profit.c 91.9 KB
Newer Older
1001
VERSION	24/03/2009
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1002
 ***/
1003
1004
float	*profit_residuals(profitstruct *profit, picstruct *field,
		picstruct *wfield, float dynparam, float *param, float *resi)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1005
1006
1007
1008
  {
   int		p;

  memset(profit->modpix, 0,
1009
	profit->modnaxisn[0]*profit->modnaxisn[1]*sizeof(float));
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1010
1011
  for (p=0; p<profit->nparam; p++)
    profit->param[p] = param[p];
1012
1013
/* Simple PSF shortcut */
  if (profit->nprof == 1 && profit->prof[0]->code == PROF_DIRAC)
1014
    {
1015
1016
    profit_resample(profit, profit->psfpix, profit->lmodpix,
		*profit->prof[0]->flux);
1017
1018
    profit->flux = *profit->prof[0]->flux;
    }
1019
1020
  else
    {
1021
    profit->flux = 0.0;
1022
    for (p=0; p<profit->nprof; p++)
1023
      profit->flux += prof_add(profit->prof[p], profit);
1024
1025
1026
    profit_convolve(profit, profit->modpix);
    profit_resample(profit, profit->modpix, profit->lmodpix, 1.0);
    }
1027
  profit_compresi(profit, dynparam, resi);
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1028
1029
1030
1031
1032
1033

  return resi;
  }


/****** profit_compresi ******************************************************
1034
1035
PROTO	float *prof_compresi(profitstruct *profit, float dynparam,
			float *resi)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1036
1037
1038
PURPOSE	Compute the vector of residuals between the data and the galaxy
	profile model.
INPUT	Profile-fitting structure,
1039
	dynamic-compression parameter (0=no compression),
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1040
1041
1042
1043
	vector of residuals (output).
OUTPUT	Vector of residuals.
NOTES	-.
AUTHOR	E. Bertin (IAP)
1044
VERSION	07/09/2009
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1045
 ***/
1046
float	*profit_compresi(profitstruct *profit, float dynparam, float *resi)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1047
  {
1048
1049
   double	error;
   float	*resit;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1050
1051
   PIXTYPE	*objpix, *objweight, *lmodpix,
		val,val2,wval, invsig;
1052
   int		npix, i;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1053
1054
1055
1056
1057
1058
1059
  
/* Compute vector of residuals */
  resit = resi;
  objpix = profit->objpix;
  objweight = profit->objweight;
  lmodpix = profit->lmodpix;
  error = 0.0;
1060
1061
  npix = profit->objnaxisn[0]*profit->objnaxisn[1];
  if (dynparam > 0.0)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1062
    {
1063
1064
    invsig = (PIXTYPE)(1.0/dynparam);
    for (i=npix; i--; lmodpix++)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1065
1066
1067
1068
      {
      val = *(objpix++);
      if ((wval=*(objweight++))>0.0)
        {
1069
        val2 = (val - *lmodpix)*wval*invsig;
1070
        val2 = val2>0.0? logf(1.0+val2) : -logf(1.0-val2);
1071
        *(resit++) = val2*dynparam;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1072
1073
1074
        error += val2*val2;
        }
      }
1075
1076
1077
1078
1079
1080
1081
1082
1083
1084
1085
1086
1087
1088
1089
    profit->chi2 = dynparam*dynparam*error;
    }
  else
    {
    for (i=npix; i--; lmodpix++)
      {
      val = *(objpix++);
      if ((wval=*(objweight++))>0.0)
        {
        val2 = (val - *lmodpix)*wval;
        *(resit++) = val2;
        error += val2*val2;
        }
      }
    profit->chi2 = error;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1090
1091
1092
1093
1094
1095
1096
    }

  return resi;
  }


/****** profit_resample ******************************************************
1097
PROTO	void	prof_resample(profitstruct *profit, float *inpix,
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1098
1099
1100
1101
1102
1103
		PIXTYPE *outpix)
PURPOSE	Resample the current full resolution model to image resolution.
INPUT	Profile-fitting structure.
OUTPUT	-.
NOTES	-.
AUTHOR	E. Bertin (IAP)
1104
VERSION	07/09/2009
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1105
 ***/
1106
1107
void	profit_resample(profitstruct *profit, float *inpix, PIXTYPE *outpix,
	float factor)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1108
  {
1109
1110
   double	flux;
   float	posin[2], posout[2], dnaxisn[2],
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1111
		*dx,*dy,
1112
		xcout,ycout, xcin,ycin, invpixstep;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1113
1114
   int		d,i;

1115
  xcout = (float)(profit->objnaxisn[0]/2) + 1.0;	/* FITS convention */
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1116
1117
  if ((dx=(profit->paramlist[PARAM_X])))
    xcout += *dx;
1118
  ycout = (float)(profit->objnaxisn[1]/2) + 1.0;	/* FITS convention */
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1119
1120
1121
1122
1123
1124
1125
1126
1127
1128
1129
1130
1131
1132
1133
1134
1135
1136
1137
  if ((dy=(profit->paramlist[PARAM_Y])))
    ycout += *dy;
  xcin = (profit->modnaxisn[0]/2) + 1.0;		/* FITS convention */
  ycin = (profit->modnaxisn[1]/2) + 1.0;		/* FITS convention */
  invpixstep = 1.0/profit->pixstep;

