source: trunk/src/STGrid.cpp@ 2387

Last change on this file since 2387 was 2386, checked in by Takeshi Nakazato, 13 years ago

New Development: No

JIRA Issue: Yes CAS-2816

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...

Do data selection by TableExprNode only when it is really needed.


File size: 35.0 KB
RevLine 
[2356]1#include <iostream>
2#include <fstream>
3
4#include <casa/BasicSL/String.h>
5#include <casa/Arrays/Vector.h>
6#include <casa/Arrays/Matrix.h>
7#include <casa/Arrays/Cube.h>
8#include <casa/Arrays/ArrayMath.h>
[2375]9#include <casa/Arrays/ArrayIter.h>
[2356]10#include <casa/Quanta/Quantum.h>
11#include <casa/Quanta/QuantumHolder.h>
12#include <casa/Utilities/CountedPtr.h>
[2361]13#include <casa/Logging/LogIO.h>
[2356]14
15#include <tables/Tables/Table.h>
[2360]16#include <tables/Tables/TableRecord.h>
17#include <tables/Tables/ExprNode.h>
[2356]18#include <tables/Tables/ScalarColumn.h>
19#include <tables/Tables/ArrayColumn.h>
[2379]20#include <tables/Tables/TableIter.h>
[2356]21
22#include <measures/Measures/MDirection.h>
23
[2364]24#include <MathUtils.h>
25
[2356]26#include "STGrid.h"
27
28using namespace std ;
29using namespace casa ;
30using namespace asap ;
31
32namespace asap {
33
[2384]34// for performance check
35double eToInt = 0.0 ;
36double eGetWeight = 0.0 ;
37
[2356]38// constructor
39STGrid::STGrid()
40{
41 init() ;
42}
43
44STGrid::STGrid( const string infile )
45{
46 init() ;
47
48 setFileIn( infile ) ;
49}
50
51void STGrid::init()
52{
[2362]53 ifno_ = -1 ;
[2356]54 nx_ = -1 ;
55 ny_ = -1 ;
[2361]56 npol_ = 0 ;
57 nchan_ = 0 ;
58 nrow_ = 0 ;
[2356]59 cellx_ = 0.0 ;
60 celly_ = 0.0 ;
61 center_ = Vector<Double> ( 2, 0.0 ) ;
62 convType_ = "BOX" ;
[2361]63 wtype_ = "UNIFORM" ;
[2356]64 convSupport_ = -1 ;
65 userSupport_ = -1 ;
66 convSampling_ = 100 ;
[2379]67 nprocessed_ = 0 ;
68 nchunk_ = 0 ;
[2356]69}
70
71void STGrid::setFileIn( const string infile )
72{
73 String name( infile ) ;
74 if ( infile_.compare( name ) != 0 ) {
75 infile_ = String( infile ) ;
76 tab_ = Table( infile_ ) ;
77 }
78}
79
[2360]80void STGrid::setPolList( vector<unsigned int> pols )
81{
82 pollist_.assign( Vector<uInt>( pols ) ) ;
83}
84
[2364]85void STGrid::setScanList( vector<unsigned int> scans )
86{
87 scanlist_.assign( Vector<uInt>( scans ) ) ;
88}
89
[2361]90void STGrid::setWeight( const string wType )
91{
92 wtype_ = String( wType ) ;
93 wtype_.upcase() ;
94}
95
[2356]96void STGrid::defineImage( int nx,
97 int ny,
98 string scellx,
99 string scelly,
100 string scenter )
101{
102 ROArrayColumn<Double> dirCol( tab_, "DIRECTION" ) ;
103 Matrix<Double> direction = dirCol.getColumn() ;
104 Double rmax, rmin, dmax, dmin ;
105 minMax( rmin, rmax, direction.row( 0 ) ) ;
106 minMax( dmin, dmax, direction.row( 1 ) ) ;
107
108 Int npx = (Int)nx ;
109 Int npy = (Int)ny ;
110 String cellx( scellx ) ;
111 String celly( scelly ) ;
112 String center( scenter ) ;
113 setupGrid( npx, npy,
114 cellx, celly,
115 rmin, rmax,
116 dmin, dmax,
117 center ) ;
118}
119
[2364]120void STGrid::setFunc( string convType,
121 int convSupport )
[2356]122{
123 convType_ = String( convType ) ;
124 convType_.upcase() ;
125 userSupport_ = (Int)convSupport ;
126}
127
128#define NEED_UNDERSCORES
129#if defined(NEED_UNDERSCORES)
130#define ggridsd ggridsd_
131#endif
132extern "C" {
133 void ggridsd(Double*,
134 const Complex*,
135 Int*,
136 Int*,
137 Int*,
138 const Int*,
139 const Int*,
140 const Float*,
141 Int*,
142 Int*,
143 Complex*,
144 Float*,
145 Int*,
146 Int*,
147 Int *,
148 Int *,
149 Int*,
150 Int*,
151 Float*,
152 Int*,
153 Int*,
154 Double*);
155}
[2384]156void STGrid::call_ggridsd( Array<Double> &xypos,
157 Array<Complex> &spectra,
158 Int &nvispol,
159 Int &nvischan,
160 Array<Int> &flagtra,
161 Array<Int> &flagrow,
162 Array<Float> &weight,
163 Int &nrow,
164 Int &irow,
165 Array<Complex> &gdata,
166 Array<Float> &gwgt,
167 Int &nx,
168 Int &ny,
169 Int &npol,
170 Int &nchan,
171 Int &support,
172 Int &sampling,
173 Vector<Float> &convFunc,
[2381]174 Int *chanMap,
175 Int *polMap )
176{
177 // parameters for gridding
178 Int idopsf = 0 ;
[2384]179 Int len = npol*nchan ;
[2381]180 Double *sumw_p = new Double[len] ;
181 {
182 Double *work_p = sumw_p ;
183 for ( Int i = 0 ; i < len ; i++ ) {
184 *work_p = 0.0 ;
185 work_p++ ;
186 }
187 }
188
[2384]189 // prepare pointer
190 Bool deletePos, deleteData, deleteWgt, deleteFlag, deleteFlagR, deleteConv, deleteDataG, deleteWgtG ;
191 Double *xy_p = xypos.getStorage( deletePos ) ;
192 const Complex *values_p = spectra.getStorage( deleteData ) ;
193 const Int *flag_p = flagtra.getStorage( deleteFlag ) ;
194 const Int *rflag_p = flagrow.getStorage( deleteFlagR ) ;
195 const Float *wgt_p = weight.getStorage( deleteWgt ) ;
