source: trunk/src/STGrid.cpp@ 2359

Last change on this file since 2359 was 2359, checked in by Takeshi Nakazato, 13 years ago

New Development: No

JIRA Issue: Yes CAS-2816

Ready for Test: No

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...

  • Disabled debug message to stdout.
  • Total extent of the grid area will be determined to cover whole observed position.
  • number of pixels for ggridsd_ is (nx+convSupport*2,ny+convSupport+2) where (nx,ny) is output grid since ogridsd is defined such that convSupport pixels from the edge are ignored.


File size: 15.9 KB
Line 
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>
9// #include <casa/Inputs/Input.h>
10#include <casa/Quanta/Quantum.h>
11#include <casa/Quanta/QuantumHolder.h>
12#include <casa/Utilities/CountedPtr.h>
13
14#include <tables/Tables/Table.h>
15#include <tables/Tables/ScalarColumn.h>
16#include <tables/Tables/ArrayColumn.h>
17
18#include <measures/Measures/MDirection.h>
19
20#include <Scantable.h>
21#include "STGrid.h"
22
23using namespace std ;
24using namespace casa ;
25using namespace asap ;
26
27namespace asap {
28
29// constructor
30STGrid::STGrid()
31{
32 init() ;
33}
34
35STGrid::STGrid( const string infile )
36{
37 init() ;
38
39 setFileIn( infile ) ;
40}
41
42void STGrid::init()
43{
44 nx_ = -1 ;
45 ny_ = -1 ;
46 cellx_ = 0.0 ;
47 celly_ = 0.0 ;
48 center_ = Vector<Double> ( 2, 0.0 ) ;
49 convType_ = "BOX" ;
50 convSupport_ = -1 ;
51 userSupport_ = -1 ;
52 convSampling_ = 100 ;
53}
54
55void STGrid::setFileIn( const string infile )
56{
57 String name( infile ) ;
58 if ( infile_.compare( name ) != 0 ) {
59 infile_ = String( infile ) ;
60 tab_ = Table( infile_ ) ;
61 }
62}
63
64void STGrid::defineImage( int nx,
65 int ny,
66 string scellx,
67 string scelly,
68 string scenter )
69{
70 ROArrayColumn<Double> dirCol( tab_, "DIRECTION" ) ;
71 Matrix<Double> direction = dirCol.getColumn() ;
72 Double rmax, rmin, dmax, dmin ;
73 minMax( rmin, rmax, direction.row( 0 ) ) ;
74 minMax( dmin, dmax, direction.row( 1 ) ) ;
75
76 Int npx = (Int)nx ;
77 Int npy = (Int)ny ;
78 String cellx( scellx ) ;
79 String celly( scelly ) ;
80 String center( scenter ) ;
81 setupGrid( npx, npy,
82 cellx, celly,
83 rmin, rmax,
84 dmin, dmax,
85 center ) ;
86}
87
88void STGrid::setOption( string convType,
89 int convSupport )
90{
91 convType_ = String( convType ) ;
92 convType_.upcase() ;
93 userSupport_ = (Int)convSupport ;
94}
95
96#define NEED_UNDERSCORES
97#if defined(NEED_UNDERSCORES)
98#define ggridsd ggridsd_
99#endif
100extern "C" {
101 void ggridsd(Double*,
102 const Complex*,
103 Int*,
104 Int*,
105 Int*,
106 const Int*,
107 const Int*,
108 const Float*,
109 Int*,
110 Int*,
111 Complex*,
112 Float*,
113 Int*,
114 Int*,
115 Int *,
116 Int *,
117 Int*,
118 Int*,
119 Float*,
120 Int*,
