LSST Applications g0b6bd0c080+a72a5dd7e6,g1182afd7b4+2a019aa3bb,g17e5ecfddb+2b8207f7de,g1d67935e3f+06cf436103,g38293774b4+ac198e9f13,g396055baef+6a2097e274,g3b44f30a73+6611e0205b,g480783c3b1+98f8679e14,g48ccf36440+89c08d0516,g4b93dc025c+98f8679e14,g5c4744a4d9+a302e8c7f0,g613e996a0d+e1c447f2e0,g6c8d09e9e7+25247a063c,g7271f0639c+98f8679e14,g7a9cd813b8+124095ede6,g9d27549199+a302e8c7f0,ga1cf026fa3+ac198e9f13,ga32aa97882+7403ac30ac,ga786bb30fb+7a139211af,gaa63f70f4e+9994eb9896,gabf319e997+ade567573c,gba47b54d5d+94dc90c3ea,gbec6a3398f+06cf436103,gc6308e37c7+07dd123edb,gc655b1545f+ade567573c,gcc9029db3c+ab229f5caf,gd01420fc67+06cf436103,gd877ba84e5+06cf436103,gdb4cecd868+6f279b5b48,ge2d134c3d5+cc4dbb2e3f,ge448b5faa6+86d1ceac1d,gecc7e12556+98f8679e14,gf3ee170dca+25247a063c,gf4ac96e456+ade567573c,gf9f5ea5b4d+ac198e9f13,gff490e6085+8c2580be5c,w.2022.27
LSST Data Management Base Package
coaddHelpers.py
Go to the documentation of this file.
2# LSST Data Management System
3# Copyright 2008-2013 LSST Corporation.
4#
5# This product includes software developed by the
6# LSST Project (http://www.lsst.org/).
7#
8# This program is free software: you can redistribute it and/or modify
9# it under the terms of the GNU General Public License as published by
10# the Free Software Foundation, either version 3 of the License, or
11# (at your option) any later version.
12#
13# This program is distributed in the hope that it will be useful,
14# but WITHOUT ANY WARRANTY; without even the implied warranty of
15# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16# GNU General Public License for more details.
17#
18# You should have received a copy of the LSST License Statement and
19# the GNU General Public License along with this program. If not,
20# see <http://www.lsstcorp.org/LegalNotices/>.
21#
22from lsst.pipe.base import Struct
23
24"""Helper functions for coaddition.
25
26We often want to use a data reference as a key in a dict (e.g., inputs as a
27function of data reference for a warp/tempExp), but neither data references
28(lsst.daf.persistence.ButlerDataRef) nor data identifiers (dict) are hashable.
29One solution is to use tuples (which are hashable) of the data identifier
30values, and carry the data identifier keys separately. Doing the key/value
31gymnastics can be annoying, so we provide these helper functions to do this.
32"""
33
34
35def groupDataRefs(keys, dataRefIterable):
36 """Group data references by data identifier value-tuple.
37
38 Value-tuples are built from the values of the given keys.
39 The effect is that the data references in each group have the same
40 values for the provided keys.
41
42 @param keys: List of keys to consider when grouping (order is important)
43 @param dataRefIterable: Iterable of data references to group
44 @return Dict of <value-tuple>: <list of data references for group>
45 """
46 groupDict = dict()
47 for dataRef in dataRefIterable:
48 dataId = dataRef.dataId
49 values = tuple(dataId[key] for key in keys) # NOT dataId.values() as we must preserve order
50 group = groupDict.get(values)
51 if group:
52 group.append(dataRef)
53 else:
54 groupDict[values] = [dataRef]
55
56 return groupDict
57
58
59def groupPatchExposures(patchDataRef, calexpDataRefList, coaddDatasetType="deepCoadd",
60 tempExpDatasetType="deepCoadd_directWarp"):
61 """Group calibrated exposures overlapping a patch by the warped
62 (temporary) exposure they contribute to.
63
64 For example, if the instrument has a mosaic camera, each group would
65 consist of the subset of CCD exposures from a single camera exposure
66 that potentially overlap the patch.
67
68 @return Struct with:
69 - groups: Dict of <group tuple>: <list of data references for group>
70 - keys: List of keys for group tuple
71 """
72 butler = patchDataRef.getButler()
73 tempExpKeys = butler.getKeys(datasetType=tempExpDatasetType)
74 coaddKeys = sorted(butler.getKeys(datasetType=coaddDatasetType))
75 keys = sorted(set(tempExpKeys) - set(coaddKeys)) # Keys that will specify an exposure
76 patchId = patchDataRef.dataId
77 groups = groupDataRefs(keys, calexpDataRefList)
78
79 # Supplement the groups with the coadd-specific information (e.g., tract, patch; these are constant)
80 coaddValues = tuple(patchId[k] for k in coaddKeys)
81 groups = dict((k + coaddValues, v) for k, v in groups.items())
82 keys += tuple(coaddKeys)
83
84 return Struct(groups=groups, keys=keys)
85
86
87def getGroupDataId(groupTuple, keys):
88 """Reconstitute a data identifier from a tuple and corresponding keys
89
90 @param groupTuple: Tuple with values specifying a group
91 @param keys: List of keys for group tuple
92 @return Data identifier dict
93 """
94 if len(groupTuple) != len(keys):
95 raise RuntimeError("Number of values (%d) and keys (%d) do not match" % (len(groupTuple), len(keys)))
96 return dict(zip(keys, groupTuple))
97
98
99def getGroupDataRef(butler, datasetType, groupTuple, keys):
100 """Construct a data reference from a tuple and corresponding keys
101
102 @param butler: Data butler
103 @param datasetType: Name of dataset
104 @param groupTuple: Tuple with values specifying a group
105 @param keys: List of keys for group tuple
106 @return Data reference
107 """
108 dataId = getGroupDataId(groupTuple, keys)
109 return butler.dataRef(datasetType=datasetType, dataId=dataId)
daf::base::PropertySet * set
Definition: fits.cc:912
def groupDataRefs(keys, dataRefIterable)
Definition: coaddHelpers.py:35
def getGroupDataRef(butler, datasetType, groupTuple, keys)
Definition: coaddHelpers.py:99
def groupPatchExposures(patchDataRef, calexpDataRefList, coaddDatasetType="deepCoadd", tempExpDatasetType="deepCoadd_directWarp")
Definition: coaddHelpers.py:60
def getGroupDataId(groupTuple, keys)
Definition: coaddHelpers.py:87