196 Complex *grid_p = gdata.getStorage( deleteDataG ) ;
197 Float *wgrid_p = gwgt.getStorage( deleteWgtG ) ;
198 Float *conv_p = convFunc.getStorage( deleteConv ) ;
[2385]199
200 // pass copy of irow to ggridsd since it will be modified in theroutine
201 Int irowCopy = irow ;
[2384]202
[2381]203 // call ggridsd
[2384]204 ggridsd( xy_p,
205 values_p,
206 &nvispol,
207 &nvischan,
[2381]208 &idopsf,
[2384]209 flag_p,
210 rflag_p,
211 wgt_p,
212 &nrow,
[2385]213 &irowCopy,
[2384]214 grid_p,
215 wgrid_p,
216 &nx,
217 &ny,
218 &npol,
219 &nchan,
220 &support,
221 &sampling,
222 conv_p,
[2381]223 chanMap,
224 polMap,
225 sumw_p ) ;
226
227 // finalization
[2384]228 xypos.putStorage( xy_p, deletePos ) ;
229 spectra.freeStorage( values_p, deleteData ) ;
230 flagtra.freeStorage( flag_p, deleteFlag ) ;
231 flagrow.freeStorage( rflag_p, deleteFlagR ) ;
232 weight.freeStorage( wgt_p, deleteWgt ) ;
233 gdata.putStorage( grid_p, deleteDataG ) ;
234 gwgt.putStorage( wgrid_p, deleteWgtG ) ;
235 convFunc.putStorage( conv_p, deleteConv ) ;
[2381]236 delete sumw_p ;
237}
238
[2383]239Bool STGrid::pastEnd()
240{
241 LogIO os( LogOrigin("STGrid","pastEnd",WHERE) ) ;
242 Bool b = nprocessed_ >= nrow_ ;
243 return b ;
244}
245
246void STGrid::grid()
247{
[2384]248 LogIO os( LogOrigin("STGrid", "grid", WHERE) ) ;
[2385]249 double t0,t1 ;
[2384]250
[2383]251 // data selection
[2385]252 t0 = mathutil::gettimeofday_sec() ;
[2383]253 selectData() ;
[2385]254 t1 = mathutil::gettimeofday_sec() ;
255 os << "selectData: elapsed time is " << t1-t0 << " sec." << LogIO::POST ;
256
[2383]257 setupArray() ;
258
259 if ( wtype_.compare("UNIFORM") != 0 &&
260 wtype_.compare("TINT") != 0 &&
261 wtype_.compare("TSYS") != 0 &&
262 wtype_.compare("TINTSYS") != 0 ) {
263 LogIO os( LogOrigin("STGrid", "grid", WHERE) ) ;
264 os << LogIO::WARN << "Unsupported weight type '" << wtype_ << "', apply UNIFORM weight" << LogIO::POST ;
265 wtype_ = "UNIFORM" ;
266 }
267
[2384]268 // grid parameter
269 os << LogIO::DEBUGGING ;
270 os << "----------" << endl ;
271 os << "Data selection summary" << endl ;
272 os << " ifno = " << ifno_ << endl ;
273 os << " pollist = " << pollist_ << endl ;
274 os << " scanlist = " << scanlist_ << endl ;
275 os << "----------" << endl ;
276 os << "Grid parameter summary" << endl ;
277 os << " (nx,ny) = (" << nx_ << "," << ny_ << ")" << endl ;
278 os << " (cellx,celly) = (" << cellx_ << "," << celly_ << ")" << endl ;
279 os << " center = " << center_ << endl ;
280 os << " weighting = " << wtype_ << endl ;
[2386]281 os << " convfunc = " << convType_ << " with support " << convSupport_ << endl ;
[2384]282 os << "----------" << LogIO::POST ;
283 os << LogIO::NORMAL ;
284
[2383]285 Bool doAll = examine() ;
286
287 if ( doAll )
288 gridPerPol() ;
289 else
290 gridPerRow() ;
291}
292
293Bool STGrid::examine()
294{
295 // TODO: nchunk_ must be determined from nchan_, npol_, and (nx_,ny_)
296 // by considering data size to be allocated for ggridsd input/output
[2385]297 nchunk_ = 400 ;
[2383]298 Bool b = nchunk_ >= nrow_ ;
299 nchunk_ = min( nchunk_, nrow_ ) ;
300 return b ;
301}
302
[2378]303void STGrid::gridPerRow()
304{
305 LogIO os( LogOrigin("STGrid", "gridPerRow", WHERE) ) ;
306 double t0, t1 ;
307
308 // convolution kernel
309 Vector<Float> convFunc ;
310 t0 = mathutil::gettimeofday_sec() ;
311 setConvFunc( convFunc ) ;
312 t1 = mathutil::gettimeofday_sec() ;
313 os << "setConvFunc: elapsed time is " << t1-t0 << " sec." << LogIO::POST ;
314
[2379]315 // grid data
[2378]316 Int gnx = nx_ ;
317 Int gny = ny_ ;
[2379]318 // Extend grid plane with convSupport_
[2378]319// Int gnx = nx_+convSupport_*2 ;
320// Int gny = ny_+convSupport_*2 ;
321 IPosition gshape( 4, gnx, gny, npol_, nchan_ ) ;
322 Array<Complex> gdataArrC( gshape, 0.0 ) ;
323 // 2011/12/20 TN
324 // data_ and gwgtArr share storage
325 data_.resize( gshape ) ;
326 data_ = 0.0 ;
327 Array<Float> gwgtArr( data_ ) ;
328
[2379]329 // parameters for gridding
330 Int *chanMap = new Int[nchan_] ;
331 {
332 Int *work_p = chanMap ;
333 for ( Int i = 0 ; i < nchan_ ; i++ ) {
334 *work_p = i ;
335 work_p++ ;
336 }
337 }
[2383]338 Int *polMap = new Int[1] ;
339 Int nvispol = 1 ;
[2384]340 Int irow = -1 ;
[2379]341
342 // for performance check
[2384]343 double eGetData = 0.0 ;
[2379]344 double eToPixel = 0.0 ;
345 double eGGridSD = 0.0 ;
[2384]346 double eInitPol = 0.0 ;
[2379]347
[2383]348 for ( Int ipol = 0 ; ipol < npol_ ; ipol++ ) {
[2384]349 t0 = mathutil::gettimeofday_sec() ;
[2383]350 initPol( ipol ) ;
[2384]351 t1 = mathutil::gettimeofday_sec() ;
352 eInitPol += t1-t0 ;
[2383]353
354 polMap[0] = ipol ;
[2380]355
[2386]356 os << "start pol " << ipol << LogIO::POST ;
[2384]357
[2383]358 while( !pastEnd() ) {