/* Initialize multi-dimensional counters */
  for (d=0; d<2; d++)
    {
    posout[d] = 1.0;					/* FITS convention */
    dnaxisn[d] = profit->objnaxisn[d]+0.5;
    }

/* Remap each pixel */
  flux = 0.0;
  for (i=profit->objnaxisn[0]*profit->objnaxisn[1]; i--;)
    {
    posin[0] = (posout[0] - xcout)*invpixstep + xcin;
    posin[1] = (posout[1] - ycout)*invpixstep + ycin;
1138
    flux += ((*(outpix++) = (PIXTYPE)(factor*interpolate_pix(posin, inpix,
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1139
1140
1141
1142
1143
1144
1145
1146
1147
1148
1149
1150
1151
		profit->modnaxisn, INTERP_LANCZOS3))));
    for (d=0; d<2; d++)
      if ((posout[d]+=1.0) < dnaxisn[d])
        break;
      else
        posout[d] = 1.0;
    }

  return;
  }


/****** profit_convolve *******************************************************
1152
PROTO	void profit_convolve(profitstruct *profit, float *modpix)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1153
1154
1155
1156
1157
1158
1159
1160
PURPOSE	Convolve a model image with the local PSF.
INPUT	Pointer to the profit structure,
	Pointer to the image raster.
OUTPUT	-.
NOTES	-.
AUTHOR	E. Bertin (IAP)
VERSION	15/09/2008
 ***/
1161
void	profit_convolve(profitstruct *profit, float *modpix)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1162
1163
1164
1165
1166
1167
1168
1169
1170
1171
1172
1173
1174
1175
1176
1177
1178
1179
1180
1181
1182
1183
  {
  if (!profit->psfdft)
    profit_makedft(profit);

  fft_conv(modpix, profit->psfdft, profit->modnaxisn);

  return;
  }


/****** profit_makedft *******************************************************
PROTO	void profit_makedft(profitstruct *profit)
PURPOSE	Create the Fourier transform of the descrambled PSF component.
INPUT	Pointer to the profit structure.
OUTPUT	-.
NOTES	-.
AUTHOR	E. Bertin (IAP)
VERSION	22/04/2008
 ***/
void	profit_makedft(profitstruct *profit)
  {
   psfstruct	*psf;
1184
1185
   float      *mask,*maskt, *ppix;
   float       dx,dy, r,r2,rmin,rmin2,rmax,rmax2,rsig,invrsig2;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1186
1187
1188
1189
1190
1191
1192
1193
1194
1195
1196
1197
   int          width,height,npix,offset, psfwidth,psfheight,psfnpix,
                cpwidth, cpheight,hcpwidth,hcpheight, i,j,x,y;

  if (!(psf=profit->psf))
    return;

  psfwidth = profit->modnaxisn[0];
  psfheight = profit->modnaxisn[1];
  psfnpix = psfwidth*psfheight;
  width = profit->modnaxisn[0];
  height = profit->modnaxisn[1];
  npix = width*height;
1198
  QCALLOC(mask, float, npix);
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1199
1200
1201
1202
1203
1204
1205
1206
1207
1208
1209
1210
1211
1212
1213
1214
1215
1216
1217
1218
1219
1220
1221
1222
1223
1224
1225
1226
1227
1228
1229
1230
1231
1232
1233
1234
1235
1236
1237
1238
1239
1240
1241
1242
1243
1244
1245
1246
1247
1248
1249
1250
1251
1252
1253
1254
  cpwidth = (width>psfwidth)?psfwidth:width;
  hcpwidth = cpwidth>>1;
  cpwidth = hcpwidth<<1;
  offset = width - cpwidth;
  cpheight = (height>psfheight)?psfheight:height;
  hcpheight = cpheight>>1;
  cpheight = hcpheight<<1;

/* Frame and descramble the PSF data */
  ppix = profit->psfpix + (psfheight/2)*psfwidth + psfwidth/2;
  maskt = mask;
  for (j=hcpheight; j--; ppix+=psfwidth)
    {
    for (i=hcpwidth; i--;)
      *(maskt++) = *(ppix++);      
    ppix -= cpwidth;
    maskt += offset;
    for (i=hcpwidth; i--;)
      *(maskt++) = *(ppix++);      
    }

  ppix = profit->psfpix + ((psfheight/2)-hcpheight)*psfwidth + psfwidth/2;
  maskt += width*(height-cpheight);
  for (j=hcpheight; j--; ppix+=psfwidth)
    {
    for (i=hcpwidth; i--;)
      *(maskt++) = *(ppix++);      
    ppix -= cpwidth;
    maskt += offset;
    for (i=hcpwidth; i--;)
      *(maskt++) = *(ppix++);      
    }

