          }
1554          else {
1555            newspec[ii] += oldspec[j] * ( zr - yl ) ;
1556            newflag[ii] = newflag[ii] || oldflag[j] ;
1557            wsum += ( zr - yl ) ;
1558            ichan = j ;
1559            break ;
1560          }
1561        }
1562        else {
1563          ichan = j - 1 ;
1564          break ;
1565        }
1566      }
1567      newspec[ii] /= wsum ;
1568      wsum = 0.0 ;
1569    }
1570  }
1571  else if ( dnu < 0.0 ) {
1572    for ( int ii = 0 ; ii < nChan ; ii++ ) {
1573      double zl = zi[ii] ;
1574      double zr = zi[ii+1] ;
1575      for ( int j = ichan ; j < oldsize ; j++ ) {
1576        double yl = yi[j] ;
1577        double yr = yi[j+1] ;
1578        if ( yl >= zl ) {
1579          if ( yr >= zl ) {
1580            continue ;
1581          }
1582          else if ( yr >= zr ) {
1583            newspec[ii] += oldspec[j] * abs( yr - zl ) ;
1584            newflag[ii] = newflag[ii] || oldflag[j] ;
1585            wsum += abs( yr - zl ) ;
1586          }
1587          else {
1588            newspec[ii] += oldspec[j] * abs( dnu ) ;
1589            newflag[ii] = newflag[ii] || oldflag[j] ;
1590            wsum += abs( dnu ) ;
1591            ichan = j ;
1592            break ;
1593          }
1594        }
1595        else if ( yl > zr ) {
1596          if ( yr >= zr ) {
1597            newspec[ii] += oldspec[j] * abs( yr - yl ) ;
1598            newflag[ii] = newflag[ii] || oldflag[j] ;
1599            wsum += abs( yr - yl ) ;
1600          }
1601          else {
1602            newspec[ii] += oldspec[j] * abs( zr - yl ) ;
1603            newflag[ii] = newflag[ii] || oldflag[j] ;
1604            wsum += abs( zr - yl ) ;
1605            ichan = j ;
1606            break ;
1607          }
1608        }
1609        else {
1610          ichan = j - 1 ;
1611          break ;
1612        }
1613      }
1614      newspec[ii] /= wsum ;
1615      wsum = 0.0 ;
1616    }
1617  }
1618//    * ichan = 0
1619//    ***/
1620//   //ofs << "olddnu = " << olddnu << ", dnu = " << dnu << endl ;
1621//   pile += dnu ;
1622//   wedge = olddnu * ( refChan + 1 ) ;
1623//   while ( wedge < pile ) {
1624//     newspec[0] += olddnu * oldspec[refChan] ;
1625//     newflag[0] = newflag[0] || oldflag[refChan] ;
1626//     //ofs << "channel " << refChan << " is included in new channel 0" << endl ;
1627//     refChan++ ;
1628//     wedge += olddnu ;
1629//     wsum += olddnu ;
1630//     //ofs << "newspec[0] = " << newspec[0] << " wsum = " << wsum << endl ;
1631//   }
1632//   frac = ( wedge - pile ) / olddnu ;
1633//   wsum += ( 1.0 - frac ) * olddnu ;
1634//   newspec[0] += ( 1.0 - frac ) * olddnu * oldspec[refChan] ;
1635//   newflag[0] = newflag[0] || oldflag[refChan] ;
1636//   //ofs << "channel " << refChan << " is partly included in new channel 0" << " with fraction of " << ( 1.0 - frac ) << endl ;
1637//   //ofs << "newspec[0] = " << newspec[0] << " wsum = " << wsum << endl ;
1638//   newspec[0] /= wsum ;
1639//   //ofs << "newspec[0] = " << newspec[0] << endl ;
1640//   //ofs << "wedge = " << wedge << ", pile = " << pile << endl ;
1641
1642//   /***
1643//    * ichan = 1 - nChan-2
1644//    ***/
1645//   for ( int ichan = 1 ; ichan < nChan - 1 ; ichan++ ) {
1646//     pile += dnu ;
1647//     newspec[ichan] += frac * olddnu * oldspec[refChan] ;
1648//     newflag[ichan] = newflag[ichan] || oldflag[refChan] ;
1649//     //ofs << "channel " << refChan << " is partly included in new channel " << ichan << " with fraction of " << frac << endl ;
1650//     refChan++ ;
1651//     wedge += olddnu ;
1652//     wsum = frac * olddnu ;
1653//     //ofs << "newspec[" << ichan << "] = " << newspec[ichan] << " wsum = " << wsum << endl ;
1654//     while ( wedge < pile ) {
1655//       newspec[ichan] += olddnu * oldspec[refChan] ;
1656//       newflag[ichan] = newflag[ichan] || oldflag[refChan] ;
1657//       //ofs << "channel " << refChan << " is included in new channel " << ichan << endl ;
1658//       refChan++ ;
1659//       wedge += olddnu ;
1660//       wsum += olddnu ;
1661//       //ofs << "newspec[" << ichan << "] = " << newspec[ichan] << " wsum = " << wsum << endl ;
1662//     }
1663//     frac = ( wedge - pile ) / olddnu ;
1664//     wsum += ( 1.0 - frac ) * olddnu ;
1665//     newspec[ichan] += ( 1.0 - frac ) * olddnu * oldspec[refChan] ;
1666//     newflag[ichan] = newflag[ichan] || oldflag[refChan] ;
1667//     //ofs << "channel " << refChan << " is partly included in new channel " << ichan << " with fraction of " << ( 1.0 - frac ) << endl ;
1668//     //ofs << "wedge = " << wedge << ", pile = " << pile << endl ;
