SourceXtractorPlusPlus  0.17
SourceXtractor++, the next generation SExtractor
MeasurementImageConfig.cpp
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1 
17 /*
18  * @file MeasurementImageConfig.cpp
19  * @author Nikolaos Apostolakos <nikoapos@gmail.com>
20  */
21 
22 #include <utility>
23 #include <limits>
24 
25 #include <boost/algorithm/string.hpp>
26 #include <boost/python/extract.hpp>
27 #include <boost/tokenizer.hpp>
28 
29 #include <ElementsKernel/Logging.h>
30 
31 #include <Pyston/GIL.h>
32 
36 
42 
44 
45 using namespace Euclid::Configuration;
46 namespace fs = boost::filesystem;
47 namespace py = boost::python;
48 
49 namespace SourceXtractor {
50 
51 MeasurementImageConfig::MeasurementImageConfig(long manager_id) : Configuration(manager_id) {
52  declareDependency<PythonConfig>();
53  declareDependency<WeightImageConfig>();
54  declareDependency<DetectionImageConfig>();
55 }
56 
57 namespace {
58 
60 
68 };
69 
70 void validateImagePaths(const PyMeasurementImage& image) {
71  if (!fs::exists(image.file)) {
72  throw Elements::Exception() << "File " << image.file << " does not exist";
73  }
74  if (image.weight_file != "" && !fs::exists(image.weight_file)) {
75  throw Elements::Exception() << "File " << image.weight_file << " does not exist";
76  }
77  if (image.psf_file != "" && boost::to_upper_copy(fs::path(image.psf_file).filename().string())!="NOPSF" && !fs::exists(image.psf_file)) {
78  throw Elements::Exception() << "File " << image.psf_file << " does not exist";
79  }
80 }
81 
82 std::shared_ptr<MeasurementImage> createMeasurementImage(
83  std::shared_ptr<FitsImageSource> fits_image_source, double flux_scale) {
85  if (flux_scale != 1.) {
86  image = MultiplyImage<MeasurementImage::PixelType>::create(image, flux_scale);
87  }
88  return image;
89 }
90 
91 WeightImageConfig::WeightType getWeightType(const std::string& type_string, const std::string& file_name) {
92  // check for a valid weight type
93  auto weight_type_name = boost::to_upper_copy(type_string);
94  if (weight_type_map.find(weight_type_name) == weight_type_map.end()) {
95  throw Elements::Exception() << "Unknown weight map type for measurement weight image " << file_name << ": "<< type_string;
96  }
97 
98  return weight_type_map[weight_type_name];
99 }
100 
101 std::shared_ptr<WeightImage> createWeightMap(const PyMeasurementImage& py_image) {
102  auto weight_type = getWeightType(py_image.weight_type, py_image.weight_file);
103 
104  // without an image nothing can be done
105  if (py_image.weight_file == "") {
108  throw Elements::Exception() << "Weight type '" << py_image.weight_type << "' is meaningless without a weight image";
109  }
110 
111  return nullptr;
112  }
113 
116  throw Elements::Exception() << "Please give an appropriate weight type for image: " << py_image.weight_file;
117  }
118 
119  auto weight_image_source =
120  std::make_shared<FitsImageSource>(py_image.weight_file, py_image.weight_hdu+1, ImageTile::FloatImage);
122 
123  logger.debug() << "w: " << weight_map->getWidth() << " h: " << weight_map->getHeight()
124  << " t: " << py_image.weight_type << " s: " << py_image.weight_scaling;
125  weight_map = WeightImageConfig::convertWeightMap(weight_map, weight_type, py_image.weight_scaling);
126 
127  return weight_map;
128 }
129 
130 WeightImage::PixelType extractWeightThreshold(const PyMeasurementImage& py_image) {
131  if (!py_image.has_weight_threshold) {
133  }
134  WeightImage::PixelType threshold = py_image.weight_threshold;
135  auto weight_type_name = boost::to_upper_copy(py_image.weight_type);
136  switch (weight_type_map[weight_type_name]) {
137  default:
140  threshold = threshold * threshold;
141  break;
143  break;
145  if (threshold > 0) {
146  threshold = 1.0 / threshold;
147  } else {
149  }
150  break;
151  }
152  return threshold;
153 }
154 
155 }
156 
158  auto images = getDependency<PythonConfig>().getInterpreter().getMeasurementImages();
159  auto groups = getDependency<PythonConfig>().getInterpreter().getMeasurementGroups();
160 
161  // Delegate into Python to log the measurement configuration