/* Truncate to a disk that has diameter = (box width) */
  rmax = cpwidth - 1.0 - hcpwidth;
  if (rmax > (r=hcpwidth))
    rmax = r;
  if (rmax > (r=cpheight-1.0-hcpheight))
    rmax = r;
  if (rmax > (r=hcpheight))
    rmax = r;
  if (rmax<1.0)
    rmax = 1.0;
  rmax2 = rmax*rmax;
  rsig = psf->fwhm/profit->pixstep;
  invrsig2 = 1/(2*rsig*rsig);
  rmin = rmax - (3*rsig);     /* 3 sigma annulus (almost no aliasing) */
  rmin2 = rmin*rmin;

  maskt = mask;
  dy = 0.0;
  for (y=hcpheight; y--; dy+=1.0)
    {
    dx = 0.0;
    for (x=hcpwidth; x--; dx+=1.0, maskt++)
      if ((r2=dx*dx+dy*dy)>rmin2)
1255
        *maskt *= (r2>rmax2)?0.0:expf((2*rmin*sqrtf(r2)-r2-rmin2)*invrsig2);
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1256
1257
1258
1259
    dx = -hcpwidth;
    maskt += offset;
    for (x=hcpwidth; x--; dx+=1.0, maskt++)
      if ((r2=dx*dx+dy*dy)>rmin2)
1260
        *maskt *= (r2>rmax2)?0.0:expf((2*rmin*sqrtf(r2)-r2-rmin2)*invrsig2);
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1261
1262
1263
1264
1265
1266
1267
1268
    }
  dy = -hcpheight;
  maskt += width*(height-cpheight);
  for (y=hcpheight; y--; dy+=1.0)
    {
    dx = 0.0;
    for (x=hcpwidth; x--; dx+=1.0, maskt++)
      if ((r2=dx*dx+dy*dy)>rmin2)
1269
        *maskt *= (r2>rmax2)?0.0:expf((2*rmin*sqrtf(r2)-r2-rmin2)*invrsig2);
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1270
1271
1272
1273
    dx = -hcpwidth;
    maskt += offset;
    for (x=hcpwidth; x--; dx+=1.0, maskt++)
      if ((r2=dx*dx+dy*dy)>rmin2)
1274
        *maskt *= (r2>rmax2)?0.0:expf((2*rmin*sqrtf(r2)-r2-rmin2)*invrsig2);
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1275
1276
1277
1278
1279
1280
1281
1282
1283
1284
1285
1286
1287
1288
1289
1290
1291
1292
1293
1294
1295
    }

/* Finally move to Fourier space */
  profit->psfdft = fft_rtf(mask, profit->modnaxisn);

  free(mask);

  return;
  }


/****** profit_copyobjpix *****************************************************
PROTO	int profit_copyobjpix(profitstruct *profit, picstruct *field,
			picstruct *wfield)
PURPOSE	Copy a piece of the input field image to a profit structure.
INPUT	Pointer to the profit structure,
	Pointer to the field structure,
	Pointer to the field weight structure.
OUTPUT	The number of valid pixels copied.
NOTES	Global preferences are used.
AUTHOR	E. Bertin (IAP)
1296
VERSION	07/10/2009
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1297
1298
1299
1300
 ***/
int	profit_copyobjpix(profitstruct *profit, picstruct *field,
			picstruct *wfield)
  {
1301
1302
1303
1304
1305
   float	dx, dy2, dr2, rad2;
   PIXTYPE	*pixin,*spixin, *wpixin,*swpixin, *pixout,*wpixout,
		backnoise2, invgain, satlevel, wthresh, pix,spix, wpix,swpix;
   int		i,x,y, xmin,xmax,ymin,ymax, w,h,dw, npix, off, gainflag,
		badflag, sflag, sx,sy,sn,sw, rem, ix,iy;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1306
1307
1308
1309

/* First put the image background to -BIG */
  pixout = profit->objpix;
  wpixout = profit->objweight;
1310
  for (i=profit->objnaxisn[0]*profit->objnaxisn[1]; i--;)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1311
1312
1313
1314
1315
1316
1317
1318
1319
1320
1321
1322
    {
    *(pixout++) = -BIG;
    *(wpixout++) = 0.0;
    }

/* Don't go further if out of frame!! */
  ix = profit->ix;
  iy = profit->iy;
  if (ix<0 || ix>=field->width || iy<field->ymin || iy>=field->ymax)
    return 0;

  backnoise2 = field->backsig*field->backsig;
1323
1324
1325
1326
1327
1328
  sn = (int)profit->nsubsamp;
  sflag = (sn>1);
  w = profit->objnaxisn[0]*sn;
  h = profit->objnaxisn[1]*sn;
  if (sflag)
    backnoise2 *= (PIXTYPE)sn;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1329
1330
1331
1332
1333
1334
1335
1336
1337
1338
1339
1340
1341
1342
  invgain = (field->gain > 0.0) ? 1.0/field->gain : 0.0;
  satlevel = field->satur_level - profit->obj->bkg;
  rad2 = h/2.0;
  if (rad2 > w/2.0)
    rad2 = w/2.0;
  rad2 *= rad2;

/* Set the image boundaries */
  pixout = profit->objpix;
  wpixout = profit->objweight;
  ymin = iy-h/2;
  ymax = ymin + h;
  if (ymin<field->ymin)
    {
1343
1344
1345
1346
    off = (field->ymin-ymin-1)/sn + 1;
    pixout += off*profit->objnaxisn[0];
    wpixout += off*profit->objnaxisn[0];
    ymin += off*sn;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1347
1348
    }
  if (ymax>field->ymax)
1349
    ymax -= ((ymax-field->ymax-1)/sn + 1)*sn;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1350
1351
1352

