Minor documentation fixes around phases
and a workaround for Makie plotting regression
#792
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../../../.julia/packages/Documenter/bYYzK/src/Utilities/Utilities.jl#L34
59 docstrings not included in the manual:
QuantumClifford.ECC.naive_ancillary_paulimeasurement :: Union{Tuple{PauliOperator}, Tuple{PauliOperator, Any}, Tuple{PauliOperator, Any, Any}}
QuantumInterface.shiftremove :: Tuple{Any, Any}
QuantumInterface.basis
QuantumInterface.permutesystems :: Tuple{QuantumInterface.CompositeBasis, Any}
QuantumClifford.ECC.parity_matrix :: Tuple{QuantumClifford.ECC.AbstractECC}
QuantumInterface.AbstractSuperOperator
QuantumInterface.embed :: Union{Tuple{T}, Tuple{QuantumInterface.CompositeBasis, QuantumInterface.CompositeBasis, Dict{<:Vector{<:Integer}, T}}} where T<:QuantumInterface.AbstractOperator
QuantumInterface.embed :: Union{Tuple{T}, Tuple{QuantumInterface.CompositeBasis, QuantumInterface.CompositeBasis, Any, Vector{T}}} where T<:QuantumInterface.AbstractOperator
QuantumInterface.complement :: Tuple{Any, Any}
QuantumInterface.equal_shape :: Tuple{Any, Any}
QuantumInterface.PauliBasis
QuantumInterface.CompositeBasis
QuantumClifford.ECC.code_k :: Tuple{QuantumClifford.ECC.AbstractECC}
QuantumInterface.@samebases :: Tuple{Any}
QuantumInterface.variance :: Union{Tuple{BC}, Tuple{B}, Tuple{Any, QuantumInterface.AbstractOperator{B, B}, QuantumInterface.AbstractOperator{BC, BC}}} where {B, BC<:QuantumInterface.CompositeBasis}
SparseArrays.sparse :: Tuple{QuantumInterface.AbstractOperator}
LinearAlgebra.normalize! :: Tuple{QuantumInterface.AbstractOperator}
LinearAlgebra.normalize! :: Tuple{QuantumInterface.StateVector}
QuantumClifford.ECC.parity_checks
QuantumInterface.reduced :: Tuple{QuantumInterface.CompositeBasis, Any}
QuantumInterface.check_indices :: Tuple{Any, Any}
QuantumInterface.NLevelBasis
QuantumClifford.ECC.code_s :: Tuple{QuantumClifford.ECC.AbstractECC}
QuantumInterface.SumBasis
LinearAlgebra.tr :: Tuple{QuantumInterface.AbstractOperator}
QuantumInterface.check_samebases :: Tuple{Any, Any}
QuantumInterface.StateVector
QuantumInterface.check_multiplicable :: Tuple{Any, Any}
QuantumInterface.remove :: Tuple{Any, Any}
QuantumClifford.ECC.distance
QuantumClifford.ECC.code_n :: Tuple{Any}
QuantumClifford.ECC.code_n
QuantumClifford.ECC.faults_matrix :: Tuple{Stabilizer}
LinearAlgebra.ishermitian :: Tuple{QuantumInterface.AbstractOperator}
QuantumClifford.ECC.encoding_circuit
QuantumInterface.ptrace :: Tuple{QuantumInterface.CompositeBasis, Any}
QuantumInterface.samebases :: Tuple{QuantumInterface.Basis, QuantumInterface.Basis}
QuantumInterface.FockBasis
QuantumInterface.AbstractOperator
QuantumInterface.IncompatibleBases
QuantumClifford.ECC.naive_syndrome_circuit
QuantumInterface.SpinBasis
QuantumInterface.GenericBasis
QuantumClifford.ECC.logx_ops :: Tuple{QuantumClifford.ECC.AbstractECC}
LinearAlgebra.normalize :: Tuple{QuantumInterface.AbstractOperator}
LinearAlgebra.normalize :: Tuple{QuantumInterface.StateVector}
QuantumInterface.check_sortedindices :: Tuple{Any, Any}
QuantumInterface.multiplicable :: Tuple{QuantumInterface.Basis, QuantumInterface.Basis}
QuantumInterface.equal_bases :: Tuple{Any, Any}
LinearAlgebra.norm :: Tuple{QuantumInterface.StateVector}
QuantumInterface.identityoperator :: Union{Tuple{S}, Tuple{T}, Tuple{Type{T}, Type{S}, QuantumInterface.Basis, QuantumInterface.Basis}} where {T<:QuantumInterface.AbstractOperator, S}
QuantumInterface.check_embed_indices :: Tuple{Any}
Base.length :: Tuple{QuantumInterface.Basis}
QuantumInterface.directsum :: Tuple{QuantumInterface.Basis, QuantumInterface.Basis}
QuantumClifford.ECC.rate :: Tuple{QuantumClifford.ECC.AbstractECC}
QuantumInterface.identitysuperoperator
QuantumInterface.Basis
Base.exp :: Tuple{QuantumInterface.AbstractOperator}
QuantumClifford.ECC.logz_ops :: Tuple{QuantumClifford.ECC.AbstractECC}
These are docstrings in the checked modules (configured with the modules keyword)
that are not included in @docs or @autodocs blocks.
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