49 cpl_frameset * frameset,
50 char * input_data_type)
52 cpl_propertylist * idp_plist = cpl_propertylist_new ();
58 cpl_table * oi_vis2_SC_allpol = NULL;
59 cpl_table * oi_T3_SC_allpol = NULL;
60 cpl_table * oi_wave_SC_allpol = NULL;
71 for (
int pol = 1; pol < npol_sc; pol++) {
77 for (
int pol = 0; pol < npol_sc; pol++) {
79 vis2err += this_pol_vis2err * this_pol_vis2err;
81 visphierr += this_pol_visphierr * this_pol_visphierr;
83 t3phierr += this_pol_t3phierr * this_pol_t3phierr;
87 sprintf (qc_name,
"VIS2ERR");
89 cpl_propertylist_set_comment (idp_plist, qc_name,
"Representative squared visibility error [%]");
91 sprintf (qc_name,
"VISPHERR");
93 cpl_propertylist_set_comment (idp_plist, qc_name,
"Representative visibility phase error [%]");
95 sprintf (qc_name,
"T3PHIERR");
97 cpl_propertylist_set_comment (idp_plist, qc_name,
"Representative closure phase error [deg]");
99 double min_uvcoord, max_uvcoord;
102 cpl_vector * baselines = cpl_vector_new(
GRAVI_NBASE*2);
103 for (cpl_size ibase=0; ibase <
GRAVI_NBASE; ibase++)
107 cpl_vector_set(baselines, 2*ibase, bl_start);
108 cpl_vector_set(baselines, 2*ibase + 1, bl_end);
110 double base_max = cpl_vector_get_max(baselines);
111 double base_min = cpl_vector_get_min(baselines);
113 sprintf (qc_name,
"BASE_MAX");
115 cpl_propertylist_set_comment (idp_plist, qc_name,
"[m] Maximum baseline");
117 sprintf (qc_name,
"BASE_MIN");
119 cpl_propertylist_set_comment (idp_plist, qc_name,
"[m] Minimum baseline");
123 sprintf (qc_name,
"NUM_CHAN");
124 cpl_propertylist_update_int (idp_plist, qc_name, cpl_table_get_nrow(oi_wave_SC_allpol) / npol_sc );
125 cpl_propertylist_set_comment (idp_plist, qc_name,
"Number of wavelength channels");
128 double min_eff_wave = cpl_table_get_column_min(oi_wave_SC_allpol,
"EFF_WAVE");
129 double max_eff_wave = cpl_table_get_column_max(oi_wave_SC_allpol,
"EFF_WAVE");
131 sprintf (qc_name,
"WAVELMAX");
132 cpl_size max_eff_wave_pos;
133 cpl_table_get_column_maxpos(oi_wave_SC_allpol,
"EFF_WAVE", &max_eff_wave_pos);
134 double band_max_eff_wave = cpl_table_get_float(oi_wave_SC_allpol,
"EFF_BAND", max_eff_wave_pos, &null_flag);
136 cpl_propertylist_set_comment (idp_plist, qc_name,
"[nm] Maximum wavelength");
138 sprintf (qc_name,
"WAVELMIN");
139 cpl_size min_eff_wave_pos;
140 cpl_table_get_column_minpos(oi_wave_SC_allpol,
"EFF_WAVE", &min_eff_wave_pos);
141 double band_min_eff_wave = cpl_table_get_float(oi_wave_SC_allpol,
"EFF_BAND", min_eff_wave_pos, &null_flag);
143 cpl_propertylist_set_comment (idp_plist, qc_name,
"[nm] Minimum wavelength");
146 for (
int pol = 0; pol < npol_sc; pol++) {
148 double this_spec_bin = cpl_table_get_column_mean(this_wave_table,
"EFF_BAND");
149 if (this_spec_bin > spec_bin)
150 spec_bin = this_spec_bin;
152 sprintf (qc_name,
"SPEC_BIN");
154 cpl_propertylist_set_comment (idp_plist, qc_name,
"[nm] Average spectral coordinate bin size");
156 cpl_table_duplicate_column(oi_wave_SC_allpol,
"SPEC_RES", oi_wave_SC_allpol,