  xmin = ix-w/2;
  xmax = xmin + w;
1353
  dw = 0;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1354
1355
  if (xmax>field->width)
    {
1356
1357
1358
    off = (xmax-field->width-1)/sn + 1;
    dw += off;
    xmax -= off*sn;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1359
1360
1361
    }
  if (xmin<0)
    {
1362
1363
1364
1365
1366
1367
1368
1369
1370
1371
1372
1373
1374
1375
1376
1377
1378
1379
1380
1381
1382
1383
1384
1385
1386
    off = (-xmin-1)/sn + 1;
    pixout += off;
    wpixout += off;
    dw += off;
    xmin += off*sn;
    }
/* Make sure the input frame size is a multiple of the subsampling step */
  if (sflag)
    {
/*
    if (((rem=ymax-ymin)%sn))
      {
      ymin += rem/2;
      ymax -= (rem-rem/2);
      }
    if (((rem=xmax-xmin)%sn))
      {
      xmin += rem/2;
      pixout += rem/2;
      wpixout += rem/2;
      dw += rem;
      xmax -= (rem-rem/2);
      }
*/
    sw = field->width;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1387
1388
1389
1390
1391
1392
1393
1394
    }

/* Copy the right pixels to the destination */
  npix = 0;
  if (wfield)
    {
    wthresh = wfield->weight_thresh;
    gainflag = prefs.weightgain_flag;
1395
    if (sflag)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1396
      {
1397
1398
/*---- Sub-sampling case */
      for (y=ymin; y<ymax; y+=sn, pixout+=dw,wpixout+=dw)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1399
        {
1400
        for (x=xmin; x<xmax; x+=sn)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1401
          {
1402
1403
1404
1405
1406
1407
1408
1409
1410
1411
1412
1413
1414
1415
1416
1417
1418
1419
1420
1421
1422
1423
1424
1425
1426
1427
1428
1429
          pix = wpix = 0.0;
          badflag = 0;
          for (sy=0; sy<sn; sy++)
            {
            dy2 = (y+sy-iy);
            dy2 *= dy2;
            dx = (x-ix);
            spixin = &PIX(field, x, y+sy);
            swpixin = &PIX(wfield, x, y+sy);
            for (sx=sn; sx--;)
              {
              dr2 = dy2 + dx*dx;
              dx++;
              spix = *(spixin++);
              swpix = *(swpixin++);
              if (dr2<rad2 && spix>-BIG && spix<satlevel && swpix<wthresh)
                {
                pix += spix;
                wpix += swpix;
                }
              else
                badflag=1;
              }
            }
          *(pixout++) = pix;
          if (!badflag)	/* A single bad pixel ruins is all (saturation, etc.)*/
            {
            *(wpixout++) = 1.0 / sqrt(wpix+(pix>0.0?
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1430
		(gainflag? pix*wpix/backnoise2:pix)*invgain : 0.0));
1431
1432
1433
1434
            npix++;
            }
          else
            *(wpixout++) = 0.0;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1435
1436
1437
          }
        }
      }
1438
1439
1440
1441
1442
1443
1444
1445
1446
1447
1448
1449
1450
1451
1452
1453
1454
1455
1456
1457
1458
1459
1460
1461
    else
      for (y=ymin; y<ymax; y++, pixout+=dw,wpixout+=dw)
        {
        dy2 = y-iy;
        dy2 *= dy2;
        pixin = &PIX(field, xmin, y);
        wpixin = &PIX(wfield, xmin, y);
        for (x=xmin; x<xmax; x++)
          {
          dx = x-ix;
          dr2 = dy2 + dx*dx;
          pix = *(pixin++);
          wpix = *(wpixin++);
          if (dr2<rad2 && pix>-BIG && pix<satlevel && wpix<wthresh)
            {
            *(pixout++) = pix;
            *(wpixout++) = 1.0 / sqrt(wpix+(pix>0.0?
		(gainflag? pix*wpix/backnoise2:pix)*invgain : 0.0));
            npix++;
            }
          else
            *(pixout++) = *(wpixout++) = 0.0;
          }
        }
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1462
1463
    }
  else
1464
1465
    {
    if (sflag)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1466
      {
1467
1468
/*---- Sub-sampling case */
      for (y=ymin; y<ymax; y+=sn, pixout+=dw, wpixout+=dw)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1469
        {
1470
        for (x=xmin; x<xmax; x+=sn)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1471
          {
1472
1473
1474
1475
1476
1477
1478
1479
1480
1481
1482
1483
1484
1485
1486
1487
1488
1489
1490
1491
1492
1493
1494
1495
1496
1497
1498
          pix = 0.0;
          badflag = 0;
          for (sy=0; sy<sn; sy++)
            {
            dy2 = y+sy-iy;
            dy2 *= dy2;
            dx = x-ix;
            spixin = &PIX(field, x, y+sy);
            for (sx=sn; sx--;)
              {
              dr2 = dy2 + dx*dx;
              dx++;
              spix = *(spixin++);
              if (dr2<rad2 && spix>-BIG && spix<satlevel)
                pix += spix;
              else
                badflag=1;
              }
            }
          *(pixout++) = pix;
          if (!badflag)	/* A single bad pixel ruins is all (saturation, etc.)*/
            {
            *(wpixout++) = 1.0 / sqrt(backnoise2 + (pix>0.0?pix*invgain:0.0));
            npix++;
            }
          else
            *(wpixout++) = 0.0;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1499
1500
1501
          }
        }
      }
1502
1503
1504
1505
1506
1507
1508
1509
1510
1511
1512
1513
1514
1515
1516
1517
1518
1519
1520
1521
1522
1523
    else
      for (y=ymin; y<ymax; y++, pixout+=dw,wpixout+=dw)
        {
        dy2 = y-iy;
        dy2 *= dy2;
        pixin = &PIX(field, xmin, y);
        for (x=xmin; x<xmax; x++)
          {
          dx = x-ix;
          dr2 = dy2 + dx*dx;
          pix = *(pixin++);
          if (dr2<rad2 && pix>-BIG && pix<satlevel)
            {
            *(pixout++) = pix;
            *(wpixout++) = 1.0 / sqrt(backnoise2 + (pix>0.0?pix*invgain : 0.0));
            npix++;
            }
          else
            *(pixout++) = *(wpixout++) = 0.0;
          }
        }
    }
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1524
1525
1526
1527
1528
1529
 
