@@ -80,14 +80,14 @@ Fun(f::Fun,::Type{T}) where {T<:Space} = Fun(f,T(domain(f)))
8080
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8282Fun (f,T:: Type ) = Fun (dynamic (f),T ())
83- Fun (f:: Function ,T:: Type ,n:: Integer ) = Fun (dynamic (f),T (),n)
83+ Fun (f,T:: Type ,n:: Integer ) = Fun (dynamic (f),T (),n)
8484
8585Fun (f:: AbstractVector ,d:: Domain ) = Fun (f,Space (d))
8686Fun (d:: Domain ,f:: AbstractVector{T} ) where {T<: Number } = Fun (Space (d),f)
8787Fun (d:: Domain ,f:: AbstractVector ) = Fun (Space (d),f)
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8989
90- Fun (f:: Function ,d:: Domain ,n) = Fun (dynamic (f),Space (d),n)
90+ Fun (f,d:: Domain ,n) = Fun (dynamic (f),Space (d),n)
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9292
9393# We do zero special since zero exists even when one doesn't
@@ -170,11 +170,11 @@ Fun(f::typeof(zero), d::Space) = zeros(eltype(domain(d)),d)
170170Fun (f:: typeof (one), d:: Space ) = ones (eltype (domain (d)),d)
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172172Fun (f:: Type , d:: Domain ) = Fun (f,Space (d))
173- Fun (f:: Function , d:: Domain ) = Fun (f,Space (d))
173+ Fun (f, d:: Domain ) = Fun (f,Space (d))
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175175
176176# this is the main constructor
177- Fun (f:: Function , d:: Space ) = default_Fun (dynamic (f), d)
177+ Fun (f, d:: Space ) = default_Fun (dynamic (f), d)
178178
179179# this supports expanding a Fun to a larger or smaller domain.
180180# we take the union and then intersection to get at any singularities
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