Package evaluation to test ForceCouplingMethod on Julia 1.14.0-DEV.3128 (f573e2bf71*) started at 2026-09-06T17:44:37.616 ################################################################################ # Set-up # Installing PkgEval dependencies (TestEnv)... Activating project at `~/.julia/environments/v1.14` Set-up completed after 15.69s ################################################################################ # Installation # Installing ForceCouplingMethod... Resolving package versions... Updating `~/.julia/environments/v1.14/Project.toml` [7a5e5976] + ForceCouplingMethod v0.1.0 Updating `~/.julia/environments/v1.14/Manifest.toml` [621f4979] + AbstractFFTs v1.5.0 [187b0558] + ConstructionBase v1.6.0 [9a962f9c] + DataAPI v1.16.0 [e2d170a0] + DataValueInterfaces v1.0.0 [ffbed154] + DocStringExtensions v0.9.5 [7a1cc6ca] + FFTW v1.10.0 [7a5e5976] + ForceCouplingMethod v0.1.0 [92d709cd] + IrrationalConstants v0.2.6 [82899510] + IteratorInterfaceExtensions v1.0.0 [692b3bcd] + JLLWrappers v1.8.0 [2ab3a3ac] + LogExpFunctions v1.0.1 [bac558e1] + OrderedCollections v2.0.1 [aea7be01] + PrecompileTools v1.3.4 [21216c6a] + Preferences v1.5.2 [189a3867] + Reexport v1.2.2 [276daf66] + SpecialFunctions v2.9.0 [90137ffa] + StaticArrays v1.9.20 [1e83bf80] + StaticArraysCore v1.4.4 [09ab397b] + StructArrays v0.7.3 [3783bdb8] + TableTraits v1.0.1 [bd369af6] + Tables v1.14.0 [f5851436] + FFTW_jll v3.3.12+0 [1d5cc7b8] + IntelOpenMP_jll v2025.2.0+0 [856f044c] + MKL_jll v2025.2.0+0 [efe28fd5] + OpenSpecFun_jll v0.5.6+0 [1317d2d5] + oneTBB_jll v2022.3.0+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 [ac6e5ff7] + JuliaSyntaxHighlighting v1.13.0 [4af54fe1] + LazyArtifacts v1.11.0 [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 [f489334b] + StyledStrings v1.13.0 [fa267f1f] + TOML v1.0.3 [a4e569a6] + Tar v1.10.0 [cf7118a7] + UUIDs v1.11.0 [4ec0a83e] + Unicode v1.11.0 [e66e0078] + CompilerSupportLibraries_jll v1.5.7+0 [deac9b47] + LibCURL_jll v8.21.0+0 [e37daf67] + LibGit2_jll v1.9.7+0 [29816b5a] + LibSSH2_jll v1.11.104+0 [14a3606d] + MozillaCACerts_jll v2026.8.13 [4536629a] + OpenBLAS_jll v0.3.34+0 [05823500] + OpenLibm_jll v0.8.8+0 [458c3c95] + OpenSSL_jll v3.5.8+0 [efcefdf7] + PCRE2_jll v10.48.0+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 Installation completed after 5.24s ################################################################################ # Precompilation # Precompiling PkgEval dependencies... Precompiling package dependencies... Precompiling project... 2.6 s ✓ tree_sitter_ptx_jll 1.1 s ✓ NVPTX_LLVM_Backend_jll 1.2 s ✓ tree_sitter_llvm_jll 1.1 s ✓ tree_sitter_gcn_jll 1.1 s ✓ tree_sitter_spirv_jll 1.3 s ✓ LMDB_jll 5.8 s ✓ CUDA_Compiler_jll 2.5 s ✓ StructArrays → StructArraysGPUArraysCoreExt WARNING: Imported binding Compiler.ConstCallInfo was undeclared at import time during import to JET. WARNING: Imported binding Compiler.WorldView was undeclared at import time during import to JET. ERROR: LoadError: UndefVarError: `WorldView` not defined in `JET` Suggestion: this global was defined as `Compiler.WorldView` but not assigned a value. Stacktrace: [1] top-level scope @ ~/.julia/packages/JET/wP86V/src/abstractinterpret/typeinfer.jl:239 [2] include(mapexpr::Function, mod::Module, _path::String) @ Base Base.jl:335 [3] top-level scope @ ~/.julia/packages/JET/wP86V/src/JETBase.jl:320 [4] include(mapexpr::Function, mod::Module, _path::String) @ Base Base.jl:335 [5] top-level scope @ ~/.julia/packages/JET/wP86V/src/JET.jl:43 [6] include(mod::Module, _path::String) @ Base Base.jl:334 [7] top-level scope @ stdin:5 in expression starting at /home/pkgeval/.julia/packages/JET/wP86V/src/abstractinterpret/typeinfer.jl:239 in expression starting at /home/pkgeval/.julia/packages/JET/wP86V/src/JETBase.jl:320 in expression starting at /home/pkgeval/.julia/packages/JET/wP86V/src/JET.jl:1 in expression starting at stdin:5 ✗ JET 4.8 s ✓ GPUToolbox 2.5 s ✓ ForceCouplingMethod 2.4 s ✓ LMDB 5.3 s ✓ CUDA_Runtime_jll 112.6 s ✓ GPUCompiler 37.9 s ✓ CUDACore 14.6 s ✓ CUDACore → SpecialFunctionsExt 18.1 s ✓ NVML 18.0 s ✓ CUPTI 14.0 s ✓ cuRAND 21.9 s ✓ cuSPARSE 14.1 s ✓ cuFFT 23.2 s ✓ cuBLAS 34.2 s ✓ CUDATools 23.3 s ✓ cuSOLVER 21.9 s ✓ CUDA 19.5 s ✓ Atomix → AtomixCUDAExt 21.3 s ✓ ForceCouplingMethod → ForceCouplingMethodCUDAExt 26 dependencies successfully precompiled in 447 seconds. 126 already precompiled. 1 dependency had output during precompilation: ┌ JET │ WARNING: Imported binding Compiler.ConstCallInfo was undeclared at import time during import to JET. │ WARNING: Imported binding Compiler.WorldView was undeclared at import time during import to JET. │ ERROR: LoadError: UndefVarError: `WorldView` not defined in `JET` │ Suggestion: this global was defined as `Compiler.WorldView` but not assigned a value. │ Stacktrace: │ [1] top-level scope │ @ ~/.julia/packages/JET/wP86V/src/abstractinterpret/typeinfer.jl:239 │ [2] include(mapexpr::Function, mod::Module, _path::String) │ @ Base Base.jl:335 │ [3] top-level scope │ @ ~/.julia/packages/JET/wP86V/src/JETBase.jl:320 │ [4] include(mapexpr::Function, mod::Module, _path::String) │ @ Base Base.jl:335 │ [5] top-level scope │ @ ~/.julia/packages/JET/wP86V/src/JET.jl:43 │ [6] include(mod::Module, _path::String) │ @ Base Base.jl:334 │ [7] top-level scope │ @ stdin:5 │ in expression starting at /home/pkgeval/.julia/packages/JET/wP86V/src/abstractinterpret/typeinfer.jl:239 │ in expression starting at /home/pkgeval/.julia/packages/JET/wP86V/src/JETBase.jl:320 │ in expression starting at /home/pkgeval/.julia/packages/JET/wP86V/src/JET.jl:1 │ in expression starting at stdin:5 └ ERROR: LoadError: The following 1 package failed to precompile: JET Failed to precompile JET [c3a54625-cd67-489e-a8e7-0a5a0ff4e31b] to "/home/pkgeval/.julia/compiled/v1.14/JET/jl_dZShQM" (ProcessExited(1)). in expression starting at /PkgEval.jl/scripts/precompile.jl:34 Precompilation failed after 467.11s ################################################################################ # Testing # Testing ForceCouplingMethod Status `/tmp/jl_EJ2lGD/Project.toml` [4c88cf16] Aqua v0.8.16 [6e4b80f9] BenchmarkTools v1.8.0 [052768ef] CUDA v6.3.1 [7a5e5976] ForceCouplingMethod v0.1.0 ⌅ [c3a54625] JET v0.11.6 [276daf66] SpecialFunctions v2.9.0 [90137ffa] StaticArrays v1.9.20 [09ab397b] StructArrays v0.7.3 [37e2e46d] LinearAlgebra v1.14.0 [9a3f8284] Random v1.11.0 [8dfed614] Test v1.11.0 Status `/tmp/jl_EJ2lGD/Manifest.toml` [621f4979] AbstractFFTs v1.5.0 [79e6a3ab] Adapt v4.7.0 [4c88cf16] Aqua v0.8.16 [a9b6321e] Atomix v1.1.3 [ab4f0b2a] BFloat16s v0.6.1 [6e4b80f9] BenchmarkTools v1.8.0 [fa961155] CEnum v0.5.0 [052768ef] CUDA v6.3.1 [bd0ed864] CUDACore v6.3.1 [9ec180c6] CUDATools