  return npix;
  }


/****** profit_spiralindex ****************************************************
1530
PROTO	float profit_spiralindex(profitstruct *profit)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1531
1532
1533
1534
1535
1536
1537
1538
1539
PURPOSE	Compute the spiral index of a galaxy image (positive for arms
	extending counter-clockwise and negative for arms extending CW, 0 for
	no spiral pattern).
INPUT	Profile-fitting structure.
OUTPUT	Vector of residuals.
NOTES	-.
AUTHOR	E. Bertin (IAP)
VERSION	18/09/2008
 ***/
1540
float profit_spiralindex(profitstruct *profit)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1541
1542
1543
  {
   objstruct	*obj;
   obj2struct	*obj2;
1544
   float	*dx,*dy, *fdx,*fdy, *gdx,*gdy, *gdxt,*gdyt, *pix,
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1545
1546
1547
1548
1549
1550
1551
1552
1553
1554
1555
1556
1557
1558
1559
1560
		fwhm, invtwosigma2, hw,hh, ohw,ohh, x,y,xstart, tx,ty,txstart,
		gx,gy, r2, spirindex, invsig, val, sep;
   PIXTYPE	*fpix;
   int		i,j, npix;

  npix = profit->objnaxisn[0]*profit->objnaxisn[1];

  obj = profit->obj;
  obj2 = profit->obj2;
/* Compute simple derivative vectors at a fraction of the object scale */
  fwhm = obj2->hl_radius * 2.0 / 4.0;
  if (fwhm < 2.0)
    fwhm = 2.0;
  sep = 2.0;

  invtwosigma2 = -(2.35*2.35/(2.0*fwhm*fwhm));
1561
  hw = (float)(profit->objnaxisn[0]/2);
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1562
  ohw = profit->objnaxisn[0] - hw;
1563
  hh = (float)(profit->objnaxisn[1]/2);
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1564
1565
1566
  ohh = profit->objnaxisn[1] - hh;
  txstart = -hw;
  ty = -hh;
1567
  QMALLOC(dx, float, npix);
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1568
1569
1570
1571
1572
1573
1574
1575
1576
1577
1578
1579
  pix = dx;
  for (j=profit->objnaxisn[1]; j--; ty+=1.0)
    {
    tx = txstart;
    y = ty < -0.5? ty + hh : ty - ohh;
    for (i=profit->objnaxisn[0]; i--; tx+=1.0)
      {
      x = tx < -0.5? tx + hw : tx - ohw;
      *(pix++) = exp(invtwosigma2*((x+sep)*(x+sep)+y*y))
		- exp(invtwosigma2*((x-sep)*(x-sep)+y*y));
      }
    }
1580
  QMALLOC(dy, float, npix);
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1581
1582
1583
1584
1585
1586
1587
1588
1589
1590
1591
1592
1593
1594
  pix = dy;
  ty = -hh;
  for (j=profit->objnaxisn[1]; j--; ty+=1.0)
    {
    tx = txstart;
    y = ty < -0.5? ty + hh : ty - ohh;
    for (i=profit->objnaxisn[0]; i--; tx+=1.0)
      {
      x = tx < -0.5? tx + hw : tx - ohw;
      *(pix++) = exp(invtwosigma2*(x*x+(y+sep)*(y+sep)))
		- exp(invtwosigma2*(x*x+(y-sep)*(y-sep)));
      }
    }

1595
  QMALLOC(gdx, float, npix);
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1596
1597
1598
1599
1600
1601
1602
1603
1604
  gdxt = gdx;
  fpix = profit->objpix;
  invsig = npix/profit->sigma;
  for (i=npix; i--; fpix++)
    {
    val = *fpix > -1e29? *fpix*invsig : 0.0;
    *(gdxt++) = (val>0.0? log(1.0+val) : -log(1.0-val));
    }
  gdy = NULL;			/* to avoid gcc -Wall warnings */
1605
  QMEMCPY(gdx, gdy, float, npix);
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1606
1607
1608
1609
1610
1611
1612
1613
1614
1615
1616
1617
1618
1619
1620
1621
1622
1623
1624
1625
1626
1627
1628
1629
1630
1631
1632
1633
1634
1635
1636
1637
1638
1639
1640
1641
1642
  fdx = fft_rtf(dx, profit->objnaxisn);
  fft_conv(gdx, fdx, profit->objnaxisn);
  fdy = fft_rtf(dy, profit->objnaxisn);
  fft_conv(gdy, fdy, profit->objnaxisn);

