source: trunk/src/MSFiller.cpp @ 3061

Last change on this file since 3061 was 3061, checked in by Takeshi Nakazato, 8 years ago

New Development: No

JIRA Issue: Yes CAS-8097

Ready for Test: Yes

Interface Changes: No

What Interface Changed: Please list interface changes

Test Programs: List test programs

Put in Release Notes: Yes/No?

Module(s): Module Names change impacts.

Description: Describe your changes here...


More strict intent mapping. Only CALIBRATE_ATMOSPHERE#* intents are mapped into Srctype::PONCAL or SrcType::POFFCAL. Other CALIBRATE_* intents such as POINTING are separated from ATMOSPHERE and mapped into SrcType::CAL.

File size: 68.8 KB
Line 
1//
2// C++ Interface: MSFiller
3//
4// Description:
5//
6// This class is specific filler for MS format
7// New version that is implemented using TableVisitor instead of TableIterator
8//
9// Takeshi Nakazato <takeshi.nakazato@nao.ac.jp>, (C) 2011
10//
11// Copyright: See COPYING file that comes with this distribution
12//
13//
14
15#include <assert.h>
16#include <iostream>
17#include <map>
18#include <set>
19
20#include <tables/Tables/ExprNode.h>
21#include <tables/Tables/TableIter.h>
22#include <tables/Tables/TableColumn.h>
23#include <tables/Tables/ScalarColumn.h>
24#include <tables/Tables/ArrayColumn.h>
25#include <tables/Tables/TableParse.h>
26#include <tables/Tables/TableRow.h>
27
28#include <casa/Containers/RecordField.h>
29#include <casa/Logging/LogIO.h>
30#include <casa/Arrays/Slicer.h>
31#include <casa/Quanta/MVTime.h>
32#include <casa/OS/Path.h>
33
34#include <measures/Measures/Stokes.h>
35#include <measures/Measures/MEpoch.h>
36#include <measures/Measures/MCEpoch.h>
37#include <measures/Measures/MFrequency.h>
38#include <measures/Measures/MCFrequency.h>
39#include <measures/Measures/MPosition.h>
40#include <measures/Measures/MCPosition.h>
41#include <measures/Measures/MDirection.h>
42#include <measures/Measures/MCDirection.h>
43#include <measures/Measures/MeasConvert.h>
44#include <measures/TableMeasures/ScalarMeasColumn.h>
45#include <measures/TableMeasures/ArrayMeasColumn.h>
46#include <measures/TableMeasures/ScalarQuantColumn.h>
47#include <measures/TableMeasures/ArrayQuantColumn.h>
48
49#include <ms/MSSel/MSAntennaIndex.h>
50
51#include <atnf/PKSIO/SrcType.h>
52
53#include "MSFiller.h"
54#include "STHeader.h"
55
56#include "MathUtils.h"
57
58using namespace casa ;
59using namespace std ;
60
61namespace asap {
62
63class BaseMSFillerVisitor: public TableVisitor {
64  uInt lastRecordNo ;
65  Int lastObservationId ;
66  Int lastFeedId ;
67  Int lastFieldId ;
68  Int lastDataDescId ;
69  Int lastScanNo ;
70  Int lastStateId ;
71  Double lastTime ;
72protected:
73  const Table &table;
74  uInt count;
75public:
76  BaseMSFillerVisitor(const Table &table)
77   : table(table)
78  {
79    count = 0;
80  }
81 
82  virtual void enterObservationId(const uInt /*recordNo*/, Int /*columnValue*/) { }
83  virtual void leaveObservationId(const uInt /*recordNo*/, Int /*columnValue*/) { }
84  virtual void enterFeedId(const uInt /*recordNo*/, Int /*columnValue*/) { }
85  virtual void leaveFeedId(const uInt /*recordNo*/, Int /*columnValue*/) { }
86  virtual void enterFieldId(const uInt /*recordNo*/, Int /*columnValue*/) { }
87  virtual void leaveFieldId(const uInt /*recordNo*/, Int /*columnValue*/) { }
88  virtual void enterDataDescId(const uInt /*recordNo*/, Int /*columnValue*/) { }
89  virtual void leaveDataDescId(const uInt /*recordNo*/, Int /*columnValue*/) { }
90  virtual void enterScanNo(const uInt /*recordNo*/, Int /*columnValue*/) { }
91  virtual void leaveScanNo(const uInt /*recordNo*/, Int /*columnValue*/) { }
92  virtual void enterStateId(const uInt /*recordNo*/, Int /*columnValue*/) { }
93  virtual void leaveStateId(const uInt /*recordNo*/, Int /*columnValue*/) { }
94  virtual void enterTime(const uInt /*recordNo*/, Double /*columnValue*/) { }
95  virtual void leaveTime(const uInt /*recordNo*/, Double /*columnValue*/) { }
96
97  virtual Bool visitRecord(const uInt /*recordNo*/,
98                           const Int /*ObservationId*/,
99                           const Int /*feedId*/,
100                           const Int /*fieldId*/,
101                           const Int /*dataDescId*/,
102                           const Int /*scanNo*/,
103                           const Int /*stateId*/,
104                           const Double /*time*/) { return True ; }
105
106  virtual Bool visit(Bool isFirst, const uInt recordNo,
107                     const uInt nCols, void const *const colValues[]) {
108    Int observationId, feedId, fieldId, dataDescId, scanNo, stateId;
109    Double time;
110    { // prologue
111      uInt i = 0;
112      {
113        const Int *col = (const Int *)colValues[i++];
114        observationId = col[recordNo];
115      }
116      {
117        const Int *col = (const Int *)colValues[i++];
118        feedId = col[recordNo];
119      }
120      {
121        const Int *col = (const Int *)colValues[i++];
122        fieldId = col[recordNo];
123      }
124      {
125        const Int *col = (const Int *)colValues[i++];
126        dataDescId = col[recordNo];
127      }
128      {
129        const Int *col = (const Int *)colValues[i++];
130        scanNo = col[recordNo];
131      }
132      {
133        const Int *col = (const Int *)colValues[i++];
134        stateId = col[recordNo];
135      }
136      {
137        const Double *col = (const Double *)colValues[i++];
138        time = col[recordNo];
139      }
140      assert(nCols == i);
141    }
142
143    if (isFirst) {
144      enterObservationId(recordNo, observationId);
145      enterFeedId(recordNo, feedId);
146      enterFieldId(recordNo, fieldId);
147      enterDataDescId(recordNo, dataDescId);
148      enterScanNo(recordNo, scanNo);
149      enterStateId(recordNo, stateId);
150      enterTime(recordNo, time);
151    } else {
152      if (lastObservationId != observationId) {
153        leaveTime(lastRecordNo, lastTime);
154        leaveStateId(lastRecordNo, lastStateId);
155        leaveScanNo(lastRecordNo, lastScanNo);
156        leaveDataDescId(lastRecordNo, lastDataDescId);
157        leaveFieldId(lastRecordNo, lastFieldId);
158        leaveFeedId(lastRecordNo, lastFeedId);
159        leaveObservationId(lastRecordNo, lastObservationId);
160
161        enterObservationId(recordNo, observationId);
162        enterFeedId(recordNo, feedId);
163        enterFieldId(recordNo, fieldId);
164        enterDataDescId(recordNo, dataDescId);
165        enterScanNo(recordNo, scanNo);
166        enterStateId(recordNo, stateId);
167        enterTime(recordNo, time);
168      } else if (lastFeedId != feedId) {
169        leaveTime(lastRecordNo, lastTime);
170        leaveStateId(lastRecordNo, lastStateId);
171        leaveScanNo(lastRecordNo, lastScanNo);
172        leaveDataDescId(lastRecordNo, lastDataDescId);
173        leaveFieldId(lastRecordNo, lastFieldId);
174        leaveFeedId(lastRecordNo, lastFeedId);
175
176        enterFeedId(recordNo, feedId);
177        enterFieldId(recordNo, fieldId);
178        enterDataDescId(recordNo, dataDescId);
179        enterScanNo(recordNo, scanNo);
180        enterStateId(recordNo, stateId);
181        enterTime(recordNo, time);
182      } else if (lastFieldId != fieldId) {
183        leaveTime(lastRecordNo, lastTime);
184        leaveStateId(lastRecordNo, lastStateId);
185        leaveScanNo(lastRecordNo, lastScanNo);
186        leaveDataDescId(lastRecordNo, lastDataDescId);
187        leaveFieldId(lastRecordNo, lastFieldId);
188
189        enterFieldId(recordNo, fieldId);
190        enterDataDescId(recordNo, dataDescId);
191        enterScanNo(recordNo, scanNo);
192        enterStateId(recordNo, stateId);
193        enterTime(recordNo, time);
194      } else if (lastDataDescId != dataDescId) {
195        leaveTime(lastRecordNo, lastTime);
196        leaveStateId(lastRecordNo, lastStateId);
197        leaveScanNo(lastRecordNo, lastScanNo);
198        leaveDataDescId(lastRecordNo, lastDataDescId);
199
200        enterDataDescId(recordNo, dataDescId);
201        enterScanNo(recordNo, scanNo);
202        enterStateId(recordNo, stateId);
203        enterTime(recordNo, time);
204      } else if (lastScanNo != scanNo) {
205        leaveTime(lastRecordNo, lastTime);
206        leaveStateId(lastRecordNo, lastStateId);
207        leaveScanNo(lastRecordNo, lastScanNo);
208
209        enterScanNo(recordNo, scanNo);
210        enterStateId(recordNo, stateId);
211        enterTime(recordNo, time);
212      } else if (lastStateId != stateId) {
213        leaveTime(lastRecordNo, lastTime);
214        leaveStateId(lastRecordNo, lastStateId);
215
216        enterStateId(recordNo, stateId);
217        enterTime(recordNo, time);
218      } else if (lastTime != time) {
219        leaveTime(lastRecordNo, lastTime);
220        enterTime(recordNo, time);
221      }
222    }
223    count++;
224    Bool result = visitRecord(recordNo, observationId, feedId, fieldId, dataDescId,
225                              scanNo, stateId, time);
226
227    { // epilogue
228      lastRecordNo = recordNo;
229
230      lastObservationId = observationId;
231      lastFeedId = feedId;
232      lastFieldId = fieldId;
233      lastDataDescId = dataDescId;
234      lastScanNo = scanNo;
235      lastStateId = stateId;
236      lastTime = time;
237    }
238    return result ;
239  }
240
241  virtual void finish() {
242    if (count > 0) {
243      leaveTime(lastRecordNo, lastTime);
244      leaveStateId(lastRecordNo, lastStateId);
245      leaveScanNo(lastRecordNo, lastScanNo);
246      leaveDataDescId(lastRecordNo, lastDataDescId);
247      leaveFieldId(lastRecordNo, lastFieldId);
248      leaveFeedId(lastRecordNo, lastFeedId);
249      leaveObservationId(lastRecordNo, lastObservationId);
250    }
251  }
252};
253
254class MSFillerVisitor: public BaseMSFillerVisitor, public MSFillerUtils {
255public:
256  MSFillerVisitor(const Table &from, Scantable &to)