v6.3.1 [1af6417a] CUDA_Runtime_Discovery v2.1.1 [9e67e8f6] CUPTI v6.3.1 [da1fd8a2] CodeTracking v3.0.2 [34da2185] Compat v4.18.1 [807dbc54] Compiler v0.1.1 [9db33cc3] CompilerCaching v0.5.0 [187b0558] ConstructionBase v1.6.0 [a8cc5b0e] Crayons v4.2.0 [9a962f9c] DataAPI v1.16.0 [e2d170a0] DataValueInterfaces v1.0.0 [ffbed154] DocStringExtensions v0.9.5 [e2ba6199] ExprTools v0.1.11 [7a1cc6ca] FFTW v1.10.0 [7a5e5976] ForceCouplingMethod v0.1.0 [0c68f7d7] GPUArrays v11.5.14 [46192b85] GPUArraysCore v0.2.0 [61eb1bfa] GPUCompiler v2.5.3 [096a3bc2] GPUToolbox v3.0.0 [076d061b] HashArrayMappedTries v0.2.0 [92d709cd] IrrationalConstants v0.2.6 [82899510] IteratorInterfaceExtensions v1.0.0 ⌅ [c3a54625] JET v0.11.6 [692b3bcd] JLLWrappers v1.8.0 [682c06a0] JSON v1.8.0 [aa1ae85d] JuliaInterpreter v0.11.4 [70703baa] JuliaSyntax v1.0.2 [63c18a36] KernelAbstractions v0.9.42 [929cbde3] LLVM v9.13.1 [8b046642] LLVMLoopInfo v1.0.0 [11f193de] LMDB v3.0.1 [b964fa9f] LaTeXStrings v1.4.1 [2ab3a3ac] LogExpFunctions v1.0.1 [6f1432cf] LoweredCodeUtils v3.8.0 [1914dd2f] MacroTools v0.5.16 [611af6d1] NVML v6.3.1 [5da4648a] NVTX v1.0.3 [bac558e1] OrderedCollections v2.0.1 [69de0a69] Parsers v3.0.0 [aea7be01] PrecompileTools v1.3.4 [21216c6a] Preferences v1.5.2 [08abe8d2] PrettyTables v3.4.8 [74087812] Random123 v1.7.1 [e6cf234a] RandomNumbers v1.6.0 [189a3867] Reexport v1.2.2 [ae029012] Requires v1.3.1 [295af30f] Revise v3.17.0 [7e506255] ScopedValues v1.6.2 [6c6a2e73] Scratch v1.3.0 [276daf66] SpecialFunctions v2.9.0 [90137ffa] StaticArrays v1.9.20 [1e83bf80] StaticArraysCore v1.4.4 [10745b16] Statistics v1.11.5 ⌅ [892a3eda] StringManipulation v0.5.0 [09ab397b] StructArrays v0.7.3 [ec057cc2] StructUtils v2.8.5 [3783bdb8] TableTraits v1.0.1 [bd369af6] Tables v1.14.0 [e689c965] Tracy v0.1.6 [013be700] UnsafeAtomics v0.3.2 [182d3088] cuBLAS v6.3.1 [533571aa] cuFFT v6.3.1 [20fd9a0b] cuRAND v6.3.1 [887afef0] cuSOLVER v6.3.1 [b26da814] cuSPARSE v6.3.1 [d1e2174e] CUDA_Compiler_jll v0.6.2+0 [4ee394cb] CUDA_Driver_jll v13.3.4+0 [76a88914] CUDA_Runtime_jll v0.24.4+2 [f5851436] FFTW_jll v3.3.12+0 [1d5cc7b8] IntelOpenMP_jll v2025.2.0+0 [9c1d0b0a] JuliaNVTXCallbacks_jll v0.2.1+0 [dad2f222] LLVMExtra_jll v0.0.47+0 [6206cf0b] LMDB_jll v1.0.0+0 [ad6e5548] LibTracyClient_jll v0.13.1+0 [856f044c] MKL_jll v2025.2.0+0 [ef6e0fe3] NVPTX_LLVM_Backend_jll v22.1.7+1 [e98f9f5b] NVTX_jll v3.2.2+0 [efe28fd5] OpenSpecFun_jll v0.5.6+0 [1e29f10c] demumble_jll v1.3.0+0 [1317d2d5] oneTBB_jll v2022.3.0+0 [8b5cbfcf] tree_sitter_gcn_jll v0.1.0+0 [44208993] tree_sitter_llvm_jll v1.1.0+0 [71e3f6e6] tree_sitter_ptx_jll v0.1.0+0 [f0e86581] tree_sitter_spirv_jll v0.1.0+0 [0dad84c5] ArgTools v1.2.0 [56f22d72] Artifacts v1.11.0 [2a0f44e3] Base64 v1.11.0 [8bf52ea8] CRC32c v1.11.0 [ade2ca70] Dates v1.11.0 [f43a241f] Downloads v1.7.0 [7b1f6079] FileWatching v1.11.0 [b77e0a4c] InteractiveUtils v1.11.0 [ac6e5ff7] JuliaSyntaxHighlighting v1.13.0 [4af54fe1] LazyArtifacts v1.11.0 [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 [9abbd945] Profile v1.11.0 [3fa0cd96] REPL v1.11.0 [9a3f8284] Random v1.11.0 [ea8e919c] SHA v1.13.0 [9e88b42a] Serialization v1.11.0 [6462fe0b] Sockets 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 [deac9b47] LibCURL_jll v8.21.0+0 [e37daf67] LibGit2_jll v1.9.7+0 [29816b5a] LibSSH2_jll v1.11.104+0 [14a3606d] MozillaCACerts_jll v2026.8.13 [4536629a] OpenBLAS_jll v0.3.34+0 [05823500] OpenLibm_jll v0.8.8+0 [458c3c95] OpenSSL_jll v3.5.8+0 [efcefdf7] PCRE2_jll v10.48.0+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... WARNING: Imported binding Compiler.ConstCallInfo was undeclared at import time during import to JET. WARNING: Imported binding Compiler.WorldView was undeclared at import time during import to JET. ERROR: LoadError: UndefVarError: `WorldView` not defined in `JET` Suggestion: this global was defined as `Compiler.WorldView` but not assigned a value. Stacktrace: [1] top-level scope @ ~/.julia/packages/JET/wP86V/src/abstractinterpret/typeinfer.jl:239 [2] include(mapexpr::Function, mod::Module, _path::String) @ Base Base.jl:335 [3] top-level scope @ ~/.julia/packages/JET/wP86V/src/JETBase.jl:320 [4] include(mapexpr::Function, mod::Module, _path::String) @ Base Base.jl:335 [5] top-level scope @ ~/.julia/packages/JET/wP86V/src/JET.jl:43 [6] include(mod::Module, _path::String) @ Base Base.jl:334 [7] top-level scope @ stdin:5 in expression starting at /home/pkgeval/.julia/packages/JET/wP86V/src/abstractinterpret/typeinfer.jl:239 in expression starting at /home/pkgeval/.julia/packages/JET/wP86V/src/JETBase.jl:320 in expression starting at /home/pkgeval/.julia/packages/JET/wP86V/src/JET.jl:1 in expression starting at stdin:5 1 dependency had output during precompilation: ┌ JET │ [Output was shown above] └ ForceCouplingMethod: Error During Test at /home/pkgeval/.julia/packages/ForceCouplingMethod/2cUXv/test/runtests.jl:6 Got exception outside of a @test LoadError: The following 1 package failed to precompile: JET Failed to precompile JET [c3a54625-cd67-489e-a8e7-0a5a0ff4e31b] to "/home/pkgeval/.julia/compiled/v1.14/JET/jl_OGERiL" (ProcessExited(1)). in expression starting at /home/pkgeval/.julia/packages/ForceCouplingMethod/2cUXv/test/hygiene/test_jet.jl:2 Test Summary: | Pass Error Total Time ForceCouplingMethod | 644 1 645 4m11.0s Cell number computing matches the paper formula | 1 1 10.2s Cell size and its inverse are consistent with L_i / m_i | 7 7 0.3s Tiny boxes are clamped to at least three cells per axis | 1 1 0.0s Cell-list buffers are sized for the particle and cell counts | 6 6 0.1s Constructor rejects non-physical inputs | 6 6 1.2s Position on the upper boundary wraps to the lower edge | 3 3 0.3s Positions already in the canonical domain are unchanged | 1 1 0.3s Wrapping is idempotent | 1 1 0.0s Translating a position by an integer multiple of L preserves the wrap | 4 4 2.1s Slightly negative positions wrap to just below the upper edge | 3 3 0.0s Hash for a position in the origin cell is zero | 1 1 0.1s Hash matches the paper linearisation x + (y + z⋅m_y)⋅m_x | 1 1 0.0s Anisotropic grid uses m_x and m_y as the linearisation strides | 1 1 0.0s Position at the upper boundary is clamped to the last valid cell | 1 1 0.0s All hashes for a random position cloud fall below the total cell count | 1 1 1.3s assign_cells! agrees with the kernel called on the config fields | 1 1 0.1s assign_cells! returns the config's cell_hash buffer | 1 1 0.0s Position wrapping and cell assignment hot-path guarantees | 4 4 8.0s Sorting orders particles by ascending cell index | 2 2 1.2s Each cell's start and end index bracket exactly its particles | 5 5 0.1s Empty cells have an empty index range | 2 2 0.0s Particles in the same