1) eloss calculations from pycatima folded in externally
2) stepladder correction moved into Armory
3) a(p,p) calculations live in their own function
4) first steps towards looking at one-wire dE/E signals, and one-wire anodes vs si-phi correlations
1) Environment variables allowing flip and offset of anode wires
2) Environment variables allowing for selection of runs' start and stop time positions, to help with phi scanning runs
3) *fix histograms defined that incorporate step-ladder corrections applied to pcz, hard-coded currently in sx3cal/sx3z_vs_pcz/testmodel.h. Will need a better home in the future
4) EXFit2.C has the capability to now gainmatch all sx3 pads, and position along strip is still found from the central three pad edges. Treatment for (backE-missingfrontE) is being considered.
- pending goal, make the 'parameter set' for a particular data analysis uniquely drawn from a database or a collection of files.
- reduce human intervention when sorting
new file: Armory/ClassData.h
new file: Armory/Hit.h
modified: Armory/Makefile
new file: Armory/fsuReader.h
new file: Armory/macro.h
new file: BatchProcess.sh
modified: ProcessRun.sh
modified: process_mapped_run.sh
deleted: Armory/README.md
modified: Calibration.C Sudarsan pointed out that the gain match and calibration stages have the ring and wedge swapped, so I fixed that.
modified: ProcessRun.sh changes for running on laptop
modified: TrackRecon.C same inconsistency as in Calibration.C fixed
deleted: makeplots.C not used anymore
modified: mapping.h corrected teh mapping for the QQQs poptentially, need to confirm
modified: mapping_old.txt
modified: Armory/ClassPW.h edited to account for the 4 wire offset instead of 3 in cathodes. This has been crossreferenced using the alpha source data in QQQ coinincidence to confirm
the position of the source.
made changes to correct for geomtry and eliminating redundant variables to a make the code more readable
modified: Armory/ClassPW.h
made changes to correct for the fact that the physical geometry of the detector is not the same as the geometry in the simulation, it is reversed and has an offset of 3