121 Int*,
122 Double*);
123}
124void STGrid::grid()
125{
126
127 // retrieve data
128 Matrix<Float> spectra ;
129 Matrix<Double> direction ;
130 Matrix<uChar> flagtra ;
131 Vector<uInt> rflag ;
132 getData( infile_, spectra, direction, flagtra, rflag ) ;
133 IPosition sshape = spectra.shape() ;
134 Int nchan = sshape[0] ;
135 Int nrow = sshape[1] ;
136 //cout << "data.shape()=" << data.shape() << endl ;
137
138 // flagtra: uChar -> Int
139 // rflag: uInt -> Int
140 Matrix<Int> flagI ;
141 Vector<Int> rflagI ;
142 toInt( flagtra, flagI ) ;
143 toInt( rflag, rflagI ) ;
144
145 //cout << "flagI.shape() = " << flagI.shape() << endl ;
146 //cout << "rflagI.shape() = " << rflagI.shape() << endl ;
147
148 // grid parameter
149// cout << "----------" << endl ;
150// cout << "Grid parameter summary" << endl ;
151// cout << " (nx,ny) = (" << nx_ << "," << ny_ << ")" << endl ;
152// cout << " (cellx,celly) = (" << cellx_ << "," << celly_ << ")" << endl ;
153// cout << " center = " << center_ << endl ;
154// cout << "----------" << endl ;
155
156 // convolution kernel
157 Vector<Float> convFunc ;
158 setConvFunc( convFunc ) ;
159 //cout << "convSupport=" << convSupport_ << endl ;
160 //cout << "convFunc=" << convFunc << endl ;
161
162 // world -> pixel
163 Matrix<Double> xypos( direction.shape(), 0.0 ) ;
164 toPixel( direction, xypos ) ;
165 //cout << "max(xypos.row(0))=" << max(xypos.row(0)) << endl ;
166 //cout << "min(xypos.row(0))=" << min(xypos.row(0)) << endl ;
167 //cout << "max(xypos.row(1))=" << max(xypos.row(1)) << endl ;
168 //cout << "min(xypos.row(1))=" << min(xypos.row(1)) << endl ;
169// for ( Int irow = 0 ; irow < nrow ; irow++ ) {
170// if ( spectra.column( irow )(0) > 0.0 ) {
171// cout << irow << ": xypos=" << xypos.column( irow )
172// << " data = " << spectra.column( irow ) << endl ;
173// }
174// }
175
176 // weighting factor
177 Matrix<Float> weight( IPosition( 2, nchan, nrow ), 1.0 ) ;
178
179 // call ggridsd
180 Bool deletePos, deleteData, deleteWgt, deleteFlag, deleteFlagR, deleteConv, deleteDataG, deleteWgtG ;
181 Double *xypos_p = xypos.getStorage( deletePos ) ;
182 Matrix<Complex> dataC( spectra.shape(), 0.0 ) ;
183 setReal( dataC, spectra ) ;
184 const Complex *data_p = dataC.getStorage( deleteData ) ;
185 const Float *wgt_p = weight.getStorage( deleteWgt ) ;
186 const Int *flag_p = flagI.getStorage( deleteFlag ) ;
187 const Int *rflag_p = rflagI.getStorage( deleteFlagR ) ;
188 Float *conv_p = convFunc.getStorage( deleteConv ) ;
189 Int npol = 1 ;
190 // Extend grid plane with convSupport_
191 //IPosition gshape( 4, nx_, ny_, npol, nchan ) ;
192 Int gnx = nx_+convSupport_*2 ;
193 Int gny = ny_+convSupport_*2 ;
194 IPosition gshape( 4, gnx, gny, npol, nchan ) ;
195 Array<Complex> gdataArrC( gshape, 0.0 ) ;