[2384]359 // data storage
360 IPosition cshape( 3, npol_, nchan_, nchunk_ ) ;
361 IPosition mshape( 2, npol_, nchunk_ ) ;
362 IPosition vshape( 1, nchunk_ ) ;
363 IPosition dshape( 2, 2, nchunk_ ) ;
364 IPosition wshape( 2, nchan_, nchunk_ ) ;
365 Array<Complex> spectra( wshape ) ;
366 Array<Int> flagtra( wshape ) ;
367 Array<Int> rflag( vshape ) ;
368 Array<Float> weight( wshape ) ;
369 Array<Double> direction( dshape ) ;
370 Array<Double> xypos( dshape ) ;
371
372 spectraF_.resize( wshape ) ;
373 flagtraUC_.resize( wshape ) ;
374 rflagUI_.resize( vshape ) ;
375
[2383]376 // retrieve data
377 t0 = mathutil::gettimeofday_sec() ;
378 Int nrow = getDataChunk( spectra, direction, flagtra, rflag, weight ) ;
379 t1 = mathutil::gettimeofday_sec() ;
[2384]380 eGetData += t1-t0 ;
[2383]381
382 // world -> pixel
383 t0 = mathutil::gettimeofday_sec() ;
384 toPixel( direction, xypos ) ;
385 t1 = mathutil::gettimeofday_sec() ;
386 eToPixel += t1-t0 ;
[2379]387
[2383]388 // call ggridsd
389 t0 = mathutil::gettimeofday_sec() ;
[2384]390 call_ggridsd( xypos,
391 spectra,
392 nvispol,
393 nchan_,
394 flagtra,
395 rflag,
396 weight,
397 nrow,
398 irow,
399 gdataArrC,
400 gwgtArr,
401 gnx,
402 gny,
403 npol_,
404 nchan_,
405 convSupport_,
406 convSampling_,
407 convFunc,
[2383]408 chanMap,
409 polMap ) ;
410 t1 = mathutil::gettimeofday_sec() ;
411 eGGridSD += t1-t0 ;
412
413 }
414
[2386]415 os << "end pol " << ipol << LogIO::POST ;
416
[2383]417 nprocessed_ = 0 ;
[2378]418 }
[2384]419 os << "initPol: elapsed time is " << eInitPol << " sec." << LogIO::POST ;
420 os << "getData: elapsed time is " << eGetData-eToInt-eGetWeight << " sec." << LogIO::POST ;
[2379]421 os << "toPixel: elapsed time is " << eToPixel << " sec." << LogIO::POST ;
422 os << "ggridsd: elapsed time is " << eGGridSD << " sec." << LogIO::POST ;
[2381]423 os << "toInt: elapsed time is " << eToInt << " sec." << LogIO::POST ;
[2384]424 os << "getWeight: elapsed time is " << eGetWeight << " sec." << LogIO::POST ;
[2383]425
[2379]426 delete polMap ;
427 delete chanMap ;
428
[2378]429 // set data
430 setData( gdataArrC, gwgtArr ) ;
[2379]431
[2378]432}
433
[2382]434void STGrid::gridPerPol()
[2379]435{
[2382]436 LogIO os( LogOrigin("STGrid", "gridPerPol", WHERE) ) ;
[2364]437 double t0, t1 ;
[2356]438
[2359]439 // convolution kernel
440 Vector<Float> convFunc ;
[2364]441 t0 = mathutil::gettimeofday_sec() ;
[2359]442 setConvFunc( convFunc ) ;
[2364]443 t1 = mathutil::gettimeofday_sec() ;
444 os << "setConvFunc: elapsed time is " << t1-t0 << " sec." << LogIO::POST ;
[2359]445
[2382]446 // prepare grid data storage
[2364]447 Int gnx = nx_ ;
448 Int gny = ny_ ;
[2382]449// // Extend grid plane with convSupport_
[2364]450// Int gnx = nx_+convSupport_*2 ;
451// Int gny = ny_+convSupport_*2 ;
[2361]452 IPosition gshape( 4, gnx, gny, npol_, nchan_ ) ;
[2356]453 Array<Complex> gdataArrC( gshape, 0.0 ) ;
[2378]454 //Array<Float> gwgtArr( gshape, 0.0 ) ;
455 // 2011/12/20 TN
456 // data_ and weight array shares storage
457 data_.resize( gshape ) ;
458 data_ = 0.0 ;
459 Array<Float> gwgtArr( data_ ) ;
[2382]460
461 // to read data from the table
462 IPosition mshape( 2, nchan_, nrow_ ) ;
[2383]463 IPosition dshape( 2, 2, nrow_ ) ;
[2382]464 Array<Complex> spectra( mshape ) ;
[2383]465 Array<Double> direction( dshape ) ;
[2382]466 Array<Int> flagtra( mshape ) ;
467 Array<Int> rflag( IPosition(1,nrow_) ) ;
468 Array<Float> weight( mshape ) ;
[2383]469 Array<Double> xypos( dshape ) ;
[2382]470
471 // maps
[2361]472 Int *chanMap = new Int[nchan_] ;
[2356]473 {
474 Int *work_p = chanMap ;
[2361]475 for ( Int i = 0 ; i < nchan_ ; i++ ) {
[2356]476 *work_p = i ;
477 work_p++ ;
478 }
479 }
[2382]480 Int *polMap = new Int[1] ;
[2384]481
482 // some parameters for ggridsd
[2382]483 Int nvispol = 1 ;
[2384]484 Int irow = -1 ;
[2382]485
[2383]486 // for performance check
487 double eInitPol = 0.0 ;
488 double eGetData = 0.0 ;
489 double eToPixel = 0.0 ;
490 double eGGridSD = 0.0 ;
491 double eToInt = 0.0 ;
492
[2382]493 for ( Int ipol = 0 ; ipol < npol_ ; ipol++ ) {
494 t0 = mathutil::gettimeofday_sec() ;
495 initPol( ipol ) ;
496 t1 = mathutil::gettimeofday_sec() ;
[2383]497 eInitPol += t1-t0 ;
[2382]498
499 // retrieve data
500 t0 = mathutil::gettimeofday_sec() ;
501 getDataPerPol( spectra, direction, flagtra, rflag, weight ) ;
502 t1 = mathutil::gettimeofday_sec() ;
[2383]503 eGetData += t1-t0 ;
504
[2382]505 // world -> pixel
506 t0 = mathutil::gettimeofday_sec() ;
507 toPixel( direction, xypos ) ;
508 t1 = mathutil::gettimeofday_sec() ;
[2385]509 eToPixel += t1-t0 ;
[2382]510
511 // call ggridsd
512 polMap[0] = ipol ;
513 t0 = mathutil::gettimeofday_sec() ;
[2384]514 call_ggridsd( xypos,
515 spectra,
516 nvispol,
517 nchan_,
