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fix indentation
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@ -183,54 +183,54 @@ function rankOne_projections(BN::WreathProduct, T::Type=Rational{Int})
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return all_projs
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end
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##############################################################################
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#
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# General Groups Misc
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#
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##############################################################################
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##############################################################################
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#
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# General Groups Misc
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#
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##############################################################################
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doc"""
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products(X::Vector{GroupElem}, Y::Vector{GroupElem}, op=*)
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> Returns a vector of all possible products (or `op(x,y)`), where $x\in X$ and
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> $y\in Y$ are group elements. You may specify which operation is used when
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> forming 'products' by adding `op` (which is `*` by default).
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"""
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function products{T<:GroupElem}(X::AbstractVector{T}, Y::AbstractVector{T}, op=*)
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result = Vector{T}()
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seen = Set{T}()
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for x in X
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for y in Y
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z = op(x,y)
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if !in(z, seen)
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push!(seen, z)
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push!(result, z)
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end
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doc"""
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products(X::Vector{GroupElem}, Y::Vector{GroupElem}, op=*)
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> Returns a vector of all possible products (or `op(x,y)`), where $x\in X$ and
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> $y\in Y$ are group elements. You may specify which operation is used when
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> forming 'products' by adding `op` (which is `*` by default).
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"""
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function products{T<:GroupElem}(X::AbstractVector{T}, Y::AbstractVector{T}, op=*)
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result = Vector{T}()
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seen = Set{T}()
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for x in X
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for y in Y
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z = op(x,y)
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if !in(z, seen)
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push!(seen, z)
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push!(result, z)
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end
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end
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return result
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end
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return result
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end
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doc"""
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generateGroup(gens::Vector{GroupElem}, r=2, Id=parent(first(gens))(), op=*)
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> Produces all elements of a group generated by elements in `gens` in ball of
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> radius `r` (word-length metric induced by `gens`).
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> If `r(=2)` is specified the procedure will terminate after generating ball
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> of radius `r` in the word-length metric induced by `gens`.
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> The identity element `Id` and binary operation function `op` can be supplied
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> to e.g. take advantage of additive group structure.
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"""
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function generateGroup{T<:GroupElem}(gens::Vector{T}, r=2, Id::T=parent(first(gens))(), op=*)
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n = 0
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R = 1
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elts = gens
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gens = [Id; gens]
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while n ≠ length(elts) && R < r
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# @show elts
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R += 1
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n = length(elts)
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elts = products(elts, gens, op)
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end
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return elts
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doc"""
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generateGroup(gens::Vector{GroupElem}, r=2, Id=parent(first(gens))(), op=*)
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> Produces all elements of a group generated by elements in `gens` in ball of
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> radius `r` (word-length metric induced by `gens`).
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> If `r(=2)` is specified the procedure will terminate after generating ball
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> of radius `r` in the word-length metric induced by `gens`.
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> The identity element `Id` and binary operation function `op` can be supplied
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> to e.g. take advantage of additive group structure.
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"""
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function generateGroup{T<:GroupElem}(gens::Vector{T}, r=2, Id::T=parent(first(gens))(), op=*)
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n = 0
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R = 1
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elts = gens
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gens = [Id; gens]
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while n ≠ length(elts) && R < r
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# @show elts
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R += 1
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n = length(elts)
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elts = products(elts, gens, op)
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end
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return elts
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end
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end # of module Projections
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