196 Array<Float> gwgtArr( gshape, 0.0 ) ;
197 Complex *gdata_p = gdataArrC.getStorage( deleteDataG ) ;
198 Float *wdata_p = gwgtArr.getStorage( deleteWgtG ) ;
199 Int idopsf = 0 ;
200 Int irow = -1 ;
201 Int *chanMap = new Int[nchan] ;
202 {
203 Int *work_p = chanMap ;
204 for ( Int i = 0 ; i < nchan ; i++ ) {
205 *work_p = i ;
206 work_p++ ;
207 }
208 }
209 Int *polMap = new Int[npol] ;
210 {
211 Int *work_p = polMap ;
212 for ( Int i = 0 ; i < npol ; i++ ) {
213 *work_p = i ;
214 work_p++ ;
215 }
216 }
217 Double *sumw_p = new Double[npol*nchan] ;
218 {
219 Double *work_p = sumw_p ;
220 for ( Int i = 0 ; i < npol*nchan ; i++ ) {
221 *work_p = 0.0 ;
222 work_p++ ;
223 }
224 }
225 ggridsd( xypos_p,
226 data_p,
227 &npol,
228 &nchan,
229 &idopsf,
230 flag_p,
231 rflag_p,
232 wgt_p,
233 &nrow,
234 &irow,
235 gdata_p,
236 wdata_p,
237 //&nx_,
238 //&ny_,
239 &gnx,
240 &gny,
241 &npol,
242 &nchan,
243 &convSupport_,
244 &convSampling_,
245 conv_p,
246 chanMap,
247 polMap,
248 sumw_p ) ;
249 xypos.putStorage( xypos_p, deletePos ) ;
250 dataC.freeStorage( data_p, deleteData ) ;
251 weight.freeStorage( wgt_p, deleteWgt ) ;
252 flagI.freeStorage( flag_p, deleteFlag ) ;
253 rflagI.freeStorage( rflag_p, deleteFlagR ) ;
254 convFunc.putStorage( conv_p, deleteConv ) ;
255 delete polMap ;
256 delete chanMap ;
257 gdataArrC.putStorage( gdata_p, deleteDataG ) ;
258 gwgtArr.putStorage( wdata_p, deleteWgtG ) ;
259 Array<Float> gdataArr = real( gdataArrC ) ;
260 data_.resize( gdataArr.shape() ) ;
261 data_ = 0.0 ;
262 for ( Int ix = 0 ; ix < nx_ ; ix++ ) {
263 for ( Int iy = 0 ; iy < ny_ ; iy++ ) {
264 for ( Int ip = 0 ; ip < npol ; ip++ ) {
265 for ( Int ic = 0 ; ic < nchan ; ic++ ) {
266 IPosition pos( 4, ix, iy, ip, ic ) ;
267 //if ( gwgtArr( pos ) > 0.0 )
268 // data_( pos ) = gdataArr( pos ) / gwgtArr( pos ) ;
269 IPosition gpos( 4, ix+convSupport_, iy+convSupport_, ip, ic ) ;
270 if ( gwgtArr( gpos ) > 0.0 )
271 data_( pos ) = gdataArr( gpos ) / gwgtArr( gpos ) ;
272 }
273 }
274 }
275 }
276 Matrix<Double> sumWeight( IPosition( 2, npol, nchan ), sumw_p, TAKE_OVER ) ;
277 //cout << "sumWeight = " << sumWeight << endl ;
278 //cout << "gdataArr = " << gdataArr << endl ;
279 //cout << "gwgtArr = " << gwgtArr << endl ;
280 //cout << "data_ " << data_ << endl ;
281}
282
283void STGrid::setupGrid( Int &nx,
284 Int &ny,
285 String &cellx,
286 String &celly,
287 Double &xmin,
288 Double &xmax,
289 Double &ymin,
290 Double &ymax,
291 String &center )
292{
293 //cout << "nx=" << nx << ", ny=" << ny << endl ;
294
295 // center position
296 if ( center.size() == 0 ) {
297 center_(0) = 0.5 * ( xmin + xmax ) ;
298 center_(1) = 0.5 * ( ymin + ymax ) ;
299 }
300 else {
301 String::size_type pos0 = center.find( " " ) ;
302 if ( pos0 == String::npos ) {
303 throw AipsError( "bad string format in parameter center" ) ;