/* Compute estimator */
  invtwosigma2 = -1.18*1.18 / (2.0*obj2->hl_radius*obj2->hl_radius);
  xstart = -hw - obj->mx + (int)(obj->mx+0.49999);
  y = -hh -  obj->my + (int)(obj->my+0.49999);;
  spirindex = 0.0;
  gdxt = gdx;
  gdyt = gdy;
  for (j=profit->objnaxisn[1]; j--; y+=1.0)
    {
    x = xstart;
    for (i=profit->objnaxisn[0]; i--; x+=1.0)
      {
      gx = *(gdxt++);
      gy = *(gdyt++);
      if ((r2=x*x+y*y)>0.0)
        spirindex += (x*y*(gx*gx-gy*gy)+gx*gy*(y*y-x*x))/r2
			* exp(invtwosigma2*r2);
      }
    }

  free(dx);
  free(dy);
  free(fdx);
  free(fdy);
  free(gdx);
  free(gdy);

  return spirindex;
  }


/****** profit_moments ****************************************************
1643
PROTO	void profit_moments(profitstruct *profit, obj2struct *obj2)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1644
PURPOSE	Compute the 2nd order moments from the unconvolved object model.
1645
1646
INPUT	Profile-fitting structure,
	Pointer to obj2 structure.
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1647
1648
1649
OUTPUT	-.
NOTES	-.
AUTHOR	E. Bertin (IAP)
1650
VERSION	17/09/2009
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1651
 ***/
1652
void	 profit_moments(profitstruct *profit, obj2struct *obj2)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1653
  {
1654
   double	mx,my, sum, mx2,my2,mxy, den, temp,temp2,pmx2,theta;
1655
1656
   float	*pix,
		hw,hh, x,y, xstart, val, r2max;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1657
1658
   int		ix,iy;

1659
1660
  hw = (float)(profit->modnaxisn[0]/2);
  hh = (float)(profit->modnaxisn[1]/2);
1661
  r2max = hw<hh? hw*hw : hh*hh;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1662
1663
1664
1665
1666
1667
1668
1669
  xstart = -hw;
  y = -hh;
  pix = profit->modpix;
  mx2 = my2 = mxy = mx = my = sum = 0.0;
  for (iy=profit->modnaxisn[1]; iy--; y+=1.0)
    {
    x = xstart;
    for (ix=profit->modnaxisn[0]; ix--; x+=1.0)
1670
1671
1672
1673
1674
1675
1676
1677
1678
1679
1680
1681
      if (y*y+x*x <= r2max)
        {
        val = *(pix++);
        sum += val;
        mx  += val*x;
        my  += val*y;
        mx2 += val*x*x;
        mxy += val*x*y;
        my2 += val*y*y;
        }
      else
        pix++;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1682
1683
1684
1685
1686
1687
1688
1689
1690
    }

  if (sum <= 1.0/BIG)
    sum = 1.0;
  mx /= sum;
  my /= sum;
  obj2->prof_mx2 = mx2 = mx2/sum - mx*mx;
  obj2->prof_my2 = my2 = my2/sum - my*my;
  obj2->prof_mxy = mxy = mxy/sum - mx*my;
1691
1692
1693

/* Handle fully correlated profiles (which cause a singularity...) */
  if ((temp2=mx2*my2-mxy*mxy)<0.00694)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1694
    {
1695
1696
1697
1698
1699
1700
1701
1702
1703
1704
1705
1706
1707
1708
1709
1710
1711
1712
    mx2 += 0.0833333;
    my2 += 0.0833333;
    temp2 = mx2*my2-mxy*mxy;
    }

  if (FLAG(obj2.prof_e1))
    {
    if (mx2+my2 > 1.0/BIG)
      {
      obj2->prof_pol1 = (mx2 - my2) / (mx2+my2);
      obj2->prof_pol2 = 2.0*mxy / (mx2 + my2);
      if (temp2>=0.0)
        den = mx2+my2+2.0*sqrt(temp2);
      else
        den = mx2+my2;
      obj2->prof_e1 = (mx2 - my2) / den;
      obj2->prof_e2 = 2.0*mxy / den;
      }
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1713
    else
1714
      obj2->prof_pol1 = obj2->prof_pol2 = obj2->prof_e1 = obj2->prof_e2 = 0.0;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1715
    }
1716
1717
1718
1719
1720
1721
1722
1723
1724
1725
1726
1727
1728
1729
1730
1731
1732
1733
1734
1735
1736
1737

  if (FLAG(obj2.prof_cxx))
    {
    obj2->prof_cxx = (float)(my2/temp2);
    obj2->prof_cyy = (float)(mx2/temp2);
    obj2->prof_cxy = (float)(-2*mxy/temp2);
    }

  if (FLAG(obj2.prof_a))
    {
    if ((fabs(temp=mx2-my2)) > 0.0)
      theta = atan2(2.0 * mxy,temp) / 2.0;
    else
      theta = PI/4.0;

    temp = sqrt(0.25*temp*temp+mxy*mxy);
    pmx2 = 0.5*(mx2+my2);
    obj2->prof_a = (float)sqrt(pmx2 + temp);
    obj2->prof_b = (float)sqrt(pmx2 - temp);
    obj2->prof_theta = theta*180.0/PI;
    }

