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decouple obtaining Delta from constraints
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@ -80,42 +80,37 @@ filename(prefix::String, ::Type{Val{:Δ}}) = joinpath(prefix, "delta.jld")
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filename(prefix::String, ::Type{Val{:λ}}) = joinpath(prefix, "lambda.jld")
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filename(prefix::String, ::Type{Val{:P}}) = joinpath(prefix, "SDPmatrix.jld")
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function ΔandSDPconstraints(prefix::String, G::Group)
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info(LOGGER, "Loading precomputed pm, Δ, sdp_constraints...")
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pm_fname, Δ_fname = pmΔfilenames(prefix)
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product_matrix = load(pm_fname, "pm")
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sdp_constraints = constraints(product_matrix)
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RG = GroupRing(G, product_matrix)
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Δ = GroupRingElem(load(Δ_fname, "Δ")[:, 1], RG)
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return Δ, sdp_constraints
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function Delta(name::String, G::Group)
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info(LOGGER, "Loading precomputed Δ...")
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if exists(filename(name, :Δ)) && exists(filename(name, :pm))
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RG = GroupRing(G, load(filename(name, :pm), "pm"))
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Δ = GroupRingElem(load(filename(name, :Δ), "Δ")[:, 1], RG)
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else
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throw("You need to precompute $(filename(name, :pm)) and $(filename(name, :Δ)) to load it!")
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end
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return Δ
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end
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function ΔandSDPconstraints{T<:GroupElem}(name::String, S::Vector{T}, Id::T; radius::Int=2)
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info(LOGGER, "Computing pm, Δ, sdp_constraints...")
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Δ, sdp_constraints = ΔandSDPconstraints(S, Id, radius=radius)
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pm_fname, Δ_fname = pmΔfilenames(name)
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save(pm_fname, "pm", parent(Δ).pm)
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save(Δ_fname, "Δ", Δ.coeffs)
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return Δ, sdp_constraints
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function Delta{T<:GroupElem}(name::String, S::Vector{T}, Id::T; radius::Int=2)
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info(LOGGER, "Computing multiplication table, Δ...")
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Δ = Delta(S, Id, radius=radius)
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save(filename(name, :pm), "pm", parent(Δ).pm)
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save(filename(name, :Δ), "Δ", Δ.coeffs)
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return Δ
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end
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function ΔandSDPconstraints{T<:GroupElem}(S::Vector{T}, Id::T; radius::Int=2)
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info(LOGGER, "Generating balls of sizes $sizes")
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function Delta{T<:GroupElem}(S::Vector{T}, Id::T; radius::Int=2)
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info(LOGGER, "Generating metric ball of radius $radius...")
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@logtime LOGGER E_R, sizes = Groups.generate_balls(S, Id, radius=2*radius)
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info(LOGGER, "Generated balls of sizes $sizes.")
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info(LOGGER, "Creating product matrix...")
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@logtime LOGGER pm = GroupRings.create_pm(E_R, GroupRings.reverse_dict(E_R), sizes[radius]; twisted=true)
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info(LOGGER, "Creating sdp_constratints...")
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@logtime LOGGER sdp_constraints = PropertyT.constraints(pm)
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RG = GroupRing(parent(Id), E_R, pm)
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Δ = splaplacian(RG, S)
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return Δ, sdp_constraints
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return Δ
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end
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function λandP(name::String)
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@ -193,10 +188,10 @@ function check_property_T(name::String, S, Id, solver, upper_bound, tol, radius)
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if exists(filename(name, :pm)) && exists(filename(name, :Δ))
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# cached
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Δ, sdp_constraints = ΔandSDPconstraints(name, parent(S[1]))
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Δ = Delta(name, parent(S[1]))
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else
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# compute
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Δ, sdp_constraints = ΔandSDPconstraints(name, S, Id, radius=radius)
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Δ = Delta(name, S, Id, radius=radius)
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end
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if exists(filename(name, :λ)) && exists(filename(name, :P))
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@ -204,10 +199,10 @@ function check_property_T(name::String, S, Id, solver, upper_bound, tol, radius)
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λ, P = λandP(name)
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else
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info(LOGGER, "Creating SDP problem...")
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SDP_problem, λ, P = create_SDP_problem(Δ, sdp_constraints, upper_bound=upper_bound)
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SDP_problem, λ_var, P_var = create_SDP_problem(Δ, PropertyT.constraints(parent(Δ).pm), upper_bound=upper_bound)
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JuMP.setsolver(SDP_problem, solver)
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λ, P = λandP(name, SDP_problem, λ, P)
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λ, P = λandP(name, SDP_problem, λ_var, P_var)
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end
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info(LOGGER, "λ = $λ")
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