Belle II Software release-09-00-00
caf_beamspot.py
1
8
9"""
10Airflow script to perform BeamSpot calibration.
11"""
12
13from prompt import CalibrationSettings, INPUT_DATA_FILTERS
14from prompt.calibrations.caf_cdcdedx import settings as caf_cdc_dedx
15from prompt.calibrations.caf_svd_dedx import settings as caf_svd_dedx
16from prompt.calibrations.caf_top import settings as caf_top
17from prompt.calibrations.caf_klm_strip_efficiency import settings as caf_klm_strip_efficiency
18
19
20settings = CalibrationSettings(
21 name="BeamSpot Calibrations",
22 expert_username="zlebcr",
23 description=__doc__,
24 input_data_formats=["cdst"],
25 input_data_names=["mumu_tight_or_highm_calib"],
26 input_data_filters={
27 "mumu_tight_or_highm_calib": [
28 INPUT_DATA_FILTERS["Data Tag"]["mumu_tight_or_highm_calib"],
29 INPUT_DATA_FILTERS["Run Type"]["physics"],
30 INPUT_DATA_FILTERS["Data Quality Tag"]["Good Or Recoverable"],
31 INPUT_DATA_FILTERS["Magnet"]["On"]]},
32 expert_config={
33 "outerLoss": "pow(rawTime - 2.0, 2) + 10 * pow(maxGap, 2)",
34 "innerLoss": "pow(rawTime - 0.5, 2) + 10 * pow(maxGap, 2)",
35 "minPXDhits": 0},
36 depends_on=[caf_cdc_dedx, caf_svd_dedx, caf_top, caf_klm_strip_efficiency])
37
38
39
40
41def get_calibrations(input_data, **kwargs):
42 """
43 Parameters:
44 input_data (dict): Should contain every name from the 'input_data_names' variable as a key.
45 Each value is a dictionary with {"/path/to/file_e1_r5.root": IoV(1,5,1,5), ...}. Useful for
46 assigning to calibration.files_to_iov
47
48 **kwargs: Configuration options to be sent in. Since this may change we use kwargs as a way to help prevent
49 backwards compatibility problems. But you could use the correct arguments in b2caf-prompt-run for this
50 release explicitly if you want to.
51
52 Currently only kwargs["output_iov"] is used. This is the output IoV range that your payloads should
53 correspond to. Generally your highest ExpRun payload should be open ended e.g. IoV(3,4,-1,-1)
54
55 Returns:
56 list(caf.framework.Calibration): All of the calibration objects we want to assign to the CAF process
57 """
58 import basf2
59 # Set up config options
60
61 # In this script we want to use one sources of input data.
62 # Get the input files from the input_data variable
63 file_to_iov_physics = input_data["mumu_tight_or_highm_calib"]
64
65 # We might have requested an enormous amount of data across a run range.
66 # There's a LOT more files than runs!
67 # Lets set some limits because this calibration doesn't need that much to run.
68 max_files_per_run = 1000000
69
70 # We filter out any more than 100 files per run. The input data files are sorted alphabetically by b2caf-prompt-run
71 # already. This procedure respects that ordering
72 from prompt.utils import filter_by_max_files_per_run
73
74 reduced_file_to_iov_physics = filter_by_max_files_per_run(file_to_iov_physics, max_files_per_run)
75 input_files_physics = list(reduced_file_to_iov_physics.keys())
76 basf2.B2INFO(f"Total number of files actually used as input = {len(input_files_physics)}")
77
78 # Get the overall IoV we our process should cover. Includes the end values that we may want to ignore since our output
79 # IoV should be open ended. We could also use this as part of the input data selection in some way.
80 requested_iov = kwargs.get("requested_iov", None)
81
82 from caf.utils import IoV
83 # The actual value our output IoV payload should have. Notice that we've set it open ended.
84 output_iov = IoV(requested_iov.exp_low, requested_iov.run_low, -1, -1)
85
86
88
89 from ROOT.Belle2 import BeamSpotAlgorithm
90 from basf2 import create_path, register_module
91 import modularAnalysis as ana
92
93
95
96 from caf.framework import Calibration
97 from caf.strategies import SingleIOV
98
99 # module to be run prior the collector
100 rec_path_1 = create_path()
101
102 minPXDhits = kwargs['expert_config']['minPXDhits']
103 muSelection = '[p>1.0]'
104 muSelection += ' and abs(dz)<2.0 and abs(dr)<0.5'
105 muSelection += f' and nPXDHits >= {minPXDhits} and nSVDHits >= 8 and nCDCHits >= 20'
106 ana.fillParticleList('mu+:BS', muSelection, path=rec_path_1)
107 ana.reconstructDecay('Upsilon(4S):BS -> mu+:BS mu-:BS', '9.5<M<11.5', path=rec_path_1)
108
109 collector_bs = register_module('BeamSpotCollector', Y4SPListName='Upsilon(4S):BS')
110 algorithm_bs = BeamSpotAlgorithm()
111 algorithm_bs.setOuterLoss(kwargs['expert_config']['outerLoss'])
112 algorithm_bs.setInnerLoss(kwargs['expert_config']['innerLoss'])
113
114 calibration_bs = Calibration('BeamSpot',
115 collector=collector_bs,
116 algorithms=algorithm_bs,
117 input_files=input_files_physics,
118 pre_collector_path=rec_path_1)
119
120 calibration_bs.strategies = SingleIOV
121
122 # Do this for the default AlgorithmStrategy to force the output payload IoV
123 # It may be different if you are using another strategy like SequentialRunByRun
124 for algorithm in calibration_bs.algorithms:
125 algorithm.params = {"iov_coverage": output_iov}
126
127 # Most other options like database chain and backend args will be overwritten by b2caf-prompt-run.
128 # So we don't bother setting them.
129
130 # You must return all calibrations you want to run in the prompt process, even if it's only one
131 return [calibration_bs]
132
133