518 flagtra,
519 rflag,
520 weight,
521 nrow_,
522 irow,
523 gdataArrC,
524 gwgtArr,
525 gnx,
526 gny,
527 npol_,
528 nchan_,
529 convSupport_,
530 convSampling_,
531 convFunc,
[2382]532 chanMap,
533 polMap ) ;
534 t1 = mathutil::gettimeofday_sec() ;
[2384]535 eGGridSD += t1-t0 ;
[2356]536 }
[2384]537 os << "initPol: elapsed time is " << eInitPol << " sec." << LogIO::POST ;
538 os << "getData: elapsed time is " << eGetData-eToInt-eGetWeight << " sec." << LogIO::POST ;
539 os << "toPixel: elapsed time is " << eToPixel << " sec." << LogIO::POST ;
540 os << "ggridsd: elapsed time is " << eGGridSD << " sec." << LogIO::POST ;
541 os << "toInt: elapsed time is " << eToInt << " sec." << LogIO::POST ;
542 os << "getWeight: elapsed time is " << eGetWeight << " sec." << LogIO::POST ;
[2382]543
544 // delete maps
[2356]545 delete polMap ;
546 delete chanMap ;
[2382]547
[2378]548 setData( gdataArrC, gwgtArr ) ;
[2364]549// os << "gdataArr = " << gdataArr << LogIO::POST ;
550// os << "gwgtArr = " << gwgtArr << LogIO::POST ;
551// os << "data_ " << data_ << LogIO::POST ;
[2356]552}
553
[2382]554void STGrid::initPol( Int ipol )
555{
[2386]556 LogIO os( LogOrigin("STGrid","initPol",WHERE) ) ;
557 if ( npolOrg_ == 1 ) {
558 os << "single polarization data." << LogIO::POST ;
[2385]559 ptab_ = tab_ ;
[2386]560 }
[2385]561 else
562 ptab_ = tab_( tab_.col("POLNO") == (uInt)ipol ) ;
[2382]563
564 attach( ptab_ ) ;
565}
566
[2378]567void STGrid::setData( Array<Complex> &gdata,
[2368]568 Array<Float> &gwgt )
569{
[2378]570 // 2011/12/20 TN
571 // gwgt and data_ share storage
[2368]572 LogIO os( LogOrigin("STGrid","setData",WHERE) ) ;
573 double t0, t1 ;
574 t0 = mathutil::gettimeofday_sec() ;
[2378]575 uInt len = data_.nelements() ;
[2374]576 const Complex *w1_p ;
[2378]577 Float *w2_p ;
[2379]578 Bool b1, b2 ;
[2374]579 const Complex *gdata_p = gdata.getStorage( b1 ) ;
[2378]580 Float *gwgt_p = data_.getStorage( b2 ) ;
[2368]581 w1_p = gdata_p ;
582 w2_p = gwgt_p ;
583 for ( uInt i = 0 ; i < len ; i++ ) {
[2378]584 if ( *w2_p > 0.0 ) *w2_p = (*w1_p).real() / *w2_p ;
[2368]585 w1_p++ ;
586 w2_p++ ;
587 }
588 gdata.freeStorage( gdata_p, b1 ) ;
[2378]589 data_.putStorage( gwgt_p, b2 ) ;
[2368]590 t1 = mathutil::gettimeofday_sec() ;
591 os << "setData: elapsed time is " << t1-t0 << " sec." << LogIO::POST ;
592}
593
[2356]594void STGrid::setupGrid( Int &nx,
595 Int &ny,
596 String &cellx,
597 String &celly,
598 Double &xmin,
599 Double &xmax,
600 Double &ymin,
601 Double &ymax,
602 String &center )
603{
[2375]604 LogIO os( LogOrigin("STGrid","setupGrid",WHERE) ) ;
[2356]605 //cout << "nx=" << nx << ", ny=" << ny << endl ;
[2359]606
607 // center position
608 if ( center.size() == 0 ) {
609 center_(0) = 0.5 * ( xmin + xmax ) ;
610 center_(1) = 0.5 * ( ymin + ymax ) ;
611 }
612 else {
613 String::size_type pos0 = center.find( " " ) ;
614 if ( pos0 == String::npos ) {
615 throw AipsError( "bad string format in parameter center" ) ;
616 }
617 String::size_type pos1 = center.find( " ", pos0+1 ) ;
618 String typestr, xstr, ystr ;
619 if ( pos1 != String::npos ) {
620 typestr = center.substr( 0, pos0 ) ;
621 xstr = center.substr( pos0+1, pos1-pos0 ) ;
622 ystr = center.substr( pos1+1 ) ;
623 // todo: convert to J2000 (or direction ref for DIRECTION column)
624 }
625 else {
626 typestr = "J2000" ;
627 xstr = center.substr( 0, pos0 ) ;
628 ystr = center.substr( pos0+1 ) ;
629 }
630 QuantumHolder qh ;
631 String err ;
632 qh.fromString( err, xstr ) ;
633 Quantum<Double> xcen = qh.asQuantumDouble() ;
634 qh.fromString( err, ystr ) ;
635 Quantum<Double> ycen = qh.asQuantumDouble() ;
636 center_(0) = xcen.getValue( "rad" ) ;
637 center_(1) = ycen.getValue( "rad" ) ;
638 }
639
640
[2356]641 nx_ = nx ;
642 ny_ = ny ;
643 if ( nx < 0 && ny > 0 ) {
644 nx_ = ny ;
645 ny_ = ny ;
646 }
647 if ( ny < 0 && nx > 0 ) {
648 nx_ = nx ;
649 ny_ = nx ;
650 }
[2375]651
652 //Double wx = xmax - xmin ;
653 //Double wy = ymax - ymin ;
654 Double wx = max( abs(xmax-center_(0)), abs(xmin-center_(0)) ) * 2 ;
655 Double wy = max( abs(ymax-center_(1)), abs(ymin-center_(1)) ) * 2 ;
656 // take 10% margin
657 wx *= 1.10 ;
658 wy *= 1.10 ;
659
660 Quantum<Double> qcellx ;
661 Quantum<Double> qcelly ;
[2356]662 //cout << "nx_ = " << nx_ << ", ny_ = " << ny_ << endl ;
663 if ( cellx.size() != 0 && celly.size() != 0 ) {
664 readQuantity( qcellx, cellx ) ;
665 readQuantity( qcelly, celly ) ;
666 }
667 else if ( celly.size() != 0 ) {
[2375]668 os << "Using celly to x-axis..." << LogIO::POST ;
[2356]669 readQuantity( qcelly, celly ) ;
670 qcellx = qcelly ;
671 }
672 else if ( cellx.size() != 0 ) {
[2375]673 os << "Using cellx to y-axis..." << LogIO::POST ;
[2356]674 readQuantity( qcellx, cellx ) ;
675 qcelly = qcellx ;