257    : BaseMSFillerVisitor(from),
258      scantable(to)
259  {
260    antennaId = 0 ;
261    rowidx = 0 ;
262    tablerow = TableRow( scantable.table() ) ;
263    feedEntry = Vector<Int>( 64, -1 ) ;
264    nbeam = 0 ;
265    ifmap.clear() ;
266    const TableDesc &desc = table.tableDesc() ;
267    if ( desc.isColumn( "DATA" ) )
268      dataColumnName = "DATA" ;
269    else if ( desc.isColumn( "FLOAT_DATA" ) )
270      dataColumnName = "FLOAT_DATA" ;
271    getpt = False ;
272    isWeather_ = False ;
273    isSysCal = False ;
274    isTcal = False ;
275    cycleNo = 0 ;
276    numSysCalRow = 0 ;
277    header = scantable.getHeader() ;
278    fluxUnit( header.fluxunit ) ;
279
280    // MS subtables
281    const TableRecord &hdr = table.keywordSet();
282    obstab = hdr.asTable( "OBSERVATION" ) ;
283    spwtab = hdr.asTable( "SPECTRAL_WINDOW" ) ;
284    statetab = hdr.asTable( "STATE" ) ;
285    ddtab = hdr.asTable( "DATA_DESCRIPTION" ) ;
286    poltab = hdr.asTable( "POLARIZATION" ) ;
287    fieldtab = hdr.asTable( "FIELD" ) ;
288    anttab = hdr.asTable( "ANTENNA" ) ;
289    if ( hdr.isDefined( "SYSCAL" ) )
290      sctab = hdr.asTable( "SYSCAL" ) ;
291    if ( hdr.isDefined( "SOURCE" ) )
292      srctab = hdr.asTable( "SOURCE" ) ;
293
294    // attach to columns
295    // MS MAIN
296    intervalCol.attach( table, "INTERVAL" ) ;
297    flagRowCol.attach( table, "FLAG_ROW" ) ;
298    flagCol.attach( table, "FLAG" ) ;
299    if ( dataColumnName.compare( "DATA" ) == 0 )
300      dataCol.attach( table, dataColumnName ) ;
301    else
302      floatDataCol.attach( table, dataColumnName ) ;
303
304    // set dummy epoch
305    mf.set( currentTime ) ;
306
307    //
308    // add rows to scantable
309    //
310    // number of polarization is up to 4
311    uInt addrow = table.nrow() * maxNumPol() ;
312    scantable.table().addRow( addrow ) ;
313
314    // attach to columns
315    // Scantable MAIN
316    TableRecord &r = tablerow.record() ;
317    timeRF.attachToRecord( r, "TIME" ) ;
318    intervalRF.attachToRecord( r, "INTERVAL" ) ;
319    directionRF.attachToRecord( r, "DIRECTION" ) ;
320    azimuthRF.attachToRecord( r, "AZIMUTH" ) ;
321    elevationRF.attachToRecord( r, "ELEVATION" ) ;
322    scanRateRF.attachToRecord( r, "SCANRATE" ) ;
323    weatherIdRF.attachToRecord( r, "WEATHER_ID" ) ;
324    cycleNoRF.attachToRecord( r, "CYCLENO" ) ;
325    flagRowRF.attachToRecord( r, "FLAGROW" ) ;
326    polNoRF.attachToRecord( r, "POLNO" ) ;
327    tcalIdRF.attachToRecord( r, "TCAL_ID" ) ;
328    spectraRF.attachToRecord( r, "SPECTRA" ) ;
329    flagtraRF.attachToRecord( r, "FLAGTRA" ) ;
330    tsysRF.attachToRecord( r, "TSYS" ) ;
331    beamNoRF.attachToRecord( r, "BEAMNO" ) ;
332    ifNoRF.attachToRecord( r, "IFNO" ) ;
333    freqIdRF.attachToRecord( r, "FREQ_ID" ) ;
334    moleculeIdRF.attachToRecord( r, "MOLECULE_ID" ) ;
335    sourceNameRF.attachToRecord( r, "SRCNAME" ) ;
336    sourceProperMotionRF.attachToRecord( r, "SRCPROPERMOTION" ) ;
337    sourceDirectionRF.attachToRecord( r, "SRCDIRECTION" ) ;
338    sourceVelocityRF.attachToRecord( r, "SRCVELOCITY" ) ;
339    focusIdRF.attachToRecord( r, "FOCUS_ID" ) ;
340    fieldNameRF.attachToRecord( r, "FIELDNAME" ) ;
341    sourceTypeRF.attachToRecord( r, "SRCTYPE" ) ;
342    scanNoRF.attachToRecord( r, "SCANNO" ) ;
343
344    // put values
345    RecordFieldPtr<Int> refBeamNoRF( r, "REFBEAMNO" ) ;
346    *refBeamNoRF = -1 ;
347    RecordFieldPtr<Int> fitIdRF( r, "FIT_ID" ) ;
348    *fitIdRF = -1 ;
349    RecordFieldPtr<Float> opacityRF( r, "OPACITY" ) ;
350    *opacityRF = 0.0 ;
351  }
352
353  virtual void enterObservationId(const uInt /*recordNo*/, Int columnValue) {
354    //printf("%u: ObservationId: %d\n", recordNo, columnValue);
355    // update header
356    if ( header.observer.empty() )
357      getScalar( String("OBSERVER"), (uInt)columnValue, obstab, header.observer ) ;
358    if ( header.project.empty() )
359      getScalar( "PROJECT", (uInt)columnValue, obstab, header.project ) ;
360    if ( header.utc == 0.0 ) {
361      Vector<MEpoch> amp ;
362      getArrayMeas( "TIME_RANGE", (uInt)columnValue, obstab, amp ) ;
363      obsEpoch = amp[0];
364      header.utc = obsEpoch.get( "d" ).getValue() ;
365    }
366    if ( header.antennaname.empty() )
367      getScalar( "TELESCOPE_NAME", (uInt)columnValue, obstab, header.antennaname ) ;
368  }
369  virtual void leaveObservationId(const uInt /*recordNo*/, Int /*columnValue*/) {
370    // update header
371    header.nbeam = max( header.nbeam, (Int)nbeam ) ;
372
373    nbeam = 0 ;
374    feedEntry = -1 ;
375  }
376  virtual void enterFeedId(const uInt /*recordNo*/, Int columnValue) {
377    //printf("%u: FeedId: %d\n", recordNo, columnValue);
378
379    // update feed entry
380    if ( allNE( feedEntry, columnValue ) ) {
381      feedEntry[nbeam] = columnValue ;
382      nbeam++ ;
383    }
384
385    // put values
386    *beamNoRF = (uInt)columnValue ;
387    *focusIdRF = (uInt)0 ;
388  }
389  virtual void leaveFeedId(const uInt /*recordNo*/, Int /*columnValue*/) {
390    uInt nelem = feedEntry.nelements() ;
391    if ( nbeam > nelem ) {
392      feedEntry.resize( nelem+64, True ) ;
393      Slicer slice( IPosition( 1, nelem ), IPosition( 1, feedEntry.nelements()-1 ) ) ;
394      feedEntry( slice ) = -1 ;
395    }
396  }
397  virtual void enterFieldId(const uInt /*recordNo*/, Int columnValue) {
398    //printf("%u: FieldId: %d\n", recordNo, columnValue);
399    // update sourceId and fieldName
400    getScalar( "SOURCE_ID", (uInt)columnValue, fieldtab, sourceId ) ;
401    String fieldName ;
402    getScalar( "NAME", (uInt)columnValue, fieldtab, fieldName ) ;
403    fieldName += "__" + String::toString( columnValue ) ;
404
405    // put values
406    *fieldNameRF = fieldName ;
407  }
408  virtual void leaveFieldId(const uInt /*recordNo*/, Int /*columnValue*/) {
409    sourceId = -1 ;
410  }
411  virtual void enterDataDescId(const uInt /*recordNo*/, Int columnValue) {
412    //printf("%u: DataDescId: %d\n", recordNo, columnValue);
413    // update polarization and spectral window ids
414    getScalar( "POLARIZATION_ID", (uInt)columnValue, ddtab, polId ) ;
415    getScalar( "SPECTRAL_WINDOW_ID", (uInt)columnValue, ddtab, spwId ) ;
416
417    // polarization setup
418    getScalar( "NUM_CORR", (uInt)polId, poltab, npol ) ;
419    Vector<Int> corrtype ;
420    getArray( "CORR_TYPE", (uInt)polId, poltab, corrtype ) ;
421    polnos = getPolNos( corrtype ) ;
422   
423    // process SOURCE table
424    String sourceName ;
425    Vector<Double> sourcePM, restFreqs, sysVels ;
426    Vector<String> transition ;
427    processSource( sourceId, spwId, sourceName, sourceDir, sourcePM,
428                   restFreqs, transition, sysVels ) ;
429
430    // spectral setup
431    uInt freqId ;
432    Double reffreq, bandwidth ;
433    String freqref ;
434    getScalar( "NUM_CHAN", (uInt)spwId, spwtab, nchan ) ;
435    Bool iswvr = (Bool)(nchan == 4) ;
436    map<Int,uInt>::iterator iter = ifmap.find( spwId ) ;
437    if ( iter == ifmap.end() ) {
438      //MEpoch me ;
439      //getScalarMeas( "TIME", recordNo, table, me ) ;
440      //spectralSetup( spwId, me, antpos, sourceDir,
441      spectralSetup(spwId, obsEpoch, antpos, sourceDir,
442                    freqId, nchan,
443                    freqref, reffreq, bandwidth);
444      ifmap.insert( pair<Int,uInt>(spwId,freqId) ) ;
445    }
446    else {
447      freqId = iter->second ;
448    }
449    sp.resize( npol, nchan ) ;
450    fl.resize( npol, nchan ) ;
451
452
453    // molecular setup
454    STMolecules mtab = scantable.molecules() ;
455    uInt molId = mtab.addEntry( restFreqs, transition, transition ) ;
456
457    // process SYSCAL table
458    if ( isSysCal )
459      processSysCal( spwId ) ;
460
461    // update header
462    if ( !iswvr ) {
463      header.nchan = max( header.nchan, nchan ) ;
464      header.bandwidth = max( header.bandwidth, bandwidth ) ;
465      if ( header.reffreq == -1.0 )
466        header.reffreq = reffreq ;
467      header.npol = max( header.npol, npol ) ;
468      if ( header.poltype.empty() )
469        header.poltype = getPolType( corrtype[0] ) ;
470      if ( header.freqref.empty() )
471        header.freqref = freqref ;
472    }
473   
474    // put values
475    *ifNoRF = (uInt)spwId ;
476    *freqIdRF = freqId ;
477    *moleculeIdRF = molId ;
478    *sourceNameRF = sourceName ;
479    sourceProperMotionRF.define( sourcePM ) ;
480    Vector<Double> srcD = sourceDir.getAngle().getValue( "rad" ) ;
481    sourceDirectionRF.define( srcD ) ;
482    if ( !sysVels.empty() )
483      *sourceVelocityRF = sysVels[0] ;
484    else {
485      *sourceVelocityRF = (Double)0.0 ;
486    }
487  }
488  virtual void leaveDataDescId(const uInt /*recordNo*/, Int /*columnValue*/) {
489    npol = 0 ;
490    nchan = 0 ;
491    numSysCalRow = 0 ;
492  }
493  virtual void enterScanNo(const uInt /*recordNo*/, Int columnValue) {
494    //printf("%u: ScanNo: %d\n", recordNo, columnValue);
495    // put value
496    // CAS-5841: SCANNO should be consistent with MS SCAN_NUMBER
497    *scanNoRF = (uInt)columnValue ;
498  }
499  virtual void leaveScanNo(const uInt /*recordNo*/, Int /*columnValue*/) {
500    cycleNo = 0 ;
501  }
502  virtual void enterStateId(const uInt /*recordNo*/, Int columnValue) {
503    //printf("%u: StateId: %d\n", recordNo, columnValue);
504    // SRCTYPE
505    Int srcType = getSrcType( columnValue ) ;
506   
507    // update header
508    if ( header.obstype.empty() )
509      getScalar( "OBS_MODE", (uInt)columnValue, statetab, header.obstype ) ;
510
511    // put value
512    *sourceTypeRF = srcType ;
513  }
514  virtual void leaveStateId(const uInt /*recordNo*/, Int /*columnValue*/) { }
515  virtual void enterTime(const uInt recordNo, Double columnValue) {
516    //printf("%u: Time: %f\n", recordNo, columnValue);
517    currentTime = MEpoch( Quantity( columnValue, "s" ), MEpoch::UTC ) ;
518
519    // DIRECTION, AZEL, and SCANRATE
