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https://github.com/kalmarek/PropertyT.jl.git
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move compute lambdaandP to its own section
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@ -56,3 +56,70 @@ function loadLaplacian(name::String, G::Group)
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return Δ
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return Δ
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end
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end
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###############################################################################
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#
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# λandP
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#
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###############################################################################
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function computeλandP(::Type{Naive}, Δ::GroupRingElem, sett::Settings, ws=nothing; solverlog=tempname()*".log")
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info("Creating SDP problem...")
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SDP_problem, varλ, varP = SOS_problem(Δ^2, Δ, upper_bound=sett.upper_bound)
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JuMP.setsolver(SDP_problem, sett.solver)
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info(Base.repr(SDP_problem))
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@time λ, P, ws = solve_logged(SDP_problem, varλ, varP, ws, solverlog=solverlog)
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return λ, P, ws
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end
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function computeλandP(::Type{Symmetrize}, Δ::GroupRingElem, sett::Settings, ws=nothing; solverlog=tempname()*".log")
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pdir = prepath(sett)
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files_exist = exists(filename(pdir,:Uπs)) && exists(filename(pdir,:orbits)) && exists(filename(pdir,:preps))
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if files_exist
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orbit_data = load_OrbitData(sett)
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else
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isdefined(parent(Δ), :basis) || throw("You need to define basis of Group Ring to compute orbit decomposition!")
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orbit_data = compute_OrbitData(parent(Δ), sett.autS)
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save_OrbitData(sett, orbit_data)
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end
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orbit_data = decimate(orbit_data)
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info("Creating SDP problem...")
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SDP_problem, varλ, varP = SOS_problem(Δ^2, Δ, orbit_data, upper_bound=sett.upper_bound)
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JuMP.setsolver(SDP_problem, sett.solver)
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info(Base.repr(SDP_problem))
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@time λ, P, ws = solve_logged(SDP_problem, varλ, varP, ws, solverlog=solverlog)
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fname = filename(fullpath(sett), :P)
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save(joinpath(dirname(fname), "orig_"*basename(fname)), "origP", P)
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info("Reconstructing P...")
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@time recP = reconstruct(P, orbit_data)
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return λ, recP, ws
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end
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function saveλandP(name, λ, P, ws)
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save(filename(name, :λ), "λ", λ)
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save(filename(name, :P), "P", P)
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save(filename(name, :warm), "warmstart", ws)
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end
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function loadλandP(name::String)
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λ_fname = filename(name, :λ)
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P_fname = filename(name, :P)
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if exists(λ_fname) && exists(P_fname)
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info("Loading precomputed λ, P...")
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λ = load(λ_fname, "λ")
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P = load(P_fname, "P")
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else
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throw("You need to precompute $λ_fname and $P_fname to load it!")
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end
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return λ, P
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end
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@ -117,24 +117,10 @@ function SOS_problem(X::GroupRingElem, orderunit::GroupRingElem, data::OrbitData
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return m, λ, P
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return m, λ, P
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end
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end
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function computeλandP(Δ::GroupRingElem, sett::Settings, ws=nothing; solverlog=tempname()*".log")
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@time orbit_data = OrbitData(sett);
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info("Creating SDP problem...")
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SDP_problem, varλ, varP = SOS_problem(Δ^2, Δ, orbit_data, upper_bound=sett.upper_bound)
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JuMP.setsolver(SDP_problem, sett.solver)
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info(Base.repr(SDP_problem))
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@time λ, P, ws = solve_SDP(SDP_problem, varλ, varP, ws, solverlog=solverlog)
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fname = filename(fullpath(sett), :P)
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save(joinpath(dirname(fname), "orig_"*basename(fname)), "origP", P)
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info("Reconstructing P...")
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preps = load_preps(filename(prepath(sett), :preps), sett.autS)
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preps = load_preps(filename(prepath(sett), :preps), sett.autS)
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@time recP = reconstruct_sol(preps, orbit_data.Uπs, P, orbit_data.dims)
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return λ, recP, ws
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end
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end
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function load_preps(fname::String, G::Group)
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function load_preps(fname::String, G::Group)
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@ -34,48 +34,22 @@ mutable struct Settings{Gr<:Group, GEl<:GroupElem, Sol<:AbstractMathProgSolver}
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autS::Group
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autS::Group
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function loadλandP(name::String)
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λ_fname = filename(name, :λ)
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P_fname = filename(name, :P)
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function Settings(name, G::Gr, S::Vector{GEl}, r::Int,
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function Settings(name, G::Gr, S::Vector{GEl}, r::Int,
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sol::Sol, ub, tol, ws) where {Gr, GEl, Sol}
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sol::Sol, ub, tol, ws) where {Gr, GEl, Sol}
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return new{Gr, GEl, Sol}(name, G, S, r, sol, ub, tol, ws)
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return new{Gr, GEl, Sol}(name, G, S, r, sol, ub, tol, ws)
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end
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end
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if exists(λ_fname) && exists(P_fname)
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info("Loading precomputed λ, P...")
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λ = load(λ_fname, "λ")
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P = load(P_fname, "P")
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else
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throw("You need to precompute $λ_fname and $P_fname to load it!")
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function Settings(name, G::Gr, S::Vector{GEl}, r::Int,
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function Settings(name, G::Gr, S::Vector{GEl}, r::Int,
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sol::Sol, ub, tol, ws, autS) where {Gr, GEl, Sol}
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sol::Sol, ub, tol, ws, autS) where {Gr, GEl, Sol}
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return new{Gr, GEl, Sol}(name, G, S, r, sol, ub, tol, ws, autS)
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return new{Gr, GEl, Sol}(name, G, S, r, sol, ub, tol, ws, autS)
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end
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end
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return λ, P
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end
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end
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function computeλandP(Δ::GroupRingElem, upper_bound::AbstractFloat, solver, ws=nothing; solverlog=tempname()*".log")
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info("Creating SDP problem...")
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SDP_problem, varλ, varP = SOS_problem(Δ^2, Δ, upper_bound=upper_bound)
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JuMP.setsolver(SDP_problem, solver)
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info(Base.repr(SDP_problem))
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@time λ, P, ws = solve_SDP(SDP_problem, varλ, varP, ws, solverlog=solverlog)
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return λ, P, ws
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end
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prefix(s::Settings) = s.name
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prefix(s::Settings) = s.name
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suffix(s::Settings) = "$(s.upper_bound)"
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suffix(s::Settings) = "$(s.upper_bound)"
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prepath(s::Settings) = prefix(s)
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prepath(s::Settings) = prefix(s)
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fullpath(s::Settings) = joinpath(prefix(s), suffix(s))
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fullpath(s::Settings) = joinpath(prefix(s), suffix(s))
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function saveλandP(name, λ, P, ws)
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save(filename(name, :λ), "λ", λ)
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save(filename(name, :P), "P", P)
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save(filename(name, :warm), "warmstart", ws)
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end
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exists(fname::String) = isfile(fname) || islink(fname)
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exists(fname::String) = isfile(fname) || islink(fname)
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filename(prefix, s::Symbol) = filename(prefix, Val{s})
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filename(prefix, s::Symbol) = filename(prefix, Val{s})
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