676 }
677 else {
678 if ( nx_ < 0 ) {
[2375]679 os << "No user preference in grid setting. Using default..." << LogIO::POST ;
[2356]680 readQuantity( qcellx, "1.0arcmin" ) ;
681 qcelly = qcellx ;
682 }
683 else {
[2375]684 if ( wx == 0.0 ) {
685 os << "Using default spatial extent (10arcmin) in x" << LogIO::POST ;
686 wx = 0.00290888 ;
687 }
688 if ( wy == 0.0 ) {
689 os << "Using default spatial extent (10arcmin) in y" << LogIO::POST ;
690 wy = 0.00290888 ;
691 }
[2356]692 qcellx = Quantum<Double>( wx/nx_, "rad" ) ;
693 qcelly = Quantum<Double>( wy/ny_, "rad" ) ;
694 }
695 }
696 cellx_ = qcellx.getValue( "rad" ) ;
697 celly_ = qcelly.getValue( "rad" ) ;
698 if ( nx_ < 0 ) {
[2375]699 if ( wx == 0.0 ) {
700 os << "Using default spatial extent (10arcmin) in x" << LogIO::POST ;
701 wx = 0.00290888 ;
702 }
703 if ( wy == 0.0 ) {
704 os << "Using default spatial extent (10arcmin) in y" << LogIO::POST ;
705 wy = 0.00290888 ;
706 }
[2356]707 nx_ = Int( ceil( wx/cellx_ ) ) ;
708 ny_ = Int( ceil( wy/celly_ ) ) ;
709 }
710}
711
[2379]712void STGrid::selectData()
[2362]713{
[2386]714 LogIO os( LogOrigin("STGrid","selectData",WHERE) ) ;
[2362]715 Int ifno = ifno_ ;
716 Table taborg( infile_ ) ;
717 if ( ifno == -1 ) {
718 ROScalarColumn<uInt> ifnoCol( taborg, "IFNO" ) ;
719 ifno = ifnoCol( 0 ) ;
720 os << LogIO::WARN
721 << "IFNO is not given. Using default IFNO: " << ifno << LogIO::POST ;
722 }
[2364]723 TableExprNode node ;
[2386]724 if ( isMultiIF( taborg ) ) {
725 os << "apply selection on IFNO" << LogIO::POST ;
726 node = taborg.col("IFNO") == ifno ;
727 }
[2364]728 if ( scanlist_.size() > 0 ) {
[2386]729 os << "apply selection on SCANNO" << LogIO::POST ;
[2364]730 node = node && taborg.col("SCANNO").in( scanlist_ ) ;
731 }
[2386]732 if ( node.isNull() ) {
733 tab_ = taborg ;
734 }
735 else {
736 tab_ = taborg( node ) ;
737 }
[2379]738 if ( tab_.nrow() == 0 ) {
[2362]739 os << LogIO::SEVERE
[2376]740 << "No corresponding rows for given selection: IFNO " << ifno ;
741 if ( scanlist_.size() > 0 )
742 os << " SCANNO " << scanlist_ ;
743 os << LogIO::EXCEPTION ;
[2362]744 }
745}
746
[2386]747Bool STGrid::isMultiIF( Table &tab )
748{
749 ROScalarColumn<uInt> ifnoCol( tab, "IFNO" ) ;
750 Vector<uInt> ifnos = ifnoCol.getColumn() ;
751 return anyNE( ifnos, ifnos[0] ) ;
752}
753
[2382]754void STGrid::attach( Table &tab )
[2379]755{
756 // attach to table
[2382]757 spectraCol_.attach( tab, "SPECTRA" ) ;
758 flagtraCol_.attach( tab, "FLAGTRA" ) ;
759 directionCol_.attach( tab, "DIRECTION" ) ;
760 flagRowCol_.attach( tab, "FLAGROW" ) ;
761 tsysCol_.attach( tab, "TSYS" ) ;
762 intervalCol_.attach( tab, "INTERVAL" ) ;
[2381]763// Vector<String> colnames( 6 ) ;
764// colnames[0] = "SPECTRA" ;
765// colnames[1] = "FLAGTRA" ;
766// colnames[2] = "DIRECTION" ;
767// colnames[3] = "FLAGROW" ;
768// colnames[4] = "TSYS" ;
769// colnames[5] = "INTERVAL" ;
770// row_ = ROTableRow( tab_, colnames ) ;
771// const TableRecord &rec = row_.record() ;
772// spectraRF_.attachToRecord( rec, colnames[0] ) ;
773// flagtraRF_.attachToRecord( rec, colnames[1] ) ;
774// directionRF_.attachToRecord( rec, colnames[2] ) ;
775// flagRowRF_.attachToRecord( rec, colnames[3] ) ;
776// tsysRF_.attachToRecord( rec, colnames[4] ) ;
777// intervalRF_.attachToRecord( rec, colnames[5] ) ;
[2379]778}
779
[2382]780void STGrid::getDataPerPol( Array<Float> &spectra,
781 Array<Double> &direction,
782 Array<uChar> &flagtra,
783 Array<uInt> &rflag,
784 Array<Float> &weight )
[2356]785{
[2382]786 LogIO os( LogOrigin("STGrid","getDataPerPol",WHERE) ) ;
[2383]787
[2382]788 // 2011/12/22 TN
789 // weight and tsys shares its storage
790 Array<Float> tsys( weight ) ;
791 Array<Double> tint( rflag.shape() ) ;
[2383]792
793 Vector<uInt> rflagVec( rflag ) ;
[2382]794 Vector<Double> tintVec( tint ) ;
[2375]795
[2382]796 spectraCol_.getColumn( spectra ) ;
797 flagtraCol_.getColumn( flagtra ) ;
798 flagRowCol_.getColumn( rflagVec ) ;
799 directionCol_.getColumn( direction ) ;
800 intervalCol_.getColumn( tintVec ) ;
801 Vector<Float> tsysTemp = tsysCol_( 0 ) ;
802 if ( tsysTemp.nelements() == (uInt)nchan_ ) {
803 tsysCol_.getColumn( tsys ) ;
[2360]804 }
[2382]805 else {
806 tsys = tsysTemp[0] ;
807 }
[2384]808
809 double t0,t1 ;
810 t0 = mathutil::gettimeofday_sec() ;
[2383]811 getWeight( weight, tsys, tint ) ;
[2384]812 t1 = mathutil::gettimeofday_sec() ;
813 eGetWeight += t1-t0 ;
[2356]814}
815
[2382]816void STGrid::getDataPerPol( Array<Complex> &spectra,
817 Array<Double> &direction,
818 Array<Int> &flagtra,
819 Array<Int> &rflag,
820 Array<Float> &weight )
[2371]821{
[2382]822 LogIO os( LogOrigin("STGrid","getDataPerPol",WHERE) ) ;
[2375]823 double t0, t1 ;
824
[2382]825 Array<uChar> flagUC( flagtra.shape() ) ;