520    Vector<Double> direction, azel ;
521    Vector<Double> scanrate( 2, 0.0 ) ;
522    if ( getpt )
523      getDirection( direction, azel, scanrate ) ;
524    else
525      getSourceDirection( direction, azel, scanrate ) ;
526
527    // INTERVAL
528    Double interval = intervalCol.asdouble( recordNo ) ;
529
530    // WEATHER_ID
531    uInt wid = 0 ;
532    if ( isWeather_ )
533      wid = getWeatherId() ;
534
535    // put value
536    Double t = currentTime.get( "d" ).getValue() ;
537    *timeRF = t ;
538    *intervalRF = interval ;
539    directionRF.define( direction ) ;
540    *azimuthRF = (Float)azel[0] ;
541    *elevationRF = (Float)azel[1] ;
542    scanRateRF.define( scanrate ) ;
543    *weatherIdRF = wid ;
544  }
545  virtual void leaveTime(const uInt /*recordNo*/, Double /*columnValue*/) { }
546  virtual Bool visitRecord(const uInt recordNo,
547                           const Int /*observationId*/,
548                           const Int /*feedId*/,
549                           const Int /*fieldId*/,
550                           const Int /*dataDescId*/,
551                           const Int /*scanNo*/,
552                           const Int /*stateId*/,
553                           const Double /*time*/)
554  {
555    //printf("%u: %d, %d, %d, %d, %d, %d, %f\n", recordNo,
556    //observationId, feedId, fieldId, dataDescId, scanNo, stateId, time);
557
558    // SPECTRA and FLAGTRA
559    //Matrix<Float> sp;
560    //Matrix<uChar> fl;
561    spectraAndFlagtra( recordNo, sp, fl ) ;
562
563    // FLAGROW
564    Bool flr = flagRowCol.asBool( recordNo ) ;
565
566    // TSYS
567    Matrix<Float> tsys ;
568    uInt scIdx = getSysCalIndex() ;
569    if ( numSysCalRow > 0 ) {
570      tsys = sysCalTsysCol( syscalRow[scIdx] ) ;
571    }
572    else {
573      tsys.resize( npol, 1 ) ;
574      tsys = 1.0 ;
575    }
576
577    // TCAL_ID
578    Block<uInt> tcalids( npol, 0 ) ;
579    if ( numSysCalRow > 0 ) {
580      tcalids = getTcalId( syscalTime[scIdx] ) ;
581    }
582    else {
583      tcalids = getDummyTcalId( spwId ) ;
584    }
585
586    // put value
587    *cycleNoRF = cycleNo ;
588    *flagRowRF = (uInt)flr ;
589
590    // for each polarization component
591    for ( Int ipol = 0 ; ipol < npol ; ipol++ ) {
592      // put value depending on polarization component
593      *polNoRF = polnos[ipol] ;
594      *tcalIdRF = tcalids[ipol] ;
595      spectraRF.define( sp.row( ipol ) ) ;
596      flagtraRF.define( fl.row( ipol ) ) ;
597      tsysRF.define( tsys.row( ipol ) ) ;
598     
599      // commit row
600      tablerow.put( rowidx ) ;
601      rowidx++ ;
602    }
603
604    // increment CYCLENO
605    cycleNo++ ;
606
607    return True ;
608  }
609  virtual void finish()
610  {
611    BaseMSFillerVisitor::finish();
612    //printf("Total: %u\n", count);
613    // remove redundant rows
614    //cout << "filled " << rowidx << " rows out of " << scantable.nrow() << " rows" << endl ;
615    if ( scantable.nrow() > (Int)rowidx ) {
616      uInt numRemove = scantable.nrow() - rowidx ;
617      //cout << "numRemove = " << numRemove << endl ;
618      Vector<uInt> rows( numRemove ) ;
619      indgen( rows, rowidx ) ;
620      scantable.table().removeRow( rows ) ;
621    }
622   
623    // antenna name and station name
624    String antennaName ;
625    getScalar( "NAME", (uInt)antennaId, anttab, antennaName ) ;
626    String stationName ;
627    getScalar( "STATION", (uInt)antennaId, anttab, stationName ) ;
628
629    // update header
630    header.nif = ifmap.size() ;
631    header.antennaposition = antpos.get( "m" ).getValue() ;
632    if ( header.antennaname.empty() || header.antennaname == antennaName )
633      header.antennaname = antennaName ;
634    else
635      header.antennaname += "//" + antennaName ;
636    if ( !stationName.empty() && stationName != antennaName )
637      header.antennaname += "@" + stationName ;
638    if ( header.fluxunit.empty() || header.fluxunit == "CNTS" )
639      header.fluxunit = "K" ;
640    header.epoch = "UTC" ;
641    header.equinox = 2000.0 ;
642    if (header.freqref == "TOPO") {
643      header.freqref = "TOPOCENT";
644    } else if (header.freqref == "GEO") {
645      header.freqref = "GEOCENTR";
646    } else if (header.freqref == "BARY") {
647      header.freqref = "BARYCENT";
648    } else if (header.freqref == "GALACTO") {
649      header.freqref = "GALACTOC";
650    } else if (header.freqref == "LGROUP") {
651      header.freqref = "LOCALGRP";
652    } else if (header.freqref == "CMB") {
653      header.freqref = "CMBDIPOL";
654    } else if (header.freqref == "REST") {
655      header.freqref = "SOURCE";
656    }
657    scantable.setHeader( header ) ;
658  }
659  void setAntenna( Int id )
660  {
661    antennaId = id ;
662
663    Vector< Quantum<Double> > pos ;
664    getArrayQuant( "POSITION", (uInt)antennaId, anttab, pos ) ;
665    antpos = MPosition( MVPosition( pos ), MPosition::ITRF ) ;
666    mf.set( antpos ) ;
667  }
668  void setPointingTable( const Table &tab, String columnToUse="DIRECTION" )
669  {
670    // input POINTING table must be
671    //  1) selected by antenna
672    //  2) sorted by TIME
673    ROScalarColumn<Double> tcol( tab, "TIME" ) ;
674    ROArrayColumn<Double> dcol( tab, columnToUse ) ;
675    tcol.getColumn( pointingTime ) ;
676    dcol.getColumn( pointingDirection ) ;
677    const TableRecord &rec = dcol.keywordSet() ;
678    String pointingRef = rec.asRecord( "MEASINFO" ).asString( "Ref" ) ;
679    MDirection::getType( dirType, pointingRef ) ;
680    getpt = True ;
681
682    // initialize toj2000 and toazel
683    initConvert() ;
684  }
685  void setWeatherTime( const Vector<Double> &t, const Vector<Double> &it,
686                       const Vector<uInt> &idx )
687  {
688    isWeather_ = True ;
689    weatherTime_ = t ;
690    weatherInterval_ = it ;
691    weatherIndex_ = idx;
692  }
693  void setSysCalRecord( const Record &r )
694  //void setSysCalRecord( const map< String,Vector<uInt> > &r )
695  {
696    isSysCal = True ;
697    isTcal = True ;
698    syscalRecord = r ;
699    if ( syscalRecord.nfields() == 0 )
700      isTcal = False ;
701
702    const TableDesc &desc = sctab.tableDesc() ;
703    uInt nrow = sctab.nrow() ;
704    syscalRow.resize( nrow ) ;
705    syscalTime.resize( nrow ) ;
706    syscalInterval.resize( nrow ) ;
707    String tsysCol = "NONE" ;
708    Vector<String> tsysCols = stringToVector( "TSYS_SPECTRUM,TSYS" ) ;
709    for ( uInt i = 0 ; i < tsysCols.nelements() ; i++ ) {
710      if ( tsysCol == "NONE" && desc.isColumn( tsysCols[i] ) )
711        tsysCol = tsysCols[i] ;
712    }
713    sysCalTsysCol.attach( sctab, tsysCol ) ;
714  }
715  STHeader getHeader() { return header ; }
716  uInt getNumBeam() { return nbeam ; }
717  uInt getFilledRowNum() { return rowidx ; }
718private:
719  void initConvert()
720  {
721    toj2000 = MDirection::Convert( dirType, MDirection::Ref( MDirection::J2000, mf ) ) ;
722    toazel = MDirection::Convert( dirType, MDirection::Ref( MDirection::AZELGEO, mf ) ) ;
723  }
724
725  void fluxUnit( String &u )
726  {
727    ROTableColumn col( table, dataColumnName ) ;
728    const TableRecord &rec = col.keywordSet() ;
729    if ( rec.isDefined( "UNIT" ) )
730      u = rec.asString( "UNIT" ) ;
731    else if ( rec.isDefined( "QuantumUnits" ) )
732      u = rec.asString( "QuantumUnits" ) ;
733    if ( u.empty() )
734      u = "K" ;
735  }
736  void processSource( Int sourceId, Int spwId,
737                      String &name, MDirection &dir, Vector<Double> &pm,
738                      Vector<Double> &rf, Vector<String> &trans, Vector<Double> &vel )
739  {
740    // find row
741    uInt nrow = srctab.nrow() ;
742    Int idx = -1 ;
743    ROTableRow row( srctab ) ;
744    for ( uInt irow = 0 ; irow < nrow ; irow++ ) {
745      const TableRecord &r = row.get( irow ) ;
746      if ( r.asInt( "SOURCE_ID" ) == sourceId ) {
747        Int tmpSpwId = r.asInt( "SPECTRAL_WINDOW_ID" ) ;
748        if ( tmpSpwId == spwId || tmpSpwId == -1 ) {
749          idx = (Int)irow ;
750          break ;
751        }
752      }
753    }
754
755    // fill
756    Int numLines = 0 ;
757    if ( idx != -1 ) {
758      const TableRecord &r = row.get( idx ) ;
759      name = r.asString( "NAME" ) ;
760      getScalarMeas( "DIRECTION", idx, srctab, dir ) ;
761      pm = r.toArrayDouble( "PROPER_MOTION" ) ;
762      numLines = r.asInt( "NUM_LINES" ) ;
763    }
764    else {
765      name = "" ;
766      pm = Vector<Double>( 2, 0.0 ) ;
767      dir = MDirection( Quantum<Double>(0.0,Unit("rad")), Quantum<Double>(0.0,Unit("rad")) ) ;
768    }
769    if ( !getpt ) {
770      String ref = dir.getRefString() ;
771      MDirection::getType( dirType, ref ) ;
772     
773      // initialize toj2000 and toazel
774      initConvert() ;
775    }
776
777    rf.resize( numLines ) ;
778    trans.resize( numLines ) ;
779    vel.resize( numLines ) ;
780    if ( numLines > 0 ) {
781      Block<Bool> isDefined = row.getDefined() ;
782      Vector<String> colNames = row.columnNames() ;
783      Vector<Int> indexes( 3, -1 ) ;
784      Vector<String> cols = stringToVector( "REST_FREQUENCY,TRANSITION,SYSVEL" ) ;
785      for ( uInt icol = 0 ; icol < colNames.nelements() ; icol++ ) {
786        if ( anyEQ( indexes, -1 ) ) {
787          for ( uInt jcol = 0 ; jcol < cols.nelements() ; jcol++ ) {
788            if ( colNames[icol] == cols[jcol] )
789              indexes[jcol] = icol ;
790          }
791        }
792      }
793      if ( indexes[0] != -1 && isDefined[indexes[0]] == True ) {
794        Vector< Quantum<Double> > qrf ;
795        getArrayQuant( "REST_FREQUENCY", idx, srctab, qrf ) ;
796        for ( int i = 0 ; i < numLines ; i++ )
797          rf[i] = qrf[i].getValue( "Hz" ) ;
798      }
799      if ( indexes[1] != -1 && isDefined[indexes[1]] == True ) {
800        getArray( "TRANSITION", idx, srctab, trans ) ;
801      }
802      if ( indexes[2] != -1 && isDefined[indexes[2]] == True ) {