"EFF_WAVE");
157 cpl_table_divide_columns(oi_wave_SC_allpol,
"SPEC_RES",
"EFF_BAND");
159 sprintf (qc_name,
"SPEC_RES");
161 cpl_propertylist_set_comment (idp_plist, qc_name,
"Spectral resolution");
165 sprintf (qc_name,
"EXPTIME");
166 double mean_int_time = 0.0;
167 cpl_size valid_elem = 0;
168 cpl_size nrow = cpl_table_get_nrow (oi_vis2_SC_allpol);
169 double * inttime = cpl_table_get_data_double (oi_vis2_SC_allpol,
"INT_TIME");
170 for (cpl_size r=0; r<nrow;r++)
174 mean_int_time += inttime[r];
180 mean_int_time = mean_int_time / valid_elem;
182 cpl_propertylist_set_comment (idp_plist, qc_name,
"Exposure time");
186 if(!cpl_propertylist_has(
header,
"TEXPTIME"))
189 for (
int pol = 0; pol < npol_sc; pol++) {
191 double this_pol_texptime = 0;
192 cpl_size nsets = cpl_table_get_nrow(this_pol_table) /
GRAVI_NBASE ;
193 for (cpl_size set = 0 ; set < nsets ; set++)
197 this_pol_texptime += max_int_time;
198 cpl_table_delete(int_time_this_set);
200 texptime = fmax(texptime, this_pol_texptime);
203 sprintf (qc_name,
"TEXPTIME");
205 cpl_propertylist_set_comment (idp_plist, qc_name,
"Total exposure time");
210 cpl_propertylist_get_double(
header,
"TEXPTIME") );
211 cpl_propertylist_set_comment (idp_plist,
"TEXPTIME",
"Total exposure time");
216 cpl_propertylist_update_string (idp_plist,
"PRODCATG",
"SCIENCE.VISIBILITY");
217 cpl_propertylist_set_comment (idp_plist,
"PRODCATG",
"Data product category");
220 if(input_data_type != NULL)
222 if(strcmp(input_data_type,
"raw_science") == 0 || strcmp(input_data_type,
"raw_calibrator") == 0 )
224 cpl_propertylist_update_string (idp_plist,
"VISCAL",
"UNCALIBRATED");
225 cpl_propertylist_set_comment (idp_plist,
"VISCAL",
"Type of visibilities");
227 if(strcmp(input_data_type,
"vis_science") == 0 || strcmp(input_data_type,
"vis_calibrator") == 0 )
229 cpl_propertylist_update_string (idp_plist,
"VISCAL",
"CALIBRATED");
230 cpl_propertylist_set_comment (idp_plist,
"VISCAL",
"Type of visibilities");
235 double mjd_obs_first = DBL_MAX;
238 const cpl_frame *frame;
240 cpl_frameset_iterator *it = cpl_frameset_iterator_new(science_frames);
241 while ((frame = cpl_frameset_iterator_get(it)) != NULL) {
242 cpl_propertylist * this_frame_header = cpl_propertylist_load(cpl_frame_get_filename(frame), 0);
244 if (mjd_obs < mjd_obs_first)
245 mjd_obs_first = mjd_obs;
246 cpl_frameset_iterator_advance(it, 1);
247 cpl_propertylist_delete(this_frame_header);
249 cpl_frameset_delete(science_frames);
250 cpl_frameset_iterator_delete(it);
252 if (mjd_obs_first == DBL_MAX)
255 cpl_propertylist_set_comment (idp_plist,
"MJD-OBS",
"Start of observation");
258 double mjd_obs_last = 0;
259 double exptime_last = 0;
262 const cpl_frame *frame;
264 cpl_frameset_iterator *it = cpl_frameset_iterator_new(science_frames);
265 while ((frame = cpl_frameset_iterator_get(it)) != NULL) {
266 cpl_propertylist * this_frame_header = cpl_propertylist_load(cpl_frame_get_filename(frame), 0);
268 if (mjd_obs > mjd_obs_last)
