Add sparse block diagonal matrices (#1225) #4202
Annotations
10 warnings
../../../.julia/packages/Documenter/bYYzK/src/Utilities/Utilities.jl#L34
2346 docstrings not included in the manual:
ispositive_definite
isnumber
quadratic_twists :: Union{Tuple{EllCrv{T}}, Tuple{T}} where T<:FinFieldElem
isprime_known
trace_lattice_with_isometry_and_transfer_data :: Union{Tuple{AbstractLat{T}}, Tuple{T}} where T
NmodAbsSeriesRing
fq
<< :: Tuple{ZZMatrix, Int64}
<< :: Tuple{ZZRingElem, Int64}
<< :: Tuple{QQFieldElem, Int64}
_automorphous_numbers :: Tuple{ZZGenus}
angle :: Tuple{ca}
zeta :: Union{Tuple{Int64, RealField}, Tuple{Int64, RealField, Int64}}
zeta :: Tuple{acb, acb}
zeta :: Tuple{arb}
zeta :: Union{Tuple{RealFieldElem}, Tuple{RealFieldElem, Int64}}
zeta :: Union{Tuple{RealFieldElem, RealFieldElem}, Tuple{RealFieldElem, RealFieldElem, Int64}}
zeta :: Union{Tuple{ComplexFieldElem}, Tuple{ComplexFieldElem, Int64}}
zeta :: Union{Tuple{ComplexFieldElem, ComplexFieldElem}, Tuple{ComplexFieldElem, ComplexFieldElem, Int64}}
zeta :: Tuple{arb, arb}
zeta :: Tuple{Int64, ArbField}
zeta :: Tuple{acb}
cyclotomic_field_as_cm_extension :: Tuple{Int64}
isfull_lattice
fq_nmod_mat
FmpzRelSeriesRing
contract :: Tuple{Hecke.AlgAssAbsOrdIdl, Hecke.AlgAssAbsOrd}
gen :: Tuple{GrpAbFinGen, Int64}
fmpq_rel_series
_crt :: Tuple{Vector{ZZMatrix}, Vector{ZZRingElem}, Vector{Int64}}
collect_small_blocks :: Tuple{Any}
fpMPolyRingElem
has_preimage :: Tuple{TorQuadModuleMor, TorQuadModuleElem}
has_preimage :: Tuple{GrpGenToGrpGenMor, GrpGenElem}
isogeny_from_kernel :: Tuple{EllCrv, RingElem}
_basis_complement :: Tuple{MatElem}
bound_inf_norm :: Tuple{RealMat}
bound_inf_norm :: Tuple{acb_mat}
bound_inf_norm :: Tuple{ComplexMat}
bound_inf_norm :: Tuple{arb_mat}
base_field :: Union{Tuple{HypellCrv{T}}, Tuple{T}} where T
base_field :: Union{Tuple{EllCrv{T}}, Tuple{T}} where T
TorQuadModElem
infinite_uniformizers :: Tuple{AnticNumberField}
isogeny_map_phi :: Tuple{Isogeny}
exp_gcd :: Tuple{ZZLaurentSeriesRingElem}
next_calkin_wilf :: Tuple{QQFieldElem}
isinjective
- :: Tuple{TorQuadModuleMor, TorQuadModuleMor}
- :: Tuple{Hecke.LocalQuadSpaceCls, Hecke.LocalQuadSpaceCls}
- :: Tuple{TorQuadModuleMor}
- :: Tuple{AlgMatElem}
FqDefaultFiniteField
is_reduced :: Tuple{QuadBin{ZZRingElem}}
genus_field :: Tuple{ClassField}
nice_order :: Union{Tuple{Hecke.AlgAssRelOrd{S, T, U}}, Tuple{U}, Tuple{T}, Tuple{S}} where {S, T, U}
nice_order :: Union{Tuple{Hecke.AlgAssAbsOrd{S, T}}, Tuple{T}, Tuple{S}} where {S, T}
FpPolyRingElem
real_field
FqPolyRepMatrix
extend_to_cyclotomic :: Tuple{CyclotomicExt, NfToNfMor}
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 :: Tuple{Hecke.AbsAlgAssElem, Hecke.AbsAlgAssElem}
divexact_right :: Union{Tuple{U}, Tuple{T}, Tuple{S}, Tuple{Hecke.AlgAssRelOrdIdl{S, T, U}, Hecke.AlgAssRelOrdIdl{S, T, U}}} where {S, T, U}
clog :: Tuple{ZZRingElem, ZZRingElem}
dot :: Union{Tuple{T}, Tuple{SRow{T}, SRow{T}}} where T
isequivalent
tr :: Union{Tuple{Hecke.AbsAlgAssElem{T}}, Tuple{T}} where T
tr :: Tuple{Hecke.AlgAssRelOrdElem}
tr :: Tuple{NumFieldElem, NumField}
tr :: Tuple{Hecke.AlgAssAbsOrdElem}
frobenius_easy :: Tuple{NfOrdIdl, ClassField}
cos_integral :: Union{Tuple{ComplexFieldElem}, Tuple{ComplexFieldElem, Int64}}
cos_integral :: Tuple{acb}
canonical_divisor :: Tuple{AbstractAlgebra.Generic.FunctionField}
^ :: Tuple{AlgMatElem, Int64}
^ :: Tuple{TorQuadModuleMor, Integer}
^ :: Tuple{Hecke.AlgAssAbsOrdIdl, Int64}
^ :: Tuple{Hecke.AbsAlgAssIdl, Int64}
^ :: Tuple{Union{Hecke.AlgAssAbsOrdElem, Hecke.AlgAssRelOrdElem}, ZZRingElem}
^ :: Tuple{Hecke.AlgAssRelOrdIdl, Int64}
minkowski_map :: Union{Tuple{NumFieldOrdElem}, Tuple{NumFieldOrdElem, Int64}}
minkows
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