803        Vector< Quantum<Double> > qsv ;
804        getArrayQuant( "SYSVEL", idx, srctab, qsv ) ;
805        for ( int i = 0 ; i < numLines ; i++ )
806          vel[i] = qsv[i].getValue( "m/s" ) ;
807      }
808    }
809  }
810  void spectralSetup( Int &spwId, MEpoch &me, MPosition &mp, MDirection &md,
811                      uInt &freqId, Int &nchan,
812                      String &freqref, Double &reffreq, Double &bandwidth )
813  {
814    // fill
815    Int measFreqRef ;
816    getScalar( "MEAS_FREQ_REF", spwId, spwtab, measFreqRef ) ;
817    MFrequency::Types freqRef = MFrequency::castType( measFreqRef ) ;
818    //freqref = MFrequency::showType( freqRef ) ;
819    //freqref = "LSRK" ;
820    freqref = "TOPO";
821    Quantum<Double> q ;
822    getScalarQuant( "TOTAL_BANDWIDTH", spwId, spwtab, q ) ;
823    bandwidth = q.getValue( "Hz" ) ;
824    getScalarQuant( "REF_FREQUENCY", spwId, spwtab, q ) ;
825    reffreq = q.getValue( "Hz" ) ;
826    Double refpix = 0.5 * ( (Double)nchan-1.0 ) ;
827    Int refchan = ( nchan - 1 ) / 2 ;
828    Bool even = (Bool)( nchan % 2 == 0 ) ;
829    Vector< Quantum<Double> > qa ;
830    getArrayQuant( "CHAN_WIDTH", spwId, spwtab, qa ) ;
831//     Double increment = qa[refchan].getValue( "Hz" ) ;
832    Double increment = abs(qa[refchan].getValue( "Hz" )) ;
833    getArrayQuant( "CHAN_FREQ", spwId, spwtab, qa ) ;
834    if ( nchan == 1 ) {
835      Int netSideband ;
836      getScalar( "NET_SIDEBAND", spwId, spwtab, netSideband ) ;
837      if ( netSideband == 1 ) increment *= -1.0 ;
838    }
839    else {
840      if ( qa[0].getValue( "Hz" ) > qa[1].getValue( "Hz" ) )
841        increment *= -1.0 ;
842    }
843    Double refval = qa[refchan].getValue( "Hz" ) ;
844    if ( even )
845      refval = 0.5 * ( refval + qa[refchan+1].getValue( "Hz" ) ) ;
846   
847    // add new row to FREQUENCIES
848    Table ftab = scantable.frequencies().table() ;
849    freqId = ftab.nrow() ;
850    ftab.addRow() ;
851    TableRow row( ftab ) ;
852    TableRecord &r = row.record() ;
853    RecordFieldPtr<uInt> idRF( r, "ID" ) ;
854    *idRF = freqId ;
855    RecordFieldPtr<Double> refpixRF( r, "REFPIX" ) ;
856    RecordFieldPtr<Double> refvalRF( r, "REFVAL" ) ;
857    RecordFieldPtr<Double> incrRF( r, "INCREMENT" ) ;
858    *refpixRF = refpix ;
859    *refvalRF = refval ;
860    *incrRF = increment ;
861    row.put( freqId ) ;
862  }
863  void spectraAndFlagtra( uInt recordNo, Matrix<Float> &sp, Matrix<uChar> &fl )
864  {
865    Matrix<Bool> b = flagCol( recordNo ) ;
866    if ( dataColumnName.compare( "FLOAT_DATA" ) == 0 ) {
867      sp = floatDataCol( recordNo ) ;
868      convertArray( fl, b ) ;
869    }
870    else {
871      Bool notyet = True ;
872      Matrix<Complex> c = dataCol( recordNo ) ;
873      for ( Int ipol = 0 ; ipol < npol ; ipol++ ) {
874        if ( ( header.poltype == "linear" || header.poltype == "circular" )
875             && ( polnos[ipol] == 2 || polnos[ipol] == 3 ) ) {
876          if ( notyet ) {
877            Vector<Float> tmp = ComplexToReal( c.row( ipol ) ) ;
878            IPosition start( 1, 0 ) ;
879            IPosition end( 1, 2*nchan-1 ) ;
880            IPosition inc( 1, 2 ) ;
881            if ( polnos[ipol] == 2 ) {
882              sp.row( ipol ) = tmp( start, end, inc ) ;
883              Vector<Bool> br = b.row( ipol ) ;
884              Vector<uChar> flr = fl.row( ipol ) ;
885              convertArray( flr, br ) ;
886              start = IPosition( 1, 1 ) ;
887              Int jpol = ipol+1 ;
888              while( polnos[jpol] != 3 && jpol < npol )
889                jpol++ ;
890              sp.row( jpol ) = tmp( start, end, inc ) ;
891              flr.reference( fl.row( jpol ) ) ;
892              convertArray( flr, br ) ;
893            }
894            else if ( polnos[ipol] == 3 ) {
895              sp.row( ipol ) = sp.row( ipol ) * (Float)(-1.0) ;
896              Int jpol = ipol+1 ;
897              while( polnos[jpol] != 2 && jpol < npol )
898                jpol++ ;
899              Vector<Bool> br = b.row( ipol ) ;
900              Vector<uChar> flr = fl.row( jpol ) ;
901              sp.row( jpol ) = tmp( start, end, inc ) ;
902              convertArray( flr, br ) ;
903              start = IPosition( 1, 1 ) ;
904              sp.row( ipol ) = tmp( start, end, inc ) * (Float)(-1.0) ;
905              flr.reference( fl.row( ipol ) ) ;
906              convertArray( flr, br ) ;
907            }
908            notyet = False ;
909          }
910        }
911        else {
912          Vector<Float> tmp = ComplexToReal( c.row( ipol ) ) ;
913          IPosition start( 1, 0 ) ;
914          IPosition end( 1, 2*nchan-1 ) ;
915          IPosition inc( 1, 2 ) ;
916          sp.row( ipol ) = tmp( start, end, inc ) ;
917          Vector<Bool> br = b.row( ipol ) ;
918          Vector<uChar> flr = fl.row( ipol ) ;
919          convertArray( flr, br ) ;
920        }
921      }
922    }
923  }
924  uInt binarySearch( Vector<Double> &timeList, Double target )
925  {
926    Int low = 0 ;
927    Int high = timeList.nelements() ;
928    uInt idx = 0 ;
929   
930    while ( low <= high ) {
931      idx = (Int)( 0.5 * ( low + high ) ) ;
932      Double t = timeList[idx] ;
933      if ( t < target )
934        low = idx + 1 ;
935      else if ( t > target )
936        high = idx - 1 ;
937      else {
938        return idx ;
939      }
940    }
941   
942    idx = max( 0, min( low, high ) ) ;
943    return idx ;
944  }
945  void getDirection( Vector<Double> &dir, Vector<Double> &azel, Vector<Double> &srate )
946  {
947    // @todo At the moment, do binary search every time
948    //       if this is bottleneck, frequency of binary search must be reduced
949    Double t = currentTime.get( "s" ).getValue() ;
950    uInt idx = min( binarySearch( pointingTime, t ), pointingTime.nelements()-1 ) ;
951    Matrix<Double> d ;
952    if ( pointingTime[idx] == t )
953      d = pointingDirection.xyPlane( idx ) ;
954    else if ( pointingTime[idx] < t ) {
955      if ( idx == pointingTime.nelements()-1 )
956        d = pointingDirection.xyPlane( idx ) ;
957      else
958        d = interp( pointingTime[idx], pointingTime[idx+1], t,
959                    pointingDirection.xyPlane( idx ), pointingDirection.xyPlane( idx+1 ) ) ;
960    }
961    else {
962      if ( idx == 0 )
963        d = pointingDirection.xyPlane( idx ) ;
964      else
965        d = interp( pointingTime[idx-1], pointingTime[idx], t,
966                    pointingDirection.xyPlane( idx-1 ), pointingDirection.xyPlane( idx ) ) ;
967    }
968    mf.set( currentTime ) ;
969    Quantum< Vector<Double> > tmp( d.column( 0 ), Unit( "rad" ) ) ;
970    if ( dirType != MDirection::J2000 ) {
971      dir = toj2000( tmp ).getAngle( "rad" ).getValue() ;
972    }
973    else {
974      dir = d.column( 0 ) ;
975    }
976    if ( dirType != MDirection::AZELGEO ) {
977      azel = toazel( tmp ).getAngle( "rad" ).getValue() ;
978    }
979    else {
980      azel = d.column( 0 ) ;
981    }
982    if ( d.ncolumn() > 1 )
983      srate = d.column( 1 ) ;
984  }
985  void getSourceDirection( Vector<Double> &dir, Vector<Double> &azel, Vector<Double> &/*srate*/ )
986  {
987    dir = sourceDir.getAngle( "rad" ).getValue() ;
988    mf.set( currentTime ) ;
989    azel = toazel( Quantum< Vector<Double> >( dir, Unit("rad") ) ).getAngle( "rad" ).getValue() ;
990    if ( dirType != MDirection::J2000 ) {
991      dir = toj2000( Quantum< Vector<Double> >( dir, Unit("rad") ) ).getAngle( "rad" ).getValue() ;
992    }
993  }
994  String detectSeparator( String &s )
995  {
996    String tmp = s.substr( 0, s.find_first_of( "," ) ) ;
997    const Char *separators[] = { ":", "#", ".", "_" } ;
998    uInt nsep = 4 ;
999    for ( uInt i = 0 ; i < nsep ; i++ ) {
1000      if ( tmp.find( separators[i] ) != String::npos )
1001        return separators[i] ;
1002    }
1003    return "" ;
1004  }
1005  Int getSrcType( Int stateId )
1006  {
1007    // get values
1008    Bool sig ;
1009    getScalar( "SIG", stateId, statetab, sig ) ;
1010    Bool ref ;
1011    getScalar( "REF", stateId, statetab, ref ) ;
1012    Double cal ;
1013    getScalar( "CAL", stateId, statetab, cal ) ;
1014    String obsmode ;
1015    getScalar( "OBS_MODE", stateId, statetab, obsmode ) ;
1016    String sep = detectSeparator( obsmode ) ;
1017   
1018    Int srcType = SrcType::NOTYPE ;
1019    if ( sep == ":" )
1020      srcTypeGBT( srcType, sep, obsmode, sig, ref, cal ) ;
1021    else if ( sep == "." || sep == "#" )
1022      srcTypeALMA( srcType, sep, obsmode ) ;
1023    else if ( sep == "_" )
1024      srcTypeOldALMA( srcType, sep, obsmode, sig, ref ) ;
1025    else
1026      srcTypeDefault( srcType, sig, ref ) ;
1027
1028    return srcType ;
1029  }
1030  void srcTypeDefault( Int &st, Bool &sig, Bool &ref )
1031  {
1032    if ( sig ) st = SrcType::SIG ;
1033    else if ( ref ) st = SrcType::REF ;
1034  }
1035  void srcTypeGBT( Int &st, String &sep, String &mode, Bool &sig, Bool &ref, Double &cal )
1036  {
1037    Int epos = mode.find_first_of( sep ) ;
1038    Int nextpos = mode.find_first_of( sep, epos+1 ) ;
1039    String m1 = mode.substr( 0, epos ) ;
1040    String m2 = mode.substr( epos+1, nextpos-epos-1 ) ;
1041    if ( m1 == "Nod" ) {
1042      st = SrcType::NOD ;
1043    }
1044    else if ( m1 == "OffOn" ) {
1045      if ( m2 == "PSWITCHON" ) st = SrcType::PSON ;
1046      if ( m2 == "PSWITCHOFF" ) st = SrcType::PSOFF ;
1047    }
1048    else {
1049      if ( m2 == "FSWITCH" ) {
1050        if ( sig ) st = SrcType::FSON ;
1051        else if ( ref ) st = SrcType::FSOFF ;
1052      }
1053    }
1054    if ( cal > 0.0 ) {
1055      if ( st == SrcType::NOD )
1056        st = SrcType::NODCAL ;
1057      else if ( st == SrcType::PSON )
1058        st = SrcType::PONCAL ;
1059      else if ( st == SrcType::PSOFF )
1060        st = SrcType::POFFCAL ;
1061      else if ( st == SrcType::FSON )
1062        st = SrcType::FONCAL ;
