Package evaluation to test CommutativeRings on Julia 1.14.0-DEV.3055 (7e75a8061a*) started at 2026-08-27T14:58:05.396 ################################################################################ # Set-up # Installing PkgEval dependencies (TestEnv)... Activating project at `~/.julia/environments/v1.14` Set-up completed after 13.6s ################################################################################ # Installation # Installing CommutativeRings... Resolving package versions... Installed OpenBLAS32_jll ─── v0.3.34+0 Installed IntegerMathUtils ─ v0.1.4 Installed FLINT_jll ──────── v301.600.0+0 Installed Preferences ────── v1.5.2 Installed JLLWrappers ────── v1.8.0 Installed Primes ─────────── v0.5.7 Installed CommutativeRings ─ v0.7.0 Installing 2 artifacts Installed artifact OpenBLAS32 5.0 MiB Installed artifact FLINT 19.3 MiB Updating `~/.julia/environments/v1.14/Project.toml` [a6d4fa9c] + CommutativeRings v0.7.0 Updating `~/.julia/environments/v1.14/Manifest.toml` [a6d4fa9c] + CommutativeRings v0.7.0 [18e54dd8] + IntegerMathUtils v0.1.4 [692b3bcd] + JLLWrappers v1.8.0 [21216c6a] + Preferences v1.5.2 [27ebfcd6] + Primes v0.5.7 [e134572f] + FLINT_jll v301.600.0+0 [656ef2d0] + OpenBLAS32_jll v0.3.34+0 [56f22d72] + Artifacts v1.11.0 [ade2ca70] + Dates v1.11.0 [8f399da3] + Libdl v1.11.0 [37e2e46d] + LinearAlgebra v1.14.0 [de0858da] + Printf v1.11.0 [9a3f8284] + Random v1.11.0 [ea8e919c] + SHA v1.13.0 [fa267f1f] + TOML v1.0.3 [4ec0a83e] + Unicode v1.11.0 [e66e0078] + CompilerSupportLibraries_jll v1.5.7+0 [781609d7] + GMP_jll v6.3.0+4 [3a97d323] + MPFR_jll v4.2.2+1 [4536629a] + OpenBLAS_jll v0.3.34+0 [8e850b90] + libblastrampoline_jll v5.15.0+0 Installation completed after 8.35s ################################################################################ # Precompilation # Precompiling PkgEval dependencies... Precompiling project... 4.0 s ✓ TestEnv 1 dependency successfully precompiled in 4 seconds. 27 already precompiled. Precompiling package dependencies... Precompiling project... 2.8 s ✓ MacroTools 0.6 s ✓ ConstructionBase 0.6 s ✓ StaticArraysCore 0.9 s ✓ OrderedCollections 0.6 s ✓ IntegerMathUtils 0.9 s ✓ Compat 1.0 s ✓ Preferences 0.8 s ✓ ConstructionBase → ConstructionBaseLinearAlgebraExt 0.9 s ✓ Primes 0.6 s ✓ Compat → CompatLinearAlgebraExt 1.3 s ✓ JLLWrappers 1.8 s ✓ Setfield 5.1 s ✓ Aqua 1.4 s ✓ OpenBLAS32_jll 29.4 s ✓ Polynomials 1.3 s ✓ FLINT_jll 6.1 s ✓ CommutativeRings 17 dependencies successfully precompiled in 56 seconds. 35 already precompiled. Precompilation completed after 80.93s ################################################################################ # Testing # Testing CommutativeRings Status `/tmp/jl_cahmke/Project.toml` [4c88cf16] Aqua v0.8.16 [a6d4fa9c] CommutativeRings v0.7.0 [f27b6e38] Polynomials v4.1.1 [27ebfcd6] Primes v0.5.7 [37e2e46d] LinearAlgebra v1.14.0 [9a3f8284] Random v1.11.0 [8dfed614] Test v1.11.0 Status `/tmp/jl_cahmke/Manifest.toml` [4c88cf16] Aqua v0.8.16 [a6d4fa9c] CommutativeRings v0.7.0 [34da2185] Compat v4.18.1 [187b0558] ConstructionBase v1.6.0 [18e54dd8] IntegerMathUtils v0.1.4 [692b3bcd] JLLWrappers v1.8.0 [1914dd2f] MacroTools v0.5.16 ⌅ [bac558e1] OrderedCollections v1.8.2 [f27b6e38] Polynomials v4.1.1 [21216c6a] Preferences v1.5.2 [27ebfcd6] Primes v0.5.7 [efcf1570] Setfield v1.1.2 [1e83bf80] StaticArraysCore v1.4.4 [e134572f] FLINT_jll v301.600.0+0 [656ef2d0] OpenBLAS32_jll v0.3.34+0 [0dad84c5] ArgTools v1.2.0 [56f22d72] Artifacts v1.11.0 [2a0f44e3] Base64 v1.11.0 [ade2ca70] Dates v1.11.0 [f43a241f] Downloads v1.7.0 [7b1f6079] FileWatching v1.11.0 [9fa8497b] Future v1.11.0 [b77e0a4c] InteractiveUtils v1.11.0 [ac6e5ff7] JuliaSyntaxHighlighting v1.13.0 [b27032c2] LibCURL v1.0.0 [76f85450] LibGit2 v1.11.0 [8f399da3] Libdl v1.11.0 [37e2e46d] LinearAlgebra v1.14.0 [56ddb016] Logging v1.11.0 [d6f4376e] Markdown v1.11.0 [ca575930] NetworkOptions v1.3.0 [44cfe95a] Pkg v1.14.0 [de0858da] Printf v1.11.0 [9a3f8284] Random v1.11.0 [ea8e919c] SHA v1.13.0 [9e88b42a] Serialization v1.11.0 [2f01184e] SparseArrays v1.13.0 [f489334b] StyledStrings v1.13.0 [fa267f1f] TOML v1.0.3 [a4e569a6] Tar v1.10.0 [8dfed614] Test v1.11.0 [cf7118a7] UUIDs v1.11.0 [4ec0a83e] Unicode v1.11.0 [e66e0078] CompilerSupportLibraries_jll v1.5.7+0 [781609d7] GMP_jll v6.3.0+4 [deac9b47] LibCURL_jll v8.21.0+0 [e37daf67] LibGit2_jll v1.9.7+0 [29816b5a] LibSSH2_jll v1.11.104+0 [3a97d323] MPFR_jll v4.2.2+1 [14a3606d] MozillaCACerts_jll v2026.8.13 [4536629a] OpenBLAS_jll v0.3.34+0 [458c3c95] OpenSSL_jll v3.5.8+0 [efcefdf7] PCRE2_jll v10.47.0+0 [bea87d4a] SuiteSparse_jll v7.10.1+0 [83775a58] Zlib_jll v1.3.2+0 [3161d3a3] Zstd_jll v1.5.7+1 [8e850b90] libblastrampoline_jll v5.15.0+0 [8e850ede] nghttp2_jll v1.70.0+0 [3f19e933] p7zip_jll v17.8.2+0 Info Packages marked with ⌅ have new versions available but compatibility constraints restrict them from upgrading. Testing Running tests... Unbound type parameters detected: [1] (::CommutativeRings.var"#order#72")(::Type{var"#s231"} where var"#s231"<:(Type{var"#s198"} where var"#s198"<:(GaloisField{C, D}))) where {C, D} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/galoisfields.jl:157 [2] CommutativeRings.Factors(x::V) where {T, V<:(AbstractVector{<:Pair{T}})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/enumerations.jl:218 [3] varblocks(::Type{P}) where {R, N, X, T, B, P<:MultivariatePolynomial{R, N, X, T, B}} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:782 [4] category_trait_irr(::Type{var"#s50"} where var"#s50"<:(Quotient{<:UnivariatePolynomial{F}})) where F @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/quotient.jl:25 [5] pdepth(::Type{var"#s198"} where var"#s198"<:(Polynomial{P})) where P @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/univarpolynom.jl:871 [6] _promote_rule(::Type{P}, ::Type{S}) where {R, N, X, B, T, S<:Ring, P<:MultivariatePolynomial{R, N, X, T, B}} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:56 [7] prod(ff::Vector{<:Pair{T, <:Integer}}) where T<:Ring @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/factorization.jl:315 [8] normalmatrix(a::Q, m::Integer) where {Z<:ZZmod, P<:(UnivariatePolynomial{Z}), Q<:(Quotient{P})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/galoisfields.jl:608 [9] _homomorphism(::Type{R}, ::Type{S}) where {Z<:ZZmod, P<:(UnivariatePolynomial{Z}), R<:(Quotient{P}), S<:(Quotient{P})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/galoisfields.jl:725 [10] rand(r::Random.AbstractRNG, ::Random.SamplerType{Q}) where {Z, P<:(UnivariatePolynomial{Z}), Q<:(Quotient{P})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/factorization.jl:301 [11] _steinitz_element(::Type{Q}, r) where {P, U<:(UnivariatePolynomial{P}), Q<:(Quotient{U})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/luebeck.jl:72 [12] expo2ordblock(::Type{P}, a::AbstractVector{<:Integer}) where {R, N, X, T, Y<:Tuple{T, Vararg{T}}, B, P<:MultivariatePolynomial{R, N, X, Y, B}} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:570 [13] iterate(::Type{Q}, s) where {Z, P<:(UnivariatePolynomial{Z}), Q<:(Quotient{P})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/enumerations.jl:20 [14] joinpoly(p::P, var) where {T, E<:(Polynomial{T}), P<:(Polynomial{E})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:379 [15] ofindex(a::Integer, ::Type{P}, d::Integer) where {S, P<:(UnivariatePolynomial{S})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/enumerations.jl:172 [16] one(::Type{var"#s231"} where var"#s231"<:T) where {S, T<:(MultivariatePolynomial{S})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:264 [17] internal_val(::Type{G}, num::Integer) where {C, D, Id, V<:Quotient, G<:(GaloisField{C, D, Id, V})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/galoisfields.jl:434 [18] show(io::IO, ::Type{Q}) where {Z, R<:(UnivariatePolynomial{Z}), Q<:(Quotient{R})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/quotient.jl:142 [19] elementary_symmetric(::Type{P}, m::Integer) where {S, N, P<:(MultivariatePolynomial{S, N})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:1180 [20] quotient(a::Integer, ::Type{Q}) where {Z, P<:(UnivariatePolynomial{Z}), Q<:(Quotient{P})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/galoisfields.jl:465 [21] combinefactors(u::Z, vv::AbstractVector{<:UnivariatePolynomial{Zp}}, aa::AbstractVector) where {Z<:(UnivariatePolynomial{<:ZI}), Zp} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/intfactorization.jl:337 [22] has_conway_property2(poly::T, factors) where {P, S<:(ZZmod{P}), T<:(UnivariatePolynomial{S})} @ CommutativeRings.Conway ~/.julia/packages/CommutativeRings/0sG32/src/conway.jl:149 [23] liftmod(::Type{P}, a::UnivariatePolynomial) where {Z, P<:(UnivariatePolynomial{Z})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/intfactorization.jl:532 [24] fillindex(f, ::Type{var"#s231"} where var"#s231"<:P) where {R, N, X, T, P<:MultivariatePolynomial{R, N, X, T, Tuple{N}}} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:705 [25] num_irreducibles(::Type{var"#s290"} where var"#s290"<:(UnivariatePolynomial{G}), r::Integer) where G @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/factorization.jl:12 [26] hensel_lift(u::UnivariatePolynomial{Z}, v::AbstractVector{Pq}, a::AbstractVector{Pp}) where {Z<:ZI, Zq<:ZZmod, Zp<:ZZmod, Pq<:(UnivariatePolynomial{Zq}), Pp<:(UnivariatePolynomial{Zp})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/intfactorization.jl:476 [27] precision(::Type{var"#s290"} where var"#s290"<:PowerSeries{Y, R, X}) where {Y, R, X} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/powerseries.jl:36 [28] _steinitz_element(::Type{U}, r::Integer) where {P, U<:(UnivariatePolynomial{P})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/luebeck.jl:76 [29] next_irreducible(::Type{P}, r::Integer, ::Val{2}) where {K<:ZZmod, P<:(UnivariatePolynomial{K})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/luebeck.jl:207 [30] has_conway_property3(poly::T) where {P, S<:(ZZmod{P}), T<:(UnivariatePolynomial{S})} @ CommutativeRings.Conway ~/.julia/packages/CommutativeRings/0sG32/src/conway.jl:174 [31] Monic(::Type{P}, n) where {X, T, P<:UnivariatePolynomial{T, X}} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/enumerations.jl:7 [32] (::CommutativeRings.var"#_order#14")(::Type{var"#s49"} where var"#s49"<:Type{Q}) where Q<:Quotient @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/quotient.jl:92 [33] next_irreducible(::Type{P}, r::Integer, ::Val{1}) where {K<:Quotient, P<:(UnivariatePolynomial{K})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/luebeck.jl:181 [34] gettypevar(::Type{R}) where {T, R<:Ring{T}} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/typevars.jl:29 [35] stripmod(::Type{P}, a::UnivariatePolynomial{<:ZZmod}) where {Z<:ZI, P<:(UnivariatePolynomial{Z})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/intfactorization.jl:397 [36] find_irreducible_polynomial(::Type{P}, r::Integer, a::RingInt) where {K, P<:(UnivariatePolynomial{K})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/luebeck.jl:121 [37] subfield(::Type{var"#s50"} where var"#s50"<:(Quotient{R})) where {Z, R<:(UnivariatePolynomial{Z})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/quotient.jl:89 [38] varnames(::Type{T}) where {R, X, T<:UnivariatePolynomial{R, X}} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:777 [39] _liftmod(::Type{Z}, a::ZZmod) where {X, T, Z<:ZZmod{X, T}} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/intfactorization.jl:529 [40] generators(P::Type{var"#s231"} where var"#s231"<:(MultivariatePolynomial{S, N})) where {S, N} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:211 [41] new_class(f::Function, t::Type{var"#s50"} where var"#s50"<:Ring{T}, args...) where T @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/typevars.jl:50 [42] next_irreducible(::Type{P}, r::Integer, ::Val{1}) where {K<:Union{GaloisField, ZZmod}, P<:(UnivariatePolynomial{K})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/luebeck.jl:162 [43] lextend(::Type{P}, s::Symbol, t::Symbol...) where {R, P<:(MultivariatePolynomial{R})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:17 [44] next_irreducible(::Type{P}, r::Integer, ::Val{3}) where {K<:ZZmod, P<:(UnivariatePolynomial{K})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/luebeck.jl:241 [45] det_QR!(b::AbstractMatrix{D}) where {Z, D<:(QuotientRing{Z})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/determinant.jl:71 [46] isprimemod(::Type{var"#s50"} where var"#s50"<:Quotient{R, I, X, Id}) where {R, I, X, Id} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/quotient.jl:88 [47] new_class(t::Type{var"#s50"} where var"#s50"<:Ring{T}, args...) where T @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/typevars.jl:45 [48] _ofindex(a::Integer, ::Type{P}, dim::Integer, ::Base.HasLength) where {S, P<:(UnivariatePolynomial{S})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/enumerations.jl:179 [49] zero(::Type{var"#s231"} where var"#s231"<:T) where {S, T<:(MultivariatePolynomial{S})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:261 Unbound type parameters: Test Failed at /home/pkgeval/.julia/packages/Aqua/h1qD0/src/unbound_args.jl:38 Expression: isempty(unbounds) Evaluated: isempty(Method[(::CommutativeRings.var"#order#72")(::Type{var"#s231"} where var"#s231"<:(Type{var"#s198"} where var"#s198"<:(GaloisField{C, D}))) where {C, D} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/galoisfields.jl:157, CommutativeRings.Factors(x::V) where {T, V<:(AbstractVector{<:Pair{T}})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/enumerations.jl:218, varblocks(::Type{P}) where {R, N, X, T, B, P<:MultivariatePolynomial{R, N, X, T, B}} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:782, category_trait_irr(::Type{var"#s50"} where var"#s50"<:(Quotient{<:UnivariatePolynomial{F}})) where F @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/quotient.jl:25, pdepth(::Type{var"#s198"} where var"#s198"<:(Polynomial{P})) where P @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/univarpolynom.jl:871, _promote_rule(::Type{P}, ::Type{S}) where {R, N, X, B, T, S<:Ring, P<:MultivariatePolynomial{R, N, X, T, B}} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:56, prod(ff::Vector{<:Pair{T, <:Integer}}) where T<:Ring @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/factorization.jl:315, normalmatrix(a::Q, m::Integer) where {Z<:ZZmod, P<:(UnivariatePolynomial{Z}), Q<:(Quotient{P})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/galoisfields.jl:608, _homomorphism(::Type{R}, ::Type{S}) where {Z<:ZZmod, P<:(UnivariatePolynomial{Z}), R<:(Quotient{P}), S<:(Quotient{P})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/galoisfields.jl:725, rand(r::Random.AbstractRNG, ::Random.SamplerType{Q}) where {Z, P<:(UnivariatePolynomial{Z}), Q<:(Quotient{P})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/factorization.jl:301 … generators(P::Type{var"#s231"} where var"#s231"<:(MultivariatePolynomial{S, N})) where {S, N} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:211, new_class(f::Function, t::Type{var"#s50"} where var"#s50"<:Ring{T}, args...) where T @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/typevars.jl:50, next_irreducible(::Type{P}, r::Integer, ::Val{1}) where {K<:Union{GaloisField, ZZmod}, P<:(UnivariatePolynomial{K})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/luebeck.jl:162, lextend(::Type{P}, s::Symbol, t::Symbol...) where {R, P<:(MultivariatePolynomial{R})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:17, next_irreducible(::Type{P}, r::Integer, ::Val{3}) where {K<:ZZmod, P<:(UnivariatePolynomial{K})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/luebeck.jl:241, det_QR!