63 lines
1.6 KiB
Julia
63 lines
1.6 KiB
Julia
using ArgParse
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function parse_commandline()
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args = ArgParseSettings()
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@add_arg_table args begin
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"--tol"
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help = "set numerical tolerance for the SDP solver"
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arg_type = Float64
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default = 1e-6
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"--iterations"
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help = "set maximal number of iterations for the SDP solver"
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arg_type = Int
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default = 50000
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"--upper-bound"
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help = "Set an upper bound for the spectral gap"
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arg_type = Float64
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default = Inf
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"--cpus"
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help = "Set number of cpus used by solver (default: auto)"
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arg_type = Int
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required = false
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"--radius"
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help = "Radius of ball B_r(e,S) to find solution over"
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arg_type = Int
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default = 2
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"--warmstart"
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help = "Use warmstart.jl as the initial guess for SCS"
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action = :store_true
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"--MCG"
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help = "Compute for mapping class group of surface of genus N"
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arg_type = Int
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required = false
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"--Higman"
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help = "Compute for Higman Group"
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action = :store_true
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"--Caprace"
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help = "Compute for Higman Group"
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action = :store_true
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end
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return parse_args(args)
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end
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const PARSEDARGS = parse_commandline()
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include("CPUselect.jl")
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set_parallel_mthread(PARSEDARGS, workers=false)
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include("main.jl")
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include("FPGroups_GAP.jl")
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if PARSEDARGS["Caprace"]
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G = PropertyTGroups.CapraceGroup(PARSEDARGS)
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elseif PARSEDARGS["Higman"]
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G = PropertyTGroups.HigmanGroup(PARSEDARGS)
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elseif PARSEDARGS["MCG"] != nothing
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G = PropertyTGroups.MappingClassGroup(PARSEDARGS)
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else
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throw("You need to specify one of the --Higman, --Caprace, --MCG N")
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end
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main(G)
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