270 mjd_obs_last = mjd_obs;
271 exptime_last = cpl_propertylist_get_double(this_frame_header,
"EXPTIME");
273 cpl_frameset_iterator_advance(it, 1);
274 cpl_propertylist_delete(this_frame_header);
276 cpl_frameset_delete(science_frames);
277 cpl_frameset_iterator_delete(it);
279 if (mjd_obs_last == 0)
281 if (exptime_last == 0)
283 if ( cpl_propertylist_has(
header,
"EXPTIME") )
284 exptime_last = cpl_propertylist_get_double(
header,
"EXPTIME");
286 exptime_last = cpl_propertylist_get_double(idp_plist,
"EXPTIME");
290 mjd_obs_last + exptime_last / 86400.);
291 cpl_propertylist_set_comment (idp_plist,
"MJD-END",
"End of observation");
294 cpl_propertylist_erase (
header,
"MJD-OBS");
297 cpl_propertylist_update_int (idp_plist,
"OBID1",
298 cpl_propertylist_get_int(
header,
"ESO OBS ID"));
299 cpl_propertylist_set_comment (idp_plist,
"OBID1",
"Obseration Block ID");
305 cpl_size nscience = cpl_frameset_get_size(science_frames);
306 cpl_frameset_delete(science_frames);
307 if(!cpl_propertylist_has(
header,
"NCOMBINE"))
311 cpl_propertylist_update_int (idp_plist,
"NCOMBINE", nscience);
312 cpl_propertylist_set_comment (idp_plist,
"NCOMBINE",
"Number of raw science combined");
317 cpl_propertylist_update_int (idp_plist,
"NCOMBINE",
318 cpl_propertylist_get_int(
header,
"NCOMBINE") );
319 cpl_propertylist_set_comment (idp_plist,
"NCOMBINE",
"Number of raw science combined");
326 if(cpl_propertylist_has(
header,
"ESO DPR TECH"))
328 cpl_propertylist_update_string (idp_plist,
"OBSTECH",
329 cpl_propertylist_get_string(
header,
"ESO DPR TECH") );
330 cpl_propertylist_set_comment (idp_plist,
"OBSTECH",
"Observation technique");
332 else if(cpl_propertylist_has(
header,
"OBSTECH"))
334 cpl_propertylist_update_string (idp_plist,
"OBSTECH",
335 cpl_propertylist_get_string(
header,
"OBSTECH") );
336 cpl_propertylist_set_comment (idp_plist,
"OBSTECH",
"Observation technique");
340 cpl_propertylist_update_string (idp_plist,
"SPECSYS",
"TOPOCENT");
341 cpl_propertylist_set_comment (idp_plist,
"SPECSYS",
"Frame of reference for spectral coordinates");
344 cpl_propertylist_update_string (idp_plist,
"TIMESYS",
"UTC");
345 cpl_propertylist_set_comment (idp_plist,
"TIMESYS",
"Time system");
352 if ( !strcmp (resolution,
"HIGH") )
354 if ( !strcmp (resolution,
"MED") )
356 if ( !strcmp (resolution,
"LOW") )
359 cpl_propertylist_set_comment (idp_plist,
"SPEC_ERR",
"Statistical error in spectral coordinate");
364 cpl_propertylist_set_comment (idp_plist,
"SPEC_SYE",
"Systematic error in spectral coordinate");
369 const cpl_frame *frame;
371 char prov_keyword[8];
372 cpl_frameset_iterator *it = cpl_frameset_iterator_new(frameset);
373 while ((frame = cpl_frameset_iterator_get(it)) != NULL) {
381 snprintf(prov_keyword, 7,
"PROV%zu",i_prov);
382 const char * filename = cpl_frame_get_filename(frame);
383 const char * filename_no_path = strrchr(filename,
'/');
384 if (filename_no_path == NULL)
385 filename_no_path = filename;
387 filename_no_path += 1;
