Adjust to changes in AA and Nemo (#1236) #4226
Annotations
10 warnings
../../../.julia/packages/Documenter/bYYzK/src/Utilities/Utilities.jl#L34
2352 docstrings not included in the manual:
AbsLat
maximal_submodules :: Union{Tuple{Hecke.ModAlgAss{S, T, V}}, Tuple{V}, Tuple{T}, Tuple{S}, Tuple{Hecke.ModAlgAss{S, T, V}, Int64}, Tuple{Hecke.ModAlgAss{S, T, V}, Int64, Any}} where {S, T, V}
isleaf
subgroups :: Tuple{GrpGen}
pseudo_basis :: Union{Tuple{Hecke.AlgAssRelOrd{S, T, U}}, Tuple{U}, Tuple{T}, Tuple{S}} where {S, T, U}
pseudo_basis :: Tuple{Hecke.AlgAssRelOrdIdl}
pseudo_basis :: Tuple{Union{Hecke.NfRelOrdFracIdl, Hecke.NfRelOrdIdl}}
faltings_height :: Union{Tuple{EllCrv{QQFieldElem}}, Tuple{EllCrv{QQFieldElem}, Int64}}
SRowSpace
FqPolyRepField
_isnormal :: Tuple{Vector{GrpGenElem}}
_isnormal :: Tuple{Vector{GrpGenElem}, GrpGenElem}
non_pivot_cols_of_ref :: Tuple{MatrixElem}
fqPolyRepMPolyRing
roots_upper_bound :: Tuple{ComplexPoly}
roots_upper_bound :: Tuple{RealPoly}
roots_upper_bound :: Tuple{acb_poly}
roots_upper_bound :: Tuple{arb_poly}
gamma_lower :: Union{Tuple{ComplexFieldElem, ComplexFieldElem}, Tuple{ComplexFieldElem, ComplexFieldElem, Int64}}
gamma_lower :: Union{Tuple{RealFieldElem, RealFieldElem}, Tuple{RealFieldElem, RealFieldElem, Int64}}
gamma_lower :: Tuple{acb, acb}
gamma_lower :: Tuple{arb, arb}
embed_any :: Union{Tuple{T}, Tuple{T, T}} where T<:FinField
cyclotomic :: Tuple{Int64, ZZPolyRingElem}
euler_phi_inv_fac_elem :: Tuple{ZZRingElem, NfOrd}
euler_phi_inv_fac_elem :: Tuple{ZZRingElem}
rational_isometry_class :: Tuple{ZZGenus}
rational_isometry_class :: Tuple{ZZLocalGenus}
collect_small_blocks :: Tuple{Any}
_is_indefinite :: Tuple{MatElem{QQFieldElem}}
zero :: Tuple{TorQuadModuleMor}
is_free :: Tuple{GrpAbFinGen}
divisor :: Tuple{AbstractAlgebra.Generic.FunctionFieldElem}
divisor :: Tuple{FunFldDiff}
divisor :: Tuple{GenOrdFracIdl, GenOrdFracIdl}
unit_group :: Union{Tuple{AbstractAlgebra.Integers{T}}, Tuple{T}} where T
unit_group :: Tuple{ZZRing}
integral_split :: Tuple{Hecke.NfAbsOrdFracIdl}
integral_split :: Tuple{AbstractAlgebra.Generic.FunctionFieldElem, Hecke.GenOrd}
haspreimage :: Tuple{GrpAbFinGenMap, GrpAbFinGenElem}
is_perfect_power :: Tuple{ZZRingElem}
finite_split :: Tuple{Divisor}
conjugates :: Union{Tuple{nf_elem, qAdicConj}, Tuple{nf_elem, qAdicConj, Int64}}
conjugates :: Union{Tuple{NumFieldElem}, Tuple{NumFieldElem, Int64}, Tuple{NumFieldElem, Int64, Any}}
isprime_known
FqDefaultMPolyRing
FqDefaultFiniteField
unique_integer :: Tuple{RealFieldElem}
unique_integer :: Tuple{ComplexFieldElem}
unique_integer :: Tuple{arb}
unique_integer :: Tuple{ComplexPoly}
unique_integer :: Tuple{RealPoly}
unique_integer :: Tuple{acb}
unique_integer :: Tuple{acb_poly}
unique_integer :: Tuple{arb_poly}
factorial :: Tuple{arb}
factorial :: Tuple{ZZRingElem}
factorial :: Tuple{Int64, ArbField}
factorial :: Union{Tuple{RealFieldElem}, Tuple{RealFieldElem, Int64}}
factorial :: Union{Tuple{Int64, RealField}, Tuple{Int64, RealField, Int64}}
swinnerton_dyer :: Tuple{Int64, ZZPolyRingElem}
multgrp_of_cyclic_grp :: Tuple{ZZRingElem}
_solve_X :: Tuple{fpMatrix, Any, Any}
FpPolyRingElem
logarithmic_integral :: Tuple{AbstractFloat}
divexact_right :: Union{Tuple{T}, Tuple{T, T}, Tuple{T, T, Bool}} where T<:Union{Hecke.AlgAssAbsOrdElem, Hecke.AlgAssRelOrdElem}
divexact_right :: Union{Tuple{T}, Tuple{S}, Tuple{Hecke.AlgAssAbsOrdIdl{S, T}, Hecke.AlgAssAbsOrdIdl{S, T}}} where {S, T}
divexact_right :: Union{Tuple{U}, Tuple{T}, Tuple{S}, Tuple{Hecke.AlgAssRelOrdIdl{S, T, U}, Hecke.AlgAssRelOrdIdl{S, T, U}}} where {S, T, U}
divexact_right :: Tuple{Hecke.AbsAlgAssElem, Hecke.AbsAlgAssElem}
fpPolyRingElem
pradical :: Tuple{Hecke.AlgAssAbsOrd, Union{Integer, ZZRingElem}}
pradical :: Tuple{Hecke.AlgAssRelOrd, Union{NfAbsOrdIdl, Hecke.NfRelOrdIdl}}
has_complement :: Union{Tuple{GrpAbFinGenMap}, Tuple{GrpAbFinGenMap, Bool}}
has_complement :: Tuple{TorQuadModuleMor}
neighbours
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