Emmanuel Bertin's avatar
Emmanuel Bertin committed
1738
1739
1740
1741
1742

  return;
  }


1743
1744
1745
1746
1747
1748
1749
1750
1751
1752
1753
1754
1755
1756
1757
1758
1759
1760
1761
1762
1763
1764
1765
1766
1767
1768
1769
1770
1771
1772
1773
1774
1775
1776
1777
1778
1779
1780
1781
1782
1783
1784
1785
1786
1787
1788
1789
1790
1791
1792
1793
1794
1795
1796
1797
1798
1799
1800
1801
1802
1803
1804
1805
1806
1807
1808
1809
1810
1811
1812
1813
1814
/****** profit_surface ****************************************************
PROTO	void profit_surface(profitstruct *profit, obj2struct *obj2,
			double lostfluxfrac)
PURPOSE	Compute surface brightnesses from the unconvolved object model.
INPUT	Pointer to the profile-fitting structure,
	Pointer to obj2 structure,
	Fraction of total flux lost in model.
OUTPUT	-.
NOTES	-.
AUTHOR	E. Bertin (IAP)
VERSION	21/09/2009
 ***/
void	 profit_surface(profitstruct *profit, obj2struct *obj2,
			double lostfluxfrac)
  {
   double	dsum,dhsum,dsumoff, dhval, frac, seff;
   float	*spix, *spixt;
   int		i, npix, neff;

  npix = profit->modnaxisn[0]*profit->modnaxisn[1];
/* Sort model pixel values */
  spix = NULL;				/* to avoid gcc -Wall warnings */
  QMEMCPY(profit->modpix, spix, float, npix);
  hmedian(spix, npix);
  obj2->peak_prof = spix[npix-1];

  if (FLAG(obj2.fluxeff_prof))
    {
/*-- Build a cumulative distribution */
    dsum = 0.0;
    spixt = spix;
    for (i=npix; i--;)
      dsum += (double)*(spixt++);
/*-- Find matching surface brightness */
    if (lostfluxfrac > 1.0)
      lostfluxfrac = 0.0;
    dhsum = 0.5 * dsum / (1.0-lostfluxfrac);
    dsum = lostfluxfrac * dsum / (1.0-lostfluxfrac);
    neff = 0;
    spixt = spix;
    for (i=npix; i--;)
      if ((dsum += (double)*(spixt++)) >= dhsum)
        {
        neff = i;
        break;
        }
    dhval = (double)*(spixt-1);
    seff = neff;
    dsumoff = 0.0;
    if (spixt>=spix+2)
      if (dhval > 0.0 && (frac = (dsum - dhsum) / dhval) < 1.0)
        {
        seff += frac;
        dsumoff = frac*dhval;
        dhval = dsumoff + (1.0 - frac)*(double)*(spixt-2);
        }
    obj2->fluxeff_prof = dhval;
    if (FLAG(obj2.fluxmean_prof))
      {
      dsum = dsumoff;
      for (i=neff; i--;)
        dsum += (double)*(spixt++);
      obj2->fluxmean_prof = seff > 0.0? dsum / seff : 0.0;
      }
    }

  free(spix);

  return;
  }


Emmanuel Bertin's avatar
Emmanuel Bertin committed
1815
1816
/****** profit_addparam *******************************************************
PROTO	void profit_addparam(profitstruct *profit, paramenum paramindex,
1817
		float **param)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1818
1819
1820
1821
1822
1823
1824
1825
1826
1827
PURPOSE	Add a profile parameter to the list of fitted items.
INPUT	Pointer to the profit structure,
	Parameter index,
	Pointer to the parameter pointer.
OUTPUT	-.
NOTES	-.
AUTHOR	E. Bertin (IAP)
VERSION	29/03/2007
 ***/
void	profit_addparam(profitstruct *profit, paramenum paramindex,
1828
		float **param)
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1829
1830
1831
1832
1833
1834
1835
1836
1837
1838
1839
1840
1841
1842
1843
1844
1845
1846
1847
1848
1849
1850
1851
1852
1853
1854
1855
1856
1857
1858
  {
/* Check whether the parameter has already be registered */
  if (profit->paramlist[paramindex])
/*-- Yes */
    *param = profit->paramlist[paramindex];
  else
/*-- No */
    {
    *param = profit->paramlist[paramindex] = &profit->param[profit->nparam];
    profit->paramindex[paramindex] = profit->nparam++;
    }

  return;
  }


/****** profit_resetparam ****************************************************
PROTO	void profit_resetparam(profitstruct *profit, paramenum paramtype)
PURPOSE	Set the initial, lower and upper boundary values of a profile parameter.
INPUT	Pointer to the profit structure,
	Parameter index.
OUTPUT	-.
NOTES	-.
AUTHOR	E. Bertin (IAP)
VERSION	25/09/2008
 ***/
void	profit_resetparam(profitstruct *profit, paramenum paramtype)
  {
   objstruct	*obj;
   obj2struct	*obj2;
1859
   float	param, parammin,parammax;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1860
1861
1862
1863

  obj = profit->obj;
  obj2 = profit->obj2;
  param = parammin = parammax = 0.0;	/* Avoid gcc -Wall warnings*/
1864