304 }
305 String::size_type pos1 = center.find( " ", pos0+1 ) ;
306 String typestr, xstr, ystr ;
307 if ( pos1 != String::npos ) {
308 typestr = center.substr( 0, pos0 ) ;
309 xstr = center.substr( pos0+1, pos1-pos0 ) ;
310 ystr = center.substr( pos1+1 ) ;
311 // todo: convert to J2000 (or direction ref for DIRECTION column)
312 }
313 else {
314 typestr = "J2000" ;
315 xstr = center.substr( 0, pos0 ) ;
316 ystr = center.substr( pos0+1 ) ;
317 }
318 QuantumHolder qh ;
319 String err ;
320 qh.fromString( err, xstr ) ;
321 Quantum<Double> xcen = qh.asQuantumDouble() ;
322 qh.fromString( err, ystr ) ;
323 Quantum<Double> ycen = qh.asQuantumDouble() ;
324 center_(0) = xcen.getValue( "rad" ) ;
325 center_(1) = ycen.getValue( "rad" ) ;
326 }
327
328
329 //Double wx = xmax - xmin ;
330 //Double wy = ymax - ymin ;
331 Double wx = max( abs(xmax-center_(0)), abs(xmin-center_(0)) ) * 2 ;
332 Double wy = max( abs(ymax-center_(1)), abs(ymin-center_(1)) ) * 2 ;
333 // take 10% margin
334 wx *= 1.10 ;
335 wy *= 1.10 ;
336 Quantum<Double> qcellx ;
337 Quantum<Double> qcelly ;
338 nx_ = nx ;
339 ny_ = ny ;
340 if ( nx < 0 && ny > 0 ) {
341 nx_ = ny ;
342 ny_ = ny ;
343 }
344 if ( ny < 0 && nx > 0 ) {
345 nx_ = nx ;
346 ny_ = nx ;
347 }
348 //cout << "nx_ = " << nx_ << ", ny_ = " << ny_ << endl ;
349 if ( cellx.size() != 0 && celly.size() != 0 ) {
350 readQuantity( qcellx, cellx ) ;
351 readQuantity( qcelly, celly ) ;
352 }
353 else if ( celly.size() != 0 ) {
354 cout << "Using celly to x-axis..." << endl ;
355 readQuantity( qcelly, celly ) ;
356 qcellx = qcelly ;
357 }
358 else if ( cellx.size() != 0 ) {
359 cout << "Using cellx to y-axis..." << endl ;
360 readQuantity( qcellx, cellx ) ;
361 qcelly = qcellx ;
362 }
363 else {
364 if ( nx_ < 0 ) {
365 cout << "No user preference in grid setting. Using default..." << endl ;
366 readQuantity( qcellx, "1.0arcmin" ) ;
367 qcelly = qcellx ;
368 }
369 else {
370 qcellx = Quantum<Double>( wx/nx_, "rad" ) ;
371 qcelly = Quantum<Double>( wy/ny_, "rad" ) ;
372 }
373 }
374 cellx_ = qcellx.getValue( "rad" ) ;
375 celly_ = qcelly.getValue( "rad" ) ;
376 if ( nx_ < 0 ) {
377 nx_ = Int( ceil( wx/cellx_ ) ) ;
378 ny_ = Int( ceil( wy/celly_ ) ) ;
379 }
380}
381
382void STGrid::getData( String &infile,
383 Matrix<Float> &spectra,
384 Matrix<Double> &direction,
385 Matrix<uChar> &flagtra,
386 Vector<uInt> &rflag )
387{
388 Table tab( infile ) ;
389 ROArrayColumn<Float> spectraCol( tab, "SPECTRA" ) ;
390 ROArrayColumn<Double> directionCol( tab, "DIRECTION" ) ;
391 ROArrayColumn<uChar> flagtraCol( tab, "FLAGTRA" ) ;
392 ROScalarColumn<uInt> rflagCol( tab, "FLAGROW" ) ;
393 spectraCol.getColumn( spectra ) ;
394 directionCol.getColumn( direction ) ;
395 flagtraCol.getColumn( flagtra ) ;
396 rflagCol.getColumn( rflag ) ;