1063      else if ( st == SrcType::FSOFF )
1064        st = SrcType::FOFFCAL ;
1065      else
1066        st = SrcType::CAL ;
1067    }
1068  }
1069  void srcTypeALMA( Int &st, String &sep, String &mode )
1070  {
1071    Int epos = mode.find_first_of( "," ) ;
1072    String first = mode.substr( 0, epos ) ;
1073    epos = first.find_first_of( sep ) ;
1074    Int nextpos = first.find_first_of( sep, epos+1 ) ;
1075    String m1 = first.substr( 0, epos ) ;
1076    String m2 = first.substr( epos+1, nextpos-epos-1 ) ;
1077    if ( m1.find( "CALIBRATE_ATMOSPHERE" ) == 0 ) {
1078      if (m2.find( "ON_SOURCE" ) == 0 || m2.find("HOT") == 0 || m2.find("AMBIENT") == 0)
1079        st = SrcType::PONCAL ;
1080      else if ( m2.find( "OFF_SOURCE" ) == 0 )
1081        st = SrcType::POFFCAL ;
1082    }
1083    else if ( m1.find( "CALIBRATE_" ) == 0 ) {
1084      st = SrcType::CAL ;
1085    }
1086    else if ( m1.find( "OBSERVE_TARGET" ) == 0 ) {
1087      if ( m2.find( "ON_SOURCE" ) == 0 )
1088        st = SrcType::PSON ;
1089      else if ( m2.find( "OFF_SOURCE" ) == 0 )
1090        st = SrcType::PSOFF ;
1091    }
1092  }
1093  void srcTypeOldALMA( Int &st, String &sep, String &mode, Bool &sig, Bool &ref )
1094  {
1095    Int epos = mode.find_first_of( "," ) ;
1096    String first = mode.substr( 0, epos ) ;
1097    string substr[4] ;
1098    int numSubstr = split( first, substr, 4, sep ) ;
1099    String m1( substr[0] ) ;
1100    String m2( substr[2] ) ;
1101    if ( numSubstr == 4 ) {
1102      if ( m1.find( "CALIBRATE" ) == 0 ) {
1103        if ( m2.find( "ON" ) == 0 )
1104          st = SrcType::PONCAL ;
1105        else if ( m2.find( "OFF" ) == 0 )
1106          st = SrcType::POFFCAL ;
1107      }
1108      else if ( m1.find( "OBSERVE" ) == 0 ) {
1109        if ( m2.find( "ON" ) == 0 )
1110          st = SrcType::PSON ;
1111        else if ( m2.find( "OFF" ) == 0 )
1112          st = SrcType::PSOFF ;
1113      }
1114    }
1115    else {
1116      if ( sig ) st = SrcType::SIG ;
1117      else if ( ref ) st = SrcType::REF ;
1118    }
1119  }
1120  Block<uInt> getPolNos( Vector<Int> &corr )
1121  {
1122    Block<uInt> polnos( npol ) ;
1123    for ( Int ipol = 0 ; ipol < npol ; ipol++ ) {
1124      if ( corr[ipol] == Stokes::I || corr[ipol] == Stokes::RR || corr[ipol] == Stokes::XX )
1125        polnos[ipol] = 0 ;
1126      else if ( corr[ipol] == Stokes::Q || corr[ipol] == Stokes::LL || corr[ipol] == Stokes::YY )
1127        polnos[ipol] = 1 ;
1128      else if ( corr[ipol] == Stokes::U || corr[ipol] == Stokes::RL || corr[ipol] == Stokes::XY )
1129        polnos[ipol] = 2 ;
1130      else if ( corr[ipol] == Stokes::V || corr[ipol] == Stokes::LR || corr[ipol] == Stokes::YX )
1131        polnos[ipol] = 3 ;
1132    }
1133    return polnos ;
1134  }
1135  String getPolType( Int &corr )
1136  {
1137    String poltype = "" ;
1138    if ( corr == Stokes::I || corr == Stokes::Q || corr == Stokes::U || corr == Stokes::V )
1139      poltype = "stokes" ;
1140    else if ( corr == Stokes::XX || corr == Stokes::YY || corr == Stokes::XY || corr == Stokes::YX )
1141      poltype = "linear" ;
1142    else if ( corr == Stokes::RR || corr == Stokes::LL || corr == Stokes::RL || corr == Stokes::LR )
1143      poltype = "circular" ;
1144    else if ( corr == Stokes::Plinear || corr == Stokes::Pangle )
1145      poltype = "linpol" ;
1146    return poltype ;   
1147  }
1148  uInt getWeatherId()
1149  {
1150    // if only one row, return 0
1151    if ( weatherTime_.nelements() == 1 )
1152      return 0 ;
1153
1154    // @todo At the moment, do binary search every time
1155    //       if this is bottleneck, frequency of binary search must be reduced
1156    Double t = currentTime.get( "s" ).getValue() ;
1157    uInt idx = min( binarySearch( weatherTime_, t ), weatherTime_.nelements()-1 ) ;
1158    if ( weatherTime_[idx] < t ) {
1159      if ( idx != weatherTime_.nelements()-1 ) {
1160        if ( weatherTime_[idx+1] - t < 0.5 * weatherInterval_[idx+1] )
1161          idx++ ;
1162      }
1163    }
1164    else if ( weatherTime_[idx] > t ) {
1165      if ( idx != 0 ) {
1166        if ( weatherTime_[idx] - t > 0.5 * weatherInterval_[idx] )
1167          idx-- ;
1168      }
1169    }
1170    return weatherIndex_[idx] ;
1171  }
1172  void processSysCal( Int &spwId )
1173  {
1174    // get feedId from row
1175    Int feedId = (Int)tablerow.record().asuInt( "BEAMNO" ) ;
1176
1177    uInt nrow = sctab.nrow() ;
1178    ROScalarColumn<Int> col( sctab, "ANTENNA_ID" ) ;
1179    Vector<Int> aids = col.getColumn() ;
1180    col.attach( sctab, "FEED_ID" ) ;
1181    Vector<Int> fids = col.getColumn() ;
1182    col.attach( sctab, "SPECTRAL_WINDOW_ID" ) ;
1183    Vector<Int> sids = col.getColumn() ;
1184    ROScalarColumn<Double> timeCol( sctab, "TIME" ) ;
1185    ROScalarColumn<Double> intCol( sctab, "INTERVAL" ) ;
1186    for ( uInt irow = 0 ; irow < nrow ; irow++ ) {
1187      if ( aids[irow] == antennaId
1188           && fids[irow] == feedId
1189           && sids[irow] == spwId ) {
1190        syscalRow[numSysCalRow] = irow ;
1191        syscalTime[numSysCalRow] = timeCol( irow ) ;
1192        syscalInterval[numSysCalRow] = intCol( irow ) ;
1193        numSysCalRow++ ;
1194      }
1195    }
1196  }
1197  uInt getSysCalIndex()
1198  {
1199    // if only one row, return 0
1200    if ( numSysCalRow == 1 || !isSysCal )
1201      return 0 ;
1202
1203    // @todo At the moment, do binary search every time
1204    //       if this is bottleneck, frequency of binary search must be reduced
1205    Double t = currentTime.get( "s" ).getValue() ;
1206    Vector<Double> tslice  = syscalTime( Slice(0, numSysCalRow) ) ;
1207    uInt idx = min( binarySearch( tslice, t ), numSysCalRow-1 ) ;
1208    if ( syscalTime[idx] < t ) {
1209      if ( idx != numSysCalRow-1 ) {
1210        if ( syscalTime[idx+1] - t < 0.5 * syscalInterval[idx+1] )
1211          idx++ ;
1212      }
1213    }
1214    else if ( syscalTime[idx] > t ) {
1215      if ( idx != 0 ) {
1216        if ( syscalTime[idx] - t > 0.5 * syscalInterval[idx] )
1217          idx-- ;
1218      }
1219    }
1220    return idx ;   
1221  }
1222  Block<uInt> getTcalId( Double &t )
1223  {
1224    // return 0 if no SysCal table
1225    if ( !isSysCal or !isTcal ) {
1226      return Block<uInt>( 4, 0 ) ;
1227    }
1228     
1229    // get feedId from row
1230    Int feedId = (Int)tablerow.record().asuInt( "BEAMNO" ) ;
1231
1232    // key
1233    String key = keyTcal( feedId, spwId, t ) ;
1234   
1235    // retrieve ids
1236    Vector<uInt> ids = syscalRecord.asArrayuInt( key ) ;
1237    //Vector<uInt> ids = syscalRecord[key] ;
1238    uInt np = ids[1] - ids[0] + 1 ;
1239    Block<uInt> tcalids( np ) ;
1240    if ( np > 0 ) {
1241      tcalids[0] = ids[0] ;
1242      if ( np > 1 ) {
1243        tcalids[1] = ids[1] ;
1244        for ( uInt ip = 2 ; ip < np ; ip++ )
1245          tcalids[ip] = ids[0] + ip - 1 ;
1246      }
1247    }
1248    return tcalids ;
1249  }
1250  Block<uInt> getDummyTcalId( Int spwId )
1251  {
1252    Block<uInt> idList(4, 0);
1253    uInt nfields = syscalRecord.nfields();
1254    Int idx = -1;
1255    for (uInt i = 0; i< nfields ; i++ ) {
1256      String spw = "SPW" + String::toString(spwId);
1257      if (syscalRecord.name(i).find(spw) != String::npos) {
1258        idx = i;
1259        break;
1260      }
1261    }
1262    if ( idx > -1) {
1263      Vector<uInt> tmp = syscalRecord.asArrayuInt(idx);
1264      for (uInt j = 0 ; j < 4 ; j++) {
1265        idList[j] = tmp[0];
1266      }
1267    }
1268    return idList;
1269  }
1270  uInt maxNumPol()
1271  {
1272    ROScalarColumn<Int> numCorrCol( poltab, "NUM_CORR" ) ;
1273    return max( numCorrCol.getColumn() ) ;
1274  }
1275
1276  Scantable &scantable;
1277  Int antennaId;
1278  uInt rowidx;
1279  String dataColumnName;
1280  TableRow tablerow;
1281  STHeader header;
1282  Vector<Int> feedEntry;
1283  uInt nbeam;
1284  Int npol;
1285  Int nchan;
1286  Int sourceId;
1287  Int polId;
1288  Int spwId;
1289  uInt cycleNo;
1290  MDirection sourceDir;
1291  MPosition antpos;
1292  MEpoch currentTime;
1293  MEpoch obsEpoch;
1294  MeasFrame mf;
1295  MDirection::Convert toj2000;
1296  MDirection::Convert toazel;
1297  map<Int,uInt> ifmap;
1298  Block<uInt> polnos;
1299  Bool getpt;
1300  Vector<Double> pointingTime;
1301  Cube<Double> pointingDirection;
1302  MDirection::Types dirType;
1303  Bool isWeather_;
1304  Vector<Double> weatherTime_;
1305  Vector<Double> weatherInterval_;
1306  Vector<uInt> weatherIndex_;
1307  Bool isSysCal;
1308  Bool isTcal;
1309  Record syscalRecord;
1310  //map< String,Vector<uInt> > syscalRecord;
1311  uInt numSysCalRow ;
1312  Vector<uInt> syscalRow;
1313  Vector<Double> syscalTime;
1314  Vector<Double> syscalInterval;
1315  //String tsysCol;
1316  //String tcalCol;
1317
1318  // MS subtables
1319  Table obstab;
1320  Table sctab;
1321  Table spwtab;
1322  Table statetab;
1323  Table ddtab;
1324  Table poltab;
1325  Table fieldtab;
1326  Table anttab;
1327  Table srctab;
1328  Matrix<Float> sp;
1329  Matrix<uChar> fl;
1330
1331  // MS MAIN columns
1332  ROTableColumn intervalCol;
1333  ROTableColumn flagRowCol;
1334  ROArrayColumn<Float> floatDataCol;
1335  ROArrayColumn<Complex> dataCol;
1336  ROArrayColumn<Bool> flagCol;
1337
1338  // MS SYSCAL columns
1339  ROArrayColumn<Float> sysCalTsysCol;
1340
1341  // Scantable MAIN columns
1342  RecordFieldPtr<Double> timeRF,intervalRF,sourceVelocityRF;
1343  RecordFieldPtr< Vector<Double> > directionRF,scanRateRF,
1344    sourceProperMotionRF,sourceDirectionRF;
1345  RecordFieldPtr<Float> azimuthRF,elevationRF;
1346  RecordFieldPtr<uInt> weatherIdRF,cycleNoRF,flagRowRF,polNoRF,tcalIdRF,
1347    ifNoRF,freqIdRF,moleculeIdRF,beamNoRF,focusIdRF,scanNoRF;
1348  RecordFieldPtr< Vector<Float> > spectraRF,tsysRF;
1349  RecordFieldPtr< Vector<uChar> > flagtraRF;
1350  RecordFieldPtr<String> sourceNameRF,fieldNameRF;
1351  RecordFieldPtr<Int> sourceTypeRF;
1352};
1353