826 Array<uInt> rflagUI( rflag.shape() ) ;
827 Array<Float> spectraF( spectra.shape() ) ;
828 getDataPerPol( spectraF, direction, flagUC, rflagUI, weight ) ;
[2375]829
[2382]830 convertArray( spectra, spectraF ) ;
[2375]831 t0 = mathutil::gettimeofday_sec() ;
832 toInt( flagUC, flagtra ) ;
833 toInt( rflagUI, rflag ) ;
834 t1 = mathutil::gettimeofday_sec() ;
[2384]835 eToInt += t1-t0 ;
[2383]836 //os << "toInt: elapsed time is " << t1-t0 << " sec." << LogIO::POST ;
[2375]837}
838
[2379]839Int STGrid::getDataChunk( Array<Complex> &spectra,
840 Array<Double> &direction,
841 Array<Int> &flagtra,
842 Array<Int> &rflag,
843 Array<Float> &weight )
[2378]844{
[2385]845 LogIO os( LogOrigin("STGrid","getDataChunk",WHERE) ) ;
[2381]846 Int nrow = getDataChunk( spectraF_, direction, flagtraUC_, rflagUI_, weight ) ;
[2383]847 if ( nrow < nchunk_ ) {
848 spectra.resize( spectraF_.shape() ) ;
849 flagtra.resize( flagtraUC_.shape() ) ;
850 rflag.resize( rflagUI_.shape() ) ;
851 }
[2381]852 double t0, t1 ;
853 t0 = mathutil::gettimeofday_sec() ;
854 convertArray( spectra, spectraF_ ) ;
[2382]855 toInt( flagtraUC_, flagtra ) ;
856 toInt( rflagUI_, rflag ) ;
[2381]857 t1 = mathutil::gettimeofday_sec() ;
[2384]858 eToInt = t1 - t0 ;
[2381]859
[2379]860 return nrow ;
[2378]861}
862
[2379]863Int STGrid::getDataChunk( Array<Float> &spectra,
864 Array<Double> &direction,
865 Array<uChar> &flagtra,
866 Array<uInt> &rflag,
867 Array<Float> &weight )
[2375]868{
[2379]869 LogIO os( LogOrigin("STGrid","getDataChunk",WHERE) ) ;
[2383]870 Int nrow = spectra.shape()[1] ;
871 Int remainingRow = nrow_ - nprocessed_ ;
872 if ( remainingRow < nrow ) {
873 nrow = remainingRow ;
874 IPosition mshape( 2, nchan_, nrow ) ;
875 IPosition vshape( 1, nrow ) ;
876 spectra.resize( mshape ) ;
877 flagtra.resize( mshape ) ;
878 direction.resize( IPosition(2,2,nrow) ) ;
879 rflag.resize( vshape ) ;
880 weight.resize( mshape ) ;
[2379]881 }
[2383]882 // 2011/12/22 TN
883 // tsys shares its storage with weight
884 Array<Float> tsys( weight ) ;
885 Array<Double> tint( rflag.shape() ) ;
[2380]886
[2383]887 Vector<uInt> rflagVec( rflag ) ;
888 Vector<Double> tintVec( tint ) ;
[2379]889
[2383]890 RefRows rows( nprocessed_, nprocessed_+nrow-1, 1 ) ;
[2386]891 //os<<LogIO::DEBUGGING<<"nprocessed_="<<nprocessed_<<": rows.nrows()="<<rows.nrows()<<LogIO::POST ;
[2383]892 spectraCol_.getColumnCells( rows, spectra ) ;
893 flagtraCol_.getColumnCells( rows, flagtra ) ;
894 directionCol_.getColumnCells( rows, direction ) ;
895 flagRowCol_.getColumnCells( rows, rflagVec ) ;
896 intervalCol_.getColumnCells( rows, tintVec ) ;
897 Vector<Float> tsysTemp = tsysCol_( nprocessed_ ) ;
898 if ( tsysTemp.nelements() == (uInt)nchan_ )
899 tsysCol_.getColumnCells( rows, tsys ) ;
900 else
901 tsys = tsysTemp[0] ;
[2385]902
[2384]903 double t0,t1 ;
904 t0 = mathutil::gettimeofday_sec() ;
[2379]905 getWeight( weight, tsys, tint ) ;
[2384]906 t1 = mathutil::gettimeofday_sec() ;
907 eGetWeight += t1-t0 ;
[2379]908
909 nprocessed_ += nrow ;
910
911 return nrow ;
912}
913
914void STGrid::setupArray()
915{
[2376]916 LogIO os( LogOrigin("STGrid","setupArray",WHERE) ) ;
[2379]917 ROScalarColumn<uInt> polnoCol( tab_, "POLNO" ) ;
[2371]918 Vector<uInt> pols = polnoCol.getColumn() ;
[2376]919 //os << pols << LogIO::POST ;
[2371]920 Vector<uInt> pollistOrg ;
[2386]921 npolOrg_ = 0 ;
[2371]922 uInt polno ;
923 for ( uInt i = 0 ; i < polnoCol.nrow() ; i++ ) {
924 //polno = polnoCol( i ) ;
925 polno = pols( i ) ;
926 if ( allNE( pollistOrg, polno ) ) {
[2386]927 pollistOrg.resize( npolOrg_+1, True ) ;
928 pollistOrg[npolOrg_] = polno ;
929 npolOrg_++ ;
[2371]930 }
931 }
932 if ( pollist_.size() == 0 )
933 pollist_ = pollistOrg ;
934 else {
935 Vector<uInt> newlist ;
936 uInt newsize = 0 ;
937 for ( uInt i = 0 ; i < pollist_.size() ; i++ ) {
938 if ( anyEQ( pollistOrg, pollist_[i] ) ) {
939 newlist.resize( newsize+1, True ) ;
940 newlist[newsize] = pollist_[i] ;
941 newsize++ ;
942 }
943 }
944 pollist_.assign( newlist ) ;
945 }
946 npol_ = pollist_.size() ;
947 if ( npol_ == 0 ) {
948 os << LogIO::SEVERE << "Empty pollist" << LogIO::EXCEPTION ;
949 }
[2386]950 nrow_ = tab_.nrow() / npolOrg_ ;
[2379]951 ROArrayColumn<uChar> tmpCol( tab_, "FLAGTRA" ) ;
[2371]952 nchan_ = tmpCol( 0 ).nelements() ;
953// os << "npol_ = " << npol_ << "(" << pollist_ << ")" << endl
954// << "nchan_ = " << nchan_ << endl
955// << "nrow_ = " << nrow_ << LogIO::POST ;
956}
957
[2375]958void STGrid::getWeight( Array<Float> &w,
[2382]959 Array<Float> &tsys,
960 Array<Double> &tint )
961{
[2383]962 LogIO os( LogOrigin("STGrid","getWeight",WHERE) ) ;
[2384]963
[2382]964 // 2011/12/22 TN
965 // w (weight) and tsys share storage
966 IPosition refShape = tsys.shape() ;
