Fix kronecker_product
for sparse matrices with zero row (#1227)
#4209
Annotations
10 warnings
../../../.julia/packages/Documenter/bYYzK/src/Utilities/Utilities.jl#L34
2317 docstrings not included in the manual:
is_uinf :: Tuple{ca}
const_pi :: Union{Tuple{ComplexField}, Tuple{ComplexField, Int64}}
const_pi :: Tuple{AcbField}
const_pi :: Tuple{ArbField}
const_pi :: Union{Tuple{RealField}, Tuple{RealField, Int64}}
const_pi :: Tuple{CalciumField}
right_kernel_basis :: Union{Tuple{MatElem{T}}, Tuple{T}} where T<:FieldElem
isconductor
is_signed_inf :: Tuple{ca}
is_less_real :: Tuple{qqbar, qqbar}
NumFieldOrdFracIdl
formal_inverse :: Union{Tuple{EllCrv}, Tuple{EllCrv, Int64}}
image_of_logarithm_one_units :: Tuple{NonArchLocalField}
zzModMatrix
issubfield_normal
_two_adic_symbol :: Tuple{MatElem, Any}
embedding :: Tuple{InfPlc}
contract :: Tuple{Hecke.AlgAssAbsOrdIdl, Hecke.AlgAssAbsOrd}
has_norm :: Tuple{Hecke.GenOrdIdl}
has_norm :: Tuple{NfAbsOrdIdl}
gamma_regularized :: Union{Tuple{ComplexFieldElem, ComplexFieldElem}, Tuple{ComplexFieldElem, ComplexFieldElem, Int64}}
gamma_regularized :: Tuple{arb, arb}
gamma_regularized :: Tuple{acb, acb}
gamma_regularized :: Union{Tuple{RealFieldElem, RealFieldElem}, Tuple{RealFieldElem, RealFieldElem, Int64}}
matrix :: Tuple{TorQuadModuleMor}
matrix :: Tuple{AlgMatElem}
is_probable_supersingular :: Union{Tuple{EllCrv{T}}, Tuple{T}} where T<:FinFieldElem
residual_polynomial :: Tuple{NewtonPolygon{ZZPolyRingElem}, Line}
restrict_scalars :: Union{Tuple{T}, Tuple{Hecke.AbsAlgAss{T}, Field}} where T
restrict_scalars :: Union{Tuple{AbstractSpace, QQField}, Tuple{AbstractSpace, QQField, FieldElem}}
restrict_scalars :: Union{Tuple{AbstractLat, QQField}, Tuple{AbstractLat, QQField, FieldElem}}
restrict_scalars :: Tuple{Hecke.AbsAlgAss{nf_elem}, NfToNfMor}
restrict_scalars :: Tuple{AbstractLat, AbstractSpaceRes}
_hensel_qf_modular_odd :: Union{Tuple{T}, Tuple{T, T, T, Any, Any}} where T<:Union{ZZModMatrix, zzModMatrix}
iseq
ProdEnv
hasse_invariant :: Tuple{AbstractLat, Any}
complete_to_basis :: Union{Tuple{MatElem{T}}, Tuple{T}} where T<:FieldElem
fmpz_poly_read! :: Tuple{ZZPolyRingElem, String}
ideals :: Tuple{Any}
radius :: Tuple{RealFieldElem}
radius :: Tuple{arb}
continued_fraction :: Tuple{arb}
FqNmodMPolyRing
FqNmodMatSpace
prime_divisors :: Tuple{ZZRingElem}
prime_divisors :: Tuple{Int64}
FacElemMon
is_cyclic_kernel_polynomial :: Tuple{EllCrv, PolyRingElem}
isequal_real
isequal_abs_real
iscomplex_conjugation
lower_bound :: Tuple{arb, Type{ZZRingElem}}
atan :: Tuple{ca}
tr :: Tuple{FqFieldElem}
tr :: Tuple{nf_elem}
tr :: Tuple{FqPolyRepFieldElem}
GFPPolyRing
fixed_field :: Tuple{ClassField, GrpAbFinGen}
fixed_field :: Union{Tuple{T}, Tuple{SimpleNumField, T}} where T<:Hecke.NumFieldMor
write :: Union{Tuple{String, Vector{nf_elem}}, Tuple{String, Vector{nf_elem}, String}}
write :: Tuple{IO, Vector{nf_elem}}
ZZRingElem :: Tuple{qqbar}
ZZRingElem :: Tuple{RealFieldElem}
ZZRingElem :: Tuple{arb}
ZZRingElem
lcm :: Tuple{ZZRingElem, ZZRingElem, Vararg{ZZRingElem}}
lcm :: Tuple{Vector{ZZRingElem}}
EvalEnv
any_order :: Union{Tuple{Hecke.AbsAlgAss{T}}, Tuple{T}} where T<:NumFieldElem
any_order :: Union{Tuple{T}, Tuple{Hecke.AbsAlgAss{T}, Union{NfAbsOrd, Hecke.NfRelOrd}}} where T<:NumFieldElem
any_order :: Tuple{Hecke.AbsAlgAss{QQFieldElem}}
common_eigenspaces :: Union{Tuple{Vector{<:MatElem{T}}}, Tuple{T}} where T<:FieldElem
lower_discriminant_bound :: Tuple{Int64, Int64}
fpFieldElem
isgood_bong
bessel_j :: Union{Tuple{ComplexFieldElem, ComplexFieldElem}, Tuple{ComplexFieldElem, ComplexFieldElem, Int64}}
bessel_j :: Tuple{acb, acb}
frobenius_map :: Union{Tuple{EllCrv{T}}, Tuple{T}} where T<:FinFieldElem
frobenius_map :: Union{Tuple{T}, Tuple{EllCrv{T}, Any}} where T<:FinFieldElem
frobenius_map :: Tuple{ClassField}
isexact
Divisors
representation_matrix_mod :: Tuple{NfAbsOrdElem, ZZRingElem}
MSet
islocally_isometric
ZpGenus
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