1354class BaseTcalVisitor: public TableVisitor {
1355  uInt lastRecordNo ;
1356  Int lastAntennaId ;
1357  Int lastFeedId ;
1358  Int lastSpwId ;
1359  Double lastTime ;
1360protected:
1361  const Table &table;
1362  uInt count;
1363public:
1364  BaseTcalVisitor(const Table &table)
1365   : table(table)
1366  {
1367    count = 0;
1368  }
1369 
1370  virtual void enterAntennaId(const uInt /*recordNo*/, Int /*columnValue*/) { }
1371  virtual void leaveAntennaId(const uInt /*recordNo*/, Int /*columnValue*/) { }
1372  virtual void enterFeedId(const uInt /*recordNo*/, Int /*columnValue*/) { }
1373  virtual void leaveFeedId(const uInt /*recordNo*/, Int /*columnValue*/) { }
1374  virtual void enterSpwId(const uInt /*recordNo*/, Int /*columnValue*/) { }
1375  virtual void leaveSpwId(const uInt /*recordNo*/, Int /*columnValue*/) { }
1376  virtual void enterTime(const uInt /*recordNo*/, Double /*columnValue*/) { }
1377  virtual void leaveTime(const uInt /*recordNo*/, Double /*columnValue*/) { }
1378
1379  virtual Bool visitRecord(const uInt /*recordNo*/,
1380                           const Int /*antennaId*/,
1381                           const Int /*feedId*/,
1382                           const Int /*spwId*/,
1383                           const Double /*time*/) { return True ; }
1384
1385  virtual Bool visit(Bool isFirst, const uInt recordNo,
1386                     const uInt nCols, void const *const colValues[]) {
1387    Int antennaId, feedId, spwId;
1388    Double time;
1389    { // prologue
1390      uInt i = 0;
1391      {
1392        const Int *col = (const Int *)colValues[i++];
1393        antennaId = col[recordNo];
1394      }
1395      {
1396        const Int *col = (const Int *)colValues[i++];
1397        feedId = col[recordNo];
1398      }
1399      {
1400        const Int *col = (const Int *)colValues[i++];
1401        spwId = col[recordNo];
1402      }
1403      {
1404        const Double *col = (const Double *)colValues[i++];
1405        time = col[recordNo];
1406      }
1407      assert(nCols == i);
1408    }
1409
1410    if (isFirst) {
1411      enterAntennaId(recordNo, antennaId);
1412      enterFeedId(recordNo, feedId);
1413      enterSpwId(recordNo, spwId);
1414      enterTime(recordNo, time);
1415    } else {
1416      if ( lastAntennaId != antennaId ) {
1417        leaveTime(lastRecordNo, lastTime);
1418        leaveSpwId(lastRecordNo, lastSpwId);
1419        leaveFeedId(lastRecordNo, lastFeedId);
1420        leaveAntennaId(lastRecordNo, lastAntennaId);
1421
1422        enterAntennaId(recordNo, antennaId);
1423        enterFeedId(recordNo, feedId);
1424        enterSpwId(recordNo, spwId);
1425        enterTime(recordNo, time);
1426      }       
1427      else if (lastFeedId != feedId) {
1428        leaveTime(lastRecordNo, lastTime);
1429        leaveSpwId(lastRecordNo, lastSpwId);
1430        leaveFeedId(lastRecordNo, lastFeedId);
1431
1432        enterFeedId(recordNo, feedId);
1433        enterSpwId(recordNo, spwId);
1434        enterTime(recordNo, time);
1435      } else if (lastSpwId != spwId) {
1436        leaveTime(lastRecordNo, lastTime);
1437        leaveSpwId(lastRecordNo, lastSpwId);
1438
1439        enterSpwId(recordNo, spwId);
1440        enterTime(recordNo, time);
1441      } else if (lastTime != time) {
1442        leaveTime(lastRecordNo, lastTime);
1443        enterTime(recordNo, time);
1444      }
1445    }
1446    count++;
1447    Bool result = visitRecord(recordNo, antennaId, feedId, spwId, time);
1448
1449    { // epilogue
1450      lastRecordNo = recordNo;
1451
1452      lastAntennaId = antennaId;
1453      lastFeedId = feedId;
1454      lastSpwId = spwId;
1455      lastTime = time;
1456    }
1457    return result ;
1458  }
1459
1460  virtual void finish() {
1461    if (count > 0) {
1462      leaveTime(lastRecordNo, lastTime);
1463      leaveSpwId(lastRecordNo, lastSpwId);
1464      leaveFeedId(lastRecordNo, lastFeedId);
1465      leaveAntennaId(lastRecordNo, lastAntennaId);
1466    }
1467  }
1468};
1469
1470class TcalVisitor: public BaseTcalVisitor, public MSFillerUtils {
1471public:
1472  TcalVisitor(const Table &table, Table &tcaltab, Record &r, Int aid )
1473  //TcalVisitor(const Table &table, Table &tcaltab, map< String,Vector<uInt> > &r, Int aid )
1474    : BaseTcalVisitor( table ),
1475      tcal(tcaltab),
1476      rec(r),
1477      antenna(aid)
1478  {
1479    process = False ;
1480    rowidx = 0 ;
1481
1482    // attach to SYSCAL columns
1483    timeCol.attach( table, "TIME" ) ;
1484
1485    // add rows
1486    uInt addrow = table.nrow() * 4 ;
1487    tcal.addRow( addrow ) ;
1488
1489    // attach to TCAL columns
1490    row = TableRow( tcal ) ;
1491    TableRecord &trec = row.record() ;
1492    idRF.attachToRecord( trec, "ID" ) ;
1493    timeRF.attachToRecord( trec, "TIME" ) ;
1494    tcalRF.attachToRecord( trec, "TCAL" ) ;
1495  }
1496
1497  virtual void enterAntennaId(const uInt /*recordNo*/, Int columnValue) {
1498    if ( columnValue == antenna )
1499      process = True ;
1500  }
1501  virtual void leaveAntennaId(const uInt /*recordNo*/, Int /*columnValue*/) {
1502    process = False ;
1503  }
1504  virtual void enterFeedId(const uInt /*recordNo*/, Int /*columnValue*/) { }
1505  virtual void leaveFeedId(const uInt /*recordNo*/, Int /*columnValue*/) { }
1506  virtual void enterSpwId(const uInt /*recordNo*/, Int /*columnValue*/) { }
1507  virtual void leaveSpwId(const uInt /*recordNo*/, Int /*columnValue*/) { }
1508  virtual void enterTime(const uInt recordNo, Double /*columnValue*/) {
1509    qtime = timeCol( recordNo ) ;
1510  }
1511  virtual void leaveTime(const uInt /*recordNo*/, Double /*columnValue*/) { }
1512  virtual Bool visitRecord(const uInt recordNo,
1513                           const Int /*antennaId*/,
1514                           const Int feedId,
1515                           const Int spwId,
1516                           const Double /*time*/)
1517  {
1518    //cout << "(" << recordNo << "," << antennaId << "," << feedId << "," << spwId << ")" << endl ;
1519    if ( process ) {
1520      String sTime = MVTime( qtime ).string( MVTime::YMD ) ;
1521      *timeRF = sTime ;
1522      uInt oldidx = rowidx ;
1523      Matrix<Float> subtcal = tcalCol( recordNo ) ;
1524      Vector<uInt> idminmax( 2 ) ;
1525      for ( uInt ipol = 0 ; ipol < subtcal.nrow() ; ipol++ ) {
1526        *idRF = rowidx ;
1527        tcalRF.define( subtcal.row( ipol ) ) ;
1528       
1529        // commit row
1530        row.put( rowidx ) ;
1531        rowidx++ ;
1532      }
1533     
1534      idminmax[0] = oldidx ;
1535      idminmax[1] = rowidx - 1 ;
1536     
1537      String key = keyTcal( feedId, spwId, sTime ) ;
1538      rec.define( key, idminmax ) ;
1539      //rec[key] = idminmax ;
1540    }
1541    return True ;
1542  }
1543  virtual void finish()
1544  {
1545    BaseTcalVisitor::finish() ;
1546
1547    if ( tcal.nrow() > rowidx ) {
1548      uInt numRemove = tcal.nrow() - rowidx ;
1549      //cout << "numRemove = " << numRemove << endl ;
1550      Vector<uInt> rows( numRemove ) ;
1551      indgen( rows, rowidx ) ;
1552      tcal.removeRow( rows ) ;
1553    }
1554
1555  }
1556  void setTcalColumn( String &col )
1557  {
1558    //colName = col ;
1559    tcalCol.attach( table, col ) ;
1560  }
1561private:
1562  Table &tcal;
1563  Record &rec;
1564  //map< String,Vector<uInt> > &rec;
1565  Int antenna;
1566  uInt rowidx;
1567  Bool process;
1568  Quantum<Double> qtime;
1569  TableRow row;
1570  String colName;
1571
1572  // MS SYSCAL columns
1573  ROScalarQuantColumn<Double> timeCol;
1574  ROArrayColumn<Float> tcalCol;
1575
1576  // TCAL columns
1577  RecordFieldPtr<uInt> idRF;
1578  RecordFieldPtr<String> timeRF;
1579  RecordFieldPtr< Vector<Float> > tcalRF;
1580};
1581
1582MSFiller::MSFiller( casa::CountedPtr<Scantable> stable )
1583  : table_( stable ),
1584    tablename_( "" ),
1585    antenna_( -1 ),
1586    antennaStr_(""),
1587    getPt_( True ),
1588    isFloatData_( False ),
1589    isData_( False ),
1590    isDoppler_( False ),
1591    isFlagCmd_( False ),
1592    isFreqOffset_( False ),
1593    isHistory_( False ),
1594    isProcessor_( False ),
1595    isSysCal_( False ),
1596    isWeather_( False ),
1597    colTsys_( "TSYS_SPECTRUM" ),
1598    colTcal_( "TCAL_SPECTRUM" )
1599{
1600  os_ = LogIO() ;
1601  os_.origin( LogOrigin( "MSFiller", "MSFiller()", WHERE ) ) ;
1602}
1603
1604MSFiller::~MSFiller()
1605{
1606  os_.origin( LogOrigin( "MSFiller", "~MSFiller()", WHERE ) ) ;
1607}
1608
1609bool MSFiller::open( const std::string &filename, const casa::Record &rec )
1610{
1611  os_.origin( LogOrigin( "MSFiller", "open()", WHERE ) ) ;
1612  //double startSec = mathutil::gettimeofday_sec() ;
1613  //os_ << "start MSFiller::open() startsec=" << startSec << LogIO::POST ;
1614  //os_ << "   filename = " << filename << endl ;
1615
1616  // parsing MS options
1617  if ( rec.isDefined( "ms" ) ) {
1618    Record msrec = rec.asRecord( "ms" ) ;
1619    if ( msrec.isDefined( "getpt" ) ) {
1620      getPt_ = msrec.asBool( "getpt" ) ;
1621    }
1622    if ( msrec.isDefined( "antenna" ) ) {
1623      if ( msrec.type( msrec.fieldNumber( "antenna" ) ) == TpInt ) {
1624        antenna_ = msrec.asInt( "antenna" ) ;
1625      }
1626      else {
1627        //antenna_ = atoi( msrec.asString( "antenna" ).c_str() ) ;
1628        antennaStr_ = msrec.asString( "antenna" ) ;
1629      }
1630    }
1631    else {
1632      antenna_ = 0 ;
1633    }
1634  }
1635
1636  MeasurementSet *tmpMS = new MeasurementSet( filename, Table::Old ) ;
1637  tablename_ = tmpMS->tableName() ;
1638  if ( antenna_ == -1 && antennaStr_.size() > 0 ) {
1639    MSAntennaIndex msAntIdx( tmpMS->antenna() ) ;
1640    Vector<Int> id = msAntIdx.matchAntennaName( antennaStr_ ) ;
1641    if ( id.size() > 0 )
1642      antenna_ = id[0] ;
1643    else {
1644      delete tmpMS ;
1645      //throw( AipsError( "Antenna " + antennaStr_ + " doesn't exist." ) ) ;
