Cf work in progress #4085
Annotations
10 warnings
../../../.julia/packages/Documenter/bYYzK/src/Utilities/Utilities.jl#L34
2319 docstrings not included in the manual:
cyclotomic :: Tuple{Int64, ZZPolyRingElem}
generic_group :: Tuple{Any, Any}
norm_equation :: Tuple{Union{fqPolyRepField, Hecke.RelFinField}, Union{fpFieldElem, fqPolyRepFieldElem}}
reflection :: Tuple{MatElem, MatElem}
issmooth!
rational_isometry_class :: Tuple{ZZGenus}
rational_isometry_class :: Tuple{ZZLocalGenus}
NfAbsOrdIdlSet :: Tuple{Map, NfOrdIdl}
dedekind_eta :: Union{Tuple{ComplexFieldElem}, Tuple{ComplexFieldElem, Int64}}
dedekind_eta :: Tuple{acb}
fpFieldElem
function_field :: Tuple{Divisor}
get_b_c_integral :: Tuple{Any}
parent :: Tuple{ZZRingElem}
parent :: Tuple{nf_elem}
is_equal_abs :: Tuple{qqbar, qqbar}
isone_sided
real_number_field :: Tuple{AnticNumberField, Int64}
real_number_field :: Tuple{AnticNumberField, InfPlc}
frobenius_easy :: Tuple{NfOrdIdl, ClassField}
is_normal :: Tuple{Hecke.AlgAssAbsOrdIdl}
is_normal :: Tuple{AnticNumberField}
basis_matrix :: Tuple{Hecke.AbsAlgAssIdl}
basis_matrix :: Tuple{Union{Hecke.NfRelOrdFracIdl, Hecke.NfRelOrdIdl}}
basis_matrix :: Tuple{Hecke.GenOrdIdl}
basis_matrix :: Tuple{Hecke.NfAbsOrdFracIdl}
basis_matrix :: Tuple{Hecke.AlgAssAbsOrd}
basis_matrix :: Tuple{Hecke.AlgAssRelOrdIdl}
basis_matrix :: Tuple{Vector{<:NumFieldElem}}
basis_matrix :: Tuple{Hecke.AlgAssRelOrd}
basis_matrix :: Tuple{Hecke.AlgAssAbsOrdIdl}
fqPolyRepField
islessorequal
istorsion
baby_step_giant_step :: Tuple{Any, Any, Any, Dict}
conductor :: Tuple{EllCrv{nf_elem}}
conductor :: Tuple{NfOrd, NfOrd}
conductor :: Union{Tuple{Hecke.AlgAssAbsOrd, Hecke.AlgAssAbsOrd}, Tuple{Hecke.AlgAssAbsOrd, Hecke.AlgAssAbsOrd, Symbol}}
conductor :: Tuple{NfOrd}
conductor :: Tuple{EllCrv{QQFieldElem}}
conductor :: Tuple{T} where T<:Union{ClassField, Hecke.ClassField_pp}
conductor :: Tuple{Union{Integer, ZZRingElem}}
trace_lattice_with_isometry_and_transfer_data :: Union{Tuple{AbstractLat{T}}, Tuple{T}} where T
QQMPolyRing
maximal_abelian_subfield :: Tuple{Type{ClassField}, AnticNumberField}
minimal_model :: Tuple{EllCrv{QQFieldElem}, Int64}
minimal_model :: Tuple{EllCrv{nf_elem}}
minimal_model :: Tuple{EllCrv{QQFieldElem}}
minimal_model :: Tuple{EllCrv, Any}
is_perfect_power :: Tuple{ZZRingElem}
number_of_partitions :: Tuple{Int64}
iscentral
contains_nonnegative :: Tuple{arb}
contains_nonnegative :: Tuple{RealFieldElem}
FqRelSeriesRing
_blocks :: Union{Tuple{Array{Int64}}, Tuple{Array{Int64}, Any}}
iszero :: Tuple{ComplexFieldElem}
iszero :: Tuple{ca}
iszero :: Tuple{ZZLaurentSeriesRingElem}
iszero :: Tuple{arb}
iszero :: Tuple{qqbar}
iszero :: Tuple{FlintPuiseuxSeriesElem}
iszero :: Tuple{acb}
iszero :: Tuple{RealFieldElem}
zzModMPolyRing
is_tamely_ramified :: Tuple{AnticNumberField, Union{Int64, ZZRingElem}}
to_hecke :: Tuple{String, SMat}
to_hecke :: Tuple{IOStream, SMat}
_isotropic_subspace :: Tuple{Hecke.QuadSpace{QQField, QQMatrix}}
pth_root_mod :: Tuple{NfOrdElem, NfOrdIdl}
nbits :: Tuple{ZZRingElem}
nbits :: Tuple{Integer}
gfp_fmpz_elem
rising_factorial :: Tuple{acb, Int64}
rising_factorial :: Union{Tuple{RealFieldElem, Int64}, Tuple{RealFieldElem, Int64, Int64}}
rising_factorial :: Union{Tuple{QQFieldElem, Int64, RealField}, Tuple{QQFieldElem, Int64, RealField, Int64}}
rising_factorial :: Tuple{Int64, Int64}
rising_factorial :: Tuple{arb, Int64}
rising_factorial :: Tuple{QQFieldElem, Int64, ArbField}
rising_factorial :: Tuple{ZZRingElem, Int64}
rising_factorial :: Tuple{ZZRingElem, ZZRingElem}
rising_factorial :: Tuple{ComplexFieldElem, Int64}
completion_easy :: Tuple{AnticNumberField, NfOrdIdl}
kodaira_symbol :: Tuple{EllCrv{QQFieldElem}, Any}
kodaira_symbol :: Tuple{EllCrv{nf_elem}, NfOrdIdl}
is_embedded :: Union{Tuple{T}, Tuple{T, T}} where T<:FinField
slope_factorization :: Union{Tuple{AbstractAlgebra.Generic.Poly{T}},
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