cell keep their original relative order | 2 2 0.1s Sorted positions and forces are the gather under the permutation | 4 4 1.7s Wrapping, hashing, then sorting groups a random cloud by cell | 10 10 0.4s Cell-sort hot-path guarantees | 2 2 0.2s Hydrodynamic radius defaults to one (unit-radius convention) | 1 1 0.0s Non-unit hydrodynamic radius is not yet supported | 1 1 0.7s FCM envelope width σ derives from a via the Stokes-drag relation a = σ√π | 1 1 0.0s Modified-kernel width Σ = (Σ/σ)⋅σ from the user-supplied ratio (paper §5) | 1 1 0.0s Σ/σ ≥ 1 is required; the equality case is the standard-FCM degenerate limit | 2 2 0.0s Grid spacing h = L_i / M_i must be isotropic across axes (paper §3 assumption) | 3 3 0.1s Anisotropic L is allowed when M restores per-axis h equality | 1 1 0.1s Kernel grid support M_G is at least two grid points per axis | 3 3 0.0s Kernel support M_G must not exceed the grid on any axis | 3 3 0.0s Per-axis grid dimension counts must each be at least one | 1 1 0.0s Force grid is an SoA StructArray over the (M_x, M_y, M_z) grid | 6 6 0.2s Per-particle stencil scratch is sized to the kernel support M_G | 6 6 0.1s Cold-path validation works for Float32 as well as Float64 | 4 4 0.1s Element type is inferred from the domain lengths | 5 5 0.1s Integer domain lengths are rejected: working precision is an explicit choice | 1 1 0.1s Mixed-precision domain lengths have no concrete element type and are rejected | 1 1 0.1s Modified-kernel coefficients match the equation (22) expansion | 8 8 0.3s Modified-kernel coefficients reduce to the plain Gaussian at Σ = σ | 8 8 0.0s Single-particle spread matches the closed-form modified kernel | 2 2 5.1s Stencil anchors on the nearest grid point, biased low for even M_G | 4 4 4.1s Total spread force equals total particle force within truncation tolerance | 6 6 1.7s First moment of the spread is the particle position (within truncation tolerance) | 6 6 0.1s A particle translation by h shifts the spread by one grid cell | 6 6 0.9s Spread is linear in the input force vector | 6 6 0.8s Particle exactly on a grid point produces a reflection-symmetric spread | 24 24 0.0s Σ = σ collapses the modified kernel to the standard-FCM Gaussian | 2 2 0.6s Force-spreading hot-path guarantees | 2 2 0.4s Viscosity μ is a required, positive cold-path parameter (paper §2) | 3 3 0.0s Velocity grid mirrors the force grid: SoA StructArray of shape (M_x, M_y, M_z) | 6 6 0.1s Fluid-domain buffer fluid_hat has the r2c half-axis layout | 6 6 0.2s Precomputed wavenumbers follow the FFTW r2c / wrap-around layout | 14 14 0.1s FFTW plans are cold-path fields ready for hot-path mul! | 2 2 0.0s Cold-path validation works for Float32 as well as Float64 | 4 4 0.0s Mean velocity is exactly zero (k = 0 gauge fix) | 6 6 1.3s Velocity field is discretely divergence-free (k ⋅ û = 0 per Fourier mode) | 2 2 0.5s Single Fourier mode along x with y-forcing matches the analytical projection | 6 6 4.4s Stokes solve is linear in the force field | 6 6 3.6s Cyclic shift of the force shifts the velocity by the same amount | 6 6 3.3s Stokes solve is equivariant under axis-aligned reflections | 6 6 2.8s Doubling the viscosity halves the velocity | 6 6 2.7s End-to-end pipeline: single-particle spread + Stokes solve produces a Stokeslet-shaped velocity field | 6 6 0.1s Zero forcing produces zero