1669//     //ofs << "newspec[" << ichan << "] = " << newspec[ichan] << " wsum = " << wsum << endl ;
1670//     newspec[ichan] /= wsum ;
1671//     //ofs << "newspec[" << ichan << "] = " << newspec[ichan] << endl ;
1672//   }
1673
1674//   /***
1675//    * ichan = nChan-1
1676//    ***/
1677//   // NOTE: Assumed that all spectra have the same bandwidth
1678//   pile += dnu ;
1679//   newspec[nChan-1] += frac * olddnu * oldspec[refChan] ;
1680//   newflag[nChan-1] = newflag[nChan-1] || oldflag[refChan] ;
1681//   //ofs << "channel " << refChan << " is partly included in new channel " << nChan-1 << " with fraction of " << frac << endl ;
1682//   refChan++ ;
1683//   wedge += olddnu ;
1684//   wsum = frac * olddnu ;
1685//   //ofs << "newspec[" << nChan - 1 << "] = " << newspec[nChan-1] << " wsum = " << wsum << endl ;
1686//   for ( int jchan = refChan ; jchan < oldsize ; jchan++ ) {
1687//     newspec[nChan-1] += olddnu * oldspec[jchan] ;
1688//     newflag[nChan-1] = newflag[nChan-1] || oldflag[jchan] ;
1689//     wsum += olddnu ;
1690//     //ofs << "channel " << jchan << " is included in new channel " << nChan-1 << " with fraction of " << frac << endl ;
1691//     //ofs << "newspec[" << nChan - 1 << "] = " << newspec[nChan-1] << " wsum = " << wsum << endl ;
1692//   }
1693//   //ofs << "wedge = " << wedge << ", pile = " << pile << endl ;
1694//   //ofs << "newspec[" << nChan - 1 << "] = " << newspec[nChan-1] << " wsum = " << wsum << endl ;
1695//   newspec[nChan-1] /= wsum ;
1696//   //ofs << "newspec[" << nChan - 1 << "] = " << newspec[nChan-1] << endl ;
1697
1698//   specCol_.put( irow, newspec ) ;
1699//   flagsCol_.put( irow, newflag ) ;
1700
1701//   // ofs.close() ;
1702
1703
1704  return ;
1705}
1706
1707std::vector<float> Scantable::getWeather(int whichrow) const
1708{
1709  std::vector<float> out(5);
1710  //Float temperature, pressure, humidity, windspeed, windaz;
1711  weatherTable_.getEntry(out[0], out[1], out[2], out[3], out[4],
1712                         mweatheridCol_(uInt(whichrow)));
1713
1714
1715  return out;
1716}
1717
1718bool Scantable::getFlagtraFast(int whichrow)
1719{
1720  uChar flag;
1721  Vector<uChar> flags;
1722  flagsCol_.get(uInt(whichrow), flags);
1723  for (int i = 0; i < flags.size(); i++) {
1724    if (i==0) {
1725      flag = flags[i];
1726    }
1727    else {
1728      flag &= flags[i];
1729    }
1730    return ((flag >> 7) == 1);
1731   }
1732}
1733
1734void Scantable::doPolyBaseline(const std::vector<bool>& mask, int order, int rowno, Fitter& fitter)
1735{
1736  fitter.setExpression("poly", order);
1737
1738  std::vector<double> abcsd = getAbcissa(rowno);
1739  std::vector<float> abcs;
1740  for (int i = 0; i < abcsd.size(); i++) {
1741    abcs.push_back((float)abcsd[i]);
1742  }
1743  std::vector<float> spec = getSpectrum(rowno);
1744  std::vector<bool> fmask = getMask(rowno);
1745  if (fmask.size() != mask.size()) {
1746    throw(AipsError("different mask sizes"));
1747  }
1748  for (int i = 0; i < fmask.size(); i++) {
1749    fmask[i] = fmask[i] && mask[i];
1750  }
1751  fitter.setData(abcs, spec, fmask);
1752
1753  fitter.lfit();
1754}
1755
1756void Scantable::polyBaselineBatch(const std::vector<bool>& mask, int order, int rowno)
1757{
1758  Fitter fitter = Fitter();
1759  doPolyBaseline(mask, order, rowno, fitter);
1760  setSpectrum(fitter.getResidual(), rowno);
1761}
1762
1763void Scantable::polyBaseline(const std::vector<bool>& mask, int order, int rowno, long pars_ptr, long pars_size, long errs_ptr, long errs_size, long fmask_ptr, long fmask_size)
1764{
1765  Fitter fitter = Fitter();
1766  doPolyBaseline(mask, order, rowno, fitter);
1767  setSpectrum(fitter.getResidual(), rowno);
1768
1769  std::vector<float> pars = fitter.getParameters();
1770  if (pars_size != pars.size()) {
1771    throw(AipsError("wrong pars size"));
1772  }
1773  float *ppars = reinterpret_cast<float*>(pars_ptr);
1774  for (int i = 0; i < pars_size; i++) {
1775    ppars[i] = pars[i];
1776  }
1777
1778  std::vector<float> errs = fitter.getErrors();
1779  if (errs_size != errs.size()) {
1780    throw(AipsError("wrong errors size"));
1781  }
1782  float *perrs = reinterpret_cast<float*>(errs_ptr);
1783  for (int i = 0; i < errs_size; i++) {
1784    perrs[i] = errs[i];
1785  }
1786
1787  std::vector<bool> fmask = getMask(rowno);
1788  if (fmask_size != fmask.size()) {
1789    throw(AipsError("wrong fmask size"));
1790  }
1791  int *pfmask = reinterpret_cast<int*>(fmask_ptr);
1792  for (int i = 0; i < fmask_size; i++) {
1793    pfmask[i] = ((fmask[i] && mask[i]) ? 1 : 0);
1794  }
1795}
1796
1797}
1798//namespace asap
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