Added tests for Integer.jl #1351
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../../../.julia/packages/Documenter/bYYzK/src/Utilities/Utilities.jl#L34
2002 docstrings not included in the manual:
FpMatrix
elementary_divisors :: Union{Tuple{MatElem{T}}, Tuple{T}} where T
elementary_divisors :: Tuple{TorQuadModule}
tan :: Tuple{CalciumFieldElem}
natural_lattice :: Tuple{Hecke.AlgAssAbsOrd{<:MatAlgebra{QQFieldElem, QQMatrix}}}
gen :: Tuple{FinGenAbGroup, Int64}
gcdx :: Union{Tuple{T}, Tuple{OrdLocElem{T}, OrdLocElem{T}}} where T<:AbsSimpleNumFieldElem
oct :: Tuple{ZZRingElem}
valuation :: Tuple{ZZRingElem, AbsNumFieldOrderIdeal}
valuation :: Tuple{Integer, AbsNumFieldOrderIdeal}
valuation :: Tuple{Hecke.AbsNumFieldOrderFractionalIdeal, AbsNumFieldOrderIdeal}
valuation :: Tuple{FunFldDiff, Hecke.GenOrdIdl}
valuation :: Union{Tuple{T}, Tuple{OrdLocElem{T}, AbsNumFieldOrderIdeal{AbsSimpleNumField, T}}} where T<:AbsSimpleNumFieldElem
valuation :: Union{Tuple{Hecke.LocalFieldElem{S, T}}, Tuple{T}, Tuple{S}} where {S<:FieldElem, T<:Hecke.LocalFieldParameter}
valuation :: Tuple{AbsNumFieldOrderIdeal, AbsNumFieldOrderIdeal}
valuation :: Tuple{Divisor, Hecke.GenOrdIdl}
QQMPolyRing
subalgebra :: Union{Tuple{T}, Tuple{Hecke.AbstractAssociativeAlgebra{T}, Hecke.AbstractAssociativeAlgebraElem{T}}, Tuple{Hecke.AbstractAssociativeAlgebra{T}, Hecke.AbstractAssociativeAlgebraElem{T}, Bool}, Tuple{Hecke.AbstractAssociativeAlgebra{T}, Hecke.AbstractAssociativeAlgebraElem{T}, Bool, Symbol}} where T
subalgebra :: Union{Tuple{T}, Tuple{Hecke.AbstractAssociativeAlgebra{T}, Vector{<:Hecke.AbstractAssociativeAlgebraElem{T}}}} where T
subalgebra :: Union{Tuple{T}, Tuple{StructureConstantAlgebra{T}, AssociativeAlgebraElem{T, StructureConstantAlgebra{T}}}, Tuple{StructureConstantAlgebra{T}, AssociativeAlgebraElem{T, StructureConstantAlgebra{T}}, Bool}, Tuple{StructureConstantAlgebra{T}, AssociativeAlgebraElem{T, StructureConstantAlgebra{T}}, Bool, Symbol}} where T
subalgebra :: Union{Tuple{T}, Tuple{StructureConstantAlgebra{T}, Array{AssociativeAlgebraElem{T, StructureConstantAlgebra{T}}, 1}}} where T
trivial_morphism :: Tuple{TorQuadModule}
trivial_morphism :: Tuple{TorQuadModule, TorQuadModule}
kodaira_symbols :: Tuple{EllipticCurve{QQFieldElem}}
kodaira_symbols :: Tuple{EllipticCurve{AbsSimpleNumFieldElem}}
hasse_interval :: Tuple{EllipticCurve{<:FinFieldElem}}
is_real :: Tuple{InfPlc}
integral :: Union{Tuple{RelPowerSeriesRingElem{T}}, Tuple{T}} where T
is_less_real :: Tuple{QQBarFieldElem, QQBarFieldElem}
trace_of_frobenius :: Union{Tuple{EllipticCurve{T}}, Tuple{T}} where T<:FinFieldElem
trace_of_frobenius :: Union{Tuple{T}, Tuple{EllipticCurve{T}, Int64}} where T<:FinFieldElem
asinpi :: Tuple{QQBarFieldElem}
complementary_divisor :: Tuple{Divisor}
is_reduced :: Tuple{QuadBin{ZZRingElem}}
_block_indices_vals :: Tuple{Union{ZZModMatrix, zzModMatrix}, Any}
prime_decomposition_type :: Union{Tuple{T}, Tuple{AbsSimpleNumFieldOrder, T}} where T<:Union{Integer, ZZRingElem}
prime_decomposition_type :: Union{Tuple{T}, Tuple{T, AbsNumFieldOrderIdeal}} where T<:Union{ClassField, Hecke.ClassField_pp}
sqrtpos :: Union{Tuple{RealFieldElem}, Tuple{RealFieldElem, Int64}}
sqrtpos :: Tuple{ArbFieldElem}
group_structure :: Tuple{AbsSimpleNumFieldOrderQuoRing}
eigenvalues_with_multiplicities :: Tuple{QQBarField, Union{QQMatrix, ZZMatrix}}
eigenvalues_with_multiplicities :: Union{Tuple{MatElem{T}}, Tuple{T}} where T<:FieldElem
eigenvalues_with_multiplicities :: Union{Tuple{T}, Tuple{Field, MatElem{T}}} where T<:RingElem
eigenvalues_with_multiplicities :: Tuple{ComplexMat}
eigenvalues_with_multiplicities :: Tuple{AcbMatrix}
zero_divisor :: Tuple{AbstractAlgebra.Generic.FunctionFieldElem}
zero_divisor :: Tuple{Divisor}
Order :: Union{Tuple{T}, Tuple{S}, Tuple{S, Vector{T}}} where {S<:NumField{QQFieldElem}, T<:NumFieldElem{QQFieldElem}}
Order :: Union{Tuple{S}, Tuple{S, FakeFmpqMat}} where S<:NumField{QQFieldElem}
Order :: Union{Tuple{S}, Tuple{S, QQMatrix}} where S<:Union{AbsNonSimpleNumField, AbsSimpleNumField}
Ord
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