Emmanuel Bertin's avatar
Emmanuel Bertin committed
1865
1866
1867
1868
1869
1870
1871
1872
1873
1874
1875
1876
1877
1878
1879
1880
1881
1882
1883
1884
1885
1886
1887
1888
1889
1890
1891
1892
1893
1894
1895
1896
1897
1898
1899
1900
1901
1902
1903
1904
1905
1906
1907
1908
1909
1910
1911
1912
1913
  switch(paramtype)
    {
    case PARAM_BACK:
      param = 0.0;
      parammin = -6.0*obj->sigbkg;
      parammax =  6.0*obj->sigbkg;
      break;
    case PARAM_X:
      param = obj->mx - (int)(obj->mx+0.49999);
      parammin = -obj2->hl_radius*4;
      parammax =  obj2->hl_radius*4;
      break;
    case PARAM_Y:
      param = obj->my - (int)(obj->my+0.49999);
      parammin = -obj2->hl_radius*4;
      parammax =  obj2->hl_radius*4;
      break;
    case PARAM_SPHEROID_FLUX:
      param = obj2->flux_auto/2.0;
      parammin = -obj2->flux_auto/1000.0;
      parammax = 2*obj2->flux_auto;
      break;
    case PARAM_SPHEROID_REFF:
      param = obj2->hl_radius;
      parammin = 0.1;
      parammax = param * 4.0;
      break;
    case PARAM_SPHEROID_ASPECT:
      param = FLAG(obj2.prof_disk_flux)? 1.0 : obj->b/obj->a;
      parammin = FLAG(obj2.prof_disk_flux)? 0.5 : 0.01;
      parammax = 1.0;
      break;
    case PARAM_SPHEROID_POSANG:
      param = obj->theta;
      parammin = 0.0;
      parammax =  0.0;
      break;
    case PARAM_SPHEROID_SERSICN:
      param = 4.0;
      parammin = 1.0;
      parammax = 10.0;
      break;
    case PARAM_DISK_FLUX:
      param = obj2->flux_auto/2.0;
      parammin = -obj2->flux_auto/1000.0;
      parammax = 2*obj2->flux_auto;
      break;
    case PARAM_DISK_SCALE:	/* From scalelength to Re */
      param = obj2->hl_radius/1.67835*sqrt(obj->a/obj->b);
1914
      parammin = param/4.0;
Emmanuel Bertin's avatar
Emmanuel Bertin committed
1915
1916
1917
1918
1919
1920
1921
1922
1923
1924
1925
1926
1927
1928
1929
1930
1931
1932
1933
1934
1935
1936
1937
1938
1939
1940
1941
1942
1943
1944
1945
1946
1947
1948
1949
1950
1951
1952
1953
1954
1955
1956
1957
1958
1959
1960
1961
1962
1963
1964
1965
1966
1967
1968
1969
1970
1971
1972
1973
1974
1975
1976
1977
1978
1979
1980
1981
1982
1983
1984
1985
1986
1987
1988
1989
1990
1991
1992
1993
1994
1995
1996
1997
1998
1999
2000
      parammax = param * 4.0;
      break;
    case PARAM_DISK_ASPECT:
      param = obj->b/obj->a;
      parammin = 0.01;
      parammax = 1.0;
      break;
    case PARAM_DISK_POSANG:
      param = obj->theta;
      parammin = 0.0;
      parammax =  0.0;
      break;
    case PARAM_ARMS_FLUX:
      param = obj2->flux_auto/2.0;
      parammin = 0.0;
      parammax = obj2->flux_auto*2.0;
      break;
    case PARAM_ARMS_QUADFRAC:
      param = 0.5;
      parammin = 0.0;
      parammax = 1.0;
      break;
    case PARAM_ARMS_SCALE:
      param = 1.0;
      parammin = 0.5;
      parammax = 10.0;
      break;
    case PARAM_ARMS_START:
      param = 0.5;
      parammin = 0.0;
      parammax = 3.0;
      break;
    case PARAM_ARMS_PITCH:
      param = 20.0;
      parammin = 5.0;
      parammax = 50.0;
      break;
    case PARAM_ARMS_PITCHVAR:
      param = 0.0;
      parammin = -1.0;
      parammax = 1.0;
      break;
//      if ((profit->spirindex=profit_spiralindex(profit, obj, obj2)) > 0.0)
//        {
//        param = -param;
//        parammin = -parammax;
//        parammax = -parammin;
//        }
//      printf("spiral index: %g  \n", profit->spirindex);
//      break;
    case PARAM_ARMS_POSANG:
      param = 0.0;
      parammin = 0.0;
      parammax = 0.0;
      break;
    case PARAM_ARMS_WIDTH:
      param = 3.0;
      parammin = 1.5;
      parammax = 11.0;
      break;
    case PARAM_BAR_FLUX:
      param = obj2->flux_auto/10.0;
      parammin = 0.0;
      parammax = 2.0*obj2->flux_auto;
      break;
    case PARAM_BAR_ASPECT:
      param = 0.3;
      parammin = 0.2;
      parammax = 0.5;
      break;
    case PARAM_BAR_POSANG:
      param = 0.0;
      parammin = 0.0;
      parammax = 0.0;
      break;
    case PARAM_INRING_FLUX:
      param = obj2->flux_auto/10.0;
      parammin = 0.0;
      parammax = 2.0*obj2->flux_auto;
      break;
    case PARAM_INRING_WIDTH:
      param = 0.3;
      parammin = 0.0;
      parammax = 0.5;
      break;
    case PARAM_INRING_ASPECT:
For faster browsing, not all history is shown. View entire blame