velocity at every grid point | 6 6 0.2s Stokes-solve hot-path guarantees | 2 2 0.2s Threaded-plan Stokes solve stays type-stable | 0 0.0s Interpolation is the discrete adjoint of spreading (J = h³ Sᵀ) | 18 18 5.4s Interpolated velocities are returned in original particle order | 12 12 1.8s Single-particle interpolation matches the closed-form modified kernel | 6 6 0.0s Interpolating a constant flow returns that constant (rigid-body limit) | 2 2 1.8s Interpolation is linear in the flow field | 2 2 4.7s Translating particle and flow by one grid cell leaves the velocity unchanged | 6 6 4.3s Σ = σ collapses interpolation to the standard-FCM Gaussian average | 6 6 0.1s Assembled mobility M^VF is symmetric (spread/solve/interpolate adjoint) | 2 2 1.7s Velocity-interpolation hot-path guarantees | 2 2 0.1s Standard-FCM degenerate limit (Σ = σ) gives zero correction | 42 42 0.2s Correction scalars reproduce the full-tensor difference of mobilities | 96 96 0.8s Self correction matches the r → 0 limit (paper Appendix B eq (B.1)) | 18 18 0.0s Isolated particle gets only the self term | 4 4 1.6s Two-particle pair correction matches the difference-of-mobilities tensor | 6 6 0.6s Pair correction is symmetric (SPD precondition) | 2 2 0.3s Correction is linear in F and invariant under translation/periodicity | 6 6 3.0s Correction adds to V rather than overwriting it | 2 2 0.6s Pairwise-correction hot-path guarantees | 2 2 0.4s mobility! leaves the caller's positions and forces unmodified | 4 4 0.1s mobility! rejects mismatched V/Y/F sizes | 12 12 0.0s mobility! is linear in the forces | 2 2 0.1s Assembled mobility is symmetric positive-definite | 4 4 0.0s FFCMMobility reports operator dimensions | 8 8 0.2s Three-argument mul! matches mobility! | 2 2 0.2s Five-argument mul! computes α⋅M⋅f + β⋅v | 6 6 1.0s FFCMMobility is symmetric positive-definite through mul! | 4 4 0.1s Out-of-place M*F is the mirror of mobility! | 10 10 0.1s FFCMMobility declares itself symmetric positive-definite | 4 4 0.1s Assembled-mobility hot-path guarantees | 6 6 0.4s Mobility operator identities hold across random configurations | 36 36 0.9s Single-sphere periodic self-mobility (end-to-end, all five steps) | 4 4 0.2s Σ-independent single-sphere self-mobility (end-to-end, all six steps) | 7 7 0.1s Self-mobility is independent of the Fourier planner effort | 4 4 0.9s Unknown planner effort is rejected at construction | 2 2 0.0s Threaded Stokes solve matches the single-thread reference | 4 4 2.5s Non-positive FFT thread count is rejected at construction | 2 2 0.1s Only the two-phase public API is exported | 1 1 0.3s Exported names are typeable in any terminal (ASCII) | 1 1 0.1s Public keyword arguments are typeable in any terminal (ASCII) | 4 4 0.8s Aqua: package hygiene | 11 11 1m14.5s RNG of the outermost testset: Random.Xoshiro(0xc5c842acbec68641, 0xe4df8a1432e054d1, 0x22dfafe24b443db6, 0x9734201eefb22fac, 0x4532312d5d9c06f6) ERROR: LoadError: Some tests did not pass: 644 passed, 0 failed, 1 errored, 0 broken. in expression starting at /home/pkgeval/.julia/packages/ForceCouplingMethod/2cUXv/test/runtests.jl:6 Testing failed after 298.97s ERROR: LoadError: Package ForceCouplingMethod 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:3298 [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 837.0s: package fails to precompile