1646      os_ << LogIO::SEVERE << "Antenna " << antennaStr_ << " doesn't exist." << LogIO::POST ;
1647      return False ;
1648    }
1649  }
1650
1651  os_ << "Parsing MS options" << endl ;
1652  os_ << "   getPt = " << (getPt_ ? "True" : "False") << endl ;
1653  os_ << "   antenna = " << antenna_ << endl ;
1654  os_ << "   antennaStr = " << antennaStr_ << LogIO::POST;
1655
1656  mstable_ = MeasurementSet( (*tmpMS)( tmpMS->col("ANTENNA1") == antenna_
1657                                       && tmpMS->col("ANTENNA1") == tmpMS->col("ANTENNA2") ) ) ;
1658
1659  delete tmpMS ;
1660
1661  // check which data column exists
1662  isFloatData_ = mstable_.tableDesc().isColumn( "FLOAT_DATA" ) ;
1663  isData_ = mstable_.tableDesc().isColumn( "DATA" ) ;
1664
1665  //double endSec = mathutil::gettimeofday_sec() ;
1666  //os_ << "end MSFiller::open() endSec=" << endSec << " (" << endSec-startSec << "sec)" << LogIO::POST ;
1667  return true ;
1668}
1669
1670void MSFiller::fill()
1671{
1672  //double startSec = mathutil::gettimeofday_sec() ;
1673  //os_ << "start MSFiller::fill() startSec=" << startSec << LogIO::POST ;
1674
1675  os_.origin( LogOrigin( "MSFiller", "fill()", WHERE ) ) ;
1676
1677  // Initialize header
1678  STHeader sdh ; 
1679  initHeader( sdh ) ;
1680  table_->setHeader( sdh ) ;
1681 
1682  // check if optional table exists
1683  const TableRecord &msrec = mstable_.keywordSet() ;
1684  isDoppler_ = msrec.isDefined( "DOPPLER" ) ;
1685  if ( isDoppler_ )
1686    if ( mstable_.doppler().nrow() == 0 )
1687      isDoppler_ = False ;
1688  isFlagCmd_ = msrec.isDefined( "FLAG_CMD" ) ;
1689  if ( isFlagCmd_ )
1690    if ( mstable_.flagCmd().nrow() == 0 )
1691      isFlagCmd_ = False ;
1692  isFreqOffset_ = msrec.isDefined( "FREQ_OFFSET" ) ;
1693  if ( isFreqOffset_ )
1694    if ( mstable_.freqOffset().nrow() == 0 )
1695      isFreqOffset_ = False ;
1696  isHistory_ = msrec.isDefined( "HISTORY" ) ;
1697  if ( isHistory_ )
1698    if ( mstable_.history().nrow() == 0 )
1699      isHistory_ = False ;
1700  isProcessor_ = msrec.isDefined( "PROCESSOR" ) ;
1701  if ( isProcessor_ )
1702    if ( mstable_.processor().nrow() == 0 )
1703      isProcessor_ = False ;
1704  isSysCal_ = msrec.isDefined( "SYSCAL" ) ;
1705  if ( isSysCal_ )
1706    if ( mstable_.sysCal().nrow() == 0 )
1707      isSysCal_ = False ;
1708  isWeather_ = msrec.isDefined( "WEATHER" ) ;
1709  if ( isWeather_ )
1710    if ( mstable_.weather().nrow() == 0 )
1711      isWeather_ = False ;
1712
1713  // column name for Tsys and Tcal
1714  if ( isSysCal_ ) {
1715    const MSSysCal &caltab = mstable_.sysCal() ;
1716    if ( !caltab.tableDesc().isColumn( colTcal_ ) ) {
1717      colTcal_ = "TCAL" ;
1718      if ( !caltab.tableDesc().isColumn( colTcal_ ) )
1719        colTcal_ = "NONE" ;
1720    }
1721    if ( !caltab.tableDesc().isColumn( colTsys_ ) ) {
1722      colTsys_ = "TSYS" ;
1723      if ( !caltab.tableDesc().isColumn( colTcal_ ) )
1724        colTsys_ = "NONE" ;
1725    }
1726  }
1727  else {
1728    colTcal_ = "NONE" ;
1729    colTsys_ = "NONE" ;
1730  }
1731
1732  // Access to MS subtables
1733  //MSField &fieldtab = mstable_.field() ;
1734  //MSPolarization &poltab = mstable_.polarization() ;
1735  //MSDataDescription &ddtab = mstable_.dataDescription() ;
1736  //MSObservation &obstab = mstable_.observation() ;
1737  //MSSource &srctab = mstable_.source() ;
1738  //MSSpectralWindow &spwtab = mstable_.spectralWindow() ;
1739  //MSSysCal &caltab = mstable_.sysCal() ;
1740  MSPointing &pointtab = mstable_.pointing() ;
1741  //MSState &stattab = mstable_.state() ;
1742  //MSAntenna &anttab = mstable_.antenna() ;
1743
1744  // SUBTABLES: FREQUENCIES
1745  //string freqFrame = getFrame() ;
1746  string baseFrame = frameFromSpwTable() ;
1747  table_->frequencies().setFrame( baseFrame ) ;
1748  table_->frequencies().setFrame( baseFrame, True ) ;
1749
1750  // SUBTABLES: WEATHER
1751  fillWeather() ;
1752
1753  // SUBTABLES: FOCUS
1754  fillFocus() ;
1755
1756  // SUBTABLES: TCAL
1757  fillTcal() ;
1758
1759  // SUBTABLES: FIT
1760  //fillFit() ;
1761
1762  // SUBTABLES: HISTORY
1763  //fillHistory() ;
1764
1765  /***
1766   * Start iteration using TableVisitor
1767   ***/
1768  Table stab = table_->table() ;
1769  {
1770    static const char *cols[] = {
1771      "OBSERVATION_ID", "FEED1", "FIELD_ID", "DATA_DESC_ID", "SCAN_NUMBER",
1772      "STATE_ID", "TIME",
1773      NULL
1774    };
1775    static const TypeManagerImpl<Int> tmInt;
1776    static const TypeManagerImpl<Double> tmDouble;
1777    static const TypeManager *const tms[] = {
1778      &tmInt, &tmInt, &tmInt, &tmInt, &tmInt, &tmInt, &tmDouble, NULL
1779    };
1780    //double t0 = mathutil::gettimeofday_sec() ;
1781    MSFillerVisitor myVisitor(mstable_, *table_ );
1782    //double t1 = mathutil::gettimeofday_sec() ;
1783    //cout << "MSFillerVisitor(): elapsed time " << t1-t0 << " sec" << endl ;
1784    myVisitor.setAntenna( antenna_ ) ;
1785    //myVisitor.setHeader( sdh ) ;
1786    if ( getPt_ ) {
1787      Table ptsel = pointtab( pointtab.col("ANTENNA_ID")==antenna_ ).sort( "TIME" ) ;
1788      myVisitor.setPointingTable( ptsel ) ;
1789    }
1790    if ( isWeather_ )
1791      myVisitor.setWeatherTime( mwTime_, mwInterval_, mwIndex_ ) ;
1792    if ( isSysCal_ )
1793      myVisitor.setSysCalRecord( tcalrec_ ) ;
1794   
1795    //double t2 = mathutil::gettimeofday_sec() ;
1796    traverseTable(mstable_, cols, tms, &myVisitor);
1797    //double t3 = mathutil::gettimeofday_sec() ;
1798    //cout << "traverseTable(): elapsed time " << t3-t2 << " sec" << endl ;
1799   
1800    sdh = myVisitor.getHeader() ;
1801  }
1802  /***
1803   * End iteration using TableVisitor
1804   ***/
1805
1806  // set header
1807  //sdh = myVisitor.getHeader() ;
1808  //table_->setHeader( sdh ) ;
1809
1810  // save path to POINTING table
1811  // 2011/07/06 TN
1812  // Path to POINTING table in original MS will not be written
1813  // if getPt_ is True
1814  Path datapath( tablename_ ) ;
1815  if ( !getPt_ ) {
1816    String pTabName = datapath.absoluteName() + "/POINTING" ;
1817    stab.rwKeywordSet().define( "POINTING", pTabName ) ;
1818  }
1819
1820  // for GBT
1821  if ( sdh.antennaname.contains( "GBT" ) ) {
1822    String goTabName = datapath.absoluteName() + "/GBT_GO" ;
1823    stab.rwKeywordSet().define( "GBT_GO", goTabName ) ;
1824  }
1825
1826  // for MS created from ASDM
1827  const TableRecord &msKeys = mstable_.keywordSet() ;
1828  uInt nfields = msKeys.nfields() ;
1829  for ( uInt ifield = 0 ; ifield < nfields ; ifield++ ) {
1830    String name = msKeys.name( ifield ) ;
1831    //os_ << "name = " << name << LogIO::POST ;
1832    if ( name.find( "ASDM" ) != String::npos ) {
1833      String asdmpath = msKeys.asTable( ifield ).tableName() ;
1834      os_ << "ASDM table: " << asdmpath << LogIO::POST ;
1835      stab.rwKeywordSet().define( name, asdmpath ) ;
1836    }
1837  }
1838
1839  //double endSec = mathutil::gettimeofday_sec() ;
1840  //os_ << "end MSFiller::fill() endSec=" << endSec << " (" << endSec-startSec << "sec)" << LogIO::POST ;
1841}
1842
1843void MSFiller::close()
1844{
1845  //tablesel_.closeSubTables() ;
1846  mstable_.closeSubTables() ;
1847  //tablesel_.unlock() ;
1848  mstable_.unlock() ;
1849}
1850
1851void MSFiller::fillWeather()
1852{
1853  //double startSec = mathutil::gettimeofday_sec() ;
1854  //os_ << "start MSFiller::fillWeather() startSec=" << startSec << LogIO::POST ;
1855
1856  if ( !isWeather_ ) {
1857    // add dummy row
1858    table_->weather().table().addRow(1,True) ;
1859    return ;
1860  }
1861
1862  Table mWeather = mstable_.weather()  ;
1863  //Table mWeatherSel = mWeather( mWeather.col("ANTENNA_ID") == antenna_ ).sort("TIME") ;
1864  Table mWeatherSel( mWeather( mWeather.col("ANTENNA_ID") == antenna_ ).sort("TIME") ) ;
1865  //os_ << "mWeatherSel.nrow() = " << mWeatherSel.nrow() << LogIO::POST ;
1866  if ( mWeatherSel.nrow() == 0 ) {
1867    os_ << "No rows with ANTENNA_ID = " << antenna_ << " in WEATHER table, Try -1..." << LogIO::POST ;
1868    mWeatherSel = Table( MSWeather( mWeather( mWeather.col("ANTENNA_ID") == -1 ) ) ) ;
1869    if ( mWeatherSel.nrow() == 0 ) {
1870      os_ << "No rows in WEATHER table" << LogIO::POST ;
1871    }
1872  }
1873  uInt wnrow = mWeatherSel.nrow() ;
1874  //os_ << "wnrow = " << wnrow << LogIO::POST ;
1875
1876  if ( wnrow == 0 )
1877    return ;
1878
1879  Table wtab = table_->weather().table() ;
1880  wtab.addRow( wnrow ) ;
1881
1882  Bool stationInfoExists = mWeatherSel.tableDesc().isColumn( "NS_WX_STATION_ID" ) ;
1883  Int stationId = -1 ;
1884  if ( stationInfoExists ) {
1885    // determine which station is closer
1886    ROScalarColumn<Int> stationCol( mWeatherSel, "NS_WX_STATION_ID" ) ;
1887    ROArrayColumn<Double> stationPosCol( mWeatherSel, "NS_WX_STATION_POSITION" ) ;
1888    Vector<Int> stationIds = stationCol.getColumn() ;
1889    Vector<Int> stationIdList( 0 ) ;
1890    Matrix<Double> stationPosList( 0, 3, 0.0 ) ;
1891    uInt numStation = 0 ;
1892    for ( uInt i = 0 ; i < stationIds.size() ; i++ ) {
1893      if ( !anyEQ( stationIdList, stationIds[i] ) ) {
1894        numStation++ ;
1895        stationIdList.resize( numStation, True ) ;
1896        stationIdList[numStation-1] = stationIds[i] ;
1897        stationPosList.resize( numStation, 3, True ) ;
1898        stationPosList.row( numStation-1 ) = stationPosCol( i ) ;
1899      }
1900    }
1901    //os_ << "staionIdList = " << stationIdList << endl ;
1902    Table mAntenna = mstable_.antenna() ;
1903    ROArrayColumn<Double> antposCol( mAntenna, "POSITION" ) ;
1904    Vector<Double> antpos = antposCol( antenna_ ) ;
1905    Double minDiff = -1.0 ;
1906    for ( uInt i = 0 ; i < stationIdList.size() ; i++ ) {
1907      Double diff = sum( square( antpos - stationPosList.row( i ) ) ) ;
1908      if ( minDiff < 0.0 || minDiff > diff ) {
1909        minDiff = diff ;
1910        stationId = stationIdList[i] ;
1911      }
1912    }
1913  }
1914  //os_ << "stationId = " << stationId << endl ;