397}
398
399void STGrid::toInt( Matrix<uChar> &u, Matrix<Int> &v )
400{
401 uInt len = u.nelements() ;
402 Int *int_p = new Int[len] ;
403 Bool deleteIt ;
404 const uChar *data_p = u.getStorage( deleteIt ) ;
405 Int *i_p = int_p ;
406 const uChar *u_p = data_p ;
407 for ( uInt i = 0 ; i < len ; i++ ) {
408 *i_p = ( *u_p == 0 ) ? 0 : 1 ;
409 i_p++ ;
410 u_p++ ;
411 }
412 u.freeStorage( data_p, deleteIt ) ;
413 v.takeStorage( u.shape(), int_p, TAKE_OVER ) ;
414}
415
416void STGrid::toInt( Vector<uInt> &u, Vector<Int> &v )
417{
418 uInt len = u.nelements() ;
419 Int *int_p = new Int[len] ;
420 Bool deleteIt ;
421 const uInt *data_p = u.getStorage( deleteIt ) ;
422 Int *i_p = int_p ;
423 const uInt *u_p = data_p ;
424 for ( uInt i = 0 ; i < len ; i++ ) {
425 *i_p = ( *u_p == 0 ) ? 0 : 1 ;
426 i_p++ ;
427 u_p++ ;
428 }
429 u.freeStorage( data_p, deleteIt ) ;
430 v.takeStorage( u.shape(), int_p, TAKE_OVER ) ;
431}
432
433void STGrid::toPixel( Matrix<Double> &world, Matrix<Double> &pixel )
434{
435 // gridding will be done on (nx_+2*convSupport_) x (ny_+2*convSupport_)
436 // grid plane to avoid unexpected behavior on grid edge
437 Vector<Double> pixc( 2 ) ;
438 //pixc(0) = Double( nx_-1 ) * 0.5 ;
439 //pixc(1) = Double( ny_-1 ) * 0.5 ;
440 pixc(0) = Double( nx_+2*convSupport_-1 ) * 0.5 ;
441 pixc(1) = Double( ny_+2*convSupport_-1 ) * 0.5 ;
442 uInt nrow = world.shape()[1] ;
443 Vector<Double> cell( 2 ) ;
444 cell(0) = cellx_ ;
445 cell(1) = celly_ ;
446 //ofstream ofs( "grid.dat", ios::out ) ;
447 for ( uInt irow = 0 ; irow < nrow ; irow++ ) {
448 //ofs << irow ;
449 for ( uInt i = 0 ; i < 2 ; i++ ) {
450 pixel( i, irow ) = pixc(i) + ( world(i, irow) - center_(i) ) / cell(i) ;
451 //ofs << " " << world(i, irow) << " " << pixel(i, irow) ;
452 }
453 //ofs << endl ;
454 }
455 //ofs.close() ;
456}
457
458void STGrid::boxFunc( Vector<Float> &convFunc, Int &convSize )
459{
460 convFunc = 0.0 ;
461 for ( Int i = 0 ; i < convSize/2 ; i++ )
462 convFunc(i) = 1.0 ;
463}
464
465#define NEED_UNDERSCORES
466#if defined(NEED_UNDERSCORES)
467#define grdsf grdsf_
468#endif
469extern "C" {
470 void grdsf(Double*, Double*);
471}
472void STGrid::spheroidalFunc( Vector<Float> &convFunc )
473{
474 convFunc = 0.0 ;
475 for ( Int i = 0 ; i < convSampling_*convSupport_ ; i++ ) {
476 Double nu = Double(i) / Double(convSupport_*convSampling_) ;
477 Double val ;
478 grdsf( &nu, &val ) ;
479 convFunc(i) = ( 1.0 - nu * nu ) * val ;
480 }
481}
482
483void STGrid::gaussFunc( Vector<Float> &convFunc )
484{
485 convFunc = 0.0 ;
486 for ( Int i = 0 ; i < convSampling_*convSupport_ ; i++ ) {
487 Double hwhm = convSampling_ * convSupport_ * 0.25 ;
488 Double val = Double(i) / hwhm ;
489 convFunc(i) = exp( -log(2)*val*val ) ;
490 }
491}
492
493void STGrid::pbFunc( Vector<Float> &convFunc )
