rename ProblemData -> OrbitData
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Orb_AutFN.jl
20
Orb_AutFN.jl
@ -10,7 +10,7 @@ using ArgParse
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include("OrbitDecomposition.jl")
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immutable ProblemData{T}
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immutable OrbitData
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name::String
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Us::Vector
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Ps::Vector{Array{JuMP.Variable,2}}
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@ -59,7 +59,7 @@ function init_model(Uπs)
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return m, P
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end
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function init_ProblemData(name::String)
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function init_OrbitData(name::String)
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splap = load(joinpath(name, "delta.jld"), "Δ");
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pm = load(joinpath(name, "pm.jld"), "pm");
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cnstr = PropertyT.constraints_from_pm(pm);
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@ -78,9 +78,9 @@ function init_ProblemData(name::String)
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orb_splap = orbit_spvector(splap, orbits)
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orb_splap² = orbit_spvector(splap², orbits)
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orb_SOutF4data = ProblemData(name, Uπs, P, orb_spcnstrm, orb_splap, orb_splap², dims);
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orbData = OrbitData(name, Uπs, P, orb_spcnstrm, orb_splap, orb_splap², dims);
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return m, orb_SOutF4data
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return m, orbData
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end
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function transform{T}(U::AbstractArray{T,2}, V::AbstractArray{T,2}, eps=eps(T))
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@ -90,15 +90,15 @@ function transform{T}(U::AbstractArray{T,2}, V::AbstractArray{T,2}, eps=eps(T))
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return w
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end
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A(data::ProblemData, π, t) = data.dims[π]*transform(data.Us[π], data.cnstr[t])
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A(data::OrbitData, π, t) = data.dims[π]*transform(data.Us[π], data.cnstr[t])
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function constrLHS(m::JuMP.Model, data::ProblemData, t)
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function constrLHS(m::JuMP.Model, data::OrbitData, t)
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l = endof(data.Us)
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lhs = @expression(m, sum(vecdot(A(data, π, t), data.Ps[π]) for π in 1:l))
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return lhs
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end
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function addconstraints!(m::JuMP.Model, data::ProblemData, l::Int=length(data.cnstr); var::Symbol = :λ)
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function addconstraints!(m::JuMP.Model, data::OrbitData, l::Int=length(data.cnstr); var::Symbol = :λ)
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λ = getvariable(m, var)
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for t in 1:l
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d, d² = data.laplacian[t], data.laplacianSq[t]
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@ -115,14 +115,14 @@ function addconstraints!(m::JuMP.Model, data::ProblemData, l::Int=length(data.cn
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end
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end
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function reconstructP(m::JuMP.Model, data::ProblemData)
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function reconstructP(m::JuMP.Model, data::OrbitData)
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computedPs = [getvalue(P) for P in data.Ps]
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return sum(data.dims[π]*data.Us[π]*computedPs[π]*data.Us[π]' for π in 1:endof(data.Ps))
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end
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function create_SDP_problem(name::String; upper_bound=Inf)
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info(PropertyT.logger, "Loading data....")
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t = @timed SDP_problem, orb_data = init_ProblemData(name);
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t = @timed SDP_problem, orb_data = init_OrbitData(name);
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info(PropertyT.logger, PropertyT.timed_msg(t))
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if upper_bound < Inf
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@ -137,7 +137,7 @@ function create_SDP_problem(name::String; upper_bound=Inf)
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return SDP_problem, orb_data
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end
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function λandP(m::JuMP.Model, data::ProblemData)
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function λandP(m::JuMP.Model, data::OrbitData)
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info(PropertyT.logger, "Solving SDP problem...")
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varλ = JuMP.getvariable(m, :λ)
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varP = data.Ps
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