(b::AbstractMatrix{D}) where {Z, D<:(QuotientRing{Z})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/determinant.jl:71, isprimemod(::Type{var"#s50"} where var"#s50"<:Quotient{R, I, X, Id}) where {R, I, X, Id} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/quotient.jl:88, new_class(t::Type{var"#s50"} where var"#s50"<:Ring{T}, args...) where T @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/typevars.jl:45, _ofindex(a::Integer, ::Type{P}, dim::Integer, ::Base.HasLength) where {S, P<:(UnivariatePolynomial{S})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/enumerations.jl:179, zero(::Type{var"#s231"} where var"#s231"<:T) where {S, T<:(MultivariatePolynomial{S})} @ CommutativeRings ~/.julia/packages/CommutativeRings/0sG32/src/multivarpolynom.jl:261]) Stacktrace: [1] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:784 [inlined] [2] test_unbound_args(m::Module; broken::Bool) @ Aqua ~/.julia/packages/Aqua/h1qD0/src/unbound_args.jl:38 [3] test_unbound_args(m::Module) @ Aqua ~/.julia/packages/Aqua/h1qD0/src/unbound_args.jl:14 [inlined] [4] macro expansion @ ~/.julia/packages/Aqua/h1qD0/src/Aqua.jl:78 [inlined] [5] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [6] test_all(testtarget::Module; ambiguities::Bool, unbound_args::Bool, undefined_exports::Bool, project_extras::Bool, stale_deps::Bool, deps_compat::Bool, piracies::@NamedTuple{treat_as_own::Vector{typeof(binomial)}}, persistent_tasks::Bool, undocumented_names::Bool) @ Aqua ~/.julia/packages/Aqua/h1qD0/src/Aqua.jl:78 Test Summary: | Pass Fail Total Time Aqua | 10 1 11 2m23.1s Method ambiguity | 1 1 15.6s Unbound type parameters | 1 1 13.6s Undefined exports | 1 1 0.0s Compare Project.toml and test/Project.toml | 1 1 0.3s Stale dependencies | 1 1 11.9s Compat bounds | 4 4 0.6s Piracy | 1 1 0.4s Persistent tasks | 1 1 1m15.1s RNG of the outermost testset: Random.Xoshiro(0x69c7896cce8e1ca1, 0xfb37b05a077d72eb, 0x43636d9cddd4d428, 0xf314fe83e1114c26, 0x51f2b42661a7af34) ERROR: LoadError: Some tests did not pass: 10 passed, 1 failed, 0 errored, 0 broken. in expression starting at /home/pkgeval/.julia/packages/CommutativeRings/0sG32/test/runtests.jl:11 Testing failed after 161.79s ERROR: LoadError: Package CommutativeRings errored during testing Stacktrace: [1] pkgerror(msg::String) @ Pkg.Types /opt/julia/share/julia/stdlib/v1.14/Pkg/src/Types.jl:68 [2] test(ctx::Pkg.Types.Context, pkgs::Vector{PackageSpec}; coverage::Bool, julia_args::Cmd, test_args::Cmd, test_fn::Nothing, force_latest_compatible_version::Bool, allow_earlier_backwards_compatible_versions::Bool, allow_reresolve::Bool) @ Pkg.Operations /opt/julia/share/julia/stdlib/v1.14/Pkg/src/Operations.jl:3283 [3] test(ctx::Pkg.Types.Context, pkgs::Vector{PackageSpec}; coverage::Bool, test_fn::Nothing, julia_args::Cmd, test_args::Cmd, force_latest_compatible_version::Bool, allow_earlier_backwards_compatible_versions::Bool, allow_reresolve::Bool, kwargs::@Kwargs{io::IOContext{IO}}) @ Pkg.API /opt/julia/share/julia/stdlib/v1.14/Pkg/src/API.jl:587 [4] test(pkgs::Vector{PackageSpec}; io::IOContext{IO}, kwargs::@Kwargs{julia_args::Cmd}) @ Pkg.API /opt/julia/share/julia/stdlib/v1.14/Pkg/src/API.jl:172 [5] test(pkgs::Vector{String}; kwargs::@Kwargs{julia_args::Cmd}) @ Pkg.API /opt/julia/share/julia/stdlib/v1.14/Pkg/src/API.jl:160 [6] test(pkg::String; kwargs::@Kwargs{julia_args::Cmd}) @ Pkg.API /opt/julia/share/julia/stdlib/v1.14/Pkg/src/API.jl:159 [inlined] [7] top-level scope @ /PkgEval.jl/scripts/evaluate.jl:223 in expression starting at /PkgEval.jl/scripts/evaluate.jl:214 PkgEval failed after 294.91s: package has test failures