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make smc acting on the right
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@ -97,17 +97,21 @@ function mcg_twists(G::AutomorphismGroup{<:FreeGroup})
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return Tas, Tαs, Tes
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return Tas, Tαs, Tes
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end
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end
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struct SymplecticMappingClass{N,T} <: GSymbol
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struct SymplecticMappingClass{T, F} <: GSymbol
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id::Symbol # :A, :B
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id::Symbol # :A, :B
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i::UInt
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i::UInt
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j::UInt
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j::UInt
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minus::Bool
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minus::Bool
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inv::Bool
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inv::Bool
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images::NTuple{N,T}
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autFn_word::T
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invimages::NTuple{N,T}
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perm::Vector{Int}
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gens_idcs::Dict{Int, Int}
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f::F
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end
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end
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Base.:(==)(a::SymplecticMappingClass, b::SymplecticMappingClass) = a.autFn_word == b.autFn_word
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Base.hash(a::SymplecticMappingClass, h::UInt) = hash(a.autFn_word, h)
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function SymplecticMappingClass(
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function SymplecticMappingClass(
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Σ::SurfaceGroup,
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Σ::SurfaceGroup,
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sautFn,
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sautFn,
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@ -153,23 +157,13 @@ function SymplecticMappingClass(
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throw("Type not recognized: $id")
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throw("Type not recognized: $id")
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end
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end
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g = sautFn(w)
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a = sautFn(w)
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g = genus(Σ)
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perm = [2g:-2:1; (2g-1):-2:1]
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perm = let g = genus(Σ)
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f(t) = evaluate!(t, a)
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[reverse(1+1:2:2g); reverse(1:2:2g)]
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end
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d = ntuple(i->gens(Σ, i), ngens(Σ))[perm]
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res = SymplecticMappingClass(id, UInt(i), UInt(j), minus, inverse, a, perm, f)
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img = evaluate!(deepcopy(d), g)[invperm(perm)]
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invim = evaluate!(d, inv(g))[invperm(perm)]
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img, invim = inverse ? (invim, img) : (img, invim)
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gens_idcs = Dict(alphabet(Σ)[Σ.gens[i]] => i for i in 1:ngens(Σ))
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res = SymplecticMappingClass(id, UInt(i), UInt(j), minus, inverse, img, invim, gens_idcs)
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return res
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return res
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end
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end
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@ -185,7 +179,9 @@ function Base.show(io::IO, smc::SymplecticMappingClass)
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end
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end
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function Base.inv(m::SymplecticMappingClass)
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function Base.inv(m::SymplecticMappingClass)
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return SymplecticMappingClass(m.id, m.i, m.j, m.minus, !m.inv, m.invimages, m.images, m.gens_idcs)
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inv_w = inv(m.autFn_word)
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f(t) = evaluate!(t, inv_w)
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return SymplecticMappingClass(m.id, m.i, m.j, m.minus, !m.inv, inv_w, m.perm, f)
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end
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end
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function evaluate!(
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function evaluate!(
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@ -194,27 +190,10 @@ function evaluate!(
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A::Alphabet,
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A::Alphabet,
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tmp = one(first(t)),
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tmp = one(first(t)),
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) where {N,T}
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) where {N,T}
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img = smc.images
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for elt in t
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copyto!(tmp, elt)
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resize!(word(elt), 0)
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for idx in word(tmp)
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# @show idx
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k = if haskey(smc.gens_idcs, idx)
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img[smc.gens_idcs[idx]]
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else
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inv(img[smc.gens_idcs[inv(A, idx)]])
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end
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append!(word(elt), word(k))
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end
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_setnormalform!(elt, false)
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_setvalidhash!(elt, false)
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normalform!(tmp, elt)
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copyto!(elt, tmp)
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end
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t = smc.f(t[smc.perm])[invperm(smc.perm)]
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# t = evaluate!(t[smc.perm], smc.autFn_word, tmp)
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# t = t[invperm(smc.perm)]
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return t
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return t
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end
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end
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@ -7,8 +7,7 @@ using Groups.KnuthBendix
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G = SpecialAutomorphismGroup(FreeGroup(2genus))
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G = SpecialAutomorphismGroup(FreeGroup(2genus))
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# symplectic pairing goes like this:
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# symplectic pairing in the free Group goes like this:
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# in the free Group:
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# f1 ↔ f5
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# f1 ↔ f5
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# f2 ↔ f6
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# f2 ↔ f6
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# f3 ↔ f7
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# f3 ↔ f7
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@ -268,9 +267,6 @@ using Groups.KnuthBendix
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# τ^genus is trivial but only in autπ₁Σ₄
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# τ^genus is trivial but only in autπ₁Σ₄
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# here we check its centrality
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# here we check its centrality
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τᵍ = τ^genus
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τᵍ = τ^genus
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@test_broken all(a * τᵍ == τᵍ * a for a in Groups.gens(G))
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@test_broken all(a * τᵍ == τᵍ * a for a in Groups.gens(G))
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end
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end
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