494{
495 convFunc = 0.0 ;
496}
497
498void STGrid::setConvFunc( Vector<Float> &convFunc )
499{
500 convSupport_ = userSupport_ ;
501 if ( convType_ == "BOX" ) {
502 if ( convSupport_ < 0 )
503 convSupport_ = 0 ;
504 Int convSize = convSampling_ * ( 2 * convSupport_ + 2 ) ;
505 convFunc.resize( convSize ) ;
506 boxFunc( convFunc, convSize ) ;
507 }
508 else if ( convType_ == "SF" ) {
509 if ( convSupport_ < 0 )
510 convSupport_ = 3 ;
511 Int convSize = convSampling_ * ( 2 * convSupport_ + 2 ) ;
512 convFunc.resize( convSize ) ;
513 spheroidalFunc( convFunc ) ;
514 }
515 else if ( convType_ == "GAUSS" ) {
516 if ( convSupport_ < 0 )
517 convSupport_ = 3 ;
518 Int convSize = convSampling_ * ( 2 * convSupport_ + 2 ) ;
519 convFunc.resize( convSize ) ;
520 gaussFunc( convFunc ) ;
521 }
522 else if ( convType_ == "PB" ) {
523 if ( convSupport_ < 0 )
524 convSupport_ = 0 ;
525 pbFunc( convFunc ) ;
526 }
527 else {
528 throw AipsError( "Unsupported convolution function" ) ;
529 }
530}
531
532string STGrid::saveData( string outfile )
533{
534 Int polno = 0 ;
535 string outfile_ ;
536 if ( outfile.size() == 0 ) {
537 if ( infile_.lastchar() == '/' ) {
538 outfile_ = infile_.substr( 0, infile_.size()-1 ) ;
539 }
540 else {
541 outfile_ = infile_ ;
542 }
543 outfile_ += ".grid" ;
544 }
545 else {
546 outfile_ = outfile ;
547 }
548 CountedPtr<Scantable> ref( new Scantable( infile_, Table::Memory ) ) ;
549 //cout << "ref->nchan()=" << ref->nchan() << endl ;
550 CountedPtr<Scantable> out( new Scantable( *ref, True ) ) ;
551 Table tab = out->table() ;
552 Int nrow = nx_ * ny_ ;
553 tab.addRow( nrow ) ;
554 IPosition dshape = data_.shape() ;
555 Int npol = dshape[2] ;
556 Int nchan = dshape[3] ;
557 Vector<Double> cpix( 2 ) ;
558 cpix(0) = Double( nx_ - 1 ) * 0.5 ;
559 cpix(1) = Double( ny_ - 1 ) * 0.5 ;
560 Vector<Double> dir( 2 ) ;
561 ArrayColumn<Double> directionCol( tab, "DIRECTION" ) ;
562 ArrayColumn<Float> spectraCol( tab, "SPECTRA" ) ;
563 ScalarColumn<uInt> polnoCol( tab, "POLNO" ) ;
564 Int irow = 0 ;
565 for ( Int iy = 0 ; iy < ny_ ; iy++ ) {
566 for ( Int ix = 0 ; ix < nx_ ; ix++ ) {
567 for ( Int ipol = 0 ; ipol < npol ; ipol++ ) {
568 IPosition start( 4, ix, iy, ipol, 0 ) ;
569 IPosition end( 4, ix, iy, ipol, nchan-1 ) ;
570 IPosition inc( 4, 1, 1, 1, 1 ) ;
571 Vector<Float> sp = data_( start, end, inc ) ;
572 dir(0) = center_(0) - ( cpix(0) - (Double)ix ) * cellx_ ;
573 dir(1) = center_(1) - ( cpix(1) - (Double)iy ) * celly_ ;
574 spectraCol.put( irow, sp ) ;
575 directionCol.put( irow, dir ) ;
576 polnoCol.put( irow, polno ) ;
577 irow++ ;
578 }
579 }
580 }
581 //cout << "outfile_=" << outfile_ << endl ;
582 out->makePersistent( outfile_ ) ;
583
584 return outfile_ ;
585}
586
587}
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