1915 
1916  ScalarColumn<Float> *fCol ;
1917  ROScalarColumn<Float> *sharedFloatCol ;
1918  if ( mWeatherSel.tableDesc().isColumn( "TEMPERATURE" ) ) {
1919    fCol = new ScalarColumn<Float>( wtab, "TEMPERATURE" ) ;
1920    sharedFloatCol = new ROScalarColumn<Float>( mWeatherSel, "TEMPERATURE" ) ;
1921    fCol->putColumn( *sharedFloatCol ) ;
1922    delete sharedFloatCol ;
1923    delete fCol ;
1924  }
1925  if ( mWeatherSel.tableDesc().isColumn( "PRESSURE" ) ) {
1926    fCol = new ScalarColumn<Float>( wtab, "PRESSURE" ) ;
1927    sharedFloatCol = new ROScalarColumn<Float>( mWeatherSel, "PRESSURE" ) ;
1928    fCol->putColumn( *sharedFloatCol ) ;
1929    delete sharedFloatCol ;
1930    delete fCol ;
1931  }
1932  if ( mWeatherSel.tableDesc().isColumn( "REL_HUMIDITY" ) ) {
1933    fCol = new ScalarColumn<Float>( wtab, "HUMIDITY" ) ;
1934    sharedFloatCol = new ROScalarColumn<Float>( mWeatherSel, "REL_HUMIDITY" ) ;
1935    fCol->putColumn( *sharedFloatCol ) ;
1936    delete sharedFloatCol ;
1937    delete fCol ;
1938  }
1939  if ( mWeatherSel.tableDesc().isColumn( "WIND_SPEED" ) ) { 
1940    fCol = new ScalarColumn<Float>( wtab, "WINDSPEED" ) ;
1941    sharedFloatCol = new ROScalarColumn<Float>( mWeatherSel, "WIND_SPEED" ) ;
1942    fCol->putColumn( *sharedFloatCol ) ;
1943    delete sharedFloatCol ;
1944    delete fCol ;
1945  }
1946  if ( mWeatherSel.tableDesc().isColumn( "WIND_DIRECTION" ) ) {
1947    fCol = new ScalarColumn<Float>( wtab, "WINDAZ" ) ;
1948    sharedFloatCol = new ROScalarColumn<Float>( mWeatherSel, "WIND_DIRECTION" ) ;
1949    fCol->putColumn( *sharedFloatCol ) ;
1950    delete sharedFloatCol ;
1951    delete fCol ;
1952  }
1953  ScalarColumn<uInt> idCol( wtab, "ID" ) ;
1954  for ( uInt irow = 0 ; irow < wnrow ; irow++ )
1955    idCol.put( irow, irow ) ;
1956
1957  ROScalarQuantColumn<Double> tqCol( mWeatherSel, "TIME" ) ;
1958  ROScalarColumn<Double> tCol( mWeatherSel, "TIME" ) ;
1959  String tUnit = tqCol.getUnits() ;
1960  Vector<Double> mwTime = tCol.getColumn() ;
1961  if ( tUnit == "d" )
1962    mwTime *= 86400.0 ;
1963  tqCol.attach( mWeatherSel, "INTERVAL" ) ;
1964  tCol.attach( mWeatherSel, "INTERVAL" ) ;
1965  String iUnit = tqCol.getUnits() ;
1966  Vector<Double> mwInterval = tCol.getColumn() ;
1967  if ( iUnit == "d" )
1968    mwInterval *= 86400.0 ;
1969
1970  if ( stationId > 0 ) {
1971    ROScalarColumn<Int> stationCol( mWeatherSel, "NS_WX_STATION_ID" ) ;
1972    Vector<Int> stationVec = stationCol.getColumn() ;
1973    uInt wsnrow = ntrue( stationVec == stationId ) ;
1974    mwTime_.resize( wsnrow ) ;
1975    mwInterval_.resize( wsnrow ) ;
1976    mwIndex_.resize( wsnrow ) ;
1977    uInt wsidx = 0 ;
1978    for ( uInt irow = 0 ; irow < wnrow ; irow++ ) {
1979      if ( stationId == stationVec[irow] ) {
1980        mwTime_[wsidx] = mwTime[irow] ;
1981        mwInterval_[wsidx] = mwInterval[irow] ;
1982        mwIndex_[wsidx] = irow ;
1983        wsidx++ ;
1984      }
1985    }
1986  }
1987  else {
1988    mwTime_ = mwTime ;
1989    mwInterval_ = mwInterval ;
1990    mwIndex_.resize( mwTime_.size() ) ;
1991    indgen( mwIndex_ ) ;
1992  }
1993  //os_ << "mwTime[0] = " << mwTime_[0] << " mwInterval[0] = " << mwInterval_[0] << LogIO::POST ;
1994  //os_ << "mwIndex_=" << mwIndex_ << LogIO::POST;
1995  //double endSec = mathutil::gettimeofday_sec() ;
1996  //os_ << "end MSFiller::fillWeather() endSec=" << endSec << " (" << endSec-startSec << "sec)" << LogIO::POST ;
1997}
1998
1999void MSFiller::fillFocus()
2000{
2001  //double startSec = mathutil::gettimeofday_sec() ;
2002  //os_ << "start MSFiller::fillFocus() startSec=" << startSec << LogIO::POST ;
2003  // tentative
2004  table_->focus().addEntry( 0.0, 0.0, 0.0, 0.0 ) ;
2005  //double endSec = mathutil::gettimeofday_sec() ;
2006  //os_ << "end MSFiller::fillFocus() endSec=" << endSec << " (" << endSec-startSec << "sec)" << LogIO::POST ;
2007}
2008
2009void MSFiller::fillTcal()
2010{
2011  //double startSec = mathutil::gettimeofday_sec() ;
2012  //os_ << "start MSFiller::fillTcal() startSec=" << startSec << LogIO::POST ;
2013
2014  if ( !isSysCal_ ) {
2015    // add dummy row
2016    os_ << "No SYSCAL rows" << LogIO::POST ;
2017    table_->tcal().table().addRow(1,True) ;
2018    Vector<Float> defaultTcal( 1, 1.0 ) ;
2019    ArrayColumn<Float> tcalCol( table_->tcal().table(), "TCAL" ) ;
2020    tcalCol.put( 0, defaultTcal ) ;
2021    return ;
2022  }
2023
2024  if ( colTcal_ == "NONE" ) {
2025    // add dummy row
2026    os_ << "No TCAL column" << LogIO::POST ;
2027    table_->tcal().table().addRow(1,True) ;
2028    Vector<Float> defaultTcal( 1, 1.0 ) ;
2029    ArrayColumn<Float> tcalCol( table_->tcal().table(), "TCAL" ) ;
2030    tcalCol.put( 0, defaultTcal ) ;
2031    return ;
2032  }
2033
2034  Table &sctab = mstable_.sysCal() ;
2035  if ( sctab.nrow() == 0 ) {
2036    os_ << "No SYSCAL rows" << LogIO::POST ;
2037    return ;
2038  }
2039  ROScalarColumn<Int> antCol( sctab, "ANTENNA_ID" ) ;
2040  Vector<Int> ant = antCol.getColumn() ;
2041  if ( allNE( ant, antenna_ ) ) {
2042    os_ << "No SYSCAL rows" << LogIO::POST ;
2043    return ;
2044  }
2045  ROTableColumn tcalCol( sctab, colTcal_ ) ;
2046  Bool notDefined = False ;
2047  for ( uInt irow = 0 ; irow < sctab.nrow() ; irow++ ) {
2048    if ( ant[irow] == antenna_ && !tcalCol.isDefined( irow ) ) {
2049      notDefined = True ;
2050      break ;
2051    }
2052  }
2053  if ( notDefined ) {
2054    os_ << "No TCAL value" << LogIO::POST ;
2055    table_->tcal().table().addRow(1,True) ;
2056    Vector<Float> defaultTcal( 1, 1.0 ) ;
2057    ArrayColumn<Float> tcalCol( table_->tcal().table(), "TCAL" ) ;
2058    tcalCol.put( 0, defaultTcal ) ;
2059    return ;
2060  }   
2061 
2062  static const char *cols[] = {
2063    "ANTENNA_ID", "FEED_ID", "SPECTRAL_WINDOW_ID", "TIME",
2064    NULL
2065  };
2066  static const TypeManagerImpl<Int> tmInt;
2067  static const TypeManagerImpl<Double> tmDouble;
2068  static const TypeManager *const tms[] = {
2069    &tmInt, &tmInt, &tmInt, &tmDouble, NULL
2070  };
2071  Table tab = table_->tcal().table() ;
2072  TcalVisitor visitor( sctab, tab, tcalrec_, antenna_ ) ;
2073  visitor.setTcalColumn( colTcal_ ) ;
2074 
2075  traverseTable(sctab, cols, tms, &visitor);
2076
2077  infillTcal();
2078
2079  //tcalrec_.print( std::cout ) ;
2080  //double endSec = mathutil::gettimeofday_sec() ;
2081  //os_ << "end MSFiller::fillTcal() endSec=" << endSec << " (" << endSec-startSec << "sec)" << LogIO::POST ;
2082}
2083
2084void MSFiller::infillTcal()
2085{
2086  uInt nfields = tcalrec_.nfields() ;
2087  set<Int> spwAvailable;
2088  for (uInt i = 0; i < nfields; i++) {
2089    String name = tcalrec_.name(i);
2090    size_t pos1 = name.find(':') + 4;
2091    size_t pos2 = name.find(':',pos1);
2092    Int spwid = String::toInt(name.substr(pos1,pos2-pos1));
2093    //cout << "spwid=" << spwid << endl;
2094    spwAvailable.insert(spwid);
2095  }
2096  Table spwtab = mstable_.spectralWindow();
2097  Table tcaltab = table_->tcal().table();
2098  ScalarColumn<uInt> idCol(tcaltab, "ID");
2099  ScalarColumn<String> timeCol(tcaltab, "TIME");
2100  ArrayColumn<Float> tcalCol(tcaltab, "TCAL");
2101  ROScalarColumn<Int> numChanCol(spwtab, "NUM_CHAN");
2102  Int numSpw = spwtab.nrow();
2103  Int dummyFeed = 0;
2104  Double dummyTime = 0.0;
2105  Vector<uInt> idminmax(2);
2106  for (Int i = 0; i < numSpw; i++) {
2107    if (spwAvailable.find(i) == spwAvailable.end()) {
2108      String key = keyTcal(dummyFeed, i, dummyTime);
2109      Vector<Float> tcal(numChanCol(i), 1.0);
2110      uInt nrow = tcaltab.nrow();
2111      tcaltab.addRow(1);
2112      idCol.put(nrow, nrow);
2113      timeCol.put(nrow, "");
2114      tcalCol.put(nrow, tcal);
2115      idminmax = nrow;
2116      tcalrec_.define(key, idminmax);
2117    }
2118  }
2119  //tcalrec_.print(cout);
2120}
2121
2122string MSFiller::getFrame()
2123{
2124  MFrequency::Types frame = MFrequency::DEFAULT ;
2125  ROTableColumn numChanCol( mstable_.spectralWindow(), "NUM_CHAN" ) ;
2126  ROTableColumn measFreqRefCol( mstable_.spectralWindow(), "MEAS_FREQ_REF" ) ;
2127  uInt nrow = numChanCol.nrow() ;
2128  Vector<Int> measFreqRef( nrow, MFrequency::DEFAULT ) ;
2129  uInt nref = 0 ;
2130  for ( uInt irow = 0 ; irow < nrow ; irow++ ) {
2131    if ( numChanCol.asInt( irow ) != 4 ) { // exclude WVR
2132      measFreqRef[nref] = measFreqRefCol.asInt( irow ) ;
2133      nref++ ;
2134    }
2135  }
2136  if ( nref > 0 )
2137    frame = (MFrequency::Types)measFreqRef[0] ;
2138
2139  return MFrequency::showType( frame ) ;
2140}
2141
2142void MSFiller::initHeader( STHeader &header )
2143{
2144  header.nchan = 0 ;
2145  header.npol = 0 ;
2146  header.nif = 0 ;
2147  header.nbeam = 0 ;
2148  header.observer = "" ;
2149  header.project = "" ;
2150  header.obstype = "" ;
2151  header.antennaname = "" ;
2152  header.antennaposition.resize( 3 ) ;
2153  header.equinox = 0.0 ;
2154  header.freqref = "" ;
2155  header.reffreq = -1.0 ;
2156  header.bandwidth = 0.0 ;
2157  header.utc = 0.0 ;
2158  header.fluxunit = "" ;
2159  header.epoch = "" ;
2160  header.poltype = "" ;
2161}
2162
2163string MSFiller::frameFromSpwTable()
2164{
2165  string frameString;
2166  Table tab = mstable_.spectralWindow();
2167  ROScalarColumn<Int> mfrCol(tab, "MEAS_FREQ_REF");
2168  Vector<Int> mfr = mfrCol.getColumn();
2169  if (allEQ(mfr,mfr[0])) {
2170    frameString = MFrequency::showType(mfr[0]);
2171    //cout << "all rows have same frame: " << frameString << endl;
2172  }
2173  else {
2174    mfrCol.attach(tab, "NUM_CHAN");
2175    for (uInt i = 0; i < tab.nrow(); i++) {
2176      if (mfrCol(i) != 4) {
2177        frameString = MFrequency::showType(mfr[i]);
2178        break;
2179      }
2180    }
2181    if (frameString.size() == 0) {
2182      frameString = "TOPO";
2183    }
2184  }
2185
2186  //cout << "frameString = " << frameString << endl;
2187
2188  return frameString;
2189}
2190
2191};
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