967 Int nchan = refShape[0] ;
968 Int nrow = refShape[1] ;
969// os << "nchan=" << nchan << ", nrow=" << nrow << LogIO::POST ;
970// os << "w.shape()=" << w.shape() << endl
971// << "tsys.shape()=" << tsys.shape() << endl
972// << "tint.shape()=" << tint.shape() << LogIO::POST ;
973
974 // set weight
975 if ( wtype_.compare( "UNIFORM" ) == 0 ) {
976 w = 1.0 ;
977 }
978 else if ( wtype_.compare( "TINT" ) == 0 ) {
979 Bool b0, b1 ;
980 Float *w_p = w.getStorage( b0 ) ;
981 Float *w0_p = w_p ;
982 const Double *ti_p = tint.getStorage( b1 ) ;
983 const Double *w1_p = ti_p ;
984 for ( Int irow = 0 ; irow < nrow ; irow++ ) {
985 for ( Int ichan = 0 ; ichan < nchan ; ichan++ ) {
986 *w0_p = *w1_p ;
987 w0_p++ ;
988 }
989 w1_p++ ;
990 }
991 w.putStorage( w_p, b0 ) ;
992 tint.freeStorage( ti_p, b1 ) ;
993 }
994 else if ( wtype_.compare( "TSYS" ) == 0 ) {
995 Bool b0 ;
996 Float *w_p = w.getStorage( b0 ) ;
997 Float *w0_p = w_p ;
998 for ( Int irow = 0 ; irow < nrow ; irow++ ) {
999 for ( Int ichan = 0 ; ichan < nchan ; ichan++ ) {
1000 Float temp = *w0_p ;
1001 *w0_p = 1.0 / ( temp * temp ) ;
1002 w0_p++ ;
1003 }
1004 }
1005 w.putStorage( w_p, b0 ) ;
1006 }
1007 else if ( wtype_.compare( "TINTSYS" ) == 0 ) {
1008 Bool b0, b1 ;
1009 Float *w_p = w.getStorage( b0 ) ;
1010 Float *w0_p = w_p ;
1011 const Double *ti_p = tint.getStorage( b1 ) ;
1012 const Double *w1_p = ti_p ;
1013 for ( Int irow = 0 ; irow < nrow ; irow++ ) {
1014 Float interval = *w1_p ;
1015 for ( Int ichan = 0 ; ichan < nchan ; ichan++ ) {
1016 Float temp = *w0_p ;
1017 *w0_p = interval / ( temp * temp ) ;
1018 w0_p++ ;
1019 }
1020 w1_p++ ;
1021 }
1022 w.putStorage( w_p, b0 ) ;
1023 tint.freeStorage( ti_p, b1 ) ;
1024 }
1025 else {
1026 //LogIO os( LogOrigin("STGrid", "getWeight", WHERE) ) ;
1027 //os << LogIO::WARN << "Unsupported weight type '" << wtype_ << "', apply UNIFORM weight" << LogIO::POST ;
1028 w = 1.0 ;
1029 }
1030}
1031
[2375]1032void STGrid::toInt( Array<uChar> &u, Array<Int> &v )
[2356]1033{
[2375]1034 uInt len = u.nelements() ;
[2356]1035 Int *int_p = new Int[len] ;
1036 Bool deleteIt ;
[2375]1037 const uChar *data_p = u.getStorage( deleteIt ) ;
[2356]1038 Int *i_p = int_p ;
1039 const uChar *u_p = data_p ;
1040 for ( uInt i = 0 ; i < len ; i++ ) {
1041 *i_p = ( *u_p == 0 ) ? 0 : 1 ;
1042 i_p++ ;
1043 u_p++ ;
1044 }
[2375]1045 u.freeStorage( data_p, deleteIt ) ;
1046 v.takeStorage( u.shape(), int_p, TAKE_OVER ) ;
[2356]1047}
1048
[2375]1049void STGrid::toInt( Array<uInt> &u, Array<Int> &v )
[2356]1050{
[2375]1051 uInt len = u.nelements() ;
[2356]1052 Int *int_p = new Int[len] ;
1053 Bool deleteIt ;
[2375]1054 const uInt *data_p = u.getStorage( deleteIt ) ;
[2356]1055 Int *i_p = int_p ;
1056 const uInt *u_p = data_p ;
1057 for ( uInt i = 0 ; i < len ; i++ ) {
1058 *i_p = ( *u_p == 0 ) ? 0 : 1 ;
1059 i_p++ ;
1060 u_p++ ;
1061 }
[2375]1062 u.freeStorage( data_p, deleteIt ) ;
1063 v.takeStorage( u.shape(), int_p, TAKE_OVER ) ;
[2356]1064}
1065
[2375]1066void STGrid::toPixel( Array<Double> &world, Array<Double> &pixel )
[2356]1067{
[2359]1068 // gridding will be done on (nx_+2*convSupport_) x (ny_+2*convSupport_)
1069 // grid plane to avoid unexpected behavior on grid edge
[2375]1070 Block<Double> pixc( 2 ) ;
1071 pixc[0] = Double( nx_-1 ) * 0.5 ;
1072 pixc[1] = Double( ny_-1 ) * 0.5 ;
1073// pixc[0] = Double( nx_+2*convSupport_-1 ) * 0.5 ;
1074// pixc[1] = Double( ny_+2*convSupport_-1 ) * 0.5 ;
[2356]1075 uInt nrow = world.shape()[1] ;
[2375]1076 Bool bw, bp ;
1077 const Double *w_p = world.getStorage( bw ) ;
1078 Double *p_p = pixel.getStorage( bp ) ;
1079 const Double *ww_p = w_p ;
1080 Double *wp_p = p_p ;
1081 for ( uInt i = 0 ; i < nrow ; i++ ) {
1082 *wp_p = pixc[0] + ( *ww_p - center_[0] ) / cellx_ ;
1083 wp_p++ ;
1084 ww_p++ ;
1085 *wp_p = pixc[1] + ( *ww_p - center_[1] ) / celly_ ;
1086 wp_p++ ;
1087 ww_p++ ;
[2356]1088 }
[2375]1089 world.freeStorage( w_p, bw ) ;
1090 pixel.putStorage( p_p, bp ) ;
[2364]1091// String gridfile = "grid."+convType_+"."+String::toString(convSupport_)+".dat" ;
1092// ofstream ofs( gridfile.c_str(), ios::out ) ;
1093// ofs << "center " << center_(0) << " " << pixc(0)
1094// << " " << center_(1) << " " << pixc(1) << endl ;
1095// for ( uInt irow = 0 ; irow < nrow ; irow++ ) {
1096// ofs << irow ;
1097// for ( uInt i = 0 ; i < 2 ; i++ ) {
1098// ofs << " " << world(i, irow) << " " << pixel(i, irow) ;
1099// }
1100// ofs << endl ;
1101// }
1102// ofs.close() ;
[2356]1103}
1104
1105void STGrid::boxFunc( Vector<Float> &convFunc, Int &convSize )
1106{
1107 convFunc = 0.0 ;
1108 for ( Int i = 0 ; i < convSize/2 ; i++ )
1109 convFunc(i) = 1.0 ;
1110}
1111
1112#define NEED_UNDERSCORES
1113#if defined(NEED_UNDERSCORES)
1114#define grdsf grdsf_
1115#endif
