"improve" norm, fixes Oscar #2541 #4056
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Documentation:
../../../.julia/packages/Documenter/bYYzK/src/Utilities/Utilities.jl#L34
2319 docstrings not included in the manual:
jacobi_symbol :: Tuple{ZZRingElem, ZZRingElem}
jacobi_symbol :: Tuple{Int64, Int64}
factor_mod_pk_init :: Tuple{ZZPolyRingElem, Int64}
is_less_real :: Tuple{qqbar, qqbar}
trace_lattice_with_isometry_and_transfer_data :: Union{Tuple{AbstractLat{T}}, Tuple{T}} where T
read :: Tuple{String, AnticNumberField, Type{nf_elem}}
read :: Tuple{IO, AnticNumberField, Type{nf_elem}}
quartic_local_solubility :: NTuple{5, Any}
is_primitive_root :: Tuple{AbstractAlgebra.Generic.ResidueRingElem{ZZRingElem}, ZZRingElem, Fac{ZZRingElem}}
fmpq_mpoly
is_isotropic :: Tuple{AbstractSpace}
fq_default_mpoly
pmaximal_overorder :: Tuple{Hecke.AlgAssRelOrd, Union{NfAbsOrdIdl, Hecke.NfRelOrdIdl}}
pmaximal_overorder :: Tuple{NfAbsOrd, ZZRingElem}
ismodular
product_of_components :: Tuple{Hecke.AbsAlgAss, Vector{Int64}}
setintersection :: Union{Tuple{RealFieldElem, RealFieldElem}, Tuple{RealFieldElem, RealFieldElem, Int64}}
setintersection :: Tuple{arb, arb}
issimultaneous_diagonalizable
iscomplex
airy_bi_prime :: Tuple{arb}
airy_bi_prime :: Tuple{acb}
airy_bi_prime :: Union{Tuple{ComplexFieldElem}, Tuple{ComplexFieldElem, Int64}}
airy_bi_prime :: Union{Tuple{RealFieldElem}, Tuple{RealFieldElem, Int64}}
modular_init :: Tuple{AnticNumberField, ZZRingElem}
fmpz_laurent_series
bound_inf_norm :: Tuple{RealMat}
bound_inf_norm :: Tuple{arb_mat}
bound_inf_norm :: Tuple{ComplexMat}
bound_inf_norm :: Tuple{acb_mat}
kernel_group :: Tuple{Hecke.AlgAssAbsOrd}
istorsion_unit
reduce_mod! :: Union{Tuple{T}, Tuple{MatElem{T}, MatElem{T}}} where T<:FieldElem
istotally_positive
_doc_stub_nf
NumFieldOrd
isone :: Tuple{ZZLaurentSeriesRingElem}
isone :: Tuple{arb}
isone :: Tuple{acb}
isone :: Tuple{RealFieldElem}
isone :: Tuple{qqbar}
isone :: Tuple{ComplexFieldElem}
isone :: Tuple{ca}
isone :: Tuple{FlintPuiseuxSeriesElem}
fq_default_rel_series
isleft_ideal
QQPolyRing
fqPolyRepMPolyRing
ZZRingElem :: Tuple{RealFieldElem}
ZZRingElem :: Tuple{arb}
ZZRingElem :: Tuple{qqbar}
ZZRingElem
isnorm
is_probable_prime :: Tuple{ZZRingElem}
FmpzModPolyRing
const_e :: Tuple{ArbField}
const_e :: Union{Tuple{RealField}, Tuple{RealField, Int64}}
FqPolyRepMPolyRingElem
different_divisor :: Tuple{AbstractAlgebra.Generic.FunctionField}
formal_inverse :: Union{Tuple{EllCrv}, Tuple{EllCrv, Int64}}
signature_pair :: Tuple{ZZGenus}
factor_distinct_deg :: Tuple{FpPolyRingElem}
factor_distinct_deg :: Tuple{zzModPolyRingElem}
factor_distinct_deg :: Tuple{fpPolyRingElem}
factor_distinct_deg :: Tuple{fqPolyRepPolyRingElem}
factor_distinct_deg :: Tuple{ZZModPolyRingElem}
factor_distinct_deg :: Tuple{FqPolyRepPolyRingElem}
factor_distinct_deg :: Tuple{FqPolyRingElem}
bad_primes :: Tuple{QuadLat}
bad_primes :: Tuple{ZZGenus}
bad_primes :: Tuple{EllCrv{QQFieldElem}}
bad_primes :: Tuple{EllCrv{nf_elem}}
bad_primes :: Tuple{HermLat}
decompose :: Union{Tuple{AlgAss{T}}, Tuple{T}} where T
degree :: Tuple{qqbar}
degree :: Tuple{FqField}
degree :: Tuple{FqPolyRepField}
degree :: Tuple{AnticNumberField}
add_verbose_scope
tidy_model :: Tuple{EllCrv{QQFieldElem}}
FqPolyRepFieldElem
modp_reduction :: Tuple{EllCrv{nf_elem}, NfOrdIdl}
SRow
local_genera_hermitian
next_minimal :: Tuple{QQFieldElem}
direct_product :: Tuple{Vector{AnticNumberField}}
direct_product :: Union{Tuple{Vector{<:AlgAss{T}}}, Tuple{T}} where T
direct_product :: Union{Tuple{Vector{T}}, Tuple{T}} where T<:AbstractSpace
direct_product :: Union{Tuple{Vector{T}}, Tuple{T}} where T<:AbstractLat
_improper_spinor_generators :: Tuple{ZZGenus}
rres :: Tuple{ZZPolyRingElem, ZZPolyRingElem}
rres :: Union{Tuple{T}, Tuple{S}, Tuple{PolyRingElem{T}, PolyRingElem{T}}} where {S<:Union{Integer, ZZRingElem}, T<:ResElem{S}}
ZZPolyRingElem
dot :: Union{
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../../../.julia/packages/Documenter/bYYzK/src/Documenter.jl#L800
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