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make one fully abstract method
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@ -54,7 +54,7 @@ export Automorphism, AutGroup, Aut, SAut
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#
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###############################################################################
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elem_type(::AutGroup{N}) where N = Automorphism{N}
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elem_type(::Type{AutGroup{N}}) where N = Automorphism{N}
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parent_type(::Automorphism{N}) where N = AutGroup{N}
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@ -188,12 +188,6 @@ SAut(G::Group) = AutGroup(G, special=true)
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Automorphism{N}(s::AutSymbol) where N = Automorphism{N}(AutSymbol[s])
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function Base.one(G::AutGroup{N}) where N
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id = Automorphism{N}(id_autsymbol())
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id.parent = G
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return id
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end
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function (G::AutGroup{N})(f::AutSymbol) where N
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g = Automorphism{N}([f])
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g.parent = G
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@ -30,10 +30,9 @@ export FPGroupElem, FPGroup
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#
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###############################################################################
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elem_type(::Type{FPGroup}) = FPGroupElem
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parent_type(::Type{FPGroupElem}) = FPGroup
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elem_type(::FPGroup) = FPGroupElem
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###############################################################################
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#
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# FPSymbol constructors
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@ -59,12 +58,6 @@ FPGroup(H::FreeGroup) = FPGroup([FPSymbol(s) for s in H.gens])
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#
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###############################################################################
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function Base.one(G::FPGroup)
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id = FPGroupElem(FPSymbol[])
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id.parent = G
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return id
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end
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function (G::FPGroup)(w::GWord)
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if isempty(w)
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return one(G)
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@ -52,12 +52,6 @@ FreeGroup(a::Vector) = FreeGroup(FreeSymbol.(a))
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#
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###############################################################################
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function Base.one(G::FreeGroup)
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id = FreeGroupElem(FreeSymbol[])
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id.parent = G
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return id
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end
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function (G::FreeGroup)(w::GroupWord{FreeSymbol})
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if length(syllables(w)) > 0
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for s in w.symbols
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@ -15,13 +15,25 @@ export elements
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using LinearAlgebra
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using Markdown
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Base.one(G::Generic.PermGroup) = G(collect(1:G.n), false)
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Base.one(G::Generic.PermGroup) = Generic.Perm(G.n)
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Base.one(r::NCRingElem) = one(parent(r))
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###############################################################################
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#
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# ParentType / ObjectType definition
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#
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###############################################################################
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abstract type AbstractFPGroup <: Group end
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function Base.one(G::Gr) where Gr <: AbstractFPGroup
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El = elem_type(G)
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id = El(eltype(El)[])
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id.parent = G
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return id
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end
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elem_type(G::Gr) where Gr <:AbstractFPGroup = elem_type(Gr) # fallback definition
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@doc doc"""
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::GSymbol
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@ -46,6 +58,8 @@ hash(s::S, h::UInt) where S<:GSymbol = hash(s.id, hash(s.pow, hash(S, h)))
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abstract type GWord{T<:GSymbol} <: GroupElem end
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# fallback definitions
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Base.eltype(w::GW) where GW<:GWord = eltype(GW)
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@doc doc"""
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W::GroupWord{T} <: GWord{T<:GSymbol} <:GroupElem
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> Basic representation of element of a finitely presented group. `W.symbols`
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@ -77,8 +91,8 @@ syllables(w::GWord) = w.symbols
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ismodified(w::GWord) = w.modified
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setmodified!(w::GWord) = (w.modified = true; w)
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unsetmodified!(w::GWord) = (w.modified = false; w)
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Base.one(w::GWord) = one(parent(w))
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abstract type AbstractFPGroup <: Group end
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###############################################################################
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#
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