388 cpl_propertylist_update_string(idp_plist, prov_keyword, filename_no_path);
391 cpl_frameset_iterator_advance(it, 1);
393 cpl_frameset_iterator_delete(it);
399 if(!cpl_table_has_column(oi_array,
"FOV"))
401 cpl_table_new_column(oi_array,
"FOV", CPL_TYPE_DOUBLE);
402 cpl_table_new_column(oi_array,
"FOVTYPE", CPL_TYPE_STRING);
405 if (telname == NULL) {
406 cpl_msg_warning(cpl_func,
"Cannot get TELNAME, FOV is not determined");
409 if (telname[0] ==
'U')
415 cpl_table_fill_column_window_double(oi_array,
"FOV", 0, cpl_table_get_nrow(oi_array), fov);
416 cpl_table_fill_column_window_string(oi_array,
"FOVTYPE", 0, cpl_table_get_nrow(oi_array),
"RADIUS");
417 cpl_table_set_column_unit(oi_array,
"FOV",
"arcsec");
422 cpl_table_delete(oi_vis2_SC_allpol);
423 cpl_table_delete(oi_T3_SC_allpol);
424 cpl_table_delete(oi_wave_SC_allpol);
typedefCPL_BEGIN_DECLS struct _gravi_data_ gravi_data
#define gravi_data_get_oi_t3(data, type, pol, npol)
#define gravi_data_get_oi_vis2(data, type, pol, npol)
#define gravi_data_get_oi_wave(data, type, pol, npol)
#define gravi_data_get_oi_vis(data, type, pol, npol)
#define GRAVI_SINGLE_SCIENCE_RAW
#define GRAVI_VIS_DUAL_SCIENCE
#define GRAVI_VIS_SINGLE_SCIENCE
#define GRAVI_DUAL_CALIB_RAW
#define GRAVI_SINGLE_CALIB_RAW
#define GRAVI_DUAL_SCIENCE_RAW
cpl_propertylist * gravi_idp_compute(gravi_data *vis_data, cpl_propertylist *header, cpl_frameset *frameset, char *input_data_type)
Create IDP keywords to satisfy standard.
cpl_propertylist * header
cpl_propertylist_update_double(header, "ESO QC MINWAVE SC", cpl_propertylist_get_double(plist, "ESO QC MINWAVE SC"))
#define GRAVI_OI_VIS2_EXT
#define GRAVI_OI_ARRAY_EXT
double gravi_table_get_column_flagged_mean(cpl_table *table, const char *name)
Function to compute the mean of a column table with arrays.
double gravi_table_get_column_flagged_max(cpl_table *table, const char *name)
Function to compute the maximum of a column table with arrays.
int gravi_data_has_extension(gravi_data *raw_calib, const char *ext_name)
Check if data has extension with given EXTNAME.
cpl_table * gravi_data_get_table(gravi_data *self, const char *extname)
Return a pointer on a table extension by its EXTNAME.
cpl_frameset * gravi_frameset_extract_fringe_data(cpl_frameset *frameset)
int gravi_pfits_get_pola_num(const cpl_propertylist *plist, int type_data)
double gravi_pfits_get_projected_baseline_end(const cpl_propertylist *plist, int tel1, int tel2)
double gravi_pfits_get_projected_baseline_start(const cpl_propertylist *plist, int tel1, int tel2)
double gravi_pfits_get_mjd(const cpl_propertylist *plist)
const char * gravi_pfits_get_resolution(const cpl_propertylist *plist)
const char * gravi_conf_get_telname(int gravi_beam, cpl_propertylist *header)
int GRAVI_BASE_TEL[GRAVI_NBASE][2]
cpl_error_code gravi_data_get_minmax_uvcoord(const cpl_table *oi_vis2, double *min_uvcoord, double *max_uvcoord)
Compute the minimum and maximum values of sqrt(ucoord**2 + vcoord**2)