Fix Order(K, [ ... ])
#4233
Annotations
10 warnings
../../../.julia/packages/Documenter/bYYzK/src/Utilities/Utilities.jl#L34
2351 docstrings not included in the manual:
gcd_sircana :: Union{Tuple{T}, Tuple{S}, Tuple{PolyRingElem{T}, PolyRingElem{T}}} where {S<:Union{Integer, ZZRingElem}, T<:ResElem{S}}
next_signed_minimal :: Tuple{QQFieldElem}
csgn :: Tuple{qqbar}
csgn :: Tuple{ca}
pth_root :: Tuple{FqFieldElem}
pth_root :: Tuple{FqPolyRepFieldElem}
isweakly_ramified
right_kernel_basis :: Union{Tuple{MatElem{T}}, Tuple{T}} where T<:FieldElem
FpMatrix
matrix :: Tuple{TorQuadModuleMor}
matrix :: Tuple{AlgMatElem}
isrational
is_hnf :: Tuple{ZZMatrix}
atan2 :: Union{Tuple{RealFieldElem, RealFieldElem}, Tuple{RealFieldElem, RealFieldElem, Int64}}
atan2 :: Tuple{arb, arb}
is_prime_power :: Tuple{Union{Integer, ZZRingElem}}
faltings_height :: Union{Tuple{EllCrv{QQFieldElem}}, Tuple{EllCrv{QQFieldElem}, Int64}}
real :: Tuple{qqbar}
real :: Tuple{ca}
lll_gram_indef_isotropic :: Tuple{MatElem{ZZRingElem}}
fmpz_mod
n_positive_roots :: Tuple{ZZPolyRingElem}
n_positive_roots :: Tuple{PolyRingElem{nf_elem}, Hecke.NumFieldEmb}
iscm_field_easy
left_kernel :: Union{Tuple{SMat{T}}, Tuple{T}} where T<:FieldElement
find_coprime_representatives :: Union{Tuple{Vector{NfOrdIdl}, NfOrdIdl}, Tuple{Vector{NfOrdIdl}, NfOrdIdl, Dict{NfOrdIdl, Int64}}}
find_coprime_representatives :: Union{Tuple{Hecke.MapClassGrp, NfOrdIdl}, Tuple{Hecke.MapClassGrp, NfOrdIdl, Dict{NfOrdIdl, Int64}}}
add_assert_scope
hasse_invariant :: Tuple{AbstractLat, Any}
iscomplex_conjugation
const_log10 :: Union{Tuple{RealField}, Tuple{RealField, Int64}}
const_log10 :: Tuple{ArbField}
simultaneous_diagonalization :: Union{Tuple{Vector{S}}, Tuple{S}, Tuple{T}} where {T<:FieldElem, S<:MatElem{T}}
simultaneous_diagonalization :: Union{Tuple{S}, Tuple{T}, Tuple{W}, Tuple{Vector{S}, W}} where {W<:Field, T<:FieldElem, S<:MatElem{T}}
is_exact :: Tuple{ComplexOfMorphisms}
QQFieldElem :: Tuple{qqbar}
QQFieldElem
_hensel_qf :: Union{Tuple{T}, Tuple{T, T, T, Any, Any, Any}} where T<:Union{ZZModMatrix, zzModMatrix}
- :: Tuple{TorQuadModuleMor}
- :: Tuple{TorQuadModuleMor, TorQuadModuleMor}
- :: Tuple{AlgMatElem}
- :: Tuple{Hecke.LocalQuadSpaceCls, Hecke.LocalQuadSpaceCls}
_two_adic_symbol :: Tuple{MatElem, Any}
is_norm :: Tuple{AnticNumberField, Integer}
endomorphism_ring :: Tuple{Hecke.EndAlgMap, Hecke.ModAlgAssLat}
isnorm
_doc_stub_nf2
contains_nonnegative :: Tuple{arb}
contains_nonnegative :: Tuple{RealFieldElem}
torsion_bound :: Tuple{EllCrv{nf_elem}, Int64}
isisotropic
is_rational :: Tuple{ca}
is_rational :: Tuple{qqbar}
is_rational :: Tuple{nf_elem}
is_isogenous :: Union{Tuple{T}, Tuple{EllCrv{T}, EllCrv{T}}} where T<:FinFieldElem
to_hecke :: Tuple{IOStream, SMat}
to_hecke :: Tuple{String, SMat}
is_nonnegative :: Tuple{arb}
is_nonnegative :: Tuple{RealFieldElem}
mahler_measure_bound :: Tuple{ZZPolyRingElem}
absolute_automorphism_group :: Tuple{NumField}
absolute_automorphism_group :: Union{Tuple{ClassField}, Tuple{ClassField, Bool}}
absolute_automorphism_group :: Tuple{Hecke.LocalField}
preimage :: Tuple{Hecke.EllCrvIso, EllCrvPt}
preimage :: Tuple{TorQuadModuleMor, TorQuadModuleElem}
preimage :: Tuple{GrpGenToGrpGenMor, GrpGenElem}
ZZModMatrixSpace
set_assert_level
is_abelian :: Tuple{GrpGen}
minkowski_gram_mat_scaled :: Union{Tuple{NfAbsOrd}, Tuple{NfAbsOrd, Int64}}
const_pi :: Tuple{CalciumField}
const_pi :: Union{Tuple{ComplexField}, Tuple{ComplexField, Int64}}
const_pi :: Union{Tuple{RealField}, Tuple{RealField, Int64}}
const_pi :: Tuple{ArbField}
const_pi :: Tuple{AcbField}
fmpq
ring_of_integers :: Tuple{T} where T
can_solve_with_solution :: Tuple{QuadBin, Union{Integer, ZZRingElem}}
FakeFmpqMat
nrootscubic :: NTuple{4, Any}
GFPFmpzMPolyRing
get_verbose_level
_blocks :: Union{Tuple{Array{Int64}}, Tuple{Array{Int64}, Any}}
ZZModMPolyRing
GaloisFmpzField
maximal_s
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