1116extern "C" {
1117 void grdsf(Double*, Double*);
1118}
1119void STGrid::spheroidalFunc( Vector<Float> &convFunc )
1120{
1121 convFunc = 0.0 ;
1122 for ( Int i = 0 ; i < convSampling_*convSupport_ ; i++ ) {
1123 Double nu = Double(i) / Double(convSupport_*convSampling_) ;
1124 Double val ;
1125 grdsf( &nu, &val ) ;
1126 convFunc(i) = ( 1.0 - nu * nu ) * val ;
1127 }
1128}
1129
1130void STGrid::gaussFunc( Vector<Float> &convFunc )
1131{
1132 convFunc = 0.0 ;
[2363]1133 // HWHM of the Gaussian is convSupport_ / 4
1134 // To take into account Gaussian tail, kernel cutoff is set to 4 * HWHM
1135 Int len = convSampling_ * convSupport_ ;
1136 Double hwhm = len * 0.25 ;
1137 for ( Int i = 0 ; i < len ; i++ ) {
[2356]1138 Double val = Double(i) / hwhm ;
1139 convFunc(i) = exp( -log(2)*val*val ) ;
1140 }
1141}
1142
1143void STGrid::pbFunc( Vector<Float> &convFunc )
1144{
1145 convFunc = 0.0 ;
1146}
1147
1148void STGrid::setConvFunc( Vector<Float> &convFunc )
1149{
1150 convSupport_ = userSupport_ ;
1151 if ( convType_ == "BOX" ) {
1152 if ( convSupport_ < 0 )
1153 convSupport_ = 0 ;
1154 Int convSize = convSampling_ * ( 2 * convSupport_ + 2 ) ;
1155 convFunc.resize( convSize ) ;
1156 boxFunc( convFunc, convSize ) ;
1157 }
1158 else if ( convType_ == "SF" ) {
1159 if ( convSupport_ < 0 )
1160 convSupport_ = 3 ;
1161 Int convSize = convSampling_ * ( 2 * convSupport_ + 2 ) ;
1162 convFunc.resize( convSize ) ;
1163 spheroidalFunc( convFunc ) ;
1164 }
1165 else if ( convType_ == "GAUSS" ) {
[2363]1166 // to take into account Gaussian tail
[2356]1167 if ( convSupport_ < 0 )
[2363]1168 convSupport_ = 12 ; // 3 * 4
1169 else {
1170 convSupport_ = userSupport_ * 4 ;
1171 }
[2356]1172 Int convSize = convSampling_ * ( 2 * convSupport_ + 2 ) ;
1173 convFunc.resize( convSize ) ;
1174 gaussFunc( convFunc ) ;
1175 }
[2359]1176 else if ( convType_ == "PB" ) {
1177 if ( convSupport_ < 0 )
1178 convSupport_ = 0 ;
[2356]1179 pbFunc( convFunc ) ;
[2359]1180 }
[2356]1181 else {
1182 throw AipsError( "Unsupported convolution function" ) ;
1183 }
1184}
1185
1186string STGrid::saveData( string outfile )
1187{
[2368]1188 LogIO os( LogOrigin("STGrid", "saveData", WHERE) ) ;
1189 double t0, t1 ;
1190 t0 = mathutil::gettimeofday_sec() ;
1191
[2360]1192 //Int polno = 0 ;
[2371]1193 String outfile_ ;
[2356]1194 if ( outfile.size() == 0 ) {
1195 if ( infile_.lastchar() == '/' ) {
1196 outfile_ = infile_.substr( 0, infile_.size()-1 ) ;
1197 }
1198 else {
1199 outfile_ = infile_ ;
1200 }
1201 outfile_ += ".grid" ;
1202 }
1203 else {
1204 outfile_ = outfile ;
1205 }
[2371]1206 Table tab ;
1207 prepareTable( tab, outfile_ ) ;
[2356]1208 IPosition dshape = data_.shape() ;
[2361]1209 Int nrow = nx_ * ny_ * npol_ ;
1210 tab.rwKeywordSet().define( "nPol", npol_ ) ;
[2360]1211 tab.addRow( nrow ) ;
[2356]1212 Vector<Double> cpix( 2 ) ;
1213 cpix(0) = Double( nx_ - 1 ) * 0.5 ;
1214 cpix(1) = Double( ny_ - 1 ) * 0.5 ;
1215 Vector<Double> dir( 2 ) ;
1216 ArrayColumn<Double> directionCol( tab, "DIRECTION" ) ;
1217 ArrayColumn<Float> spectraCol( tab, "SPECTRA" ) ;
1218 ScalarColumn<uInt> polnoCol( tab, "POLNO" ) ;
1219 Int irow = 0 ;
[2371]1220 Vector<Float> sp( nchan_ ) ;
1221 Bool bsp, bdata ;
1222 const Float *data_p = data_.getStorage( bdata ) ;
1223 Float *wsp_p, *sp_p ;
1224 const Float *wdata_p = data_p ;
1225 long step = nx_ * ny_ * npol_ ;
1226 long offset ;
[2356]1227 for ( Int iy = 0 ; iy < ny_ ; iy++ ) {
[2371]1228 dir(1) = center_(1) - ( cpix(1) - (Double)iy ) * celly_ ;
[2356]1229 for ( Int ix = 0 ; ix < nx_ ; ix++ ) {
[2371]1230 dir(0) = center_(0) - ( cpix(0) - (Double)ix ) * cellx_ ;
[2361]1231 for ( Int ipol = 0 ; ipol < npol_ ; ipol++ ) {
[2371]1232 offset = ix + iy * nx_ + ipol * nx_ * ny_ ;
1233 //os << "offset = " << offset << LogIO::POST ;
1234 sp_p = sp.getStorage( bsp ) ;
1235 wsp_p = sp_p ;
1236 wdata_p = data_p + offset ;
1237 for ( Int ichan = 0 ; ichan < nchan_ ; ichan++ ) {
1238 *wsp_p = *wdata_p ;
1239 wsp_p++ ;
1240 wdata_p += step ;
1241 }
1242 sp.putStorage( sp_p, bsp ) ;
[2356]1243 spectraCol.put( irow, sp ) ;
1244 directionCol.put( irow, dir ) ;
[2360]1245 polnoCol.put( irow, pollist_[ipol] ) ;
[2356]1246 irow++ ;
1247 }
1248 }
1249 }
[2371]1250 data_.freeStorage( data_p, bdata ) ;
[2368]1251
1252 t1 = mathutil::gettimeofday_sec() ;
1253 os << "saveData: elapsed time is " << t1-t0 << " sec." << LogIO::POST ;
[2374]1254
[2356]1255 return outfile_ ;
1256}
1257
[2371]1258void STGrid::prepareTable( Table &tab, String &name )
1259{
1260 Table t( infile_, Table::Old ) ;
1261 t.deepCopy( name, Table::New, False, t.endianFormat(), True ) ;
1262 tab = Table( name, Table::Update ) ;
[2356]1263}
[2379]1264
[2371]1265}
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