162  boost::char_separator<char> line_sep{"\n"};
163  for (auto &g : groups) {
164  Pyston::GILLocker locker;
165  std::string group_str = py::extract<std::string>(g.attr("__str__")());
166  boost::tokenizer<decltype(line_sep)> tok(group_str, line_sep);
167  for (auto &l : tok) {
168  logger.info() << l;
169  }
170  }
171 
172  if (images.size() > 0) {
173  for (auto& p : images) {
174  PyMeasurementImage& py_image = p.second;
175  validateImagePaths(py_image);
176 
177  logger.debug() << "Loading measurement image: " << py_image.file << " HDU: " << py_image.image_hdu;
178  logger.debug() << "\tWeight: " << py_image.weight_file << " HDU: " << py_image.weight_hdu;
179  logger.debug() << "\tWeight threshold: " << py_image.weight_threshold << " hasThreshold: " << py_image.has_weight_threshold;
180  logger.debug() << "\tPSF: " << py_image.psf_file << " HDU: " << py_image.psf_hdu;
181  logger.debug() << "\tGain: " << py_image.gain;
182  logger.debug() << "\tSaturation: " << py_image.saturation;
183  logger.debug() << "\tFlux scale: " << py_image.flux_scale;
184 
185  auto flux_scale = py_image.flux_scale;
186 
188 
189  info.m_path = py_image.file;
190  info.m_psf_path = py_image.psf_file;
191 
192 
193  auto fits_image_source =
194  std::make_shared<FitsImageSource>(py_image.file, py_image.image_hdu+1, ImageTile::FloatImage);
195  info.m_measurement_image = createMeasurementImage(fits_image_source, py_image.flux_scale);
196  info.m_coordinate_system = std::make_shared<WCS>(*fits_image_source);
197 
198  info.m_gain = py_image.gain / flux_scale;
199  info.m_saturation_level = py_image.saturation * flux_scale;
200  info.m_id = py_image.id;
201 
202  info.m_absolute_weight= py_image.weight_absolute;
203  info.m_weight_threshold = extractWeightThreshold(py_image);
204 
207 
208  auto weight_map = createWeightMap(py_image);
209 
210  if (weight_map != nullptr && flux_scale != 1. && py_image.weight_absolute) {
212  weight_map, py_image.flux_scale * py_image.flux_scale);
213  } else {
214  info.m_weight_image = weight_map;
215  }
216 
217  info.m_weight_type = getWeightType(py_image.weight_type, py_image.weight_file);
218 
219  info.m_image_hdu = py_image.image_hdu + 1;
220  info.m_psf_hdu = py_image.psf_hdu + 1;
221  info.m_weight_hdu = py_image.weight_hdu + 1;
222 
223  m_image_infos.emplace_back(std::move(info));
224  }
225  } else {
226  logger.debug() << "No measurement image provided, using the detection image for measurements";
227 
228  auto detection_image = getDependency<DetectionImageConfig>();
229  auto weight_image = getDependency<WeightImageConfig>();
230 
231  // note: flux scale was already applied
232 
233  m_image_infos.emplace_back(MeasurementImageInfo {
234  detection_image.getDetectionImagePath(),
235  "", // psf path
236 
237  detection_image.getDetectionImage(),
238  detection_image.getCoordinateSystem(),
239  weight_image.getWeightImage(),
240  weight_image.getWeightType(),
241 
242  weight_image.isWeightAbsolute(),
243  weight_image.getWeightThreshold(),
244  (SeFloat) detection_image.getGain(),
245  (SeFloat) detection_image.getSaturation(),
246 
247  false,
248  0.0,
249 
250  0, // id
251 
252  1,1,1 // HDUs
253  });
254 
255 
256  }
257 }
258 
259 } // end of namespace SourceXtractor
static Logging getLogger(const std::string &name="")
static std::shared_ptr< BufferedImage< T > > create(std::shared_ptr< const ImageSource > source, std::shared_ptr< TileManager > tile_manager=TileManager::getInstance())
std::vector< MeasurementImageInfo > m_image_infos
void initialize(const UserValues &args) override
static std::shared_ptr< ProcessedImage< T, P > > create(std::shared_ptr< const Image< T >> image_a, std::shared_ptr< const Image< T >> image_b)
const int id
Definition: PyId.h:35
static std::shared_ptr< WeightImage > convertWeightMap(std::shared_ptr< WeightImage > weight_image, WeightType weight_type, WeightImage::PixelType scaling=1)
T max(T... args)
T move(T... args)
constexpr double g
SeFloat32 SeFloat
Definition: Types.h:32
static auto logger
Definition: WCS.cpp:44